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block: Add badblock management for gendisks
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CommitLineData
1da177e4
LT
1/*
2 * gendisk handling
3 */
4
1da177e4
LT
5#include <linux/module.h>
6#include <linux/fs.h>
7#include <linux/genhd.h>
b446b60e 8#include <linux/kdev_t.h>
1da177e4
LT
9#include <linux/kernel.h>
10#include <linux/blkdev.h>
66114cad 11#include <linux/backing-dev.h>
1da177e4
LT
12#include <linux/init.h>
13#include <linux/spinlock.h>
f500975a 14#include <linux/proc_fs.h>
1da177e4
LT
15#include <linux/seq_file.h>
16#include <linux/slab.h>
17#include <linux/kmod.h>
18#include <linux/kobj_map.h>
58383af6 19#include <linux/mutex.h>
bcce3de1 20#include <linux/idr.h>
77ea887e 21#include <linux/log2.h>
25e823c8 22#include <linux/pm_runtime.h>
99e6608c 23#include <linux/badblocks.h>
1da177e4 24
ff88972c
AB
25#include "blk.h"
26
edfaa7c3 27static DEFINE_MUTEX(block_class_lock);
edfaa7c3 28struct kobject *block_depr;
1da177e4 29
bcce3de1 30/* for extended dynamic devt allocation, currently only one major is used */
ce23bba8 31#define NR_EXT_DEVT (1 << MINORBITS)
bcce3de1 32
2da78092 33/* For extended devt allocation. ext_devt_lock prevents look up
bcce3de1
TH
34 * results from going away underneath its user.
35 */
2da78092 36static DEFINE_SPINLOCK(ext_devt_lock);
bcce3de1
TH
37static DEFINE_IDR(ext_devt_idr);
38
1826eadf
AB
39static struct device_type disk_type;
40
12c2bdb2
DB
41static void disk_check_events(struct disk_events *ev,
42 unsigned int *clearing_ptr);
9f53d2fe 43static void disk_alloc_events(struct gendisk *disk);
77ea887e
TH
44static void disk_add_events(struct gendisk *disk);
45static void disk_del_events(struct gendisk *disk);
46static void disk_release_events(struct gendisk *disk);
47
e71bf0d0
TH
48/**
49 * disk_get_part - get partition
50 * @disk: disk to look partition from
51 * @partno: partition number
52 *
53 * Look for partition @partno from @disk. If found, increment
54 * reference count and return it.
55 *
56 * CONTEXT:
57 * Don't care.
58 *
59 * RETURNS:
60 * Pointer to the found partition on success, NULL if not found.
61 */
62struct hd_struct *disk_get_part(struct gendisk *disk, int partno)
63{
540eed56
TH
64 struct hd_struct *part = NULL;
65 struct disk_part_tbl *ptbl;
e71bf0d0 66
540eed56 67 if (unlikely(partno < 0))
e71bf0d0 68 return NULL;
540eed56 69
e71bf0d0 70 rcu_read_lock();
540eed56
TH
71
72 ptbl = rcu_dereference(disk->part_tbl);
73 if (likely(partno < ptbl->len)) {
74 part = rcu_dereference(ptbl->part[partno]);
75 if (part)
76 get_device(part_to_dev(part));
77 }
78
e71bf0d0
TH
79 rcu_read_unlock();
80
81 return part;
82}
83EXPORT_SYMBOL_GPL(disk_get_part);
84
85/**
86 * disk_part_iter_init - initialize partition iterator
87 * @piter: iterator to initialize
88 * @disk: disk to iterate over
89 * @flags: DISK_PITER_* flags
90 *
91 * Initialize @piter so that it iterates over partitions of @disk.
92 *
93 * CONTEXT:
94 * Don't care.
95 */
96void disk_part_iter_init(struct disk_part_iter *piter, struct gendisk *disk,
97 unsigned int flags)
98{
540eed56
TH
99 struct disk_part_tbl *ptbl;
100
101 rcu_read_lock();
102 ptbl = rcu_dereference(disk->part_tbl);
103
e71bf0d0
TH
104 piter->disk = disk;
105 piter->part = NULL;
106
107 if (flags & DISK_PITER_REVERSE)
540eed56 108 piter->idx = ptbl->len - 1;
71982a40 109 else if (flags & (DISK_PITER_INCL_PART0 | DISK_PITER_INCL_EMPTY_PART0))
e71bf0d0 110 piter->idx = 0;
b5d0b9df
TH
111 else
112 piter->idx = 1;
e71bf0d0
TH
113
114 piter->flags = flags;
540eed56
TH
115
116 rcu_read_unlock();
e71bf0d0
TH
117}
118EXPORT_SYMBOL_GPL(disk_part_iter_init);
119
120/**
121 * disk_part_iter_next - proceed iterator to the next partition and return it
122 * @piter: iterator of interest
123 *
124 * Proceed @piter to the next partition and return it.
125 *
126 * CONTEXT:
127 * Don't care.
128 */
129struct hd_struct *disk_part_iter_next(struct disk_part_iter *piter)
130{
540eed56 131 struct disk_part_tbl *ptbl;
e71bf0d0
TH
132 int inc, end;
133
134 /* put the last partition */
135 disk_put_part(piter->part);
136 piter->part = NULL;
137
540eed56 138 /* get part_tbl */
e71bf0d0 139 rcu_read_lock();
540eed56 140 ptbl = rcu_dereference(piter->disk->part_tbl);
e71bf0d0
TH
141
142 /* determine iteration parameters */
143 if (piter->flags & DISK_PITER_REVERSE) {
144 inc = -1;
71982a40
TH
145 if (piter->flags & (DISK_PITER_INCL_PART0 |
146 DISK_PITER_INCL_EMPTY_PART0))
b5d0b9df
TH
147 end = -1;
148 else
149 end = 0;
e71bf0d0
TH
150 } else {
151 inc = 1;
540eed56 152 end = ptbl->len;
e71bf0d0
TH
153 }
154
155 /* iterate to the next partition */
156 for (; piter->idx != end; piter->idx += inc) {
157 struct hd_struct *part;
158
540eed56 159 part = rcu_dereference(ptbl->part[piter->idx]);
e71bf0d0
TH
160 if (!part)
161 continue;
c83f6bf9 162 if (!part_nr_sects_read(part) &&
71982a40
TH
163 !(piter->flags & DISK_PITER_INCL_EMPTY) &&
164 !(piter->flags & DISK_PITER_INCL_EMPTY_PART0 &&
165 piter->idx == 0))
e71bf0d0
TH
166 continue;
167
ed9e1982 168 get_device(part_to_dev(part));
e71bf0d0
TH
169 piter->part = part;
170 piter->idx += inc;
171 break;
172 }
173
174 rcu_read_unlock();
175
176 return piter->part;
177}
178EXPORT_SYMBOL_GPL(disk_part_iter_next);
179
180/**
181 * disk_part_iter_exit - finish up partition iteration
182 * @piter: iter of interest
183 *
184 * Called when iteration is over. Cleans up @piter.
185 *
186 * CONTEXT:
187 * Don't care.
188 */
189void disk_part_iter_exit(struct disk_part_iter *piter)
190{
191 disk_put_part(piter->part);
192 piter->part = NULL;
193}
194EXPORT_SYMBOL_GPL(disk_part_iter_exit);
195
a6f23657
JA
196static inline int sector_in_part(struct hd_struct *part, sector_t sector)
197{
198 return part->start_sect <= sector &&
c83f6bf9 199 sector < part->start_sect + part_nr_sects_read(part);
a6f23657
JA
200}
201
e71bf0d0
TH
202/**
203 * disk_map_sector_rcu - map sector to partition
204 * @disk: gendisk of interest
205 * @sector: sector to map
206 *
207 * Find out which partition @sector maps to on @disk. This is
208 * primarily used for stats accounting.
209 *
210 * CONTEXT:
211 * RCU read locked. The returned partition pointer is valid only
212 * while preemption is disabled.
213 *
214 * RETURNS:
074a7aca 215 * Found partition on success, part0 is returned if no partition matches
e71bf0d0
TH
216 */
217struct hd_struct *disk_map_sector_rcu(struct gendisk *disk, sector_t sector)
218{
540eed56 219 struct disk_part_tbl *ptbl;
a6f23657 220 struct hd_struct *part;
e71bf0d0
TH
221 int i;
222
540eed56
TH
223 ptbl = rcu_dereference(disk->part_tbl);
224
a6f23657
JA
225 part = rcu_dereference(ptbl->last_lookup);
226 if (part && sector_in_part(part, sector))
227 return part;
228
540eed56 229 for (i = 1; i < ptbl->len; i++) {
a6f23657 230 part = rcu_dereference(ptbl->part[i]);
e71bf0d0 231
a6f23657
JA
232 if (part && sector_in_part(part, sector)) {
233 rcu_assign_pointer(ptbl->last_lookup, part);
e71bf0d0 234 return part;
a6f23657 235 }
e71bf0d0 236 }
074a7aca 237 return &disk->part0;
e71bf0d0
TH
238}
239EXPORT_SYMBOL_GPL(disk_map_sector_rcu);
240
1da177e4
LT
241/*
242 * Can be deleted altogether. Later.
243 *
244 */
245static struct blk_major_name {
246 struct blk_major_name *next;
247 int major;
248 char name[16];
68eef3b4 249} *major_names[BLKDEV_MAJOR_HASH_SIZE];
1da177e4
LT
250
251/* index in the above - for now: assume no multimajor ranges */
e61eb2e9 252static inline int major_to_index(unsigned major)
1da177e4 253{
68eef3b4 254 return major % BLKDEV_MAJOR_HASH_SIZE;
7170be5f
NH
255}
256
68eef3b4 257#ifdef CONFIG_PROC_FS
cf771cb5 258void blkdev_show(struct seq_file *seqf, off_t offset)
7170be5f 259{
68eef3b4 260 struct blk_major_name *dp;
7170be5f 261
68eef3b4 262 if (offset < BLKDEV_MAJOR_HASH_SIZE) {
edfaa7c3 263 mutex_lock(&block_class_lock);
68eef3b4 264 for (dp = major_names[offset]; dp; dp = dp->next)
cf771cb5 265 seq_printf(seqf, "%3d %s\n", dp->major, dp->name);
edfaa7c3 266 mutex_unlock(&block_class_lock);
1da177e4 267 }
1da177e4 268}
68eef3b4 269#endif /* CONFIG_PROC_FS */
1da177e4 270
9e8c0bcc
MN
271/**
272 * register_blkdev - register a new block device
273 *
274 * @major: the requested major device number [1..255]. If @major=0, try to
275 * allocate any unused major number.
276 * @name: the name of the new block device as a zero terminated string
277 *
278 * The @name must be unique within the system.
279 *
280 * The return value depends on the @major input parameter.
281 * - if a major device number was requested in range [1..255] then the
282 * function returns zero on success, or a negative error code
283 * - if any unused major number was requested with @major=0 parameter
284 * then the return value is the allocated major number in range
285 * [1..255] or a negative error code otherwise
286 */
1da177e4
LT
287int register_blkdev(unsigned int major, const char *name)
288{
289 struct blk_major_name **n, *p;
290 int index, ret = 0;
291
edfaa7c3 292 mutex_lock(&block_class_lock);
1da177e4
LT
293
294 /* temporary */
295 if (major == 0) {
296 for (index = ARRAY_SIZE(major_names)-1; index > 0; index--) {
297 if (major_names[index] == NULL)
298 break;
299 }
300
301 if (index == 0) {
302 printk("register_blkdev: failed to get major for %s\n",
303 name);
304 ret = -EBUSY;
305 goto out;
306 }
307 major = index;
308 ret = major;
309 }
310
311 p = kmalloc(sizeof(struct blk_major_name), GFP_KERNEL);
312 if (p == NULL) {
313 ret = -ENOMEM;
314 goto out;
315 }
316
317 p->major = major;
318 strlcpy(p->name, name, sizeof(p->name));
319 p->next = NULL;
320 index = major_to_index(major);
321
322 for (n = &major_names[index]; *n; n = &(*n)->next) {
323 if ((*n)->major == major)
324 break;
325 }
326 if (!*n)
327 *n = p;
328 else
329 ret = -EBUSY;
330
331 if (ret < 0) {
332 printk("register_blkdev: cannot get major %d for %s\n",
333 major, name);
334 kfree(p);
335 }
336out:
edfaa7c3 337 mutex_unlock(&block_class_lock);
1da177e4
LT
338 return ret;
339}
340
341EXPORT_SYMBOL(register_blkdev);
342
f4480240 343void unregister_blkdev(unsigned int major, const char *name)
1da177e4
LT
344{
345 struct blk_major_name **n;
346 struct blk_major_name *p = NULL;
347 int index = major_to_index(major);
1da177e4 348
edfaa7c3 349 mutex_lock(&block_class_lock);
1da177e4
LT
350 for (n = &major_names[index]; *n; n = &(*n)->next)
351 if ((*n)->major == major)
352 break;
294462a5
AM
353 if (!*n || strcmp((*n)->name, name)) {
354 WARN_ON(1);
294462a5 355 } else {
1da177e4
LT
356 p = *n;
357 *n = p->next;
358 }
edfaa7c3 359 mutex_unlock(&block_class_lock);
1da177e4 360 kfree(p);
1da177e4
LT
361}
362
363EXPORT_SYMBOL(unregister_blkdev);
364
365static struct kobj_map *bdev_map;
366
870d6656
TH
367/**
368 * blk_mangle_minor - scatter minor numbers apart
369 * @minor: minor number to mangle
370 *
371 * Scatter consecutively allocated @minor number apart if MANGLE_DEVT
372 * is enabled. Mangling twice gives the original value.
373 *
374 * RETURNS:
375 * Mangled value.
376 *
377 * CONTEXT:
378 * Don't care.
379 */
380static int blk_mangle_minor(int minor)
381{
382#ifdef CONFIG_DEBUG_BLOCK_EXT_DEVT
383 int i;
384
385 for (i = 0; i < MINORBITS / 2; i++) {
386 int low = minor & (1 << i);
387 int high = minor & (1 << (MINORBITS - 1 - i));
388 int distance = MINORBITS - 1 - 2 * i;
389
390 minor ^= low | high; /* clear both bits */
391 low <<= distance; /* swap the positions */
392 high >>= distance;
393 minor |= low | high; /* and set */
394 }
395#endif
396 return minor;
397}
398
bcce3de1
TH
399/**
400 * blk_alloc_devt - allocate a dev_t for a partition
401 * @part: partition to allocate dev_t for
bcce3de1
TH
402 * @devt: out parameter for resulting dev_t
403 *
404 * Allocate a dev_t for block device.
405 *
406 * RETURNS:
407 * 0 on success, allocated dev_t is returned in *@devt. -errno on
408 * failure.
409 *
410 * CONTEXT:
411 * Might sleep.
412 */
413int blk_alloc_devt(struct hd_struct *part, dev_t *devt)
414{
415 struct gendisk *disk = part_to_disk(part);
bab998d6 416 int idx;
bcce3de1
TH
417
418 /* in consecutive minor range? */
419 if (part->partno < disk->minors) {
420 *devt = MKDEV(disk->major, disk->first_minor + part->partno);
421 return 0;
422 }
423
424 /* allocate ext devt */
2da78092
KB
425 idr_preload(GFP_KERNEL);
426
4d66e5e9 427 spin_lock_bh(&ext_devt_lock);
2da78092 428 idx = idr_alloc(&ext_devt_idr, part, 0, NR_EXT_DEVT, GFP_NOWAIT);
4d66e5e9 429 spin_unlock_bh(&ext_devt_lock);
2da78092
KB
430
431 idr_preload_end();
bab998d6
TH
432 if (idx < 0)
433 return idx == -ENOSPC ? -EBUSY : idx;
bcce3de1 434
870d6656 435 *devt = MKDEV(BLOCK_EXT_MAJOR, blk_mangle_minor(idx));
bcce3de1
TH
436 return 0;
437}
438
439/**
440 * blk_free_devt - free a dev_t
441 * @devt: dev_t to free
442 *
443 * Free @devt which was allocated using blk_alloc_devt().
444 *
445 * CONTEXT:
446 * Might sleep.
447 */
448void blk_free_devt(dev_t devt)
449{
bcce3de1
TH
450 if (devt == MKDEV(0, 0))
451 return;
452
453 if (MAJOR(devt) == BLOCK_EXT_MAJOR) {
4d66e5e9 454 spin_lock_bh(&ext_devt_lock);
870d6656 455 idr_remove(&ext_devt_idr, blk_mangle_minor(MINOR(devt)));
4d66e5e9 456 spin_unlock_bh(&ext_devt_lock);
bcce3de1
TH
457 }
458}
459
1f014290
TH
460static char *bdevt_str(dev_t devt, char *buf)
461{
462 if (MAJOR(devt) <= 0xff && MINOR(devt) <= 0xff) {
463 char tbuf[BDEVT_SIZE];
464 snprintf(tbuf, BDEVT_SIZE, "%02x%02x", MAJOR(devt), MINOR(devt));
465 snprintf(buf, BDEVT_SIZE, "%-9s", tbuf);
466 } else
467 snprintf(buf, BDEVT_SIZE, "%03x:%05x", MAJOR(devt), MINOR(devt));
468
469 return buf;
470}
471
1da177e4
LT
472/*
473 * Register device numbers dev..(dev+range-1)
474 * range must be nonzero
475 * The hash chain is sorted on range, so that subranges can override.
476 */
edfaa7c3 477void blk_register_region(dev_t devt, unsigned long range, struct module *module,
1da177e4
LT
478 struct kobject *(*probe)(dev_t, int *, void *),
479 int (*lock)(dev_t, void *), void *data)
480{
edfaa7c3 481 kobj_map(bdev_map, devt, range, module, probe, lock, data);
1da177e4
LT
482}
483
484EXPORT_SYMBOL(blk_register_region);
485
edfaa7c3 486void blk_unregister_region(dev_t devt, unsigned long range)
1da177e4 487{
edfaa7c3 488 kobj_unmap(bdev_map, devt, range);
1da177e4
LT
489}
490
491EXPORT_SYMBOL(blk_unregister_region);
492
cf771cb5 493static struct kobject *exact_match(dev_t devt, int *partno, void *data)
1da177e4
LT
494{
495 struct gendisk *p = data;
edfaa7c3 496
ed9e1982 497 return &disk_to_dev(p)->kobj;
1da177e4
LT
498}
499
edfaa7c3 500static int exact_lock(dev_t devt, void *data)
1da177e4
LT
501{
502 struct gendisk *p = data;
503
504 if (!get_disk(p))
505 return -1;
506 return 0;
507}
508
99e6608c
VV
509int disk_alloc_badblocks(struct gendisk *disk)
510{
511 disk->bb = kzalloc(sizeof(*(disk->bb)), GFP_KERNEL);
512 if (!disk->bb)
513 return -ENOMEM;
514
515 return badblocks_init(disk->bb, 1);
516}
517EXPORT_SYMBOL(disk_alloc_badblocks);
518
4752bc30 519static void register_disk(struct gendisk *disk)
d2bf1b67
TH
520{
521 struct device *ddev = disk_to_dev(disk);
522 struct block_device *bdev;
523 struct disk_part_iter piter;
524 struct hd_struct *part;
525 int err;
526
527 ddev->parent = disk->driverfs_dev;
528
ffc8b308 529 dev_set_name(ddev, "%s", disk->disk_name);
d2bf1b67
TH
530
531 /* delay uevents, until we scanned partition table */
532 dev_set_uevent_suppress(ddev, 1);
533
534 if (device_add(ddev))
535 return;
536 if (!sysfs_deprecated) {
537 err = sysfs_create_link(block_depr, &ddev->kobj,
538 kobject_name(&ddev->kobj));
539 if (err) {
540 device_del(ddev);
541 return;
542 }
543 }
25e823c8
ML
544
545 /*
546 * avoid probable deadlock caused by allocating memory with
547 * GFP_KERNEL in runtime_resume callback of its all ancestor
548 * devices
549 */
550 pm_runtime_set_memalloc_noio(ddev, true);
551
d2bf1b67
TH
552 disk->part0.holder_dir = kobject_create_and_add("holders", &ddev->kobj);
553 disk->slave_dir = kobject_create_and_add("slaves", &ddev->kobj);
554
555 /* No minors to use for partitions */
d27769ec 556 if (!disk_part_scan_enabled(disk))
d2bf1b67
TH
557 goto exit;
558
559 /* No such device (e.g., media were just removed) */
560 if (!get_capacity(disk))
561 goto exit;
562
563 bdev = bdget_disk(disk, 0);
564 if (!bdev)
565 goto exit;
566
567 bdev->bd_invalidated = 1;
568 err = blkdev_get(bdev, FMODE_READ, NULL);
569 if (err < 0)
570 goto exit;
571 blkdev_put(bdev, FMODE_READ);
572
573exit:
574 /* announce disk after possible partitions are created */
575 dev_set_uevent_suppress(ddev, 0);
576 kobject_uevent(&ddev->kobj, KOBJ_ADD);
577
578 /* announce possible partitions */
579 disk_part_iter_init(&piter, disk, 0);
580 while ((part = disk_part_iter_next(&piter)))
581 kobject_uevent(&part_to_dev(part)->kobj, KOBJ_ADD);
582 disk_part_iter_exit(&piter);
583}
584
1da177e4
LT
585/**
586 * add_disk - add partitioning information to kernel list
587 * @disk: per-device partitioning information
588 *
589 * This function registers the partitioning information in @disk
590 * with the kernel.
3e1a7ff8
TH
591 *
592 * FIXME: error handling
1da177e4
LT
593 */
594void add_disk(struct gendisk *disk)
595{
cf0ca9fe 596 struct backing_dev_info *bdi;
3e1a7ff8 597 dev_t devt;
6ffeea77 598 int retval;
cf0ca9fe 599
3e1a7ff8
TH
600 /* minors == 0 indicates to use ext devt from part0 and should
601 * be accompanied with EXT_DEVT flag. Make sure all
602 * parameters make sense.
603 */
604 WARN_ON(disk->minors && !(disk->major || disk->first_minor));
605 WARN_ON(!disk->minors && !(disk->flags & GENHD_FL_EXT_DEVT));
606
1da177e4 607 disk->flags |= GENHD_FL_UP;
3e1a7ff8
TH
608
609 retval = blk_alloc_devt(&disk->part0, &devt);
610 if (retval) {
611 WARN_ON(1);
612 return;
613 }
614 disk_to_dev(disk)->devt = devt;
615
616 /* ->major and ->first_minor aren't supposed to be
617 * dereferenced from here on, but set them just in case.
618 */
619 disk->major = MAJOR(devt);
620 disk->first_minor = MINOR(devt);
621
9f53d2fe
SG
622 disk_alloc_events(disk);
623
9f5e4865 624 /* Register BDI before referencing it from bdev */
01ea5063
SJK
625 bdi = &disk->queue->backing_dev_info;
626 bdi_register_dev(bdi, disk_devt(disk));
627
f331c029
TH
628 blk_register_region(disk_devt(disk), disk->minors, NULL,
629 exact_match, exact_lock, disk);
1da177e4
LT
630 register_disk(disk);
631 blk_register_queue(disk);
cf0ca9fe 632
523e1d39
TH
633 /*
634 * Take an extra ref on queue which will be put on disk_release()
635 * so that it sticks around as long as @disk is there.
636 */
09ac46c4 637 WARN_ON_ONCE(!blk_get_queue(disk->queue));
523e1d39 638
ed9e1982
TH
639 retval = sysfs_create_link(&disk_to_dev(disk)->kobj, &bdi->dev->kobj,
640 "bdi");
6ffeea77 641 WARN_ON(retval);
1da177e4 642
77ea887e 643 disk_add_events(disk);
25520d55 644 blk_integrity_add(disk);
1da177e4 645}
1da177e4 646EXPORT_SYMBOL(add_disk);
1da177e4 647
d2bf1b67 648void del_gendisk(struct gendisk *disk)
1da177e4 649{
d2bf1b67
TH
650 struct disk_part_iter piter;
651 struct hd_struct *part;
652
25520d55 653 blk_integrity_del(disk);
77ea887e
TH
654 disk_del_events(disk);
655
d2bf1b67
TH
656 /* invalidate stuff */
657 disk_part_iter_init(&piter, disk,
658 DISK_PITER_INCL_EMPTY | DISK_PITER_REVERSE);
659 while ((part = disk_part_iter_next(&piter))) {
660 invalidate_partition(disk, part->partno);
661 delete_partition(disk, part->partno);
662 }
663 disk_part_iter_exit(&piter);
664
665 invalidate_partition(disk, 0);
d2bf1b67
TH
666 set_capacity(disk, 0);
667 disk->flags &= ~GENHD_FL_UP;
668
ed9e1982 669 sysfs_remove_link(&disk_to_dev(disk)->kobj, "bdi");
1da177e4 670 blk_unregister_queue(disk);
f331c029 671 blk_unregister_region(disk_devt(disk), disk->minors);
d2bf1b67 672
99e6608c
VV
673 if (disk->bb) {
674 badblocks_free(disk->bb);
675 kfree(disk->bb);
676 }
677
d2bf1b67
TH
678 part_stat_set_all(&disk->part0, 0);
679 disk->part0.stamp = 0;
680
681 kobject_put(disk->part0.holder_dir);
682 kobject_put(disk->slave_dir);
d2bf1b67
TH
683 if (!sysfs_deprecated)
684 sysfs_remove_link(block_depr, dev_name(disk_to_dev(disk)));
25e823c8 685 pm_runtime_set_memalloc_noio(disk_to_dev(disk), false);
d2bf1b67 686 device_del(disk_to_dev(disk));
1da177e4 687}
d2bf1b67 688EXPORT_SYMBOL(del_gendisk);
1da177e4 689
99e6608c
VV
690/*
691 * The gendisk usage of badblocks does not track acknowledgements for
692 * badblocks. We always assume they are acknowledged.
693 */
694int disk_check_badblocks(struct gendisk *disk, sector_t s, int sectors,
695 sector_t *first_bad, int *bad_sectors)
696{
697 if (!disk->bb)
698 return 0;
699
700 return badblocks_check(disk->bb, s, sectors, first_bad, bad_sectors);
701}
702EXPORT_SYMBOL(disk_check_badblocks);
703
704int disk_set_badblocks(struct gendisk *disk, sector_t s, int sectors)
705{
706 if (!disk->bb)
707 return 0;
708
709 return badblocks_set(disk->bb, s, sectors, 1);
710}
711EXPORT_SYMBOL(disk_set_badblocks);
712
713int disk_clear_badblocks(struct gendisk *disk, sector_t s, int sectors)
714{
715 if (!disk->bb)
716 return 0;
717
718 return badblocks_clear(disk->bb, s, sectors);
719}
720EXPORT_SYMBOL(disk_clear_badblocks);
721
722/* sysfs access to bad-blocks list. */
723static ssize_t disk_badblocks_show(struct device *dev,
724 struct device_attribute *attr,
725 char *page)
726{
727 struct gendisk *disk = dev_to_disk(dev);
728
729 if (!disk->bb)
730 return sprintf(page, "\n");
731
732 return badblocks_show(disk->bb, page, 0);
733}
734
735static ssize_t disk_badblocks_store(struct device *dev,
736 struct device_attribute *attr,
737 const char *page, size_t len)
738{
739 struct gendisk *disk = dev_to_disk(dev);
740
741 if (!disk->bb)
742 return -ENXIO;
743
744 return badblocks_store(disk->bb, page, len, 0);
745}
746
1da177e4
LT
747/**
748 * get_gendisk - get partitioning information for a given device
710027a4 749 * @devt: device to get partitioning information for
496aa8a9 750 * @partno: returned partition index
1da177e4
LT
751 *
752 * This function gets the structure containing partitioning
710027a4 753 * information for the given device @devt.
1da177e4 754 */
cf771cb5 755struct gendisk *get_gendisk(dev_t devt, int *partno)
1da177e4 756{
bcce3de1
TH
757 struct gendisk *disk = NULL;
758
759 if (MAJOR(devt) != BLOCK_EXT_MAJOR) {
760 struct kobject *kobj;
761
762 kobj = kobj_lookup(bdev_map, devt, partno);
763 if (kobj)
764 disk = dev_to_disk(kobj_to_dev(kobj));
765 } else {
766 struct hd_struct *part;
767
4d66e5e9 768 spin_lock_bh(&ext_devt_lock);
870d6656 769 part = idr_find(&ext_devt_idr, blk_mangle_minor(MINOR(devt)));
bcce3de1
TH
770 if (part && get_disk(part_to_disk(part))) {
771 *partno = part->partno;
772 disk = part_to_disk(part);
773 }
4d66e5e9 774 spin_unlock_bh(&ext_devt_lock);
bcce3de1 775 }
edfaa7c3 776
bcce3de1 777 return disk;
1da177e4 778}
b6ac23af 779EXPORT_SYMBOL(get_gendisk);
1da177e4 780
f331c029
TH
781/**
782 * bdget_disk - do bdget() by gendisk and partition number
783 * @disk: gendisk of interest
784 * @partno: partition number
785 *
786 * Find partition @partno from @disk, do bdget() on it.
787 *
788 * CONTEXT:
789 * Don't care.
790 *
791 * RETURNS:
792 * Resulting block_device on success, NULL on failure.
793 */
aeb3d3a8 794struct block_device *bdget_disk(struct gendisk *disk, int partno)
f331c029 795{
548b10eb
TH
796 struct hd_struct *part;
797 struct block_device *bdev = NULL;
f331c029 798
548b10eb 799 part = disk_get_part(disk, partno);
2bbedcb4 800 if (part)
548b10eb
TH
801 bdev = bdget(part_devt(part));
802 disk_put_part(part);
f331c029 803
548b10eb 804 return bdev;
f331c029
TH
805}
806EXPORT_SYMBOL(bdget_disk);
807
5c6f35c5
GKH
808/*
809 * print a full list of all partitions - intended for places where the root
810 * filesystem can't be mounted and thus to give the victim some idea of what
811 * went wrong
812 */
813void __init printk_all_partitions(void)
814{
def4e38d
TH
815 struct class_dev_iter iter;
816 struct device *dev;
817
818 class_dev_iter_init(&iter, &block_class, NULL, &disk_type);
819 while ((dev = class_dev_iter_next(&iter))) {
820 struct gendisk *disk = dev_to_disk(dev);
e71bf0d0
TH
821 struct disk_part_iter piter;
822 struct hd_struct *part;
1f014290
TH
823 char name_buf[BDEVNAME_SIZE];
824 char devt_buf[BDEVT_SIZE];
def4e38d
TH
825
826 /*
827 * Don't show empty devices or things that have been
25985edc 828 * suppressed
def4e38d
TH
829 */
830 if (get_capacity(disk) == 0 ||
831 (disk->flags & GENHD_FL_SUPPRESS_PARTITION_INFO))
832 continue;
833
834 /*
835 * Note, unlike /proc/partitions, I am showing the
836 * numbers in hex - the same format as the root=
837 * option takes.
838 */
074a7aca
TH
839 disk_part_iter_init(&piter, disk, DISK_PITER_INCL_PART0);
840 while ((part = disk_part_iter_next(&piter))) {
841 bool is_part0 = part == &disk->part0;
def4e38d 842
b5af921e 843 printk("%s%s %10llu %s %s", is_part0 ? "" : " ",
1f014290 844 bdevt_str(part_devt(part), devt_buf),
c83f6bf9
VG
845 (unsigned long long)part_nr_sects_read(part) >> 1
846 , disk_name(disk, part->partno, name_buf),
1ad7e899 847 part->info ? part->info->uuid : "");
074a7aca
TH
848 if (is_part0) {
849 if (disk->driverfs_dev != NULL &&
850 disk->driverfs_dev->driver != NULL)
851 printk(" driver: %s\n",
852 disk->driverfs_dev->driver->name);
853 else
854 printk(" (driver?)\n");
855 } else
856 printk("\n");
857 }
e71bf0d0 858 disk_part_iter_exit(&piter);
def4e38d
TH
859 }
860 class_dev_iter_exit(&iter);
dd2a345f
DG
861}
862
1da177e4
LT
863#ifdef CONFIG_PROC_FS
864/* iterator */
def4e38d 865static void *disk_seqf_start(struct seq_file *seqf, loff_t *pos)
68c4d4a7 866{
def4e38d
TH
867 loff_t skip = *pos;
868 struct class_dev_iter *iter;
869 struct device *dev;
68c4d4a7 870
aeb3d3a8 871 iter = kmalloc(sizeof(*iter), GFP_KERNEL);
def4e38d
TH
872 if (!iter)
873 return ERR_PTR(-ENOMEM);
874
875 seqf->private = iter;
876 class_dev_iter_init(iter, &block_class, NULL, &disk_type);
877 do {
878 dev = class_dev_iter_next(iter);
879 if (!dev)
880 return NULL;
881 } while (skip--);
882
883 return dev_to_disk(dev);
68c4d4a7
GKH
884}
885
def4e38d 886static void *disk_seqf_next(struct seq_file *seqf, void *v, loff_t *pos)
1da177e4 887{
edfaa7c3 888 struct device *dev;
1da177e4 889
def4e38d
TH
890 (*pos)++;
891 dev = class_dev_iter_next(seqf->private);
2ac3cee5 892 if (dev)
68c4d4a7 893 return dev_to_disk(dev);
2ac3cee5 894
1da177e4
LT
895 return NULL;
896}
897
def4e38d 898static void disk_seqf_stop(struct seq_file *seqf, void *v)
27f30251 899{
def4e38d 900 struct class_dev_iter *iter = seqf->private;
27f30251 901
def4e38d
TH
902 /* stop is called even after start failed :-( */
903 if (iter) {
904 class_dev_iter_exit(iter);
905 kfree(iter);
5c0ef6d0 906 }
1da177e4
LT
907}
908
def4e38d 909static void *show_partition_start(struct seq_file *seqf, loff_t *pos)
1da177e4 910{
06768067 911 void *p;
def4e38d
TH
912
913 p = disk_seqf_start(seqf, pos);
b9f985b6 914 if (!IS_ERR_OR_NULL(p) && !*pos)
def4e38d
TH
915 seq_puts(seqf, "major minor #blocks name\n\n");
916 return p;
1da177e4
LT
917}
918
cf771cb5 919static int show_partition(struct seq_file *seqf, void *v)
1da177e4
LT
920{
921 struct gendisk *sgp = v;
e71bf0d0
TH
922 struct disk_part_iter piter;
923 struct hd_struct *part;
1da177e4
LT
924 char buf[BDEVNAME_SIZE];
925
1da177e4 926 /* Don't show non-partitionable removeable devices or empty devices */
d27769ec 927 if (!get_capacity(sgp) || (!disk_max_parts(sgp) &&
f331c029 928 (sgp->flags & GENHD_FL_REMOVABLE)))
1da177e4
LT
929 return 0;
930 if (sgp->flags & GENHD_FL_SUPPRESS_PARTITION_INFO)
931 return 0;
932
933 /* show the full disk and all non-0 size partitions of it */
074a7aca 934 disk_part_iter_init(&piter, sgp, DISK_PITER_INCL_PART0);
e71bf0d0 935 while ((part = disk_part_iter_next(&piter)))
1f014290 936 seq_printf(seqf, "%4d %7d %10llu %s\n",
f331c029 937 MAJOR(part_devt(part)), MINOR(part_devt(part)),
c83f6bf9 938 (unsigned long long)part_nr_sects_read(part) >> 1,
f331c029 939 disk_name(sgp, part->partno, buf));
e71bf0d0 940 disk_part_iter_exit(&piter);
1da177e4
LT
941
942 return 0;
943}
944
f500975a 945static const struct seq_operations partitions_op = {
def4e38d
TH
946 .start = show_partition_start,
947 .next = disk_seqf_next,
948 .stop = disk_seqf_stop,
edfaa7c3 949 .show = show_partition
1da177e4 950};
f500975a
AD
951
952static int partitions_open(struct inode *inode, struct file *file)
953{
954 return seq_open(file, &partitions_op);
955}
956
957static const struct file_operations proc_partitions_operations = {
958 .open = partitions_open,
959 .read = seq_read,
960 .llseek = seq_lseek,
961 .release = seq_release,
962};
1da177e4
LT
963#endif
964
965
cf771cb5 966static struct kobject *base_probe(dev_t devt, int *partno, void *data)
1da177e4 967{
edfaa7c3 968 if (request_module("block-major-%d-%d", MAJOR(devt), MINOR(devt)) > 0)
1da177e4 969 /* Make old-style 2.4 aliases work */
edfaa7c3 970 request_module("block-major-%d", MAJOR(devt));
1da177e4
LT
971 return NULL;
972}
973
974static int __init genhd_device_init(void)
975{
e105b8bf
DW
976 int error;
977
978 block_class.dev_kobj = sysfs_dev_block_kobj;
979 error = class_register(&block_class);
ee27a558
RM
980 if (unlikely(error))
981 return error;
edfaa7c3 982 bdev_map = kobj_map_init(base_probe, &block_class_lock);
1da177e4 983 blk_dev_init();
edfaa7c3 984
561ec68e
ZY
985 register_blkdev(BLOCK_EXT_MAJOR, "blkext");
986
edfaa7c3 987 /* create top-level block dir */
e52eec13
AK
988 if (!sysfs_deprecated)
989 block_depr = kobject_create_and_add("block", NULL);
830d3cfb 990 return 0;
1da177e4
LT
991}
992
993subsys_initcall(genhd_device_init);
994
edfaa7c3
KS
995static ssize_t disk_range_show(struct device *dev,
996 struct device_attribute *attr, char *buf)
1da177e4 997{
edfaa7c3 998 struct gendisk *disk = dev_to_disk(dev);
1da177e4 999
edfaa7c3 1000 return sprintf(buf, "%d\n", disk->minors);
1da177e4
LT
1001}
1002
1f014290
TH
1003static ssize_t disk_ext_range_show(struct device *dev,
1004 struct device_attribute *attr, char *buf)
1005{
1006 struct gendisk *disk = dev_to_disk(dev);
1007
b5d0b9df 1008 return sprintf(buf, "%d\n", disk_max_parts(disk));
1f014290
TH
1009}
1010
edfaa7c3
KS
1011static ssize_t disk_removable_show(struct device *dev,
1012 struct device_attribute *attr, char *buf)
a7fd6706 1013{
edfaa7c3 1014 struct gendisk *disk = dev_to_disk(dev);
a7fd6706 1015
edfaa7c3
KS
1016 return sprintf(buf, "%d\n",
1017 (disk->flags & GENHD_FL_REMOVABLE ? 1 : 0));
a7fd6706
KS
1018}
1019
1c9ce527
KS
1020static ssize_t disk_ro_show(struct device *dev,
1021 struct device_attribute *attr, char *buf)
1022{
1023 struct gendisk *disk = dev_to_disk(dev);
1024
b7db9956 1025 return sprintf(buf, "%d\n", get_disk_ro(disk) ? 1 : 0);
1c9ce527
KS
1026}
1027
edfaa7c3
KS
1028static ssize_t disk_capability_show(struct device *dev,
1029 struct device_attribute *attr, char *buf)
86ce18d7 1030{
edfaa7c3
KS
1031 struct gendisk *disk = dev_to_disk(dev);
1032
1033 return sprintf(buf, "%x\n", disk->flags);
86ce18d7 1034}
edfaa7c3 1035
c72758f3
MP
1036static ssize_t disk_alignment_offset_show(struct device *dev,
1037 struct device_attribute *attr,
1038 char *buf)
1039{
1040 struct gendisk *disk = dev_to_disk(dev);
1041
1042 return sprintf(buf, "%d\n", queue_alignment_offset(disk->queue));
1043}
1044
86b37281
MP
1045static ssize_t disk_discard_alignment_show(struct device *dev,
1046 struct device_attribute *attr,
1047 char *buf)
1048{
1049 struct gendisk *disk = dev_to_disk(dev);
1050
dd3d145d 1051 return sprintf(buf, "%d\n", queue_discard_alignment(disk->queue));
86b37281
MP
1052}
1053
edfaa7c3 1054static DEVICE_ATTR(range, S_IRUGO, disk_range_show, NULL);
1f014290 1055static DEVICE_ATTR(ext_range, S_IRUGO, disk_ext_range_show, NULL);
edfaa7c3 1056static DEVICE_ATTR(removable, S_IRUGO, disk_removable_show, NULL);
1c9ce527 1057static DEVICE_ATTR(ro, S_IRUGO, disk_ro_show, NULL);
e5610521 1058static DEVICE_ATTR(size, S_IRUGO, part_size_show, NULL);
c72758f3 1059static DEVICE_ATTR(alignment_offset, S_IRUGO, disk_alignment_offset_show, NULL);
86b37281
MP
1060static DEVICE_ATTR(discard_alignment, S_IRUGO, disk_discard_alignment_show,
1061 NULL);
edfaa7c3 1062static DEVICE_ATTR(capability, S_IRUGO, disk_capability_show, NULL);
074a7aca 1063static DEVICE_ATTR(stat, S_IRUGO, part_stat_show, NULL);
316d315b 1064static DEVICE_ATTR(inflight, S_IRUGO, part_inflight_show, NULL);
99e6608c
VV
1065static DEVICE_ATTR(badblocks, S_IRUGO | S_IWUSR, disk_badblocks_show,
1066 disk_badblocks_store);
c17bb495 1067#ifdef CONFIG_FAIL_MAKE_REQUEST
edfaa7c3 1068static struct device_attribute dev_attr_fail =
eddb2e26 1069 __ATTR(make-it-fail, S_IRUGO|S_IWUSR, part_fail_show, part_fail_store);
c17bb495 1070#endif
581d4e28
JA
1071#ifdef CONFIG_FAIL_IO_TIMEOUT
1072static struct device_attribute dev_attr_fail_timeout =
1073 __ATTR(io-timeout-fail, S_IRUGO|S_IWUSR, part_timeout_show,
1074 part_timeout_store);
1075#endif
edfaa7c3
KS
1076
1077static struct attribute *disk_attrs[] = {
1078 &dev_attr_range.attr,
1f014290 1079 &dev_attr_ext_range.attr,
edfaa7c3 1080 &dev_attr_removable.attr,
1c9ce527 1081 &dev_attr_ro.attr,
edfaa7c3 1082 &dev_attr_size.attr,
c72758f3 1083 &dev_attr_alignment_offset.attr,
86b37281 1084 &dev_attr_discard_alignment.attr,
edfaa7c3
KS
1085 &dev_attr_capability.attr,
1086 &dev_attr_stat.attr,
316d315b 1087 &dev_attr_inflight.attr,
99e6608c 1088 &dev_attr_badblocks.attr,
edfaa7c3
KS
1089#ifdef CONFIG_FAIL_MAKE_REQUEST
1090 &dev_attr_fail.attr,
581d4e28
JA
1091#endif
1092#ifdef CONFIG_FAIL_IO_TIMEOUT
1093 &dev_attr_fail_timeout.attr,
edfaa7c3
KS
1094#endif
1095 NULL
1096};
1097
1098static struct attribute_group disk_attr_group = {
1099 .attrs = disk_attrs,
1100};
1101
a4dbd674 1102static const struct attribute_group *disk_attr_groups[] = {
edfaa7c3
KS
1103 &disk_attr_group,
1104 NULL
1da177e4
LT
1105};
1106
540eed56
TH
1107/**
1108 * disk_replace_part_tbl - replace disk->part_tbl in RCU-safe way
1109 * @disk: disk to replace part_tbl for
1110 * @new_ptbl: new part_tbl to install
1111 *
1112 * Replace disk->part_tbl with @new_ptbl in RCU-safe way. The
1113 * original ptbl is freed using RCU callback.
1114 *
1115 * LOCKING:
1116 * Matching bd_mutx locked.
1117 */
1118static void disk_replace_part_tbl(struct gendisk *disk,
1119 struct disk_part_tbl *new_ptbl)
1120{
1121 struct disk_part_tbl *old_ptbl = disk->part_tbl;
1122
1123 rcu_assign_pointer(disk->part_tbl, new_ptbl);
a6f23657
JA
1124
1125 if (old_ptbl) {
1126 rcu_assign_pointer(old_ptbl->last_lookup, NULL);
57bdfbf9 1127 kfree_rcu(old_ptbl, rcu_head);
a6f23657 1128 }
540eed56
TH
1129}
1130
1131/**
1132 * disk_expand_part_tbl - expand disk->part_tbl
1133 * @disk: disk to expand part_tbl for
1134 * @partno: expand such that this partno can fit in
1135 *
1136 * Expand disk->part_tbl such that @partno can fit in. disk->part_tbl
1137 * uses RCU to allow unlocked dereferencing for stats and other stuff.
1138 *
1139 * LOCKING:
1140 * Matching bd_mutex locked, might sleep.
1141 *
1142 * RETURNS:
1143 * 0 on success, -errno on failure.
1144 */
1145int disk_expand_part_tbl(struct gendisk *disk, int partno)
1146{
1147 struct disk_part_tbl *old_ptbl = disk->part_tbl;
1148 struct disk_part_tbl *new_ptbl;
1149 int len = old_ptbl ? old_ptbl->len : 0;
5fabcb4c 1150 int i, target;
540eed56 1151 size_t size;
5fabcb4c
JA
1152
1153 /*
1154 * check for int overflow, since we can get here from blkpg_ioctl()
1155 * with a user passed 'partno'.
1156 */
1157 target = partno + 1;
1158 if (target < 0)
1159 return -EINVAL;
540eed56
TH
1160
1161 /* disk_max_parts() is zero during initialization, ignore if so */
1162 if (disk_max_parts(disk) && target > disk_max_parts(disk))
1163 return -EINVAL;
1164
1165 if (target <= len)
1166 return 0;
1167
1168 size = sizeof(*new_ptbl) + target * sizeof(new_ptbl->part[0]);
1169 new_ptbl = kzalloc_node(size, GFP_KERNEL, disk->node_id);
1170 if (!new_ptbl)
1171 return -ENOMEM;
1172
540eed56
TH
1173 new_ptbl->len = target;
1174
1175 for (i = 0; i < len; i++)
1176 rcu_assign_pointer(new_ptbl->part[i], old_ptbl->part[i]);
1177
1178 disk_replace_part_tbl(disk, new_ptbl);
1179 return 0;
1180}
1181
edfaa7c3 1182static void disk_release(struct device *dev)
1da177e4 1183{
edfaa7c3
KS
1184 struct gendisk *disk = dev_to_disk(dev);
1185
2da78092 1186 blk_free_devt(dev->devt);
77ea887e 1187 disk_release_events(disk);
1da177e4 1188 kfree(disk->random);
540eed56 1189 disk_replace_part_tbl(disk, NULL);
b54e5ed8 1190 hd_free_part(&disk->part0);
523e1d39
TH
1191 if (disk->queue)
1192 blk_put_queue(disk->queue);
1da177e4
LT
1193 kfree(disk);
1194}
edfaa7c3
KS
1195struct class block_class = {
1196 .name = "block",
1da177e4
LT
1197};
1198
3c2670e6 1199static char *block_devnode(struct device *dev, umode_t *mode,
4e4098a3 1200 kuid_t *uid, kgid_t *gid)
b03f38b6
KS
1201{
1202 struct gendisk *disk = dev_to_disk(dev);
1203
e454cea2
KS
1204 if (disk->devnode)
1205 return disk->devnode(disk, mode);
b03f38b6
KS
1206 return NULL;
1207}
1208
1826eadf 1209static struct device_type disk_type = {
edfaa7c3
KS
1210 .name = "disk",
1211 .groups = disk_attr_groups,
1212 .release = disk_release,
e454cea2 1213 .devnode = block_devnode,
1da177e4
LT
1214};
1215
a6e2ba88 1216#ifdef CONFIG_PROC_FS
cf771cb5
TH
1217/*
1218 * aggregate disk stat collector. Uses the same stats that the sysfs
1219 * entries do, above, but makes them available through one seq_file.
1220 *
1221 * The output looks suspiciously like /proc/partitions with a bunch of
1222 * extra fields.
1223 */
1224static int diskstats_show(struct seq_file *seqf, void *v)
1da177e4
LT
1225{
1226 struct gendisk *gp = v;
e71bf0d0
TH
1227 struct disk_part_iter piter;
1228 struct hd_struct *hd;
1da177e4 1229 char buf[BDEVNAME_SIZE];
c9959059 1230 int cpu;
1da177e4
LT
1231
1232 /*
ed9e1982 1233 if (&disk_to_dev(gp)->kobj.entry == block_class.devices.next)
cf771cb5 1234 seq_puts(seqf, "major minor name"
1da177e4
LT
1235 " rio rmerge rsect ruse wio wmerge "
1236 "wsect wuse running use aveq"
1237 "\n\n");
1238 */
9f5e4865 1239
71982a40 1240 disk_part_iter_init(&piter, gp, DISK_PITER_INCL_EMPTY_PART0);
e71bf0d0 1241 while ((hd = disk_part_iter_next(&piter))) {
074a7aca 1242 cpu = part_stat_lock();
c9959059 1243 part_round_stats(cpu, hd);
074a7aca 1244 part_stat_unlock();
f95fe9cf
HP
1245 seq_printf(seqf, "%4d %7d %s %lu %lu %lu "
1246 "%u %lu %lu %lu %u %u %u %u\n",
f331c029
TH
1247 MAJOR(part_devt(hd)), MINOR(part_devt(hd)),
1248 disk_name(gp, hd->partno, buf),
53f22956
LY
1249 part_stat_read(hd, ios[READ]),
1250 part_stat_read(hd, merges[READ]),
f95fe9cf 1251 part_stat_read(hd, sectors[READ]),
53f22956
LY
1252 jiffies_to_msecs(part_stat_read(hd, ticks[READ])),
1253 part_stat_read(hd, ios[WRITE]),
1254 part_stat_read(hd, merges[WRITE]),
f95fe9cf 1255 part_stat_read(hd, sectors[WRITE]),
53f22956 1256 jiffies_to_msecs(part_stat_read(hd, ticks[WRITE])),
316d315b 1257 part_in_flight(hd),
28f39d55
JM
1258 jiffies_to_msecs(part_stat_read(hd, io_ticks)),
1259 jiffies_to_msecs(part_stat_read(hd, time_in_queue))
1260 );
1da177e4 1261 }
e71bf0d0 1262 disk_part_iter_exit(&piter);
9f5e4865 1263
1da177e4
LT
1264 return 0;
1265}
1266
31d85ab2 1267static const struct seq_operations diskstats_op = {
def4e38d
TH
1268 .start = disk_seqf_start,
1269 .next = disk_seqf_next,
1270 .stop = disk_seqf_stop,
1da177e4
LT
1271 .show = diskstats_show
1272};
f500975a 1273
31d85ab2
AD
1274static int diskstats_open(struct inode *inode, struct file *file)
1275{
1276 return seq_open(file, &diskstats_op);
1277}
1278
1279static const struct file_operations proc_diskstats_operations = {
1280 .open = diskstats_open,
1281 .read = seq_read,
1282 .llseek = seq_lseek,
1283 .release = seq_release,
1284};
1285
f500975a
AD
1286static int __init proc_genhd_init(void)
1287{
31d85ab2 1288 proc_create("diskstats", 0, NULL, &proc_diskstats_operations);
f500975a
AD
1289 proc_create("partitions", 0, NULL, &proc_partitions_operations);
1290 return 0;
1291}
1292module_init(proc_genhd_init);
a6e2ba88 1293#endif /* CONFIG_PROC_FS */
1da177e4 1294
cf771cb5 1295dev_t blk_lookup_devt(const char *name, int partno)
a142be85 1296{
def4e38d
TH
1297 dev_t devt = MKDEV(0, 0);
1298 struct class_dev_iter iter;
1299 struct device *dev;
a142be85 1300
def4e38d
TH
1301 class_dev_iter_init(&iter, &block_class, NULL, &disk_type);
1302 while ((dev = class_dev_iter_next(&iter))) {
a142be85 1303 struct gendisk *disk = dev_to_disk(dev);
548b10eb 1304 struct hd_struct *part;
a142be85 1305
3ada8b7e 1306 if (strcmp(dev_name(dev), name))
f331c029 1307 continue;
f331c029 1308
41b8c853
NB
1309 if (partno < disk->minors) {
1310 /* We need to return the right devno, even
1311 * if the partition doesn't exist yet.
1312 */
1313 devt = MKDEV(MAJOR(dev->devt),
1314 MINOR(dev->devt) + partno);
1315 break;
1316 }
548b10eb 1317 part = disk_get_part(disk, partno);
2bbedcb4 1318 if (part) {
f331c029 1319 devt = part_devt(part);
e71bf0d0 1320 disk_put_part(part);
548b10eb 1321 break;
def4e38d 1322 }
548b10eb 1323 disk_put_part(part);
5c0ef6d0 1324 }
def4e38d 1325 class_dev_iter_exit(&iter);
edfaa7c3
KS
1326 return devt;
1327}
edfaa7c3
KS
1328EXPORT_SYMBOL(blk_lookup_devt);
1329
1da177e4
LT
1330struct gendisk *alloc_disk(int minors)
1331{
c304a51b 1332 return alloc_disk_node(minors, NUMA_NO_NODE);
1946089a 1333}
689d6fac 1334EXPORT_SYMBOL(alloc_disk);
1946089a
CL
1335
1336struct gendisk *alloc_disk_node(int minors, int node_id)
1337{
1338 struct gendisk *disk;
1339
c1b511eb 1340 disk = kzalloc_node(sizeof(struct gendisk), GFP_KERNEL, node_id);
1da177e4 1341 if (disk) {
074a7aca 1342 if (!init_part_stats(&disk->part0)) {
1da177e4
LT
1343 kfree(disk);
1344 return NULL;
1345 }
bf91db18 1346 disk->node_id = node_id;
540eed56
TH
1347 if (disk_expand_part_tbl(disk, 0)) {
1348 free_part_stats(&disk->part0);
b5d0b9df
TH
1349 kfree(disk);
1350 return NULL;
1da177e4 1351 }
540eed56 1352 disk->part_tbl->part[0] = &disk->part0;
6c23a968 1353
c83f6bf9
VG
1354 /*
1355 * set_capacity() and get_capacity() currently don't use
1356 * seqcounter to read/update the part0->nr_sects. Still init
1357 * the counter as we can read the sectors in IO submission
1358 * patch using seqence counters.
1359 *
1360 * TODO: Ideally set_capacity() and get_capacity() should be
1361 * converted to make use of bd_mutex and sequence counters.
1362 */
1363 seqcount_init(&disk->part0.nr_sects_seq);
6c71013e
ML
1364 if (hd_ref_init(&disk->part0)) {
1365 hd_free_part(&disk->part0);
1366 kfree(disk);
1367 return NULL;
1368 }
b5d0b9df 1369
1da177e4 1370 disk->minors = minors;
1da177e4 1371 rand_initialize_disk(disk);
ed9e1982
TH
1372 disk_to_dev(disk)->class = &block_class;
1373 disk_to_dev(disk)->type = &disk_type;
1374 device_initialize(disk_to_dev(disk));
1da177e4
LT
1375 }
1376 return disk;
1377}
1946089a 1378EXPORT_SYMBOL(alloc_disk_node);
1da177e4
LT
1379
1380struct kobject *get_disk(struct gendisk *disk)
1381{
1382 struct module *owner;
1383 struct kobject *kobj;
1384
1385 if (!disk->fops)
1386 return NULL;
1387 owner = disk->fops->owner;
1388 if (owner && !try_module_get(owner))
1389 return NULL;
ed9e1982 1390 kobj = kobject_get(&disk_to_dev(disk)->kobj);
1da177e4
LT
1391 if (kobj == NULL) {
1392 module_put(owner);
1393 return NULL;
1394 }
1395 return kobj;
1396
1397}
1398
1399EXPORT_SYMBOL(get_disk);
1400
1401void put_disk(struct gendisk *disk)
1402{
1403 if (disk)
ed9e1982 1404 kobject_put(&disk_to_dev(disk)->kobj);
1da177e4
LT
1405}
1406
1407EXPORT_SYMBOL(put_disk);
1408
e3264a4d
HR
1409static void set_disk_ro_uevent(struct gendisk *gd, int ro)
1410{
1411 char event[] = "DISK_RO=1";
1412 char *envp[] = { event, NULL };
1413
1414 if (!ro)
1415 event[8] = '0';
1416 kobject_uevent_env(&disk_to_dev(gd)->kobj, KOBJ_CHANGE, envp);
1417}
1418
1da177e4
LT
1419void set_device_ro(struct block_device *bdev, int flag)
1420{
b7db9956 1421 bdev->bd_part->policy = flag;
1da177e4
LT
1422}
1423
1424EXPORT_SYMBOL(set_device_ro);
1425
1426void set_disk_ro(struct gendisk *disk, int flag)
1427{
e71bf0d0
TH
1428 struct disk_part_iter piter;
1429 struct hd_struct *part;
1430
e3264a4d
HR
1431 if (disk->part0.policy != flag) {
1432 set_disk_ro_uevent(disk, flag);
1433 disk->part0.policy = flag;
1434 }
1435
1436 disk_part_iter_init(&piter, disk, DISK_PITER_INCL_EMPTY);
e71bf0d0
TH
1437 while ((part = disk_part_iter_next(&piter)))
1438 part->policy = flag;
1439 disk_part_iter_exit(&piter);
1da177e4
LT
1440}
1441
1442EXPORT_SYMBOL(set_disk_ro);
1443
1444int bdev_read_only(struct block_device *bdev)
1445{
1446 if (!bdev)
1447 return 0;
b7db9956 1448 return bdev->bd_part->policy;
1da177e4
LT
1449}
1450
1451EXPORT_SYMBOL(bdev_read_only);
1452
cf771cb5 1453int invalidate_partition(struct gendisk *disk, int partno)
1da177e4
LT
1454{
1455 int res = 0;
cf771cb5 1456 struct block_device *bdev = bdget_disk(disk, partno);
1da177e4 1457 if (bdev) {
2ef41634 1458 fsync_bdev(bdev);
93b270f7 1459 res = __invalidate_device(bdev, true);
1da177e4
LT
1460 bdput(bdev);
1461 }
1462 return res;
1463}
1464
1465EXPORT_SYMBOL(invalidate_partition);
77ea887e
TH
1466
1467/*
1468 * Disk events - monitor disk events like media change and eject request.
1469 */
1470struct disk_events {
1471 struct list_head node; /* all disk_event's */
1472 struct gendisk *disk; /* the associated disk */
1473 spinlock_t lock;
1474
fdd514e1 1475 struct mutex block_mutex; /* protects blocking */
77ea887e
TH
1476 int block; /* event blocking depth */
1477 unsigned int pending; /* events already sent out */
1478 unsigned int clearing; /* events being cleared */
1479
1480 long poll_msecs; /* interval, -1 for default */
1481 struct delayed_work dwork;
1482};
1483
1484static const char *disk_events_strs[] = {
1485 [ilog2(DISK_EVENT_MEDIA_CHANGE)] = "media_change",
1486 [ilog2(DISK_EVENT_EJECT_REQUEST)] = "eject_request",
1487};
1488
1489static char *disk_uevents[] = {
1490 [ilog2(DISK_EVENT_MEDIA_CHANGE)] = "DISK_MEDIA_CHANGE=1",
1491 [ilog2(DISK_EVENT_EJECT_REQUEST)] = "DISK_EJECT_REQUEST=1",
1492};
1493
1494/* list of all disk_events */
1495static DEFINE_MUTEX(disk_events_mutex);
1496static LIST_HEAD(disk_events);
1497
1498/* disable in-kernel polling by default */
1499static unsigned long disk_events_dfl_poll_msecs = 0;
1500
1501static unsigned long disk_events_poll_jiffies(struct gendisk *disk)
1502{
1503 struct disk_events *ev = disk->ev;
1504 long intv_msecs = 0;
1505
1506 /*
1507 * If device-specific poll interval is set, always use it. If
1508 * the default is being used, poll iff there are events which
1509 * can't be monitored asynchronously.
1510 */
1511 if (ev->poll_msecs >= 0)
1512 intv_msecs = ev->poll_msecs;
1513 else if (disk->events & ~disk->async_events)
1514 intv_msecs = disk_events_dfl_poll_msecs;
1515
1516 return msecs_to_jiffies(intv_msecs);
1517}
1518
c3af54af
TH
1519/**
1520 * disk_block_events - block and flush disk event checking
1521 * @disk: disk to block events for
1522 *
1523 * On return from this function, it is guaranteed that event checking
1524 * isn't in progress and won't happen until unblocked by
1525 * disk_unblock_events(). Events blocking is counted and the actual
1526 * unblocking happens after the matching number of unblocks are done.
1527 *
1528 * Note that this intentionally does not block event checking from
1529 * disk_clear_events().
1530 *
1531 * CONTEXT:
1532 * Might sleep.
1533 */
1534void disk_block_events(struct gendisk *disk)
77ea887e
TH
1535{
1536 struct disk_events *ev = disk->ev;
1537 unsigned long flags;
1538 bool cancel;
1539
c3af54af
TH
1540 if (!ev)
1541 return;
1542
fdd514e1
TH
1543 /*
1544 * Outer mutex ensures that the first blocker completes canceling
1545 * the event work before further blockers are allowed to finish.
1546 */
1547 mutex_lock(&ev->block_mutex);
1548
77ea887e
TH
1549 spin_lock_irqsave(&ev->lock, flags);
1550 cancel = !ev->block++;
1551 spin_unlock_irqrestore(&ev->lock, flags);
1552
c3af54af
TH
1553 if (cancel)
1554 cancel_delayed_work_sync(&disk->ev->dwork);
fdd514e1
TH
1555
1556 mutex_unlock(&ev->block_mutex);
77ea887e
TH
1557}
1558
1559static void __disk_unblock_events(struct gendisk *disk, bool check_now)
1560{
1561 struct disk_events *ev = disk->ev;
1562 unsigned long intv;
1563 unsigned long flags;
1564
1565 spin_lock_irqsave(&ev->lock, flags);
1566
1567 if (WARN_ON_ONCE(ev->block <= 0))
1568 goto out_unlock;
1569
1570 if (--ev->block)
1571 goto out_unlock;
1572
1573 /*
1574 * Not exactly a latency critical operation, set poll timer
1575 * slack to 25% and kick event check.
1576 */
1577 intv = disk_events_poll_jiffies(disk);
1578 set_timer_slack(&ev->dwork.timer, intv / 4);
1579 if (check_now)
695588f9
VK
1580 queue_delayed_work(system_freezable_power_efficient_wq,
1581 &ev->dwork, 0);
77ea887e 1582 else if (intv)
695588f9
VK
1583 queue_delayed_work(system_freezable_power_efficient_wq,
1584 &ev->dwork, intv);
77ea887e
TH
1585out_unlock:
1586 spin_unlock_irqrestore(&ev->lock, flags);
1587}
1588
77ea887e
TH
1589/**
1590 * disk_unblock_events - unblock disk event checking
1591 * @disk: disk to unblock events for
1592 *
1593 * Undo disk_block_events(). When the block count reaches zero, it
1594 * starts events polling if configured.
1595 *
1596 * CONTEXT:
1597 * Don't care. Safe to call from irq context.
1598 */
1599void disk_unblock_events(struct gendisk *disk)
1600{
1601 if (disk->ev)
facc31dd 1602 __disk_unblock_events(disk, false);
77ea887e
TH
1603}
1604
1605/**
85ef06d1
TH
1606 * disk_flush_events - schedule immediate event checking and flushing
1607 * @disk: disk to check and flush events for
1608 * @mask: events to flush
77ea887e 1609 *
85ef06d1
TH
1610 * Schedule immediate event checking on @disk if not blocked. Events in
1611 * @mask are scheduled to be cleared from the driver. Note that this
1612 * doesn't clear the events from @disk->ev.
77ea887e
TH
1613 *
1614 * CONTEXT:
85ef06d1 1615 * If @mask is non-zero must be called with bdev->bd_mutex held.
77ea887e 1616 */
85ef06d1 1617void disk_flush_events(struct gendisk *disk, unsigned int mask)
77ea887e 1618{
a9dce2a3 1619 struct disk_events *ev = disk->ev;
a9dce2a3
TH
1620
1621 if (!ev)
1622 return;
1623
85ef06d1
TH
1624 spin_lock_irq(&ev->lock);
1625 ev->clearing |= mask;
41f63c53 1626 if (!ev->block)
695588f9
VK
1627 mod_delayed_work(system_freezable_power_efficient_wq,
1628 &ev->dwork, 0);
85ef06d1 1629 spin_unlock_irq(&ev->lock);
77ea887e 1630}
77ea887e
TH
1631
1632/**
1633 * disk_clear_events - synchronously check, clear and return pending events
1634 * @disk: disk to fetch and clear events from
da3dae54 1635 * @mask: mask of events to be fetched and cleared
77ea887e
TH
1636 *
1637 * Disk events are synchronously checked and pending events in @mask
1638 * are cleared and returned. This ignores the block count.
1639 *
1640 * CONTEXT:
1641 * Might sleep.
1642 */
1643unsigned int disk_clear_events(struct gendisk *disk, unsigned int mask)
1644{
1645 const struct block_device_operations *bdops = disk->fops;
1646 struct disk_events *ev = disk->ev;
1647 unsigned int pending;
12c2bdb2 1648 unsigned int clearing = mask;
77ea887e
TH
1649
1650 if (!ev) {
1651 /* for drivers still using the old ->media_changed method */
1652 if ((mask & DISK_EVENT_MEDIA_CHANGE) &&
1653 bdops->media_changed && bdops->media_changed(disk))
1654 return DISK_EVENT_MEDIA_CHANGE;
1655 return 0;
1656 }
1657
12c2bdb2
DB
1658 disk_block_events(disk);
1659
1660 /*
1661 * store the union of mask and ev->clearing on the stack so that the
1662 * race with disk_flush_events does not cause ambiguity (ev->clearing
1663 * can still be modified even if events are blocked).
1664 */
77ea887e 1665 spin_lock_irq(&ev->lock);
12c2bdb2
DB
1666 clearing |= ev->clearing;
1667 ev->clearing = 0;
77ea887e
TH
1668 spin_unlock_irq(&ev->lock);
1669
12c2bdb2 1670 disk_check_events(ev, &clearing);
aea24a8b 1671 /*
12c2bdb2
DB
1672 * if ev->clearing is not 0, the disk_flush_events got called in the
1673 * middle of this function, so we want to run the workfn without delay.
aea24a8b 1674 */
12c2bdb2 1675 __disk_unblock_events(disk, ev->clearing ? true : false);
77ea887e
TH
1676
1677 /* then, fetch and clear pending events */
1678 spin_lock_irq(&ev->lock);
77ea887e
TH
1679 pending = ev->pending & mask;
1680 ev->pending &= ~mask;
1681 spin_unlock_irq(&ev->lock);
12c2bdb2 1682 WARN_ON_ONCE(clearing & mask);
77ea887e
TH
1683
1684 return pending;
1685}
1686
12c2bdb2
DB
1687/*
1688 * Separate this part out so that a different pointer for clearing_ptr can be
1689 * passed in for disk_clear_events.
1690 */
77ea887e
TH
1691static void disk_events_workfn(struct work_struct *work)
1692{
1693 struct delayed_work *dwork = to_delayed_work(work);
1694 struct disk_events *ev = container_of(dwork, struct disk_events, dwork);
12c2bdb2
DB
1695
1696 disk_check_events(ev, &ev->clearing);
1697}
1698
1699static void disk_check_events(struct disk_events *ev,
1700 unsigned int *clearing_ptr)
1701{
77ea887e
TH
1702 struct gendisk *disk = ev->disk;
1703 char *envp[ARRAY_SIZE(disk_uevents) + 1] = { };
12c2bdb2 1704 unsigned int clearing = *clearing_ptr;
77ea887e
TH
1705 unsigned int events;
1706 unsigned long intv;
1707 int nr_events = 0, i;
1708
1709 /* check events */
1710 events = disk->fops->check_events(disk, clearing);
1711
1712 /* accumulate pending events and schedule next poll if necessary */
1713 spin_lock_irq(&ev->lock);
1714
1715 events &= ~ev->pending;
1716 ev->pending |= events;
12c2bdb2 1717 *clearing_ptr &= ~clearing;
77ea887e
TH
1718
1719 intv = disk_events_poll_jiffies(disk);
1720 if (!ev->block && intv)
695588f9
VK
1721 queue_delayed_work(system_freezable_power_efficient_wq,
1722 &ev->dwork, intv);
77ea887e
TH
1723
1724 spin_unlock_irq(&ev->lock);
1725
7c88a168
TH
1726 /*
1727 * Tell userland about new events. Only the events listed in
1728 * @disk->events are reported. Unlisted events are processed the
1729 * same internally but never get reported to userland.
1730 */
77ea887e 1731 for (i = 0; i < ARRAY_SIZE(disk_uevents); i++)
7c88a168 1732 if (events & disk->events & (1 << i))
77ea887e
TH
1733 envp[nr_events++] = disk_uevents[i];
1734
1735 if (nr_events)
1736 kobject_uevent_env(&disk_to_dev(disk)->kobj, KOBJ_CHANGE, envp);
1737}
1738
1739/*
1740 * A disk events enabled device has the following sysfs nodes under
1741 * its /sys/block/X/ directory.
1742 *
1743 * events : list of all supported events
1744 * events_async : list of events which can be detected w/o polling
1745 * events_poll_msecs : polling interval, 0: disable, -1: system default
1746 */
1747static ssize_t __disk_events_show(unsigned int events, char *buf)
1748{
1749 const char *delim = "";
1750 ssize_t pos = 0;
1751 int i;
1752
1753 for (i = 0; i < ARRAY_SIZE(disk_events_strs); i++)
1754 if (events & (1 << i)) {
1755 pos += sprintf(buf + pos, "%s%s",
1756 delim, disk_events_strs[i]);
1757 delim = " ";
1758 }
1759 if (pos)
1760 pos += sprintf(buf + pos, "\n");
1761 return pos;
1762}
1763
1764static ssize_t disk_events_show(struct device *dev,
1765 struct device_attribute *attr, char *buf)
1766{
1767 struct gendisk *disk = dev_to_disk(dev);
1768
1769 return __disk_events_show(disk->events, buf);
1770}
1771
1772static ssize_t disk_events_async_show(struct device *dev,
1773 struct device_attribute *attr, char *buf)
1774{
1775 struct gendisk *disk = dev_to_disk(dev);
1776
1777 return __disk_events_show(disk->async_events, buf);
1778}
1779
1780static ssize_t disk_events_poll_msecs_show(struct device *dev,
1781 struct device_attribute *attr,
1782 char *buf)
1783{
1784 struct gendisk *disk = dev_to_disk(dev);
1785
1786 return sprintf(buf, "%ld\n", disk->ev->poll_msecs);
1787}
1788
1789static ssize_t disk_events_poll_msecs_store(struct device *dev,
1790 struct device_attribute *attr,
1791 const char *buf, size_t count)
1792{
1793 struct gendisk *disk = dev_to_disk(dev);
1794 long intv;
1795
1796 if (!count || !sscanf(buf, "%ld", &intv))
1797 return -EINVAL;
1798
1799 if (intv < 0 && intv != -1)
1800 return -EINVAL;
1801
c3af54af 1802 disk_block_events(disk);
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1803 disk->ev->poll_msecs = intv;
1804 __disk_unblock_events(disk, true);
1805
1806 return count;
1807}
1808
1809static const DEVICE_ATTR(events, S_IRUGO, disk_events_show, NULL);
1810static const DEVICE_ATTR(events_async, S_IRUGO, disk_events_async_show, NULL);
1811static const DEVICE_ATTR(events_poll_msecs, S_IRUGO|S_IWUSR,
1812 disk_events_poll_msecs_show,
1813 disk_events_poll_msecs_store);
1814
1815static const struct attribute *disk_events_attrs[] = {
1816 &dev_attr_events.attr,
1817 &dev_attr_events_async.attr,
1818 &dev_attr_events_poll_msecs.attr,
1819 NULL,
1820};
1821
1822/*
1823 * The default polling interval can be specified by the kernel
1824 * parameter block.events_dfl_poll_msecs which defaults to 0
1825 * (disable). This can also be modified runtime by writing to
1826 * /sys/module/block/events_dfl_poll_msecs.
1827 */
1828static int disk_events_set_dfl_poll_msecs(const char *val,
1829 const struct kernel_param *kp)
1830{
1831 struct disk_events *ev;
1832 int ret;
1833
1834 ret = param_set_ulong(val, kp);
1835 if (ret < 0)
1836 return ret;
1837
1838 mutex_lock(&disk_events_mutex);
1839
1840 list_for_each_entry(ev, &disk_events, node)
85ef06d1 1841 disk_flush_events(ev->disk, 0);
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1842
1843 mutex_unlock(&disk_events_mutex);
1844
1845 return 0;
1846}
1847
1848static const struct kernel_param_ops disk_events_dfl_poll_msecs_param_ops = {
1849 .set = disk_events_set_dfl_poll_msecs,
1850 .get = param_get_ulong,
1851};
1852
1853#undef MODULE_PARAM_PREFIX
1854#define MODULE_PARAM_PREFIX "block."
1855
1856module_param_cb(events_dfl_poll_msecs, &disk_events_dfl_poll_msecs_param_ops,
1857 &disk_events_dfl_poll_msecs, 0644);
1858
1859/*
9f53d2fe 1860 * disk_{alloc|add|del|release}_events - initialize and destroy disk_events.
77ea887e 1861 */
9f53d2fe 1862static void disk_alloc_events(struct gendisk *disk)
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1863{
1864 struct disk_events *ev;
1865
75e3f3ee 1866 if (!disk->fops->check_events)
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1867 return;
1868
1869 ev = kzalloc(sizeof(*ev), GFP_KERNEL);
1870 if (!ev) {
1871 pr_warn("%s: failed to initialize events\n", disk->disk_name);
1872 return;
1873 }
1874
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1875 INIT_LIST_HEAD(&ev->node);
1876 ev->disk = disk;
1877 spin_lock_init(&ev->lock);
fdd514e1 1878 mutex_init(&ev->block_mutex);
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1879 ev->block = 1;
1880 ev->poll_msecs = -1;
1881 INIT_DELAYED_WORK(&ev->dwork, disk_events_workfn);
1882
9f53d2fe
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1883 disk->ev = ev;
1884}
1885
1886static void disk_add_events(struct gendisk *disk)
1887{
1888 if (!disk->ev)
1889 return;
1890
1891 /* FIXME: error handling */
1892 if (sysfs_create_files(&disk_to_dev(disk)->kobj, disk_events_attrs) < 0)
1893 pr_warn("%s: failed to create sysfs files for events\n",
1894 disk->disk_name);
1895
77ea887e 1896 mutex_lock(&disk_events_mutex);
9f53d2fe 1897 list_add_tail(&disk->ev->node, &disk_events);
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1898 mutex_unlock(&disk_events_mutex);
1899
1900 /*
1901 * Block count is initialized to 1 and the following initial
1902 * unblock kicks it into action.
1903 */
1904 __disk_unblock_events(disk, true);
1905}
1906
1907static void disk_del_events(struct gendisk *disk)
1908{
1909 if (!disk->ev)
1910 return;
1911
c3af54af 1912 disk_block_events(disk);
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1913
1914 mutex_lock(&disk_events_mutex);
1915 list_del_init(&disk->ev->node);
1916 mutex_unlock(&disk_events_mutex);
1917
1918 sysfs_remove_files(&disk_to_dev(disk)->kobj, disk_events_attrs);
1919}
1920
1921static void disk_release_events(struct gendisk *disk)
1922{
1923 /* the block count should be 1 from disk_del_events() */
1924 WARN_ON_ONCE(disk->ev && disk->ev->block != 1);
1925 kfree(disk->ev);
1926}