kxsd9.c 12 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * kxsd9.c simple support for the Kionix KXSD9 3D
  4. * accelerometer.
  5. *
  6. * Copyright (c) 2008-2009 Jonathan Cameron <[email protected]>
  7. *
  8. * The i2c interface is very similar, so shouldn't be a problem once
  9. * I have a suitable wire made up.
  10. *
  11. * TODO: Support the motion detector
  12. */
  13. #include <linux/device.h>
  14. #include <linux/kernel.h>
  15. #include <linux/sysfs.h>
  16. #include <linux/slab.h>
  17. #include <linux/module.h>
  18. #include <linux/regmap.h>
  19. #include <linux/bitops.h>
  20. #include <linux/delay.h>
  21. #include <linux/regulator/consumer.h>
  22. #include <linux/pm_runtime.h>
  23. #include <linux/iio/iio.h>
  24. #include <linux/iio/sysfs.h>
  25. #include <linux/iio/buffer.h>
  26. #include <linux/iio/triggered_buffer.h>
  27. #include <linux/iio/trigger_consumer.h>
  28. #include "kxsd9.h"
  29. #define KXSD9_REG_X 0x00
  30. #define KXSD9_REG_Y 0x02
  31. #define KXSD9_REG_Z 0x04
  32. #define KXSD9_REG_AUX 0x06
  33. #define KXSD9_REG_RESET 0x0a
  34. #define KXSD9_REG_CTRL_C 0x0c
  35. #define KXSD9_CTRL_C_FS_MASK 0x03
  36. #define KXSD9_CTRL_C_FS_8G 0x00
  37. #define KXSD9_CTRL_C_FS_6G 0x01
  38. #define KXSD9_CTRL_C_FS_4G 0x02
  39. #define KXSD9_CTRL_C_FS_2G 0x03
  40. #define KXSD9_CTRL_C_MOT_LAT BIT(3)
  41. #define KXSD9_CTRL_C_MOT_LEV BIT(4)
  42. #define KXSD9_CTRL_C_LP_MASK 0xe0
  43. #define KXSD9_CTRL_C_LP_NONE 0x00
  44. #define KXSD9_CTRL_C_LP_2000HZC BIT(5)
  45. #define KXSD9_CTRL_C_LP_2000HZB BIT(6)
  46. #define KXSD9_CTRL_C_LP_2000HZA (BIT(5)|BIT(6))
  47. #define KXSD9_CTRL_C_LP_1000HZ BIT(7)
  48. #define KXSD9_CTRL_C_LP_500HZ (BIT(7)|BIT(5))
  49. #define KXSD9_CTRL_C_LP_100HZ (BIT(7)|BIT(6))
  50. #define KXSD9_CTRL_C_LP_50HZ (BIT(7)|BIT(6)|BIT(5))
  51. #define KXSD9_REG_CTRL_B 0x0d
  52. #define KXSD9_CTRL_B_CLK_HLD BIT(7)
  53. #define KXSD9_CTRL_B_ENABLE BIT(6)
  54. #define KXSD9_CTRL_B_ST BIT(5) /* Self-test */
  55. #define KXSD9_REG_CTRL_A 0x0e
  56. /**
  57. * struct kxsd9_state - device related storage
  58. * @dev: pointer to the parent device
  59. * @map: regmap to the device
  60. * @orientation: mounting matrix, flipped axis etc
  61. * @regs: regulators for this device, VDD and IOVDD
  62. * @scale: the current scaling setting
  63. */
  64. struct kxsd9_state {
  65. struct device *dev;
  66. struct regmap *map;
  67. struct iio_mount_matrix orientation;
  68. struct regulator_bulk_data regs[2];
  69. u8 scale;
  70. };
  71. #define KXSD9_SCALE_2G "0.011978"
  72. #define KXSD9_SCALE_4G "0.023927"
  73. #define KXSD9_SCALE_6G "0.035934"
  74. #define KXSD9_SCALE_8G "0.047853"
  75. /* reverse order */
  76. static const int kxsd9_micro_scales[4] = { 47853, 35934, 23927, 11978 };
  77. #define KXSD9_ZERO_G_OFFSET -2048
  78. /*
  79. * Regulator names
  80. */
  81. static const char kxsd9_reg_vdd[] = "vdd";
  82. static const char kxsd9_reg_iovdd[] = "iovdd";
  83. static int kxsd9_write_scale(struct iio_dev *indio_dev, int micro)
  84. {
  85. int ret, i;
  86. struct kxsd9_state *st = iio_priv(indio_dev);
  87. bool foundit = false;
  88. for (i = 0; i < 4; i++)
  89. if (micro == kxsd9_micro_scales[i]) {
  90. foundit = true;
  91. break;
  92. }
  93. if (!foundit)
  94. return -EINVAL;
  95. ret = regmap_update_bits(st->map,
  96. KXSD9_REG_CTRL_C,
  97. KXSD9_CTRL_C_FS_MASK,
  98. i);
  99. if (ret < 0)
  100. goto error_ret;
  101. /* Cached scale when the sensor is powered down */
  102. st->scale = i;
  103. error_ret:
  104. return ret;
  105. }
  106. static IIO_CONST_ATTR(accel_scale_available,
  107. KXSD9_SCALE_2G " "
  108. KXSD9_SCALE_4G " "
  109. KXSD9_SCALE_6G " "
  110. KXSD9_SCALE_8G);
  111. static struct attribute *kxsd9_attributes[] = {
  112. &iio_const_attr_accel_scale_available.dev_attr.attr,
  113. NULL,
  114. };
  115. static int kxsd9_write_raw(struct iio_dev *indio_dev,
  116. struct iio_chan_spec const *chan,
  117. int val,
  118. int val2,
  119. long mask)
  120. {
  121. int ret = -EINVAL;
  122. struct kxsd9_state *st = iio_priv(indio_dev);
  123. pm_runtime_get_sync(st->dev);
  124. if (mask == IIO_CHAN_INFO_SCALE) {
  125. /* Check no integer component */
  126. if (val)
  127. return -EINVAL;
  128. ret = kxsd9_write_scale(indio_dev, val2);
  129. }
  130. pm_runtime_mark_last_busy(st->dev);
  131. pm_runtime_put_autosuspend(st->dev);
  132. return ret;
  133. }
  134. static int kxsd9_read_raw(struct iio_dev *indio_dev,
  135. struct iio_chan_spec const *chan,
  136. int *val, int *val2, long mask)
  137. {
  138. int ret = -EINVAL;
  139. struct kxsd9_state *st = iio_priv(indio_dev);
  140. unsigned int regval;
  141. __be16 raw_val;
  142. u16 nval;
  143. pm_runtime_get_sync(st->dev);
  144. switch (mask) {
  145. case IIO_CHAN_INFO_RAW:
  146. ret = regmap_bulk_read(st->map, chan->address, &raw_val,
  147. sizeof(raw_val));
  148. if (ret)
  149. goto error_ret;
  150. nval = be16_to_cpu(raw_val);
  151. /* Only 12 bits are valid */
  152. nval >>= 4;
  153. *val = nval;
  154. ret = IIO_VAL_INT;
  155. break;
  156. case IIO_CHAN_INFO_OFFSET:
  157. /* This has a bias of -2048 */
  158. *val = KXSD9_ZERO_G_OFFSET;
  159. ret = IIO_VAL_INT;
  160. break;
  161. case IIO_CHAN_INFO_SCALE:
  162. ret = regmap_read(st->map,
  163. KXSD9_REG_CTRL_C,
  164. &regval);
  165. if (ret < 0)
  166. goto error_ret;
  167. *val = 0;
  168. *val2 = kxsd9_micro_scales[regval & KXSD9_CTRL_C_FS_MASK];
  169. ret = IIO_VAL_INT_PLUS_MICRO;
  170. break;
  171. }
  172. error_ret:
  173. pm_runtime_mark_last_busy(st->dev);
  174. pm_runtime_put_autosuspend(st->dev);
  175. return ret;
  176. };
  177. static irqreturn_t kxsd9_trigger_handler(int irq, void *p)
  178. {
  179. const struct iio_poll_func *pf = p;
  180. struct iio_dev *indio_dev = pf->indio_dev;
  181. struct kxsd9_state *st = iio_priv(indio_dev);
  182. /*
  183. * Ensure correct positioning and alignment of timestamp.
  184. * No need to zero initialize as all elements written.
  185. */
  186. struct {
  187. __be16 chan[4];
  188. s64 ts __aligned(8);
  189. } hw_values;
  190. int ret;
  191. ret = regmap_bulk_read(st->map,
  192. KXSD9_REG_X,
  193. hw_values.chan,
  194. sizeof(hw_values.chan));
  195. if (ret) {
  196. dev_err(st->dev, "error reading data: %d\n", ret);
  197. goto out;
  198. }
  199. iio_push_to_buffers_with_timestamp(indio_dev,
  200. &hw_values,
  201. iio_get_time_ns(indio_dev));
  202. out:
  203. iio_trigger_notify_done(indio_dev->trig);
  204. return IRQ_HANDLED;
  205. }
  206. static int kxsd9_buffer_preenable(struct iio_dev *indio_dev)
  207. {
  208. struct kxsd9_state *st = iio_priv(indio_dev);
  209. pm_runtime_get_sync(st->dev);
  210. return 0;
  211. }
  212. static int kxsd9_buffer_postdisable(struct iio_dev *indio_dev)
  213. {
  214. struct kxsd9_state *st = iio_priv(indio_dev);
  215. pm_runtime_mark_last_busy(st->dev);
  216. pm_runtime_put_autosuspend(st->dev);
  217. return 0;
  218. }
  219. static const struct iio_buffer_setup_ops kxsd9_buffer_setup_ops = {
  220. .preenable = kxsd9_buffer_preenable,
  221. .postdisable = kxsd9_buffer_postdisable,
  222. };
  223. static const struct iio_mount_matrix *
  224. kxsd9_get_mount_matrix(const struct iio_dev *indio_dev,
  225. const struct iio_chan_spec *chan)
  226. {
  227. struct kxsd9_state *st = iio_priv(indio_dev);
  228. return &st->orientation;
  229. }
  230. static const struct iio_chan_spec_ext_info kxsd9_ext_info[] = {
  231. IIO_MOUNT_MATRIX(IIO_SHARED_BY_TYPE, kxsd9_get_mount_matrix),
  232. { },
  233. };
  234. #define KXSD9_ACCEL_CHAN(axis, index) \
  235. { \
  236. .type = IIO_ACCEL, \
  237. .modified = 1, \
  238. .channel2 = IIO_MOD_##axis, \
  239. .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
  240. .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) | \
  241. BIT(IIO_CHAN_INFO_OFFSET), \
  242. .ext_info = kxsd9_ext_info, \
  243. .address = KXSD9_REG_##axis, \
  244. .scan_index = index, \
  245. .scan_type = { \
  246. .sign = 'u', \
  247. .realbits = 12, \
  248. .storagebits = 16, \
  249. .shift = 4, \
  250. .endianness = IIO_BE, \
  251. }, \
  252. }
  253. static const struct iio_chan_spec kxsd9_channels[] = {
  254. KXSD9_ACCEL_CHAN(X, 0),
  255. KXSD9_ACCEL_CHAN(Y, 1),
  256. KXSD9_ACCEL_CHAN(Z, 2),
  257. {
  258. .type = IIO_VOLTAGE,
  259. .info_mask_separate = BIT(IIO_CHAN_INFO_RAW),
  260. .indexed = 1,
  261. .address = KXSD9_REG_AUX,
  262. .scan_index = 3,
  263. .scan_type = {
  264. .sign = 'u',
  265. .realbits = 12,
  266. .storagebits = 16,
  267. .shift = 4,
  268. .endianness = IIO_BE,
  269. },
  270. },
  271. IIO_CHAN_SOFT_TIMESTAMP(4),
  272. };
  273. static const struct attribute_group kxsd9_attribute_group = {
  274. .attrs = kxsd9_attributes,
  275. };
  276. static int kxsd9_power_up(struct kxsd9_state *st)
  277. {
  278. int ret;
  279. /* Enable the regulators */
  280. ret = regulator_bulk_enable(ARRAY_SIZE(st->regs), st->regs);
  281. if (ret) {
  282. dev_err(st->dev, "Cannot enable regulators\n");
  283. return ret;
  284. }
  285. /* Power up */
  286. ret = regmap_write(st->map,
  287. KXSD9_REG_CTRL_B,
  288. KXSD9_CTRL_B_ENABLE);
  289. if (ret)
  290. return ret;
  291. /*
  292. * Set 1000Hz LPF, 2g fullscale, motion wakeup threshold 1g,
  293. * latched wakeup
  294. */
  295. ret = regmap_write(st->map,
  296. KXSD9_REG_CTRL_C,
  297. KXSD9_CTRL_C_LP_1000HZ |
  298. KXSD9_CTRL_C_MOT_LEV |
  299. KXSD9_CTRL_C_MOT_LAT |
  300. st->scale);
  301. if (ret)
  302. return ret;
  303. /*
  304. * Power-up time depends on the LPF setting, but typ 15.9 ms, let's
  305. * set 20 ms to allow for some slack.
  306. */
  307. msleep(20);
  308. return 0;
  309. };
  310. static int kxsd9_power_down(struct kxsd9_state *st)
  311. {
  312. int ret;
  313. /*
  314. * Set into low power mode - since there may be more users of the
  315. * regulators this is the first step of the power saving: it will
  316. * make sure we conserve power even if there are others users on the
  317. * regulators.
  318. */
  319. ret = regmap_update_bits(st->map,
  320. KXSD9_REG_CTRL_B,
  321. KXSD9_CTRL_B_ENABLE,
  322. 0);
  323. if (ret)
  324. return ret;
  325. /* Disable the regulators */
  326. ret = regulator_bulk_disable(ARRAY_SIZE(st->regs), st->regs);
  327. if (ret) {
  328. dev_err(st->dev, "Cannot disable regulators\n");
  329. return ret;
  330. }
  331. return 0;
  332. }
  333. static const struct iio_info kxsd9_info = {
  334. .read_raw = &kxsd9_read_raw,
  335. .write_raw = &kxsd9_write_raw,
  336. .attrs = &kxsd9_attribute_group,
  337. };
  338. /* Four channels apart from timestamp, scan mask = 0x0f */
  339. static const unsigned long kxsd9_scan_masks[] = { 0xf, 0 };
  340. int kxsd9_common_probe(struct device *dev,
  341. struct regmap *map,
  342. const char *name)
  343. {
  344. struct iio_dev *indio_dev;
  345. struct kxsd9_state *st;
  346. int ret;
  347. indio_dev = devm_iio_device_alloc(dev, sizeof(*st));
  348. if (!indio_dev)
  349. return -ENOMEM;
  350. st = iio_priv(indio_dev);
  351. st->dev = dev;
  352. st->map = map;
  353. indio_dev->channels = kxsd9_channels;
  354. indio_dev->num_channels = ARRAY_SIZE(kxsd9_channels);
  355. indio_dev->name = name;
  356. indio_dev->info = &kxsd9_info;
  357. indio_dev->modes = INDIO_DIRECT_MODE;
  358. indio_dev->available_scan_masks = kxsd9_scan_masks;
  359. /* Read the mounting matrix, if present */
  360. ret = iio_read_mount_matrix(dev, &st->orientation);
  361. if (ret)
  362. return ret;
  363. /* Fetch and turn on regulators */
  364. st->regs[0].supply = kxsd9_reg_vdd;
  365. st->regs[1].supply = kxsd9_reg_iovdd;
  366. ret = devm_regulator_bulk_get(dev,
  367. ARRAY_SIZE(st->regs),
  368. st->regs);
  369. if (ret) {
  370. dev_err(dev, "Cannot get regulators\n");
  371. return ret;
  372. }
  373. /* Default scaling */
  374. st->scale = KXSD9_CTRL_C_FS_2G;
  375. kxsd9_power_up(st);
  376. ret = iio_triggered_buffer_setup(indio_dev,
  377. iio_pollfunc_store_time,
  378. kxsd9_trigger_handler,
  379. &kxsd9_buffer_setup_ops);
  380. if (ret) {
  381. dev_err(dev, "triggered buffer setup failed\n");
  382. goto err_power_down;
  383. }
  384. ret = iio_device_register(indio_dev);
  385. if (ret)
  386. goto err_cleanup_buffer;
  387. dev_set_drvdata(dev, indio_dev);
  388. /* Enable runtime PM */
  389. pm_runtime_get_noresume(dev);
  390. pm_runtime_set_active(dev);
  391. pm_runtime_enable(dev);
  392. /*
  393. * Set autosuspend to two orders of magnitude larger than the
  394. * start-up time. 20ms start-up time means 2000ms autosuspend,
  395. * i.e. 2 seconds.
  396. */
  397. pm_runtime_set_autosuspend_delay(dev, 2000);
  398. pm_runtime_use_autosuspend(dev);
  399. pm_runtime_put(dev);
  400. return 0;
  401. err_cleanup_buffer:
  402. iio_triggered_buffer_cleanup(indio_dev);
  403. err_power_down:
  404. kxsd9_power_down(st);
  405. return ret;
  406. }
  407. EXPORT_SYMBOL_NS(kxsd9_common_probe, IIO_KXSD9);
  408. void kxsd9_common_remove(struct device *dev)
  409. {
  410. struct iio_dev *indio_dev = dev_get_drvdata(dev);
  411. struct kxsd9_state *st = iio_priv(indio_dev);
  412. iio_triggered_buffer_cleanup(indio_dev);
  413. iio_device_unregister(indio_dev);
  414. pm_runtime_get_sync(dev);
  415. pm_runtime_put_noidle(dev);
  416. pm_runtime_disable(dev);
  417. kxsd9_power_down(st);
  418. }
  419. EXPORT_SYMBOL_NS(kxsd9_common_remove, IIO_KXSD9);
  420. static int kxsd9_runtime_suspend(struct device *dev)
  421. {
  422. struct iio_dev *indio_dev = dev_get_drvdata(dev);
  423. struct kxsd9_state *st = iio_priv(indio_dev);
  424. return kxsd9_power_down(st);
  425. }
  426. static int kxsd9_runtime_resume(struct device *dev)
  427. {
  428. struct iio_dev *indio_dev = dev_get_drvdata(dev);
  429. struct kxsd9_state *st = iio_priv(indio_dev);
  430. return kxsd9_power_up(st);
  431. }
  432. EXPORT_NS_RUNTIME_DEV_PM_OPS(kxsd9_dev_pm_ops, kxsd9_runtime_suspend,
  433. kxsd9_runtime_resume, NULL, IIO_KXSD9);
  434. MODULE_AUTHOR("Jonathan Cameron <[email protected]>");
  435. MODULE_DESCRIPTION("Kionix KXSD9 driver");
  436. MODULE_LICENSE("GPL v2");