blob: d1aa7249deb208bc5093518fd4c18c8dae086d1d [file] [log] [blame]
Mark Fashehccd979b2005-12-15 14:31:24 -08001/* -*- mode: c; c-basic-offset: 8; -*-
2 * vim: noexpandtab sw=8 ts=8 sts=0:
3 *
4 * alloc.c
5 *
6 * Extent allocs and frees
7 *
8 * Copyright (C) 2002, 2004 Oracle. All rights reserved.
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public
12 * License as published by the Free Software Foundation; either
13 * version 2 of the License, or (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public
21 * License along with this program; if not, write to the
22 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23 * Boston, MA 021110-1307, USA.
24 */
25
26#include <linux/fs.h>
27#include <linux/types.h>
28#include <linux/slab.h>
29#include <linux/highmem.h>
Mark Fasheh60b11392007-02-16 11:46:50 -080030#include <linux/swap.h>
Mark Fashehccd979b2005-12-15 14:31:24 -080031
32#define MLOG_MASK_PREFIX ML_DISK_ALLOC
33#include <cluster/masklog.h>
34
35#include "ocfs2.h"
36
37#include "alloc.h"
Mark Fasheh60b11392007-02-16 11:46:50 -080038#include "aops.h"
Mark Fashehccd979b2005-12-15 14:31:24 -080039#include "dlmglue.h"
40#include "extent_map.h"
41#include "inode.h"
42#include "journal.h"
43#include "localalloc.h"
44#include "suballoc.h"
45#include "sysfile.h"
46#include "file.h"
47#include "super.h"
48#include "uptodate.h"
49
50#include "buffer_head_io.h"
51
Tao Mae7d4cb62008-08-18 17:38:44 +080052/*
53 * ocfs2_extent_tree and ocfs2_extent_tree_operations are used to abstract
54 * the b-tree operations in ocfs2. Now all the b-tree operations are not
55 * limited to ocfs2_dinode only. Any data which need to allocate clusters
56 * to store can use b-tree. And it only needs to implement its ocfs2_extent_tree
57 * and operation.
58 *
59 * ocfs2_extent_tree contains info for the root of the b-tree, it must have a
60 * root ocfs2_extent_list and a root_bh so that they can be used in the b-tree
61 * functions.
62 * ocfs2_extent_tree_operations abstract the normal operations we do for
63 * the root of extent b-tree.
64 */
65struct ocfs2_extent_tree;
66
67struct ocfs2_extent_tree_operations {
Joel Becker35dc0aa2008-08-20 16:25:06 -070068 void (*eo_set_last_eb_blk)(struct ocfs2_extent_tree *et,
69 u64 blkno);
70 u64 (*eo_get_last_eb_blk)(struct ocfs2_extent_tree *et);
71 void (*eo_update_clusters)(struct inode *inode,
72 struct ocfs2_extent_tree *et,
73 u32 new_clusters);
74 int (*eo_sanity_check)(struct inode *inode, struct ocfs2_extent_tree *et);
Joel Becker0ce10102008-08-20 17:19:50 -070075
76 /* These are internal to ocfs2_extent_tree and don't have
77 * accessor functions */
78 void (*eo_fill_root_el)(struct ocfs2_extent_tree *et);
Tao Mae7d4cb62008-08-18 17:38:44 +080079};
80
81struct ocfs2_extent_tree {
Joel Beckerce1d9ea2008-08-20 16:30:07 -070082 enum ocfs2_extent_tree_type et_type;
83 struct ocfs2_extent_tree_operations *et_ops;
84 struct buffer_head *et_root_bh;
85 struct ocfs2_extent_list *et_root_el;
Joel Beckerea5efa12008-08-20 16:57:27 -070086 void *et_object;
Joel Beckerce1d9ea2008-08-20 16:30:07 -070087 unsigned int et_max_leaf_clusters;
Tao Mae7d4cb62008-08-18 17:38:44 +080088};
89
Joel Becker0ce10102008-08-20 17:19:50 -070090static void ocfs2_dinode_fill_root_el(struct ocfs2_extent_tree *et)
91{
92 struct ocfs2_dinode *di = et->et_object;
93
94 et->et_root_el = &di->id2.i_list;
95}
96
Tao Mae7d4cb62008-08-18 17:38:44 +080097static void ocfs2_dinode_set_last_eb_blk(struct ocfs2_extent_tree *et,
98 u64 blkno)
99{
Joel Beckerea5efa12008-08-20 16:57:27 -0700100 struct ocfs2_dinode *di = et->et_object;
Tao Mae7d4cb62008-08-18 17:38:44 +0800101
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700102 BUG_ON(et->et_type != OCFS2_DINODE_EXTENT);
Tao Mae7d4cb62008-08-18 17:38:44 +0800103 di->i_last_eb_blk = cpu_to_le64(blkno);
104}
105
106static u64 ocfs2_dinode_get_last_eb_blk(struct ocfs2_extent_tree *et)
107{
Joel Beckerea5efa12008-08-20 16:57:27 -0700108 struct ocfs2_dinode *di = et->et_object;
Tao Mae7d4cb62008-08-18 17:38:44 +0800109
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700110 BUG_ON(et->et_type != OCFS2_DINODE_EXTENT);
Tao Mae7d4cb62008-08-18 17:38:44 +0800111 return le64_to_cpu(di->i_last_eb_blk);
112}
113
114static void ocfs2_dinode_update_clusters(struct inode *inode,
115 struct ocfs2_extent_tree *et,
116 u32 clusters)
117{
Joel Beckerea5efa12008-08-20 16:57:27 -0700118 struct ocfs2_dinode *di = et->et_object;
Tao Mae7d4cb62008-08-18 17:38:44 +0800119
120 le32_add_cpu(&di->i_clusters, clusters);
121 spin_lock(&OCFS2_I(inode)->ip_lock);
122 OCFS2_I(inode)->ip_clusters = le32_to_cpu(di->i_clusters);
123 spin_unlock(&OCFS2_I(inode)->ip_lock);
124}
125
126static int ocfs2_dinode_sanity_check(struct inode *inode,
127 struct ocfs2_extent_tree *et)
128{
129 int ret = 0;
130 struct ocfs2_dinode *di;
131
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700132 BUG_ON(et->et_type != OCFS2_DINODE_EXTENT);
Tao Mae7d4cb62008-08-18 17:38:44 +0800133
Joel Beckerea5efa12008-08-20 16:57:27 -0700134 di = et->et_object;
Tao Mae7d4cb62008-08-18 17:38:44 +0800135 if (!OCFS2_IS_VALID_DINODE(di)) {
136 ret = -EIO;
137 ocfs2_error(inode->i_sb,
138 "Inode %llu has invalid path root",
139 (unsigned long long)OCFS2_I(inode)->ip_blkno);
140 }
141
142 return ret;
143}
144
145static struct ocfs2_extent_tree_operations ocfs2_dinode_et_ops = {
Joel Becker35dc0aa2008-08-20 16:25:06 -0700146 .eo_set_last_eb_blk = ocfs2_dinode_set_last_eb_blk,
147 .eo_get_last_eb_blk = ocfs2_dinode_get_last_eb_blk,
148 .eo_update_clusters = ocfs2_dinode_update_clusters,
149 .eo_sanity_check = ocfs2_dinode_sanity_check,
Joel Becker0ce10102008-08-20 17:19:50 -0700150 .eo_fill_root_el = ocfs2_dinode_fill_root_el,
Tao Mae7d4cb62008-08-18 17:38:44 +0800151};
152
Joel Becker0ce10102008-08-20 17:19:50 -0700153static void ocfs2_xattr_value_fill_root_el(struct ocfs2_extent_tree *et)
154{
155 struct ocfs2_xattr_value_root *xv = et->et_object;
156
157 et->et_root_el = &xv->xr_list;
158}
159
Tao Maf56654c2008-08-18 17:38:48 +0800160static void ocfs2_xattr_value_set_last_eb_blk(struct ocfs2_extent_tree *et,
161 u64 blkno)
162{
163 struct ocfs2_xattr_value_root *xv =
Joel Beckerea5efa12008-08-20 16:57:27 -0700164 (struct ocfs2_xattr_value_root *)et->et_object;
Tao Maf56654c2008-08-18 17:38:48 +0800165
166 xv->xr_last_eb_blk = cpu_to_le64(blkno);
167}
168
169static u64 ocfs2_xattr_value_get_last_eb_blk(struct ocfs2_extent_tree *et)
170{
171 struct ocfs2_xattr_value_root *xv =
Joel Beckerea5efa12008-08-20 16:57:27 -0700172 (struct ocfs2_xattr_value_root *) et->et_object;
Tao Maf56654c2008-08-18 17:38:48 +0800173
174 return le64_to_cpu(xv->xr_last_eb_blk);
175}
176
177static void ocfs2_xattr_value_update_clusters(struct inode *inode,
178 struct ocfs2_extent_tree *et,
179 u32 clusters)
180{
181 struct ocfs2_xattr_value_root *xv =
Joel Beckerea5efa12008-08-20 16:57:27 -0700182 (struct ocfs2_xattr_value_root *)et->et_object;
Tao Maf56654c2008-08-18 17:38:48 +0800183
184 le32_add_cpu(&xv->xr_clusters, clusters);
185}
186
187static int ocfs2_xattr_value_sanity_check(struct inode *inode,
188 struct ocfs2_extent_tree *et)
189{
190 return 0;
191}
192
193static struct ocfs2_extent_tree_operations ocfs2_xattr_et_ops = {
Joel Becker35dc0aa2008-08-20 16:25:06 -0700194 .eo_set_last_eb_blk = ocfs2_xattr_value_set_last_eb_blk,
195 .eo_get_last_eb_blk = ocfs2_xattr_value_get_last_eb_blk,
196 .eo_update_clusters = ocfs2_xattr_value_update_clusters,
197 .eo_sanity_check = ocfs2_xattr_value_sanity_check,
Joel Becker0ce10102008-08-20 17:19:50 -0700198 .eo_fill_root_el = ocfs2_xattr_value_fill_root_el,
Tao Maf56654c2008-08-18 17:38:48 +0800199};
200
Joel Becker0ce10102008-08-20 17:19:50 -0700201static void ocfs2_xattr_tree_fill_root_el(struct ocfs2_extent_tree *et)
202{
203 struct ocfs2_xattr_block *xb = et->et_object;
204
205 et->et_root_el = &xb->xb_attrs.xb_root.xt_list;
206}
207
Tao Maba492612008-08-18 17:38:49 +0800208static void ocfs2_xattr_tree_set_last_eb_blk(struct ocfs2_extent_tree *et,
209 u64 blkno)
210{
Joel Beckerea5efa12008-08-20 16:57:27 -0700211 struct ocfs2_xattr_block *xb = et->et_object;
Tao Maba492612008-08-18 17:38:49 +0800212 struct ocfs2_xattr_tree_root *xt = &xb->xb_attrs.xb_root;
213
214 xt->xt_last_eb_blk = cpu_to_le64(blkno);
215}
216
217static u64 ocfs2_xattr_tree_get_last_eb_blk(struct ocfs2_extent_tree *et)
218{
Joel Beckerea5efa12008-08-20 16:57:27 -0700219 struct ocfs2_xattr_block *xb = et->et_object;
Tao Maba492612008-08-18 17:38:49 +0800220 struct ocfs2_xattr_tree_root *xt = &xb->xb_attrs.xb_root;
221
222 return le64_to_cpu(xt->xt_last_eb_blk);
223}
224
225static void ocfs2_xattr_tree_update_clusters(struct inode *inode,
226 struct ocfs2_extent_tree *et,
227 u32 clusters)
228{
Joel Beckerea5efa12008-08-20 16:57:27 -0700229 struct ocfs2_xattr_block *xb = et->et_object;
Tao Maba492612008-08-18 17:38:49 +0800230
231 le32_add_cpu(&xb->xb_attrs.xb_root.xt_clusters, clusters);
232}
233
234static int ocfs2_xattr_tree_sanity_check(struct inode *inode,
235 struct ocfs2_extent_tree *et)
236{
237 return 0;
238}
239
240static struct ocfs2_extent_tree_operations ocfs2_xattr_tree_et_ops = {
Joel Becker35dc0aa2008-08-20 16:25:06 -0700241 .eo_set_last_eb_blk = ocfs2_xattr_tree_set_last_eb_blk,
242 .eo_get_last_eb_blk = ocfs2_xattr_tree_get_last_eb_blk,
243 .eo_update_clusters = ocfs2_xattr_tree_update_clusters,
244 .eo_sanity_check = ocfs2_xattr_tree_sanity_check,
Joel Becker0ce10102008-08-20 17:19:50 -0700245 .eo_fill_root_el = ocfs2_xattr_tree_fill_root_el,
Tao Maba492612008-08-18 17:38:49 +0800246};
247
Joel Beckerdc0ce612008-08-20 16:48:35 -0700248static void ocfs2_get_extent_tree(struct ocfs2_extent_tree *et,
249 struct inode *inode,
250 struct buffer_head *bh,
251 enum ocfs2_extent_tree_type et_type,
Joel Beckerea5efa12008-08-20 16:57:27 -0700252 void *obj)
Tao Mae7d4cb62008-08-18 17:38:44 +0800253{
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700254 et->et_type = et_type;
Tao Mae7d4cb62008-08-18 17:38:44 +0800255 get_bh(bh);
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700256 et->et_root_bh = bh;
Joel Beckerdc0ce612008-08-20 16:48:35 -0700257 et->et_max_leaf_clusters = 0;
Joel Beckerea5efa12008-08-20 16:57:27 -0700258 if (!obj)
259 obj = (void *)bh->b_data;
260 et->et_object = obj;
Tao Mae7d4cb62008-08-18 17:38:44 +0800261
Tao Mae7d4cb62008-08-18 17:38:44 +0800262 if (et_type == OCFS2_DINODE_EXTENT) {
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700263 et->et_ops = &ocfs2_dinode_et_ops;
Tao Maf56654c2008-08-18 17:38:48 +0800264 } else if (et_type == OCFS2_XATTR_VALUE_EXTENT) {
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700265 et->et_ops = &ocfs2_xattr_et_ops;
Tao Maba492612008-08-18 17:38:49 +0800266 } else if (et_type == OCFS2_XATTR_TREE_EXTENT) {
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700267 et->et_ops = &ocfs2_xattr_tree_et_ops;
268 et->et_max_leaf_clusters = ocfs2_clusters_for_bytes(inode->i_sb,
Tao Maca12b7c2008-08-18 17:38:52 +0800269 OCFS2_MAX_XATTR_TREE_LEAF_SIZE);
Tao Mae7d4cb62008-08-18 17:38:44 +0800270 }
Joel Becker0ce10102008-08-20 17:19:50 -0700271
272 et->et_ops->eo_fill_root_el(et);
Tao Mae7d4cb62008-08-18 17:38:44 +0800273}
274
Joel Beckerdc0ce612008-08-20 16:48:35 -0700275static void ocfs2_put_extent_tree(struct ocfs2_extent_tree *et)
Tao Mae7d4cb62008-08-18 17:38:44 +0800276{
Joel Beckerdc0ce612008-08-20 16:48:35 -0700277 brelse(et->et_root_bh);
Tao Mae7d4cb62008-08-18 17:38:44 +0800278}
279
Joel Becker35dc0aa2008-08-20 16:25:06 -0700280static inline void ocfs2_et_set_last_eb_blk(struct ocfs2_extent_tree *et,
281 u64 new_last_eb_blk)
Tao Mae7d4cb62008-08-18 17:38:44 +0800282{
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700283 et->et_ops->eo_set_last_eb_blk(et, new_last_eb_blk);
Tao Mae7d4cb62008-08-18 17:38:44 +0800284}
285
Joel Becker35dc0aa2008-08-20 16:25:06 -0700286static inline u64 ocfs2_et_get_last_eb_blk(struct ocfs2_extent_tree *et)
Tao Mae7d4cb62008-08-18 17:38:44 +0800287{
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700288 return et->et_ops->eo_get_last_eb_blk(et);
Tao Mae7d4cb62008-08-18 17:38:44 +0800289}
290
Joel Becker35dc0aa2008-08-20 16:25:06 -0700291static inline void ocfs2_et_update_clusters(struct inode *inode,
292 struct ocfs2_extent_tree *et,
293 u32 clusters)
Tao Mae7d4cb62008-08-18 17:38:44 +0800294{
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700295 et->et_ops->eo_update_clusters(inode, et, clusters);
Joel Becker35dc0aa2008-08-20 16:25:06 -0700296}
297
298static inline int ocfs2_et_sanity_check(struct inode *inode,
299 struct ocfs2_extent_tree *et)
300{
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700301 return et->et_ops->eo_sanity_check(inode, et);
Tao Mae7d4cb62008-08-18 17:38:44 +0800302}
303
Mark Fashehccd979b2005-12-15 14:31:24 -0800304static void ocfs2_free_truncate_context(struct ocfs2_truncate_context *tc);
Mark Fasheh59a5e412007-06-22 15:52:36 -0700305static int ocfs2_cache_extent_block_free(struct ocfs2_cached_dealloc_ctxt *ctxt,
306 struct ocfs2_extent_block *eb);
Mark Fashehccd979b2005-12-15 14:31:24 -0800307
Mark Fashehdcd05382007-01-16 11:32:23 -0800308/*
309 * Structures which describe a path through a btree, and functions to
310 * manipulate them.
311 *
312 * The idea here is to be as generic as possible with the tree
313 * manipulation code.
314 */
315struct ocfs2_path_item {
316 struct buffer_head *bh;
317 struct ocfs2_extent_list *el;
318};
319
320#define OCFS2_MAX_PATH_DEPTH 5
321
322struct ocfs2_path {
323 int p_tree_depth;
324 struct ocfs2_path_item p_node[OCFS2_MAX_PATH_DEPTH];
325};
326
327#define path_root_bh(_path) ((_path)->p_node[0].bh)
328#define path_root_el(_path) ((_path)->p_node[0].el)
329#define path_leaf_bh(_path) ((_path)->p_node[(_path)->p_tree_depth].bh)
330#define path_leaf_el(_path) ((_path)->p_node[(_path)->p_tree_depth].el)
331#define path_num_items(_path) ((_path)->p_tree_depth + 1)
332
333/*
334 * Reset the actual path elements so that we can re-use the structure
335 * to build another path. Generally, this involves freeing the buffer
336 * heads.
337 */
338static void ocfs2_reinit_path(struct ocfs2_path *path, int keep_root)
339{
340 int i, start = 0, depth = 0;
341 struct ocfs2_path_item *node;
342
343 if (keep_root)
344 start = 1;
345
346 for(i = start; i < path_num_items(path); i++) {
347 node = &path->p_node[i];
348
349 brelse(node->bh);
350 node->bh = NULL;
351 node->el = NULL;
352 }
353
354 /*
355 * Tree depth may change during truncate, or insert. If we're
356 * keeping the root extent list, then make sure that our path
357 * structure reflects the proper depth.
358 */
359 if (keep_root)
360 depth = le16_to_cpu(path_root_el(path)->l_tree_depth);
361
362 path->p_tree_depth = depth;
363}
364
365static void ocfs2_free_path(struct ocfs2_path *path)
366{
367 if (path) {
368 ocfs2_reinit_path(path, 0);
369 kfree(path);
370 }
371}
372
373/*
Mark Fasheh328d5752007-06-18 10:48:04 -0700374 * All the elements of src into dest. After this call, src could be freed
375 * without affecting dest.
376 *
377 * Both paths should have the same root. Any non-root elements of dest
378 * will be freed.
379 */
380static void ocfs2_cp_path(struct ocfs2_path *dest, struct ocfs2_path *src)
381{
382 int i;
383
384 BUG_ON(path_root_bh(dest) != path_root_bh(src));
385 BUG_ON(path_root_el(dest) != path_root_el(src));
386
387 ocfs2_reinit_path(dest, 1);
388
389 for(i = 1; i < OCFS2_MAX_PATH_DEPTH; i++) {
390 dest->p_node[i].bh = src->p_node[i].bh;
391 dest->p_node[i].el = src->p_node[i].el;
392
393 if (dest->p_node[i].bh)
394 get_bh(dest->p_node[i].bh);
395 }
396}
397
398/*
Mark Fashehdcd05382007-01-16 11:32:23 -0800399 * Make the *dest path the same as src and re-initialize src path to
400 * have a root only.
401 */
402static void ocfs2_mv_path(struct ocfs2_path *dest, struct ocfs2_path *src)
403{
404 int i;
405
406 BUG_ON(path_root_bh(dest) != path_root_bh(src));
407
408 for(i = 1; i < OCFS2_MAX_PATH_DEPTH; i++) {
409 brelse(dest->p_node[i].bh);
410
411 dest->p_node[i].bh = src->p_node[i].bh;
412 dest->p_node[i].el = src->p_node[i].el;
413
414 src->p_node[i].bh = NULL;
415 src->p_node[i].el = NULL;
416 }
417}
418
419/*
420 * Insert an extent block at given index.
421 *
422 * This will not take an additional reference on eb_bh.
423 */
424static inline void ocfs2_path_insert_eb(struct ocfs2_path *path, int index,
425 struct buffer_head *eb_bh)
426{
427 struct ocfs2_extent_block *eb = (struct ocfs2_extent_block *)eb_bh->b_data;
428
429 /*
430 * Right now, no root bh is an extent block, so this helps
431 * catch code errors with dinode trees. The assertion can be
432 * safely removed if we ever need to insert extent block
433 * structures at the root.
434 */
435 BUG_ON(index == 0);
436
437 path->p_node[index].bh = eb_bh;
438 path->p_node[index].el = &eb->h_list;
439}
440
441static struct ocfs2_path *ocfs2_new_path(struct buffer_head *root_bh,
442 struct ocfs2_extent_list *root_el)
443{
444 struct ocfs2_path *path;
445
446 BUG_ON(le16_to_cpu(root_el->l_tree_depth) >= OCFS2_MAX_PATH_DEPTH);
447
448 path = kzalloc(sizeof(*path), GFP_NOFS);
449 if (path) {
450 path->p_tree_depth = le16_to_cpu(root_el->l_tree_depth);
451 get_bh(root_bh);
452 path_root_bh(path) = root_bh;
453 path_root_el(path) = root_el;
454 }
455
456 return path;
457}
458
459/*
Mark Fashehdcd05382007-01-16 11:32:23 -0800460 * Convenience function to journal all components in a path.
461 */
462static int ocfs2_journal_access_path(struct inode *inode, handle_t *handle,
463 struct ocfs2_path *path)
464{
465 int i, ret = 0;
466
467 if (!path)
468 goto out;
469
470 for(i = 0; i < path_num_items(path); i++) {
471 ret = ocfs2_journal_access(handle, inode, path->p_node[i].bh,
472 OCFS2_JOURNAL_ACCESS_WRITE);
473 if (ret < 0) {
474 mlog_errno(ret);
475 goto out;
476 }
477 }
478
479out:
480 return ret;
481}
482
Mark Fasheh328d5752007-06-18 10:48:04 -0700483/*
484 * Return the index of the extent record which contains cluster #v_cluster.
485 * -1 is returned if it was not found.
486 *
487 * Should work fine on interior and exterior nodes.
488 */
489int ocfs2_search_extent_list(struct ocfs2_extent_list *el, u32 v_cluster)
490{
491 int ret = -1;
492 int i;
493 struct ocfs2_extent_rec *rec;
494 u32 rec_end, rec_start, clusters;
495
496 for(i = 0; i < le16_to_cpu(el->l_next_free_rec); i++) {
497 rec = &el->l_recs[i];
498
499 rec_start = le32_to_cpu(rec->e_cpos);
500 clusters = ocfs2_rec_clusters(el, rec);
501
502 rec_end = rec_start + clusters;
503
504 if (v_cluster >= rec_start && v_cluster < rec_end) {
505 ret = i;
506 break;
507 }
508 }
509
510 return ret;
511}
512
Mark Fashehdcd05382007-01-16 11:32:23 -0800513enum ocfs2_contig_type {
514 CONTIG_NONE = 0,
515 CONTIG_LEFT,
Mark Fasheh328d5752007-06-18 10:48:04 -0700516 CONTIG_RIGHT,
517 CONTIG_LEFTRIGHT,
Mark Fashehdcd05382007-01-16 11:32:23 -0800518};
519
Mark Fashehe48edee2007-03-07 16:46:57 -0800520
521/*
522 * NOTE: ocfs2_block_extent_contig(), ocfs2_extents_adjacent() and
523 * ocfs2_extent_contig only work properly against leaf nodes!
524 */
Mark Fashehdcd05382007-01-16 11:32:23 -0800525static int ocfs2_block_extent_contig(struct super_block *sb,
526 struct ocfs2_extent_rec *ext,
527 u64 blkno)
Mark Fashehccd979b2005-12-15 14:31:24 -0800528{
Mark Fashehe48edee2007-03-07 16:46:57 -0800529 u64 blk_end = le64_to_cpu(ext->e_blkno);
530
531 blk_end += ocfs2_clusters_to_blocks(sb,
532 le16_to_cpu(ext->e_leaf_clusters));
533
534 return blkno == blk_end;
Mark Fashehccd979b2005-12-15 14:31:24 -0800535}
536
Mark Fashehdcd05382007-01-16 11:32:23 -0800537static int ocfs2_extents_adjacent(struct ocfs2_extent_rec *left,
538 struct ocfs2_extent_rec *right)
539{
Mark Fashehe48edee2007-03-07 16:46:57 -0800540 u32 left_range;
541
542 left_range = le32_to_cpu(left->e_cpos) +
543 le16_to_cpu(left->e_leaf_clusters);
544
545 return (left_range == le32_to_cpu(right->e_cpos));
Mark Fashehdcd05382007-01-16 11:32:23 -0800546}
547
548static enum ocfs2_contig_type
549 ocfs2_extent_contig(struct inode *inode,
550 struct ocfs2_extent_rec *ext,
551 struct ocfs2_extent_rec *insert_rec)
552{
553 u64 blkno = le64_to_cpu(insert_rec->e_blkno);
554
Mark Fasheh328d5752007-06-18 10:48:04 -0700555 /*
556 * Refuse to coalesce extent records with different flag
557 * fields - we don't want to mix unwritten extents with user
558 * data.
559 */
560 if (ext->e_flags != insert_rec->e_flags)
561 return CONTIG_NONE;
562
Mark Fashehdcd05382007-01-16 11:32:23 -0800563 if (ocfs2_extents_adjacent(ext, insert_rec) &&
564 ocfs2_block_extent_contig(inode->i_sb, ext, blkno))
565 return CONTIG_RIGHT;
566
567 blkno = le64_to_cpu(ext->e_blkno);
568 if (ocfs2_extents_adjacent(insert_rec, ext) &&
569 ocfs2_block_extent_contig(inode->i_sb, insert_rec, blkno))
570 return CONTIG_LEFT;
571
572 return CONTIG_NONE;
573}
574
575/*
576 * NOTE: We can have pretty much any combination of contiguousness and
577 * appending.
578 *
579 * The usefulness of APPEND_TAIL is more in that it lets us know that
580 * we'll have to update the path to that leaf.
581 */
582enum ocfs2_append_type {
583 APPEND_NONE = 0,
584 APPEND_TAIL,
585};
586
Mark Fasheh328d5752007-06-18 10:48:04 -0700587enum ocfs2_split_type {
588 SPLIT_NONE = 0,
589 SPLIT_LEFT,
590 SPLIT_RIGHT,
591};
592
Mark Fashehdcd05382007-01-16 11:32:23 -0800593struct ocfs2_insert_type {
Mark Fasheh328d5752007-06-18 10:48:04 -0700594 enum ocfs2_split_type ins_split;
Mark Fashehdcd05382007-01-16 11:32:23 -0800595 enum ocfs2_append_type ins_appending;
596 enum ocfs2_contig_type ins_contig;
597 int ins_contig_index;
Mark Fashehdcd05382007-01-16 11:32:23 -0800598 int ins_tree_depth;
599};
600
Mark Fasheh328d5752007-06-18 10:48:04 -0700601struct ocfs2_merge_ctxt {
602 enum ocfs2_contig_type c_contig_type;
603 int c_has_empty_extent;
604 int c_split_covers_rec;
Mark Fasheh328d5752007-06-18 10:48:04 -0700605};
606
Mark Fashehccd979b2005-12-15 14:31:24 -0800607/*
608 * How many free extents have we got before we need more meta data?
609 */
610int ocfs2_num_free_extents(struct ocfs2_super *osb,
611 struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +0800612 struct buffer_head *root_bh,
Tao Maf56654c2008-08-18 17:38:48 +0800613 enum ocfs2_extent_tree_type type,
Joel Beckerea5efa12008-08-20 16:57:27 -0700614 void *obj)
Mark Fashehccd979b2005-12-15 14:31:24 -0800615{
616 int retval;
Tao Mae7d4cb62008-08-18 17:38:44 +0800617 struct ocfs2_extent_list *el = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -0800618 struct ocfs2_extent_block *eb;
619 struct buffer_head *eb_bh = NULL;
Tao Mae7d4cb62008-08-18 17:38:44 +0800620 u64 last_eb_blk = 0;
Joel Becker1c25d932008-08-20 17:09:42 -0700621 struct ocfs2_extent_tree et;
Mark Fashehccd979b2005-12-15 14:31:24 -0800622
623 mlog_entry_void();
624
Joel Becker1c25d932008-08-20 17:09:42 -0700625 ocfs2_get_extent_tree(&et, inode, root_bh, type, obj);
626 el = et.et_root_el;
627 last_eb_blk = ocfs2_et_get_last_eb_blk(&et);
Mark Fashehccd979b2005-12-15 14:31:24 -0800628
Tao Mae7d4cb62008-08-18 17:38:44 +0800629 if (last_eb_blk) {
630 retval = ocfs2_read_block(osb, last_eb_blk,
Mark Fashehccd979b2005-12-15 14:31:24 -0800631 &eb_bh, OCFS2_BH_CACHED, inode);
632 if (retval < 0) {
633 mlog_errno(retval);
634 goto bail;
635 }
636 eb = (struct ocfs2_extent_block *) eb_bh->b_data;
637 el = &eb->h_list;
Tao Mae7d4cb62008-08-18 17:38:44 +0800638 }
Mark Fashehccd979b2005-12-15 14:31:24 -0800639
640 BUG_ON(el->l_tree_depth != 0);
641
642 retval = le16_to_cpu(el->l_count) - le16_to_cpu(el->l_next_free_rec);
643bail:
644 if (eb_bh)
645 brelse(eb_bh);
646
Joel Becker1c25d932008-08-20 17:09:42 -0700647 ocfs2_put_extent_tree(&et);
Mark Fashehccd979b2005-12-15 14:31:24 -0800648 mlog_exit(retval);
649 return retval;
650}
651
652/* expects array to already be allocated
653 *
654 * sets h_signature, h_blkno, h_suballoc_bit, h_suballoc_slot, and
655 * l_count for you
656 */
657static int ocfs2_create_new_meta_bhs(struct ocfs2_super *osb,
Mark Fasheh1fabe142006-10-09 18:11:45 -0700658 handle_t *handle,
Mark Fashehccd979b2005-12-15 14:31:24 -0800659 struct inode *inode,
660 int wanted,
661 struct ocfs2_alloc_context *meta_ac,
662 struct buffer_head *bhs[])
663{
664 int count, status, i;
665 u16 suballoc_bit_start;
666 u32 num_got;
667 u64 first_blkno;
668 struct ocfs2_extent_block *eb;
669
670 mlog_entry_void();
671
672 count = 0;
673 while (count < wanted) {
674 status = ocfs2_claim_metadata(osb,
675 handle,
676 meta_ac,
677 wanted - count,
678 &suballoc_bit_start,
679 &num_got,
680 &first_blkno);
681 if (status < 0) {
682 mlog_errno(status);
683 goto bail;
684 }
685
686 for(i = count; i < (num_got + count); i++) {
687 bhs[i] = sb_getblk(osb->sb, first_blkno);
688 if (bhs[i] == NULL) {
689 status = -EIO;
690 mlog_errno(status);
691 goto bail;
692 }
693 ocfs2_set_new_buffer_uptodate(inode, bhs[i]);
694
695 status = ocfs2_journal_access(handle, inode, bhs[i],
696 OCFS2_JOURNAL_ACCESS_CREATE);
697 if (status < 0) {
698 mlog_errno(status);
699 goto bail;
700 }
701
702 memset(bhs[i]->b_data, 0, osb->sb->s_blocksize);
703 eb = (struct ocfs2_extent_block *) bhs[i]->b_data;
704 /* Ok, setup the minimal stuff here. */
705 strcpy(eb->h_signature, OCFS2_EXTENT_BLOCK_SIGNATURE);
706 eb->h_blkno = cpu_to_le64(first_blkno);
707 eb->h_fs_generation = cpu_to_le32(osb->fs_generation);
Mark Fashehccd979b2005-12-15 14:31:24 -0800708 eb->h_suballoc_slot = cpu_to_le16(osb->slot_num);
Mark Fashehccd979b2005-12-15 14:31:24 -0800709 eb->h_suballoc_bit = cpu_to_le16(suballoc_bit_start);
710 eb->h_list.l_count =
711 cpu_to_le16(ocfs2_extent_recs_per_eb(osb->sb));
712
713 suballoc_bit_start++;
714 first_blkno++;
715
716 /* We'll also be dirtied by the caller, so
717 * this isn't absolutely necessary. */
718 status = ocfs2_journal_dirty(handle, bhs[i]);
719 if (status < 0) {
720 mlog_errno(status);
721 goto bail;
722 }
723 }
724
725 count += num_got;
726 }
727
728 status = 0;
729bail:
730 if (status < 0) {
731 for(i = 0; i < wanted; i++) {
732 if (bhs[i])
733 brelse(bhs[i]);
734 bhs[i] = NULL;
735 }
736 }
737 mlog_exit(status);
738 return status;
739}
740
741/*
Mark Fashehdcd05382007-01-16 11:32:23 -0800742 * Helper function for ocfs2_add_branch() and ocfs2_shift_tree_depth().
743 *
744 * Returns the sum of the rightmost extent rec logical offset and
745 * cluster count.
746 *
747 * ocfs2_add_branch() uses this to determine what logical cluster
748 * value should be populated into the leftmost new branch records.
749 *
750 * ocfs2_shift_tree_depth() uses this to determine the # clusters
751 * value for the new topmost tree record.
752 */
753static inline u32 ocfs2_sum_rightmost_rec(struct ocfs2_extent_list *el)
754{
755 int i;
756
757 i = le16_to_cpu(el->l_next_free_rec) - 1;
758
759 return le32_to_cpu(el->l_recs[i].e_cpos) +
Mark Fashehe48edee2007-03-07 16:46:57 -0800760 ocfs2_rec_clusters(el, &el->l_recs[i]);
Mark Fashehdcd05382007-01-16 11:32:23 -0800761}
762
763/*
Mark Fashehccd979b2005-12-15 14:31:24 -0800764 * Add an entire tree branch to our inode. eb_bh is the extent block
765 * to start at, if we don't want to start the branch at the dinode
766 * structure.
767 *
768 * last_eb_bh is required as we have to update it's next_leaf pointer
769 * for the new last extent block.
770 *
771 * the new branch will be 'empty' in the sense that every block will
Mark Fashehe48edee2007-03-07 16:46:57 -0800772 * contain a single record with cluster count == 0.
Mark Fashehccd979b2005-12-15 14:31:24 -0800773 */
774static int ocfs2_add_branch(struct ocfs2_super *osb,
Mark Fasheh1fabe142006-10-09 18:11:45 -0700775 handle_t *handle,
Mark Fashehccd979b2005-12-15 14:31:24 -0800776 struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +0800777 struct ocfs2_extent_tree *et,
Mark Fashehccd979b2005-12-15 14:31:24 -0800778 struct buffer_head *eb_bh,
Mark Fasheh328d5752007-06-18 10:48:04 -0700779 struct buffer_head **last_eb_bh,
Mark Fashehccd979b2005-12-15 14:31:24 -0800780 struct ocfs2_alloc_context *meta_ac)
781{
782 int status, new_blocks, i;
783 u64 next_blkno, new_last_eb_blk;
784 struct buffer_head *bh;
785 struct buffer_head **new_eb_bhs = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -0800786 struct ocfs2_extent_block *eb;
787 struct ocfs2_extent_list *eb_el;
788 struct ocfs2_extent_list *el;
Mark Fashehdcd05382007-01-16 11:32:23 -0800789 u32 new_cpos;
Mark Fashehccd979b2005-12-15 14:31:24 -0800790
791 mlog_entry_void();
792
Mark Fasheh328d5752007-06-18 10:48:04 -0700793 BUG_ON(!last_eb_bh || !*last_eb_bh);
Mark Fashehccd979b2005-12-15 14:31:24 -0800794
Mark Fashehccd979b2005-12-15 14:31:24 -0800795 if (eb_bh) {
796 eb = (struct ocfs2_extent_block *) eb_bh->b_data;
797 el = &eb->h_list;
798 } else
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700799 el = et->et_root_el;
Mark Fashehccd979b2005-12-15 14:31:24 -0800800
801 /* we never add a branch to a leaf. */
802 BUG_ON(!el->l_tree_depth);
803
804 new_blocks = le16_to_cpu(el->l_tree_depth);
805
806 /* allocate the number of new eb blocks we need */
807 new_eb_bhs = kcalloc(new_blocks, sizeof(struct buffer_head *),
808 GFP_KERNEL);
809 if (!new_eb_bhs) {
810 status = -ENOMEM;
811 mlog_errno(status);
812 goto bail;
813 }
814
815 status = ocfs2_create_new_meta_bhs(osb, handle, inode, new_blocks,
816 meta_ac, new_eb_bhs);
817 if (status < 0) {
818 mlog_errno(status);
819 goto bail;
820 }
821
Mark Fasheh328d5752007-06-18 10:48:04 -0700822 eb = (struct ocfs2_extent_block *)(*last_eb_bh)->b_data;
Mark Fashehdcd05382007-01-16 11:32:23 -0800823 new_cpos = ocfs2_sum_rightmost_rec(&eb->h_list);
824
Mark Fashehccd979b2005-12-15 14:31:24 -0800825 /* Note: new_eb_bhs[new_blocks - 1] is the guy which will be
826 * linked with the rest of the tree.
827 * conversly, new_eb_bhs[0] is the new bottommost leaf.
828 *
829 * when we leave the loop, new_last_eb_blk will point to the
830 * newest leaf, and next_blkno will point to the topmost extent
831 * block. */
832 next_blkno = new_last_eb_blk = 0;
833 for(i = 0; i < new_blocks; i++) {
834 bh = new_eb_bhs[i];
835 eb = (struct ocfs2_extent_block *) bh->b_data;
836 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
837 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
838 status = -EIO;
839 goto bail;
840 }
841 eb_el = &eb->h_list;
842
843 status = ocfs2_journal_access(handle, inode, bh,
844 OCFS2_JOURNAL_ACCESS_CREATE);
845 if (status < 0) {
846 mlog_errno(status);
847 goto bail;
848 }
849
850 eb->h_next_leaf_blk = 0;
851 eb_el->l_tree_depth = cpu_to_le16(i);
852 eb_el->l_next_free_rec = cpu_to_le16(1);
Mark Fashehdcd05382007-01-16 11:32:23 -0800853 /*
854 * This actually counts as an empty extent as
855 * c_clusters == 0
856 */
857 eb_el->l_recs[0].e_cpos = cpu_to_le32(new_cpos);
Mark Fashehccd979b2005-12-15 14:31:24 -0800858 eb_el->l_recs[0].e_blkno = cpu_to_le64(next_blkno);
Mark Fashehe48edee2007-03-07 16:46:57 -0800859 /*
860 * eb_el isn't always an interior node, but even leaf
861 * nodes want a zero'd flags and reserved field so
862 * this gets the whole 32 bits regardless of use.
863 */
864 eb_el->l_recs[0].e_int_clusters = cpu_to_le32(0);
Mark Fashehccd979b2005-12-15 14:31:24 -0800865 if (!eb_el->l_tree_depth)
866 new_last_eb_blk = le64_to_cpu(eb->h_blkno);
867
868 status = ocfs2_journal_dirty(handle, bh);
869 if (status < 0) {
870 mlog_errno(status);
871 goto bail;
872 }
873
874 next_blkno = le64_to_cpu(eb->h_blkno);
875 }
876
877 /* This is a bit hairy. We want to update up to three blocks
878 * here without leaving any of them in an inconsistent state
879 * in case of error. We don't have to worry about
880 * journal_dirty erroring as it won't unless we've aborted the
881 * handle (in which case we would never be here) so reserving
882 * the write with journal_access is all we need to do. */
Mark Fasheh328d5752007-06-18 10:48:04 -0700883 status = ocfs2_journal_access(handle, inode, *last_eb_bh,
Mark Fashehccd979b2005-12-15 14:31:24 -0800884 OCFS2_JOURNAL_ACCESS_WRITE);
885 if (status < 0) {
886 mlog_errno(status);
887 goto bail;
888 }
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700889 status = ocfs2_journal_access(handle, inode, et->et_root_bh,
Mark Fashehccd979b2005-12-15 14:31:24 -0800890 OCFS2_JOURNAL_ACCESS_WRITE);
891 if (status < 0) {
892 mlog_errno(status);
893 goto bail;
894 }
895 if (eb_bh) {
896 status = ocfs2_journal_access(handle, inode, eb_bh,
897 OCFS2_JOURNAL_ACCESS_WRITE);
898 if (status < 0) {
899 mlog_errno(status);
900 goto bail;
901 }
902 }
903
904 /* Link the new branch into the rest of the tree (el will
Tao Mae7d4cb62008-08-18 17:38:44 +0800905 * either be on the root_bh, or the extent block passed in. */
Mark Fashehccd979b2005-12-15 14:31:24 -0800906 i = le16_to_cpu(el->l_next_free_rec);
907 el->l_recs[i].e_blkno = cpu_to_le64(next_blkno);
Mark Fashehdcd05382007-01-16 11:32:23 -0800908 el->l_recs[i].e_cpos = cpu_to_le32(new_cpos);
Mark Fashehe48edee2007-03-07 16:46:57 -0800909 el->l_recs[i].e_int_clusters = 0;
Mark Fashehccd979b2005-12-15 14:31:24 -0800910 le16_add_cpu(&el->l_next_free_rec, 1);
911
912 /* fe needs a new last extent block pointer, as does the
913 * next_leaf on the previously last-extent-block. */
Joel Becker35dc0aa2008-08-20 16:25:06 -0700914 ocfs2_et_set_last_eb_blk(et, new_last_eb_blk);
Mark Fashehccd979b2005-12-15 14:31:24 -0800915
Mark Fasheh328d5752007-06-18 10:48:04 -0700916 eb = (struct ocfs2_extent_block *) (*last_eb_bh)->b_data;
Mark Fashehccd979b2005-12-15 14:31:24 -0800917 eb->h_next_leaf_blk = cpu_to_le64(new_last_eb_blk);
918
Mark Fasheh328d5752007-06-18 10:48:04 -0700919 status = ocfs2_journal_dirty(handle, *last_eb_bh);
Mark Fashehccd979b2005-12-15 14:31:24 -0800920 if (status < 0)
921 mlog_errno(status);
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700922 status = ocfs2_journal_dirty(handle, et->et_root_bh);
Mark Fashehccd979b2005-12-15 14:31:24 -0800923 if (status < 0)
924 mlog_errno(status);
925 if (eb_bh) {
926 status = ocfs2_journal_dirty(handle, eb_bh);
927 if (status < 0)
928 mlog_errno(status);
929 }
930
Mark Fasheh328d5752007-06-18 10:48:04 -0700931 /*
932 * Some callers want to track the rightmost leaf so pass it
933 * back here.
934 */
935 brelse(*last_eb_bh);
936 get_bh(new_eb_bhs[0]);
937 *last_eb_bh = new_eb_bhs[0];
938
Mark Fashehccd979b2005-12-15 14:31:24 -0800939 status = 0;
940bail:
941 if (new_eb_bhs) {
942 for (i = 0; i < new_blocks; i++)
943 if (new_eb_bhs[i])
944 brelse(new_eb_bhs[i]);
945 kfree(new_eb_bhs);
946 }
947
948 mlog_exit(status);
949 return status;
950}
951
952/*
953 * adds another level to the allocation tree.
954 * returns back the new extent block so you can add a branch to it
955 * after this call.
956 */
957static int ocfs2_shift_tree_depth(struct ocfs2_super *osb,
Mark Fasheh1fabe142006-10-09 18:11:45 -0700958 handle_t *handle,
Mark Fashehccd979b2005-12-15 14:31:24 -0800959 struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +0800960 struct ocfs2_extent_tree *et,
Mark Fashehccd979b2005-12-15 14:31:24 -0800961 struct ocfs2_alloc_context *meta_ac,
962 struct buffer_head **ret_new_eb_bh)
963{
964 int status, i;
Mark Fashehdcd05382007-01-16 11:32:23 -0800965 u32 new_clusters;
Mark Fashehccd979b2005-12-15 14:31:24 -0800966 struct buffer_head *new_eb_bh = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -0800967 struct ocfs2_extent_block *eb;
Tao Mae7d4cb62008-08-18 17:38:44 +0800968 struct ocfs2_extent_list *root_el;
Mark Fashehccd979b2005-12-15 14:31:24 -0800969 struct ocfs2_extent_list *eb_el;
970
971 mlog_entry_void();
972
973 status = ocfs2_create_new_meta_bhs(osb, handle, inode, 1, meta_ac,
974 &new_eb_bh);
975 if (status < 0) {
976 mlog_errno(status);
977 goto bail;
978 }
979
980 eb = (struct ocfs2_extent_block *) new_eb_bh->b_data;
981 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
982 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
983 status = -EIO;
984 goto bail;
985 }
986
987 eb_el = &eb->h_list;
Joel Beckerce1d9ea2008-08-20 16:30:07 -0700988 root_el = et->et_root_el;
Mark Fashehccd979b2005-12-15 14:31:24 -0800989
990 status = ocfs2_journal_access(handle, inode, new_eb_bh,
991 OCFS2_JOURNAL_ACCESS_CREATE);
992 if (status < 0) {
993 mlog_errno(status);
994 goto bail;
995 }
996
Tao Mae7d4cb62008-08-18 17:38:44 +0800997 /* copy the root extent list data into the new extent block */
998 eb_el->l_tree_depth = root_el->l_tree_depth;
999 eb_el->l_next_free_rec = root_el->l_next_free_rec;
1000 for (i = 0; i < le16_to_cpu(root_el->l_next_free_rec); i++)
1001 eb_el->l_recs[i] = root_el->l_recs[i];
Mark Fashehccd979b2005-12-15 14:31:24 -08001002
1003 status = ocfs2_journal_dirty(handle, new_eb_bh);
1004 if (status < 0) {
1005 mlog_errno(status);
1006 goto bail;
1007 }
1008
Joel Beckerce1d9ea2008-08-20 16:30:07 -07001009 status = ocfs2_journal_access(handle, inode, et->et_root_bh,
Mark Fashehccd979b2005-12-15 14:31:24 -08001010 OCFS2_JOURNAL_ACCESS_WRITE);
1011 if (status < 0) {
1012 mlog_errno(status);
1013 goto bail;
1014 }
1015
Mark Fashehdcd05382007-01-16 11:32:23 -08001016 new_clusters = ocfs2_sum_rightmost_rec(eb_el);
1017
Tao Mae7d4cb62008-08-18 17:38:44 +08001018 /* update root_bh now */
1019 le16_add_cpu(&root_el->l_tree_depth, 1);
1020 root_el->l_recs[0].e_cpos = 0;
1021 root_el->l_recs[0].e_blkno = eb->h_blkno;
1022 root_el->l_recs[0].e_int_clusters = cpu_to_le32(new_clusters);
1023 for (i = 1; i < le16_to_cpu(root_el->l_next_free_rec); i++)
1024 memset(&root_el->l_recs[i], 0, sizeof(struct ocfs2_extent_rec));
1025 root_el->l_next_free_rec = cpu_to_le16(1);
Mark Fashehccd979b2005-12-15 14:31:24 -08001026
1027 /* If this is our 1st tree depth shift, then last_eb_blk
1028 * becomes the allocated extent block */
Tao Mae7d4cb62008-08-18 17:38:44 +08001029 if (root_el->l_tree_depth == cpu_to_le16(1))
Joel Becker35dc0aa2008-08-20 16:25:06 -07001030 ocfs2_et_set_last_eb_blk(et, le64_to_cpu(eb->h_blkno));
Mark Fashehccd979b2005-12-15 14:31:24 -08001031
Joel Beckerce1d9ea2008-08-20 16:30:07 -07001032 status = ocfs2_journal_dirty(handle, et->et_root_bh);
Mark Fashehccd979b2005-12-15 14:31:24 -08001033 if (status < 0) {
1034 mlog_errno(status);
1035 goto bail;
1036 }
1037
1038 *ret_new_eb_bh = new_eb_bh;
1039 new_eb_bh = NULL;
1040 status = 0;
1041bail:
1042 if (new_eb_bh)
1043 brelse(new_eb_bh);
1044
1045 mlog_exit(status);
1046 return status;
1047}
1048
1049/*
Mark Fashehccd979b2005-12-15 14:31:24 -08001050 * Should only be called when there is no space left in any of the
1051 * leaf nodes. What we want to do is find the lowest tree depth
1052 * non-leaf extent block with room for new records. There are three
1053 * valid results of this search:
1054 *
1055 * 1) a lowest extent block is found, then we pass it back in
1056 * *lowest_eb_bh and return '0'
1057 *
Tao Mae7d4cb62008-08-18 17:38:44 +08001058 * 2) the search fails to find anything, but the root_el has room. We
Mark Fashehccd979b2005-12-15 14:31:24 -08001059 * pass NULL back in *lowest_eb_bh, but still return '0'
1060 *
Tao Mae7d4cb62008-08-18 17:38:44 +08001061 * 3) the search fails to find anything AND the root_el is full, in
Mark Fashehccd979b2005-12-15 14:31:24 -08001062 * which case we return > 0
1063 *
1064 * return status < 0 indicates an error.
1065 */
1066static int ocfs2_find_branch_target(struct ocfs2_super *osb,
1067 struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +08001068 struct ocfs2_extent_tree *et,
Mark Fashehccd979b2005-12-15 14:31:24 -08001069 struct buffer_head **target_bh)
1070{
1071 int status = 0, i;
1072 u64 blkno;
Mark Fashehccd979b2005-12-15 14:31:24 -08001073 struct ocfs2_extent_block *eb;
1074 struct ocfs2_extent_list *el;
1075 struct buffer_head *bh = NULL;
1076 struct buffer_head *lowest_bh = NULL;
1077
1078 mlog_entry_void();
1079
1080 *target_bh = NULL;
1081
Joel Beckerce1d9ea2008-08-20 16:30:07 -07001082 el = et->et_root_el;
Mark Fashehccd979b2005-12-15 14:31:24 -08001083
1084 while(le16_to_cpu(el->l_tree_depth) > 1) {
1085 if (le16_to_cpu(el->l_next_free_rec) == 0) {
Mark Fashehb0697052006-03-03 10:24:33 -08001086 ocfs2_error(inode->i_sb, "Dinode %llu has empty "
Mark Fashehccd979b2005-12-15 14:31:24 -08001087 "extent list (next_free_rec == 0)",
Mark Fashehb0697052006-03-03 10:24:33 -08001088 (unsigned long long)OCFS2_I(inode)->ip_blkno);
Mark Fashehccd979b2005-12-15 14:31:24 -08001089 status = -EIO;
1090 goto bail;
1091 }
1092 i = le16_to_cpu(el->l_next_free_rec) - 1;
1093 blkno = le64_to_cpu(el->l_recs[i].e_blkno);
1094 if (!blkno) {
Mark Fashehb0697052006-03-03 10:24:33 -08001095 ocfs2_error(inode->i_sb, "Dinode %llu has extent "
Mark Fashehccd979b2005-12-15 14:31:24 -08001096 "list where extent # %d has no physical "
1097 "block start",
Mark Fashehb0697052006-03-03 10:24:33 -08001098 (unsigned long long)OCFS2_I(inode)->ip_blkno, i);
Mark Fashehccd979b2005-12-15 14:31:24 -08001099 status = -EIO;
1100 goto bail;
1101 }
1102
1103 if (bh) {
1104 brelse(bh);
1105 bh = NULL;
1106 }
1107
1108 status = ocfs2_read_block(osb, blkno, &bh, OCFS2_BH_CACHED,
1109 inode);
1110 if (status < 0) {
1111 mlog_errno(status);
1112 goto bail;
1113 }
1114
1115 eb = (struct ocfs2_extent_block *) bh->b_data;
1116 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
1117 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
1118 status = -EIO;
1119 goto bail;
1120 }
1121 el = &eb->h_list;
1122
1123 if (le16_to_cpu(el->l_next_free_rec) <
1124 le16_to_cpu(el->l_count)) {
1125 if (lowest_bh)
1126 brelse(lowest_bh);
1127 lowest_bh = bh;
1128 get_bh(lowest_bh);
1129 }
1130 }
1131
1132 /* If we didn't find one and the fe doesn't have any room,
1133 * then return '1' */
Joel Beckerce1d9ea2008-08-20 16:30:07 -07001134 el = et->et_root_el;
Tao Mae7d4cb62008-08-18 17:38:44 +08001135 if (!lowest_bh && (el->l_next_free_rec == el->l_count))
Mark Fashehccd979b2005-12-15 14:31:24 -08001136 status = 1;
1137
1138 *target_bh = lowest_bh;
1139bail:
1140 if (bh)
1141 brelse(bh);
1142
1143 mlog_exit(status);
1144 return status;
1145}
1146
Mark Fashehe48edee2007-03-07 16:46:57 -08001147/*
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001148 * Grow a b-tree so that it has more records.
1149 *
1150 * We might shift the tree depth in which case existing paths should
1151 * be considered invalid.
1152 *
1153 * Tree depth after the grow is returned via *final_depth.
Mark Fasheh328d5752007-06-18 10:48:04 -07001154 *
1155 * *last_eb_bh will be updated by ocfs2_add_branch().
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001156 */
1157static int ocfs2_grow_tree(struct inode *inode, handle_t *handle,
Tao Mae7d4cb62008-08-18 17:38:44 +08001158 struct ocfs2_extent_tree *et, int *final_depth,
Mark Fasheh328d5752007-06-18 10:48:04 -07001159 struct buffer_head **last_eb_bh,
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001160 struct ocfs2_alloc_context *meta_ac)
1161{
1162 int ret, shift;
Joel Beckerce1d9ea2008-08-20 16:30:07 -07001163 struct ocfs2_extent_list *el = et->et_root_el;
Tao Mae7d4cb62008-08-18 17:38:44 +08001164 int depth = le16_to_cpu(el->l_tree_depth);
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001165 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1166 struct buffer_head *bh = NULL;
1167
1168 BUG_ON(meta_ac == NULL);
1169
Tao Mae7d4cb62008-08-18 17:38:44 +08001170 shift = ocfs2_find_branch_target(osb, inode, et, &bh);
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001171 if (shift < 0) {
1172 ret = shift;
1173 mlog_errno(ret);
1174 goto out;
1175 }
1176
1177 /* We traveled all the way to the bottom of the allocation tree
1178 * and didn't find room for any more extents - we need to add
1179 * another tree level */
1180 if (shift) {
1181 BUG_ON(bh);
1182 mlog(0, "need to shift tree depth (current = %d)\n", depth);
1183
1184 /* ocfs2_shift_tree_depth will return us a buffer with
1185 * the new extent block (so we can pass that to
1186 * ocfs2_add_branch). */
Tao Mae7d4cb62008-08-18 17:38:44 +08001187 ret = ocfs2_shift_tree_depth(osb, handle, inode, et,
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001188 meta_ac, &bh);
1189 if (ret < 0) {
1190 mlog_errno(ret);
1191 goto out;
1192 }
1193 depth++;
Mark Fasheh328d5752007-06-18 10:48:04 -07001194 if (depth == 1) {
1195 /*
1196 * Special case: we have room now if we shifted from
1197 * tree_depth 0, so no more work needs to be done.
1198 *
1199 * We won't be calling add_branch, so pass
1200 * back *last_eb_bh as the new leaf. At depth
1201 * zero, it should always be null so there's
1202 * no reason to brelse.
1203 */
1204 BUG_ON(*last_eb_bh);
1205 get_bh(bh);
1206 *last_eb_bh = bh;
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001207 goto out;
Mark Fasheh328d5752007-06-18 10:48:04 -07001208 }
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001209 }
1210
1211 /* call ocfs2_add_branch to add the final part of the tree with
1212 * the new data. */
1213 mlog(0, "add branch. bh = %p\n", bh);
Tao Mae7d4cb62008-08-18 17:38:44 +08001214 ret = ocfs2_add_branch(osb, handle, inode, et, bh, last_eb_bh,
Mark Fashehc3afcbb2007-05-29 14:28:51 -07001215 meta_ac);
1216 if (ret < 0) {
1217 mlog_errno(ret);
1218 goto out;
1219 }
1220
1221out:
1222 if (final_depth)
1223 *final_depth = depth;
1224 brelse(bh);
1225 return ret;
1226}
1227
1228/*
Mark Fashehdcd05382007-01-16 11:32:23 -08001229 * This function will discard the rightmost extent record.
1230 */
1231static void ocfs2_shift_records_right(struct ocfs2_extent_list *el)
1232{
1233 int next_free = le16_to_cpu(el->l_next_free_rec);
1234 int count = le16_to_cpu(el->l_count);
1235 unsigned int num_bytes;
1236
1237 BUG_ON(!next_free);
1238 /* This will cause us to go off the end of our extent list. */
1239 BUG_ON(next_free >= count);
1240
1241 num_bytes = sizeof(struct ocfs2_extent_rec) * next_free;
1242
1243 memmove(&el->l_recs[1], &el->l_recs[0], num_bytes);
1244}
1245
1246static void ocfs2_rotate_leaf(struct ocfs2_extent_list *el,
1247 struct ocfs2_extent_rec *insert_rec)
1248{
1249 int i, insert_index, next_free, has_empty, num_bytes;
1250 u32 insert_cpos = le32_to_cpu(insert_rec->e_cpos);
1251 struct ocfs2_extent_rec *rec;
1252
1253 next_free = le16_to_cpu(el->l_next_free_rec);
1254 has_empty = ocfs2_is_empty_extent(&el->l_recs[0]);
1255
1256 BUG_ON(!next_free);
1257
1258 /* The tree code before us didn't allow enough room in the leaf. */
Julia Lawallb1f35502008-03-04 15:21:05 -08001259 BUG_ON(el->l_next_free_rec == el->l_count && !has_empty);
Mark Fashehdcd05382007-01-16 11:32:23 -08001260
1261 /*
1262 * The easiest way to approach this is to just remove the
1263 * empty extent and temporarily decrement next_free.
1264 */
1265 if (has_empty) {
1266 /*
1267 * If next_free was 1 (only an empty extent), this
1268 * loop won't execute, which is fine. We still want
1269 * the decrement above to happen.
1270 */
1271 for(i = 0; i < (next_free - 1); i++)
1272 el->l_recs[i] = el->l_recs[i+1];
1273
1274 next_free--;
1275 }
1276
1277 /*
1278 * Figure out what the new record index should be.
1279 */
1280 for(i = 0; i < next_free; i++) {
1281 rec = &el->l_recs[i];
1282
1283 if (insert_cpos < le32_to_cpu(rec->e_cpos))
1284 break;
1285 }
1286 insert_index = i;
1287
1288 mlog(0, "ins %u: index %d, has_empty %d, next_free %d, count %d\n",
1289 insert_cpos, insert_index, has_empty, next_free, le16_to_cpu(el->l_count));
1290
1291 BUG_ON(insert_index < 0);
1292 BUG_ON(insert_index >= le16_to_cpu(el->l_count));
1293 BUG_ON(insert_index > next_free);
1294
1295 /*
1296 * No need to memmove if we're just adding to the tail.
1297 */
1298 if (insert_index != next_free) {
1299 BUG_ON(next_free >= le16_to_cpu(el->l_count));
1300
1301 num_bytes = next_free - insert_index;
1302 num_bytes *= sizeof(struct ocfs2_extent_rec);
1303 memmove(&el->l_recs[insert_index + 1],
1304 &el->l_recs[insert_index],
1305 num_bytes);
1306 }
1307
1308 /*
1309 * Either we had an empty extent, and need to re-increment or
1310 * there was no empty extent on a non full rightmost leaf node,
1311 * in which case we still need to increment.
1312 */
1313 next_free++;
1314 el->l_next_free_rec = cpu_to_le16(next_free);
1315 /*
1316 * Make sure none of the math above just messed up our tree.
1317 */
1318 BUG_ON(le16_to_cpu(el->l_next_free_rec) > le16_to_cpu(el->l_count));
1319
1320 el->l_recs[insert_index] = *insert_rec;
1321
1322}
1323
Mark Fasheh328d5752007-06-18 10:48:04 -07001324static void ocfs2_remove_empty_extent(struct ocfs2_extent_list *el)
1325{
1326 int size, num_recs = le16_to_cpu(el->l_next_free_rec);
1327
1328 BUG_ON(num_recs == 0);
1329
1330 if (ocfs2_is_empty_extent(&el->l_recs[0])) {
1331 num_recs--;
1332 size = num_recs * sizeof(struct ocfs2_extent_rec);
1333 memmove(&el->l_recs[0], &el->l_recs[1], size);
1334 memset(&el->l_recs[num_recs], 0,
1335 sizeof(struct ocfs2_extent_rec));
1336 el->l_next_free_rec = cpu_to_le16(num_recs);
1337 }
1338}
1339
Mark Fashehdcd05382007-01-16 11:32:23 -08001340/*
1341 * Create an empty extent record .
1342 *
1343 * l_next_free_rec may be updated.
1344 *
1345 * If an empty extent already exists do nothing.
1346 */
1347static void ocfs2_create_empty_extent(struct ocfs2_extent_list *el)
1348{
1349 int next_free = le16_to_cpu(el->l_next_free_rec);
1350
Mark Fashehe48edee2007-03-07 16:46:57 -08001351 BUG_ON(le16_to_cpu(el->l_tree_depth) != 0);
1352
Mark Fashehdcd05382007-01-16 11:32:23 -08001353 if (next_free == 0)
1354 goto set_and_inc;
1355
1356 if (ocfs2_is_empty_extent(&el->l_recs[0]))
1357 return;
1358
1359 mlog_bug_on_msg(el->l_count == el->l_next_free_rec,
1360 "Asked to create an empty extent in a full list:\n"
1361 "count = %u, tree depth = %u",
1362 le16_to_cpu(el->l_count),
1363 le16_to_cpu(el->l_tree_depth));
1364
1365 ocfs2_shift_records_right(el);
1366
1367set_and_inc:
1368 le16_add_cpu(&el->l_next_free_rec, 1);
1369 memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec));
1370}
1371
1372/*
1373 * For a rotation which involves two leaf nodes, the "root node" is
1374 * the lowest level tree node which contains a path to both leafs. This
1375 * resulting set of information can be used to form a complete "subtree"
1376 *
1377 * This function is passed two full paths from the dinode down to a
1378 * pair of adjacent leaves. It's task is to figure out which path
1379 * index contains the subtree root - this can be the root index itself
1380 * in a worst-case rotation.
1381 *
1382 * The array index of the subtree root is passed back.
1383 */
1384static int ocfs2_find_subtree_root(struct inode *inode,
1385 struct ocfs2_path *left,
1386 struct ocfs2_path *right)
1387{
1388 int i = 0;
1389
1390 /*
1391 * Check that the caller passed in two paths from the same tree.
1392 */
1393 BUG_ON(path_root_bh(left) != path_root_bh(right));
1394
1395 do {
1396 i++;
1397
1398 /*
1399 * The caller didn't pass two adjacent paths.
1400 */
1401 mlog_bug_on_msg(i > left->p_tree_depth,
1402 "Inode %lu, left depth %u, right depth %u\n"
1403 "left leaf blk %llu, right leaf blk %llu\n",
1404 inode->i_ino, left->p_tree_depth,
1405 right->p_tree_depth,
1406 (unsigned long long)path_leaf_bh(left)->b_blocknr,
1407 (unsigned long long)path_leaf_bh(right)->b_blocknr);
1408 } while (left->p_node[i].bh->b_blocknr ==
1409 right->p_node[i].bh->b_blocknr);
1410
1411 return i - 1;
1412}
1413
1414typedef void (path_insert_t)(void *, struct buffer_head *);
1415
1416/*
1417 * Traverse a btree path in search of cpos, starting at root_el.
1418 *
1419 * This code can be called with a cpos larger than the tree, in which
1420 * case it will return the rightmost path.
1421 */
1422static int __ocfs2_find_path(struct inode *inode,
1423 struct ocfs2_extent_list *root_el, u32 cpos,
1424 path_insert_t *func, void *data)
1425{
1426 int i, ret = 0;
1427 u32 range;
1428 u64 blkno;
1429 struct buffer_head *bh = NULL;
1430 struct ocfs2_extent_block *eb;
1431 struct ocfs2_extent_list *el;
1432 struct ocfs2_extent_rec *rec;
1433 struct ocfs2_inode_info *oi = OCFS2_I(inode);
1434
1435 el = root_el;
1436 while (el->l_tree_depth) {
1437 if (le16_to_cpu(el->l_next_free_rec) == 0) {
1438 ocfs2_error(inode->i_sb,
1439 "Inode %llu has empty extent list at "
1440 "depth %u\n",
1441 (unsigned long long)oi->ip_blkno,
1442 le16_to_cpu(el->l_tree_depth));
1443 ret = -EROFS;
1444 goto out;
1445
1446 }
1447
1448 for(i = 0; i < le16_to_cpu(el->l_next_free_rec) - 1; i++) {
1449 rec = &el->l_recs[i];
1450
1451 /*
1452 * In the case that cpos is off the allocation
1453 * tree, this should just wind up returning the
1454 * rightmost record.
1455 */
1456 range = le32_to_cpu(rec->e_cpos) +
Mark Fashehe48edee2007-03-07 16:46:57 -08001457 ocfs2_rec_clusters(el, rec);
Mark Fashehdcd05382007-01-16 11:32:23 -08001458 if (cpos >= le32_to_cpu(rec->e_cpos) && cpos < range)
1459 break;
1460 }
1461
1462 blkno = le64_to_cpu(el->l_recs[i].e_blkno);
1463 if (blkno == 0) {
1464 ocfs2_error(inode->i_sb,
1465 "Inode %llu has bad blkno in extent list "
1466 "at depth %u (index %d)\n",
1467 (unsigned long long)oi->ip_blkno,
1468 le16_to_cpu(el->l_tree_depth), i);
1469 ret = -EROFS;
1470 goto out;
1471 }
1472
1473 brelse(bh);
1474 bh = NULL;
1475 ret = ocfs2_read_block(OCFS2_SB(inode->i_sb), blkno,
1476 &bh, OCFS2_BH_CACHED, inode);
1477 if (ret) {
1478 mlog_errno(ret);
1479 goto out;
1480 }
1481
1482 eb = (struct ocfs2_extent_block *) bh->b_data;
1483 el = &eb->h_list;
1484 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
1485 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
1486 ret = -EIO;
1487 goto out;
1488 }
1489
1490 if (le16_to_cpu(el->l_next_free_rec) >
1491 le16_to_cpu(el->l_count)) {
1492 ocfs2_error(inode->i_sb,
1493 "Inode %llu has bad count in extent list "
1494 "at block %llu (next free=%u, count=%u)\n",
1495 (unsigned long long)oi->ip_blkno,
1496 (unsigned long long)bh->b_blocknr,
1497 le16_to_cpu(el->l_next_free_rec),
1498 le16_to_cpu(el->l_count));
1499 ret = -EROFS;
1500 goto out;
1501 }
1502
1503 if (func)
1504 func(data, bh);
1505 }
1506
1507out:
1508 /*
1509 * Catch any trailing bh that the loop didn't handle.
1510 */
1511 brelse(bh);
1512
1513 return ret;
1514}
1515
1516/*
1517 * Given an initialized path (that is, it has a valid root extent
1518 * list), this function will traverse the btree in search of the path
1519 * which would contain cpos.
1520 *
1521 * The path traveled is recorded in the path structure.
1522 *
1523 * Note that this will not do any comparisons on leaf node extent
1524 * records, so it will work fine in the case that we just added a tree
1525 * branch.
1526 */
1527struct find_path_data {
1528 int index;
1529 struct ocfs2_path *path;
1530};
1531static void find_path_ins(void *data, struct buffer_head *bh)
1532{
1533 struct find_path_data *fp = data;
1534
1535 get_bh(bh);
1536 ocfs2_path_insert_eb(fp->path, fp->index, bh);
1537 fp->index++;
1538}
1539static int ocfs2_find_path(struct inode *inode, struct ocfs2_path *path,
1540 u32 cpos)
1541{
1542 struct find_path_data data;
1543
1544 data.index = 1;
1545 data.path = path;
1546 return __ocfs2_find_path(inode, path_root_el(path), cpos,
1547 find_path_ins, &data);
1548}
1549
1550static void find_leaf_ins(void *data, struct buffer_head *bh)
1551{
1552 struct ocfs2_extent_block *eb =(struct ocfs2_extent_block *)bh->b_data;
1553 struct ocfs2_extent_list *el = &eb->h_list;
1554 struct buffer_head **ret = data;
1555
1556 /* We want to retain only the leaf block. */
1557 if (le16_to_cpu(el->l_tree_depth) == 0) {
1558 get_bh(bh);
1559 *ret = bh;
1560 }
1561}
1562/*
1563 * Find the leaf block in the tree which would contain cpos. No
1564 * checking of the actual leaf is done.
1565 *
1566 * Some paths want to call this instead of allocating a path structure
1567 * and calling ocfs2_find_path().
1568 *
1569 * This function doesn't handle non btree extent lists.
1570 */
Mark Fasheh363041a2007-01-17 12:31:35 -08001571int ocfs2_find_leaf(struct inode *inode, struct ocfs2_extent_list *root_el,
1572 u32 cpos, struct buffer_head **leaf_bh)
Mark Fashehdcd05382007-01-16 11:32:23 -08001573{
1574 int ret;
1575 struct buffer_head *bh = NULL;
1576
1577 ret = __ocfs2_find_path(inode, root_el, cpos, find_leaf_ins, &bh);
1578 if (ret) {
1579 mlog_errno(ret);
1580 goto out;
1581 }
1582
1583 *leaf_bh = bh;
1584out:
1585 return ret;
1586}
1587
1588/*
1589 * Adjust the adjacent records (left_rec, right_rec) involved in a rotation.
1590 *
1591 * Basically, we've moved stuff around at the bottom of the tree and
1592 * we need to fix up the extent records above the changes to reflect
1593 * the new changes.
1594 *
1595 * left_rec: the record on the left.
1596 * left_child_el: is the child list pointed to by left_rec
1597 * right_rec: the record to the right of left_rec
1598 * right_child_el: is the child list pointed to by right_rec
1599 *
1600 * By definition, this only works on interior nodes.
1601 */
1602static void ocfs2_adjust_adjacent_records(struct ocfs2_extent_rec *left_rec,
1603 struct ocfs2_extent_list *left_child_el,
1604 struct ocfs2_extent_rec *right_rec,
1605 struct ocfs2_extent_list *right_child_el)
1606{
1607 u32 left_clusters, right_end;
1608
1609 /*
1610 * Interior nodes never have holes. Their cpos is the cpos of
1611 * the leftmost record in their child list. Their cluster
1612 * count covers the full theoretical range of their child list
1613 * - the range between their cpos and the cpos of the record
1614 * immediately to their right.
1615 */
1616 left_clusters = le32_to_cpu(right_child_el->l_recs[0].e_cpos);
Mark Fasheh328d5752007-06-18 10:48:04 -07001617 if (ocfs2_is_empty_extent(&right_child_el->l_recs[0])) {
1618 BUG_ON(le16_to_cpu(right_child_el->l_next_free_rec) <= 1);
1619 left_clusters = le32_to_cpu(right_child_el->l_recs[1].e_cpos);
1620 }
Mark Fashehdcd05382007-01-16 11:32:23 -08001621 left_clusters -= le32_to_cpu(left_rec->e_cpos);
Mark Fashehe48edee2007-03-07 16:46:57 -08001622 left_rec->e_int_clusters = cpu_to_le32(left_clusters);
Mark Fashehdcd05382007-01-16 11:32:23 -08001623
1624 /*
1625 * Calculate the rightmost cluster count boundary before
Mark Fashehe48edee2007-03-07 16:46:57 -08001626 * moving cpos - we will need to adjust clusters after
Mark Fashehdcd05382007-01-16 11:32:23 -08001627 * updating e_cpos to keep the same highest cluster count.
1628 */
1629 right_end = le32_to_cpu(right_rec->e_cpos);
Mark Fashehe48edee2007-03-07 16:46:57 -08001630 right_end += le32_to_cpu(right_rec->e_int_clusters);
Mark Fashehdcd05382007-01-16 11:32:23 -08001631
1632 right_rec->e_cpos = left_rec->e_cpos;
1633 le32_add_cpu(&right_rec->e_cpos, left_clusters);
1634
1635 right_end -= le32_to_cpu(right_rec->e_cpos);
Mark Fashehe48edee2007-03-07 16:46:57 -08001636 right_rec->e_int_clusters = cpu_to_le32(right_end);
Mark Fashehdcd05382007-01-16 11:32:23 -08001637}
1638
1639/*
1640 * Adjust the adjacent root node records involved in a
1641 * rotation. left_el_blkno is passed in as a key so that we can easily
1642 * find it's index in the root list.
1643 */
1644static void ocfs2_adjust_root_records(struct ocfs2_extent_list *root_el,
1645 struct ocfs2_extent_list *left_el,
1646 struct ocfs2_extent_list *right_el,
1647 u64 left_el_blkno)
1648{
1649 int i;
1650
1651 BUG_ON(le16_to_cpu(root_el->l_tree_depth) <=
1652 le16_to_cpu(left_el->l_tree_depth));
1653
1654 for(i = 0; i < le16_to_cpu(root_el->l_next_free_rec) - 1; i++) {
1655 if (le64_to_cpu(root_el->l_recs[i].e_blkno) == left_el_blkno)
1656 break;
1657 }
1658
1659 /*
1660 * The path walking code should have never returned a root and
1661 * two paths which are not adjacent.
1662 */
1663 BUG_ON(i >= (le16_to_cpu(root_el->l_next_free_rec) - 1));
1664
1665 ocfs2_adjust_adjacent_records(&root_el->l_recs[i], left_el,
1666 &root_el->l_recs[i + 1], right_el);
1667}
1668
1669/*
1670 * We've changed a leaf block (in right_path) and need to reflect that
1671 * change back up the subtree.
1672 *
1673 * This happens in multiple places:
1674 * - When we've moved an extent record from the left path leaf to the right
1675 * path leaf to make room for an empty extent in the left path leaf.
1676 * - When our insert into the right path leaf is at the leftmost edge
1677 * and requires an update of the path immediately to it's left. This
1678 * can occur at the end of some types of rotation and appending inserts.
Tao Ma677b9752008-01-30 14:21:05 +08001679 * - When we've adjusted the last extent record in the left path leaf and the
1680 * 1st extent record in the right path leaf during cross extent block merge.
Mark Fashehdcd05382007-01-16 11:32:23 -08001681 */
1682static void ocfs2_complete_edge_insert(struct inode *inode, handle_t *handle,
1683 struct ocfs2_path *left_path,
1684 struct ocfs2_path *right_path,
1685 int subtree_index)
1686{
1687 int ret, i, idx;
1688 struct ocfs2_extent_list *el, *left_el, *right_el;
1689 struct ocfs2_extent_rec *left_rec, *right_rec;
1690 struct buffer_head *root_bh = left_path->p_node[subtree_index].bh;
1691
1692 /*
1693 * Update the counts and position values within all the
1694 * interior nodes to reflect the leaf rotation we just did.
1695 *
1696 * The root node is handled below the loop.
1697 *
1698 * We begin the loop with right_el and left_el pointing to the
1699 * leaf lists and work our way up.
1700 *
1701 * NOTE: within this loop, left_el and right_el always refer
1702 * to the *child* lists.
1703 */
1704 left_el = path_leaf_el(left_path);
1705 right_el = path_leaf_el(right_path);
1706 for(i = left_path->p_tree_depth - 1; i > subtree_index; i--) {
1707 mlog(0, "Adjust records at index %u\n", i);
1708
1709 /*
1710 * One nice property of knowing that all of these
1711 * nodes are below the root is that we only deal with
1712 * the leftmost right node record and the rightmost
1713 * left node record.
1714 */
1715 el = left_path->p_node[i].el;
1716 idx = le16_to_cpu(left_el->l_next_free_rec) - 1;
1717 left_rec = &el->l_recs[idx];
1718
1719 el = right_path->p_node[i].el;
1720 right_rec = &el->l_recs[0];
1721
1722 ocfs2_adjust_adjacent_records(left_rec, left_el, right_rec,
1723 right_el);
1724
1725 ret = ocfs2_journal_dirty(handle, left_path->p_node[i].bh);
1726 if (ret)
1727 mlog_errno(ret);
1728
1729 ret = ocfs2_journal_dirty(handle, right_path->p_node[i].bh);
1730 if (ret)
1731 mlog_errno(ret);
1732
1733 /*
1734 * Setup our list pointers now so that the current
1735 * parents become children in the next iteration.
1736 */
1737 left_el = left_path->p_node[i].el;
1738 right_el = right_path->p_node[i].el;
1739 }
1740
1741 /*
1742 * At the root node, adjust the two adjacent records which
1743 * begin our path to the leaves.
1744 */
1745
1746 el = left_path->p_node[subtree_index].el;
1747 left_el = left_path->p_node[subtree_index + 1].el;
1748 right_el = right_path->p_node[subtree_index + 1].el;
1749
1750 ocfs2_adjust_root_records(el, left_el, right_el,
1751 left_path->p_node[subtree_index + 1].bh->b_blocknr);
1752
1753 root_bh = left_path->p_node[subtree_index].bh;
1754
1755 ret = ocfs2_journal_dirty(handle, root_bh);
1756 if (ret)
1757 mlog_errno(ret);
1758}
1759
1760static int ocfs2_rotate_subtree_right(struct inode *inode,
1761 handle_t *handle,
1762 struct ocfs2_path *left_path,
1763 struct ocfs2_path *right_path,
1764 int subtree_index)
1765{
1766 int ret, i;
1767 struct buffer_head *right_leaf_bh;
1768 struct buffer_head *left_leaf_bh = NULL;
1769 struct buffer_head *root_bh;
1770 struct ocfs2_extent_list *right_el, *left_el;
1771 struct ocfs2_extent_rec move_rec;
1772
1773 left_leaf_bh = path_leaf_bh(left_path);
1774 left_el = path_leaf_el(left_path);
1775
1776 if (left_el->l_next_free_rec != left_el->l_count) {
1777 ocfs2_error(inode->i_sb,
1778 "Inode %llu has non-full interior leaf node %llu"
1779 "(next free = %u)",
1780 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1781 (unsigned long long)left_leaf_bh->b_blocknr,
1782 le16_to_cpu(left_el->l_next_free_rec));
1783 return -EROFS;
1784 }
1785
1786 /*
1787 * This extent block may already have an empty record, so we
1788 * return early if so.
1789 */
1790 if (ocfs2_is_empty_extent(&left_el->l_recs[0]))
1791 return 0;
1792
1793 root_bh = left_path->p_node[subtree_index].bh;
1794 BUG_ON(root_bh != right_path->p_node[subtree_index].bh);
1795
1796 ret = ocfs2_journal_access(handle, inode, root_bh,
1797 OCFS2_JOURNAL_ACCESS_WRITE);
1798 if (ret) {
1799 mlog_errno(ret);
1800 goto out;
1801 }
1802
1803 for(i = subtree_index + 1; i < path_num_items(right_path); i++) {
1804 ret = ocfs2_journal_access(handle, inode,
1805 right_path->p_node[i].bh,
1806 OCFS2_JOURNAL_ACCESS_WRITE);
1807 if (ret) {
1808 mlog_errno(ret);
1809 goto out;
1810 }
1811
1812 ret = ocfs2_journal_access(handle, inode,
1813 left_path->p_node[i].bh,
1814 OCFS2_JOURNAL_ACCESS_WRITE);
1815 if (ret) {
1816 mlog_errno(ret);
1817 goto out;
1818 }
1819 }
1820
1821 right_leaf_bh = path_leaf_bh(right_path);
1822 right_el = path_leaf_el(right_path);
1823
1824 /* This is a code error, not a disk corruption. */
1825 mlog_bug_on_msg(!right_el->l_next_free_rec, "Inode %llu: Rotate fails "
1826 "because rightmost leaf block %llu is empty\n",
1827 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1828 (unsigned long long)right_leaf_bh->b_blocknr);
1829
1830 ocfs2_create_empty_extent(right_el);
1831
1832 ret = ocfs2_journal_dirty(handle, right_leaf_bh);
1833 if (ret) {
1834 mlog_errno(ret);
1835 goto out;
1836 }
1837
1838 /* Do the copy now. */
1839 i = le16_to_cpu(left_el->l_next_free_rec) - 1;
1840 move_rec = left_el->l_recs[i];
1841 right_el->l_recs[0] = move_rec;
1842
1843 /*
1844 * Clear out the record we just copied and shift everything
1845 * over, leaving an empty extent in the left leaf.
1846 *
1847 * We temporarily subtract from next_free_rec so that the
1848 * shift will lose the tail record (which is now defunct).
1849 */
1850 le16_add_cpu(&left_el->l_next_free_rec, -1);
1851 ocfs2_shift_records_right(left_el);
1852 memset(&left_el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec));
1853 le16_add_cpu(&left_el->l_next_free_rec, 1);
1854
1855 ret = ocfs2_journal_dirty(handle, left_leaf_bh);
1856 if (ret) {
1857 mlog_errno(ret);
1858 goto out;
1859 }
1860
1861 ocfs2_complete_edge_insert(inode, handle, left_path, right_path,
1862 subtree_index);
1863
1864out:
1865 return ret;
1866}
1867
1868/*
1869 * Given a full path, determine what cpos value would return us a path
1870 * containing the leaf immediately to the left of the current one.
1871 *
1872 * Will return zero if the path passed in is already the leftmost path.
1873 */
1874static int ocfs2_find_cpos_for_left_leaf(struct super_block *sb,
1875 struct ocfs2_path *path, u32 *cpos)
1876{
1877 int i, j, ret = 0;
1878 u64 blkno;
1879 struct ocfs2_extent_list *el;
1880
Mark Fashehe48edee2007-03-07 16:46:57 -08001881 BUG_ON(path->p_tree_depth == 0);
1882
Mark Fashehdcd05382007-01-16 11:32:23 -08001883 *cpos = 0;
1884
1885 blkno = path_leaf_bh(path)->b_blocknr;
1886
1887 /* Start at the tree node just above the leaf and work our way up. */
1888 i = path->p_tree_depth - 1;
1889 while (i >= 0) {
1890 el = path->p_node[i].el;
1891
1892 /*
1893 * Find the extent record just before the one in our
1894 * path.
1895 */
1896 for(j = 0; j < le16_to_cpu(el->l_next_free_rec); j++) {
1897 if (le64_to_cpu(el->l_recs[j].e_blkno) == blkno) {
1898 if (j == 0) {
1899 if (i == 0) {
1900 /*
1901 * We've determined that the
1902 * path specified is already
1903 * the leftmost one - return a
1904 * cpos of zero.
1905 */
1906 goto out;
1907 }
1908 /*
1909 * The leftmost record points to our
1910 * leaf - we need to travel up the
1911 * tree one level.
1912 */
1913 goto next_node;
1914 }
1915
1916 *cpos = le32_to_cpu(el->l_recs[j - 1].e_cpos);
Mark Fashehe48edee2007-03-07 16:46:57 -08001917 *cpos = *cpos + ocfs2_rec_clusters(el,
1918 &el->l_recs[j - 1]);
1919 *cpos = *cpos - 1;
Mark Fashehdcd05382007-01-16 11:32:23 -08001920 goto out;
1921 }
1922 }
1923
1924 /*
1925 * If we got here, we never found a valid node where
1926 * the tree indicated one should be.
1927 */
1928 ocfs2_error(sb,
1929 "Invalid extent tree at extent block %llu\n",
1930 (unsigned long long)blkno);
1931 ret = -EROFS;
1932 goto out;
1933
1934next_node:
1935 blkno = path->p_node[i].bh->b_blocknr;
1936 i--;
1937 }
1938
1939out:
1940 return ret;
1941}
1942
Mark Fasheh328d5752007-06-18 10:48:04 -07001943/*
1944 * Extend the transaction by enough credits to complete the rotation,
1945 * and still leave at least the original number of credits allocated
1946 * to this transaction.
1947 */
Mark Fashehdcd05382007-01-16 11:32:23 -08001948static int ocfs2_extend_rotate_transaction(handle_t *handle, int subtree_depth,
Mark Fasheh328d5752007-06-18 10:48:04 -07001949 int op_credits,
Mark Fashehdcd05382007-01-16 11:32:23 -08001950 struct ocfs2_path *path)
1951{
Mark Fasheh328d5752007-06-18 10:48:04 -07001952 int credits = (path->p_tree_depth - subtree_depth) * 2 + 1 + op_credits;
Mark Fashehdcd05382007-01-16 11:32:23 -08001953
1954 if (handle->h_buffer_credits < credits)
1955 return ocfs2_extend_trans(handle, credits);
1956
1957 return 0;
1958}
1959
1960/*
1961 * Trap the case where we're inserting into the theoretical range past
1962 * the _actual_ left leaf range. Otherwise, we'll rotate a record
1963 * whose cpos is less than ours into the right leaf.
1964 *
1965 * It's only necessary to look at the rightmost record of the left
1966 * leaf because the logic that calls us should ensure that the
1967 * theoretical ranges in the path components above the leaves are
1968 * correct.
1969 */
1970static int ocfs2_rotate_requires_path_adjustment(struct ocfs2_path *left_path,
1971 u32 insert_cpos)
1972{
1973 struct ocfs2_extent_list *left_el;
1974 struct ocfs2_extent_rec *rec;
1975 int next_free;
1976
1977 left_el = path_leaf_el(left_path);
1978 next_free = le16_to_cpu(left_el->l_next_free_rec);
1979 rec = &left_el->l_recs[next_free - 1];
1980
1981 if (insert_cpos > le32_to_cpu(rec->e_cpos))
1982 return 1;
1983 return 0;
1984}
1985
Mark Fasheh328d5752007-06-18 10:48:04 -07001986static int ocfs2_leftmost_rec_contains(struct ocfs2_extent_list *el, u32 cpos)
1987{
1988 int next_free = le16_to_cpu(el->l_next_free_rec);
1989 unsigned int range;
1990 struct ocfs2_extent_rec *rec;
1991
1992 if (next_free == 0)
1993 return 0;
1994
1995 rec = &el->l_recs[0];
1996 if (ocfs2_is_empty_extent(rec)) {
1997 /* Empty list. */
1998 if (next_free == 1)
1999 return 0;
2000 rec = &el->l_recs[1];
2001 }
2002
2003 range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec);
2004 if (cpos >= le32_to_cpu(rec->e_cpos) && cpos < range)
2005 return 1;
2006 return 0;
2007}
2008
Mark Fashehdcd05382007-01-16 11:32:23 -08002009/*
2010 * Rotate all the records in a btree right one record, starting at insert_cpos.
2011 *
2012 * The path to the rightmost leaf should be passed in.
2013 *
2014 * The array is assumed to be large enough to hold an entire path (tree depth).
2015 *
2016 * Upon succesful return from this function:
2017 *
2018 * - The 'right_path' array will contain a path to the leaf block
2019 * whose range contains e_cpos.
2020 * - That leaf block will have a single empty extent in list index 0.
2021 * - In the case that the rotation requires a post-insert update,
2022 * *ret_left_path will contain a valid path which can be passed to
2023 * ocfs2_insert_path().
2024 */
2025static int ocfs2_rotate_tree_right(struct inode *inode,
2026 handle_t *handle,
Mark Fasheh328d5752007-06-18 10:48:04 -07002027 enum ocfs2_split_type split,
Mark Fashehdcd05382007-01-16 11:32:23 -08002028 u32 insert_cpos,
2029 struct ocfs2_path *right_path,
2030 struct ocfs2_path **ret_left_path)
2031{
Mark Fasheh328d5752007-06-18 10:48:04 -07002032 int ret, start, orig_credits = handle->h_buffer_credits;
Mark Fashehdcd05382007-01-16 11:32:23 -08002033 u32 cpos;
2034 struct ocfs2_path *left_path = NULL;
2035
2036 *ret_left_path = NULL;
2037
2038 left_path = ocfs2_new_path(path_root_bh(right_path),
2039 path_root_el(right_path));
2040 if (!left_path) {
2041 ret = -ENOMEM;
2042 mlog_errno(ret);
2043 goto out;
2044 }
2045
2046 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path, &cpos);
2047 if (ret) {
2048 mlog_errno(ret);
2049 goto out;
2050 }
2051
2052 mlog(0, "Insert: %u, first left path cpos: %u\n", insert_cpos, cpos);
2053
2054 /*
2055 * What we want to do here is:
2056 *
2057 * 1) Start with the rightmost path.
2058 *
2059 * 2) Determine a path to the leaf block directly to the left
2060 * of that leaf.
2061 *
2062 * 3) Determine the 'subtree root' - the lowest level tree node
2063 * which contains a path to both leaves.
2064 *
2065 * 4) Rotate the subtree.
2066 *
2067 * 5) Find the next subtree by considering the left path to be
2068 * the new right path.
2069 *
2070 * The check at the top of this while loop also accepts
2071 * insert_cpos == cpos because cpos is only a _theoretical_
2072 * value to get us the left path - insert_cpos might very well
2073 * be filling that hole.
2074 *
2075 * Stop at a cpos of '0' because we either started at the
2076 * leftmost branch (i.e., a tree with one branch and a
2077 * rotation inside of it), or we've gone as far as we can in
2078 * rotating subtrees.
2079 */
2080 while (cpos && insert_cpos <= cpos) {
2081 mlog(0, "Rotating a tree: ins. cpos: %u, left path cpos: %u\n",
2082 insert_cpos, cpos);
2083
2084 ret = ocfs2_find_path(inode, left_path, cpos);
2085 if (ret) {
2086 mlog_errno(ret);
2087 goto out;
2088 }
2089
2090 mlog_bug_on_msg(path_leaf_bh(left_path) ==
2091 path_leaf_bh(right_path),
2092 "Inode %lu: error during insert of %u "
2093 "(left path cpos %u) results in two identical "
2094 "paths ending at %llu\n",
2095 inode->i_ino, insert_cpos, cpos,
2096 (unsigned long long)
2097 path_leaf_bh(left_path)->b_blocknr);
2098
Mark Fasheh328d5752007-06-18 10:48:04 -07002099 if (split == SPLIT_NONE &&
2100 ocfs2_rotate_requires_path_adjustment(left_path,
Mark Fashehdcd05382007-01-16 11:32:23 -08002101 insert_cpos)) {
Mark Fashehdcd05382007-01-16 11:32:23 -08002102
2103 /*
2104 * We've rotated the tree as much as we
2105 * should. The rest is up to
2106 * ocfs2_insert_path() to complete, after the
2107 * record insertion. We indicate this
2108 * situation by returning the left path.
2109 *
2110 * The reason we don't adjust the records here
2111 * before the record insert is that an error
2112 * later might break the rule where a parent
2113 * record e_cpos will reflect the actual
2114 * e_cpos of the 1st nonempty record of the
2115 * child list.
2116 */
2117 *ret_left_path = left_path;
2118 goto out_ret_path;
2119 }
2120
2121 start = ocfs2_find_subtree_root(inode, left_path, right_path);
2122
2123 mlog(0, "Subtree root at index %d (blk %llu, depth %d)\n",
2124 start,
2125 (unsigned long long) right_path->p_node[start].bh->b_blocknr,
2126 right_path->p_tree_depth);
2127
2128 ret = ocfs2_extend_rotate_transaction(handle, start,
Mark Fasheh328d5752007-06-18 10:48:04 -07002129 orig_credits, right_path);
Mark Fashehdcd05382007-01-16 11:32:23 -08002130 if (ret) {
2131 mlog_errno(ret);
2132 goto out;
2133 }
2134
2135 ret = ocfs2_rotate_subtree_right(inode, handle, left_path,
2136 right_path, start);
2137 if (ret) {
2138 mlog_errno(ret);
2139 goto out;
2140 }
2141
Mark Fasheh328d5752007-06-18 10:48:04 -07002142 if (split != SPLIT_NONE &&
2143 ocfs2_leftmost_rec_contains(path_leaf_el(right_path),
2144 insert_cpos)) {
2145 /*
2146 * A rotate moves the rightmost left leaf
2147 * record over to the leftmost right leaf
2148 * slot. If we're doing an extent split
2149 * instead of a real insert, then we have to
2150 * check that the extent to be split wasn't
2151 * just moved over. If it was, then we can
2152 * exit here, passing left_path back -
2153 * ocfs2_split_extent() is smart enough to
2154 * search both leaves.
2155 */
2156 *ret_left_path = left_path;
2157 goto out_ret_path;
2158 }
2159
Mark Fashehdcd05382007-01-16 11:32:23 -08002160 /*
2161 * There is no need to re-read the next right path
2162 * as we know that it'll be our current left
2163 * path. Optimize by copying values instead.
2164 */
2165 ocfs2_mv_path(right_path, left_path);
2166
2167 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path,
2168 &cpos);
2169 if (ret) {
2170 mlog_errno(ret);
2171 goto out;
2172 }
2173 }
2174
2175out:
2176 ocfs2_free_path(left_path);
2177
2178out_ret_path:
2179 return ret;
2180}
2181
Mark Fasheh328d5752007-06-18 10:48:04 -07002182static void ocfs2_update_edge_lengths(struct inode *inode, handle_t *handle,
2183 struct ocfs2_path *path)
2184{
2185 int i, idx;
2186 struct ocfs2_extent_rec *rec;
2187 struct ocfs2_extent_list *el;
2188 struct ocfs2_extent_block *eb;
2189 u32 range;
2190
2191 /* Path should always be rightmost. */
2192 eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data;
2193 BUG_ON(eb->h_next_leaf_blk != 0ULL);
2194
2195 el = &eb->h_list;
2196 BUG_ON(le16_to_cpu(el->l_next_free_rec) == 0);
2197 idx = le16_to_cpu(el->l_next_free_rec) - 1;
2198 rec = &el->l_recs[idx];
2199 range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec);
2200
2201 for (i = 0; i < path->p_tree_depth; i++) {
2202 el = path->p_node[i].el;
2203 idx = le16_to_cpu(el->l_next_free_rec) - 1;
2204 rec = &el->l_recs[idx];
2205
2206 rec->e_int_clusters = cpu_to_le32(range);
2207 le32_add_cpu(&rec->e_int_clusters, -le32_to_cpu(rec->e_cpos));
2208
2209 ocfs2_journal_dirty(handle, path->p_node[i].bh);
2210 }
2211}
2212
2213static void ocfs2_unlink_path(struct inode *inode, handle_t *handle,
2214 struct ocfs2_cached_dealloc_ctxt *dealloc,
2215 struct ocfs2_path *path, int unlink_start)
2216{
2217 int ret, i;
2218 struct ocfs2_extent_block *eb;
2219 struct ocfs2_extent_list *el;
2220 struct buffer_head *bh;
2221
2222 for(i = unlink_start; i < path_num_items(path); i++) {
2223 bh = path->p_node[i].bh;
2224
2225 eb = (struct ocfs2_extent_block *)bh->b_data;
2226 /*
2227 * Not all nodes might have had their final count
2228 * decremented by the caller - handle this here.
2229 */
2230 el = &eb->h_list;
2231 if (le16_to_cpu(el->l_next_free_rec) > 1) {
2232 mlog(ML_ERROR,
2233 "Inode %llu, attempted to remove extent block "
2234 "%llu with %u records\n",
2235 (unsigned long long)OCFS2_I(inode)->ip_blkno,
2236 (unsigned long long)le64_to_cpu(eb->h_blkno),
2237 le16_to_cpu(el->l_next_free_rec));
2238
2239 ocfs2_journal_dirty(handle, bh);
2240 ocfs2_remove_from_cache(inode, bh);
2241 continue;
2242 }
2243
2244 el->l_next_free_rec = 0;
2245 memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec));
2246
2247 ocfs2_journal_dirty(handle, bh);
2248
2249 ret = ocfs2_cache_extent_block_free(dealloc, eb);
2250 if (ret)
2251 mlog_errno(ret);
2252
2253 ocfs2_remove_from_cache(inode, bh);
2254 }
2255}
2256
2257static void ocfs2_unlink_subtree(struct inode *inode, handle_t *handle,
2258 struct ocfs2_path *left_path,
2259 struct ocfs2_path *right_path,
2260 int subtree_index,
2261 struct ocfs2_cached_dealloc_ctxt *dealloc)
2262{
2263 int i;
2264 struct buffer_head *root_bh = left_path->p_node[subtree_index].bh;
2265 struct ocfs2_extent_list *root_el = left_path->p_node[subtree_index].el;
2266 struct ocfs2_extent_list *el;
2267 struct ocfs2_extent_block *eb;
2268
2269 el = path_leaf_el(left_path);
2270
2271 eb = (struct ocfs2_extent_block *)right_path->p_node[subtree_index + 1].bh->b_data;
2272
2273 for(i = 1; i < le16_to_cpu(root_el->l_next_free_rec); i++)
2274 if (root_el->l_recs[i].e_blkno == eb->h_blkno)
2275 break;
2276
2277 BUG_ON(i >= le16_to_cpu(root_el->l_next_free_rec));
2278
2279 memset(&root_el->l_recs[i], 0, sizeof(struct ocfs2_extent_rec));
2280 le16_add_cpu(&root_el->l_next_free_rec, -1);
2281
2282 eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data;
2283 eb->h_next_leaf_blk = 0;
2284
2285 ocfs2_journal_dirty(handle, root_bh);
2286 ocfs2_journal_dirty(handle, path_leaf_bh(left_path));
2287
2288 ocfs2_unlink_path(inode, handle, dealloc, right_path,
2289 subtree_index + 1);
2290}
2291
2292static int ocfs2_rotate_subtree_left(struct inode *inode, handle_t *handle,
2293 struct ocfs2_path *left_path,
2294 struct ocfs2_path *right_path,
2295 int subtree_index,
2296 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08002297 int *deleted,
2298 struct ocfs2_extent_tree *et)
Mark Fasheh328d5752007-06-18 10:48:04 -07002299{
2300 int ret, i, del_right_subtree = 0, right_has_empty = 0;
Tao Mae7d4cb62008-08-18 17:38:44 +08002301 struct buffer_head *root_bh, *et_root_bh = path_root_bh(right_path);
Mark Fasheh328d5752007-06-18 10:48:04 -07002302 struct ocfs2_extent_list *right_leaf_el, *left_leaf_el;
2303 struct ocfs2_extent_block *eb;
2304
2305 *deleted = 0;
2306
2307 right_leaf_el = path_leaf_el(right_path);
2308 left_leaf_el = path_leaf_el(left_path);
2309 root_bh = left_path->p_node[subtree_index].bh;
2310 BUG_ON(root_bh != right_path->p_node[subtree_index].bh);
2311
2312 if (!ocfs2_is_empty_extent(&left_leaf_el->l_recs[0]))
2313 return 0;
2314
2315 eb = (struct ocfs2_extent_block *)path_leaf_bh(right_path)->b_data;
2316 if (ocfs2_is_empty_extent(&right_leaf_el->l_recs[0])) {
2317 /*
2318 * It's legal for us to proceed if the right leaf is
2319 * the rightmost one and it has an empty extent. There
2320 * are two cases to handle - whether the leaf will be
2321 * empty after removal or not. If the leaf isn't empty
2322 * then just remove the empty extent up front. The
2323 * next block will handle empty leaves by flagging
2324 * them for unlink.
2325 *
2326 * Non rightmost leaves will throw -EAGAIN and the
2327 * caller can manually move the subtree and retry.
2328 */
2329
2330 if (eb->h_next_leaf_blk != 0ULL)
2331 return -EAGAIN;
2332
2333 if (le16_to_cpu(right_leaf_el->l_next_free_rec) > 1) {
2334 ret = ocfs2_journal_access(handle, inode,
2335 path_leaf_bh(right_path),
2336 OCFS2_JOURNAL_ACCESS_WRITE);
2337 if (ret) {
2338 mlog_errno(ret);
2339 goto out;
2340 }
2341
2342 ocfs2_remove_empty_extent(right_leaf_el);
2343 } else
2344 right_has_empty = 1;
2345 }
2346
2347 if (eb->h_next_leaf_blk == 0ULL &&
2348 le16_to_cpu(right_leaf_el->l_next_free_rec) == 1) {
2349 /*
2350 * We have to update i_last_eb_blk during the meta
2351 * data delete.
2352 */
Tao Mae7d4cb62008-08-18 17:38:44 +08002353 ret = ocfs2_journal_access(handle, inode, et_root_bh,
Mark Fasheh328d5752007-06-18 10:48:04 -07002354 OCFS2_JOURNAL_ACCESS_WRITE);
2355 if (ret) {
2356 mlog_errno(ret);
2357 goto out;
2358 }
2359
2360 del_right_subtree = 1;
2361 }
2362
2363 /*
2364 * Getting here with an empty extent in the right path implies
2365 * that it's the rightmost path and will be deleted.
2366 */
2367 BUG_ON(right_has_empty && !del_right_subtree);
2368
2369 ret = ocfs2_journal_access(handle, inode, root_bh,
2370 OCFS2_JOURNAL_ACCESS_WRITE);
2371 if (ret) {
2372 mlog_errno(ret);
2373 goto out;
2374 }
2375
2376 for(i = subtree_index + 1; i < path_num_items(right_path); i++) {
2377 ret = ocfs2_journal_access(handle, inode,
2378 right_path->p_node[i].bh,
2379 OCFS2_JOURNAL_ACCESS_WRITE);
2380 if (ret) {
2381 mlog_errno(ret);
2382 goto out;
2383 }
2384
2385 ret = ocfs2_journal_access(handle, inode,
2386 left_path->p_node[i].bh,
2387 OCFS2_JOURNAL_ACCESS_WRITE);
2388 if (ret) {
2389 mlog_errno(ret);
2390 goto out;
2391 }
2392 }
2393
2394 if (!right_has_empty) {
2395 /*
2396 * Only do this if we're moving a real
2397 * record. Otherwise, the action is delayed until
2398 * after removal of the right path in which case we
2399 * can do a simple shift to remove the empty extent.
2400 */
2401 ocfs2_rotate_leaf(left_leaf_el, &right_leaf_el->l_recs[0]);
2402 memset(&right_leaf_el->l_recs[0], 0,
2403 sizeof(struct ocfs2_extent_rec));
2404 }
2405 if (eb->h_next_leaf_blk == 0ULL) {
2406 /*
2407 * Move recs over to get rid of empty extent, decrease
2408 * next_free. This is allowed to remove the last
2409 * extent in our leaf (setting l_next_free_rec to
2410 * zero) - the delete code below won't care.
2411 */
2412 ocfs2_remove_empty_extent(right_leaf_el);
2413 }
2414
2415 ret = ocfs2_journal_dirty(handle, path_leaf_bh(left_path));
2416 if (ret)
2417 mlog_errno(ret);
2418 ret = ocfs2_journal_dirty(handle, path_leaf_bh(right_path));
2419 if (ret)
2420 mlog_errno(ret);
2421
2422 if (del_right_subtree) {
2423 ocfs2_unlink_subtree(inode, handle, left_path, right_path,
2424 subtree_index, dealloc);
2425 ocfs2_update_edge_lengths(inode, handle, left_path);
2426
2427 eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data;
Joel Becker35dc0aa2008-08-20 16:25:06 -07002428 ocfs2_et_set_last_eb_blk(et, le64_to_cpu(eb->h_blkno));
Mark Fasheh328d5752007-06-18 10:48:04 -07002429
2430 /*
2431 * Removal of the extent in the left leaf was skipped
2432 * above so we could delete the right path
2433 * 1st.
2434 */
2435 if (right_has_empty)
2436 ocfs2_remove_empty_extent(left_leaf_el);
2437
Tao Mae7d4cb62008-08-18 17:38:44 +08002438 ret = ocfs2_journal_dirty(handle, et_root_bh);
Mark Fasheh328d5752007-06-18 10:48:04 -07002439 if (ret)
2440 mlog_errno(ret);
2441
2442 *deleted = 1;
2443 } else
2444 ocfs2_complete_edge_insert(inode, handle, left_path, right_path,
2445 subtree_index);
2446
2447out:
2448 return ret;
2449}
2450
2451/*
2452 * Given a full path, determine what cpos value would return us a path
2453 * containing the leaf immediately to the right of the current one.
2454 *
2455 * Will return zero if the path passed in is already the rightmost path.
2456 *
2457 * This looks similar, but is subtly different to
2458 * ocfs2_find_cpos_for_left_leaf().
2459 */
2460static int ocfs2_find_cpos_for_right_leaf(struct super_block *sb,
2461 struct ocfs2_path *path, u32 *cpos)
2462{
2463 int i, j, ret = 0;
2464 u64 blkno;
2465 struct ocfs2_extent_list *el;
2466
2467 *cpos = 0;
2468
2469 if (path->p_tree_depth == 0)
2470 return 0;
2471
2472 blkno = path_leaf_bh(path)->b_blocknr;
2473
2474 /* Start at the tree node just above the leaf and work our way up. */
2475 i = path->p_tree_depth - 1;
2476 while (i >= 0) {
2477 int next_free;
2478
2479 el = path->p_node[i].el;
2480
2481 /*
2482 * Find the extent record just after the one in our
2483 * path.
2484 */
2485 next_free = le16_to_cpu(el->l_next_free_rec);
2486 for(j = 0; j < le16_to_cpu(el->l_next_free_rec); j++) {
2487 if (le64_to_cpu(el->l_recs[j].e_blkno) == blkno) {
2488 if (j == (next_free - 1)) {
2489 if (i == 0) {
2490 /*
2491 * We've determined that the
2492 * path specified is already
2493 * the rightmost one - return a
2494 * cpos of zero.
2495 */
2496 goto out;
2497 }
2498 /*
2499 * The rightmost record points to our
2500 * leaf - we need to travel up the
2501 * tree one level.
2502 */
2503 goto next_node;
2504 }
2505
2506 *cpos = le32_to_cpu(el->l_recs[j + 1].e_cpos);
2507 goto out;
2508 }
2509 }
2510
2511 /*
2512 * If we got here, we never found a valid node where
2513 * the tree indicated one should be.
2514 */
2515 ocfs2_error(sb,
2516 "Invalid extent tree at extent block %llu\n",
2517 (unsigned long long)blkno);
2518 ret = -EROFS;
2519 goto out;
2520
2521next_node:
2522 blkno = path->p_node[i].bh->b_blocknr;
2523 i--;
2524 }
2525
2526out:
2527 return ret;
2528}
2529
2530static int ocfs2_rotate_rightmost_leaf_left(struct inode *inode,
2531 handle_t *handle,
2532 struct buffer_head *bh,
2533 struct ocfs2_extent_list *el)
2534{
2535 int ret;
2536
2537 if (!ocfs2_is_empty_extent(&el->l_recs[0]))
2538 return 0;
2539
2540 ret = ocfs2_journal_access(handle, inode, bh,
2541 OCFS2_JOURNAL_ACCESS_WRITE);
2542 if (ret) {
2543 mlog_errno(ret);
2544 goto out;
2545 }
2546
2547 ocfs2_remove_empty_extent(el);
2548
2549 ret = ocfs2_journal_dirty(handle, bh);
2550 if (ret)
2551 mlog_errno(ret);
2552
2553out:
2554 return ret;
2555}
2556
2557static int __ocfs2_rotate_tree_left(struct inode *inode,
2558 handle_t *handle, int orig_credits,
2559 struct ocfs2_path *path,
2560 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08002561 struct ocfs2_path **empty_extent_path,
2562 struct ocfs2_extent_tree *et)
Mark Fasheh328d5752007-06-18 10:48:04 -07002563{
2564 int ret, subtree_root, deleted;
2565 u32 right_cpos;
2566 struct ocfs2_path *left_path = NULL;
2567 struct ocfs2_path *right_path = NULL;
2568
2569 BUG_ON(!ocfs2_is_empty_extent(&(path_leaf_el(path)->l_recs[0])));
2570
2571 *empty_extent_path = NULL;
2572
2573 ret = ocfs2_find_cpos_for_right_leaf(inode->i_sb, path,
2574 &right_cpos);
2575 if (ret) {
2576 mlog_errno(ret);
2577 goto out;
2578 }
2579
2580 left_path = ocfs2_new_path(path_root_bh(path),
2581 path_root_el(path));
2582 if (!left_path) {
2583 ret = -ENOMEM;
2584 mlog_errno(ret);
2585 goto out;
2586 }
2587
2588 ocfs2_cp_path(left_path, path);
2589
2590 right_path = ocfs2_new_path(path_root_bh(path),
2591 path_root_el(path));
2592 if (!right_path) {
2593 ret = -ENOMEM;
2594 mlog_errno(ret);
2595 goto out;
2596 }
2597
2598 while (right_cpos) {
2599 ret = ocfs2_find_path(inode, right_path, right_cpos);
2600 if (ret) {
2601 mlog_errno(ret);
2602 goto out;
2603 }
2604
2605 subtree_root = ocfs2_find_subtree_root(inode, left_path,
2606 right_path);
2607
2608 mlog(0, "Subtree root at index %d (blk %llu, depth %d)\n",
2609 subtree_root,
2610 (unsigned long long)
2611 right_path->p_node[subtree_root].bh->b_blocknr,
2612 right_path->p_tree_depth);
2613
2614 ret = ocfs2_extend_rotate_transaction(handle, subtree_root,
2615 orig_credits, left_path);
2616 if (ret) {
2617 mlog_errno(ret);
2618 goto out;
2619 }
2620
Mark Fashehe8aed342007-12-03 16:43:01 -08002621 /*
2622 * Caller might still want to make changes to the
2623 * tree root, so re-add it to the journal here.
2624 */
2625 ret = ocfs2_journal_access(handle, inode,
2626 path_root_bh(left_path),
2627 OCFS2_JOURNAL_ACCESS_WRITE);
2628 if (ret) {
2629 mlog_errno(ret);
2630 goto out;
2631 }
2632
Mark Fasheh328d5752007-06-18 10:48:04 -07002633 ret = ocfs2_rotate_subtree_left(inode, handle, left_path,
2634 right_path, subtree_root,
Tao Mae7d4cb62008-08-18 17:38:44 +08002635 dealloc, &deleted, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07002636 if (ret == -EAGAIN) {
2637 /*
2638 * The rotation has to temporarily stop due to
2639 * the right subtree having an empty
2640 * extent. Pass it back to the caller for a
2641 * fixup.
2642 */
2643 *empty_extent_path = right_path;
2644 right_path = NULL;
2645 goto out;
2646 }
2647 if (ret) {
2648 mlog_errno(ret);
2649 goto out;
2650 }
2651
2652 /*
2653 * The subtree rotate might have removed records on
2654 * the rightmost edge. If so, then rotation is
2655 * complete.
2656 */
2657 if (deleted)
2658 break;
2659
2660 ocfs2_mv_path(left_path, right_path);
2661
2662 ret = ocfs2_find_cpos_for_right_leaf(inode->i_sb, left_path,
2663 &right_cpos);
2664 if (ret) {
2665 mlog_errno(ret);
2666 goto out;
2667 }
2668 }
2669
2670out:
2671 ocfs2_free_path(right_path);
2672 ocfs2_free_path(left_path);
2673
2674 return ret;
2675}
2676
2677static int ocfs2_remove_rightmost_path(struct inode *inode, handle_t *handle,
Tao Mae7d4cb62008-08-18 17:38:44 +08002678 struct ocfs2_path *path,
2679 struct ocfs2_cached_dealloc_ctxt *dealloc,
2680 struct ocfs2_extent_tree *et)
Mark Fasheh328d5752007-06-18 10:48:04 -07002681{
2682 int ret, subtree_index;
2683 u32 cpos;
2684 struct ocfs2_path *left_path = NULL;
Mark Fasheh328d5752007-06-18 10:48:04 -07002685 struct ocfs2_extent_block *eb;
2686 struct ocfs2_extent_list *el;
2687
Mark Fasheh328d5752007-06-18 10:48:04 -07002688
Joel Becker35dc0aa2008-08-20 16:25:06 -07002689 ret = ocfs2_et_sanity_check(inode, et);
Tao Mae7d4cb62008-08-18 17:38:44 +08002690 if (ret)
2691 goto out;
Mark Fasheh328d5752007-06-18 10:48:04 -07002692 /*
2693 * There's two ways we handle this depending on
2694 * whether path is the only existing one.
2695 */
2696 ret = ocfs2_extend_rotate_transaction(handle, 0,
2697 handle->h_buffer_credits,
2698 path);
2699 if (ret) {
2700 mlog_errno(ret);
2701 goto out;
2702 }
2703
2704 ret = ocfs2_journal_access_path(inode, handle, path);
2705 if (ret) {
2706 mlog_errno(ret);
2707 goto out;
2708 }
2709
2710 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path, &cpos);
2711 if (ret) {
2712 mlog_errno(ret);
2713 goto out;
2714 }
2715
2716 if (cpos) {
2717 /*
2718 * We have a path to the left of this one - it needs
2719 * an update too.
2720 */
2721 left_path = ocfs2_new_path(path_root_bh(path),
2722 path_root_el(path));
2723 if (!left_path) {
2724 ret = -ENOMEM;
2725 mlog_errno(ret);
2726 goto out;
2727 }
2728
2729 ret = ocfs2_find_path(inode, left_path, cpos);
2730 if (ret) {
2731 mlog_errno(ret);
2732 goto out;
2733 }
2734
2735 ret = ocfs2_journal_access_path(inode, handle, left_path);
2736 if (ret) {
2737 mlog_errno(ret);
2738 goto out;
2739 }
2740
2741 subtree_index = ocfs2_find_subtree_root(inode, left_path, path);
2742
2743 ocfs2_unlink_subtree(inode, handle, left_path, path,
2744 subtree_index, dealloc);
2745 ocfs2_update_edge_lengths(inode, handle, left_path);
2746
2747 eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data;
Joel Becker35dc0aa2008-08-20 16:25:06 -07002748 ocfs2_et_set_last_eb_blk(et, le64_to_cpu(eb->h_blkno));
Mark Fasheh328d5752007-06-18 10:48:04 -07002749 } else {
2750 /*
2751 * 'path' is also the leftmost path which
2752 * means it must be the only one. This gets
2753 * handled differently because we want to
2754 * revert the inode back to having extents
2755 * in-line.
2756 */
2757 ocfs2_unlink_path(inode, handle, dealloc, path, 1);
2758
Joel Beckerce1d9ea2008-08-20 16:30:07 -07002759 el = et->et_root_el;
Mark Fasheh328d5752007-06-18 10:48:04 -07002760 el->l_tree_depth = 0;
2761 el->l_next_free_rec = 0;
2762 memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec));
2763
Joel Becker35dc0aa2008-08-20 16:25:06 -07002764 ocfs2_et_set_last_eb_blk(et, 0);
Mark Fasheh328d5752007-06-18 10:48:04 -07002765 }
2766
2767 ocfs2_journal_dirty(handle, path_root_bh(path));
2768
2769out:
2770 ocfs2_free_path(left_path);
2771 return ret;
2772}
2773
2774/*
2775 * Left rotation of btree records.
2776 *
2777 * In many ways, this is (unsurprisingly) the opposite of right
2778 * rotation. We start at some non-rightmost path containing an empty
2779 * extent in the leaf block. The code works its way to the rightmost
2780 * path by rotating records to the left in every subtree.
2781 *
2782 * This is used by any code which reduces the number of extent records
2783 * in a leaf. After removal, an empty record should be placed in the
2784 * leftmost list position.
2785 *
2786 * This won't handle a length update of the rightmost path records if
2787 * the rightmost tree leaf record is removed so the caller is
2788 * responsible for detecting and correcting that.
2789 */
2790static int ocfs2_rotate_tree_left(struct inode *inode, handle_t *handle,
2791 struct ocfs2_path *path,
Tao Mae7d4cb62008-08-18 17:38:44 +08002792 struct ocfs2_cached_dealloc_ctxt *dealloc,
2793 struct ocfs2_extent_tree *et)
Mark Fasheh328d5752007-06-18 10:48:04 -07002794{
2795 int ret, orig_credits = handle->h_buffer_credits;
2796 struct ocfs2_path *tmp_path = NULL, *restart_path = NULL;
2797 struct ocfs2_extent_block *eb;
2798 struct ocfs2_extent_list *el;
2799
2800 el = path_leaf_el(path);
2801 if (!ocfs2_is_empty_extent(&el->l_recs[0]))
2802 return 0;
2803
2804 if (path->p_tree_depth == 0) {
2805rightmost_no_delete:
2806 /*
Tao Mae7d4cb62008-08-18 17:38:44 +08002807 * Inline extents. This is trivially handled, so do
Mark Fasheh328d5752007-06-18 10:48:04 -07002808 * it up front.
2809 */
2810 ret = ocfs2_rotate_rightmost_leaf_left(inode, handle,
2811 path_leaf_bh(path),
2812 path_leaf_el(path));
2813 if (ret)
2814 mlog_errno(ret);
2815 goto out;
2816 }
2817
2818 /*
2819 * Handle rightmost branch now. There's several cases:
2820 * 1) simple rotation leaving records in there. That's trivial.
2821 * 2) rotation requiring a branch delete - there's no more
2822 * records left. Two cases of this:
2823 * a) There are branches to the left.
2824 * b) This is also the leftmost (the only) branch.
2825 *
2826 * 1) is handled via ocfs2_rotate_rightmost_leaf_left()
2827 * 2a) we need the left branch so that we can update it with the unlink
2828 * 2b) we need to bring the inode back to inline extents.
2829 */
2830
2831 eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data;
2832 el = &eb->h_list;
2833 if (eb->h_next_leaf_blk == 0) {
2834 /*
2835 * This gets a bit tricky if we're going to delete the
2836 * rightmost path. Get the other cases out of the way
2837 * 1st.
2838 */
2839 if (le16_to_cpu(el->l_next_free_rec) > 1)
2840 goto rightmost_no_delete;
2841
2842 if (le16_to_cpu(el->l_next_free_rec) == 0) {
2843 ret = -EIO;
2844 ocfs2_error(inode->i_sb,
2845 "Inode %llu has empty extent block at %llu",
2846 (unsigned long long)OCFS2_I(inode)->ip_blkno,
2847 (unsigned long long)le64_to_cpu(eb->h_blkno));
2848 goto out;
2849 }
2850
2851 /*
2852 * XXX: The caller can not trust "path" any more after
2853 * this as it will have been deleted. What do we do?
2854 *
2855 * In theory the rotate-for-merge code will never get
2856 * here because it'll always ask for a rotate in a
2857 * nonempty list.
2858 */
2859
2860 ret = ocfs2_remove_rightmost_path(inode, handle, path,
Tao Mae7d4cb62008-08-18 17:38:44 +08002861 dealloc, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07002862 if (ret)
2863 mlog_errno(ret);
2864 goto out;
2865 }
2866
2867 /*
2868 * Now we can loop, remembering the path we get from -EAGAIN
2869 * and restarting from there.
2870 */
2871try_rotate:
2872 ret = __ocfs2_rotate_tree_left(inode, handle, orig_credits, path,
Tao Mae7d4cb62008-08-18 17:38:44 +08002873 dealloc, &restart_path, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07002874 if (ret && ret != -EAGAIN) {
2875 mlog_errno(ret);
2876 goto out;
2877 }
2878
2879 while (ret == -EAGAIN) {
2880 tmp_path = restart_path;
2881 restart_path = NULL;
2882
2883 ret = __ocfs2_rotate_tree_left(inode, handle, orig_credits,
2884 tmp_path, dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08002885 &restart_path, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07002886 if (ret && ret != -EAGAIN) {
2887 mlog_errno(ret);
2888 goto out;
2889 }
2890
2891 ocfs2_free_path(tmp_path);
2892 tmp_path = NULL;
2893
2894 if (ret == 0)
2895 goto try_rotate;
2896 }
2897
2898out:
2899 ocfs2_free_path(tmp_path);
2900 ocfs2_free_path(restart_path);
2901 return ret;
2902}
2903
2904static void ocfs2_cleanup_merge(struct ocfs2_extent_list *el,
2905 int index)
2906{
2907 struct ocfs2_extent_rec *rec = &el->l_recs[index];
2908 unsigned int size;
2909
2910 if (rec->e_leaf_clusters == 0) {
2911 /*
2912 * We consumed all of the merged-from record. An empty
2913 * extent cannot exist anywhere but the 1st array
2914 * position, so move things over if the merged-from
2915 * record doesn't occupy that position.
2916 *
2917 * This creates a new empty extent so the caller
2918 * should be smart enough to have removed any existing
2919 * ones.
2920 */
2921 if (index > 0) {
2922 BUG_ON(ocfs2_is_empty_extent(&el->l_recs[0]));
2923 size = index * sizeof(struct ocfs2_extent_rec);
2924 memmove(&el->l_recs[1], &el->l_recs[0], size);
2925 }
2926
2927 /*
2928 * Always memset - the caller doesn't check whether it
2929 * created an empty extent, so there could be junk in
2930 * the other fields.
2931 */
2932 memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec));
2933 }
2934}
2935
Tao Ma677b9752008-01-30 14:21:05 +08002936static int ocfs2_get_right_path(struct inode *inode,
2937 struct ocfs2_path *left_path,
2938 struct ocfs2_path **ret_right_path)
Mark Fasheh328d5752007-06-18 10:48:04 -07002939{
2940 int ret;
Tao Ma677b9752008-01-30 14:21:05 +08002941 u32 right_cpos;
2942 struct ocfs2_path *right_path = NULL;
2943 struct ocfs2_extent_list *left_el;
2944
2945 *ret_right_path = NULL;
2946
2947 /* This function shouldn't be called for non-trees. */
2948 BUG_ON(left_path->p_tree_depth == 0);
2949
2950 left_el = path_leaf_el(left_path);
2951 BUG_ON(left_el->l_next_free_rec != left_el->l_count);
2952
2953 ret = ocfs2_find_cpos_for_right_leaf(inode->i_sb, left_path,
2954 &right_cpos);
2955 if (ret) {
2956 mlog_errno(ret);
2957 goto out;
2958 }
2959
2960 /* This function shouldn't be called for the rightmost leaf. */
2961 BUG_ON(right_cpos == 0);
2962
2963 right_path = ocfs2_new_path(path_root_bh(left_path),
2964 path_root_el(left_path));
2965 if (!right_path) {
2966 ret = -ENOMEM;
2967 mlog_errno(ret);
2968 goto out;
2969 }
2970
2971 ret = ocfs2_find_path(inode, right_path, right_cpos);
2972 if (ret) {
2973 mlog_errno(ret);
2974 goto out;
2975 }
2976
2977 *ret_right_path = right_path;
2978out:
2979 if (ret)
2980 ocfs2_free_path(right_path);
2981 return ret;
2982}
2983
2984/*
2985 * Remove split_rec clusters from the record at index and merge them
2986 * onto the beginning of the record "next" to it.
2987 * For index < l_count - 1, the next means the extent rec at index + 1.
2988 * For index == l_count - 1, the "next" means the 1st extent rec of the
2989 * next extent block.
2990 */
2991static int ocfs2_merge_rec_right(struct inode *inode,
2992 struct ocfs2_path *left_path,
2993 handle_t *handle,
2994 struct ocfs2_extent_rec *split_rec,
2995 int index)
2996{
2997 int ret, next_free, i;
Mark Fasheh328d5752007-06-18 10:48:04 -07002998 unsigned int split_clusters = le16_to_cpu(split_rec->e_leaf_clusters);
2999 struct ocfs2_extent_rec *left_rec;
3000 struct ocfs2_extent_rec *right_rec;
Tao Ma677b9752008-01-30 14:21:05 +08003001 struct ocfs2_extent_list *right_el;
3002 struct ocfs2_path *right_path = NULL;
3003 int subtree_index = 0;
3004 struct ocfs2_extent_list *el = path_leaf_el(left_path);
3005 struct buffer_head *bh = path_leaf_bh(left_path);
3006 struct buffer_head *root_bh = NULL;
Mark Fasheh328d5752007-06-18 10:48:04 -07003007
3008 BUG_ON(index >= le16_to_cpu(el->l_next_free_rec));
Mark Fasheh328d5752007-06-18 10:48:04 -07003009 left_rec = &el->l_recs[index];
Tao Ma677b9752008-01-30 14:21:05 +08003010
Al Viro9d8df6a2008-05-21 06:32:11 +01003011 if (index == le16_to_cpu(el->l_next_free_rec) - 1 &&
Tao Ma677b9752008-01-30 14:21:05 +08003012 le16_to_cpu(el->l_next_free_rec) == le16_to_cpu(el->l_count)) {
3013 /* we meet with a cross extent block merge. */
3014 ret = ocfs2_get_right_path(inode, left_path, &right_path);
3015 if (ret) {
3016 mlog_errno(ret);
3017 goto out;
3018 }
3019
3020 right_el = path_leaf_el(right_path);
3021 next_free = le16_to_cpu(right_el->l_next_free_rec);
3022 BUG_ON(next_free <= 0);
3023 right_rec = &right_el->l_recs[0];
3024 if (ocfs2_is_empty_extent(right_rec)) {
Al Viro9d8df6a2008-05-21 06:32:11 +01003025 BUG_ON(next_free <= 1);
Tao Ma677b9752008-01-30 14:21:05 +08003026 right_rec = &right_el->l_recs[1];
3027 }
3028
3029 BUG_ON(le32_to_cpu(left_rec->e_cpos) +
3030 le16_to_cpu(left_rec->e_leaf_clusters) !=
3031 le32_to_cpu(right_rec->e_cpos));
3032
3033 subtree_index = ocfs2_find_subtree_root(inode,
3034 left_path, right_path);
3035
3036 ret = ocfs2_extend_rotate_transaction(handle, subtree_index,
3037 handle->h_buffer_credits,
3038 right_path);
3039 if (ret) {
3040 mlog_errno(ret);
3041 goto out;
3042 }
3043
3044 root_bh = left_path->p_node[subtree_index].bh;
3045 BUG_ON(root_bh != right_path->p_node[subtree_index].bh);
3046
3047 ret = ocfs2_journal_access(handle, inode, root_bh,
3048 OCFS2_JOURNAL_ACCESS_WRITE);
3049 if (ret) {
3050 mlog_errno(ret);
3051 goto out;
3052 }
3053
3054 for (i = subtree_index + 1;
3055 i < path_num_items(right_path); i++) {
3056 ret = ocfs2_journal_access(handle, inode,
3057 right_path->p_node[i].bh,
3058 OCFS2_JOURNAL_ACCESS_WRITE);
3059 if (ret) {
3060 mlog_errno(ret);
3061 goto out;
3062 }
3063
3064 ret = ocfs2_journal_access(handle, inode,
3065 left_path->p_node[i].bh,
3066 OCFS2_JOURNAL_ACCESS_WRITE);
3067 if (ret) {
3068 mlog_errno(ret);
3069 goto out;
3070 }
3071 }
3072
3073 } else {
3074 BUG_ON(index == le16_to_cpu(el->l_next_free_rec) - 1);
3075 right_rec = &el->l_recs[index + 1];
3076 }
Mark Fasheh328d5752007-06-18 10:48:04 -07003077
3078 ret = ocfs2_journal_access(handle, inode, bh,
3079 OCFS2_JOURNAL_ACCESS_WRITE);
3080 if (ret) {
3081 mlog_errno(ret);
3082 goto out;
3083 }
3084
3085 le16_add_cpu(&left_rec->e_leaf_clusters, -split_clusters);
3086
3087 le32_add_cpu(&right_rec->e_cpos, -split_clusters);
3088 le64_add_cpu(&right_rec->e_blkno,
3089 -ocfs2_clusters_to_blocks(inode->i_sb, split_clusters));
3090 le16_add_cpu(&right_rec->e_leaf_clusters, split_clusters);
3091
3092 ocfs2_cleanup_merge(el, index);
3093
3094 ret = ocfs2_journal_dirty(handle, bh);
3095 if (ret)
3096 mlog_errno(ret);
3097
Tao Ma677b9752008-01-30 14:21:05 +08003098 if (right_path) {
3099 ret = ocfs2_journal_dirty(handle, path_leaf_bh(right_path));
3100 if (ret)
3101 mlog_errno(ret);
3102
3103 ocfs2_complete_edge_insert(inode, handle, left_path,
3104 right_path, subtree_index);
3105 }
Mark Fasheh328d5752007-06-18 10:48:04 -07003106out:
Tao Ma677b9752008-01-30 14:21:05 +08003107 if (right_path)
3108 ocfs2_free_path(right_path);
3109 return ret;
3110}
3111
3112static int ocfs2_get_left_path(struct inode *inode,
3113 struct ocfs2_path *right_path,
3114 struct ocfs2_path **ret_left_path)
3115{
3116 int ret;
3117 u32 left_cpos;
3118 struct ocfs2_path *left_path = NULL;
3119
3120 *ret_left_path = NULL;
3121
3122 /* This function shouldn't be called for non-trees. */
3123 BUG_ON(right_path->p_tree_depth == 0);
3124
3125 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb,
3126 right_path, &left_cpos);
3127 if (ret) {
3128 mlog_errno(ret);
3129 goto out;
3130 }
3131
3132 /* This function shouldn't be called for the leftmost leaf. */
3133 BUG_ON(left_cpos == 0);
3134
3135 left_path = ocfs2_new_path(path_root_bh(right_path),
3136 path_root_el(right_path));
3137 if (!left_path) {
3138 ret = -ENOMEM;
3139 mlog_errno(ret);
3140 goto out;
3141 }
3142
3143 ret = ocfs2_find_path(inode, left_path, left_cpos);
3144 if (ret) {
3145 mlog_errno(ret);
3146 goto out;
3147 }
3148
3149 *ret_left_path = left_path;
3150out:
3151 if (ret)
3152 ocfs2_free_path(left_path);
Mark Fasheh328d5752007-06-18 10:48:04 -07003153 return ret;
3154}
3155
3156/*
3157 * Remove split_rec clusters from the record at index and merge them
Tao Ma677b9752008-01-30 14:21:05 +08003158 * onto the tail of the record "before" it.
3159 * For index > 0, the "before" means the extent rec at index - 1.
3160 *
3161 * For index == 0, the "before" means the last record of the previous
3162 * extent block. And there is also a situation that we may need to
3163 * remove the rightmost leaf extent block in the right_path and change
3164 * the right path to indicate the new rightmost path.
Mark Fasheh328d5752007-06-18 10:48:04 -07003165 */
Tao Ma677b9752008-01-30 14:21:05 +08003166static int ocfs2_merge_rec_left(struct inode *inode,
3167 struct ocfs2_path *right_path,
Mark Fasheh328d5752007-06-18 10:48:04 -07003168 handle_t *handle,
3169 struct ocfs2_extent_rec *split_rec,
Tao Ma677b9752008-01-30 14:21:05 +08003170 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08003171 struct ocfs2_extent_tree *et,
Tao Ma677b9752008-01-30 14:21:05 +08003172 int index)
Mark Fasheh328d5752007-06-18 10:48:04 -07003173{
Tao Ma677b9752008-01-30 14:21:05 +08003174 int ret, i, subtree_index = 0, has_empty_extent = 0;
Mark Fasheh328d5752007-06-18 10:48:04 -07003175 unsigned int split_clusters = le16_to_cpu(split_rec->e_leaf_clusters);
3176 struct ocfs2_extent_rec *left_rec;
3177 struct ocfs2_extent_rec *right_rec;
Tao Ma677b9752008-01-30 14:21:05 +08003178 struct ocfs2_extent_list *el = path_leaf_el(right_path);
3179 struct buffer_head *bh = path_leaf_bh(right_path);
3180 struct buffer_head *root_bh = NULL;
3181 struct ocfs2_path *left_path = NULL;
3182 struct ocfs2_extent_list *left_el;
Mark Fasheh328d5752007-06-18 10:48:04 -07003183
Tao Ma677b9752008-01-30 14:21:05 +08003184 BUG_ON(index < 0);
Mark Fasheh328d5752007-06-18 10:48:04 -07003185
Mark Fasheh328d5752007-06-18 10:48:04 -07003186 right_rec = &el->l_recs[index];
Tao Ma677b9752008-01-30 14:21:05 +08003187 if (index == 0) {
3188 /* we meet with a cross extent block merge. */
3189 ret = ocfs2_get_left_path(inode, right_path, &left_path);
3190 if (ret) {
3191 mlog_errno(ret);
3192 goto out;
3193 }
3194
3195 left_el = path_leaf_el(left_path);
3196 BUG_ON(le16_to_cpu(left_el->l_next_free_rec) !=
3197 le16_to_cpu(left_el->l_count));
3198
3199 left_rec = &left_el->l_recs[
3200 le16_to_cpu(left_el->l_next_free_rec) - 1];
3201 BUG_ON(le32_to_cpu(left_rec->e_cpos) +
3202 le16_to_cpu(left_rec->e_leaf_clusters) !=
3203 le32_to_cpu(split_rec->e_cpos));
3204
3205 subtree_index = ocfs2_find_subtree_root(inode,
3206 left_path, right_path);
3207
3208 ret = ocfs2_extend_rotate_transaction(handle, subtree_index,
3209 handle->h_buffer_credits,
3210 left_path);
3211 if (ret) {
3212 mlog_errno(ret);
3213 goto out;
3214 }
3215
3216 root_bh = left_path->p_node[subtree_index].bh;
3217 BUG_ON(root_bh != right_path->p_node[subtree_index].bh);
3218
3219 ret = ocfs2_journal_access(handle, inode, root_bh,
3220 OCFS2_JOURNAL_ACCESS_WRITE);
3221 if (ret) {
3222 mlog_errno(ret);
3223 goto out;
3224 }
3225
3226 for (i = subtree_index + 1;
3227 i < path_num_items(right_path); i++) {
3228 ret = ocfs2_journal_access(handle, inode,
3229 right_path->p_node[i].bh,
3230 OCFS2_JOURNAL_ACCESS_WRITE);
3231 if (ret) {
3232 mlog_errno(ret);
3233 goto out;
3234 }
3235
3236 ret = ocfs2_journal_access(handle, inode,
3237 left_path->p_node[i].bh,
3238 OCFS2_JOURNAL_ACCESS_WRITE);
3239 if (ret) {
3240 mlog_errno(ret);
3241 goto out;
3242 }
3243 }
3244 } else {
3245 left_rec = &el->l_recs[index - 1];
3246 if (ocfs2_is_empty_extent(&el->l_recs[0]))
3247 has_empty_extent = 1;
3248 }
Mark Fasheh328d5752007-06-18 10:48:04 -07003249
3250 ret = ocfs2_journal_access(handle, inode, bh,
3251 OCFS2_JOURNAL_ACCESS_WRITE);
3252 if (ret) {
3253 mlog_errno(ret);
3254 goto out;
3255 }
3256
3257 if (has_empty_extent && index == 1) {
3258 /*
3259 * The easy case - we can just plop the record right in.
3260 */
3261 *left_rec = *split_rec;
3262
3263 has_empty_extent = 0;
Tao Ma677b9752008-01-30 14:21:05 +08003264 } else
Mark Fasheh328d5752007-06-18 10:48:04 -07003265 le16_add_cpu(&left_rec->e_leaf_clusters, split_clusters);
Mark Fasheh328d5752007-06-18 10:48:04 -07003266
3267 le32_add_cpu(&right_rec->e_cpos, split_clusters);
3268 le64_add_cpu(&right_rec->e_blkno,
3269 ocfs2_clusters_to_blocks(inode->i_sb, split_clusters));
3270 le16_add_cpu(&right_rec->e_leaf_clusters, -split_clusters);
3271
3272 ocfs2_cleanup_merge(el, index);
3273
3274 ret = ocfs2_journal_dirty(handle, bh);
3275 if (ret)
3276 mlog_errno(ret);
3277
Tao Ma677b9752008-01-30 14:21:05 +08003278 if (left_path) {
3279 ret = ocfs2_journal_dirty(handle, path_leaf_bh(left_path));
3280 if (ret)
3281 mlog_errno(ret);
3282
3283 /*
3284 * In the situation that the right_rec is empty and the extent
3285 * block is empty also, ocfs2_complete_edge_insert can't handle
3286 * it and we need to delete the right extent block.
3287 */
3288 if (le16_to_cpu(right_rec->e_leaf_clusters) == 0 &&
3289 le16_to_cpu(el->l_next_free_rec) == 1) {
3290
3291 ret = ocfs2_remove_rightmost_path(inode, handle,
Tao Mae7d4cb62008-08-18 17:38:44 +08003292 right_path,
3293 dealloc, et);
Tao Ma677b9752008-01-30 14:21:05 +08003294 if (ret) {
3295 mlog_errno(ret);
3296 goto out;
3297 }
3298
3299 /* Now the rightmost extent block has been deleted.
3300 * So we use the new rightmost path.
3301 */
3302 ocfs2_mv_path(right_path, left_path);
3303 left_path = NULL;
3304 } else
3305 ocfs2_complete_edge_insert(inode, handle, left_path,
3306 right_path, subtree_index);
3307 }
Mark Fasheh328d5752007-06-18 10:48:04 -07003308out:
Tao Ma677b9752008-01-30 14:21:05 +08003309 if (left_path)
3310 ocfs2_free_path(left_path);
Mark Fasheh328d5752007-06-18 10:48:04 -07003311 return ret;
3312}
3313
3314static int ocfs2_try_to_merge_extent(struct inode *inode,
3315 handle_t *handle,
Tao Ma677b9752008-01-30 14:21:05 +08003316 struct ocfs2_path *path,
Mark Fasheh328d5752007-06-18 10:48:04 -07003317 int split_index,
3318 struct ocfs2_extent_rec *split_rec,
3319 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08003320 struct ocfs2_merge_ctxt *ctxt,
3321 struct ocfs2_extent_tree *et)
Mark Fasheh328d5752007-06-18 10:48:04 -07003322
3323{
Tao Mao518d7262007-08-28 17:25:35 -07003324 int ret = 0;
Tao Ma677b9752008-01-30 14:21:05 +08003325 struct ocfs2_extent_list *el = path_leaf_el(path);
Mark Fasheh328d5752007-06-18 10:48:04 -07003326 struct ocfs2_extent_rec *rec = &el->l_recs[split_index];
3327
3328 BUG_ON(ctxt->c_contig_type == CONTIG_NONE);
3329
Tao Mao518d7262007-08-28 17:25:35 -07003330 if (ctxt->c_split_covers_rec && ctxt->c_has_empty_extent) {
3331 /*
3332 * The merge code will need to create an empty
3333 * extent to take the place of the newly
3334 * emptied slot. Remove any pre-existing empty
3335 * extents - having more than one in a leaf is
3336 * illegal.
3337 */
Tao Ma677b9752008-01-30 14:21:05 +08003338 ret = ocfs2_rotate_tree_left(inode, handle, path,
Tao Mae7d4cb62008-08-18 17:38:44 +08003339 dealloc, et);
Tao Mao518d7262007-08-28 17:25:35 -07003340 if (ret) {
3341 mlog_errno(ret);
3342 goto out;
Mark Fasheh328d5752007-06-18 10:48:04 -07003343 }
Tao Mao518d7262007-08-28 17:25:35 -07003344 split_index--;
3345 rec = &el->l_recs[split_index];
Mark Fasheh328d5752007-06-18 10:48:04 -07003346 }
3347
3348 if (ctxt->c_contig_type == CONTIG_LEFTRIGHT) {
3349 /*
3350 * Left-right contig implies this.
3351 */
3352 BUG_ON(!ctxt->c_split_covers_rec);
Mark Fasheh328d5752007-06-18 10:48:04 -07003353
3354 /*
3355 * Since the leftright insert always covers the entire
3356 * extent, this call will delete the insert record
3357 * entirely, resulting in an empty extent record added to
3358 * the extent block.
3359 *
3360 * Since the adding of an empty extent shifts
3361 * everything back to the right, there's no need to
3362 * update split_index here.
Tao Ma677b9752008-01-30 14:21:05 +08003363 *
3364 * When the split_index is zero, we need to merge it to the
3365 * prevoius extent block. It is more efficient and easier
3366 * if we do merge_right first and merge_left later.
Mark Fasheh328d5752007-06-18 10:48:04 -07003367 */
Tao Ma677b9752008-01-30 14:21:05 +08003368 ret = ocfs2_merge_rec_right(inode, path,
3369 handle, split_rec,
3370 split_index);
Mark Fasheh328d5752007-06-18 10:48:04 -07003371 if (ret) {
3372 mlog_errno(ret);
3373 goto out;
3374 }
3375
3376 /*
3377 * We can only get this from logic error above.
3378 */
3379 BUG_ON(!ocfs2_is_empty_extent(&el->l_recs[0]));
3380
Tao Ma677b9752008-01-30 14:21:05 +08003381 /* The merge left us with an empty extent, remove it. */
Tao Mae7d4cb62008-08-18 17:38:44 +08003382 ret = ocfs2_rotate_tree_left(inode, handle, path,
3383 dealloc, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07003384 if (ret) {
3385 mlog_errno(ret);
3386 goto out;
3387 }
Tao Ma677b9752008-01-30 14:21:05 +08003388
Mark Fasheh328d5752007-06-18 10:48:04 -07003389 rec = &el->l_recs[split_index];
3390
3391 /*
3392 * Note that we don't pass split_rec here on purpose -
Tao Ma677b9752008-01-30 14:21:05 +08003393 * we've merged it into the rec already.
Mark Fasheh328d5752007-06-18 10:48:04 -07003394 */
Tao Ma677b9752008-01-30 14:21:05 +08003395 ret = ocfs2_merge_rec_left(inode, path,
3396 handle, rec,
Tao Mae7d4cb62008-08-18 17:38:44 +08003397 dealloc, et,
Tao Ma677b9752008-01-30 14:21:05 +08003398 split_index);
3399
Mark Fasheh328d5752007-06-18 10:48:04 -07003400 if (ret) {
3401 mlog_errno(ret);
3402 goto out;
3403 }
3404
Tao Ma677b9752008-01-30 14:21:05 +08003405 ret = ocfs2_rotate_tree_left(inode, handle, path,
Tao Mae7d4cb62008-08-18 17:38:44 +08003406 dealloc, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07003407 /*
3408 * Error from this last rotate is not critical, so
3409 * print but don't bubble it up.
3410 */
3411 if (ret)
3412 mlog_errno(ret);
3413 ret = 0;
3414 } else {
3415 /*
3416 * Merge a record to the left or right.
3417 *
3418 * 'contig_type' is relative to the existing record,
3419 * so for example, if we're "right contig", it's to
3420 * the record on the left (hence the left merge).
3421 */
3422 if (ctxt->c_contig_type == CONTIG_RIGHT) {
3423 ret = ocfs2_merge_rec_left(inode,
Tao Ma677b9752008-01-30 14:21:05 +08003424 path,
3425 handle, split_rec,
Tao Mae7d4cb62008-08-18 17:38:44 +08003426 dealloc, et,
Mark Fasheh328d5752007-06-18 10:48:04 -07003427 split_index);
3428 if (ret) {
3429 mlog_errno(ret);
3430 goto out;
3431 }
3432 } else {
3433 ret = ocfs2_merge_rec_right(inode,
Tao Ma677b9752008-01-30 14:21:05 +08003434 path,
3435 handle, split_rec,
Mark Fasheh328d5752007-06-18 10:48:04 -07003436 split_index);
3437 if (ret) {
3438 mlog_errno(ret);
3439 goto out;
3440 }
3441 }
3442
3443 if (ctxt->c_split_covers_rec) {
3444 /*
3445 * The merge may have left an empty extent in
3446 * our leaf. Try to rotate it away.
3447 */
Tao Ma677b9752008-01-30 14:21:05 +08003448 ret = ocfs2_rotate_tree_left(inode, handle, path,
Tao Mae7d4cb62008-08-18 17:38:44 +08003449 dealloc, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07003450 if (ret)
3451 mlog_errno(ret);
3452 ret = 0;
3453 }
3454 }
3455
3456out:
3457 return ret;
3458}
3459
3460static void ocfs2_subtract_from_rec(struct super_block *sb,
3461 enum ocfs2_split_type split,
3462 struct ocfs2_extent_rec *rec,
3463 struct ocfs2_extent_rec *split_rec)
3464{
3465 u64 len_blocks;
3466
3467 len_blocks = ocfs2_clusters_to_blocks(sb,
3468 le16_to_cpu(split_rec->e_leaf_clusters));
3469
3470 if (split == SPLIT_LEFT) {
3471 /*
3472 * Region is on the left edge of the existing
3473 * record.
3474 */
3475 le32_add_cpu(&rec->e_cpos,
3476 le16_to_cpu(split_rec->e_leaf_clusters));
3477 le64_add_cpu(&rec->e_blkno, len_blocks);
3478 le16_add_cpu(&rec->e_leaf_clusters,
3479 -le16_to_cpu(split_rec->e_leaf_clusters));
3480 } else {
3481 /*
3482 * Region is on the right edge of the existing
3483 * record.
3484 */
3485 le16_add_cpu(&rec->e_leaf_clusters,
3486 -le16_to_cpu(split_rec->e_leaf_clusters));
3487 }
3488}
3489
Mark Fashehdcd05382007-01-16 11:32:23 -08003490/*
3491 * Do the final bits of extent record insertion at the target leaf
3492 * list. If this leaf is part of an allocation tree, it is assumed
3493 * that the tree above has been prepared.
3494 */
3495static void ocfs2_insert_at_leaf(struct ocfs2_extent_rec *insert_rec,
3496 struct ocfs2_extent_list *el,
3497 struct ocfs2_insert_type *insert,
3498 struct inode *inode)
3499{
3500 int i = insert->ins_contig_index;
3501 unsigned int range;
3502 struct ocfs2_extent_rec *rec;
3503
Mark Fashehe48edee2007-03-07 16:46:57 -08003504 BUG_ON(le16_to_cpu(el->l_tree_depth) != 0);
Mark Fashehdcd05382007-01-16 11:32:23 -08003505
Mark Fasheh328d5752007-06-18 10:48:04 -07003506 if (insert->ins_split != SPLIT_NONE) {
3507 i = ocfs2_search_extent_list(el, le32_to_cpu(insert_rec->e_cpos));
3508 BUG_ON(i == -1);
3509 rec = &el->l_recs[i];
3510 ocfs2_subtract_from_rec(inode->i_sb, insert->ins_split, rec,
3511 insert_rec);
3512 goto rotate;
3513 }
3514
Mark Fashehdcd05382007-01-16 11:32:23 -08003515 /*
3516 * Contiguous insert - either left or right.
3517 */
3518 if (insert->ins_contig != CONTIG_NONE) {
3519 rec = &el->l_recs[i];
3520 if (insert->ins_contig == CONTIG_LEFT) {
3521 rec->e_blkno = insert_rec->e_blkno;
3522 rec->e_cpos = insert_rec->e_cpos;
3523 }
Mark Fashehe48edee2007-03-07 16:46:57 -08003524 le16_add_cpu(&rec->e_leaf_clusters,
3525 le16_to_cpu(insert_rec->e_leaf_clusters));
Mark Fashehdcd05382007-01-16 11:32:23 -08003526 return;
3527 }
3528
3529 /*
3530 * Handle insert into an empty leaf.
3531 */
3532 if (le16_to_cpu(el->l_next_free_rec) == 0 ||
3533 ((le16_to_cpu(el->l_next_free_rec) == 1) &&
3534 ocfs2_is_empty_extent(&el->l_recs[0]))) {
3535 el->l_recs[0] = *insert_rec;
3536 el->l_next_free_rec = cpu_to_le16(1);
3537 return;
3538 }
3539
3540 /*
3541 * Appending insert.
3542 */
3543 if (insert->ins_appending == APPEND_TAIL) {
3544 i = le16_to_cpu(el->l_next_free_rec) - 1;
3545 rec = &el->l_recs[i];
Mark Fashehe48edee2007-03-07 16:46:57 -08003546 range = le32_to_cpu(rec->e_cpos)
3547 + le16_to_cpu(rec->e_leaf_clusters);
Mark Fashehdcd05382007-01-16 11:32:23 -08003548 BUG_ON(le32_to_cpu(insert_rec->e_cpos) < range);
3549
3550 mlog_bug_on_msg(le16_to_cpu(el->l_next_free_rec) >=
3551 le16_to_cpu(el->l_count),
3552 "inode %lu, depth %u, count %u, next free %u, "
3553 "rec.cpos %u, rec.clusters %u, "
3554 "insert.cpos %u, insert.clusters %u\n",
3555 inode->i_ino,
3556 le16_to_cpu(el->l_tree_depth),
3557 le16_to_cpu(el->l_count),
3558 le16_to_cpu(el->l_next_free_rec),
3559 le32_to_cpu(el->l_recs[i].e_cpos),
Mark Fashehe48edee2007-03-07 16:46:57 -08003560 le16_to_cpu(el->l_recs[i].e_leaf_clusters),
Mark Fashehdcd05382007-01-16 11:32:23 -08003561 le32_to_cpu(insert_rec->e_cpos),
Mark Fashehe48edee2007-03-07 16:46:57 -08003562 le16_to_cpu(insert_rec->e_leaf_clusters));
Mark Fashehdcd05382007-01-16 11:32:23 -08003563 i++;
3564 el->l_recs[i] = *insert_rec;
3565 le16_add_cpu(&el->l_next_free_rec, 1);
3566 return;
3567 }
3568
Mark Fasheh328d5752007-06-18 10:48:04 -07003569rotate:
Mark Fashehdcd05382007-01-16 11:32:23 -08003570 /*
3571 * Ok, we have to rotate.
3572 *
3573 * At this point, it is safe to assume that inserting into an
3574 * empty leaf and appending to a leaf have both been handled
3575 * above.
3576 *
3577 * This leaf needs to have space, either by the empty 1st
3578 * extent record, or by virtue of an l_next_rec < l_count.
3579 */
3580 ocfs2_rotate_leaf(el, insert_rec);
3581}
3582
Mark Fasheh328d5752007-06-18 10:48:04 -07003583static void ocfs2_adjust_rightmost_records(struct inode *inode,
3584 handle_t *handle,
3585 struct ocfs2_path *path,
3586 struct ocfs2_extent_rec *insert_rec)
3587{
3588 int ret, i, next_free;
3589 struct buffer_head *bh;
3590 struct ocfs2_extent_list *el;
3591 struct ocfs2_extent_rec *rec;
3592
3593 /*
3594 * Update everything except the leaf block.
3595 */
3596 for (i = 0; i < path->p_tree_depth; i++) {
3597 bh = path->p_node[i].bh;
3598 el = path->p_node[i].el;
3599
3600 next_free = le16_to_cpu(el->l_next_free_rec);
3601 if (next_free == 0) {
3602 ocfs2_error(inode->i_sb,
3603 "Dinode %llu has a bad extent list",
3604 (unsigned long long)OCFS2_I(inode)->ip_blkno);
3605 ret = -EIO;
3606 return;
3607 }
3608
3609 rec = &el->l_recs[next_free - 1];
3610
3611 rec->e_int_clusters = insert_rec->e_cpos;
3612 le32_add_cpu(&rec->e_int_clusters,
3613 le16_to_cpu(insert_rec->e_leaf_clusters));
3614 le32_add_cpu(&rec->e_int_clusters,
3615 -le32_to_cpu(rec->e_cpos));
3616
3617 ret = ocfs2_journal_dirty(handle, bh);
3618 if (ret)
3619 mlog_errno(ret);
3620
3621 }
3622}
3623
Mark Fashehdcd05382007-01-16 11:32:23 -08003624static int ocfs2_append_rec_to_path(struct inode *inode, handle_t *handle,
3625 struct ocfs2_extent_rec *insert_rec,
3626 struct ocfs2_path *right_path,
3627 struct ocfs2_path **ret_left_path)
3628{
Mark Fasheh328d5752007-06-18 10:48:04 -07003629 int ret, next_free;
Mark Fashehdcd05382007-01-16 11:32:23 -08003630 struct ocfs2_extent_list *el;
3631 struct ocfs2_path *left_path = NULL;
3632
3633 *ret_left_path = NULL;
3634
3635 /*
Mark Fashehe48edee2007-03-07 16:46:57 -08003636 * This shouldn't happen for non-trees. The extent rec cluster
3637 * count manipulation below only works for interior nodes.
3638 */
3639 BUG_ON(right_path->p_tree_depth == 0);
3640
3641 /*
Mark Fashehdcd05382007-01-16 11:32:23 -08003642 * If our appending insert is at the leftmost edge of a leaf,
3643 * then we might need to update the rightmost records of the
3644 * neighboring path.
3645 */
3646 el = path_leaf_el(right_path);
3647 next_free = le16_to_cpu(el->l_next_free_rec);
3648 if (next_free == 0 ||
3649 (next_free == 1 && ocfs2_is_empty_extent(&el->l_recs[0]))) {
3650 u32 left_cpos;
3651
3652 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path,
3653 &left_cpos);
3654 if (ret) {
3655 mlog_errno(ret);
3656 goto out;
3657 }
3658
3659 mlog(0, "Append may need a left path update. cpos: %u, "
3660 "left_cpos: %u\n", le32_to_cpu(insert_rec->e_cpos),
3661 left_cpos);
3662
3663 /*
3664 * No need to worry if the append is already in the
3665 * leftmost leaf.
3666 */
3667 if (left_cpos) {
3668 left_path = ocfs2_new_path(path_root_bh(right_path),
3669 path_root_el(right_path));
3670 if (!left_path) {
3671 ret = -ENOMEM;
3672 mlog_errno(ret);
3673 goto out;
3674 }
3675
3676 ret = ocfs2_find_path(inode, left_path, left_cpos);
3677 if (ret) {
3678 mlog_errno(ret);
3679 goto out;
3680 }
3681
3682 /*
3683 * ocfs2_insert_path() will pass the left_path to the
3684 * journal for us.
3685 */
3686 }
3687 }
3688
3689 ret = ocfs2_journal_access_path(inode, handle, right_path);
3690 if (ret) {
3691 mlog_errno(ret);
3692 goto out;
3693 }
3694
Mark Fasheh328d5752007-06-18 10:48:04 -07003695 ocfs2_adjust_rightmost_records(inode, handle, right_path, insert_rec);
Mark Fashehdcd05382007-01-16 11:32:23 -08003696
3697 *ret_left_path = left_path;
3698 ret = 0;
3699out:
3700 if (ret != 0)
3701 ocfs2_free_path(left_path);
3702
3703 return ret;
3704}
3705
Mark Fasheh328d5752007-06-18 10:48:04 -07003706static void ocfs2_split_record(struct inode *inode,
3707 struct ocfs2_path *left_path,
3708 struct ocfs2_path *right_path,
3709 struct ocfs2_extent_rec *split_rec,
3710 enum ocfs2_split_type split)
3711{
3712 int index;
3713 u32 cpos = le32_to_cpu(split_rec->e_cpos);
3714 struct ocfs2_extent_list *left_el = NULL, *right_el, *insert_el, *el;
3715 struct ocfs2_extent_rec *rec, *tmprec;
3716
3717 right_el = path_leaf_el(right_path);;
3718 if (left_path)
3719 left_el = path_leaf_el(left_path);
3720
3721 el = right_el;
3722 insert_el = right_el;
3723 index = ocfs2_search_extent_list(el, cpos);
3724 if (index != -1) {
3725 if (index == 0 && left_path) {
3726 BUG_ON(ocfs2_is_empty_extent(&el->l_recs[0]));
3727
3728 /*
3729 * This typically means that the record
3730 * started in the left path but moved to the
3731 * right as a result of rotation. We either
3732 * move the existing record to the left, or we
3733 * do the later insert there.
3734 *
3735 * In this case, the left path should always
3736 * exist as the rotate code will have passed
3737 * it back for a post-insert update.
3738 */
3739
3740 if (split == SPLIT_LEFT) {
3741 /*
3742 * It's a left split. Since we know
3743 * that the rotate code gave us an
3744 * empty extent in the left path, we
3745 * can just do the insert there.
3746 */
3747 insert_el = left_el;
3748 } else {
3749 /*
3750 * Right split - we have to move the
3751 * existing record over to the left
3752 * leaf. The insert will be into the
3753 * newly created empty extent in the
3754 * right leaf.
3755 */
3756 tmprec = &right_el->l_recs[index];
3757 ocfs2_rotate_leaf(left_el, tmprec);
3758 el = left_el;
3759
3760 memset(tmprec, 0, sizeof(*tmprec));
3761 index = ocfs2_search_extent_list(left_el, cpos);
3762 BUG_ON(index == -1);
3763 }
3764 }
3765 } else {
3766 BUG_ON(!left_path);
3767 BUG_ON(!ocfs2_is_empty_extent(&left_el->l_recs[0]));
3768 /*
3769 * Left path is easy - we can just allow the insert to
3770 * happen.
3771 */
3772 el = left_el;
3773 insert_el = left_el;
3774 index = ocfs2_search_extent_list(el, cpos);
3775 BUG_ON(index == -1);
3776 }
3777
3778 rec = &el->l_recs[index];
3779 ocfs2_subtract_from_rec(inode->i_sb, split, rec, split_rec);
3780 ocfs2_rotate_leaf(insert_el, split_rec);
3781}
3782
Mark Fashehdcd05382007-01-16 11:32:23 -08003783/*
Tao Mae7d4cb62008-08-18 17:38:44 +08003784 * This function only does inserts on an allocation b-tree. For tree
3785 * depth = 0, ocfs2_insert_at_leaf() is called directly.
Mark Fashehdcd05382007-01-16 11:32:23 -08003786 *
3787 * right_path is the path we want to do the actual insert
3788 * in. left_path should only be passed in if we need to update that
3789 * portion of the tree after an edge insert.
3790 */
3791static int ocfs2_insert_path(struct inode *inode,
3792 handle_t *handle,
3793 struct ocfs2_path *left_path,
3794 struct ocfs2_path *right_path,
3795 struct ocfs2_extent_rec *insert_rec,
3796 struct ocfs2_insert_type *insert)
3797{
3798 int ret, subtree_index;
3799 struct buffer_head *leaf_bh = path_leaf_bh(right_path);
Mark Fashehdcd05382007-01-16 11:32:23 -08003800
Mark Fashehdcd05382007-01-16 11:32:23 -08003801 if (left_path) {
3802 int credits = handle->h_buffer_credits;
3803
3804 /*
3805 * There's a chance that left_path got passed back to
3806 * us without being accounted for in the
3807 * journal. Extend our transaction here to be sure we
3808 * can change those blocks.
3809 */
3810 credits += left_path->p_tree_depth;
3811
3812 ret = ocfs2_extend_trans(handle, credits);
3813 if (ret < 0) {
3814 mlog_errno(ret);
3815 goto out;
3816 }
3817
3818 ret = ocfs2_journal_access_path(inode, handle, left_path);
3819 if (ret < 0) {
3820 mlog_errno(ret);
3821 goto out;
3822 }
3823 }
3824
Mark Fashehe8aed342007-12-03 16:43:01 -08003825 /*
3826 * Pass both paths to the journal. The majority of inserts
3827 * will be touching all components anyway.
3828 */
3829 ret = ocfs2_journal_access_path(inode, handle, right_path);
3830 if (ret < 0) {
3831 mlog_errno(ret);
3832 goto out;
3833 }
3834
Mark Fasheh328d5752007-06-18 10:48:04 -07003835 if (insert->ins_split != SPLIT_NONE) {
3836 /*
3837 * We could call ocfs2_insert_at_leaf() for some types
Joe Perchesc78bad12008-02-03 17:33:42 +02003838 * of splits, but it's easier to just let one separate
Mark Fasheh328d5752007-06-18 10:48:04 -07003839 * function sort it all out.
3840 */
3841 ocfs2_split_record(inode, left_path, right_path,
3842 insert_rec, insert->ins_split);
Mark Fashehe8aed342007-12-03 16:43:01 -08003843
3844 /*
3845 * Split might have modified either leaf and we don't
3846 * have a guarantee that the later edge insert will
3847 * dirty this for us.
3848 */
3849 if (left_path)
3850 ret = ocfs2_journal_dirty(handle,
3851 path_leaf_bh(left_path));
3852 if (ret)
3853 mlog_errno(ret);
Mark Fasheh328d5752007-06-18 10:48:04 -07003854 } else
3855 ocfs2_insert_at_leaf(insert_rec, path_leaf_el(right_path),
3856 insert, inode);
Mark Fashehdcd05382007-01-16 11:32:23 -08003857
Mark Fashehdcd05382007-01-16 11:32:23 -08003858 ret = ocfs2_journal_dirty(handle, leaf_bh);
3859 if (ret)
3860 mlog_errno(ret);
3861
3862 if (left_path) {
3863 /*
3864 * The rotate code has indicated that we need to fix
3865 * up portions of the tree after the insert.
3866 *
3867 * XXX: Should we extend the transaction here?
3868 */
3869 subtree_index = ocfs2_find_subtree_root(inode, left_path,
3870 right_path);
3871 ocfs2_complete_edge_insert(inode, handle, left_path,
3872 right_path, subtree_index);
3873 }
3874
3875 ret = 0;
3876out:
3877 return ret;
3878}
3879
3880static int ocfs2_do_insert_extent(struct inode *inode,
3881 handle_t *handle,
Tao Mae7d4cb62008-08-18 17:38:44 +08003882 struct ocfs2_extent_tree *et,
Mark Fashehdcd05382007-01-16 11:32:23 -08003883 struct ocfs2_extent_rec *insert_rec,
3884 struct ocfs2_insert_type *type)
3885{
3886 int ret, rotate = 0;
3887 u32 cpos;
3888 struct ocfs2_path *right_path = NULL;
3889 struct ocfs2_path *left_path = NULL;
Mark Fashehdcd05382007-01-16 11:32:23 -08003890 struct ocfs2_extent_list *el;
3891
Joel Beckerce1d9ea2008-08-20 16:30:07 -07003892 el = et->et_root_el;
Mark Fashehdcd05382007-01-16 11:32:23 -08003893
Joel Beckerce1d9ea2008-08-20 16:30:07 -07003894 ret = ocfs2_journal_access(handle, inode, et->et_root_bh,
Mark Fashehdcd05382007-01-16 11:32:23 -08003895 OCFS2_JOURNAL_ACCESS_WRITE);
3896 if (ret) {
3897 mlog_errno(ret);
3898 goto out;
3899 }
3900
3901 if (le16_to_cpu(el->l_tree_depth) == 0) {
3902 ocfs2_insert_at_leaf(insert_rec, el, type, inode);
3903 goto out_update_clusters;
3904 }
3905
Joel Beckerce1d9ea2008-08-20 16:30:07 -07003906 right_path = ocfs2_new_path(et->et_root_bh, et->et_root_el);
Mark Fashehdcd05382007-01-16 11:32:23 -08003907 if (!right_path) {
3908 ret = -ENOMEM;
3909 mlog_errno(ret);
3910 goto out;
3911 }
3912
3913 /*
3914 * Determine the path to start with. Rotations need the
3915 * rightmost path, everything else can go directly to the
3916 * target leaf.
3917 */
3918 cpos = le32_to_cpu(insert_rec->e_cpos);
3919 if (type->ins_appending == APPEND_NONE &&
3920 type->ins_contig == CONTIG_NONE) {
3921 rotate = 1;
3922 cpos = UINT_MAX;
3923 }
3924
3925 ret = ocfs2_find_path(inode, right_path, cpos);
3926 if (ret) {
3927 mlog_errno(ret);
3928 goto out;
3929 }
3930
3931 /*
3932 * Rotations and appends need special treatment - they modify
3933 * parts of the tree's above them.
3934 *
3935 * Both might pass back a path immediate to the left of the
3936 * one being inserted to. This will be cause
3937 * ocfs2_insert_path() to modify the rightmost records of
3938 * left_path to account for an edge insert.
3939 *
3940 * XXX: When modifying this code, keep in mind that an insert
3941 * can wind up skipping both of these two special cases...
3942 */
3943 if (rotate) {
Mark Fasheh328d5752007-06-18 10:48:04 -07003944 ret = ocfs2_rotate_tree_right(inode, handle, type->ins_split,
Mark Fashehdcd05382007-01-16 11:32:23 -08003945 le32_to_cpu(insert_rec->e_cpos),
3946 right_path, &left_path);
3947 if (ret) {
3948 mlog_errno(ret);
3949 goto out;
3950 }
Mark Fashehe8aed342007-12-03 16:43:01 -08003951
3952 /*
3953 * ocfs2_rotate_tree_right() might have extended the
3954 * transaction without re-journaling our tree root.
3955 */
Joel Beckerce1d9ea2008-08-20 16:30:07 -07003956 ret = ocfs2_journal_access(handle, inode, et->et_root_bh,
Mark Fashehe8aed342007-12-03 16:43:01 -08003957 OCFS2_JOURNAL_ACCESS_WRITE);
3958 if (ret) {
3959 mlog_errno(ret);
3960 goto out;
3961 }
Mark Fashehdcd05382007-01-16 11:32:23 -08003962 } else if (type->ins_appending == APPEND_TAIL
3963 && type->ins_contig != CONTIG_LEFT) {
3964 ret = ocfs2_append_rec_to_path(inode, handle, insert_rec,
3965 right_path, &left_path);
3966 if (ret) {
3967 mlog_errno(ret);
3968 goto out;
3969 }
3970 }
3971
3972 ret = ocfs2_insert_path(inode, handle, left_path, right_path,
3973 insert_rec, type);
3974 if (ret) {
3975 mlog_errno(ret);
3976 goto out;
3977 }
3978
3979out_update_clusters:
Mark Fasheh328d5752007-06-18 10:48:04 -07003980 if (type->ins_split == SPLIT_NONE)
Joel Becker35dc0aa2008-08-20 16:25:06 -07003981 ocfs2_et_update_clusters(inode, et,
3982 le16_to_cpu(insert_rec->e_leaf_clusters));
Mark Fashehdcd05382007-01-16 11:32:23 -08003983
Joel Beckerce1d9ea2008-08-20 16:30:07 -07003984 ret = ocfs2_journal_dirty(handle, et->et_root_bh);
Mark Fashehdcd05382007-01-16 11:32:23 -08003985 if (ret)
3986 mlog_errno(ret);
3987
3988out:
3989 ocfs2_free_path(left_path);
3990 ocfs2_free_path(right_path);
3991
3992 return ret;
3993}
3994
Mark Fasheh328d5752007-06-18 10:48:04 -07003995static enum ocfs2_contig_type
Tao Maad5a4d72008-01-30 14:21:32 +08003996ocfs2_figure_merge_contig_type(struct inode *inode, struct ocfs2_path *path,
Mark Fasheh328d5752007-06-18 10:48:04 -07003997 struct ocfs2_extent_list *el, int index,
3998 struct ocfs2_extent_rec *split_rec)
3999{
Tao Maad5a4d72008-01-30 14:21:32 +08004000 int status;
Mark Fasheh328d5752007-06-18 10:48:04 -07004001 enum ocfs2_contig_type ret = CONTIG_NONE;
Tao Maad5a4d72008-01-30 14:21:32 +08004002 u32 left_cpos, right_cpos;
4003 struct ocfs2_extent_rec *rec = NULL;
4004 struct ocfs2_extent_list *new_el;
4005 struct ocfs2_path *left_path = NULL, *right_path = NULL;
4006 struct buffer_head *bh;
4007 struct ocfs2_extent_block *eb;
4008
4009 if (index > 0) {
4010 rec = &el->l_recs[index - 1];
4011 } else if (path->p_tree_depth > 0) {
4012 status = ocfs2_find_cpos_for_left_leaf(inode->i_sb,
4013 path, &left_cpos);
4014 if (status)
4015 goto out;
4016
4017 if (left_cpos != 0) {
4018 left_path = ocfs2_new_path(path_root_bh(path),
4019 path_root_el(path));
4020 if (!left_path)
4021 goto out;
4022
4023 status = ocfs2_find_path(inode, left_path, left_cpos);
4024 if (status)
4025 goto out;
4026
4027 new_el = path_leaf_el(left_path);
4028
4029 if (le16_to_cpu(new_el->l_next_free_rec) !=
4030 le16_to_cpu(new_el->l_count)) {
4031 bh = path_leaf_bh(left_path);
4032 eb = (struct ocfs2_extent_block *)bh->b_data;
4033 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb,
4034 eb);
4035 goto out;
4036 }
4037 rec = &new_el->l_recs[
4038 le16_to_cpu(new_el->l_next_free_rec) - 1];
4039 }
4040 }
Mark Fasheh328d5752007-06-18 10:48:04 -07004041
4042 /*
4043 * We're careful to check for an empty extent record here -
4044 * the merge code will know what to do if it sees one.
4045 */
Tao Maad5a4d72008-01-30 14:21:32 +08004046 if (rec) {
Mark Fasheh328d5752007-06-18 10:48:04 -07004047 if (index == 1 && ocfs2_is_empty_extent(rec)) {
4048 if (split_rec->e_cpos == el->l_recs[index].e_cpos)
4049 ret = CONTIG_RIGHT;
4050 } else {
4051 ret = ocfs2_extent_contig(inode, rec, split_rec);
4052 }
4053 }
4054
Tao Maad5a4d72008-01-30 14:21:32 +08004055 rec = NULL;
4056 if (index < (le16_to_cpu(el->l_next_free_rec) - 1))
4057 rec = &el->l_recs[index + 1];
4058 else if (le16_to_cpu(el->l_next_free_rec) == le16_to_cpu(el->l_count) &&
4059 path->p_tree_depth > 0) {
4060 status = ocfs2_find_cpos_for_right_leaf(inode->i_sb,
4061 path, &right_cpos);
4062 if (status)
4063 goto out;
4064
4065 if (right_cpos == 0)
4066 goto out;
4067
4068 right_path = ocfs2_new_path(path_root_bh(path),
4069 path_root_el(path));
4070 if (!right_path)
4071 goto out;
4072
4073 status = ocfs2_find_path(inode, right_path, right_cpos);
4074 if (status)
4075 goto out;
4076
4077 new_el = path_leaf_el(right_path);
4078 rec = &new_el->l_recs[0];
4079 if (ocfs2_is_empty_extent(rec)) {
4080 if (le16_to_cpu(new_el->l_next_free_rec) <= 1) {
4081 bh = path_leaf_bh(right_path);
4082 eb = (struct ocfs2_extent_block *)bh->b_data;
4083 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb,
4084 eb);
4085 goto out;
4086 }
4087 rec = &new_el->l_recs[1];
4088 }
4089 }
4090
4091 if (rec) {
Mark Fasheh328d5752007-06-18 10:48:04 -07004092 enum ocfs2_contig_type contig_type;
4093
Mark Fasheh328d5752007-06-18 10:48:04 -07004094 contig_type = ocfs2_extent_contig(inode, rec, split_rec);
4095
4096 if (contig_type == CONTIG_LEFT && ret == CONTIG_RIGHT)
4097 ret = CONTIG_LEFTRIGHT;
4098 else if (ret == CONTIG_NONE)
4099 ret = contig_type;
4100 }
4101
Tao Maad5a4d72008-01-30 14:21:32 +08004102out:
4103 if (left_path)
4104 ocfs2_free_path(left_path);
4105 if (right_path)
4106 ocfs2_free_path(right_path);
4107
Mark Fasheh328d5752007-06-18 10:48:04 -07004108 return ret;
4109}
4110
Mark Fashehdcd05382007-01-16 11:32:23 -08004111static void ocfs2_figure_contig_type(struct inode *inode,
4112 struct ocfs2_insert_type *insert,
4113 struct ocfs2_extent_list *el,
Tao Maca12b7c2008-08-18 17:38:52 +08004114 struct ocfs2_extent_rec *insert_rec,
4115 struct ocfs2_extent_tree *et)
Mark Fashehdcd05382007-01-16 11:32:23 -08004116{
4117 int i;
4118 enum ocfs2_contig_type contig_type = CONTIG_NONE;
4119
Mark Fashehe48edee2007-03-07 16:46:57 -08004120 BUG_ON(le16_to_cpu(el->l_tree_depth) != 0);
4121
Mark Fashehdcd05382007-01-16 11:32:23 -08004122 for(i = 0; i < le16_to_cpu(el->l_next_free_rec); i++) {
4123 contig_type = ocfs2_extent_contig(inode, &el->l_recs[i],
4124 insert_rec);
4125 if (contig_type != CONTIG_NONE) {
4126 insert->ins_contig_index = i;
4127 break;
4128 }
4129 }
4130 insert->ins_contig = contig_type;
Tao Maca12b7c2008-08-18 17:38:52 +08004131
4132 if (insert->ins_contig != CONTIG_NONE) {
4133 struct ocfs2_extent_rec *rec =
4134 &el->l_recs[insert->ins_contig_index];
4135 unsigned int len = le16_to_cpu(rec->e_leaf_clusters) +
4136 le16_to_cpu(insert_rec->e_leaf_clusters);
4137
4138 /*
4139 * Caller might want us to limit the size of extents, don't
4140 * calculate contiguousness if we might exceed that limit.
4141 */
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004142 if (et->et_max_leaf_clusters &&
4143 (len > et->et_max_leaf_clusters))
Tao Maca12b7c2008-08-18 17:38:52 +08004144 insert->ins_contig = CONTIG_NONE;
4145 }
Mark Fashehdcd05382007-01-16 11:32:23 -08004146}
4147
4148/*
4149 * This should only be called against the righmost leaf extent list.
4150 *
4151 * ocfs2_figure_appending_type() will figure out whether we'll have to
4152 * insert at the tail of the rightmost leaf.
4153 *
Tao Mae7d4cb62008-08-18 17:38:44 +08004154 * This should also work against the root extent list for tree's with 0
4155 * depth. If we consider the root extent list to be the rightmost leaf node
Mark Fashehdcd05382007-01-16 11:32:23 -08004156 * then the logic here makes sense.
4157 */
4158static void ocfs2_figure_appending_type(struct ocfs2_insert_type *insert,
4159 struct ocfs2_extent_list *el,
4160 struct ocfs2_extent_rec *insert_rec)
4161{
4162 int i;
4163 u32 cpos = le32_to_cpu(insert_rec->e_cpos);
4164 struct ocfs2_extent_rec *rec;
4165
4166 insert->ins_appending = APPEND_NONE;
4167
Mark Fashehe48edee2007-03-07 16:46:57 -08004168 BUG_ON(le16_to_cpu(el->l_tree_depth) != 0);
Mark Fashehdcd05382007-01-16 11:32:23 -08004169
4170 if (!el->l_next_free_rec)
4171 goto set_tail_append;
4172
4173 if (ocfs2_is_empty_extent(&el->l_recs[0])) {
4174 /* Were all records empty? */
4175 if (le16_to_cpu(el->l_next_free_rec) == 1)
4176 goto set_tail_append;
4177 }
4178
4179 i = le16_to_cpu(el->l_next_free_rec) - 1;
4180 rec = &el->l_recs[i];
4181
Mark Fashehe48edee2007-03-07 16:46:57 -08004182 if (cpos >=
4183 (le32_to_cpu(rec->e_cpos) + le16_to_cpu(rec->e_leaf_clusters)))
Mark Fashehdcd05382007-01-16 11:32:23 -08004184 goto set_tail_append;
4185
4186 return;
4187
4188set_tail_append:
4189 insert->ins_appending = APPEND_TAIL;
4190}
4191
4192/*
4193 * Helper function called at the begining of an insert.
4194 *
4195 * This computes a few things that are commonly used in the process of
4196 * inserting into the btree:
4197 * - Whether the new extent is contiguous with an existing one.
4198 * - The current tree depth.
4199 * - Whether the insert is an appending one.
4200 * - The total # of free records in the tree.
4201 *
4202 * All of the information is stored on the ocfs2_insert_type
4203 * structure.
4204 */
4205static int ocfs2_figure_insert_type(struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +08004206 struct ocfs2_extent_tree *et,
Mark Fashehdcd05382007-01-16 11:32:23 -08004207 struct buffer_head **last_eb_bh,
4208 struct ocfs2_extent_rec *insert_rec,
Tao Maoc77534f2007-08-28 17:22:33 -07004209 int *free_records,
Mark Fashehdcd05382007-01-16 11:32:23 -08004210 struct ocfs2_insert_type *insert)
4211{
4212 int ret;
Mark Fashehdcd05382007-01-16 11:32:23 -08004213 struct ocfs2_extent_block *eb;
4214 struct ocfs2_extent_list *el;
4215 struct ocfs2_path *path = NULL;
4216 struct buffer_head *bh = NULL;
4217
Mark Fasheh328d5752007-06-18 10:48:04 -07004218 insert->ins_split = SPLIT_NONE;
4219
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004220 el = et->et_root_el;
Mark Fashehdcd05382007-01-16 11:32:23 -08004221 insert->ins_tree_depth = le16_to_cpu(el->l_tree_depth);
4222
4223 if (el->l_tree_depth) {
4224 /*
4225 * If we have tree depth, we read in the
4226 * rightmost extent block ahead of time as
4227 * ocfs2_figure_insert_type() and ocfs2_add_branch()
4228 * may want it later.
4229 */
4230 ret = ocfs2_read_block(OCFS2_SB(inode->i_sb),
Joel Becker35dc0aa2008-08-20 16:25:06 -07004231 ocfs2_et_get_last_eb_blk(et), &bh,
Mark Fashehdcd05382007-01-16 11:32:23 -08004232 OCFS2_BH_CACHED, inode);
4233 if (ret) {
4234 mlog_exit(ret);
4235 goto out;
4236 }
4237 eb = (struct ocfs2_extent_block *) bh->b_data;
4238 el = &eb->h_list;
4239 }
4240
4241 /*
4242 * Unless we have a contiguous insert, we'll need to know if
4243 * there is room left in our allocation tree for another
4244 * extent record.
4245 *
4246 * XXX: This test is simplistic, we can search for empty
4247 * extent records too.
4248 */
Tao Maoc77534f2007-08-28 17:22:33 -07004249 *free_records = le16_to_cpu(el->l_count) -
Mark Fashehdcd05382007-01-16 11:32:23 -08004250 le16_to_cpu(el->l_next_free_rec);
4251
4252 if (!insert->ins_tree_depth) {
Tao Maca12b7c2008-08-18 17:38:52 +08004253 ocfs2_figure_contig_type(inode, insert, el, insert_rec, et);
Mark Fashehdcd05382007-01-16 11:32:23 -08004254 ocfs2_figure_appending_type(insert, el, insert_rec);
4255 return 0;
4256 }
4257
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004258 path = ocfs2_new_path(et->et_root_bh, et->et_root_el);
Mark Fashehdcd05382007-01-16 11:32:23 -08004259 if (!path) {
4260 ret = -ENOMEM;
4261 mlog_errno(ret);
4262 goto out;
4263 }
4264
4265 /*
4266 * In the case that we're inserting past what the tree
4267 * currently accounts for, ocfs2_find_path() will return for
4268 * us the rightmost tree path. This is accounted for below in
4269 * the appending code.
4270 */
4271 ret = ocfs2_find_path(inode, path, le32_to_cpu(insert_rec->e_cpos));
4272 if (ret) {
4273 mlog_errno(ret);
4274 goto out;
4275 }
4276
4277 el = path_leaf_el(path);
4278
4279 /*
4280 * Now that we have the path, there's two things we want to determine:
4281 * 1) Contiguousness (also set contig_index if this is so)
4282 *
4283 * 2) Are we doing an append? We can trivially break this up
4284 * into two types of appends: simple record append, or a
4285 * rotate inside the tail leaf.
4286 */
Tao Maca12b7c2008-08-18 17:38:52 +08004287 ocfs2_figure_contig_type(inode, insert, el, insert_rec, et);
Mark Fashehdcd05382007-01-16 11:32:23 -08004288
4289 /*
4290 * The insert code isn't quite ready to deal with all cases of
4291 * left contiguousness. Specifically, if it's an insert into
4292 * the 1st record in a leaf, it will require the adjustment of
Mark Fashehe48edee2007-03-07 16:46:57 -08004293 * cluster count on the last record of the path directly to it's
Mark Fashehdcd05382007-01-16 11:32:23 -08004294 * left. For now, just catch that case and fool the layers
4295 * above us. This works just fine for tree_depth == 0, which
4296 * is why we allow that above.
4297 */
4298 if (insert->ins_contig == CONTIG_LEFT &&
4299 insert->ins_contig_index == 0)
4300 insert->ins_contig = CONTIG_NONE;
4301
4302 /*
4303 * Ok, so we can simply compare against last_eb to figure out
4304 * whether the path doesn't exist. This will only happen in
4305 * the case that we're doing a tail append, so maybe we can
4306 * take advantage of that information somehow.
4307 */
Joel Becker35dc0aa2008-08-20 16:25:06 -07004308 if (ocfs2_et_get_last_eb_blk(et) ==
Tao Mae7d4cb62008-08-18 17:38:44 +08004309 path_leaf_bh(path)->b_blocknr) {
Mark Fashehdcd05382007-01-16 11:32:23 -08004310 /*
4311 * Ok, ocfs2_find_path() returned us the rightmost
4312 * tree path. This might be an appending insert. There are
4313 * two cases:
4314 * 1) We're doing a true append at the tail:
4315 * -This might even be off the end of the leaf
4316 * 2) We're "appending" by rotating in the tail
4317 */
4318 ocfs2_figure_appending_type(insert, el, insert_rec);
4319 }
4320
4321out:
4322 ocfs2_free_path(path);
4323
4324 if (ret == 0)
4325 *last_eb_bh = bh;
4326 else
4327 brelse(bh);
4328 return ret;
4329}
4330
4331/*
4332 * Insert an extent into an inode btree.
4333 *
4334 * The caller needs to update fe->i_clusters
4335 */
Tao Maf56654c2008-08-18 17:38:48 +08004336static int ocfs2_insert_extent(struct ocfs2_super *osb,
4337 handle_t *handle,
4338 struct inode *inode,
4339 struct buffer_head *root_bh,
4340 u32 cpos,
4341 u64 start_blk,
4342 u32 new_clusters,
4343 u8 flags,
4344 struct ocfs2_alloc_context *meta_ac,
4345 struct ocfs2_extent_tree *et)
Mark Fashehccd979b2005-12-15 14:31:24 -08004346{
Mark Fashehc3afcbb2007-05-29 14:28:51 -07004347 int status;
Tao Maoc77534f2007-08-28 17:22:33 -07004348 int uninitialized_var(free_records);
Mark Fashehccd979b2005-12-15 14:31:24 -08004349 struct buffer_head *last_eb_bh = NULL;
Mark Fashehdcd05382007-01-16 11:32:23 -08004350 struct ocfs2_insert_type insert = {0, };
4351 struct ocfs2_extent_rec rec;
Mark Fashehccd979b2005-12-15 14:31:24 -08004352
Mark Fasheh1afc32b2007-09-07 14:46:51 -07004353 BUG_ON(OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL);
4354
Mark Fashehdcd05382007-01-16 11:32:23 -08004355 mlog(0, "add %u clusters at position %u to inode %llu\n",
4356 new_clusters, cpos, (unsigned long long)OCFS2_I(inode)->ip_blkno);
Mark Fashehccd979b2005-12-15 14:31:24 -08004357
Mark Fashehdcd05382007-01-16 11:32:23 -08004358 mlog_bug_on_msg(!ocfs2_sparse_alloc(osb) &&
4359 (OCFS2_I(inode)->ip_clusters != cpos),
4360 "Device %s, asking for sparse allocation: inode %llu, "
4361 "cpos %u, clusters %u\n",
4362 osb->dev_str,
4363 (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos,
4364 OCFS2_I(inode)->ip_clusters);
Mark Fashehccd979b2005-12-15 14:31:24 -08004365
Mark Fashehe48edee2007-03-07 16:46:57 -08004366 memset(&rec, 0, sizeof(rec));
Mark Fashehdcd05382007-01-16 11:32:23 -08004367 rec.e_cpos = cpu_to_le32(cpos);
4368 rec.e_blkno = cpu_to_le64(start_blk);
Mark Fashehe48edee2007-03-07 16:46:57 -08004369 rec.e_leaf_clusters = cpu_to_le16(new_clusters);
Mark Fasheh2ae99a62007-03-09 16:43:28 -08004370 rec.e_flags = flags;
Mark Fashehccd979b2005-12-15 14:31:24 -08004371
Tao Mae7d4cb62008-08-18 17:38:44 +08004372 status = ocfs2_figure_insert_type(inode, et, &last_eb_bh, &rec,
Tao Maoc77534f2007-08-28 17:22:33 -07004373 &free_records, &insert);
Mark Fashehdcd05382007-01-16 11:32:23 -08004374 if (status < 0) {
4375 mlog_errno(status);
4376 goto bail;
Mark Fashehccd979b2005-12-15 14:31:24 -08004377 }
4378
Mark Fashehdcd05382007-01-16 11:32:23 -08004379 mlog(0, "Insert.appending: %u, Insert.Contig: %u, "
4380 "Insert.contig_index: %d, Insert.free_records: %d, "
4381 "Insert.tree_depth: %d\n",
4382 insert.ins_appending, insert.ins_contig, insert.ins_contig_index,
Tao Maoc77534f2007-08-28 17:22:33 -07004383 free_records, insert.ins_tree_depth);
Mark Fashehccd979b2005-12-15 14:31:24 -08004384
Tao Maoc77534f2007-08-28 17:22:33 -07004385 if (insert.ins_contig == CONTIG_NONE && free_records == 0) {
Tao Mae7d4cb62008-08-18 17:38:44 +08004386 status = ocfs2_grow_tree(inode, handle, et,
Mark Fasheh328d5752007-06-18 10:48:04 -07004387 &insert.ins_tree_depth, &last_eb_bh,
Mark Fashehc3afcbb2007-05-29 14:28:51 -07004388 meta_ac);
4389 if (status) {
Mark Fashehccd979b2005-12-15 14:31:24 -08004390 mlog_errno(status);
4391 goto bail;
4392 }
Mark Fashehccd979b2005-12-15 14:31:24 -08004393 }
4394
Mark Fashehdcd05382007-01-16 11:32:23 -08004395 /* Finally, we can add clusters. This might rotate the tree for us. */
Tao Mae7d4cb62008-08-18 17:38:44 +08004396 status = ocfs2_do_insert_extent(inode, handle, et, &rec, &insert);
Mark Fashehccd979b2005-12-15 14:31:24 -08004397 if (status < 0)
4398 mlog_errno(status);
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004399 else if (et->et_type == OCFS2_DINODE_EXTENT)
Mark Fasheh83418972007-04-23 18:53:12 -07004400 ocfs2_extent_map_insert_rec(inode, &rec);
Mark Fashehccd979b2005-12-15 14:31:24 -08004401
4402bail:
Mark Fashehccd979b2005-12-15 14:31:24 -08004403 if (last_eb_bh)
4404 brelse(last_eb_bh);
4405
Tao Maf56654c2008-08-18 17:38:48 +08004406 mlog_exit(status);
4407 return status;
4408}
4409
4410int ocfs2_dinode_insert_extent(struct ocfs2_super *osb,
4411 handle_t *handle,
4412 struct inode *inode,
4413 struct buffer_head *root_bh,
4414 u32 cpos,
4415 u64 start_blk,
4416 u32 new_clusters,
4417 u8 flags,
4418 struct ocfs2_alloc_context *meta_ac)
4419{
4420 int status;
Joel Beckerdc0ce612008-08-20 16:48:35 -07004421 struct ocfs2_extent_tree et;
Tao Maf56654c2008-08-18 17:38:48 +08004422
Joel Beckerdc0ce612008-08-20 16:48:35 -07004423 ocfs2_get_extent_tree(&et, inode, root_bh, OCFS2_DINODE_EXTENT,
4424 NULL);
Tao Maf56654c2008-08-18 17:38:48 +08004425 status = ocfs2_insert_extent(osb, handle, inode, root_bh,
4426 cpos, start_blk, new_clusters,
Joel Beckerdc0ce612008-08-20 16:48:35 -07004427 flags, meta_ac, &et);
4428 ocfs2_put_extent_tree(&et);
Tao Maf56654c2008-08-18 17:38:48 +08004429
Tao Maf56654c2008-08-18 17:38:48 +08004430 return status;
4431}
4432
4433int ocfs2_xattr_value_insert_extent(struct ocfs2_super *osb,
4434 handle_t *handle,
4435 struct inode *inode,
4436 struct buffer_head *root_bh,
4437 u32 cpos,
4438 u64 start_blk,
4439 u32 new_clusters,
4440 u8 flags,
4441 struct ocfs2_alloc_context *meta_ac,
Joel Beckerea5efa12008-08-20 16:57:27 -07004442 void *obj)
Tao Maf56654c2008-08-18 17:38:48 +08004443{
4444 int status;
Joel Beckerdc0ce612008-08-20 16:48:35 -07004445 struct ocfs2_extent_tree et;
Tao Maf56654c2008-08-18 17:38:48 +08004446
Joel Beckerdc0ce612008-08-20 16:48:35 -07004447 ocfs2_get_extent_tree(&et, inode, root_bh,
Joel Beckerea5efa12008-08-20 16:57:27 -07004448 OCFS2_XATTR_VALUE_EXTENT, obj);
Tao Maf56654c2008-08-18 17:38:48 +08004449 status = ocfs2_insert_extent(osb, handle, inode, root_bh,
4450 cpos, start_blk, new_clusters,
Joel Beckerdc0ce612008-08-20 16:48:35 -07004451 flags, meta_ac, &et);
4452 ocfs2_put_extent_tree(&et);
Tao Maf56654c2008-08-18 17:38:48 +08004453
Mark Fashehccd979b2005-12-15 14:31:24 -08004454 return status;
4455}
4456
Tao Maba492612008-08-18 17:38:49 +08004457int ocfs2_xattr_tree_insert_extent(struct ocfs2_super *osb,
4458 handle_t *handle,
4459 struct inode *inode,
4460 struct buffer_head *root_bh,
4461 u32 cpos,
4462 u64 start_blk,
4463 u32 new_clusters,
4464 u8 flags,
4465 struct ocfs2_alloc_context *meta_ac)
4466{
4467 int status;
Joel Beckerdc0ce612008-08-20 16:48:35 -07004468 struct ocfs2_extent_tree et;
Tao Maba492612008-08-18 17:38:49 +08004469
Joel Beckerdc0ce612008-08-20 16:48:35 -07004470 ocfs2_get_extent_tree(&et, inode, root_bh, OCFS2_XATTR_TREE_EXTENT,
4471 NULL);
Tao Maba492612008-08-18 17:38:49 +08004472 status = ocfs2_insert_extent(osb, handle, inode, root_bh,
4473 cpos, start_blk, new_clusters,
Joel Beckerdc0ce612008-08-20 16:48:35 -07004474 flags, meta_ac, &et);
4475 ocfs2_put_extent_tree(&et);
Tao Maba492612008-08-18 17:38:49 +08004476
Tao Maba492612008-08-18 17:38:49 +08004477 return status;
4478}
4479
Tao Ma0eb8d472008-08-18 17:38:45 +08004480/*
4481 * Allcate and add clusters into the extent b-tree.
4482 * The new clusters(clusters_to_add) will be inserted at logical_offset.
4483 * The extent b-tree's root is root_el and it should be in root_bh, and
4484 * it is not limited to the file storage. Any extent tree can use this
4485 * function if it implements the proper ocfs2_extent_tree.
4486 */
4487int ocfs2_add_clusters_in_btree(struct ocfs2_super *osb,
4488 struct inode *inode,
4489 u32 *logical_offset,
4490 u32 clusters_to_add,
4491 int mark_unwritten,
4492 struct buffer_head *root_bh,
4493 struct ocfs2_extent_list *root_el,
4494 handle_t *handle,
4495 struct ocfs2_alloc_context *data_ac,
4496 struct ocfs2_alloc_context *meta_ac,
4497 enum ocfs2_alloc_restarted *reason_ret,
Tao Maf56654c2008-08-18 17:38:48 +08004498 enum ocfs2_extent_tree_type type,
Joel Beckerea5efa12008-08-20 16:57:27 -07004499 void *obj)
Tao Ma0eb8d472008-08-18 17:38:45 +08004500{
4501 int status = 0;
4502 int free_extents;
4503 enum ocfs2_alloc_restarted reason = RESTART_NONE;
4504 u32 bit_off, num_bits;
4505 u64 block;
4506 u8 flags = 0;
4507
4508 BUG_ON(!clusters_to_add);
4509
4510 if (mark_unwritten)
4511 flags = OCFS2_EXT_UNWRITTEN;
4512
Tao Maf56654c2008-08-18 17:38:48 +08004513 free_extents = ocfs2_num_free_extents(osb, inode, root_bh, type,
Joel Beckerea5efa12008-08-20 16:57:27 -07004514 obj);
Tao Ma0eb8d472008-08-18 17:38:45 +08004515 if (free_extents < 0) {
4516 status = free_extents;
4517 mlog_errno(status);
4518 goto leave;
4519 }
4520
4521 /* there are two cases which could cause us to EAGAIN in the
4522 * we-need-more-metadata case:
4523 * 1) we haven't reserved *any*
4524 * 2) we are so fragmented, we've needed to add metadata too
4525 * many times. */
4526 if (!free_extents && !meta_ac) {
4527 mlog(0, "we haven't reserved any metadata!\n");
4528 status = -EAGAIN;
4529 reason = RESTART_META;
4530 goto leave;
4531 } else if ((!free_extents)
4532 && (ocfs2_alloc_context_bits_left(meta_ac)
4533 < ocfs2_extend_meta_needed(root_el))) {
4534 mlog(0, "filesystem is really fragmented...\n");
4535 status = -EAGAIN;
4536 reason = RESTART_META;
4537 goto leave;
4538 }
4539
4540 status = __ocfs2_claim_clusters(osb, handle, data_ac, 1,
4541 clusters_to_add, &bit_off, &num_bits);
4542 if (status < 0) {
4543 if (status != -ENOSPC)
4544 mlog_errno(status);
4545 goto leave;
4546 }
4547
4548 BUG_ON(num_bits > clusters_to_add);
4549
4550 /* reserve our write early -- insert_extent may update the inode */
4551 status = ocfs2_journal_access(handle, inode, root_bh,
4552 OCFS2_JOURNAL_ACCESS_WRITE);
4553 if (status < 0) {
4554 mlog_errno(status);
4555 goto leave;
4556 }
4557
4558 block = ocfs2_clusters_to_blocks(osb->sb, bit_off);
4559 mlog(0, "Allocating %u clusters at block %u for inode %llu\n",
4560 num_bits, bit_off, (unsigned long long)OCFS2_I(inode)->ip_blkno);
Tao Maf56654c2008-08-18 17:38:48 +08004561 if (type == OCFS2_DINODE_EXTENT)
4562 status = ocfs2_dinode_insert_extent(osb, handle, inode, root_bh,
4563 *logical_offset, block,
4564 num_bits, flags, meta_ac);
Tao Maba492612008-08-18 17:38:49 +08004565 else if (type == OCFS2_XATTR_TREE_EXTENT)
4566 status = ocfs2_xattr_tree_insert_extent(osb, handle,
4567 inode, root_bh,
4568 *logical_offset,
4569 block, num_bits, flags,
4570 meta_ac);
Tao Maf56654c2008-08-18 17:38:48 +08004571 else
4572 status = ocfs2_xattr_value_insert_extent(osb, handle,
4573 inode, root_bh,
4574 *logical_offset,
4575 block, num_bits, flags,
Joel Beckerea5efa12008-08-20 16:57:27 -07004576 meta_ac, obj);
Tao Ma0eb8d472008-08-18 17:38:45 +08004577 if (status < 0) {
4578 mlog_errno(status);
4579 goto leave;
4580 }
4581
4582 status = ocfs2_journal_dirty(handle, root_bh);
4583 if (status < 0) {
4584 mlog_errno(status);
4585 goto leave;
4586 }
4587
4588 clusters_to_add -= num_bits;
4589 *logical_offset += num_bits;
4590
4591 if (clusters_to_add) {
4592 mlog(0, "need to alloc once more, wanted = %u\n",
4593 clusters_to_add);
4594 status = -EAGAIN;
4595 reason = RESTART_TRANS;
4596 }
4597
4598leave:
4599 mlog_exit(status);
4600 if (reason_ret)
4601 *reason_ret = reason;
4602 return status;
4603}
4604
Mark Fasheh328d5752007-06-18 10:48:04 -07004605static void ocfs2_make_right_split_rec(struct super_block *sb,
4606 struct ocfs2_extent_rec *split_rec,
4607 u32 cpos,
4608 struct ocfs2_extent_rec *rec)
4609{
4610 u32 rec_cpos = le32_to_cpu(rec->e_cpos);
4611 u32 rec_range = rec_cpos + le16_to_cpu(rec->e_leaf_clusters);
4612
4613 memset(split_rec, 0, sizeof(struct ocfs2_extent_rec));
4614
4615 split_rec->e_cpos = cpu_to_le32(cpos);
4616 split_rec->e_leaf_clusters = cpu_to_le16(rec_range - cpos);
4617
4618 split_rec->e_blkno = rec->e_blkno;
4619 le64_add_cpu(&split_rec->e_blkno,
4620 ocfs2_clusters_to_blocks(sb, cpos - rec_cpos));
4621
4622 split_rec->e_flags = rec->e_flags;
4623}
4624
4625static int ocfs2_split_and_insert(struct inode *inode,
4626 handle_t *handle,
4627 struct ocfs2_path *path,
Tao Mae7d4cb62008-08-18 17:38:44 +08004628 struct ocfs2_extent_tree *et,
Mark Fasheh328d5752007-06-18 10:48:04 -07004629 struct buffer_head **last_eb_bh,
4630 int split_index,
4631 struct ocfs2_extent_rec *orig_split_rec,
4632 struct ocfs2_alloc_context *meta_ac)
4633{
4634 int ret = 0, depth;
4635 unsigned int insert_range, rec_range, do_leftright = 0;
4636 struct ocfs2_extent_rec tmprec;
4637 struct ocfs2_extent_list *rightmost_el;
4638 struct ocfs2_extent_rec rec;
4639 struct ocfs2_extent_rec split_rec = *orig_split_rec;
4640 struct ocfs2_insert_type insert;
4641 struct ocfs2_extent_block *eb;
Mark Fasheh328d5752007-06-18 10:48:04 -07004642
4643leftright:
4644 /*
4645 * Store a copy of the record on the stack - it might move
4646 * around as the tree is manipulated below.
4647 */
4648 rec = path_leaf_el(path)->l_recs[split_index];
4649
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004650 rightmost_el = et->et_root_el;
Mark Fasheh328d5752007-06-18 10:48:04 -07004651
4652 depth = le16_to_cpu(rightmost_el->l_tree_depth);
4653 if (depth) {
4654 BUG_ON(!(*last_eb_bh));
4655 eb = (struct ocfs2_extent_block *) (*last_eb_bh)->b_data;
4656 rightmost_el = &eb->h_list;
4657 }
4658
4659 if (le16_to_cpu(rightmost_el->l_next_free_rec) ==
4660 le16_to_cpu(rightmost_el->l_count)) {
Tao Mae7d4cb62008-08-18 17:38:44 +08004661 ret = ocfs2_grow_tree(inode, handle, et,
4662 &depth, last_eb_bh, meta_ac);
Mark Fasheh328d5752007-06-18 10:48:04 -07004663 if (ret) {
4664 mlog_errno(ret);
4665 goto out;
4666 }
Mark Fasheh328d5752007-06-18 10:48:04 -07004667 }
4668
4669 memset(&insert, 0, sizeof(struct ocfs2_insert_type));
4670 insert.ins_appending = APPEND_NONE;
4671 insert.ins_contig = CONTIG_NONE;
Mark Fasheh328d5752007-06-18 10:48:04 -07004672 insert.ins_tree_depth = depth;
4673
4674 insert_range = le32_to_cpu(split_rec.e_cpos) +
4675 le16_to_cpu(split_rec.e_leaf_clusters);
4676 rec_range = le32_to_cpu(rec.e_cpos) +
4677 le16_to_cpu(rec.e_leaf_clusters);
4678
4679 if (split_rec.e_cpos == rec.e_cpos) {
4680 insert.ins_split = SPLIT_LEFT;
4681 } else if (insert_range == rec_range) {
4682 insert.ins_split = SPLIT_RIGHT;
4683 } else {
4684 /*
4685 * Left/right split. We fake this as a right split
4686 * first and then make a second pass as a left split.
4687 */
4688 insert.ins_split = SPLIT_RIGHT;
4689
4690 ocfs2_make_right_split_rec(inode->i_sb, &tmprec, insert_range,
4691 &rec);
4692
4693 split_rec = tmprec;
4694
4695 BUG_ON(do_leftright);
4696 do_leftright = 1;
4697 }
4698
Tao Mae7d4cb62008-08-18 17:38:44 +08004699 ret = ocfs2_do_insert_extent(inode, handle, et, &split_rec, &insert);
Mark Fasheh328d5752007-06-18 10:48:04 -07004700 if (ret) {
4701 mlog_errno(ret);
4702 goto out;
4703 }
4704
4705 if (do_leftright == 1) {
4706 u32 cpos;
4707 struct ocfs2_extent_list *el;
4708
4709 do_leftright++;
4710 split_rec = *orig_split_rec;
4711
4712 ocfs2_reinit_path(path, 1);
4713
4714 cpos = le32_to_cpu(split_rec.e_cpos);
4715 ret = ocfs2_find_path(inode, path, cpos);
4716 if (ret) {
4717 mlog_errno(ret);
4718 goto out;
4719 }
4720
4721 el = path_leaf_el(path);
4722 split_index = ocfs2_search_extent_list(el, cpos);
4723 goto leftright;
4724 }
4725out:
4726
4727 return ret;
4728}
4729
4730/*
4731 * Mark part or all of the extent record at split_index in the leaf
4732 * pointed to by path as written. This removes the unwritten
4733 * extent flag.
4734 *
4735 * Care is taken to handle contiguousness so as to not grow the tree.
4736 *
4737 * meta_ac is not strictly necessary - we only truly need it if growth
4738 * of the tree is required. All other cases will degrade into a less
4739 * optimal tree layout.
4740 *
Tao Mae7d4cb62008-08-18 17:38:44 +08004741 * last_eb_bh should be the rightmost leaf block for any extent
4742 * btree. Since a split may grow the tree or a merge might shrink it,
4743 * the caller cannot trust the contents of that buffer after this call.
Mark Fasheh328d5752007-06-18 10:48:04 -07004744 *
4745 * This code is optimized for readability - several passes might be
4746 * made over certain portions of the tree. All of those blocks will
4747 * have been brought into cache (and pinned via the journal), so the
4748 * extra overhead is not expressed in terms of disk reads.
4749 */
4750static int __ocfs2_mark_extent_written(struct inode *inode,
Tao Mae7d4cb62008-08-18 17:38:44 +08004751 struct ocfs2_extent_tree *et,
Mark Fasheh328d5752007-06-18 10:48:04 -07004752 handle_t *handle,
4753 struct ocfs2_path *path,
4754 int split_index,
4755 struct ocfs2_extent_rec *split_rec,
4756 struct ocfs2_alloc_context *meta_ac,
4757 struct ocfs2_cached_dealloc_ctxt *dealloc)
4758{
4759 int ret = 0;
4760 struct ocfs2_extent_list *el = path_leaf_el(path);
Mark Fashehe8aed342007-12-03 16:43:01 -08004761 struct buffer_head *last_eb_bh = NULL;
Mark Fasheh328d5752007-06-18 10:48:04 -07004762 struct ocfs2_extent_rec *rec = &el->l_recs[split_index];
4763 struct ocfs2_merge_ctxt ctxt;
4764 struct ocfs2_extent_list *rightmost_el;
4765
Roel Kluin3cf0c502007-10-27 00:20:36 +02004766 if (!(rec->e_flags & OCFS2_EXT_UNWRITTEN)) {
Mark Fasheh328d5752007-06-18 10:48:04 -07004767 ret = -EIO;
4768 mlog_errno(ret);
4769 goto out;
4770 }
4771
4772 if (le32_to_cpu(rec->e_cpos) > le32_to_cpu(split_rec->e_cpos) ||
4773 ((le32_to_cpu(rec->e_cpos) + le16_to_cpu(rec->e_leaf_clusters)) <
4774 (le32_to_cpu(split_rec->e_cpos) + le16_to_cpu(split_rec->e_leaf_clusters)))) {
4775 ret = -EIO;
4776 mlog_errno(ret);
4777 goto out;
4778 }
4779
Tao Maad5a4d72008-01-30 14:21:32 +08004780 ctxt.c_contig_type = ocfs2_figure_merge_contig_type(inode, path, el,
Mark Fasheh328d5752007-06-18 10:48:04 -07004781 split_index,
4782 split_rec);
4783
4784 /*
4785 * The core merge / split code wants to know how much room is
4786 * left in this inodes allocation tree, so we pass the
4787 * rightmost extent list.
4788 */
4789 if (path->p_tree_depth) {
4790 struct ocfs2_extent_block *eb;
Mark Fasheh328d5752007-06-18 10:48:04 -07004791
4792 ret = ocfs2_read_block(OCFS2_SB(inode->i_sb),
Joel Becker35dc0aa2008-08-20 16:25:06 -07004793 ocfs2_et_get_last_eb_blk(et),
Mark Fasheh328d5752007-06-18 10:48:04 -07004794 &last_eb_bh, OCFS2_BH_CACHED, inode);
4795 if (ret) {
4796 mlog_exit(ret);
4797 goto out;
4798 }
4799
4800 eb = (struct ocfs2_extent_block *) last_eb_bh->b_data;
4801 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
4802 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
4803 ret = -EROFS;
4804 goto out;
4805 }
4806
4807 rightmost_el = &eb->h_list;
4808 } else
4809 rightmost_el = path_root_el(path);
4810
Mark Fasheh328d5752007-06-18 10:48:04 -07004811 if (rec->e_cpos == split_rec->e_cpos &&
4812 rec->e_leaf_clusters == split_rec->e_leaf_clusters)
4813 ctxt.c_split_covers_rec = 1;
4814 else
4815 ctxt.c_split_covers_rec = 0;
4816
4817 ctxt.c_has_empty_extent = ocfs2_is_empty_extent(&el->l_recs[0]);
4818
Mark Fasheh015452b2007-09-12 10:21:22 -07004819 mlog(0, "index: %d, contig: %u, has_empty: %u, split_covers: %u\n",
4820 split_index, ctxt.c_contig_type, ctxt.c_has_empty_extent,
4821 ctxt.c_split_covers_rec);
Mark Fasheh328d5752007-06-18 10:48:04 -07004822
4823 if (ctxt.c_contig_type == CONTIG_NONE) {
4824 if (ctxt.c_split_covers_rec)
4825 el->l_recs[split_index] = *split_rec;
4826 else
Tao Mae7d4cb62008-08-18 17:38:44 +08004827 ret = ocfs2_split_and_insert(inode, handle, path, et,
Mark Fasheh328d5752007-06-18 10:48:04 -07004828 &last_eb_bh, split_index,
4829 split_rec, meta_ac);
4830 if (ret)
4831 mlog_errno(ret);
4832 } else {
4833 ret = ocfs2_try_to_merge_extent(inode, handle, path,
4834 split_index, split_rec,
Tao Mae7d4cb62008-08-18 17:38:44 +08004835 dealloc, &ctxt, et);
Mark Fasheh328d5752007-06-18 10:48:04 -07004836 if (ret)
4837 mlog_errno(ret);
4838 }
4839
Mark Fasheh328d5752007-06-18 10:48:04 -07004840out:
4841 brelse(last_eb_bh);
4842 return ret;
4843}
4844
4845/*
4846 * Mark the already-existing extent at cpos as written for len clusters.
4847 *
4848 * If the existing extent is larger than the request, initiate a
4849 * split. An attempt will be made at merging with adjacent extents.
4850 *
4851 * The caller is responsible for passing down meta_ac if we'll need it.
4852 */
Tao Mae7d4cb62008-08-18 17:38:44 +08004853int ocfs2_mark_extent_written(struct inode *inode, struct buffer_head *root_bh,
Mark Fasheh328d5752007-06-18 10:48:04 -07004854 handle_t *handle, u32 cpos, u32 len, u32 phys,
4855 struct ocfs2_alloc_context *meta_ac,
Tao Mae7d4cb62008-08-18 17:38:44 +08004856 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Maf56654c2008-08-18 17:38:48 +08004857 enum ocfs2_extent_tree_type et_type,
Joel Beckerea5efa12008-08-20 16:57:27 -07004858 void *obj)
Mark Fasheh328d5752007-06-18 10:48:04 -07004859{
4860 int ret, index;
4861 u64 start_blkno = ocfs2_clusters_to_blocks(inode->i_sb, phys);
4862 struct ocfs2_extent_rec split_rec;
4863 struct ocfs2_path *left_path = NULL;
4864 struct ocfs2_extent_list *el;
Joel Beckerdc0ce612008-08-20 16:48:35 -07004865 struct ocfs2_extent_tree et;
Mark Fasheh328d5752007-06-18 10:48:04 -07004866
4867 mlog(0, "Inode %lu cpos %u, len %u, phys %u (%llu)\n",
4868 inode->i_ino, cpos, len, phys, (unsigned long long)start_blkno);
4869
Joel Beckerea5efa12008-08-20 16:57:27 -07004870 ocfs2_get_extent_tree(&et, inode, root_bh, et_type, obj);
Joel Beckerdc0ce612008-08-20 16:48:35 -07004871
Mark Fasheh328d5752007-06-18 10:48:04 -07004872 if (!ocfs2_writes_unwritten_extents(OCFS2_SB(inode->i_sb))) {
4873 ocfs2_error(inode->i_sb, "Inode %llu has unwritten extents "
4874 "that are being written to, but the feature bit "
4875 "is not set in the super block.",
4876 (unsigned long long)OCFS2_I(inode)->ip_blkno);
4877 ret = -EROFS;
4878 goto out;
4879 }
4880
4881 /*
4882 * XXX: This should be fixed up so that we just re-insert the
4883 * next extent records.
4884 */
Tao Mae7d4cb62008-08-18 17:38:44 +08004885 if (et_type == OCFS2_DINODE_EXTENT)
4886 ocfs2_extent_map_trunc(inode, 0);
Mark Fasheh328d5752007-06-18 10:48:04 -07004887
Joel Beckerdc0ce612008-08-20 16:48:35 -07004888 left_path = ocfs2_new_path(et.et_root_bh, et.et_root_el);
Mark Fasheh328d5752007-06-18 10:48:04 -07004889 if (!left_path) {
4890 ret = -ENOMEM;
4891 mlog_errno(ret);
4892 goto out;
4893 }
4894
4895 ret = ocfs2_find_path(inode, left_path, cpos);
4896 if (ret) {
4897 mlog_errno(ret);
4898 goto out;
4899 }
4900 el = path_leaf_el(left_path);
4901
4902 index = ocfs2_search_extent_list(el, cpos);
4903 if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) {
4904 ocfs2_error(inode->i_sb,
4905 "Inode %llu has an extent at cpos %u which can no "
4906 "longer be found.\n",
4907 (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos);
4908 ret = -EROFS;
4909 goto out;
4910 }
4911
4912 memset(&split_rec, 0, sizeof(struct ocfs2_extent_rec));
4913 split_rec.e_cpos = cpu_to_le32(cpos);
4914 split_rec.e_leaf_clusters = cpu_to_le16(len);
4915 split_rec.e_blkno = cpu_to_le64(start_blkno);
4916 split_rec.e_flags = path_leaf_el(left_path)->l_recs[index].e_flags;
4917 split_rec.e_flags &= ~OCFS2_EXT_UNWRITTEN;
4918
Joel Beckerdc0ce612008-08-20 16:48:35 -07004919 ret = __ocfs2_mark_extent_written(inode, &et, handle, left_path,
Tao Mae7d4cb62008-08-18 17:38:44 +08004920 index, &split_rec, meta_ac,
4921 dealloc);
Mark Fasheh328d5752007-06-18 10:48:04 -07004922 if (ret)
4923 mlog_errno(ret);
4924
4925out:
4926 ocfs2_free_path(left_path);
Joel Beckerdc0ce612008-08-20 16:48:35 -07004927 ocfs2_put_extent_tree(&et);
Mark Fasheh328d5752007-06-18 10:48:04 -07004928 return ret;
4929}
4930
Tao Mae7d4cb62008-08-18 17:38:44 +08004931static int ocfs2_split_tree(struct inode *inode, struct ocfs2_extent_tree *et,
Mark Fashehd0c7d702007-07-03 13:27:22 -07004932 handle_t *handle, struct ocfs2_path *path,
4933 int index, u32 new_range,
4934 struct ocfs2_alloc_context *meta_ac)
4935{
4936 int ret, depth, credits = handle->h_buffer_credits;
Mark Fashehd0c7d702007-07-03 13:27:22 -07004937 struct buffer_head *last_eb_bh = NULL;
4938 struct ocfs2_extent_block *eb;
4939 struct ocfs2_extent_list *rightmost_el, *el;
4940 struct ocfs2_extent_rec split_rec;
4941 struct ocfs2_extent_rec *rec;
4942 struct ocfs2_insert_type insert;
4943
4944 /*
4945 * Setup the record to split before we grow the tree.
4946 */
4947 el = path_leaf_el(path);
4948 rec = &el->l_recs[index];
4949 ocfs2_make_right_split_rec(inode->i_sb, &split_rec, new_range, rec);
4950
4951 depth = path->p_tree_depth;
4952 if (depth > 0) {
4953 ret = ocfs2_read_block(OCFS2_SB(inode->i_sb),
Joel Becker35dc0aa2008-08-20 16:25:06 -07004954 ocfs2_et_get_last_eb_blk(et),
Mark Fashehd0c7d702007-07-03 13:27:22 -07004955 &last_eb_bh, OCFS2_BH_CACHED, inode);
4956 if (ret < 0) {
4957 mlog_errno(ret);
4958 goto out;
4959 }
4960
4961 eb = (struct ocfs2_extent_block *) last_eb_bh->b_data;
4962 rightmost_el = &eb->h_list;
4963 } else
4964 rightmost_el = path_leaf_el(path);
4965
Tao Ma811f9332008-08-18 17:38:43 +08004966 credits += path->p_tree_depth +
Joel Beckerce1d9ea2008-08-20 16:30:07 -07004967 ocfs2_extend_meta_needed(et->et_root_el);
Mark Fashehd0c7d702007-07-03 13:27:22 -07004968 ret = ocfs2_extend_trans(handle, credits);
4969 if (ret) {
4970 mlog_errno(ret);
4971 goto out;
4972 }
4973
4974 if (le16_to_cpu(rightmost_el->l_next_free_rec) ==
4975 le16_to_cpu(rightmost_el->l_count)) {
Tao Mae7d4cb62008-08-18 17:38:44 +08004976 ret = ocfs2_grow_tree(inode, handle, et, &depth, &last_eb_bh,
Mark Fashehd0c7d702007-07-03 13:27:22 -07004977 meta_ac);
4978 if (ret) {
4979 mlog_errno(ret);
4980 goto out;
4981 }
Mark Fashehd0c7d702007-07-03 13:27:22 -07004982 }
4983
4984 memset(&insert, 0, sizeof(struct ocfs2_insert_type));
4985 insert.ins_appending = APPEND_NONE;
4986 insert.ins_contig = CONTIG_NONE;
4987 insert.ins_split = SPLIT_RIGHT;
Mark Fashehd0c7d702007-07-03 13:27:22 -07004988 insert.ins_tree_depth = depth;
4989
Tao Mae7d4cb62008-08-18 17:38:44 +08004990 ret = ocfs2_do_insert_extent(inode, handle, et, &split_rec, &insert);
Mark Fashehd0c7d702007-07-03 13:27:22 -07004991 if (ret)
4992 mlog_errno(ret);
4993
4994out:
4995 brelse(last_eb_bh);
4996 return ret;
4997}
4998
4999static int ocfs2_truncate_rec(struct inode *inode, handle_t *handle,
5000 struct ocfs2_path *path, int index,
5001 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Mae7d4cb62008-08-18 17:38:44 +08005002 u32 cpos, u32 len,
5003 struct ocfs2_extent_tree *et)
Mark Fashehd0c7d702007-07-03 13:27:22 -07005004{
5005 int ret;
5006 u32 left_cpos, rec_range, trunc_range;
5007 int wants_rotate = 0, is_rightmost_tree_rec = 0;
5008 struct super_block *sb = inode->i_sb;
5009 struct ocfs2_path *left_path = NULL;
5010 struct ocfs2_extent_list *el = path_leaf_el(path);
5011 struct ocfs2_extent_rec *rec;
5012 struct ocfs2_extent_block *eb;
5013
5014 if (ocfs2_is_empty_extent(&el->l_recs[0]) && index > 0) {
Tao Mae7d4cb62008-08-18 17:38:44 +08005015 ret = ocfs2_rotate_tree_left(inode, handle, path, dealloc, et);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005016 if (ret) {
5017 mlog_errno(ret);
5018 goto out;
5019 }
5020
5021 index--;
5022 }
5023
5024 if (index == (le16_to_cpu(el->l_next_free_rec) - 1) &&
5025 path->p_tree_depth) {
5026 /*
5027 * Check whether this is the rightmost tree record. If
5028 * we remove all of this record or part of its right
5029 * edge then an update of the record lengths above it
5030 * will be required.
5031 */
5032 eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data;
5033 if (eb->h_next_leaf_blk == 0)
5034 is_rightmost_tree_rec = 1;
5035 }
5036
5037 rec = &el->l_recs[index];
5038 if (index == 0 && path->p_tree_depth &&
5039 le32_to_cpu(rec->e_cpos) == cpos) {
5040 /*
5041 * Changing the leftmost offset (via partial or whole
5042 * record truncate) of an interior (or rightmost) path
5043 * means we have to update the subtree that is formed
5044 * by this leaf and the one to it's left.
5045 *
5046 * There are two cases we can skip:
5047 * 1) Path is the leftmost one in our inode tree.
5048 * 2) The leaf is rightmost and will be empty after
5049 * we remove the extent record - the rotate code
5050 * knows how to update the newly formed edge.
5051 */
5052
5053 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path,
5054 &left_cpos);
5055 if (ret) {
5056 mlog_errno(ret);
5057 goto out;
5058 }
5059
5060 if (left_cpos && le16_to_cpu(el->l_next_free_rec) > 1) {
5061 left_path = ocfs2_new_path(path_root_bh(path),
5062 path_root_el(path));
5063 if (!left_path) {
5064 ret = -ENOMEM;
5065 mlog_errno(ret);
5066 goto out;
5067 }
5068
5069 ret = ocfs2_find_path(inode, left_path, left_cpos);
5070 if (ret) {
5071 mlog_errno(ret);
5072 goto out;
5073 }
5074 }
5075 }
5076
5077 ret = ocfs2_extend_rotate_transaction(handle, 0,
5078 handle->h_buffer_credits,
5079 path);
5080 if (ret) {
5081 mlog_errno(ret);
5082 goto out;
5083 }
5084
5085 ret = ocfs2_journal_access_path(inode, handle, path);
5086 if (ret) {
5087 mlog_errno(ret);
5088 goto out;
5089 }
5090
5091 ret = ocfs2_journal_access_path(inode, handle, left_path);
5092 if (ret) {
5093 mlog_errno(ret);
5094 goto out;
5095 }
5096
5097 rec_range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec);
5098 trunc_range = cpos + len;
5099
5100 if (le32_to_cpu(rec->e_cpos) == cpos && rec_range == trunc_range) {
5101 int next_free;
5102
5103 memset(rec, 0, sizeof(*rec));
5104 ocfs2_cleanup_merge(el, index);
5105 wants_rotate = 1;
5106
5107 next_free = le16_to_cpu(el->l_next_free_rec);
5108 if (is_rightmost_tree_rec && next_free > 1) {
5109 /*
5110 * We skip the edge update if this path will
5111 * be deleted by the rotate code.
5112 */
5113 rec = &el->l_recs[next_free - 1];
5114 ocfs2_adjust_rightmost_records(inode, handle, path,
5115 rec);
5116 }
5117 } else if (le32_to_cpu(rec->e_cpos) == cpos) {
5118 /* Remove leftmost portion of the record. */
5119 le32_add_cpu(&rec->e_cpos, len);
5120 le64_add_cpu(&rec->e_blkno, ocfs2_clusters_to_blocks(sb, len));
5121 le16_add_cpu(&rec->e_leaf_clusters, -len);
5122 } else if (rec_range == trunc_range) {
5123 /* Remove rightmost portion of the record */
5124 le16_add_cpu(&rec->e_leaf_clusters, -len);
5125 if (is_rightmost_tree_rec)
5126 ocfs2_adjust_rightmost_records(inode, handle, path, rec);
5127 } else {
5128 /* Caller should have trapped this. */
5129 mlog(ML_ERROR, "Inode %llu: Invalid record truncate: (%u, %u) "
5130 "(%u, %u)\n", (unsigned long long)OCFS2_I(inode)->ip_blkno,
5131 le32_to_cpu(rec->e_cpos),
5132 le16_to_cpu(rec->e_leaf_clusters), cpos, len);
5133 BUG();
5134 }
5135
5136 if (left_path) {
5137 int subtree_index;
5138
5139 subtree_index = ocfs2_find_subtree_root(inode, left_path, path);
5140 ocfs2_complete_edge_insert(inode, handle, left_path, path,
5141 subtree_index);
5142 }
5143
5144 ocfs2_journal_dirty(handle, path_leaf_bh(path));
5145
Tao Mae7d4cb62008-08-18 17:38:44 +08005146 ret = ocfs2_rotate_tree_left(inode, handle, path, dealloc, et);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005147 if (ret) {
5148 mlog_errno(ret);
5149 goto out;
5150 }
5151
5152out:
5153 ocfs2_free_path(left_path);
5154 return ret;
5155}
5156
Tao Mae7d4cb62008-08-18 17:38:44 +08005157int ocfs2_remove_extent(struct inode *inode, struct buffer_head *root_bh,
Mark Fasheh063c4562007-07-03 13:34:11 -07005158 u32 cpos, u32 len, handle_t *handle,
5159 struct ocfs2_alloc_context *meta_ac,
Tao Mae7d4cb62008-08-18 17:38:44 +08005160 struct ocfs2_cached_dealloc_ctxt *dealloc,
Tao Maf56654c2008-08-18 17:38:48 +08005161 enum ocfs2_extent_tree_type et_type,
Joel Beckerea5efa12008-08-20 16:57:27 -07005162 void *obj)
Mark Fashehd0c7d702007-07-03 13:27:22 -07005163{
5164 int ret, index;
5165 u32 rec_range, trunc_range;
5166 struct ocfs2_extent_rec *rec;
5167 struct ocfs2_extent_list *el;
Tao Mae7d4cb62008-08-18 17:38:44 +08005168 struct ocfs2_path *path = NULL;
Joel Beckerdc0ce612008-08-20 16:48:35 -07005169 struct ocfs2_extent_tree et;
Tao Mae7d4cb62008-08-18 17:38:44 +08005170
Joel Beckerea5efa12008-08-20 16:57:27 -07005171 ocfs2_get_extent_tree(&et, inode, root_bh, et_type, obj);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005172
5173 ocfs2_extent_map_trunc(inode, 0);
5174
Joel Beckerdc0ce612008-08-20 16:48:35 -07005175 path = ocfs2_new_path(et.et_root_bh, et.et_root_el);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005176 if (!path) {
5177 ret = -ENOMEM;
5178 mlog_errno(ret);
5179 goto out;
5180 }
5181
5182 ret = ocfs2_find_path(inode, path, cpos);
5183 if (ret) {
5184 mlog_errno(ret);
5185 goto out;
5186 }
5187
5188 el = path_leaf_el(path);
5189 index = ocfs2_search_extent_list(el, cpos);
5190 if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) {
5191 ocfs2_error(inode->i_sb,
5192 "Inode %llu has an extent at cpos %u which can no "
5193 "longer be found.\n",
5194 (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos);
5195 ret = -EROFS;
5196 goto out;
5197 }
5198
5199 /*
5200 * We have 3 cases of extent removal:
5201 * 1) Range covers the entire extent rec
5202 * 2) Range begins or ends on one edge of the extent rec
5203 * 3) Range is in the middle of the extent rec (no shared edges)
5204 *
5205 * For case 1 we remove the extent rec and left rotate to
5206 * fill the hole.
5207 *
5208 * For case 2 we just shrink the existing extent rec, with a
5209 * tree update if the shrinking edge is also the edge of an
5210 * extent block.
5211 *
5212 * For case 3 we do a right split to turn the extent rec into
5213 * something case 2 can handle.
5214 */
5215 rec = &el->l_recs[index];
5216 rec_range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec);
5217 trunc_range = cpos + len;
5218
5219 BUG_ON(cpos < le32_to_cpu(rec->e_cpos) || trunc_range > rec_range);
5220
5221 mlog(0, "Inode %llu, remove (cpos %u, len %u). Existing index %d "
5222 "(cpos %u, len %u)\n",
5223 (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos, len, index,
5224 le32_to_cpu(rec->e_cpos), ocfs2_rec_clusters(el, rec));
5225
5226 if (le32_to_cpu(rec->e_cpos) == cpos || rec_range == trunc_range) {
5227 ret = ocfs2_truncate_rec(inode, handle, path, index, dealloc,
Joel Beckerdc0ce612008-08-20 16:48:35 -07005228 cpos, len, &et);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005229 if (ret) {
5230 mlog_errno(ret);
5231 goto out;
5232 }
5233 } else {
Joel Beckerdc0ce612008-08-20 16:48:35 -07005234 ret = ocfs2_split_tree(inode, &et, handle, path, index,
Mark Fashehd0c7d702007-07-03 13:27:22 -07005235 trunc_range, meta_ac);
5236 if (ret) {
5237 mlog_errno(ret);
5238 goto out;
5239 }
5240
5241 /*
5242 * The split could have manipulated the tree enough to
5243 * move the record location, so we have to look for it again.
5244 */
5245 ocfs2_reinit_path(path, 1);
5246
5247 ret = ocfs2_find_path(inode, path, cpos);
5248 if (ret) {
5249 mlog_errno(ret);
5250 goto out;
5251 }
5252
5253 el = path_leaf_el(path);
5254 index = ocfs2_search_extent_list(el, cpos);
5255 if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) {
5256 ocfs2_error(inode->i_sb,
5257 "Inode %llu: split at cpos %u lost record.",
5258 (unsigned long long)OCFS2_I(inode)->ip_blkno,
5259 cpos);
5260 ret = -EROFS;
5261 goto out;
5262 }
5263
5264 /*
5265 * Double check our values here. If anything is fishy,
5266 * it's easier to catch it at the top level.
5267 */
5268 rec = &el->l_recs[index];
5269 rec_range = le32_to_cpu(rec->e_cpos) +
5270 ocfs2_rec_clusters(el, rec);
5271 if (rec_range != trunc_range) {
5272 ocfs2_error(inode->i_sb,
5273 "Inode %llu: error after split at cpos %u"
5274 "trunc len %u, existing record is (%u,%u)",
5275 (unsigned long long)OCFS2_I(inode)->ip_blkno,
5276 cpos, len, le32_to_cpu(rec->e_cpos),
5277 ocfs2_rec_clusters(el, rec));
5278 ret = -EROFS;
5279 goto out;
5280 }
5281
5282 ret = ocfs2_truncate_rec(inode, handle, path, index, dealloc,
Joel Beckerdc0ce612008-08-20 16:48:35 -07005283 cpos, len, &et);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005284 if (ret) {
5285 mlog_errno(ret);
5286 goto out;
5287 }
5288 }
5289
5290out:
5291 ocfs2_free_path(path);
Joel Beckerdc0ce612008-08-20 16:48:35 -07005292 ocfs2_put_extent_tree(&et);
Mark Fashehd0c7d702007-07-03 13:27:22 -07005293 return ret;
5294}
5295
Mark Fasheh063c4562007-07-03 13:34:11 -07005296int ocfs2_truncate_log_needs_flush(struct ocfs2_super *osb)
Mark Fashehccd979b2005-12-15 14:31:24 -08005297{
5298 struct buffer_head *tl_bh = osb->osb_tl_bh;
5299 struct ocfs2_dinode *di;
5300 struct ocfs2_truncate_log *tl;
5301
5302 di = (struct ocfs2_dinode *) tl_bh->b_data;
5303 tl = &di->id2.i_dealloc;
5304
5305 mlog_bug_on_msg(le16_to_cpu(tl->tl_used) > le16_to_cpu(tl->tl_count),
5306 "slot %d, invalid truncate log parameters: used = "
5307 "%u, count = %u\n", osb->slot_num,
5308 le16_to_cpu(tl->tl_used), le16_to_cpu(tl->tl_count));
5309 return le16_to_cpu(tl->tl_used) == le16_to_cpu(tl->tl_count);
5310}
5311
5312static int ocfs2_truncate_log_can_coalesce(struct ocfs2_truncate_log *tl,
5313 unsigned int new_start)
5314{
5315 unsigned int tail_index;
5316 unsigned int current_tail;
5317
5318 /* No records, nothing to coalesce */
5319 if (!le16_to_cpu(tl->tl_used))
5320 return 0;
5321
5322 tail_index = le16_to_cpu(tl->tl_used) - 1;
5323 current_tail = le32_to_cpu(tl->tl_recs[tail_index].t_start);
5324 current_tail += le32_to_cpu(tl->tl_recs[tail_index].t_clusters);
5325
5326 return current_tail == new_start;
5327}
5328
Mark Fasheh063c4562007-07-03 13:34:11 -07005329int ocfs2_truncate_log_append(struct ocfs2_super *osb,
5330 handle_t *handle,
5331 u64 start_blk,
5332 unsigned int num_clusters)
Mark Fashehccd979b2005-12-15 14:31:24 -08005333{
5334 int status, index;
5335 unsigned int start_cluster, tl_count;
5336 struct inode *tl_inode = osb->osb_tl_inode;
5337 struct buffer_head *tl_bh = osb->osb_tl_bh;
5338 struct ocfs2_dinode *di;
5339 struct ocfs2_truncate_log *tl;
5340
Mark Fashehb0697052006-03-03 10:24:33 -08005341 mlog_entry("start_blk = %llu, num_clusters = %u\n",
5342 (unsigned long long)start_blk, num_clusters);
Mark Fashehccd979b2005-12-15 14:31:24 -08005343
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005344 BUG_ON(mutex_trylock(&tl_inode->i_mutex));
Mark Fashehccd979b2005-12-15 14:31:24 -08005345
5346 start_cluster = ocfs2_blocks_to_clusters(osb->sb, start_blk);
5347
5348 di = (struct ocfs2_dinode *) tl_bh->b_data;
5349 tl = &di->id2.i_dealloc;
5350 if (!OCFS2_IS_VALID_DINODE(di)) {
5351 OCFS2_RO_ON_INVALID_DINODE(osb->sb, di);
5352 status = -EIO;
5353 goto bail;
5354 }
5355
5356 tl_count = le16_to_cpu(tl->tl_count);
5357 mlog_bug_on_msg(tl_count > ocfs2_truncate_recs_per_inode(osb->sb) ||
5358 tl_count == 0,
Mark Fashehb0697052006-03-03 10:24:33 -08005359 "Truncate record count on #%llu invalid "
5360 "wanted %u, actual %u\n",
5361 (unsigned long long)OCFS2_I(tl_inode)->ip_blkno,
Mark Fashehccd979b2005-12-15 14:31:24 -08005362 ocfs2_truncate_recs_per_inode(osb->sb),
5363 le16_to_cpu(tl->tl_count));
5364
5365 /* Caller should have known to flush before calling us. */
5366 index = le16_to_cpu(tl->tl_used);
5367 if (index >= tl_count) {
5368 status = -ENOSPC;
5369 mlog_errno(status);
5370 goto bail;
5371 }
5372
5373 status = ocfs2_journal_access(handle, tl_inode, tl_bh,
5374 OCFS2_JOURNAL_ACCESS_WRITE);
5375 if (status < 0) {
5376 mlog_errno(status);
5377 goto bail;
5378 }
5379
5380 mlog(0, "Log truncate of %u clusters starting at cluster %u to "
Mark Fashehb0697052006-03-03 10:24:33 -08005381 "%llu (index = %d)\n", num_clusters, start_cluster,
5382 (unsigned long long)OCFS2_I(tl_inode)->ip_blkno, index);
Mark Fashehccd979b2005-12-15 14:31:24 -08005383
5384 if (ocfs2_truncate_log_can_coalesce(tl, start_cluster)) {
5385 /*
5386 * Move index back to the record we are coalescing with.
5387 * ocfs2_truncate_log_can_coalesce() guarantees nonzero
5388 */
5389 index--;
5390
5391 num_clusters += le32_to_cpu(tl->tl_recs[index].t_clusters);
5392 mlog(0, "Coalesce with index %u (start = %u, clusters = %u)\n",
5393 index, le32_to_cpu(tl->tl_recs[index].t_start),
5394 num_clusters);
5395 } else {
5396 tl->tl_recs[index].t_start = cpu_to_le32(start_cluster);
5397 tl->tl_used = cpu_to_le16(index + 1);
5398 }
5399 tl->tl_recs[index].t_clusters = cpu_to_le32(num_clusters);
5400
5401 status = ocfs2_journal_dirty(handle, tl_bh);
5402 if (status < 0) {
5403 mlog_errno(status);
5404 goto bail;
5405 }
5406
5407bail:
5408 mlog_exit(status);
5409 return status;
5410}
5411
5412static int ocfs2_replay_truncate_records(struct ocfs2_super *osb,
Mark Fasheh1fabe142006-10-09 18:11:45 -07005413 handle_t *handle,
Mark Fashehccd979b2005-12-15 14:31:24 -08005414 struct inode *data_alloc_inode,
5415 struct buffer_head *data_alloc_bh)
5416{
5417 int status = 0;
5418 int i;
5419 unsigned int num_clusters;
5420 u64 start_blk;
5421 struct ocfs2_truncate_rec rec;
5422 struct ocfs2_dinode *di;
5423 struct ocfs2_truncate_log *tl;
5424 struct inode *tl_inode = osb->osb_tl_inode;
5425 struct buffer_head *tl_bh = osb->osb_tl_bh;
5426
5427 mlog_entry_void();
5428
5429 di = (struct ocfs2_dinode *) tl_bh->b_data;
5430 tl = &di->id2.i_dealloc;
5431 i = le16_to_cpu(tl->tl_used) - 1;
5432 while (i >= 0) {
5433 /* Caller has given us at least enough credits to
5434 * update the truncate log dinode */
5435 status = ocfs2_journal_access(handle, tl_inode, tl_bh,
5436 OCFS2_JOURNAL_ACCESS_WRITE);
5437 if (status < 0) {
5438 mlog_errno(status);
5439 goto bail;
5440 }
5441
5442 tl->tl_used = cpu_to_le16(i);
5443
5444 status = ocfs2_journal_dirty(handle, tl_bh);
5445 if (status < 0) {
5446 mlog_errno(status);
5447 goto bail;
5448 }
5449
5450 /* TODO: Perhaps we can calculate the bulk of the
5451 * credits up front rather than extending like
5452 * this. */
5453 status = ocfs2_extend_trans(handle,
5454 OCFS2_TRUNCATE_LOG_FLUSH_ONE_REC);
5455 if (status < 0) {
5456 mlog_errno(status);
5457 goto bail;
5458 }
5459
5460 rec = tl->tl_recs[i];
5461 start_blk = ocfs2_clusters_to_blocks(data_alloc_inode->i_sb,
5462 le32_to_cpu(rec.t_start));
5463 num_clusters = le32_to_cpu(rec.t_clusters);
5464
5465 /* if start_blk is not set, we ignore the record as
5466 * invalid. */
5467 if (start_blk) {
5468 mlog(0, "free record %d, start = %u, clusters = %u\n",
5469 i, le32_to_cpu(rec.t_start), num_clusters);
5470
5471 status = ocfs2_free_clusters(handle, data_alloc_inode,
5472 data_alloc_bh, start_blk,
5473 num_clusters);
5474 if (status < 0) {
5475 mlog_errno(status);
5476 goto bail;
5477 }
5478 }
5479 i--;
5480 }
5481
5482bail:
5483 mlog_exit(status);
5484 return status;
5485}
5486
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005487/* Expects you to already be holding tl_inode->i_mutex */
Mark Fasheh063c4562007-07-03 13:34:11 -07005488int __ocfs2_flush_truncate_log(struct ocfs2_super *osb)
Mark Fashehccd979b2005-12-15 14:31:24 -08005489{
5490 int status;
5491 unsigned int num_to_flush;
Mark Fasheh1fabe142006-10-09 18:11:45 -07005492 handle_t *handle;
Mark Fashehccd979b2005-12-15 14:31:24 -08005493 struct inode *tl_inode = osb->osb_tl_inode;
5494 struct inode *data_alloc_inode = NULL;
5495 struct buffer_head *tl_bh = osb->osb_tl_bh;
5496 struct buffer_head *data_alloc_bh = NULL;
5497 struct ocfs2_dinode *di;
5498 struct ocfs2_truncate_log *tl;
5499
5500 mlog_entry_void();
5501
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005502 BUG_ON(mutex_trylock(&tl_inode->i_mutex));
Mark Fashehccd979b2005-12-15 14:31:24 -08005503
5504 di = (struct ocfs2_dinode *) tl_bh->b_data;
5505 tl = &di->id2.i_dealloc;
5506 if (!OCFS2_IS_VALID_DINODE(di)) {
5507 OCFS2_RO_ON_INVALID_DINODE(osb->sb, di);
5508 status = -EIO;
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005509 goto out;
Mark Fashehccd979b2005-12-15 14:31:24 -08005510 }
5511
5512 num_to_flush = le16_to_cpu(tl->tl_used);
Mark Fashehb0697052006-03-03 10:24:33 -08005513 mlog(0, "Flush %u records from truncate log #%llu\n",
5514 num_to_flush, (unsigned long long)OCFS2_I(tl_inode)->ip_blkno);
Mark Fashehccd979b2005-12-15 14:31:24 -08005515 if (!num_to_flush) {
5516 status = 0;
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005517 goto out;
Mark Fashehccd979b2005-12-15 14:31:24 -08005518 }
5519
5520 data_alloc_inode = ocfs2_get_system_file_inode(osb,
5521 GLOBAL_BITMAP_SYSTEM_INODE,
5522 OCFS2_INVALID_SLOT);
5523 if (!data_alloc_inode) {
5524 status = -EINVAL;
5525 mlog(ML_ERROR, "Could not get bitmap inode!\n");
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005526 goto out;
Mark Fashehccd979b2005-12-15 14:31:24 -08005527 }
5528
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005529 mutex_lock(&data_alloc_inode->i_mutex);
5530
Mark Fashehe63aecb62007-10-18 15:30:42 -07005531 status = ocfs2_inode_lock(data_alloc_inode, &data_alloc_bh, 1);
Mark Fashehccd979b2005-12-15 14:31:24 -08005532 if (status < 0) {
5533 mlog_errno(status);
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005534 goto out_mutex;
Mark Fashehccd979b2005-12-15 14:31:24 -08005535 }
5536
Mark Fasheh65eff9c2006-10-09 17:26:22 -07005537 handle = ocfs2_start_trans(osb, OCFS2_TRUNCATE_LOG_UPDATE);
Mark Fashehccd979b2005-12-15 14:31:24 -08005538 if (IS_ERR(handle)) {
5539 status = PTR_ERR(handle);
Mark Fashehccd979b2005-12-15 14:31:24 -08005540 mlog_errno(status);
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005541 goto out_unlock;
Mark Fashehccd979b2005-12-15 14:31:24 -08005542 }
5543
5544 status = ocfs2_replay_truncate_records(osb, handle, data_alloc_inode,
5545 data_alloc_bh);
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005546 if (status < 0)
Mark Fashehccd979b2005-12-15 14:31:24 -08005547 mlog_errno(status);
Mark Fashehccd979b2005-12-15 14:31:24 -08005548
Mark Fasheh02dc1af2006-10-09 16:48:10 -07005549 ocfs2_commit_trans(osb, handle);
Mark Fashehccd979b2005-12-15 14:31:24 -08005550
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005551out_unlock:
5552 brelse(data_alloc_bh);
Mark Fashehe63aecb62007-10-18 15:30:42 -07005553 ocfs2_inode_unlock(data_alloc_inode, 1);
Mark Fashehccd979b2005-12-15 14:31:24 -08005554
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005555out_mutex:
5556 mutex_unlock(&data_alloc_inode->i_mutex);
5557 iput(data_alloc_inode);
Mark Fashehccd979b2005-12-15 14:31:24 -08005558
Mark Fashehe08dc8b2006-10-05 15:58:48 -07005559out:
Mark Fashehccd979b2005-12-15 14:31:24 -08005560 mlog_exit(status);
5561 return status;
5562}
5563
5564int ocfs2_flush_truncate_log(struct ocfs2_super *osb)
5565{
5566 int status;
5567 struct inode *tl_inode = osb->osb_tl_inode;
5568
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005569 mutex_lock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08005570 status = __ocfs2_flush_truncate_log(osb);
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005571 mutex_unlock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08005572
5573 return status;
5574}
5575
David Howellsc4028952006-11-22 14:57:56 +00005576static void ocfs2_truncate_log_worker(struct work_struct *work)
Mark Fashehccd979b2005-12-15 14:31:24 -08005577{
5578 int status;
David Howellsc4028952006-11-22 14:57:56 +00005579 struct ocfs2_super *osb =
5580 container_of(work, struct ocfs2_super,
5581 osb_truncate_log_wq.work);
Mark Fashehccd979b2005-12-15 14:31:24 -08005582
5583 mlog_entry_void();
5584
5585 status = ocfs2_flush_truncate_log(osb);
5586 if (status < 0)
5587 mlog_errno(status);
Tao Ma4d0ddb22008-03-05 16:11:46 +08005588 else
5589 ocfs2_init_inode_steal_slot(osb);
Mark Fashehccd979b2005-12-15 14:31:24 -08005590
5591 mlog_exit(status);
5592}
5593
5594#define OCFS2_TRUNCATE_LOG_FLUSH_INTERVAL (2 * HZ)
5595void ocfs2_schedule_truncate_log_flush(struct ocfs2_super *osb,
5596 int cancel)
5597{
5598 if (osb->osb_tl_inode) {
5599 /* We want to push off log flushes while truncates are
5600 * still running. */
5601 if (cancel)
5602 cancel_delayed_work(&osb->osb_truncate_log_wq);
5603
5604 queue_delayed_work(ocfs2_wq, &osb->osb_truncate_log_wq,
5605 OCFS2_TRUNCATE_LOG_FLUSH_INTERVAL);
5606 }
5607}
5608
5609static int ocfs2_get_truncate_log_info(struct ocfs2_super *osb,
5610 int slot_num,
5611 struct inode **tl_inode,
5612 struct buffer_head **tl_bh)
5613{
5614 int status;
5615 struct inode *inode = NULL;
5616 struct buffer_head *bh = NULL;
5617
5618 inode = ocfs2_get_system_file_inode(osb,
5619 TRUNCATE_LOG_SYSTEM_INODE,
5620 slot_num);
5621 if (!inode) {
5622 status = -EINVAL;
5623 mlog(ML_ERROR, "Could not get load truncate log inode!\n");
5624 goto bail;
5625 }
5626
5627 status = ocfs2_read_block(osb, OCFS2_I(inode)->ip_blkno, &bh,
5628 OCFS2_BH_CACHED, inode);
5629 if (status < 0) {
5630 iput(inode);
5631 mlog_errno(status);
5632 goto bail;
5633 }
5634
5635 *tl_inode = inode;
5636 *tl_bh = bh;
5637bail:
5638 mlog_exit(status);
5639 return status;
5640}
5641
5642/* called during the 1st stage of node recovery. we stamp a clean
5643 * truncate log and pass back a copy for processing later. if the
5644 * truncate log does not require processing, a *tl_copy is set to
5645 * NULL. */
5646int ocfs2_begin_truncate_log_recovery(struct ocfs2_super *osb,
5647 int slot_num,
5648 struct ocfs2_dinode **tl_copy)
5649{
5650 int status;
5651 struct inode *tl_inode = NULL;
5652 struct buffer_head *tl_bh = NULL;
5653 struct ocfs2_dinode *di;
5654 struct ocfs2_truncate_log *tl;
5655
5656 *tl_copy = NULL;
5657
5658 mlog(0, "recover truncate log from slot %d\n", slot_num);
5659
5660 status = ocfs2_get_truncate_log_info(osb, slot_num, &tl_inode, &tl_bh);
5661 if (status < 0) {
5662 mlog_errno(status);
5663 goto bail;
5664 }
5665
5666 di = (struct ocfs2_dinode *) tl_bh->b_data;
5667 tl = &di->id2.i_dealloc;
5668 if (!OCFS2_IS_VALID_DINODE(di)) {
5669 OCFS2_RO_ON_INVALID_DINODE(tl_inode->i_sb, di);
5670 status = -EIO;
5671 goto bail;
5672 }
5673
5674 if (le16_to_cpu(tl->tl_used)) {
5675 mlog(0, "We'll have %u logs to recover\n",
5676 le16_to_cpu(tl->tl_used));
5677
5678 *tl_copy = kmalloc(tl_bh->b_size, GFP_KERNEL);
5679 if (!(*tl_copy)) {
5680 status = -ENOMEM;
5681 mlog_errno(status);
5682 goto bail;
5683 }
5684
5685 /* Assuming the write-out below goes well, this copy
5686 * will be passed back to recovery for processing. */
5687 memcpy(*tl_copy, tl_bh->b_data, tl_bh->b_size);
5688
5689 /* All we need to do to clear the truncate log is set
5690 * tl_used. */
5691 tl->tl_used = 0;
5692
5693 status = ocfs2_write_block(osb, tl_bh, tl_inode);
5694 if (status < 0) {
5695 mlog_errno(status);
5696 goto bail;
5697 }
5698 }
5699
5700bail:
5701 if (tl_inode)
5702 iput(tl_inode);
5703 if (tl_bh)
5704 brelse(tl_bh);
5705
5706 if (status < 0 && (*tl_copy)) {
5707 kfree(*tl_copy);
5708 *tl_copy = NULL;
5709 }
5710
5711 mlog_exit(status);
5712 return status;
5713}
5714
5715int ocfs2_complete_truncate_log_recovery(struct ocfs2_super *osb,
5716 struct ocfs2_dinode *tl_copy)
5717{
5718 int status = 0;
5719 int i;
5720 unsigned int clusters, num_recs, start_cluster;
5721 u64 start_blk;
Mark Fasheh1fabe142006-10-09 18:11:45 -07005722 handle_t *handle;
Mark Fashehccd979b2005-12-15 14:31:24 -08005723 struct inode *tl_inode = osb->osb_tl_inode;
5724 struct ocfs2_truncate_log *tl;
5725
5726 mlog_entry_void();
5727
5728 if (OCFS2_I(tl_inode)->ip_blkno == le64_to_cpu(tl_copy->i_blkno)) {
5729 mlog(ML_ERROR, "Asked to recover my own truncate log!\n");
5730 return -EINVAL;
5731 }
5732
5733 tl = &tl_copy->id2.i_dealloc;
5734 num_recs = le16_to_cpu(tl->tl_used);
Mark Fashehb0697052006-03-03 10:24:33 -08005735 mlog(0, "cleanup %u records from %llu\n", num_recs,
Mark Fasheh1ca1a112007-04-27 16:01:25 -07005736 (unsigned long long)le64_to_cpu(tl_copy->i_blkno));
Mark Fashehccd979b2005-12-15 14:31:24 -08005737
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005738 mutex_lock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08005739 for(i = 0; i < num_recs; i++) {
5740 if (ocfs2_truncate_log_needs_flush(osb)) {
5741 status = __ocfs2_flush_truncate_log(osb);
5742 if (status < 0) {
5743 mlog_errno(status);
5744 goto bail_up;
5745 }
5746 }
5747
Mark Fasheh65eff9c2006-10-09 17:26:22 -07005748 handle = ocfs2_start_trans(osb, OCFS2_TRUNCATE_LOG_UPDATE);
Mark Fashehccd979b2005-12-15 14:31:24 -08005749 if (IS_ERR(handle)) {
5750 status = PTR_ERR(handle);
5751 mlog_errno(status);
5752 goto bail_up;
5753 }
5754
5755 clusters = le32_to_cpu(tl->tl_recs[i].t_clusters);
5756 start_cluster = le32_to_cpu(tl->tl_recs[i].t_start);
5757 start_blk = ocfs2_clusters_to_blocks(osb->sb, start_cluster);
5758
5759 status = ocfs2_truncate_log_append(osb, handle,
5760 start_blk, clusters);
Mark Fasheh02dc1af2006-10-09 16:48:10 -07005761 ocfs2_commit_trans(osb, handle);
Mark Fashehccd979b2005-12-15 14:31:24 -08005762 if (status < 0) {
5763 mlog_errno(status);
5764 goto bail_up;
5765 }
5766 }
5767
5768bail_up:
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08005769 mutex_unlock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08005770
5771 mlog_exit(status);
5772 return status;
5773}
5774
5775void ocfs2_truncate_log_shutdown(struct ocfs2_super *osb)
5776{
5777 int status;
5778 struct inode *tl_inode = osb->osb_tl_inode;
5779
5780 mlog_entry_void();
5781
5782 if (tl_inode) {
5783 cancel_delayed_work(&osb->osb_truncate_log_wq);
5784 flush_workqueue(ocfs2_wq);
5785
5786 status = ocfs2_flush_truncate_log(osb);
5787 if (status < 0)
5788 mlog_errno(status);
5789
5790 brelse(osb->osb_tl_bh);
5791 iput(osb->osb_tl_inode);
5792 }
5793
5794 mlog_exit_void();
5795}
5796
5797int ocfs2_truncate_log_init(struct ocfs2_super *osb)
5798{
5799 int status;
5800 struct inode *tl_inode = NULL;
5801 struct buffer_head *tl_bh = NULL;
5802
5803 mlog_entry_void();
5804
5805 status = ocfs2_get_truncate_log_info(osb,
5806 osb->slot_num,
5807 &tl_inode,
5808 &tl_bh);
5809 if (status < 0)
5810 mlog_errno(status);
5811
5812 /* ocfs2_truncate_log_shutdown keys on the existence of
5813 * osb->osb_tl_inode so we don't set any of the osb variables
5814 * until we're sure all is well. */
David Howellsc4028952006-11-22 14:57:56 +00005815 INIT_DELAYED_WORK(&osb->osb_truncate_log_wq,
5816 ocfs2_truncate_log_worker);
Mark Fashehccd979b2005-12-15 14:31:24 -08005817 osb->osb_tl_bh = tl_bh;
5818 osb->osb_tl_inode = tl_inode;
5819
5820 mlog_exit(status);
5821 return status;
5822}
5823
Mark Fasheh2b604352007-06-22 15:45:27 -07005824/*
5825 * Delayed de-allocation of suballocator blocks.
5826 *
5827 * Some sets of block de-allocations might involve multiple suballocator inodes.
5828 *
5829 * The locking for this can get extremely complicated, especially when
5830 * the suballocator inodes to delete from aren't known until deep
5831 * within an unrelated codepath.
5832 *
5833 * ocfs2_extent_block structures are a good example of this - an inode
5834 * btree could have been grown by any number of nodes each allocating
5835 * out of their own suballoc inode.
5836 *
5837 * These structures allow the delay of block de-allocation until a
5838 * later time, when locking of multiple cluster inodes won't cause
5839 * deadlock.
5840 */
5841
5842/*
5843 * Describes a single block free from a suballocator
5844 */
5845struct ocfs2_cached_block_free {
5846 struct ocfs2_cached_block_free *free_next;
5847 u64 free_blk;
5848 unsigned int free_bit;
5849};
5850
5851struct ocfs2_per_slot_free_list {
5852 struct ocfs2_per_slot_free_list *f_next_suballocator;
5853 int f_inode_type;
5854 int f_slot;
5855 struct ocfs2_cached_block_free *f_first;
5856};
5857
5858static int ocfs2_free_cached_items(struct ocfs2_super *osb,
5859 int sysfile_type,
5860 int slot,
5861 struct ocfs2_cached_block_free *head)
5862{
5863 int ret;
5864 u64 bg_blkno;
5865 handle_t *handle;
5866 struct inode *inode;
5867 struct buffer_head *di_bh = NULL;
5868 struct ocfs2_cached_block_free *tmp;
5869
5870 inode = ocfs2_get_system_file_inode(osb, sysfile_type, slot);
5871 if (!inode) {
5872 ret = -EINVAL;
5873 mlog_errno(ret);
5874 goto out;
5875 }
5876
5877 mutex_lock(&inode->i_mutex);
5878
Mark Fashehe63aecb62007-10-18 15:30:42 -07005879 ret = ocfs2_inode_lock(inode, &di_bh, 1);
Mark Fasheh2b604352007-06-22 15:45:27 -07005880 if (ret) {
5881 mlog_errno(ret);
5882 goto out_mutex;
5883 }
5884
5885 handle = ocfs2_start_trans(osb, OCFS2_SUBALLOC_FREE);
5886 if (IS_ERR(handle)) {
5887 ret = PTR_ERR(handle);
5888 mlog_errno(ret);
5889 goto out_unlock;
5890 }
5891
5892 while (head) {
5893 bg_blkno = ocfs2_which_suballoc_group(head->free_blk,
5894 head->free_bit);
5895 mlog(0, "Free bit: (bit %u, blkno %llu)\n",
5896 head->free_bit, (unsigned long long)head->free_blk);
5897
5898 ret = ocfs2_free_suballoc_bits(handle, inode, di_bh,
5899 head->free_bit, bg_blkno, 1);
5900 if (ret) {
5901 mlog_errno(ret);
5902 goto out_journal;
5903 }
5904
5905 ret = ocfs2_extend_trans(handle, OCFS2_SUBALLOC_FREE);
5906 if (ret) {
5907 mlog_errno(ret);
5908 goto out_journal;
5909 }
5910
5911 tmp = head;
5912 head = head->free_next;
5913 kfree(tmp);
5914 }
5915
5916out_journal:
5917 ocfs2_commit_trans(osb, handle);
5918
5919out_unlock:
Mark Fashehe63aecb62007-10-18 15:30:42 -07005920 ocfs2_inode_unlock(inode, 1);
Mark Fasheh2b604352007-06-22 15:45:27 -07005921 brelse(di_bh);
5922out_mutex:
5923 mutex_unlock(&inode->i_mutex);
5924 iput(inode);
5925out:
5926 while(head) {
5927 /* Premature exit may have left some dangling items. */
5928 tmp = head;
5929 head = head->free_next;
5930 kfree(tmp);
5931 }
5932
5933 return ret;
5934}
5935
5936int ocfs2_run_deallocs(struct ocfs2_super *osb,
5937 struct ocfs2_cached_dealloc_ctxt *ctxt)
5938{
5939 int ret = 0, ret2;
5940 struct ocfs2_per_slot_free_list *fl;
5941
5942 if (!ctxt)
5943 return 0;
5944
5945 while (ctxt->c_first_suballocator) {
5946 fl = ctxt->c_first_suballocator;
5947
5948 if (fl->f_first) {
5949 mlog(0, "Free items: (type %u, slot %d)\n",
5950 fl->f_inode_type, fl->f_slot);
5951 ret2 = ocfs2_free_cached_items(osb, fl->f_inode_type,
5952 fl->f_slot, fl->f_first);
5953 if (ret2)
5954 mlog_errno(ret2);
5955 if (!ret)
5956 ret = ret2;
5957 }
5958
5959 ctxt->c_first_suballocator = fl->f_next_suballocator;
5960 kfree(fl);
5961 }
5962
5963 return ret;
5964}
5965
5966static struct ocfs2_per_slot_free_list *
5967ocfs2_find_per_slot_free_list(int type,
5968 int slot,
5969 struct ocfs2_cached_dealloc_ctxt *ctxt)
5970{
5971 struct ocfs2_per_slot_free_list *fl = ctxt->c_first_suballocator;
5972
5973 while (fl) {
5974 if (fl->f_inode_type == type && fl->f_slot == slot)
5975 return fl;
5976
5977 fl = fl->f_next_suballocator;
5978 }
5979
5980 fl = kmalloc(sizeof(*fl), GFP_NOFS);
5981 if (fl) {
5982 fl->f_inode_type = type;
5983 fl->f_slot = slot;
5984 fl->f_first = NULL;
5985 fl->f_next_suballocator = ctxt->c_first_suballocator;
5986
5987 ctxt->c_first_suballocator = fl;
5988 }
5989 return fl;
5990}
5991
5992static int ocfs2_cache_block_dealloc(struct ocfs2_cached_dealloc_ctxt *ctxt,
5993 int type, int slot, u64 blkno,
5994 unsigned int bit)
5995{
5996 int ret;
5997 struct ocfs2_per_slot_free_list *fl;
5998 struct ocfs2_cached_block_free *item;
5999
6000 fl = ocfs2_find_per_slot_free_list(type, slot, ctxt);
6001 if (fl == NULL) {
6002 ret = -ENOMEM;
6003 mlog_errno(ret);
6004 goto out;
6005 }
6006
6007 item = kmalloc(sizeof(*item), GFP_NOFS);
6008 if (item == NULL) {
6009 ret = -ENOMEM;
6010 mlog_errno(ret);
6011 goto out;
6012 }
6013
6014 mlog(0, "Insert: (type %d, slot %u, bit %u, blk %llu)\n",
6015 type, slot, bit, (unsigned long long)blkno);
6016
6017 item->free_blk = blkno;
6018 item->free_bit = bit;
6019 item->free_next = fl->f_first;
6020
6021 fl->f_first = item;
6022
6023 ret = 0;
6024out:
6025 return ret;
6026}
6027
Mark Fasheh59a5e412007-06-22 15:52:36 -07006028static int ocfs2_cache_extent_block_free(struct ocfs2_cached_dealloc_ctxt *ctxt,
6029 struct ocfs2_extent_block *eb)
6030{
6031 return ocfs2_cache_block_dealloc(ctxt, EXTENT_ALLOC_SYSTEM_INODE,
6032 le16_to_cpu(eb->h_suballoc_slot),
6033 le64_to_cpu(eb->h_blkno),
6034 le16_to_cpu(eb->h_suballoc_bit));
6035}
6036
Mark Fashehccd979b2005-12-15 14:31:24 -08006037/* This function will figure out whether the currently last extent
6038 * block will be deleted, and if it will, what the new last extent
6039 * block will be so we can update his h_next_leaf_blk field, as well
6040 * as the dinodes i_last_eb_blk */
Mark Fashehdcd05382007-01-16 11:32:23 -08006041static int ocfs2_find_new_last_ext_blk(struct inode *inode,
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006042 unsigned int clusters_to_del,
Mark Fashehdcd05382007-01-16 11:32:23 -08006043 struct ocfs2_path *path,
Mark Fashehccd979b2005-12-15 14:31:24 -08006044 struct buffer_head **new_last_eb)
6045{
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006046 int next_free, ret = 0;
Mark Fashehdcd05382007-01-16 11:32:23 -08006047 u32 cpos;
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006048 struct ocfs2_extent_rec *rec;
Mark Fashehccd979b2005-12-15 14:31:24 -08006049 struct ocfs2_extent_block *eb;
6050 struct ocfs2_extent_list *el;
6051 struct buffer_head *bh = NULL;
6052
6053 *new_last_eb = NULL;
6054
Mark Fashehccd979b2005-12-15 14:31:24 -08006055 /* we have no tree, so of course, no last_eb. */
Mark Fashehdcd05382007-01-16 11:32:23 -08006056 if (!path->p_tree_depth)
6057 goto out;
Mark Fashehccd979b2005-12-15 14:31:24 -08006058
6059 /* trunc to zero special case - this makes tree_depth = 0
6060 * regardless of what it is. */
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006061 if (OCFS2_I(inode)->ip_clusters == clusters_to_del)
Mark Fashehdcd05382007-01-16 11:32:23 -08006062 goto out;
Mark Fashehccd979b2005-12-15 14:31:24 -08006063
Mark Fashehdcd05382007-01-16 11:32:23 -08006064 el = path_leaf_el(path);
Mark Fashehccd979b2005-12-15 14:31:24 -08006065 BUG_ON(!el->l_next_free_rec);
6066
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006067 /*
6068 * Make sure that this extent list will actually be empty
6069 * after we clear away the data. We can shortcut out if
6070 * there's more than one non-empty extent in the
6071 * list. Otherwise, a check of the remaining extent is
6072 * necessary.
6073 */
6074 next_free = le16_to_cpu(el->l_next_free_rec);
6075 rec = NULL;
Mark Fashehdcd05382007-01-16 11:32:23 -08006076 if (ocfs2_is_empty_extent(&el->l_recs[0])) {
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006077 if (next_free > 2)
Mark Fashehdcd05382007-01-16 11:32:23 -08006078 goto out;
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006079
6080 /* We may have a valid extent in index 1, check it. */
6081 if (next_free == 2)
6082 rec = &el->l_recs[1];
6083
6084 /*
6085 * Fall through - no more nonempty extents, so we want
6086 * to delete this leaf.
6087 */
6088 } else {
6089 if (next_free > 1)
6090 goto out;
6091
6092 rec = &el->l_recs[0];
6093 }
6094
6095 if (rec) {
6096 /*
6097 * Check it we'll only be trimming off the end of this
6098 * cluster.
6099 */
Mark Fashehe48edee2007-03-07 16:46:57 -08006100 if (le16_to_cpu(rec->e_leaf_clusters) > clusters_to_del)
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006101 goto out;
6102 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006103
Mark Fashehdcd05382007-01-16 11:32:23 -08006104 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path, &cpos);
6105 if (ret) {
6106 mlog_errno(ret);
6107 goto out;
6108 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006109
Mark Fashehdcd05382007-01-16 11:32:23 -08006110 ret = ocfs2_find_leaf(inode, path_root_el(path), cpos, &bh);
6111 if (ret) {
6112 mlog_errno(ret);
6113 goto out;
6114 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006115
Mark Fashehdcd05382007-01-16 11:32:23 -08006116 eb = (struct ocfs2_extent_block *) bh->b_data;
6117 el = &eb->h_list;
6118 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
6119 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
6120 ret = -EROFS;
6121 goto out;
6122 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006123
6124 *new_last_eb = bh;
6125 get_bh(*new_last_eb);
Mark Fashehdcd05382007-01-16 11:32:23 -08006126 mlog(0, "returning block %llu, (cpos: %u)\n",
6127 (unsigned long long)le64_to_cpu(eb->h_blkno), cpos);
6128out:
6129 brelse(bh);
Mark Fashehccd979b2005-12-15 14:31:24 -08006130
Mark Fashehdcd05382007-01-16 11:32:23 -08006131 return ret;
Mark Fashehccd979b2005-12-15 14:31:24 -08006132}
6133
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006134/*
6135 * Trim some clusters off the rightmost edge of a tree. Only called
6136 * during truncate.
6137 *
6138 * The caller needs to:
6139 * - start journaling of each path component.
6140 * - compute and fully set up any new last ext block
6141 */
6142static int ocfs2_trim_tree(struct inode *inode, struct ocfs2_path *path,
6143 handle_t *handle, struct ocfs2_truncate_context *tc,
6144 u32 clusters_to_del, u64 *delete_start)
6145{
6146 int ret, i, index = path->p_tree_depth;
6147 u32 new_edge = 0;
6148 u64 deleted_eb = 0;
6149 struct buffer_head *bh;
6150 struct ocfs2_extent_list *el;
6151 struct ocfs2_extent_rec *rec;
6152
6153 *delete_start = 0;
6154
6155 while (index >= 0) {
6156 bh = path->p_node[index].bh;
6157 el = path->p_node[index].el;
6158
6159 mlog(0, "traveling tree (index = %d, block = %llu)\n",
6160 index, (unsigned long long)bh->b_blocknr);
6161
6162 BUG_ON(le16_to_cpu(el->l_next_free_rec) == 0);
6163
6164 if (index !=
6165 (path->p_tree_depth - le16_to_cpu(el->l_tree_depth))) {
6166 ocfs2_error(inode->i_sb,
6167 "Inode %lu has invalid ext. block %llu",
6168 inode->i_ino,
6169 (unsigned long long)bh->b_blocknr);
6170 ret = -EROFS;
6171 goto out;
6172 }
6173
6174find_tail_record:
6175 i = le16_to_cpu(el->l_next_free_rec) - 1;
6176 rec = &el->l_recs[i];
6177
6178 mlog(0, "Extent list before: record %d: (%u, %u, %llu), "
6179 "next = %u\n", i, le32_to_cpu(rec->e_cpos),
Mark Fashehe48edee2007-03-07 16:46:57 -08006180 ocfs2_rec_clusters(el, rec),
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006181 (unsigned long long)le64_to_cpu(rec->e_blkno),
6182 le16_to_cpu(el->l_next_free_rec));
6183
Mark Fashehe48edee2007-03-07 16:46:57 -08006184 BUG_ON(ocfs2_rec_clusters(el, rec) < clusters_to_del);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006185
6186 if (le16_to_cpu(el->l_tree_depth) == 0) {
6187 /*
6188 * If the leaf block contains a single empty
6189 * extent and no records, we can just remove
6190 * the block.
6191 */
6192 if (i == 0 && ocfs2_is_empty_extent(rec)) {
6193 memset(rec, 0,
6194 sizeof(struct ocfs2_extent_rec));
6195 el->l_next_free_rec = cpu_to_le16(0);
6196
6197 goto delete;
6198 }
6199
6200 /*
6201 * Remove any empty extents by shifting things
6202 * left. That should make life much easier on
6203 * the code below. This condition is rare
6204 * enough that we shouldn't see a performance
6205 * hit.
6206 */
6207 if (ocfs2_is_empty_extent(&el->l_recs[0])) {
6208 le16_add_cpu(&el->l_next_free_rec, -1);
6209
6210 for(i = 0;
6211 i < le16_to_cpu(el->l_next_free_rec); i++)
6212 el->l_recs[i] = el->l_recs[i + 1];
6213
6214 memset(&el->l_recs[i], 0,
6215 sizeof(struct ocfs2_extent_rec));
6216
6217 /*
6218 * We've modified our extent list. The
6219 * simplest way to handle this change
6220 * is to being the search from the
6221 * start again.
6222 */
6223 goto find_tail_record;
6224 }
6225
Mark Fashehe48edee2007-03-07 16:46:57 -08006226 le16_add_cpu(&rec->e_leaf_clusters, -clusters_to_del);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006227
6228 /*
6229 * We'll use "new_edge" on our way back up the
6230 * tree to know what our rightmost cpos is.
6231 */
Mark Fashehe48edee2007-03-07 16:46:57 -08006232 new_edge = le16_to_cpu(rec->e_leaf_clusters);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006233 new_edge += le32_to_cpu(rec->e_cpos);
6234
6235 /*
6236 * The caller will use this to delete data blocks.
6237 */
6238 *delete_start = le64_to_cpu(rec->e_blkno)
6239 + ocfs2_clusters_to_blocks(inode->i_sb,
Mark Fashehe48edee2007-03-07 16:46:57 -08006240 le16_to_cpu(rec->e_leaf_clusters));
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006241
6242 /*
6243 * If it's now empty, remove this record.
6244 */
Mark Fashehe48edee2007-03-07 16:46:57 -08006245 if (le16_to_cpu(rec->e_leaf_clusters) == 0) {
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006246 memset(rec, 0,
6247 sizeof(struct ocfs2_extent_rec));
6248 le16_add_cpu(&el->l_next_free_rec, -1);
6249 }
6250 } else {
6251 if (le64_to_cpu(rec->e_blkno) == deleted_eb) {
6252 memset(rec, 0,
6253 sizeof(struct ocfs2_extent_rec));
6254 le16_add_cpu(&el->l_next_free_rec, -1);
6255
6256 goto delete;
6257 }
6258
6259 /* Can this actually happen? */
6260 if (le16_to_cpu(el->l_next_free_rec) == 0)
6261 goto delete;
6262
6263 /*
6264 * We never actually deleted any clusters
6265 * because our leaf was empty. There's no
6266 * reason to adjust the rightmost edge then.
6267 */
6268 if (new_edge == 0)
6269 goto delete;
6270
Mark Fashehe48edee2007-03-07 16:46:57 -08006271 rec->e_int_clusters = cpu_to_le32(new_edge);
6272 le32_add_cpu(&rec->e_int_clusters,
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006273 -le32_to_cpu(rec->e_cpos));
6274
6275 /*
6276 * A deleted child record should have been
6277 * caught above.
6278 */
Mark Fashehe48edee2007-03-07 16:46:57 -08006279 BUG_ON(le32_to_cpu(rec->e_int_clusters) == 0);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006280 }
6281
6282delete:
6283 ret = ocfs2_journal_dirty(handle, bh);
6284 if (ret) {
6285 mlog_errno(ret);
6286 goto out;
6287 }
6288
6289 mlog(0, "extent list container %llu, after: record %d: "
6290 "(%u, %u, %llu), next = %u.\n",
6291 (unsigned long long)bh->b_blocknr, i,
Mark Fashehe48edee2007-03-07 16:46:57 -08006292 le32_to_cpu(rec->e_cpos), ocfs2_rec_clusters(el, rec),
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006293 (unsigned long long)le64_to_cpu(rec->e_blkno),
6294 le16_to_cpu(el->l_next_free_rec));
6295
6296 /*
6297 * We must be careful to only attempt delete of an
6298 * extent block (and not the root inode block).
6299 */
6300 if (index > 0 && le16_to_cpu(el->l_next_free_rec) == 0) {
6301 struct ocfs2_extent_block *eb =
6302 (struct ocfs2_extent_block *)bh->b_data;
6303
6304 /*
6305 * Save this for use when processing the
6306 * parent block.
6307 */
6308 deleted_eb = le64_to_cpu(eb->h_blkno);
6309
6310 mlog(0, "deleting this extent block.\n");
6311
6312 ocfs2_remove_from_cache(inode, bh);
6313
Mark Fashehe48edee2007-03-07 16:46:57 -08006314 BUG_ON(ocfs2_rec_clusters(el, &el->l_recs[0]));
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006315 BUG_ON(le32_to_cpu(el->l_recs[0].e_cpos));
6316 BUG_ON(le64_to_cpu(el->l_recs[0].e_blkno));
6317
Mark Fasheh59a5e412007-06-22 15:52:36 -07006318 ret = ocfs2_cache_extent_block_free(&tc->tc_dealloc, eb);
6319 /* An error here is not fatal. */
6320 if (ret < 0)
6321 mlog_errno(ret);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006322 } else {
6323 deleted_eb = 0;
6324 }
6325
6326 index--;
6327 }
6328
6329 ret = 0;
6330out:
6331 return ret;
6332}
6333
Mark Fashehccd979b2005-12-15 14:31:24 -08006334static int ocfs2_do_truncate(struct ocfs2_super *osb,
6335 unsigned int clusters_to_del,
6336 struct inode *inode,
6337 struct buffer_head *fe_bh,
Mark Fasheh1fabe142006-10-09 18:11:45 -07006338 handle_t *handle,
Mark Fashehdcd05382007-01-16 11:32:23 -08006339 struct ocfs2_truncate_context *tc,
6340 struct ocfs2_path *path)
Mark Fashehccd979b2005-12-15 14:31:24 -08006341{
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006342 int status;
Mark Fashehccd979b2005-12-15 14:31:24 -08006343 struct ocfs2_dinode *fe;
Mark Fashehccd979b2005-12-15 14:31:24 -08006344 struct ocfs2_extent_block *last_eb = NULL;
6345 struct ocfs2_extent_list *el;
Mark Fashehccd979b2005-12-15 14:31:24 -08006346 struct buffer_head *last_eb_bh = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -08006347 u64 delete_blk = 0;
6348
6349 fe = (struct ocfs2_dinode *) fe_bh->b_data;
6350
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006351 status = ocfs2_find_new_last_ext_blk(inode, clusters_to_del,
Mark Fashehdcd05382007-01-16 11:32:23 -08006352 path, &last_eb_bh);
Mark Fashehccd979b2005-12-15 14:31:24 -08006353 if (status < 0) {
6354 mlog_errno(status);
6355 goto bail;
6356 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006357
Mark Fashehdcd05382007-01-16 11:32:23 -08006358 /*
6359 * Each component will be touched, so we might as well journal
6360 * here to avoid having to handle errors later.
6361 */
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006362 status = ocfs2_journal_access_path(inode, handle, path);
6363 if (status < 0) {
6364 mlog_errno(status);
6365 goto bail;
Mark Fashehdcd05382007-01-16 11:32:23 -08006366 }
6367
6368 if (last_eb_bh) {
6369 status = ocfs2_journal_access(handle, inode, last_eb_bh,
6370 OCFS2_JOURNAL_ACCESS_WRITE);
6371 if (status < 0) {
6372 mlog_errno(status);
6373 goto bail;
6374 }
6375
6376 last_eb = (struct ocfs2_extent_block *) last_eb_bh->b_data;
6377 }
6378
6379 el = &(fe->id2.i_list);
6380
6381 /*
6382 * Lower levels depend on this never happening, but it's best
6383 * to check it up here before changing the tree.
6384 */
Mark Fashehe48edee2007-03-07 16:46:57 -08006385 if (el->l_tree_depth && el->l_recs[0].e_int_clusters == 0) {
Mark Fashehdcd05382007-01-16 11:32:23 -08006386 ocfs2_error(inode->i_sb,
6387 "Inode %lu has an empty extent record, depth %u\n",
6388 inode->i_ino, le16_to_cpu(el->l_tree_depth));
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006389 status = -EROFS;
Mark Fashehccd979b2005-12-15 14:31:24 -08006390 goto bail;
6391 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006392
6393 spin_lock(&OCFS2_I(inode)->ip_lock);
6394 OCFS2_I(inode)->ip_clusters = le32_to_cpu(fe->i_clusters) -
6395 clusters_to_del;
6396 spin_unlock(&OCFS2_I(inode)->ip_lock);
6397 le32_add_cpu(&fe->i_clusters, -clusters_to_del);
Mark Fashehe535e2e2007-08-31 10:23:41 -07006398 inode->i_blocks = ocfs2_inode_sector_count(inode);
Mark Fashehccd979b2005-12-15 14:31:24 -08006399
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006400 status = ocfs2_trim_tree(inode, path, handle, tc,
6401 clusters_to_del, &delete_blk);
6402 if (status) {
6403 mlog_errno(status);
6404 goto bail;
Mark Fashehccd979b2005-12-15 14:31:24 -08006405 }
6406
Mark Fashehdcd05382007-01-16 11:32:23 -08006407 if (le32_to_cpu(fe->i_clusters) == 0) {
Mark Fashehccd979b2005-12-15 14:31:24 -08006408 /* trunc to zero is a special case. */
6409 el->l_tree_depth = 0;
6410 fe->i_last_eb_blk = 0;
6411 } else if (last_eb)
6412 fe->i_last_eb_blk = last_eb->h_blkno;
6413
6414 status = ocfs2_journal_dirty(handle, fe_bh);
6415 if (status < 0) {
6416 mlog_errno(status);
6417 goto bail;
6418 }
6419
6420 if (last_eb) {
6421 /* If there will be a new last extent block, then by
6422 * definition, there cannot be any leaves to the right of
6423 * him. */
Mark Fashehccd979b2005-12-15 14:31:24 -08006424 last_eb->h_next_leaf_blk = 0;
6425 status = ocfs2_journal_dirty(handle, last_eb_bh);
6426 if (status < 0) {
6427 mlog_errno(status);
6428 goto bail;
6429 }
6430 }
6431
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006432 if (delete_blk) {
6433 status = ocfs2_truncate_log_append(osb, handle, delete_blk,
6434 clusters_to_del);
Mark Fashehccd979b2005-12-15 14:31:24 -08006435 if (status < 0) {
6436 mlog_errno(status);
6437 goto bail;
6438 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006439 }
6440 status = 0;
6441bail:
Mark Fashehdcd05382007-01-16 11:32:23 -08006442
Mark Fashehccd979b2005-12-15 14:31:24 -08006443 mlog_exit(status);
6444 return status;
6445}
6446
Mark Fasheh60b11392007-02-16 11:46:50 -08006447static int ocfs2_writeback_zero_func(handle_t *handle, struct buffer_head *bh)
6448{
6449 set_buffer_uptodate(bh);
6450 mark_buffer_dirty(bh);
6451 return 0;
6452}
6453
6454static int ocfs2_ordered_zero_func(handle_t *handle, struct buffer_head *bh)
6455{
6456 set_buffer_uptodate(bh);
6457 mark_buffer_dirty(bh);
6458 return ocfs2_journal_dirty_data(handle, bh);
6459}
6460
Mark Fasheh1d410a62007-09-07 14:20:45 -07006461static void ocfs2_map_and_dirty_page(struct inode *inode, handle_t *handle,
6462 unsigned int from, unsigned int to,
6463 struct page *page, int zero, u64 *phys)
6464{
6465 int ret, partial = 0;
6466
6467 ret = ocfs2_map_page_blocks(page, phys, inode, from, to, 0);
6468 if (ret)
6469 mlog_errno(ret);
6470
6471 if (zero)
Christoph Lametereebd2aa2008-02-04 22:28:29 -08006472 zero_user_segment(page, from, to);
Mark Fasheh1d410a62007-09-07 14:20:45 -07006473
6474 /*
6475 * Need to set the buffers we zero'd into uptodate
6476 * here if they aren't - ocfs2_map_page_blocks()
6477 * might've skipped some
6478 */
6479 if (ocfs2_should_order_data(inode)) {
6480 ret = walk_page_buffers(handle,
6481 page_buffers(page),
6482 from, to, &partial,
6483 ocfs2_ordered_zero_func);
6484 if (ret < 0)
6485 mlog_errno(ret);
6486 } else {
6487 ret = walk_page_buffers(handle, page_buffers(page),
6488 from, to, &partial,
6489 ocfs2_writeback_zero_func);
6490 if (ret < 0)
6491 mlog_errno(ret);
6492 }
6493
6494 if (!partial)
6495 SetPageUptodate(page);
6496
6497 flush_dcache_page(page);
6498}
6499
Mark Fasheh35edec12007-07-06 14:41:18 -07006500static void ocfs2_zero_cluster_pages(struct inode *inode, loff_t start,
6501 loff_t end, struct page **pages,
6502 int numpages, u64 phys, handle_t *handle)
Mark Fasheh60b11392007-02-16 11:46:50 -08006503{
Mark Fasheh1d410a62007-09-07 14:20:45 -07006504 int i;
Mark Fasheh60b11392007-02-16 11:46:50 -08006505 struct page *page;
6506 unsigned int from, to = PAGE_CACHE_SIZE;
6507 struct super_block *sb = inode->i_sb;
6508
6509 BUG_ON(!ocfs2_sparse_alloc(OCFS2_SB(sb)));
6510
6511 if (numpages == 0)
6512 goto out;
6513
Mark Fasheh35edec12007-07-06 14:41:18 -07006514 to = PAGE_CACHE_SIZE;
Mark Fasheh60b11392007-02-16 11:46:50 -08006515 for(i = 0; i < numpages; i++) {
6516 page = pages[i];
6517
Mark Fasheh35edec12007-07-06 14:41:18 -07006518 from = start & (PAGE_CACHE_SIZE - 1);
6519 if ((end >> PAGE_CACHE_SHIFT) == page->index)
6520 to = end & (PAGE_CACHE_SIZE - 1);
6521
Mark Fasheh60b11392007-02-16 11:46:50 -08006522 BUG_ON(from > PAGE_CACHE_SIZE);
6523 BUG_ON(to > PAGE_CACHE_SIZE);
6524
Mark Fasheh1d410a62007-09-07 14:20:45 -07006525 ocfs2_map_and_dirty_page(inode, handle, from, to, page, 1,
6526 &phys);
Mark Fasheh60b11392007-02-16 11:46:50 -08006527
Mark Fasheh35edec12007-07-06 14:41:18 -07006528 start = (page->index + 1) << PAGE_CACHE_SHIFT;
Mark Fasheh60b11392007-02-16 11:46:50 -08006529 }
6530out:
Mark Fasheh1d410a62007-09-07 14:20:45 -07006531 if (pages)
6532 ocfs2_unlock_and_free_pages(pages, numpages);
Mark Fasheh60b11392007-02-16 11:46:50 -08006533}
6534
Mark Fasheh35edec12007-07-06 14:41:18 -07006535static int ocfs2_grab_eof_pages(struct inode *inode, loff_t start, loff_t end,
Mark Fasheh1d410a62007-09-07 14:20:45 -07006536 struct page **pages, int *num)
Mark Fasheh60b11392007-02-16 11:46:50 -08006537{
Mark Fasheh1d410a62007-09-07 14:20:45 -07006538 int numpages, ret = 0;
Mark Fasheh60b11392007-02-16 11:46:50 -08006539 struct super_block *sb = inode->i_sb;
6540 struct address_space *mapping = inode->i_mapping;
6541 unsigned long index;
Mark Fasheh35edec12007-07-06 14:41:18 -07006542 loff_t last_page_bytes;
Mark Fasheh60b11392007-02-16 11:46:50 -08006543
Mark Fasheh35edec12007-07-06 14:41:18 -07006544 BUG_ON(start > end);
Mark Fasheh60b11392007-02-16 11:46:50 -08006545
Mark Fasheh35edec12007-07-06 14:41:18 -07006546 BUG_ON(start >> OCFS2_SB(sb)->s_clustersize_bits !=
6547 (end - 1) >> OCFS2_SB(sb)->s_clustersize_bits);
6548
Mark Fasheh1d410a62007-09-07 14:20:45 -07006549 numpages = 0;
Mark Fasheh35edec12007-07-06 14:41:18 -07006550 last_page_bytes = PAGE_ALIGN(end);
6551 index = start >> PAGE_CACHE_SHIFT;
Mark Fasheh60b11392007-02-16 11:46:50 -08006552 do {
6553 pages[numpages] = grab_cache_page(mapping, index);
6554 if (!pages[numpages]) {
6555 ret = -ENOMEM;
6556 mlog_errno(ret);
6557 goto out;
6558 }
6559
6560 numpages++;
6561 index++;
Mark Fasheh35edec12007-07-06 14:41:18 -07006562 } while (index < (last_page_bytes >> PAGE_CACHE_SHIFT));
Mark Fasheh60b11392007-02-16 11:46:50 -08006563
6564out:
6565 if (ret != 0) {
Mark Fasheh1d410a62007-09-07 14:20:45 -07006566 if (pages)
6567 ocfs2_unlock_and_free_pages(pages, numpages);
Mark Fasheh60b11392007-02-16 11:46:50 -08006568 numpages = 0;
6569 }
6570
6571 *num = numpages;
6572
6573 return ret;
6574}
6575
6576/*
6577 * Zero the area past i_size but still within an allocated
6578 * cluster. This avoids exposing nonzero data on subsequent file
6579 * extends.
6580 *
6581 * We need to call this before i_size is updated on the inode because
6582 * otherwise block_write_full_page() will skip writeout of pages past
6583 * i_size. The new_i_size parameter is passed for this reason.
6584 */
Mark Fasheh35edec12007-07-06 14:41:18 -07006585int ocfs2_zero_range_for_truncate(struct inode *inode, handle_t *handle,
6586 u64 range_start, u64 range_end)
Mark Fasheh60b11392007-02-16 11:46:50 -08006587{
Mark Fasheh1d410a62007-09-07 14:20:45 -07006588 int ret = 0, numpages;
Mark Fasheh60b11392007-02-16 11:46:50 -08006589 struct page **pages = NULL;
6590 u64 phys;
Mark Fasheh1d410a62007-09-07 14:20:45 -07006591 unsigned int ext_flags;
6592 struct super_block *sb = inode->i_sb;
Mark Fasheh60b11392007-02-16 11:46:50 -08006593
6594 /*
6595 * File systems which don't support sparse files zero on every
6596 * extend.
6597 */
Mark Fasheh1d410a62007-09-07 14:20:45 -07006598 if (!ocfs2_sparse_alloc(OCFS2_SB(sb)))
Mark Fasheh60b11392007-02-16 11:46:50 -08006599 return 0;
6600
Mark Fasheh1d410a62007-09-07 14:20:45 -07006601 pages = kcalloc(ocfs2_pages_per_cluster(sb),
Mark Fasheh60b11392007-02-16 11:46:50 -08006602 sizeof(struct page *), GFP_NOFS);
6603 if (pages == NULL) {
6604 ret = -ENOMEM;
6605 mlog_errno(ret);
6606 goto out;
6607 }
6608
Mark Fasheh1d410a62007-09-07 14:20:45 -07006609 if (range_start == range_end)
6610 goto out;
6611
6612 ret = ocfs2_extent_map_get_blocks(inode,
6613 range_start >> sb->s_blocksize_bits,
6614 &phys, NULL, &ext_flags);
Mark Fasheh60b11392007-02-16 11:46:50 -08006615 if (ret) {
6616 mlog_errno(ret);
6617 goto out;
6618 }
6619
Mark Fasheh1d410a62007-09-07 14:20:45 -07006620 /*
6621 * Tail is a hole, or is marked unwritten. In either case, we
6622 * can count on read and write to return/push zero's.
6623 */
6624 if (phys == 0 || ext_flags & OCFS2_EXT_UNWRITTEN)
Mark Fasheh60b11392007-02-16 11:46:50 -08006625 goto out;
6626
Mark Fasheh1d410a62007-09-07 14:20:45 -07006627 ret = ocfs2_grab_eof_pages(inode, range_start, range_end, pages,
6628 &numpages);
6629 if (ret) {
6630 mlog_errno(ret);
6631 goto out;
6632 }
6633
Mark Fasheh35edec12007-07-06 14:41:18 -07006634 ocfs2_zero_cluster_pages(inode, range_start, range_end, pages,
6635 numpages, phys, handle);
Mark Fasheh60b11392007-02-16 11:46:50 -08006636
6637 /*
6638 * Initiate writeout of the pages we zero'd here. We don't
6639 * wait on them - the truncate_inode_pages() call later will
6640 * do that for us.
6641 */
Mark Fasheh35edec12007-07-06 14:41:18 -07006642 ret = do_sync_mapping_range(inode->i_mapping, range_start,
6643 range_end - 1, SYNC_FILE_RANGE_WRITE);
Mark Fasheh60b11392007-02-16 11:46:50 -08006644 if (ret)
6645 mlog_errno(ret);
6646
6647out:
6648 if (pages)
6649 kfree(pages);
6650
6651 return ret;
6652}
6653
Tiger Yangfdd77702008-08-18 17:08:55 +08006654static void ocfs2_zero_dinode_id2_with_xattr(struct inode *inode,
6655 struct ocfs2_dinode *di)
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006656{
6657 unsigned int blocksize = 1 << inode->i_sb->s_blocksize_bits;
Tiger Yangfdd77702008-08-18 17:08:55 +08006658 unsigned int xattrsize = le16_to_cpu(di->i_xattr_inline_size);
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006659
Tiger Yangfdd77702008-08-18 17:08:55 +08006660 if (le16_to_cpu(di->i_dyn_features) & OCFS2_INLINE_XATTR_FL)
6661 memset(&di->id2, 0, blocksize -
6662 offsetof(struct ocfs2_dinode, id2) -
6663 xattrsize);
6664 else
6665 memset(&di->id2, 0, blocksize -
6666 offsetof(struct ocfs2_dinode, id2));
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006667}
6668
Mark Fasheh5b6a3a22007-09-13 16:33:54 -07006669void ocfs2_dinode_new_extent_list(struct inode *inode,
6670 struct ocfs2_dinode *di)
6671{
Tiger Yangfdd77702008-08-18 17:08:55 +08006672 ocfs2_zero_dinode_id2_with_xattr(inode, di);
Mark Fasheh5b6a3a22007-09-13 16:33:54 -07006673 di->id2.i_list.l_tree_depth = 0;
6674 di->id2.i_list.l_next_free_rec = 0;
Tiger Yangfdd77702008-08-18 17:08:55 +08006675 di->id2.i_list.l_count = cpu_to_le16(
6676 ocfs2_extent_recs_per_inode_with_xattr(inode->i_sb, di));
Mark Fasheh5b6a3a22007-09-13 16:33:54 -07006677}
6678
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006679void ocfs2_set_inode_data_inline(struct inode *inode, struct ocfs2_dinode *di)
6680{
6681 struct ocfs2_inode_info *oi = OCFS2_I(inode);
6682 struct ocfs2_inline_data *idata = &di->id2.i_data;
6683
6684 spin_lock(&oi->ip_lock);
6685 oi->ip_dyn_features |= OCFS2_INLINE_DATA_FL;
6686 di->i_dyn_features = cpu_to_le16(oi->ip_dyn_features);
6687 spin_unlock(&oi->ip_lock);
6688
6689 /*
6690 * We clear the entire i_data structure here so that all
6691 * fields can be properly initialized.
6692 */
Tiger Yangfdd77702008-08-18 17:08:55 +08006693 ocfs2_zero_dinode_id2_with_xattr(inode, di);
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006694
Tiger Yangfdd77702008-08-18 17:08:55 +08006695 idata->id_count = cpu_to_le16(
6696 ocfs2_max_inline_data_with_xattr(inode->i_sb, di));
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006697}
6698
6699int ocfs2_convert_inline_data_to_extents(struct inode *inode,
6700 struct buffer_head *di_bh)
6701{
6702 int ret, i, has_data, num_pages = 0;
6703 handle_t *handle;
6704 u64 uninitialized_var(block);
6705 struct ocfs2_inode_info *oi = OCFS2_I(inode);
6706 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
6707 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006708 struct ocfs2_alloc_context *data_ac = NULL;
6709 struct page **pages = NULL;
6710 loff_t end = osb->s_clustersize;
6711
6712 has_data = i_size_read(inode) ? 1 : 0;
6713
6714 if (has_data) {
6715 pages = kcalloc(ocfs2_pages_per_cluster(osb->sb),
6716 sizeof(struct page *), GFP_NOFS);
6717 if (pages == NULL) {
6718 ret = -ENOMEM;
6719 mlog_errno(ret);
6720 goto out;
6721 }
6722
6723 ret = ocfs2_reserve_clusters(osb, 1, &data_ac);
6724 if (ret) {
6725 mlog_errno(ret);
6726 goto out;
6727 }
6728 }
6729
6730 handle = ocfs2_start_trans(osb, OCFS2_INLINE_TO_EXTENTS_CREDITS);
6731 if (IS_ERR(handle)) {
6732 ret = PTR_ERR(handle);
6733 mlog_errno(ret);
6734 goto out_unlock;
6735 }
6736
6737 ret = ocfs2_journal_access(handle, inode, di_bh,
6738 OCFS2_JOURNAL_ACCESS_WRITE);
6739 if (ret) {
6740 mlog_errno(ret);
6741 goto out_commit;
6742 }
6743
6744 if (has_data) {
6745 u32 bit_off, num;
6746 unsigned int page_end;
6747 u64 phys;
6748
6749 ret = ocfs2_claim_clusters(osb, handle, data_ac, 1, &bit_off,
6750 &num);
6751 if (ret) {
6752 mlog_errno(ret);
6753 goto out_commit;
6754 }
6755
6756 /*
6757 * Save two copies, one for insert, and one that can
6758 * be changed by ocfs2_map_and_dirty_page() below.
6759 */
6760 block = phys = ocfs2_clusters_to_blocks(inode->i_sb, bit_off);
6761
6762 /*
6763 * Non sparse file systems zero on extend, so no need
6764 * to do that now.
6765 */
6766 if (!ocfs2_sparse_alloc(osb) &&
6767 PAGE_CACHE_SIZE < osb->s_clustersize)
6768 end = PAGE_CACHE_SIZE;
6769
6770 ret = ocfs2_grab_eof_pages(inode, 0, end, pages, &num_pages);
6771 if (ret) {
6772 mlog_errno(ret);
6773 goto out_commit;
6774 }
6775
6776 /*
6777 * This should populate the 1st page for us and mark
6778 * it up to date.
6779 */
6780 ret = ocfs2_read_inline_data(inode, pages[0], di_bh);
6781 if (ret) {
6782 mlog_errno(ret);
6783 goto out_commit;
6784 }
6785
6786 page_end = PAGE_CACHE_SIZE;
6787 if (PAGE_CACHE_SIZE > osb->s_clustersize)
6788 page_end = osb->s_clustersize;
6789
6790 for (i = 0; i < num_pages; i++)
6791 ocfs2_map_and_dirty_page(inode, handle, 0, page_end,
6792 pages[i], i > 0, &phys);
6793 }
6794
6795 spin_lock(&oi->ip_lock);
6796 oi->ip_dyn_features &= ~OCFS2_INLINE_DATA_FL;
6797 di->i_dyn_features = cpu_to_le16(oi->ip_dyn_features);
6798 spin_unlock(&oi->ip_lock);
6799
Mark Fasheh5b6a3a22007-09-13 16:33:54 -07006800 ocfs2_dinode_new_extent_list(inode, di);
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006801
6802 ocfs2_journal_dirty(handle, di_bh);
6803
6804 if (has_data) {
6805 /*
6806 * An error at this point should be extremely rare. If
6807 * this proves to be false, we could always re-build
6808 * the in-inode data from our pages.
6809 */
Tao Maf56654c2008-08-18 17:38:48 +08006810 ret = ocfs2_dinode_insert_extent(osb, handle, inode, di_bh,
6811 0, block, 1, 0, NULL);
Mark Fasheh1afc32b2007-09-07 14:46:51 -07006812 if (ret) {
6813 mlog_errno(ret);
6814 goto out_commit;
6815 }
6816
6817 inode->i_blocks = ocfs2_inode_sector_count(inode);
6818 }
6819
6820out_commit:
6821 ocfs2_commit_trans(osb, handle);
6822
6823out_unlock:
6824 if (data_ac)
6825 ocfs2_free_alloc_context(data_ac);
6826
6827out:
6828 if (pages) {
6829 ocfs2_unlock_and_free_pages(pages, num_pages);
6830 kfree(pages);
6831 }
6832
6833 return ret;
6834}
6835
Mark Fashehccd979b2005-12-15 14:31:24 -08006836/*
6837 * It is expected, that by the time you call this function,
6838 * inode->i_size and fe->i_size have been adjusted.
6839 *
6840 * WARNING: This will kfree the truncate context
6841 */
6842int ocfs2_commit_truncate(struct ocfs2_super *osb,
6843 struct inode *inode,
6844 struct buffer_head *fe_bh,
6845 struct ocfs2_truncate_context *tc)
6846{
6847 int status, i, credits, tl_sem = 0;
Mark Fashehdcd05382007-01-16 11:32:23 -08006848 u32 clusters_to_del, new_highest_cpos, range;
Mark Fashehccd979b2005-12-15 14:31:24 -08006849 struct ocfs2_extent_list *el;
Mark Fasheh1fabe142006-10-09 18:11:45 -07006850 handle_t *handle = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -08006851 struct inode *tl_inode = osb->osb_tl_inode;
Mark Fashehdcd05382007-01-16 11:32:23 -08006852 struct ocfs2_path *path = NULL;
Tao Mae7d4cb62008-08-18 17:38:44 +08006853 struct ocfs2_dinode *di = (struct ocfs2_dinode *)fe_bh->b_data;
Mark Fashehccd979b2005-12-15 14:31:24 -08006854
6855 mlog_entry_void();
6856
Mark Fashehdcd05382007-01-16 11:32:23 -08006857 new_highest_cpos = ocfs2_clusters_for_bytes(osb->sb,
Mark Fashehccd979b2005-12-15 14:31:24 -08006858 i_size_read(inode));
6859
Tao Mae7d4cb62008-08-18 17:38:44 +08006860 path = ocfs2_new_path(fe_bh, &di->id2.i_list);
Mark Fashehdcd05382007-01-16 11:32:23 -08006861 if (!path) {
6862 status = -ENOMEM;
6863 mlog_errno(status);
6864 goto bail;
6865 }
Mark Fasheh83418972007-04-23 18:53:12 -07006866
6867 ocfs2_extent_map_trunc(inode, new_highest_cpos);
6868
Mark Fashehccd979b2005-12-15 14:31:24 -08006869start:
Mark Fashehdcd05382007-01-16 11:32:23 -08006870 /*
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006871 * Check that we still have allocation to delete.
6872 */
6873 if (OCFS2_I(inode)->ip_clusters == 0) {
6874 status = 0;
6875 goto bail;
6876 }
6877
6878 /*
Mark Fashehdcd05382007-01-16 11:32:23 -08006879 * Truncate always works against the rightmost tree branch.
6880 */
6881 status = ocfs2_find_path(inode, path, UINT_MAX);
6882 if (status) {
6883 mlog_errno(status);
6884 goto bail;
Mark Fashehccd979b2005-12-15 14:31:24 -08006885 }
6886
Mark Fashehdcd05382007-01-16 11:32:23 -08006887 mlog(0, "inode->ip_clusters = %u, tree_depth = %u\n",
6888 OCFS2_I(inode)->ip_clusters, path->p_tree_depth);
6889
6890 /*
6891 * By now, el will point to the extent list on the bottom most
6892 * portion of this tree. Only the tail record is considered in
6893 * each pass.
6894 *
6895 * We handle the following cases, in order:
6896 * - empty extent: delete the remaining branch
6897 * - remove the entire record
6898 * - remove a partial record
6899 * - no record needs to be removed (truncate has completed)
6900 */
6901 el = path_leaf_el(path);
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006902 if (le16_to_cpu(el->l_next_free_rec) == 0) {
6903 ocfs2_error(inode->i_sb,
6904 "Inode %llu has empty extent block at %llu\n",
6905 (unsigned long long)OCFS2_I(inode)->ip_blkno,
6906 (unsigned long long)path_leaf_bh(path)->b_blocknr);
6907 status = -EROFS;
6908 goto bail;
6909 }
6910
Mark Fashehccd979b2005-12-15 14:31:24 -08006911 i = le16_to_cpu(el->l_next_free_rec) - 1;
Mark Fashehdcd05382007-01-16 11:32:23 -08006912 range = le32_to_cpu(el->l_recs[i].e_cpos) +
Mark Fashehe48edee2007-03-07 16:46:57 -08006913 ocfs2_rec_clusters(el, &el->l_recs[i]);
Mark Fashehdcd05382007-01-16 11:32:23 -08006914 if (i == 0 && ocfs2_is_empty_extent(&el->l_recs[i])) {
6915 clusters_to_del = 0;
6916 } else if (le32_to_cpu(el->l_recs[i].e_cpos) >= new_highest_cpos) {
Mark Fashehe48edee2007-03-07 16:46:57 -08006917 clusters_to_del = ocfs2_rec_clusters(el, &el->l_recs[i]);
Mark Fashehdcd05382007-01-16 11:32:23 -08006918 } else if (range > new_highest_cpos) {
Mark Fashehe48edee2007-03-07 16:46:57 -08006919 clusters_to_del = (ocfs2_rec_clusters(el, &el->l_recs[i]) +
Mark Fashehccd979b2005-12-15 14:31:24 -08006920 le32_to_cpu(el->l_recs[i].e_cpos)) -
Mark Fashehdcd05382007-01-16 11:32:23 -08006921 new_highest_cpos;
6922 } else {
6923 status = 0;
6924 goto bail;
6925 }
Mark Fashehccd979b2005-12-15 14:31:24 -08006926
Mark Fashehdcd05382007-01-16 11:32:23 -08006927 mlog(0, "clusters_to_del = %u in this pass, tail blk=%llu\n",
6928 clusters_to_del, (unsigned long long)path_leaf_bh(path)->b_blocknr);
6929
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08006930 mutex_lock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08006931 tl_sem = 1;
6932 /* ocfs2_truncate_log_needs_flush guarantees us at least one
6933 * record is free for use. If there isn't any, we flush to get
6934 * an empty truncate log. */
6935 if (ocfs2_truncate_log_needs_flush(osb)) {
6936 status = __ocfs2_flush_truncate_log(osb);
6937 if (status < 0) {
6938 mlog_errno(status);
6939 goto bail;
6940 }
6941 }
6942
6943 credits = ocfs2_calc_tree_trunc_credits(osb->sb, clusters_to_del,
Mark Fashehdcd05382007-01-16 11:32:23 -08006944 (struct ocfs2_dinode *)fe_bh->b_data,
6945 el);
Mark Fasheh65eff9c2006-10-09 17:26:22 -07006946 handle = ocfs2_start_trans(osb, credits);
Mark Fashehccd979b2005-12-15 14:31:24 -08006947 if (IS_ERR(handle)) {
6948 status = PTR_ERR(handle);
6949 handle = NULL;
6950 mlog_errno(status);
6951 goto bail;
6952 }
6953
Mark Fashehdcd05382007-01-16 11:32:23 -08006954 status = ocfs2_do_truncate(osb, clusters_to_del, inode, fe_bh, handle,
6955 tc, path);
Mark Fashehccd979b2005-12-15 14:31:24 -08006956 if (status < 0) {
6957 mlog_errno(status);
6958 goto bail;
6959 }
6960
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08006961 mutex_unlock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08006962 tl_sem = 0;
6963
Mark Fasheh02dc1af2006-10-09 16:48:10 -07006964 ocfs2_commit_trans(osb, handle);
Mark Fashehccd979b2005-12-15 14:31:24 -08006965 handle = NULL;
6966
Mark Fashehdcd05382007-01-16 11:32:23 -08006967 ocfs2_reinit_path(path, 1);
6968
6969 /*
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006970 * The check above will catch the case where we've truncated
6971 * away all allocation.
Mark Fashehdcd05382007-01-16 11:32:23 -08006972 */
Mark Fasheh3a0782d2007-01-17 12:53:31 -08006973 goto start;
6974
Mark Fashehccd979b2005-12-15 14:31:24 -08006975bail:
Mark Fashehccd979b2005-12-15 14:31:24 -08006976
6977 ocfs2_schedule_truncate_log_flush(osb, 1);
6978
6979 if (tl_sem)
Jes Sorensen1b1dcc12006-01-09 15:59:24 -08006980 mutex_unlock(&tl_inode->i_mutex);
Mark Fashehccd979b2005-12-15 14:31:24 -08006981
6982 if (handle)
Mark Fasheh02dc1af2006-10-09 16:48:10 -07006983 ocfs2_commit_trans(osb, handle);
Mark Fashehccd979b2005-12-15 14:31:24 -08006984
Mark Fasheh59a5e412007-06-22 15:52:36 -07006985 ocfs2_run_deallocs(osb, &tc->tc_dealloc);
6986
Mark Fashehdcd05382007-01-16 11:32:23 -08006987 ocfs2_free_path(path);
Mark Fashehccd979b2005-12-15 14:31:24 -08006988
6989 /* This will drop the ext_alloc cluster lock for us */
6990 ocfs2_free_truncate_context(tc);
6991
6992 mlog_exit(status);
6993 return status;
6994}
6995
Mark Fashehccd979b2005-12-15 14:31:24 -08006996/*
Mark Fasheh59a5e412007-06-22 15:52:36 -07006997 * Expects the inode to already be locked.
Mark Fashehccd979b2005-12-15 14:31:24 -08006998 */
6999int ocfs2_prepare_truncate(struct ocfs2_super *osb,
7000 struct inode *inode,
7001 struct buffer_head *fe_bh,
7002 struct ocfs2_truncate_context **tc)
7003{
Mark Fasheh59a5e412007-06-22 15:52:36 -07007004 int status;
Mark Fashehccd979b2005-12-15 14:31:24 -08007005 unsigned int new_i_clusters;
7006 struct ocfs2_dinode *fe;
7007 struct ocfs2_extent_block *eb;
Mark Fashehccd979b2005-12-15 14:31:24 -08007008 struct buffer_head *last_eb_bh = NULL;
Mark Fashehccd979b2005-12-15 14:31:24 -08007009
7010 mlog_entry_void();
7011
7012 *tc = NULL;
7013
7014 new_i_clusters = ocfs2_clusters_for_bytes(osb->sb,
7015 i_size_read(inode));
7016 fe = (struct ocfs2_dinode *) fe_bh->b_data;
7017
7018 mlog(0, "fe->i_clusters = %u, new_i_clusters = %u, fe->i_size ="
Mark Fasheh1ca1a112007-04-27 16:01:25 -07007019 "%llu\n", le32_to_cpu(fe->i_clusters), new_i_clusters,
7020 (unsigned long long)le64_to_cpu(fe->i_size));
Mark Fashehccd979b2005-12-15 14:31:24 -08007021
Robert P. J. Daycd861282006-12-13 00:34:52 -08007022 *tc = kzalloc(sizeof(struct ocfs2_truncate_context), GFP_KERNEL);
Mark Fashehccd979b2005-12-15 14:31:24 -08007023 if (!(*tc)) {
7024 status = -ENOMEM;
7025 mlog_errno(status);
7026 goto bail;
7027 }
Mark Fasheh59a5e412007-06-22 15:52:36 -07007028 ocfs2_init_dealloc_ctxt(&(*tc)->tc_dealloc);
Mark Fashehccd979b2005-12-15 14:31:24 -08007029
Mark Fashehccd979b2005-12-15 14:31:24 -08007030 if (fe->id2.i_list.l_tree_depth) {
Mark Fashehccd979b2005-12-15 14:31:24 -08007031 status = ocfs2_read_block(osb, le64_to_cpu(fe->i_last_eb_blk),
7032 &last_eb_bh, OCFS2_BH_CACHED, inode);
7033 if (status < 0) {
7034 mlog_errno(status);
7035 goto bail;
7036 }
7037 eb = (struct ocfs2_extent_block *) last_eb_bh->b_data;
7038 if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) {
7039 OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb);
7040
7041 brelse(last_eb_bh);
7042 status = -EIO;
7043 goto bail;
7044 }
Mark Fashehccd979b2005-12-15 14:31:24 -08007045 }
7046
7047 (*tc)->tc_last_eb_bh = last_eb_bh;
7048
Mark Fashehccd979b2005-12-15 14:31:24 -08007049 status = 0;
7050bail:
7051 if (status < 0) {
7052 if (*tc)
7053 ocfs2_free_truncate_context(*tc);
7054 *tc = NULL;
7055 }
7056 mlog_exit_void();
7057 return status;
7058}
7059
Mark Fasheh1afc32b2007-09-07 14:46:51 -07007060/*
7061 * 'start' is inclusive, 'end' is not.
7062 */
7063int ocfs2_truncate_inline(struct inode *inode, struct buffer_head *di_bh,
7064 unsigned int start, unsigned int end, int trunc)
7065{
7066 int ret;
7067 unsigned int numbytes;
7068 handle_t *handle;
7069 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
7070 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
7071 struct ocfs2_inline_data *idata = &di->id2.i_data;
7072
7073 if (end > i_size_read(inode))
7074 end = i_size_read(inode);
7075
7076 BUG_ON(start >= end);
7077
7078 if (!(OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) ||
7079 !(le16_to_cpu(di->i_dyn_features) & OCFS2_INLINE_DATA_FL) ||
7080 !ocfs2_supports_inline_data(osb)) {
7081 ocfs2_error(inode->i_sb,
7082 "Inline data flags for inode %llu don't agree! "
7083 "Disk: 0x%x, Memory: 0x%x, Superblock: 0x%x\n",
7084 (unsigned long long)OCFS2_I(inode)->ip_blkno,
7085 le16_to_cpu(di->i_dyn_features),
7086 OCFS2_I(inode)->ip_dyn_features,
7087 osb->s_feature_incompat);
7088 ret = -EROFS;
7089 goto out;
7090 }
7091
7092 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
7093 if (IS_ERR(handle)) {
7094 ret = PTR_ERR(handle);
7095 mlog_errno(ret);
7096 goto out;
7097 }
7098
7099 ret = ocfs2_journal_access(handle, inode, di_bh,
7100 OCFS2_JOURNAL_ACCESS_WRITE);
7101 if (ret) {
7102 mlog_errno(ret);
7103 goto out_commit;
7104 }
7105
7106 numbytes = end - start;
7107 memset(idata->id_data + start, 0, numbytes);
7108
7109 /*
7110 * No need to worry about the data page here - it's been
7111 * truncated already and inline data doesn't need it for
7112 * pushing zero's to disk, so we'll let readpage pick it up
7113 * later.
7114 */
7115 if (trunc) {
7116 i_size_write(inode, start);
7117 di->i_size = cpu_to_le64(start);
7118 }
7119
7120 inode->i_blocks = ocfs2_inode_sector_count(inode);
7121 inode->i_ctime = inode->i_mtime = CURRENT_TIME;
7122
7123 di->i_ctime = di->i_mtime = cpu_to_le64(inode->i_ctime.tv_sec);
7124 di->i_ctime_nsec = di->i_mtime_nsec = cpu_to_le32(inode->i_ctime.tv_nsec);
7125
7126 ocfs2_journal_dirty(handle, di_bh);
7127
7128out_commit:
7129 ocfs2_commit_trans(osb, handle);
7130
7131out:
7132 return ret;
7133}
7134
Mark Fashehccd979b2005-12-15 14:31:24 -08007135static void ocfs2_free_truncate_context(struct ocfs2_truncate_context *tc)
7136{
Mark Fasheh59a5e412007-06-22 15:52:36 -07007137 /*
7138 * The caller is responsible for completing deallocation
7139 * before freeing the context.
7140 */
7141 if (tc->tc_dealloc.c_first_suballocator != NULL)
7142 mlog(ML_NOTICE,
7143 "Truncate completion has non-empty dealloc context\n");
Mark Fashehccd979b2005-12-15 14:31:24 -08007144
7145 if (tc->tc_last_eb_bh)
7146 brelse(tc->tc_last_eb_bh);
7147
7148 kfree(tc);
7149}