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7336d0e6 1// SPDX-License-Identifier: GPL-2.0-only
b3b94faa
DT
2/*
3 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
3a8a9a10 4 * Copyright (C) 2004-2006 Red Hat, Inc. All rights reserved.
b3b94faa
DT
5 */
6
b3b94faa
DT
7#include <linux/spinlock.h>
8#include <linux/completion.h>
9#include <linux/buffer_head.h>
64dd153c 10#include <linux/blkdev.h>
5c676f6d 11#include <linux/gfs2_ondisk.h>
71b86f56 12#include <linux/crc32.h>
3974320c 13#include <linux/iomap.h>
98583b3e 14#include <linux/ktime.h>
b3b94faa
DT
15
16#include "gfs2.h"
5c676f6d 17#include "incore.h"
b3b94faa
DT
18#include "bmap.h"
19#include "glock.h"
20#include "inode.h"
b3b94faa 21#include "meta_io.h"
b3b94faa
DT
22#include "quota.h"
23#include "rgrp.h"
45138990 24#include "log.h"
4c16c36a 25#include "super.h"
b3b94faa 26#include "trans.h"
18ec7d5c 27#include "dir.h"
5c676f6d 28#include "util.h"
64bc06bb 29#include "aops.h"
63997775 30#include "trace_gfs2.h"
b3b94faa
DT
31
32/* This doesn't need to be that large as max 64 bit pointers in a 4k
33 * block is 512, so __u16 is fine for that. It saves stack space to
34 * keep it small.
35 */
36struct metapath {
dbac6710 37 struct buffer_head *mp_bh[GFS2_MAX_META_HEIGHT];
b3b94faa 38 __u16 mp_list[GFS2_MAX_META_HEIGHT];
5f8bd444
BP
39 int mp_fheight; /* find_metapath height */
40 int mp_aheight; /* actual height (lookup height) */
b3b94faa
DT
41};
42
64bc06bb
AG
43static int punch_hole(struct gfs2_inode *ip, u64 offset, u64 length);
44
f25ef0c1 45/**
81cb277e 46 * gfs2_unstuffer_folio - unstuff a stuffed inode into a block cached by a folio
f25ef0c1
SW
47 * @ip: the inode
48 * @dibh: the dinode buffer
49 * @block: the block number that was allocated
81cb277e 50 * @folio: The folio.
f25ef0c1
SW
51 *
52 * Returns: errno
53 */
81cb277e
MWO
54static int gfs2_unstuffer_folio(struct gfs2_inode *ip, struct buffer_head *dibh,
55 u64 block, struct folio *folio)
f25ef0c1 56{
f25ef0c1 57 struct inode *inode = &ip->i_inode;
f25ef0c1 58
81cb277e
MWO
59 if (!folio_test_uptodate(folio)) {
60 void *kaddr = kmap_local_folio(folio, 0);
602c89d2
SW
61 u64 dsize = i_size_read(inode);
62
602c89d2 63 memcpy(kaddr, dibh->b_data + sizeof(struct gfs2_dinode), dsize);
81cb277e
MWO
64 memset(kaddr + dsize, 0, folio_size(folio) - dsize);
65 kunmap_local(kaddr);
f25ef0c1 66
81cb277e 67 folio_mark_uptodate(folio);
f25ef0c1
SW
68 }
69
2164f9b9 70 if (gfs2_is_jdata(ip)) {
81cb277e 71 struct buffer_head *bh = folio_buffers(folio);
f25ef0c1 72
81cb277e 73 if (!bh)
0a88810d 74 bh = create_empty_buffers(folio,
81cb277e 75 BIT(inode->i_blkbits), BIT(BH_Uptodate));
f25ef0c1 76
2164f9b9
CH
77 if (!buffer_mapped(bh))
78 map_bh(bh, inode->i_sb, block);
f25ef0c1 79
2164f9b9 80 set_buffer_uptodate(bh);
350a9b0a 81 gfs2_trans_add_data(ip->i_gl, bh);
2164f9b9 82 } else {
81cb277e 83 folio_mark_dirty(folio);
845802b1
AG
84 gfs2_ordered_add_inode(ip);
85 }
f25ef0c1 86
f25ef0c1
SW
87 return 0;
88}
89
81cb277e 90static int __gfs2_unstuff_inode(struct gfs2_inode *ip, struct folio *folio)
b3b94faa
DT
91{
92 struct buffer_head *bh, *dibh;
48516ced 93 struct gfs2_dinode *di;
cd915493 94 u64 block = 0;
18ec7d5c 95 int isdir = gfs2_is_dir(ip);
b3b94faa
DT
96 int error;
97
b3b94faa
DT
98 error = gfs2_meta_inode_buffer(ip, &dibh);
99 if (error)
7a607a41 100 return error;
907b9bce 101
a2e0f799 102 if (i_size_read(&ip->i_inode)) {
b3b94faa
DT
103 /* Get a free block, fill it with the stuffed data,
104 and write it out to disk */
105
b45e41d7 106 unsigned int n = 1;
4c7b3f7f 107 error = gfs2_alloc_blocks(ip, &block, &n, 0);
09010978
SW
108 if (error)
109 goto out_brelse;
18ec7d5c 110 if (isdir) {
fbb27873 111 gfs2_trans_remove_revoke(GFS2_SB(&ip->i_inode), block, 1);
61e085a8 112 error = gfs2_dir_get_new_buffer(ip, block, &bh);
b3b94faa
DT
113 if (error)
114 goto out_brelse;
48516ced 115 gfs2_buffer_copy_tail(bh, sizeof(struct gfs2_meta_header),
b3b94faa
DT
116 dibh, sizeof(struct gfs2_dinode));
117 brelse(bh);
118 } else {
81cb277e 119 error = gfs2_unstuffer_folio(ip, dibh, block, folio);
b3b94faa
DT
120 if (error)
121 goto out_brelse;
122 }
123 }
124
125 /* Set up the pointer to the new block */
126
350a9b0a 127 gfs2_trans_add_meta(ip->i_gl, dibh);
48516ced 128 di = (struct gfs2_dinode *)dibh->b_data;
b3b94faa
DT
129 gfs2_buffer_clear_tail(dibh, sizeof(struct gfs2_dinode));
130
a2e0f799 131 if (i_size_read(&ip->i_inode)) {
48516ced 132 *(__be64 *)(di + 1) = cpu_to_be64(block);
77658aad
SW
133 gfs2_add_inode_blocks(&ip->i_inode, 1);
134 di->di_blocks = cpu_to_be64(gfs2_get_inode_blocks(&ip->i_inode));
b3b94faa
DT
135 }
136
ecc30c79 137 ip->i_height = 1;
48516ced 138 di->di_height = cpu_to_be16(1);
b3b94faa 139
a91ea69f 140out_brelse:
b3b94faa 141 brelse(dibh);
7a607a41
AG
142 return error;
143}
144
145/**
146 * gfs2_unstuff_dinode - Unstuff a dinode when the data has grown too big
147 * @ip: The GFS2 inode to unstuff
148 *
149 * This routine unstuffs a dinode and returns it to a "normal" state such
150 * that the height can be grown in the traditional way.
151 *
152 * Returns: errno
153 */
154
155int gfs2_unstuff_dinode(struct gfs2_inode *ip)
156{
157 struct inode *inode = &ip->i_inode;
81cb277e 158 struct folio *folio;
7a607a41
AG
159 int error;
160
161 down_write(&ip->i_rw_mutex);
81cb277e
MWO
162 folio = filemap_grab_folio(inode->i_mapping, 0);
163 error = PTR_ERR(folio);
164 if (IS_ERR(folio))
7a607a41 165 goto out;
81cb277e
MWO
166 error = __gfs2_unstuff_inode(ip, folio);
167 folio_unlock(folio);
168 folio_put(folio);
a91ea69f 169out:
b3b94faa 170 up_write(&ip->i_rw_mutex);
b3b94faa
DT
171 return error;
172}
173
b3b94faa
DT
174/**
175 * find_metapath - Find path through the metadata tree
9b8c81d1 176 * @sdp: The superblock
b3b94faa 177 * @block: The disk block to look up
07e23d68 178 * @mp: The metapath to return the result in
9b8c81d1 179 * @height: The pre-calculated height of the metadata tree
b3b94faa
DT
180 *
181 * This routine returns a struct metapath structure that defines a path
182 * through the metadata of inode "ip" to get to block "block".
183 *
184 * Example:
185 * Given: "ip" is a height 3 file, "offset" is 101342453, and this is a
186 * filesystem with a blocksize of 4096.
187 *
188 * find_metapath() would return a struct metapath structure set to:
07e23d68 189 * mp_fheight = 3, mp_list[0] = 0, mp_list[1] = 48, and mp_list[2] = 165.
b3b94faa
DT
190 *
191 * That means that in order to get to the block containing the byte at
192 * offset 101342453, we would load the indirect block pointed to by pointer
193 * 0 in the dinode. We would then load the indirect block pointed to by
194 * pointer 48 in that indirect block. We would then load the data block
195 * pointed to by pointer 165 in that indirect block.
196 *
197 * ----------------------------------------
198 * | Dinode | |
199 * | | 4|
200 * | |0 1 2 3 4 5 9|
201 * | | 6|
202 * ----------------------------------------
203 * |
204 * |
205 * V
206 * ----------------------------------------
207 * | Indirect Block |
208 * | 5|
209 * | 4 4 4 4 4 5 5 1|
210 * |0 5 6 7 8 9 0 1 2|
211 * ----------------------------------------
212 * |
213 * |
214 * V
215 * ----------------------------------------
216 * | Indirect Block |
217 * | 1 1 1 1 1 5|
218 * | 6 6 6 6 6 1|
219 * |0 3 4 5 6 7 2|
220 * ----------------------------------------
221 * |
222 * |
223 * V
224 * ----------------------------------------
225 * | Data block containing offset |
226 * | 101342453 |
227 * | |
228 * | |
229 * ----------------------------------------
230 *
231 */
232
9b8c81d1
SW
233static void find_metapath(const struct gfs2_sbd *sdp, u64 block,
234 struct metapath *mp, unsigned int height)
b3b94faa 235{
b3b94faa
DT
236 unsigned int i;
237
5f8bd444 238 mp->mp_fheight = height;
9b8c81d1 239 for (i = height; i--;)
7eabb77e 240 mp->mp_list[i] = do_div(block, sdp->sd_inptrs);
b3b94faa
DT
241}
242
5af4e7a0 243static inline unsigned int metapath_branch_start(const struct metapath *mp)
9b8c81d1 244{
5af4e7a0
BM
245 if (mp->mp_list[0] == 0)
246 return 2;
247 return 1;
9b8c81d1
SW
248}
249
d552a2b9 250/**
20cdc193 251 * metaptr1 - Return the first possible metadata pointer in a metapath buffer
d552a2b9
BP
252 * @height: The metadata height (0 = dinode)
253 * @mp: The metapath
254 */
255static inline __be64 *metaptr1(unsigned int height, const struct metapath *mp)
256{
257 struct buffer_head *bh = mp->mp_bh[height];
258 if (height == 0)
259 return ((__be64 *)(bh->b_data + sizeof(struct gfs2_dinode)));
260 return ((__be64 *)(bh->b_data + sizeof(struct gfs2_meta_header)));
261}
262
b3b94faa
DT
263/**
264 * metapointer - Return pointer to start of metadata in a buffer
b3b94faa
DT
265 * @height: The metadata height (0 = dinode)
266 * @mp: The metapath
267 *
268 * Return a pointer to the block number of the next height of the metadata
269 * tree given a buffer containing the pointer to the current height of the
270 * metadata tree.
271 */
272
9b8c81d1 273static inline __be64 *metapointer(unsigned int height, const struct metapath *mp)
b3b94faa 274{
d552a2b9
BP
275 __be64 *p = metaptr1(height, mp);
276 return p + mp->mp_list[height];
b3b94faa
DT
277}
278
7841b9f0
AG
279static inline const __be64 *metaend(unsigned int height, const struct metapath *mp)
280{
281 const struct buffer_head *bh = mp->mp_bh[height];
282 return (const __be64 *)(bh->b_data + bh->b_size);
283}
284
285static void clone_metapath(struct metapath *clone, struct metapath *mp)
286{
287 unsigned int hgt;
288
289 *clone = *mp;
290 for (hgt = 0; hgt < mp->mp_aheight; hgt++)
291 get_bh(clone->mp_bh[hgt]);
292}
293
5cf26b1e 294static void gfs2_metapath_ra(struct gfs2_glock *gl, __be64 *start, __be64 *end)
b99b98dc 295{
b99b98dc
SW
296 const __be64 *t;
297
5cf26b1e 298 for (t = start; t < end; t++) {
c3ce5aa9
AG
299 struct buffer_head *rabh;
300
b99b98dc
SW
301 if (!*t)
302 continue;
303
304 rabh = gfs2_getbuf(gl, be64_to_cpu(*t), CREATE);
305 if (trylock_buffer(rabh)) {
306 if (!buffer_uptodate(rabh)) {
307 rabh->b_end_io = end_buffer_read_sync;
1420c4a5
BVA
308 submit_bh(REQ_OP_READ | REQ_RAHEAD | REQ_META |
309 REQ_PRIO, rabh);
b99b98dc
SW
310 continue;
311 }
312 unlock_buffer(rabh);
313 }
314 brelse(rabh);
315 }
316}
317
92099f0c
AG
318static inline struct buffer_head *
319metapath_dibh(struct metapath *mp)
320{
321 return mp->mp_bh[0];
322}
323
e8b43fe0
AG
324static int __fillup_metapath(struct gfs2_inode *ip, struct metapath *mp,
325 unsigned int x, unsigned int h)
d552a2b9 326{
e8b43fe0
AG
327 for (; x < h; x++) {
328 __be64 *ptr = metapointer(x, mp);
329 u64 dblock = be64_to_cpu(*ptr);
330 int ret;
d552a2b9 331
e8b43fe0
AG
332 if (!dblock)
333 break;
6d8da302 334 ret = gfs2_meta_buffer(ip, GFS2_METATYPE_IN, dblock, &mp->mp_bh[x + 1]);
e8b43fe0
AG
335 if (ret)
336 return ret;
337 }
338 mp->mp_aheight = x + 1;
339 return 0;
d552a2b9
BP
340}
341
b3b94faa 342/**
9b8c81d1
SW
343 * lookup_metapath - Walk the metadata tree to a specific point
344 * @ip: The inode
b3b94faa 345 * @mp: The metapath
b3b94faa 346 *
9b8c81d1
SW
347 * Assumes that the inode's buffer has already been looked up and
348 * hooked onto mp->mp_bh[0] and that the metapath has been initialised
349 * by find_metapath().
350 *
351 * If this function encounters part of the tree which has not been
352 * allocated, it returns the current height of the tree at the point
353 * at which it found the unallocated block. Blocks which are found are
354 * added to the mp->mp_bh[] list.
b3b94faa 355 *
e8b43fe0 356 * Returns: error
b3b94faa
DT
357 */
358
9b8c81d1 359static int lookup_metapath(struct gfs2_inode *ip, struct metapath *mp)
11707ea0 360{
e8b43fe0 361 return __fillup_metapath(ip, mp, 0, ip->i_height - 1);
dbac6710
SW
362}
363
d552a2b9
BP
364/**
365 * fillup_metapath - fill up buffers for the metadata path to a specific height
366 * @ip: The inode
367 * @mp: The metapath
368 * @h: The height to which it should be mapped
369 *
370 * Similar to lookup_metapath, but does lookups for a range of heights
371 *
c3ce5aa9 372 * Returns: error or the number of buffers filled
d552a2b9
BP
373 */
374
375static int fillup_metapath(struct gfs2_inode *ip, struct metapath *mp, int h)
376{
e8b43fe0 377 unsigned int x = 0;
c3ce5aa9 378 int ret;
d552a2b9
BP
379
380 if (h) {
381 /* find the first buffer we need to look up. */
e8b43fe0
AG
382 for (x = h - 1; x > 0; x--) {
383 if (mp->mp_bh[x])
384 break;
d552a2b9
BP
385 }
386 }
c3ce5aa9
AG
387 ret = __fillup_metapath(ip, mp, x, h);
388 if (ret)
389 return ret;
390 return mp->mp_aheight - x - 1;
d552a2b9
BP
391}
392
a27a0c9b
AG
393static sector_t metapath_to_block(struct gfs2_sbd *sdp, struct metapath *mp)
394{
395 sector_t factor = 1, block = 0;
396 int hgt;
397
398 for (hgt = mp->mp_fheight - 1; hgt >= 0; hgt--) {
399 if (hgt < mp->mp_aheight)
400 block += mp->mp_list[hgt] * factor;
401 factor *= sdp->sd_inptrs;
402 }
403 return block;
404}
405
64bc06bb 406static void release_metapath(struct metapath *mp)
dbac6710
SW
407{
408 int i;
409
9b8c81d1
SW
410 for (i = 0; i < GFS2_MAX_META_HEIGHT; i++) {
411 if (mp->mp_bh[i] == NULL)
412 break;
413 brelse(mp->mp_bh[i]);
64bc06bb 414 mp->mp_bh[i] = NULL;
9b8c81d1 415 }
11707ea0
SW
416}
417
30cbf189
SW
418/**
419 * gfs2_extent_length - Returns length of an extent of blocks
bcfe9413
AG
420 * @bh: The metadata block
421 * @ptr: Current position in @bh
30cbf189
SW
422 * @eob: Set to 1 if we hit "end of block"
423 *
30cbf189
SW
424 * Returns: The length of the extent (minimum of one block)
425 */
426
b4bf3d5c 427static inline unsigned int gfs2_extent_length(struct buffer_head *bh, __be64 *ptr, int *eob)
30cbf189 428{
bcfe9413 429 const __be64 *end = (__be64 *)(bh->b_data + bh->b_size);
30cbf189
SW
430 const __be64 *first = ptr;
431 u64 d = be64_to_cpu(*ptr);
432
433 *eob = 0;
434 do {
435 ptr++;
436 if (ptr >= end)
437 break;
bcfe9413 438 d++;
30cbf189
SW
439 } while(be64_to_cpu(*ptr) == d);
440 if (ptr >= end)
441 *eob = 1;
bcfe9413 442 return ptr - first;
30cbf189
SW
443}
444
a27a0c9b
AG
445enum walker_status { WALK_STOP, WALK_FOLLOW, WALK_CONTINUE };
446
447/*
448 * gfs2_metadata_walker - walk an indirect block
449 * @mp: Metapath to indirect block
450 * @ptrs: Number of pointers to look at
451 *
452 * When returning WALK_FOLLOW, the walker must update @mp to point at the right
453 * indirect block to follow.
454 */
455typedef enum walker_status (*gfs2_metadata_walker)(struct metapath *mp,
456 unsigned int ptrs);
7841b9f0 457
a27a0c9b
AG
458/*
459 * gfs2_walk_metadata - walk a tree of indirect blocks
460 * @inode: The inode
461 * @mp: Starting point of walk
462 * @max_len: Maximum number of blocks to walk
463 * @walker: Called during the walk
464 *
465 * Returns 1 if the walk was stopped by @walker, 0 if we went past @max_len or
466 * past the end of metadata, and a negative error code otherwise.
467 */
7841b9f0 468
a27a0c9b
AG
469static int gfs2_walk_metadata(struct inode *inode, struct metapath *mp,
470 u64 max_len, gfs2_metadata_walker walker)
7841b9f0 471{
7841b9f0
AG
472 struct gfs2_inode *ip = GFS2_I(inode);
473 struct gfs2_sbd *sdp = GFS2_SB(inode);
7841b9f0
AG
474 u64 factor = 1;
475 unsigned int hgt;
a27a0c9b 476 int ret;
7841b9f0 477
a27a0c9b
AG
478 /*
479 * The walk starts in the lowest allocated indirect block, which may be
480 * before the position indicated by @mp. Adjust @max_len accordingly
481 * to avoid a short walk.
482 */
483 for (hgt = mp->mp_fheight - 1; hgt >= mp->mp_aheight; hgt--) {
484 max_len += mp->mp_list[hgt] * factor;
485 mp->mp_list[hgt] = 0;
7841b9f0 486 factor *= sdp->sd_inptrs;
a27a0c9b 487 }
7841b9f0
AG
488
489 for (;;) {
a27a0c9b
AG
490 u16 start = mp->mp_list[hgt];
491 enum walker_status status;
492 unsigned int ptrs;
493 u64 len;
7841b9f0
AG
494
495 /* Walk indirect block. */
a27a0c9b
AG
496 ptrs = (hgt >= 1 ? sdp->sd_inptrs : sdp->sd_diptrs) - start;
497 len = ptrs * factor;
498 if (len > max_len)
499 ptrs = DIV_ROUND_UP_ULL(max_len, factor);
500 status = walker(mp, ptrs);
501 switch (status) {
502 case WALK_STOP:
503 return 1;
504 case WALK_FOLLOW:
505 BUG_ON(mp->mp_aheight == mp->mp_fheight);
506 ptrs = mp->mp_list[hgt] - start;
507 len = ptrs * factor;
7841b9f0 508 break;
a27a0c9b 509 case WALK_CONTINUE:
7841b9f0 510 break;
7841b9f0 511 }
a27a0c9b
AG
512 if (len >= max_len)
513 break;
514 max_len -= len;
515 if (status == WALK_FOLLOW)
516 goto fill_up_metapath;
7841b9f0
AG
517
518lower_metapath:
519 /* Decrease height of metapath. */
7841b9f0
AG
520 brelse(mp->mp_bh[hgt]);
521 mp->mp_bh[hgt] = NULL;
a27a0c9b 522 mp->mp_list[hgt] = 0;
7841b9f0
AG
523 if (!hgt)
524 break;
525 hgt--;
526 factor *= sdp->sd_inptrs;
527
528 /* Advance in metadata tree. */
529 (mp->mp_list[hgt])++;
566a2ab3
AG
530 if (hgt) {
531 if (mp->mp_list[hgt] >= sdp->sd_inptrs)
532 goto lower_metapath;
533 } else {
534 if (mp->mp_list[hgt] >= sdp->sd_diptrs)
7841b9f0 535 break;
7841b9f0
AG
536 }
537
538fill_up_metapath:
539 /* Increase height of metapath. */
7841b9f0
AG
540 ret = fillup_metapath(ip, mp, ip->i_height - 1);
541 if (ret < 0)
a27a0c9b 542 return ret;
7841b9f0
AG
543 hgt += ret;
544 for (; ret; ret--)
545 do_div(factor, sdp->sd_inptrs);
546 mp->mp_aheight = hgt + 1;
547 }
a27a0c9b 548 return 0;
7841b9f0
AG
549}
550
a27a0c9b
AG
551static enum walker_status gfs2_hole_walker(struct metapath *mp,
552 unsigned int ptrs)
7841b9f0 553{
a27a0c9b
AG
554 const __be64 *start, *ptr, *end;
555 unsigned int hgt;
556
557 hgt = mp->mp_aheight - 1;
558 start = metapointer(hgt, mp);
559 end = start + ptrs;
7841b9f0
AG
560
561 for (ptr = start; ptr < end; ptr++) {
562 if (*ptr) {
a27a0c9b 563 mp->mp_list[hgt] += ptr - start;
7841b9f0
AG
564 if (mp->mp_aheight == mp->mp_fheight)
565 return WALK_STOP;
a27a0c9b 566 return WALK_FOLLOW;
7841b9f0
AG
567 }
568 }
a27a0c9b 569 return WALK_CONTINUE;
7841b9f0
AG
570}
571
572/**
573 * gfs2_hole_size - figure out the size of a hole
574 * @inode: The inode
575 * @lblock: The logical starting block number
576 * @len: How far to look (in blocks)
577 * @mp: The metapath at lblock
578 * @iomap: The iomap to store the hole size in
579 *
580 * This function modifies @mp.
581 *
582 * Returns: errno on error
583 */
584static int gfs2_hole_size(struct inode *inode, sector_t lblock, u64 len,
585 struct metapath *mp, struct iomap *iomap)
586{
a27a0c9b
AG
587 struct metapath clone;
588 u64 hole_size;
589 int ret;
590
591 clone_metapath(&clone, mp);
592 ret = gfs2_walk_metadata(inode, &clone, len, gfs2_hole_walker);
593 if (ret < 0)
594 goto out;
7841b9f0 595
a27a0c9b
AG
596 if (ret == 1)
597 hole_size = metapath_to_block(GFS2_SB(inode), &clone) - lblock;
598 else
599 hole_size = len;
600 iomap->length = hole_size << inode->i_blkbits;
601 ret = 0;
602
603out:
604 release_metapath(&clone);
7841b9f0
AG
605 return ret;
606}
607
b2963932
BP
608static inline void gfs2_indirect_init(struct metapath *mp,
609 struct gfs2_glock *gl, unsigned int i,
610 unsigned offset, u64 bn)
9b8c81d1
SW
611{
612 __be64 *ptr = (__be64 *)(mp->mp_bh[i - 1]->b_data +
613 ((i > 1) ? sizeof(struct gfs2_meta_header) :
614 sizeof(struct gfs2_dinode)));
615 BUG_ON(i < 1);
616 BUG_ON(mp->mp_bh[i] != NULL);
617 mp->mp_bh[i] = gfs2_meta_new(gl, bn);
350a9b0a 618 gfs2_trans_add_meta(gl, mp->mp_bh[i]);
9b8c81d1
SW
619 gfs2_metatype_set(mp->mp_bh[i], GFS2_METATYPE_IN, GFS2_FORMAT_IN);
620 gfs2_buffer_clear_tail(mp->mp_bh[i], sizeof(struct gfs2_meta_header));
621 ptr += offset;
622 *ptr = cpu_to_be64(bn);
9b8c81d1
SW
623}
624
625enum alloc_state {
626 ALLOC_DATA = 0,
627 ALLOC_GROW_DEPTH = 1,
628 ALLOC_GROW_HEIGHT = 2,
629 /* ALLOC_UNSTUFF = 3, TBD and rather complicated */
630};
631
632/**
54992257 633 * __gfs2_iomap_alloc - Build a metadata tree of the requested height
9b8c81d1 634 * @inode: The GFS2 inode
628e366d 635 * @iomap: The iomap structure
5f8bd444 636 * @mp: The metapath, with proper height information calculated
9b8c81d1
SW
637 *
638 * In this routine we may have to alloc:
639 * i) Indirect blocks to grow the metadata tree height
640 * ii) Indirect blocks to fill in lower part of the metadata tree
641 * iii) Data blocks
642 *
54992257 643 * This function is called after __gfs2_iomap_get, which works out the
64bc06bb
AG
644 * total number of blocks which we need via gfs2_alloc_size.
645 *
646 * We then do the actual allocation asking for an extent at a time (if
647 * enough contiguous free blocks are available, there will only be one
648 * allocation request per call) and uses the state machine to initialise
649 * the blocks in order.
9b8c81d1 650 *
628e366d
AG
651 * Right now, this function will allocate at most one indirect block
652 * worth of data -- with a default block size of 4K, that's slightly
653 * less than 2M. If this limitation is ever removed to allow huge
654 * allocations, we would probably still want to limit the iomap size we
655 * return to avoid stalling other tasks during huge writes; the next
656 * iomap iteration would then find the blocks already allocated.
657 *
9b8c81d1
SW
658 * Returns: errno on error
659 */
660
54992257
AG
661static int __gfs2_iomap_alloc(struct inode *inode, struct iomap *iomap,
662 struct metapath *mp)
9b8c81d1
SW
663{
664 struct gfs2_inode *ip = GFS2_I(inode);
665 struct gfs2_sbd *sdp = GFS2_SB(inode);
92099f0c 666 struct buffer_head *dibh = metapath_dibh(mp);
5f8bd444 667 u64 bn;
5af4e7a0 668 unsigned n, i, blks, alloced = 0, iblks = 0, branch_start = 0;
64bc06bb 669 size_t dblks = iomap->length >> inode->i_blkbits;
5f8bd444 670 const unsigned end_of_metadata = mp->mp_fheight - 1;
628e366d 671 int ret;
9b8c81d1
SW
672 enum alloc_state state;
673 __be64 *ptr;
674 __be64 zero_bn = 0;
675
5f8bd444 676 BUG_ON(mp->mp_aheight < 1);
9b8c81d1 677 BUG_ON(dibh == NULL);
64bc06bb 678 BUG_ON(dblks < 1);
9b8c81d1 679
350a9b0a 680 gfs2_trans_add_meta(ip->i_gl, dibh);
9b8c81d1 681
628e366d
AG
682 down_write(&ip->i_rw_mutex);
683
5f8bd444 684 if (mp->mp_fheight == mp->mp_aheight) {
64bc06bb 685 /* Bottom indirect block exists */
9b8c81d1
SW
686 state = ALLOC_DATA;
687 } else {
688 /* Need to allocate indirect blocks */
5f8bd444 689 if (mp->mp_fheight == ip->i_height) {
9b8c81d1 690 /* Writing into existing tree, extend tree down */
5f8bd444 691 iblks = mp->mp_fheight - mp->mp_aheight;
9b8c81d1
SW
692 state = ALLOC_GROW_DEPTH;
693 } else {
694 /* Building up tree height */
695 state = ALLOC_GROW_HEIGHT;
5f8bd444 696 iblks = mp->mp_fheight - ip->i_height;
5af4e7a0 697 branch_start = metapath_branch_start(mp);
5f8bd444 698 iblks += (mp->mp_fheight - branch_start);
9b8c81d1
SW
699 }
700 }
701
702 /* start of the second part of the function (state machine) */
703
3974320c 704 blks = dblks + iblks;
5f8bd444 705 i = mp->mp_aheight;
9b8c81d1
SW
706 do {
707 n = blks - alloced;
4c7b3f7f 708 ret = gfs2_alloc_blocks(ip, &bn, &n, 0);
628e366d
AG
709 if (ret)
710 goto out;
9b8c81d1
SW
711 alloced += n;
712 if (state != ALLOC_DATA || gfs2_is_jdata(ip))
fbb27873 713 gfs2_trans_remove_revoke(sdp, bn, n);
9b8c81d1
SW
714 switch (state) {
715 /* Growing height of tree */
716 case ALLOC_GROW_HEIGHT:
717 if (i == 1) {
718 ptr = (__be64 *)(dibh->b_data +
719 sizeof(struct gfs2_dinode));
720 zero_bn = *ptr;
721 }
5f8bd444
BP
722 for (; i - 1 < mp->mp_fheight - ip->i_height && n > 0;
723 i++, n--)
9b8c81d1 724 gfs2_indirect_init(mp, ip->i_gl, i, 0, bn++);
5f8bd444 725 if (i - 1 == mp->mp_fheight - ip->i_height) {
9b8c81d1
SW
726 i--;
727 gfs2_buffer_copy_tail(mp->mp_bh[i],
728 sizeof(struct gfs2_meta_header),
729 dibh, sizeof(struct gfs2_dinode));
730 gfs2_buffer_clear_tail(dibh,
731 sizeof(struct gfs2_dinode) +
732 sizeof(__be64));
733 ptr = (__be64 *)(mp->mp_bh[i]->b_data +
734 sizeof(struct gfs2_meta_header));
735 *ptr = zero_bn;
736 state = ALLOC_GROW_DEPTH;
5f8bd444 737 for(i = branch_start; i < mp->mp_fheight; i++) {
9b8c81d1
SW
738 if (mp->mp_bh[i] == NULL)
739 break;
740 brelse(mp->mp_bh[i]);
741 mp->mp_bh[i] = NULL;
742 }
5af4e7a0 743 i = branch_start;
9b8c81d1
SW
744 }
745 if (n == 0)
746 break;
df561f66 747 fallthrough; /* To branching from existing tree */
9b8c81d1 748 case ALLOC_GROW_DEPTH:
5f8bd444 749 if (i > 1 && i < mp->mp_fheight)
350a9b0a 750 gfs2_trans_add_meta(ip->i_gl, mp->mp_bh[i-1]);
5f8bd444 751 for (; i < mp->mp_fheight && n > 0; i++, n--)
9b8c81d1
SW
752 gfs2_indirect_init(mp, ip->i_gl, i,
753 mp->mp_list[i-1], bn++);
5f8bd444 754 if (i == mp->mp_fheight)
9b8c81d1
SW
755 state = ALLOC_DATA;
756 if (n == 0)
757 break;
df561f66 758 fallthrough; /* To tree complete, adding data blocks */
9b8c81d1 759 case ALLOC_DATA:
3974320c 760 BUG_ON(n > dblks);
9b8c81d1 761 BUG_ON(mp->mp_bh[end_of_metadata] == NULL);
350a9b0a 762 gfs2_trans_add_meta(ip->i_gl, mp->mp_bh[end_of_metadata]);
3974320c 763 dblks = n;
9b8c81d1 764 ptr = metapointer(end_of_metadata, mp);
3974320c 765 iomap->addr = bn << inode->i_blkbits;
628e366d 766 iomap->flags |= IOMAP_F_MERGED | IOMAP_F_NEW;
9b8c81d1
SW
767 while (n-- > 0)
768 *ptr++ = cpu_to_be64(bn++);
769 break;
770 }
3974320c 771 } while (iomap->addr == IOMAP_NULL_ADDR);
9b8c81d1 772
d505a96a 773 iomap->type = IOMAP_MAPPED;
3974320c 774 iomap->length = (u64)dblks << inode->i_blkbits;
5f8bd444 775 ip->i_height = mp->mp_fheight;
9b8c81d1 776 gfs2_add_inode_blocks(&ip->i_inode, alloced);
628e366d
AG
777 gfs2_dinode_out(ip, dibh->b_data);
778out:
779 up_write(&ip->i_rw_mutex);
780 return ret;
9b8c81d1
SW
781}
782
7ee66c03
CH
783#define IOMAP_F_GFS2_BOUNDARY IOMAP_F_PRIVATE
784
64bc06bb
AG
785/**
786 * gfs2_alloc_size - Compute the maximum allocation size
787 * @inode: The inode
788 * @mp: The metapath
789 * @size: Requested size in blocks
790 *
791 * Compute the maximum size of the next allocation at @mp.
792 *
793 * Returns: size in blocks
794 */
795static u64 gfs2_alloc_size(struct inode *inode, struct metapath *mp, u64 size)
3974320c
BP
796{
797 struct gfs2_inode *ip = GFS2_I(inode);
64bc06bb
AG
798 struct gfs2_sbd *sdp = GFS2_SB(inode);
799 const __be64 *first, *ptr, *end;
800
801 /*
802 * For writes to stuffed files, this function is called twice via
54992257 803 * __gfs2_iomap_get, before and after unstuffing. The size we return the
64bc06bb
AG
804 * first time needs to be large enough to get the reservation and
805 * allocation sizes right. The size we return the second time must
54992257 806 * be exact or else __gfs2_iomap_alloc won't do the right thing.
64bc06bb
AG
807 */
808
809 if (gfs2_is_stuffed(ip) || mp->mp_fheight != mp->mp_aheight) {
810 unsigned int maxsize = mp->mp_fheight > 1 ?
811 sdp->sd_inptrs : sdp->sd_diptrs;
812 maxsize -= mp->mp_list[mp->mp_fheight - 1];
813 if (size > maxsize)
814 size = maxsize;
815 return size;
816 }
3974320c 817
64bc06bb
AG
818 first = metapointer(ip->i_height - 1, mp);
819 end = metaend(ip->i_height - 1, mp);
820 if (end - first > size)
821 end = first + size;
822 for (ptr = first; ptr < end; ptr++) {
823 if (*ptr)
824 break;
825 }
826 return ptr - first;
3974320c
BP
827}
828
829/**
54992257 830 * __gfs2_iomap_get - Map blocks from an inode to disk blocks
3974320c
BP
831 * @inode: The inode
832 * @pos: Starting position in bytes
833 * @length: Length to map, in bytes
834 * @flags: iomap flags
835 * @iomap: The iomap structure
628e366d 836 * @mp: The metapath
3974320c
BP
837 *
838 * Returns: errno
839 */
54992257
AG
840static int __gfs2_iomap_get(struct inode *inode, loff_t pos, loff_t length,
841 unsigned flags, struct iomap *iomap,
842 struct metapath *mp)
b3b94faa 843{
feaa7bba
SW
844 struct gfs2_inode *ip = GFS2_I(inode);
845 struct gfs2_sbd *sdp = GFS2_SB(inode);
d505a96a 846 loff_t size = i_size_read(inode);
9b8c81d1 847 __be64 *ptr;
3974320c 848 sector_t lblock;
628e366d
AG
849 sector_t lblock_stop;
850 int ret;
9b8c81d1 851 int eob;
628e366d 852 u64 len;
d505a96a 853 struct buffer_head *dibh = NULL, *bh;
9b8c81d1 854 u8 height;
7276b3b0 855
628e366d
AG
856 if (!length)
857 return -EINVAL;
b3b94faa 858
d505a96a
AG
859 down_read(&ip->i_rw_mutex);
860
861 ret = gfs2_meta_inode_buffer(ip, &dibh);
862 if (ret)
863 goto unlock;
c26b5aa8 864 mp->mp_bh[0] = dibh;
d505a96a 865
49edd5bf 866 if (gfs2_is_stuffed(ip)) {
d505a96a
AG
867 if (flags & IOMAP_WRITE) {
868 loff_t max_size = gfs2_max_stuffed_size(ip);
869
870 if (pos + length > max_size)
871 goto unstuff;
872 iomap->length = max_size;
873 } else {
874 if (pos >= size) {
875 if (flags & IOMAP_REPORT) {
876 ret = -ENOENT;
877 goto unlock;
878 } else {
d505a96a
AG
879 iomap->offset = pos;
880 iomap->length = length;
566a2ab3 881 goto hole_found;
d505a96a
AG
882 }
883 }
884 iomap->length = size;
49edd5bf 885 }
d505a96a
AG
886 iomap->addr = (ip->i_no_addr << inode->i_blkbits) +
887 sizeof(struct gfs2_dinode);
888 iomap->type = IOMAP_INLINE;
64bc06bb 889 iomap->inline_data = dibh->b_data + sizeof(struct gfs2_dinode);
d505a96a 890 goto out;
3974320c 891 }
d505a96a
AG
892
893unstuff:
3974320c 894 lblock = pos >> inode->i_blkbits;
3974320c 895 iomap->offset = lblock << inode->i_blkbits;
628e366d
AG
896 lblock_stop = (pos + length - 1) >> inode->i_blkbits;
897 len = lblock_stop - lblock + 1;
d505a96a 898 iomap->length = len << inode->i_blkbits;
628e366d 899
9b8c81d1 900 height = ip->i_height;
9a38662b 901 while ((lblock + 1) * sdp->sd_sb.sb_bsize > sdp->sd_heightsize[height])
9b8c81d1 902 height++;
628e366d 903 find_metapath(sdp, lblock, mp, height);
9b8c81d1
SW
904 if (height > ip->i_height || gfs2_is_stuffed(ip))
905 goto do_alloc;
3974320c 906
628e366d 907 ret = lookup_metapath(ip, mp);
e8b43fe0 908 if (ret)
628e366d 909 goto unlock;
3974320c 910
628e366d 911 if (mp->mp_aheight != ip->i_height)
9b8c81d1 912 goto do_alloc;
3974320c 913
628e366d 914 ptr = metapointer(ip->i_height - 1, mp);
9b8c81d1
SW
915 if (*ptr == 0)
916 goto do_alloc;
3974320c 917
628e366d 918 bh = mp->mp_bh[ip->i_height - 1];
b4bf3d5c 919 len = gfs2_extent_length(bh, ptr, &eob);
3974320c 920
628e366d
AG
921 iomap->addr = be64_to_cpu(*ptr) << inode->i_blkbits;
922 iomap->length = len << inode->i_blkbits;
923 iomap->type = IOMAP_MAPPED;
0ed91eca 924 iomap->flags |= IOMAP_F_MERGED;
9b8c81d1 925 if (eob)
7ee66c03 926 iomap->flags |= IOMAP_F_GFS2_BOUNDARY;
3974320c 927
3974320c 928out:
628e366d
AG
929 iomap->bdev = inode->i_sb->s_bdev;
930unlock:
931 up_read(&ip->i_rw_mutex);
9b8c81d1 932 return ret;
30cbf189 933
9b8c81d1 934do_alloc:
628e366d 935 if (flags & IOMAP_REPORT) {
49edd5bf 936 if (pos >= size)
3974320c 937 ret = -ENOENT;
628e366d
AG
938 else if (height == ip->i_height)
939 ret = gfs2_hole_size(inode, lblock, len, mp, iomap);
49edd5bf 940 else
f3506eee 941 iomap->length = size - iomap->offset;
64bc06bb
AG
942 } else if (flags & IOMAP_WRITE) {
943 u64 alloc_size;
944
967bcc91
AG
945 if (flags & IOMAP_DIRECT)
946 goto out; /* (see gfs2_file_direct_write) */
947
64bc06bb
AG
948 len = gfs2_alloc_size(inode, mp, len);
949 alloc_size = len << inode->i_blkbits;
950 if (alloc_size < iomap->length)
951 iomap->length = alloc_size;
952 } else {
d505a96a
AG
953 if (pos < size && height == ip->i_height)
954 ret = gfs2_hole_size(inode, lblock, len, mp, iomap);
b3b94faa 955 }
566a2ab3
AG
956hole_found:
957 iomap->addr = IOMAP_NULL_ADDR;
958 iomap->type = IOMAP_HOLE;
628e366d 959 goto out;
3974320c
BP
960}
961
9060bc4d 962static struct folio *
c82abc23 963gfs2_iomap_get_folio(struct iomap_iter *iter, loff_t pos, unsigned len)
d0a22a4b 964{
9060bc4d 965 struct inode *inode = iter->inode;
2741b672 966 unsigned int blockmask = i_blocksize(inode) - 1;
d0a22a4b 967 struct gfs2_sbd *sdp = GFS2_SB(inode);
2741b672 968 unsigned int blocks;
9060bc4d
AG
969 struct folio *folio;
970 int status;
d0a22a4b 971
2741b672 972 blocks = ((pos & blockmask) + len + blockmask) >> inode->i_blkbits;
9060bc4d
AG
973 status = gfs2_trans_begin(sdp, RES_DINODE + blocks, 0);
974 if (status)
975 return ERR_PTR(status);
976
d6bb59a9 977 folio = iomap_get_folio(iter, pos, len);
9060bc4d
AG
978 if (IS_ERR(folio))
979 gfs2_trans_end(sdp);
980 return folio;
d0a22a4b
AG
981}
982
40405ddd 983static void gfs2_iomap_put_folio(struct inode *inode, loff_t pos,
80baab88 984 unsigned copied, struct folio *folio)
64bc06bb 985{
706cb549 986 struct gfs2_trans *tr = current->journal_info;
64bc06bb 987 struct gfs2_inode *ip = GFS2_I(inode);
d0a22a4b 988 struct gfs2_sbd *sdp = GFS2_SB(inode);
64bc06bb 989
80baab88 990 if (!gfs2_is_stuffed(ip))
c1b0c3cf
AG
991 gfs2_trans_add_databufs(ip, folio, offset_in_folio(folio, pos),
992 copied);
80baab88
AG
993
994 folio_unlock(folio);
995 folio_put(folio);
706cb549
AG
996
997 if (tr->tr_num_buf_new)
998 __mark_inode_dirty(inode, I_DIRTY_DATASYNC);
999
d0a22a4b 1000 gfs2_trans_end(sdp);
64bc06bb
AG
1001}
1002
471859f5 1003static const struct iomap_folio_ops gfs2_iomap_folio_ops = {
c82abc23 1004 .get_folio = gfs2_iomap_get_folio,
40405ddd 1005 .put_folio = gfs2_iomap_put_folio,
df0db3ec
AG
1006};
1007
64bc06bb
AG
1008static int gfs2_iomap_begin_write(struct inode *inode, loff_t pos,
1009 loff_t length, unsigned flags,
c26b5aa8
AG
1010 struct iomap *iomap,
1011 struct metapath *mp)
64bc06bb 1012{
64bc06bb
AG
1013 struct gfs2_inode *ip = GFS2_I(inode);
1014 struct gfs2_sbd *sdp = GFS2_SB(inode);
34aad20b 1015 bool unstuff;
64bc06bb
AG
1016 int ret;
1017
64bc06bb
AG
1018 unstuff = gfs2_is_stuffed(ip) &&
1019 pos + length > gfs2_max_stuffed_size(ip);
1020
34aad20b
AG
1021 if (unstuff || iomap->type == IOMAP_HOLE) {
1022 unsigned int data_blocks, ind_blocks;
1023 struct gfs2_alloc_parms ap = {};
1024 unsigned int rblocks;
1025 struct gfs2_trans *tr;
64bc06bb 1026
64bc06bb
AG
1027 gfs2_write_calc_reserv(ip, iomap->length, &data_blocks,
1028 &ind_blocks);
34aad20b 1029 ap.target = data_blocks + ind_blocks;
64bc06bb
AG
1030 ret = gfs2_quota_lock_check(ip, &ap);
1031 if (ret)
34aad20b 1032 return ret;
64bc06bb
AG
1033
1034 ret = gfs2_inplace_reserve(ip, &ap);
1035 if (ret)
1036 goto out_qunlock;
64bc06bb 1037
34aad20b
AG
1038 rblocks = RES_DINODE + ind_blocks;
1039 if (gfs2_is_jdata(ip))
1040 rblocks += data_blocks;
1041 if (ind_blocks || data_blocks)
1042 rblocks += RES_STATFS + RES_QUOTA;
1043 if (inode == sdp->sd_rindex)
1044 rblocks += 2 * RES_STATFS;
64bc06bb
AG
1045 rblocks += gfs2_rg_blocks(ip, data_blocks + ind_blocks);
1046
d0a22a4b
AG
1047 ret = gfs2_trans_begin(sdp, rblocks,
1048 iomap->length >> inode->i_blkbits);
64bc06bb 1049 if (ret)
d0a22a4b
AG
1050 goto out_trans_fail;
1051
1052 if (unstuff) {
7a607a41 1053 ret = gfs2_unstuff_dinode(ip);
d0a22a4b
AG
1054 if (ret)
1055 goto out_trans_end;
1056 release_metapath(mp);
54992257
AG
1057 ret = __gfs2_iomap_get(inode, iomap->offset,
1058 iomap->length, flags, iomap, mp);
d0a22a4b
AG
1059 if (ret)
1060 goto out_trans_end;
1061 }
64bc06bb 1062
d0a22a4b 1063 if (iomap->type == IOMAP_HOLE) {
54992257 1064 ret = __gfs2_iomap_alloc(inode, iomap, mp);
d0a22a4b
AG
1065 if (ret) {
1066 gfs2_trans_end(sdp);
1067 gfs2_inplace_release(ip);
1068 punch_hole(ip, iomap->offset, iomap->length);
1069 goto out_qunlock;
1070 }
64bc06bb 1071 }
d0a22a4b
AG
1072
1073 tr = current->journal_info;
1074 if (tr->tr_num_buf_new)
1075 __mark_inode_dirty(inode, I_DIRTY_DATASYNC);
d0a22a4b
AG
1076
1077 gfs2_trans_end(sdp);
64bc06bb 1078 }
d0a22a4b
AG
1079
1080 if (gfs2_is_stuffed(ip) || gfs2_is_jdata(ip))
471859f5 1081 iomap->folio_ops = &gfs2_iomap_folio_ops;
64bc06bb
AG
1082 return 0;
1083
1084out_trans_end:
1085 gfs2_trans_end(sdp);
1086out_trans_fail:
34aad20b 1087 gfs2_inplace_release(ip);
64bc06bb 1088out_qunlock:
34aad20b 1089 gfs2_quota_unlock(ip);
64bc06bb
AG
1090 return ret;
1091}
1092
628e366d 1093static int gfs2_iomap_begin(struct inode *inode, loff_t pos, loff_t length,
c039b997
GR
1094 unsigned flags, struct iomap *iomap,
1095 struct iomap *srcmap)
628e366d
AG
1096{
1097 struct gfs2_inode *ip = GFS2_I(inode);
1098 struct metapath mp = { .mp_aheight = 1, };
1099 int ret;
1100
2164f9b9
CH
1101 if (gfs2_is_jdata(ip))
1102 iomap->flags |= IOMAP_F_BUFFER_HEAD;
0ed91eca 1103
628e366d 1104 trace_gfs2_iomap_start(ip, pos, length, flags);
54992257 1105 ret = __gfs2_iomap_get(inode, pos, length, flags, iomap, &mp);
34aad20b
AG
1106 if (ret)
1107 goto out_unlock;
1108
72d36d05 1109 switch(flags & (IOMAP_WRITE | IOMAP_ZERO)) {
34aad20b
AG
1110 case IOMAP_WRITE:
1111 if (flags & IOMAP_DIRECT) {
1112 /*
1113 * Silently fall back to buffered I/O for stuffed files
1114 * or if we've got a hole (see gfs2_file_direct_write).
1115 */
1116 if (iomap->type != IOMAP_MAPPED)
1117 ret = -ENOTBLK;
1118 goto out_unlock;
1119 }
1120 break;
72d36d05
AG
1121 case IOMAP_ZERO:
1122 if (iomap->type == IOMAP_HOLE)
1123 goto out_unlock;
1124 break;
34aad20b
AG
1125 default:
1126 goto out_unlock;
1127 }
1128
1129 ret = gfs2_iomap_begin_write(inode, pos, length, flags, iomap, &mp);
1130
1131out_unlock:
c26b5aa8 1132 release_metapath(&mp);
628e366d
AG
1133 trace_gfs2_iomap_end(ip, iomap, ret);
1134 return ret;
1135}
1136
64bc06bb
AG
1137static int gfs2_iomap_end(struct inode *inode, loff_t pos, loff_t length,
1138 ssize_t written, unsigned flags, struct iomap *iomap)
1139{
1140 struct gfs2_inode *ip = GFS2_I(inode);
1141 struct gfs2_sbd *sdp = GFS2_SB(inode);
64bc06bb 1142
72d36d05 1143 switch (flags & (IOMAP_WRITE | IOMAP_ZERO)) {
34aad20b
AG
1144 case IOMAP_WRITE:
1145 if (flags & IOMAP_DIRECT)
1146 return 0;
1147 break;
72d36d05
AG
1148 case IOMAP_ZERO:
1149 if (iomap->type == IOMAP_HOLE)
1150 return 0;
1151 break;
34aad20b
AG
1152 default:
1153 return 0;
1154 }
64bc06bb 1155
d0a22a4b 1156 if (!gfs2_is_stuffed(ip))
64bc06bb
AG
1157 gfs2_ordered_add_inode(ip);
1158
d0a22a4b 1159 if (inode == sdp->sd_rindex)
64bc06bb 1160 adjust_fs_space(inode);
64bc06bb 1161
64bc06bb
AG
1162 gfs2_inplace_release(ip);
1163
7009fa9c
AG
1164 if (ip->i_qadata && ip->i_qadata->qa_qd_num)
1165 gfs2_quota_unlock(ip);
1166
64bc06bb
AG
1167 if (length != written && (iomap->flags & IOMAP_F_NEW)) {
1168 /* Deallocate blocks that were just allocated. */
d031a886
AG
1169 loff_t hstart = round_up(pos + written, i_blocksize(inode));
1170 loff_t hend = iomap->offset + iomap->length;
64bc06bb 1171
d031a886
AG
1172 if (hstart < hend) {
1173 truncate_pagecache_range(inode, hstart, hend - 1);
1174 punch_hole(ip, hstart, hend - hstart);
64bc06bb
AG
1175 }
1176 }
1177
706cb549 1178 if (unlikely(!written))
b924bdab 1179 return 0;
706cb549 1180
8d3e72a1
AG
1181 if (iomap->flags & IOMAP_F_SIZE_CHANGED)
1182 mark_inode_dirty(inode);
706cb549 1183 set_bit(GLF_DIRTY, &ip->i_gl->gl_flags);
64bc06bb
AG
1184 return 0;
1185}
1186
628e366d
AG
1187const struct iomap_ops gfs2_iomap_ops = {
1188 .iomap_begin = gfs2_iomap_begin,
64bc06bb 1189 .iomap_end = gfs2_iomap_end,
628e366d
AG
1190};
1191
3974320c 1192/**
d39d18e0 1193 * gfs2_block_map - Map one or more blocks of an inode to a disk block
3974320c
BP
1194 * @inode: The inode
1195 * @lblock: The logical block number
1196 * @bh_map: The bh to be mapped
1197 * @create: True if its ok to alloc blocks to satify the request
1198 *
d39d18e0
AG
1199 * The size of the requested mapping is defined in bh_map->b_size.
1200 *
1201 * Clears buffer_mapped(bh_map) and leaves bh_map->b_size unchanged
1202 * when @lblock is not mapped. Sets buffer_mapped(bh_map) and
1203 * bh_map->b_size to indicate the size of the mapping when @lblock and
1204 * successive blocks are mapped, up to the requested size.
1205 *
1206 * Sets buffer_boundary() if a read of metadata will be required
1207 * before the next block can be mapped. Sets buffer_new() if new
1208 * blocks were allocated.
3974320c
BP
1209 *
1210 * Returns: errno
1211 */
1212
1213int gfs2_block_map(struct inode *inode, sector_t lblock,
1214 struct buffer_head *bh_map, int create)
1215{
1216 struct gfs2_inode *ip = GFS2_I(inode);
628e366d
AG
1217 loff_t pos = (loff_t)lblock << inode->i_blkbits;
1218 loff_t length = bh_map->b_size;
628e366d
AG
1219 struct iomap iomap = { };
1220 int ret;
3974320c
BP
1221
1222 clear_buffer_mapped(bh_map);
1223 clear_buffer_new(bh_map);
1224 clear_buffer_boundary(bh_map);
1225 trace_gfs2_bmap(ip, bh_map, lblock, create, 1);
1226
54992257
AG
1227 if (!create)
1228 ret = gfs2_iomap_get(inode, pos, length, &iomap);
1229 else
1230 ret = gfs2_iomap_alloc(inode, pos, length, &iomap);
628e366d
AG
1231 if (ret)
1232 goto out;
3974320c
BP
1233
1234 if (iomap.length > bh_map->b_size) {
1235 iomap.length = bh_map->b_size;
7ee66c03 1236 iomap.flags &= ~IOMAP_F_GFS2_BOUNDARY;
5f8bd444 1237 }
3974320c
BP
1238 if (iomap.addr != IOMAP_NULL_ADDR)
1239 map_bh(bh_map, inode->i_sb, iomap.addr >> inode->i_blkbits);
1240 bh_map->b_size = iomap.length;
7ee66c03 1241 if (iomap.flags & IOMAP_F_GFS2_BOUNDARY)
3974320c
BP
1242 set_buffer_boundary(bh_map);
1243 if (iomap.flags & IOMAP_F_NEW)
1244 set_buffer_new(bh_map);
1245
1246out:
1247 trace_gfs2_bmap(ip, bh_map, lblock, create, ret);
1248 return ret;
fd88de56
SW
1249}
1250
9153dac1
AG
1251int gfs2_get_extent(struct inode *inode, u64 lblock, u64 *dblock,
1252 unsigned int *extlen)
fd88de56 1253{
9153dac1
AG
1254 unsigned int blkbits = inode->i_blkbits;
1255 struct iomap iomap = { };
1256 unsigned int len;
7a6bbacb 1257 int ret;
9153dac1
AG
1258
1259 ret = gfs2_iomap_get(inode, lblock << blkbits, *extlen << blkbits,
1260 &iomap);
1261 if (ret)
1262 return ret;
1263 if (iomap.type != IOMAP_MAPPED)
1264 return -EIO;
1265 *dblock = iomap.addr >> blkbits;
1266 len = iomap.length >> blkbits;
1267 if (len < *extlen)
1268 *extlen = len;
1269 return 0;
1270}
1271
1272int gfs2_alloc_extent(struct inode *inode, u64 lblock, u64 *dblock,
1273 unsigned int *extlen, bool *new)
1274{
1275 unsigned int blkbits = inode->i_blkbits;
1276 struct iomap iomap = { };
1277 unsigned int len;
1278 int ret;
1279
1280 ret = gfs2_iomap_alloc(inode, lblock << blkbits, *extlen << blkbits,
1281 &iomap);
1282 if (ret)
1283 return ret;
1284 if (iomap.type != IOMAP_MAPPED)
1285 return -EIO;
1286 *dblock = iomap.addr >> blkbits;
1287 len = iomap.length >> blkbits;
1288 if (len < *extlen)
1289 *extlen = len;
1290 *new = iomap.flags & IOMAP_F_NEW;
1291 return 0;
b3b94faa
DT
1292}
1293
70499cdf
BP
1294/*
1295 * NOTE: Never call gfs2_block_zero_range with an open transaction because it
1296 * uses iomap write to perform its actions, which begin their own transactions
c82abc23 1297 * (iomap_begin, get_folio, etc.)
70499cdf 1298 */
bdba0d5e
AG
1299static int gfs2_block_zero_range(struct inode *inode, loff_t from,
1300 unsigned int length)
ba7f7290 1301{
70499cdf 1302 BUG_ON(current->journal_info);
2257e468 1303 return iomap_zero_range(inode, from, length, NULL, &gfs2_iomap_ops);
ba7f7290
SW
1304}
1305
c62baf65
FF
1306#define GFS2_JTRUNC_REVOKES 8192
1307
fa731fc4
SW
1308/**
1309 * gfs2_journaled_truncate - Wrapper for truncate_pagecache for jdata files
1310 * @inode: The inode being truncated
1311 * @oldsize: The original (larger) size
1312 * @newsize: The new smaller size
1313 *
1314 * With jdata files, we have to journal a revoke for each block which is
1315 * truncated. As a result, we need to split this into separate transactions
1316 * if the number of pages being truncated gets too large.
1317 */
1318
fa731fc4
SW
1319static int gfs2_journaled_truncate(struct inode *inode, u64 oldsize, u64 newsize)
1320{
1321 struct gfs2_sbd *sdp = GFS2_SB(inode);
1322 u64 max_chunk = GFS2_JTRUNC_REVOKES * sdp->sd_vfs->s_blocksize;
1323 u64 chunk;
1324 int error;
1325
1326 while (oldsize != newsize) {
e7fdf004
AG
1327 struct gfs2_trans *tr;
1328 unsigned int offs;
1329
fa731fc4
SW
1330 chunk = oldsize - newsize;
1331 if (chunk > max_chunk)
1332 chunk = max_chunk;
e7fdf004
AG
1333
1334 offs = oldsize & ~PAGE_MASK;
1335 if (offs && chunk > PAGE_SIZE)
1336 chunk = offs + ((chunk - offs) & PAGE_MASK);
1337
7caef267 1338 truncate_pagecache(inode, oldsize - chunk);
fa731fc4 1339 oldsize -= chunk;
e7fdf004
AG
1340
1341 tr = current->journal_info;
1342 if (!test_bit(TR_TOUCHED, &tr->tr_flags))
1343 continue;
1344
fa731fc4
SW
1345 gfs2_trans_end(sdp);
1346 error = gfs2_trans_begin(sdp, RES_DINODE, GFS2_JTRUNC_REVOKES);
1347 if (error)
1348 return error;
1349 }
1350
1351 return 0;
1352}
1353
8b5860a3 1354static int trunc_start(struct inode *inode, u64 newsize)
b3b94faa 1355{
ff8f33c8
SW
1356 struct gfs2_inode *ip = GFS2_I(inode);
1357 struct gfs2_sbd *sdp = GFS2_SB(inode);
80990f40 1358 struct buffer_head *dibh = NULL;
b3b94faa 1359 int journaled = gfs2_is_jdata(ip);
8b5860a3 1360 u64 oldsize = inode->i_size;
b3b94faa
DT
1361 int error;
1362
70499cdf
BP
1363 if (!gfs2_is_stuffed(ip)) {
1364 unsigned int blocksize = i_blocksize(inode);
1365 unsigned int offs = newsize & (blocksize - 1);
1366 if (offs) {
1367 error = gfs2_block_zero_range(inode, newsize,
1368 blocksize - offs);
1369 if (error)
1370 return error;
1371 }
1372 }
fa731fc4
SW
1373 if (journaled)
1374 error = gfs2_trans_begin(sdp, RES_DINODE + RES_JDATA, GFS2_JTRUNC_REVOKES);
1375 else
1376 error = gfs2_trans_begin(sdp, RES_DINODE, 0);
b3b94faa
DT
1377 if (error)
1378 return error;
1379
1380 error = gfs2_meta_inode_buffer(ip, &dibh);
1381 if (error)
1382 goto out;
1383
350a9b0a 1384 gfs2_trans_add_meta(ip->i_gl, dibh);
ff8f33c8 1385
70499cdf 1386 if (gfs2_is_stuffed(ip))
ff8f33c8 1387 gfs2_buffer_clear_tail(dibh, sizeof(struct gfs2_dinode) + newsize);
70499cdf 1388 else
ff8f33c8 1389 ip->i_diskflags |= GFS2_DIF_TRUNC_IN_PROG;
b3b94faa 1390
ff8f33c8 1391 i_size_write(inode, newsize);
580f721b 1392 inode_set_mtime_to_ts(&ip->i_inode, inode_set_ctime_current(&ip->i_inode));
ff8f33c8 1393 gfs2_dinode_out(ip, dibh->b_data);
b3b94faa 1394
fa731fc4
SW
1395 if (journaled)
1396 error = gfs2_journaled_truncate(inode, oldsize, newsize);
1397 else
7caef267 1398 truncate_pagecache(inode, newsize);
fa731fc4 1399
a91ea69f 1400out:
80990f40
AG
1401 brelse(dibh);
1402 if (current->journal_info)
1403 gfs2_trans_end(sdp);
b3b94faa
DT
1404 return error;
1405}
1406
54992257
AG
1407int gfs2_iomap_get(struct inode *inode, loff_t pos, loff_t length,
1408 struct iomap *iomap)
1409{
1410 struct metapath mp = { .mp_aheight = 1, };
1411 int ret;
1412
1413 ret = __gfs2_iomap_get(inode, pos, length, 0, iomap, &mp);
1414 release_metapath(&mp);
1415 return ret;
1416}
1417
1418int gfs2_iomap_alloc(struct inode *inode, loff_t pos, loff_t length,
1419 struct iomap *iomap)
628e366d
AG
1420{
1421 struct metapath mp = { .mp_aheight = 1, };
1422 int ret;
1423
54992257 1424 ret = __gfs2_iomap_get(inode, pos, length, IOMAP_WRITE, iomap, &mp);
628e366d 1425 if (!ret && iomap->type == IOMAP_HOLE)
54992257 1426 ret = __gfs2_iomap_alloc(inode, iomap, &mp);
628e366d
AG
1427 release_metapath(&mp);
1428 return ret;
1429}
1430
d552a2b9
BP
1431/**
1432 * sweep_bh_for_rgrps - find an rgrp in a meta buffer and free blocks therein
1433 * @ip: inode
c551f66c 1434 * @rd_gh: holder of resource group glock
5cf26b1e
AG
1435 * @bh: buffer head to sweep
1436 * @start: starting point in bh
1437 * @end: end point in bh
1438 * @meta: true if bh points to metadata (rather than data)
d552a2b9 1439 * @btotal: place to keep count of total blocks freed
d552a2b9
BP
1440 *
1441 * We sweep a metadata buffer (provided by the metapath) for blocks we need to
1442 * free, and free them all. However, we do it one rgrp at a time. If this
1443 * block has references to multiple rgrps, we break it into individual
1444 * transactions. This allows other processes to use the rgrps while we're
1445 * focused on a single one, for better concurrency / performance.
1446 * At every transaction boundary, we rewrite the inode into the journal.
1447 * That way the bitmaps are kept consistent with the inode and we can recover
1448 * if we're interrupted by power-outages.
1449 *
1450 * Returns: 0, or return code if an error occurred.
1451 * *btotal has the total number of blocks freed
1452 */
1453static int sweep_bh_for_rgrps(struct gfs2_inode *ip, struct gfs2_holder *rd_gh,
5cf26b1e
AG
1454 struct buffer_head *bh, __be64 *start, __be64 *end,
1455 bool meta, u32 *btotal)
b3b94faa 1456{
9b8c81d1 1457 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
d552a2b9
BP
1458 struct gfs2_rgrpd *rgd;
1459 struct gfs2_trans *tr;
5cf26b1e 1460 __be64 *p;
d552a2b9
BP
1461 int blks_outside_rgrp;
1462 u64 bn, bstart, isize_blks;
1463 s64 blen; /* needs to be s64 or gfs2_add_inode_blocks breaks */
d552a2b9
BP
1464 int ret = 0;
1465 bool buf_in_tr = false; /* buffer was added to transaction */
1466
d552a2b9 1467more_rgrps:
5cf26b1e
AG
1468 rgd = NULL;
1469 if (gfs2_holder_initialized(rd_gh)) {
1470 rgd = gfs2_glock2rgrp(rd_gh->gh_gl);
1471 gfs2_assert_withdraw(sdp,
1472 gfs2_glock_is_locked_by_me(rd_gh->gh_gl));
1473 }
d552a2b9
BP
1474 blks_outside_rgrp = 0;
1475 bstart = 0;
1476 blen = 0;
d552a2b9 1477
5cf26b1e 1478 for (p = start; p < end; p++) {
d552a2b9
BP
1479 if (!*p)
1480 continue;
1481 bn = be64_to_cpu(*p);
5cf26b1e
AG
1482
1483 if (rgd) {
1484 if (!rgrp_contains_block(rgd, bn)) {
1485 blks_outside_rgrp++;
1486 continue;
1487 }
d552a2b9 1488 } else {
90bcab99 1489 rgd = gfs2_blk2rgrpd(sdp, bn, true);
5cf26b1e
AG
1490 if (unlikely(!rgd)) {
1491 ret = -EIO;
1492 goto out;
1493 }
d552a2b9 1494 ret = gfs2_glock_nq_init(rgd->rd_gl, LM_ST_EXCLUSIVE,
4fc7ec31 1495 LM_FLAG_NODE_SCOPE, rd_gh);
d552a2b9
BP
1496 if (ret)
1497 goto out;
1498
1499 /* Must be done with the rgrp glock held: */
1500 if (gfs2_rs_active(&ip->i_res) &&
c65b76b8 1501 rgd == ip->i_res.rs_rgd)
d552a2b9
BP
1502 gfs2_rs_deltree(&ip->i_res);
1503 }
1504
d552a2b9
BP
1505 /* The size of our transactions will be unknown until we
1506 actually process all the metadata blocks that relate to
1507 the rgrp. So we estimate. We know it can't be more than
1508 the dinode's i_blocks and we don't want to exceed the
1509 journal flush threshold, sd_log_thresh2. */
1510 if (current->journal_info == NULL) {
1511 unsigned int jblocks_rqsted, revokes;
1512
1513 jblocks_rqsted = rgd->rd_length + RES_DINODE +
1514 RES_INDIRECT;
1515 isize_blks = gfs2_get_inode_blocks(&ip->i_inode);
1516 if (isize_blks > atomic_read(&sdp->sd_log_thresh2))
1517 jblocks_rqsted +=
1518 atomic_read(&sdp->sd_log_thresh2);
1519 else
1520 jblocks_rqsted += isize_blks;
1521 revokes = jblocks_rqsted;
1522 if (meta)
5cf26b1e 1523 revokes += end - start;
d552a2b9
BP
1524 else if (ip->i_depth)
1525 revokes += sdp->sd_inptrs;
1526 ret = gfs2_trans_begin(sdp, jblocks_rqsted, revokes);
1527 if (ret)
1528 goto out_unlock;
1529 down_write(&ip->i_rw_mutex);
1530 }
1531 /* check if we will exceed the transaction blocks requested */
1532 tr = current->journal_info;
1533 if (tr->tr_num_buf_new + RES_STATFS +
1534 RES_QUOTA >= atomic_read(&sdp->sd_log_thresh2)) {
1535 /* We set blks_outside_rgrp to ensure the loop will
1536 be repeated for the same rgrp, but with a new
1537 transaction. */
1538 blks_outside_rgrp++;
1539 /* This next part is tricky. If the buffer was added
1540 to the transaction, we've already set some block
1541 pointers to 0, so we better follow through and free
1542 them, or we will introduce corruption (so break).
1543 This may be impossible, or at least rare, but I
1544 decided to cover the case regardless.
1545
1546 If the buffer was not added to the transaction
1547 (this call), doing so would exceed our transaction
1548 size, so we need to end the transaction and start a
1549 new one (so goto). */
1550
1551 if (buf_in_tr)
1552 break;
1553 goto out_unlock;
1554 }
1555
1556 gfs2_trans_add_meta(ip->i_gl, bh);
1557 buf_in_tr = true;
1558 *p = 0;
1559 if (bstart + blen == bn) {
1560 blen++;
1561 continue;
1562 }
1563 if (bstart) {
0ddeded4 1564 __gfs2_free_blocks(ip, rgd, bstart, (u32)blen, meta);
d552a2b9
BP
1565 (*btotal) += blen;
1566 gfs2_add_inode_blocks(&ip->i_inode, -blen);
1567 }
1568 bstart = bn;
1569 blen = 1;
1570 }
1571 if (bstart) {
0ddeded4 1572 __gfs2_free_blocks(ip, rgd, bstart, (u32)blen, meta);
d552a2b9
BP
1573 (*btotal) += blen;
1574 gfs2_add_inode_blocks(&ip->i_inode, -blen);
1575 }
1576out_unlock:
1577 if (!ret && blks_outside_rgrp) { /* If buffer still has non-zero blocks
1578 outside the rgrp we just processed,
1579 do it all over again. */
1580 if (current->journal_info) {
5cf26b1e
AG
1581 struct buffer_head *dibh;
1582
1583 ret = gfs2_meta_inode_buffer(ip, &dibh);
1584 if (ret)
1585 goto out;
d552a2b9
BP
1586
1587 /* Every transaction boundary, we rewrite the dinode
1588 to keep its di_blocks current in case of failure. */
580f721b 1589 inode_set_mtime_to_ts(&ip->i_inode, inode_set_ctime_current(&ip->i_inode));
d552a2b9
BP
1590 gfs2_trans_add_meta(ip->i_gl, dibh);
1591 gfs2_dinode_out(ip, dibh->b_data);
5cf26b1e 1592 brelse(dibh);
d552a2b9
BP
1593 up_write(&ip->i_rw_mutex);
1594 gfs2_trans_end(sdp);
f0b444b3 1595 buf_in_tr = false;
d552a2b9
BP
1596 }
1597 gfs2_glock_dq_uninit(rd_gh);
1598 cond_resched();
1599 goto more_rgrps;
1600 }
1601out:
1602 return ret;
1603}
1604
10d2cf94
AG
1605static bool mp_eq_to_hgt(struct metapath *mp, __u16 *list, unsigned int h)
1606{
1607 if (memcmp(mp->mp_list, list, h * sizeof(mp->mp_list[0])))
1608 return false;
1609 return true;
1610}
1611
d552a2b9
BP
1612/**
1613 * find_nonnull_ptr - find a non-null pointer given a metapath and height
c551f66c 1614 * @sdp: The superblock
d552a2b9
BP
1615 * @mp: starting metapath
1616 * @h: desired height to search
c551f66c
LJ
1617 * @end_list: See punch_hole().
1618 * @end_aligned: See punch_hole().
d552a2b9 1619 *
10d2cf94 1620 * Assumes the metapath is valid (with buffers) out to height h.
d552a2b9
BP
1621 * Returns: true if a non-null pointer was found in the metapath buffer
1622 * false if all remaining pointers are NULL in the buffer
1623 */
1624static bool find_nonnull_ptr(struct gfs2_sbd *sdp, struct metapath *mp,
10d2cf94
AG
1625 unsigned int h,
1626 __u16 *end_list, unsigned int end_aligned)
d552a2b9 1627{
10d2cf94
AG
1628 struct buffer_head *bh = mp->mp_bh[h];
1629 __be64 *first, *ptr, *end;
1630
1631 first = metaptr1(h, mp);
1632 ptr = first + mp->mp_list[h];
1633 end = (__be64 *)(bh->b_data + bh->b_size);
1634 if (end_list && mp_eq_to_hgt(mp, end_list, h)) {
1635 bool keep_end = h < end_aligned;
1636 end = first + end_list[h] + keep_end;
1637 }
d552a2b9 1638
10d2cf94 1639 while (ptr < end) {
c4a9d189 1640 if (*ptr) { /* if we have a non-null pointer */
10d2cf94 1641 mp->mp_list[h] = ptr - first;
c4a9d189
BP
1642 h++;
1643 if (h < GFS2_MAX_META_HEIGHT)
10d2cf94 1644 mp->mp_list[h] = 0;
d552a2b9 1645 return true;
c4a9d189 1646 }
10d2cf94 1647 ptr++;
d552a2b9 1648 }
10d2cf94 1649 return false;
d552a2b9
BP
1650}
1651
1652enum dealloc_states {
1653 DEALLOC_MP_FULL = 0, /* Strip a metapath with all buffers read in */
1654 DEALLOC_MP_LOWER = 1, /* lower the metapath strip height */
1655 DEALLOC_FILL_MP = 2, /* Fill in the metapath to the given height. */
1656 DEALLOC_DONE = 3, /* process complete */
1657};
b3b94faa 1658
5cf26b1e
AG
1659static inline void
1660metapointer_range(struct metapath *mp, int height,
1661 __u16 *start_list, unsigned int start_aligned,
10d2cf94 1662 __u16 *end_list, unsigned int end_aligned,
5cf26b1e
AG
1663 __be64 **start, __be64 **end)
1664{
1665 struct buffer_head *bh = mp->mp_bh[height];
1666 __be64 *first;
1667
1668 first = metaptr1(height, mp);
1669 *start = first;
1670 if (mp_eq_to_hgt(mp, start_list, height)) {
1671 bool keep_start = height < start_aligned;
1672 *start = first + start_list[height] + keep_start;
1673 }
1674 *end = (__be64 *)(bh->b_data + bh->b_size);
10d2cf94
AG
1675 if (end_list && mp_eq_to_hgt(mp, end_list, height)) {
1676 bool keep_end = height < end_aligned;
1677 *end = first + end_list[height] + keep_end;
1678 }
1679}
1680
1681static inline bool walk_done(struct gfs2_sbd *sdp,
1682 struct metapath *mp, int height,
1683 __u16 *end_list, unsigned int end_aligned)
1684{
1685 __u16 end;
1686
1687 if (end_list) {
1688 bool keep_end = height < end_aligned;
1689 if (!mp_eq_to_hgt(mp, end_list, height))
1690 return false;
1691 end = end_list[height] + keep_end;
1692 } else
1693 end = (height > 0) ? sdp->sd_inptrs : sdp->sd_diptrs;
1694 return mp->mp_list[height] >= end;
5cf26b1e
AG
1695}
1696
d552a2b9 1697/**
10d2cf94 1698 * punch_hole - deallocate blocks in a file
d552a2b9 1699 * @ip: inode to truncate
10d2cf94
AG
1700 * @offset: the start of the hole
1701 * @length: the size of the hole (or 0 for truncate)
1702 *
1703 * Punch a hole into a file or truncate a file at a given position. This
1704 * function operates in whole blocks (@offset and @length are rounded
1705 * accordingly); partially filled blocks must be cleared otherwise.
d552a2b9 1706 *
10d2cf94
AG
1707 * This function works from the bottom up, and from the right to the left. In
1708 * other words, it strips off the highest layer (data) before stripping any of
1709 * the metadata. Doing it this way is best in case the operation is interrupted
1710 * by power failure, etc. The dinode is rewritten in every transaction to
1711 * guarantee integrity.
d552a2b9 1712 */
10d2cf94 1713static int punch_hole(struct gfs2_inode *ip, u64 offset, u64 length)
d552a2b9
BP
1714{
1715 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
bb491ce6 1716 u64 maxsize = sdp->sd_heightsize[ip->i_height];
10d2cf94 1717 struct metapath mp = {};
d552a2b9
BP
1718 struct buffer_head *dibh, *bh;
1719 struct gfs2_holder rd_gh;
cb7f0903 1720 unsigned int bsize_shift = sdp->sd_sb.sb_bsize_shift;
c95346ac
AP
1721 unsigned int bsize = 1 << bsize_shift;
1722 u64 lblock = (offset + bsize - 1) >> bsize_shift;
10d2cf94
AG
1723 __u16 start_list[GFS2_MAX_META_HEIGHT];
1724 __u16 __end_list[GFS2_MAX_META_HEIGHT], *end_list = NULL;
3f649ab7 1725 unsigned int start_aligned, end_aligned;
d552a2b9
BP
1726 unsigned int strip_h = ip->i_height - 1;
1727 u32 btotal = 0;
1728 int ret, state;
1729 int mp_h; /* metapath buffers are read in to this height */
d552a2b9 1730 u64 prev_bnr = 0;
5cf26b1e 1731 __be64 *start, *end;
b3b94faa 1732
c95346ac 1733 if (offset + bsize - 1 >= maxsize) {
bb491ce6 1734 /*
e4f82bf2
BP
1735 * The starting point lies beyond the allocated metadata;
1736 * there are no blocks to deallocate.
bb491ce6
AG
1737 */
1738 return 0;
1739 }
1740
10d2cf94
AG
1741 /*
1742 * The start position of the hole is defined by lblock, start_list, and
1743 * start_aligned. The end position of the hole is defined by lend,
1744 * end_list, and end_aligned.
1745 *
1746 * start_aligned and end_aligned define down to which height the start
1747 * and end positions are aligned to the metadata tree (i.e., the
1748 * position is a multiple of the metadata granularity at the height
1749 * above). This determines at which heights additional meta pointers
1750 * needs to be preserved for the remaining data.
1751 */
b3b94faa 1752
10d2cf94 1753 if (length) {
10d2cf94
AG
1754 u64 end_offset = offset + length;
1755 u64 lend;
1756
1757 /*
1758 * Clip the end at the maximum file size for the given height:
1759 * that's how far the metadata goes; files bigger than that
1760 * will have additional layers of indirection.
1761 */
1762 if (end_offset > maxsize)
1763 end_offset = maxsize;
1764 lend = end_offset >> bsize_shift;
1765
1766 if (lblock >= lend)
1767 return 0;
1768
1769 find_metapath(sdp, lend, &mp, ip->i_height);
1770 end_list = __end_list;
1771 memcpy(end_list, mp.mp_list, sizeof(mp.mp_list));
1772
1773 for (mp_h = ip->i_height - 1; mp_h > 0; mp_h--) {
1774 if (end_list[mp_h])
1775 break;
1776 }
1777 end_aligned = mp_h;
1778 }
1779
1780 find_metapath(sdp, lblock, &mp, ip->i_height);
cb7f0903
AG
1781 memcpy(start_list, mp.mp_list, sizeof(start_list));
1782
cb7f0903
AG
1783 for (mp_h = ip->i_height - 1; mp_h > 0; mp_h--) {
1784 if (start_list[mp_h])
1785 break;
1786 }
1787 start_aligned = mp_h;
d552a2b9
BP
1788
1789 ret = gfs2_meta_inode_buffer(ip, &dibh);
1790 if (ret)
1791 return ret;
b3b94faa 1792
d552a2b9
BP
1793 mp.mp_bh[0] = dibh;
1794 ret = lookup_metapath(ip, &mp);
e8b43fe0
AG
1795 if (ret)
1796 goto out_metapath;
c3ce5aa9
AG
1797
1798 /* issue read-ahead on metadata */
5cf26b1e
AG
1799 for (mp_h = 0; mp_h < mp.mp_aheight - 1; mp_h++) {
1800 metapointer_range(&mp, mp_h, start_list, start_aligned,
10d2cf94 1801 end_list, end_aligned, &start, &end);
5cf26b1e
AG
1802 gfs2_metapath_ra(ip->i_gl, start, end);
1803 }
c3ce5aa9 1804
e8b43fe0 1805 if (mp.mp_aheight == ip->i_height)
d552a2b9
BP
1806 state = DEALLOC_MP_FULL; /* We have a complete metapath */
1807 else
1808 state = DEALLOC_FILL_MP; /* deal with partial metapath */
b3b94faa 1809
d552a2b9
BP
1810 ret = gfs2_rindex_update(sdp);
1811 if (ret)
1812 goto out_metapath;
1813
1814 ret = gfs2_quota_hold(ip, NO_UID_QUOTA_CHANGE, NO_GID_QUOTA_CHANGE);
1815 if (ret)
1816 goto out_metapath;
1817 gfs2_holder_mark_uninitialized(&rd_gh);
1818
1819 mp_h = strip_h;
1820
1821 while (state != DEALLOC_DONE) {
1822 switch (state) {
1823 /* Truncate a full metapath at the given strip height.
1824 * Note that strip_h == mp_h in order to be in this state. */
1825 case DEALLOC_MP_FULL:
d552a2b9
BP
1826 bh = mp.mp_bh[mp_h];
1827 gfs2_assert_withdraw(sdp, bh);
1828 if (gfs2_assert_withdraw(sdp,
1829 prev_bnr != bh->b_blocknr)) {
b204b1b6 1830 fs_emerg(sdp, "inode %llu, block:%llu, i_h:%u, "
f29e62ee 1831 "s_h:%u, mp_h:%u\n",
d552a2b9
BP
1832 (unsigned long long)ip->i_no_addr,
1833 prev_bnr, ip->i_height, strip_h, mp_h);
1834 }
1835 prev_bnr = bh->b_blocknr;
cb7f0903 1836
5cf26b1e
AG
1837 if (gfs2_metatype_check(sdp, bh,
1838 (mp_h ? GFS2_METATYPE_IN :
1839 GFS2_METATYPE_DI))) {
1840 ret = -EIO;
1841 goto out;
1842 }
1843
10d2cf94
AG
1844 /*
1845 * Below, passing end_aligned as 0 gives us the
1846 * metapointer range excluding the end point: the end
1847 * point is the first metapath we must not deallocate!
1848 */
1849
5cf26b1e 1850 metapointer_range(&mp, mp_h, start_list, start_aligned,
10d2cf94 1851 end_list, 0 /* end_aligned */,
5cf26b1e
AG
1852 &start, &end);
1853 ret = sweep_bh_for_rgrps(ip, &rd_gh, mp.mp_bh[mp_h],
1854 start, end,
1855 mp_h != ip->i_height - 1,
1856 &btotal);
cb7f0903 1857
d552a2b9
BP
1858 /* If we hit an error or just swept dinode buffer,
1859 just exit. */
1860 if (ret || !mp_h) {
1861 state = DEALLOC_DONE;
1862 break;
1863 }
1864 state = DEALLOC_MP_LOWER;
1865 break;
1866
1867 /* lower the metapath strip height */
1868 case DEALLOC_MP_LOWER:
1869 /* We're done with the current buffer, so release it,
1870 unless it's the dinode buffer. Then back up to the
1871 previous pointer. */
1872 if (mp_h) {
1873 brelse(mp.mp_bh[mp_h]);
1874 mp.mp_bh[mp_h] = NULL;
1875 }
1876 /* If we can't get any lower in height, we've stripped
1877 off all we can. Next step is to back up and start
1878 stripping the previous level of metadata. */
1879 if (mp_h == 0) {
1880 strip_h--;
cb7f0903 1881 memcpy(mp.mp_list, start_list, sizeof(start_list));
d552a2b9
BP
1882 mp_h = strip_h;
1883 state = DEALLOC_FILL_MP;
1884 break;
1885 }
1886 mp.mp_list[mp_h] = 0;
1887 mp_h--; /* search one metadata height down */
d552a2b9 1888 mp.mp_list[mp_h]++;
10d2cf94
AG
1889 if (walk_done(sdp, &mp, mp_h, end_list, end_aligned))
1890 break;
d552a2b9
BP
1891 /* Here we've found a part of the metapath that is not
1892 * allocated. We need to search at that height for the
1893 * next non-null pointer. */
10d2cf94 1894 if (find_nonnull_ptr(sdp, &mp, mp_h, end_list, end_aligned)) {
d552a2b9
BP
1895 state = DEALLOC_FILL_MP;
1896 mp_h++;
1897 }
1898 /* No more non-null pointers at this height. Back up
1899 to the previous height and try again. */
1900 break; /* loop around in the same state */
1901
1902 /* Fill the metapath with buffers to the given height. */
1903 case DEALLOC_FILL_MP:
1904 /* Fill the buffers out to the current height. */
1905 ret = fillup_metapath(ip, &mp, mp_h);
c3ce5aa9 1906 if (ret < 0)
d552a2b9 1907 goto out;
c3ce5aa9 1908
e7445ced
AG
1909 /* On the first pass, issue read-ahead on metadata. */
1910 if (mp.mp_aheight > 1 && strip_h == ip->i_height - 1) {
1911 unsigned int height = mp.mp_aheight - 1;
1912
1913 /* No read-ahead for data blocks. */
1914 if (mp.mp_aheight - 1 == strip_h)
1915 height--;
1916
1917 for (; height >= mp.mp_aheight - ret; height--) {
1918 metapointer_range(&mp, height,
5cf26b1e 1919 start_list, start_aligned,
10d2cf94 1920 end_list, end_aligned,
5cf26b1e
AG
1921 &start, &end);
1922 gfs2_metapath_ra(ip->i_gl, start, end);
1923 }
c3ce5aa9 1924 }
d552a2b9
BP
1925
1926 /* If buffers found for the entire strip height */
e8b43fe0 1927 if (mp.mp_aheight - 1 == strip_h) {
d552a2b9
BP
1928 state = DEALLOC_MP_FULL;
1929 break;
1930 }
e8b43fe0
AG
1931 if (mp.mp_aheight < ip->i_height) /* We have a partial height */
1932 mp_h = mp.mp_aheight - 1;
d552a2b9
BP
1933
1934 /* If we find a non-null block pointer, crawl a bit
1935 higher up in the metapath and try again, otherwise
1936 we need to look lower for a new starting point. */
10d2cf94 1937 if (find_nonnull_ptr(sdp, &mp, mp_h, end_list, end_aligned))
d552a2b9
BP
1938 mp_h++;
1939 else
1940 state = DEALLOC_MP_LOWER;
b3b94faa 1941 break;
d552a2b9 1942 }
b3b94faa
DT
1943 }
1944
d552a2b9
BP
1945 if (btotal) {
1946 if (current->journal_info == NULL) {
1947 ret = gfs2_trans_begin(sdp, RES_DINODE + RES_STATFS +
1948 RES_QUOTA, 0);
1949 if (ret)
1950 goto out;
1951 down_write(&ip->i_rw_mutex);
1952 }
1953 gfs2_statfs_change(sdp, 0, +btotal, 0);
1954 gfs2_quota_change(ip, -(s64)btotal, ip->i_inode.i_uid,
1955 ip->i_inode.i_gid);
580f721b 1956 inode_set_mtime_to_ts(&ip->i_inode, inode_set_ctime_current(&ip->i_inode));
d552a2b9
BP
1957 gfs2_trans_add_meta(ip->i_gl, dibh);
1958 gfs2_dinode_out(ip, dibh->b_data);
1959 up_write(&ip->i_rw_mutex);
1960 gfs2_trans_end(sdp);
1961 }
b3b94faa 1962
d552a2b9
BP
1963out:
1964 if (gfs2_holder_initialized(&rd_gh))
1965 gfs2_glock_dq_uninit(&rd_gh);
1966 if (current->journal_info) {
1967 up_write(&ip->i_rw_mutex);
1968 gfs2_trans_end(sdp);
1969 cond_resched();
1970 }
1971 gfs2_quota_unhold(ip);
1972out_metapath:
1973 release_metapath(&mp);
1974 return ret;
b3b94faa
DT
1975}
1976
1977static int trunc_end(struct gfs2_inode *ip)
1978{
feaa7bba 1979 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
b3b94faa
DT
1980 struct buffer_head *dibh;
1981 int error;
1982
1983 error = gfs2_trans_begin(sdp, RES_DINODE, 0);
1984 if (error)
1985 return error;
1986
1987 down_write(&ip->i_rw_mutex);
1988
1989 error = gfs2_meta_inode_buffer(ip, &dibh);
1990 if (error)
1991 goto out;
1992
a2e0f799 1993 if (!i_size_read(&ip->i_inode)) {
ecc30c79 1994 ip->i_height = 0;
ce276b06 1995 ip->i_goal = ip->i_no_addr;
b3b94faa 1996 gfs2_buffer_clear_tail(dibh, sizeof(struct gfs2_dinode));
45138990 1997 gfs2_ordered_del_inode(ip);
b3b94faa 1998 }
580f721b 1999 inode_set_mtime_to_ts(&ip->i_inode, inode_set_ctime_current(&ip->i_inode));
383f01fb 2000 ip->i_diskflags &= ~GFS2_DIF_TRUNC_IN_PROG;
b3b94faa 2001
350a9b0a 2002 gfs2_trans_add_meta(ip->i_gl, dibh);
539e5d6b 2003 gfs2_dinode_out(ip, dibh->b_data);
b3b94faa
DT
2004 brelse(dibh);
2005
a91ea69f 2006out:
b3b94faa 2007 up_write(&ip->i_rw_mutex);
b3b94faa 2008 gfs2_trans_end(sdp);
b3b94faa
DT
2009 return error;
2010}
2011
2012/**
2013 * do_shrink - make a file smaller
ff8f33c8 2014 * @inode: the inode
ff8f33c8 2015 * @newsize: the size to make the file
b3b94faa 2016 *
ff8f33c8
SW
2017 * Called with an exclusive lock on @inode. The @size must
2018 * be equal to or smaller than the current inode size.
b3b94faa
DT
2019 *
2020 * Returns: errno
2021 */
2022
8b5860a3 2023static int do_shrink(struct inode *inode, u64 newsize)
b3b94faa 2024{
ff8f33c8 2025 struct gfs2_inode *ip = GFS2_I(inode);
b3b94faa
DT
2026 int error;
2027
8b5860a3 2028 error = trunc_start(inode, newsize);
b3b94faa
DT
2029 if (error < 0)
2030 return error;
ff8f33c8 2031 if (gfs2_is_stuffed(ip))
b3b94faa
DT
2032 return 0;
2033
10d2cf94 2034 error = punch_hole(ip, newsize, 0);
ff8f33c8 2035 if (error == 0)
b3b94faa
DT
2036 error = trunc_end(ip);
2037
2038 return error;
2039}
2040
ff8f33c8
SW
2041/**
2042 * do_grow - Touch and update inode size
2043 * @inode: The inode
2044 * @size: The new size
2045 *
2046 * This function updates the timestamps on the inode and
2047 * may also increase the size of the inode. This function
2048 * must not be called with @size any smaller than the current
2049 * inode size.
2050 *
2051 * Although it is not strictly required to unstuff files here,
2052 * earlier versions of GFS2 have a bug in the stuffed file reading
2053 * code which will result in a buffer overrun if the size is larger
2054 * than the max stuffed file size. In order to prevent this from
25985edc 2055 * occurring, such files are unstuffed, but in other cases we can
ff8f33c8
SW
2056 * just update the inode size directly.
2057 *
2058 * Returns: 0 on success, or -ve on error
2059 */
2060
2061static int do_grow(struct inode *inode, u64 size)
2062{
2063 struct gfs2_inode *ip = GFS2_I(inode);
2064 struct gfs2_sbd *sdp = GFS2_SB(inode);
7b9cff46 2065 struct gfs2_alloc_parms ap = { .target = 1, };
a13b8c5f
WC
2066 struct buffer_head *dibh;
2067 int error;
2f7ee358 2068 int unstuff = 0;
a13b8c5f 2069
235628c5 2070 if (gfs2_is_stuffed(ip) && size > gfs2_max_stuffed_size(ip)) {
b8fbf471 2071 error = gfs2_quota_lock_check(ip, &ap);
ff8f33c8 2072 if (error)
5407e242 2073 return error;
ff8f33c8 2074
7b9cff46 2075 error = gfs2_inplace_reserve(ip, &ap);
ff8f33c8
SW
2076 if (error)
2077 goto do_grow_qunlock;
2f7ee358 2078 unstuff = 1;
ff8f33c8
SW
2079 }
2080
a01aedfe 2081 error = gfs2_trans_begin(sdp, RES_DINODE + RES_STATFS + RES_RG_BIT +
bc020561
BP
2082 (unstuff &&
2083 gfs2_is_jdata(ip) ? RES_JDATA : 0) +
a01aedfe
BP
2084 (sdp->sd_args.ar_quota == GFS2_QUOTA_OFF ?
2085 0 : RES_QUOTA), 0);
a13b8c5f 2086 if (error)
ff8f33c8 2087 goto do_grow_release;
a13b8c5f 2088
2f7ee358 2089 if (unstuff) {
7a607a41 2090 error = gfs2_unstuff_dinode(ip);
ff8f33c8
SW
2091 if (error)
2092 goto do_end_trans;
2093 }
a13b8c5f
WC
2094
2095 error = gfs2_meta_inode_buffer(ip, &dibh);
2096 if (error)
ff8f33c8 2097 goto do_end_trans;
a13b8c5f 2098
b473bc2d 2099 truncate_setsize(inode, size);
580f721b 2100 inode_set_mtime_to_ts(&ip->i_inode, inode_set_ctime_current(&ip->i_inode));
350a9b0a 2101 gfs2_trans_add_meta(ip->i_gl, dibh);
a13b8c5f
WC
2102 gfs2_dinode_out(ip, dibh->b_data);
2103 brelse(dibh);
2104
ff8f33c8 2105do_end_trans:
a13b8c5f 2106 gfs2_trans_end(sdp);
ff8f33c8 2107do_grow_release:
2f7ee358 2108 if (unstuff) {
ff8f33c8
SW
2109 gfs2_inplace_release(ip);
2110do_grow_qunlock:
2111 gfs2_quota_unlock(ip);
ff8f33c8 2112 }
a13b8c5f
WC
2113 return error;
2114}
2115
b3b94faa 2116/**
ff8f33c8
SW
2117 * gfs2_setattr_size - make a file a given size
2118 * @inode: the inode
2119 * @newsize: the size to make the file
b3b94faa 2120 *
ff8f33c8 2121 * The file size can grow, shrink, or stay the same size. This
3e7aafc3 2122 * is called holding i_rwsem and an exclusive glock on the inode
ff8f33c8 2123 * in question.
b3b94faa
DT
2124 *
2125 * Returns: errno
2126 */
2127
ff8f33c8 2128int gfs2_setattr_size(struct inode *inode, u64 newsize)
b3b94faa 2129{
af5c2697 2130 struct gfs2_inode *ip = GFS2_I(inode);
ff8f33c8 2131 int ret;
b3b94faa 2132
ff8f33c8 2133 BUG_ON(!S_ISREG(inode->i_mode));
b3b94faa 2134
ff8f33c8
SW
2135 ret = inode_newsize_ok(inode, newsize);
2136 if (ret)
2137 return ret;
b3b94faa 2138
562c72aa
CH
2139 inode_dio_wait(inode);
2140
2fba46a0 2141 ret = gfs2_qa_get(ip);
d2b47cfb 2142 if (ret)
2b3dcf35 2143 goto out;
d2b47cfb 2144
8b5860a3 2145 if (newsize >= inode->i_size) {
2b3dcf35
BP
2146 ret = do_grow(inode, newsize);
2147 goto out;
2148 }
ff8f33c8 2149
8b5860a3 2150 ret = do_shrink(inode, newsize);
2b3dcf35 2151out:
7336905a 2152 gfs2_rs_delete(ip);
1595548f 2153 gfs2_qa_put(ip);
2b3dcf35 2154 return ret;
b3b94faa
DT
2155}
2156
2157int gfs2_truncatei_resume(struct gfs2_inode *ip)
2158{
2159 int error;
10d2cf94 2160 error = punch_hole(ip, i_size_read(&ip->i_inode), 0);
b3b94faa
DT
2161 if (!error)
2162 error = trunc_end(ip);
2163 return error;
2164}
2165
2166int gfs2_file_dealloc(struct gfs2_inode *ip)
2167{
10d2cf94 2168 return punch_hole(ip, 0, 0);
b3b94faa
DT
2169}
2170
b50f227b
SW
2171/**
2172 * gfs2_free_journal_extents - Free cached journal bmap info
2173 * @jd: The journal
2174 *
2175 */
2176
2177void gfs2_free_journal_extents(struct gfs2_jdesc *jd)
2178{
2179 struct gfs2_journal_extent *jext;
2180
2181 while(!list_empty(&jd->extent_list)) {
969183bc 2182 jext = list_first_entry(&jd->extent_list, struct gfs2_journal_extent, list);
b50f227b
SW
2183 list_del(&jext->list);
2184 kfree(jext);
2185 }
2186}
2187
2188/**
2189 * gfs2_add_jextent - Add or merge a new extent to extent cache
2190 * @jd: The journal descriptor
2191 * @lblock: The logical block at start of new extent
c62baf65 2192 * @dblock: The physical block at start of new extent
b50f227b
SW
2193 * @blocks: Size of extent in fs blocks
2194 *
2195 * Returns: 0 on success or -ENOMEM
2196 */
2197
2198static int gfs2_add_jextent(struct gfs2_jdesc *jd, u64 lblock, u64 dblock, u64 blocks)
2199{
2200 struct gfs2_journal_extent *jext;
2201
2202 if (!list_empty(&jd->extent_list)) {
969183bc 2203 jext = list_last_entry(&jd->extent_list, struct gfs2_journal_extent, list);
b50f227b
SW
2204 if ((jext->dblock + jext->blocks) == dblock) {
2205 jext->blocks += blocks;
2206 return 0;
2207 }
2208 }
2209
2210 jext = kzalloc(sizeof(struct gfs2_journal_extent), GFP_NOFS);
2211 if (jext == NULL)
2212 return -ENOMEM;
2213 jext->dblock = dblock;
2214 jext->lblock = lblock;
2215 jext->blocks = blocks;
2216 list_add_tail(&jext->list, &jd->extent_list);
2217 jd->nr_extents++;
2218 return 0;
2219}
2220
2221/**
2222 * gfs2_map_journal_extents - Cache journal bmap info
2223 * @sdp: The super block
2224 * @jd: The journal to map
2225 *
2226 * Create a reusable "extent" mapping from all logical
2227 * blocks to all physical blocks for the given journal. This will save
2228 * us time when writing journal blocks. Most journals will have only one
2229 * extent that maps all their logical blocks. That's because gfs2.mkfs
2230 * arranges the journal blocks sequentially to maximize performance.
2231 * So the extent would map the first block for the entire file length.
2232 * However, gfs2_jadd can happen while file activity is happening, so
2233 * those journals may not be sequential. Less likely is the case where
2234 * the users created their own journals by mounting the metafs and
2235 * laying it out. But it's still possible. These journals might have
2236 * several extents.
2237 *
2238 * Returns: 0 on success, or error on failure
2239 */
2240
2241int gfs2_map_journal_extents(struct gfs2_sbd *sdp, struct gfs2_jdesc *jd)
2242{
2243 u64 lblock = 0;
2244 u64 lblock_stop;
2245 struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
2246 struct buffer_head bh;
2247 unsigned int shift = sdp->sd_sb.sb_bsize_shift;
2248 u64 size;
2249 int rc;
98583b3e 2250 ktime_t start, end;
b50f227b 2251
98583b3e 2252 start = ktime_get();
b50f227b
SW
2253 lblock_stop = i_size_read(jd->jd_inode) >> shift;
2254 size = (lblock_stop - lblock) << shift;
2255 jd->nr_extents = 0;
2256 WARN_ON(!list_empty(&jd->extent_list));
2257
2258 do {
2259 bh.b_state = 0;
2260 bh.b_blocknr = 0;
2261 bh.b_size = size;
2262 rc = gfs2_block_map(jd->jd_inode, lblock, &bh, 0);
2263 if (rc || !buffer_mapped(&bh))
2264 goto fail;
2265 rc = gfs2_add_jextent(jd, lblock, bh.b_blocknr, bh.b_size >> shift);
2266 if (rc)
2267 goto fail;
2268 size -= bh.b_size;
2269 lblock += (bh.b_size >> ip->i_inode.i_blkbits);
2270 } while(size > 0);
2271
98583b3e
AD
2272 end = ktime_get();
2273 fs_info(sdp, "journal %d mapped with %u extents in %lldms\n", jd->jd_jid,
2274 jd->nr_extents, ktime_ms_delta(end, start));
b50f227b
SW
2275 return 0;
2276
2277fail:
2278 fs_warn(sdp, "error %d mapping journal %u at offset %llu (extent %u)\n",
2279 rc, jd->jd_jid,
2280 (unsigned long long)(i_size_read(jd->jd_inode) - size),
2281 jd->nr_extents);
2282 fs_warn(sdp, "bmap=%d lblock=%llu block=%llu, state=0x%08lx, size=%llu\n",
2283 rc, (unsigned long long)lblock, (unsigned long long)bh.b_blocknr,
2284 bh.b_state, (unsigned long long)bh.b_size);
2285 gfs2_free_journal_extents(jd);
2286 return rc;
2287}
2288
b3b94faa
DT
2289/**
2290 * gfs2_write_alloc_required - figure out if a write will require an allocation
2291 * @ip: the file being written to
2292 * @offset: the offset to write to
2293 * @len: the number of bytes being written
b3b94faa 2294 *
461cb419 2295 * Returns: 1 if an alloc is required, 0 otherwise
b3b94faa
DT
2296 */
2297
cd915493 2298int gfs2_write_alloc_required(struct gfs2_inode *ip, u64 offset,
461cb419 2299 unsigned int len)
b3b94faa 2300{
feaa7bba 2301 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
941e6d7d
SW
2302 struct buffer_head bh;
2303 unsigned int shift;
2304 u64 lblock, lblock_stop, size;
7ed122e4 2305 u64 end_of_file;
b3b94faa 2306
b3b94faa
DT
2307 if (!len)
2308 return 0;
2309
2310 if (gfs2_is_stuffed(ip)) {
235628c5 2311 if (offset + len > gfs2_max_stuffed_size(ip))
461cb419 2312 return 1;
b3b94faa
DT
2313 return 0;
2314 }
2315
941e6d7d 2316 shift = sdp->sd_sb.sb_bsize_shift;
7ed122e4 2317 BUG_ON(gfs2_is_dir(ip));
a2e0f799 2318 end_of_file = (i_size_read(&ip->i_inode) + sdp->sd_sb.sb_bsize - 1) >> shift;
7ed122e4
SW
2319 lblock = offset >> shift;
2320 lblock_stop = (offset + len + sdp->sd_sb.sb_bsize - 1) >> shift;
77612578 2321 if (lblock_stop > end_of_file && ip != GFS2_I(sdp->sd_rindex))
461cb419 2322 return 1;
b3b94faa 2323
941e6d7d
SW
2324 size = (lblock_stop - lblock) << shift;
2325 do {
2326 bh.b_state = 0;
2327 bh.b_size = size;
2328 gfs2_block_map(&ip->i_inode, lblock, &bh, 0);
2329 if (!buffer_mapped(&bh))
461cb419 2330 return 1;
941e6d7d
SW
2331 size -= bh.b_size;
2332 lblock += (bh.b_size >> ip->i_inode.i_blkbits);
2333 } while(size > 0);
b3b94faa
DT
2334
2335 return 0;
2336}
2337
4e56a641
AG
2338static int stuffed_zero_range(struct inode *inode, loff_t offset, loff_t length)
2339{
2340 struct gfs2_inode *ip = GFS2_I(inode);
2341 struct buffer_head *dibh;
2342 int error;
2343
2344 if (offset >= inode->i_size)
2345 return 0;
2346 if (offset + length > inode->i_size)
2347 length = inode->i_size - offset;
2348
2349 error = gfs2_meta_inode_buffer(ip, &dibh);
2350 if (error)
2351 return error;
2352 gfs2_trans_add_meta(ip->i_gl, dibh);
2353 memset(dibh->b_data + sizeof(struct gfs2_dinode) + offset, 0,
2354 length);
2355 brelse(dibh);
2356 return 0;
2357}
2358
2359static int gfs2_journaled_truncate_range(struct inode *inode, loff_t offset,
2360 loff_t length)
2361{
2362 struct gfs2_sbd *sdp = GFS2_SB(inode);
2363 loff_t max_chunk = GFS2_JTRUNC_REVOKES * sdp->sd_vfs->s_blocksize;
2364 int error;
2365
2366 while (length) {
2367 struct gfs2_trans *tr;
2368 loff_t chunk;
2369 unsigned int offs;
2370
2371 chunk = length;
2372 if (chunk > max_chunk)
2373 chunk = max_chunk;
2374
2375 offs = offset & ~PAGE_MASK;
2376 if (offs && chunk > PAGE_SIZE)
2377 chunk = offs + ((chunk - offs) & PAGE_MASK);
2378
2379 truncate_pagecache_range(inode, offset, chunk);
2380 offset += chunk;
2381 length -= chunk;
2382
2383 tr = current->journal_info;
2384 if (!test_bit(TR_TOUCHED, &tr->tr_flags))
2385 continue;
2386
2387 gfs2_trans_end(sdp);
2388 error = gfs2_trans_begin(sdp, RES_DINODE, GFS2_JTRUNC_REVOKES);
2389 if (error)
2390 return error;
2391 }
2392 return 0;
2393}
2394
2395int __gfs2_punch_hole(struct file *file, loff_t offset, loff_t length)
2396{
2397 struct inode *inode = file_inode(file);
2398 struct gfs2_inode *ip = GFS2_I(inode);
2399 struct gfs2_sbd *sdp = GFS2_SB(inode);
39c3a948
AG
2400 unsigned int blocksize = i_blocksize(inode);
2401 loff_t start, end;
4e56a641
AG
2402 int error;
2403
70499cdf 2404 if (!gfs2_is_stuffed(ip)) {
39c3a948 2405 unsigned int start_off, end_len;
4e56a641 2406
4e56a641 2407 start_off = offset & (blocksize - 1);
00251a16 2408 end_len = (offset + length) & (blocksize - 1);
4e56a641
AG
2409 if (start_off) {
2410 unsigned int len = length;
2411 if (length > blocksize - start_off)
2412 len = blocksize - start_off;
2413 error = gfs2_block_zero_range(inode, offset, len);
2414 if (error)
2415 goto out;
2416 if (start_off + length < blocksize)
00251a16 2417 end_len = 0;
4e56a641 2418 }
00251a16 2419 if (end_len) {
4e56a641 2420 error = gfs2_block_zero_range(inode,
00251a16 2421 offset + length - end_len, end_len);
4e56a641
AG
2422 if (error)
2423 goto out;
2424 }
2425 }
2426
70499cdf
BP
2427 start = round_down(offset, blocksize);
2428 end = round_up(offset + length, blocksize) - 1;
2429 error = filemap_write_and_wait_range(inode->i_mapping, start, end);
2430 if (error)
2431 return error;
2432
2433 if (gfs2_is_jdata(ip))
2434 error = gfs2_trans_begin(sdp, RES_DINODE + 2 * RES_JDATA,
2435 GFS2_JTRUNC_REVOKES);
2436 else
2437 error = gfs2_trans_begin(sdp, RES_DINODE, 0);
2438 if (error)
2439 return error;
2440
2441 if (gfs2_is_stuffed(ip)) {
2442 error = stuffed_zero_range(inode, offset, length);
2443 if (error)
2444 goto out;
2445 }
2446
4e56a641
AG
2447 if (gfs2_is_jdata(ip)) {
2448 BUG_ON(!current->journal_info);
2449 gfs2_journaled_truncate_range(inode, offset, length);
2450 } else
2451 truncate_pagecache_range(inode, offset, offset + length - 1);
2452
2453 file_update_time(file);
2454 mark_inode_dirty(inode);
2455
2456 if (current->journal_info)
2457 gfs2_trans_end(sdp);
2458
2459 if (!gfs2_is_stuffed(ip))
2460 error = punch_hole(ip, offset, length);
2461
2462out:
2463 if (current->journal_info)
2464 gfs2_trans_end(sdp);
2465 return error;
2466}
2164f9b9
CH
2467
2468static int gfs2_map_blocks(struct iomap_writepage_ctx *wpc, struct inode *inode,
19871b5c 2469 loff_t offset, unsigned int len)
2164f9b9 2470{
2164f9b9
CH
2471 int ret;
2472
2473 if (WARN_ON_ONCE(gfs2_is_stuffed(GFS2_I(inode))))
2474 return -EIO;
2475
2476 if (offset >= wpc->iomap.offset &&
2477 offset < wpc->iomap.offset + wpc->iomap.length)
2478 return 0;
2479
2480 memset(&wpc->iomap, 0, sizeof(wpc->iomap));
54992257 2481 ret = gfs2_iomap_get(inode, offset, INT_MAX, &wpc->iomap);
2164f9b9
CH
2482 return ret;
2483}
2484
2485const struct iomap_writeback_ops gfs2_writeback_ops = {
2486 .map_blocks = gfs2_map_blocks,
2487};
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