md: remove some old DEBUGging code.
[deliverable/linux.git] / drivers / md / bitmap.c
CommitLineData
32a7627c
N
1/*
2 * bitmap.c two-level bitmap (C) Peter T. Breuer (ptb@ot.uc3m.es) 2003
3 *
4 * bitmap_create - sets up the bitmap structure
5 * bitmap_destroy - destroys the bitmap structure
6 *
7 * additions, Copyright (C) 2003-2004, Paul Clements, SteelEye Technology, Inc.:
8 * - added disk storage for bitmap
9 * - changes to allow various bitmap chunk sizes
32a7627c
N
10 */
11
12/*
13 * Still to do:
14 *
15 * flush after percent set rather than just time based. (maybe both).
32a7627c
N
16 */
17
bff61975 18#include <linux/blkdev.h>
32a7627c 19#include <linux/module.h>
32a7627c
N
20#include <linux/errno.h>
21#include <linux/slab.h>
22#include <linux/init.h>
32a7627c
N
23#include <linux/timer.h>
24#include <linux/sched.h>
25#include <linux/list.h>
26#include <linux/file.h>
27#include <linux/mount.h>
28#include <linux/buffer_head.h>
43b2e5d8 29#include "md.h"
ef740c37 30#include "bitmap.h"
32a7627c
N
31
32/* debug macros */
33
34#define DEBUG 0
35
36#if DEBUG
37/* these are for debugging purposes only! */
38
39/* define one and only one of these */
40#define INJECT_FAULTS_1 0 /* cause bitmap_alloc_page to fail always */
41#define INJECT_FAULTS_2 0 /* cause bitmap file to be kicked when first bit set*/
42#define INJECT_FAULTS_3 0 /* treat bitmap file as kicked at init time */
43#define INJECT_FAULTS_4 0 /* undef */
44#define INJECT_FAULTS_5 0 /* undef */
45#define INJECT_FAULTS_6 0
46
47/* if these are defined, the driver will fail! debug only */
48#define INJECT_FATAL_FAULT_1 0 /* fail kmalloc, causing bitmap_create to fail */
49#define INJECT_FATAL_FAULT_2 0 /* undef */
50#define INJECT_FATAL_FAULT_3 0 /* undef */
51#endif
52
32a7627c
N
53#ifndef PRINTK
54# if DEBUG > 0
55# define PRINTK(x...) printk(KERN_DEBUG x)
56# else
57# define PRINTK(x...)
58# endif
59#endif
60
ac2f40be 61static inline char *bmname(struct bitmap *bitmap)
32a7627c
N
62{
63 return bitmap->mddev ? mdname(bitmap->mddev) : "mdX";
64}
65
32a7627c
N
66/*
67 * just a placeholder - calls kmalloc for bitmap pages
68 */
69static unsigned char *bitmap_alloc_page(struct bitmap *bitmap)
70{
71 unsigned char *page;
72
44456d37 73#ifdef INJECT_FAULTS_1
32a7627c
N
74 page = NULL;
75#else
ac2f40be 76 page = kzalloc(PAGE_SIZE, GFP_NOIO);
32a7627c
N
77#endif
78 if (!page)
79 printk("%s: bitmap_alloc_page FAILED\n", bmname(bitmap));
80 else
a654b9d8 81 PRINTK("%s: bitmap_alloc_page: allocated page at %p\n",
32a7627c
N
82 bmname(bitmap), page);
83 return page;
84}
85
86/*
87 * for now just a placeholder -- just calls kfree for bitmap pages
88 */
89static void bitmap_free_page(struct bitmap *bitmap, unsigned char *page)
90{
91 PRINTK("%s: bitmap_free_page: free page %p\n", bmname(bitmap), page);
92 kfree(page);
93}
94
95/*
96 * check a page and, if necessary, allocate it (or hijack it if the alloc fails)
97 *
98 * 1) check to see if this page is allocated, if it's not then try to alloc
99 * 2) if the alloc fails, set the page's hijacked flag so we'll use the
100 * page pointer directly as a counter
101 *
102 * if we find our page, we increment the page's refcount so that it stays
103 * allocated while we're using it
104 */
ac2f40be
N
105static int bitmap_checkpage(struct bitmap *bitmap,
106 unsigned long page, int create)
ee305ace
N
107__releases(bitmap->lock)
108__acquires(bitmap->lock)
32a7627c
N
109{
110 unsigned char *mappage;
111
112 if (page >= bitmap->pages) {
1187cf0a
N
113 /* This can happen if bitmap_start_sync goes beyond
114 * End-of-device while looking for a whole page.
115 * It is harmless.
116 */
32a7627c
N
117 return -EINVAL;
118 }
119
32a7627c
N
120 if (bitmap->bp[page].hijacked) /* it's hijacked, don't try to alloc */
121 return 0;
122
123 if (bitmap->bp[page].map) /* page is already allocated, just return */
124 return 0;
125
126 if (!create)
127 return -ENOENT;
128
32a7627c
N
129 /* this page has not been allocated yet */
130
ac2f40be
N
131 spin_unlock_irq(&bitmap->lock);
132 mappage = bitmap_alloc_page(bitmap);
133 spin_lock_irq(&bitmap->lock);
134
135 if (mappage == NULL) {
32a7627c
N
136 PRINTK("%s: bitmap map page allocation failed, hijacking\n",
137 bmname(bitmap));
138 /* failed - set the hijacked flag so that we can use the
139 * pointer as a counter */
32a7627c
N
140 if (!bitmap->bp[page].map)
141 bitmap->bp[page].hijacked = 1;
ac2f40be
N
142 } else if (bitmap->bp[page].map ||
143 bitmap->bp[page].hijacked) {
32a7627c
N
144 /* somebody beat us to getting the page */
145 bitmap_free_page(bitmap, mappage);
146 return 0;
ac2f40be 147 } else {
32a7627c 148
ac2f40be 149 /* no page was in place and we have one, so install it */
32a7627c 150
ac2f40be
N
151 bitmap->bp[page].map = mappage;
152 bitmap->missing_pages--;
153 }
32a7627c
N
154 return 0;
155}
156
32a7627c
N
157/* if page is completely empty, put it back on the free list, or dealloc it */
158/* if page was hijacked, unmark the flag so it might get alloced next time */
159/* Note: lock should be held when calling this */
858119e1 160static void bitmap_checkfree(struct bitmap *bitmap, unsigned long page)
32a7627c
N
161{
162 char *ptr;
163
164 if (bitmap->bp[page].count) /* page is still busy */
165 return;
166
167 /* page is no longer in use, it can be released */
168
169 if (bitmap->bp[page].hijacked) { /* page was hijacked, undo this now */
170 bitmap->bp[page].hijacked = 0;
171 bitmap->bp[page].map = NULL;
ac2f40be
N
172 } else {
173 /* normal case, free the page */
174 ptr = bitmap->bp[page].map;
175 bitmap->bp[page].map = NULL;
176 bitmap->missing_pages++;
177 bitmap_free_page(bitmap, ptr);
32a7627c 178 }
32a7627c
N
179}
180
32a7627c
N
181/*
182 * bitmap file handling - read and write the bitmap file and its superblock
183 */
184
32a7627c
N
185/*
186 * basic page I/O operations
187 */
188
a654b9d8 189/* IO operations when bitmap is stored near all superblocks */
f6af949c 190static struct page *read_sb_page(mddev_t *mddev, loff_t offset,
a2ed9615
N
191 struct page *page,
192 unsigned long index, int size)
a654b9d8
N
193{
194 /* choose a good rdev and read the page from there */
195
196 mdk_rdev_t *rdev;
a654b9d8 197 sector_t target;
ac2f40be 198 int did_alloc = 0;
a654b9d8 199
ac2f40be 200 if (!page) {
a2ed9615 201 page = alloc_page(GFP_KERNEL);
ac2f40be
N
202 if (!page)
203 return ERR_PTR(-ENOMEM);
204 did_alloc = 1;
205 }
a654b9d8 206
159ec1fc 207 list_for_each_entry(rdev, &mddev->disks, same_set) {
b2d444d7
N
208 if (! test_bit(In_sync, &rdev->flags)
209 || test_bit(Faulty, &rdev->flags))
ab904d63
N
210 continue;
211
ccebd4c4 212 target = offset + index * (PAGE_SIZE/512);
a654b9d8 213
2b193363 214 if (sync_page_io(rdev, target,
e1defc4f 215 roundup(size, bdev_logical_block_size(rdev->bdev)),
ccebd4c4 216 page, READ, true)) {
ab904d63 217 page->index = index;
ce25c31b
N
218 attach_page_buffers(page, NULL); /* so that free_buffer will
219 * quietly no-op */
ab904d63
N
220 return page;
221 }
222 }
ac2f40be
N
223 if (did_alloc)
224 put_page(page);
ab904d63 225 return ERR_PTR(-EIO);
a654b9d8 226
a654b9d8
N
227}
228
b2d2c4ce
N
229static mdk_rdev_t *next_active_rdev(mdk_rdev_t *rdev, mddev_t *mddev)
230{
231 /* Iterate the disks of an mddev, using rcu to protect access to the
232 * linked list, and raising the refcount of devices we return to ensure
233 * they don't disappear while in use.
234 * As devices are only added or removed when raid_disk is < 0 and
235 * nr_pending is 0 and In_sync is clear, the entries we return will
236 * still be in the same position on the list when we re-enter
237 * list_for_each_continue_rcu.
238 */
239 struct list_head *pos;
240 rcu_read_lock();
241 if (rdev == NULL)
242 /* start at the beginning */
243 pos = &mddev->disks;
244 else {
245 /* release the previous rdev and start from there. */
246 rdev_dec_pending(rdev, mddev);
247 pos = &rdev->same_set;
248 }
249 list_for_each_continue_rcu(pos, &mddev->disks) {
250 rdev = list_entry(pos, mdk_rdev_t, same_set);
251 if (rdev->raid_disk >= 0 &&
b2d2c4ce
N
252 !test_bit(Faulty, &rdev->flags)) {
253 /* this is a usable devices */
254 atomic_inc(&rdev->nr_pending);
255 rcu_read_unlock();
256 return rdev;
257 }
258 }
259 rcu_read_unlock();
260 return NULL;
261}
262
ab6085c7 263static int write_sb_page(struct bitmap *bitmap, struct page *page, int wait)
a654b9d8 264{
b2d2c4ce 265 mdk_rdev_t *rdev = NULL;
a6ff7e08 266 struct block_device *bdev;
ab6085c7 267 mddev_t *mddev = bitmap->mddev;
a654b9d8 268
b2d2c4ce 269 while ((rdev = next_active_rdev(rdev, mddev)) != NULL) {
ac2f40be
N
270 int size = PAGE_SIZE;
271 loff_t offset = mddev->bitmap_info.offset;
a6ff7e08
JB
272
273 bdev = (rdev->meta_bdev) ? rdev->meta_bdev : rdev->bdev;
274
ac2f40be
N
275 if (page->index == bitmap->file_pages-1)
276 size = roundup(bitmap->last_page_size,
a6ff7e08 277 bdev_logical_block_size(bdev));
ac2f40be
N
278 /* Just make sure we aren't corrupting data or
279 * metadata
280 */
281 if (mddev->external) {
282 /* Bitmap could be anywhere. */
283 if (rdev->sb_start + offset + (page->index
284 * (PAGE_SIZE/512))
285 > rdev->data_offset
286 &&
287 rdev->sb_start + offset
288 < (rdev->data_offset + mddev->dev_sectors
289 + (PAGE_SIZE/512)))
290 goto bad_alignment;
291 } else if (offset < 0) {
292 /* DATA BITMAP METADATA */
293 if (offset
294 + (long)(page->index * (PAGE_SIZE/512))
295 + size/512 > 0)
296 /* bitmap runs in to metadata */
297 goto bad_alignment;
298 if (rdev->data_offset + mddev->dev_sectors
299 > rdev->sb_start + offset)
300 /* data runs in to bitmap */
301 goto bad_alignment;
302 } else if (rdev->sb_start < rdev->data_offset) {
303 /* METADATA BITMAP DATA */
304 if (rdev->sb_start
305 + offset
306 + page->index*(PAGE_SIZE/512) + size/512
307 > rdev->data_offset)
308 /* bitmap runs in to data */
309 goto bad_alignment;
310 } else {
311 /* DATA METADATA BITMAP - no problems */
312 }
313 md_super_write(mddev, rdev,
314 rdev->sb_start + offset
315 + page->index * (PAGE_SIZE/512),
316 size,
317 page);
b2d2c4ce 318 }
a654b9d8
N
319
320 if (wait)
a9701a30 321 md_super_wait(mddev);
a654b9d8 322 return 0;
4b80991c
N
323
324 bad_alignment:
4b80991c 325 return -EINVAL;
a654b9d8
N
326}
327
4ad13663 328static void bitmap_file_kick(struct bitmap *bitmap);
32a7627c 329/*
a654b9d8 330 * write out a page to a file
32a7627c 331 */
4ad13663 332static void write_page(struct bitmap *bitmap, struct page *page, int wait)
32a7627c 333{
d785a06a 334 struct buffer_head *bh;
32a7627c 335
f0d76d70
N
336 if (bitmap->file == NULL) {
337 switch (write_sb_page(bitmap, page, wait)) {
338 case -EINVAL:
339 bitmap->flags |= BITMAP_WRITE_ERROR;
f0d76d70 340 }
4ad13663 341 } else {
a654b9d8 342
4ad13663 343 bh = page_buffers(page);
c708443c 344
4ad13663
N
345 while (bh && bh->b_blocknr) {
346 atomic_inc(&bitmap->pending_writes);
347 set_buffer_locked(bh);
348 set_buffer_mapped(bh);
721a9602 349 submit_bh(WRITE | REQ_SYNC, bh);
4ad13663
N
350 bh = bh->b_this_page;
351 }
d785a06a 352
ac2f40be 353 if (wait)
4ad13663
N
354 wait_event(bitmap->write_wait,
355 atomic_read(&bitmap->pending_writes)==0);
8a5e9cf1 356 }
4ad13663
N
357 if (bitmap->flags & BITMAP_WRITE_ERROR)
358 bitmap_file_kick(bitmap);
d785a06a
N
359}
360
361static void end_bitmap_write(struct buffer_head *bh, int uptodate)
362{
363 struct bitmap *bitmap = bh->b_private;
364 unsigned long flags;
32a7627c 365
d785a06a
N
366 if (!uptodate) {
367 spin_lock_irqsave(&bitmap->lock, flags);
368 bitmap->flags |= BITMAP_WRITE_ERROR;
369 spin_unlock_irqrestore(&bitmap->lock, flags);
32a7627c 370 }
d785a06a
N
371 if (atomic_dec_and_test(&bitmap->pending_writes))
372 wake_up(&bitmap->write_wait);
373}
32a7627c 374
d785a06a
N
375/* copied from buffer.c */
376static void
377__clear_page_buffers(struct page *page)
378{
379 ClearPagePrivate(page);
380 set_page_private(page, 0);
381 page_cache_release(page);
382}
383static void free_buffers(struct page *page)
384{
385 struct buffer_head *bh = page_buffers(page);
77ad4bc7 386
d785a06a
N
387 while (bh) {
388 struct buffer_head *next = bh->b_this_page;
389 free_buffer_head(bh);
390 bh = next;
77ad4bc7 391 }
d785a06a
N
392 __clear_page_buffers(page);
393 put_page(page);
32a7627c
N
394}
395
d785a06a
N
396/* read a page from a file.
397 * We both read the page, and attach buffers to the page to record the
398 * address of each block (using bmap). These addresses will be used
399 * to write the block later, completely bypassing the filesystem.
400 * This usage is similar to how swap files are handled, and allows us
401 * to write to a file with no concerns of memory allocation failing.
402 */
32a7627c 403static struct page *read_page(struct file *file, unsigned long index,
d785a06a
N
404 struct bitmap *bitmap,
405 unsigned long count)
32a7627c 406{
32a7627c 407 struct page *page = NULL;
c649bb9c 408 struct inode *inode = file->f_path.dentry->d_inode;
d785a06a
N
409 struct buffer_head *bh;
410 sector_t block;
32a7627c 411
ac2f40be 412 PRINTK("read bitmap file (%dB @ %llu)\n", (int)PAGE_SIZE,
2d1f3b5d 413 (unsigned long long)index << PAGE_SHIFT);
32a7627c 414
d785a06a
N
415 page = alloc_page(GFP_KERNEL);
416 if (!page)
417 page = ERR_PTR(-ENOMEM);
32a7627c
N
418 if (IS_ERR(page))
419 goto out;
d785a06a 420
d785a06a
N
421 bh = alloc_page_buffers(page, 1<<inode->i_blkbits, 0);
422 if (!bh) {
2d1f3b5d 423 put_page(page);
d785a06a 424 page = ERR_PTR(-ENOMEM);
32a7627c
N
425 goto out;
426 }
d785a06a
N
427 attach_page_buffers(page, bh);
428 block = index << (PAGE_SHIFT - inode->i_blkbits);
429 while (bh) {
430 if (count == 0)
431 bh->b_blocknr = 0;
432 else {
433 bh->b_blocknr = bmap(inode, block);
434 if (bh->b_blocknr == 0) {
435 /* Cannot use this file! */
436 free_buffers(page);
437 page = ERR_PTR(-EINVAL);
438 goto out;
439 }
440 bh->b_bdev = inode->i_sb->s_bdev;
441 if (count < (1<<inode->i_blkbits))
442 count = 0;
443 else
444 count -= (1<<inode->i_blkbits);
445
446 bh->b_end_io = end_bitmap_write;
447 bh->b_private = bitmap;
ce25c31b
N
448 atomic_inc(&bitmap->pending_writes);
449 set_buffer_locked(bh);
450 set_buffer_mapped(bh);
451 submit_bh(READ, bh);
d785a06a
N
452 }
453 block++;
454 bh = bh->b_this_page;
455 }
d785a06a 456 page->index = index;
ce25c31b
N
457
458 wait_event(bitmap->write_wait,
459 atomic_read(&bitmap->pending_writes)==0);
460 if (bitmap->flags & BITMAP_WRITE_ERROR) {
461 free_buffers(page);
462 page = ERR_PTR(-EIO);
463 }
32a7627c
N
464out:
465 if (IS_ERR(page))
ac2f40be 466 printk(KERN_ALERT "md: bitmap read error: (%dB @ %llu): %ld\n",
2d1f3b5d
N
467 (int)PAGE_SIZE,
468 (unsigned long long)index << PAGE_SHIFT,
32a7627c
N
469 PTR_ERR(page));
470 return page;
471}
472
473/*
474 * bitmap file superblock operations
475 */
476
477/* update the event counter and sync the superblock to disk */
4ad13663 478void bitmap_update_sb(struct bitmap *bitmap)
32a7627c
N
479{
480 bitmap_super_t *sb;
481 unsigned long flags;
482
483 if (!bitmap || !bitmap->mddev) /* no bitmap for this array */
4ad13663 484 return;
ece5cff0
N
485 if (bitmap->mddev->bitmap_info.external)
486 return;
32a7627c
N
487 spin_lock_irqsave(&bitmap->lock, flags);
488 if (!bitmap->sb_page) { /* no superblock */
489 spin_unlock_irqrestore(&bitmap->lock, flags);
4ad13663 490 return;
32a7627c 491 }
32a7627c 492 spin_unlock_irqrestore(&bitmap->lock, flags);
7b92813c 493 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
32a7627c 494 sb->events = cpu_to_le64(bitmap->mddev->events);
8258c532 495 if (bitmap->mddev->events < bitmap->events_cleared)
a0da84f3
NB
496 /* rocking back to read-only */
497 bitmap->events_cleared = bitmap->mddev->events;
8258c532
N
498 sb->events_cleared = cpu_to_le64(bitmap->events_cleared);
499 sb->state = cpu_to_le32(bitmap->flags);
43a70507
N
500 /* Just in case these have been changed via sysfs: */
501 sb->daemon_sleep = cpu_to_le32(bitmap->mddev->bitmap_info.daemon_sleep/HZ);
502 sb->write_behind = cpu_to_le32(bitmap->mddev->bitmap_info.max_write_behind);
ea03aff9 503 kunmap_atomic(sb, KM_USER0);
4ad13663 504 write_page(bitmap, bitmap->sb_page, 1);
32a7627c
N
505}
506
507/* print out the bitmap file superblock */
508void bitmap_print_sb(struct bitmap *bitmap)
509{
510 bitmap_super_t *sb;
511
512 if (!bitmap || !bitmap->sb_page)
513 return;
7b92813c 514 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
32a7627c 515 printk(KERN_DEBUG "%s: bitmap file superblock:\n", bmname(bitmap));
a2cff26a
N
516 printk(KERN_DEBUG " magic: %08x\n", le32_to_cpu(sb->magic));
517 printk(KERN_DEBUG " version: %d\n", le32_to_cpu(sb->version));
518 printk(KERN_DEBUG " uuid: %08x.%08x.%08x.%08x\n",
32a7627c
N
519 *(__u32 *)(sb->uuid+0),
520 *(__u32 *)(sb->uuid+4),
521 *(__u32 *)(sb->uuid+8),
522 *(__u32 *)(sb->uuid+12));
a2cff26a 523 printk(KERN_DEBUG " events: %llu\n",
32a7627c 524 (unsigned long long) le64_to_cpu(sb->events));
a2cff26a 525 printk(KERN_DEBUG "events cleared: %llu\n",
32a7627c 526 (unsigned long long) le64_to_cpu(sb->events_cleared));
a2cff26a
N
527 printk(KERN_DEBUG " state: %08x\n", le32_to_cpu(sb->state));
528 printk(KERN_DEBUG " chunksize: %d B\n", le32_to_cpu(sb->chunksize));
529 printk(KERN_DEBUG " daemon sleep: %ds\n", le32_to_cpu(sb->daemon_sleep));
530 printk(KERN_DEBUG " sync size: %llu KB\n",
531 (unsigned long long)le64_to_cpu(sb->sync_size)/2);
4b6d287f 532 printk(KERN_DEBUG "max write behind: %d\n", le32_to_cpu(sb->write_behind));
ea03aff9 533 kunmap_atomic(sb, KM_USER0);
32a7627c
N
534}
535
9c81075f
JB
536/*
537 * bitmap_new_disk_sb
538 * @bitmap
539 *
540 * This function is somewhat the reverse of bitmap_read_sb. bitmap_read_sb
541 * reads and verifies the on-disk bitmap superblock and populates bitmap_info.
542 * This function verifies 'bitmap_info' and populates the on-disk bitmap
543 * structure, which is to be written to disk.
544 *
545 * Returns: 0 on success, -Exxx on error
546 */
547static int bitmap_new_disk_sb(struct bitmap *bitmap)
548{
549 bitmap_super_t *sb;
550 unsigned long chunksize, daemon_sleep, write_behind;
551 int err = -EINVAL;
552
553 bitmap->sb_page = alloc_page(GFP_KERNEL);
554 if (IS_ERR(bitmap->sb_page)) {
555 err = PTR_ERR(bitmap->sb_page);
556 bitmap->sb_page = NULL;
557 return err;
558 }
559 bitmap->sb_page->index = 0;
560
561 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
562
563 sb->magic = cpu_to_le32(BITMAP_MAGIC);
564 sb->version = cpu_to_le32(BITMAP_MAJOR_HI);
565
566 chunksize = bitmap->mddev->bitmap_info.chunksize;
567 BUG_ON(!chunksize);
568 if (!is_power_of_2(chunksize)) {
569 kunmap_atomic(sb, KM_USER0);
570 printk(KERN_ERR "bitmap chunksize not a power of 2\n");
571 return -EINVAL;
572 }
573 sb->chunksize = cpu_to_le32(chunksize);
574
575 daemon_sleep = bitmap->mddev->bitmap_info.daemon_sleep;
576 if (!daemon_sleep ||
577 (daemon_sleep < 1) || (daemon_sleep > MAX_SCHEDULE_TIMEOUT)) {
578 printk(KERN_INFO "Choosing daemon_sleep default (5 sec)\n");
579 daemon_sleep = 5 * HZ;
580 }
581 sb->daemon_sleep = cpu_to_le32(daemon_sleep);
582 bitmap->mddev->bitmap_info.daemon_sleep = daemon_sleep;
583
584 /*
585 * FIXME: write_behind for RAID1. If not specified, what
586 * is a good choice? We choose COUNTER_MAX / 2 arbitrarily.
587 */
588 write_behind = bitmap->mddev->bitmap_info.max_write_behind;
589 if (write_behind > COUNTER_MAX)
590 write_behind = COUNTER_MAX / 2;
591 sb->write_behind = cpu_to_le32(write_behind);
592 bitmap->mddev->bitmap_info.max_write_behind = write_behind;
593
594 /* keep the array size field of the bitmap superblock up to date */
595 sb->sync_size = cpu_to_le64(bitmap->mddev->resync_max_sectors);
596
597 memcpy(sb->uuid, bitmap->mddev->uuid, 16);
598
599 bitmap->flags |= BITMAP_STALE;
600 sb->state |= cpu_to_le32(BITMAP_STALE);
601 bitmap->events_cleared = bitmap->mddev->events;
602 sb->events_cleared = cpu_to_le64(bitmap->mddev->events);
603
604 bitmap->flags |= BITMAP_HOSTENDIAN;
605 sb->version = cpu_to_le32(BITMAP_MAJOR_HOSTENDIAN);
606
607 kunmap_atomic(sb, KM_USER0);
608
609 return 0;
610}
611
32a7627c
N
612/* read the superblock from the bitmap file and initialize some bitmap fields */
613static int bitmap_read_sb(struct bitmap *bitmap)
614{
615 char *reason = NULL;
616 bitmap_super_t *sb;
4b6d287f 617 unsigned long chunksize, daemon_sleep, write_behind;
32a7627c
N
618 unsigned long long events;
619 int err = -EINVAL;
620
621 /* page 0 is the superblock, read it... */
f49d5e62
N
622 if (bitmap->file) {
623 loff_t isize = i_size_read(bitmap->file->f_mapping->host);
624 int bytes = isize > PAGE_SIZE ? PAGE_SIZE : isize;
625
626 bitmap->sb_page = read_page(bitmap->file, 0, bitmap, bytes);
627 } else {
42a04b50
N
628 bitmap->sb_page = read_sb_page(bitmap->mddev,
629 bitmap->mddev->bitmap_info.offset,
a2ed9615
N
630 NULL,
631 0, sizeof(bitmap_super_t));
a654b9d8 632 }
32a7627c
N
633 if (IS_ERR(bitmap->sb_page)) {
634 err = PTR_ERR(bitmap->sb_page);
635 bitmap->sb_page = NULL;
636 return err;
637 }
638
7b92813c 639 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
32a7627c 640
32a7627c 641 chunksize = le32_to_cpu(sb->chunksize);
1b04be96 642 daemon_sleep = le32_to_cpu(sb->daemon_sleep) * HZ;
4b6d287f 643 write_behind = le32_to_cpu(sb->write_behind);
32a7627c
N
644
645 /* verify that the bitmap-specific fields are valid */
646 if (sb->magic != cpu_to_le32(BITMAP_MAGIC))
647 reason = "bad magic";
bd926c63
N
648 else if (le32_to_cpu(sb->version) < BITMAP_MAJOR_LO ||
649 le32_to_cpu(sb->version) > BITMAP_MAJOR_HI)
32a7627c 650 reason = "unrecognized superblock version";
1187cf0a 651 else if (chunksize < 512)
7dd5d34c 652 reason = "bitmap chunksize too small";
d744540c 653 else if (!is_power_of_2(chunksize))
32a7627c 654 reason = "bitmap chunksize not a power of 2";
1b04be96 655 else if (daemon_sleep < 1 || daemon_sleep > MAX_SCHEDULE_TIMEOUT)
7dd5d34c 656 reason = "daemon sleep period out of range";
4b6d287f
N
657 else if (write_behind > COUNTER_MAX)
658 reason = "write-behind limit out of range (0 - 16383)";
32a7627c
N
659 if (reason) {
660 printk(KERN_INFO "%s: invalid bitmap file superblock: %s\n",
661 bmname(bitmap), reason);
662 goto out;
663 }
664
665 /* keep the array size field of the bitmap superblock up to date */
666 sb->sync_size = cpu_to_le64(bitmap->mddev->resync_max_sectors);
667
668 if (!bitmap->mddev->persistent)
669 goto success;
670
671 /*
672 * if we have a persistent array superblock, compare the
673 * bitmap's UUID and event counter to the mddev's
674 */
675 if (memcmp(sb->uuid, bitmap->mddev->uuid, 16)) {
676 printk(KERN_INFO "%s: bitmap superblock UUID mismatch\n",
677 bmname(bitmap));
678 goto out;
679 }
680 events = le64_to_cpu(sb->events);
681 if (events < bitmap->mddev->events) {
682 printk(KERN_INFO "%s: bitmap file is out of date (%llu < %llu) "
683 "-- forcing full recovery\n", bmname(bitmap), events,
684 (unsigned long long) bitmap->mddev->events);
4f2e639a 685 sb->state |= cpu_to_le32(BITMAP_STALE);
32a7627c
N
686 }
687success:
688 /* assign fields using values from superblock */
42a04b50
N
689 bitmap->mddev->bitmap_info.chunksize = chunksize;
690 bitmap->mddev->bitmap_info.daemon_sleep = daemon_sleep;
42a04b50 691 bitmap->mddev->bitmap_info.max_write_behind = write_behind;
4f2e639a 692 bitmap->flags |= le32_to_cpu(sb->state);
bd926c63
N
693 if (le32_to_cpu(sb->version) == BITMAP_MAJOR_HOSTENDIAN)
694 bitmap->flags |= BITMAP_HOSTENDIAN;
32a7627c 695 bitmap->events_cleared = le64_to_cpu(sb->events_cleared);
8258c532 696 if (bitmap->flags & BITMAP_STALE)
6a07997f 697 bitmap->events_cleared = bitmap->mddev->events;
32a7627c
N
698 err = 0;
699out:
ea03aff9 700 kunmap_atomic(sb, KM_USER0);
32a7627c
N
701 if (err)
702 bitmap_print_sb(bitmap);
703 return err;
704}
705
706enum bitmap_mask_op {
707 MASK_SET,
708 MASK_UNSET
709};
710
4ad13663
N
711/* record the state of the bitmap in the superblock. Return the old value */
712static int bitmap_mask_state(struct bitmap *bitmap, enum bitmap_state bits,
713 enum bitmap_mask_op op)
32a7627c
N
714{
715 bitmap_super_t *sb;
716 unsigned long flags;
4ad13663 717 int old;
32a7627c
N
718
719 spin_lock_irqsave(&bitmap->lock, flags);
7e317655 720 if (!bitmap->sb_page) { /* can't set the state */
32a7627c 721 spin_unlock_irqrestore(&bitmap->lock, flags);
4ad13663 722 return 0;
32a7627c 723 }
32a7627c 724 spin_unlock_irqrestore(&bitmap->lock, flags);
7b92813c 725 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
4ad13663 726 old = le32_to_cpu(sb->state) & bits;
32a7627c 727 switch (op) {
ac2f40be
N
728 case MASK_SET:
729 sb->state |= cpu_to_le32(bits);
8258c532 730 bitmap->flags |= bits;
ac2f40be
N
731 break;
732 case MASK_UNSET:
733 sb->state &= cpu_to_le32(~bits);
8258c532 734 bitmap->flags &= ~bits;
ac2f40be
N
735 break;
736 default:
737 BUG();
32a7627c 738 }
ea03aff9 739 kunmap_atomic(sb, KM_USER0);
4ad13663 740 return old;
32a7627c
N
741}
742
743/*
744 * general bitmap file operations
745 */
746
ece5cff0
N
747/*
748 * on-disk bitmap:
749 *
750 * Use one bit per "chunk" (block set). We do the disk I/O on the bitmap
751 * file a page at a time. There's a superblock at the start of the file.
752 */
32a7627c 753/* calculate the index of the page that contains this bit */
ece5cff0 754static inline unsigned long file_page_index(struct bitmap *bitmap, unsigned long chunk)
32a7627c 755{
ece5cff0
N
756 if (!bitmap->mddev->bitmap_info.external)
757 chunk += sizeof(bitmap_super_t) << 3;
758 return chunk >> PAGE_BIT_SHIFT;
32a7627c
N
759}
760
761/* calculate the (bit) offset of this bit within a page */
ece5cff0 762static inline unsigned long file_page_offset(struct bitmap *bitmap, unsigned long chunk)
32a7627c 763{
ece5cff0
N
764 if (!bitmap->mddev->bitmap_info.external)
765 chunk += sizeof(bitmap_super_t) << 3;
766 return chunk & (PAGE_BITS - 1);
32a7627c
N
767}
768
769/*
770 * return a pointer to the page in the filemap that contains the given bit
771 *
772 * this lookup is complicated by the fact that the bitmap sb might be exactly
773 * 1 page (e.g., x86) or less than 1 page -- so the bitmap might start on page
774 * 0 or page 1
775 */
776static inline struct page *filemap_get_page(struct bitmap *bitmap,
3520fa4d 777 unsigned long chunk)
32a7627c 778{
ac2f40be
N
779 if (file_page_index(bitmap, chunk) >= bitmap->file_pages)
780 return NULL;
ece5cff0
N
781 return bitmap->filemap[file_page_index(bitmap, chunk)
782 - file_page_index(bitmap, 0)];
32a7627c
N
783}
784
32a7627c
N
785static void bitmap_file_unmap(struct bitmap *bitmap)
786{
787 struct page **map, *sb_page;
788 unsigned long *attr;
789 int pages;
790 unsigned long flags;
791
792 spin_lock_irqsave(&bitmap->lock, flags);
793 map = bitmap->filemap;
794 bitmap->filemap = NULL;
795 attr = bitmap->filemap_attr;
796 bitmap->filemap_attr = NULL;
797 pages = bitmap->file_pages;
798 bitmap->file_pages = 0;
799 sb_page = bitmap->sb_page;
800 bitmap->sb_page = NULL;
801 spin_unlock_irqrestore(&bitmap->lock, flags);
802
803 while (pages--)
ece5cff0 804 if (map[pages] != sb_page) /* 0 is sb_page, release it below */
d785a06a 805 free_buffers(map[pages]);
32a7627c
N
806 kfree(map);
807 kfree(attr);
808
d785a06a
N
809 if (sb_page)
810 free_buffers(sb_page);
32a7627c
N
811}
812
813static void bitmap_file_put(struct bitmap *bitmap)
814{
815 struct file *file;
32a7627c
N
816 unsigned long flags;
817
818 spin_lock_irqsave(&bitmap->lock, flags);
819 file = bitmap->file;
820 bitmap->file = NULL;
821 spin_unlock_irqrestore(&bitmap->lock, flags);
822
d785a06a
N
823 if (file)
824 wait_event(bitmap->write_wait,
825 atomic_read(&bitmap->pending_writes)==0);
32a7627c
N
826 bitmap_file_unmap(bitmap);
827
d785a06a 828 if (file) {
c649bb9c 829 struct inode *inode = file->f_path.dentry->d_inode;
fc0ecff6 830 invalidate_mapping_pages(inode->i_mapping, 0, -1);
32a7627c 831 fput(file);
d785a06a 832 }
32a7627c
N
833}
834
32a7627c
N
835/*
836 * bitmap_file_kick - if an error occurs while manipulating the bitmap file
837 * then it is no longer reliable, so we stop using it and we mark the file
838 * as failed in the superblock
839 */
840static void bitmap_file_kick(struct bitmap *bitmap)
841{
842 char *path, *ptr = NULL;
843
4ad13663
N
844 if (bitmap_mask_state(bitmap, BITMAP_STALE, MASK_SET) == 0) {
845 bitmap_update_sb(bitmap);
32a7627c 846
4ad13663
N
847 if (bitmap->file) {
848 path = kmalloc(PAGE_SIZE, GFP_KERNEL);
849 if (path)
6bcfd601
CH
850 ptr = d_path(&bitmap->file->f_path, path,
851 PAGE_SIZE);
852
4ad13663
N
853 printk(KERN_ALERT
854 "%s: kicking failed bitmap file %s from array!\n",
6bcfd601 855 bmname(bitmap), IS_ERR(ptr) ? "" : ptr);
32a7627c 856
4ad13663
N
857 kfree(path);
858 } else
859 printk(KERN_ALERT
860 "%s: disabling internal bitmap due to errors\n",
861 bmname(bitmap));
a654b9d8 862 }
32a7627c
N
863
864 bitmap_file_put(bitmap);
865
866 return;
867}
868
869enum bitmap_page_attr {
ac2f40be 870 BITMAP_PAGE_DIRTY = 0, /* there are set bits that need to be synced */
5a537df4
N
871 BITMAP_PAGE_PENDING = 1, /* there are bits that are being cleaned.
872 * i.e. counter is 1 or 2. */
ac2f40be 873 BITMAP_PAGE_NEEDWRITE = 2, /* there are cleared bits that need to be synced */
32a7627c
N
874};
875
876static inline void set_page_attr(struct bitmap *bitmap, struct page *page,
877 enum bitmap_page_attr attr)
878{
3520fa4d 879 __set_bit((page->index<<2) + attr, bitmap->filemap_attr);
32a7627c
N
880}
881
882static inline void clear_page_attr(struct bitmap *bitmap, struct page *page,
883 enum bitmap_page_attr attr)
884{
3520fa4d 885 __clear_bit((page->index<<2) + attr, bitmap->filemap_attr);
32a7627c
N
886}
887
ec7a3197
N
888static inline unsigned long test_page_attr(struct bitmap *bitmap, struct page *page,
889 enum bitmap_page_attr attr)
32a7627c 890{
3520fa4d 891 return test_bit((page->index<<2) + attr, bitmap->filemap_attr);
32a7627c
N
892}
893
894/*
895 * bitmap_file_set_bit -- called before performing a write to the md device
896 * to set (and eventually sync) a particular bit in the bitmap file
897 *
898 * we set the bit immediately, then we record the page number so that
899 * when an unplug occurs, we can flush the dirty pages out to disk
900 */
901static void bitmap_file_set_bit(struct bitmap *bitmap, sector_t block)
902{
903 unsigned long bit;
3520fa4d 904 struct page *page;
32a7627c
N
905 void *kaddr;
906 unsigned long chunk = block >> CHUNK_BLOCK_SHIFT(bitmap);
907
3520fa4d
JB
908 if (!bitmap->filemap)
909 return;
32a7627c 910
3520fa4d
JB
911 page = filemap_get_page(bitmap, chunk);
912 if (!page)
913 return;
914 bit = file_page_offset(bitmap, chunk);
32a7627c 915
3520fa4d
JB
916 /* set the bit */
917 kaddr = kmap_atomic(page, KM_USER0);
918 if (bitmap->flags & BITMAP_HOSTENDIAN)
919 set_bit(bit, kaddr);
920 else
921 __set_bit_le(bit, kaddr);
922 kunmap_atomic(kaddr, KM_USER0);
923 PRINTK("set file bit %lu page %lu\n", bit, page->index);
32a7627c
N
924 /* record page number so it gets flushed to disk when unplug occurs */
925 set_page_attr(bitmap, page, BITMAP_PAGE_DIRTY);
32a7627c
N
926}
927
928/* this gets called when the md device is ready to unplug its underlying
929 * (slave) device queues -- before we let any writes go down, we need to
930 * sync the dirty pages of the bitmap file to disk */
4ad13663 931void bitmap_unplug(struct bitmap *bitmap)
32a7627c 932{
ec7a3197
N
933 unsigned long i, flags;
934 int dirty, need_write;
32a7627c
N
935 struct page *page;
936 int wait = 0;
937
938 if (!bitmap)
4ad13663 939 return;
32a7627c
N
940
941 /* look at each page to see if there are any set bits that need to be
942 * flushed out to disk */
943 for (i = 0; i < bitmap->file_pages; i++) {
944 spin_lock_irqsave(&bitmap->lock, flags);
a654b9d8 945 if (!bitmap->filemap) {
32a7627c 946 spin_unlock_irqrestore(&bitmap->lock, flags);
4ad13663 947 return;
32a7627c
N
948 }
949 page = bitmap->filemap[i];
ec7a3197
N
950 dirty = test_page_attr(bitmap, page, BITMAP_PAGE_DIRTY);
951 need_write = test_page_attr(bitmap, page, BITMAP_PAGE_NEEDWRITE);
32a7627c
N
952 clear_page_attr(bitmap, page, BITMAP_PAGE_DIRTY);
953 clear_page_attr(bitmap, page, BITMAP_PAGE_NEEDWRITE);
ec7a3197 954 if (dirty)
32a7627c
N
955 wait = 1;
956 spin_unlock_irqrestore(&bitmap->lock, flags);
957
ac2f40be 958 if (dirty || need_write)
4ad13663 959 write_page(bitmap, page, 0);
32a7627c
N
960 }
961 if (wait) { /* if any writes were performed, we need to wait on them */
0b79ccf0 962 if (bitmap->file)
d785a06a
N
963 wait_event(bitmap->write_wait,
964 atomic_read(&bitmap->pending_writes)==0);
0b79ccf0 965 else
a9701a30 966 md_super_wait(bitmap->mddev);
32a7627c 967 }
d785a06a
N
968 if (bitmap->flags & BITMAP_WRITE_ERROR)
969 bitmap_file_kick(bitmap);
32a7627c 970}
ac2f40be 971EXPORT_SYMBOL(bitmap_unplug);
32a7627c 972
6a07997f 973static void bitmap_set_memory_bits(struct bitmap *bitmap, sector_t offset, int needed);
32a7627c
N
974/* * bitmap_init_from_disk -- called at bitmap_create time to initialize
975 * the in-memory bitmap from the on-disk bitmap -- also, sets up the
976 * memory mapping of the bitmap file
977 * Special cases:
978 * if there's no bitmap file, or if the bitmap file had been
979 * previously kicked from the array, we mark all the bits as
980 * 1's in order to cause a full resync.
6a07997f
N
981 *
982 * We ignore all bits for sectors that end earlier than 'start'.
983 * This is used when reading an out-of-date bitmap...
32a7627c 984 */
6a07997f 985static int bitmap_init_from_disk(struct bitmap *bitmap, sector_t start)
32a7627c
N
986{
987 unsigned long i, chunks, index, oldindex, bit;
988 struct page *page = NULL, *oldpage = NULL;
989 unsigned long num_pages, bit_cnt = 0;
990 struct file *file;
d785a06a 991 unsigned long bytes, offset;
32a7627c
N
992 int outofdate;
993 int ret = -ENOSPC;
ea03aff9 994 void *paddr;
32a7627c
N
995
996 chunks = bitmap->chunks;
997 file = bitmap->file;
998
42a04b50 999 BUG_ON(!file && !bitmap->mddev->bitmap_info.offset);
32a7627c 1000
44456d37 1001#ifdef INJECT_FAULTS_3
32a7627c
N
1002 outofdate = 1;
1003#else
1004 outofdate = bitmap->flags & BITMAP_STALE;
1005#endif
1006 if (outofdate)
1007 printk(KERN_INFO "%s: bitmap file is out of date, doing full "
1008 "recovery\n", bmname(bitmap));
1009
e384e585 1010 bytes = DIV_ROUND_UP(bitmap->chunks, 8);
ece5cff0
N
1011 if (!bitmap->mddev->bitmap_info.external)
1012 bytes += sizeof(bitmap_super_t);
bc7f77de 1013
e384e585 1014 num_pages = DIV_ROUND_UP(bytes, PAGE_SIZE);
bc7f77de 1015
ece5cff0 1016 if (file && i_size_read(file->f_mapping->host) < bytes) {
32a7627c
N
1017 printk(KERN_INFO "%s: bitmap file too short %lu < %lu\n",
1018 bmname(bitmap),
1019 (unsigned long) i_size_read(file->f_mapping->host),
ece5cff0 1020 bytes);
4ad13663 1021 goto err;
32a7627c 1022 }
bc7f77de
N
1023
1024 ret = -ENOMEM;
1025
32a7627c 1026 bitmap->filemap = kmalloc(sizeof(struct page *) * num_pages, GFP_KERNEL);
bc7f77de 1027 if (!bitmap->filemap)
4ad13663 1028 goto err;
32a7627c 1029
e16b68b6
N
1030 /* We need 4 bits per page, rounded up to a multiple of sizeof(unsigned long) */
1031 bitmap->filemap_attr = kzalloc(
ac2f40be 1032 roundup(DIV_ROUND_UP(num_pages*4, 8), sizeof(unsigned long)),
e16b68b6 1033 GFP_KERNEL);
bc7f77de 1034 if (!bitmap->filemap_attr)
4ad13663 1035 goto err;
32a7627c 1036
32a7627c
N
1037 oldindex = ~0L;
1038
1039 for (i = 0; i < chunks; i++) {
bd926c63 1040 int b;
ece5cff0
N
1041 index = file_page_index(bitmap, i);
1042 bit = file_page_offset(bitmap, i);
32a7627c 1043 if (index != oldindex) { /* this is a new page, read it in */
d785a06a 1044 int count;
32a7627c 1045 /* unmap the old page, we're done with it */
d785a06a 1046 if (index == num_pages-1)
ece5cff0 1047 count = bytes - index * PAGE_SIZE;
d785a06a
N
1048 else
1049 count = PAGE_SIZE;
ece5cff0 1050 if (index == 0 && bitmap->sb_page) {
32a7627c
N
1051 /*
1052 * if we're here then the superblock page
1053 * contains some bits (PAGE_SIZE != sizeof sb)
1054 * we've already read it in, so just use it
1055 */
1056 page = bitmap->sb_page;
1057 offset = sizeof(bitmap_super_t);
53845270 1058 if (!file)
5c04f551
VK
1059 page = read_sb_page(
1060 bitmap->mddev,
1061 bitmap->mddev->bitmap_info.offset,
1062 page,
1063 index, count);
a654b9d8 1064 } else if (file) {
d785a06a 1065 page = read_page(file, index, bitmap, count);
a654b9d8
N
1066 offset = 0;
1067 } else {
42a04b50
N
1068 page = read_sb_page(bitmap->mddev,
1069 bitmap->mddev->bitmap_info.offset,
a2ed9615
N
1070 NULL,
1071 index, count);
32a7627c
N
1072 offset = 0;
1073 }
a654b9d8
N
1074 if (IS_ERR(page)) { /* read error */
1075 ret = PTR_ERR(page);
4ad13663 1076 goto err;
a654b9d8
N
1077 }
1078
32a7627c
N
1079 oldindex = index;
1080 oldpage = page;
32a7627c 1081
b74fd282
N
1082 bitmap->filemap[bitmap->file_pages++] = page;
1083 bitmap->last_page_size = count;
1084
32a7627c
N
1085 if (outofdate) {
1086 /*
1087 * if bitmap is out of date, dirty the
ac2f40be 1088 * whole page and write it out
32a7627c 1089 */
ea03aff9
N
1090 paddr = kmap_atomic(page, KM_USER0);
1091 memset(paddr + offset, 0xff,
6a07997f 1092 PAGE_SIZE - offset);
ea03aff9 1093 kunmap_atomic(paddr, KM_USER0);
4ad13663
N
1094 write_page(bitmap, page, 1);
1095
1096 ret = -EIO;
b74fd282 1097 if (bitmap->flags & BITMAP_WRITE_ERROR)
4ad13663 1098 goto err;
32a7627c 1099 }
32a7627c 1100 }
ea03aff9 1101 paddr = kmap_atomic(page, KM_USER0);
bd926c63 1102 if (bitmap->flags & BITMAP_HOSTENDIAN)
ea03aff9 1103 b = test_bit(bit, paddr);
bd926c63 1104 else
6b33aff3 1105 b = test_bit_le(bit, paddr);
ea03aff9 1106 kunmap_atomic(paddr, KM_USER0);
bd926c63 1107 if (b) {
32a7627c 1108 /* if the disk bit is set, set the memory bit */
db305e50
N
1109 int needed = ((sector_t)(i+1) << (CHUNK_BLOCK_SHIFT(bitmap))
1110 >= start);
1111 bitmap_set_memory_bits(bitmap,
1112 (sector_t)i << CHUNK_BLOCK_SHIFT(bitmap),
1113 needed);
32a7627c
N
1114 bit_cnt++;
1115 }
32a7627c
N
1116 }
1117
ac2f40be 1118 /* everything went OK */
32a7627c
N
1119 ret = 0;
1120 bitmap_mask_state(bitmap, BITMAP_STALE, MASK_UNSET);
1121
32a7627c
N
1122 if (bit_cnt) { /* Kick recovery if any bits were set */
1123 set_bit(MD_RECOVERY_NEEDED, &bitmap->mddev->recovery);
1124 md_wakeup_thread(bitmap->mddev->thread);
1125 }
1126
32a7627c 1127 printk(KERN_INFO "%s: bitmap initialized from disk: "
9c81075f
JB
1128 "read %lu/%lu pages, set %lu of %lu bits\n",
1129 bmname(bitmap), bitmap->file_pages, num_pages, bit_cnt, chunks);
4ad13663
N
1130
1131 return 0;
32a7627c 1132
4ad13663
N
1133 err:
1134 printk(KERN_INFO "%s: bitmap initialisation failed: %d\n",
1135 bmname(bitmap), ret);
32a7627c
N
1136 return ret;
1137}
1138
a654b9d8
N
1139void bitmap_write_all(struct bitmap *bitmap)
1140{
1141 /* We don't actually write all bitmap blocks here,
1142 * just flag them as needing to be written
1143 */
ec7a3197 1144 int i;
a654b9d8 1145
ac2f40be 1146 for (i = 0; i < bitmap->file_pages; i++)
ec7a3197
N
1147 set_page_attr(bitmap, bitmap->filemap[i],
1148 BITMAP_PAGE_NEEDWRITE);
2585f3ef 1149 bitmap->allclean = 0;
a654b9d8
N
1150}
1151
32a7627c
N
1152static void bitmap_count_page(struct bitmap *bitmap, sector_t offset, int inc)
1153{
1154 sector_t chunk = offset >> CHUNK_BLOCK_SHIFT(bitmap);
1155 unsigned long page = chunk >> PAGE_COUNTER_SHIFT;
1156 bitmap->bp[page].count += inc;
32a7627c
N
1157 bitmap_checkfree(bitmap, page);
1158}
1159static bitmap_counter_t *bitmap_get_counter(struct bitmap *bitmap,
57dab0bd 1160 sector_t offset, sector_t *blocks,
32a7627c
N
1161 int create);
1162
1163/*
1164 * bitmap daemon -- periodically wakes up to clean bits and flush pages
1165 * out to disk
1166 */
1167
aa5cbd10 1168void bitmap_daemon_work(mddev_t *mddev)
32a7627c 1169{
aa5cbd10 1170 struct bitmap *bitmap;
aa3163f8 1171 unsigned long j;
32a7627c
N
1172 unsigned long flags;
1173 struct page *page = NULL, *lastpage = NULL;
57dab0bd 1174 sector_t blocks;
ea03aff9 1175 void *paddr;
32a7627c 1176
aa5cbd10
N
1177 /* Use a mutex to guard daemon_work against
1178 * bitmap_destroy.
1179 */
c3d9714e 1180 mutex_lock(&mddev->bitmap_info.mutex);
aa5cbd10
N
1181 bitmap = mddev->bitmap;
1182 if (bitmap == NULL) {
c3d9714e 1183 mutex_unlock(&mddev->bitmap_info.mutex);
4ad13663 1184 return;
aa5cbd10 1185 }
42a04b50 1186 if (time_before(jiffies, bitmap->daemon_lastrun
1b04be96 1187 + bitmap->mddev->bitmap_info.daemon_sleep))
7be3dfec
N
1188 goto done;
1189
32a7627c 1190 bitmap->daemon_lastrun = jiffies;
8311c29d
N
1191 if (bitmap->allclean) {
1192 bitmap->mddev->thread->timeout = MAX_SCHEDULE_TIMEOUT;
aa5cbd10 1193 goto done;
8311c29d
N
1194 }
1195 bitmap->allclean = 1;
32a7627c 1196
be512691 1197 spin_lock_irqsave(&bitmap->lock, flags);
32a7627c
N
1198 for (j = 0; j < bitmap->chunks; j++) {
1199 bitmap_counter_t *bmc;
3520fa4d
JB
1200 if (!bitmap->filemap)
1201 /* error or shutdown */
1202 break;
1203
1204 page = filemap_get_page(bitmap, j);
32a7627c
N
1205
1206 if (page != lastpage) {
aa3163f8 1207 /* skip this page unless it's marked as needing cleaning */
5a537df4 1208 if (!test_page_attr(bitmap, page, BITMAP_PAGE_PENDING)) {
ec7a3197
N
1209 int need_write = test_page_attr(bitmap, page,
1210 BITMAP_PAGE_NEEDWRITE);
a647e4bc 1211 if (need_write)
aa3163f8 1212 clear_page_attr(bitmap, page, BITMAP_PAGE_NEEDWRITE);
a647e4bc 1213
aa3163f8 1214 spin_unlock_irqrestore(&bitmap->lock, flags);
2585f3ef 1215 if (need_write)
4ad13663 1216 write_page(bitmap, page, 0);
be512691
N
1217 spin_lock_irqsave(&bitmap->lock, flags);
1218 j |= (PAGE_BITS - 1);
aa3163f8
N
1219 continue;
1220 }
1221
32a7627c 1222 /* grab the new page, sync and release the old */
32a7627c 1223 if (lastpage != NULL) {
2585f3ef
N
1224 if (test_page_attr(bitmap, lastpage,
1225 BITMAP_PAGE_NEEDWRITE)) {
1226 clear_page_attr(bitmap, lastpage,
1227 BITMAP_PAGE_NEEDWRITE);
32a7627c 1228 spin_unlock_irqrestore(&bitmap->lock, flags);
4ad13663 1229 write_page(bitmap, lastpage, 0);
32a7627c 1230 } else {
2585f3ef
N
1231 set_page_attr(bitmap, lastpage,
1232 BITMAP_PAGE_NEEDWRITE);
1233 bitmap->allclean = 0;
32a7627c
N
1234 spin_unlock_irqrestore(&bitmap->lock, flags);
1235 }
32a7627c
N
1236 } else
1237 spin_unlock_irqrestore(&bitmap->lock, flags);
1238 lastpage = page;
a0da84f3
NB
1239
1240 /* We are possibly going to clear some bits, so make
1241 * sure that events_cleared is up-to-date.
1242 */
ece5cff0
N
1243 if (bitmap->need_sync &&
1244 bitmap->mddev->bitmap_info.external == 0) {
a0da84f3
NB
1245 bitmap_super_t *sb;
1246 bitmap->need_sync = 0;
1247 sb = kmap_atomic(bitmap->sb_page, KM_USER0);
1248 sb->events_cleared =
1249 cpu_to_le64(bitmap->events_cleared);
1250 kunmap_atomic(sb, KM_USER0);
1251 write_page(bitmap, bitmap->sb_page, 1);
1252 }
32a7627c 1253 spin_lock_irqsave(&bitmap->lock, flags);
ece5cff0 1254 if (!bitmap->need_sync)
5a537df4 1255 clear_page_attr(bitmap, page, BITMAP_PAGE_PENDING);
2585f3ef
N
1256 else
1257 bitmap->allclean = 0;
32a7627c 1258 }
db305e50
N
1259 bmc = bitmap_get_counter(bitmap,
1260 (sector_t)j << CHUNK_BLOCK_SHIFT(bitmap),
1261 &blocks, 0);
5a537df4
N
1262 if (!bmc)
1263 j |= PAGE_COUNTER_MASK;
1264 else if (*bmc) {
5a537df4 1265 if (*bmc == 1 && !bitmap->need_sync) {
32a7627c
N
1266 /* we can clear the bit */
1267 *bmc = 0;
db305e50
N
1268 bitmap_count_page(bitmap,
1269 (sector_t)j << CHUNK_BLOCK_SHIFT(bitmap),
32a7627c
N
1270 -1);
1271
1272 /* clear the bit */
3520fa4d
JB
1273 paddr = kmap_atomic(page, KM_USER0);
1274 if (bitmap->flags & BITMAP_HOSTENDIAN)
1275 clear_bit(file_page_offset(bitmap, j),
1276 paddr);
1277 else
1278 __clear_bit_le(
5a537df4
N
1279 file_page_offset(bitmap,
1280 j),
1281 paddr);
3520fa4d 1282 kunmap_atomic(paddr, KM_USER0);
5a537df4
N
1283 } else if (*bmc <= 2) {
1284 *bmc = 1; /* maybe clear the bit next time */
1285 set_page_attr(bitmap, page, BITMAP_PAGE_PENDING);
2585f3ef 1286 bitmap->allclean = 0;
32a7627c 1287 }
5a537df4 1288 }
32a7627c 1289 }
be512691 1290 spin_unlock_irqrestore(&bitmap->lock, flags);
32a7627c
N
1291
1292 /* now sync the final page */
3520fa4d 1293 if (lastpage != NULL) {
32a7627c 1294 spin_lock_irqsave(&bitmap->lock, flags);
ec7a3197 1295 if (test_page_attr(bitmap, lastpage, BITMAP_PAGE_NEEDWRITE)) {
32a7627c
N
1296 clear_page_attr(bitmap, lastpage, BITMAP_PAGE_NEEDWRITE);
1297 spin_unlock_irqrestore(&bitmap->lock, flags);
3520fa4d 1298 write_page(bitmap, lastpage, 0);
32a7627c
N
1299 } else {
1300 set_page_attr(bitmap, lastpage, BITMAP_PAGE_NEEDWRITE);
2585f3ef 1301 bitmap->allclean = 0;
32a7627c
N
1302 spin_unlock_irqrestore(&bitmap->lock, flags);
1303 }
32a7627c
N
1304 }
1305
7be3dfec 1306 done:
8311c29d 1307 if (bitmap->allclean == 0)
ac2f40be 1308 bitmap->mddev->thread->timeout =
1b04be96 1309 bitmap->mddev->bitmap_info.daemon_sleep;
c3d9714e 1310 mutex_unlock(&mddev->bitmap_info.mutex);
32a7627c
N
1311}
1312
32a7627c 1313static bitmap_counter_t *bitmap_get_counter(struct bitmap *bitmap,
57dab0bd 1314 sector_t offset, sector_t *blocks,
32a7627c 1315 int create)
ee305ace
N
1316__releases(bitmap->lock)
1317__acquires(bitmap->lock)
32a7627c
N
1318{
1319 /* If 'create', we might release the lock and reclaim it.
1320 * The lock must have been taken with interrupts enabled.
1321 * If !create, we don't release the lock.
1322 */
1323 sector_t chunk = offset >> CHUNK_BLOCK_SHIFT(bitmap);
1324 unsigned long page = chunk >> PAGE_COUNTER_SHIFT;
1325 unsigned long pageoff = (chunk & PAGE_COUNTER_MASK) << COUNTER_BYTE_SHIFT;
1326 sector_t csize;
ef425673 1327 int err;
32a7627c 1328
ef425673
N
1329 err = bitmap_checkpage(bitmap, page, create);
1330
1331 if (bitmap->bp[page].hijacked ||
1332 bitmap->bp[page].map == NULL)
1333 csize = ((sector_t)1) << (CHUNK_BLOCK_SHIFT(bitmap) +
1334 PAGE_COUNTER_SHIFT - 1);
1335 else
32a7627c 1336 csize = ((sector_t)1) << (CHUNK_BLOCK_SHIFT(bitmap));
ef425673
N
1337 *blocks = csize - (offset & (csize - 1));
1338
1339 if (err < 0)
32a7627c 1340 return NULL;
ef425673 1341
32a7627c
N
1342 /* now locked ... */
1343
1344 if (bitmap->bp[page].hijacked) { /* hijacked pointer */
1345 /* should we use the first or second counter field
1346 * of the hijacked pointer? */
1347 int hi = (pageoff > PAGE_COUNTER_MASK);
32a7627c
N
1348 return &((bitmap_counter_t *)
1349 &bitmap->bp[page].map)[hi];
ef425673 1350 } else /* page is allocated */
32a7627c
N
1351 return (bitmap_counter_t *)
1352 &(bitmap->bp[page].map[pageoff]);
32a7627c
N
1353}
1354
4b6d287f 1355int bitmap_startwrite(struct bitmap *bitmap, sector_t offset, unsigned long sectors, int behind)
32a7627c 1356{
ac2f40be
N
1357 if (!bitmap)
1358 return 0;
4b6d287f
N
1359
1360 if (behind) {
696fcd53 1361 int bw;
4b6d287f 1362 atomic_inc(&bitmap->behind_writes);
696fcd53
PC
1363 bw = atomic_read(&bitmap->behind_writes);
1364 if (bw > bitmap->behind_writes_used)
1365 bitmap->behind_writes_used = bw;
1366
4b6d287f 1367 PRINTK(KERN_DEBUG "inc write-behind count %d/%d\n",
696fcd53 1368 bw, bitmap->max_write_behind);
4b6d287f
N
1369 }
1370
32a7627c 1371 while (sectors) {
57dab0bd 1372 sector_t blocks;
32a7627c
N
1373 bitmap_counter_t *bmc;
1374
1375 spin_lock_irq(&bitmap->lock);
1376 bmc = bitmap_get_counter(bitmap, offset, &blocks, 1);
1377 if (!bmc) {
1378 spin_unlock_irq(&bitmap->lock);
1379 return 0;
1380 }
1381
27d5ea04 1382 if (unlikely(COUNTER(*bmc) == COUNTER_MAX)) {
da6e1a32
NB
1383 DEFINE_WAIT(__wait);
1384 /* note that it is safe to do the prepare_to_wait
1385 * after the test as long as we do it before dropping
1386 * the spinlock.
1387 */
1388 prepare_to_wait(&bitmap->overflow_wait, &__wait,
1389 TASK_UNINTERRUPTIBLE);
1390 spin_unlock_irq(&bitmap->lock);
7eaceacc 1391 io_schedule();
da6e1a32
NB
1392 finish_wait(&bitmap->overflow_wait, &__wait);
1393 continue;
1394 }
1395
ac2f40be 1396 switch (*bmc) {
32a7627c
N
1397 case 0:
1398 bitmap_file_set_bit(bitmap, offset);
ac2f40be 1399 bitmap_count_page(bitmap, offset, 1);
32a7627c
N
1400 /* fall through */
1401 case 1:
1402 *bmc = 2;
1403 }
da6e1a32 1404
32a7627c
N
1405 (*bmc)++;
1406
1407 spin_unlock_irq(&bitmap->lock);
1408
1409 offset += blocks;
1410 if (sectors > blocks)
1411 sectors -= blocks;
ac2f40be
N
1412 else
1413 sectors = 0;
32a7627c
N
1414 }
1415 return 0;
1416}
ac2f40be 1417EXPORT_SYMBOL(bitmap_startwrite);
32a7627c
N
1418
1419void bitmap_endwrite(struct bitmap *bitmap, sector_t offset, unsigned long sectors,
4b6d287f 1420 int success, int behind)
32a7627c 1421{
ac2f40be
N
1422 if (!bitmap)
1423 return;
4b6d287f 1424 if (behind) {
e555190d
N
1425 if (atomic_dec_and_test(&bitmap->behind_writes))
1426 wake_up(&bitmap->behind_wait);
4b6d287f
N
1427 PRINTK(KERN_DEBUG "dec write-behind count %d/%d\n",
1428 atomic_read(&bitmap->behind_writes), bitmap->max_write_behind);
1429 }
d0a4bb49
N
1430 if (bitmap->mddev->degraded)
1431 /* Never clear bits or update events_cleared when degraded */
1432 success = 0;
4b6d287f 1433
32a7627c 1434 while (sectors) {
57dab0bd 1435 sector_t blocks;
32a7627c
N
1436 unsigned long flags;
1437 bitmap_counter_t *bmc;
1438
1439 spin_lock_irqsave(&bitmap->lock, flags);
1440 bmc = bitmap_get_counter(bitmap, offset, &blocks, 0);
1441 if (!bmc) {
1442 spin_unlock_irqrestore(&bitmap->lock, flags);
1443 return;
1444 }
1445
a0da84f3
NB
1446 if (success &&
1447 bitmap->events_cleared < bitmap->mddev->events) {
1448 bitmap->events_cleared = bitmap->mddev->events;
1449 bitmap->need_sync = 1;
5ff5afff 1450 sysfs_notify_dirent_safe(bitmap->sysfs_can_clear);
a0da84f3
NB
1451 }
1452
27d5ea04 1453 if (!success && !NEEDED(*bmc))
32a7627c
N
1454 *bmc |= NEEDED_MASK;
1455
27d5ea04 1456 if (COUNTER(*bmc) == COUNTER_MAX)
da6e1a32
NB
1457 wake_up(&bitmap->overflow_wait);
1458
32a7627c 1459 (*bmc)--;
2585f3ef 1460 if (*bmc <= 2) {
32a7627c 1461 set_page_attr(bitmap,
e384e585
N
1462 filemap_get_page(
1463 bitmap,
1464 offset >> CHUNK_BLOCK_SHIFT(bitmap)),
5a537df4 1465 BITMAP_PAGE_PENDING);
2585f3ef
N
1466 bitmap->allclean = 0;
1467 }
32a7627c
N
1468 spin_unlock_irqrestore(&bitmap->lock, flags);
1469 offset += blocks;
1470 if (sectors > blocks)
1471 sectors -= blocks;
ac2f40be
N
1472 else
1473 sectors = 0;
32a7627c
N
1474 }
1475}
ac2f40be 1476EXPORT_SYMBOL(bitmap_endwrite);
32a7627c 1477
57dab0bd 1478static int __bitmap_start_sync(struct bitmap *bitmap, sector_t offset, sector_t *blocks,
1187cf0a 1479 int degraded)
32a7627c
N
1480{
1481 bitmap_counter_t *bmc;
1482 int rv;
1483 if (bitmap == NULL) {/* FIXME or bitmap set as 'failed' */
1484 *blocks = 1024;
1485 return 1; /* always resync if no bitmap */
1486 }
1487 spin_lock_irq(&bitmap->lock);
1488 bmc = bitmap_get_counter(bitmap, offset, blocks, 0);
1489 rv = 0;
1490 if (bmc) {
1491 /* locked */
1492 if (RESYNC(*bmc))
1493 rv = 1;
1494 else if (NEEDED(*bmc)) {
1495 rv = 1;
6a806c51
N
1496 if (!degraded) { /* don't set/clear bits if degraded */
1497 *bmc |= RESYNC_MASK;
1498 *bmc &= ~NEEDED_MASK;
1499 }
32a7627c
N
1500 }
1501 }
1502 spin_unlock_irq(&bitmap->lock);
1503 return rv;
1504}
1505
57dab0bd 1506int bitmap_start_sync(struct bitmap *bitmap, sector_t offset, sector_t *blocks,
1187cf0a
N
1507 int degraded)
1508{
1509 /* bitmap_start_sync must always report on multiples of whole
1510 * pages, otherwise resync (which is very PAGE_SIZE based) will
1511 * get confused.
1512 * So call __bitmap_start_sync repeatedly (if needed) until
1513 * At least PAGE_SIZE>>9 blocks are covered.
1514 * Return the 'or' of the result.
1515 */
1516 int rv = 0;
57dab0bd 1517 sector_t blocks1;
1187cf0a
N
1518
1519 *blocks = 0;
1520 while (*blocks < (PAGE_SIZE>>9)) {
1521 rv |= __bitmap_start_sync(bitmap, offset,
1522 &blocks1, degraded);
1523 offset += blocks1;
1524 *blocks += blocks1;
1525 }
1526 return rv;
1527}
ac2f40be 1528EXPORT_SYMBOL(bitmap_start_sync);
1187cf0a 1529
57dab0bd 1530void bitmap_end_sync(struct bitmap *bitmap, sector_t offset, sector_t *blocks, int aborted)
32a7627c
N
1531{
1532 bitmap_counter_t *bmc;
1533 unsigned long flags;
ac2f40be
N
1534
1535 if (bitmap == NULL) {
32a7627c
N
1536 *blocks = 1024;
1537 return;
1538 }
1539 spin_lock_irqsave(&bitmap->lock, flags);
1540 bmc = bitmap_get_counter(bitmap, offset, blocks, 0);
1541 if (bmc == NULL)
1542 goto unlock;
1543 /* locked */
32a7627c
N
1544 if (RESYNC(*bmc)) {
1545 *bmc &= ~RESYNC_MASK;
1546
1547 if (!NEEDED(*bmc) && aborted)
1548 *bmc |= NEEDED_MASK;
1549 else {
2585f3ef 1550 if (*bmc <= 2) {
32a7627c
N
1551 set_page_attr(bitmap,
1552 filemap_get_page(bitmap, offset >> CHUNK_BLOCK_SHIFT(bitmap)),
5a537df4 1553 BITMAP_PAGE_PENDING);
2585f3ef
N
1554 bitmap->allclean = 0;
1555 }
32a7627c
N
1556 }
1557 }
1558 unlock:
1559 spin_unlock_irqrestore(&bitmap->lock, flags);
1560}
ac2f40be 1561EXPORT_SYMBOL(bitmap_end_sync);
32a7627c
N
1562
1563void bitmap_close_sync(struct bitmap *bitmap)
1564{
1565 /* Sync has finished, and any bitmap chunks that weren't synced
1566 * properly have been aborted. It remains to us to clear the
1567 * RESYNC bit wherever it is still on
1568 */
1569 sector_t sector = 0;
57dab0bd 1570 sector_t blocks;
b47490c9
N
1571 if (!bitmap)
1572 return;
32a7627c
N
1573 while (sector < bitmap->mddev->resync_max_sectors) {
1574 bitmap_end_sync(bitmap, sector, &blocks, 0);
b47490c9
N
1575 sector += blocks;
1576 }
1577}
ac2f40be 1578EXPORT_SYMBOL(bitmap_close_sync);
b47490c9
N
1579
1580void bitmap_cond_end_sync(struct bitmap *bitmap, sector_t sector)
1581{
1582 sector_t s = 0;
57dab0bd 1583 sector_t blocks;
b47490c9
N
1584
1585 if (!bitmap)
1586 return;
1587 if (sector == 0) {
1588 bitmap->last_end_sync = jiffies;
1589 return;
1590 }
1591 if (time_before(jiffies, (bitmap->last_end_sync
1b04be96 1592 + bitmap->mddev->bitmap_info.daemon_sleep)))
b47490c9
N
1593 return;
1594 wait_event(bitmap->mddev->recovery_wait,
1595 atomic_read(&bitmap->mddev->recovery_active) == 0);
1596
75d3da43 1597 bitmap->mddev->curr_resync_completed = sector;
070dc6dd 1598 set_bit(MD_CHANGE_CLEAN, &bitmap->mddev->flags);
b47490c9
N
1599 sector &= ~((1ULL << CHUNK_BLOCK_SHIFT(bitmap)) - 1);
1600 s = 0;
1601 while (s < sector && s < bitmap->mddev->resync_max_sectors) {
1602 bitmap_end_sync(bitmap, s, &blocks, 0);
1603 s += blocks;
32a7627c 1604 }
b47490c9 1605 bitmap->last_end_sync = jiffies;
acb180b0 1606 sysfs_notify(&bitmap->mddev->kobj, NULL, "sync_completed");
32a7627c 1607}
ac2f40be 1608EXPORT_SYMBOL(bitmap_cond_end_sync);
32a7627c 1609
6a07997f 1610static void bitmap_set_memory_bits(struct bitmap *bitmap, sector_t offset, int needed)
32a7627c
N
1611{
1612 /* For each chunk covered by any of these sectors, set the
193f1c93 1613 * counter to 1 and set resync_needed. They should all
32a7627c
N
1614 * be 0 at this point
1615 */
193f1c93 1616
57dab0bd 1617 sector_t secs;
193f1c93
N
1618 bitmap_counter_t *bmc;
1619 spin_lock_irq(&bitmap->lock);
1620 bmc = bitmap_get_counter(bitmap, offset, &secs, 1);
1621 if (!bmc) {
32a7627c 1622 spin_unlock_irq(&bitmap->lock);
193f1c93 1623 return;
32a7627c 1624 }
ac2f40be 1625 if (!*bmc) {
193f1c93 1626 struct page *page;
ac2f40be 1627 *bmc = 1 | (needed ? NEEDED_MASK : 0);
193f1c93
N
1628 bitmap_count_page(bitmap, offset, 1);
1629 page = filemap_get_page(bitmap, offset >> CHUNK_BLOCK_SHIFT(bitmap));
5a537df4 1630 set_page_attr(bitmap, page, BITMAP_PAGE_PENDING);
2585f3ef 1631 bitmap->allclean = 0;
193f1c93
N
1632 }
1633 spin_unlock_irq(&bitmap->lock);
32a7627c
N
1634}
1635
9b1d1dac
PC
1636/* dirty the memory and file bits for bitmap chunks "s" to "e" */
1637void bitmap_dirty_bits(struct bitmap *bitmap, unsigned long s, unsigned long e)
1638{
1639 unsigned long chunk;
1640
1641 for (chunk = s; chunk <= e; chunk++) {
db305e50 1642 sector_t sec = (sector_t)chunk << CHUNK_BLOCK_SHIFT(bitmap);
9b1d1dac
PC
1643 bitmap_set_memory_bits(bitmap, sec, 1);
1644 bitmap_file_set_bit(bitmap, sec);
ffa23322
N
1645 if (sec < bitmap->mddev->recovery_cp)
1646 /* We are asserting that the array is dirty,
1647 * so move the recovery_cp address back so
1648 * that it is obvious that it is dirty
1649 */
1650 bitmap->mddev->recovery_cp = sec;
9b1d1dac
PC
1651 }
1652}
1653
6b8b3e8a
N
1654/*
1655 * flush out any pending updates
1656 */
1657void bitmap_flush(mddev_t *mddev)
1658{
1659 struct bitmap *bitmap = mddev->bitmap;
42a04b50 1660 long sleep;
6b8b3e8a
N
1661
1662 if (!bitmap) /* there was no bitmap */
1663 return;
1664
1665 /* run the daemon_work three time to ensure everything is flushed
1666 * that can be
1667 */
1b04be96 1668 sleep = mddev->bitmap_info.daemon_sleep * 2;
42a04b50 1669 bitmap->daemon_lastrun -= sleep;
aa5cbd10 1670 bitmap_daemon_work(mddev);
42a04b50 1671 bitmap->daemon_lastrun -= sleep;
aa5cbd10 1672 bitmap_daemon_work(mddev);
42a04b50 1673 bitmap->daemon_lastrun -= sleep;
aa5cbd10 1674 bitmap_daemon_work(mddev);
6b8b3e8a
N
1675 bitmap_update_sb(bitmap);
1676}
1677
32a7627c
N
1678/*
1679 * free memory that was allocated
1680 */
3178b0db 1681static void bitmap_free(struct bitmap *bitmap)
32a7627c
N
1682{
1683 unsigned long k, pages;
1684 struct bitmap_page *bp;
32a7627c
N
1685
1686 if (!bitmap) /* there was no bitmap */
1687 return;
1688
32a7627c
N
1689 /* release the bitmap file and kill the daemon */
1690 bitmap_file_put(bitmap);
1691
1692 bp = bitmap->bp;
1693 pages = bitmap->pages;
1694
1695 /* free all allocated memory */
1696
32a7627c
N
1697 if (bp) /* deallocate the page memory */
1698 for (k = 0; k < pages; k++)
1699 if (bp[k].map && !bp[k].hijacked)
1700 kfree(bp[k].map);
1701 kfree(bp);
1702 kfree(bitmap);
1703}
aa5cbd10 1704
3178b0db
N
1705void bitmap_destroy(mddev_t *mddev)
1706{
1707 struct bitmap *bitmap = mddev->bitmap;
1708
1709 if (!bitmap) /* there was no bitmap */
1710 return;
1711
c3d9714e 1712 mutex_lock(&mddev->bitmap_info.mutex);
3178b0db 1713 mddev->bitmap = NULL; /* disconnect from the md device */
c3d9714e 1714 mutex_unlock(&mddev->bitmap_info.mutex);
b15c2e57
N
1715 if (mddev->thread)
1716 mddev->thread->timeout = MAX_SCHEDULE_TIMEOUT;
3178b0db 1717
ece5cff0
N
1718 if (bitmap->sysfs_can_clear)
1719 sysfs_put(bitmap->sysfs_can_clear);
1720
3178b0db
N
1721 bitmap_free(bitmap);
1722}
32a7627c
N
1723
1724/*
1725 * initialize the bitmap structure
1726 * if this returns an error, bitmap_destroy must be called to do clean up
1727 */
1728int bitmap_create(mddev_t *mddev)
1729{
1730 struct bitmap *bitmap;
1f593903 1731 sector_t blocks = mddev->resync_max_sectors;
32a7627c
N
1732 unsigned long chunks;
1733 unsigned long pages;
c3d9714e 1734 struct file *file = mddev->bitmap_info.file;
32a7627c 1735 int err;
5ff5afff 1736 struct sysfs_dirent *bm = NULL;
32a7627c 1737
5f6e3c83 1738 BUILD_BUG_ON(sizeof(bitmap_super_t) != 256);
32a7627c 1739
e384e585 1740 if (!file
3520fa4d 1741 && !mddev->bitmap_info.offset) /* bitmap disabled, nothing to do */
32a7627c
N
1742 return 0;
1743
c3d9714e 1744 BUG_ON(file && mddev->bitmap_info.offset);
a654b9d8 1745
9ffae0cf 1746 bitmap = kzalloc(sizeof(*bitmap), GFP_KERNEL);
32a7627c
N
1747 if (!bitmap)
1748 return -ENOMEM;
1749
32a7627c 1750 spin_lock_init(&bitmap->lock);
ce25c31b
N
1751 atomic_set(&bitmap->pending_writes, 0);
1752 init_waitqueue_head(&bitmap->write_wait);
da6e1a32 1753 init_waitqueue_head(&bitmap->overflow_wait);
e555190d 1754 init_waitqueue_head(&bitmap->behind_wait);
ce25c31b 1755
32a7627c 1756 bitmap->mddev = mddev;
32a7627c 1757
5ff5afff
N
1758 if (mddev->kobj.sd)
1759 bm = sysfs_get_dirent(mddev->kobj.sd, NULL, "bitmap");
ece5cff0 1760 if (bm) {
3ff195b0 1761 bitmap->sysfs_can_clear = sysfs_get_dirent(bm, NULL, "can_clear");
ece5cff0
N
1762 sysfs_put(bm);
1763 } else
1764 bitmap->sysfs_can_clear = NULL;
1765
32a7627c 1766 bitmap->file = file;
ce25c31b
N
1767 if (file) {
1768 get_file(file);
ae8fa283
N
1769 /* As future accesses to this file will use bmap,
1770 * and bypass the page cache, we must sync the file
1771 * first.
1772 */
8018ab05 1773 vfs_fsync(file, 1);
ce25c31b 1774 }
42a04b50 1775 /* read superblock from bitmap file (this sets mddev->bitmap_info.chunksize) */
9c81075f
JB
1776 if (!mddev->bitmap_info.external) {
1777 /*
1778 * If 'MD_ARRAY_FIRST_USE' is set, then device-mapper is
1779 * instructing us to create a new on-disk bitmap instance.
1780 */
1781 if (test_and_clear_bit(MD_ARRAY_FIRST_USE, &mddev->flags))
1782 err = bitmap_new_disk_sb(bitmap);
1783 else
1784 err = bitmap_read_sb(bitmap);
1785 } else {
ece5cff0
N
1786 err = 0;
1787 if (mddev->bitmap_info.chunksize == 0 ||
1788 mddev->bitmap_info.daemon_sleep == 0)
1789 /* chunksize and time_base need to be
1790 * set first. */
1791 err = -EINVAL;
1792 }
32a7627c 1793 if (err)
3178b0db 1794 goto error;
32a7627c 1795
624ce4f5 1796 bitmap->daemon_lastrun = jiffies;
42a04b50 1797 bitmap->chunkshift = ffz(~mddev->bitmap_info.chunksize);
32a7627c
N
1798
1799 /* now that chunksize and chunkshift are set, we can use these macros */
ac2f40be 1800 chunks = (blocks + CHUNK_BLOCK_RATIO(bitmap) - 1) >>
1f593903 1801 CHUNK_BLOCK_SHIFT(bitmap);
ac2f40be 1802 pages = (chunks + PAGE_COUNTER_RATIO - 1) / PAGE_COUNTER_RATIO;
32a7627c
N
1803
1804 BUG_ON(!pages);
1805
1806 bitmap->chunks = chunks;
1807 bitmap->pages = pages;
1808 bitmap->missing_pages = pages;
32a7627c 1809
44456d37 1810#ifdef INJECT_FATAL_FAULT_1
32a7627c
N
1811 bitmap->bp = NULL;
1812#else
9ffae0cf 1813 bitmap->bp = kzalloc(pages * sizeof(*bitmap->bp), GFP_KERNEL);
32a7627c 1814#endif
3178b0db 1815 err = -ENOMEM;
32a7627c 1816 if (!bitmap->bp)
3178b0db 1817 goto error;
32a7627c 1818
69e51b44
N
1819 printk(KERN_INFO "created bitmap (%lu pages) for device %s\n",
1820 pages, bmname(bitmap));
1821
1822 mddev->bitmap = bitmap;
1823
1824
1825 return (bitmap->flags & BITMAP_WRITE_ERROR) ? -EIO : 0;
1826
1827 error:
1828 bitmap_free(bitmap);
1829 return err;
1830}
1831
1832int bitmap_load(mddev_t *mddev)
1833{
1834 int err = 0;
3520fa4d 1835 sector_t start = 0;
69e51b44
N
1836 sector_t sector = 0;
1837 struct bitmap *bitmap = mddev->bitmap;
1838
1839 if (!bitmap)
1840 goto out;
1841
1842 /* Clear out old bitmap info first: Either there is none, or we
1843 * are resuming after someone else has possibly changed things,
1844 * so we should forget old cached info.
1845 * All chunks should be clean, but some might need_sync.
1846 */
1847 while (sector < mddev->resync_max_sectors) {
57dab0bd 1848 sector_t blocks;
69e51b44
N
1849 bitmap_start_sync(bitmap, sector, &blocks, 0);
1850 sector += blocks;
1851 }
1852 bitmap_close_sync(bitmap);
1853
3520fa4d
JB
1854 if (mddev->degraded == 0
1855 || bitmap->events_cleared == mddev->events)
1856 /* no need to keep dirty bits to optimise a
1857 * re-add of a missing device */
1858 start = mddev->recovery_cp;
1859
1860 err = bitmap_init_from_disk(bitmap, start);
1861
32a7627c 1862 if (err)
69e51b44 1863 goto out;
3178b0db 1864
1b04be96 1865 mddev->thread->timeout = mddev->bitmap_info.daemon_sleep;
9cd30fdc 1866 md_wakeup_thread(mddev->thread);
b15c2e57 1867
4ad13663
N
1868 bitmap_update_sb(bitmap);
1869
69e51b44
N
1870 if (bitmap->flags & BITMAP_WRITE_ERROR)
1871 err = -EIO;
1872out:
3178b0db 1873 return err;
32a7627c 1874}
69e51b44 1875EXPORT_SYMBOL_GPL(bitmap_load);
32a7627c 1876
43a70507
N
1877static ssize_t
1878location_show(mddev_t *mddev, char *page)
1879{
1880 ssize_t len;
ac2f40be 1881 if (mddev->bitmap_info.file)
43a70507 1882 len = sprintf(page, "file");
ac2f40be 1883 else if (mddev->bitmap_info.offset)
43a70507 1884 len = sprintf(page, "%+lld", (long long)mddev->bitmap_info.offset);
ac2f40be 1885 else
43a70507
N
1886 len = sprintf(page, "none");
1887 len += sprintf(page+len, "\n");
1888 return len;
1889}
1890
1891static ssize_t
1892location_store(mddev_t *mddev, const char *buf, size_t len)
1893{
1894
1895 if (mddev->pers) {
1896 if (!mddev->pers->quiesce)
1897 return -EBUSY;
1898 if (mddev->recovery || mddev->sync_thread)
1899 return -EBUSY;
1900 }
1901
1902 if (mddev->bitmap || mddev->bitmap_info.file ||
1903 mddev->bitmap_info.offset) {
1904 /* bitmap already configured. Only option is to clear it */
1905 if (strncmp(buf, "none", 4) != 0)
1906 return -EBUSY;
1907 if (mddev->pers) {
1908 mddev->pers->quiesce(mddev, 1);
1909 bitmap_destroy(mddev);
1910 mddev->pers->quiesce(mddev, 0);
1911 }
1912 mddev->bitmap_info.offset = 0;
1913 if (mddev->bitmap_info.file) {
1914 struct file *f = mddev->bitmap_info.file;
1915 mddev->bitmap_info.file = NULL;
1916 restore_bitmap_write_access(f);
1917 fput(f);
1918 }
1919 } else {
1920 /* No bitmap, OK to set a location */
1921 long long offset;
1922 if (strncmp(buf, "none", 4) == 0)
1923 /* nothing to be done */;
1924 else if (strncmp(buf, "file:", 5) == 0) {
1925 /* Not supported yet */
1926 return -EINVAL;
1927 } else {
1928 int rv;
1929 if (buf[0] == '+')
1930 rv = strict_strtoll(buf+1, 10, &offset);
1931 else
1932 rv = strict_strtoll(buf, 10, &offset);
1933 if (rv)
1934 return rv;
1935 if (offset == 0)
1936 return -EINVAL;
ece5cff0
N
1937 if (mddev->bitmap_info.external == 0 &&
1938 mddev->major_version == 0 &&
43a70507
N
1939 offset != mddev->bitmap_info.default_offset)
1940 return -EINVAL;
1941 mddev->bitmap_info.offset = offset;
1942 if (mddev->pers) {
1943 mddev->pers->quiesce(mddev, 1);
1944 rv = bitmap_create(mddev);
1945 if (rv) {
1946 bitmap_destroy(mddev);
1947 mddev->bitmap_info.offset = 0;
1948 }
1949 mddev->pers->quiesce(mddev, 0);
1950 if (rv)
1951 return rv;
1952 }
1953 }
1954 }
1955 if (!mddev->external) {
1956 /* Ensure new bitmap info is stored in
1957 * metadata promptly.
1958 */
1959 set_bit(MD_CHANGE_DEVS, &mddev->flags);
1960 md_wakeup_thread(mddev->thread);
1961 }
1962 return len;
1963}
1964
1965static struct md_sysfs_entry bitmap_location =
1966__ATTR(location, S_IRUGO|S_IWUSR, location_show, location_store);
1967
1968static ssize_t
1969timeout_show(mddev_t *mddev, char *page)
1970{
1971 ssize_t len;
1972 unsigned long secs = mddev->bitmap_info.daemon_sleep / HZ;
1973 unsigned long jifs = mddev->bitmap_info.daemon_sleep % HZ;
ac2f40be 1974
43a70507
N
1975 len = sprintf(page, "%lu", secs);
1976 if (jifs)
1977 len += sprintf(page+len, ".%03u", jiffies_to_msecs(jifs));
1978 len += sprintf(page+len, "\n");
1979 return len;
1980}
1981
1982static ssize_t
1983timeout_store(mddev_t *mddev, const char *buf, size_t len)
1984{
1985 /* timeout can be set at any time */
1986 unsigned long timeout;
1987 int rv = strict_strtoul_scaled(buf, &timeout, 4);
1988 if (rv)
1989 return rv;
1990
1991 /* just to make sure we don't overflow... */
1992 if (timeout >= LONG_MAX / HZ)
1993 return -EINVAL;
1994
1995 timeout = timeout * HZ / 10000;
1996
1997 if (timeout >= MAX_SCHEDULE_TIMEOUT)
1998 timeout = MAX_SCHEDULE_TIMEOUT-1;
1999 if (timeout < 1)
2000 timeout = 1;
2001 mddev->bitmap_info.daemon_sleep = timeout;
2002 if (mddev->thread) {
2003 /* if thread->timeout is MAX_SCHEDULE_TIMEOUT, then
2004 * the bitmap is all clean and we don't need to
2005 * adjust the timeout right now
2006 */
2007 if (mddev->thread->timeout < MAX_SCHEDULE_TIMEOUT) {
2008 mddev->thread->timeout = timeout;
2009 md_wakeup_thread(mddev->thread);
2010 }
2011 }
2012 return len;
2013}
2014
2015static struct md_sysfs_entry bitmap_timeout =
2016__ATTR(time_base, S_IRUGO|S_IWUSR, timeout_show, timeout_store);
2017
2018static ssize_t
2019backlog_show(mddev_t *mddev, char *page)
2020{
2021 return sprintf(page, "%lu\n", mddev->bitmap_info.max_write_behind);
2022}
2023
2024static ssize_t
2025backlog_store(mddev_t *mddev, const char *buf, size_t len)
2026{
2027 unsigned long backlog;
2028 int rv = strict_strtoul(buf, 10, &backlog);
2029 if (rv)
2030 return rv;
2031 if (backlog > COUNTER_MAX)
2032 return -EINVAL;
2033 mddev->bitmap_info.max_write_behind = backlog;
2034 return len;
2035}
2036
2037static struct md_sysfs_entry bitmap_backlog =
2038__ATTR(backlog, S_IRUGO|S_IWUSR, backlog_show, backlog_store);
2039
2040static ssize_t
2041chunksize_show(mddev_t *mddev, char *page)
2042{
2043 return sprintf(page, "%lu\n", mddev->bitmap_info.chunksize);
2044}
2045
2046static ssize_t
2047chunksize_store(mddev_t *mddev, const char *buf, size_t len)
2048{
2049 /* Can only be changed when no bitmap is active */
2050 int rv;
2051 unsigned long csize;
2052 if (mddev->bitmap)
2053 return -EBUSY;
2054 rv = strict_strtoul(buf, 10, &csize);
2055 if (rv)
2056 return rv;
2057 if (csize < 512 ||
2058 !is_power_of_2(csize))
2059 return -EINVAL;
2060 mddev->bitmap_info.chunksize = csize;
2061 return len;
2062}
2063
2064static struct md_sysfs_entry bitmap_chunksize =
2065__ATTR(chunksize, S_IRUGO|S_IWUSR, chunksize_show, chunksize_store);
2066
ece5cff0
N
2067static ssize_t metadata_show(mddev_t *mddev, char *page)
2068{
2069 return sprintf(page, "%s\n", (mddev->bitmap_info.external
2070 ? "external" : "internal"));
2071}
2072
2073static ssize_t metadata_store(mddev_t *mddev, const char *buf, size_t len)
2074{
2075 if (mddev->bitmap ||
2076 mddev->bitmap_info.file ||
2077 mddev->bitmap_info.offset)
2078 return -EBUSY;
2079 if (strncmp(buf, "external", 8) == 0)
2080 mddev->bitmap_info.external = 1;
2081 else if (strncmp(buf, "internal", 8) == 0)
2082 mddev->bitmap_info.external = 0;
2083 else
2084 return -EINVAL;
2085 return len;
2086}
2087
2088static struct md_sysfs_entry bitmap_metadata =
2089__ATTR(metadata, S_IRUGO|S_IWUSR, metadata_show, metadata_store);
2090
2091static ssize_t can_clear_show(mddev_t *mddev, char *page)
2092{
2093 int len;
2094 if (mddev->bitmap)
2095 len = sprintf(page, "%s\n", (mddev->bitmap->need_sync ?
2096 "false" : "true"));
2097 else
2098 len = sprintf(page, "\n");
2099 return len;
2100}
2101
2102static ssize_t can_clear_store(mddev_t *mddev, const char *buf, size_t len)
2103{
2104 if (mddev->bitmap == NULL)
2105 return -ENOENT;
2106 if (strncmp(buf, "false", 5) == 0)
2107 mddev->bitmap->need_sync = 1;
2108 else if (strncmp(buf, "true", 4) == 0) {
2109 if (mddev->degraded)
2110 return -EBUSY;
2111 mddev->bitmap->need_sync = 0;
2112 } else
2113 return -EINVAL;
2114 return len;
2115}
2116
2117static struct md_sysfs_entry bitmap_can_clear =
2118__ATTR(can_clear, S_IRUGO|S_IWUSR, can_clear_show, can_clear_store);
2119
696fcd53
PC
2120static ssize_t
2121behind_writes_used_show(mddev_t *mddev, char *page)
2122{
2123 if (mddev->bitmap == NULL)
2124 return sprintf(page, "0\n");
2125 return sprintf(page, "%lu\n",
2126 mddev->bitmap->behind_writes_used);
2127}
2128
2129static ssize_t
2130behind_writes_used_reset(mddev_t *mddev, const char *buf, size_t len)
2131{
2132 if (mddev->bitmap)
2133 mddev->bitmap->behind_writes_used = 0;
2134 return len;
2135}
2136
2137static struct md_sysfs_entry max_backlog_used =
2138__ATTR(max_backlog_used, S_IRUGO | S_IWUSR,
2139 behind_writes_used_show, behind_writes_used_reset);
2140
43a70507
N
2141static struct attribute *md_bitmap_attrs[] = {
2142 &bitmap_location.attr,
2143 &bitmap_timeout.attr,
2144 &bitmap_backlog.attr,
2145 &bitmap_chunksize.attr,
ece5cff0
N
2146 &bitmap_metadata.attr,
2147 &bitmap_can_clear.attr,
696fcd53 2148 &max_backlog_used.attr,
43a70507
N
2149 NULL
2150};
2151struct attribute_group md_bitmap_group = {
2152 .name = "bitmap",
2153 .attrs = md_bitmap_attrs,
2154};
2155
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