* volume server: ec.decode reads the .ecx from the index dir it was copied to
VolumeEcShardsCopy writes the .ecx/.ecj into the receiver's -dir.idx, so
with a split data/index dir the decode target has no .ecx beside its
shards. VolumeEcShardsToVolume sized the .dat from the right .ecx but
built the .idx from the data dir, failing with NotFound after the .dat
was already published. It now reads .ecx/.ecj from where the EC volume
opened them and writes the .idx beside the .dat, where Go leaves it.
The live-entry check and the .dat size also ignored deletions recorded
only in the .ecj, which Go folds into the .ecx (RebuildEcxFile) first:
a fully deleted volume was decoded instead of reported as having no live
entries, and deleted tail needles were copied into the .dat. Both now
treat journaled ids as deleted, without rewriting the sealed .ecx.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode keeps the decoded volume writable and reads every .ecj
The rebuilt .idx copied a journaled tail needle's .ecx row verbatim after
the .dat was cut short before it, so the mount saw a row past EOF and
marked the decoded volume read-only. Rows of deleted needles the .dat no
longer holds are now dropped, and each journaled needle still in the .dat
gets one tombstone instead of one per journal entry.
VolumeEcShardsCopy appends journals collected from other holders into
the idx dir, but the decode read only the .ecj beside the .ecx, which
sits in the data dir when this server generated the shards. It now
reads both, once, in bounded chunks via the loader EcVolume uses.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: test ec.decode drops a sealed .ecx tail tombstone
Covers the other half of the rule added in the previous commit: a tail
needle tombstoned in the .ecx itself (Go's RebuildEcxFile) is cut from
the .dat, and its row must not reach the rebuilt .idx either.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode runs its file I/O off the async runtime
VolumeEcShardsToVolume released the store lock before decoding, but read
the .ecx/.ecj, rebuilt the .dat and wrote the .idx inside the async
handler, parking a runtime worker for the length of a volume-sized copy.
The decode now runs in spawn_blocking on inputs snapshotted under the
store lock.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode checks the rebuilt .dat is complete
Go stats the decoded .dat before writing the .idx (VerifyDecodedDatFile)
and fails the decode when it is shorter than the extent the EC index
references, since the caller deletes the shards once the call returns.
The Rust handler returned success without that check. The rebuild
already fails on a short shard read, so this guards the published file
itself.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode drops the decoded volume's bitrot sidecars
Go removes <base>.ecsum and <base>.ecsum.v<N> beside the .dat and beside
the .ecx once the .idx is written, so a stale checksum sidecar cannot
pass for the protection of a later re-encode. The Rust handler left them
in place. Removal is best effort, as in Go.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode compacts the decoded volume
Go ends VolumeEcShardsToVolume with an offline CompactVolumeFiles, so the
decoded volume holds only live needles. The Rust decode left every needle
deleted through the .ecj in the .dat, tombstoned in the .idx, until a
later vacuum reclaimed it.
Store::compact_volume_files loads the unmounted volume, checks free space
the way the vacuum does (the estimate now lives in one helper), and runs
the vacuum's compact-by-index and commit. As in Go a failed compaction is
logged and the decode still succeeds, so the uncompacted .idx rules stay:
the tests that pin them now make the compaction fail.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* volume server: ec.decode keeps deletes journaled while the .dat is written
The decode read the .ecj journals once, before rebuilding the .dat, so a
delete that reached the EC volume during the rebuild was left out of the
new .idx and the needle came back live. Each journal's read length is now
kept, and the bytes appended since are read just before the .idx is
written, after waiting out any journal append in flight (appends hold
the store write lock), so every delete acknowledged by then is in the
.idx. A delete after that point is still lost, as in Go.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
* Guard overlapping ec decode requests; serialize journal catch-up
volume_ec_shards_to_volume runs its decode in spawn_blocking, so a
dropped request leaves the job running and a retry would race it on the
temporary and final volume files. Claim the vid in a per-server
in-flight set until the blocking job finishes, and return Unavailable
to an overlapping request. The Go handler has the same exposure and
gets the same guard.
Journal appends hold the store write lock through their
sync-or-truncate, so holding a read lock across the catch-up read
guarantees every record it sees is committed: a rolled-back delete can
no longer leave a tombstone in the decoded index.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* Reconcile the swap when offline compaction commit fails
A CommitCompact that fails after the .cpc marker may have renamed .dat
but not .idx. cleanup_compact refuses while the marker exists, so the
mismatched pair survived until a restart reconciled it — and the decode
caller treats the failure as non-fatal. Run reconcileCompactState on
commit failure so a decided swap rolls forward and orphan temps are
removed before the volume can mount.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* Release the decode claim on panic
* volume: add ec_decodes_in_flight to the integration-test state literal
* volume server: hold the decode tail's lock through compaction
The catch_up read released before the rebuilt .idx was written and the
volume compacted, so a delete synced to .ecj in that window was durably
journaled yet absent from the published index — resurrecting the needle.
Rust now holds the store read lock from catch_up through compact, and Go
mirrors it by holding the volume's journal lock from the journal-
consuming index write through CompactVolumeFiles.
* volume server: serialize ec decode's tail per volume, not per store
Review follow-ups on the decode path:
- Rust: holding the store read lock from journal catch-up through the
offline compaction stalled every writer on unrelated volumes for the
whole rewrite. The new ec_decode_tail set marks the vid only while its
.idx is published and .cpd/.cpx swapped; the two local .ecj append paths
(VolumeEcBlobDelete, the distributed delete's local journal) wait on a
Notify for that span — Go's per-volume ecjFileAccessLock semantics
without the global stall. VolumeMount and the staged-adopt path are also
held off while a decode claim is in flight so neither can race the swap.
- Rust: the initial journal read ran unlocked, so bytes a rolled-back
append later truncated could be folded in as phantom tombstones. The
first pass stays unlocked (a slow journal must not stall the store) and
a rescan under the quiescing read lock re-reads only committed content;
catch_up now rebuilds the id set when a regular journal shrank.
- Go: the decode resolved the compaction DiskLocation through
FindEcVolume while holding the journal lock, inverting DestroyEcVolume's
map->journal order into a deadlock. The lookup now happens first, and
DestroyEcVolume/deleteEcVolumeById/DiskLocation.Close destroy outside
the map lock.
- Go: RebuildEcxFile unlinks .ecj while the volume's ecjFile handle stays
open, so later deletes could commit to a detached inode. Both call sites
now fold under the journal lock and ReopenDeletionJournal repoints the
handle at the live path, working on the volume's resolved .ecx dir
(EcIndexBaseFileName) rather than the configured index dir.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: fence EC remounts behind the destroy tombstone
DestroyEcVolume, deleteEcVolumeById, and the collection-delete sweep now
remove the EcVolume from ecVolumes before destroying it off-lock, so a
concurrent remount could re-open shard files that the in-flight destroy
then unlinks — registering a detached fd.
Each destroy records a per-vid tombstone channel in a new
ecVolumesDestroying map before dropping the map entry and closes it when
Destroy returns. The tombstone intentionally survives as the vid's
destroy generation: loadEcShardWithIdxDir compares it before and after
opening the shard, so a destroy that both started and finished inside the
open window is still detected. A mismatch drops the just-opened shard
(releasing its fd and mount gauge) and retries after the destroy
completes; a successful mount clears the stale tombstone.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: rescan the .ecj under the store lock only after a rollback
The decode's second journal pass ran a full rescan under the store read
lock on every decode, stalling unrelated writers for the length of the
scan. Bump a process-wide epoch whenever a failed append truncates its
uncommitted tail; an unchanged epoch between the unlocked read and the
quiesced pass proves every id folded in was committed, so catch_up()
suffices. catch_up() also treats a journal that was read but has since
disappeared as shrunk to zero, so its earlier ids cannot linger.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: check the decode tail under the store write lock on delete
A blob delete waited for the publishing tail before taking the store
write lock, so a decode that claimed the tail while the delete was
parked behind the decoder's read lock could still see the journal append
land after the rebuilt .idx — an acknowledged delete the mount would
miss. Test tail membership under the write lock instead, retrying after
the wait; journal_delete_local reports WouldBlock for the same recheck
on the distributed path.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: claim the vid for mount and staged adoption, per volume
VolumeMount and the staged .copying adoption held the
ec_decodes_in_flight set lock through slow file renames and mounts,
stalling every unrelated volume's decode, mount, and adoption. Take the
per-volume claim instead — the same exclusion against a racing decode
for this vid, released when the call returns.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: fail the decode when a compaction commit marker survives
CompactVolumeFiles' caller logged a compaction error and went on to
delete the EC shards. When the commit marker (.cpc) is still on disk the
.dat/.idx swap was decided but could not be reconciled, so the mounted
pair may be mismatched — report the failure instead so the shards are
kept and the caller can retry.
Generated with [Devin](https://devin.ai)
Co-Authored-By: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* volume server: gate the parked-delete test on the held write lock
The releaser thread and the spawned delete raced for the store write
lock; on a slow runner the delete could acquire it first and commit
before the tail was ever claimed, failing !delete.is_finished() on the
Windows unit-test job. Spawn the delete only after the thread reports
the lock held.
---------
Co-authored-by: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Co-authored-by: Chris Lu <chris.lu@gmail.com>
Co-authored-by: Chris Lu <chrislusf@users.noreply.github.com>
Co-authored-by: Devin <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* security: reload JWT signing keys on SIGHUP
Signing keys were read once in the server constructors and never
refreshed. After a key rotation (Secret update, divergent reads) the
in-memory key stayed stale and every request kept failing "wrong jwt"
until the affected process was restarted.
Add Guard.UpdateSigningKeys and call it from the master, volume and
filer reload paths and the s3 reload hook, next to the existing
whitelist refresh. Make the global chunk-read JWT cache reloadable via
an atomic swap, and register the master's Reload with grace.OnReload --
it was never wired, so the master ignored SIGHUP entirely.
Mirror the same refresh in the Rust volume server's SIGHUP handler.
* security: swap signing keys behind an atomic pointer
Addresses review feedback on the in-place key swap: SigningKey is a
[]byte, so reassigning the Guard fields while a request handler reads
them is a data race that can tear the multi-word slice header and read
out of bounds.
Hold the four signing-key fields in an immutable signingConfig snapshot
behind atomic.Pointer; UpdateSigningKeys swaps the whole pointer, so a
reader sees either the old keys or the new ones. Reads go through new
SigningKey/ExpiresAfterSec/ReadSigningKey/ReadExpiresAfterSec accessors.
The Rust guard is already safe: every read and the SIGHUP write go
through the shared RwLock<Guard>.
* security: fold whitelist + auth state into the atomic snapshot
Review follow-up. UpdateSigningKeys still wrote isWriteActive while the
request path read it (and the whitelist maps) unsynchronized, so a SIGHUP
under load could expose an inconsistent mix of activation bits and
whitelist contents.
Move all hot-reloadable Guard state -- keys, expirations, whitelist, and
the activation flags -- into a single immutable guardState swapped behind
one atomic.Pointer. The Update* methods take a small mutex to serialize
the read-modify-write; readers stay lock-free. The concurrency test now
also rotates the whitelist and probes IsWhiteListed under -race.
Also read each signing key once per branch in the volume/filer JWT auth
checks, so a reload landing mid-check can't take the allow-fast-path
after auth was enabled or verify against a different key than the branch
saw.
* [CheckDisk][GRPC]: implement MVP for disk health detection, added timeout for new grpc connections
* fix(volume): build disk health check on every platform
setDiskStatus only existed behind the statfs build tag, so disk.go failed
to compile on windows, openbsd, solaris, netbsd and plan9. Move the timeout
wrapper and failure tracking into the shared disk.go and have each platform's
fillInDiskStatus return an error, so every platform gets the same protection
from a stuck filesystem.
Also restore the uint64(fs.Bavail) cast: Bavail is int64 on freebsd, so the
unguarded multiply broke the freebsd build.
* fix(volume): keep one outstanding statfs probe per disk
A stuck statfs used to leave isChecking cleared by the timeout path, so the
next check spawned another goroutine while the previous one was still blocked
in the syscall, leaking one goroutine per minute on a hung disk. Clear the
flag only when statfs returns and treat an overlapping check as a failure, so
a hung filesystem keeps a single outstanding probe and still gets reported.
* fix(volume): assume disk available until the first health check
isDiskAvailable defaulted to false, and CollectHeartbeat skips locations that
are not available. A freshly started volume server would therefore omit every
volume from its first heartbeats until the async CheckDiskSpace ran, so the
master could briefly treat all of them as missing.
* fix(volume): label the disk error metric by data directory
The new gauge tagged the series with IdxDirectory while every neighbouring
resource gauge uses Directory, so the error series would not line up with them
in dashboards. Also log the underlying error instead of a generic message.
* test(volume): cover disk health success and repeated-failure paths
* fix(volume): make a healthy disk the zero-value default
Track the disk as isDiskUnavailable instead of isDiskAvailable so the safe
state is the zero value, matching isDiskSpaceLow. CollectHeartbeat only skips a
location once a check has actively marked it unavailable, so any DiskLocation
built without running CheckDiskSpace (tests, future call sites) still reports
its volumes instead of silently dropping them.
* feat(disk): detect degraded disks using IO latency probes
* feat(stats): introduce configurable disk I/O health probe with EWMA-based latency detection
* feat(disk): replace EWMA with sliding window algorithm for disk health detection and added user-friendly options
* feat(disk): improve disk health probing and recovery
* feat(volume): configure disk health checks via volume.toml
* fix(volume): Remove disk IO probe CLI options
---------
Co-authored-by: ptukha <ptukha@tochka.com>
Co-authored-by: Chris Lu <chris.lu@gmail.com>
Adds standard Kubernetes liveness/readiness endpoints to all HTTP
servers that were missing them:
- S3: adds /readyz (already had /healthz)
- IAM: adds /healthz and /readyz (had none)
- Volume: adds /readyz (already had /healthz)
- Filer: adds /readyz on default and readonly mux
- Master: adds /healthz and /readyz at root level
(preserves existing /cluster/healthz)
All endpoints reuse existing health handlers or return 200 OK as a
minimal foundation. Future PRs can enhance /readyz with dependency
checks without breaking the contract.
Closes#9736
Co-authored-by: Mohamed Chorfa <mohamed.chorfa@thalesgroup.com>
Ping previously dialled whatever host:port the caller asked for. Gate
each server's Ping handler on cluster membership: masters check the
topology, registered cluster nodes, and configured master peers; volume
servers only accept their seed/current masters; filers accept tracked
peer filers, the master-learned volume server set, and configured
masters.
Use address-indexed peer lookups to keep Ping target validation O(1):
- topology maintains a pb.ServerAddress -> *DataNode index alongside
the dc/rack/node tree, kept in sync from doLinkChildNode and
UnlinkChildNode plus the ip/port-rewrite branch in
GetOrCreateDataNode. GetTopology now returns nil on a detached
subtree instead of panicking, so the linkage hooks can no-op safely.
- vid_map tracks a refcount per volume-server address so
hasVolumeServer answers without scanning every vid location. The
add path skips empty-address entries the same way the delete path
already does, so a zero-value Location cannot leak a permanent
serverRefCount[""] bucket.
- masters reuse a cached master-address set from MasterClient instead
of walking the configured peer slice on every request.
- volume servers compare against a pre-built seed-master set and
protect currentMaster reads/writes with an RWMutex, fixing the
data race with the heartbeat goroutine. The seed slice is copied
on construction so external mutation cannot desync it from the
frozen lookup set.
- cluster.check drops the direct volume-to-volume sweep; volume
servers no longer carry a peer-volume list, and the note next to
the dropped probe is reworded to make clear that direct
volume-to-volume reachability is intentionally not validated by
this command.
Update the volume-server integration tests that drove Ping through the
new admission gate: success-path coverage now targets the master peer
(the only type a volume server tracks), and the unknown/unreachable
path asserts the InvalidArgument the gate now returns instead of the
old downstream dial error.
Mirror the same admission gate in the Rust volume server crate: a
seed-master HashSet built once at startup plus a tokio RwLock over the
heartbeat-tracked current master, both consulted in is_known_ping_target
on every Ping, with InvalidArgument returned for any target that isn't
a recognised master.
volume: require admin auth and refuse loopback endpoints in FetchAndWriteNeedle
Gate the RPC behind checkGrpcAdminAuth for parity with the rest of the
destructive volume-server RPCs, and reject cluster-internal remote S3
endpoints (loopback / link-local / IMDS / RFC 1918 / CGNAT) before
dialing. Pin the validated address against DNS rebinding by routing the
AWS SDK through an HTTP transport whose DialContext re-resolves the host
and re-applies the deny list on every dial, so an endpoint that resolves
to a public IP at validate-time and then flips to 127.0.0.1 at connect
time is refused. Operators that legitimately fetch from private hosts
can opt out with -volume.allowUntrustedRemoteEndpoints.
* Add volume dir tags to topology
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add preferred tag config for EC
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Prioritize EC destinations by tags
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add EC placement planner tag tests
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Refactor EC placement tests to reuse buildActiveTopology
Remove buildActiveTopologyWithDiskTags helper function and consolidate
tag setup inline in test cases. Tests now use UpdateTopology to apply
tags after topology creation, reusing the existing buildActiveTopology
function rather than duplicating its logic.
All tag scenario tests pass:
- TestECPlacementPlannerPrefersTaggedDisks
- TestECPlacementPlannerFallsBackWhenTagsInsufficient
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Consolidate normalizeTagList into shared util package
Extract normalizeTagList from three locations (volume.go,
detection.go, erasure_coding_handler.go) into new weed/util/tag.go
as exported NormalizeTagList function. Replace all duplicate
implementations with imports and calls to util.NormalizeTagList.
This improves code reuse and maintainability by centralizing
tag normalization logic.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add PreferredTags to EC config persistence
Add preferred_tags field to ErasureCodingTaskConfig protobuf with field
number 5. Update GetConfigSpec to include preferred_tags field in the
UI configuration schema. Add PreferredTags to ToTaskPolicy to serialize
config to protobuf. Add PreferredTags to FromTaskPolicy to deserialize
from protobuf with defensive copy to prevent external mutation.
This allows EC preferred tags to be persisted and restored across
worker restarts.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add defensive copy for Tags slice in DiskLocation
Copy the incoming tags slice in NewDiskLocation instead of storing
by reference. This prevents external callers from mutating the
DiskLocation.Tags slice after construction, improving encapsulation
and preventing unexpected changes to disk metadata.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add doc comment to buildCandidateSets method
Document the tiered candidate selection and fallback behavior. Explain
that for a planner with preferredTags, it accumulates disks matching
each tag in order into progressively larger tiers, emits a candidate
set once a tier reaches shardsNeeded, and finally falls back to the
full candidates set if preferred-tag tiers are insufficient.
This clarifies the intended semantics for future maintainers.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Apply final PR review fixes
1. Update parseVolumeTags to replicate single tag entry to all folders
instead of leaving some folders with nil tags. This prevents nil
pointer dereferences when processing folders without explicit tags.
2. Add defensive copy in ToTaskPolicy for PreferredTags slice to match
the pattern used in FromTaskPolicy, preventing external mutation of
the returned TaskPolicy.
3. Add clarifying comment in buildCandidateSets explaining that the
shardsNeeded <= 0 branch is a defensive check for direct callers,
since selectDestinations guarantees shardsNeeded > 0.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix nil pointer dereference in parseVolumeTags
Ensure all folder tags are initialized to either normalized tags or
empty slices, not nil. When multiple tag entries are provided and there
are more folders than entries, remaining folders now get empty slices
instead of nil, preventing nil pointer dereference in downstream code.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix NormalizeTagList to return empty slice instead of nil
Change NormalizeTagList to always return a non-nil slice. When all tags
are empty or whitespace after normalization, return an empty slice
instead of nil. This prevents nil pointer dereferences in downstream
code that expects a valid (possibly empty) slice.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add nil safety check for v.tags pointer
Add a safety check to handle the case where v.tags might be nil,
preventing a nil pointer dereference. If v.tags is nil, use an empty
string instead. This is defensive programming to prevent panics in
edge cases.
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add volume.tags flag to weed server and weed mini commands
Add the volume.tags CLI option to both the 'weed server' and 'weed mini'
commands. This allows users to specify disk tags when running the
combined server modes, just like they can with 'weed volume'.
The flag uses the same format and description as the volume command:
comma-separated tag groups per data dir with ':' separators
(e.g. fast:ssd,archive).
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
---------
Co-authored-by: Copilot <copilot@github.com>
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Add a version token on `GetState()`/`SetState()` RPCs for volume server states.
* Make state version a property ov `VolumeServerState` instead of an in-memory counter.
Also extend state atomicity to reads, instead of just writes.
* Boostrap persistent state for volume servers.
This PR implements logic load/save persistent state information for storages
associated with volume servers, and reporting state changes back to masters
via heartbeat messages.
More work ensues!
See https://github.com/seaweedfs/seaweedfs/issues/7977 for details.
* Block RPC operations writing to volume servers when maintenance mode is on.
* pb: add id field to Heartbeat message for stable volume server identification
This adds an 'id' field to the Heartbeat protobuf message that allows
volume servers to identify themselves independently of their IP:port address.
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* storage: add Id field to Store struct
Add Id field to Store struct and include it in CollectHeartbeat().
The Id field provides a stable volume server identity independent of IP:port.
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* topology: support id-based DataNode identification
Update GetOrCreateDataNode to accept an id parameter for stable node
identification. When id is provided, the DataNode can maintain its identity
even when its IP address changes (e.g., in Kubernetes pod reschedules).
For backward compatibility:
- If id is provided, use it as the node ID
- If id is empty, fall back to ip:port
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* volume: add -id flag for stable volume server identity
Add -id command line flag to volume server that allows specifying a stable
identifier independent of the IP address. This is useful for Kubernetes
deployments with hostPath volumes where pods can be rescheduled to different
nodes while the persisted data remains on the original node.
Usage: weed volume -id=node-1 -ip=10.0.0.1 ...
If -id is not specified, it defaults to ip:port for backward compatibility.
Fixes https://github.com/seaweedfs/seaweedfs/issues/7487
* server: add -volume.id flag to weed server command
Support the -volume.id flag in the all-in-one 'weed server' command,
consistent with the standalone 'weed volume' command.
Usage: weed server -volume.id=node-1 ...
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* topology: add test for id-based DataNode identification
Test the key scenarios:
1. Create DataNode with explicit id
2. Same id with different IP returns same DataNode (K8s reschedule)
3. IP/PublicUrl are updated when node reconnects with new address
4. Different id creates new DataNode
5. Empty id falls back to ip:port (backward compatibility)
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* pb: add address field to DataNodeInfo for proper node addressing
Previously, DataNodeInfo.Id was used as the node address, which worked
when Id was always ip:port. Now that Id can be an explicit string,
we need a separate Address field for connection purposes.
Changes:
- Add 'address' field to DataNodeInfo protobuf message
- Update ToDataNodeInfo() to populate the address field
- Update NewServerAddressFromDataNode() to use Address (with Id fallback)
- Fix LookupEcVolume to use dn.Url() instead of dn.Id()
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* fix: trim whitespace from volume server id and fix test
- Trim whitespace from -id flag to treat ' ' as empty
- Fix store_load_balancing_test.go to include id parameter in NewStore call
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* refactor: extract GetVolumeServerId to util package
Move the volume server ID determination logic to a shared utility function
to avoid code duplication between volume.go and rack.go.
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* fix: improve transition logic for legacy nodes
- Use exact ip:port match instead of net.SplitHostPort heuristic
- Update GrpcPort and PublicUrl during transition for consistency
- Remove unused net import
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* fix: add id normalization and address change logging
- Normalize id parameter at function boundary (trim whitespace)
- Log when DataNode IP:Port changes (helps debug K8s pod rescheduling)
Ref: https://github.com/seaweedfs/seaweedfs/issues/7487
* types packages is imported more than onece
* lazy-loading
* fix bugs
* fix bugs
* fix unit tests
* fix test error
* rename function
* unload ldb after initial startup
* Don't load ldb when starting volume server if ldbtimeout is set.
* remove uncessary unloadldb
* Update weed/command/server.go
Co-authored-by: Chris Lu <chrislusf@users.noreply.github.com>
* Update weed/command/volume.go
Co-authored-by: Chris Lu <chrislusf@users.noreply.github.com>
Co-authored-by: guol-fnst <goul-fnst@fujitsu.com>
Co-authored-by: Chris Lu <chrislusf@users.noreply.github.com>
* simplify a bit
* feat: volume: add "readBufSize" option to customize read optimization
* refactor : redbufSIze -> readBufferSize
* simplify a bit
* simplify a bit