corgi_lcd.c 16 KB

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  1. /*
  2. * LCD/Backlight Driver for Sharp Zaurus Handhelds (various models)
  3. *
  4. * Copyright (c) 2004-2006 Richard Purdie
  5. *
  6. * Based on Sharp's 2.4 Backlight Driver
  7. *
  8. * Copyright (c) 2008 Marvell International Ltd.
  9. * Converted to SPI device based LCD/Backlight device driver
  10. * by Eric Miao <eric.miao@marvell.com>
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License version 2 as
  14. * published by the Free Software Foundation.
  15. *
  16. */
  17. #include <linux/module.h>
  18. #include <linux/kernel.h>
  19. #include <linux/init.h>
  20. #include <linux/delay.h>
  21. #include <linux/gpio.h>
  22. #include <linux/fb.h>
  23. #include <linux/lcd.h>
  24. #include <linux/spi/spi.h>
  25. #include <linux/spi/corgi_lcd.h>
  26. #include <asm/mach/sharpsl_param.h>
  27. #define POWER_IS_ON(pwr) ((pwr) <= FB_BLANK_NORMAL)
  28. /* Register Addresses */
  29. #define RESCTL_ADRS 0x00
  30. #define PHACTRL_ADRS 0x01
  31. #define DUTYCTRL_ADRS 0x02
  32. #define POWERREG0_ADRS 0x03
  33. #define POWERREG1_ADRS 0x04
  34. #define GPOR3_ADRS 0x05
  35. #define PICTRL_ADRS 0x06
  36. #define POLCTRL_ADRS 0x07
  37. /* Register Bit Definitions */
  38. #define RESCTL_QVGA 0x01
  39. #define RESCTL_VGA 0x00
  40. #define POWER1_VW_ON 0x01 /* VW Supply FET ON */
  41. #define POWER1_GVSS_ON 0x02 /* GVSS(-8V) Power Supply ON */
  42. #define POWER1_VDD_ON 0x04 /* VDD(8V),SVSS(-4V) Power Supply ON */
  43. #define POWER1_VW_OFF 0x00 /* VW Supply FET OFF */
  44. #define POWER1_GVSS_OFF 0x00 /* GVSS(-8V) Power Supply OFF */
  45. #define POWER1_VDD_OFF 0x00 /* VDD(8V),SVSS(-4V) Power Supply OFF */
  46. #define POWER0_COM_DCLK 0x01 /* COM Voltage DC Bias DAC Serial Data Clock */
  47. #define POWER0_COM_DOUT 0x02 /* COM Voltage DC Bias DAC Serial Data Out */
  48. #define POWER0_DAC_ON 0x04 /* DAC Power Supply ON */
  49. #define POWER0_COM_ON 0x08 /* COM Power Supply ON */
  50. #define POWER0_VCC5_ON 0x10 /* VCC5 Power Supply ON */
  51. #define POWER0_DAC_OFF 0x00 /* DAC Power Supply OFF */
  52. #define POWER0_COM_OFF 0x00 /* COM Power Supply OFF */
  53. #define POWER0_VCC5_OFF 0x00 /* VCC5 Power Supply OFF */
  54. #define PICTRL_INIT_STATE 0x01
  55. #define PICTRL_INIOFF 0x02
  56. #define PICTRL_POWER_DOWN 0x04
  57. #define PICTRL_COM_SIGNAL_OFF 0x08
  58. #define PICTRL_DAC_SIGNAL_OFF 0x10
  59. #define POLCTRL_SYNC_POL_FALL 0x01
  60. #define POLCTRL_EN_POL_FALL 0x02
  61. #define POLCTRL_DATA_POL_FALL 0x04
  62. #define POLCTRL_SYNC_ACT_H 0x08
  63. #define POLCTRL_EN_ACT_L 0x10
  64. #define POLCTRL_SYNC_POL_RISE 0x00
  65. #define POLCTRL_EN_POL_RISE 0x00
  66. #define POLCTRL_DATA_POL_RISE 0x00
  67. #define POLCTRL_SYNC_ACT_L 0x00
  68. #define POLCTRL_EN_ACT_H 0x00
  69. #define PHACTRL_PHASE_MANUAL 0x01
  70. #define DEFAULT_PHAD_QVGA (9)
  71. #define DEFAULT_COMADJ (125)
  72. struct corgi_lcd {
  73. struct spi_device *spi_dev;
  74. struct lcd_device *lcd_dev;
  75. struct backlight_device *bl_dev;
  76. int limit_mask;
  77. int intensity;
  78. int power;
  79. int mode;
  80. char buf[2];
  81. int gpio_backlight_on;
  82. int gpio_backlight_cont;
  83. int gpio_backlight_cont_inverted;
  84. void (*kick_battery)(void);
  85. };
  86. static int corgi_ssp_lcdtg_send(struct corgi_lcd *lcd, int reg, uint8_t val);
  87. static struct corgi_lcd *the_corgi_lcd;
  88. static unsigned long corgibl_flags;
  89. #define CORGIBL_SUSPENDED 0x01
  90. #define CORGIBL_BATTLOW 0x02
  91. /*
  92. * This is only a psuedo I2C interface. We can't use the standard kernel
  93. * routines as the interface is write only. We just assume the data is acked...
  94. */
  95. static void lcdtg_ssp_i2c_send(struct corgi_lcd *lcd, uint8_t data)
  96. {
  97. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS, data);
  98. udelay(10);
  99. }
  100. static void lcdtg_i2c_send_bit(struct corgi_lcd *lcd, uint8_t data)
  101. {
  102. lcdtg_ssp_i2c_send(lcd, data);
  103. lcdtg_ssp_i2c_send(lcd, data | POWER0_COM_DCLK);
  104. lcdtg_ssp_i2c_send(lcd, data);
  105. }
  106. static void lcdtg_i2c_send_start(struct corgi_lcd *lcd, uint8_t base)
  107. {
  108. lcdtg_ssp_i2c_send(lcd, base | POWER0_COM_DCLK | POWER0_COM_DOUT);
  109. lcdtg_ssp_i2c_send(lcd, base | POWER0_COM_DCLK);
  110. lcdtg_ssp_i2c_send(lcd, base);
  111. }
  112. static void lcdtg_i2c_send_stop(struct corgi_lcd *lcd, uint8_t base)
  113. {
  114. lcdtg_ssp_i2c_send(lcd, base);
  115. lcdtg_ssp_i2c_send(lcd, base | POWER0_COM_DCLK);
  116. lcdtg_ssp_i2c_send(lcd, base | POWER0_COM_DCLK | POWER0_COM_DOUT);
  117. }
  118. static void lcdtg_i2c_send_byte(struct corgi_lcd *lcd,
  119. uint8_t base, uint8_t data)
  120. {
  121. int i;
  122. for (i = 0; i < 8; i++) {
  123. if (data & 0x80)
  124. lcdtg_i2c_send_bit(lcd, base | POWER0_COM_DOUT);
  125. else
  126. lcdtg_i2c_send_bit(lcd, base);
  127. data <<= 1;
  128. }
  129. }
  130. static void lcdtg_i2c_wait_ack(struct corgi_lcd *lcd, uint8_t base)
  131. {
  132. lcdtg_i2c_send_bit(lcd, base);
  133. }
  134. static void lcdtg_set_common_voltage(struct corgi_lcd *lcd,
  135. uint8_t base_data, uint8_t data)
  136. {
  137. /* Set Common Voltage to M62332FP via I2C */
  138. lcdtg_i2c_send_start(lcd, base_data);
  139. lcdtg_i2c_send_byte(lcd, base_data, 0x9c);
  140. lcdtg_i2c_wait_ack(lcd, base_data);
  141. lcdtg_i2c_send_byte(lcd, base_data, 0x00);
  142. lcdtg_i2c_wait_ack(lcd, base_data);
  143. lcdtg_i2c_send_byte(lcd, base_data, data);
  144. lcdtg_i2c_wait_ack(lcd, base_data);
  145. lcdtg_i2c_send_stop(lcd, base_data);
  146. }
  147. static int corgi_ssp_lcdtg_send(struct corgi_lcd *lcd, int adrs, uint8_t data)
  148. {
  149. struct spi_message msg;
  150. struct spi_transfer xfer = {
  151. .len = 1,
  152. .cs_change = 1,
  153. .tx_buf = lcd->buf,
  154. };
  155. lcd->buf[0] = ((adrs & 0x07) << 5) | (data & 0x1f);
  156. spi_message_init(&msg);
  157. spi_message_add_tail(&xfer, &msg);
  158. return spi_sync(lcd->spi_dev, &msg);
  159. }
  160. /* Set Phase Adjust */
  161. static void lcdtg_set_phadadj(struct corgi_lcd *lcd, int mode)
  162. {
  163. int adj;
  164. switch(mode) {
  165. case CORGI_LCD_MODE_VGA:
  166. /* Setting for VGA */
  167. adj = sharpsl_param.phadadj;
  168. adj = (adj < 0) ? PHACTRL_PHASE_MANUAL :
  169. PHACTRL_PHASE_MANUAL | ((adj & 0xf) << 1);
  170. break;
  171. case CORGI_LCD_MODE_QVGA:
  172. default:
  173. /* Setting for QVGA */
  174. adj = (DEFAULT_PHAD_QVGA << 1) | PHACTRL_PHASE_MANUAL;
  175. break;
  176. }
  177. corgi_ssp_lcdtg_send(lcd, PHACTRL_ADRS, adj);
  178. }
  179. static void corgi_lcd_power_on(struct corgi_lcd *lcd)
  180. {
  181. int comadj;
  182. /* Initialize Internal Logic & Port */
  183. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS,
  184. PICTRL_POWER_DOWN | PICTRL_INIOFF |
  185. PICTRL_INIT_STATE | PICTRL_COM_SIGNAL_OFF |
  186. PICTRL_DAC_SIGNAL_OFF);
  187. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  188. POWER0_COM_DCLK | POWER0_COM_DOUT | POWER0_DAC_OFF |
  189. POWER0_COM_OFF | POWER0_VCC5_OFF);
  190. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  191. POWER1_VW_OFF | POWER1_GVSS_OFF | POWER1_VDD_OFF);
  192. /* VDD(+8V), SVSS(-4V) ON */
  193. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  194. POWER1_VW_OFF | POWER1_GVSS_OFF | POWER1_VDD_ON);
  195. mdelay(3);
  196. /* DAC ON */
  197. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  198. POWER0_COM_DCLK | POWER0_COM_DOUT | POWER0_DAC_ON |
  199. POWER0_COM_OFF | POWER0_VCC5_OFF);
  200. /* INIB = H, INI = L */
  201. /* PICTL[0] = H , PICTL[1] = PICTL[2] = PICTL[4] = L */
  202. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS,
  203. PICTRL_INIT_STATE | PICTRL_COM_SIGNAL_OFF);
  204. /* Set Common Voltage */
  205. comadj = sharpsl_param.comadj;
  206. if (comadj < 0)
  207. comadj = DEFAULT_COMADJ;
  208. lcdtg_set_common_voltage(lcd, POWER0_DAC_ON | POWER0_COM_OFF |
  209. POWER0_VCC5_OFF, comadj);
  210. /* VCC5 ON, DAC ON */
  211. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  212. POWER0_COM_DCLK | POWER0_COM_DOUT | POWER0_DAC_ON |
  213. POWER0_COM_OFF | POWER0_VCC5_ON);
  214. /* GVSS(-8V) ON, VDD ON */
  215. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  216. POWER1_VW_OFF | POWER1_GVSS_ON | POWER1_VDD_ON);
  217. mdelay(2);
  218. /* COM SIGNAL ON (PICTL[3] = L) */
  219. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS, PICTRL_INIT_STATE);
  220. /* COM ON, DAC ON, VCC5_ON */
  221. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  222. POWER0_COM_DCLK | POWER0_COM_DOUT | POWER0_DAC_ON |
  223. POWER0_COM_ON | POWER0_VCC5_ON);
  224. /* VW ON, GVSS ON, VDD ON */
  225. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  226. POWER1_VW_ON | POWER1_GVSS_ON | POWER1_VDD_ON);
  227. /* Signals output enable */
  228. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS, 0);
  229. /* Set Phase Adjust */
  230. lcdtg_set_phadadj(lcd, lcd->mode);
  231. /* Initialize for Input Signals from ATI */
  232. corgi_ssp_lcdtg_send(lcd, POLCTRL_ADRS,
  233. POLCTRL_SYNC_POL_RISE | POLCTRL_EN_POL_RISE |
  234. POLCTRL_DATA_POL_RISE | POLCTRL_SYNC_ACT_L |
  235. POLCTRL_EN_ACT_H);
  236. udelay(1000);
  237. switch (lcd->mode) {
  238. case CORGI_LCD_MODE_VGA:
  239. corgi_ssp_lcdtg_send(lcd, RESCTL_ADRS, RESCTL_VGA);
  240. break;
  241. case CORGI_LCD_MODE_QVGA:
  242. default:
  243. corgi_ssp_lcdtg_send(lcd, RESCTL_ADRS, RESCTL_QVGA);
  244. break;
  245. }
  246. }
  247. static void corgi_lcd_power_off(struct corgi_lcd *lcd)
  248. {
  249. /* 60Hz x 2 frame = 16.7msec x 2 = 33.4 msec */
  250. msleep(34);
  251. /* (1)VW OFF */
  252. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  253. POWER1_VW_OFF | POWER1_GVSS_ON | POWER1_VDD_ON);
  254. /* (2)COM OFF */
  255. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS, PICTRL_COM_SIGNAL_OFF);
  256. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  257. POWER0_DAC_ON | POWER0_COM_OFF | POWER0_VCC5_ON);
  258. /* (3)Set Common Voltage Bias 0V */
  259. lcdtg_set_common_voltage(lcd, POWER0_DAC_ON | POWER0_COM_OFF |
  260. POWER0_VCC5_ON, 0);
  261. /* (4)GVSS OFF */
  262. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  263. POWER1_VW_OFF | POWER1_GVSS_OFF | POWER1_VDD_ON);
  264. /* (5)VCC5 OFF */
  265. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  266. POWER0_DAC_ON | POWER0_COM_OFF | POWER0_VCC5_OFF);
  267. /* (6)Set PDWN, INIOFF, DACOFF */
  268. corgi_ssp_lcdtg_send(lcd, PICTRL_ADRS,
  269. PICTRL_INIOFF | PICTRL_DAC_SIGNAL_OFF |
  270. PICTRL_POWER_DOWN | PICTRL_COM_SIGNAL_OFF);
  271. /* (7)DAC OFF */
  272. corgi_ssp_lcdtg_send(lcd, POWERREG0_ADRS,
  273. POWER0_DAC_OFF | POWER0_COM_OFF | POWER0_VCC5_OFF);
  274. /* (8)VDD OFF */
  275. corgi_ssp_lcdtg_send(lcd, POWERREG1_ADRS,
  276. POWER1_VW_OFF | POWER1_GVSS_OFF | POWER1_VDD_OFF);
  277. }
  278. static int corgi_lcd_set_mode(struct lcd_device *ld, struct fb_videomode *m)
  279. {
  280. struct corgi_lcd *lcd = dev_get_drvdata(&ld->dev);
  281. int mode = CORGI_LCD_MODE_QVGA;
  282. if (m->xres == 640 || m->xres == 480)
  283. mode = CORGI_LCD_MODE_VGA;
  284. if (lcd->mode == mode)
  285. return 0;
  286. lcdtg_set_phadadj(lcd, mode);
  287. switch (mode) {
  288. case CORGI_LCD_MODE_VGA:
  289. corgi_ssp_lcdtg_send(lcd, RESCTL_ADRS, RESCTL_VGA);
  290. break;
  291. case CORGI_LCD_MODE_QVGA:
  292. default:
  293. corgi_ssp_lcdtg_send(lcd, RESCTL_ADRS, RESCTL_QVGA);
  294. break;
  295. }
  296. lcd->mode = mode;
  297. return 0;
  298. }
  299. static int corgi_lcd_set_power(struct lcd_device *ld, int power)
  300. {
  301. struct corgi_lcd *lcd = dev_get_drvdata(&ld->dev);
  302. if (POWER_IS_ON(power) && !POWER_IS_ON(lcd->power))
  303. corgi_lcd_power_on(lcd);
  304. if (!POWER_IS_ON(power) && POWER_IS_ON(lcd->power))
  305. corgi_lcd_power_off(lcd);
  306. lcd->power = power;
  307. return 0;
  308. }
  309. static int corgi_lcd_get_power(struct lcd_device *ld)
  310. {
  311. struct corgi_lcd *lcd = dev_get_drvdata(&ld->dev);
  312. return lcd->power;
  313. }
  314. static struct lcd_ops corgi_lcd_ops = {
  315. .get_power = corgi_lcd_get_power,
  316. .set_power = corgi_lcd_set_power,
  317. .set_mode = corgi_lcd_set_mode,
  318. };
  319. static int corgi_bl_get_intensity(struct backlight_device *bd)
  320. {
  321. struct corgi_lcd *lcd = dev_get_drvdata(&bd->dev);
  322. return lcd->intensity;
  323. }
  324. static int corgi_bl_set_intensity(struct corgi_lcd *lcd, int intensity)
  325. {
  326. int cont;
  327. if (intensity > 0x10)
  328. intensity += 0x10;
  329. corgi_ssp_lcdtg_send(lcd, DUTYCTRL_ADRS, intensity);
  330. /* Bit 5 via GPIO_BACKLIGHT_CONT */
  331. cont = !!(intensity & 0x20) ^ lcd->gpio_backlight_cont_inverted;
  332. if (gpio_is_valid(lcd->gpio_backlight_cont))
  333. gpio_set_value(lcd->gpio_backlight_cont, cont);
  334. if (gpio_is_valid(lcd->gpio_backlight_on))
  335. gpio_set_value(lcd->gpio_backlight_on, intensity);
  336. if (lcd->kick_battery)
  337. lcd->kick_battery();
  338. lcd->intensity = intensity;
  339. return 0;
  340. }
  341. static int corgi_bl_update_status(struct backlight_device *bd)
  342. {
  343. struct corgi_lcd *lcd = dev_get_drvdata(&bd->dev);
  344. int intensity = bd->props.brightness;
  345. if (bd->props.power != FB_BLANK_UNBLANK)
  346. intensity = 0;
  347. if (bd->props.fb_blank != FB_BLANK_UNBLANK)
  348. intensity = 0;
  349. if (corgibl_flags & CORGIBL_SUSPENDED)
  350. intensity = 0;
  351. if (corgibl_flags & CORGIBL_BATTLOW)
  352. intensity &= lcd->limit_mask;
  353. return corgi_bl_set_intensity(lcd, intensity);
  354. }
  355. void corgibl_limit_intensity(int limit)
  356. {
  357. if (limit)
  358. corgibl_flags |= CORGIBL_BATTLOW;
  359. else
  360. corgibl_flags &= ~CORGIBL_BATTLOW;
  361. backlight_update_status(the_corgi_lcd->bl_dev);
  362. }
  363. EXPORT_SYMBOL(corgibl_limit_intensity);
  364. static struct backlight_ops corgi_bl_ops = {
  365. .get_brightness = corgi_bl_get_intensity,
  366. .update_status = corgi_bl_update_status,
  367. };
  368. #ifdef CONFIG_PM
  369. static int corgi_lcd_suspend(struct spi_device *spi, pm_message_t state)
  370. {
  371. struct corgi_lcd *lcd = dev_get_drvdata(&spi->dev);
  372. corgibl_flags |= CORGIBL_SUSPENDED;
  373. corgi_bl_set_intensity(lcd, 0);
  374. corgi_lcd_set_power(lcd->lcd_dev, FB_BLANK_POWERDOWN);
  375. return 0;
  376. }
  377. static int corgi_lcd_resume(struct spi_device *spi)
  378. {
  379. struct corgi_lcd *lcd = dev_get_drvdata(&spi->dev);
  380. corgibl_flags &= ~CORGIBL_SUSPENDED;
  381. corgi_lcd_set_power(lcd->lcd_dev, FB_BLANK_UNBLANK);
  382. backlight_update_status(lcd->bl_dev);
  383. return 0;
  384. }
  385. #else
  386. #define corgi_lcd_suspend NULL
  387. #define corgi_lcd_resume NULL
  388. #endif
  389. static int setup_gpio_backlight(struct corgi_lcd *lcd,
  390. struct corgi_lcd_platform_data *pdata)
  391. {
  392. struct spi_device *spi = lcd->spi_dev;
  393. int err;
  394. lcd->gpio_backlight_on = -1;
  395. lcd->gpio_backlight_cont = -1;
  396. if (gpio_is_valid(pdata->gpio_backlight_on)) {
  397. err = gpio_request(pdata->gpio_backlight_on, "BL_ON");
  398. if (err) {
  399. dev_err(&spi->dev, "failed to request GPIO%d for "
  400. "backlight_on\n", pdata->gpio_backlight_on);
  401. return err;
  402. }
  403. lcd->gpio_backlight_on = pdata->gpio_backlight_on;
  404. gpio_direction_output(lcd->gpio_backlight_on, 0);
  405. }
  406. if (gpio_is_valid(pdata->gpio_backlight_cont)) {
  407. err = gpio_request(pdata->gpio_backlight_cont, "BL_CONT");
  408. if (err) {
  409. dev_err(&spi->dev, "failed to request GPIO%d for "
  410. "backlight_cont\n", pdata->gpio_backlight_cont);
  411. goto err_free_backlight_on;
  412. }
  413. lcd->gpio_backlight_cont = pdata->gpio_backlight_cont;
  414. /* spitz and akita use both GPIOs for backlight, and
  415. * have inverted polarity of GPIO_BACKLIGHT_CONT
  416. */
  417. if (gpio_is_valid(lcd->gpio_backlight_on)) {
  418. lcd->gpio_backlight_cont_inverted = 1;
  419. gpio_direction_output(lcd->gpio_backlight_cont, 1);
  420. } else {
  421. lcd->gpio_backlight_cont_inverted = 0;
  422. gpio_direction_output(lcd->gpio_backlight_cont, 0);
  423. }
  424. }
  425. return 0;
  426. err_free_backlight_on:
  427. if (gpio_is_valid(lcd->gpio_backlight_on))
  428. gpio_free(lcd->gpio_backlight_on);
  429. return err;
  430. }
  431. static int __devinit corgi_lcd_probe(struct spi_device *spi)
  432. {
  433. struct corgi_lcd_platform_data *pdata = spi->dev.platform_data;
  434. struct corgi_lcd *lcd;
  435. int ret = 0;
  436. if (pdata == NULL) {
  437. dev_err(&spi->dev, "platform data not available\n");
  438. return -EINVAL;
  439. }
  440. lcd = kzalloc(sizeof(struct corgi_lcd), GFP_KERNEL);
  441. if (!lcd) {
  442. dev_err(&spi->dev, "failed to allocate memory\n");
  443. return -ENOMEM;
  444. }
  445. lcd->spi_dev = spi;
  446. lcd->lcd_dev = lcd_device_register("corgi_lcd", &spi->dev,
  447. lcd, &corgi_lcd_ops);
  448. if (IS_ERR(lcd->lcd_dev)) {
  449. ret = PTR_ERR(lcd->lcd_dev);
  450. goto err_free_lcd;
  451. }
  452. lcd->power = FB_BLANK_POWERDOWN;
  453. lcd->mode = (pdata) ? pdata->init_mode : CORGI_LCD_MODE_VGA;
  454. lcd->bl_dev = backlight_device_register("corgi_bl", &spi->dev,
  455. lcd, &corgi_bl_ops);
  456. if (IS_ERR(lcd->bl_dev)) {
  457. ret = PTR_ERR(lcd->bl_dev);
  458. goto err_unregister_lcd;
  459. }
  460. lcd->bl_dev->props.max_brightness = pdata->max_intensity;
  461. lcd->bl_dev->props.brightness = pdata->default_intensity;
  462. lcd->bl_dev->props.power = FB_BLANK_UNBLANK;
  463. ret = setup_gpio_backlight(lcd, pdata);
  464. if (ret)
  465. goto err_unregister_bl;
  466. lcd->kick_battery = pdata->kick_battery;
  467. dev_set_drvdata(&spi->dev, lcd);
  468. corgi_lcd_set_power(lcd->lcd_dev, FB_BLANK_UNBLANK);
  469. backlight_update_status(lcd->bl_dev);
  470. lcd->limit_mask = pdata->limit_mask;
  471. the_corgi_lcd = lcd;
  472. return 0;
  473. err_unregister_bl:
  474. backlight_device_unregister(lcd->bl_dev);
  475. err_unregister_lcd:
  476. lcd_device_unregister(lcd->lcd_dev);
  477. err_free_lcd:
  478. kfree(lcd);
  479. return ret;
  480. }
  481. static int __devexit corgi_lcd_remove(struct spi_device *spi)
  482. {
  483. struct corgi_lcd *lcd = dev_get_drvdata(&spi->dev);
  484. lcd->bl_dev->props.power = FB_BLANK_UNBLANK;
  485. lcd->bl_dev->props.brightness = 0;
  486. backlight_update_status(lcd->bl_dev);
  487. backlight_device_unregister(lcd->bl_dev);
  488. if (gpio_is_valid(lcd->gpio_backlight_on))
  489. gpio_free(lcd->gpio_backlight_on);
  490. if (gpio_is_valid(lcd->gpio_backlight_cont))
  491. gpio_free(lcd->gpio_backlight_cont);
  492. corgi_lcd_set_power(lcd->lcd_dev, FB_BLANK_POWERDOWN);
  493. lcd_device_unregister(lcd->lcd_dev);
  494. kfree(lcd);
  495. return 0;
  496. }
  497. static struct spi_driver corgi_lcd_driver = {
  498. .driver = {
  499. .name = "corgi-lcd",
  500. .owner = THIS_MODULE,
  501. },
  502. .probe = corgi_lcd_probe,
  503. .remove = __devexit_p(corgi_lcd_remove),
  504. .suspend = corgi_lcd_suspend,
  505. .resume = corgi_lcd_resume,
  506. };
  507. static int __init corgi_lcd_init(void)
  508. {
  509. return spi_register_driver(&corgi_lcd_driver);
  510. }
  511. module_init(corgi_lcd_init);
  512. static void __exit corgi_lcd_exit(void)
  513. {
  514. spi_unregister_driver(&corgi_lcd_driver);
  515. }
  516. module_exit(corgi_lcd_exit);
  517. MODULE_DESCRIPTION("LCD and backlight driver for SHARP C7x0/Cxx00");
  518. MODULE_AUTHOR("Eric Miao <eric.miao@marvell.com>");
  519. MODULE_LICENSE("GPL");