leds-lp5523.c 27 KB

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  1. /*
  2. * lp5523.c - LP5523 LED Driver
  3. *
  4. * Copyright (C) 2010 Nokia Corporation
  5. *
  6. * Contact: Samu Onkalo <samu.p.onkalo@nokia.com>
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * version 2 as published by the Free Software Foundation.
  11. *
  12. * This program is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  20. * 02110-1301 USA
  21. */
  22. #include <linux/module.h>
  23. #include <linux/init.h>
  24. #include <linux/i2c.h>
  25. #include <linux/mutex.h>
  26. #include <linux/gpio.h>
  27. #include <linux/interrupt.h>
  28. #include <linux/delay.h>
  29. #include <linux/ctype.h>
  30. #include <linux/spinlock.h>
  31. #include <linux/wait.h>
  32. #include <linux/leds.h>
  33. #include <linux/leds-lp5523.h>
  34. #include <linux/workqueue.h>
  35. #include <linux/slab.h>
  36. #define LP5523_REG_ENABLE 0x00
  37. #define LP5523_REG_OP_MODE 0x01
  38. #define LP5523_REG_RATIOMETRIC_MSB 0x02
  39. #define LP5523_REG_RATIOMETRIC_LSB 0x03
  40. #define LP5523_REG_ENABLE_LEDS_MSB 0x04
  41. #define LP5523_REG_ENABLE_LEDS_LSB 0x05
  42. #define LP5523_REG_LED_CNTRL_BASE 0x06
  43. #define LP5523_REG_LED_PWM_BASE 0x16
  44. #define LP5523_REG_LED_CURRENT_BASE 0x26
  45. #define LP5523_REG_CONFIG 0x36
  46. #define LP5523_REG_CHANNEL1_PC 0x37
  47. #define LP5523_REG_CHANNEL2_PC 0x38
  48. #define LP5523_REG_CHANNEL3_PC 0x39
  49. #define LP5523_REG_STATUS 0x3a
  50. #define LP5523_REG_GPO 0x3b
  51. #define LP5523_REG_VARIABLE 0x3c
  52. #define LP5523_REG_RESET 0x3d
  53. #define LP5523_REG_TEMP_CTRL 0x3e
  54. #define LP5523_REG_TEMP_READ 0x3f
  55. #define LP5523_REG_TEMP_WRITE 0x40
  56. #define LP5523_REG_LED_TEST_CTRL 0x41
  57. #define LP5523_REG_LED_TEST_ADC 0x42
  58. #define LP5523_REG_ENG1_VARIABLE 0x45
  59. #define LP5523_REG_ENG2_VARIABLE 0x46
  60. #define LP5523_REG_ENG3_VARIABLE 0x47
  61. #define LP5523_REG_MASTER_FADER1 0x48
  62. #define LP5523_REG_MASTER_FADER2 0x49
  63. #define LP5523_REG_MASTER_FADER3 0x4a
  64. #define LP5523_REG_CH1_PROG_START 0x4c
  65. #define LP5523_REG_CH2_PROG_START 0x4d
  66. #define LP5523_REG_CH3_PROG_START 0x4e
  67. #define LP5523_REG_PROG_PAGE_SEL 0x4f
  68. #define LP5523_REG_PROG_MEM 0x50
  69. #define LP5523_CMD_LOAD 0x15 /* 00010101 */
  70. #define LP5523_CMD_RUN 0x2a /* 00101010 */
  71. #define LP5523_CMD_DISABLED 0x00 /* 00000000 */
  72. #define LP5523_ENABLE 0x40
  73. #define LP5523_AUTO_INC 0x40
  74. #define LP5523_PWR_SAVE 0x20
  75. #define LP5523_PWM_PWR_SAVE 0x04
  76. #define LP5523_CP_1 0x08
  77. #define LP5523_CP_1_5 0x10
  78. #define LP5523_CP_AUTO 0x18
  79. #define LP5523_INT_CLK 0x01
  80. #define LP5523_AUTO_CLK 0x02
  81. #define LP5523_EN_LEDTEST 0x80
  82. #define LP5523_LEDTEST_DONE 0x80
  83. #define LP5523_DEFAULT_CURRENT 50 /* microAmps */
  84. #define LP5523_PROGRAM_LENGTH 32 /* in bytes */
  85. #define LP5523_PROGRAM_PAGES 6
  86. #define LP5523_ADC_SHORTCIRC_LIM 80
  87. #define LP5523_LEDS 9
  88. #define LP5523_ENGINES 3
  89. #define LP5523_ENG_MASK_BASE 0x30 /* 00110000 */
  90. #define LP5523_ENG_STATUS_MASK 0x07 /* 00000111 */
  91. #define LP5523_IRQ_FLAGS IRQF_TRIGGER_FALLING
  92. #define LP5523_EXT_CLK_USED 0x08
  93. #define LED_ACTIVE(mux, led) (!!(mux & (0x0001 << led)))
  94. #define SHIFT_MASK(id) (((id) - 1) * 2)
  95. struct lp5523_engine {
  96. const struct attribute_group *attributes;
  97. int id;
  98. u8 mode;
  99. u8 prog_page;
  100. u8 mux_page;
  101. u16 led_mux;
  102. u8 engine_mask;
  103. };
  104. struct lp5523_led {
  105. int id;
  106. u8 chan_nr;
  107. u8 led_current;
  108. u8 max_current;
  109. struct led_classdev cdev;
  110. struct work_struct brightness_work;
  111. u8 brightness;
  112. };
  113. struct lp5523_chip {
  114. struct mutex lock; /* Serialize control */
  115. struct i2c_client *client;
  116. struct lp5523_engine engines[LP5523_ENGINES];
  117. struct lp5523_led leds[LP5523_LEDS];
  118. struct lp5523_platform_data *pdata;
  119. u8 num_channels;
  120. u8 num_leds;
  121. };
  122. static inline struct lp5523_led *cdev_to_led(struct led_classdev *cdev)
  123. {
  124. return container_of(cdev, struct lp5523_led, cdev);
  125. }
  126. static inline struct lp5523_chip *engine_to_lp5523(struct lp5523_engine *engine)
  127. {
  128. return container_of(engine, struct lp5523_chip,
  129. engines[engine->id - 1]);
  130. }
  131. static inline struct lp5523_chip *led_to_lp5523(struct lp5523_led *led)
  132. {
  133. return container_of(led, struct lp5523_chip,
  134. leds[led->id]);
  135. }
  136. static int lp5523_set_mode(struct lp5523_engine *engine, u8 mode);
  137. static int lp5523_set_engine_mode(struct lp5523_engine *engine, u8 mode);
  138. static int lp5523_load_program(struct lp5523_engine *engine, u8 *pattern);
  139. static void lp5523_led_brightness_work(struct work_struct *work);
  140. static int lp5523_write(struct i2c_client *client, u8 reg, u8 value)
  141. {
  142. return i2c_smbus_write_byte_data(client, reg, value);
  143. }
  144. static int lp5523_read(struct i2c_client *client, u8 reg, u8 *buf)
  145. {
  146. s32 ret = i2c_smbus_read_byte_data(client, reg);
  147. if (ret < 0)
  148. return -EIO;
  149. *buf = ret;
  150. return 0;
  151. }
  152. static int lp5523_detect(struct i2c_client *client)
  153. {
  154. int ret;
  155. u8 buf;
  156. ret = lp5523_write(client, LP5523_REG_ENABLE, 0x40);
  157. if (ret)
  158. return ret;
  159. ret = lp5523_read(client, LP5523_REG_ENABLE, &buf);
  160. if (ret)
  161. return ret;
  162. if (buf == 0x40)
  163. return 0;
  164. else
  165. return -ENODEV;
  166. }
  167. static int lp5523_configure(struct i2c_client *client)
  168. {
  169. struct lp5523_chip *chip = i2c_get_clientdata(client);
  170. int ret = 0;
  171. u8 status;
  172. /* one pattern per engine setting led mux start and stop addresses */
  173. u8 pattern[][LP5523_PROGRAM_LENGTH] = {
  174. { 0x9c, 0x30, 0x9c, 0xb0, 0x9d, 0x80, 0xd8, 0x00, 0},
  175. { 0x9c, 0x40, 0x9c, 0xc0, 0x9d, 0x80, 0xd8, 0x00, 0},
  176. { 0x9c, 0x50, 0x9c, 0xd0, 0x9d, 0x80, 0xd8, 0x00, 0},
  177. };
  178. lp5523_write(client, LP5523_REG_RESET, 0xff);
  179. usleep_range(10000, 100000);
  180. ret |= lp5523_write(client, LP5523_REG_ENABLE, LP5523_ENABLE);
  181. /* Chip startup time after reset is 500 us */
  182. usleep_range(1000, 10000);
  183. ret |= lp5523_write(client, LP5523_REG_CONFIG,
  184. LP5523_AUTO_INC | LP5523_PWR_SAVE |
  185. LP5523_CP_AUTO | LP5523_AUTO_CLK |
  186. LP5523_PWM_PWR_SAVE);
  187. /* turn on all leds */
  188. ret |= lp5523_write(client, LP5523_REG_ENABLE_LEDS_MSB, 0x01);
  189. ret |= lp5523_write(client, LP5523_REG_ENABLE_LEDS_LSB, 0xff);
  190. /* hardcode 32 bytes of memory for each engine from program memory */
  191. ret |= lp5523_write(client, LP5523_REG_CH1_PROG_START, 0x00);
  192. ret |= lp5523_write(client, LP5523_REG_CH2_PROG_START, 0x10);
  193. ret |= lp5523_write(client, LP5523_REG_CH3_PROG_START, 0x20);
  194. /* write led mux address space for each channel */
  195. ret |= lp5523_load_program(&chip->engines[0], pattern[0]);
  196. ret |= lp5523_load_program(&chip->engines[1], pattern[1]);
  197. ret |= lp5523_load_program(&chip->engines[2], pattern[2]);
  198. if (ret) {
  199. dev_err(&client->dev, "could not load mux programs\n");
  200. return -1;
  201. }
  202. /* set all engines exec state and mode to run 00101010 */
  203. ret |= lp5523_write(client, LP5523_REG_ENABLE,
  204. (LP5523_CMD_RUN | LP5523_ENABLE));
  205. ret |= lp5523_write(client, LP5523_REG_OP_MODE, LP5523_CMD_RUN);
  206. if (ret) {
  207. dev_err(&client->dev, "could not start mux programs\n");
  208. return -1;
  209. }
  210. /* Wait 3ms and check the engine status */
  211. usleep_range(3000, 20000);
  212. lp5523_read(client, LP5523_REG_STATUS, &status);
  213. status &= LP5523_ENG_STATUS_MASK;
  214. if (status == LP5523_ENG_STATUS_MASK) {
  215. dev_dbg(&client->dev, "all engines configured\n");
  216. } else {
  217. dev_info(&client->dev, "status == %x\n", status);
  218. dev_err(&client->dev, "cound not configure LED engine\n");
  219. return -1;
  220. }
  221. dev_info(&client->dev, "disabling engines\n");
  222. ret |= lp5523_write(client, LP5523_REG_OP_MODE, LP5523_CMD_DISABLED);
  223. return ret;
  224. }
  225. static int lp5523_set_engine_mode(struct lp5523_engine *engine, u8 mode)
  226. {
  227. struct lp5523_chip *chip = engine_to_lp5523(engine);
  228. struct i2c_client *client = chip->client;
  229. int ret;
  230. u8 engine_state;
  231. ret = lp5523_read(client, LP5523_REG_OP_MODE, &engine_state);
  232. if (ret)
  233. goto fail;
  234. engine_state &= ~(engine->engine_mask);
  235. /* set mode only for this engine */
  236. mode &= engine->engine_mask;
  237. engine_state |= mode;
  238. ret |= lp5523_write(client, LP5523_REG_OP_MODE, engine_state);
  239. fail:
  240. return ret;
  241. }
  242. static int lp5523_load_mux(struct lp5523_engine *engine, u16 mux)
  243. {
  244. struct lp5523_chip *chip = engine_to_lp5523(engine);
  245. struct i2c_client *client = chip->client;
  246. int ret = 0;
  247. ret |= lp5523_set_engine_mode(engine, LP5523_CMD_LOAD);
  248. ret |= lp5523_write(client, LP5523_REG_PROG_PAGE_SEL, engine->mux_page);
  249. ret |= lp5523_write(client, LP5523_REG_PROG_MEM,
  250. (u8)(mux >> 8));
  251. ret |= lp5523_write(client, LP5523_REG_PROG_MEM + 1, (u8)(mux));
  252. engine->led_mux = mux;
  253. return ret;
  254. }
  255. static int lp5523_load_program(struct lp5523_engine *engine, u8 *pattern)
  256. {
  257. struct lp5523_chip *chip = engine_to_lp5523(engine);
  258. struct i2c_client *client = chip->client;
  259. int ret = 0;
  260. ret |= lp5523_set_engine_mode(engine, LP5523_CMD_LOAD);
  261. ret |= lp5523_write(client, LP5523_REG_PROG_PAGE_SEL,
  262. engine->prog_page);
  263. ret |= i2c_smbus_write_i2c_block_data(client, LP5523_REG_PROG_MEM,
  264. LP5523_PROGRAM_LENGTH, pattern);
  265. return ret;
  266. }
  267. static int lp5523_run_program(struct lp5523_engine *engine)
  268. {
  269. struct lp5523_chip *chip = engine_to_lp5523(engine);
  270. struct i2c_client *client = chip->client;
  271. int ret;
  272. ret = lp5523_write(client, LP5523_REG_ENABLE,
  273. LP5523_CMD_RUN | LP5523_ENABLE);
  274. if (ret)
  275. goto fail;
  276. ret = lp5523_set_engine_mode(engine, LP5523_CMD_RUN);
  277. fail:
  278. return ret;
  279. }
  280. static int lp5523_mux_parse(const char *buf, u16 *mux, size_t len)
  281. {
  282. int i;
  283. u16 tmp_mux = 0;
  284. len = len < LP5523_LEDS ? len : LP5523_LEDS;
  285. for (i = 0; i < len; i++) {
  286. switch (buf[i]) {
  287. case '1':
  288. tmp_mux |= (1 << i);
  289. break;
  290. case '0':
  291. break;
  292. case '\n':
  293. i = len;
  294. break;
  295. default:
  296. return -1;
  297. }
  298. }
  299. *mux = tmp_mux;
  300. return 0;
  301. }
  302. static void lp5523_mux_to_array(u16 led_mux, char *array)
  303. {
  304. int i, pos = 0;
  305. for (i = 0; i < LP5523_LEDS; i++)
  306. pos += sprintf(array + pos, "%x", LED_ACTIVE(led_mux, i));
  307. array[pos] = '\0';
  308. }
  309. /*--------------------------------------------------------------*/
  310. /* Sysfs interface */
  311. /*--------------------------------------------------------------*/
  312. static ssize_t show_engine_leds(struct device *dev,
  313. struct device_attribute *attr,
  314. char *buf, int nr)
  315. {
  316. struct i2c_client *client = to_i2c_client(dev);
  317. struct lp5523_chip *chip = i2c_get_clientdata(client);
  318. char mux[LP5523_LEDS + 1];
  319. lp5523_mux_to_array(chip->engines[nr - 1].led_mux, mux);
  320. return sprintf(buf, "%s\n", mux);
  321. }
  322. #define show_leds(nr) \
  323. static ssize_t show_engine##nr##_leds(struct device *dev, \
  324. struct device_attribute *attr, \
  325. char *buf) \
  326. { \
  327. return show_engine_leds(dev, attr, buf, nr); \
  328. }
  329. show_leds(1)
  330. show_leds(2)
  331. show_leds(3)
  332. static ssize_t store_engine_leds(struct device *dev,
  333. struct device_attribute *attr,
  334. const char *buf, size_t len, int nr)
  335. {
  336. struct i2c_client *client = to_i2c_client(dev);
  337. struct lp5523_chip *chip = i2c_get_clientdata(client);
  338. u16 mux = 0;
  339. if (lp5523_mux_parse(buf, &mux, len))
  340. return -EINVAL;
  341. if (lp5523_load_mux(&chip->engines[nr - 1], mux))
  342. return -EINVAL;
  343. return len;
  344. }
  345. #define store_leds(nr) \
  346. static ssize_t store_engine##nr##_leds(struct device *dev, \
  347. struct device_attribute *attr, \
  348. const char *buf, size_t len) \
  349. { \
  350. return store_engine_leds(dev, attr, buf, len, nr); \
  351. }
  352. store_leds(1)
  353. store_leds(2)
  354. store_leds(3)
  355. static ssize_t lp5523_selftest(struct device *dev,
  356. struct device_attribute *attr,
  357. char *buf)
  358. {
  359. struct i2c_client *client = to_i2c_client(dev);
  360. struct lp5523_chip *chip = i2c_get_clientdata(client);
  361. int i, ret, pos = 0;
  362. int led = 0;
  363. u8 status, adc, vdd;
  364. mutex_lock(&chip->lock);
  365. ret = lp5523_read(chip->client, LP5523_REG_STATUS, &status);
  366. if (ret < 0)
  367. goto fail;
  368. /* Check that ext clock is really in use if requested */
  369. if ((chip->pdata) && (chip->pdata->clock_mode == LP5523_CLOCK_EXT))
  370. if ((status & LP5523_EXT_CLK_USED) == 0)
  371. goto fail;
  372. /* Measure VDD (i.e. VBAT) first (channel 16 corresponds to VDD) */
  373. lp5523_write(chip->client, LP5523_REG_LED_TEST_CTRL,
  374. LP5523_EN_LEDTEST | 16);
  375. usleep_range(3000, 10000);
  376. ret = lp5523_read(chip->client, LP5523_REG_STATUS, &status);
  377. if (!(status & LP5523_LEDTEST_DONE))
  378. usleep_range(3000, 10000);
  379. ret |= lp5523_read(chip->client, LP5523_REG_LED_TEST_ADC, &vdd);
  380. vdd--; /* There may be some fluctuation in measurement */
  381. for (i = 0; i < LP5523_LEDS; i++) {
  382. /* Skip non-existing channels */
  383. if (chip->pdata->led_config[i].led_current == 0)
  384. continue;
  385. /* Set default current */
  386. lp5523_write(chip->client,
  387. LP5523_REG_LED_CURRENT_BASE + i,
  388. chip->pdata->led_config[i].led_current);
  389. lp5523_write(chip->client, LP5523_REG_LED_PWM_BASE + i, 0xff);
  390. /* let current stabilize 2ms before measurements start */
  391. usleep_range(2000, 10000);
  392. lp5523_write(chip->client,
  393. LP5523_REG_LED_TEST_CTRL,
  394. LP5523_EN_LEDTEST | i);
  395. /* ledtest takes 2.7ms */
  396. usleep_range(3000, 10000);
  397. ret = lp5523_read(chip->client, LP5523_REG_STATUS, &status);
  398. if (!(status & LP5523_LEDTEST_DONE))
  399. usleep_range(3000, 10000);
  400. ret |= lp5523_read(chip->client, LP5523_REG_LED_TEST_ADC, &adc);
  401. if (adc >= vdd || adc < LP5523_ADC_SHORTCIRC_LIM)
  402. pos += sprintf(buf + pos, "LED %d FAIL\n", i);
  403. lp5523_write(chip->client, LP5523_REG_LED_PWM_BASE + i, 0x00);
  404. /* Restore current */
  405. lp5523_write(chip->client,
  406. LP5523_REG_LED_CURRENT_BASE + i,
  407. chip->leds[led].led_current);
  408. led++;
  409. }
  410. if (pos == 0)
  411. pos = sprintf(buf, "OK\n");
  412. goto release_lock;
  413. fail:
  414. pos = sprintf(buf, "FAIL\n");
  415. release_lock:
  416. mutex_unlock(&chip->lock);
  417. return pos;
  418. }
  419. static void lp5523_set_brightness(struct led_classdev *cdev,
  420. enum led_brightness brightness)
  421. {
  422. struct lp5523_led *led = cdev_to_led(cdev);
  423. led->brightness = (u8)brightness;
  424. schedule_work(&led->brightness_work);
  425. }
  426. static void lp5523_led_brightness_work(struct work_struct *work)
  427. {
  428. struct lp5523_led *led = container_of(work,
  429. struct lp5523_led,
  430. brightness_work);
  431. struct lp5523_chip *chip = led_to_lp5523(led);
  432. struct i2c_client *client = chip->client;
  433. mutex_lock(&chip->lock);
  434. lp5523_write(client, LP5523_REG_LED_PWM_BASE + led->chan_nr,
  435. led->brightness);
  436. mutex_unlock(&chip->lock);
  437. }
  438. static int lp5523_do_store_load(struct lp5523_engine *engine,
  439. const char *buf, size_t len)
  440. {
  441. struct lp5523_chip *chip = engine_to_lp5523(engine);
  442. struct i2c_client *client = chip->client;
  443. int ret, nrchars, offset = 0, i = 0;
  444. char c[3];
  445. unsigned cmd;
  446. u8 pattern[LP5523_PROGRAM_LENGTH] = {0};
  447. while ((offset < len - 1) && (i < LP5523_PROGRAM_LENGTH)) {
  448. /* separate sscanfs because length is working only for %s */
  449. ret = sscanf(buf + offset, "%2s%n ", c, &nrchars);
  450. ret = sscanf(c, "%2x", &cmd);
  451. if (ret != 1)
  452. goto fail;
  453. pattern[i] = (u8)cmd;
  454. offset += nrchars;
  455. i++;
  456. }
  457. /* Each instruction is 16bit long. Check that length is even */
  458. if (i % 2)
  459. goto fail;
  460. mutex_lock(&chip->lock);
  461. ret = lp5523_load_program(engine, pattern);
  462. mutex_unlock(&chip->lock);
  463. if (ret) {
  464. dev_err(&client->dev, "failed loading pattern\n");
  465. return ret;
  466. }
  467. return len;
  468. fail:
  469. dev_err(&client->dev, "wrong pattern format\n");
  470. return -EINVAL;
  471. }
  472. static ssize_t store_engine_load(struct device *dev,
  473. struct device_attribute *attr,
  474. const char *buf, size_t len, int nr)
  475. {
  476. struct i2c_client *client = to_i2c_client(dev);
  477. struct lp5523_chip *chip = i2c_get_clientdata(client);
  478. return lp5523_do_store_load(&chip->engines[nr - 1], buf, len);
  479. }
  480. #define store_load(nr) \
  481. static ssize_t store_engine##nr##_load(struct device *dev, \
  482. struct device_attribute *attr, \
  483. const char *buf, size_t len) \
  484. { \
  485. return store_engine_load(dev, attr, buf, len, nr); \
  486. }
  487. store_load(1)
  488. store_load(2)
  489. store_load(3)
  490. static ssize_t show_engine_mode(struct device *dev,
  491. struct device_attribute *attr,
  492. char *buf, int nr)
  493. {
  494. struct i2c_client *client = to_i2c_client(dev);
  495. struct lp5523_chip *chip = i2c_get_clientdata(client);
  496. switch (chip->engines[nr - 1].mode) {
  497. case LP5523_CMD_RUN:
  498. return sprintf(buf, "run\n");
  499. case LP5523_CMD_LOAD:
  500. return sprintf(buf, "load\n");
  501. case LP5523_CMD_DISABLED:
  502. return sprintf(buf, "disabled\n");
  503. default:
  504. return sprintf(buf, "disabled\n");
  505. }
  506. }
  507. #define show_mode(nr) \
  508. static ssize_t show_engine##nr##_mode(struct device *dev, \
  509. struct device_attribute *attr, \
  510. char *buf) \
  511. { \
  512. return show_engine_mode(dev, attr, buf, nr); \
  513. }
  514. show_mode(1)
  515. show_mode(2)
  516. show_mode(3)
  517. static ssize_t store_engine_mode(struct device *dev,
  518. struct device_attribute *attr,
  519. const char *buf, size_t len, int nr)
  520. {
  521. struct i2c_client *client = to_i2c_client(dev);
  522. struct lp5523_chip *chip = i2c_get_clientdata(client);
  523. struct lp5523_engine *engine = &chip->engines[nr - 1];
  524. mutex_lock(&chip->lock);
  525. if (!strncmp(buf, "run", 3))
  526. lp5523_set_mode(engine, LP5523_CMD_RUN);
  527. else if (!strncmp(buf, "load", 4))
  528. lp5523_set_mode(engine, LP5523_CMD_LOAD);
  529. else if (!strncmp(buf, "disabled", 8))
  530. lp5523_set_mode(engine, LP5523_CMD_DISABLED);
  531. mutex_unlock(&chip->lock);
  532. return len;
  533. }
  534. #define store_mode(nr) \
  535. static ssize_t store_engine##nr##_mode(struct device *dev, \
  536. struct device_attribute *attr, \
  537. const char *buf, size_t len) \
  538. { \
  539. return store_engine_mode(dev, attr, buf, len, nr); \
  540. }
  541. store_mode(1)
  542. store_mode(2)
  543. store_mode(3)
  544. static ssize_t show_max_current(struct device *dev,
  545. struct device_attribute *attr,
  546. char *buf)
  547. {
  548. struct led_classdev *led_cdev = dev_get_drvdata(dev);
  549. struct lp5523_led *led = cdev_to_led(led_cdev);
  550. return sprintf(buf, "%d\n", led->max_current);
  551. }
  552. static ssize_t show_current(struct device *dev,
  553. struct device_attribute *attr,
  554. char *buf)
  555. {
  556. struct led_classdev *led_cdev = dev_get_drvdata(dev);
  557. struct lp5523_led *led = cdev_to_led(led_cdev);
  558. return sprintf(buf, "%d\n", led->led_current);
  559. }
  560. static ssize_t store_current(struct device *dev,
  561. struct device_attribute *attr,
  562. const char *buf, size_t len)
  563. {
  564. struct led_classdev *led_cdev = dev_get_drvdata(dev);
  565. struct lp5523_led *led = cdev_to_led(led_cdev);
  566. struct lp5523_chip *chip = led_to_lp5523(led);
  567. ssize_t ret;
  568. unsigned long curr;
  569. if (strict_strtoul(buf, 0, &curr))
  570. return -EINVAL;
  571. if (curr > led->max_current)
  572. return -EINVAL;
  573. mutex_lock(&chip->lock);
  574. ret = lp5523_write(chip->client,
  575. LP5523_REG_LED_CURRENT_BASE + led->chan_nr,
  576. (u8)curr);
  577. mutex_unlock(&chip->lock);
  578. if (ret < 0)
  579. return ret;
  580. led->led_current = (u8)curr;
  581. return len;
  582. }
  583. /* led class device attributes */
  584. static DEVICE_ATTR(led_current, S_IRUGO | S_IWUGO, show_current, store_current);
  585. static DEVICE_ATTR(max_current, S_IRUGO , show_max_current, NULL);
  586. static struct attribute *lp5523_led_attributes[] = {
  587. &dev_attr_led_current.attr,
  588. &dev_attr_max_current.attr,
  589. NULL,
  590. };
  591. static struct attribute_group lp5523_led_attribute_group = {
  592. .attrs = lp5523_led_attributes
  593. };
  594. /* device attributes */
  595. static DEVICE_ATTR(engine1_mode, S_IRUGO | S_IWUGO,
  596. show_engine1_mode, store_engine1_mode);
  597. static DEVICE_ATTR(engine2_mode, S_IRUGO | S_IWUGO,
  598. show_engine2_mode, store_engine2_mode);
  599. static DEVICE_ATTR(engine3_mode, S_IRUGO | S_IWUGO,
  600. show_engine3_mode, store_engine3_mode);
  601. static DEVICE_ATTR(engine1_leds, S_IRUGO | S_IWUGO,
  602. show_engine1_leds, store_engine1_leds);
  603. static DEVICE_ATTR(engine2_leds, S_IRUGO | S_IWUGO,
  604. show_engine2_leds, store_engine2_leds);
  605. static DEVICE_ATTR(engine3_leds, S_IRUGO | S_IWUGO,
  606. show_engine3_leds, store_engine3_leds);
  607. static DEVICE_ATTR(engine1_load, S_IWUGO, NULL, store_engine1_load);
  608. static DEVICE_ATTR(engine2_load, S_IWUGO, NULL, store_engine2_load);
  609. static DEVICE_ATTR(engine3_load, S_IWUGO, NULL, store_engine3_load);
  610. static DEVICE_ATTR(selftest, S_IRUGO, lp5523_selftest, NULL);
  611. static struct attribute *lp5523_attributes[] = {
  612. &dev_attr_engine1_mode.attr,
  613. &dev_attr_engine2_mode.attr,
  614. &dev_attr_engine3_mode.attr,
  615. &dev_attr_selftest.attr,
  616. NULL
  617. };
  618. static struct attribute *lp5523_engine1_attributes[] = {
  619. &dev_attr_engine1_load.attr,
  620. &dev_attr_engine1_leds.attr,
  621. NULL
  622. };
  623. static struct attribute *lp5523_engine2_attributes[] = {
  624. &dev_attr_engine2_load.attr,
  625. &dev_attr_engine2_leds.attr,
  626. NULL
  627. };
  628. static struct attribute *lp5523_engine3_attributes[] = {
  629. &dev_attr_engine3_load.attr,
  630. &dev_attr_engine3_leds.attr,
  631. NULL
  632. };
  633. static const struct attribute_group lp5523_group = {
  634. .attrs = lp5523_attributes,
  635. };
  636. static const struct attribute_group lp5523_engine_group[] = {
  637. {.attrs = lp5523_engine1_attributes },
  638. {.attrs = lp5523_engine2_attributes },
  639. {.attrs = lp5523_engine3_attributes },
  640. };
  641. static int lp5523_register_sysfs(struct i2c_client *client)
  642. {
  643. struct device *dev = &client->dev;
  644. int ret;
  645. ret = sysfs_create_group(&dev->kobj, &lp5523_group);
  646. if (ret < 0)
  647. return ret;
  648. return 0;
  649. }
  650. static void lp5523_unregister_sysfs(struct i2c_client *client)
  651. {
  652. struct lp5523_chip *chip = i2c_get_clientdata(client);
  653. struct device *dev = &client->dev;
  654. int i;
  655. sysfs_remove_group(&dev->kobj, &lp5523_group);
  656. for (i = 0; i < ARRAY_SIZE(chip->engines); i++)
  657. if (chip->engines[i].mode == LP5523_CMD_LOAD)
  658. sysfs_remove_group(&dev->kobj, &lp5523_engine_group[i]);
  659. for (i = 0; i < chip->num_leds; i++)
  660. sysfs_remove_group(&chip->leds[i].cdev.dev->kobj,
  661. &lp5523_led_attribute_group);
  662. }
  663. /*--------------------------------------------------------------*/
  664. /* Set chip operating mode */
  665. /*--------------------------------------------------------------*/
  666. static int lp5523_set_mode(struct lp5523_engine *engine, u8 mode)
  667. {
  668. /* engine to chip */
  669. struct lp5523_chip *chip = engine_to_lp5523(engine);
  670. struct i2c_client *client = chip->client;
  671. struct device *dev = &client->dev;
  672. int ret = 0;
  673. /* if in that mode already do nothing, except for run */
  674. if (mode == engine->mode && mode != LP5523_CMD_RUN)
  675. return 0;
  676. if (mode == LP5523_CMD_RUN) {
  677. ret = lp5523_run_program(engine);
  678. } else if (mode == LP5523_CMD_LOAD) {
  679. lp5523_set_engine_mode(engine, LP5523_CMD_DISABLED);
  680. lp5523_set_engine_mode(engine, LP5523_CMD_LOAD);
  681. ret = sysfs_create_group(&dev->kobj, engine->attributes);
  682. if (ret)
  683. return ret;
  684. } else if (mode == LP5523_CMD_DISABLED) {
  685. lp5523_set_engine_mode(engine, LP5523_CMD_DISABLED);
  686. }
  687. /* remove load attribute from sysfs if not in load mode */
  688. if (engine->mode == LP5523_CMD_LOAD && mode != LP5523_CMD_LOAD)
  689. sysfs_remove_group(&dev->kobj, engine->attributes);
  690. engine->mode = mode;
  691. return ret;
  692. }
  693. /*--------------------------------------------------------------*/
  694. /* Probe, Attach, Remove */
  695. /*--------------------------------------------------------------*/
  696. static int __init lp5523_init_engine(struct lp5523_engine *engine, int id)
  697. {
  698. if (id < 1 || id > LP5523_ENGINES)
  699. return -1;
  700. engine->id = id;
  701. engine->engine_mask = LP5523_ENG_MASK_BASE >> SHIFT_MASK(id);
  702. engine->prog_page = id - 1;
  703. engine->mux_page = id + 2;
  704. engine->attributes = &lp5523_engine_group[id - 1];
  705. return 0;
  706. }
  707. static int __init lp5523_init_led(struct lp5523_led *led, struct device *dev,
  708. int chan, struct lp5523_platform_data *pdata)
  709. {
  710. char name[32];
  711. int res;
  712. if (chan >= LP5523_LEDS)
  713. return -EINVAL;
  714. if (pdata->led_config[chan].led_current) {
  715. led->led_current = pdata->led_config[chan].led_current;
  716. led->max_current = pdata->led_config[chan].max_current;
  717. led->chan_nr = pdata->led_config[chan].chan_nr;
  718. if (led->chan_nr >= LP5523_LEDS) {
  719. dev_err(dev, "Use channel numbers between 0 and %d\n",
  720. LP5523_LEDS - 1);
  721. return -EINVAL;
  722. }
  723. snprintf(name, 32, "lp5523:channel%d", chan);
  724. led->cdev.name = name;
  725. led->cdev.brightness_set = lp5523_set_brightness;
  726. res = led_classdev_register(dev, &led->cdev);
  727. if (res < 0) {
  728. dev_err(dev, "couldn't register led on channel %d\n",
  729. chan);
  730. return res;
  731. }
  732. res = sysfs_create_group(&led->cdev.dev->kobj,
  733. &lp5523_led_attribute_group);
  734. if (res < 0) {
  735. dev_err(dev, "couldn't register current attribute\n");
  736. led_classdev_unregister(&led->cdev);
  737. return res;
  738. }
  739. } else {
  740. led->led_current = 0;
  741. }
  742. return 0;
  743. }
  744. static struct i2c_driver lp5523_driver;
  745. static int lp5523_probe(struct i2c_client *client,
  746. const struct i2c_device_id *id)
  747. {
  748. struct lp5523_chip *chip;
  749. struct lp5523_platform_data *pdata;
  750. int ret, i, led;
  751. chip = kzalloc(sizeof(*chip), GFP_KERNEL);
  752. if (!chip)
  753. return -ENOMEM;
  754. i2c_set_clientdata(client, chip);
  755. chip->client = client;
  756. pdata = client->dev.platform_data;
  757. if (!pdata) {
  758. dev_err(&client->dev, "no platform data\n");
  759. ret = -EINVAL;
  760. goto fail1;
  761. }
  762. mutex_init(&chip->lock);
  763. chip->pdata = pdata;
  764. if (pdata->setup_resources) {
  765. ret = pdata->setup_resources();
  766. if (ret < 0)
  767. goto fail1;
  768. }
  769. if (pdata->enable) {
  770. pdata->enable(0);
  771. usleep_range(1000, 10000);
  772. pdata->enable(1);
  773. usleep_range(1000, 10000); /* Spec says min 500us */
  774. }
  775. ret = lp5523_detect(client);
  776. if (ret)
  777. goto fail2;
  778. dev_info(&client->dev, "LP5523 Programmable led chip found\n");
  779. /* Initialize engines */
  780. for (i = 0; i < ARRAY_SIZE(chip->engines); i++) {
  781. ret = lp5523_init_engine(&chip->engines[i], i + 1);
  782. if (ret) {
  783. dev_err(&client->dev, "error initializing engine\n");
  784. goto fail2;
  785. }
  786. }
  787. ret = lp5523_configure(client);
  788. if (ret < 0) {
  789. dev_err(&client->dev, "error configuring chip\n");
  790. goto fail2;
  791. }
  792. /* Initialize leds */
  793. chip->num_channels = pdata->num_channels;
  794. chip->num_leds = 0;
  795. led = 0;
  796. for (i = 0; i < pdata->num_channels; i++) {
  797. /* Do not initialize channels that are not connected */
  798. if (pdata->led_config[i].led_current == 0)
  799. continue;
  800. ret = lp5523_init_led(&chip->leds[led], &client->dev, i, pdata);
  801. if (ret) {
  802. dev_err(&client->dev, "error initializing leds\n");
  803. goto fail3;
  804. }
  805. chip->num_leds++;
  806. chip->leds[led].id = led;
  807. /* Set LED current */
  808. lp5523_write(client,
  809. LP5523_REG_LED_CURRENT_BASE + chip->leds[led].chan_nr,
  810. chip->leds[led].led_current);
  811. INIT_WORK(&(chip->leds[led].brightness_work),
  812. lp5523_led_brightness_work);
  813. led++;
  814. }
  815. ret = lp5523_register_sysfs(client);
  816. if (ret) {
  817. dev_err(&client->dev, "registering sysfs failed\n");
  818. goto fail3;
  819. }
  820. return ret;
  821. fail3:
  822. for (i = 0; i < chip->num_leds; i++) {
  823. led_classdev_unregister(&chip->leds[i].cdev);
  824. cancel_work_sync(&chip->leds[i].brightness_work);
  825. }
  826. fail2:
  827. if (pdata->enable)
  828. pdata->enable(0);
  829. if (pdata->release_resources)
  830. pdata->release_resources();
  831. fail1:
  832. kfree(chip);
  833. return ret;
  834. }
  835. static int lp5523_remove(struct i2c_client *client)
  836. {
  837. struct lp5523_chip *chip = i2c_get_clientdata(client);
  838. int i;
  839. lp5523_unregister_sysfs(client);
  840. for (i = 0; i < chip->num_leds; i++) {
  841. led_classdev_unregister(&chip->leds[i].cdev);
  842. cancel_work_sync(&chip->leds[i].brightness_work);
  843. }
  844. if (chip->pdata->enable)
  845. chip->pdata->enable(0);
  846. if (chip->pdata->release_resources)
  847. chip->pdata->release_resources();
  848. kfree(chip);
  849. return 0;
  850. }
  851. static const struct i2c_device_id lp5523_id[] = {
  852. { "lp5523", 0 },
  853. { }
  854. };
  855. MODULE_DEVICE_TABLE(i2c, lp5523_id);
  856. static struct i2c_driver lp5523_driver = {
  857. .driver = {
  858. .name = "lp5523",
  859. },
  860. .probe = lp5523_probe,
  861. .remove = lp5523_remove,
  862. .id_table = lp5523_id,
  863. };
  864. static int __init lp5523_init(void)
  865. {
  866. int ret;
  867. ret = i2c_add_driver(&lp5523_driver);
  868. if (ret < 0)
  869. printk(KERN_ALERT "Adding lp5523 driver failed\n");
  870. return ret;
  871. }
  872. static void __exit lp5523_exit(void)
  873. {
  874. i2c_del_driver(&lp5523_driver);
  875. }
  876. module_init(lp5523_init);
  877. module_exit(lp5523_exit);
  878. MODULE_AUTHOR("Mathias Nyman <mathias.nyman@nokia.com>");
  879. MODULE_DESCRIPTION("LP5523 LED engine");
  880. MODULE_LICENSE("GPL");