board-da850-evm.c 39 KB

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  1. /*
  2. * TI DA850/OMAP-L138 EVM board
  3. *
  4. * Copyright (C) 2009 Texas Instruments Incorporated - http://www.ti.com/
  5. *
  6. * Derived from: arch/arm/mach-davinci/board-da830-evm.c
  7. * Original Copyrights follow:
  8. *
  9. * 2007, 2009 (c) MontaVista Software, Inc. This file is licensed under
  10. * the terms of the GNU General Public License version 2. This program
  11. * is licensed "as is" without any warranty of any kind, whether express
  12. * or implied.
  13. */
  14. #include <linux/console.h>
  15. #include <linux/delay.h>
  16. #include <linux/gpio.h>
  17. #include <linux/gpio_keys.h>
  18. #include <linux/init.h>
  19. #include <linux/kernel.h>
  20. #include <linux/i2c.h>
  21. #include <linux/platform_data/at24.h>
  22. #include <linux/platform_data/pca953x.h>
  23. #include <linux/input.h>
  24. #include <linux/input/tps6507x-ts.h>
  25. #include <linux/mfd/tps6507x.h>
  26. #include <linux/mtd/mtd.h>
  27. #include <linux/mtd/nand.h>
  28. #include <linux/mtd/partitions.h>
  29. #include <linux/mtd/physmap.h>
  30. #include <linux/platform_device.h>
  31. #include <linux/platform_data/gpio-davinci.h>
  32. #include <linux/platform_data/mtd-davinci.h>
  33. #include <linux/platform_data/mtd-davinci-aemif.h>
  34. #include <linux/platform_data/spi-davinci.h>
  35. #include <linux/platform_data/uio_pruss.h>
  36. #include <linux/regulator/machine.h>
  37. #include <linux/regulator/tps6507x.h>
  38. #include <linux/spi/spi.h>
  39. #include <linux/spi/flash.h>
  40. #include <linux/wl12xx.h>
  41. #include <mach/common.h>
  42. #include <mach/cp_intc.h>
  43. #include <mach/da8xx.h>
  44. #include <mach/mux.h>
  45. #include <mach/sram.h>
  46. #include <asm/mach-types.h>
  47. #include <asm/mach/arch.h>
  48. #include <asm/system_info.h>
  49. #include <media/tvp514x.h>
  50. #include <media/adv7343.h>
  51. #define DA850_EVM_PHY_ID "davinci_mdio-0:00"
  52. #define DA850_LCD_PWR_PIN GPIO_TO_PIN(2, 8)
  53. #define DA850_LCD_BL_PIN GPIO_TO_PIN(2, 15)
  54. #define DA850_MMCSD_CD_PIN GPIO_TO_PIN(4, 0)
  55. #define DA850_MMCSD_WP_PIN GPIO_TO_PIN(4, 1)
  56. #define DA850_WLAN_EN GPIO_TO_PIN(6, 9)
  57. #define DA850_WLAN_IRQ GPIO_TO_PIN(6, 10)
  58. #define DA850_MII_MDIO_CLKEN_PIN GPIO_TO_PIN(2, 6)
  59. static struct mtd_partition da850evm_spiflash_part[] = {
  60. [0] = {
  61. .name = "UBL",
  62. .offset = 0,
  63. .size = SZ_64K,
  64. .mask_flags = MTD_WRITEABLE,
  65. },
  66. [1] = {
  67. .name = "U-Boot",
  68. .offset = MTDPART_OFS_APPEND,
  69. .size = SZ_512K,
  70. .mask_flags = MTD_WRITEABLE,
  71. },
  72. [2] = {
  73. .name = "U-Boot-Env",
  74. .offset = MTDPART_OFS_APPEND,
  75. .size = SZ_64K,
  76. .mask_flags = MTD_WRITEABLE,
  77. },
  78. [3] = {
  79. .name = "Kernel",
  80. .offset = MTDPART_OFS_APPEND,
  81. .size = SZ_2M + SZ_512K,
  82. .mask_flags = 0,
  83. },
  84. [4] = {
  85. .name = "Filesystem",
  86. .offset = MTDPART_OFS_APPEND,
  87. .size = SZ_4M,
  88. .mask_flags = 0,
  89. },
  90. [5] = {
  91. .name = "MAC-Address",
  92. .offset = SZ_8M - SZ_64K,
  93. .size = SZ_64K,
  94. .mask_flags = MTD_WRITEABLE,
  95. },
  96. };
  97. static struct flash_platform_data da850evm_spiflash_data = {
  98. .name = "m25p80",
  99. .parts = da850evm_spiflash_part,
  100. .nr_parts = ARRAY_SIZE(da850evm_spiflash_part),
  101. .type = "m25p64",
  102. };
  103. static struct davinci_spi_config da850evm_spiflash_cfg = {
  104. .io_type = SPI_IO_TYPE_DMA,
  105. .c2tdelay = 8,
  106. .t2cdelay = 8,
  107. };
  108. static struct spi_board_info da850evm_spi_info[] = {
  109. {
  110. .modalias = "m25p80",
  111. .platform_data = &da850evm_spiflash_data,
  112. .controller_data = &da850evm_spiflash_cfg,
  113. .mode = SPI_MODE_0,
  114. .max_speed_hz = 30000000,
  115. .bus_num = 1,
  116. .chip_select = 0,
  117. },
  118. };
  119. #ifdef CONFIG_MTD
  120. static void da850_evm_m25p80_notify_add(struct mtd_info *mtd)
  121. {
  122. char *mac_addr = davinci_soc_info.emac_pdata->mac_addr;
  123. size_t retlen;
  124. if (!strcmp(mtd->name, "MAC-Address")) {
  125. mtd_read(mtd, 0, ETH_ALEN, &retlen, mac_addr);
  126. if (retlen == ETH_ALEN)
  127. pr_info("Read MAC addr from SPI Flash: %pM\n",
  128. mac_addr);
  129. }
  130. }
  131. static struct mtd_notifier da850evm_spi_notifier = {
  132. .add = da850_evm_m25p80_notify_add,
  133. };
  134. static void da850_evm_setup_mac_addr(void)
  135. {
  136. register_mtd_user(&da850evm_spi_notifier);
  137. }
  138. #else
  139. static void da850_evm_setup_mac_addr(void) { }
  140. #endif
  141. static struct mtd_partition da850_evm_norflash_partition[] = {
  142. {
  143. .name = "bootloaders + env",
  144. .offset = 0,
  145. .size = SZ_512K,
  146. .mask_flags = MTD_WRITEABLE,
  147. },
  148. {
  149. .name = "kernel",
  150. .offset = MTDPART_OFS_APPEND,
  151. .size = SZ_2M,
  152. .mask_flags = 0,
  153. },
  154. {
  155. .name = "filesystem",
  156. .offset = MTDPART_OFS_APPEND,
  157. .size = MTDPART_SIZ_FULL,
  158. .mask_flags = 0,
  159. },
  160. };
  161. static struct physmap_flash_data da850_evm_norflash_data = {
  162. .width = 2,
  163. .parts = da850_evm_norflash_partition,
  164. .nr_parts = ARRAY_SIZE(da850_evm_norflash_partition),
  165. };
  166. static struct resource da850_evm_norflash_resource[] = {
  167. {
  168. .start = DA8XX_AEMIF_CS2_BASE,
  169. .end = DA8XX_AEMIF_CS2_BASE + SZ_32M - 1,
  170. .flags = IORESOURCE_MEM,
  171. },
  172. };
  173. static struct platform_device da850_evm_norflash_device = {
  174. .name = "physmap-flash",
  175. .id = 0,
  176. .dev = {
  177. .platform_data = &da850_evm_norflash_data,
  178. },
  179. .num_resources = 1,
  180. .resource = da850_evm_norflash_resource,
  181. };
  182. static struct davinci_pm_config da850_pm_pdata = {
  183. .sleepcount = 128,
  184. };
  185. static struct platform_device da850_pm_device = {
  186. .name = "pm-davinci",
  187. .dev = {
  188. .platform_data = &da850_pm_pdata,
  189. },
  190. .id = -1,
  191. };
  192. /* DA850/OMAP-L138 EVM includes a 512 MByte large-page NAND flash
  193. * (128K blocks). It may be used instead of the (default) SPI flash
  194. * to boot, using TI's tools to install the secondary boot loader
  195. * (UBL) and U-Boot.
  196. */
  197. static struct mtd_partition da850_evm_nandflash_partition[] = {
  198. {
  199. .name = "u-boot env",
  200. .offset = 0,
  201. .size = SZ_128K,
  202. .mask_flags = MTD_WRITEABLE,
  203. },
  204. {
  205. .name = "UBL",
  206. .offset = MTDPART_OFS_APPEND,
  207. .size = SZ_128K,
  208. .mask_flags = MTD_WRITEABLE,
  209. },
  210. {
  211. .name = "u-boot",
  212. .offset = MTDPART_OFS_APPEND,
  213. .size = 4 * SZ_128K,
  214. .mask_flags = MTD_WRITEABLE,
  215. },
  216. {
  217. .name = "kernel",
  218. .offset = 0x200000,
  219. .size = SZ_2M,
  220. .mask_flags = 0,
  221. },
  222. {
  223. .name = "filesystem",
  224. .offset = MTDPART_OFS_APPEND,
  225. .size = MTDPART_SIZ_FULL,
  226. .mask_flags = 0,
  227. },
  228. };
  229. static struct davinci_aemif_timing da850_evm_nandflash_timing = {
  230. .wsetup = 24,
  231. .wstrobe = 21,
  232. .whold = 14,
  233. .rsetup = 19,
  234. .rstrobe = 50,
  235. .rhold = 0,
  236. .ta = 20,
  237. };
  238. static struct davinci_nand_pdata da850_evm_nandflash_data = {
  239. .parts = da850_evm_nandflash_partition,
  240. .nr_parts = ARRAY_SIZE(da850_evm_nandflash_partition),
  241. .ecc_mode = NAND_ECC_HW,
  242. .ecc_bits = 4,
  243. .bbt_options = NAND_BBT_USE_FLASH,
  244. .timing = &da850_evm_nandflash_timing,
  245. };
  246. static struct resource da850_evm_nandflash_resource[] = {
  247. {
  248. .start = DA8XX_AEMIF_CS3_BASE,
  249. .end = DA8XX_AEMIF_CS3_BASE + SZ_512K + 2 * SZ_1K - 1,
  250. .flags = IORESOURCE_MEM,
  251. },
  252. {
  253. .start = DA8XX_AEMIF_CTL_BASE,
  254. .end = DA8XX_AEMIF_CTL_BASE + SZ_32K - 1,
  255. .flags = IORESOURCE_MEM,
  256. },
  257. };
  258. static struct platform_device da850_evm_nandflash_device = {
  259. .name = "davinci_nand",
  260. .id = 1,
  261. .dev = {
  262. .platform_data = &da850_evm_nandflash_data,
  263. },
  264. .num_resources = ARRAY_SIZE(da850_evm_nandflash_resource),
  265. .resource = da850_evm_nandflash_resource,
  266. };
  267. static struct platform_device *da850_evm_devices[] = {
  268. &da850_evm_nandflash_device,
  269. &da850_evm_norflash_device,
  270. };
  271. #define DA8XX_AEMIF_CE2CFG_OFFSET 0x10
  272. #define DA8XX_AEMIF_ASIZE_16BIT 0x1
  273. static void __init da850_evm_init_nor(void)
  274. {
  275. void __iomem *aemif_addr;
  276. aemif_addr = ioremap(DA8XX_AEMIF_CTL_BASE, SZ_32K);
  277. /* Configure data bus width of CS2 to 16 bit */
  278. writel(readl(aemif_addr + DA8XX_AEMIF_CE2CFG_OFFSET) |
  279. DA8XX_AEMIF_ASIZE_16BIT,
  280. aemif_addr + DA8XX_AEMIF_CE2CFG_OFFSET);
  281. iounmap(aemif_addr);
  282. }
  283. static const short da850_evm_nand_pins[] = {
  284. DA850_EMA_D_0, DA850_EMA_D_1, DA850_EMA_D_2, DA850_EMA_D_3,
  285. DA850_EMA_D_4, DA850_EMA_D_5, DA850_EMA_D_6, DA850_EMA_D_7,
  286. DA850_EMA_A_1, DA850_EMA_A_2, DA850_NEMA_CS_3, DA850_NEMA_CS_4,
  287. DA850_NEMA_WE, DA850_NEMA_OE,
  288. -1
  289. };
  290. static const short da850_evm_nor_pins[] = {
  291. DA850_EMA_BA_1, DA850_EMA_CLK, DA850_EMA_WAIT_1, DA850_NEMA_CS_2,
  292. DA850_NEMA_WE, DA850_NEMA_OE, DA850_EMA_D_0, DA850_EMA_D_1,
  293. DA850_EMA_D_2, DA850_EMA_D_3, DA850_EMA_D_4, DA850_EMA_D_5,
  294. DA850_EMA_D_6, DA850_EMA_D_7, DA850_EMA_D_8, DA850_EMA_D_9,
  295. DA850_EMA_D_10, DA850_EMA_D_11, DA850_EMA_D_12, DA850_EMA_D_13,
  296. DA850_EMA_D_14, DA850_EMA_D_15, DA850_EMA_A_0, DA850_EMA_A_1,
  297. DA850_EMA_A_2, DA850_EMA_A_3, DA850_EMA_A_4, DA850_EMA_A_5,
  298. DA850_EMA_A_6, DA850_EMA_A_7, DA850_EMA_A_8, DA850_EMA_A_9,
  299. DA850_EMA_A_10, DA850_EMA_A_11, DA850_EMA_A_12, DA850_EMA_A_13,
  300. DA850_EMA_A_14, DA850_EMA_A_15, DA850_EMA_A_16, DA850_EMA_A_17,
  301. DA850_EMA_A_18, DA850_EMA_A_19, DA850_EMA_A_20, DA850_EMA_A_21,
  302. DA850_EMA_A_22, DA850_EMA_A_23,
  303. -1
  304. };
  305. #define HAS_MMC IS_ENABLED(CONFIG_MMC_DAVINCI)
  306. static inline void da850_evm_setup_nor_nand(void)
  307. {
  308. int ret = 0;
  309. if (!HAS_MMC) {
  310. ret = davinci_cfg_reg_list(da850_evm_nand_pins);
  311. if (ret)
  312. pr_warn("%s: NAND mux setup failed: %d\n",
  313. __func__, ret);
  314. ret = davinci_cfg_reg_list(da850_evm_nor_pins);
  315. if (ret)
  316. pr_warn("%s: NOR mux setup failed: %d\n",
  317. __func__, ret);
  318. da850_evm_init_nor();
  319. platform_add_devices(da850_evm_devices,
  320. ARRAY_SIZE(da850_evm_devices));
  321. if (davinci_aemif_setup(&da850_evm_nandflash_device))
  322. pr_warn("%s: Cannot configure AEMIF.\n", __func__);
  323. }
  324. }
  325. #ifdef CONFIG_DA850_UI_RMII
  326. static inline void da850_evm_setup_emac_rmii(int rmii_sel)
  327. {
  328. struct davinci_soc_info *soc_info = &davinci_soc_info;
  329. soc_info->emac_pdata->rmii_en = 1;
  330. gpio_set_value_cansleep(rmii_sel, 0);
  331. }
  332. #else
  333. static inline void da850_evm_setup_emac_rmii(int rmii_sel) { }
  334. #endif
  335. #define DA850_KEYS_DEBOUNCE_MS 10
  336. /*
  337. * At 200ms polling interval it is possible to miss an
  338. * event by tapping very lightly on the push button but most
  339. * pushes do result in an event; longer intervals require the
  340. * user to hold the button whereas shorter intervals require
  341. * more CPU time for polling.
  342. */
  343. #define DA850_GPIO_KEYS_POLL_MS 200
  344. enum da850_evm_ui_exp_pins {
  345. DA850_EVM_UI_EXP_SEL_C = 5,
  346. DA850_EVM_UI_EXP_SEL_B,
  347. DA850_EVM_UI_EXP_SEL_A,
  348. DA850_EVM_UI_EXP_PB8,
  349. DA850_EVM_UI_EXP_PB7,
  350. DA850_EVM_UI_EXP_PB6,
  351. DA850_EVM_UI_EXP_PB5,
  352. DA850_EVM_UI_EXP_PB4,
  353. DA850_EVM_UI_EXP_PB3,
  354. DA850_EVM_UI_EXP_PB2,
  355. DA850_EVM_UI_EXP_PB1,
  356. };
  357. static const char * const da850_evm_ui_exp[] = {
  358. [DA850_EVM_UI_EXP_SEL_C] = "sel_c",
  359. [DA850_EVM_UI_EXP_SEL_B] = "sel_b",
  360. [DA850_EVM_UI_EXP_SEL_A] = "sel_a",
  361. [DA850_EVM_UI_EXP_PB8] = "pb8",
  362. [DA850_EVM_UI_EXP_PB7] = "pb7",
  363. [DA850_EVM_UI_EXP_PB6] = "pb6",
  364. [DA850_EVM_UI_EXP_PB5] = "pb5",
  365. [DA850_EVM_UI_EXP_PB4] = "pb4",
  366. [DA850_EVM_UI_EXP_PB3] = "pb3",
  367. [DA850_EVM_UI_EXP_PB2] = "pb2",
  368. [DA850_EVM_UI_EXP_PB1] = "pb1",
  369. };
  370. #define DA850_N_UI_PB 8
  371. static struct gpio_keys_button da850_evm_ui_keys[] = {
  372. [0 ... DA850_N_UI_PB - 1] = {
  373. .type = EV_KEY,
  374. .active_low = 1,
  375. .wakeup = 0,
  376. .debounce_interval = DA850_KEYS_DEBOUNCE_MS,
  377. .code = -1, /* assigned at runtime */
  378. .gpio = -1, /* assigned at runtime */
  379. .desc = NULL, /* assigned at runtime */
  380. },
  381. };
  382. static struct gpio_keys_platform_data da850_evm_ui_keys_pdata = {
  383. .buttons = da850_evm_ui_keys,
  384. .nbuttons = ARRAY_SIZE(da850_evm_ui_keys),
  385. .poll_interval = DA850_GPIO_KEYS_POLL_MS,
  386. };
  387. static struct platform_device da850_evm_ui_keys_device = {
  388. .name = "gpio-keys-polled",
  389. .id = 0,
  390. .dev = {
  391. .platform_data = &da850_evm_ui_keys_pdata
  392. },
  393. };
  394. static void da850_evm_ui_keys_init(unsigned gpio)
  395. {
  396. int i;
  397. struct gpio_keys_button *button;
  398. for (i = 0; i < DA850_N_UI_PB; i++) {
  399. button = &da850_evm_ui_keys[i];
  400. button->code = KEY_F8 - i;
  401. button->desc = (char *)
  402. da850_evm_ui_exp[DA850_EVM_UI_EXP_PB8 + i];
  403. button->gpio = gpio + DA850_EVM_UI_EXP_PB8 + i;
  404. }
  405. }
  406. #ifdef CONFIG_DA850_UI_SD_VIDEO_PORT
  407. static inline void da850_evm_setup_video_port(int video_sel)
  408. {
  409. gpio_set_value_cansleep(video_sel, 0);
  410. }
  411. #else
  412. static inline void da850_evm_setup_video_port(int video_sel) { }
  413. #endif
  414. static int da850_evm_ui_expander_setup(struct i2c_client *client, unsigned gpio,
  415. unsigned ngpio, void *c)
  416. {
  417. int sel_a, sel_b, sel_c, ret;
  418. sel_a = gpio + DA850_EVM_UI_EXP_SEL_A;
  419. sel_b = gpio + DA850_EVM_UI_EXP_SEL_B;
  420. sel_c = gpio + DA850_EVM_UI_EXP_SEL_C;
  421. ret = gpio_request(sel_a, da850_evm_ui_exp[DA850_EVM_UI_EXP_SEL_A]);
  422. if (ret) {
  423. pr_warn("Cannot open UI expander pin %d\n", sel_a);
  424. goto exp_setup_sela_fail;
  425. }
  426. ret = gpio_request(sel_b, da850_evm_ui_exp[DA850_EVM_UI_EXP_SEL_B]);
  427. if (ret) {
  428. pr_warn("Cannot open UI expander pin %d\n", sel_b);
  429. goto exp_setup_selb_fail;
  430. }
  431. ret = gpio_request(sel_c, da850_evm_ui_exp[DA850_EVM_UI_EXP_SEL_C]);
  432. if (ret) {
  433. pr_warn("Cannot open UI expander pin %d\n", sel_c);
  434. goto exp_setup_selc_fail;
  435. }
  436. /* deselect all functionalities */
  437. gpio_direction_output(sel_a, 1);
  438. gpio_direction_output(sel_b, 1);
  439. gpio_direction_output(sel_c, 1);
  440. da850_evm_ui_keys_init(gpio);
  441. ret = platform_device_register(&da850_evm_ui_keys_device);
  442. if (ret) {
  443. pr_warn("Could not register UI GPIO expander push-buttons");
  444. goto exp_setup_keys_fail;
  445. }
  446. pr_info("DA850/OMAP-L138 EVM UI card detected\n");
  447. da850_evm_setup_nor_nand();
  448. da850_evm_setup_emac_rmii(sel_a);
  449. da850_evm_setup_video_port(sel_c);
  450. return 0;
  451. exp_setup_keys_fail:
  452. gpio_free(sel_c);
  453. exp_setup_selc_fail:
  454. gpio_free(sel_b);
  455. exp_setup_selb_fail:
  456. gpio_free(sel_a);
  457. exp_setup_sela_fail:
  458. return ret;
  459. }
  460. static int da850_evm_ui_expander_teardown(struct i2c_client *client,
  461. unsigned gpio, unsigned ngpio, void *c)
  462. {
  463. platform_device_unregister(&da850_evm_ui_keys_device);
  464. /* deselect all functionalities */
  465. gpio_set_value_cansleep(gpio + DA850_EVM_UI_EXP_SEL_C, 1);
  466. gpio_set_value_cansleep(gpio + DA850_EVM_UI_EXP_SEL_B, 1);
  467. gpio_set_value_cansleep(gpio + DA850_EVM_UI_EXP_SEL_A, 1);
  468. gpio_free(gpio + DA850_EVM_UI_EXP_SEL_C);
  469. gpio_free(gpio + DA850_EVM_UI_EXP_SEL_B);
  470. gpio_free(gpio + DA850_EVM_UI_EXP_SEL_A);
  471. return 0;
  472. }
  473. /* assign the baseboard expander's GPIOs after the UI board's */
  474. #define DA850_UI_EXPANDER_N_GPIOS ARRAY_SIZE(da850_evm_ui_exp)
  475. #define DA850_BB_EXPANDER_GPIO_BASE (DAVINCI_N_GPIO + DA850_UI_EXPANDER_N_GPIOS)
  476. enum da850_evm_bb_exp_pins {
  477. DA850_EVM_BB_EXP_DEEP_SLEEP_EN = 0,
  478. DA850_EVM_BB_EXP_SW_RST,
  479. DA850_EVM_BB_EXP_TP_23,
  480. DA850_EVM_BB_EXP_TP_22,
  481. DA850_EVM_BB_EXP_TP_21,
  482. DA850_EVM_BB_EXP_USER_PB1,
  483. DA850_EVM_BB_EXP_USER_LED2,
  484. DA850_EVM_BB_EXP_USER_LED1,
  485. DA850_EVM_BB_EXP_USER_SW1,
  486. DA850_EVM_BB_EXP_USER_SW2,
  487. DA850_EVM_BB_EXP_USER_SW3,
  488. DA850_EVM_BB_EXP_USER_SW4,
  489. DA850_EVM_BB_EXP_USER_SW5,
  490. DA850_EVM_BB_EXP_USER_SW6,
  491. DA850_EVM_BB_EXP_USER_SW7,
  492. DA850_EVM_BB_EXP_USER_SW8
  493. };
  494. static const char * const da850_evm_bb_exp[] = {
  495. [DA850_EVM_BB_EXP_DEEP_SLEEP_EN] = "deep_sleep_en",
  496. [DA850_EVM_BB_EXP_SW_RST] = "sw_rst",
  497. [DA850_EVM_BB_EXP_TP_23] = "tp_23",
  498. [DA850_EVM_BB_EXP_TP_22] = "tp_22",
  499. [DA850_EVM_BB_EXP_TP_21] = "tp_21",
  500. [DA850_EVM_BB_EXP_USER_PB1] = "user_pb1",
  501. [DA850_EVM_BB_EXP_USER_LED2] = "user_led2",
  502. [DA850_EVM_BB_EXP_USER_LED1] = "user_led1",
  503. [DA850_EVM_BB_EXP_USER_SW1] = "user_sw1",
  504. [DA850_EVM_BB_EXP_USER_SW2] = "user_sw2",
  505. [DA850_EVM_BB_EXP_USER_SW3] = "user_sw3",
  506. [DA850_EVM_BB_EXP_USER_SW4] = "user_sw4",
  507. [DA850_EVM_BB_EXP_USER_SW5] = "user_sw5",
  508. [DA850_EVM_BB_EXP_USER_SW6] = "user_sw6",
  509. [DA850_EVM_BB_EXP_USER_SW7] = "user_sw7",
  510. [DA850_EVM_BB_EXP_USER_SW8] = "user_sw8",
  511. };
  512. #define DA850_N_BB_USER_SW 8
  513. static struct gpio_keys_button da850_evm_bb_keys[] = {
  514. [0] = {
  515. .type = EV_KEY,
  516. .active_low = 1,
  517. .wakeup = 0,
  518. .debounce_interval = DA850_KEYS_DEBOUNCE_MS,
  519. .code = KEY_PROG1,
  520. .desc = NULL, /* assigned at runtime */
  521. .gpio = -1, /* assigned at runtime */
  522. },
  523. [1 ... DA850_N_BB_USER_SW] = {
  524. .type = EV_SW,
  525. .active_low = 1,
  526. .wakeup = 0,
  527. .debounce_interval = DA850_KEYS_DEBOUNCE_MS,
  528. .code = -1, /* assigned at runtime */
  529. .desc = NULL, /* assigned at runtime */
  530. .gpio = -1, /* assigned at runtime */
  531. },
  532. };
  533. static struct gpio_keys_platform_data da850_evm_bb_keys_pdata = {
  534. .buttons = da850_evm_bb_keys,
  535. .nbuttons = ARRAY_SIZE(da850_evm_bb_keys),
  536. .poll_interval = DA850_GPIO_KEYS_POLL_MS,
  537. };
  538. static struct platform_device da850_evm_bb_keys_device = {
  539. .name = "gpio-keys-polled",
  540. .id = 1,
  541. .dev = {
  542. .platform_data = &da850_evm_bb_keys_pdata
  543. },
  544. };
  545. static void da850_evm_bb_keys_init(unsigned gpio)
  546. {
  547. int i;
  548. struct gpio_keys_button *button;
  549. button = &da850_evm_bb_keys[0];
  550. button->desc = (char *)
  551. da850_evm_bb_exp[DA850_EVM_BB_EXP_USER_PB1];
  552. button->gpio = gpio + DA850_EVM_BB_EXP_USER_PB1;
  553. for (i = 0; i < DA850_N_BB_USER_SW; i++) {
  554. button = &da850_evm_bb_keys[i + 1];
  555. button->code = SW_LID + i;
  556. button->desc = (char *)
  557. da850_evm_bb_exp[DA850_EVM_BB_EXP_USER_SW1 + i];
  558. button->gpio = gpio + DA850_EVM_BB_EXP_USER_SW1 + i;
  559. }
  560. }
  561. #define DA850_N_BB_USER_LED 2
  562. static struct gpio_led da850_evm_bb_leds[] = {
  563. [0 ... DA850_N_BB_USER_LED - 1] = {
  564. .active_low = 1,
  565. .gpio = -1, /* assigned at runtime */
  566. .name = NULL, /* assigned at runtime */
  567. },
  568. };
  569. static struct gpio_led_platform_data da850_evm_bb_leds_pdata = {
  570. .leds = da850_evm_bb_leds,
  571. .num_leds = ARRAY_SIZE(da850_evm_bb_leds),
  572. };
  573. static struct platform_device da850_evm_bb_leds_device = {
  574. .name = "leds-gpio",
  575. .id = -1,
  576. .dev = {
  577. .platform_data = &da850_evm_bb_leds_pdata
  578. }
  579. };
  580. static void da850_evm_bb_leds_init(unsigned gpio)
  581. {
  582. int i;
  583. struct gpio_led *led;
  584. for (i = 0; i < DA850_N_BB_USER_LED; i++) {
  585. led = &da850_evm_bb_leds[i];
  586. led->gpio = gpio + DA850_EVM_BB_EXP_USER_LED2 + i;
  587. led->name =
  588. da850_evm_bb_exp[DA850_EVM_BB_EXP_USER_LED2 + i];
  589. }
  590. }
  591. static int da850_evm_bb_expander_setup(struct i2c_client *client,
  592. unsigned gpio, unsigned ngpio,
  593. void *c)
  594. {
  595. int ret;
  596. /*
  597. * Register the switches and pushbutton on the baseboard as a gpio-keys
  598. * device.
  599. */
  600. da850_evm_bb_keys_init(gpio);
  601. ret = platform_device_register(&da850_evm_bb_keys_device);
  602. if (ret) {
  603. pr_warn("Could not register baseboard GPIO expander keys");
  604. goto io_exp_setup_sw_fail;
  605. }
  606. da850_evm_bb_leds_init(gpio);
  607. ret = platform_device_register(&da850_evm_bb_leds_device);
  608. if (ret) {
  609. pr_warn("Could not register baseboard GPIO expander LEDs");
  610. goto io_exp_setup_leds_fail;
  611. }
  612. return 0;
  613. io_exp_setup_leds_fail:
  614. platform_device_unregister(&da850_evm_bb_keys_device);
  615. io_exp_setup_sw_fail:
  616. return ret;
  617. }
  618. static int da850_evm_bb_expander_teardown(struct i2c_client *client,
  619. unsigned gpio, unsigned ngpio, void *c)
  620. {
  621. platform_device_unregister(&da850_evm_bb_leds_device);
  622. platform_device_unregister(&da850_evm_bb_keys_device);
  623. return 0;
  624. }
  625. static struct pca953x_platform_data da850_evm_ui_expander_info = {
  626. .gpio_base = DAVINCI_N_GPIO,
  627. .setup = da850_evm_ui_expander_setup,
  628. .teardown = da850_evm_ui_expander_teardown,
  629. .names = da850_evm_ui_exp,
  630. };
  631. static struct pca953x_platform_data da850_evm_bb_expander_info = {
  632. .gpio_base = DA850_BB_EXPANDER_GPIO_BASE,
  633. .setup = da850_evm_bb_expander_setup,
  634. .teardown = da850_evm_bb_expander_teardown,
  635. .names = da850_evm_bb_exp,
  636. };
  637. static struct i2c_board_info __initdata da850_evm_i2c_devices[] = {
  638. {
  639. I2C_BOARD_INFO("tlv320aic3x", 0x18),
  640. },
  641. {
  642. I2C_BOARD_INFO("tca6416", 0x20),
  643. .platform_data = &da850_evm_ui_expander_info,
  644. },
  645. {
  646. I2C_BOARD_INFO("tca6416", 0x21),
  647. .platform_data = &da850_evm_bb_expander_info,
  648. },
  649. };
  650. static struct davinci_i2c_platform_data da850_evm_i2c_0_pdata = {
  651. .bus_freq = 100, /* kHz */
  652. .bus_delay = 0, /* usec */
  653. };
  654. /* davinci da850 evm audio machine driver */
  655. static u8 da850_iis_serializer_direction[] = {
  656. INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE,
  657. INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE,
  658. INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE, TX_MODE,
  659. RX_MODE, INACTIVE_MODE, INACTIVE_MODE, INACTIVE_MODE,
  660. };
  661. static struct snd_platform_data da850_evm_snd_data = {
  662. .tx_dma_offset = 0x2000,
  663. .rx_dma_offset = 0x2000,
  664. .op_mode = DAVINCI_MCASP_IIS_MODE,
  665. .num_serializer = ARRAY_SIZE(da850_iis_serializer_direction),
  666. .tdm_slots = 2,
  667. .serial_dir = da850_iis_serializer_direction,
  668. .asp_chan_q = EVENTQ_0,
  669. .ram_chan_q = EVENTQ_1,
  670. .version = MCASP_VERSION_2,
  671. .txnumevt = 1,
  672. .rxnumevt = 1,
  673. .sram_size_playback = SZ_8K,
  674. .sram_size_capture = SZ_8K,
  675. };
  676. static const short da850_evm_mcasp_pins[] __initconst = {
  677. DA850_AHCLKX, DA850_ACLKX, DA850_AFSX,
  678. DA850_AHCLKR, DA850_ACLKR, DA850_AFSR, DA850_AMUTE,
  679. DA850_AXR_11, DA850_AXR_12,
  680. -1
  681. };
  682. static int da850_evm_mmc_get_ro(int index)
  683. {
  684. return gpio_get_value(DA850_MMCSD_WP_PIN);
  685. }
  686. static int da850_evm_mmc_get_cd(int index)
  687. {
  688. return !gpio_get_value(DA850_MMCSD_CD_PIN);
  689. }
  690. static struct davinci_mmc_config da850_mmc_config = {
  691. .get_ro = da850_evm_mmc_get_ro,
  692. .get_cd = da850_evm_mmc_get_cd,
  693. .wires = 4,
  694. .max_freq = 50000000,
  695. .caps = MMC_CAP_MMC_HIGHSPEED | MMC_CAP_SD_HIGHSPEED,
  696. };
  697. static const short da850_evm_mmcsd0_pins[] __initconst = {
  698. DA850_MMCSD0_DAT_0, DA850_MMCSD0_DAT_1, DA850_MMCSD0_DAT_2,
  699. DA850_MMCSD0_DAT_3, DA850_MMCSD0_CLK, DA850_MMCSD0_CMD,
  700. DA850_GPIO4_0, DA850_GPIO4_1,
  701. -1
  702. };
  703. static void da850_panel_power_ctrl(int val)
  704. {
  705. /* lcd backlight */
  706. gpio_set_value(DA850_LCD_BL_PIN, val);
  707. /* lcd power */
  708. gpio_set_value(DA850_LCD_PWR_PIN, val);
  709. }
  710. static int da850_lcd_hw_init(void)
  711. {
  712. int status;
  713. status = gpio_request(DA850_LCD_BL_PIN, "lcd bl\n");
  714. if (status < 0)
  715. return status;
  716. status = gpio_request(DA850_LCD_PWR_PIN, "lcd pwr\n");
  717. if (status < 0) {
  718. gpio_free(DA850_LCD_BL_PIN);
  719. return status;
  720. }
  721. gpio_direction_output(DA850_LCD_BL_PIN, 0);
  722. gpio_direction_output(DA850_LCD_PWR_PIN, 0);
  723. /* Switch off panel power and backlight */
  724. da850_panel_power_ctrl(0);
  725. /* Switch on panel power and backlight */
  726. da850_panel_power_ctrl(1);
  727. return 0;
  728. }
  729. /* TPS65070 voltage regulator support */
  730. /* 3.3V */
  731. static struct regulator_consumer_supply tps65070_dcdc1_consumers[] = {
  732. {
  733. .supply = "usb0_vdda33",
  734. },
  735. {
  736. .supply = "usb1_vdda33",
  737. },
  738. };
  739. /* 3.3V or 1.8V */
  740. static struct regulator_consumer_supply tps65070_dcdc2_consumers[] = {
  741. {
  742. .supply = "dvdd3318_a",
  743. },
  744. {
  745. .supply = "dvdd3318_b",
  746. },
  747. {
  748. .supply = "dvdd3318_c",
  749. },
  750. };
  751. /* 1.2V */
  752. static struct regulator_consumer_supply tps65070_dcdc3_consumers[] = {
  753. {
  754. .supply = "cvdd",
  755. },
  756. };
  757. /* 1.8V LDO */
  758. static struct regulator_consumer_supply tps65070_ldo1_consumers[] = {
  759. {
  760. .supply = "sata_vddr",
  761. },
  762. {
  763. .supply = "usb0_vdda18",
  764. },
  765. {
  766. .supply = "usb1_vdda18",
  767. },
  768. {
  769. .supply = "ddr_dvdd18",
  770. },
  771. };
  772. /* 1.2V LDO */
  773. static struct regulator_consumer_supply tps65070_ldo2_consumers[] = {
  774. {
  775. .supply = "sata_vdd",
  776. },
  777. {
  778. .supply = "pll0_vdda",
  779. },
  780. {
  781. .supply = "pll1_vdda",
  782. },
  783. {
  784. .supply = "usbs_cvdd",
  785. },
  786. {
  787. .supply = "vddarnwa1",
  788. },
  789. };
  790. /* We take advantage of the fact that both defdcdc{2,3} are tied high */
  791. static struct tps6507x_reg_platform_data tps6507x_platform_data = {
  792. .defdcdc_default = true,
  793. };
  794. static struct regulator_init_data tps65070_regulator_data[] = {
  795. /* dcdc1 */
  796. {
  797. .constraints = {
  798. .min_uV = 3150000,
  799. .max_uV = 3450000,
  800. .valid_ops_mask = (REGULATOR_CHANGE_VOLTAGE |
  801. REGULATOR_CHANGE_STATUS),
  802. .boot_on = 1,
  803. },
  804. .num_consumer_supplies = ARRAY_SIZE(tps65070_dcdc1_consumers),
  805. .consumer_supplies = tps65070_dcdc1_consumers,
  806. },
  807. /* dcdc2 */
  808. {
  809. .constraints = {
  810. .min_uV = 1710000,
  811. .max_uV = 3450000,
  812. .valid_ops_mask = (REGULATOR_CHANGE_VOLTAGE |
  813. REGULATOR_CHANGE_STATUS),
  814. .boot_on = 1,
  815. },
  816. .num_consumer_supplies = ARRAY_SIZE(tps65070_dcdc2_consumers),
  817. .consumer_supplies = tps65070_dcdc2_consumers,
  818. .driver_data = &tps6507x_platform_data,
  819. },
  820. /* dcdc3 */
  821. {
  822. .constraints = {
  823. .min_uV = 950000,
  824. .max_uV = 1350000,
  825. .valid_ops_mask = (REGULATOR_CHANGE_VOLTAGE |
  826. REGULATOR_CHANGE_STATUS),
  827. .boot_on = 1,
  828. },
  829. .num_consumer_supplies = ARRAY_SIZE(tps65070_dcdc3_consumers),
  830. .consumer_supplies = tps65070_dcdc3_consumers,
  831. .driver_data = &tps6507x_platform_data,
  832. },
  833. /* ldo1 */
  834. {
  835. .constraints = {
  836. .min_uV = 1710000,
  837. .max_uV = 1890000,
  838. .valid_ops_mask = (REGULATOR_CHANGE_VOLTAGE |
  839. REGULATOR_CHANGE_STATUS),
  840. .boot_on = 1,
  841. },
  842. .num_consumer_supplies = ARRAY_SIZE(tps65070_ldo1_consumers),
  843. .consumer_supplies = tps65070_ldo1_consumers,
  844. },
  845. /* ldo2 */
  846. {
  847. .constraints = {
  848. .min_uV = 1140000,
  849. .max_uV = 1320000,
  850. .valid_ops_mask = (REGULATOR_CHANGE_VOLTAGE |
  851. REGULATOR_CHANGE_STATUS),
  852. .boot_on = 1,
  853. },
  854. .num_consumer_supplies = ARRAY_SIZE(tps65070_ldo2_consumers),
  855. .consumer_supplies = tps65070_ldo2_consumers,
  856. },
  857. };
  858. static struct touchscreen_init_data tps6507x_touchscreen_data = {
  859. .poll_period = 30, /* ms between touch samples */
  860. .min_pressure = 0x30, /* minimum pressure to trigger touch */
  861. .vendor = 0, /* /sys/class/input/input?/id/vendor */
  862. .product = 65070, /* /sys/class/input/input?/id/product */
  863. .version = 0x100, /* /sys/class/input/input?/id/version */
  864. };
  865. static struct tps6507x_board tps_board = {
  866. .tps6507x_pmic_init_data = &tps65070_regulator_data[0],
  867. .tps6507x_ts_init_data = &tps6507x_touchscreen_data,
  868. };
  869. static struct i2c_board_info __initdata da850_evm_tps65070_info[] = {
  870. {
  871. I2C_BOARD_INFO("tps6507x", 0x48),
  872. .platform_data = &tps_board,
  873. },
  874. };
  875. static int __init pmic_tps65070_init(void)
  876. {
  877. return i2c_register_board_info(1, da850_evm_tps65070_info,
  878. ARRAY_SIZE(da850_evm_tps65070_info));
  879. }
  880. static const short da850_evm_lcdc_pins[] = {
  881. DA850_GPIO2_8, DA850_GPIO2_15,
  882. -1
  883. };
  884. static const short da850_evm_mii_pins[] = {
  885. DA850_MII_TXEN, DA850_MII_TXCLK, DA850_MII_COL, DA850_MII_TXD_3,
  886. DA850_MII_TXD_2, DA850_MII_TXD_1, DA850_MII_TXD_0, DA850_MII_RXER,
  887. DA850_MII_CRS, DA850_MII_RXCLK, DA850_MII_RXDV, DA850_MII_RXD_3,
  888. DA850_MII_RXD_2, DA850_MII_RXD_1, DA850_MII_RXD_0, DA850_MDIO_CLK,
  889. DA850_MDIO_D,
  890. -1
  891. };
  892. static const short da850_evm_rmii_pins[] = {
  893. DA850_RMII_TXD_0, DA850_RMII_TXD_1, DA850_RMII_TXEN,
  894. DA850_RMII_CRS_DV, DA850_RMII_RXD_0, DA850_RMII_RXD_1,
  895. DA850_RMII_RXER, DA850_RMII_MHZ_50_CLK, DA850_MDIO_CLK,
  896. DA850_MDIO_D,
  897. -1
  898. };
  899. static int __init da850_evm_config_emac(void)
  900. {
  901. void __iomem *cfg_chip3_base;
  902. int ret;
  903. u32 val;
  904. struct davinci_soc_info *soc_info = &davinci_soc_info;
  905. u8 rmii_en = soc_info->emac_pdata->rmii_en;
  906. if (!machine_is_davinci_da850_evm())
  907. return 0;
  908. cfg_chip3_base = DA8XX_SYSCFG0_VIRT(DA8XX_CFGCHIP3_REG);
  909. val = __raw_readl(cfg_chip3_base);
  910. if (rmii_en) {
  911. val |= BIT(8);
  912. ret = davinci_cfg_reg_list(da850_evm_rmii_pins);
  913. pr_info("EMAC: RMII PHY configured, MII PHY will not be"
  914. " functional\n");
  915. } else {
  916. val &= ~BIT(8);
  917. ret = davinci_cfg_reg_list(da850_evm_mii_pins);
  918. pr_info("EMAC: MII PHY configured, RMII PHY will not be"
  919. " functional\n");
  920. }
  921. if (ret)
  922. pr_warn("%s: CPGMAC/RMII mux setup failed: %d\n",
  923. __func__, ret);
  924. /* configure the CFGCHIP3 register for RMII or MII */
  925. __raw_writel(val, cfg_chip3_base);
  926. ret = davinci_cfg_reg(DA850_GPIO2_6);
  927. if (ret)
  928. pr_warn("%s:GPIO(2,6) mux setup failed\n", __func__);
  929. ret = gpio_request(DA850_MII_MDIO_CLKEN_PIN, "mdio_clk_en");
  930. if (ret) {
  931. pr_warn("Cannot open GPIO %d\n", DA850_MII_MDIO_CLKEN_PIN);
  932. return ret;
  933. }
  934. /* Enable/Disable MII MDIO clock */
  935. gpio_direction_output(DA850_MII_MDIO_CLKEN_PIN, rmii_en);
  936. soc_info->emac_pdata->phy_id = DA850_EVM_PHY_ID;
  937. ret = da8xx_register_emac();
  938. if (ret)
  939. pr_warn("%s: EMAC registration failed: %d\n", __func__, ret);
  940. return 0;
  941. }
  942. device_initcall(da850_evm_config_emac);
  943. /*
  944. * The following EDMA channels/slots are not being used by drivers (for
  945. * example: Timer, GPIO, UART events etc) on da850/omap-l138 EVM, hence
  946. * they are being reserved for codecs on the DSP side.
  947. */
  948. static const s16 da850_dma0_rsv_chans[][2] = {
  949. /* (offset, number) */
  950. { 8, 6},
  951. {24, 4},
  952. {30, 2},
  953. {-1, -1}
  954. };
  955. static const s16 da850_dma0_rsv_slots[][2] = {
  956. /* (offset, number) */
  957. { 8, 6},
  958. {24, 4},
  959. {30, 50},
  960. {-1, -1}
  961. };
  962. static const s16 da850_dma1_rsv_chans[][2] = {
  963. /* (offset, number) */
  964. { 0, 28},
  965. {30, 2},
  966. {-1, -1}
  967. };
  968. static const s16 da850_dma1_rsv_slots[][2] = {
  969. /* (offset, number) */
  970. { 0, 28},
  971. {30, 90},
  972. {-1, -1}
  973. };
  974. static struct edma_rsv_info da850_edma_cc0_rsv = {
  975. .rsv_chans = da850_dma0_rsv_chans,
  976. .rsv_slots = da850_dma0_rsv_slots,
  977. };
  978. static struct edma_rsv_info da850_edma_cc1_rsv = {
  979. .rsv_chans = da850_dma1_rsv_chans,
  980. .rsv_slots = da850_dma1_rsv_slots,
  981. };
  982. static struct edma_rsv_info *da850_edma_rsv[2] = {
  983. &da850_edma_cc0_rsv,
  984. &da850_edma_cc1_rsv,
  985. };
  986. #ifdef CONFIG_CPU_FREQ
  987. static __init int da850_evm_init_cpufreq(void)
  988. {
  989. switch (system_rev & 0xF) {
  990. case 3:
  991. da850_max_speed = 456000;
  992. break;
  993. case 2:
  994. da850_max_speed = 408000;
  995. break;
  996. case 1:
  997. da850_max_speed = 372000;
  998. break;
  999. }
  1000. return da850_register_cpufreq("pll0_sysclk3");
  1001. }
  1002. #else
  1003. static __init int da850_evm_init_cpufreq(void) { return 0; }
  1004. #endif
  1005. #if defined(CONFIG_DA850_UI_SD_VIDEO_PORT)
  1006. #define TVP5147_CH0 "tvp514x-0"
  1007. #define TVP5147_CH1 "tvp514x-1"
  1008. /* VPIF capture configuration */
  1009. static struct tvp514x_platform_data tvp5146_pdata = {
  1010. .clk_polarity = 0,
  1011. .hs_polarity = 1,
  1012. .vs_polarity = 1,
  1013. };
  1014. #define TVP514X_STD_ALL (V4L2_STD_NTSC | V4L2_STD_PAL)
  1015. static const struct vpif_input da850_ch0_inputs[] = {
  1016. {
  1017. .input = {
  1018. .index = 0,
  1019. .name = "Composite",
  1020. .type = V4L2_INPUT_TYPE_CAMERA,
  1021. .capabilities = V4L2_IN_CAP_STD,
  1022. .std = TVP514X_STD_ALL,
  1023. },
  1024. .input_route = INPUT_CVBS_VI2B,
  1025. .output_route = OUTPUT_10BIT_422_EMBEDDED_SYNC,
  1026. .subdev_name = TVP5147_CH0,
  1027. },
  1028. };
  1029. static const struct vpif_input da850_ch1_inputs[] = {
  1030. {
  1031. .input = {
  1032. .index = 0,
  1033. .name = "S-Video",
  1034. .type = V4L2_INPUT_TYPE_CAMERA,
  1035. .capabilities = V4L2_IN_CAP_STD,
  1036. .std = TVP514X_STD_ALL,
  1037. },
  1038. .input_route = INPUT_SVIDEO_VI2C_VI1C,
  1039. .output_route = OUTPUT_10BIT_422_EMBEDDED_SYNC,
  1040. .subdev_name = TVP5147_CH1,
  1041. },
  1042. };
  1043. static struct vpif_subdev_info da850_vpif_capture_sdev_info[] = {
  1044. {
  1045. .name = TVP5147_CH0,
  1046. .board_info = {
  1047. I2C_BOARD_INFO("tvp5146", 0x5d),
  1048. .platform_data = &tvp5146_pdata,
  1049. },
  1050. },
  1051. {
  1052. .name = TVP5147_CH1,
  1053. .board_info = {
  1054. I2C_BOARD_INFO("tvp5146", 0x5c),
  1055. .platform_data = &tvp5146_pdata,
  1056. },
  1057. },
  1058. };
  1059. static struct vpif_capture_config da850_vpif_capture_config = {
  1060. .subdev_info = da850_vpif_capture_sdev_info,
  1061. .subdev_count = ARRAY_SIZE(da850_vpif_capture_sdev_info),
  1062. .chan_config[0] = {
  1063. .inputs = da850_ch0_inputs,
  1064. .input_count = ARRAY_SIZE(da850_ch0_inputs),
  1065. .vpif_if = {
  1066. .if_type = VPIF_IF_BT656,
  1067. .hd_pol = 1,
  1068. .vd_pol = 1,
  1069. .fid_pol = 0,
  1070. },
  1071. },
  1072. .chan_config[1] = {
  1073. .inputs = da850_ch1_inputs,
  1074. .input_count = ARRAY_SIZE(da850_ch1_inputs),
  1075. .vpif_if = {
  1076. .if_type = VPIF_IF_BT656,
  1077. .hd_pol = 1,
  1078. .vd_pol = 1,
  1079. .fid_pol = 0,
  1080. },
  1081. },
  1082. .card_name = "DA850/OMAP-L138 Video Capture",
  1083. };
  1084. /* VPIF display configuration */
  1085. static struct adv7343_platform_data adv7343_pdata = {
  1086. .mode_config = {
  1087. .dac = { 1, 1, 1 },
  1088. },
  1089. .sd_config = {
  1090. .sd_dac_out = { 1 },
  1091. },
  1092. };
  1093. static struct vpif_subdev_info da850_vpif_subdev[] = {
  1094. {
  1095. .name = "adv7343",
  1096. .board_info = {
  1097. I2C_BOARD_INFO("adv7343", 0x2a),
  1098. .platform_data = &adv7343_pdata,
  1099. },
  1100. },
  1101. };
  1102. static const struct vpif_output da850_ch0_outputs[] = {
  1103. {
  1104. .output = {
  1105. .index = 0,
  1106. .name = "Composite",
  1107. .type = V4L2_OUTPUT_TYPE_ANALOG,
  1108. .capabilities = V4L2_OUT_CAP_STD,
  1109. .std = V4L2_STD_ALL,
  1110. },
  1111. .subdev_name = "adv7343",
  1112. .output_route = ADV7343_COMPOSITE_ID,
  1113. },
  1114. {
  1115. .output = {
  1116. .index = 1,
  1117. .name = "S-Video",
  1118. .type = V4L2_OUTPUT_TYPE_ANALOG,
  1119. .capabilities = V4L2_OUT_CAP_STD,
  1120. .std = V4L2_STD_ALL,
  1121. },
  1122. .subdev_name = "adv7343",
  1123. .output_route = ADV7343_SVIDEO_ID,
  1124. },
  1125. };
  1126. static struct vpif_display_config da850_vpif_display_config = {
  1127. .subdevinfo = da850_vpif_subdev,
  1128. .subdev_count = ARRAY_SIZE(da850_vpif_subdev),
  1129. .chan_config[0] = {
  1130. .outputs = da850_ch0_outputs,
  1131. .output_count = ARRAY_SIZE(da850_ch0_outputs),
  1132. },
  1133. .card_name = "DA850/OMAP-L138 Video Display",
  1134. };
  1135. static __init void da850_vpif_init(void)
  1136. {
  1137. int ret;
  1138. ret = da850_register_vpif();
  1139. if (ret)
  1140. pr_warn("da850_evm_init: VPIF setup failed: %d\n", ret);
  1141. ret = davinci_cfg_reg_list(da850_vpif_capture_pins);
  1142. if (ret)
  1143. pr_warn("da850_evm_init: VPIF capture mux setup failed: %d\n",
  1144. ret);
  1145. ret = da850_register_vpif_capture(&da850_vpif_capture_config);
  1146. if (ret)
  1147. pr_warn("da850_evm_init: VPIF capture setup failed: %d\n", ret);
  1148. ret = davinci_cfg_reg_list(da850_vpif_display_pins);
  1149. if (ret)
  1150. pr_warn("da850_evm_init: VPIF display mux setup failed: %d\n",
  1151. ret);
  1152. ret = da850_register_vpif_display(&da850_vpif_display_config);
  1153. if (ret)
  1154. pr_warn("da850_evm_init: VPIF display setup failed: %d\n", ret);
  1155. }
  1156. #else
  1157. static __init void da850_vpif_init(void) {}
  1158. #endif
  1159. #ifdef CONFIG_DA850_WL12XX
  1160. static void wl12xx_set_power(int index, bool power_on)
  1161. {
  1162. static bool power_state;
  1163. pr_debug("Powering %s wl12xx", power_on ? "on" : "off");
  1164. if (power_on == power_state)
  1165. return;
  1166. power_state = power_on;
  1167. if (power_on) {
  1168. /* Power up sequence required for wl127x devices */
  1169. gpio_set_value(DA850_WLAN_EN, 1);
  1170. usleep_range(15000, 15000);
  1171. gpio_set_value(DA850_WLAN_EN, 0);
  1172. usleep_range(1000, 1000);
  1173. gpio_set_value(DA850_WLAN_EN, 1);
  1174. msleep(70);
  1175. } else {
  1176. gpio_set_value(DA850_WLAN_EN, 0);
  1177. }
  1178. }
  1179. static struct davinci_mmc_config da850_wl12xx_mmc_config = {
  1180. .set_power = wl12xx_set_power,
  1181. .wires = 4,
  1182. .max_freq = 25000000,
  1183. .caps = MMC_CAP_4_BIT_DATA | MMC_CAP_NONREMOVABLE |
  1184. MMC_CAP_POWER_OFF_CARD,
  1185. };
  1186. static const short da850_wl12xx_pins[] __initconst = {
  1187. DA850_MMCSD1_DAT_0, DA850_MMCSD1_DAT_1, DA850_MMCSD1_DAT_2,
  1188. DA850_MMCSD1_DAT_3, DA850_MMCSD1_CLK, DA850_MMCSD1_CMD,
  1189. DA850_GPIO6_9, DA850_GPIO6_10,
  1190. -1
  1191. };
  1192. static struct wl12xx_platform_data da850_wl12xx_wlan_data __initdata = {
  1193. .irq = -1,
  1194. .board_ref_clock = WL12XX_REFCLOCK_38,
  1195. .platform_quirks = WL12XX_PLATFORM_QUIRK_EDGE_IRQ,
  1196. };
  1197. static __init int da850_wl12xx_init(void)
  1198. {
  1199. int ret;
  1200. ret = davinci_cfg_reg_list(da850_wl12xx_pins);
  1201. if (ret) {
  1202. pr_err("wl12xx/mmc mux setup failed: %d\n", ret);
  1203. goto exit;
  1204. }
  1205. ret = da850_register_mmcsd1(&da850_wl12xx_mmc_config);
  1206. if (ret) {
  1207. pr_err("wl12xx/mmc registration failed: %d\n", ret);
  1208. goto exit;
  1209. }
  1210. ret = gpio_request_one(DA850_WLAN_EN, GPIOF_OUT_INIT_LOW, "wl12xx_en");
  1211. if (ret) {
  1212. pr_err("Could not request wl12xx enable gpio: %d\n", ret);
  1213. goto exit;
  1214. }
  1215. ret = gpio_request_one(DA850_WLAN_IRQ, GPIOF_IN, "wl12xx_irq");
  1216. if (ret) {
  1217. pr_err("Could not request wl12xx irq gpio: %d\n", ret);
  1218. goto free_wlan_en;
  1219. }
  1220. da850_wl12xx_wlan_data.irq = gpio_to_irq(DA850_WLAN_IRQ);
  1221. ret = wl12xx_set_platform_data(&da850_wl12xx_wlan_data);
  1222. if (ret) {
  1223. pr_err("Could not set wl12xx data: %d\n", ret);
  1224. goto free_wlan_irq;
  1225. }
  1226. return 0;
  1227. free_wlan_irq:
  1228. gpio_free(DA850_WLAN_IRQ);
  1229. free_wlan_en:
  1230. gpio_free(DA850_WLAN_EN);
  1231. exit:
  1232. return ret;
  1233. }
  1234. #else /* CONFIG_DA850_WL12XX */
  1235. static __init int da850_wl12xx_init(void)
  1236. {
  1237. return 0;
  1238. }
  1239. #endif /* CONFIG_DA850_WL12XX */
  1240. #define DA850EVM_SATA_REFCLKPN_RATE (100 * 1000 * 1000)
  1241. static __init void da850_evm_init(void)
  1242. {
  1243. int ret;
  1244. ret = da850_register_gpio();
  1245. if (ret)
  1246. pr_warn("%s: GPIO init failed: %d\n", __func__, ret);
  1247. ret = pmic_tps65070_init();
  1248. if (ret)
  1249. pr_warn("%s: TPS65070 PMIC init failed: %d\n", __func__, ret);
  1250. ret = da850_register_edma(da850_edma_rsv);
  1251. if (ret)
  1252. pr_warn("%s: EDMA registration failed: %d\n", __func__, ret);
  1253. ret = davinci_cfg_reg_list(da850_i2c0_pins);
  1254. if (ret)
  1255. pr_warn("%s: I2C0 mux setup failed: %d\n", __func__, ret);
  1256. ret = da8xx_register_i2c(0, &da850_evm_i2c_0_pdata);
  1257. if (ret)
  1258. pr_warn("%s: I2C0 registration failed: %d\n", __func__, ret);
  1259. ret = da8xx_register_watchdog();
  1260. if (ret)
  1261. pr_warn("%s: watchdog registration failed: %d\n",
  1262. __func__, ret);
  1263. if (HAS_MMC) {
  1264. ret = davinci_cfg_reg_list(da850_evm_mmcsd0_pins);
  1265. if (ret)
  1266. pr_warn("%s: MMCSD0 mux setup failed: %d\n",
  1267. __func__, ret);
  1268. ret = gpio_request(DA850_MMCSD_CD_PIN, "MMC CD\n");
  1269. if (ret)
  1270. pr_warn("%s: can not open GPIO %d\n",
  1271. __func__, DA850_MMCSD_CD_PIN);
  1272. gpio_direction_input(DA850_MMCSD_CD_PIN);
  1273. ret = gpio_request(DA850_MMCSD_WP_PIN, "MMC WP\n");
  1274. if (ret)
  1275. pr_warn("%s: can not open GPIO %d\n",
  1276. __func__, DA850_MMCSD_WP_PIN);
  1277. gpio_direction_input(DA850_MMCSD_WP_PIN);
  1278. ret = da8xx_register_mmcsd0(&da850_mmc_config);
  1279. if (ret)
  1280. pr_warn("%s: MMCSD0 registration failed: %d\n",
  1281. __func__, ret);
  1282. ret = da850_wl12xx_init();
  1283. if (ret)
  1284. pr_warn("%s: WL12xx initialization failed: %d\n",
  1285. __func__, ret);
  1286. }
  1287. davinci_serial_init(da8xx_serial_device);
  1288. i2c_register_board_info(1, da850_evm_i2c_devices,
  1289. ARRAY_SIZE(da850_evm_i2c_devices));
  1290. /*
  1291. * shut down uart 0 and 1; they are not used on the board and
  1292. * accessing them causes endless "too much work in irq53" messages
  1293. * with arago fs
  1294. */
  1295. __raw_writel(0, IO_ADDRESS(DA8XX_UART1_BASE) + 0x30);
  1296. __raw_writel(0, IO_ADDRESS(DA8XX_UART0_BASE) + 0x30);
  1297. ret = davinci_cfg_reg_list(da850_evm_mcasp_pins);
  1298. if (ret)
  1299. pr_warn("%s: McASP mux setup failed: %d\n", __func__, ret);
  1300. da850_evm_snd_data.sram_pool = sram_get_gen_pool();
  1301. da8xx_register_mcasp(0, &da850_evm_snd_data);
  1302. ret = davinci_cfg_reg_list(da850_lcdcntl_pins);
  1303. if (ret)
  1304. pr_warn("%s: LCDC mux setup failed: %d\n", __func__, ret);
  1305. ret = da8xx_register_uio_pruss();
  1306. if (ret)
  1307. pr_warn("da850_evm_init: pruss initialization failed: %d\n",
  1308. ret);
  1309. /* Handle board specific muxing for LCD here */
  1310. ret = davinci_cfg_reg_list(da850_evm_lcdc_pins);
  1311. if (ret)
  1312. pr_warn("%s: EVM specific LCD mux setup failed: %d\n",
  1313. __func__, ret);
  1314. ret = da850_lcd_hw_init();
  1315. if (ret)
  1316. pr_warn("%s: LCD initialization failed: %d\n", __func__, ret);
  1317. sharp_lk043t1dg01_pdata.panel_power_ctrl = da850_panel_power_ctrl,
  1318. ret = da8xx_register_lcdc(&sharp_lk043t1dg01_pdata);
  1319. if (ret)
  1320. pr_warn("%s: LCDC registration failed: %d\n", __func__, ret);
  1321. ret = da8xx_register_rtc();
  1322. if (ret)
  1323. pr_warn("%s: RTC setup failed: %d\n", __func__, ret);
  1324. ret = da850_evm_init_cpufreq();
  1325. if (ret)
  1326. pr_warn("%s: cpufreq registration failed: %d\n", __func__, ret);
  1327. ret = da8xx_register_cpuidle();
  1328. if (ret)
  1329. pr_warn("%s: cpuidle registration failed: %d\n", __func__, ret);
  1330. ret = da850_register_pm(&da850_pm_device);
  1331. if (ret)
  1332. pr_warn("%s: suspend registration failed: %d\n", __func__, ret);
  1333. da850_vpif_init();
  1334. ret = spi_register_board_info(da850evm_spi_info,
  1335. ARRAY_SIZE(da850evm_spi_info));
  1336. if (ret)
  1337. pr_warn("%s: spi info registration failed: %d\n", __func__,
  1338. ret);
  1339. ret = da8xx_register_spi_bus(1, ARRAY_SIZE(da850evm_spi_info));
  1340. if (ret)
  1341. pr_warn("%s: SPI 1 registration failed: %d\n", __func__, ret);
  1342. ret = da850_register_sata(DA850EVM_SATA_REFCLKPN_RATE);
  1343. if (ret)
  1344. pr_warn("%s: SATA registration failed: %d\n", __func__, ret);
  1345. da850_evm_setup_mac_addr();
  1346. ret = da8xx_register_rproc();
  1347. if (ret)
  1348. pr_warn("%s: dsp/rproc registration failed: %d\n",
  1349. __func__, ret);
  1350. }
  1351. #ifdef CONFIG_SERIAL_8250_CONSOLE
  1352. static int __init da850_evm_console_init(void)
  1353. {
  1354. if (!machine_is_davinci_da850_evm())
  1355. return 0;
  1356. return add_preferred_console("ttyS", 2, "115200");
  1357. }
  1358. console_initcall(da850_evm_console_init);
  1359. #endif
  1360. static void __init da850_evm_map_io(void)
  1361. {
  1362. da850_init();
  1363. }
  1364. MACHINE_START(DAVINCI_DA850_EVM, "DaVinci DA850/OMAP-L138/AM18x EVM")
  1365. .atag_offset = 0x100,
  1366. .map_io = da850_evm_map_io,
  1367. .init_irq = cp_intc_init,
  1368. .init_time = davinci_timer_init,
  1369. .init_machine = da850_evm_init,
  1370. .init_late = davinci_init_late,
  1371. .dma_zone_size = SZ_128M,
  1372. .restart = da8xx_restart,
  1373. .reserve = da8xx_rproc_reserve_cma,
  1374. MACHINE_END