xref: /openbmc/linux/drivers/iio/pressure/bmp280-core.c (revision fac59652993f075d57860769c99045b3ca18780d)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
214e8015fSLinus Walleij /*
3b26b4e91SLinus Walleij  * Copyright (c) 2010 Christoph Mair <christoph.mair@gmail.com>
4b26b4e91SLinus Walleij  * Copyright (c) 2012 Bosch Sensortec GmbH
5b26b4e91SLinus Walleij  * Copyright (c) 2012 Unixphere AB
614e8015fSLinus Walleij  * Copyright (c) 2014 Intel Corporation
7b26b4e91SLinus Walleij  * Copyright (c) 2016 Linus Walleij <linus.walleij@linaro.org>
814e8015fSLinus Walleij  *
914e8015fSLinus Walleij  * Driver for Bosch Sensortec BMP180 and BMP280 digital pressure sensor.
1014e8015fSLinus Walleij  *
1114e8015fSLinus Walleij  * Datasheet:
125d5129b1SAngel Iglesias  * https://cdn-shop.adafruit.com/datasheets/BST-BMP180-DS000-09.pdf
135d5129b1SAngel Iglesias  * https://www.bosch-sensortec.com/media/boschsensortec/downloads/datasheets/bst-bmp280-ds001.pdf
145d5129b1SAngel Iglesias  * https://www.bosch-sensortec.com/media/boschsensortec/downloads/datasheets/bst-bme280-ds002.pdf
158d329309SAngel Iglesias  * https://www.bosch-sensortec.com/media/boschsensortec/downloads/datasheets/bst-bmp388-ds001.pdf
16597dfb2aSAngel Iglesias  * https://www.bosch-sensortec.com/media/boschsensortec/downloads/datasheets/bst-bmp581-ds004.pdf
175d5129b1SAngel Iglesias  *
185d5129b1SAngel Iglesias  * Notice:
195d5129b1SAngel Iglesias  * The link to the bmp180 datasheet points to an outdated version missing these changes:
205d5129b1SAngel Iglesias  * - Changed document referral from ANP015 to BST-MPS-AN004-00 on page 26
215d5129b1SAngel Iglesias  * - Updated equation for B3 param on section 3.5 to ((((long)AC1 * 4 + X3) << oss) + 2) / 4
225d5129b1SAngel Iglesias  * - Updated RoHS directive to 2011/65/EU effective 8 June 2011 on page 26
2314e8015fSLinus Walleij  */
2414e8015fSLinus Walleij 
2514e8015fSLinus Walleij #define pr_fmt(fmt) "bmp280: " fmt
2614e8015fSLinus Walleij 
272405f8ccSAngel Iglesias #include <linux/bitops.h>
282405f8ccSAngel Iglesias #include <linux/bitfield.h>
2914e8015fSLinus Walleij #include <linux/device.h>
3017118843SLinus Walleij #include <linux/module.h>
31accb9d05SAngel Iglesias #include <linux/nvmem-provider.h>
3214e8015fSLinus Walleij #include <linux/regmap.h>
3314e8015fSLinus Walleij #include <linux/delay.h>
3414e8015fSLinus Walleij #include <linux/iio/iio.h>
3514e8015fSLinus Walleij #include <linux/iio/sysfs.h>
3614e8015fSLinus Walleij #include <linux/gpio/consumer.h>
3714e8015fSLinus Walleij #include <linux/regulator/consumer.h>
38aae95394SLinus Walleij #include <linux/interrupt.h>
39aae95394SLinus Walleij #include <linux/irq.h> /* For irq_get_irq_data() */
40aae95394SLinus Walleij #include <linux/completion.h>
413d838118SLinus Walleij #include <linux/pm_runtime.h>
42b33b7d5aSLinus Walleij #include <linux/random.h>
4314e8015fSLinus Walleij 
44327b5c05SAngel Iglesias #include <asm/unaligned.h>
45327b5c05SAngel Iglesias 
4614e8015fSLinus Walleij #include "bmp280.h"
4714e8015fSLinus Walleij 
48b33b7d5aSLinus Walleij /*
49b33b7d5aSLinus Walleij  * These enums are used for indexing into the array of calibration
50b33b7d5aSLinus Walleij  * coefficients for BMP180.
51b33b7d5aSLinus Walleij  */
52b33b7d5aSLinus Walleij enum { AC1, AC2, AC3, AC4, AC5, AC6, B1, B2, MB, MC, MD };
53b33b7d5aSLinus Walleij 
5410b40ffbSAngel Iglesias enum bmp380_odr {
5510b40ffbSAngel Iglesias 	BMP380_ODR_200HZ,
5610b40ffbSAngel Iglesias 	BMP380_ODR_100HZ,
5710b40ffbSAngel Iglesias 	BMP380_ODR_50HZ,
5810b40ffbSAngel Iglesias 	BMP380_ODR_25HZ,
5910b40ffbSAngel Iglesias 	BMP380_ODR_12_5HZ,
6010b40ffbSAngel Iglesias 	BMP380_ODR_6_25HZ,
6110b40ffbSAngel Iglesias 	BMP380_ODR_3_125HZ,
6210b40ffbSAngel Iglesias 	BMP380_ODR_1_5625HZ,
6310b40ffbSAngel Iglesias 	BMP380_ODR_0_78HZ,
6410b40ffbSAngel Iglesias 	BMP380_ODR_0_39HZ,
6510b40ffbSAngel Iglesias 	BMP380_ODR_0_2HZ,
6610b40ffbSAngel Iglesias 	BMP380_ODR_0_1HZ,
6710b40ffbSAngel Iglesias 	BMP380_ODR_0_05HZ,
6810b40ffbSAngel Iglesias 	BMP380_ODR_0_02HZ,
6910b40ffbSAngel Iglesias 	BMP380_ODR_0_01HZ,
7010b40ffbSAngel Iglesias 	BMP380_ODR_0_006HZ,
7110b40ffbSAngel Iglesias 	BMP380_ODR_0_003HZ,
7210b40ffbSAngel Iglesias 	BMP380_ODR_0_0015HZ,
7310b40ffbSAngel Iglesias };
7410b40ffbSAngel Iglesias 
75597dfb2aSAngel Iglesias enum bmp580_odr {
76597dfb2aSAngel Iglesias 	BMP580_ODR_240HZ,
77597dfb2aSAngel Iglesias 	BMP580_ODR_218HZ,
78597dfb2aSAngel Iglesias 	BMP580_ODR_199HZ,
79597dfb2aSAngel Iglesias 	BMP580_ODR_179HZ,
80597dfb2aSAngel Iglesias 	BMP580_ODR_160HZ,
81597dfb2aSAngel Iglesias 	BMP580_ODR_149HZ,
82597dfb2aSAngel Iglesias 	BMP580_ODR_140HZ,
83597dfb2aSAngel Iglesias 	BMP580_ODR_129HZ,
84597dfb2aSAngel Iglesias 	BMP580_ODR_120HZ,
85597dfb2aSAngel Iglesias 	BMP580_ODR_110HZ,
86597dfb2aSAngel Iglesias 	BMP580_ODR_100HZ,
87597dfb2aSAngel Iglesias 	BMP580_ODR_89HZ,
88597dfb2aSAngel Iglesias 	BMP580_ODR_80HZ,
89597dfb2aSAngel Iglesias 	BMP580_ODR_70HZ,
90597dfb2aSAngel Iglesias 	BMP580_ODR_60HZ,
91597dfb2aSAngel Iglesias 	BMP580_ODR_50HZ,
92597dfb2aSAngel Iglesias 	BMP580_ODR_45HZ,
93597dfb2aSAngel Iglesias 	BMP580_ODR_40HZ,
94597dfb2aSAngel Iglesias 	BMP580_ODR_35HZ,
95597dfb2aSAngel Iglesias 	BMP580_ODR_30HZ,
96597dfb2aSAngel Iglesias 	BMP580_ODR_25HZ,
97597dfb2aSAngel Iglesias 	BMP580_ODR_20HZ,
98597dfb2aSAngel Iglesias 	BMP580_ODR_15HZ,
99597dfb2aSAngel Iglesias 	BMP580_ODR_10HZ,
100597dfb2aSAngel Iglesias 	BMP580_ODR_5HZ,
101597dfb2aSAngel Iglesias 	BMP580_ODR_4HZ,
102597dfb2aSAngel Iglesias 	BMP580_ODR_3HZ,
103597dfb2aSAngel Iglesias 	BMP580_ODR_2HZ,
104597dfb2aSAngel Iglesias 	BMP580_ODR_1HZ,
105597dfb2aSAngel Iglesias 	BMP580_ODR_0_5HZ,
106597dfb2aSAngel Iglesias 	BMP580_ODR_0_25HZ,
107597dfb2aSAngel Iglesias 	BMP580_ODR_0_125HZ,
108597dfb2aSAngel Iglesias };
109597dfb2aSAngel Iglesias 
11014e8015fSLinus Walleij /*
11114e8015fSLinus Walleij  * These enums are used for indexing into the array of compensation
11214e8015fSLinus Walleij  * parameters for BMP280.
11314e8015fSLinus Walleij  */
11483cb40beSAngel Iglesias enum { T1, T2, T3, P1, P2, P3, P4, P5, P6, P7, P8, P9 };
11514e8015fSLinus Walleij 
1168d329309SAngel Iglesias enum {
1178d329309SAngel Iglesias 	/* Temperature calib indexes */
1188d329309SAngel Iglesias 	BMP380_T1 = 0,
1198d329309SAngel Iglesias 	BMP380_T2 = 2,
1208d329309SAngel Iglesias 	BMP380_T3 = 4,
1218d329309SAngel Iglesias 	/* Pressure calib indexes */
1228d329309SAngel Iglesias 	BMP380_P1 = 5,
1238d329309SAngel Iglesias 	BMP380_P2 = 7,
1248d329309SAngel Iglesias 	BMP380_P3 = 9,
1258d329309SAngel Iglesias 	BMP380_P4 = 10,
1268d329309SAngel Iglesias 	BMP380_P5 = 11,
1278d329309SAngel Iglesias 	BMP380_P6 = 13,
1288d329309SAngel Iglesias 	BMP380_P7 = 15,
1298d329309SAngel Iglesias 	BMP380_P8 = 16,
1308d329309SAngel Iglesias 	BMP380_P9 = 17,
1318d329309SAngel Iglesias 	BMP380_P10 = 19,
1328d329309SAngel Iglesias 	BMP380_P11 = 20,
1338d329309SAngel Iglesias };
1348d329309SAngel Iglesias 
13514e8015fSLinus Walleij static const struct iio_chan_spec bmp280_channels[] = {
13614e8015fSLinus Walleij 	{
13714e8015fSLinus Walleij 		.type = IIO_PRESSURE,
13814e8015fSLinus Walleij 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
13914e8015fSLinus Walleij 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
14014e8015fSLinus Walleij 	},
14114e8015fSLinus Walleij 	{
14214e8015fSLinus Walleij 		.type = IIO_TEMP,
14314e8015fSLinus Walleij 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
14414e8015fSLinus Walleij 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
14514e8015fSLinus Walleij 	},
14614e8015fSLinus Walleij 	{
14714e8015fSLinus Walleij 		.type = IIO_HUMIDITYRELATIVE,
14814e8015fSLinus Walleij 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
14914e8015fSLinus Walleij 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
15014e8015fSLinus Walleij 	},
15114e8015fSLinus Walleij };
15214e8015fSLinus Walleij 
15310b40ffbSAngel Iglesias static const struct iio_chan_spec bmp380_channels[] = {
15410b40ffbSAngel Iglesias 	{
15510b40ffbSAngel Iglesias 		.type = IIO_PRESSURE,
15610b40ffbSAngel Iglesias 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
15710b40ffbSAngel Iglesias 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
15810b40ffbSAngel Iglesias 		.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_SAMP_FREQ) |
15910b40ffbSAngel Iglesias 					   BIT(IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY),
16010b40ffbSAngel Iglesias 	},
16110b40ffbSAngel Iglesias 	{
16210b40ffbSAngel Iglesias 		.type = IIO_TEMP,
16310b40ffbSAngel Iglesias 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
16410b40ffbSAngel Iglesias 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
16510b40ffbSAngel Iglesias 		.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_SAMP_FREQ) |
16610b40ffbSAngel Iglesias 					   BIT(IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY),
16710b40ffbSAngel Iglesias 	},
16810b40ffbSAngel Iglesias 	{
16910b40ffbSAngel Iglesias 		.type = IIO_HUMIDITYRELATIVE,
17010b40ffbSAngel Iglesias 		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED) |
17110b40ffbSAngel Iglesias 				      BIT(IIO_CHAN_INFO_OVERSAMPLING_RATIO),
17210b40ffbSAngel Iglesias 		.info_mask_shared_by_all = BIT(IIO_CHAN_INFO_SAMP_FREQ) |
17310b40ffbSAngel Iglesias 					   BIT(IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY),
17410b40ffbSAngel Iglesias 	},
17510b40ffbSAngel Iglesias };
17610b40ffbSAngel Iglesias 
bmp280_read_calib(struct bmp280_data * data)177b00e805aSAngel Iglesias static int bmp280_read_calib(struct bmp280_data *data)
17814e8015fSLinus Walleij {
179b00e805aSAngel Iglesias 	struct bmp280_calib *calib = &data->calib.bmp280;
1805f0c359dSAngel Iglesias 	int ret;
1815f0c359dSAngel Iglesias 
18283cb40beSAngel Iglesias 	/* Read temperature and pressure calibration values. */
1832e419aecSStefan Tatschner 	ret = regmap_bulk_read(data->regmap, BMP280_REG_COMP_TEMP_START,
184b71b2d70SVasileios Amoiridis 			       data->bmp280_cal_buf,
185b71b2d70SVasileios Amoiridis 			       sizeof(data->bmp280_cal_buf));
1862e419aecSStefan Tatschner 	if (ret < 0) {
1872e419aecSStefan Tatschner 		dev_err(data->dev,
188b71b2d70SVasileios Amoiridis 			"failed to read calibration parameters\n");
1892e419aecSStefan Tatschner 		return ret;
1902e419aecSStefan Tatschner 	}
1912e419aecSStefan Tatschner 
192b71b2d70SVasileios Amoiridis 	/* Toss calibration data into the entropy pool */
193b71b2d70SVasileios Amoiridis 	add_device_randomness(data->bmp280_cal_buf,
194b71b2d70SVasileios Amoiridis 			      sizeof(data->bmp280_cal_buf));
1956282b5c6SLinus Walleij 
19683cb40beSAngel Iglesias 	/* Parse temperature calibration values. */
197327b5c05SAngel Iglesias 	calib->T1 = le16_to_cpu(data->bmp280_cal_buf[T1]);
198327b5c05SAngel Iglesias 	calib->T2 = le16_to_cpu(data->bmp280_cal_buf[T2]);
199327b5c05SAngel Iglesias 	calib->T3 = le16_to_cpu(data->bmp280_cal_buf[T3]);
2002e419aecSStefan Tatschner 
20183cb40beSAngel Iglesias 	/* Parse pressure calibration values. */
202327b5c05SAngel Iglesias 	calib->P1 = le16_to_cpu(data->bmp280_cal_buf[P1]);
203327b5c05SAngel Iglesias 	calib->P2 = le16_to_cpu(data->bmp280_cal_buf[P2]);
204327b5c05SAngel Iglesias 	calib->P3 = le16_to_cpu(data->bmp280_cal_buf[P3]);
205327b5c05SAngel Iglesias 	calib->P4 = le16_to_cpu(data->bmp280_cal_buf[P4]);
206327b5c05SAngel Iglesias 	calib->P5 = le16_to_cpu(data->bmp280_cal_buf[P5]);
207327b5c05SAngel Iglesias 	calib->P6 = le16_to_cpu(data->bmp280_cal_buf[P6]);
208327b5c05SAngel Iglesias 	calib->P7 = le16_to_cpu(data->bmp280_cal_buf[P7]);
209327b5c05SAngel Iglesias 	calib->P8 = le16_to_cpu(data->bmp280_cal_buf[P8]);
210327b5c05SAngel Iglesias 	calib->P9 = le16_to_cpu(data->bmp280_cal_buf[P9]);
2112e419aecSStefan Tatschner 
212b00e805aSAngel Iglesias 	return 0;
213b00e805aSAngel Iglesias }
214b00e805aSAngel Iglesias 
bme280_read_calib(struct bmp280_data * data)215b00e805aSAngel Iglesias static int bme280_read_calib(struct bmp280_data *data)
216b00e805aSAngel Iglesias {
217b00e805aSAngel Iglesias 	struct bmp280_calib *calib = &data->calib.bmp280;
218b00e805aSAngel Iglesias 	struct device *dev = data->dev;
219b00e805aSAngel Iglesias 	unsigned int tmp;
220b00e805aSAngel Iglesias 	int ret;
221b00e805aSAngel Iglesias 
222b00e805aSAngel Iglesias 	/* Load shared calibration params with bmp280 first */
223b00e805aSAngel Iglesias 	ret = bmp280_read_calib(data);
224b00e805aSAngel Iglesias 	if  (ret < 0) {
225b71b2d70SVasileios Amoiridis 		dev_err(dev, "failed to read calibration parameters\n");
226b00e805aSAngel Iglesias 		return ret;
227b00e805aSAngel Iglesias 	}
228b00e805aSAngel Iglesias 
2292e419aecSStefan Tatschner 	/*
2302e419aecSStefan Tatschner 	 * Read humidity calibration values.
2312e419aecSStefan Tatschner 	 * Due to some odd register addressing we cannot just
2322e419aecSStefan Tatschner 	 * do a big bulk read. Instead, we have to read each Hx
2332e419aecSStefan Tatschner 	 * value separately and sometimes do some bit shifting...
2342e419aecSStefan Tatschner 	 * Humidity data is only available on BME280.
2352e419aecSStefan Tatschner 	 */
2362e419aecSStefan Tatschner 
2375da669d9SVasileios Amoiridis 	ret = regmap_read(data->regmap, BME280_REG_COMP_H1, &tmp);
23814e8015fSLinus Walleij 	if (ret < 0) {
23914e8015fSLinus Walleij 		dev_err(dev, "failed to read H1 comp value\n");
24014e8015fSLinus Walleij 		return ret;
24114e8015fSLinus Walleij 	}
2422e419aecSStefan Tatschner 	calib->H1 = tmp;
24314e8015fSLinus Walleij 
2445da669d9SVasileios Amoiridis 	ret = regmap_bulk_read(data->regmap, BME280_REG_COMP_H2,
245327b5c05SAngel Iglesias 			       &data->le16, sizeof(data->le16));
24614e8015fSLinus Walleij 	if (ret < 0) {
24714e8015fSLinus Walleij 		dev_err(dev, "failed to read H2 comp value\n");
24814e8015fSLinus Walleij 		return ret;
24914e8015fSLinus Walleij 	}
250327b5c05SAngel Iglesias 	calib->H2 = sign_extend32(le16_to_cpu(data->le16), 15);
25114e8015fSLinus Walleij 
2525da669d9SVasileios Amoiridis 	ret = regmap_read(data->regmap, BME280_REG_COMP_H3, &tmp);
25314e8015fSLinus Walleij 	if (ret < 0) {
25414e8015fSLinus Walleij 		dev_err(dev, "failed to read H3 comp value\n");
25514e8015fSLinus Walleij 		return ret;
25614e8015fSLinus Walleij 	}
2572e419aecSStefan Tatschner 	calib->H3 = tmp;
25814e8015fSLinus Walleij 
2595da669d9SVasileios Amoiridis 	ret = regmap_bulk_read(data->regmap, BME280_REG_COMP_H4,
260327b5c05SAngel Iglesias 			       &data->be16, sizeof(data->be16));
26114e8015fSLinus Walleij 	if (ret < 0) {
26214e8015fSLinus Walleij 		dev_err(dev, "failed to read H4 comp value\n");
26314e8015fSLinus Walleij 		return ret;
26414e8015fSLinus Walleij 	}
265327b5c05SAngel Iglesias 	calib->H4 = sign_extend32(((be16_to_cpu(data->be16) >> 4) & 0xff0) |
266327b5c05SAngel Iglesias 				  (be16_to_cpu(data->be16) & 0xf), 11);
26714e8015fSLinus Walleij 
2685da669d9SVasileios Amoiridis 	ret = regmap_bulk_read(data->regmap, BME280_REG_COMP_H5,
269327b5c05SAngel Iglesias 			       &data->le16, sizeof(data->le16));
27014e8015fSLinus Walleij 	if (ret < 0) {
27114e8015fSLinus Walleij 		dev_err(dev, "failed to read H5 comp value\n");
27214e8015fSLinus Walleij 		return ret;
27314e8015fSLinus Walleij 	}
2745da669d9SVasileios Amoiridis 	calib->H5 = sign_extend32(FIELD_GET(BME280_COMP_H5_MASK, le16_to_cpu(data->le16)), 11);
27514e8015fSLinus Walleij 
2765da669d9SVasileios Amoiridis 	ret = regmap_read(data->regmap, BME280_REG_COMP_H6, &tmp);
27714e8015fSLinus Walleij 	if (ret < 0) {
27814e8015fSLinus Walleij 		dev_err(dev, "failed to read H6 comp value\n");
27914e8015fSLinus Walleij 		return ret;
28014e8015fSLinus Walleij 	}
2812e419aecSStefan Tatschner 	calib->H6 = sign_extend32(tmp, 7);
2822e419aecSStefan Tatschner 
2832e419aecSStefan Tatschner 	return 0;
2842e419aecSStefan Tatschner }
285b71b2d70SVasileios Amoiridis 
2862e419aecSStefan Tatschner /*
2872e419aecSStefan Tatschner  * Returns humidity in percent, resolution is 0.01 percent. Output value of
2882e419aecSStefan Tatschner  * "47445" represents 47445/1024 = 46.333 %RH.
2892e419aecSStefan Tatschner  *
2902e419aecSStefan Tatschner  * Taken from BME280 datasheet, Section 4.2.3, "Compensation formula".
2912e419aecSStefan Tatschner  */
bme280_compensate_humidity(struct bmp280_data * data,s32 adc_humidity)2925da669d9SVasileios Amoiridis static u32 bme280_compensate_humidity(struct bmp280_data *data,
2932e419aecSStefan Tatschner 				      s32 adc_humidity)
2942e419aecSStefan Tatschner {
2952e419aecSStefan Tatschner 	struct bmp280_calib *calib = &data->calib.bmp280;
2965f0c359dSAngel Iglesias 	s32 var;
29714e8015fSLinus Walleij 
298ed3730c4SAndreas Klinger 	var = ((s32)data->t_fine) - (s32)76800;
2992e419aecSStefan Tatschner 	var = ((((adc_humidity << 14) - (calib->H4 << 20) - (calib->H5 * var))
3002e419aecSStefan Tatschner 		+ (s32)16384) >> 15) * (((((((var * calib->H6) >> 10)
3012e419aecSStefan Tatschner 		* (((var * (s32)calib->H3) >> 11) + (s32)32768)) >> 10)
3022e419aecSStefan Tatschner 		+ (s32)2097152) * calib->H2 + 8192) >> 14);
3032e419aecSStefan Tatschner 	var -= ((((var >> 15) * (var >> 15)) >> 7) * (s32)calib->H1) >> 4;
30414e8015fSLinus Walleij 
305dee2dabcSAndreas Klinger 	var = clamp_val(var, 0, 419430400);
306dee2dabcSAndreas Klinger 
30714e8015fSLinus Walleij 	return var >> 12;
308b71b2d70SVasileios Amoiridis }
30914e8015fSLinus Walleij 
31014e8015fSLinus Walleij /*
31114e8015fSLinus Walleij  * Returns temperature in DegC, resolution is 0.01 DegC.  Output value of
31214e8015fSLinus Walleij  * "5123" equals 51.23 DegC.  t_fine carries fine temperature as global
31314e8015fSLinus Walleij  * value.
31414e8015fSLinus Walleij  *
31514e8015fSLinus Walleij  * Taken from datasheet, Section 3.11.3, "Compensation formula".
31614e8015fSLinus Walleij  */
bmp280_compensate_temp(struct bmp280_data * data,s32 adc_temp)31714e8015fSLinus Walleij static s32 bmp280_compensate_temp(struct bmp280_data *data,
31814e8015fSLinus Walleij 				  s32 adc_temp)
31914e8015fSLinus Walleij {
3202e419aecSStefan Tatschner 	struct bmp280_calib *calib = &data->calib.bmp280;
3215f0c359dSAngel Iglesias 	s32 var1, var2;
32214e8015fSLinus Walleij 
3232e419aecSStefan Tatschner 	var1 = (((adc_temp >> 3) - ((s32)calib->T1 << 1)) *
3242e419aecSStefan Tatschner 		((s32)calib->T2)) >> 11;
3252e419aecSStefan Tatschner 	var2 = (((((adc_temp >> 4) - ((s32)calib->T1)) *
3262e419aecSStefan Tatschner 		  ((adc_temp >> 4) - ((s32)calib->T1))) >> 12) *
3272e419aecSStefan Tatschner 		((s32)calib->T3)) >> 14;
32814e8015fSLinus Walleij 	data->t_fine = var1 + var2;
32914e8015fSLinus Walleij 
33014e8015fSLinus Walleij 	return (data->t_fine * 5 + 128) >> 8;
33114e8015fSLinus Walleij }
33214e8015fSLinus Walleij 
33314e8015fSLinus Walleij /*
33414e8015fSLinus Walleij  * Returns pressure in Pa as unsigned 32 bit integer in Q24.8 format (24
33514e8015fSLinus Walleij  * integer bits and 8 fractional bits).  Output value of "24674867"
33614e8015fSLinus Walleij  * represents 24674867/256 = 96386.2 Pa = 963.862 hPa
33714e8015fSLinus Walleij  *
33814e8015fSLinus Walleij  * Taken from datasheet, Section 3.11.3, "Compensation formula".
33914e8015fSLinus Walleij  */
bmp280_compensate_press(struct bmp280_data * data,s32 adc_press)34014e8015fSLinus Walleij static u32 bmp280_compensate_press(struct bmp280_data *data,
34114e8015fSLinus Walleij 				   s32 adc_press)
34214e8015fSLinus Walleij {
3432e419aecSStefan Tatschner 	struct bmp280_calib *calib = &data->calib.bmp280;
3445f0c359dSAngel Iglesias 	s64 var1, var2, p;
34514e8015fSLinus Walleij 
34614e8015fSLinus Walleij 	var1 = ((s64)data->t_fine) - 128000;
3472e419aecSStefan Tatschner 	var2 = var1 * var1 * (s64)calib->P6;
3482e419aecSStefan Tatschner 	var2 += (var1 * (s64)calib->P5) << 17;
3492e419aecSStefan Tatschner 	var2 += ((s64)calib->P4) << 35;
3502e419aecSStefan Tatschner 	var1 = ((var1 * var1 * (s64)calib->P3) >> 8) +
3512e419aecSStefan Tatschner 		((var1 * (s64)calib->P2) << 12);
3522e419aecSStefan Tatschner 	var1 = ((((s64)1) << 47) + var1) * ((s64)calib->P1) >> 33;
35314e8015fSLinus Walleij 
35414e8015fSLinus Walleij 	if (var1 == 0)
35514e8015fSLinus Walleij 		return 0;
35614e8015fSLinus Walleij 
35714e8015fSLinus Walleij 	p = ((((s64)1048576 - adc_press) << 31) - var2) * 3125;
35814e8015fSLinus Walleij 	p = div64_s64(p, var1);
3592e419aecSStefan Tatschner 	var1 = (((s64)calib->P9) * (p >> 13) * (p >> 13)) >> 25;
3602e419aecSStefan Tatschner 	var2 = ((s64)(calib->P8) * p) >> 19;
3612e419aecSStefan Tatschner 	p = ((p + var1 + var2) >> 8) + (((s64)calib->P7) << 4);
36214e8015fSLinus Walleij 
36314e8015fSLinus Walleij 	return (u32)p;
36414e8015fSLinus Walleij }
36514e8015fSLinus Walleij 
bmp280_read_temp(struct bmp280_data * data,int * val,int * val2)36614e8015fSLinus Walleij static int bmp280_read_temp(struct bmp280_data *data,
367597dfb2aSAngel Iglesias 			    int *val, int *val2)
36814e8015fSLinus Walleij {
36914e8015fSLinus Walleij 	s32 adc_temp, comp_temp;
3705f0c359dSAngel Iglesias 	int ret;
37114e8015fSLinus Walleij 
372327b5c05SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP280_REG_TEMP_MSB,
373327b5c05SAngel Iglesias 			       data->buf, sizeof(data->buf));
37414e8015fSLinus Walleij 	if (ret < 0) {
37514e8015fSLinus Walleij 		dev_err(data->dev, "failed to read temperature\n");
37614e8015fSLinus Walleij 		return ret;
37714e8015fSLinus Walleij 	}
37814e8015fSLinus Walleij 
379327b5c05SAngel Iglesias 	adc_temp = FIELD_GET(BMP280_MEAS_TRIM_MASK, get_unaligned_be24(data->buf));
380eb92b418SAndreas Klinger 	if (adc_temp == BMP280_TEMP_SKIPPED) {
381eb92b418SAndreas Klinger 		/* reading was skipped */
382eb92b418SAndreas Klinger 		dev_err(data->dev, "reading temperature skipped\n");
383eb92b418SAndreas Klinger 		return -EIO;
384eb92b418SAndreas Klinger 	}
38514e8015fSLinus Walleij 	comp_temp = bmp280_compensate_temp(data, adc_temp);
38614e8015fSLinus Walleij 
38714e8015fSLinus Walleij 	/*
38814e8015fSLinus Walleij 	 * val might be NULL if we're called by the read_press routine,
38914e8015fSLinus Walleij 	 * who only cares about the carry over t_fine value.
39014e8015fSLinus Walleij 	 */
39114e8015fSLinus Walleij 	if (val) {
39214e8015fSLinus Walleij 		*val = comp_temp * 10;
39314e8015fSLinus Walleij 		return IIO_VAL_INT;
39414e8015fSLinus Walleij 	}
39514e8015fSLinus Walleij 
39614e8015fSLinus Walleij 	return 0;
39714e8015fSLinus Walleij }
39814e8015fSLinus Walleij 
bmp280_read_press(struct bmp280_data * data,int * val,int * val2)39914e8015fSLinus Walleij static int bmp280_read_press(struct bmp280_data *data,
40014e8015fSLinus Walleij 			     int *val, int *val2)
40114e8015fSLinus Walleij {
4025f0c359dSAngel Iglesias 	u32 comp_press;
40314e8015fSLinus Walleij 	s32 adc_press;
4045f0c359dSAngel Iglesias 	int ret;
40514e8015fSLinus Walleij 
40614e8015fSLinus Walleij 	/* Read and compensate temperature so we get a reading of t_fine. */
407597dfb2aSAngel Iglesias 	ret = bmp280_read_temp(data, NULL, NULL);
40814e8015fSLinus Walleij 	if (ret < 0)
40914e8015fSLinus Walleij 		return ret;
41014e8015fSLinus Walleij 
411327b5c05SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP280_REG_PRESS_MSB,
412327b5c05SAngel Iglesias 			       data->buf, sizeof(data->buf));
41314e8015fSLinus Walleij 	if (ret < 0) {
41414e8015fSLinus Walleij 		dev_err(data->dev, "failed to read pressure\n");
41514e8015fSLinus Walleij 		return ret;
41614e8015fSLinus Walleij 	}
41714e8015fSLinus Walleij 
418327b5c05SAngel Iglesias 	adc_press = FIELD_GET(BMP280_MEAS_TRIM_MASK, get_unaligned_be24(data->buf));
419eb92b418SAndreas Klinger 	if (adc_press == BMP280_PRESS_SKIPPED) {
420eb92b418SAndreas Klinger 		/* reading was skipped */
421eb92b418SAndreas Klinger 		dev_err(data->dev, "reading pressure skipped\n");
422eb92b418SAndreas Klinger 		return -EIO;
423eb92b418SAndreas Klinger 	}
42414e8015fSLinus Walleij 	comp_press = bmp280_compensate_press(data, adc_press);
42514e8015fSLinus Walleij 
42614e8015fSLinus Walleij 	*val = comp_press;
42714e8015fSLinus Walleij 	*val2 = 256000;
42814e8015fSLinus Walleij 
42914e8015fSLinus Walleij 	return IIO_VAL_FRACTIONAL;
43014e8015fSLinus Walleij }
43114e8015fSLinus Walleij 
bme280_read_humid(struct bmp280_data * data,int * val,int * val2)4325da669d9SVasileios Amoiridis static int bme280_read_humid(struct bmp280_data *data, int *val, int *val2)
43314e8015fSLinus Walleij {
4345f0c359dSAngel Iglesias 	u32 comp_humidity;
4355f0c359dSAngel Iglesias 	s32 adc_humidity;
43614e8015fSLinus Walleij 	int ret;
43714e8015fSLinus Walleij 
43814e8015fSLinus Walleij 	/* Read and compensate temperature so we get a reading of t_fine. */
439597dfb2aSAngel Iglesias 	ret = bmp280_read_temp(data, NULL, NULL);
44014e8015fSLinus Walleij 	if (ret < 0)
44114e8015fSLinus Walleij 		return ret;
44214e8015fSLinus Walleij 
4435da669d9SVasileios Amoiridis 	ret = regmap_bulk_read(data->regmap, BME280_REG_HUMIDITY_MSB,
444327b5c05SAngel Iglesias 			       &data->be16, sizeof(data->be16));
44514e8015fSLinus Walleij 	if (ret < 0) {
44614e8015fSLinus Walleij 		dev_err(data->dev, "failed to read humidity\n");
44714e8015fSLinus Walleij 		return ret;
44814e8015fSLinus Walleij 	}
44914e8015fSLinus Walleij 
450327b5c05SAngel Iglesias 	adc_humidity = be16_to_cpu(data->be16);
451eb92b418SAndreas Klinger 	if (adc_humidity == BMP280_HUMIDITY_SKIPPED) {
452eb92b418SAndreas Klinger 		/* reading was skipped */
453eb92b418SAndreas Klinger 		dev_err(data->dev, "reading humidity skipped\n");
454eb92b418SAndreas Klinger 		return -EIO;
455eb92b418SAndreas Klinger 	}
4565da669d9SVasileios Amoiridis 	comp_humidity = bme280_compensate_humidity(data, adc_humidity);
45714e8015fSLinus Walleij 
45813399ff2STomasz Duszynski 	*val = comp_humidity * 1000 / 1024;
45914e8015fSLinus Walleij 
46013399ff2STomasz Duszynski 	return IIO_VAL_INT;
46114e8015fSLinus Walleij }
46214e8015fSLinus Walleij 
bmp280_read_raw(struct iio_dev * indio_dev,struct iio_chan_spec const * chan,int * val,int * val2,long mask)46314e8015fSLinus Walleij static int bmp280_read_raw(struct iio_dev *indio_dev,
46414e8015fSLinus Walleij 			   struct iio_chan_spec const *chan,
46514e8015fSLinus Walleij 			   int *val, int *val2, long mask)
46614e8015fSLinus Walleij {
46714e8015fSLinus Walleij 	struct bmp280_data *data = iio_priv(indio_dev);
4685f0c359dSAngel Iglesias 	int ret;
46914e8015fSLinus Walleij 
4703d838118SLinus Walleij 	pm_runtime_get_sync(data->dev);
47114e8015fSLinus Walleij 	mutex_lock(&data->lock);
47214e8015fSLinus Walleij 
47314e8015fSLinus Walleij 	switch (mask) {
47414e8015fSLinus Walleij 	case IIO_CHAN_INFO_PROCESSED:
47514e8015fSLinus Walleij 		switch (chan->type) {
47614e8015fSLinus Walleij 		case IIO_HUMIDITYRELATIVE:
47714e8015fSLinus Walleij 			ret = data->chip_info->read_humid(data, val, val2);
47814e8015fSLinus Walleij 			break;
47914e8015fSLinus Walleij 		case IIO_PRESSURE:
48014e8015fSLinus Walleij 			ret = data->chip_info->read_press(data, val, val2);
48114e8015fSLinus Walleij 			break;
48214e8015fSLinus Walleij 		case IIO_TEMP:
483597dfb2aSAngel Iglesias 			ret = data->chip_info->read_temp(data, val, val2);
48414e8015fSLinus Walleij 			break;
48514e8015fSLinus Walleij 		default:
48614e8015fSLinus Walleij 			ret = -EINVAL;
48714e8015fSLinus Walleij 			break;
48814e8015fSLinus Walleij 		}
48914e8015fSLinus Walleij 		break;
49014e8015fSLinus Walleij 	case IIO_CHAN_INFO_OVERSAMPLING_RATIO:
49114e8015fSLinus Walleij 		switch (chan->type) {
49214e8015fSLinus Walleij 		case IIO_HUMIDITYRELATIVE:
49314e8015fSLinus Walleij 			*val = 1 << data->oversampling_humid;
49414e8015fSLinus Walleij 			ret = IIO_VAL_INT;
49514e8015fSLinus Walleij 			break;
49614e8015fSLinus Walleij 		case IIO_PRESSURE:
49714e8015fSLinus Walleij 			*val = 1 << data->oversampling_press;
49814e8015fSLinus Walleij 			ret = IIO_VAL_INT;
49914e8015fSLinus Walleij 			break;
50014e8015fSLinus Walleij 		case IIO_TEMP:
50114e8015fSLinus Walleij 			*val = 1 << data->oversampling_temp;
50214e8015fSLinus Walleij 			ret = IIO_VAL_INT;
50314e8015fSLinus Walleij 			break;
50414e8015fSLinus Walleij 		default:
50514e8015fSLinus Walleij 			ret = -EINVAL;
50614e8015fSLinus Walleij 			break;
50714e8015fSLinus Walleij 		}
50814e8015fSLinus Walleij 		break;
50910b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_SAMP_FREQ:
51010b40ffbSAngel Iglesias 		if (!data->chip_info->sampling_freq_avail) {
51110b40ffbSAngel Iglesias 			ret = -EINVAL;
51210b40ffbSAngel Iglesias 			break;
51310b40ffbSAngel Iglesias 		}
51410b40ffbSAngel Iglesias 
51510b40ffbSAngel Iglesias 		*val = data->chip_info->sampling_freq_avail[data->sampling_freq][0];
51610b40ffbSAngel Iglesias 		*val2 = data->chip_info->sampling_freq_avail[data->sampling_freq][1];
51710b40ffbSAngel Iglesias 		ret = IIO_VAL_INT_PLUS_MICRO;
51810b40ffbSAngel Iglesias 		break;
51910b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY:
52010b40ffbSAngel Iglesias 		if (!data->chip_info->iir_filter_coeffs_avail) {
52110b40ffbSAngel Iglesias 			ret = -EINVAL;
52210b40ffbSAngel Iglesias 			break;
52310b40ffbSAngel Iglesias 		}
52410b40ffbSAngel Iglesias 
52510b40ffbSAngel Iglesias 		*val = (1 << data->iir_filter_coeff) - 1;
52610b40ffbSAngel Iglesias 		ret = IIO_VAL_INT;
52710b40ffbSAngel Iglesias 		break;
52814e8015fSLinus Walleij 	default:
52914e8015fSLinus Walleij 		ret = -EINVAL;
53014e8015fSLinus Walleij 		break;
53114e8015fSLinus Walleij 	}
53214e8015fSLinus Walleij 
53314e8015fSLinus Walleij 	mutex_unlock(&data->lock);
5343d838118SLinus Walleij 	pm_runtime_mark_last_busy(data->dev);
5353d838118SLinus Walleij 	pm_runtime_put_autosuspend(data->dev);
53614e8015fSLinus Walleij 
53714e8015fSLinus Walleij 	return ret;
53814e8015fSLinus Walleij }
53914e8015fSLinus Walleij 
bme280_write_oversampling_ratio_humid(struct bmp280_data * data,int val)5405da669d9SVasileios Amoiridis static int bme280_write_oversampling_ratio_humid(struct bmp280_data *data,
54114e8015fSLinus Walleij 						 int val)
54214e8015fSLinus Walleij {
54314e8015fSLinus Walleij 	const int *avail = data->chip_info->oversampling_humid_avail;
54414e8015fSLinus Walleij 	const int n = data->chip_info->num_oversampling_humid_avail;
54510b40ffbSAngel Iglesias 	int ret, prev;
5465f0c359dSAngel Iglesias 	int i;
54714e8015fSLinus Walleij 
54814e8015fSLinus Walleij 	for (i = 0; i < n; i++) {
54914e8015fSLinus Walleij 		if (avail[i] == val) {
55010b40ffbSAngel Iglesias 			prev = data->oversampling_humid;
55114e8015fSLinus Walleij 			data->oversampling_humid = ilog2(val);
55214e8015fSLinus Walleij 
55310b40ffbSAngel Iglesias 			ret = data->chip_info->chip_config(data);
55410b40ffbSAngel Iglesias 			if (ret) {
55510b40ffbSAngel Iglesias 				data->oversampling_humid = prev;
55610b40ffbSAngel Iglesias 				data->chip_info->chip_config(data);
55710b40ffbSAngel Iglesias 				return ret;
55810b40ffbSAngel Iglesias 			}
55910b40ffbSAngel Iglesias 			return 0;
56014e8015fSLinus Walleij 		}
56114e8015fSLinus Walleij 	}
56214e8015fSLinus Walleij 	return -EINVAL;
56314e8015fSLinus Walleij }
56414e8015fSLinus Walleij 
bmp280_write_oversampling_ratio_temp(struct bmp280_data * data,int val)56514e8015fSLinus Walleij static int bmp280_write_oversampling_ratio_temp(struct bmp280_data *data,
56614e8015fSLinus Walleij 						int val)
56714e8015fSLinus Walleij {
56814e8015fSLinus Walleij 	const int *avail = data->chip_info->oversampling_temp_avail;
56914e8015fSLinus Walleij 	const int n = data->chip_info->num_oversampling_temp_avail;
57010b40ffbSAngel Iglesias 	int ret, prev;
5715f0c359dSAngel Iglesias 	int i;
57214e8015fSLinus Walleij 
57314e8015fSLinus Walleij 	for (i = 0; i < n; i++) {
57414e8015fSLinus Walleij 		if (avail[i] == val) {
57510b40ffbSAngel Iglesias 			prev = data->oversampling_temp;
57614e8015fSLinus Walleij 			data->oversampling_temp = ilog2(val);
57714e8015fSLinus Walleij 
57810b40ffbSAngel Iglesias 			ret = data->chip_info->chip_config(data);
57910b40ffbSAngel Iglesias 			if (ret) {
58010b40ffbSAngel Iglesias 				data->oversampling_temp = prev;
58110b40ffbSAngel Iglesias 				data->chip_info->chip_config(data);
58210b40ffbSAngel Iglesias 				return ret;
58310b40ffbSAngel Iglesias 			}
58410b40ffbSAngel Iglesias 			return 0;
58514e8015fSLinus Walleij 		}
58614e8015fSLinus Walleij 	}
58714e8015fSLinus Walleij 	return -EINVAL;
58814e8015fSLinus Walleij }
58914e8015fSLinus Walleij 
bmp280_write_oversampling_ratio_press(struct bmp280_data * data,int val)59014e8015fSLinus Walleij static int bmp280_write_oversampling_ratio_press(struct bmp280_data *data,
59114e8015fSLinus Walleij 						 int val)
59214e8015fSLinus Walleij {
59314e8015fSLinus Walleij 	const int *avail = data->chip_info->oversampling_press_avail;
59414e8015fSLinus Walleij 	const int n = data->chip_info->num_oversampling_press_avail;
59510b40ffbSAngel Iglesias 	int ret, prev;
5965f0c359dSAngel Iglesias 	int i;
59714e8015fSLinus Walleij 
59814e8015fSLinus Walleij 	for (i = 0; i < n; i++) {
59914e8015fSLinus Walleij 		if (avail[i] == val) {
60010b40ffbSAngel Iglesias 			prev = data->oversampling_press;
60114e8015fSLinus Walleij 			data->oversampling_press = ilog2(val);
60214e8015fSLinus Walleij 
60310b40ffbSAngel Iglesias 			ret = data->chip_info->chip_config(data);
60410b40ffbSAngel Iglesias 			if (ret) {
60510b40ffbSAngel Iglesias 				data->oversampling_press = prev;
60610b40ffbSAngel Iglesias 				data->chip_info->chip_config(data);
60710b40ffbSAngel Iglesias 				return ret;
60810b40ffbSAngel Iglesias 			}
60910b40ffbSAngel Iglesias 			return 0;
61010b40ffbSAngel Iglesias 		}
61110b40ffbSAngel Iglesias 	}
61210b40ffbSAngel Iglesias 	return -EINVAL;
61310b40ffbSAngel Iglesias }
61410b40ffbSAngel Iglesias 
bmp280_write_sampling_frequency(struct bmp280_data * data,int val,int val2)61510b40ffbSAngel Iglesias static int bmp280_write_sampling_frequency(struct bmp280_data *data,
61610b40ffbSAngel Iglesias 					   int val, int val2)
61710b40ffbSAngel Iglesias {
61810b40ffbSAngel Iglesias 	const int (*avail)[2] = data->chip_info->sampling_freq_avail;
61910b40ffbSAngel Iglesias 	const int n = data->chip_info->num_sampling_freq_avail;
62010b40ffbSAngel Iglesias 	int ret, prev;
62110b40ffbSAngel Iglesias 	int i;
62210b40ffbSAngel Iglesias 
62310b40ffbSAngel Iglesias 	for (i = 0; i < n; i++) {
62410b40ffbSAngel Iglesias 		if (avail[i][0] == val && avail[i][1] == val2) {
62510b40ffbSAngel Iglesias 			prev = data->sampling_freq;
62610b40ffbSAngel Iglesias 			data->sampling_freq = i;
62710b40ffbSAngel Iglesias 
62810b40ffbSAngel Iglesias 			ret = data->chip_info->chip_config(data);
62910b40ffbSAngel Iglesias 			if (ret) {
63010b40ffbSAngel Iglesias 				data->sampling_freq = prev;
63110b40ffbSAngel Iglesias 				data->chip_info->chip_config(data);
63210b40ffbSAngel Iglesias 				return ret;
63310b40ffbSAngel Iglesias 			}
63410b40ffbSAngel Iglesias 			return 0;
63510b40ffbSAngel Iglesias 		}
63610b40ffbSAngel Iglesias 	}
63710b40ffbSAngel Iglesias 	return -EINVAL;
63810b40ffbSAngel Iglesias }
63910b40ffbSAngel Iglesias 
bmp280_write_iir_filter_coeffs(struct bmp280_data * data,int val)64010b40ffbSAngel Iglesias static int bmp280_write_iir_filter_coeffs(struct bmp280_data *data, int val)
64110b40ffbSAngel Iglesias {
64210b40ffbSAngel Iglesias 	const int *avail = data->chip_info->iir_filter_coeffs_avail;
64310b40ffbSAngel Iglesias 	const int n = data->chip_info->num_iir_filter_coeffs_avail;
64410b40ffbSAngel Iglesias 	int ret, prev;
64510b40ffbSAngel Iglesias 	int i;
64610b40ffbSAngel Iglesias 
64710b40ffbSAngel Iglesias 	for (i = 0; i < n; i++) {
64810b40ffbSAngel Iglesias 		if (avail[i] - 1  == val) {
64910b40ffbSAngel Iglesias 			prev = data->iir_filter_coeff;
65010b40ffbSAngel Iglesias 			data->iir_filter_coeff = i;
65110b40ffbSAngel Iglesias 
65210b40ffbSAngel Iglesias 			ret = data->chip_info->chip_config(data);
65310b40ffbSAngel Iglesias 			if (ret) {
65410b40ffbSAngel Iglesias 				data->iir_filter_coeff = prev;
65510b40ffbSAngel Iglesias 				data->chip_info->chip_config(data);
65610b40ffbSAngel Iglesias 				return ret;
65710b40ffbSAngel Iglesias 
65810b40ffbSAngel Iglesias 			}
65910b40ffbSAngel Iglesias 			return 0;
66014e8015fSLinus Walleij 		}
66114e8015fSLinus Walleij 	}
66214e8015fSLinus Walleij 	return -EINVAL;
66314e8015fSLinus Walleij }
66414e8015fSLinus Walleij 
bmp280_write_raw(struct iio_dev * indio_dev,struct iio_chan_spec const * chan,int val,int val2,long mask)66514e8015fSLinus Walleij static int bmp280_write_raw(struct iio_dev *indio_dev,
66614e8015fSLinus Walleij 			    struct iio_chan_spec const *chan,
66714e8015fSLinus Walleij 			    int val, int val2, long mask)
66814e8015fSLinus Walleij {
66914e8015fSLinus Walleij 	struct bmp280_data *data = iio_priv(indio_dev);
6705f0c359dSAngel Iglesias 	int ret = 0;
67114e8015fSLinus Walleij 
67210b40ffbSAngel Iglesias 	/*
67310b40ffbSAngel Iglesias 	 * Helper functions to update sensor running configuration.
67410b40ffbSAngel Iglesias 	 * If an error happens applying new settings, will try restore
67510b40ffbSAngel Iglesias 	 * previous parameters to ensure the sensor is left in a known
67610b40ffbSAngel Iglesias 	 * working configuration.
67710b40ffbSAngel Iglesias 	 */
67814e8015fSLinus Walleij 	switch (mask) {
67914e8015fSLinus Walleij 	case IIO_CHAN_INFO_OVERSAMPLING_RATIO:
6803d838118SLinus Walleij 		pm_runtime_get_sync(data->dev);
68114e8015fSLinus Walleij 		mutex_lock(&data->lock);
68214e8015fSLinus Walleij 		switch (chan->type) {
68314e8015fSLinus Walleij 		case IIO_HUMIDITYRELATIVE:
6845da669d9SVasileios Amoiridis 			ret = bme280_write_oversampling_ratio_humid(data, val);
68514e8015fSLinus Walleij 			break;
68614e8015fSLinus Walleij 		case IIO_PRESSURE:
68714e8015fSLinus Walleij 			ret = bmp280_write_oversampling_ratio_press(data, val);
68814e8015fSLinus Walleij 			break;
68914e8015fSLinus Walleij 		case IIO_TEMP:
69014e8015fSLinus Walleij 			ret = bmp280_write_oversampling_ratio_temp(data, val);
69114e8015fSLinus Walleij 			break;
69214e8015fSLinus Walleij 		default:
69314e8015fSLinus Walleij 			ret = -EINVAL;
69414e8015fSLinus Walleij 			break;
69514e8015fSLinus Walleij 		}
69614e8015fSLinus Walleij 		mutex_unlock(&data->lock);
6973d838118SLinus Walleij 		pm_runtime_mark_last_busy(data->dev);
6983d838118SLinus Walleij 		pm_runtime_put_autosuspend(data->dev);
69914e8015fSLinus Walleij 		break;
70010b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_SAMP_FREQ:
70110b40ffbSAngel Iglesias 		pm_runtime_get_sync(data->dev);
70210b40ffbSAngel Iglesias 		mutex_lock(&data->lock);
70310b40ffbSAngel Iglesias 		ret = bmp280_write_sampling_frequency(data, val, val2);
70410b40ffbSAngel Iglesias 		mutex_unlock(&data->lock);
70510b40ffbSAngel Iglesias 		pm_runtime_mark_last_busy(data->dev);
70610b40ffbSAngel Iglesias 		pm_runtime_put_autosuspend(data->dev);
70710b40ffbSAngel Iglesias 		break;
70810b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY:
70910b40ffbSAngel Iglesias 		pm_runtime_get_sync(data->dev);
71010b40ffbSAngel Iglesias 		mutex_lock(&data->lock);
71110b40ffbSAngel Iglesias 		ret = bmp280_write_iir_filter_coeffs(data, val);
71210b40ffbSAngel Iglesias 		mutex_unlock(&data->lock);
71310b40ffbSAngel Iglesias 		pm_runtime_mark_last_busy(data->dev);
71410b40ffbSAngel Iglesias 		pm_runtime_put_autosuspend(data->dev);
71510b40ffbSAngel Iglesias 		break;
71614e8015fSLinus Walleij 	default:
71714e8015fSLinus Walleij 		return -EINVAL;
71814e8015fSLinus Walleij 	}
71914e8015fSLinus Walleij 
72014e8015fSLinus Walleij 	return ret;
72114e8015fSLinus Walleij }
72214e8015fSLinus Walleij 
bmp280_read_avail(struct iio_dev * indio_dev,struct iio_chan_spec const * chan,const int ** vals,int * type,int * length,long mask)7236085102cSAndy Shevchenko static int bmp280_read_avail(struct iio_dev *indio_dev,
7246085102cSAndy Shevchenko 			     struct iio_chan_spec const *chan,
7256085102cSAndy Shevchenko 			     const int **vals, int *type, int *length,
7266085102cSAndy Shevchenko 			     long mask)
72714e8015fSLinus Walleij {
7286085102cSAndy Shevchenko 	struct bmp280_data *data = iio_priv(indio_dev);
72914e8015fSLinus Walleij 
7306085102cSAndy Shevchenko 	switch (mask) {
7316085102cSAndy Shevchenko 	case IIO_CHAN_INFO_OVERSAMPLING_RATIO:
7326085102cSAndy Shevchenko 		switch (chan->type) {
7336085102cSAndy Shevchenko 		case IIO_PRESSURE:
7346085102cSAndy Shevchenko 			*vals = data->chip_info->oversampling_press_avail;
7356085102cSAndy Shevchenko 			*length = data->chip_info->num_oversampling_press_avail;
7366085102cSAndy Shevchenko 			break;
7376085102cSAndy Shevchenko 		case IIO_TEMP:
7386085102cSAndy Shevchenko 			*vals = data->chip_info->oversampling_temp_avail;
7396085102cSAndy Shevchenko 			*length = data->chip_info->num_oversampling_temp_avail;
7406085102cSAndy Shevchenko 			break;
7416085102cSAndy Shevchenko 		default:
7426085102cSAndy Shevchenko 			return -EINVAL;
74314e8015fSLinus Walleij 		}
7446085102cSAndy Shevchenko 		*type = IIO_VAL_INT;
7456085102cSAndy Shevchenko 		return IIO_AVAIL_LIST;
74610b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_SAMP_FREQ:
74710b40ffbSAngel Iglesias 		*vals = (const int *)data->chip_info->sampling_freq_avail;
74810b40ffbSAngel Iglesias 		*type = IIO_VAL_INT_PLUS_MICRO;
74910b40ffbSAngel Iglesias 		/* Values are stored in a 2D matrix */
75010b40ffbSAngel Iglesias 		*length = data->chip_info->num_sampling_freq_avail;
75110b40ffbSAngel Iglesias 		return IIO_AVAIL_LIST;
75210b40ffbSAngel Iglesias 	case IIO_CHAN_INFO_LOW_PASS_FILTER_3DB_FREQUENCY:
75310b40ffbSAngel Iglesias 		*vals = data->chip_info->iir_filter_coeffs_avail;
75410b40ffbSAngel Iglesias 		*type = IIO_VAL_INT;
75510b40ffbSAngel Iglesias 		*length = data->chip_info->num_iir_filter_coeffs_avail;
75610b40ffbSAngel Iglesias 		return IIO_AVAIL_LIST;
7576085102cSAndy Shevchenko 	default:
7586085102cSAndy Shevchenko 		return -EINVAL;
75914e8015fSLinus Walleij 	}
76014e8015fSLinus Walleij }
76114e8015fSLinus Walleij 
76214e8015fSLinus Walleij static const struct iio_info bmp280_info = {
76314e8015fSLinus Walleij 	.read_raw = &bmp280_read_raw,
7646085102cSAndy Shevchenko 	.read_avail = &bmp280_read_avail,
76514e8015fSLinus Walleij 	.write_raw = &bmp280_write_raw,
76614e8015fSLinus Walleij };
76714e8015fSLinus Walleij 
bmp280_chip_config(struct bmp280_data * data)76814e8015fSLinus Walleij static int bmp280_chip_config(struct bmp280_data *data)
76914e8015fSLinus Walleij {
7702405f8ccSAngel Iglesias 	u8 osrs = FIELD_PREP(BMP280_OSRS_TEMP_MASK, data->oversampling_temp + 1) |
7712405f8ccSAngel Iglesias 		  FIELD_PREP(BMP280_OSRS_PRESS_MASK, data->oversampling_press + 1);
7725f0c359dSAngel Iglesias 	int ret;
77314e8015fSLinus Walleij 
7744b1f0c31SColin Parker 	ret = regmap_write_bits(data->regmap, BMP280_REG_CTRL_MEAS,
77514e8015fSLinus Walleij 				BMP280_OSRS_TEMP_MASK |
77614e8015fSLinus Walleij 				BMP280_OSRS_PRESS_MASK |
77714e8015fSLinus Walleij 				BMP280_MODE_MASK,
77814e8015fSLinus Walleij 				osrs | BMP280_MODE_NORMAL);
77914e8015fSLinus Walleij 	if (ret < 0) {
780b71b2d70SVasileios Amoiridis 		dev_err(data->dev, "failed to write ctrl_meas register\n");
78114e8015fSLinus Walleij 		return ret;
78214e8015fSLinus Walleij 	}
78314e8015fSLinus Walleij 
78414e8015fSLinus Walleij 	ret = regmap_update_bits(data->regmap, BMP280_REG_CONFIG,
78514e8015fSLinus Walleij 				 BMP280_FILTER_MASK,
78614e8015fSLinus Walleij 				 BMP280_FILTER_4X);
78714e8015fSLinus Walleij 	if (ret < 0) {
788b71b2d70SVasileios Amoiridis 		dev_err(data->dev, "failed to write config register\n");
78914e8015fSLinus Walleij 		return ret;
79014e8015fSLinus Walleij 	}
79114e8015fSLinus Walleij 
79214e8015fSLinus Walleij 	return ret;
79314e8015fSLinus Walleij }
79414e8015fSLinus Walleij 
79514e8015fSLinus Walleij static const int bmp280_oversampling_avail[] = { 1, 2, 4, 8, 16 };
796afe335a6SAngel Iglesias static const u8 bmp280_chip_ids[] = { BMP280_CHIP_ID };
79714e8015fSLinus Walleij 
7980b0b7726SAngel Iglesias const struct bmp280_chip_info bmp280_chip_info = {
799b00e805aSAngel Iglesias 	.id_reg = BMP280_REG_ID,
800afe335a6SAngel Iglesias 	.chip_id = bmp280_chip_ids,
801afe335a6SAngel Iglesias 	.num_chip_id = ARRAY_SIZE(bmp280_chip_ids),
8020b0b7726SAngel Iglesias 	.regmap_config = &bmp280_regmap_config,
803b00e805aSAngel Iglesias 	.start_up_time = 2000,
80410b40ffbSAngel Iglesias 	.channels = bmp280_channels,
805b00e805aSAngel Iglesias 	.num_channels = 2,
806b00e805aSAngel Iglesias 
80714e8015fSLinus Walleij 	.oversampling_temp_avail = bmp280_oversampling_avail,
80814e8015fSLinus Walleij 	.num_oversampling_temp_avail = ARRAY_SIZE(bmp280_oversampling_avail),
809b00e805aSAngel Iglesias 	/*
810b00e805aSAngel Iglesias 	 * Oversampling config values on BMx280 have one additional setting
811b00e805aSAngel Iglesias 	 * that other generations of the family don't:
812b00e805aSAngel Iglesias 	 * The value 0 means the measurement is bypassed instead of
813b00e805aSAngel Iglesias 	 * oversampling set to x1.
814b00e805aSAngel Iglesias 	 *
815b00e805aSAngel Iglesias 	 * To account for this difference, and preserve the same common
816b00e805aSAngel Iglesias 	 * config logic, this is handled later on chip_config callback
817b00e805aSAngel Iglesias 	 * incrementing one unit the oversampling setting.
818b00e805aSAngel Iglesias 	 */
819b00e805aSAngel Iglesias 	.oversampling_temp_default = BMP280_OSRS_TEMP_2X - 1,
82014e8015fSLinus Walleij 
82114e8015fSLinus Walleij 	.oversampling_press_avail = bmp280_oversampling_avail,
82214e8015fSLinus Walleij 	.num_oversampling_press_avail = ARRAY_SIZE(bmp280_oversampling_avail),
823b00e805aSAngel Iglesias 	.oversampling_press_default = BMP280_OSRS_PRESS_16X - 1,
82414e8015fSLinus Walleij 
82514e8015fSLinus Walleij 	.chip_config = bmp280_chip_config,
82614e8015fSLinus Walleij 	.read_temp = bmp280_read_temp,
82714e8015fSLinus Walleij 	.read_press = bmp280_read_press,
828b00e805aSAngel Iglesias 	.read_calib = bmp280_read_calib,
82914e8015fSLinus Walleij };
8300b0b7726SAngel Iglesias EXPORT_SYMBOL_NS(bmp280_chip_info, IIO_BMP280);
83114e8015fSLinus Walleij 
bme280_chip_config(struct bmp280_data * data)83214e8015fSLinus Walleij static int bme280_chip_config(struct bmp280_data *data)
83314e8015fSLinus Walleij {
8345da669d9SVasileios Amoiridis 	u8 osrs = FIELD_PREP(BME280_OSRS_HUMIDITY_MASK, data->oversampling_humid + 1);
8355f0c359dSAngel Iglesias 	int ret;
83614e8015fSLinus Walleij 
837eb92b418SAndreas Klinger 	/*
838eb92b418SAndreas Klinger 	 * Oversampling of humidity must be set before oversampling of
839eb92b418SAndreas Klinger 	 * temperature/pressure is set to become effective.
840eb92b418SAndreas Klinger 	 */
8415da669d9SVasileios Amoiridis 	ret = regmap_update_bits(data->regmap, BME280_REG_CTRL_HUMIDITY,
8425da669d9SVasileios Amoiridis 				 BME280_OSRS_HUMIDITY_MASK, osrs);
84314e8015fSLinus Walleij 	if (ret < 0)
84414e8015fSLinus Walleij 		return ret;
84514e8015fSLinus Walleij 
846eb92b418SAndreas Klinger 	return bmp280_chip_config(data);
84714e8015fSLinus Walleij }
84814e8015fSLinus Walleij 
849afe335a6SAngel Iglesias static const u8 bme280_chip_ids[] = { BME280_CHIP_ID };
850afe335a6SAngel Iglesias 
8510b0b7726SAngel Iglesias const struct bmp280_chip_info bme280_chip_info = {
852b00e805aSAngel Iglesias 	.id_reg = BMP280_REG_ID,
853afe335a6SAngel Iglesias 	.chip_id = bme280_chip_ids,
854afe335a6SAngel Iglesias 	.num_chip_id = ARRAY_SIZE(bme280_chip_ids),
855ae6724f9SVasileios Amoiridis 	.regmap_config = &bme280_regmap_config,
856b00e805aSAngel Iglesias 	.start_up_time = 2000,
85710b40ffbSAngel Iglesias 	.channels = bmp280_channels,
858b00e805aSAngel Iglesias 	.num_channels = 3,
859b00e805aSAngel Iglesias 
86014e8015fSLinus Walleij 	.oversampling_temp_avail = bmp280_oversampling_avail,
86114e8015fSLinus Walleij 	.num_oversampling_temp_avail = ARRAY_SIZE(bmp280_oversampling_avail),
862b00e805aSAngel Iglesias 	.oversampling_temp_default = BMP280_OSRS_TEMP_2X - 1,
86314e8015fSLinus Walleij 
86414e8015fSLinus Walleij 	.oversampling_press_avail = bmp280_oversampling_avail,
86514e8015fSLinus Walleij 	.num_oversampling_press_avail = ARRAY_SIZE(bmp280_oversampling_avail),
866b00e805aSAngel Iglesias 	.oversampling_press_default = BMP280_OSRS_PRESS_16X - 1,
86714e8015fSLinus Walleij 
86814e8015fSLinus Walleij 	.oversampling_humid_avail = bmp280_oversampling_avail,
86914e8015fSLinus Walleij 	.num_oversampling_humid_avail = ARRAY_SIZE(bmp280_oversampling_avail),
8705da669d9SVasileios Amoiridis 	.oversampling_humid_default = BME280_OSRS_HUMIDITY_16X - 1,
87114e8015fSLinus Walleij 
87214e8015fSLinus Walleij 	.chip_config = bme280_chip_config,
87314e8015fSLinus Walleij 	.read_temp = bmp280_read_temp,
87414e8015fSLinus Walleij 	.read_press = bmp280_read_press,
8755da669d9SVasileios Amoiridis 	.read_humid = bme280_read_humid,
876b00e805aSAngel Iglesias 	.read_calib = bme280_read_calib,
87714e8015fSLinus Walleij };
8780b0b7726SAngel Iglesias EXPORT_SYMBOL_NS(bme280_chip_info, IIO_BMP280);
87914e8015fSLinus Walleij 
8808d329309SAngel Iglesias /*
8818d329309SAngel Iglesias  * Helper function to send a command to BMP3XX sensors.
8828d329309SAngel Iglesias  *
8838d329309SAngel Iglesias  * Sensor processes commands written to the CMD register and signals
8848d329309SAngel Iglesias  * execution result through "cmd_rdy" and "cmd_error" flags available on
8858d329309SAngel Iglesias  * STATUS and ERROR registers.
8868d329309SAngel Iglesias  */
bmp380_cmd(struct bmp280_data * data,u8 cmd)8878d329309SAngel Iglesias static int bmp380_cmd(struct bmp280_data *data, u8 cmd)
8888d329309SAngel Iglesias {
8898d329309SAngel Iglesias 	unsigned int reg;
8908d329309SAngel Iglesias 	int ret;
8918d329309SAngel Iglesias 
8928d329309SAngel Iglesias 	/* Check if device is ready to process a command */
8938d329309SAngel Iglesias 	ret = regmap_read(data->regmap, BMP380_REG_STATUS, &reg);
8948d329309SAngel Iglesias 	if (ret) {
8958d329309SAngel Iglesias 		dev_err(data->dev, "failed to read error register\n");
8968d329309SAngel Iglesias 		return ret;
8978d329309SAngel Iglesias 	}
8988d329309SAngel Iglesias 	if (!(reg & BMP380_STATUS_CMD_RDY_MASK)) {
8998d329309SAngel Iglesias 		dev_err(data->dev, "device is not ready to accept commands\n");
9008d329309SAngel Iglesias 		return -EBUSY;
9018d329309SAngel Iglesias 	}
9028d329309SAngel Iglesias 
9038d329309SAngel Iglesias 	/* Send command to process */
9048d329309SAngel Iglesias 	ret = regmap_write(data->regmap, BMP380_REG_CMD, cmd);
9058d329309SAngel Iglesias 	if (ret) {
9068d329309SAngel Iglesias 		dev_err(data->dev, "failed to send command to device\n");
9078d329309SAngel Iglesias 		return ret;
9088d329309SAngel Iglesias 	}
9098d329309SAngel Iglesias 	/* Wait for 2ms for command to be processed */
9108d329309SAngel Iglesias 	usleep_range(data->start_up_time, data->start_up_time + 100);
9118d329309SAngel Iglesias 	/* Check for command processing error */
9128d329309SAngel Iglesias 	ret = regmap_read(data->regmap, BMP380_REG_ERROR, &reg);
9138d329309SAngel Iglesias 	if (ret) {
9148d329309SAngel Iglesias 		dev_err(data->dev, "error reading ERROR reg\n");
9158d329309SAngel Iglesias 		return ret;
9168d329309SAngel Iglesias 	}
9178d329309SAngel Iglesias 	if (reg & BMP380_ERR_CMD_MASK) {
9188d329309SAngel Iglesias 		dev_err(data->dev, "error processing command 0x%X\n", cmd);
9198d329309SAngel Iglesias 		return -EINVAL;
9208d329309SAngel Iglesias 	}
9218d329309SAngel Iglesias 
9228d329309SAngel Iglesias 	return 0;
9238d329309SAngel Iglesias }
9248d329309SAngel Iglesias 
9258d329309SAngel Iglesias /*
926b71b2d70SVasileios Amoiridis  * Returns temperature in Celsius degrees, resolution is 0.01º C. Output value
927b71b2d70SVasileios Amoiridis  * of "5123" equals 51.2º C. t_fine carries fine temperature as global value.
9288d329309SAngel Iglesias  *
9298d329309SAngel Iglesias  * Taken from datasheet, Section Appendix 9, "Compensation formula" and repo
9308d329309SAngel Iglesias  * https://github.com/BoschSensortec/BMP3-Sensor-API.
9318d329309SAngel Iglesias  */
bmp380_compensate_temp(struct bmp280_data * data,u32 adc_temp)9328d329309SAngel Iglesias static s32 bmp380_compensate_temp(struct bmp280_data *data, u32 adc_temp)
9338d329309SAngel Iglesias {
9348d329309SAngel Iglesias 	s64 var1, var2, var3, var4, var5, var6, comp_temp;
9358d329309SAngel Iglesias 	struct bmp380_calib *calib = &data->calib.bmp380;
9368d329309SAngel Iglesias 
9378d329309SAngel Iglesias 	var1 = ((s64) adc_temp) - (((s64) calib->T1) << 8);
9388d329309SAngel Iglesias 	var2 = var1 * ((s64) calib->T2);
9398d329309SAngel Iglesias 	var3 = var1 * var1;
9408d329309SAngel Iglesias 	var4 = var3 * ((s64) calib->T3);
9418d329309SAngel Iglesias 	var5 = (var2 << 18) + var4;
9428d329309SAngel Iglesias 	var6 = var5 >> 32;
9438d329309SAngel Iglesias 	data->t_fine = (s32) var6;
9448d329309SAngel Iglesias 	comp_temp = (var6 * 25) >> 14;
9458d329309SAngel Iglesias 
9468d329309SAngel Iglesias 	comp_temp = clamp_val(comp_temp, BMP380_MIN_TEMP, BMP380_MAX_TEMP);
9478d329309SAngel Iglesias 	return (s32) comp_temp;
9488d329309SAngel Iglesias }
9498d329309SAngel Iglesias 
9508d329309SAngel Iglesias /*
9518d329309SAngel Iglesias  * Returns pressure in Pa as an unsigned 32 bit integer in fractional Pascal.
9528d329309SAngel Iglesias  * Output value of "9528709" represents 9528709/100 = 95287.09 Pa = 952.8709 hPa.
9538d329309SAngel Iglesias  *
9548d329309SAngel Iglesias  * Taken from datasheet, Section 9.3. "Pressure compensation" and repository
9558d329309SAngel Iglesias  * https://github.com/BoschSensortec/BMP3-Sensor-API.
9568d329309SAngel Iglesias  */
bmp380_compensate_press(struct bmp280_data * data,u32 adc_press)9578d329309SAngel Iglesias static u32 bmp380_compensate_press(struct bmp280_data *data, u32 adc_press)
9588d329309SAngel Iglesias {
9598d329309SAngel Iglesias 	s64 var1, var2, var3, var4, var5, var6, offset, sensitivity;
9608d329309SAngel Iglesias 	struct bmp380_calib *calib = &data->calib.bmp380;
9618d329309SAngel Iglesias 	u32 comp_press;
9628d329309SAngel Iglesias 
9638d329309SAngel Iglesias 	var1 = (s64)data->t_fine * (s64)data->t_fine;
9648d329309SAngel Iglesias 	var2 = var1 >> 6;
9658d329309SAngel Iglesias 	var3 = (var2 * ((s64) data->t_fine)) >> 8;
9668d329309SAngel Iglesias 	var4 = ((s64)calib->P8 * var3) >> 5;
9678d329309SAngel Iglesias 	var5 = ((s64)calib->P7 * var1) << 4;
9688d329309SAngel Iglesias 	var6 = ((s64)calib->P6 * (s64)data->t_fine) << 22;
9698d329309SAngel Iglesias 	offset = ((s64)calib->P5 << 47) + var4 + var5 + var6;
9708d329309SAngel Iglesias 	var2 = ((s64)calib->P4 * var3) >> 5;
9718d329309SAngel Iglesias 	var4 = ((s64)calib->P3 * var1) << 2;
9728d329309SAngel Iglesias 	var5 = ((s64)calib->P2 - ((s64)1 << 14)) *
9738d329309SAngel Iglesias 	       ((s64)data->t_fine << 21);
9748d329309SAngel Iglesias 	sensitivity = (((s64) calib->P1 - ((s64) 1 << 14)) << 46) +
9758d329309SAngel Iglesias 			var2 + var4 + var5;
9768d329309SAngel Iglesias 	var1 = (sensitivity >> 24) * (s64)adc_press;
9778d329309SAngel Iglesias 	var2 = (s64)calib->P10 * (s64)data->t_fine;
9788d329309SAngel Iglesias 	var3 = var2 + ((s64)calib->P9 << 16);
9798d329309SAngel Iglesias 	var4 = (var3 * (s64)adc_press) >> 13;
9808d329309SAngel Iglesias 
9818d329309SAngel Iglesias 	/*
9828d329309SAngel Iglesias 	 * Dividing by 10 followed by multiplying by 10 to avoid
9838d329309SAngel Iglesias 	 * possible overflow caused by (uncomp_data->pressure * partial_data4).
9848d329309SAngel Iglesias 	 */
9858d329309SAngel Iglesias 	var5 = ((s64)adc_press * div_s64(var4, 10)) >> 9;
9868d329309SAngel Iglesias 	var5 *= 10;
9878d329309SAngel Iglesias 	var6 = (s64)adc_press * (s64)adc_press;
9888d329309SAngel Iglesias 	var2 = ((s64)calib->P11 * var6) >> 16;
9898d329309SAngel Iglesias 	var3 = (var2 * (s64)adc_press) >> 7;
9908d329309SAngel Iglesias 	var4 = (offset >> 2) + var1 + var5 + var3;
9918d329309SAngel Iglesias 	comp_press = ((u64)var4 * 25) >> 40;
9928d329309SAngel Iglesias 
9938d329309SAngel Iglesias 	comp_press = clamp_val(comp_press, BMP380_MIN_PRES, BMP380_MAX_PRES);
9948d329309SAngel Iglesias 	return comp_press;
9958d329309SAngel Iglesias }
9968d329309SAngel Iglesias 
bmp380_read_temp(struct bmp280_data * data,int * val,int * val2)997597dfb2aSAngel Iglesias static int bmp380_read_temp(struct bmp280_data *data, int *val, int *val2)
9988d329309SAngel Iglesias {
9998d329309SAngel Iglesias 	s32 comp_temp;
10008d329309SAngel Iglesias 	u32 adc_temp;
10018d329309SAngel Iglesias 	int ret;
10028d329309SAngel Iglesias 
10038d329309SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP380_REG_TEMP_XLSB,
10048d329309SAngel Iglesias 			       data->buf, sizeof(data->buf));
10058d329309SAngel Iglesias 	if (ret) {
10068d329309SAngel Iglesias 		dev_err(data->dev, "failed to read temperature\n");
10078d329309SAngel Iglesias 		return ret;
10088d329309SAngel Iglesias 	}
10098d329309SAngel Iglesias 
10108d329309SAngel Iglesias 	adc_temp = get_unaligned_le24(data->buf);
10118d329309SAngel Iglesias 	if (adc_temp == BMP380_TEMP_SKIPPED) {
10128d329309SAngel Iglesias 		dev_err(data->dev, "reading temperature skipped\n");
10138d329309SAngel Iglesias 		return -EIO;
10148d329309SAngel Iglesias 	}
10158d329309SAngel Iglesias 	comp_temp = bmp380_compensate_temp(data, adc_temp);
10168d329309SAngel Iglesias 
10178d329309SAngel Iglesias 	/*
10188d329309SAngel Iglesias 	 * Val might be NULL if we're called by the read_press routine,
10198d329309SAngel Iglesias 	 * who only cares about the carry over t_fine value.
10208d329309SAngel Iglesias 	 */
10218d329309SAngel Iglesias 	if (val) {
10228d329309SAngel Iglesias 		/* IIO reports temperatures in milli Celsius */
10238d329309SAngel Iglesias 		*val = comp_temp * 10;
10248d329309SAngel Iglesias 		return IIO_VAL_INT;
10258d329309SAngel Iglesias 	}
10268d329309SAngel Iglesias 
10278d329309SAngel Iglesias 	return 0;
10288d329309SAngel Iglesias }
10298d329309SAngel Iglesias 
bmp380_read_press(struct bmp280_data * data,int * val,int * val2)10308d329309SAngel Iglesias static int bmp380_read_press(struct bmp280_data *data, int *val, int *val2)
10318d329309SAngel Iglesias {
10328d329309SAngel Iglesias 	s32 comp_press;
10338d329309SAngel Iglesias 	u32 adc_press;
10348d329309SAngel Iglesias 	int ret;
10358d329309SAngel Iglesias 
10368d329309SAngel Iglesias 	/* Read and compensate for temperature so we get a reading of t_fine */
1037597dfb2aSAngel Iglesias 	ret = bmp380_read_temp(data, NULL, NULL);
10388d329309SAngel Iglesias 	if (ret)
10398d329309SAngel Iglesias 		return ret;
10408d329309SAngel Iglesias 
10418d329309SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP380_REG_PRESS_XLSB,
10428d329309SAngel Iglesias 			       data->buf, sizeof(data->buf));
10438d329309SAngel Iglesias 	if (ret) {
10448d329309SAngel Iglesias 		dev_err(data->dev, "failed to read pressure\n");
10458d329309SAngel Iglesias 		return ret;
10468d329309SAngel Iglesias 	}
10478d329309SAngel Iglesias 
10488d329309SAngel Iglesias 	adc_press = get_unaligned_le24(data->buf);
10498d329309SAngel Iglesias 	if (adc_press == BMP380_PRESS_SKIPPED) {
10508d329309SAngel Iglesias 		dev_err(data->dev, "reading pressure skipped\n");
10518d329309SAngel Iglesias 		return -EIO;
10528d329309SAngel Iglesias 	}
10538d329309SAngel Iglesias 	comp_press = bmp380_compensate_press(data, adc_press);
10548d329309SAngel Iglesias 
10558d329309SAngel Iglesias 	*val = comp_press;
10568d329309SAngel Iglesias 	/* Compensated pressure is in cPa (centipascals) */
10578d329309SAngel Iglesias 	*val2 = 100000;
10588d329309SAngel Iglesias 
10598d329309SAngel Iglesias 	return IIO_VAL_FRACTIONAL;
10608d329309SAngel Iglesias }
10618d329309SAngel Iglesias 
bmp380_read_calib(struct bmp280_data * data)10628d329309SAngel Iglesias static int bmp380_read_calib(struct bmp280_data *data)
10638d329309SAngel Iglesias {
10648d329309SAngel Iglesias 	struct bmp380_calib *calib = &data->calib.bmp380;
10658d329309SAngel Iglesias 	int ret;
10668d329309SAngel Iglesias 
10678d329309SAngel Iglesias 	/* Read temperature and pressure calibration data */
10688d329309SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP380_REG_CALIB_TEMP_START,
1069b71b2d70SVasileios Amoiridis 			       data->bmp380_cal_buf,
1070b71b2d70SVasileios Amoiridis 			       sizeof(data->bmp380_cal_buf));
10718d329309SAngel Iglesias 	if (ret) {
10728d329309SAngel Iglesias 		dev_err(data->dev,
10738d329309SAngel Iglesias 			"failed to read temperature calibration parameters\n");
10748d329309SAngel Iglesias 		return ret;
10758d329309SAngel Iglesias 	}
10768d329309SAngel Iglesias 
10778d329309SAngel Iglesias 	/* Toss the temperature calibration data into the entropy pool */
1078b71b2d70SVasileios Amoiridis 	add_device_randomness(data->bmp380_cal_buf,
1079b71b2d70SVasileios Amoiridis 			      sizeof(data->bmp380_cal_buf));
10808d329309SAngel Iglesias 
10818d329309SAngel Iglesias 	/* Parse calibration values */
10828d329309SAngel Iglesias 	calib->T1 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_T1]);
10838d329309SAngel Iglesias 	calib->T2 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_T2]);
10848d329309SAngel Iglesias 	calib->T3 = data->bmp380_cal_buf[BMP380_T3];
10858d329309SAngel Iglesias 	calib->P1 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_P1]);
10868d329309SAngel Iglesias 	calib->P2 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_P2]);
10878d329309SAngel Iglesias 	calib->P3 = data->bmp380_cal_buf[BMP380_P3];
10888d329309SAngel Iglesias 	calib->P4 = data->bmp380_cal_buf[BMP380_P4];
10898d329309SAngel Iglesias 	calib->P5 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_P5]);
10908d329309SAngel Iglesias 	calib->P6 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_P6]);
10918d329309SAngel Iglesias 	calib->P7 = data->bmp380_cal_buf[BMP380_P7];
10928d329309SAngel Iglesias 	calib->P8 = data->bmp380_cal_buf[BMP380_P8];
10938d329309SAngel Iglesias 	calib->P9 = get_unaligned_le16(&data->bmp380_cal_buf[BMP380_P9]);
10948d329309SAngel Iglesias 	calib->P10 = data->bmp380_cal_buf[BMP380_P10];
10958d329309SAngel Iglesias 	calib->P11 = data->bmp380_cal_buf[BMP380_P11];
10968d329309SAngel Iglesias 
10978d329309SAngel Iglesias 	return 0;
10988d329309SAngel Iglesias }
10998d329309SAngel Iglesias 
110010b40ffbSAngel Iglesias static const int bmp380_odr_table[][2] = {
110110b40ffbSAngel Iglesias 	[BMP380_ODR_200HZ]	= {200, 0},
110210b40ffbSAngel Iglesias 	[BMP380_ODR_100HZ]	= {100, 0},
110310b40ffbSAngel Iglesias 	[BMP380_ODR_50HZ]	= {50, 0},
110410b40ffbSAngel Iglesias 	[BMP380_ODR_25HZ]	= {25, 0},
110510b40ffbSAngel Iglesias 	[BMP380_ODR_12_5HZ]	= {12, 500000},
110610b40ffbSAngel Iglesias 	[BMP380_ODR_6_25HZ]	= {6, 250000},
110710b40ffbSAngel Iglesias 	[BMP380_ODR_3_125HZ]	= {3, 125000},
110810b40ffbSAngel Iglesias 	[BMP380_ODR_1_5625HZ]	= {1, 562500},
110910b40ffbSAngel Iglesias 	[BMP380_ODR_0_78HZ]	= {0, 781250},
111010b40ffbSAngel Iglesias 	[BMP380_ODR_0_39HZ]	= {0, 390625},
111110b40ffbSAngel Iglesias 	[BMP380_ODR_0_2HZ]	= {0, 195313},
111210b40ffbSAngel Iglesias 	[BMP380_ODR_0_1HZ]	= {0, 97656},
111310b40ffbSAngel Iglesias 	[BMP380_ODR_0_05HZ]	= {0, 48828},
111410b40ffbSAngel Iglesias 	[BMP380_ODR_0_02HZ]	= {0, 24414},
111510b40ffbSAngel Iglesias 	[BMP380_ODR_0_01HZ]	= {0, 12207},
111610b40ffbSAngel Iglesias 	[BMP380_ODR_0_006HZ]	= {0, 6104},
111710b40ffbSAngel Iglesias 	[BMP380_ODR_0_003HZ]	= {0, 3052},
111810b40ffbSAngel Iglesias 	[BMP380_ODR_0_0015HZ]	= {0, 1526},
111910b40ffbSAngel Iglesias };
112010b40ffbSAngel Iglesias 
bmp380_preinit(struct bmp280_data * data)1121c25ea00fSAngel Iglesias static int bmp380_preinit(struct bmp280_data *data)
1122c25ea00fSAngel Iglesias {
1123c25ea00fSAngel Iglesias 	/* BMP3xx requires soft-reset as part of initialization */
1124c25ea00fSAngel Iglesias 	return bmp380_cmd(data, BMP380_CMD_SOFT_RESET);
1125c25ea00fSAngel Iglesias }
1126c25ea00fSAngel Iglesias 
bmp380_chip_config(struct bmp280_data * data)11278d329309SAngel Iglesias static int bmp380_chip_config(struct bmp280_data *data)
11288d329309SAngel Iglesias {
11298d329309SAngel Iglesias 	bool change = false, aux;
11308d329309SAngel Iglesias 	unsigned int tmp;
11318d329309SAngel Iglesias 	u8 osrs;
11328d329309SAngel Iglesias 	int ret;
11338d329309SAngel Iglesias 
11348d329309SAngel Iglesias 	/* Configure power control register */
11358d329309SAngel Iglesias 	ret = regmap_update_bits(data->regmap, BMP380_REG_POWER_CONTROL,
11368d329309SAngel Iglesias 				 BMP380_CTRL_SENSORS_MASK,
11378d329309SAngel Iglesias 				 BMP380_CTRL_SENSORS_PRESS_EN |
11388d329309SAngel Iglesias 				 BMP380_CTRL_SENSORS_TEMP_EN);
11398d329309SAngel Iglesias 	if (ret) {
11408d329309SAngel Iglesias 		dev_err(data->dev,
11418d329309SAngel Iglesias 			"failed to write operation control register\n");
11428d329309SAngel Iglesias 		return ret;
11438d329309SAngel Iglesias 	}
11448d329309SAngel Iglesias 
11458d329309SAngel Iglesias 	/* Configure oversampling */
11468d329309SAngel Iglesias 	osrs = FIELD_PREP(BMP380_OSRS_TEMP_MASK, data->oversampling_temp) |
11478d329309SAngel Iglesias 	       FIELD_PREP(BMP380_OSRS_PRESS_MASK, data->oversampling_press);
11488d329309SAngel Iglesias 
11498d329309SAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP380_REG_OSR,
11508d329309SAngel Iglesias 				       BMP380_OSRS_TEMP_MASK |
11518d329309SAngel Iglesias 				       BMP380_OSRS_PRESS_MASK,
11528d329309SAngel Iglesias 				       osrs, &aux);
11538d329309SAngel Iglesias 	if (ret) {
11548d329309SAngel Iglesias 		dev_err(data->dev, "failed to write oversampling register\n");
11558d329309SAngel Iglesias 		return ret;
11568d329309SAngel Iglesias 	}
11578d329309SAngel Iglesias 	change = change || aux;
11588d329309SAngel Iglesias 
11598d329309SAngel Iglesias 	/* Configure output data rate */
116010b40ffbSAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP380_REG_ODR,
1161b71b2d70SVasileios Amoiridis 				       BMP380_ODRS_MASK, data->sampling_freq,
1162b71b2d70SVasileios Amoiridis 				       &aux);
11638d329309SAngel Iglesias 	if (ret) {
11648d329309SAngel Iglesias 		dev_err(data->dev, "failed to write ODR selection register\n");
11658d329309SAngel Iglesias 		return ret;
11668d329309SAngel Iglesias 	}
116710b40ffbSAngel Iglesias 	change = change || aux;
11688d329309SAngel Iglesias 
11698d329309SAngel Iglesias 	/* Set filter data */
117010b40ffbSAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP380_REG_CONFIG, BMP380_FILTER_MASK,
117110b40ffbSAngel Iglesias 				       FIELD_PREP(BMP380_FILTER_MASK, data->iir_filter_coeff),
117210b40ffbSAngel Iglesias 				       &aux);
11738d329309SAngel Iglesias 	if (ret) {
11748d329309SAngel Iglesias 		dev_err(data->dev, "failed to write config register\n");
11758d329309SAngel Iglesias 		return ret;
11768d329309SAngel Iglesias 	}
117710b40ffbSAngel Iglesias 	change = change || aux;
11788d329309SAngel Iglesias 
11798d329309SAngel Iglesias 	if (change) {
11808d329309SAngel Iglesias 		/*
1181b71b2d70SVasileios Amoiridis 		 * The configurations errors are detected on the fly during a
1182b71b2d70SVasileios Amoiridis 		 * measurement cycle. If the sampling frequency is too low, it's
1183b71b2d70SVasileios Amoiridis 		 * faster to reset the measurement loop than wait until the next
1184b71b2d70SVasileios Amoiridis 		 * measurement is due.
11858d329309SAngel Iglesias 		 *
1186b71b2d70SVasileios Amoiridis 		 * Resets sensor measurement loop toggling between sleep and
1187b71b2d70SVasileios Amoiridis 		 * normal operating modes.
11888d329309SAngel Iglesias 		 */
11898d329309SAngel Iglesias 		ret = regmap_write_bits(data->regmap, BMP380_REG_POWER_CONTROL,
11908d329309SAngel Iglesias 					BMP380_MODE_MASK,
11918d329309SAngel Iglesias 					FIELD_PREP(BMP380_MODE_MASK, BMP380_MODE_SLEEP));
11928d329309SAngel Iglesias 		if (ret) {
11938d329309SAngel Iglesias 			dev_err(data->dev, "failed to set sleep mode\n");
11948d329309SAngel Iglesias 			return ret;
11958d329309SAngel Iglesias 		}
11968d329309SAngel Iglesias 		usleep_range(2000, 2500);
11978d329309SAngel Iglesias 		ret = regmap_write_bits(data->regmap, BMP380_REG_POWER_CONTROL,
11988d329309SAngel Iglesias 					BMP380_MODE_MASK,
11998d329309SAngel Iglesias 					FIELD_PREP(BMP380_MODE_MASK, BMP380_MODE_NORMAL));
12008d329309SAngel Iglesias 		if (ret) {
12018d329309SAngel Iglesias 			dev_err(data->dev, "failed to set normal mode\n");
12028d329309SAngel Iglesias 			return ret;
12038d329309SAngel Iglesias 		}
12048d329309SAngel Iglesias 		/*
1205b71b2d70SVasileios Amoiridis 		 * Waits for measurement before checking configuration error
1206*736da424SVasileios Amoiridis 		 * flag. Selected longest measurement time, calculated from
1207*736da424SVasileios Amoiridis 		 * formula in datasheet section 3.9.2 with an offset of ~+15%
1208*736da424SVasileios Amoiridis 		 * as it seen as well in table 3.9.1.
12098d329309SAngel Iglesias 		 */
1210*736da424SVasileios Amoiridis 		msleep(150);
12118d329309SAngel Iglesias 
12128d329309SAngel Iglesias 		/* Check config error flag */
12138d329309SAngel Iglesias 		ret = regmap_read(data->regmap, BMP380_REG_ERROR, &tmp);
12148d329309SAngel Iglesias 		if (ret) {
1215b71b2d70SVasileios Amoiridis 			dev_err(data->dev, "failed to read error register\n");
12168d329309SAngel Iglesias 			return ret;
12178d329309SAngel Iglesias 		}
12188d329309SAngel Iglesias 		if (tmp & BMP380_ERR_CONF_MASK) {
12198d329309SAngel Iglesias 			dev_warn(data->dev,
12208d329309SAngel Iglesias 				 "sensor flagged configuration as incompatible\n");
12218d329309SAngel Iglesias 			return -EINVAL;
12228d329309SAngel Iglesias 		}
12238d329309SAngel Iglesias 	}
12248d329309SAngel Iglesias 
12258d329309SAngel Iglesias 	return 0;
12268d329309SAngel Iglesias }
12278d329309SAngel Iglesias 
12288d329309SAngel Iglesias static const int bmp380_oversampling_avail[] = { 1, 2, 4, 8, 16, 32 };
122910b40ffbSAngel Iglesias static const int bmp380_iir_filter_coeffs_avail[] = { 1, 2, 4, 8, 16, 32, 64, 128};
1230afe335a6SAngel Iglesias static const u8 bmp380_chip_ids[] = { BMP380_CHIP_ID };
12318d329309SAngel Iglesias 
12320b0b7726SAngel Iglesias const struct bmp280_chip_info bmp380_chip_info = {
12338d329309SAngel Iglesias 	.id_reg = BMP380_REG_ID,
1234afe335a6SAngel Iglesias 	.chip_id = bmp380_chip_ids,
1235afe335a6SAngel Iglesias 	.num_chip_id = ARRAY_SIZE(bmp380_chip_ids),
12360b0b7726SAngel Iglesias 	.regmap_config = &bmp380_regmap_config,
12378d329309SAngel Iglesias 	.start_up_time = 2000,
123810b40ffbSAngel Iglesias 	.channels = bmp380_channels,
12398d329309SAngel Iglesias 	.num_channels = 2,
12408d329309SAngel Iglesias 
12418d329309SAngel Iglesias 	.oversampling_temp_avail = bmp380_oversampling_avail,
12428d329309SAngel Iglesias 	.num_oversampling_temp_avail = ARRAY_SIZE(bmp380_oversampling_avail),
12438d329309SAngel Iglesias 	.oversampling_temp_default = ilog2(1),
12448d329309SAngel Iglesias 
12458d329309SAngel Iglesias 	.oversampling_press_avail = bmp380_oversampling_avail,
12468d329309SAngel Iglesias 	.num_oversampling_press_avail = ARRAY_SIZE(bmp380_oversampling_avail),
12478d329309SAngel Iglesias 	.oversampling_press_default = ilog2(4),
12488d329309SAngel Iglesias 
124910b40ffbSAngel Iglesias 	.sampling_freq_avail = bmp380_odr_table,
125010b40ffbSAngel Iglesias 	.num_sampling_freq_avail = ARRAY_SIZE(bmp380_odr_table) * 2,
125110b40ffbSAngel Iglesias 	.sampling_freq_default = BMP380_ODR_50HZ,
125210b40ffbSAngel Iglesias 
125310b40ffbSAngel Iglesias 	.iir_filter_coeffs_avail = bmp380_iir_filter_coeffs_avail,
125410b40ffbSAngel Iglesias 	.num_iir_filter_coeffs_avail = ARRAY_SIZE(bmp380_iir_filter_coeffs_avail),
125510b40ffbSAngel Iglesias 	.iir_filter_coeff_default = 2,
125610b40ffbSAngel Iglesias 
12578d329309SAngel Iglesias 	.chip_config = bmp380_chip_config,
12588d329309SAngel Iglesias 	.read_temp = bmp380_read_temp,
12598d329309SAngel Iglesias 	.read_press = bmp380_read_press,
12608d329309SAngel Iglesias 	.read_calib = bmp380_read_calib,
1261c25ea00fSAngel Iglesias 	.preinit = bmp380_preinit,
12628d329309SAngel Iglesias };
12630b0b7726SAngel Iglesias EXPORT_SYMBOL_NS(bmp380_chip_info, IIO_BMP280);
12648d329309SAngel Iglesias 
bmp580_soft_reset(struct bmp280_data * data)1265597dfb2aSAngel Iglesias static int bmp580_soft_reset(struct bmp280_data *data)
1266597dfb2aSAngel Iglesias {
1267597dfb2aSAngel Iglesias 	unsigned int reg;
1268597dfb2aSAngel Iglesias 	int ret;
1269597dfb2aSAngel Iglesias 
1270597dfb2aSAngel Iglesias 	ret = regmap_write(data->regmap, BMP580_REG_CMD, BMP580_CMD_SOFT_RESET);
1271597dfb2aSAngel Iglesias 	if (ret) {
1272597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to send reset command to device\n");
1273597dfb2aSAngel Iglesias 		return ret;
1274597dfb2aSAngel Iglesias 	}
1275597dfb2aSAngel Iglesias 	usleep_range(2000, 2500);
1276597dfb2aSAngel Iglesias 
1277597dfb2aSAngel Iglesias 	/* Dummy read of chip_id */
1278597dfb2aSAngel Iglesias 	ret = regmap_read(data->regmap, BMP580_REG_CHIP_ID, &reg);
1279597dfb2aSAngel Iglesias 	if (ret) {
1280597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to reestablish comms after reset\n");
1281597dfb2aSAngel Iglesias 		return ret;
1282597dfb2aSAngel Iglesias 	}
1283597dfb2aSAngel Iglesias 
1284597dfb2aSAngel Iglesias 	ret = regmap_read(data->regmap, BMP580_REG_INT_STATUS, &reg);
1285597dfb2aSAngel Iglesias 	if (ret) {
1286597dfb2aSAngel Iglesias 		dev_err(data->dev, "error reading interrupt status register\n");
1287597dfb2aSAngel Iglesias 		return ret;
1288597dfb2aSAngel Iglesias 	}
1289597dfb2aSAngel Iglesias 	if (!(reg & BMP580_INT_STATUS_POR_MASK)) {
1290597dfb2aSAngel Iglesias 		dev_err(data->dev, "error resetting sensor\n");
1291597dfb2aSAngel Iglesias 		return -EINVAL;
1292597dfb2aSAngel Iglesias 	}
1293597dfb2aSAngel Iglesias 
1294597dfb2aSAngel Iglesias 	return 0;
1295597dfb2aSAngel Iglesias }
1296597dfb2aSAngel Iglesias 
1297accb9d05SAngel Iglesias /**
1298accb9d05SAngel Iglesias  * bmp580_nvm_operation() - Helper function to commit NVM memory operations
1299accb9d05SAngel Iglesias  * @data: sensor data struct
1300accb9d05SAngel Iglesias  * @is_write: flag to signal write operation
1301accb9d05SAngel Iglesias  */
bmp580_nvm_operation(struct bmp280_data * data,bool is_write)1302accb9d05SAngel Iglesias static int bmp580_nvm_operation(struct bmp280_data *data, bool is_write)
1303accb9d05SAngel Iglesias {
1304accb9d05SAngel Iglesias 	unsigned long timeout, poll;
1305accb9d05SAngel Iglesias 	unsigned int reg;
1306accb9d05SAngel Iglesias 	int ret;
1307accb9d05SAngel Iglesias 
1308accb9d05SAngel Iglesias 	/* Check NVM ready flag */
1309accb9d05SAngel Iglesias 	ret = regmap_read(data->regmap, BMP580_REG_STATUS, &reg);
1310accb9d05SAngel Iglesias 	if (ret) {
1311accb9d05SAngel Iglesias 		dev_err(data->dev, "failed to check nvm status\n");
1312accb9d05SAngel Iglesias 		return ret;
1313accb9d05SAngel Iglesias 	}
1314accb9d05SAngel Iglesias 	if (!(reg & BMP580_STATUS_NVM_RDY_MASK)) {
1315accb9d05SAngel Iglesias 		dev_err(data->dev, "sensor's nvm is not ready\n");
1316accb9d05SAngel Iglesias 		return -EIO;
1317accb9d05SAngel Iglesias 	}
1318accb9d05SAngel Iglesias 
1319accb9d05SAngel Iglesias 	/* Start NVM operation sequence */
1320b71b2d70SVasileios Amoiridis 	ret = regmap_write(data->regmap, BMP580_REG_CMD,
1321b71b2d70SVasileios Amoiridis 			   BMP580_CMD_NVM_OP_SEQ_0);
1322accb9d05SAngel Iglesias 	if (ret) {
1323b71b2d70SVasileios Amoiridis 		dev_err(data->dev,
1324b71b2d70SVasileios Amoiridis 			"failed to send nvm operation's first sequence\n");
1325accb9d05SAngel Iglesias 		return ret;
1326accb9d05SAngel Iglesias 	}
1327accb9d05SAngel Iglesias 	if (is_write) {
1328accb9d05SAngel Iglesias 		/* Send NVM write sequence */
1329accb9d05SAngel Iglesias 		ret = regmap_write(data->regmap, BMP580_REG_CMD,
1330accb9d05SAngel Iglesias 				   BMP580_CMD_NVM_WRITE_SEQ_1);
1331accb9d05SAngel Iglesias 		if (ret) {
1332b71b2d70SVasileios Amoiridis 			dev_err(data->dev,
1333b71b2d70SVasileios Amoiridis 				"failed to send nvm write sequence\n");
1334accb9d05SAngel Iglesias 			return ret;
1335accb9d05SAngel Iglesias 		}
1336accb9d05SAngel Iglesias 		/* Datasheet says on 4.8.1.2 it takes approximately 10ms */
1337accb9d05SAngel Iglesias 		poll = 2000;
1338accb9d05SAngel Iglesias 		timeout = 12000;
1339accb9d05SAngel Iglesias 	} else {
1340accb9d05SAngel Iglesias 		/* Send NVM read sequence */
1341accb9d05SAngel Iglesias 		ret = regmap_write(data->regmap, BMP580_REG_CMD,
1342accb9d05SAngel Iglesias 				   BMP580_CMD_NVM_READ_SEQ_1);
1343accb9d05SAngel Iglesias 		if (ret) {
1344b71b2d70SVasileios Amoiridis 			dev_err(data->dev,
1345b71b2d70SVasileios Amoiridis 				"failed to send nvm read sequence\n");
1346accb9d05SAngel Iglesias 			return ret;
1347accb9d05SAngel Iglesias 		}
1348accb9d05SAngel Iglesias 		/* Datasheet says on 4.8.1.1 it takes approximately 200us */
1349accb9d05SAngel Iglesias 		poll = 50;
1350accb9d05SAngel Iglesias 		timeout = 400;
1351accb9d05SAngel Iglesias 	}
1352accb9d05SAngel Iglesias 	if (ret) {
1353accb9d05SAngel Iglesias 		dev_err(data->dev, "failed to write command sequence\n");
1354accb9d05SAngel Iglesias 		return -EIO;
1355accb9d05SAngel Iglesias 	}
1356accb9d05SAngel Iglesias 
1357accb9d05SAngel Iglesias 	/* Wait until NVM is ready again */
1358accb9d05SAngel Iglesias 	ret = regmap_read_poll_timeout(data->regmap, BMP580_REG_STATUS, reg,
1359accb9d05SAngel Iglesias 				       (reg & BMP580_STATUS_NVM_RDY_MASK),
1360accb9d05SAngel Iglesias 				       poll, timeout);
1361accb9d05SAngel Iglesias 	if (ret) {
1362accb9d05SAngel Iglesias 		dev_err(data->dev, "error checking nvm operation status\n");
1363accb9d05SAngel Iglesias 		return ret;
1364accb9d05SAngel Iglesias 	}
1365accb9d05SAngel Iglesias 
1366accb9d05SAngel Iglesias 	/* Check NVM error flags */
1367accb9d05SAngel Iglesias 	if ((reg & BMP580_STATUS_NVM_ERR_MASK) || (reg & BMP580_STATUS_NVM_CMD_ERR_MASK)) {
1368accb9d05SAngel Iglesias 		dev_err(data->dev, "error processing nvm operation\n");
1369accb9d05SAngel Iglesias 		return -EIO;
1370accb9d05SAngel Iglesias 	}
1371accb9d05SAngel Iglesias 
1372accb9d05SAngel Iglesias 	return 0;
1373accb9d05SAngel Iglesias }
1374accb9d05SAngel Iglesias 
1375597dfb2aSAngel Iglesias /*
1376597dfb2aSAngel Iglesias  * Contrary to previous sensors families, compensation algorithm is builtin.
1377597dfb2aSAngel Iglesias  * We are only required to read the register raw data and adapt the ranges
1378597dfb2aSAngel Iglesias  * for what is expected on IIO ABI.
1379597dfb2aSAngel Iglesias  */
1380597dfb2aSAngel Iglesias 
bmp580_read_temp(struct bmp280_data * data,int * val,int * val2)1381597dfb2aSAngel Iglesias static int bmp580_read_temp(struct bmp280_data *data, int *val, int *val2)
1382597dfb2aSAngel Iglesias {
1383597dfb2aSAngel Iglesias 	s32 raw_temp;
1384597dfb2aSAngel Iglesias 	int ret;
1385597dfb2aSAngel Iglesias 
1386597dfb2aSAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP580_REG_TEMP_XLSB, data->buf,
1387597dfb2aSAngel Iglesias 			       sizeof(data->buf));
1388597dfb2aSAngel Iglesias 	if (ret) {
1389597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to read temperature\n");
1390597dfb2aSAngel Iglesias 		return ret;
1391597dfb2aSAngel Iglesias 	}
1392597dfb2aSAngel Iglesias 
1393597dfb2aSAngel Iglesias 	raw_temp = get_unaligned_le24(data->buf);
1394597dfb2aSAngel Iglesias 	if (raw_temp == BMP580_TEMP_SKIPPED) {
1395597dfb2aSAngel Iglesias 		dev_err(data->dev, "reading temperature skipped\n");
1396597dfb2aSAngel Iglesias 		return -EIO;
1397597dfb2aSAngel Iglesias 	}
1398597dfb2aSAngel Iglesias 
1399597dfb2aSAngel Iglesias 	/*
1400597dfb2aSAngel Iglesias 	 * Temperature is returned in Celsius degrees in fractional
1401dd7c4e37SAdam Rizkalla 	 * form down 2^16. We rescale by x1000 to return millidegrees
1402dd7c4e37SAdam Rizkalla 	 * Celsius to respect IIO ABI.
1403597dfb2aSAngel Iglesias 	 */
1404dd7c4e37SAdam Rizkalla 	raw_temp = sign_extend32(raw_temp, 23);
1405dd7c4e37SAdam Rizkalla 	*val = ((s64)raw_temp * 1000) / (1 << 16);
1406dd7c4e37SAdam Rizkalla 	return IIO_VAL_INT;
1407597dfb2aSAngel Iglesias }
1408597dfb2aSAngel Iglesias 
bmp580_read_press(struct bmp280_data * data,int * val,int * val2)1409597dfb2aSAngel Iglesias static int bmp580_read_press(struct bmp280_data *data, int *val, int *val2)
1410597dfb2aSAngel Iglesias {
1411597dfb2aSAngel Iglesias 	u32 raw_press;
1412597dfb2aSAngel Iglesias 	int ret;
1413597dfb2aSAngel Iglesias 
1414597dfb2aSAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP580_REG_PRESS_XLSB, data->buf,
1415597dfb2aSAngel Iglesias 			       sizeof(data->buf));
1416597dfb2aSAngel Iglesias 	if (ret) {
1417597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to read pressure\n");
1418597dfb2aSAngel Iglesias 		return ret;
1419597dfb2aSAngel Iglesias 	}
1420597dfb2aSAngel Iglesias 
1421597dfb2aSAngel Iglesias 	raw_press = get_unaligned_le24(data->buf);
1422597dfb2aSAngel Iglesias 	if (raw_press == BMP580_PRESS_SKIPPED) {
1423597dfb2aSAngel Iglesias 		dev_err(data->dev, "reading pressure skipped\n");
1424597dfb2aSAngel Iglesias 		return -EIO;
1425597dfb2aSAngel Iglesias 	}
1426597dfb2aSAngel Iglesias 	/*
1427597dfb2aSAngel Iglesias 	 * Pressure is returned in Pascals in fractional form down 2^16.
14283f199b4eSLi peiyu 	 * We rescale /1000 to convert to kilopascal to respect IIO ABI.
1429597dfb2aSAngel Iglesias 	 */
1430597dfb2aSAngel Iglesias 	*val = raw_press;
1431597dfb2aSAngel Iglesias 	*val2 = 64000; /* 2^6 * 1000 */
1432597dfb2aSAngel Iglesias 	return IIO_VAL_FRACTIONAL;
1433597dfb2aSAngel Iglesias }
1434597dfb2aSAngel Iglesias 
1435597dfb2aSAngel Iglesias static const int bmp580_odr_table[][2] = {
1436597dfb2aSAngel Iglesias 	[BMP580_ODR_240HZ] =	{240, 0},
1437597dfb2aSAngel Iglesias 	[BMP580_ODR_218HZ] =	{218, 0},
1438597dfb2aSAngel Iglesias 	[BMP580_ODR_199HZ] =	{199, 0},
1439597dfb2aSAngel Iglesias 	[BMP580_ODR_179HZ] =	{179, 0},
1440597dfb2aSAngel Iglesias 	[BMP580_ODR_160HZ] =	{160, 0},
1441597dfb2aSAngel Iglesias 	[BMP580_ODR_149HZ] =	{149, 0},
1442597dfb2aSAngel Iglesias 	[BMP580_ODR_140HZ] =	{140, 0},
1443597dfb2aSAngel Iglesias 	[BMP580_ODR_129HZ] =	{129, 0},
1444597dfb2aSAngel Iglesias 	[BMP580_ODR_120HZ] =	{120, 0},
1445597dfb2aSAngel Iglesias 	[BMP580_ODR_110HZ] =	{110, 0},
1446597dfb2aSAngel Iglesias 	[BMP580_ODR_100HZ] =	{100, 0},
1447597dfb2aSAngel Iglesias 	[BMP580_ODR_89HZ] =	{89, 0},
1448597dfb2aSAngel Iglesias 	[BMP580_ODR_80HZ] =	{80, 0},
1449597dfb2aSAngel Iglesias 	[BMP580_ODR_70HZ] =	{70, 0},
1450597dfb2aSAngel Iglesias 	[BMP580_ODR_60HZ] =	{60, 0},
1451597dfb2aSAngel Iglesias 	[BMP580_ODR_50HZ] =	{50, 0},
1452597dfb2aSAngel Iglesias 	[BMP580_ODR_45HZ] =	{45, 0},
1453597dfb2aSAngel Iglesias 	[BMP580_ODR_40HZ] =	{40, 0},
1454597dfb2aSAngel Iglesias 	[BMP580_ODR_35HZ] =	{35, 0},
1455597dfb2aSAngel Iglesias 	[BMP580_ODR_30HZ] =	{30, 0},
1456597dfb2aSAngel Iglesias 	[BMP580_ODR_25HZ] =	{25, 0},
1457597dfb2aSAngel Iglesias 	[BMP580_ODR_20HZ] =	{20, 0},
1458597dfb2aSAngel Iglesias 	[BMP580_ODR_15HZ] =	{15, 0},
1459597dfb2aSAngel Iglesias 	[BMP580_ODR_10HZ] =	{10, 0},
1460597dfb2aSAngel Iglesias 	[BMP580_ODR_5HZ] =	{5, 0},
1461597dfb2aSAngel Iglesias 	[BMP580_ODR_4HZ] =	{4, 0},
1462597dfb2aSAngel Iglesias 	[BMP580_ODR_3HZ] =	{3, 0},
1463597dfb2aSAngel Iglesias 	[BMP580_ODR_2HZ] =	{2, 0},
1464597dfb2aSAngel Iglesias 	[BMP580_ODR_1HZ] =	{1, 0},
1465597dfb2aSAngel Iglesias 	[BMP580_ODR_0_5HZ] =	{0, 500000},
1466597dfb2aSAngel Iglesias 	[BMP580_ODR_0_25HZ] =	{0, 250000},
1467597dfb2aSAngel Iglesias 	[BMP580_ODR_0_125HZ] =	{0, 125000},
1468597dfb2aSAngel Iglesias };
1469597dfb2aSAngel Iglesias 
1470accb9d05SAngel Iglesias static const int bmp580_nvmem_addrs[] = { 0x20, 0x21, 0x22 };
1471accb9d05SAngel Iglesias 
bmp580_nvmem_read(void * priv,unsigned int offset,void * val,size_t bytes)1472accb9d05SAngel Iglesias static int bmp580_nvmem_read(void *priv, unsigned int offset, void *val,
1473accb9d05SAngel Iglesias 			     size_t bytes)
1474accb9d05SAngel Iglesias {
1475accb9d05SAngel Iglesias 	struct bmp280_data *data = priv;
1476accb9d05SAngel Iglesias 	u16 *dst = val;
1477accb9d05SAngel Iglesias 	int ret, addr;
1478accb9d05SAngel Iglesias 
1479accb9d05SAngel Iglesias 	pm_runtime_get_sync(data->dev);
1480accb9d05SAngel Iglesias 	mutex_lock(&data->lock);
1481accb9d05SAngel Iglesias 
1482accb9d05SAngel Iglesias 	/* Set sensor in standby mode */
1483accb9d05SAngel Iglesias 	ret = regmap_update_bits(data->regmap, BMP580_REG_ODR_CONFIG,
1484accb9d05SAngel Iglesias 				 BMP580_MODE_MASK | BMP580_ODR_DEEPSLEEP_DIS,
1485accb9d05SAngel Iglesias 				 BMP580_ODR_DEEPSLEEP_DIS |
1486accb9d05SAngel Iglesias 				 FIELD_PREP(BMP580_MODE_MASK, BMP580_MODE_SLEEP));
1487accb9d05SAngel Iglesias 	if (ret) {
1488accb9d05SAngel Iglesias 		dev_err(data->dev, "failed to change sensor to standby mode\n");
1489accb9d05SAngel Iglesias 		goto exit;
1490accb9d05SAngel Iglesias 	}
1491accb9d05SAngel Iglesias 	/* Wait standby transition time */
1492accb9d05SAngel Iglesias 	usleep_range(2500, 3000);
1493accb9d05SAngel Iglesias 
1494accb9d05SAngel Iglesias 	while (bytes >= sizeof(*dst)) {
1495accb9d05SAngel Iglesias 		addr = bmp580_nvmem_addrs[offset / sizeof(*dst)];
1496accb9d05SAngel Iglesias 
1497accb9d05SAngel Iglesias 		ret = regmap_write(data->regmap, BMP580_REG_NVM_ADDR,
1498accb9d05SAngel Iglesias 				   FIELD_PREP(BMP580_NVM_ROW_ADDR_MASK, addr));
1499accb9d05SAngel Iglesias 		if (ret) {
1500accb9d05SAngel Iglesias 			dev_err(data->dev, "error writing nvm address\n");
1501accb9d05SAngel Iglesias 			goto exit;
1502accb9d05SAngel Iglesias 		}
1503accb9d05SAngel Iglesias 
1504accb9d05SAngel Iglesias 		ret = bmp580_nvm_operation(data, false);
1505accb9d05SAngel Iglesias 		if (ret)
1506accb9d05SAngel Iglesias 			goto exit;
1507accb9d05SAngel Iglesias 
1508b71b2d70SVasileios Amoiridis 		ret = regmap_bulk_read(data->regmap, BMP580_REG_NVM_DATA_LSB,
1509b71b2d70SVasileios Amoiridis 				       &data->le16, sizeof(data->le16));
1510accb9d05SAngel Iglesias 		if (ret) {
1511accb9d05SAngel Iglesias 			dev_err(data->dev, "error reading nvm data regs\n");
1512accb9d05SAngel Iglesias 			goto exit;
1513accb9d05SAngel Iglesias 		}
1514accb9d05SAngel Iglesias 
1515accb9d05SAngel Iglesias 		*dst++ = le16_to_cpu(data->le16);
1516accb9d05SAngel Iglesias 		bytes -= sizeof(*dst);
1517accb9d05SAngel Iglesias 		offset += sizeof(*dst);
1518accb9d05SAngel Iglesias 	}
1519accb9d05SAngel Iglesias exit:
1520accb9d05SAngel Iglesias 	/* Restore chip config */
1521accb9d05SAngel Iglesias 	data->chip_info->chip_config(data);
1522accb9d05SAngel Iglesias 	mutex_unlock(&data->lock);
1523accb9d05SAngel Iglesias 	pm_runtime_mark_last_busy(data->dev);
1524accb9d05SAngel Iglesias 	pm_runtime_put_autosuspend(data->dev);
1525accb9d05SAngel Iglesias 	return ret;
1526accb9d05SAngel Iglesias }
1527accb9d05SAngel Iglesias 
bmp580_nvmem_write(void * priv,unsigned int offset,void * val,size_t bytes)1528accb9d05SAngel Iglesias static int bmp580_nvmem_write(void *priv, unsigned int offset, void *val,
1529accb9d05SAngel Iglesias 			      size_t bytes)
1530accb9d05SAngel Iglesias {
1531accb9d05SAngel Iglesias 	struct bmp280_data *data = priv;
1532accb9d05SAngel Iglesias 	u16 *buf = val;
1533accb9d05SAngel Iglesias 	int ret, addr;
1534accb9d05SAngel Iglesias 
1535accb9d05SAngel Iglesias 	pm_runtime_get_sync(data->dev);
1536accb9d05SAngel Iglesias 	mutex_lock(&data->lock);
1537accb9d05SAngel Iglesias 
1538accb9d05SAngel Iglesias 	/* Set sensor in standby mode */
1539accb9d05SAngel Iglesias 	ret = regmap_update_bits(data->regmap, BMP580_REG_ODR_CONFIG,
1540accb9d05SAngel Iglesias 				 BMP580_MODE_MASK | BMP580_ODR_DEEPSLEEP_DIS,
1541accb9d05SAngel Iglesias 				 BMP580_ODR_DEEPSLEEP_DIS |
1542accb9d05SAngel Iglesias 				 FIELD_PREP(BMP580_MODE_MASK, BMP580_MODE_SLEEP));
1543accb9d05SAngel Iglesias 	if (ret) {
1544accb9d05SAngel Iglesias 		dev_err(data->dev, "failed to change sensor to standby mode\n");
1545accb9d05SAngel Iglesias 		goto exit;
1546accb9d05SAngel Iglesias 	}
1547accb9d05SAngel Iglesias 	/* Wait standby transition time */
1548accb9d05SAngel Iglesias 	usleep_range(2500, 3000);
1549accb9d05SAngel Iglesias 
1550accb9d05SAngel Iglesias 	while (bytes >= sizeof(*buf)) {
1551accb9d05SAngel Iglesias 		addr = bmp580_nvmem_addrs[offset / sizeof(*buf)];
1552accb9d05SAngel Iglesias 
1553b71b2d70SVasileios Amoiridis 		ret = regmap_write(data->regmap, BMP580_REG_NVM_ADDR,
1554b71b2d70SVasileios Amoiridis 				   BMP580_NVM_PROG_EN |
1555accb9d05SAngel Iglesias 				   FIELD_PREP(BMP580_NVM_ROW_ADDR_MASK, addr));
1556accb9d05SAngel Iglesias 		if (ret) {
1557accb9d05SAngel Iglesias 			dev_err(data->dev, "error writing nvm address\n");
1558accb9d05SAngel Iglesias 			goto exit;
1559accb9d05SAngel Iglesias 		}
1560accb9d05SAngel Iglesias 		data->le16 = cpu_to_le16(*buf++);
1561accb9d05SAngel Iglesias 
1562b71b2d70SVasileios Amoiridis 		ret = regmap_bulk_write(data->regmap, BMP580_REG_NVM_DATA_LSB,
1563b71b2d70SVasileios Amoiridis 					&data->le16, sizeof(data->le16));
1564accb9d05SAngel Iglesias 		if (ret) {
1565accb9d05SAngel Iglesias 			dev_err(data->dev, "error writing LSB NVM data regs\n");
1566accb9d05SAngel Iglesias 			goto exit;
1567accb9d05SAngel Iglesias 		}
1568accb9d05SAngel Iglesias 
1569accb9d05SAngel Iglesias 		ret = bmp580_nvm_operation(data, true);
1570accb9d05SAngel Iglesias 		if (ret)
1571accb9d05SAngel Iglesias 			goto exit;
1572accb9d05SAngel Iglesias 
1573accb9d05SAngel Iglesias 		/* Disable programming mode bit */
1574accb9d05SAngel Iglesias 		ret = regmap_update_bits(data->regmap, BMP580_REG_NVM_ADDR,
1575accb9d05SAngel Iglesias 					 BMP580_NVM_PROG_EN, 0);
1576accb9d05SAngel Iglesias 		if (ret) {
1577accb9d05SAngel Iglesias 			dev_err(data->dev, "error resetting nvm write\n");
1578accb9d05SAngel Iglesias 			goto exit;
1579accb9d05SAngel Iglesias 		}
1580accb9d05SAngel Iglesias 
1581accb9d05SAngel Iglesias 		bytes -= sizeof(*buf);
1582accb9d05SAngel Iglesias 		offset += sizeof(*buf);
1583accb9d05SAngel Iglesias 	}
1584accb9d05SAngel Iglesias exit:
1585accb9d05SAngel Iglesias 	/* Restore chip config */
1586accb9d05SAngel Iglesias 	data->chip_info->chip_config(data);
1587accb9d05SAngel Iglesias 	mutex_unlock(&data->lock);
1588accb9d05SAngel Iglesias 	pm_runtime_mark_last_busy(data->dev);
1589accb9d05SAngel Iglesias 	pm_runtime_put_autosuspend(data->dev);
1590accb9d05SAngel Iglesias 	return ret;
1591accb9d05SAngel Iglesias }
1592accb9d05SAngel Iglesias 
bmp580_preinit(struct bmp280_data * data)1593597dfb2aSAngel Iglesias static int bmp580_preinit(struct bmp280_data *data)
1594597dfb2aSAngel Iglesias {
1595accb9d05SAngel Iglesias 	struct nvmem_config config = {
1596accb9d05SAngel Iglesias 		.dev = data->dev,
1597accb9d05SAngel Iglesias 		.priv = data,
1598accb9d05SAngel Iglesias 		.name = "bmp580_nvmem",
1599accb9d05SAngel Iglesias 		.word_size = sizeof(u16),
1600accb9d05SAngel Iglesias 		.stride = sizeof(u16),
1601accb9d05SAngel Iglesias 		.size = 3 * sizeof(u16),
1602accb9d05SAngel Iglesias 		.reg_read = bmp580_nvmem_read,
1603accb9d05SAngel Iglesias 		.reg_write = bmp580_nvmem_write,
1604accb9d05SAngel Iglesias 	};
1605597dfb2aSAngel Iglesias 	unsigned int reg;
1606597dfb2aSAngel Iglesias 	int ret;
1607597dfb2aSAngel Iglesias 
1608597dfb2aSAngel Iglesias 	/* Issue soft-reset command */
1609597dfb2aSAngel Iglesias 	ret = bmp580_soft_reset(data);
1610597dfb2aSAngel Iglesias 	if (ret)
1611597dfb2aSAngel Iglesias 		return ret;
1612597dfb2aSAngel Iglesias 
1613597dfb2aSAngel Iglesias 	/* Post powerup sequence */
1614597dfb2aSAngel Iglesias 	ret = regmap_read(data->regmap, BMP580_REG_CHIP_ID, &reg);
1615597dfb2aSAngel Iglesias 	if (ret)
1616597dfb2aSAngel Iglesias 		return ret;
1617597dfb2aSAngel Iglesias 
1618597dfb2aSAngel Iglesias 	/* Print warn message if we don't know the chip id */
1619597dfb2aSAngel Iglesias 	if (reg != BMP580_CHIP_ID && reg != BMP580_CHIP_ID_ALT)
1620597dfb2aSAngel Iglesias 		dev_warn(data->dev, "preinit: unexpected chip_id\n");
1621597dfb2aSAngel Iglesias 
1622597dfb2aSAngel Iglesias 	ret = regmap_read(data->regmap, BMP580_REG_STATUS, &reg);
1623597dfb2aSAngel Iglesias 	if (ret)
1624597dfb2aSAngel Iglesias 		return ret;
1625597dfb2aSAngel Iglesias 
1626597dfb2aSAngel Iglesias 	/* Check nvm status */
1627597dfb2aSAngel Iglesias 	if (!(reg & BMP580_STATUS_NVM_RDY_MASK) || (reg & BMP580_STATUS_NVM_ERR_MASK)) {
1628597dfb2aSAngel Iglesias 		dev_err(data->dev, "preinit: nvm error on powerup sequence\n");
1629597dfb2aSAngel Iglesias 		return -EIO;
1630597dfb2aSAngel Iglesias 	}
1631597dfb2aSAngel Iglesias 
1632accb9d05SAngel Iglesias 	/* Register nvmem device */
1633accb9d05SAngel Iglesias 	return PTR_ERR_OR_ZERO(devm_nvmem_register(config.dev, &config));
1634597dfb2aSAngel Iglesias }
1635597dfb2aSAngel Iglesias 
bmp580_chip_config(struct bmp280_data * data)1636597dfb2aSAngel Iglesias static int bmp580_chip_config(struct bmp280_data *data)
1637597dfb2aSAngel Iglesias {
1638597dfb2aSAngel Iglesias 	bool change = false, aux;
1639597dfb2aSAngel Iglesias 	unsigned int tmp;
1640597dfb2aSAngel Iglesias 	u8 reg_val;
1641597dfb2aSAngel Iglesias 	int ret;
1642597dfb2aSAngel Iglesias 
1643597dfb2aSAngel Iglesias 	/* Sets sensor in standby mode */
1644597dfb2aSAngel Iglesias 	ret = regmap_update_bits(data->regmap, BMP580_REG_ODR_CONFIG,
1645597dfb2aSAngel Iglesias 				 BMP580_MODE_MASK | BMP580_ODR_DEEPSLEEP_DIS,
1646597dfb2aSAngel Iglesias 				 BMP580_ODR_DEEPSLEEP_DIS |
1647597dfb2aSAngel Iglesias 				 FIELD_PREP(BMP580_MODE_MASK, BMP580_MODE_SLEEP));
1648597dfb2aSAngel Iglesias 	if (ret) {
1649597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to change sensor to standby mode\n");
1650597dfb2aSAngel Iglesias 		return ret;
1651597dfb2aSAngel Iglesias 	}
1652597dfb2aSAngel Iglesias 	/* From datasheet's table 4: electrical characteristics */
1653597dfb2aSAngel Iglesias 	usleep_range(2500, 3000);
1654597dfb2aSAngel Iglesias 
1655597dfb2aSAngel Iglesias 	/* Set default DSP mode settings */
1656597dfb2aSAngel Iglesias 	reg_val = FIELD_PREP(BMP580_DSP_COMP_MASK, BMP580_DSP_PRESS_TEMP_COMP_EN) |
1657597dfb2aSAngel Iglesias 		  BMP580_DSP_SHDW_IIR_TEMP_EN | BMP580_DSP_SHDW_IIR_PRESS_EN;
1658597dfb2aSAngel Iglesias 
1659597dfb2aSAngel Iglesias 	ret = regmap_update_bits(data->regmap, BMP580_REG_DSP_CONFIG,
1660597dfb2aSAngel Iglesias 				 BMP580_DSP_COMP_MASK |
1661597dfb2aSAngel Iglesias 				 BMP580_DSP_SHDW_IIR_TEMP_EN |
1662597dfb2aSAngel Iglesias 				 BMP580_DSP_SHDW_IIR_PRESS_EN, reg_val);
1663597dfb2aSAngel Iglesias 
1664597dfb2aSAngel Iglesias 	/* Configure oversampling */
1665597dfb2aSAngel Iglesias 	reg_val = FIELD_PREP(BMP580_OSR_TEMP_MASK, data->oversampling_temp) |
1666597dfb2aSAngel Iglesias 		  FIELD_PREP(BMP580_OSR_PRESS_MASK, data->oversampling_press) |
1667597dfb2aSAngel Iglesias 		  BMP580_OSR_PRESS_EN;
1668597dfb2aSAngel Iglesias 
1669597dfb2aSAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP580_REG_OSR_CONFIG,
1670b71b2d70SVasileios Amoiridis 				       BMP580_OSR_TEMP_MASK |
1671b71b2d70SVasileios Amoiridis 				       BMP580_OSR_PRESS_MASK |
1672597dfb2aSAngel Iglesias 				       BMP580_OSR_PRESS_EN,
1673597dfb2aSAngel Iglesias 				       reg_val, &aux);
1674597dfb2aSAngel Iglesias 	if (ret) {
1675597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to write oversampling register\n");
1676597dfb2aSAngel Iglesias 		return ret;
1677597dfb2aSAngel Iglesias 	}
1678597dfb2aSAngel Iglesias 	change = change || aux;
1679597dfb2aSAngel Iglesias 
1680597dfb2aSAngel Iglesias 	/* Configure output data rate */
1681597dfb2aSAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP580_REG_ODR_CONFIG, BMP580_ODR_MASK,
1682597dfb2aSAngel Iglesias 				       FIELD_PREP(BMP580_ODR_MASK, data->sampling_freq),
1683597dfb2aSAngel Iglesias 				       &aux);
1684597dfb2aSAngel Iglesias 	if (ret) {
1685597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to write ODR configuration register\n");
1686597dfb2aSAngel Iglesias 		return ret;
1687597dfb2aSAngel Iglesias 	}
1688597dfb2aSAngel Iglesias 	change = change || aux;
1689597dfb2aSAngel Iglesias 
1690597dfb2aSAngel Iglesias 	/* Set filter data */
1691597dfb2aSAngel Iglesias 	reg_val = FIELD_PREP(BMP580_DSP_IIR_PRESS_MASK, data->iir_filter_coeff) |
1692597dfb2aSAngel Iglesias 		  FIELD_PREP(BMP580_DSP_IIR_TEMP_MASK, data->iir_filter_coeff);
1693597dfb2aSAngel Iglesias 
1694597dfb2aSAngel Iglesias 	ret = regmap_update_bits_check(data->regmap, BMP580_REG_DSP_IIR,
1695597dfb2aSAngel Iglesias 				       BMP580_DSP_IIR_PRESS_MASK |
1696597dfb2aSAngel Iglesias 				       BMP580_DSP_IIR_TEMP_MASK,
1697597dfb2aSAngel Iglesias 				       reg_val, &aux);
1698597dfb2aSAngel Iglesias 	if (ret) {
1699597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to write config register\n");
1700597dfb2aSAngel Iglesias 		return ret;
1701597dfb2aSAngel Iglesias 	}
1702597dfb2aSAngel Iglesias 	change = change || aux;
1703597dfb2aSAngel Iglesias 
1704597dfb2aSAngel Iglesias 	/* Restore sensor to normal operation mode */
1705597dfb2aSAngel Iglesias 	ret = regmap_write_bits(data->regmap, BMP580_REG_ODR_CONFIG,
1706597dfb2aSAngel Iglesias 				BMP580_MODE_MASK,
1707597dfb2aSAngel Iglesias 				FIELD_PREP(BMP580_MODE_MASK, BMP580_MODE_NORMAL));
1708597dfb2aSAngel Iglesias 	if (ret) {
1709597dfb2aSAngel Iglesias 		dev_err(data->dev, "failed to set normal mode\n");
1710597dfb2aSAngel Iglesias 		return ret;
1711597dfb2aSAngel Iglesias 	}
1712597dfb2aSAngel Iglesias 	/* From datasheet's table 4: electrical characteristics */
1713597dfb2aSAngel Iglesias 	usleep_range(3000, 3500);
1714597dfb2aSAngel Iglesias 
1715597dfb2aSAngel Iglesias 	if (change) {
1716597dfb2aSAngel Iglesias 		/*
1717597dfb2aSAngel Iglesias 		 * Check if ODR and OSR settings are valid or we are
1718597dfb2aSAngel Iglesias 		 * operating in a degraded mode.
1719597dfb2aSAngel Iglesias 		 */
1720597dfb2aSAngel Iglesias 		ret = regmap_read(data->regmap, BMP580_REG_EFF_OSR, &tmp);
1721597dfb2aSAngel Iglesias 		if (ret) {
1722b71b2d70SVasileios Amoiridis 			dev_err(data->dev,
1723b71b2d70SVasileios Amoiridis 				"error reading effective OSR register\n");
1724597dfb2aSAngel Iglesias 			return ret;
1725597dfb2aSAngel Iglesias 		}
1726597dfb2aSAngel Iglesias 		if (!(tmp & BMP580_EFF_OSR_VALID_ODR)) {
1727597dfb2aSAngel Iglesias 			dev_warn(data->dev, "OSR and ODR incompatible settings detected\n");
1728597dfb2aSAngel Iglesias 			/* Set current OSR settings from data on effective OSR */
1729597dfb2aSAngel Iglesias 			data->oversampling_temp = FIELD_GET(BMP580_EFF_OSR_TEMP_MASK, tmp);
1730597dfb2aSAngel Iglesias 			data->oversampling_press = FIELD_GET(BMP580_EFF_OSR_PRESS_MASK, tmp);
1731597dfb2aSAngel Iglesias 			return -EINVAL;
1732597dfb2aSAngel Iglesias 		}
1733597dfb2aSAngel Iglesias 	}
1734597dfb2aSAngel Iglesias 
1735597dfb2aSAngel Iglesias 	return 0;
1736597dfb2aSAngel Iglesias }
1737597dfb2aSAngel Iglesias 
1738597dfb2aSAngel Iglesias static const int bmp580_oversampling_avail[] = { 1, 2, 4, 8, 16, 32, 64, 128 };
1739afe335a6SAngel Iglesias static const u8 bmp580_chip_ids[] = { BMP580_CHIP_ID, BMP580_CHIP_ID_ALT };
1740597dfb2aSAngel Iglesias 
1741597dfb2aSAngel Iglesias const struct bmp280_chip_info bmp580_chip_info = {
1742597dfb2aSAngel Iglesias 	.id_reg = BMP580_REG_CHIP_ID,
1743afe335a6SAngel Iglesias 	.chip_id = bmp580_chip_ids,
1744afe335a6SAngel Iglesias 	.num_chip_id = ARRAY_SIZE(bmp580_chip_ids),
1745597dfb2aSAngel Iglesias 	.regmap_config = &bmp580_regmap_config,
1746597dfb2aSAngel Iglesias 	.start_up_time = 2000,
1747597dfb2aSAngel Iglesias 	.channels = bmp380_channels,
1748597dfb2aSAngel Iglesias 	.num_channels = 2,
1749597dfb2aSAngel Iglesias 
1750597dfb2aSAngel Iglesias 	.oversampling_temp_avail = bmp580_oversampling_avail,
1751597dfb2aSAngel Iglesias 	.num_oversampling_temp_avail = ARRAY_SIZE(bmp580_oversampling_avail),
1752597dfb2aSAngel Iglesias 	.oversampling_temp_default = ilog2(1),
1753597dfb2aSAngel Iglesias 
1754597dfb2aSAngel Iglesias 	.oversampling_press_avail = bmp580_oversampling_avail,
1755597dfb2aSAngel Iglesias 	.num_oversampling_press_avail = ARRAY_SIZE(bmp580_oversampling_avail),
1756597dfb2aSAngel Iglesias 	.oversampling_press_default = ilog2(4),
1757597dfb2aSAngel Iglesias 
1758597dfb2aSAngel Iglesias 	.sampling_freq_avail = bmp580_odr_table,
1759597dfb2aSAngel Iglesias 	.num_sampling_freq_avail = ARRAY_SIZE(bmp580_odr_table) * 2,
1760597dfb2aSAngel Iglesias 	.sampling_freq_default = BMP580_ODR_50HZ,
1761597dfb2aSAngel Iglesias 
1762597dfb2aSAngel Iglesias 	.iir_filter_coeffs_avail = bmp380_iir_filter_coeffs_avail,
1763597dfb2aSAngel Iglesias 	.num_iir_filter_coeffs_avail = ARRAY_SIZE(bmp380_iir_filter_coeffs_avail),
1764597dfb2aSAngel Iglesias 	.iir_filter_coeff_default = 2,
1765597dfb2aSAngel Iglesias 
1766597dfb2aSAngel Iglesias 	.chip_config = bmp580_chip_config,
1767597dfb2aSAngel Iglesias 	.read_temp = bmp580_read_temp,
1768597dfb2aSAngel Iglesias 	.read_press = bmp580_read_press,
1769597dfb2aSAngel Iglesias 	.preinit = bmp580_preinit,
1770597dfb2aSAngel Iglesias };
1771597dfb2aSAngel Iglesias EXPORT_SYMBOL_NS(bmp580_chip_info, IIO_BMP280);
1772597dfb2aSAngel Iglesias 
bmp180_measure(struct bmp280_data * data,u8 ctrl_meas)177314e8015fSLinus Walleij static int bmp180_measure(struct bmp280_data *data, u8 ctrl_meas)
177414e8015fSLinus Walleij {
177514e8015fSLinus Walleij 	const int conversion_time_max[] = { 4500, 7500, 13500, 25500 };
177614e8015fSLinus Walleij 	unsigned int delay_us;
177714e8015fSLinus Walleij 	unsigned int ctrl;
17785f0c359dSAngel Iglesias 	int ret;
177914e8015fSLinus Walleij 
1780aae95394SLinus Walleij 	if (data->use_eoc)
178197b31a6fSAndy Shevchenko 		reinit_completion(&data->done);
1782aae95394SLinus Walleij 
178314e8015fSLinus Walleij 	ret = regmap_write(data->regmap, BMP280_REG_CTRL_MEAS, ctrl_meas);
178414e8015fSLinus Walleij 	if (ret)
178514e8015fSLinus Walleij 		return ret;
178614e8015fSLinus Walleij 
1787aae95394SLinus Walleij 	if (data->use_eoc) {
1788aae95394SLinus Walleij 		/*
1789aae95394SLinus Walleij 		 * If we have a completion interrupt, use it, wait up to
1790aae95394SLinus Walleij 		 * 100ms. The longest conversion time listed is 76.5 ms for
1791aae95394SLinus Walleij 		 * advanced resolution mode.
1792aae95394SLinus Walleij 		 */
1793aae95394SLinus Walleij 		ret = wait_for_completion_timeout(&data->done,
1794aae95394SLinus Walleij 						  1 + msecs_to_jiffies(100));
1795aae95394SLinus Walleij 		if (!ret)
1796aae95394SLinus Walleij 			dev_err(data->dev, "timeout waiting for completion\n");
1797aae95394SLinus Walleij 	} else {
17982405f8ccSAngel Iglesias 		if (FIELD_GET(BMP180_MEAS_CTRL_MASK, ctrl_meas) == BMP180_MEAS_TEMP)
179914e8015fSLinus Walleij 			delay_us = 4500;
180014e8015fSLinus Walleij 		else
1801aae95394SLinus Walleij 			delay_us =
1802aae95394SLinus Walleij 				conversion_time_max[data->oversampling_press];
180314e8015fSLinus Walleij 
180414e8015fSLinus Walleij 		usleep_range(delay_us, delay_us + 1000);
1805aae95394SLinus Walleij 	}
180614e8015fSLinus Walleij 
180714e8015fSLinus Walleij 	ret = regmap_read(data->regmap, BMP280_REG_CTRL_MEAS, &ctrl);
180814e8015fSLinus Walleij 	if (ret)
180914e8015fSLinus Walleij 		return ret;
181014e8015fSLinus Walleij 
181114e8015fSLinus Walleij 	/* The value of this bit reset to "0" after conversion is complete */
181214e8015fSLinus Walleij 	if (ctrl & BMP180_MEAS_SCO)
181314e8015fSLinus Walleij 		return -EIO;
181414e8015fSLinus Walleij 
181514e8015fSLinus Walleij 	return 0;
181614e8015fSLinus Walleij }
181714e8015fSLinus Walleij 
bmp180_read_adc_temp(struct bmp280_data * data,int * val)181814e8015fSLinus Walleij static int bmp180_read_adc_temp(struct bmp280_data *data, int *val)
181914e8015fSLinus Walleij {
182014e8015fSLinus Walleij 	int ret;
182114e8015fSLinus Walleij 
18222405f8ccSAngel Iglesias 	ret = bmp180_measure(data,
18232405f8ccSAngel Iglesias 			     FIELD_PREP(BMP180_MEAS_CTRL_MASK, BMP180_MEAS_TEMP) |
18242405f8ccSAngel Iglesias 			     BMP180_MEAS_SCO);
182514e8015fSLinus Walleij 	if (ret)
182614e8015fSLinus Walleij 		return ret;
182714e8015fSLinus Walleij 
1828327b5c05SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP180_REG_OUT_MSB,
1829327b5c05SAngel Iglesias 			       &data->be16, sizeof(data->be16));
183014e8015fSLinus Walleij 	if (ret)
183114e8015fSLinus Walleij 		return ret;
183214e8015fSLinus Walleij 
1833327b5c05SAngel Iglesias 	*val = be16_to_cpu(data->be16);
183414e8015fSLinus Walleij 
183514e8015fSLinus Walleij 	return 0;
183614e8015fSLinus Walleij }
183714e8015fSLinus Walleij 
bmp180_read_calib(struct bmp280_data * data)1838b00e805aSAngel Iglesias static int bmp180_read_calib(struct bmp280_data *data)
183914e8015fSLinus Walleij {
1840b00e805aSAngel Iglesias 	struct bmp180_calib *calib = &data->calib.bmp180;
184114e8015fSLinus Walleij 	int ret;
184214e8015fSLinus Walleij 	int i;
184314e8015fSLinus Walleij 
1844327b5c05SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP180_REG_CALIB_START,
1845327b5c05SAngel Iglesias 			       data->bmp180_cal_buf, sizeof(data->bmp180_cal_buf));
184614e8015fSLinus Walleij 
184714e8015fSLinus Walleij 	if (ret < 0)
184814e8015fSLinus Walleij 		return ret;
184914e8015fSLinus Walleij 
185014e8015fSLinus Walleij 	/* None of the words has the value 0 or 0xFFFF */
1851327b5c05SAngel Iglesias 	for (i = 0; i < ARRAY_SIZE(data->bmp180_cal_buf); i++) {
1852327b5c05SAngel Iglesias 		if (data->bmp180_cal_buf[i] == cpu_to_be16(0) ||
1853327b5c05SAngel Iglesias 		    data->bmp180_cal_buf[i] == cpu_to_be16(0xffff))
185414e8015fSLinus Walleij 			return -EIO;
185514e8015fSLinus Walleij 	}
185614e8015fSLinus Walleij 
1857b33b7d5aSLinus Walleij 	/* Toss the calibration data into the entropy pool */
1858b71b2d70SVasileios Amoiridis 	add_device_randomness(data->bmp180_cal_buf,
1859b71b2d70SVasileios Amoiridis 			      sizeof(data->bmp180_cal_buf));
1860b33b7d5aSLinus Walleij 
1861327b5c05SAngel Iglesias 	calib->AC1 = be16_to_cpu(data->bmp180_cal_buf[AC1]);
1862327b5c05SAngel Iglesias 	calib->AC2 = be16_to_cpu(data->bmp180_cal_buf[AC2]);
1863327b5c05SAngel Iglesias 	calib->AC3 = be16_to_cpu(data->bmp180_cal_buf[AC3]);
1864327b5c05SAngel Iglesias 	calib->AC4 = be16_to_cpu(data->bmp180_cal_buf[AC4]);
1865327b5c05SAngel Iglesias 	calib->AC5 = be16_to_cpu(data->bmp180_cal_buf[AC5]);
1866327b5c05SAngel Iglesias 	calib->AC6 = be16_to_cpu(data->bmp180_cal_buf[AC6]);
1867327b5c05SAngel Iglesias 	calib->B1 = be16_to_cpu(data->bmp180_cal_buf[B1]);
1868327b5c05SAngel Iglesias 	calib->B2 = be16_to_cpu(data->bmp180_cal_buf[B2]);
1869327b5c05SAngel Iglesias 	calib->MB = be16_to_cpu(data->bmp180_cal_buf[MB]);
1870327b5c05SAngel Iglesias 	calib->MC = be16_to_cpu(data->bmp180_cal_buf[MC]);
1871327b5c05SAngel Iglesias 	calib->MD = be16_to_cpu(data->bmp180_cal_buf[MD]);
187214e8015fSLinus Walleij 
187314e8015fSLinus Walleij 	return 0;
187414e8015fSLinus Walleij }
187514e8015fSLinus Walleij 
187614e8015fSLinus Walleij /*
187714e8015fSLinus Walleij  * Returns temperature in DegC, resolution is 0.1 DegC.
187814e8015fSLinus Walleij  * t_fine carries fine temperature as global value.
187914e8015fSLinus Walleij  *
188014e8015fSLinus Walleij  * Taken from datasheet, Section 3.5, "Calculating pressure and temperature".
188114e8015fSLinus Walleij  */
bmp180_compensate_temp(struct bmp280_data * data,s32 adc_temp)188214e8015fSLinus Walleij static s32 bmp180_compensate_temp(struct bmp280_data *data, s32 adc_temp)
188314e8015fSLinus Walleij {
18842e419aecSStefan Tatschner 	struct bmp180_calib *calib = &data->calib.bmp180;
18855f0c359dSAngel Iglesias 	s32 x1, x2;
188614e8015fSLinus Walleij 
1887b33b7d5aSLinus Walleij 	x1 = ((adc_temp - calib->AC6) * calib->AC5) >> 15;
1888b33b7d5aSLinus Walleij 	x2 = (calib->MC << 11) / (x1 + calib->MD);
188914e8015fSLinus Walleij 	data->t_fine = x1 + x2;
189014e8015fSLinus Walleij 
189114e8015fSLinus Walleij 	return (data->t_fine + 8) >> 4;
189214e8015fSLinus Walleij }
189314e8015fSLinus Walleij 
bmp180_read_temp(struct bmp280_data * data,int * val,int * val2)1894597dfb2aSAngel Iglesias static int bmp180_read_temp(struct bmp280_data *data, int *val, int *val2)
189514e8015fSLinus Walleij {
189614e8015fSLinus Walleij 	s32 adc_temp, comp_temp;
18975f0c359dSAngel Iglesias 	int ret;
189814e8015fSLinus Walleij 
189914e8015fSLinus Walleij 	ret = bmp180_read_adc_temp(data, &adc_temp);
190014e8015fSLinus Walleij 	if (ret)
190114e8015fSLinus Walleij 		return ret;
190214e8015fSLinus Walleij 
190314e8015fSLinus Walleij 	comp_temp = bmp180_compensate_temp(data, adc_temp);
190414e8015fSLinus Walleij 
190514e8015fSLinus Walleij 	/*
190614e8015fSLinus Walleij 	 * val might be NULL if we're called by the read_press routine,
190714e8015fSLinus Walleij 	 * who only cares about the carry over t_fine value.
190814e8015fSLinus Walleij 	 */
190914e8015fSLinus Walleij 	if (val) {
191014e8015fSLinus Walleij 		*val = comp_temp * 100;
191114e8015fSLinus Walleij 		return IIO_VAL_INT;
191214e8015fSLinus Walleij 	}
191314e8015fSLinus Walleij 
191414e8015fSLinus Walleij 	return 0;
191514e8015fSLinus Walleij }
191614e8015fSLinus Walleij 
bmp180_read_adc_press(struct bmp280_data * data,int * val)191714e8015fSLinus Walleij static int bmp180_read_adc_press(struct bmp280_data *data, int *val)
191814e8015fSLinus Walleij {
191914e8015fSLinus Walleij 	u8 oss = data->oversampling_press;
19205f0c359dSAngel Iglesias 	int ret;
192114e8015fSLinus Walleij 
19222405f8ccSAngel Iglesias 	ret = bmp180_measure(data,
19232405f8ccSAngel Iglesias 			     FIELD_PREP(BMP180_MEAS_CTRL_MASK, BMP180_MEAS_PRESS) |
19242405f8ccSAngel Iglesias 			     FIELD_PREP(BMP180_OSRS_PRESS_MASK, oss) |
19252405f8ccSAngel Iglesias 			     BMP180_MEAS_SCO);
192614e8015fSLinus Walleij 	if (ret)
192714e8015fSLinus Walleij 		return ret;
192814e8015fSLinus Walleij 
1929327b5c05SAngel Iglesias 	ret = regmap_bulk_read(data->regmap, BMP180_REG_OUT_MSB,
1930327b5c05SAngel Iglesias 			       data->buf, sizeof(data->buf));
193114e8015fSLinus Walleij 	if (ret)
193214e8015fSLinus Walleij 		return ret;
193314e8015fSLinus Walleij 
1934327b5c05SAngel Iglesias 	*val = get_unaligned_be24(data->buf) >> (8 - oss);
193514e8015fSLinus Walleij 
193614e8015fSLinus Walleij 	return 0;
193714e8015fSLinus Walleij }
193814e8015fSLinus Walleij 
193914e8015fSLinus Walleij /*
194014e8015fSLinus Walleij  * Returns pressure in Pa, resolution is 1 Pa.
194114e8015fSLinus Walleij  *
194214e8015fSLinus Walleij  * Taken from datasheet, Section 3.5, "Calculating pressure and temperature".
194314e8015fSLinus Walleij  */
bmp180_compensate_press(struct bmp280_data * data,s32 adc_press)194414e8015fSLinus Walleij static u32 bmp180_compensate_press(struct bmp280_data *data, s32 adc_press)
194514e8015fSLinus Walleij {
19465f0c359dSAngel Iglesias 	struct bmp180_calib *calib = &data->calib.bmp180;
19475f0c359dSAngel Iglesias 	s32 oss = data->oversampling_press;
194814e8015fSLinus Walleij 	s32 x1, x2, x3, p;
194914e8015fSLinus Walleij 	s32 b3, b6;
195014e8015fSLinus Walleij 	u32 b4, b7;
195114e8015fSLinus Walleij 
195214e8015fSLinus Walleij 	b6 = data->t_fine - 4000;
1953b33b7d5aSLinus Walleij 	x1 = (calib->B2 * (b6 * b6 >> 12)) >> 11;
1954b33b7d5aSLinus Walleij 	x2 = calib->AC2 * b6 >> 11;
195514e8015fSLinus Walleij 	x3 = x1 + x2;
1956b33b7d5aSLinus Walleij 	b3 = ((((s32)calib->AC1 * 4 + x3) << oss) + 2) / 4;
1957b33b7d5aSLinus Walleij 	x1 = calib->AC3 * b6 >> 13;
1958b33b7d5aSLinus Walleij 	x2 = (calib->B1 * ((b6 * b6) >> 12)) >> 16;
195914e8015fSLinus Walleij 	x3 = (x1 + x2 + 2) >> 2;
1960b33b7d5aSLinus Walleij 	b4 = calib->AC4 * (u32)(x3 + 32768) >> 15;
196114e8015fSLinus Walleij 	b7 = ((u32)adc_press - b3) * (50000 >> oss);
196214e8015fSLinus Walleij 	if (b7 < 0x80000000)
196314e8015fSLinus Walleij 		p = (b7 * 2) / b4;
196414e8015fSLinus Walleij 	else
196514e8015fSLinus Walleij 		p = (b7 / b4) * 2;
196614e8015fSLinus Walleij 
196714e8015fSLinus Walleij 	x1 = (p >> 8) * (p >> 8);
196814e8015fSLinus Walleij 	x1 = (x1 * 3038) >> 16;
196914e8015fSLinus Walleij 	x2 = (-7357 * p) >> 16;
197014e8015fSLinus Walleij 
197114e8015fSLinus Walleij 	return p + ((x1 + x2 + 3791) >> 4);
197214e8015fSLinus Walleij }
197314e8015fSLinus Walleij 
bmp180_read_press(struct bmp280_data * data,int * val,int * val2)1974b71b2d70SVasileios Amoiridis static int bmp180_read_press(struct bmp280_data *data, int *val, int *val2)
197514e8015fSLinus Walleij {
197614e8015fSLinus Walleij 	u32 comp_press;
19775f0c359dSAngel Iglesias 	s32 adc_press;
19785f0c359dSAngel Iglesias 	int ret;
197914e8015fSLinus Walleij 
198014e8015fSLinus Walleij 	/* Read and compensate temperature so we get a reading of t_fine. */
1981597dfb2aSAngel Iglesias 	ret = bmp180_read_temp(data, NULL, NULL);
198214e8015fSLinus Walleij 	if (ret)
198314e8015fSLinus Walleij 		return ret;
198414e8015fSLinus Walleij 
198514e8015fSLinus Walleij 	ret = bmp180_read_adc_press(data, &adc_press);
198614e8015fSLinus Walleij 	if (ret)
198714e8015fSLinus Walleij 		return ret;
198814e8015fSLinus Walleij 
198914e8015fSLinus Walleij 	comp_press = bmp180_compensate_press(data, adc_press);
199014e8015fSLinus Walleij 
199114e8015fSLinus Walleij 	*val = comp_press;
199214e8015fSLinus Walleij 	*val2 = 1000;
199314e8015fSLinus Walleij 
199414e8015fSLinus Walleij 	return IIO_VAL_FRACTIONAL;
199514e8015fSLinus Walleij }
199614e8015fSLinus Walleij 
bmp180_chip_config(struct bmp280_data * data)199714e8015fSLinus Walleij static int bmp180_chip_config(struct bmp280_data *data)
199814e8015fSLinus Walleij {
199914e8015fSLinus Walleij 	return 0;
200014e8015fSLinus Walleij }
200114e8015fSLinus Walleij 
200214e8015fSLinus Walleij static const int bmp180_oversampling_temp_avail[] = { 1 };
200314e8015fSLinus Walleij static const int bmp180_oversampling_press_avail[] = { 1, 2, 4, 8 };
2004afe335a6SAngel Iglesias static const u8 bmp180_chip_ids[] = { BMP180_CHIP_ID };
200514e8015fSLinus Walleij 
20060b0b7726SAngel Iglesias const struct bmp280_chip_info bmp180_chip_info = {
2007b00e805aSAngel Iglesias 	.id_reg = BMP280_REG_ID,
2008afe335a6SAngel Iglesias 	.chip_id = bmp180_chip_ids,
2009afe335a6SAngel Iglesias 	.num_chip_id = ARRAY_SIZE(bmp180_chip_ids),
20100b0b7726SAngel Iglesias 	.regmap_config = &bmp180_regmap_config,
2011b00e805aSAngel Iglesias 	.start_up_time = 2000,
201210b40ffbSAngel Iglesias 	.channels = bmp280_channels,
2013b00e805aSAngel Iglesias 	.num_channels = 2,
2014b00e805aSAngel Iglesias 
201514e8015fSLinus Walleij 	.oversampling_temp_avail = bmp180_oversampling_temp_avail,
201614e8015fSLinus Walleij 	.num_oversampling_temp_avail =
201714e8015fSLinus Walleij 		ARRAY_SIZE(bmp180_oversampling_temp_avail),
2018b00e805aSAngel Iglesias 	.oversampling_temp_default = 0,
201914e8015fSLinus Walleij 
202014e8015fSLinus Walleij 	.oversampling_press_avail = bmp180_oversampling_press_avail,
202114e8015fSLinus Walleij 	.num_oversampling_press_avail =
202214e8015fSLinus Walleij 		ARRAY_SIZE(bmp180_oversampling_press_avail),
2023b00e805aSAngel Iglesias 	.oversampling_press_default = BMP180_MEAS_PRESS_8X,
202414e8015fSLinus Walleij 
202514e8015fSLinus Walleij 	.chip_config = bmp180_chip_config,
202614e8015fSLinus Walleij 	.read_temp = bmp180_read_temp,
202714e8015fSLinus Walleij 	.read_press = bmp180_read_press,
2028b00e805aSAngel Iglesias 	.read_calib = bmp180_read_calib,
202914e8015fSLinus Walleij };
20300b0b7726SAngel Iglesias EXPORT_SYMBOL_NS(bmp180_chip_info, IIO_BMP280);
203114e8015fSLinus Walleij 
bmp085_eoc_irq(int irq,void * d)2032aae95394SLinus Walleij static irqreturn_t bmp085_eoc_irq(int irq, void *d)
2033aae95394SLinus Walleij {
2034aae95394SLinus Walleij 	struct bmp280_data *data = d;
2035aae95394SLinus Walleij 
2036aae95394SLinus Walleij 	complete(&data->done);
2037aae95394SLinus Walleij 
2038aae95394SLinus Walleij 	return IRQ_HANDLED;
2039aae95394SLinus Walleij }
2040aae95394SLinus Walleij 
bmp085_fetch_eoc_irq(struct device * dev,const char * name,int irq,struct bmp280_data * data)2041aae95394SLinus Walleij static int bmp085_fetch_eoc_irq(struct device *dev,
2042aae95394SLinus Walleij 				const char *name,
2043aae95394SLinus Walleij 				int irq,
2044aae95394SLinus Walleij 				struct bmp280_data *data)
2045aae95394SLinus Walleij {
2046aae95394SLinus Walleij 	unsigned long irq_trig;
2047aae95394SLinus Walleij 	int ret;
2048aae95394SLinus Walleij 
2049aae95394SLinus Walleij 	irq_trig = irqd_get_trigger_type(irq_get_irq_data(irq));
2050aae95394SLinus Walleij 	if (irq_trig != IRQF_TRIGGER_RISING) {
2051792897ceSAndy Shevchenko 		dev_err(dev, "non-rising trigger given for EOC interrupt, trying to enforce it\n");
2052aae95394SLinus Walleij 		irq_trig = IRQF_TRIGGER_RISING;
2053aae95394SLinus Walleij 	}
205497b31a6fSAndy Shevchenko 
205597b31a6fSAndy Shevchenko 	init_completion(&data->done);
205697b31a6fSAndy Shevchenko 
2057aae95394SLinus Walleij 	ret = devm_request_threaded_irq(dev,
2058aae95394SLinus Walleij 			irq,
2059aae95394SLinus Walleij 			bmp085_eoc_irq,
2060aae95394SLinus Walleij 			NULL,
2061aae95394SLinus Walleij 			irq_trig,
2062aae95394SLinus Walleij 			name,
2063aae95394SLinus Walleij 			data);
2064aae95394SLinus Walleij 	if (ret) {
2065aae95394SLinus Walleij 		/* Bail out without IRQ but keep the driver in place */
2066aae95394SLinus Walleij 		dev_err(dev, "unable to request DRDY IRQ\n");
2067aae95394SLinus Walleij 		return 0;
2068aae95394SLinus Walleij 	}
2069aae95394SLinus Walleij 
2070aae95394SLinus Walleij 	data->use_eoc = true;
2071aae95394SLinus Walleij 	return 0;
2072aae95394SLinus Walleij }
2073aae95394SLinus Walleij 
bmp280_pm_disable(void * data)20742f4292a8SBartosz Golaszewski static void bmp280_pm_disable(void *data)
20752f4292a8SBartosz Golaszewski {
20762f4292a8SBartosz Golaszewski 	struct device *dev = data;
20772f4292a8SBartosz Golaszewski 
20782f4292a8SBartosz Golaszewski 	pm_runtime_get_sync(dev);
20792f4292a8SBartosz Golaszewski 	pm_runtime_put_noidle(dev);
20802f4292a8SBartosz Golaszewski 	pm_runtime_disable(dev);
20812f4292a8SBartosz Golaszewski }
20822f4292a8SBartosz Golaszewski 
bmp280_regulators_disable(void * data)20832f4292a8SBartosz Golaszewski static void bmp280_regulators_disable(void *data)
20842f4292a8SBartosz Golaszewski {
20852f4292a8SBartosz Golaszewski 	struct regulator_bulk_data *supplies = data;
20862f4292a8SBartosz Golaszewski 
20872f4292a8SBartosz Golaszewski 	regulator_bulk_disable(BMP280_NUM_SUPPLIES, supplies);
20882f4292a8SBartosz Golaszewski }
20892f4292a8SBartosz Golaszewski 
bmp280_common_probe(struct device * dev,struct regmap * regmap,const struct bmp280_chip_info * chip_info,const char * name,int irq)209014e8015fSLinus Walleij int bmp280_common_probe(struct device *dev,
209114e8015fSLinus Walleij 			struct regmap *regmap,
20920b0b7726SAngel Iglesias 			const struct bmp280_chip_info *chip_info,
2093aae95394SLinus Walleij 			const char *name,
2094aae95394SLinus Walleij 			int irq)
209514e8015fSLinus Walleij {
209614e8015fSLinus Walleij 	struct iio_dev *indio_dev;
209714e8015fSLinus Walleij 	struct bmp280_data *data;
209814e8015fSLinus Walleij 	struct gpio_desc *gpiod;
20995f0c359dSAngel Iglesias 	unsigned int chip_id;
2100afe335a6SAngel Iglesias 	unsigned int i;
21015f0c359dSAngel Iglesias 	int ret;
210214e8015fSLinus Walleij 
210314e8015fSLinus Walleij 	indio_dev = devm_iio_device_alloc(dev, sizeof(*data));
210414e8015fSLinus Walleij 	if (!indio_dev)
210514e8015fSLinus Walleij 		return -ENOMEM;
210614e8015fSLinus Walleij 
210714e8015fSLinus Walleij 	data = iio_priv(indio_dev);
210814e8015fSLinus Walleij 	mutex_init(&data->lock);
210914e8015fSLinus Walleij 	data->dev = dev;
211014e8015fSLinus Walleij 
211114e8015fSLinus Walleij 	indio_dev->name = name;
211214e8015fSLinus Walleij 	indio_dev->info = &bmp280_info;
211314e8015fSLinus Walleij 	indio_dev->modes = INDIO_DIRECT_MODE;
211414e8015fSLinus Walleij 
2115b00e805aSAngel Iglesias 	data->chip_info = chip_info;
2116b00e805aSAngel Iglesias 
2117b00e805aSAngel Iglesias 	/* Apply initial values from chip info structure */
211810b40ffbSAngel Iglesias 	indio_dev->channels = chip_info->channels;
2119b00e805aSAngel Iglesias 	indio_dev->num_channels = chip_info->num_channels;
2120b00e805aSAngel Iglesias 	data->oversampling_press = chip_info->oversampling_press_default;
2121b00e805aSAngel Iglesias 	data->oversampling_humid = chip_info->oversampling_humid_default;
2122b00e805aSAngel Iglesias 	data->oversampling_temp = chip_info->oversampling_temp_default;
212310b40ffbSAngel Iglesias 	data->iir_filter_coeff = chip_info->iir_filter_coeff_default;
212410b40ffbSAngel Iglesias 	data->sampling_freq = chip_info->sampling_freq_default;
2125b00e805aSAngel Iglesias 	data->start_up_time = chip_info->start_up_time;
212614e8015fSLinus Walleij 
212714e8015fSLinus Walleij 	/* Bring up regulators */
21281372d1a1SBartosz Golaszewski 	regulator_bulk_set_supply_names(data->supplies,
21291372d1a1SBartosz Golaszewski 					bmp280_supply_names,
21301372d1a1SBartosz Golaszewski 					BMP280_NUM_SUPPLIES);
21311372d1a1SBartosz Golaszewski 
21321372d1a1SBartosz Golaszewski 	ret = devm_regulator_bulk_get(dev,
21331372d1a1SBartosz Golaszewski 				      BMP280_NUM_SUPPLIES, data->supplies);
213414e8015fSLinus Walleij 	if (ret) {
21351372d1a1SBartosz Golaszewski 		dev_err(dev, "failed to get regulators\n");
213614e8015fSLinus Walleij 		return ret;
213714e8015fSLinus Walleij 	}
21381372d1a1SBartosz Golaszewski 
21391372d1a1SBartosz Golaszewski 	ret = regulator_bulk_enable(BMP280_NUM_SUPPLIES, data->supplies);
214014e8015fSLinus Walleij 	if (ret) {
21411372d1a1SBartosz Golaszewski 		dev_err(dev, "failed to enable regulators\n");
21421372d1a1SBartosz Golaszewski 		return ret;
214314e8015fSLinus Walleij 	}
21441372d1a1SBartosz Golaszewski 
21452f4292a8SBartosz Golaszewski 	ret = devm_add_action_or_reset(dev, bmp280_regulators_disable,
21462f4292a8SBartosz Golaszewski 				       data->supplies);
21472f4292a8SBartosz Golaszewski 	if (ret)
21482f4292a8SBartosz Golaszewski 		return ret;
21492f4292a8SBartosz Golaszewski 
215014e8015fSLinus Walleij 	/* Wait to make sure we started up properly */
2151071cf249SAniroop Mathur 	usleep_range(data->start_up_time, data->start_up_time + 100);
215214e8015fSLinus Walleij 
215314e8015fSLinus Walleij 	/* Bring chip out of reset if there is an assigned GPIO line */
2154df6e7125SAndy Shevchenko 	gpiod = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_HIGH);
215514e8015fSLinus Walleij 	/* Deassert the signal */
2156df6e7125SAndy Shevchenko 	if (gpiod) {
215714e8015fSLinus Walleij 		dev_info(dev, "release reset\n");
215814e8015fSLinus Walleij 		gpiod_set_value(gpiod, 0);
215914e8015fSLinus Walleij 	}
216014e8015fSLinus Walleij 
216114e8015fSLinus Walleij 	data->regmap = regmap;
2162b00e805aSAngel Iglesias 
2163b00e805aSAngel Iglesias 	ret = regmap_read(regmap, data->chip_info->id_reg, &chip_id);
216414e8015fSLinus Walleij 	if (ret < 0)
21652f4292a8SBartosz Golaszewski 		return ret;
2166afe335a6SAngel Iglesias 
2167afe335a6SAngel Iglesias 	for (i = 0; i < data->chip_info->num_chip_id; i++) {
2168afe335a6SAngel Iglesias 		if (chip_id == data->chip_info->chip_id[i]) {
2169afe335a6SAngel Iglesias 			dev_info(dev, "0x%x is a known chip id for %s\n", chip_id, name);
2170afe335a6SAngel Iglesias 			break;
217114e8015fSLinus Walleij 		}
2172afe335a6SAngel Iglesias 	}
2173afe335a6SAngel Iglesias 
2174afe335a6SAngel Iglesias 	if (i == data->chip_info->num_chip_id)
2175afe335a6SAngel Iglesias 		dev_warn(dev, "bad chip id: 0x%x is not a known chip id\n", chip_id);
217614e8015fSLinus Walleij 
2177c25ea00fSAngel Iglesias 	if (data->chip_info->preinit) {
2178c25ea00fSAngel Iglesias 		ret = data->chip_info->preinit(data);
2179c25ea00fSAngel Iglesias 		if (ret)
2180c25ea00fSAngel Iglesias 			return dev_err_probe(data->dev, ret,
2181c25ea00fSAngel Iglesias 					     "error running preinit tasks\n");
21828d329309SAngel Iglesias 	}
21838d329309SAngel Iglesias 
218414e8015fSLinus Walleij 	ret = data->chip_info->chip_config(data);
218514e8015fSLinus Walleij 	if (ret < 0)
21862f4292a8SBartosz Golaszewski 		return ret;
218714e8015fSLinus Walleij 
218814e8015fSLinus Walleij 	dev_set_drvdata(dev, indio_dev);
218914e8015fSLinus Walleij 
2190aae95394SLinus Walleij 	/*
21912e419aecSStefan Tatschner 	 * Some chips have calibration parameters "programmed into the devices'
21922e419aecSStefan Tatschner 	 * non-volatile memory during production". Let's read them out at probe
21932e419aecSStefan Tatschner 	 * time once. They will not change.
2194b33b7d5aSLinus Walleij 	 */
2195b00e805aSAngel Iglesias 
21964d545f96SAngel Iglesias 	if (data->chip_info->read_calib) {
2197b00e805aSAngel Iglesias 		ret = data->chip_info->read_calib(data);
2198b00e805aSAngel Iglesias 		if (ret < 0)
2199b00e805aSAngel Iglesias 			return dev_err_probe(data->dev, ret,
22002e419aecSStefan Tatschner 					     "failed to read calibration coefficients\n");
22014d545f96SAngel Iglesias 	}
2202b33b7d5aSLinus Walleij 
2203b33b7d5aSLinus Walleij 	/*
2204aae95394SLinus Walleij 	 * Attempt to grab an optional EOC IRQ - only the BMP085 has this
2205aae95394SLinus Walleij 	 * however as it happens, the BMP085 shares the chip ID of BMP180
2206aae95394SLinus Walleij 	 * so we look for an IRQ if we have that.
2207aae95394SLinus Walleij 	 */
220885dfb43bSPhil Elwell 	if (irq > 0 && (chip_id  == BMP180_CHIP_ID)) {
2209aae95394SLinus Walleij 		ret = bmp085_fetch_eoc_irq(dev, name, irq, data);
2210aae95394SLinus Walleij 		if (ret)
22112f4292a8SBartosz Golaszewski 			return ret;
2212aae95394SLinus Walleij 	}
2213aae95394SLinus Walleij 
22143d838118SLinus Walleij 	/* Enable runtime PM */
22153d838118SLinus Walleij 	pm_runtime_get_noresume(dev);
22163d838118SLinus Walleij 	pm_runtime_set_active(dev);
22173d838118SLinus Walleij 	pm_runtime_enable(dev);
22183d838118SLinus Walleij 	/*
22193d838118SLinus Walleij 	 * Set autosuspend to two orders of magnitude larger than the
22203d838118SLinus Walleij 	 * start-up time.
22213d838118SLinus Walleij 	 */
2222071cf249SAniroop Mathur 	pm_runtime_set_autosuspend_delay(dev, data->start_up_time / 10);
22233d838118SLinus Walleij 	pm_runtime_use_autosuspend(dev);
22243d838118SLinus Walleij 	pm_runtime_put(dev);
22253d838118SLinus Walleij 
22262f4292a8SBartosz Golaszewski 	ret = devm_add_action_or_reset(dev, bmp280_pm_disable, dev);
222714e8015fSLinus Walleij 	if (ret)
222814e8015fSLinus Walleij 		return ret;
22292f4292a8SBartosz Golaszewski 
22302f4292a8SBartosz Golaszewski 	return devm_iio_device_register(dev, indio_dev);
223114e8015fSLinus Walleij }
22320f26b9dbSJonathan Cameron EXPORT_SYMBOL_NS(bmp280_common_probe, IIO_BMP280);
223314e8015fSLinus Walleij 
bmp280_runtime_suspend(struct device * dev)22343d838118SLinus Walleij static int bmp280_runtime_suspend(struct device *dev)
22353d838118SLinus Walleij {
223631f453eaSLinus Walleij 	struct iio_dev *indio_dev = dev_get_drvdata(dev);
223731f453eaSLinus Walleij 	struct bmp280_data *data = iio_priv(indio_dev);
22383d838118SLinus Walleij 
22391372d1a1SBartosz Golaszewski 	return regulator_bulk_disable(BMP280_NUM_SUPPLIES, data->supplies);
22403d838118SLinus Walleij }
22413d838118SLinus Walleij 
bmp280_runtime_resume(struct device * dev)22423d838118SLinus Walleij static int bmp280_runtime_resume(struct device *dev)
22433d838118SLinus Walleij {
224431f453eaSLinus Walleij 	struct iio_dev *indio_dev = dev_get_drvdata(dev);
224531f453eaSLinus Walleij 	struct bmp280_data *data = iio_priv(indio_dev);
22463d838118SLinus Walleij 	int ret;
22473d838118SLinus Walleij 
22481372d1a1SBartosz Golaszewski 	ret = regulator_bulk_enable(BMP280_NUM_SUPPLIES, data->supplies);
22493d838118SLinus Walleij 	if (ret)
22503d838118SLinus Walleij 		return ret;
2251b71b2d70SVasileios Amoiridis 
2252071cf249SAniroop Mathur 	usleep_range(data->start_up_time, data->start_up_time + 100);
22533d838118SLinus Walleij 	return data->chip_info->chip_config(data);
22543d838118SLinus Walleij }
22553d838118SLinus Walleij 
22565865918fSPaul Cercueil EXPORT_RUNTIME_DEV_PM_OPS(bmp280_dev_pm_ops, bmp280_runtime_suspend,
22575865918fSPaul Cercueil 			  bmp280_runtime_resume, NULL);
22583d838118SLinus Walleij 
225917118843SLinus Walleij MODULE_AUTHOR("Vlad Dogaru <vlad.dogaru@intel.com>");
226017118843SLinus Walleij MODULE_DESCRIPTION("Driver for Bosch Sensortec BMP180/BMP280 pressure and temperature sensor");
226117118843SLinus Walleij MODULE_LICENSE("GPL v2");
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