mcp4131.c 15 KB

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  1. /*
  2. * Industrial I/O driver for Microchip digital potentiometers
  3. *
  4. * Copyright (c) 2016 Slawomir Stepien
  5. * Based on: Peter Rosin's code from mcp4531.c
  6. *
  7. * Datasheet: http://ww1.microchip.com/downloads/en/DeviceDoc/22060b.pdf
  8. *
  9. * DEVID #Wipers #Positions Resistor Opts (kOhm)
  10. * mcp4131 1 129 5, 10, 50, 100
  11. * mcp4132 1 129 5, 10, 50, 100
  12. * mcp4141 1 129 5, 10, 50, 100
  13. * mcp4142 1 129 5, 10, 50, 100
  14. * mcp4151 1 257 5, 10, 50, 100
  15. * mcp4152 1 257 5, 10, 50, 100
  16. * mcp4161 1 257 5, 10, 50, 100
  17. * mcp4162 1 257 5, 10, 50, 100
  18. * mcp4231 2 129 5, 10, 50, 100
  19. * mcp4232 2 129 5, 10, 50, 100
  20. * mcp4241 2 129 5, 10, 50, 100
  21. * mcp4242 2 129 5, 10, 50, 100
  22. * mcp4251 2 257 5, 10, 50, 100
  23. * mcp4252 2 257 5, 10, 50, 100
  24. * mcp4261 2 257 5, 10, 50, 100
  25. * mcp4262 2 257 5, 10, 50, 100
  26. *
  27. * This program is free software; you can redistribute it and/or modify it
  28. * under the terms of the GNU General Public License version 2 as published by
  29. * the Free Software Foundation.
  30. */
  31. /*
  32. * TODO:
  33. * 1. Write wiper setting to EEPROM for EEPROM capable models.
  34. */
  35. #include <linux/cache.h>
  36. #include <linux/err.h>
  37. #include <linux/export.h>
  38. #include <linux/iio/iio.h>
  39. #include <linux/iio/types.h>
  40. #include <linux/module.h>
  41. #include <linux/mutex.h>
  42. #include <linux/of.h>
  43. #include <linux/spi/spi.h>
  44. #define MCP4131_WRITE (0x00 << 2)
  45. #define MCP4131_READ (0x03 << 2)
  46. #define MCP4131_WIPER_SHIFT 4
  47. #define MCP4131_CMDERR(r) ((r[0]) & 0x02)
  48. #define MCP4131_RAW(r) ((r[0]) == 0xff ? 0x100 : (r[1]))
  49. struct mcp4131_cfg {
  50. int wipers;
  51. int max_pos;
  52. int kohms;
  53. };
  54. enum mcp4131_type {
  55. MCP413x_502 = 0,
  56. MCP413x_103,
  57. MCP413x_503,
  58. MCP413x_104,
  59. MCP414x_502,
  60. MCP414x_103,
  61. MCP414x_503,
  62. MCP414x_104,
  63. MCP415x_502,
  64. MCP415x_103,
  65. MCP415x_503,
  66. MCP415x_104,
  67. MCP416x_502,
  68. MCP416x_103,
  69. MCP416x_503,
  70. MCP416x_104,
  71. MCP423x_502,
  72. MCP423x_103,
  73. MCP423x_503,
  74. MCP423x_104,
  75. MCP424x_502,
  76. MCP424x_103,
  77. MCP424x_503,
  78. MCP424x_104,
  79. MCP425x_502,
  80. MCP425x_103,
  81. MCP425x_503,
  82. MCP425x_104,
  83. MCP426x_502,
  84. MCP426x_103,
  85. MCP426x_503,
  86. MCP426x_104,
  87. };
  88. static const struct mcp4131_cfg mcp4131_cfg[] = {
  89. [MCP413x_502] = { .wipers = 1, .max_pos = 128, .kohms = 5, },
  90. [MCP413x_103] = { .wipers = 1, .max_pos = 128, .kohms = 10, },
  91. [MCP413x_503] = { .wipers = 1, .max_pos = 128, .kohms = 50, },
  92. [MCP413x_104] = { .wipers = 1, .max_pos = 128, .kohms = 100, },
  93. [MCP414x_502] = { .wipers = 1, .max_pos = 128, .kohms = 5, },
  94. [MCP414x_103] = { .wipers = 1, .max_pos = 128, .kohms = 10, },
  95. [MCP414x_503] = { .wipers = 1, .max_pos = 128, .kohms = 50, },
  96. [MCP414x_104] = { .wipers = 1, .max_pos = 128, .kohms = 100, },
  97. [MCP415x_502] = { .wipers = 1, .max_pos = 256, .kohms = 5, },
  98. [MCP415x_103] = { .wipers = 1, .max_pos = 256, .kohms = 10, },
  99. [MCP415x_503] = { .wipers = 1, .max_pos = 256, .kohms = 50, },
  100. [MCP415x_104] = { .wipers = 1, .max_pos = 256, .kohms = 100, },
  101. [MCP416x_502] = { .wipers = 1, .max_pos = 256, .kohms = 5, },
  102. [MCP416x_103] = { .wipers = 1, .max_pos = 256, .kohms = 10, },
  103. [MCP416x_503] = { .wipers = 1, .max_pos = 256, .kohms = 50, },
  104. [MCP416x_104] = { .wipers = 1, .max_pos = 256, .kohms = 100, },
  105. [MCP423x_502] = { .wipers = 2, .max_pos = 128, .kohms = 5, },
  106. [MCP423x_103] = { .wipers = 2, .max_pos = 128, .kohms = 10, },
  107. [MCP423x_503] = { .wipers = 2, .max_pos = 128, .kohms = 50, },
  108. [MCP423x_104] = { .wipers = 2, .max_pos = 128, .kohms = 100, },
  109. [MCP424x_502] = { .wipers = 2, .max_pos = 128, .kohms = 5, },
  110. [MCP424x_103] = { .wipers = 2, .max_pos = 128, .kohms = 10, },
  111. [MCP424x_503] = { .wipers = 2, .max_pos = 128, .kohms = 50, },
  112. [MCP424x_104] = { .wipers = 2, .max_pos = 128, .kohms = 100, },
  113. [MCP425x_502] = { .wipers = 2, .max_pos = 256, .kohms = 5, },
  114. [MCP425x_103] = { .wipers = 2, .max_pos = 256, .kohms = 10, },
  115. [MCP425x_503] = { .wipers = 2, .max_pos = 256, .kohms = 50, },
  116. [MCP425x_104] = { .wipers = 2, .max_pos = 256, .kohms = 100, },
  117. [MCP426x_502] = { .wipers = 2, .max_pos = 256, .kohms = 5, },
  118. [MCP426x_103] = { .wipers = 2, .max_pos = 256, .kohms = 10, },
  119. [MCP426x_503] = { .wipers = 2, .max_pos = 256, .kohms = 50, },
  120. [MCP426x_104] = { .wipers = 2, .max_pos = 256, .kohms = 100, },
  121. };
  122. struct mcp4131_data {
  123. struct spi_device *spi;
  124. const struct mcp4131_cfg *cfg;
  125. struct mutex lock;
  126. u8 buf[2] ____cacheline_aligned;
  127. };
  128. #define MCP4131_CHANNEL(ch) { \
  129. .type = IIO_RESISTANCE, \
  130. .indexed = 1, \
  131. .output = 1, \
  132. .channel = (ch), \
  133. .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
  134. .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE), \
  135. }
  136. static const struct iio_chan_spec mcp4131_channels[] = {
  137. MCP4131_CHANNEL(0),
  138. MCP4131_CHANNEL(1),
  139. };
  140. static int mcp4131_read(struct spi_device *spi, void *buf, size_t len)
  141. {
  142. struct spi_transfer t = {
  143. .tx_buf = buf, /* We need to send addr, cmd and 12 bits */
  144. .rx_buf = buf,
  145. .len = len,
  146. };
  147. struct spi_message m;
  148. spi_message_init(&m);
  149. spi_message_add_tail(&t, &m);
  150. return spi_sync(spi, &m);
  151. }
  152. static int mcp4131_read_raw(struct iio_dev *indio_dev,
  153. struct iio_chan_spec const *chan,
  154. int *val, int *val2, long mask)
  155. {
  156. int err;
  157. struct mcp4131_data *data = iio_priv(indio_dev);
  158. int address = chan->channel;
  159. switch (mask) {
  160. case IIO_CHAN_INFO_RAW:
  161. mutex_lock(&data->lock);
  162. data->buf[0] = (address << MCP4131_WIPER_SHIFT) | MCP4131_READ;
  163. data->buf[1] = 0;
  164. err = mcp4131_read(data->spi, data->buf, 2);
  165. if (err) {
  166. mutex_unlock(&data->lock);
  167. return err;
  168. }
  169. /* Error, bad address/command combination */
  170. if (!MCP4131_CMDERR(data->buf)) {
  171. mutex_unlock(&data->lock);
  172. return -EIO;
  173. }
  174. *val = MCP4131_RAW(data->buf);
  175. mutex_unlock(&data->lock);
  176. return IIO_VAL_INT;
  177. case IIO_CHAN_INFO_SCALE:
  178. *val = 1000 * data->cfg->kohms;
  179. *val2 = data->cfg->max_pos;
  180. return IIO_VAL_FRACTIONAL;
  181. }
  182. return -EINVAL;
  183. }
  184. static int mcp4131_write_raw(struct iio_dev *indio_dev,
  185. struct iio_chan_spec const *chan,
  186. int val, int val2, long mask)
  187. {
  188. int err;
  189. struct mcp4131_data *data = iio_priv(indio_dev);
  190. int address = chan->channel << MCP4131_WIPER_SHIFT;
  191. switch (mask) {
  192. case IIO_CHAN_INFO_RAW:
  193. if (val > data->cfg->max_pos || val < 0)
  194. return -EINVAL;
  195. break;
  196. default:
  197. return -EINVAL;
  198. }
  199. mutex_lock(&data->lock);
  200. data->buf[0] = address << MCP4131_WIPER_SHIFT;
  201. data->buf[0] |= MCP4131_WRITE | (val >> 8);
  202. data->buf[1] = val & 0xFF; /* 8 bits here */
  203. err = spi_write(data->spi, data->buf, 2);
  204. mutex_unlock(&data->lock);
  205. return err;
  206. }
  207. static const struct iio_info mcp4131_info = {
  208. .read_raw = mcp4131_read_raw,
  209. .write_raw = mcp4131_write_raw,
  210. };
  211. static int mcp4131_probe(struct spi_device *spi)
  212. {
  213. int err;
  214. struct device *dev = &spi->dev;
  215. unsigned long devid = spi_get_device_id(spi)->driver_data;
  216. struct mcp4131_data *data;
  217. struct iio_dev *indio_dev;
  218. indio_dev = devm_iio_device_alloc(dev, sizeof(*data));
  219. if (!indio_dev)
  220. return -ENOMEM;
  221. data = iio_priv(indio_dev);
  222. spi_set_drvdata(spi, indio_dev);
  223. data->spi = spi;
  224. data->cfg = &mcp4131_cfg[devid];
  225. mutex_init(&data->lock);
  226. indio_dev->dev.parent = dev;
  227. indio_dev->info = &mcp4131_info;
  228. indio_dev->channels = mcp4131_channels;
  229. indio_dev->num_channels = data->cfg->wipers;
  230. indio_dev->name = spi_get_device_id(spi)->name;
  231. err = devm_iio_device_register(dev, indio_dev);
  232. if (err) {
  233. dev_info(&spi->dev, "Unable to register %s\n", indio_dev->name);
  234. return err;
  235. }
  236. return 0;
  237. }
  238. #if defined(CONFIG_OF)
  239. static const struct of_device_id mcp4131_dt_ids[] = {
  240. { .compatible = "microchip,mcp4131-502",
  241. .data = &mcp4131_cfg[MCP413x_502] },
  242. { .compatible = "microchip,mcp4131-103",
  243. .data = &mcp4131_cfg[MCP413x_103] },
  244. { .compatible = "microchip,mcp4131-503",
  245. .data = &mcp4131_cfg[MCP413x_503] },
  246. { .compatible = "microchip,mcp4131-104",
  247. .data = &mcp4131_cfg[MCP413x_104] },
  248. { .compatible = "microchip,mcp4132-502",
  249. .data = &mcp4131_cfg[MCP413x_502] },
  250. { .compatible = "microchip,mcp4132-103",
  251. .data = &mcp4131_cfg[MCP413x_103] },
  252. { .compatible = "microchip,mcp4132-503",
  253. .data = &mcp4131_cfg[MCP413x_503] },
  254. { .compatible = "microchip,mcp4132-104",
  255. .data = &mcp4131_cfg[MCP413x_104] },
  256. { .compatible = "microchip,mcp4141-502",
  257. .data = &mcp4131_cfg[MCP414x_502] },
  258. { .compatible = "microchip,mcp4141-103",
  259. .data = &mcp4131_cfg[MCP414x_103] },
  260. { .compatible = "microchip,mcp4141-503",
  261. .data = &mcp4131_cfg[MCP414x_503] },
  262. { .compatible = "microchip,mcp4141-104",
  263. .data = &mcp4131_cfg[MCP414x_104] },
  264. { .compatible = "microchip,mcp4142-502",
  265. .data = &mcp4131_cfg[MCP414x_502] },
  266. { .compatible = "microchip,mcp4142-103",
  267. .data = &mcp4131_cfg[MCP414x_103] },
  268. { .compatible = "microchip,mcp4142-503",
  269. .data = &mcp4131_cfg[MCP414x_503] },
  270. { .compatible = "microchip,mcp4142-104",
  271. .data = &mcp4131_cfg[MCP414x_104] },
  272. { .compatible = "microchip,mcp4151-502",
  273. .data = &mcp4131_cfg[MCP415x_502] },
  274. { .compatible = "microchip,mcp4151-103",
  275. .data = &mcp4131_cfg[MCP415x_103] },
  276. { .compatible = "microchip,mcp4151-503",
  277. .data = &mcp4131_cfg[MCP415x_503] },
  278. { .compatible = "microchip,mcp4151-104",
  279. .data = &mcp4131_cfg[MCP415x_104] },
  280. { .compatible = "microchip,mcp4152-502",
  281. .data = &mcp4131_cfg[MCP415x_502] },
  282. { .compatible = "microchip,mcp4152-103",
  283. .data = &mcp4131_cfg[MCP415x_103] },
  284. { .compatible = "microchip,mcp4152-503",
  285. .data = &mcp4131_cfg[MCP415x_503] },
  286. { .compatible = "microchip,mcp4152-104",
  287. .data = &mcp4131_cfg[MCP415x_104] },
  288. { .compatible = "microchip,mcp4161-502",
  289. .data = &mcp4131_cfg[MCP416x_502] },
  290. { .compatible = "microchip,mcp4161-103",
  291. .data = &mcp4131_cfg[MCP416x_103] },
  292. { .compatible = "microchip,mcp4161-503",
  293. .data = &mcp4131_cfg[MCP416x_503] },
  294. { .compatible = "microchip,mcp4161-104",
  295. .data = &mcp4131_cfg[MCP416x_104] },
  296. { .compatible = "microchip,mcp4162-502",
  297. .data = &mcp4131_cfg[MCP416x_502] },
  298. { .compatible = "microchip,mcp4162-103",
  299. .data = &mcp4131_cfg[MCP416x_103] },
  300. { .compatible = "microchip,mcp4162-503",
  301. .data = &mcp4131_cfg[MCP416x_503] },
  302. { .compatible = "microchip,mcp4162-104",
  303. .data = &mcp4131_cfg[MCP416x_104] },
  304. { .compatible = "microchip,mcp4231-502",
  305. .data = &mcp4131_cfg[MCP423x_502] },
  306. { .compatible = "microchip,mcp4231-103",
  307. .data = &mcp4131_cfg[MCP423x_103] },
  308. { .compatible = "microchip,mcp4231-503",
  309. .data = &mcp4131_cfg[MCP423x_503] },
  310. { .compatible = "microchip,mcp4231-104",
  311. .data = &mcp4131_cfg[MCP423x_104] },
  312. { .compatible = "microchip,mcp4232-502",
  313. .data = &mcp4131_cfg[MCP423x_502] },
  314. { .compatible = "microchip,mcp4232-103",
  315. .data = &mcp4131_cfg[MCP423x_103] },
  316. { .compatible = "microchip,mcp4232-503",
  317. .data = &mcp4131_cfg[MCP423x_503] },
  318. { .compatible = "microchip,mcp4232-104",
  319. .data = &mcp4131_cfg[MCP423x_104] },
  320. { .compatible = "microchip,mcp4241-502",
  321. .data = &mcp4131_cfg[MCP424x_502] },
  322. { .compatible = "microchip,mcp4241-103",
  323. .data = &mcp4131_cfg[MCP424x_103] },
  324. { .compatible = "microchip,mcp4241-503",
  325. .data = &mcp4131_cfg[MCP424x_503] },
  326. { .compatible = "microchip,mcp4241-104",
  327. .data = &mcp4131_cfg[MCP424x_104] },
  328. { .compatible = "microchip,mcp4242-502",
  329. .data = &mcp4131_cfg[MCP424x_502] },
  330. { .compatible = "microchip,mcp4242-103",
  331. .data = &mcp4131_cfg[MCP424x_103] },
  332. { .compatible = "microchip,mcp4242-503",
  333. .data = &mcp4131_cfg[MCP424x_503] },
  334. { .compatible = "microchip,mcp4242-104",
  335. .data = &mcp4131_cfg[MCP424x_104] },
  336. { .compatible = "microchip,mcp4251-502",
  337. .data = &mcp4131_cfg[MCP425x_502] },
  338. { .compatible = "microchip,mcp4251-103",
  339. .data = &mcp4131_cfg[MCP425x_103] },
  340. { .compatible = "microchip,mcp4251-503",
  341. .data = &mcp4131_cfg[MCP425x_503] },
  342. { .compatible = "microchip,mcp4251-104",
  343. .data = &mcp4131_cfg[MCP425x_104] },
  344. { .compatible = "microchip,mcp4252-502",
  345. .data = &mcp4131_cfg[MCP425x_502] },
  346. { .compatible = "microchip,mcp4252-103",
  347. .data = &mcp4131_cfg[MCP425x_103] },
  348. { .compatible = "microchip,mcp4252-503",
  349. .data = &mcp4131_cfg[MCP425x_503] },
  350. { .compatible = "microchip,mcp4252-104",
  351. .data = &mcp4131_cfg[MCP425x_104] },
  352. { .compatible = "microchip,mcp4261-502",
  353. .data = &mcp4131_cfg[MCP426x_502] },
  354. { .compatible = "microchip,mcp4261-103",
  355. .data = &mcp4131_cfg[MCP426x_103] },
  356. { .compatible = "microchip,mcp4261-503",
  357. .data = &mcp4131_cfg[MCP426x_503] },
  358. { .compatible = "microchip,mcp4261-104",
  359. .data = &mcp4131_cfg[MCP426x_104] },
  360. { .compatible = "microchip,mcp4262-502",
  361. .data = &mcp4131_cfg[MCP426x_502] },
  362. { .compatible = "microchip,mcp4262-103",
  363. .data = &mcp4131_cfg[MCP426x_103] },
  364. { .compatible = "microchip,mcp4262-503",
  365. .data = &mcp4131_cfg[MCP426x_503] },
  366. { .compatible = "microchip,mcp4262-104",
  367. .data = &mcp4131_cfg[MCP426x_104] },
  368. {}
  369. };
  370. MODULE_DEVICE_TABLE(of, mcp4131_dt_ids);
  371. #endif /* CONFIG_OF */
  372. static const struct spi_device_id mcp4131_id[] = {
  373. { "mcp4131-502", MCP413x_502 },
  374. { "mcp4131-103", MCP413x_103 },
  375. { "mcp4131-503", MCP413x_503 },
  376. { "mcp4131-104", MCP413x_104 },
  377. { "mcp4132-502", MCP413x_502 },
  378. { "mcp4132-103", MCP413x_103 },
  379. { "mcp4132-503", MCP413x_503 },
  380. { "mcp4132-104", MCP413x_104 },
  381. { "mcp4141-502", MCP414x_502 },
  382. { "mcp4141-103", MCP414x_103 },
  383. { "mcp4141-503", MCP414x_503 },
  384. { "mcp4141-104", MCP414x_104 },
  385. { "mcp4142-502", MCP414x_502 },
  386. { "mcp4142-103", MCP414x_103 },
  387. { "mcp4142-503", MCP414x_503 },
  388. { "mcp4142-104", MCP414x_104 },
  389. { "mcp4151-502", MCP415x_502 },
  390. { "mcp4151-103", MCP415x_103 },
  391. { "mcp4151-503", MCP415x_503 },
  392. { "mcp4151-104", MCP415x_104 },
  393. { "mcp4152-502", MCP415x_502 },
  394. { "mcp4152-103", MCP415x_103 },
  395. { "mcp4152-503", MCP415x_503 },
  396. { "mcp4152-104", MCP415x_104 },
  397. { "mcp4161-502", MCP416x_502 },
  398. { "mcp4161-103", MCP416x_103 },
  399. { "mcp4161-503", MCP416x_503 },
  400. { "mcp4161-104", MCP416x_104 },
  401. { "mcp4162-502", MCP416x_502 },
  402. { "mcp4162-103", MCP416x_103 },
  403. { "mcp4162-503", MCP416x_503 },
  404. { "mcp4162-104", MCP416x_104 },
  405. { "mcp4231-502", MCP423x_502 },
  406. { "mcp4231-103", MCP423x_103 },
  407. { "mcp4231-503", MCP423x_503 },
  408. { "mcp4231-104", MCP423x_104 },
  409. { "mcp4232-502", MCP423x_502 },
  410. { "mcp4232-103", MCP423x_103 },
  411. { "mcp4232-503", MCP423x_503 },
  412. { "mcp4232-104", MCP423x_104 },
  413. { "mcp4241-502", MCP424x_502 },
  414. { "mcp4241-103", MCP424x_103 },
  415. { "mcp4241-503", MCP424x_503 },
  416. { "mcp4241-104", MCP424x_104 },
  417. { "mcp4242-502", MCP424x_502 },
  418. { "mcp4242-103", MCP424x_103 },
  419. { "mcp4242-503", MCP424x_503 },
  420. { "mcp4242-104", MCP424x_104 },
  421. { "mcp4251-502", MCP425x_502 },
  422. { "mcp4251-103", MCP425x_103 },
  423. { "mcp4251-503", MCP425x_503 },
  424. { "mcp4251-104", MCP425x_104 },
  425. { "mcp4252-502", MCP425x_502 },
  426. { "mcp4252-103", MCP425x_103 },
  427. { "mcp4252-503", MCP425x_503 },
  428. { "mcp4252-104", MCP425x_104 },
  429. { "mcp4261-502", MCP426x_502 },
  430. { "mcp4261-103", MCP426x_103 },
  431. { "mcp4261-503", MCP426x_503 },
  432. { "mcp4261-104", MCP426x_104 },
  433. { "mcp4262-502", MCP426x_502 },
  434. { "mcp4262-103", MCP426x_103 },
  435. { "mcp4262-503", MCP426x_503 },
  436. { "mcp4262-104", MCP426x_104 },
  437. {}
  438. };
  439. MODULE_DEVICE_TABLE(spi, mcp4131_id);
  440. static struct spi_driver mcp4131_driver = {
  441. .driver = {
  442. .name = "mcp4131",
  443. .of_match_table = of_match_ptr(mcp4131_dt_ids),
  444. },
  445. .probe = mcp4131_probe,
  446. .id_table = mcp4131_id,
  447. };
  448. module_spi_driver(mcp4131_driver);
  449. MODULE_AUTHOR("Slawomir Stepien <sst@poczta.fm>");
  450. MODULE_DESCRIPTION("MCP4131 digital potentiometer");
  451. MODULE_LICENSE("GPL v2");