xref: /openbmc/linux/drivers/iio/light/tsl2772.c (revision d623f60d)
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Device driver for monitoring ambient light intensity in (lux) and proximity
4  * detection (prox) within the TAOS TSL2571, TSL2671, TMD2671, TSL2771, TMD2771,
5  * TSL2572, TSL2672, TMD2672, TSL2772, and TMD2772 devices.
6  *
7  * Copyright (c) 2012, TAOS Corporation.
8  * Copyright (c) 2017-2018 Brian Masney <masneyb@onstation.org>
9  */
10 
11 #include <linux/delay.h>
12 #include <linux/errno.h>
13 #include <linux/i2c.h>
14 #include <linux/interrupt.h>
15 #include <linux/kernel.h>
16 #include <linux/module.h>
17 #include <linux/mutex.h>
18 #include <linux/slab.h>
19 #include <linux/iio/events.h>
20 #include <linux/iio/iio.h>
21 #include <linux/iio/sysfs.h>
22 #include <linux/platform_data/tsl2772.h>
23 
24 /* Cal defs */
25 #define PROX_STAT_CAL			0
26 #define PROX_STAT_SAMP			1
27 #define MAX_SAMPLES_CAL			200
28 
29 /* TSL2772 Device ID */
30 #define TRITON_ID			0x00
31 #define SWORDFISH_ID			0x30
32 #define HALIBUT_ID			0x20
33 
34 /* Lux calculation constants */
35 #define TSL2772_LUX_CALC_OVER_FLOW	65535
36 
37 /*
38  * TAOS Register definitions - Note: depending on device, some of these register
39  * are not used and the register address is benign.
40  */
41 
42 /* Register offsets */
43 #define TSL2772_MAX_CONFIG_REG		16
44 
45 /* Device Registers and Masks */
46 #define TSL2772_CNTRL			0x00
47 #define TSL2772_ALS_TIME		0X01
48 #define TSL2772_PRX_TIME		0x02
49 #define TSL2772_WAIT_TIME		0x03
50 #define TSL2772_ALS_MINTHRESHLO		0X04
51 #define TSL2772_ALS_MINTHRESHHI		0X05
52 #define TSL2772_ALS_MAXTHRESHLO		0X06
53 #define TSL2772_ALS_MAXTHRESHHI		0X07
54 #define TSL2772_PRX_MINTHRESHLO		0X08
55 #define TSL2772_PRX_MINTHRESHHI		0X09
56 #define TSL2772_PRX_MAXTHRESHLO		0X0A
57 #define TSL2772_PRX_MAXTHRESHHI		0X0B
58 #define TSL2772_PERSISTENCE		0x0C
59 #define TSL2772_ALS_PRX_CONFIG		0x0D
60 #define TSL2772_PRX_COUNT		0x0E
61 #define TSL2772_GAIN			0x0F
62 #define TSL2772_NOTUSED			0x10
63 #define TSL2772_REVID			0x11
64 #define TSL2772_CHIPID			0x12
65 #define TSL2772_STATUS			0x13
66 #define TSL2772_ALS_CHAN0LO		0x14
67 #define TSL2772_ALS_CHAN0HI		0x15
68 #define TSL2772_ALS_CHAN1LO		0x16
69 #define TSL2772_ALS_CHAN1HI		0x17
70 #define TSL2772_PRX_LO			0x18
71 #define TSL2772_PRX_HI			0x19
72 
73 /* tsl2772 cmd reg masks */
74 #define TSL2772_CMD_REG			0x80
75 #define TSL2772_CMD_SPL_FN		0x60
76 #define TSL2772_CMD_REPEAT_PROTO	0x00
77 #define TSL2772_CMD_AUTOINC_PROTO	0x20
78 
79 #define TSL2772_CMD_PROX_INT_CLR	0X05
80 #define TSL2772_CMD_ALS_INT_CLR		0x06
81 #define TSL2772_CMD_PROXALS_INT_CLR	0X07
82 
83 /* tsl2772 cntrl reg masks */
84 #define TSL2772_CNTL_ADC_ENBL		0x02
85 #define TSL2772_CNTL_PWR_ON		0x01
86 
87 /* tsl2772 status reg masks */
88 #define TSL2772_STA_ADC_VALID		0x01
89 #define TSL2772_STA_PRX_VALID		0x02
90 #define TSL2772_STA_ADC_PRX_VALID	(TSL2772_STA_ADC_VALID | \
91 					 TSL2772_STA_PRX_VALID)
92 #define TSL2772_STA_ALS_INTR		0x10
93 #define TSL2772_STA_PRX_INTR		0x20
94 
95 /* tsl2772 cntrl reg masks */
96 #define TSL2772_CNTL_REG_CLEAR		0x00
97 #define TSL2772_CNTL_PROX_INT_ENBL	0X20
98 #define TSL2772_CNTL_ALS_INT_ENBL	0X10
99 #define TSL2772_CNTL_WAIT_TMR_ENBL	0X08
100 #define TSL2772_CNTL_PROX_DET_ENBL	0X04
101 #define TSL2772_CNTL_PWRON		0x01
102 #define TSL2772_CNTL_ALSPON_ENBL	0x03
103 #define TSL2772_CNTL_INTALSPON_ENBL	0x13
104 #define TSL2772_CNTL_PROXPON_ENBL	0x0F
105 #define TSL2772_CNTL_INTPROXPON_ENBL	0x2F
106 
107 #define TSL2772_ALS_GAIN_TRIM_MIN	250
108 #define TSL2772_ALS_GAIN_TRIM_MAX	4000
109 
110 /* Device family members */
111 enum {
112 	tsl2571,
113 	tsl2671,
114 	tmd2671,
115 	tsl2771,
116 	tmd2771,
117 	tsl2572,
118 	tsl2672,
119 	tmd2672,
120 	tsl2772,
121 	tmd2772
122 };
123 
124 enum {
125 	TSL2772_CHIP_UNKNOWN = 0,
126 	TSL2772_CHIP_WORKING = 1,
127 	TSL2772_CHIP_SUSPENDED = 2
128 };
129 
130 /* Per-device data */
131 struct tsl2772_als_info {
132 	u16 als_ch0;
133 	u16 als_ch1;
134 	u16 lux;
135 };
136 
137 struct tsl2772_chip_info {
138 	int chan_table_elements;
139 	struct iio_chan_spec channel_with_events[4];
140 	struct iio_chan_spec channel_without_events[4];
141 	const struct iio_info *info;
142 };
143 
144 struct tsl2772_chip {
145 	kernel_ulong_t id;
146 	struct mutex prox_mutex;
147 	struct mutex als_mutex;
148 	struct i2c_client *client;
149 	u16 prox_data;
150 	struct tsl2772_als_info als_cur_info;
151 	struct tsl2772_settings settings;
152 	struct tsl2772_platform_data *pdata;
153 	int als_gain_time_scale;
154 	int als_saturation;
155 	int tsl2772_chip_status;
156 	u8 tsl2772_config[TSL2772_MAX_CONFIG_REG];
157 	const struct tsl2772_chip_info	*chip_info;
158 	const struct iio_info *info;
159 	s64 event_timestamp;
160 	/*
161 	 * This structure is intentionally large to accommodate
162 	 * updates via sysfs.
163 	 * Sized to 9 = max 8 segments + 1 termination segment
164 	 */
165 	struct tsl2772_lux tsl2772_device_lux[TSL2772_MAX_LUX_TABLE_SIZE];
166 };
167 
168 /*
169  * Different devices require different coefficents, and these numbers were
170  * derived from the 'Lux Equation' section of the various device datasheets.
171  * All of these coefficients assume a Glass Attenuation (GA) factor of 1.
172  * The coefficients are multiplied by 1000 to avoid floating point operations.
173  * The two rows in each table correspond to the Lux1 and Lux2 equations from
174  * the datasheets.
175  */
176 static const struct tsl2772_lux tsl2x71_lux_table[TSL2772_DEF_LUX_TABLE_SZ] = {
177 	{ 53000, 106000 },
178 	{ 31800,  53000 },
179 	{ 0,          0 },
180 };
181 
182 static const struct tsl2772_lux tmd2x71_lux_table[TSL2772_DEF_LUX_TABLE_SZ] = {
183 	{ 24000,  48000 },
184 	{ 14400,  24000 },
185 	{ 0,          0 },
186 };
187 
188 static const struct tsl2772_lux tsl2x72_lux_table[TSL2772_DEF_LUX_TABLE_SZ] = {
189 	{ 60000, 112200 },
190 	{ 37800,  60000 },
191 	{     0,      0 },
192 };
193 
194 static const struct tsl2772_lux tmd2x72_lux_table[TSL2772_DEF_LUX_TABLE_SZ] = {
195 	{ 20000,  35000 },
196 	{ 12600,  20000 },
197 	{     0,      0 },
198 };
199 
200 static const struct tsl2772_lux *tsl2772_default_lux_table_group[] = {
201 	[tsl2571] = tsl2x71_lux_table,
202 	[tsl2671] = tsl2x71_lux_table,
203 	[tmd2671] = tmd2x71_lux_table,
204 	[tsl2771] = tsl2x71_lux_table,
205 	[tmd2771] = tmd2x71_lux_table,
206 	[tsl2572] = tsl2x72_lux_table,
207 	[tsl2672] = tsl2x72_lux_table,
208 	[tmd2672] = tmd2x72_lux_table,
209 	[tsl2772] = tsl2x72_lux_table,
210 	[tmd2772] = tmd2x72_lux_table,
211 };
212 
213 static const struct tsl2772_settings tsl2772_default_settings = {
214 	.als_time = 255, /* 2.72 / 2.73 ms */
215 	.als_gain = 0,
216 	.prox_time = 255, /* 2.72 / 2.73 ms */
217 	.prox_gain = 0,
218 	.wait_time = 255,
219 	.als_prox_config = 0,
220 	.als_gain_trim = 1000,
221 	.als_cal_target = 150,
222 	.als_persistence = 1,
223 	.als_interrupt_en = false,
224 	.als_thresh_low = 200,
225 	.als_thresh_high = 256,
226 	.prox_persistence = 1,
227 	.prox_interrupt_en = false,
228 	.prox_thres_low  = 0,
229 	.prox_thres_high = 512,
230 	.prox_max_samples_cal = 30,
231 	.prox_pulse_count = 8,
232 	.prox_diode = TSL2772_DIODE1,
233 	.prox_power = TSL2772_100_mA
234 };
235 
236 static const s16 tsl2772_als_gain[] = {
237 	1,
238 	8,
239 	16,
240 	120
241 };
242 
243 static const s16 tsl2772_prox_gain[] = {
244 	1,
245 	2,
246 	4,
247 	8
248 };
249 
250 static const int tsl2772_int_time_avail[][6] = {
251 	[tsl2571] = { 0, 2720, 0, 2720, 0, 696000 },
252 	[tsl2671] = { 0, 2720, 0, 2720, 0, 696000 },
253 	[tmd2671] = { 0, 2720, 0, 2720, 0, 696000 },
254 	[tsl2771] = { 0, 2720, 0, 2720, 0, 696000 },
255 	[tmd2771] = { 0, 2720, 0, 2720, 0, 696000 },
256 	[tsl2572] = { 0, 2730, 0, 2730, 0, 699000 },
257 	[tsl2672] = { 0, 2730, 0, 2730, 0, 699000 },
258 	[tmd2672] = { 0, 2730, 0, 2730, 0, 699000 },
259 	[tsl2772] = { 0, 2730, 0, 2730, 0, 699000 },
260 	[tmd2772] = { 0, 2730, 0, 2730, 0, 699000 },
261 };
262 
263 static int tsl2772_int_calibscale_avail[] = { 1, 8, 16, 120 };
264 
265 static int tsl2772_prox_calibscale_avail[] = { 1, 2, 4, 8 };
266 
267 /* Channel variations */
268 enum {
269 	ALS,
270 	PRX,
271 	ALSPRX,
272 	PRX2,
273 	ALSPRX2,
274 };
275 
276 static const u8 device_channel_config[] = {
277 	[tsl2571] = ALS,
278 	[tsl2671] = PRX,
279 	[tmd2671] = PRX,
280 	[tsl2771] = ALSPRX,
281 	[tmd2771] = ALSPRX,
282 	[tsl2572] = ALS,
283 	[tsl2672] = PRX2,
284 	[tmd2672] = PRX2,
285 	[tsl2772] = ALSPRX2,
286 	[tmd2772] = ALSPRX2
287 };
288 
289 static int tsl2772_read_status(struct tsl2772_chip *chip)
290 {
291 	int ret;
292 
293 	ret = i2c_smbus_read_byte_data(chip->client,
294 				       TSL2772_CMD_REG | TSL2772_STATUS);
295 	if (ret < 0)
296 		dev_err(&chip->client->dev,
297 			"%s: failed to read STATUS register: %d\n", __func__,
298 			ret);
299 
300 	return ret;
301 }
302 
303 static int tsl2772_write_control_reg(struct tsl2772_chip *chip, u8 data)
304 {
305 	int ret;
306 
307 	ret = i2c_smbus_write_byte_data(chip->client,
308 					TSL2772_CMD_REG | TSL2772_CNTRL, data);
309 	if (ret < 0) {
310 		dev_err(&chip->client->dev,
311 			"%s: failed to write to control register %x: %d\n",
312 			__func__, data, ret);
313 	}
314 
315 	return ret;
316 }
317 
318 static int tsl2772_read_autoinc_regs(struct tsl2772_chip *chip, int lower_reg,
319 				     int upper_reg)
320 {
321 	u8 buf[2];
322 	int ret;
323 
324 	ret = i2c_smbus_write_byte(chip->client,
325 				   TSL2772_CMD_REG | TSL2772_CMD_AUTOINC_PROTO |
326 				   lower_reg);
327 	if (ret < 0) {
328 		dev_err(&chip->client->dev,
329 			"%s: failed to enable auto increment protocol: %d\n",
330 			__func__, ret);
331 		return ret;
332 	}
333 
334 	ret = i2c_smbus_read_byte_data(chip->client,
335 				       TSL2772_CMD_REG | lower_reg);
336 	if (ret < 0) {
337 		dev_err(&chip->client->dev,
338 			"%s: failed to read from register %x: %d\n", __func__,
339 			lower_reg, ret);
340 		return ret;
341 	}
342 	buf[0] = ret;
343 
344 	ret = i2c_smbus_read_byte_data(chip->client,
345 				       TSL2772_CMD_REG | upper_reg);
346 	if (ret < 0) {
347 		dev_err(&chip->client->dev,
348 			"%s: failed to read from register %x: %d\n", __func__,
349 			upper_reg, ret);
350 		return ret;
351 	}
352 	buf[1] = ret;
353 
354 	ret = i2c_smbus_write_byte(chip->client,
355 				   TSL2772_CMD_REG | TSL2772_CMD_REPEAT_PROTO |
356 				   lower_reg);
357 	if (ret < 0) {
358 		dev_err(&chip->client->dev,
359 			"%s: failed to enable repeated byte protocol: %d\n",
360 			__func__, ret);
361 		return ret;
362 	}
363 
364 	return le16_to_cpup((const __le16 *)&buf[0]);
365 }
366 
367 /**
368  * tsl2772_get_lux() - Reads and calculates current lux value.
369  * @indio_dev:	pointer to IIO device
370  *
371  * The raw ch0 and ch1 values of the ambient light sensed in the last
372  * integration cycle are read from the device. The raw values are multiplied
373  * by a device-specific scale factor, and divided by the integration time and
374  * device gain. The code supports multiple lux equations through the lux table
375  * coefficients. A lux gain trim is applied to each lux equation, and then the
376  * maximum lux within the interval 0..65535 is selected.
377  */
378 static int tsl2772_get_lux(struct iio_dev *indio_dev)
379 {
380 	struct tsl2772_chip *chip = iio_priv(indio_dev);
381 	struct tsl2772_lux *p;
382 	int max_lux, ret;
383 	bool overflow;
384 
385 	mutex_lock(&chip->als_mutex);
386 
387 	if (chip->tsl2772_chip_status != TSL2772_CHIP_WORKING) {
388 		dev_err(&chip->client->dev, "%s: device is not enabled\n",
389 			__func__);
390 		ret = -EBUSY;
391 		goto out_unlock;
392 	}
393 
394 	ret = tsl2772_read_status(chip);
395 	if (ret < 0)
396 		goto out_unlock;
397 
398 	if (!(ret & TSL2772_STA_ADC_VALID)) {
399 		dev_err(&chip->client->dev,
400 			"%s: data not valid yet\n", __func__);
401 		ret = chip->als_cur_info.lux; /* return LAST VALUE */
402 		goto out_unlock;
403 	}
404 
405 	ret = tsl2772_read_autoinc_regs(chip, TSL2772_ALS_CHAN0LO,
406 					TSL2772_ALS_CHAN0HI);
407 	if (ret < 0)
408 		goto out_unlock;
409 	chip->als_cur_info.als_ch0 = ret;
410 
411 	ret = tsl2772_read_autoinc_regs(chip, TSL2772_ALS_CHAN1LO,
412 					TSL2772_ALS_CHAN1HI);
413 	if (ret < 0)
414 		goto out_unlock;
415 	chip->als_cur_info.als_ch1 = ret;
416 
417 	if (chip->als_cur_info.als_ch0 >= chip->als_saturation) {
418 		max_lux = TSL2772_LUX_CALC_OVER_FLOW;
419 		goto update_struct_with_max_lux;
420 	}
421 
422 	if (!chip->als_cur_info.als_ch0) {
423 		/* have no data, so return LAST VALUE */
424 		ret = chip->als_cur_info.lux;
425 		goto out_unlock;
426 	}
427 
428 	max_lux = 0;
429 	overflow = false;
430 	for (p = (struct tsl2772_lux *)chip->tsl2772_device_lux; p->ch0 != 0;
431 	     p++) {
432 		int lux;
433 
434 		lux = ((chip->als_cur_info.als_ch0 * p->ch0) -
435 		       (chip->als_cur_info.als_ch1 * p->ch1)) /
436 			chip->als_gain_time_scale;
437 
438 		/*
439 		 * The als_gain_trim can have a value within the range 250..4000
440 		 * and is a multiplier for the lux. A trim of 1000 makes no
441 		 * changes to the lux, less than 1000 scales it down, and
442 		 * greater than 1000 scales it up.
443 		 */
444 		lux = (lux * chip->settings.als_gain_trim) / 1000;
445 
446 		if (lux > TSL2772_LUX_CALC_OVER_FLOW) {
447 			overflow = true;
448 			continue;
449 		}
450 
451 		max_lux = max(max_lux, lux);
452 	}
453 
454 	if (overflow && max_lux == 0)
455 		max_lux = TSL2772_LUX_CALC_OVER_FLOW;
456 
457 update_struct_with_max_lux:
458 	chip->als_cur_info.lux = max_lux;
459 	ret = max_lux;
460 
461 out_unlock:
462 	mutex_unlock(&chip->als_mutex);
463 
464 	return ret;
465 }
466 
467 /**
468  * tsl2772_get_prox() - Reads proximity data registers and updates
469  *                      chip->prox_data.
470  *
471  * @indio_dev:	pointer to IIO device
472  */
473 static int tsl2772_get_prox(struct iio_dev *indio_dev)
474 {
475 	struct tsl2772_chip *chip = iio_priv(indio_dev);
476 	int ret;
477 
478 	mutex_lock(&chip->prox_mutex);
479 
480 	ret = tsl2772_read_status(chip);
481 	if (ret < 0)
482 		goto prox_poll_err;
483 
484 	switch (chip->id) {
485 	case tsl2571:
486 	case tsl2671:
487 	case tmd2671:
488 	case tsl2771:
489 	case tmd2771:
490 		if (!(ret & TSL2772_STA_ADC_VALID)) {
491 			ret = -EINVAL;
492 			goto prox_poll_err;
493 		}
494 		break;
495 	case tsl2572:
496 	case tsl2672:
497 	case tmd2672:
498 	case tsl2772:
499 	case tmd2772:
500 		if (!(ret & TSL2772_STA_PRX_VALID)) {
501 			ret = -EINVAL;
502 			goto prox_poll_err;
503 		}
504 		break;
505 	}
506 
507 	ret = tsl2772_read_autoinc_regs(chip, TSL2772_PRX_LO, TSL2772_PRX_HI);
508 	if (ret < 0)
509 		goto prox_poll_err;
510 	chip->prox_data = ret;
511 
512 prox_poll_err:
513 	mutex_unlock(&chip->prox_mutex);
514 
515 	return ret;
516 }
517 
518 /**
519  * tsl2772_defaults() - Populates the device nominal operating parameters
520  *                      with those provided by a 'platform' data struct or
521  *                      with prefined defaults.
522  *
523  * @chip:               pointer to device structure.
524  */
525 static void tsl2772_defaults(struct tsl2772_chip *chip)
526 {
527 	/* If Operational settings defined elsewhere.. */
528 	if (chip->pdata && chip->pdata->platform_default_settings)
529 		memcpy(&chip->settings, chip->pdata->platform_default_settings,
530 		       sizeof(tsl2772_default_settings));
531 	else
532 		memcpy(&chip->settings, &tsl2772_default_settings,
533 		       sizeof(tsl2772_default_settings));
534 
535 	/* Load up the proper lux table. */
536 	if (chip->pdata && chip->pdata->platform_lux_table[0].ch0 != 0)
537 		memcpy(chip->tsl2772_device_lux,
538 		       chip->pdata->platform_lux_table,
539 		       sizeof(chip->pdata->platform_lux_table));
540 	else
541 		memcpy(chip->tsl2772_device_lux,
542 		       tsl2772_default_lux_table_group[chip->id],
543 		       TSL2772_DEFAULT_TABLE_BYTES);
544 }
545 
546 /**
547  * tsl2772_als_calibrate() -	Obtain single reading and calculate
548  *                              the als_gain_trim.
549  *
550  * @indio_dev:	pointer to IIO device
551  */
552 static int tsl2772_als_calibrate(struct iio_dev *indio_dev)
553 {
554 	struct tsl2772_chip *chip = iio_priv(indio_dev);
555 	int ret, lux_val;
556 
557 	ret = i2c_smbus_read_byte_data(chip->client,
558 				       TSL2772_CMD_REG | TSL2772_CNTRL);
559 	if (ret < 0) {
560 		dev_err(&chip->client->dev,
561 			"%s: failed to read from the CNTRL register\n",
562 			__func__);
563 		return ret;
564 	}
565 
566 	if ((ret & (TSL2772_CNTL_ADC_ENBL | TSL2772_CNTL_PWR_ON))
567 			!= (TSL2772_CNTL_ADC_ENBL | TSL2772_CNTL_PWR_ON)) {
568 		dev_err(&chip->client->dev,
569 			"%s: Device is not powered on and/or ADC is not enabled\n",
570 			__func__);
571 		return -EINVAL;
572 	} else if ((ret & TSL2772_STA_ADC_VALID) != TSL2772_STA_ADC_VALID) {
573 		dev_err(&chip->client->dev,
574 			"%s: The two ADC channels have not completed an integration cycle\n",
575 			__func__);
576 		return -ENODATA;
577 	}
578 
579 	lux_val = tsl2772_get_lux(indio_dev);
580 	if (lux_val < 0) {
581 		dev_err(&chip->client->dev,
582 			"%s: failed to get lux\n", __func__);
583 		return lux_val;
584 	}
585 	if (lux_val == 0)
586 		return -ERANGE;
587 
588 	ret = (chip->settings.als_cal_target * chip->settings.als_gain_trim) /
589 			lux_val;
590 	if (ret < TSL2772_ALS_GAIN_TRIM_MIN || ret > TSL2772_ALS_GAIN_TRIM_MAX)
591 		return -ERANGE;
592 
593 	chip->settings.als_gain_trim = ret;
594 
595 	return ret;
596 }
597 
598 static int tsl2772_chip_on(struct iio_dev *indio_dev)
599 {
600 	struct tsl2772_chip *chip = iio_priv(indio_dev);
601 	int ret, i, als_count, als_time_us;
602 	u8 *dev_reg, reg_val;
603 
604 	/* Non calculated parameters */
605 	chip->tsl2772_config[TSL2772_ALS_TIME] = chip->settings.als_time;
606 	chip->tsl2772_config[TSL2772_PRX_TIME] = chip->settings.prox_time;
607 	chip->tsl2772_config[TSL2772_WAIT_TIME] = chip->settings.wait_time;
608 	chip->tsl2772_config[TSL2772_ALS_PRX_CONFIG] =
609 		chip->settings.als_prox_config;
610 
611 	chip->tsl2772_config[TSL2772_ALS_MINTHRESHLO] =
612 		(chip->settings.als_thresh_low) & 0xFF;
613 	chip->tsl2772_config[TSL2772_ALS_MINTHRESHHI] =
614 		(chip->settings.als_thresh_low >> 8) & 0xFF;
615 	chip->tsl2772_config[TSL2772_ALS_MAXTHRESHLO] =
616 		(chip->settings.als_thresh_high) & 0xFF;
617 	chip->tsl2772_config[TSL2772_ALS_MAXTHRESHHI] =
618 		(chip->settings.als_thresh_high >> 8) & 0xFF;
619 	chip->tsl2772_config[TSL2772_PERSISTENCE] =
620 		(chip->settings.prox_persistence & 0xFF) << 4 |
621 		(chip->settings.als_persistence & 0xFF);
622 
623 	chip->tsl2772_config[TSL2772_PRX_COUNT] =
624 			chip->settings.prox_pulse_count;
625 	chip->tsl2772_config[TSL2772_PRX_MINTHRESHLO] =
626 			(chip->settings.prox_thres_low) & 0xFF;
627 	chip->tsl2772_config[TSL2772_PRX_MINTHRESHHI] =
628 			(chip->settings.prox_thres_low >> 8) & 0xFF;
629 	chip->tsl2772_config[TSL2772_PRX_MAXTHRESHLO] =
630 			(chip->settings.prox_thres_high) & 0xFF;
631 	chip->tsl2772_config[TSL2772_PRX_MAXTHRESHHI] =
632 			(chip->settings.prox_thres_high >> 8) & 0xFF;
633 
634 	/* and make sure we're not already on */
635 	if (chip->tsl2772_chip_status == TSL2772_CHIP_WORKING) {
636 		/* if forcing a register update - turn off, then on */
637 		dev_info(&chip->client->dev, "device is already enabled\n");
638 		return -EINVAL;
639 	}
640 
641 	/* Set the gain based on tsl2772_settings struct */
642 	chip->tsl2772_config[TSL2772_GAIN] =
643 		(chip->settings.als_gain & 0xFF) |
644 		((chip->settings.prox_gain & 0xFF) << 2) |
645 		(chip->settings.prox_diode << 4) |
646 		(chip->settings.prox_power << 6);
647 
648 	/* set chip time scaling and saturation */
649 	als_count = 256 - chip->settings.als_time;
650 	als_time_us = als_count * tsl2772_int_time_avail[chip->id][3];
651 	chip->als_saturation = als_count * 768; /* 75% of full scale */
652 	chip->als_gain_time_scale = als_time_us *
653 		tsl2772_als_gain[chip->settings.als_gain];
654 
655 	/*
656 	 * TSL2772 Specific power-on / adc enable sequence
657 	 * Power on the device 1st.
658 	 */
659 	ret = tsl2772_write_control_reg(chip, TSL2772_CNTL_PWR_ON);
660 	if (ret < 0)
661 		return ret;
662 
663 	/*
664 	 * Use the following shadow copy for our delay before enabling ADC.
665 	 * Write all the registers.
666 	 */
667 	for (i = 0, dev_reg = chip->tsl2772_config;
668 			i < TSL2772_MAX_CONFIG_REG; i++) {
669 		int reg = TSL2772_CMD_REG + i;
670 
671 		ret = i2c_smbus_write_byte_data(chip->client, reg,
672 						*dev_reg++);
673 		if (ret < 0) {
674 			dev_err(&chip->client->dev,
675 				"%s: failed to write to register %x: %d\n",
676 				__func__, reg, ret);
677 			return ret;
678 		}
679 	}
680 
681 	/* Power-on settling time */
682 	usleep_range(3000, 3500);
683 
684 	reg_val = TSL2772_CNTL_PWR_ON | TSL2772_CNTL_ADC_ENBL |
685 		  TSL2772_CNTL_PROX_DET_ENBL;
686 	if (chip->settings.als_interrupt_en)
687 		reg_val |= TSL2772_CNTL_ALS_INT_ENBL;
688 	if (chip->settings.prox_interrupt_en)
689 		reg_val |= TSL2772_CNTL_PROX_INT_ENBL;
690 
691 	ret = tsl2772_write_control_reg(chip, reg_val);
692 	if (ret < 0)
693 		return ret;
694 
695 	ret = i2c_smbus_write_byte(chip->client,
696 				   TSL2772_CMD_REG | TSL2772_CMD_SPL_FN |
697 				   TSL2772_CMD_PROXALS_INT_CLR);
698 	if (ret < 0) {
699 		dev_err(&chip->client->dev,
700 			"%s: failed to clear interrupt status: %d\n",
701 			__func__, ret);
702 		return ret;
703 	}
704 
705 	chip->tsl2772_chip_status = TSL2772_CHIP_WORKING;
706 
707 	return ret;
708 }
709 
710 static int tsl2772_chip_off(struct iio_dev *indio_dev)
711 {
712 	struct tsl2772_chip *chip = iio_priv(indio_dev);
713 
714 	/* turn device off */
715 	chip->tsl2772_chip_status = TSL2772_CHIP_SUSPENDED;
716 	return tsl2772_write_control_reg(chip, 0x00);
717 }
718 
719 /**
720  * tsl2772_invoke_change - power cycle the device to implement the user
721  *                         parameters
722  * @indio_dev:	pointer to IIO device
723  *
724  * Obtain and lock both ALS and PROX resources, determine and save device state
725  * (On/Off), cycle device to implement updated parameter, put device back into
726  * proper state, and unlock resource.
727  */
728 static int tsl2772_invoke_change(struct iio_dev *indio_dev)
729 {
730 	struct tsl2772_chip *chip = iio_priv(indio_dev);
731 	int device_status = chip->tsl2772_chip_status;
732 	int ret;
733 
734 	mutex_lock(&chip->als_mutex);
735 	mutex_lock(&chip->prox_mutex);
736 
737 	if (device_status == TSL2772_CHIP_WORKING) {
738 		ret = tsl2772_chip_off(indio_dev);
739 		if (ret < 0)
740 			goto unlock;
741 	}
742 
743 	ret = tsl2772_chip_on(indio_dev);
744 
745 unlock:
746 	mutex_unlock(&chip->prox_mutex);
747 	mutex_unlock(&chip->als_mutex);
748 
749 	return ret;
750 }
751 
752 static int tsl2772_prox_cal(struct iio_dev *indio_dev)
753 {
754 	struct tsl2772_chip *chip = iio_priv(indio_dev);
755 	int prox_history[MAX_SAMPLES_CAL + 1];
756 	int i, ret, mean, max, sample_sum;
757 
758 	if (chip->settings.prox_max_samples_cal < 1 ||
759 	    chip->settings.prox_max_samples_cal > MAX_SAMPLES_CAL)
760 		return -EINVAL;
761 
762 	for (i = 0; i < chip->settings.prox_max_samples_cal; i++) {
763 		usleep_range(15000, 17500);
764 		ret = tsl2772_get_prox(indio_dev);
765 		if (ret < 0)
766 			return ret;
767 
768 		prox_history[i] = chip->prox_data;
769 	}
770 
771 	sample_sum = 0;
772 	max = INT_MIN;
773 	for (i = 0; i < chip->settings.prox_max_samples_cal; i++) {
774 		sample_sum += prox_history[i];
775 		max = max(max, prox_history[i]);
776 	}
777 	mean = sample_sum / chip->settings.prox_max_samples_cal;
778 
779 	chip->settings.prox_thres_high = (max << 1) - mean;
780 
781 	return tsl2772_invoke_change(indio_dev);
782 }
783 
784 static int tsl2772_read_avail(struct iio_dev *indio_dev,
785 			      struct iio_chan_spec const *chan,
786 			      const int **vals, int *type, int *length,
787 			      long mask)
788 {
789 	struct tsl2772_chip *chip = iio_priv(indio_dev);
790 
791 	switch (mask) {
792 	case IIO_CHAN_INFO_CALIBSCALE:
793 		if (chan->type == IIO_INTENSITY) {
794 			*length = ARRAY_SIZE(tsl2772_int_calibscale_avail);
795 			*vals = tsl2772_int_calibscale_avail;
796 		} else {
797 			*length = ARRAY_SIZE(tsl2772_prox_calibscale_avail);
798 			*vals = tsl2772_prox_calibscale_avail;
799 		}
800 		*type = IIO_VAL_INT;
801 		return IIO_AVAIL_LIST;
802 	case IIO_CHAN_INFO_INT_TIME:
803 		*length = ARRAY_SIZE(tsl2772_int_time_avail[chip->id]);
804 		*vals = tsl2772_int_time_avail[chip->id];
805 		*type = IIO_VAL_INT_PLUS_MICRO;
806 		return IIO_AVAIL_RANGE;
807 	}
808 
809 	return -EINVAL;
810 }
811 
812 static ssize_t in_illuminance0_target_input_show(struct device *dev,
813 						 struct device_attribute *attr,
814 						 char *buf)
815 {
816 	struct tsl2772_chip *chip = iio_priv(dev_to_iio_dev(dev));
817 
818 	return snprintf(buf, PAGE_SIZE, "%d\n", chip->settings.als_cal_target);
819 }
820 
821 static ssize_t in_illuminance0_target_input_store(struct device *dev,
822 						  struct device_attribute *attr,
823 						  const char *buf, size_t len)
824 {
825 	struct iio_dev *indio_dev = dev_to_iio_dev(dev);
826 	struct tsl2772_chip *chip = iio_priv(indio_dev);
827 	u16 value;
828 	int ret;
829 
830 	if (kstrtou16(buf, 0, &value))
831 		return -EINVAL;
832 
833 	chip->settings.als_cal_target = value;
834 	ret = tsl2772_invoke_change(indio_dev);
835 	if (ret < 0)
836 		return ret;
837 
838 	return len;
839 }
840 
841 static ssize_t in_illuminance0_calibrate_store(struct device *dev,
842 					       struct device_attribute *attr,
843 					       const char *buf, size_t len)
844 {
845 	struct iio_dev *indio_dev = dev_to_iio_dev(dev);
846 	bool value;
847 	int ret;
848 
849 	if (kstrtobool(buf, &value) || !value)
850 		return -EINVAL;
851 
852 	ret = tsl2772_als_calibrate(indio_dev);
853 	if (ret < 0)
854 		return ret;
855 
856 	ret = tsl2772_invoke_change(indio_dev);
857 	if (ret < 0)
858 		return ret;
859 
860 	return len;
861 }
862 
863 static ssize_t in_illuminance0_lux_table_show(struct device *dev,
864 					      struct device_attribute *attr,
865 					      char *buf)
866 {
867 	struct tsl2772_chip *chip = iio_priv(dev_to_iio_dev(dev));
868 	int i = 0;
869 	int offset = 0;
870 
871 	while (i < TSL2772_MAX_LUX_TABLE_SIZE) {
872 		offset += snprintf(buf + offset, PAGE_SIZE, "%u,%u,",
873 			chip->tsl2772_device_lux[i].ch0,
874 			chip->tsl2772_device_lux[i].ch1);
875 		if (chip->tsl2772_device_lux[i].ch0 == 0) {
876 			/*
877 			 * We just printed the first "0" entry.
878 			 * Now get rid of the extra "," and break.
879 			 */
880 			offset--;
881 			break;
882 		}
883 		i++;
884 	}
885 
886 	offset += snprintf(buf + offset, PAGE_SIZE, "\n");
887 	return offset;
888 }
889 
890 static ssize_t in_illuminance0_lux_table_store(struct device *dev,
891 					       struct device_attribute *attr,
892 					       const char *buf, size_t len)
893 {
894 	struct iio_dev *indio_dev = dev_to_iio_dev(dev);
895 	struct tsl2772_chip *chip = iio_priv(indio_dev);
896 	int value[ARRAY_SIZE(chip->tsl2772_device_lux) * 2 + 1];
897 	int n, ret;
898 
899 	get_options(buf, ARRAY_SIZE(value), value);
900 
901 	/*
902 	 * We now have an array of ints starting at value[1], and
903 	 * enumerated by value[0].
904 	 * We expect each group of two ints to be one table entry,
905 	 * and the last table entry is all 0.
906 	 */
907 	n = value[0];
908 	if ((n % 2) || n < 4 ||
909 	    n > ((ARRAY_SIZE(chip->tsl2772_device_lux) - 1) * 2))
910 		return -EINVAL;
911 
912 	if ((value[(n - 1)] | value[n]) != 0)
913 		return -EINVAL;
914 
915 	if (chip->tsl2772_chip_status == TSL2772_CHIP_WORKING) {
916 		ret = tsl2772_chip_off(indio_dev);
917 		if (ret < 0)
918 			return ret;
919 	}
920 
921 	/* Zero out the table */
922 	memset(chip->tsl2772_device_lux, 0, sizeof(chip->tsl2772_device_lux));
923 	memcpy(chip->tsl2772_device_lux, &value[1], (value[0] * 4));
924 
925 	ret = tsl2772_invoke_change(indio_dev);
926 	if (ret < 0)
927 		return ret;
928 
929 	return len;
930 }
931 
932 static ssize_t in_proximity0_calibrate_store(struct device *dev,
933 					     struct device_attribute *attr,
934 					     const char *buf, size_t len)
935 {
936 	struct iio_dev *indio_dev = dev_to_iio_dev(dev);
937 	bool value;
938 	int ret;
939 
940 	if (kstrtobool(buf, &value) || !value)
941 		return -EINVAL;
942 
943 	ret = tsl2772_prox_cal(indio_dev);
944 	if (ret < 0)
945 		return ret;
946 
947 	ret = tsl2772_invoke_change(indio_dev);
948 	if (ret < 0)
949 		return ret;
950 
951 	return len;
952 }
953 
954 static int tsl2772_read_interrupt_config(struct iio_dev *indio_dev,
955 					 const struct iio_chan_spec *chan,
956 					 enum iio_event_type type,
957 					 enum iio_event_direction dir)
958 {
959 	struct tsl2772_chip *chip = iio_priv(indio_dev);
960 
961 	if (chan->type == IIO_INTENSITY)
962 		return chip->settings.als_interrupt_en;
963 	else
964 		return chip->settings.prox_interrupt_en;
965 }
966 
967 static int tsl2772_write_interrupt_config(struct iio_dev *indio_dev,
968 					  const struct iio_chan_spec *chan,
969 					  enum iio_event_type type,
970 					  enum iio_event_direction dir,
971 					  int val)
972 {
973 	struct tsl2772_chip *chip = iio_priv(indio_dev);
974 
975 	if (chan->type == IIO_INTENSITY)
976 		chip->settings.als_interrupt_en = val ? true : false;
977 	else
978 		chip->settings.prox_interrupt_en = val ? true : false;
979 
980 	return tsl2772_invoke_change(indio_dev);
981 }
982 
983 static int tsl2772_write_event_value(struct iio_dev *indio_dev,
984 				     const struct iio_chan_spec *chan,
985 				     enum iio_event_type type,
986 				     enum iio_event_direction dir,
987 				     enum iio_event_info info,
988 				     int val, int val2)
989 {
990 	struct tsl2772_chip *chip = iio_priv(indio_dev);
991 	int ret = -EINVAL, count, persistence;
992 	u8 time;
993 
994 	switch (info) {
995 	case IIO_EV_INFO_VALUE:
996 		if (chan->type == IIO_INTENSITY) {
997 			switch (dir) {
998 			case IIO_EV_DIR_RISING:
999 				chip->settings.als_thresh_high = val;
1000 				ret = 0;
1001 				break;
1002 			case IIO_EV_DIR_FALLING:
1003 				chip->settings.als_thresh_low = val;
1004 				ret = 0;
1005 				break;
1006 			default:
1007 				break;
1008 			}
1009 		} else {
1010 			switch (dir) {
1011 			case IIO_EV_DIR_RISING:
1012 				chip->settings.prox_thres_high = val;
1013 				ret = 0;
1014 				break;
1015 			case IIO_EV_DIR_FALLING:
1016 				chip->settings.prox_thres_low = val;
1017 				ret = 0;
1018 				break;
1019 			default:
1020 				break;
1021 			}
1022 		}
1023 		break;
1024 	case IIO_EV_INFO_PERIOD:
1025 		if (chan->type == IIO_INTENSITY)
1026 			time = chip->settings.als_time;
1027 		else
1028 			time = chip->settings.prox_time;
1029 
1030 		count = 256 - time;
1031 		persistence = ((val * 1000000) + val2) /
1032 			(count * tsl2772_int_time_avail[chip->id][3]);
1033 
1034 		if (chan->type == IIO_INTENSITY) {
1035 			/* ALS filter values are 1, 2, 3, 5, 10, 15, ..., 60 */
1036 			if (persistence > 3)
1037 				persistence = (persistence / 5) + 3;
1038 
1039 			chip->settings.als_persistence = persistence;
1040 		} else {
1041 			chip->settings.prox_persistence = persistence;
1042 		}
1043 
1044 		ret = 0;
1045 		break;
1046 	default:
1047 		break;
1048 	}
1049 
1050 	if (ret < 0)
1051 		return ret;
1052 
1053 	return tsl2772_invoke_change(indio_dev);
1054 }
1055 
1056 static int tsl2772_read_event_value(struct iio_dev *indio_dev,
1057 				    const struct iio_chan_spec *chan,
1058 				    enum iio_event_type type,
1059 				    enum iio_event_direction dir,
1060 				    enum iio_event_info info,
1061 				    int *val, int *val2)
1062 {
1063 	struct tsl2772_chip *chip = iio_priv(indio_dev);
1064 	int filter_delay, persistence;
1065 	u8 time;
1066 
1067 	switch (info) {
1068 	case IIO_EV_INFO_VALUE:
1069 		if (chan->type == IIO_INTENSITY) {
1070 			switch (dir) {
1071 			case IIO_EV_DIR_RISING:
1072 				*val = chip->settings.als_thresh_high;
1073 				return IIO_VAL_INT;
1074 			case IIO_EV_DIR_FALLING:
1075 				*val = chip->settings.als_thresh_low;
1076 				return IIO_VAL_INT;
1077 			default:
1078 				return -EINVAL;
1079 			}
1080 		} else {
1081 			switch (dir) {
1082 			case IIO_EV_DIR_RISING:
1083 				*val = chip->settings.prox_thres_high;
1084 				return IIO_VAL_INT;
1085 			case IIO_EV_DIR_FALLING:
1086 				*val = chip->settings.prox_thres_low;
1087 				return IIO_VAL_INT;
1088 			default:
1089 				return -EINVAL;
1090 			}
1091 		}
1092 		break;
1093 	case IIO_EV_INFO_PERIOD:
1094 		if (chan->type == IIO_INTENSITY) {
1095 			time = chip->settings.als_time;
1096 			persistence = chip->settings.als_persistence;
1097 
1098 			/* ALS filter values are 1, 2, 3, 5, 10, 15, ..., 60 */
1099 			if (persistence > 3)
1100 				persistence = (persistence - 3) * 5;
1101 		} else {
1102 			time = chip->settings.prox_time;
1103 			persistence = chip->settings.prox_persistence;
1104 		}
1105 
1106 		filter_delay = persistence * (256 - time) *
1107 			tsl2772_int_time_avail[chip->id][3];
1108 
1109 		*val = filter_delay / 1000000;
1110 		*val2 = filter_delay % 1000000;
1111 		return IIO_VAL_INT_PLUS_MICRO;
1112 	default:
1113 		return -EINVAL;
1114 	}
1115 }
1116 
1117 static int tsl2772_read_raw(struct iio_dev *indio_dev,
1118 			    struct iio_chan_spec const *chan,
1119 			    int *val,
1120 			    int *val2,
1121 			    long mask)
1122 {
1123 	struct tsl2772_chip *chip = iio_priv(indio_dev);
1124 
1125 	switch (mask) {
1126 	case IIO_CHAN_INFO_PROCESSED:
1127 		switch (chan->type) {
1128 		case IIO_LIGHT:
1129 			tsl2772_get_lux(indio_dev);
1130 			*val = chip->als_cur_info.lux;
1131 			return IIO_VAL_INT;
1132 		default:
1133 			return -EINVAL;
1134 		}
1135 	case IIO_CHAN_INFO_RAW:
1136 		switch (chan->type) {
1137 		case IIO_INTENSITY:
1138 			tsl2772_get_lux(indio_dev);
1139 			if (chan->channel == 0)
1140 				*val = chip->als_cur_info.als_ch0;
1141 			else
1142 				*val = chip->als_cur_info.als_ch1;
1143 			return IIO_VAL_INT;
1144 		case IIO_PROXIMITY:
1145 			tsl2772_get_prox(indio_dev);
1146 			*val = chip->prox_data;
1147 			return IIO_VAL_INT;
1148 		default:
1149 			return -EINVAL;
1150 		}
1151 		break;
1152 	case IIO_CHAN_INFO_CALIBSCALE:
1153 		if (chan->type == IIO_LIGHT)
1154 			*val = tsl2772_als_gain[chip->settings.als_gain];
1155 		else
1156 			*val = tsl2772_prox_gain[chip->settings.prox_gain];
1157 		return IIO_VAL_INT;
1158 	case IIO_CHAN_INFO_CALIBBIAS:
1159 		*val = chip->settings.als_gain_trim;
1160 		return IIO_VAL_INT;
1161 	case IIO_CHAN_INFO_INT_TIME:
1162 		*val = 0;
1163 		*val2 = (256 - chip->settings.als_time) *
1164 			tsl2772_int_time_avail[chip->id][3];
1165 		return IIO_VAL_INT_PLUS_MICRO;
1166 	default:
1167 		return -EINVAL;
1168 	}
1169 }
1170 
1171 static int tsl2772_write_raw(struct iio_dev *indio_dev,
1172 			     struct iio_chan_spec const *chan,
1173 			     int val,
1174 			     int val2,
1175 			     long mask)
1176 {
1177 	struct tsl2772_chip *chip = iio_priv(indio_dev);
1178 
1179 	switch (mask) {
1180 	case IIO_CHAN_INFO_CALIBSCALE:
1181 		if (chan->type == IIO_INTENSITY) {
1182 			switch (val) {
1183 			case 1:
1184 				chip->settings.als_gain = 0;
1185 				break;
1186 			case 8:
1187 				chip->settings.als_gain = 1;
1188 				break;
1189 			case 16:
1190 				chip->settings.als_gain = 2;
1191 				break;
1192 			case 120:
1193 				chip->settings.als_gain = 3;
1194 				break;
1195 			default:
1196 				return -EINVAL;
1197 			}
1198 		} else {
1199 			switch (val) {
1200 			case 1:
1201 				chip->settings.prox_gain = 0;
1202 				break;
1203 			case 2:
1204 				chip->settings.prox_gain = 1;
1205 				break;
1206 			case 4:
1207 				chip->settings.prox_gain = 2;
1208 				break;
1209 			case 8:
1210 				chip->settings.prox_gain = 3;
1211 				break;
1212 			default:
1213 				return -EINVAL;
1214 			}
1215 		}
1216 		break;
1217 	case IIO_CHAN_INFO_CALIBBIAS:
1218 		if (val < TSL2772_ALS_GAIN_TRIM_MIN ||
1219 		    val > TSL2772_ALS_GAIN_TRIM_MAX)
1220 			return -EINVAL;
1221 
1222 		chip->settings.als_gain_trim = val;
1223 		break;
1224 	case IIO_CHAN_INFO_INT_TIME:
1225 		if (val != 0 || val2 < tsl2772_int_time_avail[chip->id][1] ||
1226 		    val2 > tsl2772_int_time_avail[chip->id][5])
1227 			return -EINVAL;
1228 
1229 		chip->settings.als_time = 256 -
1230 			(val2 / tsl2772_int_time_avail[chip->id][3]);
1231 		break;
1232 	default:
1233 		return -EINVAL;
1234 	}
1235 
1236 	return tsl2772_invoke_change(indio_dev);
1237 }
1238 
1239 static DEVICE_ATTR_RW(in_illuminance0_target_input);
1240 
1241 static DEVICE_ATTR_WO(in_illuminance0_calibrate);
1242 
1243 static DEVICE_ATTR_WO(in_proximity0_calibrate);
1244 
1245 static DEVICE_ATTR_RW(in_illuminance0_lux_table);
1246 
1247 /* Use the default register values to identify the Taos device */
1248 static int tsl2772_device_id_verif(int id, int target)
1249 {
1250 	switch (target) {
1251 	case tsl2571:
1252 	case tsl2671:
1253 	case tsl2771:
1254 		return (id & 0xf0) == TRITON_ID;
1255 	case tmd2671:
1256 	case tmd2771:
1257 		return (id & 0xf0) == HALIBUT_ID;
1258 	case tsl2572:
1259 	case tsl2672:
1260 	case tmd2672:
1261 	case tsl2772:
1262 	case tmd2772:
1263 		return (id & 0xf0) == SWORDFISH_ID;
1264 	}
1265 
1266 	return -EINVAL;
1267 }
1268 
1269 static irqreturn_t tsl2772_event_handler(int irq, void *private)
1270 {
1271 	struct iio_dev *indio_dev = private;
1272 	struct tsl2772_chip *chip = iio_priv(indio_dev);
1273 	s64 timestamp = iio_get_time_ns(indio_dev);
1274 	int ret;
1275 
1276 	ret = tsl2772_read_status(chip);
1277 	if (ret < 0)
1278 		return IRQ_HANDLED;
1279 
1280 	/* What type of interrupt do we need to process */
1281 	if (ret & TSL2772_STA_PRX_INTR) {
1282 		iio_push_event(indio_dev,
1283 			       IIO_UNMOD_EVENT_CODE(IIO_PROXIMITY,
1284 						    0,
1285 						    IIO_EV_TYPE_THRESH,
1286 						    IIO_EV_DIR_EITHER),
1287 			       timestamp);
1288 	}
1289 
1290 	if (ret & TSL2772_STA_ALS_INTR) {
1291 		iio_push_event(indio_dev,
1292 			       IIO_UNMOD_EVENT_CODE(IIO_LIGHT,
1293 						    0,
1294 						    IIO_EV_TYPE_THRESH,
1295 						    IIO_EV_DIR_EITHER),
1296 			       timestamp);
1297 	}
1298 
1299 	ret = i2c_smbus_write_byte(chip->client,
1300 				   TSL2772_CMD_REG | TSL2772_CMD_SPL_FN |
1301 				   TSL2772_CMD_PROXALS_INT_CLR);
1302 	if (ret < 0)
1303 		dev_err(&chip->client->dev,
1304 			"%s: failed to clear interrupt status: %d\n",
1305 			__func__, ret);
1306 
1307 	return IRQ_HANDLED;
1308 }
1309 
1310 static struct attribute *tsl2772_ALS_device_attrs[] = {
1311 	&dev_attr_in_illuminance0_target_input.attr,
1312 	&dev_attr_in_illuminance0_calibrate.attr,
1313 	&dev_attr_in_illuminance0_lux_table.attr,
1314 	NULL
1315 };
1316 
1317 static struct attribute *tsl2772_PRX_device_attrs[] = {
1318 	&dev_attr_in_proximity0_calibrate.attr,
1319 	NULL
1320 };
1321 
1322 static struct attribute *tsl2772_ALSPRX_device_attrs[] = {
1323 	&dev_attr_in_illuminance0_target_input.attr,
1324 	&dev_attr_in_illuminance0_calibrate.attr,
1325 	&dev_attr_in_illuminance0_lux_table.attr,
1326 	NULL
1327 };
1328 
1329 static struct attribute *tsl2772_PRX2_device_attrs[] = {
1330 	&dev_attr_in_proximity0_calibrate.attr,
1331 	NULL
1332 };
1333 
1334 static struct attribute *tsl2772_ALSPRX2_device_attrs[] = {
1335 	&dev_attr_in_illuminance0_target_input.attr,
1336 	&dev_attr_in_illuminance0_calibrate.attr,
1337 	&dev_attr_in_illuminance0_lux_table.attr,
1338 	&dev_attr_in_proximity0_calibrate.attr,
1339 	NULL
1340 };
1341 
1342 static const struct attribute_group tsl2772_device_attr_group_tbl[] = {
1343 	[ALS] = {
1344 		.attrs = tsl2772_ALS_device_attrs,
1345 	},
1346 	[PRX] = {
1347 		.attrs = tsl2772_PRX_device_attrs,
1348 	},
1349 	[ALSPRX] = {
1350 		.attrs = tsl2772_ALSPRX_device_attrs,
1351 	},
1352 	[PRX2] = {
1353 		.attrs = tsl2772_PRX2_device_attrs,
1354 	},
1355 	[ALSPRX2] = {
1356 		.attrs = tsl2772_ALSPRX2_device_attrs,
1357 	},
1358 };
1359 
1360 #define TSL2772_DEVICE_INFO(type)[type] = \
1361 	{ \
1362 		.attrs = &tsl2772_device_attr_group_tbl[type], \
1363 		.read_raw = &tsl2772_read_raw, \
1364 		.read_avail = &tsl2772_read_avail, \
1365 		.write_raw = &tsl2772_write_raw, \
1366 		.read_event_value = &tsl2772_read_event_value, \
1367 		.write_event_value = &tsl2772_write_event_value, \
1368 		.read_event_config = &tsl2772_read_interrupt_config, \
1369 		.write_event_config = &tsl2772_write_interrupt_config, \
1370 	}
1371 
1372 static const struct iio_info tsl2772_device_info[] = {
1373 	TSL2772_DEVICE_INFO(ALS),
1374 	TSL2772_DEVICE_INFO(PRX),
1375 	TSL2772_DEVICE_INFO(ALSPRX),
1376 	TSL2772_DEVICE_INFO(PRX2),
1377 	TSL2772_DEVICE_INFO(ALSPRX2),
1378 };
1379 
1380 static const struct iio_event_spec tsl2772_events[] = {
1381 	{
1382 		.type = IIO_EV_TYPE_THRESH,
1383 		.dir = IIO_EV_DIR_RISING,
1384 		.mask_separate = BIT(IIO_EV_INFO_VALUE),
1385 	}, {
1386 		.type = IIO_EV_TYPE_THRESH,
1387 		.dir = IIO_EV_DIR_FALLING,
1388 		.mask_separate = BIT(IIO_EV_INFO_VALUE),
1389 	}, {
1390 		.type = IIO_EV_TYPE_THRESH,
1391 		.dir = IIO_EV_DIR_EITHER,
1392 		.mask_separate = BIT(IIO_EV_INFO_PERIOD) |
1393 			BIT(IIO_EV_INFO_ENABLE),
1394 	},
1395 };
1396 
1397 static const struct tsl2772_chip_info tsl2772_chip_info_tbl[] = {
1398 	[ALS] = {
1399 		.channel_with_events = {
1400 			{
1401 			.type = IIO_LIGHT,
1402 			.indexed = 1,
1403 			.channel = 0,
1404 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1405 			}, {
1406 			.type = IIO_INTENSITY,
1407 			.indexed = 1,
1408 			.channel = 0,
1409 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1410 				BIT(IIO_CHAN_INFO_INT_TIME) |
1411 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1412 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1413 			.info_mask_separate_available =
1414 				BIT(IIO_CHAN_INFO_INT_TIME) |
1415 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1416 			.event_spec = tsl2772_events,
1417 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1418 			}, {
1419 			.type = IIO_INTENSITY,
1420 			.indexed = 1,
1421 			.channel = 1,
1422 			},
1423 		},
1424 		.channel_without_events = {
1425 			{
1426 			.type = IIO_LIGHT,
1427 			.indexed = 1,
1428 			.channel = 0,
1429 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1430 			}, {
1431 			.type = IIO_INTENSITY,
1432 			.indexed = 1,
1433 			.channel = 0,
1434 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1435 				BIT(IIO_CHAN_INFO_INT_TIME) |
1436 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1437 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1438 			.info_mask_separate_available =
1439 				BIT(IIO_CHAN_INFO_INT_TIME) |
1440 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1441 			}, {
1442 			.type = IIO_INTENSITY,
1443 			.indexed = 1,
1444 			.channel = 1,
1445 			},
1446 		},
1447 		.chan_table_elements = 3,
1448 		.info = &tsl2772_device_info[ALS],
1449 	},
1450 	[PRX] = {
1451 		.channel_with_events = {
1452 			{
1453 			.type = IIO_PROXIMITY,
1454 			.indexed = 1,
1455 			.channel = 0,
1456 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1457 			.event_spec = tsl2772_events,
1458 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1459 			},
1460 		},
1461 		.channel_without_events = {
1462 			{
1463 			.type = IIO_PROXIMITY,
1464 			.indexed = 1,
1465 			.channel = 0,
1466 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1467 			},
1468 		},
1469 		.chan_table_elements = 1,
1470 		.info = &tsl2772_device_info[PRX],
1471 	},
1472 	[ALSPRX] = {
1473 		.channel_with_events = {
1474 			{
1475 			.type = IIO_LIGHT,
1476 			.indexed = 1,
1477 			.channel = 0,
1478 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1479 			}, {
1480 			.type = IIO_INTENSITY,
1481 			.indexed = 1,
1482 			.channel = 0,
1483 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1484 				BIT(IIO_CHAN_INFO_INT_TIME) |
1485 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1486 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1487 			.info_mask_separate_available =
1488 				BIT(IIO_CHAN_INFO_INT_TIME) |
1489 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1490 			.event_spec = tsl2772_events,
1491 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1492 			}, {
1493 			.type = IIO_INTENSITY,
1494 			.indexed = 1,
1495 			.channel = 1,
1496 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1497 			}, {
1498 			.type = IIO_PROXIMITY,
1499 			.indexed = 1,
1500 			.channel = 0,
1501 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1502 			.event_spec = tsl2772_events,
1503 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1504 			},
1505 		},
1506 		.channel_without_events = {
1507 			{
1508 			.type = IIO_LIGHT,
1509 			.indexed = 1,
1510 			.channel = 0,
1511 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1512 			}, {
1513 			.type = IIO_INTENSITY,
1514 			.indexed = 1,
1515 			.channel = 0,
1516 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1517 				BIT(IIO_CHAN_INFO_INT_TIME) |
1518 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1519 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1520 			.info_mask_separate_available =
1521 				BIT(IIO_CHAN_INFO_INT_TIME) |
1522 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1523 			}, {
1524 			.type = IIO_INTENSITY,
1525 			.indexed = 1,
1526 			.channel = 1,
1527 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1528 			}, {
1529 			.type = IIO_PROXIMITY,
1530 			.indexed = 1,
1531 			.channel = 0,
1532 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1533 			},
1534 		},
1535 		.chan_table_elements = 4,
1536 		.info = &tsl2772_device_info[ALSPRX],
1537 	},
1538 	[PRX2] = {
1539 		.channel_with_events = {
1540 			{
1541 			.type = IIO_PROXIMITY,
1542 			.indexed = 1,
1543 			.channel = 0,
1544 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1545 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1546 			.info_mask_separate_available =
1547 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1548 			.event_spec = tsl2772_events,
1549 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1550 			},
1551 		},
1552 		.channel_without_events = {
1553 			{
1554 			.type = IIO_PROXIMITY,
1555 			.indexed = 1,
1556 			.channel = 0,
1557 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1558 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1559 			.info_mask_separate_available =
1560 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1561 			},
1562 		},
1563 		.chan_table_elements = 1,
1564 		.info = &tsl2772_device_info[PRX2],
1565 	},
1566 	[ALSPRX2] = {
1567 		.channel_with_events = {
1568 			{
1569 			.type = IIO_LIGHT,
1570 			.indexed = 1,
1571 			.channel = 0,
1572 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1573 			}, {
1574 			.type = IIO_INTENSITY,
1575 			.indexed = 1,
1576 			.channel = 0,
1577 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1578 				BIT(IIO_CHAN_INFO_INT_TIME) |
1579 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1580 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1581 			.info_mask_separate_available =
1582 				BIT(IIO_CHAN_INFO_INT_TIME) |
1583 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1584 			.event_spec = tsl2772_events,
1585 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1586 			}, {
1587 			.type = IIO_INTENSITY,
1588 			.indexed = 1,
1589 			.channel = 1,
1590 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1591 			}, {
1592 			.type = IIO_PROXIMITY,
1593 			.indexed = 1,
1594 			.channel = 0,
1595 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1596 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1597 			.info_mask_separate_available =
1598 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1599 			.event_spec = tsl2772_events,
1600 			.num_event_specs = ARRAY_SIZE(tsl2772_events),
1601 			},
1602 		},
1603 		.channel_without_events = {
1604 			{
1605 			.type = IIO_LIGHT,
1606 			.indexed = 1,
1607 			.channel = 0,
1608 			.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
1609 			}, {
1610 			.type = IIO_INTENSITY,
1611 			.indexed = 1,
1612 			.channel = 0,
1613 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1614 				BIT(IIO_CHAN_INFO_INT_TIME) |
1615 				BIT(IIO_CHAN_INFO_CALIBSCALE) |
1616 				BIT(IIO_CHAN_INFO_CALIBBIAS),
1617 			.info_mask_separate_available =
1618 				BIT(IIO_CHAN_INFO_INT_TIME) |
1619 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1620 			}, {
1621 			.type = IIO_INTENSITY,
1622 			.indexed = 1,
1623 			.channel = 1,
1624 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
1625 			}, {
1626 			.type = IIO_PROXIMITY,
1627 			.indexed = 1,
1628 			.channel = 0,
1629 			.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
1630 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1631 			.info_mask_separate_available =
1632 				BIT(IIO_CHAN_INFO_CALIBSCALE),
1633 			},
1634 		},
1635 		.chan_table_elements = 4,
1636 		.info = &tsl2772_device_info[ALSPRX2],
1637 	},
1638 };
1639 
1640 static int tsl2772_probe(struct i2c_client *clientp,
1641 			 const struct i2c_device_id *id)
1642 {
1643 	struct iio_dev *indio_dev;
1644 	struct tsl2772_chip *chip;
1645 	int ret;
1646 
1647 	indio_dev = devm_iio_device_alloc(&clientp->dev, sizeof(*chip));
1648 	if (!indio_dev)
1649 		return -ENOMEM;
1650 
1651 	chip = iio_priv(indio_dev);
1652 	chip->client = clientp;
1653 	i2c_set_clientdata(clientp, indio_dev);
1654 
1655 	ret = i2c_smbus_read_byte_data(chip->client,
1656 				       TSL2772_CMD_REG | TSL2772_CHIPID);
1657 	if (ret < 0)
1658 		return ret;
1659 
1660 	if (tsl2772_device_id_verif(ret, id->driver_data) <= 0) {
1661 		dev_info(&chip->client->dev,
1662 			 "%s: i2c device found does not match expected id\n",
1663 				__func__);
1664 		return -EINVAL;
1665 	}
1666 
1667 	ret = i2c_smbus_write_byte(clientp, TSL2772_CMD_REG | TSL2772_CNTRL);
1668 	if (ret < 0) {
1669 		dev_err(&clientp->dev,
1670 			"%s: Failed to write to CMD register: %d\n",
1671 			__func__, ret);
1672 		return ret;
1673 	}
1674 
1675 	mutex_init(&chip->als_mutex);
1676 	mutex_init(&chip->prox_mutex);
1677 
1678 	chip->tsl2772_chip_status = TSL2772_CHIP_UNKNOWN;
1679 	chip->pdata = dev_get_platdata(&clientp->dev);
1680 	chip->id = id->driver_data;
1681 	chip->chip_info =
1682 		&tsl2772_chip_info_tbl[device_channel_config[id->driver_data]];
1683 
1684 	indio_dev->info = chip->chip_info->info;
1685 	indio_dev->dev.parent = &clientp->dev;
1686 	indio_dev->modes = INDIO_DIRECT_MODE;
1687 	indio_dev->name = chip->client->name;
1688 	indio_dev->num_channels = chip->chip_info->chan_table_elements;
1689 
1690 	if (clientp->irq) {
1691 		indio_dev->channels = chip->chip_info->channel_with_events;
1692 
1693 		ret = devm_request_threaded_irq(&clientp->dev, clientp->irq,
1694 						NULL,
1695 						&tsl2772_event_handler,
1696 						IRQF_TRIGGER_FALLING |
1697 						IRQF_ONESHOT,
1698 						"TSL2772_event",
1699 						indio_dev);
1700 		if (ret) {
1701 			dev_err(&clientp->dev,
1702 				"%s: irq request failed\n", __func__);
1703 			return ret;
1704 		}
1705 	} else {
1706 		indio_dev->channels = chip->chip_info->channel_without_events;
1707 	}
1708 
1709 	tsl2772_defaults(chip);
1710 	ret = tsl2772_chip_on(indio_dev);
1711 	if (ret < 0)
1712 		return ret;
1713 
1714 	ret = iio_device_register(indio_dev);
1715 	if (ret) {
1716 		tsl2772_chip_off(indio_dev);
1717 		dev_err(&clientp->dev,
1718 			"%s: iio registration failed\n", __func__);
1719 		return ret;
1720 	}
1721 
1722 	return 0;
1723 }
1724 
1725 static int tsl2772_suspend(struct device *dev)
1726 {
1727 	struct iio_dev *indio_dev = dev_get_drvdata(dev);
1728 
1729 	return tsl2772_chip_off(indio_dev);
1730 }
1731 
1732 static int tsl2772_resume(struct device *dev)
1733 {
1734 	struct iio_dev *indio_dev = dev_get_drvdata(dev);
1735 
1736 	return tsl2772_chip_on(indio_dev);
1737 }
1738 
1739 static int tsl2772_remove(struct i2c_client *client)
1740 {
1741 	struct iio_dev *indio_dev = i2c_get_clientdata(client);
1742 
1743 	tsl2772_chip_off(indio_dev);
1744 
1745 	iio_device_unregister(indio_dev);
1746 
1747 	return 0;
1748 }
1749 
1750 static const struct i2c_device_id tsl2772_idtable[] = {
1751 	{ "tsl2571", tsl2571 },
1752 	{ "tsl2671", tsl2671 },
1753 	{ "tmd2671", tmd2671 },
1754 	{ "tsl2771", tsl2771 },
1755 	{ "tmd2771", tmd2771 },
1756 	{ "tsl2572", tsl2572 },
1757 	{ "tsl2672", tsl2672 },
1758 	{ "tmd2672", tmd2672 },
1759 	{ "tsl2772", tsl2772 },
1760 	{ "tmd2772", tmd2772 },
1761 	{}
1762 };
1763 
1764 MODULE_DEVICE_TABLE(i2c, tsl2772_idtable);
1765 
1766 static const struct of_device_id tsl2772_of_match[] = {
1767 	{ .compatible = "amstaos,tsl2571" },
1768 	{ .compatible = "amstaos,tsl2671" },
1769 	{ .compatible = "amstaos,tmd2671" },
1770 	{ .compatible = "amstaos,tsl2771" },
1771 	{ .compatible = "amstaos,tmd2771" },
1772 	{ .compatible = "amstaos,tsl2572" },
1773 	{ .compatible = "amstaos,tsl2672" },
1774 	{ .compatible = "amstaos,tmd2672" },
1775 	{ .compatible = "amstaos,tsl2772" },
1776 	{ .compatible = "amstaos,tmd2772" },
1777 	{}
1778 };
1779 MODULE_DEVICE_TABLE(of, tsl2772_of_match);
1780 
1781 static const struct dev_pm_ops tsl2772_pm_ops = {
1782 	.suspend = tsl2772_suspend,
1783 	.resume  = tsl2772_resume,
1784 };
1785 
1786 static struct i2c_driver tsl2772_driver = {
1787 	.driver = {
1788 		.name = "tsl2772",
1789 		.of_match_table = tsl2772_of_match,
1790 		.pm = &tsl2772_pm_ops,
1791 	},
1792 	.id_table = tsl2772_idtable,
1793 	.probe = tsl2772_probe,
1794 	.remove = tsl2772_remove,
1795 };
1796 
1797 module_i2c_driver(tsl2772_driver);
1798 
1799 MODULE_AUTHOR("J. August Brenner <Jon.Brenner@ams.com>");
1800 MODULE_AUTHOR("Brian Masney <masneyb@onstation.org>");
1801 MODULE_DESCRIPTION("TAOS tsl2772 ambient and proximity light sensor driver");
1802 MODULE_LICENSE("GPL");
1803