1 #include <linux/module.h>
2 #include <linux/types.h>
3 #include <linux/string.h>
4 #include <linux/kernel.h>
5 #include <linux/errno.h>
6 #include <linux/genhd.h>
7 #include <linux/mutex.h>
9 #include <linux/hdreg.h>
10 #include <linux/dmi.h>
11 #include <linux/slab.h>
13 #if !defined(CONFIG_DEBUG_BLOCK_EXT_DEVT)
14 #define IDE_DISK_MINORS (1 << PARTN_BITS)
16 #define IDE_DISK_MINORS 0
20 #include "ide-floppy.h"
22 #define IDE_GD_VERSION "1.18"
24 /* module parameters */
25 static unsigned long debug_mask
;
26 module_param(debug_mask
, ulong
, 0644);
28 static DEFINE_MUTEX(ide_disk_ref_mutex
);
30 static void ide_disk_release(struct device
*);
32 static struct ide_disk_obj
*ide_disk_get(struct gendisk
*disk
)
34 struct ide_disk_obj
*idkp
= NULL
;
36 mutex_lock(&ide_disk_ref_mutex
);
37 idkp
= ide_drv_g(disk
, ide_disk_obj
);
39 if (ide_device_get(idkp
->drive
))
42 get_device(&idkp
->dev
);
44 mutex_unlock(&ide_disk_ref_mutex
);
48 static void ide_disk_put(struct ide_disk_obj
*idkp
)
50 ide_drive_t
*drive
= idkp
->drive
;
52 mutex_lock(&ide_disk_ref_mutex
);
53 put_device(&idkp
->dev
);
54 ide_device_put(drive
);
55 mutex_unlock(&ide_disk_ref_mutex
);
58 sector_t
ide_gd_capacity(ide_drive_t
*drive
)
60 return drive
->capacity64
;
63 static int ide_gd_probe(ide_drive_t
*);
65 static void ide_gd_remove(ide_drive_t
*drive
)
67 struct ide_disk_obj
*idkp
= drive
->driver_data
;
68 struct gendisk
*g
= idkp
->disk
;
70 ide_proc_unregister_driver(drive
, idkp
->driver
);
71 device_del(&idkp
->dev
);
73 drive
->disk_ops
->flush(drive
);
75 mutex_lock(&ide_disk_ref_mutex
);
76 put_device(&idkp
->dev
);
77 mutex_unlock(&ide_disk_ref_mutex
);
80 static void ide_disk_release(struct device
*dev
)
82 struct ide_disk_obj
*idkp
= to_ide_drv(dev
, ide_disk_obj
);
83 ide_drive_t
*drive
= idkp
->drive
;
84 struct gendisk
*g
= idkp
->disk
;
86 drive
->disk_ops
= NULL
;
87 drive
->driver_data
= NULL
;
88 g
->private_data
= NULL
;
94 * On HPA drives the capacity needs to be
95 * reinitilized on resume otherwise the disk
96 * can not be used and a hard reset is required
98 static void ide_gd_resume(ide_drive_t
*drive
)
100 if (ata_id_hpa_enabled(drive
->id
))
101 (void)drive
->disk_ops
->get_capacity(drive
);
104 static const struct dmi_system_id ide_coldreboot_table
[] = {
106 /* Acer TravelMate 66x cuts power during reboot */
107 .ident
= "Acer TravelMate 660",
109 DMI_MATCH(DMI_SYS_VENDOR
, "Acer"),
110 DMI_MATCH(DMI_PRODUCT_NAME
, "TravelMate 660"),
114 { } /* terminate list */
117 static void ide_gd_shutdown(ide_drive_t
*drive
)
120 /* On Alpha, halt(8) doesn't actually turn the machine off,
121 it puts you into the sort of firmware monitor. Typically,
122 it's used to boot another kernel image, so it's not much
123 different from reboot(8). Therefore, we don't need to
124 spin down the disk in this case, especially since Alpha
125 firmware doesn't handle disks in standby mode properly.
126 On the other hand, it's reasonably safe to turn the power
127 off when the shutdown process reaches the firmware prompt,
128 as the firmware initialization takes rather long time -
129 at least 10 seconds, which should be sufficient for
130 the disk to expire its write cache. */
131 if (system_state
!= SYSTEM_POWER_OFF
) {
133 if (system_state
== SYSTEM_RESTART
&&
134 !dmi_check_system(ide_coldreboot_table
)) {
136 drive
->disk_ops
->flush(drive
);
140 printk(KERN_INFO
"Shutdown: %s\n", drive
->name
);
142 drive
->gendev
.bus
->suspend(&drive
->gendev
, PMSG_SUSPEND
);
145 #ifdef CONFIG_IDE_PROC_FS
146 static ide_proc_entry_t
*ide_disk_proc_entries(ide_drive_t
*drive
)
148 return (drive
->media
== ide_disk
) ? ide_disk_proc
: ide_floppy_proc
;
151 static const struct ide_proc_devset
*ide_disk_proc_devsets(ide_drive_t
*drive
)
153 return (drive
->media
== ide_disk
) ? ide_disk_settings
154 : ide_floppy_settings
;
158 static ide_startstop_t
ide_gd_do_request(ide_drive_t
*drive
,
159 struct request
*rq
, sector_t sector
)
161 return drive
->disk_ops
->do_request(drive
, rq
, sector
);
164 static struct ide_driver ide_gd_driver
= {
166 .owner
= THIS_MODULE
,
168 .bus
= &ide_bus_type
,
170 .probe
= ide_gd_probe
,
171 .remove
= ide_gd_remove
,
172 .resume
= ide_gd_resume
,
173 .shutdown
= ide_gd_shutdown
,
174 .version
= IDE_GD_VERSION
,
175 .do_request
= ide_gd_do_request
,
176 #ifdef CONFIG_IDE_PROC_FS
177 .proc_entries
= ide_disk_proc_entries
,
178 .proc_devsets
= ide_disk_proc_devsets
,
182 static int ide_gd_open(struct block_device
*bdev
, fmode_t mode
)
184 struct gendisk
*disk
= bdev
->bd_disk
;
185 struct ide_disk_obj
*idkp
;
189 idkp
= ide_disk_get(disk
);
195 ide_debug_log(IDE_DBG_FUNC
, "enter");
199 if ((drive
->dev_flags
& IDE_DFLAG_REMOVABLE
) && idkp
->openers
== 1) {
200 drive
->dev_flags
&= ~IDE_DFLAG_FORMAT_IN_PROGRESS
;
203 ret
= drive
->disk_ops
->init_media(drive
, disk
);
206 * Allow O_NDELAY to open a drive without a disk, or with an
207 * unreadable disk, so that we can get the format capacity
208 * of the drive or begin the format - Sam
210 if (ret
&& (mode
& FMODE_NDELAY
) == 0) {
215 if ((drive
->dev_flags
& IDE_DFLAG_WP
) && (mode
& FMODE_WRITE
)) {
221 * Ignore the return code from door_lock,
222 * since the open() has already succeeded,
223 * and the door_lock is irrelevant at this point.
225 drive
->disk_ops
->set_doorlock(drive
, disk
, 1);
226 drive
->dev_flags
|= IDE_DFLAG_MEDIA_CHANGED
;
227 check_disk_change(bdev
);
228 } else if (drive
->dev_flags
& IDE_DFLAG_FORMAT_IN_PROGRESS
) {
240 static int ide_gd_release(struct gendisk
*disk
, fmode_t mode
)
242 struct ide_disk_obj
*idkp
= ide_drv_g(disk
, ide_disk_obj
);
243 ide_drive_t
*drive
= idkp
->drive
;
245 ide_debug_log(IDE_DBG_FUNC
, "enter");
247 if (idkp
->openers
== 1)
248 drive
->disk_ops
->flush(drive
);
250 if ((drive
->dev_flags
& IDE_DFLAG_REMOVABLE
) && idkp
->openers
== 1) {
251 drive
->disk_ops
->set_doorlock(drive
, disk
, 0);
252 drive
->dev_flags
&= ~IDE_DFLAG_FORMAT_IN_PROGRESS
;
262 static int ide_gd_getgeo(struct block_device
*bdev
, struct hd_geometry
*geo
)
264 struct ide_disk_obj
*idkp
= ide_drv_g(bdev
->bd_disk
, ide_disk_obj
);
265 ide_drive_t
*drive
= idkp
->drive
;
267 geo
->heads
= drive
->bios_head
;
268 geo
->sectors
= drive
->bios_sect
;
269 geo
->cylinders
= (u16
)drive
->bios_cyl
; /* truncate */
273 static int ide_gd_media_changed(struct gendisk
*disk
)
275 struct ide_disk_obj
*idkp
= ide_drv_g(disk
, ide_disk_obj
);
276 ide_drive_t
*drive
= idkp
->drive
;
279 /* do not scan partitions twice if this is a removable device */
280 if (drive
->dev_flags
& IDE_DFLAG_ATTACH
) {
281 drive
->dev_flags
&= ~IDE_DFLAG_ATTACH
;
285 ret
= !!(drive
->dev_flags
& IDE_DFLAG_MEDIA_CHANGED
);
286 drive
->dev_flags
&= ~IDE_DFLAG_MEDIA_CHANGED
;
291 static void ide_gd_unlock_native_capacity(struct gendisk
*disk
)
293 struct ide_disk_obj
*idkp
= ide_drv_g(disk
, ide_disk_obj
);
294 ide_drive_t
*drive
= idkp
->drive
;
295 const struct ide_disk_ops
*disk_ops
= drive
->disk_ops
;
297 if (disk_ops
->unlock_native_capacity
)
298 disk_ops
->unlock_native_capacity(drive
);
301 static int ide_gd_revalidate_disk(struct gendisk
*disk
)
303 struct ide_disk_obj
*idkp
= ide_drv_g(disk
, ide_disk_obj
);
304 ide_drive_t
*drive
= idkp
->drive
;
306 if (ide_gd_media_changed(disk
))
307 drive
->disk_ops
->get_capacity(drive
);
309 set_capacity(disk
, ide_gd_capacity(drive
));
313 static int ide_gd_ioctl(struct block_device
*bdev
, fmode_t mode
,
314 unsigned int cmd
, unsigned long arg
)
316 struct ide_disk_obj
*idkp
= ide_drv_g(bdev
->bd_disk
, ide_disk_obj
);
317 ide_drive_t
*drive
= idkp
->drive
;
319 return drive
->disk_ops
->ioctl(drive
, bdev
, mode
, cmd
, arg
);
322 static const struct block_device_operations ide_gd_ops
= {
323 .owner
= THIS_MODULE
,
325 .release
= ide_gd_release
,
326 .locked_ioctl
= ide_gd_ioctl
,
327 .getgeo
= ide_gd_getgeo
,
328 .media_changed
= ide_gd_media_changed
,
329 .unlock_native_capacity
= ide_gd_unlock_native_capacity
,
330 .revalidate_disk
= ide_gd_revalidate_disk
333 static int ide_gd_probe(ide_drive_t
*drive
)
335 const struct ide_disk_ops
*disk_ops
= NULL
;
336 struct ide_disk_obj
*idkp
;
339 /* strstr("foo", "") is non-NULL */
340 if (!strstr("ide-gd", drive
->driver_req
))
343 #ifdef CONFIG_IDE_GD_ATA
344 if (drive
->media
== ide_disk
)
345 disk_ops
= &ide_ata_disk_ops
;
347 #ifdef CONFIG_IDE_GD_ATAPI
348 if (drive
->media
== ide_floppy
)
349 disk_ops
= &ide_atapi_disk_ops
;
351 if (disk_ops
== NULL
)
354 if (disk_ops
->check(drive
, DRV_NAME
) == 0) {
355 printk(KERN_ERR PFX
"%s: not supported by this driver\n",
360 idkp
= kzalloc(sizeof(*idkp
), GFP_KERNEL
);
362 printk(KERN_ERR PFX
"%s: can't allocate a disk structure\n",
367 g
= alloc_disk_node(IDE_DISK_MINORS
, hwif_to_node(drive
->hwif
));
371 ide_init_disk(g
, drive
);
373 idkp
->dev
.parent
= &drive
->gendev
;
374 idkp
->dev
.release
= ide_disk_release
;
375 dev_set_name(&idkp
->dev
, dev_name(&drive
->gendev
));
377 if (device_register(&idkp
->dev
))
381 idkp
->driver
= &ide_gd_driver
;
384 g
->private_data
= &idkp
->driver
;
386 drive
->driver_data
= idkp
;
387 drive
->debug_mask
= debug_mask
;
388 drive
->disk_ops
= disk_ops
;
390 disk_ops
->setup(drive
);
392 set_capacity(g
, ide_gd_capacity(drive
));
394 g
->minors
= IDE_DISK_MINORS
;
395 g
->driverfs_dev
= &drive
->gendev
;
396 g
->flags
|= GENHD_FL_EXT_DEVT
;
397 if (drive
->dev_flags
& IDE_DFLAG_REMOVABLE
)
398 g
->flags
= GENHD_FL_REMOVABLE
;
399 g
->fops
= &ide_gd_ops
;
411 static int __init
ide_gd_init(void)
413 printk(KERN_INFO DRV_NAME
" driver " IDE_GD_VERSION
"\n");
414 return driver_register(&ide_gd_driver
.gen_driver
);
417 static void __exit
ide_gd_exit(void)
419 driver_unregister(&ide_gd_driver
.gen_driver
);
422 MODULE_ALIAS("ide:*m-disk*");
423 MODULE_ALIAS("ide-disk");
424 MODULE_ALIAS("ide:*m-floppy*");
425 MODULE_ALIAS("ide-floppy");
426 module_init(ide_gd_init
);
427 module_exit(ide_gd_exit
);
428 MODULE_LICENSE("GPL");
429 MODULE_DESCRIPTION("generic ATA/ATAPI disk driver");