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74 Commits

Author SHA1 Message Date
David Teigland
4eb04c8c05 devices: fix dev_name assumptions
dev_name(dev) returns "[unknown]" if there are no names
on dev->aliases.  It's meant mainly for log messages.

Many places assume a valid path name is returned, and
use it directly.  A caller that wants to use the path
from dev_name() must first check if the dev has any
paths with dm_list_empty(&dev->aliases).
2022-02-24 17:22:04 -06:00
Zdenek Kabelac
bb45e33518 backup: automatically store data on vg_unlock
Previously there have been necessary explicit call of backup (often
either forgotten or over-used). With this patch the necessity to
store backup is remember at vg_commit and once the VG is unlocked,
the committed metadata are automatically store in backup file.

This may possibly alter some printed messages from command when the
backup is now taken later.
2021-06-09 14:56:13 +02:00
Zdenek Kabelac
ba3707d953 archiving: take archive automatically
Instead of calling explicit archive with command processing logic,
move this step towards 1st. vg_write() call, which will automatically
store archive of committed metadata.

This slightly changes some error path where the error in archiving
was detected earlier in the command, while now some on going command
'actions' might have been, but will be simply scratched in case
of error (since even new metadata would not have been even written).

So general effect should be only some command message ordering.
2021-06-09 14:56:13 +02:00
Zdenek Kabelac
2d64ffaee5 hash: use individual hint sizes
Use different 'hint' size for dm_hash_create() call - so
when debug info about hash is printed we can recognize which
hash was in use.

This patch doesn't change actual used size since that is always
rounded to be power of 2 and >=16 - so as such is only a
help to developer.

We could eventually use 'name' arg, but since this would have changed
API and this patchset will be routed to libdm & stable - we will
just use this small trick.
2021-03-08 15:33:15 +01:00
Zdenek Kabelac
936c7b5104 vg_read: reuse already parsed config tree
When parsing VG metadata we can create from a single config tree
also 'vg_committed' that is always created for writable VG.

This avoids extra uncessary step of serializing and deserilizing
just parsed VG.
2021-03-08 15:30:18 +01:00
Zdenek Kabelac
a125a3bb50 lv_remove: reduce commits for removed LVs
This patch postpones update of lvm metadata for each removed
LV for later moment depending on LV type.

It also queues messages to be printed after such write & commit.

As such there is some change in the behavior - although before
prompt we do make  write&commit happens automatically in some
other error case we rather keep 'existing' state - so there
could be difference in amount of removed & commited LVs.

IMHO introduce logic is slightly better and more save.

But some cases still need the early commit - i.e. thin-removal
and fixing this needs some more thinking.

TODO: improve removal at least with the case of the whole thin-pool.
i.e. we can simply recognize removal of 'all LVs/whole VG'.
2021-03-08 15:25:05 +01:00
Zdenek Kabelac
ee0cb17608 gcc: use apropriate type for reading and printing values 2020-08-28 21:43:03 +02:00
David Teigland
ba7ff96faf improve reading and repairing vg metadata
The fact that vg repair is implemented as a part of vg read
has led to a messy and complicated implementation of vg_read,
and limited and uncontrolled repair capability.  This splits
read and repair apart.

Summary
-------

- take all kinds of various repairs out of vg_read
- vg_read no longer writes anything
- vg_read now simply reads and returns vg metadata
- vg_read ignores bad or old copies of metadata
- vg_read proceeds with a single good copy of metadata
- improve error checks and handling when reading
- keep track of bad (corrupt) copies of metadata in lvmcache
- keep track of old (seqno) copies of metadata in lvmcache
- keep track of outdated PVs in lvmcache
- vg_write will do basic repairs
- new command vgck --updatemetdata will do all repairs

Details
-------

- In scan, do not delete dev from lvmcache if reading/processing fails;
  the dev is still present, and removing it makes it look like the dev
  is not there.  Records are now kept about the problems with each PV
  so they be fixed/repaired in the appropriate places.

- In scan, record a bad mda on failure, and delete the mda from
  mda in use list so it will not be used by vg_read or vg_write,
  only by repair.

- In scan, succeed if any good mda on a device is found, instead of
  failing if any is bad.  The bad/old copies of metadata should not
  interfere with normal usage while good copies can be used.

- In scan, add a record of old mdas in lvmcache for later, do not repair
  them while reading, and do not let them prevent us from finding and
  using a good copy of metadata from elsewhere.  One result is that
  "inconsistent metadata" is no longer a read error, but instead a
  record in lvmcache that can be addressed separate from the read.

- Treat a dev with no good mdas like a dev with no mdas, which is an
  existing case we already handle.

- Don't use a fake vg "handle" for returning an error from vg_read,
  or the vg_read_error function for getting that error number;
  just return null if the vg cannot be read or used, and an error_flags
  arg with flags set for the specific kind of error (which can be used
  later for determining the kind of repair.)

- Saving an original copy of the vg metadata, for purposes of reverting
  a write, is now done explicitly in vg_read instead of being hidden in
  the vg_make_handle function.

- When a vg is not accessible due to "access restrictions" but is
  otherwise fine, return the vg through the new error_vg arg so that
  process_each_pv can skip the PVs in the VG while processing.
  (This is a temporary accomodation for the way process_each_pv
  tracks which devs have been looked at, and can be dropped later
  when process_each_pv implementation dev tracking is changed.)

- vg_read does not try to fix or recover a vg, but now just reads the
  metadata, checks access restrictions and returns it.
  (Checking access restrictions might be better done outside of vg_read,
   but this is a later improvement.)

- _vg_read now simply makes one attempt to read metadata from
  each mda, and uses the most recent copy to return to the caller
  in the form of a 'vg' struct.
  (bad mdas were excluded during the scan and are not retried)
  (old mdas were not excluded during scan and are retried here)

- vg_read uses _vg_read to get the latest copy of metadata from mdas,
  and then makes various checks against it to produce warnings,
  and to check if VG access is allowed (access restrictions include:
  writable, foreign, shared, clustered, missing pvs).

- Things that were previously silently/automatically written by vg_read
  that are now done by vg_write, based on the records made in lvmcache
  during the scan and read:
  . clearing the missing flag
  . updating old copies of metadata
  . clearing outdated pvs
  . updating pv header flags

- Bad/corrupt metadata are now repaired; they were not before.

Test changes
------------

- A read command no longer writes the VG to repair it, so add a write
  command to do a repair.
  (inconsistent-metadata, unlost-pv)

- When a missing PV is removed from a VG, and then the device is
  enabled again, vgck --updatemetadata is needed to clear the
  outdated PV before it can be used again, where it wasn't before.
  (lvconvert-repair-policy, lvconvert-repair-raid, lvconvert-repair,
   mirror-vgreduce-removemissing, pv-ext-flags, unlost-pv)

Reading bad/old metadata
------------------------

- "bad metadata": the mda_header or metadata text has invalid fields
  or can't be parsed by lvm.  This is a form of corruption that would
  not be caused by known failure scenarios.  A checksum error is
  typically included among the errors reported.

- "old metadata": a valid copy of the metadata that has a smaller seqno
  than other copies of the metadata.  This can happen if the device
  failed, or io failed, or lvm failed while commiting new metadata
  to all the metadata areas.  Old metadata on a PV that has been
  removed from the VG is the "outdated" case below.

When a VG has some PVs with bad/old metadata, lvm can simply ignore
the bad/old copies, and use a good copy.  This is why there are
multiple copies of the metadata -- so it's available even when some
of the copies cannot be used.  The bad/old copies do not have to be
repaired before the VG can be used (the repair can happen later.)

A PV with no good copies of the metadata simply falls back to being
treated like a PV with no mdas; a common and harmless configuration.

When bad/old metadata exists, lvm warns the user about it, and
suggests repairing it using a new metadata repair command.
Bad metadata in particular is something that users will want to
investigate and repair themselves, since it should not happen and
may indicate some other problem that needs to be fixed.

PVs with bad/old metadata are not the same as missing devices.
Missing devices will block various kinds of VG modification or
activation, but bad/old metadata will not.

Previously, lvm would attempt to repair bad/old metadata whenever
it was read.  This was unnecessary since lvm does not require every
copy of the metadata to be used.  It would also hide potential
problems that should be investigated by the user.  It was also
dangerous in cases where the VG was on shared storage.  The user
is now allowed to investigate potential problems and decide how
and when to repair them.

Repairing bad/old metadata
--------------------------

When label scan sees bad metadata in an mda, that mda is removed
from the lvmcache info->mdas list.  This means that vg_read will
skip it, and not attempt to read/process it again.  If it was
the only in-use mda on a PV, that PV is treated like a PV with
no mdas.  It also means that vg_write will also skip the bad mda,
and not attempt to write new metadata to it.  The only way to
repair bad metadata is with the metadata repair command.

When label scan sees old metadata in an mda, that mda is kept
in the lvmcache info->mdas list.  This means that vg_read will
read/process it again, and likely see the same mismatch with
the other copies of the metadata.  Like the label_scan, the
vg_read will simply ignore the old copy of the metadata and
use the latest copy.  If the command is modifying the vg
(e.g. lvcreate), then vg_write, which writes new metadata to
every mda on info->mdas, will write the new metadata to the
mda that had the old version.  If successful, this will resolve
the old metadata problem (without needing to run a metadata
repair command.)

Outdated PVs
------------

An outdated PV is a PV that has an old copy of VG metadata
that shows it is a member of the VG, but the latest copy of
the VG metadata does not include this PV.  This happens if
the PV is disconnected, vgreduce --removemissing is run to
remove the PV from the VG, then the PV is reconnected.
In this case, the outdated PV needs have its outdated metadata
removed and the PV used flag needs to be cleared.  This repair
will be done by the subsequent repair command.  It is also done
if vgremove is run on the VG.

MISSING PVs
-----------

When a device is missing, most commands will refuse to modify
the VG.  This is the simple case.  More complicated is when
a command is allowed to modify the VG while it is missing a
device.

When a VG is written while a device is missing for one of it's PVs,
the VG metadata is written to disk with the MISSING flag on the PV
with the missing device.  When the VG is next used, it is treated
as if the PV with the MISSING flag still has a missing device, even
if that device has reappeared.

If all LVs that were using a PV with the MISSING flag are removed
or repaired so that the MISSING PV is no longer used, then the
next time the VG metadata is written, the MISSING flag will be
dropped.

Alternative methods of clearing the MISSING flag are:

vgreduce --removemissing will remove PVs with missing devices,
or PVs with the MISSING flag where the device has reappeared.

vgextend --restoremissing will clear the MISSING flag on PVs
where the device has reappeared, allowing the VG to be used
normally.  This must be done with caution since the reappeared
device may have old data that is inconsistent with data on other PVs.

Bad mda repair
--------------

The new command:
vgck --updatemetadata VG

first uses vg_write to repair old metadata, and other basic
issues mentioned above (old metadata, outdated PVs, pv_header
flags, MISSING_PV flags).  It will also go further and repair
bad metadata:

. text metadata that has a bad checksum
. text metadata that is not parsable
. corrupt mda_header checksum and version fields

(To keep a clean diff, #if 0 is added around functions that
are replaced by new code.  These commented functions are
removed by the following commit.)
2019-06-07 15:54:04 -05:00
Zdenek Kabelac
fdd76da33d cov: drop uneeded header files 2018-10-15 17:49:44 +02:00
David Teigland
117160b27e Remove lvmetad
Native disk scanning is now both reduced and
async/parallel, which makes it comparable in
performance (and often faster) when compared
to lvm using lvmetad.

Autoactivation now uses local temp files to record
online PVs, and no longer requires lvmetad.

There should be no apparent command-level change
in behavior.
2018-07-11 11:26:42 -05:00
Zdenek Kabelac
12213445b5 vgchange: vdo support
Support vgchange usage with VDO segtype.
Also changing extent size need small update for vdo virtual extent.

TODO: API needs enhancements so it's not about adding ifs() everywhere.
2018-07-09 15:29:16 +02:00
David Teigland
981a3ba98e Clean up repair and result values in vg_read
Fix the confusing mix of input and output values
in the single variable.
2018-06-12 11:08:26 -05:00
David Teigland
9a8c36b891 Fix use of orphan lock in commands
vgreduce, vgremove and vgcfgrestore were acquiring
the orphan lock in the midst of command processing
instead of at the start of the command.  (The orphan
lock moved to being acquired at the start of the
command back when pvcreate/vgcreate/vgextend were
reworked based on pvcreate_each_device.)

vgsplit also needed a small update to avoid reacquiring
a VG lock that it already held (for the new VG name).
2018-06-12 09:46:11 -05:00
David Teigland
73b7e6fde7 Remove more code that was only used by liblvm2app 2018-06-08 09:29:11 -05:00
David Teigland
3e781ea446 Remove clvmd and associated code
More code reduction and simplification can follow.
2018-06-05 11:09:13 -05:00
David Teigland
b6f0f20da2 lvmlockd: primarily use vg_is_shared
to check if a vg uses an lvmlockd lock_type,
instead of the equivalent but longer is_lockd_type.
2018-06-01 13:15:22 -05:00
Joe Thornber
7f97c7ea9a build: Don't generate symlinks in include/ dir
As we start refactoring the code to break dependencies (see doc/refactoring.txt),
I want us to use full paths in the includes (eg, #include "base/data-struct/list.h").
This makes it more obvious when we're breaking abstraction boundaries, eg, including a file in
metadata/ from base/
2018-05-14 10:30:20 +01:00
David Teigland
c1cd18f21e Remove lvm1 and pool disk formats
There are likely more bits of code that can be removed,
e.g. lvm1/pool-specific bits of code that were identified
using FMT flags.

The vgconvert command can likely be reduced further.

The lvm1-specific config settings should probably have
some other fields set for proper deprecation.
2018-04-30 16:55:02 -05:00
David Teigland
1fec86571f clvmd: reuse a vg struct for sequential LV operations
After reading a VG, stash it in lvmcache as "saved_vg".
Before reading the VG again, try to use the saved_vg.
The saved_vg is dropped on VG lock operations.
2018-04-25 16:39:43 -05:00
David Teigland
d9a77e8bb4 lvmcache: simplify metadata cache
The copy of VG metadata stored in lvmcache was not being used
in general.  It pretended to be a generic VG metadata cache,
but was not being used except for clvmd activation.  There
it was used to avoid reading from disk while devices were
suspended, i.e. in resume.

This removes the code that attempted to make this look
like a generic metadata cache, and replaces with with
something narrowly targetted to what it's actually used for.

This is a way of passing the VG from suspend to resume in
clvmd.  Since in the case of clvmd one caller can't simply
pass the same VG to both suspend and resume, suspend needs
to stash the VG somewhere that resume can grab it from.
(resume doesn't want to read it from disk since devices
are suspended.)  The lvmcache vginfo struct is used as a
convenient place to stash the VG to pass it from suspend
to resume, even though it isn't related to the lvmcache
or vginfo.  These suspended_vg* vginfo fields should
not be used or touched anywhere else, they are only to
be used for passing the VG data from suspend to resume
in clvmd.  The VG data being passed between suspend and
resume is never modified, and will only exist in the
brief period between suspend and resume in clvmd.

suspend has both old (current) and new (precommitted)
copies of the VG metadata.  It stashes both of these in
the vginfo prior to suspending devices.  When vg_commit
is successful, it sets a flag in vginfo as before,
signaling the transition from old to new metadata.

resume grabs the VG stashed by suspend.  If the vg_commit
happened, it grabs the new VG, and if the vg_commit didn't
happen it grabs the old VG.  The VG is then used to resume
LVs.

This isolates clvmd-specific code and usage from the
normal lvm vg_read code, making the code simpler and
the behavior easier to verify.

Sequence of operations:

- lv_suspend() has both vg_old and vg_new
  and stashes a copy of each onto the vginfo:
  lvmcache_save_suspended_vg(vg_old);
  lvmcache_save_suspended_vg(vg_new);

- vg_commit() happens, which causes all clvmd
  instances to call lvmcache_commit_metadata(vg).
  A flag is set in the vginfo indicating the
  transition from the old to new VG:
  vginfo->suspended_vg_committed = 1;

- lv_resume() needs either vg_old or vg_new
  to use in resuming LVs.  It doesn't want to
  read the VG from disk since devices are
  suspended, so it gets the VG stashed by
  lv_suspend:
  vg = lvmcache_get_suspended_vg(vgid);

If the vg_commit did not happen, suspended_vg_committed
will not be set, and in this case, lvmcache_get_suspended_vg()
will return the old VG instead of the new VG, and it will
resume LVs based on the old metadata.
2018-04-20 11:22:45 -05:00
Alasdair G Kergon
00acae12a4 metadata: Remove unused vg.cft_precommitted
The precommitted metadata config_tree is now only referenced from a
single function so just use a local variable instead.
2017-11-14 01:22:09 +00:00
Alasdair G Kergon
6bf0f04ae2 log: Improve various device-related messages
- Use 'lvmcache' consistently instead of 'metadata cache'
- Always use 5 characters for source line number
- Remember to convert uuids into printable form
- Use <no name> rather than (null) when VG has no name.
2017-11-13 19:45:33 +00:00
Alasdair G Kergon
aed8bc8ae7 macros: Use is_power_of_2. 2016-06-30 17:59:44 +01:00
David Teigland
a7c45ddc59 lvmetad: two phase vg_update
Previously, a command sent lvmetad new VG metadata in vg_commit().
In vg_commit(), devices are suspended, so any memory allocation
done by the command while sending to lvmetad, or by lvmetad while
updating its cache could deadlock if memory reclaim was triggered.

Now lvmetad is updated in unlock_vg(), after devices are resumed.
The new method for updating VG metadata in lvmetad is in two phases:

1. In vg_write(), before devices are suspended, the command sends
   lvmetad a short message ("set_vg_info") telling it what the new
   VG seqno will be.  lvmetad sees that the seqno is newer than
   the seqno of its cached VG, so it sets the INVALID flag for the
   cached VG.  If sending the message to lvmetad fails, the command
   fails before the metadata is committed and the change is not made.
   If sending the message succeeds, vg_commit() is called.

2. In unlock_vg(), after devices are resumed, the command sends
   lvmetad the standard vg_update message with the new metadata.
   lvmetad sees that the seqno in the new metadata matches the
   seqno it saved from set_vg_info, and knows it has the latest
   copy, so it clears the INVALID flag for the cached VG.

If a command fails between 1 and 2 (after committing the VG on disk,
but before sending lvmetad the new metadata), the cached VG retains
the INVALID flag in lvmetad.  A subsequent command will read the
cached VG from lvmetad, see the INVALID flag, ignore the cached
copy, read the VG from disk instead, update the lvmetad copy
with the latest copy from disk, (this clears the INVALID flag
in lvmetad), and use the correct VG metadata for the command.

(This INVALID mechanism already existed for use by lvmlockd.)
2016-06-28 02:30:31 +01:00
Peter Rajnoha
f833a6d074 metadata: add historical_glv_remove 2016-03-03 13:50:57 +01:00
Peter Rajnoha
e573eca554 metadata: add infrastructure to track LV history
Add new structures and new fields in existing structures to support
tracking history of LVs (the LVs which don't exist - the have been
removed already):

  - new "struct historical_logical_volume"
    This structure keeps information specific to historical LVs
    (historical LV is very reduced form of struct logical_volume +
     it contains a few specific fields to track historical LV
     properties like removal time and connections among other LVs).

  - new "struct generic_logical_volume"
    Wrapper for "struct historical_logical_volume" and
    "struct logical_volume" to make it possible to handle volumes
    in uniform way, no matter if it's live or historical one.

  - new "struct glv_list"
    Wrapper for "struct generic_logical_volume" so it can be
    added to a list.

  - new "indirect_glvs" field in "struct logical_volume"
    List that stores references to all indirect users of this LV - this
    interconnects live LV with historical descendant LVs or even live
    descendant LVs.

  - new "indirect_origin" field in "struct lv_segment"
    Reference to indirect origin of this segment - this interconnects
    live LV (segment) with historical ancestor.

  - new "this_glv" field in "struct logical_volume"
    This references an existing generic_logical_volume wrapper for this
    LV, if used. It can be NULL if not needed - which means we're not
    handling historical LVs at all.

  - new "historical_lvs" field in "struct volume group
    List of all historical LVs read from VG metadata.
2016-03-03 11:26:51 +01:00
David Teigland
5e5ad77f5f vg_write: add list of pvs to write
The vg->pv_write_list contains pv_list structs for which
vg_write() should call pv_write().

The new list will replace vg->pvs_to_write that contains
vg_to_create structs which are used to perform higher-level
pvcreate-related operations. The higher level pvcreate
operations will be moved out of vg_write() to higher levels.
2016-02-25 09:14:09 -06:00
Peter Rajnoha
4361543f3e refactor: rename struct pv_to_create --> struct pv_to_write
We'll use this struct in subsequent patches for PVs which should
be rewritten, not just created. So rename struct pv_to_create to
struct pv_to_write for clarity.
2016-02-15 12:44:45 +01:00
Zdenek Kabelac
032cf8ade6 cleanup: relocate function to vg.c 2016-02-11 18:35:06 +01:00
Zdenek Kabelac
fcbef05aae doc: change fsf address
Hmm rpmlint suggest fsf is using a different address these days,
so lets keep it up-to-date
2016-01-21 12:11:37 +01:00
Zdenek Kabelac
d9faf85987 cleanup: rename vg_ondisk to vg_committed
Unifying terminology.

Since all the metadata in-use are ALWAYS on disk - switch
to terminology  committed and precommitted.

Patch has no functional change inside.
2015-11-25 11:11:21 +01:00
Zdenek Kabelac
55a9262bdb cleanup: unused header files (Coverity) 2015-08-18 15:00:08 +02:00
David Teigland
fe70b03de2 Add lvmlockd 2015-07-02 15:42:26 -05:00
Petr Rockai
611c8b6d29 metadata: Add pvs_outdated to struct volume_group.
This is a list of PVs that should have their MDAs wiped because they carry
outdated metadata (that used to belong to the VG they are attached to).
2015-05-20 19:46:14 +02:00
Peter Rajnoha
8759f7d755 metadata: vg: add removed_lvs field to collect LVs which have been removed
Do not keep dangling LVs if they're removed from the vg->lvs list and
move them to vg->removed_lvs instead (this is actually similar to already
existing vg->removed_pvs list, just it's for LVs now).

Once we have this vg->removed_lvs list indexed so it's possible to
do lookups for LVs quickly, we can remove the LV_REMOVED flag as
that one won't be needed anymore - instead of checking the flag,
we can directly check the vg->removed_lvs list if the LV is present
there or not and to say if the LV is removed or not then. For now,
we don't have this index, but it may be implemented in the future.
2015-03-24 08:43:08 +01:00
David Teigland
c6a57dc4f3 Revert "systemid: Add ACCESS_NEEDS_SYSTEM_ID VG flag."
This reverts commit bfbb5d269a.

This will be done differently.
2015-03-05 09:50:43 -06:00
Alasdair G Kergon
bfbb5d269a systemid: Add ACCESS_NEEDS_SYSTEM_ID VG flag.
Set ACCESS_NEEDS_SYSTEM_ID VG status flag whenever there is
a non-lvm1 system_id set.  Prevents concurrent access from
older LVM2 versions.
Not set on VGs that bear a system_id only due to conversion
from lvm1 metadata.
2015-03-04 01:16:32 +00:00
Alasdair G Kergon
3562b5ab39 systemid: Init and merge lvm2 and lvm1 fields.
Use system_id field in preference to lvm1_system_id.
Initialise both for now.
2015-03-04 01:00:51 +00:00
Peter Rajnoha
1a41e649a6 metadata: vg: alloc lvm1_system_id in alloc_vg sooner 2015-03-02 13:00:45 +01:00
Peter Rajnoha
eeaf3f2e88 metadata: vg: add missing vg->lvm1_system_id initialization
The vg->lvm1_systemd_id needs to be initialized as all the code around
counts with that. Just like we initialize lvm1_system_id in vg_create
(no matter if it's actually LVM1 or LVM2 format), this patch adds this
init in alloc_vg as well so the rest of the code does not segfaul
 when trying to access vg->lvm1_system_id.
2015-03-02 12:17:27 +01:00
David Teigland
c32efc7f7e system_id: apply consistent naming
In log messages refer to it as system ID (not System ID).

Do not put quotes around the system_id string when printing.

On the command line use systemid.

In code, metadata, and config files use system_id.

In lvmsystemid refer to the concept/entity as system_id.
2015-02-27 13:32:00 -06:00
Alasdair G Kergon
df227be37c lvm1: Reenable sys ID.
Move the lvm1 sys ID into vg->lvm1_system_id and reenable the #if 0
LVM1 code.  Still display the new-style system ID in the same
reporting field, though, as only one can be set.
Add a format feature flag FMT_SYSTEM_ON_PVS for LVM1 and disallow
access to LVM1 VGs if a new-style system ID has been set.
Treat the new vg->system_id as const.
2015-02-23 23:03:52 +00:00
David Teigland
8cdec4c434 system_id: use for VG ownership
See included lvmsystemid(7) for full description.
2015-02-13 10:10:27 -06:00
Alasdair G Kergon
9a5910bdf9 pre-release 2014-11-11 14:13:00 +00:00
Alasdair G Kergon
5e6e2d6b1b vgcreate: Permit non-power-of-2 extent sizes.
Relax validation to permit extent sizes > 128KB that are not powers of 2
with lvm2 format.  Existing code was already capable of handling this.
2014-10-14 18:12:15 +01:00
Zdenek Kabelac
98414ca7dd vgchange: support clustered conversion for active lv
If we want to support conversion of VG to clustered type,
we currently need to relock active LV to get proper DLM lock.

So add extra loop after change of VG clustered attribute
to exlusively activate all active top level LVs.

When doing change -cy -> -cn  we should validate LVs are not
active on other cluster nodes - we could be sure about this only
when with local exclusive activation - for other types
we require user to deactivate volumes first.

As a workaround for this limitation there is always
locking_type = 0 which amongs other skip the detection
of active LVs.

FIXME:
 clvmd should handle looks for cluster locking type all the time.
2014-09-17 14:41:42 +02:00
Zdenek Kabelac
4a853361b0 vgchange: disable cluster convert for active LVs
While we could probably reacquire some type of lock when
going from non-clustered to clustered vg, we don't have any
single road back to drop the lock and keep LV active.

For now keep it safe and prohibit conversion when LV
is active in the VG.
2014-09-16 11:42:41 +02:00
Zdenek Kabelac
090e81281f lvmetad: more reuse precommit buffer
This patch moves more allocation to vg_write
(as started in 8c878438f5)
TODO: relocate also communication.
(in-release update)
2014-03-01 14:08:58 +01:00
Zdenek Kabelac
8c878438f5 metadata: move vg parsing to vg_write
Parsing vg structure during  supend/commit/resume may require a lot of
memory - so move this into vg_write.

FIXME: there are now multiple cache layers which our doing some thing
multiple times at different levels. Moreover there is now different
caching path with and without lvmetad - this should be unified
and both path should use same mechanism.
2014-02-24 21:08:53 +01:00
Tony Asleson
5074dcc896 metadata.c: Call refactored vgreduce_single
Replace the code with the refactored vgreduce_single instead
of calling its own implementation.

Corrects bug: https://bugzilla.redhat.com/show_bug.cgi?id=989174

Signed-off-by: Tony Asleson <tasleson@redhat.com>
2013-11-19 14:40:30 -06:00