162306a36Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only
262306a36Sopenharmony_ci/*
362306a36Sopenharmony_ci * Bosch BMC150 three-axis magnetic field sensor driver
462306a36Sopenharmony_ci *
562306a36Sopenharmony_ci * Copyright (c) 2015, Intel Corporation.
662306a36Sopenharmony_ci *
762306a36Sopenharmony_ci * This code is based on bmm050_api.c authored by contact@bosch.sensortec.com:
862306a36Sopenharmony_ci *
962306a36Sopenharmony_ci * (C) Copyright 2011~2014 Bosch Sensortec GmbH All Rights Reserved
1062306a36Sopenharmony_ci */
1162306a36Sopenharmony_ci
1262306a36Sopenharmony_ci#include <linux/module.h>
1362306a36Sopenharmony_ci#include <linux/i2c.h>
1462306a36Sopenharmony_ci#include <linux/interrupt.h>
1562306a36Sopenharmony_ci#include <linux/delay.h>
1662306a36Sopenharmony_ci#include <linux/slab.h>
1762306a36Sopenharmony_ci#include <linux/acpi.h>
1862306a36Sopenharmony_ci#include <linux/pm.h>
1962306a36Sopenharmony_ci#include <linux/pm_runtime.h>
2062306a36Sopenharmony_ci#include <linux/iio/iio.h>
2162306a36Sopenharmony_ci#include <linux/iio/sysfs.h>
2262306a36Sopenharmony_ci#include <linux/iio/buffer.h>
2362306a36Sopenharmony_ci#include <linux/iio/events.h>
2462306a36Sopenharmony_ci#include <linux/iio/trigger.h>
2562306a36Sopenharmony_ci#include <linux/iio/trigger_consumer.h>
2662306a36Sopenharmony_ci#include <linux/iio/triggered_buffer.h>
2762306a36Sopenharmony_ci#include <linux/regmap.h>
2862306a36Sopenharmony_ci#include <linux/regulator/consumer.h>
2962306a36Sopenharmony_ci
3062306a36Sopenharmony_ci#include "bmc150_magn.h"
3162306a36Sopenharmony_ci
3262306a36Sopenharmony_ci#define BMC150_MAGN_DRV_NAME			"bmc150_magn"
3362306a36Sopenharmony_ci#define BMC150_MAGN_IRQ_NAME			"bmc150_magn_event"
3462306a36Sopenharmony_ci
3562306a36Sopenharmony_ci#define BMC150_MAGN_REG_CHIP_ID			0x40
3662306a36Sopenharmony_ci#define BMC150_MAGN_CHIP_ID_VAL			0x32
3762306a36Sopenharmony_ci
3862306a36Sopenharmony_ci#define BMC150_MAGN_REG_X_L			0x42
3962306a36Sopenharmony_ci#define BMC150_MAGN_REG_X_M			0x43
4062306a36Sopenharmony_ci#define BMC150_MAGN_REG_Y_L			0x44
4162306a36Sopenharmony_ci#define BMC150_MAGN_REG_Y_M			0x45
4262306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_XY_L			3
4362306a36Sopenharmony_ci#define BMC150_MAGN_REG_Z_L			0x46
4462306a36Sopenharmony_ci#define BMC150_MAGN_REG_Z_M			0x47
4562306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_Z_L			1
4662306a36Sopenharmony_ci#define BMC150_MAGN_REG_RHALL_L			0x48
4762306a36Sopenharmony_ci#define BMC150_MAGN_REG_RHALL_M			0x49
4862306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_RHALL_L		2
4962306a36Sopenharmony_ci
5062306a36Sopenharmony_ci#define BMC150_MAGN_REG_INT_STATUS		0x4A
5162306a36Sopenharmony_ci
5262306a36Sopenharmony_ci#define BMC150_MAGN_REG_POWER			0x4B
5362306a36Sopenharmony_ci#define BMC150_MAGN_MASK_POWER_CTL		BIT(0)
5462306a36Sopenharmony_ci
5562306a36Sopenharmony_ci#define BMC150_MAGN_REG_OPMODE_ODR		0x4C
5662306a36Sopenharmony_ci#define BMC150_MAGN_MASK_OPMODE			GENMASK(2, 1)
5762306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_OPMODE		1
5862306a36Sopenharmony_ci#define BMC150_MAGN_MODE_NORMAL			0x00
5962306a36Sopenharmony_ci#define BMC150_MAGN_MODE_FORCED			0x01
6062306a36Sopenharmony_ci#define BMC150_MAGN_MODE_SLEEP			0x03
6162306a36Sopenharmony_ci#define BMC150_MAGN_MASK_ODR			GENMASK(5, 3)
6262306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_ODR			3
6362306a36Sopenharmony_ci
6462306a36Sopenharmony_ci#define BMC150_MAGN_REG_INT			0x4D
6562306a36Sopenharmony_ci
6662306a36Sopenharmony_ci#define BMC150_MAGN_REG_INT_DRDY		0x4E
6762306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_EN		BIT(7)
6862306a36Sopenharmony_ci#define BMC150_MAGN_SHIFT_DRDY_EN		7
6962306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_INT3		BIT(6)
7062306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_Z_EN		BIT(5)
7162306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_Y_EN		BIT(4)
7262306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_X_EN		BIT(3)
7362306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_DR_POLARITY	BIT(2)
7462306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_LATCHING		BIT(1)
7562306a36Sopenharmony_ci#define BMC150_MAGN_MASK_DRDY_INT3_POLARITY	BIT(0)
7662306a36Sopenharmony_ci
7762306a36Sopenharmony_ci#define BMC150_MAGN_REG_LOW_THRESH		0x4F
7862306a36Sopenharmony_ci#define BMC150_MAGN_REG_HIGH_THRESH		0x50
7962306a36Sopenharmony_ci#define BMC150_MAGN_REG_REP_XY			0x51
8062306a36Sopenharmony_ci#define BMC150_MAGN_REG_REP_Z			0x52
8162306a36Sopenharmony_ci#define BMC150_MAGN_REG_REP_DATAMASK		GENMASK(7, 0)
8262306a36Sopenharmony_ci
8362306a36Sopenharmony_ci#define BMC150_MAGN_REG_TRIM_START		0x5D
8462306a36Sopenharmony_ci#define BMC150_MAGN_REG_TRIM_END		0x71
8562306a36Sopenharmony_ci
8662306a36Sopenharmony_ci#define BMC150_MAGN_XY_OVERFLOW_VAL		-4096
8762306a36Sopenharmony_ci#define BMC150_MAGN_Z_OVERFLOW_VAL		-16384
8862306a36Sopenharmony_ci
8962306a36Sopenharmony_ci/* Time from SUSPEND to SLEEP */
9062306a36Sopenharmony_ci#define BMC150_MAGN_START_UP_TIME_MS		3
9162306a36Sopenharmony_ci
9262306a36Sopenharmony_ci#define BMC150_MAGN_AUTO_SUSPEND_DELAY_MS	2000
9362306a36Sopenharmony_ci
9462306a36Sopenharmony_ci#define BMC150_MAGN_REGVAL_TO_REPXY(regval) (((regval) * 2) + 1)
9562306a36Sopenharmony_ci#define BMC150_MAGN_REGVAL_TO_REPZ(regval) ((regval) + 1)
9662306a36Sopenharmony_ci#define BMC150_MAGN_REPXY_TO_REGVAL(rep) (((rep) - 1) / 2)
9762306a36Sopenharmony_ci#define BMC150_MAGN_REPZ_TO_REGVAL(rep) ((rep) - 1)
9862306a36Sopenharmony_ci
9962306a36Sopenharmony_cienum bmc150_magn_axis {
10062306a36Sopenharmony_ci	AXIS_X,
10162306a36Sopenharmony_ci	AXIS_Y,
10262306a36Sopenharmony_ci	AXIS_Z,
10362306a36Sopenharmony_ci	RHALL,
10462306a36Sopenharmony_ci	AXIS_XYZ_MAX = RHALL,
10562306a36Sopenharmony_ci	AXIS_XYZR_MAX,
10662306a36Sopenharmony_ci};
10762306a36Sopenharmony_ci
10862306a36Sopenharmony_cienum bmc150_magn_power_modes {
10962306a36Sopenharmony_ci	BMC150_MAGN_POWER_MODE_SUSPEND,
11062306a36Sopenharmony_ci	BMC150_MAGN_POWER_MODE_SLEEP,
11162306a36Sopenharmony_ci	BMC150_MAGN_POWER_MODE_NORMAL,
11262306a36Sopenharmony_ci};
11362306a36Sopenharmony_ci
11462306a36Sopenharmony_cistruct bmc150_magn_trim_regs {
11562306a36Sopenharmony_ci	s8 x1;
11662306a36Sopenharmony_ci	s8 y1;
11762306a36Sopenharmony_ci	__le16 reserved1;
11862306a36Sopenharmony_ci	u8 reserved2;
11962306a36Sopenharmony_ci	__le16 z4;
12062306a36Sopenharmony_ci	s8 x2;
12162306a36Sopenharmony_ci	s8 y2;
12262306a36Sopenharmony_ci	__le16 reserved3;
12362306a36Sopenharmony_ci	__le16 z2;
12462306a36Sopenharmony_ci	__le16 z1;
12562306a36Sopenharmony_ci	__le16 xyz1;
12662306a36Sopenharmony_ci	__le16 z3;
12762306a36Sopenharmony_ci	s8 xy2;
12862306a36Sopenharmony_ci	u8 xy1;
12962306a36Sopenharmony_ci} __packed;
13062306a36Sopenharmony_ci
13162306a36Sopenharmony_cistruct bmc150_magn_data {
13262306a36Sopenharmony_ci	struct device *dev;
13362306a36Sopenharmony_ci	/*
13462306a36Sopenharmony_ci	 * 1. Protect this structure.
13562306a36Sopenharmony_ci	 * 2. Serialize sequences that power on/off the device and access HW.
13662306a36Sopenharmony_ci	 */
13762306a36Sopenharmony_ci	struct mutex mutex;
13862306a36Sopenharmony_ci	struct regmap *regmap;
13962306a36Sopenharmony_ci	struct regulator_bulk_data regulators[2];
14062306a36Sopenharmony_ci	struct iio_mount_matrix orientation;
14162306a36Sopenharmony_ci	/* Ensure timestamp is naturally aligned */
14262306a36Sopenharmony_ci	struct {
14362306a36Sopenharmony_ci		s32 chans[3];
14462306a36Sopenharmony_ci		s64 timestamp __aligned(8);
14562306a36Sopenharmony_ci	} scan;
14662306a36Sopenharmony_ci	struct iio_trigger *dready_trig;
14762306a36Sopenharmony_ci	bool dready_trigger_on;
14862306a36Sopenharmony_ci	int max_odr;
14962306a36Sopenharmony_ci	int irq;
15062306a36Sopenharmony_ci};
15162306a36Sopenharmony_ci
15262306a36Sopenharmony_cistatic const struct {
15362306a36Sopenharmony_ci	int freq;
15462306a36Sopenharmony_ci	u8 reg_val;
15562306a36Sopenharmony_ci} bmc150_magn_samp_freq_table[] = { {2, 0x01},
15662306a36Sopenharmony_ci				    {6, 0x02},
15762306a36Sopenharmony_ci				    {8, 0x03},
15862306a36Sopenharmony_ci				    {10, 0x00},
15962306a36Sopenharmony_ci				    {15, 0x04},
16062306a36Sopenharmony_ci				    {20, 0x05},
16162306a36Sopenharmony_ci				    {25, 0x06},
16262306a36Sopenharmony_ci				    {30, 0x07} };
16362306a36Sopenharmony_ci
16462306a36Sopenharmony_cienum bmc150_magn_presets {
16562306a36Sopenharmony_ci	LOW_POWER_PRESET,
16662306a36Sopenharmony_ci	REGULAR_PRESET,
16762306a36Sopenharmony_ci	ENHANCED_REGULAR_PRESET,
16862306a36Sopenharmony_ci	HIGH_ACCURACY_PRESET
16962306a36Sopenharmony_ci};
17062306a36Sopenharmony_ci
17162306a36Sopenharmony_cistatic const struct bmc150_magn_preset {
17262306a36Sopenharmony_ci	u8 rep_xy;
17362306a36Sopenharmony_ci	u8 rep_z;
17462306a36Sopenharmony_ci	u8 odr;
17562306a36Sopenharmony_ci} bmc150_magn_presets_table[] = {
17662306a36Sopenharmony_ci	[LOW_POWER_PRESET] = {3, 3, 10},
17762306a36Sopenharmony_ci	[REGULAR_PRESET] =  {9, 15, 10},
17862306a36Sopenharmony_ci	[ENHANCED_REGULAR_PRESET] =  {15, 27, 10},
17962306a36Sopenharmony_ci	[HIGH_ACCURACY_PRESET] =  {47, 83, 20},
18062306a36Sopenharmony_ci};
18162306a36Sopenharmony_ci
18262306a36Sopenharmony_ci#define BMC150_MAGN_DEFAULT_PRESET REGULAR_PRESET
18362306a36Sopenharmony_ci
18462306a36Sopenharmony_cistatic bool bmc150_magn_is_writeable_reg(struct device *dev, unsigned int reg)
18562306a36Sopenharmony_ci{
18662306a36Sopenharmony_ci	switch (reg) {
18762306a36Sopenharmony_ci	case BMC150_MAGN_REG_POWER:
18862306a36Sopenharmony_ci	case BMC150_MAGN_REG_OPMODE_ODR:
18962306a36Sopenharmony_ci	case BMC150_MAGN_REG_INT:
19062306a36Sopenharmony_ci	case BMC150_MAGN_REG_INT_DRDY:
19162306a36Sopenharmony_ci	case BMC150_MAGN_REG_LOW_THRESH:
19262306a36Sopenharmony_ci	case BMC150_MAGN_REG_HIGH_THRESH:
19362306a36Sopenharmony_ci	case BMC150_MAGN_REG_REP_XY:
19462306a36Sopenharmony_ci	case BMC150_MAGN_REG_REP_Z:
19562306a36Sopenharmony_ci		return true;
19662306a36Sopenharmony_ci	default:
19762306a36Sopenharmony_ci		return false;
19862306a36Sopenharmony_ci	}
19962306a36Sopenharmony_ci}
20062306a36Sopenharmony_ci
20162306a36Sopenharmony_cistatic bool bmc150_magn_is_volatile_reg(struct device *dev, unsigned int reg)
20262306a36Sopenharmony_ci{
20362306a36Sopenharmony_ci	switch (reg) {
20462306a36Sopenharmony_ci	case BMC150_MAGN_REG_X_L:
20562306a36Sopenharmony_ci	case BMC150_MAGN_REG_X_M:
20662306a36Sopenharmony_ci	case BMC150_MAGN_REG_Y_L:
20762306a36Sopenharmony_ci	case BMC150_MAGN_REG_Y_M:
20862306a36Sopenharmony_ci	case BMC150_MAGN_REG_Z_L:
20962306a36Sopenharmony_ci	case BMC150_MAGN_REG_Z_M:
21062306a36Sopenharmony_ci	case BMC150_MAGN_REG_RHALL_L:
21162306a36Sopenharmony_ci	case BMC150_MAGN_REG_RHALL_M:
21262306a36Sopenharmony_ci	case BMC150_MAGN_REG_INT_STATUS:
21362306a36Sopenharmony_ci		return true;
21462306a36Sopenharmony_ci	default:
21562306a36Sopenharmony_ci		return false;
21662306a36Sopenharmony_ci	}
21762306a36Sopenharmony_ci}
21862306a36Sopenharmony_ci
21962306a36Sopenharmony_ciconst struct regmap_config bmc150_magn_regmap_config = {
22062306a36Sopenharmony_ci	.reg_bits = 8,
22162306a36Sopenharmony_ci	.val_bits = 8,
22262306a36Sopenharmony_ci
22362306a36Sopenharmony_ci	.max_register = BMC150_MAGN_REG_TRIM_END,
22462306a36Sopenharmony_ci	.cache_type = REGCACHE_RBTREE,
22562306a36Sopenharmony_ci
22662306a36Sopenharmony_ci	.writeable_reg = bmc150_magn_is_writeable_reg,
22762306a36Sopenharmony_ci	.volatile_reg = bmc150_magn_is_volatile_reg,
22862306a36Sopenharmony_ci};
22962306a36Sopenharmony_ciEXPORT_SYMBOL_NS(bmc150_magn_regmap_config, IIO_BMC150_MAGN);
23062306a36Sopenharmony_ci
23162306a36Sopenharmony_cistatic int bmc150_magn_set_power_mode(struct bmc150_magn_data *data,
23262306a36Sopenharmony_ci				      enum bmc150_magn_power_modes mode,
23362306a36Sopenharmony_ci				      bool state)
23462306a36Sopenharmony_ci{
23562306a36Sopenharmony_ci	int ret;
23662306a36Sopenharmony_ci
23762306a36Sopenharmony_ci	switch (mode) {
23862306a36Sopenharmony_ci	case BMC150_MAGN_POWER_MODE_SUSPEND:
23962306a36Sopenharmony_ci		ret = regmap_update_bits(data->regmap, BMC150_MAGN_REG_POWER,
24062306a36Sopenharmony_ci					 BMC150_MAGN_MASK_POWER_CTL, !state);
24162306a36Sopenharmony_ci		if (ret < 0)
24262306a36Sopenharmony_ci			return ret;
24362306a36Sopenharmony_ci		usleep_range(BMC150_MAGN_START_UP_TIME_MS * 1000, 20000);
24462306a36Sopenharmony_ci		return 0;
24562306a36Sopenharmony_ci	case BMC150_MAGN_POWER_MODE_SLEEP:
24662306a36Sopenharmony_ci		return regmap_update_bits(data->regmap,
24762306a36Sopenharmony_ci					  BMC150_MAGN_REG_OPMODE_ODR,
24862306a36Sopenharmony_ci					  BMC150_MAGN_MASK_OPMODE,
24962306a36Sopenharmony_ci					  BMC150_MAGN_MODE_SLEEP <<
25062306a36Sopenharmony_ci					  BMC150_MAGN_SHIFT_OPMODE);
25162306a36Sopenharmony_ci	case BMC150_MAGN_POWER_MODE_NORMAL:
25262306a36Sopenharmony_ci		return regmap_update_bits(data->regmap,
25362306a36Sopenharmony_ci					  BMC150_MAGN_REG_OPMODE_ODR,
25462306a36Sopenharmony_ci					  BMC150_MAGN_MASK_OPMODE,
25562306a36Sopenharmony_ci					  BMC150_MAGN_MODE_NORMAL <<
25662306a36Sopenharmony_ci					  BMC150_MAGN_SHIFT_OPMODE);
25762306a36Sopenharmony_ci	}
25862306a36Sopenharmony_ci
25962306a36Sopenharmony_ci	return -EINVAL;
26062306a36Sopenharmony_ci}
26162306a36Sopenharmony_ci
26262306a36Sopenharmony_cistatic int bmc150_magn_set_power_state(struct bmc150_magn_data *data, bool on)
26362306a36Sopenharmony_ci{
26462306a36Sopenharmony_ci#ifdef CONFIG_PM
26562306a36Sopenharmony_ci	int ret;
26662306a36Sopenharmony_ci
26762306a36Sopenharmony_ci	if (on) {
26862306a36Sopenharmony_ci		ret = pm_runtime_resume_and_get(data->dev);
26962306a36Sopenharmony_ci	} else {
27062306a36Sopenharmony_ci		pm_runtime_mark_last_busy(data->dev);
27162306a36Sopenharmony_ci		ret = pm_runtime_put_autosuspend(data->dev);
27262306a36Sopenharmony_ci	}
27362306a36Sopenharmony_ci
27462306a36Sopenharmony_ci	if (ret < 0) {
27562306a36Sopenharmony_ci		dev_err(data->dev,
27662306a36Sopenharmony_ci			"failed to change power state to %d\n", on);
27762306a36Sopenharmony_ci		return ret;
27862306a36Sopenharmony_ci	}
27962306a36Sopenharmony_ci#endif
28062306a36Sopenharmony_ci
28162306a36Sopenharmony_ci	return 0;
28262306a36Sopenharmony_ci}
28362306a36Sopenharmony_ci
28462306a36Sopenharmony_cistatic int bmc150_magn_get_odr(struct bmc150_magn_data *data, int *val)
28562306a36Sopenharmony_ci{
28662306a36Sopenharmony_ci	int ret, reg_val;
28762306a36Sopenharmony_ci	u8 i, odr_val;
28862306a36Sopenharmony_ci
28962306a36Sopenharmony_ci	ret = regmap_read(data->regmap, BMC150_MAGN_REG_OPMODE_ODR, &reg_val);
29062306a36Sopenharmony_ci	if (ret < 0)
29162306a36Sopenharmony_ci		return ret;
29262306a36Sopenharmony_ci	odr_val = (reg_val & BMC150_MAGN_MASK_ODR) >> BMC150_MAGN_SHIFT_ODR;
29362306a36Sopenharmony_ci
29462306a36Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(bmc150_magn_samp_freq_table); i++)
29562306a36Sopenharmony_ci		if (bmc150_magn_samp_freq_table[i].reg_val == odr_val) {
29662306a36Sopenharmony_ci			*val = bmc150_magn_samp_freq_table[i].freq;
29762306a36Sopenharmony_ci			return 0;
29862306a36Sopenharmony_ci		}
29962306a36Sopenharmony_ci
30062306a36Sopenharmony_ci	return -EINVAL;
30162306a36Sopenharmony_ci}
30262306a36Sopenharmony_ci
30362306a36Sopenharmony_cistatic int bmc150_magn_set_odr(struct bmc150_magn_data *data, int val)
30462306a36Sopenharmony_ci{
30562306a36Sopenharmony_ci	int ret;
30662306a36Sopenharmony_ci	u8 i;
30762306a36Sopenharmony_ci
30862306a36Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(bmc150_magn_samp_freq_table); i++) {
30962306a36Sopenharmony_ci		if (bmc150_magn_samp_freq_table[i].freq == val) {
31062306a36Sopenharmony_ci			ret = regmap_update_bits(data->regmap,
31162306a36Sopenharmony_ci						 BMC150_MAGN_REG_OPMODE_ODR,
31262306a36Sopenharmony_ci						 BMC150_MAGN_MASK_ODR,
31362306a36Sopenharmony_ci						 bmc150_magn_samp_freq_table[i].
31462306a36Sopenharmony_ci						 reg_val <<
31562306a36Sopenharmony_ci						 BMC150_MAGN_SHIFT_ODR);
31662306a36Sopenharmony_ci			if (ret < 0)
31762306a36Sopenharmony_ci				return ret;
31862306a36Sopenharmony_ci			return 0;
31962306a36Sopenharmony_ci		}
32062306a36Sopenharmony_ci	}
32162306a36Sopenharmony_ci
32262306a36Sopenharmony_ci	return -EINVAL;
32362306a36Sopenharmony_ci}
32462306a36Sopenharmony_ci
32562306a36Sopenharmony_cistatic int bmc150_magn_set_max_odr(struct bmc150_magn_data *data, int rep_xy,
32662306a36Sopenharmony_ci				   int rep_z, int odr)
32762306a36Sopenharmony_ci{
32862306a36Sopenharmony_ci	int ret, reg_val, max_odr;
32962306a36Sopenharmony_ci
33062306a36Sopenharmony_ci	if (rep_xy <= 0) {
33162306a36Sopenharmony_ci		ret = regmap_read(data->regmap, BMC150_MAGN_REG_REP_XY,
33262306a36Sopenharmony_ci				  &reg_val);
33362306a36Sopenharmony_ci		if (ret < 0)
33462306a36Sopenharmony_ci			return ret;
33562306a36Sopenharmony_ci		rep_xy = BMC150_MAGN_REGVAL_TO_REPXY(reg_val);
33662306a36Sopenharmony_ci	}
33762306a36Sopenharmony_ci	if (rep_z <= 0) {
33862306a36Sopenharmony_ci		ret = regmap_read(data->regmap, BMC150_MAGN_REG_REP_Z,
33962306a36Sopenharmony_ci				  &reg_val);
34062306a36Sopenharmony_ci		if (ret < 0)
34162306a36Sopenharmony_ci			return ret;
34262306a36Sopenharmony_ci		rep_z = BMC150_MAGN_REGVAL_TO_REPZ(reg_val);
34362306a36Sopenharmony_ci	}
34462306a36Sopenharmony_ci	if (odr <= 0) {
34562306a36Sopenharmony_ci		ret = bmc150_magn_get_odr(data, &odr);
34662306a36Sopenharmony_ci		if (ret < 0)
34762306a36Sopenharmony_ci			return ret;
34862306a36Sopenharmony_ci	}
34962306a36Sopenharmony_ci	/* the maximum selectable read-out frequency from datasheet */
35062306a36Sopenharmony_ci	max_odr = 1000000 / (145 * rep_xy + 500 * rep_z + 980);
35162306a36Sopenharmony_ci	if (odr > max_odr) {
35262306a36Sopenharmony_ci		dev_err(data->dev,
35362306a36Sopenharmony_ci			"Can't set oversampling with sampling freq %d\n",
35462306a36Sopenharmony_ci			odr);
35562306a36Sopenharmony_ci		return -EINVAL;
35662306a36Sopenharmony_ci	}
35762306a36Sopenharmony_ci	data->max_odr = max_odr;
35862306a36Sopenharmony_ci
35962306a36Sopenharmony_ci	return 0;
36062306a36Sopenharmony_ci}
36162306a36Sopenharmony_ci
36262306a36Sopenharmony_cistatic s32 bmc150_magn_compensate_x(struct bmc150_magn_trim_regs *tregs, s16 x,
36362306a36Sopenharmony_ci				    u16 rhall)
36462306a36Sopenharmony_ci{
36562306a36Sopenharmony_ci	s16 val;
36662306a36Sopenharmony_ci	u16 xyz1 = le16_to_cpu(tregs->xyz1);
36762306a36Sopenharmony_ci
36862306a36Sopenharmony_ci	if (x == BMC150_MAGN_XY_OVERFLOW_VAL)
36962306a36Sopenharmony_ci		return S32_MIN;
37062306a36Sopenharmony_ci
37162306a36Sopenharmony_ci	if (!rhall)
37262306a36Sopenharmony_ci		rhall = xyz1;
37362306a36Sopenharmony_ci
37462306a36Sopenharmony_ci	val = ((s16)(((u16)((((s32)xyz1) << 14) / rhall)) - ((u16)0x4000)));
37562306a36Sopenharmony_ci	val = ((s16)((((s32)x) * ((((((((s32)tregs->xy2) * ((((s32)val) *
37662306a36Sopenharmony_ci	      ((s32)val)) >> 7)) + (((s32)val) *
37762306a36Sopenharmony_ci	      ((s32)(((s16)tregs->xy1) << 7)))) >> 9) + ((s32)0x100000)) *
37862306a36Sopenharmony_ci	      ((s32)(((s16)tregs->x2) + ((s16)0xA0)))) >> 12)) >> 13)) +
37962306a36Sopenharmony_ci	      (((s16)tregs->x1) << 3);
38062306a36Sopenharmony_ci
38162306a36Sopenharmony_ci	return (s32)val;
38262306a36Sopenharmony_ci}
38362306a36Sopenharmony_ci
38462306a36Sopenharmony_cistatic s32 bmc150_magn_compensate_y(struct bmc150_magn_trim_regs *tregs, s16 y,
38562306a36Sopenharmony_ci				    u16 rhall)
38662306a36Sopenharmony_ci{
38762306a36Sopenharmony_ci	s16 val;
38862306a36Sopenharmony_ci	u16 xyz1 = le16_to_cpu(tregs->xyz1);
38962306a36Sopenharmony_ci
39062306a36Sopenharmony_ci	if (y == BMC150_MAGN_XY_OVERFLOW_VAL)
39162306a36Sopenharmony_ci		return S32_MIN;
39262306a36Sopenharmony_ci
39362306a36Sopenharmony_ci	if (!rhall)
39462306a36Sopenharmony_ci		rhall = xyz1;
39562306a36Sopenharmony_ci
39662306a36Sopenharmony_ci	val = ((s16)(((u16)((((s32)xyz1) << 14) / rhall)) - ((u16)0x4000)));
39762306a36Sopenharmony_ci	val = ((s16)((((s32)y) * ((((((((s32)tregs->xy2) * ((((s32)val) *
39862306a36Sopenharmony_ci	      ((s32)val)) >> 7)) + (((s32)val) *
39962306a36Sopenharmony_ci	      ((s32)(((s16)tregs->xy1) << 7)))) >> 9) + ((s32)0x100000)) *
40062306a36Sopenharmony_ci	      ((s32)(((s16)tregs->y2) + ((s16)0xA0)))) >> 12)) >> 13)) +
40162306a36Sopenharmony_ci	      (((s16)tregs->y1) << 3);
40262306a36Sopenharmony_ci
40362306a36Sopenharmony_ci	return (s32)val;
40462306a36Sopenharmony_ci}
40562306a36Sopenharmony_ci
40662306a36Sopenharmony_cistatic s32 bmc150_magn_compensate_z(struct bmc150_magn_trim_regs *tregs, s16 z,
40762306a36Sopenharmony_ci				    u16 rhall)
40862306a36Sopenharmony_ci{
40962306a36Sopenharmony_ci	s32 val;
41062306a36Sopenharmony_ci	u16 xyz1 = le16_to_cpu(tregs->xyz1);
41162306a36Sopenharmony_ci	u16 z1 = le16_to_cpu(tregs->z1);
41262306a36Sopenharmony_ci	s16 z2 = le16_to_cpu(tregs->z2);
41362306a36Sopenharmony_ci	s16 z3 = le16_to_cpu(tregs->z3);
41462306a36Sopenharmony_ci	s16 z4 = le16_to_cpu(tregs->z4);
41562306a36Sopenharmony_ci
41662306a36Sopenharmony_ci	if (z == BMC150_MAGN_Z_OVERFLOW_VAL)
41762306a36Sopenharmony_ci		return S32_MIN;
41862306a36Sopenharmony_ci
41962306a36Sopenharmony_ci	val = (((((s32)(z - z4)) << 15) - ((((s32)z3) * ((s32)(((s16)rhall) -
42062306a36Sopenharmony_ci	      ((s16)xyz1)))) >> 2)) / (z2 + ((s16)(((((s32)z1) *
42162306a36Sopenharmony_ci	      ((((s16)rhall) << 1))) + (1 << 15)) >> 16))));
42262306a36Sopenharmony_ci
42362306a36Sopenharmony_ci	return val;
42462306a36Sopenharmony_ci}
42562306a36Sopenharmony_ci
42662306a36Sopenharmony_cistatic int bmc150_magn_read_xyz(struct bmc150_magn_data *data, s32 *buffer)
42762306a36Sopenharmony_ci{
42862306a36Sopenharmony_ci	int ret;
42962306a36Sopenharmony_ci	__le16 values[AXIS_XYZR_MAX];
43062306a36Sopenharmony_ci	s16 raw_x, raw_y, raw_z;
43162306a36Sopenharmony_ci	u16 rhall;
43262306a36Sopenharmony_ci	struct bmc150_magn_trim_regs tregs;
43362306a36Sopenharmony_ci
43462306a36Sopenharmony_ci	ret = regmap_bulk_read(data->regmap, BMC150_MAGN_REG_X_L,
43562306a36Sopenharmony_ci			       values, sizeof(values));
43662306a36Sopenharmony_ci	if (ret < 0)
43762306a36Sopenharmony_ci		return ret;
43862306a36Sopenharmony_ci
43962306a36Sopenharmony_ci	raw_x = (s16)le16_to_cpu(values[AXIS_X]) >> BMC150_MAGN_SHIFT_XY_L;
44062306a36Sopenharmony_ci	raw_y = (s16)le16_to_cpu(values[AXIS_Y]) >> BMC150_MAGN_SHIFT_XY_L;
44162306a36Sopenharmony_ci	raw_z = (s16)le16_to_cpu(values[AXIS_Z]) >> BMC150_MAGN_SHIFT_Z_L;
44262306a36Sopenharmony_ci	rhall = le16_to_cpu(values[RHALL]) >> BMC150_MAGN_SHIFT_RHALL_L;
44362306a36Sopenharmony_ci
44462306a36Sopenharmony_ci	ret = regmap_bulk_read(data->regmap, BMC150_MAGN_REG_TRIM_START,
44562306a36Sopenharmony_ci			       &tregs, sizeof(tregs));
44662306a36Sopenharmony_ci	if (ret < 0)
44762306a36Sopenharmony_ci		return ret;
44862306a36Sopenharmony_ci
44962306a36Sopenharmony_ci	buffer[AXIS_X] = bmc150_magn_compensate_x(&tregs, raw_x, rhall);
45062306a36Sopenharmony_ci	buffer[AXIS_Y] = bmc150_magn_compensate_y(&tregs, raw_y, rhall);
45162306a36Sopenharmony_ci	buffer[AXIS_Z] = bmc150_magn_compensate_z(&tregs, raw_z, rhall);
45262306a36Sopenharmony_ci
45362306a36Sopenharmony_ci	return 0;
45462306a36Sopenharmony_ci}
45562306a36Sopenharmony_ci
45662306a36Sopenharmony_cistatic int bmc150_magn_read_raw(struct iio_dev *indio_dev,
45762306a36Sopenharmony_ci				struct iio_chan_spec const *chan,
45862306a36Sopenharmony_ci				int *val, int *val2, long mask)
45962306a36Sopenharmony_ci{
46062306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
46162306a36Sopenharmony_ci	int ret, tmp;
46262306a36Sopenharmony_ci	s32 values[AXIS_XYZ_MAX];
46362306a36Sopenharmony_ci
46462306a36Sopenharmony_ci	switch (mask) {
46562306a36Sopenharmony_ci	case IIO_CHAN_INFO_RAW:
46662306a36Sopenharmony_ci		if (iio_buffer_enabled(indio_dev))
46762306a36Sopenharmony_ci			return -EBUSY;
46862306a36Sopenharmony_ci		mutex_lock(&data->mutex);
46962306a36Sopenharmony_ci
47062306a36Sopenharmony_ci		ret = bmc150_magn_set_power_state(data, true);
47162306a36Sopenharmony_ci		if (ret < 0) {
47262306a36Sopenharmony_ci			mutex_unlock(&data->mutex);
47362306a36Sopenharmony_ci			return ret;
47462306a36Sopenharmony_ci		}
47562306a36Sopenharmony_ci
47662306a36Sopenharmony_ci		ret = bmc150_magn_read_xyz(data, values);
47762306a36Sopenharmony_ci		if (ret < 0) {
47862306a36Sopenharmony_ci			bmc150_magn_set_power_state(data, false);
47962306a36Sopenharmony_ci			mutex_unlock(&data->mutex);
48062306a36Sopenharmony_ci			return ret;
48162306a36Sopenharmony_ci		}
48262306a36Sopenharmony_ci		*val = values[chan->scan_index];
48362306a36Sopenharmony_ci
48462306a36Sopenharmony_ci		ret = bmc150_magn_set_power_state(data, false);
48562306a36Sopenharmony_ci		if (ret < 0) {
48662306a36Sopenharmony_ci			mutex_unlock(&data->mutex);
48762306a36Sopenharmony_ci			return ret;
48862306a36Sopenharmony_ci		}
48962306a36Sopenharmony_ci
49062306a36Sopenharmony_ci		mutex_unlock(&data->mutex);
49162306a36Sopenharmony_ci		return IIO_VAL_INT;
49262306a36Sopenharmony_ci	case IIO_CHAN_INFO_SCALE:
49362306a36Sopenharmony_ci		/*
49462306a36Sopenharmony_ci		 * The API/driver performs an off-chip temperature
49562306a36Sopenharmony_ci		 * compensation and outputs x/y/z magnetic field data in
49662306a36Sopenharmony_ci		 * 16 LSB/uT to the upper application layer.
49762306a36Sopenharmony_ci		 */
49862306a36Sopenharmony_ci		*val = 0;
49962306a36Sopenharmony_ci		*val2 = 625;
50062306a36Sopenharmony_ci		return IIO_VAL_INT_PLUS_MICRO;
50162306a36Sopenharmony_ci	case IIO_CHAN_INFO_SAMP_FREQ:
50262306a36Sopenharmony_ci		ret = bmc150_magn_get_odr(data, val);
50362306a36Sopenharmony_ci		if (ret < 0)
50462306a36Sopenharmony_ci			return ret;
50562306a36Sopenharmony_ci		return IIO_VAL_INT;
50662306a36Sopenharmony_ci	case IIO_CHAN_INFO_OVERSAMPLING_RATIO:
50762306a36Sopenharmony_ci		switch (chan->channel2) {
50862306a36Sopenharmony_ci		case IIO_MOD_X:
50962306a36Sopenharmony_ci		case IIO_MOD_Y:
51062306a36Sopenharmony_ci			ret = regmap_read(data->regmap, BMC150_MAGN_REG_REP_XY,
51162306a36Sopenharmony_ci					  &tmp);
51262306a36Sopenharmony_ci			if (ret < 0)
51362306a36Sopenharmony_ci				return ret;
51462306a36Sopenharmony_ci			*val = BMC150_MAGN_REGVAL_TO_REPXY(tmp);
51562306a36Sopenharmony_ci			return IIO_VAL_INT;
51662306a36Sopenharmony_ci		case IIO_MOD_Z:
51762306a36Sopenharmony_ci			ret = regmap_read(data->regmap, BMC150_MAGN_REG_REP_Z,
51862306a36Sopenharmony_ci					  &tmp);
51962306a36Sopenharmony_ci			if (ret < 0)
52062306a36Sopenharmony_ci				return ret;
52162306a36Sopenharmony_ci			*val = BMC150_MAGN_REGVAL_TO_REPZ(tmp);
52262306a36Sopenharmony_ci			return IIO_VAL_INT;
52362306a36Sopenharmony_ci		default:
52462306a36Sopenharmony_ci			return -EINVAL;
52562306a36Sopenharmony_ci		}
52662306a36Sopenharmony_ci	default:
52762306a36Sopenharmony_ci		return -EINVAL;
52862306a36Sopenharmony_ci	}
52962306a36Sopenharmony_ci}
53062306a36Sopenharmony_ci
53162306a36Sopenharmony_cistatic int bmc150_magn_write_raw(struct iio_dev *indio_dev,
53262306a36Sopenharmony_ci				 struct iio_chan_spec const *chan,
53362306a36Sopenharmony_ci				 int val, int val2, long mask)
53462306a36Sopenharmony_ci{
53562306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
53662306a36Sopenharmony_ci	int ret;
53762306a36Sopenharmony_ci
53862306a36Sopenharmony_ci	switch (mask) {
53962306a36Sopenharmony_ci	case IIO_CHAN_INFO_SAMP_FREQ:
54062306a36Sopenharmony_ci		if (val > data->max_odr)
54162306a36Sopenharmony_ci			return -EINVAL;
54262306a36Sopenharmony_ci		mutex_lock(&data->mutex);
54362306a36Sopenharmony_ci		ret = bmc150_magn_set_odr(data, val);
54462306a36Sopenharmony_ci		mutex_unlock(&data->mutex);
54562306a36Sopenharmony_ci		return ret;
54662306a36Sopenharmony_ci	case IIO_CHAN_INFO_OVERSAMPLING_RATIO:
54762306a36Sopenharmony_ci		switch (chan->channel2) {
54862306a36Sopenharmony_ci		case IIO_MOD_X:
54962306a36Sopenharmony_ci		case IIO_MOD_Y:
55062306a36Sopenharmony_ci			if (val < 1 || val > 511)
55162306a36Sopenharmony_ci				return -EINVAL;
55262306a36Sopenharmony_ci			mutex_lock(&data->mutex);
55362306a36Sopenharmony_ci			ret = bmc150_magn_set_max_odr(data, val, 0, 0);
55462306a36Sopenharmony_ci			if (ret < 0) {
55562306a36Sopenharmony_ci				mutex_unlock(&data->mutex);
55662306a36Sopenharmony_ci				return ret;
55762306a36Sopenharmony_ci			}
55862306a36Sopenharmony_ci			ret = regmap_update_bits(data->regmap,
55962306a36Sopenharmony_ci						 BMC150_MAGN_REG_REP_XY,
56062306a36Sopenharmony_ci						 BMC150_MAGN_REG_REP_DATAMASK,
56162306a36Sopenharmony_ci						 BMC150_MAGN_REPXY_TO_REGVAL
56262306a36Sopenharmony_ci						 (val));
56362306a36Sopenharmony_ci			mutex_unlock(&data->mutex);
56462306a36Sopenharmony_ci			return ret;
56562306a36Sopenharmony_ci		case IIO_MOD_Z:
56662306a36Sopenharmony_ci			if (val < 1 || val > 256)
56762306a36Sopenharmony_ci				return -EINVAL;
56862306a36Sopenharmony_ci			mutex_lock(&data->mutex);
56962306a36Sopenharmony_ci			ret = bmc150_magn_set_max_odr(data, 0, val, 0);
57062306a36Sopenharmony_ci			if (ret < 0) {
57162306a36Sopenharmony_ci				mutex_unlock(&data->mutex);
57262306a36Sopenharmony_ci				return ret;
57362306a36Sopenharmony_ci			}
57462306a36Sopenharmony_ci			ret = regmap_update_bits(data->regmap,
57562306a36Sopenharmony_ci						 BMC150_MAGN_REG_REP_Z,
57662306a36Sopenharmony_ci						 BMC150_MAGN_REG_REP_DATAMASK,
57762306a36Sopenharmony_ci						 BMC150_MAGN_REPZ_TO_REGVAL
57862306a36Sopenharmony_ci						 (val));
57962306a36Sopenharmony_ci			mutex_unlock(&data->mutex);
58062306a36Sopenharmony_ci			return ret;
58162306a36Sopenharmony_ci		default:
58262306a36Sopenharmony_ci			return -EINVAL;
58362306a36Sopenharmony_ci		}
58462306a36Sopenharmony_ci	default:
58562306a36Sopenharmony_ci		return -EINVAL;
58662306a36Sopenharmony_ci	}
58762306a36Sopenharmony_ci}
58862306a36Sopenharmony_ci
58962306a36Sopenharmony_cistatic ssize_t bmc150_magn_show_samp_freq_avail(struct device *dev,
59062306a36Sopenharmony_ci						struct device_attribute *attr,
59162306a36Sopenharmony_ci						char *buf)
59262306a36Sopenharmony_ci{
59362306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_to_iio_dev(dev);
59462306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
59562306a36Sopenharmony_ci	size_t len = 0;
59662306a36Sopenharmony_ci	u8 i;
59762306a36Sopenharmony_ci
59862306a36Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(bmc150_magn_samp_freq_table); i++) {
59962306a36Sopenharmony_ci		if (bmc150_magn_samp_freq_table[i].freq > data->max_odr)
60062306a36Sopenharmony_ci			break;
60162306a36Sopenharmony_ci		len += scnprintf(buf + len, PAGE_SIZE - len, "%d ",
60262306a36Sopenharmony_ci				 bmc150_magn_samp_freq_table[i].freq);
60362306a36Sopenharmony_ci	}
60462306a36Sopenharmony_ci	/* replace last space with a newline */
60562306a36Sopenharmony_ci	buf[len - 1] = '\n';
60662306a36Sopenharmony_ci
60762306a36Sopenharmony_ci	return len;
60862306a36Sopenharmony_ci}
60962306a36Sopenharmony_ci
61062306a36Sopenharmony_cistatic const struct iio_mount_matrix *
61162306a36Sopenharmony_cibmc150_magn_get_mount_matrix(const struct iio_dev *indio_dev,
61262306a36Sopenharmony_ci			      const struct iio_chan_spec *chan)
61362306a36Sopenharmony_ci{
61462306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
61562306a36Sopenharmony_ci
61662306a36Sopenharmony_ci	return &data->orientation;
61762306a36Sopenharmony_ci}
61862306a36Sopenharmony_ci
61962306a36Sopenharmony_cistatic const struct iio_chan_spec_ext_info bmc150_magn_ext_info[] = {
62062306a36Sopenharmony_ci	IIO_MOUNT_MATRIX(IIO_SHARED_BY_DIR, bmc150_magn_get_mount_matrix),
62162306a36Sopenharmony_ci	{ }
62262306a36Sopenharmony_ci};
62362306a36Sopenharmony_ci
62462306a36Sopenharmony_cistatic IIO_DEV_ATTR_SAMP_FREQ_AVAIL(bmc150_magn_show_samp_freq_avail);
62562306a36Sopenharmony_ci
62662306a36Sopenharmony_cistatic struct attribute *bmc150_magn_attributes[] = {
62762306a36Sopenharmony_ci	&iio_dev_attr_sampling_frequency_available.dev_attr.attr,
62862306a36Sopenharmony_ci	NULL,
62962306a36Sopenharmony_ci};
63062306a36Sopenharmony_ci
63162306a36Sopenharmony_cistatic const struct attribute_group bmc150_magn_attrs_group = {
63262306a36Sopenharmony_ci	.attrs = bmc150_magn_attributes,
63362306a36Sopenharmony_ci};
63462306a36Sopenharmony_ci
63562306a36Sopenharmony_ci#define BMC150_MAGN_CHANNEL(_axis) {					\
63662306a36Sopenharmony_ci	.type = IIO_MAGN,						\
63762306a36Sopenharmony_ci	.modified = 1,							\
63862306a36Sopenharmony_ci	.channel2 = IIO_MOD_##_axis,					\
63962306a36Sopenharmony_ci	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |			\
64062306a36Sopenharmony_ci			      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),	\
64162306a36Sopenharmony_ci	.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SAMP_FREQ) |	\
64262306a36Sopenharmony_ci				    BIT(IIO_CHAN_INFO_SCALE),		\
64362306a36Sopenharmony_ci	.scan_index = AXIS_##_axis,					\
64462306a36Sopenharmony_ci	.scan_type = {							\
64562306a36Sopenharmony_ci		.sign = 's',						\
64662306a36Sopenharmony_ci		.realbits = 32,						\
64762306a36Sopenharmony_ci		.storagebits = 32,					\
64862306a36Sopenharmony_ci		.endianness = IIO_LE					\
64962306a36Sopenharmony_ci	},								\
65062306a36Sopenharmony_ci	.ext_info = bmc150_magn_ext_info,				\
65162306a36Sopenharmony_ci}
65262306a36Sopenharmony_ci
65362306a36Sopenharmony_cistatic const struct iio_chan_spec bmc150_magn_channels[] = {
65462306a36Sopenharmony_ci	BMC150_MAGN_CHANNEL(X),
65562306a36Sopenharmony_ci	BMC150_MAGN_CHANNEL(Y),
65662306a36Sopenharmony_ci	BMC150_MAGN_CHANNEL(Z),
65762306a36Sopenharmony_ci	IIO_CHAN_SOFT_TIMESTAMP(3),
65862306a36Sopenharmony_ci};
65962306a36Sopenharmony_ci
66062306a36Sopenharmony_cistatic const struct iio_info bmc150_magn_info = {
66162306a36Sopenharmony_ci	.attrs = &bmc150_magn_attrs_group,
66262306a36Sopenharmony_ci	.read_raw = bmc150_magn_read_raw,
66362306a36Sopenharmony_ci	.write_raw = bmc150_magn_write_raw,
66462306a36Sopenharmony_ci};
66562306a36Sopenharmony_ci
66662306a36Sopenharmony_cistatic const unsigned long bmc150_magn_scan_masks[] = {
66762306a36Sopenharmony_ci					BIT(AXIS_X) | BIT(AXIS_Y) | BIT(AXIS_Z),
66862306a36Sopenharmony_ci					0};
66962306a36Sopenharmony_ci
67062306a36Sopenharmony_cistatic irqreturn_t bmc150_magn_trigger_handler(int irq, void *p)
67162306a36Sopenharmony_ci{
67262306a36Sopenharmony_ci	struct iio_poll_func *pf = p;
67362306a36Sopenharmony_ci	struct iio_dev *indio_dev = pf->indio_dev;
67462306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
67562306a36Sopenharmony_ci	int ret;
67662306a36Sopenharmony_ci
67762306a36Sopenharmony_ci	mutex_lock(&data->mutex);
67862306a36Sopenharmony_ci	ret = bmc150_magn_read_xyz(data, data->scan.chans);
67962306a36Sopenharmony_ci	if (ret < 0)
68062306a36Sopenharmony_ci		goto err;
68162306a36Sopenharmony_ci
68262306a36Sopenharmony_ci	iio_push_to_buffers_with_timestamp(indio_dev, &data->scan,
68362306a36Sopenharmony_ci					   pf->timestamp);
68462306a36Sopenharmony_ci
68562306a36Sopenharmony_cierr:
68662306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
68762306a36Sopenharmony_ci	iio_trigger_notify_done(indio_dev->trig);
68862306a36Sopenharmony_ci
68962306a36Sopenharmony_ci	return IRQ_HANDLED;
69062306a36Sopenharmony_ci}
69162306a36Sopenharmony_ci
69262306a36Sopenharmony_cistatic int bmc150_magn_init(struct bmc150_magn_data *data)
69362306a36Sopenharmony_ci{
69462306a36Sopenharmony_ci	int ret, chip_id;
69562306a36Sopenharmony_ci	struct bmc150_magn_preset preset;
69662306a36Sopenharmony_ci
69762306a36Sopenharmony_ci	ret = regulator_bulk_enable(ARRAY_SIZE(data->regulators),
69862306a36Sopenharmony_ci				    data->regulators);
69962306a36Sopenharmony_ci	if (ret < 0) {
70062306a36Sopenharmony_ci		dev_err(data->dev, "Failed to enable regulators: %d\n", ret);
70162306a36Sopenharmony_ci		return ret;
70262306a36Sopenharmony_ci	}
70362306a36Sopenharmony_ci	/*
70462306a36Sopenharmony_ci	 * 3ms power-on time according to datasheet, let's better
70562306a36Sopenharmony_ci	 * be safe than sorry and set this delay to 5ms.
70662306a36Sopenharmony_ci	 */
70762306a36Sopenharmony_ci	msleep(5);
70862306a36Sopenharmony_ci
70962306a36Sopenharmony_ci	ret = bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SUSPEND,
71062306a36Sopenharmony_ci					 false);
71162306a36Sopenharmony_ci	if (ret < 0) {
71262306a36Sopenharmony_ci		dev_err(data->dev,
71362306a36Sopenharmony_ci			"Failed to bring up device from suspend mode\n");
71462306a36Sopenharmony_ci		goto err_regulator_disable;
71562306a36Sopenharmony_ci	}
71662306a36Sopenharmony_ci
71762306a36Sopenharmony_ci	ret = regmap_read(data->regmap, BMC150_MAGN_REG_CHIP_ID, &chip_id);
71862306a36Sopenharmony_ci	if (ret < 0) {
71962306a36Sopenharmony_ci		dev_err(data->dev, "Failed reading chip id\n");
72062306a36Sopenharmony_ci		goto err_poweroff;
72162306a36Sopenharmony_ci	}
72262306a36Sopenharmony_ci	if (chip_id != BMC150_MAGN_CHIP_ID_VAL) {
72362306a36Sopenharmony_ci		dev_err(data->dev, "Invalid chip id 0x%x\n", chip_id);
72462306a36Sopenharmony_ci		ret = -ENODEV;
72562306a36Sopenharmony_ci		goto err_poweroff;
72662306a36Sopenharmony_ci	}
72762306a36Sopenharmony_ci	dev_dbg(data->dev, "Chip id %x\n", chip_id);
72862306a36Sopenharmony_ci
72962306a36Sopenharmony_ci	preset = bmc150_magn_presets_table[BMC150_MAGN_DEFAULT_PRESET];
73062306a36Sopenharmony_ci	ret = bmc150_magn_set_odr(data, preset.odr);
73162306a36Sopenharmony_ci	if (ret < 0) {
73262306a36Sopenharmony_ci		dev_err(data->dev, "Failed to set ODR to %d\n",
73362306a36Sopenharmony_ci			preset.odr);
73462306a36Sopenharmony_ci		goto err_poweroff;
73562306a36Sopenharmony_ci	}
73662306a36Sopenharmony_ci
73762306a36Sopenharmony_ci	ret = regmap_write(data->regmap, BMC150_MAGN_REG_REP_XY,
73862306a36Sopenharmony_ci			   BMC150_MAGN_REPXY_TO_REGVAL(preset.rep_xy));
73962306a36Sopenharmony_ci	if (ret < 0) {
74062306a36Sopenharmony_ci		dev_err(data->dev, "Failed to set REP XY to %d\n",
74162306a36Sopenharmony_ci			preset.rep_xy);
74262306a36Sopenharmony_ci		goto err_poweroff;
74362306a36Sopenharmony_ci	}
74462306a36Sopenharmony_ci
74562306a36Sopenharmony_ci	ret = regmap_write(data->regmap, BMC150_MAGN_REG_REP_Z,
74662306a36Sopenharmony_ci			   BMC150_MAGN_REPZ_TO_REGVAL(preset.rep_z));
74762306a36Sopenharmony_ci	if (ret < 0) {
74862306a36Sopenharmony_ci		dev_err(data->dev, "Failed to set REP Z to %d\n",
74962306a36Sopenharmony_ci			preset.rep_z);
75062306a36Sopenharmony_ci		goto err_poweroff;
75162306a36Sopenharmony_ci	}
75262306a36Sopenharmony_ci
75362306a36Sopenharmony_ci	ret = bmc150_magn_set_max_odr(data, preset.rep_xy, preset.rep_z,
75462306a36Sopenharmony_ci				      preset.odr);
75562306a36Sopenharmony_ci	if (ret < 0)
75662306a36Sopenharmony_ci		goto err_poweroff;
75762306a36Sopenharmony_ci
75862306a36Sopenharmony_ci	ret = bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_NORMAL,
75962306a36Sopenharmony_ci					 true);
76062306a36Sopenharmony_ci	if (ret < 0) {
76162306a36Sopenharmony_ci		dev_err(data->dev, "Failed to power on device\n");
76262306a36Sopenharmony_ci		goto err_poweroff;
76362306a36Sopenharmony_ci	}
76462306a36Sopenharmony_ci
76562306a36Sopenharmony_ci	return 0;
76662306a36Sopenharmony_ci
76762306a36Sopenharmony_cierr_poweroff:
76862306a36Sopenharmony_ci	bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SUSPEND, true);
76962306a36Sopenharmony_cierr_regulator_disable:
77062306a36Sopenharmony_ci	regulator_bulk_disable(ARRAY_SIZE(data->regulators), data->regulators);
77162306a36Sopenharmony_ci	return ret;
77262306a36Sopenharmony_ci}
77362306a36Sopenharmony_ci
77462306a36Sopenharmony_cistatic int bmc150_magn_reset_intr(struct bmc150_magn_data *data)
77562306a36Sopenharmony_ci{
77662306a36Sopenharmony_ci	int tmp;
77762306a36Sopenharmony_ci
77862306a36Sopenharmony_ci	/*
77962306a36Sopenharmony_ci	 * Data Ready (DRDY) is always cleared after
78062306a36Sopenharmony_ci	 * readout of data registers ends.
78162306a36Sopenharmony_ci	 */
78262306a36Sopenharmony_ci	return regmap_read(data->regmap, BMC150_MAGN_REG_X_L, &tmp);
78362306a36Sopenharmony_ci}
78462306a36Sopenharmony_ci
78562306a36Sopenharmony_cistatic void bmc150_magn_trig_reen(struct iio_trigger *trig)
78662306a36Sopenharmony_ci{
78762306a36Sopenharmony_ci	struct iio_dev *indio_dev = iio_trigger_get_drvdata(trig);
78862306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
78962306a36Sopenharmony_ci	int ret;
79062306a36Sopenharmony_ci
79162306a36Sopenharmony_ci	if (!data->dready_trigger_on)
79262306a36Sopenharmony_ci		return;
79362306a36Sopenharmony_ci
79462306a36Sopenharmony_ci	mutex_lock(&data->mutex);
79562306a36Sopenharmony_ci	ret = bmc150_magn_reset_intr(data);
79662306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
79762306a36Sopenharmony_ci	if (ret)
79862306a36Sopenharmony_ci		dev_err(data->dev, "Failed to reset interrupt\n");
79962306a36Sopenharmony_ci}
80062306a36Sopenharmony_ci
80162306a36Sopenharmony_cistatic int bmc150_magn_data_rdy_trigger_set_state(struct iio_trigger *trig,
80262306a36Sopenharmony_ci						  bool state)
80362306a36Sopenharmony_ci{
80462306a36Sopenharmony_ci	struct iio_dev *indio_dev = iio_trigger_get_drvdata(trig);
80562306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
80662306a36Sopenharmony_ci	int ret = 0;
80762306a36Sopenharmony_ci
80862306a36Sopenharmony_ci	mutex_lock(&data->mutex);
80962306a36Sopenharmony_ci	if (state == data->dready_trigger_on)
81062306a36Sopenharmony_ci		goto err_unlock;
81162306a36Sopenharmony_ci
81262306a36Sopenharmony_ci	ret = regmap_update_bits(data->regmap, BMC150_MAGN_REG_INT_DRDY,
81362306a36Sopenharmony_ci				 BMC150_MAGN_MASK_DRDY_EN,
81462306a36Sopenharmony_ci				 state << BMC150_MAGN_SHIFT_DRDY_EN);
81562306a36Sopenharmony_ci	if (ret < 0)
81662306a36Sopenharmony_ci		goto err_unlock;
81762306a36Sopenharmony_ci
81862306a36Sopenharmony_ci	data->dready_trigger_on = state;
81962306a36Sopenharmony_ci
82062306a36Sopenharmony_ci	if (state) {
82162306a36Sopenharmony_ci		ret = bmc150_magn_reset_intr(data);
82262306a36Sopenharmony_ci		if (ret < 0)
82362306a36Sopenharmony_ci			goto err_unlock;
82462306a36Sopenharmony_ci	}
82562306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
82662306a36Sopenharmony_ci
82762306a36Sopenharmony_ci	return 0;
82862306a36Sopenharmony_ci
82962306a36Sopenharmony_cierr_unlock:
83062306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
83162306a36Sopenharmony_ci	return ret;
83262306a36Sopenharmony_ci}
83362306a36Sopenharmony_ci
83462306a36Sopenharmony_cistatic const struct iio_trigger_ops bmc150_magn_trigger_ops = {
83562306a36Sopenharmony_ci	.set_trigger_state = bmc150_magn_data_rdy_trigger_set_state,
83662306a36Sopenharmony_ci	.reenable = bmc150_magn_trig_reen,
83762306a36Sopenharmony_ci};
83862306a36Sopenharmony_ci
83962306a36Sopenharmony_cistatic int bmc150_magn_buffer_preenable(struct iio_dev *indio_dev)
84062306a36Sopenharmony_ci{
84162306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
84262306a36Sopenharmony_ci
84362306a36Sopenharmony_ci	return bmc150_magn_set_power_state(data, true);
84462306a36Sopenharmony_ci}
84562306a36Sopenharmony_ci
84662306a36Sopenharmony_cistatic int bmc150_magn_buffer_postdisable(struct iio_dev *indio_dev)
84762306a36Sopenharmony_ci{
84862306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
84962306a36Sopenharmony_ci
85062306a36Sopenharmony_ci	return bmc150_magn_set_power_state(data, false);
85162306a36Sopenharmony_ci}
85262306a36Sopenharmony_ci
85362306a36Sopenharmony_cistatic const struct iio_buffer_setup_ops bmc150_magn_buffer_setup_ops = {
85462306a36Sopenharmony_ci	.preenable = bmc150_magn_buffer_preenable,
85562306a36Sopenharmony_ci	.postdisable = bmc150_magn_buffer_postdisable,
85662306a36Sopenharmony_ci};
85762306a36Sopenharmony_ci
85862306a36Sopenharmony_cistatic const char *bmc150_magn_match_acpi_device(struct device *dev)
85962306a36Sopenharmony_ci{
86062306a36Sopenharmony_ci	const struct acpi_device_id *id;
86162306a36Sopenharmony_ci
86262306a36Sopenharmony_ci	id = acpi_match_device(dev->driver->acpi_match_table, dev);
86362306a36Sopenharmony_ci	if (!id)
86462306a36Sopenharmony_ci		return NULL;
86562306a36Sopenharmony_ci
86662306a36Sopenharmony_ci	return dev_name(dev);
86762306a36Sopenharmony_ci}
86862306a36Sopenharmony_ci
86962306a36Sopenharmony_ciint bmc150_magn_probe(struct device *dev, struct regmap *regmap,
87062306a36Sopenharmony_ci		      int irq, const char *name)
87162306a36Sopenharmony_ci{
87262306a36Sopenharmony_ci	struct bmc150_magn_data *data;
87362306a36Sopenharmony_ci	struct iio_dev *indio_dev;
87462306a36Sopenharmony_ci	int ret;
87562306a36Sopenharmony_ci
87662306a36Sopenharmony_ci	indio_dev = devm_iio_device_alloc(dev, sizeof(*data));
87762306a36Sopenharmony_ci	if (!indio_dev)
87862306a36Sopenharmony_ci		return -ENOMEM;
87962306a36Sopenharmony_ci
88062306a36Sopenharmony_ci	data = iio_priv(indio_dev);
88162306a36Sopenharmony_ci	dev_set_drvdata(dev, indio_dev);
88262306a36Sopenharmony_ci	data->regmap = regmap;
88362306a36Sopenharmony_ci	data->irq = irq;
88462306a36Sopenharmony_ci	data->dev = dev;
88562306a36Sopenharmony_ci
88662306a36Sopenharmony_ci	data->regulators[0].supply = "vdd";
88762306a36Sopenharmony_ci	data->regulators[1].supply = "vddio";
88862306a36Sopenharmony_ci	ret = devm_regulator_bulk_get(dev, ARRAY_SIZE(data->regulators),
88962306a36Sopenharmony_ci				      data->regulators);
89062306a36Sopenharmony_ci	if (ret)
89162306a36Sopenharmony_ci		return dev_err_probe(dev, ret, "failed to get regulators\n");
89262306a36Sopenharmony_ci
89362306a36Sopenharmony_ci	ret = iio_read_mount_matrix(dev, &data->orientation);
89462306a36Sopenharmony_ci	if (ret)
89562306a36Sopenharmony_ci		return ret;
89662306a36Sopenharmony_ci
89762306a36Sopenharmony_ci	if (!name && ACPI_HANDLE(dev))
89862306a36Sopenharmony_ci		name = bmc150_magn_match_acpi_device(dev);
89962306a36Sopenharmony_ci
90062306a36Sopenharmony_ci	mutex_init(&data->mutex);
90162306a36Sopenharmony_ci
90262306a36Sopenharmony_ci	ret = bmc150_magn_init(data);
90362306a36Sopenharmony_ci	if (ret < 0)
90462306a36Sopenharmony_ci		return ret;
90562306a36Sopenharmony_ci
90662306a36Sopenharmony_ci	indio_dev->channels = bmc150_magn_channels;
90762306a36Sopenharmony_ci	indio_dev->num_channels = ARRAY_SIZE(bmc150_magn_channels);
90862306a36Sopenharmony_ci	indio_dev->available_scan_masks = bmc150_magn_scan_masks;
90962306a36Sopenharmony_ci	indio_dev->name = name;
91062306a36Sopenharmony_ci	indio_dev->modes = INDIO_DIRECT_MODE;
91162306a36Sopenharmony_ci	indio_dev->info = &bmc150_magn_info;
91262306a36Sopenharmony_ci
91362306a36Sopenharmony_ci	if (irq > 0) {
91462306a36Sopenharmony_ci		data->dready_trig = devm_iio_trigger_alloc(dev,
91562306a36Sopenharmony_ci							   "%s-dev%d",
91662306a36Sopenharmony_ci							   indio_dev->name,
91762306a36Sopenharmony_ci							   iio_device_id(indio_dev));
91862306a36Sopenharmony_ci		if (!data->dready_trig) {
91962306a36Sopenharmony_ci			ret = -ENOMEM;
92062306a36Sopenharmony_ci			dev_err(dev, "iio trigger alloc failed\n");
92162306a36Sopenharmony_ci			goto err_poweroff;
92262306a36Sopenharmony_ci		}
92362306a36Sopenharmony_ci
92462306a36Sopenharmony_ci		data->dready_trig->ops = &bmc150_magn_trigger_ops;
92562306a36Sopenharmony_ci		iio_trigger_set_drvdata(data->dready_trig, indio_dev);
92662306a36Sopenharmony_ci		ret = iio_trigger_register(data->dready_trig);
92762306a36Sopenharmony_ci		if (ret) {
92862306a36Sopenharmony_ci			dev_err(dev, "iio trigger register failed\n");
92962306a36Sopenharmony_ci			goto err_poweroff;
93062306a36Sopenharmony_ci		}
93162306a36Sopenharmony_ci
93262306a36Sopenharmony_ci		ret = request_threaded_irq(irq,
93362306a36Sopenharmony_ci					   iio_trigger_generic_data_rdy_poll,
93462306a36Sopenharmony_ci					   NULL,
93562306a36Sopenharmony_ci					   IRQF_TRIGGER_RISING | IRQF_ONESHOT,
93662306a36Sopenharmony_ci					   BMC150_MAGN_IRQ_NAME,
93762306a36Sopenharmony_ci					   data->dready_trig);
93862306a36Sopenharmony_ci		if (ret < 0) {
93962306a36Sopenharmony_ci			dev_err(dev, "request irq %d failed\n", irq);
94062306a36Sopenharmony_ci			goto err_trigger_unregister;
94162306a36Sopenharmony_ci		}
94262306a36Sopenharmony_ci	}
94362306a36Sopenharmony_ci
94462306a36Sopenharmony_ci	ret = iio_triggered_buffer_setup(indio_dev,
94562306a36Sopenharmony_ci					 iio_pollfunc_store_time,
94662306a36Sopenharmony_ci					 bmc150_magn_trigger_handler,
94762306a36Sopenharmony_ci					 &bmc150_magn_buffer_setup_ops);
94862306a36Sopenharmony_ci	if (ret < 0) {
94962306a36Sopenharmony_ci		dev_err(dev, "iio triggered buffer setup failed\n");
95062306a36Sopenharmony_ci		goto err_free_irq;
95162306a36Sopenharmony_ci	}
95262306a36Sopenharmony_ci
95362306a36Sopenharmony_ci	ret = pm_runtime_set_active(dev);
95462306a36Sopenharmony_ci	if (ret)
95562306a36Sopenharmony_ci		goto err_buffer_cleanup;
95662306a36Sopenharmony_ci
95762306a36Sopenharmony_ci	pm_runtime_enable(dev);
95862306a36Sopenharmony_ci	pm_runtime_set_autosuspend_delay(dev,
95962306a36Sopenharmony_ci					 BMC150_MAGN_AUTO_SUSPEND_DELAY_MS);
96062306a36Sopenharmony_ci	pm_runtime_use_autosuspend(dev);
96162306a36Sopenharmony_ci
96262306a36Sopenharmony_ci	ret = iio_device_register(indio_dev);
96362306a36Sopenharmony_ci	if (ret < 0) {
96462306a36Sopenharmony_ci		dev_err(dev, "unable to register iio device\n");
96562306a36Sopenharmony_ci		goto err_pm_cleanup;
96662306a36Sopenharmony_ci	}
96762306a36Sopenharmony_ci
96862306a36Sopenharmony_ci	dev_dbg(dev, "Registered device %s\n", name);
96962306a36Sopenharmony_ci	return 0;
97062306a36Sopenharmony_ci
97162306a36Sopenharmony_cierr_pm_cleanup:
97262306a36Sopenharmony_ci	pm_runtime_dont_use_autosuspend(dev);
97362306a36Sopenharmony_ci	pm_runtime_disable(dev);
97462306a36Sopenharmony_cierr_buffer_cleanup:
97562306a36Sopenharmony_ci	iio_triggered_buffer_cleanup(indio_dev);
97662306a36Sopenharmony_cierr_free_irq:
97762306a36Sopenharmony_ci	if (irq > 0)
97862306a36Sopenharmony_ci		free_irq(irq, data->dready_trig);
97962306a36Sopenharmony_cierr_trigger_unregister:
98062306a36Sopenharmony_ci	if (data->dready_trig)
98162306a36Sopenharmony_ci		iio_trigger_unregister(data->dready_trig);
98262306a36Sopenharmony_cierr_poweroff:
98362306a36Sopenharmony_ci	bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SUSPEND, true);
98462306a36Sopenharmony_ci	return ret;
98562306a36Sopenharmony_ci}
98662306a36Sopenharmony_ciEXPORT_SYMBOL_NS(bmc150_magn_probe, IIO_BMC150_MAGN);
98762306a36Sopenharmony_ci
98862306a36Sopenharmony_civoid bmc150_magn_remove(struct device *dev)
98962306a36Sopenharmony_ci{
99062306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_get_drvdata(dev);
99162306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
99262306a36Sopenharmony_ci
99362306a36Sopenharmony_ci	iio_device_unregister(indio_dev);
99462306a36Sopenharmony_ci
99562306a36Sopenharmony_ci	pm_runtime_disable(dev);
99662306a36Sopenharmony_ci	pm_runtime_set_suspended(dev);
99762306a36Sopenharmony_ci
99862306a36Sopenharmony_ci	iio_triggered_buffer_cleanup(indio_dev);
99962306a36Sopenharmony_ci
100062306a36Sopenharmony_ci	if (data->irq > 0)
100162306a36Sopenharmony_ci		free_irq(data->irq, data->dready_trig);
100262306a36Sopenharmony_ci
100362306a36Sopenharmony_ci	if (data->dready_trig)
100462306a36Sopenharmony_ci		iio_trigger_unregister(data->dready_trig);
100562306a36Sopenharmony_ci
100662306a36Sopenharmony_ci	mutex_lock(&data->mutex);
100762306a36Sopenharmony_ci	bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SUSPEND, true);
100862306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
100962306a36Sopenharmony_ci
101062306a36Sopenharmony_ci	regulator_bulk_disable(ARRAY_SIZE(data->regulators), data->regulators);
101162306a36Sopenharmony_ci}
101262306a36Sopenharmony_ciEXPORT_SYMBOL_NS(bmc150_magn_remove, IIO_BMC150_MAGN);
101362306a36Sopenharmony_ci
101462306a36Sopenharmony_ci#ifdef CONFIG_PM
101562306a36Sopenharmony_cistatic int bmc150_magn_runtime_suspend(struct device *dev)
101662306a36Sopenharmony_ci{
101762306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_get_drvdata(dev);
101862306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
101962306a36Sopenharmony_ci	int ret;
102062306a36Sopenharmony_ci
102162306a36Sopenharmony_ci	mutex_lock(&data->mutex);
102262306a36Sopenharmony_ci	ret = bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SLEEP,
102362306a36Sopenharmony_ci					 true);
102462306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
102562306a36Sopenharmony_ci	if (ret < 0) {
102662306a36Sopenharmony_ci		dev_err(dev, "powering off device failed\n");
102762306a36Sopenharmony_ci		return ret;
102862306a36Sopenharmony_ci	}
102962306a36Sopenharmony_ci	return 0;
103062306a36Sopenharmony_ci}
103162306a36Sopenharmony_ci
103262306a36Sopenharmony_ci/*
103362306a36Sopenharmony_ci * Should be called with data->mutex held.
103462306a36Sopenharmony_ci */
103562306a36Sopenharmony_cistatic int bmc150_magn_runtime_resume(struct device *dev)
103662306a36Sopenharmony_ci{
103762306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_get_drvdata(dev);
103862306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
103962306a36Sopenharmony_ci
104062306a36Sopenharmony_ci	return bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_NORMAL,
104162306a36Sopenharmony_ci					  true);
104262306a36Sopenharmony_ci}
104362306a36Sopenharmony_ci#endif
104462306a36Sopenharmony_ci
104562306a36Sopenharmony_ci#ifdef CONFIG_PM_SLEEP
104662306a36Sopenharmony_cistatic int bmc150_magn_suspend(struct device *dev)
104762306a36Sopenharmony_ci{
104862306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_get_drvdata(dev);
104962306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
105062306a36Sopenharmony_ci	int ret;
105162306a36Sopenharmony_ci
105262306a36Sopenharmony_ci	mutex_lock(&data->mutex);
105362306a36Sopenharmony_ci	ret = bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_SLEEP,
105462306a36Sopenharmony_ci					 true);
105562306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
105662306a36Sopenharmony_ci
105762306a36Sopenharmony_ci	return ret;
105862306a36Sopenharmony_ci}
105962306a36Sopenharmony_ci
106062306a36Sopenharmony_cistatic int bmc150_magn_resume(struct device *dev)
106162306a36Sopenharmony_ci{
106262306a36Sopenharmony_ci	struct iio_dev *indio_dev = dev_get_drvdata(dev);
106362306a36Sopenharmony_ci	struct bmc150_magn_data *data = iio_priv(indio_dev);
106462306a36Sopenharmony_ci	int ret;
106562306a36Sopenharmony_ci
106662306a36Sopenharmony_ci	mutex_lock(&data->mutex);
106762306a36Sopenharmony_ci	ret = bmc150_magn_set_power_mode(data, BMC150_MAGN_POWER_MODE_NORMAL,
106862306a36Sopenharmony_ci					 true);
106962306a36Sopenharmony_ci	mutex_unlock(&data->mutex);
107062306a36Sopenharmony_ci
107162306a36Sopenharmony_ci	return ret;
107262306a36Sopenharmony_ci}
107362306a36Sopenharmony_ci#endif
107462306a36Sopenharmony_ci
107562306a36Sopenharmony_ciconst struct dev_pm_ops bmc150_magn_pm_ops = {
107662306a36Sopenharmony_ci	SET_SYSTEM_SLEEP_PM_OPS(bmc150_magn_suspend, bmc150_magn_resume)
107762306a36Sopenharmony_ci	SET_RUNTIME_PM_OPS(bmc150_magn_runtime_suspend,
107862306a36Sopenharmony_ci			   bmc150_magn_runtime_resume, NULL)
107962306a36Sopenharmony_ci};
108062306a36Sopenharmony_ciEXPORT_SYMBOL_NS(bmc150_magn_pm_ops, IIO_BMC150_MAGN);
108162306a36Sopenharmony_ci
108262306a36Sopenharmony_ciMODULE_AUTHOR("Irina Tirdea <irina.tirdea@intel.com>");
108362306a36Sopenharmony_ciMODULE_LICENSE("GPL v2");
108462306a36Sopenharmony_ciMODULE_DESCRIPTION("BMC150 magnetometer core driver");
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