setup.c 15 KB

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  1. /*
  2. * KFR2R09 board support code
  3. *
  4. * Copyright (C) 2009 Magnus Damm
  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/platform_device.h>
  12. #include <linux/interrupt.h>
  13. #include <linux/mfd/sh_mobile_sdhi.h>
  14. #include <linux/mfd/tmio.h>
  15. #include <linux/mtd/physmap.h>
  16. #include <linux/mtd/onenand.h>
  17. #include <linux/delay.h>
  18. #include <linux/clk.h>
  19. #include <linux/gpio.h>
  20. #include <linux/input.h>
  21. #include <linux/input/sh_keysc.h>
  22. #include <linux/i2c.h>
  23. #include <linux/usb/r8a66597.h>
  24. #include <media/rj54n1cb0c.h>
  25. #include <media/soc_camera.h>
  26. #include <media/sh_mobile_ceu.h>
  27. #include <video/sh_mobile_lcdc.h>
  28. #include <asm/suspend.h>
  29. #include <asm/clock.h>
  30. #include <asm/machvec.h>
  31. #include <asm/io.h>
  32. #include <cpu/sh7724.h>
  33. #include <mach/kfr2r09.h>
  34. static struct mtd_partition kfr2r09_nor_flash_partitions[] =
  35. {
  36. {
  37. .name = "boot",
  38. .offset = 0,
  39. .size = (4 * 1024 * 1024),
  40. .mask_flags = MTD_WRITEABLE, /* Read-only */
  41. },
  42. {
  43. .name = "other",
  44. .offset = MTDPART_OFS_APPEND,
  45. .size = MTDPART_SIZ_FULL,
  46. },
  47. };
  48. static struct physmap_flash_data kfr2r09_nor_flash_data = {
  49. .width = 2,
  50. .parts = kfr2r09_nor_flash_partitions,
  51. .nr_parts = ARRAY_SIZE(kfr2r09_nor_flash_partitions),
  52. };
  53. static struct resource kfr2r09_nor_flash_resources[] = {
  54. [0] = {
  55. .name = "NOR Flash",
  56. .start = 0x00000000,
  57. .end = 0x03ffffff,
  58. .flags = IORESOURCE_MEM,
  59. }
  60. };
  61. static struct platform_device kfr2r09_nor_flash_device = {
  62. .name = "physmap-flash",
  63. .resource = kfr2r09_nor_flash_resources,
  64. .num_resources = ARRAY_SIZE(kfr2r09_nor_flash_resources),
  65. .dev = {
  66. .platform_data = &kfr2r09_nor_flash_data,
  67. },
  68. };
  69. static struct resource kfr2r09_nand_flash_resources[] = {
  70. [0] = {
  71. .name = "NAND Flash",
  72. .start = 0x10000000,
  73. .end = 0x1001ffff,
  74. .flags = IORESOURCE_MEM,
  75. }
  76. };
  77. static struct platform_device kfr2r09_nand_flash_device = {
  78. .name = "onenand-flash",
  79. .resource = kfr2r09_nand_flash_resources,
  80. .num_resources = ARRAY_SIZE(kfr2r09_nand_flash_resources),
  81. };
  82. static struct sh_keysc_info kfr2r09_sh_keysc_info = {
  83. .mode = SH_KEYSC_MODE_1, /* KEYOUT0->4, KEYIN0->4 */
  84. .scan_timing = 3,
  85. .delay = 10,
  86. .keycodes = {
  87. KEY_PHONE, KEY_CLEAR, KEY_MAIL, KEY_WWW, KEY_ENTER,
  88. KEY_1, KEY_2, KEY_3, 0, KEY_UP,
  89. KEY_4, KEY_5, KEY_6, 0, KEY_LEFT,
  90. KEY_7, KEY_8, KEY_9, KEY_PROG1, KEY_RIGHT,
  91. KEY_S, KEY_0, KEY_P, KEY_PROG2, KEY_DOWN,
  92. 0, 0, 0, 0, 0
  93. },
  94. };
  95. static struct resource kfr2r09_sh_keysc_resources[] = {
  96. [0] = {
  97. .name = "KEYSC",
  98. .start = 0x044b0000,
  99. .end = 0x044b000f,
  100. .flags = IORESOURCE_MEM,
  101. },
  102. [1] = {
  103. .start = 79,
  104. .flags = IORESOURCE_IRQ,
  105. },
  106. };
  107. static struct platform_device kfr2r09_sh_keysc_device = {
  108. .name = "sh_keysc",
  109. .id = 0, /* "keysc0" clock */
  110. .num_resources = ARRAY_SIZE(kfr2r09_sh_keysc_resources),
  111. .resource = kfr2r09_sh_keysc_resources,
  112. .dev = {
  113. .platform_data = &kfr2r09_sh_keysc_info,
  114. },
  115. .archdata = {
  116. .hwblk_id = HWBLK_KEYSC,
  117. },
  118. };
  119. static struct sh_mobile_lcdc_info kfr2r09_sh_lcdc_info = {
  120. .clock_source = LCDC_CLK_BUS,
  121. .ch[0] = {
  122. .chan = LCDC_CHAN_MAINLCD,
  123. .bpp = 16,
  124. .interface_type = SYS18,
  125. .clock_divider = 6,
  126. .flags = LCDC_FLAGS_DWPOL,
  127. .lcd_cfg = {
  128. .name = "TX07D34VM0AAA",
  129. .xres = 240,
  130. .yres = 400,
  131. .left_margin = 0,
  132. .right_margin = 16,
  133. .hsync_len = 8,
  134. .upper_margin = 0,
  135. .lower_margin = 1,
  136. .vsync_len = 1,
  137. .sync = FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,
  138. },
  139. .lcd_size_cfg = {
  140. .width = 35,
  141. .height = 58,
  142. },
  143. .board_cfg = {
  144. .setup_sys = kfr2r09_lcd_setup,
  145. .start_transfer = kfr2r09_lcd_start,
  146. .display_on = kfr2r09_lcd_on,
  147. .display_off = kfr2r09_lcd_off,
  148. },
  149. .sys_bus_cfg = {
  150. .ldmt2r = 0x07010904,
  151. .ldmt3r = 0x14012914,
  152. /* set 1s delay to encourage fsync() */
  153. .deferred_io_msec = 1000,
  154. },
  155. }
  156. };
  157. static struct resource kfr2r09_sh_lcdc_resources[] = {
  158. [0] = {
  159. .name = "LCDC",
  160. .start = 0xfe940000, /* P4-only space */
  161. .end = 0xfe942fff,
  162. .flags = IORESOURCE_MEM,
  163. },
  164. [1] = {
  165. .start = 106,
  166. .flags = IORESOURCE_IRQ,
  167. },
  168. };
  169. static struct platform_device kfr2r09_sh_lcdc_device = {
  170. .name = "sh_mobile_lcdc_fb",
  171. .num_resources = ARRAY_SIZE(kfr2r09_sh_lcdc_resources),
  172. .resource = kfr2r09_sh_lcdc_resources,
  173. .dev = {
  174. .platform_data = &kfr2r09_sh_lcdc_info,
  175. },
  176. .archdata = {
  177. .hwblk_id = HWBLK_LCDC,
  178. },
  179. };
  180. static struct r8a66597_platdata kfr2r09_usb0_gadget_data = {
  181. .on_chip = 1,
  182. };
  183. static struct resource kfr2r09_usb0_gadget_resources[] = {
  184. [0] = {
  185. .start = 0x04d80000,
  186. .end = 0x04d80123,
  187. .flags = IORESOURCE_MEM,
  188. },
  189. [1] = {
  190. .start = 65,
  191. .end = 65,
  192. .flags = IORESOURCE_IRQ | IRQF_TRIGGER_LOW,
  193. },
  194. };
  195. static struct platform_device kfr2r09_usb0_gadget_device = {
  196. .name = "r8a66597_udc",
  197. .id = 0,
  198. .dev = {
  199. .dma_mask = NULL, /* not use dma */
  200. .coherent_dma_mask = 0xffffffff,
  201. .platform_data = &kfr2r09_usb0_gadget_data,
  202. },
  203. .num_resources = ARRAY_SIZE(kfr2r09_usb0_gadget_resources),
  204. .resource = kfr2r09_usb0_gadget_resources,
  205. };
  206. static struct sh_mobile_ceu_info sh_mobile_ceu_info = {
  207. .flags = SH_CEU_FLAG_USE_8BIT_BUS,
  208. };
  209. static struct resource kfr2r09_ceu_resources[] = {
  210. [0] = {
  211. .name = "CEU",
  212. .start = 0xfe910000,
  213. .end = 0xfe91009f,
  214. .flags = IORESOURCE_MEM,
  215. },
  216. [1] = {
  217. .start = 52,
  218. .end = 52,
  219. .flags = IORESOURCE_IRQ,
  220. },
  221. [2] = {
  222. /* place holder for contiguous memory */
  223. },
  224. };
  225. static struct platform_device kfr2r09_ceu_device = {
  226. .name = "sh_mobile_ceu",
  227. .id = 0, /* "ceu0" clock */
  228. .num_resources = ARRAY_SIZE(kfr2r09_ceu_resources),
  229. .resource = kfr2r09_ceu_resources,
  230. .dev = {
  231. .platform_data = &sh_mobile_ceu_info,
  232. },
  233. .archdata = {
  234. .hwblk_id = HWBLK_CEU0,
  235. },
  236. };
  237. static struct i2c_board_info kfr2r09_i2c_camera = {
  238. I2C_BOARD_INFO("rj54n1cb0c", 0x50),
  239. };
  240. static struct clk *camera_clk;
  241. /* set VIO_CKO clock to 25MHz */
  242. #define CEU_MCLK_FREQ 25000000
  243. #define DRVCRB 0xA405018C
  244. static int camera_power(struct device *dev, int mode)
  245. {
  246. int ret;
  247. if (mode) {
  248. long rate;
  249. camera_clk = clk_get(NULL, "video_clk");
  250. if (IS_ERR(camera_clk))
  251. return PTR_ERR(camera_clk);
  252. rate = clk_round_rate(camera_clk, CEU_MCLK_FREQ);
  253. ret = clk_set_rate(camera_clk, rate);
  254. if (ret < 0)
  255. goto eclkrate;
  256. /* set DRVCRB
  257. *
  258. * use 1.8 V for VccQ_VIO
  259. * use 2.85V for VccQ_SR
  260. */
  261. __raw_writew((__raw_readw(DRVCRB) & ~0x0003) | 0x0001, DRVCRB);
  262. /* reset clear */
  263. ret = gpio_request(GPIO_PTB4, NULL);
  264. if (ret < 0)
  265. goto eptb4;
  266. ret = gpio_request(GPIO_PTB7, NULL);
  267. if (ret < 0)
  268. goto eptb7;
  269. ret = gpio_direction_output(GPIO_PTB4, 1);
  270. if (!ret)
  271. ret = gpio_direction_output(GPIO_PTB7, 1);
  272. if (ret < 0)
  273. goto egpioout;
  274. msleep(1);
  275. ret = clk_enable(camera_clk); /* start VIO_CKO */
  276. if (ret < 0)
  277. goto eclkon;
  278. return 0;
  279. }
  280. ret = 0;
  281. clk_disable(camera_clk);
  282. eclkon:
  283. gpio_set_value(GPIO_PTB7, 0);
  284. egpioout:
  285. gpio_set_value(GPIO_PTB4, 0);
  286. gpio_free(GPIO_PTB7);
  287. eptb7:
  288. gpio_free(GPIO_PTB4);
  289. eptb4:
  290. eclkrate:
  291. clk_put(camera_clk);
  292. return ret;
  293. }
  294. static struct rj54n1_pdata rj54n1_priv = {
  295. .mclk_freq = CEU_MCLK_FREQ,
  296. .ioctl_high = false,
  297. };
  298. static struct soc_camera_link rj54n1_link = {
  299. .power = camera_power,
  300. .board_info = &kfr2r09_i2c_camera,
  301. .i2c_adapter_id = 1,
  302. .module_name = "rj54n1cb0c",
  303. .priv = &rj54n1_priv,
  304. };
  305. static struct platform_device kfr2r09_camera = {
  306. .name = "soc-camera-pdrv",
  307. .id = 0,
  308. .dev = {
  309. .platform_data = &rj54n1_link,
  310. },
  311. };
  312. static struct resource kfr2r09_sh_sdhi0_resources[] = {
  313. [0] = {
  314. .name = "SDHI0",
  315. .start = 0x04ce0000,
  316. .end = 0x04ce01ff,
  317. .flags = IORESOURCE_MEM,
  318. },
  319. [1] = {
  320. .start = 100,
  321. .flags = IORESOURCE_IRQ,
  322. },
  323. };
  324. static struct sh_mobile_sdhi_info sh7724_sdhi0_data = {
  325. .dma_slave_tx = SHDMA_SLAVE_SDHI0_TX,
  326. .dma_slave_rx = SHDMA_SLAVE_SDHI0_RX,
  327. .tmio_flags = TMIO_MMC_WRPROTECT_DISABLE,
  328. };
  329. static struct platform_device kfr2r09_sh_sdhi0_device = {
  330. .name = "sh_mobile_sdhi",
  331. .num_resources = ARRAY_SIZE(kfr2r09_sh_sdhi0_resources),
  332. .resource = kfr2r09_sh_sdhi0_resources,
  333. .dev = {
  334. .platform_data = &sh7724_sdhi0_data,
  335. },
  336. .archdata = {
  337. .hwblk_id = HWBLK_SDHI0,
  338. },
  339. };
  340. static struct platform_device *kfr2r09_devices[] __initdata = {
  341. &kfr2r09_nor_flash_device,
  342. &kfr2r09_nand_flash_device,
  343. &kfr2r09_sh_keysc_device,
  344. &kfr2r09_sh_lcdc_device,
  345. &kfr2r09_ceu_device,
  346. &kfr2r09_camera,
  347. &kfr2r09_sh_sdhi0_device,
  348. };
  349. #define BSC_CS0BCR 0xfec10004
  350. #define BSC_CS0WCR 0xfec10024
  351. #define BSC_CS4BCR 0xfec10010
  352. #define BSC_CS4WCR 0xfec10030
  353. #define PORT_MSELCRB 0xa4050182
  354. #ifdef CONFIG_I2C
  355. static int kfr2r09_usb0_gadget_i2c_setup(void)
  356. {
  357. struct i2c_adapter *a;
  358. struct i2c_msg msg;
  359. unsigned char buf[2];
  360. int ret;
  361. a = i2c_get_adapter(0);
  362. if (!a)
  363. return -ENODEV;
  364. /* set bit 1 (the second bit) of chip at 0x09, register 0x13 */
  365. buf[0] = 0x13;
  366. msg.addr = 0x09;
  367. msg.buf = buf;
  368. msg.len = 1;
  369. msg.flags = 0;
  370. ret = i2c_transfer(a, &msg, 1);
  371. if (ret != 1)
  372. return -ENODEV;
  373. buf[0] = 0;
  374. msg.addr = 0x09;
  375. msg.buf = buf;
  376. msg.len = 1;
  377. msg.flags = I2C_M_RD;
  378. ret = i2c_transfer(a, &msg, 1);
  379. if (ret != 1)
  380. return -ENODEV;
  381. buf[1] = buf[0] | (1 << 1);
  382. buf[0] = 0x13;
  383. msg.addr = 0x09;
  384. msg.buf = buf;
  385. msg.len = 2;
  386. msg.flags = 0;
  387. ret = i2c_transfer(a, &msg, 1);
  388. if (ret != 1)
  389. return -ENODEV;
  390. return 0;
  391. }
  392. static int kfr2r09_serial_i2c_setup(void)
  393. {
  394. struct i2c_adapter *a;
  395. struct i2c_msg msg;
  396. unsigned char buf[2];
  397. int ret;
  398. a = i2c_get_adapter(0);
  399. if (!a)
  400. return -ENODEV;
  401. /* set bit 6 (the 7th bit) of chip at 0x09, register 0x13 */
  402. buf[0] = 0x13;
  403. msg.addr = 0x09;
  404. msg.buf = buf;
  405. msg.len = 1;
  406. msg.flags = 0;
  407. ret = i2c_transfer(a, &msg, 1);
  408. if (ret != 1)
  409. return -ENODEV;
  410. buf[0] = 0;
  411. msg.addr = 0x09;
  412. msg.buf = buf;
  413. msg.len = 1;
  414. msg.flags = I2C_M_RD;
  415. ret = i2c_transfer(a, &msg, 1);
  416. if (ret != 1)
  417. return -ENODEV;
  418. buf[1] = buf[0] | (1 << 6);
  419. buf[0] = 0x13;
  420. msg.addr = 0x09;
  421. msg.buf = buf;
  422. msg.len = 2;
  423. msg.flags = 0;
  424. ret = i2c_transfer(a, &msg, 1);
  425. if (ret != 1)
  426. return -ENODEV;
  427. return 0;
  428. }
  429. #else
  430. static int kfr2r09_usb0_gadget_i2c_setup(void)
  431. {
  432. return -ENODEV;
  433. }
  434. static int kfr2r09_serial_i2c_setup(void)
  435. {
  436. return -ENODEV;
  437. }
  438. #endif
  439. static int kfr2r09_usb0_gadget_setup(void)
  440. {
  441. int plugged_in;
  442. gpio_request(GPIO_PTN4, NULL); /* USB_DET */
  443. gpio_direction_input(GPIO_PTN4);
  444. plugged_in = gpio_get_value(GPIO_PTN4);
  445. if (!plugged_in)
  446. return -ENODEV; /* no cable plugged in */
  447. if (kfr2r09_usb0_gadget_i2c_setup() != 0)
  448. return -ENODEV; /* unable to configure using i2c */
  449. __raw_writew((__raw_readw(PORT_MSELCRB) & ~0xc000) | 0x8000, PORT_MSELCRB);
  450. gpio_request(GPIO_FN_PDSTATUS, NULL); /* R-standby disables USB clock */
  451. gpio_request(GPIO_PTV6, NULL); /* USBCLK_ON */
  452. gpio_direction_output(GPIO_PTV6, 1); /* USBCLK_ON = H */
  453. msleep(20); /* wait 20ms to let the clock settle */
  454. clk_enable(clk_get(NULL, "usb0"));
  455. __raw_writew(0x0600, 0xa40501d4);
  456. return 0;
  457. }
  458. extern char kfr2r09_sdram_enter_start;
  459. extern char kfr2r09_sdram_enter_end;
  460. extern char kfr2r09_sdram_leave_start;
  461. extern char kfr2r09_sdram_leave_end;
  462. static int __init kfr2r09_devices_setup(void)
  463. {
  464. /* register board specific self-refresh code */
  465. sh_mobile_register_self_refresh(SUSP_SH_STANDBY | SUSP_SH_SF |
  466. SUSP_SH_RSTANDBY,
  467. &kfr2r09_sdram_enter_start,
  468. &kfr2r09_sdram_enter_end,
  469. &kfr2r09_sdram_leave_start,
  470. &kfr2r09_sdram_leave_end);
  471. /* enable SCIF1 serial port for YC401 console support */
  472. gpio_request(GPIO_FN_SCIF1_RXD, NULL);
  473. gpio_request(GPIO_FN_SCIF1_TXD, NULL);
  474. kfr2r09_serial_i2c_setup(); /* ECONTMSK(bit6=L10ONEN) set 1 */
  475. gpio_request(GPIO_PTG3, NULL); /* HPON_ON */
  476. gpio_direction_output(GPIO_PTG3, 1); /* HPON_ON = H */
  477. /* setup NOR flash at CS0 */
  478. __raw_writel(0x36db0400, BSC_CS0BCR);
  479. __raw_writel(0x00000500, BSC_CS0WCR);
  480. /* setup NAND flash at CS4 */
  481. __raw_writel(0x36db0400, BSC_CS4BCR);
  482. __raw_writel(0x00000500, BSC_CS4WCR);
  483. /* setup KEYSC pins */
  484. gpio_request(GPIO_FN_KEYOUT0, NULL);
  485. gpio_request(GPIO_FN_KEYOUT1, NULL);
  486. gpio_request(GPIO_FN_KEYOUT2, NULL);
  487. gpio_request(GPIO_FN_KEYOUT3, NULL);
  488. gpio_request(GPIO_FN_KEYOUT4_IN6, NULL);
  489. gpio_request(GPIO_FN_KEYIN0, NULL);
  490. gpio_request(GPIO_FN_KEYIN1, NULL);
  491. gpio_request(GPIO_FN_KEYIN2, NULL);
  492. gpio_request(GPIO_FN_KEYIN3, NULL);
  493. gpio_request(GPIO_FN_KEYIN4, NULL);
  494. gpio_request(GPIO_FN_KEYOUT5_IN5, NULL);
  495. /* setup LCDC pins for SYS panel */
  496. gpio_request(GPIO_FN_LCDD17, NULL);
  497. gpio_request(GPIO_FN_LCDD16, NULL);
  498. gpio_request(GPIO_FN_LCDD15, NULL);
  499. gpio_request(GPIO_FN_LCDD14, NULL);
  500. gpio_request(GPIO_FN_LCDD13, NULL);
  501. gpio_request(GPIO_FN_LCDD12, NULL);
  502. gpio_request(GPIO_FN_LCDD11, NULL);
  503. gpio_request(GPIO_FN_LCDD10, NULL);
  504. gpio_request(GPIO_FN_LCDD9, NULL);
  505. gpio_request(GPIO_FN_LCDD8, NULL);
  506. gpio_request(GPIO_FN_LCDD7, NULL);
  507. gpio_request(GPIO_FN_LCDD6, NULL);
  508. gpio_request(GPIO_FN_LCDD5, NULL);
  509. gpio_request(GPIO_FN_LCDD4, NULL);
  510. gpio_request(GPIO_FN_LCDD3, NULL);
  511. gpio_request(GPIO_FN_LCDD2, NULL);
  512. gpio_request(GPIO_FN_LCDD1, NULL);
  513. gpio_request(GPIO_FN_LCDD0, NULL);
  514. gpio_request(GPIO_FN_LCDRS, NULL); /* LCD_RS */
  515. gpio_request(GPIO_FN_LCDCS, NULL); /* LCD_CS/ */
  516. gpio_request(GPIO_FN_LCDRD, NULL); /* LCD_RD/ */
  517. gpio_request(GPIO_FN_LCDWR, NULL); /* LCD_WR/ */
  518. gpio_request(GPIO_FN_LCDVSYN, NULL); /* LCD_VSYNC */
  519. gpio_request(GPIO_PTE4, NULL); /* LCD_RST/ */
  520. gpio_direction_output(GPIO_PTE4, 1);
  521. gpio_request(GPIO_PTF4, NULL); /* PROTECT/ */
  522. gpio_direction_output(GPIO_PTF4, 1);
  523. gpio_request(GPIO_PTU0, NULL); /* LEDSTDBY/ */
  524. gpio_direction_output(GPIO_PTU0, 1);
  525. /* setup USB function */
  526. if (kfr2r09_usb0_gadget_setup() == 0)
  527. platform_device_register(&kfr2r09_usb0_gadget_device);
  528. /* CEU */
  529. gpio_request(GPIO_FN_VIO_CKO, NULL);
  530. gpio_request(GPIO_FN_VIO0_CLK, NULL);
  531. gpio_request(GPIO_FN_VIO0_VD, NULL);
  532. gpio_request(GPIO_FN_VIO0_HD, NULL);
  533. gpio_request(GPIO_FN_VIO0_FLD, NULL);
  534. gpio_request(GPIO_FN_VIO0_D7, NULL);
  535. gpio_request(GPIO_FN_VIO0_D6, NULL);
  536. gpio_request(GPIO_FN_VIO0_D5, NULL);
  537. gpio_request(GPIO_FN_VIO0_D4, NULL);
  538. gpio_request(GPIO_FN_VIO0_D3, NULL);
  539. gpio_request(GPIO_FN_VIO0_D2, NULL);
  540. gpio_request(GPIO_FN_VIO0_D1, NULL);
  541. gpio_request(GPIO_FN_VIO0_D0, NULL);
  542. platform_resource_setup_memory(&kfr2r09_ceu_device, "ceu", 4 << 20);
  543. /* SDHI0 connected to yc304 */
  544. gpio_request(GPIO_FN_SDHI0CD, NULL);
  545. gpio_request(GPIO_FN_SDHI0D3, NULL);
  546. gpio_request(GPIO_FN_SDHI0D2, NULL);
  547. gpio_request(GPIO_FN_SDHI0D1, NULL);
  548. gpio_request(GPIO_FN_SDHI0D0, NULL);
  549. gpio_request(GPIO_FN_SDHI0CMD, NULL);
  550. gpio_request(GPIO_FN_SDHI0CLK, NULL);
  551. return platform_add_devices(kfr2r09_devices,
  552. ARRAY_SIZE(kfr2r09_devices));
  553. }
  554. device_initcall(kfr2r09_devices_setup);
  555. /* Return the board specific boot mode pin configuration */
  556. static int kfr2r09_mode_pins(void)
  557. {
  558. /* MD0=1, MD1=1, MD2=0: Clock Mode 3
  559. * MD3=0: 16-bit Area0 Bus Width
  560. * MD5=1: Little Endian
  561. * MD8=1: Test Mode Disabled
  562. */
  563. return MODE_PIN0 | MODE_PIN1 | MODE_PIN5 | MODE_PIN8;
  564. }
  565. /*
  566. * The Machine Vector
  567. */
  568. static struct sh_machine_vector mv_kfr2r09 __initmv = {
  569. .mv_name = "kfr2r09",
  570. .mv_mode_pins = kfr2r09_mode_pins,
  571. };