ad7298.c 9.5 KB

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  1. /*
  2. * AD7298 SPI ADC driver
  3. *
  4. * Copyright 2011 Analog Devices Inc.
  5. *
  6. * Licensed under the GPL-2.
  7. */
  8. #include <linux/device.h>
  9. #include <linux/kernel.h>
  10. #include <linux/slab.h>
  11. #include <linux/sysfs.h>
  12. #include <linux/spi/spi.h>
  13. #include <linux/regulator/consumer.h>
  14. #include <linux/err.h>
  15. #include <linux/delay.h>
  16. #include <linux/module.h>
  17. #include <linux/interrupt.h>
  18. #include <linux/iio/iio.h>
  19. #include <linux/iio/sysfs.h>
  20. #include <linux/iio/buffer.h>
  21. #include <linux/iio/trigger_consumer.h>
  22. #include <linux/iio/triggered_buffer.h>
  23. #include <linux/platform_data/ad7298.h>
  24. #define AD7298_WRITE (1 << 15) /* write to the control register */
  25. #define AD7298_REPEAT (1 << 14) /* repeated conversion enable */
  26. #define AD7298_CH(x) (1 << (13 - (x))) /* channel select */
  27. #define AD7298_TSENSE (1 << 5) /* temperature conversion enable */
  28. #define AD7298_EXTREF (1 << 2) /* external reference enable */
  29. #define AD7298_TAVG (1 << 1) /* temperature sensor averaging enable */
  30. #define AD7298_PDD (1 << 0) /* partial power down enable */
  31. #define AD7298_MAX_CHAN 8
  32. #define AD7298_BITS 12
  33. #define AD7298_STORAGE_BITS 16
  34. #define AD7298_INTREF_mV 2500
  35. #define AD7298_CH_TEMP 9
  36. #define RES_MASK(bits) ((1 << (bits)) - 1)
  37. struct ad7298_state {
  38. struct spi_device *spi;
  39. struct regulator *reg;
  40. unsigned ext_ref;
  41. struct spi_transfer ring_xfer[10];
  42. struct spi_transfer scan_single_xfer[3];
  43. struct spi_message ring_msg;
  44. struct spi_message scan_single_msg;
  45. /*
  46. * DMA (thus cache coherency maintenance) requires the
  47. * transfer buffers to live in their own cache lines.
  48. */
  49. __be16 rx_buf[12] ____cacheline_aligned;
  50. __be16 tx_buf[2];
  51. };
  52. #define AD7298_V_CHAN(index) \
  53. { \
  54. .type = IIO_VOLTAGE, \
  55. .indexed = 1, \
  56. .channel = index, \
  57. .info_mask = IIO_CHAN_INFO_RAW_SEPARATE_BIT | \
  58. IIO_CHAN_INFO_SCALE_SHARED_BIT, \
  59. .address = index, \
  60. .scan_index = index, \
  61. .scan_type = { \
  62. .sign = 'u', \
  63. .realbits = 12, \
  64. .storagebits = 16, \
  65. .endianness = IIO_BE, \
  66. }, \
  67. }
  68. static const struct iio_chan_spec ad7298_channels[] = {
  69. {
  70. .type = IIO_TEMP,
  71. .indexed = 1,
  72. .channel = 0,
  73. .info_mask = IIO_CHAN_INFO_RAW_SEPARATE_BIT |
  74. IIO_CHAN_INFO_SCALE_SEPARATE_BIT |
  75. IIO_CHAN_INFO_OFFSET_SEPARATE_BIT,
  76. .address = AD7298_CH_TEMP,
  77. .scan_index = -1,
  78. .scan_type = {
  79. .sign = 's',
  80. .realbits = 32,
  81. .storagebits = 32,
  82. },
  83. },
  84. AD7298_V_CHAN(0),
  85. AD7298_V_CHAN(1),
  86. AD7298_V_CHAN(2),
  87. AD7298_V_CHAN(3),
  88. AD7298_V_CHAN(4),
  89. AD7298_V_CHAN(5),
  90. AD7298_V_CHAN(6),
  91. AD7298_V_CHAN(7),
  92. IIO_CHAN_SOFT_TIMESTAMP(8),
  93. };
  94. /**
  95. * ad7298_update_scan_mode() setup the spi transfer buffer for the new scan mask
  96. **/
  97. static int ad7298_update_scan_mode(struct iio_dev *indio_dev,
  98. const unsigned long *active_scan_mask)
  99. {
  100. struct ad7298_state *st = iio_priv(indio_dev);
  101. int i, m;
  102. unsigned short command;
  103. int scan_count;
  104. /* Now compute overall size */
  105. scan_count = bitmap_weight(active_scan_mask, indio_dev->masklength);
  106. command = AD7298_WRITE | st->ext_ref;
  107. for (i = 0, m = AD7298_CH(0); i < AD7298_MAX_CHAN; i++, m >>= 1)
  108. if (test_bit(i, active_scan_mask))
  109. command |= m;
  110. st->tx_buf[0] = cpu_to_be16(command);
  111. /* build spi ring message */
  112. st->ring_xfer[0].tx_buf = &st->tx_buf[0];
  113. st->ring_xfer[0].len = 2;
  114. st->ring_xfer[0].cs_change = 1;
  115. st->ring_xfer[1].tx_buf = &st->tx_buf[1];
  116. st->ring_xfer[1].len = 2;
  117. st->ring_xfer[1].cs_change = 1;
  118. spi_message_init(&st->ring_msg);
  119. spi_message_add_tail(&st->ring_xfer[0], &st->ring_msg);
  120. spi_message_add_tail(&st->ring_xfer[1], &st->ring_msg);
  121. for (i = 0; i < scan_count; i++) {
  122. st->ring_xfer[i + 2].rx_buf = &st->rx_buf[i];
  123. st->ring_xfer[i + 2].len = 2;
  124. st->ring_xfer[i + 2].cs_change = 1;
  125. spi_message_add_tail(&st->ring_xfer[i + 2], &st->ring_msg);
  126. }
  127. /* make sure last transfer cs_change is not set */
  128. st->ring_xfer[i + 1].cs_change = 0;
  129. return 0;
  130. }
  131. /**
  132. * ad7298_trigger_handler() bh of trigger launched polling to ring buffer
  133. *
  134. * Currently there is no option in this driver to disable the saving of
  135. * timestamps within the ring.
  136. **/
  137. static irqreturn_t ad7298_trigger_handler(int irq, void *p)
  138. {
  139. struct iio_poll_func *pf = p;
  140. struct iio_dev *indio_dev = pf->indio_dev;
  141. struct ad7298_state *st = iio_priv(indio_dev);
  142. s64 time_ns = 0;
  143. int b_sent;
  144. b_sent = spi_sync(st->spi, &st->ring_msg);
  145. if (b_sent)
  146. goto done;
  147. if (indio_dev->scan_timestamp) {
  148. time_ns = iio_get_time_ns();
  149. memcpy((u8 *)st->rx_buf + indio_dev->scan_bytes - sizeof(s64),
  150. &time_ns, sizeof(time_ns));
  151. }
  152. iio_push_to_buffers(indio_dev, (u8 *)st->rx_buf);
  153. done:
  154. iio_trigger_notify_done(indio_dev->trig);
  155. return IRQ_HANDLED;
  156. }
  157. static int ad7298_scan_direct(struct ad7298_state *st, unsigned ch)
  158. {
  159. int ret;
  160. st->tx_buf[0] = cpu_to_be16(AD7298_WRITE | st->ext_ref |
  161. (AD7298_CH(0) >> ch));
  162. ret = spi_sync(st->spi, &st->scan_single_msg);
  163. if (ret)
  164. return ret;
  165. return be16_to_cpu(st->rx_buf[0]);
  166. }
  167. static int ad7298_scan_temp(struct ad7298_state *st, int *val)
  168. {
  169. int ret;
  170. __be16 buf;
  171. buf = cpu_to_be16(AD7298_WRITE | AD7298_TSENSE |
  172. AD7298_TAVG | st->ext_ref);
  173. ret = spi_write(st->spi, (u8 *)&buf, 2);
  174. if (ret)
  175. return ret;
  176. buf = cpu_to_be16(0);
  177. ret = spi_write(st->spi, (u8 *)&buf, 2);
  178. if (ret)
  179. return ret;
  180. usleep_range(101, 1000); /* sleep > 100us */
  181. ret = spi_read(st->spi, (u8 *)&buf, 2);
  182. if (ret)
  183. return ret;
  184. *val = sign_extend32(be16_to_cpu(buf), 11);
  185. return 0;
  186. }
  187. static int ad7298_get_ref_voltage(struct ad7298_state *st)
  188. {
  189. int vref;
  190. if (st->ext_ref) {
  191. vref = regulator_get_voltage(st->reg);
  192. if (vref < 0)
  193. return vref;
  194. return vref / 1000;
  195. } else {
  196. return AD7298_INTREF_mV;
  197. }
  198. }
  199. static int ad7298_read_raw(struct iio_dev *indio_dev,
  200. struct iio_chan_spec const *chan,
  201. int *val,
  202. int *val2,
  203. long m)
  204. {
  205. int ret;
  206. struct ad7298_state *st = iio_priv(indio_dev);
  207. switch (m) {
  208. case IIO_CHAN_INFO_RAW:
  209. mutex_lock(&indio_dev->mlock);
  210. if (indio_dev->currentmode == INDIO_BUFFER_TRIGGERED) {
  211. ret = -EBUSY;
  212. } else {
  213. if (chan->address == AD7298_CH_TEMP)
  214. ret = ad7298_scan_temp(st, val);
  215. else
  216. ret = ad7298_scan_direct(st, chan->address);
  217. }
  218. mutex_unlock(&indio_dev->mlock);
  219. if (ret < 0)
  220. return ret;
  221. if (chan->address != AD7298_CH_TEMP)
  222. *val = ret & RES_MASK(AD7298_BITS);
  223. return IIO_VAL_INT;
  224. case IIO_CHAN_INFO_SCALE:
  225. switch (chan->type) {
  226. case IIO_VOLTAGE:
  227. *val = ad7298_get_ref_voltage(st);
  228. *val2 = chan->scan_type.realbits;
  229. return IIO_VAL_FRACTIONAL_LOG2;
  230. case IIO_TEMP:
  231. *val = ad7298_get_ref_voltage(st);
  232. *val2 = 10;
  233. return IIO_VAL_FRACTIONAL;
  234. default:
  235. return -EINVAL;
  236. }
  237. case IIO_CHAN_INFO_OFFSET:
  238. *val = 1093 - 2732500 / ad7298_get_ref_voltage(st);
  239. return IIO_VAL_INT;
  240. }
  241. return -EINVAL;
  242. }
  243. static const struct iio_info ad7298_info = {
  244. .read_raw = &ad7298_read_raw,
  245. .update_scan_mode = ad7298_update_scan_mode,
  246. .driver_module = THIS_MODULE,
  247. };
  248. static int ad7298_probe(struct spi_device *spi)
  249. {
  250. struct ad7298_platform_data *pdata = spi->dev.platform_data;
  251. struct ad7298_state *st;
  252. struct iio_dev *indio_dev = iio_device_alloc(sizeof(*st));
  253. int ret;
  254. if (indio_dev == NULL)
  255. return -ENOMEM;
  256. st = iio_priv(indio_dev);
  257. if (pdata && pdata->ext_ref)
  258. st->ext_ref = AD7298_EXTREF;
  259. if (st->ext_ref) {
  260. st->reg = regulator_get(&spi->dev, "vref");
  261. if (IS_ERR(st->reg)) {
  262. ret = PTR_ERR(st->reg);
  263. goto error_free;
  264. }
  265. ret = regulator_enable(st->reg);
  266. if (ret)
  267. goto error_put_reg;
  268. }
  269. spi_set_drvdata(spi, indio_dev);
  270. st->spi = spi;
  271. indio_dev->name = spi_get_device_id(spi)->name;
  272. indio_dev->dev.parent = &spi->dev;
  273. indio_dev->modes = INDIO_DIRECT_MODE;
  274. indio_dev->channels = ad7298_channels;
  275. indio_dev->num_channels = ARRAY_SIZE(ad7298_channels);
  276. indio_dev->info = &ad7298_info;
  277. /* Setup default message */
  278. st->scan_single_xfer[0].tx_buf = &st->tx_buf[0];
  279. st->scan_single_xfer[0].len = 2;
  280. st->scan_single_xfer[0].cs_change = 1;
  281. st->scan_single_xfer[1].tx_buf = &st->tx_buf[1];
  282. st->scan_single_xfer[1].len = 2;
  283. st->scan_single_xfer[1].cs_change = 1;
  284. st->scan_single_xfer[2].rx_buf = &st->rx_buf[0];
  285. st->scan_single_xfer[2].len = 2;
  286. spi_message_init(&st->scan_single_msg);
  287. spi_message_add_tail(&st->scan_single_xfer[0], &st->scan_single_msg);
  288. spi_message_add_tail(&st->scan_single_xfer[1], &st->scan_single_msg);
  289. spi_message_add_tail(&st->scan_single_xfer[2], &st->scan_single_msg);
  290. ret = iio_triggered_buffer_setup(indio_dev, NULL,
  291. &ad7298_trigger_handler, NULL);
  292. if (ret)
  293. goto error_disable_reg;
  294. ret = iio_device_register(indio_dev);
  295. if (ret)
  296. goto error_cleanup_ring;
  297. return 0;
  298. error_cleanup_ring:
  299. iio_triggered_buffer_cleanup(indio_dev);
  300. error_disable_reg:
  301. if (st->ext_ref)
  302. regulator_disable(st->reg);
  303. error_put_reg:
  304. if (st->ext_ref)
  305. regulator_put(st->reg);
  306. error_free:
  307. iio_device_free(indio_dev);
  308. return ret;
  309. }
  310. static int ad7298_remove(struct spi_device *spi)
  311. {
  312. struct iio_dev *indio_dev = spi_get_drvdata(spi);
  313. struct ad7298_state *st = iio_priv(indio_dev);
  314. iio_device_unregister(indio_dev);
  315. iio_triggered_buffer_cleanup(indio_dev);
  316. if (st->ext_ref) {
  317. regulator_disable(st->reg);
  318. regulator_put(st->reg);
  319. }
  320. iio_device_free(indio_dev);
  321. return 0;
  322. }
  323. static const struct spi_device_id ad7298_id[] = {
  324. {"ad7298", 0},
  325. {}
  326. };
  327. MODULE_DEVICE_TABLE(spi, ad7298_id);
  328. static struct spi_driver ad7298_driver = {
  329. .driver = {
  330. .name = "ad7298",
  331. .owner = THIS_MODULE,
  332. },
  333. .probe = ad7298_probe,
  334. .remove = ad7298_remove,
  335. .id_table = ad7298_id,
  336. };
  337. module_spi_driver(ad7298_driver);
  338. MODULE_AUTHOR("Michael Hennerich <hennerich@blackfin.uclinux.org>");
  339. MODULE_DESCRIPTION("Analog Devices AD7298 ADC");
  340. MODULE_LICENSE("GPL v2");