Merge remote-tracking branch 'rockchip/for-next'
[deliverable/linux.git] / fs / xfs / libxfs / xfs_trans_resv.c
1 /*
2 * Copyright (c) 2000-2003,2005 Silicon Graphics, Inc.
3 * Copyright (C) 2010 Red Hat, Inc.
4 * All Rights Reserved.
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License as
8 * published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope that it would be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write the Free Software Foundation,
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
18 */
19 #include "xfs.h"
20 #include "xfs_fs.h"
21 #include "xfs_shared.h"
22 #include "xfs_format.h"
23 #include "xfs_log_format.h"
24 #include "xfs_trans_resv.h"
25 #include "xfs_mount.h"
26 #include "xfs_da_format.h"
27 #include "xfs_da_btree.h"
28 #include "xfs_inode.h"
29 #include "xfs_bmap_btree.h"
30 #include "xfs_ialloc.h"
31 #include "xfs_quota.h"
32 #include "xfs_trans.h"
33 #include "xfs_qm.h"
34 #include "xfs_trans_space.h"
35 #include "xfs_trace.h"
36
37 /*
38 * A buffer has a format structure overhead in the log in addition
39 * to the data, so we need to take this into account when reserving
40 * space in a transaction for a buffer. Round the space required up
41 * to a multiple of 128 bytes so that we don't change the historical
42 * reservation that has been used for this overhead.
43 */
44 STATIC uint
45 xfs_buf_log_overhead(void)
46 {
47 return round_up(sizeof(struct xlog_op_header) +
48 sizeof(struct xfs_buf_log_format), 128);
49 }
50
51 /*
52 * Calculate out transaction log reservation per item in bytes.
53 *
54 * The nbufs argument is used to indicate the number of items that
55 * will be changed in a transaction. size is used to tell how many
56 * bytes should be reserved per item.
57 */
58 STATIC uint
59 xfs_calc_buf_res(
60 uint nbufs,
61 uint size)
62 {
63 return nbufs * (size + xfs_buf_log_overhead());
64 }
65
66 /*
67 * Per-extent log reservation for the btree changes involved in freeing or
68 * allocating an extent. In classic XFS there were two trees that will be
69 * modified (bnobt + cntbt). With rmap enabled, there are three trees
70 * (rmapbt). The number of blocks reserved is based on the formula:
71 *
72 * num trees * ((2 blocks/level * max depth) - 1)
73 *
74 * Keep in mind that max depth is calculated separately for each type of tree.
75 */
76 static uint
77 xfs_allocfree_log_count(
78 struct xfs_mount *mp,
79 uint num_ops)
80 {
81 uint blocks;
82
83 blocks = num_ops * 2 * (2 * mp->m_ag_maxlevels - 1);
84 if (xfs_sb_version_hasrmapbt(&mp->m_sb))
85 blocks += num_ops * (2 * mp->m_rmap_maxlevels - 1);
86
87 return blocks;
88 }
89
90 /*
91 * Logging inodes is really tricksy. They are logged in memory format,
92 * which means that what we write into the log doesn't directly translate into
93 * the amount of space they use on disk.
94 *
95 * Case in point - btree format forks in memory format use more space than the
96 * on-disk format. In memory, the buffer contains a normal btree block header so
97 * the btree code can treat it as though it is just another generic buffer.
98 * However, when we write it to the inode fork, we don't write all of this
99 * header as it isn't needed. e.g. the root is only ever in the inode, so
100 * there's no need for sibling pointers which would waste 16 bytes of space.
101 *
102 * Hence when we have an inode with a maximally sized btree format fork, then
103 * amount of information we actually log is greater than the size of the inode
104 * on disk. Hence we need an inode reservation function that calculates all this
105 * correctly. So, we log:
106 *
107 * - 4 log op headers for object
108 * - for the ilf, the inode core and 2 forks
109 * - inode log format object
110 * - the inode core
111 * - two inode forks containing bmap btree root blocks.
112 * - the btree data contained by both forks will fit into the inode size,
113 * hence when combined with the inode core above, we have a total of the
114 * actual inode size.
115 * - the BMBT headers need to be accounted separately, as they are
116 * additional to the records and pointers that fit inside the inode
117 * forks.
118 */
119 STATIC uint
120 xfs_calc_inode_res(
121 struct xfs_mount *mp,
122 uint ninodes)
123 {
124 return ninodes *
125 (4 * sizeof(struct xlog_op_header) +
126 sizeof(struct xfs_inode_log_format) +
127 mp->m_sb.sb_inodesize +
128 2 * XFS_BMBT_BLOCK_LEN(mp));
129 }
130
131 /*
132 * The free inode btree is a conditional feature and the log reservation
133 * requirements differ slightly from that of the traditional inode allocation
134 * btree. The finobt tracks records for inode chunks with at least one free
135 * inode. A record can be removed from the tree for an inode allocation
136 * or free and thus the finobt reservation is unconditional across:
137 *
138 * - inode allocation
139 * - inode free
140 * - inode chunk allocation
141 *
142 * The 'modify' param indicates to include the record modification scenario. The
143 * 'alloc' param indicates to include the reservation for free space btree
144 * modifications on behalf of finobt modifications. This is required only for
145 * transactions that do not already account for free space btree modifications.
146 *
147 * the free inode btree: max depth * block size
148 * the allocation btrees: 2 trees * (max depth - 1) * block size
149 * the free inode btree entry: block size
150 */
151 STATIC uint
152 xfs_calc_finobt_res(
153 struct xfs_mount *mp,
154 int alloc,
155 int modify)
156 {
157 uint res;
158
159 if (!xfs_sb_version_hasfinobt(&mp->m_sb))
160 return 0;
161
162 res = xfs_calc_buf_res(mp->m_in_maxlevels, XFS_FSB_TO_B(mp, 1));
163 if (alloc)
164 res += xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
165 XFS_FSB_TO_B(mp, 1));
166 if (modify)
167 res += (uint)XFS_FSB_TO_B(mp, 1);
168
169 return res;
170 }
171
172 /*
173 * Various log reservation values.
174 *
175 * These are based on the size of the file system block because that is what
176 * most transactions manipulate. Each adds in an additional 128 bytes per
177 * item logged to try to account for the overhead of the transaction mechanism.
178 *
179 * Note: Most of the reservations underestimate the number of allocation
180 * groups into which they could free extents in the xfs_defer_finish() call.
181 * This is because the number in the worst case is quite high and quite
182 * unusual. In order to fix this we need to change xfs_defer_finish() to free
183 * extents in only a single AG at a time. This will require changes to the
184 * EFI code as well, however, so that the EFI for the extents not freed is
185 * logged again in each transaction. See SGI PV #261917.
186 *
187 * Reservation functions here avoid a huge stack in xfs_trans_init due to
188 * register overflow from temporaries in the calculations.
189 */
190
191
192 /*
193 * In a write transaction we can allocate a maximum of 2
194 * extents. This gives:
195 * the inode getting the new extents: inode size
196 * the inode's bmap btree: max depth * block size
197 * the agfs of the ags from which the extents are allocated: 2 * sector
198 * the superblock free block counter: sector size
199 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
200 * And the bmap_finish transaction can free bmap blocks in a join:
201 * the agfs of the ags containing the blocks: 2 * sector size
202 * the agfls of the ags containing the blocks: 2 * sector size
203 * the super block free block counter: sector size
204 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
205 */
206 STATIC uint
207 xfs_calc_write_reservation(
208 struct xfs_mount *mp)
209 {
210 return XFS_DQUOT_LOGRES(mp) +
211 MAX((xfs_calc_inode_res(mp, 1) +
212 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK),
213 XFS_FSB_TO_B(mp, 1)) +
214 xfs_calc_buf_res(3, mp->m_sb.sb_sectsize) +
215 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 2),
216 XFS_FSB_TO_B(mp, 1))),
217 (xfs_calc_buf_res(5, mp->m_sb.sb_sectsize) +
218 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 2),
219 XFS_FSB_TO_B(mp, 1))));
220 }
221
222 /*
223 * In truncating a file we free up to two extents at once. We can modify:
224 * the inode being truncated: inode size
225 * the inode's bmap btree: (max depth + 1) * block size
226 * And the bmap_finish transaction can free the blocks and bmap blocks:
227 * the agf for each of the ags: 4 * sector size
228 * the agfl for each of the ags: 4 * sector size
229 * the super block to reflect the freed blocks: sector size
230 * worst case split in allocation btrees per extent assuming 4 extents:
231 * 4 exts * 2 trees * (2 * max depth - 1) * block size
232 * the inode btree: max depth * blocksize
233 * the allocation btrees: 2 trees * (max depth - 1) * block size
234 */
235 STATIC uint
236 xfs_calc_itruncate_reservation(
237 struct xfs_mount *mp)
238 {
239 return XFS_DQUOT_LOGRES(mp) +
240 MAX((xfs_calc_inode_res(mp, 1) +
241 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK) + 1,
242 XFS_FSB_TO_B(mp, 1))),
243 (xfs_calc_buf_res(9, mp->m_sb.sb_sectsize) +
244 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 4),
245 XFS_FSB_TO_B(mp, 1)) +
246 xfs_calc_buf_res(5, 0) +
247 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
248 XFS_FSB_TO_B(mp, 1)) +
249 xfs_calc_buf_res(2 + mp->m_ialloc_blks +
250 mp->m_in_maxlevels, 0)));
251 }
252
253 /*
254 * In renaming a files we can modify:
255 * the four inodes involved: 4 * inode size
256 * the two directory btrees: 2 * (max depth + v2) * dir block size
257 * the two directory bmap btrees: 2 * max depth * block size
258 * And the bmap_finish transaction can free dir and bmap blocks (two sets
259 * of bmap blocks) giving:
260 * the agf for the ags in which the blocks live: 3 * sector size
261 * the agfl for the ags in which the blocks live: 3 * sector size
262 * the superblock for the free block count: sector size
263 * the allocation btrees: 3 exts * 2 trees * (2 * max depth - 1) * block size
264 */
265 STATIC uint
266 xfs_calc_rename_reservation(
267 struct xfs_mount *mp)
268 {
269 return XFS_DQUOT_LOGRES(mp) +
270 MAX((xfs_calc_inode_res(mp, 4) +
271 xfs_calc_buf_res(2 * XFS_DIROP_LOG_COUNT(mp),
272 XFS_FSB_TO_B(mp, 1))),
273 (xfs_calc_buf_res(7, mp->m_sb.sb_sectsize) +
274 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 3),
275 XFS_FSB_TO_B(mp, 1))));
276 }
277
278 /*
279 * For removing an inode from unlinked list at first, we can modify:
280 * the agi hash list and counters: sector size
281 * the on disk inode before ours in the agi hash list: inode cluster size
282 */
283 STATIC uint
284 xfs_calc_iunlink_remove_reservation(
285 struct xfs_mount *mp)
286 {
287 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
288 max_t(uint, XFS_FSB_TO_B(mp, 1), mp->m_inode_cluster_size);
289 }
290
291 /*
292 * For creating a link to an inode:
293 * the parent directory inode: inode size
294 * the linked inode: inode size
295 * the directory btree could split: (max depth + v2) * dir block size
296 * the directory bmap btree could join or split: (max depth + v2) * blocksize
297 * And the bmap_finish transaction can free some bmap blocks giving:
298 * the agf for the ag in which the blocks live: sector size
299 * the agfl for the ag in which the blocks live: sector size
300 * the superblock for the free block count: sector size
301 * the allocation btrees: 2 trees * (2 * max depth - 1) * block size
302 */
303 STATIC uint
304 xfs_calc_link_reservation(
305 struct xfs_mount *mp)
306 {
307 return XFS_DQUOT_LOGRES(mp) +
308 xfs_calc_iunlink_remove_reservation(mp) +
309 MAX((xfs_calc_inode_res(mp, 2) +
310 xfs_calc_buf_res(XFS_DIROP_LOG_COUNT(mp),
311 XFS_FSB_TO_B(mp, 1))),
312 (xfs_calc_buf_res(3, mp->m_sb.sb_sectsize) +
313 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
314 XFS_FSB_TO_B(mp, 1))));
315 }
316
317 /*
318 * For adding an inode to unlinked list we can modify:
319 * the agi hash list: sector size
320 * the unlinked inode: inode size
321 */
322 STATIC uint
323 xfs_calc_iunlink_add_reservation(xfs_mount_t *mp)
324 {
325 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
326 xfs_calc_inode_res(mp, 1);
327 }
328
329 /*
330 * For removing a directory entry we can modify:
331 * the parent directory inode: inode size
332 * the removed inode: inode size
333 * the directory btree could join: (max depth + v2) * dir block size
334 * the directory bmap btree could join or split: (max depth + v2) * blocksize
335 * And the bmap_finish transaction can free the dir and bmap blocks giving:
336 * the agf for the ag in which the blocks live: 2 * sector size
337 * the agfl for the ag in which the blocks live: 2 * sector size
338 * the superblock for the free block count: sector size
339 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
340 */
341 STATIC uint
342 xfs_calc_remove_reservation(
343 struct xfs_mount *mp)
344 {
345 return XFS_DQUOT_LOGRES(mp) +
346 xfs_calc_iunlink_add_reservation(mp) +
347 MAX((xfs_calc_inode_res(mp, 1) +
348 xfs_calc_buf_res(XFS_DIROP_LOG_COUNT(mp),
349 XFS_FSB_TO_B(mp, 1))),
350 (xfs_calc_buf_res(4, mp->m_sb.sb_sectsize) +
351 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 2),
352 XFS_FSB_TO_B(mp, 1))));
353 }
354
355 /*
356 * For create, break it in to the two cases that the transaction
357 * covers. We start with the modify case - allocation done by modification
358 * of the state of existing inodes - and the allocation case.
359 */
360
361 /*
362 * For create we can modify:
363 * the parent directory inode: inode size
364 * the new inode: inode size
365 * the inode btree entry: block size
366 * the superblock for the nlink flag: sector size
367 * the directory btree: (max depth + v2) * dir block size
368 * the directory inode's bmap btree: (max depth + v2) * block size
369 * the finobt (record modification and allocation btrees)
370 */
371 STATIC uint
372 xfs_calc_create_resv_modify(
373 struct xfs_mount *mp)
374 {
375 return xfs_calc_inode_res(mp, 2) +
376 xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
377 (uint)XFS_FSB_TO_B(mp, 1) +
378 xfs_calc_buf_res(XFS_DIROP_LOG_COUNT(mp), XFS_FSB_TO_B(mp, 1)) +
379 xfs_calc_finobt_res(mp, 1, 1);
380 }
381
382 /*
383 * For create we can allocate some inodes giving:
384 * the agi and agf of the ag getting the new inodes: 2 * sectorsize
385 * the superblock for the nlink flag: sector size
386 * the inode blocks allocated: mp->m_ialloc_blks * blocksize
387 * the inode btree: max depth * blocksize
388 * the allocation btrees: 2 trees * (max depth - 1) * block size
389 */
390 STATIC uint
391 xfs_calc_create_resv_alloc(
392 struct xfs_mount *mp)
393 {
394 return xfs_calc_buf_res(2, mp->m_sb.sb_sectsize) +
395 mp->m_sb.sb_sectsize +
396 xfs_calc_buf_res(mp->m_ialloc_blks, XFS_FSB_TO_B(mp, 1)) +
397 xfs_calc_buf_res(mp->m_in_maxlevels, XFS_FSB_TO_B(mp, 1)) +
398 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
399 XFS_FSB_TO_B(mp, 1));
400 }
401
402 STATIC uint
403 __xfs_calc_create_reservation(
404 struct xfs_mount *mp)
405 {
406 return XFS_DQUOT_LOGRES(mp) +
407 MAX(xfs_calc_create_resv_alloc(mp),
408 xfs_calc_create_resv_modify(mp));
409 }
410
411 /*
412 * For icreate we can allocate some inodes giving:
413 * the agi and agf of the ag getting the new inodes: 2 * sectorsize
414 * the superblock for the nlink flag: sector size
415 * the inode btree: max depth * blocksize
416 * the allocation btrees: 2 trees * (max depth - 1) * block size
417 * the finobt (record insertion)
418 */
419 STATIC uint
420 xfs_calc_icreate_resv_alloc(
421 struct xfs_mount *mp)
422 {
423 return xfs_calc_buf_res(2, mp->m_sb.sb_sectsize) +
424 mp->m_sb.sb_sectsize +
425 xfs_calc_buf_res(mp->m_in_maxlevels, XFS_FSB_TO_B(mp, 1)) +
426 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
427 XFS_FSB_TO_B(mp, 1)) +
428 xfs_calc_finobt_res(mp, 0, 0);
429 }
430
431 STATIC uint
432 xfs_calc_icreate_reservation(xfs_mount_t *mp)
433 {
434 return XFS_DQUOT_LOGRES(mp) +
435 MAX(xfs_calc_icreate_resv_alloc(mp),
436 xfs_calc_create_resv_modify(mp));
437 }
438
439 STATIC uint
440 xfs_calc_create_reservation(
441 struct xfs_mount *mp)
442 {
443 if (xfs_sb_version_hascrc(&mp->m_sb))
444 return xfs_calc_icreate_reservation(mp);
445 return __xfs_calc_create_reservation(mp);
446
447 }
448
449 STATIC uint
450 xfs_calc_create_tmpfile_reservation(
451 struct xfs_mount *mp)
452 {
453 uint res = XFS_DQUOT_LOGRES(mp);
454
455 if (xfs_sb_version_hascrc(&mp->m_sb))
456 res += xfs_calc_icreate_resv_alloc(mp);
457 else
458 res += xfs_calc_create_resv_alloc(mp);
459
460 return res + xfs_calc_iunlink_add_reservation(mp);
461 }
462
463 /*
464 * Making a new directory is the same as creating a new file.
465 */
466 STATIC uint
467 xfs_calc_mkdir_reservation(
468 struct xfs_mount *mp)
469 {
470 return xfs_calc_create_reservation(mp);
471 }
472
473
474 /*
475 * Making a new symplink is the same as creating a new file, but
476 * with the added blocks for remote symlink data which can be up to 1kB in
477 * length (MAXPATHLEN).
478 */
479 STATIC uint
480 xfs_calc_symlink_reservation(
481 struct xfs_mount *mp)
482 {
483 return xfs_calc_create_reservation(mp) +
484 xfs_calc_buf_res(1, MAXPATHLEN);
485 }
486
487 /*
488 * In freeing an inode we can modify:
489 * the inode being freed: inode size
490 * the super block free inode counter: sector size
491 * the agi hash list and counters: sector size
492 * the inode btree entry: block size
493 * the on disk inode before ours in the agi hash list: inode cluster size
494 * the inode btree: max depth * blocksize
495 * the allocation btrees: 2 trees * (max depth - 1) * block size
496 * the finobt (record insertion, removal or modification)
497 */
498 STATIC uint
499 xfs_calc_ifree_reservation(
500 struct xfs_mount *mp)
501 {
502 return XFS_DQUOT_LOGRES(mp) +
503 xfs_calc_inode_res(mp, 1) +
504 xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
505 xfs_calc_buf_res(1, XFS_FSB_TO_B(mp, 1)) +
506 xfs_calc_iunlink_remove_reservation(mp) +
507 xfs_calc_buf_res(1, 0) +
508 xfs_calc_buf_res(2 + mp->m_ialloc_blks +
509 mp->m_in_maxlevels, 0) +
510 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
511 XFS_FSB_TO_B(mp, 1)) +
512 xfs_calc_finobt_res(mp, 0, 1);
513 }
514
515 /*
516 * When only changing the inode we log the inode and possibly the superblock
517 * We also add a bit of slop for the transaction stuff.
518 */
519 STATIC uint
520 xfs_calc_ichange_reservation(
521 struct xfs_mount *mp)
522 {
523 return XFS_DQUOT_LOGRES(mp) +
524 xfs_calc_inode_res(mp, 1) +
525 xfs_calc_buf_res(1, mp->m_sb.sb_sectsize);
526
527 }
528
529 /*
530 * Growing the data section of the filesystem.
531 * superblock
532 * agi and agf
533 * allocation btrees
534 */
535 STATIC uint
536 xfs_calc_growdata_reservation(
537 struct xfs_mount *mp)
538 {
539 return xfs_calc_buf_res(3, mp->m_sb.sb_sectsize) +
540 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
541 XFS_FSB_TO_B(mp, 1));
542 }
543
544 /*
545 * Growing the rt section of the filesystem.
546 * In the first set of transactions (ALLOC) we allocate space to the
547 * bitmap or summary files.
548 * superblock: sector size
549 * agf of the ag from which the extent is allocated: sector size
550 * bmap btree for bitmap/summary inode: max depth * blocksize
551 * bitmap/summary inode: inode size
552 * allocation btrees for 1 block alloc: 2 * (2 * maxdepth - 1) * blocksize
553 */
554 STATIC uint
555 xfs_calc_growrtalloc_reservation(
556 struct xfs_mount *mp)
557 {
558 return xfs_calc_buf_res(2, mp->m_sb.sb_sectsize) +
559 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK),
560 XFS_FSB_TO_B(mp, 1)) +
561 xfs_calc_inode_res(mp, 1) +
562 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
563 XFS_FSB_TO_B(mp, 1));
564 }
565
566 /*
567 * Growing the rt section of the filesystem.
568 * In the second set of transactions (ZERO) we zero the new metadata blocks.
569 * one bitmap/summary block: blocksize
570 */
571 STATIC uint
572 xfs_calc_growrtzero_reservation(
573 struct xfs_mount *mp)
574 {
575 return xfs_calc_buf_res(1, mp->m_sb.sb_blocksize);
576 }
577
578 /*
579 * Growing the rt section of the filesystem.
580 * In the third set of transactions (FREE) we update metadata without
581 * allocating any new blocks.
582 * superblock: sector size
583 * bitmap inode: inode size
584 * summary inode: inode size
585 * one bitmap block: blocksize
586 * summary blocks: new summary size
587 */
588 STATIC uint
589 xfs_calc_growrtfree_reservation(
590 struct xfs_mount *mp)
591 {
592 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
593 xfs_calc_inode_res(mp, 2) +
594 xfs_calc_buf_res(1, mp->m_sb.sb_blocksize) +
595 xfs_calc_buf_res(1, mp->m_rsumsize);
596 }
597
598 /*
599 * Logging the inode modification timestamp on a synchronous write.
600 * inode
601 */
602 STATIC uint
603 xfs_calc_swrite_reservation(
604 struct xfs_mount *mp)
605 {
606 return xfs_calc_inode_res(mp, 1);
607 }
608
609 /*
610 * Logging the inode mode bits when writing a setuid/setgid file
611 * inode
612 */
613 STATIC uint
614 xfs_calc_writeid_reservation(
615 struct xfs_mount *mp)
616 {
617 return xfs_calc_inode_res(mp, 1);
618 }
619
620 /*
621 * Converting the inode from non-attributed to attributed.
622 * the inode being converted: inode size
623 * agf block and superblock (for block allocation)
624 * the new block (directory sized)
625 * bmap blocks for the new directory block
626 * allocation btrees
627 */
628 STATIC uint
629 xfs_calc_addafork_reservation(
630 struct xfs_mount *mp)
631 {
632 return XFS_DQUOT_LOGRES(mp) +
633 xfs_calc_inode_res(mp, 1) +
634 xfs_calc_buf_res(2, mp->m_sb.sb_sectsize) +
635 xfs_calc_buf_res(1, mp->m_dir_geo->blksize) +
636 xfs_calc_buf_res(XFS_DAENTER_BMAP1B(mp, XFS_DATA_FORK) + 1,
637 XFS_FSB_TO_B(mp, 1)) +
638 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 1),
639 XFS_FSB_TO_B(mp, 1));
640 }
641
642 /*
643 * Removing the attribute fork of a file
644 * the inode being truncated: inode size
645 * the inode's bmap btree: max depth * block size
646 * And the bmap_finish transaction can free the blocks and bmap blocks:
647 * the agf for each of the ags: 4 * sector size
648 * the agfl for each of the ags: 4 * sector size
649 * the super block to reflect the freed blocks: sector size
650 * worst case split in allocation btrees per extent assuming 4 extents:
651 * 4 exts * 2 trees * (2 * max depth - 1) * block size
652 */
653 STATIC uint
654 xfs_calc_attrinval_reservation(
655 struct xfs_mount *mp)
656 {
657 return MAX((xfs_calc_inode_res(mp, 1) +
658 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK),
659 XFS_FSB_TO_B(mp, 1))),
660 (xfs_calc_buf_res(9, mp->m_sb.sb_sectsize) +
661 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 4),
662 XFS_FSB_TO_B(mp, 1))));
663 }
664
665 /*
666 * Setting an attribute at mount time.
667 * the inode getting the attribute
668 * the superblock for allocations
669 * the agfs extents are allocated from
670 * the attribute btree * max depth
671 * the inode allocation btree
672 * Since attribute transaction space is dependent on the size of the attribute,
673 * the calculation is done partially at mount time and partially at runtime(see
674 * below).
675 */
676 STATIC uint
677 xfs_calc_attrsetm_reservation(
678 struct xfs_mount *mp)
679 {
680 return XFS_DQUOT_LOGRES(mp) +
681 xfs_calc_inode_res(mp, 1) +
682 xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
683 xfs_calc_buf_res(XFS_DA_NODE_MAXDEPTH, XFS_FSB_TO_B(mp, 1));
684 }
685
686 /*
687 * Setting an attribute at runtime, transaction space unit per block.
688 * the superblock for allocations: sector size
689 * the inode bmap btree could join or split: max depth * block size
690 * Since the runtime attribute transaction space is dependent on the total
691 * blocks needed for the 1st bmap, here we calculate out the space unit for
692 * one block so that the caller could figure out the total space according
693 * to the attibute extent length in blocks by:
694 * ext * M_RES(mp)->tr_attrsetrt.tr_logres
695 */
696 STATIC uint
697 xfs_calc_attrsetrt_reservation(
698 struct xfs_mount *mp)
699 {
700 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize) +
701 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK),
702 XFS_FSB_TO_B(mp, 1));
703 }
704
705 /*
706 * Removing an attribute.
707 * the inode: inode size
708 * the attribute btree could join: max depth * block size
709 * the inode bmap btree could join or split: max depth * block size
710 * And the bmap_finish transaction can free the attr blocks freed giving:
711 * the agf for the ag in which the blocks live: 2 * sector size
712 * the agfl for the ag in which the blocks live: 2 * sector size
713 * the superblock for the free block count: sector size
714 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
715 */
716 STATIC uint
717 xfs_calc_attrrm_reservation(
718 struct xfs_mount *mp)
719 {
720 return XFS_DQUOT_LOGRES(mp) +
721 MAX((xfs_calc_inode_res(mp, 1) +
722 xfs_calc_buf_res(XFS_DA_NODE_MAXDEPTH,
723 XFS_FSB_TO_B(mp, 1)) +
724 (uint)XFS_FSB_TO_B(mp,
725 XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK)) +
726 xfs_calc_buf_res(XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK), 0)),
727 (xfs_calc_buf_res(5, mp->m_sb.sb_sectsize) +
728 xfs_calc_buf_res(xfs_allocfree_log_count(mp, 2),
729 XFS_FSB_TO_B(mp, 1))));
730 }
731
732 /*
733 * Clearing a bad agino number in an agi hash bucket.
734 */
735 STATIC uint
736 xfs_calc_clear_agi_bucket_reservation(
737 struct xfs_mount *mp)
738 {
739 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize);
740 }
741
742 /*
743 * Adjusting quota limits.
744 * the xfs_disk_dquot_t: sizeof(struct xfs_disk_dquot)
745 */
746 STATIC uint
747 xfs_calc_qm_setqlim_reservation(
748 struct xfs_mount *mp)
749 {
750 return xfs_calc_buf_res(1, sizeof(struct xfs_disk_dquot));
751 }
752
753 /*
754 * Allocating quota on disk if needed.
755 * the write transaction log space for quota file extent allocation
756 * the unit of quota allocation: one system block size
757 */
758 STATIC uint
759 xfs_calc_qm_dqalloc_reservation(
760 struct xfs_mount *mp)
761 {
762 return xfs_calc_write_reservation(mp) +
763 xfs_calc_buf_res(1,
764 XFS_FSB_TO_B(mp, XFS_DQUOT_CLUSTER_SIZE_FSB) - 1);
765 }
766
767 /*
768 * Turning off quotas.
769 * the xfs_qoff_logitem_t: sizeof(struct xfs_qoff_logitem) * 2
770 * the superblock for the quota flags: sector size
771 */
772 STATIC uint
773 xfs_calc_qm_quotaoff_reservation(
774 struct xfs_mount *mp)
775 {
776 return sizeof(struct xfs_qoff_logitem) * 2 +
777 xfs_calc_buf_res(1, mp->m_sb.sb_sectsize);
778 }
779
780 /*
781 * End of turning off quotas.
782 * the xfs_qoff_logitem_t: sizeof(struct xfs_qoff_logitem) * 2
783 */
784 STATIC uint
785 xfs_calc_qm_quotaoff_end_reservation(
786 struct xfs_mount *mp)
787 {
788 return sizeof(struct xfs_qoff_logitem) * 2;
789 }
790
791 /*
792 * Syncing the incore super block changes to disk.
793 * the super block to reflect the changes: sector size
794 */
795 STATIC uint
796 xfs_calc_sb_reservation(
797 struct xfs_mount *mp)
798 {
799 return xfs_calc_buf_res(1, mp->m_sb.sb_sectsize);
800 }
801
802 void
803 xfs_trans_resv_calc(
804 struct xfs_mount *mp,
805 struct xfs_trans_resv *resp)
806 {
807 /*
808 * The following transactions are logged in physical format and
809 * require a permanent reservation on space.
810 */
811 resp->tr_write.tr_logres = xfs_calc_write_reservation(mp);
812 resp->tr_write.tr_logcount = XFS_WRITE_LOG_COUNT;
813 resp->tr_write.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
814
815 resp->tr_itruncate.tr_logres = xfs_calc_itruncate_reservation(mp);
816 resp->tr_itruncate.tr_logcount = XFS_ITRUNCATE_LOG_COUNT;
817 resp->tr_itruncate.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
818
819 resp->tr_rename.tr_logres = xfs_calc_rename_reservation(mp);
820 resp->tr_rename.tr_logcount = XFS_RENAME_LOG_COUNT;
821 resp->tr_rename.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
822
823 resp->tr_link.tr_logres = xfs_calc_link_reservation(mp);
824 resp->tr_link.tr_logcount = XFS_LINK_LOG_COUNT;
825 resp->tr_link.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
826
827 resp->tr_remove.tr_logres = xfs_calc_remove_reservation(mp);
828 resp->tr_remove.tr_logcount = XFS_REMOVE_LOG_COUNT;
829 resp->tr_remove.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
830
831 resp->tr_symlink.tr_logres = xfs_calc_symlink_reservation(mp);
832 resp->tr_symlink.tr_logcount = XFS_SYMLINK_LOG_COUNT;
833 resp->tr_symlink.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
834
835 resp->tr_create.tr_logres = xfs_calc_create_reservation(mp);
836 resp->tr_create.tr_logcount = XFS_CREATE_LOG_COUNT;
837 resp->tr_create.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
838
839 resp->tr_create_tmpfile.tr_logres =
840 xfs_calc_create_tmpfile_reservation(mp);
841 resp->tr_create_tmpfile.tr_logcount = XFS_CREATE_TMPFILE_LOG_COUNT;
842 resp->tr_create_tmpfile.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
843
844 resp->tr_mkdir.tr_logres = xfs_calc_mkdir_reservation(mp);
845 resp->tr_mkdir.tr_logcount = XFS_MKDIR_LOG_COUNT;
846 resp->tr_mkdir.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
847
848 resp->tr_ifree.tr_logres = xfs_calc_ifree_reservation(mp);
849 resp->tr_ifree.tr_logcount = XFS_INACTIVE_LOG_COUNT;
850 resp->tr_ifree.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
851
852 resp->tr_addafork.tr_logres = xfs_calc_addafork_reservation(mp);
853 resp->tr_addafork.tr_logcount = XFS_ADDAFORK_LOG_COUNT;
854 resp->tr_addafork.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
855
856 resp->tr_attrinval.tr_logres = xfs_calc_attrinval_reservation(mp);
857 resp->tr_attrinval.tr_logcount = XFS_ATTRINVAL_LOG_COUNT;
858 resp->tr_attrinval.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
859
860 resp->tr_attrsetm.tr_logres = xfs_calc_attrsetm_reservation(mp);
861 resp->tr_attrsetm.tr_logcount = XFS_ATTRSET_LOG_COUNT;
862 resp->tr_attrsetm.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
863
864 resp->tr_attrrm.tr_logres = xfs_calc_attrrm_reservation(mp);
865 resp->tr_attrrm.tr_logcount = XFS_ATTRRM_LOG_COUNT;
866 resp->tr_attrrm.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
867
868 resp->tr_growrtalloc.tr_logres = xfs_calc_growrtalloc_reservation(mp);
869 resp->tr_growrtalloc.tr_logcount = XFS_DEFAULT_PERM_LOG_COUNT;
870 resp->tr_growrtalloc.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
871
872 resp->tr_qm_dqalloc.tr_logres = xfs_calc_qm_dqalloc_reservation(mp);
873 resp->tr_qm_dqalloc.tr_logcount = XFS_WRITE_LOG_COUNT;
874 resp->tr_qm_dqalloc.tr_logflags |= XFS_TRANS_PERM_LOG_RES;
875
876 /*
877 * The following transactions are logged in logical format with
878 * a default log count.
879 */
880 resp->tr_qm_setqlim.tr_logres = xfs_calc_qm_setqlim_reservation(mp);
881 resp->tr_qm_setqlim.tr_logcount = XFS_DEFAULT_LOG_COUNT;
882
883 resp->tr_qm_quotaoff.tr_logres = xfs_calc_qm_quotaoff_reservation(mp);
884 resp->tr_qm_quotaoff.tr_logcount = XFS_DEFAULT_LOG_COUNT;
885
886 resp->tr_qm_equotaoff.tr_logres =
887 xfs_calc_qm_quotaoff_end_reservation(mp);
888 resp->tr_qm_equotaoff.tr_logcount = XFS_DEFAULT_LOG_COUNT;
889
890 resp->tr_sb.tr_logres = xfs_calc_sb_reservation(mp);
891 resp->tr_sb.tr_logcount = XFS_DEFAULT_LOG_COUNT;
892
893 /* The following transaction are logged in logical format */
894 resp->tr_ichange.tr_logres = xfs_calc_ichange_reservation(mp);
895 resp->tr_growdata.tr_logres = xfs_calc_growdata_reservation(mp);
896 resp->tr_fsyncts.tr_logres = xfs_calc_swrite_reservation(mp);
897 resp->tr_writeid.tr_logres = xfs_calc_writeid_reservation(mp);
898 resp->tr_attrsetrt.tr_logres = xfs_calc_attrsetrt_reservation(mp);
899 resp->tr_clearagi.tr_logres = xfs_calc_clear_agi_bucket_reservation(mp);
900 resp->tr_growrtzero.tr_logres = xfs_calc_growrtzero_reservation(mp);
901 resp->tr_growrtfree.tr_logres = xfs_calc_growrtfree_reservation(mp);
902 }
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