1 // SPDX-License-Identifier: GPL-2.0+
3 * VEML6030, VMEL6035 and VEML7700 Ambient Light Sensors
5 * Copyright (c) 2019, Rishi Gupta <gupt21@gmail.com>
8 * Datasheet: https://www.vishay.com/docs/84366/veml6030.pdf
9 * Appnote-84367: https://www.vishay.com/docs/84367/designingveml6030.pdf
12 * Datasheet: https://www.vishay.com/docs/84889/veml6035.pdf
13 * Appnote-84944: https://www.vishay.com/docs/84944/designingveml6035.pdf
16 * Datasheet: https://www.vishay.com/docs/84286/veml7700.pdf
17 * Appnote-84323: https://www.vishay.com/docs/84323/designingveml7700.pdf
20 #include <linux/bitfield.h>
21 #include <linux/module.h>
22 #include <linux/i2c.h>
23 #include <linux/err.h>
24 #include <linux/regmap.h>
25 #include <linux/interrupt.h>
26 #include <linux/pm_runtime.h>
27 #include <linux/regulator/consumer.h>
28 #include <linux/iio/iio.h>
29 #include <linux/iio/sysfs.h>
30 #include <linux/iio/events.h>
32 /* Device registers */
33 #define VEML6030_REG_ALS_CONF 0x00
34 #define VEML6030_REG_ALS_WH 0x01
35 #define VEML6030_REG_ALS_WL 0x02
36 #define VEML6030_REG_ALS_PSM 0x03
37 #define VEML6030_REG_ALS_DATA 0x04
38 #define VEML6030_REG_WH_DATA 0x05
39 #define VEML6030_REG_ALS_INT 0x06
41 /* Bit masks for specific functionality */
42 #define VEML6030_ALS_IT GENMASK(9, 6)
43 #define VEML6030_PSM GENMASK(2, 1)
44 #define VEML6030_ALS_PERS GENMASK(5, 4)
45 #define VEML6030_ALS_GAIN GENMASK(12, 11)
46 #define VEML6030_PSM_EN BIT(0)
47 #define VEML6030_INT_TH_LOW BIT(15)
48 #define VEML6030_INT_TH_HIGH BIT(14)
49 #define VEML6030_ALS_INT_EN BIT(1)
50 #define VEML6030_ALS_SD BIT(0)
52 #define VEML6035_GAIN_M GENMASK(12, 10)
53 #define VEML6035_GAIN BIT(10)
54 #define VEML6035_DG BIT(11)
55 #define VEML6035_SENS BIT(12)
56 #define VEML6035_INT_CHAN BIT(3)
57 #define VEML6035_CHAN_EN BIT(2)
59 struct veml603x_chip
{
61 const int(*scale_vals
)[][2];
62 const int num_scale_vals
;
63 const struct iio_chan_spec
*channels
;
64 const int num_channels
;
65 int (*hw_init
)(struct iio_dev
*indio_dev
, struct device
*dev
);
66 int (*set_info
)(struct iio_dev
*indio_dev
);
67 int (*set_als_gain
)(struct iio_dev
*indio_dev
, int val
, int val2
);
68 int (*get_als_gain
)(struct iio_dev
*indio_dev
, int *val
, int *val2
);
72 * The resolution depends on both gain and integration time. The
73 * cur_resolution stores one of the resolution mentioned in the
74 * table during startup and gets updated whenever integration time
77 * Table 'resolution and maximum detection range' in the appnotes
78 * is visualized as a 2D array. The cur_gain stores index of gain
79 * in this table (0-3 for VEML6030, 0-5 for VEML6035) while the
80 * cur_integration_time holds index of integration time (0-5).
82 struct veml6030_data
{
83 struct i2c_client
*client
;
84 struct regmap
*regmap
;
87 int cur_integration_time
;
88 const struct veml603x_chip
*chip
;
91 static const int veml6030_it_times
[][2] = {
101 * Scale is 1/gain. Value 0.125 is ALS gain x (1/8), 0.25 is
102 * ALS gain x (1/4), 0.5 is ALS gain x (1/2), 1.0 is ALS gain x 1,
103 * 2.0 is ALS gain x2, and 4.0 is ALS gain x 4.
105 static const int veml6030_scale_vals
[][2] = {
112 static const int veml6035_scale_vals
[][2] = {
122 * Persistence = 1/2/4/8 x integration time
123 * Minimum time for which light readings must stay above configured
124 * threshold to assert the interrupt.
126 static const char * const period_values
[] = {
132 "0.025 0.050 0.1 0.2"
136 * Return list of valid period values in seconds corresponding to
137 * the currently active integration time.
139 static ssize_t
in_illuminance_period_available_show(struct device
*dev
,
140 struct device_attribute
*attr
, char *buf
)
142 struct veml6030_data
*data
= iio_priv(dev_to_iio_dev(dev
));
145 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
147 dev_err(&data
->client
->dev
,
148 "can't read als conf register %d\n", ret
);
152 ret
= ((reg
>> 6) & 0xF);
170 return sysfs_emit(buf
, "%s\n", period_values
[x
]);
173 static IIO_DEVICE_ATTR_RO(in_illuminance_period_available
, 0);
175 static struct attribute
*veml6030_event_attributes
[] = {
176 &iio_dev_attr_in_illuminance_period_available
.dev_attr
.attr
,
180 static const struct attribute_group veml6030_event_attr_group
= {
181 .attrs
= veml6030_event_attributes
,
184 static int veml6030_als_pwr_on(struct veml6030_data
*data
)
188 ret
= regmap_clear_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
193 /* Wait 4 ms to let processor & oscillator start correctly */
199 static int veml6030_als_shut_down(struct veml6030_data
*data
)
201 return regmap_set_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
205 static void veml6030_als_shut_down_action(void *data
)
207 veml6030_als_shut_down(data
);
210 static const struct iio_event_spec veml6030_event_spec
[] = {
212 .type
= IIO_EV_TYPE_THRESH
,
213 .dir
= IIO_EV_DIR_RISING
,
214 .mask_separate
= BIT(IIO_EV_INFO_VALUE
),
216 .type
= IIO_EV_TYPE_THRESH
,
217 .dir
= IIO_EV_DIR_FALLING
,
218 .mask_separate
= BIT(IIO_EV_INFO_VALUE
),
220 .type
= IIO_EV_TYPE_THRESH
,
221 .dir
= IIO_EV_DIR_EITHER
,
222 .mask_separate
= BIT(IIO_EV_INFO_PERIOD
) |
223 BIT(IIO_EV_INFO_ENABLE
),
233 static const struct iio_chan_spec veml6030_channels
[] = {
237 .info_mask_separate
= BIT(IIO_CHAN_INFO_RAW
) |
238 BIT(IIO_CHAN_INFO_PROCESSED
) |
239 BIT(IIO_CHAN_INFO_INT_TIME
) |
240 BIT(IIO_CHAN_INFO_SCALE
),
241 .info_mask_shared_by_all_available
= BIT(IIO_CHAN_INFO_INT_TIME
) |
242 BIT(IIO_CHAN_INFO_SCALE
),
243 .event_spec
= veml6030_event_spec
,
244 .num_event_specs
= ARRAY_SIZE(veml6030_event_spec
),
247 .type
= IIO_INTENSITY
,
250 .channel2
= IIO_MOD_LIGHT_BOTH
,
251 .info_mask_separate
= BIT(IIO_CHAN_INFO_RAW
) |
252 BIT(IIO_CHAN_INFO_INT_TIME
) |
253 BIT(IIO_CHAN_INFO_SCALE
),
254 .info_mask_shared_by_all_available
= BIT(IIO_CHAN_INFO_INT_TIME
) |
255 BIT(IIO_CHAN_INFO_SCALE
),
259 static const struct iio_chan_spec veml7700_channels
[] = {
263 .info_mask_separate
= BIT(IIO_CHAN_INFO_RAW
) |
264 BIT(IIO_CHAN_INFO_PROCESSED
) |
265 BIT(IIO_CHAN_INFO_INT_TIME
) |
266 BIT(IIO_CHAN_INFO_SCALE
),
267 .info_mask_shared_by_all_available
= BIT(IIO_CHAN_INFO_INT_TIME
) |
268 BIT(IIO_CHAN_INFO_SCALE
),
271 .type
= IIO_INTENSITY
,
274 .channel2
= IIO_MOD_LIGHT_BOTH
,
275 .info_mask_separate
= BIT(IIO_CHAN_INFO_RAW
) |
276 BIT(IIO_CHAN_INFO_INT_TIME
) |
277 BIT(IIO_CHAN_INFO_SCALE
),
278 .info_mask_shared_by_all_available
= BIT(IIO_CHAN_INFO_INT_TIME
) |
279 BIT(IIO_CHAN_INFO_SCALE
),
283 static const struct regmap_config veml6030_regmap_config
= {
284 .name
= "veml6030_regmap",
287 .max_register
= VEML6030_REG_ALS_INT
,
288 .val_format_endian
= REGMAP_ENDIAN_LITTLE
,
291 static int veml6030_get_intgrn_tm(struct iio_dev
*indio_dev
,
295 struct veml6030_data
*data
= iio_priv(indio_dev
);
297 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
299 dev_err(&data
->client
->dev
,
300 "can't read als conf register %d\n", ret
);
304 switch ((reg
>> 6) & 0xF) {
328 return IIO_VAL_INT_PLUS_MICRO
;
331 static int veml6030_set_intgrn_tm(struct iio_dev
*indio_dev
,
334 int ret
, new_int_time
, int_idx
;
335 struct veml6030_data
*data
= iio_priv(indio_dev
);
342 new_int_time
= 0x300;
346 new_int_time
= 0x200;
369 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
370 VEML6030_ALS_IT
, new_int_time
);
372 dev_err(&data
->client
->dev
,
373 "can't update als integration time %d\n", ret
);
378 * Cache current integration time and update resolution. For every
379 * increase in integration time to next level, resolution is halved
382 if (data
->cur_integration_time
< int_idx
)
383 data
->cur_resolution
<<= int_idx
- data
->cur_integration_time
;
384 else if (data
->cur_integration_time
> int_idx
)
385 data
->cur_resolution
>>= data
->cur_integration_time
- int_idx
;
387 data
->cur_integration_time
= int_idx
;
392 static int veml6030_read_persistence(struct iio_dev
*indio_dev
,
395 int ret
, reg
, period
, x
, y
;
396 struct veml6030_data
*data
= iio_priv(indio_dev
);
398 ret
= veml6030_get_intgrn_tm(indio_dev
, &x
, &y
);
402 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
404 dev_err(&data
->client
->dev
,
405 "can't read als conf register %d\n", ret
);
408 /* integration time multiplied by 1/2/4/8 */
409 period
= y
* (1 << ((reg
>> 4) & 0x03));
411 *val
= period
/ 1000000;
412 *val2
= period
% 1000000;
414 return IIO_VAL_INT_PLUS_MICRO
;
417 static int veml6030_write_persistence(struct iio_dev
*indio_dev
,
420 int ret
, period
, x
, y
;
421 struct veml6030_data
*data
= iio_priv(indio_dev
);
423 ret
= veml6030_get_intgrn_tm(indio_dev
, &x
, &y
);
430 if ((val
== 1) && (val2
== 600000))
431 period
= 1600000 / y
;
432 else if ((val
== 3) && (val2
== 200000))
433 period
= 3200000 / y
;
434 else if ((val
== 6) && (val2
== 400000))
435 period
= 6400000 / y
;
440 if (period
<= 0 || period
> 8 || hweight8(period
) != 1)
443 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
444 VEML6030_ALS_PERS
, (ffs(period
) - 1) << 4);
446 dev_err(&data
->client
->dev
,
447 "can't set persistence value %d\n", ret
);
453 * Cache currently set gain & update resolution. For every
454 * increase in the gain to next level, resolution is halved
457 static void veml6030_update_gain_res(struct veml6030_data
*data
, int gain_idx
)
459 if (data
->cur_gain
< gain_idx
)
460 data
->cur_resolution
<<= gain_idx
- data
->cur_gain
;
461 else if (data
->cur_gain
> gain_idx
)
462 data
->cur_resolution
>>= data
->cur_gain
- gain_idx
;
464 data
->cur_gain
= gain_idx
;
467 static int veml6030_set_als_gain(struct iio_dev
*indio_dev
,
470 int ret
, new_gain
, gain_idx
;
471 struct veml6030_data
*data
= iio_priv(indio_dev
);
473 if (val
== 0 && val2
== 125000) {
474 new_gain
= 0x1000; /* 0x02 << 11 */
476 } else if (val
== 0 && val2
== 250000) {
479 } else if (val
== 1 && val2
== 0) {
482 } else if (val
== 2 && val2
== 0) {
489 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
490 VEML6030_ALS_GAIN
, new_gain
);
492 dev_err(&data
->client
->dev
,
493 "can't set als gain %d\n", ret
);
497 veml6030_update_gain_res(data
, gain_idx
);
502 static int veml6035_set_als_gain(struct iio_dev
*indio_dev
, int val
, int val2
)
504 int ret
, new_gain
, gain_idx
;
505 struct veml6030_data
*data
= iio_priv(indio_dev
);
507 if (val
== 0 && val2
== 125000) {
508 new_gain
= VEML6035_SENS
;
510 } else if (val
== 0 && val2
== 250000) {
511 new_gain
= VEML6035_SENS
| VEML6035_GAIN
;
513 } else if (val
== 0 && val2
== 500000) {
514 new_gain
= VEML6035_SENS
| VEML6035_GAIN
|
517 } else if (val
== 1 && val2
== 0) {
520 } else if (val
== 2 && val2
== 0) {
521 new_gain
= VEML6035_GAIN
;
523 } else if (val
== 4 && val2
== 0) {
524 new_gain
= VEML6035_GAIN
| VEML6035_DG
;
530 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
531 VEML6035_GAIN_M
, new_gain
);
533 dev_err(&data
->client
->dev
, "can't set als gain %d\n", ret
);
537 veml6030_update_gain_res(data
, gain_idx
);
542 static int veml6030_get_als_gain(struct iio_dev
*indio_dev
,
546 struct veml6030_data
*data
= iio_priv(indio_dev
);
548 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
550 dev_err(&data
->client
->dev
,
551 "can't read als conf register %d\n", ret
);
555 switch ((reg
>> 11) & 0x03) {
576 return IIO_VAL_INT_PLUS_MICRO
;
579 static int veml6035_get_als_gain(struct iio_dev
*indio_dev
, int *val
, int *val2
)
582 struct veml6030_data
*data
= iio_priv(indio_dev
);
584 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
586 dev_err(&data
->client
->dev
,
587 "can't read als conf register %d\n", ret
);
591 switch (FIELD_GET(VEML6035_GAIN_M
, reg
)) {
622 return IIO_VAL_INT_PLUS_MICRO
;
625 static int veml6030_read_thresh(struct iio_dev
*indio_dev
,
626 int *val
, int *val2
, int dir
)
629 struct veml6030_data
*data
= iio_priv(indio_dev
);
631 if (dir
== IIO_EV_DIR_RISING
)
632 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_WH
, ®
);
634 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_WL
, ®
);
636 dev_err(&data
->client
->dev
,
637 "can't read als threshold value %d\n", ret
);
645 static int veml6030_write_thresh(struct iio_dev
*indio_dev
,
646 int val
, int val2
, int dir
)
649 struct veml6030_data
*data
= iio_priv(indio_dev
);
651 if (val
> 0xFFFF || val
< 0 || val2
)
654 if (dir
== IIO_EV_DIR_RISING
) {
655 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WH
, val
);
657 dev_err(&data
->client
->dev
,
658 "can't set high threshold %d\n", ret
);
660 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WL
, val
);
662 dev_err(&data
->client
->dev
,
663 "can't set low threshold %d\n", ret
);
670 * Provide both raw as well as light reading in lux.
671 * light (in lux) = resolution * raw reading
673 static int veml6030_read_raw(struct iio_dev
*indio_dev
,
674 struct iio_chan_spec
const *chan
, int *val
,
675 int *val2
, long mask
)
678 struct veml6030_data
*data
= iio_priv(indio_dev
);
679 struct regmap
*regmap
= data
->regmap
;
680 struct device
*dev
= &data
->client
->dev
;
683 case IIO_CHAN_INFO_RAW
:
684 case IIO_CHAN_INFO_PROCESSED
:
685 switch (chan
->type
) {
687 ret
= regmap_read(regmap
, VEML6030_REG_ALS_DATA
, ®
);
689 dev_err(dev
, "can't read als data %d\n", ret
);
692 if (mask
== IIO_CHAN_INFO_PROCESSED
) {
693 *val
= (reg
* data
->cur_resolution
) / 10000;
694 *val2
= (reg
* data
->cur_resolution
) % 10000 * 100;
695 return IIO_VAL_INT_PLUS_MICRO
;
700 ret
= regmap_read(regmap
, VEML6030_REG_WH_DATA
, ®
);
702 dev_err(dev
, "can't read white data %d\n", ret
);
710 case IIO_CHAN_INFO_INT_TIME
:
711 return veml6030_get_intgrn_tm(indio_dev
, val
, val2
);
712 case IIO_CHAN_INFO_SCALE
:
713 return data
->chip
->get_als_gain(indio_dev
, val
, val2
);
719 static int veml6030_read_avail(struct iio_dev
*indio_dev
,
720 struct iio_chan_spec
const *chan
,
721 const int **vals
, int *type
, int *length
,
724 struct veml6030_data
*data
= iio_priv(indio_dev
);
727 case IIO_CHAN_INFO_INT_TIME
:
728 *vals
= (int *)&veml6030_it_times
;
729 *length
= 2 * ARRAY_SIZE(veml6030_it_times
);
730 *type
= IIO_VAL_INT_PLUS_MICRO
;
731 return IIO_AVAIL_LIST
;
732 case IIO_CHAN_INFO_SCALE
:
733 *vals
= (int *)*data
->chip
->scale_vals
;
734 *length
= 2 * data
->chip
->num_scale_vals
;
735 *type
= IIO_VAL_INT_PLUS_MICRO
;
736 return IIO_AVAIL_LIST
;
742 static int veml6030_write_raw(struct iio_dev
*indio_dev
,
743 struct iio_chan_spec
const *chan
,
744 int val
, int val2
, long mask
)
746 struct veml6030_data
*data
= iio_priv(indio_dev
);
749 case IIO_CHAN_INFO_INT_TIME
:
750 return veml6030_set_intgrn_tm(indio_dev
, val
, val2
);
751 case IIO_CHAN_INFO_SCALE
:
752 return data
->chip
->set_als_gain(indio_dev
, val
, val2
);
758 static int veml6030_read_event_val(struct iio_dev
*indio_dev
,
759 const struct iio_chan_spec
*chan
, enum iio_event_type type
,
760 enum iio_event_direction dir
, enum iio_event_info info
,
764 case IIO_EV_INFO_VALUE
:
766 case IIO_EV_DIR_RISING
:
767 case IIO_EV_DIR_FALLING
:
768 return veml6030_read_thresh(indio_dev
, val
, val2
, dir
);
773 case IIO_EV_INFO_PERIOD
:
774 return veml6030_read_persistence(indio_dev
, val
, val2
);
780 static int veml6030_write_event_val(struct iio_dev
*indio_dev
,
781 const struct iio_chan_spec
*chan
, enum iio_event_type type
,
782 enum iio_event_direction dir
, enum iio_event_info info
,
786 case IIO_EV_INFO_VALUE
:
787 return veml6030_write_thresh(indio_dev
, val
, val2
, dir
);
788 case IIO_EV_INFO_PERIOD
:
789 return veml6030_write_persistence(indio_dev
, val
, val2
);
795 static int veml6030_read_interrupt_config(struct iio_dev
*indio_dev
,
796 const struct iio_chan_spec
*chan
, enum iio_event_type type
,
797 enum iio_event_direction dir
)
800 struct veml6030_data
*data
= iio_priv(indio_dev
);
802 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_CONF
, ®
);
804 dev_err(&data
->client
->dev
,
805 "can't read als conf register %d\n", ret
);
809 if (reg
& VEML6030_ALS_INT_EN
)
816 * Sensor should not be measuring light when interrupt is configured.
817 * Therefore correct sequence to configure interrupt functionality is:
818 * shut down -> enable/disable interrupt -> power on
820 * state = 1 enables interrupt, state = 0 disables interrupt
822 static int veml6030_write_interrupt_config(struct iio_dev
*indio_dev
,
823 const struct iio_chan_spec
*chan
, enum iio_event_type type
,
824 enum iio_event_direction dir
, bool state
)
827 struct veml6030_data
*data
= iio_priv(indio_dev
);
829 ret
= veml6030_als_shut_down(data
);
831 dev_err(&data
->client
->dev
,
832 "can't disable als to configure interrupt %d\n", ret
);
836 /* enable interrupt + power on */
837 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_CONF
,
838 VEML6030_ALS_INT_EN
| VEML6030_ALS_SD
, state
<< 1);
840 dev_err(&data
->client
->dev
,
841 "can't enable interrupt & poweron als %d\n", ret
);
846 static const struct iio_info veml6030_info
= {
847 .read_raw
= veml6030_read_raw
,
848 .read_avail
= veml6030_read_avail
,
849 .write_raw
= veml6030_write_raw
,
850 .read_event_value
= veml6030_read_event_val
,
851 .write_event_value
= veml6030_write_event_val
,
852 .read_event_config
= veml6030_read_interrupt_config
,
853 .write_event_config
= veml6030_write_interrupt_config
,
854 .event_attrs
= &veml6030_event_attr_group
,
857 static const struct iio_info veml6030_info_no_irq
= {
858 .read_raw
= veml6030_read_raw
,
859 .read_avail
= veml6030_read_avail
,
860 .write_raw
= veml6030_write_raw
,
863 static irqreturn_t
veml6030_event_handler(int irq
, void *private)
865 int ret
, reg
, evtdir
;
866 struct iio_dev
*indio_dev
= private;
867 struct veml6030_data
*data
= iio_priv(indio_dev
);
869 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_INT
, ®
);
871 dev_err(&data
->client
->dev
,
872 "can't read als interrupt register %d\n", ret
);
876 /* Spurious interrupt handling */
877 if (!(reg
& (VEML6030_INT_TH_HIGH
| VEML6030_INT_TH_LOW
)))
880 if (reg
& VEML6030_INT_TH_HIGH
)
881 evtdir
= IIO_EV_DIR_RISING
;
883 evtdir
= IIO_EV_DIR_FALLING
;
885 iio_push_event(indio_dev
, IIO_UNMOD_EVENT_CODE(IIO_INTENSITY
,
886 0, IIO_EV_TYPE_THRESH
, evtdir
),
887 iio_get_time_ns(indio_dev
));
892 static int veml6030_set_info(struct iio_dev
*indio_dev
)
894 struct veml6030_data
*data
= iio_priv(indio_dev
);
895 struct i2c_client
*client
= data
->client
;
899 ret
= devm_request_threaded_irq(&client
->dev
, client
->irq
,
900 NULL
, veml6030_event_handler
,
901 IRQF_TRIGGER_LOW
| IRQF_ONESHOT
,
902 indio_dev
->name
, indio_dev
);
904 return dev_err_probe(&client
->dev
, ret
,
905 "irq %d request failed\n",
908 indio_dev
->info
= &veml6030_info
;
910 indio_dev
->info
= &veml6030_info_no_irq
;
916 static int veml7700_set_info(struct iio_dev
*indio_dev
)
918 indio_dev
->info
= &veml6030_info_no_irq
;
924 * Set ALS gain to 1/8, integration time to 100 ms, PSM to mode 2,
925 * persistence to 1 x integration time and the threshold
926 * interrupt disabled by default. First shutdown the sensor,
927 * update registers and then power on the sensor.
929 static int veml6030_hw_init(struct iio_dev
*indio_dev
, struct device
*dev
)
932 struct veml6030_data
*data
= iio_priv(indio_dev
);
934 ret
= veml6030_als_shut_down(data
);
936 return dev_err_probe(dev
, ret
, "can't shutdown als\n");
938 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_CONF
, 0x1001);
940 return dev_err_probe(dev
, ret
, "can't setup als configs\n");
942 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_PSM
,
943 VEML6030_PSM
| VEML6030_PSM_EN
, 0x03);
945 return dev_err_probe(dev
, ret
, "can't setup default PSM\n");
947 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WH
, 0xFFFF);
949 return dev_err_probe(dev
, ret
, "can't setup high threshold\n");
951 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WL
, 0x0000);
953 return dev_err_probe(dev
, ret
, "can't setup low threshold\n");
955 ret
= veml6030_als_pwr_on(data
);
957 return dev_err_probe(dev
, ret
, "can't poweron als\n");
959 ret
= devm_add_action_or_reset(dev
, veml6030_als_shut_down_action
, data
);
963 /* Clear stale interrupt status bits if any during start */
964 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_INT
, &val
);
966 return dev_err_probe(dev
, ret
,
967 "can't clear als interrupt status\n");
969 /* Cache currently active measurement parameters */
971 data
->cur_resolution
= 5376;
972 data
->cur_integration_time
= 3;
978 * Set ALS gain to 1/8, integration time to 100 ms, ALS and WHITE
979 * channel enabled, ALS channel interrupt, PSM enabled,
980 * PSM_WAIT = 0.8 s, persistence to 1 x integration time and the
981 * threshold interrupt disabled by default. First shutdown the sensor,
982 * update registers and then power on the sensor.
984 static int veml6035_hw_init(struct iio_dev
*indio_dev
, struct device
*dev
)
987 struct veml6030_data
*data
= iio_priv(indio_dev
);
989 ret
= veml6030_als_shut_down(data
);
991 return dev_err_probe(dev
, ret
, "can't shutdown als\n");
993 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_CONF
,
994 VEML6035_SENS
| VEML6035_CHAN_EN
| VEML6030_ALS_SD
);
996 return dev_err_probe(dev
, ret
, "can't setup als configs\n");
998 ret
= regmap_update_bits(data
->regmap
, VEML6030_REG_ALS_PSM
,
999 VEML6030_PSM
| VEML6030_PSM_EN
, 0x03);
1001 return dev_err_probe(dev
, ret
, "can't setup default PSM\n");
1003 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WH
, 0xFFFF);
1005 return dev_err_probe(dev
, ret
, "can't setup high threshold\n");
1007 ret
= regmap_write(data
->regmap
, VEML6030_REG_ALS_WL
, 0x0000);
1009 return dev_err_probe(dev
, ret
, "can't setup low threshold\n");
1011 ret
= veml6030_als_pwr_on(data
);
1013 return dev_err_probe(dev
, ret
, "can't poweron als\n");
1015 ret
= devm_add_action_or_reset(dev
, veml6030_als_shut_down_action
, data
);
1019 /* Clear stale interrupt status bits if any during start */
1020 ret
= regmap_read(data
->regmap
, VEML6030_REG_ALS_INT
, &val
);
1022 return dev_err_probe(dev
, ret
,
1023 "can't clear als interrupt status\n");
1025 /* Cache currently active measurement parameters */
1027 data
->cur_resolution
= 1024;
1028 data
->cur_integration_time
= 3;
1033 static int veml6030_probe(struct i2c_client
*client
)
1036 struct veml6030_data
*data
;
1037 struct iio_dev
*indio_dev
;
1038 struct regmap
*regmap
;
1040 if (!i2c_check_functionality(client
->adapter
, I2C_FUNC_I2C
))
1041 return dev_err_probe(&client
->dev
, -EOPNOTSUPP
,
1042 "i2c adapter doesn't support plain i2c\n");
1044 regmap
= devm_regmap_init_i2c(client
, &veml6030_regmap_config
);
1046 return dev_err_probe(&client
->dev
, PTR_ERR(regmap
),
1047 "can't setup regmap\n");
1049 indio_dev
= devm_iio_device_alloc(&client
->dev
, sizeof(*data
));
1053 data
= iio_priv(indio_dev
);
1054 i2c_set_clientdata(client
, indio_dev
);
1055 data
->client
= client
;
1056 data
->regmap
= regmap
;
1058 ret
= devm_regulator_get_enable(&client
->dev
, "vdd");
1060 return dev_err_probe(&client
->dev
, ret
,
1061 "failed to enable regulator\n");
1063 data
->chip
= i2c_get_match_data(client
);
1067 indio_dev
->name
= data
->chip
->name
;
1068 indio_dev
->channels
= data
->chip
->channels
;
1069 indio_dev
->num_channels
= data
->chip
->num_channels
;
1070 indio_dev
->modes
= INDIO_DIRECT_MODE
;
1072 ret
= data
->chip
->set_info(indio_dev
);
1076 ret
= data
->chip
->hw_init(indio_dev
, &client
->dev
);
1080 return devm_iio_device_register(&client
->dev
, indio_dev
);
1083 static int veml6030_runtime_suspend(struct device
*dev
)
1086 struct iio_dev
*indio_dev
= i2c_get_clientdata(to_i2c_client(dev
));
1087 struct veml6030_data
*data
= iio_priv(indio_dev
);
1089 ret
= veml6030_als_shut_down(data
);
1091 dev_err(&data
->client
->dev
, "can't suspend als %d\n", ret
);
1096 static int veml6030_runtime_resume(struct device
*dev
)
1099 struct iio_dev
*indio_dev
= i2c_get_clientdata(to_i2c_client(dev
));
1100 struct veml6030_data
*data
= iio_priv(indio_dev
);
1102 ret
= veml6030_als_pwr_on(data
);
1104 dev_err(&data
->client
->dev
, "can't resume als %d\n", ret
);
1109 static DEFINE_RUNTIME_DEV_PM_OPS(veml6030_pm_ops
, veml6030_runtime_suspend
,
1110 veml6030_runtime_resume
, NULL
);
1112 static const struct veml603x_chip veml6030_chip
= {
1114 .scale_vals
= &veml6030_scale_vals
,
1115 .num_scale_vals
= ARRAY_SIZE(veml6030_scale_vals
),
1116 .channels
= veml6030_channels
,
1117 .num_channels
= ARRAY_SIZE(veml6030_channels
),
1118 .hw_init
= veml6030_hw_init
,
1119 .set_info
= veml6030_set_info
,
1120 .set_als_gain
= veml6030_set_als_gain
,
1121 .get_als_gain
= veml6030_get_als_gain
,
1124 static const struct veml603x_chip veml6035_chip
= {
1126 .scale_vals
= &veml6035_scale_vals
,
1127 .num_scale_vals
= ARRAY_SIZE(veml6035_scale_vals
),
1128 .channels
= veml6030_channels
,
1129 .num_channels
= ARRAY_SIZE(veml6030_channels
),
1130 .hw_init
= veml6035_hw_init
,
1131 .set_info
= veml6030_set_info
,
1132 .set_als_gain
= veml6035_set_als_gain
,
1133 .get_als_gain
= veml6035_get_als_gain
,
1136 static const struct veml603x_chip veml7700_chip
= {
1138 .scale_vals
= &veml6030_scale_vals
,
1139 .num_scale_vals
= ARRAY_SIZE(veml6030_scale_vals
),
1140 .channels
= veml7700_channels
,
1141 .num_channels
= ARRAY_SIZE(veml7700_channels
),
1142 .hw_init
= veml6030_hw_init
,
1143 .set_info
= veml7700_set_info
,
1144 .set_als_gain
= veml6030_set_als_gain
,
1145 .get_als_gain
= veml6030_get_als_gain
,
1148 static const struct of_device_id veml6030_of_match
[] = {
1150 .compatible
= "vishay,veml6030",
1151 .data
= &veml6030_chip
,
1154 .compatible
= "vishay,veml6035",
1155 .data
= &veml6035_chip
,
1158 .compatible
= "vishay,veml7700",
1159 .data
= &veml7700_chip
,
1163 MODULE_DEVICE_TABLE(of
, veml6030_of_match
);
1165 static const struct i2c_device_id veml6030_id
[] = {
1166 { "veml6030", (kernel_ulong_t
)&veml6030_chip
},
1167 { "veml6035", (kernel_ulong_t
)&veml6035_chip
},
1168 { "veml7700", (kernel_ulong_t
)&veml7700_chip
},
1171 MODULE_DEVICE_TABLE(i2c
, veml6030_id
);
1173 static struct i2c_driver veml6030_driver
= {
1176 .of_match_table
= veml6030_of_match
,
1177 .pm
= pm_ptr(&veml6030_pm_ops
),
1179 .probe
= veml6030_probe
,
1180 .id_table
= veml6030_id
,
1182 module_i2c_driver(veml6030_driver
);
1184 MODULE_AUTHOR("Rishi Gupta <gupt21@gmail.com>");
1185 MODULE_DESCRIPTION("VEML6030 Ambient Light Sensor");
1186 MODULE_LICENSE("GPL v2");