thermal_of.c 27.7 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 *  of-thermal.c - Generic Thermal Management device tree support.
 *
 *  Copyright (C) 2013 Texas Instruments
 *  Copyright (C) 2013 Eduardo Valentin <eduardo.valentin@ti.com>
 */
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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/err.h>
#include <linux/export.h>
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#include <linux/of_device.h>
#include <linux/of_platform.h>
#include <linux/slab.h>
#include <linux/thermal.h>
#include <linux/types.h>
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#include <linux/string.h>

#include "thermal_core.h"

/***   Private data structures to represent thermal device tree data ***/

/**
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 * struct __thermal_cooling_bind_param - a cooling device for a trip point
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 * @cooling_device: a pointer to identify the referred cooling device
 * @min: minimum cooling state used at this trip point
 * @max: maximum cooling state used at this trip point
 */

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struct __thermal_cooling_bind_param {
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	struct device_node *cooling_device;
	unsigned long min;
	unsigned long max;
};

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/**
 * struct __thermal_bind_param - a match between trip and cooling device
 * @tcbp: a pointer to an array of cooling devices
 * @count: number of elements in array
 * @trip_id: the trip point index
 * @usage: the percentage (from 0 to 100) of cooling contribution
 */

struct __thermal_bind_params {
	struct __thermal_cooling_bind_param *tcbp;
	unsigned int count;
	unsigned int trip_id;
	unsigned int usage;
};

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/**
 * struct __thermal_zone - internal representation of a thermal zone
 * @passive_delay: polling interval while passive cooling is activated
 * @polling_delay: zone polling interval
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 * @slope: slope of the temperature adjustment curve
 * @offset: offset of the temperature adjustment curve
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 * @ntrips: number of trip points
 * @trips: an array of trip points (0..ntrips - 1)
 * @num_tbps: number of thermal bind params
 * @tbps: an array of thermal bind params (0..num_tbps - 1)
 * @sensor_data: sensor private data used while reading temperature and trend
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 * @ops: set of callbacks to handle the thermal zone based on DT
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 */

struct __thermal_zone {
	int passive_delay;
	int polling_delay;
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	int slope;
	int offset;
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	/* trip data */
	int ntrips;
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	struct thermal_trip *trips;
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	/* cooling binding data */
	int num_tbps;
	struct __thermal_bind_params *tbps;

	/* sensor interface */
	void *sensor_data;
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	const struct thermal_zone_of_device_ops *ops;
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};

/***   DT thermal zone device callbacks   ***/

static int of_thermal_get_temp(struct thermal_zone_device *tz,
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			       int *temp)
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{
	struct __thermal_zone *data = tz->devdata;

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	if (!data->ops || !data->ops->get_temp)
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		return -EINVAL;

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	return data->ops->get_temp(data->sensor_data, temp);
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}

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static int of_thermal_set_trips(struct thermal_zone_device *tz,
				int low, int high)
{
	struct __thermal_zone *data = tz->devdata;

	if (!data->ops || !data->ops->set_trips)
		return -EINVAL;

	return data->ops->set_trips(data->sensor_data, low, high);
}

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/**
 * of_thermal_get_ntrips - function to export number of available trip
 *			   points.
 * @tz: pointer to a thermal zone
 *
 * This function is a globally visible wrapper to get number of trip points
 * stored in the local struct __thermal_zone
 *
 * Return: number of available trip points, -ENODEV when data not available
 */
int of_thermal_get_ntrips(struct thermal_zone_device *tz)
{
	struct __thermal_zone *data = tz->devdata;

	if (!data || IS_ERR(data))
		return -ENODEV;

	return data->ntrips;
}
EXPORT_SYMBOL_GPL(of_thermal_get_ntrips);

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/**
 * of_thermal_is_trip_valid - function to check if trip point is valid
 *
 * @tz:	pointer to a thermal zone
 * @trip:	trip point to evaluate
 *
 * This function is responsible for checking if passed trip point is valid
 *
 * Return: true if trip point is valid, false otherwise
 */
bool of_thermal_is_trip_valid(struct thermal_zone_device *tz, int trip)
{
	struct __thermal_zone *data = tz->devdata;

	if (!data || trip >= data->ntrips || trip < 0)
		return false;

	return true;
}
EXPORT_SYMBOL_GPL(of_thermal_is_trip_valid);

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/**
 * of_thermal_get_trip_points - function to get access to a globally exported
 *				trip points
 *
 * @tz:	pointer to a thermal zone
 *
 * This function provides a pointer to trip points table
 *
 * Return: pointer to trip points table, NULL otherwise
 */
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const struct thermal_trip *
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of_thermal_get_trip_points(struct thermal_zone_device *tz)
{
	struct __thermal_zone *data = tz->devdata;

	if (!data)
		return NULL;

	return data->trips;
}
EXPORT_SYMBOL_GPL(of_thermal_get_trip_points);

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/**
 * of_thermal_set_emul_temp - function to set emulated temperature
 *
 * @tz:	pointer to a thermal zone
 * @temp:	temperature to set
 *
 * This function gives the ability to set emulated value of temperature,
 * which is handy for debugging
 *
 * Return: zero on success, error code otherwise
 */
static int of_thermal_set_emul_temp(struct thermal_zone_device *tz,
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				    int temp)
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{
	struct __thermal_zone *data = tz->devdata;

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	if (!data->ops || !data->ops->set_emul_temp)
		return -EINVAL;

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	return data->ops->set_emul_temp(data->sensor_data, temp);
}

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static int of_thermal_get_trend(struct thermal_zone_device *tz, int trip,
				enum thermal_trend *trend)
{
	struct __thermal_zone *data = tz->devdata;

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	if (!data->ops || !data->ops->get_trend)
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		return -EINVAL;

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	return data->ops->get_trend(data->sensor_data, trip, trend);
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}

static int of_thermal_bind(struct thermal_zone_device *thermal,
			   struct thermal_cooling_device *cdev)
{
	struct __thermal_zone *data = thermal->devdata;
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	struct __thermal_bind_params *tbp;
	struct __thermal_cooling_bind_param *tcbp;
	int i, j;
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	if (!data || IS_ERR(data))
		return -ENODEV;

	/* find where to bind */
	for (i = 0; i < data->num_tbps; i++) {
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		tbp = data->tbps + i;
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		for (j = 0; j < tbp->count; j++) {
			tcbp = tbp->tcbp + j;
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			if (tcbp->cooling_device == cdev->np) {
				int ret;

				ret = thermal_zone_bind_cooling_device(thermal,
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						tbp->trip_id, cdev,
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						tcbp->max,
						tcbp->min,
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						tbp->usage);
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				if (ret)
					return ret;
			}
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		}
	}

	return 0;
}

static int of_thermal_unbind(struct thermal_zone_device *thermal,
			     struct thermal_cooling_device *cdev)
{
	struct __thermal_zone *data = thermal->devdata;
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	struct __thermal_bind_params *tbp;
	struct __thermal_cooling_bind_param *tcbp;
	int i, j;
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	if (!data || IS_ERR(data))
		return -ENODEV;

	/* find where to unbind */
	for (i = 0; i < data->num_tbps; i++) {
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		tbp = data->tbps + i;

		for (j = 0; j < tbp->count; j++) {
			tcbp = tbp->tcbp + j;
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			if (tcbp->cooling_device == cdev->np) {
				int ret;
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				ret = thermal_zone_unbind_cooling_device(thermal,
							tbp->trip_id, cdev);
				if (ret)
					return ret;
			}
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		}
	}

	return 0;
}

static int of_thermal_get_trip_type(struct thermal_zone_device *tz, int trip,
				    enum thermal_trip_type *type)
{
	struct __thermal_zone *data = tz->devdata;

	if (trip >= data->ntrips || trip < 0)
		return -EDOM;

	*type = data->trips[trip].type;

	return 0;
}

static int of_thermal_get_trip_temp(struct thermal_zone_device *tz, int trip,
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				    int *temp)
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{
	struct __thermal_zone *data = tz->devdata;

	if (trip >= data->ntrips || trip < 0)
		return -EDOM;

	*temp = data->trips[trip].temperature;

	return 0;
}

static int of_thermal_set_trip_temp(struct thermal_zone_device *tz, int trip,
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				    int temp)
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{
	struct __thermal_zone *data = tz->devdata;

	if (trip >= data->ntrips || trip < 0)
		return -EDOM;

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	if (data->ops && data->ops->set_trip_temp) {
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		int ret;

		ret = data->ops->set_trip_temp(data->sensor_data, trip, temp);
		if (ret)
			return ret;
	}

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	/* thermal framework should take care of data->mask & (1 << trip) */
	data->trips[trip].temperature = temp;

	return 0;
}

static int of_thermal_get_trip_hyst(struct thermal_zone_device *tz, int trip,
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				    int *hyst)
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{
	struct __thermal_zone *data = tz->devdata;

	if (trip >= data->ntrips || trip < 0)
		return -EDOM;

	*hyst = data->trips[trip].hysteresis;

	return 0;
}

static int of_thermal_set_trip_hyst(struct thermal_zone_device *tz, int trip,
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				    int hyst)
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{
	struct __thermal_zone *data = tz->devdata;

	if (trip >= data->ntrips || trip < 0)
		return -EDOM;

	/* thermal framework should take care of data->mask & (1 << trip) */
	data->trips[trip].hysteresis = hyst;

	return 0;
}

static int of_thermal_get_crit_temp(struct thermal_zone_device *tz,
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				    int *temp)
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{
	struct __thermal_zone *data = tz->devdata;
	int i;

	for (i = 0; i < data->ntrips; i++)
		if (data->trips[i].type == THERMAL_TRIP_CRITICAL) {
			*temp = data->trips[i].temperature;
			return 0;
		}

	return -EINVAL;
}

static struct thermal_zone_device_ops of_thermal_ops = {
	.get_trip_type = of_thermal_get_trip_type,
	.get_trip_temp = of_thermal_get_trip_temp,
	.set_trip_temp = of_thermal_set_trip_temp,
	.get_trip_hyst = of_thermal_get_trip_hyst,
	.set_trip_hyst = of_thermal_set_trip_hyst,
	.get_crit_temp = of_thermal_get_crit_temp,

	.bind = of_thermal_bind,
	.unbind = of_thermal_unbind,
};

/***   sensor API   ***/

static struct thermal_zone_device *
thermal_zone_of_add_sensor(struct device_node *zone,
			   struct device_node *sensor, void *data,
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			   const struct thermal_zone_of_device_ops *ops)
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{
	struct thermal_zone_device *tzd;
	struct __thermal_zone *tz;

	tzd = thermal_zone_get_zone_by_name(zone->name);
	if (IS_ERR(tzd))
		return ERR_PTR(-EPROBE_DEFER);

	tz = tzd->devdata;

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	if (!ops)
		return ERR_PTR(-EINVAL);

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	mutex_lock(&tzd->lock);
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	tz->ops = ops;
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	tz->sensor_data = data;

	tzd->ops->get_temp = of_thermal_get_temp;
	tzd->ops->get_trend = of_thermal_get_trend;
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	/*
	 * The thermal zone core will calculate the window if they have set the
	 * optional set_trips pointer.
	 */
	if (ops->set_trips)
		tzd->ops->set_trips = of_thermal_set_trips;

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	if (ops->set_emul_temp)
		tzd->ops->set_emul_temp = of_thermal_set_emul_temp;

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	mutex_unlock(&tzd->lock);

	return tzd;
}

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/**
 * thermal_zone_of_get_sensor_id - get sensor ID from a DT thermal zone
 * @tz_np: a valid thermal zone device node.
 * @sensor_np: a sensor node of a valid sensor device.
 * @id: the sensor ID returned if success.
 *
 * This function will get sensor ID from a given thermal zone node and
 * the sensor node must match the temperature provider @sensor_np.
 *
 * Return: 0 on success, proper error code otherwise.
 */

int thermal_zone_of_get_sensor_id(struct device_node *tz_np,
				  struct device_node *sensor_np,
				  u32 *id)
{
	struct of_phandle_args sensor_specs;
	int ret;

	ret = of_parse_phandle_with_args(tz_np,
					 "thermal-sensors",
					 "#thermal-sensor-cells",
					 0,
					 &sensor_specs);
	if (ret)
		return ret;

	if (sensor_specs.np != sensor_np) {
		of_node_put(sensor_specs.np);
		return -ENODEV;
	}

	if (sensor_specs.args_count > 1)
		pr_warn("%pOFn: too many cells in sensor specifier %d\n",
		     sensor_specs.np, sensor_specs.args_count);

	*id = sensor_specs.args_count ? sensor_specs.args[0] : 0;

	of_node_put(sensor_specs.np);

	return 0;
}
EXPORT_SYMBOL_GPL(thermal_zone_of_get_sensor_id);

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/**
 * thermal_zone_of_sensor_register - registers a sensor to a DT thermal zone
 * @dev: a valid struct device pointer of a sensor device. Must contain
 *       a valid .of_node, for the sensor node.
 * @sensor_id: a sensor identifier, in case the sensor IP has more
 *             than one sensors
 * @data: a private pointer (owned by the caller) that will be passed
 *        back, when a temperature reading is needed.
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 * @ops: struct thermal_zone_of_device_ops *. Must contain at least .get_temp.
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 *
 * This function will search the list of thermal zones described in device
 * tree and look for the zone that refer to the sensor device pointed by
 * @dev->of_node as temperature providers. For the zone pointing to the
 * sensor node, the sensor will be added to the DT thermal zone device.
 *
 * The thermal zone temperature is provided by the @get_temp function
 * pointer. When called, it will have the private pointer @data back.
 *
 * The thermal zone temperature trend is provided by the @get_trend function
 * pointer. When called, it will have the private pointer @data back.
 *
 * TODO:
 * 01 - This function must enqueue the new sensor instead of using
 * it as the only source of temperature values.
 *
 * 02 - There must be a way to match the sensor with all thermal zones
 * that refer to it.
 *
 * Return: On success returns a valid struct thermal_zone_device,
 * otherwise, it returns a corresponding ERR_PTR(). Caller must
 * check the return value with help of IS_ERR() helper.
 */
struct thermal_zone_device *
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thermal_zone_of_sensor_register(struct device *dev, int sensor_id, void *data,
				const struct thermal_zone_of_device_ops *ops)
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{
	struct device_node *np, *child, *sensor_np;
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	struct thermal_zone_device *tzd = ERR_PTR(-ENODEV);
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	np = of_find_node_by_name(NULL, "thermal-zones");
	if (!np)
		return ERR_PTR(-ENODEV);

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	if (!dev || !dev->of_node) {
		of_node_put(np);
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		return ERR_PTR(-ENODEV);
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	}
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	sensor_np = of_node_get(dev->of_node);
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	for_each_available_child_of_node(np, child) {
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		int ret, id;

		/* For now, thermal framework supports only 1 sensor per zone */
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		ret = thermal_zone_of_get_sensor_id(child, sensor_np, &id);
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		if (ret)
			continue;

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		if (id == sensor_id) {
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			tzd = thermal_zone_of_add_sensor(child, sensor_np,
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							 data, ops);
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			if (!IS_ERR(tzd))
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				thermal_zone_device_enable(tzd);
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			of_node_put(child);
			goto exit;
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		}
	}
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exit:
	of_node_put(sensor_np);
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	of_node_put(np);

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	return tzd;
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}
EXPORT_SYMBOL_GPL(thermal_zone_of_sensor_register);

/**
 * thermal_zone_of_sensor_unregister - unregisters a sensor from a DT thermal zone
 * @dev: a valid struct device pointer of a sensor device. Must contain
 *       a valid .of_node, for the sensor node.
 * @tzd: a pointer to struct thermal_zone_device where the sensor is registered.
 *
 * This function removes the sensor callbacks and private data from the
 * thermal zone device registered with thermal_zone_of_sensor_register()
 * API. It will also silent the zone by remove the .get_temp() and .get_trend()
 * thermal zone device callbacks.
 *
 * TODO: When the support to several sensors per zone is added, this
 * function must search the sensor list based on @dev parameter.
 *
 */
void thermal_zone_of_sensor_unregister(struct device *dev,
				       struct thermal_zone_device *tzd)
{
	struct __thermal_zone *tz;

	if (!dev || !tzd || !tzd->devdata)
		return;

	tz = tzd->devdata;

	/* no __thermal_zone, nothing to be done */
	if (!tz)
		return;

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	/* stop temperature polling */
	thermal_zone_device_disable(tzd);

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	mutex_lock(&tzd->lock);
	tzd->ops->get_temp = NULL;
	tzd->ops->get_trend = NULL;
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	tzd->ops->set_emul_temp = NULL;
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	tz->ops = NULL;
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	tz->sensor_data = NULL;
	mutex_unlock(&tzd->lock);
}
EXPORT_SYMBOL_GPL(thermal_zone_of_sensor_unregister);

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static void devm_thermal_zone_of_sensor_release(struct device *dev, void *res)
{
	thermal_zone_of_sensor_unregister(dev,
					  *(struct thermal_zone_device **)res);
}

static int devm_thermal_zone_of_sensor_match(struct device *dev, void *res,
					     void *data)
{
	struct thermal_zone_device **r = res;

	if (WARN_ON(!r || !*r))
		return 0;

	return *r == data;
}

/**
 * devm_thermal_zone_of_sensor_register - Resource managed version of
 *				thermal_zone_of_sensor_register()
 * @dev: a valid struct device pointer of a sensor device. Must contain
 *       a valid .of_node, for the sensor node.
 * @sensor_id: a sensor identifier, in case the sensor IP has more
 *	       than one sensors
 * @data: a private pointer (owned by the caller) that will be passed
 *	  back, when a temperature reading is needed.
 * @ops: struct thermal_zone_of_device_ops *. Must contain at least .get_temp.
 *
 * Refer thermal_zone_of_sensor_register() for more details.
 *
 * Return: On success returns a valid struct thermal_zone_device,
 * otherwise, it returns a corresponding ERR_PTR(). Caller must
 * check the return value with help of IS_ERR() helper.
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Zhang Rui 已提交
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 * Registered thermal_zone_device device will automatically be
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 * released when device is unbounded.
 */
struct thermal_zone_device *devm_thermal_zone_of_sensor_register(
	struct device *dev, int sensor_id,
	void *data, const struct thermal_zone_of_device_ops *ops)
{
	struct thermal_zone_device **ptr, *tzd;

	ptr = devres_alloc(devm_thermal_zone_of_sensor_release, sizeof(*ptr),
			   GFP_KERNEL);
	if (!ptr)
		return ERR_PTR(-ENOMEM);

	tzd = thermal_zone_of_sensor_register(dev, sensor_id, data, ops);
	if (IS_ERR(tzd)) {
		devres_free(ptr);
		return tzd;
	}

	*ptr = tzd;
	devres_add(dev, ptr);

	return tzd;
}
EXPORT_SYMBOL_GPL(devm_thermal_zone_of_sensor_register);

/**
 * devm_thermal_zone_of_sensor_unregister - Resource managed version of
 *				thermal_zone_of_sensor_unregister().
 * @dev: Device for which which resource was allocated.
 * @tzd: a pointer to struct thermal_zone_device where the sensor is registered.
 *
 * This function removes the sensor callbacks and private data from the
 * thermal zone device registered with devm_thermal_zone_of_sensor_register()
 * API. It will also silent the zone by remove the .get_temp() and .get_trend()
 * thermal zone device callbacks.
 * Normally this function will not need to be called and the resource
 * management code will ensure that the resource is freed.
 */
void devm_thermal_zone_of_sensor_unregister(struct device *dev,
					    struct thermal_zone_device *tzd)
{
	WARN_ON(devres_release(dev, devm_thermal_zone_of_sensor_release,
			       devm_thermal_zone_of_sensor_match, tzd));
}
EXPORT_SYMBOL_GPL(devm_thermal_zone_of_sensor_unregister);

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/***   functions parsing device tree nodes   ***/

/**
 * thermal_of_populate_bind_params - parse and fill cooling map data
 * @np: DT node containing a cooling-map node
 * @__tbp: data structure to be filled with cooling map info
 * @trips: array of thermal zone trip points
 * @ntrips: number of trip points inside trips.
 *
 * This function parses a cooling-map type of node represented by
 * @np parameter and fills the read data into @__tbp data structure.
 * It needs the already parsed array of trip points of the thermal zone
 * in consideration.
 *
 * Return: 0 on success, proper error code otherwise
 */
static int thermal_of_populate_bind_params(struct device_node *np,
					   struct __thermal_bind_params *__tbp,
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					   struct thermal_trip *trips,
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					   int ntrips)
{
	struct of_phandle_args cooling_spec;
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	struct __thermal_cooling_bind_param *__tcbp;
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	struct device_node *trip;
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	int ret, i, count;
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	u32 prop;

	/* Default weight. Usage is optional */
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	__tbp->usage = THERMAL_WEIGHT_DEFAULT;
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	ret = of_property_read_u32(np, "contribution", &prop);
	if (ret == 0)
		__tbp->usage = prop;

	trip = of_parse_phandle(np, "trip", 0);
	if (!trip) {
		pr_err("missing trip property\n");
		return -ENODEV;
	}

	/* match using device_node */
	for (i = 0; i < ntrips; i++)
		if (trip == trips[i].np) {
			__tbp->trip_id = i;
			break;
		}

	if (i == ntrips) {
		ret = -ENODEV;
		goto end;
	}

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	count = of_count_phandle_with_args(np, "cooling-device",
					   "#cooling-cells");
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	if (count <= 0) {
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		pr_err("Add a cooling_device property with at least one device\n");
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		ret = -ENOENT;
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		goto end;
	}
718 719

	__tcbp = kcalloc(count, sizeof(*__tcbp), GFP_KERNEL);
720 721
	if (!__tcbp) {
		ret = -ENOMEM;
722
		goto end;
723
	}
724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740

	for (i = 0; i < count; i++) {
		ret = of_parse_phandle_with_args(np, "cooling-device",
				"#cooling-cells", i, &cooling_spec);
		if (ret < 0) {
			pr_err("Invalid cooling-device entry\n");
			goto free_tcbp;
		}

		__tcbp[i].cooling_device = cooling_spec.np;

		if (cooling_spec.args_count >= 2) { /* at least min and max */
			__tcbp[i].min = cooling_spec.args[0];
			__tcbp[i].max = cooling_spec.args[1];
		} else {
			pr_err("wrong reference to cooling device, missing limits\n");
		}
741 742
	}

743 744 745 746 747 748 749 750 751
	__tbp->tcbp = __tcbp;
	__tbp->count = count;

	goto end;

free_tcbp:
	for (i = i - 1; i >= 0; i--)
		of_node_put(__tcbp[i].cooling_device);
	kfree(__tcbp);
752 753 754 755 756 757
end:
	of_node_put(trip);

	return ret;
}

758
/*
759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808
 * It maps 'enum thermal_trip_type' found in include/linux/thermal.h
 * into the device tree binding of 'trip', property type.
 */
static const char * const trip_types[] = {
	[THERMAL_TRIP_ACTIVE]	= "active",
	[THERMAL_TRIP_PASSIVE]	= "passive",
	[THERMAL_TRIP_HOT]	= "hot",
	[THERMAL_TRIP_CRITICAL]	= "critical",
};

/**
 * thermal_of_get_trip_type - Get phy mode for given device_node
 * @np:	Pointer to the given device_node
 * @type: Pointer to resulting trip type
 *
 * The function gets trip type string from property 'type',
 * and store its index in trip_types table in @type,
 *
 * Return: 0 on success, or errno in error case.
 */
static int thermal_of_get_trip_type(struct device_node *np,
				    enum thermal_trip_type *type)
{
	const char *t;
	int err, i;

	err = of_property_read_string(np, "type", &t);
	if (err < 0)
		return err;

	for (i = 0; i < ARRAY_SIZE(trip_types); i++)
		if (!strcasecmp(t, trip_types[i])) {
			*type = i;
			return 0;
		}

	return -ENODEV;
}

/**
 * thermal_of_populate_trip - parse and fill one trip point data
 * @np: DT node containing a trip point node
 * @trip: trip point data structure to be filled up
 *
 * This function parses a trip point type of node represented by
 * @np parameter and fills the read data into @trip data structure.
 *
 * Return: 0 on success, proper error code otherwise
 */
static int thermal_of_populate_trip(struct device_node *np,
809
				    struct thermal_trip *trip)
810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835
{
	int prop;
	int ret;

	ret = of_property_read_u32(np, "temperature", &prop);
	if (ret < 0) {
		pr_err("missing temperature property\n");
		return ret;
	}
	trip->temperature = prop;

	ret = of_property_read_u32(np, "hysteresis", &prop);
	if (ret < 0) {
		pr_err("missing hysteresis property\n");
		return ret;
	}
	trip->hysteresis = prop;

	ret = thermal_of_get_trip_type(np, &trip->type);
	if (ret < 0) {
		pr_err("wrong trip type property\n");
		return ret;
	}

	/* Required for cooling map matching */
	trip->np = np;
836
	of_node_get(np);
837 838 839 840 841 842 843 844 845 846 847 848

	return 0;
}

/**
 * thermal_of_build_thermal_zone - parse and fill one thermal zone data
 * @np: DT node containing a thermal zone node
 *
 * This function parses a thermal zone type of node represented by
 * @np parameter and fills the read data into a __thermal_zone data structure
 * and return this pointer.
 *
849
 * TODO: Missing properties to parse: thermal-sensor-names
850 851 852 853 854
 *
 * Return: On success returns a valid struct __thermal_zone,
 * otherwise, it returns a corresponding ERR_PTR(). Caller must
 * check the return value with help of IS_ERR() helper.
 */
J
Julia Lawall 已提交
855 856
static struct __thermal_zone
__init *thermal_of_build_thermal_zone(struct device_node *np)
857 858 859 860
{
	struct device_node *child = NULL, *gchild;
	struct __thermal_zone *tz;
	int ret, i;
861
	u32 prop, coef[2];
862 863 864 865 866 867 868 869 870 871 872 873

	if (!np) {
		pr_err("no thermal zone np\n");
		return ERR_PTR(-EINVAL);
	}

	tz = kzalloc(sizeof(*tz), GFP_KERNEL);
	if (!tz)
		return ERR_PTR(-ENOMEM);

	ret = of_property_read_u32(np, "polling-delay-passive", &prop);
	if (ret < 0) {
874
		pr_err("%pOFn: missing polling-delay-passive property\n", np);
875 876 877 878 879 880
		goto free_tz;
	}
	tz->passive_delay = prop;

	ret = of_property_read_u32(np, "polling-delay", &prop);
	if (ret < 0) {
881
		pr_err("%pOFn: missing polling-delay property\n", np);
882 883 884 885
		goto free_tz;
	}
	tz->polling_delay = prop;

886 887 888 889 890 891 892 893 894 895 896 897 898 899
	/*
	 * REVIST: for now, the thermal framework supports only
	 * one sensor per thermal zone. Thus, we are considering
	 * only the first two values as slope and offset.
	 */
	ret = of_property_read_u32_array(np, "coefficients", coef, 2);
	if (ret == 0) {
		tz->slope = coef[0];
		tz->offset = coef[1];
	} else {
		tz->slope = 1;
		tz->offset = 0;
	}

900 901 902 903 904 905 906 907 908 909 910
	/* trips */
	child = of_get_child_by_name(np, "trips");

	/* No trips provided */
	if (!child)
		goto finish;

	tz->ntrips = of_get_child_count(child);
	if (tz->ntrips == 0) /* must have at least one child */
		goto finish;

K
Kees Cook 已提交
911
	tz->trips = kcalloc(tz->ntrips, sizeof(*tz->trips), GFP_KERNEL);
912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936
	if (!tz->trips) {
		ret = -ENOMEM;
		goto free_tz;
	}

	i = 0;
	for_each_child_of_node(child, gchild) {
		ret = thermal_of_populate_trip(gchild, &tz->trips[i++]);
		if (ret)
			goto free_trips;
	}

	of_node_put(child);

	/* cooling-maps */
	child = of_get_child_by_name(np, "cooling-maps");

	/* cooling-maps not provided */
	if (!child)
		goto finish;

	tz->num_tbps = of_get_child_count(child);
	if (tz->num_tbps == 0)
		goto finish;

K
Kees Cook 已提交
937
	tz->tbps = kcalloc(tz->num_tbps, sizeof(*tz->tbps), GFP_KERNEL);
938 939 940 941 942 943
	if (!tz->tbps) {
		ret = -ENOMEM;
		goto free_trips;
	}

	i = 0;
944
	for_each_child_of_node(child, gchild) {
945 946 947 948
		ret = thermal_of_populate_bind_params(gchild, &tz->tbps[i++],
						      tz->trips, tz->ntrips);
		if (ret)
			goto free_tbps;
949
	}
950 951 952 953 954 955 956

finish:
	of_node_put(child);

	return tz;

free_tbps:
957 958 959 960 961 962 963 964 965 966
	for (i = i - 1; i >= 0; i--) {
		struct __thermal_bind_params *tbp = tz->tbps + i;
		int j;

		for (j = 0; j < tbp->count; j++)
			of_node_put(tbp->tcbp[j].cooling_device);

		kfree(tbp->tcbp);
	}

967 968
	kfree(tz->tbps);
free_trips:
969 970
	for (i = 0; i < tz->ntrips; i++)
		of_node_put(tz->trips[i].np);
971
	kfree(tz->trips);
972
	of_node_put(gchild);
973 974 975 976 977 978 979
free_tz:
	kfree(tz);
	of_node_put(child);

	return ERR_PTR(ret);
}

980
static __init void of_thermal_free_zone(struct __thermal_zone *tz)
981
{
982 983 984 985 986 987 988 989 990 991 992
	struct __thermal_bind_params *tbp;
	int i, j;

	for (i = 0; i < tz->num_tbps; i++) {
		tbp = tz->tbps + i;

		for (j = 0; j < tbp->count; j++)
			of_node_put(tbp->tcbp[j].cooling_device);

		kfree(tbp->tcbp);
	}
993

994
	kfree(tz->tbps);
995 996
	for (i = 0; i < tz->ntrips; i++)
		of_node_put(tz->trips[i].np);
997 998 999 1000
	kfree(tz->trips);
	kfree(tz);
}

1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032
/**
 * of_thermal_destroy_zones - remove all zones parsed and allocated resources
 *
 * Finds all zones parsed and added to the thermal framework and remove them
 * from the system, together with their resources.
 *
 */
static __init void of_thermal_destroy_zones(void)
{
	struct device_node *np, *child;

	np = of_find_node_by_name(NULL, "thermal-zones");
	if (!np) {
		pr_debug("unable to find thermal zones\n");
		return;
	}

	for_each_available_child_of_node(np, child) {
		struct thermal_zone_device *zone;

		zone = thermal_zone_get_zone_by_name(child->name);
		if (IS_ERR(zone))
			continue;

		thermal_zone_device_unregister(zone);
		kfree(zone->tzp);
		kfree(zone->ops);
		of_thermal_free_zone(zone->devdata);
	}
	of_node_put(np);
}

1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056
/**
 * of_parse_thermal_zones - parse device tree thermal data
 *
 * Initialization function that can be called by machine initialization
 * code to parse thermal data and populate the thermal framework
 * with hardware thermal zones info. This function only parses thermal zones.
 * Cooling devices and sensor devices nodes are supposed to be parsed
 * by their respective drivers.
 *
 * Return: 0 on success, proper error code otherwise
 *
 */
int __init of_parse_thermal_zones(void)
{
	struct device_node *np, *child;
	struct __thermal_zone *tz;
	struct thermal_zone_device_ops *ops;

	np = of_find_node_by_name(NULL, "thermal-zones");
	if (!np) {
		pr_debug("unable to find thermal zones\n");
		return 0; /* Run successfully on systems without thermal DT */
	}

1057
	for_each_available_child_of_node(np, child) {
1058 1059
		struct thermal_zone_device *zone;
		struct thermal_zone_params *tzp;
1060
		int i, mask = 0;
1061
		u32 prop;
1062 1063 1064

		tz = thermal_of_build_thermal_zone(child);
		if (IS_ERR(tz)) {
1065 1066
			pr_err("failed to build thermal zone %pOFn: %ld\n",
			       child,
1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
			       PTR_ERR(tz));
			continue;
		}

		ops = kmemdup(&of_thermal_ops, sizeof(*ops), GFP_KERNEL);
		if (!ops)
			goto exit_free;

		tzp = kzalloc(sizeof(*tzp), GFP_KERNEL);
		if (!tzp) {
			kfree(ops);
			goto exit_free;
		}

		/* No hwmon because there might be hwmon drivers registering */
		tzp->no_hwmon = true;

1084 1085 1086
		if (!of_property_read_u32(child, "sustainable-power", &prop))
			tzp->sustainable_power = prop;

1087 1088 1089
		for (i = 0; i < tz->ntrips; i++)
			mask |= 1 << i;

1090 1091 1092 1093
		/* these two are left for temperature drivers to use */
		tzp->slope = tz->slope;
		tzp->offset = tz->offset;

1094
		zone = thermal_zone_device_register(child->name, tz->ntrips,
1095
						    mask, tz,
1096 1097 1098 1099
						    ops, tzp,
						    tz->passive_delay,
						    tz->polling_delay);
		if (IS_ERR(zone)) {
1100
			pr_err("Failed to build %pOFn zone %ld\n", child,
1101 1102 1103 1104 1105 1106 1107
			       PTR_ERR(zone));
			kfree(tzp);
			kfree(ops);
			of_thermal_free_zone(tz);
			/* attempting to build remaining zones still */
		}
	}
1108
	of_node_put(np);
1109 1110 1111 1112

	return 0;

exit_free:
1113 1114
	of_node_put(child);
	of_node_put(np);
1115 1116 1117 1118 1119 1120 1121
	of_thermal_free_zone(tz);

	/* no memory available, so free what we have built */
	of_thermal_destroy_zones();

	return -ENOMEM;
}