mach-crag6410.c 21 KB

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  1. /* linux/arch/arm/mach-s3c64xx/mach-crag6410.c
  2. *
  3. * Copyright 2011 Wolfson Microelectronics plc
  4. * Mark Brown <broonie@opensource.wolfsonmicro.com>
  5. *
  6. * Copyright 2011 Simtec Electronics
  7. * Ben Dooks <ben@simtec.co.uk>
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2 as
  11. * published by the Free Software Foundation.
  12. */
  13. #include <linux/kernel.h>
  14. #include <linux/list.h>
  15. #include <linux/serial_core.h>
  16. #include <linux/serial_s3c.h>
  17. #include <linux/platform_device.h>
  18. #include <linux/fb.h>
  19. #include <linux/io.h>
  20. #include <linux/init.h>
  21. #include <linux/gpio.h>
  22. #include <linux/leds.h>
  23. #include <linux/delay.h>
  24. #include <linux/mmc/host.h>
  25. #include <linux/regulator/machine.h>
  26. #include <linux/regulator/fixed.h>
  27. #include <linux/pwm_backlight.h>
  28. #include <linux/dm9000.h>
  29. #include <linux/gpio_keys.h>
  30. #include <linux/basic_mmio_gpio.h>
  31. #include <linux/spi/spi.h>
  32. #include <linux/platform_data/pca953x.h>
  33. #include <linux/platform_data/s3c-hsotg.h>
  34. #include <video/platform_lcd.h>
  35. #include <linux/mfd/wm831x/core.h>
  36. #include <linux/mfd/wm831x/pdata.h>
  37. #include <linux/mfd/wm831x/irq.h>
  38. #include <linux/mfd/wm831x/gpio.h>
  39. #include <sound/wm1250-ev1.h>
  40. #include <asm/mach/arch.h>
  41. #include <asm/mach-types.h>
  42. #include <video/samsung_fimd.h>
  43. #include <mach/hardware.h>
  44. #include <mach/map.h>
  45. #include <mach/regs-gpio.h>
  46. #include <mach/gpio-samsung.h>
  47. #include <plat/fb.h>
  48. #include <plat/sdhci.h>
  49. #include <plat/gpio-cfg.h>
  50. #include <linux/platform_data/spi-s3c64xx.h>
  51. #include <plat/keypad.h>
  52. #include <plat/clock.h>
  53. #include <plat/devs.h>
  54. #include <plat/cpu.h>
  55. #include <plat/adc.h>
  56. #include <linux/platform_data/i2c-s3c2410.h>
  57. #include <plat/pm.h>
  58. #include <plat/samsung-time.h>
  59. #include "common.h"
  60. #include "crag6410.h"
  61. #include "regs-gpio-memport.h"
  62. #include "regs-modem.h"
  63. #include "regs-sys.h"
  64. /* serial port setup */
  65. #define UCON (S3C2410_UCON_DEFAULT | S3C2410_UCON_UCLK)
  66. #define ULCON (S3C2410_LCON_CS8 | S3C2410_LCON_PNONE | S3C2410_LCON_STOPB)
  67. #define UFCON (S3C2410_UFCON_RXTRIG8 | S3C2410_UFCON_FIFOMODE)
  68. static struct s3c2410_uartcfg crag6410_uartcfgs[] __initdata = {
  69. [0] = {
  70. .hwport = 0,
  71. .flags = 0,
  72. .ucon = UCON,
  73. .ulcon = ULCON,
  74. .ufcon = UFCON,
  75. },
  76. [1] = {
  77. .hwport = 1,
  78. .flags = 0,
  79. .ucon = UCON,
  80. .ulcon = ULCON,
  81. .ufcon = UFCON,
  82. },
  83. [2] = {
  84. .hwport = 2,
  85. .flags = 0,
  86. .ucon = UCON,
  87. .ulcon = ULCON,
  88. .ufcon = UFCON,
  89. },
  90. [3] = {
  91. .hwport = 3,
  92. .flags = 0,
  93. .ucon = UCON,
  94. .ulcon = ULCON,
  95. .ufcon = UFCON,
  96. },
  97. };
  98. static struct platform_pwm_backlight_data crag6410_backlight_data = {
  99. .pwm_id = 0,
  100. .max_brightness = 1000,
  101. .dft_brightness = 600,
  102. .pwm_period_ns = 100000, /* about 1kHz */
  103. .enable_gpio = -1,
  104. };
  105. static struct platform_device crag6410_backlight_device = {
  106. .name = "pwm-backlight",
  107. .id = -1,
  108. .dev = {
  109. .parent = &samsung_device_pwm.dev,
  110. .platform_data = &crag6410_backlight_data,
  111. },
  112. };
  113. static void crag6410_lcd_power_set(struct plat_lcd_data *pd, unsigned int power)
  114. {
  115. pr_debug("%s: setting power %d\n", __func__, power);
  116. if (power) {
  117. gpio_set_value(S3C64XX_GPB(0), 1);
  118. msleep(1);
  119. s3c_gpio_cfgpin(S3C64XX_GPF(14), S3C_GPIO_SFN(2));
  120. } else {
  121. gpio_direction_output(S3C64XX_GPF(14), 0);
  122. gpio_set_value(S3C64XX_GPB(0), 0);
  123. }
  124. }
  125. static struct platform_device crag6410_lcd_powerdev = {
  126. .name = "platform-lcd",
  127. .id = -1,
  128. .dev.parent = &s3c_device_fb.dev,
  129. .dev.platform_data = &(struct plat_lcd_data) {
  130. .set_power = crag6410_lcd_power_set,
  131. },
  132. };
  133. /* 640x480 URT */
  134. static struct s3c_fb_pd_win crag6410_fb_win0 = {
  135. .max_bpp = 32,
  136. .default_bpp = 16,
  137. .xres = 640,
  138. .yres = 480,
  139. .virtual_y = 480 * 2,
  140. .virtual_x = 640,
  141. };
  142. static struct fb_videomode crag6410_lcd_timing = {
  143. .left_margin = 150,
  144. .right_margin = 80,
  145. .upper_margin = 40,
  146. .lower_margin = 5,
  147. .hsync_len = 40,
  148. .vsync_len = 5,
  149. .xres = 640,
  150. .yres = 480,
  151. };
  152. /* 405566 clocks per frame => 60Hz refresh requires 24333960Hz clock */
  153. static struct s3c_fb_platdata crag6410_lcd_pdata = {
  154. .setup_gpio = s3c64xx_fb_gpio_setup_24bpp,
  155. .vtiming = &crag6410_lcd_timing,
  156. .win[0] = &crag6410_fb_win0,
  157. .vidcon0 = VIDCON0_VIDOUT_RGB | VIDCON0_PNRMODE_RGB,
  158. .vidcon1 = VIDCON1_INV_HSYNC | VIDCON1_INV_VSYNC,
  159. };
  160. /* 2x6 keypad */
  161. static uint32_t crag6410_keymap[] = {
  162. /* KEY(row, col, keycode) */
  163. KEY(0, 0, KEY_VOLUMEUP),
  164. KEY(0, 1, KEY_HOME),
  165. KEY(0, 2, KEY_VOLUMEDOWN),
  166. KEY(0, 3, KEY_HELP),
  167. KEY(0, 4, KEY_MENU),
  168. KEY(0, 5, KEY_MEDIA),
  169. KEY(1, 0, 232),
  170. KEY(1, 1, KEY_DOWN),
  171. KEY(1, 2, KEY_LEFT),
  172. KEY(1, 3, KEY_UP),
  173. KEY(1, 4, KEY_RIGHT),
  174. KEY(1, 5, KEY_CAMERA),
  175. };
  176. static struct matrix_keymap_data crag6410_keymap_data = {
  177. .keymap = crag6410_keymap,
  178. .keymap_size = ARRAY_SIZE(crag6410_keymap),
  179. };
  180. static struct samsung_keypad_platdata crag6410_keypad_data = {
  181. .keymap_data = &crag6410_keymap_data,
  182. .rows = 2,
  183. .cols = 6,
  184. };
  185. static struct gpio_keys_button crag6410_gpio_keys[] = {
  186. [0] = {
  187. .code = KEY_SUSPEND,
  188. .gpio = S3C64XX_GPL(10), /* EINT 18 */
  189. .type = EV_KEY,
  190. .wakeup = 1,
  191. .active_low = 1,
  192. },
  193. [1] = {
  194. .code = SW_FRONT_PROXIMITY,
  195. .gpio = S3C64XX_GPN(11), /* EINT 11 */
  196. .type = EV_SW,
  197. },
  198. };
  199. static struct gpio_keys_platform_data crag6410_gpio_keydata = {
  200. .buttons = crag6410_gpio_keys,
  201. .nbuttons = ARRAY_SIZE(crag6410_gpio_keys),
  202. };
  203. static struct platform_device crag6410_gpio_keydev = {
  204. .name = "gpio-keys",
  205. .id = 0,
  206. .dev.platform_data = &crag6410_gpio_keydata,
  207. };
  208. static struct resource crag6410_dm9k_resource[] = {
  209. [0] = DEFINE_RES_MEM(S3C64XX_PA_XM0CSN5, 2),
  210. [1] = DEFINE_RES_MEM(S3C64XX_PA_XM0CSN5 + (1 << 8), 2),
  211. [2] = DEFINE_RES_NAMED(S3C_EINT(17), 1, NULL, IORESOURCE_IRQ \
  212. | IORESOURCE_IRQ_HIGHLEVEL),
  213. };
  214. static struct dm9000_plat_data mini6410_dm9k_pdata = {
  215. .flags = DM9000_PLATF_16BITONLY,
  216. };
  217. static struct platform_device crag6410_dm9k_device = {
  218. .name = "dm9000",
  219. .id = -1,
  220. .num_resources = ARRAY_SIZE(crag6410_dm9k_resource),
  221. .resource = crag6410_dm9k_resource,
  222. .dev.platform_data = &mini6410_dm9k_pdata,
  223. };
  224. static struct resource crag6410_mmgpio_resource[] = {
  225. [0] = DEFINE_RES_MEM_NAMED(S3C64XX_PA_XM0CSN4, 1, "dat"),
  226. };
  227. static struct platform_device crag6410_mmgpio = {
  228. .name = "basic-mmio-gpio",
  229. .id = -1,
  230. .resource = crag6410_mmgpio_resource,
  231. .num_resources = ARRAY_SIZE(crag6410_mmgpio_resource),
  232. .dev.platform_data = &(struct bgpio_pdata) {
  233. .base = MMGPIO_GPIO_BASE,
  234. },
  235. };
  236. static struct platform_device speyside_device = {
  237. .name = "speyside",
  238. .id = -1,
  239. };
  240. static struct platform_device lowland_device = {
  241. .name = "lowland",
  242. .id = -1,
  243. };
  244. static struct platform_device tobermory_device = {
  245. .name = "tobermory",
  246. .id = -1,
  247. };
  248. static struct platform_device littlemill_device = {
  249. .name = "littlemill",
  250. .id = -1,
  251. };
  252. static struct platform_device bells_wm2200_device = {
  253. .name = "bells",
  254. .id = 0,
  255. };
  256. static struct platform_device bells_wm5102_device = {
  257. .name = "bells",
  258. .id = 1,
  259. };
  260. static struct platform_device bells_wm5110_device = {
  261. .name = "bells",
  262. .id = 2,
  263. };
  264. static struct regulator_consumer_supply wallvdd_consumers[] = {
  265. REGULATOR_SUPPLY("SPKVDD", "1-001a"),
  266. REGULATOR_SUPPLY("SPKVDD1", "1-001a"),
  267. REGULATOR_SUPPLY("SPKVDD2", "1-001a"),
  268. REGULATOR_SUPPLY("SPKVDDL", "1-001a"),
  269. REGULATOR_SUPPLY("SPKVDDR", "1-001a"),
  270. REGULATOR_SUPPLY("SPKVDDL", "spi0.1"),
  271. REGULATOR_SUPPLY("SPKVDDR", "spi0.1"),
  272. REGULATOR_SUPPLY("DC1VDD", "0-0034"),
  273. REGULATOR_SUPPLY("DC2VDD", "0-0034"),
  274. REGULATOR_SUPPLY("DC3VDD", "0-0034"),
  275. REGULATOR_SUPPLY("LDO1VDD", "0-0034"),
  276. REGULATOR_SUPPLY("LDO2VDD", "0-0034"),
  277. REGULATOR_SUPPLY("LDO4VDD", "0-0034"),
  278. REGULATOR_SUPPLY("LDO5VDD", "0-0034"),
  279. REGULATOR_SUPPLY("LDO6VDD", "0-0034"),
  280. REGULATOR_SUPPLY("LDO7VDD", "0-0034"),
  281. REGULATOR_SUPPLY("LDO8VDD", "0-0034"),
  282. REGULATOR_SUPPLY("LDO9VDD", "0-0034"),
  283. REGULATOR_SUPPLY("LDO10VDD", "0-0034"),
  284. REGULATOR_SUPPLY("LDO11VDD", "0-0034"),
  285. REGULATOR_SUPPLY("DC1VDD", "1-0034"),
  286. REGULATOR_SUPPLY("DC2VDD", "1-0034"),
  287. REGULATOR_SUPPLY("DC3VDD", "1-0034"),
  288. REGULATOR_SUPPLY("LDO1VDD", "1-0034"),
  289. REGULATOR_SUPPLY("LDO2VDD", "1-0034"),
  290. REGULATOR_SUPPLY("LDO4VDD", "1-0034"),
  291. REGULATOR_SUPPLY("LDO5VDD", "1-0034"),
  292. REGULATOR_SUPPLY("LDO6VDD", "1-0034"),
  293. REGULATOR_SUPPLY("LDO7VDD", "1-0034"),
  294. REGULATOR_SUPPLY("LDO8VDD", "1-0034"),
  295. REGULATOR_SUPPLY("LDO9VDD", "1-0034"),
  296. REGULATOR_SUPPLY("LDO10VDD", "1-0034"),
  297. REGULATOR_SUPPLY("LDO11VDD", "1-0034"),
  298. };
  299. static struct regulator_init_data wallvdd_data = {
  300. .constraints = {
  301. .always_on = 1,
  302. },
  303. .num_consumer_supplies = ARRAY_SIZE(wallvdd_consumers),
  304. .consumer_supplies = wallvdd_consumers,
  305. };
  306. static struct fixed_voltage_config wallvdd_pdata = {
  307. .supply_name = "WALLVDD",
  308. .microvolts = 5000000,
  309. .init_data = &wallvdd_data,
  310. .gpio = -EINVAL,
  311. };
  312. static struct platform_device wallvdd_device = {
  313. .name = "reg-fixed-voltage",
  314. .id = -1,
  315. .dev = {
  316. .platform_data = &wallvdd_pdata,
  317. },
  318. };
  319. static struct platform_device *crag6410_devices[] __initdata = {
  320. &s3c_device_hsmmc0,
  321. &s3c_device_hsmmc2,
  322. &s3c_device_i2c0,
  323. &s3c_device_i2c1,
  324. &s3c_device_fb,
  325. &s3c_device_ohci,
  326. &s3c_device_usb_hsotg,
  327. &samsung_device_pwm,
  328. &s3c64xx_device_iis0,
  329. &s3c64xx_device_iis1,
  330. &samsung_device_keypad,
  331. &crag6410_gpio_keydev,
  332. &crag6410_dm9k_device,
  333. &s3c64xx_device_spi0,
  334. &crag6410_mmgpio,
  335. &crag6410_lcd_powerdev,
  336. &crag6410_backlight_device,
  337. &speyside_device,
  338. &tobermory_device,
  339. &littlemill_device,
  340. &lowland_device,
  341. &bells_wm2200_device,
  342. &bells_wm5102_device,
  343. &bells_wm5110_device,
  344. &wallvdd_device,
  345. };
  346. static struct pca953x_platform_data crag6410_pca_data = {
  347. .gpio_base = PCA935X_GPIO_BASE,
  348. .irq_base = -1,
  349. };
  350. /* VDDARM is controlled by DVS1 connected to GPK(0) */
  351. static struct wm831x_buckv_pdata vddarm_pdata = {
  352. .dvs_control_src = 1,
  353. .dvs_gpio = S3C64XX_GPK(0),
  354. };
  355. static struct regulator_consumer_supply vddarm_consumers[] = {
  356. REGULATOR_SUPPLY("vddarm", NULL),
  357. };
  358. static struct regulator_init_data vddarm = {
  359. .constraints = {
  360. .name = "VDDARM",
  361. .min_uV = 1000000,
  362. .max_uV = 1300000,
  363. .always_on = 1,
  364. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE,
  365. },
  366. .num_consumer_supplies = ARRAY_SIZE(vddarm_consumers),
  367. .consumer_supplies = vddarm_consumers,
  368. .supply_regulator = "WALLVDD",
  369. .driver_data = &vddarm_pdata,
  370. };
  371. static struct regulator_consumer_supply vddint_consumers[] = {
  372. REGULATOR_SUPPLY("vddint", NULL),
  373. };
  374. static struct regulator_init_data vddint = {
  375. .constraints = {
  376. .name = "VDDINT",
  377. .min_uV = 1000000,
  378. .max_uV = 1200000,
  379. .always_on = 1,
  380. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE,
  381. },
  382. .num_consumer_supplies = ARRAY_SIZE(vddint_consumers),
  383. .consumer_supplies = vddint_consumers,
  384. .supply_regulator = "WALLVDD",
  385. };
  386. static struct regulator_init_data vddmem = {
  387. .constraints = {
  388. .name = "VDDMEM",
  389. .always_on = 1,
  390. },
  391. };
  392. static struct regulator_init_data vddsys = {
  393. .constraints = {
  394. .name = "VDDSYS,VDDEXT,VDDPCM,VDDSS",
  395. .always_on = 1,
  396. },
  397. };
  398. static struct regulator_consumer_supply vddmmc_consumers[] = {
  399. REGULATOR_SUPPLY("vmmc", "s3c-sdhci.0"),
  400. REGULATOR_SUPPLY("vmmc", "s3c-sdhci.1"),
  401. REGULATOR_SUPPLY("vmmc", "s3c-sdhci.2"),
  402. };
  403. static struct regulator_init_data vddmmc = {
  404. .constraints = {
  405. .name = "VDDMMC,UH",
  406. .always_on = 1,
  407. },
  408. .num_consumer_supplies = ARRAY_SIZE(vddmmc_consumers),
  409. .consumer_supplies = vddmmc_consumers,
  410. .supply_regulator = "WALLVDD",
  411. };
  412. static struct regulator_init_data vddotgi = {
  413. .constraints = {
  414. .name = "VDDOTGi",
  415. .always_on = 1,
  416. },
  417. .supply_regulator = "WALLVDD",
  418. };
  419. static struct regulator_init_data vddotg = {
  420. .constraints = {
  421. .name = "VDDOTG",
  422. .always_on = 1,
  423. },
  424. .supply_regulator = "WALLVDD",
  425. };
  426. static struct regulator_init_data vddhi = {
  427. .constraints = {
  428. .name = "VDDHI",
  429. .always_on = 1,
  430. },
  431. .supply_regulator = "WALLVDD",
  432. };
  433. static struct regulator_init_data vddadc = {
  434. .constraints = {
  435. .name = "VDDADC,VDDDAC",
  436. .always_on = 1,
  437. },
  438. .supply_regulator = "WALLVDD",
  439. };
  440. static struct regulator_init_data vddmem0 = {
  441. .constraints = {
  442. .name = "VDDMEM0",
  443. .always_on = 1,
  444. },
  445. .supply_regulator = "WALLVDD",
  446. };
  447. static struct regulator_init_data vddpll = {
  448. .constraints = {
  449. .name = "VDDPLL",
  450. .always_on = 1,
  451. },
  452. .supply_regulator = "WALLVDD",
  453. };
  454. static struct regulator_init_data vddlcd = {
  455. .constraints = {
  456. .name = "VDDLCD",
  457. .always_on = 1,
  458. },
  459. .supply_regulator = "WALLVDD",
  460. };
  461. static struct regulator_init_data vddalive = {
  462. .constraints = {
  463. .name = "VDDALIVE",
  464. .always_on = 1,
  465. },
  466. .supply_regulator = "WALLVDD",
  467. };
  468. static struct wm831x_backup_pdata banff_backup_pdata = {
  469. .charger_enable = 1,
  470. .vlim = 2500, /* mV */
  471. .ilim = 200, /* uA */
  472. };
  473. static struct wm831x_status_pdata banff_red_led = {
  474. .name = "banff:red:",
  475. .default_src = WM831X_STATUS_MANUAL,
  476. };
  477. static struct wm831x_status_pdata banff_green_led = {
  478. .name = "banff:green:",
  479. .default_src = WM831X_STATUS_MANUAL,
  480. };
  481. static struct wm831x_touch_pdata touch_pdata = {
  482. .data_irq = S3C_EINT(26),
  483. .pd_irq = S3C_EINT(27),
  484. };
  485. static struct wm831x_pdata crag_pmic_pdata = {
  486. .wm831x_num = 1,
  487. .gpio_base = BANFF_PMIC_GPIO_BASE,
  488. .soft_shutdown = true,
  489. .backup = &banff_backup_pdata,
  490. .gpio_defaults = {
  491. /* GPIO5: DVS1_REQ - CMOS, DBVDD, active high */
  492. [4] = WM831X_GPN_DIR | WM831X_GPN_POL | WM831X_GPN_ENA | 0x8,
  493. /* GPIO11: Touchscreen data - CMOS, DBVDD, active high*/
  494. [10] = WM831X_GPN_POL | WM831X_GPN_ENA | 0x6,
  495. /* GPIO12: Touchscreen pen down - CMOS, DBVDD, active high*/
  496. [11] = WM831X_GPN_POL | WM831X_GPN_ENA | 0x7,
  497. },
  498. .dcdc = {
  499. &vddarm, /* DCDC1 */
  500. &vddint, /* DCDC2 */
  501. &vddmem, /* DCDC3 */
  502. },
  503. .ldo = {
  504. &vddsys, /* LDO1 */
  505. &vddmmc, /* LDO2 */
  506. NULL, /* LDO3 */
  507. &vddotgi, /* LDO4 */
  508. &vddotg, /* LDO5 */
  509. &vddhi, /* LDO6 */
  510. &vddadc, /* LDO7 */
  511. &vddmem0, /* LDO8 */
  512. &vddpll, /* LDO9 */
  513. &vddlcd, /* LDO10 */
  514. &vddalive, /* LDO11 */
  515. },
  516. .status = {
  517. &banff_green_led,
  518. &banff_red_led,
  519. },
  520. .touch = &touch_pdata,
  521. };
  522. static struct i2c_board_info i2c_devs0[] = {
  523. { I2C_BOARD_INFO("24c08", 0x50), },
  524. { I2C_BOARD_INFO("tca6408", 0x20),
  525. .platform_data = &crag6410_pca_data,
  526. },
  527. { I2C_BOARD_INFO("wm8312", 0x34),
  528. .platform_data = &crag_pmic_pdata,
  529. .irq = S3C_EINT(23),
  530. },
  531. };
  532. static struct s3c2410_platform_i2c i2c0_pdata = {
  533. .frequency = 400000,
  534. };
  535. static struct regulator_consumer_supply pvdd_1v2_consumers[] = {
  536. REGULATOR_SUPPLY("DCVDD", "spi0.0"),
  537. REGULATOR_SUPPLY("AVDD", "spi0.0"),
  538. REGULATOR_SUPPLY("AVDD", "spi0.1"),
  539. };
  540. static struct regulator_init_data pvdd_1v2 = {
  541. .constraints = {
  542. .name = "PVDD_1V2",
  543. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  544. },
  545. .consumer_supplies = pvdd_1v2_consumers,
  546. .num_consumer_supplies = ARRAY_SIZE(pvdd_1v2_consumers),
  547. };
  548. static struct regulator_consumer_supply pvdd_1v8_consumers[] = {
  549. REGULATOR_SUPPLY("LDOVDD", "1-001a"),
  550. REGULATOR_SUPPLY("PLLVDD", "1-001a"),
  551. REGULATOR_SUPPLY("DBVDD", "1-001a"),
  552. REGULATOR_SUPPLY("DBVDD1", "1-001a"),
  553. REGULATOR_SUPPLY("DBVDD2", "1-001a"),
  554. REGULATOR_SUPPLY("DBVDD3", "1-001a"),
  555. REGULATOR_SUPPLY("CPVDD", "1-001a"),
  556. REGULATOR_SUPPLY("AVDD2", "1-001a"),
  557. REGULATOR_SUPPLY("DCVDD", "1-001a"),
  558. REGULATOR_SUPPLY("AVDD", "1-001a"),
  559. REGULATOR_SUPPLY("DBVDD", "spi0.0"),
  560. REGULATOR_SUPPLY("DBVDD", "1-003a"),
  561. REGULATOR_SUPPLY("LDOVDD", "1-003a"),
  562. REGULATOR_SUPPLY("CPVDD", "1-003a"),
  563. REGULATOR_SUPPLY("AVDD", "1-003a"),
  564. REGULATOR_SUPPLY("DBVDD1", "spi0.1"),
  565. REGULATOR_SUPPLY("DBVDD2", "spi0.1"),
  566. REGULATOR_SUPPLY("DBVDD3", "spi0.1"),
  567. REGULATOR_SUPPLY("LDOVDD", "spi0.1"),
  568. REGULATOR_SUPPLY("CPVDD", "spi0.1"),
  569. };
  570. static struct regulator_init_data pvdd_1v8 = {
  571. .constraints = {
  572. .name = "PVDD_1V8",
  573. .always_on = 1,
  574. },
  575. .consumer_supplies = pvdd_1v8_consumers,
  576. .num_consumer_supplies = ARRAY_SIZE(pvdd_1v8_consumers),
  577. };
  578. static struct regulator_consumer_supply pvdd_3v3_consumers[] = {
  579. REGULATOR_SUPPLY("MICVDD", "1-001a"),
  580. REGULATOR_SUPPLY("AVDD1", "1-001a"),
  581. };
  582. static struct regulator_init_data pvdd_3v3 = {
  583. .constraints = {
  584. .name = "PVDD_3V3",
  585. .always_on = 1,
  586. },
  587. .consumer_supplies = pvdd_3v3_consumers,
  588. .num_consumer_supplies = ARRAY_SIZE(pvdd_3v3_consumers),
  589. };
  590. static struct wm831x_pdata glenfarclas_pmic_pdata = {
  591. .wm831x_num = 2,
  592. .irq_base = GLENFARCLAS_PMIC_IRQ_BASE,
  593. .gpio_base = GLENFARCLAS_PMIC_GPIO_BASE,
  594. .soft_shutdown = true,
  595. .gpio_defaults = {
  596. /* GPIO1-3: IRQ inputs, rising edge triggered, CMOS */
  597. [0] = WM831X_GPN_DIR | WM831X_GPN_POL | WM831X_GPN_ENA,
  598. [1] = WM831X_GPN_DIR | WM831X_GPN_POL | WM831X_GPN_ENA,
  599. [2] = WM831X_GPN_DIR | WM831X_GPN_POL | WM831X_GPN_ENA,
  600. },
  601. .dcdc = {
  602. &pvdd_1v2, /* DCDC1 */
  603. &pvdd_1v8, /* DCDC2 */
  604. &pvdd_3v3, /* DCDC3 */
  605. },
  606. .disable_touch = true,
  607. };
  608. static struct wm1250_ev1_pdata wm1250_ev1_pdata = {
  609. .gpios = {
  610. [WM1250_EV1_GPIO_CLK_ENA] = S3C64XX_GPN(12),
  611. [WM1250_EV1_GPIO_CLK_SEL0] = S3C64XX_GPL(12),
  612. [WM1250_EV1_GPIO_CLK_SEL1] = S3C64XX_GPL(13),
  613. [WM1250_EV1_GPIO_OSR] = S3C64XX_GPL(14),
  614. [WM1250_EV1_GPIO_MASTER] = S3C64XX_GPL(8),
  615. },
  616. };
  617. static struct i2c_board_info i2c_devs1[] = {
  618. { I2C_BOARD_INFO("wm8311", 0x34),
  619. .irq = S3C_EINT(0),
  620. .platform_data = &glenfarclas_pmic_pdata },
  621. { I2C_BOARD_INFO("wlf-gf-module", 0x20) },
  622. { I2C_BOARD_INFO("wlf-gf-module", 0x22) },
  623. { I2C_BOARD_INFO("wlf-gf-module", 0x24) },
  624. { I2C_BOARD_INFO("wlf-gf-module", 0x25) },
  625. { I2C_BOARD_INFO("wlf-gf-module", 0x26) },
  626. { I2C_BOARD_INFO("wm1250-ev1", 0x27),
  627. .platform_data = &wm1250_ev1_pdata },
  628. };
  629. static struct s3c2410_platform_i2c i2c1_pdata = {
  630. .frequency = 400000,
  631. .bus_num = 1,
  632. };
  633. static void __init crag6410_map_io(void)
  634. {
  635. s3c64xx_init_io(NULL, 0);
  636. s3c64xx_set_xtal_freq(12000000);
  637. s3c24xx_init_uarts(crag6410_uartcfgs, ARRAY_SIZE(crag6410_uartcfgs));
  638. samsung_set_timer_source(SAMSUNG_PWM3, SAMSUNG_PWM4);
  639. /* LCD type and Bypass set by bootloader */
  640. }
  641. static struct s3c_sdhci_platdata crag6410_hsmmc2_pdata = {
  642. .max_width = 4,
  643. .cd_type = S3C_SDHCI_CD_PERMANENT,
  644. .host_caps = MMC_CAP_POWER_OFF_CARD,
  645. };
  646. static void crag6410_cfg_sdhci0(struct platform_device *dev, int width)
  647. {
  648. /* Set all the necessary GPG pins to special-function 2 */
  649. s3c_gpio_cfgrange_nopull(S3C64XX_GPG(0), 2 + width, S3C_GPIO_SFN(2));
  650. /* force card-detected for prototype 0 */
  651. s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_DOWN);
  652. }
  653. static struct s3c_sdhci_platdata crag6410_hsmmc0_pdata = {
  654. .max_width = 4,
  655. .cd_type = S3C_SDHCI_CD_INTERNAL,
  656. .cfg_gpio = crag6410_cfg_sdhci0,
  657. .host_caps = MMC_CAP_POWER_OFF_CARD,
  658. };
  659. static const struct gpio_led gpio_leds[] = {
  660. {
  661. .name = "d13:green:",
  662. .gpio = MMGPIO_GPIO_BASE + 0,
  663. .default_state = LEDS_GPIO_DEFSTATE_ON,
  664. },
  665. {
  666. .name = "d14:green:",
  667. .gpio = MMGPIO_GPIO_BASE + 1,
  668. .default_state = LEDS_GPIO_DEFSTATE_ON,
  669. },
  670. {
  671. .name = "d15:green:",
  672. .gpio = MMGPIO_GPIO_BASE + 2,
  673. .default_state = LEDS_GPIO_DEFSTATE_ON,
  674. },
  675. {
  676. .name = "d16:green:",
  677. .gpio = MMGPIO_GPIO_BASE + 3,
  678. .default_state = LEDS_GPIO_DEFSTATE_ON,
  679. },
  680. {
  681. .name = "d17:green:",
  682. .gpio = MMGPIO_GPIO_BASE + 4,
  683. .default_state = LEDS_GPIO_DEFSTATE_ON,
  684. },
  685. {
  686. .name = "d18:green:",
  687. .gpio = MMGPIO_GPIO_BASE + 5,
  688. .default_state = LEDS_GPIO_DEFSTATE_ON,
  689. },
  690. {
  691. .name = "d19:green:",
  692. .gpio = MMGPIO_GPIO_BASE + 6,
  693. .default_state = LEDS_GPIO_DEFSTATE_ON,
  694. },
  695. {
  696. .name = "d20:green:",
  697. .gpio = MMGPIO_GPIO_BASE + 7,
  698. .default_state = LEDS_GPIO_DEFSTATE_ON,
  699. },
  700. };
  701. static const struct gpio_led_platform_data gpio_leds_pdata = {
  702. .leds = gpio_leds,
  703. .num_leds = ARRAY_SIZE(gpio_leds),
  704. };
  705. static struct s3c_hsotg_plat crag6410_hsotg_pdata;
  706. static void __init crag6410_machine_init(void)
  707. {
  708. /* Open drain IRQs need pullups */
  709. s3c_gpio_setpull(S3C64XX_GPM(0), S3C_GPIO_PULL_UP);
  710. s3c_gpio_setpull(S3C64XX_GPN(0), S3C_GPIO_PULL_UP);
  711. gpio_request(S3C64XX_GPB(0), "LCD power");
  712. gpio_direction_output(S3C64XX_GPB(0), 0);
  713. gpio_request(S3C64XX_GPF(14), "LCD PWM");
  714. gpio_direction_output(S3C64XX_GPF(14), 0); /* turn off */
  715. gpio_request(S3C64XX_GPB(1), "SD power");
  716. gpio_direction_output(S3C64XX_GPB(1), 0);
  717. gpio_request(S3C64XX_GPF(10), "nRESETSEL");
  718. gpio_direction_output(S3C64XX_GPF(10), 1);
  719. s3c_sdhci0_set_platdata(&crag6410_hsmmc0_pdata);
  720. s3c_sdhci2_set_platdata(&crag6410_hsmmc2_pdata);
  721. s3c_i2c0_set_platdata(&i2c0_pdata);
  722. s3c_i2c1_set_platdata(&i2c1_pdata);
  723. s3c_fb_set_platdata(&crag6410_lcd_pdata);
  724. s3c_hsotg_set_platdata(&crag6410_hsotg_pdata);
  725. i2c_register_board_info(0, i2c_devs0, ARRAY_SIZE(i2c_devs0));
  726. i2c_register_board_info(1, i2c_devs1, ARRAY_SIZE(i2c_devs1));
  727. samsung_keypad_set_platdata(&crag6410_keypad_data);
  728. s3c64xx_spi0_set_platdata(NULL, 0, 2);
  729. platform_add_devices(crag6410_devices, ARRAY_SIZE(crag6410_devices));
  730. gpio_led_register_device(-1, &gpio_leds_pdata);
  731. regulator_has_full_constraints();
  732. s3c64xx_pm_init();
  733. }
  734. MACHINE_START(WLF_CRAGG_6410, "Wolfson Cragganmore 6410")
  735. /* Maintainer: Mark Brown <broonie@opensource.wolfsonmicro.com> */
  736. .atag_offset = 0x100,
  737. .init_irq = s3c6410_init_irq,
  738. .map_io = crag6410_map_io,
  739. .init_machine = crag6410_machine_init,
  740. .init_late = s3c64xx_init_late,
  741. .init_time = samsung_timer_init,
  742. .restart = s3c64xx_restart,
  743. MACHINE_END