xref: /linux/drivers/hwmon/amc6821.c (revision ab93e0dd72c37d378dd936f031ffb83ff2bd87ce)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * amc6821.c - Part of lm_sensors, Linux kernel modules for hardware
4  *	       monitoring
5  * Copyright (C) 2009 T. Mertelj <tomaz.mertelj@guest.arnes.si>
6  *
7  * Based on max6650.c:
8  * Copyright (C) 2007 Hans J. Koch <hjk@hansjkoch.de>
9  *
10  * Conversion to regmap and with_info API:
11  * Copyright (C) 2024 Guenter Roeck <linux@roeck-us.net>
12  */
13 
14 #include <linux/bitfield.h>
15 #include <linux/bitops.h>
16 #include <linux/bits.h>
17 #include <linux/err.h>
18 #include <linux/hwmon.h>
19 #include <linux/hwmon-sysfs.h>
20 #include <linux/i2c.h>
21 #include <linux/init.h>
22 #include <linux/minmax.h>
23 #include <linux/module.h>
24 #include <linux/mutex.h>
25 #include <linux/of_platform.h>
26 #include <linux/pwm.h>
27 #include <linux/regmap.h>
28 #include <linux/slab.h>
29 #include <linux/thermal.h>
30 
31 #include <dt-bindings/pwm/pwm.h>
32 
33 /*
34  * Addresses to scan.
35  */
36 
37 static const unsigned short normal_i2c[] = {0x18, 0x19, 0x1a, 0x2c, 0x2d, 0x2e,
38 	0x4c, 0x4d, 0x4e, I2C_CLIENT_END};
39 
40 /*
41  * Insmod parameters
42  */
43 
44 static int pwminv = -1; /*Inverted PWM output. */
45 module_param(pwminv, int, 0444);
46 
47 static int init = 1; /*Power-on initialization.*/
48 module_param(init, int, 0444);
49 
50 #define AMC6821_REG_DEV_ID		0x3D
51 #define AMC6821_REG_COMP_ID		0x3E
52 #define AMC6821_REG_CONF1		0x00
53 #define AMC6821_REG_CONF2		0x01
54 #define AMC6821_REG_CONF3		0x3F
55 #define AMC6821_REG_CONF4		0x04
56 #define AMC6821_REG_STAT1		0x02
57 #define AMC6821_REG_STAT2		0x03
58 #define AMC6821_REG_TEMP_LO		0x06
59 #define AMC6821_REG_TDATA_LOW		0x08
60 #define AMC6821_REG_TDATA_HI		0x09
61 #define AMC6821_REG_LTEMP_HI		0x0A
62 #define AMC6821_REG_RTEMP_HI		0x0B
63 #define AMC6821_REG_LTEMP_LIMIT_MIN	0x15
64 #define AMC6821_REG_LTEMP_LIMIT_MAX	0x14
65 #define AMC6821_REG_RTEMP_LIMIT_MIN	0x19
66 #define AMC6821_REG_RTEMP_LIMIT_MAX	0x18
67 #define AMC6821_REG_LTEMP_CRIT		0x1B
68 #define AMC6821_REG_RTEMP_CRIT		0x1D
69 #define AMC6821_REG_PSV_TEMP		0x1C
70 #define AMC6821_REG_DCY			0x22
71 #define AMC6821_REG_LTEMP_FAN_CTRL	0x24
72 #define AMC6821_REG_RTEMP_FAN_CTRL	0x25
73 #define AMC6821_REG_DCY_LOW_TEMP	0x21
74 
75 #define AMC6821_REG_TACH_LLIMITL	0x10
76 #define AMC6821_REG_TACH_HLIMITL	0x12
77 #define AMC6821_REG_TACH_SETTINGL	0x1e
78 
79 #define AMC6821_CONF1_START		BIT(0)
80 #define AMC6821_CONF1_FAN_INT_EN	BIT(1)
81 #define AMC6821_CONF1_FANIE		BIT(2)
82 #define AMC6821_CONF1_PWMINV		BIT(3)
83 #define AMC6821_CONF1_FAN_FAULT_EN	BIT(4)
84 #define AMC6821_CONF1_FDRC0		BIT(5)
85 #define AMC6821_CONF1_FDRC1		BIT(6)
86 #define AMC6821_CONF1_THERMOVIE		BIT(7)
87 
88 #define AMC6821_CONF2_PWM_EN		BIT(0)
89 #define AMC6821_CONF2_TACH_MODE		BIT(1)
90 #define AMC6821_CONF2_TACH_EN		BIT(2)
91 #define AMC6821_CONF2_RTFIE		BIT(3)
92 #define AMC6821_CONF2_LTOIE		BIT(4)
93 #define AMC6821_CONF2_RTOIE		BIT(5)
94 #define AMC6821_CONF2_PSVIE		BIT(6)
95 #define AMC6821_CONF2_RST		BIT(7)
96 
97 #define AMC6821_CONF3_THERM_FAN_EN	BIT(7)
98 #define AMC6821_CONF3_REV_MASK		GENMASK(3, 0)
99 
100 #define AMC6821_CONF4_OVREN		BIT(4)
101 #define AMC6821_CONF4_TACH_FAST		BIT(5)
102 #define AMC6821_CONF4_PSPR		BIT(6)
103 #define AMC6821_CONF4_MODE		BIT(7)
104 
105 #define AMC6821_STAT1_RPM_ALARM		BIT(0)
106 #define AMC6821_STAT1_FANS		BIT(1)
107 #define AMC6821_STAT1_RTH		BIT(2)
108 #define AMC6821_STAT1_RTL		BIT(3)
109 #define AMC6821_STAT1_R_THERM		BIT(4)
110 #define AMC6821_STAT1_RTF		BIT(5)
111 #define AMC6821_STAT1_LTH		BIT(6)
112 #define AMC6821_STAT1_LTL		BIT(7)
113 
114 #define AMC6821_STAT2_RTC		BIT(3)
115 #define AMC6821_STAT2_LTC		BIT(4)
116 #define AMC6821_STAT2_LPSV		BIT(5)
117 #define AMC6821_STAT2_L_THERM		BIT(6)
118 #define AMC6821_STAT2_THERM_IN		BIT(7)
119 
120 #define AMC6821_TEMP_SLOPE_MASK		GENMASK(2, 0)
121 #define AMC6821_TEMP_LIMIT_MASK		GENMASK(7, 3)
122 
123 /*
124  * Client data (each client gets its own)
125  */
126 
127 struct amc6821_data {
128 	struct regmap *regmap;
129 	struct mutex update_lock;
130 	unsigned long fan_state;
131 	unsigned long fan_max_state;
132 	unsigned int *fan_cooling_levels;
133 	enum pwm_polarity pwm_polarity;
134 };
135 
136 /*
137  * Return 0 on success or negative error code.
138  *
139  * temps returns set of three temperatures, in °C:
140  * temps[0]: Passive cooling temperature, applies to both channels
141  * temps[1]: Low temperature, start slope calculations
142  * temps[2]: High temperature
143  *
144  * Channel 0: local, channel 1: remote.
145  */
amc6821_get_auto_point_temps(struct regmap * regmap,int channel,u8 * temps)146 static int amc6821_get_auto_point_temps(struct regmap *regmap, int channel, u8 *temps)
147 {
148 	u32 regs[] = {
149 		AMC6821_REG_DCY_LOW_TEMP,
150 		AMC6821_REG_PSV_TEMP,
151 		channel ? AMC6821_REG_RTEMP_FAN_CTRL : AMC6821_REG_LTEMP_FAN_CTRL
152 	};
153 	u8 regvals[3];
154 	int slope;
155 	int err;
156 
157 	err = regmap_multi_reg_read(regmap, regs, regvals, 3);
158 	if (err)
159 		return err;
160 	temps[0] = regvals[1];
161 	temps[1] = FIELD_GET(AMC6821_TEMP_LIMIT_MASK, regvals[2]) * 4;
162 
163 	/* slope is 32 >> <slope bits> in °C */
164 	slope = 32 >> FIELD_GET(AMC6821_TEMP_SLOPE_MASK, regvals[2]);
165 	if (slope)
166 		temps[2] = temps[1] + DIV_ROUND_CLOSEST(255 - regvals[0], slope);
167 	else
168 		temps[2] = 255;
169 
170 	return 0;
171 }
172 
amc6821_temp_read_values(struct regmap * regmap,u32 attr,int channel,long * val)173 static int amc6821_temp_read_values(struct regmap *regmap, u32 attr, int channel, long *val)
174 {
175 	int reg, err;
176 	u32 regval;
177 
178 	switch (attr) {
179 	case hwmon_temp_input:
180 		reg = channel ? AMC6821_REG_RTEMP_HI : AMC6821_REG_LTEMP_HI;
181 		break;
182 	case hwmon_temp_min:
183 		reg = channel ? AMC6821_REG_RTEMP_LIMIT_MIN : AMC6821_REG_LTEMP_LIMIT_MIN;
184 		break;
185 	case hwmon_temp_max:
186 		reg = channel ? AMC6821_REG_RTEMP_LIMIT_MAX : AMC6821_REG_LTEMP_LIMIT_MAX;
187 		break;
188 	case hwmon_temp_crit:
189 		reg = channel ? AMC6821_REG_RTEMP_CRIT : AMC6821_REG_LTEMP_CRIT;
190 		break;
191 	default:
192 		return -EOPNOTSUPP;
193 	}
194 	err = regmap_read(regmap, reg, &regval);
195 	if (err)
196 		return err;
197 	*val = sign_extend32(regval, 7) * 1000;
198 	return 0;
199 }
200 
amc6821_read_alarms(struct regmap * regmap,enum hwmon_sensor_types type,u32 attr,int channel,long * val)201 static int amc6821_read_alarms(struct regmap *regmap, enum hwmon_sensor_types type,
202 			       u32 attr, int channel, long *val)
203 {
204 	int reg, mask, err;
205 	u32 regval;
206 
207 	switch (type) {
208 	case hwmon_temp:
209 		switch (attr) {
210 		case hwmon_temp_min_alarm:
211 			reg = AMC6821_REG_STAT1;
212 			mask = channel ? AMC6821_STAT1_RTL : AMC6821_STAT1_LTL;
213 			break;
214 		case hwmon_temp_max_alarm:
215 			reg = AMC6821_REG_STAT1;
216 			mask = channel ? AMC6821_STAT1_RTH : AMC6821_STAT1_LTH;
217 			break;
218 		case hwmon_temp_crit_alarm:
219 			reg = AMC6821_REG_STAT2;
220 			mask = channel ? AMC6821_STAT2_RTC : AMC6821_STAT2_LTC;
221 			break;
222 		case hwmon_temp_fault:
223 			reg = AMC6821_REG_STAT1;
224 			mask = AMC6821_STAT1_RTF;
225 			break;
226 		default:
227 			return -EOPNOTSUPP;
228 		}
229 		break;
230 	case hwmon_fan:
231 		switch (attr) {
232 		case hwmon_fan_fault:
233 			reg = AMC6821_REG_STAT1;
234 			mask = AMC6821_STAT1_FANS;
235 			break;
236 		default:
237 			return -EOPNOTSUPP;
238 		}
239 		break;
240 	default:
241 		return -EOPNOTSUPP;
242 	}
243 	err = regmap_read(regmap, reg, &regval);
244 	if (err)
245 		return err;
246 	*val = !!(regval & mask);
247 	return 0;
248 }
249 
amc6821_temp_read(struct device * dev,u32 attr,int channel,long * val)250 static int amc6821_temp_read(struct device *dev, u32 attr, int channel, long *val)
251 {
252 	struct amc6821_data *data = dev_get_drvdata(dev);
253 
254 	switch (attr) {
255 	case hwmon_temp_input:
256 	case hwmon_temp_min:
257 	case hwmon_temp_max:
258 	case hwmon_temp_crit:
259 		return amc6821_temp_read_values(data->regmap, attr, channel, val);
260 	case hwmon_temp_min_alarm:
261 	case hwmon_temp_max_alarm:
262 	case hwmon_temp_crit_alarm:
263 	case hwmon_temp_fault:
264 		return amc6821_read_alarms(data->regmap, hwmon_temp, attr, channel, val);
265 	default:
266 		return -EOPNOTSUPP;
267 	}
268 }
269 
amc6821_temp_write(struct device * dev,u32 attr,int channel,long val)270 static int amc6821_temp_write(struct device *dev, u32 attr, int channel, long val)
271 {
272 	struct amc6821_data *data = dev_get_drvdata(dev);
273 	int reg;
274 
275 	val = DIV_ROUND_CLOSEST(clamp_val(val, -128000, 127000), 1000);
276 
277 	switch (attr) {
278 	case hwmon_temp_min:
279 		reg = channel ? AMC6821_REG_RTEMP_LIMIT_MIN : AMC6821_REG_LTEMP_LIMIT_MIN;
280 		break;
281 	case hwmon_temp_max:
282 		reg = channel ? AMC6821_REG_RTEMP_LIMIT_MAX : AMC6821_REG_LTEMP_LIMIT_MAX;
283 		break;
284 	case hwmon_temp_crit:
285 		reg = channel ? AMC6821_REG_RTEMP_CRIT : AMC6821_REG_LTEMP_CRIT;
286 		break;
287 	default:
288 		return -EOPNOTSUPP;
289 	}
290 	return regmap_write(data->regmap, reg, val);
291 }
292 
amc6821_pwm_read(struct device * dev,u32 attr,long * val)293 static int amc6821_pwm_read(struct device *dev, u32 attr, long *val)
294 {
295 	struct amc6821_data *data = dev_get_drvdata(dev);
296 	struct regmap *regmap = data->regmap;
297 	u32 regval;
298 	int err;
299 
300 	switch (attr) {
301 	case hwmon_pwm_enable:
302 		err = regmap_read(regmap, AMC6821_REG_CONF1, &regval);
303 		if (err)
304 			return err;
305 		switch (regval & (AMC6821_CONF1_FDRC0 | AMC6821_CONF1_FDRC1)) {
306 		case 0:
307 			*val = 1;	/* manual */
308 			break;
309 		case AMC6821_CONF1_FDRC0:
310 			*val = 4;	/* target rpm (fan1_target) controlled */
311 			break;
312 		case AMC6821_CONF1_FDRC1:
313 			*val = 2;	/* remote temp controlled */
314 			break;
315 		default:
316 			*val = 3;	/* max(local, remote) temp controlled */
317 			break;
318 		}
319 		return 0;
320 	case hwmon_pwm_mode:
321 		err = regmap_read(regmap, AMC6821_REG_CONF2, &regval);
322 		if (err)
323 			return err;
324 		*val = !!(regval & AMC6821_CONF2_TACH_MODE);
325 		return 0;
326 	case hwmon_pwm_auto_channels_temp:
327 		err = regmap_read(regmap, AMC6821_REG_CONF1, &regval);
328 		if (err)
329 			return err;
330 		switch (regval & (AMC6821_CONF1_FDRC0 | AMC6821_CONF1_FDRC1)) {
331 		case 0:
332 		case AMC6821_CONF1_FDRC0:
333 			*val = 0;	/* manual or target rpm controlled */
334 			break;
335 		case AMC6821_CONF1_FDRC1:
336 			*val = 2;	/* remote temp controlled */
337 			break;
338 		default:
339 			*val = 3;	/* max(local, remote) temp controlled */
340 			break;
341 		}
342 		return 0;
343 	case hwmon_pwm_input:
344 		err = regmap_read(regmap, AMC6821_REG_DCY, &regval);
345 		if (err)
346 			return err;
347 		*val = regval;
348 		return 0;
349 	default:
350 		return -EOPNOTSUPP;
351 	}
352 }
353 
amc6821_pwm_write(struct device * dev,u32 attr,long val)354 static int amc6821_pwm_write(struct device *dev, u32 attr, long val)
355 {
356 	struct amc6821_data *data = dev_get_drvdata(dev);
357 	struct regmap *regmap = data->regmap;
358 	u32 mode;
359 
360 	switch (attr) {
361 	case hwmon_pwm_enable:
362 		switch (val) {
363 		case 1:
364 			mode = 0;
365 			break;
366 		case 2:
367 			mode = AMC6821_CONF1_FDRC1;
368 			break;
369 		case 3:
370 			mode = AMC6821_CONF1_FDRC0 | AMC6821_CONF1_FDRC1;
371 			break;
372 		case 4:
373 			mode = AMC6821_CONF1_FDRC0;
374 			break;
375 		default:
376 			return -EINVAL;
377 		}
378 		return regmap_update_bits(regmap, AMC6821_REG_CONF1,
379 					  AMC6821_CONF1_FDRC0 | AMC6821_CONF1_FDRC1,
380 					  mode);
381 	case hwmon_pwm_mode:
382 		if (val < 0 || val > 1)
383 			return -EINVAL;
384 		return regmap_update_bits(regmap, AMC6821_REG_CONF2,
385 					  AMC6821_CONF2_TACH_MODE,
386 					  val ? AMC6821_CONF2_TACH_MODE : 0);
387 		break;
388 	case hwmon_pwm_input:
389 		if (val < 0 || val > 255)
390 			return -EINVAL;
391 		return regmap_write(regmap, AMC6821_REG_DCY, val);
392 	default:
393 		return -EOPNOTSUPP;
394 	}
395 }
396 
amc6821_fan_read_rpm(struct regmap * regmap,u32 attr,long * val)397 static int amc6821_fan_read_rpm(struct regmap *regmap, u32 attr, long *val)
398 {
399 	int reg, err;
400 	u8 regs[2];
401 	u32 regval;
402 
403 	switch (attr) {
404 	case hwmon_fan_input:
405 		reg = AMC6821_REG_TDATA_LOW;
406 		break;
407 	case hwmon_fan_min:
408 		reg = AMC6821_REG_TACH_LLIMITL;
409 		break;
410 	case hwmon_fan_max:
411 		reg = AMC6821_REG_TACH_HLIMITL;
412 		break;
413 	case hwmon_fan_target:
414 		reg = AMC6821_REG_TACH_SETTINGL;
415 		break;
416 	default:
417 		return -EOPNOTSUPP;
418 	}
419 
420 	err = regmap_bulk_read(regmap, reg, regs, 2);
421 	if (err)
422 		return err;
423 
424 	regval = (regs[1] << 8) | regs[0];
425 	*val = regval ? 6000000 / regval : 0;
426 
427 	return 0;
428 }
429 
amc6821_fan_read(struct device * dev,u32 attr,long * val)430 static int amc6821_fan_read(struct device *dev, u32 attr, long *val)
431 {
432 	struct amc6821_data *data = dev_get_drvdata(dev);
433 	struct regmap *regmap = data->regmap;
434 	u32 regval;
435 	int err;
436 
437 	switch (attr) {
438 	case hwmon_fan_input:
439 	case hwmon_fan_min:
440 	case hwmon_fan_max:
441 	case hwmon_fan_target:
442 		return amc6821_fan_read_rpm(regmap, attr, val);
443 	case hwmon_fan_fault:
444 		return amc6821_read_alarms(regmap, hwmon_fan, attr, 0, val);
445 	case hwmon_fan_pulses:
446 		err = regmap_read(regmap, AMC6821_REG_CONF4, &regval);
447 		if (err)
448 			return err;
449 		*val = (regval & AMC6821_CONF4_PSPR) ? 4 : 2;
450 		return 0;
451 	default:
452 		return -EOPNOTSUPP;
453 	}
454 }
455 
amc6821_fan_write(struct device * dev,u32 attr,long val)456 static int amc6821_fan_write(struct device *dev, u32 attr, long val)
457 {
458 	struct amc6821_data *data = dev_get_drvdata(dev);
459 	struct regmap *regmap = data->regmap;
460 	u8 regs[2];
461 	int reg;
462 
463 	if (attr == hwmon_fan_pulses) {
464 		if (val != 2 && val != 4)
465 			return -EINVAL;
466 		return regmap_update_bits(regmap, AMC6821_REG_CONF4,
467 					 AMC6821_CONF4_PSPR,
468 					 val == 4 ? AMC6821_CONF4_PSPR : 0);
469 	}
470 
471 	if (val < 0)
472 		return -EINVAL;
473 
474 	switch (attr) {
475 	case hwmon_fan_min:
476 		if (!val)	/* no unlimited minimum speed */
477 			return -EINVAL;
478 		reg = AMC6821_REG_TACH_LLIMITL;
479 		break;
480 	case hwmon_fan_max:
481 		reg = AMC6821_REG_TACH_HLIMITL;
482 		break;
483 	case hwmon_fan_target:
484 		if (!val)	/* no unlimited target speed */
485 			return -EINVAL;
486 		reg = AMC6821_REG_TACH_SETTINGL;
487 		break;
488 	default:
489 		return -EOPNOTSUPP;
490 	}
491 
492 	val = val ? 6000000 / clamp_val(val, 1, 6000000) : 0;
493 	val = clamp_val(val, 0, 0xffff);
494 
495 	regs[0] = val & 0xff;
496 	regs[1] = val >> 8;
497 
498 	return regmap_bulk_write(data->regmap, reg, regs, 2);
499 }
500 
temp_auto_point_temp_show(struct device * dev,struct device_attribute * devattr,char * buf)501 static ssize_t temp_auto_point_temp_show(struct device *dev,
502 					 struct device_attribute *devattr,
503 					 char *buf)
504 {
505 	struct amc6821_data *data = dev_get_drvdata(dev);
506 	int ix = to_sensor_dev_attr_2(devattr)->index;
507 	int nr = to_sensor_dev_attr_2(devattr)->nr;
508 	u8 temps[3];
509 	int err;
510 
511 	mutex_lock(&data->update_lock);
512 	err = amc6821_get_auto_point_temps(data->regmap, nr, temps);
513 	mutex_unlock(&data->update_lock);
514 	if (err)
515 		return err;
516 
517 	return sysfs_emit(buf, "%d\n", temps[ix] * 1000);
518 }
519 
pwm1_auto_point_pwm_show(struct device * dev,struct device_attribute * devattr,char * buf)520 static ssize_t pwm1_auto_point_pwm_show(struct device *dev,
521 					struct device_attribute *devattr,
522 					char *buf)
523 {
524 	struct amc6821_data *data = dev_get_drvdata(dev);
525 	int ix = to_sensor_dev_attr(devattr)->index;
526 	u32 val;
527 	int err;
528 
529 	switch (ix) {
530 	case 0:
531 		val = 0;
532 		break;
533 	case 1:
534 		err = regmap_read(data->regmap, AMC6821_REG_DCY_LOW_TEMP, &val);
535 		if (err)
536 			return err;
537 		break;
538 	default:
539 		val = 255;
540 		break;
541 	}
542 	return sysfs_emit(buf, "%d\n", val);
543 }
544 
545 /*
546  * Set TEMP[0-4] (low temperature) and SLP[0-2] (slope) of local or remote
547  * TEMP-FAN control register.
548  *
549  * Return 0 on success or negative error code.
550  *
551  * Channel 0: local, channel 1: remote
552  */
set_slope_register(struct regmap * regmap,int channel,u8 * temps)553 static inline int set_slope_register(struct regmap *regmap, int channel, u8 *temps)
554 {
555 	u8 regval = FIELD_PREP(AMC6821_TEMP_LIMIT_MASK, temps[1] / 4);
556 	u8 tmp, dpwm;
557 	int err, dt;
558 	u32 pwm;
559 
560 	err = regmap_read(regmap, AMC6821_REG_DCY_LOW_TEMP, &pwm);
561 	if (err)
562 		return err;
563 
564 	dpwm = 255 - pwm;
565 
566 	dt = temps[2] - temps[1];
567 	for (tmp = 4; tmp > 0; tmp--) {
568 		if (dt * (32 >> tmp) >= dpwm)
569 			break;
570 	}
571 	regval |= FIELD_PREP(AMC6821_TEMP_SLOPE_MASK, tmp);
572 
573 	return regmap_write(regmap,
574 			    channel ? AMC6821_REG_RTEMP_FAN_CTRL : AMC6821_REG_LTEMP_FAN_CTRL,
575 			    regval);
576 }
577 
temp_auto_point_temp_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)578 static ssize_t temp_auto_point_temp_store(struct device *dev,
579 					  struct device_attribute *attr,
580 					  const char *buf, size_t count)
581 {
582 	struct amc6821_data *data = dev_get_drvdata(dev);
583 	int ix = to_sensor_dev_attr_2(attr)->index;
584 	int nr = to_sensor_dev_attr_2(attr)->nr;
585 	struct regmap *regmap = data->regmap;
586 	u8 temps[3], otemps[3];
587 	long val;
588 	int ret;
589 
590 	ret = kstrtol(buf, 10, &val);
591 	if (ret)
592 		return ret;
593 
594 	mutex_lock(&data->update_lock);
595 
596 	ret = amc6821_get_auto_point_temps(data->regmap, nr, temps);
597 	if (ret)
598 		goto unlock;
599 
600 	switch (ix) {
601 	case 0:
602 		/*
603 		 * Passive cooling temperature. Range limit against low limit
604 		 * of both channels.
605 		 */
606 		ret = amc6821_get_auto_point_temps(data->regmap, 1 - nr, otemps);
607 		if (ret)
608 			goto unlock;
609 		val = DIV_ROUND_CLOSEST(clamp_val(val, 0, 63000), 1000);
610 		val = clamp_val(val, 0, min(temps[1], otemps[1]));
611 		ret = regmap_write(regmap, AMC6821_REG_PSV_TEMP, val);
612 		break;
613 	case 1:
614 		/*
615 		 * Low limit; must be between passive and high limit,
616 		 * and not exceed 124. Step size is 4 degrees C.
617 		 */
618 		val = clamp_val(val, DIV_ROUND_UP(temps[0], 4) * 4000, 124000);
619 		temps[1] = DIV_ROUND_CLOSEST(val, 4000) * 4;
620 		val = temps[1] / 4;
621 		/* Auto-adjust high limit if necessary */
622 		temps[2] = clamp_val(temps[2], temps[1] + 1, 255);
623 		ret = set_slope_register(regmap, nr, temps);
624 		break;
625 	case 2:
626 		/* high limit, must be higher than low limit */
627 		val = clamp_val(val, (temps[1] + 1) * 1000, 255000);
628 		temps[2] = DIV_ROUND_CLOSEST(val, 1000);
629 		ret = set_slope_register(regmap, nr, temps);
630 		break;
631 	default:
632 		ret = -EINVAL;
633 		break;
634 	}
635 unlock:
636 	mutex_unlock(&data->update_lock);
637 	return ret ? : count;
638 }
639 
pwm1_auto_point_pwm_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)640 static ssize_t pwm1_auto_point_pwm_store(struct device *dev,
641 					 struct device_attribute *attr,
642 					 const char *buf, size_t count)
643 {
644 	struct amc6821_data *data = dev_get_drvdata(dev);
645 	struct regmap *regmap = data->regmap;
646 	int i, ret;
647 	u8 val;
648 
649 	ret = kstrtou8(buf, 10, &val);
650 	if (ret)
651 		return ret;
652 
653 	mutex_lock(&data->update_lock);
654 	ret = regmap_write(regmap, AMC6821_REG_DCY_LOW_TEMP, val);
655 	if (ret)
656 		goto unlock;
657 
658 	for (i = 0; i < 2; i++) {
659 		u8 temps[3];
660 
661 		ret = amc6821_get_auto_point_temps(regmap, i, temps);
662 		if (ret)
663 			break;
664 		ret = set_slope_register(regmap, i, temps);
665 		if (ret)
666 			break;
667 	}
668 unlock:
669 	mutex_unlock(&data->update_lock);
670 	return ret ? : count;
671 }
672 
673 static SENSOR_DEVICE_ATTR_RO(pwm1_auto_point1_pwm, pwm1_auto_point_pwm, 0);
674 static SENSOR_DEVICE_ATTR_RW(pwm1_auto_point2_pwm, pwm1_auto_point_pwm, 1);
675 static SENSOR_DEVICE_ATTR_RO(pwm1_auto_point3_pwm, pwm1_auto_point_pwm, 2);
676 static SENSOR_DEVICE_ATTR_2_RO(temp1_auto_point1_temp, temp_auto_point_temp,
677 			       0, 0);
678 static SENSOR_DEVICE_ATTR_2_RW(temp1_auto_point2_temp, temp_auto_point_temp,
679 			       0, 1);
680 static SENSOR_DEVICE_ATTR_2_RW(temp1_auto_point3_temp, temp_auto_point_temp,
681 			       0, 2);
682 
683 static SENSOR_DEVICE_ATTR_2_RW(temp2_auto_point1_temp, temp_auto_point_temp,
684 			       1, 0);
685 static SENSOR_DEVICE_ATTR_2_RW(temp2_auto_point2_temp, temp_auto_point_temp,
686 			       1, 1);
687 static SENSOR_DEVICE_ATTR_2_RW(temp2_auto_point3_temp, temp_auto_point_temp,
688 			       1, 2);
689 
690 static struct attribute *amc6821_attrs[] = {
691 	&sensor_dev_attr_pwm1_auto_point1_pwm.dev_attr.attr,
692 	&sensor_dev_attr_pwm1_auto_point2_pwm.dev_attr.attr,
693 	&sensor_dev_attr_pwm1_auto_point3_pwm.dev_attr.attr,
694 	&sensor_dev_attr_temp1_auto_point1_temp.dev_attr.attr,
695 	&sensor_dev_attr_temp1_auto_point2_temp.dev_attr.attr,
696 	&sensor_dev_attr_temp1_auto_point3_temp.dev_attr.attr,
697 	&sensor_dev_attr_temp2_auto_point1_temp.dev_attr.attr,
698 	&sensor_dev_attr_temp2_auto_point2_temp.dev_attr.attr,
699 	&sensor_dev_attr_temp2_auto_point3_temp.dev_attr.attr,
700 	NULL
701 };
702 ATTRIBUTE_GROUPS(amc6821);
703 
amc6821_read(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,long * val)704 static int amc6821_read(struct device *dev, enum hwmon_sensor_types type,
705 			u32 attr, int channel, long *val)
706 {
707 	switch (type) {
708 	case hwmon_temp:
709 		return amc6821_temp_read(dev, attr, channel, val);
710 	case hwmon_fan:
711 		return amc6821_fan_read(dev, attr, val);
712 	case hwmon_pwm:
713 		return amc6821_pwm_read(dev, attr, val);
714 	default:
715 		return -EOPNOTSUPP;
716 	}
717 }
718 
amc6821_write(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,long val)719 static int amc6821_write(struct device *dev, enum hwmon_sensor_types type,
720 			 u32 attr, int channel, long val)
721 {
722 	switch (type) {
723 	case hwmon_temp:
724 		return amc6821_temp_write(dev, attr, channel, val);
725 	case hwmon_fan:
726 		return amc6821_fan_write(dev, attr, val);
727 	case hwmon_pwm:
728 		return amc6821_pwm_write(dev, attr, val);
729 	default:
730 		return -EOPNOTSUPP;
731 	}
732 }
733 
amc6821_is_visible(const void * data,enum hwmon_sensor_types type,u32 attr,int channel)734 static umode_t amc6821_is_visible(const void *data,
735 				  enum hwmon_sensor_types type,
736 				  u32 attr, int channel)
737 {
738 	switch (type) {
739 	case hwmon_temp:
740 		switch (attr) {
741 		case hwmon_temp_input:
742 		case hwmon_temp_min_alarm:
743 		case hwmon_temp_max_alarm:
744 		case hwmon_temp_crit_alarm:
745 		case hwmon_temp_fault:
746 			return 0444;
747 		case hwmon_temp_min:
748 		case hwmon_temp_max:
749 		case hwmon_temp_crit:
750 			return 0644;
751 		default:
752 			return 0;
753 		}
754 	case hwmon_fan:
755 		switch (attr) {
756 		case hwmon_fan_input:
757 		case hwmon_fan_fault:
758 			return 0444;
759 		case hwmon_fan_pulses:
760 		case hwmon_fan_min:
761 		case hwmon_fan_max:
762 		case hwmon_fan_target:
763 			return 0644;
764 		default:
765 			return 0;
766 		}
767 	case hwmon_pwm:
768 		switch (attr) {
769 		case hwmon_pwm_mode:
770 		case hwmon_pwm_enable:
771 		case hwmon_pwm_input:
772 			return 0644;
773 		case hwmon_pwm_auto_channels_temp:
774 			return 0444;
775 		default:
776 			return 0;
777 		}
778 	default:
779 		return 0;
780 	}
781 }
782 
783 static const struct hwmon_channel_info * const amc6821_info[] = {
784 	HWMON_CHANNEL_INFO(temp,
785 			   HWMON_T_INPUT | HWMON_T_MIN | HWMON_T_MAX |
786 			   HWMON_T_CRIT | HWMON_T_MIN_ALARM |
787 			   HWMON_T_MAX_ALARM | HWMON_T_CRIT_ALARM,
788 			   HWMON_T_INPUT | HWMON_T_MIN | HWMON_T_MAX |
789 			   HWMON_T_CRIT | HWMON_T_MIN_ALARM |
790 			   HWMON_T_MAX_ALARM | HWMON_T_CRIT_ALARM |
791 			   HWMON_T_FAULT),
792 	HWMON_CHANNEL_INFO(fan,
793 			   HWMON_F_INPUT | HWMON_F_MIN | HWMON_F_MAX |
794 			   HWMON_F_TARGET | HWMON_F_PULSES | HWMON_F_FAULT),
795 	HWMON_CHANNEL_INFO(pwm,
796 			   HWMON_PWM_INPUT | HWMON_PWM_ENABLE | HWMON_PWM_MODE |
797 			   HWMON_PWM_AUTO_CHANNELS_TEMP),
798 	NULL
799 };
800 
801 static const struct hwmon_ops amc6821_hwmon_ops = {
802 	.is_visible = amc6821_is_visible,
803 	.read = amc6821_read,
804 	.write = amc6821_write,
805 };
806 
807 static const struct hwmon_chip_info amc6821_chip_info = {
808 	.ops = &amc6821_hwmon_ops,
809 	.info = amc6821_info,
810 };
811 
amc6821_set_sw_dcy(struct amc6821_data * data,u8 duty_cycle)812 static int amc6821_set_sw_dcy(struct amc6821_data *data, u8 duty_cycle)
813 {
814 	int ret;
815 
816 	ret = regmap_write(data->regmap, AMC6821_REG_DCY, duty_cycle);
817 	if (ret)
818 		return ret;
819 
820 	return regmap_update_bits(data->regmap, AMC6821_REG_CONF1,
821 				  AMC6821_CONF1_FDRC0 | AMC6821_CONF1_FDRC1, 0);
822 }
823 
amc6821_get_max_state(struct thermal_cooling_device * cdev,unsigned long * state)824 static int amc6821_get_max_state(struct thermal_cooling_device *cdev, unsigned long *state)
825 {
826 	struct amc6821_data *data = cdev->devdata;
827 
828 	if (!data)
829 		return -EINVAL;
830 
831 	*state = data->fan_max_state;
832 
833 	return 0;
834 }
835 
amc6821_get_cur_state(struct thermal_cooling_device * cdev,unsigned long * state)836 static int amc6821_get_cur_state(struct thermal_cooling_device *cdev, unsigned long *state)
837 {
838 	struct amc6821_data *data = cdev->devdata;
839 
840 	if (!data)
841 		return -EINVAL;
842 
843 	*state = data->fan_state;
844 
845 	return 0;
846 }
847 
amc6821_set_cur_state(struct thermal_cooling_device * cdev,unsigned long state)848 static int amc6821_set_cur_state(struct thermal_cooling_device *cdev, unsigned long state)
849 {
850 	struct amc6821_data *data = cdev->devdata;
851 	int ret;
852 
853 	if (!data || state > data->fan_max_state)
854 		return -EINVAL;
855 
856 	ret = amc6821_set_sw_dcy(data, data->fan_cooling_levels[state]);
857 	if (ret)
858 		return ret;
859 
860 	data->fan_state = state;
861 
862 	return 0;
863 }
864 
865 static const struct thermal_cooling_device_ops amc6821_cooling_ops = {
866 	.get_max_state = amc6821_get_max_state,
867 	.get_cur_state = amc6821_get_cur_state,
868 	.set_cur_state = amc6821_set_cur_state,
869 };
870 
871 /* Return 0 if detection is successful, -ENODEV otherwise */
amc6821_detect(struct i2c_client * client,struct i2c_board_info * info)872 static int amc6821_detect(struct i2c_client *client, struct i2c_board_info *info)
873 {
874 	struct i2c_adapter *adapter = client->adapter;
875 	int address = client->addr;
876 	int dev_id, comp_id;
877 
878 	dev_dbg(&adapter->dev, "amc6821_detect called.\n");
879 
880 	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA)) {
881 		dev_dbg(&adapter->dev,
882 			"amc6821: I2C bus doesn't support byte mode, "
883 			"skipping.\n");
884 		return -ENODEV;
885 	}
886 
887 	dev_id = i2c_smbus_read_byte_data(client, AMC6821_REG_DEV_ID);
888 	comp_id = i2c_smbus_read_byte_data(client, AMC6821_REG_COMP_ID);
889 	if (dev_id != 0x21 || comp_id != 0x49) {
890 		dev_dbg(&adapter->dev,
891 			"amc6821: detection failed at 0x%02x.\n",
892 			address);
893 		return -ENODEV;
894 	}
895 
896 	/*
897 	 * Bit 7 of the address register is ignored, so we can check the
898 	 * ID registers again
899 	 */
900 	dev_id = i2c_smbus_read_byte_data(client, 0x80 | AMC6821_REG_DEV_ID);
901 	comp_id = i2c_smbus_read_byte_data(client, 0x80 | AMC6821_REG_COMP_ID);
902 	if (dev_id != 0x21 || comp_id != 0x49) {
903 		dev_dbg(&adapter->dev,
904 			"amc6821: detection failed at 0x%02x.\n",
905 			address);
906 		return -ENODEV;
907 	}
908 
909 	dev_info(&adapter->dev, "amc6821: chip found at 0x%02x.\n", address);
910 	strscpy(info->type, "amc6821", I2C_NAME_SIZE);
911 
912 	return 0;
913 }
914 
amc6821_pwm_polarity(struct i2c_client * client,struct device_node * fan_np)915 static enum pwm_polarity amc6821_pwm_polarity(struct i2c_client *client,
916 					      struct device_node *fan_np)
917 {
918 	enum pwm_polarity polarity = PWM_POLARITY_NORMAL;
919 	struct of_phandle_args args;
920 
921 	/*
922 	 * For backward compatibility, the pwminv module parameter takes
923 	 * always the precedence over any other device description
924 	 */
925 	if (pwminv == 0)
926 		return PWM_POLARITY_NORMAL;
927 	if (pwminv > 0)
928 		return PWM_POLARITY_INVERSED;
929 
930 	if (of_parse_phandle_with_args(fan_np, "pwms", "#pwm-cells", 0, &args))
931 		goto out;
932 	of_node_put(args.np);
933 
934 	if (args.args_count != 2)
935 		goto out;
936 
937 	if (args.args[1] & PWM_POLARITY_INVERTED)
938 		polarity = PWM_POLARITY_INVERSED;
939 out:
940 	return polarity;
941 }
942 
amc6821_of_fan_read_data(struct i2c_client * client,struct amc6821_data * data,struct device_node * fan_np)943 static int amc6821_of_fan_read_data(struct i2c_client *client,
944 				    struct amc6821_data *data,
945 				    struct device_node *fan_np)
946 {
947 	int num;
948 
949 	data->pwm_polarity = amc6821_pwm_polarity(client, fan_np);
950 
951 	num = of_property_count_u32_elems(fan_np, "cooling-levels");
952 	if (num <= 0)
953 		return 0;
954 
955 	data->fan_max_state = num - 1;
956 
957 	data->fan_cooling_levels = devm_kcalloc(&client->dev, num,
958 						sizeof(u32),
959 						GFP_KERNEL);
960 
961 	if (!data->fan_cooling_levels)
962 		return -ENOMEM;
963 
964 	return of_property_read_u32_array(fan_np, "cooling-levels",
965 					  data->fan_cooling_levels, num);
966 }
967 
amc6821_init_client(struct i2c_client * client,struct amc6821_data * data)968 static int amc6821_init_client(struct i2c_client *client, struct amc6821_data *data)
969 {
970 	struct regmap *regmap = data->regmap;
971 	u32 regval;
972 	int err;
973 
974 	if (init) {
975 		err = regmap_set_bits(regmap, AMC6821_REG_CONF4, AMC6821_CONF4_MODE);
976 		if (err)
977 			return err;
978 		err = regmap_clear_bits(regmap, AMC6821_REG_CONF3, AMC6821_CONF3_THERM_FAN_EN);
979 		if (err)
980 			return err;
981 		err = regmap_clear_bits(regmap, AMC6821_REG_CONF2,
982 					AMC6821_CONF2_RTFIE |
983 					AMC6821_CONF2_LTOIE |
984 					AMC6821_CONF2_RTOIE);
985 		if (err)
986 			return err;
987 
988 		regval = AMC6821_CONF1_START;
989 		if (data->pwm_polarity == PWM_POLARITY_INVERSED)
990 			regval |= AMC6821_CONF1_PWMINV;
991 
992 		err = regmap_update_bits(regmap, AMC6821_REG_CONF1,
993 					 AMC6821_CONF1_THERMOVIE | AMC6821_CONF1_FANIE |
994 					 AMC6821_CONF1_START | AMC6821_CONF1_PWMINV,
995 					 regval);
996 		if (err)
997 			return err;
998 
999 		/* Software DCY-control mode with fan enabled when cooling-levels present */
1000 		if (data->fan_cooling_levels) {
1001 			err = amc6821_set_sw_dcy(data,
1002 						 data->fan_cooling_levels[data->fan_max_state]);
1003 			if (err)
1004 				return err;
1005 		}
1006 	}
1007 	return 0;
1008 }
1009 
amc6821_volatile_reg(struct device * dev,unsigned int reg)1010 static bool amc6821_volatile_reg(struct device *dev, unsigned int reg)
1011 {
1012 	switch (reg) {
1013 	case AMC6821_REG_STAT1:
1014 	case AMC6821_REG_STAT2:
1015 	case AMC6821_REG_TEMP_LO:
1016 	case AMC6821_REG_TDATA_LOW:
1017 	case AMC6821_REG_LTEMP_HI:
1018 	case AMC6821_REG_RTEMP_HI:
1019 	case AMC6821_REG_TDATA_HI:
1020 		return true;
1021 	default:
1022 		return false;
1023 	}
1024 }
1025 
1026 static const struct regmap_config amc6821_regmap_config = {
1027 	.reg_bits = 8,
1028 	.val_bits = 8,
1029 	.volatile_reg = amc6821_volatile_reg,
1030 	.cache_type = REGCACHE_MAPLE,
1031 };
1032 
amc6821_probe(struct i2c_client * client)1033 static int amc6821_probe(struct i2c_client *client)
1034 {
1035 	struct device *dev = &client->dev;
1036 	struct amc6821_data *data;
1037 	struct device *hwmon_dev;
1038 	struct regmap *regmap;
1039 	struct device_node *fan_np __free(device_node) = NULL;
1040 	int err;
1041 
1042 	data = devm_kzalloc(dev, sizeof(struct amc6821_data), GFP_KERNEL);
1043 	if (!data)
1044 		return -ENOMEM;
1045 
1046 	regmap = devm_regmap_init_i2c(client, &amc6821_regmap_config);
1047 	if (IS_ERR(regmap))
1048 		return dev_err_probe(dev, PTR_ERR(regmap),
1049 				     "Failed to initialize regmap\n");
1050 	data->regmap = regmap;
1051 
1052 	fan_np = of_get_child_by_name(dev->of_node, "fan");
1053 	if (fan_np) {
1054 		err = amc6821_of_fan_read_data(client, data, fan_np);
1055 		if (err)
1056 			return dev_err_probe(dev, err,
1057 					     "Failed to read fan device tree data\n");
1058 	}
1059 
1060 	err = amc6821_init_client(client, data);
1061 	if (err)
1062 		return err;
1063 
1064 	if (of_device_is_compatible(dev->of_node, "tsd,mule")) {
1065 		err = devm_of_platform_populate(dev);
1066 		if (err)
1067 			return dev_err_probe(dev, err,
1068 				     "Failed to create sub-devices\n");
1069 	}
1070 
1071 	hwmon_dev = devm_hwmon_device_register_with_info(dev, client->name,
1072 							 data, &amc6821_chip_info,
1073 							 amc6821_groups);
1074 	if (IS_ERR(hwmon_dev))
1075 		return dev_err_probe(dev, PTR_ERR(hwmon_dev),
1076 				     "Failed to initialize hwmon\n");
1077 
1078 	if (IS_ENABLED(CONFIG_THERMAL) && fan_np && data->fan_cooling_levels)
1079 		return PTR_ERR_OR_ZERO(devm_thermal_of_cooling_device_register(dev,
1080 			fan_np, client->name, data, &amc6821_cooling_ops));
1081 
1082 	return 0;
1083 }
1084 
1085 static const struct i2c_device_id amc6821_id[] = {
1086 	{ "amc6821" },
1087 	{ }
1088 };
1089 
1090 MODULE_DEVICE_TABLE(i2c, amc6821_id);
1091 
1092 static const struct of_device_id __maybe_unused amc6821_of_match[] = {
1093 	{
1094 		.compatible = "ti,amc6821",
1095 	},
1096 	{
1097 		.compatible = "tsd,mule",
1098 	},
1099 	{ }
1100 };
1101 
1102 MODULE_DEVICE_TABLE(of, amc6821_of_match);
1103 
1104 static struct i2c_driver amc6821_driver = {
1105 	.class = I2C_CLASS_HWMON,
1106 	.driver = {
1107 		.name	= "amc6821",
1108 		.of_match_table = of_match_ptr(amc6821_of_match),
1109 	},
1110 	.probe = amc6821_probe,
1111 	.id_table = amc6821_id,
1112 	.detect = amc6821_detect,
1113 	.address_list = normal_i2c,
1114 };
1115 
1116 module_i2c_driver(amc6821_driver);
1117 
1118 MODULE_LICENSE("GPL");
1119 MODULE_AUTHOR("T. Mertelj <tomaz.mertelj@guest.arnes.si>");
1120 MODULE_DESCRIPTION("Texas Instruments amc6821 hwmon driver");
1121