ceph: use i_size_{read,write} to get/set i_size
[linux/fpc-iii.git] / drivers / thermal / of-thermal.c
blobbe4eedcb839ac22158fe180c2abc37df712d9511
1 /*
2 * of-thermal.c - Generic Thermal Management device tree support.
4 * Copyright (C) 2013 Texas Instruments
5 * Copyright (C) 2013 Eduardo Valentin <eduardo.valentin@ti.com>
8 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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.
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.
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.
23 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
25 #include <linux/thermal.h>
26 #include <linux/slab.h>
27 #include <linux/types.h>
28 #include <linux/of_device.h>
29 #include <linux/of_platform.h>
30 #include <linux/err.h>
31 #include <linux/export.h>
32 #include <linux/string.h>
33 #include <linux/thermal.h>
35 #include "thermal_core.h"
37 /*** Private data structures to represent thermal device tree data ***/
39 /**
40 * struct __thermal_bind_param - a match between trip and cooling device
41 * @cooling_device: a pointer to identify the referred cooling device
42 * @trip_id: the trip point index
43 * @usage: the percentage (from 0 to 100) of cooling contribution
44 * @min: minimum cooling state used at this trip point
45 * @max: maximum cooling state used at this trip point
48 struct __thermal_bind_params {
49 struct device_node *cooling_device;
50 unsigned int trip_id;
51 unsigned int usage;
52 unsigned long min;
53 unsigned long max;
56 /**
57 * struct __thermal_zone - internal representation of a thermal zone
58 * @mode: current thermal zone device mode (enabled/disabled)
59 * @passive_delay: polling interval while passive cooling is activated
60 * @polling_delay: zone polling interval
61 * @slope: slope of the temperature adjustment curve
62 * @offset: offset of the temperature adjustment curve
63 * @ntrips: number of trip points
64 * @trips: an array of trip points (0..ntrips - 1)
65 * @num_tbps: number of thermal bind params
66 * @tbps: an array of thermal bind params (0..num_tbps - 1)
67 * @sensor_data: sensor private data used while reading temperature and trend
68 * @ops: set of callbacks to handle the thermal zone based on DT
71 struct __thermal_zone {
72 enum thermal_device_mode mode;
73 int passive_delay;
74 int polling_delay;
75 int slope;
76 int offset;
78 /* trip data */
79 int ntrips;
80 struct thermal_trip *trips;
82 /* cooling binding data */
83 int num_tbps;
84 struct __thermal_bind_params *tbps;
86 /* sensor interface */
87 void *sensor_data;
88 const struct thermal_zone_of_device_ops *ops;
91 /*** DT thermal zone device callbacks ***/
93 static int of_thermal_get_temp(struct thermal_zone_device *tz,
94 int *temp)
96 struct __thermal_zone *data = tz->devdata;
98 if (!data->ops->get_temp)
99 return -EINVAL;
101 return data->ops->get_temp(data->sensor_data, temp);
105 * of_thermal_get_ntrips - function to export number of available trip
106 * points.
107 * @tz: pointer to a thermal zone
109 * This function is a globally visible wrapper to get number of trip points
110 * stored in the local struct __thermal_zone
112 * Return: number of available trip points, -ENODEV when data not available
114 int of_thermal_get_ntrips(struct thermal_zone_device *tz)
116 struct __thermal_zone *data = tz->devdata;
118 if (!data || IS_ERR(data))
119 return -ENODEV;
121 return data->ntrips;
123 EXPORT_SYMBOL_GPL(of_thermal_get_ntrips);
126 * of_thermal_is_trip_valid - function to check if trip point is valid
128 * @tz: pointer to a thermal zone
129 * @trip: trip point to evaluate
131 * This function is responsible for checking if passed trip point is valid
133 * Return: true if trip point is valid, false otherwise
135 bool of_thermal_is_trip_valid(struct thermal_zone_device *tz, int trip)
137 struct __thermal_zone *data = tz->devdata;
139 if (!data || trip >= data->ntrips || trip < 0)
140 return false;
142 return true;
144 EXPORT_SYMBOL_GPL(of_thermal_is_trip_valid);
147 * of_thermal_get_trip_points - function to get access to a globally exported
148 * trip points
150 * @tz: pointer to a thermal zone
152 * This function provides a pointer to trip points table
154 * Return: pointer to trip points table, NULL otherwise
156 const struct thermal_trip *
157 of_thermal_get_trip_points(struct thermal_zone_device *tz)
159 struct __thermal_zone *data = tz->devdata;
161 if (!data)
162 return NULL;
164 return data->trips;
166 EXPORT_SYMBOL_GPL(of_thermal_get_trip_points);
169 * of_thermal_set_emul_temp - function to set emulated temperature
171 * @tz: pointer to a thermal zone
172 * @temp: temperature to set
174 * This function gives the ability to set emulated value of temperature,
175 * which is handy for debugging
177 * Return: zero on success, error code otherwise
179 static int of_thermal_set_emul_temp(struct thermal_zone_device *tz,
180 int temp)
182 struct __thermal_zone *data = tz->devdata;
184 if (!data->ops || !data->ops->set_emul_temp)
185 return -EINVAL;
187 return data->ops->set_emul_temp(data->sensor_data, temp);
190 static int of_thermal_get_trend(struct thermal_zone_device *tz, int trip,
191 enum thermal_trend *trend)
193 struct __thermal_zone *data = tz->devdata;
194 long dev_trend;
195 int r;
197 if (!data->ops->get_trend)
198 return -EINVAL;
200 r = data->ops->get_trend(data->sensor_data, &dev_trend);
201 if (r)
202 return r;
204 /* TODO: These intervals might have some thresholds, but in core code */
205 if (dev_trend > 0)
206 *trend = THERMAL_TREND_RAISING;
207 else if (dev_trend < 0)
208 *trend = THERMAL_TREND_DROPPING;
209 else
210 *trend = THERMAL_TREND_STABLE;
212 return 0;
215 static int of_thermal_bind(struct thermal_zone_device *thermal,
216 struct thermal_cooling_device *cdev)
218 struct __thermal_zone *data = thermal->devdata;
219 int i;
221 if (!data || IS_ERR(data))
222 return -ENODEV;
224 /* find where to bind */
225 for (i = 0; i < data->num_tbps; i++) {
226 struct __thermal_bind_params *tbp = data->tbps + i;
228 if (tbp->cooling_device == cdev->np) {
229 int ret;
231 ret = thermal_zone_bind_cooling_device(thermal,
232 tbp->trip_id, cdev,
233 tbp->max,
234 tbp->min,
235 tbp->usage);
236 if (ret)
237 return ret;
241 return 0;
244 static int of_thermal_unbind(struct thermal_zone_device *thermal,
245 struct thermal_cooling_device *cdev)
247 struct __thermal_zone *data = thermal->devdata;
248 int i;
250 if (!data || IS_ERR(data))
251 return -ENODEV;
253 /* find where to unbind */
254 for (i = 0; i < data->num_tbps; i++) {
255 struct __thermal_bind_params *tbp = data->tbps + i;
257 if (tbp->cooling_device == cdev->np) {
258 int ret;
260 ret = thermal_zone_unbind_cooling_device(thermal,
261 tbp->trip_id, cdev);
262 if (ret)
263 return ret;
267 return 0;
270 static int of_thermal_get_mode(struct thermal_zone_device *tz,
271 enum thermal_device_mode *mode)
273 struct __thermal_zone *data = tz->devdata;
275 *mode = data->mode;
277 return 0;
280 static int of_thermal_set_mode(struct thermal_zone_device *tz,
281 enum thermal_device_mode mode)
283 struct __thermal_zone *data = tz->devdata;
285 mutex_lock(&tz->lock);
287 if (mode == THERMAL_DEVICE_ENABLED)
288 tz->polling_delay = data->polling_delay;
289 else
290 tz->polling_delay = 0;
292 mutex_unlock(&tz->lock);
294 data->mode = mode;
295 thermal_zone_device_update(tz);
297 return 0;
300 static int of_thermal_get_trip_type(struct thermal_zone_device *tz, int trip,
301 enum thermal_trip_type *type)
303 struct __thermal_zone *data = tz->devdata;
305 if (trip >= data->ntrips || trip < 0)
306 return -EDOM;
308 *type = data->trips[trip].type;
310 return 0;
313 static int of_thermal_get_trip_temp(struct thermal_zone_device *tz, int trip,
314 int *temp)
316 struct __thermal_zone *data = tz->devdata;
318 if (trip >= data->ntrips || trip < 0)
319 return -EDOM;
321 *temp = data->trips[trip].temperature;
323 return 0;
326 static int of_thermal_set_trip_temp(struct thermal_zone_device *tz, int trip,
327 int temp)
329 struct __thermal_zone *data = tz->devdata;
331 if (trip >= data->ntrips || trip < 0)
332 return -EDOM;
334 /* thermal framework should take care of data->mask & (1 << trip) */
335 data->trips[trip].temperature = temp;
337 return 0;
340 static int of_thermal_get_trip_hyst(struct thermal_zone_device *tz, int trip,
341 int *hyst)
343 struct __thermal_zone *data = tz->devdata;
345 if (trip >= data->ntrips || trip < 0)
346 return -EDOM;
348 *hyst = data->trips[trip].hysteresis;
350 return 0;
353 static int of_thermal_set_trip_hyst(struct thermal_zone_device *tz, int trip,
354 int hyst)
356 struct __thermal_zone *data = tz->devdata;
358 if (trip >= data->ntrips || trip < 0)
359 return -EDOM;
361 /* thermal framework should take care of data->mask & (1 << trip) */
362 data->trips[trip].hysteresis = hyst;
364 return 0;
367 static int of_thermal_get_crit_temp(struct thermal_zone_device *tz,
368 int *temp)
370 struct __thermal_zone *data = tz->devdata;
371 int i;
373 for (i = 0; i < data->ntrips; i++)
374 if (data->trips[i].type == THERMAL_TRIP_CRITICAL) {
375 *temp = data->trips[i].temperature;
376 return 0;
379 return -EINVAL;
382 static struct thermal_zone_device_ops of_thermal_ops = {
383 .get_mode = of_thermal_get_mode,
384 .set_mode = of_thermal_set_mode,
386 .get_trip_type = of_thermal_get_trip_type,
387 .get_trip_temp = of_thermal_get_trip_temp,
388 .set_trip_temp = of_thermal_set_trip_temp,
389 .get_trip_hyst = of_thermal_get_trip_hyst,
390 .set_trip_hyst = of_thermal_set_trip_hyst,
391 .get_crit_temp = of_thermal_get_crit_temp,
393 .bind = of_thermal_bind,
394 .unbind = of_thermal_unbind,
397 /*** sensor API ***/
399 static struct thermal_zone_device *
400 thermal_zone_of_add_sensor(struct device_node *zone,
401 struct device_node *sensor, void *data,
402 const struct thermal_zone_of_device_ops *ops)
404 struct thermal_zone_device *tzd;
405 struct __thermal_zone *tz;
407 tzd = thermal_zone_get_zone_by_name(zone->name);
408 if (IS_ERR(tzd))
409 return ERR_PTR(-EPROBE_DEFER);
411 tz = tzd->devdata;
413 if (!ops)
414 return ERR_PTR(-EINVAL);
416 mutex_lock(&tzd->lock);
417 tz->ops = ops;
418 tz->sensor_data = data;
420 tzd->ops->get_temp = of_thermal_get_temp;
421 tzd->ops->get_trend = of_thermal_get_trend;
422 tzd->ops->set_emul_temp = of_thermal_set_emul_temp;
423 mutex_unlock(&tzd->lock);
425 return tzd;
429 * thermal_zone_of_sensor_register - registers a sensor to a DT thermal zone
430 * @dev: a valid struct device pointer of a sensor device. Must contain
431 * a valid .of_node, for the sensor node.
432 * @sensor_id: a sensor identifier, in case the sensor IP has more
433 * than one sensors
434 * @data: a private pointer (owned by the caller) that will be passed
435 * back, when a temperature reading is needed.
436 * @ops: struct thermal_zone_of_device_ops *. Must contain at least .get_temp.
438 * This function will search the list of thermal zones described in device
439 * tree and look for the zone that refer to the sensor device pointed by
440 * @dev->of_node as temperature providers. For the zone pointing to the
441 * sensor node, the sensor will be added to the DT thermal zone device.
443 * The thermal zone temperature is provided by the @get_temp function
444 * pointer. When called, it will have the private pointer @data back.
446 * The thermal zone temperature trend is provided by the @get_trend function
447 * pointer. When called, it will have the private pointer @data back.
449 * TODO:
450 * 01 - This function must enqueue the new sensor instead of using
451 * it as the only source of temperature values.
453 * 02 - There must be a way to match the sensor with all thermal zones
454 * that refer to it.
456 * Return: On success returns a valid struct thermal_zone_device,
457 * otherwise, it returns a corresponding ERR_PTR(). Caller must
458 * check the return value with help of IS_ERR() helper.
460 struct thermal_zone_device *
461 thermal_zone_of_sensor_register(struct device *dev, int sensor_id, void *data,
462 const struct thermal_zone_of_device_ops *ops)
464 struct device_node *np, *child, *sensor_np;
465 struct thermal_zone_device *tzd = ERR_PTR(-ENODEV);
467 np = of_find_node_by_name(NULL, "thermal-zones");
468 if (!np)
469 return ERR_PTR(-ENODEV);
471 if (!dev || !dev->of_node) {
472 of_node_put(np);
473 return ERR_PTR(-EINVAL);
476 sensor_np = of_node_get(dev->of_node);
478 for_each_child_of_node(np, child) {
479 struct of_phandle_args sensor_specs;
480 int ret, id;
482 /* Check whether child is enabled or not */
483 if (!of_device_is_available(child))
484 continue;
486 /* For now, thermal framework supports only 1 sensor per zone */
487 ret = of_parse_phandle_with_args(child, "thermal-sensors",
488 "#thermal-sensor-cells",
489 0, &sensor_specs);
490 if (ret)
491 continue;
493 if (sensor_specs.args_count >= 1) {
494 id = sensor_specs.args[0];
495 WARN(sensor_specs.args_count > 1,
496 "%s: too many cells in sensor specifier %d\n",
497 sensor_specs.np->name, sensor_specs.args_count);
498 } else {
499 id = 0;
502 if (sensor_specs.np == sensor_np && id == sensor_id) {
503 tzd = thermal_zone_of_add_sensor(child, sensor_np,
504 data, ops);
505 if (!IS_ERR(tzd))
506 tzd->ops->set_mode(tzd, THERMAL_DEVICE_ENABLED);
508 of_node_put(sensor_specs.np);
509 of_node_put(child);
510 goto exit;
512 of_node_put(sensor_specs.np);
514 exit:
515 of_node_put(sensor_np);
516 of_node_put(np);
518 return tzd;
520 EXPORT_SYMBOL_GPL(thermal_zone_of_sensor_register);
523 * thermal_zone_of_sensor_unregister - unregisters a sensor from a DT thermal zone
524 * @dev: a valid struct device pointer of a sensor device. Must contain
525 * a valid .of_node, for the sensor node.
526 * @tzd: a pointer to struct thermal_zone_device where the sensor is registered.
528 * This function removes the sensor callbacks and private data from the
529 * thermal zone device registered with thermal_zone_of_sensor_register()
530 * API. It will also silent the zone by remove the .get_temp() and .get_trend()
531 * thermal zone device callbacks.
533 * TODO: When the support to several sensors per zone is added, this
534 * function must search the sensor list based on @dev parameter.
537 void thermal_zone_of_sensor_unregister(struct device *dev,
538 struct thermal_zone_device *tzd)
540 struct __thermal_zone *tz;
542 if (!dev || !tzd || !tzd->devdata)
543 return;
545 tz = tzd->devdata;
547 /* no __thermal_zone, nothing to be done */
548 if (!tz)
549 return;
551 mutex_lock(&tzd->lock);
552 tzd->ops->get_temp = NULL;
553 tzd->ops->get_trend = NULL;
554 tzd->ops->set_emul_temp = NULL;
556 tz->ops = NULL;
557 tz->sensor_data = NULL;
558 mutex_unlock(&tzd->lock);
560 EXPORT_SYMBOL_GPL(thermal_zone_of_sensor_unregister);
562 /*** functions parsing device tree nodes ***/
565 * thermal_of_populate_bind_params - parse and fill cooling map data
566 * @np: DT node containing a cooling-map node
567 * @__tbp: data structure to be filled with cooling map info
568 * @trips: array of thermal zone trip points
569 * @ntrips: number of trip points inside trips.
571 * This function parses a cooling-map type of node represented by
572 * @np parameter and fills the read data into @__tbp data structure.
573 * It needs the already parsed array of trip points of the thermal zone
574 * in consideration.
576 * Return: 0 on success, proper error code otherwise
578 static int thermal_of_populate_bind_params(struct device_node *np,
579 struct __thermal_bind_params *__tbp,
580 struct thermal_trip *trips,
581 int ntrips)
583 struct of_phandle_args cooling_spec;
584 struct device_node *trip;
585 int ret, i;
586 u32 prop;
588 /* Default weight. Usage is optional */
589 __tbp->usage = THERMAL_WEIGHT_DEFAULT;
590 ret = of_property_read_u32(np, "contribution", &prop);
591 if (ret == 0)
592 __tbp->usage = prop;
594 trip = of_parse_phandle(np, "trip", 0);
595 if (!trip) {
596 pr_err("missing trip property\n");
597 return -ENODEV;
600 /* match using device_node */
601 for (i = 0; i < ntrips; i++)
602 if (trip == trips[i].np) {
603 __tbp->trip_id = i;
604 break;
607 if (i == ntrips) {
608 ret = -ENODEV;
609 goto end;
612 ret = of_parse_phandle_with_args(np, "cooling-device", "#cooling-cells",
613 0, &cooling_spec);
614 if (ret < 0) {
615 pr_err("missing cooling_device property\n");
616 goto end;
618 __tbp->cooling_device = cooling_spec.np;
619 if (cooling_spec.args_count >= 2) { /* at least min and max */
620 __tbp->min = cooling_spec.args[0];
621 __tbp->max = cooling_spec.args[1];
622 } else {
623 pr_err("wrong reference to cooling device, missing limits\n");
626 end:
627 of_node_put(trip);
629 return ret;
633 * It maps 'enum thermal_trip_type' found in include/linux/thermal.h
634 * into the device tree binding of 'trip', property type.
636 static const char * const trip_types[] = {
637 [THERMAL_TRIP_ACTIVE] = "active",
638 [THERMAL_TRIP_PASSIVE] = "passive",
639 [THERMAL_TRIP_HOT] = "hot",
640 [THERMAL_TRIP_CRITICAL] = "critical",
644 * thermal_of_get_trip_type - Get phy mode for given device_node
645 * @np: Pointer to the given device_node
646 * @type: Pointer to resulting trip type
648 * The function gets trip type string from property 'type',
649 * and store its index in trip_types table in @type,
651 * Return: 0 on success, or errno in error case.
653 static int thermal_of_get_trip_type(struct device_node *np,
654 enum thermal_trip_type *type)
656 const char *t;
657 int err, i;
659 err = of_property_read_string(np, "type", &t);
660 if (err < 0)
661 return err;
663 for (i = 0; i < ARRAY_SIZE(trip_types); i++)
664 if (!strcasecmp(t, trip_types[i])) {
665 *type = i;
666 return 0;
669 return -ENODEV;
673 * thermal_of_populate_trip - parse and fill one trip point data
674 * @np: DT node containing a trip point node
675 * @trip: trip point data structure to be filled up
677 * This function parses a trip point type of node represented by
678 * @np parameter and fills the read data into @trip data structure.
680 * Return: 0 on success, proper error code otherwise
682 static int thermal_of_populate_trip(struct device_node *np,
683 struct thermal_trip *trip)
685 int prop;
686 int ret;
688 ret = of_property_read_u32(np, "temperature", &prop);
689 if (ret < 0) {
690 pr_err("missing temperature property\n");
691 return ret;
693 trip->temperature = prop;
695 ret = of_property_read_u32(np, "hysteresis", &prop);
696 if (ret < 0) {
697 pr_err("missing hysteresis property\n");
698 return ret;
700 trip->hysteresis = prop;
702 ret = thermal_of_get_trip_type(np, &trip->type);
703 if (ret < 0) {
704 pr_err("wrong trip type property\n");
705 return ret;
708 /* Required for cooling map matching */
709 trip->np = np;
710 of_node_get(np);
712 return 0;
716 * thermal_of_build_thermal_zone - parse and fill one thermal zone data
717 * @np: DT node containing a thermal zone node
719 * This function parses a thermal zone type of node represented by
720 * @np parameter and fills the read data into a __thermal_zone data structure
721 * and return this pointer.
723 * TODO: Missing properties to parse: thermal-sensor-names
725 * Return: On success returns a valid struct __thermal_zone,
726 * otherwise, it returns a corresponding ERR_PTR(). Caller must
727 * check the return value with help of IS_ERR() helper.
729 static struct __thermal_zone *
730 thermal_of_build_thermal_zone(struct device_node *np)
732 struct device_node *child = NULL, *gchild;
733 struct __thermal_zone *tz;
734 int ret, i;
735 u32 prop, coef[2];
737 if (!np) {
738 pr_err("no thermal zone np\n");
739 return ERR_PTR(-EINVAL);
742 tz = kzalloc(sizeof(*tz), GFP_KERNEL);
743 if (!tz)
744 return ERR_PTR(-ENOMEM);
746 ret = of_property_read_u32(np, "polling-delay-passive", &prop);
747 if (ret < 0) {
748 pr_err("missing polling-delay-passive property\n");
749 goto free_tz;
751 tz->passive_delay = prop;
753 ret = of_property_read_u32(np, "polling-delay", &prop);
754 if (ret < 0) {
755 pr_err("missing polling-delay property\n");
756 goto free_tz;
758 tz->polling_delay = prop;
761 * REVIST: for now, the thermal framework supports only
762 * one sensor per thermal zone. Thus, we are considering
763 * only the first two values as slope and offset.
765 ret = of_property_read_u32_array(np, "coefficients", coef, 2);
766 if (ret == 0) {
767 tz->slope = coef[0];
768 tz->offset = coef[1];
769 } else {
770 tz->slope = 1;
771 tz->offset = 0;
774 /* trips */
775 child = of_get_child_by_name(np, "trips");
777 /* No trips provided */
778 if (!child)
779 goto finish;
781 tz->ntrips = of_get_child_count(child);
782 if (tz->ntrips == 0) /* must have at least one child */
783 goto finish;
785 tz->trips = kzalloc(tz->ntrips * sizeof(*tz->trips), GFP_KERNEL);
786 if (!tz->trips) {
787 ret = -ENOMEM;
788 goto free_tz;
791 i = 0;
792 for_each_child_of_node(child, gchild) {
793 ret = thermal_of_populate_trip(gchild, &tz->trips[i++]);
794 if (ret)
795 goto free_trips;
798 of_node_put(child);
800 /* cooling-maps */
801 child = of_get_child_by_name(np, "cooling-maps");
803 /* cooling-maps not provided */
804 if (!child)
805 goto finish;
807 tz->num_tbps = of_get_child_count(child);
808 if (tz->num_tbps == 0)
809 goto finish;
811 tz->tbps = kzalloc(tz->num_tbps * sizeof(*tz->tbps), GFP_KERNEL);
812 if (!tz->tbps) {
813 ret = -ENOMEM;
814 goto free_trips;
817 i = 0;
818 for_each_child_of_node(child, gchild) {
819 ret = thermal_of_populate_bind_params(gchild, &tz->tbps[i++],
820 tz->trips, tz->ntrips);
821 if (ret)
822 goto free_tbps;
825 finish:
826 of_node_put(child);
827 tz->mode = THERMAL_DEVICE_DISABLED;
829 return tz;
831 free_tbps:
832 for (i = 0; i < tz->num_tbps; i++)
833 of_node_put(tz->tbps[i].cooling_device);
834 kfree(tz->tbps);
835 free_trips:
836 for (i = 0; i < tz->ntrips; i++)
837 of_node_put(tz->trips[i].np);
838 kfree(tz->trips);
839 of_node_put(gchild);
840 free_tz:
841 kfree(tz);
842 of_node_put(child);
844 return ERR_PTR(ret);
847 static inline void of_thermal_free_zone(struct __thermal_zone *tz)
849 int i;
851 for (i = 0; i < tz->num_tbps; i++)
852 of_node_put(tz->tbps[i].cooling_device);
853 kfree(tz->tbps);
854 for (i = 0; i < tz->ntrips; i++)
855 of_node_put(tz->trips[i].np);
856 kfree(tz->trips);
857 kfree(tz);
861 * of_parse_thermal_zones - parse device tree thermal data
863 * Initialization function that can be called by machine initialization
864 * code to parse thermal data and populate the thermal framework
865 * with hardware thermal zones info. This function only parses thermal zones.
866 * Cooling devices and sensor devices nodes are supposed to be parsed
867 * by their respective drivers.
869 * Return: 0 on success, proper error code otherwise
872 int __init of_parse_thermal_zones(void)
874 struct device_node *np, *child;
875 struct __thermal_zone *tz;
876 struct thermal_zone_device_ops *ops;
878 np = of_find_node_by_name(NULL, "thermal-zones");
879 if (!np) {
880 pr_debug("unable to find thermal zones\n");
881 return 0; /* Run successfully on systems without thermal DT */
884 for_each_child_of_node(np, child) {
885 struct thermal_zone_device *zone;
886 struct thermal_zone_params *tzp;
887 int i, mask = 0;
888 u32 prop;
890 /* Check whether child is enabled or not */
891 if (!of_device_is_available(child))
892 continue;
894 tz = thermal_of_build_thermal_zone(child);
895 if (IS_ERR(tz)) {
896 pr_err("failed to build thermal zone %s: %ld\n",
897 child->name,
898 PTR_ERR(tz));
899 continue;
902 ops = kmemdup(&of_thermal_ops, sizeof(*ops), GFP_KERNEL);
903 if (!ops)
904 goto exit_free;
906 tzp = kzalloc(sizeof(*tzp), GFP_KERNEL);
907 if (!tzp) {
908 kfree(ops);
909 goto exit_free;
912 /* No hwmon because there might be hwmon drivers registering */
913 tzp->no_hwmon = true;
915 if (!of_property_read_u32(child, "sustainable-power", &prop))
916 tzp->sustainable_power = prop;
918 for (i = 0; i < tz->ntrips; i++)
919 mask |= 1 << i;
921 /* these two are left for temperature drivers to use */
922 tzp->slope = tz->slope;
923 tzp->offset = tz->offset;
925 zone = thermal_zone_device_register(child->name, tz->ntrips,
926 mask, tz,
927 ops, tzp,
928 tz->passive_delay,
929 tz->polling_delay);
930 if (IS_ERR(zone)) {
931 pr_err("Failed to build %s zone %ld\n", child->name,
932 PTR_ERR(zone));
933 kfree(tzp);
934 kfree(ops);
935 of_thermal_free_zone(tz);
936 /* attempting to build remaining zones still */
939 of_node_put(np);
941 return 0;
943 exit_free:
944 of_node_put(child);
945 of_node_put(np);
946 of_thermal_free_zone(tz);
948 /* no memory available, so free what we have built */
949 of_thermal_destroy_zones();
951 return -ENOMEM;
955 * of_thermal_destroy_zones - remove all zones parsed and allocated resources
957 * Finds all zones parsed and added to the thermal framework and remove them
958 * from the system, together with their resources.
961 void of_thermal_destroy_zones(void)
963 struct device_node *np, *child;
965 np = of_find_node_by_name(NULL, "thermal-zones");
966 if (!np) {
967 pr_debug("unable to find thermal zones\n");
968 return;
971 for_each_child_of_node(np, child) {
972 struct thermal_zone_device *zone;
974 /* Check whether child is enabled or not */
975 if (!of_device_is_available(child))
976 continue;
978 zone = thermal_zone_get_zone_by_name(child->name);
979 if (IS_ERR(zone))
980 continue;
982 thermal_zone_device_unregister(zone);
983 kfree(zone->tzp);
984 kfree(zone->ops);
985 of_thermal_free_zone(zone->devdata);
987 of_node_put(np);