board-rx51-peripherals.c 24 KB

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  1. /*
  2. * linux/arch/arm/mach-omap2/board-rx51-peripherals.c
  3. *
  4. * Copyright (C) 2008-2009 Nokia
  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/kernel.h>
  11. #include <linux/init.h>
  12. #include <linux/platform_device.h>
  13. #include <linux/input.h>
  14. #include <linux/input/matrix_keypad.h>
  15. #include <linux/spi/spi.h>
  16. #include <linux/spi/wl12xx.h>
  17. #include <linux/i2c.h>
  18. #include <linux/i2c/twl.h>
  19. #include <linux/clk.h>
  20. #include <linux/delay.h>
  21. #include <linux/regulator/machine.h>
  22. #include <linux/gpio.h>
  23. #include <linux/gpio_keys.h>
  24. #include <linux/mmc/host.h>
  25. #include <plat/mcspi.h>
  26. #include <plat/board.h>
  27. #include <plat/common.h>
  28. #include <plat/dma.h>
  29. #include <plat/gpmc.h>
  30. #include <plat/onenand.h>
  31. #include <plat/gpmc-smc91x.h>
  32. #include <sound/tlv320aic3x.h>
  33. #include <sound/tpa6130a2-plat.h>
  34. #include <../drivers/staging/iio/light/tsl2563.h>
  35. #include "mux.h"
  36. #include "hsmmc.h"
  37. #define SYSTEM_REV_B_USES_VAUX3 0x1699
  38. #define SYSTEM_REV_S_USES_VAUX3 0x8
  39. #define RX51_WL1251_POWER_GPIO 87
  40. #define RX51_WL1251_IRQ_GPIO 42
  41. /* list all spi devices here */
  42. enum {
  43. RX51_SPI_WL1251,
  44. RX51_SPI_MIPID, /* LCD panel */
  45. RX51_SPI_TSC2005, /* Touch Controller */
  46. };
  47. static struct wl12xx_platform_data wl1251_pdata;
  48. #if defined(CONFIG_SENSORS_TSL2563) || defined(CONFIG_SENSORS_TSL2563_MODULE)
  49. static struct tsl2563_platform_data rx51_tsl2563_platform_data = {
  50. .cover_comp_gain = 16,
  51. };
  52. #endif
  53. static struct omap2_mcspi_device_config wl1251_mcspi_config = {
  54. .turbo_mode = 0,
  55. .single_channel = 1,
  56. };
  57. static struct omap2_mcspi_device_config mipid_mcspi_config = {
  58. .turbo_mode = 0,
  59. .single_channel = 1,
  60. };
  61. static struct omap2_mcspi_device_config tsc2005_mcspi_config = {
  62. .turbo_mode = 0,
  63. .single_channel = 1,
  64. };
  65. static struct spi_board_info rx51_peripherals_spi_board_info[] __initdata = {
  66. [RX51_SPI_WL1251] = {
  67. .modalias = "wl1251",
  68. .bus_num = 4,
  69. .chip_select = 0,
  70. .max_speed_hz = 48000000,
  71. .mode = SPI_MODE_3,
  72. .controller_data = &wl1251_mcspi_config,
  73. .platform_data = &wl1251_pdata,
  74. },
  75. [RX51_SPI_MIPID] = {
  76. .modalias = "acx565akm",
  77. .bus_num = 1,
  78. .chip_select = 2,
  79. .max_speed_hz = 6000000,
  80. .controller_data = &mipid_mcspi_config,
  81. },
  82. [RX51_SPI_TSC2005] = {
  83. .modalias = "tsc2005",
  84. .bus_num = 1,
  85. .chip_select = 0,
  86. /* .irq = OMAP_GPIO_IRQ(RX51_TSC2005_IRQ_GPIO),*/
  87. .max_speed_hz = 6000000,
  88. .controller_data = &tsc2005_mcspi_config,
  89. /* .platform_data = &tsc2005_config,*/
  90. },
  91. };
  92. static struct platform_device rx51_charger_device = {
  93. .name = "isp1704_charger",
  94. };
  95. #if defined(CONFIG_KEYBOARD_GPIO) || defined(CONFIG_KEYBOARD_GPIO_MODULE)
  96. #define RX51_GPIO_CAMERA_LENS_COVER 110
  97. #define RX51_GPIO_CAMERA_FOCUS 68
  98. #define RX51_GPIO_CAMERA_CAPTURE 69
  99. #define RX51_GPIO_KEYPAD_SLIDE 71
  100. #define RX51_GPIO_LOCK_BUTTON 113
  101. #define RX51_GPIO_PROXIMITY 89
  102. #define RX51_GPIO_DEBOUNCE_TIMEOUT 10
  103. static struct gpio_keys_button rx51_gpio_keys[] = {
  104. {
  105. .desc = "Camera Lens Cover",
  106. .type = EV_SW,
  107. .code = SW_CAMERA_LENS_COVER,
  108. .gpio = RX51_GPIO_CAMERA_LENS_COVER,
  109. .active_low = 1,
  110. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  111. }, {
  112. .desc = "Camera Focus",
  113. .type = EV_KEY,
  114. .code = KEY_CAMERA_FOCUS,
  115. .gpio = RX51_GPIO_CAMERA_FOCUS,
  116. .active_low = 1,
  117. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  118. }, {
  119. .desc = "Camera Capture",
  120. .type = EV_KEY,
  121. .code = KEY_CAMERA,
  122. .gpio = RX51_GPIO_CAMERA_CAPTURE,
  123. .active_low = 1,
  124. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  125. }, {
  126. .desc = "Lock Button",
  127. .type = EV_KEY,
  128. .code = KEY_SCREENLOCK,
  129. .gpio = RX51_GPIO_LOCK_BUTTON,
  130. .active_low = 1,
  131. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  132. }, {
  133. .desc = "Keypad Slide",
  134. .type = EV_SW,
  135. .code = SW_KEYPAD_SLIDE,
  136. .gpio = RX51_GPIO_KEYPAD_SLIDE,
  137. .active_low = 1,
  138. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  139. }, {
  140. .desc = "Proximity Sensor",
  141. .type = EV_SW,
  142. .code = SW_FRONT_PROXIMITY,
  143. .gpio = RX51_GPIO_PROXIMITY,
  144. .active_low = 0,
  145. .debounce_interval = RX51_GPIO_DEBOUNCE_TIMEOUT,
  146. }
  147. };
  148. static struct gpio_keys_platform_data rx51_gpio_keys_data = {
  149. .buttons = rx51_gpio_keys,
  150. .nbuttons = ARRAY_SIZE(rx51_gpio_keys),
  151. };
  152. static struct platform_device rx51_gpio_keys_device = {
  153. .name = "gpio-keys",
  154. .id = -1,
  155. .dev = {
  156. .platform_data = &rx51_gpio_keys_data,
  157. },
  158. };
  159. static void __init rx51_add_gpio_keys(void)
  160. {
  161. platform_device_register(&rx51_gpio_keys_device);
  162. }
  163. #else
  164. static void __init rx51_add_gpio_keys(void)
  165. {
  166. }
  167. #endif /* CONFIG_KEYBOARD_GPIO || CONFIG_KEYBOARD_GPIO_MODULE */
  168. static int board_keymap[] = {
  169. /*
  170. * Note that KEY(x, 8, KEY_XXX) entries represent "entrire row
  171. * connected to the ground" matrix state.
  172. */
  173. KEY(0, 0, KEY_Q),
  174. KEY(0, 1, KEY_O),
  175. KEY(0, 2, KEY_P),
  176. KEY(0, 3, KEY_COMMA),
  177. KEY(0, 4, KEY_BACKSPACE),
  178. KEY(0, 6, KEY_A),
  179. KEY(0, 7, KEY_S),
  180. KEY(1, 0, KEY_W),
  181. KEY(1, 1, KEY_D),
  182. KEY(1, 2, KEY_F),
  183. KEY(1, 3, KEY_G),
  184. KEY(1, 4, KEY_H),
  185. KEY(1, 5, KEY_J),
  186. KEY(1, 6, KEY_K),
  187. KEY(1, 7, KEY_L),
  188. KEY(2, 0, KEY_E),
  189. KEY(2, 1, KEY_DOT),
  190. KEY(2, 2, KEY_UP),
  191. KEY(2, 3, KEY_ENTER),
  192. KEY(2, 5, KEY_Z),
  193. KEY(2, 6, KEY_X),
  194. KEY(2, 7, KEY_C),
  195. KEY(2, 8, KEY_F9),
  196. KEY(3, 0, KEY_R),
  197. KEY(3, 1, KEY_V),
  198. KEY(3, 2, KEY_B),
  199. KEY(3, 3, KEY_N),
  200. KEY(3, 4, KEY_M),
  201. KEY(3, 5, KEY_SPACE),
  202. KEY(3, 6, KEY_SPACE),
  203. KEY(3, 7, KEY_LEFT),
  204. KEY(4, 0, KEY_T),
  205. KEY(4, 1, KEY_DOWN),
  206. KEY(4, 2, KEY_RIGHT),
  207. KEY(4, 4, KEY_LEFTCTRL),
  208. KEY(4, 5, KEY_RIGHTALT),
  209. KEY(4, 6, KEY_LEFTSHIFT),
  210. KEY(4, 8, KEY_F10),
  211. KEY(5, 0, KEY_Y),
  212. KEY(5, 8, KEY_F11),
  213. KEY(6, 0, KEY_U),
  214. KEY(7, 0, KEY_I),
  215. KEY(7, 1, KEY_F7),
  216. KEY(7, 2, KEY_F8),
  217. };
  218. static struct matrix_keymap_data board_map_data = {
  219. .keymap = board_keymap,
  220. .keymap_size = ARRAY_SIZE(board_keymap),
  221. };
  222. static struct twl4030_keypad_data rx51_kp_data = {
  223. .keymap_data = &board_map_data,
  224. .rows = 8,
  225. .cols = 8,
  226. .rep = 1,
  227. };
  228. static struct twl4030_madc_platform_data rx51_madc_data = {
  229. .irq_line = 1,
  230. };
  231. /* Enable input logic and pull all lines up when eMMC is on. */
  232. static struct omap_board_mux rx51_mmc2_on_mux[] = {
  233. OMAP3_MUX(SDMMC2_CMD, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  234. OMAP3_MUX(SDMMC2_DAT0, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  235. OMAP3_MUX(SDMMC2_DAT1, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  236. OMAP3_MUX(SDMMC2_DAT2, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  237. OMAP3_MUX(SDMMC2_DAT3, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  238. OMAP3_MUX(SDMMC2_DAT4, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  239. OMAP3_MUX(SDMMC2_DAT5, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  240. OMAP3_MUX(SDMMC2_DAT6, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  241. OMAP3_MUX(SDMMC2_DAT7, OMAP_PIN_INPUT_PULLUP | OMAP_MUX_MODE0),
  242. { .reg_offset = OMAP_MUX_TERMINATOR },
  243. };
  244. /* Disable input logic and pull all lines down when eMMC is off. */
  245. static struct omap_board_mux rx51_mmc2_off_mux[] = {
  246. OMAP3_MUX(SDMMC2_CMD, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  247. OMAP3_MUX(SDMMC2_DAT0, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  248. OMAP3_MUX(SDMMC2_DAT1, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  249. OMAP3_MUX(SDMMC2_DAT2, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  250. OMAP3_MUX(SDMMC2_DAT3, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  251. OMAP3_MUX(SDMMC2_DAT4, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  252. OMAP3_MUX(SDMMC2_DAT5, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  253. OMAP3_MUX(SDMMC2_DAT6, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  254. OMAP3_MUX(SDMMC2_DAT7, OMAP_PULL_ENA | OMAP_MUX_MODE0),
  255. { .reg_offset = OMAP_MUX_TERMINATOR },
  256. };
  257. /*
  258. * Current flows to eMMC when eMMC is off and the data lines are pulled up,
  259. * so pull them down. N.B. we pull 8 lines because we are using 8 lines.
  260. */
  261. static void rx51_mmc2_remux(struct device *dev, int slot, int power_on)
  262. {
  263. if (power_on)
  264. omap_mux_write_array(rx51_mmc2_on_mux);
  265. else
  266. omap_mux_write_array(rx51_mmc2_off_mux);
  267. }
  268. static struct omap2_hsmmc_info mmc[] __initdata = {
  269. {
  270. .name = "external",
  271. .mmc = 1,
  272. .wires = 4,
  273. .cover_only = true,
  274. .gpio_cd = 160,
  275. .gpio_wp = -EINVAL,
  276. .power_saving = true,
  277. },
  278. {
  279. .name = "internal",
  280. .mmc = 2,
  281. .wires = 8, /* See also rx51_mmc2_remux */
  282. .gpio_cd = -EINVAL,
  283. .gpio_wp = -EINVAL,
  284. .nonremovable = true,
  285. .power_saving = true,
  286. .remux = rx51_mmc2_remux,
  287. },
  288. {} /* Terminator */
  289. };
  290. static struct regulator_consumer_supply rx51_vmmc1_supply =
  291. REGULATOR_SUPPLY("vmmc", "mmci-omap-hs.0");
  292. static struct regulator_consumer_supply rx51_vaux3_supply =
  293. REGULATOR_SUPPLY("vmmc", "mmci-omap-hs.1");
  294. static struct regulator_consumer_supply rx51_vsim_supply =
  295. REGULATOR_SUPPLY("vmmc_aux", "mmci-omap-hs.1");
  296. static struct regulator_consumer_supply rx51_vmmc2_supplies[] = {
  297. /* tlv320aic3x analog supplies */
  298. REGULATOR_SUPPLY("AVDD", "2-0018"),
  299. REGULATOR_SUPPLY("DRVDD", "2-0018"),
  300. /* tpa6130a2 */
  301. REGULATOR_SUPPLY("Vdd", "2-0060"),
  302. /* Keep vmmc as last item. It is not iterated for newer boards */
  303. REGULATOR_SUPPLY("vmmc", "mmci-omap-hs.1"),
  304. };
  305. static struct regulator_consumer_supply rx51_vio_supplies[] = {
  306. /* tlv320aic3x digital supplies */
  307. REGULATOR_SUPPLY("IOVDD", "2-0018"),
  308. REGULATOR_SUPPLY("DVDD", "2-0018"),
  309. };
  310. #if defined(CONFIG_FB_OMAP2) || defined(CONFIG_FB_OMAP2_MODULE)
  311. extern struct platform_device rx51_display_device;
  312. #endif
  313. static struct regulator_consumer_supply rx51_vaux1_consumers[] = {
  314. #if defined(CONFIG_FB_OMAP2) || defined(CONFIG_FB_OMAP2_MODULE)
  315. {
  316. .supply = "vdds_sdi",
  317. .dev = &rx51_display_device.dev,
  318. },
  319. #endif
  320. };
  321. static struct regulator_init_data rx51_vaux1 = {
  322. .constraints = {
  323. .name = "V28",
  324. .min_uV = 2800000,
  325. .max_uV = 2800000,
  326. .always_on = true, /* due battery cover sensor */
  327. .valid_modes_mask = REGULATOR_MODE_NORMAL
  328. | REGULATOR_MODE_STANDBY,
  329. .valid_ops_mask = REGULATOR_CHANGE_MODE
  330. | REGULATOR_CHANGE_STATUS,
  331. },
  332. .num_consumer_supplies = ARRAY_SIZE(rx51_vaux1_consumers),
  333. .consumer_supplies = rx51_vaux1_consumers,
  334. };
  335. static struct regulator_init_data rx51_vaux2 = {
  336. .constraints = {
  337. .name = "VCSI",
  338. .min_uV = 1800000,
  339. .max_uV = 1800000,
  340. .valid_modes_mask = REGULATOR_MODE_NORMAL
  341. | REGULATOR_MODE_STANDBY,
  342. .valid_ops_mask = REGULATOR_CHANGE_MODE
  343. | REGULATOR_CHANGE_STATUS,
  344. },
  345. };
  346. /* VAUX3 - adds more power to VIO_18 rail */
  347. static struct regulator_init_data rx51_vaux3_cam = {
  348. .constraints = {
  349. .name = "VCAM_DIG_18",
  350. .min_uV = 1800000,
  351. .max_uV = 1800000,
  352. .apply_uV = true,
  353. .valid_modes_mask = REGULATOR_MODE_NORMAL
  354. | REGULATOR_MODE_STANDBY,
  355. .valid_ops_mask = REGULATOR_CHANGE_MODE
  356. | REGULATOR_CHANGE_STATUS,
  357. },
  358. };
  359. static struct regulator_init_data rx51_vaux3_mmc = {
  360. .constraints = {
  361. .name = "VMMC2_30",
  362. .min_uV = 2800000,
  363. .max_uV = 3000000,
  364. .apply_uV = true,
  365. .valid_modes_mask = REGULATOR_MODE_NORMAL
  366. | REGULATOR_MODE_STANDBY,
  367. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  368. | REGULATOR_CHANGE_MODE
  369. | REGULATOR_CHANGE_STATUS,
  370. },
  371. .num_consumer_supplies = 1,
  372. .consumer_supplies = &rx51_vaux3_supply,
  373. };
  374. static struct regulator_init_data rx51_vaux4 = {
  375. .constraints = {
  376. .name = "VCAM_ANA_28",
  377. .min_uV = 2800000,
  378. .max_uV = 2800000,
  379. .apply_uV = true,
  380. .valid_modes_mask = REGULATOR_MODE_NORMAL
  381. | REGULATOR_MODE_STANDBY,
  382. .valid_ops_mask = REGULATOR_CHANGE_MODE
  383. | REGULATOR_CHANGE_STATUS,
  384. },
  385. };
  386. static struct regulator_init_data rx51_vmmc1 = {
  387. .constraints = {
  388. .min_uV = 1850000,
  389. .max_uV = 3150000,
  390. .valid_modes_mask = REGULATOR_MODE_NORMAL
  391. | REGULATOR_MODE_STANDBY,
  392. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  393. | REGULATOR_CHANGE_MODE
  394. | REGULATOR_CHANGE_STATUS,
  395. },
  396. .num_consumer_supplies = 1,
  397. .consumer_supplies = &rx51_vmmc1_supply,
  398. };
  399. static struct regulator_init_data rx51_vmmc2 = {
  400. .constraints = {
  401. .name = "V28_A",
  402. .min_uV = 2800000,
  403. .max_uV = 3000000,
  404. .apply_uV = true,
  405. .valid_modes_mask = REGULATOR_MODE_NORMAL
  406. | REGULATOR_MODE_STANDBY,
  407. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  408. | REGULATOR_CHANGE_MODE
  409. | REGULATOR_CHANGE_STATUS,
  410. },
  411. .num_consumer_supplies = ARRAY_SIZE(rx51_vmmc2_supplies),
  412. .consumer_supplies = rx51_vmmc2_supplies,
  413. };
  414. static struct regulator_init_data rx51_vsim = {
  415. .constraints = {
  416. .name = "VMMC2_IO_18",
  417. .min_uV = 1800000,
  418. .max_uV = 1800000,
  419. .apply_uV = true,
  420. .valid_modes_mask = REGULATOR_MODE_NORMAL
  421. | REGULATOR_MODE_STANDBY,
  422. .valid_ops_mask = REGULATOR_CHANGE_MODE
  423. | REGULATOR_CHANGE_STATUS,
  424. },
  425. .num_consumer_supplies = 1,
  426. .consumer_supplies = &rx51_vsim_supply,
  427. };
  428. static struct regulator_init_data rx51_vdac = {
  429. .constraints = {
  430. .min_uV = 1800000,
  431. .max_uV = 1800000,
  432. .valid_modes_mask = REGULATOR_MODE_NORMAL
  433. | REGULATOR_MODE_STANDBY,
  434. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  435. | REGULATOR_CHANGE_MODE
  436. | REGULATOR_CHANGE_STATUS,
  437. },
  438. };
  439. static struct regulator_init_data rx51_vio = {
  440. .constraints = {
  441. .min_uV = 1800000,
  442. .max_uV = 1800000,
  443. .valid_modes_mask = REGULATOR_MODE_NORMAL
  444. | REGULATOR_MODE_STANDBY,
  445. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  446. | REGULATOR_CHANGE_MODE
  447. | REGULATOR_CHANGE_STATUS,
  448. },
  449. .num_consumer_supplies = ARRAY_SIZE(rx51_vio_supplies),
  450. .consumer_supplies = rx51_vio_supplies,
  451. };
  452. static int rx51_twlgpio_setup(struct device *dev, unsigned gpio, unsigned n)
  453. {
  454. /* FIXME this gpio setup is just a placeholder for now */
  455. gpio_request(gpio + 6, "backlight_pwm");
  456. gpio_direction_output(gpio + 6, 0);
  457. gpio_request(gpio + 7, "speaker_en");
  458. gpio_direction_output(gpio + 7, 1);
  459. return 0;
  460. }
  461. static struct twl4030_gpio_platform_data rx51_gpio_data = {
  462. .gpio_base = OMAP_MAX_GPIO_LINES,
  463. .irq_base = TWL4030_GPIO_IRQ_BASE,
  464. .irq_end = TWL4030_GPIO_IRQ_END,
  465. .pulldowns = BIT(0) | BIT(1) | BIT(2) | BIT(3)
  466. | BIT(4) | BIT(5)
  467. | BIT(8) | BIT(9) | BIT(10) | BIT(11)
  468. | BIT(12) | BIT(13) | BIT(14) | BIT(15)
  469. | BIT(16) | BIT(17) ,
  470. .setup = rx51_twlgpio_setup,
  471. };
  472. static struct twl4030_usb_data rx51_usb_data = {
  473. .usb_mode = T2_USB_MODE_ULPI,
  474. };
  475. static struct twl4030_ins sleep_on_seq[] __initdata = {
  476. /*
  477. * Turn off everything
  478. */
  479. {MSG_BROADCAST(DEV_GRP_NULL, RES_GRP_ALL, 1, 0, RES_STATE_SLEEP), 2},
  480. };
  481. static struct twl4030_script sleep_on_script __initdata = {
  482. .script = sleep_on_seq,
  483. .size = ARRAY_SIZE(sleep_on_seq),
  484. .flags = TWL4030_SLEEP_SCRIPT,
  485. };
  486. static struct twl4030_ins wakeup_seq[] __initdata = {
  487. /*
  488. * Reenable everything
  489. */
  490. {MSG_BROADCAST(DEV_GRP_NULL, RES_GRP_ALL, 1, 0, RES_STATE_ACTIVE), 2},
  491. };
  492. static struct twl4030_script wakeup_script __initdata = {
  493. .script = wakeup_seq,
  494. .size = ARRAY_SIZE(wakeup_seq),
  495. .flags = TWL4030_WAKEUP12_SCRIPT,
  496. };
  497. static struct twl4030_ins wakeup_p3_seq[] __initdata = {
  498. /*
  499. * Reenable everything
  500. */
  501. {MSG_BROADCAST(DEV_GRP_NULL, RES_GRP_ALL, 1, 0, RES_STATE_ACTIVE), 2},
  502. };
  503. static struct twl4030_script wakeup_p3_script __initdata = {
  504. .script = wakeup_p3_seq,
  505. .size = ARRAY_SIZE(wakeup_p3_seq),
  506. .flags = TWL4030_WAKEUP3_SCRIPT,
  507. };
  508. static struct twl4030_ins wrst_seq[] __initdata = {
  509. /*
  510. * Reset twl4030.
  511. * Reset VDD1 regulator.
  512. * Reset VDD2 regulator.
  513. * Reset VPLL1 regulator.
  514. * Enable sysclk output.
  515. * Reenable twl4030.
  516. */
  517. {MSG_SINGULAR(DEV_GRP_NULL, RES_RESET, RES_STATE_OFF), 2},
  518. {MSG_BROADCAST(DEV_GRP_NULL, RES_GRP_ALL, 0, 1, RES_STATE_ACTIVE),
  519. 0x13},
  520. {MSG_BROADCAST(DEV_GRP_NULL, RES_GRP_PP, 0, 3, RES_STATE_OFF), 0x13},
  521. {MSG_SINGULAR(DEV_GRP_NULL, RES_VDD1, RES_STATE_WRST), 0x13},
  522. {MSG_SINGULAR(DEV_GRP_NULL, RES_VDD2, RES_STATE_WRST), 0x13},
  523. {MSG_SINGULAR(DEV_GRP_NULL, RES_VPLL1, RES_STATE_WRST), 0x35},
  524. {MSG_SINGULAR(DEV_GRP_P3, RES_HFCLKOUT, RES_STATE_ACTIVE), 2},
  525. {MSG_SINGULAR(DEV_GRP_NULL, RES_RESET, RES_STATE_ACTIVE), 2},
  526. };
  527. static struct twl4030_script wrst_script __initdata = {
  528. .script = wrst_seq,
  529. .size = ARRAY_SIZE(wrst_seq),
  530. .flags = TWL4030_WRST_SCRIPT,
  531. };
  532. static struct twl4030_script *twl4030_scripts[] __initdata = {
  533. /* wakeup12 script should be loaded before sleep script, otherwise a
  534. board might hit retention before loading of wakeup script is
  535. completed. This can cause boot failures depending on timing issues.
  536. */
  537. &wakeup_script,
  538. &sleep_on_script,
  539. &wakeup_p3_script,
  540. &wrst_script,
  541. };
  542. static struct twl4030_resconfig twl4030_rconfig[] __initdata = {
  543. { .resource = RES_VDD1, .devgroup = -1,
  544. .type = 1, .type2 = -1, .remap_off = RES_STATE_OFF,
  545. .remap_sleep = RES_STATE_OFF
  546. },
  547. { .resource = RES_VDD2, .devgroup = -1,
  548. .type = 1, .type2 = -1, .remap_off = RES_STATE_OFF,
  549. .remap_sleep = RES_STATE_OFF
  550. },
  551. { .resource = RES_VPLL1, .devgroup = -1,
  552. .type = 1, .type2 = -1, .remap_off = RES_STATE_OFF,
  553. .remap_sleep = RES_STATE_OFF
  554. },
  555. { .resource = RES_VPLL2, .devgroup = -1,
  556. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  557. },
  558. { .resource = RES_VAUX1, .devgroup = -1,
  559. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  560. },
  561. { .resource = RES_VAUX2, .devgroup = -1,
  562. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  563. },
  564. { .resource = RES_VAUX3, .devgroup = -1,
  565. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  566. },
  567. { .resource = RES_VAUX4, .devgroup = -1,
  568. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  569. },
  570. { .resource = RES_VMMC1, .devgroup = -1,
  571. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  572. },
  573. { .resource = RES_VMMC2, .devgroup = -1,
  574. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  575. },
  576. { .resource = RES_VDAC, .devgroup = -1,
  577. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  578. },
  579. { .resource = RES_VSIM, .devgroup = -1,
  580. .type = -1, .type2 = 3, .remap_off = -1, .remap_sleep = -1
  581. },
  582. { .resource = RES_VINTANA1, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  583. .type = -1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  584. },
  585. { .resource = RES_VINTANA2, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  586. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  587. },
  588. { .resource = RES_VINTDIG, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  589. .type = -1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  590. },
  591. { .resource = RES_VIO, .devgroup = DEV_GRP_P3,
  592. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  593. },
  594. { .resource = RES_CLKEN, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  595. .type = 1, .type2 = -1 , .remap_off = -1, .remap_sleep = -1
  596. },
  597. { .resource = RES_REGEN, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  598. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  599. },
  600. { .resource = RES_NRES_PWRON, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  601. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  602. },
  603. { .resource = RES_SYSEN, .devgroup = DEV_GRP_P1 | DEV_GRP_P3,
  604. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  605. },
  606. { .resource = RES_HFCLKOUT, .devgroup = DEV_GRP_P3,
  607. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  608. },
  609. { .resource = RES_32KCLKOUT, .devgroup = -1,
  610. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  611. },
  612. { .resource = RES_RESET, .devgroup = -1,
  613. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  614. },
  615. { .resource = RES_Main_Ref, .devgroup = -1,
  616. .type = 1, .type2 = -1, .remap_off = -1, .remap_sleep = -1
  617. },
  618. { 0, 0},
  619. };
  620. static struct twl4030_power_data rx51_t2scripts_data __initdata = {
  621. .scripts = twl4030_scripts,
  622. .num = ARRAY_SIZE(twl4030_scripts),
  623. .resource_config = twl4030_rconfig,
  624. };
  625. static struct twl4030_platform_data rx51_twldata __initdata = {
  626. .irq_base = TWL4030_IRQ_BASE,
  627. .irq_end = TWL4030_IRQ_END,
  628. /* platform_data for children goes here */
  629. .gpio = &rx51_gpio_data,
  630. .keypad = &rx51_kp_data,
  631. .madc = &rx51_madc_data,
  632. .usb = &rx51_usb_data,
  633. .power = &rx51_t2scripts_data,
  634. .vaux1 = &rx51_vaux1,
  635. .vaux2 = &rx51_vaux2,
  636. .vaux4 = &rx51_vaux4,
  637. .vmmc1 = &rx51_vmmc1,
  638. .vsim = &rx51_vsim,
  639. .vdac = &rx51_vdac,
  640. .vio = &rx51_vio,
  641. };
  642. static struct aic3x_pdata rx51_aic3x_data __initdata = {
  643. .gpio_reset = 60,
  644. };
  645. static struct tpa6130a2_platform_data rx51_tpa6130a2_data __initdata = {
  646. .id = TPA6130A2,
  647. .power_gpio = 98,
  648. };
  649. static struct i2c_board_info __initdata rx51_peripherals_i2c_board_info_1[] = {
  650. {
  651. I2C_BOARD_INFO("twl5030", 0x48),
  652. .flags = I2C_CLIENT_WAKE,
  653. .irq = INT_34XX_SYS_NIRQ,
  654. .platform_data = &rx51_twldata,
  655. },
  656. };
  657. static struct i2c_board_info __initdata rx51_peripherals_i2c_board_info_2[] = {
  658. {
  659. I2C_BOARD_INFO("tlv320aic3x", 0x18),
  660. .platform_data = &rx51_aic3x_data,
  661. },
  662. #if defined(CONFIG_SENSORS_TSL2563) || defined(CONFIG_SENSORS_TSL2563_MODULE)
  663. {
  664. I2C_BOARD_INFO("tsl2563", 0x29),
  665. .platform_data = &rx51_tsl2563_platform_data,
  666. },
  667. #endif
  668. {
  669. I2C_BOARD_INFO("tpa6130a2", 0x60),
  670. .platform_data = &rx51_tpa6130a2_data,
  671. }
  672. };
  673. static int __init rx51_i2c_init(void)
  674. {
  675. if ((system_rev >= SYSTEM_REV_S_USES_VAUX3 && system_rev < 0x100) ||
  676. system_rev >= SYSTEM_REV_B_USES_VAUX3) {
  677. rx51_twldata.vaux3 = &rx51_vaux3_mmc;
  678. /* Only older boards use VMMC2 for internal MMC */
  679. rx51_vmmc2.num_consumer_supplies--;
  680. } else {
  681. rx51_twldata.vaux3 = &rx51_vaux3_cam;
  682. }
  683. rx51_twldata.vmmc2 = &rx51_vmmc2;
  684. omap_register_i2c_bus(1, 2200, rx51_peripherals_i2c_board_info_1,
  685. ARRAY_SIZE(rx51_peripherals_i2c_board_info_1));
  686. omap_register_i2c_bus(2, 100, rx51_peripherals_i2c_board_info_2,
  687. ARRAY_SIZE(rx51_peripherals_i2c_board_info_2));
  688. omap_register_i2c_bus(3, 400, NULL, 0);
  689. return 0;
  690. }
  691. #if defined(CONFIG_MTD_ONENAND_OMAP2) || \
  692. defined(CONFIG_MTD_ONENAND_OMAP2_MODULE)
  693. static struct mtd_partition onenand_partitions[] = {
  694. {
  695. .name = "bootloader",
  696. .offset = 0,
  697. .size = 0x20000,
  698. .mask_flags = MTD_WRITEABLE, /* Force read-only */
  699. },
  700. {
  701. .name = "config",
  702. .offset = MTDPART_OFS_APPEND,
  703. .size = 0x60000,
  704. },
  705. {
  706. .name = "log",
  707. .offset = MTDPART_OFS_APPEND,
  708. .size = 0x40000,
  709. },
  710. {
  711. .name = "kernel",
  712. .offset = MTDPART_OFS_APPEND,
  713. .size = 0x200000,
  714. },
  715. {
  716. .name = "initfs",
  717. .offset = MTDPART_OFS_APPEND,
  718. .size = 0x200000,
  719. },
  720. {
  721. .name = "rootfs",
  722. .offset = MTDPART_OFS_APPEND,
  723. .size = MTDPART_SIZ_FULL,
  724. },
  725. };
  726. static struct omap_onenand_platform_data board_onenand_data = {
  727. .cs = 0,
  728. .gpio_irq = 65,
  729. .parts = onenand_partitions,
  730. .nr_parts = ARRAY_SIZE(onenand_partitions),
  731. .flags = ONENAND_SYNC_READWRITE,
  732. };
  733. static void __init board_onenand_init(void)
  734. {
  735. gpmc_onenand_init(&board_onenand_data);
  736. }
  737. #else
  738. static inline void board_onenand_init(void)
  739. {
  740. }
  741. #endif
  742. #if defined(CONFIG_SMC91X) || defined(CONFIG_SMC91X_MODULE)
  743. static struct omap_smc91x_platform_data board_smc91x_data = {
  744. .cs = 1,
  745. .gpio_irq = 54,
  746. .gpio_pwrdwn = 86,
  747. .gpio_reset = 164,
  748. .flags = GPMC_TIMINGS_SMC91C96 | IORESOURCE_IRQ_HIGHLEVEL,
  749. };
  750. static void __init board_smc91x_init(void)
  751. {
  752. omap_mux_init_gpio(54, OMAP_PIN_INPUT_PULLDOWN);
  753. omap_mux_init_gpio(86, OMAP_PIN_OUTPUT);
  754. omap_mux_init_gpio(164, OMAP_PIN_OUTPUT);
  755. gpmc_smc91x_init(&board_smc91x_data);
  756. }
  757. #else
  758. static inline void board_smc91x_init(void)
  759. {
  760. }
  761. #endif
  762. static void rx51_wl1251_set_power(bool enable)
  763. {
  764. gpio_set_value(RX51_WL1251_POWER_GPIO, enable);
  765. }
  766. static void __init rx51_init_wl1251(void)
  767. {
  768. int irq, ret;
  769. ret = gpio_request(RX51_WL1251_POWER_GPIO, "wl1251 power");
  770. if (ret < 0)
  771. goto error;
  772. ret = gpio_direction_output(RX51_WL1251_POWER_GPIO, 0);
  773. if (ret < 0)
  774. goto err_power;
  775. ret = gpio_request(RX51_WL1251_IRQ_GPIO, "wl1251 irq");
  776. if (ret < 0)
  777. goto err_power;
  778. ret = gpio_direction_input(RX51_WL1251_IRQ_GPIO);
  779. if (ret < 0)
  780. goto err_irq;
  781. irq = gpio_to_irq(RX51_WL1251_IRQ_GPIO);
  782. if (irq < 0)
  783. goto err_irq;
  784. wl1251_pdata.set_power = rx51_wl1251_set_power;
  785. rx51_peripherals_spi_board_info[RX51_SPI_WL1251].irq = irq;
  786. return;
  787. err_irq:
  788. gpio_free(RX51_WL1251_IRQ_GPIO);
  789. err_power:
  790. gpio_free(RX51_WL1251_POWER_GPIO);
  791. error:
  792. printk(KERN_ERR "wl1251 board initialisation failed\n");
  793. wl1251_pdata.set_power = NULL;
  794. /*
  795. * Now rx51_peripherals_spi_board_info[1].irq is zero and
  796. * set_power is null, and wl1251_probe() will fail.
  797. */
  798. }
  799. void __init rx51_peripherals_init(void)
  800. {
  801. rx51_i2c_init();
  802. board_onenand_init();
  803. board_smc91x_init();
  804. rx51_add_gpio_keys();
  805. rx51_init_wl1251();
  806. spi_register_board_info(rx51_peripherals_spi_board_info,
  807. ARRAY_SIZE(rx51_peripherals_spi_board_info));
  808. omap2_hsmmc_init(mmc);
  809. platform_device_register(&rx51_charger_device);
  810. }