1/*
2 * STMicroelectronics pressures driver
3 *
4 * Copyright 2013 STMicroelectronics Inc.
5 *
6 * Denis Ciocca <denis.ciocca@st.com>
7 *
8 * Licensed under the GPL-2.
9 */
10
11#include <linux/kernel.h>
12#include <linux/module.h>
13#include <linux/slab.h>
14#include <linux/errno.h>
15#include <linux/types.h>
16#include <linux/mutex.h>
17#include <linux/interrupt.h>
18#include <linux/i2c.h>
19#include <linux/gpio.h>
20#include <linux/irq.h>
21#include <linux/delay.h>
22#include <linux/iio/iio.h>
23#include <linux/iio/sysfs.h>
24#include <linux/iio/trigger.h>
25#include <linux/iio/buffer.h>
26#include <asm/unaligned.h>
27
28#include <linux/iio/common/st_sensors.h>
29#include "st_pressure.h"
30
31#define ST_PRESS_LSB_PER_MBAR			4096UL
32#define ST_PRESS_KPASCAL_NANO_SCALE		(100000000UL / \
33						 ST_PRESS_LSB_PER_MBAR)
34#define ST_PRESS_LSB_PER_CELSIUS		480UL
35#define ST_PRESS_CELSIUS_NANO_SCALE		(1000000000UL / \
36						 ST_PRESS_LSB_PER_CELSIUS)
37#define ST_PRESS_NUMBER_DATA_CHANNELS		1
38
39/* FULLSCALE */
40#define ST_PRESS_FS_AVL_1260MB			1260
41
42#define ST_PRESS_1_OUT_XL_ADDR			0x28
43#define ST_TEMP_1_OUT_L_ADDR			0x2b
44
45/* CUSTOM VALUES FOR LPS331AP SENSOR */
46#define ST_PRESS_LPS331AP_WAI_EXP		0xbb
47#define ST_PRESS_LPS331AP_ODR_ADDR		0x20
48#define ST_PRESS_LPS331AP_ODR_MASK		0x70
49#define ST_PRESS_LPS331AP_ODR_AVL_1HZ_VAL	0x01
50#define ST_PRESS_LPS331AP_ODR_AVL_7HZ_VAL	0x05
51#define ST_PRESS_LPS331AP_ODR_AVL_13HZ_VAL	0x06
52#define ST_PRESS_LPS331AP_ODR_AVL_25HZ_VAL	0x07
53#define ST_PRESS_LPS331AP_PW_ADDR		0x20
54#define ST_PRESS_LPS331AP_PW_MASK		0x80
55#define ST_PRESS_LPS331AP_FS_ADDR		0x23
56#define ST_PRESS_LPS331AP_FS_MASK		0x30
57#define ST_PRESS_LPS331AP_FS_AVL_1260_VAL	0x00
58#define ST_PRESS_LPS331AP_FS_AVL_1260_GAIN	ST_PRESS_KPASCAL_NANO_SCALE
59#define ST_PRESS_LPS331AP_FS_AVL_TEMP_GAIN	ST_PRESS_CELSIUS_NANO_SCALE
60#define ST_PRESS_LPS331AP_BDU_ADDR		0x20
61#define ST_PRESS_LPS331AP_BDU_MASK		0x04
62#define ST_PRESS_LPS331AP_DRDY_IRQ_ADDR		0x22
63#define ST_PRESS_LPS331AP_DRDY_IRQ_INT1_MASK	0x04
64#define ST_PRESS_LPS331AP_DRDY_IRQ_INT2_MASK	0x20
65#define ST_PRESS_LPS331AP_MULTIREAD_BIT		true
66#define ST_PRESS_LPS331AP_TEMP_OFFSET		42500
67
68/* CUSTOM VALUES FOR LPS001WP SENSOR */
69#define ST_PRESS_LPS001WP_WAI_EXP		0xba
70#define ST_PRESS_LPS001WP_ODR_ADDR		0x20
71#define ST_PRESS_LPS001WP_ODR_MASK		0x30
72#define ST_PRESS_LPS001WP_ODR_AVL_1HZ_VAL	0x01
73#define ST_PRESS_LPS001WP_ODR_AVL_7HZ_VAL	0x02
74#define ST_PRESS_LPS001WP_ODR_AVL_13HZ_VAL	0x03
75#define ST_PRESS_LPS001WP_PW_ADDR		0x20
76#define ST_PRESS_LPS001WP_PW_MASK		0x40
77#define ST_PRESS_LPS001WP_BDU_ADDR		0x20
78#define ST_PRESS_LPS001WP_BDU_MASK		0x04
79#define ST_PRESS_LPS001WP_MULTIREAD_BIT		true
80#define ST_PRESS_LPS001WP_OUT_L_ADDR		0x28
81#define ST_TEMP_LPS001WP_OUT_L_ADDR		0x2a
82
83/* CUSTOM VALUES FOR LPS25H SENSOR */
84#define ST_PRESS_LPS25H_WAI_EXP			0xbd
85#define ST_PRESS_LPS25H_ODR_ADDR		0x20
86#define ST_PRESS_LPS25H_ODR_MASK		0x70
87#define ST_PRESS_LPS25H_ODR_AVL_1HZ_VAL		0x01
88#define ST_PRESS_LPS25H_ODR_AVL_7HZ_VAL		0x02
89#define ST_PRESS_LPS25H_ODR_AVL_13HZ_VAL	0x03
90#define ST_PRESS_LPS25H_ODR_AVL_25HZ_VAL	0x04
91#define ST_PRESS_LPS25H_PW_ADDR			0x20
92#define ST_PRESS_LPS25H_PW_MASK			0x80
93#define ST_PRESS_LPS25H_FS_ADDR			0x00
94#define ST_PRESS_LPS25H_FS_MASK			0x00
95#define ST_PRESS_LPS25H_FS_AVL_1260_VAL		0x00
96#define ST_PRESS_LPS25H_FS_AVL_1260_GAIN	ST_PRESS_KPASCAL_NANO_SCALE
97#define ST_PRESS_LPS25H_FS_AVL_TEMP_GAIN	ST_PRESS_CELSIUS_NANO_SCALE
98#define ST_PRESS_LPS25H_BDU_ADDR		0x20
99#define ST_PRESS_LPS25H_BDU_MASK		0x04
100#define ST_PRESS_LPS25H_DRDY_IRQ_ADDR		0x23
101#define ST_PRESS_LPS25H_DRDY_IRQ_INT1_MASK	0x01
102#define ST_PRESS_LPS25H_DRDY_IRQ_INT2_MASK	0x10
103#define ST_PRESS_LPS25H_MULTIREAD_BIT		true
104#define ST_PRESS_LPS25H_TEMP_OFFSET		42500
105#define ST_PRESS_LPS25H_OUT_XL_ADDR		0x28
106#define ST_TEMP_LPS25H_OUT_L_ADDR		0x2b
107
108static const struct iio_chan_spec st_press_1_channels[] = {
109	{
110		.type = IIO_PRESSURE,
111		.channel2 = IIO_NO_MOD,
112		.address = ST_PRESS_1_OUT_XL_ADDR,
113		.scan_index = ST_SENSORS_SCAN_X,
114		.scan_type = {
115			.sign = 'u',
116			.realbits = 24,
117			.storagebits = 24,
118			.endianness = IIO_LE,
119		},
120		.info_mask_separate =
121			BIT(IIO_CHAN_INFO_RAW) | BIT(IIO_CHAN_INFO_SCALE),
122		.modified = 0,
123	},
124	{
125		.type = IIO_TEMP,
126		.channel2 = IIO_NO_MOD,
127		.address = ST_TEMP_1_OUT_L_ADDR,
128		.scan_index = -1,
129		.scan_type = {
130			.sign = 'u',
131			.realbits = 16,
132			.storagebits = 16,
133			.endianness = IIO_LE,
134		},
135		.info_mask_separate =
136			BIT(IIO_CHAN_INFO_RAW) |
137			BIT(IIO_CHAN_INFO_SCALE) |
138			BIT(IIO_CHAN_INFO_OFFSET),
139		.modified = 0,
140	},
141	IIO_CHAN_SOFT_TIMESTAMP(1)
142};
143
144static const struct iio_chan_spec st_press_lps001wp_channels[] = {
145	{
146		.type = IIO_PRESSURE,
147		.channel2 = IIO_NO_MOD,
148		.address = ST_PRESS_LPS001WP_OUT_L_ADDR,
149		.scan_index = ST_SENSORS_SCAN_X,
150		.scan_type = {
151			.sign = 'u',
152			.realbits = 16,
153			.storagebits = 16,
154			.endianness = IIO_LE,
155		},
156		.info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
157		.modified = 0,
158	},
159	{
160		.type = IIO_TEMP,
161		.channel2 = IIO_NO_MOD,
162		.address = ST_TEMP_LPS001WP_OUT_L_ADDR,
163		.scan_index = -1,
164		.scan_type = {
165			.sign = 'u',
166			.realbits = 16,
167			.storagebits = 16,
168			.endianness = IIO_LE,
169		},
170		.info_mask_separate =
171			BIT(IIO_CHAN_INFO_RAW) |
172			BIT(IIO_CHAN_INFO_OFFSET),
173		.modified = 0,
174	},
175	IIO_CHAN_SOFT_TIMESTAMP(1)
176};
177
178static const struct st_sensor_settings st_press_sensors_settings[] = {
179	{
180		.wai = ST_PRESS_LPS331AP_WAI_EXP,
181		.wai_addr = ST_SENSORS_DEFAULT_WAI_ADDRESS,
182		.sensors_supported = {
183			[0] = LPS331AP_PRESS_DEV_NAME,
184		},
185		.ch = (struct iio_chan_spec *)st_press_1_channels,
186		.num_ch = ARRAY_SIZE(st_press_1_channels),
187		.odr = {
188			.addr = ST_PRESS_LPS331AP_ODR_ADDR,
189			.mask = ST_PRESS_LPS331AP_ODR_MASK,
190			.odr_avl = {
191				{ 1, ST_PRESS_LPS331AP_ODR_AVL_1HZ_VAL, },
192				{ 7, ST_PRESS_LPS331AP_ODR_AVL_7HZ_VAL, },
193				{ 13, ST_PRESS_LPS331AP_ODR_AVL_13HZ_VAL, },
194				{ 25, ST_PRESS_LPS331AP_ODR_AVL_25HZ_VAL, },
195			},
196		},
197		.pw = {
198			.addr = ST_PRESS_LPS331AP_PW_ADDR,
199			.mask = ST_PRESS_LPS331AP_PW_MASK,
200			.value_on = ST_SENSORS_DEFAULT_POWER_ON_VALUE,
201			.value_off = ST_SENSORS_DEFAULT_POWER_OFF_VALUE,
202		},
203		.fs = {
204			.addr = ST_PRESS_LPS331AP_FS_ADDR,
205			.mask = ST_PRESS_LPS331AP_FS_MASK,
206			.fs_avl = {
207				[0] = {
208					.num = ST_PRESS_FS_AVL_1260MB,
209					.value = ST_PRESS_LPS331AP_FS_AVL_1260_VAL,
210					.gain = ST_PRESS_LPS331AP_FS_AVL_1260_GAIN,
211					.gain2 = ST_PRESS_LPS331AP_FS_AVL_TEMP_GAIN,
212				},
213			},
214		},
215		.bdu = {
216			.addr = ST_PRESS_LPS331AP_BDU_ADDR,
217			.mask = ST_PRESS_LPS331AP_BDU_MASK,
218		},
219		.drdy_irq = {
220			.addr = ST_PRESS_LPS331AP_DRDY_IRQ_ADDR,
221			.mask_int1 = ST_PRESS_LPS331AP_DRDY_IRQ_INT1_MASK,
222			.mask_int2 = ST_PRESS_LPS331AP_DRDY_IRQ_INT2_MASK,
223		},
224		.multi_read_bit = ST_PRESS_LPS331AP_MULTIREAD_BIT,
225		.bootime = 2,
226	},
227	{
228		.wai = ST_PRESS_LPS001WP_WAI_EXP,
229		.wai_addr = ST_SENSORS_DEFAULT_WAI_ADDRESS,
230		.sensors_supported = {
231			[0] = LPS001WP_PRESS_DEV_NAME,
232		},
233		.ch = (struct iio_chan_spec *)st_press_lps001wp_channels,
234		.num_ch = ARRAY_SIZE(st_press_lps001wp_channels),
235		.odr = {
236			.addr = ST_PRESS_LPS001WP_ODR_ADDR,
237			.mask = ST_PRESS_LPS001WP_ODR_MASK,
238			.odr_avl = {
239				{ 1, ST_PRESS_LPS001WP_ODR_AVL_1HZ_VAL, },
240				{ 7, ST_PRESS_LPS001WP_ODR_AVL_7HZ_VAL, },
241				{ 13, ST_PRESS_LPS001WP_ODR_AVL_13HZ_VAL, },
242			},
243		},
244		.pw = {
245			.addr = ST_PRESS_LPS001WP_PW_ADDR,
246			.mask = ST_PRESS_LPS001WP_PW_MASK,
247			.value_on = ST_SENSORS_DEFAULT_POWER_ON_VALUE,
248			.value_off = ST_SENSORS_DEFAULT_POWER_OFF_VALUE,
249		},
250		.fs = {
251			.addr = 0,
252		},
253		.bdu = {
254			.addr = ST_PRESS_LPS001WP_BDU_ADDR,
255			.mask = ST_PRESS_LPS001WP_BDU_MASK,
256		},
257		.drdy_irq = {
258			.addr = 0,
259		},
260		.multi_read_bit = ST_PRESS_LPS001WP_MULTIREAD_BIT,
261		.bootime = 2,
262	},
263	{
264		.wai = ST_PRESS_LPS25H_WAI_EXP,
265		.wai_addr = ST_SENSORS_DEFAULT_WAI_ADDRESS,
266		.sensors_supported = {
267			[0] = LPS25H_PRESS_DEV_NAME,
268		},
269		.ch = (struct iio_chan_spec *)st_press_1_channels,
270		.num_ch = ARRAY_SIZE(st_press_1_channels),
271		.odr = {
272			.addr = ST_PRESS_LPS25H_ODR_ADDR,
273			.mask = ST_PRESS_LPS25H_ODR_MASK,
274			.odr_avl = {
275				{ 1, ST_PRESS_LPS25H_ODR_AVL_1HZ_VAL, },
276				{ 7, ST_PRESS_LPS25H_ODR_AVL_7HZ_VAL, },
277				{ 13, ST_PRESS_LPS25H_ODR_AVL_13HZ_VAL, },
278				{ 25, ST_PRESS_LPS25H_ODR_AVL_25HZ_VAL, },
279			},
280		},
281		.pw = {
282			.addr = ST_PRESS_LPS25H_PW_ADDR,
283			.mask = ST_PRESS_LPS25H_PW_MASK,
284			.value_on = ST_SENSORS_DEFAULT_POWER_ON_VALUE,
285			.value_off = ST_SENSORS_DEFAULT_POWER_OFF_VALUE,
286		},
287		.fs = {
288			.addr = ST_PRESS_LPS25H_FS_ADDR,
289			.mask = ST_PRESS_LPS25H_FS_MASK,
290			.fs_avl = {
291				[0] = {
292					.num = ST_PRESS_FS_AVL_1260MB,
293					.value = ST_PRESS_LPS25H_FS_AVL_1260_VAL,
294					.gain = ST_PRESS_LPS25H_FS_AVL_1260_GAIN,
295					.gain2 = ST_PRESS_LPS25H_FS_AVL_TEMP_GAIN,
296				},
297			},
298		},
299		.bdu = {
300			.addr = ST_PRESS_LPS25H_BDU_ADDR,
301			.mask = ST_PRESS_LPS25H_BDU_MASK,
302		},
303		.drdy_irq = {
304			.addr = ST_PRESS_LPS25H_DRDY_IRQ_ADDR,
305			.mask_int1 = ST_PRESS_LPS25H_DRDY_IRQ_INT1_MASK,
306			.mask_int2 = ST_PRESS_LPS25H_DRDY_IRQ_INT2_MASK,
307		},
308		.multi_read_bit = ST_PRESS_LPS25H_MULTIREAD_BIT,
309		.bootime = 2,
310	},
311};
312
313static int st_press_write_raw(struct iio_dev *indio_dev,
314			      struct iio_chan_spec const *ch,
315			      int val,
316			      int val2,
317			      long mask)
318{
319	int err;
320
321	switch (mask) {
322	case IIO_CHAN_INFO_SAMP_FREQ:
323		if (val2)
324			return -EINVAL;
325		mutex_lock(&indio_dev->mlock);
326		err = st_sensors_set_odr(indio_dev, val);
327		mutex_unlock(&indio_dev->mlock);
328		return err;
329	default:
330		return -EINVAL;
331	}
332}
333
334static int st_press_read_raw(struct iio_dev *indio_dev,
335			struct iio_chan_spec const *ch, int *val,
336							int *val2, long mask)
337{
338	int err;
339	struct st_sensor_data *press_data = iio_priv(indio_dev);
340
341	switch (mask) {
342	case IIO_CHAN_INFO_RAW:
343		err = st_sensors_read_info_raw(indio_dev, ch, val);
344		if (err < 0)
345			goto read_error;
346
347		return IIO_VAL_INT;
348	case IIO_CHAN_INFO_SCALE:
349		*val = 0;
350
351		switch (ch->type) {
352		case IIO_PRESSURE:
353			*val2 = press_data->current_fullscale->gain;
354			break;
355		case IIO_TEMP:
356			*val2 = press_data->current_fullscale->gain2;
357			break;
358		default:
359			err = -EINVAL;
360			goto read_error;
361		}
362
363		return IIO_VAL_INT_PLUS_NANO;
364	case IIO_CHAN_INFO_OFFSET:
365		switch (ch->type) {
366		case IIO_TEMP:
367			*val = 425;
368			*val2 = 10;
369			break;
370		default:
371			err = -EINVAL;
372			goto read_error;
373		}
374
375		return IIO_VAL_FRACTIONAL;
376	case IIO_CHAN_INFO_SAMP_FREQ:
377		*val = press_data->odr;
378		return IIO_VAL_INT;
379	default:
380		return -EINVAL;
381	}
382
383read_error:
384	return err;
385}
386
387static ST_SENSORS_DEV_ATTR_SAMP_FREQ_AVAIL();
388
389static struct attribute *st_press_attributes[] = {
390	&iio_dev_attr_sampling_frequency_available.dev_attr.attr,
391	NULL,
392};
393
394static const struct attribute_group st_press_attribute_group = {
395	.attrs = st_press_attributes,
396};
397
398static const struct iio_info press_info = {
399	.driver_module = THIS_MODULE,
400	.attrs = &st_press_attribute_group,
401	.read_raw = &st_press_read_raw,
402	.write_raw = &st_press_write_raw,
403	.debugfs_reg_access = &st_sensors_debugfs_reg_access,
404};
405
406#ifdef CONFIG_IIO_TRIGGER
407static const struct iio_trigger_ops st_press_trigger_ops = {
408	.owner = THIS_MODULE,
409	.set_trigger_state = ST_PRESS_TRIGGER_SET_STATE,
410};
411#define ST_PRESS_TRIGGER_OPS (&st_press_trigger_ops)
412#else
413#define ST_PRESS_TRIGGER_OPS NULL
414#endif
415
416int st_press_common_probe(struct iio_dev *indio_dev)
417{
418	struct st_sensor_data *press_data = iio_priv(indio_dev);
419	int irq = press_data->get_irq_data_ready(indio_dev);
420	int err;
421
422	indio_dev->modes = INDIO_DIRECT_MODE;
423	indio_dev->info = &press_info;
424	mutex_init(&press_data->tb.buf_lock);
425
426	st_sensors_power_enable(indio_dev);
427
428	err = st_sensors_check_device_support(indio_dev,
429					ARRAY_SIZE(st_press_sensors_settings),
430					st_press_sensors_settings);
431	if (err < 0)
432		return err;
433
434	press_data->num_data_channels = ST_PRESS_NUMBER_DATA_CHANNELS;
435	press_data->multiread_bit = press_data->sensor_settings->multi_read_bit;
436	indio_dev->channels = press_data->sensor_settings->ch;
437	indio_dev->num_channels = press_data->sensor_settings->num_ch;
438
439	if (press_data->sensor_settings->fs.addr != 0)
440		press_data->current_fullscale =
441			(struct st_sensor_fullscale_avl *)
442				&press_data->sensor_settings->fs.fs_avl[0];
443
444	press_data->odr = press_data->sensor_settings->odr.odr_avl[0].hz;
445
446	/* Some devices don't support a data ready pin. */
447	if (!press_data->dev->platform_data &&
448				press_data->sensor_settings->drdy_irq.addr)
449		press_data->dev->platform_data =
450			(struct st_sensors_platform_data *)&default_press_pdata;
451
452	err = st_sensors_init_sensor(indio_dev, press_data->dev->platform_data);
453	if (err < 0)
454		return err;
455
456	err = st_press_allocate_ring(indio_dev);
457	if (err < 0)
458		return err;
459
460	if (irq > 0) {
461		err = st_sensors_allocate_trigger(indio_dev,
462						  ST_PRESS_TRIGGER_OPS);
463		if (err < 0)
464			goto st_press_probe_trigger_error;
465	}
466
467	err = iio_device_register(indio_dev);
468	if (err)
469		goto st_press_device_register_error;
470
471	dev_info(&indio_dev->dev, "registered pressure sensor %s\n",
472		 indio_dev->name);
473
474	return err;
475
476st_press_device_register_error:
477	if (irq > 0)
478		st_sensors_deallocate_trigger(indio_dev);
479st_press_probe_trigger_error:
480	st_press_deallocate_ring(indio_dev);
481
482	return err;
483}
484EXPORT_SYMBOL(st_press_common_probe);
485
486void st_press_common_remove(struct iio_dev *indio_dev)
487{
488	struct st_sensor_data *press_data = iio_priv(indio_dev);
489
490	st_sensors_power_disable(indio_dev);
491
492	iio_device_unregister(indio_dev);
493	if (press_data->get_irq_data_ready(indio_dev) > 0)
494		st_sensors_deallocate_trigger(indio_dev);
495
496	st_press_deallocate_ring(indio_dev);
497}
498EXPORT_SYMBOL(st_press_common_remove);
499
500MODULE_AUTHOR("Denis Ciocca <denis.ciocca@st.com>");
501MODULE_DESCRIPTION("STMicroelectronics pressures driver");
502MODULE_LICENSE("GPL v2");
503