1 /*
2  *  thermal.c - Generic Thermal Management Sysfs support.
3  *
4  *  Copyright (C) 2008 Intel Corp
5  *  Copyright (C) 2008 Zhang Rui <rui.zhang@intel.com>
6  *  Copyright (C) 2008 Sujith Thomas <sujith.thomas@intel.com>
7  *
8  *  ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
9  *
10  *  This program is free software; you can redistribute it and/or modify
11  *  it under the terms of the GNU General Public License as published by
12  *  the Free Software Foundation; version 2 of the License.
13  *
14  *  This program is distributed in the hope that it will be useful, but
15  *  WITHOUT ANY WARRANTY; without even the implied warranty of
16  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  *  General Public License for more details.
18  *
19  *  You should have received a copy of the GNU General Public License along
20  *  with this program; if not, write to the Free Software Foundation, Inc.,
21  *  59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
22  *
23  * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
24  */
25 
26 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
27 
28 #include <linux/module.h>
29 #include <linux/device.h>
30 #include <linux/err.h>
31 #include <linux/slab.h>
32 #include <linux/kdev_t.h>
33 #include <linux/idr.h>
34 #include <linux/thermal.h>
35 #include <linux/reboot.h>
36 #include <linux/string.h>
37 #include <linux/of.h>
38 #include <net/netlink.h>
39 #include <net/genetlink.h>
40 
41 #define CREATE_TRACE_POINTS
42 #include <trace/events/thermal.h>
43 
44 #include "thermal_core.h"
45 #include "thermal_hwmon.h"
46 
47 MODULE_AUTHOR("Zhang Rui");
48 MODULE_DESCRIPTION("Generic thermal management sysfs support");
49 MODULE_LICENSE("GPL v2");
50 
51 static DEFINE_IDR(thermal_tz_idr);
52 static DEFINE_IDR(thermal_cdev_idr);
53 static DEFINE_MUTEX(thermal_idr_lock);
54 
55 static LIST_HEAD(thermal_tz_list);
56 static LIST_HEAD(thermal_cdev_list);
57 static LIST_HEAD(thermal_governor_list);
58 
59 static DEFINE_MUTEX(thermal_list_lock);
60 static DEFINE_MUTEX(thermal_governor_lock);
61 
62 static struct thermal_governor *def_governor;
63 
64 static struct thermal_governor *__find_governor(const char *name)
65 {
66 	struct thermal_governor *pos;
67 
68 	if (!name || !name[0])
69 		return def_governor;
70 
71 	list_for_each_entry(pos, &thermal_governor_list, governor_list)
72 		if (!strncasecmp(name, pos->name, THERMAL_NAME_LENGTH))
73 			return pos;
74 
75 	return NULL;
76 }
77 
78 int thermal_register_governor(struct thermal_governor *governor)
79 {
80 	int err;
81 	const char *name;
82 	struct thermal_zone_device *pos;
83 
84 	if (!governor)
85 		return -EINVAL;
86 
87 	mutex_lock(&thermal_governor_lock);
88 
89 	err = -EBUSY;
90 	if (__find_governor(governor->name) == NULL) {
91 		err = 0;
92 		list_add(&governor->governor_list, &thermal_governor_list);
93 		if (!def_governor && !strncmp(governor->name,
94 			DEFAULT_THERMAL_GOVERNOR, THERMAL_NAME_LENGTH))
95 			def_governor = governor;
96 	}
97 
98 	mutex_lock(&thermal_list_lock);
99 
100 	list_for_each_entry(pos, &thermal_tz_list, node) {
101 		/*
102 		 * only thermal zones with specified tz->tzp->governor_name
103 		 * may run with tz->govenor unset
104 		 */
105 		if (pos->governor)
106 			continue;
107 
108 		name = pos->tzp->governor_name;
109 
110 		if (!strncasecmp(name, governor->name, THERMAL_NAME_LENGTH))
111 			pos->governor = governor;
112 	}
113 
114 	mutex_unlock(&thermal_list_lock);
115 	mutex_unlock(&thermal_governor_lock);
116 
117 	return err;
118 }
119 
120 void thermal_unregister_governor(struct thermal_governor *governor)
121 {
122 	struct thermal_zone_device *pos;
123 
124 	if (!governor)
125 		return;
126 
127 	mutex_lock(&thermal_governor_lock);
128 
129 	if (__find_governor(governor->name) == NULL)
130 		goto exit;
131 
132 	mutex_lock(&thermal_list_lock);
133 
134 	list_for_each_entry(pos, &thermal_tz_list, node) {
135 		if (!strncasecmp(pos->governor->name, governor->name,
136 						THERMAL_NAME_LENGTH))
137 			pos->governor = NULL;
138 	}
139 
140 	mutex_unlock(&thermal_list_lock);
141 	list_del(&governor->governor_list);
142 exit:
143 	mutex_unlock(&thermal_governor_lock);
144 	return;
145 }
146 
147 static int get_idr(struct idr *idr, struct mutex *lock, int *id)
148 {
149 	int ret;
150 
151 	if (lock)
152 		mutex_lock(lock);
153 	ret = idr_alloc(idr, NULL, 0, 0, GFP_KERNEL);
154 	if (lock)
155 		mutex_unlock(lock);
156 	if (unlikely(ret < 0))
157 		return ret;
158 	*id = ret;
159 	return 0;
160 }
161 
162 static void release_idr(struct idr *idr, struct mutex *lock, int id)
163 {
164 	if (lock)
165 		mutex_lock(lock);
166 	idr_remove(idr, id);
167 	if (lock)
168 		mutex_unlock(lock);
169 }
170 
171 int get_tz_trend(struct thermal_zone_device *tz, int trip)
172 {
173 	enum thermal_trend trend;
174 
175 	if (tz->emul_temperature || !tz->ops->get_trend ||
176 	    tz->ops->get_trend(tz, trip, &trend)) {
177 		if (tz->temperature > tz->last_temperature)
178 			trend = THERMAL_TREND_RAISING;
179 		else if (tz->temperature < tz->last_temperature)
180 			trend = THERMAL_TREND_DROPPING;
181 		else
182 			trend = THERMAL_TREND_STABLE;
183 	}
184 
185 	return trend;
186 }
187 EXPORT_SYMBOL(get_tz_trend);
188 
189 struct thermal_instance *get_thermal_instance(struct thermal_zone_device *tz,
190 			struct thermal_cooling_device *cdev, int trip)
191 {
192 	struct thermal_instance *pos = NULL;
193 	struct thermal_instance *target_instance = NULL;
194 
195 	mutex_lock(&tz->lock);
196 	mutex_lock(&cdev->lock);
197 
198 	list_for_each_entry(pos, &tz->thermal_instances, tz_node) {
199 		if (pos->tz == tz && pos->trip == trip && pos->cdev == cdev) {
200 			target_instance = pos;
201 			break;
202 		}
203 	}
204 
205 	mutex_unlock(&cdev->lock);
206 	mutex_unlock(&tz->lock);
207 
208 	return target_instance;
209 }
210 EXPORT_SYMBOL(get_thermal_instance);
211 
212 static void print_bind_err_msg(struct thermal_zone_device *tz,
213 			struct thermal_cooling_device *cdev, int ret)
214 {
215 	dev_err(&tz->device, "binding zone %s with cdev %s failed:%d\n",
216 				tz->type, cdev->type, ret);
217 }
218 
219 static void __bind(struct thermal_zone_device *tz, int mask,
220 			struct thermal_cooling_device *cdev,
221 			unsigned long *limits)
222 {
223 	int i, ret;
224 
225 	for (i = 0; i < tz->trips; i++) {
226 		if (mask & (1 << i)) {
227 			unsigned long upper, lower;
228 
229 			upper = THERMAL_NO_LIMIT;
230 			lower = THERMAL_NO_LIMIT;
231 			if (limits) {
232 				lower = limits[i * 2];
233 				upper = limits[i * 2 + 1];
234 			}
235 			ret = thermal_zone_bind_cooling_device(tz, i, cdev,
236 							       upper, lower);
237 			if (ret)
238 				print_bind_err_msg(tz, cdev, ret);
239 		}
240 	}
241 }
242 
243 static void __unbind(struct thermal_zone_device *tz, int mask,
244 			struct thermal_cooling_device *cdev)
245 {
246 	int i;
247 
248 	for (i = 0; i < tz->trips; i++)
249 		if (mask & (1 << i))
250 			thermal_zone_unbind_cooling_device(tz, i, cdev);
251 }
252 
253 static void bind_cdev(struct thermal_cooling_device *cdev)
254 {
255 	int i, ret;
256 	const struct thermal_zone_params *tzp;
257 	struct thermal_zone_device *pos = NULL;
258 
259 	mutex_lock(&thermal_list_lock);
260 
261 	list_for_each_entry(pos, &thermal_tz_list, node) {
262 		if (!pos->tzp && !pos->ops->bind)
263 			continue;
264 
265 		if (pos->ops->bind) {
266 			ret = pos->ops->bind(pos, cdev);
267 			if (ret)
268 				print_bind_err_msg(pos, cdev, ret);
269 			continue;
270 		}
271 
272 		tzp = pos->tzp;
273 		if (!tzp || !tzp->tbp)
274 			continue;
275 
276 		for (i = 0; i < tzp->num_tbps; i++) {
277 			if (tzp->tbp[i].cdev || !tzp->tbp[i].match)
278 				continue;
279 			if (tzp->tbp[i].match(pos, cdev))
280 				continue;
281 			tzp->tbp[i].cdev = cdev;
282 			__bind(pos, tzp->tbp[i].trip_mask, cdev,
283 			       tzp->tbp[i].binding_limits);
284 		}
285 	}
286 
287 	mutex_unlock(&thermal_list_lock);
288 }
289 
290 static void bind_tz(struct thermal_zone_device *tz)
291 {
292 	int i, ret;
293 	struct thermal_cooling_device *pos = NULL;
294 	const struct thermal_zone_params *tzp = tz->tzp;
295 
296 	if (!tzp && !tz->ops->bind)
297 		return;
298 
299 	mutex_lock(&thermal_list_lock);
300 
301 	/* If there is ops->bind, try to use ops->bind */
302 	if (tz->ops->bind) {
303 		list_for_each_entry(pos, &thermal_cdev_list, node) {
304 			ret = tz->ops->bind(tz, pos);
305 			if (ret)
306 				print_bind_err_msg(tz, pos, ret);
307 		}
308 		goto exit;
309 	}
310 
311 	if (!tzp || !tzp->tbp)
312 		goto exit;
313 
314 	list_for_each_entry(pos, &thermal_cdev_list, node) {
315 		for (i = 0; i < tzp->num_tbps; i++) {
316 			if (tzp->tbp[i].cdev || !tzp->tbp[i].match)
317 				continue;
318 			if (tzp->tbp[i].match(tz, pos))
319 				continue;
320 			tzp->tbp[i].cdev = pos;
321 			__bind(tz, tzp->tbp[i].trip_mask, pos,
322 			       tzp->tbp[i].binding_limits);
323 		}
324 	}
325 exit:
326 	mutex_unlock(&thermal_list_lock);
327 }
328 
329 static void thermal_zone_device_set_polling(struct thermal_zone_device *tz,
330 					    int delay)
331 {
332 	if (delay > 1000)
333 		mod_delayed_work(system_freezable_wq, &tz->poll_queue,
334 				 round_jiffies(msecs_to_jiffies(delay)));
335 	else if (delay)
336 		mod_delayed_work(system_freezable_wq, &tz->poll_queue,
337 				 msecs_to_jiffies(delay));
338 	else
339 		cancel_delayed_work(&tz->poll_queue);
340 }
341 
342 static void monitor_thermal_zone(struct thermal_zone_device *tz)
343 {
344 	mutex_lock(&tz->lock);
345 
346 	if (tz->passive)
347 		thermal_zone_device_set_polling(tz, tz->passive_delay);
348 	else if (tz->polling_delay)
349 		thermal_zone_device_set_polling(tz, tz->polling_delay);
350 	else
351 		thermal_zone_device_set_polling(tz, 0);
352 
353 	mutex_unlock(&tz->lock);
354 }
355 
356 static void handle_non_critical_trips(struct thermal_zone_device *tz,
357 			int trip, enum thermal_trip_type trip_type)
358 {
359 	tz->governor ? tz->governor->throttle(tz, trip) :
360 		       def_governor->throttle(tz, trip);
361 }
362 
363 static void handle_critical_trips(struct thermal_zone_device *tz,
364 				int trip, enum thermal_trip_type trip_type)
365 {
366 	long trip_temp;
367 
368 	tz->ops->get_trip_temp(tz, trip, &trip_temp);
369 
370 	/* If we have not crossed the trip_temp, we do not care. */
371 	if (trip_temp <= 0 || tz->temperature < trip_temp)
372 		return;
373 
374 	trace_thermal_zone_trip(tz, trip, trip_type);
375 
376 	if (tz->ops->notify)
377 		tz->ops->notify(tz, trip, trip_type);
378 
379 	if (trip_type == THERMAL_TRIP_CRITICAL) {
380 		dev_emerg(&tz->device,
381 			  "critical temperature reached(%d C),shutting down\n",
382 			  tz->temperature / 1000);
383 		orderly_poweroff(true);
384 	}
385 }
386 
387 static void handle_thermal_trip(struct thermal_zone_device *tz, int trip)
388 {
389 	enum thermal_trip_type type;
390 
391 	tz->ops->get_trip_type(tz, trip, &type);
392 
393 	if (type == THERMAL_TRIP_CRITICAL || type == THERMAL_TRIP_HOT)
394 		handle_critical_trips(tz, trip, type);
395 	else
396 		handle_non_critical_trips(tz, trip, type);
397 	/*
398 	 * Alright, we handled this trip successfully.
399 	 * So, start monitoring again.
400 	 */
401 	monitor_thermal_zone(tz);
402 }
403 
404 /**
405  * thermal_zone_get_temp() - returns its the temperature of thermal zone
406  * @tz: a valid pointer to a struct thermal_zone_device
407  * @temp: a valid pointer to where to store the resulting temperature.
408  *
409  * When a valid thermal zone reference is passed, it will fetch its
410  * temperature and fill @temp.
411  *
412  * Return: On success returns 0, an error code otherwise
413  */
414 int thermal_zone_get_temp(struct thermal_zone_device *tz, unsigned long *temp)
415 {
416 	int ret = -EINVAL;
417 #ifdef CONFIG_THERMAL_EMULATION
418 	int count;
419 	unsigned long crit_temp = -1UL;
420 	enum thermal_trip_type type;
421 #endif
422 
423 	if (!tz || IS_ERR(tz) || !tz->ops->get_temp)
424 		goto exit;
425 
426 	mutex_lock(&tz->lock);
427 
428 	ret = tz->ops->get_temp(tz, temp);
429 #ifdef CONFIG_THERMAL_EMULATION
430 	if (!tz->emul_temperature)
431 		goto skip_emul;
432 
433 	for (count = 0; count < tz->trips; count++) {
434 		ret = tz->ops->get_trip_type(tz, count, &type);
435 		if (!ret && type == THERMAL_TRIP_CRITICAL) {
436 			ret = tz->ops->get_trip_temp(tz, count, &crit_temp);
437 			break;
438 		}
439 	}
440 
441 	if (ret)
442 		goto skip_emul;
443 
444 	if (*temp < crit_temp)
445 		*temp = tz->emul_temperature;
446 skip_emul:
447 #endif
448 	mutex_unlock(&tz->lock);
449 exit:
450 	return ret;
451 }
452 EXPORT_SYMBOL_GPL(thermal_zone_get_temp);
453 
454 static void update_temperature(struct thermal_zone_device *tz)
455 {
456 	long temp;
457 	int ret;
458 
459 	ret = thermal_zone_get_temp(tz, &temp);
460 	if (ret) {
461 		dev_warn(&tz->device, "failed to read out thermal zone %d\n",
462 			 tz->id);
463 		return;
464 	}
465 
466 	mutex_lock(&tz->lock);
467 	tz->last_temperature = tz->temperature;
468 	tz->temperature = temp;
469 	mutex_unlock(&tz->lock);
470 
471 	trace_thermal_temperature(tz);
472 	dev_dbg(&tz->device, "last_temperature=%d, current_temperature=%d\n",
473 				tz->last_temperature, tz->temperature);
474 }
475 
476 void thermal_zone_device_update(struct thermal_zone_device *tz)
477 {
478 	int count;
479 
480 	if (!tz->ops->get_temp)
481 		return;
482 
483 	update_temperature(tz);
484 
485 	for (count = 0; count < tz->trips; count++)
486 		handle_thermal_trip(tz, count);
487 }
488 EXPORT_SYMBOL_GPL(thermal_zone_device_update);
489 
490 static void thermal_zone_device_check(struct work_struct *work)
491 {
492 	struct thermal_zone_device *tz = container_of(work, struct
493 						      thermal_zone_device,
494 						      poll_queue.work);
495 	thermal_zone_device_update(tz);
496 }
497 
498 /* sys I/F for thermal zone */
499 
500 #define to_thermal_zone(_dev) \
501 	container_of(_dev, struct thermal_zone_device, device)
502 
503 static ssize_t
504 type_show(struct device *dev, struct device_attribute *attr, char *buf)
505 {
506 	struct thermal_zone_device *tz = to_thermal_zone(dev);
507 
508 	return sprintf(buf, "%s\n", tz->type);
509 }
510 
511 static ssize_t
512 temp_show(struct device *dev, struct device_attribute *attr, char *buf)
513 {
514 	struct thermal_zone_device *tz = to_thermal_zone(dev);
515 	long temperature;
516 	int ret;
517 
518 	ret = thermal_zone_get_temp(tz, &temperature);
519 
520 	if (ret)
521 		return ret;
522 
523 	return sprintf(buf, "%ld\n", temperature);
524 }
525 
526 static ssize_t
527 mode_show(struct device *dev, struct device_attribute *attr, char *buf)
528 {
529 	struct thermal_zone_device *tz = to_thermal_zone(dev);
530 	enum thermal_device_mode mode;
531 	int result;
532 
533 	if (!tz->ops->get_mode)
534 		return -EPERM;
535 
536 	result = tz->ops->get_mode(tz, &mode);
537 	if (result)
538 		return result;
539 
540 	return sprintf(buf, "%s\n", mode == THERMAL_DEVICE_ENABLED ? "enabled"
541 		       : "disabled");
542 }
543 
544 static ssize_t
545 mode_store(struct device *dev, struct device_attribute *attr,
546 	   const char *buf, size_t count)
547 {
548 	struct thermal_zone_device *tz = to_thermal_zone(dev);
549 	int result;
550 
551 	if (!tz->ops->set_mode)
552 		return -EPERM;
553 
554 	if (!strncmp(buf, "enabled", sizeof("enabled") - 1))
555 		result = tz->ops->set_mode(tz, THERMAL_DEVICE_ENABLED);
556 	else if (!strncmp(buf, "disabled", sizeof("disabled") - 1))
557 		result = tz->ops->set_mode(tz, THERMAL_DEVICE_DISABLED);
558 	else
559 		result = -EINVAL;
560 
561 	if (result)
562 		return result;
563 
564 	return count;
565 }
566 
567 static ssize_t
568 trip_point_type_show(struct device *dev, struct device_attribute *attr,
569 		     char *buf)
570 {
571 	struct thermal_zone_device *tz = to_thermal_zone(dev);
572 	enum thermal_trip_type type;
573 	int trip, result;
574 
575 	if (!tz->ops->get_trip_type)
576 		return -EPERM;
577 
578 	if (!sscanf(attr->attr.name, "trip_point_%d_type", &trip))
579 		return -EINVAL;
580 
581 	result = tz->ops->get_trip_type(tz, trip, &type);
582 	if (result)
583 		return result;
584 
585 	switch (type) {
586 	case THERMAL_TRIP_CRITICAL:
587 		return sprintf(buf, "critical\n");
588 	case THERMAL_TRIP_HOT:
589 		return sprintf(buf, "hot\n");
590 	case THERMAL_TRIP_PASSIVE:
591 		return sprintf(buf, "passive\n");
592 	case THERMAL_TRIP_ACTIVE:
593 		return sprintf(buf, "active\n");
594 	default:
595 		return sprintf(buf, "unknown\n");
596 	}
597 }
598 
599 static ssize_t
600 trip_point_temp_store(struct device *dev, struct device_attribute *attr,
601 		     const char *buf, size_t count)
602 {
603 	struct thermal_zone_device *tz = to_thermal_zone(dev);
604 	int trip, ret;
605 	unsigned long temperature;
606 
607 	if (!tz->ops->set_trip_temp)
608 		return -EPERM;
609 
610 	if (!sscanf(attr->attr.name, "trip_point_%d_temp", &trip))
611 		return -EINVAL;
612 
613 	if (kstrtoul(buf, 10, &temperature))
614 		return -EINVAL;
615 
616 	ret = tz->ops->set_trip_temp(tz, trip, temperature);
617 
618 	return ret ? ret : count;
619 }
620 
621 static ssize_t
622 trip_point_temp_show(struct device *dev, struct device_attribute *attr,
623 		     char *buf)
624 {
625 	struct thermal_zone_device *tz = to_thermal_zone(dev);
626 	int trip, ret;
627 	long temperature;
628 
629 	if (!tz->ops->get_trip_temp)
630 		return -EPERM;
631 
632 	if (!sscanf(attr->attr.name, "trip_point_%d_temp", &trip))
633 		return -EINVAL;
634 
635 	ret = tz->ops->get_trip_temp(tz, trip, &temperature);
636 
637 	if (ret)
638 		return ret;
639 
640 	return sprintf(buf, "%ld\n", temperature);
641 }
642 
643 static ssize_t
644 trip_point_hyst_store(struct device *dev, struct device_attribute *attr,
645 			const char *buf, size_t count)
646 {
647 	struct thermal_zone_device *tz = to_thermal_zone(dev);
648 	int trip, ret;
649 	unsigned long temperature;
650 
651 	if (!tz->ops->set_trip_hyst)
652 		return -EPERM;
653 
654 	if (!sscanf(attr->attr.name, "trip_point_%d_hyst", &trip))
655 		return -EINVAL;
656 
657 	if (kstrtoul(buf, 10, &temperature))
658 		return -EINVAL;
659 
660 	/*
661 	 * We are not doing any check on the 'temperature' value
662 	 * here. The driver implementing 'set_trip_hyst' has to
663 	 * take care of this.
664 	 */
665 	ret = tz->ops->set_trip_hyst(tz, trip, temperature);
666 
667 	return ret ? ret : count;
668 }
669 
670 static ssize_t
671 trip_point_hyst_show(struct device *dev, struct device_attribute *attr,
672 			char *buf)
673 {
674 	struct thermal_zone_device *tz = to_thermal_zone(dev);
675 	int trip, ret;
676 	unsigned long temperature;
677 
678 	if (!tz->ops->get_trip_hyst)
679 		return -EPERM;
680 
681 	if (!sscanf(attr->attr.name, "trip_point_%d_hyst", &trip))
682 		return -EINVAL;
683 
684 	ret = tz->ops->get_trip_hyst(tz, trip, &temperature);
685 
686 	return ret ? ret : sprintf(buf, "%ld\n", temperature);
687 }
688 
689 static ssize_t
690 passive_store(struct device *dev, struct device_attribute *attr,
691 		    const char *buf, size_t count)
692 {
693 	struct thermal_zone_device *tz = to_thermal_zone(dev);
694 	struct thermal_cooling_device *cdev = NULL;
695 	int state;
696 
697 	if (!sscanf(buf, "%d\n", &state))
698 		return -EINVAL;
699 
700 	/* sanity check: values below 1000 millicelcius don't make sense
701 	 * and can cause the system to go into a thermal heart attack
702 	 */
703 	if (state && state < 1000)
704 		return -EINVAL;
705 
706 	if (state && !tz->forced_passive) {
707 		mutex_lock(&thermal_list_lock);
708 		list_for_each_entry(cdev, &thermal_cdev_list, node) {
709 			if (!strncmp("Processor", cdev->type,
710 				     sizeof("Processor")))
711 				thermal_zone_bind_cooling_device(tz,
712 						THERMAL_TRIPS_NONE, cdev,
713 						THERMAL_NO_LIMIT,
714 						THERMAL_NO_LIMIT);
715 		}
716 		mutex_unlock(&thermal_list_lock);
717 		if (!tz->passive_delay)
718 			tz->passive_delay = 1000;
719 	} else if (!state && tz->forced_passive) {
720 		mutex_lock(&thermal_list_lock);
721 		list_for_each_entry(cdev, &thermal_cdev_list, node) {
722 			if (!strncmp("Processor", cdev->type,
723 				     sizeof("Processor")))
724 				thermal_zone_unbind_cooling_device(tz,
725 								   THERMAL_TRIPS_NONE,
726 								   cdev);
727 		}
728 		mutex_unlock(&thermal_list_lock);
729 		tz->passive_delay = 0;
730 	}
731 
732 	tz->forced_passive = state;
733 
734 	thermal_zone_device_update(tz);
735 
736 	return count;
737 }
738 
739 static ssize_t
740 passive_show(struct device *dev, struct device_attribute *attr,
741 		   char *buf)
742 {
743 	struct thermal_zone_device *tz = to_thermal_zone(dev);
744 
745 	return sprintf(buf, "%d\n", tz->forced_passive);
746 }
747 
748 static ssize_t
749 policy_store(struct device *dev, struct device_attribute *attr,
750 		    const char *buf, size_t count)
751 {
752 	int ret = -EINVAL;
753 	struct thermal_zone_device *tz = to_thermal_zone(dev);
754 	struct thermal_governor *gov;
755 	char name[THERMAL_NAME_LENGTH];
756 
757 	snprintf(name, sizeof(name), "%s", buf);
758 
759 	mutex_lock(&thermal_governor_lock);
760 	mutex_lock(&tz->lock);
761 
762 	gov = __find_governor(strim(name));
763 	if (!gov)
764 		goto exit;
765 
766 	tz->governor = gov;
767 	ret = count;
768 
769 exit:
770 	mutex_unlock(&tz->lock);
771 	mutex_unlock(&thermal_governor_lock);
772 	return ret;
773 }
774 
775 static ssize_t
776 policy_show(struct device *dev, struct device_attribute *devattr, char *buf)
777 {
778 	struct thermal_zone_device *tz = to_thermal_zone(dev);
779 
780 	return sprintf(buf, "%s\n", tz->governor->name);
781 }
782 
783 #ifdef CONFIG_THERMAL_EMULATION
784 static ssize_t
785 emul_temp_store(struct device *dev, struct device_attribute *attr,
786 		     const char *buf, size_t count)
787 {
788 	struct thermal_zone_device *tz = to_thermal_zone(dev);
789 	int ret = 0;
790 	unsigned long temperature;
791 
792 	if (kstrtoul(buf, 10, &temperature))
793 		return -EINVAL;
794 
795 	if (!tz->ops->set_emul_temp) {
796 		mutex_lock(&tz->lock);
797 		tz->emul_temperature = temperature;
798 		mutex_unlock(&tz->lock);
799 	} else {
800 		ret = tz->ops->set_emul_temp(tz, temperature);
801 	}
802 
803 	if (!ret)
804 		thermal_zone_device_update(tz);
805 
806 	return ret ? ret : count;
807 }
808 static DEVICE_ATTR(emul_temp, S_IWUSR, NULL, emul_temp_store);
809 #endif/*CONFIG_THERMAL_EMULATION*/
810 
811 static DEVICE_ATTR(type, 0444, type_show, NULL);
812 static DEVICE_ATTR(temp, 0444, temp_show, NULL);
813 static DEVICE_ATTR(mode, 0644, mode_show, mode_store);
814 static DEVICE_ATTR(passive, S_IRUGO | S_IWUSR, passive_show, passive_store);
815 static DEVICE_ATTR(policy, S_IRUGO | S_IWUSR, policy_show, policy_store);
816 
817 /* sys I/F for cooling device */
818 #define to_cooling_device(_dev)	\
819 	container_of(_dev, struct thermal_cooling_device, device)
820 
821 static ssize_t
822 thermal_cooling_device_type_show(struct device *dev,
823 				 struct device_attribute *attr, char *buf)
824 {
825 	struct thermal_cooling_device *cdev = to_cooling_device(dev);
826 
827 	return sprintf(buf, "%s\n", cdev->type);
828 }
829 
830 static ssize_t
831 thermal_cooling_device_max_state_show(struct device *dev,
832 				      struct device_attribute *attr, char *buf)
833 {
834 	struct thermal_cooling_device *cdev = to_cooling_device(dev);
835 	unsigned long state;
836 	int ret;
837 
838 	ret = cdev->ops->get_max_state(cdev, &state);
839 	if (ret)
840 		return ret;
841 	return sprintf(buf, "%ld\n", state);
842 }
843 
844 static ssize_t
845 thermal_cooling_device_cur_state_show(struct device *dev,
846 				      struct device_attribute *attr, char *buf)
847 {
848 	struct thermal_cooling_device *cdev = to_cooling_device(dev);
849 	unsigned long state;
850 	int ret;
851 
852 	ret = cdev->ops->get_cur_state(cdev, &state);
853 	if (ret)
854 		return ret;
855 	return sprintf(buf, "%ld\n", state);
856 }
857 
858 static ssize_t
859 thermal_cooling_device_cur_state_store(struct device *dev,
860 				       struct device_attribute *attr,
861 				       const char *buf, size_t count)
862 {
863 	struct thermal_cooling_device *cdev = to_cooling_device(dev);
864 	unsigned long state;
865 	int result;
866 
867 	if (!sscanf(buf, "%ld\n", &state))
868 		return -EINVAL;
869 
870 	if ((long)state < 0)
871 		return -EINVAL;
872 
873 	result = cdev->ops->set_cur_state(cdev, state);
874 	if (result)
875 		return result;
876 	return count;
877 }
878 
879 static struct device_attribute dev_attr_cdev_type =
880 __ATTR(type, 0444, thermal_cooling_device_type_show, NULL);
881 static DEVICE_ATTR(max_state, 0444,
882 		   thermal_cooling_device_max_state_show, NULL);
883 static DEVICE_ATTR(cur_state, 0644,
884 		   thermal_cooling_device_cur_state_show,
885 		   thermal_cooling_device_cur_state_store);
886 
887 static ssize_t
888 thermal_cooling_device_trip_point_show(struct device *dev,
889 				       struct device_attribute *attr, char *buf)
890 {
891 	struct thermal_instance *instance;
892 
893 	instance =
894 	    container_of(attr, struct thermal_instance, attr);
895 
896 	if (instance->trip == THERMAL_TRIPS_NONE)
897 		return sprintf(buf, "-1\n");
898 	else
899 		return sprintf(buf, "%d\n", instance->trip);
900 }
901 
902 /* Device management */
903 
904 /**
905  * thermal_zone_bind_cooling_device() - bind a cooling device to a thermal zone
906  * @tz:		pointer to struct thermal_zone_device
907  * @trip:	indicates which trip point the cooling devices is
908  *		associated with in this thermal zone.
909  * @cdev:	pointer to struct thermal_cooling_device
910  * @upper:	the Maximum cooling state for this trip point.
911  *		THERMAL_NO_LIMIT means no upper limit,
912  *		and the cooling device can be in max_state.
913  * @lower:	the Minimum cooling state can be used for this trip point.
914  *		THERMAL_NO_LIMIT means no lower limit,
915  *		and the cooling device can be in cooling state 0.
916  *
917  * This interface function bind a thermal cooling device to the certain trip
918  * point of a thermal zone device.
919  * This function is usually called in the thermal zone device .bind callback.
920  *
921  * Return: 0 on success, the proper error value otherwise.
922  */
923 int thermal_zone_bind_cooling_device(struct thermal_zone_device *tz,
924 				     int trip,
925 				     struct thermal_cooling_device *cdev,
926 				     unsigned long upper, unsigned long lower)
927 {
928 	struct thermal_instance *dev;
929 	struct thermal_instance *pos;
930 	struct thermal_zone_device *pos1;
931 	struct thermal_cooling_device *pos2;
932 	unsigned long max_state;
933 	int result;
934 
935 	if (trip >= tz->trips || (trip < 0 && trip != THERMAL_TRIPS_NONE))
936 		return -EINVAL;
937 
938 	list_for_each_entry(pos1, &thermal_tz_list, node) {
939 		if (pos1 == tz)
940 			break;
941 	}
942 	list_for_each_entry(pos2, &thermal_cdev_list, node) {
943 		if (pos2 == cdev)
944 			break;
945 	}
946 
947 	if (tz != pos1 || cdev != pos2)
948 		return -EINVAL;
949 
950 	cdev->ops->get_max_state(cdev, &max_state);
951 
952 	/* lower default 0, upper default max_state */
953 	lower = lower == THERMAL_NO_LIMIT ? 0 : lower;
954 	upper = upper == THERMAL_NO_LIMIT ? max_state : upper;
955 
956 	if (lower > upper || upper > max_state)
957 		return -EINVAL;
958 
959 	dev =
960 	    kzalloc(sizeof(struct thermal_instance), GFP_KERNEL);
961 	if (!dev)
962 		return -ENOMEM;
963 	dev->tz = tz;
964 	dev->cdev = cdev;
965 	dev->trip = trip;
966 	dev->upper = upper;
967 	dev->lower = lower;
968 	dev->target = THERMAL_NO_TARGET;
969 
970 	result = get_idr(&tz->idr, &tz->lock, &dev->id);
971 	if (result)
972 		goto free_mem;
973 
974 	sprintf(dev->name, "cdev%d", dev->id);
975 	result =
976 	    sysfs_create_link(&tz->device.kobj, &cdev->device.kobj, dev->name);
977 	if (result)
978 		goto release_idr;
979 
980 	sprintf(dev->attr_name, "cdev%d_trip_point", dev->id);
981 	sysfs_attr_init(&dev->attr.attr);
982 	dev->attr.attr.name = dev->attr_name;
983 	dev->attr.attr.mode = 0444;
984 	dev->attr.show = thermal_cooling_device_trip_point_show;
985 	result = device_create_file(&tz->device, &dev->attr);
986 	if (result)
987 		goto remove_symbol_link;
988 
989 	mutex_lock(&tz->lock);
990 	mutex_lock(&cdev->lock);
991 	list_for_each_entry(pos, &tz->thermal_instances, tz_node)
992 	    if (pos->tz == tz && pos->trip == trip && pos->cdev == cdev) {
993 		result = -EEXIST;
994 		break;
995 	}
996 	if (!result) {
997 		list_add_tail(&dev->tz_node, &tz->thermal_instances);
998 		list_add_tail(&dev->cdev_node, &cdev->thermal_instances);
999 	}
1000 	mutex_unlock(&cdev->lock);
1001 	mutex_unlock(&tz->lock);
1002 
1003 	if (!result)
1004 		return 0;
1005 
1006 	device_remove_file(&tz->device, &dev->attr);
1007 remove_symbol_link:
1008 	sysfs_remove_link(&tz->device.kobj, dev->name);
1009 release_idr:
1010 	release_idr(&tz->idr, &tz->lock, dev->id);
1011 free_mem:
1012 	kfree(dev);
1013 	return result;
1014 }
1015 EXPORT_SYMBOL_GPL(thermal_zone_bind_cooling_device);
1016 
1017 /**
1018  * thermal_zone_unbind_cooling_device() - unbind a cooling device from a
1019  *					  thermal zone.
1020  * @tz:		pointer to a struct thermal_zone_device.
1021  * @trip:	indicates which trip point the cooling devices is
1022  *		associated with in this thermal zone.
1023  * @cdev:	pointer to a struct thermal_cooling_device.
1024  *
1025  * This interface function unbind a thermal cooling device from the certain
1026  * trip point of a thermal zone device.
1027  * This function is usually called in the thermal zone device .unbind callback.
1028  *
1029  * Return: 0 on success, the proper error value otherwise.
1030  */
1031 int thermal_zone_unbind_cooling_device(struct thermal_zone_device *tz,
1032 				       int trip,
1033 				       struct thermal_cooling_device *cdev)
1034 {
1035 	struct thermal_instance *pos, *next;
1036 
1037 	mutex_lock(&tz->lock);
1038 	mutex_lock(&cdev->lock);
1039 	list_for_each_entry_safe(pos, next, &tz->thermal_instances, tz_node) {
1040 		if (pos->tz == tz && pos->trip == trip && pos->cdev == cdev) {
1041 			list_del(&pos->tz_node);
1042 			list_del(&pos->cdev_node);
1043 			mutex_unlock(&cdev->lock);
1044 			mutex_unlock(&tz->lock);
1045 			goto unbind;
1046 		}
1047 	}
1048 	mutex_unlock(&cdev->lock);
1049 	mutex_unlock(&tz->lock);
1050 
1051 	return -ENODEV;
1052 
1053 unbind:
1054 	device_remove_file(&tz->device, &pos->attr);
1055 	sysfs_remove_link(&tz->device.kobj, pos->name);
1056 	release_idr(&tz->idr, &tz->lock, pos->id);
1057 	kfree(pos);
1058 	return 0;
1059 }
1060 EXPORT_SYMBOL_GPL(thermal_zone_unbind_cooling_device);
1061 
1062 static void thermal_release(struct device *dev)
1063 {
1064 	struct thermal_zone_device *tz;
1065 	struct thermal_cooling_device *cdev;
1066 
1067 	if (!strncmp(dev_name(dev), "thermal_zone",
1068 		     sizeof("thermal_zone") - 1)) {
1069 		tz = to_thermal_zone(dev);
1070 		kfree(tz);
1071 	} else if(!strncmp(dev_name(dev), "cooling_device",
1072 			sizeof("cooling_device") - 1)){
1073 		cdev = to_cooling_device(dev);
1074 		kfree(cdev);
1075 	}
1076 }
1077 
1078 static struct class thermal_class = {
1079 	.name = "thermal",
1080 	.dev_release = thermal_release,
1081 };
1082 
1083 /**
1084  * __thermal_cooling_device_register() - register a new thermal cooling device
1085  * @np:		a pointer to a device tree node.
1086  * @type:	the thermal cooling device type.
1087  * @devdata:	device private data.
1088  * @ops:		standard thermal cooling devices callbacks.
1089  *
1090  * This interface function adds a new thermal cooling device (fan/processor/...)
1091  * to /sys/class/thermal/ folder as cooling_device[0-*]. It tries to bind itself
1092  * to all the thermal zone devices registered at the same time.
1093  * It also gives the opportunity to link the cooling device to a device tree
1094  * node, so that it can be bound to a thermal zone created out of device tree.
1095  *
1096  * Return: a pointer to the created struct thermal_cooling_device or an
1097  * ERR_PTR. Caller must check return value with IS_ERR*() helpers.
1098  */
1099 static struct thermal_cooling_device *
1100 __thermal_cooling_device_register(struct device_node *np,
1101 				  char *type, void *devdata,
1102 				  const struct thermal_cooling_device_ops *ops)
1103 {
1104 	struct thermal_cooling_device *cdev;
1105 	int result;
1106 
1107 	if (type && strlen(type) >= THERMAL_NAME_LENGTH)
1108 		return ERR_PTR(-EINVAL);
1109 
1110 	if (!ops || !ops->get_max_state || !ops->get_cur_state ||
1111 	    !ops->set_cur_state)
1112 		return ERR_PTR(-EINVAL);
1113 
1114 	cdev = kzalloc(sizeof(struct thermal_cooling_device), GFP_KERNEL);
1115 	if (!cdev)
1116 		return ERR_PTR(-ENOMEM);
1117 
1118 	result = get_idr(&thermal_cdev_idr, &thermal_idr_lock, &cdev->id);
1119 	if (result) {
1120 		kfree(cdev);
1121 		return ERR_PTR(result);
1122 	}
1123 
1124 	strlcpy(cdev->type, type ? : "", sizeof(cdev->type));
1125 	mutex_init(&cdev->lock);
1126 	INIT_LIST_HEAD(&cdev->thermal_instances);
1127 	cdev->np = np;
1128 	cdev->ops = ops;
1129 	cdev->updated = false;
1130 	cdev->device.class = &thermal_class;
1131 	cdev->devdata = devdata;
1132 	dev_set_name(&cdev->device, "cooling_device%d", cdev->id);
1133 	result = device_register(&cdev->device);
1134 	if (result) {
1135 		release_idr(&thermal_cdev_idr, &thermal_idr_lock, cdev->id);
1136 		kfree(cdev);
1137 		return ERR_PTR(result);
1138 	}
1139 
1140 	/* sys I/F */
1141 	if (type) {
1142 		result = device_create_file(&cdev->device, &dev_attr_cdev_type);
1143 		if (result)
1144 			goto unregister;
1145 	}
1146 
1147 	result = device_create_file(&cdev->device, &dev_attr_max_state);
1148 	if (result)
1149 		goto unregister;
1150 
1151 	result = device_create_file(&cdev->device, &dev_attr_cur_state);
1152 	if (result)
1153 		goto unregister;
1154 
1155 	/* Add 'this' new cdev to the global cdev list */
1156 	mutex_lock(&thermal_list_lock);
1157 	list_add(&cdev->node, &thermal_cdev_list);
1158 	mutex_unlock(&thermal_list_lock);
1159 
1160 	/* Update binding information for 'this' new cdev */
1161 	bind_cdev(cdev);
1162 
1163 	return cdev;
1164 
1165 unregister:
1166 	release_idr(&thermal_cdev_idr, &thermal_idr_lock, cdev->id);
1167 	device_unregister(&cdev->device);
1168 	return ERR_PTR(result);
1169 }
1170 
1171 /**
1172  * thermal_cooling_device_register() - register a new thermal cooling device
1173  * @type:	the thermal cooling device type.
1174  * @devdata:	device private data.
1175  * @ops:		standard thermal cooling devices callbacks.
1176  *
1177  * This interface function adds a new thermal cooling device (fan/processor/...)
1178  * to /sys/class/thermal/ folder as cooling_device[0-*]. It tries to bind itself
1179  * to all the thermal zone devices registered at the same time.
1180  *
1181  * Return: a pointer to the created struct thermal_cooling_device or an
1182  * ERR_PTR. Caller must check return value with IS_ERR*() helpers.
1183  */
1184 struct thermal_cooling_device *
1185 thermal_cooling_device_register(char *type, void *devdata,
1186 				const struct thermal_cooling_device_ops *ops)
1187 {
1188 	return __thermal_cooling_device_register(NULL, type, devdata, ops);
1189 }
1190 EXPORT_SYMBOL_GPL(thermal_cooling_device_register);
1191 
1192 /**
1193  * thermal_of_cooling_device_register() - register an OF thermal cooling device
1194  * @np:		a pointer to a device tree node.
1195  * @type:	the thermal cooling device type.
1196  * @devdata:	device private data.
1197  * @ops:		standard thermal cooling devices callbacks.
1198  *
1199  * This function will register a cooling device with device tree node reference.
1200  * This interface function adds a new thermal cooling device (fan/processor/...)
1201  * to /sys/class/thermal/ folder as cooling_device[0-*]. It tries to bind itself
1202  * to all the thermal zone devices registered at the same time.
1203  *
1204  * Return: a pointer to the created struct thermal_cooling_device or an
1205  * ERR_PTR. Caller must check return value with IS_ERR*() helpers.
1206  */
1207 struct thermal_cooling_device *
1208 thermal_of_cooling_device_register(struct device_node *np,
1209 				   char *type, void *devdata,
1210 				   const struct thermal_cooling_device_ops *ops)
1211 {
1212 	return __thermal_cooling_device_register(np, type, devdata, ops);
1213 }
1214 EXPORT_SYMBOL_GPL(thermal_of_cooling_device_register);
1215 
1216 /**
1217  * thermal_cooling_device_unregister - removes the registered thermal cooling device
1218  * @cdev:	the thermal cooling device to remove.
1219  *
1220  * thermal_cooling_device_unregister() must be called when the device is no
1221  * longer needed.
1222  */
1223 void thermal_cooling_device_unregister(struct thermal_cooling_device *cdev)
1224 {
1225 	int i;
1226 	const struct thermal_zone_params *tzp;
1227 	struct thermal_zone_device *tz;
1228 	struct thermal_cooling_device *pos = NULL;
1229 
1230 	if (!cdev)
1231 		return;
1232 
1233 	mutex_lock(&thermal_list_lock);
1234 	list_for_each_entry(pos, &thermal_cdev_list, node)
1235 	    if (pos == cdev)
1236 		break;
1237 	if (pos != cdev) {
1238 		/* thermal cooling device not found */
1239 		mutex_unlock(&thermal_list_lock);
1240 		return;
1241 	}
1242 	list_del(&cdev->node);
1243 
1244 	/* Unbind all thermal zones associated with 'this' cdev */
1245 	list_for_each_entry(tz, &thermal_tz_list, node) {
1246 		if (tz->ops->unbind) {
1247 			tz->ops->unbind(tz, cdev);
1248 			continue;
1249 		}
1250 
1251 		if (!tz->tzp || !tz->tzp->tbp)
1252 			continue;
1253 
1254 		tzp = tz->tzp;
1255 		for (i = 0; i < tzp->num_tbps; i++) {
1256 			if (tzp->tbp[i].cdev == cdev) {
1257 				__unbind(tz, tzp->tbp[i].trip_mask, cdev);
1258 				tzp->tbp[i].cdev = NULL;
1259 			}
1260 		}
1261 	}
1262 
1263 	mutex_unlock(&thermal_list_lock);
1264 
1265 	if (cdev->type[0])
1266 		device_remove_file(&cdev->device, &dev_attr_cdev_type);
1267 	device_remove_file(&cdev->device, &dev_attr_max_state);
1268 	device_remove_file(&cdev->device, &dev_attr_cur_state);
1269 
1270 	release_idr(&thermal_cdev_idr, &thermal_idr_lock, cdev->id);
1271 	device_unregister(&cdev->device);
1272 	return;
1273 }
1274 EXPORT_SYMBOL_GPL(thermal_cooling_device_unregister);
1275 
1276 void thermal_cdev_update(struct thermal_cooling_device *cdev)
1277 {
1278 	struct thermal_instance *instance;
1279 	unsigned long target = 0;
1280 
1281 	/* cooling device is updated*/
1282 	if (cdev->updated)
1283 		return;
1284 
1285 	mutex_lock(&cdev->lock);
1286 	/* Make sure cdev enters the deepest cooling state */
1287 	list_for_each_entry(instance, &cdev->thermal_instances, cdev_node) {
1288 		dev_dbg(&cdev->device, "zone%d->target=%lu\n",
1289 				instance->tz->id, instance->target);
1290 		if (instance->target == THERMAL_NO_TARGET)
1291 			continue;
1292 		if (instance->target > target)
1293 			target = instance->target;
1294 	}
1295 	mutex_unlock(&cdev->lock);
1296 	cdev->ops->set_cur_state(cdev, target);
1297 	cdev->updated = true;
1298 	trace_cdev_update(cdev, target);
1299 	dev_dbg(&cdev->device, "set to state %lu\n", target);
1300 }
1301 EXPORT_SYMBOL(thermal_cdev_update);
1302 
1303 /**
1304  * thermal_notify_framework - Sensor drivers use this API to notify framework
1305  * @tz:		thermal zone device
1306  * @trip:	indicates which trip point has been crossed
1307  *
1308  * This function handles the trip events from sensor drivers. It starts
1309  * throttling the cooling devices according to the policy configured.
1310  * For CRITICAL and HOT trip points, this notifies the respective drivers,
1311  * and does actual throttling for other trip points i.e ACTIVE and PASSIVE.
1312  * The throttling policy is based on the configured platform data; if no
1313  * platform data is provided, this uses the step_wise throttling policy.
1314  */
1315 void thermal_notify_framework(struct thermal_zone_device *tz, int trip)
1316 {
1317 	handle_thermal_trip(tz, trip);
1318 }
1319 EXPORT_SYMBOL_GPL(thermal_notify_framework);
1320 
1321 /**
1322  * create_trip_attrs() - create attributes for trip points
1323  * @tz:		the thermal zone device
1324  * @mask:	Writeable trip point bitmap.
1325  *
1326  * helper function to instantiate sysfs entries for every trip
1327  * point and its properties of a struct thermal_zone_device.
1328  *
1329  * Return: 0 on success, the proper error value otherwise.
1330  */
1331 static int create_trip_attrs(struct thermal_zone_device *tz, int mask)
1332 {
1333 	int indx;
1334 	int size = sizeof(struct thermal_attr) * tz->trips;
1335 
1336 	tz->trip_type_attrs = kzalloc(size, GFP_KERNEL);
1337 	if (!tz->trip_type_attrs)
1338 		return -ENOMEM;
1339 
1340 	tz->trip_temp_attrs = kzalloc(size, GFP_KERNEL);
1341 	if (!tz->trip_temp_attrs) {
1342 		kfree(tz->trip_type_attrs);
1343 		return -ENOMEM;
1344 	}
1345 
1346 	if (tz->ops->get_trip_hyst) {
1347 		tz->trip_hyst_attrs = kzalloc(size, GFP_KERNEL);
1348 		if (!tz->trip_hyst_attrs) {
1349 			kfree(tz->trip_type_attrs);
1350 			kfree(tz->trip_temp_attrs);
1351 			return -ENOMEM;
1352 		}
1353 	}
1354 
1355 
1356 	for (indx = 0; indx < tz->trips; indx++) {
1357 		/* create trip type attribute */
1358 		snprintf(tz->trip_type_attrs[indx].name, THERMAL_NAME_LENGTH,
1359 			 "trip_point_%d_type", indx);
1360 
1361 		sysfs_attr_init(&tz->trip_type_attrs[indx].attr.attr);
1362 		tz->trip_type_attrs[indx].attr.attr.name =
1363 						tz->trip_type_attrs[indx].name;
1364 		tz->trip_type_attrs[indx].attr.attr.mode = S_IRUGO;
1365 		tz->trip_type_attrs[indx].attr.show = trip_point_type_show;
1366 
1367 		device_create_file(&tz->device,
1368 				   &tz->trip_type_attrs[indx].attr);
1369 
1370 		/* create trip temp attribute */
1371 		snprintf(tz->trip_temp_attrs[indx].name, THERMAL_NAME_LENGTH,
1372 			 "trip_point_%d_temp", indx);
1373 
1374 		sysfs_attr_init(&tz->trip_temp_attrs[indx].attr.attr);
1375 		tz->trip_temp_attrs[indx].attr.attr.name =
1376 						tz->trip_temp_attrs[indx].name;
1377 		tz->trip_temp_attrs[indx].attr.attr.mode = S_IRUGO;
1378 		tz->trip_temp_attrs[indx].attr.show = trip_point_temp_show;
1379 		if (mask & (1 << indx)) {
1380 			tz->trip_temp_attrs[indx].attr.attr.mode |= S_IWUSR;
1381 			tz->trip_temp_attrs[indx].attr.store =
1382 							trip_point_temp_store;
1383 		}
1384 
1385 		device_create_file(&tz->device,
1386 				   &tz->trip_temp_attrs[indx].attr);
1387 
1388 		/* create Optional trip hyst attribute */
1389 		if (!tz->ops->get_trip_hyst)
1390 			continue;
1391 		snprintf(tz->trip_hyst_attrs[indx].name, THERMAL_NAME_LENGTH,
1392 			 "trip_point_%d_hyst", indx);
1393 
1394 		sysfs_attr_init(&tz->trip_hyst_attrs[indx].attr.attr);
1395 		tz->trip_hyst_attrs[indx].attr.attr.name =
1396 					tz->trip_hyst_attrs[indx].name;
1397 		tz->trip_hyst_attrs[indx].attr.attr.mode = S_IRUGO;
1398 		tz->trip_hyst_attrs[indx].attr.show = trip_point_hyst_show;
1399 		if (tz->ops->set_trip_hyst) {
1400 			tz->trip_hyst_attrs[indx].attr.attr.mode |= S_IWUSR;
1401 			tz->trip_hyst_attrs[indx].attr.store =
1402 					trip_point_hyst_store;
1403 		}
1404 
1405 		device_create_file(&tz->device,
1406 				   &tz->trip_hyst_attrs[indx].attr);
1407 	}
1408 	return 0;
1409 }
1410 
1411 static void remove_trip_attrs(struct thermal_zone_device *tz)
1412 {
1413 	int indx;
1414 
1415 	for (indx = 0; indx < tz->trips; indx++) {
1416 		device_remove_file(&tz->device,
1417 				   &tz->trip_type_attrs[indx].attr);
1418 		device_remove_file(&tz->device,
1419 				   &tz->trip_temp_attrs[indx].attr);
1420 		if (tz->ops->get_trip_hyst)
1421 			device_remove_file(&tz->device,
1422 				  &tz->trip_hyst_attrs[indx].attr);
1423 	}
1424 	kfree(tz->trip_type_attrs);
1425 	kfree(tz->trip_temp_attrs);
1426 	kfree(tz->trip_hyst_attrs);
1427 }
1428 
1429 /**
1430  * thermal_zone_device_register() - register a new thermal zone device
1431  * @type:	the thermal zone device type
1432  * @trips:	the number of trip points the thermal zone support
1433  * @mask:	a bit string indicating the writeablility of trip points
1434  * @devdata:	private device data
1435  * @ops:	standard thermal zone device callbacks
1436  * @tzp:	thermal zone platform parameters
1437  * @passive_delay: number of milliseconds to wait between polls when
1438  *		   performing passive cooling
1439  * @polling_delay: number of milliseconds to wait between polls when checking
1440  *		   whether trip points have been crossed (0 for interrupt
1441  *		   driven systems)
1442  *
1443  * This interface function adds a new thermal zone device (sensor) to
1444  * /sys/class/thermal folder as thermal_zone[0-*]. It tries to bind all the
1445  * thermal cooling devices registered at the same time.
1446  * thermal_zone_device_unregister() must be called when the device is no
1447  * longer needed. The passive cooling depends on the .get_trend() return value.
1448  *
1449  * Return: a pointer to the created struct thermal_zone_device or an
1450  * in case of error, an ERR_PTR. Caller must check return value with
1451  * IS_ERR*() helpers.
1452  */
1453 struct thermal_zone_device *thermal_zone_device_register(const char *type,
1454 	int trips, int mask, void *devdata,
1455 	struct thermal_zone_device_ops *ops,
1456 	const struct thermal_zone_params *tzp,
1457 	int passive_delay, int polling_delay)
1458 {
1459 	struct thermal_zone_device *tz;
1460 	enum thermal_trip_type trip_type;
1461 	int result;
1462 	int count;
1463 	int passive = 0;
1464 
1465 	if (type && strlen(type) >= THERMAL_NAME_LENGTH)
1466 		return ERR_PTR(-EINVAL);
1467 
1468 	if (trips > THERMAL_MAX_TRIPS || trips < 0 || mask >> trips)
1469 		return ERR_PTR(-EINVAL);
1470 
1471 	if (!ops)
1472 		return ERR_PTR(-EINVAL);
1473 
1474 	if (trips > 0 && (!ops->get_trip_type || !ops->get_trip_temp))
1475 		return ERR_PTR(-EINVAL);
1476 
1477 	tz = kzalloc(sizeof(struct thermal_zone_device), GFP_KERNEL);
1478 	if (!tz)
1479 		return ERR_PTR(-ENOMEM);
1480 
1481 	INIT_LIST_HEAD(&tz->thermal_instances);
1482 	idr_init(&tz->idr);
1483 	mutex_init(&tz->lock);
1484 	result = get_idr(&thermal_tz_idr, &thermal_idr_lock, &tz->id);
1485 	if (result) {
1486 		kfree(tz);
1487 		return ERR_PTR(result);
1488 	}
1489 
1490 	strlcpy(tz->type, type ? : "", sizeof(tz->type));
1491 	tz->ops = ops;
1492 	tz->tzp = tzp;
1493 	tz->device.class = &thermal_class;
1494 	tz->devdata = devdata;
1495 	tz->trips = trips;
1496 	tz->passive_delay = passive_delay;
1497 	tz->polling_delay = polling_delay;
1498 
1499 	dev_set_name(&tz->device, "thermal_zone%d", tz->id);
1500 	result = device_register(&tz->device);
1501 	if (result) {
1502 		release_idr(&thermal_tz_idr, &thermal_idr_lock, tz->id);
1503 		kfree(tz);
1504 		return ERR_PTR(result);
1505 	}
1506 
1507 	/* sys I/F */
1508 	if (type) {
1509 		result = device_create_file(&tz->device, &dev_attr_type);
1510 		if (result)
1511 			goto unregister;
1512 	}
1513 
1514 	result = device_create_file(&tz->device, &dev_attr_temp);
1515 	if (result)
1516 		goto unregister;
1517 
1518 	if (ops->get_mode) {
1519 		result = device_create_file(&tz->device, &dev_attr_mode);
1520 		if (result)
1521 			goto unregister;
1522 	}
1523 
1524 	result = create_trip_attrs(tz, mask);
1525 	if (result)
1526 		goto unregister;
1527 
1528 	for (count = 0; count < trips; count++) {
1529 		tz->ops->get_trip_type(tz, count, &trip_type);
1530 		if (trip_type == THERMAL_TRIP_PASSIVE)
1531 			passive = 1;
1532 	}
1533 
1534 	if (!passive) {
1535 		result = device_create_file(&tz->device, &dev_attr_passive);
1536 		if (result)
1537 			goto unregister;
1538 	}
1539 
1540 #ifdef CONFIG_THERMAL_EMULATION
1541 	result = device_create_file(&tz->device, &dev_attr_emul_temp);
1542 	if (result)
1543 		goto unregister;
1544 #endif
1545 	/* Create policy attribute */
1546 	result = device_create_file(&tz->device, &dev_attr_policy);
1547 	if (result)
1548 		goto unregister;
1549 
1550 	/* Update 'this' zone's governor information */
1551 	mutex_lock(&thermal_governor_lock);
1552 
1553 	if (tz->tzp)
1554 		tz->governor = __find_governor(tz->tzp->governor_name);
1555 	else
1556 		tz->governor = def_governor;
1557 
1558 	mutex_unlock(&thermal_governor_lock);
1559 
1560 	if (!tz->tzp || !tz->tzp->no_hwmon) {
1561 		result = thermal_add_hwmon_sysfs(tz);
1562 		if (result)
1563 			goto unregister;
1564 	}
1565 
1566 	mutex_lock(&thermal_list_lock);
1567 	list_add_tail(&tz->node, &thermal_tz_list);
1568 	mutex_unlock(&thermal_list_lock);
1569 
1570 	/* Bind cooling devices for this zone */
1571 	bind_tz(tz);
1572 
1573 	INIT_DELAYED_WORK(&(tz->poll_queue), thermal_zone_device_check);
1574 
1575 	if (!tz->ops->get_temp)
1576 		thermal_zone_device_set_polling(tz, 0);
1577 
1578 	thermal_zone_device_update(tz);
1579 
1580 	return tz;
1581 
1582 unregister:
1583 	release_idr(&thermal_tz_idr, &thermal_idr_lock, tz->id);
1584 	device_unregister(&tz->device);
1585 	return ERR_PTR(result);
1586 }
1587 EXPORT_SYMBOL_GPL(thermal_zone_device_register);
1588 
1589 /**
1590  * thermal_device_unregister - removes the registered thermal zone device
1591  * @tz: the thermal zone device to remove
1592  */
1593 void thermal_zone_device_unregister(struct thermal_zone_device *tz)
1594 {
1595 	int i;
1596 	const struct thermal_zone_params *tzp;
1597 	struct thermal_cooling_device *cdev;
1598 	struct thermal_zone_device *pos = NULL;
1599 
1600 	if (!tz)
1601 		return;
1602 
1603 	tzp = tz->tzp;
1604 
1605 	mutex_lock(&thermal_list_lock);
1606 	list_for_each_entry(pos, &thermal_tz_list, node)
1607 	    if (pos == tz)
1608 		break;
1609 	if (pos != tz) {
1610 		/* thermal zone device not found */
1611 		mutex_unlock(&thermal_list_lock);
1612 		return;
1613 	}
1614 	list_del(&tz->node);
1615 
1616 	/* Unbind all cdevs associated with 'this' thermal zone */
1617 	list_for_each_entry(cdev, &thermal_cdev_list, node) {
1618 		if (tz->ops->unbind) {
1619 			tz->ops->unbind(tz, cdev);
1620 			continue;
1621 		}
1622 
1623 		if (!tzp || !tzp->tbp)
1624 			break;
1625 
1626 		for (i = 0; i < tzp->num_tbps; i++) {
1627 			if (tzp->tbp[i].cdev == cdev) {
1628 				__unbind(tz, tzp->tbp[i].trip_mask, cdev);
1629 				tzp->tbp[i].cdev = NULL;
1630 			}
1631 		}
1632 	}
1633 
1634 	mutex_unlock(&thermal_list_lock);
1635 
1636 	thermal_zone_device_set_polling(tz, 0);
1637 
1638 	if (tz->type[0])
1639 		device_remove_file(&tz->device, &dev_attr_type);
1640 	device_remove_file(&tz->device, &dev_attr_temp);
1641 	if (tz->ops->get_mode)
1642 		device_remove_file(&tz->device, &dev_attr_mode);
1643 	device_remove_file(&tz->device, &dev_attr_policy);
1644 	remove_trip_attrs(tz);
1645 	tz->governor = NULL;
1646 
1647 	thermal_remove_hwmon_sysfs(tz);
1648 	release_idr(&thermal_tz_idr, &thermal_idr_lock, tz->id);
1649 	idr_destroy(&tz->idr);
1650 	mutex_destroy(&tz->lock);
1651 	device_unregister(&tz->device);
1652 	return;
1653 }
1654 EXPORT_SYMBOL_GPL(thermal_zone_device_unregister);
1655 
1656 /**
1657  * thermal_zone_get_zone_by_name() - search for a zone and returns its ref
1658  * @name: thermal zone name to fetch the temperature
1659  *
1660  * When only one zone is found with the passed name, returns a reference to it.
1661  *
1662  * Return: On success returns a reference to an unique thermal zone with
1663  * matching name equals to @name, an ERR_PTR otherwise (-EINVAL for invalid
1664  * paramenters, -ENODEV for not found and -EEXIST for multiple matches).
1665  */
1666 struct thermal_zone_device *thermal_zone_get_zone_by_name(const char *name)
1667 {
1668 	struct thermal_zone_device *pos = NULL, *ref = ERR_PTR(-EINVAL);
1669 	unsigned int found = 0;
1670 
1671 	if (!name)
1672 		goto exit;
1673 
1674 	mutex_lock(&thermal_list_lock);
1675 	list_for_each_entry(pos, &thermal_tz_list, node)
1676 		if (!strncasecmp(name, pos->type, THERMAL_NAME_LENGTH)) {
1677 			found++;
1678 			ref = pos;
1679 		}
1680 	mutex_unlock(&thermal_list_lock);
1681 
1682 	/* nothing has been found, thus an error code for it */
1683 	if (found == 0)
1684 		ref = ERR_PTR(-ENODEV);
1685 	else if (found > 1)
1686 	/* Success only when an unique zone is found */
1687 		ref = ERR_PTR(-EEXIST);
1688 
1689 exit:
1690 	return ref;
1691 }
1692 EXPORT_SYMBOL_GPL(thermal_zone_get_zone_by_name);
1693 
1694 #ifdef CONFIG_NET
1695 static const struct genl_multicast_group thermal_event_mcgrps[] = {
1696 	{ .name = THERMAL_GENL_MCAST_GROUP_NAME, },
1697 };
1698 
1699 static struct genl_family thermal_event_genl_family = {
1700 	.id = GENL_ID_GENERATE,
1701 	.name = THERMAL_GENL_FAMILY_NAME,
1702 	.version = THERMAL_GENL_VERSION,
1703 	.maxattr = THERMAL_GENL_ATTR_MAX,
1704 	.mcgrps = thermal_event_mcgrps,
1705 	.n_mcgrps = ARRAY_SIZE(thermal_event_mcgrps),
1706 };
1707 
1708 int thermal_generate_netlink_event(struct thermal_zone_device *tz,
1709 					enum events event)
1710 {
1711 	struct sk_buff *skb;
1712 	struct nlattr *attr;
1713 	struct thermal_genl_event *thermal_event;
1714 	void *msg_header;
1715 	int size;
1716 	int result;
1717 	static unsigned int thermal_event_seqnum;
1718 
1719 	if (!tz)
1720 		return -EINVAL;
1721 
1722 	/* allocate memory */
1723 	size = nla_total_size(sizeof(struct thermal_genl_event)) +
1724 	       nla_total_size(0);
1725 
1726 	skb = genlmsg_new(size, GFP_ATOMIC);
1727 	if (!skb)
1728 		return -ENOMEM;
1729 
1730 	/* add the genetlink message header */
1731 	msg_header = genlmsg_put(skb, 0, thermal_event_seqnum++,
1732 				 &thermal_event_genl_family, 0,
1733 				 THERMAL_GENL_CMD_EVENT);
1734 	if (!msg_header) {
1735 		nlmsg_free(skb);
1736 		return -ENOMEM;
1737 	}
1738 
1739 	/* fill the data */
1740 	attr = nla_reserve(skb, THERMAL_GENL_ATTR_EVENT,
1741 			   sizeof(struct thermal_genl_event));
1742 
1743 	if (!attr) {
1744 		nlmsg_free(skb);
1745 		return -EINVAL;
1746 	}
1747 
1748 	thermal_event = nla_data(attr);
1749 	if (!thermal_event) {
1750 		nlmsg_free(skb);
1751 		return -EINVAL;
1752 	}
1753 
1754 	memset(thermal_event, 0, sizeof(struct thermal_genl_event));
1755 
1756 	thermal_event->orig = tz->id;
1757 	thermal_event->event = event;
1758 
1759 	/* send multicast genetlink message */
1760 	result = genlmsg_end(skb, msg_header);
1761 	if (result < 0) {
1762 		nlmsg_free(skb);
1763 		return result;
1764 	}
1765 
1766 	result = genlmsg_multicast(&thermal_event_genl_family, skb, 0,
1767 				   0, GFP_ATOMIC);
1768 	if (result)
1769 		dev_err(&tz->device, "Failed to send netlink event:%d", result);
1770 
1771 	return result;
1772 }
1773 EXPORT_SYMBOL_GPL(thermal_generate_netlink_event);
1774 
1775 static int genetlink_init(void)
1776 {
1777 	return genl_register_family(&thermal_event_genl_family);
1778 }
1779 
1780 static void genetlink_exit(void)
1781 {
1782 	genl_unregister_family(&thermal_event_genl_family);
1783 }
1784 #else /* !CONFIG_NET */
1785 static inline int genetlink_init(void) { return 0; }
1786 static inline void genetlink_exit(void) {}
1787 #endif /* !CONFIG_NET */
1788 
1789 static int __init thermal_register_governors(void)
1790 {
1791 	int result;
1792 
1793 	result = thermal_gov_step_wise_register();
1794 	if (result)
1795 		return result;
1796 
1797 	result = thermal_gov_fair_share_register();
1798 	if (result)
1799 		return result;
1800 
1801 	result = thermal_gov_bang_bang_register();
1802 	if (result)
1803 		return result;
1804 
1805 	return thermal_gov_user_space_register();
1806 }
1807 
1808 static void thermal_unregister_governors(void)
1809 {
1810 	thermal_gov_step_wise_unregister();
1811 	thermal_gov_fair_share_unregister();
1812 	thermal_gov_bang_bang_unregister();
1813 	thermal_gov_user_space_unregister();
1814 }
1815 
1816 static int __init thermal_init(void)
1817 {
1818 	int result;
1819 
1820 	result = thermal_register_governors();
1821 	if (result)
1822 		goto error;
1823 
1824 	result = class_register(&thermal_class);
1825 	if (result)
1826 		goto unregister_governors;
1827 
1828 	result = genetlink_init();
1829 	if (result)
1830 		goto unregister_class;
1831 
1832 	result = of_parse_thermal_zones();
1833 	if (result)
1834 		goto exit_netlink;
1835 
1836 	return 0;
1837 
1838 exit_netlink:
1839 	genetlink_exit();
1840 unregister_class:
1841 	class_unregister(&thermal_class);
1842 unregister_governors:
1843 	thermal_unregister_governors();
1844 error:
1845 	idr_destroy(&thermal_tz_idr);
1846 	idr_destroy(&thermal_cdev_idr);
1847 	mutex_destroy(&thermal_idr_lock);
1848 	mutex_destroy(&thermal_list_lock);
1849 	mutex_destroy(&thermal_governor_lock);
1850 	return result;
1851 }
1852 
1853 static void __exit thermal_exit(void)
1854 {
1855 	of_thermal_destroy_zones();
1856 	genetlink_exit();
1857 	class_unregister(&thermal_class);
1858 	thermal_unregister_governors();
1859 	idr_destroy(&thermal_tz_idr);
1860 	idr_destroy(&thermal_cdev_idr);
1861 	mutex_destroy(&thermal_idr_lock);
1862 	mutex_destroy(&thermal_list_lock);
1863 	mutex_destroy(&thermal_governor_lock);
1864 }
1865 
1866 fs_initcall(thermal_init);
1867 module_exit(thermal_exit);
1868