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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.
fe6c991c 4 * Copyright (C) 2004-2008 Red Hat, Inc. All rights reserved.
b3b94faa
DT
5 */
6
d77d1b58
JP
7#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
8
b3b94faa
DT
9#include <linux/slab.h>
10#include <linux/spinlock.h>
11#include <linux/completion.h>
12#include <linux/buffer_head.h>
f42faf4f 13#include <linux/fs.h>
5c676f6d 14#include <linux/gfs2_ondisk.h>
1f466a47 15#include <linux/prefetch.h>
f15ab561 16#include <linux/blkdev.h>
7c9ca621 17#include <linux/rbtree.h>
9dbe9610 18#include <linux/random.h>
b3b94faa
DT
19
20#include "gfs2.h"
5c676f6d 21#include "incore.h"
b3b94faa
DT
22#include "glock.h"
23#include "glops.h"
b3b94faa
DT
24#include "lops.h"
25#include "meta_io.h"
26#include "quota.h"
27#include "rgrp.h"
28#include "super.h"
29#include "trans.h"
5c676f6d 30#include "util.h"
172e045a 31#include "log.h"
c8cdf479 32#include "inode.h"
63997775 33#include "trace_gfs2.h"
850d2d91 34#include "dir.h"
b3b94faa 35
2c1e52aa 36#define BFITNOENT ((u32)~0)
6760bdcd 37#define NO_BLOCK ((u64)~0)
88c8ab1f
SW
38
39/*
40 * These routines are used by the resource group routines (rgrp.c)
41 * to keep track of block allocation. Each block is represented by two
feaa7bba
SW
42 * bits. So, each byte represents GFS2_NBBY (i.e. 4) blocks.
43 *
44 * 0 = Free
45 * 1 = Used (not metadata)
46 * 2 = Unlinked (still in use) inode
47 * 3 = Used (metadata)
88c8ab1f
SW
48 */
49
5ce13431
BP
50struct gfs2_extent {
51 struct gfs2_rbm rbm;
52 u32 len;
53};
54
88c8ab1f
SW
55static const char valid_change[16] = {
56 /* current */
feaa7bba 57 /* n */ 0, 1, 1, 1,
88c8ab1f 58 /* e */ 1, 0, 0, 0,
feaa7bba 59 /* w */ 0, 0, 0, 1,
88c8ab1f
SW
60 1, 0, 0, 0
61};
62
5ce13431 63static int gfs2_rbm_find(struct gfs2_rbm *rbm, u8 state, u32 *minext,
8381e602 64 const struct gfs2_inode *ip, bool nowrap);
ff7f4cb4
SW
65
66
88c8ab1f
SW
67/**
68 * gfs2_setbit - Set a bit in the bitmaps
3e6339dd
SW
69 * @rbm: The position of the bit to set
70 * @do_clone: Also set the clone bitmap, if it exists
88c8ab1f
SW
71 * @new_state: the new state of the block
72 *
73 */
74
3e6339dd 75static inline void gfs2_setbit(const struct gfs2_rbm *rbm, bool do_clone,
06344b91 76 unsigned char new_state)
88c8ab1f 77{
b45e41d7 78 unsigned char *byte1, *byte2, *end, cur_state;
e579ed4f 79 struct gfs2_bitmap *bi = rbm_bi(rbm);
281b4952 80 unsigned int buflen = bi->bi_bytes;
3e6339dd 81 const unsigned int bit = (rbm->offset % GFS2_NBBY) * GFS2_BIT_SIZE;
88c8ab1f 82
e579ed4f
BP
83 byte1 = bi->bi_bh->b_data + bi->bi_offset + (rbm->offset / GFS2_NBBY);
84 end = bi->bi_bh->b_data + bi->bi_offset + buflen;
88c8ab1f 85
b45e41d7 86 BUG_ON(byte1 >= end);
88c8ab1f 87
b45e41d7 88 cur_state = (*byte1 >> bit) & GFS2_BIT_MASK;
88c8ab1f 89
b45e41d7 90 if (unlikely(!valid_change[new_state * 4 + cur_state])) {
e54c78a2
BP
91 struct gfs2_sbd *sdp = rbm->rgd->rd_sbd;
92
93 fs_warn(sdp, "buf_blk = 0x%x old_state=%d, new_state=%d\n",
d77d1b58 94 rbm->offset, cur_state, new_state);
e54c78a2
BP
95 fs_warn(sdp, "rgrp=0x%llx bi_start=0x%x biblk: 0x%llx\n",
96 (unsigned long long)rbm->rgd->rd_addr, bi->bi_start,
97 (unsigned long long)bi->bi_bh->b_blocknr);
281b4952
AG
98 fs_warn(sdp, "bi_offset=0x%x bi_bytes=0x%x block=0x%llx\n",
99 bi->bi_offset, bi->bi_bytes,
e54c78a2 100 (unsigned long long)gfs2_rbm_to_block(rbm));
95c8e17f 101 dump_stack();
3e6339dd 102 gfs2_consist_rgrpd(rbm->rgd);
b45e41d7
SW
103 return;
104 }
105 *byte1 ^= (cur_state ^ new_state) << bit;
106
e579ed4f
BP
107 if (do_clone && bi->bi_clone) {
108 byte2 = bi->bi_clone + bi->bi_offset + (rbm->offset / GFS2_NBBY);
b45e41d7
SW
109 cur_state = (*byte2 >> bit) & GFS2_BIT_MASK;
110 *byte2 ^= (cur_state ^ new_state) << bit;
111 }
88c8ab1f
SW
112}
113
114/**
115 * gfs2_testbit - test a bit in the bitmaps
c04a2ef3 116 * @rbm: The bit to test
dffe12a8
BP
117 * @use_clone: If true, test the clone bitmap, not the official bitmap.
118 *
119 * Some callers like gfs2_unaligned_extlen need to test the clone bitmaps,
120 * not the "real" bitmaps, to avoid allocating recently freed blocks.
88c8ab1f 121 *
c04a2ef3 122 * Returns: The two bit block state of the requested bit
88c8ab1f
SW
123 */
124
dffe12a8 125static inline u8 gfs2_testbit(const struct gfs2_rbm *rbm, bool use_clone)
88c8ab1f 126{
e579ed4f 127 struct gfs2_bitmap *bi = rbm_bi(rbm);
dffe12a8 128 const u8 *buffer;
c04a2ef3 129 const u8 *byte;
88c8ab1f
SW
130 unsigned int bit;
131
dffe12a8
BP
132 if (use_clone && bi->bi_clone)
133 buffer = bi->bi_clone;
134 else
135 buffer = bi->bi_bh->b_data;
136 buffer += bi->bi_offset;
c04a2ef3
SW
137 byte = buffer + (rbm->offset / GFS2_NBBY);
138 bit = (rbm->offset % GFS2_NBBY) * GFS2_BIT_SIZE;
88c8ab1f 139
c04a2ef3 140 return (*byte >> bit) & GFS2_BIT_MASK;
88c8ab1f
SW
141}
142
223b2b88
SW
143/**
144 * gfs2_bit_search
145 * @ptr: Pointer to bitmap data
146 * @mask: Mask to use (normally 0x55555.... but adjusted for search start)
147 * @state: The state we are searching for
148 *
149 * We xor the bitmap data with a patter which is the bitwise opposite
150 * of what we are looking for, this gives rise to a pattern of ones
151 * wherever there is a match. Since we have two bits per entry, we
152 * take this pattern, shift it down by one place and then and it with
153 * the original. All the even bit positions (0,2,4, etc) then represent
154 * successful matches, so we mask with 0x55555..... to remove the unwanted
155 * odd bit positions.
156 *
157 * This allows searching of a whole u64 at once (32 blocks) with a
158 * single test (on 64 bit arches).
159 */
160
161static inline u64 gfs2_bit_search(const __le64 *ptr, u64 mask, u8 state)
162{
163 u64 tmp;
164 static const u64 search[] = {
075ac448
HE
165 [0] = 0xffffffffffffffffULL,
166 [1] = 0xaaaaaaaaaaaaaaaaULL,
167 [2] = 0x5555555555555555ULL,
168 [3] = 0x0000000000000000ULL,
223b2b88
SW
169 };
170 tmp = le64_to_cpu(*ptr) ^ search[state];
171 tmp &= (tmp >> 1);
172 tmp &= mask;
173 return tmp;
174}
175
8e2e0047
BP
176/**
177 * rs_cmp - multi-block reservation range compare
178 * @blk: absolute file system block number of the new reservation
179 * @len: number of blocks in the new reservation
180 * @rs: existing reservation to compare against
181 *
182 * returns: 1 if the block range is beyond the reach of the reservation
183 * -1 if the block range is before the start of the reservation
184 * 0 if the block range overlaps with the reservation
185 */
186static inline int rs_cmp(u64 blk, u32 len, struct gfs2_blkreserv *rs)
187{
4a993fb1 188 u64 startblk = gfs2_rbm_to_block(&rs->rs_rbm);
8e2e0047
BP
189
190 if (blk >= startblk + rs->rs_free)
191 return 1;
192 if (blk + len - 1 < startblk)
193 return -1;
194 return 0;
195}
196
88c8ab1f
SW
197/**
198 * gfs2_bitfit - Search an rgrp's bitmap buffer to find a bit-pair representing
199 * a block in a given allocation state.
886b1416 200 * @buf: the buffer that holds the bitmaps
223b2b88 201 * @len: the length (in bytes) of the buffer
88c8ab1f 202 * @goal: start search at this block's bit-pair (within @buffer)
223b2b88 203 * @state: GFS2_BLKST_XXX the state of the block we're looking for.
88c8ab1f
SW
204 *
205 * Scope of @goal and returned block number is only within this bitmap buffer,
206 * not entire rgrp or filesystem. @buffer will be offset from the actual
223b2b88
SW
207 * beginning of a bitmap block buffer, skipping any header structures, but
208 * headers are always a multiple of 64 bits long so that the buffer is
209 * always aligned to a 64 bit boundary.
210 *
211 * The size of the buffer is in bytes, but is it assumed that it is
fd589a8f 212 * always ok to read a complete multiple of 64 bits at the end
223b2b88 213 * of the block in case the end is no aligned to a natural boundary.
88c8ab1f
SW
214 *
215 * Return: the block number (bitmap buffer scope) that was found
216 */
217
02ab1721
HE
218static u32 gfs2_bitfit(const u8 *buf, const unsigned int len,
219 u32 goal, u8 state)
88c8ab1f 220{
223b2b88
SW
221 u32 spoint = (goal << 1) & ((8*sizeof(u64)) - 1);
222 const __le64 *ptr = ((__le64 *)buf) + (goal >> 5);
223 const __le64 *end = (__le64 *)(buf + ALIGN(len, sizeof(u64)));
224 u64 tmp;
075ac448 225 u64 mask = 0x5555555555555555ULL;
223b2b88
SW
226 u32 bit;
227
223b2b88
SW
228 /* Mask off bits we don't care about at the start of the search */
229 mask <<= spoint;
230 tmp = gfs2_bit_search(ptr, mask, state);
231 ptr++;
232 while(tmp == 0 && ptr < end) {
075ac448 233 tmp = gfs2_bit_search(ptr, 0x5555555555555555ULL, state);
223b2b88 234 ptr++;
1f466a47 235 }
223b2b88
SW
236 /* Mask off any bits which are more than len bytes from the start */
237 if (ptr == end && (len & (sizeof(u64) - 1)))
238 tmp &= (((u64)~0) >> (64 - 8*(len & (sizeof(u64) - 1))));
239 /* Didn't find anything, so return */
240 if (tmp == 0)
241 return BFITNOENT;
242 ptr--;
d8bd504a 243 bit = __ffs64(tmp);
223b2b88
SW
244 bit /= 2; /* two bits per entry in the bitmap */
245 return (((const unsigned char *)ptr - buf) * GFS2_NBBY) + bit;
88c8ab1f
SW
246}
247
ff7f4cb4
SW
248/**
249 * gfs2_rbm_from_block - Set the rbm based upon rgd and block number
250 * @rbm: The rbm with rgd already set correctly
251 * @block: The block number (filesystem relative)
252 *
253 * This sets the bi and offset members of an rbm based on a
254 * resource group and a filesystem relative block number. The
255 * resource group must be set in the rbm on entry, the bi and
256 * offset members will be set by this function.
257 *
258 * Returns: 0 on success, or an error code
259 */
260
261static int gfs2_rbm_from_block(struct gfs2_rbm *rbm, u64 block)
262{
3548fce1 263 if (!rgrp_contains_block(rbm->rgd, block))
ff7f4cb4 264 return -E2BIG;
e579ed4f 265 rbm->bii = 0;
3548fce1 266 rbm->offset = block - rbm->rgd->rd_data0;
a68a0a35 267 /* Check if the block is within the first block */
e579ed4f 268 if (rbm->offset < rbm_bi(rbm)->bi_blocks)
a68a0a35
BP
269 return 0;
270
271 /* Adjust for the size diff between gfs2_meta_header and gfs2_rgrp */
272 rbm->offset += (sizeof(struct gfs2_rgrp) -
273 sizeof(struct gfs2_meta_header)) * GFS2_NBBY;
e579ed4f
BP
274 rbm->bii = rbm->offset / rbm->rgd->rd_sbd->sd_blocks_per_bitmap;
275 rbm->offset -= rbm->bii * rbm->rgd->rd_sbd->sd_blocks_per_bitmap;
ff7f4cb4
SW
276 return 0;
277}
278
149ed7f5
BP
279/**
280 * gfs2_rbm_incr - increment an rbm structure
281 * @rbm: The rbm with rgd already set correctly
282 *
283 * This function takes an existing rbm structure and increments it to the next
284 * viable block offset.
285 *
286 * Returns: If incrementing the offset would cause the rbm to go past the
287 * end of the rgrp, true is returned, otherwise false.
288 *
289 */
290
291static bool gfs2_rbm_incr(struct gfs2_rbm *rbm)
292{
293 if (rbm->offset + 1 < rbm_bi(rbm)->bi_blocks) { /* in the same bitmap */
294 rbm->offset++;
295 return false;
296 }
297 if (rbm->bii == rbm->rgd->rd_length - 1) /* at the last bitmap */
298 return true;
299
300 rbm->offset = 0;
301 rbm->bii++;
302 return false;
303}
304
ff7f4cb4
SW
305/**
306 * gfs2_unaligned_extlen - Look for free blocks which are not byte aligned
307 * @rbm: Position to search (value/result)
308 * @n_unaligned: Number of unaligned blocks to check
309 * @len: Decremented for each block found (terminate on zero)
310 *
311 * Returns: true if a non-free block is encountered
312 */
313
314static bool gfs2_unaligned_extlen(struct gfs2_rbm *rbm, u32 n_unaligned, u32 *len)
315{
ff7f4cb4
SW
316 u32 n;
317 u8 res;
318
319 for (n = 0; n < n_unaligned; n++) {
dffe12a8 320 res = gfs2_testbit(rbm, true);
ff7f4cb4
SW
321 if (res != GFS2_BLKST_FREE)
322 return true;
323 (*len)--;
324 if (*len == 0)
325 return true;
149ed7f5 326 if (gfs2_rbm_incr(rbm))
ff7f4cb4
SW
327 return true;
328 }
329
330 return false;
331}
332
333/**
334 * gfs2_free_extlen - Return extent length of free blocks
27ff6a0f 335 * @rrbm: Starting position
ff7f4cb4
SW
336 * @len: Max length to check
337 *
338 * Starting at the block specified by the rbm, see how many free blocks
339 * there are, not reading more than len blocks ahead. This can be done
340 * using memchr_inv when the blocks are byte aligned, but has to be done
341 * on a block by block basis in case of unaligned blocks. Also this
342 * function can cope with bitmap boundaries (although it must stop on
343 * a resource group boundary)
344 *
345 * Returns: Number of free blocks in the extent
346 */
347
348static u32 gfs2_free_extlen(const struct gfs2_rbm *rrbm, u32 len)
349{
350 struct gfs2_rbm rbm = *rrbm;
351 u32 n_unaligned = rbm.offset & 3;
352 u32 size = len;
353 u32 bytes;
354 u32 chunk_size;
355 u8 *ptr, *start, *end;
356 u64 block;
e579ed4f 357 struct gfs2_bitmap *bi;
ff7f4cb4
SW
358
359 if (n_unaligned &&
360 gfs2_unaligned_extlen(&rbm, 4 - n_unaligned, &len))
361 goto out;
362
3701530a 363 n_unaligned = len & 3;
ff7f4cb4
SW
364 /* Start is now byte aligned */
365 while (len > 3) {
e579ed4f
BP
366 bi = rbm_bi(&rbm);
367 start = bi->bi_bh->b_data;
368 if (bi->bi_clone)
369 start = bi->bi_clone;
e579ed4f 370 start += bi->bi_offset;
281b4952 371 end = start + bi->bi_bytes;
ff7f4cb4
SW
372 BUG_ON(rbm.offset & 3);
373 start += (rbm.offset / GFS2_NBBY);
374 bytes = min_t(u32, len / GFS2_NBBY, (end - start));
375 ptr = memchr_inv(start, 0, bytes);
376 chunk_size = ((ptr == NULL) ? bytes : (ptr - start));
377 chunk_size *= GFS2_NBBY;
378 BUG_ON(len < chunk_size);
379 len -= chunk_size;
380 block = gfs2_rbm_to_block(&rbm);
15bd50ad
BP
381 if (gfs2_rbm_from_block(&rbm, block + chunk_size)) {
382 n_unaligned = 0;
ff7f4cb4 383 break;
15bd50ad
BP
384 }
385 if (ptr) {
386 n_unaligned = 3;
387 break;
388 }
ff7f4cb4
SW
389 n_unaligned = len & 3;
390 }
391
392 /* Deal with any bits left over at the end */
393 if (n_unaligned)
394 gfs2_unaligned_extlen(&rbm, n_unaligned, &len);
395out:
396 return size - len;
397}
398
88c8ab1f
SW
399/**
400 * gfs2_bitcount - count the number of bits in a certain state
886b1416 401 * @rgd: the resource group descriptor
88c8ab1f
SW
402 * @buffer: the buffer that holds the bitmaps
403 * @buflen: the length (in bytes) of the buffer
404 * @state: the state of the block we're looking for
405 *
406 * Returns: The number of bits
407 */
408
110acf38
SW
409static u32 gfs2_bitcount(struct gfs2_rgrpd *rgd, const u8 *buffer,
410 unsigned int buflen, u8 state)
88c8ab1f 411{
110acf38
SW
412 const u8 *byte = buffer;
413 const u8 *end = buffer + buflen;
414 const u8 state1 = state << 2;
415 const u8 state2 = state << 4;
416 const u8 state3 = state << 6;
cd915493 417 u32 count = 0;
88c8ab1f
SW
418
419 for (; byte < end; byte++) {
420 if (((*byte) & 0x03) == state)
421 count++;
422 if (((*byte) & 0x0C) == state1)
423 count++;
424 if (((*byte) & 0x30) == state2)
425 count++;
426 if (((*byte) & 0xC0) == state3)
427 count++;
428 }
429
430 return count;
431}
432
b3b94faa
DT
433/**
434 * gfs2_rgrp_verify - Verify that a resource group is consistent
b3b94faa
DT
435 * @rgd: the rgrp
436 *
437 */
438
439void gfs2_rgrp_verify(struct gfs2_rgrpd *rgd)
440{
441 struct gfs2_sbd *sdp = rgd->rd_sbd;
442 struct gfs2_bitmap *bi = NULL;
bb8d8a6f 443 u32 length = rgd->rd_length;
cd915493 444 u32 count[4], tmp;
b3b94faa
DT
445 int buf, x;
446
cd915493 447 memset(count, 0, 4 * sizeof(u32));
b3b94faa
DT
448
449 /* Count # blocks in each of 4 possible allocation states */
450 for (buf = 0; buf < length; buf++) {
451 bi = rgd->rd_bits + buf;
452 for (x = 0; x < 4; x++)
453 count[x] += gfs2_bitcount(rgd,
454 bi->bi_bh->b_data +
455 bi->bi_offset,
281b4952 456 bi->bi_bytes, x);
b3b94faa
DT
457 }
458
cfc8b549 459 if (count[0] != rgd->rd_free) {
8dc88ac6
AG
460 gfs2_lm(sdp, "free data mismatch: %u != %u\n",
461 count[0], rgd->rd_free);
462 gfs2_consist_rgrpd(rgd);
b3b94faa
DT
463 return;
464 }
465
73f74948 466 tmp = rgd->rd_data - rgd->rd_free - rgd->rd_dinodes;
6b946170 467 if (count[1] != tmp) {
8dc88ac6
AG
468 gfs2_lm(sdp, "used data mismatch: %u != %u\n",
469 count[1], tmp);
470 gfs2_consist_rgrpd(rgd);
b3b94faa
DT
471 return;
472 }
473
6b946170 474 if (count[2] + count[3] != rgd->rd_dinodes) {
8dc88ac6
AG
475 gfs2_lm(sdp, "used metadata mismatch: %u != %u\n",
476 count[2] + count[3], rgd->rd_dinodes);
477 gfs2_consist_rgrpd(rgd);
b3b94faa
DT
478 return;
479 }
b3b94faa
DT
480}
481
b3b94faa
DT
482/**
483 * gfs2_blk2rgrpd - Find resource group for a given data/meta block number
484 * @sdp: The GFS2 superblock
886b1416
BP
485 * @blk: The data block number
486 * @exact: True if this needs to be an exact match
b3b94faa 487 *
90bcab99
SW
488 * The @exact argument should be set to true by most callers. The exception
489 * is when we need to match blocks which are not represented by the rgrp
490 * bitmap, but which are part of the rgrp (i.e. padding blocks) which are
491 * there for alignment purposes. Another way of looking at it is that @exact
492 * matches only valid data/metadata blocks, but with @exact false, it will
493 * match any block within the extent of the rgrp.
494 *
b3b94faa
DT
495 * Returns: The resource group, or NULL if not found
496 */
497
66fc061b 498struct gfs2_rgrpd *gfs2_blk2rgrpd(struct gfs2_sbd *sdp, u64 blk, bool exact)
b3b94faa 499{
66fc061b 500 struct rb_node *n, *next;
f75bbfb4 501 struct gfs2_rgrpd *cur;
b3b94faa
DT
502
503 spin_lock(&sdp->sd_rindex_spin);
66fc061b
SW
504 n = sdp->sd_rindex_tree.rb_node;
505 while (n) {
506 cur = rb_entry(n, struct gfs2_rgrpd, rd_node);
507 next = NULL;
7c9ca621 508 if (blk < cur->rd_addr)
66fc061b 509 next = n->rb_left;
f75bbfb4 510 else if (blk >= cur->rd_data0 + cur->rd_data)
66fc061b
SW
511 next = n->rb_right;
512 if (next == NULL) {
b3b94faa 513 spin_unlock(&sdp->sd_rindex_spin);
66fc061b
SW
514 if (exact) {
515 if (blk < cur->rd_addr)
516 return NULL;
517 if (blk >= cur->rd_data0 + cur->rd_data)
518 return NULL;
519 }
7c9ca621 520 return cur;
b3b94faa 521 }
66fc061b 522 n = next;
b3b94faa 523 }
b3b94faa
DT
524 spin_unlock(&sdp->sd_rindex_spin);
525
526 return NULL;
527}
528
529/**
530 * gfs2_rgrpd_get_first - get the first Resource Group in the filesystem
531 * @sdp: The GFS2 superblock
532 *
533 * Returns: The first rgrp in the filesystem
534 */
535
536struct gfs2_rgrpd *gfs2_rgrpd_get_first(struct gfs2_sbd *sdp)
537{
7c9ca621
BP
538 const struct rb_node *n;
539 struct gfs2_rgrpd *rgd;
540
8339ee54 541 spin_lock(&sdp->sd_rindex_spin);
7c9ca621
BP
542 n = rb_first(&sdp->sd_rindex_tree);
543 rgd = rb_entry(n, struct gfs2_rgrpd, rd_node);
8339ee54 544 spin_unlock(&sdp->sd_rindex_spin);
7c9ca621
BP
545
546 return rgd;
b3b94faa
DT
547}
548
549/**
550 * gfs2_rgrpd_get_next - get the next RG
886b1416 551 * @rgd: the resource group descriptor
b3b94faa
DT
552 *
553 * Returns: The next rgrp
554 */
555
556struct gfs2_rgrpd *gfs2_rgrpd_get_next(struct gfs2_rgrpd *rgd)
557{
7c9ca621
BP
558 struct gfs2_sbd *sdp = rgd->rd_sbd;
559 const struct rb_node *n;
560
561 spin_lock(&sdp->sd_rindex_spin);
562 n = rb_next(&rgd->rd_node);
563 if (n == NULL)
564 n = rb_first(&sdp->sd_rindex_tree);
565
566 if (unlikely(&rgd->rd_node == n)) {
567 spin_unlock(&sdp->sd_rindex_spin);
b3b94faa 568 return NULL;
7c9ca621
BP
569 }
570 rgd = rb_entry(n, struct gfs2_rgrpd, rd_node);
571 spin_unlock(&sdp->sd_rindex_spin);
572 return rgd;
b3b94faa
DT
573}
574
00a158be
AD
575void check_and_update_goal(struct gfs2_inode *ip)
576{
577 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
578 if (!ip->i_goal || gfs2_blk2rgrpd(sdp, ip->i_goal, 1) == NULL)
579 ip->i_goal = ip->i_no_addr;
580}
581
8339ee54
SW
582void gfs2_free_clones(struct gfs2_rgrpd *rgd)
583{
584 int x;
585
586 for (x = 0; x < rgd->rd_length; x++) {
587 struct gfs2_bitmap *bi = rgd->rd_bits + x;
588 kfree(bi->bi_clone);
589 bi->bi_clone = NULL;
590 }
591}
592
3792ce97
BP
593static void dump_rs(struct seq_file *seq, const struct gfs2_blkreserv *rs,
594 const char *fs_id_buf)
8e2e0047 595{
f85c10e2
BP
596 struct gfs2_inode *ip = container_of(rs, struct gfs2_inode, i_res);
597
3792ce97 598 gfs2_print_dbg(seq, "%s B: n:%llu s:%llu b:%u f:%u\n", fs_id_buf,
f85c10e2 599 (unsigned long long)ip->i_no_addr,
9e733d39 600 (unsigned long long)gfs2_rbm_to_block(&rs->rs_rbm),
4a993fb1 601 rs->rs_rbm.offset, rs->rs_free);
8e2e0047
BP
602}
603
0a305e49 604/**
8e2e0047
BP
605 * __rs_deltree - remove a multi-block reservation from the rgd tree
606 * @rs: The reservation to remove
607 *
608 */
20095218 609static void __rs_deltree(struct gfs2_blkreserv *rs)
8e2e0047
BP
610{
611 struct gfs2_rgrpd *rgd;
612
613 if (!gfs2_rs_active(rs))
614 return;
615
4a993fb1 616 rgd = rs->rs_rbm.rgd;
9e733d39 617 trace_gfs2_rs(rs, TRACE_RS_TREEDEL);
4a993fb1 618 rb_erase(&rs->rs_node, &rgd->rd_rstree);
24d634e8 619 RB_CLEAR_NODE(&rs->rs_node);
8e2e0047
BP
620
621 if (rs->rs_free) {
ec23df2b
AG
622 u64 last_block = gfs2_rbm_to_block(&rs->rs_rbm) +
623 rs->rs_free - 1;
624 struct gfs2_rbm last_rbm = { .rgd = rs->rs_rbm.rgd, };
625 struct gfs2_bitmap *start, *last;
e579ed4f 626
20095218 627 /* return reserved blocks to the rgrp */
4a993fb1
SW
628 BUG_ON(rs->rs_rbm.rgd->rd_reserved < rs->rs_free);
629 rs->rs_rbm.rgd->rd_reserved -= rs->rs_free;
5ea5050c
BP
630 /* The rgrp extent failure point is likely not to increase;
631 it will only do so if the freed blocks are somehow
632 contiguous with a span of free blocks that follows. Still,
633 it will force the number to be recalculated later. */
634 rgd->rd_extfail_pt += rs->rs_free;
8e2e0047 635 rs->rs_free = 0;
ec23df2b
AG
636 if (gfs2_rbm_from_block(&last_rbm, last_block))
637 return;
638 start = rbm_bi(&rs->rs_rbm);
639 last = rbm_bi(&last_rbm);
640 do
641 clear_bit(GBF_FULL, &start->bi_flags);
642 while (start++ != last);
8e2e0047 643 }
8e2e0047
BP
644}
645
646/**
647 * gfs2_rs_deltree - remove a multi-block reservation from the rgd tree
648 * @rs: The reservation to remove
649 *
650 */
20095218 651void gfs2_rs_deltree(struct gfs2_blkreserv *rs)
8e2e0047
BP
652{
653 struct gfs2_rgrpd *rgd;
654
4a993fb1
SW
655 rgd = rs->rs_rbm.rgd;
656 if (rgd) {
657 spin_lock(&rgd->rd_rsspin);
20095218 658 __rs_deltree(rs);
44f52122 659 BUG_ON(rs->rs_free);
4a993fb1
SW
660 spin_unlock(&rgd->rd_rsspin);
661 }
8e2e0047
BP
662}
663
664/**
1595548f 665 * gfs2_rs_delete - delete a multi-block reservation
0a305e49 666 * @ip: The inode for this reservation
af5c2697 667 * @wcount: The inode's write count, or NULL
0a305e49
BP
668 *
669 */
1595548f 670void gfs2_rs_delete(struct gfs2_inode *ip, atomic_t *wcount)
0a305e49
BP
671{
672 down_write(&ip->i_rw_mutex);
44f52122 673 if ((wcount == NULL) || (atomic_read(wcount) <= 1))
a097dc7e 674 gfs2_rs_deltree(&ip->i_res);
0a305e49
BP
675 up_write(&ip->i_rw_mutex);
676}
677
8e2e0047
BP
678/**
679 * return_all_reservations - return all reserved blocks back to the rgrp.
680 * @rgd: the rgrp that needs its space back
681 *
682 * We previously reserved a bunch of blocks for allocation. Now we need to
683 * give them back. This leave the reservation structures in tact, but removes
684 * all of their corresponding "no-fly zones".
685 */
686static void return_all_reservations(struct gfs2_rgrpd *rgd)
687{
688 struct rb_node *n;
689 struct gfs2_blkreserv *rs;
690
691 spin_lock(&rgd->rd_rsspin);
692 while ((n = rb_first(&rgd->rd_rstree))) {
693 rs = rb_entry(n, struct gfs2_blkreserv, rs_node);
20095218 694 __rs_deltree(rs);
8e2e0047
BP
695 }
696 spin_unlock(&rgd->rd_rsspin);
697}
698
8339ee54 699void gfs2_clear_rgrpd(struct gfs2_sbd *sdp)
b3b94faa 700{
7c9ca621 701 struct rb_node *n;
b3b94faa
DT
702 struct gfs2_rgrpd *rgd;
703 struct gfs2_glock *gl;
704
7c9ca621
BP
705 while ((n = rb_first(&sdp->sd_rindex_tree))) {
706 rgd = rb_entry(n, struct gfs2_rgrpd, rd_node);
b3b94faa
DT
707 gl = rgd->rd_gl;
708
7c9ca621 709 rb_erase(n, &sdp->sd_rindex_tree);
b3b94faa
DT
710
711 if (gl) {
b3422cac
BP
712 if (gl->gl_state != LM_ST_UNLOCKED) {
713 gfs2_glock_cb(gl, LM_ST_UNLOCKED);
714 flush_delayed_work(&gl->gl_work);
715 }
10283ea5 716 gfs2_rgrp_brelse(rgd);
b3422cac 717 glock_clear_object(gl, rgd);
b3b94faa
DT
718 gfs2_glock_put(gl);
719 }
720
8339ee54 721 gfs2_free_clones(rgd);
b3b94faa 722 kfree(rgd->rd_bits);
36e4ad03 723 rgd->rd_bits = NULL;
8e2e0047 724 return_all_reservations(rgd);
6bdd9be6 725 kmem_cache_free(gfs2_rgrpd_cachep, rgd);
b3b94faa
DT
726 }
727}
728
b3b94faa
DT
729/**
730 * gfs2_compute_bitstructs - Compute the bitmap sizes
731 * @rgd: The resource group descriptor
732 *
733 * Calculates bitmap descriptors, one for each block that contains bitmap data
734 *
735 * Returns: errno
736 */
737
738static int compute_bitstructs(struct gfs2_rgrpd *rgd)
739{
740 struct gfs2_sbd *sdp = rgd->rd_sbd;
741 struct gfs2_bitmap *bi;
bb8d8a6f 742 u32 length = rgd->rd_length; /* # blocks in hdr & bitmap */
cd915493 743 u32 bytes_left, bytes;
b3b94faa
DT
744 int x;
745
feaa7bba
SW
746 if (!length)
747 return -EINVAL;
748
dd894be8 749 rgd->rd_bits = kcalloc(length, sizeof(struct gfs2_bitmap), GFP_NOFS);
b3b94faa
DT
750 if (!rgd->rd_bits)
751 return -ENOMEM;
752
bb8d8a6f 753 bytes_left = rgd->rd_bitbytes;
b3b94faa
DT
754
755 for (x = 0; x < length; x++) {
756 bi = rgd->rd_bits + x;
757
60a0b8f9 758 bi->bi_flags = 0;
b3b94faa
DT
759 /* small rgrp; bitmap stored completely in header block */
760 if (length == 1) {
761 bytes = bytes_left;
762 bi->bi_offset = sizeof(struct gfs2_rgrp);
763 bi->bi_start = 0;
281b4952 764 bi->bi_bytes = bytes;
7e230f57 765 bi->bi_blocks = bytes * GFS2_NBBY;
b3b94faa
DT
766 /* header block */
767 } else if (x == 0) {
768 bytes = sdp->sd_sb.sb_bsize - sizeof(struct gfs2_rgrp);
769 bi->bi_offset = sizeof(struct gfs2_rgrp);
770 bi->bi_start = 0;
281b4952 771 bi->bi_bytes = bytes;
7e230f57 772 bi->bi_blocks = bytes * GFS2_NBBY;
b3b94faa
DT
773 /* last block */
774 } else if (x + 1 == length) {
775 bytes = bytes_left;
776 bi->bi_offset = sizeof(struct gfs2_meta_header);
bb8d8a6f 777 bi->bi_start = rgd->rd_bitbytes - bytes_left;
281b4952 778 bi->bi_bytes = bytes;
7e230f57 779 bi->bi_blocks = bytes * GFS2_NBBY;
b3b94faa
DT
780 /* other blocks */
781 } else {
568f4c96
SW
782 bytes = sdp->sd_sb.sb_bsize -
783 sizeof(struct gfs2_meta_header);
b3b94faa 784 bi->bi_offset = sizeof(struct gfs2_meta_header);
bb8d8a6f 785 bi->bi_start = rgd->rd_bitbytes - bytes_left;
281b4952 786 bi->bi_bytes = bytes;
7e230f57 787 bi->bi_blocks = bytes * GFS2_NBBY;
b3b94faa
DT
788 }
789
790 bytes_left -= bytes;
791 }
792
793 if (bytes_left) {
794 gfs2_consist_rgrpd(rgd);
795 return -EIO;
796 }
797 bi = rgd->rd_bits + (length - 1);
281b4952 798 if ((bi->bi_start + bi->bi_bytes) * GFS2_NBBY != rgd->rd_data) {
8dc88ac6
AG
799 gfs2_lm(sdp,
800 "ri_addr = %llu\n"
801 "ri_length = %u\n"
802 "ri_data0 = %llu\n"
803 "ri_data = %u\n"
804 "ri_bitbytes = %u\n"
805 "start=%u len=%u offset=%u\n",
806 (unsigned long long)rgd->rd_addr,
807 rgd->rd_length,
808 (unsigned long long)rgd->rd_data0,
809 rgd->rd_data,
810 rgd->rd_bitbytes,
811 bi->bi_start, bi->bi_bytes, bi->bi_offset);
812 gfs2_consist_rgrpd(rgd);
b3b94faa
DT
813 return -EIO;
814 }
815
816 return 0;
817}
818
7ae8fa84
RP
819/**
820 * gfs2_ri_total - Total up the file system space, according to the rindex.
886b1416 821 * @sdp: the filesystem
7ae8fa84
RP
822 *
823 */
824u64 gfs2_ri_total(struct gfs2_sbd *sdp)
825{
826 u64 total_data = 0;
827 struct inode *inode = sdp->sd_rindex;
828 struct gfs2_inode *ip = GFS2_I(inode);
7ae8fa84 829 char buf[sizeof(struct gfs2_rindex)];
7ae8fa84
RP
830 int error, rgrps;
831
7ae8fa84
RP
832 for (rgrps = 0;; rgrps++) {
833 loff_t pos = rgrps * sizeof(struct gfs2_rindex);
834
bcd7278d 835 if (pos + sizeof(struct gfs2_rindex) > i_size_read(inode))
7ae8fa84 836 break;
4306629e 837 error = gfs2_internal_read(ip, buf, &pos,
7ae8fa84
RP
838 sizeof(struct gfs2_rindex));
839 if (error != sizeof(struct gfs2_rindex))
840 break;
bb8d8a6f 841 total_data += be32_to_cpu(((struct gfs2_rindex *)buf)->ri_data);
7ae8fa84 842 }
7ae8fa84
RP
843 return total_data;
844}
845
6aad1c3d 846static int rgd_insert(struct gfs2_rgrpd *rgd)
7c9ca621
BP
847{
848 struct gfs2_sbd *sdp = rgd->rd_sbd;
849 struct rb_node **newn = &sdp->sd_rindex_tree.rb_node, *parent = NULL;
850
851 /* Figure out where to put new node */
852 while (*newn) {
853 struct gfs2_rgrpd *cur = rb_entry(*newn, struct gfs2_rgrpd,
854 rd_node);
855
856 parent = *newn;
857 if (rgd->rd_addr < cur->rd_addr)
858 newn = &((*newn)->rb_left);
859 else if (rgd->rd_addr > cur->rd_addr)
860 newn = &((*newn)->rb_right);
861 else
6aad1c3d 862 return -EEXIST;
7c9ca621
BP
863 }
864
865 rb_link_node(&rgd->rd_node, parent, newn);
866 rb_insert_color(&rgd->rd_node, &sdp->sd_rindex_tree);
6aad1c3d
BP
867 sdp->sd_rgrps++;
868 return 0;
7c9ca621
BP
869}
870
b3b94faa 871/**
6c53267f 872 * read_rindex_entry - Pull in a new resource index entry from the disk
4306629e 873 * @ip: Pointer to the rindex inode
b3b94faa 874 *
8339ee54 875 * Returns: 0 on success, > 0 on EOF, error code otherwise
6c53267f
RP
876 */
877
4306629e 878static int read_rindex_entry(struct gfs2_inode *ip)
6c53267f
RP
879{
880 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
7005c3e4 881 const unsigned bsize = sdp->sd_sb.sb_bsize;
6c53267f 882 loff_t pos = sdp->sd_rgrps * sizeof(struct gfs2_rindex);
8339ee54 883 struct gfs2_rindex buf;
6c53267f
RP
884 int error;
885 struct gfs2_rgrpd *rgd;
886
8339ee54
SW
887 if (pos >= i_size_read(&ip->i_inode))
888 return 1;
889
4306629e 890 error = gfs2_internal_read(ip, (char *)&buf, &pos,
6c53267f 891 sizeof(struct gfs2_rindex));
8339ee54
SW
892
893 if (error != sizeof(struct gfs2_rindex))
894 return (error == 0) ? 1 : error;
6c53267f 895
6bdd9be6 896 rgd = kmem_cache_zalloc(gfs2_rgrpd_cachep, GFP_NOFS);
6c53267f
RP
897 error = -ENOMEM;
898 if (!rgd)
899 return error;
900
6c53267f 901 rgd->rd_sbd = sdp;
8339ee54
SW
902 rgd->rd_addr = be64_to_cpu(buf.ri_addr);
903 rgd->rd_length = be32_to_cpu(buf.ri_length);
904 rgd->rd_data0 = be64_to_cpu(buf.ri_data0);
905 rgd->rd_data = be32_to_cpu(buf.ri_data);
906 rgd->rd_bitbytes = be32_to_cpu(buf.ri_bitbytes);
8e2e0047 907 spin_lock_init(&rgd->rd_rsspin);
7c9ca621 908
6c53267f
RP
909 error = compute_bitstructs(rgd);
910 if (error)
8339ee54 911 goto fail;
6c53267f 912
bb8d8a6f 913 error = gfs2_glock_get(sdp, rgd->rd_addr,
6c53267f
RP
914 &gfs2_rgrp_glops, CREATE, &rgd->rd_gl);
915 if (error)
8339ee54 916 goto fail;
6c53267f 917
4e2f8849 918 rgd->rd_rgl = (struct gfs2_rgrp_lvb *)rgd->rd_gl->gl_lksb.sb_lvbptr;
0e27c18c 919 rgd->rd_flags &= ~(GFS2_RDF_UPTODATE | GFS2_RDF_PREFERRED);
7c9ca621
BP
920 if (rgd->rd_data > sdp->sd_max_rg_data)
921 sdp->sd_max_rg_data = rgd->rd_data;
8339ee54 922 spin_lock(&sdp->sd_rindex_spin);
6aad1c3d 923 error = rgd_insert(rgd);
8339ee54 924 spin_unlock(&sdp->sd_rindex_spin);
36e4ad03 925 if (!error) {
6f6597ba 926 glock_set_object(rgd->rd_gl, rgd);
36e4ad03
BP
927 rgd->rd_gl->gl_vm.start = (rgd->rd_addr * bsize) & PAGE_MASK;
928 rgd->rd_gl->gl_vm.end = PAGE_ALIGN((rgd->rd_addr +
929 rgd->rd_length) * bsize) - 1;
6aad1c3d 930 return 0;
36e4ad03 931 }
6aad1c3d
BP
932
933 error = 0; /* someone else read in the rgrp; free it and ignore it */
c1ac539e 934 gfs2_glock_put(rgd->rd_gl);
8339ee54
SW
935
936fail:
937 kfree(rgd->rd_bits);
36e4ad03 938 rgd->rd_bits = NULL;
8339ee54 939 kmem_cache_free(gfs2_rgrpd_cachep, rgd);
6c53267f
RP
940 return error;
941}
942
0e27c18c
BP
943/**
944 * set_rgrp_preferences - Run all the rgrps, selecting some we prefer to use
945 * @sdp: the GFS2 superblock
946 *
947 * The purpose of this function is to select a subset of the resource groups
948 * and mark them as PREFERRED. We do it in such a way that each node prefers
949 * to use a unique set of rgrps to minimize glock contention.
950 */
951static void set_rgrp_preferences(struct gfs2_sbd *sdp)
952{
953 struct gfs2_rgrpd *rgd, *first;
954 int i;
955
956 /* Skip an initial number of rgrps, based on this node's journal ID.
957 That should start each node out on its own set. */
958 rgd = gfs2_rgrpd_get_first(sdp);
959 for (i = 0; i < sdp->sd_lockstruct.ls_jid; i++)
960 rgd = gfs2_rgrpd_get_next(rgd);
961 first = rgd;
962
963 do {
964 rgd->rd_flags |= GFS2_RDF_PREFERRED;
965 for (i = 0; i < sdp->sd_journals; i++) {
966 rgd = gfs2_rgrpd_get_next(rgd);
959b6717 967 if (!rgd || rgd == first)
0e27c18c
BP
968 break;
969 }
959b6717 970 } while (rgd && rgd != first);
0e27c18c
BP
971}
972
6c53267f
RP
973/**
974 * gfs2_ri_update - Pull in a new resource index from the disk
975 * @ip: pointer to the rindex inode
976 *
b3b94faa
DT
977 * Returns: 0 on successful update, error code otherwise
978 */
979
8339ee54 980static int gfs2_ri_update(struct gfs2_inode *ip)
b3b94faa 981{
feaa7bba 982 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
b3b94faa
DT
983 int error;
984
8339ee54 985 do {
4306629e 986 error = read_rindex_entry(ip);
8339ee54
SW
987 } while (error == 0);
988
989 if (error < 0)
990 return error;
b3b94faa 991
0e27c18c
BP
992 set_rgrp_preferences(sdp);
993
cf45b752 994 sdp->sd_rindex_uptodate = 1;
6c53267f
RP
995 return 0;
996}
b3b94faa 997
b3b94faa 998/**
8339ee54 999 * gfs2_rindex_update - Update the rindex if required
b3b94faa 1000 * @sdp: The GFS2 superblock
b3b94faa
DT
1001 *
1002 * We grab a lock on the rindex inode to make sure that it doesn't
1003 * change whilst we are performing an operation. We keep this lock
1004 * for quite long periods of time compared to other locks. This
1005 * doesn't matter, since it is shared and it is very, very rarely
1006 * accessed in the exclusive mode (i.e. only when expanding the filesystem).
1007 *
1008 * This makes sure that we're using the latest copy of the resource index
1009 * special file, which might have been updated if someone expanded the
1010 * filesystem (via gfs2_grow utility), which adds new resource groups.
1011 *
8339ee54 1012 * Returns: 0 on succeess, error code otherwise
b3b94faa
DT
1013 */
1014
8339ee54 1015int gfs2_rindex_update(struct gfs2_sbd *sdp)
b3b94faa 1016{
feaa7bba 1017 struct gfs2_inode *ip = GFS2_I(sdp->sd_rindex);
b3b94faa 1018 struct gfs2_glock *gl = ip->i_gl;
8339ee54
SW
1019 struct gfs2_holder ri_gh;
1020 int error = 0;
a365fbf3 1021 int unlock_required = 0;
b3b94faa
DT
1022
1023 /* Read new copy from disk if we don't have the latest */
cf45b752 1024 if (!sdp->sd_rindex_uptodate) {
a365fbf3
SW
1025 if (!gfs2_glock_is_locked_by_me(gl)) {
1026 error = gfs2_glock_nq_init(gl, LM_ST_SHARED, 0, &ri_gh);
1027 if (error)
6aad1c3d 1028 return error;
a365fbf3
SW
1029 unlock_required = 1;
1030 }
8339ee54 1031 if (!sdp->sd_rindex_uptodate)
b3b94faa 1032 error = gfs2_ri_update(ip);
a365fbf3
SW
1033 if (unlock_required)
1034 gfs2_glock_dq_uninit(&ri_gh);
b3b94faa
DT
1035 }
1036
1037 return error;
1038}
1039
42d52e38 1040static void gfs2_rgrp_in(struct gfs2_rgrpd *rgd, const void *buf)
bb8d8a6f
SW
1041{
1042 const struct gfs2_rgrp *str = buf;
42d52e38 1043 u32 rg_flags;
bb8d8a6f 1044
42d52e38 1045 rg_flags = be32_to_cpu(str->rg_flags);
09010978 1046 rg_flags &= ~GFS2_RDF_MASK;
1ce97e56
SW
1047 rgd->rd_flags &= GFS2_RDF_MASK;
1048 rgd->rd_flags |= rg_flags;
cfc8b549 1049 rgd->rd_free = be32_to_cpu(str->rg_free);
73f74948 1050 rgd->rd_dinodes = be32_to_cpu(str->rg_dinodes);
d8b71f73 1051 rgd->rd_igeneration = be64_to_cpu(str->rg_igeneration);
166725d9 1052 /* rd_data0, rd_data and rd_bitbytes already set from rindex */
bb8d8a6f
SW
1053}
1054
3f30f929
BP
1055static void gfs2_rgrp_ondisk2lvb(struct gfs2_rgrp_lvb *rgl, const void *buf)
1056{
1057 const struct gfs2_rgrp *str = buf;
1058
1059 rgl->rl_magic = cpu_to_be32(GFS2_MAGIC);
1060 rgl->rl_flags = str->rg_flags;
1061 rgl->rl_free = str->rg_free;
1062 rgl->rl_dinodes = str->rg_dinodes;
1063 rgl->rl_igeneration = str->rg_igeneration;
1064 rgl->__pad = 0UL;
1065}
1066
42d52e38 1067static void gfs2_rgrp_out(struct gfs2_rgrpd *rgd, void *buf)
bb8d8a6f 1068{
65adc273 1069 struct gfs2_rgrpd *next = gfs2_rgrpd_get_next(rgd);
bb8d8a6f 1070 struct gfs2_rgrp *str = buf;
850d2d91 1071 u32 crc;
bb8d8a6f 1072
09010978 1073 str->rg_flags = cpu_to_be32(rgd->rd_flags & ~GFS2_RDF_MASK);
cfc8b549 1074 str->rg_free = cpu_to_be32(rgd->rd_free);
73f74948 1075 str->rg_dinodes = cpu_to_be32(rgd->rd_dinodes);
65adc273
AP
1076 if (next == NULL)
1077 str->rg_skip = 0;
1078 else if (next->rd_addr > rgd->rd_addr)
1079 str->rg_skip = cpu_to_be32(next->rd_addr - rgd->rd_addr);
d8b71f73 1080 str->rg_igeneration = cpu_to_be64(rgd->rd_igeneration);
166725d9
AP
1081 str->rg_data0 = cpu_to_be64(rgd->rd_data0);
1082 str->rg_data = cpu_to_be32(rgd->rd_data);
1083 str->rg_bitbytes = cpu_to_be32(rgd->rd_bitbytes);
850d2d91
AP
1084 str->rg_crc = 0;
1085 crc = gfs2_disk_hash(buf, sizeof(struct gfs2_rgrp));
1086 str->rg_crc = cpu_to_be32(crc);
166725d9 1087
bb8d8a6f 1088 memset(&str->rg_reserved, 0, sizeof(str->rg_reserved));
3f30f929 1089 gfs2_rgrp_ondisk2lvb(rgd->rd_rgl, buf);
bb8d8a6f
SW
1090}
1091
90306c41
BM
1092static int gfs2_rgrp_lvb_valid(struct gfs2_rgrpd *rgd)
1093{
1094 struct gfs2_rgrp_lvb *rgl = rgd->rd_rgl;
1095 struct gfs2_rgrp *str = (struct gfs2_rgrp *)rgd->rd_bits[0].bi_bh->b_data;
f29e62ee 1096 struct gfs2_sbd *sdp = rgd->rd_sbd;
72244b6b 1097 int valid = 1;
90306c41 1098
72244b6b 1099 if (rgl->rl_flags != str->rg_flags) {
f29e62ee
BP
1100 fs_warn(sdp, "GFS2: rgd: %llu lvb flag mismatch %u/%u",
1101 (unsigned long long)rgd->rd_addr,
72244b6b
BP
1102 be32_to_cpu(rgl->rl_flags), be32_to_cpu(str->rg_flags));
1103 valid = 0;
1104 }
1105 if (rgl->rl_free != str->rg_free) {
f29e62ee
BP
1106 fs_warn(sdp, "GFS2: rgd: %llu lvb free mismatch %u/%u",
1107 (unsigned long long)rgd->rd_addr,
1108 be32_to_cpu(rgl->rl_free), be32_to_cpu(str->rg_free));
72244b6b
BP
1109 valid = 0;
1110 }
1111 if (rgl->rl_dinodes != str->rg_dinodes) {
f29e62ee
BP
1112 fs_warn(sdp, "GFS2: rgd: %llu lvb dinode mismatch %u/%u",
1113 (unsigned long long)rgd->rd_addr,
1114 be32_to_cpu(rgl->rl_dinodes),
1115 be32_to_cpu(str->rg_dinodes));
72244b6b
BP
1116 valid = 0;
1117 }
1118 if (rgl->rl_igeneration != str->rg_igeneration) {
f29e62ee
BP
1119 fs_warn(sdp, "GFS2: rgd: %llu lvb igen mismatch %llu/%llu",
1120 (unsigned long long)rgd->rd_addr,
1121 (unsigned long long)be64_to_cpu(rgl->rl_igeneration),
1122 (unsigned long long)be64_to_cpu(str->rg_igeneration));
72244b6b
BP
1123 valid = 0;
1124 }
1125 return valid;
90306c41
BM
1126}
1127
90306c41
BM
1128static u32 count_unlinked(struct gfs2_rgrpd *rgd)
1129{
1130 struct gfs2_bitmap *bi;
1131 const u32 length = rgd->rd_length;
1132 const u8 *buffer = NULL;
1133 u32 i, goal, count = 0;
1134
1135 for (i = 0, bi = rgd->rd_bits; i < length; i++, bi++) {
1136 goal = 0;
1137 buffer = bi->bi_bh->b_data + bi->bi_offset;
1138 WARN_ON(!buffer_uptodate(bi->bi_bh));
281b4952
AG
1139 while (goal < bi->bi_blocks) {
1140 goal = gfs2_bitfit(buffer, bi->bi_bytes, goal,
90306c41
BM
1141 GFS2_BLKST_UNLINKED);
1142 if (goal == BFITNOENT)
1143 break;
1144 count++;
1145 goal++;
1146 }
1147 }
1148
1149 return count;
1150}
1151
1152
b3b94faa 1153/**
90306c41
BM
1154 * gfs2_rgrp_bh_get - Read in a RG's header and bitmaps
1155 * @rgd: the struct gfs2_rgrpd describing the RG to read in
b3b94faa
DT
1156 *
1157 * Read in all of a Resource Group's header and bitmap blocks.
10283ea5 1158 * Caller must eventually call gfs2_rgrp_brelse() to free the bitmaps.
b3b94faa
DT
1159 *
1160 * Returns: errno
1161 */
1162
c2b0b30e 1163static int gfs2_rgrp_bh_get(struct gfs2_rgrpd *rgd)
b3b94faa
DT
1164{
1165 struct gfs2_sbd *sdp = rgd->rd_sbd;
1166 struct gfs2_glock *gl = rgd->rd_gl;
bb8d8a6f 1167 unsigned int length = rgd->rd_length;
b3b94faa
DT
1168 struct gfs2_bitmap *bi;
1169 unsigned int x, y;
1170 int error;
1171
90306c41
BM
1172 if (rgd->rd_bits[0].bi_bh != NULL)
1173 return 0;
1174
b3b94faa
DT
1175 for (x = 0; x < length; x++) {
1176 bi = rgd->rd_bits + x;
c8d57703 1177 error = gfs2_meta_read(gl, rgd->rd_addr + x, 0, 0, &bi->bi_bh);
b3b94faa
DT
1178 if (error)
1179 goto fail;
1180 }
1181
1182 for (y = length; y--;) {
1183 bi = rgd->rd_bits + y;
7276b3b0 1184 error = gfs2_meta_wait(sdp, bi->bi_bh);
b3b94faa
DT
1185 if (error)
1186 goto fail;
feaa7bba 1187 if (gfs2_metatype_check(sdp, bi->bi_bh, y ? GFS2_METATYPE_RB :
b3b94faa
DT
1188 GFS2_METATYPE_RG)) {
1189 error = -EIO;
1190 goto fail;
1191 }
1192 }
1193
cf45b752 1194 if (!(rgd->rd_flags & GFS2_RDF_UPTODATE)) {
60a0b8f9
SW
1195 for (x = 0; x < length; x++)
1196 clear_bit(GBF_FULL, &rgd->rd_bits[x].bi_flags);
42d52e38 1197 gfs2_rgrp_in(rgd, (rgd->rd_bits[0].bi_bh)->b_data);
1ce97e56 1198 rgd->rd_flags |= (GFS2_RDF_UPTODATE | GFS2_RDF_CHECK);
7c9ca621 1199 rgd->rd_free_clone = rgd->rd_free;
5ea5050c
BP
1200 /* max out the rgrp allocation failure point */
1201 rgd->rd_extfail_pt = rgd->rd_free;
b3b94faa 1202 }
951b4bd5 1203 if (cpu_to_be32(GFS2_MAGIC) != rgd->rd_rgl->rl_magic) {
90306c41
BM
1204 rgd->rd_rgl->rl_unlinked = cpu_to_be32(count_unlinked(rgd));
1205 gfs2_rgrp_ondisk2lvb(rgd->rd_rgl,
1206 rgd->rd_bits[0].bi_bh->b_data);
1207 }
1208 else if (sdp->sd_args.ar_rgrplvb) {
1209 if (!gfs2_rgrp_lvb_valid(rgd)){
1210 gfs2_consist_rgrpd(rgd);
1211 error = -EIO;
1212 goto fail;
1213 }
1214 if (rgd->rd_rgl->rl_unlinked == 0)
1215 rgd->rd_flags &= ~GFS2_RDF_CHECK;
1216 }
b3b94faa
DT
1217 return 0;
1218
feaa7bba 1219fail:
b3b94faa
DT
1220 while (x--) {
1221 bi = rgd->rd_bits + x;
1222 brelse(bi->bi_bh);
1223 bi->bi_bh = NULL;
1224 gfs2_assert_warn(sdp, !bi->bi_clone);
1225 }
b3b94faa
DT
1226
1227 return error;
1228}
1229
c2b0b30e 1230static int update_rgrp_lvb(struct gfs2_rgrpd *rgd)
90306c41
BM
1231{
1232 u32 rl_flags;
1233
1234 if (rgd->rd_flags & GFS2_RDF_UPTODATE)
1235 return 0;
1236
951b4bd5 1237 if (cpu_to_be32(GFS2_MAGIC) != rgd->rd_rgl->rl_magic)
90306c41
BM
1238 return gfs2_rgrp_bh_get(rgd);
1239
1240 rl_flags = be32_to_cpu(rgd->rd_rgl->rl_flags);
1241 rl_flags &= ~GFS2_RDF_MASK;
1242 rgd->rd_flags &= GFS2_RDF_MASK;
4f36cb36 1243 rgd->rd_flags |= (rl_flags | GFS2_RDF_CHECK);
90306c41
BM
1244 if (rgd->rd_rgl->rl_unlinked == 0)
1245 rgd->rd_flags &= ~GFS2_RDF_CHECK;
1246 rgd->rd_free = be32_to_cpu(rgd->rd_rgl->rl_free);
1247 rgd->rd_free_clone = rgd->rd_free;
1248 rgd->rd_dinodes = be32_to_cpu(rgd->rd_rgl->rl_dinodes);
1249 rgd->rd_igeneration = be64_to_cpu(rgd->rd_rgl->rl_igeneration);
1250 return 0;
1251}
1252
1253int gfs2_rgrp_go_lock(struct gfs2_holder *gh)
1254{
1255 struct gfs2_rgrpd *rgd = gh->gh_gl->gl_object;
1256 struct gfs2_sbd *sdp = rgd->rd_sbd;
1257
1258 if (gh->gh_flags & GL_SKIP && sdp->sd_args.ar_rgrplvb)
1259 return 0;
8b127d04 1260 return gfs2_rgrp_bh_get(rgd);
90306c41
BM
1261}
1262
b3b94faa 1263/**
39b0f1e9
BP
1264 * gfs2_rgrp_brelse - Release RG bitmaps read in with gfs2_rgrp_bh_get()
1265 * @rgd: The resource group
b3b94faa
DT
1266 *
1267 */
1268
39b0f1e9 1269void gfs2_rgrp_brelse(struct gfs2_rgrpd *rgd)
b3b94faa 1270{
bb8d8a6f 1271 int x, length = rgd->rd_length;
b3b94faa 1272
b3b94faa
DT
1273 for (x = 0; x < length; x++) {
1274 struct gfs2_bitmap *bi = rgd->rd_bits + x;
90306c41
BM
1275 if (bi->bi_bh) {
1276 brelse(bi->bi_bh);
1277 bi->bi_bh = NULL;
1278 }
b3b94faa 1279 }
39b0f1e9
BP
1280}
1281
66fc061b 1282int gfs2_rgrp_send_discards(struct gfs2_sbd *sdp, u64 offset,
7c9ca621 1283 struct buffer_head *bh,
66fc061b 1284 const struct gfs2_bitmap *bi, unsigned minlen, u64 *ptrimmed)
f15ab561
SW
1285{
1286 struct super_block *sb = sdp->sd_vfs;
f15ab561 1287 u64 blk;
64d576ba 1288 sector_t start = 0;
b2c87cae 1289 sector_t nr_blks = 0;
f15ab561
SW
1290 int rv;
1291 unsigned int x;
66fc061b
SW
1292 u32 trimmed = 0;
1293 u8 diff;
f15ab561 1294
281b4952 1295 for (x = 0; x < bi->bi_bytes; x++) {
66fc061b
SW
1296 const u8 *clone = bi->bi_clone ? bi->bi_clone : bi->bi_bh->b_data;
1297 clone += bi->bi_offset;
1298 clone += x;
1299 if (bh) {
1300 const u8 *orig = bh->b_data + bi->bi_offset + x;
1301 diff = ~(*orig | (*orig >> 1)) & (*clone | (*clone >> 1));
1302 } else {
1303 diff = ~(*clone | (*clone >> 1));
1304 }
f15ab561
SW
1305 diff &= 0x55;
1306 if (diff == 0)
1307 continue;
1308 blk = offset + ((bi->bi_start + x) * GFS2_NBBY);
f15ab561
SW
1309 while(diff) {
1310 if (diff & 1) {
b2c87cae 1311 if (nr_blks == 0)
f15ab561 1312 goto start_new_extent;
b2c87cae
BP
1313 if ((start + nr_blks) != blk) {
1314 if (nr_blks >= minlen) {
1315 rv = sb_issue_discard(sb,
1316 start, nr_blks,
66fc061b
SW
1317 GFP_NOFS, 0);
1318 if (rv)
1319 goto fail;
b2c87cae 1320 trimmed += nr_blks;
66fc061b 1321 }
b2c87cae 1322 nr_blks = 0;
f15ab561
SW
1323start_new_extent:
1324 start = blk;
1325 }
b2c87cae 1326 nr_blks++;
f15ab561
SW
1327 }
1328 diff >>= 2;
b2c87cae 1329 blk++;
f15ab561
SW
1330 }
1331 }
b2c87cae
BP
1332 if (nr_blks >= minlen) {
1333 rv = sb_issue_discard(sb, start, nr_blks, GFP_NOFS, 0);
f15ab561
SW
1334 if (rv)
1335 goto fail;
b2c87cae 1336 trimmed += nr_blks;
f15ab561 1337 }
66fc061b
SW
1338 if (ptrimmed)
1339 *ptrimmed = trimmed;
1340 return 0;
1341
f15ab561 1342fail:
66fc061b 1343 if (sdp->sd_args.ar_discard)
af38816e 1344 fs_warn(sdp, "error %d on discard request, turning discards off for this filesystem\n", rv);
f15ab561 1345 sdp->sd_args.ar_discard = 0;
66fc061b
SW
1346 return -EIO;
1347}
1348
1349/**
1350 * gfs2_fitrim - Generate discard requests for unused bits of the filesystem
1351 * @filp: Any file on the filesystem
1352 * @argp: Pointer to the arguments (also used to pass result)
1353 *
1354 * Returns: 0 on success, otherwise error code
1355 */
1356
1357int gfs2_fitrim(struct file *filp, void __user *argp)
1358{
496ad9aa 1359 struct inode *inode = file_inode(filp);
66fc061b
SW
1360 struct gfs2_sbd *sdp = GFS2_SB(inode);
1361 struct request_queue *q = bdev_get_queue(sdp->sd_vfs->s_bdev);
1362 struct buffer_head *bh;
1363 struct gfs2_rgrpd *rgd;
1364 struct gfs2_rgrpd *rgd_end;
1365 struct gfs2_holder gh;
1366 struct fstrim_range r;
1367 int ret = 0;
1368 u64 amt;
1369 u64 trimmed = 0;
076f0faa 1370 u64 start, end, minlen;
66fc061b 1371 unsigned int x;
076f0faa 1372 unsigned bs_shift = sdp->sd_sb.sb_bsize_shift;
66fc061b
SW
1373
1374 if (!capable(CAP_SYS_ADMIN))
1375 return -EPERM;
1376
1377 if (!blk_queue_discard(q))
1378 return -EOPNOTSUPP;
1379
3a238ade 1380 if (copy_from_user(&r, argp, sizeof(r)))
66fc061b
SW
1381 return -EFAULT;
1382
5e2f7d61
BP
1383 ret = gfs2_rindex_update(sdp);
1384 if (ret)
1385 return ret;
1386
076f0faa
LC
1387 start = r.start >> bs_shift;
1388 end = start + (r.len >> bs_shift);
1389 minlen = max_t(u64, r.minlen,
1390 q->limits.discard_granularity) >> bs_shift;
1391
6a98c333
AD
1392 if (end <= start || minlen > sdp->sd_max_rg_data)
1393 return -EINVAL;
1394
076f0faa 1395 rgd = gfs2_blk2rgrpd(sdp, start, 0);
6a98c333 1396 rgd_end = gfs2_blk2rgrpd(sdp, end, 0);
076f0faa 1397
6a98c333
AD
1398 if ((gfs2_rgrpd_get_first(sdp) == gfs2_rgrpd_get_next(rgd_end))
1399 && (start > rgd_end->rd_data0 + rgd_end->rd_data))
1400 return -EINVAL; /* start is beyond the end of the fs */
66fc061b
SW
1401
1402 while (1) {
1403
1404 ret = gfs2_glock_nq_init(rgd->rd_gl, LM_ST_EXCLUSIVE, 0, &gh);
1405 if (ret)
1406 goto out;
1407
1408 if (!(rgd->rd_flags & GFS2_RGF_TRIMMED)) {
1409 /* Trim each bitmap in the rgrp */
1410 for (x = 0; x < rgd->rd_length; x++) {
1411 struct gfs2_bitmap *bi = rgd->rd_bits + x;
076f0faa
LC
1412 ret = gfs2_rgrp_send_discards(sdp,
1413 rgd->rd_data0, NULL, bi, minlen,
1414 &amt);
66fc061b
SW
1415 if (ret) {
1416 gfs2_glock_dq_uninit(&gh);
1417 goto out;
1418 }
1419 trimmed += amt;
1420 }
1421
1422 /* Mark rgrp as having been trimmed */
1423 ret = gfs2_trans_begin(sdp, RES_RG_HDR, 0);
1424 if (ret == 0) {
1425 bh = rgd->rd_bits[0].bi_bh;
1426 rgd->rd_flags |= GFS2_RGF_TRIMMED;
350a9b0a 1427 gfs2_trans_add_meta(rgd->rd_gl, bh);
66fc061b
SW
1428 gfs2_rgrp_out(rgd, bh->b_data);
1429 gfs2_trans_end(sdp);
1430 }
1431 }
1432 gfs2_glock_dq_uninit(&gh);
1433
1434 if (rgd == rgd_end)
1435 break;
1436
1437 rgd = gfs2_rgrpd_get_next(rgd);
1438 }
1439
1440out:
6a98c333 1441 r.len = trimmed << bs_shift;
3a238ade 1442 if (copy_to_user(argp, &r, sizeof(r)))
66fc061b
SW
1443 return -EFAULT;
1444
1445 return ret;
f15ab561
SW
1446}
1447
8e2e0047
BP
1448/**
1449 * rs_insert - insert a new multi-block reservation into the rgrp's rb_tree
8e2e0047 1450 * @ip: the inode structure
8e2e0047 1451 *
8e2e0047 1452 */
ff7f4cb4 1453static void rs_insert(struct gfs2_inode *ip)
8e2e0047
BP
1454{
1455 struct rb_node **newn, *parent = NULL;
1456 int rc;
a097dc7e 1457 struct gfs2_blkreserv *rs = &ip->i_res;
4a993fb1 1458 struct gfs2_rgrpd *rgd = rs->rs_rbm.rgd;
ff7f4cb4 1459 u64 fsblock = gfs2_rbm_to_block(&rs->rs_rbm);
8e2e0047 1460
8e2e0047 1461 BUG_ON(gfs2_rs_active(rs));
c743ffd0 1462
ff7f4cb4
SW
1463 spin_lock(&rgd->rd_rsspin);
1464 newn = &rgd->rd_rstree.rb_node;
8e2e0047
BP
1465 while (*newn) {
1466 struct gfs2_blkreserv *cur =
1467 rb_entry(*newn, struct gfs2_blkreserv, rs_node);
1468
1469 parent = *newn;
ff7f4cb4 1470 rc = rs_cmp(fsblock, rs->rs_free, cur);
8e2e0047
BP
1471 if (rc > 0)
1472 newn = &((*newn)->rb_right);
1473 else if (rc < 0)
1474 newn = &((*newn)->rb_left);
1475 else {
1476 spin_unlock(&rgd->rd_rsspin);
ff7f4cb4
SW
1477 WARN_ON(1);
1478 return;
8e2e0047
BP
1479 }
1480 }
1481
8e2e0047
BP
1482 rb_link_node(&rs->rs_node, parent, newn);
1483 rb_insert_color(&rs->rs_node, &rgd->rd_rstree);
1484
8e2e0047 1485 /* Do our rgrp accounting for the reservation */
ff7f4cb4 1486 rgd->rd_reserved += rs->rs_free; /* blocks reserved */
8e2e0047 1487 spin_unlock(&rgd->rd_rsspin);
9e733d39 1488 trace_gfs2_rs(rs, TRACE_RS_INSERT);
8e2e0047
BP
1489}
1490
f6753df3
BP
1491/**
1492 * rgd_free - return the number of free blocks we can allocate.
1493 * @rgd: the resource group
1494 *
1495 * This function returns the number of free blocks for an rgrp.
1496 * That's the clone-free blocks (blocks that are free, not including those
1497 * still being used for unlinked files that haven't been deleted.)
1498 *
1499 * It also subtracts any blocks reserved by someone else, but does not
1500 * include free blocks that are still part of our current reservation,
1501 * because obviously we can (and will) allocate them.
1502 */
1503static inline u32 rgd_free(struct gfs2_rgrpd *rgd, struct gfs2_blkreserv *rs)
1504{
1505 u32 tot_reserved, tot_free;
1506
1507 if (WARN_ON_ONCE(rgd->rd_reserved < rs->rs_free))
1508 return 0;
1509 tot_reserved = rgd->rd_reserved - rs->rs_free;
1510
1511 if (rgd->rd_free_clone < tot_reserved)
1512 tot_reserved = 0;
1513
1514 tot_free = rgd->rd_free_clone - tot_reserved;
1515
1516 return tot_free;
1517}
1518
8e2e0047 1519/**
ff7f4cb4 1520 * rg_mblk_search - find a group of multiple free blocks to form a reservation
8e2e0047 1521 * @rgd: the resource group descriptor
8e2e0047 1522 * @ip: pointer to the inode for which we're reserving blocks
7b9cff46 1523 * @ap: the allocation parameters
8e2e0047 1524 *
8e2e0047
BP
1525 */
1526
ff7f4cb4 1527static void rg_mblk_search(struct gfs2_rgrpd *rgd, struct gfs2_inode *ip,
7b9cff46 1528 const struct gfs2_alloc_parms *ap)
8e2e0047 1529{
ff7f4cb4
SW
1530 struct gfs2_rbm rbm = { .rgd = rgd, };
1531 u64 goal;
a097dc7e 1532 struct gfs2_blkreserv *rs = &ip->i_res;
ff7f4cb4 1533 u32 extlen;
f6753df3 1534 u32 free_blocks = rgd_free(rgd, rs);
ff7f4cb4 1535 int ret;
af21ca8e 1536 struct inode *inode = &ip->i_inode;
8e2e0047 1537
af21ca8e
BP
1538 if (S_ISDIR(inode->i_mode))
1539 extlen = 1;
1540 else {
21f09c43 1541 extlen = max_t(u32, atomic_read(&ip->i_sizehint), ap->target);
ad899458 1542 extlen = clamp(extlen, (u32)RGRP_RSRV_MINBLKS, free_blocks);
af21ca8e 1543 }
ff7f4cb4 1544 if ((rgd->rd_free_clone < rgd->rd_reserved) || (free_blocks < extlen))
c743ffd0
SW
1545 return;
1546
8e2e0047
BP
1547 /* Find bitmap block that contains bits for goal block */
1548 if (rgrp_contains_block(rgd, ip->i_goal))
ff7f4cb4 1549 goal = ip->i_goal;
8e2e0047 1550 else
ff7f4cb4 1551 goal = rgd->rd_last_alloc + rgd->rd_data0;
8e2e0047 1552
ff7f4cb4
SW
1553 if (WARN_ON(gfs2_rbm_from_block(&rbm, goal)))
1554 return;
8e2e0047 1555
8381e602 1556 ret = gfs2_rbm_find(&rbm, GFS2_BLKST_FREE, &extlen, ip, true);
ff7f4cb4
SW
1557 if (ret == 0) {
1558 rs->rs_rbm = rbm;
1559 rs->rs_free = extlen;
ff7f4cb4 1560 rs_insert(ip);
13d2eb01
BP
1561 } else {
1562 if (goal == rgd->rd_last_alloc + rgd->rd_data0)
1563 rgd->rd_last_alloc = 0;
8e2e0047 1564 }
b3e47ca0
BP
1565}
1566
5b924ae2
SW
1567/**
1568 * gfs2_next_unreserved_block - Return next block that is not reserved
1569 * @rgd: The resource group
1570 * @block: The starting block
ff7f4cb4 1571 * @length: The required length
5b924ae2
SW
1572 * @ip: Ignore any reservations for this inode
1573 *
1574 * If the block does not appear in any reservation, then return the
1575 * block number unchanged. If it does appear in the reservation, then
1576 * keep looking through the tree of reservations in order to find the
1577 * first block number which is not reserved.
1578 */
1579
1580static u64 gfs2_next_unreserved_block(struct gfs2_rgrpd *rgd, u64 block,
ff7f4cb4 1581 u32 length,
5b924ae2
SW
1582 const struct gfs2_inode *ip)
1583{
1584 struct gfs2_blkreserv *rs;
1585 struct rb_node *n;
1586 int rc;
1587
1588 spin_lock(&rgd->rd_rsspin);
ff7f4cb4 1589 n = rgd->rd_rstree.rb_node;
5b924ae2
SW
1590 while (n) {
1591 rs = rb_entry(n, struct gfs2_blkreserv, rs_node);
ff7f4cb4 1592 rc = rs_cmp(block, length, rs);
5b924ae2
SW
1593 if (rc < 0)
1594 n = n->rb_left;
1595 else if (rc > 0)
1596 n = n->rb_right;
1597 else
1598 break;
1599 }
1600
1601 if (n) {
a097dc7e 1602 while ((rs_cmp(block, length, rs) == 0) && (&ip->i_res != rs)) {
5b924ae2 1603 block = gfs2_rbm_to_block(&rs->rs_rbm) + rs->rs_free;
ff7f4cb4 1604 n = n->rb_right;
5b924ae2
SW
1605 if (n == NULL)
1606 break;
1607 rs = rb_entry(n, struct gfs2_blkreserv, rs_node);
1608 }
1609 }
1610
1611 spin_unlock(&rgd->rd_rsspin);
1612 return block;
1613}
1614
5b924ae2
SW
1615/**
1616 * gfs2_reservation_check_and_update - Check for reservations during block alloc
1617 * @rbm: The current position in the resource group
ff7f4cb4
SW
1618 * @ip: The inode for which we are searching for blocks
1619 * @minext: The minimum extent length
5ce13431 1620 * @maxext: A pointer to the maximum extent structure
5b924ae2
SW
1621 *
1622 * This checks the current position in the rgrp to see whether there is
1623 * a reservation covering this block. If not then this function is a
1624 * no-op. If there is, then the position is moved to the end of the
1625 * contiguous reservation(s) so that we are pointing at the first
1626 * non-reserved block.
1627 *
1628 * Returns: 0 if no reservation, 1 if @rbm has changed, otherwise an error
1629 */
1630
1631static int gfs2_reservation_check_and_update(struct gfs2_rbm *rbm,
ff7f4cb4 1632 const struct gfs2_inode *ip,
5ce13431
BP
1633 u32 minext,
1634 struct gfs2_extent *maxext)
5b924ae2
SW
1635{
1636 u64 block = gfs2_rbm_to_block(rbm);
ff7f4cb4 1637 u32 extlen = 1;
5b924ae2
SW
1638 u64 nblock;
1639 int ret;
1640
ff7f4cb4
SW
1641 /*
1642 * If we have a minimum extent length, then skip over any extent
1643 * which is less than the min extent length in size.
1644 */
1645 if (minext) {
1646 extlen = gfs2_free_extlen(rbm, minext);
5ce13431 1647 if (extlen <= maxext->len)
ff7f4cb4
SW
1648 goto fail;
1649 }
1650
1651 /*
1652 * Check the extent which has been found against the reservations
1653 * and skip if parts of it are already reserved
1654 */
1655 nblock = gfs2_next_unreserved_block(rbm->rgd, block, extlen, ip);
5ce13431
BP
1656 if (nblock == block) {
1657 if (!minext || extlen >= minext)
1658 return 0;
1659
1660 if (extlen > maxext->len) {
1661 maxext->len = extlen;
1662 maxext->rbm = *rbm;
1663 }
ff7f4cb4 1664fail:
5ce13431
BP
1665 nblock = block + extlen;
1666 }
5b924ae2
SW
1667 ret = gfs2_rbm_from_block(rbm, nblock);
1668 if (ret < 0)
1669 return ret;
1670 return 1;
1671}
1672
1673/**
1674 * gfs2_rbm_find - Look for blocks of a particular state
1675 * @rbm: Value/result starting position and final position
1676 * @state: The state which we want to find
5ce13431
BP
1677 * @minext: Pointer to the requested extent length (NULL for a single block)
1678 * This is updated to be the actual reservation size.
5b924ae2
SW
1679 * @ip: If set, check for reservations
1680 * @nowrap: Stop looking at the end of the rgrp, rather than wrapping
1681 * around until we've reached the starting point.
1682 *
1683 * Side effects:
1684 * - If looking for free blocks, we set GBF_FULL on each bitmap which
1685 * has no free blocks in it.
5ea5050c
BP
1686 * - If looking for free blocks, we set rd_extfail_pt on each rgrp which
1687 * has come up short on a free block search.
5b924ae2
SW
1688 *
1689 * Returns: 0 on success, -ENOSPC if there is no block of the requested state
1690 */
1691
5ce13431 1692static int gfs2_rbm_find(struct gfs2_rbm *rbm, u8 state, u32 *minext,
8381e602 1693 const struct gfs2_inode *ip, bool nowrap)
5b924ae2 1694{
71921ef8 1695 bool scan_from_start = rbm->bii == 0 && rbm->offset == 0;
5b924ae2 1696 struct buffer_head *bh;
71921ef8 1697 int last_bii;
5b924ae2
SW
1698 u32 offset;
1699 u8 *buffer;
71921ef8 1700 bool wrapped = false;
5b924ae2 1701 int ret;
e579ed4f 1702 struct gfs2_bitmap *bi;
5ce13431 1703 struct gfs2_extent maxext = { .rbm.rgd = rbm->rgd, };
5b924ae2 1704
71921ef8
AG
1705 /*
1706 * Determine the last bitmap to search. If we're not starting at the
1707 * beginning of a bitmap, we need to search that bitmap twice to scan
1708 * the entire resource group.
5b924ae2 1709 */
71921ef8 1710 last_bii = rbm->bii - (rbm->offset == 0);
5b924ae2
SW
1711
1712 while(1) {
e579ed4f 1713 bi = rbm_bi(rbm);
e79e0e14
BP
1714 if ((ip == NULL || !gfs2_rs_active(&ip->i_res)) &&
1715 test_bit(GBF_FULL, &bi->bi_flags) &&
5b924ae2
SW
1716 (state == GFS2_BLKST_FREE))
1717 goto next_bitmap;
1718
e579ed4f
BP
1719 bh = bi->bi_bh;
1720 buffer = bh->b_data + bi->bi_offset;
5b924ae2 1721 WARN_ON(!buffer_uptodate(bh));
e579ed4f
BP
1722 if (state != GFS2_BLKST_UNLINKED && bi->bi_clone)
1723 buffer = bi->bi_clone + bi->bi_offset;
281b4952 1724 offset = gfs2_bitfit(buffer, bi->bi_bytes, rbm->offset, state);
71921ef8
AG
1725 if (offset == BFITNOENT) {
1726 if (state == GFS2_BLKST_FREE && rbm->offset == 0)
1727 set_bit(GBF_FULL, &bi->bi_flags);
1728 goto next_bitmap;
1729 }
5b924ae2
SW
1730 rbm->offset = offset;
1731 if (ip == NULL)
1732 return 0;
1733
5ce13431
BP
1734 ret = gfs2_reservation_check_and_update(rbm, ip,
1735 minext ? *minext : 0,
1736 &maxext);
5b924ae2
SW
1737 if (ret == 0)
1738 return 0;
71921ef8 1739 if (ret > 0)
8d8b752a 1740 goto next_iter;
5d50d532 1741 if (ret == -E2BIG) {
e579ed4f 1742 rbm->bii = 0;
5d50d532 1743 rbm->offset = 0;
5d50d532
SW
1744 goto res_covered_end_of_rgrp;
1745 }
5b924ae2
SW
1746 return ret;
1747
5b924ae2
SW
1748next_bitmap: /* Find next bitmap in the rgrp */
1749 rbm->offset = 0;
e579ed4f
BP
1750 rbm->bii++;
1751 if (rbm->bii == rbm->rgd->rd_length)
1752 rbm->bii = 0;
5d50d532 1753res_covered_end_of_rgrp:
71921ef8
AG
1754 if (rbm->bii == 0) {
1755 if (wrapped)
1756 break;
1757 wrapped = true;
1758 if (nowrap)
1759 break;
1760 }
8d8b752a 1761next_iter:
71921ef8
AG
1762 /* Have we scanned the entire resource group? */
1763 if (wrapped && rbm->bii > last_bii)
5b924ae2
SW
1764 break;
1765 }
1766
5ce13431
BP
1767 if (minext == NULL || state != GFS2_BLKST_FREE)
1768 return -ENOSPC;
1769
5ea5050c
BP
1770 /* If the extent was too small, and it's smaller than the smallest
1771 to have failed before, remember for future reference that it's
1772 useless to search this rgrp again for this amount or more. */
71921ef8
AG
1773 if (wrapped && (scan_from_start || rbm->bii > last_bii) &&
1774 *minext < rbm->rgd->rd_extfail_pt)
5ea5050c
BP
1775 rbm->rgd->rd_extfail_pt = *minext;
1776
5ce13431
BP
1777 /* If the maximum extent we found is big enough to fulfill the
1778 minimum requirements, use it anyway. */
1779 if (maxext.len) {
1780 *rbm = maxext.rbm;
1781 *minext = maxext.len;
1782 return 0;
1783 }
1784
5b924ae2
SW
1785 return -ENOSPC;
1786}
1787
c8cdf479
SW
1788/**
1789 * try_rgrp_unlink - Look for any unlinked, allocated, but unused inodes
1790 * @rgd: The rgrp
886b1416
BP
1791 * @last_unlinked: block address of the last dinode we unlinked
1792 * @skip: block address we should explicitly not unlink
c8cdf479 1793 *
1a0eae88
BP
1794 * Returns: 0 if no error
1795 * The inode, if one has been found, in inode.
c8cdf479
SW
1796 */
1797
044b9414 1798static void try_rgrp_unlink(struct gfs2_rgrpd *rgd, u64 *last_unlinked, u64 skip)
c8cdf479 1799{
5b924ae2 1800 u64 block;
5f3eae75 1801 struct gfs2_sbd *sdp = rgd->rd_sbd;
044b9414
SW
1802 struct gfs2_glock *gl;
1803 struct gfs2_inode *ip;
1804 int error;
1805 int found = 0;
e579ed4f 1806 struct gfs2_rbm rbm = { .rgd = rgd, .bii = 0, .offset = 0 };
c8cdf479 1807
5b924ae2 1808 while (1) {
5ce13431 1809 error = gfs2_rbm_find(&rbm, GFS2_BLKST_UNLINKED, NULL, NULL,
8381e602 1810 true);
5b924ae2
SW
1811 if (error == -ENOSPC)
1812 break;
1813 if (WARN_ON_ONCE(error))
24c73873 1814 break;
b3e47ca0 1815
5b924ae2
SW
1816 block = gfs2_rbm_to_block(&rbm);
1817 if (gfs2_rbm_from_block(&rbm, block + 1))
1818 break;
1819 if (*last_unlinked != NO_BLOCK && block <= *last_unlinked)
c8cdf479 1820 continue;
5b924ae2 1821 if (block == skip)
1e19a195 1822 continue;
5b924ae2 1823 *last_unlinked = block;
044b9414 1824
5ea31bc0 1825 error = gfs2_glock_get(sdp, block, &gfs2_iopen_glops, CREATE, &gl);
044b9414
SW
1826 if (error)
1827 continue;
1828
1829 /* If the inode is already in cache, we can ignore it here
1830 * because the existing inode disposal code will deal with
1831 * it when all refs have gone away. Accessing gl_object like
1832 * this is not safe in general. Here it is ok because we do
1833 * not dereference the pointer, and we only need an approx
1834 * answer to whether it is NULL or not.
1835 */
1836 ip = gl->gl_object;
1837
a0e3cc65 1838 if (ip || !gfs2_queue_delete_work(gl, 0))
044b9414
SW
1839 gfs2_glock_put(gl);
1840 else
1841 found++;
1842
1843 /* Limit reclaim to sensible number of tasks */
44ad37d6 1844 if (found > NR_CPUS)
044b9414 1845 return;
c8cdf479
SW
1846 }
1847
1848 rgd->rd_flags &= ~GFS2_RDF_CHECK;
044b9414 1849 return;
c8cdf479
SW
1850}
1851
bcd97c06
SW
1852/**
1853 * gfs2_rgrp_congested - Use stats to figure out whether an rgrp is congested
1854 * @rgd: The rgrp in question
1855 * @loops: An indication of how picky we can be (0=very, 1=less so)
1856 *
1857 * This function uses the recently added glock statistics in order to
1858 * figure out whether a parciular resource group is suffering from
1859 * contention from multiple nodes. This is done purely on the basis
1860 * of timings, since this is the only data we have to work with and
1861 * our aim here is to reject a resource group which is highly contended
1862 * but (very important) not to do this too often in order to ensure that
1863 * we do not land up introducing fragmentation by changing resource
1864 * groups when not actually required.
1865 *
1866 * The calculation is fairly simple, we want to know whether the SRTTB
1867 * (i.e. smoothed round trip time for blocking operations) to acquire
1868 * the lock for this rgrp's glock is significantly greater than the
1869 * time taken for resource groups on average. We introduce a margin in
1870 * the form of the variable @var which is computed as the sum of the two
1871 * respective variences, and multiplied by a factor depending on @loops
1872 * and whether we have a lot of data to base the decision on. This is
1873 * then tested against the square difference of the means in order to
1874 * decide whether the result is statistically significant or not.
1875 *
1876 * Returns: A boolean verdict on the congestion status
1877 */
1878
1879static bool gfs2_rgrp_congested(const struct gfs2_rgrpd *rgd, int loops)
1880{
1881 const struct gfs2_glock *gl = rgd->rd_gl;
15562c43 1882 const struct gfs2_sbd *sdp = gl->gl_name.ln_sbd;
bcd97c06 1883 struct gfs2_lkstats *st;
4d207133
BH
1884 u64 r_dcount, l_dcount;
1885 u64 l_srttb, a_srttb = 0;
bcd97c06 1886 s64 srttb_diff;
4d207133
BH
1887 u64 sqr_diff;
1888 u64 var;
0166b197 1889 int cpu, nonzero = 0;
bcd97c06
SW
1890
1891 preempt_disable();
f4a3ae93
BP
1892 for_each_present_cpu(cpu) {
1893 st = &per_cpu_ptr(sdp->sd_lkstats, cpu)->lkstats[LM_TYPE_RGRP];
0166b197
BP
1894 if (st->stats[GFS2_LKS_SRTTB]) {
1895 a_srttb += st->stats[GFS2_LKS_SRTTB];
1896 nonzero++;
1897 }
f4a3ae93 1898 }
bcd97c06 1899 st = &this_cpu_ptr(sdp->sd_lkstats)->lkstats[LM_TYPE_RGRP];
0166b197
BP
1900 if (nonzero)
1901 do_div(a_srttb, nonzero);
bcd97c06
SW
1902 r_dcount = st->stats[GFS2_LKS_DCOUNT];
1903 var = st->stats[GFS2_LKS_SRTTVARB] +
1904 gl->gl_stats.stats[GFS2_LKS_SRTTVARB];
1905 preempt_enable();
1906
1907 l_srttb = gl->gl_stats.stats[GFS2_LKS_SRTTB];
1908 l_dcount = gl->gl_stats.stats[GFS2_LKS_DCOUNT];
1909
f4a3ae93 1910 if ((l_dcount < 1) || (r_dcount < 1) || (a_srttb == 0))
bcd97c06
SW
1911 return false;
1912
f4a3ae93 1913 srttb_diff = a_srttb - l_srttb;
bcd97c06
SW
1914 sqr_diff = srttb_diff * srttb_diff;
1915
1916 var *= 2;
1917 if (l_dcount < 8 || r_dcount < 8)
1918 var *= 2;
1919 if (loops == 1)
1920 var *= 2;
1921
1922 return ((srttb_diff < 0) && (sqr_diff > var));
1923}
1924
1925/**
1926 * gfs2_rgrp_used_recently
1927 * @rs: The block reservation with the rgrp to test
1928 * @msecs: The time limit in milliseconds
1929 *
1930 * Returns: True if the rgrp glock has been used within the time limit
1931 */
1932static bool gfs2_rgrp_used_recently(const struct gfs2_blkreserv *rs,
1933 u64 msecs)
1934{
1935 u64 tdiff;
1936
1937 tdiff = ktime_to_ns(ktime_sub(ktime_get_real(),
1938 rs->rs_rbm.rgd->rd_gl->gl_dstamp));
1939
1940 return tdiff > (msecs * 1000 * 1000);
1941}
1942
9dbe9610
SW
1943static u32 gfs2_orlov_skip(const struct gfs2_inode *ip)
1944{
1945 const struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
1946 u32 skip;
1947
1948 get_random_bytes(&skip, sizeof(skip));
1949 return skip % sdp->sd_rgrps;
1950}
1951
c743ffd0
SW
1952static bool gfs2_select_rgrp(struct gfs2_rgrpd **pos, const struct gfs2_rgrpd *begin)
1953{
1954 struct gfs2_rgrpd *rgd = *pos;
aa8920c9 1955 struct gfs2_sbd *sdp = rgd->rd_sbd;
c743ffd0
SW
1956
1957 rgd = gfs2_rgrpd_get_next(rgd);
1958 if (rgd == NULL)
aa8920c9 1959 rgd = gfs2_rgrpd_get_first(sdp);
c743ffd0
SW
1960 *pos = rgd;
1961 if (rgd != begin) /* If we didn't wrap */
1962 return true;
1963 return false;
1964}
1965
0e27c18c
BP
1966/**
1967 * fast_to_acquire - determine if a resource group will be fast to acquire
1968 *
1969 * If this is one of our preferred rgrps, it should be quicker to acquire,
1970 * because we tried to set ourselves up as dlm lock master.
1971 */
1972static inline int fast_to_acquire(struct gfs2_rgrpd *rgd)
1973{
1974 struct gfs2_glock *gl = rgd->rd_gl;
1975
1976 if (gl->gl_state != LM_ST_UNLOCKED && list_empty(&gl->gl_holders) &&
1977 !test_bit(GLF_DEMOTE_IN_PROGRESS, &gl->gl_flags) &&
1978 !test_bit(GLF_DEMOTE, &gl->gl_flags))
1979 return 1;
1980 if (rgd->rd_flags & GFS2_RDF_PREFERRED)
1981 return 1;
1982 return 0;
1983}
1984
b3b94faa 1985/**
666d1d8a 1986 * gfs2_inplace_reserve - Reserve space in the filesystem
b3b94faa 1987 * @ip: the inode to reserve space for
7b9cff46 1988 * @ap: the allocation parameters
b3b94faa 1989 *
25435e5e
AD
1990 * We try our best to find an rgrp that has at least ap->target blocks
1991 * available. After a couple of passes (loops == 2), the prospects of finding
1992 * such an rgrp diminish. At this stage, we return the first rgrp that has
243fea4d 1993 * at least ap->min_target blocks available. Either way, we set ap->allowed to
25435e5e
AD
1994 * the number of blocks available in the chosen rgrp.
1995 *
1996 * Returns: 0 on success,
1997 * -ENOMEM if a suitable rgrp can't be found
1998 * errno otherwise
b3b94faa
DT
1999 */
2000
25435e5e 2001int gfs2_inplace_reserve(struct gfs2_inode *ip, struct gfs2_alloc_parms *ap)
b3b94faa 2002{
feaa7bba 2003 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
8e2e0047 2004 struct gfs2_rgrpd *begin = NULL;
a097dc7e 2005 struct gfs2_blkreserv *rs = &ip->i_res;
bcd97c06 2006 int error = 0, rg_locked, flags = 0;
666d1d8a 2007 u64 last_unlinked = NO_BLOCK;
7c9ca621 2008 int loops = 0;
f6753df3 2009 u32 free_blocks, skip = 0;
b3b94faa 2010
90306c41
BM
2011 if (sdp->sd_args.ar_rgrplvb)
2012 flags |= GL_SKIP;
7b9cff46 2013 if (gfs2_assert_warn(sdp, ap->target))
c743ffd0 2014 return -EINVAL;
8e2e0047 2015 if (gfs2_rs_active(rs)) {
4a993fb1 2016 begin = rs->rs_rbm.rgd;
b7eba890
AG
2017 } else if (rs->rs_rbm.rgd &&
2018 rgrp_contains_block(rs->rs_rbm.rgd, ip->i_goal)) {
2019 begin = rs->rs_rbm.rgd;
8e2e0047 2020 } else {
00a158be 2021 check_and_update_goal(ip);
4a993fb1 2022 rs->rs_rbm.rgd = begin = gfs2_blk2rgrpd(sdp, ip->i_goal, 1);
8e2e0047 2023 }
7b9cff46 2024 if (S_ISDIR(ip->i_inode.i_mode) && (ap->aflags & GFS2_AF_ORLOV))
9dbe9610 2025 skip = gfs2_orlov_skip(ip);
4a993fb1 2026 if (rs->rs_rbm.rgd == NULL)
7c9ca621
BP
2027 return -EBADSLT;
2028
2029 while (loops < 3) {
c743ffd0
SW
2030 rg_locked = 1;
2031
2032 if (!gfs2_glock_is_locked_by_me(rs->rs_rbm.rgd->rd_gl)) {
2033 rg_locked = 0;
9dbe9610
SW
2034 if (skip && skip--)
2035 goto next_rgrp;
0e27c18c
BP
2036 if (!gfs2_rs_active(rs)) {
2037 if (loops == 0 &&
2038 !fast_to_acquire(rs->rs_rbm.rgd))
2039 goto next_rgrp;
2040 if ((loops < 2) &&
2041 gfs2_rgrp_used_recently(rs, 1000) &&
2042 gfs2_rgrp_congested(rs->rs_rbm.rgd, loops))
2043 goto next_rgrp;
2044 }
4a993fb1 2045 error = gfs2_glock_nq_init(rs->rs_rbm.rgd->rd_gl,
8e2e0047 2046 LM_ST_EXCLUSIVE, flags,
21f09c43 2047 &ip->i_rgd_gh);
c743ffd0
SW
2048 if (unlikely(error))
2049 return error;
bcd97c06
SW
2050 if (!gfs2_rs_active(rs) && (loops < 2) &&
2051 gfs2_rgrp_congested(rs->rs_rbm.rgd, loops))
2052 goto skip_rgrp;
c743ffd0 2053 if (sdp->sd_args.ar_rgrplvb) {
4a993fb1 2054 error = update_rgrp_lvb(rs->rs_rbm.rgd);
c743ffd0 2055 if (unlikely(error)) {
21f09c43 2056 gfs2_glock_dq_uninit(&ip->i_rgd_gh);
90306c41
BM
2057 return error;
2058 }
2059 }
292c8c14 2060 }
666d1d8a 2061
243fea4d 2062 /* Skip unusable resource groups */
5ea5050c
BP
2063 if ((rs->rs_rbm.rgd->rd_flags & (GFS2_RGF_NOALLOC |
2064 GFS2_RDF_ERROR)) ||
25435e5e 2065 (loops == 0 && ap->target > rs->rs_rbm.rgd->rd_extfail_pt))
c743ffd0
SW
2066 goto skip_rgrp;
2067
2068 if (sdp->sd_args.ar_rgrplvb)
2069 gfs2_rgrp_bh_get(rs->rs_rbm.rgd);
2070
2071 /* Get a reservation if we don't already have one */
2072 if (!gfs2_rs_active(rs))
7b9cff46 2073 rg_mblk_search(rs->rs_rbm.rgd, ip, ap);
c743ffd0
SW
2074
2075 /* Skip rgrps when we can't get a reservation on first pass */
2076 if (!gfs2_rs_active(rs) && (loops < 1))
2077 goto check_rgrp;
2078
2079 /* If rgrp has enough free space, use it */
f6753df3
BP
2080 free_blocks = rgd_free(rs->rs_rbm.rgd, rs);
2081 if (free_blocks >= ap->target ||
25435e5e 2082 (loops == 2 && ap->min_target &&
f6753df3
BP
2083 free_blocks >= ap->min_target)) {
2084 ap->allowed = free_blocks;
c743ffd0 2085 return 0;
b3b94faa 2086 }
c743ffd0
SW
2087check_rgrp:
2088 /* Check for unlinked inodes which can be reclaimed */
2089 if (rs->rs_rbm.rgd->rd_flags & GFS2_RDF_CHECK)
2090 try_rgrp_unlink(rs->rs_rbm.rgd, &last_unlinked,
2091 ip->i_no_addr);
2092skip_rgrp:
1330edbe
BP
2093 /* Drop reservation, if we couldn't use reserved rgrp */
2094 if (gfs2_rs_active(rs))
2095 gfs2_rs_deltree(rs);
2096
c743ffd0
SW
2097 /* Unlock rgrp if required */
2098 if (!rg_locked)
21f09c43 2099 gfs2_glock_dq_uninit(&ip->i_rgd_gh);
c743ffd0
SW
2100next_rgrp:
2101 /* Find the next rgrp, and continue looking */
2102 if (gfs2_select_rgrp(&rs->rs_rbm.rgd, begin))
2103 continue;
9dbe9610
SW
2104 if (skip)
2105 continue;
c743ffd0
SW
2106
2107 /* If we've scanned all the rgrps, but found no free blocks
2108 * then this checks for some less likely conditions before
2109 * trying again.
2110 */
c743ffd0
SW
2111 loops++;
2112 /* Check that fs hasn't grown if writing to rindex */
2113 if (ip == GFS2_I(sdp->sd_rindex) && !sdp->sd_rindex_uptodate) {
2114 error = gfs2_ri_update(ip);
2115 if (error)
2116 return error;
2117 }
2118 /* Flushing the log may release space */
2119 if (loops == 2)
805c0907
BP
2120 gfs2_log_flush(sdp, NULL, GFS2_LOG_HEAD_FLUSH_NORMAL |
2121 GFS2_LFC_INPLACE_RESERVE);
b3b94faa 2122 }
b3b94faa 2123
c743ffd0 2124 return -ENOSPC;
b3b94faa
DT
2125}
2126
2127/**
2128 * gfs2_inplace_release - release an inplace reservation
2129 * @ip: the inode the reservation was taken out on
2130 *
2131 * Release a reservation made by gfs2_inplace_reserve().
2132 */
2133
2134void gfs2_inplace_release(struct gfs2_inode *ip)
2135{
21f09c43
AG
2136 if (gfs2_holder_initialized(&ip->i_rgd_gh))
2137 gfs2_glock_dq_uninit(&ip->i_rgd_gh);
b3b94faa
DT
2138}
2139
b3e47ca0
BP
2140/**
2141 * gfs2_alloc_extent - allocate an extent from a given bitmap
4a993fb1 2142 * @rbm: the resource group information
b3e47ca0 2143 * @dinode: TRUE if the first block we allocate is for a dinode
c04a2ef3 2144 * @n: The extent length (value/result)
b3e47ca0 2145 *
c04a2ef3 2146 * Add the bitmap buffer to the transaction.
b3e47ca0 2147 * Set the found bits to @new_state to change block's allocation state.
b3e47ca0 2148 */
c04a2ef3 2149static void gfs2_alloc_extent(const struct gfs2_rbm *rbm, bool dinode,
4a993fb1 2150 unsigned int *n)
b3e47ca0 2151{
c04a2ef3 2152 struct gfs2_rbm pos = { .rgd = rbm->rgd, };
b3e47ca0 2153 const unsigned int elen = *n;
c04a2ef3
SW
2154 u64 block;
2155 int ret;
b3e47ca0 2156
c04a2ef3
SW
2157 *n = 1;
2158 block = gfs2_rbm_to_block(rbm);
e579ed4f 2159 gfs2_trans_add_meta(rbm->rgd->rd_gl, rbm_bi(rbm)->bi_bh);
3e6339dd 2160 gfs2_setbit(rbm, true, dinode ? GFS2_BLKST_DINODE : GFS2_BLKST_USED);
c04a2ef3 2161 block++;
60a0b8f9 2162 while (*n < elen) {
c04a2ef3 2163 ret = gfs2_rbm_from_block(&pos, block);
dffe12a8 2164 if (ret || gfs2_testbit(&pos, true) != GFS2_BLKST_FREE)
60a0b8f9 2165 break;
e579ed4f 2166 gfs2_trans_add_meta(pos.rgd->rd_gl, rbm_bi(&pos)->bi_bh);
3e6339dd 2167 gfs2_setbit(&pos, true, GFS2_BLKST_USED);
60a0b8f9 2168 (*n)++;
c04a2ef3 2169 block++;
c8cdf479 2170 }
b3b94faa
DT
2171}
2172
2173/**
2174 * rgblk_free - Change alloc state of given block(s)
2175 * @sdp: the filesystem
0ddeded4 2176 * @rgd: the resource group the blocks are in
b3b94faa
DT
2177 * @bstart: the start of a run of blocks to free
2178 * @blen: the length of the block run (all must lie within ONE RG!)
2179 * @new_state: GFS2_BLKST_XXX the after-allocation block state
b3b94faa
DT
2180 */
2181
0ddeded4
AG
2182static void rgblk_free(struct gfs2_sbd *sdp, struct gfs2_rgrpd *rgd,
2183 u64 bstart, u32 blen, unsigned char new_state)
b3b94faa 2184{
3b1d0b9d 2185 struct gfs2_rbm rbm;
d24e0569 2186 struct gfs2_bitmap *bi, *bi_prev = NULL;
b3b94faa 2187
0ddeded4 2188 rbm.rgd = rgd;
f654683d 2189 if (WARN_ON_ONCE(gfs2_rbm_from_block(&rbm, bstart)))
0ddeded4 2190 return;
b3b94faa 2191 while (blen--) {
e579ed4f 2192 bi = rbm_bi(&rbm);
d24e0569
BP
2193 if (bi != bi_prev) {
2194 if (!bi->bi_clone) {
2195 bi->bi_clone = kmalloc(bi->bi_bh->b_size,
2196 GFP_NOFS | __GFP_NOFAIL);
2197 memcpy(bi->bi_clone + bi->bi_offset,
2198 bi->bi_bh->b_data + bi->bi_offset,
281b4952 2199 bi->bi_bytes);
d24e0569
BP
2200 }
2201 gfs2_trans_add_meta(rbm.rgd->rd_gl, bi->bi_bh);
2202 bi_prev = bi;
b3b94faa 2203 }
3e6339dd 2204 gfs2_setbit(&rbm, false, new_state);
d24e0569 2205 gfs2_rbm_incr(&rbm);
b3b94faa 2206 }
b3b94faa
DT
2207}
2208
2209/**
09010978
SW
2210 * gfs2_rgrp_dump - print out an rgrp
2211 * @seq: The iterator
0e539ca1 2212 * @rgd: The rgrp in question
3792ce97 2213 * @fs_id_buf: pointer to file system id (if requested)
09010978
SW
2214 *
2215 */
2216
0e539ca1 2217void gfs2_rgrp_dump(struct seq_file *seq, struct gfs2_rgrpd *rgd,
3792ce97 2218 const char *fs_id_buf)
09010978 2219{
8e2e0047
BP
2220 struct gfs2_blkreserv *trs;
2221 const struct rb_node *n;
2222
3792ce97
BP
2223 gfs2_print_dbg(seq, "%s R: n:%llu f:%02x b:%u/%u i:%u r:%u e:%u\n",
2224 fs_id_buf,
09010978 2225 (unsigned long long)rgd->rd_addr, rgd->rd_flags,
8e2e0047 2226 rgd->rd_free, rgd->rd_free_clone, rgd->rd_dinodes,
5ea5050c 2227 rgd->rd_reserved, rgd->rd_extfail_pt);
72244b6b
BP
2228 if (rgd->rd_sbd->sd_args.ar_rgrplvb) {
2229 struct gfs2_rgrp_lvb *rgl = rgd->rd_rgl;
2230
3792ce97 2231 gfs2_print_dbg(seq, "%s L: f:%02x b:%u i:%u\n", fs_id_buf,
72244b6b
BP
2232 be32_to_cpu(rgl->rl_flags),
2233 be32_to_cpu(rgl->rl_free),
2234 be32_to_cpu(rgl->rl_dinodes));
2235 }
8e2e0047
BP
2236 spin_lock(&rgd->rd_rsspin);
2237 for (n = rb_first(&rgd->rd_rstree); n; n = rb_next(&trs->rs_node)) {
2238 trs = rb_entry(n, struct gfs2_blkreserv, rs_node);
3792ce97 2239 dump_rs(seq, trs, fs_id_buf);
8e2e0047
BP
2240 }
2241 spin_unlock(&rgd->rd_rsspin);
09010978
SW
2242}
2243
6050b9c7
SW
2244static void gfs2_rgrp_error(struct gfs2_rgrpd *rgd)
2245{
2246 struct gfs2_sbd *sdp = rgd->rd_sbd;
98fb0574 2247 char fs_id_buf[sizeof(sdp->sd_fsname) + 7];
3792ce97 2248
6050b9c7 2249 fs_warn(sdp, "rgrp %llu has an error, marking it readonly until umount\n",
86d00636 2250 (unsigned long long)rgd->rd_addr);
6050b9c7 2251 fs_warn(sdp, "umount on all nodes and run fsck.gfs2 to fix the error\n");
3792ce97 2252 sprintf(fs_id_buf, "fsid=%s: ", sdp->sd_fsname);
0e539ca1 2253 gfs2_rgrp_dump(NULL, rgd, fs_id_buf);
6050b9c7
SW
2254 rgd->rd_flags |= GFS2_RDF_ERROR;
2255}
2256
8e2e0047 2257/**
5b924ae2
SW
2258 * gfs2_adjust_reservation - Adjust (or remove) a reservation after allocation
2259 * @ip: The inode we have just allocated blocks for
2260 * @rbm: The start of the allocated blocks
2261 * @len: The extent length
8e2e0047 2262 *
5b924ae2
SW
2263 * Adjusts a reservation after an allocation has taken place. If the
2264 * reservation does not match the allocation, or if it is now empty
2265 * then it is removed.
8e2e0047 2266 */
5b924ae2
SW
2267
2268static void gfs2_adjust_reservation(struct gfs2_inode *ip,
2269 const struct gfs2_rbm *rbm, unsigned len)
8e2e0047 2270{
a097dc7e 2271 struct gfs2_blkreserv *rs = &ip->i_res;
5b924ae2
SW
2272 struct gfs2_rgrpd *rgd = rbm->rgd;
2273 unsigned rlen;
2274 u64 block;
2275 int ret;
8e2e0047 2276
5b924ae2
SW
2277 spin_lock(&rgd->rd_rsspin);
2278 if (gfs2_rs_active(rs)) {
2279 if (gfs2_rbm_eq(&rs->rs_rbm, rbm)) {
2280 block = gfs2_rbm_to_block(rbm);
2281 ret = gfs2_rbm_from_block(&rs->rs_rbm, block + len);
2282 rlen = min(rs->rs_free, len);
2283 rs->rs_free -= rlen;
2284 rgd->rd_reserved -= rlen;
9e733d39 2285 trace_gfs2_rs(rs, TRACE_RS_CLAIM);
5b924ae2
SW
2286 if (rs->rs_free && !ret)
2287 goto out;
1a855033
BP
2288 /* We used up our block reservation, so we should
2289 reserve more blocks next time. */
21f09c43 2290 atomic_add(RGRP_RSRV_ADDBLKS, &ip->i_sizehint);
5b924ae2 2291 }
20095218 2292 __rs_deltree(rs);
8e2e0047 2293 }
5b924ae2
SW
2294out:
2295 spin_unlock(&rgd->rd_rsspin);
8e2e0047
BP
2296}
2297
9e07f2cb
SW
2298/**
2299 * gfs2_set_alloc_start - Set starting point for block allocation
2300 * @rbm: The rbm which will be set to the required location
2301 * @ip: The gfs2 inode
2302 * @dinode: Flag to say if allocation includes a new inode
2303 *
2304 * This sets the starting point from the reservation if one is active
2305 * otherwise it falls back to guessing a start point based on the
2306 * inode's goal block or the last allocation point in the rgrp.
2307 */
2308
2309static void gfs2_set_alloc_start(struct gfs2_rbm *rbm,
2310 const struct gfs2_inode *ip, bool dinode)
2311{
2312 u64 goal;
2313
a097dc7e
BP
2314 if (gfs2_rs_active(&ip->i_res)) {
2315 *rbm = ip->i_res.rs_rbm;
9e07f2cb
SW
2316 return;
2317 }
2318
2319 if (!dinode && rgrp_contains_block(rbm->rgd, ip->i_goal))
2320 goal = ip->i_goal;
2321 else
2322 goal = rbm->rgd->rd_last_alloc + rbm->rgd->rd_data0;
2323
f654683d
AG
2324 if (WARN_ON_ONCE(gfs2_rbm_from_block(rbm, goal))) {
2325 rbm->bii = 0;
2326 rbm->offset = 0;
2327 }
9e07f2cb
SW
2328}
2329
09010978 2330/**
6e87ed0f 2331 * gfs2_alloc_blocks - Allocate one or more blocks of data and/or a dinode
1639431a 2332 * @ip: the inode to allocate the block for
09010978 2333 * @bn: Used to return the starting block number
8e2e0047 2334 * @nblocks: requested number of blocks/extent length (value/result)
6e87ed0f 2335 * @dinode: 1 if we're allocating a dinode block, else 0
3c5d785a 2336 * @generation: the generation number of the inode
b3b94faa 2337 *
09010978 2338 * Returns: 0 or error
b3b94faa
DT
2339 */
2340
6a8099ed 2341int gfs2_alloc_blocks(struct gfs2_inode *ip, u64 *bn, unsigned int *nblocks,
6e87ed0f 2342 bool dinode, u64 *generation)
b3b94faa 2343{
feaa7bba 2344 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
d9ba7615 2345 struct buffer_head *dibh;
b7eba890 2346 struct gfs2_rbm rbm = { .rgd = ip->i_res.rs_rbm.rgd, };
6a8099ed 2347 unsigned int ndata;
3c5d785a 2348 u64 block; /* block, within the file system scope */
d9ba7615 2349 int error;
b3b94faa 2350
9e07f2cb 2351 gfs2_set_alloc_start(&rbm, ip, dinode);
8381e602 2352 error = gfs2_rbm_find(&rbm, GFS2_BLKST_FREE, NULL, ip, false);
62e252ee 2353
137834a6 2354 if (error == -ENOSPC) {
9e07f2cb 2355 gfs2_set_alloc_start(&rbm, ip, dinode);
8381e602 2356 error = gfs2_rbm_find(&rbm, GFS2_BLKST_FREE, NULL, NULL, false);
137834a6
SW
2357 }
2358
62e252ee 2359 /* Since all blocks are reserved in advance, this shouldn't happen */
5b924ae2 2360 if (error) {
5ea5050c 2361 fs_warn(sdp, "inum=%llu error=%d, nblocks=%u, full=%d fail_pt=%d\n",
9e733d39 2362 (unsigned long long)ip->i_no_addr, error, *nblocks,
5ea5050c
BP
2363 test_bit(GBF_FULL, &rbm.rgd->rd_bits->bi_flags),
2364 rbm.rgd->rd_extfail_pt);
62e252ee 2365 goto rgrp_error;
8e2e0047 2366 }
62e252ee 2367
c04a2ef3
SW
2368 gfs2_alloc_extent(&rbm, dinode, nblocks);
2369 block = gfs2_rbm_to_block(&rbm);
c743ffd0 2370 rbm.rgd->rd_last_alloc = block - rbm.rgd->rd_data0;
a097dc7e 2371 if (gfs2_rs_active(&ip->i_res))
5b924ae2 2372 gfs2_adjust_reservation(ip, &rbm, *nblocks);
6a8099ed
SW
2373 ndata = *nblocks;
2374 if (dinode)
2375 ndata--;
b3e47ca0 2376
3c5d785a 2377 if (!dinode) {
6a8099ed 2378 ip->i_goal = block + ndata - 1;
3c5d785a
BP
2379 error = gfs2_meta_inode_buffer(ip, &dibh);
2380 if (error == 0) {
2381 struct gfs2_dinode *di =
2382 (struct gfs2_dinode *)dibh->b_data;
350a9b0a 2383 gfs2_trans_add_meta(ip->i_gl, dibh);
3c5d785a
BP
2384 di->di_goal_meta = di->di_goal_data =
2385 cpu_to_be64(ip->i_goal);
2386 brelse(dibh);
2387 }
d9ba7615 2388 }
4a993fb1 2389 if (rbm.rgd->rd_free < *nblocks) {
e54c78a2 2390 fs_warn(sdp, "nblocks=%u\n", *nblocks);
09010978 2391 goto rgrp_error;
8e2e0047 2392 }
09010978 2393
4a993fb1 2394 rbm.rgd->rd_free -= *nblocks;
3c5d785a 2395 if (dinode) {
4a993fb1
SW
2396 rbm.rgd->rd_dinodes++;
2397 *generation = rbm.rgd->rd_igeneration++;
3c5d785a 2398 if (*generation == 0)
4a993fb1 2399 *generation = rbm.rgd->rd_igeneration++;
3c5d785a 2400 }
b3b94faa 2401
350a9b0a 2402 gfs2_trans_add_meta(rbm.rgd->rd_gl, rbm.rgd->rd_bits[0].bi_bh);
4a993fb1 2403 gfs2_rgrp_out(rbm.rgd, rbm.rgd->rd_bits[0].bi_bh->b_data);
b3b94faa 2404
6a8099ed 2405 gfs2_statfs_change(sdp, 0, -(s64)*nblocks, dinode ? 1 : 0);
3c5d785a 2406 if (dinode)
fbb27873 2407 gfs2_trans_remove_revoke(sdp, block, *nblocks);
6a8099ed 2408
fd4b4e04 2409 gfs2_quota_change(ip, *nblocks, ip->i_inode.i_uid, ip->i_inode.i_gid);
b3b94faa 2410
4a993fb1
SW
2411 rbm.rgd->rd_free_clone -= *nblocks;
2412 trace_gfs2_block_alloc(ip, rbm.rgd, block, *nblocks,
6e87ed0f 2413 dinode ? GFS2_BLKST_DINODE : GFS2_BLKST_USED);
6050b9c7
SW
2414 *bn = block;
2415 return 0;
2416
2417rgrp_error:
4a993fb1 2418 gfs2_rgrp_error(rbm.rgd);
6050b9c7 2419 return -EIO;
b3b94faa
DT
2420}
2421
2422/**
46fcb2ed 2423 * __gfs2_free_blocks - free a contiguous run of block(s)
b3b94faa 2424 * @ip: the inode these blocks are being freed from
0ddeded4 2425 * @rgd: the resource group the blocks are in
b3b94faa
DT
2426 * @bstart: first block of a run of contiguous blocks
2427 * @blen: the length of the block run
46fcb2ed 2428 * @meta: 1 if the blocks represent metadata
b3b94faa
DT
2429 *
2430 */
2431
0ddeded4
AG
2432void __gfs2_free_blocks(struct gfs2_inode *ip, struct gfs2_rgrpd *rgd,
2433 u64 bstart, u32 blen, int meta)
b3b94faa 2434{
feaa7bba 2435 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
b3b94faa 2436
0ddeded4 2437 rgblk_free(sdp, rgd, bstart, blen, GFS2_BLKST_FREE);
41db1ab9 2438 trace_gfs2_block_alloc(ip, rgd, bstart, blen, GFS2_BLKST_FREE);
cfc8b549 2439 rgd->rd_free += blen;
66fc061b 2440 rgd->rd_flags &= ~GFS2_RGF_TRIMMED;
350a9b0a 2441 gfs2_trans_add_meta(rgd->rd_gl, rgd->rd_bits[0].bi_bh);
42d52e38 2442 gfs2_rgrp_out(rgd, rgd->rd_bits[0].bi_bh->b_data);
b3b94faa 2443
6d3117b4 2444 /* Directories keep their data in the metadata address space */
68942870
BP
2445 if (meta || ip->i_depth || gfs2_is_jdata(ip))
2446 gfs2_journal_wipe(ip, bstart, blen);
4c16c36a 2447}
b3b94faa 2448
4c16c36a
BP
2449/**
2450 * gfs2_free_meta - free a contiguous run of data block(s)
2451 * @ip: the inode these blocks are being freed from
0ddeded4 2452 * @rgd: the resource group the blocks are in
4c16c36a
BP
2453 * @bstart: first block of a run of contiguous blocks
2454 * @blen: the length of the block run
2455 *
2456 */
2457
0ddeded4
AG
2458void gfs2_free_meta(struct gfs2_inode *ip, struct gfs2_rgrpd *rgd,
2459 u64 bstart, u32 blen)
4c16c36a
BP
2460{
2461 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
2462
0ddeded4 2463 __gfs2_free_blocks(ip, rgd, bstart, blen, 1);
b3b94faa 2464 gfs2_statfs_change(sdp, 0, +blen, 0);
2933f925 2465 gfs2_quota_change(ip, -(s64)blen, ip->i_inode.i_uid, ip->i_inode.i_gid);
b3b94faa
DT
2466}
2467
feaa7bba
SW
2468void gfs2_unlink_di(struct inode *inode)
2469{
2470 struct gfs2_inode *ip = GFS2_I(inode);
2471 struct gfs2_sbd *sdp = GFS2_SB(inode);
2472 struct gfs2_rgrpd *rgd;
dbb7cae2 2473 u64 blkno = ip->i_no_addr;
feaa7bba 2474
0ddeded4 2475 rgd = gfs2_blk2rgrpd(sdp, blkno, true);
feaa7bba
SW
2476 if (!rgd)
2477 return;
0ddeded4 2478 rgblk_free(sdp, rgd, blkno, 1, GFS2_BLKST_UNLINKED);
41db1ab9 2479 trace_gfs2_block_alloc(ip, rgd, blkno, 1, GFS2_BLKST_UNLINKED);
350a9b0a 2480 gfs2_trans_add_meta(rgd->rd_gl, rgd->rd_bits[0].bi_bh);
42d52e38 2481 gfs2_rgrp_out(rgd, rgd->rd_bits[0].bi_bh->b_data);
f5580d0f 2482 be32_add_cpu(&rgd->rd_rgl->rl_unlinked, 1);
feaa7bba
SW
2483}
2484
a18c78c5 2485void gfs2_free_di(struct gfs2_rgrpd *rgd, struct gfs2_inode *ip)
b3b94faa
DT
2486{
2487 struct gfs2_sbd *sdp = rgd->rd_sbd;
b3b94faa 2488
0ddeded4 2489 rgblk_free(sdp, rgd, ip->i_no_addr, 1, GFS2_BLKST_FREE);
73f74948 2490 if (!rgd->rd_dinodes)
b3b94faa 2491 gfs2_consist_rgrpd(rgd);
73f74948 2492 rgd->rd_dinodes--;
cfc8b549 2493 rgd->rd_free++;
b3b94faa 2494
350a9b0a 2495 gfs2_trans_add_meta(rgd->rd_gl, rgd->rd_bits[0].bi_bh);
42d52e38 2496 gfs2_rgrp_out(rgd, rgd->rd_bits[0].bi_bh->b_data);
f5580d0f 2497 be32_add_cpu(&rgd->rd_rgl->rl_unlinked, -1);
b3b94faa
DT
2498
2499 gfs2_statfs_change(sdp, 0, +1, -1);
41db1ab9 2500 trace_gfs2_block_alloc(ip, rgd, ip->i_no_addr, 1, GFS2_BLKST_FREE);
2933f925 2501 gfs2_quota_change(ip, -1, ip->i_inode.i_uid, ip->i_inode.i_gid);
68942870 2502 gfs2_journal_wipe(ip, ip->i_no_addr, 1);
b3b94faa
DT
2503}
2504
acf7e244
SW
2505/**
2506 * gfs2_check_blk_type - Check the type of a block
2507 * @sdp: The superblock
2508 * @no_addr: The block number to check
2509 * @type: The block type we are looking for
2510 *
2511 * Returns: 0 if the block type matches the expected type
2512 * -ESTALE if it doesn't match
2513 * or -ve errno if something went wrong while checking
2514 */
2515
2516int gfs2_check_blk_type(struct gfs2_sbd *sdp, u64 no_addr, unsigned int type)
2517{
2518 struct gfs2_rgrpd *rgd;
8339ee54 2519 struct gfs2_holder rgd_gh;
dffe12a8 2520 struct gfs2_rbm rbm;
58884c4d 2521 int error = -EINVAL;
acf7e244 2522
66fc061b 2523 rgd = gfs2_blk2rgrpd(sdp, no_addr, 1);
acf7e244 2524 if (!rgd)
8339ee54 2525 goto fail;
acf7e244
SW
2526
2527 error = gfs2_glock_nq_init(rgd->rd_gl, LM_ST_SHARED, 0, &rgd_gh);
2528 if (error)
8339ee54 2529 goto fail;
acf7e244 2530
dffe12a8
BP
2531 rbm.rgd = rgd;
2532 error = gfs2_rbm_from_block(&rbm, no_addr);
f654683d
AG
2533 if (WARN_ON_ONCE(error))
2534 goto fail;
dffe12a8
BP
2535
2536 if (gfs2_testbit(&rbm, false) != type)
acf7e244
SW
2537 error = -ESTALE;
2538
2539 gfs2_glock_dq_uninit(&rgd_gh);
acf7e244
SW
2540fail:
2541 return error;
2542}
2543
b3b94faa
DT
2544/**
2545 * gfs2_rlist_add - add a RG to a list of RGs
70b0c365 2546 * @ip: the inode
b3b94faa
DT
2547 * @rlist: the list of resource groups
2548 * @block: the block
2549 *
2550 * Figure out what RG a block belongs to and add that RG to the list
2551 *
2552 * FIXME: Don't use NOFAIL
2553 *
2554 */
2555
70b0c365 2556void gfs2_rlist_add(struct gfs2_inode *ip, struct gfs2_rgrp_list *rlist,
cd915493 2557 u64 block)
b3b94faa 2558{
70b0c365 2559 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
b3b94faa
DT
2560 struct gfs2_rgrpd *rgd;
2561 struct gfs2_rgrpd **tmp;
2562 unsigned int new_space;
2563 unsigned int x;
2564
2565 if (gfs2_assert_warn(sdp, !rlist->rl_ghs))
2566 return;
2567
03f8c41c
AG
2568 /*
2569 * The resource group last accessed is kept in the last position.
2570 */
2571
2572 if (rlist->rl_rgrps) {
2573 rgd = rlist->rl_rgd[rlist->rl_rgrps - 1];
2574 if (rgrp_contains_block(rgd, block))
2575 return;
66fc061b 2576 rgd = gfs2_blk2rgrpd(sdp, block, 1);
03f8c41c 2577 } else {
b7eba890 2578 rgd = ip->i_res.rs_rbm.rgd;
03f8c41c
AG
2579 if (!rgd || !rgrp_contains_block(rgd, block))
2580 rgd = gfs2_blk2rgrpd(sdp, block, 1);
2581 }
2582
b3b94faa 2583 if (!rgd) {
03f8c41c
AG
2584 fs_err(sdp, "rlist_add: no rgrp for block %llu\n",
2585 (unsigned long long)block);
b3b94faa
DT
2586 return;
2587 }
2588
03f8c41c
AG
2589 for (x = 0; x < rlist->rl_rgrps; x++) {
2590 if (rlist->rl_rgd[x] == rgd) {
2591 swap(rlist->rl_rgd[x],
2592 rlist->rl_rgd[rlist->rl_rgrps - 1]);
b3b94faa 2593 return;
03f8c41c
AG
2594 }
2595 }
b3b94faa
DT
2596
2597 if (rlist->rl_rgrps == rlist->rl_space) {
2598 new_space = rlist->rl_space + 10;
2599
2600 tmp = kcalloc(new_space, sizeof(struct gfs2_rgrpd *),
dd894be8 2601 GFP_NOFS | __GFP_NOFAIL);
b3b94faa
DT
2602
2603 if (rlist->rl_rgd) {
2604 memcpy(tmp, rlist->rl_rgd,
2605 rlist->rl_space * sizeof(struct gfs2_rgrpd *));
2606 kfree(rlist->rl_rgd);
2607 }
2608
2609 rlist->rl_space = new_space;
2610 rlist->rl_rgd = tmp;
2611 }
2612
2613 rlist->rl_rgd[rlist->rl_rgrps++] = rgd;
2614}
2615
2616/**
2617 * gfs2_rlist_alloc - all RGs have been added to the rlist, now allocate
2618 * and initialize an array of glock holders for them
2619 * @rlist: the list of resource groups
b3b94faa
DT
2620 *
2621 * FIXME: Don't use NOFAIL
2622 *
2623 */
2624
c3abc29e 2625void gfs2_rlist_alloc(struct gfs2_rgrp_list *rlist)
b3b94faa
DT
2626{
2627 unsigned int x;
2628
6da2ec56
KC
2629 rlist->rl_ghs = kmalloc_array(rlist->rl_rgrps,
2630 sizeof(struct gfs2_holder),
2631 GFP_NOFS | __GFP_NOFAIL);
b3b94faa
DT
2632 for (x = 0; x < rlist->rl_rgrps; x++)
2633 gfs2_holder_init(rlist->rl_rgd[x]->rd_gl,
c3abc29e 2634 LM_ST_EXCLUSIVE, 0,
b3b94faa
DT
2635 &rlist->rl_ghs[x]);
2636}
2637
2638/**
2639 * gfs2_rlist_free - free a resource group list
27ff6a0f 2640 * @rlist: the list of resource groups
b3b94faa
DT
2641 *
2642 */
2643
2644void gfs2_rlist_free(struct gfs2_rgrp_list *rlist)
2645{
2646 unsigned int x;
2647
2648 kfree(rlist->rl_rgd);
2649
2650 if (rlist->rl_ghs) {
2651 for (x = 0; x < rlist->rl_rgrps; x++)
2652 gfs2_holder_uninit(&rlist->rl_ghs[x]);
2653 kfree(rlist->rl_ghs);
8e2e0047 2654 rlist->rl_ghs = NULL;
b3b94faa
DT
2655 }
2656}
2657