HID: hiddev: Fix slab-out-of-bounds write in hiddev_ioctl_usage()
[linux/fpc-iii.git] / fs / ocfs2 / localalloc.c
blob85111d740c9d85c4f8fb358c3c59ca0431907b34
1 /* -*- mode: c; c-basic-offset: 8; -*-
2 * vim: noexpandtab sw=8 ts=8 sts=0:
4 * localalloc.c
6 * Node local data allocation
8 * Copyright (C) 2002, 2004 Oracle. All rights reserved.
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public
12 * License as published by the Free Software Foundation; either
13 * version 2 of the License, or (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
20 * You should have received a copy of the GNU General Public
21 * License along with this program; if not, write to the
22 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23 * Boston, MA 021110-1307, USA.
26 #include <linux/fs.h>
27 #include <linux/types.h>
28 #include <linux/slab.h>
29 #include <linux/highmem.h>
30 #include <linux/bitops.h>
32 #include <cluster/masklog.h>
34 #include "ocfs2.h"
36 #include "alloc.h"
37 #include "blockcheck.h"
38 #include "dlmglue.h"
39 #include "inode.h"
40 #include "journal.h"
41 #include "localalloc.h"
42 #include "suballoc.h"
43 #include "super.h"
44 #include "sysfile.h"
45 #include "ocfs2_trace.h"
47 #include "buffer_head_io.h"
49 #define OCFS2_LOCAL_ALLOC(dinode) (&((dinode)->id2.i_lab))
51 static u32 ocfs2_local_alloc_count_bits(struct ocfs2_dinode *alloc);
53 static int ocfs2_local_alloc_find_clear_bits(struct ocfs2_super *osb,
54 struct ocfs2_dinode *alloc,
55 u32 *numbits,
56 struct ocfs2_alloc_reservation *resv);
58 static void ocfs2_clear_local_alloc(struct ocfs2_dinode *alloc);
60 static int ocfs2_sync_local_to_main(struct ocfs2_super *osb,
61 handle_t *handle,
62 struct ocfs2_dinode *alloc,
63 struct inode *main_bm_inode,
64 struct buffer_head *main_bm_bh);
66 static int ocfs2_local_alloc_reserve_for_window(struct ocfs2_super *osb,
67 struct ocfs2_alloc_context **ac,
68 struct inode **bitmap_inode,
69 struct buffer_head **bitmap_bh);
71 static int ocfs2_local_alloc_new_window(struct ocfs2_super *osb,
72 handle_t *handle,
73 struct ocfs2_alloc_context *ac);
75 static int ocfs2_local_alloc_slide_window(struct ocfs2_super *osb,
76 struct inode *local_alloc_inode);
79 * ocfs2_la_default_mb() - determine a default size, in megabytes of
80 * the local alloc.
82 * Generally, we'd like to pick as large a local alloc as
83 * possible. Performance on large workloads tends to scale
84 * proportionally to la size. In addition to that, the reservations
85 * code functions more efficiently as it can reserve more windows for
86 * write.
88 * Some things work against us when trying to choose a large local alloc:
90 * - We need to ensure our sizing is picked to leave enough space in
91 * group descriptors for other allocations (such as block groups,
92 * etc). Picking default sizes which are a multiple of 4 could help
93 * - block groups are allocated in 2mb and 4mb chunks.
95 * - Likewise, we don't want to starve other nodes of bits on small
96 * file systems. This can easily be taken care of by limiting our
97 * default to a reasonable size (256M) on larger cluster sizes.
99 * - Some file systems can't support very large sizes - 4k and 8k in
100 * particular are limited to less than 128 and 256 megabytes respectively.
102 * The following reference table shows group descriptor and local
103 * alloc maximums at various cluster sizes (4k blocksize)
105 * csize: 4K group: 126M la: 121M
106 * csize: 8K group: 252M la: 243M
107 * csize: 16K group: 504M la: 486M
108 * csize: 32K group: 1008M la: 972M
109 * csize: 64K group: 2016M la: 1944M
110 * csize: 128K group: 4032M la: 3888M
111 * csize: 256K group: 8064M la: 7776M
112 * csize: 512K group: 16128M la: 15552M
113 * csize: 1024K group: 32256M la: 31104M
115 #define OCFS2_LA_MAX_DEFAULT_MB 256
116 #define OCFS2_LA_OLD_DEFAULT 8
117 unsigned int ocfs2_la_default_mb(struct ocfs2_super *osb)
119 unsigned int la_mb;
120 unsigned int gd_mb;
121 unsigned int la_max_mb;
122 unsigned int megs_per_slot;
123 struct super_block *sb = osb->sb;
125 gd_mb = ocfs2_clusters_to_megabytes(osb->sb,
126 8 * ocfs2_group_bitmap_size(sb, 0, osb->s_feature_incompat));
129 * This takes care of files systems with very small group
130 * descriptors - 512 byte blocksize at cluster sizes lower
131 * than 16K and also 1k blocksize with 4k cluster size.
133 if ((sb->s_blocksize == 512 && osb->s_clustersize <= 8192)
134 || (sb->s_blocksize == 1024 && osb->s_clustersize == 4096))
135 return OCFS2_LA_OLD_DEFAULT;
138 * Leave enough room for some block groups and make the final
139 * value we work from a multiple of 4.
141 gd_mb -= 16;
142 gd_mb &= 0xFFFFFFFB;
144 la_mb = gd_mb;
147 * Keep window sizes down to a reasonable default
149 if (la_mb > OCFS2_LA_MAX_DEFAULT_MB) {
151 * Some clustersize / blocksize combinations will have
152 * given us a larger than OCFS2_LA_MAX_DEFAULT_MB
153 * default size, but get poor distribution when
154 * limited to exactly 256 megabytes.
156 * As an example, 16K clustersize at 4K blocksize
157 * gives us a cluster group size of 504M. Paring the
158 * local alloc size down to 256 however, would give us
159 * only one window and around 200MB left in the
160 * cluster group. Instead, find the first size below
161 * 256 which would give us an even distribution.
163 * Larger cluster group sizes actually work out pretty
164 * well when pared to 256, so we don't have to do this
165 * for any group that fits more than two
166 * OCFS2_LA_MAX_DEFAULT_MB windows.
168 if (gd_mb > (2 * OCFS2_LA_MAX_DEFAULT_MB))
169 la_mb = 256;
170 else {
171 unsigned int gd_mult = gd_mb;
173 while (gd_mult > 256)
174 gd_mult = gd_mult >> 1;
176 la_mb = gd_mult;
180 megs_per_slot = osb->osb_clusters_at_boot / osb->max_slots;
181 megs_per_slot = ocfs2_clusters_to_megabytes(osb->sb, megs_per_slot);
182 /* Too many nodes, too few disk clusters. */
183 if (megs_per_slot < la_mb)
184 la_mb = megs_per_slot;
186 /* We can't store more bits than we can in a block. */
187 la_max_mb = ocfs2_clusters_to_megabytes(osb->sb,
188 ocfs2_local_alloc_size(sb) * 8);
189 if (la_mb > la_max_mb)
190 la_mb = la_max_mb;
192 return la_mb;
195 void ocfs2_la_set_sizes(struct ocfs2_super *osb, int requested_mb)
197 struct super_block *sb = osb->sb;
198 unsigned int la_default_mb = ocfs2_la_default_mb(osb);
199 unsigned int la_max_mb;
201 la_max_mb = ocfs2_clusters_to_megabytes(sb,
202 ocfs2_local_alloc_size(sb) * 8);
204 trace_ocfs2_la_set_sizes(requested_mb, la_max_mb, la_default_mb);
206 if (requested_mb == -1) {
207 /* No user request - use defaults */
208 osb->local_alloc_default_bits =
209 ocfs2_megabytes_to_clusters(sb, la_default_mb);
210 } else if (requested_mb > la_max_mb) {
211 /* Request is too big, we give the maximum available */
212 osb->local_alloc_default_bits =
213 ocfs2_megabytes_to_clusters(sb, la_max_mb);
214 } else {
215 osb->local_alloc_default_bits =
216 ocfs2_megabytes_to_clusters(sb, requested_mb);
219 osb->local_alloc_bits = osb->local_alloc_default_bits;
222 static inline int ocfs2_la_state_enabled(struct ocfs2_super *osb)
224 return (osb->local_alloc_state == OCFS2_LA_THROTTLED ||
225 osb->local_alloc_state == OCFS2_LA_ENABLED);
228 void ocfs2_local_alloc_seen_free_bits(struct ocfs2_super *osb,
229 unsigned int num_clusters)
231 spin_lock(&osb->osb_lock);
232 if (osb->local_alloc_state == OCFS2_LA_DISABLED ||
233 osb->local_alloc_state == OCFS2_LA_THROTTLED)
234 if (num_clusters >= osb->local_alloc_default_bits) {
235 cancel_delayed_work(&osb->la_enable_wq);
236 osb->local_alloc_state = OCFS2_LA_ENABLED;
238 spin_unlock(&osb->osb_lock);
241 void ocfs2_la_enable_worker(struct work_struct *work)
243 struct ocfs2_super *osb =
244 container_of(work, struct ocfs2_super,
245 la_enable_wq.work);
246 spin_lock(&osb->osb_lock);
247 osb->local_alloc_state = OCFS2_LA_ENABLED;
248 spin_unlock(&osb->osb_lock);
252 * Tell us whether a given allocation should use the local alloc
253 * file. Otherwise, it has to go to the main bitmap.
255 * This function does semi-dirty reads of local alloc size and state!
256 * This is ok however, as the values are re-checked once under mutex.
258 int ocfs2_alloc_should_use_local(struct ocfs2_super *osb, u64 bits)
260 int ret = 0;
261 int la_bits;
263 spin_lock(&osb->osb_lock);
264 la_bits = osb->local_alloc_bits;
266 if (!ocfs2_la_state_enabled(osb))
267 goto bail;
269 /* la_bits should be at least twice the size (in clusters) of
270 * a new block group. We want to be sure block group
271 * allocations go through the local alloc, so allow an
272 * allocation to take up to half the bitmap. */
273 if (bits > (la_bits / 2))
274 goto bail;
276 ret = 1;
277 bail:
278 trace_ocfs2_alloc_should_use_local(
279 (unsigned long long)bits, osb->local_alloc_state, la_bits, ret);
280 spin_unlock(&osb->osb_lock);
281 return ret;
284 int ocfs2_load_local_alloc(struct ocfs2_super *osb)
286 int status = 0;
287 struct ocfs2_dinode *alloc = NULL;
288 struct buffer_head *alloc_bh = NULL;
289 u32 num_used;
290 struct inode *inode = NULL;
291 struct ocfs2_local_alloc *la;
293 if (osb->local_alloc_bits == 0)
294 goto bail;
296 if (osb->local_alloc_bits >= osb->bitmap_cpg) {
297 mlog(ML_NOTICE, "Requested local alloc window %d is larger "
298 "than max possible %u. Using defaults.\n",
299 osb->local_alloc_bits, (osb->bitmap_cpg - 1));
300 osb->local_alloc_bits =
301 ocfs2_megabytes_to_clusters(osb->sb,
302 ocfs2_la_default_mb(osb));
305 /* read the alloc off disk */
306 inode = ocfs2_get_system_file_inode(osb, LOCAL_ALLOC_SYSTEM_INODE,
307 osb->slot_num);
308 if (!inode) {
309 status = -EINVAL;
310 mlog_errno(status);
311 goto bail;
314 status = ocfs2_read_inode_block_full(inode, &alloc_bh,
315 OCFS2_BH_IGNORE_CACHE);
316 if (status < 0) {
317 mlog_errno(status);
318 goto bail;
321 alloc = (struct ocfs2_dinode *) alloc_bh->b_data;
322 la = OCFS2_LOCAL_ALLOC(alloc);
324 if (!(le32_to_cpu(alloc->i_flags) &
325 (OCFS2_LOCAL_ALLOC_FL|OCFS2_BITMAP_FL))) {
326 mlog(ML_ERROR, "Invalid local alloc inode, %llu\n",
327 (unsigned long long)OCFS2_I(inode)->ip_blkno);
328 status = -EINVAL;
329 goto bail;
332 if ((la->la_size == 0) ||
333 (le16_to_cpu(la->la_size) > ocfs2_local_alloc_size(inode->i_sb))) {
334 mlog(ML_ERROR, "Local alloc size is invalid (la_size = %u)\n",
335 le16_to_cpu(la->la_size));
336 status = -EINVAL;
337 goto bail;
340 /* do a little verification. */
341 num_used = ocfs2_local_alloc_count_bits(alloc);
343 /* hopefully the local alloc has always been recovered before
344 * we load it. */
345 if (num_used
346 || alloc->id1.bitmap1.i_used
347 || alloc->id1.bitmap1.i_total
348 || la->la_bm_off) {
349 mlog(ML_ERROR, "inconsistent detected, clean journal with"
350 " unrecovered local alloc, please run fsck.ocfs2!\n"
351 "found = %u, set = %u, taken = %u, off = %u\n",
352 num_used, le32_to_cpu(alloc->id1.bitmap1.i_used),
353 le32_to_cpu(alloc->id1.bitmap1.i_total),
354 OCFS2_LOCAL_ALLOC(alloc)->la_bm_off);
356 status = -EINVAL;
357 goto bail;
360 osb->local_alloc_bh = alloc_bh;
361 osb->local_alloc_state = OCFS2_LA_ENABLED;
363 bail:
364 if (status < 0)
365 brelse(alloc_bh);
366 if (inode)
367 iput(inode);
369 trace_ocfs2_load_local_alloc(osb->local_alloc_bits);
371 if (status)
372 mlog_errno(status);
373 return status;
377 * return any unused bits to the bitmap and write out a clean
378 * local_alloc.
380 * local_alloc_bh is optional. If not passed, we will simply use the
381 * one off osb. If you do pass it however, be warned that it *will* be
382 * returned brelse'd and NULL'd out.*/
383 void ocfs2_shutdown_local_alloc(struct ocfs2_super *osb)
385 int status;
386 handle_t *handle;
387 struct inode *local_alloc_inode = NULL;
388 struct buffer_head *bh = NULL;
389 struct buffer_head *main_bm_bh = NULL;
390 struct inode *main_bm_inode = NULL;
391 struct ocfs2_dinode *alloc_copy = NULL;
392 struct ocfs2_dinode *alloc = NULL;
394 cancel_delayed_work(&osb->la_enable_wq);
395 flush_workqueue(ocfs2_wq);
397 if (osb->local_alloc_state == OCFS2_LA_UNUSED)
398 goto out;
400 local_alloc_inode =
401 ocfs2_get_system_file_inode(osb,
402 LOCAL_ALLOC_SYSTEM_INODE,
403 osb->slot_num);
404 if (!local_alloc_inode) {
405 status = -ENOENT;
406 mlog_errno(status);
407 goto out;
410 osb->local_alloc_state = OCFS2_LA_DISABLED;
412 ocfs2_resmap_uninit(&osb->osb_la_resmap);
414 main_bm_inode = ocfs2_get_system_file_inode(osb,
415 GLOBAL_BITMAP_SYSTEM_INODE,
416 OCFS2_INVALID_SLOT);
417 if (!main_bm_inode) {
418 status = -EINVAL;
419 mlog_errno(status);
420 goto out;
423 mutex_lock(&main_bm_inode->i_mutex);
425 status = ocfs2_inode_lock(main_bm_inode, &main_bm_bh, 1);
426 if (status < 0) {
427 mlog_errno(status);
428 goto out_mutex;
431 /* WINDOW_MOVE_CREDITS is a bit heavy... */
432 handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
433 if (IS_ERR(handle)) {
434 mlog_errno(PTR_ERR(handle));
435 handle = NULL;
436 goto out_unlock;
439 bh = osb->local_alloc_bh;
440 alloc = (struct ocfs2_dinode *) bh->b_data;
442 alloc_copy = kmalloc(bh->b_size, GFP_NOFS);
443 if (!alloc_copy) {
444 status = -ENOMEM;
445 goto out_commit;
447 memcpy(alloc_copy, alloc, bh->b_size);
449 status = ocfs2_journal_access_di(handle, INODE_CACHE(local_alloc_inode),
450 bh, OCFS2_JOURNAL_ACCESS_WRITE);
451 if (status < 0) {
452 mlog_errno(status);
453 goto out_commit;
456 ocfs2_clear_local_alloc(alloc);
457 ocfs2_journal_dirty(handle, bh);
459 brelse(bh);
460 osb->local_alloc_bh = NULL;
461 osb->local_alloc_state = OCFS2_LA_UNUSED;
463 status = ocfs2_sync_local_to_main(osb, handle, alloc_copy,
464 main_bm_inode, main_bm_bh);
465 if (status < 0)
466 mlog_errno(status);
468 out_commit:
469 ocfs2_commit_trans(osb, handle);
471 out_unlock:
472 brelse(main_bm_bh);
474 ocfs2_inode_unlock(main_bm_inode, 1);
476 out_mutex:
477 mutex_unlock(&main_bm_inode->i_mutex);
478 iput(main_bm_inode);
480 out:
481 if (local_alloc_inode)
482 iput(local_alloc_inode);
484 kfree(alloc_copy);
488 * We want to free the bitmap bits outside of any recovery context as
489 * we'll need a cluster lock to do so, but we must clear the local
490 * alloc before giving up the recovered nodes journal. To solve this,
491 * we kmalloc a copy of the local alloc before it's change for the
492 * caller to process with ocfs2_complete_local_alloc_recovery
494 int ocfs2_begin_local_alloc_recovery(struct ocfs2_super *osb,
495 int slot_num,
496 struct ocfs2_dinode **alloc_copy)
498 int status = 0;
499 struct buffer_head *alloc_bh = NULL;
500 struct inode *inode = NULL;
501 struct ocfs2_dinode *alloc;
503 trace_ocfs2_begin_local_alloc_recovery(slot_num);
505 *alloc_copy = NULL;
507 inode = ocfs2_get_system_file_inode(osb,
508 LOCAL_ALLOC_SYSTEM_INODE,
509 slot_num);
510 if (!inode) {
511 status = -EINVAL;
512 mlog_errno(status);
513 goto bail;
516 mutex_lock(&inode->i_mutex);
518 status = ocfs2_read_inode_block_full(inode, &alloc_bh,
519 OCFS2_BH_IGNORE_CACHE);
520 if (status < 0) {
521 mlog_errno(status);
522 goto bail;
525 *alloc_copy = kmalloc(alloc_bh->b_size, GFP_KERNEL);
526 if (!(*alloc_copy)) {
527 status = -ENOMEM;
528 goto bail;
530 memcpy((*alloc_copy), alloc_bh->b_data, alloc_bh->b_size);
532 alloc = (struct ocfs2_dinode *) alloc_bh->b_data;
533 ocfs2_clear_local_alloc(alloc);
535 ocfs2_compute_meta_ecc(osb->sb, alloc_bh->b_data, &alloc->i_check);
536 status = ocfs2_write_block(osb, alloc_bh, INODE_CACHE(inode));
537 if (status < 0)
538 mlog_errno(status);
540 bail:
541 if (status < 0) {
542 kfree(*alloc_copy);
543 *alloc_copy = NULL;
546 brelse(alloc_bh);
548 if (inode) {
549 mutex_unlock(&inode->i_mutex);
550 iput(inode);
553 if (status)
554 mlog_errno(status);
555 return status;
559 * Step 2: By now, we've completed the journal recovery, we've stamped
560 * a clean local alloc on disk and dropped the node out of the
561 * recovery map. Dlm locks will no longer stall, so lets clear out the
562 * main bitmap.
564 int ocfs2_complete_local_alloc_recovery(struct ocfs2_super *osb,
565 struct ocfs2_dinode *alloc)
567 int status;
568 handle_t *handle;
569 struct buffer_head *main_bm_bh = NULL;
570 struct inode *main_bm_inode;
572 main_bm_inode = ocfs2_get_system_file_inode(osb,
573 GLOBAL_BITMAP_SYSTEM_INODE,
574 OCFS2_INVALID_SLOT);
575 if (!main_bm_inode) {
576 status = -EINVAL;
577 mlog_errno(status);
578 goto out;
581 mutex_lock(&main_bm_inode->i_mutex);
583 status = ocfs2_inode_lock(main_bm_inode, &main_bm_bh, 1);
584 if (status < 0) {
585 mlog_errno(status);
586 goto out_mutex;
589 handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
590 if (IS_ERR(handle)) {
591 status = PTR_ERR(handle);
592 handle = NULL;
593 mlog_errno(status);
594 goto out_unlock;
597 /* we want the bitmap change to be recorded on disk asap */
598 handle->h_sync = 1;
600 status = ocfs2_sync_local_to_main(osb, handle, alloc,
601 main_bm_inode, main_bm_bh);
602 if (status < 0)
603 mlog_errno(status);
605 ocfs2_commit_trans(osb, handle);
607 out_unlock:
608 ocfs2_inode_unlock(main_bm_inode, 1);
610 out_mutex:
611 mutex_unlock(&main_bm_inode->i_mutex);
613 brelse(main_bm_bh);
615 iput(main_bm_inode);
617 out:
618 if (!status)
619 ocfs2_init_steal_slots(osb);
620 if (status)
621 mlog_errno(status);
622 return status;
626 * make sure we've got at least bits_wanted contiguous bits in the
627 * local alloc. You lose them when you drop i_mutex.
629 * We will add ourselves to the transaction passed in, but may start
630 * our own in order to shift windows.
632 int ocfs2_reserve_local_alloc_bits(struct ocfs2_super *osb,
633 u32 bits_wanted,
634 struct ocfs2_alloc_context *ac)
636 int status;
637 struct ocfs2_dinode *alloc;
638 struct inode *local_alloc_inode;
639 unsigned int free_bits;
641 BUG_ON(!ac);
643 local_alloc_inode =
644 ocfs2_get_system_file_inode(osb,
645 LOCAL_ALLOC_SYSTEM_INODE,
646 osb->slot_num);
647 if (!local_alloc_inode) {
648 status = -ENOENT;
649 mlog_errno(status);
650 goto bail;
653 mutex_lock(&local_alloc_inode->i_mutex);
656 * We must double check state and allocator bits because
657 * another process may have changed them while holding i_mutex.
659 spin_lock(&osb->osb_lock);
660 if (!ocfs2_la_state_enabled(osb) ||
661 (bits_wanted > osb->local_alloc_bits)) {
662 spin_unlock(&osb->osb_lock);
663 status = -ENOSPC;
664 goto bail;
666 spin_unlock(&osb->osb_lock);
668 alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
670 #ifdef CONFIG_OCFS2_DEBUG_FS
671 if (le32_to_cpu(alloc->id1.bitmap1.i_used) !=
672 ocfs2_local_alloc_count_bits(alloc)) {
673 ocfs2_error(osb->sb, "local alloc inode %llu says it has %u used bits, but a count shows %u\n",
674 (unsigned long long)le64_to_cpu(alloc->i_blkno),
675 le32_to_cpu(alloc->id1.bitmap1.i_used),
676 ocfs2_local_alloc_count_bits(alloc));
677 status = -EIO;
678 goto bail;
680 #endif
682 free_bits = le32_to_cpu(alloc->id1.bitmap1.i_total) -
683 le32_to_cpu(alloc->id1.bitmap1.i_used);
684 if (bits_wanted > free_bits) {
685 /* uhoh, window change time. */
686 status =
687 ocfs2_local_alloc_slide_window(osb, local_alloc_inode);
688 if (status < 0) {
689 if (status != -ENOSPC)
690 mlog_errno(status);
691 goto bail;
695 * Under certain conditions, the window slide code
696 * might have reduced the number of bits available or
697 * disabled the the local alloc entirely. Re-check
698 * here and return -ENOSPC if necessary.
700 status = -ENOSPC;
701 if (!ocfs2_la_state_enabled(osb))
702 goto bail;
704 free_bits = le32_to_cpu(alloc->id1.bitmap1.i_total) -
705 le32_to_cpu(alloc->id1.bitmap1.i_used);
706 if (bits_wanted > free_bits)
707 goto bail;
710 ac->ac_inode = local_alloc_inode;
711 /* We should never use localalloc from another slot */
712 ac->ac_alloc_slot = osb->slot_num;
713 ac->ac_which = OCFS2_AC_USE_LOCAL;
714 get_bh(osb->local_alloc_bh);
715 ac->ac_bh = osb->local_alloc_bh;
716 status = 0;
717 bail:
718 if (status < 0 && local_alloc_inode) {
719 mutex_unlock(&local_alloc_inode->i_mutex);
720 iput(local_alloc_inode);
723 trace_ocfs2_reserve_local_alloc_bits(
724 (unsigned long long)ac->ac_max_block,
725 bits_wanted, osb->slot_num, status);
727 if (status)
728 mlog_errno(status);
729 return status;
732 int ocfs2_claim_local_alloc_bits(struct ocfs2_super *osb,
733 handle_t *handle,
734 struct ocfs2_alloc_context *ac,
735 u32 bits_wanted,
736 u32 *bit_off,
737 u32 *num_bits)
739 int status, start;
740 struct inode *local_alloc_inode;
741 void *bitmap;
742 struct ocfs2_dinode *alloc;
743 struct ocfs2_local_alloc *la;
745 BUG_ON(ac->ac_which != OCFS2_AC_USE_LOCAL);
747 local_alloc_inode = ac->ac_inode;
748 alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
749 la = OCFS2_LOCAL_ALLOC(alloc);
751 start = ocfs2_local_alloc_find_clear_bits(osb, alloc, &bits_wanted,
752 ac->ac_resv);
753 if (start == -1) {
754 /* TODO: Shouldn't we just BUG here? */
755 status = -ENOSPC;
756 mlog_errno(status);
757 goto bail;
760 bitmap = la->la_bitmap;
761 *bit_off = le32_to_cpu(la->la_bm_off) + start;
762 *num_bits = bits_wanted;
764 status = ocfs2_journal_access_di(handle,
765 INODE_CACHE(local_alloc_inode),
766 osb->local_alloc_bh,
767 OCFS2_JOURNAL_ACCESS_WRITE);
768 if (status < 0) {
769 mlog_errno(status);
770 goto bail;
773 ocfs2_resmap_claimed_bits(&osb->osb_la_resmap, ac->ac_resv, start,
774 bits_wanted);
776 while(bits_wanted--)
777 ocfs2_set_bit(start++, bitmap);
779 le32_add_cpu(&alloc->id1.bitmap1.i_used, *num_bits);
780 ocfs2_journal_dirty(handle, osb->local_alloc_bh);
782 bail:
783 if (status)
784 mlog_errno(status);
785 return status;
788 int ocfs2_free_local_alloc_bits(struct ocfs2_super *osb,
789 handle_t *handle,
790 struct ocfs2_alloc_context *ac,
791 u32 bit_off,
792 u32 num_bits)
794 int status, start;
795 u32 clear_bits;
796 struct inode *local_alloc_inode;
797 void *bitmap;
798 struct ocfs2_dinode *alloc;
799 struct ocfs2_local_alloc *la;
801 BUG_ON(ac->ac_which != OCFS2_AC_USE_LOCAL);
803 local_alloc_inode = ac->ac_inode;
804 alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
805 la = OCFS2_LOCAL_ALLOC(alloc);
807 bitmap = la->la_bitmap;
808 start = bit_off - le32_to_cpu(la->la_bm_off);
809 clear_bits = num_bits;
811 status = ocfs2_journal_access_di(handle,
812 INODE_CACHE(local_alloc_inode),
813 osb->local_alloc_bh,
814 OCFS2_JOURNAL_ACCESS_WRITE);
815 if (status < 0) {
816 mlog_errno(status);
817 goto bail;
820 while (clear_bits--)
821 ocfs2_clear_bit(start++, bitmap);
823 le32_add_cpu(&alloc->id1.bitmap1.i_used, -num_bits);
824 ocfs2_journal_dirty(handle, osb->local_alloc_bh);
826 bail:
827 return status;
830 static u32 ocfs2_local_alloc_count_bits(struct ocfs2_dinode *alloc)
832 u32 count;
833 struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
835 count = memweight(la->la_bitmap, le16_to_cpu(la->la_size));
837 trace_ocfs2_local_alloc_count_bits(count);
838 return count;
841 static int ocfs2_local_alloc_find_clear_bits(struct ocfs2_super *osb,
842 struct ocfs2_dinode *alloc,
843 u32 *numbits,
844 struct ocfs2_alloc_reservation *resv)
846 int numfound = 0, bitoff, left, startoff, lastzero;
847 int local_resv = 0;
848 struct ocfs2_alloc_reservation r;
849 void *bitmap = NULL;
850 struct ocfs2_reservation_map *resmap = &osb->osb_la_resmap;
852 if (!alloc->id1.bitmap1.i_total) {
853 bitoff = -1;
854 goto bail;
857 if (!resv) {
858 local_resv = 1;
859 ocfs2_resv_init_once(&r);
860 ocfs2_resv_set_type(&r, OCFS2_RESV_FLAG_TMP);
861 resv = &r;
864 numfound = *numbits;
865 if (ocfs2_resmap_resv_bits(resmap, resv, &bitoff, &numfound) == 0) {
866 if (numfound < *numbits)
867 *numbits = numfound;
868 goto bail;
872 * Code error. While reservations are enabled, local
873 * allocation should _always_ go through them.
875 BUG_ON(osb->osb_resv_level != 0);
878 * Reservations are disabled. Handle this the old way.
881 bitmap = OCFS2_LOCAL_ALLOC(alloc)->la_bitmap;
883 numfound = bitoff = startoff = 0;
884 lastzero = -1;
885 left = le32_to_cpu(alloc->id1.bitmap1.i_total);
886 while ((bitoff = ocfs2_find_next_zero_bit(bitmap, left, startoff)) != -1) {
887 if (bitoff == left) {
888 /* mlog(0, "bitoff (%d) == left", bitoff); */
889 break;
891 /* mlog(0, "Found a zero: bitoff = %d, startoff = %d, "
892 "numfound = %d\n", bitoff, startoff, numfound);*/
894 /* Ok, we found a zero bit... is it contig. or do we
895 * start over?*/
896 if (bitoff == startoff) {
897 /* we found a zero */
898 numfound++;
899 startoff++;
900 } else {
901 /* got a zero after some ones */
902 numfound = 1;
903 startoff = bitoff+1;
905 /* we got everything we needed */
906 if (numfound == *numbits) {
907 /* mlog(0, "Found it all!\n"); */
908 break;
912 trace_ocfs2_local_alloc_find_clear_bits_search_bitmap(bitoff, numfound);
914 if (numfound == *numbits)
915 bitoff = startoff - numfound;
916 else
917 bitoff = -1;
919 bail:
920 if (local_resv)
921 ocfs2_resv_discard(resmap, resv);
923 trace_ocfs2_local_alloc_find_clear_bits(*numbits,
924 le32_to_cpu(alloc->id1.bitmap1.i_total),
925 bitoff, numfound);
927 return bitoff;
930 static void ocfs2_clear_local_alloc(struct ocfs2_dinode *alloc)
932 struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
933 int i;
935 alloc->id1.bitmap1.i_total = 0;
936 alloc->id1.bitmap1.i_used = 0;
937 la->la_bm_off = 0;
938 for(i = 0; i < le16_to_cpu(la->la_size); i++)
939 la->la_bitmap[i] = 0;
942 #if 0
943 /* turn this on and uncomment below to aid debugging window shifts. */
944 static void ocfs2_verify_zero_bits(unsigned long *bitmap,
945 unsigned int start,
946 unsigned int count)
948 unsigned int tmp = count;
949 while(tmp--) {
950 if (ocfs2_test_bit(start + tmp, bitmap)) {
951 printk("ocfs2_verify_zero_bits: start = %u, count = "
952 "%u\n", start, count);
953 printk("ocfs2_verify_zero_bits: bit %u is set!",
954 start + tmp);
955 BUG();
959 #endif
962 * sync the local alloc to main bitmap.
964 * assumes you've already locked the main bitmap -- the bitmap inode
965 * passed is used for caching.
967 static int ocfs2_sync_local_to_main(struct ocfs2_super *osb,
968 handle_t *handle,
969 struct ocfs2_dinode *alloc,
970 struct inode *main_bm_inode,
971 struct buffer_head *main_bm_bh)
973 int status = 0;
974 int bit_off, left, count, start;
975 u64 la_start_blk;
976 u64 blkno;
977 void *bitmap;
978 struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
980 trace_ocfs2_sync_local_to_main(
981 le32_to_cpu(alloc->id1.bitmap1.i_total),
982 le32_to_cpu(alloc->id1.bitmap1.i_used));
984 if (!alloc->id1.bitmap1.i_total) {
985 goto bail;
988 if (le32_to_cpu(alloc->id1.bitmap1.i_used) ==
989 le32_to_cpu(alloc->id1.bitmap1.i_total)) {
990 goto bail;
993 la_start_blk = ocfs2_clusters_to_blocks(osb->sb,
994 le32_to_cpu(la->la_bm_off));
995 bitmap = la->la_bitmap;
996 start = count = bit_off = 0;
997 left = le32_to_cpu(alloc->id1.bitmap1.i_total);
999 while ((bit_off = ocfs2_find_next_zero_bit(bitmap, left, start))
1000 != -1) {
1001 if ((bit_off < left) && (bit_off == start)) {
1002 count++;
1003 start++;
1004 continue;
1006 if (count) {
1007 blkno = la_start_blk +
1008 ocfs2_clusters_to_blocks(osb->sb,
1009 start - count);
1011 trace_ocfs2_sync_local_to_main_free(
1012 count, start - count,
1013 (unsigned long long)la_start_blk,
1014 (unsigned long long)blkno);
1016 status = ocfs2_release_clusters(handle,
1017 main_bm_inode,
1018 main_bm_bh, blkno,
1019 count);
1020 if (status < 0) {
1021 mlog_errno(status);
1022 goto bail;
1025 if (bit_off >= left)
1026 break;
1027 count = 1;
1028 start = bit_off + 1;
1031 bail:
1032 if (status)
1033 mlog_errno(status);
1034 return status;
1037 enum ocfs2_la_event {
1038 OCFS2_LA_EVENT_SLIDE, /* Normal window slide. */
1039 OCFS2_LA_EVENT_FRAGMENTED, /* The global bitmap has
1040 * enough bits theoretically
1041 * free, but a contiguous
1042 * allocation could not be
1043 * found. */
1044 OCFS2_LA_EVENT_ENOSPC, /* Global bitmap doesn't have
1045 * enough bits free to satisfy
1046 * our request. */
1048 #define OCFS2_LA_ENABLE_INTERVAL (30 * HZ)
1050 * Given an event, calculate the size of our next local alloc window.
1052 * This should always be called under i_mutex of the local alloc inode
1053 * so that local alloc disabling doesn't race with processes trying to
1054 * use the allocator.
1056 * Returns the state which the local alloc was left in. This value can
1057 * be ignored by some paths.
1059 static int ocfs2_recalc_la_window(struct ocfs2_super *osb,
1060 enum ocfs2_la_event event)
1062 unsigned int bits;
1063 int state;
1065 spin_lock(&osb->osb_lock);
1066 if (osb->local_alloc_state == OCFS2_LA_DISABLED) {
1067 WARN_ON_ONCE(osb->local_alloc_state == OCFS2_LA_DISABLED);
1068 goto out_unlock;
1072 * ENOSPC and fragmentation are treated similarly for now.
1074 if (event == OCFS2_LA_EVENT_ENOSPC ||
1075 event == OCFS2_LA_EVENT_FRAGMENTED) {
1077 * We ran out of contiguous space in the primary
1078 * bitmap. Drastically reduce the number of bits used
1079 * by local alloc until we have to disable it.
1081 bits = osb->local_alloc_bits >> 1;
1082 if (bits > ocfs2_megabytes_to_clusters(osb->sb, 1)) {
1084 * By setting state to THROTTLED, we'll keep
1085 * the number of local alloc bits used down
1086 * until an event occurs which would give us
1087 * reason to assume the bitmap situation might
1088 * have changed.
1090 osb->local_alloc_state = OCFS2_LA_THROTTLED;
1091 osb->local_alloc_bits = bits;
1092 } else {
1093 osb->local_alloc_state = OCFS2_LA_DISABLED;
1095 queue_delayed_work(ocfs2_wq, &osb->la_enable_wq,
1096 OCFS2_LA_ENABLE_INTERVAL);
1097 goto out_unlock;
1101 * Don't increase the size of the local alloc window until we
1102 * know we might be able to fulfill the request. Otherwise, we
1103 * risk bouncing around the global bitmap during periods of
1104 * low space.
1106 if (osb->local_alloc_state != OCFS2_LA_THROTTLED)
1107 osb->local_alloc_bits = osb->local_alloc_default_bits;
1109 out_unlock:
1110 state = osb->local_alloc_state;
1111 spin_unlock(&osb->osb_lock);
1113 return state;
1116 static int ocfs2_local_alloc_reserve_for_window(struct ocfs2_super *osb,
1117 struct ocfs2_alloc_context **ac,
1118 struct inode **bitmap_inode,
1119 struct buffer_head **bitmap_bh)
1121 int status;
1123 *ac = kzalloc(sizeof(struct ocfs2_alloc_context), GFP_KERNEL);
1124 if (!(*ac)) {
1125 status = -ENOMEM;
1126 mlog_errno(status);
1127 goto bail;
1130 retry_enospc:
1131 (*ac)->ac_bits_wanted = osb->local_alloc_bits;
1132 status = ocfs2_reserve_cluster_bitmap_bits(osb, *ac);
1133 if (status == -ENOSPC) {
1134 if (ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_ENOSPC) ==
1135 OCFS2_LA_DISABLED)
1136 goto bail;
1138 ocfs2_free_ac_resource(*ac);
1139 memset(*ac, 0, sizeof(struct ocfs2_alloc_context));
1140 goto retry_enospc;
1142 if (status < 0) {
1143 mlog_errno(status);
1144 goto bail;
1147 *bitmap_inode = (*ac)->ac_inode;
1148 igrab(*bitmap_inode);
1149 *bitmap_bh = (*ac)->ac_bh;
1150 get_bh(*bitmap_bh);
1151 status = 0;
1152 bail:
1153 if ((status < 0) && *ac) {
1154 ocfs2_free_alloc_context(*ac);
1155 *ac = NULL;
1158 if (status)
1159 mlog_errno(status);
1160 return status;
1164 * pass it the bitmap lock in lock_bh if you have it.
1166 static int ocfs2_local_alloc_new_window(struct ocfs2_super *osb,
1167 handle_t *handle,
1168 struct ocfs2_alloc_context *ac)
1170 int status = 0;
1171 u32 cluster_off, cluster_count;
1172 struct ocfs2_dinode *alloc = NULL;
1173 struct ocfs2_local_alloc *la;
1175 alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
1176 la = OCFS2_LOCAL_ALLOC(alloc);
1178 trace_ocfs2_local_alloc_new_window(
1179 le32_to_cpu(alloc->id1.bitmap1.i_total),
1180 osb->local_alloc_bits);
1182 /* Instruct the allocation code to try the most recently used
1183 * cluster group. We'll re-record the group used this pass
1184 * below. */
1185 ac->ac_last_group = osb->la_last_gd;
1187 /* we used the generic suballoc reserve function, but we set
1188 * everything up nicely, so there's no reason why we can't use
1189 * the more specific cluster api to claim bits. */
1190 status = ocfs2_claim_clusters(handle, ac, osb->local_alloc_bits,
1191 &cluster_off, &cluster_count);
1192 if (status == -ENOSPC) {
1193 retry_enospc:
1195 * Note: We could also try syncing the journal here to
1196 * allow use of any free bits which the current
1197 * transaction can't give us access to. --Mark
1199 if (ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_FRAGMENTED) ==
1200 OCFS2_LA_DISABLED)
1201 goto bail;
1203 ac->ac_bits_wanted = osb->local_alloc_bits;
1204 status = ocfs2_claim_clusters(handle, ac,
1205 osb->local_alloc_bits,
1206 &cluster_off,
1207 &cluster_count);
1208 if (status == -ENOSPC)
1209 goto retry_enospc;
1211 * We only shrunk the *minimum* number of in our
1212 * request - it's entirely possible that the allocator
1213 * might give us more than we asked for.
1215 if (status == 0) {
1216 spin_lock(&osb->osb_lock);
1217 osb->local_alloc_bits = cluster_count;
1218 spin_unlock(&osb->osb_lock);
1221 if (status < 0) {
1222 if (status != -ENOSPC)
1223 mlog_errno(status);
1224 goto bail;
1227 osb->la_last_gd = ac->ac_last_group;
1229 la->la_bm_off = cpu_to_le32(cluster_off);
1230 alloc->id1.bitmap1.i_total = cpu_to_le32(cluster_count);
1231 /* just in case... In the future when we find space ourselves,
1232 * we don't have to get all contiguous -- but we'll have to
1233 * set all previously used bits in bitmap and update
1234 * la_bits_set before setting the bits in the main bitmap. */
1235 alloc->id1.bitmap1.i_used = 0;
1236 memset(OCFS2_LOCAL_ALLOC(alloc)->la_bitmap, 0,
1237 le16_to_cpu(la->la_size));
1239 ocfs2_resmap_restart(&osb->osb_la_resmap, cluster_count,
1240 OCFS2_LOCAL_ALLOC(alloc)->la_bitmap);
1242 trace_ocfs2_local_alloc_new_window_result(
1243 OCFS2_LOCAL_ALLOC(alloc)->la_bm_off,
1244 le32_to_cpu(alloc->id1.bitmap1.i_total));
1246 bail:
1247 if (status)
1248 mlog_errno(status);
1249 return status;
1252 /* Note that we do *NOT* lock the local alloc inode here as
1253 * it's been locked already for us. */
1254 static int ocfs2_local_alloc_slide_window(struct ocfs2_super *osb,
1255 struct inode *local_alloc_inode)
1257 int status = 0;
1258 struct buffer_head *main_bm_bh = NULL;
1259 struct inode *main_bm_inode = NULL;
1260 handle_t *handle = NULL;
1261 struct ocfs2_dinode *alloc;
1262 struct ocfs2_dinode *alloc_copy = NULL;
1263 struct ocfs2_alloc_context *ac = NULL;
1265 ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_SLIDE);
1267 /* This will lock the main bitmap for us. */
1268 status = ocfs2_local_alloc_reserve_for_window(osb,
1269 &ac,
1270 &main_bm_inode,
1271 &main_bm_bh);
1272 if (status < 0) {
1273 if (status != -ENOSPC)
1274 mlog_errno(status);
1275 goto bail;
1278 handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
1279 if (IS_ERR(handle)) {
1280 status = PTR_ERR(handle);
1281 handle = NULL;
1282 mlog_errno(status);
1283 goto bail;
1286 alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
1288 /* We want to clear the local alloc before doing anything
1289 * else, so that if we error later during this operation,
1290 * local alloc shutdown won't try to double free main bitmap
1291 * bits. Make a copy so the sync function knows which bits to
1292 * free. */
1293 alloc_copy = kmalloc(osb->local_alloc_bh->b_size, GFP_NOFS);
1294 if (!alloc_copy) {
1295 status = -ENOMEM;
1296 mlog_errno(status);
1297 goto bail;
1299 memcpy(alloc_copy, alloc, osb->local_alloc_bh->b_size);
1301 status = ocfs2_journal_access_di(handle,
1302 INODE_CACHE(local_alloc_inode),
1303 osb->local_alloc_bh,
1304 OCFS2_JOURNAL_ACCESS_WRITE);
1305 if (status < 0) {
1306 mlog_errno(status);
1307 goto bail;
1310 ocfs2_clear_local_alloc(alloc);
1311 ocfs2_journal_dirty(handle, osb->local_alloc_bh);
1313 status = ocfs2_sync_local_to_main(osb, handle, alloc_copy,
1314 main_bm_inode, main_bm_bh);
1315 if (status < 0) {
1316 mlog_errno(status);
1317 goto bail;
1320 status = ocfs2_local_alloc_new_window(osb, handle, ac);
1321 if (status < 0) {
1322 if (status != -ENOSPC)
1323 mlog_errno(status);
1324 goto bail;
1327 atomic_inc(&osb->alloc_stats.moves);
1329 bail:
1330 if (handle)
1331 ocfs2_commit_trans(osb, handle);
1333 brelse(main_bm_bh);
1335 if (main_bm_inode)
1336 iput(main_bm_inode);
1338 kfree(alloc_copy);
1340 if (ac)
1341 ocfs2_free_alloc_context(ac);
1343 if (status)
1344 mlog_errno(status);
1345 return status;