mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
synced 2026-08-09 06:14:34 +02:00
Replace the #include of <linux/mod_devicetable.h> by the more specific <linux/device-id/*.h> where applicable. For most cases the include can be dropped completely, only a few drivers need one or two headers added. Acked-by: Danilo Krummrich <dakr@kernel.org> Acked-by: Takashi Sakamoto <o-takashi@sakamocchi.jp> Acked-by: Bjorn Helgaas <bhelgaas@google.com> Link: https://patch.msgid.link/1a3f2007c5c5dcf555c09a4035ce3ae8ef1b6c49.1782808461.git.u.kleine-koenig@baylibre.com Signed-off-by: Uwe Kleine-König (The Capable Hub) <u.kleine-koenig@baylibre.com>
423 lines
11 KiB
C
423 lines
11 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* Vishay VEML3328 RGBCIR light sensor driver
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*
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* Copyright (c) 2026 Joshua Crofts <joshua.crofts1@gmail.com>
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*
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* Datasheet: https://www.vishay.com/docs/84968/veml3328.pdf
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*/
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#include <linux/array_size.h>
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#include <linux/bitfield.h>
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#include <linux/bits.h>
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#include <linux/cleanup.h>
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#include <linux/delay.h>
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#include <linux/err.h>
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#include <linux/i2c.h>
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#include <linux/module.h>
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#include <linux/mutex.h>
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#include <linux/pm_runtime.h>
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#include <linux/regmap.h>
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#include <linux/regulator/consumer.h>
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#include <linux/time.h>
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#include <linux/types.h>
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#include <linux/iio/iio.h>
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#define VEML3328_REG_CONF 0x00
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#define VEML3328_REG_ID 0x0c
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#define VEML3328_REG_DATA_C 0x04
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#define VEML3328_REG_DATA_R 0x05
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#define VEML3328_REG_DATA_G 0x06
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#define VEML3328_REG_DATA_B 0x07
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#define VEML3328_REG_DATA_IR 0x08
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#define VEML3328_CONF_IT_MASK GENMASK(5, 4)
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#define VEML3328_CONF_GAIN_MASK GENMASK(11, 10)
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#define VEML3328_MAX_IT_TIME (400 * USEC_PER_MSEC)
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#define VEML3328_ID_VAL 0x28
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#define VEML3328_SHUTDOWN (BIT(0) | BIT(15))
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struct veml3328_data {
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struct regmap *regmap;
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/* Ensure read-modify-write sequences are not interrupted. */
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struct mutex lock;
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};
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static const struct regmap_config veml3328_regmap_config = {
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.name = "veml3328",
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.reg_bits = 8,
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.val_bits = 16,
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.max_register = VEML3328_REG_ID,
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.val_format_endian = REGMAP_ENDIAN_LITTLE,
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};
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#define VEML3328_CHAN_SPEC(_color, _addr) { \
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.type = IIO_INTENSITY, \
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.modified = 1, \
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.channel2 = IIO_MOD_LIGHT_##_color, \
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.info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
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.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE), \
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.info_mask_shared_by_type_available = BIT(IIO_CHAN_INFO_SCALE), \
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.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_INT_TIME), \
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.info_mask_shared_by_all_available = BIT(IIO_CHAN_INFO_INT_TIME), \
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.address = _addr, \
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}
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static const struct iio_chan_spec veml3328_channels[] = {
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{
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.type = IIO_LIGHT,
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.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
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.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE),
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.info_mask_shared_by_type_available = BIT(IIO_CHAN_INFO_SCALE),
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.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_INT_TIME),
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.info_mask_shared_by_all_available = BIT(IIO_CHAN_INFO_INT_TIME),
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.address = VEML3328_REG_DATA_G,
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},
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VEML3328_CHAN_SPEC(CLEAR, VEML3328_REG_DATA_C),
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VEML3328_CHAN_SPEC(RED, VEML3328_REG_DATA_R),
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VEML3328_CHAN_SPEC(GREEN, VEML3328_REG_DATA_G),
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VEML3328_CHAN_SPEC(BLUE, VEML3328_REG_DATA_B),
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VEML3328_CHAN_SPEC(IR, VEML3328_REG_DATA_IR),
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};
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/*
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* Precomputed scale values (micro units).
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* Formula for calculation: 0.384 * (50000 / IT_us) * (1 / Gain)
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* Gain indexes: 0 (x0.5), 1 (x1), 2 (x2), 3 (x4)
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* IT indexes: 0 (50ms), 1 (100ms), 2 (200ms), 3 (400ms)
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*/
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static const int veml3328_scale_vals[4][8] = {
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{ 0, 768000, 0, 384000, 0, 192000, 0, 96000 },
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{ 0, 384000, 0, 192000, 0, 96000, 0, 48000 },
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{ 0, 192000, 0, 96000, 0, 48000, 0, 24000 },
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{ 0, 96000, 0, 48000, 0, 24000, 0, 12000 },
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};
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/* integration times in microseconds */
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static const int veml3328_it_times[][2] = {
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{ 0, 50 * USEC_PER_MSEC },
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{ 0, 100 * USEC_PER_MSEC },
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{ 0, 200 * USEC_PER_MSEC },
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{ 0, 400 * USEC_PER_MSEC },
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};
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static int veml3328_power_down(struct veml3328_data *data)
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{
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return regmap_set_bits(data->regmap, VEML3328_REG_CONF,
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VEML3328_SHUTDOWN);
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}
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static int veml3328_power_up(struct veml3328_data *data)
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{
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int ret;
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ret = regmap_clear_bits(data->regmap, VEML3328_REG_CONF,
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VEML3328_SHUTDOWN);
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if (ret)
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return ret;
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/*
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* Sleep for maximum integration time to ensure sensor is powered on
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* correctly.
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*/
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fsleep(VEML3328_MAX_IT_TIME);
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return 0;
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}
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static void veml3328_power_down_action(void *data)
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{
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veml3328_power_down(data);
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}
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static int veml3328_read_raw(struct iio_dev *indio_dev,
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struct iio_chan_spec const *chan,
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int *val, int *val2, long mask)
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{
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struct veml3328_data *data = iio_priv(indio_dev);
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struct regmap *regmap = data->regmap;
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struct device *dev = regmap_get_device(regmap);
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unsigned int reg_val;
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int it_inx, gain_inx;
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int ret;
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PM_RUNTIME_ACQUIRE_IF_ENABLED_AUTOSUSPEND(dev, pm);
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ret = PM_RUNTIME_ACQUIRE_ERR(&pm);
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if (ret)
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return ret;
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switch (mask) {
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case IIO_CHAN_INFO_RAW:
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ret = regmap_read(regmap, chan->address, ®_val);
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if (ret)
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return ret;
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*val = reg_val;
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return IIO_VAL_INT;
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case IIO_CHAN_INFO_INT_TIME:
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ret = regmap_read(regmap, VEML3328_REG_CONF, ®_val);
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if (ret)
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return ret;
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it_inx = FIELD_GET(VEML3328_CONF_IT_MASK, reg_val);
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if (it_inx >= ARRAY_SIZE(veml3328_it_times))
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return -EINVAL;
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*val = veml3328_it_times[it_inx][0];
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*val2 = veml3328_it_times[it_inx][1];
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return IIO_VAL_INT_PLUS_MICRO;
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case IIO_CHAN_INFO_SCALE:
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ret = regmap_read(regmap, VEML3328_REG_CONF, ®_val);
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if (ret)
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return ret;
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it_inx = FIELD_GET(VEML3328_CONF_IT_MASK, reg_val);
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gain_inx = FIELD_GET(VEML3328_CONF_GAIN_MASK, reg_val);
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if (it_inx >= ARRAY_SIZE(veml3328_it_times) || gain_inx >= 4)
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return -EINVAL;
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/* Stride by 2 through the flattened array to match (val, val2) */
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*val = veml3328_scale_vals[it_inx][gain_inx * 2];
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*val2 = veml3328_scale_vals[it_inx][gain_inx * 2 + 1];
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return IIO_VAL_INT_PLUS_MICRO;
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default:
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return -EINVAL;
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}
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}
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static int veml3328_read_avail(struct iio_dev *indio_dev,
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struct iio_chan_spec const *chan,
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const int **vals, int *type, int *length,
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long mask)
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{
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struct veml3328_data *data = iio_priv(indio_dev);
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struct regmap *regmap = data->regmap;
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struct device *dev = regmap_get_device(data->regmap);
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unsigned int reg_val;
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int ret, it_inx;
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switch (mask) {
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case IIO_CHAN_INFO_INT_TIME:
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*length = ARRAY_SIZE(veml3328_it_times) * 2;
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*vals = (const int *)veml3328_it_times;
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*type = IIO_VAL_INT_PLUS_MICRO;
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return IIO_AVAIL_LIST;
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case IIO_CHAN_INFO_SCALE: {
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PM_RUNTIME_ACQUIRE_IF_ENABLED_AUTOSUSPEND(dev, pm);
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ret = PM_RUNTIME_ACQUIRE_ERR(&pm);
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if (ret)
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return ret;
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ret = regmap_read(regmap, VEML3328_REG_CONF, ®_val);
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if (ret)
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return ret;
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it_inx = FIELD_GET(VEML3328_CONF_IT_MASK, reg_val);
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if (it_inx >= ARRAY_SIZE(veml3328_it_times))
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return -EINVAL;
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*length = 8;
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*vals = (const int *)veml3328_scale_vals[it_inx];
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*type = IIO_VAL_INT_PLUS_MICRO;
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return IIO_AVAIL_LIST;
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}
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default:
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return -EINVAL;
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}
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}
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static int veml3328_write_raw(struct iio_dev *indio_dev,
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struct iio_chan_spec const *chan,
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int val, int val2, long mask)
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{
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struct veml3328_data *data = iio_priv(indio_dev);
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struct regmap *regmap = data->regmap;
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struct device *dev = regmap_get_device(regmap);
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unsigned int reg_val;
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int i, it_inx;
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int ret;
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PM_RUNTIME_ACQUIRE_IF_ENABLED_AUTOSUSPEND(dev, pm);
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ret = PM_RUNTIME_ACQUIRE_ERR(&pm);
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if (ret)
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return ret;
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guard(mutex)(&data->lock);
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switch (mask) {
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case IIO_CHAN_INFO_INT_TIME:
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if (val != 0)
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return -EINVAL;
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for (i = 0; i < ARRAY_SIZE(veml3328_it_times); i++) {
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if (veml3328_it_times[i][1] == val2)
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break;
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}
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if (i == ARRAY_SIZE(veml3328_it_times))
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return -EINVAL;
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return regmap_update_bits(regmap, VEML3328_REG_CONF,
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VEML3328_CONF_IT_MASK,
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FIELD_PREP(VEML3328_CONF_IT_MASK, i));
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case IIO_CHAN_INFO_SCALE:
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ret = regmap_read(regmap, VEML3328_REG_CONF, ®_val);
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if (ret)
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return ret;
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it_inx = FIELD_GET(VEML3328_CONF_IT_MASK, reg_val);
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if (it_inx >= ARRAY_SIZE(veml3328_it_times))
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return -EINVAL;
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for (i = 0; i < 4; i++) {
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if (val == veml3328_scale_vals[it_inx][i * 2] &&
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val2 == veml3328_scale_vals[it_inx][i * 2 + 1])
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break;
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}
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if (i == 4)
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return -EINVAL;
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return regmap_update_bits(regmap, VEML3328_REG_CONF,
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VEML3328_CONF_GAIN_MASK,
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FIELD_PREP(VEML3328_CONF_GAIN_MASK, i));
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default:
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return -EINVAL;
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}
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}
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static const struct iio_info veml3328_info = {
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.read_raw = veml3328_read_raw,
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.write_raw = veml3328_write_raw,
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.read_avail = veml3328_read_avail,
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};
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static int veml3328_probe(struct i2c_client *client)
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{
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struct device *dev = &client->dev;
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struct veml3328_data *data;
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struct iio_dev *indio_dev;
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unsigned int reg_val;
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int ret;
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indio_dev = devm_iio_device_alloc(dev, sizeof(*data));
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if (!indio_dev)
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return -ENOMEM;
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data = iio_priv(indio_dev);
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i2c_set_clientdata(client, indio_dev);
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data->regmap = devm_regmap_init_i2c(client, &veml3328_regmap_config);
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if (IS_ERR(data->regmap))
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return dev_err_probe(dev, PTR_ERR(data->regmap),
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"Failed to initialize regmap\n");
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ret = devm_mutex_init(dev, &data->lock);
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if (ret)
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return ret;
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ret = devm_regulator_get_enable(dev, "vdd");
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if (ret)
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return dev_err_probe(dev, ret, "Failed to enable regulator\n");
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ret = regmap_read(data->regmap, VEML3328_REG_ID, ®_val);
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if (ret)
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return dev_err_probe(dev, ret, "Failed to read ID register\n");
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if ((reg_val & 0xff) != VEML3328_ID_VAL)
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dev_warn(dev, "Unknown device ID: 0x%02x\n", reg_val & 0xff);
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ret = veml3328_power_up(data);
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if (ret)
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return dev_err_probe(dev, ret, "Failed to power on sensor\n");
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ret = devm_add_action_or_reset(dev, veml3328_power_down_action, data);
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if (ret)
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return dev_err_probe(dev, ret, "Failed to register teardown\n");
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indio_dev->name = "veml3328";
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indio_dev->modes = INDIO_DIRECT_MODE;
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indio_dev->info = &veml3328_info;
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indio_dev->channels = veml3328_channels;
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indio_dev->num_channels = ARRAY_SIZE(veml3328_channels);
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pm_runtime_set_active(dev);
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pm_runtime_set_autosuspend_delay(dev, 2000);
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pm_runtime_use_autosuspend(dev);
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ret = devm_pm_runtime_enable(dev);
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if (ret)
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return dev_err_probe(dev, ret, "Failed to enable runtime PM\n");
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return devm_iio_device_register(dev, indio_dev);
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}
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static int veml3328_runtime_suspend(struct device *dev)
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{
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struct veml3328_data *data = iio_priv(dev_get_drvdata(dev));
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int ret;
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ret = veml3328_power_down(data);
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if (ret)
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dev_err(dev, "Failed to suspend: %d\n", ret);
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return ret;
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}
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static int veml3328_runtime_resume(struct device *dev)
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{
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struct veml3328_data *data = iio_priv(dev_get_drvdata(dev));
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int ret;
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ret = veml3328_power_up(data);
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if (ret)
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dev_err(dev, "Failed to resume: %d\n", ret);
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return ret;
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}
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static DEFINE_RUNTIME_DEV_PM_OPS(veml3328_pm_ops,
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veml3328_runtime_suspend,
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veml3328_runtime_resume,
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NULL);
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static const struct of_device_id veml3328_of_match[] = {
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{ .compatible = "vishay,veml3328" },
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{ }
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};
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MODULE_DEVICE_TABLE(of, veml3328_of_match);
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static const struct i2c_device_id veml3328_id[] = {
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{ .name = "veml3328" },
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{ }
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};
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MODULE_DEVICE_TABLE(i2c, veml3328_id);
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static struct i2c_driver veml3328_driver = {
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.driver = {
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.name = "veml3328",
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.of_match_table = veml3328_of_match,
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.pm = pm_ptr(&veml3328_pm_ops),
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},
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.probe = veml3328_probe,
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.id_table = veml3328_id,
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};
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module_i2c_driver(veml3328_driver);
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MODULE_AUTHOR("Joshua Crofts <joshua.crofts1@gmail.com>");
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MODULE_DESCRIPTION("VEML3328 RGBCIR Light Sensor");
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MODULE_LICENSE("GPL");
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