xref: /openbmc/linux/drivers/iio/pressure/hp03.c (revision 2612e3bbc0386368a850140a6c9b990cd496a5ec)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2d8469e93SMarek Vasut /*
3d8469e93SMarek Vasut  * Copyright (c) 2016 Marek Vasut <marex@denx.de>
4d8469e93SMarek Vasut  *
5d8469e93SMarek Vasut  * Driver for Hope RF HP03 digital temperature and pressure sensor.
6d8469e93SMarek Vasut  */
7d8469e93SMarek Vasut 
8d8469e93SMarek Vasut #define pr_fmt(fmt) "hp03: " fmt
9d8469e93SMarek Vasut 
10d8469e93SMarek Vasut #include <linux/module.h>
11d8469e93SMarek Vasut #include <linux/delay.h>
12d8469e93SMarek Vasut #include <linux/gpio/consumer.h>
13d8469e93SMarek Vasut #include <linux/i2c.h>
14d8469e93SMarek Vasut #include <linux/regmap.h>
15d8469e93SMarek Vasut #include <linux/iio/iio.h>
16d8469e93SMarek Vasut #include <linux/iio/sysfs.h>
17d8469e93SMarek Vasut 
18d8469e93SMarek Vasut /*
19d8469e93SMarek Vasut  * The HP03 sensor occupies two fixed I2C addresses:
20d8469e93SMarek Vasut  *  0x50 ... read-only EEPROM with calibration data
21d8469e93SMarek Vasut  *  0x77 ... read-write ADC for pressure and temperature
22d8469e93SMarek Vasut  */
23d8469e93SMarek Vasut #define HP03_EEPROM_ADDR		0x50
24d8469e93SMarek Vasut #define HP03_ADC_ADDR			0x77
25d8469e93SMarek Vasut 
26d8469e93SMarek Vasut #define HP03_EEPROM_CX_OFFSET		0x10
27d8469e93SMarek Vasut #define HP03_EEPROM_AB_OFFSET		0x1e
28d8469e93SMarek Vasut #define HP03_EEPROM_CD_OFFSET		0x20
29d8469e93SMarek Vasut 
30d8469e93SMarek Vasut #define HP03_ADC_WRITE_REG		0xff
31d8469e93SMarek Vasut #define HP03_ADC_READ_REG		0xfd
32d8469e93SMarek Vasut #define HP03_ADC_READ_PRESSURE		0xf0	/* D1 in datasheet */
33d8469e93SMarek Vasut #define HP03_ADC_READ_TEMP		0xe8	/* D2 in datasheet */
34d8469e93SMarek Vasut 
35d8469e93SMarek Vasut struct hp03_priv {
36d8469e93SMarek Vasut 	struct i2c_client	*client;
37d8469e93SMarek Vasut 	struct mutex		lock;
38d8469e93SMarek Vasut 	struct gpio_desc	*xclr_gpio;
39d8469e93SMarek Vasut 
40d8469e93SMarek Vasut 	struct i2c_client	*eeprom_client;
41d8469e93SMarek Vasut 	struct regmap		*eeprom_regmap;
42d8469e93SMarek Vasut 
43d8469e93SMarek Vasut 	s32			pressure;	/* kPa */
44d8469e93SMarek Vasut 	s32			temp;		/* Deg. C */
45d8469e93SMarek Vasut };
46d8469e93SMarek Vasut 
47d8469e93SMarek Vasut static const struct iio_chan_spec hp03_channels[] = {
48d8469e93SMarek Vasut 	{
49d8469e93SMarek Vasut 		.type = IIO_PRESSURE,
50d8469e93SMarek Vasut 		.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
51d8469e93SMarek Vasut 		.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE),
52d8469e93SMarek Vasut 	},
53d8469e93SMarek Vasut 	{
54d8469e93SMarek Vasut 		.type = IIO_TEMP,
55d8469e93SMarek Vasut 		.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
56d8469e93SMarek Vasut 		.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE),
57d8469e93SMarek Vasut 	},
58d8469e93SMarek Vasut };
59d8469e93SMarek Vasut 
hp03_is_writeable_reg(struct device * dev,unsigned int reg)60d8469e93SMarek Vasut static bool hp03_is_writeable_reg(struct device *dev, unsigned int reg)
61d8469e93SMarek Vasut {
62d8469e93SMarek Vasut 	return false;
63d8469e93SMarek Vasut }
64d8469e93SMarek Vasut 
hp03_is_volatile_reg(struct device * dev,unsigned int reg)65d8469e93SMarek Vasut static bool hp03_is_volatile_reg(struct device *dev, unsigned int reg)
66d8469e93SMarek Vasut {
67d8469e93SMarek Vasut 	return false;
68d8469e93SMarek Vasut }
69d8469e93SMarek Vasut 
70d8469e93SMarek Vasut static const struct regmap_config hp03_regmap_config = {
71d8469e93SMarek Vasut 	.reg_bits	= 8,
72d8469e93SMarek Vasut 	.val_bits	= 8,
73d8469e93SMarek Vasut 
74d8469e93SMarek Vasut 	.max_register	= HP03_EEPROM_CD_OFFSET + 1,
75d8469e93SMarek Vasut 	.cache_type	= REGCACHE_RBTREE,
76d8469e93SMarek Vasut 
77d8469e93SMarek Vasut 	.writeable_reg	= hp03_is_writeable_reg,
78d8469e93SMarek Vasut 	.volatile_reg	= hp03_is_volatile_reg,
79d8469e93SMarek Vasut };
80d8469e93SMarek Vasut 
hp03_get_temp_pressure(struct hp03_priv * priv,const u8 reg)81d8469e93SMarek Vasut static int hp03_get_temp_pressure(struct hp03_priv *priv, const u8 reg)
82d8469e93SMarek Vasut {
83d8469e93SMarek Vasut 	int ret;
84d8469e93SMarek Vasut 
85d8469e93SMarek Vasut 	ret = i2c_smbus_write_byte_data(priv->client, HP03_ADC_WRITE_REG, reg);
86d8469e93SMarek Vasut 	if (ret < 0)
87d8469e93SMarek Vasut 		return ret;
88d8469e93SMarek Vasut 
89d8469e93SMarek Vasut 	msleep(50);	/* Wait for conversion to finish */
90d8469e93SMarek Vasut 
91d8469e93SMarek Vasut 	return i2c_smbus_read_word_data(priv->client, HP03_ADC_READ_REG);
92d8469e93SMarek Vasut }
93d8469e93SMarek Vasut 
hp03_update_temp_pressure(struct hp03_priv * priv)94d8469e93SMarek Vasut static int hp03_update_temp_pressure(struct hp03_priv *priv)
95d8469e93SMarek Vasut {
96d8469e93SMarek Vasut 	struct device *dev = &priv->client->dev;
97d8469e93SMarek Vasut 	u8 coefs[18];
98d8469e93SMarek Vasut 	u16 cx_val[7];
99d8469e93SMarek Vasut 	int ab_val, d1_val, d2_val, diff_val, dut, off, sens, x;
100d8469e93SMarek Vasut 	int i, ret;
101d8469e93SMarek Vasut 
102d8469e93SMarek Vasut 	/* Sample coefficients from EEPROM */
103d8469e93SMarek Vasut 	ret = regmap_bulk_read(priv->eeprom_regmap, HP03_EEPROM_CX_OFFSET,
104d8469e93SMarek Vasut 			       coefs, sizeof(coefs));
105d8469e93SMarek Vasut 	if (ret < 0) {
106d8469e93SMarek Vasut 		dev_err(dev, "Failed to read EEPROM (reg=%02x)\n",
107d8469e93SMarek Vasut 			HP03_EEPROM_CX_OFFSET);
108d8469e93SMarek Vasut 		return ret;
109d8469e93SMarek Vasut 	}
110d8469e93SMarek Vasut 
111d8469e93SMarek Vasut 	/* Sample Temperature and Pressure */
112d8469e93SMarek Vasut 	gpiod_set_value_cansleep(priv->xclr_gpio, 1);
113d8469e93SMarek Vasut 
114d8469e93SMarek Vasut 	ret = hp03_get_temp_pressure(priv, HP03_ADC_READ_PRESSURE);
115d8469e93SMarek Vasut 	if (ret < 0) {
116d8469e93SMarek Vasut 		dev_err(dev, "Failed to read pressure\n");
117d8469e93SMarek Vasut 		goto err_adc;
118d8469e93SMarek Vasut 	}
119d8469e93SMarek Vasut 	d1_val = ret;
120d8469e93SMarek Vasut 
121d8469e93SMarek Vasut 	ret = hp03_get_temp_pressure(priv, HP03_ADC_READ_TEMP);
122d8469e93SMarek Vasut 	if (ret < 0) {
123d8469e93SMarek Vasut 		dev_err(dev, "Failed to read temperature\n");
124d8469e93SMarek Vasut 		goto err_adc;
125d8469e93SMarek Vasut 	}
126d8469e93SMarek Vasut 	d2_val = ret;
127d8469e93SMarek Vasut 
128d8469e93SMarek Vasut 	gpiod_set_value_cansleep(priv->xclr_gpio, 0);
129d8469e93SMarek Vasut 
130d8469e93SMarek Vasut 	/* The Cx coefficients and Temp/Pressure values are MSB first. */
131d8469e93SMarek Vasut 	for (i = 0; i < 7; i++)
132d8469e93SMarek Vasut 		cx_val[i] = (coefs[2 * i] << 8) | (coefs[(2 * i) + 1] << 0);
133d8469e93SMarek Vasut 	d1_val = ((d1_val >> 8) & 0xff) | ((d1_val & 0xff) << 8);
134d8469e93SMarek Vasut 	d2_val = ((d2_val >> 8) & 0xff) | ((d2_val & 0xff) << 8);
135d8469e93SMarek Vasut 
136d8469e93SMarek Vasut 	/* Coefficient voodoo from the HP03 datasheet. */
137d8469e93SMarek Vasut 	if (d2_val >= cx_val[4])
138d8469e93SMarek Vasut 		ab_val = coefs[14];	/* A-value */
139d8469e93SMarek Vasut 	else
140d8469e93SMarek Vasut 		ab_val = coefs[15];	/* B-value */
141d8469e93SMarek Vasut 
142d8469e93SMarek Vasut 	diff_val = d2_val - cx_val[4];
143d8469e93SMarek Vasut 	dut = (ab_val * (diff_val >> 7) * (diff_val >> 7)) >> coefs[16];
144d8469e93SMarek Vasut 	dut = diff_val - dut;
145d8469e93SMarek Vasut 
146d8469e93SMarek Vasut 	off = (cx_val[1] + (((cx_val[3] - 1024) * dut) >> 14)) * 4;
147d8469e93SMarek Vasut 	sens = cx_val[0] + ((cx_val[2] * dut) >> 10);
148d8469e93SMarek Vasut 	x = ((sens * (d1_val - 7168)) >> 14) - off;
149d8469e93SMarek Vasut 
150d8469e93SMarek Vasut 	priv->pressure = ((x * 100) >> 5) + (cx_val[6] * 10);
151d8469e93SMarek Vasut 	priv->temp = 250 + ((dut * cx_val[5]) >> 16) - (dut >> coefs[17]);
152d8469e93SMarek Vasut 
153d8469e93SMarek Vasut 	return 0;
154d8469e93SMarek Vasut 
155d8469e93SMarek Vasut err_adc:
156d8469e93SMarek Vasut 	gpiod_set_value_cansleep(priv->xclr_gpio, 0);
157d8469e93SMarek Vasut 	return ret;
158d8469e93SMarek Vasut }
159d8469e93SMarek Vasut 
hp03_read_raw(struct iio_dev * indio_dev,struct iio_chan_spec const * chan,int * val,int * val2,long mask)160d8469e93SMarek Vasut static int hp03_read_raw(struct iio_dev *indio_dev,
161d8469e93SMarek Vasut 			 struct iio_chan_spec const *chan,
162d8469e93SMarek Vasut 			 int *val, int *val2, long mask)
163d8469e93SMarek Vasut {
164d8469e93SMarek Vasut 	struct hp03_priv *priv = iio_priv(indio_dev);
165d8469e93SMarek Vasut 	int ret;
166d8469e93SMarek Vasut 
167d8469e93SMarek Vasut 	mutex_lock(&priv->lock);
168d8469e93SMarek Vasut 	ret = hp03_update_temp_pressure(priv);
169d8469e93SMarek Vasut 	mutex_unlock(&priv->lock);
170d8469e93SMarek Vasut 
171d8469e93SMarek Vasut 	if (ret)
172d8469e93SMarek Vasut 		return ret;
173d8469e93SMarek Vasut 
174d8469e93SMarek Vasut 	switch (mask) {
175d8469e93SMarek Vasut 	case IIO_CHAN_INFO_RAW:
176d8469e93SMarek Vasut 		switch (chan->type) {
177d8469e93SMarek Vasut 		case IIO_PRESSURE:
178d8469e93SMarek Vasut 			*val = priv->pressure;
179d8469e93SMarek Vasut 			return IIO_VAL_INT;
180d8469e93SMarek Vasut 		case IIO_TEMP:
181d8469e93SMarek Vasut 			*val = priv->temp;
182d8469e93SMarek Vasut 			return IIO_VAL_INT;
183d8469e93SMarek Vasut 		default:
184d8469e93SMarek Vasut 			return -EINVAL;
185d8469e93SMarek Vasut 		}
186d8469e93SMarek Vasut 		break;
187d8469e93SMarek Vasut 	case IIO_CHAN_INFO_SCALE:
188d8469e93SMarek Vasut 		switch (chan->type) {
189d8469e93SMarek Vasut 		case IIO_PRESSURE:
190d8469e93SMarek Vasut 			*val = 0;
191d8469e93SMarek Vasut 			*val2 = 1000;
192d8469e93SMarek Vasut 			return IIO_VAL_INT_PLUS_MICRO;
193d8469e93SMarek Vasut 		case IIO_TEMP:
194d8469e93SMarek Vasut 			*val = 10;
195d8469e93SMarek Vasut 			return IIO_VAL_INT;
196d8469e93SMarek Vasut 		default:
197d8469e93SMarek Vasut 			return -EINVAL;
198d8469e93SMarek Vasut 		}
199d8469e93SMarek Vasut 		break;
200d8469e93SMarek Vasut 	default:
201d8469e93SMarek Vasut 		return -EINVAL;
202d8469e93SMarek Vasut 	}
203d8469e93SMarek Vasut 
204d8469e93SMarek Vasut 	return -EINVAL;
205d8469e93SMarek Vasut }
206d8469e93SMarek Vasut 
207d8469e93SMarek Vasut static const struct iio_info hp03_info = {
208d8469e93SMarek Vasut 	.read_raw	= &hp03_read_raw,
209d8469e93SMarek Vasut };
210d8469e93SMarek Vasut 
hp03_probe(struct i2c_client * client)2113d5f5d59SUwe Kleine-König static int hp03_probe(struct i2c_client *client)
212d8469e93SMarek Vasut {
2133d5f5d59SUwe Kleine-König 	const struct i2c_device_id *id = i2c_client_get_device_id(client);
214d8469e93SMarek Vasut 	struct device *dev = &client->dev;
215d8469e93SMarek Vasut 	struct iio_dev *indio_dev;
216d8469e93SMarek Vasut 	struct hp03_priv *priv;
217d8469e93SMarek Vasut 	int ret;
218d8469e93SMarek Vasut 
219d8469e93SMarek Vasut 	indio_dev = devm_iio_device_alloc(dev, sizeof(*priv));
220d8469e93SMarek Vasut 	if (!indio_dev)
221d8469e93SMarek Vasut 		return -ENOMEM;
222d8469e93SMarek Vasut 
223d8469e93SMarek Vasut 	priv = iio_priv(indio_dev);
224d8469e93SMarek Vasut 	priv->client = client;
225d8469e93SMarek Vasut 	mutex_init(&priv->lock);
226d8469e93SMarek Vasut 
227d8469e93SMarek Vasut 	indio_dev->name = id->name;
228d8469e93SMarek Vasut 	indio_dev->channels = hp03_channels;
229d8469e93SMarek Vasut 	indio_dev->num_channels = ARRAY_SIZE(hp03_channels);
230d8469e93SMarek Vasut 	indio_dev->info = &hp03_info;
231d8469e93SMarek Vasut 	indio_dev->modes = INDIO_DIRECT_MODE;
232d8469e93SMarek Vasut 
233d8469e93SMarek Vasut 	priv->xclr_gpio = devm_gpiod_get_index(dev, "xclr", 0, GPIOD_OUT_HIGH);
234d8469e93SMarek Vasut 	if (IS_ERR(priv->xclr_gpio)) {
235d8469e93SMarek Vasut 		dev_err(dev, "Failed to claim XCLR GPIO\n");
236d8469e93SMarek Vasut 		ret = PTR_ERR(priv->xclr_gpio);
237d8469e93SMarek Vasut 		return ret;
238d8469e93SMarek Vasut 	}
239d8469e93SMarek Vasut 
240d8469e93SMarek Vasut 	/*
241d8469e93SMarek Vasut 	 * Allocate another device for the on-sensor EEPROM,
242d8469e93SMarek Vasut 	 * which has it's dedicated I2C address and contains
243d8469e93SMarek Vasut 	 * the calibration constants for the sensor.
244d8469e93SMarek Vasut 	 */
245ffc6659bSThéo Borém Fabris 	priv->eeprom_client = devm_i2c_new_dummy_device(dev, client->adapter,
246ffc6659bSThéo Borém Fabris 							HP03_EEPROM_ADDR);
247b4a339baSWolfram Sang 	if (IS_ERR(priv->eeprom_client)) {
248d8469e93SMarek Vasut 		dev_err(dev, "New EEPROM I2C device failed\n");
249b4a339baSWolfram Sang 		return PTR_ERR(priv->eeprom_client);
250d8469e93SMarek Vasut 	}
251d8469e93SMarek Vasut 
252ffc6659bSThéo Borém Fabris 	priv->eeprom_regmap = devm_regmap_init_i2c(priv->eeprom_client,
253d8469e93SMarek Vasut 						   &hp03_regmap_config);
254d8469e93SMarek Vasut 	if (IS_ERR(priv->eeprom_regmap)) {
255d8469e93SMarek Vasut 		dev_err(dev, "Failed to allocate EEPROM regmap\n");
256ffc6659bSThéo Borém Fabris 		return PTR_ERR(priv->eeprom_regmap);
257d8469e93SMarek Vasut 	}
258d8469e93SMarek Vasut 
259ffc6659bSThéo Borém Fabris 	ret = devm_iio_device_register(dev, indio_dev);
260d8469e93SMarek Vasut 	if (ret) {
261d8469e93SMarek Vasut 		dev_err(dev, "Failed to register IIO device\n");
262d8469e93SMarek Vasut 		return ret;
263d8469e93SMarek Vasut 	}
264d8469e93SMarek Vasut 
265d8469e93SMarek Vasut 	return 0;
266d8469e93SMarek Vasut }
267d8469e93SMarek Vasut 
268d8469e93SMarek Vasut static const struct i2c_device_id hp03_id[] = {
269d8469e93SMarek Vasut 	{ "hp03", 0 },
270d8469e93SMarek Vasut 	{ },
271d8469e93SMarek Vasut };
272d8469e93SMarek Vasut MODULE_DEVICE_TABLE(i2c, hp03_id);
273d8469e93SMarek Vasut 
27472fc0270SJavier Martinez Canillas static const struct of_device_id hp03_of_match[] = {
27572fc0270SJavier Martinez Canillas 	{ .compatible = "hoperf,hp03" },
27672fc0270SJavier Martinez Canillas 	{ },
27772fc0270SJavier Martinez Canillas };
27872fc0270SJavier Martinez Canillas MODULE_DEVICE_TABLE(of, hp03_of_match);
27972fc0270SJavier Martinez Canillas 
280d8469e93SMarek Vasut static struct i2c_driver hp03_driver = {
281d8469e93SMarek Vasut 	.driver = {
282d8469e93SMarek Vasut 		.name	= "hp03",
28372fc0270SJavier Martinez Canillas 		.of_match_table = hp03_of_match,
284d8469e93SMarek Vasut 	},
285*7cf15f42SUwe Kleine-König 	.probe		= hp03_probe,
286d8469e93SMarek Vasut 	.id_table	= hp03_id,
287d8469e93SMarek Vasut };
288d8469e93SMarek Vasut module_i2c_driver(hp03_driver);
289d8469e93SMarek Vasut 
290d8469e93SMarek Vasut MODULE_AUTHOR("Marek Vasut <marex@denx.de>");
291d8469e93SMarek Vasut MODULE_DESCRIPTION("Driver for Hope RF HP03 pressure and temperature sensor");
292d8469e93SMarek Vasut MODULE_LICENSE("GPL v2");
293