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94ea4158
AV
1/*
2 * Code extracted from drivers/block/genhd.c
3 * Copyright (C) 1991-1998 Linus Torvalds
4 * Re-organised Feb 1998 Russell King
5 *
6 * We now have independent partition support from the
7 * block drivers, which allows all the partition code to
8 * be grouped in one location, and it to be mostly self
9 * contained.
10 */
11
12#include <linux/init.h>
13#include <linux/module.h>
14#include <linux/fs.h>
15#include <linux/slab.h>
16#include <linux/kmod.h>
17#include <linux/ctype.h>
18#include <linux/genhd.h>
19#include <linux/blktrace_api.h>
20
21#include "partitions/check.h"
22
23#ifdef CONFIG_BLK_DEV_MD
24extern void md_autodetect_dev(dev_t dev);
25#endif
26
27/*
28 * disk_name() is used by partition check code and the genhd driver.
29 * It formats the devicename of the indicated disk into
30 * the supplied buffer (of size at least 32), and returns
31 * a pointer to that same buffer (for convenience).
32 */
33
34char *disk_name(struct gendisk *hd, int partno, char *buf)
35{
36 if (!partno)
37 snprintf(buf, BDEVNAME_SIZE, "%s", hd->disk_name);
38 else if (isdigit(hd->disk_name[strlen(hd->disk_name)-1]))
39 snprintf(buf, BDEVNAME_SIZE, "%sp%d", hd->disk_name, partno);
40 else
41 snprintf(buf, BDEVNAME_SIZE, "%s%d", hd->disk_name, partno);
42
43 return buf;
44}
45
46const char *bdevname(struct block_device *bdev, char *buf)
47{
48 return disk_name(bdev->bd_disk, bdev->bd_part->partno, buf);
49}
50
51EXPORT_SYMBOL(bdevname);
52
53/*
54 * There's very little reason to use this, you should really
55 * have a struct block_device just about everywhere and use
56 * bdevname() instead.
57 */
58const char *__bdevname(dev_t dev, char *buffer)
59{
60 scnprintf(buffer, BDEVNAME_SIZE, "unknown-block(%u,%u)",
61 MAJOR(dev), MINOR(dev));
62 return buffer;
63}
64
65EXPORT_SYMBOL(__bdevname);
66
67static ssize_t part_partition_show(struct device *dev,
68 struct device_attribute *attr, char *buf)
69{
70 struct hd_struct *p = dev_to_part(dev);
71
72 return sprintf(buf, "%d\n", p->partno);
73}
74
75static ssize_t part_start_show(struct device *dev,
76 struct device_attribute *attr, char *buf)
77{
78 struct hd_struct *p = dev_to_part(dev);
79
80 return sprintf(buf, "%llu\n",(unsigned long long)p->start_sect);
81}
82
83ssize_t part_size_show(struct device *dev,
84 struct device_attribute *attr, char *buf)
85{
86 struct hd_struct *p = dev_to_part(dev);
c83f6bf9 87 return sprintf(buf, "%llu\n",(unsigned long long)part_nr_sects_read(p));
94ea4158
AV
88}
89
90static ssize_t part_ro_show(struct device *dev,
91 struct device_attribute *attr, char *buf)
92{
93 struct hd_struct *p = dev_to_part(dev);
94 return sprintf(buf, "%d\n", p->policy ? 1 : 0);
95}
96
97static ssize_t part_alignment_offset_show(struct device *dev,
98 struct device_attribute *attr, char *buf)
99{
100 struct hd_struct *p = dev_to_part(dev);
101 return sprintf(buf, "%llu\n", (unsigned long long)p->alignment_offset);
102}
103
104static ssize_t part_discard_alignment_show(struct device *dev,
105 struct device_attribute *attr, char *buf)
106{
107 struct hd_struct *p = dev_to_part(dev);
108 return sprintf(buf, "%u\n", p->discard_alignment);
109}
110
111ssize_t part_stat_show(struct device *dev,
112 struct device_attribute *attr, char *buf)
113{
114 struct hd_struct *p = dev_to_part(dev);
d62e26b3 115 struct request_queue *q = dev_to_disk(dev)->queue;
0609e0ef 116 unsigned int inflight[2];
94ea4158
AV
117 int cpu;
118
119 cpu = part_stat_lock();
d62e26b3 120 part_round_stats(q, cpu, p);
94ea4158 121 part_stat_unlock();
0609e0ef 122 part_in_flight(q, p, inflight);
94ea4158
AV
123 return sprintf(buf,
124 "%8lu %8lu %8llu %8u "
125 "%8lu %8lu %8llu %8u "
126 "%8u %8u %8u"
127 "\n",
128 part_stat_read(p, ios[READ]),
129 part_stat_read(p, merges[READ]),
130 (unsigned long long)part_stat_read(p, sectors[READ]),
131 jiffies_to_msecs(part_stat_read(p, ticks[READ])),
132 part_stat_read(p, ios[WRITE]),
133 part_stat_read(p, merges[WRITE]),
134 (unsigned long long)part_stat_read(p, sectors[WRITE]),
135 jiffies_to_msecs(part_stat_read(p, ticks[WRITE])),
0609e0ef 136 inflight[0],
94ea4158
AV
137 jiffies_to_msecs(part_stat_read(p, io_ticks)),
138 jiffies_to_msecs(part_stat_read(p, time_in_queue)));
139}
140
141ssize_t part_inflight_show(struct device *dev,
142 struct device_attribute *attr, char *buf)
143{
144 struct hd_struct *p = dev_to_part(dev);
145
146 return sprintf(buf, "%8u %8u\n", atomic_read(&p->in_flight[0]),
147 atomic_read(&p->in_flight[1]));
148}
149
150#ifdef CONFIG_FAIL_MAKE_REQUEST
151ssize_t part_fail_show(struct device *dev,
152 struct device_attribute *attr, char *buf)
153{
154 struct hd_struct *p = dev_to_part(dev);
155
156 return sprintf(buf, "%d\n", p->make_it_fail);
157}
158
159ssize_t part_fail_store(struct device *dev,
160 struct device_attribute *attr,
161 const char *buf, size_t count)
162{
163 struct hd_struct *p = dev_to_part(dev);
164 int i;
165
166 if (count > 0 && sscanf(buf, "%d", &i) > 0)
167 p->make_it_fail = (i == 0) ? 0 : 1;
168
169 return count;
170}
171#endif
172
173static DEVICE_ATTR(partition, S_IRUGO, part_partition_show, NULL);
174static DEVICE_ATTR(start, S_IRUGO, part_start_show, NULL);
175static DEVICE_ATTR(size, S_IRUGO, part_size_show, NULL);
176static DEVICE_ATTR(ro, S_IRUGO, part_ro_show, NULL);
177static DEVICE_ATTR(alignment_offset, S_IRUGO, part_alignment_offset_show, NULL);
178static DEVICE_ATTR(discard_alignment, S_IRUGO, part_discard_alignment_show,
179 NULL);
180static DEVICE_ATTR(stat, S_IRUGO, part_stat_show, NULL);
181static DEVICE_ATTR(inflight, S_IRUGO, part_inflight_show, NULL);
182#ifdef CONFIG_FAIL_MAKE_REQUEST
183static struct device_attribute dev_attr_fail =
184 __ATTR(make-it-fail, S_IRUGO|S_IWUSR, part_fail_show, part_fail_store);
185#endif
186
187static struct attribute *part_attrs[] = {
188 &dev_attr_partition.attr,
189 &dev_attr_start.attr,
190 &dev_attr_size.attr,
191 &dev_attr_ro.attr,
192 &dev_attr_alignment_offset.attr,
193 &dev_attr_discard_alignment.attr,
194 &dev_attr_stat.attr,
195 &dev_attr_inflight.attr,
196#ifdef CONFIG_FAIL_MAKE_REQUEST
197 &dev_attr_fail.attr,
198#endif
199 NULL
200};
201
202static struct attribute_group part_attr_group = {
203 .attrs = part_attrs,
204};
205
206static const struct attribute_group *part_attr_groups[] = {
207 &part_attr_group,
208#ifdef CONFIG_BLK_DEV_IO_TRACE
209 &blk_trace_attr_group,
210#endif
211 NULL
212};
213
214static void part_release(struct device *dev)
215{
216 struct hd_struct *p = dev_to_part(dev);
2da78092 217 blk_free_devt(dev->devt);
b54e5ed8 218 hd_free_part(p);
94ea4158
AV
219 kfree(p);
220}
221
0d9c51a6
SM
222static int part_uevent(struct device *dev, struct kobj_uevent_env *env)
223{
224 struct hd_struct *part = dev_to_part(dev);
225
226 add_uevent_var(env, "PARTN=%u", part->partno);
227 if (part->info && part->info->volname[0])
228 add_uevent_var(env, "PARTNAME=%s", part->info->volname);
229 return 0;
230}
231
94ea4158
AV
232struct device_type part_type = {
233 .name = "partition",
234 .groups = part_attr_groups,
235 .release = part_release,
0d9c51a6 236 .uevent = part_uevent,
94ea4158
AV
237};
238
239static void delete_partition_rcu_cb(struct rcu_head *head)
240{
241 struct hd_struct *part = container_of(head, struct hd_struct, rcu_head);
242
243 part->start_sect = 0;
244 part->nr_sects = 0;
245 part_stat_set_all(part, 0);
246 put_device(part_to_dev(part));
247}
248
6c71013e 249void __delete_partition(struct percpu_ref *ref)
94ea4158 250{
6c71013e 251 struct hd_struct *part = container_of(ref, struct hd_struct, ref);
94ea4158
AV
252 call_rcu(&part->rcu_head, delete_partition_rcu_cb);
253}
254
255void delete_partition(struct gendisk *disk, int partno)
256{
257 struct disk_part_tbl *ptbl = disk->part_tbl;
258 struct hd_struct *part;
259
260 if (partno >= ptbl->len)
261 return;
262
263 part = ptbl->part[partno];
264 if (!part)
265 return;
266
94ea4158
AV
267 rcu_assign_pointer(ptbl->part[partno], NULL);
268 rcu_assign_pointer(ptbl->last_lookup, NULL);
269 kobject_put(part->holder_dir);
270 device_del(part_to_dev(part));
271
6c71013e 272 hd_struct_kill(part);
94ea4158
AV
273}
274
275static ssize_t whole_disk_show(struct device *dev,
276 struct device_attribute *attr, char *buf)
277{
278 return 0;
279}
280static DEVICE_ATTR(whole_disk, S_IRUSR | S_IRGRP | S_IROTH,
281 whole_disk_show, NULL);
282
283struct hd_struct *add_partition(struct gendisk *disk, int partno,
284 sector_t start, sector_t len, int flags,
285 struct partition_meta_info *info)
286{
287 struct hd_struct *p;
288 dev_t devt = MKDEV(0, 0);
289 struct device *ddev = disk_to_dev(disk);
290 struct device *pdev;
291 struct disk_part_tbl *ptbl;
292 const char *dname;
293 int err;
294
295 err = disk_expand_part_tbl(disk, partno);
296 if (err)
297 return ERR_PTR(err);
298 ptbl = disk->part_tbl;
299
300 if (ptbl->part[partno])
301 return ERR_PTR(-EBUSY);
302
303 p = kzalloc(sizeof(*p), GFP_KERNEL);
304 if (!p)
305 return ERR_PTR(-EBUSY);
306
307 if (!init_part_stats(p)) {
308 err = -ENOMEM;
309 goto out_free;
310 }
c83f6bf9
VG
311
312 seqcount_init(&p->nr_sects_seq);
94ea4158
AV
313 pdev = part_to_dev(p);
314
315 p->start_sect = start;
316 p->alignment_offset =
317 queue_limit_alignment_offset(&disk->queue->limits, start);
318 p->discard_alignment =
319 queue_limit_discard_alignment(&disk->queue->limits, start);
320 p->nr_sects = len;
321 p->partno = partno;
322 p->policy = get_disk_ro(disk);
323
324 if (info) {
325 struct partition_meta_info *pinfo = alloc_part_info(disk);
7bd897cf
DC
326 if (!pinfo) {
327 err = -ENOMEM;
94ea4158 328 goto out_free_stats;
7bd897cf 329 }
94ea4158
AV
330 memcpy(pinfo, info, sizeof(*info));
331 p->info = pinfo;
332 }
333
334 dname = dev_name(ddev);
335 if (isdigit(dname[strlen(dname) - 1]))
336 dev_set_name(pdev, "%sp%d", dname, partno);
337 else
338 dev_set_name(pdev, "%s%d", dname, partno);
339
340 device_initialize(pdev);
341 pdev->class = &block_class;
342 pdev->type = &part_type;
343 pdev->parent = ddev;
344
345 err = blk_alloc_devt(p, &devt);
346 if (err)
347 goto out_free_info;
348 pdev->devt = devt;
349
350 /* delay uevent until 'holders' subdir is created */
351 dev_set_uevent_suppress(pdev, 1);
352 err = device_add(pdev);
353 if (err)
354 goto out_put;
355
356 err = -ENOMEM;
357 p->holder_dir = kobject_create_and_add("holders", &pdev->kobj);
358 if (!p->holder_dir)
359 goto out_del;
360
361 dev_set_uevent_suppress(pdev, 0);
362 if (flags & ADDPART_FLAG_WHOLEDISK) {
363 err = device_create_file(pdev, &dev_attr_whole_disk);
364 if (err)
365 goto out_del;
366 }
367
b30a337c
ML
368 err = hd_ref_init(p);
369 if (err) {
370 if (flags & ADDPART_FLAG_WHOLEDISK)
371 goto out_remove_file;
372 goto out_del;
373 }
374
94ea4158
AV
375 /* everything is up and running, commence */
376 rcu_assign_pointer(ptbl->part[partno], p);
377
378 /* suppress uevent if the disk suppresses it */
379 if (!dev_get_uevent_suppress(ddev))
380 kobject_uevent(&pdev->kobj, KOBJ_ADD);
b30a337c 381 return p;
94ea4158
AV
382
383out_free_info:
384 free_part_info(p);
385out_free_stats:
386 free_part_stats(p);
387out_free:
388 kfree(p);
389 return ERR_PTR(err);
b30a337c
ML
390out_remove_file:
391 device_remove_file(pdev, &dev_attr_whole_disk);
94ea4158
AV
392out_del:
393 kobject_put(p->holder_dir);
394 device_del(pdev);
395out_put:
396 put_device(pdev);
397 blk_free_devt(devt);
398 return ERR_PTR(err);
399}
400
401static bool disk_unlock_native_capacity(struct gendisk *disk)
402{
403 const struct block_device_operations *bdops = disk->fops;
404
405 if (bdops->unlock_native_capacity &&
406 !(disk->flags & GENHD_FL_NATIVE_CAPACITY)) {
407 printk(KERN_CONT "enabling native capacity\n");
408 bdops->unlock_native_capacity(disk);
409 disk->flags |= GENHD_FL_NATIVE_CAPACITY;
410 return true;
411 } else {
412 printk(KERN_CONT "truncated\n");
413 return false;
414 }
415}
416
fe316bf2 417static int drop_partitions(struct gendisk *disk, struct block_device *bdev)
94ea4158 418{
94ea4158
AV
419 struct disk_part_iter piter;
420 struct hd_struct *part;
fe316bf2 421 int res;
94ea4158 422
77032ca6 423 if (bdev->bd_part_count || bdev->bd_super)
94ea4158
AV
424 return -EBUSY;
425 res = invalidate_partition(disk, 0);
426 if (res)
427 return res;
428
429 disk_part_iter_init(&piter, disk, DISK_PITER_INCL_EMPTY);
430 while ((part = disk_part_iter_next(&piter)))
431 delete_partition(disk, part->partno);
432 disk_part_iter_exit(&piter);
433
fe316bf2
JN
434 return 0;
435}
436
b02d8aae
DLM
437static bool part_zone_aligned(struct gendisk *disk,
438 struct block_device *bdev,
439 sector_t from, sector_t size)
440{
f99e8648 441 unsigned int zone_sectors = bdev_zone_sectors(bdev);
b02d8aae
DLM
442
443 /*
444 * If this function is called, then the disk is a zoned block device
445 * (host-aware or host-managed). This can be detected even if the
446 * zoned block device support is disabled (CONFIG_BLK_DEV_ZONED not
447 * set). In this case, however, only host-aware devices will be seen
448 * as a block device is not created for host-managed devices. Without
449 * zoned block device support, host-aware drives can still be used as
450 * regular block devices (no zone operation) and their zone size will
451 * be reported as 0. Allow this case.
452 */
f99e8648 453 if (!zone_sectors)
b02d8aae
DLM
454 return true;
455
456 /*
457 * Check partition start and size alignement. If the drive has a
458 * smaller last runt zone, ignore it and allow the partition to
459 * use it. Check the zone size too: it should be a power of 2 number
460 * of sectors.
461 */
f99e8648 462 if (WARN_ON_ONCE(!is_power_of_2(zone_sectors))) {
b02d8aae
DLM
463 u32 rem;
464
f99e8648 465 div_u64_rem(from, zone_sectors, &rem);
b02d8aae
DLM
466 if (rem)
467 return false;
468 if ((from + size) < get_capacity(disk)) {
f99e8648 469 div_u64_rem(size, zone_sectors, &rem);
b02d8aae
DLM
470 if (rem)
471 return false;
472 }
473
474 } else {
475
f99e8648 476 if (from & (zone_sectors - 1))
b02d8aae
DLM
477 return false;
478 if ((from + size) < get_capacity(disk) &&
f99e8648 479 (size & (zone_sectors - 1)))
b02d8aae
DLM
480 return false;
481
482 }
483
484 return true;
485}
486
fe316bf2
JN
487int rescan_partitions(struct gendisk *disk, struct block_device *bdev)
488{
489 struct parsed_partitions *state = NULL;
490 struct hd_struct *part;
491 int p, highest, res;
492rescan:
493 if (state && !IS_ERR(state)) {
ac2e5327 494 free_partitions(state);
fe316bf2
JN
495 state = NULL;
496 }
497
498 res = drop_partitions(disk, bdev);
499 if (res)
500 return res;
501
94ea4158
AV
502 if (disk->fops->revalidate_disk)
503 disk->fops->revalidate_disk(disk);
504 check_disk_size_change(disk, bdev);
505 bdev->bd_invalidated = 0;
506 if (!get_capacity(disk) || !(state = check_partition(disk, bdev)))
507 return 0;
508 if (IS_ERR(state)) {
509 /*
510 * I/O error reading the partition table. If any
511 * partition code tried to read beyond EOD, retry
512 * after unlocking native capacity.
513 */
514 if (PTR_ERR(state) == -ENOSPC) {
515 printk(KERN_WARNING "%s: partition table beyond EOD, ",
516 disk->disk_name);
517 if (disk_unlock_native_capacity(disk))
518 goto rescan;
519 }
520 return -EIO;
521 }
522 /*
523 * If any partition code tried to read beyond EOD, try
524 * unlocking native capacity even if partition table is
525 * successfully read as we could be missing some partitions.
526 */
527 if (state->access_beyond_eod) {
528 printk(KERN_WARNING
529 "%s: partition table partially beyond EOD, ",
530 disk->disk_name);
531 if (disk_unlock_native_capacity(disk))
532 goto rescan;
533 }
534
535 /* tell userspace that the media / partition table may have changed */
536 kobject_uevent(&disk_to_dev(disk)->kobj, KOBJ_CHANGE);
537
538 /* Detect the highest partition number and preallocate
539 * disk->part_tbl. This is an optimization and not strictly
540 * necessary.
541 */
542 for (p = 1, highest = 0; p < state->limit; p++)
543 if (state->parts[p].size)
544 highest = p;
545
546 disk_expand_part_tbl(disk, highest);
547
548 /* add partitions */
549 for (p = 1; p < state->limit; p++) {
550 sector_t size, from;
94ea4158
AV
551
552 size = state->parts[p].size;
553 if (!size)
554 continue;
555
556 from = state->parts[p].from;
557 if (from >= get_capacity(disk)) {
558 printk(KERN_WARNING
559 "%s: p%d start %llu is beyond EOD, ",
560 disk->disk_name, p, (unsigned long long) from);
561 if (disk_unlock_native_capacity(disk))
562 goto rescan;
563 continue;
564 }
565
566 if (from + size > get_capacity(disk)) {
567 printk(KERN_WARNING
568 "%s: p%d size %llu extends beyond EOD, ",
569 disk->disk_name, p, (unsigned long long) size);
570
571 if (disk_unlock_native_capacity(disk)) {
572 /* free state and restart */
573 goto rescan;
574 } else {
575 /*
576 * we can not ignore partitions of broken tables
577 * created by for example camera firmware, but
578 * we limit them to the end of the disk to avoid
579 * creating invalid block devices
580 */
581 size = get_capacity(disk) - from;
582 }
583 }
584
b02d8aae
DLM
585 /*
586 * On a zoned block device, partitions should be aligned on the
587 * device zone size (i.e. zone boundary crossing not allowed).
588 * Otherwise, resetting the write pointer of the last zone of
589 * one partition may impact the following partition.
590 */
591 if (bdev_is_zoned(bdev) &&
592 !part_zone_aligned(disk, bdev, from, size)) {
593 printk(KERN_WARNING
594 "%s: p%d start %llu+%llu is not zone aligned\n",
595 disk->disk_name, p, (unsigned long long) from,
596 (unsigned long long) size);
597 continue;
598 }
599
94ea4158
AV
600 part = add_partition(disk, p, from, size,
601 state->parts[p].flags,
602 &state->parts[p].info);
603 if (IS_ERR(part)) {
604 printk(KERN_ERR " %s: p%d could not be added: %ld\n",
605 disk->disk_name, p, -PTR_ERR(part));
606 continue;
607 }
608#ifdef CONFIG_BLK_DEV_MD
609 if (state->parts[p].flags & ADDPART_FLAG_RAID)
610 md_autodetect_dev(part_to_dev(part)->devt);
611#endif
612 }
ac2e5327 613 free_partitions(state);
94ea4158
AV
614 return 0;
615}
616
fe316bf2
JN
617int invalidate_partitions(struct gendisk *disk, struct block_device *bdev)
618{
619 int res;
620
621 if (!bdev->bd_invalidated)
622 return 0;
623
624 res = drop_partitions(disk, bdev);
625 if (res)
626 return res;
627
628 set_capacity(disk, 0);
629 check_disk_size_change(disk, bdev);
630 bdev->bd_invalidated = 0;
631 /* tell userspace that the media / partition table may have changed */
632 kobject_uevent(&disk_to_dev(disk)->kobj, KOBJ_CHANGE);
633
634 return 0;
635}
636
d1a5f2b4
DW
637unsigned char *read_dev_sector(struct block_device *bdev, sector_t n, Sector *p)
638{
a41fe02b 639 struct address_space *mapping = bdev->bd_inode->i_mapping;
94ea4158
AV
640 struct page *page;
641
a41fe02b 642 page = read_mapping_page(mapping, (pgoff_t)(n >> (PAGE_SHIFT-9)), NULL);
94ea4158
AV
643 if (!IS_ERR(page)) {
644 if (PageError(page))
645 goto fail;
646 p->v = page;
09cbfeaf 647 return (unsigned char *)page_address(page) + ((n & ((1 << (PAGE_SHIFT - 9)) - 1)) << 9);
94ea4158 648fail:
09cbfeaf 649 put_page(page);
94ea4158
AV
650 }
651 p->v = NULL;
652 return NULL;
653}
654
655EXPORT_SYMBOL(read_dev_sector);