PageRenderTime 61ms CodeModel.GetById 33ms RepoModel.GetById 1ms app.codeStats 0ms

/drivers/leds/leds-lp5562.c

https://gitlab.com/deepcypher/linux
C | 618 lines | 453 code | 111 blank | 54 comment | 48 complexity | fc5867eba1ea8dd62cf54079b378a356 MD5 | raw file
  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * LP5562 LED driver
  4. *
  5. * Copyright (C) 2013 Texas Instruments
  6. *
  7. * Author: Milo(Woogyom) Kim <milo.kim@ti.com>
  8. */
  9. #include <linux/delay.h>
  10. #include <linux/firmware.h>
  11. #include <linux/i2c.h>
  12. #include <linux/leds.h>
  13. #include <linux/module.h>
  14. #include <linux/mutex.h>
  15. #include <linux/of.h>
  16. #include <linux/platform_data/leds-lp55xx.h>
  17. #include <linux/slab.h>
  18. #include "leds-lp55xx-common.h"
  19. #define LP5562_PROGRAM_LENGTH 32
  20. #define LP5562_MAX_LEDS 4
  21. /* ENABLE Register 00h */
  22. #define LP5562_REG_ENABLE 0x00
  23. #define LP5562_EXEC_ENG1_M 0x30
  24. #define LP5562_EXEC_ENG2_M 0x0C
  25. #define LP5562_EXEC_ENG3_M 0x03
  26. #define LP5562_EXEC_M 0x3F
  27. #define LP5562_MASTER_ENABLE 0x40 /* Chip master enable */
  28. #define LP5562_LOGARITHMIC_PWM 0x80 /* Logarithmic PWM adjustment */
  29. #define LP5562_EXEC_RUN 0x2A
  30. #define LP5562_ENABLE_DEFAULT \
  31. (LP5562_MASTER_ENABLE | LP5562_LOGARITHMIC_PWM)
  32. #define LP5562_ENABLE_RUN_PROGRAM \
  33. (LP5562_ENABLE_DEFAULT | LP5562_EXEC_RUN)
  34. /* OPMODE Register 01h */
  35. #define LP5562_REG_OP_MODE 0x01
  36. #define LP5562_MODE_ENG1_M 0x30
  37. #define LP5562_MODE_ENG2_M 0x0C
  38. #define LP5562_MODE_ENG3_M 0x03
  39. #define LP5562_LOAD_ENG1 0x10
  40. #define LP5562_LOAD_ENG2 0x04
  41. #define LP5562_LOAD_ENG3 0x01
  42. #define LP5562_RUN_ENG1 0x20
  43. #define LP5562_RUN_ENG2 0x08
  44. #define LP5562_RUN_ENG3 0x02
  45. #define LP5562_ENG1_IS_LOADING(mode) \
  46. ((mode & LP5562_MODE_ENG1_M) == LP5562_LOAD_ENG1)
  47. #define LP5562_ENG2_IS_LOADING(mode) \
  48. ((mode & LP5562_MODE_ENG2_M) == LP5562_LOAD_ENG2)
  49. #define LP5562_ENG3_IS_LOADING(mode) \
  50. ((mode & LP5562_MODE_ENG3_M) == LP5562_LOAD_ENG3)
  51. /* BRIGHTNESS Registers */
  52. #define LP5562_REG_R_PWM 0x04
  53. #define LP5562_REG_G_PWM 0x03
  54. #define LP5562_REG_B_PWM 0x02
  55. #define LP5562_REG_W_PWM 0x0E
  56. /* CURRENT Registers */
  57. #define LP5562_REG_R_CURRENT 0x07
  58. #define LP5562_REG_G_CURRENT 0x06
  59. #define LP5562_REG_B_CURRENT 0x05
  60. #define LP5562_REG_W_CURRENT 0x0F
  61. /* CONFIG Register 08h */
  62. #define LP5562_REG_CONFIG 0x08
  63. #define LP5562_PWM_HF 0x40
  64. #define LP5562_PWRSAVE_EN 0x20
  65. #define LP5562_CLK_INT 0x01 /* Internal clock */
  66. #define LP5562_DEFAULT_CFG (LP5562_PWM_HF | LP5562_PWRSAVE_EN)
  67. /* RESET Register 0Dh */
  68. #define LP5562_REG_RESET 0x0D
  69. #define LP5562_RESET 0xFF
  70. /* PROGRAM ENGINE Registers */
  71. #define LP5562_REG_PROG_MEM_ENG1 0x10
  72. #define LP5562_REG_PROG_MEM_ENG2 0x30
  73. #define LP5562_REG_PROG_MEM_ENG3 0x50
  74. /* LEDMAP Register 70h */
  75. #define LP5562_REG_ENG_SEL 0x70
  76. #define LP5562_ENG_SEL_PWM 0
  77. #define LP5562_ENG_FOR_RGB_M 0x3F
  78. #define LP5562_ENG_SEL_RGB 0x1B /* R:ENG1, G:ENG2, B:ENG3 */
  79. #define LP5562_ENG_FOR_W_M 0xC0
  80. #define LP5562_ENG1_FOR_W 0x40 /* W:ENG1 */
  81. #define LP5562_ENG2_FOR_W 0x80 /* W:ENG2 */
  82. #define LP5562_ENG3_FOR_W 0xC0 /* W:ENG3 */
  83. /* Program Commands */
  84. #define LP5562_CMD_DISABLE 0x00
  85. #define LP5562_CMD_LOAD 0x15
  86. #define LP5562_CMD_RUN 0x2A
  87. #define LP5562_CMD_DIRECT 0x3F
  88. #define LP5562_PATTERN_OFF 0
  89. static inline void lp5562_wait_opmode_done(void)
  90. {
  91. /* operation mode change needs to be longer than 153 us */
  92. usleep_range(200, 300);
  93. }
  94. static inline void lp5562_wait_enable_done(void)
  95. {
  96. /* it takes more 488 us to update ENABLE register */
  97. usleep_range(500, 600);
  98. }
  99. static void lp5562_set_led_current(struct lp55xx_led *led, u8 led_current)
  100. {
  101. static const u8 addr[] = {
  102. LP5562_REG_R_CURRENT,
  103. LP5562_REG_G_CURRENT,
  104. LP5562_REG_B_CURRENT,
  105. LP5562_REG_W_CURRENT,
  106. };
  107. led->led_current = led_current;
  108. lp55xx_write(led->chip, addr[led->chan_nr], led_current);
  109. }
  110. static void lp5562_load_engine(struct lp55xx_chip *chip)
  111. {
  112. enum lp55xx_engine_index idx = chip->engine_idx;
  113. static const u8 mask[] = {
  114. [LP55XX_ENGINE_1] = LP5562_MODE_ENG1_M,
  115. [LP55XX_ENGINE_2] = LP5562_MODE_ENG2_M,
  116. [LP55XX_ENGINE_3] = LP5562_MODE_ENG3_M,
  117. };
  118. static const u8 val[] = {
  119. [LP55XX_ENGINE_1] = LP5562_LOAD_ENG1,
  120. [LP55XX_ENGINE_2] = LP5562_LOAD_ENG2,
  121. [LP55XX_ENGINE_3] = LP5562_LOAD_ENG3,
  122. };
  123. lp55xx_update_bits(chip, LP5562_REG_OP_MODE, mask[idx], val[idx]);
  124. lp5562_wait_opmode_done();
  125. }
  126. static void lp5562_stop_engine(struct lp55xx_chip *chip)
  127. {
  128. lp55xx_write(chip, LP5562_REG_OP_MODE, LP5562_CMD_DISABLE);
  129. lp5562_wait_opmode_done();
  130. }
  131. static void lp5562_run_engine(struct lp55xx_chip *chip, bool start)
  132. {
  133. int ret;
  134. u8 mode;
  135. u8 exec;
  136. /* stop engine */
  137. if (!start) {
  138. lp55xx_write(chip, LP5562_REG_ENABLE, LP5562_ENABLE_DEFAULT);
  139. lp5562_wait_enable_done();
  140. lp5562_stop_engine(chip);
  141. lp55xx_write(chip, LP5562_REG_ENG_SEL, LP5562_ENG_SEL_PWM);
  142. lp55xx_write(chip, LP5562_REG_OP_MODE, LP5562_CMD_DIRECT);
  143. lp5562_wait_opmode_done();
  144. return;
  145. }
  146. /*
  147. * To run the engine,
  148. * operation mode and enable register should updated at the same time
  149. */
  150. ret = lp55xx_read(chip, LP5562_REG_OP_MODE, &mode);
  151. if (ret)
  152. return;
  153. ret = lp55xx_read(chip, LP5562_REG_ENABLE, &exec);
  154. if (ret)
  155. return;
  156. /* change operation mode to RUN only when each engine is loading */
  157. if (LP5562_ENG1_IS_LOADING(mode)) {
  158. mode = (mode & ~LP5562_MODE_ENG1_M) | LP5562_RUN_ENG1;
  159. exec = (exec & ~LP5562_EXEC_ENG1_M) | LP5562_RUN_ENG1;
  160. }
  161. if (LP5562_ENG2_IS_LOADING(mode)) {
  162. mode = (mode & ~LP5562_MODE_ENG2_M) | LP5562_RUN_ENG2;
  163. exec = (exec & ~LP5562_EXEC_ENG2_M) | LP5562_RUN_ENG2;
  164. }
  165. if (LP5562_ENG3_IS_LOADING(mode)) {
  166. mode = (mode & ~LP5562_MODE_ENG3_M) | LP5562_RUN_ENG3;
  167. exec = (exec & ~LP5562_EXEC_ENG3_M) | LP5562_RUN_ENG3;
  168. }
  169. lp55xx_write(chip, LP5562_REG_OP_MODE, mode);
  170. lp5562_wait_opmode_done();
  171. lp55xx_update_bits(chip, LP5562_REG_ENABLE, LP5562_EXEC_M, exec);
  172. lp5562_wait_enable_done();
  173. }
  174. static int lp5562_update_firmware(struct lp55xx_chip *chip,
  175. const u8 *data, size_t size)
  176. {
  177. enum lp55xx_engine_index idx = chip->engine_idx;
  178. u8 pattern[LP5562_PROGRAM_LENGTH] = {0};
  179. static const u8 addr[] = {
  180. [LP55XX_ENGINE_1] = LP5562_REG_PROG_MEM_ENG1,
  181. [LP55XX_ENGINE_2] = LP5562_REG_PROG_MEM_ENG2,
  182. [LP55XX_ENGINE_3] = LP5562_REG_PROG_MEM_ENG3,
  183. };
  184. unsigned cmd;
  185. char c[3];
  186. int program_size;
  187. int nrchars;
  188. int offset = 0;
  189. int ret;
  190. int i;
  191. /* clear program memory before updating */
  192. for (i = 0; i < LP5562_PROGRAM_LENGTH; i++)
  193. lp55xx_write(chip, addr[idx] + i, 0);
  194. i = 0;
  195. while ((offset < size - 1) && (i < LP5562_PROGRAM_LENGTH)) {
  196. /* separate sscanfs because length is working only for %s */
  197. ret = sscanf(data + offset, "%2s%n ", c, &nrchars);
  198. if (ret != 1)
  199. goto err;
  200. ret = sscanf(c, "%2x", &cmd);
  201. if (ret != 1)
  202. goto err;
  203. pattern[i] = (u8)cmd;
  204. offset += nrchars;
  205. i++;
  206. }
  207. /* Each instruction is 16bit long. Check that length is even */
  208. if (i % 2)
  209. goto err;
  210. program_size = i;
  211. for (i = 0; i < program_size; i++)
  212. lp55xx_write(chip, addr[idx] + i, pattern[i]);
  213. return 0;
  214. err:
  215. dev_err(&chip->cl->dev, "wrong pattern format\n");
  216. return -EINVAL;
  217. }
  218. static void lp5562_firmware_loaded(struct lp55xx_chip *chip)
  219. {
  220. const struct firmware *fw = chip->fw;
  221. /*
  222. * the firmware is encoded in ascii hex character, with 2 chars
  223. * per byte
  224. */
  225. if (fw->size > (LP5562_PROGRAM_LENGTH * 2)) {
  226. dev_err(&chip->cl->dev, "firmware data size overflow: %zu\n",
  227. fw->size);
  228. return;
  229. }
  230. /*
  231. * Program memory sequence
  232. * 1) set engine mode to "LOAD"
  233. * 2) write firmware data into program memory
  234. */
  235. lp5562_load_engine(chip);
  236. lp5562_update_firmware(chip, fw->data, fw->size);
  237. }
  238. static int lp5562_post_init_device(struct lp55xx_chip *chip)
  239. {
  240. int ret;
  241. u8 cfg = LP5562_DEFAULT_CFG;
  242. /* Set all PWMs to direct control mode */
  243. ret = lp55xx_write(chip, LP5562_REG_OP_MODE, LP5562_CMD_DIRECT);
  244. if (ret)
  245. return ret;
  246. lp5562_wait_opmode_done();
  247. /* Update configuration for the clock setting */
  248. if (!lp55xx_is_extclk_used(chip))
  249. cfg |= LP5562_CLK_INT;
  250. ret = lp55xx_write(chip, LP5562_REG_CONFIG, cfg);
  251. if (ret)
  252. return ret;
  253. /* Initialize all channels PWM to zero -> leds off */
  254. lp55xx_write(chip, LP5562_REG_R_PWM, 0);
  255. lp55xx_write(chip, LP5562_REG_G_PWM, 0);
  256. lp55xx_write(chip, LP5562_REG_B_PWM, 0);
  257. lp55xx_write(chip, LP5562_REG_W_PWM, 0);
  258. /* Set LED map as register PWM by default */
  259. lp55xx_write(chip, LP5562_REG_ENG_SEL, LP5562_ENG_SEL_PWM);
  260. return 0;
  261. }
  262. static int lp5562_led_brightness(struct lp55xx_led *led)
  263. {
  264. struct lp55xx_chip *chip = led->chip;
  265. static const u8 addr[] = {
  266. LP5562_REG_R_PWM,
  267. LP5562_REG_G_PWM,
  268. LP5562_REG_B_PWM,
  269. LP5562_REG_W_PWM,
  270. };
  271. int ret;
  272. mutex_lock(&chip->lock);
  273. ret = lp55xx_write(chip, addr[led->chan_nr], led->brightness);
  274. mutex_unlock(&chip->lock);
  275. return ret;
  276. }
  277. static void lp5562_write_program_memory(struct lp55xx_chip *chip,
  278. u8 base, const u8 *rgb, int size)
  279. {
  280. int i;
  281. if (!rgb || size <= 0)
  282. return;
  283. for (i = 0; i < size; i++)
  284. lp55xx_write(chip, base + i, *(rgb + i));
  285. lp55xx_write(chip, base + i, 0);
  286. lp55xx_write(chip, base + i + 1, 0);
  287. }
  288. /* check the size of program count */
  289. static inline bool _is_pc_overflow(struct lp55xx_predef_pattern *ptn)
  290. {
  291. return ptn->size_r >= LP5562_PROGRAM_LENGTH ||
  292. ptn->size_g >= LP5562_PROGRAM_LENGTH ||
  293. ptn->size_b >= LP5562_PROGRAM_LENGTH;
  294. }
  295. static int lp5562_run_predef_led_pattern(struct lp55xx_chip *chip, int mode)
  296. {
  297. struct lp55xx_predef_pattern *ptn;
  298. int i;
  299. if (mode == LP5562_PATTERN_OFF) {
  300. lp5562_run_engine(chip, false);
  301. return 0;
  302. }
  303. ptn = chip->pdata->patterns + (mode - 1);
  304. if (!ptn || _is_pc_overflow(ptn)) {
  305. dev_err(&chip->cl->dev, "invalid pattern data\n");
  306. return -EINVAL;
  307. }
  308. lp5562_stop_engine(chip);
  309. /* Set LED map as RGB */
  310. lp55xx_write(chip, LP5562_REG_ENG_SEL, LP5562_ENG_SEL_RGB);
  311. /* Load engines */
  312. for (i = LP55XX_ENGINE_1; i <= LP55XX_ENGINE_3; i++) {
  313. chip->engine_idx = i;
  314. lp5562_load_engine(chip);
  315. }
  316. /* Clear program registers */
  317. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG1, 0);
  318. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG1 + 1, 0);
  319. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG2, 0);
  320. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG2 + 1, 0);
  321. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG3, 0);
  322. lp55xx_write(chip, LP5562_REG_PROG_MEM_ENG3 + 1, 0);
  323. /* Program engines */
  324. lp5562_write_program_memory(chip, LP5562_REG_PROG_MEM_ENG1,
  325. ptn->r, ptn->size_r);
  326. lp5562_write_program_memory(chip, LP5562_REG_PROG_MEM_ENG2,
  327. ptn->g, ptn->size_g);
  328. lp5562_write_program_memory(chip, LP5562_REG_PROG_MEM_ENG3,
  329. ptn->b, ptn->size_b);
  330. /* Run engines */
  331. lp5562_run_engine(chip, true);
  332. return 0;
  333. }
  334. static ssize_t lp5562_store_pattern(struct device *dev,
  335. struct device_attribute *attr,
  336. const char *buf, size_t len)
  337. {
  338. struct lp55xx_led *led = i2c_get_clientdata(to_i2c_client(dev));
  339. struct lp55xx_chip *chip = led->chip;
  340. struct lp55xx_predef_pattern *ptn = chip->pdata->patterns;
  341. int num_patterns = chip->pdata->num_patterns;
  342. unsigned long mode;
  343. int ret;
  344. ret = kstrtoul(buf, 0, &mode);
  345. if (ret)
  346. return ret;
  347. if (mode > num_patterns || !ptn)
  348. return -EINVAL;
  349. mutex_lock(&chip->lock);
  350. ret = lp5562_run_predef_led_pattern(chip, mode);
  351. mutex_unlock(&chip->lock);
  352. if (ret)
  353. return ret;
  354. return len;
  355. }
  356. static ssize_t lp5562_store_engine_mux(struct device *dev,
  357. struct device_attribute *attr,
  358. const char *buf, size_t len)
  359. {
  360. struct lp55xx_led *led = i2c_get_clientdata(to_i2c_client(dev));
  361. struct lp55xx_chip *chip = led->chip;
  362. u8 mask;
  363. u8 val;
  364. /* LED map
  365. * R ... Engine 1 (fixed)
  366. * G ... Engine 2 (fixed)
  367. * B ... Engine 3 (fixed)
  368. * W ... Engine 1 or 2 or 3
  369. */
  370. if (sysfs_streq(buf, "RGB")) {
  371. mask = LP5562_ENG_FOR_RGB_M;
  372. val = LP5562_ENG_SEL_RGB;
  373. } else if (sysfs_streq(buf, "W")) {
  374. enum lp55xx_engine_index idx = chip->engine_idx;
  375. mask = LP5562_ENG_FOR_W_M;
  376. switch (idx) {
  377. case LP55XX_ENGINE_1:
  378. val = LP5562_ENG1_FOR_W;
  379. break;
  380. case LP55XX_ENGINE_2:
  381. val = LP5562_ENG2_FOR_W;
  382. break;
  383. case LP55XX_ENGINE_3:
  384. val = LP5562_ENG3_FOR_W;
  385. break;
  386. default:
  387. return -EINVAL;
  388. }
  389. } else {
  390. dev_err(dev, "choose RGB or W\n");
  391. return -EINVAL;
  392. }
  393. mutex_lock(&chip->lock);
  394. lp55xx_update_bits(chip, LP5562_REG_ENG_SEL, mask, val);
  395. mutex_unlock(&chip->lock);
  396. return len;
  397. }
  398. static LP55XX_DEV_ATTR_WO(led_pattern, lp5562_store_pattern);
  399. static LP55XX_DEV_ATTR_WO(engine_mux, lp5562_store_engine_mux);
  400. static struct attribute *lp5562_attributes[] = {
  401. &dev_attr_led_pattern.attr,
  402. &dev_attr_engine_mux.attr,
  403. NULL,
  404. };
  405. static const struct attribute_group lp5562_group = {
  406. .attrs = lp5562_attributes,
  407. };
  408. /* Chip specific configurations */
  409. static struct lp55xx_device_config lp5562_cfg = {
  410. .max_channel = LP5562_MAX_LEDS,
  411. .reset = {
  412. .addr = LP5562_REG_RESET,
  413. .val = LP5562_RESET,
  414. },
  415. .enable = {
  416. .addr = LP5562_REG_ENABLE,
  417. .val = LP5562_ENABLE_DEFAULT,
  418. },
  419. .post_init_device = lp5562_post_init_device,
  420. .set_led_current = lp5562_set_led_current,
  421. .brightness_fn = lp5562_led_brightness,
  422. .run_engine = lp5562_run_engine,
  423. .firmware_cb = lp5562_firmware_loaded,
  424. .dev_attr_group = &lp5562_group,
  425. };
  426. static int lp5562_probe(struct i2c_client *client,
  427. const struct i2c_device_id *id)
  428. {
  429. int ret;
  430. struct lp55xx_chip *chip;
  431. struct lp55xx_led *led;
  432. struct lp55xx_platform_data *pdata = dev_get_platdata(&client->dev);
  433. struct device_node *np = dev_of_node(&client->dev);
  434. chip = devm_kzalloc(&client->dev, sizeof(*chip), GFP_KERNEL);
  435. if (!chip)
  436. return -ENOMEM;
  437. chip->cfg = &lp5562_cfg;
  438. if (!pdata) {
  439. if (np) {
  440. pdata = lp55xx_of_populate_pdata(&client->dev, np,
  441. chip);
  442. if (IS_ERR(pdata))
  443. return PTR_ERR(pdata);
  444. } else {
  445. dev_err(&client->dev, "no platform data\n");
  446. return -EINVAL;
  447. }
  448. }
  449. led = devm_kcalloc(&client->dev,
  450. pdata->num_channels, sizeof(*led), GFP_KERNEL);
  451. if (!led)
  452. return -ENOMEM;
  453. chip->cl = client;
  454. chip->pdata = pdata;
  455. mutex_init(&chip->lock);
  456. i2c_set_clientdata(client, led);
  457. ret = lp55xx_init_device(chip);
  458. if (ret)
  459. goto err_init;
  460. ret = lp55xx_register_leds(led, chip);
  461. if (ret)
  462. goto err_out;
  463. ret = lp55xx_register_sysfs(chip);
  464. if (ret) {
  465. dev_err(&client->dev, "registering sysfs failed\n");
  466. goto err_out;
  467. }
  468. return 0;
  469. err_out:
  470. lp55xx_deinit_device(chip);
  471. err_init:
  472. return ret;
  473. }
  474. static int lp5562_remove(struct i2c_client *client)
  475. {
  476. struct lp55xx_led *led = i2c_get_clientdata(client);
  477. struct lp55xx_chip *chip = led->chip;
  478. lp5562_stop_engine(chip);
  479. lp55xx_unregister_sysfs(chip);
  480. lp55xx_deinit_device(chip);
  481. return 0;
  482. }
  483. static const struct i2c_device_id lp5562_id[] = {
  484. { "lp5562", 0 },
  485. { }
  486. };
  487. MODULE_DEVICE_TABLE(i2c, lp5562_id);
  488. #ifdef CONFIG_OF
  489. static const struct of_device_id of_lp5562_leds_match[] = {
  490. { .compatible = "ti,lp5562", },
  491. {},
  492. };
  493. MODULE_DEVICE_TABLE(of, of_lp5562_leds_match);
  494. #endif
  495. static struct i2c_driver lp5562_driver = {
  496. .driver = {
  497. .name = "lp5562",
  498. .of_match_table = of_match_ptr(of_lp5562_leds_match),
  499. },
  500. .probe = lp5562_probe,
  501. .remove = lp5562_remove,
  502. .id_table = lp5562_id,
  503. };
  504. module_i2c_driver(lp5562_driver);
  505. MODULE_DESCRIPTION("Texas Instruments LP5562 LED Driver");
  506. MODULE_AUTHOR("Milo Kim");
  507. MODULE_LICENSE("GPL");