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Grow: fix two problems with new_data_offset
[thirdparty/mdadm.git] / Grow.c
CommitLineData
e5329c37
NB
1/*
2 * mdadm - manage Linux "md" devices aka RAID arrays.
3 *
ca3b6696 4 * Copyright (C) 2001-2012 Neil Brown <neilb@suse.de>
e5329c37
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>
e5329c37
NB
23 */
24#include "mdadm.h"
25#include "dlink.h"
7236ee7a 26#include <sys/mman.h>
f9b08fec 27#include <stdint.h>
e5329c37
NB
28
29#if ! defined(__BIG_ENDIAN) && ! defined(__LITTLE_ENDIAN)
30#error no endian defined
31#endif
32#include "md_u.h"
33#include "md_p.h"
34
e9e43ec3
N
35#ifndef offsetof
36#define offsetof(t,f) ((size_t)&(((t*)0)->f))
37#endif
38
3f54bd62
AK
39int restore_backup(struct supertype *st,
40 struct mdinfo *content,
41 int working_disks,
42 int next_spare,
43 char *backup_file,
44 int verbose)
45{
46 int i;
47 int *fdlist;
48 struct mdinfo *dev;
49 int err;
50 int disk_count = next_spare + working_disks;
51
52 dprintf("Called restore_backup()\n");
503975b9
N
53 fdlist = xmalloc(sizeof(int) * disk_count);
54
a7dec3fd 55 enable_fds(next_spare);
3f54bd62
AK
56 for (i = 0; i < next_spare; i++)
57 fdlist[i] = -1;
58 for (dev = content->devs; dev; dev = dev->next) {
59 char buf[22];
60 int fd;
61 sprintf(buf, "%d:%d",
62 dev->disk.major,
63 dev->disk.minor);
64 fd = dev_open(buf, O_RDWR);
65
66 if (dev->disk.raid_disk >= 0)
67 fdlist[dev->disk.raid_disk] = fd;
68 else
69 fdlist[next_spare++] = fd;
70 }
71
72 if (st->ss->external && st->ss->recover_backup)
73 err = st->ss->recover_backup(st, content);
74 else
75 err = Grow_restart(st, content, fdlist, next_spare,
76 backup_file, verbose > 0);
77
78 while (next_spare > 0) {
cc7f63e5
N
79 next_spare--;
80 if (fdlist[next_spare] >= 0)
81 close(fdlist[next_spare]);
3f54bd62
AK
82 }
83 free(fdlist);
84 if (err) {
e7b84f9d
N
85 pr_err("Failed to restore critical"
86 " section for reshape - sorry.\n");
3f54bd62 87 if (!backup_file)
e7b84f9d 88 pr_err("Possibly you need"
3f54bd62
AK
89 " to specify a --backup-file\n");
90 return 1;
91 }
92
93 dprintf("restore_backup() returns status OK.\n");
94 return 0;
95}
96
e5329c37
NB
97int Grow_Add_device(char *devname, int fd, char *newdev)
98{
99 /* Add a device to an active array.
100 * Currently, just extend a linear array.
101 * This requires writing a new superblock on the
102 * new device, calling the kernel to add the device,
103 * and if that succeeds, update the superblock on
104 * all other devices.
105 * This means that we need to *find* all other devices.
106 */
4b1ac34b
NB
107 struct mdinfo info;
108
e5329c37
NB
109 struct stat stb;
110 int nfd, fd2;
111 int d, nd;
82d9eba6 112 struct supertype *st = NULL;
4725bc31 113 char *subarray = NULL;
e5329c37 114
4b1ac34b 115 if (ioctl(fd, GET_ARRAY_INFO, &info.array) < 0) {
e7b84f9d 116 pr_err("cannot get array info for %s\n", devname);
e5329c37
NB
117 return 1;
118 }
119
4725bc31 120 if (info.array.level != -1) {
e7b84f9d 121 pr_err("can only add devices to linear arrays\n");
4725bc31
N
122 return 1;
123 }
124
125 st = super_by_fd(fd, &subarray);
82d9eba6 126 if (!st) {
ca3b6696
N
127 pr_err("cannot handle arrays with superblock version %d\n",
128 info.array.major_version);
f9ce90ba
NB
129 return 1;
130 }
131
4725bc31 132 if (subarray) {
e7b84f9d 133 pr_err("Cannot grow linear sub-arrays yet\n");
4725bc31
N
134 free(subarray);
135 free(st);
2641101b 136 return 1;
e5329c37
NB
137 }
138
6416d527 139 nfd = open(newdev, O_RDWR|O_EXCL|O_DIRECT);
e5329c37 140 if (nfd < 0) {
e7b84f9d 141 pr_err("cannot open %s\n", newdev);
4725bc31 142 free(st);
e5329c37
NB
143 return 1;
144 }
145 fstat(nfd, &stb);
146 if ((stb.st_mode & S_IFMT) != S_IFBLK) {
e7b84f9d 147 pr_err("%s is not a block device!\n", newdev);
e5329c37 148 close(nfd);
4725bc31 149 free(st);
e5329c37
NB
150 return 1;
151 }
ca3b6696
N
152 /* now check out all the devices and make sure we can read the
153 * superblock */
4b1ac34b 154 for (d=0 ; d < info.array.raid_disks ; d++) {
e5329c37
NB
155 mdu_disk_info_t disk;
156 char *dv;
157
4725bc31
N
158 st->ss->free_super(st);
159
e5329c37
NB
160 disk.number = d;
161 if (ioctl(fd, GET_DISK_INFO, &disk) < 0) {
e7b84f9d 162 pr_err("cannot get device detail for device %d\n",
e5329c37 163 d);
4725bc31
N
164 close(nfd);
165 free(st);
e5329c37
NB
166 return 1;
167 }
16c6fa80 168 dv = map_dev(disk.major, disk.minor, 1);
e5329c37 169 if (!dv) {
e7b84f9d 170 pr_err("cannot find device file for device %d\n",
e5329c37 171 d);
4725bc31
N
172 close(nfd);
173 free(st);
e5329c37
NB
174 return 1;
175 }
16c6fa80 176 fd2 = dev_open(dv, O_RDWR);
68fe8c6e 177 if (fd2 < 0) {
e7b84f9d 178 pr_err("cannot open device file %s\n", dv);
4725bc31
N
179 close(nfd);
180 free(st);
e5329c37
NB
181 return 1;
182 }
3da92f27
NB
183
184 if (st->ss->load_super(st, fd2, NULL)) {
e7b84f9d 185 pr_err("cannot find super block on %s\n", dv);
4725bc31 186 close(nfd);
e5329c37 187 close(fd2);
4725bc31 188 free(st);
e5329c37
NB
189 return 1;
190 }
191 close(fd2);
192 }
193 /* Ok, looks good. Lets update the superblock and write it out to
194 * newdev.
195 */
aba69144 196
4b1ac34b
NB
197 info.disk.number = d;
198 info.disk.major = major(stb.st_rdev);
199 info.disk.minor = minor(stb.st_rdev);
200 info.disk.raid_disk = d;
201 info.disk.state = (1 << MD_DISK_SYNC) | (1 << MD_DISK_ACTIVE);
3da92f27 202 st->ss->update_super(st, &info, "linear-grow-new", newdev,
f752781f 203 0, 0, NULL);
e5329c37 204
3da92f27 205 if (st->ss->store_super(st, nfd)) {
e7b84f9d 206 pr_err("Cannot store new superblock on %s\n",
f752781f 207 newdev);
e5329c37
NB
208 close(nfd);
209 return 1;
210 }
e5329c37 211 close(nfd);
4b1ac34b
NB
212
213 if (ioctl(fd, ADD_NEW_DISK, &info.disk) != 0) {
e7b84f9d 214 pr_err("Cannot add new disk to this array\n");
e5329c37
NB
215 return 1;
216 }
217 /* Well, that seems to have worked.
218 * Now go through and update all superblocks
219 */
220
4b1ac34b 221 if (ioctl(fd, GET_ARRAY_INFO, &info.array) < 0) {
e7b84f9d 222 pr_err("cannot get array info for %s\n", devname);
e5329c37
NB
223 return 1;
224 }
225
226 nd = d;
4b1ac34b 227 for (d=0 ; d < info.array.raid_disks ; d++) {
e5329c37
NB
228 mdu_disk_info_t disk;
229 char *dv;
230
231 disk.number = d;
232 if (ioctl(fd, GET_DISK_INFO, &disk) < 0) {
e7b84f9d 233 pr_err("cannot get device detail for device %d\n",
e5329c37
NB
234 d);
235 return 1;
236 }
16c6fa80 237 dv = map_dev(disk.major, disk.minor, 1);
e5329c37 238 if (!dv) {
e7b84f9d 239 pr_err("cannot find device file for device %d\n",
e5329c37
NB
240 d);
241 return 1;
242 }
16c6fa80 243 fd2 = dev_open(dv, O_RDWR);
e5329c37 244 if (fd2 < 0) {
e7b84f9d 245 pr_err("cannot open device file %s\n", dv);
e5329c37
NB
246 return 1;
247 }
3da92f27 248 if (st->ss->load_super(st, fd2, NULL)) {
e7b84f9d 249 pr_err("cannot find super block on %s\n", dv);
e5329c37
NB
250 close(fd);
251 return 1;
252 }
4b1ac34b
NB
253 info.array.raid_disks = nd+1;
254 info.array.nr_disks = nd+1;
255 info.array.active_disks = nd+1;
256 info.array.working_disks = nd+1;
f752781f 257
3da92f27 258 st->ss->update_super(st, &info, "linear-grow-update", dv,
f752781f 259 0, 0, NULL);
aba69144 260
3da92f27 261 if (st->ss->store_super(st, fd2)) {
e7b84f9d 262 pr_err("Cannot store new superblock on %s\n", dv);
e5329c37
NB
263 close(fd2);
264 return 1;
265 }
266 close(fd2);
267 }
268
269 return 0;
270}
f5e166fe 271
50f01ba5 272int Grow_addbitmap(char *devname, int fd, struct context *c, struct shape *s)
f5e166fe
NB
273{
274 /*
275 * First check that array doesn't have a bitmap
276 * Then create the bitmap
277 * Then add it
278 *
279 * For internal bitmaps, we need to check the version,
280 * find all the active devices, and write the bitmap block
281 * to all devices
282 */
283 mdu_bitmap_file_t bmf;
284 mdu_array_info_t array;
285 struct supertype *st;
4725bc31 286 char *subarray = NULL;
dcec9ee5
NB
287 int major = BITMAP_MAJOR_HI;
288 int vers = md_get_version(fd);
8fac0577 289 unsigned long long bitmapsize, array_size;
dcec9ee5
NB
290
291 if (vers < 9003) {
292 major = BITMAP_MAJOR_HOSTENDIAN;
e7b84f9d 293 pr_err("Warning - bitmaps created on this kernel"
b3bd581b
N
294 " are not portable\n"
295 " between different architectures. Consider upgrading"
296 " the Linux kernel.\n");
dcec9ee5 297 }
f5e166fe
NB
298
299 if (ioctl(fd, GET_BITMAP_FILE, &bmf) != 0) {
353632d9 300 if (errno == ENOMEM)
e7b84f9d 301 pr_err("Memory allocation failure.\n");
f5e166fe 302 else
e7b84f9d 303 pr_err("bitmaps not supported by this kernel.\n");
f5e166fe
NB
304 return 1;
305 }
306 if (bmf.pathname[0]) {
50f01ba5 307 if (strcmp(s->bitmap_file,"none")==0) {
fe80f49b 308 if (ioctl(fd, SET_BITMAP_FILE, -1)!= 0) {
e7b84f9d 309 pr_err("failed to remove bitmap %s\n",
fe80f49b
NB
310 bmf.pathname);
311 return 1;
312 }
313 return 0;
314 }
e7b84f9d 315 pr_err("%s already has a bitmap (%s)\n",
f5e166fe
NB
316 devname, bmf.pathname);
317 return 1;
318 }
319 if (ioctl(fd, GET_ARRAY_INFO, &array) != 0) {
e7b84f9d 320 pr_err("cannot get array status for %s\n", devname);
f5e166fe
NB
321 return 1;
322 }
323 if (array.state & (1<<MD_SB_BITMAP_PRESENT)) {
50f01ba5 324 if (strcmp(s->bitmap_file, "none")==0) {
fe80f49b
NB
325 array.state &= ~(1<<MD_SB_BITMAP_PRESENT);
326 if (ioctl(fd, SET_ARRAY_INFO, &array)!= 0) {
e7b84f9d 327 pr_err("failed to remove internal bitmap.\n");
fe80f49b
NB
328 return 1;
329 }
330 return 0;
331 }
e7b84f9d 332 pr_err("Internal bitmap already present on %s\n",
f5e166fe
NB
333 devname);
334 return 1;
335 }
4725bc31 336
50f01ba5 337 if (strcmp(s->bitmap_file, "none") == 0) {
e7b84f9d 338 pr_err("no bitmap found on %s\n", devname);
4725bc31
N
339 return 1;
340 }
5b28bd56 341 if (array.level <= 0) {
e7b84f9d 342 pr_err("Bitmaps not meaningful with level %s\n",
5b28bd56
NB
343 map_num(pers, array.level)?:"of this array");
344 return 1;
345 }
8fac0577
NB
346 bitmapsize = array.size;
347 bitmapsize <<= 1;
beae1dfe 348 if (get_dev_size(fd, NULL, &array_size) &&
8fac0577
NB
349 array_size > (0x7fffffffULL<<9)) {
350 /* Array is big enough that we cannot trust array.size
351 * try other approaches
352 */
353 bitmapsize = get_component_size(fd);
354 }
8fac0577 355 if (bitmapsize == 0) {
e7b84f9d 356 pr_err("Cannot reliably determine size of array to create bitmap - sorry.\n");
8fac0577
NB
357 return 1;
358 }
359
f9c25f1d 360 if (array.level == 10) {
8686f3ed 361 int ncopies = (array.layout&255)*((array.layout>>8)&255);
f9c25f1d
NB
362 bitmapsize = bitmapsize * array.raid_disks / ncopies;
363 }
364
4725bc31 365 st = super_by_fd(fd, &subarray);
f5e166fe 366 if (!st) {
e7b84f9d 367 pr_err("Cannot understand version %d.%d\n",
f5e166fe
NB
368 array.major_version, array.minor_version);
369 return 1;
370 }
4725bc31 371 if (subarray) {
e7b84f9d 372 pr_err("Cannot add bitmaps to sub-arrays yet\n");
4725bc31
N
373 free(subarray);
374 free(st);
fe80f49b 375 return 1;
4725bc31 376 }
50f01ba5 377 if (strcmp(s->bitmap_file, "internal") == 0) {
c0c1acd6 378 int rv;
f5e166fe 379 int d;
c0c1acd6
N
380 int offset_setable = 0;
381 struct mdinfo *mdi;
ebeb3663 382 if (st->ss->add_internal_bitmap == NULL) {
e7b84f9d 383 pr_err("Internal bitmaps not supported "
ebeb3663
N
384 "with %s metadata\n", st->ss->name);
385 return 1;
386 }
4dd2df09 387 mdi = sysfs_read(fd, NULL, GET_BITMAP_LOCATION);
c0c1acd6
N
388 if (mdi)
389 offset_setable = 1;
ea329559 390 for (d=0; d< st->max_devs; d++) {
f5e166fe
NB
391 mdu_disk_info_t disk;
392 char *dv;
393 disk.number = d;
394 if (ioctl(fd, GET_DISK_INFO, &disk) < 0)
395 continue;
396 if (disk.major == 0 &&
397 disk.minor == 0)
398 continue;
399 if ((disk.state & (1<<MD_DISK_SYNC))==0)
400 continue;
16c6fa80 401 dv = map_dev(disk.major, disk.minor, 1);
f5e166fe 402 if (dv) {
16c6fa80 403 int fd2 = dev_open(dv, O_RDWR);
f5e166fe
NB
404 if (fd2 < 0)
405 continue;
3da92f27 406 if (st->ss->load_super(st, fd2, NULL)==0) {
199171a2 407 if (st->ss->add_internal_bitmap(
3da92f27 408 st,
50f01ba5 409 &s->bitmap_chunk, c->delay, s->write_behind,
c0c1acd6
N
410 bitmapsize, offset_setable,
411 major)
199171a2 412 )
3da92f27 413 st->ss->write_bitmap(st, fd2);
21e92547 414 else {
ca3b6696
N
415 pr_err("failed to create internal bitmap"
416 " - chunksize problem.\n");
21e92547
NB
417 close(fd2);
418 return 1;
419 }
f5e166fe
NB
420 }
421 close(fd2);
422 }
423 }
c0c1acd6
N
424 if (offset_setable) {
425 st->ss->getinfo_super(st, mdi, NULL);
4dd2df09 426 sysfs_init(mdi, fd, NULL);
012a8641
JS
427 rv = sysfs_set_num_signed(mdi, NULL, "bitmap/location",
428 mdi->bitmap_offset);
c0c1acd6
N
429 } else {
430 array.state |= (1<<MD_SB_BITMAP_PRESENT);
431 rv = ioctl(fd, SET_ARRAY_INFO, &array);
432 }
433 if (rv < 0) {
ff634064 434 if (errno == EBUSY)
e7b84f9d
N
435 pr_err("Cannot add bitmap while array is"
436 " resyncing or reshaping etc.\n");
437 pr_err("failed to set internal bitmap.\n");
f5e166fe
NB
438 return 1;
439 }
fe80f49b
NB
440 } else {
441 int uuid[4];
442 int bitmap_fd;
443 int d;
444 int max_devs = st->max_devs;
fe80f49b
NB
445
446 /* try to load a superblock */
ca3b6696 447 for (d = 0; d < max_devs; d++) {
fe80f49b
NB
448 mdu_disk_info_t disk;
449 char *dv;
450 int fd2;
451 disk.number = d;
452 if (ioctl(fd, GET_DISK_INFO, &disk) < 0)
453 continue;
454 if ((disk.major==0 && disk.minor==0) ||
455 (disk.state & (1<<MD_DISK_REMOVED)))
456 continue;
16c6fa80 457 dv = map_dev(disk.major, disk.minor, 1);
ca3b6696
N
458 if (!dv)
459 continue;
16c6fa80 460 fd2 = dev_open(dv, O_RDONLY);
e7344e90
JS
461 if (fd2 >= 0) {
462 if (st->ss->load_super(st, fd2, NULL) == 0) {
463 close(fd2);
464 st->ss->uuid_from_super(st, uuid);
465 break;
466 }
fe80f49b 467 close(fd2);
fe80f49b 468 }
fe80f49b
NB
469 }
470 if (d == max_devs) {
e7b84f9d 471 pr_err("cannot find UUID for array!\n");
fe80f49b
NB
472 return 1;
473 }
50f01ba5
N
474 if (CreateBitmap(s->bitmap_file, c->force, (char*)uuid, s->bitmap_chunk,
475 c->delay, s->write_behind, bitmapsize, major)) {
fe80f49b
NB
476 return 1;
477 }
50f01ba5 478 bitmap_fd = open(s->bitmap_file, O_RDWR);
fe80f49b 479 if (bitmap_fd < 0) {
e7b84f9d 480 pr_err("weird: %s cannot be opened\n",
50f01ba5 481 s->bitmap_file);
fe80f49b
NB
482 return 1;
483 }
484 if (ioctl(fd, SET_BITMAP_FILE, bitmap_fd) < 0) {
ff634064
N
485 int err = errno;
486 if (errno == EBUSY)
e7b84f9d
N
487 pr_err("Cannot add bitmap while array is"
488 " resyncing or reshaping etc.\n");
489 pr_err("Cannot set bitmap file for %s: %s\n",
ff634064 490 devname, strerror(err));
fe80f49b
NB
491 return 1;
492 }
493 }
f5e166fe
NB
494
495 return 0;
496}
497
e86c9dd6
NB
498/*
499 * When reshaping an array we might need to backup some data.
500 * This is written to all spares with a 'super_block' describing it.
ff94fb86 501 * The superblock goes 4K from the end of the used space on the
e86c9dd6
NB
502 * device.
503 * It if written after the backup is complete.
504 * It has the following structure.
505 */
506
5fdf37e3 507static struct mdp_backup_super {
7236ee7a 508 char magic[16]; /* md_backup_data-1 or -2 */
e86c9dd6
NB
509 __u8 set_uuid[16];
510 __u64 mtime;
511 /* start/sizes in 512byte sectors */
7236ee7a 512 __u64 devstart; /* address on backup device/file of data */
e86c9dd6
NB
513 __u64 arraystart;
514 __u64 length;
515 __u32 sb_csum; /* csum of preceeding bytes. */
7236ee7a
N
516 __u32 pad1;
517 __u64 devstart2; /* offset in to data of second section */
518 __u64 arraystart2;
519 __u64 length2;
520 __u32 sb_csum2; /* csum of preceeding bytes. */
521 __u8 pad[512-68-32];
5fdf37e3 522} __attribute__((aligned(512))) bsb, bsb2;
e86c9dd6 523
4411fb17 524static __u32 bsb_csum(char *buf, int len)
e86c9dd6
NB
525{
526 int i;
527 int csum = 0;
ca3b6696 528 for (i = 0; i < len; i++)
e86c9dd6
NB
529 csum = (csum<<3) + buf[0];
530 return __cpu_to_le32(csum);
531}
532
d7ca196c
N
533static int check_idle(struct supertype *st)
534{
535 /* Check that all member arrays for this container, or the
536 * container of this array, are idle
537 */
4dd2df09
N
538 char *container = (st->container_devnm[0]
539 ? st->container_devnm : st->devnm);
d7ca196c
N
540 struct mdstat_ent *ent, *e;
541 int is_idle = 1;
24daa16f 542
d7ca196c
N
543 ent = mdstat_read(0, 0);
544 for (e = ent ; e; e = e->next) {
545 if (!is_container_member(e, container))
546 continue;
547 if (e->percent >= 0) {
548 is_idle = 0;
549 break;
550 }
551 }
552 free_mdstat(ent);
553 return is_idle;
554}
555
7f2ba464 556static int freeze_container(struct supertype *st)
7236ee7a 557{
4dd2df09
N
558 char *container = (st->container_devnm[0]
559 ? st->container_devnm : st->devnm);
7f2ba464 560
d7ca196c
N
561 if (!check_idle(st))
562 return -1;
24daa16f 563
7f2ba464 564 if (block_monitor(container, 1)) {
e7b84f9d 565 pr_err("failed to freeze container\n");
7f2ba464
DW
566 return -2;
567 }
568
569 return 1;
570}
571
572static void unfreeze_container(struct supertype *st)
573{
4dd2df09
N
574 char *container = (st->container_devnm[0]
575 ? st->container_devnm : st->devnm);
7f2ba464
DW
576
577 unblock_monitor(container, 1);
578}
579
580static int freeze(struct supertype *st)
581{
582 /* Try to freeze resync/rebuild on this array/container.
7236ee7a 583 * Return -1 if the array is busy,
7f2ba464 584 * return -2 container cannot be frozen,
7236ee7a
N
585 * return 0 if this kernel doesn't support 'frozen'
586 * return 1 if it worked.
587 */
7f2ba464
DW
588 if (st->ss->external)
589 return freeze_container(st);
590 else {
4dd2df09 591 struct mdinfo *sra = sysfs_read(-1, st->devnm, GET_VERSION);
7f2ba464 592 int err;
815c8a7e 593 char buf[20];
7f2ba464
DW
594
595 if (!sra)
596 return -1;
815c8a7e
N
597 /* Need to clear any 'read-auto' status */
598 if (sysfs_get_str(sra, NULL, "array_state", buf, 20) > 0 &&
599 strncmp(buf, "read-auto", 9) == 0)
600 sysfs_set_str(sra, NULL, "array_state", "clean");
601
7f2ba464
DW
602 err = sysfs_freeze_array(sra);
603 sysfs_free(sra);
604 return err;
605 }
7236ee7a
N
606}
607
9202b8eb 608static void unfreeze(struct supertype *st)
7236ee7a 609{
7f2ba464
DW
610 if (st->ss->external)
611 return unfreeze_container(st);
612 else {
4dd2df09 613 struct mdinfo *sra = sysfs_read(-1, st->devnm, GET_VERSION);
7f2ba464
DW
614
615 if (sra)
616 sysfs_set_str(sra, NULL, "sync_action", "idle");
7f2ba464
DW
617 sysfs_free(sra);
618 }
7236ee7a
N
619}
620
4411fb17 621static void wait_reshape(struct mdinfo *sra)
7236ee7a
N
622{
623 int fd = sysfs_get_fd(sra, NULL, "sync_action");
624 char action[20];
625
92a19f1a
AK
626 if (fd < 0)
627 return;
628
629 while (sysfs_fd_get_str(fd, action, 20) > 0 &&
630 strncmp(action, "reshape", 7) == 0) {
7236ee7a
N
631 fd_set rfds;
632 FD_ZERO(&rfds);
633 FD_SET(fd, &rfds);
634 select(fd+1, NULL, NULL, &rfds, NULL);
92a19f1a
AK
635 }
636 close(fd);
7236ee7a 637}
7bc71196 638
7ec0996c
LD
639static int reshape_super(struct supertype *st, unsigned long long size,
640 int level, int layout, int chunksize, int raid_disks,
41784c88 641 int delta_disks, char *backup_file, char *dev,
016e00f5 642 int direction, int verbose)
7bc71196
DW
643{
644 /* nothing extra to check in the native case */
645 if (!st->ss->external)
646 return 0;
647 if (!st->ss->reshape_super ||
648 !st->ss->manage_reshape) {
e7b84f9d 649 pr_err("%s metadata does not support reshape\n",
7bc71196
DW
650 st->ss->name);
651 return 1;
652 }
653
654 return st->ss->reshape_super(st, size, level, layout, chunksize,
41784c88 655 raid_disks, delta_disks, backup_file, dev,
016e00f5 656 direction, verbose);
7bc71196
DW
657}
658
659static void sync_metadata(struct supertype *st)
660{
661 if (st->ss->external) {
76266030 662 if (st->update_tail) {
7bc71196 663 flush_metadata_updates(st);
76266030
N
664 st->update_tail = &st->updates;
665 } else
7bc71196
DW
666 st->ss->sync_metadata(st);
667 }
668}
669
670static int subarray_set_num(char *container, struct mdinfo *sra, char *name, int n)
671{
672 /* when dealing with external metadata subarrays we need to be
673 * prepared to handle EAGAIN. The kernel may need to wait for
674 * mdmon to mark the array active so the kernel can handle
675 * allocations/writeback when preparing the reshape action
676 * (md_allow_write()). We temporarily disable safe_mode_delay
677 * to close a race with the array_state going clean before the
678 * next write to raid_disks / stripe_cache_size
679 */
680 char safe[50];
681 int rc;
682
683 /* only 'raid_disks' and 'stripe_cache_size' trigger md_allow_write */
5da9ab98
N
684 if (!container ||
685 (strcmp(name, "raid_disks") != 0 &&
686 strcmp(name, "stripe_cache_size") != 0))
7bc71196
DW
687 return sysfs_set_num(sra, NULL, name, n);
688
689 rc = sysfs_get_str(sra, NULL, "safe_mode_delay", safe, sizeof(safe));
690 if (rc <= 0)
691 return -1;
692 sysfs_set_num(sra, NULL, "safe_mode_delay", 0);
693 rc = sysfs_set_num(sra, NULL, name, n);
694 if (rc < 0 && errno == EAGAIN) {
695 ping_monitor(container);
696 /* if we get EAGAIN here then the monitor is not active
697 * so stop trying
698 */
699 rc = sysfs_set_num(sra, NULL, name, n);
700 }
701 sysfs_set_str(sra, NULL, "safe_mode_delay", safe);
702 return rc;
703}
704
27a1e5b5
N
705int start_reshape(struct mdinfo *sra, int already_running,
706 int before_data_disks, int data_disks)
47eb4d5a
N
707{
708 int err;
6937e6d2
AK
709 unsigned long long sync_max_to_set;
710
0f28668b 711 sysfs_set_num(sra, NULL, "suspend_lo", 0x7FFFFFFFFFFFFFFFULL);
6937e6d2
AK
712 err = sysfs_set_num(sra, NULL, "suspend_hi", sra->reshape_progress);
713 err = err ?: sysfs_set_num(sra, NULL, "suspend_lo",
714 sra->reshape_progress);
27a1e5b5
N
715 if (before_data_disks <= data_disks)
716 sync_max_to_set = sra->reshape_progress / data_disks;
717 else
718 sync_max_to_set = (sra->component_size * data_disks
719 - sra->reshape_progress) / data_disks;
1e971e71 720 if (!already_running)
6937e6d2
AK
721 sysfs_set_num(sra, NULL, "sync_min", sync_max_to_set);
722 err = err ?: sysfs_set_num(sra, NULL, "sync_max", sync_max_to_set);
1e971e71
N
723 if (!already_running)
724 err = err ?: sysfs_set_str(sra, NULL, "sync_action", "reshape");
47eb4d5a
N
725
726 return err;
727}
728
729void abort_reshape(struct mdinfo *sra)
730{
731 sysfs_set_str(sra, NULL, "sync_action", "idle");
732 sysfs_set_num(sra, NULL, "suspend_lo", 0x7FFFFFFFFFFFFFFFULL);
733 sysfs_set_num(sra, NULL, "suspend_hi", 0);
734 sysfs_set_num(sra, NULL, "suspend_lo", 0);
735 sysfs_set_num(sra, NULL, "sync_min", 0);
736 sysfs_set_str(sra, NULL, "sync_max", "max");
737}
738
dfe77a9e
KW
739int remove_disks_for_takeover(struct supertype *st,
740 struct mdinfo *sra,
741 int layout)
62a48395
AK
742{
743 int nr_of_copies;
744 struct mdinfo *remaining;
745 int slot;
746
dfe77a9e
KW
747 if (sra->array.level == 10)
748 nr_of_copies = layout & 0xff;
749 else if (sra->array.level == 1)
750 nr_of_copies = sra->array.raid_disks;
751 else
752 return 1;
62a48395
AK
753
754 remaining = sra->devs;
755 sra->devs = NULL;
756 /* for each 'copy', select one device and remove from the list. */
757 for (slot = 0; slot < sra->array.raid_disks; slot += nr_of_copies) {
758 struct mdinfo **diskp;
759 int found = 0;
760
761 /* Find a working device to keep */
762 for (diskp = &remaining; *diskp ; diskp = &(*diskp)->next) {
763 struct mdinfo *disk = *diskp;
764
765 if (disk->disk.raid_disk < slot)
766 continue;
767 if (disk->disk.raid_disk >= slot + nr_of_copies)
768 continue;
769 if (disk->disk.state & (1<<MD_DISK_REMOVED))
770 continue;
771 if (disk->disk.state & (1<<MD_DISK_FAULTY))
772 continue;
773 if (!(disk->disk.state & (1<<MD_DISK_SYNC)))
774 continue;
775
776 /* We have found a good disk to use! */
777 *diskp = disk->next;
778 disk->next = sra->devs;
779 sra->devs = disk;
780 found = 1;
781 break;
782 }
783 if (!found)
784 break;
785 }
786
787 if (slot < sra->array.raid_disks) {
788 /* didn't find all slots */
789 struct mdinfo **e;
790 e = &remaining;
791 while (*e)
792 e = &(*e)->next;
793 *e = sra->devs;
794 sra->devs = remaining;
795 return 1;
796 }
797
798 /* Remove all 'remaining' devices from the array */
799 while (remaining) {
800 struct mdinfo *sd = remaining;
801 remaining = sd->next;
802
803 sysfs_set_str(sra, sd, "state", "faulty");
804 sysfs_set_str(sra, sd, "slot", "none");
d5ca4a23
KW
805 /* for external metadata disks should be removed in mdmon */
806 if (!st->ss->external)
807 sysfs_set_str(sra, sd, "state", "remove");
62a48395
AK
808 sd->disk.state |= (1<<MD_DISK_REMOVED);
809 sd->disk.state &= ~(1<<MD_DISK_SYNC);
810 sd->next = sra->devs;
811 sra->devs = sd;
812 }
813 return 0;
814}
815
130994cb
AK
816void reshape_free_fdlist(int *fdlist,
817 unsigned long long *offsets,
818 int size)
819{
820 int i;
821
822 for (i = 0; i < size; i++)
823 if (fdlist[i] >= 0)
824 close(fdlist[i]);
825
826 free(fdlist);
827 free(offsets);
828}
829
830int reshape_prepare_fdlist(char *devname,
831 struct mdinfo *sra,
832 int raid_disks,
833 int nrdisks,
834 unsigned long blocks,
835 char *backup_file,
836 int *fdlist,
837 unsigned long long *offsets)
838{
839 int d = 0;
840 struct mdinfo *sd;
841
a7dec3fd 842 enable_fds(nrdisks);
130994cb
AK
843 for (d = 0; d <= nrdisks; d++)
844 fdlist[d] = -1;
845 d = raid_disks;
846 for (sd = sra->devs; sd; sd = sd->next) {
847 if (sd->disk.state & (1<<MD_DISK_FAULTY))
848 continue;
849 if (sd->disk.state & (1<<MD_DISK_SYNC)) {
850 char *dn = map_dev(sd->disk.major,
851 sd->disk.minor, 1);
852 fdlist[sd->disk.raid_disk]
853 = dev_open(dn, O_RDONLY);
854 offsets[sd->disk.raid_disk] = sd->data_offset*512;
855 if (fdlist[sd->disk.raid_disk] < 0) {
e7b84f9d
N
856 pr_err("%s: cannot open component %s\n",
857 devname, dn ? dn : "-unknown-");
130994cb
AK
858 d = -1;
859 goto release;
860 }
861 } else if (backup_file == NULL) {
862 /* spare */
863 char *dn = map_dev(sd->disk.major,
864 sd->disk.minor, 1);
865 fdlist[d] = dev_open(dn, O_RDWR);
866 offsets[d] = (sd->data_offset + sra->component_size - blocks - 8)*512;
867 if (fdlist[d] < 0) {
e7b84f9d 868 pr_err("%s: cannot open component %s\n",
130994cb
AK
869 devname, dn ? dn : "-unknown-");
870 d = -1;
871 goto release;
872 }
873 d++;
874 }
875 }
876release:
877 return d;
878}
879
e6e9d47b
AK
880int reshape_open_backup_file(char *backup_file,
881 int fd,
882 char *devname,
883 long blocks,
884 int *fdlist,
a93f87ee
N
885 unsigned long long *offsets,
886 int restart)
e6e9d47b
AK
887{
888 /* Return 1 on success, 0 on any form of failure */
889 /* need to check backup file is large enough */
890 char buf[512];
891 struct stat stb;
892 unsigned int dev;
893 int i;
894
a93f87ee 895 *fdlist = open(backup_file, O_RDWR|O_CREAT|(restart ? O_TRUNC : O_EXCL),
e6e9d47b
AK
896 S_IRUSR | S_IWUSR);
897 *offsets = 8 * 512;
898 if (*fdlist < 0) {
e7b84f9d 899 pr_err("%s: cannot create backup file %s: %s\n",
e6e9d47b
AK
900 devname, backup_file, strerror(errno));
901 return 0;
902 }
903 /* Guard against backup file being on array device.
904 * If array is partitioned or if LVM etc is in the
905 * way this will not notice, but it is better than
906 * nothing.
907 */
908 fstat(*fdlist, &stb);
909 dev = stb.st_dev;
910 fstat(fd, &stb);
911 if (stb.st_rdev == dev) {
e7b84f9d 912 pr_err("backup file must NOT be"
e6e9d47b
AK
913 " on the array being reshaped.\n");
914 close(*fdlist);
915 return 0;
916 }
917
918 memset(buf, 0, 512);
ca4fe0bf 919 for (i=0; i < blocks + 8 ; i++) {
e6e9d47b 920 if (write(*fdlist, buf, 512) != 512) {
e7b84f9d 921 pr_err("%s: cannot create"
e6e9d47b
AK
922 " backup file %s: %s\n",
923 devname, backup_file, strerror(errno));
924 return 0;
925 }
926 }
927 if (fsync(*fdlist) != 0) {
e7b84f9d 928 pr_err("%s: cannot create backup file %s: %s\n",
e6e9d47b
AK
929 devname, backup_file, strerror(errno));
930 return 0;
931 }
932
933 return 1;
934}
935
b48e2e25
N
936unsigned long GCD(unsigned long a, unsigned long b)
937{
938 while (a != b) {
939 if (a < b)
940 b -= a;
941 if (b < a)
942 a -= b;
943 }
944 return a;
945}
946
1c009fc2
AK
947unsigned long compute_backup_blocks(int nchunk, int ochunk,
948 unsigned int ndata, unsigned int odata)
949{
950 unsigned long a, b, blocks;
951 /* So how much do we need to backup.
952 * We need an amount of data which is both a whole number of
953 * old stripes and a whole number of new stripes.
954 * So LCM for (chunksize*datadisks).
955 */
956 a = (ochunk/512) * odata;
957 b = (nchunk/512) * ndata;
958 /* Find GCD */
b48e2e25 959 a = GCD(a, b);
1c009fc2
AK
960 /* LCM == product / GCD */
961 blocks = (ochunk/512) * (nchunk/512) * odata * ndata / a;
962
963 return blocks;
964}
965
5da9ab98
N
966char *analyse_change(struct mdinfo *info, struct reshape *re)
967{
968 /* Based on the current array state in info->array and
969 * the changes in info->new_* etc, determine:
970 * - whether the change is possible
971 * - Intermediate level/raid_disks/layout
972 * - whether a restriping reshape is needed
973 * - number of sectors in minimum change unit. This
974 * will cover a whole number of stripes in 'before' and
975 * 'after'.
976 *
977 * Return message if the change should be rejected
978 * NULL if the change can be achieved
979 *
980 * This can be called as part of starting a reshape, or
981 * when assembling an array that is undergoing reshape.
982 */
19ceb16d 983 int near, far, offset, copies;
5da9ab98 984 int new_disks;
19ceb16d 985 int old_chunk, new_chunk;
b545e14a
N
986 /* delta_parity records change in number of devices
987 * caused by level change
988 */
989 int delta_parity = 0;
5da9ab98 990
6b2fc3c1
N
991 memset(re, 0, sizeof(*re));
992
5da9ab98
N
993 /* If a new level not explicitly given, we assume no-change */
994 if (info->new_level == UnSet)
995 info->new_level = info->array.level;
996
997 if (info->new_chunk)
998 switch (info->new_level) {
999 case 0:
1000 case 4:
1001 case 5:
1002 case 6:
1003 case 10:
1004 /* chunk size is meaningful, must divide component_size
1005 * evenly
1006 */
1007 if (info->component_size % (info->new_chunk/512))
1008 return "New chunk size does not"
1009 " divide component size";
1010 break;
1011 default:
1012 return "chunk size not meaningful for this level";
1013 }
1014 else
1015 info->new_chunk = info->array.chunk_size;
1016
1017 switch (info->array.level) {
90b60dfa
N
1018 default:
1019 return "Cannot understand this RAID level";
5da9ab98
N
1020 case 1:
1021 /* RAID1 can convert to RAID1 with different disks, or
dfe77a9e
KW
1022 * raid5 with 2 disks, or
1023 * raid0 with 1 disk
5da9ab98 1024 */
5ca3a902
N
1025 if (info->new_level > 1 &&
1026 (info->component_size & 7))
1027 return "Cannot convert RAID1 of this size - "
1028 "reduce size to multiple of 4K first.";
dfe77a9e 1029 if (info->new_level == 0) {
b545e14a
N
1030 if (info->delta_disks != UnSet &&
1031 info->delta_disks != 0)
1032 return "Cannot change number of disks "
1033 "with RAID1->RAID0 conversion";
dfe77a9e
KW
1034 re->level = 0;
1035 re->before.data_disks = 1;
1036 re->after.data_disks = 1;
dfe77a9e
KW
1037 return NULL;
1038 }
5da9ab98
N
1039 if (info->new_level == 1) {
1040 if (info->delta_disks == UnSet)
1041 /* Don't know what to do */
1042 return "no change requested for Growing RAID1";
1043 re->level = 1;
5da9ab98
N
1044 return NULL;
1045 }
1046 if (info->array.raid_disks == 2 &&
446d2a5a 1047 info->new_level == 5) {
5652f2d9 1048
5da9ab98 1049 re->level = 5;
5da9ab98 1050 re->before.data_disks = 1;
5652f2d9
N
1051 if (info->delta_disks != UnSet &&
1052 info->delta_disks != 0)
1053 re->after.data_disks = 1 + info->delta_disks;
1054 else
1055 re->after.data_disks = 1;
1056 if (re->after.data_disks < 1)
1057 return "Number of disks too small for RAID5";
1058
5da9ab98 1059 re->before.layout = ALGORITHM_LEFT_SYMMETRIC;
446d2a5a
N
1060 info->array.chunk_size = 65536;
1061 break;
5da9ab98
N
1062 }
1063 /* Could do some multi-stage conversions, but leave that to
1064 * later.
1065 */
1066 return "Impossibly level change request for RAID1";
1067
1068 case 10:
19ceb16d
N
1069 /* RAID10 can be converted from near mode to
1070 * RAID0 by removing some devices.
1071 * It can also be reshaped if the kernel supports
1072 * new_data_offset.
5da9ab98 1073 */
19ceb16d
N
1074 switch (info->new_level) {
1075 case 0:
1076 if ((info->array.layout & ~0xff) != 0x100)
1077 return "Cannot Grow RAID10 with far/offset layout";
1078 /* number of devices must be multiple of number of copies */
1079 if (info->array.raid_disks % (info->array.layout & 0xff))
1080 return "RAID10 layout too complex for Grow operation";
1081
1082 new_disks = (info->array.raid_disks
1083 / (info->array.layout & 0xff));
1084 if (info->delta_disks == UnSet)
1085 info->delta_disks = (new_disks
1086 - info->array.raid_disks);
5da9ab98 1087
19ceb16d
N
1088 if (info->delta_disks != new_disks - info->array.raid_disks)
1089 return "New number of raid-devices impossible for RAID10";
1090 if (info->new_chunk &&
1091 info->new_chunk != info->array.chunk_size)
1092 return "Cannot change chunk-size with RAID10 Grow";
1093
1094 /* looks good */
1095 re->level = 0;
19ceb16d
N
1096 re->before.data_disks = new_disks;
1097 re->after.data_disks = re->before.data_disks;
19ceb16d
N
1098 return NULL;
1099
1100 case 10:
1101 near = info->array.layout & 0xff;
1102 far = (info->array.layout >> 8) & 0xff;
1103 offset = info->array.layout & 0x10000;
1104 if (far > 1 && !offset)
1105 return "Cannot reshape RAID10 in far-mode";
1106 copies = near * far;
1107
1108 old_chunk = info->array.chunk_size * far;
1109
1110 if (info->new_layout == UnSet)
1111 info->new_layout = info->array.layout;
1112 else {
1113 near = info->new_layout & 0xff;
1114 far = (info->new_layout >> 8) & 0xff;
1115 offset = info->new_layout & 0x10000;
1116 if (far > 1 && !offset)
1117 return "Cannot reshape RAID10 to far-mode";
1118 if (near * far != copies)
1119 return "Cannot change number of copies"
1120 " when reshaping RAID10";
1121 }
1122 if (info->delta_disks == UnSet)
1123 info->delta_disks = 0;
1124 new_disks = (info->array.raid_disks +
1125 info->delta_disks);
1126
1127 new_chunk = info->new_chunk * far;
1128
1129 re->level = 10;
19ceb16d
N
1130 re->before.layout = info->array.layout;
1131 re->before.data_disks = info->array.raid_disks;
1132 re->after.layout = info->new_layout;
1133 re->after.data_disks = new_disks;
89ecd3cf
N
1134 /* For RAID10 we don't do backup but do allow reshape,
1135 * so set backup_blocks to INVALID_SECTORS rather than
1136 * zero.
1137 * And there is no need to synchronise stripes on both
19ceb16d
N
1138 * 'old' and 'new'. So the important
1139 * number is the minimum data_offset difference
1140 * which is the larger of (offset copies * chunk).
1141 */
89ecd3cf
N
1142 re->backup_blocks = INVALID_SECTORS;
1143 re->min_offset_change = max(old_chunk, new_chunk) / 512;
ee2429e0 1144 if (new_disks < re->before.data_disks &&
89ecd3cf 1145 info->space_after < re->min_offset_change)
ee2429e0
N
1146 /* Reduce component size by one chunk */
1147 re->new_size = (info->component_size -
89ecd3cf 1148 re->min_offset_change);
ee2429e0
N
1149 else
1150 re->new_size = info->component_size;
1151 re->new_size = re->new_size * new_disks / copies;
19ceb16d 1152 return NULL;
5da9ab98 1153
19ceb16d
N
1154 default:
1155 return "RAID10 can only be changed to RAID0";
1156 }
5da9ab98
N
1157 case 0:
1158 /* RAID0 can be converted to RAID10, or to RAID456 */
1159 if (info->new_level == 10) {
1160 if (info->new_layout == UnSet && info->delta_disks == UnSet) {
1161 /* Assume near=2 layout */
1162 info->new_layout = 0x102;
1163 info->delta_disks = info->array.raid_disks;
1164 }
1165 if (info->new_layout == UnSet) {
1166 int copies = 1 + (info->delta_disks
1167 / info->array.raid_disks);
1168 if (info->array.raid_disks * (copies-1)
1169 != info->delta_disks)
1170 return "Impossible number of devices"
1171 " for RAID0->RAID10";
1172 info->new_layout = 0x100 + copies;
1173 }
1174 if (info->delta_disks == UnSet) {
1175 int copies = info->new_layout & 0xff;
1176 if (info->new_layout != 0x100 + copies)
1177 return "New layout impossible"
1178 " for RAID0->RAID10";;
1179 info->delta_disks = (copies - 1) *
1180 info->array.raid_disks;
1181 }
1182 if (info->new_chunk &&
1183 info->new_chunk != info->array.chunk_size)
1184 return "Cannot change chunk-size with RAID0->RAID10";
1185 /* looks good */
1186 re->level = 10;
5da9ab98
N
1187 re->before.data_disks = (info->array.raid_disks +
1188 info->delta_disks);
031d445c 1189 re->after.data_disks = re->before.data_disks;
5da9ab98 1190 re->before.layout = info->new_layout;
5da9ab98
N
1191 return NULL;
1192 }
1193
1194 /* RAID0 can also covert to RAID0/4/5/6 by first converting to
1195 * a raid4 style layout of the final level.
1196 */
1197 switch (info->new_level) {
5da9ab98 1198 case 4:
b545e14a
N
1199 delta_parity = 1;
1200 case 0:
5da9ab98
N
1201 re->level = 4;
1202 re->before.layout = 0;
1203 break;
1204 case 5:
b545e14a 1205 delta_parity = 1;
5da9ab98
N
1206 re->level = 5;
1207 re->before.layout = ALGORITHM_PARITY_N;
1208 break;
1209 case 6:
b545e14a 1210 delta_parity = 2;
5da9ab98
N
1211 re->level = 6;
1212 re->before.layout = ALGORITHM_PARITY_N;
1213 break;
1214 default:
1215 return "Impossible level change requested";
1216 }
1217 re->before.data_disks = info->array.raid_disks;
1218 /* determining 'after' layout happens outside this 'switch' */
1219 break;
1220
1221 case 4:
1222 info->array.layout = ALGORITHM_PARITY_N;
1223 case 5:
1224 switch (info->new_level) {
f0cce442 1225 case 0:
b545e14a 1226 delta_parity = -1;
5da9ab98
N
1227 case 4:
1228 re->level = info->array.level;
1229 re->before.data_disks = info->array.raid_disks - 1;
1230 re->before.layout = info->array.layout;
1231 break;
1232 case 5:
1233 re->level = 5;
1234 re->before.data_disks = info->array.raid_disks - 1;
1235 re->before.layout = info->array.layout;
1236 break;
1237 case 6:
b545e14a 1238 delta_parity = 1;
5da9ab98
N
1239 re->level = 6;
1240 re->before.data_disks = info->array.raid_disks - 1;
1241 switch (info->array.layout) {
1242 case ALGORITHM_LEFT_ASYMMETRIC:
1243 re->before.layout = ALGORITHM_LEFT_ASYMMETRIC_6;
1244 break;
1245 case ALGORITHM_RIGHT_ASYMMETRIC:
1246 re->before.layout = ALGORITHM_RIGHT_ASYMMETRIC_6;
1247 break;
1248 case ALGORITHM_LEFT_SYMMETRIC:
1249 re->before.layout = ALGORITHM_LEFT_SYMMETRIC_6;
1250 break;
1251 case ALGORITHM_RIGHT_SYMMETRIC:
1252 re->before.layout = ALGORITHM_RIGHT_SYMMETRIC_6;
1253 break;
1254 case ALGORITHM_PARITY_0:
1255 re->before.layout = ALGORITHM_PARITY_0_6;
1256 break;
1257 case ALGORITHM_PARITY_N:
1258 re->before.layout = ALGORITHM_PARITY_N_6;
1259 break;
1260 default:
1261 return "Cannot convert an array with this layout";
1262 }
1263 break;
1264 case 1:
1265 if (info->array.raid_disks != 2)
1266 return "Can only convert a 2-device array to RAID1";
b545e14a
N
1267 if (info->delta_disks != UnSet &&
1268 info->delta_disks != 0)
1269 return "Cannot set raid_disk when "
1270 "converting RAID5->RAID1";
5da9ab98 1271 re->level = 1;
6a67848a
N
1272 info->new_chunk = 0;
1273 return NULL;
5da9ab98
N
1274 default:
1275 return "Impossible level change requested";
1276 }
1277 break;
1278 case 6:
1279 switch (info->new_level) {
1280 case 4:
1281 case 5:
b545e14a 1282 delta_parity = -1;
5da9ab98
N
1283 case 6:
1284 re->level = 6;
1285 re->before.data_disks = info->array.raid_disks - 2;
1286 re->before.layout = info->array.layout;
1287 break;
1288 default:
1289 return "Impossible level change requested";
1290 }
1291 break;
1292 }
1293
1294 /* If we reached here then it looks like a re-stripe is
1295 * happening. We have determined the intermediate level
1296 * and initial raid_disks/layout and stored these in 're'.
1297 *
1298 * We need to deduce the final layout that can be atomically
1299 * converted to the end state.
1300 */
1301 switch (info->new_level) {
1302 case 0:
1303 /* We can only get to RAID0 from RAID4 or RAID5
1304 * with appropriate layout and one extra device
1305 */
1306 if (re->level != 4 && re->level != 5)
1307 return "Cannot covert to RAID0 from this level";
b545e14a 1308
5da9ab98
N
1309 switch (re->level) {
1310 case 4:
fdcad551 1311 re->before.layout = 0;
ca3b6696
N
1312 re->after.layout = 0;
1313 break;
5da9ab98 1314 case 5:
ca3b6696
N
1315 re->after.layout = ALGORITHM_PARITY_N;
1316 break;
5da9ab98
N
1317 }
1318 break;
1319
1320 case 4:
1321 /* We can only get to RAID4 from RAID5 */
1322 if (re->level != 4 && re->level != 5)
1323 return "Cannot convert to RAID4 from this level";
b545e14a 1324
5da9ab98
N
1325 switch (re->level) {
1326 case 4:
fdcad551 1327 re->before.layout = 0;
ca3b6696
N
1328 re->after.layout = 0;
1329 break;
5da9ab98 1330 case 5:
ca3b6696
N
1331 re->after.layout = ALGORITHM_PARITY_N;
1332 break;
5da9ab98
N
1333 }
1334 break;
1335
1336 case 5:
0073a6e1 1337 /* We get to RAID5 from RAID5 or RAID6 */
5da9ab98
N
1338 if (re->level != 5 && re->level != 6)
1339 return "Cannot convert to RAID5 from this level";
b545e14a 1340
5da9ab98
N
1341 switch (re->level) {
1342 case 5:
1343 if (info->new_layout == UnSet)
1344 re->after.layout = re->before.layout;
1345 else
1346 re->after.layout = info->new_layout;
1347 break;
1348 case 6:
4a870364
N
1349 if (info->new_layout == UnSet)
1350 info->new_layout = re->before.layout;
1351
5da9ab98
N
1352 /* after.layout needs to be raid6 version of new_layout */
1353 if (info->new_layout == ALGORITHM_PARITY_N)
1354 re->after.layout = ALGORITHM_PARITY_N;
1355 else {
1356 char layout[40];
1357 char *ls = map_num(r5layout, info->new_layout);
1358 int l;
0073a6e1
N
1359 if (ls) {
1360 /* Current RAID6 layout has a RAID5
1361 * equivalent - good
1362 */
1363 strcat(strcpy(layout, ls), "-6");
1364 l = map_name(r6layout, layout);
1365 if (l == UnSet)
1366 return "Cannot find RAID6 layout"
1367 " to convert to";
1368 } else {
1369 /* Current RAID6 has no equivalent.
1370 * If it is already a '-6' layout we
1371 * can leave it unchanged, else we must
1372 * fail
1373 */
1374 ls = map_num(r6layout, info->new_layout);
1375 if (!ls ||
1376 strcmp(ls+strlen(ls)-2, "-6") != 0)
1377 return "Please specify new layout";
1378 l = info->new_layout;
1379 }
5da9ab98
N
1380 re->after.layout = l;
1381 }
1382 }
1383 break;
1384
1385 case 6:
1386 /* We must already be at level 6 */
1387 if (re->level != 6)
1388 return "Impossible level change";
5da9ab98 1389 if (info->new_layout == UnSet)
4a870364 1390 re->after.layout = info->array.layout;
5da9ab98
N
1391 else
1392 re->after.layout = info->new_layout;
1393 break;
1394 default:
1395 return "Impossible level change requested";
1396 }
b545e14a
N
1397 if (info->delta_disks == UnSet)
1398 info->delta_disks = delta_parity;
1399
1400 re->after.data_disks = (re->before.data_disks
1401 + info->delta_disks
1402 - delta_parity);
5da9ab98 1403 switch (re->level) {
ca3b6696
N
1404 case 6: re->parity = 2;
1405 break;
5da9ab98 1406 case 4:
ca3b6696
N
1407 case 5: re->parity = 1;
1408 break;
1409 default: re->parity = 0;
1410 break;
5da9ab98
N
1411 }
1412 /* So we have a restripe operation, we need to calculate the number
1413 * of blocks per reshape operation.
1414 */
1415 if (info->new_chunk == 0)
1416 info->new_chunk = info->array.chunk_size;
1417 if (re->after.data_disks == re->before.data_disks &&
1418 re->after.layout == re->before.layout &&
1419 info->new_chunk == info->array.chunk_size) {
fdcad551
N
1420 /* Nothing to change, can change level immediately. */
1421 re->level = info->new_level;
b4f8e38b 1422 re->backup_blocks = 0;
5da9ab98
N
1423 return NULL;
1424 }
1425 if (re->after.data_disks == 1 && re->before.data_disks == 1) {
446d2a5a 1426 /* chunk and layout changes make no difference */
fdcad551 1427 re->level = info->new_level;
b4f8e38b 1428 re->backup_blocks = 0;
5da9ab98
N
1429 return NULL;
1430 }
1431
1432 if (re->after.data_disks == re->before.data_disks &&
1433 get_linux_version() < 2006032)
1434 return "in-place reshape is not safe before 2.6.32 - sorry.";
1435
1436 if (re->after.data_disks < re->before.data_disks &&
1437 get_linux_version() < 2006030)
508ede86 1438 return "reshape to fewer devices is not supported before 2.6.30 - sorry.";
5da9ab98 1439
b4f8e38b 1440 re->backup_blocks = compute_backup_blocks(
5da9ab98
N
1441 info->new_chunk, info->array.chunk_size,
1442 re->after.data_disks,
1443 re->before.data_disks);
63c12c89 1444 re->min_offset_change = re->backup_blocks / re->before.data_disks;
5da9ab98
N
1445
1446 re->new_size = info->component_size * re->after.data_disks;
1447 return NULL;
1448}
1449
54397ed9
AK
1450static int set_array_size(struct supertype *st, struct mdinfo *sra,
1451 char *text_version)
1452{
1453 struct mdinfo *info;
1454 char *subarray;
1455 int ret_val = -1;
1456
1457 if ((st == NULL) || (sra == NULL))
1458 return ret_val;
1459
1460 if (text_version == NULL)
1461 text_version = sra->text_version;
1462 subarray = strchr(text_version+1, '/')+1;
1463 info = st->ss->container_content(st, subarray);
1464 if (info) {
1465 unsigned long long current_size = 0;
1466 unsigned long long new_size =
1467 info->custom_array_size/2;
1468
1469 if (sysfs_get_ll(sra, NULL, "array_size", &current_size) == 0 &&
1470 new_size > current_size) {
1471 if (sysfs_set_num(sra, NULL, "array_size", new_size)
1472 < 0)
1473 dprintf("Error: Cannot set array size");
1474 else {
1475 ret_val = 0;
1476 dprintf("Array size changed");
1477 }
1478 dprintf(" from %llu to %llu.\n",
1479 current_size, new_size);
1480 }
1481 sysfs_free(info);
1482 } else
1483 dprintf("Error: set_array_size(): info pointer in NULL\n");
1484
1485 return ret_val;
1486}
1487
5da9ab98
N
1488static int reshape_array(char *container, int fd, char *devname,
1489 struct supertype *st, struct mdinfo *info,
e2e53a2d 1490 int force, struct mddev_dev *devlist,
19ceb16d 1491 unsigned long long data_offset,
ba728be7 1492 char *backup_file, int verbose, int forked,
b76b30e0 1493 int restart, int freeze_reshape);
493f5dd6 1494static int reshape_container(char *container, char *devname,
9ad6f6e6 1495 int mdfd,
24daa16f 1496 struct supertype *st,
5da9ab98
N
1497 struct mdinfo *info,
1498 int force,
1499 char *backup_file,
ba728be7 1500 int verbose, int restart, int freeze_reshape);
1c009fc2 1501
32754b7d 1502int Grow_reshape(char *devname, int fd,
e2e53a2d 1503 struct mddev_dev *devlist,
40c9a66a 1504 unsigned long long data_offset,
32754b7d 1505 struct context *c, struct shape *s)
e86c9dd6
NB
1506{
1507 /* Make some changes in the shape of an array.
1508 * The kernel must support the change.
7236ee7a
N
1509 *
1510 * There are three different changes. Each can trigger
1511 * a resync or recovery so we freeze that until we have
1512 * requested everything (if kernel supports freezing - 2.6.30).
1513 * The steps are:
1514 * - change size (i.e. component_size)
1515 * - change level
1516 * - change layout/chunksize/ndisks
1517 *
1518 * The last can require a reshape. It is different on different
1519 * levels so we need to check the level before actioning it.
1520 * Some times the level change needs to be requested after the
1521 * reshape (e.g. raid6->raid5, raid5->raid0)
1522 *
e86c9dd6 1523 */
5da9ab98 1524 struct mdu_array_info_s array;
7236ee7a 1525 int rv = 0;
e86c9dd6 1526 struct supertype *st;
4725bc31 1527 char *subarray = NULL;
e86c9dd6 1528
7236ee7a 1529 int frozen;
7236ee7a 1530 int changed = 0;
7bc71196
DW
1531 char *container = NULL;
1532 int cfd = -1;
e86c9dd6 1533
e2e53a2d
N
1534 struct mddev_dev *dv;
1535 int added_disks;
1536
5da9ab98 1537 struct mdinfo info;
7e0f6979 1538 struct mdinfo *sra;
e86c9dd6
NB
1539
1540 if (ioctl(fd, GET_ARRAY_INFO, &array) < 0) {
ed503f89 1541 pr_err("%s is not an active md array - aborting\n",
e86c9dd6
NB
1542 devname);
1543 return 1;
1544 }
4abcbc21
N
1545 if (data_offset != INVALID_SECTORS && array.level != 10
1546 && (array.level < 4 || array.level > 6)) {
19ceb16d
N
1547 pr_err("--grow --data-offset not yet supported\n");
1548 return 1;
1549 }
24d40069 1550
32754b7d
N
1551 if (s->size > 0 &&
1552 (s->chunk || s->level!= UnSet || s->layout_str || s->raiddisks)) {
e7b84f9d 1553 pr_err("cannot change component size at the same time "
9ce510be
N
1554 "as other changes.\n"
1555 " Change size first, then check data is intact before "
1556 "making other changes.\n");
1557 return 1;
1558 }
1559
32754b7d 1560 if (s->raiddisks && s->raiddisks < array.raid_disks && array.level > 1 &&
24d40069
N
1561 get_linux_version() < 2006032 &&
1562 !check_env("MDADM_FORCE_FEWER")) {
e7b84f9d 1563 pr_err("reducing the number of devices is not safe before Linux 2.6.32\n"
24d40069
N
1564 " Please use a newer kernel\n");
1565 return 1;
1566 }
7bc71196
DW
1567
1568 st = super_by_fd(fd, &subarray);
1569 if (!st) {
e7b84f9d 1570 pr_err("Unable to determine metadata format for %s\n", devname);
7bc71196
DW
1571 return 1;
1572 }
32754b7d 1573 if (s->raiddisks > st->max_devs) {
e7b84f9d 1574 pr_err("Cannot increase raid-disks on this array"
acab7bb1
N
1575 " beyond %d\n", st->max_devs);
1576 return 1;
1577 }
7bc71196
DW
1578
1579 /* in the external case we need to check that the requested reshape is
1580 * supported, and perform an initial check that the container holds the
1581 * pre-requisite spare devices (mdmon owns final validation)
1582 */
1583 if (st->ss->external) {
7f2ba464 1584 int rv;
7bc71196
DW
1585
1586 if (subarray) {
4dd2df09
N
1587 container = st->container_devnm;
1588 cfd = open_dev_excl(st->container_devnm);
7bc71196 1589 } else {
4dd2df09 1590 container = st->devnm;
7bc71196 1591 close(fd);
4dd2df09 1592 cfd = open_dev_excl(st->devnm);
7bc71196
DW
1593 fd = cfd;
1594 }
1595 if (cfd < 0) {
e7b84f9d 1596 pr_err("Unable to open container for %s\n",
7bc71196 1597 devname);
7f2ba464 1598 free(subarray);
7bc71196
DW
1599 return 1;
1600 }
1601
eb744788
AK
1602 rv = st->ss->load_container(st, cfd, NULL);
1603
7f2ba464 1604 if (rv) {
e7b84f9d 1605 pr_err("Cannot read superblock for %s\n",
7bc71196 1606 devname);
7f2ba464 1607 free(subarray);
7bc71196
DW
1608 return 1;
1609 }
1610
81219e70
LM
1611 /* check if operation is supported for metadata handler */
1612 if (st->ss->container_content) {
1613 struct mdinfo *cc = NULL;
1614 struct mdinfo *content = NULL;
1615
1616 cc = st->ss->container_content(st, subarray);
1617 for (content = cc; content ; content = content->next) {
446894ea 1618 int allow_reshape = 1;
81219e70
LM
1619
1620 /* check if reshape is allowed based on metadata
1621 * indications stored in content.array.status
1622 */
446894ea
N
1623 if (content->array.state & (1<<MD_SB_BLOCK_VOLUME))
1624 allow_reshape = 0;
1625 if (content->array.state
1626 & (1<<MD_SB_BLOCK_CONTAINER_RESHAPE))
1627 allow_reshape = 0;
81219e70 1628 if (!allow_reshape) {
e7b84f9d
N
1629 pr_err("cannot reshape arrays in"
1630 " container with unsupported"
1631 " metadata: %s(%s)\n",
4dd2df09 1632 devname, container);
81219e70
LM
1633 sysfs_free(cc);
1634 free(subarray);
1635 return 1;
1636 }
1637 }
1638 sysfs_free(cc);
1639 }
4dd2df09 1640 if (mdmon_running(container))
7bc71196 1641 st->update_tail = &st->updates;
e2e53a2d 1642 }
691a36b7 1643
e2e53a2d
N
1644 added_disks = 0;
1645 for (dv = devlist; dv; dv = dv->next)
1646 added_disks++;
32754b7d
N
1647 if (s->raiddisks > array.raid_disks &&
1648 array.spare_disks +added_disks < (s->raiddisks - array.raid_disks) &&
1649 !c->force) {
e7b84f9d
N
1650 pr_err("Need %d spare%s to avoid degraded array,"
1651 " and only have %d.\n"
1652 " Use --force to over-ride this check.\n",
32754b7d
N
1653 s->raiddisks - array.raid_disks,
1654 s->raiddisks - array.raid_disks == 1 ? "" : "s",
e7b84f9d 1655 array.spare_disks + added_disks);
691a36b7 1656 return 1;
7bc71196
DW
1657 }
1658
4dd2df09 1659 sra = sysfs_read(fd, NULL, GET_LEVEL | GET_DISKS | GET_DEVS
3fa436ac 1660 | GET_STATE | GET_VERSION);
24daa16f 1661 if (sra) {
7f2ba464 1662 if (st->ss->external && subarray == NULL) {
7bc71196
DW
1663 array.level = LEVEL_CONTAINER;
1664 sra->array.level = LEVEL_CONTAINER;
1665 }
7bc71196 1666 } else {
e7b84f9d 1667 pr_err("failed to read sysfs parameters for %s\n",
b526e52d
DW
1668 devname);
1669 return 1;
1670 }
7f2ba464
DW
1671 frozen = freeze(st);
1672 if (frozen < -1) {
1673 /* freeze() already spewed the reason */
8e61e0d7 1674 sysfs_free(sra);
7f2ba464
DW
1675 return 1;
1676 } else if (frozen < 0) {
e7b84f9d 1677 pr_err("%s is performing resync/recovery and cannot"
7236ee7a 1678 " be reshaped\n", devname);
8e61e0d7 1679 sysfs_free(sra);
7236ee7a
N
1680 return 1;
1681 }
1682
1683 /* ========= set size =============== */
887a7a9e 1684 if (s->size > 0 && (s->size == MAX_SIZE || s->size != (unsigned)array.size)) {
d04f65f4
N
1685 unsigned long long orig_size = get_component_size(fd)/2;
1686 unsigned long long min_csize;
d1537ed1 1687 struct mdinfo *mdi;
44f6f181 1688 int raid0_takeover = 0;
7bc71196 1689
85f10287 1690 if (orig_size == 0)
d04f65f4 1691 orig_size = (unsigned) array.size;
85f10287 1692
3920235e
N
1693 if (orig_size == 0) {
1694 pr_err("Cannot set device size in this type of array.\n");
1695 rv = 1;
1696 goto release;
1697 }
1698
32754b7d
N
1699 if (reshape_super(st, s->size, UnSet, UnSet, 0, 0, UnSet, NULL,
1700 devname, APPLY_METADATA_CHANGES, c->verbose > 0)) {
7bc71196
DW
1701 rv = 1;
1702 goto release;
1703 }
1704 sync_metadata(st);
7e7e9a4d
AK
1705 if (st->ss->external) {
1706 /* metadata can have size limitation
1707 * update size value according to metadata information
1708 */
1709 struct mdinfo *sizeinfo =
1710 st->ss->container_content(st, subarray);
1711 if (sizeinfo) {
1712 unsigned long long new_size =
1713 sizeinfo->custom_array_size/2;
1714 int data_disks = get_data_disks(
1715 sizeinfo->array.level,
1716 sizeinfo->array.layout,
1717 sizeinfo->array.raid_disks);
1718 new_size /= data_disks;
1719 dprintf("Metadata size correction from %llu to "
1720 "%llu (%llu)\n", orig_size, new_size,
1721 new_size * data_disks);
32754b7d 1722 s->size = new_size;
7e7e9a4d
AK
1723 sysfs_free(sizeinfo);
1724 }
1725 }
d1537ed1
N
1726
1727 /* Update the size of each member device in case
1728 * they have been resized. This will never reduce
1729 * below the current used-size. The "size" attribute
20a46756 1730 * understands '0' to mean 'max'.
d1537ed1 1731 */
20a46756 1732 min_csize = 0;
65a9798b 1733 rv = 0;
20a46756 1734 for (mdi = sra->devs; mdi; mdi = mdi->next) {
d04f65f4 1735 if (sysfs_set_num(sra, mdi, "size",
32754b7d 1736 s->size == MAX_SIZE ? 0 : s->size) < 0) {
b0a658ff
N
1737 /* Probably kernel refusing to let us
1738 * reduce the size - not an error.
1739 */
20a46756 1740 break;
65a9798b 1741 }
20a46756
N
1742 if (array.not_persistent == 0 &&
1743 array.major_version == 0 &&
1744 get_linux_version() < 3001000) {
1745 /* Dangerous to allow size to exceed 2TB */
1746 unsigned long long csize;
1747 if (sysfs_get_ll(sra, mdi, "size", &csize) == 0) {
1748 if (csize >= 2ULL*1024*1024*1024)
1749 csize = 2ULL*1024*1024*1024;
1750 if ((min_csize == 0 || (min_csize
d04f65f4 1751 > csize)))
20a46756
N
1752 min_csize = csize;
1753 }
1754 }
1755 }
65a9798b 1756 if (rv) {
e7b84f9d 1757 pr_err("Cannot set size on "
65a9798b
AK
1758 "array members.\n");
1759 goto size_change_error;
1760 }
32754b7d 1761 if (min_csize && s->size > min_csize) {
e7b84f9d 1762 pr_err("Cannot safely make this array "
20a46756
N
1763 "use more than 2TB per device on this kernel.\n");
1764 rv = 1;
65a9798b 1765 goto size_change_error;
20a46756 1766 }
32754b7d 1767 if (min_csize && s->size == MAX_SIZE) {
20a46756
N
1768 /* Don't let the kernel choose a size - it will get
1769 * it wrong
1770 */
e7b84f9d
N
1771 pr_err("Limited v0.90 array to "
1772 "2TB per device\n");
32754b7d 1773 s->size = min_csize;
20a46756 1774 }
44f6f181
AK
1775 if (st->ss->external) {
1776 if (sra->array.level == 0) {
1777 rv = sysfs_set_str(sra, NULL, "level",
1778 "raid5");
1779 if (!rv) {
1780 raid0_takeover = 1;
1781 /* get array parametes after takeover
1782 * to chane one parameter at time only
1783 */
1784 rv = ioctl(fd, GET_ARRAY_INFO, &array);
1785 }
1786 }
1787 /* make sure mdmon is
1788 * aware of the new level */
4dd2df09
N
1789 if (!mdmon_running(st->container_devnm))
1790 start_mdmon(st->container_devnm);
44f6f181 1791 ping_monitor(container);
4dd2df09 1792 if (mdmon_running(st->container_devnm) &&
44f6f181
AK
1793 st->update_tail == NULL)
1794 st->update_tail = &st->updates;
1795 }
1796
0a8b92a6
N
1797 if (s->size == MAX_SIZE)
1798 s->size = 0;
1799 array.size = s->size;
32754b7d 1800 if ((unsigned)array.size != s->size) {
7236ee7a
N
1801 /* got truncated to 32bit, write to
1802 * component_size instead
1803 */
1804 if (sra)
1805 rv = sysfs_set_num(sra, NULL,
32754b7d 1806 "component_size", s->size);
7236ee7a
N
1807 else
1808 rv = -1;
54397ed9 1809 } else {
7236ee7a 1810 rv = ioctl(fd, SET_ARRAY_INFO, &array);
44f6f181 1811
54397ed9
AK
1812 /* manage array size when it is managed externally
1813 */
1814 if ((rv == 0) && st->ss->external)
1815 rv = set_array_size(st, sra, sra->text_version);
1816 }
1817
44f6f181
AK
1818 if (raid0_takeover) {
1819 /* do not recync non-existing parity,
1820 * we will drop it anyway
1821 */
b51702b8 1822 sysfs_set_str(sra, NULL, "sync_action", "frozen");
44f6f181
AK
1823 /* go back to raid0, drop parity disk
1824 */
1825 sysfs_set_str(sra, NULL, "level", "raid0");
1826 ioctl(fd, GET_ARRAY_INFO, &array);
1827 }
1828
65a9798b 1829size_change_error:
7236ee7a 1830 if (rv != 0) {
39bbb392 1831 int err = errno;
7bc71196
DW
1832
1833 /* restore metadata */
1834 if (reshape_super(st, orig_size, UnSet, UnSet, 0, 0,
016e00f5
AK
1835 UnSet, NULL, devname,
1836 ROLLBACK_METADATA_CHANGES,
32754b7d 1837 c->verbose) == 0)
7bc71196 1838 sync_metadata(st);
e7b84f9d 1839 pr_err("Cannot set device size for %s: %s\n",
39bbb392 1840 devname, strerror(err));
24daa16f 1841 if (err == EBUSY &&
39bbb392 1842 (array.state & (1<<MD_SB_BITMAP_PRESENT)))
e7b84f9d 1843 cont_err("Bitmap must be removed before size can be changed\n");
7236ee7a
N
1844 rv = 1;
1845 goto release;
1846 }
32754b7d 1847 if (s->assume_clean) {
86952387 1848 /* This will fail on kernels older than 3.0 unless
ce52f92f
N
1849 * a backport has been arranged.
1850 */
1851 if (sra == NULL ||
1852 sysfs_set_str(sra, NULL, "resync_start", "none") < 0)
86952387 1853 pr_err("--assume-clean not supported with --grow on this kernel\n");
ce52f92f 1854 }
7236ee7a 1855 ioctl(fd, GET_ARRAY_INFO, &array);
32754b7d
N
1856 s->size = get_component_size(fd)/2;
1857 if (s->size == 0)
1858 s->size = array.size;
1859 if (c->verbose >= 0) {
1860 if (s->size == orig_size)
e7b84f9d 1861 pr_err("component size of %s "
85f10287 1862 "unchanged at %lluK\n",
32754b7d 1863 devname, s->size);
85f10287 1864 else
e7b84f9d 1865 pr_err("component size of %s "
85f10287 1866 "has been set to %lluK\n",
32754b7d 1867 devname, s->size);
85f10287 1868 }
7236ee7a 1869 changed = 1;
7bc71196 1870 } else if (array.level != LEVEL_CONTAINER) {
32754b7d
N
1871 s->size = get_component_size(fd)/2;
1872 if (s->size == 0)
1873 s->size = array.size;
7236ee7a
N
1874 }
1875
d515d27f 1876 /* See if there is anything else to do */
32754b7d
N
1877 if ((s->level == UnSet || s->level == array.level) &&
1878 (s->layout_str == NULL) &&
1879 (s->chunk == 0 || s->chunk == array.chunk_size) &&
8876bf0b 1880 data_offset == INVALID_SECTORS &&
32754b7d 1881 (s->raiddisks == 0 || s->raiddisks == array.raid_disks)) {
d515d27f 1882 /* Nothing more to do */
32754b7d 1883 if (!changed && c->verbose >= 0)
e7b84f9d 1884 pr_err("%s: no change requested\n",
d515d27f
N
1885 devname);
1886 goto release;
1887 }
1888
dfe77a9e 1889 /* ========= check for Raid10/Raid1 -> Raid0 conversion ===============
5da9ab98 1890 * current implementation assumes that following conditions must be met:
dfe77a9e 1891 * - RAID10:
24daa16f
N
1892 * - far_copies == 1
1893 * - near_copies == 2
62a48395 1894 */
32754b7d 1895 if ((s->level == 0 && array.level == 10 && sra &&
24daa16f 1896 array.layout == ((1 << 8) + 2) && !(array.raid_disks & 1)) ||
32754b7d 1897 (s->level == 0 && array.level == 1 && sra)) {
62a48395 1898 int err;
dfe77a9e 1899 err = remove_disks_for_takeover(st, sra, array.layout);
62a48395
AK
1900 if (err) {
1901 dprintf(Name": Array cannot be reshaped\n");
62a48395
AK
1902 if (cfd > -1)
1903 close(cfd);
5da9ab98
N
1904 rv = 1;
1905 goto release;
7236ee7a 1906 }
fde139b9
N
1907 /* Make sure mdmon has seen the device removal
1908 * and updated metadata before we continue with
1909 * level change
1910 */
1911 if (container)
1912 ping_monitor(container);
7236ee7a
N
1913 }
1914
8ff6d094 1915 memset(&info, 0, sizeof(info));
5da9ab98 1916 info.array = array;
4dd2df09 1917 sysfs_init(&info, fd, NULL);
3fa436ac 1918 strcpy(info.text_version, sra->text_version);
32754b7d
N
1919 info.component_size = s->size*2;
1920 info.new_level = s->level;
1921 info.new_chunk = s->chunk * 1024;
eff4954d
N
1922 if (info.array.level == LEVEL_CONTAINER) {
1923 info.delta_disks = UnSet;
32754b7d
N
1924 info.array.raid_disks = s->raiddisks;
1925 } else if (s->raiddisks)
1926 info.delta_disks = s->raiddisks - info.array.raid_disks;
5da9ab98
N
1927 else
1928 info.delta_disks = UnSet;
32754b7d 1929 if (s->layout_str == NULL) {
5da9ab98
N
1930 info.new_layout = UnSet;
1931 if (info.array.level == 6 &&
1932 (info.new_level == 6 || info.new_level == UnSet) &&
1933 info.array.layout >= 16) {
e7b84f9d
N
1934 pr_err("%s has a non-standard layout. If you"
1935 " wish to preserve this\n", devname);
1936 cont_err("during the reshape, please specify"
1937 " --layout=preserve\n");
1938 cont_err("If you want to change it, specify a"
1939 " layout or use --layout=normalise\n");
7236ee7a
N
1940 rv = 1;
1941 goto release;
1942 }
32754b7d
N
1943 } else if (strcmp(s->layout_str, "normalise") == 0 ||
1944 strcmp(s->layout_str, "normalize") == 0) {
5da9ab98
N
1945 /* If we have a -6 RAID6 layout, remove the '-6'. */
1946 info.new_layout = UnSet;
1947 if (info.array.level == 6 && info.new_level == UnSet) {
1948 char l[40], *h;
1949 strcpy(l, map_num(r6layout, info.array.layout));
1950 h = strrchr(l, '-');
1951 if (h && strcmp(h, "-6") == 0) {
1952 *h = 0;
1953 info.new_layout = map_name(r6layout, l);
7236ee7a 1954 }
385167f3 1955 } else {
e7b84f9d 1956 pr_err("%s is only meaningful when reshaping"
32754b7d 1957 " a RAID6 array.\n", s->layout_str);
385167f3
N
1958 rv = 1;
1959 goto release;
7236ee7a 1960 }
32754b7d 1961 } else if (strcmp(s->layout_str, "preserve") == 0) {
385167f3
N
1962 /* This means that a non-standard RAID6 layout
1963 * is OK.
1964 * In particular:
1965 * - When reshape a RAID6 (e.g. adding a device)
1966 * which is in a non-standard layout, it is OK
1967 * to preserve that layout.
1968 * - When converting a RAID5 to RAID6, leave it in
1969 * the XXX-6 layout, don't re-layout.
1970 */
1971 if (info.array.level == 6 && info.new_level == UnSet)
1972 info.new_layout = info.array.layout;
1973 else if (info.array.level == 5 && info.new_level == 6) {
1974 char l[40];
1975 strcpy(l, map_num(r5layout, info.array.layout));
1976 strcat(l, "-6");
1977 info.new_layout = map_name(r6layout, l);
1978 } else {
e7b84f9d 1979 pr_err("%s in only meaningful when reshaping"
32754b7d 1980 " to RAID6\n", s->layout_str);
385167f3
N
1981 rv = 1;
1982 goto release;
1983 }
5da9ab98
N
1984 } else {
1985 int l = info.new_level;
1986 if (l == UnSet)
1987 l = info.array.level;
1988 switch (l) {
1989 case 5:
32754b7d 1990 info.new_layout = map_name(r5layout, s->layout_str);
5da9ab98
N
1991 break;
1992 case 6:
32754b7d 1993 info.new_layout = map_name(r6layout, s->layout_str);
5da9ab98
N
1994 break;
1995 case 10:
32754b7d 1996 info.new_layout = parse_layout_10(s->layout_str);
5da9ab98
N
1997 break;
1998 case LEVEL_FAULTY:
32754b7d 1999 info.new_layout = parse_layout_faulty(s->layout_str);
5da9ab98
N
2000 break;
2001 default:
e7b84f9d 2002 pr_err("layout not meaningful"
5da9ab98 2003 " with this level\n");
7bc71196
DW
2004 rv = 1;
2005 goto release;
2006 }
5da9ab98 2007 if (info.new_layout == UnSet) {
e7b84f9d 2008 pr_err("layout %s not understood"
5da9ab98 2009 " for this level\n",
32754b7d 2010 s->layout_str);
5da9ab98
N
2011 rv = 1;
2012 goto release;
7bc71196 2013 }
7236ee7a
N
2014 }
2015
907ea753 2016 if (array.level == LEVEL_FAULTY) {
32754b7d 2017 if (s->level != UnSet && s->level != array.level) {
e7b84f9d 2018 pr_err("cannot change level of Faulty device\n");
907ea753
N
2019 rv =1 ;
2020 }
32754b7d 2021 if (s->chunk) {
e7b84f9d 2022 pr_err("cannot set chunksize of Faulty device\n");
907ea753
N
2023 rv =1 ;
2024 }
32754b7d 2025 if (s->raiddisks && s->raiddisks != 1) {
e7b84f9d 2026 pr_err("cannot set raid_disks of Faulty device\n");
907ea753
N
2027 rv =1 ;
2028 }
32754b7d 2029 if (s->layout_str) {
907ea753
N
2030 if (ioctl(fd, GET_ARRAY_INFO, &array) != 0) {
2031 dprintf("Cannot get array information.\n");
2032 goto release;
2033 }
2034 array.layout = info.new_layout;
2035 if (ioctl(fd, SET_ARRAY_INFO, &array) != 0) {
e7b84f9d 2036 pr_err("failed to set new layout\n");
907ea753 2037 rv = 1;
32754b7d 2038 } else if (c->verbose >= 0)
907ea753
N
2039 printf("layout for %s set to %d\n",
2040 devname, array.layout);
2041 }
2042 } else if (array.level == LEVEL_CONTAINER) {
5da9ab98
N
2043 /* This change is to be applied to every array in the
2044 * container. This is only needed when the metadata imposes
2045 * restraints of the various arrays in the container.
2046 * Currently we only know that IMSM requires all arrays
2047 * to have the same number of devices so changing the
2048 * number of devices (On-Line Capacity Expansion) must be
2049 * performed at the level of the container
2050 */
9ad6f6e6 2051 rv = reshape_container(container, devname, -1, st, &info,
32754b7d 2052 c->force, c->backup_file, c->verbose, 0, 0);
9202b8eb 2053 frozen = 0;
5da9ab98 2054 } else {
08f9e34b
AK
2055 /* get spare devices from external metadata
2056 */
2057 if (st->ss->external) {
2058 struct mdinfo *info2;
2059
2060 info2 = st->ss->container_content(st, subarray);
2061 if (info2) {
2062 info.array.spare_disks =
2063 info2->array.spare_disks;
2064 sysfs_free(info2);
2065 }
2066 }
2067
5da9ab98
N
2068 /* Impose these changes on a single array. First
2069 * check that the metadata is OK with the change. */
7bc71196 2070
7ec0996c 2071 if (reshape_super(st, 0, info.new_level,
5da9ab98 2072 info.new_layout, info.new_chunk,
41784c88 2073 info.array.raid_disks, info.delta_disks,
32754b7d
N
2074 c->backup_file, devname, APPLY_METADATA_CHANGES,
2075 c->verbose)) {
7bc71196
DW
2076 rv = 1;
2077 goto release;
2078 }
5da9ab98 2079 sync_metadata(st);
32754b7d 2080 rv = reshape_array(container, fd, devname, st, &info, c->force,
19ceb16d
N
2081 devlist, data_offset, c->backup_file, c->verbose,
2082 0, 0, 0);
9202b8eb 2083 frozen = 0;
5da9ab98
N
2084 }
2085release:
8e61e0d7 2086 sysfs_free(sra);
9202b8eb
N
2087 if (frozen > 0)
2088 unfreeze(st);
5da9ab98
N
2089 return rv;
2090}
7bc71196 2091
f93346ef
AK
2092/* verify_reshape_position()
2093 * Function checks if reshape position in metadata is not farther
2094 * than position in md.
2095 * Return value:
2096 * 0 : not valid sysfs entry
2097 * it can be caused by not started reshape, it should be started
2098 * by reshape array or raid0 array is before takeover
2099 * -1 : error, reshape position is obviously wrong
2100 * 1 : success, reshape progress correct or updated
2101*/
2102static int verify_reshape_position(struct mdinfo *info, int level)
2103{
2104 int ret_val = 0;
2105 char buf[40];
178950ea 2106 int rv;
f93346ef
AK
2107
2108 /* read sync_max, failure can mean raid0 array */
178950ea
AK
2109 rv = sysfs_get_str(info, NULL, "sync_max", buf, 40);
2110
2111 if (rv > 0) {
f93346ef
AK
2112 char *ep;
2113 unsigned long long position = strtoull(buf, &ep, 0);
2114
2115 dprintf(Name": Read sync_max sysfs entry is: %s\n", buf);
2116 if (!(ep == buf || (*ep != 0 && *ep != '\n' && *ep != ' '))) {
2117 position *= get_data_disks(level,
2118 info->new_layout,
2119 info->array.raid_disks);
2120 if (info->reshape_progress < position) {
2121 dprintf("Corrected reshape progress (%llu) to "
2122 "md position (%llu)\n",
2123 info->reshape_progress, position);
2124 info->reshape_progress = position;
2125 ret_val = 1;
2126 } else if (info->reshape_progress > position) {
e7b84f9d
N
2127 pr_err("Fatal error: array "
2128 "reshape was not properly frozen "
2129 "(expected reshape position is %llu, "
2130 "but reshape progress is %llu.\n",
2131 position, info->reshape_progress);
f93346ef
AK
2132 ret_val = -1;
2133 } else {
2134 dprintf("Reshape position in md and metadata "
2135 "are the same;");
2136 ret_val = 1;
2137 }
2138 }
178950ea
AK
2139 } else if (rv == 0) {
2140 /* for valid sysfs entry, 0-length content
2141 * should be indicated as error
2142 */
2143 ret_val = -1;
f93346ef
AK
2144 }
2145
2146 return ret_val;
2147}
2148
534f5432
N
2149static unsigned long long choose_offset(unsigned long long lo,
2150 unsigned long long hi,
2151 unsigned long long min,
2152 unsigned long long max)
2153{
2154 /* Choose a new offset between hi and lo.
2155 * It must be between min and max, but
2156 * we would prefer something near the middle of hi/lo, and also
2157 * prefer to be aligned to a big power of 2.
2158 *
2159 * So we start with the middle, then for each bit,
2160 * starting at '1' and increasing, if it is set, we either
2161 * add it or subtract it if possible, preferring the option
2162 * which is furthest from the boundary.
2163 *
2164 * We stop once we get a 1MB alignment. As units are in sectors,
2165 * 1MB = 2*1024 sectors.
2166 */
2167 unsigned long long choice = (lo + hi) / 2;
2168 unsigned long long bit = 1;
2169
2170 for (bit = 1; bit < 2*1024; bit = bit << 1) {
2171 unsigned long long bigger, smaller;
2172 if (! (bit & choice))
2173 continue;
2174 bigger = choice + bit;
2175 smaller = choice - bit;
2176 if (bigger > max && smaller < min)
2177 break;
2178 if (bigger > max)
2179 choice = smaller;
2180 else if (smaller < min)
2181 choice = bigger;
2182 else if (hi - bigger > smaller - lo)
2183 choice = bigger;
2184 else
2185 choice = smaller;
2186 }
2187 return choice;
2188}
2189
13bbb145 2190static int set_new_data_offset(struct mdinfo *sra, struct supertype *st,
50a4962f 2191 char *devname, int delta_disks,
13bbb145
N
2192 unsigned long long data_offset,
2193 unsigned long long min)
19ceb16d 2194{
13bbb145 2195 struct mdinfo *sd;
19ceb16d
N
2196 int dir = 0;
2197 int err = 0;
f9b08fec 2198 unsigned long long before, after;
19ceb16d 2199
f9b08fec
N
2200 /* Need to find min space before and after so same is used
2201 * on all devices
2202 */
2203 before = UINT64_MAX;
2204 after = UINT64_MAX;
19ceb16d
N
2205 for (sd = sra->devs; sd; sd = sd->next) {
2206 char *dn;
2207 int dfd;
2208 int rv;
2209 struct supertype *st2;
2210 struct mdinfo info2;
2211
2212 if (sd->disk.state & (1<<MD_DISK_FAULTY))
2213 continue;
2214 dn = map_dev(sd->disk.major, sd->disk.minor, 0);
2215 dfd = dev_open(dn, O_RDONLY);
2216 if (dfd < 0) {
ed503f89 2217 pr_err("%s: cannot open component %s\n",
19ceb16d 2218 devname, dn ? dn : "-unknown-");
19ceb16d
N
2219 goto release;
2220 }
2221 st2 = dup_super(st);
2222 rv = st2->ss->load_super(st2,dfd, NULL);
2223 close(dfd);
2224 if (rv) {
2225 free(st2);
ed503f89 2226 pr_err("%s: cannot get superblock from %s\n",
19ceb16d
N
2227 devname, dn);
2228 goto release;
2229 }
2230 st2->ss->getinfo_super(st2, &info2, NULL);
2231 st2->ss->free_super(st2);
2232 free(st2);
c4b26c64
N
2233 if (info2.space_before == 0 &&
2234 info2.space_after == 0) {
2235 /* Metadata doesn't support data_offset changes */
2236 return 1;
2237 }
f9b08fec
N
2238 if (before > info2.space_before)
2239 before = info2.space_before;
2240 if (after > info2.space_after)
2241 after = info2.space_after;
2242
2243 if (data_offset != INVALID_SECTORS) {
2244 if (dir == 0) {
2245 if (info2.data_offset == data_offset) {
2246 pr_err("%s: already has that data_offset\n",
2247 dn);
2248 goto release;
2249 }
2250 if (data_offset < info2.data_offset)
2251 dir = -1;
2252 else
2253 dir = 1;
2254 } else if ((data_offset <= info2.data_offset && dir == 1) ||
2255 (data_offset >= info2.data_offset && dir == -1)) {
2256 pr_err("%s: differing data offsets on devices make this --data-offset setting impossible\n",
2257 dn);
2258 goto release;
2259 }
2260 }
2261 }
2262 if (before == UINT64_MAX)
2263 /* impossible really, there must be no devices */
2264 return 1;
2265
2266 for (sd = sra->devs; sd; sd = sd->next) {
2267 char *dn = map_dev(sd->disk.major, sd->disk.minor, 0);
c0f0d812 2268 unsigned long long new_data_offset;
f9b08fec 2269
b397d7f3
N
2270 if (sd->disk.state & (1<<MD_DISK_FAULTY))
2271 continue;
50a4962f 2272 if (delta_disks < 0) {
19ceb16d
N
2273 /* Don't need any space as array is shrinking
2274 * just move data_offset up by min
2275 */
5582b118 2276 if (data_offset == INVALID_SECTORS)
c0f0d812 2277 new_data_offset = sd->data_offset + min;
19ceb16d 2278 else {
c0f0d812 2279 if (data_offset < sd->data_offset + min) {
ed503f89 2280 pr_err("--data-offset too small for %s\n",
19ceb16d
N
2281 dn);
2282 goto release;
2283 }
c0f0d812 2284 new_data_offset = data_offset;
19ceb16d 2285 }
50a4962f 2286 } else if (delta_disks > 0) {
19ceb16d 2287 /* need space before */
f9b08fec 2288 if (before < min) {
ed503f89 2289 pr_err("Insufficient head-space for reshape on %s\n",
19ceb16d
N
2290 dn);
2291 goto release;
2292 }
5582b118 2293 if (data_offset == INVALID_SECTORS)
c0f0d812 2294 new_data_offset = sd->data_offset - min;
19ceb16d 2295 else {
c0f0d812 2296 if (data_offset > sd->data_offset - min) {
ed503f89 2297 pr_err("--data-offset too large for %s\n",
19ceb16d
N
2298 dn);
2299 goto release;
2300 }
c0f0d812 2301 new_data_offset = data_offset;
19ceb16d
N
2302 }
2303 } else {
2304 if (dir == 0) {
f9b08fec
N
2305 /* can move up or down. If 'data_offset'
2306 * was set we would have already decided,
2307 * so just choose direction with most space.
19ceb16d 2308 */
c0f0d812 2309 if (before > after)
19ceb16d
N
2310 dir = -1;
2311 else
2312 dir = 1;
19ceb16d 2313 }
b397d7f3
N
2314 sysfs_set_str(sra, NULL, "reshape_direction",
2315 dir == 1 ? "backwards" : "forwards");
c0f0d812
N
2316 if (dir > 0) {
2317 /* Increase data offset */
f9b08fec 2318 if (after < min) {
ed503f89 2319 pr_err("Insufficient tail-space for reshape on %s\n",
19ceb16d
N
2320 dn);
2321 goto release;
2322 }
5582b118 2323 if (data_offset != INVALID_SECTORS &&
c0f0d812 2324 data_offset < sd->data_offset + min) {
ed503f89 2325 pr_err("--data-offset too small on %s\n",
19ceb16d
N
2326 dn);
2327 goto release;
2328 }
5582b118 2329 if (data_offset != INVALID_SECTORS)
c0f0d812 2330 new_data_offset = data_offset;
534f5432
N
2331 else
2332 new_data_offset = choose_offset(sd->data_offset,
2333 sd->data_offset + after,
2334 sd->data_offset + min,
2335 sd->data_offset + after);
c0f0d812
N
2336 } else {
2337 /* Decrease data offset */
f9b08fec 2338 if (before < min) {
ed503f89 2339 pr_err("insufficient head-room on %s\n",
19ceb16d
N
2340 dn);
2341 goto release;
2342 }
5582b118 2343 if (data_offset != INVALID_SECTORS &&
c0f0d812 2344 data_offset < sd->data_offset - min) {
ed503f89 2345 pr_err("--data-offset too small on %s\n",
19ceb16d
N
2346 dn);
2347 goto release;
2348 }
5582b118 2349 if (data_offset != INVALID_SECTORS)
c0f0d812 2350 new_data_offset = data_offset;
534f5432
N
2351 else
2352 new_data_offset = choose_offset(sd->data_offset - before,
2353 sd->data_offset,
2354 sd->data_offset - before,
2355 sd->data_offset - min);
19ceb16d
N
2356 }
2357 }
a6a78630
N
2358 err = sysfs_set_num(sra, sd, "new_offset", new_data_offset);
2359 if (err < 0 && errno == E2BIG) {
2360 /* try again after increasing data size to max */
2361 err = sysfs_set_num(sra, sd, "size", 0);
2362 if (err < 0 && errno == EINVAL &&
2363 !(sd->disk.state & (1<<MD_DISK_SYNC))) {
2364 /* some kernels have a bug where you cannot
2365 * use '0' on spare devices. */
2366 sysfs_set_num(sra, sd, "size",
2367 (sra->component_size + after)/2);
2368 }
2369 err = sysfs_set_num(sra, sd, "new_offset",
2370 new_data_offset);
2371 }
2372 if (err < 0) {
d7e1f52b
N
2373 if (errno == E2BIG && data_offset != INVALID_SECTORS) {
2374 pr_err("data-offset is too big for %s\n",
2375 dn);
2376 goto release;
2377 }
9ad2a640
N
2378 if (sd == sra->devs &&
2379 (errno == ENOENT || errno == E2BIG))
2380 /* Early kernel, no 'new_offset' file,
2381 * or kernel doesn't like us.
93f174b9
N
2382 * For RAID5/6 this is not fatal
2383 */
2384 return 1;
ed503f89 2385 pr_err("Cannot set new_offset for %s\n",
19ceb16d
N
2386 dn);
2387 break;
2388 }
2389 }
13bbb145
N
2390 return err;
2391release:
2392 return -1;
2393}
2394
2395static int raid10_reshape(char *container, int fd, char *devname,
2396 struct supertype *st, struct mdinfo *info,
2397 struct reshape *reshape,
2398 unsigned long long data_offset,
2399 int force, int verbose)
2400{
2401 /* Changing raid_disks, layout, chunksize or possibly
2402 * just data_offset for a RAID10.
2403 * We must always change data_offset. We change by at least
89ecd3cf 2404 * ->min_offset_change which is the largest of the old and new
13bbb145
N
2405 * chunk sizes.
2406 * If raid_disks is increasing, then data_offset must decrease
2407 * by at least this copy size.
2408 * If raid_disks is unchanged, data_offset must increase or
89ecd3cf 2409 * decrease by at least min_offset_change but preferably by much more.
13bbb145
N
2410 * We choose half of the available space.
2411 * If raid_disks is decreasing, data_offset must increase by
89ecd3cf 2412 * at least min_offset_change. To allow of this, component_size
13bbb145
N
2413 * must be decreased by the same amount.
2414 *
2415 * So we calculate the required minimum and direction, possibly
2416 * reduce the component_size, then iterate through the devices
2417 * and set the new_data_offset.
2418 * If that all works, we set chunk_size, layout, raid_disks, and start
2419 * 'reshape'
2420 */
2421 struct mdinfo *sra;
2422 unsigned long long min;
2423 int err = 0;
2424
2425 sra = sysfs_read(fd, NULL,
2426 GET_COMPONENT|GET_DEVS|GET_OFFSET|GET_STATE|GET_CHUNK
2427 );
2428 if (!sra) {
ed503f89 2429 pr_err("%s: Cannot get array details from sysfs\n",
13bbb145
N
2430 devname);
2431 goto release;
2432 }
89ecd3cf 2433 min = reshape->min_offset_change;
13bbb145
N
2434
2435 if (info->delta_disks)
2436 sysfs_set_str(sra, NULL, "reshape_direction",
2437 info->delta_disks < 0 ? "backwards" : "forwards");
2438 if (info->delta_disks < 0 &&
89ecd3cf 2439 info->space_after < min) {
13bbb145
N
2440 int rv = sysfs_set_num(sra, NULL, "component_size",
2441 (sra->component_size -
89ecd3cf 2442 min)/2);
13bbb145 2443 if (rv) {
ed503f89 2444 pr_err("cannot reduce component size\n");
13bbb145
N
2445 goto release;
2446 }
2447 }
50a4962f 2448 err = set_new_data_offset(sra, st, devname, info->delta_disks, data_offset,
13bbb145 2449 min);
93f174b9
N
2450 if (err == 1) {
2451 pr_err("Cannot set new_data_offset: RAID10 reshape not\n");
2452 cont_err("supported on this kernel\n");
2453 err = -1;
2454 }
13bbb145
N
2455 if (err < 0)
2456 goto release;
2457
ee2429e0 2458 if (!err && sysfs_set_num(sra, NULL, "chunk_size", info->new_chunk) < 0)
19ceb16d
N
2459 err = errno;
2460 if (!err && sysfs_set_num(sra, NULL, "layout", reshape->after.layout) < 0)
2461 err = errno;
2462 if (!err && sysfs_set_num(sra, NULL, "raid_disks",
2463 info->array.raid_disks + info->delta_disks) < 0)
2464 err = errno;
2465 if (!err && sysfs_set_str(sra, NULL, "sync_action", "reshape") < 0)
2466 err = errno;
2467 if (err) {
ed503f89 2468 pr_err("Cannot set array shape for %s\n",
d33f1518
N
2469 devname);
2470 if (err == EBUSY &&
2471 (info->array.state & (1<<MD_SB_BITMAP_PRESENT)))
2472 cont_err(" Bitmap must be removed before"
2473 " shape can be changed\n");
2474 goto release;
19ceb16d
N
2475 }
2476 sysfs_free(sra);
2477 return 0;
2478release:
2479 sysfs_free(sra);
2480 return 1;
2481}
2482
ee2429e0
N
2483static void get_space_after(int fd, struct supertype *st, struct mdinfo *info)
2484{
2485 struct mdinfo *sra, *sd;
f3f09a52
LD
2486 /* Initialisation to silence compiler warning */
2487 unsigned long long min_space_before = 0, min_space_after = 0;
ee2429e0
N
2488 int first = 1;
2489
4dd2df09 2490 sra = sysfs_read(fd, NULL, GET_DEVS);
ee2429e0
N
2491 if (!sra)
2492 return;
2493 for (sd = sra->devs; sd; sd = sd->next) {
2494 char *dn;
2495 int dfd;
2496 struct supertype *st2;
2497 struct mdinfo info2;
2498
2499 if (sd->disk.state & (1<<MD_DISK_FAULTY))
2500 continue;
2501 dn = map_dev(sd->disk.major, sd->disk.minor, 0);
2502 dfd = dev_open(dn, O_RDONLY);
2503 if (dfd < 0)
2504 break;
2505 st2 = dup_super(st);
2506 if (st2->ss->load_super(st2,dfd, NULL)) {
2507 close(dfd);
2508 free(st2);
2509 break;
2510 }
2511 close(dfd);
2512 st2->ss->getinfo_super(st2, &info2, NULL);
2513 st2->ss->free_super(st2);
2514 free(st2);
2515 if (first ||
2516 min_space_before > info2.space_before)
2517 min_space_before = info2.space_before;
2518 if (first ||
2519 min_space_after > info2.space_after)
2520 min_space_after = info2.space_after;
2521 first = 0;
2522 }
2523 if (sd == NULL && !first) {
2524 info->space_after = min_space_after;
2525 info->space_before = min_space_before;
2526 }
2527 sysfs_free(sra);
2528}
2529
434d167e
N
2530static void update_cache_size(char *container, struct mdinfo *sra,
2531 struct mdinfo *info,
2532 int disks, unsigned long long blocks)
2533{
2534 /* Check that the internal stripe cache is
2535 * large enough, or it won't work.
2536 * It must hold at least 4 stripes of the larger
2537 * chunk size
2538 */
2539 unsigned long cache;
2540 cache = max(info->array.chunk_size, info->new_chunk);
2541 cache *= 4; /* 4 stripes minimum */
2542 cache /= 512; /* convert to sectors */
2543 /* make sure there is room for 'blocks' with a bit to spare */
2544 if (cache < 16 + blocks / disks)
2545 cache = 16 + blocks / disks;
2546 cache /= (4096/512); /* Covert from sectors to pages */
2547
2548 if (sra->cache_size < cache)
2549 subarray_set_num(container, sra, "stripe_cache_size",
2550 cache+1);
2551}
2552
77afa056
N
2553static int impose_reshape(struct mdinfo *sra,
2554 struct mdinfo *info,
2555 struct supertype *st,
2556 int fd,
2557 int restart,
2558 char *devname, char *container,
2559 struct reshape *reshape)
2560{
2561 struct mdu_array_info_s array;
2562
2563 sra->new_chunk = info->new_chunk;
2564
2565 if (restart) {
2566 /* for external metadata checkpoint saved by mdmon can be lost
2567 * or missed /due to e.g. crash/. Check if md is not during
2568 * restart farther than metadata points to.
2569 * If so, this means metadata information is obsolete.
2570 */
2571 if (st->ss->external)
2572 verify_reshape_position(info, reshape->level);
2573 sra->reshape_progress = info->reshape_progress;
2574 } else {
2575 sra->reshape_progress = 0;
2576 if (reshape->after.data_disks < reshape->before.data_disks)
2577 /* start from the end of the new array */
2578 sra->reshape_progress = (sra->component_size
2579 * reshape->after.data_disks);
2580 }
2581
2582 ioctl(fd, GET_ARRAY_INFO, &array);
2583 if (info->array.chunk_size == info->new_chunk &&
2584 reshape->before.layout == reshape->after.layout &&
2585 st->ss->external == 0) {
2586 /* use SET_ARRAY_INFO but only if reshape hasn't started */
2587 array.raid_disks = reshape->after.data_disks + reshape->parity;
2588 if (!restart &&
2589 ioctl(fd, SET_ARRAY_INFO, &array) != 0) {
2590 int err = errno;
2591
2592 pr_err("Cannot set device shape for %s: %s\n",
2593 devname, strerror(errno));
2594
2595 if (err == EBUSY &&
2596 (array.state & (1<<MD_SB_BITMAP_PRESENT)))
2597 cont_err("Bitmap must be removed before"
2598 " shape can be changed\n");
2599
2600 goto release;
2601 }
2602 } else if (!restart) {
2603 /* set them all just in case some old 'new_*' value
2604 * persists from some earlier problem.
2605 */
2606 int err = 0;
2607 if (sysfs_set_num(sra, NULL, "chunk_size", info->new_chunk) < 0)
2608 err = errno;
2609 if (!err && sysfs_set_num(sra, NULL, "layout",
2610 reshape->after.layout) < 0)
2611 err = errno;
2612 if (!err && subarray_set_num(container, sra, "raid_disks",
2613 reshape->after.data_disks +
2614 reshape->parity) < 0)
2615 err = errno;
2616 if (err) {
2617 pr_err("Cannot set device shape for %s\n",
2618 devname);
2619
2620 if (err == EBUSY &&
2621 (array.state & (1<<MD_SB_BITMAP_PRESENT)))
2622 cont_err("Bitmap must be removed before"
2623 " shape can be changed\n");
2624 goto release;
2625 }
2626 }
2627 return 0;
2628release:
2629 return -1;
2630}
2631
5da9ab98
N
2632static int reshape_array(char *container, int fd, char *devname,
2633 struct supertype *st, struct mdinfo *info,
e2e53a2d 2634 int force, struct mddev_dev *devlist,
19ceb16d 2635 unsigned long long data_offset,
ba728be7 2636 char *backup_file, int verbose, int forked,
b76b30e0 2637 int restart, int freeze_reshape)
5da9ab98
N
2638{
2639 struct reshape reshape;
2640 int spares_needed;
2641 char *msg;
2642 int orig_level = UnSet;
434d167e 2643 int odisks;
1f9b0e28 2644 int delayed;
7bc71196 2645
5da9ab98
N
2646 struct mdu_array_info_s array;
2647 char *c;
e86c9dd6 2648
e2e53a2d
N
2649 struct mddev_dev *dv;
2650 int added_disks;
2651
d152f53e
JS
2652 int *fdlist = NULL;
2653 unsigned long long *offsets = NULL;
5da9ab98
N
2654 int d;
2655 int nrdisks;
2656 int err;
da8100ca 2657 unsigned long blocks;
5da9ab98
N
2658 unsigned long long array_size;
2659 int done;
cf6ac177 2660 struct mdinfo *sra = NULL;
7bc71196 2661
9468aeac
N
2662 /* when reshaping a RAID0, the component_size might be zero.
2663 * So try to fix that up.
2664 */
2665 if (ioctl(fd, GET_ARRAY_INFO, &array) != 0) {
2666 dprintf("Cannot get array information.\n");
2667 goto release;
2668 }
2669 if (array.level == 0 && info->component_size == 0) {
2670 get_dev_size(fd, NULL, &array_size);
2671 info->component_size = array_size / array.raid_disks;
2672 }
2673
ee2429e0
N
2674 if (array.level == 10)
2675 /* Need space_after info */
2676 get_space_after(fd, st, info);
2677
3cb2aed2
N
2678 if (info->reshape_active) {
2679 int new_level = info->new_level;
2680 info->new_level = UnSet;
ce4783d3
N
2681 if (info->delta_disks > 0)
2682 info->array.raid_disks -= info->delta_disks;
3cb2aed2
N
2683 msg = analyse_change(info, &reshape);
2684 info->new_level = new_level;
ce4783d3
N
2685 if (info->delta_disks > 0)
2686 info->array.raid_disks += info->delta_disks;
fcdfb814
AK
2687 if (!restart)
2688 /* Make sure the array isn't read-only */
2689 ioctl(fd, RESTART_ARRAY_RW, 0);
3cb2aed2
N
2690 } else
2691 msg = analyse_change(info, &reshape);
5da9ab98 2692 if (msg) {
e7b84f9d 2693 pr_err("%s\n", msg);
631d7405 2694 goto release;
5da9ab98 2695 }
817ed7d6
N
2696 if (restart &&
2697 (reshape.level != info->array.level ||
2698 reshape.before.layout != info->array.layout ||
384e9be1 2699 reshape.before.data_disks + reshape.parity
ce4783d3 2700 != info->array.raid_disks - max(0, info->delta_disks))) {
e7b84f9d 2701 pr_err("reshape info is not in native format -"
20a40eca
N
2702 " cannot continue.\n");
2703 goto release;
2704 }
a93f87ee 2705
e1dd332a
AK
2706 if (st->ss->external && restart && (info->reshape_progress == 0)) {
2707 /* When reshape is restarted from '0', very begin of array
2708 * it is possible that for external metadata reshape and array
2709 * configuration doesn't happen.
2710 * Check if md has the same opinion, and reshape is restarted
2711 * from 0. If so, this is regular reshape start after reshape
2712 * switch in metadata to next array only.
2713 */
2714 if ((verify_reshape_position(info, reshape.level) >= 0) &&
2715 (info->reshape_progress == 0))
2716 restart = 0;
2717 }
a93f87ee
N
2718 if (restart) {
2719 /* reshape already started. just skip to monitoring the reshape */
2720 if (reshape.backup_blocks == 0)
2721 return 0;
8ecf12b9
N
2722 if (restart & RESHAPE_NO_BACKUP)
2723 return 0;
a93f87ee
N
2724 goto started;
2725 }
a9c3e78f
AK
2726 /* The container is frozen but the array may not be.
2727 * So freeze the array so spares don't get put to the wrong use
2728 * FIXME there should probably be a cleaner separation between
2729 * freeze_array and freeze_container.
2730 */
2731 sysfs_freeze_array(info);
e06c4e59 2732 /* Check we have enough spares to not be degraded */
e2e53a2d
N
2733 added_disks = 0;
2734 for (dv = devlist; dv ; dv=dv->next)
2735 added_disks++;
5da9ab98
N
2736 spares_needed = max(reshape.before.data_disks,
2737 reshape.after.data_disks)
2738 + reshape.parity - array.raid_disks;
7bc71196 2739
88c1a083 2740 if (!force &&
e2e53a2d
N
2741 info->new_level > 1 && info->array.level > 1 &&
2742 spares_needed > info->array.spare_disks + added_disks) {
e7b84f9d
N
2743 pr_err("Need %d spare%s to avoid degraded array,"
2744 " and only have %d.\n"
2745 " Use --force to over-ride this check.\n",
2746 spares_needed,
2747 spares_needed == 1 ? "" : "s",
2748 info->array.spare_disks + added_disks);
631d7405 2749 goto release;
7bc71196 2750 }
e06c4e59
N
2751 /* Check we have enough spares to not fail */
2752 spares_needed = max(reshape.before.data_disks,
2753 reshape.after.data_disks)
2754 - array.raid_disks;
2755 if ((info->new_level > 1 || info->new_level == 0) &&
e2e53a2d 2756 spares_needed > info->array.spare_disks +added_disks) {
e7b84f9d
N
2757 pr_err("Need %d spare%s to create working array,"
2758 " and only have %d.\n",
2759 spares_needed,
2760 spares_needed == 1 ? "" : "s",
2761 info->array.spare_disks + added_disks);
e06c4e59
N
2762 goto release;
2763 }
e86c9dd6 2764
eae35f5c 2765 if (reshape.level != array.level) {
5da9ab98
N
2766 char *c = map_num(pers, reshape.level);
2767 int err;
2768 if (c == NULL)
631d7405 2769 goto release;
e86c9dd6 2770
5da9ab98
N
2771 err = sysfs_set_str(info, NULL, "level", c);
2772 if (err) {
2773 err = errno;
e7b84f9d 2774 pr_err("%s: could not set level to %s\n",
5da9ab98 2775 devname, c);
24daa16f 2776 if (err == EBUSY &&
5da9ab98 2777 (info->array.state & (1<<MD_SB_BITMAP_PRESENT)))
e7b84f9d
N
2778 cont_err("Bitmap must be removed"
2779 " before level can be changed\n");
631d7405 2780 goto release;
19678e53 2781 }
ba728be7 2782 if (verbose >= 0)
e7b84f9d 2783 pr_err("level of %s changed to %s\n",
24daa16f 2784 devname, c);
eae35f5c 2785 orig_level = array.level;
3cd4e7c4 2786 sysfs_freeze_array(info);
e86c9dd6 2787
16d4d84e
AK
2788 if (reshape.level > 0 && st->ss->external) {
2789 /* make sure mdmon is aware of the new level */
4dd2df09 2790 if (mdmon_running(container))
78340e26
AK
2791 flush_mdmon(container);
2792
4dd2df09
N
2793 if (!mdmon_running(container))
2794 start_mdmon(container);
16d4d84e 2795 ping_monitor(container);
4dd2df09 2796 if (mdmon_running(container) &&
e919fb0a
AK
2797 st->update_tail == NULL)
2798 st->update_tail = &st->updates;
16d4d84e 2799 }
5da9ab98 2800 }
5da9ab98
N
2801 /* ->reshape_super might have chosen some spares from the
2802 * container that it wants to be part of the new array.
2803 * We can collect them with ->container_content and give
2804 * them to the kernel.
2805 */
2806 if (st->ss->reshape_super && st->ss->container_content) {
2807 char *subarray = strchr(info->text_version+1, '/')+1;
2808 struct mdinfo *info2 =
2809 st->ss->container_content(st, subarray);
2810 struct mdinfo *d;
2811
2dd0d697 2812 if (info2) {
4dd2df09 2813 sysfs_init(info2, fd, st->devnm);
0d5ac3c6
N
2814 /* When increasing number of devices, we need to set
2815 * new raid_disks before adding these, or they might
2816 * be rejected.
2817 */
2818 if (reshape.backup_blocks &&
2819 reshape.after.data_disks > reshape.before.data_disks)
2820 subarray_set_num(container, info2, "raid_disks",
2821 reshape.after.data_disks +
2822 reshape.parity);
5da9ab98
N
2823 for (d = info2->devs; d; d = d->next) {
2824 if (d->disk.state == 0 &&
2825 d->disk.raid_disk >= 0) {
2826 /* This is a spare that wants to
2827 * be part of the array.
2828 */
2829 add_disk(fd, st, info2, d);
2830 }
9860f271 2831 }
2dd0d697
AK
2832 sysfs_free(info2);
2833 }
5da9ab98 2834 }
e2e53a2d
N
2835 /* We might have been given some devices to add to the
2836 * array. Now that the array has been changed to the right
2837 * level and frozen, we can safely add them.
2838 */
2839 if (devlist)
ba728be7 2840 Manage_subdevs(devname, fd, devlist, verbose,
11b391ec 2841 0,NULL, 0);
1686dc25 2842
e09233d0 2843 if (reshape.backup_blocks == 0 && data_offset != INVALID_SECTORS)
8876bf0b 2844 reshape.backup_blocks = reshape.before.data_disks * info->array.chunk_size/512;
b4f8e38b 2845 if (reshape.backup_blocks == 0) {
5da9ab98
N
2846 /* No restriping needed, but we might need to impose
2847 * some more changes: layout, raid_disks, chunk_size
e86c9dd6 2848 */
24aebf3a
KW
2849 /* read current array info */
2850 if (ioctl(fd, GET_ARRAY_INFO, &array) != 0) {
83732c28 2851 dprintf("Cannot get array information.\n");
24aebf3a
KW
2852 goto release;
2853 }
2854 /* compare current array info with new values and if
2855 * it is different update them to new */
5da9ab98 2856 if (info->new_layout != UnSet &&
24aebf3a
KW
2857 info->new_layout != array.layout) {
2858 array.layout = info->new_layout;
2859 if (ioctl(fd, SET_ARRAY_INFO, &array) != 0) {
e7b84f9d 2860 pr_err("failed to set new layout\n");
631d7405 2861 goto release;
ba728be7 2862 } else if (verbose >= 0)
5da9ab98 2863 printf("layout for %s set to %d\n",
24aebf3a 2864 devname, array.layout);
5da9ab98
N
2865 }
2866 if (info->delta_disks != UnSet &&
24aebf3a
KW
2867 info->delta_disks != 0 &&
2868 array.raid_disks != (info->array.raid_disks + info->delta_disks)) {
2869 array.raid_disks += info->delta_disks;
2870 if (ioctl(fd, SET_ARRAY_INFO, &array) != 0) {
e7b84f9d 2871 pr_err("failed to set raid disks\n");
631d7405 2872 goto release;
ba728be7 2873 } else if (verbose >= 0) {
5da9ab98 2874 printf("raid_disks for %s set to %d\n",
24aebf3a
KW
2875 devname, array.raid_disks);
2876 }
5da9ab98
N
2877 }
2878 if (info->new_chunk != 0 &&
24aebf3a 2879 info->new_chunk != array.chunk_size) {
5da9ab98
N
2880 if (sysfs_set_num(info, NULL,
2881 "chunk_size", info->new_chunk) != 0) {
e7b84f9d 2882 pr_err("failed to set chunk size\n");
631d7405 2883 goto release;
ba728be7 2884 } else if (verbose >= 0)
5da9ab98 2885 printf("chunk size for %s set to %d\n",
24aebf3a 2886 devname, array.chunk_size);
4725bc31 2887 }
e35b189b 2888 unfreeze(st);
631d7405 2889 return 0;
5da9ab98 2890 }
19678e53 2891
5da9ab98
N
2892 /*
2893 * There are three possibilities.
2894 * 1/ The array will shrink.
2895 * We need to ensure the reshape will pause before reaching
2896 * the 'critical section'. We also need to fork and wait for
24daa16f 2897 * that to happen. When it does we
5da9ab98
N
2898 * suspend/backup/complete/unfreeze
2899 *
2900 * 2/ The array will not change size.
2901 * This requires that we keep a backup of a sliding window
2902 * so that we can restore data after a crash. So we need
2903 * to fork and monitor progress.
2904 * In future we will allow the data_offset to change, so
2905 * a sliding backup becomes unnecessary.
2906 *
2907 * 3/ The array will grow. This is relatively easy.
2908 * However the kernel's restripe routines will cheerfully
2909 * overwrite some early data before it is safe. So we
2910 * need to make a backup of the early parts of the array
2911 * and be ready to restore it if rebuild aborts very early.
2912 * For externally managed metadata, we still need a forked
2913 * child to monitor the reshape and suspend IO over the region
2914 * that is being reshaped.
2915 *
2916 * We backup data by writing it to one spare, or to a
2917 * file which was given on command line.
2918 *
2919 * In each case, we first make sure that storage is available
2920 * for the required backup.
2921 * Then we:
2922 * - request the shape change.
2923 * - fork to handle backup etc.
2924 */
5da9ab98
N
2925 /* Check that we can hold all the data */
2926 get_dev_size(fd, NULL, &array_size);
2927 if (reshape.new_size < (array_size/512)) {
e7b84f9d
N
2928 pr_err("this change will reduce the size of the array.\n"
2929 " use --grow --array-size first to truncate array.\n"
2930 " e.g. mdadm --grow %s --array-size %llu\n",
2931 devname, reshape.new_size/2);
5da9ab98
N
2932 goto release;
2933 }
7236ee7a 2934
19ceb16d 2935 if (array.level == 10) {
033d0929 2936 /* Reshaping RAID10 does not require any data backup by
19ceb16d
N
2937 * user-space. Instead it requires that the data_offset
2938 * is changed to avoid the need for backup.
2939 * So this is handled very separately
2940 */
2941 if (restart)
2942 /* Nothing to do. */
2943 return 0;
2944 return raid10_reshape(container, fd, devname, st, info,
2945 &reshape, data_offset,
2946 force, verbose);
2947 }
4dd2df09 2948 sra = sysfs_read(fd, NULL,
3656edcd 2949 GET_COMPONENT|GET_DEVS|GET_OFFSET|GET_STATE|GET_CHUNK|
5da9ab98 2950 GET_CACHE);
5da9ab98 2951 if (!sra) {
e7b84f9d 2952 pr_err("%s: Cannot get array details from sysfs\n",
5da9ab98 2953 devname);
5da9ab98
N
2954 goto release;
2955 }
7236ee7a 2956
8192902f 2957 if (!backup_file)
199f1a1f
N
2958 switch(set_new_data_offset(sra, st, devname,
2959 reshape.after.data_disks - reshape.before.data_disks,
8192902f
N
2960 data_offset,
2961 reshape.min_offset_change)) {
63c12c89
N
2962 case -1:
2963 goto release;
2964 case 0:
2965 /* Updated data_offset, so it's easy now */
2966 update_cache_size(container, sra, info,
2967 min(reshape.before.data_disks,
2968 reshape.after.data_disks),
2969 reshape.backup_blocks);
2970
2971 /* Right, everything seems fine. Let's kick things off.
2972 */
2973 sync_metadata(st);
2974
2975 if (impose_reshape(sra, info, st, fd, restart,
2976 devname, container, &reshape) < 0)
2977 goto release;
2978 if (sysfs_set_str(sra, NULL, "sync_action", "reshape") < 0) {
2979 pr_err("Failed to initiate reshape!\n");
2980 goto release;
2981 }
2982
2983 return 0;
2984 case 1: /* Couldn't set data_offset, try the old way */
2985 if (data_offset != INVALID_SECTORS) {
2986 pr_err("Cannot update data_offset on this array\n");
2987 goto release;
2988 }
2989 break;
2990 }
2991
8ecf12b9 2992started:
5da9ab98
N
2993 /* Decide how many blocks (sectors) for a reshape
2994 * unit. The number we have so far is just a minimum
2995 */
b4f8e38b 2996 blocks = reshape.backup_blocks;
24daa16f 2997 if (reshape.before.data_disks ==
5da9ab98
N
2998 reshape.after.data_disks) {
2999 /* Make 'blocks' bigger for better throughput, but
3000 * not so big that we reject it below.
3001 * Try for 16 megabytes
3002 */
3003 while (blocks * 32 < sra->component_size &&
3004 blocks < 16*1024*2)
3005 blocks *= 2;
3006 } else
e7b84f9d 3007 pr_err("Need to backup %luK of critical "
5da9ab98
N
3008 "section..\n", blocks/2);
3009
3010 if (blocks >= sra->component_size/2) {
e7b84f9d 3011 pr_err("%s: Something wrong"
5da9ab98
N
3012 " - reshape aborted\n",
3013 devname);
5da9ab98
N
3014 goto release;
3015 }
7236ee7a 3016
5da9ab98
N
3017 /* Now we need to open all these devices so we can read/write.
3018 */
b8b286a6
N
3019 nrdisks = max(reshape.before.data_disks,
3020 reshape.after.data_disks) + reshape.parity
3021 + sra->array.spare_disks;
503975b9
N
3022 fdlist = xcalloc((1+nrdisks), sizeof(int));
3023 offsets = xcalloc((1+nrdisks), sizeof(offsets[0]));
e380d3be 3024
b8b286a6
N
3025 odisks = reshape.before.data_disks + reshape.parity;
3026 d = reshape_prepare_fdlist(devname, sra, odisks,
5da9ab98
N
3027 nrdisks, blocks, backup_file,
3028 fdlist, offsets);
3029 if (d < 0) {
5da9ab98
N
3030 goto release;
3031 }
13c37ad3
AK
3032 if ((st->ss->manage_reshape == NULL) ||
3033 (st->ss->recover_backup == NULL)) {
3034 if (backup_file == NULL) {
3035 if (reshape.after.data_disks <=
3036 reshape.before.data_disks) {
e7b84f9d 3037 pr_err("%s: Cannot grow - "
13c37ad3
AK
3038 "need backup-file\n", devname);
3039 goto release;
3040 } else if (sra->array.spare_disks == 0) {
e7b84f9d 3041 pr_err("%s: Cannot grow - "
13c37ad3
AK
3042 "need a spare or backup-file to backup "
3043 "critical section\n", devname);
3044 goto release;
3045 }
3046 } else {
3047 if (!reshape_open_backup_file(backup_file, fd, devname,
3048 (signed)blocks,
3049 fdlist+d, offsets+d,
3050 restart)) {
3051 goto release;
3052 }
3053 d++;
e86c9dd6 3054 }
5da9ab98 3055 }
7236ee7a 3056
434d167e
N
3057 update_cache_size(container, sra, info,
3058 min(reshape.before.data_disks, reshape.after.data_disks),
3059 blocks);
5da9ab98
N
3060
3061 /* Right, everything seems fine. Let's kick things off.
3062 * If only changing raid_disks, use ioctl, else use
3063 * sysfs.
3064 */
3065 sync_metadata(st);
3066
77afa056
N
3067 if (impose_reshape(sra, info, st, fd, restart,
3068 devname, container, &reshape) < 0)
3069 goto release;
e86c9dd6 3070
27a1e5b5
N
3071 err = start_reshape(sra, restart, reshape.before.data_disks,
3072 reshape.after.data_disks);
fab32c97 3073 if (err) {
e7b84f9d
N
3074 pr_err("Cannot %s reshape for %s\n",
3075 restart ? "continue" : "start",
3076 devname);
fab32c97
AK
3077 goto release;
3078 }
a93f87ee
N
3079 if (restart)
3080 sysfs_set_str(sra, NULL, "array_state", "active");
b76b30e0
AK
3081 if (freeze_reshape) {
3082 free(fdlist);
3083 free(offsets);
3084 sysfs_free(sra);
e7b84f9d 3085 pr_err("Reshape has to be continued from"
59ab9f54 3086 " location %llu when root filesystem has been mounted.\n",
b76b30e0
AK
3087 sra->reshape_progress);
3088 return 1;
3089 }
5da9ab98
N
3090
3091 /* Now we just need to kick off the reshape and watch, while
3092 * handling backups of the data...
3093 * This is all done by a forked background process.
3094 */
3095 switch(forked ? 0 : fork()) {
6b2d630c 3096 case -1:
e7b84f9d 3097 pr_err("Cannot run child to monitor reshape: %s\n",
6b2d630c 3098 strerror(errno));
6b2d630c 3099 abort_reshape(sra);
631d7405 3100 goto release;
6b2d630c 3101 default:
d152f53e
JS
3102 free(fdlist);
3103 free(offsets);
3104 sysfs_free(sra);
6b2d630c 3105 return 0;
5da9ab98 3106 case 0:
cc700db3 3107 map_fork();
6b2d630c
N
3108 break;
3109 }
5da9ab98 3110
1f9b0e28
N
3111 /* If another array on the same devices is busy, the
3112 * reshape will wait for them. This would mean that
3113 * the first section that we suspend will stay suspended
3114 * for a long time. So check on that possibility
3115 * by looking for "DELAYED" in /proc/mdstat, and if found,
3116 * wait a while
3117 */
3118 do {
3119 struct mdstat_ent *mds, *m;
3120 delayed = 0;
3121 mds = mdstat_read(0, 0);
ae0dcfbd 3122 for (m = mds; m; m = m->next)
4dd2df09 3123 if (strcmp(m->devnm, sra->sys_name) == 0) {
1f9b0e28
N
3124 if (m->resync &&
3125 m->percent == RESYNC_DELAYED)
3126 delayed = 1;
3127 if (m->resync == 0)
3128 /* Haven't started the reshape thread
3129 * yet, wait a bit
3130 */
3131 delayed = 2;
3132 break;
3133 }
3134 free_mdstat(mds);
3135 if (delayed == 1 && get_linux_version() < 3007000) {
3136 pr_err("Reshape is delayed, but cannot wait carefully with this kernel.\n"
3137 " You might experience problems until other reshapes complete.\n");
3138 delayed = 0;
3139 }
3140 if (delayed)
3141 sleep(30 - (delayed-1) * 25);
3142 } while (delayed);
3143
6b2d630c
N
3144 close(fd);
3145 if (check_env("MDADM_GROW_VERIFY"))
3146 fd = open(devname, O_RDONLY | O_DIRECT);
3147 else
3148 fd = -1;
3149 mlockall(MCL_FUTURE);
5da9ab98 3150
6b2d630c
N
3151 if (st->ss->external) {
3152 /* metadata handler takes it from here */
3153 done = st->ss->manage_reshape(
3154 fd, sra, &reshape, st, blocks,
3155 fdlist, offsets,
3156 d - odisks, fdlist+odisks,
3157 offsets+odisks);
3158 } else
3159 done = child_monitor(
3160 fd, sra, &reshape, st, blocks,
3161 fdlist, offsets,
3162 d - odisks, fdlist+odisks,
3163 offsets+odisks);
3164
d152f53e
JS
3165 free(fdlist);
3166 free(offsets);
3167
6b2d630c
N
3168 if (backup_file && done)
3169 unlink(backup_file);
3170 if (!done) {
3171 abort_reshape(sra);
3172 goto out;
3173 }
1cbc5680
N
3174
3175 if (!st->ss->external &&
3176 !(reshape.before.data_disks != reshape.after.data_disks
3177 && info->custom_array_size) &&
3178 info->new_level == reshape.level &&
3179 !forked) {
3180 /* no need to wait for the reshape to finish as
3181 * there is nothing more to do.
3182 */
d152f53e 3183 sysfs_free(sra);
1cbc5680
N
3184 exit(0);
3185 }
3186 wait_reshape(sra);
3187
3188 if (st->ss->external) {
3189 /* Re-load the metadata as much could have changed */
4dd2df09 3190 int cfd = open_dev(st->container_devnm);
1cbc5680 3191 if (cfd >= 0) {
78340e26 3192 flush_mdmon(container);
1cbc5680
N
3193 st->ss->free_super(st);
3194 st->ss->load_container(st, cfd, container);
3195 close(cfd);
3196 }
3197 }
3198
6b2d630c
N
3199 /* set new array size if required customer_array_size is used
3200 * by this metadata.
3201 */
3202 if (reshape.before.data_disks !=
3203 reshape.after.data_disks &&
54397ed9
AK
3204 info->custom_array_size)
3205 set_array_size(st, info, info->text_version);
582496b2 3206
6b2d630c 3207 if (info->new_level != reshape.level) {
582496b2 3208
6b2d630c 3209 c = map_num(pers, info->new_level);
1cbc5680
N
3210 if (c) {
3211 err = sysfs_set_str(sra, NULL, "level", c);
3212 if (err)
e7b84f9d
N
3213 pr_err("%s: could not set level "
3214 "to %s\n", devname, c);
1cbc5680 3215 }
e919fb0a
AK
3216 if (info->new_level == 0)
3217 st->update_tail = NULL;
7236ee7a 3218 }
6b2d630c 3219out:
d152f53e 3220 sysfs_free(sra);
6b2d630c
N
3221 if (forked)
3222 return 0;
e84f2c00 3223 unfreeze(st);
6b2d630c 3224 exit(0);
e86c9dd6 3225
6b2d630c 3226release:
d152f53e
JS
3227 free(fdlist);
3228 free(offsets);
1cbc5680 3229 if (orig_level != UnSet && sra) {
7236ee7a
N
3230 c = map_num(pers, orig_level);
3231 if (c && sysfs_set_str(sra, NULL, "level", c) == 0)
e7b84f9d 3232 pr_err("aborting level change\n");
7236ee7a 3233 }
d152f53e 3234 sysfs_free(sra);
9202b8eb
N
3235 if (!forked)
3236 unfreeze(st);
631d7405 3237 return 1;
7236ee7a 3238}
e86c9dd6 3239
9ad6f6e6
AK
3240/* mdfd handle is passed to be closed in child process (after fork).
3241 */
493f5dd6 3242int reshape_container(char *container, char *devname,
9ad6f6e6 3243 int mdfd,
24daa16f 3244 struct supertype *st,
5da9ab98
N
3245 struct mdinfo *info,
3246 int force,
3247 char *backup_file,
ba728be7 3248 int verbose, int restart, int freeze_reshape)
5da9ab98 3249{
1bb174ba 3250 struct mdinfo *cc = NULL;
bcc9e9ed 3251 int rv = restart;
4dd2df09 3252 char last_devnm[32] = "";
1bb174ba 3253
d8eb27f7 3254 /* component_size is not meaningful for a container,
7ec0996c 3255 * so pass '0' meaning 'no change'
d8eb27f7 3256 */
493f5dd6 3257 if (!restart &&
7ec0996c 3258 reshape_super(st, 0, info->new_level,
5da9ab98 3259 info->new_layout, info->new_chunk,
41784c88 3260 info->array.raid_disks, info->delta_disks,
016e00f5 3261 backup_file, devname, APPLY_METADATA_CHANGES,
ba728be7 3262 verbose)) {
9e325442 3263 unfreeze(st);
5da9ab98 3264 return 1;
9e325442 3265 }
5da9ab98
N
3266
3267 sync_metadata(st);
3268
1bb174ba
AK
3269 /* ping monitor to be sure that update is on disk
3270 */
3271 ping_monitor(container);
5da9ab98
N
3272
3273 switch (fork()) {
3274 case -1: /* error */
3275 perror("Cannot fork to complete reshape\n");
9e325442 3276 unfreeze(st);
5da9ab98
N
3277 return 1;
3278 default: /* parent */
b76b30e0
AK
3279 if (!freeze_reshape)
3280 printf(Name ": multi-array reshape continues"
3281 " in background\n");
5da9ab98
N
3282 return 0;
3283 case 0: /* child */
cc700db3 3284 map_fork();
5da9ab98
N
3285 break;
3286 }
3287
9ad6f6e6
AK
3288 /* close unused handle in child process
3289 */
3290 if (mdfd > -1)
3291 close(mdfd);
3292
1bb174ba
AK
3293 while(1) {
3294 /* For each member array with reshape_active,
3295 * we need to perform the reshape.
3296 * We pick the first array that needs reshaping and
3297 * reshape it. reshape_array() will re-read the metadata
3298 * so the next time through a different array should be
3299 * ready for reshape.
493f5dd6
N
3300 * It is possible that the 'different' array will not
3301 * be assembled yet. In that case we simple exit.
3302 * When it is assembled, the mdadm which assembles it
3303 * will take over the reshape.
1bb174ba
AK
3304 */
3305 struct mdinfo *content;
5da9ab98
N
3306 int fd;
3307 struct mdstat_ent *mdstat;
5da9ab98 3308 char *adev;
4dd2df09 3309 int devid;
5da9ab98 3310
1bb174ba 3311 sysfs_free(cc);
5da9ab98 3312
1bb174ba
AK
3313 cc = st->ss->container_content(st, NULL);
3314
3315 for (content = cc; content ; content = content->next) {
3316 char *subarray;
3317 if (!content->reshape_active)
3318 continue;
3319
3320 subarray = strchr(content->text_version+1, '/')+1;
4dd2df09 3321 mdstat = mdstat_by_subdev(subarray, container);
1bb174ba
AK
3322 if (!mdstat)
3323 continue;
1ca90aa6 3324 if (mdstat->active == 0) {
4dd2df09
N
3325 pr_err("Skipping inactive array %s.\n",
3326 mdstat->devnm);
1ca90aa6
AK
3327 free_mdstat(mdstat);
3328 mdstat = NULL;
3329 continue;
3330 }
1bb174ba
AK
3331 break;
3332 }
3333 if (!content)
3334 break;
5da9ab98 3335
4dd2df09
N
3336 devid = devnm2devid(mdstat->devnm);
3337 adev = map_dev(major(devid), minor(devid), 0);
5da9ab98 3338 if (!adev)
1bb174ba
AK
3339 adev = content->text_version;
3340
4dd2df09 3341 fd = open_dev(mdstat->devnm);
97a3490c
AK
3342 if (fd < 0) {
3343 printf(Name ": Device %s cannot be opened for reshape.",
3344 adev);
3345 break;
3346 }
3347
4dd2df09 3348 if (strcmp(last_devnm, mdstat->devnm) == 0) {
2d04d7e5
AK
3349 /* Do not allow for multiple reshape_array() calls for
3350 * the same array.
3351 * It can happen when reshape_array() returns without
3352 * error, when reshape is not finished (wrong reshape
3353 * starting/continuation conditions). Mdmon doesn't
3354 * switch to next array in container and reentry
3355 * conditions for the same array occur.
3356 * This is possibly interim until the behaviour of
3357 * reshape_array is resolved().
3358 */
3359 printf(Name ": Multiple reshape execution detected for "
3360 "device %s.", adev);
3361 close(fd);
3362 break;
3363 }
4dd2df09 3364 strcpy(last_devnm, mdstat->devnm);
2d04d7e5 3365
4dd2df09 3366 sysfs_init(content, fd, mdstat->devnm);
5da9ab98 3367
4dd2df09 3368 if (mdmon_running(container))
78340e26
AK
3369 flush_mdmon(container);
3370
1bb174ba 3371 rv = reshape_array(container, fd, adev, st,
19ceb16d 3372 content, force, NULL, 0ULL,
ba728be7 3373 backup_file, verbose, 1, restart,
b76b30e0 3374 freeze_reshape);
5da9ab98 3375 close(fd);
b76b30e0
AK
3376
3377 if (freeze_reshape) {
3378 sysfs_free(cc);
3379 exit(0);
3380 }
3381
493f5dd6 3382 restart = 0;
5da9ab98
N
3383 if (rv)
3384 break;
78340e26 3385
4dd2df09 3386 if (mdmon_running(container))
78340e26 3387 flush_mdmon(container);
5da9ab98 3388 }
bcc9e9ed
AK
3389 if (!rv)
3390 unfreeze(st);
1bb174ba 3391 sysfs_free(cc);
5da9ab98
N
3392 exit(0);
3393}
3394
7236ee7a
N
3395/*
3396 * We run a child process in the background which performs the following
3397 * steps:
3398 * - wait for resync to reach a certain point
3399 * - suspend io to the following section
3400 * - backup that section
3401 * - allow resync to proceed further
3402 * - resume io
3403 * - discard the backup.
3404 *
3405 * When are combined in slightly different ways in the three cases.
3406 * Grow:
3407 * - suspend/backup/allow/wait/resume/discard
3408 * Shrink:
3409 * - allow/wait/suspend/backup/allow/wait/resume/discard
3410 * same-size:
3411 * - wait/resume/discard/suspend/backup/allow
3412 *
3413 * suspend/backup/allow always come together
3414 * wait/resume/discard do too.
3415 * For the same-size case we have two backups to improve flow.
24daa16f 3416 *
7236ee7a 3417 */
e86c9dd6 3418
7443ee81
N
3419int progress_reshape(struct mdinfo *info, struct reshape *reshape,
3420 unsigned long long backup_point,
3421 unsigned long long wait_point,
3422 unsigned long long *suspend_point,
3423 unsigned long long *reshape_completed)
3424{
3425 /* This function is called repeatedly by the reshape manager.
3426 * It determines how much progress can safely be made and allows
3427 * that progress.
3428 * - 'info' identifies the array and particularly records in
3429 * ->reshape_progress the metadata's knowledge of progress
3430 * This is a sector offset from the start of the array
3431 * of the next array block to be relocated. This number
3432 * may increase from 0 or decrease from array_size, depending
3433 * on the type of reshape that is happening.
3434 * Note that in contrast, 'sync_completed' is a block count of the
3435 * reshape so far. It gives the distance between the start point
3436 * (head or tail of device) and the next place that data will be
3437 * written. It always increases.
3438 * - 'reshape' is the structure created by analyse_change
3439 * - 'backup_point' shows how much the metadata manager has backed-up
3440 * data. For reshapes with increasing progress, it is the next address
3441 * to be backed up, previous addresses have been backed-up. For
3442 * decreasing progress, it is the earliest address that has been
3443 * backed up - later address are also backed up.
3444 * So addresses between reshape_progress and backup_point are
3445 * backed up providing those are in the 'correct' order.
3446 * - 'wait_point' is an array address. When reshape_completed
3447 * passes this point, progress_reshape should return. It might
3448 * return earlier if it determines that ->reshape_progress needs
3449 * to be updated or further backup is needed.
3450 * - suspend_point is maintained by progress_reshape and the caller
3451 * should not touch it except to initialise to zero.
3452 * It is an array address and it only increases in 2.6.37 and earlier.
b6b95155 3453 * This makes it difficult to handle reducing reshapes with
7443ee81
N
3454 * external metadata.
3455 * However: it is similar to backup_point in that it records the
3456 * other end of a suspended region from reshape_progress.
3457 * it is moved to extend the region that is safe to backup and/or
3458 * reshape
3459 * - reshape_completed is read from sysfs and returned. The caller
3460 * should copy this into ->reshape_progress when it has reason to
3461 * believe that the metadata knows this, and any backup outside this
3462 * has been erased.
3463 *
3464 * Return value is:
3465 * 1 if more data from backup_point - but only as far as suspend_point,
3466 * should be backed up
3467 * 0 if things are progressing smoothly
9e034f70
N
3468 * -1 if the reshape is finished because it is all done,
3469 * -2 if the reshape is finished due to an error.
7443ee81
N
3470 */
3471
3472 int advancing = (reshape->after.data_disks
3473 >= reshape->before.data_disks);
38dad34a
N
3474 unsigned long long need_backup; /* All data between start of array and
3475 * here will at some point need to
3476 * be backed up.
d0ab945e 3477 */
7443ee81 3478 unsigned long long read_offset, write_offset;
b4f8e38b 3479 unsigned long long write_range;
7443ee81 3480 unsigned long long max_progress, target, completed;
d0ab945e
N
3481 unsigned long long array_size = (info->component_size
3482 * reshape->before.data_disks);
7443ee81 3483 int fd;
77a73a17 3484 char buf[20];
7443ee81
N
3485
3486 /* First, we unsuspend any region that is now known to be safe.
3487 * If suspend_point is on the 'wrong' side of reshape_progress, then
3488 * we don't have or need suspension at the moment. This is true for
3489 * native metadata when we don't need to back-up.
3490 */
3491 if (advancing) {
49cd738b 3492 if (info->reshape_progress <= *suspend_point)
7443ee81
N
3493 sysfs_set_num(info, NULL, "suspend_lo",
3494 info->reshape_progress);
3495 } else {
3496 /* Note: this won't work in 2.6.37 and before.
3497 * Something somewhere should make sure we don't need it!
3498 */
49cd738b 3499 if (info->reshape_progress >= *suspend_point)
7443ee81
N
3500 sysfs_set_num(info, NULL, "suspend_hi",
3501 info->reshape_progress);
3502 }
3503
3504 /* Now work out how far it is safe to progress.
3505 * If the read_offset for ->reshape_progress is less than
3506 * 'blocks' beyond the write_offset, we can only progress as far
3507 * as a backup.
3508 * Otherwise we can progress until the write_offset for the new location
3509 * reaches (within 'blocks' of) the read_offset at the current location.
3510 * However that region must be suspended unless we are using native
3511 * metadata.
3512 * If we need to suspend more, we limit it to 128M per device, which is
3513 * rather arbitrary and should be some time-based calculation.
3514 */
ec757320
N
3515 read_offset = info->reshape_progress / reshape->before.data_disks;
3516 write_offset = info->reshape_progress / reshape->after.data_disks;
b4f8e38b 3517 write_range = info->new_chunk/512;
38dad34a
N
3518 if (reshape->before.data_disks == reshape->after.data_disks)
3519 need_backup = array_size;
3520 else
3521 need_backup = reshape->backup_blocks;
7443ee81 3522 if (advancing) {
38dad34a 3523 if (read_offset < write_offset + write_range)
7443ee81 3524 max_progress = backup_point;
ddee071d 3525 else
7443ee81 3526 max_progress =
2f3dd5e4
N
3527 read_offset *
3528 reshape->after.data_disks;
7443ee81 3529 } else {
38dad34a
N
3530 if (read_offset > write_offset - write_range)
3531 /* Can only progress as far as has been backed up,
3532 * which must be suspended */
7443ee81 3533 max_progress = backup_point;
38dad34a
N
3534 else if (info->reshape_progress <= need_backup)
3535 max_progress = backup_point;
3536 else {
3537 if (info->array.major_version >= 0)
3538 /* Can progress until backup is needed */
3539 max_progress = need_backup;
3540 else {
3541 /* Can progress until metadata update is required */
3542 max_progress =
3543 read_offset *
3544 reshape->after.data_disks;
3545 /* but data must be suspended */
3546 if (max_progress < *suspend_point)
3547 max_progress = *suspend_point;
3548 }
7443ee81
N
3549 }
3550 }
3551
3552 /* We know it is safe to progress to 'max_progress' providing
3553 * it is suspended or we are using native metadata.
3554 * Consider extending suspend_point 128M per device if it
3555 * is less than 64M per device beyond reshape_progress.
3556 * But always do a multiple of 'blocks'
832b2b9a
N
3557 * FIXME this is too big - it takes to long to complete
3558 * this much.
7443ee81
N
3559 */
3560 target = 64*1024*2 * min(reshape->before.data_disks,
24daa16f 3561 reshape->after.data_disks);
b4f8e38b 3562 target /= reshape->backup_blocks;
7443ee81
N
3563 if (target < 2)
3564 target = 2;
b4f8e38b 3565 target *= reshape->backup_blocks;
7443ee81
N
3566
3567 /* For externally managed metadata we always need to suspend IO to
3568 * the area being reshaped so we regularly push suspend_point forward.
3569 * For native metadata we only need the suspend if we are going to do
3570 * a backup.
3571 */
3572 if (advancing) {
d0ab945e
N
3573 if ((need_backup > info->reshape_progress
3574 || info->array.major_version < 0) &&
7443ee81 3575 *suspend_point < info->reshape_progress + target) {
d0ab945e
N
3576 if (need_backup < *suspend_point + 2 * target)
3577 *suspend_point = need_backup;
3578 else if (*suspend_point + 2 * target < array_size)
7443ee81 3579 *suspend_point += 2 * target;
d0ab945e
N
3580 else
3581 *suspend_point = array_size;
7443ee81 3582 sysfs_set_num(info, NULL, "suspend_hi", *suspend_point);
d0ab945e
N
3583 if (max_progress > *suspend_point)
3584 max_progress = *suspend_point;
7443ee81
N
3585 }
3586 } else {
38dad34a
N
3587 if (info->array.major_version >= 0) {
3588 /* Only need to suspend when about to backup */
3589 if (info->reshape_progress < need_backup * 2 &&
3590 *suspend_point > 0) {
d0ab945e 3591 *suspend_point = 0;
38dad34a
N
3592 sysfs_set_num(info, NULL, "suspend_lo", 0);
3593 sysfs_set_num(info, NULL, "suspend_hi", need_backup);
3594 }
3595 } else {
3596 /* Need to suspend continually */
3597 if (info->reshape_progress < *suspend_point)
3598 *suspend_point = info->reshape_progress;
3599 if (*suspend_point + target < info->reshape_progress)
3600 /* No need to move suspend region yet */;
3601 else {
3602 if (*suspend_point >= 2 * target)
3603 *suspend_point -= 2 * target;
3604 else
3605 *suspend_point = 0;
3606 sysfs_set_num(info, NULL, "suspend_lo",
3607 *suspend_point);
3608 }
d0ab945e
N
3609 if (max_progress < *suspend_point)
3610 max_progress = *suspend_point;
7443ee81
N
3611 }
3612 }
3613
3614 /* now set sync_max to allow that progress. sync_max, like
3615 * sync_completed is a count of sectors written per device, so
3616 * we find the difference between max_progress and the start point,
3617 * and divide that by after.data_disks to get a sync_max
3618 * number.
3619 * At the same time we convert wait_point to a similar number
3620 * for comparing against sync_completed.
3621 */
92d1991f 3622 /* scale down max_progress to per_disk */
7443ee81 3623 max_progress /= reshape->after.data_disks;
92d1991f
N
3624 /* Round to chunk size as some kernels give an erroneously high number */
3625 max_progress /= info->new_chunk/512;
3626 max_progress *= info->new_chunk/512;
7f913e9b
N
3627 /* And round to old chunk size as the kernel wants that */
3628 max_progress /= info->array.chunk_size/512;
3629 max_progress *= info->array.chunk_size/512;
92d1991f
N
3630 /* Limit progress to the whole device */
3631 if (max_progress > info->component_size)
3632 max_progress = info->component_size;
7443ee81 3633 wait_point /= reshape->after.data_disks;
92d1991f
N
3634 if (!advancing) {
3635 /* switch from 'device offset' to 'processed block count' */
3636 max_progress = info->component_size - max_progress;
3637 wait_point = info->component_size - wait_point;
3638 }
7443ee81
N
3639
3640 sysfs_set_num(info, NULL, "sync_max", max_progress);
3641
3642 /* Now wait. If we have already reached the point that we were
3643 * asked to wait to, don't wait at all, else wait for any change.
3644 * We need to select on 'sync_completed' as that is the place that
3645 * notifications happen, but we are really interested in
3646 * 'reshape_position'
3647 */
3648 fd = sysfs_get_fd(info, NULL, "sync_completed");
3649 if (fd < 0)
77a73a17 3650 goto check_progress;
7443ee81 3651
621ea11b 3652 if (sysfs_fd_get_ll(fd, &completed) < 0)
77a73a17 3653 goto check_progress;
621ea11b 3654
7443ee81
N
3655 while (completed < max_progress && completed < wait_point) {
3656 /* Check that sync_action is still 'reshape' to avoid
3657 * waiting forever on a dead array
3658 */
3659 char action[20];
3660 fd_set rfds;
3661 if (sysfs_get_str(info, NULL, "sync_action",
3662 action, 20) <= 0 ||
3663 strncmp(action, "reshape", 7) != 0)
3664 break;
26d6e157
AK
3665 /* Some kernels reset 'sync_completed' to zero
3666 * before setting 'sync_action' to 'idle'.
3667 * So we need these extra tests.
3668 */
3669 if (completed == 0 && advancing
3670 && info->reshape_progress > 0)
3671 break;
3672 if (completed == 0 && !advancing
3673 && info->reshape_progress < (info->component_size
3674 * reshape->after.data_disks))
3675 break;
7443ee81
N
3676 FD_ZERO(&rfds);
3677 FD_SET(fd, &rfds);
3678 select(fd+1, NULL, NULL, &rfds, NULL);
621ea11b 3679 if (sysfs_fd_get_ll(fd, &completed) < 0)
77a73a17 3680 goto check_progress;
7443ee81 3681 }
10d0d365
AK
3682 /* Some kernels reset 'sync_completed' to zero,
3683 * we need to have real point we are in md
3684 */
3685 if (completed == 0)
3686 completed = max_progress;
3687
92d1991f
N
3688 /* some kernels can give an incorrectly high 'completed' number */
3689 completed /= (info->new_chunk/512);
3690 completed *= (info->new_chunk/512);
7443ee81
N
3691 /* Convert 'completed' back in to a 'progress' number */
3692 completed *= reshape->after.data_disks;
3693 if (!advancing) {
3694 completed = info->component_size * reshape->after.data_disks
3695 - completed;
3696 }
3697 *reshape_completed = completed;
24daa16f 3698
7443ee81
N
3699 close(fd);
3700
3701 /* We return the need_backup flag. Caller will decide
d0ab945e 3702 * how much - a multiple of ->backup_blocks up to *suspend_point
7443ee81 3703 */
38dad34a
N
3704 if (advancing)
3705 return need_backup > info->reshape_progress;
3706 else
3707 return need_backup >= info->reshape_progress;
77a73a17
N
3708
3709check_progress:
3710 /* if we couldn't read a number from sync_completed, then
3711 * either the reshape did complete, or it aborted.
3712 * We can tell which by checking for 'none' in reshape_position.
621ea11b
N
3713 * If it did abort, then it might immediately restart if it
3714 * it was just a device failure that leaves us degraded but
3715 * functioning.
77a73a17
N
3716 */
3717 strcpy(buf, "hi");
3718 if (sysfs_get_str(info, NULL, "reshape_position", buf, sizeof(buf)) < 0
621ea11b
N
3719 || strncmp(buf, "none", 4) != 0) {
3720 /* The abort might only be temporary. Wait up to 10
3721 * seconds for fd to contain a valid number again.
3722 */
3723 struct timeval tv;
3724 int rv = -2;
3725 tv.tv_sec = 10;
3726 tv.tv_usec = 0;
6560987b 3727 while (fd >= 0 && rv < 0 && tv.tv_sec > 0) {
621ea11b
N
3728 fd_set rfds;
3729 FD_ZERO(&rfds);
3730 FD_SET(fd, &rfds);
3731 if (select(fd+1, NULL, NULL, &rfds, &tv) != 1)
3732 break;
6560987b
N
3733 switch (sysfs_fd_get_ll(fd, &completed)) {
3734 case 0:
621ea11b
N
3735 /* all good again */
3736 rv = 1;
6560987b
N
3737 break;
3738 case -2: /* read error - abort */
3739 tv.tv_sec = 0;
3740 break;
3741 }
621ea11b
N
3742 }
3743 if (fd >= 0)
3744 close(fd);
3745 return rv; /* abort */
3746 } else {
6d5316f6 3747 /* Maybe racing with array shutdown - check state */
621ea11b
N
3748 if (fd >= 0)
3749 close(fd);
6d5316f6
N
3750 if (sysfs_get_str(info, NULL, "array_state", buf, sizeof(buf)) < 0
3751 || strncmp(buf, "inactive", 8) == 0
3752 || strncmp(buf, "clear",5) == 0)
3753 return -2; /* abort */
77a73a17 3754 return -1; /* complete */
6d5316f6 3755 }
7443ee81
N
3756}
3757
fcf57625 3758/* FIXME return status is never checked */
4411fb17 3759static int grow_backup(struct mdinfo *sra,
7236ee7a 3760 unsigned long long offset, /* per device */
7443ee81 3761 unsigned long stripes, /* per device, in old chunks */
7236ee7a
N
3762 int *sources, unsigned long long *offsets,
3763 int disks, int chunk, int level, int layout,
3764 int dests, int *destfd, unsigned long long *destoffsets,
d4445387 3765 int part, int *degraded,
7236ee7a
N
3766 char *buf)
3767{
3768 /* Backup 'blocks' sectors at 'offset' on each device of the array,
3769 * to storage 'destfd' (offset 'destoffsets'), after first
3770 * suspending IO. Then allow resync to continue
3771 * over the suspended section.
3772 * Use part 'part' of the backup-super-block.
3773 */
3774 int odata = disks;
3775 int rv = 0;
3776 int i;
f21e18ca
N
3777 unsigned long long ll;
3778 int new_degraded;
7236ee7a
N
3779 //printf("offset %llu\n", offset);
3780 if (level >= 4)
3781 odata--;
3782 if (level == 6)
3783 odata--;
7443ee81 3784
d4445387 3785 /* Check that array hasn't become degraded, else we might backup the wrong data */
2c6ac128
N
3786 if (sysfs_get_ll(sra, NULL, "degraded", &ll) < 0)
3787 return -1; /* FIXME this error is ignored */
f21e18ca 3788 new_degraded = (int)ll;
d4445387
N
3789 if (new_degraded != *degraded) {
3790 /* check each device to ensure it is still working */
3791 struct mdinfo *sd;
3792 for (sd = sra->devs ; sd ; sd = sd->next) {
3793 if (sd->disk.state & (1<<MD_DISK_FAULTY))
3794 continue;
3795 if (sd->disk.state & (1<<MD_DISK_SYNC)) {
3796 char sbuf[20];
3797 if (sysfs_get_str(sra, sd, "state", sbuf, 20) < 0 ||
3798 strstr(sbuf, "faulty") ||
3799 strstr(sbuf, "in_sync") == NULL) {
3800 /* this device is dead */
3801 sd->disk.state = (1<<MD_DISK_FAULTY);
3802 if (sd->disk.raid_disk >= 0 &&
3803 sources[sd->disk.raid_disk] >= 0) {
3804 close(sources[sd->disk.raid_disk]);
3805 sources[sd->disk.raid_disk] = -1;
3806 }
3807 }
3808 }
3809 }
3810 *degraded = new_degraded;
3811 }
7236ee7a
N
3812 if (part) {
3813 bsb.arraystart2 = __cpu_to_le64(offset * odata);
200871ad 3814 bsb.length2 = __cpu_to_le64(stripes * (chunk/512) * odata);
7236ee7a
N
3815 } else {
3816 bsb.arraystart = __cpu_to_le64(offset * odata);
200871ad 3817 bsb.length = __cpu_to_le64(stripes * (chunk/512) * odata);
7236ee7a
N
3818 }
3819 if (part)
3820 bsb.magic[15] = '2';
3821 for (i = 0; i < dests; i++)
3822 if (part)
3823 lseek64(destfd[i], destoffsets[i] + __le64_to_cpu(bsb.devstart2)*512, 0);
3824 else
3825 lseek64(destfd[i], destoffsets[i], 0);
3826
24daa16f 3827 rv = save_stripes(sources, offsets,
7236ee7a
N
3828 disks, chunk, level, layout,
3829 dests, destfd,
3830 offset*512*odata, stripes * chunk * odata,
3831 buf);
3832
3833 if (rv)
3834 return rv;
97396422 3835 bsb.mtime = __cpu_to_le64(time(0));
7236ee7a
N
3836 for (i = 0; i < dests; i++) {
3837 bsb.devstart = __cpu_to_le64(destoffsets[i]/512);
3838
3839 bsb.sb_csum = bsb_csum((char*)&bsb, ((char*)&bsb.sb_csum)-((char*)&bsb));
3840 if (memcmp(bsb.magic, "md_backup_data-2", 16) == 0)
3841 bsb.sb_csum2 = bsb_csum((char*)&bsb,
3842 ((char*)&bsb.sb_csum2)-((char*)&bsb));
3843
72044953 3844 rv = -1;
f21e18ca
N
3845 if ((unsigned long long)lseek64(destfd[i], destoffsets[i] - 4096, 0)
3846 != destoffsets[i] - 4096)
72044953
N
3847 break;
3848 if (write(destfd[i], &bsb, 512) != 512)
3849 break;
ff94fb86 3850 if (destoffsets[i] > 4096) {
f21e18ca 3851 if ((unsigned long long)lseek64(destfd[i], destoffsets[i]+stripes*chunk*odata, 0) !=
a847575a 3852 destoffsets[i]+stripes*chunk*odata)
72044953
N
3853 break;
3854 if (write(destfd[i], &bsb, 512) != 512)
3855 break;
ff94fb86 3856 }
7236ee7a 3857 fsync(destfd[i]);
72044953 3858 rv = 0;
7236ee7a 3859 }
2efedc7b 3860
fcf57625 3861 return rv;
7236ee7a
N
3862}
3863
3864/* in 2.6.30, the value reported by sync_completed can be
3865 * less that it should be by one stripe.
3866 * This only happens when reshape hits sync_max and pauses.
3867 * So allow wait_backup to either extent sync_max further
3868 * than strictly necessary, or return before the
3869 * sync has got quite as far as we would really like.
3870 * This is what 'blocks2' is for.
3871 * The various caller give appropriate values so that
3872 * every works.
3873 */
fcf57625 3874/* FIXME return value is often ignored */
24daa16f
N
3875static int forget_backup(int dests, int *destfd,
3876 unsigned long long *destoffsets,
3877 int part)
7236ee7a 3878{
24daa16f 3879 /*
7443ee81 3880 * Erase backup 'part' (which is 0 or 1)
7236ee7a 3881 */
7236ee7a 3882 int i;
fcf57625 3883 int rv;
7236ee7a 3884
7236ee7a
N
3885 if (part) {
3886 bsb.arraystart2 = __cpu_to_le64(0);
3887 bsb.length2 = __cpu_to_le64(0);
3888 } else {
3889 bsb.arraystart = __cpu_to_le64(0);
3890 bsb.length = __cpu_to_le64(0);
3891 }
97396422 3892 bsb.mtime = __cpu_to_le64(time(0));
fcf57625 3893 rv = 0;
7236ee7a
N
3894 for (i = 0; i < dests; i++) {
3895 bsb.devstart = __cpu_to_le64(destoffsets[i]/512);
3896 bsb.sb_csum = bsb_csum((char*)&bsb, ((char*)&bsb.sb_csum)-((char*)&bsb));
3897 if (memcmp(bsb.magic, "md_backup_data-2", 16) == 0)
3898 bsb.sb_csum2 = bsb_csum((char*)&bsb,
3899 ((char*)&bsb.sb_csum2)-((char*)&bsb));
f21e18ca 3900 if ((unsigned long long)lseek64(destfd[i], destoffsets[i]-4096, 0) !=
a847575a 3901 destoffsets[i]-4096)
72044953 3902 rv = -1;
24daa16f 3903 if (rv == 0 &&
72044953
N
3904 write(destfd[i], &bsb, 512) != 512)
3905 rv = -1;
7236ee7a
N
3906 fsync(destfd[i]);
3907 }
fcf57625 3908 return rv;
7236ee7a 3909}
e86c9dd6 3910
7236ee7a
N
3911static void fail(char *msg)
3912{
fcf57625 3913 int rv;
72044953
N
3914 rv = (write(2, msg, strlen(msg)) != (int)strlen(msg));
3915 rv |= (write(2, "\n", 1) != 1);
fcf57625 3916 exit(rv ? 1 : 2);
7236ee7a
N
3917}
3918
3919static char *abuf, *bbuf;
f21e18ca 3920static unsigned long long abuflen;
7236ee7a
N
3921static void validate(int afd, int bfd, unsigned long long offset)
3922{
3923 /* check that the data in the backup against the array.
3924 * This is only used for regression testing and should not
3925 * be used while the array is active
3926 */
7236ee7a
N
3927 if (afd < 0)
3928 return;
3929 lseek64(bfd, offset - 4096, 0);
3930 if (read(bfd, &bsb2, 512) != 512)
3931 fail("cannot read bsb");
3932 if (bsb2.sb_csum != bsb_csum((char*)&bsb2,
3933 ((char*)&bsb2.sb_csum)-((char*)&bsb2)))
3934 fail("first csum bad");
3935 if (memcmp(bsb2.magic, "md_backup_data", 14) != 0)
3936 fail("magic is bad");
3937 if (memcmp(bsb2.magic, "md_backup_data-2", 16) == 0 &&
3938 bsb2.sb_csum2 != bsb_csum((char*)&bsb2,
24daa16f 3939 ((char*)&bsb2.sb_csum2)-((char*)&bsb2)))
7236ee7a
N
3940 fail("second csum bad");
3941
3942 if (__le64_to_cpu(bsb2.devstart)*512 != offset)
3943 fail("devstart is wrong");
3944
3945 if (bsb2.length) {
3946 unsigned long long len = __le64_to_cpu(bsb2.length)*512;
3947
3948 if (abuflen < len) {
3949 free(abuf);
3950 free(bbuf);
3951 abuflen = len;
fcf57625
N
3952 if (posix_memalign((void**)&abuf, 4096, abuflen) ||
3953 posix_memalign((void**)&bbuf, 4096, abuflen)) {
3954 abuflen = 0;
3955 /* just stop validating on mem-alloc failure */
3956 return;
3957 }
e86c9dd6 3958 }
48924014 3959
7236ee7a 3960 lseek64(bfd, offset, 0);
f21e18ca 3961 if ((unsigned long long)read(bfd, bbuf, len) != len) {
080fd005 3962 //printf("len %llu\n", len);
7236ee7a
N
3963 fail("read first backup failed");
3964 }
3965 lseek64(afd, __le64_to_cpu(bsb2.arraystart)*512, 0);
f21e18ca 3966 if ((unsigned long long)read(afd, abuf, len) != len)
7236ee7a
N
3967 fail("read first from array failed");
3968 if (memcmp(bbuf, abuf, len) != 0) {
24daa16f 3969#if 0
7236ee7a
N
3970 int i;
3971 printf("offset=%llu len=%llu\n",
080fd005 3972 (unsigned long long)__le64_to_cpu(bsb2.arraystart)*512, len);
7236ee7a
N
3973 for (i=0; i<len; i++)
3974 if (bbuf[i] != abuf[i]) {
3975 printf("first diff byte %d\n", i);
93ecfa01 3976 break;
7236ee7a 3977 }
24daa16f 3978#endif
7236ee7a 3979 fail("data1 compare failed");
e86c9dd6 3980 }
7236ee7a
N
3981 }
3982 if (bsb2.length2) {
3983 unsigned long long len = __le64_to_cpu(bsb2.length2)*512;
3984
3985 if (abuflen < len) {
3986 free(abuf);
3987 free(bbuf);
3988 abuflen = len;
503975b9
N
3989 abuf = xmalloc(abuflen);
3990 bbuf = xmalloc(abuflen);
e86c9dd6
NB
3991 }
3992
7236ee7a 3993 lseek64(bfd, offset+__le64_to_cpu(bsb2.devstart2)*512, 0);
f21e18ca 3994 if ((unsigned long long)read(bfd, bbuf, len) != len)
7236ee7a
N
3995 fail("read second backup failed");
3996 lseek64(afd, __le64_to_cpu(bsb2.arraystart2)*512, 0);
f21e18ca 3997 if ((unsigned long long)read(afd, abuf, len) != len)
7236ee7a
N
3998 fail("read second from array failed");
3999 if (memcmp(bbuf, abuf, len) != 0)
4000 fail("data2 compare failed");
e86c9dd6 4001 }
7236ee7a 4002}
e86c9dd6 4003
999b4972
N
4004int child_monitor(int afd, struct mdinfo *sra, struct reshape *reshape,
4005 struct supertype *st, unsigned long blocks,
4006 int *fds, unsigned long long *offsets,
4007 int dests, int *destfd, unsigned long long *destoffsets)
7236ee7a 4008{
7443ee81
N
4009 /* Monitor a reshape where backup is being performed using
4010 * 'native' mechanism - either to a backup file, or
4011 * to some space in a spare.
4012 */
7236ee7a 4013 char *buf;
7443ee81
N
4014 int degraded = -1;
4015 unsigned long long speed;
4016 unsigned long long suspend_point, array_size;
4017 unsigned long long backup_point, wait_point;
4018 unsigned long long reshape_completed;
4019 int done = 0;
4020 int increasing = reshape->after.data_disks >= reshape->before.data_disks;
4021 int part = 0; /* The next part of the backup area to fill. It may already
4022 * be full, so we need to check */
4023 int level = reshape->level;
4024 int layout = reshape->before.layout;
4025 int data = reshape->before.data_disks;
4026 int disks = reshape->before.data_disks + reshape->parity;
4027 int chunk = sra->array.chunk_size;
da8100ca
N
4028 struct mdinfo *sd;
4029 unsigned long stripes;
3b7e9d0c 4030 int uuid[4];
da8100ca
N
4031
4032 /* set up the backup-super-block. This requires the
4033 * uuid from the array.
4034 */
4035 /* Find a superblock */
4036 for (sd = sra->devs; sd; sd = sd->next) {
4037 char *dn;
4038 int devfd;
4039 int ok;
4040 if (sd->disk.state & (1<<MD_DISK_FAULTY))
4041 continue;
4042 dn = map_dev(sd->disk.major, sd->disk.minor, 1);
4043 devfd = dev_open(dn, O_RDONLY);
4044 if (devfd < 0)
4045 continue;
4046 ok = st->ss->load_super(st, devfd, NULL);
4047 close(devfd);
77f8d358 4048 if (ok == 0)
da8100ca
N
4049 break;
4050 }
4051 if (!sd) {
e7b84f9d 4052 pr_err("Cannot find a superblock\n");
da8100ca
N
4053 return 0;
4054 }
4055
4056 memset(&bsb, 0, 512);
4057 memcpy(bsb.magic, "md_backup_data-1", 16);
3b7e9d0c
LB
4058 st->ss->uuid_from_super(st, uuid);
4059 memcpy(bsb.set_uuid, uuid, 16);
da8100ca
N
4060 bsb.mtime = __cpu_to_le64(time(0));
4061 bsb.devstart2 = blocks;
4062
4063 stripes = blocks / (sra->array.chunk_size/512) /
4064 reshape->before.data_disks;
e86c9dd6 4065
fcf57625
N
4066 if (posix_memalign((void**)&buf, 4096, disks * chunk))
4067 /* Don't start the 'reshape' */
4068 return 0;
7443ee81
N
4069 if (reshape->before.data_disks == reshape->after.data_disks) {
4070 sysfs_get_ll(sra, NULL, "sync_speed_min", &speed);
4071 sysfs_set_num(sra, NULL, "sync_speed_min", 200000);
4072 }
e86c9dd6 4073
7443ee81 4074 if (increasing) {
96533072 4075 array_size = sra->component_size * reshape->after.data_disks;
7443ee81
N
4076 backup_point = sra->reshape_progress;
4077 suspend_point = 0;
4078 } else {
96533072 4079 array_size = sra->component_size * reshape->before.data_disks;
25da62d9 4080 backup_point = reshape->backup_blocks;
7443ee81
N
4081 suspend_point = array_size;
4082 }
7236ee7a 4083
7443ee81
N
4084 while (!done) {
4085 int rv;
7236ee7a 4086
7443ee81
N
4087 /* Want to return as soon the oldest backup slot can
4088 * be released as that allows us to start backing up
4089 * some more, providing suspend_point has been
b6b95155 4090 * advanced, which it should have.
7443ee81
N
4091 */
4092 if (increasing) {
4093 wait_point = array_size;
4094 if (part == 0 && __le64_to_cpu(bsb.length) > 0)
4095 wait_point = (__le64_to_cpu(bsb.arraystart) +
4096 __le64_to_cpu(bsb.length));
4097 if (part == 1 && __le64_to_cpu(bsb.length2) > 0)
4098 wait_point = (__le64_to_cpu(bsb.arraystart2) +
4099 __le64_to_cpu(bsb.length2));
4100 } else {
4101 wait_point = 0;
4102 if (part == 0 && __le64_to_cpu(bsb.length) > 0)
4103 wait_point = __le64_to_cpu(bsb.arraystart);
4104 if (part == 1 && __le64_to_cpu(bsb.length2) > 0)
4105 wait_point = __le64_to_cpu(bsb.arraystart2);
4106 }
4107
4108 rv = progress_reshape(sra, reshape,
4109 backup_point, wait_point,
4110 &suspend_point, &reshape_completed);
7443ee81
N
4111 /* external metadata would need to ping_monitor here */
4112 sra->reshape_progress = reshape_completed;
7236ee7a 4113
7443ee81
N
4114 /* Clear any backup region that is before 'here' */
4115 if (increasing) {
b3cf095a
N
4116 if (__le64_to_cpu(bsb.length) > 0 &&
4117 reshape_completed >= (__le64_to_cpu(bsb.arraystart) +
7443ee81
N
4118 __le64_to_cpu(bsb.length)))
4119 forget_backup(dests, destfd,
4120 destoffsets, 0);
b3cf095a
N
4121 if (__le64_to_cpu(bsb.length2) > 0 &&
4122 reshape_completed >= (__le64_to_cpu(bsb.arraystart2) +
7443ee81
N
4123 __le64_to_cpu(bsb.length2)))
4124 forget_backup(dests, destfd,
4125 destoffsets, 1);
4126 } else {
b3cf095a
N
4127 if (__le64_to_cpu(bsb.length) > 0 &&
4128 reshape_completed <= (__le64_to_cpu(bsb.arraystart)))
7443ee81
N
4129 forget_backup(dests, destfd,
4130 destoffsets, 0);
b3cf095a
N
4131 if (__le64_to_cpu(bsb.length2) > 0 &&
4132 reshape_completed <= (__le64_to_cpu(bsb.arraystart2)))
7443ee81
N
4133 forget_backup(dests, destfd,
4134 destoffsets, 1);
4135 }
7236ee7a 4136
223c5c99 4137 if (rv < 0) {
77a73a17
N
4138 if (rv == -1)
4139 done = 1;
223c5c99
N
4140 break;
4141 }
2d4de5f9
N
4142 if (rv == 0 && increasing && !st->ss->external) {
4143 /* No longer need to monitor this reshape */
4144 done = 1;
4145 break;
4146 }
223c5c99 4147
60204e4e 4148 while (rv) {
7443ee81 4149 unsigned long long offset;
e97ca002 4150 unsigned long actual_stripes;
60204e4e
N
4151 /* Need to backup some data.
4152 * If 'part' is not used and the desired
4153 * backup size is suspended, do a backup,
4154 * then consider the next part.
4155 */
7443ee81
N
4156 /* Check that 'part' is unused */
4157 if (part == 0 && __le64_to_cpu(bsb.length) != 0)
60204e4e 4158 break;
7443ee81 4159 if (part == 1 && __le64_to_cpu(bsb.length2) != 0)
60204e4e 4160 break;
7443ee81
N
4161
4162 offset = backup_point / data;
e97ca002 4163 actual_stripes = stripes;
60204e4e 4164 if (increasing) {
e97ca002
N
4165 if (offset + actual_stripes * (chunk/512) >
4166 sra->component_size)
4167 actual_stripes = ((sra->component_size - offset)
4168 / (chunk/512));
4169 if (offset + actual_stripes * (chunk/512) >
60204e4e
N
4170 suspend_point/data)
4171 break;
4172 } else {
e97ca002
N
4173 if (offset < actual_stripes * (chunk/512))
4174 actual_stripes = offset / (chunk/512);
4175 offset -= actual_stripes * (chunk/512);
4176 if (offset < suspend_point/data)
60204e4e
N
4177 break;
4178 }
e4b11073
N
4179 if (actual_stripes == 0)
4180 break;
e97ca002 4181 grow_backup(sra, offset, actual_stripes,
7443ee81
N
4182 fds, offsets,
4183 disks, chunk, level, layout,
4184 dests, destfd, destoffsets,
4185 part, &degraded, buf);
4186 validate(afd, destfd[0], destoffsets[0]);
4187 /* record where 'part' is up to */
4188 part = !part;
4189 if (increasing)
e97ca002 4190 backup_point += actual_stripes * (chunk/512) * data;
7443ee81 4191 else
e97ca002 4192 backup_point -= actual_stripes * (chunk/512) * data;
7443ee81
N
4193 }
4194 }
4195
223c5c99
N
4196 /* FIXME maybe call progress_reshape one more time instead */
4197 abort_reshape(sra); /* remove any remaining suspension */
7443ee81
N
4198 if (reshape->before.data_disks == reshape->after.data_disks)
4199 sysfs_set_num(sra, NULL, "sync_speed_min", speed);
7236ee7a 4200 free(buf);
77a73a17 4201 return done;
e86c9dd6 4202}
353632d9
NB
4203
4204/*
4205 * If any spare contains md_back_data-1 which is recent wrt mtime,
4206 * write that data into the array and update the super blocks with
4207 * the new reshape_progress
4208 */
ea0ebe96
N
4209int Grow_restart(struct supertype *st, struct mdinfo *info, int *fdlist, int cnt,
4210 char *backup_file, int verbose)
353632d9
NB
4211{
4212 int i, j;
4213 int old_disks;
353632d9 4214 unsigned long long *offsets;
82f2d6ab 4215 unsigned long long nstripe, ostripe;
6e9eac4f 4216 int ndata, odata;
353632d9 4217
e9e43ec3
N
4218 odata = info->array.raid_disks - info->delta_disks - 1;
4219 if (info->array.level == 6) odata--; /* number of data disks */
4220 ndata = info->array.raid_disks - 1;
4221 if (info->new_level == 6) ndata--;
353632d9
NB
4222
4223 old_disks = info->array.raid_disks - info->delta_disks;
4224
e9e43ec3
N
4225 if (info->delta_disks <= 0)
4226 /* Didn't grow, so the backup file must have
4227 * been used
4228 */
4229 old_disks = cnt;
06b0d786 4230 for (i=old_disks-(backup_file?1:0); i<cnt; i++) {
353632d9 4231 struct mdinfo dinfo;
06b0d786 4232 int fd;
e9e43ec3 4233 int bsbsize;
ea0ebe96 4234 char *devname, namebuf[20];
10af14c4 4235 unsigned long long lo, hi;
353632d9
NB
4236
4237 /* This was a spare and may have some saved data on it.
4238 * Load the superblock, find and load the
4239 * backup_super_block.
4240 * If either fail, go on to next device.
4241 * If the backup contains no new info, just return
206c5eae 4242 * else restore data and update all superblocks
353632d9 4243 */
06b0d786
NB
4244 if (i == old_disks-1) {
4245 fd = open(backup_file, O_RDONLY);
e9e43ec3 4246 if (fd<0) {
e7b84f9d 4247 pr_err("backup file %s inaccessible: %s\n",
e9e43ec3 4248 backup_file, strerror(errno));
06b0d786 4249 continue;
e9e43ec3 4250 }
ea0ebe96 4251 devname = backup_file;
06b0d786
NB
4252 } else {
4253 fd = fdlist[i];
4254 if (fd < 0)
4255 continue;
3da92f27 4256 if (st->ss->load_super(st, fd, NULL))
06b0d786 4257 continue;
353632d9 4258
a5d85af7 4259 st->ss->getinfo_super(st, &dinfo, NULL);
3da92f27
NB
4260 st->ss->free_super(st);
4261
06b0d786
NB
4262 if (lseek64(fd,
4263 (dinfo.data_offset + dinfo.component_size - 8) <<9,
ea0ebe96 4264 0) < 0) {
e7b84f9d 4265 pr_err("Cannot seek on device %d\n", i);
06b0d786 4266 continue; /* Cannot seek */
ea0ebe96
N
4267 }
4268 sprintf(namebuf, "device-%d", i);
4269 devname = namebuf;
06b0d786 4270 }
ea0ebe96
N
4271 if (read(fd, &bsb, sizeof(bsb)) != sizeof(bsb)) {
4272 if (verbose)
e7b84f9d 4273 pr_err("Cannot read from %s\n", devname);
353632d9 4274 continue; /* Cannot read */
ea0ebe96 4275 }
e9e43ec3 4276 if (memcmp(bsb.magic, "md_backup_data-1", 16) != 0 &&
ea0ebe96
N
4277 memcmp(bsb.magic, "md_backup_data-2", 16) != 0) {
4278 if (verbose)
e7b84f9d 4279 pr_err("No backup metadata on %s\n", devname);
353632d9 4280 continue;
ea0ebe96
N
4281 }
4282 if (bsb.sb_csum != bsb_csum((char*)&bsb, ((char*)&bsb.sb_csum)-((char*)&bsb))) {
4283 if (verbose)
e7b84f9d 4284 pr_err("Bad backup-metadata checksum on %s\n", devname);
353632d9 4285 continue; /* bad checksum */
ea0ebe96 4286 }
e9e43ec3 4287 if (memcmp(bsb.magic, "md_backup_data-2", 16) == 0 &&
ea0ebe96
N
4288 bsb.sb_csum2 != bsb_csum((char*)&bsb, ((char*)&bsb.sb_csum2)-((char*)&bsb))) {
4289 if (verbose)
e7b84f9d 4290 pr_err("Bad backup-metadata checksum2 on %s\n", devname);
22e30516 4291 continue; /* Bad second checksum */
ea0ebe96
N
4292 }
4293 if (memcmp(bsb.set_uuid,info->uuid, 16) != 0) {
4294 if (verbose)
e7b84f9d 4295 pr_err("Wrong uuid on backup-metadata on %s\n", devname);
353632d9 4296 continue; /* Wrong uuid */
ea0ebe96 4297 }
353632d9 4298
097075b6
N
4299 /* array utime and backup-mtime should be updated at much the same time, but it seems that
4300 * sometimes they aren't... So allow considerable flexability in matching, and allow
4301 * this test to be overridden by an environment variable.
4302 */
f21e18ca
N
4303 if (info->array.utime > (int)__le64_to_cpu(bsb.mtime) + 2*60*60 ||
4304 info->array.utime < (int)__le64_to_cpu(bsb.mtime) - 10*60) {
097075b6 4305 if (check_env("MDADM_GROW_ALLOW_OLD")) {
e7b84f9d 4306 pr_err("accepting backup with timestamp %lu "
097075b6
N
4307 "for array with timestamp %lu\n",
4308 (unsigned long)__le64_to_cpu(bsb.mtime),
4309 (unsigned long)info->array.utime);
4310 } else {
676ab312
N
4311 pr_err("too-old timestamp on backup-metadata on %s\n", devname);
4312 pr_err("If you think it is should be safe, try 'export MDADM_GROW_ALLOW_OLD=1'\n");
097075b6
N
4313 continue; /* time stamp is too bad */
4314 }
ea0ebe96 4315 }
353632d9 4316
e9e43ec3 4317 if (bsb.magic[15] == '1') {
10af14c4
N
4318 if (bsb.length == 0)
4319 continue;
e7a71c6b
N
4320 if (info->delta_disks >= 0) {
4321 /* reshape_progress is increasing */
4322 if (__le64_to_cpu(bsb.arraystart)
4323 + __le64_to_cpu(bsb.length)
4324 < info->reshape_progress) {
4325 nonew:
4326 if (verbose)
e7b84f9d 4327 pr_err("backup-metadata found on %s but is not needed\n", devname);
e7a71c6b
N
4328 continue; /* No new data here */
4329 }
4330 } else {
4331 /* reshape_progress is decreasing */
4332 if (__le64_to_cpu(bsb.arraystart) >=
4333 info->reshape_progress)
4334 goto nonew; /* No new data here */
ea0ebe96 4335 }
e9e43ec3 4336 } else {
10af14c4
N
4337 if (bsb.length == 0 && bsb.length2 == 0)
4338 continue;
e7a71c6b
N
4339 if (info->delta_disks >= 0) {
4340 /* reshape_progress is increasing */
4341 if ((__le64_to_cpu(bsb.arraystart)
4342 + __le64_to_cpu(bsb.length)
4343 < info->reshape_progress)
4344 &&
4345 (__le64_to_cpu(bsb.arraystart2)
4346 + __le64_to_cpu(bsb.length2)
4347 < info->reshape_progress))
4348 goto nonew; /* No new data here */
4349 } else {
4350 /* reshape_progress is decreasing */
4351 if (__le64_to_cpu(bsb.arraystart) >=
4352 info->reshape_progress &&
4353 __le64_to_cpu(bsb.arraystart2) >=
4354 info->reshape_progress)
4355 goto nonew; /* No new data here */
4356 }
e9e43ec3 4357 }
ea0ebe96
N
4358 if (lseek64(fd, __le64_to_cpu(bsb.devstart)*512, 0)< 0) {
4359 second_fail:
4360 if (verbose)
e7b84f9d
N
4361 pr_err("Failed to verify secondary backup-metadata block on %s\n",
4362 devname);
353632d9 4363 continue; /* Cannot seek */
ea0ebe96 4364 }
2efedc7b 4365 /* There should be a duplicate backup superblock 4k before here */
06b0d786 4366 if (lseek64(fd, -4096, 1) < 0 ||
0155af90 4367 read(fd, &bsb2, sizeof(bsb2)) != sizeof(bsb2))
ea0ebe96 4368 goto second_fail; /* Cannot find leading superblock */
e9e43ec3
N
4369 if (bsb.magic[15] == '1')
4370 bsbsize = offsetof(struct mdp_backup_super, pad1);
4371 else
4372 bsbsize = offsetof(struct mdp_backup_super, pad);
ff94fb86 4373 if (memcmp(&bsb2, &bsb, bsbsize) != 0)
ea0ebe96 4374 goto second_fail; /* Cannot find leading superblock */
2efedc7b 4375
353632d9 4376 /* Now need the data offsets for all devices. */
503975b9 4377 offsets = xmalloc(sizeof(*offsets)*info->array.raid_disks);
353632d9
NB
4378 for(j=0; j<info->array.raid_disks; j++) {
4379 if (fdlist[j] < 0)
4380 continue;
3da92f27 4381 if (st->ss->load_super(st, fdlist[j], NULL))
353632d9
NB
4382 /* FIXME should be this be an error */
4383 continue;
a5d85af7 4384 st->ss->getinfo_super(st, &dinfo, NULL);
3da92f27 4385 st->ss->free_super(st);
14e5b4d7 4386 offsets[j] = dinfo.data_offset * 512;
353632d9
NB
4387 }
4388 printf(Name ": restoring critical section\n");
4389
4390 if (restore_stripes(fdlist, offsets,
4391 info->array.raid_disks,
4392 info->new_chunk,
4393 info->new_level,
4394 info->new_layout,
06b0d786 4395 fd, __le64_to_cpu(bsb.devstart)*512,
92dcdf7c 4396 __le64_to_cpu(bsb.arraystart)*512,
2fcb75ae 4397 __le64_to_cpu(bsb.length)*512, NULL)) {
e9e43ec3 4398 /* didn't succeed, so giveup */
ea0ebe96 4399 if (verbose)
e7b84f9d 4400 pr_err("Error restoring backup from %s\n",
ea0ebe96 4401 devname);
730ae51f 4402 free(offsets);
e9e43ec3
N
4403 return 1;
4404 }
24daa16f 4405
e9e43ec3
N
4406 if (bsb.magic[15] == '2' &&
4407 restore_stripes(fdlist, offsets,
4408 info->array.raid_disks,
4409 info->new_chunk,
4410 info->new_level,
4411 info->new_layout,
4412 fd, __le64_to_cpu(bsb.devstart)*512 +
4413 __le64_to_cpu(bsb.devstart2)*512,
92dcdf7c 4414 __le64_to_cpu(bsb.arraystart2)*512,
2fcb75ae 4415 __le64_to_cpu(bsb.length2)*512, NULL)) {
353632d9 4416 /* didn't succeed, so giveup */
ea0ebe96 4417 if (verbose)
e7b84f9d 4418 pr_err("Error restoring second backup from %s\n",
ea0ebe96 4419 devname);
730ae51f 4420 free(offsets);
2295250a 4421 return 1;
353632d9
NB
4422 }
4423
730ae51f 4424 free(offsets);
e9e43ec3 4425
353632d9
NB
4426 /* Ok, so the data is restored. Let's update those superblocks. */
4427
10af14c4
N
4428 lo = hi = 0;
4429 if (bsb.length) {
4430 lo = __le64_to_cpu(bsb.arraystart);
4431 hi = lo + __le64_to_cpu(bsb.length);
4432 }
4433 if (bsb.magic[15] == '2' && bsb.length2) {
4434 unsigned long long lo1, hi1;
4435 lo1 = __le64_to_cpu(bsb.arraystart2);
4436 hi1 = lo1 + __le64_to_cpu(bsb.length2);
4437 if (lo == hi) {
4438 lo = lo1;
4439 hi = hi1;
4440 } else if (lo < lo1)
4441 hi = hi1;
4442 else
4443 lo = lo1;
4444 }
4445 if (lo < hi &&
4446 (info->reshape_progress < lo ||
4447 info->reshape_progress > hi))
4448 /* backup does not affect reshape_progress*/ ;
4449 else if (info->delta_disks >= 0) {
e9e43ec3
N
4450 info->reshape_progress = __le64_to_cpu(bsb.arraystart) +
4451 __le64_to_cpu(bsb.length);
4452 if (bsb.magic[15] == '2') {
4453 unsigned long long p2 = __le64_to_cpu(bsb.arraystart2) +
4454 __le64_to_cpu(bsb.length2);
4455 if (p2 > info->reshape_progress)
4456 info->reshape_progress = p2;
4457 }
4458 } else {
4459 info->reshape_progress = __le64_to_cpu(bsb.arraystart);
4460 if (bsb.magic[15] == '2') {
4461 unsigned long long p2 = __le64_to_cpu(bsb.arraystart2);
4462 if (p2 < info->reshape_progress)
4463 info->reshape_progress = p2;
4464 }
4465 }
353632d9 4466 for (j=0; j<info->array.raid_disks; j++) {
ca3b6696
N
4467 if (fdlist[j] < 0)
4468 continue;
3da92f27 4469 if (st->ss->load_super(st, fdlist[j], NULL))
353632d9 4470 continue;
a5d85af7 4471 st->ss->getinfo_super(st, &dinfo, NULL);
e9e43ec3 4472 dinfo.reshape_progress = info->reshape_progress;
3da92f27 4473 st->ss->update_super(st, &dinfo,
68c7d6d7
NB
4474 "_reshape_progress",
4475 NULL,0, 0, NULL);
3da92f27
NB
4476 st->ss->store_super(st, fdlist[j]);
4477 st->ss->free_super(st);
353632d9 4478 }
353632d9
NB
4479 return 0;
4480 }
6e9eac4f
NB
4481 /* Didn't find any backup data, try to see if any
4482 * was needed.
4483 */
82f2d6ab
N
4484 if (info->delta_disks < 0) {
4485 /* When shrinking, the critical section is at the end.
4486 * So see if we are before the critical section.
4487 */
4488 unsigned long long first_block;
4489 nstripe = ostripe = 0;
4490 first_block = 0;
4491 while (ostripe >= nstripe) {
4492 ostripe += info->array.chunk_size / 512;
4493 first_block = ostripe * odata;
4494 nstripe = first_block / ndata / (info->new_chunk/512) *
4495 (info->new_chunk/512);
4496 }
4497
4498 if (info->reshape_progress >= first_block)
4499 return 0;
6e9eac4f 4500 }
82f2d6ab
N
4501 if (info->delta_disks > 0) {
4502 /* See if we are beyond the critical section. */
4503 unsigned long long last_block;
4504 nstripe = ostripe = 0;
4505 last_block = 0;
4506 while (nstripe >= ostripe) {
4507 nstripe += info->new_chunk / 512;
4508 last_block = nstripe * ndata;
4509 ostripe = last_block / odata / (info->array.chunk_size/512) *
4510 (info->array.chunk_size/512);
4511 }
6e9eac4f 4512
82f2d6ab
N
4513 if (info->reshape_progress >= last_block)
4514 return 0;
4515 }
6e9eac4f 4516 /* needed to recover critical section! */
ea0ebe96 4517 if (verbose)
e7b84f9d 4518 pr_err("Failed to find backup of critical section\n");
2295250a 4519 return 1;
353632d9 4520}
e9e43ec3 4521
2dddadb0
AK
4522int Grow_continue_command(char *devname, int fd,
4523 char *backup_file, int verbose)
4524{
4525 int ret_val = 0;
4526 struct supertype *st = NULL;
4527 struct mdinfo *content = NULL;
4528 struct mdinfo array;
4529 char *subarray = NULL;
4530 struct mdinfo *cc = NULL;
4531 struct mdstat_ent *mdstat = NULL;
2dddadb0
AK
4532 int cfd = -1;
4533 int fd2 = -1;
4534
4535 dprintf("Grow continue from command line called for %s\n",
4536 devname);
4537
4538 st = super_by_fd(fd, &subarray);
4539 if (!st || !st->ss) {
e7b84f9d
N
4540 pr_err("Unable to determine metadata format for %s\n",
4541 devname);
2dddadb0
AK
4542 return 1;
4543 }
4544 dprintf("Grow continue is run for ");
4545 if (st->ss->external == 0) {
e0ab37a3 4546 int d;
2dddadb0 4547 dprintf("native array (%s)\n", devname);
e0ab37a3 4548 if (ioctl(fd, GET_ARRAY_INFO, &array.array) < 0) {
e7b84f9d 4549 pr_err("%s is not an active md array -"
2dddadb0
AK
4550 " aborting\n", devname);
4551 ret_val = 1;
4552 goto Grow_continue_command_exit;
4553 }
4554 content = &array;
e0ab37a3
N
4555 /* Need to load a superblock.
4556 * FIXME we should really get what we need from
4557 * sysfs
4558 */
4559 for (d = 0; d < MAX_DISKS; d++) {
4560 mdu_disk_info_t disk;
4561 char *dv;
4562 int err;
4563 disk.number = d;
4564 if (ioctl(fd, GET_DISK_INFO, &disk) < 0)
4565 continue;
4566 if (disk.major == 0 && disk.minor == 0)
4567 continue;
4568 if ((disk.state & (1 << MD_DISK_ACTIVE)) == 0)
4569 continue;
4570 dv = map_dev(disk.major, disk.minor, 1);
4571 if (!dv)
4572 continue;
4573 fd2 = dev_open(dv, O_RDONLY);
4574 if (fd2 < 0)
4575 continue;
4576 err = st->ss->load_super(st, fd2, NULL);
4577 close(fd2);
4578 if (err)
4579 continue;
4580 break;
4581 }
4582 if (d == MAX_DISKS) {
4583 pr_err("Unable to load metadata for %s\n",
4584 devname);
4585 ret_val = 1;
4586 goto Grow_continue_command_exit;
4587 }
4588 st->ss->getinfo_super(st, content, NULL);
2dddadb0 4589 } else {
4dd2df09 4590 char *container;
2dddadb0
AK
4591
4592 if (subarray) {
4593 dprintf("subarray (%s)\n", subarray);
4dd2df09
N
4594 container = st->container_devnm;
4595 cfd = open_dev_excl(st->container_devnm);
2dddadb0 4596 } else {
4dd2df09 4597 container = st->devnm;
2dddadb0 4598 close(fd);
4dd2df09
N
4599 cfd = open_dev_excl(st->devnm);
4600 dprintf("container (%s)\n", container);
2dddadb0
AK
4601 fd = cfd;
4602 }
4603 if (cfd < 0) {
e7b84f9d 4604 pr_err("Unable to open container "
2dddadb0
AK
4605 "for %s\n", devname);
4606 ret_val = 1;
4607 goto Grow_continue_command_exit;
4608 }
2dddadb0
AK
4609
4610 /* find in container array under reshape
4611 */
4612 ret_val = st->ss->load_container(st, cfd, NULL);
4613 if (ret_val) {
e7b84f9d
N
4614 pr_err("Cannot read superblock for %s\n",
4615 devname);
2dddadb0
AK
4616 ret_val = 1;
4617 goto Grow_continue_command_exit;
4618 }
4619
446894ea 4620 cc = st->ss->container_content(st, subarray);
2dddadb0
AK
4621 for (content = cc; content ; content = content->next) {
4622 char *array;
446894ea 4623 int allow_reshape = 1;
2dddadb0
AK
4624
4625 if (content->reshape_active == 0)
4626 continue;
81219e70
LM
4627 /* The decision about array or container wide
4628 * reshape is taken in Grow_continue based
4629 * content->reshape_active state, therefore we
4630 * need to check_reshape based on
4631 * reshape_active and subarray name
446894ea
N
4632 */
4633 if (content->array.state & (1<<MD_SB_BLOCK_VOLUME))
4634 allow_reshape = 0;
4635 if (content->reshape_active == CONTAINER_RESHAPE &&
4636 (content->array.state
4637 & (1<<MD_SB_BLOCK_CONTAINER_RESHAPE)))
4638 allow_reshape = 0;
4639
81219e70 4640 if (!allow_reshape) {
e7b84f9d
N
4641 pr_err("cannot continue reshape of an array"
4642 " in container with unsupported"
4643 " metadata: %s(%s)\n",
4dd2df09 4644 devname, container);
81219e70
LM
4645 ret_val = 1;
4646 goto Grow_continue_command_exit;
4647 }
2dddadb0
AK
4648
4649 array = strchr(content->text_version+1, '/')+1;
4dd2df09 4650 mdstat = mdstat_by_subdev(array, container);
2dddadb0
AK
4651 if (!mdstat)
4652 continue;
1ca90aa6 4653 if (mdstat->active == 0) {
4dd2df09
N
4654 pr_err("Skipping inactive array %s.\n",
4655 mdstat->devnm);
1ca90aa6
AK
4656 free_mdstat(mdstat);
4657 mdstat = NULL;
4658 continue;
4659 }
2dddadb0
AK
4660 break;
4661 }
4662 if (!content) {
e7b84f9d
N
4663 pr_err("Unable to determine reshaped "
4664 "array for %s\n", devname);
2dddadb0
AK
4665 ret_val = 1;
4666 goto Grow_continue_command_exit;
4667 }
4dd2df09 4668 fd2 = open_dev(mdstat->devnm);
2dddadb0 4669 if (fd2 < 0) {
4dd2df09 4670 pr_err("cannot open (%s)\n", mdstat->devnm);
2dddadb0
AK
4671 ret_val = 1;
4672 goto Grow_continue_command_exit;
4673 }
4674
4dd2df09 4675 sysfs_init(content, fd2, mdstat->devnm);
2dddadb0
AK
4676
4677 /* start mdmon in case it is not running
4678 */
4dd2df09
N
4679 if (!mdmon_running(container))
4680 start_mdmon(container);
4681 ping_monitor(container);
2dddadb0 4682
4dd2df09 4683 if (mdmon_running(container))
2dddadb0
AK
4684 st->update_tail = &st->updates;
4685 else {
e7b84f9d 4686 pr_err("No mdmon found. "
2dddadb0
AK
4687 "Grow cannot continue.\n");
4688 ret_val = 1;
4689 goto Grow_continue_command_exit;
4690 }
4691 }
4692
f1fe496b
AK
4693 /* verify that array under reshape is started from
4694 * correct position
4695 */
e0ab37a3 4696 if (verify_reshape_position(content, content->array.level) < 0) {
f1fe496b
AK
4697 ret_val = 1;
4698 goto Grow_continue_command_exit;
4699 }
4700
2dddadb0
AK
4701 /* continue reshape
4702 */
4703 ret_val = Grow_continue(fd, st, content, backup_file, 0);
4704
4705Grow_continue_command_exit:
4706 if (fd2 > -1)
4707 close(fd2);
4708 if (cfd > -1)
4709 close(cfd);
4710 st->ss->free_super(st);
4711 free_mdstat(mdstat);
4712 sysfs_free(cc);
4713 free(subarray);
4714
4715 return ret_val;
4716}
4717
e9e43ec3 4718int Grow_continue(int mdfd, struct supertype *st, struct mdinfo *info,
b76b30e0 4719 char *backup_file, int freeze_reshape)
e9e43ec3 4720{
3bd58dc6
AK
4721 int ret_val = 2;
4722
4723 if (!info->reshape_active)
4724 return ret_val;
864a004f 4725
20a40eca 4726 if (st->ss->external) {
4dd2df09 4727 int cfd = open_dev(st->container_devnm);
3db2fdd8 4728
3bd58dc6
AK
4729 if (cfd < 0)
4730 return 1;
f362d22b 4731
4dd2df09 4732 st->ss->load_container(st, cfd, st->container_devnm);
3bd58dc6 4733 close(cfd);
4dd2df09 4734 ret_val = reshape_container(st->container_devnm, NULL, mdfd,
3bd58dc6 4735 st, info, 0, backup_file,
8ecf12b9
N
4736 0,
4737 1 | info->reshape_active,
4738 freeze_reshape);
3bd58dc6
AK
4739 } else
4740 ret_val = reshape_array(NULL, mdfd, "array", st, info, 1,
8ecf12b9
N
4741 NULL, 0ULL, backup_file, 0, 0,
4742 1 | info->reshape_active,
3bd58dc6 4743 freeze_reshape);
f362d22b 4744
3bd58dc6 4745 return ret_val;
e9e43ec3 4746}