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Assemble.c
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Assemble.c
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/*
* mdadm - manage Linux "md" devices aka RAID arrays.
*
* Copyright (C) 2001-2016 Neil Brown <[email protected]>
*
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
* Author: Neil Brown
* Email: <[email protected]>
*/
#include "mdadm.h"
#include "xmalloc.h"
#include <ctype.h>
mapping_t assemble_statuses[] = {
{ "but cannot be started", INCR_NO },
{ "but not safe to start", INCR_UNSAFE },
{ "and started", INCR_YES },
{ NULL, INCR_ALREADY }
};
/**
* struct assembly_array_info - General, meaningful information for assembly.
* @name: Array name.
* @new_cnt: Count of drives known to be members, recently added.
* @preexist_cnt: Count of member drives in pre-assembled array.
* @exp_cnt: Count of known expansion targets.
*
* FIXME: @exp_new_cnt for recently added expansion targets.
*/
struct assembly_array_info {
char *name;
int new_cnt;
int preexist_cnt;
int exp_cnt;
};
/**
* set_array_assembly_status() - generate status of assembly for an array.
* @c: Global settings.
* @result: Pointer to status mask.
* @status: Status to be set/printed.
* @arr: Array information.
*
* Print status message to user or set it in @result if it is not NULL.
*/
static void set_array_assembly_status(struct context *c,
int *result, int status,
struct assembly_array_info *arr)
{
int raid_disks = arr->preexist_cnt + arr->new_cnt;
char *status_msg = map_num_s(assemble_statuses, status);
if (c->export && result)
*result |= status;
if (c->export || c->verbose < 0)
return;
pr_err("%s has been assembled with %d device%s", arr->name,
raid_disks, raid_disks == 1 ? "":"s");
if (arr->preexist_cnt > 0)
fprintf(stderr, " (%d new)", arr->new_cnt);
if (arr->exp_cnt)
fprintf(stderr, " ( + %d for expansion)", arr->exp_cnt);
fprintf(stderr, " %s.\n", status_msg);
}
static int name_matches(char *found, char *required, char *homehost, int require_homehost)
{
/* See if the name found matches the required name, possibly
* prefixed with 'homehost'
*/
char *sep;
unsigned int l;
if (strcmp(found, required)==0)
return 1;
sep = strchr(found, ':');
if (!sep)
return 0;
l = sep - found;
if (strncmp(found, "any:", 4) == 0 ||
(homehost && strcmp(homehost, "any") == 0) ||
!require_homehost ||
(homehost && strlen(homehost) == l &&
strncmp(found, homehost, l) == 0)) {
/* matching homehost */
if (strcmp(sep+1, required) == 0)
return 1;
}
return 0;
}
static int is_member_busy(char *metadata_version)
{
/* check if the given member array is active */
struct mdstat_ent *mdstat = mdstat_read(0, 0);
struct mdstat_ent *ent;
int busy = 0;
for (ent = mdstat; ent; ent = ent->next) {
if (!is_mdstat_ent_subarray(ent))
continue;
/* Skip first char - it can be '/' or '-' */
if (strcmp(&ent->metadata_version[10], metadata_version + 1) == 0) {
busy = 1;
break;
}
}
free_mdstat(mdstat);
return busy;
}
static int ident_matches(struct mddev_ident *ident,
struct mdinfo *content,
struct supertype *tst,
char *homehost, int require_homehost,
enum update_opt update, char *devname)
{
if (ident->uuid_set && update != UOPT_UUID &&
same_uuid(content->uuid, ident->uuid, tst->ss->swapuuid)==0 &&
memcmp(content->uuid, uuid_zero, sizeof(int[4])) != 0) {
if (devname)
pr_err("%s has wrong uuid.\n", devname);
return 0;
}
if (ident->name[0] && update != UOPT_NAME &&
name_matches(content->name, ident->name, homehost, require_homehost)==0) {
if (devname)
pr_err("%s has wrong name.\n", devname);
return 0;
}
if (ident->super_minor != UnSet &&
ident->super_minor != content->array.md_minor) {
if (devname)
pr_err("%s has wrong super-minor.\n",
devname);
return 0;
}
if (ident->level != UnSet &&
ident->level != content->array.level) {
if (devname)
pr_err("%s has wrong raid level.\n",
devname);
return 0;
}
if (ident->raid_disks != UnSet &&
content->array.raid_disks != 0 && /* metadata doesn't know how many to expect */
ident->raid_disks!= content->array.raid_disks) {
if (devname)
pr_err("%s requires wrong number of drives.\n",
devname);
return 0;
}
if (ident->member && ident->member[0]) {
/* content->text_version must match */
char *s = strchr(content->text_version+1, '/');
if (s == NULL) {
if (devname)
pr_err("%s is not a container and one is required.\n",
devname);
return 0;
} else if (strcmp(ident->member, s+1) != 0) {
if (devname)
pr_err("skipping wrong member %s is %s\n",
content->text_version, devname);
return 0;
}
}
return 1;
}
static int select_devices(struct mddev_dev *devlist,
struct mddev_ident *ident,
struct supertype **stp,
struct mdinfo **contentp,
struct context *c,
int inargv, int auto_assem)
{
struct mddev_dev *tmpdev;
int num_devs;
struct supertype *st = *stp;
struct mdinfo *content = NULL;
int report_mismatch = ((inargv && c->verbose >= 0) || c->verbose > 0);
struct domainlist *domains = NULL;
dev_t rdev;
tmpdev = devlist; num_devs = 0;
while (tmpdev) {
if (tmpdev->used)
tmpdev->used = 2;
else
num_devs++;
tmpdev->disposition = 0;
tmpdev = tmpdev->next;
}
/* first walk the list of devices to find a consistent set
* that match the criterea, if that is possible.
* We flag the ones we like with 'used'.
*/
for (tmpdev = devlist;
tmpdev;
tmpdev = tmpdev ? tmpdev->next : NULL) {
char *devname = tmpdev->devname;
int dfd;
struct supertype *tst;
struct dev_policy *pol = NULL;
int found_container = 0;
if (tmpdev->used > 1)
continue;
if (ident->container) {
if (ident->container[0] == '/' &&
!same_dev(ident->container, devname)) {
if (report_mismatch)
pr_err("%s is not the container required (%s)\n",
devname, ident->container);
continue;
}
} else if (ident->devices &&
!match_oneof(ident->devices, devname)) {
/* Note that we ignore the "device=" identifier if a
* "container=" is given. Checking both is unnecessarily
* complicated.
*/
if (report_mismatch)
pr_err("%s is not one of %s\n", devname, ident->devices);
continue;
}
tst = dup_super(st);
dfd = dev_open(devname, O_RDONLY);
if (dfd < 0) {
if (report_mismatch)
pr_err("cannot open device %s: %s\n",
devname, strerror(errno));
tmpdev->used = 2;
} else if (!fstat_is_blkdev(dfd, devname, &rdev)) {
tmpdev->used = 2;
} else if (must_be_container(dfd)) {
if (st) {
/* already found some components, this cannot
* be another one.
*/
if (report_mismatch)
pr_err("%s is a container, but we are looking for components\n",
devname);
tmpdev->used = 2;
} if (!tst && (tst = super_by_fd(dfd, NULL)) == NULL) {
if (report_mismatch)
pr_err("not a recognisable container: %s\n",
devname);
tmpdev->used = 2;
} else if (!tst->ss->load_container ||
tst->ss->load_container(tst, dfd, NULL)) {
if (report_mismatch)
pr_err("no correct container type: %s\n",
devname);
tmpdev->used = 2;
} else if (auto_assem &&
!conf_test_metadata(tst->ss->name,
(pol = devid_policy(rdev)),
tst->ss->match_home(tst, c->homehost) == 1)) {
if (report_mismatch)
pr_err("%s has metadata type %s for which auto-assembly is disabled\n",
devname, tst->ss->name);
tmpdev->used = 2;
} else
found_container = 1;
} else {
if (!tst && (tst = guess_super(dfd)) == NULL) {
if (report_mismatch)
pr_err("no recogniseable superblock on %s\n",
devname);
tmpdev->used = 2;
} else if ((tst->ignore_hw_compat = 0),
tst->ss->load_super(tst, dfd,
report_mismatch ? devname : NULL)) {
if (report_mismatch)
pr_err("no RAID superblock on %s\n",
devname);
tmpdev->used = 2;
} else if (tst->ss->compare_super == NULL) {
if (report_mismatch)
pr_err("Cannot assemble %s metadata on %s\n",
tst->ss->name, devname);
tmpdev->used = 2;
} else if (auto_assem && st == NULL &&
!conf_test_metadata(tst->ss->name,
(pol = devid_policy(rdev)),
tst->ss->match_home(tst, c->homehost) == 1)) {
if (report_mismatch)
pr_err("%s has metadata type %s for which auto-assembly is disabled\n",
devname, tst->ss->name);
tmpdev->used = 2;
}
}
if (dfd >= 0) close(dfd);
if (tmpdev->used == 2) {
if (auto_assem || !inargv)
/* Ignore unrecognised devices during auto-assembly */
goto loop;
if (ident->name[0] ||
ident->super_minor != UnSet)
/* Ignore unrecognised device if looking for
* specific array */
goto loop;
if (ident->uuid_set)
/* ignore unrecognized device if looking for
* specific uuid
*/
goto loop;
pr_err("%s has no superblock - assembly aborted\n",
devname);
if (st)
st->ss->free_super(st);
dev_policy_free(pol);
domain_free(domains);
if (tst) {
tst->ss->free_super(tst);
free(tst);
}
return -1;
}
if (found_container) {
/* tmpdev is a container. We need to be either
* looking for a member, or auto-assembling
*/
/* should be safe to try an exclusive open now, we
* have rejected anything that some other mdadm might
* be looking at
*/
dfd = dev_open(devname, O_RDONLY | O_EXCL);
if (dfd < 0) {
if (report_mismatch)
pr_err("%s is busy - skipping\n", devname);
goto loop;
}
close(dfd);
if (ident->container && ident->container[0] != '/') {
/* we have a uuid */
int uuid[4];
content = *contentp;
tst->ss->getinfo_super(tst, content, NULL);
if (!parse_uuid(ident->container, uuid) ||
!same_uuid(content->uuid, uuid, tst->ss->swapuuid)) {
if (report_mismatch)
pr_err("%s has wrong UUID to be required container\n",
devname);
goto loop;
}
}
/* It is worth looking inside this container.
*/
if (c->verbose > 0)
pr_err("looking in container %s\n",
devname);
for (content = tst->ss->container_content(tst, NULL);
content;
content = content->next) {
if (!ident_matches(ident, content, tst,
c->homehost, c->require_homehost,
c->update,
report_mismatch ? devname : NULL))
/* message already printed */;
else if (is_member_busy(content->text_version)) {
if (report_mismatch)
pr_err("member %s in %s is already assembled\n",
content->text_version,
devname);
} else if (content->array.state & (1<<MD_SB_BLOCK_VOLUME)) {
/* do not assemble arrays with unsupported configurations */
pr_err("Cannot activate member %s in %s.\n",
content->text_version,
devname);
} else
break;
}
if (!content) {
tmpdev->used = 2;
goto loop; /* empty container */
}
st = tst; tst = NULL;
if (!auto_assem && inargv && tmpdev->next != NULL) {
pr_err("%s is a container, but is not only device given: confused and aborting\n",
devname);
st->ss->free_super(st);
dev_policy_free(pol);
domain_free(domains);
free(st);
return -1;
}
if (c->verbose > 0)
pr_err("found match on member %s in %s\n",
content->text_version, devname);
/* make sure we finished the loop */
tmpdev = NULL;
goto loop;
} else {
content = *contentp;
tst->ss->getinfo_super(tst, content, NULL);
if (!ident_matches(ident, content, tst,
c->homehost, c->require_homehost,
c->update,
report_mismatch ? devname : NULL))
goto loop;
if (auto_assem) {
/* Never auto-assemble things that conflict
* with mdadm.conf in some way
*/
struct mddev_ident *match;
int rv = 0;
match = conf_match(tst, content, devname,
report_mismatch ? c->verbose : -1,
&rv);
if (!match && rv == 2)
goto loop;
if (match && match->devname &&
strcasecmp(match->devname, "<ignore>") == 0) {
if (report_mismatch)
pr_err("%s is a member of an explicitly ignored array\n",
devname);
goto loop;
}
if (match && !ident_matches(match, content, tst,
c->homehost, c->require_homehost,
c->update,
report_mismatch ? devname : NULL))
/* Array exists in mdadm.conf but some
* details don't match, so reject it
*/
goto loop;
}
/* should be safe to try an exclusive open now, we
* have rejected anything that some other mdadm might
* be looking at
*/
dfd = dev_open(devname, O_RDONLY | O_EXCL);
if (dfd < 0) {
if (report_mismatch)
pr_err("%s is busy - skipping\n", devname);
goto loop;
}
close(dfd);
if (st == NULL)
st = dup_super(tst);
if (st->minor_version == -1)
st->minor_version = tst->minor_version;
if (memcmp(content->uuid, uuid_zero,
sizeof(int[4])) == 0) {
/* this is a floating spare. It cannot define
* an array unless there are no more arrays of
* this type to be found. It can be included
* in an array of this type though.
*/
tmpdev->used = 3;
goto loop;
}
if (st->ss != tst->ss ||
st->minor_version != tst->minor_version ||
st->ss->compare_super(st, tst, 1) != 0) {
/* Some mismatch. If exactly one array matches this host,
* we can resolve on that one.
* Or, if we are auto assembling, we just ignore the second
* for now.
*/
if (auto_assem)
goto loop;
if (c->homehost) {
int first = st->ss->match_home(st, c->homehost);
int last = tst->ss->match_home(tst, c->homehost);
if (first != last &&
(first == 1 || last == 1)) {
/* We can do something */
if (first) {/* just ignore this one */
if (report_mismatch)
pr_err("%s misses out due to wrong homehost\n",
devname);
goto loop;
} else { /* reject all those sofar */
struct mddev_dev *td;
if (report_mismatch)
pr_err("%s overrides previous devices due to good homehost\n",
devname);
for (td=devlist; td != tmpdev; td=td->next)
if (td->used == 1)
td->used = 0;
tmpdev->used = 1;
goto loop;
}
}
}
pr_err("superblock on %s doesn't match others - assembly aborted\n",
devname);
tst->ss->free_super(tst);
st->ss->free_super(st);
dev_policy_free(pol);
domain_free(domains);
free(tst);
return -1;
}
tmpdev->used = 1;
}
loop:
/* Collect domain information from members only */
if (tmpdev && tmpdev->used == 1) {
if (!pol)
pol = devid_policy(rdev);
domain_merge(&domains, pol, tst?tst->ss->name:NULL);
}
dev_policy_free(pol);
pol = NULL;
if (tst) {
tst->ss->free_super(tst);
free(tst);
}
}
/* Check if we found some imsm spares but no members */
if ((auto_assem ||
(ident->uuid_set &&
memcmp(uuid_zero, ident->uuid,sizeof(uuid_zero)) == 0)) &&
(!st || !st->sb))
for (tmpdev = devlist; tmpdev; tmpdev = tmpdev->next) {
if (tmpdev->used != 3)
continue;
tmpdev->used = 1;
content = *contentp;
if (!st)
return -1;
if (!st->sb) {
/* we need sb from one of the spares */
int dfd = dev_open(tmpdev->devname, O_RDONLY);
if (dfd < 0 ||
st->ss->load_super(st, dfd, NULL))
tmpdev->used = 2;
close_fd(&dfd);
}
}
/* Now reject spares that don't match domains of identified members */
for (tmpdev = devlist; tmpdev; tmpdev = tmpdev->next) {
if (tmpdev->used != 3)
continue;
if (!stat_is_blkdev(tmpdev->devname, &rdev)) {
tmpdev->used = 2;
} else {
struct dev_policy *pol = devid_policy(rdev);
int dt = domain_test(domains, pol, NULL);
if (inargv && dt != 0)
/* take this spare as domains match
* if there are any */
tmpdev->used = 1;
else if (!inargv && dt == 1)
/* device wasn't explicitly listed, so need
* explicit domain match - which we have */
tmpdev->used = 1;
else
/* if domains don't match mark as unused */
tmpdev->used = 0;
dev_policy_free(pol);
}
}
domain_free(domains);
*stp = st;
if (st && st->sb && content == *contentp)
st->ss->getinfo_super(st, content, NULL);
*contentp = content;
return num_devs;
}
struct devs {
char *devname;
int uptodate; /* set once we decide that this device is as
* recent as everything else in the array.
*/
int included; /* set if the device is already in the array
* due to a previous '-I'
*/
struct mdinfo i;
};
static int load_devices(struct devs *devices, char *devmap,
struct mddev_ident *ident, struct supertype **stp,
struct mddev_dev *devlist, struct context *c,
struct mdinfo *content,
int mdfd, char *mddev,
int *most_recentp, int *bestcntp, int **bestp,
int inargv)
{
struct mddev_dev *tmpdev;
int devcnt = 0;
int nextspare = 0;
int most_recent = -1;
int bestcnt = 0;
int *best = *bestp;
struct supertype *st = *stp;
for (tmpdev = devlist; tmpdev; tmpdev=tmpdev->next) {
char *devname = tmpdev->devname;
struct stat stb;
struct supertype *tst;
int i;
int dfd;
int disk_state;
if (tmpdev->used != 1)
continue;
/* looks like a good enough match to update the super block if needed */
if (c->update) {
/* prepare useful information in info structures */
struct stat stb2;
int err;
if (fstat(mdfd, &stb2) != 0)
goto error;
if (c->update == UOPT_UUID && !ident->uuid_set)
random_uuid((__u8 *)ident->uuid);
if (c->update == UOPT_PPL && ident->btype != BitmapNone) {
pr_err("PPL is not compatible with bitmap\n");
close(mdfd);
free(devices);
free(devmap);
return -1;
}
dfd = dev_open(devname,
tmpdev->disposition == 'I'
? O_RDWR : (O_RDWR|O_EXCL));
tst = dup_super(st);
if (dfd < 0 || tst->ss->load_super(tst, dfd, NULL) != 0) {
pr_err("cannot re-read metadata from %s - aborting\n",
devname);
if (dfd >= 0)
close(dfd);
tst->ss->free_super(tst);
free(tst);
*stp = st;
goto error;
}
tst->ss->getinfo_super(tst, content, devmap + devcnt * content->array.raid_disks);
memcpy(content->uuid, ident->uuid, 16);
strcpy(content->name, ident->name);
content->array.md_minor = minor(stb2.st_rdev);
if (c->update == UOPT_BYTEORDER)
err = 0;
else if (c->update == UOPT_HOME_CLUSTER) {
tst->cluster_name = c->homecluster;
err = tst->ss->write_bitmap(tst, dfd, NameUpdate);
} else if (c->update == UOPT_NODES) {
tst->nodes = c->nodes;
err = tst->ss->write_bitmap(tst, dfd, NodeNumUpdate);
} else if (c->update == UOPT_REVERT_RESHAPE && c->invalid_backup)
err = tst->ss->update_super(tst, content,
UOPT_SPEC_REVERT_RESHAPE_NOBACKUP,
devname, c->verbose,
ident->uuid_set,
c->homehost);
else
err = tst->ss->update_super(tst, content,
c->update,
devname, c->verbose,
ident->uuid_set,
c->homehost);
if (err < 0) {
if (err == -1)
pr_err("--update=%s not understood for %s metadata\n",
map_num(update_options, c->update), tst->ss->name);
tst->ss->free_super(tst);
free(tst);
close(dfd);
*stp = st;
goto error;
}
if (c->update == UOPT_UUID &&
!ident->uuid_set) {
ident->uuid_set = 1;
memcpy(ident->uuid, content->uuid, 16);
}
if (tst->ss->store_super(tst, dfd))
pr_err("Could not re-write superblock on %s.\n",
devname);
} else {
dfd = dev_open(devname,
tmpdev->disposition == 'I'
? O_RDWR : (O_RDWR|O_EXCL));
tst = dup_super(st);
if (dfd < 0 || tst->ss->load_super(tst, dfd, NULL) != 0) {
pr_err("cannot re-read metadata from %s - aborting\n",
devname);
if (dfd >= 0)
close(dfd);
tst->ss->free_super(tst);
free(tst);
*stp = st;
goto error;
}
tst->ss->getinfo_super(tst, content, devmap + devcnt * content->array.raid_disks);
}
if (fstat(dfd, &stb) != 0) {
close(dfd);
free(devices);
free(devmap);
tst->ss->free_super(tst);
free(tst);
*stp = st;
return -1;
}
close(dfd);
if (c->verbose > 0)
pr_err("%s is identified as a member of %s, slot %d%s.\n",
devname, mddev, content->disk.raid_disk,
(content->disk.state & (1<<MD_DISK_REPLACEMENT)) ? " replacement":"");
devices[devcnt].devname = devname;
devices[devcnt].uptodate = 0;
devices[devcnt].included = (tmpdev->disposition == 'I');
devices[devcnt].i = *content;
devices[devcnt].i.disk.major = major(stb.st_rdev);
devices[devcnt].i.disk.minor = minor(stb.st_rdev);
disk_state = devices[devcnt].i.disk.state & ~((1<<MD_DISK_FAILFAST) |
(1<<MD_DISK_WRITEMOSTLY));
if (disk_state == ((1<<MD_DISK_ACTIVE) | (1<<MD_DISK_SYNC))) {
if (most_recent < 0 ||
devices[devcnt].i.events
> devices[most_recent].i.events) {
struct supertype *tmp = tst;
tst = st;
st = tmp;
most_recent = devcnt;
}
}
tst->ss->free_super(tst);
free(tst);
if (content->array.level == LEVEL_MULTIPATH)
/* with multipath, the raid_disk from the superblock is meaningless */
i = devcnt;
else
i = devices[devcnt].i.disk.raid_disk;
if (i+1 == 0 || i == MD_DISK_ROLE_JOURNAL) {
if (nextspare < content->array.raid_disks*2)
nextspare = content->array.raid_disks*2;
i = nextspare++;
} else {
/* i is raid_disk - double it so there is room for
* replacements */
i *= 2;
if (devices[devcnt].i.disk.state & (1<<MD_DISK_REPLACEMENT))
i++;
if (i >= content->array.raid_disks*2 &&
i >= nextspare)
nextspare = i+1;
}
if (i < 10000) {
if (i >= bestcnt) {
int newbestcnt = i+10;
int *newbest = xmalloc(sizeof(int)*newbestcnt);
int cc;
for (cc = 0; cc < newbestcnt; cc++)
if (cc < bestcnt)
newbest[cc] = best[cc];
else
newbest[cc] = -1;
if (best)free(best);
best = newbest;
bestcnt = newbestcnt;
}
if (best[i] >=0 &&
devices[best[i]].i.events ==
devices[devcnt].i.events &&
(devices[best[i]].i.disk.minor !=
devices[devcnt].i.disk.minor) &&
st->ss == &super0 &&
content->array.level != LEVEL_MULTIPATH) {
/* two different devices with identical superblock.
* Could be a mis-detection caused by overlapping
* partitions. fail-safe.
*/
pr_err("WARNING %s and %s appear to have very similar superblocks.\n"
" If they are really different, please --zero the superblock on one\n"
" If they are the same or overlap, please remove one from %s.\n",
devices[best[i]].devname, devname,
inargv ? "the list" :
"the\n DEVICE list in mdadm.conf"
);
free(best);
*stp = st;
goto error;
}
if (best[i] == -1 || (devices[best[i]].i.events
< devices[devcnt].i.events))
best[i] = devcnt;
else if (st->ss == &super_imsm)
best[i+1] = devcnt;
}
devcnt++;
}
if (most_recent >= 0)
*most_recentp = most_recent;
*bestcntp = bestcnt;
*bestp = best;
*stp = st;
return devcnt;
error:
close(mdfd);
free(devices);
free(devmap);
return -1;
}
static int force_array(struct mdinfo *content,
struct devs *devices,
int *best, int bestcnt, char *avail,
int most_recent,
struct supertype *st,
struct context *c)
{
int okcnt = 0;
while (!enough(content->array.level, content->array.raid_disks,
content->array.layout, 1,
avail) ||
(content->reshape_active && content->delta_disks > 0 &&
!enough(content->array.level, (content->array.raid_disks
- content->delta_disks),
content->new_layout, 1, avail))) {
/* Choose the newest best drive which is
* not up-to-date, update the superblock
* and add it.
*/
int fd;
struct supertype *tst;
unsigned long long current_events;
int chosen_drive = -1;
int i;
for (i = 0;
i < content->array.raid_disks * 2 && i < bestcnt;
i += 2) {
int j = best[i];
if (j < 0)
continue;
if (devices[j].uptodate)
continue;
if (devices[j].i.recovery_start != MaxSector) {
int delta;
if (!devices[j].i.reshape_active ||
devices[j].i.delta_disks <= 0)
continue;
/* When increasing number of devices, an
* added device also appears to be
* recovering. It is safe to include it
* as long as it won't be a source of
* data.
* For now, just allow for last data
* devices in RAID4 or last devices in RAID4/5/6.
*/
delta = devices[j].i.delta_disks;
if (is_level456(devices[j].i.array.level) &&
i/2 >= content->array.raid_disks - delta)
/* OK */;
else if (devices[j].i.array.level == 4 &&
i/2 >= content->array.raid_disks - delta - 1)
/* OK */;
else
continue;
} else if (devices[j].i.reshape_active !=
content->reshape_active ||
(devices[j].i.reshape_active &&
devices[j].i.reshape_progress !=
content->reshape_progress))
/* Here, it may be a source of data. If two
* devices claim different progresses, it
* means that reshape boundaries differ for
* their own devices. Kernel will only treat
* the first one as reshape progress and
* go on. It may cause disaster, so avoid it.
*/
continue;
if (chosen_drive < 0 ||
devices[j].i.events
> devices[chosen_drive].i.events)
chosen_drive = j;
}
if (chosen_drive < 0)
break;
current_events = devices[chosen_drive].i.events;
add_another:
if (c->verbose >= 0)
pr_err("forcing event count in %s(%d) from %d up to %d\n",
devices[chosen_drive].devname,
devices[chosen_drive].i.disk.raid_disk,
(int)(devices[chosen_drive].i.events),
(int)(devices[most_recent].i.events));
fd = dev_open(devices[chosen_drive].devname,
devices[chosen_drive].included ? O_RDWR
: (O_RDWR|O_EXCL));
if (fd < 0) {
pr_err("Couldn't open %s for write - not updating\n",
devices[chosen_drive].devname);
devices[chosen_drive].i.events = 0;
continue;
}
tst = dup_super(st);
if (tst->ss->load_super(tst,fd, NULL)) {
close(fd);
pr_err("RAID superblock disappeared from %s - not updating.\n",
devices[chosen_drive].devname);
devices[chosen_drive].i.events = 0;
continue;
}
content->events = devices[most_recent].i.events;
tst->ss->update_super(tst, content, UOPT_SPEC_FORCE_ONE,
devices[chosen_drive].devname, c->verbose,
0, NULL);
if (tst->ss->store_super(tst, fd)) {
close(fd);
pr_err("Could not re-write superblock on %s\n",
devices[chosen_drive].devname);
devices[chosen_drive].i.events = 0;
tst->ss->free_super(tst);
continue;
}
close(fd);
devices[chosen_drive].i.events = devices[most_recent].i.events;
devices[chosen_drive].uptodate = 1;
avail[chosen_drive] = 1;
okcnt++;
tst->ss->free_super(tst);
/* If there are any other drives of the same vintage,
* add them in as well. We can't lose and we might gain
*/
for (i = 0;
i < content->array.raid_disks * 2 && i < bestcnt ;
i += 2) {
int j = best[i];
if (j >= 0 &&
!devices[j].uptodate &&
devices[j].i.recovery_start == MaxSector &&
devices[j].i.events == current_events &&
((!devices[j].i.reshape_active &&
!content->reshape_active) ||
(devices[j].i.reshape_active ==
content->reshape_active &&
devices[j].i.reshape_progress ==
content->reshape_progress))) {
chosen_drive = j;