xref: /freebsd/sys/contrib/openzfs/man/man7/zpool-features.7 (revision d91f8db5f1822c43cd256f19aae1d059e4b25a26)
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21.Dd June 23, 2022
22.Dt ZPOOL-FEATURES 7
23.Os
24.
25.Sh NAME
26.Nm zpool-features
27.Nd description of ZFS pool features
28.
29.Sh DESCRIPTION
30ZFS pool on-disk format versions are specified via
31.Dq features
32which replace the old on-disk format numbers
33.Pq the last supported on-disk format number is 28 .
34To enable a feature on a pool use the
35.Nm zpool Cm upgrade ,
36or set the
37.Sy feature Ns @ Ns Ar feature-name
38property to
39.Sy enabled .
40Please also see the
41.Sx Compatibility feature sets
42section for information on how sets of features may be enabled together.
43.Pp
44The pool format does not affect file system version compatibility or the ability
45to send file systems between pools.
46.Pp
47Since most features can be enabled independently of each other, the on-disk
48format of the pool is specified by the set of all features marked as
49.Sy active
50on the pool.
51If the pool was created by another software version
52this set may include unsupported features.
53.
54.Ss Identifying features
55Every feature has a GUID of the form
56.Ar com.example : Ns Ar feature-name .
57The reversed DNS name ensures that the feature's GUID is unique across all ZFS
58implementations.
59When unsupported features are encountered on a pool they will
60be identified by their GUIDs.
61Refer to the documentation for the ZFS
62implementation that created the pool for information about those features.
63.Pp
64Each supported feature also has a short name.
65By convention a feature's short name is the portion of its GUID which follows
66the
67.Sq \&:
68.Po
69i.e.
70.Ar com.example : Ns Ar feature-name
71would have the short name
72.Ar feature-name
73.Pc ,
74however a feature's short name may differ across ZFS implementations if
75following the convention would result in name conflicts.
76.
77.Ss Feature states
78Features can be in one of three states:
79.Bl -tag -width "disabled"
80.It Sy active
81This feature's on-disk format changes are in effect on the pool.
82Support for this feature is required to import the pool in read-write mode.
83If this feature is not read-only compatible,
84support is also required to import the pool in read-only mode
85.Pq see Sx Read-only compatibility .
86.It Sy enabled
87An administrator has marked this feature as enabled on the pool, but the
88feature's on-disk format changes have not been made yet.
89The pool can still be imported by software that does not support this feature,
90but changes may be made to the on-disk format at any time
91which will move the feature to the
92.Sy active
93state.
94Some features may support returning to the
95.Sy enabled
96state after becoming
97.Sy active .
98See feature-specific documentation for details.
99.It Sy disabled
100This feature's on-disk format changes have not been made and will not be made
101unless an administrator moves the feature to the
102.Sy enabled
103state.
104Features cannot be disabled once they have been enabled.
105.El
106.Pp
107The state of supported features is exposed through pool properties of the form
108.Sy feature Ns @ Ns Ar short-name .
109.
110.Ss Read-only compatibility
111Some features may make on-disk format changes that do not interfere with other
112software's ability to read from the pool.
113These features are referred to as
114.Dq read-only compatible .
115If all unsupported features on a pool are read-only compatible,
116the pool can be imported in read-only mode by setting the
117.Sy readonly
118property during import
119.Po see
120.Xr zpool-import 8
121for details on importing pools
122.Pc .
123.
124.Ss Unsupported features
125For each unsupported feature enabled on an imported pool, a pool property
126named
127.Sy unsupported Ns @ Ns Ar feature-name
128will indicate why the import was allowed despite the unsupported feature.
129Possible values for this property are:
130.Bl -tag -width "readonly"
131.It Sy inactive
132The feature is in the
133.Sy enabled
134state and therefore the pool's on-disk
135format is still compatible with software that does not support this feature.
136.It Sy readonly
137The feature is read-only compatible and the pool has been imported in
138read-only mode.
139.El
140.
141.Ss Feature dependencies
142Some features depend on other features being enabled in order to function.
143Enabling a feature will automatically enable any features it depends on.
144.
145.Ss Compatibility feature sets
146It is sometimes necessary for a pool to maintain compatibility with a
147specific on-disk format, by enabling and disabling particular features.
148The
149.Sy compatibility
150feature facilitates this by allowing feature sets to be read from text files.
151When set to
152.Sy off
153.Pq the default ,
154compatibility feature sets are disabled
155.Pq i.e. all features are enabled ;
156when set to
157.Sy legacy ,
158no features are enabled.
159When set to a comma-separated list of filenames
160.Po
161each filename may either be an absolute path, or relative to
162.Pa /etc/zfs/compatibility.d
163or
164.Pa /usr/share/zfs/compatibility.d
165.Pc ,
166the lists of requested features are read from those files,
167separated by whitespace and/or commas.
168Only features present in all files are enabled.
169.Pp
170Simple sanity checks are applied to the files:
171they must be between 1 B and 16 KiB in size, and must end with a newline
172character.
173.Pp
174The requested features are applied when a pool is created using
175.Nm zpool Cm create Fl o Sy compatibility Ns = Ns Ar …
176and controls which features are enabled when using
177.Nm zpool Cm upgrade .
178.Nm zpool Cm status
179will not show a warning about disabled features which are not part
180of the requested feature set.
181.Pp
182The special value
183.Sy legacy
184prevents any features from being enabled, either via
185.Nm zpool Cm upgrade
186or
187.Nm zpool Cm set Sy feature Ns @ Ns Ar feature-name Ns = Ns Sy enabled .
188This setting also prevents pools from being upgraded to newer on-disk versions.
189This is a safety measure to prevent new features from being
190accidentally enabled, breaking compatibility.
191.Pp
192By convention, compatibility files in
193.Pa /usr/share/zfs/compatibility.d
194are provided by the distribution, and include feature sets
195supported by important versions of popular distributions, and feature
196sets commonly supported at the start of each year.
197Compatibility files in
198.Pa /etc/zfs/compatibility.d ,
199if present, will take precedence over files with the same name in
200.Pa /usr/share/zfs/compatibility.d .
201.Pp
202If an unrecognized feature is found in these files, an error message will
203be shown.
204If the unrecognized feature is in a file in
205.Pa /etc/zfs/compatibility.d ,
206this is treated as an error and processing will stop.
207If the unrecognized feature is under
208.Pa /usr/share/zfs/compatibility.d ,
209this is treated as a warning and processing will continue.
210This difference is to allow distributions to include features
211which might not be recognized by the currently-installed binaries.
212.Pp
213Compatibility files may include comments:
214any text from
215.Sq #
216to the end of the line is ignored.
217.Pp
218.Sy Example :
219.Bd -literal -compact -offset 4n
220.No example# Nm cat Pa /usr/share/zfs/compatibility.d/grub2
221# Features which are supported by GRUB2
222async_destroy
223bookmarks
224embedded_data
225empty_bpobj
226enabled_txg
227extensible_dataset
228filesystem_limits
229hole_birth
230large_blocks
231lz4_compress
232spacemap_histogram
233
234.No example# Nm zpool Cm create Fl o Sy compatibility Ns = Ns Ar grub2 Ar bootpool Ar vdev
235.Ed
236.Pp
237See
238.Xr zpool-create 8
239and
240.Xr zpool-upgrade 8
241for more information on how these commands are affected by feature sets.
242.
243.de feature
244.It Sy \\$2
245.Bl -tag -compact -width "READ-ONLY COMPATIBLE"
246.It GUID
247.Sy \\$1:\\$2
248.if !"\\$4"" \{\
249.It DEPENDENCIES
250\fB\\$4\fP\c
251.if !"\\$5"" , \fB\\$5\fP\c
252.if !"\\$6"" , \fB\\$6\fP\c
253.if !"\\$7"" , \fB\\$7\fP\c
254.if !"\\$8"" , \fB\\$8\fP\c
255.if !"\\$9"" , \fB\\$9\fP\c
256.\}
257.It READ-ONLY COMPATIBLE
258\\$3
259.El
260.Pp
261..
262.
263.ds instant-never \
264.No This feature becomes Sy active No as soon as it is enabled \
265and will never return to being Sy enabled .
266.
267.ds remount-upgrade \
268.No Each filesystem will be upgraded automatically when remounted, \
269or when a new file is created under that filesystem. \
270The upgrade can also be triggered on filesystems via \
271Nm zfs Cm set Sy version Ns = Ns Sy current Ar fs . \
272No The upgrade process runs in the background and may take a while to complete \
273for filesystems containing large amounts of files .
274.
275.de checksum-spiel
276When the
277.Sy \\$1
278feature is set to
279.Sy enabled ,
280the administrator can turn on the
281.Sy \\$1
282checksum on any dataset using
283.Nm zfs Cm set Sy checksum Ns = Ns Sy \\$1 Ar dset
284.Po see Xr zfs-set 8 Pc .
285This feature becomes
286.Sy active
287once a
288.Sy checksum
289property has been set to
290.Sy \\$1 ,
291and will return to being
292.Sy enabled
293once all filesystems that have ever had their checksum set to
294.Sy \\$1
295are destroyed.
296..
297.
298.Sh FEATURES
299The following features are supported on this system:
300.Bl -tag -width Ds
301.feature org.zfsonlinux allocation_classes yes
302This feature enables support for separate allocation classes.
303.Pp
304This feature becomes
305.Sy active
306when a dedicated allocation class vdev
307.Pq dedup or special
308is created with the
309.Nm zpool Cm create No or Nm zpool Cm add No commands .
310With device removal, it can be returned to the
311.Sy enabled
312state if all the dedicated allocation class vdevs are removed.
313.
314.feature com.delphix async_destroy yes
315Destroying a file system requires traversing all of its data in order to
316return its used space to the pool.
317Without
318.Sy async_destroy ,
319the file system is not fully removed until all space has been reclaimed.
320If the destroy operation is interrupted by a reboot or power outage,
321the next attempt to open the pool will need to complete the destroy
322operation synchronously.
323.Pp
324When
325.Sy async_destroy
326is enabled, the file system's data will be reclaimed by a background process,
327allowing the destroy operation to complete
328without traversing the entire file system.
329The background process is able to resume
330interrupted destroys after the pool has been opened, eliminating the need
331to finish interrupted destroys as part of the open operation.
332The amount of space remaining to be reclaimed by the background process
333is available through the
334.Sy freeing
335property.
336.Pp
337This feature is only
338.Sy active
339while
340.Sy freeing
341is non-zero.
342.
343.feature org.openzfs blake3 no extensible_dataset
344This feature enables the use of the BLAKE3 hash algorithm for checksum and
345dedup.
346BLAKE3 is a secure hash algorithm focused on high performance.
347.Pp
348.checksum-spiel blake3
349.
350.feature com.fudosecurity block_cloning yes
351When this feature is enabled ZFS will use block cloning for operations like
352.Fn copy_file_range 2 .
353Block cloning allows to create multiple references to a single block.
354It is much faster than copying the data (as the actual data is neither read nor
355written) and takes no additional space.
356Blocks can be cloned across datasets under some conditions (like disabled
357encryption and equal
358.Nm recordsize ) .
359.Pp
360This feature becomes
361.Sy active
362when first block is cloned.
363When the last cloned block is freed, it goes back to the enabled state.
364.feature com.delphix bookmarks yes extensible_dataset
365This feature enables use of the
366.Nm zfs Cm bookmark
367command.
368.Pp
369This feature is
370.Sy active
371while any bookmarks exist in the pool.
372All bookmarks in the pool can be listed by running
373.Nm zfs Cm list Fl t Sy bookmark Fl r Ar poolname .
374.
375.feature com.datto bookmark_v2 no bookmark extensible_dataset
376This feature enables the creation and management of larger bookmarks which are
377needed for other features in ZFS.
378.Pp
379This feature becomes
380.Sy active
381when a v2 bookmark is created and will be returned to the
382.Sy enabled
383state when all v2 bookmarks are destroyed.
384.
385.feature com.delphix bookmark_written no bookmark extensible_dataset bookmark_v2
386This feature enables additional bookmark accounting fields, enabling the
387.Sy written Ns # Ns Ar bookmark
388property
389.Pq space written since a bookmark
390and estimates of send stream sizes for incrementals from bookmarks.
391.Pp
392This feature becomes
393.Sy active
394when a bookmark is created and will be
395returned to the
396.Sy enabled
397state when all bookmarks with these fields are destroyed.
398.
399.feature org.openzfs device_rebuild yes
400This feature enables the ability for the
401.Nm zpool Cm attach
402and
403.Nm zpool Cm replace
404commands to perform sequential reconstruction
405.Pq instead of healing reconstruction
406when resilvering.
407.Pp
408Sequential reconstruction resilvers a device in LBA order without immediately
409verifying the checksums.
410Once complete, a scrub is started, which then verifies the checksums.
411This approach allows full redundancy to be restored to the pool
412in the minimum amount of time.
413This two-phase approach will take longer than a healing resilver
414when the time to verify the checksums is included.
415However, unless there is additional pool damage,
416no checksum errors should be reported by the scrub.
417This feature is incompatible with raidz configurations.
418.
419This feature becomes
420.Sy active
421while a sequential resilver is in progress, and returns to
422.Sy enabled
423when the resilver completes.
424.
425.feature com.delphix device_removal no
426This feature enables the
427.Nm zpool Cm remove
428command to remove top-level vdevs,
429evacuating them to reduce the total size of the pool.
430.Pp
431This feature becomes
432.Sy active
433when the
434.Nm zpool Cm remove
435command is used
436on a top-level vdev, and will never return to being
437.Sy enabled .
438.
439.feature org.openzfs draid no
440This feature enables use of the
441.Sy draid
442vdev type.
443dRAID is a variant of RAID-Z which provides integrated distributed
444hot spares that allow faster resilvering while retaining the benefits of RAID-Z.
445Data, parity, and spare space are organized in redundancy groups
446and distributed evenly over all of the devices.
447.Pp
448This feature becomes
449.Sy active
450when creating a pool which uses the
451.Sy draid
452vdev type, or when adding a new
453.Sy draid
454vdev to an existing pool.
455.
456.feature org.illumos edonr no extensible_dataset
457This feature enables the use of the Edon-R hash algorithm for checksum,
458including for nopwrite
459.Po if compression is also enabled, an overwrite of
460a block whose checksum matches the data being written will be ignored
461.Pc .
462In an abundance of caution, Edon-R requires verification when used with
463dedup:
464.Nm zfs Cm set Sy dedup Ns = Ns Sy edonr , Ns Sy verify
465.Po see Xr zfs-set 8 Pc .
466.Pp
467Edon-R is a very high-performance hash algorithm that was part
468of the NIST SHA-3 competition.
469It provides extremely high hash performance
470.Pq over 350% faster than SHA-256 ,
471but was not selected because of its unsuitability
472as a general purpose secure hash algorithm.
473This implementation utilizes the new salted checksumming functionality
474in ZFS, which means that the checksum is pre-seeded with a secret
475256-bit random key
476.Pq stored on the pool
477before being fed the data block to be checksummed.
478Thus the produced checksums are unique to a given pool,
479preventing hash collision attacks on systems with dedup.
480.Pp
481.checksum-spiel edonr
482.
483.feature com.delphix embedded_data no
484This feature improves the performance and compression ratio of
485highly-compressible blocks.
486Blocks whose contents can compress to 112 bytes
487or smaller can take advantage of this feature.
488.Pp
489When this feature is enabled, the contents of highly-compressible blocks are
490stored in the block
491.Dq pointer
492itself
493.Po a misnomer in this case, as it contains
494the compressed data, rather than a pointer to its location on disk
495.Pc .
496Thus the space of the block
497.Pq one sector, typically 512 B or 4 KiB
498is saved, and no additional I/O is needed to read and write the data block.
499.
500\*[instant-never]
501.
502.feature com.delphix empty_bpobj yes
503This feature increases the performance of creating and using a large
504number of snapshots of a single filesystem or volume, and also reduces
505the disk space required.
506.Pp
507When there are many snapshots, each snapshot uses many Block Pointer
508Objects
509.Pq bpobjs
510to track blocks associated with that snapshot.
511However, in common use cases, most of these bpobjs are empty.
512This feature allows us to create each bpobj on-demand,
513thus eliminating the empty bpobjs.
514.Pp
515This feature is
516.Sy active
517while there are any filesystems, volumes,
518or snapshots which were created after enabling this feature.
519.
520.feature com.delphix enabled_txg yes
521Once this feature is enabled, ZFS records the transaction group number
522in which new features are enabled.
523This has no user-visible impact, but other features may depend on this feature.
524.Pp
525This feature becomes
526.Sy active
527as soon as it is enabled and will never return to being
528.Sy enabled .
529.
530.feature com.datto encryption no bookmark_v2 extensible_dataset
531This feature enables the creation and management of natively encrypted datasets.
532.Pp
533This feature becomes
534.Sy active
535when an encrypted dataset is created and will be returned to the
536.Sy enabled
537state when all datasets that use this feature are destroyed.
538.
539.feature com.delphix extensible_dataset no
540This feature allows more flexible use of internal ZFS data structures,
541and exists for other features to depend on.
542.Pp
543This feature will be
544.Sy active
545when the first dependent feature uses it, and will be returned to the
546.Sy enabled
547state when all datasets that use this feature are destroyed.
548.
549.feature com.joyent filesystem_limits yes extensible_dataset
550This feature enables filesystem and snapshot limits.
551These limits can be used to control how many filesystems and/or snapshots
552can be created at the point in the tree on which the limits are set.
553.Pp
554This feature is
555.Sy active
556once either of the limit properties has been set on a dataset
557and will never return to being
558.Sy enabled .
559.
560.feature com.delphix head_errlog no
561This feature enables the upgraded version of errlog, which required an on-disk
562error log format change.
563Now the error log of each head dataset is stored separately in the zap object
564and keyed by the head id.
565With this feature enabled, every dataset affected by an error block is listed
566in the output of
567.Nm zpool Cm status .
568In case of encrypted filesystems with unloaded keys we are unable to check
569their snapshots or clones for errors and these will not be reported.
570An "access denied" error will be reported.
571.Pp
572\*[instant-never]
573.
574.feature com.delphix hole_birth no enabled_txg
575This feature has/had bugs, the result of which is that, if you do a
576.Nm zfs Cm send Fl i
577.Pq or Fl R , No since it uses Fl i
578from an affected dataset, the receiving party will not see any checksum
579or other errors, but the resulting destination snapshot
580will not match the source.
581Its use by
582.Nm zfs Cm send Fl i
583has been disabled by default
584.Po
585see
586.Sy send_holes_without_birth_time
587in
588.Xr zfs 4
589.Pc .
590.Pp
591This feature improves performance of incremental sends
592.Pq Nm zfs Cm send Fl i
593and receives for objects with many holes.
594The most common case of hole-filled objects is zvols.
595.Pp
596An incremental send stream from snapshot
597.Sy A No to snapshot Sy B
598contains information about every block that changed between
599.Sy A No and Sy B .
600Blocks which did not change between those snapshots can be
601identified and omitted from the stream using a piece of metadata called
602the
603.Dq block birth time ,
604but birth times are not recorded for holes
605.Pq blocks filled only with zeroes .
606Since holes created after
607.Sy A No cannot be distinguished from holes created before Sy A ,
608information about every hole in the entire filesystem or zvol
609is included in the send stream.
610.Pp
611For workloads where holes are rare this is not a problem.
612However, when incrementally replicating filesystems or zvols with many holes
613.Pq for example a zvol formatted with another filesystem
614a lot of time will be spent sending and receiving unnecessary information
615about holes that already exist on the receiving side.
616.Pp
617Once the
618.Sy hole_birth
619feature has been enabled the block birth times
620of all new holes will be recorded.
621Incremental sends between snapshots created after this feature is enabled
622will use this new metadata to avoid sending information about holes that
623already exist on the receiving side.
624.Pp
625\*[instant-never]
626.
627.feature org.open-zfs large_blocks no extensible_dataset
628This feature allows the record size on a dataset to be set larger than 128 KiB.
629.Pp
630This feature becomes
631.Sy active
632once a dataset contains a file with a block size larger than 128 KiB,
633and will return to being
634.Sy enabled
635once all filesystems that have ever had their recordsize larger than 128 KiB
636are destroyed.
637.
638.feature org.zfsonlinux large_dnode no extensible_dataset
639This feature allows the size of dnodes in a dataset to be set larger than 512 B.
640.
641This feature becomes
642.Sy active
643once a dataset contains an object with a dnode larger than 512 B,
644which occurs as a result of setting the
645.Sy dnodesize
646dataset property to a value other than
647.Sy legacy .
648The feature will return to being
649.Sy enabled
650once all filesystems that have ever contained a dnode larger than 512 B
651are destroyed.
652Large dnodes allow more data to be stored in the bonus buffer,
653thus potentially improving performance by avoiding the use of spill blocks.
654.
655.feature com.delphix livelist yes
656This feature allows clones to be deleted faster than the traditional method
657when a large number of random/sparse writes have been made to the clone.
658All blocks allocated and freed after a clone is created are tracked by the
659the clone's livelist which is referenced during the deletion of the clone.
660The feature is activated when a clone is created and remains
661.Sy active
662until all clones have been destroyed.
663.
664.feature com.delphix log_spacemap yes com.delphix:spacemap_v2
665This feature improves performance for heavily-fragmented pools,
666especially when workloads are heavy in random-writes.
667It does so by logging all the metaslab changes on a single spacemap every TXG
668instead of scattering multiple writes to all the metaslab spacemaps.
669.Pp
670\*[instant-never]
671.
672.feature org.illumos lz4_compress no
673.Sy lz4
674is a high-performance real-time compression algorithm that
675features significantly faster compression and decompression as well as a
676higher compression ratio than the older
677.Sy lzjb
678compression.
679Typically,
680.Sy lz4
681compression is approximately 50% faster on compressible data and 200% faster
682on incompressible data than
683.Sy lzjb .
684It is also approximately 80% faster on decompression,
685while giving approximately a 10% better compression ratio.
686.Pp
687When the
688.Sy lz4_compress
689feature is set to
690.Sy enabled ,
691the administrator can turn on
692.Sy lz4
693compression on any dataset on the pool using the
694.Xr zfs-set 8
695command.
696All newly written metadata will be compressed with the
697.Sy lz4
698algorithm.
699.Pp
700\*[instant-never]
701.
702.feature com.joyent multi_vdev_crash_dump no
703This feature allows a dump device to be configured with a pool comprised
704of multiple vdevs.
705Those vdevs may be arranged in any mirrored or raidz configuration.
706.Pp
707When the
708.Sy multi_vdev_crash_dump
709feature is set to
710.Sy enabled ,
711the administrator can use
712.Xr dumpadm 8
713to configure a dump device on a pool comprised of multiple vdevs.
714.Pp
715Under
716.Fx
717and Linux this feature is unused, but registered for compatibility.
718New pools created on these systems will have the feature
719.Sy enabled
720but will never transition to
721.Sy active ,
722as this functionality is not required for crash dump support.
723Existing pools where this feature is
724.Sy active
725can be imported.
726.
727.feature com.delphix obsolete_counts yes device_removal
728This feature is an enhancement of
729.Sy device_removal ,
730which will over time reduce the memory used to track removed devices.
731When indirect blocks are freed or remapped,
732we note that their part of the indirect mapping is
733.Dq obsolete
734– no longer needed.
735.Pp
736This feature becomes
737.Sy active
738when the
739.Nm zpool Cm remove
740command is used on a top-level vdev, and will never return to being
741.Sy enabled .
742.
743.feature org.zfsonlinux project_quota yes extensible_dataset
744This feature allows administrators to account the spaces and objects usage
745information against the project identifier
746.Pq ID .
747.Pp
748The project ID is an object-based attribute.
749When upgrading an existing filesystem,
750objects without a project ID will be assigned a zero project ID.
751When this feature is enabled, newly created objects inherit
752their parent directories' project ID if the parent's inherit flag is set
753.Pq via Nm chattr Sy [+-]P No or Nm zfs Cm project Fl s Ns | Ns Fl C .
754Otherwise, the new object's project ID will be zero.
755An object's project ID can be changed at any time by the owner
756.Pq or privileged user
757via
758.Nm chattr Fl p Ar prjid
759or
760.Nm zfs Cm project Fl p Ar prjid .
761.Pp
762This feature will become
763.Sy active
764as soon as it is enabled and will never return to being
765.Sy disabled .
766\*[remount-upgrade]
767.
768.feature com.delphix redaction_bookmarks no bookmarks extensible_dataset
769This feature enables the use of redacted
770.Nm zfs Cm send Ns s ,
771which create redaction bookmarks storing the list of blocks
772redacted by the send that created them.
773For more information about redacted sends, see
774.Xr zfs-send 8 .
775.
776.feature com.delphix redacted_datasets no extensible_dataset
777This feature enables the receiving of redacted
778.Nm zfs Cm send
779streams, which create redacted datasets when received.
780These datasets are missing some of their blocks,
781and so cannot be safely mounted, and their contents cannot be safely read.
782For more information about redacted receives, see
783.Xr zfs-send 8 .
784.
785.feature com.datto resilver_defer yes
786This feature allows ZFS to postpone new resilvers if an existing one is already
787in progress.
788Without this feature, any new resilvers will cause the currently
789running one to be immediately restarted from the beginning.
790.Pp
791This feature becomes
792.Sy active
793once a resilver has been deferred, and returns to being
794.Sy enabled
795when the deferred resilver begins.
796.
797.feature org.illumos sha512 no extensible_dataset
798This feature enables the use of the SHA-512/256 truncated hash algorithm
799.Pq FIPS 180-4
800for checksum and dedup.
801The native 64-bit arithmetic of SHA-512 provides an approximate 50%
802performance boost over SHA-256 on 64-bit hardware
803and is thus a good minimum-change replacement candidate
804for systems where hash performance is important,
805but these systems cannot for whatever reason utilize the faster
806.Sy skein No and Sy edonr
807algorithms.
808.Pp
809.checksum-spiel sha512
810.
811.feature org.illumos skein no extensible_dataset
812This feature enables the use of the Skein hash algorithm for checksum and dedup.
813Skein is a high-performance secure hash algorithm that was a
814finalist in the NIST SHA-3 competition.
815It provides a very high security margin and high performance on 64-bit hardware
816.Pq 80% faster than SHA-256 .
817This implementation also utilizes the new salted checksumming
818functionality in ZFS, which means that the checksum is pre-seeded with a
819secret 256-bit random key
820.Pq stored on the pool
821before being fed the data block to be checksummed.
822Thus the produced checksums are unique to a given pool,
823preventing hash collision attacks on systems with dedup.
824.Pp
825.checksum-spiel skein
826.
827.feature com.delphix spacemap_histogram yes
828This features allows ZFS to maintain more information about how free space
829is organized within the pool.
830If this feature is
831.Sy enabled ,
832it will be activated when a new space map object is created, or
833an existing space map is upgraded to the new format,
834and never returns back to being
835.Sy enabled .
836.
837.feature com.delphix spacemap_v2 yes
838This feature enables the use of the new space map encoding which
839consists of two words
840.Pq instead of one
841whenever it is advantageous.
842The new encoding allows space maps to represent large regions of
843space more efficiently on-disk while also increasing their maximum
844addressable offset.
845.Pp
846This feature becomes
847.Sy active
848once it is
849.Sy enabled ,
850and never returns back to being
851.Sy enabled .
852.
853.feature org.zfsonlinux userobj_accounting yes extensible_dataset
854This feature allows administrators to account the object usage information
855by user and group.
856.Pp
857\*[instant-never]
858\*[remount-upgrade]
859.
860.feature com.klarasystems vdev_zaps_v2 no
861This feature creates a ZAP object for the root vdev.
862.Pp
863This feature becomes active after the next
864.Nm zpool Cm import
865or
866.Nm zpool reguid .
867.
868Properties can be retrieved or set on the root vdev using
869.Nm zpool Cm get
870and
871.Nm zpool Cm set
872with
873.Sy root
874as the vdev name which is an alias for
875.Sy root-0 .
876.feature org.openzfs zilsaxattr yes extensible_dataset
877This feature enables
878.Sy xattr Ns = Ns Sy sa
879extended attribute logging in the ZIL.
880If enabled, extended attribute changes
881.Pq both Sy xattrdir Ns = Ns Sy dir No and Sy xattr Ns = Ns Sy sa
882are guaranteed to be durable if either the dataset had
883.Sy sync Ns = Ns Sy always
884set at the time the changes were made, or
885.Xr sync 2
886is called on the dataset after the changes were made.
887.Pp
888This feature becomes
889.Sy active
890when a ZIL is created for at least one dataset and will be returned to the
891.Sy enabled
892state when it is destroyed for all datasets that use this feature.
893.
894.feature com.delphix zpool_checkpoint yes
895This feature enables the
896.Nm zpool Cm checkpoint
897command that can checkpoint the state of the pool
898at the time it was issued and later rewind back to it or discard it.
899.Pp
900This feature becomes
901.Sy active
902when the
903.Nm zpool Cm checkpoint
904command is used to checkpoint the pool.
905The feature will only return back to being
906.Sy enabled
907when the pool is rewound or the checkpoint has been discarded.
908.
909.feature org.freebsd zstd_compress no extensible_dataset
910.Sy zstd
911is a high-performance compression algorithm that features a
912combination of high compression ratios and high speed.
913Compared to
914.Sy gzip ,
915.Sy zstd
916offers slightly better compression at much higher speeds.
917Compared to
918.Sy lz4 ,
919.Sy zstd
920offers much better compression while being only modestly slower.
921Typically,
922.Sy zstd
923compression speed ranges from 250 to 500 MB/s per thread
924and decompression speed is over 1 GB/s per thread.
925.Pp
926When the
927.Sy zstd
928feature is set to
929.Sy enabled ,
930the administrator can turn on
931.Sy zstd
932compression of any dataset using
933.Nm zfs Cm set Sy compress Ns = Ns Sy zstd Ar dset
934.Po see Xr zfs-set 8 Pc .
935This feature becomes
936.Sy active
937once a
938.Sy compress
939property has been set to
940.Sy zstd ,
941and will return to being
942.Sy enabled
943once all filesystems that have ever had their
944.Sy compress
945property set to
946.Sy zstd
947are destroyed.
948.El
949.
950.Sh SEE ALSO
951.Xr zfs 8 ,
952.Xr zpool 8
953