xref: /openbmc/linux/drivers/thermal/imx_thermal.c (revision bec85d2e)
1ca3de46bSShawn Guo /*
2ca3de46bSShawn Guo  * Copyright 2013 Freescale Semiconductor, Inc.
3ca3de46bSShawn Guo  *
4ca3de46bSShawn Guo  * This program is free software; you can redistribute it and/or modify
5ca3de46bSShawn Guo  * it under the terms of the GNU General Public License version 2 as
6ca3de46bSShawn Guo  * published by the Free Software Foundation.
7ca3de46bSShawn Guo  *
8ca3de46bSShawn Guo  */
9ca3de46bSShawn Guo 
10329fe7b1SAnson Huang #include <linux/clk.h>
11ca3de46bSShawn Guo #include <linux/cpu_cooling.h>
12ca3de46bSShawn Guo #include <linux/delay.h>
13ca3de46bSShawn Guo #include <linux/device.h>
14ca3de46bSShawn Guo #include <linux/init.h>
1537713a1eSPhilipp Zabel #include <linux/interrupt.h>
16ca3de46bSShawn Guo #include <linux/io.h>
17ca3de46bSShawn Guo #include <linux/kernel.h>
18ca3de46bSShawn Guo #include <linux/mfd/syscon.h>
19ca3de46bSShawn Guo #include <linux/module.h>
20ca3de46bSShawn Guo #include <linux/of.h>
213c94f17eSAnson Huang #include <linux/of_device.h>
22ca3de46bSShawn Guo #include <linux/platform_device.h>
23ca3de46bSShawn Guo #include <linux/regmap.h>
24ca3de46bSShawn Guo #include <linux/slab.h>
25ca3de46bSShawn Guo #include <linux/thermal.h>
26ca3de46bSShawn Guo #include <linux/types.h>
27ca3de46bSShawn Guo 
28ca3de46bSShawn Guo #define REG_SET		0x4
29ca3de46bSShawn Guo #define REG_CLR		0x8
30ca3de46bSShawn Guo #define REG_TOG		0xc
31ca3de46bSShawn Guo 
32ca3de46bSShawn Guo #define MISC0				0x0150
33ca3de46bSShawn Guo #define MISC0_REFTOP_SELBIASOFF		(1 << 3)
343c94f17eSAnson Huang #define MISC1				0x0160
353c94f17eSAnson Huang #define MISC1_IRQ_TEMPHIGH		(1 << 29)
363c94f17eSAnson Huang /* Below LOW and PANIC bits are only for TEMPMON_IMX6SX */
373c94f17eSAnson Huang #define MISC1_IRQ_TEMPLOW		(1 << 28)
383c94f17eSAnson Huang #define MISC1_IRQ_TEMPPANIC		(1 << 27)
39ca3de46bSShawn Guo 
40ca3de46bSShawn Guo #define TEMPSENSE0			0x0180
4137713a1eSPhilipp Zabel #define TEMPSENSE0_ALARM_VALUE_SHIFT	20
4237713a1eSPhilipp Zabel #define TEMPSENSE0_ALARM_VALUE_MASK	(0xfff << TEMPSENSE0_ALARM_VALUE_SHIFT)
43ca3de46bSShawn Guo #define TEMPSENSE0_TEMP_CNT_SHIFT	8
44ca3de46bSShawn Guo #define TEMPSENSE0_TEMP_CNT_MASK	(0xfff << TEMPSENSE0_TEMP_CNT_SHIFT)
45ca3de46bSShawn Guo #define TEMPSENSE0_FINISHED		(1 << 2)
46ca3de46bSShawn Guo #define TEMPSENSE0_MEASURE_TEMP		(1 << 1)
47ca3de46bSShawn Guo #define TEMPSENSE0_POWER_DOWN		(1 << 0)
48ca3de46bSShawn Guo 
49ca3de46bSShawn Guo #define TEMPSENSE1			0x0190
50ca3de46bSShawn Guo #define TEMPSENSE1_MEASURE_FREQ		0xffff
513c94f17eSAnson Huang /* Below TEMPSENSE2 is only for TEMPMON_IMX6SX */
523c94f17eSAnson Huang #define TEMPSENSE2			0x0290
533c94f17eSAnson Huang #define TEMPSENSE2_LOW_VALUE_SHIFT	0
543c94f17eSAnson Huang #define TEMPSENSE2_LOW_VALUE_MASK	0xfff
553c94f17eSAnson Huang #define TEMPSENSE2_PANIC_VALUE_SHIFT	16
563c94f17eSAnson Huang #define TEMPSENSE2_PANIC_VALUE_MASK	0xfff0000
57ca3de46bSShawn Guo 
58ca3de46bSShawn Guo #define OCOTP_ANA1			0x04e0
59ca3de46bSShawn Guo 
60ca3de46bSShawn Guo /* The driver supports 1 passive trip point and 1 critical trip point */
61ca3de46bSShawn Guo enum imx_thermal_trip {
62ca3de46bSShawn Guo 	IMX_TRIP_PASSIVE,
63ca3de46bSShawn Guo 	IMX_TRIP_CRITICAL,
64ca3de46bSShawn Guo 	IMX_TRIP_NUM,
65ca3de46bSShawn Guo };
66ca3de46bSShawn Guo 
67ca3de46bSShawn Guo /*
68ca3de46bSShawn Guo  * It defines the temperature in millicelsius for passive trip point
69ca3de46bSShawn Guo  * that will trigger cooling action when crossed.
70ca3de46bSShawn Guo  */
71ca3de46bSShawn Guo #define IMX_TEMP_PASSIVE		85000
72ca3de46bSShawn Guo 
73ca3de46bSShawn Guo #define IMX_POLLING_DELAY		2000 /* millisecond */
74ca3de46bSShawn Guo #define IMX_PASSIVE_DELAY		1000
75ca3de46bSShawn Guo 
76749e8be7SAnson Huang #define FACTOR0				10000000
77749e8be7SAnson Huang #define FACTOR1				15976
78749e8be7SAnson Huang #define FACTOR2				4297157
79749e8be7SAnson Huang 
803c94f17eSAnson Huang #define TEMPMON_IMX6Q			1
813c94f17eSAnson Huang #define TEMPMON_IMX6SX			2
823c94f17eSAnson Huang 
833c94f17eSAnson Huang struct thermal_soc_data {
843c94f17eSAnson Huang 	u32 version;
853c94f17eSAnson Huang };
863c94f17eSAnson Huang 
873c94f17eSAnson Huang static struct thermal_soc_data thermal_imx6q_data = {
883c94f17eSAnson Huang 	.version = TEMPMON_IMX6Q,
893c94f17eSAnson Huang };
903c94f17eSAnson Huang 
913c94f17eSAnson Huang static struct thermal_soc_data thermal_imx6sx_data = {
923c94f17eSAnson Huang 	.version = TEMPMON_IMX6SX,
933c94f17eSAnson Huang };
943c94f17eSAnson Huang 
95ca3de46bSShawn Guo struct imx_thermal_data {
96ca3de46bSShawn Guo 	struct thermal_zone_device *tz;
97ca3de46bSShawn Guo 	struct thermal_cooling_device *cdev;
98ca3de46bSShawn Guo 	enum thermal_device_mode mode;
99ca3de46bSShawn Guo 	struct regmap *tempmon;
100749e8be7SAnson Huang 	u32 c1, c2; /* See formula in imx_get_sensor_data() */
101017e5142SPhilipp Zabel 	unsigned long temp_passive;
102017e5142SPhilipp Zabel 	unsigned long temp_critical;
10337713a1eSPhilipp Zabel 	unsigned long alarm_temp;
10437713a1eSPhilipp Zabel 	unsigned long last_temp;
10537713a1eSPhilipp Zabel 	bool irq_enabled;
10637713a1eSPhilipp Zabel 	int irq;
107329fe7b1SAnson Huang 	struct clk *thermal_clk;
1083c94f17eSAnson Huang 	const struct thermal_soc_data *socdata;
109ca3de46bSShawn Guo };
110ca3de46bSShawn Guo 
1113c94f17eSAnson Huang static void imx_set_panic_temp(struct imx_thermal_data *data,
1123c94f17eSAnson Huang 			       signed long panic_temp)
1133c94f17eSAnson Huang {
1143c94f17eSAnson Huang 	struct regmap *map = data->tempmon;
1153c94f17eSAnson Huang 	int critical_value;
1163c94f17eSAnson Huang 
1173c94f17eSAnson Huang 	critical_value = (data->c2 - panic_temp) / data->c1;
1183c94f17eSAnson Huang 	regmap_write(map, TEMPSENSE2 + REG_CLR, TEMPSENSE2_PANIC_VALUE_MASK);
1193c94f17eSAnson Huang 	regmap_write(map, TEMPSENSE2 + REG_SET, critical_value <<
1203c94f17eSAnson Huang 			TEMPSENSE2_PANIC_VALUE_SHIFT);
1213c94f17eSAnson Huang }
1223c94f17eSAnson Huang 
12337713a1eSPhilipp Zabel static void imx_set_alarm_temp(struct imx_thermal_data *data,
12437713a1eSPhilipp Zabel 			       signed long alarm_temp)
12537713a1eSPhilipp Zabel {
12637713a1eSPhilipp Zabel 	struct regmap *map = data->tempmon;
12737713a1eSPhilipp Zabel 	int alarm_value;
12837713a1eSPhilipp Zabel 
12937713a1eSPhilipp Zabel 	data->alarm_temp = alarm_temp;
130749e8be7SAnson Huang 	alarm_value = (data->c2 - alarm_temp) / data->c1;
13137713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_ALARM_VALUE_MASK);
13237713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE0 + REG_SET, alarm_value <<
13337713a1eSPhilipp Zabel 			TEMPSENSE0_ALARM_VALUE_SHIFT);
13437713a1eSPhilipp Zabel }
13537713a1eSPhilipp Zabel 
136ca3de46bSShawn Guo static int imx_get_temp(struct thermal_zone_device *tz, unsigned long *temp)
137ca3de46bSShawn Guo {
138ca3de46bSShawn Guo 	struct imx_thermal_data *data = tz->devdata;
139ca3de46bSShawn Guo 	struct regmap *map = data->tempmon;
140ca3de46bSShawn Guo 	unsigned int n_meas;
14137713a1eSPhilipp Zabel 	bool wait;
142ca3de46bSShawn Guo 	u32 val;
143ca3de46bSShawn Guo 
14437713a1eSPhilipp Zabel 	if (data->mode == THERMAL_DEVICE_ENABLED) {
14537713a1eSPhilipp Zabel 		/* Check if a measurement is currently in progress */
14637713a1eSPhilipp Zabel 		regmap_read(map, TEMPSENSE0, &val);
14737713a1eSPhilipp Zabel 		wait = !(val & TEMPSENSE0_FINISHED);
14837713a1eSPhilipp Zabel 	} else {
149ca3de46bSShawn Guo 		/*
150ca3de46bSShawn Guo 		 * Every time we measure the temperature, we will power on the
151ca3de46bSShawn Guo 		 * temperature sensor, enable measurements, take a reading,
152ca3de46bSShawn Guo 		 * disable measurements, power off the temperature sensor.
153ca3de46bSShawn Guo 		 */
154ca3de46bSShawn Guo 		regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_POWER_DOWN);
155ca3de46bSShawn Guo 		regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_MEASURE_TEMP);
156ca3de46bSShawn Guo 
15737713a1eSPhilipp Zabel 		wait = true;
15837713a1eSPhilipp Zabel 	}
15937713a1eSPhilipp Zabel 
160ca3de46bSShawn Guo 	/*
161ca3de46bSShawn Guo 	 * According to the temp sensor designers, it may require up to ~17us
162ca3de46bSShawn Guo 	 * to complete a measurement.
163ca3de46bSShawn Guo 	 */
16437713a1eSPhilipp Zabel 	if (wait)
165ca3de46bSShawn Guo 		usleep_range(20, 50);
166ca3de46bSShawn Guo 
167ca3de46bSShawn Guo 	regmap_read(map, TEMPSENSE0, &val);
16837713a1eSPhilipp Zabel 
16937713a1eSPhilipp Zabel 	if (data->mode != THERMAL_DEVICE_ENABLED) {
170ca3de46bSShawn Guo 		regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_MEASURE_TEMP);
171ca3de46bSShawn Guo 		regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_POWER_DOWN);
17237713a1eSPhilipp Zabel 	}
173ca3de46bSShawn Guo 
174ca3de46bSShawn Guo 	if ((val & TEMPSENSE0_FINISHED) == 0) {
175ca3de46bSShawn Guo 		dev_dbg(&tz->device, "temp measurement never finished\n");
176ca3de46bSShawn Guo 		return -EAGAIN;
177ca3de46bSShawn Guo 	}
178ca3de46bSShawn Guo 
179ca3de46bSShawn Guo 	n_meas = (val & TEMPSENSE0_TEMP_CNT_MASK) >> TEMPSENSE0_TEMP_CNT_SHIFT;
180ca3de46bSShawn Guo 
181ca3de46bSShawn Guo 	/* See imx_get_sensor_data() for formula derivation */
182749e8be7SAnson Huang 	*temp = data->c2 - n_meas * data->c1;
183ca3de46bSShawn Guo 
1843c94f17eSAnson Huang 	/* Update alarm value to next higher trip point for TEMPMON_IMX6Q */
1853c94f17eSAnson Huang 	if (data->socdata->version == TEMPMON_IMX6Q) {
1863c94f17eSAnson Huang 		if (data->alarm_temp == data->temp_passive &&
1873c94f17eSAnson Huang 			*temp >= data->temp_passive)
18837713a1eSPhilipp Zabel 			imx_set_alarm_temp(data, data->temp_critical);
1893c94f17eSAnson Huang 		if (data->alarm_temp == data->temp_critical &&
1903c94f17eSAnson Huang 			*temp < data->temp_passive) {
19137713a1eSPhilipp Zabel 			imx_set_alarm_temp(data, data->temp_passive);
19237713a1eSPhilipp Zabel 			dev_dbg(&tz->device, "thermal alarm off: T < %lu\n",
19337713a1eSPhilipp Zabel 				data->alarm_temp / 1000);
19437713a1eSPhilipp Zabel 		}
1953c94f17eSAnson Huang 	}
19637713a1eSPhilipp Zabel 
19737713a1eSPhilipp Zabel 	if (*temp != data->last_temp) {
198ca3de46bSShawn Guo 		dev_dbg(&tz->device, "millicelsius: %ld\n", *temp);
19937713a1eSPhilipp Zabel 		data->last_temp = *temp;
20037713a1eSPhilipp Zabel 	}
20137713a1eSPhilipp Zabel 
20237713a1eSPhilipp Zabel 	/* Reenable alarm IRQ if temperature below alarm temperature */
20337713a1eSPhilipp Zabel 	if (!data->irq_enabled && *temp < data->alarm_temp) {
20437713a1eSPhilipp Zabel 		data->irq_enabled = true;
20537713a1eSPhilipp Zabel 		enable_irq(data->irq);
206ca3de46bSShawn Guo 	}
207ca3de46bSShawn Guo 
208ca3de46bSShawn Guo 	return 0;
209ca3de46bSShawn Guo }
210ca3de46bSShawn Guo 
211ca3de46bSShawn Guo static int imx_get_mode(struct thermal_zone_device *tz,
212ca3de46bSShawn Guo 			enum thermal_device_mode *mode)
213ca3de46bSShawn Guo {
214ca3de46bSShawn Guo 	struct imx_thermal_data *data = tz->devdata;
215ca3de46bSShawn Guo 
216ca3de46bSShawn Guo 	*mode = data->mode;
217ca3de46bSShawn Guo 
218ca3de46bSShawn Guo 	return 0;
219ca3de46bSShawn Guo }
220ca3de46bSShawn Guo 
221ca3de46bSShawn Guo static int imx_set_mode(struct thermal_zone_device *tz,
222ca3de46bSShawn Guo 			enum thermal_device_mode mode)
223ca3de46bSShawn Guo {
224ca3de46bSShawn Guo 	struct imx_thermal_data *data = tz->devdata;
22537713a1eSPhilipp Zabel 	struct regmap *map = data->tempmon;
226ca3de46bSShawn Guo 
227ca3de46bSShawn Guo 	if (mode == THERMAL_DEVICE_ENABLED) {
228ca3de46bSShawn Guo 		tz->polling_delay = IMX_POLLING_DELAY;
229ca3de46bSShawn Guo 		tz->passive_delay = IMX_PASSIVE_DELAY;
23037713a1eSPhilipp Zabel 
23137713a1eSPhilipp Zabel 		regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_POWER_DOWN);
23237713a1eSPhilipp Zabel 		regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_MEASURE_TEMP);
23337713a1eSPhilipp Zabel 
23437713a1eSPhilipp Zabel 		if (!data->irq_enabled) {
23537713a1eSPhilipp Zabel 			data->irq_enabled = true;
23637713a1eSPhilipp Zabel 			enable_irq(data->irq);
23737713a1eSPhilipp Zabel 		}
238ca3de46bSShawn Guo 	} else {
23937713a1eSPhilipp Zabel 		regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_MEASURE_TEMP);
24037713a1eSPhilipp Zabel 		regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_POWER_DOWN);
24137713a1eSPhilipp Zabel 
242ca3de46bSShawn Guo 		tz->polling_delay = 0;
243ca3de46bSShawn Guo 		tz->passive_delay = 0;
24437713a1eSPhilipp Zabel 
24537713a1eSPhilipp Zabel 		if (data->irq_enabled) {
24637713a1eSPhilipp Zabel 			disable_irq(data->irq);
24737713a1eSPhilipp Zabel 			data->irq_enabled = false;
24837713a1eSPhilipp Zabel 		}
249ca3de46bSShawn Guo 	}
250ca3de46bSShawn Guo 
251ca3de46bSShawn Guo 	data->mode = mode;
252ca3de46bSShawn Guo 	thermal_zone_device_update(tz);
253ca3de46bSShawn Guo 
254ca3de46bSShawn Guo 	return 0;
255ca3de46bSShawn Guo }
256ca3de46bSShawn Guo 
257ca3de46bSShawn Guo static int imx_get_trip_type(struct thermal_zone_device *tz, int trip,
258ca3de46bSShawn Guo 			     enum thermal_trip_type *type)
259ca3de46bSShawn Guo {
260ca3de46bSShawn Guo 	*type = (trip == IMX_TRIP_PASSIVE) ? THERMAL_TRIP_PASSIVE :
261ca3de46bSShawn Guo 					     THERMAL_TRIP_CRITICAL;
262ca3de46bSShawn Guo 	return 0;
263ca3de46bSShawn Guo }
264ca3de46bSShawn Guo 
265ca3de46bSShawn Guo static int imx_get_crit_temp(struct thermal_zone_device *tz,
266ca3de46bSShawn Guo 			     unsigned long *temp)
267ca3de46bSShawn Guo {
268017e5142SPhilipp Zabel 	struct imx_thermal_data *data = tz->devdata;
269017e5142SPhilipp Zabel 
270017e5142SPhilipp Zabel 	*temp = data->temp_critical;
271ca3de46bSShawn Guo 	return 0;
272ca3de46bSShawn Guo }
273ca3de46bSShawn Guo 
274ca3de46bSShawn Guo static int imx_get_trip_temp(struct thermal_zone_device *tz, int trip,
275ca3de46bSShawn Guo 			     unsigned long *temp)
276ca3de46bSShawn Guo {
277017e5142SPhilipp Zabel 	struct imx_thermal_data *data = tz->devdata;
278017e5142SPhilipp Zabel 
279017e5142SPhilipp Zabel 	*temp = (trip == IMX_TRIP_PASSIVE) ? data->temp_passive :
280017e5142SPhilipp Zabel 					     data->temp_critical;
281017e5142SPhilipp Zabel 	return 0;
282017e5142SPhilipp Zabel }
283017e5142SPhilipp Zabel 
284017e5142SPhilipp Zabel static int imx_set_trip_temp(struct thermal_zone_device *tz, int trip,
285017e5142SPhilipp Zabel 			     unsigned long temp)
286017e5142SPhilipp Zabel {
287017e5142SPhilipp Zabel 	struct imx_thermal_data *data = tz->devdata;
288017e5142SPhilipp Zabel 
289017e5142SPhilipp Zabel 	if (trip == IMX_TRIP_CRITICAL)
290017e5142SPhilipp Zabel 		return -EPERM;
291017e5142SPhilipp Zabel 
292017e5142SPhilipp Zabel 	if (temp > IMX_TEMP_PASSIVE)
293017e5142SPhilipp Zabel 		return -EINVAL;
294017e5142SPhilipp Zabel 
295017e5142SPhilipp Zabel 	data->temp_passive = temp;
296017e5142SPhilipp Zabel 
29737713a1eSPhilipp Zabel 	imx_set_alarm_temp(data, temp);
29837713a1eSPhilipp Zabel 
299ca3de46bSShawn Guo 	return 0;
300ca3de46bSShawn Guo }
301ca3de46bSShawn Guo 
302ca3de46bSShawn Guo static int imx_bind(struct thermal_zone_device *tz,
303ca3de46bSShawn Guo 		    struct thermal_cooling_device *cdev)
304ca3de46bSShawn Guo {
305ca3de46bSShawn Guo 	int ret;
306ca3de46bSShawn Guo 
307ca3de46bSShawn Guo 	ret = thermal_zone_bind_cooling_device(tz, IMX_TRIP_PASSIVE, cdev,
308ca3de46bSShawn Guo 					       THERMAL_NO_LIMIT,
309ca3de46bSShawn Guo 					       THERMAL_NO_LIMIT);
310ca3de46bSShawn Guo 	if (ret) {
311ca3de46bSShawn Guo 		dev_err(&tz->device,
312ca3de46bSShawn Guo 			"binding zone %s with cdev %s failed:%d\n",
313ca3de46bSShawn Guo 			tz->type, cdev->type, ret);
314ca3de46bSShawn Guo 		return ret;
315ca3de46bSShawn Guo 	}
316ca3de46bSShawn Guo 
317ca3de46bSShawn Guo 	return 0;
318ca3de46bSShawn Guo }
319ca3de46bSShawn Guo 
320ca3de46bSShawn Guo static int imx_unbind(struct thermal_zone_device *tz,
321ca3de46bSShawn Guo 		      struct thermal_cooling_device *cdev)
322ca3de46bSShawn Guo {
323ca3de46bSShawn Guo 	int ret;
324ca3de46bSShawn Guo 
325ca3de46bSShawn Guo 	ret = thermal_zone_unbind_cooling_device(tz, IMX_TRIP_PASSIVE, cdev);
326ca3de46bSShawn Guo 	if (ret) {
327ca3de46bSShawn Guo 		dev_err(&tz->device,
328ca3de46bSShawn Guo 			"unbinding zone %s with cdev %s failed:%d\n",
329ca3de46bSShawn Guo 			tz->type, cdev->type, ret);
330ca3de46bSShawn Guo 		return ret;
331ca3de46bSShawn Guo 	}
332ca3de46bSShawn Guo 
333ca3de46bSShawn Guo 	return 0;
334ca3de46bSShawn Guo }
335ca3de46bSShawn Guo 
336cbb07bb3SEduardo Valentin static struct thermal_zone_device_ops imx_tz_ops = {
337ca3de46bSShawn Guo 	.bind = imx_bind,
338ca3de46bSShawn Guo 	.unbind = imx_unbind,
339ca3de46bSShawn Guo 	.get_temp = imx_get_temp,
340ca3de46bSShawn Guo 	.get_mode = imx_get_mode,
341ca3de46bSShawn Guo 	.set_mode = imx_set_mode,
342ca3de46bSShawn Guo 	.get_trip_type = imx_get_trip_type,
343ca3de46bSShawn Guo 	.get_trip_temp = imx_get_trip_temp,
344ca3de46bSShawn Guo 	.get_crit_temp = imx_get_crit_temp,
345017e5142SPhilipp Zabel 	.set_trip_temp = imx_set_trip_temp,
346ca3de46bSShawn Guo };
347ca3de46bSShawn Guo 
348ca3de46bSShawn Guo static int imx_get_sensor_data(struct platform_device *pdev)
349ca3de46bSShawn Guo {
350ca3de46bSShawn Guo 	struct imx_thermal_data *data = platform_get_drvdata(pdev);
351ca3de46bSShawn Guo 	struct regmap *map;
352d0f9d64aSAnson Huang 	int t1, n1;
353ca3de46bSShawn Guo 	int ret;
354ca3de46bSShawn Guo 	u32 val;
355749e8be7SAnson Huang 	u64 temp64;
356ca3de46bSShawn Guo 
357ca3de46bSShawn Guo 	map = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
358ca3de46bSShawn Guo 					      "fsl,tempmon-data");
359ca3de46bSShawn Guo 	if (IS_ERR(map)) {
360ca3de46bSShawn Guo 		ret = PTR_ERR(map);
361ca3de46bSShawn Guo 		dev_err(&pdev->dev, "failed to get sensor regmap: %d\n", ret);
362ca3de46bSShawn Guo 		return ret;
363ca3de46bSShawn Guo 	}
364ca3de46bSShawn Guo 
365ca3de46bSShawn Guo 	ret = regmap_read(map, OCOTP_ANA1, &val);
366ca3de46bSShawn Guo 	if (ret) {
367ca3de46bSShawn Guo 		dev_err(&pdev->dev, "failed to read sensor data: %d\n", ret);
368ca3de46bSShawn Guo 		return ret;
369ca3de46bSShawn Guo 	}
370ca3de46bSShawn Guo 
371ca3de46bSShawn Guo 	if (val == 0 || val == ~0) {
372ca3de46bSShawn Guo 		dev_err(&pdev->dev, "invalid sensor calibration data\n");
373ca3de46bSShawn Guo 		return -EINVAL;
374ca3de46bSShawn Guo 	}
375ca3de46bSShawn Guo 
376ca3de46bSShawn Guo 	/*
377ca3de46bSShawn Guo 	 * Sensor data layout:
378ca3de46bSShawn Guo 	 *   [31:20] - sensor value @ 25C
379749e8be7SAnson Huang 	 * Use universal formula now and only need sensor value @ 25C
380749e8be7SAnson Huang 	 * slope = 0.4297157 - (0.0015976 * 25C fuse)
381ca3de46bSShawn Guo 	 */
382ca3de46bSShawn Guo 	n1 = val >> 20;
383ca3de46bSShawn Guo 	t1 = 25; /* t1 always 25C */
384ca3de46bSShawn Guo 
385ca3de46bSShawn Guo 	/*
386749e8be7SAnson Huang 	 * Derived from linear interpolation:
387749e8be7SAnson Huang 	 * slope = 0.4297157 - (0.0015976 * 25C fuse)
388749e8be7SAnson Huang 	 * slope = (FACTOR2 - FACTOR1 * n1) / FACTOR0
389749e8be7SAnson Huang 	 * (Nmeas - n1) / (Tmeas - t1) = slope
390ca3de46bSShawn Guo 	 * We want to reduce this down to the minimum computation necessary
391ca3de46bSShawn Guo 	 * for each temperature read.  Also, we want Tmeas in millicelsius
392ca3de46bSShawn Guo 	 * and we don't want to lose precision from integer division. So...
393749e8be7SAnson Huang 	 * Tmeas = (Nmeas - n1) / slope + t1
394749e8be7SAnson Huang 	 * milli_Tmeas = 1000 * (Nmeas - n1) / slope + 1000 * t1
395749e8be7SAnson Huang 	 * milli_Tmeas = -1000 * (n1 - Nmeas) / slope + 1000 * t1
396749e8be7SAnson Huang 	 * Let constant c1 = (-1000 / slope)
397749e8be7SAnson Huang 	 * milli_Tmeas = (n1 - Nmeas) * c1 + 1000 * t1
398749e8be7SAnson Huang 	 * Let constant c2 = n1 *c1 + 1000 * t1
399749e8be7SAnson Huang 	 * milli_Tmeas = c2 - Nmeas * c1
400ca3de46bSShawn Guo 	 */
401749e8be7SAnson Huang 	temp64 = FACTOR0;
402749e8be7SAnson Huang 	temp64 *= 1000;
403749e8be7SAnson Huang 	do_div(temp64, FACTOR1 * n1 - FACTOR2);
404749e8be7SAnson Huang 	data->c1 = temp64;
405749e8be7SAnson Huang 	data->c2 = n1 * data->c1 + 1000 * t1;
406ca3de46bSShawn Guo 
407017e5142SPhilipp Zabel 	/*
408d0f9d64aSAnson Huang 	 * Set the default passive cooling trip point,
409d0f9d64aSAnson Huang 	 * can be changed from userspace.
410017e5142SPhilipp Zabel 	 */
411d0f9d64aSAnson Huang 	data->temp_passive = IMX_TEMP_PASSIVE;
412017e5142SPhilipp Zabel 
413017e5142SPhilipp Zabel 	/*
414d0f9d64aSAnson Huang 	 * The maximum die temperature set to 20 C higher than
415d0f9d64aSAnson Huang 	 * IMX_TEMP_PASSIVE.
416017e5142SPhilipp Zabel 	 */
417d0f9d64aSAnson Huang 	data->temp_critical = 1000 * 20 + data->temp_passive;
418017e5142SPhilipp Zabel 
419ca3de46bSShawn Guo 	return 0;
420ca3de46bSShawn Guo }
421ca3de46bSShawn Guo 
42237713a1eSPhilipp Zabel static irqreturn_t imx_thermal_alarm_irq(int irq, void *dev)
42337713a1eSPhilipp Zabel {
42437713a1eSPhilipp Zabel 	struct imx_thermal_data *data = dev;
42537713a1eSPhilipp Zabel 
42637713a1eSPhilipp Zabel 	disable_irq_nosync(irq);
42737713a1eSPhilipp Zabel 	data->irq_enabled = false;
42837713a1eSPhilipp Zabel 
42937713a1eSPhilipp Zabel 	return IRQ_WAKE_THREAD;
43037713a1eSPhilipp Zabel }
43137713a1eSPhilipp Zabel 
43237713a1eSPhilipp Zabel static irqreturn_t imx_thermal_alarm_irq_thread(int irq, void *dev)
43337713a1eSPhilipp Zabel {
43437713a1eSPhilipp Zabel 	struct imx_thermal_data *data = dev;
43537713a1eSPhilipp Zabel 
43637713a1eSPhilipp Zabel 	dev_dbg(&data->tz->device, "THERMAL ALARM: T > %lu\n",
43737713a1eSPhilipp Zabel 		data->alarm_temp / 1000);
43837713a1eSPhilipp Zabel 
43937713a1eSPhilipp Zabel 	thermal_zone_device_update(data->tz);
44037713a1eSPhilipp Zabel 
44137713a1eSPhilipp Zabel 	return IRQ_HANDLED;
44237713a1eSPhilipp Zabel }
44337713a1eSPhilipp Zabel 
4443c94f17eSAnson Huang static const struct of_device_id of_imx_thermal_match[] = {
4453c94f17eSAnson Huang 	{ .compatible = "fsl,imx6q-tempmon", .data = &thermal_imx6q_data, },
4463c94f17eSAnson Huang 	{ .compatible = "fsl,imx6sx-tempmon", .data = &thermal_imx6sx_data, },
4473c94f17eSAnson Huang 	{ /* end */ }
4483c94f17eSAnson Huang };
4493c94f17eSAnson Huang MODULE_DEVICE_TABLE(of, of_imx_thermal_match);
4503c94f17eSAnson Huang 
451ca3de46bSShawn Guo static int imx_thermal_probe(struct platform_device *pdev)
452ca3de46bSShawn Guo {
4533c94f17eSAnson Huang 	const struct of_device_id *of_id =
4543c94f17eSAnson Huang 		of_match_device(of_imx_thermal_match, &pdev->dev);
455ca3de46bSShawn Guo 	struct imx_thermal_data *data;
456ca3de46bSShawn Guo 	struct regmap *map;
45737713a1eSPhilipp Zabel 	int measure_freq;
458ca3de46bSShawn Guo 	int ret;
459ca3de46bSShawn Guo 
460ca3de46bSShawn Guo 	data = devm_kzalloc(&pdev->dev, sizeof(*data), GFP_KERNEL);
461ca3de46bSShawn Guo 	if (!data)
462ca3de46bSShawn Guo 		return -ENOMEM;
463ca3de46bSShawn Guo 
464ca3de46bSShawn Guo 	map = syscon_regmap_lookup_by_phandle(pdev->dev.of_node, "fsl,tempmon");
465ca3de46bSShawn Guo 	if (IS_ERR(map)) {
466ca3de46bSShawn Guo 		ret = PTR_ERR(map);
467ca3de46bSShawn Guo 		dev_err(&pdev->dev, "failed to get tempmon regmap: %d\n", ret);
468ca3de46bSShawn Guo 		return ret;
469ca3de46bSShawn Guo 	}
470ca3de46bSShawn Guo 	data->tempmon = map;
471ca3de46bSShawn Guo 
4723c94f17eSAnson Huang 	data->socdata = of_id->data;
4733c94f17eSAnson Huang 
4743c94f17eSAnson Huang 	/* make sure the IRQ flag is clear before enabling irq on i.MX6SX */
4753c94f17eSAnson Huang 	if (data->socdata->version == TEMPMON_IMX6SX) {
4763c94f17eSAnson Huang 		regmap_write(map, MISC1 + REG_CLR, MISC1_IRQ_TEMPHIGH |
4773c94f17eSAnson Huang 			MISC1_IRQ_TEMPLOW | MISC1_IRQ_TEMPPANIC);
4783c94f17eSAnson Huang 		/*
4793c94f17eSAnson Huang 		 * reset value of LOW ALARM is incorrect, set it to lowest
4803c94f17eSAnson Huang 		 * value to avoid false trigger of low alarm.
4813c94f17eSAnson Huang 		 */
4823c94f17eSAnson Huang 		regmap_write(map, TEMPSENSE2 + REG_SET,
4833c94f17eSAnson Huang 			TEMPSENSE2_LOW_VALUE_MASK);
4843c94f17eSAnson Huang 	}
4853c94f17eSAnson Huang 
48637713a1eSPhilipp Zabel 	data->irq = platform_get_irq(pdev, 0);
48737713a1eSPhilipp Zabel 	if (data->irq < 0)
48837713a1eSPhilipp Zabel 		return data->irq;
48937713a1eSPhilipp Zabel 
49037713a1eSPhilipp Zabel 	ret = devm_request_threaded_irq(&pdev->dev, data->irq,
49137713a1eSPhilipp Zabel 			imx_thermal_alarm_irq, imx_thermal_alarm_irq_thread,
49237713a1eSPhilipp Zabel 			0, "imx_thermal", data);
49337713a1eSPhilipp Zabel 	if (ret < 0) {
49437713a1eSPhilipp Zabel 		dev_err(&pdev->dev, "failed to request alarm irq: %d\n", ret);
49537713a1eSPhilipp Zabel 		return ret;
49637713a1eSPhilipp Zabel 	}
49737713a1eSPhilipp Zabel 
498ca3de46bSShawn Guo 	platform_set_drvdata(pdev, data);
499ca3de46bSShawn Guo 
500ca3de46bSShawn Guo 	ret = imx_get_sensor_data(pdev);
501ca3de46bSShawn Guo 	if (ret) {
502ca3de46bSShawn Guo 		dev_err(&pdev->dev, "failed to get sensor data\n");
503ca3de46bSShawn Guo 		return ret;
504ca3de46bSShawn Guo 	}
505ca3de46bSShawn Guo 
506ca3de46bSShawn Guo 	/* Make sure sensor is in known good state for measurements */
507ca3de46bSShawn Guo 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_POWER_DOWN);
508ca3de46bSShawn Guo 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_MEASURE_TEMP);
509ca3de46bSShawn Guo 	regmap_write(map, TEMPSENSE1 + REG_CLR, TEMPSENSE1_MEASURE_FREQ);
510ca3de46bSShawn Guo 	regmap_write(map, MISC0 + REG_SET, MISC0_REFTOP_SELBIASOFF);
511ca3de46bSShawn Guo 	regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_POWER_DOWN);
512ca3de46bSShawn Guo 
513bec85d2eSViresh Kumar 	data->cdev = cpufreq_cooling_register(cpu_present_mask);
514ca3de46bSShawn Guo 	if (IS_ERR(data->cdev)) {
515ca3de46bSShawn Guo 		ret = PTR_ERR(data->cdev);
516ca3de46bSShawn Guo 		dev_err(&pdev->dev,
517ca3de46bSShawn Guo 			"failed to register cpufreq cooling device: %d\n", ret);
518ca3de46bSShawn Guo 		return ret;
519ca3de46bSShawn Guo 	}
520ca3de46bSShawn Guo 
52190a21ff5SHeiner Kallweit 	data->thermal_clk = devm_clk_get(&pdev->dev, NULL);
52290a21ff5SHeiner Kallweit 	if (IS_ERR(data->thermal_clk)) {
52390a21ff5SHeiner Kallweit 		ret = PTR_ERR(data->thermal_clk);
52490a21ff5SHeiner Kallweit 		if (ret != -EPROBE_DEFER)
52590a21ff5SHeiner Kallweit 			dev_err(&pdev->dev,
52690a21ff5SHeiner Kallweit 				"failed to get thermal clk: %d\n", ret);
52790a21ff5SHeiner Kallweit 		cpufreq_cooling_unregister(data->cdev);
52890a21ff5SHeiner Kallweit 		return ret;
52990a21ff5SHeiner Kallweit 	}
53090a21ff5SHeiner Kallweit 
53190a21ff5SHeiner Kallweit 	/*
53290a21ff5SHeiner Kallweit 	 * Thermal sensor needs clk on to get correct value, normally
53390a21ff5SHeiner Kallweit 	 * we should enable its clk before taking measurement and disable
53490a21ff5SHeiner Kallweit 	 * clk after measurement is done, but if alarm function is enabled,
53590a21ff5SHeiner Kallweit 	 * hardware will auto measure the temperature periodically, so we
53690a21ff5SHeiner Kallweit 	 * need to keep the clk always on for alarm function.
53790a21ff5SHeiner Kallweit 	 */
53890a21ff5SHeiner Kallweit 	ret = clk_prepare_enable(data->thermal_clk);
53990a21ff5SHeiner Kallweit 	if (ret) {
54090a21ff5SHeiner Kallweit 		dev_err(&pdev->dev, "failed to enable thermal clk: %d\n", ret);
54190a21ff5SHeiner Kallweit 		cpufreq_cooling_unregister(data->cdev);
54290a21ff5SHeiner Kallweit 		return ret;
54390a21ff5SHeiner Kallweit 	}
54490a21ff5SHeiner Kallweit 
545ca3de46bSShawn Guo 	data->tz = thermal_zone_device_register("imx_thermal_zone",
546017e5142SPhilipp Zabel 						IMX_TRIP_NUM,
547017e5142SPhilipp Zabel 						BIT(IMX_TRIP_PASSIVE), data,
548ca3de46bSShawn Guo 						&imx_tz_ops, NULL,
549ca3de46bSShawn Guo 						IMX_PASSIVE_DELAY,
550ca3de46bSShawn Guo 						IMX_POLLING_DELAY);
551ca3de46bSShawn Guo 	if (IS_ERR(data->tz)) {
552ca3de46bSShawn Guo 		ret = PTR_ERR(data->tz);
553ca3de46bSShawn Guo 		dev_err(&pdev->dev,
554ca3de46bSShawn Guo 			"failed to register thermal zone device %d\n", ret);
55590a21ff5SHeiner Kallweit 		clk_disable_unprepare(data->thermal_clk);
556ca3de46bSShawn Guo 		cpufreq_cooling_unregister(data->cdev);
557ca3de46bSShawn Guo 		return ret;
558ca3de46bSShawn Guo 	}
559ca3de46bSShawn Guo 
56037713a1eSPhilipp Zabel 	/* Enable measurements at ~ 10 Hz */
56137713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE1 + REG_CLR, TEMPSENSE1_MEASURE_FREQ);
56237713a1eSPhilipp Zabel 	measure_freq = DIV_ROUND_UP(32768, 10); /* 10 Hz */
56337713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE1 + REG_SET, measure_freq);
56437713a1eSPhilipp Zabel 	imx_set_alarm_temp(data, data->temp_passive);
5653c94f17eSAnson Huang 
5663c94f17eSAnson Huang 	if (data->socdata->version == TEMPMON_IMX6SX)
5673c94f17eSAnson Huang 		imx_set_panic_temp(data, data->temp_critical);
5683c94f17eSAnson Huang 
56937713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_POWER_DOWN);
57037713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_MEASURE_TEMP);
57137713a1eSPhilipp Zabel 
57237713a1eSPhilipp Zabel 	data->irq_enabled = true;
573ca3de46bSShawn Guo 	data->mode = THERMAL_DEVICE_ENABLED;
574ca3de46bSShawn Guo 
575ca3de46bSShawn Guo 	return 0;
576ca3de46bSShawn Guo }
577ca3de46bSShawn Guo 
578ca3de46bSShawn Guo static int imx_thermal_remove(struct platform_device *pdev)
579ca3de46bSShawn Guo {
580ca3de46bSShawn Guo 	struct imx_thermal_data *data = platform_get_drvdata(pdev);
58137713a1eSPhilipp Zabel 	struct regmap *map = data->tempmon;
58237713a1eSPhilipp Zabel 
58337713a1eSPhilipp Zabel 	/* Disable measurements */
58437713a1eSPhilipp Zabel 	regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_POWER_DOWN);
585329fe7b1SAnson Huang 	if (!IS_ERR(data->thermal_clk))
586329fe7b1SAnson Huang 		clk_disable_unprepare(data->thermal_clk);
587ca3de46bSShawn Guo 
588ca3de46bSShawn Guo 	thermal_zone_device_unregister(data->tz);
589ca3de46bSShawn Guo 	cpufreq_cooling_unregister(data->cdev);
590ca3de46bSShawn Guo 
591ca3de46bSShawn Guo 	return 0;
592ca3de46bSShawn Guo }
593ca3de46bSShawn Guo 
594ca3de46bSShawn Guo #ifdef CONFIG_PM_SLEEP
595ca3de46bSShawn Guo static int imx_thermal_suspend(struct device *dev)
596ca3de46bSShawn Guo {
597ca3de46bSShawn Guo 	struct imx_thermal_data *data = dev_get_drvdata(dev);
598ca3de46bSShawn Guo 	struct regmap *map = data->tempmon;
599ca3de46bSShawn Guo 
600ca3de46bSShawn Guo 	/*
601b46cce59SAnson Huang 	 * Need to disable thermal sensor, otherwise, when thermal core
602b46cce59SAnson Huang 	 * try to get temperature before thermal sensor resume, a wrong
603b46cce59SAnson Huang 	 * temperature will be read as the thermal sensor is powered
604b46cce59SAnson Huang 	 * down.
605ca3de46bSShawn Guo 	 */
606b46cce59SAnson Huang 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_MEASURE_TEMP);
607b46cce59SAnson Huang 	regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_POWER_DOWN);
608b46cce59SAnson Huang 	data->mode = THERMAL_DEVICE_DISABLED;
609ca3de46bSShawn Guo 
610ca3de46bSShawn Guo 	return 0;
611ca3de46bSShawn Guo }
612ca3de46bSShawn Guo 
613ca3de46bSShawn Guo static int imx_thermal_resume(struct device *dev)
614ca3de46bSShawn Guo {
615b46cce59SAnson Huang 	struct imx_thermal_data *data = dev_get_drvdata(dev);
616b46cce59SAnson Huang 	struct regmap *map = data->tempmon;
617b46cce59SAnson Huang 
618b46cce59SAnson Huang 	/* Enabled thermal sensor after resume */
619b46cce59SAnson Huang 	regmap_write(map, TEMPSENSE0 + REG_CLR, TEMPSENSE0_POWER_DOWN);
620b46cce59SAnson Huang 	regmap_write(map, TEMPSENSE0 + REG_SET, TEMPSENSE0_MEASURE_TEMP);
621b46cce59SAnson Huang 	data->mode = THERMAL_DEVICE_ENABLED;
622b46cce59SAnson Huang 
623ca3de46bSShawn Guo 	return 0;
624ca3de46bSShawn Guo }
625ca3de46bSShawn Guo #endif
626ca3de46bSShawn Guo 
627ca3de46bSShawn Guo static SIMPLE_DEV_PM_OPS(imx_thermal_pm_ops,
628ca3de46bSShawn Guo 			 imx_thermal_suspend, imx_thermal_resume);
629ca3de46bSShawn Guo 
630ca3de46bSShawn Guo static struct platform_driver imx_thermal = {
631ca3de46bSShawn Guo 	.driver = {
632ca3de46bSShawn Guo 		.name	= "imx_thermal",
633ca3de46bSShawn Guo 		.owner  = THIS_MODULE,
634ca3de46bSShawn Guo 		.pm	= &imx_thermal_pm_ops,
635ca3de46bSShawn Guo 		.of_match_table = of_imx_thermal_match,
636ca3de46bSShawn Guo 	},
637ca3de46bSShawn Guo 	.probe		= imx_thermal_probe,
638ca3de46bSShawn Guo 	.remove		= imx_thermal_remove,
639ca3de46bSShawn Guo };
640ca3de46bSShawn Guo module_platform_driver(imx_thermal);
641ca3de46bSShawn Guo 
642ca3de46bSShawn Guo MODULE_AUTHOR("Freescale Semiconductor, Inc.");
643ca3de46bSShawn Guo MODULE_DESCRIPTION("Thermal driver for Freescale i.MX SoCs");
644ca3de46bSShawn Guo MODULE_LICENSE("GPL v2");
645ca3de46bSShawn Guo MODULE_ALIAS("platform:imx-thermal");
646