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64c4757e 1/*
9a9dab36 2 * mdadm - manage Linux "md" devices aka RAID arrays.
64c4757e 3 *
e736b623 4 * Copyright (C) 2001-2009 Neil Brown <neilb@suse.de>
64c4757e
NB
5 *
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 *
21 * Author: Neil Brown
e736b623 22 * Email: <neilb@suse.de>
64c4757e
NB
23 */
24
4ccdb956 25#define _GNU_SOURCE
c2c9bb6f 26#define _FILE_OFFSET_BITS 64
64c4757e 27#include <unistd.h>
0d35d5c4 28#ifdef __GLIBC__
64c4757e 29extern __off64_t lseek64 __P ((int __fd, __off64_t __offset, int __whence));
0d35d5c4 30#elif !defined(lseek64)
fffdbe5e 31# if defined(__NO_STAT64) || __WORDSIZE != 32
f783ca4f
NB
32# define lseek64 lseek
33# endif
98c6faba 34#endif
64c4757e
NB
35
36#include <sys/types.h>
37#include <sys/stat.h>
d15a1f72 38#include <stdint.h>
64c4757e
NB
39#include <stdlib.h>
40#include <time.h>
11018a45 41#include <sys/time.h>
64c4757e
NB
42#include <getopt.h>
43#include <fcntl.h>
44#include <stdio.h>
45#include <errno.h>
46#include <string.h>
773135f5 47#include <syslog.h>
b56c3630
NB
48#ifdef __dietlibc__
49#include <strings.h>
280a927d
NB
50/* dietlibc has deprecated random and srandom!! */
51#define random rand
52#define srandom srand
98c6faba
NB
53#endif
54
e80357f8
GJ
55#ifdef NO_COROSYNC
56#define CS_OK 1
57typedef uint64_t cmap_handle_t;
58#else
59#include <corosync/cmap.h>
60#endif
61
d15a1f72
GJ
62#ifndef NO_DLM
63#include <libdlm.h>
64#include <errno.h>
65#else
66#define LKF_NOQUEUE 0x00000001
d15a1f72
GJ
67#define LKM_PWMODE 4
68#define EUNLOCK 0x10002
69
70typedef void *dlm_lshandle_t;
71
72struct dlm_lksb {
73 int sb_status;
74 uint32_t sb_lkid;
75 char sb_flags;
76 char *sb_lvbptr;
77};
78#endif
79
64c4757e 80#include <linux/kdev_t.h>
e0d19036
NB
81/*#include <linux/fs.h> */
82#include <sys/mount.h>
83#include <asm/types.h>
64c4757e
NB
84#include <sys/ioctl.h>
85#define MD_MAJOR 9
dd0781e5 86#define MdpMinorShift 6
64c4757e 87
e0d19036 88#ifndef BLKGETSIZE64
98c6faba 89#define BLKGETSIZE64 _IOR(0x12,114,size_t) /* return device size in bytes (u64 *arg) */
e0d19036 90#endif
56eb10c0 91
c21e737b 92#define DEFAULT_CHUNK 512
c82f047c
NB
93#define DEFAULT_BITMAP_CHUNK 4096
94#define DEFAULT_BITMAP_DELAY 5
dfd4d8ee 95#define DEFAULT_MAX_WRITE_BEHIND 256
64c4757e 96
753cf905 97/* MAP_DIR should be somewhere that persists across the pivotroot
5d4d1b26 98 * from early boot to late boot.
96fd06ed 99 * /run seems to have emerged as the best standard.
5d4d1b26 100 */
753cf905 101#ifndef MAP_DIR
96fd06ed 102#define MAP_DIR "/run/mdadm"
753cf905
DL
103#endif /* MAP_DIR */
104/* MAP_FILE is what we name the map file we put in MAP_DIR, in case you
105 * want something other than the default of "map"
106 */
107#ifndef MAP_FILE
108#define MAP_FILE "map"
109#endif /* MAP_FILE */
110/* MDMON_DIR is where pid and socket files used for communicating
96fd06ed 111 * with mdmon normally live. Best is /var/run/mdadm as
753cf905
DL
112 * mdmon is needed at early boot then it needs to write there prior
113 * to /var/run being mounted read/write, and it also then needs to
114 * persist beyond when /var/run is mounter read-only. So, to be
115 * safe, the default is somewhere that is read/write early in the
116 * boot process and stays up as long as possible during shutdown.
117 */
118#ifndef MDMON_DIR
96fd06ed 119#define MDMON_DIR "/run/mdadm"
753cf905 120#endif /* MDMON_DIR */
5d4d1b26 121
403410eb
PC
122/* FAILED_SLOTS is where to save files storing recent removal of array
123 * member in order to allow future reuse of disk inserted in the same
124 * slot for array recovery
125 */
126#ifndef FAILED_SLOTS_DIR
96fd06ed 127#define FAILED_SLOTS_DIR "/run/mdadm/failed-slots"
403410eb
PC
128#endif /* FAILED_SLOTS */
129
64c4757e 130#include "md_u.h"
e0d19036 131#include "md_p.h"
c82f047c 132#include "bitmap.h"
f7dd881f 133#include "msg.h"
64c4757e 134
1e0d770c 135#include <endian.h>
efd441d1
NB
136/* Redhat don't like to #include <asm/byteorder.h>, and
137 * some time include <linux/byteorder/xxx_endian.h> isn't enough,
138 * and there is no standard conversion function so... */
0ae03b8a
NB
139/* And dietlibc doesn't think byteswap is ok, so.. */
140/* #include <byteswap.h> */
dd47b4e0
JS
141#define __mdadm_bswap_16(x) (((x) & 0x00ffU) << 8 | \
142 ((x) & 0xff00U) >> 8)
143#define __mdadm_bswap_32(x) (((x) & 0x000000ffU) << 24 | \
144 ((x) & 0xff000000U) >> 24 | \
145 ((x) & 0x0000ff00U) << 8 | \
146 ((x) & 0x00ff0000U) >> 8)
147#define __mdadm_bswap_64(x) (((x) & 0x00000000000000ffULL) << 56 | \
148 ((x) & 0xff00000000000000ULL) >> 56 | \
149 ((x) & 0x000000000000ff00ULL) << 40 | \
150 ((x) & 0x00ff000000000000ULL) >> 40 | \
151 ((x) & 0x0000000000ff0000ULL) << 24 | \
152 ((x) & 0x0000ff0000000000ULL) >> 24 | \
153 ((x) & 0x00000000ff000000ULL) << 8 | \
154 ((x) & 0x000000ff00000000ULL) >> 8)
0ae03b8a 155
e39b673e 156#if !defined(__KLIBC__)
efd441d1 157#if BYTE_ORDER == LITTLE_ENDIAN
8a5f247d
JS
158#define __cpu_to_le16(_x) (unsigned int)(_x)
159#define __cpu_to_le32(_x) (unsigned int)(_x)
160#define __cpu_to_le64(_x) (unsigned long long)(_x)
161#define __le16_to_cpu(_x) (unsigned int)(_x)
162#define __le32_to_cpu(_x) (unsigned int)(_x)
163#define __le64_to_cpu(_x) (unsigned long long)(_x)
974e620d 164
dd47b4e0
JS
165#define __cpu_to_be16(_x) __mdadm_bswap_16(_x)
166#define __cpu_to_be32(_x) __mdadm_bswap_32(_x)
167#define __cpu_to_be64(_x) __mdadm_bswap_64(_x)
168#define __be16_to_cpu(_x) __mdadm_bswap_16(_x)
169#define __be32_to_cpu(_x) __mdadm_bswap_32(_x)
170#define __be64_to_cpu(_x) __mdadm_bswap_64(_x)
efd441d1 171#elif BYTE_ORDER == BIG_ENDIAN
dd47b4e0
JS
172#define __cpu_to_le16(_x) __mdadm_bswap_16(_x)
173#define __cpu_to_le32(_x) __mdadm_bswap_32(_x)
174#define __cpu_to_le64(_x) __mdadm_bswap_64(_x)
175#define __le16_to_cpu(_x) __mdadm_bswap_16(_x)
176#define __le32_to_cpu(_x) __mdadm_bswap_32(_x)
177#define __le64_to_cpu(_x) __mdadm_bswap_64(_x)
974e620d 178
8a5f247d
JS
179#define __cpu_to_be16(_x) (unsigned int)(_x)
180#define __cpu_to_be32(_x) (unsigned int)(_x)
181#define __cpu_to_be64(_x) (unsigned long long)(_x)
182#define __be16_to_cpu(_x) (unsigned int)(_x)
183#define __be32_to_cpu(_x) (unsigned int)(_x)
184#define __be64_to_cpu(_x) (unsigned long long)(_x)
1e0d770c
NB
185#else
186# error "unknown endianness."
187#endif
e39b673e 188#endif /* __KLIBC__ */
1e0d770c 189
26714713
DD
190/*
191 * Check at compile time that something is of a particular type.
192 * Always evaluates to 1 so you may use it easily in comparisons.
193*/
194
195#define typecheck(type,x) \
196({ type __dummy; \
197 typeof(x) __dummy2; \
198 (void)(&__dummy == &__dummy2); \
199 1; \
200})
201
202/*
203 * These inlines deal with timer wrapping correctly.
204 *
205 * time_after(a,b) returns true if the time a is after time b.
206*/
207
208#define time_after(a,b) \
209 (typecheck(unsigned int, a) && \
210 typecheck(unsigned int, b) && \
211 ((int)((b) - (a)) < 0))
212
213#define time_before(a,b) time_after(b,a)
214
1e5c6983
DW
215/*
216 * min()/max()/clamp() macros that also do
217 * strict type-checking.. See the
218 * "unnecessary" pointer comparison.
219 */
220#define min(x, y) ({ \
221 typeof(x) _min1 = (x); \
222 typeof(y) _min2 = (y); \
223 (void) (&_min1 == &_min2); \
224 _min1 < _min2 ? _min1 : _min2; })
225
226#define max(x, y) ({ \
227 typeof(x) _max1 = (x); \
228 typeof(y) _max2 = (y); \
229 (void) (&_max1 == &_max2); \
230 _max1 > _max2 ? _max1 : _max2; })
1e0d770c 231
1c0aebc2
N
232#define ARRAY_SIZE(x) (sizeof(x)/sizeof(x[0]))
233
d56dd607
PB
234extern const char Name[];
235
4b1ac34b
NB
236/* general information that might be extracted from a superblock */
237struct mdinfo {
238 mdu_array_info_t array;
239 mdu_disk_info_t disk;
240 __u64 events;
fbf8a0b7 241 int uuid[4];
31317663 242 char name[33];
353632d9 243 unsigned long long data_offset;
fe384ca0 244 unsigned long long new_data_offset;
598f0d58
NB
245 unsigned long long component_size; /* same as array.size, except in
246 * sectors and up to 64bits.
247 */
da9b4a62
DW
248 unsigned long long custom_array_size; /* size for non-default sized
249 * arrays (in sectors)
250 */
81219e70
LM
251#define NO_RESHAPE 0
252#define VOLUME_RESHAPE 1
253#define CONTAINER_RESHAPE 2
5e88ab2e 254#define RESHAPE_NO_BACKUP 16 /* Mask 'or'ed in */
353632d9
NB
255 int reshape_active;
256 unsigned long long reshape_progress;
6e75048b
AK
257 int recovery_blocked; /* for external metadata it
258 * indicates that there is
259 * reshape in progress in
260 * container,
261 * for native metadata it is
262 * reshape_active field mirror
263 */
051f3265
SL
264 int journal_device_required;
265 int journal_clean;
266
80bf9135
N
267 /* During reshape we can sometimes change the data_offset to avoid
268 * over-writing still-valid data. We need to know if there is space.
269 * So getinfo_super will fill in space_before and space_after in sectors.
270 * data_offset can be increased or decreased by this amount.
271 */
272 unsigned long long space_before, space_after;
e1516be1
DW
273 union {
274 unsigned long long resync_start; /* per-array resync position */
275 unsigned long long recovery_start; /* per-device rebuild position */
b7528a20 276 #define MaxSector (~0ULL) /* resync/recovery complete position */
e1516be1 277 };
fbdef498 278 long bitmap_offset; /* 0 == none, 1 == a file */
a67dd8cc 279 unsigned long safe_mode_delay; /* ms delay to mark clean */
353632d9 280 int new_level, delta_disks, new_layout, new_chunk;
06c7f68e 281 int errors;
f21e18ca 282 unsigned long cache_size; /* size of raid456 stripe cache*/
7e0f6979
NB
283 int mismatch_cnt;
284 char text_version[50];
dd15dc4a
NB
285
286 int container_member; /* for assembling external-metatdata arrays
287 * This is to be used internally by metadata
288 * handler only */
97b4d0e9
DW
289 int container_enough; /* flag external handlers can set to
290 * indicate that subarrays have not enough (-1),
291 * enough to start (0), or all expected disks (1) */
6e6e9874 292 char sys_name[32];
7e0f6979 293 struct mdinfo *devs;
06c7f68e 294 struct mdinfo *next;
549e9569
NB
295
296 /* Device info for mdmon: */
e1516be1 297 int recovery_fd;
549e9569 298 int state_fd;
8d45d196
DW
299 #define DS_FAULTY 1
300 #define DS_INSYNC 2
301 #define DS_WRITE_MOSTLY 4
302 #define DS_SPARE 8
303 #define DS_BLOCKED 16
304 #define DS_REMOVE 1024
92967543 305 #define DS_UNBLOCK 2048
549e9569 306 int prev_state, curr_state, next_state;
5aa644c6
SL
307
308 /* info read from sysfs */
309 char sysfs_array_state[20];
4b1ac34b
NB
310};
311
5bbb4842
NB
312struct createinfo {
313 int uid;
314 int gid;
315 int autof;
316 int mode;
38098016 317 int symlinks;
eca944fa 318 int names;
e2efe9e7 319 int bblist;
058574b1 320 struct supertype *supertype;
5bbb4842
NB
321};
322
e0d19036
NB
323enum mode {
324 ASSEMBLE=1,
325 BUILD,
326 CREATE,
327 MANAGE,
328 MISC,
329 MONITOR,
dd0781e5 330 GROW,
8382f19b 331 INCREMENTAL,
1f48664b 332 AUTODETECT,
5187a385 333 mode_count
e0d19036
NB
334};
335
64c4757e 336extern char short_options[];
024768c4 337extern char short_bitmap_options[];
c06487ce 338extern char short_bitmap_auto_options[];
64c4757e 339extern struct option long_options[];
56eedc1a 340extern char Version[], Usage[], Help[], OptionHelp[],
5187a385 341 *mode_help[],
dd0781e5 342 Help_create[], Help_build[], Help_assemble[], Help_grow[],
8382f19b 343 Help_incr[],
e0d19036 344 Help_manage[], Help_misc[], Help_monitor[], Help_config[];
64c4757e 345
997aed5d 346/* for option that don't have short equivilents, we assign arbitrary
1c7a808c 347 * numbers later than any 'short' character option.
997aed5d
NB
348 */
349enum special_options {
1c7a808c 350 AssumeClean = 300,
997aed5d
NB
351 BitmapChunk,
352 WriteBehind,
353 ReAdd,
354 NoDegraded,
355 Sparc22,
1c7a808c 356 BackupFile,
997aed5d 357 HomeHost,
589395d6 358 AutoHomeHost,
38098016 359 Symlinks,
1f48664b 360 AutoDetect,
1770662b 361 Waitclean,
4cce4069 362 DetailPlatform,
33414a01 363 KillSubarray,
1c7a808c 364 UpdateSubarray,
edde9560 365 IncrementalPath,
1c7a808c
N
366 NoSharing,
367 HelpOptions,
368 Brief,
369 ManageOpt,
370 Add,
f33a71f1 371 AddSpare,
01290056 372 AddJournal,
1c7a808c
N
373 Remove,
374 Fail,
70c55e36
N
375 Replace,
376 With,
1c7a808c
N
377 MiscOpt,
378 WaitOpt,
379 ConfigFile,
380 ChunkSize,
381 WriteMostly,
382 Layout,
383 Auto,
384 Force,
385 SuperMinor,
386 EMail,
387 ProgramOpt,
388 Increment,
389 Fork,
390 Bitmap,
391 RebuildMapOpt,
87f26d14 392 InvalidBackup,
20b60dcd 393 UdevRules,
b76b30e0 394 FreezeReshape,
2dddadb0 395 Continue,
08ca2adf 396 OffRootOpt,
c2ecf5f6 397 Prefer,
f7d3febc 398 KillOpt,
40c9a66a 399 DataOffset,
6d388a88 400 ExamineBB,
74db60b0
N
401 Dump,
402 Restore,
a740cf64 403 Action,
529e2aa5 404 Nodes,
7716570e 405 ClusterName,
4de90913 406 ClusterConfirm,
cc1799c3 407 WriteJournal,
997aed5d
NB
408};
409
f0ec6710
MN
410enum prefix_standard {
411 JEDEC,
412 IEC
413};
414
0aa2f15b
GJ
415enum bitmap_update {
416 NoUpdate,
417 NameUpdate,
7e6e839a 418 NodeNumUpdate,
0aa2f15b
GJ
419};
420
64c4757e 421/* structures read from config file */
52826846
NB
422/* List of mddevice names and identifiers
423 * Identifiers can be:
424 * uuid=128-hex-uuid
425 * super-minor=decimal-minor-number-from-superblock
426 * devices=comma,separated,list,of,device,names,with,wildcards
427 *
428 * If multiple fields are present, the intersection of all matching
429 * devices is considered
430 */
98c6faba 431#define UnSet (0xfffe)
fa56eddb 432struct mddev_ident {
dd0781e5 433 char *devname;
aba69144 434
dd0781e5 435 int uuid_set;
3fa06e9d 436 int uuid[4];
947fd4dd 437 char name[33];
52826846 438
f21e18ca 439 int super_minor;
52826846 440
dd0781e5 441 char *devices; /* comma separated list of device
52826846
NB
442 * names with wild cards
443 */
dd0781e5 444 int level;
f21e18ca
N
445 int raid_disks;
446 int spare_disks;
82d9eba6 447 struct supertype *st;
dd0781e5
NB
448 int autof; /* 1 for normal, 2 for partitioned */
449 char *spare_group;
7ef02d01 450 char *bitmap_file;
c82f047c 451 int bitmap_fd;
dd0781e5 452
1771a6e2
N
453 char *container; /* /dev/whatever name of container, or
454 * uuid of container. You would expect
455 * this to be the 'devname' or UUID
dbb44303
N
456 * of some other entry.
457 */
458 char *member; /* subarray within a container */
459
fa56eddb 460 struct mddev_ident *next;
b179246f
N
461 union {
462 /* fields needed by different users of this structure */
463 int assembled; /* set when assembly succeeds */
464 };
fa56eddb 465};
64c4757e 466
9e33d556
N
467struct context {
468 int readonly;
469 int runstop;
470 int verbose;
9e33d556
N
471 int brief;
472 int force;
473 char *homehost;
474 int require_homehost;
475 char *prefer;
476 int export;
477 int test;
478 char *subarray;
479 char *update;
480 int scan;
481 int SparcAdjust;
482 int autof;
483 int delay;
484 int freeze_reshape;
485 char *backup_file;
486 int invalid_backup;
a740cf64 487 char *action;
529e2aa5 488 int nodes;
7716570e 489 char *homecluster;
9e33d556
N
490};
491
e705e81b
N
492struct shape {
493 int raiddisks;
494 int sparedisks;
cc1799c3 495 int journaldisks;
e705e81b
N
496 int level;
497 int layout;
498 char *layout_str;
499 int chunk;
500 int bitmap_chunk;
501 char *bitmap_file;
502 int assume_clean;
503 int write_behind;
504 unsigned long long size;
505};
506
64c4757e 507/* List of device names - wildcards expanded */
a655e550 508struct mddev_dev {
64c4757e 509 char *devname;
c8e1a230
N
510 int disposition; /* 'a' for add, 'r' for remove, 'f' for fail,
511 * 'A' for re_add.
cd29a5c8
NB
512 * Not set for names read from .config
513 */
b3d31955 514 char writemostly; /* 1 for 'set writemostly', 2 for 'clear writemostly' */
70c55e36 515 int used; /* set when used */
72ca9bcf 516 long long data_offset;
a655e550
N
517 struct mddev_dev *next;
518};
64c4757e 519
682c7051
NB
520typedef struct mapping {
521 char *name;
522 int num;
523} mapping_t;
524
e0d19036 525struct mdstat_ent {
4dd2df09 526 char devnm[32];
e0d19036
NB
527 int active;
528 char *level;
529 char *pattern; /* U or up, _ for down */
530 int percent; /* -1 if no resync */
f94c116f 531 int resync; /* 3 if check, 2 if reshape, 1 if resync, 0 if recovery */
549e9569
NB
532 int devcnt;
533 int raid_disks;
549e9569 534 char * metadata_version;
3b57c466
N
535 struct dev_member {
536 char *name;
537 struct dev_member *next;
1011e834 538 } *members;
e0d19036
NB
539 struct mdstat_ent *next;
540};
541
22a88995 542extern struct mdstat_ent *mdstat_read(int hold, int start);
a7a0d8a1 543extern void mdstat_close(void);
e0d19036 544extern void free_mdstat(struct mdstat_ent *ms);
dd0781e5 545extern void mdstat_wait(int seconds);
58a4ba2a 546extern void mdstat_wait_fd(int fd, const sigset_t *sigmask);
4dd2df09 547extern int mddev_busy(char *devnm);
3b57c466 548extern struct mdstat_ent *mdstat_by_component(char *name);
4dd2df09 549extern struct mdstat_ent *mdstat_by_subdev(char *subdev, char *container);
8382f19b
NB
550
551struct map_ent {
552 struct map_ent *next;
4dd2df09 553 char devnm[32];
1522c538 554 char metadata[20];
8382f19b 555 int uuid[4];
195254b8 556 int bad;
8382f19b
NB
557 char *path;
558};
4dd2df09 559extern int map_update(struct map_ent **mpp, char *devnm, char *metadata,
8382f19b 560 int uuid[4], char *path);
4dd2df09 561extern void map_remove(struct map_ent **map, char *devnm);
8382f19b 562extern struct map_ent *map_by_uuid(struct map_ent **map, int uuid[4]);
4dd2df09 563extern struct map_ent *map_by_devnm(struct map_ent **map, char *devnm);
eb2306f8 564extern void map_free(struct map_ent *map);
f2e55ecc 565extern struct map_ent *map_by_name(struct map_ent **map, char *name);
8382f19b
NB
566extern void map_read(struct map_ent **melp);
567extern int map_write(struct map_ent *mel);
4dd2df09 568extern void map_delete(struct map_ent **mapp, char *devnm);
8382f19b 569extern void map_add(struct map_ent **melp,
4dd2df09 570 char *devnm, char *metadata, int uuid[4], char *path);
ad5bc697
N
571extern int map_lock(struct map_ent **melp);
572extern void map_unlock(struct map_ent **melp);
cc700db3 573extern void map_fork(void);
e0d19036 574
e86c9dd6 575/* various details can be requested */
dab4a513
DW
576enum sysfs_read_flags {
577 GET_LEVEL = (1 << 0),
578 GET_LAYOUT = (1 << 1),
579 GET_COMPONENT = (1 << 2),
580 GET_CHUNK = (1 << 3),
581 GET_CACHE = (1 << 4),
582 GET_MISMATCH = (1 << 5),
583 GET_VERSION = (1 << 6),
584 GET_DISKS = (1 << 7),
585 GET_DEGRADED = (1 << 8),
586 GET_SAFEMODE = (1 << 9),
c0c1acd6
N
587 GET_BITMAP_LOCATION = (1 << 10),
588
589 GET_DEVS = (1 << 20), /* gets role, major, minor */
590 GET_OFFSET = (1 << 21),
591 GET_SIZE = (1 << 22),
592 GET_STATE = (1 << 23),
593 GET_ERROR = (1 << 24),
5aa644c6 594 GET_ARRAY_STATE = (1 << 25),
dab4a513 595};
e86c9dd6
NB
596
597/* If fd >= 0, get the array it is open on,
4dd2df09 598 * else use devnm.
e86c9dd6 599 */
4dd2df09
N
600extern int sysfs_open(char *devnm, char *devname, char *attr);
601extern void sysfs_init(struct mdinfo *mdi, int fd, char *devnm);
9465f170 602extern void sysfs_init_dev(struct mdinfo *mdi, unsigned long devid);
7e0f6979 603extern void sysfs_free(struct mdinfo *sra);
4dd2df09 604extern struct mdinfo *sysfs_read(int fd, char *devnm, unsigned long options);
1770662b
DW
605extern int sysfs_attr_match(const char *attr, const char *str);
606extern int sysfs_match_word(const char *word, char **list);
7e0f6979 607extern int sysfs_set_str(struct mdinfo *sra, struct mdinfo *dev,
e86c9dd6 608 char *name, char *val);
7e0f6979 609extern int sysfs_set_num(struct mdinfo *sra, struct mdinfo *dev,
e86c9dd6 610 char *name, unsigned long long val);
012a8641
JS
611extern int sysfs_set_num_signed(struct mdinfo *sra, struct mdinfo *dev,
612 char *name, long long val);
97590376 613extern int sysfs_uevent(struct mdinfo *sra, char *event);
7236ee7a
N
614extern int sysfs_get_fd(struct mdinfo *sra, struct mdinfo *dev,
615 char *name);
616extern int sysfs_fd_get_ll(int fd, unsigned long long *val);
7e0f6979 617extern int sysfs_get_ll(struct mdinfo *sra, struct mdinfo *dev,
e86c9dd6 618 char *name, unsigned long long *val);
2eba8496
N
619extern int sysfs_fd_get_two(int fd, unsigned long long *v1, unsigned long long *v2);
620extern int sysfs_get_two(struct mdinfo *sra, struct mdinfo *dev,
621 char *name, unsigned long long *v1, unsigned long long *v2);
7236ee7a 622extern int sysfs_fd_get_str(int fd, char *val, int size);
bc77ed53
DW
623extern int sysfs_attribute_available(struct mdinfo *sra, struct mdinfo *dev,
624 char *name);
93ecfa01
N
625extern int sysfs_get_str(struct mdinfo *sra, struct mdinfo *dev,
626 char *name, char *val, int size);
8ed3e5e1 627extern int sysfs_set_safemode(struct mdinfo *sra, unsigned long ms);
f35f2525 628extern int sysfs_set_array(struct mdinfo *info, int vers);
2904b26f 629extern int sysfs_add_disk(struct mdinfo *sra, struct mdinfo *sd, int resume);
f1665f72 630extern int sysfs_disk_to_scsi_id(int fd, __u32 *id);
4dd2df09 631extern int sysfs_unique_holder(char *devnm, long rdev);
bc77ed53 632extern int sysfs_freeze_array(struct mdinfo *sra);
efc67e8e 633extern int sysfs_wait(int fd, int *msec);
193b6c0b 634extern int load_sys(char *path, char *buf, int len);
130994cb
AK
635extern int reshape_prepare_fdlist(char *devname,
636 struct mdinfo *sra,
637 int raid_disks,
638 int nrdisks,
639 unsigned long blocks,
640 char *backup_file,
641 int *fdlist,
642 unsigned long long *offsets);
643extern void reshape_free_fdlist(int *fdlist,
644 unsigned long long *offsets,
645 int size);
e6e9d47b
AK
646extern int reshape_open_backup_file(char *backup,
647 int fd,
648 char *devname,
649 long blocks,
650 int *fdlist,
a93f87ee 651 unsigned long long *offsets,
54ded86f 652 char *sysfs_name,
a93f87ee 653 int restart);
1c009fc2
AK
654extern unsigned long compute_backup_blocks(int nchunk, int ochunk,
655 unsigned int ndata, unsigned int odata);
54ded86f
N
656extern char *locate_backup(char *name);
657extern char *make_backup(char *name);
e86c9dd6
NB
658
659extern int save_stripes(int *source, unsigned long long *offsets,
660 int raid_disks, int chunk_size, int level, int layout,
661 int nwrites, int *dest,
a6288483
N
662 unsigned long long start, unsigned long long length,
663 char *buf);
353632d9
NB
664extern int restore_stripes(int *dest, unsigned long long *offsets,
665 int raid_disks, int chunk_size, int level, int layout,
666 int source, unsigned long long read_offset,
2fcb75ae
AK
667 unsigned long long start, unsigned long long length,
668 char *src_buf);
e86c9dd6 669
52826846
NB
670#ifndef Sendmail
671#define Sendmail "/usr/lib/sendmail -t"
672#endif
673
773135f5
NB
674#define SYSLOG_FACILITY LOG_DAEMON
675
682c7051
NB
676extern char *map_num(mapping_t *map, int num);
677extern int map_name(mapping_t *map, char *name);
b640a252 678extern mapping_t r5layout[], r6layout[], pers[], modes[], faultylayout[];
682c7051 679
c2ecf5f6
N
680extern char *map_dev_preferred(int major, int minor, int create,
681 char *prefer);
682static inline char *map_dev(int major, int minor, int create)
683{
684 return map_dev_preferred(major, minor, create, NULL);
685}
64c4757e 686
549e9569 687struct active_array;
2e735d19 688struct metadata_update;
64c4757e 689
80bf9135 690/* 'struct reshape' records the intermediate states of
999b4972
N
691 * a general reshape.
692 * The starting geometry is converted to the 'before' geometry
693 * by at most an atomic level change. They could be the same.
694 * Similarly the 'after' geometry is converted to the final
695 * geometry by at most a level change.
696 * Note that 'before' and 'after' must have the same level.
697 * 'blocks' is the minimum number of sectors for a reshape unit.
698 * This will be a multiple of the stripe size in each of the
699 * 'before' and 'after' geometries.
700 * If 'blocks' is 0, no restriping is necessary.
89ecd3cf
N
701 * 'min_offset_change' is the minimum change to data_offset to
702 * allow the reshape to happen. It is at least the larger of
703 * the old and new chunk sizes, and typically the same as 'blocks'
704 * divided by number of data disks.
999b4972
N
705 */
706struct reshape {
707 int level;
708 int parity; /* number of parity blocks/devices */
709 struct {
710 int layout;
711 int data_disks;
712 } before, after;
713 unsigned long long backup_blocks;
89ecd3cf 714 unsigned long long min_offset_change;
999b4972
N
715 unsigned long long stripes; /* number of old stripes that comprise 'blocks'*/
716 unsigned long long new_size; /* New size of array in sectors */
717};
718
6adfd3af
NB
719/* A superswitch provides entry point the a metadata handler.
720 *
74db60b0 721 * The superswitch primarily operates on some "metadata" that
6adfd3af
NB
722 * is accessed via the 'supertype'.
723 * This metadata has one of three possible sources.
724 * 1/ It is read from a single device. In this case it may not completely
725 * describe the array or arrays as some information might be on other
726 * devices.
727 * 2/ It is read from all devices in a container. In this case all
728 * information is present.
729 * 3/ It is created by ->init_super / ->add_to_super. In this case it will
730 * be complete once enough ->add_to_super calls have completed.
731 *
732 * When creating an array inside a container, the metadata will be
733 * formed by a combination of 2 and 3. The metadata or the array is read,
734 * then new information is added.
735 *
736 * The metadata must sometimes have a concept of a 'current' array
737 * and a 'current' device.
738 * The 'current' array is set by init_super to be the newly created array,
739 * or is set by super_by_fd when it finds it is looking at an array inside
740 * a container.
741 *
742 * The 'current' device is either the device that the metadata was read from
743 * in case 1, or the last device added by add_to_super in case 3.
744 * Case 2 does not identify a 'current' device.
745 */
f9ce90ba 746extern struct superswitch {
6adfd3af
NB
747
748 /* Used to report details of metadata read from a component
749 * device. ->load_super has been called.
750 */
3da92f27 751 void (*examine_super)(struct supertype *st, char *homehost);
061f2c6a 752 void (*brief_examine_super)(struct supertype *st, int verbose);
4737ae25 753 void (*brief_examine_subarrays)(struct supertype *st, int verbose);
0d726f17 754 void (*export_examine_super)(struct supertype *st);
6d388a88 755 int (*examine_badblocks)(struct supertype *st, int fd, char *devname);
74db60b0 756 int (*copy_metadata)(struct supertype *st, int from, int to);
6adfd3af
NB
757
758 /* Used to report details of an active array.
759 * ->load_super was possibly given a 'component' string.
760 */
3da92f27 761 void (*detail_super)(struct supertype *st, char *homehost);
3da92f27 762 void (*brief_detail_super)(struct supertype *st);
0d726f17 763 void (*export_detail_super)(struct supertype *st);
6adfd3af 764
4cce4069 765 /* Optional: platform hardware / firmware details */
9eafa1de
MN
766 int (*detail_platform)(int verbose, int enumerate_only, char *controller_path);
767 int (*export_detail_platform)(int verbose, char *controller_path);
4cce4069 768
6adfd3af
NB
769 /* Used:
770 * to get uuid to storing in bitmap metadata
771 * and 'reshape' backup-data metadata
772 * To see if a device is being re-added to an array it was part of.
773 */
3da92f27 774 void (*uuid_from_super)(struct supertype *st, int uuid[4]);
6adfd3af 775
8592f29d 776 /* Extract generic details from metadata. This could be details about
6adfd3af
NB
777 * the container, or about an individual array within the container.
778 * The determination is made either by:
779 * load_super being given a 'component' string.
780 * validate_geometry determining what to create.
d2ca6449
NB
781 * The info includes both array information and device information.
782 * The particular device should be:
783 * The last device added by add_to_super
784 * The device the metadata was loaded from by load_super
a5d85af7
N
785 * If 'map' is present, then it is an array raid_disks long
786 * (raid_disk must already be set and correct) and it is filled
787 * with 1 for slots that are thought to be active and 0 for slots which
788 * appear to be failed/missing.
95eeceeb 789 * *info is zeroed out before data is added.
6adfd3af 790 */
a5d85af7 791 void (*getinfo_super)(struct supertype *st, struct mdinfo *info, char *map);
5c4cd5da 792 struct mdinfo *(*getinfo_super_disks)(struct supertype *st);
6adfd3af 793 /* Check if the given metadata is flagged as belonging to "this"
9362c1c8 794 * host. 0 for 'no', 1 for 'yes', -1 for "Don't record homehost"
6adfd3af 795 */
3da92f27 796 int (*match_home)(struct supertype *st, char *homehost);
6adfd3af
NB
797
798 /* Make one of several generic modifications to metadata
799 * prior to assembly (or other times).
800 * sparc2.2 - first bug in early 0.90 metadata
801 * super-minor - change name of 0.90 metadata
802 * summaries - 'correct' any redundant data
803 * resync - mark array as dirty to trigger a resync.
804 * uuid - set new uuid - only 0.90 or 1.x
805 * name - change the name of the array (where supported)
806 * homehost - change which host this array is tied to.
807 * devicesize - If metadata is at start of device, change recorded
808 * device size to match actual device size
809 * byteorder - swap bytes for 0.90 metadata
810 *
811 * force-one - mark that device as uptodate, not old or failed.
812 * force-array - mark array as clean if it would not otherwise
813 * assemble
814 * assemble - not sure how this is different from force-one...
815 * linear-grow-new - add a new device to a linear array, but don't
816 * change the size: so superblock still matches
817 * linear-grow-update - now change the size of the array.
16715c01
DL
818 * writemostly - set the WriteMostly1 bit in the superblock devflags
819 * readwrite - clear the WriteMostly1 bit in the superblock devflags
199f1a1f
N
820 * no-bitmap - clear any record that a bitmap is present.
821 * bbl - add a bad-block-log if possible
6dd16dac
N
822 * no-bbl - remove any bad-block-log is it is empty.
823 * force-no-bbl - remove any bad-block-log even if empty.
199f1a1f
N
824 * revert-reshape - If a reshape is in progress, modify metadata so
825 * it will resume going in the opposite direction.
6adfd3af 826 */
68c7d6d7 827 int (*update_super)(struct supertype *st, struct mdinfo *info,
3da92f27 828 char *update,
e5eac01f
NB
829 char *devname, int verbose,
830 int uuid_set, char *homehost);
6adfd3af
NB
831
832 /* Create new metadata for new array as described. This could
833 * be a new container, or an array in a pre-existing container.
834 * Also used to zero metadata prior to writing it to invalidate old
835 * metadata.
836 */
3da92f27
NB
837 int (*init_super)(struct supertype *st, mdu_array_info_t *info,
838 unsigned long long size, char *name,
83cd1e97
N
839 char *homehost, int *uuid,
840 unsigned long long data_offset);
6adfd3af
NB
841
842 /* update the metadata to include new device, either at create or
843 * when hot-adding a spare.
844 */
f20c3968 845 int (*add_to_super)(struct supertype *st, mdu_disk_info_t *dinfo,
72ca9bcf
N
846 int fd, char *devname,
847 unsigned long long data_offset);
1a64be56
LM
848 /* update the metadata to delete a device,
849 * when hot-removing.
850 */
851 int (*remove_from_super)(struct supertype *st, mdu_disk_info_t *dinfo);
6adfd3af
NB
852
853 /* Write metadata to one device when fixing problems or adding
854 * a new device.
855 */
3da92f27 856 int (*store_super)(struct supertype *st, int fd);
6adfd3af
NB
857
858 /* Write all metadata for this array.
859 */
111d01fc 860 int (*write_init_super)(struct supertype *st);
e2f408a4
N
861 /* Check if metadata read from one device is compatible with an array,
862 * used when assembling an array, or pseudo-assembling was with
863 * "--examine --brief"
864 * If "st" has not yet been loaded the superblock from, "tst" is
865 * moved in, otherwise the superblock in 'st' is compared with
866 * 'tst'.
867 */
64557c33 868 int (*compare_super)(struct supertype *st, struct supertype *tst);
e2f408a4
N
869 /* Load metadata from a single device. If 'devname' is not NULL
870 * print error messages as appropriate */
3da92f27 871 int (*load_super)(struct supertype *st, int fd, char *devname);
e2f408a4
N
872 /* 'fd' is a 'container' md array - load array metadata from the
873 * whole container.
874 */
2b959fbf 875 int (*load_container)(struct supertype *st, int fd, char *devname);
e2f408a4
N
876 /* If 'arg' is a valid name of this metadata type, allocate and
877 * return a 'supertype' for the particular minor version */
82d9eba6 878 struct supertype * (*match_metadata_desc)(char *arg);
e2f408a4
N
879 /* If a device has the given size, and the data_offset has been
880 * requested - work out how much space is available for data.
881 * This involves adjusting for reserved space (e.g. bitmaps)
882 * and for any rounding.
883 * 'mdadm' only calls this for existing arrays where a possible
884 * spare is being added. However some super-handlers call it
885 * internally from validate_geometry when creating an array.
886 */
387fcd59
N
887 __u64 (*avail_size)(struct supertype *st, __u64 size,
888 unsigned long long data_offset);
e2f408a4
N
889 /* This is similar to 'avail_size' in purpose, but is used for
890 * containers for which there is no 'component size' to compare.
891 * This reports that whole-device size which is a minimum
892 */
80e7f8c3 893 unsigned long long (*min_acceptable_spare_size)(struct supertype *st);
e2f408a4
N
894 /* Find somewhere to put a bitmap - possibly auto-size it - and
895 * update the metadata to record this. The array may be newly
896 * created, in which case data_size may be updated, or it might
897 * already exist. Metadata handler can know if init_super
898 * has been called, but not write_init_super.
2ec2b7e9
JS
899 * 0: Success
900 * -Exxxx: On error
e2f408a4 901 */
3da92f27 902 int (*add_internal_bitmap)(struct supertype *st, int *chunkp,
199171a2 903 int delay, int write_behind,
f9c25f1d 904 unsigned long long size, int may_change, int major);
e2f408a4
N
905 /* Seek 'fd' to start of write-intent-bitmap. Must be an
906 * md-native format bitmap
907 */
b138214f 908 int (*locate_bitmap)(struct supertype *st, int fd, int node_num);
e2f408a4
N
909 /* if add_internal_bitmap succeeded for existing array, this
910 * writes it out.
911 */
0aa2f15b 912 int (*write_bitmap)(struct supertype *st, int fd, enum bitmap_update update);
e2f408a4 913 /* Free the superblock and any other allocated data */
3da92f27 914 void (*free_super)(struct supertype *st);
78e44928
NB
915
916 /* validate_geometry is called with an st returned by
917 * match_metadata_desc.
e2f408a4 918 * It should check that the geometry described is compatible with
78e44928
NB
919 * the metadata type. It will be called repeatedly as devices
920 * added to validate changing size and new devices. If there are
921 * inter-device dependencies, it should record sufficient details
922 * so these can be validated.
30f58b22 923 * Both 'size' and '*freesize' are in sectors. chunk is KiB.
ecbd9e81
N
924 * Return value is:
925 * 1: everything is OK
926 * 0: not OK for some reason - if 'verbose', then error was reported.
927 * -1: st->sb was NULL, 'subdev' is a member of a container of this
e2f408a4 928 * type, but array is not acceptable for some reason
ecbd9e81 929 * message was reported even if verbose is 0.
78e44928 930 */
17f25ca6
NB
931 int (*validate_geometry)(struct supertype *st, int level, int layout,
932 int raiddisks,
c21e737b 933 int *chunk, unsigned long long size,
af4348dd 934 unsigned long long data_offset,
2c514b71
NB
935 char *subdev, unsigned long long *freesize,
936 int verbose);
598f0d58 937
e2f408a4
N
938 /* Return a linked list of 'mdinfo' structures for all arrays
939 * in the container. For non-containers, it is like
940 * getinfo_super with an allocated mdinfo.*/
00bbdbda 941 struct mdinfo *(*container_content)(struct supertype *st, char *subarray);
30f58b22
DW
942 /* query the supertype for default geometry */
943 void (*default_geometry)(struct supertype *st, int *level, int *layout, int *chunk); /* optional */
33414a01
DW
944 /* Permit subarray's to be deleted from inactive containers */
945 int (*kill_subarray)(struct supertype *st); /* optional */
aa534678 946 /* Permit subarray's to be modified */
a951a4f7 947 int (*update_subarray)(struct supertype *st, char *subarray,
fa56eddb 948 char *update, struct mddev_ident *ident); /* optional */
7bc71196
DW
949 /* Check if reshape is supported for this external format.
950 * st is obtained from super_by_fd() where st->subarray[0] is
951 * initialized to indicate if reshape is being performed at the
952 * container or subarray level
953 */
016e00f5
AK
954#define APPLY_METADATA_CHANGES 1
955#define ROLLBACK_METADATA_CHANGES 0
956
d04f65f4
N
957 int (*reshape_super)(struct supertype *st,
958 unsigned long long size, int level,
7bc71196 959 int layout, int chunksize, int raid_disks,
41784c88 960 int delta_disks, char *backup, char *dev,
016e00f5 961 int direction,
41784c88 962 int verbose); /* optional */
999b4972
N
963 int (*manage_reshape)( /* optional */
964 int afd, struct mdinfo *sra, struct reshape *reshape,
965 struct supertype *st, unsigned long blocks,
966 int *fds, unsigned long long *offsets,
967 int dests, int *destfd, unsigned long long *destoffsets);
598f0d58 968
549e9569 969/* for mdmon */
cba0191b
NB
970 int (*open_new)(struct supertype *c, struct active_array *a,
971 char *inst);
ed9d66aa
NB
972
973 /* Tell the metadata handler the current state of the array.
974 * This covers whether it is known to be consistent (no pending writes)
01f157d7 975 * and how far along a resync is known to have progressed
ed9d66aa
NB
976 * (in a->resync_start).
977 * resync status is really irrelevant if the array is not consistent,
978 * but some metadata (DDF!) have a place to record the distinction.
1011e834 979 * If 'consistent' is '2', then the array can mark it dirty if a
01f157d7
N
980 * resync/recovery/whatever is required, or leave it clean if not.
981 * Return value is 0 dirty (not consistent) and 1 if clean.
982 * it is only really important if consistent is passed in as '2'.
4e5528c6 983 */
01f157d7 984 int (*set_array_state)(struct active_array *a, int consistent);
7a7cc504
NB
985
986 /* When the state of a device might have changed, we call set_disk to
987 * tell the metadata what the current state is.
988 * Typically this happens on spare->in_sync and (spare|in_sync)->faulty
989 * transitions.
990 * set_disk might be called when the state of the particular disk has
991 * not in fact changed.
992 */
8d45d196 993 void (*set_disk)(struct active_array *a, int n, int state);
2e735d19
NB
994 void (*sync_metadata)(struct supertype *st);
995 void (*process_update)(struct supertype *st,
996 struct metadata_update *update);
5fe6f031
N
997 /* Prepare updates allocates extra memory that might be
998 * needed. If the update cannot be understood, return 0.
999 */
1000 int (*prepare_update)(struct supertype *st,
edd8d13c 1001 struct metadata_update *update);
549e9569 1002
6c3fb95c
NB
1003 /* activate_spare will check if the array is degraded and, if it
1004 * is, try to find some spare space in the container.
1005 * On success, it add appropriate updates (For process_update) to
1006 * to the 'updates' list and returns a list of 'mdinfo' identifying
1007 * the device, or devices as there might be multiple missing
1008 * devices and multiple spares available.
1009 */
1010 struct mdinfo *(*activate_spare)(struct active_array *a,
1011 struct metadata_update **updates);
2cda7640
ML
1012 /*
1013 * Return statically allocated string that represents metadata specific
1014 * controller domain of the disk. The domain is used in disk domain
1015 * matching functions. Disks belong to the same domain if the they have
1016 * the same domain from mdadm.conf and belong the same metadata domain.
1017 * Returning NULL or not providing this handler means that metadata
1018 * does not distinguish the differences between disks that belong to
1019 * different controllers. They are in the domain specified by
1020 * configuration file (mdadm.conf).
1021 * In case when the metadata has the notion of domains based on disk
1022 * it shall return NULL for disks that do not belong to the controller
1023 * the supported domains. Such disks will form another domain and won't
1024 * be mixed with supported ones.
1025 */
1026 const char *(*get_disk_controller_domain)(const char *path);
549e9569 1027
ba53ea59
AK
1028 /* for external backup area */
1029 int (*recover_backup)(struct supertype *st, struct mdinfo *info);
1030
0c21b485
PB
1031 /* validate container after assemble */
1032 int (*validate_container)(struct mdinfo *info);
1033
f277ce36 1034 int swapuuid; /* true if uuid is bigending rather than hostendian */
d03373f1 1035 int external;
4cce4069 1036 const char *name; /* canonical metadata name */
0f22b998 1037} *superlist[];
82d9eba6 1038
0f22b998
N
1039extern struct superswitch super0, super1;
1040extern struct superswitch super_imsm, super_ddf;
0592faeb 1041extern struct superswitch mbr, gpt;
cdddbdbc 1042
edd8d13c
NB
1043struct metadata_update {
1044 int len;
1045 char *buf;
1046 void *space; /* allocated space that monitor will use */
cb23f1f4
N
1047 void **space_list; /* list of allocated spaces that monitor can
1048 * use or that it returned.
1049 */
edd8d13c
NB
1050 struct metadata_update *next;
1051};
1052
6adfd3af
NB
1053/* A supertype holds a particular collection of metadata.
1054 * It identifies the metadata type by the superswitch, and the particular
1055 * sub-version of that metadata type.
1056 * metadata read in or created is stored in 'sb' and 'info'.
1057 * There are also fields used by mdmon to track containers.
1058 *
352452c3
N
1059 * A supertype may refer to:
1060 * Just an array, possibly in a container
1061 * A container, not identifying any particular array
1062 * Info read from just one device, not yet fully describing the array/container.
1063 *
1064 *
6adfd3af
NB
1065 * A supertype is created by:
1066 * super_by_fd
1067 * guess_super
1068 * dup_super
1069 */
82d9eba6
NB
1070struct supertype {
1071 struct superswitch *ss;
1072 int minor_version;
ea329559 1073 int max_devs;
4dd2df09 1074 char container_devnm[32]; /* devnm of container */
64557c33 1075 void *sb;
111d01fc 1076 void *info;
afa368f4
N
1077 void *other; /* Hack used to convert v0.90 to v1.0 */
1078 unsigned long long devsize;
23bf42cc 1079 unsigned long long data_offset; /* used by v1.x only */
df3346e6
LM
1080 int ignore_hw_compat; /* used to inform metadata handlers that it should ignore
1081 HW/firmware related incompatability to load metadata.
1082 Used when examining metadata to display content of disk
1083 when user has no hw/firmare compatible system.
1084 */
edd8d13c
NB
1085 struct metadata_update *updates;
1086 struct metadata_update **update_tail;
1087
549e9569
NB
1088 /* extra stuff used by mdmon */
1089 struct active_array *arrays;
549e9569 1090 int sock; /* listen to external programs */
4dd2df09
N
1091 char devnm[32]; /* e.g. md0. This appears in metadata_version:
1092 * external:/md0/12
1093 */
549e9569 1094 int devcnt;
68226a80 1095 int retry_soon;
529e2aa5 1096 int nodes;
7716570e 1097 char *cluster_name;
549e9569
NB
1098
1099 struct mdinfo *devs;
1100
82d9eba6 1101};
f9ce90ba 1102
4725bc31 1103extern struct supertype *super_by_fd(int fd, char **subarray);
54887ad8
N
1104enum guess_types { guess_any, guess_array, guess_partitions };
1105extern struct supertype *guess_super_type(int fd, enum guess_types guess_type);
1106static inline struct supertype *guess_super(int fd) {
1107 return guess_super_type(fd, guess_any);
1108}
3da92f27 1109extern struct supertype *dup_super(struct supertype *st);
beae1dfe 1110extern int get_dev_size(int fd, char *dname, unsigned long long *sizep);
3a371610 1111extern int must_be_container(int fd);
0f0749ad 1112extern int dev_size_from_id(dev_t id, unsigned long long *size);
a7c6e3fb 1113void wait_for(char *dev, int fd);
f9ce90ba 1114
5527fc74
N
1115/*
1116 * Data structures for policy management.
1117 * Each device can have a policy structure that lists
1118 * various name/value pairs each possibly with a metadata associated.
1119 * The policy list is sorted by name/value/metadata
1120 */
1121struct dev_policy {
1122 struct dev_policy *next;
1123 char *name; /* None of these strings are allocated. They are
1124 * all just references to strings which are known
1125 * to exist elsewhere.
1126 * name and metadata can be compared by address equality.
1127 */
1128 const char *metadata;
2cda7640 1129 const char *value;
5527fc74
N
1130};
1131
4e8d9f0a 1132extern char pol_act[], pol_domain[], pol_metadata[], pol_auto[];
5527fc74
N
1133
1134/* iterate over the sublist starting at list, having the same
1135 * 'name' as 'list', and matching the given metadata (Where
1136 * NULL matches anything
1137 */
1138#define pol_for_each(item, list, _metadata) \
1139 for (item = list; \
1140 item && item->name == list->name; \
1141 item = item->next) \
1142 if (!(!_metadata || !item->metadata || _metadata == item->metadata)) \
1143 ; else
1144
1145/*
1146 * policy records read from mdadm are largely just name-value pairs.
1147 * The names are constants, not strdupped
1148 */
1149struct pol_rule {
1150 struct pol_rule *next;
1151 char *type; /* rule_policy or rule_part */
1152 struct rule {
1153 struct rule *next;
1154 char *name;
1155 char *value;
1156 char *dups; /* duplicates of 'value' with a partNN appended */
1157 } *rule;
1158};
1159
1160extern char rule_policy[], rule_part[];
1161extern char rule_path[], rule_type[];
1162extern char type_part[], type_disk[];
1163
1164extern void policyline(char *line, char *type);
4e8d9f0a 1165extern void policy_add(char *type, ...);
5527fc74
N
1166extern void policy_free(void);
1167
73c9c47c 1168extern struct dev_policy *path_policy(char *path, char *type);
5527fc74 1169extern struct dev_policy *disk_policy(struct mdinfo *disk);
4dd2df09 1170extern struct dev_policy *devid_policy(int devid);
5527fc74
N
1171extern void dev_policy_free(struct dev_policy *p);
1172
e78dda3b
N
1173//extern void pol_new(struct dev_policy **pol, char *name, char *val, char *metadata);
1174extern void pol_add(struct dev_policy **pol, char *name, char *val, char *metadata);
5527fc74
N
1175extern struct dev_policy *pol_find(struct dev_policy *pol, char *name);
1176
e3bb5f14
N
1177enum policy_action {
1178 act_default,
1179 act_include,
1180 act_re_add,
d2db3045
N
1181 act_spare, /* This only applies to bare devices */
1182 act_spare_same_slot, /* this allows non-bare devices,
1183 * but only if recent removal */
1184 act_force_spare, /* this allow non-bare devices in any case */
e3bb5f14
N
1185 act_err
1186};
1187
1188extern int policy_action_allows(struct dev_policy *plist, const char *metadata,
1189 enum policy_action want);
1190extern int disk_action_allows(struct mdinfo *disk, const char *metadata,
1191 enum policy_action want);
f5f12c84
N
1192
1193struct domainlist {
1194 struct domainlist *next;
2cda7640 1195 const char *dom;
f5f12c84
N
1196};
1197
1198extern int domain_test(struct domainlist *dom, struct dev_policy *pol,
1199 const char *metadata);
1200extern struct domainlist *domain_from_array(struct mdinfo *mdi,
1201 const char *metadata);
4dd2df09 1202extern void domainlist_add_dev(struct domainlist **dom, int devid,
e78dda3b 1203 const char *metadata);
f5f12c84
N
1204extern void domain_free(struct domainlist *dl);
1205extern void domain_merge(struct domainlist **domp, struct dev_policy *pol,
1206 const char *metadata);
e78dda3b 1207void domain_add(struct domainlist **domp, char *domain);
f5f12c84 1208
403410eb
PC
1209extern void policy_save_path(char *id_path, struct map_ent *array);
1210extern int policy_check_path(struct mdinfo *disk, struct map_ent *array);
1211
838acbc2
NB
1212#if __GNUC__ < 3
1213struct stat64;
1214#endif
1215
45e878bb
NB
1216#define HAVE_NFTW we assume
1217#define HAVE_FTW
1218
2df1f269 1219#ifdef __UCLIBC__
45e878bb 1220# include <features.h>
2df1f269
BRF
1221# ifndef __UCLIBC_HAS_LFS__
1222# define lseek64 lseek
1223# endif
45e878bb
NB
1224# ifndef __UCLIBC_HAS_FTW__
1225# undef HAVE_FTW
1226# undef HAVE_NFTW
1227# endif
1228#endif
1229
1230#ifdef __dietlibc__
1231# undef HAVE_NFTW
1232#endif
1233
e39b673e 1234#if defined(__KLIBC__)
1235# undef HAVE_NFTW
1236# undef HAVE_FTW
1237#endif
1238
45e878bb 1239#ifndef HAVE_NFTW
173fc515 1240# define FTW_PHYS 1
45e878bb
NB
1241# ifndef HAVE_FTW
1242 struct FTW {};
173fc515
NB
1243# endif
1244#endif
1245
45e878bb
NB
1246#ifdef HAVE_FTW
1247# include <ftw.h>
1248#endif
1249
173fc515
NB
1250extern int add_dev(const char *name, const struct stat *stb, int flag, struct FTW *s);
1251
64c4757e 1252extern int Manage_ro(char *devname, int fd, int readonly);
d5a40416 1253extern int Manage_run(char *devname, int fd, struct context *c);
fe7e0e64
N
1254extern int Manage_stop(char *devname, int fd, int quiet,
1255 int will_retry);
64c4757e 1256extern int Manage_subdevs(char *devname, int fd,
833bb0f8 1257 struct mddev_dev *devlist, int verbose, int test,
11b391ec 1258 char *update, int force);
1f48664b 1259extern int autodetect(void);
e5329c37 1260extern int Grow_Add_device(char *devname, int fd, char *newdev);
50f01ba5
N
1261extern int Grow_addbitmap(char *devname, int fd,
1262 struct context *c, struct shape *s);
32754b7d 1263extern int Grow_reshape(char *devname, int fd,
e2e53a2d 1264 struct mddev_dev *devlist,
40c9a66a 1265 unsigned long long data_offset,
32754b7d 1266 struct context *c, struct shape *s);
06b0d786 1267extern int Grow_restart(struct supertype *st, struct mdinfo *info,
ea0ebe96 1268 int *fdlist, int cnt, char *backup_file, int verbose);
e9e43ec3 1269extern int Grow_continue(int mdfd, struct supertype *st,
b76b30e0 1270 struct mdinfo *info, char *backup_file,
06e293d0 1271 int forked, int freeze_reshape);
b76b30e0 1272
3f54bd62
AK
1273extern int restore_backup(struct supertype *st,
1274 struct mdinfo *content,
1275 int working_disks,
1276 int spares,
54ded86f 1277 char **backup_filep,
3f54bd62 1278 int verbose);
2dddadb0
AK
1279extern int Grow_continue_command(char *devname, int fd,
1280 char *backup_file, int verbose);
64c4757e 1281
7f91af49 1282extern int Assemble(struct supertype *st, char *mddev,
fa56eddb 1283 struct mddev_ident *ident,
87f26d14 1284 struct mddev_dev *devlist,
4977146a 1285 struct context *c);
64c4757e 1286
a4e8316a
N
1287extern int Build(char *mddev, struct mddev_dev *devlist,
1288 struct shape *s, struct context *c);
64c4757e 1289
7f91af49 1290extern int Create(struct supertype *st, char *mddev,
171dccc8 1291 char *name, int *uuid,
a655e550 1292 int subdevs, struct mddev_dev *devlist,
99cc42f4 1293 struct shape *s,
40c9a66a
N
1294 struct context *c,
1295 unsigned long long data_offset);
64c4757e 1296
ef898ce6 1297extern int Detail(char *dev, struct context *c);
9eafa1de 1298extern int Detail_Platform(struct superswitch *ss, int scan, int verbose, int export, char *controller_path);
e0d19036 1299extern int Query(char *dev);
6d388a88 1300extern int ExamineBadblocks(char *devname, int brief, struct supertype *forcest);
eec3f887
N
1301extern int Examine(struct mddev_dev *devlist, struct context *c,
1302 struct supertype *forcest);
a655e550 1303extern int Monitor(struct mddev_dev *devlist,
e0d19036 1304 char *mailaddr, char *alert_cmd,
95c50205
N
1305 struct context *c,
1306 int daemonise, int oneshot,
1307 int dosyslog, char *pidfile, int increments,
1308 int share);
64c4757e 1309
ba728be7
N
1310extern int Kill(char *dev, struct supertype *st, int force, int verbose, int noexcl);
1311extern int Kill_subarray(char *dev, char *subarray, int verbose);
fa56eddb 1312extern int Update_subarray(char *dev, char *subarray, char *update, struct mddev_ident *ident, int quiet);
b90c0e9a 1313extern int Wait(char *dev);
9f1da824 1314extern int WaitClean(char *dev, int sock, int verbose);
a740cf64 1315extern int SetAction(char *dev, char *action);
9a9dab36 1316
b11fe74d 1317extern int Incremental(struct mddev_dev *devlist, struct context *c,
11b6d91d 1318 struct supertype *st);
8382f19b 1319extern void RebuildMap(void);
d5a40416 1320extern int IncrementalScan(struct context *c, char *devnm);
950bc344 1321extern int IncrementalRemove(char *devname, char *path, int verbose);
c82f047c
NB
1322extern int CreateBitmap(char *filename, int force, char uuid[16],
1323 unsigned long chunksize, unsigned long daemon_sleep,
dfd4d8ee 1324 unsigned long write_behind,
dcec9ee5
NB
1325 unsigned long long array_size,
1326 int major);
55935d51 1327extern int ExamineBitmap(char *filename, int brief, struct supertype *st);
20b60dcd 1328extern int Write_rules(char *rule_name);
bf4fb153 1329extern int bitmap_update_uuid(int fd, int *uuid, int swap);
2a528478 1330extern unsigned long bitmap_sectors(struct bitmap_super_s *bsb);
74db60b0
N
1331extern int Dump_metadata(char *dev, char *dir, struct context *c,
1332 struct supertype *st);
1333extern int Restore_metadata(char *dev, char *dir, struct context *c,
1334 struct supertype *st, int only);
c82f047c 1335
64c4757e 1336extern int md_get_version(int fd);
e0d19036 1337extern int get_linux_version(void);
bc77ed53 1338extern int mdadm_version(char *version);
51d4261c 1339extern unsigned long long parse_size(char *size);
64c4757e 1340extern int parse_uuid(char *str, int uuid[4]);
4a06e2c2
N
1341extern int parse_layout_10(char *layout);
1342extern int parse_layout_faulty(char *layout);
79868890 1343extern long parse_num(char *num);
4de90913 1344extern int parse_cluster_confirm_arg(char *inp, char **devname, int *slot);
682c7051
NB
1345extern int check_ext2(int fd, char *name);
1346extern int check_reiser(int fd, char *name);
1347extern int check_raid(int fd, char *name);
53ed6ac3
KW
1348extern int check_partitions(int fd, char *dname,
1349 unsigned long long freesize,
1350 unsigned long long size);
64c4757e 1351
dd0781e5 1352extern int get_mdp_major(void);
cc742d38 1353extern int get_maj_min(char *dev, int *major, int *minor);
8b0dabea 1354extern int dev_open(char *dev, int flags);
4dd2df09 1355extern int open_dev(char *devnm);
8832342d 1356extern void reopen_mddev(int mdfd);
4dd2df09
N
1357extern int open_dev_flags(char *devnm, int flags);
1358extern int open_dev_excl(char *devnm);
8d80900b 1359extern int is_standard(char *dev, int *nump);
9008ed1c 1360extern int same_dev(char *one, char *two);
9eafa1de 1361extern int compare_paths (char* path1,char* path2);
a7dec3fd 1362extern void enable_fds(int devices);
dd0781e5 1363
f1ae21c4 1364extern int parse_auto(char *str, char *msg, int config);
fa56eddb 1365extern struct mddev_ident *conf_get_ident(char *dev);
a655e550 1366extern struct mddev_dev *conf_get_devs(void);
8382f19b 1367extern int conf_test_dev(char *devname);
4e8d9f0a 1368extern int conf_test_metadata(const char *version, struct dev_policy *pol, int is_homehost);
8aec876d
NB
1369extern struct createinfo *conf_get_create_info(void);
1370extern void set_conffile(char *file);
1371extern char *conf_get_mailaddr(void);
1372extern char *conf_get_mailfrom(void);
1373extern char *conf_get_program(void);
0ac91628 1374extern char *conf_get_homehost(int *require_homehostp);
7716570e 1375extern char *conf_get_homecluster(void);
e0d19036 1376extern char *conf_line(FILE *file);
98c6faba 1377extern char *conf_word(FILE *file, int allow_key);
7103b9b8
N
1378extern void print_quoted(char *str);
1379extern void print_escape(char *str);
06d2ffc3 1380extern int use_udev(void);
2eba8496 1381extern unsigned long GCD(unsigned long a, unsigned long b);
0ac91628 1382extern int conf_name_is_free(char *name);
7c336758 1383extern int conf_verify_devnames(struct mddev_ident *array_list);
0ac91628 1384extern int devname_matches(char *name, char *match);
2244d1a9
N
1385extern struct mddev_ident *conf_match(struct supertype *st,
1386 struct mdinfo *info,
1387 char *devname,
1388 int verbose, int *rvp);
6d11ec6f 1389extern int experimental(void);
0ac91628 1390
e0d19036
NB
1391extern void free_line(char *line);
1392extern int match_oneof(char *devices, char *devname);
e0d19036 1393extern void uuid_from_super(int uuid[4], mdp_super_t *super);
22e263f6 1394extern const int uuid_zero[4];
f277ce36 1395extern int same_uuid(int a[4], int b[4], int swapuuid);
350f29f9 1396extern void copy_uuid(void *a, int b[4], int swapuuid);
aae5a112 1397extern char *__fname_from_uuid(int id[4], int swap, char *buf, char sep);
d7288ddc 1398extern char *fname_from_uuid(struct supertype *st,
ff54de6e 1399 struct mdinfo *info, char *buf, char sep);
4b1ac34b 1400extern unsigned long calc_csum(void *super, int bytes);
583315d9 1401extern int enough(int level, int raid_disks, int layout, int clean,
de5a472e 1402 char *avail);
8453e704 1403extern int enough_fd(int fd);
e0d19036 1404extern int ask(char *mesg);
8fac0577 1405extern unsigned long long get_component_size(int fd);
0430ed48 1406extern void remove_partitions(int fd);
691c6ee1 1407extern int test_partition(int fd);
bfd76b93 1408extern int test_partition_from_id(dev_t id);
577e8448 1409extern int get_data_disks(int level, int layout, int raid_disks);
5f8097be
NB
1410extern unsigned long long calc_array_size(int level, int raid_disks, int layout,
1411 int chunksize, unsigned long long devsize);
edd8d13c
NB
1412extern int flush_metadata_updates(struct supertype *st);
1413extern void append_metadata_update(struct supertype *st, void *buf, int len);
6234c63c 1414extern int assemble_container_content(struct supertype *st, int mdfd,
11b6d91d
N
1415 struct mdinfo *content,
1416 struct context *c,
9ca39acb
N
1417 char *chosen_name, int *result);
1418#define INCR_NO 1
1419#define INCR_UNSAFE 2
1420#define INCR_ALREADY 4
1421#define INCR_YES 8
326727d9
AC
1422extern struct mdinfo *container_choose_spares(struct supertype *st,
1423 unsigned long long min_size,
1424 struct domainlist *domlist,
1425 char *spare_group,
1426 const char *metadata, int get_one);
d52bb542 1427extern int move_spare(char *from_devname, char *to_devname, dev_t devid);
7801ac20
N
1428extern int add_disk(int mdfd, struct supertype *st,
1429 struct mdinfo *sra, struct mdinfo *info);
de6ae750
N
1430extern int remove_disk(int mdfd, struct supertype *st,
1431 struct mdinfo *sra, struct mdinfo *info);
f35f2525 1432extern int set_array_info(int mdfd, struct supertype *st, struct mdinfo *info);
1e5c6983 1433unsigned long long min_recovery_start(struct mdinfo *array);
cd29a5c8 1434
56eb10c0 1435extern char *human_size(long long bytes);
f0ec6710 1436extern char *human_size_brief(long long bytes, int prefix);
e4965ef8 1437extern void print_r10_layout(int layout);
e0d19036 1438
4dd2df09 1439extern char *find_free_devnm(int use_partitions);
63152c1b 1440
e0d19036 1441extern void put_md_name(char *name);
bc17158d 1442extern char *devid2kname(int devid);
13db17bd
ML
1443extern char *devid2devnm(dev_t devid);
1444extern dev_t devnm2devid(char *devnm);
4dd2df09 1445extern char *get_md_name(char *devnm);
e0d19036 1446
c913b90e 1447extern char DefaultConfFile[];
b5e64645 1448
69207ff6
N
1449extern int create_mddev(char *dev, char *name, int autof, int trustworthy,
1450 char *chosen);
1451/* values for 'trustworthy' */
1452#define LOCAL 1
d1d3482b 1453#define LOCAL_ANY 10
69207ff6
N
1454#define FOREIGN 2
1455#define METADATA 3
6be1d39d 1456extern int open_mddev(char *dev, int report_errors);
a322f70c 1457extern int open_container(int fd);
4dd2df09
N
1458extern int metadata_container_matches(char *metadata, char *devnm);
1459extern int metadata_subdev_matches(char *metadata, char *devnm);
33414a01
DW
1460extern int is_container_member(struct mdstat_ent *ent, char *devname);
1461extern int is_subarray_active(char *subarray, char *devname);
feab51f8 1462extern int open_subarray(char *dev, char *subarray, struct supertype *st, int quiet);
33414a01 1463extern struct superswitch *version_to_superswitch(char *vers);
b5e64645 1464
4dd2df09
N
1465extern int mdmon_running(char *devnm);
1466extern int mdmon_pid(char *devnm);
40ebbb9c 1467extern int check_env(char *name);
148acb7b 1468extern __u32 random32(void);
4dd2df09 1469extern int start_mdmon(char *devnm);
a931db9e 1470
999b4972
N
1471extern int child_monitor(int afd, struct mdinfo *sra, struct reshape *reshape,
1472 struct supertype *st, unsigned long stripes,
1473 int *fds, unsigned long long *offsets,
1474 int dests, int *destfd, unsigned long long *destoffsets);
10f22854 1475void abort_reshape(struct mdinfo *sra);
999b4972 1476
afa368f4
N
1477void *super1_make_v0(struct supertype *st, struct mdinfo *info, mdp_super_t *sb0);
1478
f96b1302
AP
1479extern char *stat2kname(struct stat *st);
1480extern char *fd2kname(int fd);
4dd2df09
N
1481extern char *stat2devnm(struct stat *st);
1482extern char *fd2devnm(int fd);
a931db9e 1483
a9c15847 1484extern int in_initrd(void);
d15a1f72 1485
e80357f8
GJ
1486struct cmap_hooks {
1487 void *cmap_handle; /* corosync lib related */
1488
1489 int (*initialize)(cmap_handle_t *handle);
1490 int (*get_string)(cmap_handle_t handle,
1491 const char *string,
1492 char **name);
1493 int (*finalize)(cmap_handle_t handle);
1494};
1495
1496extern void set_cmap_hooks(void);
1497extern void set_hooks(void);
1498
d15a1f72
GJ
1499struct dlm_hooks {
1500 void *dlm_handle; /* dlm lib related */
1501
1502 dlm_lshandle_t (*create_lockspace)(const char *name,
1503 unsigned int mode);
1504 int (*release_lockspace)(const char *name, dlm_lshandle_t ls,
1505 int force);
1506 int (*ls_lock)(dlm_lshandle_t lockspace, uint32_t mode,
1507 struct dlm_lksb *lksb, uint32_t flags,
1508 const void *name, unsigned int namelen,
1509 uint32_t parent, void (*astaddr) (void *astarg),
1510 void *astarg, void (*bastaddr) (void *astarg),
1511 void *range);
1512 int (*ls_unlock)(dlm_lshandle_t lockspace, uint32_t lkid,
1513 uint32_t flags, struct dlm_lksb *lksb,
1514 void *astarg);
1515 int (*ls_get_fd)(dlm_lshandle_t ls);
1516 int (*dispatch)(int fd);
1517};
1518
7716570e 1519extern int get_cluster_name(char **name);
81a8a694
GJ
1520extern int dlm_funs_ready(void);
1521extern int cluster_get_dlmlock(int *lockid);
1522extern int cluster_release_dlmlock(int lockid);
d15a1f72 1523extern void set_dlm_hooks(void);
a9c15847 1524
2d762ade 1525#define _ROUND_UP(val, base) (((val) + (base) - 1) & ~(base - 1))
de897065
JS
1526#define ROUND_UP(val, base) _ROUND_UP(val, (typeof(val))(base))
1527#define ROUND_UP_PTR(ptr, base) ((typeof(ptr)) \
1528 (ROUND_UP((unsigned long)(ptr), base)))
6416d527 1529
3c558363
N
1530static inline int is_subarray(char *vers)
1531{
e9dd1598 1532 /* The version string for a 'subarray' (an array in a container)
1011e834 1533 * is
e9dd1598 1534 * /containername/componentname for normal read-write arrays
746a6567
N
1535 * -containername/componentname for arrays which mdmon must not
1536 * reconfigure. They might be read-only
1537 * or might be undergoing reshape etc.
e9dd1598
N
1538 * containername is e.g. md0, md_d1
1539 * componentname is dependant on the metadata. e.g. '1' 'S1' ...
1540 */
1541 return (*vers == '/' || *vers == '-');
3c558363
N
1542}
1543
e5408a32
DW
1544static inline char *to_subarray(struct mdstat_ent *ent, char *container)
1545{
1546 return &ent->metadata_version[10+strlen(container)+1];
1547}
1548
2a24d7b6
DW
1549#ifdef DEBUG
1550#define dprintf(fmt, arg...) \
1ade5cc1
N
1551 fprintf(stderr, "%s: %s: "fmt, Name, __func__, ##arg)
1552#define dprintf_cont(fmt, arg...) \
2a24d7b6
DW
1553 fprintf(stderr, fmt, ##arg)
1554#else
1555#define dprintf(fmt, arg...) \
1ade5cc1
N
1556 ({ if (0) fprintf(stderr, "%s: %s: " fmt, Name, __func__, ##arg); 0; })
1557#define dprintf_cont(fmt, arg...) \
2a24d7b6
DW
1558 ({ if (0) fprintf(stderr, fmt, ##arg); 0; })
1559#endif
1a0ee0ba
DK
1560#include <assert.h>
1561#include <stdarg.h>
1562static inline int xasprintf(char **strp, const char *fmt, ...) {
1563 va_list ap;
1564 int ret;
1565 va_start(ap, fmt);
089485cb 1566 ret = vasprintf(strp, fmt, ap);
1a0ee0ba
DK
1567 va_end(ap);
1568 assert(ret >= 0);
1569 return ret;
1570}
2a24d7b6 1571
1ade5cc1
N
1572#ifdef DEBUG
1573#define pr_err(fmt, args...) fprintf(stderr, "%s: %s: "fmt, Name, __func__, ##args)
1574#else
d56dd607 1575#define pr_err(fmt, args...) fprintf(stderr, "%s: "fmt, Name, ##args)
1ade5cc1 1576#endif
e7b84f9d
N
1577#define cont_err(fmt ...) fprintf(stderr, " " fmt)
1578
503975b9
N
1579void *xmalloc(size_t len);
1580void *xrealloc(void *ptr, size_t len);
1581void *xcalloc(size_t num, size_t size);
1582char *xstrdup(const char *str);
1583
b5e64645
NB
1584#define LEVEL_MULTIPATH (-4)
1585#define LEVEL_LINEAR (-1)
1586#define LEVEL_FAULTY (-5)
1587
17f25ca6
NB
1588/* kernel module doesn't know about these */
1589#define LEVEL_CONTAINER (-100)
a322f70c 1590#define LEVEL_UNSUPPORTED (-200)
17f25ca6 1591
56cb05c4
N
1592/* the kernel does know about this one ... */
1593#define LEVEL_NONE (-1000000)
1594
b5e64645
NB
1595/* faulty stuff */
1596
1597#define WriteTransient 0
1598#define ReadTransient 1
1599#define WritePersistent 2
1600#define ReadPersistent 3
1601#define WriteAll 4 /* doesn't go to device */
1602#define ReadFixable 5
1603#define Modes 6
1604
1605#define ClearErrors 31
1606#define ClearFaults 30
1607
1608#define AllPersist 100 /* internal use only */
1609#define NoPersist 101
1610
1611#define ModeMask 0x1f
1612#define ModeShift 5
fe6729fa 1613
fe6729fa
NB
1614#ifdef __TINYC__
1615#undef minor
1616#undef major
1617#undef makedev
1618#define minor(x) ((x)&0xff)
1619#define major(x) (((x)>>8)&0xff)
1620#define makedev(M,m) (((M)<<8) | (m))
1621#endif
1622
b640a252 1623/* for raid4/5/6 */
e86c9dd6
NB
1624#define ALGORITHM_LEFT_ASYMMETRIC 0
1625#define ALGORITHM_RIGHT_ASYMMETRIC 1
1626#define ALGORITHM_LEFT_SYMMETRIC 2
1627#define ALGORITHM_RIGHT_SYMMETRIC 3
b640a252
N
1628
1629/* Define non-rotating (raid4) algorithms. These allow
1630 * conversion of raid4 to raid5.
1631 */
1632#define ALGORITHM_PARITY_0 4 /* P or P,Q are initial devices */
1633#define ALGORITHM_PARITY_N 5 /* P or P,Q are final devices. */
1634
1635/* DDF RAID6 layouts differ from md/raid6 layouts in two ways.
1636 * Firstly, the exact positioning of the parity block is slightly
1637 * different between the 'LEFT_*' modes of md and the "_N_*" modes
1638 * of DDF.
1639 * Secondly, or order of datablocks over which the Q syndrome is computed
1640 * is different.
1641 * Consequently we have different layouts for DDF/raid6 than md/raid6.
1642 * These layouts are from the DDFv1.2 spec.
1643 * Interestingly DDFv1.2-Errata-A does not specify N_CONTINUE but
1644 * leaves RLQ=3 as 'Vendor Specific'
1645 */
1646
1647#define ALGORITHM_ROTATING_ZERO_RESTART 8 /* DDF PRL=6 RLQ=1 */
1648#define ALGORITHM_ROTATING_N_RESTART 9 /* DDF PRL=6 RLQ=2 */
1649#define ALGORITHM_ROTATING_N_CONTINUE 10 /*DDF PRL=6 RLQ=3 */
1650
b640a252
N
1651/* For every RAID5 algorithm we define a RAID6 algorithm
1652 * with exactly the same layout for data and parity, and
1653 * with the Q block always on the last device (N-1).
1654 * This allows trivial conversion from RAID5 to RAID6
1655 */
1656#define ALGORITHM_LEFT_ASYMMETRIC_6 16
1657#define ALGORITHM_RIGHT_ASYMMETRIC_6 17
1658#define ALGORITHM_LEFT_SYMMETRIC_6 18
1659#define ALGORITHM_RIGHT_SYMMETRIC_6 19
1660#define ALGORITHM_PARITY_0_6 20
1661#define ALGORITHM_PARITY_N_6 ALGORITHM_PARITY_N
1662
33a6535d
AW
1663/* Define PATH_MAX in case we don't use glibc or standard library does
1664 * not have PATH_MAX defined. Assume max path length is 4K characters.
1665 */
1666#ifndef PATH_MAX
1667#define PATH_MAX 4096
1668#endif
1669
9dad51d4
N
1670#define RESYNC_NONE -1
1671#define RESYNC_DELAYED -2
1672#define RESYNC_PENDING -3
1673#define RESYNC_UNKNOWN -4
a0963a86 1674
480f3566
N
1675/* When using "GET_DISK_INFO" it isn't certain how high
1676 * we need to check. So we impose an absolute limit of
1677 * MAX_DISKS. This needs to be much more than the largest
1678 * number of devices any metadata can support. Currently
1679 * v1.x can support 1920
1680 */
1681#define MAX_DISKS 4096
1682
d04f65f4
N
1683/* Sometimes the 'size' value passed needs to mean "Maximum".
1684 * In those cases with use MAX_SIZE
1685 */
1686#define MAX_SIZE 1
822e393a
N
1687
1688/* We want to use unsigned numbers for sector counts, but need
1689 * a value for 'invalid'. Use '1'.
1690 */
1691#define INVALID_SECTORS 1
72ca9bcf
N
1692/* And another special number needed for --data_offset=variable */
1693#define VARIABLE_OFFSET 3