spitz.c 16 KB

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  1. /*
  2. * Support for Sharp SL-Cxx00 Series of PDAs
  3. * Models: SL-C3000 (Spitz), SL-C1000 (Akita) and SL-C3100 (Borzoi)
  4. *
  5. * Copyright (c) 2005 Richard Purdie
  6. *
  7. * Based on Sharp's 2.4 kernel patches/lubbock.c
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2 as
  11. * published by the Free Software Foundation.
  12. *
  13. */
  14. #include <linux/kernel.h>
  15. #include <linux/init.h>
  16. #include <linux/platform_device.h>
  17. #include <linux/delay.h>
  18. #include <linux/major.h>
  19. #include <linux/fs.h>
  20. #include <linux/interrupt.h>
  21. #include <linux/mmc/host.h>
  22. #include <linux/pm.h>
  23. #include <linux/backlight.h>
  24. #include <asm/setup.h>
  25. #include <asm/memory.h>
  26. #include <asm/mach-types.h>
  27. #include <asm/hardware.h>
  28. #include <asm/irq.h>
  29. #include <asm/io.h>
  30. #include <asm/system.h>
  31. #include <asm/mach/arch.h>
  32. #include <asm/mach/map.h>
  33. #include <asm/mach/irq.h>
  34. #include <asm/arch/pxa-regs.h>
  35. #include <asm/arch/pxa2xx-regs.h>
  36. #include <asm/arch/pxa2xx-gpio.h>
  37. #include <asm/arch/pxa27x-udc.h>
  38. #include <asm/arch/irda.h>
  39. #include <asm/arch/mmc.h>
  40. #include <asm/arch/ohci.h>
  41. #include <asm/arch/udc.h>
  42. #include <asm/arch/pxafb.h>
  43. #include <asm/arch/akita.h>
  44. #include <asm/arch/spitz.h>
  45. #include <asm/arch/sharpsl.h>
  46. #include <asm/mach/sharpsl_param.h>
  47. #include <asm/hardware/scoop.h>
  48. #include "generic.h"
  49. #include "devices.h"
  50. #include "sharpsl.h"
  51. /*
  52. * Spitz SCOOP Device #1
  53. */
  54. static struct resource spitz_scoop_resources[] = {
  55. [0] = {
  56. .start = 0x10800000,
  57. .end = 0x10800fff,
  58. .flags = IORESOURCE_MEM,
  59. },
  60. };
  61. static struct scoop_config spitz_scoop_setup = {
  62. .io_dir = SPITZ_SCP_IO_DIR,
  63. .io_out = SPITZ_SCP_IO_OUT,
  64. .suspend_clr = SPITZ_SCP_SUS_CLR,
  65. .suspend_set = SPITZ_SCP_SUS_SET,
  66. };
  67. struct platform_device spitzscoop_device = {
  68. .name = "sharp-scoop",
  69. .id = 0,
  70. .dev = {
  71. .platform_data = &spitz_scoop_setup,
  72. },
  73. .num_resources = ARRAY_SIZE(spitz_scoop_resources),
  74. .resource = spitz_scoop_resources,
  75. };
  76. /*
  77. * Spitz SCOOP Device #2
  78. */
  79. static struct resource spitz_scoop2_resources[] = {
  80. [0] = {
  81. .start = 0x08800040,
  82. .end = 0x08800fff,
  83. .flags = IORESOURCE_MEM,
  84. },
  85. };
  86. static struct scoop_config spitz_scoop2_setup = {
  87. .io_dir = SPITZ_SCP2_IO_DIR,
  88. .io_out = SPITZ_SCP2_IO_OUT,
  89. .suspend_clr = SPITZ_SCP2_SUS_CLR,
  90. .suspend_set = SPITZ_SCP2_SUS_SET,
  91. };
  92. struct platform_device spitzscoop2_device = {
  93. .name = "sharp-scoop",
  94. .id = 1,
  95. .dev = {
  96. .platform_data = &spitz_scoop2_setup,
  97. },
  98. .num_resources = ARRAY_SIZE(spitz_scoop2_resources),
  99. .resource = spitz_scoop2_resources,
  100. };
  101. #define SPITZ_PWR_SD 0x01
  102. #define SPITZ_PWR_CF 0x02
  103. /* Power control is shared with between one of the CF slots and SD */
  104. static void spitz_card_pwr_ctrl(int device, unsigned short new_cpr)
  105. {
  106. unsigned short cpr = read_scoop_reg(&spitzscoop_device.dev, SCOOP_CPR);
  107. if (new_cpr & 0x0007) {
  108. set_scoop_gpio(&spitzscoop_device.dev, SPITZ_SCP_CF_POWER);
  109. if (!(cpr & 0x0002) && !(cpr & 0x0004))
  110. mdelay(5);
  111. if (device == SPITZ_PWR_CF)
  112. cpr |= 0x0002;
  113. if (device == SPITZ_PWR_SD)
  114. cpr |= 0x0004;
  115. write_scoop_reg(&spitzscoop_device.dev, SCOOP_CPR, cpr | new_cpr);
  116. } else {
  117. if (device == SPITZ_PWR_CF)
  118. cpr &= ~0x0002;
  119. if (device == SPITZ_PWR_SD)
  120. cpr &= ~0x0004;
  121. if (!(cpr & 0x0002) && !(cpr & 0x0004)) {
  122. write_scoop_reg(&spitzscoop_device.dev, SCOOP_CPR, 0x0000);
  123. mdelay(1);
  124. reset_scoop_gpio(&spitzscoop_device.dev, SPITZ_SCP_CF_POWER);
  125. } else {
  126. write_scoop_reg(&spitzscoop_device.dev, SCOOP_CPR, cpr | new_cpr);
  127. }
  128. }
  129. }
  130. static void spitz_pcmcia_init(void)
  131. {
  132. /* Setup default state of GPIO outputs
  133. before we enable them as outputs. */
  134. GPSR(GPIO48_nPOE) = GPIO_bit(GPIO48_nPOE) |
  135. GPIO_bit(GPIO49_nPWE) | GPIO_bit(GPIO50_nPIOR) |
  136. GPIO_bit(GPIO51_nPIOW) | GPIO_bit(GPIO54_nPCE_2);
  137. GPSR(GPIO85_nPCE_1) = GPIO_bit(GPIO85_nPCE_1);
  138. pxa_gpio_mode(GPIO48_nPOE_MD);
  139. pxa_gpio_mode(GPIO49_nPWE_MD);
  140. pxa_gpio_mode(GPIO50_nPIOR_MD);
  141. pxa_gpio_mode(GPIO51_nPIOW_MD);
  142. pxa_gpio_mode(GPIO55_nPREG_MD);
  143. pxa_gpio_mode(GPIO56_nPWAIT_MD);
  144. pxa_gpio_mode(GPIO57_nIOIS16_MD);
  145. pxa_gpio_mode(GPIO85_nPCE_1_MD);
  146. pxa_gpio_mode(GPIO54_nPCE_2_MD);
  147. pxa_gpio_mode(GPIO104_pSKTSEL_MD);
  148. }
  149. static void spitz_pcmcia_pwr(struct device *scoop, unsigned short cpr, int nr)
  150. {
  151. /* Only need to override behaviour for slot 0 */
  152. if (nr == 0)
  153. spitz_card_pwr_ctrl(SPITZ_PWR_CF, cpr);
  154. else
  155. write_scoop_reg(scoop, SCOOP_CPR, cpr);
  156. }
  157. static struct scoop_pcmcia_dev spitz_pcmcia_scoop[] = {
  158. {
  159. .dev = &spitzscoop_device.dev,
  160. .irq = SPITZ_IRQ_GPIO_CF_IRQ,
  161. .cd_irq = SPITZ_IRQ_GPIO_CF_CD,
  162. .cd_irq_str = "PCMCIA0 CD",
  163. },{
  164. .dev = &spitzscoop2_device.dev,
  165. .irq = SPITZ_IRQ_GPIO_CF2_IRQ,
  166. .cd_irq = -1,
  167. },
  168. };
  169. static struct scoop_pcmcia_config spitz_pcmcia_config = {
  170. .devs = &spitz_pcmcia_scoop[0],
  171. .num_devs = 2,
  172. .pcmcia_init = spitz_pcmcia_init,
  173. .power_ctrl = spitz_pcmcia_pwr,
  174. };
  175. EXPORT_SYMBOL(spitzscoop_device);
  176. EXPORT_SYMBOL(spitzscoop2_device);
  177. /*
  178. * Spitz SSP Device
  179. *
  180. * Set the parent as the scoop device because a lot of SSP devices
  181. * also use scoop functions and this makes the power up/down order
  182. * work correctly.
  183. */
  184. struct platform_device spitzssp_device = {
  185. .name = "corgi-ssp",
  186. .dev = {
  187. .parent = &spitzscoop_device.dev,
  188. },
  189. .id = -1,
  190. };
  191. struct corgissp_machinfo spitz_ssp_machinfo = {
  192. .port = 2,
  193. .cs_lcdcon = SPITZ_GPIO_LCDCON_CS,
  194. .cs_ads7846 = SPITZ_GPIO_ADS7846_CS,
  195. .cs_max1111 = SPITZ_GPIO_MAX1111_CS,
  196. .clk_lcdcon = 520,
  197. .clk_ads7846 = 14,
  198. .clk_max1111 = 56,
  199. };
  200. /*
  201. * Spitz Backlight Device
  202. */
  203. static void spitz_bl_kick_battery(void)
  204. {
  205. void (*kick_batt)(void);
  206. kick_batt = symbol_get(sharpsl_battery_kick);
  207. if (kick_batt) {
  208. kick_batt();
  209. symbol_put(sharpsl_battery_kick);
  210. }
  211. }
  212. static struct generic_bl_info spitz_bl_machinfo = {
  213. .name = "corgi-bl",
  214. .default_intensity = 0x1f,
  215. .limit_mask = 0x0b,
  216. .max_intensity = 0x2f,
  217. .kick_battery = spitz_bl_kick_battery,
  218. };
  219. static struct platform_device spitzbl_device = {
  220. .name = "generic-bl",
  221. .dev = {
  222. .platform_data = &spitz_bl_machinfo,
  223. },
  224. .id = -1,
  225. };
  226. /*
  227. * Spitz Keyboard Device
  228. */
  229. static struct platform_device spitzkbd_device = {
  230. .name = "spitz-keyboard",
  231. .id = -1,
  232. };
  233. /*
  234. * Spitz LEDs
  235. */
  236. static struct platform_device spitzled_device = {
  237. .name = "spitz-led",
  238. .id = -1,
  239. };
  240. /*
  241. * Spitz Touch Screen Device
  242. */
  243. static unsigned long (*get_hsync_invperiod)(struct device *dev);
  244. static void inline sharpsl_wait_sync(int gpio)
  245. {
  246. while((GPLR(gpio) & GPIO_bit(gpio)) == 0);
  247. while((GPLR(gpio) & GPIO_bit(gpio)) != 0);
  248. }
  249. static struct device *spitz_pxafb_dev;
  250. static int is_pxafb_device(struct device * dev, void * data)
  251. {
  252. struct platform_device *pdev = container_of(dev, struct platform_device, dev);
  253. return (strncmp(pdev->name, "pxa2xx-fb", 9) == 0);
  254. }
  255. static unsigned long spitz_get_hsync_invperiod(void)
  256. {
  257. #ifdef CONFIG_FB_PXA
  258. if (!spitz_pxafb_dev) {
  259. spitz_pxafb_dev = bus_find_device(&platform_bus_type, NULL, NULL, is_pxafb_device);
  260. if (!spitz_pxafb_dev)
  261. return 0;
  262. }
  263. if (!get_hsync_invperiod)
  264. get_hsync_invperiod = symbol_get(pxafb_get_hsync_time);
  265. if (!get_hsync_invperiod)
  266. #endif
  267. return 0;
  268. return get_hsync_invperiod(spitz_pxafb_dev);
  269. }
  270. static void spitz_put_hsync(void)
  271. {
  272. put_device(spitz_pxafb_dev);
  273. if (get_hsync_invperiod)
  274. symbol_put(pxafb_get_hsync_time);
  275. spitz_pxafb_dev = NULL;
  276. get_hsync_invperiod = NULL;
  277. }
  278. static void spitz_wait_hsync(void)
  279. {
  280. sharpsl_wait_sync(SPITZ_GPIO_HSYNC);
  281. }
  282. static struct resource spitzts_resources[] = {
  283. [0] = {
  284. .start = SPITZ_IRQ_GPIO_TP_INT,
  285. .end = SPITZ_IRQ_GPIO_TP_INT,
  286. .flags = IORESOURCE_IRQ,
  287. },
  288. };
  289. static struct corgits_machinfo spitz_ts_machinfo = {
  290. .get_hsync_invperiod = spitz_get_hsync_invperiod,
  291. .put_hsync = spitz_put_hsync,
  292. .wait_hsync = spitz_wait_hsync,
  293. };
  294. static struct platform_device spitzts_device = {
  295. .name = "corgi-ts",
  296. .dev = {
  297. .parent = &spitzssp_device.dev,
  298. .platform_data = &spitz_ts_machinfo,
  299. },
  300. .id = -1,
  301. .num_resources = ARRAY_SIZE(spitzts_resources),
  302. .resource = spitzts_resources,
  303. };
  304. /*
  305. * MMC/SD Device
  306. *
  307. * The card detect interrupt isn't debounced so we delay it by 250ms
  308. * to give the card a chance to fully insert/eject.
  309. */
  310. static struct pxamci_platform_data spitz_mci_platform_data;
  311. static int spitz_mci_init(struct device *dev, irq_handler_t spitz_detect_int, void *data)
  312. {
  313. int err;
  314. /* setup GPIO for PXA27x MMC controller */
  315. pxa_gpio_mode(GPIO32_MMCCLK_MD);
  316. pxa_gpio_mode(GPIO112_MMCCMD_MD);
  317. pxa_gpio_mode(GPIO92_MMCDAT0_MD);
  318. pxa_gpio_mode(GPIO109_MMCDAT1_MD);
  319. pxa_gpio_mode(GPIO110_MMCDAT2_MD);
  320. pxa_gpio_mode(GPIO111_MMCDAT3_MD);
  321. pxa_gpio_mode(SPITZ_GPIO_nSD_DETECT | GPIO_IN);
  322. pxa_gpio_mode(SPITZ_GPIO_nSD_WP | GPIO_IN);
  323. spitz_mci_platform_data.detect_delay = msecs_to_jiffies(250);
  324. err = request_irq(SPITZ_IRQ_GPIO_nSD_DETECT, spitz_detect_int,
  325. IRQF_DISABLED | IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
  326. "MMC card detect", data);
  327. if (err)
  328. printk(KERN_ERR "spitz_mci_init: MMC/SD: can't request MMC card detect IRQ\n");
  329. return err;
  330. }
  331. static void spitz_mci_setpower(struct device *dev, unsigned int vdd)
  332. {
  333. struct pxamci_platform_data* p_d = dev->platform_data;
  334. if (( 1 << vdd) & p_d->ocr_mask)
  335. spitz_card_pwr_ctrl(SPITZ_PWR_SD, 0x0004);
  336. else
  337. spitz_card_pwr_ctrl(SPITZ_PWR_SD, 0x0000);
  338. }
  339. static int spitz_mci_get_ro(struct device *dev)
  340. {
  341. return GPLR(SPITZ_GPIO_nSD_WP) & GPIO_bit(SPITZ_GPIO_nSD_WP);
  342. }
  343. static void spitz_mci_exit(struct device *dev, void *data)
  344. {
  345. free_irq(SPITZ_IRQ_GPIO_nSD_DETECT, data);
  346. }
  347. static struct pxamci_platform_data spitz_mci_platform_data = {
  348. .ocr_mask = MMC_VDD_32_33|MMC_VDD_33_34,
  349. .init = spitz_mci_init,
  350. .get_ro = spitz_mci_get_ro,
  351. .setpower = spitz_mci_setpower,
  352. .exit = spitz_mci_exit,
  353. };
  354. /*
  355. * USB Host (OHCI)
  356. */
  357. static int spitz_ohci_init(struct device *dev)
  358. {
  359. /* Only Port 2 is connected */
  360. pxa_gpio_mode(SPITZ_GPIO_USB_CONNECT | GPIO_IN);
  361. pxa_gpio_mode(SPITZ_GPIO_USB_HOST | GPIO_OUT);
  362. pxa_gpio_mode(SPITZ_GPIO_USB_DEVICE | GPIO_IN);
  363. /* Setup USB Port 2 Output Control Register */
  364. UP2OCR = UP2OCR_HXS | UP2OCR_HXOE | UP2OCR_DPPDE | UP2OCR_DMPDE;
  365. GPSR(SPITZ_GPIO_USB_HOST) = GPIO_bit(SPITZ_GPIO_USB_HOST);
  366. UHCHR = (UHCHR) &
  367. ~(UHCHR_SSEP1 | UHCHR_SSEP2 | UHCHR_SSEP3 | UHCHR_SSE);
  368. UHCRHDA |= UHCRHDA_NOCP;
  369. return 0;
  370. }
  371. static struct pxaohci_platform_data spitz_ohci_platform_data = {
  372. .port_mode = PMM_NPS_MODE,
  373. .init = spitz_ohci_init,
  374. .power_budget = 150,
  375. };
  376. /*
  377. * Irda
  378. */
  379. static void spitz_irda_transceiver_mode(struct device *dev, int mode)
  380. {
  381. if (mode & IR_OFF)
  382. set_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_IR_ON);
  383. else
  384. reset_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_IR_ON);
  385. pxa2xx_transceiver_mode(dev, mode);
  386. }
  387. #ifdef CONFIG_MACH_AKITA
  388. static void akita_irda_transceiver_mode(struct device *dev, int mode)
  389. {
  390. if (mode & IR_OFF)
  391. akita_set_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_IR_ON);
  392. else
  393. akita_reset_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_IR_ON);
  394. pxa2xx_transceiver_mode(dev, mode);
  395. }
  396. #endif
  397. static struct pxaficp_platform_data spitz_ficp_platform_data = {
  398. .transceiver_cap = IR_SIRMODE | IR_OFF,
  399. .transceiver_mode = spitz_irda_transceiver_mode,
  400. };
  401. /*
  402. * Spitz PXA Framebuffer
  403. */
  404. static void spitz_lcd_power(int on, struct fb_var_screeninfo *var)
  405. {
  406. if (on)
  407. corgi_lcdtg_hw_init(var->xres);
  408. else
  409. corgi_lcdtg_suspend();
  410. }
  411. static struct pxafb_mode_info spitz_pxafb_modes[] = {
  412. {
  413. .pixclock = 19231,
  414. .xres = 480,
  415. .yres = 640,
  416. .bpp = 16,
  417. .hsync_len = 40,
  418. .left_margin = 46,
  419. .right_margin = 125,
  420. .vsync_len = 3,
  421. .upper_margin = 1,
  422. .lower_margin = 0,
  423. .sync = 0,
  424. },{
  425. .pixclock = 134617,
  426. .xres = 240,
  427. .yres = 320,
  428. .bpp = 16,
  429. .hsync_len = 20,
  430. .left_margin = 20,
  431. .right_margin = 46,
  432. .vsync_len = 2,
  433. .upper_margin = 1,
  434. .lower_margin = 0,
  435. .sync = 0,
  436. },
  437. };
  438. static struct pxafb_mach_info spitz_pxafb_info = {
  439. .modes = &spitz_pxafb_modes[0],
  440. .num_modes = 2,
  441. .fixed_modes = 1,
  442. .lccr0 = LCCR0_Color | LCCR0_Sngl | LCCR0_Act | LCCR0_LDDALT | LCCR0_OUC | LCCR0_CMDIM | LCCR0_RDSTM,
  443. .lccr3 = LCCR3_PixRsEdg | LCCR3_OutEnH,
  444. .pxafb_lcd_power = spitz_lcd_power,
  445. };
  446. static struct platform_device *devices[] __initdata = {
  447. &spitzscoop_device,
  448. &spitzssp_device,
  449. &spitzkbd_device,
  450. &spitzts_device,
  451. &spitzbl_device,
  452. &spitzled_device,
  453. };
  454. static void spitz_poweroff(void)
  455. {
  456. arm_machine_restart('g');
  457. }
  458. static void spitz_restart(char mode)
  459. {
  460. /* Bootloader magic for a reboot */
  461. if((MSC0 & 0xffff0000) == 0x7ff00000)
  462. MSC0 = (MSC0 & 0xffff) | 0x7ee00000;
  463. spitz_poweroff();
  464. }
  465. static void __init common_init(void)
  466. {
  467. init_gpio_reset(SPITZ_GPIO_ON_RESET);
  468. pm_power_off = spitz_poweroff;
  469. arm_pm_restart = spitz_restart;
  470. PMCR = 0x00;
  471. /* setup sleep mode values */
  472. PWER = 0x00000002;
  473. PFER = 0x00000000;
  474. PRER = 0x00000002;
  475. PGSR0 = 0x0158C000;
  476. PGSR1 = 0x00FF0080;
  477. PGSR2 = 0x0001C004;
  478. /* Stop 3.6MHz and drive HIGH to PCMCIA and CS */
  479. PCFR |= PCFR_OPDE;
  480. corgi_ssp_set_machinfo(&spitz_ssp_machinfo);
  481. pxa_gpio_mode(SPITZ_GPIO_HSYNC | GPIO_IN);
  482. platform_add_devices(devices, ARRAY_SIZE(devices));
  483. pxa_set_mci_info(&spitz_mci_platform_data);
  484. pxa_set_ohci_info(&spitz_ohci_platform_data);
  485. pxa_set_ficp_info(&spitz_ficp_platform_data);
  486. set_pxa_fb_parent(&spitzssp_device.dev);
  487. set_pxa_fb_info(&spitz_pxafb_info);
  488. }
  489. #if defined(CONFIG_MACH_SPITZ) || defined(CONFIG_MACH_BORZOI)
  490. static void spitz_bl_set_intensity(int intensity)
  491. {
  492. if (intensity > 0x10)
  493. intensity += 0x10;
  494. /* Bits 0-4 are accessed via the SSP interface */
  495. corgi_ssp_blduty_set(intensity & 0x1f);
  496. /* Bit 5 is via SCOOP */
  497. if (intensity & 0x0020)
  498. reset_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_BACKLIGHT_CONT);
  499. else
  500. set_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_BACKLIGHT_CONT);
  501. if (intensity)
  502. set_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_BACKLIGHT_ON);
  503. else
  504. reset_scoop_gpio(&spitzscoop2_device.dev, SPITZ_SCP2_BACKLIGHT_ON);
  505. }
  506. static void __init spitz_init(void)
  507. {
  508. platform_scoop_config = &spitz_pcmcia_config;
  509. spitz_bl_machinfo.set_bl_intensity = spitz_bl_set_intensity;
  510. common_init();
  511. platform_device_register(&spitzscoop2_device);
  512. }
  513. #endif
  514. #ifdef CONFIG_MACH_AKITA
  515. /*
  516. * Akita IO Expander
  517. */
  518. struct platform_device akitaioexp_device = {
  519. .name = "akita-ioexp",
  520. .id = -1,
  521. };
  522. EXPORT_SYMBOL_GPL(akitaioexp_device);
  523. static void akita_bl_set_intensity(int intensity)
  524. {
  525. if (intensity > 0x10)
  526. intensity += 0x10;
  527. /* Bits 0-4 are accessed via the SSP interface */
  528. corgi_ssp_blduty_set(intensity & 0x1f);
  529. /* Bit 5 is via IO-Expander */
  530. if (intensity & 0x0020)
  531. akita_reset_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_BACKLIGHT_CONT);
  532. else
  533. akita_set_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_BACKLIGHT_CONT);
  534. if (intensity)
  535. akita_set_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_BACKLIGHT_ON);
  536. else
  537. akita_reset_ioexp(&akitaioexp_device.dev, AKITA_IOEXP_BACKLIGHT_ON);
  538. }
  539. static void __init akita_init(void)
  540. {
  541. spitz_ficp_platform_data.transceiver_mode = akita_irda_transceiver_mode;
  542. /* We just pretend the second element of the array doesn't exist */
  543. spitz_pcmcia_config.num_devs = 1;
  544. platform_scoop_config = &spitz_pcmcia_config;
  545. spitz_bl_machinfo.set_bl_intensity = akita_bl_set_intensity;
  546. platform_device_register(&akitaioexp_device);
  547. spitzscoop_device.dev.parent = &akitaioexp_device.dev;
  548. common_init();
  549. }
  550. #endif
  551. static void __init fixup_spitz(struct machine_desc *desc,
  552. struct tag *tags, char **cmdline, struct meminfo *mi)
  553. {
  554. sharpsl_save_param();
  555. mi->nr_banks = 1;
  556. mi->bank[0].start = 0xa0000000;
  557. mi->bank[0].node = 0;
  558. mi->bank[0].size = (64*1024*1024);
  559. }
  560. #ifdef CONFIG_MACH_SPITZ
  561. MACHINE_START(SPITZ, "SHARP Spitz")
  562. .phys_io = 0x40000000,
  563. .io_pg_offst = (io_p2v(0x40000000) >> 18) & 0xfffc,
  564. .fixup = fixup_spitz,
  565. .map_io = pxa_map_io,
  566. .init_irq = pxa27x_init_irq,
  567. .init_machine = spitz_init,
  568. .timer = &pxa_timer,
  569. MACHINE_END
  570. #endif
  571. #ifdef CONFIG_MACH_BORZOI
  572. MACHINE_START(BORZOI, "SHARP Borzoi")
  573. .phys_io = 0x40000000,
  574. .io_pg_offst = (io_p2v(0x40000000) >> 18) & 0xfffc,
  575. .fixup = fixup_spitz,
  576. .map_io = pxa_map_io,
  577. .init_irq = pxa27x_init_irq,
  578. .init_machine = spitz_init,
  579. .timer = &pxa_timer,
  580. MACHINE_END
  581. #endif
  582. #ifdef CONFIG_MACH_AKITA
  583. MACHINE_START(AKITA, "SHARP Akita")
  584. .phys_io = 0x40000000,
  585. .io_pg_offst = (io_p2v(0x40000000) >> 18) & 0xfffc,
  586. .fixup = fixup_spitz,
  587. .map_io = pxa_map_io,
  588. .init_irq = pxa27x_init_irq,
  589. .init_machine = akita_init,
  590. .timer = &pxa_timer,
  591. MACHINE_END
  592. #endif