Merge tag 'for-5.1-part2-tag' of git://git.kernel.org/pub/scm/linux/kernel/git/kdave...
[sfrench/cifs-2.6.git] / arch / arm / mach-pxa / em-x270.c
1 /*
2  * Support for CompuLab EM-X270 platform
3  *
4  * Copyright (C) 2007, 2008 CompuLab, Ltd.
5  * Author: Mike Rapoport <mike@compulab.co.il>
6  *
7  * This program is free software; you can redistribute it and/or modify
8  * it under the terms of the GNU General Public License version 2 as
9  * published by the Free Software Foundation.
10  */
11
12 #include <linux/irq.h>
13 #include <linux/platform_device.h>
14 #include <linux/delay.h>
15
16 #include <linux/dm9000.h>
17 #include <linux/platform_data/rtc-v3020.h>
18 #include <linux/mtd/platnand.h>
19 #include <linux/mtd/physmap.h>
20 #include <linux/input.h>
21 #include <linux/gpio_keys.h>
22 #include <linux/gpio.h>
23 #include <linux/gpio/machine.h>
24 #include <linux/mfd/da903x.h>
25 #include <linux/regulator/machine.h>
26 #include <linux/regulator/fixed.h>
27 #include <linux/spi/spi.h>
28 #include <linux/spi/tdo24m.h>
29 #include <linux/spi/libertas_spi.h>
30 #include <linux/spi/pxa2xx_spi.h>
31 #include <linux/power_supply.h>
32 #include <linux/apm-emulation.h>
33 #include <linux/i2c.h>
34 #include <linux/platform_data/pca953x.h>
35 #include <linux/platform_data/i2c-pxa.h>
36 #include <linux/regulator/userspace-consumer.h>
37
38 #include <asm/mach-types.h>
39 #include <asm/mach/arch.h>
40
41 #include "pxa27x.h"
42 #include "pxa27x-udc.h"
43 #include <mach/audio.h>
44 #include <linux/platform_data/video-pxafb.h>
45 #include <linux/platform_data/usb-ohci-pxa27x.h>
46 #include <linux/platform_data/mmc-pxamci.h>
47 #include <linux/platform_data/keypad-pxa27x.h>
48 #include <linux/platform_data/media/camera-pxa.h>
49
50 #include "generic.h"
51 #include "devices.h"
52
53 /* EM-X270 specific GPIOs */
54 #define GPIO13_MMC_CD           (13)
55 #define GPIO95_MMC_WP           (95)
56 #define GPIO56_NAND_RB          (56)
57 #define GPIO93_CAM_RESET        (93)
58 #define GPIO16_USB_HUB_RESET    (16)
59
60 /* eXeda specific GPIOs */
61 #define GPIO114_MMC_CD          (114)
62 #define GPIO20_NAND_RB          (20)
63 #define GPIO38_SD_PWEN          (38)
64 #define GPIO37_WLAN_RST         (37)
65 #define GPIO95_TOUCHPAD_INT     (95)
66 #define GPIO130_CAM_RESET       (130)
67 #define GPIO10_USB_HUB_RESET    (10)
68
69 /* common  GPIOs */
70 #define GPIO11_NAND_CS          (11)
71 #define GPIO41_ETHIRQ           (41)
72 #define EM_X270_ETHIRQ          PXA_GPIO_TO_IRQ(GPIO41_ETHIRQ)
73 #define GPIO115_WLAN_PWEN       (115)
74 #define GPIO19_WLAN_STRAP       (19)
75 #define GPIO9_USB_VBUS_EN       (9)
76
77 static int mmc_cd;
78 static int nand_rb;
79 static int dm9000_flags;
80 static int cam_reset;
81 static int usb_hub_reset;
82
83 static unsigned long common_pin_config[] = {
84         /* AC'97 */
85         GPIO28_AC97_BITCLK,
86         GPIO29_AC97_SDATA_IN_0,
87         GPIO30_AC97_SDATA_OUT,
88         GPIO31_AC97_SYNC,
89         GPIO98_AC97_SYSCLK,
90         GPIO113_AC97_nRESET,
91
92         /* BTUART */
93         GPIO42_BTUART_RXD,
94         GPIO43_BTUART_TXD,
95         GPIO44_BTUART_CTS,
96         GPIO45_BTUART_RTS,
97
98         /* STUART */
99         GPIO46_STUART_RXD,
100         GPIO47_STUART_TXD,
101
102         /* MCI controller */
103         GPIO32_MMC_CLK,
104         GPIO112_MMC_CMD,
105         GPIO92_MMC_DAT_0,
106         GPIO109_MMC_DAT_1,
107         GPIO110_MMC_DAT_2,
108         GPIO111_MMC_DAT_3,
109
110         /* LCD */
111         GPIOxx_LCD_TFT_16BPP,
112
113         /* QCI */
114         GPIO84_CIF_FV,
115         GPIO25_CIF_LV,
116         GPIO53_CIF_MCLK,
117         GPIO54_CIF_PCLK,
118         GPIO81_CIF_DD_0,
119         GPIO55_CIF_DD_1,
120         GPIO51_CIF_DD_2,
121         GPIO50_CIF_DD_3,
122         GPIO52_CIF_DD_4,
123         GPIO48_CIF_DD_5,
124         GPIO17_CIF_DD_6,
125         GPIO12_CIF_DD_7,
126
127         /* I2C */
128         GPIO117_I2C_SCL,
129         GPIO118_I2C_SDA,
130
131         /* Keypad */
132         GPIO100_KP_MKIN_0       | WAKEUP_ON_LEVEL_HIGH,
133         GPIO101_KP_MKIN_1       | WAKEUP_ON_LEVEL_HIGH,
134         GPIO102_KP_MKIN_2       | WAKEUP_ON_LEVEL_HIGH,
135         GPIO34_KP_MKIN_3        | WAKEUP_ON_LEVEL_HIGH,
136         GPIO39_KP_MKIN_4        | WAKEUP_ON_LEVEL_HIGH,
137         GPIO99_KP_MKIN_5        | WAKEUP_ON_LEVEL_HIGH,
138         GPIO91_KP_MKIN_6        | WAKEUP_ON_LEVEL_HIGH,
139         GPIO36_KP_MKIN_7        | WAKEUP_ON_LEVEL_HIGH,
140         GPIO103_KP_MKOUT_0,
141         GPIO104_KP_MKOUT_1,
142         GPIO105_KP_MKOUT_2,
143         GPIO106_KP_MKOUT_3,
144         GPIO107_KP_MKOUT_4,
145         GPIO108_KP_MKOUT_5,
146         GPIO96_KP_MKOUT_6,
147         GPIO22_KP_MKOUT_7,
148
149         /* SSP1 */
150         GPIO26_SSP1_RXD,
151         GPIO23_SSP1_SCLK,
152         GPIO24_SSP1_SFRM,
153         GPIO57_SSP1_TXD,
154
155         /* SSP2 */
156         GPIO19_GPIO,    /* SSP2 clock is used as GPIO for Libertas pin-strap */
157         GPIO14_GPIO,
158         GPIO89_SSP2_TXD,
159         GPIO88_SSP2_RXD,
160
161         /* SDRAM and local bus */
162         GPIO15_nCS_1,
163         GPIO78_nCS_2,
164         GPIO79_nCS_3,
165         GPIO80_nCS_4,
166         GPIO49_nPWE,
167         GPIO18_RDY,
168
169         /* GPIO */
170         GPIO1_GPIO | WAKEUP_ON_EDGE_BOTH,       /* sleep/resume button */
171
172         /* power controls */
173         GPIO20_GPIO     | MFP_LPM_DRIVE_LOW,    /* GPRS_PWEN */
174         GPIO115_GPIO    | MFP_LPM_DRIVE_LOW,    /* WLAN_PWEN */
175
176         /* NAND controls */
177         GPIO11_GPIO     | MFP_LPM_DRIVE_HIGH,   /* NAND CE# */
178
179         /* interrupts */
180         GPIO41_GPIO,    /* DM9000 interrupt */
181 };
182
183 static unsigned long em_x270_pin_config[] = {
184         GPIO13_GPIO,                            /* MMC card detect */
185         GPIO16_GPIO,                            /* USB hub reset */
186         GPIO56_GPIO,                            /* NAND Ready/Busy */
187         GPIO93_GPIO     | MFP_LPM_DRIVE_LOW,    /* Camera reset */
188         GPIO95_GPIO,                            /* MMC Write protect */
189 };
190
191 static unsigned long exeda_pin_config[] = {
192         GPIO10_GPIO,                            /* USB hub reset */
193         GPIO20_GPIO,                            /* NAND Ready/Busy */
194         GPIO38_GPIO     | MFP_LPM_DRIVE_LOW,    /* SD slot power */
195         GPIO95_GPIO,                            /* touchpad IRQ */
196         GPIO114_GPIO,                           /* MMC card detect */
197 };
198
199 #if defined(CONFIG_DM9000) || defined(CONFIG_DM9000_MODULE)
200 static struct resource em_x270_dm9000_resource[] = {
201         [0] = {
202                 .start = PXA_CS2_PHYS,
203                 .end   = PXA_CS2_PHYS + 3,
204                 .flags = IORESOURCE_MEM,
205         },
206         [1] = {
207                 .start = PXA_CS2_PHYS + 8,
208                 .end   = PXA_CS2_PHYS + 8 + 0x3f,
209                 .flags = IORESOURCE_MEM,
210         },
211         [2] = {
212                 .start = EM_X270_ETHIRQ,
213                 .end   = EM_X270_ETHIRQ,
214                 .flags = IORESOURCE_IRQ | IORESOURCE_IRQ_HIGHEDGE,
215         }
216 };
217
218 static struct dm9000_plat_data em_x270_dm9000_platdata = {
219         .flags          = DM9000_PLATF_NO_EEPROM,
220 };
221
222 static struct platform_device em_x270_dm9000 = {
223         .name           = "dm9000",
224         .id             = 0,
225         .num_resources  = ARRAY_SIZE(em_x270_dm9000_resource),
226         .resource       = em_x270_dm9000_resource,
227         .dev            = {
228                 .platform_data = &em_x270_dm9000_platdata,
229         }
230 };
231
232 static void __init em_x270_init_dm9000(void)
233 {
234         em_x270_dm9000_platdata.flags |= dm9000_flags;
235         platform_device_register(&em_x270_dm9000);
236 }
237 #else
238 static inline void em_x270_init_dm9000(void) {}
239 #endif
240
241 /* V3020 RTC */
242 #if defined(CONFIG_RTC_DRV_V3020) || defined(CONFIG_RTC_DRV_V3020_MODULE)
243 static struct resource em_x270_v3020_resource[] = {
244         [0] = {
245                 .start = PXA_CS4_PHYS,
246                 .end   = PXA_CS4_PHYS + 3,
247                 .flags = IORESOURCE_MEM,
248         },
249 };
250
251 static struct v3020_platform_data em_x270_v3020_platdata = {
252         .leftshift = 0,
253 };
254
255 static struct platform_device em_x270_rtc = {
256         .name           = "v3020",
257         .num_resources  = ARRAY_SIZE(em_x270_v3020_resource),
258         .resource       = em_x270_v3020_resource,
259         .id             = -1,
260         .dev            = {
261                 .platform_data = &em_x270_v3020_platdata,
262         }
263 };
264
265 static void __init em_x270_init_rtc(void)
266 {
267         platform_device_register(&em_x270_rtc);
268 }
269 #else
270 static inline void em_x270_init_rtc(void) {}
271 #endif
272
273 /* NAND flash */
274 #if defined(CONFIG_MTD_NAND_PLATFORM) || defined(CONFIG_MTD_NAND_PLATFORM_MODULE)
275 static inline void nand_cs_on(void)
276 {
277         gpio_set_value(GPIO11_NAND_CS, 0);
278 }
279
280 static void nand_cs_off(void)
281 {
282         dsb();
283
284         gpio_set_value(GPIO11_NAND_CS, 1);
285 }
286
287 /* hardware specific access to control-lines */
288 static void em_x270_nand_cmd_ctl(struct nand_chip *this, int dat,
289                                  unsigned int ctrl)
290 {
291         unsigned long nandaddr = (unsigned long)this->legacy.IO_ADDR_W;
292
293         dsb();
294
295         if (ctrl & NAND_CTRL_CHANGE) {
296                 if (ctrl & NAND_ALE)
297                         nandaddr |=  (1 << 3);
298                 else
299                         nandaddr &= ~(1 << 3);
300                 if (ctrl & NAND_CLE)
301                         nandaddr |=  (1 << 2);
302                 else
303                         nandaddr &= ~(1 << 2);
304                 if (ctrl & NAND_NCE)
305                         nand_cs_on();
306                 else
307                         nand_cs_off();
308         }
309
310         dsb();
311         this->legacy.IO_ADDR_W = (void __iomem *)nandaddr;
312         if (dat != NAND_CMD_NONE)
313                 writel(dat, this->legacy.IO_ADDR_W);
314
315         dsb();
316 }
317
318 /* read device ready pin */
319 static int em_x270_nand_device_ready(struct nand_chip *this)
320 {
321         dsb();
322
323         return gpio_get_value(nand_rb);
324 }
325
326 static struct mtd_partition em_x270_partition_info[] = {
327         [0] = {
328                 .name   = "em_x270-0",
329                 .offset = 0,
330                 .size   = SZ_4M,
331         },
332         [1] = {
333                 .name   = "em_x270-1",
334                 .offset = MTDPART_OFS_APPEND,
335                 .size   = MTDPART_SIZ_FULL
336         },
337 };
338
339 struct platform_nand_data em_x270_nand_platdata = {
340         .chip = {
341                 .nr_chips = 1,
342                 .chip_offset = 0,
343                 .nr_partitions = ARRAY_SIZE(em_x270_partition_info),
344                 .partitions = em_x270_partition_info,
345                 .chip_delay = 20,
346         },
347         .ctrl = {
348                 .dev_ready = em_x270_nand_device_ready,
349                 .select_chip = 0,
350                 .cmd_ctrl = em_x270_nand_cmd_ctl,
351         },
352 };
353
354 static struct resource em_x270_nand_resource[] = {
355         [0] = {
356                 .start = PXA_CS1_PHYS,
357                 .end   = PXA_CS1_PHYS + 12,
358                 .flags = IORESOURCE_MEM,
359         },
360 };
361
362 static struct platform_device em_x270_nand = {
363         .name           = "gen_nand",
364         .num_resources  = ARRAY_SIZE(em_x270_nand_resource),
365         .resource       = em_x270_nand_resource,
366         .id             = -1,
367         .dev            = {
368                 .platform_data = &em_x270_nand_platdata,
369         }
370 };
371
372 static void __init em_x270_init_nand(void)
373 {
374         int err;
375
376         err = gpio_request(GPIO11_NAND_CS, "NAND CS");
377         if (err) {
378                 pr_warn("EM-X270: failed to request NAND CS gpio\n");
379                 return;
380         }
381
382         gpio_direction_output(GPIO11_NAND_CS, 1);
383
384         err = gpio_request(nand_rb, "NAND R/B");
385         if (err) {
386                 pr_warn("EM-X270: failed to request NAND R/B gpio\n");
387                 gpio_free(GPIO11_NAND_CS);
388                 return;
389         }
390
391         gpio_direction_input(nand_rb);
392
393         platform_device_register(&em_x270_nand);
394 }
395 #else
396 static inline void em_x270_init_nand(void) {}
397 #endif
398
399 #if defined(CONFIG_MTD_PHYSMAP) || defined(CONFIG_MTD_PHYSMAP_MODULE)
400 static struct mtd_partition em_x270_nor_parts[] = {
401         {
402                 .name =         "Bootloader",
403                 .offset =       0x00000000,
404                 .size =         0x00050000,
405                 .mask_flags =   MTD_WRITEABLE  /* force read-only */
406         }, {
407                 .name =         "Environment",
408                 .offset =       0x00050000,
409                 .size =         0x00010000,
410         }, {
411                 .name =         "Reserved",
412                 .offset =       0x00060000,
413                 .size =         0x00050000,
414                 .mask_flags =   MTD_WRITEABLE  /* force read-only */
415         }, {
416                 .name =         "Splashscreen",
417                 .offset =       0x000b0000,
418                 .size =         0x00050000,
419         }
420 };
421
422 static struct physmap_flash_data em_x270_nor_data[] = {
423         [0] = {
424                 .width = 2,
425                 .parts = em_x270_nor_parts,
426                 .nr_parts = ARRAY_SIZE(em_x270_nor_parts),
427         },
428 };
429
430 static struct resource em_x270_nor_flash_resource = {
431         .start  = PXA_CS0_PHYS,
432         .end    = PXA_CS0_PHYS + SZ_1M - 1,
433         .flags  = IORESOURCE_MEM,
434 };
435
436 static struct platform_device em_x270_physmap_flash = {
437         .name           = "physmap-flash",
438         .id             = 0,
439         .num_resources  = 1,
440         .resource       = &em_x270_nor_flash_resource,
441         .dev            = {
442                 .platform_data  = &em_x270_nor_data,
443         },
444 };
445
446 static void __init em_x270_init_nor(void)
447 {
448         platform_device_register(&em_x270_physmap_flash);
449 }
450 #else
451 static inline void em_x270_init_nor(void) {}
452 #endif
453
454 /* PXA27x OHCI controller setup */
455 #if defined(CONFIG_USB_OHCI_HCD) || defined(CONFIG_USB_OHCI_HCD_MODULE)
456 static struct regulator *em_x270_usb_ldo;
457
458 static int em_x270_usb_hub_init(void)
459 {
460         int err;
461
462         em_x270_usb_ldo = regulator_get(NULL, "vcc usb");
463         if (IS_ERR(em_x270_usb_ldo))
464                 return PTR_ERR(em_x270_usb_ldo);
465
466         err = gpio_request(GPIO9_USB_VBUS_EN, "vbus en");
467         if (err)
468                 goto err_free_usb_ldo;
469
470         err = gpio_request(usb_hub_reset, "hub rst");
471         if (err)
472                 goto err_free_vbus_gpio;
473
474         /* USB Hub power-on and reset */
475         gpio_direction_output(usb_hub_reset, 1);
476         gpio_direction_output(GPIO9_USB_VBUS_EN, 0);
477         err = regulator_enable(em_x270_usb_ldo);
478         if (err)
479                 goto err_free_rst_gpio;
480
481         gpio_set_value(usb_hub_reset, 0);
482         gpio_set_value(usb_hub_reset, 1);
483         regulator_disable(em_x270_usb_ldo);
484         err = regulator_enable(em_x270_usb_ldo);
485         if (err)
486                 goto err_free_rst_gpio;
487
488         gpio_set_value(usb_hub_reset, 0);
489         gpio_set_value(GPIO9_USB_VBUS_EN, 1);
490
491         return 0;
492
493 err_free_rst_gpio:
494         gpio_free(usb_hub_reset);
495 err_free_vbus_gpio:
496         gpio_free(GPIO9_USB_VBUS_EN);
497 err_free_usb_ldo:
498         regulator_put(em_x270_usb_ldo);
499
500         return err;
501 }
502
503 static int em_x270_ohci_init(struct device *dev)
504 {
505         int err;
506
507         /* we don't want to entirely disable USB if the HUB init failed */
508         err = em_x270_usb_hub_init();
509         if (err)
510                 pr_err("USB Hub initialization failed: %d\n", err);
511
512         /* enable port 2 transiever */
513         UP2OCR = UP2OCR_HXS | UP2OCR_HXOE;
514
515         return 0;
516 }
517
518 static void em_x270_ohci_exit(struct device *dev)
519 {
520         gpio_free(usb_hub_reset);
521         gpio_free(GPIO9_USB_VBUS_EN);
522
523         if (!IS_ERR(em_x270_usb_ldo)) {
524                 if (regulator_is_enabled(em_x270_usb_ldo))
525                         regulator_disable(em_x270_usb_ldo);
526
527                 regulator_put(em_x270_usb_ldo);
528         }
529 }
530
531 static struct pxaohci_platform_data em_x270_ohci_platform_data = {
532         .port_mode      = PMM_PERPORT_MODE,
533         .flags          = ENABLE_PORT1 | ENABLE_PORT2 | POWER_CONTROL_LOW,
534         .init           = em_x270_ohci_init,
535         .exit           = em_x270_ohci_exit,
536 };
537
538 static void __init em_x270_init_ohci(void)
539 {
540         pxa_set_ohci_info(&em_x270_ohci_platform_data);
541 }
542 #else
543 static inline void em_x270_init_ohci(void) {}
544 #endif
545
546 /* MCI controller setup */
547 #if defined(CONFIG_MMC) || defined(CONFIG_MMC_MODULE)
548 static struct regulator *em_x270_sdio_ldo;
549
550 static struct gpiod_lookup_table em_x270_mci_wp_gpio_table = {
551         .dev_id = "pxa2xx-mci.0",
552         .table = {
553                 /* Write protect on GPIO 95 */
554                 GPIO_LOOKUP("gpio-pxa", GPIO95_MMC_WP, "wp", GPIO_ACTIVE_LOW),
555                 { },
556         },
557 };
558
559 static int em_x270_mci_init(struct device *dev,
560                             irq_handler_t em_x270_detect_int,
561                             void *data)
562 {
563         int err;
564
565         em_x270_sdio_ldo = regulator_get(dev, "vcc sdio");
566         if (IS_ERR(em_x270_sdio_ldo)) {
567                 dev_err(dev, "can't request SDIO power supply: %ld\n",
568                         PTR_ERR(em_x270_sdio_ldo));
569                 return PTR_ERR(em_x270_sdio_ldo);
570         }
571
572         err = request_irq(gpio_to_irq(mmc_cd), em_x270_detect_int,
573                               IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
574                               "MMC card detect", data);
575         if (err) {
576                 dev_err(dev, "can't request MMC card detect IRQ: %d\n", err);
577                 goto err_irq;
578         }
579
580         if (!machine_is_em_x270()) {
581                 err = gpio_request(GPIO38_SD_PWEN, "sdio power");
582                 if (err) {
583                         dev_err(dev, "can't request MMC power control : %d\n",
584                                 err);
585                         goto err_gpio_wp;
586                 }
587                 gpio_direction_output(GPIO38_SD_PWEN, 1);
588         }
589
590         return 0;
591
592 err_gpio_wp:
593         free_irq(gpio_to_irq(mmc_cd), data);
594 err_irq:
595         regulator_put(em_x270_sdio_ldo);
596
597         return err;
598 }
599
600 static int em_x270_mci_setpower(struct device *dev, unsigned int vdd)
601 {
602         struct pxamci_platform_data* p_d = dev->platform_data;
603
604         if ((1 << vdd) & p_d->ocr_mask) {
605                 int vdd_uV = (2000 + (vdd - __ffs(MMC_VDD_20_21)) * 100) * 1000;
606
607                 regulator_set_voltage(em_x270_sdio_ldo, vdd_uV, vdd_uV);
608                 return regulator_enable(em_x270_sdio_ldo);
609         } else {
610                 regulator_disable(em_x270_sdio_ldo);
611         }
612         return 0;
613 }
614
615 static void em_x270_mci_exit(struct device *dev, void *data)
616 {
617         free_irq(gpio_to_irq(mmc_cd), data);
618         regulator_put(em_x270_sdio_ldo);
619
620         if (!machine_is_em_x270())
621                 gpio_free(GPIO38_SD_PWEN);
622 }
623
624 static struct pxamci_platform_data em_x270_mci_platform_data = {
625         .detect_delay_ms        = 250,
626         .ocr_mask               = MMC_VDD_20_21|MMC_VDD_21_22|MMC_VDD_22_23|
627                                   MMC_VDD_24_25|MMC_VDD_25_26|MMC_VDD_26_27|
628                                   MMC_VDD_27_28|MMC_VDD_28_29|MMC_VDD_29_30|
629                                   MMC_VDD_30_31|MMC_VDD_31_32,
630         .init                   = em_x270_mci_init,
631         .setpower               = em_x270_mci_setpower,
632         .exit                   = em_x270_mci_exit,
633 };
634
635 static void __init em_x270_init_mmc(void)
636 {
637         if (machine_is_em_x270())
638                 gpiod_add_lookup_table(&em_x270_mci_wp_gpio_table);
639
640         pxa_set_mci_info(&em_x270_mci_platform_data);
641 }
642 #else
643 static inline void em_x270_init_mmc(void) {}
644 #endif
645
646 /* LCD */
647 #if defined(CONFIG_FB_PXA) || defined(CONFIG_FB_PXA_MODULE)
648 static struct pxafb_mode_info em_x270_lcd_modes[] = {
649         [0] = {
650                 .pixclock       = 38250,
651                 .bpp            = 16,
652                 .xres           = 480,
653                 .yres           = 640,
654                 .hsync_len      = 8,
655                 .vsync_len      = 2,
656                 .left_margin    = 8,
657                 .upper_margin   = 2,
658                 .right_margin   = 24,
659                 .lower_margin   = 4,
660                 .sync           = 0,
661         },
662         [1] = {
663                 .pixclock       = 153800,
664                 .bpp            = 16,
665                 .xres           = 240,
666                 .yres           = 320,
667                 .hsync_len      = 8,
668                 .vsync_len      = 2,
669                 .left_margin    = 8,
670                 .upper_margin   = 2,
671                 .right_margin   = 88,
672                 .lower_margin   = 2,
673                 .sync           = 0,
674         },
675 };
676
677 static struct pxafb_mach_info em_x270_lcd = {
678         .modes          = em_x270_lcd_modes,
679         .num_modes      = 2,
680         .lcd_conn       = LCD_COLOR_TFT_16BPP,
681 };
682
683 static void __init em_x270_init_lcd(void)
684 {
685         pxa_set_fb_info(NULL, &em_x270_lcd);
686 }
687 #else
688 static inline void em_x270_init_lcd(void) {}
689 #endif
690
691 #if defined(CONFIG_SPI_PXA2XX) || defined(CONFIG_SPI_PXA2XX_MODULE)
692 static struct pxa2xx_spi_controller em_x270_spi_info = {
693         .num_chipselect = 1,
694 };
695
696 static struct pxa2xx_spi_chip em_x270_tdo24m_chip = {
697         .rx_threshold   = 1,
698         .tx_threshold   = 1,
699         .gpio_cs        = -1,
700 };
701
702 static struct tdo24m_platform_data em_x270_tdo24m_pdata = {
703         .model = TDO35S,
704 };
705
706 static struct pxa2xx_spi_controller em_x270_spi_2_info = {
707         .num_chipselect = 1,
708         .enable_dma     = 1,
709 };
710
711 static struct pxa2xx_spi_chip em_x270_libertas_chip = {
712         .rx_threshold   = 1,
713         .tx_threshold   = 1,
714         .timeout        = 1000,
715         .gpio_cs        = 14,
716 };
717
718 static unsigned long em_x270_libertas_pin_config[] = {
719         /* SSP2 */
720         GPIO19_SSP2_SCLK,
721         GPIO14_GPIO,
722         GPIO89_SSP2_TXD,
723         GPIO88_SSP2_RXD,
724 };
725
726 static int em_x270_libertas_setup(struct spi_device *spi)
727 {
728         int err = gpio_request(GPIO115_WLAN_PWEN, "WLAN PWEN");
729         if (err)
730                 return err;
731
732         err = gpio_request(GPIO19_WLAN_STRAP, "WLAN STRAP");
733         if (err)
734                 goto err_free_pwen;
735
736         if (machine_is_exeda()) {
737                 err = gpio_request(GPIO37_WLAN_RST, "WLAN RST");
738                 if (err)
739                         goto err_free_strap;
740
741                 gpio_direction_output(GPIO37_WLAN_RST, 1);
742                 msleep(100);
743         }
744
745         gpio_direction_output(GPIO19_WLAN_STRAP, 1);
746         msleep(100);
747
748         pxa2xx_mfp_config(ARRAY_AND_SIZE(em_x270_libertas_pin_config));
749
750         gpio_direction_output(GPIO115_WLAN_PWEN, 0);
751         msleep(100);
752         gpio_set_value(GPIO115_WLAN_PWEN, 1);
753         msleep(100);
754
755         spi->bits_per_word = 16;
756         spi_setup(spi);
757
758         return 0;
759
760 err_free_strap:
761         gpio_free(GPIO19_WLAN_STRAP);
762 err_free_pwen:
763         gpio_free(GPIO115_WLAN_PWEN);
764
765         return err;
766 }
767
768 static int em_x270_libertas_teardown(struct spi_device *spi)
769 {
770         gpio_set_value(GPIO115_WLAN_PWEN, 0);
771         gpio_free(GPIO115_WLAN_PWEN);
772         gpio_free(GPIO19_WLAN_STRAP);
773
774         if (machine_is_exeda()) {
775                 gpio_set_value(GPIO37_WLAN_RST, 0);
776                 gpio_free(GPIO37_WLAN_RST);
777         }
778
779         return 0;
780 }
781
782 struct libertas_spi_platform_data em_x270_libertas_pdata = {
783         .use_dummy_writes       = 1,
784         .setup                  = em_x270_libertas_setup,
785         .teardown               = em_x270_libertas_teardown,
786 };
787
788 static struct spi_board_info em_x270_spi_devices[] __initdata = {
789         {
790                 .modalias               = "tdo24m",
791                 .max_speed_hz           = 1000000,
792                 .bus_num                = 1,
793                 .chip_select            = 0,
794                 .controller_data        = &em_x270_tdo24m_chip,
795                 .platform_data          = &em_x270_tdo24m_pdata,
796         },
797         {
798                 .modalias               = "libertas_spi",
799                 .max_speed_hz           = 13000000,
800                 .bus_num                = 2,
801                 .irq                    = PXA_GPIO_TO_IRQ(116),
802                 .chip_select            = 0,
803                 .controller_data        = &em_x270_libertas_chip,
804                 .platform_data          = &em_x270_libertas_pdata,
805         },
806 };
807
808 static void __init em_x270_init_spi(void)
809 {
810         pxa2xx_set_spi_info(1, &em_x270_spi_info);
811         pxa2xx_set_spi_info(2, &em_x270_spi_2_info);
812         spi_register_board_info(ARRAY_AND_SIZE(em_x270_spi_devices));
813 }
814 #else
815 static inline void em_x270_init_spi(void) {}
816 #endif
817
818 #if defined(CONFIG_SND_PXA2XX_LIB_AC97)
819 static pxa2xx_audio_ops_t em_x270_ac97_info = {
820         .reset_gpio = 113,
821 };
822
823 static void __init em_x270_init_ac97(void)
824 {
825         pxa_set_ac97_info(&em_x270_ac97_info);
826 }
827 #else
828 static inline void em_x270_init_ac97(void) {}
829 #endif
830
831 #if defined(CONFIG_KEYBOARD_PXA27x) || defined(CONFIG_KEYBOARD_PXA27x_MODULE)
832 static const unsigned int em_x270_module_matrix_keys[] = {
833         KEY(0, 0, KEY_A), KEY(1, 0, KEY_UP), KEY(2, 1, KEY_B),
834         KEY(0, 2, KEY_LEFT), KEY(1, 1, KEY_ENTER), KEY(2, 0, KEY_RIGHT),
835         KEY(0, 1, KEY_C), KEY(1, 2, KEY_DOWN), KEY(2, 2, KEY_D),
836 };
837
838 static struct matrix_keymap_data em_x270_matrix_keymap_data = {
839         .keymap                 = em_x270_module_matrix_keys,
840         .keymap_size            = ARRAY_SIZE(em_x270_module_matrix_keys),
841 };
842
843 struct pxa27x_keypad_platform_data em_x270_module_keypad_info = {
844         /* code map for the matrix keys */
845         .matrix_key_rows        = 3,
846         .matrix_key_cols        = 3,
847         .matrix_keymap_data     = &em_x270_matrix_keymap_data,
848 };
849
850 static const unsigned int em_x270_exeda_matrix_keys[] = {
851         KEY(0, 0, KEY_RIGHTSHIFT), KEY(0, 1, KEY_RIGHTCTRL),
852         KEY(0, 2, KEY_RIGHTALT), KEY(0, 3, KEY_SPACE),
853         KEY(0, 4, KEY_LEFTALT), KEY(0, 5, KEY_LEFTCTRL),
854         KEY(0, 6, KEY_ENTER), KEY(0, 7, KEY_SLASH),
855
856         KEY(1, 0, KEY_DOT), KEY(1, 1, KEY_M),
857         KEY(1, 2, KEY_N), KEY(1, 3, KEY_B),
858         KEY(1, 4, KEY_V), KEY(1, 5, KEY_C),
859         KEY(1, 6, KEY_X), KEY(1, 7, KEY_Z),
860
861         KEY(2, 0, KEY_LEFTSHIFT), KEY(2, 1, KEY_SEMICOLON),
862         KEY(2, 2, KEY_L), KEY(2, 3, KEY_K),
863         KEY(2, 4, KEY_J), KEY(2, 5, KEY_H),
864         KEY(2, 6, KEY_G), KEY(2, 7, KEY_F),
865
866         KEY(3, 0, KEY_D), KEY(3, 1, KEY_S),
867         KEY(3, 2, KEY_A), KEY(3, 3, KEY_TAB),
868         KEY(3, 4, KEY_BACKSPACE), KEY(3, 5, KEY_P),
869         KEY(3, 6, KEY_O), KEY(3, 7, KEY_I),
870
871         KEY(4, 0, KEY_U), KEY(4, 1, KEY_Y),
872         KEY(4, 2, KEY_T), KEY(4, 3, KEY_R),
873         KEY(4, 4, KEY_E), KEY(4, 5, KEY_W),
874         KEY(4, 6, KEY_Q), KEY(4, 7, KEY_MINUS),
875
876         KEY(5, 0, KEY_0), KEY(5, 1, KEY_9),
877         KEY(5, 2, KEY_8), KEY(5, 3, KEY_7),
878         KEY(5, 4, KEY_6), KEY(5, 5, KEY_5),
879         KEY(5, 6, KEY_4), KEY(5, 7, KEY_3),
880
881         KEY(6, 0, KEY_2), KEY(6, 1, KEY_1),
882         KEY(6, 2, KEY_ENTER), KEY(6, 3, KEY_END),
883         KEY(6, 4, KEY_DOWN), KEY(6, 5, KEY_UP),
884         KEY(6, 6, KEY_MENU), KEY(6, 7, KEY_F1),
885
886         KEY(7, 0, KEY_LEFT), KEY(7, 1, KEY_RIGHT),
887         KEY(7, 2, KEY_BACK), KEY(7, 3, KEY_HOME),
888         KEY(7, 4, 0), KEY(7, 5, 0),
889         KEY(7, 6, 0), KEY(7, 7, 0),
890 };
891
892 static struct matrix_keymap_data em_x270_exeda_matrix_keymap_data = {
893         .keymap                 = em_x270_exeda_matrix_keys,
894         .keymap_size            = ARRAY_SIZE(em_x270_exeda_matrix_keys),
895 };
896
897 struct pxa27x_keypad_platform_data em_x270_exeda_keypad_info = {
898         /* code map for the matrix keys */
899         .matrix_key_rows        = 8,
900         .matrix_key_cols        = 8,
901         .matrix_keymap_data     = &em_x270_exeda_matrix_keymap_data,
902 };
903
904 static void __init em_x270_init_keypad(void)
905 {
906         if (machine_is_em_x270())
907                 pxa_set_keypad_info(&em_x270_module_keypad_info);
908         else
909                 pxa_set_keypad_info(&em_x270_exeda_keypad_info);
910 }
911 #else
912 static inline void em_x270_init_keypad(void) {}
913 #endif
914
915 #if defined(CONFIG_KEYBOARD_GPIO) || defined(CONFIG_KEYBOARD_GPIO_MODULE)
916 static struct gpio_keys_button gpio_keys_button[] = {
917         [0] = {
918                 .desc   = "sleep/wakeup",
919                 .code   = KEY_SUSPEND,
920                 .type   = EV_PWR,
921                 .gpio   = 1,
922                 .wakeup = 1,
923         },
924 };
925
926 static struct gpio_keys_platform_data em_x270_gpio_keys_data = {
927         .buttons        = gpio_keys_button,
928         .nbuttons       = 1,
929 };
930
931 static struct platform_device em_x270_gpio_keys = {
932         .name           = "gpio-keys",
933         .id             = -1,
934         .dev            = {
935                 .platform_data  = &em_x270_gpio_keys_data,
936         },
937 };
938
939 static void __init em_x270_init_gpio_keys(void)
940 {
941         platform_device_register(&em_x270_gpio_keys);
942 }
943 #else
944 static inline void em_x270_init_gpio_keys(void) {}
945 #endif
946
947 /* Quick Capture Interface and sensor setup */
948 #if defined(CONFIG_VIDEO_PXA27x) || defined(CONFIG_VIDEO_PXA27x_MODULE)
949 static int em_x270_sensor_init(void)
950 {
951         int ret;
952
953         ret = gpio_request(cam_reset, "camera reset");
954         if (ret)
955                 return ret;
956
957         gpio_direction_output(cam_reset, 0);
958         gpio_set_value(cam_reset, 1);
959
960         return 0;
961 }
962
963 static struct regulator_consumer_supply camera_dummy_supplies[] = {
964         REGULATOR_SUPPLY("vdd", "0-005d"),
965 };
966
967 static struct regulator_init_data camera_dummy_initdata = {
968         .consumer_supplies = camera_dummy_supplies,
969         .num_consumer_supplies = ARRAY_SIZE(camera_dummy_supplies),
970         .constraints = {
971                 .valid_ops_mask = REGULATOR_CHANGE_STATUS,
972         },
973 };
974
975 static struct fixed_voltage_config camera_dummy_config = {
976         .supply_name            = "camera_vdd",
977         .input_supply           = "vcc cam",
978         .microvolts             = 2800000,
979         .init_data              = &camera_dummy_initdata,
980 };
981
982 static struct platform_device camera_supply_dummy_device = {
983         .name   = "reg-fixed-voltage",
984         .id     = 1,
985         .dev    = {
986                 .platform_data = &camera_dummy_config,
987         },
988 };
989
990 struct pxacamera_platform_data em_x270_camera_platform_data = {
991         .flags  = PXA_CAMERA_MASTER | PXA_CAMERA_DATAWIDTH_8 |
992                 PXA_CAMERA_PCLK_EN | PXA_CAMERA_MCLK_EN,
993         .mclk_10khz = 2600,
994         .sensor_i2c_adapter_id = 0,
995         .sensor_i2c_address = 0x5d,
996 };
997
998 static void  __init em_x270_init_camera(void)
999 {
1000         if (em_x270_sensor_init() == 0)
1001                 pxa_set_camera_info(&em_x270_camera_platform_data);
1002         platform_device_register(&camera_supply_dummy_device);
1003 }
1004 #else
1005 static inline void em_x270_init_camera(void) {}
1006 #endif
1007
1008 static struct regulator_bulk_data em_x270_gps_consumer_supply = {
1009         .supply         = "vcc gps",
1010 };
1011
1012 static struct regulator_userspace_consumer_data em_x270_gps_consumer_data = {
1013         .name           = "vcc gps",
1014         .num_supplies   = 1,
1015         .supplies       = &em_x270_gps_consumer_supply,
1016 };
1017
1018 static struct platform_device em_x270_gps_userspace_consumer = {
1019         .name           = "reg-userspace-consumer",
1020         .id             = 0,
1021         .dev            = {
1022                 .platform_data = &em_x270_gps_consumer_data,
1023         },
1024 };
1025
1026 static struct regulator_bulk_data em_x270_gprs_consumer_supply = {
1027         .supply         = "vcc gprs",
1028 };
1029
1030 static struct regulator_userspace_consumer_data em_x270_gprs_consumer_data = {
1031         .name           = "vcc gprs",
1032         .num_supplies   = 1,
1033         .supplies       = &em_x270_gprs_consumer_supply
1034 };
1035
1036 static struct platform_device em_x270_gprs_userspace_consumer = {
1037         .name           = "reg-userspace-consumer",
1038         .id             = 1,
1039         .dev            = {
1040                 .platform_data = &em_x270_gprs_consumer_data,
1041         }
1042 };
1043
1044 static struct platform_device *em_x270_userspace_consumers[] = {
1045         &em_x270_gps_userspace_consumer,
1046         &em_x270_gprs_userspace_consumer,
1047 };
1048
1049 static void __init em_x270_userspace_consumers_init(void)
1050 {
1051         platform_add_devices(ARRAY_AND_SIZE(em_x270_userspace_consumers));
1052 }
1053
1054 /* DA9030 related initializations */
1055 #define REGULATOR_CONSUMER(_name, _dev_name, _supply)                   \
1056         static struct regulator_consumer_supply _name##_consumers[] = { \
1057                 REGULATOR_SUPPLY(_supply, _dev_name),                   \
1058         }
1059
1060 REGULATOR_CONSUMER(ldo3, "reg-userspace-consumer.0", "vcc gps");
1061 REGULATOR_CONSUMER(ldo5, NULL, "vcc cam");
1062 REGULATOR_CONSUMER(ldo10, "pxa2xx-mci", "vcc sdio");
1063 REGULATOR_CONSUMER(ldo12, NULL, "vcc usb");
1064 REGULATOR_CONSUMER(ldo19, "reg-userspace-consumer.1", "vcc gprs");
1065 REGULATOR_CONSUMER(buck2, NULL, "vcc_core");
1066
1067 #define REGULATOR_INIT(_ldo, _min_uV, _max_uV, _ops_mask)               \
1068         static struct regulator_init_data _ldo##_data = {               \
1069                 .constraints = {                                        \
1070                         .min_uV = _min_uV,                              \
1071                         .max_uV = _max_uV,                              \
1072                         .state_mem = {                                  \
1073                                 .enabled = 0,                           \
1074                         },                                              \
1075                         .valid_ops_mask = _ops_mask,                    \
1076                         .apply_uV = 1,                                  \
1077                 },                                                      \
1078                 .num_consumer_supplies = ARRAY_SIZE(_ldo##_consumers),  \
1079                 .consumer_supplies = _ldo##_consumers,                  \
1080         };
1081
1082 REGULATOR_INIT(ldo3, 3200000, 3200000, REGULATOR_CHANGE_STATUS);
1083 REGULATOR_INIT(ldo5, 3000000, 3000000, REGULATOR_CHANGE_STATUS);
1084 REGULATOR_INIT(ldo10, 2000000, 3200000,
1085                REGULATOR_CHANGE_STATUS | REGULATOR_CHANGE_VOLTAGE);
1086 REGULATOR_INIT(ldo12, 3000000, 3000000, REGULATOR_CHANGE_STATUS);
1087 REGULATOR_INIT(ldo19, 3200000, 3200000, REGULATOR_CHANGE_STATUS);
1088 REGULATOR_INIT(buck2, 1000000, 1650000, REGULATOR_CHANGE_VOLTAGE);
1089
1090 struct led_info em_x270_led_info = {
1091         .name = "em-x270:orange",
1092         .default_trigger = "battery-charging-or-full",
1093 };
1094
1095 struct power_supply_info em_x270_psy_info = {
1096         .name = "battery",
1097         .technology = POWER_SUPPLY_TECHNOLOGY_LIPO,
1098         .voltage_max_design = 4200000,
1099         .voltage_min_design = 3000000,
1100         .use_for_apm = 1,
1101 };
1102
1103 static void em_x270_battery_low(void)
1104 {
1105 #if defined(CONFIG_APM_EMULATION)
1106         apm_queue_event(APM_LOW_BATTERY);
1107 #endif
1108 }
1109
1110 static void em_x270_battery_critical(void)
1111 {
1112 #if defined(CONFIG_APM_EMULATION)
1113         apm_queue_event(APM_CRITICAL_SUSPEND);
1114 #endif
1115 }
1116
1117 struct da9030_battery_info em_x270_batterty_info = {
1118         .battery_info = &em_x270_psy_info,
1119
1120         .charge_milliamp = 1000,
1121         .charge_millivolt = 4200,
1122
1123         .vbat_low = 3600,
1124         .vbat_crit = 3400,
1125         .vbat_charge_start = 4100,
1126         .vbat_charge_stop = 4200,
1127         .vbat_charge_restart = 4000,
1128
1129         .vcharge_min = 3200,
1130         .vcharge_max = 5500,
1131
1132         .tbat_low = 197,
1133         .tbat_high = 78,
1134         .tbat_restart = 100,
1135
1136         .batmon_interval = 0,
1137
1138         .battery_low = em_x270_battery_low,
1139         .battery_critical = em_x270_battery_critical,
1140 };
1141
1142 #define DA9030_SUBDEV(_name, _id, _pdata)       \
1143         {                                       \
1144                 .name = "da903x-" #_name,       \
1145                 .id = DA9030_ID_##_id,          \
1146                 .platform_data = _pdata,        \
1147         }
1148
1149 #define DA9030_LDO(num) DA9030_SUBDEV(regulator, LDO##num, &ldo##num##_data)
1150
1151 struct da903x_subdev_info em_x270_da9030_subdevs[] = {
1152         DA9030_LDO(3),
1153         DA9030_LDO(5),
1154         DA9030_LDO(10),
1155         DA9030_LDO(12),
1156         DA9030_LDO(19),
1157
1158         DA9030_SUBDEV(regulator, BUCK2, &buck2_data),
1159
1160         DA9030_SUBDEV(led, LED_PC, &em_x270_led_info),
1161         DA9030_SUBDEV(backlight, WLED, &em_x270_led_info),
1162         DA9030_SUBDEV(battery, BAT, &em_x270_batterty_info),
1163 };
1164
1165 static struct da903x_platform_data em_x270_da9030_info = {
1166         .num_subdevs = ARRAY_SIZE(em_x270_da9030_subdevs),
1167         .subdevs = em_x270_da9030_subdevs,
1168 };
1169
1170 static struct i2c_board_info em_x270_i2c_pmic_info = {
1171         I2C_BOARD_INFO("da9030", 0x49),
1172         .irq = PXA_GPIO_TO_IRQ(0),
1173         .platform_data = &em_x270_da9030_info,
1174 };
1175
1176 static struct i2c_pxa_platform_data em_x270_pwr_i2c_info = {
1177         .use_pio = 1,
1178 };
1179
1180 static void __init em_x270_init_da9030(void)
1181 {
1182         pxa27x_set_i2c_power_info(&em_x270_pwr_i2c_info);
1183         i2c_register_board_info(1, &em_x270_i2c_pmic_info, 1);
1184 }
1185
1186 static struct pca953x_platform_data exeda_gpio_ext_pdata = {
1187         .gpio_base = 128,
1188 };
1189
1190 static struct i2c_board_info exeda_i2c_info[] = {
1191         {
1192                 I2C_BOARD_INFO("pca9555", 0x21),
1193                 .platform_data = &exeda_gpio_ext_pdata,
1194         },
1195 };
1196
1197 static struct i2c_pxa_platform_data em_x270_i2c_info = {
1198         .fast_mode = 1,
1199 };
1200
1201 static void __init em_x270_init_i2c(void)
1202 {
1203         pxa_set_i2c_info(&em_x270_i2c_info);
1204
1205         if (machine_is_exeda())
1206                 i2c_register_board_info(0, ARRAY_AND_SIZE(exeda_i2c_info));
1207 }
1208
1209 static void __init em_x270_module_init(void)
1210 {
1211         pxa2xx_mfp_config(ARRAY_AND_SIZE(em_x270_pin_config));
1212
1213         mmc_cd = GPIO13_MMC_CD;
1214         nand_rb = GPIO56_NAND_RB;
1215         dm9000_flags = DM9000_PLATF_32BITONLY;
1216         cam_reset = GPIO93_CAM_RESET;
1217         usb_hub_reset = GPIO16_USB_HUB_RESET;
1218 }
1219
1220 static void __init em_x270_exeda_init(void)
1221 {
1222         pxa2xx_mfp_config(ARRAY_AND_SIZE(exeda_pin_config));
1223
1224         mmc_cd = GPIO114_MMC_CD;
1225         nand_rb = GPIO20_NAND_RB;
1226         dm9000_flags = DM9000_PLATF_16BITONLY;
1227         cam_reset = GPIO130_CAM_RESET;
1228         usb_hub_reset = GPIO10_USB_HUB_RESET;
1229 }
1230
1231 static void __init em_x270_init(void)
1232 {
1233         pxa2xx_mfp_config(ARRAY_AND_SIZE(common_pin_config));
1234
1235         pxa_set_ffuart_info(NULL);
1236         pxa_set_btuart_info(NULL);
1237         pxa_set_stuart_info(NULL);
1238
1239 #ifdef CONFIG_PM
1240         pxa27x_set_pwrmode(PWRMODE_DEEPSLEEP);
1241 #endif
1242
1243         if (machine_is_em_x270())
1244                 em_x270_module_init();
1245         else if (machine_is_exeda())
1246                 em_x270_exeda_init();
1247         else
1248                 panic("Unsupported machine: %d\n", machine_arch_type);
1249
1250         em_x270_init_da9030();
1251         em_x270_init_dm9000();
1252         em_x270_init_rtc();
1253         em_x270_init_nand();
1254         em_x270_init_nor();
1255         em_x270_init_lcd();
1256         em_x270_init_mmc();
1257         em_x270_init_ohci();
1258         em_x270_init_keypad();
1259         em_x270_init_gpio_keys();
1260         em_x270_init_ac97();
1261         em_x270_init_spi();
1262         em_x270_init_i2c();
1263         em_x270_init_camera();
1264         em_x270_userspace_consumers_init();
1265
1266         regulator_has_full_constraints();
1267 }
1268
1269 MACHINE_START(EM_X270, "Compulab EM-X270")
1270         .atag_offset    = 0x100,
1271         .map_io         = pxa27x_map_io,
1272         .nr_irqs        = PXA_NR_IRQS,
1273         .init_irq       = pxa27x_init_irq,
1274         .handle_irq     = pxa27x_handle_irq,
1275         .init_time      = pxa_timer_init,
1276         .init_machine   = em_x270_init,
1277         .restart        = pxa_restart,
1278 MACHINE_END
1279
1280 MACHINE_START(EXEDA, "Compulab eXeda")
1281         .atag_offset    = 0x100,
1282         .map_io         = pxa27x_map_io,
1283         .nr_irqs        = PXA_NR_IRQS,
1284         .init_irq       = pxa27x_init_irq,
1285         .handle_irq     = pxa27x_handle_irq,
1286         .init_time      = pxa_timer_init,
1287         .init_machine   = em_x270_init,
1288         .restart        = pxa_restart,
1289 MACHINE_END