18c2ecf20Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only
28c2ecf20Sopenharmony_ci/*
38c2ecf20Sopenharmony_ci * Copyright (c) 2014 Intel Corporation
48c2ecf20Sopenharmony_ci *
58c2ecf20Sopenharmony_ci * Driver for Semtech's SX9500 capacitive proximity/button solution.
68c2ecf20Sopenharmony_ci * Datasheet available at
78c2ecf20Sopenharmony_ci * <http://www.semtech.com/images/datasheet/sx9500.pdf>.
88c2ecf20Sopenharmony_ci */
98c2ecf20Sopenharmony_ci
108c2ecf20Sopenharmony_ci#include <linux/kernel.h>
118c2ecf20Sopenharmony_ci#include <linux/slab.h>
128c2ecf20Sopenharmony_ci#include <linux/module.h>
138c2ecf20Sopenharmony_ci#include <linux/i2c.h>
148c2ecf20Sopenharmony_ci#include <linux/irq.h>
158c2ecf20Sopenharmony_ci#include <linux/acpi.h>
168c2ecf20Sopenharmony_ci#include <linux/gpio/consumer.h>
178c2ecf20Sopenharmony_ci#include <linux/regmap.h>
188c2ecf20Sopenharmony_ci#include <linux/pm.h>
198c2ecf20Sopenharmony_ci#include <linux/delay.h>
208c2ecf20Sopenharmony_ci
218c2ecf20Sopenharmony_ci#include <linux/iio/iio.h>
228c2ecf20Sopenharmony_ci#include <linux/iio/buffer.h>
238c2ecf20Sopenharmony_ci#include <linux/iio/sysfs.h>
248c2ecf20Sopenharmony_ci#include <linux/iio/events.h>
258c2ecf20Sopenharmony_ci#include <linux/iio/trigger.h>
268c2ecf20Sopenharmony_ci#include <linux/iio/triggered_buffer.h>
278c2ecf20Sopenharmony_ci#include <linux/iio/trigger_consumer.h>
288c2ecf20Sopenharmony_ci
298c2ecf20Sopenharmony_ci#define SX9500_DRIVER_NAME		"sx9500"
308c2ecf20Sopenharmony_ci#define SX9500_IRQ_NAME			"sx9500_event"
318c2ecf20Sopenharmony_ci
328c2ecf20Sopenharmony_ci/* Register definitions. */
338c2ecf20Sopenharmony_ci#define SX9500_REG_IRQ_SRC		0x00
348c2ecf20Sopenharmony_ci#define SX9500_REG_STAT			0x01
358c2ecf20Sopenharmony_ci#define SX9500_REG_IRQ_MSK		0x03
368c2ecf20Sopenharmony_ci
378c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL0		0x06
388c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL1		0x07
398c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL2		0x08
408c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL3		0x09
418c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL4		0x0a
428c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL5		0x0b
438c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL6		0x0c
448c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL7		0x0d
458c2ecf20Sopenharmony_ci#define SX9500_REG_PROX_CTRL8		0x0e
468c2ecf20Sopenharmony_ci
478c2ecf20Sopenharmony_ci#define SX9500_REG_SENSOR_SEL		0x20
488c2ecf20Sopenharmony_ci#define SX9500_REG_USE_MSB		0x21
498c2ecf20Sopenharmony_ci#define SX9500_REG_USE_LSB		0x22
508c2ecf20Sopenharmony_ci#define SX9500_REG_AVG_MSB		0x23
518c2ecf20Sopenharmony_ci#define SX9500_REG_AVG_LSB		0x24
528c2ecf20Sopenharmony_ci#define SX9500_REG_DIFF_MSB		0x25
538c2ecf20Sopenharmony_ci#define SX9500_REG_DIFF_LSB		0x26
548c2ecf20Sopenharmony_ci#define SX9500_REG_OFFSET_MSB		0x27
558c2ecf20Sopenharmony_ci#define SX9500_REG_OFFSET_LSB		0x28
568c2ecf20Sopenharmony_ci
578c2ecf20Sopenharmony_ci#define SX9500_REG_RESET		0x7f
588c2ecf20Sopenharmony_ci
598c2ecf20Sopenharmony_ci/* Write this to REG_RESET to do a soft reset. */
608c2ecf20Sopenharmony_ci#define SX9500_SOFT_RESET		0xde
618c2ecf20Sopenharmony_ci
628c2ecf20Sopenharmony_ci#define SX9500_SCAN_PERIOD_MASK		GENMASK(6, 4)
638c2ecf20Sopenharmony_ci#define SX9500_SCAN_PERIOD_SHIFT	4
648c2ecf20Sopenharmony_ci
658c2ecf20Sopenharmony_ci/*
668c2ecf20Sopenharmony_ci * These serve for identifying IRQ source in the IRQ_SRC register, and
678c2ecf20Sopenharmony_ci * also for masking the IRQs in the IRQ_MSK register.
688c2ecf20Sopenharmony_ci */
698c2ecf20Sopenharmony_ci#define SX9500_CLOSE_IRQ		BIT(6)
708c2ecf20Sopenharmony_ci#define SX9500_FAR_IRQ			BIT(5)
718c2ecf20Sopenharmony_ci#define SX9500_CONVDONE_IRQ		BIT(3)
728c2ecf20Sopenharmony_ci
738c2ecf20Sopenharmony_ci#define SX9500_PROXSTAT_SHIFT		4
748c2ecf20Sopenharmony_ci#define SX9500_COMPSTAT_MASK		GENMASK(3, 0)
758c2ecf20Sopenharmony_ci
768c2ecf20Sopenharmony_ci#define SX9500_NUM_CHANNELS		4
778c2ecf20Sopenharmony_ci#define SX9500_CHAN_MASK		GENMASK(SX9500_NUM_CHANNELS - 1, 0)
788c2ecf20Sopenharmony_ci
798c2ecf20Sopenharmony_cistruct sx9500_data {
808c2ecf20Sopenharmony_ci	struct mutex mutex;
818c2ecf20Sopenharmony_ci	struct i2c_client *client;
828c2ecf20Sopenharmony_ci	struct iio_trigger *trig;
838c2ecf20Sopenharmony_ci	struct regmap *regmap;
848c2ecf20Sopenharmony_ci	struct gpio_desc *gpiod_rst;
858c2ecf20Sopenharmony_ci	/*
868c2ecf20Sopenharmony_ci	 * Last reading of the proximity status for each channel.  We
878c2ecf20Sopenharmony_ci	 * only send an event to user space when this changes.
888c2ecf20Sopenharmony_ci	 */
898c2ecf20Sopenharmony_ci	bool prox_stat[SX9500_NUM_CHANNELS];
908c2ecf20Sopenharmony_ci	bool event_enabled[SX9500_NUM_CHANNELS];
918c2ecf20Sopenharmony_ci	bool trigger_enabled;
928c2ecf20Sopenharmony_ci	u16 *buffer;
938c2ecf20Sopenharmony_ci	/* Remember enabled channels and sample rate during suspend. */
948c2ecf20Sopenharmony_ci	unsigned int suspend_ctrl0;
958c2ecf20Sopenharmony_ci	struct completion completion;
968c2ecf20Sopenharmony_ci	int data_rdy_users, close_far_users;
978c2ecf20Sopenharmony_ci	int channel_users[SX9500_NUM_CHANNELS];
988c2ecf20Sopenharmony_ci};
998c2ecf20Sopenharmony_ci
1008c2ecf20Sopenharmony_cistatic const struct iio_event_spec sx9500_events[] = {
1018c2ecf20Sopenharmony_ci	{
1028c2ecf20Sopenharmony_ci		.type = IIO_EV_TYPE_THRESH,
1038c2ecf20Sopenharmony_ci		.dir = IIO_EV_DIR_EITHER,
1048c2ecf20Sopenharmony_ci		.mask_separate = BIT(IIO_EV_INFO_ENABLE),
1058c2ecf20Sopenharmony_ci	},
1068c2ecf20Sopenharmony_ci};
1078c2ecf20Sopenharmony_ci
1088c2ecf20Sopenharmony_ci#define SX9500_CHANNEL(idx)					\
1098c2ecf20Sopenharmony_ci	{							\
1108c2ecf20Sopenharmony_ci		.type = IIO_PROXIMITY,				\
1118c2ecf20Sopenharmony_ci		.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),	\
1128c2ecf20Sopenharmony_ci		.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_SAMP_FREQ), \
1138c2ecf20Sopenharmony_ci		.indexed = 1,					\
1148c2ecf20Sopenharmony_ci		.channel = idx,					\
1158c2ecf20Sopenharmony_ci		.event_spec = sx9500_events,			\
1168c2ecf20Sopenharmony_ci		.num_event_specs = ARRAY_SIZE(sx9500_events),	\
1178c2ecf20Sopenharmony_ci		.scan_index = idx,				\
1188c2ecf20Sopenharmony_ci		.scan_type = {					\
1198c2ecf20Sopenharmony_ci			.sign = 'u',				\
1208c2ecf20Sopenharmony_ci			.realbits = 16,				\
1218c2ecf20Sopenharmony_ci			.storagebits = 16,			\
1228c2ecf20Sopenharmony_ci			.shift = 0,				\
1238c2ecf20Sopenharmony_ci		},						\
1248c2ecf20Sopenharmony_ci	}
1258c2ecf20Sopenharmony_ci
1268c2ecf20Sopenharmony_cistatic const struct iio_chan_spec sx9500_channels[] = {
1278c2ecf20Sopenharmony_ci	SX9500_CHANNEL(0),
1288c2ecf20Sopenharmony_ci	SX9500_CHANNEL(1),
1298c2ecf20Sopenharmony_ci	SX9500_CHANNEL(2),
1308c2ecf20Sopenharmony_ci	SX9500_CHANNEL(3),
1318c2ecf20Sopenharmony_ci	IIO_CHAN_SOFT_TIMESTAMP(4),
1328c2ecf20Sopenharmony_ci};
1338c2ecf20Sopenharmony_ci
1348c2ecf20Sopenharmony_cistatic const struct {
1358c2ecf20Sopenharmony_ci	int val;
1368c2ecf20Sopenharmony_ci	int val2;
1378c2ecf20Sopenharmony_ci} sx9500_samp_freq_table[] = {
1388c2ecf20Sopenharmony_ci	{33, 333333},
1398c2ecf20Sopenharmony_ci	{16, 666666},
1408c2ecf20Sopenharmony_ci	{11, 111111},
1418c2ecf20Sopenharmony_ci	{8, 333333},
1428c2ecf20Sopenharmony_ci	{6, 666666},
1438c2ecf20Sopenharmony_ci	{5, 0},
1448c2ecf20Sopenharmony_ci	{3, 333333},
1458c2ecf20Sopenharmony_ci	{2, 500000},
1468c2ecf20Sopenharmony_ci};
1478c2ecf20Sopenharmony_ci
1488c2ecf20Sopenharmony_cistatic const unsigned int sx9500_scan_period_table[] = {
1498c2ecf20Sopenharmony_ci	30, 60, 90, 120, 150, 200, 300, 400,
1508c2ecf20Sopenharmony_ci};
1518c2ecf20Sopenharmony_ci
1528c2ecf20Sopenharmony_cistatic const struct regmap_range sx9500_writable_reg_ranges[] = {
1538c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_IRQ_MSK, SX9500_REG_IRQ_MSK),
1548c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_PROX_CTRL0, SX9500_REG_PROX_CTRL8),
1558c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_SENSOR_SEL, SX9500_REG_SENSOR_SEL),
1568c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_OFFSET_MSB, SX9500_REG_OFFSET_LSB),
1578c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_RESET, SX9500_REG_RESET),
1588c2ecf20Sopenharmony_ci};
1598c2ecf20Sopenharmony_ci
1608c2ecf20Sopenharmony_cistatic const struct regmap_access_table sx9500_writeable_regs = {
1618c2ecf20Sopenharmony_ci	.yes_ranges = sx9500_writable_reg_ranges,
1628c2ecf20Sopenharmony_ci	.n_yes_ranges = ARRAY_SIZE(sx9500_writable_reg_ranges),
1638c2ecf20Sopenharmony_ci};
1648c2ecf20Sopenharmony_ci
1658c2ecf20Sopenharmony_ci/*
1668c2ecf20Sopenharmony_ci * All allocated registers are readable, so we just list unallocated
1678c2ecf20Sopenharmony_ci * ones.
1688c2ecf20Sopenharmony_ci */
1698c2ecf20Sopenharmony_cistatic const struct regmap_range sx9500_non_readable_reg_ranges[] = {
1708c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_STAT + 1, SX9500_REG_STAT + 1),
1718c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_IRQ_MSK + 1, SX9500_REG_PROX_CTRL0 - 1),
1728c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_PROX_CTRL8 + 1, SX9500_REG_SENSOR_SEL - 1),
1738c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_OFFSET_LSB + 1, SX9500_REG_RESET - 1),
1748c2ecf20Sopenharmony_ci};
1758c2ecf20Sopenharmony_ci
1768c2ecf20Sopenharmony_cistatic const struct regmap_access_table sx9500_readable_regs = {
1778c2ecf20Sopenharmony_ci	.no_ranges = sx9500_non_readable_reg_ranges,
1788c2ecf20Sopenharmony_ci	.n_no_ranges = ARRAY_SIZE(sx9500_non_readable_reg_ranges),
1798c2ecf20Sopenharmony_ci};
1808c2ecf20Sopenharmony_ci
1818c2ecf20Sopenharmony_cistatic const struct regmap_range sx9500_volatile_reg_ranges[] = {
1828c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_IRQ_SRC, SX9500_REG_STAT),
1838c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_USE_MSB, SX9500_REG_OFFSET_LSB),
1848c2ecf20Sopenharmony_ci	regmap_reg_range(SX9500_REG_RESET, SX9500_REG_RESET),
1858c2ecf20Sopenharmony_ci};
1868c2ecf20Sopenharmony_ci
1878c2ecf20Sopenharmony_cistatic const struct regmap_access_table sx9500_volatile_regs = {
1888c2ecf20Sopenharmony_ci	.yes_ranges = sx9500_volatile_reg_ranges,
1898c2ecf20Sopenharmony_ci	.n_yes_ranges = ARRAY_SIZE(sx9500_volatile_reg_ranges),
1908c2ecf20Sopenharmony_ci};
1918c2ecf20Sopenharmony_ci
1928c2ecf20Sopenharmony_cistatic const struct regmap_config sx9500_regmap_config = {
1938c2ecf20Sopenharmony_ci	.reg_bits = 8,
1948c2ecf20Sopenharmony_ci	.val_bits = 8,
1958c2ecf20Sopenharmony_ci
1968c2ecf20Sopenharmony_ci	.max_register = SX9500_REG_RESET,
1978c2ecf20Sopenharmony_ci	.cache_type = REGCACHE_RBTREE,
1988c2ecf20Sopenharmony_ci
1998c2ecf20Sopenharmony_ci	.wr_table = &sx9500_writeable_regs,
2008c2ecf20Sopenharmony_ci	.rd_table = &sx9500_readable_regs,
2018c2ecf20Sopenharmony_ci	.volatile_table = &sx9500_volatile_regs,
2028c2ecf20Sopenharmony_ci};
2038c2ecf20Sopenharmony_ci
2048c2ecf20Sopenharmony_cistatic int sx9500_inc_users(struct sx9500_data *data, int *counter,
2058c2ecf20Sopenharmony_ci			    unsigned int reg, unsigned int bitmask)
2068c2ecf20Sopenharmony_ci{
2078c2ecf20Sopenharmony_ci	(*counter)++;
2088c2ecf20Sopenharmony_ci	if (*counter != 1)
2098c2ecf20Sopenharmony_ci		/* Bit is already active, nothing to do. */
2108c2ecf20Sopenharmony_ci		return 0;
2118c2ecf20Sopenharmony_ci
2128c2ecf20Sopenharmony_ci	return regmap_update_bits(data->regmap, reg, bitmask, bitmask);
2138c2ecf20Sopenharmony_ci}
2148c2ecf20Sopenharmony_ci
2158c2ecf20Sopenharmony_cistatic int sx9500_dec_users(struct sx9500_data *data, int *counter,
2168c2ecf20Sopenharmony_ci			    unsigned int reg, unsigned int bitmask)
2178c2ecf20Sopenharmony_ci{
2188c2ecf20Sopenharmony_ci	(*counter)--;
2198c2ecf20Sopenharmony_ci	if (*counter != 0)
2208c2ecf20Sopenharmony_ci		/* There are more users, do not deactivate. */
2218c2ecf20Sopenharmony_ci		return 0;
2228c2ecf20Sopenharmony_ci
2238c2ecf20Sopenharmony_ci	return regmap_update_bits(data->regmap, reg, bitmask, 0);
2248c2ecf20Sopenharmony_ci}
2258c2ecf20Sopenharmony_ci
2268c2ecf20Sopenharmony_cistatic int sx9500_inc_chan_users(struct sx9500_data *data, int chan)
2278c2ecf20Sopenharmony_ci{
2288c2ecf20Sopenharmony_ci	return sx9500_inc_users(data, &data->channel_users[chan],
2298c2ecf20Sopenharmony_ci				SX9500_REG_PROX_CTRL0, BIT(chan));
2308c2ecf20Sopenharmony_ci}
2318c2ecf20Sopenharmony_ci
2328c2ecf20Sopenharmony_cistatic int sx9500_dec_chan_users(struct sx9500_data *data, int chan)
2338c2ecf20Sopenharmony_ci{
2348c2ecf20Sopenharmony_ci	return sx9500_dec_users(data, &data->channel_users[chan],
2358c2ecf20Sopenharmony_ci				SX9500_REG_PROX_CTRL0, BIT(chan));
2368c2ecf20Sopenharmony_ci}
2378c2ecf20Sopenharmony_ci
2388c2ecf20Sopenharmony_cistatic int sx9500_inc_data_rdy_users(struct sx9500_data *data)
2398c2ecf20Sopenharmony_ci{
2408c2ecf20Sopenharmony_ci	return sx9500_inc_users(data, &data->data_rdy_users,
2418c2ecf20Sopenharmony_ci				SX9500_REG_IRQ_MSK, SX9500_CONVDONE_IRQ);
2428c2ecf20Sopenharmony_ci}
2438c2ecf20Sopenharmony_ci
2448c2ecf20Sopenharmony_cistatic int sx9500_dec_data_rdy_users(struct sx9500_data *data)
2458c2ecf20Sopenharmony_ci{
2468c2ecf20Sopenharmony_ci	return sx9500_dec_users(data, &data->data_rdy_users,
2478c2ecf20Sopenharmony_ci				SX9500_REG_IRQ_MSK, SX9500_CONVDONE_IRQ);
2488c2ecf20Sopenharmony_ci}
2498c2ecf20Sopenharmony_ci
2508c2ecf20Sopenharmony_cistatic int sx9500_inc_close_far_users(struct sx9500_data *data)
2518c2ecf20Sopenharmony_ci{
2528c2ecf20Sopenharmony_ci	return sx9500_inc_users(data, &data->close_far_users,
2538c2ecf20Sopenharmony_ci				SX9500_REG_IRQ_MSK,
2548c2ecf20Sopenharmony_ci				SX9500_CLOSE_IRQ | SX9500_FAR_IRQ);
2558c2ecf20Sopenharmony_ci}
2568c2ecf20Sopenharmony_ci
2578c2ecf20Sopenharmony_cistatic int sx9500_dec_close_far_users(struct sx9500_data *data)
2588c2ecf20Sopenharmony_ci{
2598c2ecf20Sopenharmony_ci	return sx9500_dec_users(data, &data->close_far_users,
2608c2ecf20Sopenharmony_ci				SX9500_REG_IRQ_MSK,
2618c2ecf20Sopenharmony_ci				SX9500_CLOSE_IRQ | SX9500_FAR_IRQ);
2628c2ecf20Sopenharmony_ci}
2638c2ecf20Sopenharmony_ci
2648c2ecf20Sopenharmony_cistatic int sx9500_read_prox_data(struct sx9500_data *data,
2658c2ecf20Sopenharmony_ci				 const struct iio_chan_spec *chan,
2668c2ecf20Sopenharmony_ci				 int *val)
2678c2ecf20Sopenharmony_ci{
2688c2ecf20Sopenharmony_ci	int ret;
2698c2ecf20Sopenharmony_ci	__be16 regval;
2708c2ecf20Sopenharmony_ci
2718c2ecf20Sopenharmony_ci	ret = regmap_write(data->regmap, SX9500_REG_SENSOR_SEL, chan->channel);
2728c2ecf20Sopenharmony_ci	if (ret < 0)
2738c2ecf20Sopenharmony_ci		return ret;
2748c2ecf20Sopenharmony_ci
2758c2ecf20Sopenharmony_ci	ret = regmap_bulk_read(data->regmap, SX9500_REG_USE_MSB, &regval, 2);
2768c2ecf20Sopenharmony_ci	if (ret < 0)
2778c2ecf20Sopenharmony_ci		return ret;
2788c2ecf20Sopenharmony_ci
2798c2ecf20Sopenharmony_ci	*val = be16_to_cpu(regval);
2808c2ecf20Sopenharmony_ci
2818c2ecf20Sopenharmony_ci	return IIO_VAL_INT;
2828c2ecf20Sopenharmony_ci}
2838c2ecf20Sopenharmony_ci
2848c2ecf20Sopenharmony_ci/*
2858c2ecf20Sopenharmony_ci * If we have no interrupt support, we have to wait for a scan period
2868c2ecf20Sopenharmony_ci * after enabling a channel to get a result.
2878c2ecf20Sopenharmony_ci */
2888c2ecf20Sopenharmony_cistatic int sx9500_wait_for_sample(struct sx9500_data *data)
2898c2ecf20Sopenharmony_ci{
2908c2ecf20Sopenharmony_ci	int ret;
2918c2ecf20Sopenharmony_ci	unsigned int val;
2928c2ecf20Sopenharmony_ci
2938c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_PROX_CTRL0, &val);
2948c2ecf20Sopenharmony_ci	if (ret < 0)
2958c2ecf20Sopenharmony_ci		return ret;
2968c2ecf20Sopenharmony_ci
2978c2ecf20Sopenharmony_ci	val = (val & SX9500_SCAN_PERIOD_MASK) >> SX9500_SCAN_PERIOD_SHIFT;
2988c2ecf20Sopenharmony_ci
2998c2ecf20Sopenharmony_ci	msleep(sx9500_scan_period_table[val]);
3008c2ecf20Sopenharmony_ci
3018c2ecf20Sopenharmony_ci	return 0;
3028c2ecf20Sopenharmony_ci}
3038c2ecf20Sopenharmony_ci
3048c2ecf20Sopenharmony_cistatic int sx9500_read_proximity(struct sx9500_data *data,
3058c2ecf20Sopenharmony_ci				 const struct iio_chan_spec *chan,
3068c2ecf20Sopenharmony_ci				 int *val)
3078c2ecf20Sopenharmony_ci{
3088c2ecf20Sopenharmony_ci	int ret;
3098c2ecf20Sopenharmony_ci
3108c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
3118c2ecf20Sopenharmony_ci
3128c2ecf20Sopenharmony_ci	ret = sx9500_inc_chan_users(data, chan->channel);
3138c2ecf20Sopenharmony_ci	if (ret < 0)
3148c2ecf20Sopenharmony_ci		goto out;
3158c2ecf20Sopenharmony_ci
3168c2ecf20Sopenharmony_ci	ret = sx9500_inc_data_rdy_users(data);
3178c2ecf20Sopenharmony_ci	if (ret < 0)
3188c2ecf20Sopenharmony_ci		goto out_dec_chan;
3198c2ecf20Sopenharmony_ci
3208c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
3218c2ecf20Sopenharmony_ci
3228c2ecf20Sopenharmony_ci	if (data->client->irq > 0)
3238c2ecf20Sopenharmony_ci		ret = wait_for_completion_interruptible(&data->completion);
3248c2ecf20Sopenharmony_ci	else
3258c2ecf20Sopenharmony_ci		ret = sx9500_wait_for_sample(data);
3268c2ecf20Sopenharmony_ci
3278c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
3288c2ecf20Sopenharmony_ci
3298c2ecf20Sopenharmony_ci	if (ret < 0)
3308c2ecf20Sopenharmony_ci		goto out_dec_data_rdy;
3318c2ecf20Sopenharmony_ci
3328c2ecf20Sopenharmony_ci	ret = sx9500_read_prox_data(data, chan, val);
3338c2ecf20Sopenharmony_ci	if (ret < 0)
3348c2ecf20Sopenharmony_ci		goto out_dec_data_rdy;
3358c2ecf20Sopenharmony_ci
3368c2ecf20Sopenharmony_ci	ret = sx9500_dec_data_rdy_users(data);
3378c2ecf20Sopenharmony_ci	if (ret < 0)
3388c2ecf20Sopenharmony_ci		goto out_dec_chan;
3398c2ecf20Sopenharmony_ci
3408c2ecf20Sopenharmony_ci	ret = sx9500_dec_chan_users(data, chan->channel);
3418c2ecf20Sopenharmony_ci	if (ret < 0)
3428c2ecf20Sopenharmony_ci		goto out;
3438c2ecf20Sopenharmony_ci
3448c2ecf20Sopenharmony_ci	ret = IIO_VAL_INT;
3458c2ecf20Sopenharmony_ci
3468c2ecf20Sopenharmony_ci	goto out;
3478c2ecf20Sopenharmony_ci
3488c2ecf20Sopenharmony_ciout_dec_data_rdy:
3498c2ecf20Sopenharmony_ci	sx9500_dec_data_rdy_users(data);
3508c2ecf20Sopenharmony_ciout_dec_chan:
3518c2ecf20Sopenharmony_ci	sx9500_dec_chan_users(data, chan->channel);
3528c2ecf20Sopenharmony_ciout:
3538c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
3548c2ecf20Sopenharmony_ci	reinit_completion(&data->completion);
3558c2ecf20Sopenharmony_ci
3568c2ecf20Sopenharmony_ci	return ret;
3578c2ecf20Sopenharmony_ci}
3588c2ecf20Sopenharmony_ci
3598c2ecf20Sopenharmony_cistatic int sx9500_read_samp_freq(struct sx9500_data *data,
3608c2ecf20Sopenharmony_ci				 int *val, int *val2)
3618c2ecf20Sopenharmony_ci{
3628c2ecf20Sopenharmony_ci	int ret;
3638c2ecf20Sopenharmony_ci	unsigned int regval;
3648c2ecf20Sopenharmony_ci
3658c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
3668c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_PROX_CTRL0, &regval);
3678c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
3688c2ecf20Sopenharmony_ci
3698c2ecf20Sopenharmony_ci	if (ret < 0)
3708c2ecf20Sopenharmony_ci		return ret;
3718c2ecf20Sopenharmony_ci
3728c2ecf20Sopenharmony_ci	regval = (regval & SX9500_SCAN_PERIOD_MASK) >> SX9500_SCAN_PERIOD_SHIFT;
3738c2ecf20Sopenharmony_ci	*val = sx9500_samp_freq_table[regval].val;
3748c2ecf20Sopenharmony_ci	*val2 = sx9500_samp_freq_table[regval].val2;
3758c2ecf20Sopenharmony_ci
3768c2ecf20Sopenharmony_ci	return IIO_VAL_INT_PLUS_MICRO;
3778c2ecf20Sopenharmony_ci}
3788c2ecf20Sopenharmony_ci
3798c2ecf20Sopenharmony_cistatic int sx9500_read_raw(struct iio_dev *indio_dev,
3808c2ecf20Sopenharmony_ci			   const struct iio_chan_spec *chan,
3818c2ecf20Sopenharmony_ci			   int *val, int *val2, long mask)
3828c2ecf20Sopenharmony_ci{
3838c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
3848c2ecf20Sopenharmony_ci	int ret;
3858c2ecf20Sopenharmony_ci
3868c2ecf20Sopenharmony_ci	switch (chan->type) {
3878c2ecf20Sopenharmony_ci	case IIO_PROXIMITY:
3888c2ecf20Sopenharmony_ci		switch (mask) {
3898c2ecf20Sopenharmony_ci		case IIO_CHAN_INFO_RAW:
3908c2ecf20Sopenharmony_ci			ret = iio_device_claim_direct_mode(indio_dev);
3918c2ecf20Sopenharmony_ci			if (ret)
3928c2ecf20Sopenharmony_ci				return ret;
3938c2ecf20Sopenharmony_ci			ret = sx9500_read_proximity(data, chan, val);
3948c2ecf20Sopenharmony_ci			iio_device_release_direct_mode(indio_dev);
3958c2ecf20Sopenharmony_ci			return ret;
3968c2ecf20Sopenharmony_ci		case IIO_CHAN_INFO_SAMP_FREQ:
3978c2ecf20Sopenharmony_ci			return sx9500_read_samp_freq(data, val, val2);
3988c2ecf20Sopenharmony_ci		default:
3998c2ecf20Sopenharmony_ci			return -EINVAL;
4008c2ecf20Sopenharmony_ci		}
4018c2ecf20Sopenharmony_ci	default:
4028c2ecf20Sopenharmony_ci		return -EINVAL;
4038c2ecf20Sopenharmony_ci	}
4048c2ecf20Sopenharmony_ci}
4058c2ecf20Sopenharmony_ci
4068c2ecf20Sopenharmony_cistatic int sx9500_set_samp_freq(struct sx9500_data *data,
4078c2ecf20Sopenharmony_ci				int val, int val2)
4088c2ecf20Sopenharmony_ci{
4098c2ecf20Sopenharmony_ci	int i, ret;
4108c2ecf20Sopenharmony_ci
4118c2ecf20Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(sx9500_samp_freq_table); i++)
4128c2ecf20Sopenharmony_ci		if (val == sx9500_samp_freq_table[i].val &&
4138c2ecf20Sopenharmony_ci		    val2 == sx9500_samp_freq_table[i].val2)
4148c2ecf20Sopenharmony_ci			break;
4158c2ecf20Sopenharmony_ci
4168c2ecf20Sopenharmony_ci	if (i == ARRAY_SIZE(sx9500_samp_freq_table))
4178c2ecf20Sopenharmony_ci		return -EINVAL;
4188c2ecf20Sopenharmony_ci
4198c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
4208c2ecf20Sopenharmony_ci
4218c2ecf20Sopenharmony_ci	ret = regmap_update_bits(data->regmap, SX9500_REG_PROX_CTRL0,
4228c2ecf20Sopenharmony_ci				 SX9500_SCAN_PERIOD_MASK,
4238c2ecf20Sopenharmony_ci				 i << SX9500_SCAN_PERIOD_SHIFT);
4248c2ecf20Sopenharmony_ci
4258c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
4268c2ecf20Sopenharmony_ci
4278c2ecf20Sopenharmony_ci	return ret;
4288c2ecf20Sopenharmony_ci}
4298c2ecf20Sopenharmony_ci
4308c2ecf20Sopenharmony_cistatic int sx9500_write_raw(struct iio_dev *indio_dev,
4318c2ecf20Sopenharmony_ci			    const struct iio_chan_spec *chan,
4328c2ecf20Sopenharmony_ci			    int val, int val2, long mask)
4338c2ecf20Sopenharmony_ci{
4348c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
4358c2ecf20Sopenharmony_ci
4368c2ecf20Sopenharmony_ci	switch (chan->type) {
4378c2ecf20Sopenharmony_ci	case IIO_PROXIMITY:
4388c2ecf20Sopenharmony_ci		switch (mask) {
4398c2ecf20Sopenharmony_ci		case IIO_CHAN_INFO_SAMP_FREQ:
4408c2ecf20Sopenharmony_ci			return sx9500_set_samp_freq(data, val, val2);
4418c2ecf20Sopenharmony_ci		default:
4428c2ecf20Sopenharmony_ci			return -EINVAL;
4438c2ecf20Sopenharmony_ci		}
4448c2ecf20Sopenharmony_ci	default:
4458c2ecf20Sopenharmony_ci		return -EINVAL;
4468c2ecf20Sopenharmony_ci	}
4478c2ecf20Sopenharmony_ci}
4488c2ecf20Sopenharmony_ci
4498c2ecf20Sopenharmony_cistatic irqreturn_t sx9500_irq_handler(int irq, void *private)
4508c2ecf20Sopenharmony_ci{
4518c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = private;
4528c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
4538c2ecf20Sopenharmony_ci
4548c2ecf20Sopenharmony_ci	if (data->trigger_enabled)
4558c2ecf20Sopenharmony_ci		iio_trigger_poll(data->trig);
4568c2ecf20Sopenharmony_ci
4578c2ecf20Sopenharmony_ci	/*
4588c2ecf20Sopenharmony_ci	 * Even if no event is enabled, we need to wake the thread to
4598c2ecf20Sopenharmony_ci	 * clear the interrupt state by reading SX9500_REG_IRQ_SRC.  It
4608c2ecf20Sopenharmony_ci	 * is not possible to do that here because regmap_read takes a
4618c2ecf20Sopenharmony_ci	 * mutex.
4628c2ecf20Sopenharmony_ci	 */
4638c2ecf20Sopenharmony_ci	return IRQ_WAKE_THREAD;
4648c2ecf20Sopenharmony_ci}
4658c2ecf20Sopenharmony_ci
4668c2ecf20Sopenharmony_cistatic void sx9500_push_events(struct iio_dev *indio_dev)
4678c2ecf20Sopenharmony_ci{
4688c2ecf20Sopenharmony_ci	int ret;
4698c2ecf20Sopenharmony_ci	unsigned int val, chan;
4708c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
4718c2ecf20Sopenharmony_ci
4728c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_STAT, &val);
4738c2ecf20Sopenharmony_ci	if (ret < 0) {
4748c2ecf20Sopenharmony_ci		dev_err(&data->client->dev, "i2c transfer error in irq\n");
4758c2ecf20Sopenharmony_ci		return;
4768c2ecf20Sopenharmony_ci	}
4778c2ecf20Sopenharmony_ci
4788c2ecf20Sopenharmony_ci	val >>= SX9500_PROXSTAT_SHIFT;
4798c2ecf20Sopenharmony_ci	for (chan = 0; chan < SX9500_NUM_CHANNELS; chan++) {
4808c2ecf20Sopenharmony_ci		int dir;
4818c2ecf20Sopenharmony_ci		u64 ev;
4828c2ecf20Sopenharmony_ci		bool new_prox = val & BIT(chan);
4838c2ecf20Sopenharmony_ci
4848c2ecf20Sopenharmony_ci		if (!data->event_enabled[chan])
4858c2ecf20Sopenharmony_ci			continue;
4868c2ecf20Sopenharmony_ci		if (new_prox == data->prox_stat[chan])
4878c2ecf20Sopenharmony_ci			/* No change on this channel. */
4888c2ecf20Sopenharmony_ci			continue;
4898c2ecf20Sopenharmony_ci
4908c2ecf20Sopenharmony_ci		dir = new_prox ? IIO_EV_DIR_FALLING : IIO_EV_DIR_RISING;
4918c2ecf20Sopenharmony_ci		ev = IIO_UNMOD_EVENT_CODE(IIO_PROXIMITY, chan,
4928c2ecf20Sopenharmony_ci					  IIO_EV_TYPE_THRESH, dir);
4938c2ecf20Sopenharmony_ci		iio_push_event(indio_dev, ev, iio_get_time_ns(indio_dev));
4948c2ecf20Sopenharmony_ci		data->prox_stat[chan] = new_prox;
4958c2ecf20Sopenharmony_ci	}
4968c2ecf20Sopenharmony_ci}
4978c2ecf20Sopenharmony_ci
4988c2ecf20Sopenharmony_cistatic irqreturn_t sx9500_irq_thread_handler(int irq, void *private)
4998c2ecf20Sopenharmony_ci{
5008c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = private;
5018c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
5028c2ecf20Sopenharmony_ci	int ret;
5038c2ecf20Sopenharmony_ci	unsigned int val;
5048c2ecf20Sopenharmony_ci
5058c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
5068c2ecf20Sopenharmony_ci
5078c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_IRQ_SRC, &val);
5088c2ecf20Sopenharmony_ci	if (ret < 0) {
5098c2ecf20Sopenharmony_ci		dev_err(&data->client->dev, "i2c transfer error in irq\n");
5108c2ecf20Sopenharmony_ci		goto out;
5118c2ecf20Sopenharmony_ci	}
5128c2ecf20Sopenharmony_ci
5138c2ecf20Sopenharmony_ci	if (val & (SX9500_CLOSE_IRQ | SX9500_FAR_IRQ))
5148c2ecf20Sopenharmony_ci		sx9500_push_events(indio_dev);
5158c2ecf20Sopenharmony_ci
5168c2ecf20Sopenharmony_ci	if (val & SX9500_CONVDONE_IRQ)
5178c2ecf20Sopenharmony_ci		complete(&data->completion);
5188c2ecf20Sopenharmony_ci
5198c2ecf20Sopenharmony_ciout:
5208c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
5218c2ecf20Sopenharmony_ci
5228c2ecf20Sopenharmony_ci	return IRQ_HANDLED;
5238c2ecf20Sopenharmony_ci}
5248c2ecf20Sopenharmony_ci
5258c2ecf20Sopenharmony_cistatic int sx9500_read_event_config(struct iio_dev *indio_dev,
5268c2ecf20Sopenharmony_ci				    const struct iio_chan_spec *chan,
5278c2ecf20Sopenharmony_ci				    enum iio_event_type type,
5288c2ecf20Sopenharmony_ci				    enum iio_event_direction dir)
5298c2ecf20Sopenharmony_ci{
5308c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
5318c2ecf20Sopenharmony_ci
5328c2ecf20Sopenharmony_ci	if (chan->type != IIO_PROXIMITY || type != IIO_EV_TYPE_THRESH ||
5338c2ecf20Sopenharmony_ci	    dir != IIO_EV_DIR_EITHER)
5348c2ecf20Sopenharmony_ci		return -EINVAL;
5358c2ecf20Sopenharmony_ci
5368c2ecf20Sopenharmony_ci	return data->event_enabled[chan->channel];
5378c2ecf20Sopenharmony_ci}
5388c2ecf20Sopenharmony_ci
5398c2ecf20Sopenharmony_cistatic int sx9500_write_event_config(struct iio_dev *indio_dev,
5408c2ecf20Sopenharmony_ci				     const struct iio_chan_spec *chan,
5418c2ecf20Sopenharmony_ci				     enum iio_event_type type,
5428c2ecf20Sopenharmony_ci				     enum iio_event_direction dir,
5438c2ecf20Sopenharmony_ci				     int state)
5448c2ecf20Sopenharmony_ci{
5458c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
5468c2ecf20Sopenharmony_ci	int ret;
5478c2ecf20Sopenharmony_ci
5488c2ecf20Sopenharmony_ci	if (chan->type != IIO_PROXIMITY || type != IIO_EV_TYPE_THRESH ||
5498c2ecf20Sopenharmony_ci	    dir != IIO_EV_DIR_EITHER)
5508c2ecf20Sopenharmony_ci		return -EINVAL;
5518c2ecf20Sopenharmony_ci
5528c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
5538c2ecf20Sopenharmony_ci
5548c2ecf20Sopenharmony_ci	if (state == 1) {
5558c2ecf20Sopenharmony_ci		ret = sx9500_inc_chan_users(data, chan->channel);
5568c2ecf20Sopenharmony_ci		if (ret < 0)
5578c2ecf20Sopenharmony_ci			goto out_unlock;
5588c2ecf20Sopenharmony_ci		ret = sx9500_inc_close_far_users(data);
5598c2ecf20Sopenharmony_ci		if (ret < 0)
5608c2ecf20Sopenharmony_ci			goto out_undo_chan;
5618c2ecf20Sopenharmony_ci	} else {
5628c2ecf20Sopenharmony_ci		ret = sx9500_dec_chan_users(data, chan->channel);
5638c2ecf20Sopenharmony_ci		if (ret < 0)
5648c2ecf20Sopenharmony_ci			goto out_unlock;
5658c2ecf20Sopenharmony_ci		ret = sx9500_dec_close_far_users(data);
5668c2ecf20Sopenharmony_ci		if (ret < 0)
5678c2ecf20Sopenharmony_ci			goto out_undo_chan;
5688c2ecf20Sopenharmony_ci	}
5698c2ecf20Sopenharmony_ci
5708c2ecf20Sopenharmony_ci	data->event_enabled[chan->channel] = state;
5718c2ecf20Sopenharmony_ci	goto out_unlock;
5728c2ecf20Sopenharmony_ci
5738c2ecf20Sopenharmony_ciout_undo_chan:
5748c2ecf20Sopenharmony_ci	if (state == 1)
5758c2ecf20Sopenharmony_ci		sx9500_dec_chan_users(data, chan->channel);
5768c2ecf20Sopenharmony_ci	else
5778c2ecf20Sopenharmony_ci		sx9500_inc_chan_users(data, chan->channel);
5788c2ecf20Sopenharmony_ciout_unlock:
5798c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
5808c2ecf20Sopenharmony_ci	return ret;
5818c2ecf20Sopenharmony_ci}
5828c2ecf20Sopenharmony_ci
5838c2ecf20Sopenharmony_cistatic int sx9500_update_scan_mode(struct iio_dev *indio_dev,
5848c2ecf20Sopenharmony_ci				   const unsigned long *scan_mask)
5858c2ecf20Sopenharmony_ci{
5868c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
5878c2ecf20Sopenharmony_ci
5888c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
5898c2ecf20Sopenharmony_ci	kfree(data->buffer);
5908c2ecf20Sopenharmony_ci	data->buffer = kzalloc(indio_dev->scan_bytes, GFP_KERNEL);
5918c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
5928c2ecf20Sopenharmony_ci
5938c2ecf20Sopenharmony_ci	if (data->buffer == NULL)
5948c2ecf20Sopenharmony_ci		return -ENOMEM;
5958c2ecf20Sopenharmony_ci
5968c2ecf20Sopenharmony_ci	return 0;
5978c2ecf20Sopenharmony_ci}
5988c2ecf20Sopenharmony_ci
5998c2ecf20Sopenharmony_cistatic IIO_CONST_ATTR_SAMP_FREQ_AVAIL(
6008c2ecf20Sopenharmony_ci	"2.500000 3.333333 5 6.666666 8.333333 11.111111 16.666666 33.333333");
6018c2ecf20Sopenharmony_ci
6028c2ecf20Sopenharmony_cistatic struct attribute *sx9500_attributes[] = {
6038c2ecf20Sopenharmony_ci	&iio_const_attr_sampling_frequency_available.dev_attr.attr,
6048c2ecf20Sopenharmony_ci	NULL,
6058c2ecf20Sopenharmony_ci};
6068c2ecf20Sopenharmony_ci
6078c2ecf20Sopenharmony_cistatic const struct attribute_group sx9500_attribute_group = {
6088c2ecf20Sopenharmony_ci	.attrs = sx9500_attributes,
6098c2ecf20Sopenharmony_ci};
6108c2ecf20Sopenharmony_ci
6118c2ecf20Sopenharmony_cistatic const struct iio_info sx9500_info = {
6128c2ecf20Sopenharmony_ci	.attrs = &sx9500_attribute_group,
6138c2ecf20Sopenharmony_ci	.read_raw = &sx9500_read_raw,
6148c2ecf20Sopenharmony_ci	.write_raw = &sx9500_write_raw,
6158c2ecf20Sopenharmony_ci	.read_event_config = &sx9500_read_event_config,
6168c2ecf20Sopenharmony_ci	.write_event_config = &sx9500_write_event_config,
6178c2ecf20Sopenharmony_ci	.update_scan_mode = &sx9500_update_scan_mode,
6188c2ecf20Sopenharmony_ci};
6198c2ecf20Sopenharmony_ci
6208c2ecf20Sopenharmony_cistatic int sx9500_set_trigger_state(struct iio_trigger *trig,
6218c2ecf20Sopenharmony_ci				    bool state)
6228c2ecf20Sopenharmony_ci{
6238c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = iio_trigger_get_drvdata(trig);
6248c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
6258c2ecf20Sopenharmony_ci	int ret;
6268c2ecf20Sopenharmony_ci
6278c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
6288c2ecf20Sopenharmony_ci
6298c2ecf20Sopenharmony_ci	if (state)
6308c2ecf20Sopenharmony_ci		ret = sx9500_inc_data_rdy_users(data);
6318c2ecf20Sopenharmony_ci	else
6328c2ecf20Sopenharmony_ci		ret = sx9500_dec_data_rdy_users(data);
6338c2ecf20Sopenharmony_ci	if (ret < 0)
6348c2ecf20Sopenharmony_ci		goto out;
6358c2ecf20Sopenharmony_ci
6368c2ecf20Sopenharmony_ci	data->trigger_enabled = state;
6378c2ecf20Sopenharmony_ci
6388c2ecf20Sopenharmony_ciout:
6398c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
6408c2ecf20Sopenharmony_ci
6418c2ecf20Sopenharmony_ci	return ret;
6428c2ecf20Sopenharmony_ci}
6438c2ecf20Sopenharmony_ci
6448c2ecf20Sopenharmony_cistatic const struct iio_trigger_ops sx9500_trigger_ops = {
6458c2ecf20Sopenharmony_ci	.set_trigger_state = sx9500_set_trigger_state,
6468c2ecf20Sopenharmony_ci};
6478c2ecf20Sopenharmony_ci
6488c2ecf20Sopenharmony_cistatic irqreturn_t sx9500_trigger_handler(int irq, void *private)
6498c2ecf20Sopenharmony_ci{
6508c2ecf20Sopenharmony_ci	struct iio_poll_func *pf = private;
6518c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = pf->indio_dev;
6528c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
6538c2ecf20Sopenharmony_ci	int val, bit, ret, i = 0;
6548c2ecf20Sopenharmony_ci
6558c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
6568c2ecf20Sopenharmony_ci
6578c2ecf20Sopenharmony_ci	for_each_set_bit(bit, indio_dev->active_scan_mask,
6588c2ecf20Sopenharmony_ci			 indio_dev->masklength) {
6598c2ecf20Sopenharmony_ci		ret = sx9500_read_prox_data(data, &indio_dev->channels[bit],
6608c2ecf20Sopenharmony_ci					    &val);
6618c2ecf20Sopenharmony_ci		if (ret < 0)
6628c2ecf20Sopenharmony_ci			goto out;
6638c2ecf20Sopenharmony_ci
6648c2ecf20Sopenharmony_ci		data->buffer[i++] = val;
6658c2ecf20Sopenharmony_ci	}
6668c2ecf20Sopenharmony_ci
6678c2ecf20Sopenharmony_ci	iio_push_to_buffers_with_timestamp(indio_dev, data->buffer,
6688c2ecf20Sopenharmony_ci					   iio_get_time_ns(indio_dev));
6698c2ecf20Sopenharmony_ci
6708c2ecf20Sopenharmony_ciout:
6718c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
6728c2ecf20Sopenharmony_ci
6738c2ecf20Sopenharmony_ci	iio_trigger_notify_done(indio_dev->trig);
6748c2ecf20Sopenharmony_ci
6758c2ecf20Sopenharmony_ci	return IRQ_HANDLED;
6768c2ecf20Sopenharmony_ci}
6778c2ecf20Sopenharmony_ci
6788c2ecf20Sopenharmony_cistatic int sx9500_buffer_postenable(struct iio_dev *indio_dev)
6798c2ecf20Sopenharmony_ci{
6808c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
6818c2ecf20Sopenharmony_ci	int ret = 0, i;
6828c2ecf20Sopenharmony_ci
6838c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
6848c2ecf20Sopenharmony_ci
6858c2ecf20Sopenharmony_ci	for (i = 0; i < SX9500_NUM_CHANNELS; i++)
6868c2ecf20Sopenharmony_ci		if (test_bit(i, indio_dev->active_scan_mask)) {
6878c2ecf20Sopenharmony_ci			ret = sx9500_inc_chan_users(data, i);
6888c2ecf20Sopenharmony_ci			if (ret)
6898c2ecf20Sopenharmony_ci				break;
6908c2ecf20Sopenharmony_ci		}
6918c2ecf20Sopenharmony_ci
6928c2ecf20Sopenharmony_ci	if (ret)
6938c2ecf20Sopenharmony_ci		for (i = i - 1; i >= 0; i--)
6948c2ecf20Sopenharmony_ci			if (test_bit(i, indio_dev->active_scan_mask))
6958c2ecf20Sopenharmony_ci				sx9500_dec_chan_users(data, i);
6968c2ecf20Sopenharmony_ci
6978c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
6988c2ecf20Sopenharmony_ci
6998c2ecf20Sopenharmony_ci	return ret;
7008c2ecf20Sopenharmony_ci}
7018c2ecf20Sopenharmony_ci
7028c2ecf20Sopenharmony_cistatic int sx9500_buffer_predisable(struct iio_dev *indio_dev)
7038c2ecf20Sopenharmony_ci{
7048c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
7058c2ecf20Sopenharmony_ci	int ret = 0, i;
7068c2ecf20Sopenharmony_ci
7078c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
7088c2ecf20Sopenharmony_ci
7098c2ecf20Sopenharmony_ci	for (i = 0; i < SX9500_NUM_CHANNELS; i++)
7108c2ecf20Sopenharmony_ci		if (test_bit(i, indio_dev->active_scan_mask)) {
7118c2ecf20Sopenharmony_ci			ret = sx9500_dec_chan_users(data, i);
7128c2ecf20Sopenharmony_ci			if (ret)
7138c2ecf20Sopenharmony_ci				break;
7148c2ecf20Sopenharmony_ci		}
7158c2ecf20Sopenharmony_ci
7168c2ecf20Sopenharmony_ci	if (ret)
7178c2ecf20Sopenharmony_ci		for (i = i - 1; i >= 0; i--)
7188c2ecf20Sopenharmony_ci			if (test_bit(i, indio_dev->active_scan_mask))
7198c2ecf20Sopenharmony_ci				sx9500_inc_chan_users(data, i);
7208c2ecf20Sopenharmony_ci
7218c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
7228c2ecf20Sopenharmony_ci
7238c2ecf20Sopenharmony_ci	return ret;
7248c2ecf20Sopenharmony_ci}
7258c2ecf20Sopenharmony_ci
7268c2ecf20Sopenharmony_cistatic const struct iio_buffer_setup_ops sx9500_buffer_setup_ops = {
7278c2ecf20Sopenharmony_ci	.postenable = sx9500_buffer_postenable,
7288c2ecf20Sopenharmony_ci	.predisable = sx9500_buffer_predisable,
7298c2ecf20Sopenharmony_ci};
7308c2ecf20Sopenharmony_ci
7318c2ecf20Sopenharmony_cistruct sx9500_reg_default {
7328c2ecf20Sopenharmony_ci	u8 reg;
7338c2ecf20Sopenharmony_ci	u8 def;
7348c2ecf20Sopenharmony_ci};
7358c2ecf20Sopenharmony_ci
7368c2ecf20Sopenharmony_cistatic const struct sx9500_reg_default sx9500_default_regs[] = {
7378c2ecf20Sopenharmony_ci	{
7388c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL1,
7398c2ecf20Sopenharmony_ci		/* Shield enabled, small range. */
7408c2ecf20Sopenharmony_ci		.def = 0x43,
7418c2ecf20Sopenharmony_ci	},
7428c2ecf20Sopenharmony_ci	{
7438c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL2,
7448c2ecf20Sopenharmony_ci		/* x8 gain, 167kHz frequency, finest resolution. */
7458c2ecf20Sopenharmony_ci		.def = 0x77,
7468c2ecf20Sopenharmony_ci	},
7478c2ecf20Sopenharmony_ci	{
7488c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL3,
7498c2ecf20Sopenharmony_ci		/* Doze enabled, 2x scan period doze, no raw filter. */
7508c2ecf20Sopenharmony_ci		.def = 0x40,
7518c2ecf20Sopenharmony_ci	},
7528c2ecf20Sopenharmony_ci	{
7538c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL4,
7548c2ecf20Sopenharmony_ci		/* Average threshold. */
7558c2ecf20Sopenharmony_ci		.def = 0x30,
7568c2ecf20Sopenharmony_ci	},
7578c2ecf20Sopenharmony_ci	{
7588c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL5,
7598c2ecf20Sopenharmony_ci		/*
7608c2ecf20Sopenharmony_ci		 * Debouncer off, lowest average negative filter,
7618c2ecf20Sopenharmony_ci		 * highest average postive filter.
7628c2ecf20Sopenharmony_ci		 */
7638c2ecf20Sopenharmony_ci		.def = 0x0f,
7648c2ecf20Sopenharmony_ci	},
7658c2ecf20Sopenharmony_ci	{
7668c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL6,
7678c2ecf20Sopenharmony_ci		/* Proximity detection threshold: 280 */
7688c2ecf20Sopenharmony_ci		.def = 0x0e,
7698c2ecf20Sopenharmony_ci	},
7708c2ecf20Sopenharmony_ci	{
7718c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL7,
7728c2ecf20Sopenharmony_ci		/*
7738c2ecf20Sopenharmony_ci		 * No automatic compensation, compensate each pin
7748c2ecf20Sopenharmony_ci		 * independently, proximity hysteresis: 32, close
7758c2ecf20Sopenharmony_ci		 * debouncer off, far debouncer off.
7768c2ecf20Sopenharmony_ci		 */
7778c2ecf20Sopenharmony_ci		.def = 0x00,
7788c2ecf20Sopenharmony_ci	},
7798c2ecf20Sopenharmony_ci	{
7808c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL8,
7818c2ecf20Sopenharmony_ci		/* No stuck timeout, no periodic compensation. */
7828c2ecf20Sopenharmony_ci		.def = 0x00,
7838c2ecf20Sopenharmony_ci	},
7848c2ecf20Sopenharmony_ci	{
7858c2ecf20Sopenharmony_ci		.reg = SX9500_REG_PROX_CTRL0,
7868c2ecf20Sopenharmony_ci		/* Scan period: 30ms, all sensors disabled. */
7878c2ecf20Sopenharmony_ci		.def = 0x00,
7888c2ecf20Sopenharmony_ci	},
7898c2ecf20Sopenharmony_ci};
7908c2ecf20Sopenharmony_ci
7918c2ecf20Sopenharmony_ci/* Activate all channels and perform an initial compensation. */
7928c2ecf20Sopenharmony_cistatic int sx9500_init_compensation(struct iio_dev *indio_dev)
7938c2ecf20Sopenharmony_ci{
7948c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
7958c2ecf20Sopenharmony_ci	int i, ret;
7968c2ecf20Sopenharmony_ci	unsigned int val;
7978c2ecf20Sopenharmony_ci
7988c2ecf20Sopenharmony_ci	ret = regmap_update_bits(data->regmap, SX9500_REG_PROX_CTRL0,
7998c2ecf20Sopenharmony_ci				 SX9500_CHAN_MASK, SX9500_CHAN_MASK);
8008c2ecf20Sopenharmony_ci	if (ret < 0)
8018c2ecf20Sopenharmony_ci		return ret;
8028c2ecf20Sopenharmony_ci
8038c2ecf20Sopenharmony_ci	for (i = 10; i >= 0; i--) {
8048c2ecf20Sopenharmony_ci		usleep_range(10000, 20000);
8058c2ecf20Sopenharmony_ci		ret = regmap_read(data->regmap, SX9500_REG_STAT, &val);
8068c2ecf20Sopenharmony_ci		if (ret < 0)
8078c2ecf20Sopenharmony_ci			goto out;
8088c2ecf20Sopenharmony_ci		if (!(val & SX9500_COMPSTAT_MASK))
8098c2ecf20Sopenharmony_ci			break;
8108c2ecf20Sopenharmony_ci	}
8118c2ecf20Sopenharmony_ci
8128c2ecf20Sopenharmony_ci	if (i < 0) {
8138c2ecf20Sopenharmony_ci		dev_err(&data->client->dev, "initial compensation timed out");
8148c2ecf20Sopenharmony_ci		ret = -ETIMEDOUT;
8158c2ecf20Sopenharmony_ci	}
8168c2ecf20Sopenharmony_ci
8178c2ecf20Sopenharmony_ciout:
8188c2ecf20Sopenharmony_ci	regmap_update_bits(data->regmap, SX9500_REG_PROX_CTRL0,
8198c2ecf20Sopenharmony_ci			   SX9500_CHAN_MASK, 0);
8208c2ecf20Sopenharmony_ci	return ret;
8218c2ecf20Sopenharmony_ci}
8228c2ecf20Sopenharmony_ci
8238c2ecf20Sopenharmony_cistatic int sx9500_init_device(struct iio_dev *indio_dev)
8248c2ecf20Sopenharmony_ci{
8258c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
8268c2ecf20Sopenharmony_ci	int ret, i;
8278c2ecf20Sopenharmony_ci	unsigned int val;
8288c2ecf20Sopenharmony_ci
8298c2ecf20Sopenharmony_ci	if (data->gpiod_rst) {
8308c2ecf20Sopenharmony_ci		gpiod_set_value_cansleep(data->gpiod_rst, 0);
8318c2ecf20Sopenharmony_ci		usleep_range(1000, 2000);
8328c2ecf20Sopenharmony_ci		gpiod_set_value_cansleep(data->gpiod_rst, 1);
8338c2ecf20Sopenharmony_ci		usleep_range(1000, 2000);
8348c2ecf20Sopenharmony_ci	}
8358c2ecf20Sopenharmony_ci
8368c2ecf20Sopenharmony_ci	ret = regmap_write(data->regmap, SX9500_REG_IRQ_MSK, 0);
8378c2ecf20Sopenharmony_ci	if (ret < 0)
8388c2ecf20Sopenharmony_ci		return ret;
8398c2ecf20Sopenharmony_ci
8408c2ecf20Sopenharmony_ci	ret = regmap_write(data->regmap, SX9500_REG_RESET,
8418c2ecf20Sopenharmony_ci			   SX9500_SOFT_RESET);
8428c2ecf20Sopenharmony_ci	if (ret < 0)
8438c2ecf20Sopenharmony_ci		return ret;
8448c2ecf20Sopenharmony_ci
8458c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_IRQ_SRC, &val);
8468c2ecf20Sopenharmony_ci	if (ret < 0)
8478c2ecf20Sopenharmony_ci		return ret;
8488c2ecf20Sopenharmony_ci
8498c2ecf20Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(sx9500_default_regs); i++) {
8508c2ecf20Sopenharmony_ci		ret = regmap_write(data->regmap,
8518c2ecf20Sopenharmony_ci				   sx9500_default_regs[i].reg,
8528c2ecf20Sopenharmony_ci				   sx9500_default_regs[i].def);
8538c2ecf20Sopenharmony_ci		if (ret < 0)
8548c2ecf20Sopenharmony_ci			return ret;
8558c2ecf20Sopenharmony_ci	}
8568c2ecf20Sopenharmony_ci
8578c2ecf20Sopenharmony_ci	return sx9500_init_compensation(indio_dev);
8588c2ecf20Sopenharmony_ci}
8598c2ecf20Sopenharmony_ci
8608c2ecf20Sopenharmony_cistatic const struct acpi_gpio_params reset_gpios = { 0, 0, false };
8618c2ecf20Sopenharmony_cistatic const struct acpi_gpio_params interrupt_gpios = { 2, 0, false };
8628c2ecf20Sopenharmony_ci
8638c2ecf20Sopenharmony_cistatic const struct acpi_gpio_mapping acpi_sx9500_gpios[] = {
8648c2ecf20Sopenharmony_ci	{ "reset-gpios", &reset_gpios, 1 },
8658c2ecf20Sopenharmony_ci	/*
8668c2ecf20Sopenharmony_ci	 * Some platforms have a bug in ACPI GPIO description making IRQ
8678c2ecf20Sopenharmony_ci	 * GPIO to be output only. Ask the GPIO core to ignore this limit.
8688c2ecf20Sopenharmony_ci	 */
8698c2ecf20Sopenharmony_ci	{ "interrupt-gpios", &interrupt_gpios, 1, ACPI_GPIO_QUIRK_NO_IO_RESTRICTION },
8708c2ecf20Sopenharmony_ci	{ },
8718c2ecf20Sopenharmony_ci};
8728c2ecf20Sopenharmony_ci
8738c2ecf20Sopenharmony_cistatic void sx9500_gpio_probe(struct i2c_client *client,
8748c2ecf20Sopenharmony_ci			      struct sx9500_data *data)
8758c2ecf20Sopenharmony_ci{
8768c2ecf20Sopenharmony_ci	struct gpio_desc *gpiod_int;
8778c2ecf20Sopenharmony_ci	struct device *dev;
8788c2ecf20Sopenharmony_ci	int ret;
8798c2ecf20Sopenharmony_ci
8808c2ecf20Sopenharmony_ci	if (!client)
8818c2ecf20Sopenharmony_ci		return;
8828c2ecf20Sopenharmony_ci
8838c2ecf20Sopenharmony_ci	dev = &client->dev;
8848c2ecf20Sopenharmony_ci
8858c2ecf20Sopenharmony_ci	ret = devm_acpi_dev_add_driver_gpios(dev, acpi_sx9500_gpios);
8868c2ecf20Sopenharmony_ci	if (ret)
8878c2ecf20Sopenharmony_ci		dev_dbg(dev, "Unable to add GPIO mapping table\n");
8888c2ecf20Sopenharmony_ci
8898c2ecf20Sopenharmony_ci	if (client->irq <= 0) {
8908c2ecf20Sopenharmony_ci		gpiod_int = devm_gpiod_get(dev, "interrupt", GPIOD_IN);
8918c2ecf20Sopenharmony_ci		if (IS_ERR(gpiod_int))
8928c2ecf20Sopenharmony_ci			dev_err(dev, "gpio get irq failed\n");
8938c2ecf20Sopenharmony_ci		else
8948c2ecf20Sopenharmony_ci			client->irq = gpiod_to_irq(gpiod_int);
8958c2ecf20Sopenharmony_ci	}
8968c2ecf20Sopenharmony_ci
8978c2ecf20Sopenharmony_ci	data->gpiod_rst = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
8988c2ecf20Sopenharmony_ci	if (IS_ERR(data->gpiod_rst)) {
8998c2ecf20Sopenharmony_ci		dev_warn(dev, "gpio get reset pin failed\n");
9008c2ecf20Sopenharmony_ci		data->gpiod_rst = NULL;
9018c2ecf20Sopenharmony_ci	}
9028c2ecf20Sopenharmony_ci}
9038c2ecf20Sopenharmony_ci
9048c2ecf20Sopenharmony_cistatic int sx9500_probe(struct i2c_client *client,
9058c2ecf20Sopenharmony_ci			const struct i2c_device_id *id)
9068c2ecf20Sopenharmony_ci{
9078c2ecf20Sopenharmony_ci	int ret;
9088c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev;
9098c2ecf20Sopenharmony_ci	struct sx9500_data *data;
9108c2ecf20Sopenharmony_ci
9118c2ecf20Sopenharmony_ci	indio_dev = devm_iio_device_alloc(&client->dev, sizeof(*data));
9128c2ecf20Sopenharmony_ci	if (indio_dev == NULL)
9138c2ecf20Sopenharmony_ci		return -ENOMEM;
9148c2ecf20Sopenharmony_ci
9158c2ecf20Sopenharmony_ci	data = iio_priv(indio_dev);
9168c2ecf20Sopenharmony_ci	data->client = client;
9178c2ecf20Sopenharmony_ci	mutex_init(&data->mutex);
9188c2ecf20Sopenharmony_ci	init_completion(&data->completion);
9198c2ecf20Sopenharmony_ci	data->trigger_enabled = false;
9208c2ecf20Sopenharmony_ci
9218c2ecf20Sopenharmony_ci	data->regmap = devm_regmap_init_i2c(client, &sx9500_regmap_config);
9228c2ecf20Sopenharmony_ci	if (IS_ERR(data->regmap))
9238c2ecf20Sopenharmony_ci		return PTR_ERR(data->regmap);
9248c2ecf20Sopenharmony_ci
9258c2ecf20Sopenharmony_ci	indio_dev->name = SX9500_DRIVER_NAME;
9268c2ecf20Sopenharmony_ci	indio_dev->channels = sx9500_channels;
9278c2ecf20Sopenharmony_ci	indio_dev->num_channels = ARRAY_SIZE(sx9500_channels);
9288c2ecf20Sopenharmony_ci	indio_dev->info = &sx9500_info;
9298c2ecf20Sopenharmony_ci	indio_dev->modes = INDIO_DIRECT_MODE;
9308c2ecf20Sopenharmony_ci	i2c_set_clientdata(client, indio_dev);
9318c2ecf20Sopenharmony_ci
9328c2ecf20Sopenharmony_ci	sx9500_gpio_probe(client, data);
9338c2ecf20Sopenharmony_ci
9348c2ecf20Sopenharmony_ci	ret = sx9500_init_device(indio_dev);
9358c2ecf20Sopenharmony_ci	if (ret < 0)
9368c2ecf20Sopenharmony_ci		return ret;
9378c2ecf20Sopenharmony_ci
9388c2ecf20Sopenharmony_ci	if (client->irq <= 0)
9398c2ecf20Sopenharmony_ci		dev_warn(&client->dev, "no valid irq found\n");
9408c2ecf20Sopenharmony_ci	else {
9418c2ecf20Sopenharmony_ci		ret = devm_request_threaded_irq(&client->dev, client->irq,
9428c2ecf20Sopenharmony_ci				sx9500_irq_handler, sx9500_irq_thread_handler,
9438c2ecf20Sopenharmony_ci				IRQF_TRIGGER_FALLING | IRQF_ONESHOT,
9448c2ecf20Sopenharmony_ci				SX9500_IRQ_NAME, indio_dev);
9458c2ecf20Sopenharmony_ci		if (ret < 0)
9468c2ecf20Sopenharmony_ci			return ret;
9478c2ecf20Sopenharmony_ci
9488c2ecf20Sopenharmony_ci		data->trig = devm_iio_trigger_alloc(&client->dev,
9498c2ecf20Sopenharmony_ci				"%s-dev%d", indio_dev->name, indio_dev->id);
9508c2ecf20Sopenharmony_ci		if (!data->trig)
9518c2ecf20Sopenharmony_ci			return -ENOMEM;
9528c2ecf20Sopenharmony_ci
9538c2ecf20Sopenharmony_ci		data->trig->dev.parent = &client->dev;
9548c2ecf20Sopenharmony_ci		data->trig->ops = &sx9500_trigger_ops;
9558c2ecf20Sopenharmony_ci		iio_trigger_set_drvdata(data->trig, indio_dev);
9568c2ecf20Sopenharmony_ci
9578c2ecf20Sopenharmony_ci		ret = iio_trigger_register(data->trig);
9588c2ecf20Sopenharmony_ci		if (ret)
9598c2ecf20Sopenharmony_ci			return ret;
9608c2ecf20Sopenharmony_ci	}
9618c2ecf20Sopenharmony_ci
9628c2ecf20Sopenharmony_ci	ret = iio_triggered_buffer_setup(indio_dev, NULL,
9638c2ecf20Sopenharmony_ci					 sx9500_trigger_handler,
9648c2ecf20Sopenharmony_ci					 &sx9500_buffer_setup_ops);
9658c2ecf20Sopenharmony_ci	if (ret < 0)
9668c2ecf20Sopenharmony_ci		goto out_trigger_unregister;
9678c2ecf20Sopenharmony_ci
9688c2ecf20Sopenharmony_ci	ret = iio_device_register(indio_dev);
9698c2ecf20Sopenharmony_ci	if (ret < 0)
9708c2ecf20Sopenharmony_ci		goto out_buffer_cleanup;
9718c2ecf20Sopenharmony_ci
9728c2ecf20Sopenharmony_ci	return 0;
9738c2ecf20Sopenharmony_ci
9748c2ecf20Sopenharmony_ciout_buffer_cleanup:
9758c2ecf20Sopenharmony_ci	iio_triggered_buffer_cleanup(indio_dev);
9768c2ecf20Sopenharmony_ciout_trigger_unregister:
9778c2ecf20Sopenharmony_ci	if (client->irq > 0)
9788c2ecf20Sopenharmony_ci		iio_trigger_unregister(data->trig);
9798c2ecf20Sopenharmony_ci
9808c2ecf20Sopenharmony_ci	return ret;
9818c2ecf20Sopenharmony_ci}
9828c2ecf20Sopenharmony_ci
9838c2ecf20Sopenharmony_cistatic int sx9500_remove(struct i2c_client *client)
9848c2ecf20Sopenharmony_ci{
9858c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = i2c_get_clientdata(client);
9868c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
9878c2ecf20Sopenharmony_ci
9888c2ecf20Sopenharmony_ci	iio_device_unregister(indio_dev);
9898c2ecf20Sopenharmony_ci	iio_triggered_buffer_cleanup(indio_dev);
9908c2ecf20Sopenharmony_ci	if (client->irq > 0)
9918c2ecf20Sopenharmony_ci		iio_trigger_unregister(data->trig);
9928c2ecf20Sopenharmony_ci	kfree(data->buffer);
9938c2ecf20Sopenharmony_ci
9948c2ecf20Sopenharmony_ci	return 0;
9958c2ecf20Sopenharmony_ci}
9968c2ecf20Sopenharmony_ci
9978c2ecf20Sopenharmony_ci#ifdef CONFIG_PM_SLEEP
9988c2ecf20Sopenharmony_cistatic int sx9500_suspend(struct device *dev)
9998c2ecf20Sopenharmony_ci{
10008c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = i2c_get_clientdata(to_i2c_client(dev));
10018c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
10028c2ecf20Sopenharmony_ci	int ret;
10038c2ecf20Sopenharmony_ci
10048c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
10058c2ecf20Sopenharmony_ci	ret = regmap_read(data->regmap, SX9500_REG_PROX_CTRL0,
10068c2ecf20Sopenharmony_ci			  &data->suspend_ctrl0);
10078c2ecf20Sopenharmony_ci	if (ret < 0)
10088c2ecf20Sopenharmony_ci		goto out;
10098c2ecf20Sopenharmony_ci
10108c2ecf20Sopenharmony_ci	/*
10118c2ecf20Sopenharmony_ci	 * Scan period doesn't matter because when all the sensors are
10128c2ecf20Sopenharmony_ci	 * deactivated the device is in sleep mode.
10138c2ecf20Sopenharmony_ci	 */
10148c2ecf20Sopenharmony_ci	ret = regmap_write(data->regmap, SX9500_REG_PROX_CTRL0, 0);
10158c2ecf20Sopenharmony_ci
10168c2ecf20Sopenharmony_ciout:
10178c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
10188c2ecf20Sopenharmony_ci	return ret;
10198c2ecf20Sopenharmony_ci}
10208c2ecf20Sopenharmony_ci
10218c2ecf20Sopenharmony_cistatic int sx9500_resume(struct device *dev)
10228c2ecf20Sopenharmony_ci{
10238c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = i2c_get_clientdata(to_i2c_client(dev));
10248c2ecf20Sopenharmony_ci	struct sx9500_data *data = iio_priv(indio_dev);
10258c2ecf20Sopenharmony_ci	int ret;
10268c2ecf20Sopenharmony_ci
10278c2ecf20Sopenharmony_ci	mutex_lock(&data->mutex);
10288c2ecf20Sopenharmony_ci	ret = regmap_write(data->regmap, SX9500_REG_PROX_CTRL0,
10298c2ecf20Sopenharmony_ci			   data->suspend_ctrl0);
10308c2ecf20Sopenharmony_ci	mutex_unlock(&data->mutex);
10318c2ecf20Sopenharmony_ci
10328c2ecf20Sopenharmony_ci	return ret;
10338c2ecf20Sopenharmony_ci}
10348c2ecf20Sopenharmony_ci#endif /* CONFIG_PM_SLEEP */
10358c2ecf20Sopenharmony_ci
10368c2ecf20Sopenharmony_cistatic const struct dev_pm_ops sx9500_pm_ops = {
10378c2ecf20Sopenharmony_ci	SET_SYSTEM_SLEEP_PM_OPS(sx9500_suspend, sx9500_resume)
10388c2ecf20Sopenharmony_ci};
10398c2ecf20Sopenharmony_ci
10408c2ecf20Sopenharmony_cistatic const struct acpi_device_id sx9500_acpi_match[] = {
10418c2ecf20Sopenharmony_ci	{"SSX9500", 0},
10428c2ecf20Sopenharmony_ci	{"SASX9500", 0},
10438c2ecf20Sopenharmony_ci	{ },
10448c2ecf20Sopenharmony_ci};
10458c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(acpi, sx9500_acpi_match);
10468c2ecf20Sopenharmony_ci
10478c2ecf20Sopenharmony_cistatic const struct of_device_id sx9500_of_match[] = {
10488c2ecf20Sopenharmony_ci	{ .compatible = "semtech,sx9500", },
10498c2ecf20Sopenharmony_ci	{ }
10508c2ecf20Sopenharmony_ci};
10518c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(of, sx9500_of_match);
10528c2ecf20Sopenharmony_ci
10538c2ecf20Sopenharmony_cistatic const struct i2c_device_id sx9500_id[] = {
10548c2ecf20Sopenharmony_ci	{"sx9500", 0},
10558c2ecf20Sopenharmony_ci	{ },
10568c2ecf20Sopenharmony_ci};
10578c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(i2c, sx9500_id);
10588c2ecf20Sopenharmony_ci
10598c2ecf20Sopenharmony_cistatic struct i2c_driver sx9500_driver = {
10608c2ecf20Sopenharmony_ci	.driver = {
10618c2ecf20Sopenharmony_ci		.name	= SX9500_DRIVER_NAME,
10628c2ecf20Sopenharmony_ci		.acpi_match_table = ACPI_PTR(sx9500_acpi_match),
10638c2ecf20Sopenharmony_ci		.of_match_table = of_match_ptr(sx9500_of_match),
10648c2ecf20Sopenharmony_ci		.pm = &sx9500_pm_ops,
10658c2ecf20Sopenharmony_ci	},
10668c2ecf20Sopenharmony_ci	.probe		= sx9500_probe,
10678c2ecf20Sopenharmony_ci	.remove		= sx9500_remove,
10688c2ecf20Sopenharmony_ci	.id_table	= sx9500_id,
10698c2ecf20Sopenharmony_ci};
10708c2ecf20Sopenharmony_cimodule_i2c_driver(sx9500_driver);
10718c2ecf20Sopenharmony_ci
10728c2ecf20Sopenharmony_ciMODULE_AUTHOR("Vlad Dogaru <vlad.dogaru@intel.com>");
10738c2ecf20Sopenharmony_ciMODULE_DESCRIPTION("Driver for Semtech SX9500 proximity sensor");
10748c2ecf20Sopenharmony_ciMODULE_LICENSE("GPL v2");
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