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We have to use empty list, not NULL if we want to denote that the list
has no items. Otherwise, the code further can segfault as it expects
there's always a sane value (= some list), including empty list,
but never NULL.
Use helper macros to handle reserved values and also define "undefined"
reserved value as:
FIELD_RESERVED_VALUE(cache_policy, cache_policy_undef, "", "", "undefined")
Which means:
- print "" if the cache_policy value is undefined (the first name for this reserved value is "")
- recognize "undefined" reserved name as synonym to ""
(so statements like "lvs -S cache_policy=undefined" are still recognized)
Avoid making a copy of the keyword which is already registered in
values.h for "unmanaged" (vg_mda_copies field) and "auto" reserved
value (lv_read_ahead field). Also use helper macros to handle these
reserved - this is the correct approach - just do not copy the same
thing again and do not mix it! The GET_FIELD_RESERVED_VALUE and
GET_FIRST_RESERVED_NAME macros guarantees this - use it!
In addition to that, rename reserved values:
vg_mda_copies --> vg_mda_copies_unmanaged
lv_read_ahead --> lv_read_ahead_auto
So the field reserved values follows this scheme:
"<field_name>_<reserved_value_name>".
The same applies for type reserved values with this scheme:
"<report type name in lowercase>_<reserved_value_name>"
Add a comment about this scheme for others to follow as well
when adding new fields and their reserved values. This makes
it a bit easier to read the code then.
RESERVED(id) --> GET_TYPE_RESERVED_VALUE(id)
FIRST_NAME(id) --> GET_FIRST_RESERVED_NAME(id)
Also add GET_FIELD_RESERVED_VALUE(id) macro to get per-field reserved value.
This makes it much more readable and hopefully it'll make it
easier to use these helper macros when adding new reporting
fields with reserved values if needed.
The cache policy name taken as LV segment property must be duped
for report as the VG/LV/seg structure is destroyed after processing,
reporting happens later:
$ valgrind lvs -o+cache_policy
...
==16589== Invalid read of size 1
==16589== at 0x54ABCC3: dm_report_compact_fields
(libdm-report.c:1739)
==16589== by 0x153FC7: _report (reporter.c:619)
==16589== by 0x1540A6: lvs (reporter.c:641)
==16589== by 0x148021: lvm_run_command (lvmcmdline.c:1452)
==16589== by 0x1495CB: lvm2_main (lvmcmdline.c:1907)
==16589== by 0x164712: main (lvm.c:21)
==16589== Address 0x7d465f2 is 8,338 bytes inside a block of size
16,384 free'd
==16589== at 0x4C2ACE9: free (in
/usr/lib64/valgrind/vgpreload_memcheck-amd64-linux.so)
==16589== by 0x54B8C85: _free_chunk (pool-fast.c:318)
==16589== by 0x54B84FB: dm_pool_destroy (pool-fast.c:78)
==16589== by 0x1E59C7: _free_vg (vg.c:78)
==16589== by 0x1E5A6D: release_vg (vg.c:95)
==16589== by 0x159B6E: _process_lv_vgnameid_list (toollib.c:1967)
==16589== by 0x159DD7: process_each_lv (toollib.c:2030)
==16589== by 0x153ED8: _report (reporter.c:598)
==16589== by 0x1540A6: lvs (reporter.c:641)
==16589== by 0x148021: lvm_run_command (lvmcmdline.c:1452)
==16589== by 0x1495CB: lvm2_main (lvmcmdline.c:1907)
==16589== by 0x164712: main (lvm.c:21)
We only checked global per-report-type reserved values for compatibility
with selection code. This patch also adds a check for per-report-field
reserved values. This avoids problems where unsupported report type is
used as reserved value which could cause hard to debug problems
otherwise. So this additional check stops from registering unsupported
and unhandled per-field reserved values.
Registerting such unsupported reserved value is a programmatic error,
so report internal error in this case to stop us from making a mistake
here in the future or even today where STR_LIST fields can't have
reserved values yet.
The {pv,vg,lv}display *do* use reporting in case "-C|--columns" is used.
The man page was correct, the recognition for the --binary was missing
in the code though!
The {pv,vg,lv}display commands don't use reporting capabilites and
as such they can't use --binary. This got into the man pages by
mistake - the display commands do not recognize --binary option.
All the LVM commands are run in mode without lvmetad use (since lvmetad
can't handle duplicates). When we're finished with vgimportclone, we
need to notify lvmetad about changes.
Before this patch (/dev/sda and /dev/sdb contains a copy VG called "vg"):
$ vgimportclone --basevgname vg_snap /dev/sdb
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: Activation disabled. No device-mapper interaction will be attempted.
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
Physical volume "/tmp/snap.zcJ8LCmj/vgimport0" changed 1 physical volume changed / 0 physical volumes not changed
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: Activation disabled. No device-mapper interaction will be attempted.
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
Volume group "vg" successfully changed
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
Volume group "vg" successfully renamed to "vg_snap"
Reading all physical volumes. This may take a while...
Found volume group "vg" using metadata type lvm2
Found volume group "fedora" using metadata type lvm2
$ vgs
VG #PV #LV #SN Attr VSize VFree
fedora 1 2 0 wz--n- 9.50g 0
vg 1 1 0 wz--n- 124.00m 120.00m
(...lvmetad doesn't see the new "vg_snap"!)
With this patch applied:
$ vgimportclone --basevgname vg_snap /dev/sdb
...
WARNING: lvmetad is running but disabled. Restart lvmetad before enabling it!
Volume group "vg" successfully renamed to "vg_snap"
Notifying lvmetad about changes since it was disabled temporarily.
Reading all physical volumes. This may take a while...
Found volume group "vg_snap" using metadata type lvm2
Found volume group "fedora" using metadata type lvm2
Found volume group "vg" using metadata type lvm2
$ vgs
VG #PV #LV #SN Attr VSize VFree
fedora 1 2 0 wz--n- 9.50g 0
vg 1 1 0 wz--n- 124.00m 120.00m
vg_snap 1 1 0 wz--n- 124.00m 120.00m
The "restart lvmetad before enabling it" message is a bit misleading
here - we should probably suppress this one, but we can't suppress
warning messages selectively at the moment and we don't want to lose
other warning/error messages printed...
With current dumpconfig, we can generate lvm.conf easily - we can merge
current lvm.conf with the config given on cmd line:
lvm dumpconfig --mergedconfig --config "..."
This is a bit simpler than using awk and it also avoids problems when some of
the configuration is missing in existing lvm.conf file and hardcoded defaults
are used instead. The dumpconfig handles this transparently.
Under certain circumstances, the selection code can segfault:
$ vgs --select 'pv_name=~/dev/sda' --unbuffered vg0
VG #PV #LV #SN Attr VSize VFree
vg0 6 3 0 wz--n- 744.00m 588.00m
Segmentation fault (core dumped)
The problem here is the use of --ubuffered together with regex used in
selection criteria. If the report output is not buffered, each row is
discarded as soon as it is reported. The bug is in the use of report
handle's memory - in the example above, what happens is:
1) report handle is initialized together with its memory pool
2) selection tree is initialized from selection criteria string
(using the report handle's memory pool!)
2a) this also means the regex is initialized from report handle's mem pool
3) the object (row) is reported
3a) any memory needed for output is intialized out of report handle's mem pool
3b) selection criteria matching is executed - if the regex is checked the
very first time (for the very first row reported), some more memory
allocation happens as regex allocates internal structures "on-demand",
it's allocating from report handle's mem pool (see also step 2a)
4) the report output is executed
5) the object (row) is discarded, meaning discarding all the mem pool
memory used since step 3.
Now, with step 5) we have discarded the regex internal structures from step 3b.
When we execute reporting for another object (row), we're using the same
selection criteria (step 3b), but tihs is second time we're using the regex
and as such, it's already initialized completely. But the regex is missing the
internal structures now as they got discarded in step 5) from previous
object (row) reporting (because we're using "unbuffered" reporting).
To resolve this issue and to prevent any similar future issues where each
object/row memory is discarded after output (the unbuffered reporting) while
selection tree is global for all the object/rows, use separate memory pool
for report's selection.
This patch replaces "struct selection_node *selection_root" in struct
dm_report with new struct selection which contains both "selection_root"
and "mem" for separate mem pool used for selection.
We can change struct dm_report this way as it is not exposed via libdevmapper.
(This patch will have even more meaning for upcoming patches where selection
is used even for non-reporting commands where "internal" reporting and
selection criteria matching happens and where the internal reporting is
not buffered.)
Fix incorrect test in configure which sets --enable-udev-systemd-background-jobs
automatically if proper systemd version is available.
The UDEV_SYSTEMD_BACKGROUND_JOBS variable was not properly set to "yes" in
case systemd is available and we had "maybe" for this variable before.
When we split leg from raid - we take a proper new lock for a new LV.
However for now activation checks only 'existince' of device UUID,
but it's not validating device has a proper name.
As a quick fix call suspend()/resume() to rename after split mirror.
Add new dm_report_compact_fields function to cause report outout
(dm_report_output) to ignore fields which don't have any value set
in any of the rows reported. This provides support for compact report
output where only fields which have something to report are displayed.
The dm_report_set_output_selection was not implemented in the end -
we have dm_report_init_with_selection instead. This is just a remnant
from development code that got into libdevmapper.h by mistake.
Free (and clear) h.protocol string on daemon_open() error paths
so it's OK for caller to skip calling daemon_close() if returned
h.socket_fd is -1.
Close h.socket_fd in daemon_close() to avoid possible leak.
https://bugzilla.redhat.com/1164234
The call to dm_config_destroy can derefence result->mem
while result is still NULL:
struct dm_config_tree *get_cachepolicy_params(struct cmd_context *cmd)
{
...
int ok = 0;
...
if (!(result = dm_config_flatten(current)))
goto_out;
...
ok = 1;
out:
if (!ok) {
dm_config_destroy(result)
...
}
...
}
Just call return 0 directly on error path, without using
"goto" - the code is short, no need to use it this way
(the dead code appeared as part of further changes in this
function).
When chunk size needs to be estimated, the code missed to round
to proper 64kb boundaries (or power of 2 for older thin pool driver).
So for some data and metadata size (i.e. 10GB and 4MB) it resulted
in incorrect chunk size (not being a multiple of 64KB)
Fix it by adding proper rounding and also use 1 routine for 2 places
where the same calculation is made.
Fix also incorrect printed warning that has used 'ffs()'
(which returns first 'least significant' bit in word)
and it was not really giving any useful size info and replace it
with properly estimated chunk size.