2 * Driver for the media bay on the PowerBook 3400 and 2400.
4 * Copyright (C) 1998 Paul Mackerras.
6 * Various evolutions by Benjamin Herrenschmidt & Henry Worth
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License
10 * as published by the Free Software Foundation; either version
11 * 2 of the License, or (at your option) any later version.
13 #include <linux/types.h>
14 #include <linux/errno.h>
15 #include <linux/kernel.h>
16 #include <linux/delay.h>
17 #include <linux/sched.h>
18 #include <linux/timer.h>
19 #include <linux/hdreg.h>
20 #include <linux/stddef.h>
21 #include <linux/init.h>
22 #include <linux/ide.h>
23 #include <linux/kthread.h>
25 #include <asm/pgtable.h>
27 #include <asm/machdep.h>
28 #include <asm/pmac_feature.h>
29 #include <asm/mediabay.h>
30 #include <asm/sections.h>
31 #include <asm/ohare.h>
32 #include <asm/heathrow.h>
33 #include <asm/keylargo.h>
34 #include <linux/adb.h>
35 #include <linux/pmu.h>
41 #define MBDBG(fmt, arg...) printk(KERN_INFO fmt , ## arg)
43 #define MBDBG(fmt, arg...) do { } while (0)
46 #define MB_FCR32(bay, r) ((bay)->base + ((r) >> 2))
47 #define MB_FCR8(bay, r) (((volatile u8 __iomem *)((bay)->base)) + (r))
49 #define MB_IN32(bay,r) (in_le32(MB_FCR32(bay,r)))
50 #define MB_OUT32(bay,r,v) (out_le32(MB_FCR32(bay,r), (v)))
51 #define MB_BIS(bay,r,v) (MB_OUT32((bay), (r), MB_IN32((bay), r) | (v)))
52 #define MB_BIC(bay,r,v) (MB_OUT32((bay), (r), MB_IN32((bay), r) & ~(v)))
53 #define MB_IN8(bay,r) (in_8(MB_FCR8(bay,r)))
54 #define MB_OUT8(bay,r,v) (out_8(MB_FCR8(bay,r), (v)))
56 struct media_bay_info;
60 void (*init)(struct media_bay_info *bay);
61 u8 (*content)(struct media_bay_info *bay);
62 void (*power)(struct media_bay_info *bay, int on_off);
63 int (*setup_bus)(struct media_bay_info *bay, u8 device_id);
64 void (*un_reset)(struct media_bay_info *bay);
65 void (*un_reset_ide)(struct media_bay_info *bay);
68 struct media_bay_info {
75 struct macio_dev *mdev;
80 struct semaphore lock;
81 #ifdef CONFIG_BLK_DEV_IDE_PMAC
82 void __iomem *cd_base;
86 #if defined(CONFIG_BLK_DEV_IDE_PMAC) || defined(CONFIG_MAC_FLOPPY)
93 static struct media_bay_info media_bays[MAX_BAYS];
94 int media_bay_count = 0;
96 #ifdef CONFIG_BLK_DEV_IDE_PMAC
97 /* check the busy bit in the media-bay ide interface
98 (assumes the media-bay contains an ide device) */
99 #define MB_IDE_READY(i) ((readb(media_bays[i].cd_base + 0x70) & 0x80) == 0)
103 * Wait that number of ms between each step in normal polling mode
105 #define MB_POLL_DELAY 25
108 * Consider the media-bay ID value stable if it is the same for
109 * this number of milliseconds
111 #define MB_STABLE_DELAY 100
113 /* Wait after powering up the media bay this delay in ms
114 * timeout bumped for some powerbooks
116 #define MB_POWER_DELAY 200
119 * Hold the media-bay reset signal true for this many ticks
120 * after a device is inserted before releasing it.
122 #define MB_RESET_DELAY 50
125 * Wait this long after the reset signal is released and before doing
126 * further operations. After this delay, the IDE reset signal is released
127 * too for an IDE device
129 #define MB_SETUP_DELAY 100
132 * Wait this many ticks after an IDE device (e.g. CD-ROM) is inserted
133 * (or until the device is ready) before waiting for busy bit to disappear
135 #define MB_IDE_WAIT 1000
138 * Timeout waiting for busy bit of an IDE device to go down
140 #define MB_IDE_TIMEOUT 5000
143 * Max retries of the full power up/down sequence for an IDE device
145 #define MAX_CD_RETRIES 3
148 * States of a media bay
151 mb_empty = 0, /* Idle */
152 mb_powering_up, /* power bit set, waiting MB_POWER_DELAY */
153 mb_enabling_bay, /* enable bits set, waiting MB_RESET_DELAY */
154 mb_resetting, /* reset bit unset, waiting MB_SETUP_DELAY */
155 mb_ide_resetting, /* IDE reset bit unser, waiting MB_IDE_WAIT */
156 mb_ide_waiting, /* Waiting for BUSY bit to go away until MB_IDE_TIMEOUT */
157 mb_up, /* Media bay full */
158 mb_powering_down /* Powering down (avoid too fast down/up) */
161 #define MB_POWER_SOUND 0x08
162 #define MB_POWER_FLOPPY 0x04
163 #define MB_POWER_ATA 0x02
164 #define MB_POWER_PCI 0x01
165 #define MB_POWER_OFF 0x00
168 * Functions for polling content of media bay
172 ohare_mb_content(struct media_bay_info *bay)
174 return (MB_IN32(bay, OHARE_MBCR) >> 12) & 7;
178 heathrow_mb_content(struct media_bay_info *bay)
180 return (MB_IN32(bay, HEATHROW_MBCR) >> 12) & 7;
184 keylargo_mb_content(struct media_bay_info *bay)
188 new_gpio = MB_IN8(bay, KL_GPIO_MEDIABAY_IRQ) & KEYLARGO_GPIO_INPUT_DATA;
190 bay->cached_gpio = new_gpio;
192 } else if (bay->cached_gpio != new_gpio) {
193 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_ENABLE);
194 (void)MB_IN32(bay, KEYLARGO_MBCR);
196 MB_BIC(bay, KEYLARGO_MBCR, 0x0000000F);
197 (void)MB_IN32(bay, KEYLARGO_MBCR);
199 bay->cached_gpio = new_gpio;
201 return (MB_IN32(bay, KEYLARGO_MBCR) >> 4) & 7;
205 * Functions for powering up/down the bay, puts the bay device
206 * into reset state as well
210 ohare_mb_power(struct media_bay_info* bay, int on_off)
213 /* Power up device, assert it's reset line */
214 MB_BIC(bay, OHARE_FCR, OH_BAY_RESET_N);
215 MB_BIC(bay, OHARE_FCR, OH_BAY_POWER_N);
217 /* Disable all devices */
218 MB_BIC(bay, OHARE_FCR, OH_BAY_DEV_MASK);
219 MB_BIC(bay, OHARE_FCR, OH_FLOPPY_ENABLE);
220 /* Cut power from bay, release reset line */
221 MB_BIS(bay, OHARE_FCR, OH_BAY_POWER_N);
222 MB_BIS(bay, OHARE_FCR, OH_BAY_RESET_N);
223 MB_BIS(bay, OHARE_FCR, OH_IDE1_RESET_N);
225 MB_BIC(bay, OHARE_MBCR, 0x00000F00);
229 heathrow_mb_power(struct media_bay_info* bay, int on_off)
232 /* Power up device, assert it's reset line */
233 MB_BIC(bay, HEATHROW_FCR, HRW_BAY_RESET_N);
234 MB_BIC(bay, HEATHROW_FCR, HRW_BAY_POWER_N);
236 /* Disable all devices */
237 MB_BIC(bay, HEATHROW_FCR, HRW_BAY_DEV_MASK);
238 MB_BIC(bay, HEATHROW_FCR, HRW_SWIM_ENABLE);
239 /* Cut power from bay, release reset line */
240 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_POWER_N);
241 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_RESET_N);
242 MB_BIS(bay, HEATHROW_FCR, HRW_IDE1_RESET_N);
244 MB_BIC(bay, HEATHROW_MBCR, 0x00000F00);
248 keylargo_mb_power(struct media_bay_info* bay, int on_off)
251 /* Power up device, assert it's reset line */
252 MB_BIC(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_RESET);
253 MB_BIC(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_POWER);
255 /* Disable all devices */
256 MB_BIC(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_MASK);
257 MB_BIC(bay, KEYLARGO_FCR1, KL1_EIDE0_ENABLE);
258 /* Cut power from bay, release reset line */
259 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_POWER);
260 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_RESET);
261 MB_BIS(bay, KEYLARGO_FCR1, KL1_EIDE0_RESET_N);
263 MB_BIC(bay, KEYLARGO_MBCR, 0x0000000F);
267 * Functions for configuring the media bay for a given type of device,
268 * enable the related busses
272 ohare_mb_setup_bus(struct media_bay_info* bay, u8 device_id)
277 MB_BIS(bay, OHARE_FCR, OH_BAY_FLOPPY_ENABLE);
278 MB_BIS(bay, OHARE_FCR, OH_FLOPPY_ENABLE);
281 MB_BIC(bay, OHARE_FCR, OH_IDE1_RESET_N);
282 MB_BIS(bay, OHARE_FCR, OH_BAY_IDE_ENABLE);
285 MB_BIS(bay, OHARE_FCR, OH_BAY_PCI_ENABLE);
292 heathrow_mb_setup_bus(struct media_bay_info* bay, u8 device_id)
297 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_FLOPPY_ENABLE);
298 MB_BIS(bay, HEATHROW_FCR, HRW_SWIM_ENABLE);
301 MB_BIC(bay, HEATHROW_FCR, HRW_IDE1_RESET_N);
302 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_IDE_ENABLE);
305 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_PCI_ENABLE);
312 keylargo_mb_setup_bus(struct media_bay_info* bay, u8 device_id)
316 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_IDE_ENABLE);
317 MB_BIC(bay, KEYLARGO_FCR1, KL1_EIDE0_RESET_N);
318 MB_BIS(bay, KEYLARGO_FCR1, KL1_EIDE0_ENABLE);
321 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_PCI_ENABLE);
324 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_SOUND_ENABLE);
331 * Functions for tweaking resets
335 ohare_mb_un_reset(struct media_bay_info* bay)
337 MB_BIS(bay, OHARE_FCR, OH_BAY_RESET_N);
340 static void keylargo_mb_init(struct media_bay_info *bay)
342 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_ENABLE);
345 static void heathrow_mb_un_reset(struct media_bay_info* bay)
347 MB_BIS(bay, HEATHROW_FCR, HRW_BAY_RESET_N);
350 static void keylargo_mb_un_reset(struct media_bay_info* bay)
352 MB_BIS(bay, KEYLARGO_MBCR, KL_MBCR_MB0_DEV_RESET);
355 static void ohare_mb_un_reset_ide(struct media_bay_info* bay)
357 MB_BIS(bay, OHARE_FCR, OH_IDE1_RESET_N);
360 static void heathrow_mb_un_reset_ide(struct media_bay_info* bay)
362 MB_BIS(bay, HEATHROW_FCR, HRW_IDE1_RESET_N);
365 static void keylargo_mb_un_reset_ide(struct media_bay_info* bay)
367 MB_BIS(bay, KEYLARGO_FCR1, KL1_EIDE0_RESET_N);
370 static inline void set_mb_power(struct media_bay_info* bay, int onoff)
372 /* Power up up and assert the bay reset line */
374 bay->ops->power(bay, 1);
375 bay->state = mb_powering_up;
376 MBDBG("mediabay%d: powering up\n", bay->index);
378 /* Make sure everything is powered down & disabled */
379 bay->ops->power(bay, 0);
380 bay->state = mb_powering_down;
381 MBDBG("mediabay%d: powering down\n", bay->index);
383 bay->timer = msecs_to_jiffies(MB_POWER_DELAY);
386 static void poll_media_bay(struct media_bay_info* bay)
388 int id = bay->ops->content(bay);
390 if (id == bay->last_value) {
391 if (id != bay->content_id) {
392 bay->value_count += msecs_to_jiffies(MB_POLL_DELAY);
393 if (bay->value_count >= msecs_to_jiffies(MB_STABLE_DELAY)) {
394 /* If the device type changes without going thru
395 * "MB_NO", we force a pass by "MB_NO" to make sure
396 * things are properly reset
398 if ((id != MB_NO) && (bay->content_id != MB_NO)) {
400 MBDBG("mediabay%d: forcing MB_NO\n", bay->index);
402 MBDBG("mediabay%d: switching to %d\n", bay->index, id);
403 set_mb_power(bay, id != MB_NO);
404 bay->content_id = id;
406 #ifdef CONFIG_BLK_DEV_IDE_PMAC
409 printk(KERN_INFO "media bay %d is empty\n", bay->index);
414 bay->last_value = id;
415 bay->value_count = 0;
419 #ifdef CONFIG_MAC_FLOPPY
420 int check_media_bay(struct device_node *which_bay, int what)
424 for (i=0; i<media_bay_count; i++)
425 if (media_bays[i].mdev && which_bay == media_bays[i].mdev->ofdev.node) {
426 if ((what == media_bays[i].content_id) && media_bays[i].state == mb_up)
428 media_bays[i].cd_index = -1;
433 EXPORT_SYMBOL(check_media_bay);
434 #endif /* CONFIG_MAC_FLOPPY */
436 #ifdef CONFIG_BLK_DEV_IDE_PMAC
437 int check_media_bay_by_base(unsigned long base, int what)
441 for (i=0; i<media_bay_count; i++)
442 if (media_bays[i].mdev && base == (unsigned long) media_bays[i].cd_base) {
443 if ((what == media_bays[i].content_id) && media_bays[i].state == mb_up)
445 media_bays[i].cd_index = -1;
452 int media_bay_set_ide_infos(struct device_node* which_bay, unsigned long base,
457 for (i=0; i<media_bay_count; i++) {
458 struct media_bay_info* bay = &media_bays[i];
460 if (bay->mdev && which_bay == bay->mdev->ofdev.node) {
465 bay->cd_base = (void __iomem *) base;
468 if ((MB_CD != bay->content_id) || bay->state != mb_up) {
472 printk(KERN_DEBUG "Registered ide%d for media bay %d\n", index, i);
474 if (MB_IDE_READY(i)) {
475 bay->cd_index = index;
481 printk(KERN_DEBUG "Timeount waiting IDE in bay %d\n", i);
489 #endif /* CONFIG_BLK_DEV_IDE_PMAC */
491 static void media_bay_step(int i)
493 struct media_bay_info* bay = &media_bays[i];
495 /* We don't poll when powering down */
496 if (bay->state != mb_powering_down)
499 /* If timer expired or polling IDE busy, run state machine */
500 if ((bay->state != mb_ide_waiting) && (bay->timer != 0)) {
501 bay->timer -= msecs_to_jiffies(MB_POLL_DELAY);
509 if (bay->ops->setup_bus(bay, bay->last_value) < 0) {
510 MBDBG("mediabay%d: device not supported (kind:%d)\n", i, bay->content_id);
511 set_mb_power(bay, 0);
514 bay->timer = msecs_to_jiffies(MB_RESET_DELAY);
515 bay->state = mb_enabling_bay;
516 MBDBG("mediabay%d: enabling (kind:%d)\n", i, bay->content_id);
518 case mb_enabling_bay:
519 bay->ops->un_reset(bay);
520 bay->timer = msecs_to_jiffies(MB_SETUP_DELAY);
521 bay->state = mb_resetting;
522 MBDBG("mediabay%d: waiting reset (kind:%d)\n", i, bay->content_id);
525 if (bay->content_id != MB_CD) {
526 MBDBG("mediabay%d: bay is up (kind:%d)\n", i, bay->content_id);
530 #ifdef CONFIG_BLK_DEV_IDE_PMAC
531 MBDBG("mediabay%d: waiting IDE reset (kind:%d)\n", i, bay->content_id);
532 bay->ops->un_reset_ide(bay);
533 bay->timer = msecs_to_jiffies(MB_IDE_WAIT);
534 bay->state = mb_ide_resetting;
536 printk(KERN_DEBUG "media-bay %d is ide (not compiled in kernel)\n", i);
537 set_mb_power(bay, 0);
538 #endif /* CONFIG_BLK_DEV_IDE_PMAC */
540 #ifdef CONFIG_BLK_DEV_IDE_PMAC
541 case mb_ide_resetting:
542 bay->timer = msecs_to_jiffies(MB_IDE_TIMEOUT);
543 bay->state = mb_ide_waiting;
544 MBDBG("mediabay%d: waiting IDE ready (kind:%d)\n", i, bay->content_id);
547 if (bay->cd_base == NULL) {
550 MBDBG("mediabay%d: up before IDE init\n", i);
552 } else if (MB_IDE_READY(i)) {
555 if (bay->cd_index < 0) {
558 printk("mediabay %d, registering IDE...\n", i);
560 ide_init_hwif_ports(&hw, (unsigned long) bay->cd_base, (unsigned long) 0, NULL);
561 hw.irq = bay->cd_irq;
562 hw.chipset = ide_pmac;
564 ide_register_hw(&hw, NULL, NULL);
567 if (bay->cd_index == -1) {
568 /* We eventually do a retry */
570 printk("IDE register error\n");
571 set_mb_power(bay, 0);
573 printk(KERN_DEBUG "media-bay %d is ide%d\n", i, bay->cd_index);
574 MBDBG("mediabay %d IDE ready\n", i);
577 } else if (bay->timer > 0)
578 bay->timer -= msecs_to_jiffies(MB_POLL_DELAY);
579 if (bay->timer <= 0) {
580 printk("\nIDE Timeout in bay %d !, IDE state is: 0x%02x\n",
581 i, readb(bay->cd_base + 0x70));
582 MBDBG("mediabay%d: nIDE Timeout !\n", i);
583 set_mb_power(bay, 0);
587 #endif /* CONFIG_BLK_DEV_IDE_PMAC */
588 case mb_powering_down:
589 bay->state = mb_empty;
590 #ifdef CONFIG_BLK_DEV_IDE_PMAC
591 if (bay->cd_index >= 0) {
592 printk(KERN_DEBUG "Unregistering mb %d ide, index:%d\n", i,
594 ide_unregister(bay->cd_index, 1, 1);
598 if (bay->cd_retry > MAX_CD_RETRIES) {
599 /* Should add an error sound (sort of beep in dmasound) */
600 printk("\nmedia-bay %d, IDE device badly inserted or unrecognised\n", i);
602 /* Force a new power down/up sequence */
603 bay->content_id = MB_NO;
606 #endif /* CONFIG_BLK_DEV_IDE_PMAC */
607 MBDBG("mediabay%d: end of power down\n", i);
613 * This procedure runs as a kernel thread to poll the media bay
614 * once each tick and register and unregister the IDE interface
615 * with the IDE driver. It needs to be a thread because
616 * ide_register can't be called from interrupt context.
618 static int media_bay_task(void *x)
622 while (!kthread_should_stop()) {
623 for (i = 0; i < media_bay_count; ++i) {
624 down(&media_bays[i].lock);
625 if (!media_bays[i].sleeping)
627 up(&media_bays[i].lock);
630 msleep_interruptible(MB_POLL_DELAY);
635 static int __devinit media_bay_attach(struct macio_dev *mdev, const struct of_device_id *match)
637 struct media_bay_info* bay;
638 u32 __iomem *regbase;
639 struct device_node *ofnode;
643 ofnode = mdev->ofdev.node;
645 if (macio_resource_count(mdev) < 1)
647 if (macio_request_resources(mdev, "media-bay"))
649 /* Media bay registers are located at the beginning of the
650 * mac-io chip, for now, we trick and align down the first
653 base = macio_resource_start(mdev, 0) & 0xffff0000u;
654 regbase = (u32 __iomem *)ioremap(base, 0x100);
655 if (regbase == NULL) {
656 macio_release_resources(mdev);
660 i = media_bay_count++;
661 bay = &media_bays[i];
665 bay->ops = match->data;
667 init_MUTEX(&bay->lock);
669 /* Init HW probing */
673 printk(KERN_INFO "mediabay%d: Registered %s media-bay\n", i, bay->ops->name);
675 /* Force an immediate detect */
676 set_mb_power(bay, 0);
677 msleep(MB_POWER_DELAY);
678 bay->content_id = MB_NO;
679 bay->last_value = bay->ops->content(bay);
680 bay->value_count = msecs_to_jiffies(MB_STABLE_DELAY);
681 bay->state = mb_empty;
683 msleep(MB_POLL_DELAY);
685 } while((bay->state != mb_empty) &&
686 (bay->state != mb_up));
688 /* Mark us ready by filling our mdev data */
689 macio_set_drvdata(mdev, bay);
691 /* Startup kernel thread */
693 kthread_run(media_bay_task, NULL, "media-bay");
699 static int media_bay_suspend(struct macio_dev *mdev, pm_message_t state)
701 struct media_bay_info *bay = macio_get_drvdata(mdev);
703 if (state.event != mdev->ofdev.dev.power.power_state.event && state.event == PM_EVENT_SUSPEND) {
706 set_mb_power(bay, 0);
708 msleep(MB_POLL_DELAY);
709 mdev->ofdev.dev.power.power_state = state;
714 static int media_bay_resume(struct macio_dev *mdev)
716 struct media_bay_info *bay = macio_get_drvdata(mdev);
718 if (mdev->ofdev.dev.power.power_state.event != PM_EVENT_ON) {
719 mdev->ofdev.dev.power.power_state = PMSG_ON;
721 /* We re-enable the bay using it's previous content
722 only if it did not change. Note those bozo timings,
723 they seem to help the 3400 get it right.
725 /* Force MB power to 0 */
727 set_mb_power(bay, 0);
728 msleep(MB_POWER_DELAY);
729 if (bay->ops->content(bay) != bay->content_id) {
730 printk("mediabay%d: content changed during sleep...\n", bay->index);
734 set_mb_power(bay, 1);
735 bay->last_value = bay->content_id;
736 bay->value_count = msecs_to_jiffies(MB_STABLE_DELAY);
737 bay->timer = msecs_to_jiffies(MB_POWER_DELAY);
738 #ifdef CONFIG_BLK_DEV_IDE_PMAC
742 msleep(MB_POLL_DELAY);
743 media_bay_step(bay->index);
744 } while((bay->state != mb_empty) &&
745 (bay->state != mb_up));
753 /* Definitions of "ops" structures.
755 static struct mb_ops ohare_mb_ops = {
757 .content = ohare_mb_content,
758 .power = ohare_mb_power,
759 .setup_bus = ohare_mb_setup_bus,
760 .un_reset = ohare_mb_un_reset,
761 .un_reset_ide = ohare_mb_un_reset_ide,
764 static struct mb_ops heathrow_mb_ops = {
766 .content = heathrow_mb_content,
767 .power = heathrow_mb_power,
768 .setup_bus = heathrow_mb_setup_bus,
769 .un_reset = heathrow_mb_un_reset,
770 .un_reset_ide = heathrow_mb_un_reset_ide,
773 static struct mb_ops keylargo_mb_ops = {
775 .init = keylargo_mb_init,
776 .content = keylargo_mb_content,
777 .power = keylargo_mb_power,
778 .setup_bus = keylargo_mb_setup_bus,
779 .un_reset = keylargo_mb_un_reset,
780 .un_reset_ide = keylargo_mb_un_reset_ide,
784 * It seems that the bit for the media-bay interrupt in the IRQ_LEVEL
785 * register is always set when there is something in the media bay.
786 * This causes problems for the interrupt code if we attach an interrupt
787 * handler to the media-bay interrupt, because it tends to go into
788 * an infinite loop calling the media bay interrupt handler.
789 * Therefore we do it all by polling the media bay once each tick.
792 static struct of_device_id media_bay_match[] =
796 .compatible = "keylargo-media-bay",
797 .data = &keylargo_mb_ops,
801 .compatible = "heathrow-media-bay",
802 .data = &heathrow_mb_ops,
806 .compatible = "ohare-media-bay",
807 .data = &ohare_mb_ops,
812 static struct macio_driver media_bay_driver =
815 .match_table = media_bay_match,
816 .probe = media_bay_attach,
817 .suspend = media_bay_suspend,
818 .resume = media_bay_resume
821 static int __init media_bay_init(void)
825 for (i=0; i<MAX_BAYS; i++) {
826 memset((char *)&media_bays[i], 0, sizeof(struct media_bay_info));
827 media_bays[i].content_id = -1;
828 #ifdef CONFIG_BLK_DEV_IDE_PMAC
829 media_bays[i].cd_index = -1;
832 if (!machine_is(powermac))
835 macio_register_driver(&media_bay_driver);
840 device_initcall(media_bay_init);