mirror of
https://github.com/seaweedfs/seaweedfs.git
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* filer.sync: count received, processed, and failed events and export in-flight jobs The metadata processor admits at most -concurrency jobs and blocks the subscription stream past that, so the backlog lives in the source filer's metadata log and cannot be counted here. What can be measured honestly: events read off the stream, replication outcomes, and worker saturation. in_flight_jobs pinned at the concurrency limit means the sync itself is the bottleneck; near zero means it is caught up or starved by the source. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw * filer.sync: export replication lag in seconds Lag is now minus the freshest of the processed watermark and the last idle heartbeat: the watermark stops at the last real event, so a quiet caught-up stream would otherwise show phantom lag. A ticker drives the gauge because the offset callback only fires while events flow and freezes exactly when the workers are saturated. Until the first event or heartbeat the gauge stays unset rather than reporting lag against a zero or stale resume offset. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw * filer.sync: track replicated data sizes alongside event counts An event count hides that 32 in-flight jobs can be 32 KB or 300 GB. Byte counters mirror the event counters, and in_flight_bytes pairs with in_flight_jobs. An event's size is the chunk delta - new chunks the old entry does not already have - so deletes, renames, and attribute-only updates count zero and byte rates reflect data movement, not metadata churn. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw * grafana: chart the new filer.sync metrics The lag panel reads lag_seconds directly instead of deriving it from sync_offset, and the sync row gains event rate, throughput, and the in-flight jobs and bytes gauges. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw * filer.sync: a pinned failure keeps showing as lag An idle heartbeat means the stream is consumed, not that every event replicated. While a permanent failure pins the watermark, letting the heartbeat advance lag_seconds or the sync_offset gauge would report a caught-up stream with an unreplicated event in it, so both now ignore heartbeats until a restart replays the failure. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw * filer.sync: in-flight gauges survive subscription retries A subscription retry builds a new processor sharing the gauge children while the old processor's jobs may still be draining, so setting the gauge from either side's local count clobbers the other. Each job now increments and decrements for itself, keeping the total truthful across generations. Claude-Session: https://claude.ai/code/session_01VGUXS7kdqiaXenTYVCg6vw
875 lines
35 KiB
Go
875 lines
35 KiB
Go
package command
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import (
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"context"
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"errors"
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"fmt"
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"os"
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"regexp"
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"strings"
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"sync/atomic"
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"time"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/operation"
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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/replication"
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"github.com/seaweedfs/seaweedfs/weed/replication/sink"
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"github.com/seaweedfs/seaweedfs/weed/replication/sink/filersink"
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"github.com/seaweedfs/seaweedfs/weed/replication/source"
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"github.com/seaweedfs/seaweedfs/weed/security"
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statsCollect "github.com/seaweedfs/seaweedfs/weed/stats"
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"github.com/seaweedfs/seaweedfs/weed/util"
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"github.com/seaweedfs/seaweedfs/weed/util/grace"
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util_http_client "github.com/seaweedfs/seaweedfs/weed/util/http/client"
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"github.com/seaweedfs/seaweedfs/weed/util/wildcard"
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"google.golang.org/grpc"
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)
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type SyncOptions struct {
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isActivePassive *bool
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filerA *string
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filerB *string
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aPath *string
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aExcludePaths *string
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bPath *string
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bExcludePaths *string
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aReplication *string
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bReplication *string
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aCollection *string
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bCollection *string
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aTtlSec *int
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bTtlSec *int
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aDiskType *string
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bDiskType *string
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aDebug *bool
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bDebug *bool
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aFromTsMs *int64
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bFromTsMs *int64
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aProxyByFiler *bool
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bProxyByFiler *bool
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metricsHttpIp *string
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metricsHttpPort *int
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concurrency *int
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chunkConcurrency *int
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aDoDeleteFiles *bool
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bDoDeleteFiles *bool
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aSecurity *string
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bSecurity *string
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clientId int32
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clientEpoch atomic.Int32
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debug *bool
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debugPort *int
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}
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const (
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SyncKeyPrefix = "sync."
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DefaultConcurrencyLimit = 32
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)
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// syncState tracks the current sync state for graceful shutdown checkpoint saving
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type syncState struct {
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processor *MetadataProcessor
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grpcDialOption grpc.DialOption
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targetFiler pb.ServerAddress
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sourcePath string
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targetPath string
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sourceFilerSignature int32
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}
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var (
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syncOptions SyncOptions
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syncCpuProfile *string
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syncMemProfile *string
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// atomic pointers to current sync states for graceful shutdown
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syncStateA2B atomic.Pointer[syncState]
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syncStateB2A atomic.Pointer[syncState]
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)
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func init() {
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cmdFilerSynchronize.Run = runFilerSynchronize // break init cycle
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syncOptions.isActivePassive = cmdFilerSynchronize.Flag.Bool("isActivePassive", false, "one directional follow from A to B if true")
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syncOptions.filerA = cmdFilerSynchronize.Flag.String("a", "", "filer A in one SeaweedFS cluster")
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syncOptions.filerB = cmdFilerSynchronize.Flag.String("b", "", "filer B in the other SeaweedFS cluster")
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syncOptions.aPath = cmdFilerSynchronize.Flag.String("a.path", "/", "directory to sync on filer A")
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syncOptions.aExcludePaths = cmdFilerSynchronize.Flag.String("a.excludePaths", "", "exclude directories to sync on filer A")
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syncOptions.bPath = cmdFilerSynchronize.Flag.String("b.path", "/", "directory to sync on filer B")
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syncOptions.bExcludePaths = cmdFilerSynchronize.Flag.String("b.excludePaths", "", "exclude directories to sync on filer B")
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syncOptions.aReplication = cmdFilerSynchronize.Flag.String("a.replication", "", "replication on filer A")
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syncOptions.bReplication = cmdFilerSynchronize.Flag.String("b.replication", "", "replication on filer B")
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syncOptions.aCollection = cmdFilerSynchronize.Flag.String("a.collection", "", "collection on filer A")
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syncOptions.bCollection = cmdFilerSynchronize.Flag.String("b.collection", "", "collection on filer B")
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syncOptions.aTtlSec = cmdFilerSynchronize.Flag.Int("a.ttlSec", 0, "ttl in seconds on filer A")
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syncOptions.bTtlSec = cmdFilerSynchronize.Flag.Int("b.ttlSec", 0, "ttl in seconds on filer B")
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syncOptions.aDiskType = cmdFilerSynchronize.Flag.String("a.disk", "", "[hdd|ssd|<tag>] hard drive or solid state drive or any tag on filer A")
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syncOptions.bDiskType = cmdFilerSynchronize.Flag.String("b.disk", "", "[hdd|ssd|<tag>] hard drive or solid state drive or any tag on filer B")
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syncOptions.aProxyByFiler = cmdFilerSynchronize.Flag.Bool("a.filerProxy", false, "read and write file chunks by filer A instead of volume servers")
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syncOptions.bProxyByFiler = cmdFilerSynchronize.Flag.Bool("b.filerProxy", false, "read and write file chunks by filer B instead of volume servers")
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syncOptions.aDebug = cmdFilerSynchronize.Flag.Bool("a.debug", false, "debug mode to print out filer A received files")
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syncOptions.bDebug = cmdFilerSynchronize.Flag.Bool("b.debug", false, "debug mode to print out filer B received files")
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syncOptions.aFromTsMs = cmdFilerSynchronize.Flag.Int64("a.fromTsMs", 0, "synchronization from timestamp on filer A. The unit is millisecond")
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syncOptions.bFromTsMs = cmdFilerSynchronize.Flag.Int64("b.fromTsMs", 0, "synchronization from timestamp on filer B. The unit is millisecond")
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syncOptions.concurrency = cmdFilerSynchronize.Flag.Int("concurrency", DefaultConcurrencyLimit, "The maximum number of files that will be synced concurrently.")
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syncOptions.chunkConcurrency = cmdFilerSynchronize.Flag.Int("chunkConcurrency", 32, "The maximum number of chunks that will be replicated concurrently per file.")
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syncCpuProfile = cmdFilerSynchronize.Flag.String("cpuprofile", "", "cpu profile output file")
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syncMemProfile = cmdFilerSynchronize.Flag.String("memprofile", "", "memory profile output file")
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syncOptions.metricsHttpIp = cmdFilerSynchronize.Flag.String("metricsIp", "", "metrics listen ip")
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syncOptions.metricsHttpPort = cmdFilerSynchronize.Flag.Int("metricsPort", 0, "metrics listen port")
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syncOptions.aDoDeleteFiles = cmdFilerSynchronize.Flag.Bool("a.doDeleteFiles", true, "delete and update files when synchronizing on filer A")
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syncOptions.bDoDeleteFiles = cmdFilerSynchronize.Flag.Bool("b.doDeleteFiles", true, "delete and update files when synchronizing on filer B")
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syncOptions.aSecurity = cmdFilerSynchronize.Flag.String("a.security", "", "security.toml file for filer A when clusters use different certificates")
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syncOptions.bSecurity = cmdFilerSynchronize.Flag.String("b.security", "", "security.toml file for filer B when clusters use different certificates")
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syncOptions.debug = cmdFilerSynchronize.Flag.Bool("debug", false, "serves runtime profiling data via pprof on the port specified by -debug.port")
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syncOptions.debugPort = cmdFilerSynchronize.Flag.Int("debug.port", 6060, "http port for debugging")
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syncOptions.clientId = util.RandomInt32()
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}
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var cmdFilerSynchronize = &Command{
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UsageLine: "filer.sync -a=<oneFilerHost>:<oneFilerPort> -b=<otherFilerHost>:<otherFilerPort>",
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Short: "resumable continuous synchronization between two active-active or active-passive SeaweedFS clusters",
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Long: `resumable continuous synchronization for file changes between two active-active or active-passive filers
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filer.sync listens on filer notifications. If any file is updated, it will fetch the updated content,
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and write to the other destination. Different from filer.replicate:
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* filer.sync only works between two filers.
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* filer.sync does not need any special message queue setup.
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* filer.sync supports both active-active and active-passive modes.
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If restarted, the synchronization will resume from the previous checkpoints, persisted every minute.
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A fresh sync will start from the earliest metadata logs.
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`,
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}
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func runFilerSynchronize(cmd *Command, args []string) bool {
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if *syncOptions.debug {
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grace.StartDebugServer(*syncOptions.debugPort)
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}
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*syncCpuProfile = util.ResolvePath(*syncCpuProfile)
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*syncMemProfile = util.ResolvePath(*syncMemProfile)
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*syncOptions.aSecurity = util.ResolvePath(*syncOptions.aSecurity)
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*syncOptions.bSecurity = util.ResolvePath(*syncOptions.bSecurity)
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util.LoadSecurityConfiguration()
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grpcDialOption := security.LoadClientTLS(util.GetViper(), "grpc.client")
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// per-filer TLS when clusters use different certificates
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grpcDialOptionA := grpcDialOption
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grpcDialOptionB := grpcDialOption
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if *syncOptions.aSecurity != "" {
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var err error
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if grpcDialOptionA, err = security.LoadClientTLSFromFile(*syncOptions.aSecurity, "grpc.client"); err != nil {
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glog.Fatalf("load security config for filer A: %v", err)
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}
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}
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if *syncOptions.bSecurity != "" {
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var err error
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if grpcDialOptionB, err = security.LoadClientTLSFromFile(*syncOptions.bSecurity, "grpc.client"); err != nil {
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glog.Fatalf("load security config for filer B: %v", err)
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}
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}
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// per-cluster HTTPS clients for volume server connections
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var httpClientA, httpClientB *util_http_client.HTTPClient
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if *syncOptions.aSecurity != "" {
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var err error
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if httpClientA, err = security.LoadHTTPClientFromFile(*syncOptions.aSecurity); err != nil {
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glog.Fatalf("load HTTPS client config for filer A: %v", err)
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}
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}
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if *syncOptions.bSecurity != "" {
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var err error
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if httpClientB, err = security.LoadHTTPClientFromFile(*syncOptions.bSecurity); err != nil {
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glog.Fatalf("load HTTPS client config for filer B: %v", err)
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}
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}
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grace.SetupProfiling(*syncCpuProfile, *syncMemProfile)
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filerA := pb.ServerAddress(*syncOptions.filerA)
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filerB := pb.ServerAddress(*syncOptions.filerB)
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// start filer.sync metrics server
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go statsCollect.StartMetricsServer(*syncOptions.metricsHttpIp, *syncOptions.metricsHttpPort)
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// read a filer signature
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aFilerSignature, aFilerErr := replication.ReadFilerSignature(grpcDialOptionA, filerA)
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if aFilerErr != nil {
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glog.Errorf("get filer 'a' signature %d error from %s to %s: %v", aFilerSignature, *syncOptions.filerA, *syncOptions.filerB, aFilerErr)
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return true
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}
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// read b filer signature
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bFilerSignature, bFilerErr := replication.ReadFilerSignature(grpcDialOptionB, filerB)
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if bFilerErr != nil {
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glog.Errorf("get filer 'b' signature %d error from %s to %s: %v", bFilerSignature, *syncOptions.filerA, *syncOptions.filerB, bFilerErr)
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return true
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}
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// register graceful shutdown hook to save checkpoints
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grace.OnInterrupt(func() {
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saveCheckpoint := func(name string, state *syncState) {
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if state == nil || state.processor == nil {
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return
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}
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offsetTsNs := state.processor.processedTsWatermark.Load()
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if offsetTsNs == 0 {
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return
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}
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if err := setOffset(state.grpcDialOption, state.targetFiler, getSignaturePrefixByPath(state.sourcePath, state.targetPath), state.sourceFilerSignature, offsetTsNs); err != nil {
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glog.Errorf("failed to save checkpoint for %s on shutdown: %v", name, err)
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} else {
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glog.V(0).Infof("saved checkpoint for %s on shutdown: %v", name, time.Unix(0, offsetTsNs))
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}
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}
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saveCheckpoint("A->B", syncStateA2B.Load())
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saveCheckpoint("B->A", syncStateB2A.Load())
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})
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go func() {
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// a->b
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// set synchronization start timestamp to offset
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initOffsetError := initOffsetFromTsMs(grpcDialOptionB, filerB, aFilerSignature, *syncOptions.aFromTsMs, getSignaturePrefixByPath(*syncOptions.aPath, *syncOptions.bPath))
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if initOffsetError != nil {
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glog.Errorf("init offset from timestamp %d error from %s to %s: %v", *syncOptions.aFromTsMs, *syncOptions.filerA, *syncOptions.filerB, initOffsetError)
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os.Exit(2)
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}
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for {
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syncOptions.clientEpoch.Add(1)
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err := doSubscribeFilerMetaChanges(
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syncOptions.clientId,
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syncOptions.clientEpoch.Load(),
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grpcDialOptionA,
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filerA,
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*syncOptions.aPath,
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util.StringSplit(*syncOptions.aExcludePaths, ","),
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*syncOptions.aProxyByFiler,
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grpcDialOptionB,
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filerB,
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*syncOptions.bPath,
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*syncOptions.bReplication,
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*syncOptions.bCollection,
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*syncOptions.bTtlSec,
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*syncOptions.bProxyByFiler,
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*syncOptions.bDiskType,
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*syncOptions.bDebug,
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*syncOptions.concurrency,
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*syncOptions.chunkConcurrency,
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*syncOptions.bDoDeleteFiles,
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aFilerSignature,
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bFilerSignature,
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&syncStateA2B,
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httpClientA,
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httpClientB)
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if err != nil {
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glog.Errorf("sync from %s to %s: %v", *syncOptions.filerA, *syncOptions.filerB, err)
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time.Sleep(1747 * time.Millisecond)
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}
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}
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}()
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if !*syncOptions.isActivePassive {
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// b->a
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// set synchronization start timestamp to offset
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initOffsetError := initOffsetFromTsMs(grpcDialOptionA, filerA, bFilerSignature, *syncOptions.bFromTsMs, getSignaturePrefixByPath(*syncOptions.bPath, *syncOptions.aPath))
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if initOffsetError != nil {
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glog.Errorf("init offset from timestamp %d error from %s to %s: %v", *syncOptions.bFromTsMs, *syncOptions.filerB, *syncOptions.filerA, initOffsetError)
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os.Exit(2)
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}
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go func() {
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for {
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syncOptions.clientEpoch.Add(1)
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err := doSubscribeFilerMetaChanges(
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syncOptions.clientId,
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syncOptions.clientEpoch.Load(),
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grpcDialOptionB,
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filerB,
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*syncOptions.bPath,
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util.StringSplit(*syncOptions.bExcludePaths, ","),
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*syncOptions.bProxyByFiler,
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grpcDialOptionA,
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filerA,
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*syncOptions.aPath,
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*syncOptions.aReplication,
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*syncOptions.aCollection,
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*syncOptions.aTtlSec,
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*syncOptions.aProxyByFiler,
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*syncOptions.aDiskType,
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*syncOptions.aDebug,
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*syncOptions.concurrency,
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*syncOptions.chunkConcurrency,
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*syncOptions.aDoDeleteFiles,
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bFilerSignature,
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aFilerSignature,
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&syncStateB2A,
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httpClientB,
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httpClientA)
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if err != nil {
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glog.Errorf("sync from %s to %s: %v", *syncOptions.filerB, *syncOptions.filerA, err)
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time.Sleep(2147 * time.Millisecond)
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}
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}
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}()
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}
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select {}
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}
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// initOffsetFromTsMs Initialize offset
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func initOffsetFromTsMs(grpcDialOption grpc.DialOption, targetFiler pb.ServerAddress, sourceFilerSignature int32, fromTsMs int64, signaturePrefix string) error {
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if fromTsMs <= 0 {
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return nil
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}
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// convert to nanosecond
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fromTsNs := fromTsMs * 1000_000
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// If not successful, exit the program.
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setOffsetErr := setOffset(grpcDialOption, targetFiler, signaturePrefix, sourceFilerSignature, fromTsNs)
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if setOffsetErr != nil {
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return setOffsetErr
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}
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glog.Infof("setOffset from timestamp ms success! start offset: %d from %s to %s", fromTsNs, *syncOptions.filerA, *syncOptions.filerB)
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return nil
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}
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func doSubscribeFilerMetaChanges(clientId int32, clientEpoch int32, sourceGrpcDialOption grpc.DialOption, sourceFiler pb.ServerAddress, sourcePath string, sourceExcludePaths []string, sourceReadChunkFromFiler bool, targetGrpcDialOption grpc.DialOption, targetFiler pb.ServerAddress, targetPath string,
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replicationStr, collection string, ttlSec int, sinkWriteChunkByFiler bool, diskType string, debug bool, concurrency int, chunkConcurrency int, doDeleteFiles bool, sourceFilerSignature int32, targetFilerSignature int32, statePtr *atomic.Pointer[syncState],
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sourceHttpClient *util_http_client.HTTPClient, sinkHttpClient *util_http_client.HTTPClient) error {
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// if first time, start from now
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// if has previously synced, resume from that point of time
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// the historical key ignored the target path; falling back to it lets a
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// sync that predates target-scoped keys survive the upgrade
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signaturePrefix := getSignaturePrefixByPath(sourcePath, targetPath)
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sourceFilerOffsetTsNs, err := getOffsetWithFallback(targetGrpcDialOption, targetFiler, signaturePrefix, sourceFilerSignature, getSignaturePrefixByPath(sourcePath, "/"), sourceFilerSignature)
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if err != nil {
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return err
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}
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glog.V(0).Infof("start sync %s(%d) => %s(%d) from %v(%d)", sourceFiler, sourceFilerSignature, targetFiler, targetFilerSignature, time.Unix(0, sourceFilerOffsetTsNs), sourceFilerOffsetTsNs)
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// create filer sink
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filerSource := &source.FilerSource{}
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filerSource.DoInitialize(sourceFiler.ToHttpAddress(), sourceFiler.ToGrpcAddress(), sourcePath, sourceReadChunkFromFiler)
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filerSource.SetGrpcDialOption(sourceGrpcDialOption)
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if sourceHttpClient != nil {
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filerSource.SetHttpClient(sourceHttpClient)
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}
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filerSink := &filersink.FilerSink{}
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filerSink.DoInitialize(targetFiler.ToHttpAddress(), targetFiler.ToGrpcAddress(), targetPath, replicationStr, collection, ttlSec, diskType, targetGrpcDialOption, sinkWriteChunkByFiler)
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filerSink.SetChunkConcurrency(chunkConcurrency)
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if sinkHttpClient != nil {
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filerSink.SetUploader(operation.NewUploaderWithHttpClient(sinkHttpClient))
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}
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filerSink.SetSourceFiler(filerSource)
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|
|
persistEventFn := genProcessFunction(sourcePath, targetPath, sourceExcludePaths, nil, nil, nil, filerSink, doDeleteFiles, debug)
|
|
|
|
processEventFn := func(resp *filer_pb.SubscribeMetadataResponse) error {
|
|
message := resp.EventNotification
|
|
for _, sig := range message.Signatures {
|
|
if sig == targetFilerSignature && targetFilerSignature != 0 {
|
|
fmt.Printf("%s skipping %s change to %v\n", targetFiler, sourceFiler, message)
|
|
return nil
|
|
}
|
|
}
|
|
return persistEventFn(resp)
|
|
}
|
|
|
|
if concurrency < 0 || concurrency > 1024 {
|
|
glog.Warningf("invalid concurrency value, using default: %d", DefaultConcurrencyLimit)
|
|
concurrency = DefaultConcurrencyLimit
|
|
}
|
|
clientName := fmt.Sprintf("syncFrom_%s_To_%s", string(sourceFiler), string(targetFiler))
|
|
processor := NewMetadataProcessor(processEventFn, concurrency, sourceFilerOffsetTsNs)
|
|
processor.SetMetrics(sourceFiler.String(), targetFiler.String(), clientName, sourcePath)
|
|
|
|
// update sync state for graceful shutdown checkpoint saving
|
|
if statePtr != nil {
|
|
statePtr.Store(&syncState{
|
|
processor: processor,
|
|
grpcDialOption: targetGrpcDialOption,
|
|
targetFiler: targetFiler,
|
|
sourcePath: sourcePath,
|
|
targetPath: targetPath,
|
|
sourceFilerSignature: sourceFilerSignature,
|
|
})
|
|
}
|
|
|
|
// The offset callback below only fires while events flow, so it freezes
|
|
// exactly when the workers are saturated; a ticker keeps lag honest. The
|
|
// idle heartbeat is folded in because the watermark stops at the last real
|
|
// event, so a quiet caught-up stream would otherwise show phantom lag.
|
|
lagGauge := statsCollect.FilerSyncLagSecondsGauge.WithLabelValues(sourceFiler.String(), targetFiler.String(), clientName, sourcePath)
|
|
var idleHeartbeatTsNs atomic.Int64
|
|
stopLagTicker := make(chan struct{})
|
|
defer close(stopLagTicker)
|
|
go func() {
|
|
ticker := time.NewTicker(time.Second)
|
|
defer ticker.Stop()
|
|
for {
|
|
select {
|
|
case <-stopLagTicker:
|
|
return
|
|
case <-ticker.C:
|
|
freshnessTsNs := processor.processedTsWatermark.Load()
|
|
// a heartbeat means consumed, not replicated: while a failure
|
|
// pins the watermark it must not mask the growing lag
|
|
if processor.OldestFailedTsNs() == 0 {
|
|
freshnessTsNs = max(freshnessTsNs, idleHeartbeatTsNs.Load())
|
|
}
|
|
if freshnessTsNs == 0 {
|
|
continue
|
|
}
|
|
lagGauge.Set(max(0, time.Since(time.Unix(0, freshnessTsNs)).Seconds()))
|
|
}
|
|
}
|
|
}()
|
|
|
|
var lastLogTsNs = time.Now().UnixNano()
|
|
var lastProgressedTsNs int64
|
|
processEventFnWithOffset := pb.AddOffsetFunc(func(resp *filer_pb.SubscribeMetadataResponse) error {
|
|
processor.AddSyncJob(resp)
|
|
return nil
|
|
}, 3*time.Second, func(counter int64, lastTsNs int64) error {
|
|
offsetTsNs := processor.processedTsWatermark.Load()
|
|
if offsetTsNs == 0 {
|
|
return nil
|
|
}
|
|
// use processor.processedTsWatermark instead of the lastTsNs from the most recent job
|
|
now := time.Now().UnixNano()
|
|
glog.V(0).Infof("sync %s to %s progressed to %v %0.2f/sec", sourceFiler, targetFiler, time.Unix(0, offsetTsNs), float64(counter)/(float64(now-lastLogTsNs)/1e9))
|
|
lastLogTsNs = now
|
|
if offsetTsNs == lastProgressedTsNs {
|
|
for _, t := range filerSink.ActiveTransfers() {
|
|
if t.LastErr != "" {
|
|
glog.V(0).Infof(" %s %s: %d bytes received, %s, last error: %s",
|
|
t.ChunkFileId, t.Path, t.BytesReceived, t.Status, t.LastErr)
|
|
} else {
|
|
glog.V(0).Infof(" %s %s: %d bytes received, %s",
|
|
t.ChunkFileId, t.Path, t.BytesReceived, t.Status)
|
|
}
|
|
}
|
|
}
|
|
lastProgressedTsNs = offsetTsNs
|
|
// collect synchronous offset
|
|
statsCollect.FilerSyncOffsetGauge.WithLabelValues(sourceFiler.String(), targetFiler.String(), clientName, sourcePath).Set(float64(offsetTsNs))
|
|
return setOffset(targetGrpcDialOption, targetFiler, signaturePrefix, sourceFilerSignature, offsetTsNs)
|
|
})
|
|
|
|
prefix := sourcePath
|
|
if !strings.HasSuffix(prefix, "/") {
|
|
prefix = prefix + "/"
|
|
}
|
|
|
|
metadataFollowOption := &pb.MetadataFollowOption{
|
|
ClientName: clientName,
|
|
ClientId: clientId,
|
|
ClientEpoch: clientEpoch,
|
|
SelfSignature: targetFilerSignature,
|
|
PathPrefix: prefix,
|
|
AdditionalPathPrefixes: nil,
|
|
DirectoriesToWatch: nil,
|
|
StartTsNs: sourceFilerOffsetTsNs,
|
|
StopTsNs: 0,
|
|
EventErrorType: pb.RetryForeverOnError,
|
|
// While the source has only read activity it emits no metadata events, so
|
|
// the watermark above never advances and sync_offset would look stuck.
|
|
// The idle heartbeat moves the gauge to the source's current time once we
|
|
// are caught up, so now-sync_offset reflects real lag and stays alertable.
|
|
OnIdleHeartbeat: func(tsNs int64) {
|
|
// same masking concern as the lag ticker: a pinned failure must
|
|
// keep now-sync_offset growing too
|
|
if processor.OldestFailedTsNs() != 0 {
|
|
return
|
|
}
|
|
statsCollect.FilerSyncOffsetGauge.WithLabelValues(sourceFiler.String(), targetFiler.String(), clientName, sourcePath).Set(float64(tsNs))
|
|
idleHeartbeatTsNs.Store(tsNs)
|
|
},
|
|
}
|
|
|
|
return pb.FollowMetadata(sourceFiler, sourceGrpcDialOption, metadataFollowOption, processEventFnWithOffset)
|
|
|
|
}
|
|
|
|
// Offsets are kept per (source path, target path): two syncs from the same
|
|
// source to different directories on the same target filer see the same events
|
|
// but progress independently, so a shared key would let one push the other
|
|
// past events it never processed. "/" contributes nothing on either side,
|
|
// keeping the historical key form so existing deployments resume unchanged.
|
|
func getSignaturePrefixByPath(sourcePath, targetPath string) string {
|
|
prefix := SyncKeyPrefix
|
|
if sourcePath != "/" {
|
|
prefix += sourcePath
|
|
}
|
|
if targetPath != "/" {
|
|
// NUL cannot occur in a path, so the combined key can alias neither a
|
|
// source-only key nor another (source, target) pair
|
|
prefix += "\x00" + targetPath
|
|
}
|
|
return prefix
|
|
}
|
|
|
|
func getOffset(grpcDialOption grpc.DialOption, filer pb.ServerAddress, signaturePrefix string, signature int32) (lastOffsetTsNs int64, readErr error) {
|
|
|
|
readErr = pb.WithFilerClient(false, signature, filer, grpcDialOption, func(client filer_pb.SeaweedFilerClient) error {
|
|
syncKey := []byte(signaturePrefix + "____")
|
|
util.Uint32toBytes(syncKey[len(signaturePrefix):len(signaturePrefix)+4], uint32(signature))
|
|
|
|
resp, err := client.KvGet(context.Background(), &filer_pb.KvGetRequest{Key: syncKey})
|
|
if err != nil {
|
|
return err
|
|
}
|
|
|
|
if len(resp.Error) != 0 {
|
|
return errors.New(resp.Error)
|
|
}
|
|
if len(resp.Value) < 8 {
|
|
return nil
|
|
}
|
|
|
|
lastOffsetTsNs = int64(util.BytesToUint64(resp.Value))
|
|
|
|
return nil
|
|
})
|
|
|
|
return
|
|
|
|
}
|
|
|
|
// getOffsetWithFallback reads the offset under the current key, falling back
|
|
// to the historical key when the current one has no value yet, so streams
|
|
// created before a checkpoint key-scheme change resume where they left off
|
|
// instead of replaying from zero. Writes must go only to the current key:
|
|
// keeping the historical key warm would re-create the very sharing between
|
|
// streams that a key-scheme change separates.
|
|
func getOffsetWithFallback(grpcDialOption grpc.DialOption, filer pb.ServerAddress, signaturePrefix string, signature int32, legacySignaturePrefix string, legacySignature int32) (int64, error) {
|
|
lastOffsetTsNs, err := getOffset(grpcDialOption, filer, signaturePrefix, signature)
|
|
if err == nil && lastOffsetTsNs == 0 {
|
|
lastOffsetTsNs, err = getOffset(grpcDialOption, filer, legacySignaturePrefix, legacySignature)
|
|
}
|
|
return lastOffsetTsNs, err
|
|
}
|
|
|
|
func setOffset(grpcDialOption grpc.DialOption, filer pb.ServerAddress, signaturePrefix string, signature int32, offsetTsNs int64) error {
|
|
return pb.WithFilerClient(false, signature, filer, grpcDialOption, func(client filer_pb.SeaweedFilerClient) error {
|
|
|
|
syncKey := []byte(signaturePrefix + "____")
|
|
util.Uint32toBytes(syncKey[len(signaturePrefix):len(signaturePrefix)+4], uint32(signature))
|
|
|
|
valueBuf := make([]byte, 8)
|
|
util.Uint64toBytes(valueBuf, uint64(offsetTsNs))
|
|
|
|
resp, err := client.KvPut(context.Background(), &filer_pb.KvPutRequest{
|
|
Key: syncKey,
|
|
Value: valueBuf,
|
|
})
|
|
if err != nil {
|
|
return err
|
|
}
|
|
|
|
if len(resp.Error) != 0 {
|
|
return errors.New(resp.Error)
|
|
}
|
|
|
|
return nil
|
|
|
|
})
|
|
|
|
}
|
|
|
|
func genProcessFunction(sourcePath string, targetPath string, excludePaths []string, reExcludeFileName *regexp.Regexp, excludeFileNames []*wildcard.WildcardMatcher, excludePathPatterns []*wildcard.WildcardMatcher, dataSink sink.ReplicationSink, doDeleteFiles bool, debug bool) func(resp *filer_pb.SubscribeMetadataResponse) error {
|
|
// process function
|
|
processEventFn := func(resp *filer_pb.SubscribeMetadataResponse) error {
|
|
message := resp.EventNotification
|
|
|
|
// Derive the target (new-side) directory once. MetadataEventTargetDirectory
|
|
// returns NewParentPath when set, falling back to resp.Directory for
|
|
// delete events or legacy events with an empty NewParentPath.
|
|
targetDir := filer_pb.MetadataEventTargetDirectory(resp)
|
|
|
|
var sourceOldKey, sourceNewKey util.FullPath
|
|
if message.OldEntry != nil {
|
|
sourceOldKey = util.FullPath(resp.Directory).Child(message.OldEntry.Name)
|
|
}
|
|
if message.NewEntry != nil {
|
|
sourceNewKey = util.FullPath(targetDir).Child(message.NewEntry.Name)
|
|
}
|
|
|
|
if debug {
|
|
glog.V(0).Infof("received %v", resp)
|
|
}
|
|
|
|
if isMultipartUploadDir(resp.Directory + "/") {
|
|
return nil
|
|
}
|
|
|
|
// For rename events the key/directory is the old (source) path.
|
|
// Check both old and new directories so cross-boundary renames
|
|
// are not silently dropped. The downstream old/new key handling
|
|
// (lines below) already converts these to create or delete.
|
|
oldDirExcluded := matchesExcludePath(resp.Directory, excludePaths)
|
|
newDirExcluded := matchesExcludePath(targetDir, excludePaths)
|
|
oldDirInScope := util.IsEqualOrUnder(resp.Directory, sourcePath) && !oldDirExcluded
|
|
newDirInScope := message.NewEntry != nil &&
|
|
util.IsEqualOrUnder(targetDir, sourcePath) &&
|
|
!newDirExcluded
|
|
if !oldDirInScope && !newDirInScope {
|
|
return nil
|
|
}
|
|
// Compute per-side exclusion so that rename events crossing an
|
|
// exclude boundary are handled as delete + create rather than
|
|
// being entirely skipped.
|
|
oldExcluded := oldDirExcluded || isEntryExcluded(resp.Directory, message.OldEntry, reExcludeFileName, excludeFileNames, excludePathPatterns)
|
|
newExcluded := newDirExcluded || isEntryExcluded(targetDir, message.NewEntry, reExcludeFileName, excludeFileNames, excludePathPatterns)
|
|
|
|
if oldExcluded && newExcluded {
|
|
return nil
|
|
}
|
|
if oldExcluded {
|
|
// Old side is excluded — treat as pure create of new entry.
|
|
message.OldEntry = nil
|
|
}
|
|
if newExcluded {
|
|
// New side is excluded — treat as pure delete of old entry.
|
|
message.NewEntry = nil
|
|
sourceNewKey = ""
|
|
}
|
|
if dataSink.IsIncremental() {
|
|
doDeleteFiles = false
|
|
}
|
|
// handle deletions
|
|
if filer_pb.IsDelete(resp) {
|
|
if !doDeleteFiles {
|
|
return nil
|
|
}
|
|
if !util.IsEqualOrUnder(string(sourceOldKey), sourcePath) {
|
|
return nil
|
|
}
|
|
key := buildKey(dataSink, message, targetPath, sourceOldKey, sourcePath)
|
|
return dataSink.DeleteEntry(key, message.OldEntry.IsDirectory, message.DeleteChunks, message.Signatures)
|
|
}
|
|
|
|
// handle new entries
|
|
if filer_pb.IsCreate(resp) {
|
|
if !util.IsEqualOrUnder(string(sourceNewKey), sourcePath) {
|
|
return nil
|
|
}
|
|
key := buildKey(dataSink, message, targetPath, sourceNewKey, sourcePath)
|
|
if err := dataSink.CreateEntry(key, message.NewEntry, message.Signatures); err != nil {
|
|
return fmt.Errorf("create entry1 : %w", err)
|
|
} else {
|
|
return nil
|
|
}
|
|
}
|
|
|
|
// this is something special?
|
|
if filer_pb.IsEmpty(resp) {
|
|
return nil
|
|
}
|
|
|
|
// handle updates
|
|
if util.IsEqualOrUnder(string(sourceOldKey), sourcePath) {
|
|
// old key is in the watched directory
|
|
if util.IsEqualOrUnder(string(sourceNewKey), sourcePath) {
|
|
// new key is also in the watched directory
|
|
if filer_pb.IsRename(resp) {
|
|
newKey := buildKey(dataSink, message, targetPath, sourceNewKey, sourcePath)
|
|
// With deletes enabled a rename relocates the entry. Guard the
|
|
// watched root itself, whose old key would resolve to the target
|
|
// root and recursively delete the whole sink tree.
|
|
if doDeleteFiles && string(sourceOldKey) != sourcePath {
|
|
oldKey := buildKey(dataSink, message, targetPath, sourceOldKey, sourcePath)
|
|
if mover, ok := dataSink.(sink.EntryMover); ok {
|
|
// native atomic move: no re-copy, no descendant gap, no chunk leak.
|
|
return mover.MoveEntry(oldKey, newKey, message.NewEntry, message.Signatures)
|
|
}
|
|
// no native move: create the new entry first, then delete the
|
|
// old, so a crash between the two leaves the entry visible.
|
|
if err := dataSink.CreateEntry(newKey, message.NewEntry, message.Signatures); err != nil {
|
|
return fmt.Errorf("create entry2 : %w", err)
|
|
}
|
|
if err := dataSink.DeleteEntry(oldKey, message.OldEntry.IsDirectory, false, message.Signatures); err != nil {
|
|
return fmt.Errorf("delete old entry %v: %w", oldKey, err)
|
|
}
|
|
return nil
|
|
}
|
|
// deletes disabled (backup/incremental) or the watched root moved:
|
|
// create the new entry and keep the old.
|
|
if err := dataSink.CreateEntry(newKey, message.NewEntry, message.Signatures); err != nil {
|
|
return fmt.Errorf("create entry2 : %w", err)
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// in-place update (same path): mutate via UpdateEntry; never
|
|
// delete-then-recreate the same key.
|
|
if doDeleteFiles {
|
|
oldKey := util.Join(targetPath, string(sourceOldKey)[len(sourcePath):])
|
|
var sinkNewParentPath string
|
|
if strings.HasSuffix(sourcePath, "/") {
|
|
sinkNewParentPath = util.Join(targetPath, targetDir[len(sourcePath)-1:])
|
|
} else {
|
|
sinkNewParentPath = util.Join(targetPath, targetDir[len(sourcePath):])
|
|
}
|
|
foundExisting, err := dataSink.UpdateEntry(string(oldKey), message.OldEntry, sinkNewParentPath, message.NewEntry, message.DeleteChunks, message.Signatures)
|
|
if foundExisting {
|
|
return err
|
|
}
|
|
// old entry missing on the destination; fall through to create it
|
|
if err = dataSink.DeleteEntry(string(oldKey), message.OldEntry.IsDirectory, false, message.Signatures); err != nil {
|
|
return fmt.Errorf("delete old entry %v: %w", oldKey, err)
|
|
}
|
|
}
|
|
newKey := buildKey(dataSink, message, targetPath, sourceNewKey, sourcePath)
|
|
if err := dataSink.CreateEntry(newKey, message.NewEntry, message.Signatures); err != nil {
|
|
return fmt.Errorf("create entry2 : %w", err)
|
|
}
|
|
return nil
|
|
|
|
} else {
|
|
// new key is outside the watched directory
|
|
if doDeleteFiles {
|
|
key := buildKey(dataSink, message, targetPath, sourceOldKey, sourcePath)
|
|
return dataSink.DeleteEntry(key, message.OldEntry.IsDirectory, message.DeleteChunks, message.Signatures)
|
|
}
|
|
}
|
|
} else {
|
|
// old key is outside the watched directory
|
|
if util.IsEqualOrUnder(string(sourceNewKey), sourcePath) {
|
|
// new key is in the watched directory
|
|
key := buildKey(dataSink, message, targetPath, sourceNewKey, sourcePath)
|
|
if err := dataSink.CreateEntry(key, message.NewEntry, message.Signatures); err != nil {
|
|
return fmt.Errorf("create entry3 : %w", err)
|
|
} else {
|
|
return nil
|
|
}
|
|
} else {
|
|
// new key is also outside the watched directory
|
|
// skip
|
|
}
|
|
}
|
|
|
|
return nil
|
|
}
|
|
return processEventFn
|
|
}
|
|
|
|
func buildKey(dataSink sink.ReplicationSink, message *filer_pb.EventNotification, targetPath string, sourceKey util.FullPath, sourcePath string) string {
|
|
var mTime int64
|
|
if message.NewEntry != nil && message.NewEntry.Attributes != nil {
|
|
mTime = message.NewEntry.Attributes.Mtime
|
|
} else if message.OldEntry != nil && message.OldEntry.Attributes != nil {
|
|
mTime = message.OldEntry.Attributes.Mtime
|
|
}
|
|
return destKey(dataSink, targetPath, sourcePath, sourceKey, mTime)
|
|
}
|
|
|
|
// destKey derives the sink-side key for a source entry. Shared between the
|
|
// event-log path (buildKey) and the initialSnapshot walk (both paths need the
|
|
// same target layout so a walk-seeded file and an event-replayed file resolve
|
|
// to the same destination key). Normalizing to a trailing-slash base avoids
|
|
// indexing past the end of sourceKey when callers differ on trailing-slash
|
|
// conventions or when sourceKey equals sourcePath exactly.
|
|
func destKey(dataSink sink.ReplicationSink, targetPath, sourcePath string, sourceKey util.FullPath, mTime int64) string {
|
|
base := strings.TrimSuffix(sourcePath, "/") + "/"
|
|
sk := string(sourceKey)
|
|
var relative string
|
|
switch {
|
|
case strings.HasPrefix(sk, base):
|
|
relative = sk[len(base):]
|
|
case sk == strings.TrimSuffix(sourcePath, "/"):
|
|
relative = ""
|
|
default:
|
|
relative = strings.TrimPrefix(sk, "/")
|
|
}
|
|
if !dataSink.IsIncremental() {
|
|
return util.Join(targetPath, relative)
|
|
}
|
|
dateKey := time.Unix(mTime, 0).Format("2006-01-02")
|
|
return util.Join(targetPath, dateKey, relative)
|
|
}
|
|
|
|
// isEntryExcluded checks whether a single side (old or new) of an event is excluded
|
|
// by the deprecated filename regexp, the wildcard file-name matchers, or the
|
|
// wildcard path-pattern matchers.
|
|
func isEntryExcluded(dir string, entry *filer_pb.Entry, reExcludeFileName *regexp.Regexp, excludeFileNames []*wildcard.WildcardMatcher, excludePathPatterns []*wildcard.WildcardMatcher) bool {
|
|
if entry == nil {
|
|
return false
|
|
}
|
|
// deprecated regexp-based filename exclusion
|
|
if reExcludeFileName != nil && reExcludeFileName.MatchString(entry.Name) {
|
|
return true
|
|
}
|
|
// wildcard-based filename exclusion
|
|
if len(excludeFileNames) > 0 && matchesAnyWildcard(excludeFileNames, entry.Name) {
|
|
return true
|
|
}
|
|
// wildcard-based path-pattern exclusion: match against each directory
|
|
// component and the entry name itself
|
|
if len(excludePathPatterns) > 0 {
|
|
if pathContainsWildcardMatch(dir, excludePathPatterns) {
|
|
return true
|
|
}
|
|
if matchesAnyWildcard(excludePathPatterns, entry.Name) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
func matchesExcludePath(dir string, excludePaths []string) bool {
|
|
for _, excludePath := range excludePaths {
|
|
if util.IsEqualOrUnder(dir, excludePath) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
// compileExcludePattern compiles a regexp pattern string, returning nil if empty.
|
|
func compileExcludePattern(pattern string, label string) (*regexp.Regexp, error) {
|
|
if pattern == "" {
|
|
return nil, nil
|
|
}
|
|
re, err := regexp.Compile(pattern)
|
|
if err != nil {
|
|
return nil, fmt.Errorf("error compile regexp %v for %s: %+v", pattern, label, err)
|
|
}
|
|
return re, nil
|
|
}
|
|
|
|
// matchesAnyWildcard returns true if any matcher matches the value.
|
|
// Returns false when matchers is empty (unlike wildcard.MatchesAnyWildcard
|
|
// which returns true for empty matchers).
|
|
func matchesAnyWildcard(matchers []*wildcard.WildcardMatcher, value string) bool {
|
|
for _, m := range matchers {
|
|
if m != nil && m.Match(value) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
// pathContainsWildcardMatch checks if any component of the given path matches
|
|
// any of the wildcard matchers, without allocating a slice.
|
|
func pathContainsWildcardMatch(path string, matchers []*wildcard.WildcardMatcher) bool {
|
|
for path != "" {
|
|
i := strings.IndexByte(path, '/')
|
|
var component string
|
|
if i < 0 {
|
|
component = path
|
|
path = ""
|
|
} else {
|
|
component = path[:i]
|
|
path = path[i+1:]
|
|
}
|
|
if component != "" && matchesAnyWildcard(matchers, component) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|