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1/*
2 * nilfs2_fs.h - NILFS2 on-disk structures and common declarations.
3 *
4 * Copyright (C) 2005-2008 Nippon Telegraph and Telephone Corporation.
5 *
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.
10 *
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.
15 *
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
19 *
20 * Written by Koji Sato <koji@osrg.net>
21 * Ryusuke Konishi <ryusuke@osrg.net>
22 */
23/*
24 * linux/include/linux/ext2_fs.h
25 *
26 * Copyright (C) 1992, 1993, 1994, 1995
27 * Remy Card (card@masi.ibp.fr)
28 * Laboratoire MASI - Institut Blaise Pascal
29 * Universite Pierre et Marie Curie (Paris VI)
30 *
31 * from
32 *
33 * linux/include/linux/minix_fs.h
34 *
35 * Copyright (C) 1991, 1992 Linus Torvalds
36 */
37
38#ifndef _LINUX_NILFS_FS_H
39#define _LINUX_NILFS_FS_H
40
41#include <linux/types.h>
42#include <linux/ioctl.h>
43
44/*
45 * Inode flags stored in nilfs_inode and on-memory nilfs inode
46 *
47 * We define these flags based on ext2-fs because of the
48 * compatibility reason; to avoid problems in chattr(1)
49 */
50#define NILFS_SECRM_FL 0x00000001 /* Secure deletion */
51#define NILFS_UNRM_FL 0x00000002 /* Undelete */
52#define NILFS_SYNC_FL 0x00000008 /* Synchronous updates */
53#define NILFS_IMMUTABLE_FL 0x00000010 /* Immutable file */
54#define NILFS_APPEND_FL 0x00000020 /* writes to file may only append */
55#define NILFS_NODUMP_FL 0x00000040 /* do not dump file */
56#define NILFS_NOATIME_FL 0x00000080 /* do not update atime */
57/* Reserved for compression usage... */
58#define NILFS_NOTAIL_FL 0x00008000 /* file tail should not be merged */
59#define NILFS_DIRSYNC_FL 0x00010000 /* dirsync behaviour */
60
61#define NILFS_FL_USER_VISIBLE 0x0003DFFF /* User visible flags */
62#define NILFS_FL_USER_MODIFIABLE 0x000380FF /* User modifiable flags */
63
64
65#define NILFS_INODE_BMAP_SIZE 7
66/**
67 * struct nilfs_inode - structure of an inode on disk
68 * @i_blocks: blocks count
69 * @i_size: size in bytes
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70 * @i_ctime: creation time (seconds)
71 * @i_mtime: modification time (seconds)
72 * @i_ctime_nsec: creation time (nano seconds)
73 * @i_mtime_nsec: modification time (nano seconds)
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74 * @i_uid: user id
75 * @i_gid: group id
76 * @i_mode: file mode
77 * @i_links_count: links count
78 * @i_flags: file flags
79 * @i_bmap: block mapping
80 * @i_xattr: extended attributes
81 * @i_generation: file generation (for NFS)
82 * @i_pad: padding
83 */
84struct nilfs_inode {
85 __le64 i_blocks;
86 __le64 i_size;
87 __le64 i_ctime;
88 __le64 i_mtime;
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89 __le32 i_ctime_nsec;
90 __le32 i_mtime_nsec;
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91 __le32 i_uid;
92 __le32 i_gid;
93 __le16 i_mode;
94 __le16 i_links_count;
95 __le32 i_flags;
96 __le64 i_bmap[NILFS_INODE_BMAP_SIZE];
97#define i_device_code i_bmap[0]
98 __le64 i_xattr;
99 __le32 i_generation;
100 __le32 i_pad;
101};
102
103/**
104 * struct nilfs_super_root - structure of super root
105 * @sr_sum: check sum
106 * @sr_bytes: byte count of the structure
107 * @sr_flags: flags (reserved)
108 * @sr_nongc_ctime: write time of the last segment not for cleaner operation
109 * @sr_dat: DAT file inode
110 * @sr_cpfile: checkpoint file inode
111 * @sr_sufile: segment usage file inode
112 */
113struct nilfs_super_root {
114 __le32 sr_sum;
115 __le16 sr_bytes;
116 __le16 sr_flags;
117 __le64 sr_nongc_ctime;
118 struct nilfs_inode sr_dat;
119 struct nilfs_inode sr_cpfile;
120 struct nilfs_inode sr_sufile;
121};
122
123#define NILFS_SR_MDT_OFFSET(inode_size, i) \
124 ((unsigned long)&((struct nilfs_super_root *)0)->sr_dat + \
125 (inode_size) * (i))
126#define NILFS_SR_DAT_OFFSET(inode_size) NILFS_SR_MDT_OFFSET(inode_size, 0)
127#define NILFS_SR_CPFILE_OFFSET(inode_size) NILFS_SR_MDT_OFFSET(inode_size, 1)
128#define NILFS_SR_SUFILE_OFFSET(inode_size) NILFS_SR_MDT_OFFSET(inode_size, 2)
129#define NILFS_SR_BYTES (sizeof(struct nilfs_super_root))
130
131/*
132 * Maximal mount counts
133 */
134#define NILFS_DFL_MAX_MNT_COUNT 50 /* 50 mounts */
135
136/*
137 * File system states (sbp->s_state, nilfs->ns_mount_state)
138 */
139#define NILFS_VALID_FS 0x0001 /* Unmounted cleanly */
140#define NILFS_ERROR_FS 0x0002 /* Errors detected */
141#define NILFS_RESIZE_FS 0x0004 /* Resize required */
142
143/*
144 * Mount flags (sbi->s_mount_opt)
145 */
146#define NILFS_MOUNT_ERROR_MODE 0x0070 /* Error mode mask */
147#define NILFS_MOUNT_ERRORS_CONT 0x0010 /* Continue on errors */
148#define NILFS_MOUNT_ERRORS_RO 0x0020 /* Remount fs ro on errors */
149#define NILFS_MOUNT_ERRORS_PANIC 0x0040 /* Panic on errors */
150#define NILFS_MOUNT_SNAPSHOT 0x0080 /* Snapshot flag */
151#define NILFS_MOUNT_BARRIER 0x1000 /* Use block barriers */
152#define NILFS_MOUNT_STRICT_ORDER 0x2000 /* Apply strict in-order
153 semantics also for data */
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154#define NILFS_MOUNT_NORECOVERY 0x4000 /* Disable write access during
155 mount-time recovery */
e902ec99 156#define NILFS_MOUNT_DISCARD 0x8000 /* Issue DISCARD requests */
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157
158
159/**
160 * struct nilfs_super_block - structure of super block on disk
161 */
162struct nilfs_super_block {
2f1b7cd2 163/*00*/ __le32 s_rev_level; /* Revision level */
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164 __le16 s_minor_rev_level; /* minor revision level */
165 __le16 s_magic; /* Magic signature */
166
167 __le16 s_bytes; /* Bytes count of CRC calculation
168 for this structure. s_reserved
169 is excluded. */
170 __le16 s_flags; /* flags */
171 __le32 s_crc_seed; /* Seed value of CRC calculation */
2f1b7cd2 172/*10*/ __le32 s_sum; /* Check sum of super block */
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173
174 __le32 s_log_block_size; /* Block size represented as follows
175 blocksize =
176 1 << (s_log_block_size + 10) */
177 __le64 s_nsegments; /* Number of segments in filesystem */
2f1b7cd2 178/*20*/ __le64 s_dev_size; /* block device size in bytes */
eed10e39 179 __le64 s_first_data_block; /* 1st seg disk block number */
2f1b7cd2 180/*30*/ __le32 s_blocks_per_segment; /* number of blocks per full segment */
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181 __le32 s_r_segments_percentage; /* Reserved segments percentage */
182
183 __le64 s_last_cno; /* Last checkpoint number */
2f1b7cd2 184/*40*/ __le64 s_last_pseg; /* disk block addr pseg written last */
eed10e39 185 __le64 s_last_seq; /* seq. number of seg written last */
2f1b7cd2 186/*50*/ __le64 s_free_blocks_count; /* Free blocks count */
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187
188 __le64 s_ctime; /* Creation time (execution time of
189 newfs) */
2f1b7cd2 190/*60*/ __le64 s_mtime; /* Mount time */
eed10e39 191 __le64 s_wtime; /* Write time */
2f1b7cd2 192/*70*/ __le16 s_mnt_count; /* Mount count */
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193 __le16 s_max_mnt_count; /* Maximal mount count */
194 __le16 s_state; /* File system state */
195 __le16 s_errors; /* Behaviour when detecting errors */
196 __le64 s_lastcheck; /* time of last check */
197
2f1b7cd2 198/*80*/ __le32 s_checkinterval; /* max. time between checks */
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199 __le32 s_creator_os; /* OS */
200 __le16 s_def_resuid; /* Default uid for reserved blocks */
201 __le16 s_def_resgid; /* Default gid for reserved blocks */
0d9cc233 202 __le32 s_first_ino; /* First non-reserved inode */
eed10e39 203
2f1b7cd2 204/*90*/ __le16 s_inode_size; /* Size of an inode */
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205 __le16 s_dat_entry_size; /* Size of a dat entry */
206 __le16 s_checkpoint_size; /* Size of a checkpoint */
207 __le16 s_segment_usage_size; /* Size of a segment usage */
208
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209/*98*/ __u8 s_uuid[16]; /* 128-bit uuid for volume */
210/*A8*/ char s_volume_name[80]; /* volume name */
eed10e39 211
2f1b7cd2 212/*F8*/ __le32 s_c_interval; /* Commit interval of segment */
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213 __le32 s_c_block_max; /* Threshold of data amount for
214 the segment construction */
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215/*100*/ __le64 s_feature_compat; /* Compatible feature set */
216 __le64 s_feature_compat_ro; /* Read-only compatible feature set */
217 __le64 s_feature_incompat; /* Incompatible feature set */
218 __u32 s_reserved[186]; /* padding to the end of the block */
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219};
220
221/*
222 * Codes for operating systems
223 */
224#define NILFS_OS_LINUX 0
225/* Codes from 1 to 4 are reserved to keep compatibility with ext2 creator-OS */
226
227/*
228 * Revision levels
229 */
230#define NILFS_CURRENT_REV 2 /* current major revision */
231#define NILFS_MINOR_REV 0 /* minor revision */
9566a7a8 232#define NILFS_MIN_SUPP_REV 2 /* minimum supported revision */
eed10e39 233
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234/*
235 * Feature set definitions
236 *
237 * If there is a bit set in the incompatible feature set that the kernel
238 * doesn't know about, it should refuse to mount the filesystem.
239 */
240#define NILFS_FEATURE_COMPAT_SUPP 0ULL
241#define NILFS_FEATURE_COMPAT_RO_SUPP 0ULL
242#define NILFS_FEATURE_INCOMPAT_SUPP 0ULL
243
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244/*
245 * Bytes count of super_block for CRC-calculation
246 */
247#define NILFS_SB_BYTES \
248 ((long)&((struct nilfs_super_block *)0)->s_reserved)
249
250/*
251 * Special inode number
252 */
253#define NILFS_ROOT_INO 2 /* Root file inode */
254#define NILFS_DAT_INO 3 /* DAT file */
255#define NILFS_CPFILE_INO 4 /* checkpoint file */
256#define NILFS_SUFILE_INO 5 /* segment usage file */
257#define NILFS_IFILE_INO 6 /* ifile */
258#define NILFS_ATIME_INO 7 /* Atime file (reserved) */
259#define NILFS_XATTR_INO 8 /* Xattribute file (reserved) */
260#define NILFS_SKETCH_INO 10 /* Sketch file */
261#define NILFS_USER_INO 11 /* Fisrt user's file inode number */
262
263#define NILFS_SB_OFFSET_BYTES 1024 /* byte offset of nilfs superblock */
264#define NILFS_SUPER_MAGIC 0x3434 /* NILFS filesystem magic number */
265
266#define NILFS_SEG_MIN_BLOCKS 16 /* Minimum number of blocks in
267 a full segment */
268#define NILFS_PSEG_MIN_BLOCKS 2 /* Minimum number of blocks in
269 a partial segment */
270#define NILFS_MIN_NRSVSEGS 8 /* Minimum number of reserved
271 segments */
272
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273/*
274 * bytes offset of secondary super block
275 */
276#define NILFS_SB2_OFFSET_BYTES(devsize) ((((devsize) >> 12) - 1) << 12)
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277
278/*
279 * Maximal count of links to a file
280 */
281#define NILFS_LINK_MAX 32000
282
283/*
284 * Structure of a directory entry
285 * (Same as ext2)
286 */
287
288#define NILFS_NAME_LEN 255
289
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290/*
291 * Block size limitations
292 */
293#define NILFS_MIN_BLOCK_SIZE 1024
294#define NILFS_MAX_BLOCK_SIZE 65536
295
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296/*
297 * The new version of the directory entry. Since V0 structures are
298 * stored in intel byte order, and the name_len field could never be
299 * bigger than 255 chars, it's safe to reclaim the extra byte for the
300 * file_type field.
301 */
302struct nilfs_dir_entry {
303 __le64 inode; /* Inode number */
304 __le16 rec_len; /* Directory entry length */
305 __u8 name_len; /* Name length */
306 __u8 file_type;
307 char name[NILFS_NAME_LEN]; /* File name */
308 char pad;
309};
310
311/*
312 * NILFS directory file types. Only the low 3 bits are used. The
313 * other bits are reserved for now.
314 */
315enum {
316 NILFS_FT_UNKNOWN,
317 NILFS_FT_REG_FILE,
318 NILFS_FT_DIR,
319 NILFS_FT_CHRDEV,
320 NILFS_FT_BLKDEV,
321 NILFS_FT_FIFO,
322 NILFS_FT_SOCK,
323 NILFS_FT_SYMLINK,
324 NILFS_FT_MAX
325};
326
327/*
328 * NILFS_DIR_PAD defines the directory entries boundaries
329 *
330 * NOTE: It must be a multiple of 8
331 */
332#define NILFS_DIR_PAD 8
333#define NILFS_DIR_ROUND (NILFS_DIR_PAD - 1)
334#define NILFS_DIR_REC_LEN(name_len) (((name_len) + 12 + NILFS_DIR_ROUND) & \
335 ~NILFS_DIR_ROUND)
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336#define NILFS_MAX_REC_LEN ((1<<16)-1)
337
338static inline unsigned nilfs_rec_len_from_disk(__le16 dlen)
339{
340 unsigned len = le16_to_cpu(dlen);
341
342 if (len == NILFS_MAX_REC_LEN)
343 return 1 << 16;
344 return len;
345}
346
347static inline __le16 nilfs_rec_len_to_disk(unsigned len)
348{
349 if (len == (1 << 16))
350 return cpu_to_le16(NILFS_MAX_REC_LEN);
351 else if (len > (1 << 16))
352 BUG();
353 return cpu_to_le16(len);
354}
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355
356/**
357 * struct nilfs_finfo - file information
358 * @fi_ino: inode number
359 * @fi_cno: checkpoint number
360 * @fi_nblocks: number of blocks (including intermediate blocks)
361 * @fi_ndatablk: number of file data blocks
362 */
363struct nilfs_finfo {
364 __le64 fi_ino;
365 __le64 fi_cno;
366 __le32 fi_nblocks;
367 __le32 fi_ndatablk;
368 /* array of virtual block numbers */
369};
370
371/**
372 * struct nilfs_binfo_v - information for the block to which a virtual block number is assigned
373 * @bi_vblocknr: virtual block number
374 * @bi_blkoff: block offset
375 */
376struct nilfs_binfo_v {
377 __le64 bi_vblocknr;
378 __le64 bi_blkoff;
379};
380
381/**
382 * struct nilfs_binfo_dat - information for the block which belongs to the DAT file
383 * @bi_blkoff: block offset
384 * @bi_level: level
385 * @bi_pad: padding
386 */
387struct nilfs_binfo_dat {
388 __le64 bi_blkoff;
389 __u8 bi_level;
390 __u8 bi_pad[7];
391};
392
393/**
394 * union nilfs_binfo: block information
395 * @bi_v: nilfs_binfo_v structure
396 * @bi_dat: nilfs_binfo_dat structure
397 */
398union nilfs_binfo {
399 struct nilfs_binfo_v bi_v;
400 struct nilfs_binfo_dat bi_dat;
401};
402
403/**
404 * struct nilfs_segment_summary - segment summary
405 * @ss_datasum: checksum of data
406 * @ss_sumsum: checksum of segment summary
407 * @ss_magic: magic number
408 * @ss_bytes: size of this structure in bytes
409 * @ss_flags: flags
410 * @ss_seq: sequence number
411 * @ss_create: creation timestamp
412 * @ss_next: next segment
413 * @ss_nblocks: number of blocks
414 * @ss_nfinfo: number of finfo structures
415 * @ss_sumbytes: total size of segment summary in bytes
416 * @ss_pad: padding
50614bcf 417 * @ss_cno: checkpoint number
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418 */
419struct nilfs_segment_summary {
420 __le32 ss_datasum;
421 __le32 ss_sumsum;
422 __le32 ss_magic;
423 __le16 ss_bytes;
424 __le16 ss_flags;
425 __le64 ss_seq;
426 __le64 ss_create;
427 __le64 ss_next;
428 __le32 ss_nblocks;
429 __le32 ss_nfinfo;
430 __le32 ss_sumbytes;
431 __le32 ss_pad;
50614bcf 432 __le64 ss_cno;
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433 /* array of finfo structures */
434};
435
436#define NILFS_SEGSUM_MAGIC 0x1eaffa11 /* segment summary magic number */
437
438/*
439 * Segment summary flags
440 */
441#define NILFS_SS_LOGBGN 0x0001 /* begins a logical segment */
442#define NILFS_SS_LOGEND 0x0002 /* ends a logical segment */
443#define NILFS_SS_SR 0x0004 /* has super root */
444#define NILFS_SS_SYNDT 0x0008 /* includes data only updates */
445#define NILFS_SS_GC 0x0010 /* segment written for cleaner operation */
446
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447/**
448 * struct nilfs_btree_node - B-tree node
449 * @bn_flags: flags
450 * @bn_level: level
451 * @bn_nchildren: number of children
452 * @bn_pad: padding
453 */
454struct nilfs_btree_node {
455 __u8 bn_flags;
456 __u8 bn_level;
457 __le16 bn_nchildren;
458 __le32 bn_pad;
459};
460
461/* flags */
462#define NILFS_BTREE_NODE_ROOT 0x01
463
464/* level */
465#define NILFS_BTREE_LEVEL_DATA 0
466#define NILFS_BTREE_LEVEL_NODE_MIN (NILFS_BTREE_LEVEL_DATA + 1)
467#define NILFS_BTREE_LEVEL_MAX 14
468
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469/**
470 * struct nilfs_palloc_group_desc - block group descriptor
471 * @pg_nfrees: number of free entries in block group
472 */
473struct nilfs_palloc_group_desc {
474 __le32 pg_nfrees;
475};
476
477/**
478 * struct nilfs_dat_entry - disk address translation entry
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479 * @de_blocknr: block number
480 * @de_start: start checkpoint number
481 * @de_end: end checkpoint number
482 * @de_rsv: reserved for future use
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483 */
484struct nilfs_dat_entry {
485 __le64 de_blocknr;
486 __le64 de_start;
487 __le64 de_end;
488 __le64 de_rsv;
489};
490
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491/**
492 * struct nilfs_snapshot_list - snapshot list
493 * @ssl_next: next checkpoint number on snapshot list
494 * @ssl_prev: previous checkpoint number on snapshot list
495 */
496struct nilfs_snapshot_list {
497 __le64 ssl_next;
498 __le64 ssl_prev;
499};
500
501/**
502 * struct nilfs_checkpoint - checkpoint structure
503 * @cp_flags: flags
504 * @cp_checkpoints_count: checkpoints count in a block
505 * @cp_snapshot_list: snapshot list
506 * @cp_cno: checkpoint number
507 * @cp_create: creation timestamp
508 * @cp_nblk_inc: number of blocks incremented by this checkpoint
509 * @cp_inodes_count: inodes count
510 * @cp_blocks_count: blocks count
511 * @cp_ifile_inode: inode of ifile
512 */
513struct nilfs_checkpoint {
514 __le32 cp_flags;
515 __le32 cp_checkpoints_count;
516 struct nilfs_snapshot_list cp_snapshot_list;
517 __le64 cp_cno;
518 __le64 cp_create;
519 __le64 cp_nblk_inc;
520 __le64 cp_inodes_count;
521 __le64 cp_blocks_count; /* Reserved (might be deleted) */
522
523 /* Do not change the byte offset of ifile inode.
524 To keep the compatibility of the disk format,
525 additional fields should be added behind cp_ifile_inode. */
526 struct nilfs_inode cp_ifile_inode;
527};
528
529/* checkpoint flags */
530enum {
531 NILFS_CHECKPOINT_SNAPSHOT,
532 NILFS_CHECKPOINT_INVALID,
533 NILFS_CHECKPOINT_SKETCH,
c96fa464 534 NILFS_CHECKPOINT_MINOR,
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535};
536
537#define NILFS_CHECKPOINT_FNS(flag, name) \
538static inline void \
539nilfs_checkpoint_set_##name(struct nilfs_checkpoint *cp) \
540{ \
541 cp->cp_flags = cpu_to_le32(le32_to_cpu(cp->cp_flags) | \
542 (1UL << NILFS_CHECKPOINT_##flag)); \
543} \
544static inline void \
545nilfs_checkpoint_clear_##name(struct nilfs_checkpoint *cp) \
546{ \
547 cp->cp_flags = cpu_to_le32(le32_to_cpu(cp->cp_flags) & \
548 ~(1UL << NILFS_CHECKPOINT_##flag)); \
549} \
550static inline int \
551nilfs_checkpoint_##name(const struct nilfs_checkpoint *cp) \
552{ \
553 return !!(le32_to_cpu(cp->cp_flags) & \
554 (1UL << NILFS_CHECKPOINT_##flag)); \
555}
556
557NILFS_CHECKPOINT_FNS(SNAPSHOT, snapshot)
558NILFS_CHECKPOINT_FNS(INVALID, invalid)
c96fa464 559NILFS_CHECKPOINT_FNS(MINOR, minor)
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560
561/**
562 * struct nilfs_cpinfo - checkpoint information
563 * @ci_flags: flags
dc498d09 564 * @ci_pad: padding
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565 * @ci_cno: checkpoint number
566 * @ci_create: creation timestamp
567 * @ci_nblk_inc: number of blocks incremented by this checkpoint
568 * @ci_inodes_count: inodes count
569 * @ci_blocks_count: blocks count
570 * @ci_next: next checkpoint number in snapshot list
571 */
572struct nilfs_cpinfo {
573 __u32 ci_flags;
dc498d09 574 __u32 ci_pad;
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575 __u64 ci_cno;
576 __u64 ci_create;
577 __u64 ci_nblk_inc;
578 __u64 ci_inodes_count;
579 __u64 ci_blocks_count;
580 __u64 ci_next;
581};
582
583#define NILFS_CPINFO_FNS(flag, name) \
584static inline int \
585nilfs_cpinfo_##name(const struct nilfs_cpinfo *cpinfo) \
586{ \
587 return !!(cpinfo->ci_flags & (1UL << NILFS_CHECKPOINT_##flag)); \
588}
589
590NILFS_CPINFO_FNS(SNAPSHOT, snapshot)
591NILFS_CPINFO_FNS(INVALID, invalid)
c96fa464 592NILFS_CPINFO_FNS(MINOR, minor)
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593
594
595/**
596 * struct nilfs_cpfile_header - checkpoint file header
597 * @ch_ncheckpoints: number of checkpoints
598 * @ch_nsnapshots: number of snapshots
599 * @ch_snapshot_list: snapshot list
600 */
601struct nilfs_cpfile_header {
602 __le64 ch_ncheckpoints;
603 __le64 ch_nsnapshots;
604 struct nilfs_snapshot_list ch_snapshot_list;
605};
606
607#define NILFS_CPFILE_FIRST_CHECKPOINT_OFFSET \
608 ((sizeof(struct nilfs_cpfile_header) + \
609 sizeof(struct nilfs_checkpoint) - 1) / \
610 sizeof(struct nilfs_checkpoint))
611
612/**
613 * struct nilfs_segment_usage - segment usage
614 * @su_lastmod: last modified timestamp
615 * @su_nblocks: number of blocks in segment
616 * @su_flags: flags
617 */
618struct nilfs_segment_usage {
619 __le64 su_lastmod;
620 __le32 su_nblocks;
621 __le32 su_flags;
622};
623
624/* segment usage flag */
625enum {
626 NILFS_SEGMENT_USAGE_ACTIVE,
627 NILFS_SEGMENT_USAGE_DIRTY,
628 NILFS_SEGMENT_USAGE_ERROR,
629
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630 /* ... */
631};
632
633#define NILFS_SEGMENT_USAGE_FNS(flag, name) \
634static inline void \
635nilfs_segment_usage_set_##name(struct nilfs_segment_usage *su) \
636{ \
637 su->su_flags = cpu_to_le32(le32_to_cpu(su->su_flags) | \
638 (1UL << NILFS_SEGMENT_USAGE_##flag));\
639} \
640static inline void \
641nilfs_segment_usage_clear_##name(struct nilfs_segment_usage *su) \
642{ \
643 su->su_flags = \
644 cpu_to_le32(le32_to_cpu(su->su_flags) & \
645 ~(1UL << NILFS_SEGMENT_USAGE_##flag)); \
646} \
647static inline int \
648nilfs_segment_usage_##name(const struct nilfs_segment_usage *su) \
649{ \
650 return !!(le32_to_cpu(su->su_flags) & \
651 (1UL << NILFS_SEGMENT_USAGE_##flag)); \
652}
653
654NILFS_SEGMENT_USAGE_FNS(ACTIVE, active)
655NILFS_SEGMENT_USAGE_FNS(DIRTY, dirty)
656NILFS_SEGMENT_USAGE_FNS(ERROR, error)
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657
658static inline void
659nilfs_segment_usage_set_clean(struct nilfs_segment_usage *su)
660{
661 su->su_lastmod = cpu_to_le64(0);
662 su->su_nblocks = cpu_to_le32(0);
663 su->su_flags = cpu_to_le32(0);
664}
665
666static inline int
667nilfs_segment_usage_clean(const struct nilfs_segment_usage *su)
668{
669 return !le32_to_cpu(su->su_flags);
670}
671
672/**
673 * struct nilfs_sufile_header - segment usage file header
674 * @sh_ncleansegs: number of clean segments
675 * @sh_ndirtysegs: number of dirty segments
676 * @sh_last_alloc: last allocated segment number
677 */
678struct nilfs_sufile_header {
679 __le64 sh_ncleansegs;
680 __le64 sh_ndirtysegs;
681 __le64 sh_last_alloc;
682 /* ... */
683};
684
685#define NILFS_SUFILE_FIRST_SEGMENT_USAGE_OFFSET \
686 ((sizeof(struct nilfs_sufile_header) + \
687 sizeof(struct nilfs_segment_usage) - 1) / \
688 sizeof(struct nilfs_segment_usage))
689
690/**
691 * nilfs_suinfo - segment usage information
692 * @sui_lastmod:
693 * @sui_nblocks:
694 * @sui_flags:
695 */
696struct nilfs_suinfo {
697 __u64 sui_lastmod;
698 __u32 sui_nblocks;
699 __u32 sui_flags;
700};
701
702#define NILFS_SUINFO_FNS(flag, name) \
703static inline int \
704nilfs_suinfo_##name(const struct nilfs_suinfo *si) \
705{ \
706 return si->sui_flags & (1UL << NILFS_SEGMENT_USAGE_##flag); \
707}
708
709NILFS_SUINFO_FNS(ACTIVE, active)
710NILFS_SUINFO_FNS(DIRTY, dirty)
711NILFS_SUINFO_FNS(ERROR, error)
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712
713static inline int nilfs_suinfo_clean(const struct nilfs_suinfo *si)
714{
715 return !si->sui_flags;
716}
717
718/* ioctl */
719enum {
720 NILFS_CHECKPOINT,
721 NILFS_SNAPSHOT,
722};
723
724/**
725 * struct nilfs_cpmode -
726 * @cc_cno:
727 * @cc_mode:
728 */
729struct nilfs_cpmode {
730 __u64 cm_cno;
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731 __u32 cm_mode;
732 __u32 cm_pad;
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733};
734
735/**
736 * struct nilfs_argv - argument vector
737 * @v_base:
738 * @v_nmembs:
739 * @v_size:
eed10e39 740 * @v_flags:
dc498d09 741 * @v_index:
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742 */
743struct nilfs_argv {
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744 __u64 v_base;
745 __u32 v_nmembs; /* number of members */
746 __u16 v_size; /* size of members */
747 __u16 v_flags;
748 __u64 v_index;
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749};
750
751/**
752 * struct nilfs_period -
753 * @p_start:
754 * @p_end:
755 */
756struct nilfs_period {
757 __u64 p_start;
758 __u64 p_end;
759};
760
761/**
762 * struct nilfs_cpstat -
763 * @cs_cno: checkpoint number
764 * @cs_ncps: number of checkpoints
765 * @cs_nsss: number of snapshots
766 */
767struct nilfs_cpstat {
768 __u64 cs_cno;
769 __u64 cs_ncps;
770 __u64 cs_nsss;
771};
772
773/**
774 * struct nilfs_sustat -
775 * @ss_nsegs: number of segments
776 * @ss_ncleansegs: number of clean segments
777 * @ss_ndirtysegs: number of dirty segments
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778 * @ss_ctime: creation time of the last segment
779 * @ss_nongc_ctime: creation time of the last segment not for GC
780 * @ss_prot_seq: least sequence number of segments which must not be reclaimed
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781 */
782struct nilfs_sustat {
783 __u64 ss_nsegs;
784 __u64 ss_ncleansegs;
785 __u64 ss_ndirtysegs;
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786 __u64 ss_ctime;
787 __u64 ss_nongc_ctime;
2c2e52fc 788 __u64 ss_prot_seq;
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789};
790
791/**
792 * struct nilfs_vinfo - virtual block number information
793 * @vi_vblocknr:
794 * @vi_start:
795 * @vi_end:
796 * @vi_blocknr:
797 */
798struct nilfs_vinfo {
799 __u64 vi_vblocknr;
800 __u64 vi_start;
801 __u64 vi_end;
802 __u64 vi_blocknr;
803};
804
805/**
806 * struct nilfs_vdesc -
807 */
808struct nilfs_vdesc {
809 __u64 vd_ino;
810 __u64 vd_cno;
811 __u64 vd_vblocknr;
812 struct nilfs_period vd_period;
813 __u64 vd_blocknr;
814 __u64 vd_offset;
815 __u32 vd_flags;
dc498d09 816 __u32 vd_pad;
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817};
818
819/**
820 * struct nilfs_bdesc -
821 */
822struct nilfs_bdesc {
823 __u64 bd_ino;
824 __u64 bd_oblocknr;
825 __u64 bd_blocknr;
826 __u64 bd_offset;
827 __u32 bd_level;
dc498d09 828 __u32 bd_pad;
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829};
830
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831#define NILFS_IOCTL_IDENT 'n'
832
833#define NILFS_IOCTL_CHANGE_CPMODE \
834 _IOW(NILFS_IOCTL_IDENT, 0x80, struct nilfs_cpmode)
835#define NILFS_IOCTL_DELETE_CHECKPOINT \
836 _IOW(NILFS_IOCTL_IDENT, 0x81, __u64)
837#define NILFS_IOCTL_GET_CPINFO \
838 _IOR(NILFS_IOCTL_IDENT, 0x82, struct nilfs_argv)
839#define NILFS_IOCTL_GET_CPSTAT \
840 _IOR(NILFS_IOCTL_IDENT, 0x83, struct nilfs_cpstat)
841#define NILFS_IOCTL_GET_SUINFO \
842 _IOR(NILFS_IOCTL_IDENT, 0x84, struct nilfs_argv)
843#define NILFS_IOCTL_GET_SUSTAT \
844 _IOR(NILFS_IOCTL_IDENT, 0x85, struct nilfs_sustat)
845#define NILFS_IOCTL_GET_VINFO \
846 _IOWR(NILFS_IOCTL_IDENT, 0x86, struct nilfs_argv)
847#define NILFS_IOCTL_GET_BDESCS \
848 _IOWR(NILFS_IOCTL_IDENT, 0x87, struct nilfs_argv)
849#define NILFS_IOCTL_CLEAN_SEGMENTS \
850 _IOW(NILFS_IOCTL_IDENT, 0x88, struct nilfs_argv[5])
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851#define NILFS_IOCTL_SYNC \
852 _IOR(NILFS_IOCTL_IDENT, 0x8A, __u64)
853#define NILFS_IOCTL_RESIZE \
854 _IOW(NILFS_IOCTL_IDENT, 0x8B, __u64)
855
eed10e39 856#endif /* _LINUX_NILFS_FS_H */