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Make the --filemap switch take no arguments and instead accept one
or more files on the command line to be mapped and placed into
groups.
This allows --filemap to be used with a glob:
# dmstats create --filemap *
rhel5.10-1.qcow2: Created new group with 87 region(s) as group ID 1564.
rhel5.10.qcow2: Created new group with 8 region(s) as group ID 1651.
rhel7.0-1.qcow2: Created new group with 11 region(s) as group ID 1659.
rhel7.0.qcow2: Created new group with 1454 region(s) as group ID 1670.
vm.img: Created new group with 2 region(s) as group ID 3124.
lvconvert --splitcache VG/CachePool_corig
Allow the split via the hidden/used cache pool for the time being,
since the new lvconvert code did intend to allow it, but was just
missing the exception in the list of hidden LVs that were allowed.
The preferred method for splitcache is to run it on the visible
cache LV, not the hidden cache pool. That may eventually become
the only method since we try to avoid running commands on
hidden LVs.
When a 'dmstats create --filemap' operation fails (e.g. during
open(2), close(2), or dm_stats_create_regions_from_fd()), use the
canonical version of the path. This avoids cryptic/confusing error
messages when symbolic links exist in the path argument given:
# findmnt /var/lib/libvirt/images -otarget,source
TARGET SOURCE
/var/lib/libvirt/images /dev/mapper/vg_hex-lv_images
# readlink /var/lib/libvirt/images/my.img
/boot/my.img
# dmstats create --filemap /var/lib/libvirt/images/my.img
Cannot map file: not a device-mapper device.
Could not create regions from file /var/lib/libvirt/images/my.img
Command failed
Using the canonical path the error is immediately obvious:
# dmstats create --filemap /var/lib/libvirt/images/my.img
Cannot map file: not a device-mapper device.
Could not create regions from file /boot/my.img
Command failed
Grouping is also useful in combination with --segments: creating a
group allows both individual segment data and data for the device
as a whole to be presented in the same report.
Support grouping for 'create --segments' in the same manner as for
'create --filemap'; group regions by default, applying an optional
alias specified with --alias, unless the user specifies --nogroup.
Add a new option to the create command to create regions that map the
extents of a file:
# dmstats create --filemap /path/to/file
/path/to/file: Created new group with 10 region(s) as group ID 0.
When performing a --filemap no device argument is required (and
supplying one results in error) since the device to bind to is implied
by the file path and is obtained directly from an fstat().
Grouping may be optionally disabled by the --nogroup switch: in this
case the command will report each region individually:
# dmstats create --nogroup --filemap /path/to/file
/path/to/file: Created new region with 1 area as region ID 0.
/path/to/file: Created new region with 1 area as region ID 1.
/path/to/file: Created new region with 1 area as region ID 2.
When grouping regions the group alias is automatically set to the
basename (as returned by dm_basename()) of the provided file.
This can be overridden to a user-defined value at the command line by
use of the --alias option.
If grouping is disabled no alias can be set.
Use of offset and subdivision options (--start, --length, --segments,
--areas, --areasize).
Setting aux_data and histograms for groups is possible but is not
currently implemented.
The code could perform this conversion but ironically
did not recognize the standard command form, only the
the unpreferred "implication-based" command form.
"lvconvert --type linear VG/RaidLV" would fail, but
"lvconvert --mirrors 0 VG/RaidLV" would succeed.
The code could perform this conversion but ironically
did not recognize the standard command form, only the
the unpreferred "implication-based" command form.
"lvconvert --type linear VG/MirrorLV" would fail, but
"lvconvert --mirrors 0 VG/MirrorLV" would succeed.
Make it clear that the "aux data" presented in reports is the user
data stored in the field (and does not include any library-internal
state such as group descriptors) by renaming the field to user_data
and changing the heading to "UserData".
Replace --statstype=area,region,group with a separate switch for
each object type: --area, --region, --group. Omitting any object
type switch will use the defaults for the current command (regions
and groups for list, and regions, groups and areas for verbose list).
Replace the 'name' field with 'statsname' in order to report alias
names for groups, and include the 'group_id' field between statsname
and the 'region_id' field to make it clear to the user when groups
are in use.
Walk avaiable groups and regions (in addition to areas) and report
aggregate statistics and properties.
A new switch is added to filter the type of obects inclued in the
report:
--statstype={all,area,region,group}
The type of the current row is also available in a new
DR_STATS_META field 'type'.
To allow the names used to describe statistics report objects to
change (for e.g to support groups and region and group aliases)
introduce a new "stats_name" field that evaluates to the correct
name for the object being reported.
Add a pair of commands to create and delete stats groups:
dmstats group --regions REGIONS
dmstats ungroup --groupid ID
REGIONS specifies a list of regions to be included in the group.
Regions are specified as a comma separated list in order of
increasing region ID. Ranges may be specified as a hypen separated
pair of values giving the first and last member of the range.
With a single report (--count=1) no timerfd is set up and the cycle
and current timestamps should be freed during the single call to
_update_interval_times().
Add new logic to identify each unique operation and route
it to the correct function to perform it. The functions
that perform the conversions remain unchanged.
This new code checks every allowed combination of LV type
and requested operation, and for each valid combination
calls the function that performs that conversion.
The first stage of option validation which checks for
incompatible combinations of command line options, is done
done before process_each is called. This is unchanged.
(This new code will allow that first stage validation to
be simplified in a future commit.)
The second stage of checking options against the specific
LV type is done by this new code. For each valid combination
of operation + LV type, the new code calls an existing
function that implements it.
With this in place, the ad hoc checks for valid combinations
of LV types and operations can be removed from the existing
code in a future commit.
(The #if 0 is used to keep the patch clean, and the
disabled code will be removed by a following patch.)
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.)
Simplify code around _do_get_report_selection - remove "expected_idxs[]"
argument which is superfluous and add "allow_single" switch instead to
allow for recognition of "--configreport <report_name> -S" as well as
single "-S" if needed.
Null pointer dereferences (FORWARD_NULL) /safe/guest2/covscan/LVM2.2.02.158/tools/reporter.c: 961 in _do_report_get_selection()
Null pointer dereferences (FORWARD_NULL) Dereferencing null pointer "single_args".
Uninitialized variables (UNINIT) /safe/guest2/covscan/LVM2.2.02.158/tools/toollib.c: 3520 in _process_pvs_in_vgs()
Uninitialized variables (UNINIT) Using uninitialized value "do_report_ret_code".
Null pointer dereferences (REVERSE_INULL) /safe/guest2/covscan/LVM2.2.02.158/libdm/libdm-report.c: 4745 in dm_report_output()
Null pointer dereferences (REVERSE_INULL) Null-checking "rh" suggests that it may be null, but it has already been dereferenced on all paths leading to the check.
Incorrect expression (MISSING_COMMA) /safe/guest2/covscan/LVM2.2.02.158/lib/log/log.c: 280 in _get_log_level_name()
Incorrect expression (MISSING_COMMA) In the initialization of "log_level_names", a suspicious concatenated string ""noticeinfo"" is produced.
Null pointer dereferences (FORWARD_NULL) /safe/guest2/covscan/LVM2.2.02.158/tools/reporter.c: 816 in_get_report_options()
Null pointer dereferences (FORWARD_NULL) Comparing "mem" to null implies that "mem" might be null.