mach-origen.c 20 KB

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  1. /* linux/arch/arm/mach-exynos4/mach-origen.c
  2. *
  3. * Copyright (c) 2011 Insignal Co., Ltd.
  4. * http://www.insignal.co.kr/
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. */
  10. #include <linux/serial_core.h>
  11. #include <linux/leds.h>
  12. #include <linux/gpio.h>
  13. #include <linux/mmc/host.h>
  14. #include <linux/platform_device.h>
  15. #include <linux/io.h>
  16. #include <linux/input.h>
  17. #include <linux/pwm_backlight.h>
  18. #include <linux/gpio_keys.h>
  19. #include <linux/i2c.h>
  20. #include <linux/regulator/machine.h>
  21. #include <linux/mfd/max8997.h>
  22. #include <linux/lcd.h>
  23. #include <linux/rfkill-gpio.h>
  24. #include <linux/platform_data/s3c-hsotg.h>
  25. #include <asm/mach/arch.h>
  26. #include <asm/hardware/gic.h>
  27. #include <asm/mach-types.h>
  28. #include <video/platform_lcd.h>
  29. #include <plat/regs-serial.h>
  30. #include <plat/regs-fb-v4.h>
  31. #include <plat/cpu.h>
  32. #include <plat/devs.h>
  33. #include <plat/sdhci.h>
  34. #include <plat/iic.h>
  35. #include <plat/ehci.h>
  36. #include <plat/clock.h>
  37. #include <plat/gpio-cfg.h>
  38. #include <plat/backlight.h>
  39. #include <plat/fb.h>
  40. #include <plat/mfc.h>
  41. #include <mach/ohci.h>
  42. #include <mach/map.h>
  43. #include <drm/exynos_drm.h>
  44. #include "common.h"
  45. /* Following are default values for UCON, ULCON and UFCON UART registers */
  46. #define ORIGEN_UCON_DEFAULT (S3C2410_UCON_TXILEVEL | \
  47. S3C2410_UCON_RXILEVEL | \
  48. S3C2410_UCON_TXIRQMODE | \
  49. S3C2410_UCON_RXIRQMODE | \
  50. S3C2410_UCON_RXFIFO_TOI | \
  51. S3C2443_UCON_RXERR_IRQEN)
  52. #define ORIGEN_ULCON_DEFAULT S3C2410_LCON_CS8
  53. #define ORIGEN_UFCON_DEFAULT (S3C2410_UFCON_FIFOMODE | \
  54. S5PV210_UFCON_TXTRIG4 | \
  55. S5PV210_UFCON_RXTRIG4)
  56. static struct s3c2410_uartcfg origen_uartcfgs[] __initdata = {
  57. [0] = {
  58. .hwport = 0,
  59. .flags = 0,
  60. .ucon = ORIGEN_UCON_DEFAULT,
  61. .ulcon = ORIGEN_ULCON_DEFAULT,
  62. .ufcon = ORIGEN_UFCON_DEFAULT,
  63. },
  64. [1] = {
  65. .hwport = 1,
  66. .flags = 0,
  67. .ucon = ORIGEN_UCON_DEFAULT,
  68. .ulcon = ORIGEN_ULCON_DEFAULT,
  69. .ufcon = ORIGEN_UFCON_DEFAULT,
  70. },
  71. [2] = {
  72. .hwport = 2,
  73. .flags = 0,
  74. .ucon = ORIGEN_UCON_DEFAULT,
  75. .ulcon = ORIGEN_ULCON_DEFAULT,
  76. .ufcon = ORIGEN_UFCON_DEFAULT,
  77. },
  78. [3] = {
  79. .hwport = 3,
  80. .flags = 0,
  81. .ucon = ORIGEN_UCON_DEFAULT,
  82. .ulcon = ORIGEN_ULCON_DEFAULT,
  83. .ufcon = ORIGEN_UFCON_DEFAULT,
  84. },
  85. };
  86. static struct regulator_consumer_supply __initdata ldo3_consumer[] = {
  87. REGULATOR_SUPPLY("vdd11", "s5p-mipi-csis.0"), /* MIPI */
  88. REGULATOR_SUPPLY("vdd", "exynos4-hdmi"), /* HDMI */
  89. REGULATOR_SUPPLY("vdd_pll", "exynos4-hdmi"), /* HDMI */
  90. };
  91. static struct regulator_consumer_supply __initdata ldo6_consumer[] = {
  92. REGULATOR_SUPPLY("vdd18", "s5p-mipi-csis.0"), /* MIPI */
  93. };
  94. static struct regulator_consumer_supply __initdata ldo7_consumer[] = {
  95. REGULATOR_SUPPLY("avdd", "alc5625"), /* Realtek ALC5625 */
  96. };
  97. static struct regulator_consumer_supply __initdata ldo8_consumer[] = {
  98. REGULATOR_SUPPLY("vdd", "s5p-adc"), /* ADC */
  99. REGULATOR_SUPPLY("vdd_osc", "exynos4-hdmi"), /* HDMI */
  100. };
  101. static struct regulator_consumer_supply __initdata ldo9_consumer[] = {
  102. REGULATOR_SUPPLY("dvdd", "swb-a31"), /* AR6003 WLAN & CSR 8810 BT */
  103. };
  104. static struct regulator_consumer_supply __initdata ldo11_consumer[] = {
  105. REGULATOR_SUPPLY("dvdd", "alc5625"), /* Realtek ALC5625 */
  106. };
  107. static struct regulator_consumer_supply __initdata ldo14_consumer[] = {
  108. REGULATOR_SUPPLY("avdd18", "swb-a31"), /* AR6003 WLAN & CSR 8810 BT */
  109. };
  110. static struct regulator_consumer_supply __initdata ldo17_consumer[] = {
  111. REGULATOR_SUPPLY("vdd33", "swb-a31"), /* AR6003 WLAN & CSR 8810 BT */
  112. };
  113. static struct regulator_consumer_supply __initdata buck1_consumer[] = {
  114. REGULATOR_SUPPLY("vdd_arm", NULL), /* CPUFREQ */
  115. };
  116. static struct regulator_consumer_supply __initdata buck2_consumer[] = {
  117. REGULATOR_SUPPLY("vdd_int", NULL), /* CPUFREQ */
  118. };
  119. static struct regulator_consumer_supply __initdata buck3_consumer[] = {
  120. REGULATOR_SUPPLY("vdd_g3d", "mali_drm"), /* G3D */
  121. };
  122. static struct regulator_consumer_supply __initdata buck7_consumer[] = {
  123. REGULATOR_SUPPLY("vcc", "platform-lcd"), /* LCD */
  124. };
  125. static struct regulator_init_data __initdata max8997_ldo1_data = {
  126. .constraints = {
  127. .name = "VDD_ABB_3.3V",
  128. .min_uV = 3300000,
  129. .max_uV = 3300000,
  130. .apply_uV = 1,
  131. .state_mem = {
  132. .disabled = 1,
  133. },
  134. },
  135. };
  136. static struct regulator_init_data __initdata max8997_ldo2_data = {
  137. .constraints = {
  138. .name = "VDD_ALIVE_1.1V",
  139. .min_uV = 1100000,
  140. .max_uV = 1100000,
  141. .apply_uV = 1,
  142. .always_on = 1,
  143. .state_mem = {
  144. .enabled = 1,
  145. },
  146. },
  147. };
  148. static struct regulator_init_data __initdata max8997_ldo3_data = {
  149. .constraints = {
  150. .name = "VMIPI_1.1V",
  151. .min_uV = 1100000,
  152. .max_uV = 1100000,
  153. .apply_uV = 1,
  154. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  155. .state_mem = {
  156. .disabled = 1,
  157. },
  158. },
  159. .num_consumer_supplies = ARRAY_SIZE(ldo3_consumer),
  160. .consumer_supplies = ldo3_consumer,
  161. };
  162. static struct regulator_init_data __initdata max8997_ldo4_data = {
  163. .constraints = {
  164. .name = "VDD_RTC_1.8V",
  165. .min_uV = 1800000,
  166. .max_uV = 1800000,
  167. .apply_uV = 1,
  168. .always_on = 1,
  169. .state_mem = {
  170. .disabled = 1,
  171. },
  172. },
  173. };
  174. static struct regulator_init_data __initdata max8997_ldo6_data = {
  175. .constraints = {
  176. .name = "VMIPI_1.8V",
  177. .min_uV = 1800000,
  178. .max_uV = 1800000,
  179. .apply_uV = 1,
  180. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  181. .state_mem = {
  182. .disabled = 1,
  183. },
  184. },
  185. .num_consumer_supplies = ARRAY_SIZE(ldo6_consumer),
  186. .consumer_supplies = ldo6_consumer,
  187. };
  188. static struct regulator_init_data __initdata max8997_ldo7_data = {
  189. .constraints = {
  190. .name = "VDD_AUD_1.8V",
  191. .min_uV = 1800000,
  192. .max_uV = 1800000,
  193. .apply_uV = 1,
  194. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  195. .state_mem = {
  196. .disabled = 1,
  197. },
  198. },
  199. .num_consumer_supplies = ARRAY_SIZE(ldo7_consumer),
  200. .consumer_supplies = ldo7_consumer,
  201. };
  202. static struct regulator_init_data __initdata max8997_ldo8_data = {
  203. .constraints = {
  204. .name = "VADC_3.3V",
  205. .min_uV = 3300000,
  206. .max_uV = 3300000,
  207. .apply_uV = 1,
  208. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  209. .state_mem = {
  210. .disabled = 1,
  211. },
  212. },
  213. .num_consumer_supplies = ARRAY_SIZE(ldo8_consumer),
  214. .consumer_supplies = ldo8_consumer,
  215. };
  216. static struct regulator_init_data __initdata max8997_ldo9_data = {
  217. .constraints = {
  218. .name = "DVDD_SWB_2.8V",
  219. .min_uV = 2800000,
  220. .max_uV = 2800000,
  221. .apply_uV = 1,
  222. .always_on = 1,
  223. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  224. .state_mem = {
  225. .disabled = 1,
  226. },
  227. },
  228. .num_consumer_supplies = ARRAY_SIZE(ldo9_consumer),
  229. .consumer_supplies = ldo9_consumer,
  230. };
  231. static struct regulator_init_data __initdata max8997_ldo10_data = {
  232. .constraints = {
  233. .name = "VDD_PLL_1.1V",
  234. .min_uV = 1100000,
  235. .max_uV = 1100000,
  236. .apply_uV = 1,
  237. .always_on = 1,
  238. .state_mem = {
  239. .disabled = 1,
  240. },
  241. },
  242. };
  243. static struct regulator_init_data __initdata max8997_ldo11_data = {
  244. .constraints = {
  245. .name = "VDD_AUD_3V",
  246. .min_uV = 3000000,
  247. .max_uV = 3000000,
  248. .apply_uV = 1,
  249. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  250. .state_mem = {
  251. .disabled = 1,
  252. },
  253. },
  254. .num_consumer_supplies = ARRAY_SIZE(ldo11_consumer),
  255. .consumer_supplies = ldo11_consumer,
  256. };
  257. static struct regulator_init_data __initdata max8997_ldo14_data = {
  258. .constraints = {
  259. .name = "AVDD18_SWB_1.8V",
  260. .min_uV = 1800000,
  261. .max_uV = 1800000,
  262. .apply_uV = 1,
  263. .always_on = 1,
  264. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  265. .state_mem = {
  266. .disabled = 1,
  267. },
  268. },
  269. .num_consumer_supplies = ARRAY_SIZE(ldo14_consumer),
  270. .consumer_supplies = ldo14_consumer,
  271. };
  272. static struct regulator_init_data __initdata max8997_ldo17_data = {
  273. .constraints = {
  274. .name = "VDD_SWB_3.3V",
  275. .min_uV = 3300000,
  276. .max_uV = 3300000,
  277. .apply_uV = 1,
  278. .always_on = 1,
  279. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  280. .state_mem = {
  281. .disabled = 1,
  282. },
  283. },
  284. .num_consumer_supplies = ARRAY_SIZE(ldo17_consumer),
  285. .consumer_supplies = ldo17_consumer,
  286. };
  287. static struct regulator_init_data __initdata max8997_ldo21_data = {
  288. .constraints = {
  289. .name = "VDD_MIF_1.2V",
  290. .min_uV = 1200000,
  291. .max_uV = 1200000,
  292. .apply_uV = 1,
  293. .always_on = 1,
  294. .state_mem = {
  295. .disabled = 1,
  296. },
  297. },
  298. };
  299. static struct regulator_init_data __initdata max8997_buck1_data = {
  300. .constraints = {
  301. .name = "VDD_ARM_1.2V",
  302. .min_uV = 950000,
  303. .max_uV = 1350000,
  304. .always_on = 1,
  305. .boot_on = 1,
  306. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE,
  307. .state_mem = {
  308. .disabled = 1,
  309. },
  310. },
  311. .num_consumer_supplies = ARRAY_SIZE(buck1_consumer),
  312. .consumer_supplies = buck1_consumer,
  313. };
  314. static struct regulator_init_data __initdata max8997_buck2_data = {
  315. .constraints = {
  316. .name = "VDD_INT_1.1V",
  317. .min_uV = 900000,
  318. .max_uV = 1100000,
  319. .always_on = 1,
  320. .boot_on = 1,
  321. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE,
  322. .state_mem = {
  323. .disabled = 1,
  324. },
  325. },
  326. .num_consumer_supplies = ARRAY_SIZE(buck2_consumer),
  327. .consumer_supplies = buck2_consumer,
  328. };
  329. static struct regulator_init_data __initdata max8997_buck3_data = {
  330. .constraints = {
  331. .name = "VDD_G3D_1.1V",
  332. .min_uV = 900000,
  333. .max_uV = 1100000,
  334. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE |
  335. REGULATOR_CHANGE_STATUS,
  336. .state_mem = {
  337. .disabled = 1,
  338. },
  339. },
  340. .num_consumer_supplies = ARRAY_SIZE(buck3_consumer),
  341. .consumer_supplies = buck3_consumer,
  342. };
  343. static struct regulator_init_data __initdata max8997_buck5_data = {
  344. .constraints = {
  345. .name = "VDDQ_M1M2_1.2V",
  346. .min_uV = 1200000,
  347. .max_uV = 1200000,
  348. .apply_uV = 1,
  349. .always_on = 1,
  350. .state_mem = {
  351. .disabled = 1,
  352. },
  353. },
  354. };
  355. static struct regulator_init_data __initdata max8997_buck7_data = {
  356. .constraints = {
  357. .name = "VDD_LCD_3.3V",
  358. .min_uV = 3300000,
  359. .max_uV = 3300000,
  360. .boot_on = 1,
  361. .apply_uV = 1,
  362. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  363. .state_mem = {
  364. .disabled = 1
  365. },
  366. },
  367. .num_consumer_supplies = ARRAY_SIZE(buck7_consumer),
  368. .consumer_supplies = buck7_consumer,
  369. };
  370. static struct max8997_regulator_data __initdata origen_max8997_regulators[] = {
  371. { MAX8997_LDO1, &max8997_ldo1_data },
  372. { MAX8997_LDO2, &max8997_ldo2_data },
  373. { MAX8997_LDO3, &max8997_ldo3_data },
  374. { MAX8997_LDO4, &max8997_ldo4_data },
  375. { MAX8997_LDO6, &max8997_ldo6_data },
  376. { MAX8997_LDO7, &max8997_ldo7_data },
  377. { MAX8997_LDO8, &max8997_ldo8_data },
  378. { MAX8997_LDO9, &max8997_ldo9_data },
  379. { MAX8997_LDO10, &max8997_ldo10_data },
  380. { MAX8997_LDO11, &max8997_ldo11_data },
  381. { MAX8997_LDO14, &max8997_ldo14_data },
  382. { MAX8997_LDO17, &max8997_ldo17_data },
  383. { MAX8997_LDO21, &max8997_ldo21_data },
  384. { MAX8997_BUCK1, &max8997_buck1_data },
  385. { MAX8997_BUCK2, &max8997_buck2_data },
  386. { MAX8997_BUCK3, &max8997_buck3_data },
  387. { MAX8997_BUCK5, &max8997_buck5_data },
  388. { MAX8997_BUCK7, &max8997_buck7_data },
  389. };
  390. static struct max8997_platform_data __initdata origen_max8997_pdata = {
  391. .num_regulators = ARRAY_SIZE(origen_max8997_regulators),
  392. .regulators = origen_max8997_regulators,
  393. .wakeup = true,
  394. .buck1_gpiodvs = false,
  395. .buck2_gpiodvs = false,
  396. .buck5_gpiodvs = false,
  397. .ignore_gpiodvs_side_effect = true,
  398. .buck125_default_idx = 0x0,
  399. .buck125_gpios[0] = EXYNOS4_GPX0(0),
  400. .buck125_gpios[1] = EXYNOS4_GPX0(1),
  401. .buck125_gpios[2] = EXYNOS4_GPX0(2),
  402. .buck1_voltage[0] = 1350000,
  403. .buck1_voltage[1] = 1300000,
  404. .buck1_voltage[2] = 1250000,
  405. .buck1_voltage[3] = 1200000,
  406. .buck1_voltage[4] = 1150000,
  407. .buck1_voltage[5] = 1100000,
  408. .buck1_voltage[6] = 1000000,
  409. .buck1_voltage[7] = 950000,
  410. .buck2_voltage[0] = 1100000,
  411. .buck2_voltage[1] = 1100000,
  412. .buck2_voltage[2] = 1100000,
  413. .buck2_voltage[3] = 1100000,
  414. .buck2_voltage[4] = 1000000,
  415. .buck2_voltage[5] = 1000000,
  416. .buck2_voltage[6] = 1000000,
  417. .buck2_voltage[7] = 1000000,
  418. .buck5_voltage[0] = 1200000,
  419. .buck5_voltage[1] = 1200000,
  420. .buck5_voltage[2] = 1200000,
  421. .buck5_voltage[3] = 1200000,
  422. .buck5_voltage[4] = 1200000,
  423. .buck5_voltage[5] = 1200000,
  424. .buck5_voltage[6] = 1200000,
  425. .buck5_voltage[7] = 1200000,
  426. };
  427. /* I2C0 */
  428. static struct i2c_board_info i2c0_devs[] __initdata = {
  429. {
  430. I2C_BOARD_INFO("max8997", (0xCC >> 1)),
  431. .platform_data = &origen_max8997_pdata,
  432. .irq = IRQ_EINT(4),
  433. },
  434. };
  435. static struct s3c_sdhci_platdata origen_hsmmc0_pdata __initdata = {
  436. .cd_type = S3C_SDHCI_CD_INTERNAL,
  437. };
  438. static struct s3c_sdhci_platdata origen_hsmmc2_pdata __initdata = {
  439. .cd_type = S3C_SDHCI_CD_INTERNAL,
  440. };
  441. /* USB EHCI */
  442. static struct s5p_ehci_platdata origen_ehci_pdata;
  443. static void __init origen_ehci_init(void)
  444. {
  445. struct s5p_ehci_platdata *pdata = &origen_ehci_pdata;
  446. s5p_ehci_set_platdata(pdata);
  447. }
  448. /* USB OHCI */
  449. static struct exynos4_ohci_platdata origen_ohci_pdata;
  450. static void __init origen_ohci_init(void)
  451. {
  452. struct exynos4_ohci_platdata *pdata = &origen_ohci_pdata;
  453. exynos4_ohci_set_platdata(pdata);
  454. }
  455. /* USB OTG */
  456. static struct s3c_hsotg_plat origen_hsotg_pdata;
  457. static struct gpio_led origen_gpio_leds[] = {
  458. {
  459. .name = "origen::status1",
  460. .default_trigger = "heartbeat",
  461. .gpio = EXYNOS4_GPX1(3),
  462. .active_low = 1,
  463. },
  464. {
  465. .name = "origen::status2",
  466. .default_trigger = "mmc0",
  467. .gpio = EXYNOS4_GPX1(4),
  468. .active_low = 1,
  469. },
  470. };
  471. static struct gpio_led_platform_data origen_gpio_led_info = {
  472. .leds = origen_gpio_leds,
  473. .num_leds = ARRAY_SIZE(origen_gpio_leds),
  474. };
  475. static struct platform_device origen_leds_gpio = {
  476. .name = "leds-gpio",
  477. .id = -1,
  478. .dev = {
  479. .platform_data = &origen_gpio_led_info,
  480. },
  481. };
  482. static struct gpio_keys_button origen_gpio_keys_table[] = {
  483. {
  484. .code = KEY_MENU,
  485. .gpio = EXYNOS4_GPX1(5),
  486. .desc = "gpio-keys: KEY_MENU",
  487. .type = EV_KEY,
  488. .active_low = 1,
  489. .wakeup = 1,
  490. .debounce_interval = 1,
  491. }, {
  492. .code = KEY_HOME,
  493. .gpio = EXYNOS4_GPX1(6),
  494. .desc = "gpio-keys: KEY_HOME",
  495. .type = EV_KEY,
  496. .active_low = 1,
  497. .wakeup = 1,
  498. .debounce_interval = 1,
  499. }, {
  500. .code = KEY_BACK,
  501. .gpio = EXYNOS4_GPX1(7),
  502. .desc = "gpio-keys: KEY_BACK",
  503. .type = EV_KEY,
  504. .active_low = 1,
  505. .wakeup = 1,
  506. .debounce_interval = 1,
  507. }, {
  508. .code = KEY_UP,
  509. .gpio = EXYNOS4_GPX2(0),
  510. .desc = "gpio-keys: KEY_UP",
  511. .type = EV_KEY,
  512. .active_low = 1,
  513. .wakeup = 1,
  514. .debounce_interval = 1,
  515. }, {
  516. .code = KEY_DOWN,
  517. .gpio = EXYNOS4_GPX2(1),
  518. .desc = "gpio-keys: KEY_DOWN",
  519. .type = EV_KEY,
  520. .active_low = 1,
  521. .wakeup = 1,
  522. .debounce_interval = 1,
  523. },
  524. };
  525. static struct gpio_keys_platform_data origen_gpio_keys_data = {
  526. .buttons = origen_gpio_keys_table,
  527. .nbuttons = ARRAY_SIZE(origen_gpio_keys_table),
  528. };
  529. static struct platform_device origen_device_gpiokeys = {
  530. .name = "gpio-keys",
  531. .dev = {
  532. .platform_data = &origen_gpio_keys_data,
  533. },
  534. };
  535. static void lcd_hv070wsa_set_power(struct plat_lcd_data *pd, unsigned int power)
  536. {
  537. int ret;
  538. if (power)
  539. ret = gpio_request_one(EXYNOS4_GPE3(4),
  540. GPIOF_OUT_INIT_HIGH, "GPE3_4");
  541. else
  542. ret = gpio_request_one(EXYNOS4_GPE3(4),
  543. GPIOF_OUT_INIT_LOW, "GPE3_4");
  544. gpio_free(EXYNOS4_GPE3(4));
  545. if (ret)
  546. pr_err("failed to request gpio for LCD power: %d\n", ret);
  547. }
  548. static struct plat_lcd_data origen_lcd_hv070wsa_data = {
  549. .set_power = lcd_hv070wsa_set_power,
  550. };
  551. static struct platform_device origen_lcd_hv070wsa = {
  552. .name = "platform-lcd",
  553. .dev.parent = &s5p_device_fimd0.dev,
  554. .dev.platform_data = &origen_lcd_hv070wsa_data,
  555. };
  556. #ifdef CONFIG_DRM_EXYNOS
  557. static struct exynos_drm_fimd_pdata drm_fimd_pdata = {
  558. .panel = {
  559. .timing = {
  560. .left_margin = 64,
  561. .right_margin = 16,
  562. .upper_margin = 64,
  563. .lower_margin = 16,
  564. .hsync_len = 48,
  565. .vsync_len = 3,
  566. .xres = 1024,
  567. .yres = 600,
  568. },
  569. },
  570. .vidcon0 = VIDCON0_VIDOUT_RGB | VIDCON0_PNRMODE_RGB,
  571. .vidcon1 = VIDCON1_INV_HSYNC | VIDCON1_INV_VSYNC |
  572. VIDCON1_INV_VCLK,
  573. .default_win = 0,
  574. .bpp = 32,
  575. };
  576. #else
  577. static struct s3c_fb_pd_win origen_fb_win0 = {
  578. .xres = 1024,
  579. .yres = 600,
  580. .max_bpp = 32,
  581. .default_bpp = 24,
  582. .virtual_x = 1024,
  583. .virtual_y = 2 * 600,
  584. };
  585. static struct fb_videomode origen_lcd_timing = {
  586. .left_margin = 64,
  587. .right_margin = 16,
  588. .upper_margin = 64,
  589. .lower_margin = 16,
  590. .hsync_len = 48,
  591. .vsync_len = 3,
  592. .xres = 1024,
  593. .yres = 600,
  594. };
  595. static struct s3c_fb_platdata origen_lcd_pdata __initdata = {
  596. .win[0] = &origen_fb_win0,
  597. .vtiming = &origen_lcd_timing,
  598. .vidcon0 = VIDCON0_VIDOUT_RGB | VIDCON0_PNRMODE_RGB,
  599. .vidcon1 = VIDCON1_INV_HSYNC | VIDCON1_INV_VSYNC |
  600. VIDCON1_INV_VCLK,
  601. .setup_gpio = exynos4_fimd0_gpio_setup_24bpp,
  602. };
  603. #endif
  604. /* Bluetooth rfkill gpio platform data */
  605. static struct rfkill_gpio_platform_data origen_bt_pdata = {
  606. .reset_gpio = EXYNOS4_GPX2(2),
  607. .shutdown_gpio = -1,
  608. .type = RFKILL_TYPE_BLUETOOTH,
  609. .name = "origen-bt",
  610. };
  611. /* Bluetooth Platform device */
  612. static struct platform_device origen_device_bluetooth = {
  613. .name = "rfkill_gpio",
  614. .id = -1,
  615. .dev = {
  616. .platform_data = &origen_bt_pdata,
  617. },
  618. };
  619. static struct platform_device *origen_devices[] __initdata = {
  620. &s3c_device_hsmmc2,
  621. &s3c_device_hsmmc0,
  622. &s3c_device_i2c0,
  623. &s3c_device_rtc,
  624. &s3c_device_usb_hsotg,
  625. &s3c_device_wdt,
  626. &s5p_device_ehci,
  627. &s5p_device_fimc0,
  628. &s5p_device_fimc1,
  629. &s5p_device_fimc2,
  630. &s5p_device_fimc3,
  631. &s5p_device_fimc_md,
  632. &s5p_device_fimd0,
  633. &s5p_device_g2d,
  634. &s5p_device_hdmi,
  635. &s5p_device_i2c_hdmiphy,
  636. &s5p_device_jpeg,
  637. &s5p_device_mfc,
  638. &s5p_device_mfc_l,
  639. &s5p_device_mfc_r,
  640. &s5p_device_mixer,
  641. #ifdef CONFIG_DRM_EXYNOS
  642. &exynos_device_drm,
  643. #endif
  644. &exynos4_device_ohci,
  645. &origen_device_gpiokeys,
  646. &origen_lcd_hv070wsa,
  647. &origen_leds_gpio,
  648. &origen_device_bluetooth,
  649. };
  650. /* LCD Backlight data */
  651. static struct samsung_bl_gpio_info origen_bl_gpio_info = {
  652. .no = EXYNOS4_GPD0(0),
  653. .func = S3C_GPIO_SFN(2),
  654. };
  655. static struct platform_pwm_backlight_data origen_bl_data = {
  656. .pwm_id = 0,
  657. .pwm_period_ns = 1000,
  658. };
  659. static void __init origen_bt_setup(void)
  660. {
  661. gpio_request(EXYNOS4_GPA0(0), "GPIO BT_UART");
  662. /* 4 UART Pins configuration */
  663. s3c_gpio_cfgrange_nopull(EXYNOS4_GPA0(0), 4, S3C_GPIO_SFN(2));
  664. /* Setup BT Reset, this gpio will be requesed by rfkill-gpio */
  665. s3c_gpio_cfgpin(EXYNOS4_GPX2(2), S3C_GPIO_OUTPUT);
  666. s3c_gpio_setpull(EXYNOS4_GPX2(2), S3C_GPIO_PULL_NONE);
  667. }
  668. static void s5p_tv_setup(void)
  669. {
  670. /* Direct HPD to HDMI chip */
  671. gpio_request_one(EXYNOS4_GPX3(7), GPIOF_IN, "hpd-plug");
  672. s3c_gpio_cfgpin(EXYNOS4_GPX3(7), S3C_GPIO_SFN(0x3));
  673. s3c_gpio_setpull(EXYNOS4_GPX3(7), S3C_GPIO_PULL_NONE);
  674. }
  675. static void __init origen_map_io(void)
  676. {
  677. exynos_init_io(NULL, 0);
  678. s3c24xx_init_clocks(clk_xusbxti.rate);
  679. s3c24xx_init_uarts(origen_uartcfgs, ARRAY_SIZE(origen_uartcfgs));
  680. }
  681. static void __init origen_power_init(void)
  682. {
  683. gpio_request(EXYNOS4_GPX0(4), "PMIC_IRQ");
  684. s3c_gpio_cfgpin(EXYNOS4_GPX0(4), S3C_GPIO_SFN(0xf));
  685. s3c_gpio_setpull(EXYNOS4_GPX0(4), S3C_GPIO_PULL_NONE);
  686. }
  687. static void __init origen_reserve(void)
  688. {
  689. s5p_mfc_reserve_mem(0x43000000, 8 << 20, 0x51000000, 8 << 20);
  690. }
  691. static void __init origen_machine_init(void)
  692. {
  693. origen_power_init();
  694. s3c_i2c0_set_platdata(NULL);
  695. i2c_register_board_info(0, i2c0_devs, ARRAY_SIZE(i2c0_devs));
  696. /*
  697. * Since sdhci instance 2 can contain a bootable media,
  698. * sdhci instance 0 is registered after instance 2.
  699. */
  700. s3c_sdhci2_set_platdata(&origen_hsmmc2_pdata);
  701. s3c_sdhci0_set_platdata(&origen_hsmmc0_pdata);
  702. origen_ehci_init();
  703. origen_ohci_init();
  704. s3c_hsotg_set_platdata(&origen_hsotg_pdata);
  705. s5p_tv_setup();
  706. s5p_i2c_hdmiphy_set_platdata(NULL);
  707. #ifdef CONFIG_DRM_EXYNOS
  708. s5p_device_fimd0.dev.platform_data = &drm_fimd_pdata;
  709. exynos4_fimd0_gpio_setup_24bpp();
  710. #else
  711. s5p_fimd0_set_platdata(&origen_lcd_pdata);
  712. #endif
  713. platform_add_devices(origen_devices, ARRAY_SIZE(origen_devices));
  714. samsung_bl_set(&origen_bl_gpio_info, &origen_bl_data);
  715. origen_bt_setup();
  716. }
  717. MACHINE_START(ORIGEN, "ORIGEN")
  718. /* Maintainer: JeongHyeon Kim <jhkim@insignal.co.kr> */
  719. .atag_offset = 0x100,
  720. .init_irq = exynos4_init_irq,
  721. .map_io = origen_map_io,
  722. .handle_irq = gic_handle_irq,
  723. .init_machine = origen_machine_init,
  724. .init_late = exynos_init_late,
  725. .timer = &exynos4_timer,
  726. .reserve = &origen_reserve,
  727. .restart = exynos4_restart,
  728. MACHINE_END