cm-x300.c 19 KB

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  1. /*
  2. * linux/arch/arm/mach-pxa/cm-x300.c
  3. *
  4. * Support for the CompuLab CM-X300 modules
  5. *
  6. * Copyright (C) 2008,2009 CompuLab Ltd.
  7. *
  8. * Mike Rapoport <mike@compulab.co.il>
  9. * Igor Grinberg <grinberg@compulab.co.il>
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License version 2 as
  13. * published by the Free Software Foundation.
  14. */
  15. #include <linux/module.h>
  16. #include <linux/kernel.h>
  17. #include <linux/interrupt.h>
  18. #include <linux/init.h>
  19. #include <linux/delay.h>
  20. #include <linux/platform_device.h>
  21. #include <linux/clk.h>
  22. #include <linux/gpio.h>
  23. #include <linux/dm9000.h>
  24. #include <linux/leds.h>
  25. #include <linux/rtc-v3020.h>
  26. #include <linux/pwm_backlight.h>
  27. #include <linux/i2c.h>
  28. #include <linux/i2c/pca953x.h>
  29. #include <linux/i2c/pxa-i2c.h>
  30. #include <linux/mfd/da903x.h>
  31. #include <linux/regulator/machine.h>
  32. #include <linux/power_supply.h>
  33. #include <linux/apm-emulation.h>
  34. #include <linux/spi/spi.h>
  35. #include <linux/spi/spi_gpio.h>
  36. #include <linux/spi/tdo24m.h>
  37. #include <asm/mach-types.h>
  38. #include <asm/mach/arch.h>
  39. #include <asm/setup.h>
  40. #include <mach/pxa300.h>
  41. #include <mach/pxa27x-udc.h>
  42. #include <mach/pxafb.h>
  43. #include <mach/mmc.h>
  44. #include <mach/ohci.h>
  45. #include <plat/pxa3xx_nand.h>
  46. #include <mach/audio.h>
  47. #include <mach/pxa3xx-u2d.h>
  48. #include <asm/mach/map.h>
  49. #include "generic.h"
  50. #include "devices.h"
  51. #define CM_X300_ETH_PHYS 0x08000010
  52. #define GPIO82_MMC_IRQ (82)
  53. #define GPIO85_MMC_WP (85)
  54. #define CM_X300_MMC_IRQ IRQ_GPIO(GPIO82_MMC_IRQ)
  55. #define GPIO95_RTC_CS (95)
  56. #define GPIO96_RTC_WR (96)
  57. #define GPIO97_RTC_RD (97)
  58. #define GPIO98_RTC_IO (98)
  59. #define GPIO_ULPI_PHY_RST (127)
  60. static mfp_cfg_t cm_x3xx_mfp_cfg[] __initdata = {
  61. /* LCD */
  62. GPIO54_LCD_LDD_0,
  63. GPIO55_LCD_LDD_1,
  64. GPIO56_LCD_LDD_2,
  65. GPIO57_LCD_LDD_3,
  66. GPIO58_LCD_LDD_4,
  67. GPIO59_LCD_LDD_5,
  68. GPIO60_LCD_LDD_6,
  69. GPIO61_LCD_LDD_7,
  70. GPIO62_LCD_LDD_8,
  71. GPIO63_LCD_LDD_9,
  72. GPIO64_LCD_LDD_10,
  73. GPIO65_LCD_LDD_11,
  74. GPIO66_LCD_LDD_12,
  75. GPIO67_LCD_LDD_13,
  76. GPIO68_LCD_LDD_14,
  77. GPIO69_LCD_LDD_15,
  78. GPIO72_LCD_FCLK,
  79. GPIO73_LCD_LCLK,
  80. GPIO74_LCD_PCLK,
  81. GPIO75_LCD_BIAS,
  82. /* BTUART */
  83. GPIO111_UART2_RTS,
  84. GPIO112_UART2_RXD | MFP_LPM_EDGE_FALL,
  85. GPIO113_UART2_TXD,
  86. GPIO114_UART2_CTS | MFP_LPM_EDGE_BOTH,
  87. /* STUART */
  88. GPIO109_UART3_TXD,
  89. GPIO110_UART3_RXD | MFP_LPM_EDGE_FALL,
  90. /* AC97 */
  91. GPIO23_AC97_nACRESET,
  92. GPIO24_AC97_SYSCLK,
  93. GPIO29_AC97_BITCLK,
  94. GPIO25_AC97_SDATA_IN_0,
  95. GPIO27_AC97_SDATA_OUT,
  96. GPIO28_AC97_SYNC,
  97. /* Keypad */
  98. GPIO115_KP_MKIN_0 | MFP_LPM_EDGE_BOTH,
  99. GPIO116_KP_MKIN_1 | MFP_LPM_EDGE_BOTH,
  100. GPIO117_KP_MKIN_2 | MFP_LPM_EDGE_BOTH,
  101. GPIO118_KP_MKIN_3 | MFP_LPM_EDGE_BOTH,
  102. GPIO119_KP_MKIN_4 | MFP_LPM_EDGE_BOTH,
  103. GPIO120_KP_MKIN_5 | MFP_LPM_EDGE_BOTH,
  104. GPIO2_2_KP_MKIN_6 | MFP_LPM_EDGE_BOTH,
  105. GPIO3_2_KP_MKIN_7 | MFP_LPM_EDGE_BOTH,
  106. GPIO121_KP_MKOUT_0,
  107. GPIO122_KP_MKOUT_1,
  108. GPIO123_KP_MKOUT_2,
  109. GPIO124_KP_MKOUT_3,
  110. GPIO125_KP_MKOUT_4,
  111. GPIO4_2_KP_MKOUT_5,
  112. /* MMC1 */
  113. GPIO3_MMC1_DAT0,
  114. GPIO4_MMC1_DAT1 | MFP_LPM_EDGE_BOTH,
  115. GPIO5_MMC1_DAT2,
  116. GPIO6_MMC1_DAT3,
  117. GPIO7_MMC1_CLK,
  118. GPIO8_MMC1_CMD, /* CMD0 for slot 0 */
  119. /* MMC2 */
  120. GPIO9_MMC2_DAT0,
  121. GPIO10_MMC2_DAT1 | MFP_LPM_EDGE_BOTH,
  122. GPIO11_MMC2_DAT2,
  123. GPIO12_MMC2_DAT3,
  124. GPIO13_MMC2_CLK,
  125. GPIO14_MMC2_CMD,
  126. /* FFUART */
  127. GPIO30_UART1_RXD | MFP_LPM_EDGE_FALL,
  128. GPIO31_UART1_TXD,
  129. GPIO32_UART1_CTS,
  130. GPIO37_UART1_RTS,
  131. GPIO33_UART1_DCD,
  132. GPIO34_UART1_DSR | MFP_LPM_EDGE_FALL,
  133. GPIO35_UART1_RI,
  134. GPIO36_UART1_DTR,
  135. /* GPIOs */
  136. GPIO82_GPIO | MFP_PULL_HIGH, /* MMC CD */
  137. GPIO85_GPIO, /* MMC WP */
  138. GPIO99_GPIO, /* Ethernet IRQ */
  139. /* RTC GPIOs */
  140. GPIO95_GPIO | MFP_LPM_DRIVE_HIGH, /* RTC CS */
  141. GPIO96_GPIO | MFP_LPM_DRIVE_HIGH, /* RTC WR */
  142. GPIO97_GPIO | MFP_LPM_DRIVE_HIGH, /* RTC RD */
  143. GPIO98_GPIO, /* RTC IO */
  144. /* Standard I2C */
  145. GPIO21_I2C_SCL,
  146. GPIO22_I2C_SDA,
  147. /* PWM Backlight */
  148. GPIO19_PWM2_OUT,
  149. };
  150. static mfp_cfg_t cm_x3xx_rev_lt130_mfp_cfg[] __initdata = {
  151. /* GPIOs */
  152. GPIO79_GPIO, /* LED */
  153. GPIO77_GPIO, /* WiFi reset */
  154. GPIO78_GPIO, /* BT reset */
  155. };
  156. static mfp_cfg_t cm_x3xx_rev_ge130_mfp_cfg[] __initdata = {
  157. /* GPIOs */
  158. GPIO76_GPIO, /* LED */
  159. GPIO71_GPIO, /* WiFi reset */
  160. GPIO70_GPIO, /* BT reset */
  161. };
  162. static mfp_cfg_t cm_x310_mfp_cfg[] __initdata = {
  163. /* USB PORT 2 */
  164. ULPI_STP,
  165. ULPI_NXT,
  166. ULPI_DIR,
  167. GPIO30_ULPI_DATA_OUT_0,
  168. GPIO31_ULPI_DATA_OUT_1,
  169. GPIO32_ULPI_DATA_OUT_2,
  170. GPIO33_ULPI_DATA_OUT_3,
  171. GPIO34_ULPI_DATA_OUT_4,
  172. GPIO35_ULPI_DATA_OUT_5,
  173. GPIO36_ULPI_DATA_OUT_6,
  174. GPIO37_ULPI_DATA_OUT_7,
  175. GPIO38_ULPI_CLK,
  176. /* external PHY reset pin */
  177. GPIO127_GPIO,
  178. /* USB PORT 3 */
  179. GPIO77_USB_P3_1,
  180. GPIO78_USB_P3_2,
  181. GPIO79_USB_P3_3,
  182. GPIO80_USB_P3_4,
  183. GPIO81_USB_P3_5,
  184. GPIO82_USB_P3_6,
  185. GPIO0_2_USBH_PEN,
  186. };
  187. #if defined(CONFIG_DM9000) || defined(CONFIG_DM9000_MODULE)
  188. static struct resource dm9000_resources[] = {
  189. [0] = {
  190. .start = CM_X300_ETH_PHYS,
  191. .end = CM_X300_ETH_PHYS + 0x3,
  192. .flags = IORESOURCE_MEM,
  193. },
  194. [1] = {
  195. .start = CM_X300_ETH_PHYS + 0x4,
  196. .end = CM_X300_ETH_PHYS + 0x4 + 500,
  197. .flags = IORESOURCE_MEM,
  198. },
  199. [2] = {
  200. .start = IRQ_GPIO(mfp_to_gpio(MFP_PIN_GPIO99)),
  201. .end = IRQ_GPIO(mfp_to_gpio(MFP_PIN_GPIO99)),
  202. .flags = IORESOURCE_IRQ | IORESOURCE_IRQ_HIGHEDGE,
  203. }
  204. };
  205. static struct dm9000_plat_data cm_x300_dm9000_platdata = {
  206. .flags = DM9000_PLATF_16BITONLY | DM9000_PLATF_NO_EEPROM,
  207. };
  208. static struct platform_device dm9000_device = {
  209. .name = "dm9000",
  210. .id = 0,
  211. .num_resources = ARRAY_SIZE(dm9000_resources),
  212. .resource = dm9000_resources,
  213. .dev = {
  214. .platform_data = &cm_x300_dm9000_platdata,
  215. }
  216. };
  217. static void __init cm_x300_init_dm9000(void)
  218. {
  219. platform_device_register(&dm9000_device);
  220. }
  221. #else
  222. static inline void cm_x300_init_dm9000(void) {}
  223. #endif
  224. /* LCD */
  225. #if defined(CONFIG_FB_PXA) || defined(CONFIG_FB_PXA_MODULE)
  226. static struct pxafb_mode_info cm_x300_lcd_modes[] = {
  227. [0] = {
  228. .pixclock = 38250,
  229. .bpp = 16,
  230. .xres = 480,
  231. .yres = 640,
  232. .hsync_len = 8,
  233. .vsync_len = 2,
  234. .left_margin = 8,
  235. .upper_margin = 2,
  236. .right_margin = 24,
  237. .lower_margin = 4,
  238. .cmap_greyscale = 0,
  239. },
  240. [1] = {
  241. .pixclock = 153800,
  242. .bpp = 16,
  243. .xres = 240,
  244. .yres = 320,
  245. .hsync_len = 8,
  246. .vsync_len = 2,
  247. .left_margin = 8,
  248. .upper_margin = 2,
  249. .right_margin = 88,
  250. .lower_margin = 2,
  251. .cmap_greyscale = 0,
  252. },
  253. };
  254. static struct pxafb_mach_info cm_x300_lcd = {
  255. .modes = cm_x300_lcd_modes,
  256. .num_modes = ARRAY_SIZE(cm_x300_lcd_modes),
  257. .lcd_conn = LCD_COLOR_TFT_16BPP | LCD_PCLK_EDGE_FALL,
  258. };
  259. static void __init cm_x300_init_lcd(void)
  260. {
  261. pxa_set_fb_info(NULL, &cm_x300_lcd);
  262. }
  263. #else
  264. static inline void cm_x300_init_lcd(void) {}
  265. #endif
  266. #if defined(CONFIG_BACKLIGHT_PWM) || defined(CONFIG_BACKLIGHT_PWM_MODULE)
  267. static struct platform_pwm_backlight_data cm_x300_backlight_data = {
  268. .pwm_id = 2,
  269. .max_brightness = 100,
  270. .dft_brightness = 100,
  271. .pwm_period_ns = 10000,
  272. };
  273. static struct platform_device cm_x300_backlight_device = {
  274. .name = "pwm-backlight",
  275. .dev = {
  276. .parent = &pxa27x_device_pwm0.dev,
  277. .platform_data = &cm_x300_backlight_data,
  278. },
  279. };
  280. static void cm_x300_init_bl(void)
  281. {
  282. platform_device_register(&cm_x300_backlight_device);
  283. }
  284. #else
  285. static inline void cm_x300_init_bl(void) {}
  286. #endif
  287. #if defined(CONFIG_SPI_GPIO) || defined(CONFIG_SPI_GPIO_MODULE)
  288. #define GPIO_LCD_BASE (144)
  289. #define GPIO_LCD_DIN (GPIO_LCD_BASE + 8) /* aux_gpio3_0 */
  290. #define GPIO_LCD_DOUT (GPIO_LCD_BASE + 9) /* aux_gpio3_1 */
  291. #define GPIO_LCD_SCL (GPIO_LCD_BASE + 10) /* aux_gpio3_2 */
  292. #define GPIO_LCD_CS (GPIO_LCD_BASE + 11) /* aux_gpio3_3 */
  293. #define LCD_SPI_BUS_NUM (1)
  294. static struct spi_gpio_platform_data cm_x300_spi_gpio_pdata = {
  295. .sck = GPIO_LCD_SCL,
  296. .mosi = GPIO_LCD_DIN,
  297. .miso = GPIO_LCD_DOUT,
  298. .num_chipselect = 1,
  299. };
  300. static struct platform_device cm_x300_spi_gpio = {
  301. .name = "spi_gpio",
  302. .id = LCD_SPI_BUS_NUM,
  303. .dev = {
  304. .platform_data = &cm_x300_spi_gpio_pdata,
  305. },
  306. };
  307. static struct tdo24m_platform_data cm_x300_tdo24m_pdata = {
  308. .model = TDO35S,
  309. };
  310. static struct spi_board_info cm_x300_spi_devices[] __initdata = {
  311. {
  312. .modalias = "tdo24m",
  313. .max_speed_hz = 1000000,
  314. .bus_num = LCD_SPI_BUS_NUM,
  315. .chip_select = 0,
  316. .controller_data = (void *) GPIO_LCD_CS,
  317. .platform_data = &cm_x300_tdo24m_pdata,
  318. },
  319. };
  320. static void __init cm_x300_init_spi(void)
  321. {
  322. spi_register_board_info(cm_x300_spi_devices,
  323. ARRAY_SIZE(cm_x300_spi_devices));
  324. platform_device_register(&cm_x300_spi_gpio);
  325. }
  326. #else
  327. static inline void cm_x300_init_spi(void) {}
  328. #endif
  329. #if defined(CONFIG_SND_PXA2XX_LIB_AC97)
  330. static void __init cm_x300_init_ac97(void)
  331. {
  332. pxa_set_ac97_info(NULL);
  333. }
  334. #else
  335. static inline void cm_x300_init_ac97(void) {}
  336. #endif
  337. #if defined(CONFIG_MTD_NAND_PXA3xx) || defined(CONFIG_MTD_NAND_PXA3xx_MODULE)
  338. static struct mtd_partition cm_x300_nand_partitions[] = {
  339. [0] = {
  340. .name = "OBM",
  341. .offset = 0,
  342. .size = SZ_256K,
  343. .mask_flags = MTD_WRITEABLE, /* force read-only */
  344. },
  345. [1] = {
  346. .name = "U-Boot",
  347. .offset = MTDPART_OFS_APPEND,
  348. .size = SZ_256K,
  349. .mask_flags = MTD_WRITEABLE, /* force read-only */
  350. },
  351. [2] = {
  352. .name = "Environment",
  353. .offset = MTDPART_OFS_APPEND,
  354. .size = SZ_256K,
  355. },
  356. [3] = {
  357. .name = "reserved",
  358. .offset = MTDPART_OFS_APPEND,
  359. .size = SZ_256K + SZ_1M,
  360. .mask_flags = MTD_WRITEABLE, /* force read-only */
  361. },
  362. [4] = {
  363. .name = "kernel",
  364. .offset = MTDPART_OFS_APPEND,
  365. .size = SZ_4M,
  366. },
  367. [5] = {
  368. .name = "fs",
  369. .offset = MTDPART_OFS_APPEND,
  370. .size = MTDPART_SIZ_FULL,
  371. },
  372. };
  373. static struct pxa3xx_nand_platform_data cm_x300_nand_info = {
  374. .enable_arbiter = 1,
  375. .keep_config = 1,
  376. .parts = cm_x300_nand_partitions,
  377. .nr_parts = ARRAY_SIZE(cm_x300_nand_partitions),
  378. };
  379. static void __init cm_x300_init_nand(void)
  380. {
  381. pxa3xx_set_nand_info(&cm_x300_nand_info);
  382. }
  383. #else
  384. static inline void cm_x300_init_nand(void) {}
  385. #endif
  386. #if defined(CONFIG_MMC) || defined(CONFIG_MMC_MODULE)
  387. static struct pxamci_platform_data cm_x300_mci_platform_data = {
  388. .detect_delay_ms = 200,
  389. .ocr_mask = MMC_VDD_32_33|MMC_VDD_33_34,
  390. .gpio_card_detect = GPIO82_MMC_IRQ,
  391. .gpio_card_ro = GPIO85_MMC_WP,
  392. .gpio_power = -1,
  393. };
  394. /* The second MMC slot of CM-X300 is hardwired to Libertas card and has
  395. no detection/ro pins */
  396. static int cm_x300_mci2_init(struct device *dev,
  397. irq_handler_t cm_x300_detect_int,
  398. void *data)
  399. {
  400. return 0;
  401. }
  402. static void cm_x300_mci2_exit(struct device *dev, void *data)
  403. {
  404. }
  405. static struct pxamci_platform_data cm_x300_mci2_platform_data = {
  406. .detect_delay_ms = 200,
  407. .ocr_mask = MMC_VDD_32_33|MMC_VDD_33_34,
  408. .init = cm_x300_mci2_init,
  409. .exit = cm_x300_mci2_exit,
  410. .gpio_card_detect = -1,
  411. .gpio_card_ro = -1,
  412. .gpio_power = -1,
  413. };
  414. static void __init cm_x300_init_mmc(void)
  415. {
  416. pxa_set_mci_info(&cm_x300_mci_platform_data);
  417. pxa3xx_set_mci2_info(&cm_x300_mci2_platform_data);
  418. }
  419. #else
  420. static inline void cm_x300_init_mmc(void) {}
  421. #endif
  422. #if defined(CONFIG_PXA310_ULPI)
  423. static struct clk *pout_clk;
  424. static int cm_x300_ulpi_phy_reset(void)
  425. {
  426. int err;
  427. /* reset the PHY */
  428. err = gpio_request(GPIO_ULPI_PHY_RST, "ulpi reset");
  429. if (err) {
  430. pr_err("%s: failed to request ULPI reset GPIO: %d\n",
  431. __func__, err);
  432. return err;
  433. }
  434. gpio_direction_output(GPIO_ULPI_PHY_RST, 0);
  435. msleep(10);
  436. gpio_set_value(GPIO_ULPI_PHY_RST, 1);
  437. msleep(10);
  438. gpio_free(GPIO_ULPI_PHY_RST);
  439. return 0;
  440. }
  441. static inline int cm_x300_u2d_init(struct device *dev)
  442. {
  443. int err = 0;
  444. if (cpu_is_pxa310()) {
  445. /* CLK_POUT is connected to the ULPI PHY */
  446. pout_clk = clk_get(NULL, "CLK_POUT");
  447. if (IS_ERR(pout_clk)) {
  448. err = PTR_ERR(pout_clk);
  449. pr_err("%s: failed to get CLK_POUT: %d\n",
  450. __func__, err);
  451. return err;
  452. }
  453. clk_enable(pout_clk);
  454. err = cm_x300_ulpi_phy_reset();
  455. if (err) {
  456. clk_disable(pout_clk);
  457. clk_put(pout_clk);
  458. }
  459. }
  460. return err;
  461. }
  462. static void cm_x300_u2d_exit(struct device *dev)
  463. {
  464. if (cpu_is_pxa310()) {
  465. clk_disable(pout_clk);
  466. clk_put(pout_clk);
  467. }
  468. }
  469. static struct pxa3xx_u2d_platform_data cm_x300_u2d_platform_data = {
  470. .ulpi_mode = ULPI_SER_6PIN,
  471. .init = cm_x300_u2d_init,
  472. .exit = cm_x300_u2d_exit,
  473. };
  474. static void cm_x300_init_u2d(void)
  475. {
  476. pxa3xx_set_u2d_info(&cm_x300_u2d_platform_data);
  477. }
  478. #else
  479. static inline void cm_x300_init_u2d(void) {}
  480. #endif
  481. #if defined(CONFIG_USB_OHCI_HCD) || defined(CONFIG_USB_OHCI_HCD_MODULE)
  482. static int cm_x300_ohci_init(struct device *dev)
  483. {
  484. if (cpu_is_pxa300())
  485. UP2OCR = UP2OCR_HXS
  486. | UP2OCR_HXOE | UP2OCR_DMPDE | UP2OCR_DPPDE;
  487. return 0;
  488. }
  489. static struct pxaohci_platform_data cm_x300_ohci_platform_data = {
  490. .port_mode = PMM_PERPORT_MODE,
  491. .flags = ENABLE_PORT_ALL | POWER_CONTROL_LOW,
  492. .init = cm_x300_ohci_init,
  493. };
  494. static void __init cm_x300_init_ohci(void)
  495. {
  496. pxa_set_ohci_info(&cm_x300_ohci_platform_data);
  497. }
  498. #else
  499. static inline void cm_x300_init_ohci(void) {}
  500. #endif
  501. #if defined(CONFIG_LEDS_GPIO) || defined(CONFIG_LEDS_GPIO_MODULE)
  502. static struct gpio_led cm_x300_leds[] = {
  503. [0] = {
  504. .name = "cm-x300:green",
  505. .default_trigger = "heartbeat",
  506. .active_low = 1,
  507. },
  508. };
  509. static struct gpio_led_platform_data cm_x300_gpio_led_pdata = {
  510. .num_leds = ARRAY_SIZE(cm_x300_leds),
  511. .leds = cm_x300_leds,
  512. };
  513. static struct platform_device cm_x300_led_device = {
  514. .name = "leds-gpio",
  515. .id = -1,
  516. .dev = {
  517. .platform_data = &cm_x300_gpio_led_pdata,
  518. },
  519. };
  520. static void __init cm_x300_init_leds(void)
  521. {
  522. if (system_rev < 130)
  523. cm_x300_leds[0].gpio = 79;
  524. else
  525. cm_x300_leds[0].gpio = 76;
  526. platform_device_register(&cm_x300_led_device);
  527. }
  528. #else
  529. static inline void cm_x300_init_leds(void) {}
  530. #endif
  531. #if defined(CONFIG_I2C) || defined(CONFIG_I2C_MODULE)
  532. /* PCA9555 */
  533. static struct pca953x_platform_data cm_x300_gpio_ext_pdata_0 = {
  534. .gpio_base = 128,
  535. };
  536. static struct pca953x_platform_data cm_x300_gpio_ext_pdata_1 = {
  537. .gpio_base = 144,
  538. };
  539. static struct i2c_board_info cm_x300_gpio_ext_info[] = {
  540. [0] = {
  541. I2C_BOARD_INFO("pca9555", 0x24),
  542. .platform_data = &cm_x300_gpio_ext_pdata_0,
  543. },
  544. [1] = {
  545. I2C_BOARD_INFO("pca9555", 0x25),
  546. .platform_data = &cm_x300_gpio_ext_pdata_1,
  547. },
  548. };
  549. static void __init cm_x300_init_i2c(void)
  550. {
  551. pxa_set_i2c_info(NULL);
  552. i2c_register_board_info(0, cm_x300_gpio_ext_info,
  553. ARRAY_SIZE(cm_x300_gpio_ext_info));
  554. }
  555. #else
  556. static inline void cm_x300_init_i2c(void) {}
  557. #endif
  558. #if defined(CONFIG_RTC_DRV_V3020) || defined(CONFIG_RTC_DRV_V3020_MODULE)
  559. struct v3020_platform_data cm_x300_v3020_pdata = {
  560. .use_gpio = 1,
  561. .gpio_cs = GPIO95_RTC_CS,
  562. .gpio_wr = GPIO96_RTC_WR,
  563. .gpio_rd = GPIO97_RTC_RD,
  564. .gpio_io = GPIO98_RTC_IO,
  565. };
  566. static struct platform_device cm_x300_rtc_device = {
  567. .name = "v3020",
  568. .id = -1,
  569. .dev = {
  570. .platform_data = &cm_x300_v3020_pdata,
  571. }
  572. };
  573. static void __init cm_x300_init_rtc(void)
  574. {
  575. platform_device_register(&cm_x300_rtc_device);
  576. }
  577. #else
  578. static inline void cm_x300_init_rtc(void) {}
  579. #endif
  580. /* Battery */
  581. struct power_supply_info cm_x300_psy_info = {
  582. .name = "battery",
  583. .technology = POWER_SUPPLY_TECHNOLOGY_LIPO,
  584. .voltage_max_design = 4200000,
  585. .voltage_min_design = 3000000,
  586. .use_for_apm = 1,
  587. };
  588. static void cm_x300_battery_low(void)
  589. {
  590. #if defined(CONFIG_APM_EMULATION)
  591. apm_queue_event(APM_LOW_BATTERY);
  592. #endif
  593. }
  594. static void cm_x300_battery_critical(void)
  595. {
  596. #if defined(CONFIG_APM_EMULATION)
  597. apm_queue_event(APM_CRITICAL_SUSPEND);
  598. #endif
  599. }
  600. struct da9030_battery_info cm_x300_battery_info = {
  601. .battery_info = &cm_x300_psy_info,
  602. .charge_milliamp = 1000,
  603. .charge_millivolt = 4200,
  604. .vbat_low = 3600,
  605. .vbat_crit = 3400,
  606. .vbat_charge_start = 4100,
  607. .vbat_charge_stop = 4200,
  608. .vbat_charge_restart = 4000,
  609. .vcharge_min = 3200,
  610. .vcharge_max = 5500,
  611. .tbat_low = 197,
  612. .tbat_high = 78,
  613. .tbat_restart = 100,
  614. .batmon_interval = 0,
  615. .battery_low = cm_x300_battery_low,
  616. .battery_critical = cm_x300_battery_critical,
  617. };
  618. static struct regulator_consumer_supply buck2_consumers[] = {
  619. {
  620. .dev = NULL,
  621. .supply = "vcc_core",
  622. },
  623. };
  624. static struct regulator_init_data buck2_data = {
  625. .constraints = {
  626. .min_uV = 1375000,
  627. .max_uV = 1375000,
  628. .state_mem = {
  629. .enabled = 0,
  630. },
  631. .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE,
  632. .apply_uV = 1,
  633. },
  634. .num_consumer_supplies = ARRAY_SIZE(buck2_consumers),
  635. .consumer_supplies = buck2_consumers,
  636. };
  637. /* DA9030 */
  638. struct da903x_subdev_info cm_x300_da9030_subdevs[] = {
  639. {
  640. .name = "da903x-battery",
  641. .id = DA9030_ID_BAT,
  642. .platform_data = &cm_x300_battery_info,
  643. },
  644. {
  645. .name = "da903x-regulator",
  646. .id = DA9030_ID_BUCK2,
  647. .platform_data = &buck2_data,
  648. },
  649. };
  650. static struct da903x_platform_data cm_x300_da9030_info = {
  651. .num_subdevs = ARRAY_SIZE(cm_x300_da9030_subdevs),
  652. .subdevs = cm_x300_da9030_subdevs,
  653. };
  654. static struct i2c_board_info cm_x300_pmic_info = {
  655. I2C_BOARD_INFO("da9030", 0x49),
  656. .irq = IRQ_WAKEUP0,
  657. .platform_data = &cm_x300_da9030_info,
  658. };
  659. static struct i2c_pxa_platform_data cm_x300_pwr_i2c_info = {
  660. .use_pio = 1,
  661. };
  662. static void __init cm_x300_init_da9030(void)
  663. {
  664. pxa3xx_set_i2c_power_info(&cm_x300_pwr_i2c_info);
  665. i2c_register_board_info(1, &cm_x300_pmic_info, 1);
  666. irq_set_irq_wake(IRQ_WAKEUP0, 1);
  667. }
  668. static void __init cm_x300_init_wi2wi(void)
  669. {
  670. int bt_reset, wlan_en;
  671. int err;
  672. if (system_rev < 130) {
  673. wlan_en = 77;
  674. bt_reset = 78;
  675. } else {
  676. wlan_en = 71;
  677. bt_reset = 70;
  678. }
  679. /* Libertas and CSR reset */
  680. err = gpio_request(wlan_en, "wlan en");
  681. if (err) {
  682. pr_err("CM-X300: failed to request wlan en gpio: %d\n", err);
  683. } else {
  684. gpio_direction_output(wlan_en, 1);
  685. gpio_free(wlan_en);
  686. }
  687. err = gpio_request(bt_reset, "bt reset");
  688. if (err) {
  689. pr_err("CM-X300: failed to request bt reset gpio: %d\n", err);
  690. } else {
  691. gpio_direction_output(bt_reset, 1);
  692. udelay(10);
  693. gpio_set_value(bt_reset, 0);
  694. udelay(10);
  695. gpio_set_value(bt_reset, 1);
  696. gpio_free(bt_reset);
  697. }
  698. }
  699. /* MFP */
  700. static void __init cm_x300_init_mfp(void)
  701. {
  702. /* board-processor specific GPIO initialization */
  703. pxa3xx_mfp_config(ARRAY_AND_SIZE(cm_x3xx_mfp_cfg));
  704. if (system_rev < 130)
  705. pxa3xx_mfp_config(ARRAY_AND_SIZE(cm_x3xx_rev_lt130_mfp_cfg));
  706. else
  707. pxa3xx_mfp_config(ARRAY_AND_SIZE(cm_x3xx_rev_ge130_mfp_cfg));
  708. if (cpu_is_pxa310())
  709. pxa3xx_mfp_config(ARRAY_AND_SIZE(cm_x310_mfp_cfg));
  710. }
  711. static void __init cm_x300_init(void)
  712. {
  713. cm_x300_init_mfp();
  714. pxa_set_btuart_info(NULL);
  715. pxa_set_stuart_info(NULL);
  716. if (cpu_is_pxa300())
  717. pxa_set_ffuart_info(NULL);
  718. cm_x300_init_da9030();
  719. cm_x300_init_dm9000();
  720. cm_x300_init_lcd();
  721. cm_x300_init_u2d();
  722. cm_x300_init_ohci();
  723. cm_x300_init_mmc();
  724. cm_x300_init_nand();
  725. cm_x300_init_leds();
  726. cm_x300_init_i2c();
  727. cm_x300_init_spi();
  728. cm_x300_init_rtc();
  729. cm_x300_init_ac97();
  730. cm_x300_init_wi2wi();
  731. cm_x300_init_bl();
  732. }
  733. static void __init cm_x300_fixup(struct machine_desc *mdesc, struct tag *tags,
  734. char **cmdline, struct meminfo *mi)
  735. {
  736. /* Make sure that mi->bank[0].start = PHYS_ADDR */
  737. for (; tags->hdr.size; tags = tag_next(tags))
  738. if (tags->hdr.tag == ATAG_MEM &&
  739. tags->u.mem.start == 0x80000000) {
  740. tags->u.mem.start = 0xa0000000;
  741. break;
  742. }
  743. }
  744. MACHINE_START(CM_X300, "CM-X300 module")
  745. .boot_params = 0xa0000100,
  746. .map_io = pxa3xx_map_io,
  747. .init_irq = pxa3xx_init_irq,
  748. .timer = &pxa_timer,
  749. .init_machine = cm_x300_init,
  750. .fixup = cm_x300_fixup,
  751. MACHINE_END