bmp180.c 32 KB

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  1. /* BOSCH Pressure Sensor Driver
  2. *
  3. * This software is licensed under the terms of the GNU General Public
  4. * License version 2, as published by the Free Software Foundation, and
  5. * may be copied, distributed, and modified under those terms.
  6. *
  7. * This program is distributed in the hope that it will be useful,
  8. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. * GNU General Public License for more details.
  11. *
  12. * History: V1.0 --- [2013.02.18]Driver creation
  13. * V1.1 --- [2013.03.14]Instead late_resume, use resume to make sure
  14. * driver resume is ealier than processes resume.
  15. * V1.2 --- [2013.03.26]Re-write i2c function to fix the bug that
  16. * i2c access error on MT6589 platform.
  17. */
  18. #include <linux/interrupt.h>
  19. #include <linux/i2c.h>
  20. #include <linux/slab.h>
  21. #include <linux/irq.h>
  22. #include <linux/miscdevice.h>
  23. #include <linux/uaccess.h>
  24. #include <linux/delay.h>
  25. #include <linux/input.h>
  26. #include <linux/workqueue.h>
  27. #include <linux/kobject.h>
  28. #include <linux/platform_device.h>
  29. #include <linux/atomic.h>
  30. #include <linux/module.h>
  31. #include <linux/math64.h>
  32. #include <cust_baro.h>
  33. #include <linux/hwmsensor.h>
  34. #include <linux/hwmsen_dev.h>
  35. #include <linux/sensors_io.h>
  36. #include "bmp180.h"
  37. #include <linux/hwmsen_helper.h>
  38. #include <mach/mt_typedefs.h>
  39. #include <mach/mt_gpio.h>
  40. #include <mach/mt_pm_ldo.h>
  41. #define POWER_NONE_MACRO MT65XX_POWER_NONE
  42. #define CONFIG_ID_TEMPERATURE 1
  43. static DEFINE_MUTEX(bmp180_i2c_mutex);
  44. static DEFINE_MUTEX(bmp180_op_mutex);
  45. /* sensor type */
  46. enum SENSOR_TYPE_ENUM {
  47. BMP180_TYPE = 0x0,
  48. INVALID_TYPE = 0xff
  49. };
  50. /* power mode */
  51. enum BMP_POWERMODE_ENUM {
  52. BMP_SUSPEND_MODE = 0x0,
  53. BMP_NORMAL_MODE,
  54. BMP_UNDEFINED_POWERMODE = 0xff
  55. };
  56. /* oversampling */
  57. enum BMP_OVERSAMPLING_ENUM {
  58. BMP_OVERSAMPLING_SKIPPED = 0x0,
  59. BMP_OVERSAMPLING_1X,
  60. BMP_OVERSAMPLING_2X,
  61. BMP_OVERSAMPLING_4X,
  62. BMP_OVERSAMPLING_8X,
  63. BMP_OVERSAMPLING_16X,
  64. BMP_UNDEFINED_OVERSAMPLING = 0xff
  65. };
  66. /* trace */
  67. enum BAR_TRC {
  68. BAR_TRC_READ = 0x01,
  69. BAR_TRC_RAWDATA = 0x02,
  70. BAR_TRC_IOCTL = 0x04,
  71. BAR_TRC_FILTER = 0x08,
  72. };
  73. /* s/w filter */
  74. struct data_filter {
  75. u32 raw[C_MAX_FIR_LENGTH][BMP_DATA_NUM];
  76. int sum[BMP_DATA_NUM];
  77. int num;
  78. int idx;
  79. };
  80. /* bmp180 calibration */
  81. struct bmp180_calibration_data {
  82. s16 AC1, AC2, AC3;
  83. u16 AC4, AC5, AC6;
  84. s16 B1, B2;
  85. s16 MB, MC, MD;
  86. };
  87. /* bmp i2c client data */
  88. struct bmp_i2c_data {
  89. struct i2c_client *client;
  90. struct baro_hw *hw;
  91. /* sensor info */
  92. u8 sensor_name[MAX_SENSOR_NAME];
  93. enum SENSOR_TYPE_ENUM sensor_type;
  94. enum BMP_POWERMODE_ENUM power_mode;
  95. u8 oversampling_p;
  96. u32 last_temp_measurement;
  97. u32 temp_measurement_period;
  98. union {
  99. struct bmp180_calibration_data bmp180_cali;
  100. };
  101. /* calculated temperature correction coefficient */
  102. s32 t_fine;
  103. /*misc */
  104. atomic_t trace;
  105. atomic_t suspend;
  106. atomic_t filter;
  107. #if defined(CONFIG_BMP_LOWPASS)
  108. atomic_t firlen;
  109. atomic_t fir_en;
  110. struct data_filter fir;
  111. #endif
  112. };
  113. #define BAR_TAG "[barometer] "
  114. #define BAR_FUN(f) pr_debug(BAR_TAG"%s\n", __func__)
  115. #define BAR_ERR(fmt, args...) \
  116. pr_err(BAR_TAG"%s %d : "fmt, __func__, __LINE__, ##args)
  117. #define BAR_LOG(fmt, args...) pr_debug(BAR_TAG fmt, ##args)
  118. static struct platform_driver bmp_barometer_driver;
  119. static struct i2c_driver bmp_i2c_driver;
  120. static struct bmp_i2c_data *obj_i2c_data;
  121. static const struct i2c_device_id bmp_i2c_id[] = {
  122. {BMP_DEV_NAME, 0},
  123. {}
  124. };
  125. static struct i2c_board_info bmp_i2c_info __initdata = {
  126. I2C_BOARD_INFO(BMP_DEV_NAME, BMP180_I2C_ADDRESS)
  127. };
  128. /* I2C operation functions */
  129. static int bmp_i2c_read_block(struct i2c_client *client, u8 addr, u8 *data, u8 len)
  130. {
  131. u8 beg = addr;
  132. int err;
  133. struct i2c_msg msgs[2] = { {0}, {0} };
  134. mutex_lock(&bmp180_i2c_mutex);
  135. msgs[0].addr = client->addr;
  136. msgs[0].flags = 0;
  137. msgs[0].len = 1;
  138. msgs[0].buf = &beg;
  139. msgs[1].addr = client->addr;
  140. msgs[1].flags = I2C_M_RD;
  141. msgs[1].len = len;
  142. msgs[1].buf = data;
  143. if (!client) {
  144. mutex_unlock(&bmp180_i2c_mutex);
  145. return -EINVAL;
  146. } else if (len > C_I2C_FIFO_SIZE) {
  147. BAR_ERR(" length %d exceeds %d\n", len, C_I2C_FIFO_SIZE);
  148. mutex_unlock(&bmp180_i2c_mutex);
  149. return -EINVAL;
  150. }
  151. err = i2c_transfer(client->adapter, msgs, sizeof(msgs) / sizeof(msgs[0]));
  152. if (err != 2) {
  153. BAR_ERR("i2c_transfer error: (%d %p %d) %d\n", addr, data, len, err);
  154. err = -EIO;
  155. } else {
  156. err = 0;
  157. }
  158. mutex_unlock(&bmp180_i2c_mutex);
  159. return err;
  160. }
  161. static int bmp_i2c_write_block(struct i2c_client *client, u8 addr, u8 *data, u8 len)
  162. {
  163. /*because address also occupies one byte, the maximum length for write is 7 bytes */
  164. int err, idx, num;
  165. char buf[C_I2C_FIFO_SIZE];
  166. err = 0;
  167. mutex_lock(&bmp180_i2c_mutex);
  168. if (!client) {
  169. mutex_unlock(&bmp180_i2c_mutex);
  170. return -EINVAL;
  171. } else if (len >= C_I2C_FIFO_SIZE) {
  172. BAR_ERR(" length %d exceeds %d\n", len, C_I2C_FIFO_SIZE);
  173. mutex_unlock(&bmp180_i2c_mutex);
  174. return -EINVAL;
  175. }
  176. num = 0;
  177. buf[num++] = addr;
  178. for (idx = 0; idx < len; idx++)
  179. buf[num++] = data[idx];
  180. err = i2c_master_send(client, buf, num);
  181. if (err < 0) {
  182. BAR_ERR("send command error!!\n");
  183. mutex_unlock(&bmp180_i2c_mutex);
  184. return -EFAULT;
  185. }
  186. mutex_unlock(&bmp180_i2c_mutex);
  187. return err;
  188. }
  189. static void bmp_power(struct baro_hw *hw, unsigned int on)
  190. {
  191. static unsigned int power_on;
  192. if (hw->power_id != POWER_NONE_MACRO) { /* have externel LDO */
  193. BAR_LOG("power %s\n", on ? "on" : "off");
  194. if (power_on == on) { /* power status not change */
  195. BAR_LOG("ignore power control: %d\n", on);
  196. } else if (on) { /* power on */
  197. if (!hwPowerOn(hw->power_id, hw->power_vol, BMP_DEV_NAME))
  198. BAR_ERR("power on failed\n");
  199. } else { /* power off */
  200. if (!hwPowerDown(hw->power_id, BMP_DEV_NAME))
  201. BAR_ERR("power off failed\n");
  202. }
  203. }
  204. power_on = on;
  205. }
  206. /* get chip type */
  207. static int bmp_get_chip_type(struct i2c_client *client)
  208. {
  209. int err = 0;
  210. u8 chip_id = 0;
  211. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  212. BAR_FUN(f);
  213. err = bmp_i2c_read_block(client, BMP_CHIP_ID_REG, &chip_id, 0x01);
  214. if (err != 0)
  215. return err;
  216. switch (chip_id) {
  217. case BMP180_CHIP_ID:
  218. obj->sensor_type = BMP180_TYPE;
  219. strcpy(obj->sensor_name, "bmp180");
  220. break;
  221. default:
  222. obj->sensor_type = INVALID_TYPE;
  223. strcpy(obj->sensor_name, "unknown sensor");
  224. break;
  225. }
  226. BAR_LOG("[%s]chip id = %#x, sensor name = %s\n", __func__, chip_id, obj->sensor_name);
  227. if (obj->sensor_type == INVALID_TYPE) {
  228. BAR_ERR("unknown pressure sensor\n");
  229. return -1;
  230. }
  231. return 0;
  232. }
  233. static int bmp_get_calibration_data(struct i2c_client *client)
  234. {
  235. struct bmp_i2c_data *obj = (struct bmp_i2c_data *)i2c_get_clientdata(client);
  236. int status = 0;
  237. int i = 0;
  238. if (obj->sensor_type == BMP180_TYPE) {
  239. u8 tmp[2] = { 0 };
  240. u16 cali_data[BMP180_CALIBRATION_DATA_LENGTH] = { 0 };
  241. for (i = 0; i < 11; i++) {
  242. status =
  243. bmp_i2c_read_block(client, (BMP180_CALIBRATION_DATA_START + (i * 2)),
  244. tmp, 0x02);
  245. if (status < 0)
  246. return status;
  247. cali_data[i] = tmp[0] | (tmp[1] >> 8);
  248. BAR_LOG("[%s] read data = 0x%x, 0x%x, i = %d\n", __func__, tmp[0], tmp[1],
  249. i);
  250. BAR_LOG("[%s] read address = 0x%x\n", __func__,
  251. (BMP180_CALIBRATION_DATA_START + (i * 2)));
  252. }
  253. obj->bmp180_cali.AC1 = be16_to_cpu(cali_data[0]);
  254. obj->bmp180_cali.AC2 = be16_to_cpu(cali_data[1]);
  255. obj->bmp180_cali.AC3 = be16_to_cpu(cali_data[2]);
  256. obj->bmp180_cali.AC4 = be16_to_cpu(cali_data[3]);
  257. obj->bmp180_cali.AC5 = be16_to_cpu(cali_data[4]);
  258. obj->bmp180_cali.AC6 = be16_to_cpu(cali_data[5]);
  259. obj->bmp180_cali.B1 = be16_to_cpu(cali_data[6]);
  260. obj->bmp180_cali.B2 = be16_to_cpu(cali_data[7]);
  261. obj->bmp180_cali.MB = be16_to_cpu(cali_data[8]);
  262. obj->bmp180_cali.MC = be16_to_cpu(cali_data[9]);
  263. obj->bmp180_cali.MD = be16_to_cpu(cali_data[10]);
  264. }
  265. return 0;
  266. }
  267. static int bmp_set_powermode(struct i2c_client *client, enum BMP_POWERMODE_ENUM power_mode)
  268. {
  269. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  270. u8 err = 0;
  271. BAR_LOG("[%s] power_mode = %d, old power_mode = %d\n", __func__,
  272. power_mode, obj->power_mode);
  273. if (power_mode == obj->power_mode)
  274. return 0;
  275. if (obj->sensor_type == BMP180_TYPE) { /* BMP180 */
  276. /* BMP180 only support forced mode */
  277. BAR_LOG("%s doesn't support hw power mode setting,only has forced mode\n", obj->sensor_name);
  278. }
  279. if (err < 0)
  280. BAR_ERR("set power mode failed, err = %d, sensor name = %s\n",
  281. err, obj->sensor_name);
  282. else
  283. obj->power_mode = power_mode;
  284. return err;
  285. }
  286. static int bmp_set_oversampling_p(struct i2c_client *client,
  287. enum BMP_OVERSAMPLING_ENUM oversampling_p)
  288. {
  289. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  290. u8 err = 0, data = 0, actual_oversampling_p = 0;
  291. BAR_LOG("[%s] oversampling_p = %d, old oversampling_p = %d\n", __func__, oversampling_p,
  292. obj->oversampling_p);
  293. if (oversampling_p == obj->oversampling_p)
  294. return 0;
  295. if (obj->sensor_type == BMP180_TYPE) { /* BMP180 */
  296. if (oversampling_p == BMP_OVERSAMPLING_1X)
  297. actual_oversampling_p = BMP180_OVERSAMPLING_1X;
  298. else if (oversampling_p == BMP_OVERSAMPLING_2X)
  299. actual_oversampling_p = BMP180_OVERSAMPLING_2X;
  300. else if (oversampling_p == BMP_OVERSAMPLING_4X)
  301. actual_oversampling_p = BMP180_OVERSAMPLING_4X;
  302. else if (oversampling_p == BMP_OVERSAMPLING_8X)
  303. actual_oversampling_p = BMP180_OVERSAMPLING_8X;
  304. else {
  305. err = -EINVAL;
  306. BAR_ERR("invalid oversampling_p = %d\n", oversampling_p);
  307. return err;
  308. }
  309. err = bmp_i2c_read_block(client, BMP180_CTRLMEAS_REG_OSRSP__REG, &data, 1);
  310. data = BMP_SET_BITSLICE(data, BMP180_CTRLMEAS_REG_OSRSP, actual_oversampling_p);
  311. err += bmp_i2c_write_block(client, BMP180_CTRLMEAS_REG_OSRSP__REG, &data, 1);
  312. }
  313. if (err < 0)
  314. BAR_ERR("set pressure oversampling failed, err = %d, sensor name = %s\n", err,
  315. obj->sensor_name);
  316. else
  317. obj->oversampling_p = oversampling_p;
  318. return err;
  319. }
  320. static int bmp_read_raw_temperature(struct i2c_client *client, s32 *temperature)
  321. {
  322. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  323. s32 err = 0;
  324. u16 tmp;
  325. u8 data;
  326. if (NULL == client) {
  327. err = -EINVAL;
  328. return err;
  329. }
  330. if (obj->sensor_type == BMP180_TYPE) { /* BMP180 */
  331. err = bmp_i2c_read_block(client, BMP180_CTRLMEAS_REG_MC__REG, &data, 1);
  332. data = BMP_SET_BITSLICE(data, BMP180_CTRLMEAS_REG_MC, BMP180_TEMP_MEASUREMENT);
  333. err += bmp_i2c_write_block(client, BMP180_CTRLMEAS_REG_MC__REG, &data, 1);
  334. if (err < 0) {
  335. BAR_ERR("start measure temperature failed, err = %d\n", err);
  336. return err;
  337. }
  338. /* wait for the end of conversion */
  339. msleep(BMP180_TEMP_CONVERSION_TIME);
  340. err =
  341. bmp_i2c_read_block(client, BMP180_CONVERSION_REGISTER_MSB, (u8 *) &tmp,
  342. sizeof(tmp));
  343. if (err < 0) {
  344. BAR_ERR("read raw temperature failed, err = %d\n", err);
  345. return err;
  346. }
  347. *temperature = be16_to_cpu(tmp);
  348. }
  349. obj->last_temp_measurement = jiffies;
  350. return err;
  351. }
  352. static int bmp_read_raw_pressure(struct i2c_client *client, s32 *pressure)
  353. {
  354. struct bmp_i2c_data *priv = i2c_get_clientdata(client);
  355. s32 err = 0;
  356. u32 tmp = 0;
  357. u8 data;
  358. if (NULL == client) {
  359. err = -EINVAL;
  360. return err;
  361. }
  362. if (priv->sensor_type == BMP180_TYPE) { /* BMP180 */
  363. err = bmp_i2c_read_block(client, BMP180_CTRLMEAS_REG_MC__REG, &data, 1);
  364. data = BMP_SET_BITSLICE(data, BMP180_CTRLMEAS_REG_MC, BMP180_PRESSURE_MEASUREMENT);
  365. err += bmp_i2c_write_block(client, BMP180_CTRLMEAS_REG_MC__REG, &data, 1);
  366. if (err < 0) {
  367. BAR_ERR("start measure pressure failed, err = %d\n", err);
  368. return err;
  369. }
  370. /* wait for the end of conversion */
  371. msleep(2 + (3 << (priv->oversampling_p - 1)) + 10);
  372. /* copy data into a u32 (4 bytes), but skip the first byte. */
  373. err = bmp_i2c_read_block(client,
  374. BMP180_CONVERSION_REGISTER_MSB, ((u8 *) &tmp) + 1, 3);
  375. if (err < 0) {
  376. BAR_ERR("read raw pressure failed, err = %d\n", err);
  377. return err;
  378. }
  379. *pressure = be32_to_cpu(tmp);
  380. *pressure >>= (8 - (priv->oversampling_p - 1));
  381. }
  382. #ifdef CONFIG_BMP_LOWPASS
  383. /*
  384. *Example: firlen = 16, filter buffer = [0] ... [15],
  385. *when 17th data come, replace [0] with this new data.
  386. *Then, average this filter buffer and report average value to upper layer.
  387. */
  388. if (atomic_read(&priv->filter)) {
  389. if (atomic_read(&priv->fir_en) && !atomic_read(&priv->suspend)) {
  390. int idx, firlen = atomic_read(&priv->firlen);
  391. if (priv->fir.num < firlen) {
  392. priv->fir.raw[priv->fir.num][BMP_PRESSURE] = *pressure;
  393. priv->fir.sum[BMP_PRESSURE] += *pressure;
  394. if (atomic_read(&priv->trace) & BAR_TRC_FILTER) {
  395. BAR_LOG("add [%2d] [%5d] => [%5d]\n",
  396. priv->fir.num,
  397. priv->fir.raw
  398. [priv->fir.num][BMP_PRESSURE],
  399. priv->fir.sum[BMP_PRESSURE]);
  400. }
  401. priv->fir.num++;
  402. priv->fir.idx++;
  403. } else {
  404. idx = priv->fir.idx % firlen;
  405. priv->fir.sum[BMP_PRESSURE] -= priv->fir.raw[idx][BMP_PRESSURE];
  406. priv->fir.raw[idx][BMP_PRESSURE] = *pressure;
  407. priv->fir.sum[BMP_PRESSURE] += *pressure;
  408. priv->fir.idx++;
  409. *pressure = priv->fir.sum[BMP_PRESSURE] / firlen;
  410. if (atomic_read(&priv->trace) & BAR_TRC_FILTER) {
  411. BAR_LOG("add [%2d][%5d]=>[%5d]:[%5d]\n", idx,
  412. priv->fir.raw[idx][BMP_PRESSURE],
  413. priv->fir.sum[BMP_PRESSURE], *pressure);
  414. }
  415. }
  416. }
  417. }
  418. #endif
  419. return err;
  420. }
  421. /*
  422. *get compensated temperature
  423. *unit:10 degrees centigrade
  424. */
  425. static int bmp_get_temperature(struct i2c_client *client, char *buf, int bufsize)
  426. {
  427. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  428. long x1, x2;
  429. int status;
  430. s32 utemp = 0; /* uncompensated temperature */
  431. s32 temperature = 0;
  432. if (NULL == buf)
  433. return -1;
  434. if (NULL == client) {
  435. *buf = 0;
  436. return -2;
  437. }
  438. status = bmp_read_raw_temperature(client, &utemp);
  439. if (status != 0)
  440. return status;
  441. if (obj->sensor_type == BMP180_TYPE) { /* BMP180 */
  442. BAR_LOG("pressure sensor type is right\n");
  443. x1 = ((utemp - obj->bmp180_cali.AC6) * obj->bmp180_cali.AC5) >> 15;
  444. x2 = (obj->bmp180_cali.MC << 11) / (x1 + obj->bmp180_cali.MD);
  445. obj->t_fine = x1 + x2 - 4000;
  446. temperature = (x1 + x2 + 8) >> 4;
  447. }
  448. sprintf(buf, "%08x", temperature);
  449. if (atomic_read(&obj->trace) & BAR_TRC_IOCTL)
  450. BAR_LOG("compensated temperature value: %s\n", buf);
  451. return status;
  452. }
  453. /*
  454. *get compensated pressure
  455. *unit: hectopascal(hPa)
  456. */
  457. static int bmp_get_pressure(struct i2c_client *client, char *buf, int bufsize)
  458. {
  459. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  460. int status;
  461. int err;
  462. s32 temperature = 0, upressure = 0, pressure = 0;
  463. char temp_buf[BMP_BUFSIZE];
  464. if (NULL == buf)
  465. return -1;
  466. if (NULL == client) {
  467. *buf = 0;
  468. return -2;
  469. }
  470. /* update the ambient temperature according to the given meas. period */
  471. if (time_before(obj->last_temp_measurement + obj->temp_measurement_period, jiffies)) {
  472. status = bmp_get_temperature(client, temp_buf, BMP_BUFSIZE); /* update t_fine */
  473. if (status != 0)
  474. goto exit;
  475. err = kstrtoint(temp_buf, 10, &temperature);
  476. if (err)
  477. goto exit;
  478. }
  479. status = bmp_read_raw_pressure(client, &upressure);
  480. if (status != 0)
  481. goto exit;
  482. if (obj->sensor_type == BMP180_TYPE) { /* BMP180 */
  483. s32 x1, x2, x3, b3;
  484. u32 b4, b7;
  485. s32 p;
  486. x1 = (obj->t_fine * obj->t_fine) >> 12;
  487. x1 *= obj->bmp180_cali.B2;
  488. x1 >>= 11;
  489. x2 = obj->bmp180_cali.AC2 * obj->t_fine;
  490. x2 >>= 11;
  491. x3 = x1 + x2;
  492. b3 = (((((s32) obj->bmp180_cali.AC1) * 4 + x3)
  493. << (obj->oversampling_p - 1)) + 2);
  494. b3 >>= 2;
  495. x1 = (obj->bmp180_cali.AC3 * obj->t_fine) >> 13;
  496. x2 = (obj->bmp180_cali.B1 * ((obj->t_fine * obj->t_fine) >> 12))
  497. >> 16;
  498. x3 = (x1 + x2 + 2) >> 2;
  499. b4 = (obj->bmp180_cali.AC4 * (u32) (x3 + 32768)) >> 15;
  500. b7 = ((u32) upressure - b3) * (50000 >> (obj->oversampling_p - 1));
  501. p = ((b7 < 0x80000000) ? ((b7 << 1) / b4) : ((b7 / b4) * 2));
  502. x1 = p >> 8;
  503. x1 *= x1;
  504. x1 = (x1 * 3038) >> 16;
  505. x2 = (-7357 * p) >> 16;
  506. p += (x1 + x2 + 3791) >> 4;
  507. pressure = p;
  508. }
  509. sprintf(buf, "%08x", pressure);
  510. if (atomic_read(&obj->trace) & BAR_TRC_IOCTL)
  511. BAR_LOG("compensated pressure value: %s\n", buf);
  512. exit:
  513. return status;
  514. }
  515. /* bmp setting initialization */
  516. static int bmp_init_client(struct i2c_client *client)
  517. {
  518. int err = 0;
  519. BAR_FUN();
  520. err = bmp_get_chip_type(client);
  521. if (err < 0) {
  522. BAR_ERR("get chip type failed, err = %d\n", err);
  523. return err;
  524. }
  525. err = bmp_get_calibration_data(client);
  526. if (err < 0) {
  527. BAR_ERR("get calibration data failed, err = %d\n", err);
  528. return err;
  529. }
  530. err = bmp_set_powermode(client, BMP_SUSPEND_MODE);
  531. if (err < 0) {
  532. BAR_ERR("set power mode failed, err = %d\n", err);
  533. return err;
  534. }
  535. err = bmp_set_oversampling_p(client, BMP_OVERSAMPLING_8X);
  536. if (err < 0) {
  537. BAR_ERR("set pressure oversampling failed, err = %d\n", err);
  538. return err;
  539. }
  540. return 0;
  541. }
  542. static ssize_t show_chipinfo_value(struct device_driver *ddri, char *buf)
  543. {
  544. struct bmp_i2c_data *obj = obj_i2c_data;
  545. if (NULL == obj) {
  546. BAR_ERR("bmp i2c data pointer is null\n");
  547. return 0;
  548. }
  549. return snprintf(buf, PAGE_SIZE, "%s\n", obj->sensor_name);
  550. }
  551. static ssize_t show_sensordata_value(struct device_driver *ddri, char *buf)
  552. {
  553. struct bmp_i2c_data *obj = obj_i2c_data;
  554. char strbuf[BMP_BUFSIZE] = "";
  555. if (NULL == obj) {
  556. BAR_ERR("bmp i2c data pointer is null\n");
  557. return 0;
  558. }
  559. bmp_get_pressure(obj->client, strbuf, BMP_BUFSIZE);
  560. return snprintf(buf, PAGE_SIZE, "%s\n", strbuf);
  561. }
  562. static ssize_t show_trace_value(struct device_driver *ddri, char *buf)
  563. {
  564. ssize_t res;
  565. struct bmp_i2c_data *obj = obj_i2c_data;
  566. if (obj == NULL) {
  567. BAR_ERR("bmp i2c data pointer is null\n");
  568. return 0;
  569. }
  570. res = snprintf(buf, PAGE_SIZE, "0x%04X\n", atomic_read(&obj->trace));
  571. return res;
  572. }
  573. static ssize_t store_trace_value(struct device_driver *ddri, const char *buf, size_t count)
  574. {
  575. struct bmp_i2c_data *obj = obj_i2c_data;
  576. int trace;
  577. if (obj == NULL) {
  578. BAR_ERR("i2c_data obj is null\n");
  579. return 0;
  580. }
  581. if (1 == sscanf(buf, "0x%x", &trace))
  582. atomic_set(&obj->trace, trace);
  583. else
  584. BAR_ERR("invalid content: '%s', length = %d\n", buf, count);
  585. return count;
  586. }
  587. static ssize_t show_status_value(struct device_driver *ddri, char *buf)
  588. {
  589. ssize_t len = 0;
  590. struct bmp_i2c_data *obj = obj_i2c_data;
  591. if (obj == NULL) {
  592. BAR_ERR("bmp i2c data pointer is null\n");
  593. return 0;
  594. }
  595. if (obj->hw)
  596. len += snprintf(buf + len, PAGE_SIZE - len, "CUST: %d %d (%d %d)\n",
  597. obj->hw->i2c_num,
  598. obj->hw->direction, obj->hw->power_id, obj->hw->power_vol);
  599. else
  600. len += snprintf(buf + len, PAGE_SIZE - len, "CUST: NULL\n");
  601. len += snprintf(buf + len, PAGE_SIZE - len, "i2c addr:%#x,ver:%s\n",
  602. obj->client->addr, BMP_DRIVER_VERSION);
  603. return len;
  604. }
  605. static ssize_t show_power_mode_value(struct device_driver *ddri, char *buf)
  606. {
  607. ssize_t len = 0;
  608. struct bmp_i2c_data *obj = obj_i2c_data;
  609. if (obj == NULL) {
  610. BAR_ERR("bmp i2c data pointer is null\n");
  611. return 0;
  612. }
  613. len += snprintf(buf + len, PAGE_SIZE - len, "%s mode\n",
  614. obj->power_mode == BMP_NORMAL_MODE ? "normal" : "suspend");
  615. return len;
  616. }
  617. static ssize_t store_power_mode_value(struct device_driver *ddri, const char *buf, size_t count)
  618. {
  619. struct bmp_i2c_data *obj = obj_i2c_data;
  620. unsigned long power_mode;
  621. int err;
  622. if (obj == NULL) {
  623. BAR_ERR("bmp i2c data pointer is null\n");
  624. return 0;
  625. }
  626. err = kstrtoul(buf, 10, &power_mode);
  627. if (err == 0) {
  628. err = bmp_set_powermode(obj->client, (enum BMP_POWERMODE_ENUM)(!!(power_mode)));
  629. if (err)
  630. return err;
  631. return count;
  632. }
  633. return err;
  634. }
  635. static DRIVER_ATTR(chipinfo, S_IRUGO, show_chipinfo_value, NULL);
  636. static DRIVER_ATTR(sensordata, S_IRUGO, show_sensordata_value, NULL);
  637. static DRIVER_ATTR(trace, S_IWUSR | S_IRUGO, show_trace_value, store_trace_value);
  638. static DRIVER_ATTR(status, S_IRUGO, show_status_value, NULL);
  639. static DRIVER_ATTR(powermode, S_IWUSR | S_IRUGO, show_power_mode_value, store_power_mode_value);
  640. static struct driver_attribute *bmp_attr_list[] = {
  641. &driver_attr_chipinfo, /* chip information */
  642. &driver_attr_sensordata, /* dump sensor data */
  643. &driver_attr_trace, /* trace log */
  644. &driver_attr_status, /* cust setting */
  645. &driver_attr_powermode, /* power mode */
  646. };
  647. static int bmp_create_attr(struct device_driver *driver)
  648. {
  649. int idx, err = 0;
  650. int num = (int)(sizeof(bmp_attr_list) / sizeof(bmp_attr_list[0]));
  651. if (NULL == driver)
  652. return -EINVAL;
  653. for (idx = 0; idx < num; idx++) {
  654. err = driver_create_file(driver, bmp_attr_list[idx]);
  655. if (err) {
  656. BAR_ERR("driver_create_file (%s) = %d\n",
  657. bmp_attr_list[idx]->attr.name, err);
  658. break;
  659. }
  660. }
  661. return err;
  662. }
  663. static int bmp_delete_attr(struct device_driver *driver)
  664. {
  665. int idx, err = 0;
  666. int num = (int)(sizeof(bmp_attr_list) / sizeof(bmp_attr_list[0]));
  667. if (NULL == driver)
  668. return -EINVAL;
  669. for (idx = 0; idx < num; idx++)
  670. driver_remove_file(driver, bmp_attr_list[idx]);
  671. return err;
  672. }
  673. int barometer_operate(void *self, uint32_t command, void *buff_in, int size_in,
  674. void *buff_out, int size_out, int *actualout)
  675. {
  676. int err = 0;
  677. int value;
  678. struct bmp_i2c_data *priv = (struct bmp_i2c_data *)self;
  679. hwm_sensor_data *barometer_data;
  680. char buff[BMP_BUFSIZE];
  681. switch (command) {
  682. case SENSOR_DELAY:
  683. /* under construction */
  684. break;
  685. case SENSOR_ENABLE:
  686. if ((buff_in == NULL) || (size_in < sizeof(int))) {
  687. BAR_ERR("enable sensor parameter error\n");
  688. err = -EINVAL;
  689. } else {
  690. mutex_lock(&bmp180_op_mutex);
  691. /* value:[0--->suspend, 1--->normal] */
  692. value = *(int *)buff_in;
  693. BAR_LOG("sensor enable/disable command: %s\n",
  694. value ? "enable" : "disable");
  695. err = bmp_set_powermode(priv->client, (enum BMP_POWERMODE_ENUM)(!!value));
  696. if (err)
  697. BAR_ERR("set power mode failed, err = %d\n", err);
  698. #ifdef CONFIG_BMP_LOWPASS
  699. /* clear filter buffer */
  700. if (value == 0)
  701. memset(&(priv->fir), 0, sizeof(struct data_filter));
  702. #endif
  703. mutex_unlock(&bmp180_op_mutex);
  704. }
  705. break;
  706. case SENSOR_GET_DATA:
  707. if ((buff_out == NULL) || (size_out < sizeof(hwm_sensor_data))) {
  708. BAR_ERR("get sensor data parameter error\n");
  709. err = -EINVAL;
  710. } else {
  711. mutex_lock(&bmp180_op_mutex);
  712. barometer_data = (hwm_sensor_data *) buff_out;
  713. err = bmp_get_pressure(priv->client, buff, BMP_BUFSIZE);
  714. if (err) {
  715. BAR_ERR("get compensated pressure value failed," "err = %d\n", err);
  716. return -1;
  717. }
  718. err = kstrtoint(buff, 10, &barometer_data->values[0]);
  719. if (err)
  720. break;
  721. barometer_data->values[1] = barometer_data->values[2] = 0;
  722. barometer_data->status = SENSOR_STATUS_ACCURACY_HIGH;
  723. barometer_data->value_divide = 100;
  724. mutex_unlock(&bmp180_op_mutex);
  725. }
  726. break;
  727. default:
  728. BAR_ERR("barometer operate function no this parameter %d\n", command);
  729. err = -1;
  730. break;
  731. }
  732. return err;
  733. }
  734. #ifdef CONFIG_ID_TEMPERATURE
  735. int temperature_operate(void *self, uint32_t command, void *buff_in,
  736. int size_in, void *buff_out, int size_out, int *actualout)
  737. {
  738. int err = 0;
  739. int value;
  740. struct bmp_i2c_data *priv = (struct bmp_i2c_data *)self;
  741. hwm_sensor_data *temperature_data;
  742. char buff[BMP_BUFSIZE];
  743. switch (command) {
  744. case SENSOR_DELAY:
  745. /* under construction */
  746. break;
  747. case SENSOR_ENABLE:
  748. if ((buff_in == NULL) || (size_in < sizeof(int))) {
  749. BAR_ERR("enable sensor parameter error\n");
  750. err = -EINVAL;
  751. } else {
  752. mutex_lock(&bmp180_op_mutex);
  753. /* value:[0--->suspend, 1--->normal] */
  754. value = *(int *)buff_in;
  755. BAR_LOG("sensor enable/disable command: %s\n",
  756. value ? "enable" : "disable");
  757. err = bmp_set_powermode(priv->client, (enum BMP_POWERMODE_ENUM)(!!value));
  758. if (err)
  759. BAR_ERR("set power mode failed, err = %d\n", err);
  760. mutex_unlock(&bmp180_op_mutex);
  761. }
  762. break;
  763. case SENSOR_GET_DATA:
  764. if ((buff_out == NULL) || (size_out < sizeof(hwm_sensor_data))) {
  765. BAR_ERR("get sensor data parameter error\n");
  766. err = -EINVAL;
  767. } else {
  768. mutex_lock(&bmp180_op_mutex);
  769. temperature_data = (hwm_sensor_data *) buff_out;
  770. err = bmp_get_temperature(priv->client, buff, BMP_BUFSIZE);
  771. if (err) {
  772. BAR_ERR("get compensated temperature value failed,err = %d\n", err);
  773. return -1;
  774. }
  775. err = kstrtoint(buff, 10, &temperature_data->values[0]);
  776. if (err)
  777. break;
  778. temperature_data->values[1] = temperature_data->values[2] = 0;
  779. temperature_data->status = SENSOR_STATUS_ACCURACY_HIGH;
  780. temperature_data->value_divide = 100;
  781. mutex_unlock(&bmp180_op_mutex);
  782. }
  783. break;
  784. default:
  785. BAR_ERR("temperature operate function no this parameter %d\n", command);
  786. err = -1;
  787. break;
  788. }
  789. return err;
  790. }
  791. #endif /* CONFIG_ID_TEMPERATURE */
  792. static int bmp_open(struct inode *inode, struct file *file)
  793. {
  794. file->private_data = obj_i2c_data;
  795. if (file->private_data == NULL) {
  796. BAR_ERR("null pointer\n");
  797. return -EINVAL;
  798. }
  799. return nonseekable_open(inode, file);
  800. }
  801. static int bmp_release(struct inode *inode, struct file *file)
  802. {
  803. file->private_data = NULL;
  804. return 0;
  805. }
  806. static long bmp_unlocked_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
  807. {
  808. struct bmp_i2c_data *obj = (struct bmp_i2c_data *)file->private_data;
  809. struct i2c_client *client = obj->client;
  810. char strbuf[BMP_BUFSIZE];
  811. u32 dat = 0;
  812. void __user *data;
  813. int err = 0;
  814. if (_IOC_DIR(cmd) & _IOC_READ)
  815. err = !access_ok(VERIFY_WRITE, (void __user *)arg, _IOC_SIZE(cmd));
  816. else if (_IOC_DIR(cmd) & _IOC_WRITE)
  817. err = !access_ok(VERIFY_READ, (void __user *)arg, _IOC_SIZE(cmd));
  818. if (err) {
  819. BAR_ERR("access error: %08X, (%2d, %2d)\n", cmd, _IOC_DIR(cmd), _IOC_SIZE(cmd));
  820. return -EFAULT;
  821. }
  822. switch (cmd) {
  823. case BAROMETER_IOCTL_INIT:
  824. bmp_init_client(client);
  825. err = bmp_set_powermode(client, BMP_NORMAL_MODE);
  826. if (err) {
  827. err = -EFAULT;
  828. break;
  829. }
  830. break;
  831. case BAROMETER_IOCTL_READ_CHIPINFO:
  832. data = (void __user *)arg;
  833. if (NULL == data) {
  834. err = -EINVAL;
  835. break;
  836. }
  837. strcpy(strbuf, obj->sensor_name);
  838. if (copy_to_user(data, strbuf, strlen(strbuf) + 1)) {
  839. err = -EFAULT;
  840. break;
  841. }
  842. break;
  843. case BAROMETER_GET_PRESS_DATA:
  844. data = (void __user *)arg;
  845. if (NULL == data) {
  846. err = -EINVAL;
  847. break;
  848. }
  849. bmp_get_pressure(client, strbuf, BMP_BUFSIZE);
  850. err = kstrtoint(strbuf, 10, &dat);
  851. if (err)
  852. break;
  853. if (copy_to_user(data, &dat, sizeof(dat))) {
  854. err = -EFAULT;
  855. break;
  856. }
  857. break;
  858. case BAROMETER_GET_TEMP_DATA:
  859. data = (void __user *)arg;
  860. if (NULL == data) {
  861. err = -EINVAL;
  862. break;
  863. }
  864. bmp_get_temperature(client, strbuf, BMP_BUFSIZE);
  865. err = kstrtoint(strbuf, 10, &dat);
  866. if (err)
  867. break;
  868. if (copy_to_user(data, &dat, sizeof(dat))) {
  869. err = -EFAULT;
  870. break;
  871. }
  872. break;
  873. default:
  874. BAR_ERR("unknown IOCTL: 0x%08x\n", cmd);
  875. err = -ENOIOCTLCMD;
  876. break;
  877. }
  878. return err;
  879. }
  880. static const struct file_operations bmp_fops = {
  881. .owner = THIS_MODULE,
  882. .open = bmp_open,
  883. .release = bmp_release,
  884. .unlocked_ioctl = bmp_unlocked_ioctl,
  885. };
  886. static struct miscdevice bmp_device = {
  887. .minor = MISC_DYNAMIC_MINOR,
  888. .name = "barometer",
  889. .fops = &bmp_fops,
  890. };
  891. static int bmp_suspend(struct i2c_client *client, pm_message_t msg)
  892. {
  893. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  894. int err = 0;
  895. BAR_FUN();
  896. mutex_lock(&bmp180_op_mutex);
  897. if (msg.event == PM_EVENT_SUSPEND) {
  898. if (NULL == obj) {
  899. BAR_ERR("null pointer\n");
  900. mutex_unlock(&bmp180_op_mutex);
  901. return -EINVAL;
  902. }
  903. atomic_set(&obj->suspend, 1);
  904. err = bmp_set_powermode(obj->client, BMP_SUSPEND_MODE);
  905. if (err) {
  906. BAR_ERR("bmp set suspend mode failed, err = %d\n", err);
  907. mutex_unlock(&bmp180_op_mutex);
  908. return err;
  909. }
  910. bmp_power(obj->hw, 0);
  911. }
  912. mutex_unlock(&bmp180_op_mutex);
  913. return err;
  914. }
  915. static int bmp_resume(struct i2c_client *client)
  916. {
  917. struct bmp_i2c_data *obj = i2c_get_clientdata(client);
  918. int err;
  919. BAR_FUN();
  920. mutex_lock(&bmp180_op_mutex);
  921. if (NULL == obj) {
  922. BAR_ERR("null pointer\n");
  923. mutex_unlock(&bmp180_op_mutex);
  924. return -EINVAL;
  925. }
  926. bmp_power(obj->hw, 1);
  927. err = bmp_init_client(obj->client);
  928. if (err) {
  929. BAR_ERR("initialize client fail\n");
  930. mutex_unlock(&bmp180_op_mutex);
  931. return err;
  932. }
  933. #ifdef CONFIG_BMP_LOWPASS
  934. memset(&obj->fir, 0x00, sizeof(obj->fir));
  935. #endif
  936. atomic_set(&obj->suspend, 0);
  937. mutex_unlock(&bmp180_op_mutex);
  938. return 0;
  939. }
  940. static int bmp_i2c_detect(struct i2c_client *client, struct i2c_board_info *info)
  941. {
  942. strcpy(info->type, BMP_DEV_NAME);
  943. return 0;
  944. }
  945. static int bmp_i2c_probe(struct i2c_client *client, const struct i2c_device_id *id)
  946. {
  947. struct bmp_i2c_data *obj;
  948. struct hwmsen_object sobj_p;
  949. #ifdef CONFIG_ID_TEMPERATURE
  950. struct hwmsen_object sobj_t;
  951. #endif
  952. int err = 0;
  953. BAR_FUN();
  954. obj = kzalloc(sizeof(*obj), GFP_KERNEL);
  955. if (!obj) {
  956. err = -ENOMEM;
  957. goto exit;
  958. }
  959. obj->hw = get_cust_baro_hw();
  960. obj_i2c_data = obj;
  961. obj->client = client;
  962. i2c_set_clientdata(client, obj);
  963. atomic_set(&obj->trace, 0);
  964. atomic_set(&obj->suspend, 0);
  965. obj->power_mode = BMP_UNDEFINED_POWERMODE;
  966. obj->oversampling_p = BMP_UNDEFINED_OVERSAMPLING;
  967. obj->last_temp_measurement = 0;
  968. obj->temp_measurement_period = 1 * HZ; /* temperature update period:1s */
  969. #ifdef CONFIG_BMP_LOWPASS
  970. if (obj->hw->firlen > C_MAX_FIR_LENGTH)
  971. atomic_set(&obj->firlen, C_MAX_FIR_LENGTH);
  972. else
  973. atomic_set(&obj->firlen, obj->hw->firlen);
  974. if (atomic_read(&obj->firlen) > 0)
  975. atomic_set(&obj->fir_en, 1);
  976. #endif
  977. err = bmp_init_client(client);
  978. if (err)
  979. goto exit_init_client_failed;
  980. err = misc_register(&bmp_device);
  981. if (err) {
  982. BAR_ERR("misc device register failed, err = %d\n", err);
  983. goto exit_misc_device_register_failed;
  984. }
  985. err = bmp_create_attr(&bmp_barometer_driver.driver);
  986. if (err) {
  987. BAR_ERR("create attribute failed, err = %d\n", err);
  988. goto exit_create_attr_failed;
  989. }
  990. sobj_p.self = obj;
  991. sobj_p.polling = 1;
  992. sobj_p.sensor_operate = barometer_operate;
  993. err = hwmsen_attach(ID_PRESSURE, &sobj_p);
  994. if (err) {
  995. BAR_ERR("hwmsen attach failed, err = %d\n", err);
  996. goto exit_hwmsen_attach_pressure_failed;
  997. }
  998. #ifdef CONFIG_ID_TEMPERATURE
  999. sobj_t.self = obj;
  1000. sobj_t.polling = 1;
  1001. sobj_t.sensor_operate = temperature_operate;
  1002. err = hwmsen_attach(ID_TEMPRERATURE, &sobj_t);
  1003. if (err) {
  1004. BAR_ERR("hwmsen attach failed, err = %d\n", err);
  1005. goto exit_hwmsen_attach_temperature_failed;
  1006. }
  1007. #endif /* CONFIG_ID_TEMPERATURE */
  1008. BAR_LOG("%s: OK\n", __func__);
  1009. return 0;
  1010. #ifdef CONFIG_ID_TEMPERATURE
  1011. exit_hwmsen_attach_temperature_failed:
  1012. hwmsen_detach(ID_TEMPRERATURE);
  1013. #endif /* CONFIG_ID_TEMPERATURE */
  1014. exit_hwmsen_attach_pressure_failed:
  1015. bmp_delete_attr(&bmp_barometer_driver.driver);
  1016. exit_create_attr_failed:
  1017. misc_deregister(&bmp_device);
  1018. exit_misc_device_register_failed:
  1019. exit_init_client_failed:
  1020. kfree(obj);
  1021. exit:
  1022. BAR_ERR("err = %d\n", err);
  1023. return err;
  1024. }
  1025. static int bmp_i2c_remove(struct i2c_client *client)
  1026. {
  1027. int err = 0;
  1028. err = hwmsen_detach(ID_PRESSURE);
  1029. if (err)
  1030. BAR_ERR("hwmsen_detach ID_PRESSURE failed, err = %d\n", err);
  1031. #ifdef CONFIG_ID_TEMPERATURE
  1032. err = hwmsen_detach(ID_TEMPRERATURE);
  1033. if (err)
  1034. BAR_ERR("hwmsen_detach ID_TEMPRERATURE failed, err = %d\n", err);
  1035. #endif
  1036. err = bmp_delete_attr(&bmp_barometer_driver.driver);
  1037. if (err)
  1038. BAR_ERR("bmp_delete_attr failed, err = %d\n", err);
  1039. err = misc_deregister(&bmp_device);
  1040. if (err)
  1041. BAR_ERR("misc_deregister failed, err = %d\n", err);
  1042. obj_i2c_data = NULL;
  1043. i2c_unregister_device(client);
  1044. kfree(i2c_get_clientdata(client));
  1045. return 0;
  1046. }
  1047. static int bmp_probe(struct platform_device *pdev)
  1048. {
  1049. struct baro_hw *hw = get_cust_baro_hw();
  1050. BAR_FUN();
  1051. bmp_power(hw, 1);
  1052. if (i2c_add_driver(&bmp_i2c_driver)) {
  1053. BAR_ERR("add i2c driver failed\n");
  1054. return -1;
  1055. }
  1056. return 0;
  1057. }
  1058. static int bmp_remove(struct platform_device *pdev)
  1059. {
  1060. struct baro_hw *hw = get_cust_baro_hw();
  1061. BAR_FUN();
  1062. bmp_power(hw, 0);
  1063. i2c_del_driver(&bmp_i2c_driver);
  1064. return 0;
  1065. }
  1066. static struct i2c_driver bmp_i2c_driver = {
  1067. .driver = {
  1068. .owner = THIS_MODULE,
  1069. .name = BMP_DEV_NAME,
  1070. },
  1071. .probe = bmp_i2c_probe,
  1072. .remove = bmp_i2c_remove,
  1073. .detect = bmp_i2c_detect,
  1074. .suspend = bmp_suspend,
  1075. .resume = bmp_resume,
  1076. .id_table = bmp_i2c_id,
  1077. };
  1078. static struct platform_driver bmp_barometer_driver = {
  1079. .probe = bmp_probe,
  1080. .remove = bmp_remove,
  1081. .driver = {
  1082. .name = "barometer",
  1083. .owner = THIS_MODULE,
  1084. }
  1085. };
  1086. static int __init bmp_init(void)
  1087. {
  1088. struct baro_hw *hw = get_cust_baro_hw();
  1089. BAR_FUN();
  1090. i2c_register_board_info(hw->i2c_num, &bmp_i2c_info, 1);
  1091. if (platform_driver_register(&bmp_barometer_driver)) {
  1092. BAR_ERR("register bmp platform driver failed");
  1093. return -ENODEV;
  1094. }
  1095. return 0;
  1096. }
  1097. static void __exit bmp_exit(void)
  1098. {
  1099. BAR_FUN();
  1100. platform_driver_unregister(&bmp_barometer_driver);
  1101. }
  1102. module_init(bmp_init);
  1103. module_exit(bmp_exit);
  1104. MODULE_LICENSE("GPLv2");
  1105. MODULE_DESCRIPTION("BMP180 I2C Driver");
  1106. MODULE_AUTHOR("deliang.tao@bosch-sensortec.com");
  1107. MODULE_VERSION(BMP_DRIVER_VERSION);