board-devkit8000.c 16 KB

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  1. /*
  2. * board-devkit8000.c - TimLL Devkit8000
  3. *
  4. * Copyright (C) 2009 Kim Botherway
  5. * Copyright (C) 2010 Thomas Weber
  6. *
  7. * Modified from mach-omap2/board-omap3beagle.c
  8. *
  9. * Initial code: Syed Mohammed Khasim
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License version 2 as
  13. * published by the Free Software Foundation.
  14. */
  15. #include <linux/kernel.h>
  16. #include <linux/init.h>
  17. #include <linux/platform_device.h>
  18. #include <linux/delay.h>
  19. #include <linux/err.h>
  20. #include <linux/clk.h>
  21. #include <linux/io.h>
  22. #include <linux/leds.h>
  23. #include <linux/gpio.h>
  24. #include <linux/input.h>
  25. #include <linux/gpio_keys.h>
  26. #include <linux/mtd/mtd.h>
  27. #include <linux/mtd/partitions.h>
  28. #include <linux/mtd/nand.h>
  29. #include <linux/regulator/machine.h>
  30. #include <linux/i2c/twl.h>
  31. #include <mach/hardware.h>
  32. #include <asm/mach-types.h>
  33. #include <asm/mach/arch.h>
  34. #include <asm/mach/map.h>
  35. #include <asm/mach/flash.h>
  36. #include <plat/board.h>
  37. #include <plat/common.h>
  38. #include <plat/gpmc.h>
  39. #include <plat/nand.h>
  40. #include <plat/usb.h>
  41. #include <plat/timer-gp.h>
  42. #include <plat/display.h>
  43. #include <plat/mcspi.h>
  44. #include <linux/input/matrix_keypad.h>
  45. #include <linux/spi/spi.h>
  46. #include <linux/spi/ads7846.h>
  47. #include <linux/dm9000.h>
  48. #include <linux/interrupt.h>
  49. #include "sdram-micron-mt46h32m32lf-6.h"
  50. #include "mux.h"
  51. #include "hsmmc.h"
  52. #define GPMC_CS0_BASE 0x60
  53. #define GPMC_CS_SIZE 0x30
  54. #define NAND_BLOCK_SIZE SZ_128K
  55. #define OMAP_DM9000_GPIO_IRQ 25
  56. #define OMAP3_DEVKIT_TS_GPIO 27
  57. static struct mtd_partition devkit8000_nand_partitions[] = {
  58. /* All the partition sizes are listed in terms of NAND block size */
  59. {
  60. .name = "X-Loader",
  61. .offset = 0,
  62. .size = 4 * NAND_BLOCK_SIZE,
  63. .mask_flags = MTD_WRITEABLE, /* force read-only */
  64. },
  65. {
  66. .name = "U-Boot",
  67. .offset = MTDPART_OFS_APPEND, /* Offset = 0x80000 */
  68. .size = 15 * NAND_BLOCK_SIZE,
  69. .mask_flags = MTD_WRITEABLE, /* force read-only */
  70. },
  71. {
  72. .name = "U-Boot Env",
  73. .offset = MTDPART_OFS_APPEND, /* Offset = 0x260000 */
  74. .size = 1 * NAND_BLOCK_SIZE,
  75. },
  76. {
  77. .name = "Kernel",
  78. .offset = MTDPART_OFS_APPEND, /* Offset = 0x280000 */
  79. .size = 32 * NAND_BLOCK_SIZE,
  80. },
  81. {
  82. .name = "File System",
  83. .offset = MTDPART_OFS_APPEND, /* Offset = 0x680000 */
  84. .size = MTDPART_SIZ_FULL,
  85. },
  86. };
  87. static struct omap_nand_platform_data devkit8000_nand_data = {
  88. .options = NAND_BUSWIDTH_16,
  89. .parts = devkit8000_nand_partitions,
  90. .nr_parts = ARRAY_SIZE(devkit8000_nand_partitions),
  91. .dma_channel = -1, /* disable DMA in OMAP NAND driver */
  92. };
  93. static struct resource devkit8000_nand_resource = {
  94. .flags = IORESOURCE_MEM,
  95. };
  96. static struct platform_device devkit8000_nand_device = {
  97. .name = "omap2-nand",
  98. .id = -1,
  99. .dev = {
  100. .platform_data = &devkit8000_nand_data,
  101. },
  102. .num_resources = 1,
  103. .resource = &devkit8000_nand_resource,
  104. };
  105. static struct omap2_hsmmc_info mmc[] = {
  106. {
  107. .mmc = 1,
  108. .wires = 8,
  109. .gpio_wp = 29,
  110. },
  111. {} /* Terminator */
  112. };
  113. static struct omap_board_config_kernel devkit8000_config[] __initdata = {
  114. };
  115. static int devkit8000_panel_enable_lcd(struct omap_dss_device *dssdev)
  116. {
  117. twl_i2c_write_u8(TWL4030_MODULE_GPIO, 0x80, REG_GPIODATADIR1);
  118. twl_i2c_write_u8(TWL4030_MODULE_LED, 0x0, 0x0);
  119. return 0;
  120. }
  121. static void devkit8000_panel_disable_lcd(struct omap_dss_device *dssdev)
  122. {
  123. }
  124. static int devkit8000_panel_enable_dvi(struct omap_dss_device *dssdev)
  125. {
  126. return 0;
  127. }
  128. static void devkit8000_panel_disable_dvi(struct omap_dss_device *dssdev)
  129. {
  130. }
  131. static int devkit8000_panel_enable_tv(struct omap_dss_device *dssdev)
  132. {
  133. return 0;
  134. }
  135. static void devkit8000_panel_disable_tv(struct omap_dss_device *dssdev)
  136. {
  137. }
  138. static struct regulator_consumer_supply devkit8000_vmmc1_supply = {
  139. .supply = "vmmc",
  140. };
  141. static struct regulator_consumer_supply devkit8000_vsim_supply = {
  142. .supply = "vmmc_aux",
  143. };
  144. static struct omap_dss_device devkit8000_lcd_device = {
  145. .name = "lcd",
  146. .driver_name = "innolux_at_panel",
  147. .type = OMAP_DISPLAY_TYPE_DPI,
  148. .phy.dpi.data_lines = 24,
  149. .platform_enable = devkit8000_panel_enable_lcd,
  150. .platform_disable = devkit8000_panel_disable_lcd,
  151. };
  152. static struct omap_dss_device devkit8000_dvi_device = {
  153. .name = "dvi",
  154. .driver_name = "generic_panel",
  155. .type = OMAP_DISPLAY_TYPE_DPI,
  156. .phy.dpi.data_lines = 24,
  157. .platform_enable = devkit8000_panel_enable_dvi,
  158. .platform_disable = devkit8000_panel_disable_dvi,
  159. };
  160. static struct omap_dss_device devkit8000_tv_device = {
  161. .name = "tv",
  162. .driver_name = "venc",
  163. .type = OMAP_DISPLAY_TYPE_VENC,
  164. .phy.venc.type = OMAP_DSS_VENC_TYPE_SVIDEO,
  165. .platform_enable = devkit8000_panel_enable_tv,
  166. .platform_disable = devkit8000_panel_disable_tv,
  167. };
  168. static struct omap_dss_device *devkit8000_dss_devices[] = {
  169. &devkit8000_lcd_device,
  170. &devkit8000_dvi_device,
  171. &devkit8000_tv_device,
  172. };
  173. static struct omap_dss_board_info devkit8000_dss_data = {
  174. .num_devices = ARRAY_SIZE(devkit8000_dss_devices),
  175. .devices = devkit8000_dss_devices,
  176. .default_device = &devkit8000_lcd_device,
  177. };
  178. static struct platform_device devkit8000_dss_device = {
  179. .name = "omapdss",
  180. .id = -1,
  181. .dev = {
  182. .platform_data = &devkit8000_dss_data,
  183. },
  184. };
  185. static struct regulator_consumer_supply devkit8000_vdda_dac_supply = {
  186. .supply = "vdda_dac",
  187. .dev = &devkit8000_dss_device.dev,
  188. };
  189. static int board_keymap[] = {
  190. KEY(0, 0, KEY_1),
  191. KEY(1, 0, KEY_2),
  192. KEY(2, 0, KEY_3),
  193. KEY(0, 1, KEY_4),
  194. KEY(1, 1, KEY_5),
  195. KEY(2, 1, KEY_6),
  196. KEY(3, 1, KEY_F5),
  197. KEY(0, 2, KEY_7),
  198. KEY(1, 2, KEY_8),
  199. KEY(2, 2, KEY_9),
  200. KEY(3, 2, KEY_F6),
  201. KEY(0, 3, KEY_F7),
  202. KEY(1, 3, KEY_0),
  203. KEY(2, 3, KEY_F8),
  204. PERSISTENT_KEY(4, 5),
  205. KEY(4, 4, KEY_VOLUMEUP),
  206. KEY(5, 5, KEY_VOLUMEDOWN),
  207. 0
  208. };
  209. static struct matrix_keymap_data board_map_data = {
  210. .keymap = board_keymap,
  211. .keymap_size = ARRAY_SIZE(board_keymap),
  212. };
  213. static struct twl4030_keypad_data devkit8000_kp_data = {
  214. .keymap_data = &board_map_data,
  215. .rows = 6,
  216. .cols = 6,
  217. .rep = 1,
  218. };
  219. static struct gpio_led gpio_leds[];
  220. static int devkit8000_twl_gpio_setup(struct device *dev,
  221. unsigned gpio, unsigned ngpio)
  222. {
  223. omap_mux_init_gpio(29, OMAP_PIN_INPUT);
  224. /* gpio + 0 is "mmc0_cd" (input/IRQ) */
  225. mmc[0].gpio_cd = gpio + 0;
  226. omap2_hsmmc_init(mmc);
  227. /* link regulators to MMC adapters */
  228. devkit8000_vmmc1_supply.dev = mmc[0].dev;
  229. devkit8000_vsim_supply.dev = mmc[0].dev;
  230. return 0;
  231. }
  232. static struct twl4030_gpio_platform_data devkit8000_gpio_data = {
  233. .gpio_base = OMAP_MAX_GPIO_LINES,
  234. .irq_base = TWL4030_GPIO_IRQ_BASE,
  235. .irq_end = TWL4030_GPIO_IRQ_END,
  236. .use_leds = true,
  237. .pullups = BIT(1),
  238. .pulldowns = BIT(2) | BIT(6) | BIT(7) | BIT(8) | BIT(13)
  239. | BIT(15) | BIT(16) | BIT(17),
  240. .setup = devkit8000_twl_gpio_setup,
  241. };
  242. static struct regulator_consumer_supply devkit8000_vpll2_supplies[] = {
  243. {
  244. .supply = "vdvi",
  245. .dev = &devkit8000_lcd_device.dev,
  246. },
  247. {
  248. .supply = "vdds_dsi",
  249. .dev = &devkit8000_dss_device.dev,
  250. }
  251. };
  252. /* VMMC1 for MMC1 pins CMD, CLK, DAT0..DAT3 (20 mA, plus card == max 220 mA) */
  253. static struct regulator_init_data devkit8000_vmmc1 = {
  254. .constraints = {
  255. .min_uV = 1850000,
  256. .max_uV = 3150000,
  257. .valid_modes_mask = REGULATOR_MODE_NORMAL
  258. | REGULATOR_MODE_STANDBY,
  259. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  260. | REGULATOR_CHANGE_MODE
  261. | REGULATOR_CHANGE_STATUS,
  262. },
  263. .num_consumer_supplies = 1,
  264. .consumer_supplies = &devkit8000_vmmc1_supply,
  265. };
  266. /* VSIM for MMC1 pins DAT4..DAT7 (2 mA, plus card == max 50 mA) */
  267. static struct regulator_init_data devkit8000_vsim = {
  268. .constraints = {
  269. .min_uV = 1800000,
  270. .max_uV = 3000000,
  271. .valid_modes_mask = REGULATOR_MODE_NORMAL
  272. | REGULATOR_MODE_STANDBY,
  273. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE
  274. | REGULATOR_CHANGE_MODE
  275. | REGULATOR_CHANGE_STATUS,
  276. },
  277. .num_consumer_supplies = 1,
  278. .consumer_supplies = &devkit8000_vsim_supply,
  279. };
  280. /* VDAC for DSS driving S-Video (8 mA unloaded, max 65 mA) */
  281. static struct regulator_init_data devkit8000_vdac = {
  282. .constraints = {
  283. .min_uV = 1800000,
  284. .max_uV = 1800000,
  285. .valid_modes_mask = REGULATOR_MODE_NORMAL
  286. | REGULATOR_MODE_STANDBY,
  287. .valid_ops_mask = REGULATOR_CHANGE_MODE
  288. | REGULATOR_CHANGE_STATUS,
  289. },
  290. .num_consumer_supplies = 1,
  291. .consumer_supplies = &devkit8000_vdda_dac_supply,
  292. };
  293. /* VPLL2 for digital video outputs */
  294. static struct regulator_init_data devkit8000_vpll2 = {
  295. .constraints = {
  296. .name = "VDVI",
  297. .min_uV = 1800000,
  298. .max_uV = 1800000,
  299. .valid_modes_mask = REGULATOR_MODE_NORMAL
  300. | REGULATOR_MODE_STANDBY,
  301. .valid_ops_mask = REGULATOR_CHANGE_MODE
  302. | REGULATOR_CHANGE_STATUS,
  303. },
  304. .num_consumer_supplies = ARRAY_SIZE(devkit8000_vpll2_supplies),
  305. .consumer_supplies = devkit8000_vpll2_supplies,
  306. };
  307. static struct twl4030_usb_data devkit8000_usb_data = {
  308. .usb_mode = T2_USB_MODE_ULPI,
  309. };
  310. static struct twl4030_codec_audio_data devkit8000_audio_data = {
  311. .audio_mclk = 26000000,
  312. };
  313. static struct twl4030_codec_data devkit8000_codec_data = {
  314. .audio_mclk = 26000000,
  315. .audio = &devkit8000_audio_data,
  316. };
  317. static struct twl4030_platform_data devkit8000_twldata = {
  318. .irq_base = TWL4030_IRQ_BASE,
  319. .irq_end = TWL4030_IRQ_END,
  320. /* platform_data for children goes here */
  321. .usb = &devkit8000_usb_data,
  322. .gpio = &devkit8000_gpio_data,
  323. .codec = &devkit8000_codec_data,
  324. .vmmc1 = &devkit8000_vmmc1,
  325. .vsim = &devkit8000_vsim,
  326. .vdac = &devkit8000_vdac,
  327. .vpll2 = &devkit8000_vpll2,
  328. .keypad = &devkit8000_kp_data,
  329. };
  330. static struct i2c_board_info __initdata devkit8000_i2c_boardinfo[] = {
  331. {
  332. I2C_BOARD_INFO("twl4030", 0x48),
  333. .flags = I2C_CLIENT_WAKE,
  334. .irq = INT_34XX_SYS_NIRQ,
  335. .platform_data = &devkit8000_twldata,
  336. },
  337. };
  338. static int __init devkit8000_i2c_init(void)
  339. {
  340. omap_register_i2c_bus(1, 2600, devkit8000_i2c_boardinfo,
  341. ARRAY_SIZE(devkit8000_i2c_boardinfo));
  342. /* Bus 3 is attached to the DVI port where devices like the pico DLP
  343. * projector don't work reliably with 400kHz */
  344. omap_register_i2c_bus(3, 400, NULL, 0);
  345. return 0;
  346. }
  347. static struct gpio_led gpio_leds[] = {
  348. {
  349. .name = "led1",
  350. .default_trigger = "heartbeat",
  351. .gpio = 186,
  352. .active_low = true,
  353. },
  354. {
  355. .name = "led2",
  356. .default_trigger = "mmc0",
  357. .gpio = 163,
  358. .active_low = true,
  359. },
  360. {
  361. .name = "ledB",
  362. .default_trigger = "none",
  363. .gpio = 153,
  364. .active_low = true,
  365. },
  366. {
  367. .name = "led3",
  368. .default_trigger = "none",
  369. .gpio = 164,
  370. .active_low = true,
  371. },
  372. };
  373. static struct gpio_led_platform_data gpio_led_info = {
  374. .leds = gpio_leds,
  375. .num_leds = ARRAY_SIZE(gpio_leds),
  376. };
  377. static struct platform_device leds_gpio = {
  378. .name = "leds-gpio",
  379. .id = -1,
  380. .dev = {
  381. .platform_data = &gpio_led_info,
  382. },
  383. };
  384. static struct gpio_keys_button gpio_buttons[] = {
  385. {
  386. .code = BTN_EXTRA,
  387. .gpio = 26,
  388. .desc = "user",
  389. .wakeup = 1,
  390. },
  391. };
  392. static struct gpio_keys_platform_data gpio_key_info = {
  393. .buttons = gpio_buttons,
  394. .nbuttons = ARRAY_SIZE(gpio_buttons),
  395. };
  396. static struct platform_device keys_gpio = {
  397. .name = "gpio-keys",
  398. .id = -1,
  399. .dev = {
  400. .platform_data = &gpio_key_info,
  401. },
  402. };
  403. static void __init devkit8000_init_irq(void)
  404. {
  405. omap_board_config = devkit8000_config;
  406. omap_board_config_size = ARRAY_SIZE(devkit8000_config);
  407. omap2_init_common_hw(mt46h32m32lf6_sdrc_params,
  408. mt46h32m32lf6_sdrc_params);
  409. omap_init_irq();
  410. #ifdef CONFIG_OMAP_32K_TIMER
  411. omap2_gp_clockevent_set_gptimer(12);
  412. #endif
  413. omap_gpio_init();
  414. }
  415. static void __init devkit8000_ads7846_init(void)
  416. {
  417. int gpio = OMAP3_DEVKIT_TS_GPIO;
  418. int ret;
  419. ret = gpio_request(gpio, "ads7846_pen_down");
  420. if (ret < 0) {
  421. printk(KERN_ERR "Failed to request GPIO %d for "
  422. "ads7846 pen down IRQ\n", gpio);
  423. return;
  424. }
  425. gpio_direction_input(gpio);
  426. }
  427. static int ads7846_get_pendown_state(void)
  428. {
  429. return !gpio_get_value(OMAP3_DEVKIT_TS_GPIO);
  430. }
  431. static struct ads7846_platform_data ads7846_config = {
  432. .x_max = 0x0fff,
  433. .y_max = 0x0fff,
  434. .x_plate_ohms = 180,
  435. .pressure_max = 255,
  436. .debounce_max = 10,
  437. .debounce_tol = 5,
  438. .debounce_rep = 1,
  439. .get_pendown_state = ads7846_get_pendown_state,
  440. .keep_vref_on = 1,
  441. .settle_delay_usecs = 150,
  442. };
  443. static struct omap2_mcspi_device_config ads7846_mcspi_config = {
  444. .turbo_mode = 0,
  445. .single_channel = 1, /* 0: slave, 1: master */
  446. };
  447. static struct spi_board_info devkit8000_spi_board_info[] __initdata = {
  448. {
  449. .modalias = "ads7846",
  450. .bus_num = 2,
  451. .chip_select = 0,
  452. .max_speed_hz = 1500000,
  453. .controller_data = &ads7846_mcspi_config,
  454. .irq = OMAP_GPIO_IRQ(OMAP3_DEVKIT_TS_GPIO),
  455. .platform_data = &ads7846_config,
  456. }
  457. };
  458. #define OMAP_DM9000_BASE 0x2c000000
  459. static struct resource omap_dm9000_resources[] = {
  460. [0] = {
  461. .start = OMAP_DM9000_BASE,
  462. .end = (OMAP_DM9000_BASE + 0x4 - 1),
  463. .flags = IORESOURCE_MEM,
  464. },
  465. [1] = {
  466. .start = (OMAP_DM9000_BASE + 0x400),
  467. .end = (OMAP_DM9000_BASE + 0x400 + 0x4 - 1),
  468. .flags = IORESOURCE_MEM,
  469. },
  470. [2] = {
  471. .start = OMAP_GPIO_IRQ(OMAP_DM9000_GPIO_IRQ),
  472. .flags = IORESOURCE_IRQ | IRQF_TRIGGER_LOW,
  473. },
  474. };
  475. static struct dm9000_plat_data omap_dm9000_platdata = {
  476. .flags = DM9000_PLATF_16BITONLY,
  477. };
  478. static struct platform_device omap_dm9000_dev = {
  479. .name = "dm9000",
  480. .id = -1,
  481. .num_resources = ARRAY_SIZE(omap_dm9000_resources),
  482. .resource = omap_dm9000_resources,
  483. .dev = {
  484. .platform_data = &omap_dm9000_platdata,
  485. },
  486. };
  487. static void __init omap_dm9000_init(void)
  488. {
  489. if (gpio_request(OMAP_DM9000_GPIO_IRQ, "dm9000 irq") < 0) {
  490. printk(KERN_ERR "Failed to request GPIO%d for dm9000 IRQ\n",
  491. OMAP_DM9000_GPIO_IRQ);
  492. return;
  493. }
  494. gpio_direction_input(OMAP_DM9000_GPIO_IRQ);
  495. }
  496. static struct platform_device *devkit8000_devices[] __initdata = {
  497. &devkit8000_dss_device,
  498. &leds_gpio,
  499. &keys_gpio,
  500. &omap_dm9000_dev,
  501. };
  502. static void __init devkit8000_flash_init(void)
  503. {
  504. u8 cs = 0;
  505. u8 nandcs = GPMC_CS_NUM + 1;
  506. u32 gpmc_base_add = OMAP34XX_GPMC_VIRT;
  507. /* find out the chip-select on which NAND exists */
  508. while (cs < GPMC_CS_NUM) {
  509. u32 ret = 0;
  510. ret = gpmc_cs_read_reg(cs, GPMC_CS_CONFIG1);
  511. if ((ret & 0xC00) == 0x800) {
  512. printk(KERN_INFO "Found NAND on CS%d\n", cs);
  513. if (nandcs > GPMC_CS_NUM)
  514. nandcs = cs;
  515. }
  516. cs++;
  517. }
  518. if (nandcs > GPMC_CS_NUM) {
  519. printk(KERN_INFO "NAND: Unable to find configuration "
  520. "in GPMC\n ");
  521. return;
  522. }
  523. if (nandcs < GPMC_CS_NUM) {
  524. devkit8000_nand_data.cs = nandcs;
  525. devkit8000_nand_data.gpmc_cs_baseaddr = (void *)
  526. (gpmc_base_add + GPMC_CS0_BASE + nandcs * GPMC_CS_SIZE);
  527. devkit8000_nand_data.gpmc_baseaddr = (void *)
  528. (gpmc_base_add);
  529. printk(KERN_INFO "Registering NAND on CS%d\n", nandcs);
  530. if (platform_device_register(&devkit8000_nand_device) < 0)
  531. printk(KERN_ERR "Unable to register NAND device\n");
  532. }
  533. }
  534. static struct omap_musb_board_data musb_board_data = {
  535. .interface_type = MUSB_INTERFACE_ULPI,
  536. .mode = MUSB_OTG,
  537. .power = 100,
  538. };
  539. static const struct ehci_hcd_omap_platform_data ehci_pdata __initconst = {
  540. .port_mode[0] = EHCI_HCD_OMAP_MODE_PHY,
  541. .port_mode[1] = EHCI_HCD_OMAP_MODE_UNKNOWN,
  542. .port_mode[2] = EHCI_HCD_OMAP_MODE_UNKNOWN,
  543. .phy_reset = true,
  544. .reset_gpio_port[0] = -EINVAL,
  545. .reset_gpio_port[1] = -EINVAL,
  546. .reset_gpio_port[2] = -EINVAL
  547. };
  548. static void __init devkit8000_init(void)
  549. {
  550. omap_serial_init();
  551. omap_dm9000_init();
  552. devkit8000_i2c_init();
  553. platform_add_devices(devkit8000_devices,
  554. ARRAY_SIZE(devkit8000_devices));
  555. omap_board_config = devkit8000_config;
  556. omap_board_config_size = ARRAY_SIZE(devkit8000_config);
  557. spi_register_board_info(devkit8000_spi_board_info,
  558. ARRAY_SIZE(devkit8000_spi_board_info));
  559. devkit8000_ads7846_init();
  560. usb_musb_init(&musb_board_data);
  561. usb_ehci_init(&ehci_pdata);
  562. devkit8000_flash_init();
  563. /* Ensure SDRC pins are mux'd for self-refresh */
  564. omap_mux_init_signal("sdrc_cke0", OMAP_PIN_OUTPUT);
  565. omap_mux_init_signal("sdrc_cke1", OMAP_PIN_OUTPUT);
  566. }
  567. static void __init devkit8000_map_io(void)
  568. {
  569. omap2_set_globals_343x();
  570. omap34xx_map_common_io();
  571. }
  572. MACHINE_START(DEVKIT8000, "OMAP3 Devkit8000")
  573. .phys_io = 0x48000000,
  574. .io_pg_offst = ((0xd8000000) >> 18) & 0xfffc,
  575. .boot_params = 0x80000100,
  576. .map_io = devkit8000_map_io,
  577. .init_irq = devkit8000_init_irq,
  578. .init_machine = devkit8000_init,
  579. .timer = &omap_timer,
  580. MACHINE_END