leds-mc13783.c 10 KB

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  1. /*
  2. * LEDs driver for Freescale MC13783
  3. *
  4. * Copyright (C) 2010 Philippe Rétornaz
  5. *
  6. * Based on leds-da903x:
  7. * Copyright (C) 2008 Compulab, Ltd.
  8. * Mike Rapoport <mike@compulab.co.il>
  9. *
  10. * Copyright (C) 2006-2008 Marvell International Ltd.
  11. * Eric Miao <eric.miao@marvell.com>
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License version 2 as
  15. * published by the Free Software Foundation.
  16. */
  17. #include <linux/module.h>
  18. #include <linux/kernel.h>
  19. #include <linux/init.h>
  20. #include <linux/platform_device.h>
  21. #include <linux/leds.h>
  22. #include <linux/workqueue.h>
  23. #include <linux/mfd/mc13xxx.h>
  24. #include <linux/slab.h>
  25. struct mc13783_led {
  26. struct led_classdev cdev;
  27. struct work_struct work;
  28. struct mc13xxx *master;
  29. enum led_brightness new_brightness;
  30. int id;
  31. };
  32. #define MC13783_REG_LED_CONTROL_0 51
  33. #define MC13783_LED_C0_ENABLE_BIT (1 << 0)
  34. #define MC13783_LED_C0_TRIODE_MD_BIT (1 << 7)
  35. #define MC13783_LED_C0_TRIODE_AD_BIT (1 << 8)
  36. #define MC13783_LED_C0_TRIODE_KP_BIT (1 << 9)
  37. #define MC13783_LED_C0_BOOST_BIT (1 << 10)
  38. #define MC13783_LED_C0_ABMODE_MASK 0x7
  39. #define MC13783_LED_C0_ABMODE 11
  40. #define MC13783_LED_C0_ABREF_MASK 0x3
  41. #define MC13783_LED_C0_ABREF 14
  42. #define MC13783_REG_LED_CONTROL_1 52
  43. #define MC13783_LED_C1_TC1HALF_BIT (1 << 18)
  44. #define MC13783_REG_LED_CONTROL_2 53
  45. #define MC13783_LED_C2_BL_P_MASK 0xf
  46. #define MC13783_LED_C2_MD_P 9
  47. #define MC13783_LED_C2_AD_P 13
  48. #define MC13783_LED_C2_KP_P 17
  49. #define MC13783_LED_C2_BL_C_MASK 0x7
  50. #define MC13783_LED_C2_MD_C 0
  51. #define MC13783_LED_C2_AD_C 3
  52. #define MC13783_LED_C2_KP_C 6
  53. #define MC13783_REG_LED_CONTROL_3 54
  54. #define MC13783_LED_C3_TC_P 6
  55. #define MC13783_LED_C3_TC_P_MASK 0x1f
  56. #define MC13783_REG_LED_CONTROL_4 55
  57. #define MC13783_REG_LED_CONTROL_5 56
  58. #define MC13783_LED_Cx_PERIOD 21
  59. #define MC13783_LED_Cx_PERIOD_MASK 0x3
  60. #define MC13783_LED_Cx_SLEWLIM_BIT (1 << 23)
  61. #define MC13783_LED_Cx_TRIODE_TC_BIT (1 << 23)
  62. #define MC13783_LED_Cx_TC_C_MASK 0x3
  63. static void mc13783_led_work(struct work_struct *work)
  64. {
  65. struct mc13783_led *led = container_of(work, struct mc13783_led, work);
  66. int reg = 0;
  67. int mask = 0;
  68. int value = 0;
  69. int bank, off, shift;
  70. switch (led->id) {
  71. case MC13783_LED_MD:
  72. reg = MC13783_REG_LED_CONTROL_2;
  73. mask = MC13783_LED_C2_BL_P_MASK << MC13783_LED_C2_MD_P;
  74. value = (led->new_brightness >> 4) << MC13783_LED_C2_MD_P;
  75. break;
  76. case MC13783_LED_AD:
  77. reg = MC13783_REG_LED_CONTROL_2;
  78. mask = MC13783_LED_C2_BL_P_MASK << MC13783_LED_C2_AD_P;
  79. value = (led->new_brightness >> 4) << MC13783_LED_C2_AD_P;
  80. break;
  81. case MC13783_LED_KP:
  82. reg = MC13783_REG_LED_CONTROL_2;
  83. mask = MC13783_LED_C2_BL_P_MASK << MC13783_LED_C2_KP_P;
  84. value = (led->new_brightness >> 4) << MC13783_LED_C2_KP_P;
  85. break;
  86. case MC13783_LED_R1:
  87. case MC13783_LED_G1:
  88. case MC13783_LED_B1:
  89. case MC13783_LED_R2:
  90. case MC13783_LED_G2:
  91. case MC13783_LED_B2:
  92. case MC13783_LED_R3:
  93. case MC13783_LED_G3:
  94. case MC13783_LED_B3:
  95. off = led->id - MC13783_LED_R1;
  96. bank = off/3;
  97. reg = MC13783_REG_LED_CONTROL_3 + off/3;
  98. shift = (off - bank * 3) * 5 + MC13783_LED_C3_TC_P;
  99. value = (led->new_brightness >> 3) << shift;
  100. mask = MC13783_LED_C3_TC_P_MASK << shift;
  101. break;
  102. }
  103. mc13xxx_lock(led->master);
  104. mc13xxx_reg_rmw(led->master, reg, mask, value);
  105. mc13xxx_unlock(led->master);
  106. }
  107. static void mc13783_led_set(struct led_classdev *led_cdev,
  108. enum led_brightness value)
  109. {
  110. struct mc13783_led *led;
  111. led = container_of(led_cdev, struct mc13783_led, cdev);
  112. led->new_brightness = value;
  113. schedule_work(&led->work);
  114. }
  115. static int __devinit mc13783_led_setup(struct mc13783_led *led, int max_current)
  116. {
  117. int shift = 0;
  118. int mask = 0;
  119. int value = 0;
  120. int reg = 0;
  121. int ret, bank;
  122. switch (led->id) {
  123. case MC13783_LED_MD:
  124. shift = MC13783_LED_C2_MD_C;
  125. mask = MC13783_LED_C2_BL_C_MASK;
  126. value = max_current & MC13783_LED_C2_BL_C_MASK;
  127. reg = MC13783_REG_LED_CONTROL_2;
  128. break;
  129. case MC13783_LED_AD:
  130. shift = MC13783_LED_C2_AD_C;
  131. mask = MC13783_LED_C2_BL_C_MASK;
  132. value = max_current & MC13783_LED_C2_BL_C_MASK;
  133. reg = MC13783_REG_LED_CONTROL_2;
  134. break;
  135. case MC13783_LED_KP:
  136. shift = MC13783_LED_C2_KP_C;
  137. mask = MC13783_LED_C2_BL_C_MASK;
  138. value = max_current & MC13783_LED_C2_BL_C_MASK;
  139. reg = MC13783_REG_LED_CONTROL_2;
  140. break;
  141. case MC13783_LED_R1:
  142. case MC13783_LED_G1:
  143. case MC13783_LED_B1:
  144. case MC13783_LED_R2:
  145. case MC13783_LED_G2:
  146. case MC13783_LED_B2:
  147. case MC13783_LED_R3:
  148. case MC13783_LED_G3:
  149. case MC13783_LED_B3:
  150. bank = (led->id - MC13783_LED_R1)/3;
  151. reg = MC13783_REG_LED_CONTROL_3 + bank;
  152. shift = ((led->id - MC13783_LED_R1) - bank * 3) * 2;
  153. mask = MC13783_LED_Cx_TC_C_MASK;
  154. value = max_current & MC13783_LED_Cx_TC_C_MASK;
  155. break;
  156. }
  157. mc13xxx_lock(led->master);
  158. ret = mc13xxx_reg_rmw(led->master, reg, mask << shift,
  159. value << shift);
  160. mc13xxx_unlock(led->master);
  161. return ret;
  162. }
  163. static int __devinit mc13783_leds_prepare(struct platform_device *pdev)
  164. {
  165. struct mc13xxx_leds_platform_data *pdata = dev_get_platdata(&pdev->dev);
  166. struct mc13xxx *dev = dev_get_drvdata(pdev->dev.parent);
  167. int ret = 0;
  168. int reg = 0;
  169. mc13xxx_lock(dev);
  170. if (pdata->flags & MC13783_LED_TC1HALF)
  171. reg |= MC13783_LED_C1_TC1HALF_BIT;
  172. if (pdata->flags & MC13783_LED_SLEWLIMTC)
  173. reg |= MC13783_LED_Cx_SLEWLIM_BIT;
  174. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_1, reg);
  175. if (ret)
  176. goto out;
  177. reg = (pdata->bl_period & MC13783_LED_Cx_PERIOD_MASK) <<
  178. MC13783_LED_Cx_PERIOD;
  179. if (pdata->flags & MC13783_LED_SLEWLIMBL)
  180. reg |= MC13783_LED_Cx_SLEWLIM_BIT;
  181. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_2, reg);
  182. if (ret)
  183. goto out;
  184. reg = (pdata->tc1_period & MC13783_LED_Cx_PERIOD_MASK) <<
  185. MC13783_LED_Cx_PERIOD;
  186. if (pdata->flags & MC13783_LED_TRIODE_TC1)
  187. reg |= MC13783_LED_Cx_TRIODE_TC_BIT;
  188. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_3, reg);
  189. if (ret)
  190. goto out;
  191. reg = (pdata->tc2_period & MC13783_LED_Cx_PERIOD_MASK) <<
  192. MC13783_LED_Cx_PERIOD;
  193. if (pdata->flags & MC13783_LED_TRIODE_TC2)
  194. reg |= MC13783_LED_Cx_TRIODE_TC_BIT;
  195. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_4, reg);
  196. if (ret)
  197. goto out;
  198. reg = (pdata->tc3_period & MC13783_LED_Cx_PERIOD_MASK) <<
  199. MC13783_LED_Cx_PERIOD;
  200. if (pdata->flags & MC13783_LED_TRIODE_TC3)
  201. reg |= MC13783_LED_Cx_TRIODE_TC_BIT;
  202. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_5, reg);
  203. if (ret)
  204. goto out;
  205. reg = MC13783_LED_C0_ENABLE_BIT;
  206. if (pdata->flags & MC13783_LED_TRIODE_MD)
  207. reg |= MC13783_LED_C0_TRIODE_MD_BIT;
  208. if (pdata->flags & MC13783_LED_TRIODE_AD)
  209. reg |= MC13783_LED_C0_TRIODE_AD_BIT;
  210. if (pdata->flags & MC13783_LED_TRIODE_KP)
  211. reg |= MC13783_LED_C0_TRIODE_KP_BIT;
  212. if (pdata->flags & MC13783_LED_BOOST_EN)
  213. reg |= MC13783_LED_C0_BOOST_BIT;
  214. reg |= (pdata->abmode & MC13783_LED_C0_ABMODE_MASK) <<
  215. MC13783_LED_C0_ABMODE;
  216. reg |= (pdata->abref & MC13783_LED_C0_ABREF_MASK) <<
  217. MC13783_LED_C0_ABREF;
  218. ret = mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_0, reg);
  219. out:
  220. mc13xxx_unlock(dev);
  221. return ret;
  222. }
  223. static int __devinit mc13783_led_probe(struct platform_device *pdev)
  224. {
  225. struct mc13xxx_leds_platform_data *pdata = dev_get_platdata(&pdev->dev);
  226. struct mc13xxx_led_platform_data *led_cur;
  227. struct mc13783_led *led, *led_dat;
  228. int ret, i;
  229. int init_led = 0;
  230. if (pdata == NULL) {
  231. dev_err(&pdev->dev, "missing platform data\n");
  232. return -ENODEV;
  233. }
  234. if (pdata->num_leds < 1 || pdata->num_leds > (MC13783_LED_MAX + 1)) {
  235. dev_err(&pdev->dev, "Invalid led count %d\n", pdata->num_leds);
  236. return -EINVAL;
  237. }
  238. led = kzalloc(sizeof(*led) * pdata->num_leds, GFP_KERNEL);
  239. if (led == NULL) {
  240. dev_err(&pdev->dev, "failed to alloc memory\n");
  241. return -ENOMEM;
  242. }
  243. ret = mc13783_leds_prepare(pdev);
  244. if (ret) {
  245. dev_err(&pdev->dev, "unable to init led driver\n");
  246. goto err_free;
  247. }
  248. for (i = 0; i < pdata->num_leds; i++) {
  249. led_dat = &led[i];
  250. led_cur = &pdata->led[i];
  251. if (led_cur->id > MC13783_LED_MAX || led_cur->id < 0) {
  252. dev_err(&pdev->dev, "invalid id %d\n", led_cur->id);
  253. ret = -EINVAL;
  254. goto err_register;
  255. }
  256. if (init_led & (1 << led_cur->id)) {
  257. dev_err(&pdev->dev, "led %d already initialized\n",
  258. led_cur->id);
  259. ret = -EINVAL;
  260. goto err_register;
  261. }
  262. init_led |= 1 << led_cur->id;
  263. led_dat->cdev.name = led_cur->name;
  264. led_dat->cdev.default_trigger = led_cur->default_trigger;
  265. led_dat->cdev.brightness_set = mc13783_led_set;
  266. led_dat->cdev.brightness = LED_OFF;
  267. led_dat->id = led_cur->id;
  268. led_dat->master = dev_get_drvdata(pdev->dev.parent);
  269. INIT_WORK(&led_dat->work, mc13783_led_work);
  270. ret = led_classdev_register(pdev->dev.parent, &led_dat->cdev);
  271. if (ret) {
  272. dev_err(&pdev->dev, "failed to register led %d\n",
  273. led_dat->id);
  274. goto err_register;
  275. }
  276. ret = mc13783_led_setup(led_dat, led_cur->max_current);
  277. if (ret) {
  278. dev_err(&pdev->dev, "unable to init led %d\n",
  279. led_dat->id);
  280. i++;
  281. goto err_register;
  282. }
  283. }
  284. platform_set_drvdata(pdev, led);
  285. return 0;
  286. err_register:
  287. for (i = i - 1; i >= 0; i--) {
  288. led_classdev_unregister(&led[i].cdev);
  289. cancel_work_sync(&led[i].work);
  290. }
  291. err_free:
  292. kfree(led);
  293. return ret;
  294. }
  295. static int __devexit mc13783_led_remove(struct platform_device *pdev)
  296. {
  297. struct mc13xxx_leds_platform_data *pdata = dev_get_platdata(&pdev->dev);
  298. struct mc13783_led *led = platform_get_drvdata(pdev);
  299. struct mc13xxx *dev = dev_get_drvdata(pdev->dev.parent);
  300. int i;
  301. for (i = 0; i < pdata->num_leds; i++) {
  302. led_classdev_unregister(&led[i].cdev);
  303. cancel_work_sync(&led[i].work);
  304. }
  305. mc13xxx_lock(dev);
  306. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_0, 0);
  307. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_1, 0);
  308. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_2, 0);
  309. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_3, 0);
  310. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_4, 0);
  311. mc13xxx_reg_write(dev, MC13783_REG_LED_CONTROL_5, 0);
  312. mc13xxx_unlock(dev);
  313. kfree(led);
  314. return 0;
  315. }
  316. static struct platform_driver mc13783_led_driver = {
  317. .driver = {
  318. .name = "mc13783-led",
  319. .owner = THIS_MODULE,
  320. },
  321. .probe = mc13783_led_probe,
  322. .remove = __devexit_p(mc13783_led_remove),
  323. };
  324. module_platform_driver(mc13783_led_driver);
  325. MODULE_DESCRIPTION("LEDs driver for Freescale MC13783 PMIC");
  326. MODULE_AUTHOR("Philippe Retornaz <philippe.retornaz@epfl.ch>");
  327. MODULE_LICENSE("GPL");
  328. MODULE_ALIAS("platform:mc13783-led");