blob: 52c943d50bef42945897bd8ce283ef9c799b092b [file] [log] [blame]
Daniel Baluta20ffac22014-12-03 15:31:48 +02001/*
2 * KMX61 - Kionix 6-axis Accelerometer/Magnetometer
3 *
4 * Copyright (c) 2014, Intel Corporation.
5 *
6 * This file is subject to the terms and conditions of version 2 of
7 * the GNU General Public License. See the file COPYING in the main
8 * directory of this archive for more details.
9 *
10 * IIO driver for KMX61 (7-bit I2C slave address 0x0E or 0x0F).
11 *
12 */
13
14#include <linux/module.h>
15#include <linux/i2c.h>
Daniel Balutab25862c2014-12-03 15:31:49 +020016#include <linux/acpi.h>
17#include <linux/gpio/consumer.h>
Daniel Balutaaff86092014-12-03 15:31:50 +020018#include <linux/interrupt.h>
Daniel Baluta3b9c40e2014-12-03 15:31:51 +020019#include <linux/pm.h>
Daniel Balutaaff86092014-12-03 15:31:50 +020020#include <linux/pm_runtime.h>
Daniel Baluta20ffac22014-12-03 15:31:48 +020021#include <linux/iio/iio.h>
22#include <linux/iio/sysfs.h>
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020023#include <linux/iio/events.h>
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020024#include <linux/iio/trigger.h>
25#include <linux/iio/buffer.h>
26#include <linux/iio/triggered_buffer.h>
27#include <linux/iio/trigger_consumer.h>
Daniel Baluta20ffac22014-12-03 15:31:48 +020028
29#define KMX61_DRV_NAME "kmx61"
Daniel Balutab25862c2014-12-03 15:31:49 +020030#define KMX61_GPIO_NAME "kmx61_int"
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020031#define KMX61_IRQ_NAME "kmx61_event"
Daniel Baluta20ffac22014-12-03 15:31:48 +020032
33#define KMX61_REG_WHO_AM_I 0x00
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020034#define KMX61_REG_INS1 0x01
35#define KMX61_REG_INS2 0x02
Daniel Baluta20ffac22014-12-03 15:31:48 +020036
37/*
38 * three 16-bit accelerometer output registers for X/Y/Z axis
39 * we use only XOUT_L as a base register, all other addresses
40 * can be obtained by applying an offset and are provided here
41 * only for clarity.
42 */
43#define KMX61_ACC_XOUT_L 0x0A
44#define KMX61_ACC_XOUT_H 0x0B
45#define KMX61_ACC_YOUT_L 0x0C
46#define KMX61_ACC_YOUT_H 0x0D
47#define KMX61_ACC_ZOUT_L 0x0E
48#define KMX61_ACC_ZOUT_H 0x0F
49
50/*
51 * one 16-bit temperature output register
52 */
53#define KMX61_TEMP_L 0x10
54#define KMX61_TEMP_H 0x11
55
56/*
57 * three 16-bit magnetometer output registers for X/Y/Z axis
58 */
59#define KMX61_MAG_XOUT_L 0x12
60#define KMX61_MAG_XOUT_H 0x13
61#define KMX61_MAG_YOUT_L 0x14
62#define KMX61_MAG_YOUT_H 0x15
63#define KMX61_MAG_ZOUT_L 0x16
64#define KMX61_MAG_ZOUT_H 0x17
65
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020066#define KMX61_REG_INL 0x28
Daniel Baluta20ffac22014-12-03 15:31:48 +020067#define KMX61_REG_STBY 0x29
68#define KMX61_REG_CTRL1 0x2A
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020069#define KMX61_REG_CTRL2 0x2B
Daniel Baluta20ffac22014-12-03 15:31:48 +020070#define KMX61_REG_ODCNTL 0x2C
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020071#define KMX61_REG_INC1 0x2D
Daniel Baluta20ffac22014-12-03 15:31:48 +020072
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020073#define KMX61_REG_WUF_THRESH 0x3D
74#define KMX61_REG_WUF_TIMER 0x3E
75
Daniel Baluta20ffac22014-12-03 15:31:48 +020076#define KMX61_ACC_STBY_BIT BIT(0)
77#define KMX61_MAG_STBY_BIT BIT(1)
78#define KMX61_ACT_STBY_BIT BIT(7)
79
80#define KMX61_ALL_STBY (KMX61_ACC_STBY_BIT | KMX61_MAG_STBY_BIT)
81
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020082#define KMX61_REG_INS1_BIT_WUFS BIT(1)
83
84#define KMX61_REG_INS2_BIT_ZP BIT(0)
85#define KMX61_REG_INS2_BIT_ZN BIT(1)
86#define KMX61_REG_INS2_BIT_YP BIT(2)
87#define KMX61_REG_INS2_BIT_YN BIT(3)
88#define KMX61_REG_INS2_BIT_XP BIT(4)
89#define KMX61_REG_INS2_BIT_XN BIT(5)
90
Daniel Baluta20ffac22014-12-03 15:31:48 +020091#define KMX61_REG_CTRL1_GSEL_MASK 0x03
92
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020093#define KMX61_REG_CTRL1_BIT_RES BIT(4)
94#define KMX61_REG_CTRL1_BIT_DRDYE BIT(5)
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020095#define KMX61_REG_CTRL1_BIT_WUFE BIT(6)
96#define KMX61_REG_CTRL1_BIT_BTSE BIT(7)
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020097
Daniel Balutafd3ae7a2014-12-03 15:31:53 +020098#define KMX61_REG_INC1_BIT_WUFS BIT(0)
Daniel Balutac3a23ecc2014-12-03 15:31:52 +020099#define KMX61_REG_INC1_BIT_DRDYM BIT(1)
100#define KMX61_REG_INC1_BIT_DRDYA BIT(2)
101#define KMX61_REG_INC1_BIT_IEN BIT(5)
102
Daniel Baluta20ffac22014-12-03 15:31:48 +0200103#define KMX61_ACC_ODR_SHIFT 0
104#define KMX61_MAG_ODR_SHIFT 4
105#define KMX61_ACC_ODR_MASK 0x0F
106#define KMX61_MAG_ODR_MASK 0xF0
107
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200108#define KMX61_OWUF_MASK 0x7
109
110#define KMX61_DEFAULT_WAKE_THRESH 1
111#define KMX61_DEFAULT_WAKE_DURATION 1
112
Daniel Balutaaff86092014-12-03 15:31:50 +0200113#define KMX61_SLEEP_DELAY_MS 2000
114
Daniel Baluta20ffac22014-12-03 15:31:48 +0200115#define KMX61_CHIP_ID 0x12
116
117/* KMX61 devices */
118#define KMX61_ACC 0x01
119#define KMX61_MAG 0x02
120
121struct kmx61_data {
122 struct i2c_client *client;
123
124 /* serialize access to non-atomic ops, e.g set_mode */
125 struct mutex lock;
126
127 /* standby state */
128 bool acc_stby;
129 bool mag_stby;
130
Daniel Balutaaff86092014-12-03 15:31:50 +0200131 /* power state */
132 bool acc_ps;
133 bool mag_ps;
134
Daniel Baluta20ffac22014-12-03 15:31:48 +0200135 /* config bits */
136 u8 range;
137 u8 odr_bits;
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200138 u8 wake_thresh;
139 u8 wake_duration;
Daniel Baluta20ffac22014-12-03 15:31:48 +0200140
141 /* accelerometer specific data */
142 struct iio_dev *acc_indio_dev;
Daniel Balutac3a23ecc2014-12-03 15:31:52 +0200143 struct iio_trigger *acc_dready_trig;
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200144 struct iio_trigger *motion_trig;
Daniel Balutac3a23ecc2014-12-03 15:31:52 +0200145 bool acc_dready_trig_on;
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200146 bool motion_trig_on;
147 bool ev_enable_state;
Daniel Baluta20ffac22014-12-03 15:31:48 +0200148
149 /* magnetometer specific data */
150 struct iio_dev *mag_indio_dev;
Daniel Balutac3a23ecc2014-12-03 15:31:52 +0200151 struct iio_trigger *mag_dready_trig;
152 bool mag_dready_trig_on;
Daniel Baluta20ffac22014-12-03 15:31:48 +0200153};
154
155enum kmx61_range {
156 KMX61_RANGE_2G,
157 KMX61_RANGE_4G,
158 KMX61_RANGE_8G,
159};
160
161enum kmx61_axis {
162 KMX61_AXIS_X,
163 KMX61_AXIS_Y,
164 KMX61_AXIS_Z,
165};
166
167static const u16 kmx61_uscale_table[] = {9582, 19163, 38326};
168
169static const struct {
170 int val;
171 int val2;
172 u8 odr_bits;
173} kmx61_samp_freq_table[] = { {12, 500000, 0x00},
174 {25, 0, 0x01},
175 {50, 0, 0x02},
176 {100, 0, 0x03},
177 {200, 0, 0x04},
178 {400, 0, 0x05},
179 {800, 0, 0x06},
180 {1600, 0, 0x07},
181 {0, 781000, 0x08},
182 {1, 563000, 0x09},
183 {3, 125000, 0x0A},
184 {6, 250000, 0x0B} };
185
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200186static const struct {
187 int val;
188 int val2;
189 int odr_bits;
190} kmx61_wake_up_odr_table[] = { {0, 781000, 0x00},
191 {1, 563000, 0x01},
192 {3, 125000, 0x02},
193 {6, 250000, 0x03},
194 {12, 500000, 0x04},
195 {25, 0, 0x05},
196 {50, 0, 0x06},
197 {100, 0, 0x06},
198 {200, 0, 0x06},
199 {400, 0, 0x06},
200 {800, 0, 0x06},
201 {1600, 0, 0x06} };
202
Daniel Baluta20ffac22014-12-03 15:31:48 +0200203static IIO_CONST_ATTR(accel_scale_available, "0.009582 0.019163 0.038326");
204static IIO_CONST_ATTR(magn_scale_available, "0.001465");
205static IIO_CONST_ATTR_SAMP_FREQ_AVAIL(
206 "0.781000 1.563000 3.125000 6.250000 12.500000 25 50 100 200 400 800");
207
208static struct attribute *kmx61_acc_attributes[] = {
209 &iio_const_attr_accel_scale_available.dev_attr.attr,
210 &iio_const_attr_sampling_frequency_available.dev_attr.attr,
211 NULL,
212};
213
214static struct attribute *kmx61_mag_attributes[] = {
215 &iio_const_attr_magn_scale_available.dev_attr.attr,
216 &iio_const_attr_sampling_frequency_available.dev_attr.attr,
217 NULL,
218};
219
220static const struct attribute_group kmx61_acc_attribute_group = {
221 .attrs = kmx61_acc_attributes,
222};
223
224static const struct attribute_group kmx61_mag_attribute_group = {
225 .attrs = kmx61_mag_attributes,
226};
227
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200228static const struct iio_event_spec kmx61_event = {
229 .type = IIO_EV_TYPE_THRESH,
230 .dir = IIO_EV_DIR_EITHER,
231 .mask_separate = BIT(IIO_EV_INFO_VALUE) |
232 BIT(IIO_EV_INFO_ENABLE) |
233 BIT(IIO_EV_INFO_PERIOD),
234};
235
Daniel Baluta20ffac22014-12-03 15:31:48 +0200236#define KMX61_ACC_CHAN(_axis) { \
237 .type = IIO_ACCEL, \
238 .modified = 1, \
239 .channel2 = IIO_MOD_ ## _axis, \
240 .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
241 .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) | \
242 BIT(IIO_CHAN_INFO_SAMP_FREQ), \
243 .address = KMX61_ACC, \
244 .scan_index = KMX61_AXIS_ ## _axis, \
245 .scan_type = { \
246 .sign = 's', \
247 .realbits = 12, \
248 .storagebits = 16, \
249 .shift = 4, \
250 .endianness = IIO_LE, \
251 }, \
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200252 .event_spec = &kmx61_event, \
253 .num_event_specs = 1 \
Daniel Baluta20ffac22014-12-03 15:31:48 +0200254}
255
256#define KMX61_MAG_CHAN(_axis) { \
257 .type = IIO_MAGN, \
258 .modified = 1, \
259 .channel2 = IIO_MOD_ ## _axis, \
260 .address = KMX61_MAG, \
261 .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
262 .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) | \
263 BIT(IIO_CHAN_INFO_SAMP_FREQ), \
264 .scan_index = KMX61_AXIS_ ## _axis, \
265 .scan_type = { \
266 .sign = 's', \
267 .realbits = 14, \
268 .storagebits = 16, \
269 .shift = 2, \
270 .endianness = IIO_LE, \
271 }, \
272}
273
274static const struct iio_chan_spec kmx61_acc_channels[] = {
275 KMX61_ACC_CHAN(X),
276 KMX61_ACC_CHAN(Y),
277 KMX61_ACC_CHAN(Z),
278};
279
280static const struct iio_chan_spec kmx61_mag_channels[] = {
281 KMX61_MAG_CHAN(X),
282 KMX61_MAG_CHAN(Y),
283 KMX61_MAG_CHAN(Z),
284};
285
286static void kmx61_set_data(struct iio_dev *indio_dev, struct kmx61_data *data)
287{
288 struct kmx61_data **priv = iio_priv(indio_dev);
289
290 *priv = data;
291}
292
293static struct kmx61_data *kmx61_get_data(struct iio_dev *indio_dev)
294{
295 return *(struct kmx61_data **)iio_priv(indio_dev);
296}
297
298static int kmx61_convert_freq_to_bit(int val, int val2)
299{
300 int i;
301
302 for (i = 0; i < ARRAY_SIZE(kmx61_samp_freq_table); i++)
303 if (val == kmx61_samp_freq_table[i].val &&
304 val2 == kmx61_samp_freq_table[i].val2)
305 return kmx61_samp_freq_table[i].odr_bits;
306 return -EINVAL;
307}
308
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200309static int kmx61_convert_bit_to_freq(u8 odr_bits, int *val, int *val2)
310{
311 int i;
312
313 for (i = 0; i < ARRAY_SIZE(kmx61_samp_freq_table); i++)
314 if (odr_bits == kmx61_samp_freq_table[i].odr_bits) {
315 *val = kmx61_samp_freq_table[i].val;
316 *val2 = kmx61_samp_freq_table[i].val2;
317 return 0;
318 }
319 return -EINVAL;
320}
321
322
323static int kmx61_convert_wake_up_odr_to_bit(int val, int val2)
324{
325 int i;
326
327 for (i = 0; i < ARRAY_SIZE(kmx61_wake_up_odr_table); ++i)
328 if (kmx61_wake_up_odr_table[i].val == val &&
329 kmx61_wake_up_odr_table[i].val2 == val2)
330 return kmx61_wake_up_odr_table[i].odr_bits;
331 return -EINVAL;
332}
333
Daniel Baluta20ffac22014-12-03 15:31:48 +0200334/**
335 * kmx61_set_mode() - set KMX61 device operating mode
336 * @data - kmx61 device private data pointer
337 * @mode - bitmask, indicating operating mode for @device
338 * @device - bitmask, indicating device for which @mode needs to be set
339 * @update - update stby bits stored in device's private @data
340 *
341 * For each sensor (accelerometer/magnetometer) there are two operating modes
342 * STANDBY and OPERATION. Neither accel nor magn can be disabled independently
343 * if they are both enabled. Internal sensors state is saved in acc_stby and
344 * mag_stby members of driver's private @data.
345 */
346static int kmx61_set_mode(struct kmx61_data *data, u8 mode, u8 device,
347 bool update)
348{
349 int ret;
350 int acc_stby = -1, mag_stby = -1;
351
352 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_STBY);
353 if (ret < 0) {
354 dev_err(&data->client->dev, "Error reading reg_stby\n");
355 return ret;
356 }
357 if (device & KMX61_ACC) {
358 if (mode & KMX61_ACC_STBY_BIT) {
359 ret |= KMX61_ACC_STBY_BIT;
360 acc_stby = 1;
361 } else {
362 ret &= ~KMX61_ACC_STBY_BIT;
363 acc_stby = 0;
364 }
365 }
366
367 if (device & KMX61_MAG) {
368 if (mode & KMX61_MAG_STBY_BIT) {
369 ret |= KMX61_MAG_STBY_BIT;
370 mag_stby = 1;
371 } else {
372 ret &= ~KMX61_MAG_STBY_BIT;
373 mag_stby = 0;
374 }
375 }
376
377 if (mode & KMX61_ACT_STBY_BIT)
378 ret |= KMX61_ACT_STBY_BIT;
379
380 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_STBY, ret);
381 if (ret < 0) {
382 dev_err(&data->client->dev, "Error writing reg_stby\n");
383 return ret;
384 }
385
386 if (acc_stby != -1 && update)
387 data->acc_stby = acc_stby;
388 if (mag_stby != -1 && update)
389 data->mag_stby = mag_stby;
390
391 return 0;
392}
393
394static int kmx61_get_mode(struct kmx61_data *data, u8 *mode, u8 device)
395{
396 int ret;
397
398 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_STBY);
399 if (ret < 0) {
400 dev_err(&data->client->dev, "Error reading reg_stby\n");
401 return ret;
402 }
403 *mode = 0;
404
405 if (device & KMX61_ACC) {
406 if (ret & KMX61_ACC_STBY_BIT)
407 *mode |= KMX61_ACC_STBY_BIT;
408 else
409 *mode &= ~KMX61_ACC_STBY_BIT;
410 }
411
412 if (device & KMX61_MAG) {
413 if (ret & KMX61_MAG_STBY_BIT)
414 *mode |= KMX61_MAG_STBY_BIT;
415 else
416 *mode &= ~KMX61_MAG_STBY_BIT;
417 }
418
419 return 0;
420}
421
kbuild test robotebd16362014-12-13 00:28:52 +0800422static int kmx61_set_wake_up_odr(struct kmx61_data *data, int val, int val2)
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200423{
424 int ret, odr_bits;
425
426 odr_bits = kmx61_convert_wake_up_odr_to_bit(val, val2);
427 if (odr_bits < 0)
428 return odr_bits;
429
430 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_CTRL2,
431 odr_bits);
432 if (ret < 0)
433 dev_err(&data->client->dev, "Error writing reg_ctrl2\n");
434 return ret;
435}
436
Daniel Baluta20ffac22014-12-03 15:31:48 +0200437static int kmx61_set_odr(struct kmx61_data *data, int val, int val2, u8 device)
438{
439 int ret;
440 u8 mode;
441 int lodr_bits, odr_bits;
442
443 ret = kmx61_get_mode(data, &mode, KMX61_ACC | KMX61_MAG);
444 if (ret < 0)
445 return ret;
446
447 lodr_bits = kmx61_convert_freq_to_bit(val, val2);
448 if (lodr_bits < 0)
449 return lodr_bits;
450
451 /* To change ODR, accel and magn must be in STDBY */
452 ret = kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG,
453 true);
454 if (ret < 0)
455 return ret;
456
457 odr_bits = 0;
458 if (device & KMX61_ACC)
459 odr_bits |= lodr_bits << KMX61_ACC_ODR_SHIFT;
460 if (device & KMX61_MAG)
461 odr_bits |= lodr_bits << KMX61_MAG_ODR_SHIFT;
462
463 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_ODCNTL,
464 odr_bits);
465 if (ret < 0)
466 return ret;
467
Daniel Baluta4e843972014-12-23 15:22:24 +0200468 data->odr_bits = odr_bits;
469
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200470 if (device & KMX61_ACC) {
471 ret = kmx61_set_wake_up_odr(data, val, val2);
472 if (ret)
473 return ret;
474 }
475
Daniel Baluta20ffac22014-12-03 15:31:48 +0200476 return kmx61_set_mode(data, mode, KMX61_ACC | KMX61_MAG, true);
477}
478
479static int kmx61_get_odr(struct kmx61_data *data, int *val, int *val2,
480 u8 device)
481{ int i;
482 u8 lodr_bits;
483
484 if (device & KMX61_ACC)
485 lodr_bits = (data->odr_bits >> KMX61_ACC_ODR_SHIFT) &
486 KMX61_ACC_ODR_MASK;
487 else if (device & KMX61_MAG)
488 lodr_bits = (data->odr_bits >> KMX61_MAG_ODR_SHIFT) &
489 KMX61_MAG_ODR_MASK;
490 else
491 return -EINVAL;
492
493 for (i = 0; i < ARRAY_SIZE(kmx61_samp_freq_table); i++)
494 if (lodr_bits == kmx61_samp_freq_table[i].odr_bits) {
495 *val = kmx61_samp_freq_table[i].val;
496 *val2 = kmx61_samp_freq_table[i].val2;
497 return 0;
498 }
499 return -EINVAL;
500}
501
502static int kmx61_set_range(struct kmx61_data *data, u8 range)
503{
504 int ret;
505
506 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_CTRL1);
507 if (ret < 0) {
508 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
509 return ret;
510 }
511
512 ret &= ~KMX61_REG_CTRL1_GSEL_MASK;
513 ret |= range & KMX61_REG_CTRL1_GSEL_MASK;
514
515 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_CTRL1, ret);
516 if (ret < 0) {
517 dev_err(&data->client->dev, "Error writing reg_ctrl1\n");
518 return ret;
519 }
520
521 data->range = range;
522
523 return 0;
524}
525
526static int kmx61_set_scale(struct kmx61_data *data, u16 uscale)
527{
528 int ret, i;
529 u8 mode;
530
531 for (i = 0; i < ARRAY_SIZE(kmx61_uscale_table); i++) {
532 if (kmx61_uscale_table[i] == uscale) {
533 ret = kmx61_get_mode(data, &mode,
534 KMX61_ACC | KMX61_MAG);
535 if (ret < 0)
536 return ret;
537
538 ret = kmx61_set_mode(data, KMX61_ALL_STBY,
539 KMX61_ACC | KMX61_MAG, true);
540 if (ret < 0)
541 return ret;
542
543 ret = kmx61_set_range(data, i);
544 if (ret < 0)
545 return ret;
546
547 return kmx61_set_mode(data, mode,
548 KMX61_ACC | KMX61_MAG, true);
549 }
550 }
551 return -EINVAL;
552}
553
554static int kmx61_chip_init(struct kmx61_data *data)
555{
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200556 int ret, val, val2;
Daniel Baluta20ffac22014-12-03 15:31:48 +0200557
558 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_WHO_AM_I);
559 if (ret < 0) {
560 dev_err(&data->client->dev, "Error reading who_am_i\n");
561 return ret;
562 }
563
564 if (ret != KMX61_CHIP_ID) {
565 dev_err(&data->client->dev,
566 "Wrong chip id, got %x expected %x\n",
567 ret, KMX61_CHIP_ID);
568 return -EINVAL;
569 }
570
571 /* set accel 12bit, 4g range */
572 ret = kmx61_set_range(data, KMX61_RANGE_4G);
573 if (ret < 0)
574 return ret;
575
576 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_ODCNTL);
577 if (ret < 0) {
578 dev_err(&data->client->dev, "Error reading reg_odcntl\n");
579 return ret;
580 }
581 data->odr_bits = ret;
582
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200583 /* set output data rate for wake up (motion detection) function */
584 ret = kmx61_convert_bit_to_freq(data->odr_bits, &val, &val2);
585 if (ret < 0)
586 return ret;
587
588 ret = kmx61_set_wake_up_odr(data, val, val2);
589 if (ret < 0)
590 return ret;
591
Daniel Baluta20ffac22014-12-03 15:31:48 +0200592 /* set acc/magn to OPERATION mode */
593 ret = kmx61_set_mode(data, 0, KMX61_ACC | KMX61_MAG, true);
594 if (ret < 0)
595 return ret;
596
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200597 data->wake_thresh = KMX61_DEFAULT_WAKE_THRESH;
598 data->wake_duration = KMX61_DEFAULT_WAKE_DURATION;
599
Daniel Baluta20ffac22014-12-03 15:31:48 +0200600 return 0;
601}
602
Daniel Balutac3a23ecc2014-12-03 15:31:52 +0200603static int kmx61_setup_new_data_interrupt(struct kmx61_data *data,
604 bool status, u8 device)
605{
606 u8 mode;
607 int ret;
608
609 ret = kmx61_get_mode(data, &mode, KMX61_ACC | KMX61_MAG);
610 if (ret < 0)
611 return ret;
612
613 ret = kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG, true);
614 if (ret < 0)
615 return ret;
616
617 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INC1);
618 if (ret < 0) {
619 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
620 return ret;
621 }
622
623 if (status) {
624 ret |= KMX61_REG_INC1_BIT_IEN;
625 if (device & KMX61_ACC)
626 ret |= KMX61_REG_INC1_BIT_DRDYA;
627 if (device & KMX61_MAG)
628 ret |= KMX61_REG_INC1_BIT_DRDYM;
629 } else {
630 ret &= ~KMX61_REG_INC1_BIT_IEN;
631 if (device & KMX61_ACC)
632 ret &= ~KMX61_REG_INC1_BIT_DRDYA;
633 if (device & KMX61_MAG)
634 ret &= ~KMX61_REG_INC1_BIT_DRDYM;
635 }
636 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_INC1, ret);
637 if (ret < 0) {
638 dev_err(&data->client->dev, "Error writing reg_int_ctrl1\n");
639 return ret;
640 }
641
642 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_CTRL1);
643 if (ret < 0) {
644 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
645 return ret;
646 }
647
648 if (status)
649 ret |= KMX61_REG_CTRL1_BIT_DRDYE;
650 else
651 ret &= ~KMX61_REG_CTRL1_BIT_DRDYE;
652
653 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_CTRL1, ret);
654 if (ret < 0) {
655 dev_err(&data->client->dev, "Error writing reg_ctrl1\n");
656 return ret;
657 }
658
659 ret = kmx61_set_mode(data, mode, KMX61_ACC | KMX61_MAG, true);
660 if (ret)
661 return ret;
662
663 return 0;
664}
665
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200666static int kmx61_chip_update_thresholds(struct kmx61_data *data)
667{
668 int ret;
669
670 ret = i2c_smbus_write_byte_data(data->client,
671 KMX61_REG_WUF_TIMER,
672 data->wake_duration);
673 if (ret < 0) {
674 dev_err(&data->client->dev, "Errow writing reg_wuf_timer\n");
675 return ret;
676 }
677
678 ret = i2c_smbus_write_byte_data(data->client,
679 KMX61_REG_WUF_THRESH,
680 data->wake_thresh);
681 if (ret < 0) {
682 dev_err(&data->client->dev, "Error writing reg_wuf_thresh\n");
683 return ret;
684 }
685
686 return 0;
687}
688
689static int kmx61_setup_any_motion_interrupt(struct kmx61_data *data,
690 bool status, u8 device)
691{
692 u8 mode;
693 int ret;
694
695 ret = kmx61_get_mode(data, &mode, KMX61_ACC | KMX61_MAG);
696 if (ret < 0)
697 return ret;
698
699 ret = kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG, true);
700 if (ret < 0)
701 return ret;
702
703 ret = kmx61_chip_update_thresholds(data);
704 if (ret < 0)
705 return ret;
706
707 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INC1);
708 if (ret < 0) {
709 dev_err(&data->client->dev, "Error reading reg_inc1\n");
710 return ret;
711 }
712 if (status)
713 ret |= (KMX61_REG_INC1_BIT_IEN | KMX61_REG_INC1_BIT_WUFS);
714 else
715 ret &= ~(KMX61_REG_INC1_BIT_IEN | KMX61_REG_INC1_BIT_WUFS);
716
717 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_INC1, ret);
718 if (ret < 0) {
719 dev_err(&data->client->dev, "Error writing reg_inc1\n");
720 return ret;
721 }
722
723 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_CTRL1);
724 if (ret < 0) {
725 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
726 return ret;
727 }
728
729 if (status)
730 ret |= KMX61_REG_CTRL1_BIT_WUFE | KMX61_REG_CTRL1_BIT_BTSE;
731 else
732 ret &= ~(KMX61_REG_CTRL1_BIT_WUFE | KMX61_REG_CTRL1_BIT_BTSE);
733
734 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_CTRL1, ret);
735 if (ret < 0) {
736 dev_err(&data->client->dev, "Error writing reg_ctrl1\n");
737 return ret;
738 }
739 mode |= KMX61_ACT_STBY_BIT;
740 ret = kmx61_set_mode(data, mode, KMX61_ACC | KMX61_MAG, true);
741 if (ret)
742 return ret;
743
744 return 0;
745}
746
Daniel Balutaaff86092014-12-03 15:31:50 +0200747/**
748 * kmx61_set_power_state() - set power state for kmx61 @device
749 * @data - kmx61 device private pointer
750 * @on - power state to be set for @device
751 * @device - bitmask indicating device for which @on state needs to be set
752 *
753 * Notice that when ACC power state needs to be set to ON and MAG is in
754 * OPERATION then we know that kmx61_runtime_resume was already called
755 * so we must set ACC OPERATION mode here. The same happens when MAG power
756 * state needs to be set to ON and ACC is in OPERATION.
757 */
758static int kmx61_set_power_state(struct kmx61_data *data, bool on, u8 device)
759{
760#ifdef CONFIG_PM_RUNTIME
761 int ret;
762
763 if (device & KMX61_ACC) {
764 if (on && !data->acc_ps && !data->mag_stby) {
765 ret = kmx61_set_mode(data, 0, KMX61_ACC, true);
766 if (ret < 0)
767 return ret;
768 }
769 data->acc_ps = on;
770 }
771 if (device & KMX61_MAG) {
772 if (on && !data->mag_ps && !data->acc_stby) {
773 ret = kmx61_set_mode(data, 0, KMX61_MAG, true);
774 if (ret < 0)
775 return ret;
776 }
777 data->mag_ps = on;
778 }
779
780 if (on) {
781 ret = pm_runtime_get_sync(&data->client->dev);
782 } else {
783 pm_runtime_mark_last_busy(&data->client->dev);
784 ret = pm_runtime_put_autosuspend(&data->client->dev);
785 }
786 if (ret < 0) {
787 dev_err(&data->client->dev,
788 "Failed: kmx61_set_power_state for %d, ret %d\n",
789 on, ret);
790 if (on)
791 pm_runtime_put_noidle(&data->client->dev);
792
793 return ret;
794 }
795#endif
796 return 0;
797}
798
Daniel Baluta20ffac22014-12-03 15:31:48 +0200799static int kmx61_read_measurement(struct kmx61_data *data, u8 base, u8 offset)
800{
801 int ret;
802 u8 reg = base + offset * 2;
803
804 ret = i2c_smbus_read_word_data(data->client, reg);
805 if (ret < 0)
806 dev_err(&data->client->dev, "failed to read reg at %x\n", reg);
807
808 return ret;
809}
810
811static int kmx61_read_raw(struct iio_dev *indio_dev,
812 struct iio_chan_spec const *chan, int *val,
813 int *val2, long mask)
814{
815 int ret;
816 u8 base_reg;
817 struct kmx61_data *data = kmx61_get_data(indio_dev);
818
819 switch (mask) {
820 case IIO_CHAN_INFO_RAW:
821 switch (chan->type) {
822 case IIO_ACCEL:
823 base_reg = KMX61_ACC_XOUT_L;
824 break;
825 case IIO_MAGN:
826 base_reg = KMX61_MAG_XOUT_L;
827 break;
828 default:
829 return -EINVAL;
830 }
831 mutex_lock(&data->lock);
832
Daniel Balutaaff86092014-12-03 15:31:50 +0200833 kmx61_set_power_state(data, true, chan->address);
Daniel Baluta20ffac22014-12-03 15:31:48 +0200834 ret = kmx61_read_measurement(data, base_reg, chan->scan_index);
835 if (ret < 0) {
Daniel Balutaaff86092014-12-03 15:31:50 +0200836 kmx61_set_power_state(data, false, chan->address);
Daniel Baluta20ffac22014-12-03 15:31:48 +0200837 mutex_unlock(&data->lock);
838 return ret;
839 }
840 *val = sign_extend32(ret >> chan->scan_type.shift,
841 chan->scan_type.realbits - 1);
Daniel Balutaaff86092014-12-03 15:31:50 +0200842 kmx61_set_power_state(data, false, chan->address);
Daniel Baluta20ffac22014-12-03 15:31:48 +0200843
844 mutex_unlock(&data->lock);
845 return IIO_VAL_INT;
846 case IIO_CHAN_INFO_SCALE:
847 switch (chan->type) {
848 case IIO_ACCEL:
849 *val = 0;
850 *val2 = kmx61_uscale_table[data->range];
851 return IIO_VAL_INT_PLUS_MICRO;
852 case IIO_MAGN:
853 /* 14 bits res, 1465 microGauss per magn count */
854 *val = 0;
855 *val2 = 1465;
856 return IIO_VAL_INT_PLUS_MICRO;
857 default:
858 return -EINVAL;
859 }
860 case IIO_CHAN_INFO_SAMP_FREQ:
861 if (chan->type != IIO_ACCEL && chan->type != IIO_MAGN)
862 return -EINVAL;
863
864 mutex_lock(&data->lock);
865 ret = kmx61_get_odr(data, val, val2, chan->address);
866 mutex_unlock(&data->lock);
867 if (ret)
868 return -EINVAL;
869 return IIO_VAL_INT_PLUS_MICRO;
870 }
871 return -EINVAL;
872}
873
874static int kmx61_write_raw(struct iio_dev *indio_dev,
875 struct iio_chan_spec const *chan, int val,
876 int val2, long mask)
877{
878 int ret;
879 struct kmx61_data *data = kmx61_get_data(indio_dev);
880
881 switch (mask) {
882 case IIO_CHAN_INFO_SAMP_FREQ:
883 if (chan->type != IIO_ACCEL && chan->type != IIO_MAGN)
884 return -EINVAL;
885
886 mutex_lock(&data->lock);
887 ret = kmx61_set_odr(data, val, val2, chan->address);
888 mutex_unlock(&data->lock);
889 return ret;
890 case IIO_CHAN_INFO_SCALE:
891 switch (chan->type) {
892 case IIO_ACCEL:
893 if (val != 0)
894 return -EINVAL;
895 mutex_lock(&data->lock);
896 ret = kmx61_set_scale(data, val2);
897 mutex_unlock(&data->lock);
898 return ret;
899 default:
900 return -EINVAL;
901 }
902 default:
903 return -EINVAL;
904 }
905}
906
Daniel Balutafd3ae7a2014-12-03 15:31:53 +0200907static int kmx61_read_event(struct iio_dev *indio_dev,
908 const struct iio_chan_spec *chan,
909 enum iio_event_type type,
910 enum iio_event_direction dir,
911 enum iio_event_info info,
912 int *val, int *val2)
913{
914 struct kmx61_data *data = kmx61_get_data(indio_dev);
915
916 *val2 = 0;
917 switch (info) {
918 case IIO_EV_INFO_VALUE:
919 *val = data->wake_thresh;
920 break;
921 case IIO_EV_INFO_PERIOD:
922 *val = data->wake_duration;
923 break;
924 default:
925 return -EINVAL;
926 }
927
928 return IIO_VAL_INT;
929}
930
931static int kmx61_write_event(struct iio_dev *indio_dev,
932 const struct iio_chan_spec *chan,
933 enum iio_event_type type,
934 enum iio_event_direction dir,
935 enum iio_event_info info,
936 int val, int val2)
937{
938 struct kmx61_data *data = kmx61_get_data(indio_dev);
939
940 if (data->ev_enable_state)
941 return -EBUSY;
942
943 switch (info) {
944 case IIO_EV_INFO_VALUE:
945 data->wake_thresh = val;
946 break;
947 case IIO_EV_INFO_PERIOD:
948 data->wake_duration = val;
949 break;
950 default:
951 return -EINVAL;
952 }
953
954 return IIO_VAL_INT;
955}
956
957static int kmx61_read_event_config(struct iio_dev *indio_dev,
958 const struct iio_chan_spec *chan,
959 enum iio_event_type type,
960 enum iio_event_direction dir)
961{
962 struct kmx61_data *data = kmx61_get_data(indio_dev);
963
964 return data->ev_enable_state;
965}
966
967static int kmx61_write_event_config(struct iio_dev *indio_dev,
968 const struct iio_chan_spec *chan,
969 enum iio_event_type type,
970 enum iio_event_direction dir,
971 int state)
972{
973 struct kmx61_data *data = kmx61_get_data(indio_dev);
974 int ret;
975
976 if (state && data->ev_enable_state)
977 return 0;
978
979 mutex_lock(&data->lock);
980
981 if (!state && data->motion_trig_on) {
982 data->ev_enable_state = 0;
983 mutex_unlock(&data->lock);
984 return 0;
985 }
986
987 ret = kmx61_set_power_state(data, state, KMX61_ACC);
988 if (ret < 0) {
989 mutex_unlock(&data->lock);
990 return ret;
991 }
992
993 ret = kmx61_setup_any_motion_interrupt(data, state, KMX61_ACC);
994 if (ret < 0) {
995 kmx61_set_power_state(data, false, KMX61_ACC);
996 mutex_unlock(&data->lock);
997 return ret;
998 }
999
1000 data->ev_enable_state = state;
1001 mutex_unlock(&data->lock);
1002
1003 return 0;
1004}
1005
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001006static int kmx61_acc_validate_trigger(struct iio_dev *indio_dev,
1007 struct iio_trigger *trig)
1008{
1009 struct kmx61_data *data = kmx61_get_data(indio_dev);
1010
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001011 if (data->acc_dready_trig != trig && data->motion_trig != trig)
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001012 return -EINVAL;
1013
1014 return 0;
1015}
1016
1017static int kmx61_mag_validate_trigger(struct iio_dev *indio_dev,
1018 struct iio_trigger *trig)
1019{
1020 struct kmx61_data *data = kmx61_get_data(indio_dev);
1021
1022 if (data->mag_dready_trig != trig)
1023 return -EINVAL;
1024
1025 return 0;
1026}
1027
Daniel Baluta20ffac22014-12-03 15:31:48 +02001028static const struct iio_info kmx61_acc_info = {
1029 .driver_module = THIS_MODULE,
1030 .read_raw = kmx61_read_raw,
1031 .write_raw = kmx61_write_raw,
1032 .attrs = &kmx61_acc_attribute_group,
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001033 .read_event_value = kmx61_read_event,
1034 .write_event_value = kmx61_write_event,
1035 .read_event_config = kmx61_read_event_config,
1036 .write_event_config = kmx61_write_event_config,
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001037 .validate_trigger = kmx61_acc_validate_trigger,
Daniel Baluta20ffac22014-12-03 15:31:48 +02001038};
1039
1040static const struct iio_info kmx61_mag_info = {
1041 .driver_module = THIS_MODULE,
1042 .read_raw = kmx61_read_raw,
1043 .write_raw = kmx61_write_raw,
1044 .attrs = &kmx61_mag_attribute_group,
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001045 .validate_trigger = kmx61_mag_validate_trigger,
Daniel Baluta20ffac22014-12-03 15:31:48 +02001046};
1047
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001048
1049static int kmx61_data_rdy_trigger_set_state(struct iio_trigger *trig,
1050 bool state)
1051{
1052 int ret = 0;
1053 u8 device;
1054
1055 struct iio_dev *indio_dev = iio_trigger_get_drvdata(trig);
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001056 struct kmx61_data *data = kmx61_get_data(indio_dev);
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001057
1058 mutex_lock(&data->lock);
1059
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001060 if (!state && data->ev_enable_state && data->motion_trig_on) {
1061 data->motion_trig_on = false;
1062 mutex_unlock(&data->lock);
1063 return 0;
1064 }
1065
1066
1067 if (data->acc_dready_trig == trig || data->motion_trig)
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001068 device = KMX61_ACC;
1069 else
1070 device = KMX61_MAG;
1071
1072 ret = kmx61_set_power_state(data, state, device);
1073 if (ret < 0) {
1074 mutex_unlock(&data->lock);
1075 return ret;
1076 }
1077
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001078 if (data->acc_dready_trig == trig || data->mag_dready_trig == trig)
1079 ret = kmx61_setup_new_data_interrupt(data, state, device);
1080 else
1081 ret = kmx61_setup_any_motion_interrupt(data, state, KMX61_ACC);
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001082 if (ret < 0) {
1083 kmx61_set_power_state(data, false, device);
1084 mutex_unlock(&data->lock);
1085 return ret;
1086 }
1087
1088 if (data->acc_dready_trig == trig)
1089 data->acc_dready_trig_on = state;
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001090 else if (data->mag_dready_trig == trig)
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001091 data->mag_dready_trig_on = state;
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001092 else
1093 data->motion_trig_on = state;
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001094
1095 mutex_unlock(&data->lock);
1096
1097 return 0;
1098}
1099
1100static int kmx61_trig_try_reenable(struct iio_trigger *trig)
1101{
1102 struct iio_dev *indio_dev = iio_trigger_get_drvdata(trig);
1103 struct kmx61_data *data = kmx61_get_data(indio_dev);
1104 int ret;
1105
1106 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INL);
1107 if (ret < 0) {
1108 dev_err(&data->client->dev, "Error reading reg_inl\n");
1109 return ret;
1110 }
1111
1112 return 0;
1113}
1114
1115static const struct iio_trigger_ops kmx61_trigger_ops = {
1116 .set_trigger_state = kmx61_data_rdy_trigger_set_state,
1117 .try_reenable = kmx61_trig_try_reenable,
1118 .owner = THIS_MODULE,
1119};
1120
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001121static irqreturn_t kmx61_event_handler(int irq, void *private)
1122{
1123 struct kmx61_data *data = private;
1124 struct iio_dev *indio_dev = data->acc_indio_dev;
1125 int ret;
1126
1127 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INS1);
1128 if (ret < 0) {
1129 dev_err(&data->client->dev, "Error reading reg_ins1\n");
1130 goto ack_intr;
1131 }
1132
1133 if (ret & KMX61_REG_INS1_BIT_WUFS) {
1134 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INS2);
1135 if (ret < 0) {
1136 dev_err(&data->client->dev, "Error reading reg_ins2\n");
1137 goto ack_intr;
1138 }
1139
1140 if (ret & KMX61_REG_INS2_BIT_XN)
1141 iio_push_event(indio_dev,
1142 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1143 0,
1144 IIO_MOD_X,
1145 IIO_EV_TYPE_THRESH,
1146 IIO_EV_DIR_FALLING),
1147 0);
1148
1149 if (ret & KMX61_REG_INS2_BIT_XP)
1150 iio_push_event(indio_dev,
1151 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1152 0,
1153 IIO_MOD_X,
1154 IIO_EV_TYPE_THRESH,
1155 IIO_EV_DIR_RISING),
1156 0);
1157
1158 if (ret & KMX61_REG_INS2_BIT_YN)
1159 iio_push_event(indio_dev,
1160 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1161 0,
1162 IIO_MOD_Y,
1163 IIO_EV_TYPE_THRESH,
1164 IIO_EV_DIR_FALLING),
1165 0);
1166
1167 if (ret & KMX61_REG_INS2_BIT_YP)
1168 iio_push_event(indio_dev,
1169 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1170 0,
1171 IIO_MOD_Y,
1172 IIO_EV_TYPE_THRESH,
1173 IIO_EV_DIR_RISING),
1174 0);
1175
1176 if (ret & KMX61_REG_INS2_BIT_ZN)
1177 iio_push_event(indio_dev,
1178 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1179 0,
1180 IIO_MOD_Z,
1181 IIO_EV_TYPE_THRESH,
1182 IIO_EV_DIR_FALLING),
1183 0);
1184
1185 if (ret & KMX61_REG_INS2_BIT_ZP)
1186 iio_push_event(indio_dev,
1187 IIO_MOD_EVENT_CODE(IIO_ACCEL,
1188 0,
1189 IIO_MOD_Z,
1190 IIO_EV_TYPE_THRESH,
1191 IIO_EV_DIR_RISING),
1192 0);
1193 }
1194
1195ack_intr:
1196 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_CTRL1);
1197 if (ret < 0)
1198 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
1199
1200 ret |= KMX61_REG_CTRL1_BIT_RES;
1201 ret = i2c_smbus_write_byte_data(data->client, KMX61_REG_CTRL1, ret);
1202 if (ret < 0)
1203 dev_err(&data->client->dev, "Error reading reg_ctrl1\n");
1204
1205 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INL);
1206 if (ret < 0)
1207 dev_err(&data->client->dev, "Error reading reg_inl\n");
1208
1209 ret = i2c_smbus_read_byte_data(data->client, KMX61_REG_INS1);
1210
1211 return IRQ_HANDLED;
1212}
1213
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001214static irqreturn_t kmx61_data_rdy_trig_poll(int irq, void *private)
1215{
1216 struct kmx61_data *data = private;
1217
1218 if (data->acc_dready_trig_on)
1219 iio_trigger_poll(data->acc_dready_trig);
1220 if (data->mag_dready_trig_on)
1221 iio_trigger_poll(data->mag_dready_trig);
1222
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001223 if (data->motion_trig_on)
1224 iio_trigger_poll(data->motion_trig);
1225
1226 if (data->ev_enable_state)
1227 return IRQ_WAKE_THREAD;
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001228 return IRQ_HANDLED;
1229}
1230
1231static irqreturn_t kmx61_trigger_handler(int irq, void *p)
1232{
1233 struct iio_poll_func *pf = p;
1234 struct iio_dev *indio_dev = pf->indio_dev;
1235 struct kmx61_data *data = kmx61_get_data(indio_dev);
1236 int bit, ret, i = 0;
1237 s16 buffer[8];
1238
1239 mutex_lock(&data->lock);
1240 for_each_set_bit(bit, indio_dev->buffer->scan_mask,
1241 indio_dev->masklength) {
1242 ret = kmx61_read_measurement(data, KMX61_ACC_XOUT_L, bit);
1243 if (ret < 0) {
1244 mutex_unlock(&data->lock);
1245 goto err;
1246 }
1247 buffer[i++] = ret;
1248 }
1249 mutex_unlock(&data->lock);
1250
1251 iio_push_to_buffers(indio_dev, buffer);
1252err:
1253 iio_trigger_notify_done(indio_dev->trig);
1254
1255 return IRQ_HANDLED;
1256}
1257
Daniel Balutab25862c2014-12-03 15:31:49 +02001258static const char *kmx61_match_acpi_device(struct device *dev)
1259{
1260 const struct acpi_device_id *id;
1261
1262 id = acpi_match_device(dev->driver->acpi_match_table, dev);
1263 if (!id)
1264 return NULL;
1265 return dev_name(dev);
1266}
1267
1268static int kmx61_gpio_probe(struct i2c_client *client, struct kmx61_data *data)
1269{
1270 struct device *dev;
1271 struct gpio_desc *gpio;
1272 int ret;
1273
1274 if (!client)
1275 return -EINVAL;
1276
1277 dev = &client->dev;
1278
1279 /* data ready gpio interrupt pin */
1280 gpio = devm_gpiod_get_index(dev, KMX61_GPIO_NAME, 0);
1281 if (IS_ERR(gpio)) {
1282 dev_err(dev, "acpi gpio get index failed\n");
1283 return PTR_ERR(gpio);
1284 }
1285
1286 ret = gpiod_direction_input(gpio);
1287 if (ret)
1288 return ret;
1289
1290 ret = gpiod_to_irq(gpio);
1291
1292 dev_dbg(dev, "GPIO resource, no:%d irq:%d\n", desc_to_gpio(gpio), ret);
1293 return ret;
1294}
1295
Daniel Baluta20ffac22014-12-03 15:31:48 +02001296static struct iio_dev *kmx61_indiodev_setup(struct kmx61_data *data,
1297 const struct iio_info *info,
1298 const struct iio_chan_spec *chan,
1299 int num_channels,
1300 const char *name)
1301{
1302 struct iio_dev *indio_dev;
1303
1304 indio_dev = devm_iio_device_alloc(&data->client->dev, sizeof(data));
1305 if (!indio_dev)
1306 return ERR_PTR(-ENOMEM);
1307
1308 kmx61_set_data(indio_dev, data);
1309
1310 indio_dev->dev.parent = &data->client->dev;
1311 indio_dev->channels = chan;
1312 indio_dev->num_channels = num_channels;
1313 indio_dev->name = name;
1314 indio_dev->modes = INDIO_DIRECT_MODE;
1315 indio_dev->info = info;
1316
1317 return indio_dev;
1318}
1319
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001320static struct iio_trigger *kmx61_trigger_setup(struct kmx61_data *data,
1321 struct iio_dev *indio_dev,
1322 const char *tag)
1323{
1324 struct iio_trigger *trig;
1325 int ret;
1326
1327 trig = devm_iio_trigger_alloc(&data->client->dev,
1328 "%s-%s-dev%d",
1329 indio_dev->name,
1330 tag,
1331 indio_dev->id);
1332 if (!trig)
1333 return ERR_PTR(-ENOMEM);
1334
1335 trig->dev.parent = &data->client->dev;
1336 trig->ops = &kmx61_trigger_ops;
1337 iio_trigger_set_drvdata(trig, indio_dev);
1338
1339 ret = iio_trigger_register(trig);
1340 if (ret)
1341 return ERR_PTR(ret);
1342
1343 return trig;
1344}
1345
Daniel Baluta20ffac22014-12-03 15:31:48 +02001346static int kmx61_probe(struct i2c_client *client,
1347 const struct i2c_device_id *id)
1348{
1349 int ret;
1350 struct kmx61_data *data;
1351 const char *name = NULL;
1352
1353 data = devm_kzalloc(&client->dev, sizeof(*data), GFP_KERNEL);
1354 if (!data)
1355 return -ENOMEM;
1356
1357 i2c_set_clientdata(client, data);
1358 data->client = client;
1359
1360 mutex_init(&data->lock);
1361
Daniel Balutab25862c2014-12-03 15:31:49 +02001362 if (id)
1363 name = id->name;
1364 else if (ACPI_HANDLE(&client->dev))
1365 name = kmx61_match_acpi_device(&client->dev);
1366 else
1367 return -ENODEV;
1368
Daniel Baluta20ffac22014-12-03 15:31:48 +02001369 data->acc_indio_dev =
1370 kmx61_indiodev_setup(data, &kmx61_acc_info,
1371 kmx61_acc_channels,
1372 ARRAY_SIZE(kmx61_acc_channels),
1373 name);
1374 if (IS_ERR(data->acc_indio_dev))
1375 return PTR_ERR(data->acc_indio_dev);
1376
1377 data->mag_indio_dev =
1378 kmx61_indiodev_setup(data, &kmx61_mag_info,
1379 kmx61_mag_channels,
1380 ARRAY_SIZE(kmx61_mag_channels),
1381 name);
1382 if (IS_ERR(data->mag_indio_dev))
1383 return PTR_ERR(data->mag_indio_dev);
1384
1385 ret = kmx61_chip_init(data);
1386 if (ret < 0)
1387 return ret;
1388
Daniel Balutab25862c2014-12-03 15:31:49 +02001389 if (client->irq < 0)
1390 client->irq = kmx61_gpio_probe(client, data);
1391
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001392 if (client->irq >= 0) {
1393 ret = devm_request_threaded_irq(&client->dev, client->irq,
1394 kmx61_data_rdy_trig_poll,
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001395 kmx61_event_handler,
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001396 IRQF_TRIGGER_RISING,
1397 KMX61_IRQ_NAME,
1398 data);
1399 if (ret)
1400 goto err_chip_uninit;
1401
1402 data->acc_dready_trig =
1403 kmx61_trigger_setup(data, data->acc_indio_dev,
1404 "dready");
1405 if (IS_ERR(data->acc_dready_trig))
1406 return PTR_ERR(data->acc_dready_trig);
1407
1408 data->mag_dready_trig =
1409 kmx61_trigger_setup(data, data->mag_indio_dev,
1410 "dready");
1411 if (IS_ERR(data->mag_dready_trig)) {
1412 ret = PTR_ERR(data->mag_dready_trig);
1413 goto err_trigger_unregister;
1414 }
1415
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001416 data->motion_trig =
1417 kmx61_trigger_setup(data, data->acc_indio_dev,
1418 "any-motion");
1419 if (IS_ERR(data->motion_trig)) {
1420 ret = PTR_ERR(data->motion_trig);
1421 goto err_trigger_unregister;
1422 }
1423
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001424 ret = iio_triggered_buffer_setup(data->acc_indio_dev,
1425 &iio_pollfunc_store_time,
1426 kmx61_trigger_handler,
1427 NULL);
1428 if (ret < 0) {
1429 dev_err(&data->client->dev,
1430 "Failed to setup acc triggered buffer\n");
1431 goto err_trigger_unregister;
1432 }
1433
1434 ret = iio_triggered_buffer_setup(data->mag_indio_dev,
1435 &iio_pollfunc_store_time,
1436 kmx61_trigger_handler,
1437 NULL);
1438 if (ret < 0) {
1439 dev_err(&data->client->dev,
1440 "Failed to setup mag triggered buffer\n");
1441 goto err_trigger_unregister;
1442 }
1443 }
1444
Daniel Baluta20ffac22014-12-03 15:31:48 +02001445 ret = iio_device_register(data->acc_indio_dev);
1446 if (ret < 0) {
1447 dev_err(&client->dev, "Failed to register acc iio device\n");
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001448 goto err_buffer_cleanup;
Daniel Baluta20ffac22014-12-03 15:31:48 +02001449 }
1450
1451 ret = iio_device_register(data->mag_indio_dev);
1452 if (ret < 0) {
1453 dev_err(&client->dev, "Failed to register mag iio device\n");
Daniel Balutaaff86092014-12-03 15:31:50 +02001454 goto err_iio_unregister_acc;
Daniel Baluta20ffac22014-12-03 15:31:48 +02001455 }
1456
Daniel Balutaaff86092014-12-03 15:31:50 +02001457 ret = pm_runtime_set_active(&client->dev);
1458 if (ret < 0)
1459 goto err_iio_unregister_mag;
1460
1461 pm_runtime_enable(&client->dev);
1462 pm_runtime_set_autosuspend_delay(&client->dev, KMX61_SLEEP_DELAY_MS);
1463 pm_runtime_use_autosuspend(&client->dev);
1464
Daniel Baluta20ffac22014-12-03 15:31:48 +02001465 return 0;
1466
Daniel Balutaaff86092014-12-03 15:31:50 +02001467err_iio_unregister_mag:
1468 iio_device_unregister(data->mag_indio_dev);
1469err_iio_unregister_acc:
Daniel Baluta20ffac22014-12-03 15:31:48 +02001470 iio_device_unregister(data->acc_indio_dev);
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001471err_buffer_cleanup:
1472 if (client->irq >= 0) {
1473 iio_triggered_buffer_cleanup(data->acc_indio_dev);
1474 iio_triggered_buffer_cleanup(data->mag_indio_dev);
1475 }
1476err_trigger_unregister:
1477 if (data->acc_dready_trig)
1478 iio_trigger_unregister(data->acc_dready_trig);
1479 if (data->mag_dready_trig)
1480 iio_trigger_unregister(data->mag_dready_trig);
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001481 if (data->motion_trig)
1482 iio_trigger_unregister(data->motion_trig);
Daniel Baluta20ffac22014-12-03 15:31:48 +02001483err_chip_uninit:
1484 kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG, true);
1485 return ret;
1486}
1487
1488static int kmx61_remove(struct i2c_client *client)
1489{
1490 struct kmx61_data *data = i2c_get_clientdata(client);
1491
Daniel Balutaaff86092014-12-03 15:31:50 +02001492 pm_runtime_disable(&client->dev);
1493 pm_runtime_set_suspended(&client->dev);
1494 pm_runtime_put_noidle(&client->dev);
1495
Daniel Baluta20ffac22014-12-03 15:31:48 +02001496 iio_device_unregister(data->acc_indio_dev);
1497 iio_device_unregister(data->mag_indio_dev);
1498
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001499 if (client->irq >= 0) {
1500 iio_triggered_buffer_cleanup(data->acc_indio_dev);
1501 iio_triggered_buffer_cleanup(data->mag_indio_dev);
1502 iio_trigger_unregister(data->acc_dready_trig);
1503 iio_trigger_unregister(data->mag_dready_trig);
Daniel Balutafd3ae7a2014-12-03 15:31:53 +02001504 iio_trigger_unregister(data->motion_trig);
Daniel Balutac3a23ecc2014-12-03 15:31:52 +02001505 }
1506
Daniel Baluta20ffac22014-12-03 15:31:48 +02001507 mutex_lock(&data->lock);
1508 kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG, true);
1509 mutex_unlock(&data->lock);
1510
1511 return 0;
1512}
1513
Daniel Baluta3b9c40e2014-12-03 15:31:51 +02001514#ifdef CONFIG_PM_SLEEP
1515static int kmx61_suspend(struct device *dev)
1516{
1517 int ret;
1518 struct kmx61_data *data = i2c_get_clientdata(to_i2c_client(dev));
1519
1520 mutex_lock(&data->lock);
1521 ret = kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG,
1522 false);
1523 mutex_unlock(&data->lock);
1524
1525 return ret;
1526}
1527
1528static int kmx61_resume(struct device *dev)
1529{
1530 u8 stby = 0;
1531 struct kmx61_data *data = i2c_get_clientdata(to_i2c_client(dev));
1532
1533 if (data->acc_stby)
1534 stby |= KMX61_ACC_STBY_BIT;
1535 if (data->mag_stby)
1536 stby |= KMX61_MAG_STBY_BIT;
1537
1538 return kmx61_set_mode(data, stby, KMX61_ACC | KMX61_MAG, true);
1539}
1540#endif
Daniel Balutaaff86092014-12-03 15:31:50 +02001541
1542#ifdef CONFIG_PM_RUNTIME
1543static int kmx61_runtime_suspend(struct device *dev)
1544{
1545 struct kmx61_data *data = i2c_get_clientdata(to_i2c_client(dev));
1546 int ret;
1547
1548 mutex_lock(&data->lock);
1549 ret = kmx61_set_mode(data, KMX61_ALL_STBY, KMX61_ACC | KMX61_MAG, true);
1550 mutex_unlock(&data->lock);
1551
1552 return ret;
1553}
1554
1555static int kmx61_runtime_resume(struct device *dev)
1556{
1557 struct kmx61_data *data = i2c_get_clientdata(to_i2c_client(dev));
1558 u8 stby = 0;
1559
1560 if (!data->acc_ps)
1561 stby |= KMX61_ACC_STBY_BIT;
1562 if (!data->mag_ps)
1563 stby |= KMX61_MAG_STBY_BIT;
1564
1565 return kmx61_set_mode(data, stby, KMX61_ACC | KMX61_MAG, true);
1566}
1567#endif
1568
1569static const struct dev_pm_ops kmx61_pm_ops = {
Daniel Baluta3b9c40e2014-12-03 15:31:51 +02001570 SET_SYSTEM_SLEEP_PM_OPS(kmx61_suspend, kmx61_resume)
Daniel Balutaaff86092014-12-03 15:31:50 +02001571 SET_RUNTIME_PM_OPS(kmx61_runtime_suspend, kmx61_runtime_resume, NULL)
1572};
1573
Daniel Balutab25862c2014-12-03 15:31:49 +02001574static const struct acpi_device_id kmx61_acpi_match[] = {
1575 {"KMX61021", 0},
1576 {}
1577};
1578
1579MODULE_DEVICE_TABLE(acpi, kmx61_acpi_match);
1580
Daniel Baluta20ffac22014-12-03 15:31:48 +02001581static const struct i2c_device_id kmx61_id[] = {
1582 {"kmx611021", 0},
1583 {}
1584};
1585
1586MODULE_DEVICE_TABLE(i2c, kmx61_id);
1587
1588static struct i2c_driver kmx61_driver = {
1589 .driver = {
1590 .name = KMX61_DRV_NAME,
Daniel Balutab25862c2014-12-03 15:31:49 +02001591 .acpi_match_table = ACPI_PTR(kmx61_acpi_match),
Daniel Balutaaff86092014-12-03 15:31:50 +02001592 .pm = &kmx61_pm_ops,
Daniel Baluta20ffac22014-12-03 15:31:48 +02001593 },
1594 .probe = kmx61_probe,
1595 .remove = kmx61_remove,
1596 .id_table = kmx61_id,
1597};
1598
1599module_i2c_driver(kmx61_driver);
1600
1601MODULE_AUTHOR("Daniel Baluta <daniel.baluta@intel.com>");
1602MODULE_DESCRIPTION("KMX61 accelerometer/magnetometer driver");
1603MODULE_LICENSE("GPL v2");