2 * dat.c - NILFS disk address translation.
4 * Copyright (C) 2006-2008 Nippon Telegraph and Telephone Corporation.
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 * Written by Koji Sato <koji@osrg.net>.
23 #include <linux/types.h>
24 #include <linux/buffer_head.h>
25 #include <linux/string.h>
26 #include <linux/errno.h>
33 #define NILFS_CNO_MIN ((__u64)1)
34 #define NILFS_CNO_MAX (~(__u64)0)
36 static int nilfs_dat_prepare_entry(struct inode
*dat
,
37 struct nilfs_palloc_req
*req
, int create
)
39 return nilfs_palloc_get_entry_block(dat
, req
->pr_entry_nr
,
40 create
, &req
->pr_entry_bh
);
43 static void nilfs_dat_commit_entry(struct inode
*dat
,
44 struct nilfs_palloc_req
*req
)
46 nilfs_mdt_mark_buffer_dirty(req
->pr_entry_bh
);
47 nilfs_mdt_mark_dirty(dat
);
48 brelse(req
->pr_entry_bh
);
51 static void nilfs_dat_abort_entry(struct inode
*dat
,
52 struct nilfs_palloc_req
*req
)
54 brelse(req
->pr_entry_bh
);
57 int nilfs_dat_prepare_alloc(struct inode
*dat
, struct nilfs_palloc_req
*req
)
61 ret
= nilfs_palloc_prepare_alloc_entry(dat
, req
);
65 ret
= nilfs_dat_prepare_entry(dat
, req
, 1);
67 nilfs_palloc_abort_alloc_entry(dat
, req
);
72 void nilfs_dat_commit_alloc(struct inode
*dat
, struct nilfs_palloc_req
*req
)
74 struct nilfs_dat_entry
*entry
;
77 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
78 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
79 req
->pr_entry_bh
, kaddr
);
80 entry
->de_start
= cpu_to_le64(NILFS_CNO_MIN
);
81 entry
->de_end
= cpu_to_le64(NILFS_CNO_MAX
);
82 entry
->de_blocknr
= cpu_to_le64(0);
83 kunmap_atomic(kaddr
, KM_USER0
);
85 nilfs_palloc_commit_alloc_entry(dat
, req
);
86 nilfs_dat_commit_entry(dat
, req
);
89 void nilfs_dat_abort_alloc(struct inode
*dat
, struct nilfs_palloc_req
*req
)
91 nilfs_dat_abort_entry(dat
, req
);
92 nilfs_palloc_abort_alloc_entry(dat
, req
);
95 void nilfs_dat_commit_free(struct inode
*dat
, struct nilfs_palloc_req
*req
)
97 struct nilfs_dat_entry
*entry
;
100 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
101 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
102 req
->pr_entry_bh
, kaddr
);
103 entry
->de_start
= cpu_to_le64(NILFS_CNO_MIN
);
104 entry
->de_end
= cpu_to_le64(NILFS_CNO_MIN
);
105 entry
->de_blocknr
= cpu_to_le64(0);
106 kunmap_atomic(kaddr
, KM_USER0
);
108 nilfs_dat_commit_entry(dat
, req
);
109 nilfs_palloc_commit_free_entry(dat
, req
);
112 int nilfs_dat_prepare_start(struct inode
*dat
, struct nilfs_palloc_req
*req
)
116 ret
= nilfs_dat_prepare_entry(dat
, req
, 0);
117 WARN_ON(ret
== -ENOENT
);
121 void nilfs_dat_commit_start(struct inode
*dat
, struct nilfs_palloc_req
*req
,
124 struct nilfs_dat_entry
*entry
;
127 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
128 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
129 req
->pr_entry_bh
, kaddr
);
130 entry
->de_start
= cpu_to_le64(nilfs_mdt_cno(dat
));
131 entry
->de_blocknr
= cpu_to_le64(blocknr
);
132 kunmap_atomic(kaddr
, KM_USER0
);
134 nilfs_dat_commit_entry(dat
, req
);
137 int nilfs_dat_prepare_end(struct inode
*dat
, struct nilfs_palloc_req
*req
)
139 struct nilfs_dat_entry
*entry
;
145 ret
= nilfs_dat_prepare_entry(dat
, req
, 0);
147 WARN_ON(ret
== -ENOENT
);
151 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
152 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
153 req
->pr_entry_bh
, kaddr
);
154 start
= le64_to_cpu(entry
->de_start
);
155 blocknr
= le64_to_cpu(entry
->de_blocknr
);
156 kunmap_atomic(kaddr
, KM_USER0
);
159 ret
= nilfs_palloc_prepare_free_entry(dat
, req
);
161 nilfs_dat_abort_entry(dat
, req
);
169 void nilfs_dat_commit_end(struct inode
*dat
, struct nilfs_palloc_req
*req
,
172 struct nilfs_dat_entry
*entry
;
177 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
178 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
179 req
->pr_entry_bh
, kaddr
);
180 end
= start
= le64_to_cpu(entry
->de_start
);
182 end
= nilfs_mdt_cno(dat
);
183 WARN_ON(start
> end
);
185 entry
->de_end
= cpu_to_le64(end
);
186 blocknr
= le64_to_cpu(entry
->de_blocknr
);
187 kunmap_atomic(kaddr
, KM_USER0
);
190 nilfs_dat_commit_free(dat
, req
);
192 nilfs_dat_commit_entry(dat
, req
);
195 void nilfs_dat_abort_end(struct inode
*dat
, struct nilfs_palloc_req
*req
)
197 struct nilfs_dat_entry
*entry
;
202 kaddr
= kmap_atomic(req
->pr_entry_bh
->b_page
, KM_USER0
);
203 entry
= nilfs_palloc_block_get_entry(dat
, req
->pr_entry_nr
,
204 req
->pr_entry_bh
, kaddr
);
205 start
= le64_to_cpu(entry
->de_start
);
206 blocknr
= le64_to_cpu(entry
->de_blocknr
);
207 kunmap_atomic(kaddr
, KM_USER0
);
209 if (start
== nilfs_mdt_cno(dat
) && blocknr
== 0)
210 nilfs_palloc_abort_free_entry(dat
, req
);
211 nilfs_dat_abort_entry(dat
, req
);
214 int nilfs_dat_prepare_update(struct inode
*dat
,
215 struct nilfs_palloc_req
*oldreq
,
216 struct nilfs_palloc_req
*newreq
)
220 ret
= nilfs_dat_prepare_end(dat
, oldreq
);
222 ret
= nilfs_dat_prepare_alloc(dat
, newreq
);
224 nilfs_dat_abort_end(dat
, oldreq
);
229 void nilfs_dat_commit_update(struct inode
*dat
,
230 struct nilfs_palloc_req
*oldreq
,
231 struct nilfs_palloc_req
*newreq
, int dead
)
233 nilfs_dat_commit_end(dat
, oldreq
, dead
);
234 nilfs_dat_commit_alloc(dat
, newreq
);
237 void nilfs_dat_abort_update(struct inode
*dat
,
238 struct nilfs_palloc_req
*oldreq
,
239 struct nilfs_palloc_req
*newreq
)
241 nilfs_dat_abort_end(dat
, oldreq
);
242 nilfs_dat_abort_alloc(dat
, newreq
);
246 * nilfs_dat_mark_dirty -
247 * @dat: DAT file inode
248 * @vblocknr: virtual block number
252 * Return Value: On success, 0 is returned. On error, one of the following
253 * negative error codes is returned.
257 * %-ENOMEM - Insufficient amount of memory available.
259 int nilfs_dat_mark_dirty(struct inode
*dat
, __u64 vblocknr
)
261 struct nilfs_palloc_req req
;
264 req
.pr_entry_nr
= vblocknr
;
265 ret
= nilfs_dat_prepare_entry(dat
, &req
, 0);
267 nilfs_dat_commit_entry(dat
, &req
);
272 * nilfs_dat_freev - free virtual block numbers
273 * @dat: DAT file inode
274 * @vblocknrs: array of virtual block numbers
275 * @nitems: number of virtual block numbers
277 * Description: nilfs_dat_freev() frees the virtual block numbers specified by
278 * @vblocknrs and @nitems.
280 * Return Value: On success, 0 is returned. On error, one of the following
281 * nagative error codes is returned.
285 * %-ENOMEM - Insufficient amount of memory available.
287 * %-ENOENT - The virtual block number have not been allocated.
289 int nilfs_dat_freev(struct inode
*dat
, __u64
*vblocknrs
, size_t nitems
)
291 return nilfs_palloc_freev(dat
, vblocknrs
, nitems
);
295 * nilfs_dat_move - change a block number
296 * @dat: DAT file inode
297 * @vblocknr: virtual block number
298 * @blocknr: block number
300 * Description: nilfs_dat_move() changes the block number associated with
301 * @vblocknr to @blocknr.
303 * Return Value: On success, 0 is returned. On error, one of the following
304 * negative error codes is returned.
308 * %-ENOMEM - Insufficient amount of memory available.
310 int nilfs_dat_move(struct inode
*dat
, __u64 vblocknr
, sector_t blocknr
)
312 struct buffer_head
*entry_bh
;
313 struct nilfs_dat_entry
*entry
;
317 ret
= nilfs_palloc_get_entry_block(dat
, vblocknr
, 0, &entry_bh
);
320 kaddr
= kmap_atomic(entry_bh
->b_page
, KM_USER0
);
321 entry
= nilfs_palloc_block_get_entry(dat
, vblocknr
, entry_bh
, kaddr
);
322 if (unlikely(entry
->de_blocknr
== cpu_to_le64(0))) {
323 printk(KERN_CRIT
"%s: vbn = %llu, [%llu, %llu)\n", __func__
,
324 (unsigned long long)vblocknr
,
325 (unsigned long long)le64_to_cpu(entry
->de_start
),
326 (unsigned long long)le64_to_cpu(entry
->de_end
));
327 kunmap_atomic(kaddr
, KM_USER0
);
331 WARN_ON(blocknr
== 0);
332 entry
->de_blocknr
= cpu_to_le64(blocknr
);
333 kunmap_atomic(kaddr
, KM_USER0
);
335 nilfs_mdt_mark_buffer_dirty(entry_bh
);
336 nilfs_mdt_mark_dirty(dat
);
344 * nilfs_dat_translate - translate a virtual block number to a block number
345 * @dat: DAT file inode
346 * @vblocknr: virtual block number
347 * @blocknrp: pointer to a block number
349 * Description: nilfs_dat_translate() maps the virtual block number @vblocknr
350 * to the corresponding block number.
352 * Return Value: On success, 0 is returned and the block number associated
353 * with @vblocknr is stored in the place pointed by @blocknrp. On error, one
354 * of the following negative error codes is returned.
358 * %-ENOMEM - Insufficient amount of memory available.
360 * %-ENOENT - A block number associated with @vblocknr does not exist.
362 int nilfs_dat_translate(struct inode
*dat
, __u64 vblocknr
, sector_t
*blocknrp
)
364 struct buffer_head
*entry_bh
;
365 struct nilfs_dat_entry
*entry
;
370 ret
= nilfs_palloc_get_entry_block(dat
, vblocknr
, 0, &entry_bh
);
374 kaddr
= kmap_atomic(entry_bh
->b_page
, KM_USER0
);
375 entry
= nilfs_palloc_block_get_entry(dat
, vblocknr
, entry_bh
, kaddr
);
376 blocknr
= le64_to_cpu(entry
->de_blocknr
);
381 if (blocknrp
!= NULL
)
385 kunmap_atomic(kaddr
, KM_USER0
);
390 ssize_t
nilfs_dat_get_vinfo(struct inode
*dat
, void *buf
, unsigned visz
,
393 struct buffer_head
*entry_bh
;
394 struct nilfs_dat_entry
*entry
;
395 struct nilfs_vinfo
*vinfo
= buf
;
398 unsigned long entries_per_block
= NILFS_MDT(dat
)->mi_entries_per_block
;
401 for (i
= 0; i
< nvi
; i
+= n
) {
402 ret
= nilfs_palloc_get_entry_block(dat
, vinfo
->vi_vblocknr
,
406 kaddr
= kmap_atomic(entry_bh
->b_page
, KM_USER0
);
407 /* last virtual block number in this block */
408 first
= vinfo
->vi_vblocknr
;
409 do_div(first
, entries_per_block
);
410 first
*= entries_per_block
;
411 last
= first
+ entries_per_block
- 1;
413 j
< nvi
&& vinfo
->vi_vblocknr
>= first
&&
414 vinfo
->vi_vblocknr
<= last
;
415 j
++, n
++, vinfo
= (void *)vinfo
+ visz
) {
416 entry
= nilfs_palloc_block_get_entry(
417 dat
, vinfo
->vi_vblocknr
, entry_bh
, kaddr
);
418 vinfo
->vi_start
= le64_to_cpu(entry
->de_start
);
419 vinfo
->vi_end
= le64_to_cpu(entry
->de_end
);
420 vinfo
->vi_blocknr
= le64_to_cpu(entry
->de_blocknr
);
422 kunmap_atomic(kaddr
, KM_USER0
);