mirror of
https://github.com/seaweedfs/seaweedfs.git
synced 2026-09-20 13:30:46 +02:00
* fix(mount): remove fid pool to stop master over-allocating volumes
The writeback-cache fid pool pre-allocated file IDs with
ExpectedDataSize = ChunkSizeLimit (typically 8+ MB). The master's
PickForWrite charges count * expectedDataSize against the volume's
effectiveSize, so a full pool refill could charge hundreds of MB
against a single volume before any bytes were actually written.
That tripped RecordAssign's hard-limit path and eagerly removed
volumes from writable, causing the master to grow new volumes
even when the real data being written was tiny.
Drop the pool entirely. Every chunk upload goes through
UploadWithRetry -> AssignVolume with no ExpectedDataSize hint,
letting the master fall back to the 1 MB default estimate. The
mount->filer grpc connection is already cached in pb.WithGrpcClient
(non-streaming mode), so per-chunk AssignVolume is a unary RPC
over an existing HTTP/2 stream, not a full dial. Path-based
filer.conf storage rules now apply to mount chunk assigns again,
which the pool had to skip.
Also remove the now-unused operation.UploadWithAssignFunc and its
AssignFunc type.
* fix(upload): populate ExpectedDataSize from actual chunk bytes
UploadWithRetry already buffers the full chunk into `data` before
calling AssignVolume, so the real size is known. Previously the
assign request went out with ExpectedDataSize=0, making the master
fall back to the 1 MB DefaultNeedleSizeEstimate per fid — same
over-reservation symptom the pool had, just smaller per call.
Stamp ExpectedDataSize = len(data) before the assign RPC when the
caller hasn't already set it. This covers mount chunk uploads,
filer_copy, filersink, mq/logstore, broker_write, gateway_upload,
and nfs — all the UploadWithRetry paths.
* fix(assign): pass real ExpectedDataSize at every assign call site
After removing the mount fid pool, per-chunk AssignVolume calls went
out with ExpectedDataSize=0, making the master fall back to its 1 MB
DefaultNeedleSizeEstimate. That's still an over-estimate for small
writes. Thread the real payload size through every remaining assign
site so RecordAssign charges effectiveSize accurately and stops
prematurely marking volumes full.
- filer: assignNewFileInfo now takes expectedDataSize and stamps it
on both primary and alternate VolumeAssignRequests. Callers pass:
- SSE data-to-chunk: len(data)
- copy manifest save: len(data)
- streamCopyChunk: srcChunk.Size
- TUS sub-chunk: bytes read
- saveAsChunk (autochunk/manifestize): 0 (small, size unknown
until the reader is drained; master uses 1 MB default)
- filer gRPC remote fetch-and-write: ExpectedDataSize = chunkSize
after the adaptive chunkSize is computed.
- ChunkedUploadOption.AssignFunc gains an expectedDataSize parameter;
upload_chunked.go passes the buffered dataSize at the call site.
S3 PUT assignFunc stamps it on the AssignVolumeRequest.
- S3 copy: assignNewVolume / prepareChunkCopy take expectedDataSize;
all seven call sites pass the source chunk's Size.
- operation.SubmitFiles / FilePart.Upload: derive per-fid size from
FileSize (average for batched requests, real per-chunk size for
sequential chunk assigns).
- benchmark: pass fileSize.
- filer append-to-file: pass len(data).
* fix(assign): thread size through SaveDataAsChunkFunctionType
The saveAsChunk path (autochunk, filer_copy, webdav, mount) ran
AssignVolume before the reader was drained, so it had to pass
ExpectedDataSize=0 and fall back to the master's 1 MB default.
Add an expectedDataSize parameter to SaveDataAsChunkFunctionType.
- mergeIntoManifest already has the serialized manifest bytes, so
it passes uint64(len(data)) directly.
- Mount's saveDataAsChunk ignores the parameter because it uses
UploadWithRetry, which already stamps len(data) on the assign
after reading the payload.
- webdav and filer_copy saveDataAsChunk follow the same UploadWithRetry
path and also ignore the hint.
- Filer's saveAsChunk (used for manifestize) plumbs the value to
assignNewFileInfo so manifest-chunk assigns get a real size.
Callers of saveFunc-as-value (weedfs_file_sync, dirty_pages_chunked)
pass the chunk size they're about to upload.
570 lines
21 KiB
Go
570 lines
21 KiB
Go
package mount
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import (
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"context"
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"math/rand/v2"
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"os"
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"path"
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"path/filepath"
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"sync"
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"sync/atomic"
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"time"
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"github.com/seaweedfs/go-fuse/v2/fuse"
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"google.golang.org/grpc"
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"github.com/seaweedfs/seaweedfs/weed/cluster"
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"github.com/seaweedfs/seaweedfs/weed/filer"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/mount/meta_cache"
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"github.com/seaweedfs/seaweedfs/weed/mount/page_writer"
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"github.com/seaweedfs/seaweedfs/weed/pb"
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"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
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"github.com/seaweedfs/seaweedfs/weed/pb/mount_pb"
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"github.com/seaweedfs/seaweedfs/weed/security"
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"github.com/seaweedfs/seaweedfs/weed/storage/types"
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"github.com/seaweedfs/seaweedfs/weed/util"
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"github.com/seaweedfs/seaweedfs/weed/util/chunk_cache"
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"github.com/seaweedfs/seaweedfs/weed/util/grace"
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"github.com/seaweedfs/seaweedfs/weed/util/version"
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"github.com/seaweedfs/seaweedfs/weed/wdclient"
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"github.com/seaweedfs/go-fuse/v2/fs"
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)
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type Option struct {
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filerIndex int32 // align memory for atomic read/write
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FilerAddresses []pb.ServerAddress
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MountDirectory string
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GrpcDialOption grpc.DialOption
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FilerSigningKey security.SigningKey
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FilerSigningExpiresAfterSec int
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FilerMountRootPath string
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Collection string
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Replication string
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TtlSec int32
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DiskType types.DiskType
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ChunkSizeLimit int64
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ConcurrentWriters int
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ConcurrentReaders int
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CacheDirForRead string
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CacheSizeMBForRead int64
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CacheDirForWrite string
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WriteBufferSizeMB int64
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CacheMetaTTlSec int
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DataCenter string
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Umask os.FileMode
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Quota int64
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DisableXAttr bool
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IsMacOs bool
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MountUid uint32
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MountGid uint32
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MountMode os.FileMode
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MountCtime time.Time
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MountMtime time.Time
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MountParentInode uint64
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VolumeServerAccess string // how to access volume servers
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Cipher bool // whether encrypt data on volume server
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UidGidMapper *meta_cache.UidGidMapper
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IncludeSystemEntries bool
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// Periodic metadata flush interval in seconds (0 to disable)
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// This protects chunks from being purged by volume.fsck for long-running writes
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MetadataFlushSeconds int
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// RDMA acceleration options
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RdmaEnabled bool
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RdmaSidecarAddr string
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RdmaFallback bool
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RdmaReadOnly bool
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RdmaMaxConcurrent int
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RdmaTimeoutMs int
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// Directory cache refresh/eviction controls
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DirIdleEvictSec int
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// EnableDistributedLock enables DLM-based write coordination across mounts.
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// When true, opening a file for write acquires a distributed lock that is
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// held (with auto-renewal) until the file is closed. Only one mount can
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// have a file open for writing at a time.
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EnableDistributedLock bool
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// WritebackCache enables async flush on close for improved small file write performance.
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// When true, Flush() returns immediately and data upload + metadata flush happen in background.
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WritebackCache bool
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// PosixDirNlink enables POSIX-compliant directory nlink counting
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// (nlink = 2 + number_of_subdirectories). This requires listing
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// cached directory entries on every stat, which has a performance cost.
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// When false (default), directories report nlink=2.
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PosixDirNlink bool
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uniqueCacheDirForRead string
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uniqueCacheDirForWrite string
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}
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type WFS struct {
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// https://dl.acm.org/doi/fullHtml/10.1145/3310148
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// follow https://github.com/hanwen/go-fuse/blob/master/fuse/api.go
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fuse.RawFileSystem
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mount_pb.UnimplementedSeaweedMountServer
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fs.Inode
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option *Option
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metaCache *meta_cache.MetaCache
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stats statsCache
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chunkCache *chunk_cache.TieredChunkCache
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writeBufferAccountant *page_writer.WriteBufferAccountant
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signature int32
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concurrentWriters *util.LimitedConcurrentExecutor
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copyBufferPool sync.Pool
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concurrentCopiersSem chan struct{}
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inodeToPath *InodeToPath
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fhMap *FileHandleToInode
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dhMap *DirectoryHandleToInode
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fuseServer *fuse.Server
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IsOverQuota bool
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fhLockTable *util.LockTable[FileHandleId]
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hardLinkLockTable *util.LockTable[string]
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posixLocks *PosixLockTable
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rdmaClient *RDMAMountClient
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FilerConf *filer.FilerConf
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filerClient *wdclient.FilerClient // Cached volume location client
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refreshMu sync.Mutex
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refreshingDirs map[util.FullPath]struct{}
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atimeMu sync.Mutex
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atimeMap map[uint64]time.Time // inode -> atime, in-memory only, bounded
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dirMtimeMu sync.Mutex
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dirMtimeMap map[uint64]time.Time // inode -> mtime/ctime, in-memory overlay for dirs
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entryValidSec uint64 // kernel FUSE entry cache TTL in seconds
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attrValidSec uint64 // kernel FUSE attr cache TTL in seconds
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dirHotWindow time.Duration
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dirHotThreshold int
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dirIdleEvict time.Duration
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// openMtimeCache maps inode -> [mtime_sec, mtime_ns] from the last Open.
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// Used to decide whether to set FOPEN_KEEP_CACHE on subsequent opens.
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// Bounded to openMtimeCacheMaxSize entries; when full a random entry is
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// evicted. This trades a small amount of cache-miss overhead for
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// predictable memory usage on mounts that touch many files.
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openMtimeMu sync.Mutex
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openMtimeCache map[uint64][2]int64
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// asyncFlushWg tracks pending background flush work items for writebackCache mode.
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// Must be waited on before unmount cleanup to prevent data loss.
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asyncFlushWg sync.WaitGroup
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// asyncFlushCh is a bounded work queue for background flush operations.
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// A fixed pool of worker goroutines processes items from this channel,
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// preventing resource exhaustion from unbounded goroutine creation.
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asyncFlushCh chan *asyncFlushItem
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// pendingAsyncFlush tracks in-flight async flush goroutines by inode.
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// AcquireHandle checks this to wait for a pending flush before reopening
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// the same inode, preventing stale metadata from overwriting the async flush.
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pendingAsyncFlushMu sync.Mutex
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pendingAsyncFlush map[uint64]chan struct{}
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// streamMutate is the multiplexed streaming gRPC connection for all filer
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// mutations (create, update, delete, rename). All mutations go through one
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// ordered stream to prevent cross-operation reordering.
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streamMutate *streamMutateMux
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// lockClient is the DLM client for cross-mount write coordination.
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// Non-nil only when EnableDistributedLock is true.
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lockClient *cluster.LockClient
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}
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const (
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defaultDirHotWindow = 2 * time.Second
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defaultDirHotThreshold = 64
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defaultDirIdleEvict = 10 * time.Minute
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)
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func NewSeaweedFileSystem(option *Option) *WFS {
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// Only create FilerClient for direct volume access modes
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// When VolumeServerAccess == "filerProxy", all reads go through filer, so no volume lookup needed
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var filerClient *wdclient.FilerClient
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if option.VolumeServerAccess != "filerProxy" {
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// Create FilerClient for efficient volume location caching
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// Pass all filer addresses for high availability with automatic failover
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// Configure URL preference based on VolumeServerAccess option
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var opts *wdclient.FilerClientOption
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if option.VolumeServerAccess == "publicUrl" {
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opts = &wdclient.FilerClientOption{
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UrlPreference: wdclient.PreferPublicUrl,
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}
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}
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filerClient = wdclient.NewFilerClient(
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option.FilerAddresses, // Pass all filer addresses for HA
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option.GrpcDialOption,
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option.DataCenter,
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opts,
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)
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}
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dirHotWindow := defaultDirHotWindow
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dirHotThreshold := defaultDirHotThreshold
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dirIdleEvict := defaultDirIdleEvict
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if option.DirIdleEvictSec != 0 {
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dirIdleEvict = time.Duration(option.DirIdleEvictSec) * time.Second
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} else {
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dirIdleEvict = 0
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}
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wfs := &WFS{
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RawFileSystem: fuse.NewDefaultRawFileSystem(),
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option: option,
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signature: util.RandomInt32(),
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inodeToPath: NewInodeToPath(util.FullPath(option.FilerMountRootPath), option.CacheMetaTTlSec),
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fhMap: NewFileHandleToInode(),
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dhMap: NewDirectoryHandleToInode(),
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filerClient: filerClient, // nil for proxy mode, initialized for direct access
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pendingAsyncFlush: make(map[uint64]chan struct{}),
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fhLockTable: util.NewLockTable[FileHandleId](),
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hardLinkLockTable: util.NewLockTable[string](),
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posixLocks: NewPosixLockTable(),
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refreshingDirs: make(map[util.FullPath]struct{}),
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atimeMap: make(map[uint64]time.Time, 8192),
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openMtimeCache: make(map[uint64][2]int64, 8192),
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dirMtimeMap: make(map[uint64]time.Time, 1024),
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entryValidSec: 1,
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attrValidSec: 1,
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dirHotWindow: dirHotWindow,
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dirHotThreshold: dirHotThreshold,
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dirIdleEvict: dirIdleEvict,
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}
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// With writeback caching, this mount is the single writer. Increase kernel
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// FUSE cache TTLs so the kernel doesn't re-issue Lookup/GetAttr for every
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// path component and stat — the local meta cache is authoritative.
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if option.WritebackCache {
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wfs.entryValidSec = 10
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wfs.attrValidSec = 10
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}
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if option.EnableDistributedLock && !option.WritebackCache && len(option.FilerAddresses) > 0 {
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wfs.lockClient = cluster.NewLockClient(option.GrpcDialOption, option.FilerAddresses[0])
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glog.V(0).Infof("distributed lock manager enabled for mount")
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} else if option.EnableDistributedLock && option.WritebackCache {
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glog.V(0).Infof("distributed lock manager disabled: writeback cache implies single-writer mode")
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}
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wfs.option.filerIndex = int32(rand.IntN(len(option.FilerAddresses)))
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wfs.option.setupUniqueCacheDirectory()
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if option.CacheSizeMBForRead > 0 {
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wfs.chunkCache = chunk_cache.NewTieredChunkCache(256, option.getUniqueCacheDirForRead(), option.CacheSizeMBForRead, 1024*1024)
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}
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if option.WriteBufferSizeMB > 0 {
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wfs.writeBufferAccountant = page_writer.NewWriteBufferAccountant(option.WriteBufferSizeMB * 1024 * 1024)
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wfs.writeBufferAccountant.SetEvictor(wfs.evictOneWritableChunk)
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}
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wfs.metaCache = meta_cache.NewMetaCache(path.Join(option.getUniqueCacheDirForRead(), "meta"), option.UidGidMapper,
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util.FullPath(option.FilerMountRootPath),
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option.IncludeSystemEntries,
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func(path util.FullPath) {
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wfs.inodeToPath.MarkChildrenCached(path)
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}, func(path util.FullPath) bool {
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return wfs.inodeToPath.IsChildrenCached(path)
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}, func(filePath util.FullPath, entry *filer_pb.Entry) {
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// Find inode if it is not a deleted path
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if inode, inodeFound := wfs.inodeToPath.GetInode(filePath); inodeFound {
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// Find open file handle
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if fh, fhFound := wfs.fhMap.FindFileHandle(inode); fhFound {
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fhActiveLock := fh.wfs.fhLockTable.AcquireLock("invalidateFunc", fh.fh, util.ExclusiveLock)
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defer fh.wfs.fhLockTable.ReleaseLock(fh.fh, fhActiveLock)
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// Recreate dirty pages
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fh.dirtyPages.Destroy()
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fh.dirtyPages = newPageWriter(fh, wfs.option.ChunkSizeLimit)
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// Update handle entry
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newEntry, status := wfs.maybeLoadEntry(filePath)
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if status == fuse.OK {
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if fh.GetEntry().GetEntry() != newEntry {
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fh.SetEntry(newEntry)
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}
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}
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}
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}
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}, func(dirPath util.FullPath) {
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if wfs.inodeToPath.RecordDirectoryUpdate(dirPath, time.Now(), wfs.dirHotWindow, wfs.dirHotThreshold) {
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wfs.markDirectoryReadThrough(dirPath)
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}
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})
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grace.OnInterrupt(func() {
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// grace calls os.Exit(0) after all hooks, so WaitForAsyncFlush
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// after server.Serve() would never execute. Drain here first.
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//
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// Use a timeout to avoid hanging on Ctrl-C if the filer is
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// unreachable (metadata retry can take up to 7 seconds).
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// If the timeout expires, skip the write-cache removal so that
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// still-running goroutines can finish reading swap files.
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asyncDrained := true
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if wfs.option.WritebackCache {
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done := make(chan struct{})
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go func() {
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wfs.asyncFlushWg.Wait()
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close(done)
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}()
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select {
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case <-done:
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glog.V(0).Infof("all async flushes completed before shutdown")
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case <-time.After(30 * time.Second):
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glog.Warningf("timed out waiting for async flushes — swap files preserved for in-flight uploads")
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asyncDrained = false
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}
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}
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wfs.metaCache.Shutdown()
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if asyncDrained {
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os.RemoveAll(option.getUniqueCacheDirForWrite())
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}
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os.RemoveAll(option.getUniqueCacheDirForRead())
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if wfs.rdmaClient != nil {
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wfs.rdmaClient.Close()
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}
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})
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// Initialize RDMA client if enabled
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if option.RdmaEnabled && option.RdmaSidecarAddr != "" {
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rdmaClient, err := NewRDMAMountClient(
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option.RdmaSidecarAddr,
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wfs.LookupFn(),
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option.RdmaMaxConcurrent,
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option.RdmaTimeoutMs,
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)
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if err != nil {
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glog.Warningf("Failed to initialize RDMA client: %v", err)
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} else {
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wfs.rdmaClient = rdmaClient
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glog.Infof("RDMA acceleration enabled: sidecar=%s, maxConcurrent=%d, timeout=%dms",
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option.RdmaSidecarAddr, option.RdmaMaxConcurrent, option.RdmaTimeoutMs)
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}
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}
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if wfs.option.ConcurrentWriters > 0 {
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wfs.concurrentWriters = util.NewLimitedConcurrentExecutor(wfs.option.ConcurrentWriters)
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wfs.concurrentCopiersSem = make(chan struct{}, wfs.option.ConcurrentWriters)
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}
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if wfs.option.WritebackCache {
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numWorkers := wfs.option.ConcurrentWriters
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if numWorkers <= 0 {
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numWorkers = 128
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}
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wfs.startAsyncFlushWorkers(numWorkers)
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}
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wfs.streamMutate = newStreamMutateMux(wfs)
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wfs.copyBufferPool.New = func() any {
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return make([]byte, option.ChunkSizeLimit)
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}
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return wfs
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}
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func (wfs *WFS) StartBackgroundTasks() error {
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if wfs.option.WritebackCache {
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glog.V(0).Infof("writebackCache enabled: async flush on close() for improved small file performance")
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}
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follower, err := wfs.subscribeFilerConfEvents()
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if err != nil {
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return err
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}
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startTime := time.Now()
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go meta_cache.SubscribeMetaEvents(wfs.metaCache, wfs.signature, wfs, wfs.option.FilerMountRootPath, startTime.UnixNano(), wfs.option.WritebackCache, func(lastTsNs int64, err error) {
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glog.Warningf("meta events follow retry from %v: %v", time.Unix(0, lastTsNs), err)
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if deleteErr := wfs.metaCache.DeleteFolderChildren(context.Background(), util.FullPath(wfs.option.FilerMountRootPath)); deleteErr != nil {
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glog.Warningf("meta cache cleanup failed: %v", deleteErr)
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}
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wfs.inodeToPath.InvalidateAllChildrenCache()
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}, follower)
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go wfs.loopCheckQuota()
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go wfs.loopFlushDirtyMetadata()
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go wfs.loopEvictIdleDirCache()
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go wfs.loopProactiveFlush()
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return nil
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}
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func (wfs *WFS) String() string {
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return "seaweedfs"
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}
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func (wfs *WFS) Init(server *fuse.Server) {
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wfs.fuseServer = server
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}
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func (wfs *WFS) maybeReadEntry(inode uint64) (path util.FullPath, fh *FileHandle, entry *filer_pb.Entry, status fuse.Status) {
|
|
path, status = wfs.inodeToPath.GetPath(inode)
|
|
if status != fuse.OK {
|
|
return
|
|
}
|
|
var found bool
|
|
if fh, found = wfs.fhMap.FindFileHandle(inode); found {
|
|
entry = fh.UpdateEntry(func(entry *filer_pb.Entry) {
|
|
if entry != nil && fh.entry.Attributes == nil {
|
|
entry.Attributes = &filer_pb.FuseAttributes{}
|
|
}
|
|
})
|
|
} else {
|
|
entry, status = wfs.maybeLoadEntry(path)
|
|
}
|
|
return
|
|
}
|
|
|
|
func (wfs *WFS) maybeLoadEntry(fullpath util.FullPath) (*filer_pb.Entry, fuse.Status) {
|
|
// glog.V(3).Infof("read entry cache miss %s", fullpath)
|
|
_, name := fullpath.DirAndName()
|
|
|
|
// return a valid entry for the mount root
|
|
if string(fullpath) == wfs.option.FilerMountRootPath {
|
|
return &filer_pb.Entry{
|
|
Name: name,
|
|
IsDirectory: true,
|
|
Attributes: &filer_pb.FuseAttributes{
|
|
Mtime: wfs.option.MountMtime.Unix(),
|
|
FileMode: uint32(wfs.option.MountMode),
|
|
Uid: wfs.option.MountUid,
|
|
Gid: wfs.option.MountGid,
|
|
Crtime: wfs.option.MountCtime.Unix(),
|
|
},
|
|
}, fuse.OK
|
|
}
|
|
|
|
entry, status := wfs.lookupEntry(fullpath)
|
|
if status != fuse.OK {
|
|
return nil, status
|
|
}
|
|
return entry.ToProtoEntry(), fuse.OK
|
|
}
|
|
|
|
// lookupEntry looks up an entry by path, checking the local cache first.
|
|
// Cached metadata is only authoritative when the parent directory itself is cached.
|
|
// For uncached/read-through directories, always consult the filer directly so stale
|
|
// local entries do not leak back into lookup results.
|
|
func (wfs *WFS) lookupEntry(fullpath util.FullPath) (*filer.Entry, fuse.Status) {
|
|
dir, _ := fullpath.DirAndName()
|
|
dirPath := util.FullPath(dir)
|
|
|
|
if wfs.metaCache.IsDirectoryCached(dirPath) {
|
|
cachedEntry, cacheErr := wfs.metaCache.FindEntry(context.Background(), fullpath)
|
|
if cacheErr != nil && cacheErr != filer_pb.ErrNotFound {
|
|
glog.Errorf("lookupEntry: cache lookup for %s failed: %v", fullpath, cacheErr)
|
|
return nil, fuse.EIO
|
|
}
|
|
if cachedEntry != nil {
|
|
glog.V(4).Infof("lookupEntry cache hit %s", fullpath)
|
|
return cachedEntry, fuse.OK
|
|
}
|
|
// Re-check: the directory may have been evicted from cache between
|
|
// our IsDirectoryCached check and FindEntry (e.g. markDirectoryReadThrough).
|
|
// If it's no longer cached, fall through to the filer lookup below.
|
|
if wfs.metaCache.IsDirectoryCached(dirPath) {
|
|
glog.V(4).Infof("lookupEntry cache miss (dir cached) %s", fullpath)
|
|
return nil, fuse.ENOENT
|
|
}
|
|
}
|
|
|
|
// Directory not cached - fetch directly from filer without caching the entire directory.
|
|
glog.V(4).Infof("lookupEntry fetching from filer %s", fullpath)
|
|
entry, err := filer_pb.GetEntry(context.Background(), wfs, fullpath)
|
|
if err != nil {
|
|
if err == filer_pb.ErrNotFound {
|
|
// The entry may exist in the local store from a deferred create
|
|
// (deferFilerCreate=true) that hasn't been flushed yet. Only trust
|
|
// the local store when an open file handle or pending async flush
|
|
// confirms the entry is genuinely local-only; otherwise a stale
|
|
// cache hit could resurrect a deleted/renamed entry.
|
|
if inode, inodeFound := wfs.inodeToPath.GetInode(fullpath); inodeFound {
|
|
hasDirtyHandle := false
|
|
if fh, fhFound := wfs.fhMap.FindFileHandle(inode); fhFound && fh.dirtyMetadata {
|
|
hasDirtyHandle = true
|
|
}
|
|
wfs.pendingAsyncFlushMu.Lock()
|
|
_, hasPendingFlush := wfs.pendingAsyncFlush[inode]
|
|
wfs.pendingAsyncFlushMu.Unlock()
|
|
|
|
if hasDirtyHandle || hasPendingFlush {
|
|
if localEntry, localErr := wfs.metaCache.FindEntry(context.Background(), fullpath); localErr == nil && localEntry != nil {
|
|
glog.V(4).Infof("lookupEntry found deferred entry in local cache %s", fullpath)
|
|
return localEntry, fuse.OK
|
|
}
|
|
}
|
|
}
|
|
glog.V(4).Infof("lookupEntry not found %s", fullpath)
|
|
return nil, fuse.ENOENT
|
|
}
|
|
glog.Warningf("lookupEntry GetEntry %s: %v", fullpath, err)
|
|
return nil, fuse.EIO
|
|
}
|
|
if entry != nil && entry.Attributes != nil && wfs.option.UidGidMapper != nil {
|
|
entry.Attributes.Uid, entry.Attributes.Gid = wfs.option.UidGidMapper.FilerToLocal(entry.Attributes.Uid, entry.Attributes.Gid)
|
|
}
|
|
return filer.FromPbEntry(dir, entry), fuse.OK
|
|
}
|
|
|
|
func (wfs *WFS) LookupFn() wdclient.LookupFileIdFunctionType {
|
|
if wfs.option.VolumeServerAccess == "filerProxy" {
|
|
return func(ctx context.Context, fileId string) (targetUrls []string, err error) {
|
|
return []string{"http://" + wfs.getCurrentFiler().ToHttpAddress() + "/?proxyChunkId=" + fileId}, nil
|
|
}
|
|
}
|
|
// Use the cached FilerClient for efficient lookups with singleflight and cache history
|
|
return wfs.filerClient.GetLookupFileIdFunction()
|
|
}
|
|
|
|
func (wfs *WFS) getCurrentFiler() pb.ServerAddress {
|
|
i := atomic.LoadInt32(&wfs.option.filerIndex)
|
|
return wfs.option.FilerAddresses[i]
|
|
}
|
|
|
|
func (wfs *WFS) ClearCacheDir() {
|
|
wfs.metaCache.Shutdown()
|
|
os.RemoveAll(wfs.option.getUniqueCacheDirForWrite())
|
|
os.RemoveAll(wfs.option.getUniqueCacheDirForRead())
|
|
}
|
|
|
|
func (wfs *WFS) markDirectoryReadThrough(dirPath util.FullPath) {
|
|
if !wfs.inodeToPath.MarkDirectoryReadThrough(dirPath, time.Now()) {
|
|
return
|
|
}
|
|
if err := wfs.metaCache.DeleteFolderChildren(context.Background(), dirPath); err != nil {
|
|
glog.V(2).Infof("clear dir cache %s: %v", dirPath, err)
|
|
}
|
|
}
|
|
|
|
func (wfs *WFS) loopEvictIdleDirCache() {
|
|
if wfs.dirIdleEvict <= 0 {
|
|
return
|
|
}
|
|
ticker := time.NewTicker(wfs.dirIdleEvict / 2)
|
|
defer ticker.Stop()
|
|
for range ticker.C {
|
|
dirs := wfs.inodeToPath.CollectEvictableDirs(time.Now(), wfs.dirIdleEvict)
|
|
for _, dir := range dirs {
|
|
if err := wfs.metaCache.DeleteFolderChildren(context.Background(), dir); err != nil {
|
|
glog.V(2).Infof("evict dir cache %s: %v", dir, err)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
func (option *Option) setupUniqueCacheDirectory() {
|
|
cacheUniqueId := util.Md5String([]byte(option.MountDirectory + string(option.FilerAddresses[0]) + option.FilerMountRootPath + version.Version()))[0:8]
|
|
option.uniqueCacheDirForRead = path.Join(option.CacheDirForRead, cacheUniqueId)
|
|
os.MkdirAll(option.uniqueCacheDirForRead, os.FileMode(0777)&^option.Umask)
|
|
option.uniqueCacheDirForWrite = filepath.Join(path.Join(option.CacheDirForWrite, cacheUniqueId), "swap")
|
|
os.MkdirAll(option.uniqueCacheDirForWrite, os.FileMode(0777)&^option.Umask)
|
|
}
|
|
|
|
func (option *Option) getUniqueCacheDirForWrite() string {
|
|
return option.uniqueCacheDirForWrite
|
|
}
|
|
|
|
func (option *Option) getUniqueCacheDirForRead() string {
|
|
return option.uniqueCacheDirForRead
|
|
}
|