1
0
mirror of git://sourceware.org/git/lvm2.git synced 2024-12-22 17:35:59 +03:00
Commit Graph

2788 Commits

Author SHA1 Message Date
David Teigland
09bc2d0fd1 devices: clean up block size functions
Replace calls to the old dev_get_block_size function
with calls to the new dev_get_direct_block_size function,
and remove the old function.
2019-08-07 11:48:10 -05:00
David Teigland
0404539edb vgcreate/vgextend: restrict PVs with mixed block sizes
Avoid having PVs with different logical block sizes in the same VG.
This prevents LVs from having mixed block sizes, which can produce
file system errors.

The new config setting devices/allow_mixed_block_sizes (default 0)
can be changed to 1 to return to the unrestricted mode.
2019-08-01 10:06:47 -05:00
David Teigland
f17353e3e6 md component detection for differing PV and device sizes
This check was mistakenly removed when shifting code in commit
"separate code for setting devices from metadata parsing".

Put it back with some new conditions.
2019-07-09 13:40:41 -05:00
David Teigland
b4402bd821 exported vg handling
The exported VG checking/enforcement was scattered and
inconsistent.  This centralizes it and makes it consistent,
following the existing approach for foreign and shared
VGs/PVs, which are very similar to exported VGs/PVs.

The access policy that now applies to foreign/shared/exported
VGs/PVs, is that if a foreign/shared/exported VG/PV is named
on the command line (i.e. explicitly requested by the user),
and the command is not permitted to operate on it because it
is foreign/shared/exported, then an access error is reported
and the command exits with an error.  But, if the command is
processing all VGs/PVs, and happens to come across a
foreign/shared/exported VG/PV (that is not explicitly named on
the command line), then the command silently skips it and does
not produce an error.

A command using tags or --select handles inaccessible VGs/PVs
the same way as a command processing all VGs/PVs, and will
not report/return errors if these inaccessible VGs/PVs exist.

The new policy fixes the exit codes on a somewhat random set of
commands that previously exited with an error if they were
looking at all VGs/PVs and an exported VG existed on the system.

There should be no change to which commands are allowed/disallowed
on exported VGs/PVs.

Certain LV commands (lvs/lvdisplay/lvscan) would previously not
display LVs from an exported VG (for unknown reasons).  This has
not changed.  The lvm fullreport command would previously report
info about an exported VG but not about the LVs in it.  This
has changed to include all info from the exported VG.
2019-06-25 15:39:08 -05:00
David Teigland
d16142f90f scanning: open devs rw when rescanning for write
When vg_read rescans devices with the intention of
writing the VG, the label rescan can open the devs
RW so they do not need to be closed and reopened
RW in dev_write_bytes.
2019-06-21 10:57:49 -05:00
David Teigland
8fecd9c14e metadata: include description with command in metadata areas
Previously the VG metadata description field (which contains
the command line) was only included in backup/archive copies
of the metadata.  Now also include it in the metadata written
to the metadata areas.
2019-06-20 16:09:05 -05:00
David Teigland
4bb7d3da0e lvmcache: remove wrapper around lvmcache_get_vgnameids
This was left over from when there was an lvmetad
version of the function.
2019-06-11 14:10:14 -05:00
David Teigland
550536474f vgsplit: simplify vg creation
The way that this command now uses the global lock
followed by a label scan, it can simply check if the
new VG name exists, and if not lock it and create it.
2019-06-10 10:38:32 -05:00
David Teigland
a3a676e0e7 metadata.c: removed unused code
if 0 was placed around old vg_read code by
the previous commit.
2019-06-07 15:54:04 -05:00
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
David Teigland
015b906069 add a warning message when updating old metadata
in an mda that had previously not been updated
2019-06-07 15:54:04 -05:00
David Teigland
47effdc025 vgck --updatemetadata is a new command
uses vg_write to correct more common or less severe issues,
and also adds the ability to repair some metadata corruption
that couldn't be handled previously.
2019-06-07 15:54:04 -05:00
David Teigland
de3d3b11f4 move pv header repairs to vg_write
Correct PV header in-use or version fields
from vg_write instead of vg_read.
2019-06-07 15:54:04 -05:00
David Teigland
ab61a6d85d move wipe_outdated_pvs to vg_write
and implement it based on a device, not based
on a pv struct (which is not available when the
device is not a part of the vg.)

currently only the vgremove command wipes outdated
pvs until more advanced recovery is added in a
subsequent commit
2019-06-07 15:54:04 -05:00
David Teigland
45b164f62c create separate lvmcache update functions for read and write
The vg read and vg write cases need to update lvmcache
differently, so create separate functions for them.

The read case now handles checking for outdated mdas
and moves them aside into a new list to be repaired in
a subsequent commit.
2019-06-07 15:54:04 -05:00
David Teigland
027e0e92e6 fix vg_commit return value
The existing comment was desribing the correct behavior,
but the code didn't match.  The commit is successful if
one mda was committed.  Making it depend on the result of
the internal lvmcache update was wrong.
2019-06-07 15:54:04 -05:00
David Teigland
650524b955 ability to keep track of bad mdas in lvmcache
mda's that cannot be processed by lvm because of
some corruption can be kept on a separate list.
These will be used for more advanced repair in a
subsequent commit.
2019-06-07 15:54:04 -05:00
David Teigland
aeafdc1f45 add flags to keep track of bad metadata
When reading metadata headers and text, use a new set
of flags to identify specific errors that are seen.
These will be used for more advanced repair in a
subsequent commit.
2019-06-07 15:54:04 -05:00
David Teigland
2b241eb1f6 pvck: use new dump routines for old output
Use the recently added dump routines to produce the
old/traditional pvck output, and remove the code that
had been used for that.

The validation/checking done by the new routines means
that new lines prefixed with CHECK are printed for
incorrect values.
2019-06-05 16:28:52 -05:00
Zdenek Kabelac
e3c4ab0cc7 cache: support no_discard_passdown
Recent kernel version from kernel commit:
de7180ff908b2bc0342e832dbdaa9a5f1ecaa33a
started to report in cache status line new flag:
no_discard_passdown

Whenever lvm spots unknown status it reports:
Unknown feature in status:

So add reconginzing this feature flag and also report this with

'lvs -o+kernel_discards'

When no_discard_passdown is found in status 'nopassdown' gets reported
for this field  (roughly matching what we report for thin-pools).
2019-06-05 15:48:41 +02:00
David Teigland
645dd27604 separate code for setting devices from metadata parsing
Pull the code that sets devs for PVs out of the metadata
parsing code and call it separately.
2019-05-23 11:57:38 -05:00
Zdenek Kabelac
d60d59a5f3 cleanup: use unsigned type 2019-05-03 13:17:22 +02:00
David Teigland
8c87dda195 locking: unify global lock for flock and lockd
There have been two file locks used to protect lvm
"global state": "ORPHANS" and "GLOBAL".

Commands that used the ORPHAN flock in exclusive mode:
  pvcreate, pvremove, vgcreate, vgextend, vgremove,
  vgcfgrestore

Commands that used the ORPHAN flock in shared mode:
  vgimportclone, pvs, pvscan, pvresize, pvmove,
  pvdisplay, pvchange, fullreport

Commands that used the GLOBAL flock in exclusive mode:
  pvchange, pvscan, vgimportclone, vgscan

Commands that used the GLOBAL flock in shared mode:
  pvscan --cache, pvs

The ORPHAN lock covers the important cases of serializing
the use of orphan PVs.  It also partially covers the
reporting of orphan PVs (although not correctly as
explained below.)

The GLOBAL lock doesn't seem to have a clear purpose
(it may have eroded over time.)

Neither lock correctly protects the VG namespace, or
orphan PV properties.

To simplify and correct these issues, the two separate
flocks are combined into the one GLOBAL flock, and this flock
is used from the locking sites that are in place for the
lvmlockd global lock.

The logic behind the lvmlockd (distributed) global lock is
that any command that changes "global state" needs to take
the global lock in ex mode.  Global state in lvm is: the list
of VG names, the set of orphan PVs, and any properties of
orphan PVs.  Reading this global state can use the global lock
in sh mode to ensure it doesn't change while being reported.

The locking of global state now looks like:

lockd_global()
  previously named lockd_gl(), acquires the distributed
  global lock through lvmlockd.  This is unchanged.
  It serializes distributed lvm commands that are changing
  global state.  This is a no-op when lvmlockd is not in use.

lockf_global()
  acquires an flock on a local file.  It serializes local lvm
  commands that are changing global state.

lock_global()
  first calls lockf_global() to acquire the local flock for
  global state, and if this succeeds, it calls lockd_global()
  to acquire the distributed lock for global state.

Replace instances of lockd_gl() with lock_global(), so that the
existing sites for lvmlockd global state locking are now also
used for local file locking of global state.  Remove the previous
file locking calls lock_vol(GLOBAL) and lock_vol(ORPHAN).

The following commands which change global state are now
serialized with the exclusive global flock:

pvchange (of orphan), pvresize (of orphan), pvcreate, pvremove,
vgcreate, vgextend, vgremove, vgreduce, vgrename,
vgcfgrestore, vgimportclone, vgmerge, vgsplit

Commands that use a shared flock to read global state (and will
be serialized against the prior list) are those that use
process_each functions that are based on processing a list of
all VG names, or all PVs.  The list of all VGs or all PVs is
global state and the shared lock prevents those lists from
changing while the command is processing them.

The ORPHAN lock previously attempted to produce an accurate
listing of orphan PVs, but it was only acquired at the end of
the command during the fake vg_read of the fake orphan vg.
This is not when orphan PVs were determined; they were
determined by elimination beforehand by processing all real
VGs, and subtracting the PVs in the real VGs from the list
of all PVs that had been identified during the initial scan.
This is fixed by holding the single global lock in shared mode
while processing all VGs to determine the list of orphan PVs.
2019-04-29 13:01:05 -05:00
David Teigland
ccd1386070 wipe_lv: initially open LV in writable mode
wipe_lv knows it's going to write the device, so it
can open rw from the start.  It was opening readonly,
and then dev_write needed to reopen it readwrite.
2019-04-26 14:49:27 -05:00
David Teigland
c33770c02d lvmlockd: do not allow mirror LV to be activated shared
This reverts 518a8e8cfb
  "lvmlockd: activate mirror LVs in shared mode with cmirrord"

because while activating a mirror LV with cmirrord worked,
changes to the active cmirror did not work.
2019-04-04 13:21:38 -05:00
Zdenek Kabelac
fcec6691f0 thin: fix maintenance of _pmspare
When metadata grows lvm2 may need to extend also _pmspare volume.
2019-04-03 13:28:54 +02:00
Zdenek Kabelac
e27d027155 thin: resize metadata with data
When data are growing, adapt also size of metadata.
As we get way too many reports from users doing huge growths of
data portion while keep metadata small and avoiding using monitoring.

So to enhance the user-experience in case user requests grown of
thin-pool (without passing PV list for growth) - lvm2 will automaticaly
grown also the metadata part of thin-pool (if possible).
2019-04-03 13:28:22 +02:00
Zdenek Kabelac
7c3de2fd93 thin: introduce estimate_thin_pool_metadata_size
Add function for estimation of thin-pool metadata size for given size of
data. Function is using already existing internal API so it can
be reused for resize of thin-pool data.
2019-04-03 13:27:17 +02:00
David Teigland
85e68a8333 lvextend: refresh shared LV remotely using dlm/corosync
When lvextend extends an LV that is active with a shared
lock, use this as a signal that other hosts may also have
the LV active, with gfs2 mounted, and should have the LV
refreshed to reflect the new size.  Use the libdlmcontrol
run api, which uses dlm_controld/corosync to run an
lvchange --refresh command on other cluster nodes.
2019-03-21 12:38:20 -05:00
David Teigland
d369de8399 lvextend: allow on LV active with a shared lock
Detect when a shared lock exists, don't require the
normal exclusive lock, and allow the lvextend.
2019-03-21 12:38:20 -05:00
Zdenek Kabelac
677aa84be3 vdo: enable caching for vdopool LV and vdo LV
Allow using caching with VDO.
User can either cache a single vdopool or
a vdo LV - difference when the caching is put-in depends on a use-case
and it's upto user to decide which kind of speed is expected.
2019-03-20 14:38:31 +01:00
Zdenek Kabelac
0db22c5f81 lv_manip: insert remove layer skips pools
Fixing renaming of subLVs when removing and inserting layers - this
got visible when using stacked VDO pools.
2019-03-20 14:38:05 +01:00
Zdenek Kabelac
1cc690e911 thin: max thin 2019-03-20 14:37:44 +01:00
David Teigland
4e20ebd6a1 pvscan: ignore online for shared and foreign PVs
Activation would not be allowed anyway, but we can
check for these cases early and avoid wasted time in
pvscan managing online files an attempting activation.
2019-03-05 15:19:05 -06:00
David Teigland
a9eaab6beb Use "cachevol" to refer to cache on a single LV
and "cachepool" to refer to a cache on a cache pool object.

The problem was that the --cachepool option was being used
to refer to both a cache pool object, and to a standard LV
used for caching.  This could be somewhat confusing, and it
made it less clear when each kind would be used.  By
separating them, it's clear when a cachepool or a cachevol
should be used.

Previously:

- lvm would use the cache pool approach when the user passed
  a cache-pool LV to the --cachepool option.

- lvm would use the cache vol approach when the user passed
  a standard LV in the --cachepool option.

Now:

- lvm will always use the cache pool approach when the user
  uses the --cachepool option.

- lvm will always use the cache vol approach when the user
  uses the --cachevol option.
2019-02-27 08:52:34 -06:00
Zdenek Kabelac
d19e372795 cleanup: indent 2019-01-28 22:39:10 +01:00
Zdenek Kabelac
78dd9d820d thin: select chunk size as power of 2
Whenever thin-pool chunk size is unspecified and left for lvm calculation
try to select the size as nearest highest power-of-2 instead of
just being a multiple of 64KiB.
2019-01-28 22:17:25 +01:00
Zdenek Kabelac
58ad831c72 cache: select chunk size as power of 2
When cache chunk size is not configured, and left for lvm deduction,
select the value which is power-of-2.
2019-01-28 22:17:14 +01:00
Zdenek Kabelac
105a8edea1 lv_manip: better work with PERCENT_VG modifier with lvresize
Fixing recent commit 022ebb0cfe
Resize already has size that needs to be counted with,
otherwise upsizing operation could turn into size reduction one.
2019-01-21 15:39:24 +01:00
Zdenek Kabelac
f3c52a515b vdo: enable dmeventd resize 2019-01-21 12:53:16 +01:00
Zdenek Kabelac
a16d914d34 cleanup: better naming 2019-01-21 12:53:16 +01:00
Zdenek Kabelac
08cabe9b83 vdo: allow resize of VDO and VDO pool volumes
Now with newer VDO kvdo target we can start to use standard mechanism
to enable resize of VDO volumes.

VDO pool can be grown.

Virtual volume grows on top of VDO pool when is not big enough.
Reduced VDOLV is calling discard for reduced areas - this can
take long time!

TODO: implement some pollable mechanism for out-of-lock TRIM.
2019-01-21 12:53:16 +01:00
Zdenek Kabelac
bd6709cec6 vdo: size reduction requires VDO to be active
To be able to send discard to reduced areas - the VDO LV needs to
be active.
2019-01-21 12:53:16 +01:00
Zdenek Kabelac
f1ad4b0679 vdo: discard reduced area
Implement sending discard to reduced LV area.
2019-01-21 12:53:16 +01:00
Zdenek Kabelac
ca72d19691 vdo: estimate virtual size after resize 2019-01-21 12:53:16 +01:00
Zdenek Kabelac
ab031d673d vdo: introduce function for estimation of virtual size 2019-01-21 12:53:16 +01:00
Zdenek Kabelac
022ebb0cfe lv_manip: better work with PERCENT_VG modifier
When using 'lvcreate -l100%VG' and there is big disproportion between
real available space and requested setting - automatically fallback
to 100%FREE.

Difference can be seen when VG is big and already most space was
allocated, so the requestion 100%VG can end (and by spec for % modifier
it's correct) as LV with size of 1%VG.  Usually this is not a big
problem - buit in some cases - like cache-pool allocation, this
can result a big difference for chunksize selection.

With this patch it's more closely match common-sense logic without
the need of reitteration of too big changes in lvm2 core ATM.

TODO: in the future there should be allocator solving all allocations
in a single call.
2019-01-21 12:53:15 +01:00
Zdenek Kabelac
26ead4bf45 cov: extent_size cannot be 0
Make this obvious to coverity.
2018-12-21 21:45:08 +01:00
Zdenek Kabelac
9dfb1a11b7 cov: drop unneeded header file
MAX macro no longer needed in pe_align.
2018-12-21 21:45:08 +01:00
Zdenek Kabelac
3320ab8334 lib: move towards v2 version of VDO format
Drop very old original format of VDO target and focus on V2 version.
So some variables were renamed or replaced.
There is no compatibility preserved (with assumption so far this is
experimental feature and there is no real user).

Note - version currently VDO calls this version 6.2.
2018-12-20 13:26:55 +01:00