xref: /linux/drivers/hwmon/g762.c (revision 251f65cde829fdc351132328a27d9466237e96ef)
1594fbe71SArnaud Ebalard /*
2594fbe71SArnaud Ebalard  * g762 - Driver for the Global Mixed-mode Technology Inc. fan speed
3594fbe71SArnaud Ebalard  *        PWM controller chips from G762 family, i.e. G762 and G763
4594fbe71SArnaud Ebalard  *
5594fbe71SArnaud Ebalard  * Copyright (C) 2013, Arnaud EBALARD <arno@natisbad.org>
6594fbe71SArnaud Ebalard  *
7594fbe71SArnaud Ebalard  * This work is based on a basic version for 2.6.31 kernel developed
8594fbe71SArnaud Ebalard  * by Olivier Mouchet for LaCie. Updates and correction have been
9594fbe71SArnaud Ebalard  * performed to run on recent kernels. Additional features, like the
10594fbe71SArnaud Ebalard  * ability to configure various characteristics via .dts file or
11594fbe71SArnaud Ebalard  * board init file have been added. Detailed datasheet on which this
12594fbe71SArnaud Ebalard  * development is based is available here:
13594fbe71SArnaud Ebalard  *
14594fbe71SArnaud Ebalard  *  http://natisbad.org/NAS/refs/GMT_EDS-762_763-080710-0.2.pdf
15594fbe71SArnaud Ebalard  *
16594fbe71SArnaud Ebalard  * Headers from previous developments have been kept below:
17594fbe71SArnaud Ebalard  *
18594fbe71SArnaud Ebalard  * Copyright (c) 2009 LaCie
19594fbe71SArnaud Ebalard  *
20594fbe71SArnaud Ebalard  * Author: Olivier Mouchet <olivier.mouchet@gmail.com>
21594fbe71SArnaud Ebalard  *
22594fbe71SArnaud Ebalard  * based on g760a code written by Herbert Valerio Riedel <hvr@gnu.org>
23594fbe71SArnaud Ebalard  * Copyright (C) 2007  Herbert Valerio Riedel <hvr@gnu.org>
24594fbe71SArnaud Ebalard  *
25594fbe71SArnaud Ebalard  * g762: minimal datasheet available at:
26594fbe71SArnaud Ebalard  *       http://www.gmt.com.tw/product/datasheet/EDS-762_3.pdf
27594fbe71SArnaud Ebalard  *
28594fbe71SArnaud Ebalard  * This program is free software; you can redistribute it and/or modify
29594fbe71SArnaud Ebalard  * it under the terms of the GNU General Public License as published by
30594fbe71SArnaud Ebalard  * the Free Software Foundation; either version 2 of the License, or
31594fbe71SArnaud Ebalard  * (at your option) any later version.
32594fbe71SArnaud Ebalard  *
33594fbe71SArnaud Ebalard  * This program is distributed in the hope that it will be useful,
34594fbe71SArnaud Ebalard  * but WITHOUT ANY WARRANTY; without even the implied warranty of
35594fbe71SArnaud Ebalard  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
36594fbe71SArnaud Ebalard  * GNU General Public License for more details.
37594fbe71SArnaud Ebalard  *
38594fbe71SArnaud Ebalard  * You should have received a copy of the GNU General Public License
39594fbe71SArnaud Ebalard  * along with this program; if not, write to the Free Software
40594fbe71SArnaud Ebalard  * Foundation.
41594fbe71SArnaud Ebalard  */
42594fbe71SArnaud Ebalard 
43594fbe71SArnaud Ebalard #include <linux/device.h>
44594fbe71SArnaud Ebalard #include <linux/module.h>
45594fbe71SArnaud Ebalard #include <linux/init.h>
46594fbe71SArnaud Ebalard #include <linux/jiffies.h>
47594fbe71SArnaud Ebalard #include <linux/i2c.h>
48594fbe71SArnaud Ebalard #include <linux/hwmon.h>
49594fbe71SArnaud Ebalard #include <linux/hwmon-sysfs.h>
50594fbe71SArnaud Ebalard #include <linux/err.h>
51594fbe71SArnaud Ebalard #include <linux/mutex.h>
52594fbe71SArnaud Ebalard #include <linux/kernel.h>
53594fbe71SArnaud Ebalard #include <linux/clk.h>
54594fbe71SArnaud Ebalard #include <linux/of.h>
55594fbe71SArnaud Ebalard #include <linux/of_device.h>
56594fbe71SArnaud Ebalard #include <linux/platform_data/g762.h>
57594fbe71SArnaud Ebalard 
58594fbe71SArnaud Ebalard #define DRVNAME "g762"
59594fbe71SArnaud Ebalard 
60594fbe71SArnaud Ebalard static const struct i2c_device_id g762_id[] = {
61594fbe71SArnaud Ebalard 	{ "g762", 0 },
62594fbe71SArnaud Ebalard 	{ "g763", 0 },
63594fbe71SArnaud Ebalard 	{ }
64594fbe71SArnaud Ebalard };
65594fbe71SArnaud Ebalard MODULE_DEVICE_TABLE(i2c, g762_id);
66594fbe71SArnaud Ebalard 
67594fbe71SArnaud Ebalard enum g762_regs {
68594fbe71SArnaud Ebalard 	G762_REG_SET_CNT  = 0x00,
69594fbe71SArnaud Ebalard 	G762_REG_ACT_CNT  = 0x01,
70594fbe71SArnaud Ebalard 	G762_REG_FAN_STA  = 0x02,
71594fbe71SArnaud Ebalard 	G762_REG_SET_OUT  = 0x03,
72594fbe71SArnaud Ebalard 	G762_REG_FAN_CMD1 = 0x04,
73594fbe71SArnaud Ebalard 	G762_REG_FAN_CMD2 = 0x05,
74594fbe71SArnaud Ebalard };
75594fbe71SArnaud Ebalard 
76594fbe71SArnaud Ebalard /* Config register bits */
77594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_DET_FAN_FAIL  0x80 /* enable fan_fail signal */
78594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_DET_FAN_OOC   0x40 /* enable fan_out_of_control */
79594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_OUT_MODE      0x20 /* out mode: PWM or DC */
80594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_FAN_MODE      0x10 /* fan mode: closed/open-loop */
81594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_CLK_DIV_ID1   0x08 /* clock divisor value */
82594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_CLK_DIV_ID0   0x04
83594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_PWM_POLARITY  0x02 /* PWM polarity */
84594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_PULSE_PER_REV 0x01 /* pulse per fan revolution */
85594fbe71SArnaud Ebalard 
86594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_GEAR_MODE_1   0x08 /* fan gear mode */
87594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_GEAR_MODE_0   0x04
88594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_FAN_STARTV_1  0x02 /* fan startup voltage */
89594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_FAN_STARTV_0  0x01
90594fbe71SArnaud Ebalard 
91594fbe71SArnaud Ebalard #define G762_REG_FAN_STA_FAIL           0x02 /* fan fail */
92594fbe71SArnaud Ebalard #define G762_REG_FAN_STA_OOC            0x01 /* fan out of control */
93594fbe71SArnaud Ebalard 
94594fbe71SArnaud Ebalard /* Config register values */
95594fbe71SArnaud Ebalard #define G762_OUT_MODE_PWM            1
96594fbe71SArnaud Ebalard #define G762_OUT_MODE_DC             0
97594fbe71SArnaud Ebalard 
98594fbe71SArnaud Ebalard #define G762_FAN_MODE_CLOSED_LOOP    2
99594fbe71SArnaud Ebalard #define G762_FAN_MODE_OPEN_LOOP      1
100594fbe71SArnaud Ebalard 
101594fbe71SArnaud Ebalard #define G762_PWM_POLARITY_NEGATIVE   1
102594fbe71SArnaud Ebalard #define G762_PWM_POLARITY_POSITIVE   0
103594fbe71SArnaud Ebalard 
104594fbe71SArnaud Ebalard /* Register data is read (and cached) at most once per second. */
105594fbe71SArnaud Ebalard #define G762_UPDATE_INTERVAL    HZ
106594fbe71SArnaud Ebalard 
107594fbe71SArnaud Ebalard /*
108594fbe71SArnaud Ebalard  * Extract pulse count per fan revolution value (2 or 4) from given
109594fbe71SArnaud Ebalard  * FAN_CMD1 register value.
110594fbe71SArnaud Ebalard  */
111594fbe71SArnaud Ebalard #define G762_PULSE_FROM_REG(reg) \
112594fbe71SArnaud Ebalard 	((((reg) & G762_REG_FAN_CMD1_PULSE_PER_REV) + 1) << 1)
113594fbe71SArnaud Ebalard 
114594fbe71SArnaud Ebalard /*
115594fbe71SArnaud Ebalard  * Extract fan clock divisor (1, 2, 4 or 8) from given FAN_CMD1
116594fbe71SArnaud Ebalard  * register value.
117594fbe71SArnaud Ebalard  */
118594fbe71SArnaud Ebalard #define G762_CLKDIV_FROM_REG(reg) \
119594fbe71SArnaud Ebalard 	(1 << (((reg) & (G762_REG_FAN_CMD1_CLK_DIV_ID0 |	\
120594fbe71SArnaud Ebalard 			 G762_REG_FAN_CMD1_CLK_DIV_ID1)) >> 2))
121594fbe71SArnaud Ebalard 
122594fbe71SArnaud Ebalard /*
123594fbe71SArnaud Ebalard  * Extract fan gear mode multiplier value (0, 2 or 4) from given
124594fbe71SArnaud Ebalard  * FAN_CMD2 register value.
125594fbe71SArnaud Ebalard  */
126594fbe71SArnaud Ebalard #define G762_GEARMULT_FROM_REG(reg) \
127594fbe71SArnaud Ebalard 	(1 << (((reg) & (G762_REG_FAN_CMD2_GEAR_MODE_0 |	\
128594fbe71SArnaud Ebalard 			 G762_REG_FAN_CMD2_GEAR_MODE_1)) >> 2))
129594fbe71SArnaud Ebalard 
130594fbe71SArnaud Ebalard struct g762_data {
131594fbe71SArnaud Ebalard 	struct device *hwmon_dev;
132398e16dbSAxel Lin 	struct i2c_client *client;
133594fbe71SArnaud Ebalard 	struct clk *clk;
134594fbe71SArnaud Ebalard 
135594fbe71SArnaud Ebalard 	/* update mutex */
136594fbe71SArnaud Ebalard 	struct mutex update_lock;
137594fbe71SArnaud Ebalard 
138594fbe71SArnaud Ebalard 	/* board specific parameters. */
139594fbe71SArnaud Ebalard 	u32 clk_freq;
140594fbe71SArnaud Ebalard 
141594fbe71SArnaud Ebalard 	/* g762 register cache */
142594fbe71SArnaud Ebalard 	bool valid;
143594fbe71SArnaud Ebalard 	unsigned long last_updated; /* in jiffies */
144594fbe71SArnaud Ebalard 
145594fbe71SArnaud Ebalard 	u8 set_cnt;  /* controls fan rotation speed in closed-loop mode */
146594fbe71SArnaud Ebalard 	u8 act_cnt;  /* provides access to current fan RPM value */
147594fbe71SArnaud Ebalard 	u8 fan_sta;  /* bit 0: set when actual fan speed is more than
148594fbe71SArnaud Ebalard 		      *        25% outside requested fan speed
149594fbe71SArnaud Ebalard 		      * bit 1: set when no transition occurs on fan
150594fbe71SArnaud Ebalard 		      *        pin for 0.7s
151594fbe71SArnaud Ebalard 		      */
152594fbe71SArnaud Ebalard 	u8 set_out;  /* controls fan rotation speed in open-loop mode */
153594fbe71SArnaud Ebalard 	u8 fan_cmd1; /*   0: FG_PLS_ID0 FG pulses count per revolution
154594fbe71SArnaud Ebalard 		      *      0: 2 counts per revolution
155594fbe71SArnaud Ebalard 		      *      1: 4 counts per revolution
156594fbe71SArnaud Ebalard 		      *   1: PWM_POLARITY 1: negative_duty
157594fbe71SArnaud Ebalard 		      *                   0: positive_duty
158594fbe71SArnaud Ebalard 		      * 2,3: [FG_CLOCK_ID0, FG_CLK_ID1]
159594fbe71SArnaud Ebalard 		      *         00: Divide fan clock by 1
160594fbe71SArnaud Ebalard 		      *         01: Divide fan clock by 2
161594fbe71SArnaud Ebalard 		      *         10: Divide fan clock by 4
162594fbe71SArnaud Ebalard 		      *         11: Divide fan clock by 8
163594fbe71SArnaud Ebalard 		      *   4: FAN_MODE 1:closed-loop, 0:open-loop
164594fbe71SArnaud Ebalard 		      *   5: OUT_MODE 1:PWM, 0:DC
165594fbe71SArnaud Ebalard 		      *   6: DET_FAN_OOC enable "fan ooc" status
166594fbe71SArnaud Ebalard 		      *   7: DET_FAN_FAIL enable "fan fail" status
167594fbe71SArnaud Ebalard 		      */
168594fbe71SArnaud Ebalard 	u8 fan_cmd2; /* 0,1: FAN_STARTV 0,1,2,3 -> 0,32,64,96 dac_code
169594fbe71SArnaud Ebalard 		      * 2,3: FG_GEAR_MODE
170594fbe71SArnaud Ebalard 		      *         00: multiplier = 1
171594fbe71SArnaud Ebalard 		      *         01: multiplier = 2
172594fbe71SArnaud Ebalard 		      *         10: multiplier = 4
173594fbe71SArnaud Ebalard 		      *   4: Mask ALERT# (g763 only)
174594fbe71SArnaud Ebalard 		      */
175594fbe71SArnaud Ebalard };
176594fbe71SArnaud Ebalard 
177594fbe71SArnaud Ebalard /*
178594fbe71SArnaud Ebalard  * Convert count value from fan controller register (FAN_SET_CNT) into fan
179594fbe71SArnaud Ebalard  * speed RPM value. Note that the datasheet documents a basic formula;
180594fbe71SArnaud Ebalard  * influence of additional parameters (fan clock divisor, fan gear mode)
181594fbe71SArnaud Ebalard  * have been infered from examples in the datasheet and tests.
182594fbe71SArnaud Ebalard  */
183594fbe71SArnaud Ebalard static inline unsigned int rpm_from_cnt(u8 cnt, u32 clk_freq, u16 p,
184594fbe71SArnaud Ebalard 					u8 clk_div, u8 gear_mult)
185594fbe71SArnaud Ebalard {
186594fbe71SArnaud Ebalard 	if (cnt == 0xff)  /* setting cnt to 255 stops the fan */
187594fbe71SArnaud Ebalard 		return 0;
188594fbe71SArnaud Ebalard 
189594fbe71SArnaud Ebalard 	return (clk_freq * 30 * gear_mult) / ((cnt ? cnt : 1) * p * clk_div);
190594fbe71SArnaud Ebalard }
191594fbe71SArnaud Ebalard 
192594fbe71SArnaud Ebalard /*
193594fbe71SArnaud Ebalard  * Convert fan RPM value from sysfs into count value for fan controller
194594fbe71SArnaud Ebalard  * register (FAN_SET_CNT).
195594fbe71SArnaud Ebalard  */
1964fccd4a1SGuenter Roeck static inline unsigned char cnt_from_rpm(unsigned long rpm, u32 clk_freq, u16 p,
197594fbe71SArnaud Ebalard 					 u8 clk_div, u8 gear_mult)
198594fbe71SArnaud Ebalard {
1994fccd4a1SGuenter Roeck 	unsigned long f1 = clk_freq * 30 * gear_mult;
2004fccd4a1SGuenter Roeck 	unsigned long f2 = p * clk_div;
2014fccd4a1SGuenter Roeck 
202594fbe71SArnaud Ebalard 	if (!rpm)	/* to stop the fan, set cnt to 255 */
203594fbe71SArnaud Ebalard 		return 0xff;
204594fbe71SArnaud Ebalard 
2054fccd4a1SGuenter Roeck 	rpm = clamp_val(rpm, f1 / (255 * f2), ULONG_MAX / f2);
2064fccd4a1SGuenter Roeck 	return DIV_ROUND_CLOSEST(f1, rpm * f2);
207594fbe71SArnaud Ebalard }
208594fbe71SArnaud Ebalard 
209594fbe71SArnaud Ebalard /* helper to grab and cache data, at most one time per second */
210594fbe71SArnaud Ebalard static struct g762_data *g762_update_client(struct device *dev)
211594fbe71SArnaud Ebalard {
212398e16dbSAxel Lin 	struct g762_data *data = dev_get_drvdata(dev);
213398e16dbSAxel Lin 	struct i2c_client *client = data->client;
214594fbe71SArnaud Ebalard 	int ret = 0;
215594fbe71SArnaud Ebalard 
216594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
217594fbe71SArnaud Ebalard 	if (time_before(jiffies, data->last_updated + G762_UPDATE_INTERVAL) &&
218594fbe71SArnaud Ebalard 	    likely(data->valid))
219594fbe71SArnaud Ebalard 		goto out;
220594fbe71SArnaud Ebalard 
221594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_SET_CNT);
222594fbe71SArnaud Ebalard 	if (ret < 0)
223594fbe71SArnaud Ebalard 		goto out;
224594fbe71SArnaud Ebalard 	data->set_cnt = ret;
225594fbe71SArnaud Ebalard 
226594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_ACT_CNT);
227594fbe71SArnaud Ebalard 	if (ret < 0)
228594fbe71SArnaud Ebalard 		goto out;
229594fbe71SArnaud Ebalard 	data->act_cnt = ret;
230594fbe71SArnaud Ebalard 
231594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_STA);
232594fbe71SArnaud Ebalard 	if (ret < 0)
233594fbe71SArnaud Ebalard 		goto out;
234594fbe71SArnaud Ebalard 	data->fan_sta = ret;
235594fbe71SArnaud Ebalard 
236594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_SET_OUT);
237594fbe71SArnaud Ebalard 	if (ret < 0)
238594fbe71SArnaud Ebalard 		goto out;
239594fbe71SArnaud Ebalard 	data->set_out = ret;
240594fbe71SArnaud Ebalard 
241594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_CMD1);
242594fbe71SArnaud Ebalard 	if (ret < 0)
243594fbe71SArnaud Ebalard 		goto out;
244594fbe71SArnaud Ebalard 	data->fan_cmd1 = ret;
245594fbe71SArnaud Ebalard 
246594fbe71SArnaud Ebalard 	ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_CMD2);
247594fbe71SArnaud Ebalard 	if (ret < 0)
248594fbe71SArnaud Ebalard 		goto out;
249594fbe71SArnaud Ebalard 	data->fan_cmd2 = ret;
250594fbe71SArnaud Ebalard 
251594fbe71SArnaud Ebalard 	data->last_updated = jiffies;
252594fbe71SArnaud Ebalard 	data->valid = true;
253594fbe71SArnaud Ebalard  out:
254594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
255594fbe71SArnaud Ebalard 
256594fbe71SArnaud Ebalard 	if (ret < 0) /* upon error, encode it in return value */
257594fbe71SArnaud Ebalard 		data = ERR_PTR(ret);
258594fbe71SArnaud Ebalard 
259594fbe71SArnaud Ebalard 	return data;
260594fbe71SArnaud Ebalard }
261594fbe71SArnaud Ebalard 
262594fbe71SArnaud Ebalard /* helpers for writing hardware parameters */
263594fbe71SArnaud Ebalard 
264594fbe71SArnaud Ebalard /*
265594fbe71SArnaud Ebalard  * Set input clock frequency received on CLK pin of the chip. Accepted values
266594fbe71SArnaud Ebalard  * are between 0 and 0xffffff. If zero is given, then default frequency
267594fbe71SArnaud Ebalard  * (32,768Hz) is used. Note that clock frequency is a characteristic of the
268594fbe71SArnaud Ebalard  * system but an internal parameter, i.e. value is not passed to the device.
269594fbe71SArnaud Ebalard  */
270594fbe71SArnaud Ebalard static int do_set_clk_freq(struct device *dev, unsigned long val)
271594fbe71SArnaud Ebalard {
272398e16dbSAxel Lin 	struct g762_data *data = dev_get_drvdata(dev);
273594fbe71SArnaud Ebalard 
274594fbe71SArnaud Ebalard 	if (val > 0xffffff)
275594fbe71SArnaud Ebalard 		return -EINVAL;
276594fbe71SArnaud Ebalard 	if (!val)
277594fbe71SArnaud Ebalard 		val = 32768;
278594fbe71SArnaud Ebalard 
279594fbe71SArnaud Ebalard 	data->clk_freq = val;
280594fbe71SArnaud Ebalard 
281594fbe71SArnaud Ebalard 	return 0;
282594fbe71SArnaud Ebalard }
283594fbe71SArnaud Ebalard 
284594fbe71SArnaud Ebalard /* Set pwm mode. Accepts either 0 (PWM mode) or 1 (DC mode) */
285594fbe71SArnaud Ebalard static int do_set_pwm_mode(struct device *dev, unsigned long val)
286594fbe71SArnaud Ebalard {
287594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
288594fbe71SArnaud Ebalard 	int ret;
289594fbe71SArnaud Ebalard 
290594fbe71SArnaud Ebalard 	if (IS_ERR(data))
291594fbe71SArnaud Ebalard 		return PTR_ERR(data);
292594fbe71SArnaud Ebalard 
293594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
294594fbe71SArnaud Ebalard 	switch (val) {
295594fbe71SArnaud Ebalard 	case G762_OUT_MODE_PWM:
296594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_OUT_MODE;
297594fbe71SArnaud Ebalard 		break;
298594fbe71SArnaud Ebalard 	case G762_OUT_MODE_DC:
299594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_OUT_MODE;
300594fbe71SArnaud Ebalard 		break;
301594fbe71SArnaud Ebalard 	default:
302594fbe71SArnaud Ebalard 		ret = -EINVAL;
303594fbe71SArnaud Ebalard 		goto out;
304594fbe71SArnaud Ebalard 	}
305398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
306594fbe71SArnaud Ebalard 					data->fan_cmd1);
307594fbe71SArnaud Ebalard 	data->valid = false;
308594fbe71SArnaud Ebalard  out:
309594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
310594fbe71SArnaud Ebalard 
311594fbe71SArnaud Ebalard 	return ret;
312594fbe71SArnaud Ebalard }
313594fbe71SArnaud Ebalard 
314594fbe71SArnaud Ebalard /* Set fan clock divisor. Accepts either 1, 2, 4 or 8. */
315594fbe71SArnaud Ebalard static int do_set_fan_div(struct device *dev, unsigned long val)
316594fbe71SArnaud Ebalard {
317594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
318594fbe71SArnaud Ebalard 	int ret;
319594fbe71SArnaud Ebalard 
320594fbe71SArnaud Ebalard 	if (IS_ERR(data))
321594fbe71SArnaud Ebalard 		return PTR_ERR(data);
322594fbe71SArnaud Ebalard 
323594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
324594fbe71SArnaud Ebalard 	switch (val) {
325594fbe71SArnaud Ebalard 	case 1:
326594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID0;
327594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID1;
328594fbe71SArnaud Ebalard 		break;
329594fbe71SArnaud Ebalard 	case 2:
330594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_CLK_DIV_ID0;
331594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID1;
332594fbe71SArnaud Ebalard 		break;
333594fbe71SArnaud Ebalard 	case 4:
334594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID0;
335594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_CLK_DIV_ID1;
336594fbe71SArnaud Ebalard 		break;
337594fbe71SArnaud Ebalard 	case 8:
338594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_CLK_DIV_ID0;
339594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_CLK_DIV_ID1;
340594fbe71SArnaud Ebalard 		break;
341594fbe71SArnaud Ebalard 	default:
342594fbe71SArnaud Ebalard 		ret = -EINVAL;
343594fbe71SArnaud Ebalard 		goto out;
344594fbe71SArnaud Ebalard 	}
345398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
346594fbe71SArnaud Ebalard 					data->fan_cmd1);
347594fbe71SArnaud Ebalard 	data->valid = false;
348594fbe71SArnaud Ebalard  out:
349594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
350594fbe71SArnaud Ebalard 
351594fbe71SArnaud Ebalard 	return ret;
352594fbe71SArnaud Ebalard }
353594fbe71SArnaud Ebalard 
354594fbe71SArnaud Ebalard /* Set fan gear mode. Accepts either 0, 1 or 2. */
355594fbe71SArnaud Ebalard static int do_set_fan_gear_mode(struct device *dev, unsigned long val)
356594fbe71SArnaud Ebalard {
357594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
358594fbe71SArnaud Ebalard 	int ret;
359594fbe71SArnaud Ebalard 
360594fbe71SArnaud Ebalard 	if (IS_ERR(data))
361594fbe71SArnaud Ebalard 		return PTR_ERR(data);
362594fbe71SArnaud Ebalard 
363594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
364594fbe71SArnaud Ebalard 	switch (val) {
365594fbe71SArnaud Ebalard 	case 0:
366594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_0;
367594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_1;
368594fbe71SArnaud Ebalard 		break;
369594fbe71SArnaud Ebalard 	case 1:
370594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_GEAR_MODE_0;
371594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_1;
372594fbe71SArnaud Ebalard 		break;
373594fbe71SArnaud Ebalard 	case 2:
374594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_0;
375594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_GEAR_MODE_1;
376594fbe71SArnaud Ebalard 		break;
377594fbe71SArnaud Ebalard 	default:
378594fbe71SArnaud Ebalard 		ret = -EINVAL;
379594fbe71SArnaud Ebalard 		goto out;
380594fbe71SArnaud Ebalard 	}
381398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD2,
382594fbe71SArnaud Ebalard 					data->fan_cmd2);
383594fbe71SArnaud Ebalard 	data->valid = false;
384594fbe71SArnaud Ebalard  out:
385594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
386594fbe71SArnaud Ebalard 
387594fbe71SArnaud Ebalard 	return ret;
388594fbe71SArnaud Ebalard }
389594fbe71SArnaud Ebalard 
390594fbe71SArnaud Ebalard /* Set number of fan pulses per revolution. Accepts either 2 or 4. */
391594fbe71SArnaud Ebalard static int do_set_fan_pulses(struct device *dev, unsigned long val)
392594fbe71SArnaud Ebalard {
393594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
394594fbe71SArnaud Ebalard 	int ret;
395594fbe71SArnaud Ebalard 
396594fbe71SArnaud Ebalard 	if (IS_ERR(data))
397594fbe71SArnaud Ebalard 		return PTR_ERR(data);
398594fbe71SArnaud Ebalard 
399594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
400594fbe71SArnaud Ebalard 	switch (val) {
401594fbe71SArnaud Ebalard 	case 2:
402594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_PULSE_PER_REV;
403594fbe71SArnaud Ebalard 		break;
404594fbe71SArnaud Ebalard 	case 4:
405594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_PULSE_PER_REV;
406594fbe71SArnaud Ebalard 		break;
407594fbe71SArnaud Ebalard 	default:
408594fbe71SArnaud Ebalard 		ret = -EINVAL;
409594fbe71SArnaud Ebalard 		goto out;
410594fbe71SArnaud Ebalard 	}
411398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
412594fbe71SArnaud Ebalard 					data->fan_cmd1);
413594fbe71SArnaud Ebalard 	data->valid = false;
414594fbe71SArnaud Ebalard  out:
415594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
416594fbe71SArnaud Ebalard 
417594fbe71SArnaud Ebalard 	return ret;
418594fbe71SArnaud Ebalard }
419594fbe71SArnaud Ebalard 
420594fbe71SArnaud Ebalard /* Set fan mode. Accepts either 1 (open-loop) or 2 (closed-loop). */
421594fbe71SArnaud Ebalard static int do_set_pwm_enable(struct device *dev, unsigned long val)
422594fbe71SArnaud Ebalard {
423594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
424594fbe71SArnaud Ebalard 	int ret;
425594fbe71SArnaud Ebalard 
426594fbe71SArnaud Ebalard 	if (IS_ERR(data))
427594fbe71SArnaud Ebalard 		return PTR_ERR(data);
428594fbe71SArnaud Ebalard 
429594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
430594fbe71SArnaud Ebalard 	switch (val) {
431594fbe71SArnaud Ebalard 	case G762_FAN_MODE_CLOSED_LOOP:
432594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_FAN_MODE;
433594fbe71SArnaud Ebalard 		break;
434594fbe71SArnaud Ebalard 	case G762_FAN_MODE_OPEN_LOOP:
435594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_FAN_MODE;
436594fbe71SArnaud Ebalard 		/*
437594fbe71SArnaud Ebalard 		 * BUG FIX: if SET_CNT register value is 255 then, for some
438594fbe71SArnaud Ebalard 		 * unknown reason, fan will not rotate as expected, no matter
439594fbe71SArnaud Ebalard 		 * the value of SET_OUT (to be specific, this seems to happen
440594fbe71SArnaud Ebalard 		 * only in PWM mode). To workaround this bug, we give SET_CNT
441594fbe71SArnaud Ebalard 		 * value of 254 if it is 255 when switching to open-loop.
442594fbe71SArnaud Ebalard 		 */
443594fbe71SArnaud Ebalard 		if (data->set_cnt == 0xff)
444398e16dbSAxel Lin 			i2c_smbus_write_byte_data(data->client,
445398e16dbSAxel Lin 						  G762_REG_SET_CNT, 254);
446594fbe71SArnaud Ebalard 		break;
447594fbe71SArnaud Ebalard 	default:
448594fbe71SArnaud Ebalard 		ret = -EINVAL;
449594fbe71SArnaud Ebalard 		goto out;
450594fbe71SArnaud Ebalard 	}
451594fbe71SArnaud Ebalard 
452398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
453594fbe71SArnaud Ebalard 					data->fan_cmd1);
454594fbe71SArnaud Ebalard 	data->valid = false;
455594fbe71SArnaud Ebalard  out:
456594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
457594fbe71SArnaud Ebalard 
458594fbe71SArnaud Ebalard 	return ret;
459594fbe71SArnaud Ebalard }
460594fbe71SArnaud Ebalard 
461594fbe71SArnaud Ebalard /* Set PWM polarity. Accepts either 0 (positive duty) or 1 (negative duty) */
462594fbe71SArnaud Ebalard static int do_set_pwm_polarity(struct device *dev, unsigned long val)
463594fbe71SArnaud Ebalard {
464594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
465594fbe71SArnaud Ebalard 	int ret;
466594fbe71SArnaud Ebalard 
467594fbe71SArnaud Ebalard 	if (IS_ERR(data))
468594fbe71SArnaud Ebalard 		return PTR_ERR(data);
469594fbe71SArnaud Ebalard 
470594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
471594fbe71SArnaud Ebalard 	switch (val) {
472594fbe71SArnaud Ebalard 	case G762_PWM_POLARITY_POSITIVE:
473594fbe71SArnaud Ebalard 		data->fan_cmd1 &= ~G762_REG_FAN_CMD1_PWM_POLARITY;
474594fbe71SArnaud Ebalard 		break;
475594fbe71SArnaud Ebalard 	case G762_PWM_POLARITY_NEGATIVE:
476594fbe71SArnaud Ebalard 		data->fan_cmd1 |=  G762_REG_FAN_CMD1_PWM_POLARITY;
477594fbe71SArnaud Ebalard 		break;
478594fbe71SArnaud Ebalard 	default:
479594fbe71SArnaud Ebalard 		ret = -EINVAL;
480594fbe71SArnaud Ebalard 		goto out;
481594fbe71SArnaud Ebalard 	}
482398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
483594fbe71SArnaud Ebalard 					data->fan_cmd1);
484594fbe71SArnaud Ebalard 	data->valid = false;
485594fbe71SArnaud Ebalard  out:
486594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
487594fbe71SArnaud Ebalard 
488594fbe71SArnaud Ebalard 	return ret;
489594fbe71SArnaud Ebalard }
490594fbe71SArnaud Ebalard 
491594fbe71SArnaud Ebalard /*
492594fbe71SArnaud Ebalard  * Set pwm value. Accepts values between 0 (stops the fan) and
493594fbe71SArnaud Ebalard  * 255 (full speed). This only makes sense in open-loop mode.
494594fbe71SArnaud Ebalard  */
495594fbe71SArnaud Ebalard static int do_set_pwm(struct device *dev, unsigned long val)
496594fbe71SArnaud Ebalard {
497398e16dbSAxel Lin 	struct g762_data *data = dev_get_drvdata(dev);
498398e16dbSAxel Lin 	struct i2c_client *client = data->client;
499594fbe71SArnaud Ebalard 	int ret;
500594fbe71SArnaud Ebalard 
501594fbe71SArnaud Ebalard 	if (val > 255)
502594fbe71SArnaud Ebalard 		return -EINVAL;
503594fbe71SArnaud Ebalard 
504594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
505594fbe71SArnaud Ebalard 	ret = i2c_smbus_write_byte_data(client, G762_REG_SET_OUT, val);
506594fbe71SArnaud Ebalard 	data->valid = false;
507594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
508594fbe71SArnaud Ebalard 
509594fbe71SArnaud Ebalard 	return ret;
510594fbe71SArnaud Ebalard }
511594fbe71SArnaud Ebalard 
512594fbe71SArnaud Ebalard /*
513594fbe71SArnaud Ebalard  * Set fan RPM value. Can be called both in closed and open-loop mode
514594fbe71SArnaud Ebalard  * but effect will only be seen after closed-loop mode is configured.
515594fbe71SArnaud Ebalard  */
516594fbe71SArnaud Ebalard static int do_set_fan_target(struct device *dev, unsigned long val)
517594fbe71SArnaud Ebalard {
518594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
519594fbe71SArnaud Ebalard 	int ret;
520594fbe71SArnaud Ebalard 
521594fbe71SArnaud Ebalard 	if (IS_ERR(data))
522594fbe71SArnaud Ebalard 		return PTR_ERR(data);
523594fbe71SArnaud Ebalard 
524594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
525594fbe71SArnaud Ebalard 	data->set_cnt = cnt_from_rpm(val, data->clk_freq,
526594fbe71SArnaud Ebalard 				     G762_PULSE_FROM_REG(data->fan_cmd1),
527594fbe71SArnaud Ebalard 				     G762_CLKDIV_FROM_REG(data->fan_cmd1),
528594fbe71SArnaud Ebalard 				     G762_GEARMULT_FROM_REG(data->fan_cmd2));
529398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_SET_CNT,
530594fbe71SArnaud Ebalard 					data->set_cnt);
531594fbe71SArnaud Ebalard 	data->valid = false;
532594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
533594fbe71SArnaud Ebalard 
534594fbe71SArnaud Ebalard 	return ret;
535594fbe71SArnaud Ebalard }
536594fbe71SArnaud Ebalard 
537594fbe71SArnaud Ebalard /* Set fan startup voltage. Accepted values are either 0, 1, 2 or 3. */
538594fbe71SArnaud Ebalard static int do_set_fan_startv(struct device *dev, unsigned long val)
539594fbe71SArnaud Ebalard {
540594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
541594fbe71SArnaud Ebalard 	int ret;
542594fbe71SArnaud Ebalard 
543594fbe71SArnaud Ebalard 	if (IS_ERR(data))
544594fbe71SArnaud Ebalard 		return PTR_ERR(data);
545594fbe71SArnaud Ebalard 
546594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
547594fbe71SArnaud Ebalard 	switch (val) {
548594fbe71SArnaud Ebalard 	case 0:
549594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_0;
550594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_1;
551594fbe71SArnaud Ebalard 		break;
552594fbe71SArnaud Ebalard 	case 1:
553594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_FAN_STARTV_0;
554594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_1;
555594fbe71SArnaud Ebalard 		break;
556594fbe71SArnaud Ebalard 	case 2:
557594fbe71SArnaud Ebalard 		data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_0;
558594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_FAN_STARTV_1;
559594fbe71SArnaud Ebalard 		break;
560594fbe71SArnaud Ebalard 	case 3:
561594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_FAN_STARTV_0;
562594fbe71SArnaud Ebalard 		data->fan_cmd2 |=  G762_REG_FAN_CMD2_FAN_STARTV_1;
563594fbe71SArnaud Ebalard 		break;
564594fbe71SArnaud Ebalard 	default:
565594fbe71SArnaud Ebalard 		ret = -EINVAL;
566594fbe71SArnaud Ebalard 		goto out;
567594fbe71SArnaud Ebalard 	}
568398e16dbSAxel Lin 	ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD2,
569594fbe71SArnaud Ebalard 					data->fan_cmd2);
570594fbe71SArnaud Ebalard 	data->valid = false;
571594fbe71SArnaud Ebalard  out:
572594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
573594fbe71SArnaud Ebalard 
574594fbe71SArnaud Ebalard 	return ret;
575594fbe71SArnaud Ebalard }
576594fbe71SArnaud Ebalard 
577594fbe71SArnaud Ebalard /*
578594fbe71SArnaud Ebalard  * Helper to import hardware characteristics from .dts file and push
579594fbe71SArnaud Ebalard  * those to the chip.
580594fbe71SArnaud Ebalard  */
581594fbe71SArnaud Ebalard 
582594fbe71SArnaud Ebalard #ifdef CONFIG_OF
583adaa50b0SJingoo Han static const struct of_device_id g762_dt_match[] = {
584594fbe71SArnaud Ebalard 	{ .compatible = "gmt,g762" },
585594fbe71SArnaud Ebalard 	{ .compatible = "gmt,g763" },
586594fbe71SArnaud Ebalard 	{ },
587594fbe71SArnaud Ebalard };
588de66b380SJavier Martinez Canillas MODULE_DEVICE_TABLE(of, g762_dt_match);
589594fbe71SArnaud Ebalard 
590594fbe71SArnaud Ebalard /*
591594fbe71SArnaud Ebalard  * Grab clock (a required property), enable it, get (fixed) clock frequency
592594fbe71SArnaud Ebalard  * and store it. Note: upon success, clock has been prepared and enabled; it
593594fbe71SArnaud Ebalard  * must later be unprepared and disabled (e.g. during module unloading) by a
594594fbe71SArnaud Ebalard  * call to g762_of_clock_disable(). Note that a reference to clock is kept
595594fbe71SArnaud Ebalard  * in our private data structure to be used in this function.
596594fbe71SArnaud Ebalard  */
597594fbe71SArnaud Ebalard static int g762_of_clock_enable(struct i2c_client *client)
598594fbe71SArnaud Ebalard {
599594fbe71SArnaud Ebalard 	struct g762_data *data;
600594fbe71SArnaud Ebalard 	unsigned long clk_freq;
601594fbe71SArnaud Ebalard 	struct clk *clk;
602594fbe71SArnaud Ebalard 	int ret;
603594fbe71SArnaud Ebalard 
604594fbe71SArnaud Ebalard 	if (!client->dev.of_node)
605594fbe71SArnaud Ebalard 		return 0;
606594fbe71SArnaud Ebalard 
607594fbe71SArnaud Ebalard 	clk = of_clk_get(client->dev.of_node, 0);
608594fbe71SArnaud Ebalard 	if (IS_ERR(clk)) {
609594fbe71SArnaud Ebalard 		dev_err(&client->dev, "failed to get clock\n");
610594fbe71SArnaud Ebalard 		return PTR_ERR(clk);
611594fbe71SArnaud Ebalard 	}
612594fbe71SArnaud Ebalard 
613594fbe71SArnaud Ebalard 	ret = clk_prepare_enable(clk);
614594fbe71SArnaud Ebalard 	if (ret) {
615594fbe71SArnaud Ebalard 		dev_err(&client->dev, "failed to enable clock\n");
616594fbe71SArnaud Ebalard 		goto clk_put;
617594fbe71SArnaud Ebalard 	}
618594fbe71SArnaud Ebalard 
619594fbe71SArnaud Ebalard 	clk_freq = clk_get_rate(clk);
620594fbe71SArnaud Ebalard 	ret = do_set_clk_freq(&client->dev, clk_freq);
621594fbe71SArnaud Ebalard 	if (ret) {
622594fbe71SArnaud Ebalard 		dev_err(&client->dev, "invalid clock freq %lu\n", clk_freq);
623594fbe71SArnaud Ebalard 		goto clk_unprep;
624594fbe71SArnaud Ebalard 	}
625594fbe71SArnaud Ebalard 
626594fbe71SArnaud Ebalard 	data = i2c_get_clientdata(client);
627594fbe71SArnaud Ebalard 	data->clk = clk;
628594fbe71SArnaud Ebalard 
629594fbe71SArnaud Ebalard 	return 0;
630594fbe71SArnaud Ebalard 
631594fbe71SArnaud Ebalard  clk_unprep:
632594fbe71SArnaud Ebalard 	clk_disable_unprepare(clk);
633594fbe71SArnaud Ebalard 
634594fbe71SArnaud Ebalard  clk_put:
635594fbe71SArnaud Ebalard 	clk_put(clk);
636594fbe71SArnaud Ebalard 
637594fbe71SArnaud Ebalard 	return ret;
638594fbe71SArnaud Ebalard }
639594fbe71SArnaud Ebalard 
640594fbe71SArnaud Ebalard static void g762_of_clock_disable(struct i2c_client *client)
641594fbe71SArnaud Ebalard {
642594fbe71SArnaud Ebalard 	struct g762_data *data = i2c_get_clientdata(client);
643594fbe71SArnaud Ebalard 
644594fbe71SArnaud Ebalard 	if (!data->clk)
645594fbe71SArnaud Ebalard 		return;
646594fbe71SArnaud Ebalard 
647594fbe71SArnaud Ebalard 	clk_disable_unprepare(data->clk);
648594fbe71SArnaud Ebalard 	clk_put(data->clk);
649594fbe71SArnaud Ebalard }
650594fbe71SArnaud Ebalard 
651594fbe71SArnaud Ebalard static int g762_of_prop_import_one(struct i2c_client *client,
652594fbe71SArnaud Ebalard 				   const char *pname,
653594fbe71SArnaud Ebalard 				   int (*psetter)(struct device *dev,
654594fbe71SArnaud Ebalard 						  unsigned long val))
655594fbe71SArnaud Ebalard {
656fce9626cSAxel Lin 	int ret;
657594fbe71SArnaud Ebalard 	u32 pval;
658594fbe71SArnaud Ebalard 
659fce9626cSAxel Lin 	if (of_property_read_u32(client->dev.of_node, pname, &pval))
660594fbe71SArnaud Ebalard 		return 0;
661594fbe71SArnaud Ebalard 
662594fbe71SArnaud Ebalard 	dev_dbg(&client->dev, "found %s (%d)\n", pname, pval);
663594fbe71SArnaud Ebalard 	ret = (*psetter)(&client->dev, pval);
664594fbe71SArnaud Ebalard 	if (ret)
665594fbe71SArnaud Ebalard 		dev_err(&client->dev, "unable to set %s (%d)\n", pname, pval);
666594fbe71SArnaud Ebalard 
667594fbe71SArnaud Ebalard 	return ret;
668594fbe71SArnaud Ebalard }
669594fbe71SArnaud Ebalard 
670594fbe71SArnaud Ebalard static int g762_of_prop_import(struct i2c_client *client)
671594fbe71SArnaud Ebalard {
672594fbe71SArnaud Ebalard 	int ret;
673594fbe71SArnaud Ebalard 
674594fbe71SArnaud Ebalard 	if (!client->dev.of_node)
675594fbe71SArnaud Ebalard 		return 0;
676594fbe71SArnaud Ebalard 
677594fbe71SArnaud Ebalard 	ret = g762_of_prop_import_one(client, "fan_gear_mode",
678594fbe71SArnaud Ebalard 				      do_set_fan_gear_mode);
679594fbe71SArnaud Ebalard 	if (ret)
680594fbe71SArnaud Ebalard 		return ret;
681594fbe71SArnaud Ebalard 
682594fbe71SArnaud Ebalard 	ret = g762_of_prop_import_one(client, "pwm_polarity",
683594fbe71SArnaud Ebalard 				      do_set_pwm_polarity);
684594fbe71SArnaud Ebalard 	if (ret)
685594fbe71SArnaud Ebalard 		return ret;
686594fbe71SArnaud Ebalard 
687594fbe71SArnaud Ebalard 	return g762_of_prop_import_one(client, "fan_startv",
688594fbe71SArnaud Ebalard 				       do_set_fan_startv);
689594fbe71SArnaud Ebalard }
690594fbe71SArnaud Ebalard 
691594fbe71SArnaud Ebalard #else
692594fbe71SArnaud Ebalard static int g762_of_prop_import(struct i2c_client *client)
693594fbe71SArnaud Ebalard {
694594fbe71SArnaud Ebalard 	return 0;
695594fbe71SArnaud Ebalard }
696594fbe71SArnaud Ebalard 
697594fbe71SArnaud Ebalard static int g762_of_clock_enable(struct i2c_client *client)
698594fbe71SArnaud Ebalard {
699594fbe71SArnaud Ebalard 	return 0;
700594fbe71SArnaud Ebalard }
701594fbe71SArnaud Ebalard 
702594fbe71SArnaud Ebalard static void g762_of_clock_disable(struct i2c_client *client) { }
703594fbe71SArnaud Ebalard #endif
704594fbe71SArnaud Ebalard 
705594fbe71SArnaud Ebalard /*
706594fbe71SArnaud Ebalard  * Helper to import hardware characteristics from .dts file and push
707594fbe71SArnaud Ebalard  * those to the chip.
708594fbe71SArnaud Ebalard  */
709594fbe71SArnaud Ebalard 
710594fbe71SArnaud Ebalard static int g762_pdata_prop_import(struct i2c_client *client)
711594fbe71SArnaud Ebalard {
712a8b3a3a5SJingoo Han 	struct g762_platform_data *pdata = dev_get_platdata(&client->dev);
713594fbe71SArnaud Ebalard 	int ret;
714594fbe71SArnaud Ebalard 
715594fbe71SArnaud Ebalard 	if (!pdata)
716594fbe71SArnaud Ebalard 		return 0;
717594fbe71SArnaud Ebalard 
718594fbe71SArnaud Ebalard 	ret = do_set_fan_gear_mode(&client->dev, pdata->fan_gear_mode);
719594fbe71SArnaud Ebalard 	if (ret)
720594fbe71SArnaud Ebalard 		return ret;
721594fbe71SArnaud Ebalard 
722594fbe71SArnaud Ebalard 	ret = do_set_pwm_polarity(&client->dev, pdata->pwm_polarity);
723594fbe71SArnaud Ebalard 	if (ret)
724594fbe71SArnaud Ebalard 		return ret;
725594fbe71SArnaud Ebalard 
726594fbe71SArnaud Ebalard 	ret = do_set_fan_startv(&client->dev, pdata->fan_startv);
727594fbe71SArnaud Ebalard 	if (ret)
728594fbe71SArnaud Ebalard 		return ret;
729594fbe71SArnaud Ebalard 
730594fbe71SArnaud Ebalard 	return do_set_clk_freq(&client->dev, pdata->clk_freq);
731594fbe71SArnaud Ebalard }
732594fbe71SArnaud Ebalard 
733594fbe71SArnaud Ebalard /*
734594fbe71SArnaud Ebalard  * sysfs attributes
735594fbe71SArnaud Ebalard  */
736594fbe71SArnaud Ebalard 
737594fbe71SArnaud Ebalard /*
738594fbe71SArnaud Ebalard  * Read function for fan1_input sysfs file. Return current fan RPM value, or
739594fbe71SArnaud Ebalard  * 0 if fan is out of control.
740594fbe71SArnaud Ebalard  */
741*251f65cdSJulia Lawall static ssize_t fan1_input_show(struct device *dev,
742*251f65cdSJulia Lawall 			       struct device_attribute *da, char *buf)
743594fbe71SArnaud Ebalard {
744594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
745594fbe71SArnaud Ebalard 	unsigned int rpm = 0;
746594fbe71SArnaud Ebalard 
747594fbe71SArnaud Ebalard 	if (IS_ERR(data))
748594fbe71SArnaud Ebalard 		return PTR_ERR(data);
749594fbe71SArnaud Ebalard 
750594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
751594fbe71SArnaud Ebalard 	/* reverse logic: fan out of control reporting is enabled low */
752594fbe71SArnaud Ebalard 	if (data->fan_sta & G762_REG_FAN_STA_OOC) {
753594fbe71SArnaud Ebalard 		rpm = rpm_from_cnt(data->act_cnt, data->clk_freq,
754594fbe71SArnaud Ebalard 				   G762_PULSE_FROM_REG(data->fan_cmd1),
755594fbe71SArnaud Ebalard 				   G762_CLKDIV_FROM_REG(data->fan_cmd1),
756594fbe71SArnaud Ebalard 				   G762_GEARMULT_FROM_REG(data->fan_cmd2));
757594fbe71SArnaud Ebalard 	}
758594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
759594fbe71SArnaud Ebalard 
760594fbe71SArnaud Ebalard 	return sprintf(buf, "%u\n", rpm);
761594fbe71SArnaud Ebalard }
762594fbe71SArnaud Ebalard 
763594fbe71SArnaud Ebalard /*
764594fbe71SArnaud Ebalard  * Read and write functions for pwm1_mode sysfs file. Get and set fan speed
765594fbe71SArnaud Ebalard  * control mode i.e. PWM (1) or DC (0).
766594fbe71SArnaud Ebalard  */
767*251f65cdSJulia Lawall static ssize_t pwm1_mode_show(struct device *dev, struct device_attribute *da,
768594fbe71SArnaud Ebalard 			      char *buf)
769594fbe71SArnaud Ebalard {
770594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
771594fbe71SArnaud Ebalard 
772594fbe71SArnaud Ebalard 	if (IS_ERR(data))
773594fbe71SArnaud Ebalard 		return PTR_ERR(data);
774594fbe71SArnaud Ebalard 
775594fbe71SArnaud Ebalard 	return sprintf(buf, "%d\n",
776594fbe71SArnaud Ebalard 		       !!(data->fan_cmd1 & G762_REG_FAN_CMD1_OUT_MODE));
777594fbe71SArnaud Ebalard }
778594fbe71SArnaud Ebalard 
779*251f65cdSJulia Lawall static ssize_t pwm1_mode_store(struct device *dev,
780*251f65cdSJulia Lawall 			       struct device_attribute *da, const char *buf,
781*251f65cdSJulia Lawall 			       size_t count)
782594fbe71SArnaud Ebalard {
783594fbe71SArnaud Ebalard 	unsigned long val;
784594fbe71SArnaud Ebalard 	int ret;
785594fbe71SArnaud Ebalard 
786594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
787594fbe71SArnaud Ebalard 		return -EINVAL;
788594fbe71SArnaud Ebalard 
789594fbe71SArnaud Ebalard 	ret = do_set_pwm_mode(dev, val);
790594fbe71SArnaud Ebalard 	if (ret < 0)
791594fbe71SArnaud Ebalard 		return ret;
792594fbe71SArnaud Ebalard 
793594fbe71SArnaud Ebalard 	return count;
794594fbe71SArnaud Ebalard }
795594fbe71SArnaud Ebalard 
796594fbe71SArnaud Ebalard /*
797594fbe71SArnaud Ebalard  * Read and write functions for fan1_div sysfs file. Get and set fan
798594fbe71SArnaud Ebalard  * controller prescaler value
799594fbe71SArnaud Ebalard  */
800*251f65cdSJulia Lawall static ssize_t fan1_div_show(struct device *dev, struct device_attribute *da,
801*251f65cdSJulia Lawall 			     char *buf)
802594fbe71SArnaud Ebalard {
803594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
804594fbe71SArnaud Ebalard 
805594fbe71SArnaud Ebalard 	if (IS_ERR(data))
806594fbe71SArnaud Ebalard 		return PTR_ERR(data);
807594fbe71SArnaud Ebalard 
808594fbe71SArnaud Ebalard 	return sprintf(buf, "%d\n", G762_CLKDIV_FROM_REG(data->fan_cmd1));
809594fbe71SArnaud Ebalard }
810594fbe71SArnaud Ebalard 
811*251f65cdSJulia Lawall static ssize_t fan1_div_store(struct device *dev, struct device_attribute *da,
812594fbe71SArnaud Ebalard 			      const char *buf, size_t count)
813594fbe71SArnaud Ebalard {
814594fbe71SArnaud Ebalard 	unsigned long val;
815594fbe71SArnaud Ebalard 	int ret;
816594fbe71SArnaud Ebalard 
817594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
818594fbe71SArnaud Ebalard 		return -EINVAL;
819594fbe71SArnaud Ebalard 
820594fbe71SArnaud Ebalard 	ret = do_set_fan_div(dev, val);
821594fbe71SArnaud Ebalard 	if (ret < 0)
822594fbe71SArnaud Ebalard 		return ret;
823594fbe71SArnaud Ebalard 
824594fbe71SArnaud Ebalard 	return count;
825594fbe71SArnaud Ebalard }
826594fbe71SArnaud Ebalard 
827594fbe71SArnaud Ebalard /*
828594fbe71SArnaud Ebalard  * Read and write functions for fan1_pulses sysfs file. Get and set number
829594fbe71SArnaud Ebalard  * of tachometer pulses per fan revolution.
830594fbe71SArnaud Ebalard  */
831*251f65cdSJulia Lawall static ssize_t fan1_pulses_show(struct device *dev,
832594fbe71SArnaud Ebalard 				struct device_attribute *da, char *buf)
833594fbe71SArnaud Ebalard {
834594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
835594fbe71SArnaud Ebalard 
836594fbe71SArnaud Ebalard 	if (IS_ERR(data))
837594fbe71SArnaud Ebalard 		return PTR_ERR(data);
838594fbe71SArnaud Ebalard 
839594fbe71SArnaud Ebalard 	return sprintf(buf, "%d\n", G762_PULSE_FROM_REG(data->fan_cmd1));
840594fbe71SArnaud Ebalard }
841594fbe71SArnaud Ebalard 
842*251f65cdSJulia Lawall static ssize_t fan1_pulses_store(struct device *dev,
843*251f65cdSJulia Lawall 				 struct device_attribute *da, const char *buf,
844*251f65cdSJulia Lawall 				 size_t count)
845594fbe71SArnaud Ebalard {
846594fbe71SArnaud Ebalard 	unsigned long val;
847594fbe71SArnaud Ebalard 	int ret;
848594fbe71SArnaud Ebalard 
849594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
850594fbe71SArnaud Ebalard 		return -EINVAL;
851594fbe71SArnaud Ebalard 
852594fbe71SArnaud Ebalard 	ret = do_set_fan_pulses(dev, val);
853594fbe71SArnaud Ebalard 	if (ret < 0)
854594fbe71SArnaud Ebalard 		return ret;
855594fbe71SArnaud Ebalard 
856594fbe71SArnaud Ebalard 	return count;
857594fbe71SArnaud Ebalard }
858594fbe71SArnaud Ebalard 
859594fbe71SArnaud Ebalard /*
860594fbe71SArnaud Ebalard  * Read and write functions for pwm1_enable. Get and set fan speed control mode
861594fbe71SArnaud Ebalard  * (i.e. closed or open-loop).
862594fbe71SArnaud Ebalard  *
863594fbe71SArnaud Ebalard  * Following documentation about hwmon's sysfs interface, a pwm1_enable node
864594fbe71SArnaud Ebalard  * should accept followings:
865594fbe71SArnaud Ebalard  *
866594fbe71SArnaud Ebalard  *  0 : no fan speed control (i.e. fan at full speed)
867594fbe71SArnaud Ebalard  *  1 : manual fan speed control enabled (use pwm[1-*]) (open-loop)
868594fbe71SArnaud Ebalard  *  2+: automatic fan speed control enabled (use fan[1-*]_target) (closed-loop)
869594fbe71SArnaud Ebalard  *
870594fbe71SArnaud Ebalard  * but we do not accept 0 as this mode is not natively supported by the chip
871594fbe71SArnaud Ebalard  * and it is not emulated by g762 driver. -EINVAL is returned in this case.
872594fbe71SArnaud Ebalard  */
873*251f65cdSJulia Lawall static ssize_t pwm1_enable_show(struct device *dev,
874594fbe71SArnaud Ebalard 				struct device_attribute *da, char *buf)
875594fbe71SArnaud Ebalard {
876594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
877594fbe71SArnaud Ebalard 
878594fbe71SArnaud Ebalard 	if (IS_ERR(data))
879594fbe71SArnaud Ebalard 		return PTR_ERR(data);
880594fbe71SArnaud Ebalard 
881594fbe71SArnaud Ebalard 	return sprintf(buf, "%d\n",
882594fbe71SArnaud Ebalard 		       (!!(data->fan_cmd1 & G762_REG_FAN_CMD1_FAN_MODE)) + 1);
883594fbe71SArnaud Ebalard }
884594fbe71SArnaud Ebalard 
885*251f65cdSJulia Lawall static ssize_t pwm1_enable_store(struct device *dev,
886*251f65cdSJulia Lawall 				 struct device_attribute *da, const char *buf,
887*251f65cdSJulia Lawall 				 size_t count)
888594fbe71SArnaud Ebalard {
889594fbe71SArnaud Ebalard 	unsigned long val;
890594fbe71SArnaud Ebalard 	int ret;
891594fbe71SArnaud Ebalard 
892594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
893594fbe71SArnaud Ebalard 		return -EINVAL;
894594fbe71SArnaud Ebalard 
895594fbe71SArnaud Ebalard 	ret = do_set_pwm_enable(dev, val);
896594fbe71SArnaud Ebalard 	if (ret < 0)
897594fbe71SArnaud Ebalard 		return ret;
898594fbe71SArnaud Ebalard 
899594fbe71SArnaud Ebalard 	return count;
900594fbe71SArnaud Ebalard }
901594fbe71SArnaud Ebalard 
902594fbe71SArnaud Ebalard /*
903594fbe71SArnaud Ebalard  * Read and write functions for pwm1 sysfs file. Get and set pwm value
904594fbe71SArnaud Ebalard  * (which affects fan speed) in open-loop mode. 0 stops the fan and 255
905594fbe71SArnaud Ebalard  * makes it run at full speed.
906594fbe71SArnaud Ebalard  */
907*251f65cdSJulia Lawall static ssize_t pwm1_show(struct device *dev, struct device_attribute *da,
908594fbe71SArnaud Ebalard 			 char *buf)
909594fbe71SArnaud Ebalard {
910594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
911594fbe71SArnaud Ebalard 
912594fbe71SArnaud Ebalard 	if (IS_ERR(data))
913594fbe71SArnaud Ebalard 		return PTR_ERR(data);
914594fbe71SArnaud Ebalard 
915594fbe71SArnaud Ebalard 	return sprintf(buf, "%d\n", data->set_out);
916594fbe71SArnaud Ebalard }
917594fbe71SArnaud Ebalard 
918*251f65cdSJulia Lawall static ssize_t pwm1_store(struct device *dev, struct device_attribute *da,
919594fbe71SArnaud Ebalard 			  const char *buf, size_t count)
920594fbe71SArnaud Ebalard {
921594fbe71SArnaud Ebalard 	unsigned long val;
922594fbe71SArnaud Ebalard 	int ret;
923594fbe71SArnaud Ebalard 
924594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
925594fbe71SArnaud Ebalard 		return -EINVAL;
926594fbe71SArnaud Ebalard 
927594fbe71SArnaud Ebalard 	ret = do_set_pwm(dev, val);
928594fbe71SArnaud Ebalard 	if (ret < 0)
929594fbe71SArnaud Ebalard 		return ret;
930594fbe71SArnaud Ebalard 
931594fbe71SArnaud Ebalard 	return count;
932594fbe71SArnaud Ebalard }
933594fbe71SArnaud Ebalard 
934594fbe71SArnaud Ebalard /*
935594fbe71SArnaud Ebalard  * Read and write function for fan1_target sysfs file. Get/set the fan speed in
936594fbe71SArnaud Ebalard  * closed-loop mode. Speed is given as a RPM value; then the chip will regulate
937594fbe71SArnaud Ebalard  * the fan speed using pulses from fan tachometer.
938594fbe71SArnaud Ebalard  *
939594fbe71SArnaud Ebalard  * Refer to rpm_from_cnt() implementation above to get info about count number
940594fbe71SArnaud Ebalard  * calculation.
941594fbe71SArnaud Ebalard  *
942594fbe71SArnaud Ebalard  * Also note that due to rounding errors it is possible that you don't read
943594fbe71SArnaud Ebalard  * back exactly the value you have set.
944594fbe71SArnaud Ebalard  */
945*251f65cdSJulia Lawall static ssize_t fan1_target_show(struct device *dev,
946*251f65cdSJulia Lawall 				struct device_attribute *da, char *buf)
947594fbe71SArnaud Ebalard {
948594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
949594fbe71SArnaud Ebalard 	unsigned int rpm;
950594fbe71SArnaud Ebalard 
951594fbe71SArnaud Ebalard 	if (IS_ERR(data))
952594fbe71SArnaud Ebalard 		return PTR_ERR(data);
953594fbe71SArnaud Ebalard 
954594fbe71SArnaud Ebalard 	mutex_lock(&data->update_lock);
955594fbe71SArnaud Ebalard 	rpm = rpm_from_cnt(data->set_cnt, data->clk_freq,
956594fbe71SArnaud Ebalard 			   G762_PULSE_FROM_REG(data->fan_cmd1),
957594fbe71SArnaud Ebalard 			   G762_CLKDIV_FROM_REG(data->fan_cmd1),
958594fbe71SArnaud Ebalard 			   G762_GEARMULT_FROM_REG(data->fan_cmd2));
959594fbe71SArnaud Ebalard 	mutex_unlock(&data->update_lock);
960594fbe71SArnaud Ebalard 
961594fbe71SArnaud Ebalard 	return sprintf(buf, "%u\n", rpm);
962594fbe71SArnaud Ebalard }
963594fbe71SArnaud Ebalard 
964*251f65cdSJulia Lawall static ssize_t fan1_target_store(struct device *dev,
965*251f65cdSJulia Lawall 				 struct device_attribute *da, const char *buf,
966*251f65cdSJulia Lawall 				 size_t count)
967594fbe71SArnaud Ebalard {
968594fbe71SArnaud Ebalard 	unsigned long val;
969594fbe71SArnaud Ebalard 	int ret;
970594fbe71SArnaud Ebalard 
971594fbe71SArnaud Ebalard 	if (kstrtoul(buf, 10, &val))
972594fbe71SArnaud Ebalard 		return -EINVAL;
973594fbe71SArnaud Ebalard 
974594fbe71SArnaud Ebalard 	ret = do_set_fan_target(dev, val);
975594fbe71SArnaud Ebalard 	if (ret < 0)
976594fbe71SArnaud Ebalard 		return ret;
977594fbe71SArnaud Ebalard 
978594fbe71SArnaud Ebalard 	return count;
979594fbe71SArnaud Ebalard }
980594fbe71SArnaud Ebalard 
981594fbe71SArnaud Ebalard /* read function for fan1_fault sysfs file. */
982*251f65cdSJulia Lawall static ssize_t fan1_fault_show(struct device *dev, struct device_attribute *da,
983594fbe71SArnaud Ebalard 			       char *buf)
984594fbe71SArnaud Ebalard {
985594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
986594fbe71SArnaud Ebalard 
987594fbe71SArnaud Ebalard 	if (IS_ERR(data))
988594fbe71SArnaud Ebalard 		return PTR_ERR(data);
989594fbe71SArnaud Ebalard 
990594fbe71SArnaud Ebalard 	return sprintf(buf, "%u\n", !!(data->fan_sta & G762_REG_FAN_STA_FAIL));
991594fbe71SArnaud Ebalard }
992594fbe71SArnaud Ebalard 
993594fbe71SArnaud Ebalard /*
994594fbe71SArnaud Ebalard  * read function for fan1_alarm sysfs file. Note that OOC condition is
995594fbe71SArnaud Ebalard  * enabled low
996594fbe71SArnaud Ebalard  */
997*251f65cdSJulia Lawall static ssize_t fan1_alarm_show(struct device *dev,
998*251f65cdSJulia Lawall 			       struct device_attribute *da, char *buf)
999594fbe71SArnaud Ebalard {
1000594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
1001594fbe71SArnaud Ebalard 
1002594fbe71SArnaud Ebalard 	if (IS_ERR(data))
1003594fbe71SArnaud Ebalard 		return PTR_ERR(data);
1004594fbe71SArnaud Ebalard 
1005594fbe71SArnaud Ebalard 	return sprintf(buf, "%u\n", !(data->fan_sta & G762_REG_FAN_STA_OOC));
1006594fbe71SArnaud Ebalard }
1007594fbe71SArnaud Ebalard 
1008*251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1);
1009*251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1_mode);
1010*251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1_enable);
1011*251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_input);
1012*251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_alarm);
1013*251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_fault);
1014*251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_target);
1015*251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_div);
1016*251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_pulses);
1017594fbe71SArnaud Ebalard 
1018594fbe71SArnaud Ebalard /* Driver data */
1019398e16dbSAxel Lin static struct attribute *g762_attrs[] = {
1020594fbe71SArnaud Ebalard 	&dev_attr_fan1_input.attr,
1021594fbe71SArnaud Ebalard 	&dev_attr_fan1_alarm.attr,
1022594fbe71SArnaud Ebalard 	&dev_attr_fan1_fault.attr,
1023594fbe71SArnaud Ebalard 	&dev_attr_fan1_target.attr,
1024594fbe71SArnaud Ebalard 	&dev_attr_fan1_div.attr,
1025594fbe71SArnaud Ebalard 	&dev_attr_fan1_pulses.attr,
1026594fbe71SArnaud Ebalard 	&dev_attr_pwm1.attr,
1027594fbe71SArnaud Ebalard 	&dev_attr_pwm1_mode.attr,
1028594fbe71SArnaud Ebalard 	&dev_attr_pwm1_enable.attr,
1029594fbe71SArnaud Ebalard 	NULL
1030594fbe71SArnaud Ebalard };
1031594fbe71SArnaud Ebalard 
1032398e16dbSAxel Lin ATTRIBUTE_GROUPS(g762);
1033594fbe71SArnaud Ebalard 
1034594fbe71SArnaud Ebalard /*
1035594fbe71SArnaud Ebalard  * Enable both fan failure detection and fan out of control protection. The
1036594fbe71SArnaud Ebalard  * function does not protect change/access to data structure; it must thus
1037594fbe71SArnaud Ebalard  * only be called during initialization.
1038594fbe71SArnaud Ebalard  */
1039594fbe71SArnaud Ebalard static inline int g762_fan_init(struct device *dev)
1040594fbe71SArnaud Ebalard {
1041594fbe71SArnaud Ebalard 	struct g762_data *data = g762_update_client(dev);
1042594fbe71SArnaud Ebalard 
1043594fbe71SArnaud Ebalard 	if (IS_ERR(data))
1044594fbe71SArnaud Ebalard 		return PTR_ERR(data);
1045594fbe71SArnaud Ebalard 
1046594fbe71SArnaud Ebalard 	data->fan_cmd1 |= G762_REG_FAN_CMD1_DET_FAN_FAIL;
1047594fbe71SArnaud Ebalard 	data->fan_cmd1 |= G762_REG_FAN_CMD1_DET_FAN_OOC;
1048594fbe71SArnaud Ebalard 	data->valid = false;
1049594fbe71SArnaud Ebalard 
1050398e16dbSAxel Lin 	return i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1,
1051594fbe71SArnaud Ebalard 					 data->fan_cmd1);
1052594fbe71SArnaud Ebalard }
1053594fbe71SArnaud Ebalard 
1054594fbe71SArnaud Ebalard static int g762_probe(struct i2c_client *client, const struct i2c_device_id *id)
1055594fbe71SArnaud Ebalard {
1056398e16dbSAxel Lin 	struct device *dev = &client->dev;
1057594fbe71SArnaud Ebalard 	struct g762_data *data;
1058594fbe71SArnaud Ebalard 	int ret;
1059594fbe71SArnaud Ebalard 
1060594fbe71SArnaud Ebalard 	if (!i2c_check_functionality(client->adapter,
1061594fbe71SArnaud Ebalard 				     I2C_FUNC_SMBUS_BYTE_DATA))
1062594fbe71SArnaud Ebalard 		return -ENODEV;
1063594fbe71SArnaud Ebalard 
1064398e16dbSAxel Lin 	data = devm_kzalloc(dev, sizeof(struct g762_data), GFP_KERNEL);
1065594fbe71SArnaud Ebalard 	if (!data)
1066594fbe71SArnaud Ebalard 		return -ENOMEM;
1067594fbe71SArnaud Ebalard 
1068594fbe71SArnaud Ebalard 	i2c_set_clientdata(client, data);
1069594fbe71SArnaud Ebalard 	data->client = client;
1070594fbe71SArnaud Ebalard 	mutex_init(&data->update_lock);
1071594fbe71SArnaud Ebalard 
1072594fbe71SArnaud Ebalard 	/* Enable fan failure detection and fan out of control protection */
1073398e16dbSAxel Lin 	ret = g762_fan_init(dev);
1074594fbe71SArnaud Ebalard 	if (ret)
1075594fbe71SArnaud Ebalard 		return ret;
1076594fbe71SArnaud Ebalard 
1077594fbe71SArnaud Ebalard 	/* Get configuration via DT ... */
1078594fbe71SArnaud Ebalard 	ret = g762_of_clock_enable(client);
1079594fbe71SArnaud Ebalard 	if (ret)
1080594fbe71SArnaud Ebalard 		return ret;
1081594fbe71SArnaud Ebalard 	ret = g762_of_prop_import(client);
1082594fbe71SArnaud Ebalard 	if (ret)
1083594fbe71SArnaud Ebalard 		goto clock_dis;
1084594fbe71SArnaud Ebalard 	/* ... or platform_data */
1085594fbe71SArnaud Ebalard 	ret = g762_pdata_prop_import(client);
1086594fbe71SArnaud Ebalard 	if (ret)
1087594fbe71SArnaud Ebalard 		goto clock_dis;
1088594fbe71SArnaud Ebalard 
10896b19b660SArnaud Ebalard 	data->hwmon_dev = hwmon_device_register_with_groups(dev, client->name,
10906b19b660SArnaud Ebalard 							    data, g762_groups);
1091594fbe71SArnaud Ebalard 	if (IS_ERR(data->hwmon_dev)) {
1092594fbe71SArnaud Ebalard 		ret = PTR_ERR(data->hwmon_dev);
1093398e16dbSAxel Lin 		goto clock_dis;
1094594fbe71SArnaud Ebalard 	}
1095594fbe71SArnaud Ebalard 
1096594fbe71SArnaud Ebalard 	return 0;
1097594fbe71SArnaud Ebalard 
1098594fbe71SArnaud Ebalard  clock_dis:
1099594fbe71SArnaud Ebalard 	g762_of_clock_disable(client);
1100594fbe71SArnaud Ebalard 
1101594fbe71SArnaud Ebalard 	return ret;
1102594fbe71SArnaud Ebalard }
1103594fbe71SArnaud Ebalard 
1104594fbe71SArnaud Ebalard static int g762_remove(struct i2c_client *client)
1105594fbe71SArnaud Ebalard {
1106594fbe71SArnaud Ebalard 	struct g762_data *data = i2c_get_clientdata(client);
1107594fbe71SArnaud Ebalard 
1108594fbe71SArnaud Ebalard 	hwmon_device_unregister(data->hwmon_dev);
1109594fbe71SArnaud Ebalard 	g762_of_clock_disable(client);
1110594fbe71SArnaud Ebalard 
1111594fbe71SArnaud Ebalard 	return 0;
1112594fbe71SArnaud Ebalard }
1113594fbe71SArnaud Ebalard 
1114594fbe71SArnaud Ebalard static struct i2c_driver g762_driver = {
1115594fbe71SArnaud Ebalard 	.driver = {
1116594fbe71SArnaud Ebalard 		.name = DRVNAME,
1117594fbe71SArnaud Ebalard 		.of_match_table = of_match_ptr(g762_dt_match),
1118594fbe71SArnaud Ebalard 	},
1119594fbe71SArnaud Ebalard 	.probe	  = g762_probe,
1120594fbe71SArnaud Ebalard 	.remove	  = g762_remove,
1121594fbe71SArnaud Ebalard 	.id_table = g762_id,
1122594fbe71SArnaud Ebalard };
1123594fbe71SArnaud Ebalard 
1124594fbe71SArnaud Ebalard module_i2c_driver(g762_driver);
1125594fbe71SArnaud Ebalard 
1126594fbe71SArnaud Ebalard MODULE_AUTHOR("Arnaud EBALARD <arno@natisbad.org>");
1127594fbe71SArnaud Ebalard MODULE_DESCRIPTION("GMT G762/G763 driver");
1128594fbe71SArnaud Ebalard MODULE_LICENSE("GPL");
1129