setup.c 34 KB

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  1. /*
  2. * Copyright (C) 2009 Renesas Solutions Corp.
  3. *
  4. * Kuninori Morimoto <morimoto.kuninori@renesas.com>
  5. *
  6. * This file is subject to the terms and conditions of the GNU General Public
  7. * License. See the file "COPYING" in the main directory of this archive
  8. * for more details.
  9. */
  10. #include <linux/init.h>
  11. #include <linux/device.h>
  12. #include <linux/platform_device.h>
  13. #include <linux/mmc/host.h>
  14. #include <linux/mmc/sh_mmcif.h>
  15. #include <linux/mmc/sh_mobile_sdhi.h>
  16. #include <linux/mtd/physmap.h>
  17. #include <linux/mfd/tmio.h>
  18. #include <linux/gpio.h>
  19. #include <linux/interrupt.h>
  20. #include <linux/io.h>
  21. #include <linux/delay.h>
  22. #include <linux/regulator/fixed.h>
  23. #include <linux/regulator/machine.h>
  24. #include <linux/usb/r8a66597.h>
  25. #include <linux/usb/renesas_usbhs.h>
  26. #include <linux/i2c.h>
  27. #include <linux/i2c/tsc2007.h>
  28. #include <linux/spi/spi.h>
  29. #include <linux/spi/sh_msiof.h>
  30. #include <linux/spi/mmc_spi.h>
  31. #include <linux/input.h>
  32. #include <linux/input/sh_keysc.h>
  33. #include <linux/platform_data/gpio_backlight.h>
  34. #include <linux/sh_eth.h>
  35. #include <linux/sh_intc.h>
  36. #include <linux/videodev2.h>
  37. #include <video/sh_mobile_lcdc.h>
  38. #include <sound/sh_fsi.h>
  39. #include <sound/simple_card.h>
  40. #include <media/sh_mobile_ceu.h>
  41. #include <media/soc_camera.h>
  42. #include <media/tw9910.h>
  43. #include <media/mt9t112.h>
  44. #include <asm/heartbeat.h>
  45. #include <asm/clock.h>
  46. #include <asm/suspend.h>
  47. #include <cpu/sh7724.h>
  48. /*
  49. * Address Interface BusWidth
  50. *-----------------------------------------
  51. * 0x0000_0000 uboot 16bit
  52. * 0x0004_0000 Linux romImage 16bit
  53. * 0x0014_0000 MTD for Linux 16bit
  54. * 0x0400_0000 Internal I/O 16/32bit
  55. * 0x0800_0000 DRAM 32bit
  56. * 0x1800_0000 MFI 16bit
  57. */
  58. /* SWITCH
  59. *------------------------------
  60. * DS2[1] = FlashROM write protect ON : write protect
  61. * OFF : No write protect
  62. * DS2[2] = RMII / TS, SCIF ON : RMII
  63. * OFF : TS, SCIF3
  64. * DS2[3] = Camera / Video ON : Camera
  65. * OFF : NTSC/PAL (IN)
  66. * DS2[5] = NTSC_OUT Clock ON : On board OSC
  67. * OFF : SH7724 DV_CLK
  68. * DS2[6-7] = MMC / SD ON-OFF : SD
  69. * OFF-ON : MMC
  70. */
  71. /*
  72. * FSI - DA7210
  73. *
  74. * it needs amixer settings for playing
  75. *
  76. * amixer set 'HeadPhone' 80
  77. * amixer set 'Out Mixer Left DAC Left' on
  78. * amixer set 'Out Mixer Right DAC Right' on
  79. */
  80. /* Heartbeat */
  81. static unsigned char led_pos[] = { 0, 1, 2, 3 };
  82. static struct heartbeat_data heartbeat_data = {
  83. .nr_bits = 4,
  84. .bit_pos = led_pos,
  85. };
  86. static struct resource heartbeat_resource = {
  87. .start = 0xA405012C, /* PTG */
  88. .end = 0xA405012E - 1,
  89. .flags = IORESOURCE_MEM | IORESOURCE_MEM_8BIT,
  90. };
  91. static struct platform_device heartbeat_device = {
  92. .name = "heartbeat",
  93. .id = -1,
  94. .dev = {
  95. .platform_data = &heartbeat_data,
  96. },
  97. .num_resources = 1,
  98. .resource = &heartbeat_resource,
  99. };
  100. /* MTD */
  101. static struct mtd_partition nor_flash_partitions[] = {
  102. {
  103. .name = "boot loader",
  104. .offset = 0,
  105. .size = (5 * 1024 * 1024),
  106. .mask_flags = MTD_WRITEABLE, /* force read-only */
  107. }, {
  108. .name = "free-area",
  109. .offset = MTDPART_OFS_APPEND,
  110. .size = MTDPART_SIZ_FULL,
  111. },
  112. };
  113. static struct physmap_flash_data nor_flash_data = {
  114. .width = 2,
  115. .parts = nor_flash_partitions,
  116. .nr_parts = ARRAY_SIZE(nor_flash_partitions),
  117. };
  118. static struct resource nor_flash_resources[] = {
  119. [0] = {
  120. .name = "NOR Flash",
  121. .start = 0x00000000,
  122. .end = 0x03ffffff,
  123. .flags = IORESOURCE_MEM,
  124. }
  125. };
  126. static struct platform_device nor_flash_device = {
  127. .name = "physmap-flash",
  128. .resource = nor_flash_resources,
  129. .num_resources = ARRAY_SIZE(nor_flash_resources),
  130. .dev = {
  131. .platform_data = &nor_flash_data,
  132. },
  133. };
  134. /* SH Eth */
  135. #define SH_ETH_ADDR (0xA4600000)
  136. static struct resource sh_eth_resources[] = {
  137. [0] = {
  138. .start = SH_ETH_ADDR,
  139. .end = SH_ETH_ADDR + 0x1FC,
  140. .flags = IORESOURCE_MEM,
  141. },
  142. [1] = {
  143. .start = evt2irq(0xd60),
  144. .flags = IORESOURCE_IRQ | IORESOURCE_IRQ_HIGHLEVEL,
  145. },
  146. };
  147. static struct sh_eth_plat_data sh_eth_plat = {
  148. .phy = 0x1f, /* SMSC LAN8700 */
  149. .edmac_endian = EDMAC_LITTLE_ENDIAN,
  150. .phy_interface = PHY_INTERFACE_MODE_MII,
  151. .ether_link_active_low = 1
  152. };
  153. static struct platform_device sh_eth_device = {
  154. .name = "sh7724-ether",
  155. .id = 0,
  156. .dev = {
  157. .platform_data = &sh_eth_plat,
  158. },
  159. .num_resources = ARRAY_SIZE(sh_eth_resources),
  160. .resource = sh_eth_resources,
  161. };
  162. /* USB0 host */
  163. static void usb0_port_power(int port, int power)
  164. {
  165. gpio_set_value(GPIO_PTB4, power);
  166. }
  167. static struct r8a66597_platdata usb0_host_data = {
  168. .on_chip = 1,
  169. .port_power = usb0_port_power,
  170. };
  171. static struct resource usb0_host_resources[] = {
  172. [0] = {
  173. .start = 0xa4d80000,
  174. .end = 0xa4d80124 - 1,
  175. .flags = IORESOURCE_MEM,
  176. },
  177. [1] = {
  178. .start = evt2irq(0xa20),
  179. .end = evt2irq(0xa20),
  180. .flags = IORESOURCE_IRQ | IRQF_TRIGGER_LOW,
  181. },
  182. };
  183. static struct platform_device usb0_host_device = {
  184. .name = "r8a66597_hcd",
  185. .id = 0,
  186. .dev = {
  187. .dma_mask = NULL, /* not use dma */
  188. .coherent_dma_mask = 0xffffffff,
  189. .platform_data = &usb0_host_data,
  190. },
  191. .num_resources = ARRAY_SIZE(usb0_host_resources),
  192. .resource = usb0_host_resources,
  193. };
  194. /* USB1 host/function */
  195. static void usb1_port_power(int port, int power)
  196. {
  197. gpio_set_value(GPIO_PTB5, power);
  198. }
  199. static struct r8a66597_platdata usb1_common_data = {
  200. .on_chip = 1,
  201. .port_power = usb1_port_power,
  202. };
  203. static struct resource usb1_common_resources[] = {
  204. [0] = {
  205. .start = 0xa4d90000,
  206. .end = 0xa4d90124 - 1,
  207. .flags = IORESOURCE_MEM,
  208. },
  209. [1] = {
  210. .start = evt2irq(0xa40),
  211. .end = evt2irq(0xa40),
  212. .flags = IORESOURCE_IRQ | IRQF_TRIGGER_LOW,
  213. },
  214. };
  215. static struct platform_device usb1_common_device = {
  216. /* .name will be added in arch_setup */
  217. .id = 1,
  218. .dev = {
  219. .dma_mask = NULL, /* not use dma */
  220. .coherent_dma_mask = 0xffffffff,
  221. .platform_data = &usb1_common_data,
  222. },
  223. .num_resources = ARRAY_SIZE(usb1_common_resources),
  224. .resource = usb1_common_resources,
  225. };
  226. /*
  227. * USBHS
  228. */
  229. static int usbhs_get_id(struct platform_device *pdev)
  230. {
  231. return gpio_get_value(GPIO_PTB3);
  232. }
  233. static int usbhs_phy_reset(struct platform_device *pdev)
  234. {
  235. /* enable vbus if HOST */
  236. if (!gpio_get_value(GPIO_PTB3))
  237. gpio_set_value(GPIO_PTB5, 1);
  238. return 0;
  239. }
  240. static struct renesas_usbhs_platform_info usbhs_info = {
  241. .platform_callback = {
  242. .get_id = usbhs_get_id,
  243. .phy_reset = usbhs_phy_reset,
  244. },
  245. .driver_param = {
  246. .buswait_bwait = 4,
  247. .detection_delay = 5,
  248. .d0_tx_id = SHDMA_SLAVE_USB1D0_TX,
  249. .d0_rx_id = SHDMA_SLAVE_USB1D0_RX,
  250. .d1_tx_id = SHDMA_SLAVE_USB1D1_TX,
  251. .d1_rx_id = SHDMA_SLAVE_USB1D1_RX,
  252. },
  253. };
  254. static struct resource usbhs_resources[] = {
  255. [0] = {
  256. .start = 0xa4d90000,
  257. .end = 0xa4d90124 - 1,
  258. .flags = IORESOURCE_MEM,
  259. },
  260. [1] = {
  261. .start = evt2irq(0xa40),
  262. .end = evt2irq(0xa40),
  263. .flags = IORESOURCE_IRQ,
  264. },
  265. };
  266. static struct platform_device usbhs_device = {
  267. .name = "renesas_usbhs",
  268. .id = 1,
  269. .dev = {
  270. .dma_mask = NULL, /* not use dma */
  271. .coherent_dma_mask = 0xffffffff,
  272. .platform_data = &usbhs_info,
  273. },
  274. .num_resources = ARRAY_SIZE(usbhs_resources),
  275. .resource = usbhs_resources,
  276. };
  277. /* LCDC and backlight */
  278. static const struct fb_videomode ecovec_lcd_modes[] = {
  279. {
  280. .name = "Panel",
  281. .xres = 800,
  282. .yres = 480,
  283. .left_margin = 220,
  284. .right_margin = 110,
  285. .hsync_len = 70,
  286. .upper_margin = 20,
  287. .lower_margin = 5,
  288. .vsync_len = 5,
  289. .sync = 0, /* hsync and vsync are active low */
  290. },
  291. };
  292. static const struct fb_videomode ecovec_dvi_modes[] = {
  293. {
  294. .name = "DVI",
  295. .xres = 1280,
  296. .yres = 720,
  297. .left_margin = 220,
  298. .right_margin = 110,
  299. .hsync_len = 40,
  300. .upper_margin = 20,
  301. .lower_margin = 5,
  302. .vsync_len = 5,
  303. .sync = 0, /* hsync and vsync are active low */
  304. },
  305. };
  306. static struct sh_mobile_lcdc_info lcdc_info = {
  307. .ch[0] = {
  308. .interface_type = RGB18,
  309. .chan = LCDC_CHAN_MAINLCD,
  310. .fourcc = V4L2_PIX_FMT_RGB565,
  311. .panel_cfg = { /* 7.0 inch */
  312. .width = 152,
  313. .height = 91,
  314. },
  315. }
  316. };
  317. static struct resource lcdc_resources[] = {
  318. [0] = {
  319. .name = "LCDC",
  320. .start = 0xfe940000,
  321. .end = 0xfe942fff,
  322. .flags = IORESOURCE_MEM,
  323. },
  324. [1] = {
  325. .start = evt2irq(0xf40),
  326. .flags = IORESOURCE_IRQ,
  327. },
  328. };
  329. static struct platform_device lcdc_device = {
  330. .name = "sh_mobile_lcdc_fb",
  331. .num_resources = ARRAY_SIZE(lcdc_resources),
  332. .resource = lcdc_resources,
  333. .dev = {
  334. .platform_data = &lcdc_info,
  335. },
  336. };
  337. static struct gpio_backlight_platform_data gpio_backlight_data = {
  338. .fbdev = &lcdc_device.dev,
  339. .gpio = GPIO_PTR1,
  340. .def_value = 1,
  341. .name = "backlight",
  342. };
  343. static struct platform_device gpio_backlight_device = {
  344. .name = "gpio-backlight",
  345. .dev = {
  346. .platform_data = &gpio_backlight_data,
  347. },
  348. };
  349. /* CEU0 */
  350. static struct sh_mobile_ceu_info sh_mobile_ceu0_info = {
  351. .flags = SH_CEU_FLAG_USE_8BIT_BUS,
  352. };
  353. static struct resource ceu0_resources[] = {
  354. [0] = {
  355. .name = "CEU0",
  356. .start = 0xfe910000,
  357. .end = 0xfe91009f,
  358. .flags = IORESOURCE_MEM,
  359. },
  360. [1] = {
  361. .start = evt2irq(0x880),
  362. .flags = IORESOURCE_IRQ,
  363. },
  364. [2] = {
  365. /* place holder for contiguous memory */
  366. },
  367. };
  368. static struct platform_device ceu0_device = {
  369. .name = "sh_mobile_ceu",
  370. .id = 0, /* "ceu0" clock */
  371. .num_resources = ARRAY_SIZE(ceu0_resources),
  372. .resource = ceu0_resources,
  373. .dev = {
  374. .platform_data = &sh_mobile_ceu0_info,
  375. },
  376. };
  377. /* CEU1 */
  378. static struct sh_mobile_ceu_info sh_mobile_ceu1_info = {
  379. .flags = SH_CEU_FLAG_USE_8BIT_BUS,
  380. };
  381. static struct resource ceu1_resources[] = {
  382. [0] = {
  383. .name = "CEU1",
  384. .start = 0xfe914000,
  385. .end = 0xfe91409f,
  386. .flags = IORESOURCE_MEM,
  387. },
  388. [1] = {
  389. .start = evt2irq(0x9e0),
  390. .flags = IORESOURCE_IRQ,
  391. },
  392. [2] = {
  393. /* place holder for contiguous memory */
  394. },
  395. };
  396. static struct platform_device ceu1_device = {
  397. .name = "sh_mobile_ceu",
  398. .id = 1, /* "ceu1" clock */
  399. .num_resources = ARRAY_SIZE(ceu1_resources),
  400. .resource = ceu1_resources,
  401. .dev = {
  402. .platform_data = &sh_mobile_ceu1_info,
  403. },
  404. };
  405. /* I2C device */
  406. static struct i2c_board_info i2c0_devices[] = {
  407. {
  408. I2C_BOARD_INFO("da7210", 0x1a),
  409. },
  410. };
  411. static struct i2c_board_info i2c1_devices[] = {
  412. {
  413. I2C_BOARD_INFO("r2025sd", 0x32),
  414. },
  415. {
  416. I2C_BOARD_INFO("lis3lv02d", 0x1c),
  417. .irq = evt2irq(0x620),
  418. }
  419. };
  420. /* KEYSC */
  421. static struct sh_keysc_info keysc_info = {
  422. .mode = SH_KEYSC_MODE_1,
  423. .scan_timing = 3,
  424. .delay = 50,
  425. .kycr2_delay = 100,
  426. .keycodes = { KEY_1, 0, 0, 0, 0,
  427. KEY_2, 0, 0, 0, 0,
  428. KEY_3, 0, 0, 0, 0,
  429. KEY_4, 0, 0, 0, 0,
  430. KEY_5, 0, 0, 0, 0,
  431. KEY_6, 0, 0, 0, 0, },
  432. };
  433. static struct resource keysc_resources[] = {
  434. [0] = {
  435. .name = "KEYSC",
  436. .start = 0x044b0000,
  437. .end = 0x044b000f,
  438. .flags = IORESOURCE_MEM,
  439. },
  440. [1] = {
  441. .start = evt2irq(0xbe0),
  442. .flags = IORESOURCE_IRQ,
  443. },
  444. };
  445. static struct platform_device keysc_device = {
  446. .name = "sh_keysc",
  447. .id = 0, /* keysc0 clock */
  448. .num_resources = ARRAY_SIZE(keysc_resources),
  449. .resource = keysc_resources,
  450. .dev = {
  451. .platform_data = &keysc_info,
  452. },
  453. };
  454. /* TouchScreen */
  455. #define IRQ0 evt2irq(0x600)
  456. static int ts_get_pendown_state(struct device *dev)
  457. {
  458. int val = 0;
  459. gpio_free(GPIO_FN_INTC_IRQ0);
  460. gpio_request(GPIO_PTZ0, NULL);
  461. gpio_direction_input(GPIO_PTZ0);
  462. val = gpio_get_value(GPIO_PTZ0);
  463. gpio_free(GPIO_PTZ0);
  464. gpio_request(GPIO_FN_INTC_IRQ0, NULL);
  465. return val ? 0 : 1;
  466. }
  467. static int ts_init(void)
  468. {
  469. gpio_request(GPIO_FN_INTC_IRQ0, NULL);
  470. return 0;
  471. }
  472. static struct tsc2007_platform_data tsc2007_info = {
  473. .model = 2007,
  474. .x_plate_ohms = 180,
  475. .get_pendown_state = ts_get_pendown_state,
  476. .init_platform_hw = ts_init,
  477. };
  478. static struct i2c_board_info ts_i2c_clients = {
  479. I2C_BOARD_INFO("tsc2007", 0x48),
  480. .type = "tsc2007",
  481. .platform_data = &tsc2007_info,
  482. .irq = IRQ0,
  483. };
  484. static struct regulator_consumer_supply cn12_power_consumers[] =
  485. {
  486. REGULATOR_SUPPLY("vmmc", "sh_mmcif.0"),
  487. REGULATOR_SUPPLY("vqmmc", "sh_mmcif.0"),
  488. REGULATOR_SUPPLY("vmmc", "sh_mobile_sdhi.1"),
  489. REGULATOR_SUPPLY("vqmmc", "sh_mobile_sdhi.1"),
  490. };
  491. static struct regulator_init_data cn12_power_init_data = {
  492. .constraints = {
  493. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  494. },
  495. .num_consumer_supplies = ARRAY_SIZE(cn12_power_consumers),
  496. .consumer_supplies = cn12_power_consumers,
  497. };
  498. static struct fixed_voltage_config cn12_power_info = {
  499. .supply_name = "CN12 SD/MMC Vdd",
  500. .microvolts = 3300000,
  501. .gpio = GPIO_PTB7,
  502. .enable_high = 1,
  503. .init_data = &cn12_power_init_data,
  504. };
  505. static struct platform_device cn12_power = {
  506. .name = "reg-fixed-voltage",
  507. .id = 0,
  508. .dev = {
  509. .platform_data = &cn12_power_info,
  510. },
  511. };
  512. #if defined(CONFIG_MMC_SDHI) || defined(CONFIG_MMC_SDHI_MODULE)
  513. /* SDHI0 */
  514. static struct regulator_consumer_supply sdhi0_power_consumers[] =
  515. {
  516. REGULATOR_SUPPLY("vmmc", "sh_mobile_sdhi.0"),
  517. REGULATOR_SUPPLY("vqmmc", "sh_mobile_sdhi.0"),
  518. };
  519. static struct regulator_init_data sdhi0_power_init_data = {
  520. .constraints = {
  521. .valid_ops_mask = REGULATOR_CHANGE_STATUS,
  522. },
  523. .num_consumer_supplies = ARRAY_SIZE(sdhi0_power_consumers),
  524. .consumer_supplies = sdhi0_power_consumers,
  525. };
  526. static struct fixed_voltage_config sdhi0_power_info = {
  527. .supply_name = "CN11 SD/MMC Vdd",
  528. .microvolts = 3300000,
  529. .gpio = GPIO_PTB6,
  530. .enable_high = 1,
  531. .init_data = &sdhi0_power_init_data,
  532. };
  533. static struct platform_device sdhi0_power = {
  534. .name = "reg-fixed-voltage",
  535. .id = 1,
  536. .dev = {
  537. .platform_data = &sdhi0_power_info,
  538. },
  539. };
  540. static struct tmio_mmc_data sdhi0_info = {
  541. .chan_priv_tx = (void *)SHDMA_SLAVE_SDHI0_TX,
  542. .chan_priv_rx = (void *)SHDMA_SLAVE_SDHI0_RX,
  543. .capabilities = MMC_CAP_SDIO_IRQ | MMC_CAP_POWER_OFF_CARD |
  544. MMC_CAP_NEEDS_POLL,
  545. .flags = TMIO_MMC_USE_GPIO_CD,
  546. .cd_gpio = GPIO_PTY7,
  547. };
  548. static struct resource sdhi0_resources[] = {
  549. [0] = {
  550. .name = "SDHI0",
  551. .start = 0x04ce0000,
  552. .end = 0x04ce00ff,
  553. .flags = IORESOURCE_MEM,
  554. },
  555. [1] = {
  556. .start = evt2irq(0xe80),
  557. .flags = IORESOURCE_IRQ,
  558. },
  559. };
  560. static struct platform_device sdhi0_device = {
  561. .name = "sh_mobile_sdhi",
  562. .num_resources = ARRAY_SIZE(sdhi0_resources),
  563. .resource = sdhi0_resources,
  564. .id = 0,
  565. .dev = {
  566. .platform_data = &sdhi0_info,
  567. },
  568. };
  569. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  570. /* SDHI1 */
  571. static struct tmio_mmc_data sdhi1_info = {
  572. .chan_priv_tx = (void *)SHDMA_SLAVE_SDHI1_TX,
  573. .chan_priv_rx = (void *)SHDMA_SLAVE_SDHI1_RX,
  574. .capabilities = MMC_CAP_SDIO_IRQ | MMC_CAP_POWER_OFF_CARD |
  575. MMC_CAP_NEEDS_POLL,
  576. .flags = TMIO_MMC_USE_GPIO_CD,
  577. .cd_gpio = GPIO_PTW7,
  578. };
  579. static struct resource sdhi1_resources[] = {
  580. [0] = {
  581. .name = "SDHI1",
  582. .start = 0x04cf0000,
  583. .end = 0x04cf00ff,
  584. .flags = IORESOURCE_MEM,
  585. },
  586. [1] = {
  587. .start = evt2irq(0x4e0),
  588. .flags = IORESOURCE_IRQ,
  589. },
  590. };
  591. static struct platform_device sdhi1_device = {
  592. .name = "sh_mobile_sdhi",
  593. .num_resources = ARRAY_SIZE(sdhi1_resources),
  594. .resource = sdhi1_resources,
  595. .id = 1,
  596. .dev = {
  597. .platform_data = &sdhi1_info,
  598. },
  599. };
  600. #endif /* CONFIG_MMC_SH_MMCIF */
  601. #else
  602. /* MMC SPI */
  603. static void mmc_spi_setpower(struct device *dev, unsigned int maskval)
  604. {
  605. gpio_set_value(GPIO_PTB6, maskval ? 1 : 0);
  606. }
  607. static struct mmc_spi_platform_data mmc_spi_info = {
  608. .caps = MMC_CAP_NEEDS_POLL,
  609. .caps2 = MMC_CAP2_RO_ACTIVE_HIGH,
  610. .ocr_mask = MMC_VDD_32_33 | MMC_VDD_33_34, /* 3.3V only */
  611. .setpower = mmc_spi_setpower,
  612. .flags = MMC_SPI_USE_CD_GPIO | MMC_SPI_USE_RO_GPIO,
  613. .cd_gpio = GPIO_PTY7,
  614. .ro_gpio = GPIO_PTY6,
  615. };
  616. static struct spi_board_info spi_bus[] = {
  617. {
  618. .modalias = "mmc_spi",
  619. .platform_data = &mmc_spi_info,
  620. .max_speed_hz = 5000000,
  621. .mode = SPI_MODE_0,
  622. .controller_data = (void *) GPIO_PTM4,
  623. },
  624. };
  625. /* MSIOF0 */
  626. static struct sh_msiof_spi_info msiof0_data = {
  627. .num_chipselect = 1,
  628. };
  629. static struct resource msiof0_resources[] = {
  630. [0] = {
  631. .name = "MSIOF0",
  632. .start = 0xa4c40000,
  633. .end = 0xa4c40063,
  634. .flags = IORESOURCE_MEM,
  635. },
  636. [1] = {
  637. .start = evt2irq(0xc80),
  638. .flags = IORESOURCE_IRQ,
  639. },
  640. };
  641. static struct platform_device msiof0_device = {
  642. .name = "spi_sh_msiof",
  643. .id = 0, /* MSIOF0 */
  644. .dev = {
  645. .platform_data = &msiof0_data,
  646. },
  647. .num_resources = ARRAY_SIZE(msiof0_resources),
  648. .resource = msiof0_resources,
  649. };
  650. #endif
  651. /* I2C Video/Camera */
  652. static struct i2c_board_info i2c_camera[] = {
  653. {
  654. I2C_BOARD_INFO("tw9910", 0x45),
  655. },
  656. {
  657. /* 1st camera */
  658. I2C_BOARD_INFO("mt9t112", 0x3c),
  659. },
  660. {
  661. /* 2nd camera */
  662. I2C_BOARD_INFO("mt9t112", 0x3c),
  663. },
  664. };
  665. /* tw9910 */
  666. static int tw9910_power(struct device *dev, int mode)
  667. {
  668. int val = mode ? 0 : 1;
  669. gpio_set_value(GPIO_PTU2, val);
  670. if (mode)
  671. mdelay(100);
  672. return 0;
  673. }
  674. static struct tw9910_video_info tw9910_info = {
  675. .buswidth = SOCAM_DATAWIDTH_8,
  676. .mpout = TW9910_MPO_FIELD,
  677. };
  678. static struct soc_camera_link tw9910_link = {
  679. .i2c_adapter_id = 0,
  680. .bus_id = 1,
  681. .power = tw9910_power,
  682. .board_info = &i2c_camera[0],
  683. .priv = &tw9910_info,
  684. };
  685. /* mt9t112 */
  686. static int mt9t112_power1(struct device *dev, int mode)
  687. {
  688. gpio_set_value(GPIO_PTA3, mode);
  689. if (mode)
  690. mdelay(100);
  691. return 0;
  692. }
  693. static struct mt9t112_camera_info mt9t112_info1 = {
  694. .flags = MT9T112_FLAG_PCLK_RISING_EDGE | MT9T112_FLAG_DATAWIDTH_8,
  695. .divider = { 0x49, 0x6, 0, 6, 0, 9, 9, 6, 0 }, /* for 24MHz */
  696. };
  697. static struct soc_camera_link mt9t112_link1 = {
  698. .i2c_adapter_id = 0,
  699. .power = mt9t112_power1,
  700. .bus_id = 0,
  701. .board_info = &i2c_camera[1],
  702. .priv = &mt9t112_info1,
  703. };
  704. static int mt9t112_power2(struct device *dev, int mode)
  705. {
  706. gpio_set_value(GPIO_PTA4, mode);
  707. if (mode)
  708. mdelay(100);
  709. return 0;
  710. }
  711. static struct mt9t112_camera_info mt9t112_info2 = {
  712. .flags = MT9T112_FLAG_PCLK_RISING_EDGE | MT9T112_FLAG_DATAWIDTH_8,
  713. .divider = { 0x49, 0x6, 0, 6, 0, 9, 9, 6, 0 }, /* for 24MHz */
  714. };
  715. static struct soc_camera_link mt9t112_link2 = {
  716. .i2c_adapter_id = 1,
  717. .power = mt9t112_power2,
  718. .bus_id = 1,
  719. .board_info = &i2c_camera[2],
  720. .priv = &mt9t112_info2,
  721. };
  722. static struct platform_device camera_devices[] = {
  723. {
  724. .name = "soc-camera-pdrv",
  725. .id = 0,
  726. .dev = {
  727. .platform_data = &tw9910_link,
  728. },
  729. },
  730. {
  731. .name = "soc-camera-pdrv",
  732. .id = 1,
  733. .dev = {
  734. .platform_data = &mt9t112_link1,
  735. },
  736. },
  737. {
  738. .name = "soc-camera-pdrv",
  739. .id = 2,
  740. .dev = {
  741. .platform_data = &mt9t112_link2,
  742. },
  743. },
  744. };
  745. /* FSI */
  746. static struct resource fsi_resources[] = {
  747. [0] = {
  748. .name = "FSI",
  749. .start = 0xFE3C0000,
  750. .end = 0xFE3C021d,
  751. .flags = IORESOURCE_MEM,
  752. },
  753. [1] = {
  754. .start = evt2irq(0xf80),
  755. .flags = IORESOURCE_IRQ,
  756. },
  757. };
  758. static struct platform_device fsi_device = {
  759. .name = "sh_fsi",
  760. .id = 0,
  761. .num_resources = ARRAY_SIZE(fsi_resources),
  762. .resource = fsi_resources,
  763. };
  764. static struct asoc_simple_card_info fsi_da7210_info = {
  765. .name = "DA7210",
  766. .card = "FSIB-DA7210",
  767. .codec = "da7210.0-001a",
  768. .platform = "sh_fsi.0",
  769. .daifmt = SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_CBM_CFM,
  770. .cpu_dai = {
  771. .name = "fsib-dai",
  772. },
  773. .codec_dai = {
  774. .name = "da7210-hifi",
  775. },
  776. };
  777. static struct platform_device fsi_da7210_device = {
  778. .name = "asoc-simple-card",
  779. .dev = {
  780. .platform_data = &fsi_da7210_info,
  781. .coherent_dma_mask = DMA_BIT_MASK(32),
  782. .dma_mask = &fsi_da7210_device.dev.coherent_dma_mask,
  783. },
  784. };
  785. /* IrDA */
  786. static struct resource irda_resources[] = {
  787. [0] = {
  788. .name = "IrDA",
  789. .start = 0xA45D0000,
  790. .end = 0xA45D0049,
  791. .flags = IORESOURCE_MEM,
  792. },
  793. [1] = {
  794. .start = evt2irq(0x480),
  795. .flags = IORESOURCE_IRQ,
  796. },
  797. };
  798. static struct platform_device irda_device = {
  799. .name = "sh_sir",
  800. .num_resources = ARRAY_SIZE(irda_resources),
  801. .resource = irda_resources,
  802. };
  803. #include <media/ak881x.h>
  804. #include <media/sh_vou.h>
  805. static struct ak881x_pdata ak881x_pdata = {
  806. .flags = AK881X_IF_MODE_SLAVE,
  807. };
  808. static struct i2c_board_info ak8813 = {
  809. I2C_BOARD_INFO("ak8813", 0x20),
  810. .platform_data = &ak881x_pdata,
  811. };
  812. static struct sh_vou_pdata sh_vou_pdata = {
  813. .bus_fmt = SH_VOU_BUS_8BIT,
  814. .flags = SH_VOU_HSYNC_LOW | SH_VOU_VSYNC_LOW,
  815. .board_info = &ak8813,
  816. .i2c_adap = 0,
  817. };
  818. static struct resource sh_vou_resources[] = {
  819. [0] = {
  820. .start = 0xfe960000,
  821. .end = 0xfe962043,
  822. .flags = IORESOURCE_MEM,
  823. },
  824. [1] = {
  825. .start = evt2irq(0x8e0),
  826. .flags = IORESOURCE_IRQ,
  827. },
  828. };
  829. static struct platform_device vou_device = {
  830. .name = "sh-vou",
  831. .id = -1,
  832. .num_resources = ARRAY_SIZE(sh_vou_resources),
  833. .resource = sh_vou_resources,
  834. .dev = {
  835. .platform_data = &sh_vou_pdata,
  836. },
  837. };
  838. #if defined(CONFIG_MMC_SH_MMCIF) || defined(CONFIG_MMC_SH_MMCIF_MODULE)
  839. /* SH_MMCIF */
  840. static struct resource sh_mmcif_resources[] = {
  841. [0] = {
  842. .name = "SH_MMCIF",
  843. .start = 0xA4CA0000,
  844. .end = 0xA4CA00FF,
  845. .flags = IORESOURCE_MEM,
  846. },
  847. [1] = {
  848. /* MMC2I */
  849. .start = evt2irq(0x5a0),
  850. .flags = IORESOURCE_IRQ,
  851. },
  852. [2] = {
  853. /* MMC3I */
  854. .start = evt2irq(0x5c0),
  855. .flags = IORESOURCE_IRQ,
  856. },
  857. };
  858. static struct sh_mmcif_plat_data sh_mmcif_plat = {
  859. .sup_pclk = 0, /* SH7724: Max Pclk/2 */
  860. .caps = MMC_CAP_4_BIT_DATA |
  861. MMC_CAP_8_BIT_DATA |
  862. MMC_CAP_NEEDS_POLL,
  863. .ocr = MMC_VDD_32_33 | MMC_VDD_33_34,
  864. };
  865. static struct platform_device sh_mmcif_device = {
  866. .name = "sh_mmcif",
  867. .id = 0,
  868. .dev = {
  869. .platform_data = &sh_mmcif_plat,
  870. },
  871. .num_resources = ARRAY_SIZE(sh_mmcif_resources),
  872. .resource = sh_mmcif_resources,
  873. };
  874. #endif
  875. static struct platform_device *ecovec_devices[] __initdata = {
  876. &heartbeat_device,
  877. &nor_flash_device,
  878. &sh_eth_device,
  879. &usb0_host_device,
  880. &usb1_common_device,
  881. &usbhs_device,
  882. &lcdc_device,
  883. &gpio_backlight_device,
  884. &ceu0_device,
  885. &ceu1_device,
  886. &keysc_device,
  887. &cn12_power,
  888. #if defined(CONFIG_MMC_SDHI) || defined(CONFIG_MMC_SDHI_MODULE)
  889. &sdhi0_power,
  890. &sdhi0_device,
  891. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  892. &sdhi1_device,
  893. #endif
  894. #else
  895. &msiof0_device,
  896. #endif
  897. &camera_devices[0],
  898. &camera_devices[1],
  899. &camera_devices[2],
  900. &fsi_device,
  901. &fsi_da7210_device,
  902. &irda_device,
  903. &vou_device,
  904. #if defined(CONFIG_MMC_SH_MMCIF) || defined(CONFIG_MMC_SH_MMCIF_MODULE)
  905. &sh_mmcif_device,
  906. #endif
  907. };
  908. #ifdef CONFIG_I2C
  909. #define EEPROM_ADDR 0x50
  910. static u8 mac_read(struct i2c_adapter *a, u8 command)
  911. {
  912. struct i2c_msg msg[2];
  913. u8 buf;
  914. int ret;
  915. msg[0].addr = EEPROM_ADDR;
  916. msg[0].flags = 0;
  917. msg[0].len = 1;
  918. msg[0].buf = &command;
  919. msg[1].addr = EEPROM_ADDR;
  920. msg[1].flags = I2C_M_RD;
  921. msg[1].len = 1;
  922. msg[1].buf = &buf;
  923. ret = i2c_transfer(a, msg, 2);
  924. if (ret < 0) {
  925. printk(KERN_ERR "error %d\n", ret);
  926. buf = 0xff;
  927. }
  928. return buf;
  929. }
  930. static void __init sh_eth_init(struct sh_eth_plat_data *pd)
  931. {
  932. struct i2c_adapter *a = i2c_get_adapter(1);
  933. int i;
  934. if (!a) {
  935. pr_err("can not get I2C 1\n");
  936. return;
  937. }
  938. /* read MAC address from EEPROM */
  939. for (i = 0; i < sizeof(pd->mac_addr); i++) {
  940. pd->mac_addr[i] = mac_read(a, 0x10 + i);
  941. msleep(10);
  942. }
  943. i2c_put_adapter(a);
  944. }
  945. #else
  946. static void __init sh_eth_init(struct sh_eth_plat_data *pd)
  947. {
  948. pr_err("unable to read sh_eth MAC address\n");
  949. }
  950. #endif
  951. #define PORT_HIZA 0xA4050158
  952. #define IODRIVEA 0xA405018A
  953. extern char ecovec24_sdram_enter_start;
  954. extern char ecovec24_sdram_enter_end;
  955. extern char ecovec24_sdram_leave_start;
  956. extern char ecovec24_sdram_leave_end;
  957. static int __init arch_setup(void)
  958. {
  959. struct clk *clk;
  960. bool cn12_enabled = false;
  961. /* register board specific self-refresh code */
  962. sh_mobile_register_self_refresh(SUSP_SH_STANDBY | SUSP_SH_SF |
  963. SUSP_SH_RSTANDBY,
  964. &ecovec24_sdram_enter_start,
  965. &ecovec24_sdram_enter_end,
  966. &ecovec24_sdram_leave_start,
  967. &ecovec24_sdram_leave_end);
  968. /* enable STATUS0, STATUS2 and PDSTATUS */
  969. gpio_request(GPIO_FN_STATUS0, NULL);
  970. gpio_request(GPIO_FN_STATUS2, NULL);
  971. gpio_request(GPIO_FN_PDSTATUS, NULL);
  972. /* enable SCIFA0 */
  973. gpio_request(GPIO_FN_SCIF0_TXD, NULL);
  974. gpio_request(GPIO_FN_SCIF0_RXD, NULL);
  975. /* enable debug LED */
  976. gpio_request(GPIO_PTG0, NULL);
  977. gpio_request(GPIO_PTG1, NULL);
  978. gpio_request(GPIO_PTG2, NULL);
  979. gpio_request(GPIO_PTG3, NULL);
  980. gpio_direction_output(GPIO_PTG0, 0);
  981. gpio_direction_output(GPIO_PTG1, 0);
  982. gpio_direction_output(GPIO_PTG2, 0);
  983. gpio_direction_output(GPIO_PTG3, 0);
  984. __raw_writew((__raw_readw(PORT_HIZA) & ~(0x1 << 1)) , PORT_HIZA);
  985. /* enable SH-Eth */
  986. gpio_request(GPIO_PTA1, NULL);
  987. gpio_direction_output(GPIO_PTA1, 1);
  988. mdelay(20);
  989. gpio_request(GPIO_FN_RMII_RXD0, NULL);
  990. gpio_request(GPIO_FN_RMII_RXD1, NULL);
  991. gpio_request(GPIO_FN_RMII_TXD0, NULL);
  992. gpio_request(GPIO_FN_RMII_TXD1, NULL);
  993. gpio_request(GPIO_FN_RMII_REF_CLK, NULL);
  994. gpio_request(GPIO_FN_RMII_TX_EN, NULL);
  995. gpio_request(GPIO_FN_RMII_RX_ER, NULL);
  996. gpio_request(GPIO_FN_RMII_CRS_DV, NULL);
  997. gpio_request(GPIO_FN_MDIO, NULL);
  998. gpio_request(GPIO_FN_MDC, NULL);
  999. gpio_request(GPIO_FN_LNKSTA, NULL);
  1000. /* enable USB */
  1001. __raw_writew(0x0000, 0xA4D80000);
  1002. __raw_writew(0x0000, 0xA4D90000);
  1003. gpio_request(GPIO_PTB3, NULL);
  1004. gpio_request(GPIO_PTB4, NULL);
  1005. gpio_request(GPIO_PTB5, NULL);
  1006. gpio_direction_input(GPIO_PTB3);
  1007. gpio_direction_output(GPIO_PTB4, 0);
  1008. gpio_direction_output(GPIO_PTB5, 0);
  1009. __raw_writew(0x0600, 0xa40501d4);
  1010. __raw_writew(0x0600, 0xa4050192);
  1011. if (gpio_get_value(GPIO_PTB3)) {
  1012. printk(KERN_INFO "USB1 function is selected\n");
  1013. usb1_common_device.name = "r8a66597_udc";
  1014. } else {
  1015. printk(KERN_INFO "USB1 host is selected\n");
  1016. usb1_common_device.name = "r8a66597_hcd";
  1017. }
  1018. /* enable LCDC */
  1019. gpio_request(GPIO_FN_LCDD23, NULL);
  1020. gpio_request(GPIO_FN_LCDD22, NULL);
  1021. gpio_request(GPIO_FN_LCDD21, NULL);
  1022. gpio_request(GPIO_FN_LCDD20, NULL);
  1023. gpio_request(GPIO_FN_LCDD19, NULL);
  1024. gpio_request(GPIO_FN_LCDD18, NULL);
  1025. gpio_request(GPIO_FN_LCDD17, NULL);
  1026. gpio_request(GPIO_FN_LCDD16, NULL);
  1027. gpio_request(GPIO_FN_LCDD15, NULL);
  1028. gpio_request(GPIO_FN_LCDD14, NULL);
  1029. gpio_request(GPIO_FN_LCDD13, NULL);
  1030. gpio_request(GPIO_FN_LCDD12, NULL);
  1031. gpio_request(GPIO_FN_LCDD11, NULL);
  1032. gpio_request(GPIO_FN_LCDD10, NULL);
  1033. gpio_request(GPIO_FN_LCDD9, NULL);
  1034. gpio_request(GPIO_FN_LCDD8, NULL);
  1035. gpio_request(GPIO_FN_LCDD7, NULL);
  1036. gpio_request(GPIO_FN_LCDD6, NULL);
  1037. gpio_request(GPIO_FN_LCDD5, NULL);
  1038. gpio_request(GPIO_FN_LCDD4, NULL);
  1039. gpio_request(GPIO_FN_LCDD3, NULL);
  1040. gpio_request(GPIO_FN_LCDD2, NULL);
  1041. gpio_request(GPIO_FN_LCDD1, NULL);
  1042. gpio_request(GPIO_FN_LCDD0, NULL);
  1043. gpio_request(GPIO_FN_LCDDISP, NULL);
  1044. gpio_request(GPIO_FN_LCDHSYN, NULL);
  1045. gpio_request(GPIO_FN_LCDDCK, NULL);
  1046. gpio_request(GPIO_FN_LCDVSYN, NULL);
  1047. gpio_request(GPIO_FN_LCDDON, NULL);
  1048. gpio_request(GPIO_FN_LCDLCLK, NULL);
  1049. __raw_writew((__raw_readw(PORT_HIZA) & ~0x0001), PORT_HIZA);
  1050. gpio_request(GPIO_PTE6, NULL);
  1051. gpio_request(GPIO_PTU1, NULL);
  1052. gpio_request(GPIO_PTA2, NULL);
  1053. gpio_direction_input(GPIO_PTE6);
  1054. gpio_direction_output(GPIO_PTU1, 0);
  1055. gpio_direction_output(GPIO_PTA2, 0);
  1056. /* I/O buffer drive ability is high */
  1057. __raw_writew((__raw_readw(IODRIVEA) & ~0x00c0) | 0x0080 , IODRIVEA);
  1058. if (gpio_get_value(GPIO_PTE6)) {
  1059. /* DVI */
  1060. lcdc_info.clock_source = LCDC_CLK_EXTERNAL;
  1061. lcdc_info.ch[0].clock_divider = 1;
  1062. lcdc_info.ch[0].lcd_modes = ecovec_dvi_modes;
  1063. lcdc_info.ch[0].num_modes = ARRAY_SIZE(ecovec_dvi_modes);
  1064. /* No backlight */
  1065. gpio_backlight_data.fbdev = NULL;
  1066. gpio_set_value(GPIO_PTA2, 1);
  1067. gpio_set_value(GPIO_PTU1, 1);
  1068. } else {
  1069. /* Panel */
  1070. lcdc_info.clock_source = LCDC_CLK_PERIPHERAL;
  1071. lcdc_info.ch[0].clock_divider = 2;
  1072. lcdc_info.ch[0].lcd_modes = ecovec_lcd_modes;
  1073. lcdc_info.ch[0].num_modes = ARRAY_SIZE(ecovec_lcd_modes);
  1074. /* FIXME
  1075. *
  1076. * LCDDON control is needed for Panel,
  1077. * but current sh_mobile_lcdc driver doesn't control it.
  1078. * It is temporary correspondence
  1079. */
  1080. gpio_request(GPIO_PTF4, NULL);
  1081. gpio_direction_output(GPIO_PTF4, 1);
  1082. /* enable TouchScreen */
  1083. i2c_register_board_info(0, &ts_i2c_clients, 1);
  1084. irq_set_irq_type(IRQ0, IRQ_TYPE_LEVEL_LOW);
  1085. }
  1086. /* enable CEU0 */
  1087. gpio_request(GPIO_FN_VIO0_D15, NULL);
  1088. gpio_request(GPIO_FN_VIO0_D14, NULL);
  1089. gpio_request(GPIO_FN_VIO0_D13, NULL);
  1090. gpio_request(GPIO_FN_VIO0_D12, NULL);
  1091. gpio_request(GPIO_FN_VIO0_D11, NULL);
  1092. gpio_request(GPIO_FN_VIO0_D10, NULL);
  1093. gpio_request(GPIO_FN_VIO0_D9, NULL);
  1094. gpio_request(GPIO_FN_VIO0_D8, NULL);
  1095. gpio_request(GPIO_FN_VIO0_D7, NULL);
  1096. gpio_request(GPIO_FN_VIO0_D6, NULL);
  1097. gpio_request(GPIO_FN_VIO0_D5, NULL);
  1098. gpio_request(GPIO_FN_VIO0_D4, NULL);
  1099. gpio_request(GPIO_FN_VIO0_D3, NULL);
  1100. gpio_request(GPIO_FN_VIO0_D2, NULL);
  1101. gpio_request(GPIO_FN_VIO0_D1, NULL);
  1102. gpio_request(GPIO_FN_VIO0_D0, NULL);
  1103. gpio_request(GPIO_FN_VIO0_VD, NULL);
  1104. gpio_request(GPIO_FN_VIO0_CLK, NULL);
  1105. gpio_request(GPIO_FN_VIO0_FLD, NULL);
  1106. gpio_request(GPIO_FN_VIO0_HD, NULL);
  1107. platform_resource_setup_memory(&ceu0_device, "ceu0", 4 << 20);
  1108. /* enable CEU1 */
  1109. gpio_request(GPIO_FN_VIO1_D7, NULL);
  1110. gpio_request(GPIO_FN_VIO1_D6, NULL);
  1111. gpio_request(GPIO_FN_VIO1_D5, NULL);
  1112. gpio_request(GPIO_FN_VIO1_D4, NULL);
  1113. gpio_request(GPIO_FN_VIO1_D3, NULL);
  1114. gpio_request(GPIO_FN_VIO1_D2, NULL);
  1115. gpio_request(GPIO_FN_VIO1_D1, NULL);
  1116. gpio_request(GPIO_FN_VIO1_D0, NULL);
  1117. gpio_request(GPIO_FN_VIO1_FLD, NULL);
  1118. gpio_request(GPIO_FN_VIO1_HD, NULL);
  1119. gpio_request(GPIO_FN_VIO1_VD, NULL);
  1120. gpio_request(GPIO_FN_VIO1_CLK, NULL);
  1121. platform_resource_setup_memory(&ceu1_device, "ceu1", 4 << 20);
  1122. /* enable KEYSC */
  1123. gpio_request(GPIO_FN_KEYOUT5_IN5, NULL);
  1124. gpio_request(GPIO_FN_KEYOUT4_IN6, NULL);
  1125. gpio_request(GPIO_FN_KEYOUT3, NULL);
  1126. gpio_request(GPIO_FN_KEYOUT2, NULL);
  1127. gpio_request(GPIO_FN_KEYOUT1, NULL);
  1128. gpio_request(GPIO_FN_KEYOUT0, NULL);
  1129. gpio_request(GPIO_FN_KEYIN0, NULL);
  1130. /* enable user debug switch */
  1131. gpio_request(GPIO_PTR0, NULL);
  1132. gpio_request(GPIO_PTR4, NULL);
  1133. gpio_request(GPIO_PTR5, NULL);
  1134. gpio_request(GPIO_PTR6, NULL);
  1135. gpio_direction_input(GPIO_PTR0);
  1136. gpio_direction_input(GPIO_PTR4);
  1137. gpio_direction_input(GPIO_PTR5);
  1138. gpio_direction_input(GPIO_PTR6);
  1139. /* SD-card slot CN11 */
  1140. #if defined(CONFIG_MMC_SDHI) || defined(CONFIG_MMC_SDHI_MODULE)
  1141. /* enable SDHI0 on CN11 (needs DS2.4 set to ON) */
  1142. gpio_request(GPIO_FN_SDHI0WP, NULL);
  1143. gpio_request(GPIO_FN_SDHI0CMD, NULL);
  1144. gpio_request(GPIO_FN_SDHI0CLK, NULL);
  1145. gpio_request(GPIO_FN_SDHI0D3, NULL);
  1146. gpio_request(GPIO_FN_SDHI0D2, NULL);
  1147. gpio_request(GPIO_FN_SDHI0D1, NULL);
  1148. gpio_request(GPIO_FN_SDHI0D0, NULL);
  1149. #else
  1150. /* enable MSIOF0 on CN11 (needs DS2.4 set to OFF) */
  1151. gpio_request(GPIO_FN_MSIOF0_TXD, NULL);
  1152. gpio_request(GPIO_FN_MSIOF0_RXD, NULL);
  1153. gpio_request(GPIO_FN_MSIOF0_TSCK, NULL);
  1154. gpio_request(GPIO_PTM4, NULL); /* software CS control of TSYNC pin */
  1155. gpio_direction_output(GPIO_PTM4, 1); /* active low CS */
  1156. gpio_request(GPIO_PTB6, NULL); /* 3.3V power control */
  1157. gpio_direction_output(GPIO_PTB6, 0); /* disable power by default */
  1158. spi_register_board_info(spi_bus, ARRAY_SIZE(spi_bus));
  1159. #endif
  1160. /* MMC/SD-card slot CN12 */
  1161. #if defined(CONFIG_MMC_SH_MMCIF) || defined(CONFIG_MMC_SH_MMCIF_MODULE)
  1162. /* enable MMCIF (needs DS2.6,7 set to OFF,ON) */
  1163. gpio_request(GPIO_FN_MMC_D7, NULL);
  1164. gpio_request(GPIO_FN_MMC_D6, NULL);
  1165. gpio_request(GPIO_FN_MMC_D5, NULL);
  1166. gpio_request(GPIO_FN_MMC_D4, NULL);
  1167. gpio_request(GPIO_FN_MMC_D3, NULL);
  1168. gpio_request(GPIO_FN_MMC_D2, NULL);
  1169. gpio_request(GPIO_FN_MMC_D1, NULL);
  1170. gpio_request(GPIO_FN_MMC_D0, NULL);
  1171. gpio_request(GPIO_FN_MMC_CLK, NULL);
  1172. gpio_request(GPIO_FN_MMC_CMD, NULL);
  1173. cn12_enabled = true;
  1174. #elif defined(CONFIG_MMC_SDHI) || defined(CONFIG_MMC_SDHI_MODULE)
  1175. /* enable SDHI1 on CN12 (needs DS2.6,7 set to ON,OFF) */
  1176. gpio_request(GPIO_FN_SDHI1WP, NULL);
  1177. gpio_request(GPIO_FN_SDHI1CMD, NULL);
  1178. gpio_request(GPIO_FN_SDHI1CLK, NULL);
  1179. gpio_request(GPIO_FN_SDHI1D3, NULL);
  1180. gpio_request(GPIO_FN_SDHI1D2, NULL);
  1181. gpio_request(GPIO_FN_SDHI1D1, NULL);
  1182. gpio_request(GPIO_FN_SDHI1D0, NULL);
  1183. cn12_enabled = true;
  1184. #endif
  1185. if (cn12_enabled)
  1186. /* I/O buffer drive ability is high for CN12 */
  1187. __raw_writew((__raw_readw(IODRIVEA) & ~0x3000) | 0x2000,
  1188. IODRIVEA);
  1189. /* enable Video */
  1190. gpio_request(GPIO_PTU2, NULL);
  1191. gpio_direction_output(GPIO_PTU2, 1);
  1192. /* enable Camera */
  1193. gpio_request(GPIO_PTA3, NULL);
  1194. gpio_request(GPIO_PTA4, NULL);
  1195. gpio_direction_output(GPIO_PTA3, 0);
  1196. gpio_direction_output(GPIO_PTA4, 0);
  1197. /* enable FSI */
  1198. gpio_request(GPIO_FN_FSIMCKB, NULL);
  1199. gpio_request(GPIO_FN_FSIIBSD, NULL);
  1200. gpio_request(GPIO_FN_FSIOBSD, NULL);
  1201. gpio_request(GPIO_FN_FSIIBBCK, NULL);
  1202. gpio_request(GPIO_FN_FSIIBLRCK, NULL);
  1203. gpio_request(GPIO_FN_FSIOBBCK, NULL);
  1204. gpio_request(GPIO_FN_FSIOBLRCK, NULL);
  1205. gpio_request(GPIO_FN_CLKAUDIOBO, NULL);
  1206. /* set SPU2 clock to 83.4 MHz */
  1207. clk = clk_get(NULL, "spu_clk");
  1208. if (!IS_ERR(clk)) {
  1209. clk_set_rate(clk, clk_round_rate(clk, 83333333));
  1210. clk_put(clk);
  1211. }
  1212. /* change parent of FSI B */
  1213. clk = clk_get(NULL, "fsib_clk");
  1214. if (!IS_ERR(clk)) {
  1215. /* 48kHz dummy clock was used to make sure 1/1 divide */
  1216. clk_set_rate(&sh7724_fsimckb_clk, 48000);
  1217. clk_set_parent(clk, &sh7724_fsimckb_clk);
  1218. clk_set_rate(clk, 48000);
  1219. clk_put(clk);
  1220. }
  1221. gpio_request(GPIO_PTU0, NULL);
  1222. gpio_direction_output(GPIO_PTU0, 0);
  1223. mdelay(20);
  1224. /* enable motion sensor */
  1225. gpio_request(GPIO_FN_INTC_IRQ1, NULL);
  1226. gpio_direction_input(GPIO_FN_INTC_IRQ1);
  1227. /* set VPU clock to 166 MHz */
  1228. clk = clk_get(NULL, "vpu_clk");
  1229. if (!IS_ERR(clk)) {
  1230. clk_set_rate(clk, clk_round_rate(clk, 166000000));
  1231. clk_put(clk);
  1232. }
  1233. /* enable IrDA */
  1234. gpio_request(GPIO_FN_IRDA_OUT, NULL);
  1235. gpio_request(GPIO_FN_IRDA_IN, NULL);
  1236. gpio_request(GPIO_PTU5, NULL);
  1237. gpio_direction_output(GPIO_PTU5, 0);
  1238. /* enable I2C device */
  1239. i2c_register_board_info(0, i2c0_devices,
  1240. ARRAY_SIZE(i2c0_devices));
  1241. i2c_register_board_info(1, i2c1_devices,
  1242. ARRAY_SIZE(i2c1_devices));
  1243. #if defined(CONFIG_VIDEO_SH_VOU) || defined(CONFIG_VIDEO_SH_VOU_MODULE)
  1244. /* VOU */
  1245. gpio_request(GPIO_FN_DV_D15, NULL);
  1246. gpio_request(GPIO_FN_DV_D14, NULL);
  1247. gpio_request(GPIO_FN_DV_D13, NULL);
  1248. gpio_request(GPIO_FN_DV_D12, NULL);
  1249. gpio_request(GPIO_FN_DV_D11, NULL);
  1250. gpio_request(GPIO_FN_DV_D10, NULL);
  1251. gpio_request(GPIO_FN_DV_D9, NULL);
  1252. gpio_request(GPIO_FN_DV_D8, NULL);
  1253. gpio_request(GPIO_FN_DV_CLKI, NULL);
  1254. gpio_request(GPIO_FN_DV_CLK, NULL);
  1255. gpio_request(GPIO_FN_DV_VSYNC, NULL);
  1256. gpio_request(GPIO_FN_DV_HSYNC, NULL);
  1257. /* AK8813 power / reset sequence */
  1258. gpio_request(GPIO_PTG4, NULL);
  1259. gpio_request(GPIO_PTU3, NULL);
  1260. /* Reset */
  1261. gpio_direction_output(GPIO_PTG4, 0);
  1262. /* Power down */
  1263. gpio_direction_output(GPIO_PTU3, 1);
  1264. udelay(10);
  1265. /* Power up, reset */
  1266. gpio_set_value(GPIO_PTU3, 0);
  1267. udelay(10);
  1268. /* Remove reset */
  1269. gpio_set_value(GPIO_PTG4, 1);
  1270. #endif
  1271. return platform_add_devices(ecovec_devices,
  1272. ARRAY_SIZE(ecovec_devices));
  1273. }
  1274. arch_initcall(arch_setup);
  1275. static int __init devices_setup(void)
  1276. {
  1277. sh_eth_init(&sh_eth_plat);
  1278. return 0;
  1279. }
  1280. device_initcall(devices_setup);
  1281. static struct sh_machine_vector mv_ecovec __initmv = {
  1282. .mv_name = "R0P7724 (EcoVec)",
  1283. };