LoadRemoteFile now takes dataFileAccessLock (so a live tier upload does
not race the heartbeat's DataBackend read). But load() also runs it, and
CommitCompact calls load() while already holding that lock, so reloading
a remote-tiered volume during a compaction commit re-enters the
non-reentrant lock and deadlocks.
Split the locked bodies out: swapDataBackendLocked and loadRemoteFileLocked
assume the caller holds dataFileAccessLock. load() uses loadRemoteFileLocked;
the public LoadRemoteFile keeps taking the lock for the live tier-upload
handler that does not hold it.
* fix(volume): avoid nil-deref when needle map loader errors
A corrupt .idx whose size is not a multiple of NeedleMapEntrySize sends
the read-only load path into NewSortedFileNeedleMap, which returns
(*SortedFileNeedleMap)(nil) when reverseWalkIndexFile rejects the file.
The multi-value assignment `v.nm, err = NewSortedFileNeedleMap(...)`
parks that typed-nil pointer in the v.nm NeedleMapper interface, so the
subsequent `v.nm != nil` guard still passes — and the post-load
MaxNeedleEnd structural check dispatches through the promoted mapMetric
accessor on a nil receiver, segfaulting the whole volume server at
load time.
Reset v.nm explicitly after every loader failure so the interface is
truly nil, and skip the MaxNeedleEnd check when err is non-nil since
the value would come from a partial walk anyway. NewLevelDbNeedleMap
has the same typed-nil-on-error shape and is fixed the same way.
* fix(volume): close indexFile when needle map load errors
Pre-fix the typed-nil v.nm path either leaked indexFile silently
(SortedFileNeedleMap.Close had a nil-receiver early return) or crashed
(LevelDbNeedleMap.Close had no such guard). With v.nm cleared to nil
on error, the defer cleanup no longer calls Close at all, so the
LoadCompactNeedleMap success-with-error path now also leaks indexFile.
Close indexFile explicitly on each loader error to keep ownership
balanced.
* trim comments
* fix(volume): reopen .idx writable after MarkVolumeWritable
When .vif has ReadOnly=true, load() opens .idx as O_RDONLY and builds a
SortedFileNeedleMap whose Put returns os.ErrInvalid. MarkVolumeWritable
only flipped noWriteOrDelete back to false and rewrote .vif, so writes
still failed at v.nm.Put. Reopen .idx in O_RDWR and rebuild v.nm in its
writable form (in-memory or leveldb small/medium/large) before flipping
the flag.
Mirror the same fix in seaweed-volume: the Rust load path leaves
CompactNeedleMap/RedbNeedleMap with no idx_file writer when the volume
boots read-only, so post-MarkVolumeWritable puts silently succeeded
in-memory only and were lost on the next restart. set_writable now
reattaches an append-mode writer when one is missing.
* fix(volume): keep old needle map until replacement is built; defer writable flag
Go: build the writable needle map into a local before swapping. A
construction failure now leaves v.nm pointing at the original
SortedFileNeedleMap so MarkVolumeWritable can roll back, instead of
stranding the volume with v.nm == nil.
Rust: attach the .idx writer before flipping no_write_or_delete to
false. A transient open/metadata failure used to leave the volume
marked writable with no writer attached, and subsequent puts would
silently skip the on-disk append.
2026-05-18 20:51:04 -07:00
Chris LuGitHubgemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>
* fix(volume): don't fatal on missing .idx for remote-tiered volume
A .vif left behind without its .idx (orphaned by a crashed move, partial
copy, or hand-edit) would trip glog.Fatalf in checkIdxFile and take the
whole volume server down on boot, killing every healthy volume on it
too. For remote-tiered volumes treat it as a per-volume load error so
the server can come up and the operator can clean up the stray .vif.
Refs #9331.
* fix(balance): skip remote-tiered volumes in admin balance detection
The admin/worker balance detector had no equivalent of the shell-side
guard ("does not move volume in remote storage" in
command_volume_balance.go), so it scheduled moves on remote-tiered
volumes. The "move" copies .idx/.vif to the destination and then calls
Volume.Destroy on the source, which calls backendStorage.DeleteFile —
deleting the remote object the destination's new .vif now points at.
Populate HasRemoteCopy on the metrics emitted by both the admin
maintenance scanner and the worker's master poll, then drop those
volumes at the top of Detection.
Fixes#9331.
* Apply suggestion from @gemini-code-assist[bot]
Co-authored-by: gemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>
* fix(volume): keep remote data on volume-move-driven delete
The on-source delete after a volume move (admin/worker balance and
shell volume.move) ran Volume.Destroy with no way to opt out of the
remote-object cleanup. Volume.Destroy unconditionally calls
backendStorage.DeleteFile for remote-tiered volumes, so a successful
move would copy .idx/.vif to the destination and then nuke the cloud
object the destination's new .vif was already pointing at.
Add VolumeDeleteRequest.keep_remote_data and plumb it through
Store.DeleteVolume / DiskLocation.DeleteVolume / Volume.Destroy. The
balance task and shell volume.move set it to true; the post-tier-upload
cleanup of other replicas and the over-replication trim in
volume.fix.replication also set it to true since the remote object is
still referenced. Other real-delete callers keep the default. The
delete-before-receive path in VolumeCopy also sets it: the inbound copy
carries a .vif that may reference the same cloud object as the
existing volume.
Refs #9331.
* test(storage): in-process remote-tier integration tests
Cover the four operations the user is most likely to run against a
cloud-tiered volume — balance/move, vacuum, EC encode, EC decode — by
registering a local-disk-backed BackendStorage as the "remote" tier and
exercising the real Volume / DiskLocation / EC encoder code paths.
Locks in:
- Destroy(keepRemoteData=true) preserves the remote object (move case)
- Destroy(keepRemoteData=false) deletes it (real-delete case)
- Vacuum/compact on a remote-tier volume never deletes the remote object
- EC encode requires the local .dat (callers must download first)
- EC encode + rebuild round-trips after a tier-down
Tests run in-process and finish in under a second total — no cluster,
binary, or external storage required.
* fix(rust-volume): keep remote data on volume-move-driven delete
Mirror the Go fix in seaweed-volume: plumb keep_remote_data through
grpc volume_delete → Store.delete_volume → DiskLocation.delete_volume
→ Volume.destroy, and skip the s3-tier delete_file call when the flag
is set. The pre-receive cleanup in volume_copy passes true for the
same reason as the Go side: the inbound copy carries a .vif that may
reference the same cloud object as the existing volume.
The Rust loader already warns rather than fataling on a stray .vif
without an .idx (volume.rs load_index_inmemory / load_index_redb), so
no counterpart to the Go fatal-on-missing-idx fix is needed.
Refs #9331.
* fix(volume): preserve remote tier on IO-error eviction; fix EC test target
Two review nits:
- Store.MaybeAddVolumes' periodic cleanup pass deleted IO-errored
volumes with keepRemoteData=false, so a transient local fault on a
remote-tiered volume would also nuke the cloud object. Track the
delete reason via a parallel slice and pass keepRemoteData=v.HasRemoteFile()
for IO-error evictions; TTL-expired evictions still pass false.
- TestRemoteTier_ECEncodeDecode_AfterDownload deleted shards 0..3 but
called them "parity" — by the klauspost/reedsolomon convention shards
0..DataShardsCount-1 are data and DataShardsCount..TotalShardsCount-1
are parity. Switch the loop to delete the parity range so the
intent matches the indices.
---------
Co-authored-by: gemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>
* fix(volume): cap leveldb OpenFilesCacheCapacity per index DB (#9139)
The leveldb opt.Options for NeedleMapLevelDb / Medium / Large never
set OpenFilesCacheCapacity, so each leveldb instance defaulted to
goleveldb's 500. On servers with thousands of volumes, that ceiling
stacks across DBs and exhausts even high ulimits, starving WAL
rotation:
failed to write leveldb: open .../000006.log: too many open files
CompactionTableSizeMultiplier=10 already keeps the SST count low,
so a small per-DB cache is sufficient. Cap at 16 / 32 / 64 for the
small / medium / large variants so per-DB FD usage is bounded.
* storage: hoist leveldb FD-cap values into named constants
Per review feedback: replace the inline 16/32/64 literals with
LevelDb{,Medium,Large}OpenFilesCacheCapacity, and move the rationale
(why 500 is too high per-DB on busy servers, what the tradeoff is)
into a package-level comment so future readers see the memory vs.
performance picture at the constant declaration instead of inline.
* fix(volume): keep vacuum running past dangling .idx entries
Vacuum compaction aborted entirely on the first .idx entry whose offset
pointed past the end of the .dat file, surfacing as `cannot hydrate
needle from file: EOF` and stalling progress on every other volume.
In both Go and Rust:
- During compaction, skip an unreadable needle and continue. The bytes
it pointed at were already unreachable via reads, so dropping the
index reference makes the post-vacuum volume consistent. Real EIO
still bails out so a disk fault is not silently papered over.
- At volume load, do a single linear scan of the .idx and confirm
every (offset + actual size) fits inside .dat. The pre-existing
integrity check only looked at the last 10 entries, so deeper
corruption (e.g. left over from a crashed batched write) went
undetected and only surfaced later as a vacuum EOF. A failure now
marks the volume read-only at load time so an operator can react.
Refs #8928
* fix(volume): only skip permanent-corruption needle reads during vacuum
Address PR review feedback (gemini-code-assist + coderabbit):
The original patch skipped any non-EIO read failure, which would silently
drop needles on transient errors — Windows hardware bad-sector errors
(ERROR_CRC etc.) never surface as syscall.EIO; tiered-storage network
timeouts and EROFS would also slip through and shrink the volume.
Switch to an explicit whitelist of permanent-corruption shapes:
- Add needle.ErrorCorrupted sentinel and wrap CRC and "index out of
range" errors with %w so callers can match via errors.Is.
- copyDataBasedOnIndexFile now skips only when the read failure is
io.EOF, io.ErrUnexpectedEOF, ErrorSizeMismatch, ErrorSizeInvalid,
or ErrorCorrupted. Anything else (real disk faults, environmental
errors, Windows hardware codes) aborts the compaction so an
operator notices.
- Mirror the same whitelist in the Rust volume server, matching on
io::ErrorKind::UnexpectedEof and the NeedleError corruption variants
(SizeMismatch, CrcMismatch, IndexOutOfRange, TailTooShort).
Also add `defer v.Close()` in TestVerifyIndexFitsInDat so Windows
t.TempDir() cleanup can release the .dat/.idx handles.
Refs #8928
* fix(volume): wrap entry-not-found size-mismatch with ErrorSizeMismatch
Address PR review: the fallback branch in ReadBytes returned an
unwrapped fmt.Errorf, so isSkippableNeedleReadError (and any caller
using errors.Is(..., ErrorSizeMismatch)) could not match it. Wrap
with %w so the whitelist applies, while leaving the existing direct
sentinel return for the OffsetSize==4 / offset<MaxPossibleVolumeSize
retry path unchanged so ReadData's `err == ErrorSizeMismatch` retry
still triggers.
Refs #8928
* fix(volume): integrate dangling-idx check into existing index load walk
Address PR review (gemini-code-assist, medium): the structural .idx
check used to do a second linear scan of the index file at every volume
load, doubling the disk-I/O cost on servers managing many volumes.
Track the largest (offset + actual size) seen during the existing
needle-map load walks (`LoadCompactNeedleMap`, `NewLevelDbNeedleMap`,
`NewSortedFileNeedleMap`'s `newNeedleMapMetricFromIndexFile`,
`DoOffsetLoading`) on a new `MaximumNeedleEnd` field on `mapMetric`,
exposed as `MaxNeedleEnd()` on the NeedleMapper interface.
`volume.load()` then compares `nm.MaxNeedleEnd()` to the .dat size
after the load is complete — pure numeric comparison, no extra I/O.
The standalone `verifyIndexFitsInDat` helper and its caller in
`CheckVolumeDataIntegrity` are removed; the test that used to drive
the helper directly now exercises the new path via
`LoadCompactNeedleMap`.
Mirror the same change in the Rust volume server: track
`max_needle_end` on `NeedleMapMetric`, expose via `max_needle_end()`
on `CompactNeedleMap`, `RedbNeedleMap`, and the `NeedleMap` enum.
The Rust load walk already happens in `load_from_idx` for both map
kinds, so the structural check becomes free.
Refs #8928
* Process .ecj deletions during EC decode and vacuum decoded volume (#8798)
When decoding EC volumes back to normal volumes, deletions recorded in
the .ecj journal were not being applied before computing the dat file
size or checking for live needles. This caused the decoded volume to
include data for deleted files and could produce false positives in the
all-deleted check.
- Call RebuildEcxFile before HasLiveNeedles/FindDatFileSize in
VolumeEcShardsToVolume so .ecj deletions are merged into .ecx first
- Vacuum the decoded volume after mounting in ec.decode to compact out
deleted needle data from the .dat file
- Add integration tests for decoding with non-empty .ecj files
* storage: add offline volume compaction helper
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* ec: compact decoded volumes before deleting shards
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* ec: address PR review comments
- Fall back to data directory for .ecx when idx directory lacks it
- Make compaction failure non-fatal during EC decode
- Remove misleading "buffer: 10%" from space check error message
* ec: collect .ecj from all shard locations during decode
Each server's .ecj only contains deletions for needles whose data
resides in shards held by that server. Previously, sources with no
new data shards to contribute were skipped entirely, losing their
.ecj deletion entries. Now .ecj is always appended from every shard
location so RebuildEcxFile sees the full set of deletions.
* ec: add integration tests for .ecj collection during decode
TestEcDecodePreservesDeletedNeedles: verifies that needles deleted
via VolumeEcBlobDelete are excluded from the decoded volume.
TestEcDecodeCollectsEcjFromPeer: regression test for the fix in
collectEcShards. Deletes a needle only on a peer server that holds
no new data shards, then verifies the deletion survives decode via
.ecj collection.
* ec: address review nits in decode and tests
- Remove double error wrapping in mountDecodedVolume
- Check VolumeUnmount error in peer ecj test
- Assert 404 specifically for deleted needles, fail on 5xx
---------
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix: Fail fast when initializing volume with Version 0
* Fix: Fail fast when loading unsupported volume version (e.g. 0 or 4)
* Refactor: Use IsSupportedVersion helper function for version validation
* Add 'weed mini' command for S3 beginners and small/dev use cases
This new command simplifies starting SeaweedFS by combining all components
in one process with optimized settings for development and small deployments.
Features:
- Starts master, volume, filer, S3, WebDAV, and admin in one command
- Volume size limit: 64MB (optimized for small files)
- Volume max: 0 (auto-configured based on free disk space)
- Pre-stop seconds: 1 (faster shutdown for development)
- Master peers: none (single master mode by default)
- Includes admin UI with one worker for maintenance tasks
- Clean, user-friendly startup message with all endpoint URLs
Usage:
weed mini # Use default temp directory
weed mini -dir=/data # Custom data directory
This makes it much easier for:
- Developers getting started with SeaweedFS
- Testing and development workflows
- Learning S3 API with SeaweedFS
- Small deployments that don't need complex clustering
* Change default volume server port to 9340 to avoid popular port 8080
* Fix nil pointer dereference by initializing all required volume server fields
Added missing VolumeServerOptions field initializations:
- id, publicUrl, diskType
- maintenanceMBPerSecond, ldbTimeout
- concurrentUploadLimitMB, concurrentDownloadLimitMB
- pprof, idxFolder
- inflightUploadDataTimeout, inflightDownloadDataTimeout
- hasSlowRead, readBufferSizeMB
This resolves the panic that occurred when starting the volume server.
* Fix multiple nil pointer dereferences in mini command
Added missing field initializations for:
- Master options: raftHashicorp, raftBootstrap, telemetryUrl, telemetryEnabled
- Filer options: filerGroup, saveToFilerLimit, concurrentUploadLimitMB,
concurrentFileUploadLimit, localSocket, showUIDirectoryDelete,
downloadMaxMBps, diskType, allowedOrigins, exposeDirectoryData, tusBasePath
- Volume options: id, publicUrl, diskType, maintenanceMBPerSecond, ldbTimeout,
concurrentUploadLimitMB, concurrentDownloadLimitMB, pprof, idxFolder,
inflightUploadDataTimeout, inflightDownloadDataTimeout, hasSlowRead, readBufferSizeMB
- WebDAV options: tlsPrivateKey, tlsCertificate, filerRootPath
- Admin options: master
These initializations are required to avoid runtime panics when starting components.
* Fix remaining S3 option nil pointers in mini command
* Update mini command: 256MB volume size and add S3 access instructions for beginners
* mini: set default master.volumeSizeLimitMB to 128MB and update help/banner text
* mini: shorten S3 help text to a concise pointer to docs/Admin UI
* mini: remove duplicated component bullet list, use concise sentence
* mini: tidy help alignment and update example usage
* mini: default -dir to current directory
* mini: load initial S3 credentials from env and write IAM config
* mini: use AWS env vars for initial S3 creds; instruct to create via Admin UI if absent
* Improve startup synchronization with channel-based coordination
- Replace fragile time.Sleep delays with robust channel-based synchronization
- Implement proper service dependency ordering (Master → Volume → Filer → S3/WebDAV/Admin)
- Add sync.WaitGroup for goroutine coordination
- Add startup readiness logging for better visibility
- Implement 10-second timeout for admin server startup
- Remove arbitrary sleep delays for faster, more reliable startup
- Services now start deterministically based on dependencies, not timing
This makes the startup process more reliable and eliminates race conditions on slow systems or under load.
* Refactor service startup logic for better maintainability
Extract service startup into dedicated helper functions:
- startMiniServices(): Orchestrates all service startup with dependency coordination
- startServiceWithCoordination(): Starts services with readiness signaling
- startServiceWithoutReady(): Starts services without readiness signaling
- startS3Service(): Encapsulates S3 initialization logic
Benefits:
- Reduced code duplication in runMini()
- Clearer separation of concerns
- Easier to add new services or modify startup sequence
- More testable code structure
- Improved readability with explicit service names and logging
* Remove unused serviceStartupInfo struct type
- Delete the serviceStartupInfo struct that was defined but never used
- Improves code clarity by removing dead code
- All service startup is now handled directly by helper functions
* Preserve existing IAM config file instead of truncating
- Use os.Stat to check if IAM config file already exists
- Only create and write configuration if file doesn't exist
- Log appropriate messages for each case:
* File exists: skip writing, preserve existing config
* File absent: create with os.OpenFile and write new config
* Stat error: log error without overwriting
- Set *miniIamConfig only when new file is successfully created
- Use os.O_CREATE|os.O_WRONLY flags for safe file creation
- Handles file operations with proper error checking and cleanup
* Fix CodeQL security issue: prevent logging of sensitive S3 credentials
- Add createdInitialIAM flag to track when initial IAM config is created from env vars
- Set flag in startS3Service() when new IAM config is successfully written
- Update welcome message to inform user of credential creation without exposing secrets
- Print only the username (mini) and config file location to user
- Never print access keys or secret keys in clear text
- Maintain security while keeping user informed of what was created
- Addresses CodeQL finding: Clear-text logging of sensitive information
* Fix three code review issues in weed mini command
1. Fix deadlock in service startup coordination:
- Run blocking service functions (startMaster, startFiler, etc.) in separate goroutines
- This allows readyChan to be closed and prevents indefinite blocking
- Services now start concurrently instead of sequentially blocking the coordinator
2. Use shared grace.StartDebugServer for consistency:
- Replace inline debug server startup with grace.StartDebugServer
- Improves code consistency with other commands (master, filer, etc.)
- Removes net/http import which is no longer needed
3. Simplify IAM config file cleanup with defer:
- Use 'defer f.Close()' instead of multiple f.Close() calls
- Ensures file is closed regardless of which code path is taken
- Improves robustness and code clarity
* fmt
* Fix: Remove misleading 'service is ready' logs
The previous fix removed 'go' from service function calls but left misleading
'service is ready' log messages. The service helpers now correctly:
- Call fn() directly (blocking) instead of 'go fn()' (non-blocking)
- Remove the 'service is ready' message that was printed before the service
actually started running
- Services run as blocking goroutines within the coordinator goroutine,
which keeps them alive while the program runs
- The readiness channels still work correctly because they're closed when
the coordinator finishes waiting for dependencies
* Update mini.go
* Fix four code review issues in weed mini command
1. Use restrictive file permissions (0600) for IAM config:
- Changed from 0644 to 0600 when creating iam_config.json
- Prevents world-readable access to sensitive AWS credentials
- Protects AWS_ACCESS_KEY_ID and AWS_SECRET_ACCESS_KEY
2. Remove unused sync.WaitGroup:
- Removed WaitGroup that was never waited on
- All services run as blocking goroutines in the coordinator
- Main goroutine blocks indefinitely with select{}
- Removes unnecessary complexity without changing behavior
3. Merge service startup helper functions:
- Combined startServiceWithCoordination and startServiceWithoutReady
- Made readyChan optional (nil for services without readiness signaling)
- Reduces code duplication and improves maintainability
- Both services now use single startServiceWithCoordination function
4. Fix admin server readiness check:
- Removed misleading timeout channel that never closed at startup
- Replaced with simple 2-second sleep before worker startup
- startAdminServer() blocks indefinitely, so channel would only close on shutdown
- Explicit sleep is clearer about the startup coordination intent
* Fix three code quality issues in weed mini command
1. Define volume configuration as named constants:
- Added miniVolumeMaxDataVolumeCounts = "0"
- Added miniVolumeMinFreeSpace = "1"
- Added miniVolumeMinFreeSpacePercent = "1"
- Removed local variable assignments in Volume startup
- Improves maintainability and documents configuration intent
2. Fix deadlock in startServiceWithCoordination:
- Changed from 'defer close(readyChan)' with blocking fn() to running fn() in goroutine
- Close readyChan immediately after launching service goroutine
- Prevents deadlock where fn() never returns, blocking defer execution
- Allows dependent services to start without waiting for blocking call
3. Improve admin server readiness check:
- Replaced fixed 2-second sleep with polling the gRPC port
- Polls up to 20 times (10 seconds total) with 500ms intervals
- Uses net.DialTimeout to check if port is available
- Properly handles IPv6 addresses using net.JoinHostPort
- Logs progress and warnings about connection status
- More robust than sleep against server startup timing variations
4. Add net import for network operations (IPv6 support)
Also fixed IAM config file close error handling to properly check error
from f.Close() and log any failures, preventing silent data loss on NFS.
* Document environment variable setup for S3 credentials
Updated welcome message to explain two ways to create S3 credentials:
1. Environment variables (recommended for quick setup):
- Set AWS_ACCESS_KEY_ID and AWS_SECRET_ACCESS_KEY
- Run 'weed mini -dir=/data'
- Creates initial 'mini' user credentials automatically
2. Admin UI (for managing multiple users and policies):
- Open http://localhost:23646 (Admin UI)
- Add identities to create new S3 credentials
This gives users clear guidance on the easiest way to get started with S3
credentials while also explaining the more advanced option for multiple users.
* Print welcome message after all services are running
Moved the welcome message printing from immediately after startMiniServices()
to after all services have been started and are ready. This ensures users see
the welcome message only after startup is complete, not mixed with startup logs.
Changes:
- Extract welcome message logic into printWelcomeMessage() function
- Call printWelcomeMessage() after startMiniServices() completes
- Change message from 'are starting' to 'are running and ready to use'
- This provides cleaner startup output without interleaved logs
* Wait for all services to complete before printing welcome message
The welcome message should only appear after all services are fully running and
the worker is connected. This prevents the message from appearing too early before
startup logs complete.
Changes:
- Pass allServicesReady channel through startMiniServices()
- Add adminReadyChan to track when admin/worker startup completes
- Signal allServicesReady when admin service is fully ready
- Wait for allServicesReady in runMini() before printing welcome message
- This ensures clean output: startup logs first, then welcome message once ready
Now the user sees all startup activity, then a clear welcome message when
everything is truly ready to use.
* Fix welcome message timing: print after worker is fully started
The welcome message was printing too early because allServicesReady was being
closed when the Admin service goroutine started, not when it actually completed.
The Admin service launches startMiniAdminWithWorker() which is a blocking call
that doesn't return until the worker is fully connected.
Now allServicesReady is passed through to startMiniWorker() which closes it
after the worker successfully starts and connects to the admin server.
This ensures the welcome message only appears after:
- Master is ready
- Volume server is ready
- Filer is ready
- S3 service is ready
- WebDAV service is ready
- Admin server is ready
- Worker is connected and running
All startup logs appear first, then the clean welcome message at the end.
* Wait for S3 and WebDAV services to be ready before showing welcome message
The welcome message was printing before S3 and WebDAV servers had fully
initialized. Now the readiness flow is:
1. Master → ready
2. Volume → ready
3. Filer → ready
4. S3 → ready (signals s3ReadyChan)
5. WebDAV → ready (signals webdavReadyChan)
6. Admin/Worker → starts, then waits for both S3 and WebDAV
7. Welcome message prints (all services truly ready)
Changes:
- Add s3ReadyChan and webdavReadyChan to service startup
- Pass S3 and WebDAV ready channels through to Admin service
- Admin/Worker waits for both S3 and WebDAV before closing allServicesReady
- This ensures welcome message appears only when all services are operational
* Admin service should wait for Filer, S3, and WebDAV to be ready
Admin service depends on Filer being operational since it uses the filer
for credential storage. It also makes sense to wait for S3 and WebDAV
since they are user-facing services that should be ready before Admin.
Updated dependencies:
- Admin now waits for: Master, Filer, S3, WebDAV
- This ensures all critical services are operational before Admin starts
- Welcome message will print only after all services including Admin are ready
* Add initialization delay for S3 and WebDAV services
S3 and WebDAV servers need extra time to fully initialize and start listening
after their service functions are launched. Added a 1-second delay after
launching S3 and WebDAV goroutines before signaling readiness.
This ensures the welcome message doesn't print until both services have
emitted their startup logs and are actually serving requests.
* Increase service initialization wait times for more reliable startup
- Increase S3 and WebDAV initialization delay from 1s to 2s to ensure they emit startup logs before welcome message
- Add 1s initialization delay for Filer to ensure it's listening
- Increase admin gRPC polling timeout from 10s to 20s to ensure admin server is fully ready
- This ensures welcome message prints only after all services are fully initialized and ready to accept requests
* Increase service wait time to 10 seconds for reliable startup
All services now wait 10 seconds after launching to ensure they are fully initialized and ready before signaling readiness to dependent services. This ensures the welcome message prints only after all services have fully started.
* Replace fixed 10s delay with intelligent port polling for service readiness
Instead of waiting a fixed 10 seconds for each service, now polls the service
port to check if it's actually accepting connections. This eliminates unnecessary
waiting and allows services to signal readiness as soon as they're ready.
- Polls each service port with up to 30 attempts (6 seconds total)
- Each attempt waits 200ms before retrying
- Stops polling immediately once service is ready
- Falls back gracefully if service is unknown
- Significantly faster startup sequence while maintaining reliability
* Replace channel-based coordination with HTTP pinging for service readiness
Instead of using channels to coordinate service startup, now uses HTTP GET requests
to ping each service endpoint to check if it's ready to accept connections.
Key changes:
- Removed all readiness channels (masterReadyChan, volumeReadyChan, etc.)
- Simplified startMiniServices to use sequential HTTP polling for each service
- startMiniService now just starts the service with logging
- waitForServiceReady uses HTTP client to ping service endpoints (max 6 seconds)
- waitForAdminServerReady uses HTTP GET to check admin server availability
- startMiniAdminWithWorker and startMiniWorker simplified without channel parameters
Benefits:
- Cleaner, more straightforward code
- HTTP pinging is more reliable than TCP port probing
- Services signal readiness through their HTTP endpoints
- Eliminates channel synchronization complexity
* log level
* Remove overly specific comment from volume size limit in welcome message
The '(good for small files)' comment is too limiting. The 128MB volume size
limit works well for general use cases, not just small files. Simplified the
message to just show the value.
* Ensure allServicesReady channel is always closed via defer
Add 'defer close(allServicesReady)' at the start of startMiniAdminWithWorker
to guarantee the channel is closed on ALL exit paths (normal and error).
This prevents the caller waiting on <-allServicesReady from ever hanging,
while removing the explicit close() at the successful end prevents panic
from double-close.
This makes the code more robust by:
- Guaranteeing channel closure even if worker setup fails
- Eliminating the possibility of caller hanging on errors
- Following Go defer patterns for resource cleanup
* Enhance health check polling for more robust service coordination
The service startup already uses HTTP health checks via waitForServiceReady()
to verify services are actually accepting connections. This commit improves
the health check implementation:
Changes:
- Elevated success logging to Info level so users see when services become ready
- Improved error messages to clarify that health check timeouts are not fatal
- Services continue startup even if health checks timeout (they may still work)
- Consistent handling of health check results across all services
This provides better visibility into service startup while maintaining the
existing robust coordination via HTTP pinging rather than just TCP port checks.
* Implement stricter error handling for robust mini server startup
Apply all PR review feedback to ensure the mini server fails fast and clearly
when critical components cannot start:
Changes:
1. Remove redundant miniVolumeMinFreeSpacePercent constant
- Simplified util.MustParseMinFreeSpace() call to use single parameter
2. Make service readiness checks fatal errors:
- Master, Volume, Filer, S3, WebDAV health check failures now return errors
- Prevents partially-functional servers from running
- Caller can handle errors gracefully instead of continuing with broken state
3. Make admin server readiness fatal:
- Admin gRPC availability is critical for worker startup
- Use glog.Fatalf to terminate with clear error message
4. Improve IAM config error handling:
- Treat all file operation failures (stat, open, write, close) as fatal
- Prevents silent failures in S3 credential setup
- User gets immediate feedback instead of authentication issues later
5. Use glog.Fatalf for critical worker setup errors:
- Failed to create worker directory, task directories, or worker instance
- Failed to create admin client or start worker
- Ensures mini server doesn't run in broken state
This ensures deterministic startup: services succeed completely or fail with
clear, actionable error messages for the user.
* Make health checks non-fatal for graceful degradation and improve IAM file handling
Address PR feedback to make the mini command more resilient for development:
1. Make health check failures non-fatal
- Master, Volume, Filer, S3, WebDAV health checks now log warnings but allow startup
- Services may still work even if health check endpoints aren't immediately available
- Aligns with intent of a dev-focused tool that should be forgiving of timing issues
- Only prevents startup if startup coordination or critical errors occur
2. Improve IAM config file handling
- Refactored to guarantee file is always closed using separate error variables
- Opens file once and handles write/close errors independently
- Maintains strict error handling while improving code clarity
- All file operation failures still cause fatal errors (as intended)
This makes startup more graceful while maintaining critical error handling for
fundamental failures like missing directories or configuration errors.
* Fix code quality issues in weed mini command
- Fix pointer aliasing: use value copy (*miniBindIp = *miniIp) instead of pointer assignment
- Remove misleading error return from waitForServiceReady() function
- Simplify health check callers to call waitForServiceReady() directly without error handling
- Remove redundant S3 option assignments already set in init() block
- Remove unused allServicesReady parameter from startMiniWorker() function
* Refactor welcome message to use template strings and add startup delay
- Convert welcome message to constant template strings for cleaner code
- Separate credentials instructions into dedicated constant
- Add 500ms delay after worker startup to allow full initialization before welcome message
- Improves output cleanliness by avoiding log interleaving with welcome message
* Fix code style issues in weed mini command
- Fix indentation in IAM config block (lines 424-432) to align with surrounding code
- Remove unused adminServerDone channel that was created but never read
* Address code review feedback for robustness and resource management
- Use defer f.Close() for IAM file handling to ensure file is closed in all code paths, preventing potential file descriptor leaks
- Use 127.0.0.1 instead of *miniIp for service readiness checks to ensure checks always target localhost, improving reliability in environments with firewalls or complex network configurations
- Simplify error handling in waitForAdminServerReady by using single error return instead of separate write/close error variables
* Fix function declaration formatting
- Separate closing brace of startS3Service from startMiniAdminWithWorker declaration with blank line
- Move comment to proper position above function declaration
- Run gofmt for consistent formatting
* Fix IAM config pointer assignment when file already exists
- Add missing *miniIamConfig = iamPath assignment when IAM config file already exists
- Ensures S3 service is properly pointed to the existing IAM configuration
- Retains logging to inform user that existing configuration is being preserved
* Improve pointer assignments and worker synchronization
- Simplify grpcPort and dataDir pointer assignments by directly dereferencing and assigning values instead of taking address of local variables
- Replace time.Sleep(500ms) with proper TCP-based polling to wait for worker gRPC port readiness
- Add waitForWorkerReady function that polls worker's gRPC port with max 6-second timeout
- Add net package import for TCP connection checks
- Improves code idiomaticity and synchronization robustness
* Refactor and simplify error handling for maintainability
- Remove unused error return from startMiniServices (always returned nil)
- Update runMini caller to not expect error from startMiniServices
- Refactor init() into component-specific helper functions:
* initMiniCommonFlags() for common options
* initMiniMasterFlags() for master server options
* initMiniFilerFlags() for filer server options
* initMiniVolumeFlags() for volume server options
* initMiniS3Flags() for S3 server options
* initMiniWebDAVFlags() for WebDAV server options
* initMiniAdminFlags() for admin server options
- Significantly improves code readability and maintainability
- Each component's flags are now in dedicated, focused functions
2025-12-21 11:10:01 -08:00
Chris LuGitHubgemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>Copilotgemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>
* 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>
* optimiz vacuuming volume
* fix bugx
* rename parameters
* fix conflict
* change copyDataBasedOnIndexFile to an instance method
* close needlemap
* optimiz commiting Vacuum volume for leveldb index
* fix bugs
* fix leveldb loading bugs
* refactor
* fix leveldb loading bug
* add leveldb recovery
* add test case for levelDB
* modify test case to cover all the new branches
* use one tmpNm instead of two instances
* refactor
* refactor
* move setWatermark to the end
* add test for watermark and updating leveldb
* fix error logic
* refactor, add test
* check nil before close needlemapeer
add test case
fix metric bug
* add tests, fix bugs
* adjust log level
remove wrong test case
refactor
* avoid duplicate updating metric for leveldb index