leds-lp50xx.c 17 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. // TI LP50XX LED chip family driver
  3. // Copyright (C) 2018-20 Texas Instruments Incorporated - https://www.ti.com/
  4. #include <linux/gpio/consumer.h>
  5. #include <linux/i2c.h>
  6. #include <linux/init.h>
  7. #include <linux/leds.h>
  8. #include <linux/mod_devicetable.h>
  9. #include <linux/module.h>
  10. #include <linux/mutex.h>
  11. #include <linux/regmap.h>
  12. #include <linux/regulator/consumer.h>
  13. #include <linux/slab.h>
  14. #include <uapi/linux/uleds.h>
  15. #include <linux/led-class-multicolor.h>
  16. #include "leds.h"
  17. #define LP50XX_DEV_CFG0 0x00
  18. #define LP50XX_DEV_CFG1 0x01
  19. #define LP50XX_LED_CFG0 0x02
  20. /* LP5009 and LP5012 registers */
  21. #define LP5012_BNK_BRT 0x03
  22. #define LP5012_BNKA_CLR 0x04
  23. #define LP5012_BNKB_CLR 0x05
  24. #define LP5012_BNKC_CLR 0x06
  25. #define LP5012_LED0_BRT 0x07
  26. #define LP5012_OUT0_CLR 0x0b
  27. #define LP5012_RESET 0x17
  28. /* LP5018 and LP5024 registers */
  29. #define LP5024_BNK_BRT 0x03
  30. #define LP5024_BNKA_CLR 0x04
  31. #define LP5024_BNKB_CLR 0x05
  32. #define LP5024_BNKC_CLR 0x06
  33. #define LP5024_LED0_BRT 0x07
  34. #define LP5024_OUT0_CLR 0x0f
  35. #define LP5024_RESET 0x27
  36. /* LP5030 and LP5036 registers */
  37. #define LP5036_LED_CFG1 0x03
  38. #define LP5036_BNK_BRT 0x04
  39. #define LP5036_BNKA_CLR 0x05
  40. #define LP5036_BNKB_CLR 0x06
  41. #define LP5036_BNKC_CLR 0x07
  42. #define LP5036_LED0_BRT 0x08
  43. #define LP5036_OUT0_CLR 0x14
  44. #define LP5036_RESET 0x38
  45. #define LP50XX_SW_RESET 0xff
  46. #define LP50XX_CHIP_EN BIT(6)
  47. /* There are 3 LED outputs per bank */
  48. #define LP50XX_LEDS_PER_MODULE 3
  49. #define LP5009_MAX_LED_MODULES 2
  50. #define LP5012_MAX_LED_MODULES 4
  51. #define LP5018_MAX_LED_MODULES 6
  52. #define LP5024_MAX_LED_MODULES 8
  53. #define LP5030_MAX_LED_MODULES 10
  54. #define LP5036_MAX_LED_MODULES 12
  55. static const struct reg_default lp5012_reg_defs[] = {
  56. {LP50XX_DEV_CFG0, 0x0},
  57. {LP50XX_DEV_CFG1, 0x3c},
  58. {LP50XX_LED_CFG0, 0x0},
  59. {LP5012_BNK_BRT, 0xff},
  60. {LP5012_BNKA_CLR, 0x0f},
  61. {LP5012_BNKB_CLR, 0x0f},
  62. {LP5012_BNKC_CLR, 0x0f},
  63. {LP5012_LED0_BRT, 0x0f},
  64. /* LEDX_BRT registers are all 0xff for defaults */
  65. {0x08, 0xff}, {0x09, 0xff}, {0x0a, 0xff},
  66. {LP5012_OUT0_CLR, 0x0f},
  67. /* OUTX_CLR registers are all 0x0 for defaults */
  68. {0x0c, 0x00}, {0x0d, 0x00}, {0x0e, 0x00}, {0x0f, 0x00}, {0x10, 0x00},
  69. {0x11, 0x00}, {0x12, 0x00}, {0x13, 0x00}, {0x14, 0x00}, {0x15, 0x00},
  70. {0x16, 0x00},
  71. {LP5012_RESET, 0x00}
  72. };
  73. static const struct reg_default lp5024_reg_defs[] = {
  74. {LP50XX_DEV_CFG0, 0x0},
  75. {LP50XX_DEV_CFG1, 0x3c},
  76. {LP50XX_LED_CFG0, 0x0},
  77. {LP5024_BNK_BRT, 0xff},
  78. {LP5024_BNKA_CLR, 0x0f},
  79. {LP5024_BNKB_CLR, 0x0f},
  80. {LP5024_BNKC_CLR, 0x0f},
  81. {LP5024_LED0_BRT, 0x0f},
  82. /* LEDX_BRT registers are all 0xff for defaults */
  83. {0x08, 0xff}, {0x09, 0xff}, {0x0a, 0xff}, {0x0b, 0xff}, {0x0c, 0xff},
  84. {0x0d, 0xff}, {0x0e, 0xff},
  85. {LP5024_OUT0_CLR, 0x0f},
  86. /* OUTX_CLR registers are all 0x0 for defaults */
  87. {0x10, 0x00}, {0x11, 0x00}, {0x12, 0x00}, {0x13, 0x00}, {0x14, 0x00},
  88. {0x15, 0x00}, {0x16, 0x00}, {0x17, 0x00}, {0x18, 0x00}, {0x19, 0x00},
  89. {0x1a, 0x00}, {0x1b, 0x00}, {0x1c, 0x00}, {0x1d, 0x00}, {0x1e, 0x00},
  90. {0x1f, 0x00}, {0x20, 0x00}, {0x21, 0x00}, {0x22, 0x00}, {0x23, 0x00},
  91. {0x24, 0x00}, {0x25, 0x00}, {0x26, 0x00},
  92. {LP5024_RESET, 0x00}
  93. };
  94. static const struct reg_default lp5036_reg_defs[] = {
  95. {LP50XX_DEV_CFG0, 0x0},
  96. {LP50XX_DEV_CFG1, 0x3c},
  97. {LP50XX_LED_CFG0, 0x0},
  98. {LP5036_LED_CFG1, 0x0},
  99. {LP5036_BNK_BRT, 0xff},
  100. {LP5036_BNKA_CLR, 0x0f},
  101. {LP5036_BNKB_CLR, 0x0f},
  102. {LP5036_BNKC_CLR, 0x0f},
  103. {LP5036_LED0_BRT, 0x0f},
  104. /* LEDX_BRT registers are all 0xff for defaults */
  105. {0x08, 0xff}, {0x09, 0xff}, {0x0a, 0xff}, {0x0b, 0xff}, {0x0c, 0xff},
  106. {0x0d, 0xff}, {0x0e, 0xff}, {0x0f, 0xff}, {0x10, 0xff}, {0x11, 0xff},
  107. {0x12, 0xff}, {0x13, 0xff},
  108. {LP5036_OUT0_CLR, 0x0f},
  109. /* OUTX_CLR registers are all 0x0 for defaults */
  110. {0x15, 0x00}, {0x16, 0x00}, {0x17, 0x00}, {0x18, 0x00}, {0x19, 0x00},
  111. {0x1a, 0x00}, {0x1b, 0x00}, {0x1c, 0x00}, {0x1d, 0x00}, {0x1e, 0x00},
  112. {0x1f, 0x00}, {0x20, 0x00}, {0x21, 0x00}, {0x22, 0x00}, {0x23, 0x00},
  113. {0x24, 0x00}, {0x25, 0x00}, {0x26, 0x00}, {0x27, 0x00}, {0x28, 0x00},
  114. {0x29, 0x00}, {0x2a, 0x00}, {0x2b, 0x00}, {0x2c, 0x00}, {0x2d, 0x00},
  115. {0x2e, 0x00}, {0x2f, 0x00}, {0x30, 0x00}, {0x31, 0x00}, {0x32, 0x00},
  116. {0x33, 0x00}, {0x34, 0x00}, {0x35, 0x00}, {0x36, 0x00}, {0x37, 0x00},
  117. {LP5036_RESET, 0x00}
  118. };
  119. static const struct regmap_config lp5012_regmap_config = {
  120. .reg_bits = 8,
  121. .val_bits = 8,
  122. .max_register = LP5012_RESET,
  123. .reg_defaults = lp5012_reg_defs,
  124. .num_reg_defaults = ARRAY_SIZE(lp5012_reg_defs),
  125. .cache_type = REGCACHE_FLAT,
  126. };
  127. static const struct regmap_config lp5024_regmap_config = {
  128. .reg_bits = 8,
  129. .val_bits = 8,
  130. .max_register = LP5024_RESET,
  131. .reg_defaults = lp5024_reg_defs,
  132. .num_reg_defaults = ARRAY_SIZE(lp5024_reg_defs),
  133. .cache_type = REGCACHE_FLAT,
  134. };
  135. static const struct regmap_config lp5036_regmap_config = {
  136. .reg_bits = 8,
  137. .val_bits = 8,
  138. .max_register = LP5036_RESET,
  139. .reg_defaults = lp5036_reg_defs,
  140. .num_reg_defaults = ARRAY_SIZE(lp5036_reg_defs),
  141. .cache_type = REGCACHE_FLAT,
  142. };
  143. enum lp50xx_model {
  144. LP5009,
  145. LP5012,
  146. LP5018,
  147. LP5024,
  148. LP5030,
  149. LP5036,
  150. };
  151. /**
  152. * struct lp50xx_chip_info -
  153. * @lp50xx_regmap_config: regmap register configuration
  154. * @model_id: LED device model
  155. * @max_modules: total number of supported LED modules
  156. * @num_leds: number of LED outputs available on the device
  157. * @led_brightness0_reg: first brightness register of the device
  158. * @mix_out0_reg: first color mix register of the device
  159. * @bank_brt_reg: bank brightness register
  160. * @bank_mix_reg: color mix register
  161. * @reset_reg: device reset register
  162. */
  163. struct lp50xx_chip_info {
  164. const struct regmap_config *lp50xx_regmap_config;
  165. int model_id;
  166. u8 max_modules;
  167. u8 num_leds;
  168. u8 led_brightness0_reg;
  169. u8 mix_out0_reg;
  170. u8 bank_brt_reg;
  171. u8 bank_mix_reg;
  172. u8 reset_reg;
  173. };
  174. static const struct lp50xx_chip_info lp50xx_chip_info_tbl[] = {
  175. [LP5009] = {
  176. .model_id = LP5009,
  177. .max_modules = LP5009_MAX_LED_MODULES,
  178. .num_leds = LP5009_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  179. .led_brightness0_reg = LP5012_LED0_BRT,
  180. .mix_out0_reg = LP5012_OUT0_CLR,
  181. .bank_brt_reg = LP5012_BNK_BRT,
  182. .bank_mix_reg = LP5012_BNKA_CLR,
  183. .reset_reg = LP5012_RESET,
  184. .lp50xx_regmap_config = &lp5012_regmap_config,
  185. },
  186. [LP5012] = {
  187. .model_id = LP5012,
  188. .max_modules = LP5012_MAX_LED_MODULES,
  189. .num_leds = LP5012_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  190. .led_brightness0_reg = LP5012_LED0_BRT,
  191. .mix_out0_reg = LP5012_OUT0_CLR,
  192. .bank_brt_reg = LP5012_BNK_BRT,
  193. .bank_mix_reg = LP5012_BNKA_CLR,
  194. .reset_reg = LP5012_RESET,
  195. .lp50xx_regmap_config = &lp5012_regmap_config,
  196. },
  197. [LP5018] = {
  198. .model_id = LP5018,
  199. .max_modules = LP5018_MAX_LED_MODULES,
  200. .num_leds = LP5018_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  201. .led_brightness0_reg = LP5024_LED0_BRT,
  202. .mix_out0_reg = LP5024_OUT0_CLR,
  203. .bank_brt_reg = LP5024_BNK_BRT,
  204. .bank_mix_reg = LP5024_BNKA_CLR,
  205. .reset_reg = LP5024_RESET,
  206. .lp50xx_regmap_config = &lp5024_regmap_config,
  207. },
  208. [LP5024] = {
  209. .model_id = LP5024,
  210. .max_modules = LP5024_MAX_LED_MODULES,
  211. .num_leds = LP5024_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  212. .led_brightness0_reg = LP5024_LED0_BRT,
  213. .mix_out0_reg = LP5024_OUT0_CLR,
  214. .bank_brt_reg = LP5024_BNK_BRT,
  215. .bank_mix_reg = LP5024_BNKA_CLR,
  216. .reset_reg = LP5024_RESET,
  217. .lp50xx_regmap_config = &lp5024_regmap_config,
  218. },
  219. [LP5030] = {
  220. .model_id = LP5030,
  221. .max_modules = LP5030_MAX_LED_MODULES,
  222. .num_leds = LP5030_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  223. .led_brightness0_reg = LP5036_LED0_BRT,
  224. .mix_out0_reg = LP5036_OUT0_CLR,
  225. .bank_brt_reg = LP5036_BNK_BRT,
  226. .bank_mix_reg = LP5036_BNKA_CLR,
  227. .reset_reg = LP5036_RESET,
  228. .lp50xx_regmap_config = &lp5036_regmap_config,
  229. },
  230. [LP5036] = {
  231. .model_id = LP5036,
  232. .max_modules = LP5036_MAX_LED_MODULES,
  233. .num_leds = LP5036_MAX_LED_MODULES * LP50XX_LEDS_PER_MODULE,
  234. .led_brightness0_reg = LP5036_LED0_BRT,
  235. .mix_out0_reg = LP5036_OUT0_CLR,
  236. .bank_brt_reg = LP5036_BNK_BRT,
  237. .bank_mix_reg = LP5036_BNKA_CLR,
  238. .reset_reg = LP5036_RESET,
  239. .lp50xx_regmap_config = &lp5036_regmap_config,
  240. },
  241. };
  242. struct lp50xx_led {
  243. struct led_classdev_mc mc_cdev;
  244. struct lp50xx *priv;
  245. unsigned long bank_modules;
  246. u8 ctrl_bank_enabled;
  247. int led_number;
  248. };
  249. /**
  250. * struct lp50xx -
  251. * @enable_gpio: hardware enable gpio
  252. * @regulator: LED supply regulator pointer
  253. * @client: pointer to the I2C client
  254. * @regmap: device register map
  255. * @dev: pointer to the devices device struct
  256. * @lock: lock for reading/writing the device
  257. * @chip_info: chip specific information (ie num_leds)
  258. * @num_of_banked_leds: holds the number of banked LEDs
  259. * @leds: array of LED strings
  260. */
  261. struct lp50xx {
  262. struct gpio_desc *enable_gpio;
  263. struct regulator *regulator;
  264. struct i2c_client *client;
  265. struct regmap *regmap;
  266. struct device *dev;
  267. struct mutex lock;
  268. const struct lp50xx_chip_info *chip_info;
  269. int num_of_banked_leds;
  270. /* This needs to be at the end of the struct */
  271. struct lp50xx_led leds[];
  272. };
  273. static struct lp50xx_led *mcled_cdev_to_led(struct led_classdev_mc *mc_cdev)
  274. {
  275. return container_of(mc_cdev, struct lp50xx_led, mc_cdev);
  276. }
  277. static int lp50xx_brightness_set(struct led_classdev *cdev,
  278. enum led_brightness brightness)
  279. {
  280. struct led_classdev_mc *mc_dev = lcdev_to_mccdev(cdev);
  281. struct lp50xx_led *led = mcled_cdev_to_led(mc_dev);
  282. const struct lp50xx_chip_info *led_chip = led->priv->chip_info;
  283. u8 led_offset, reg_val;
  284. int ret = 0;
  285. int i;
  286. mutex_lock(&led->priv->lock);
  287. if (led->ctrl_bank_enabled)
  288. reg_val = led_chip->bank_brt_reg;
  289. else
  290. reg_val = led_chip->led_brightness0_reg +
  291. led->led_number;
  292. ret = regmap_write(led->priv->regmap, reg_val, brightness);
  293. if (ret) {
  294. dev_err(led->priv->dev,
  295. "Cannot write brightness value %d\n", ret);
  296. goto out;
  297. }
  298. for (i = 0; i < led->mc_cdev.num_colors; i++) {
  299. if (led->ctrl_bank_enabled) {
  300. reg_val = led_chip->bank_mix_reg + i;
  301. } else {
  302. led_offset = (led->led_number * 3) + i;
  303. reg_val = led_chip->mix_out0_reg + led_offset;
  304. }
  305. ret = regmap_write(led->priv->regmap, reg_val,
  306. mc_dev->subled_info[i].intensity);
  307. if (ret) {
  308. dev_err(led->priv->dev,
  309. "Cannot write intensity value %d\n", ret);
  310. goto out;
  311. }
  312. }
  313. out:
  314. mutex_unlock(&led->priv->lock);
  315. return ret;
  316. }
  317. static int lp50xx_set_banks(struct lp50xx *priv, u32 led_banks[])
  318. {
  319. u8 led_config_lo, led_config_hi;
  320. u32 bank_enable_mask = 0;
  321. int ret;
  322. int i;
  323. for (i = 0; i < priv->chip_info->max_modules; i++) {
  324. if (led_banks[i])
  325. bank_enable_mask |= (1 << led_banks[i]);
  326. }
  327. led_config_lo = bank_enable_mask;
  328. led_config_hi = bank_enable_mask >> 8;
  329. ret = regmap_write(priv->regmap, LP50XX_LED_CFG0, led_config_lo);
  330. if (ret)
  331. return ret;
  332. if (priv->chip_info->model_id >= LP5030)
  333. ret = regmap_write(priv->regmap, LP5036_LED_CFG1, led_config_hi);
  334. return ret;
  335. }
  336. static int lp50xx_reset(struct lp50xx *priv)
  337. {
  338. return regmap_write(priv->regmap, priv->chip_info->reset_reg, LP50XX_SW_RESET);
  339. }
  340. static int lp50xx_enable_disable(struct lp50xx *priv, int enable_disable)
  341. {
  342. int ret;
  343. ret = gpiod_direction_output(priv->enable_gpio, enable_disable);
  344. if (ret)
  345. return ret;
  346. if (enable_disable)
  347. return regmap_write(priv->regmap, LP50XX_DEV_CFG0, LP50XX_CHIP_EN);
  348. else
  349. return regmap_write(priv->regmap, LP50XX_DEV_CFG0, 0);
  350. }
  351. static int lp50xx_probe_leds(struct fwnode_handle *child, struct lp50xx *priv,
  352. struct lp50xx_led *led, int num_leds)
  353. {
  354. u32 led_banks[LP5036_MAX_LED_MODULES] = {0};
  355. int led_number;
  356. int ret;
  357. if (num_leds > 1) {
  358. if (num_leds > priv->chip_info->max_modules) {
  359. dev_err(priv->dev, "reg property is invalid\n");
  360. return -EINVAL;
  361. }
  362. priv->num_of_banked_leds = num_leds;
  363. ret = fwnode_property_read_u32_array(child, "reg", led_banks, num_leds);
  364. if (ret) {
  365. dev_err(priv->dev, "reg property is missing\n");
  366. return ret;
  367. }
  368. ret = lp50xx_set_banks(priv, led_banks);
  369. if (ret) {
  370. dev_err(priv->dev, "Cannot setup banked LEDs\n");
  371. return ret;
  372. }
  373. led->ctrl_bank_enabled = 1;
  374. } else {
  375. ret = fwnode_property_read_u32(child, "reg", &led_number);
  376. if (ret) {
  377. dev_err(priv->dev, "led reg property missing\n");
  378. return ret;
  379. }
  380. if (led_number > priv->chip_info->num_leds) {
  381. dev_err(priv->dev, "led-sources property is invalid\n");
  382. return -EINVAL;
  383. }
  384. led->led_number = led_number;
  385. }
  386. return 0;
  387. }
  388. static int lp50xx_probe_dt(struct lp50xx *priv)
  389. {
  390. struct fwnode_handle *child = NULL;
  391. struct fwnode_handle *led_node = NULL;
  392. struct led_init_data init_data = {};
  393. struct led_classdev *led_cdev;
  394. struct mc_subled *mc_led_info;
  395. struct lp50xx_led *led;
  396. int ret = -EINVAL;
  397. int num_colors;
  398. u32 color_id;
  399. int i = 0;
  400. priv->enable_gpio = devm_gpiod_get_optional(priv->dev, "enable", GPIOD_OUT_LOW);
  401. if (IS_ERR(priv->enable_gpio))
  402. return dev_err_probe(priv->dev, PTR_ERR(priv->enable_gpio),
  403. "Failed to get enable GPIO\n");
  404. priv->regulator = devm_regulator_get(priv->dev, "vled");
  405. if (IS_ERR(priv->regulator))
  406. priv->regulator = NULL;
  407. device_for_each_child_node(priv->dev, child) {
  408. led = &priv->leds[i];
  409. ret = fwnode_property_count_u32(child, "reg");
  410. if (ret < 0) {
  411. dev_err(priv->dev, "reg property is invalid\n");
  412. goto child_out;
  413. }
  414. ret = lp50xx_probe_leds(child, priv, led, ret);
  415. if (ret)
  416. goto child_out;
  417. init_data.fwnode = child;
  418. num_colors = 0;
  419. /*
  420. * There are only 3 LEDs per module otherwise they should be
  421. * banked which also is presented as 3 LEDs.
  422. */
  423. mc_led_info = devm_kcalloc(priv->dev, LP50XX_LEDS_PER_MODULE,
  424. sizeof(*mc_led_info), GFP_KERNEL);
  425. if (!mc_led_info) {
  426. ret = -ENOMEM;
  427. goto child_out;
  428. }
  429. fwnode_for_each_child_node(child, led_node) {
  430. ret = fwnode_property_read_u32(led_node, "color",
  431. &color_id);
  432. if (ret) {
  433. fwnode_handle_put(led_node);
  434. dev_err(priv->dev, "Cannot read color\n");
  435. goto child_out;
  436. }
  437. mc_led_info[num_colors].color_index = color_id;
  438. num_colors++;
  439. }
  440. led->priv = priv;
  441. led->mc_cdev.num_colors = num_colors;
  442. led->mc_cdev.subled_info = mc_led_info;
  443. led_cdev = &led->mc_cdev.led_cdev;
  444. led_cdev->brightness_set_blocking = lp50xx_brightness_set;
  445. ret = devm_led_classdev_multicolor_register_ext(priv->dev,
  446. &led->mc_cdev,
  447. &init_data);
  448. if (ret) {
  449. dev_err(priv->dev, "led register err: %d\n", ret);
  450. goto child_out;
  451. }
  452. i++;
  453. }
  454. return 0;
  455. child_out:
  456. fwnode_handle_put(child);
  457. return ret;
  458. }
  459. static int lp50xx_probe(struct i2c_client *client)
  460. {
  461. struct lp50xx *led;
  462. int count;
  463. int ret;
  464. count = device_get_child_node_count(&client->dev);
  465. if (!count) {
  466. dev_err(&client->dev, "LEDs are not defined in device tree!");
  467. return -ENODEV;
  468. }
  469. led = devm_kzalloc(&client->dev, struct_size(led, leds, count),
  470. GFP_KERNEL);
  471. if (!led)
  472. return -ENOMEM;
  473. mutex_init(&led->lock);
  474. led->client = client;
  475. led->dev = &client->dev;
  476. led->chip_info = device_get_match_data(&client->dev);
  477. i2c_set_clientdata(client, led);
  478. led->regmap = devm_regmap_init_i2c(client,
  479. led->chip_info->lp50xx_regmap_config);
  480. if (IS_ERR(led->regmap)) {
  481. ret = PTR_ERR(led->regmap);
  482. dev_err(&client->dev, "Failed to allocate register map: %d\n",
  483. ret);
  484. return ret;
  485. }
  486. ret = lp50xx_reset(led);
  487. if (ret)
  488. return ret;
  489. ret = lp50xx_enable_disable(led, 1);
  490. if (ret)
  491. return ret;
  492. return lp50xx_probe_dt(led);
  493. }
  494. static void lp50xx_remove(struct i2c_client *client)
  495. {
  496. struct lp50xx *led = i2c_get_clientdata(client);
  497. int ret;
  498. ret = lp50xx_enable_disable(led, 0);
  499. if (ret)
  500. dev_err(led->dev, "Failed to disable chip\n");
  501. if (led->regulator) {
  502. ret = regulator_disable(led->regulator);
  503. if (ret)
  504. dev_err(led->dev, "Failed to disable regulator\n");
  505. }
  506. mutex_destroy(&led->lock);
  507. }
  508. static const struct i2c_device_id lp50xx_id[] = {
  509. { "lp5009", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5009] },
  510. { "lp5012", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5012] },
  511. { "lp5018", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5018] },
  512. { "lp5024", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5024] },
  513. { "lp5030", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5030] },
  514. { "lp5036", (kernel_ulong_t)&lp50xx_chip_info_tbl[LP5036] },
  515. { }
  516. };
  517. MODULE_DEVICE_TABLE(i2c, lp50xx_id);
  518. static const struct of_device_id of_lp50xx_leds_match[] = {
  519. { .compatible = "ti,lp5009", .data = &lp50xx_chip_info_tbl[LP5009] },
  520. { .compatible = "ti,lp5012", .data = &lp50xx_chip_info_tbl[LP5012] },
  521. { .compatible = "ti,lp5018", .data = &lp50xx_chip_info_tbl[LP5018] },
  522. { .compatible = "ti,lp5024", .data = &lp50xx_chip_info_tbl[LP5024] },
  523. { .compatible = "ti,lp5030", .data = &lp50xx_chip_info_tbl[LP5030] },
  524. { .compatible = "ti,lp5036", .data = &lp50xx_chip_info_tbl[LP5036] },
  525. {}
  526. };
  527. MODULE_DEVICE_TABLE(of, of_lp50xx_leds_match);
  528. static struct i2c_driver lp50xx_driver = {
  529. .driver = {
  530. .name = "lp50xx",
  531. .of_match_table = of_lp50xx_leds_match,
  532. },
  533. .probe_new = lp50xx_probe,
  534. .remove = lp50xx_remove,
  535. .id_table = lp50xx_id,
  536. };
  537. module_i2c_driver(lp50xx_driver);
  538. MODULE_DESCRIPTION("Texas Instruments LP50XX LED driver");
  539. MODULE_AUTHOR("Dan Murphy <[email protected]>");
  540. MODULE_LICENSE("GPL v2");