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conf: Regenerate example.conf.
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@ -204,7 +204,7 @@ devices {
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# Configuration option devices/default_data_alignment.
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# Default alignment of the start of a PV data area in MB.
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# If set to 0, a value of 64KB will be used.
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# If set to 0, a value of 64KiB will be used.
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# Set to 1 for 1MiB, 2 for 2MiB, etc.
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# default_data_alignment = 1
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@ -222,7 +222,7 @@ devices {
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data_alignment_detection = 1
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# Configuration option devices/data_alignment.
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# Alignment of the start of a PV data area in KB.
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# Alignment of the start of a PV data area in KiB.
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# If a PV is placed directly on an md device and
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# md_chunk_alignment or data_alignment_detection are enabled,
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# then this setting is ignored. Otherwise, md_chunk_alignment
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@ -234,10 +234,10 @@ devices {
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# Detect PV data alignment offset based on sysfs device information.
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# The start of a PV aligned data area will be shifted by the
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# alignment_offset exposed in sysfs. This offset is often 0, but
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# may be non-zero. Certain 4KB sector drives that compensate for
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# may be non-zero. Certain 4KiB sector drives that compensate for
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# windows partitioning will have an alignment_offset of 3584 bytes
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# (sector 7 is the lowest aligned logical block, the 4KB sectors start
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# at LBA -1, and consequently sector 63 is aligned on a 4KB boundary).
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# (sector 7 is the lowest aligned logical block, the 4KiB sectors start
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# at LBA -1, and consequently sector 63 is aligned on a 4KiB boundary).
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# pvcreate --dataalignmentoffset will skip this detection.
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data_alignment_offset_detection = 1
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@ -282,9 +282,9 @@ devices {
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require_restorefile_with_uuid = 1
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# Configuration option devices/pv_min_size.
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# Minimum size (in KB) of block devices which can be used as PVs.
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# Minimum size in KiB of block devices which can be used as PVs.
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# In a clustered environment all nodes must use the same value.
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# Any value smaller than 512KB is ignored. The previous built-in
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# Any value smaller than 512KiB is ignored. The previous built-in
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# value was 512.
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pv_min_size = 2048
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@ -303,7 +303,7 @@ devices {
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}
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# Configuration section allocation.
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# How LVM selects free space for Logical Volumes.
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# How LVM selects space and applies properties to LVs.
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allocation {
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# Configuration option allocation/cling_tag_list.
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@ -348,7 +348,7 @@ allocation {
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# Look for and erase any signatures while zeroing a new LV.
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# Zeroing is controlled by the -Z/--zero option, and if not
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# specified, zeroing is used by default if possible.
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# Zeroing simply overwrites the first 4 KiB of a new LV
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# Zeroing simply overwrites the first 4KiB of a new LV
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# with zeroes and does no signature detection or wiping.
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# Signature wiping goes beyond zeroing and detects exact
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# types and positions of signatures within the whole LV.
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@ -374,17 +374,31 @@ allocation {
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# Cache pool metadata and data will always use different PVs.
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cache_pool_metadata_require_separate_pvs = 0
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# Configuration option allocation/cache_pool_cachemode.
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# The default cache mode used for new cache pools.
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# Configuration option allocation/cache_mode.
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# The default cache mode used for new cache.
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# Possible options are: writethrough, writeback.
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# writethrough - Data blocks are immediately written from
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# the cache to disk.
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# writeback - Data blocks are written from the cache back
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# to disk after some delay to improve performance.
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# cache_pool_cachemode = "writethrough"
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# This setting replaces allocation/cache_pool_cachemode.
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# cache_mode = "writethrough"
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# Configuration option allocation/cache_policy.
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# The default cache policy used for new cache volume.
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# For the kernel 4.2 and newer the default policy is smq
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# (Stochastic multique), otherwise the older mq (Multiqueue),
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# policy is selected.
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# This configuration option does not have a default value defined.
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# Configuration section allocation/cache_settings.
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# Individual settings for policies.
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# See the help for individual policies for more info.
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# cache_settings {
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# }
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# Configuration option allocation/cache_pool_chunk_size.
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# The minimal chunk size (in kiB) for cache pool volumes.
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# The minimal chunk size in KiB for cache pool volumes.
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# Using a chunk_size that is too large can result in wasteful
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# use of the cache, where small reads and writes can cause
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# large sections of an LV to be mapped into the cache. However,
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@ -392,8 +406,8 @@ allocation {
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# overhead trying to manage the numerous chunks that become mapped
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# into the cache. The former is more of a problem than the latter
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# in most cases, so we default to a value that is on the smaller
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# end of the spectrum. Supported values range from 32(kiB) to
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# 1048576 in multiples of 32.
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# end of the spectrum. Supported values range from 32KiB to
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# 1GiB in multiples of 32.
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# This configuration option does not have a default value defined.
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# Configuration option allocation/thin_pool_metadata_require_separate_pvs.
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@ -424,17 +438,17 @@ allocation {
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# thin_pool_chunk_size_policy = "generic"
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# Configuration option allocation/thin_pool_chunk_size.
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# The minimal chunk size (in KB) for thin pool volumes.
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# The minimal chunk size in KiB for thin pool volumes.
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# Larger chunk sizes may improve performance for plain
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# thin volumes, however using them for snapshot volumes
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# is less efficient, as it consumes more space and takes
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# extra time for copying. When unset, lvm tries to estimate
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# chunk size starting from 64KB. Supported values are in
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# the range 64 to 1048576.
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# chunk size starting from 64KiB. Supported values are in
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# the range 64KiB to 1GiB.
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# This configuration option does not have a default value defined.
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# Configuration option allocation/physical_extent_size.
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# Default physical extent size to use for new VGs (in KB).
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# Default physical extent size in KiB to use for new VGs.
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# physical_extent_size = 4096
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}
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@ -779,11 +793,11 @@ global {
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sparse_segtype_default = "@DEFAULT_SPARSE_SEGTYPE@"
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# Configuration option global/lvdisplay_shows_full_device_path.
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# Enable this to reinstate the previous lvdisplay name format.
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# The default format for displaying LV names in lvdisplay was changed
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# in version 2.02.89 to show the LV name and path separately.
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# Previously this was always shown as /dev/vgname/lvname even when that
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# was never a valid path in the /dev filesystem.
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# Enable this option to reinstate the previous format.
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# lvdisplay_shows_full_device_path = 0
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# Configuration option global/use_lvmetad.
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@ -889,6 +903,15 @@ global {
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# thin_disabled_features = [ "discards", "block_size" ]
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# This configuration option does not have a default value defined.
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# Configuration option global/cache_disabled_features.
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# Features to not use in the cache driver.
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# This can be helpful for testing, or to avoid
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# using a feature that is causing problems.
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# Features: policy_mq, policy_smq.
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# Example:
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# cache_disabled_features = [ "policy_smq" ]
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# This configuration option does not have a default value defined.
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# Configuration option global/cache_check_executable.
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# The full path to the cache_check command.
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# LVM uses this command to check that a cache metadata
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@ -1031,12 +1054,12 @@ activation {
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use_linear_target = 1
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# Configuration option activation/reserved_stack.
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# Stack size in KB to reserve for use while devices are suspended.
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# Stack size in KiB to reserve for use while devices are suspended.
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# Insufficent reserve risks I/O deadlock during device suspension.
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reserved_stack = 64
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# Configuration option activation/reserved_memory.
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# Memory size in KB to reserve for use while devices are suspended.
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# Memory size in KiB to reserve for use while devices are suspended.
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# Insufficent reserve risks I/O deadlock during device suspension.
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reserved_memory = 8192
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@ -1267,7 +1290,7 @@ activation {
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monitoring = 1
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# Configuration option activation/polling_interval.
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# Check pvmove or lvconvert progress at this interval (seconds)
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# Check pvmove or lvconvert progress at this interval (seconds).
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# When pvmove or lvconvert must wait for the kernel to finish
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# synchronising or merging data, they check and report progress
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# at intervals of this number of seconds.
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