mirror of
https://github.com/seaweedfs/seaweedfs.git
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* filer: stop silently dropping metadata replay failures from peers When two filers do not share a store (e.g. one leveldb3 per pod), each subscribes to its peers' metadata streams and replays their events locally (meta_aggregator.go's maybeReplicateMetadataChange, wired into doSubscribeToOneFiler). A failed Replay() was logged and then treated as done anyway: processEventFn always returned nil regardless of the replay outcome, and processOne advanced lastTsNs unconditionally. The offset is the only record of subscription progress, so a dropped event was gone for good - no retry, and nothing else ever observed it. An entry that fails to replay this way diverges from its peer permanently. This is how a bucket's quota (entry.Quota, carried on peer events like everything else - see entry_codec.go's EqualEntry comparing Quota, and FromPbEntry copying it in entry.go) can end up different across filers indefinitely: one replay hiccup on one filer, and its enforcement and any metric reading its own store diverges from the others' with no signal anything went wrong. Fix: replicateMetadataChange now retries a failure with util.Retry, which already distinguishes transient errors (timeouts, connection resets, throttling, ...) from everything else and bounds the backoff. That covers the common case - a busy store, a blip talking to a remote-backed backend - without changing behavior when replay succeeds. An error that is not transient, or outlives the retry budget, is not retried further: propagating it so the offset never advances would stall this peer's entire stream behind one event that may never replay, which is worse than the one entry staying stale. Instead it is skipped, loudly - counted in a new stats.FilerMetaAggregatorReplayFailures metric and logged at error level - so the divergence is discoverable instead of silent. Tested: go build ./... and go test ./weed/filer/... ./weed/server/... Added meta_aggregator_replay_test.go: one test fails against the old one-shot Replay call (a single transient failure is never retried, so the store never converges) and passes with the fix; a second covers a permanently-failing event completing quickly and being counted instead of retried forever. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * filer: keep the test quota constant int64 for 32-bit builds An untyped shift constant passed to t.Fatalf's ...any defaults to int and overflows on 32-bit, failing go vet there. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * filer: name the diverged entry in the give-up log line event.Directory is only the parent (typically /buckets), so for any directory with more than one child the previous log line could not say which entry failed to replay - the exact thing the change exists to make discoverable. Name comes from NewEntry, falling back to OldEntry for deletes; both getters are nil-safe. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore(filer): trim metadata replay comments to the non-obvious why Compress the added comments on replicateMetadataChange and its tests down to the reasoning a maintainer cannot get from the code: why a retry-exhausted failure is skipped rather than propagated, what the old one-shot Replay body did that the test pins, and why the quota constant is typed int64. Drops deployment-specific narration and restatement of the code. No behaviour change. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: restore load-bearing clauses trimmed in the comment pass Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * filer: document and test the multi-step DeleteEntry replay hazard CodeRabbit flagged that FilerStoreWrapper.DeleteEntry skips the delete once FindEntry reports the path already gone, and that the redis store families remove the primary key before parent-directory membership. Chained together, a delete that fails between those two steps is retried as a no-op: the stale membership is never revisited, and replicateMetadataChange now reports overall success for it without incrementing FilerMetaAggregatorReplayFailures, whereas before this PR every such failure was unconditionally logged. The underlying store inconsistency is pre-existing (a single non-retried Replay already leaves the same stale membership behind); what retry adds is that this one case no longer surfaces it. Making Replay atomic or teaching every store to repair secondary mutations on retry is out of scope here. Instead: document the hazard at Replay, filerstore_wrapper.go's DeleteEntry, and replicateMetadataChange, and add a test against the real FilerStoreWrapper (not a strawman) that pins down the current, documented behavior. * filer: trim replay retry comments and tests Drop the comment-only hunks documenting the pre-existing DeleteEntry partial-failure hazard, the test that asserted that hazard still exists, and the second hand-rolled fake store. Reuse stubFilerStore for the two retry tests. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: Chris Lu <chris.lu@gmail.com>
1159 lines
42 KiB
Go
1159 lines
42 KiB
Go
package stats
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import (
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"net"
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"net/http"
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"os"
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"runtime"
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"strconv"
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"strings"
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"sync"
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"time"
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"github.com/prometheus/client_golang/prometheus"
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"github.com/prometheus/client_golang/prometheus/collectors"
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"github.com/prometheus/client_golang/prometheus/promhttp"
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"github.com/prometheus/client_golang/prometheus/push"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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)
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// SetVersionInfo sets the version information for the BuildInfo metric
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// This is called by the version package during initialization.
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// It uses sync.Once to ensure the build information is set only once,
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// making it safe to call multiple times while ensuring immutability.
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var SetVersionInfo = func() func(string, string, string) {
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var once sync.Once
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return func(version, commitHash, sizeLimit string) {
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once.Do(func() {
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BuildInfo.WithLabelValues(version, commitHash, sizeLimit, runtime.GOOS, runtime.GOARCH).Set(1)
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})
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}
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}()
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// Readonly volume types
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const (
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Namespace = "SeaweedFS"
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IsReadOnly = "IsReadOnly"
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NoWriteOrDelete = "noWriteOrDelete"
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NoWriteCanDelete = "noWriteCanDelete"
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IsDiskSpaceLow = "isDiskSpaceLow"
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bucketAtiveTTL = 10 * time.Minute
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)
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// Prometheus metric subsystems.
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const (
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subsystemBuild = "build"
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subsystemMaster = "master"
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subsystemWDClient = "wdclient"
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subsystemFiler = "filer"
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subsystemFilerStore = "filerStore"
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subsystemFilerSync = "filerSync"
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subsystemVolumeServer = "volumeServer"
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subsystemS3 = "s3"
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subsystemS3Lifecycle = "s3_lifecycle"
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subsystemAdmin = "admin"
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subsystemRemote = "remote"
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)
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var bucketLastActiveTsNs map[string]int64 = map[string]int64{}
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var bucketLastActiveLock sync.Mutex
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var (
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Gather = prometheus.NewRegistry()
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BuildInfo = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemBuild,
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Name: "info",
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Help: "A metric with a constant '1' value labeled by version, commit, sizelimit, goos, and goarch from which SeaweedFS was built.",
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}, []string{"version", "commit", "sizelimit", "goos", "goarch"})
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MasterStartTimeSeconds = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "start_time_seconds",
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Help: "Start time of the master, as seconds since UNIX epoch.",
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})
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MasterClientConnectCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemWDClient,
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Name: "connect_updates",
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Help: "Counter of master client leader updates.",
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}, []string{"type"})
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MasterRaftIsleader = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "is_leader",
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Help: "is leader",
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})
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MasterAdminLock = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "admin_lock",
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Help: "admin lock",
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}, []string{"client"})
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MasterReceivedHeartbeatCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "received_heartbeats",
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Help: "Counter of master received heartbeat.",
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}, []string{"type"})
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MasterReplicaPlacementMismatch = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "replica_placement_mismatch",
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Help: "replica placement mismatch",
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}, []string{"collection", "id"})
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MasterVolumeLayoutWritable = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "volume_layout_writable",
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Help: "Number of writable volumes in volume layouts",
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}, []string{"collection", "disk", "rp", "ttl"})
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MasterVolumeLayoutCrowded = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "volume_layout_crowded",
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Help: "Number of crowded volumes in volume layouts",
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}, []string{"collection", "disk", "rp", "ttl"})
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// MasterUnderReplicatedVolumes tracks volumes that do not have enough replicas,
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// partitioned by collection, disk type, replication type, and TTL.
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MasterUnderReplicatedVolumes = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "under_replicated_volumes",
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Help: "Current number of volumes that do not have enough replicas per collection/layout. 0 = healthy.",
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}, []string{"collection", "disk", "rp", "ttl"})
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// MasterVolumeCreationCounter counts volume creation (growth) operations by result (success, failure).
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// Volume growth is orchestrated by the master, so this metric is exported by the master process.
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MasterVolumeCreationCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "volume_creation_total",
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Help: "Counter of volume creation operations by result (success, failure).",
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}, []string{"result"})
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MasterPickForWriteErrorCounter = prometheus.NewCounter(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "pick_for_write_error",
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Help: "Counter of master pick for write error",
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})
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MasterBroadcastToFullErrorCounter = prometheus.NewCounter(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "broadcast_to_full",
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Help: "Counter of master broadcast send to full message channel err",
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})
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MasterLeaderChangeCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemMaster,
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Name: "leader_changes",
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Help: "Counter of master leader changes.",
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}, []string{"type"})
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FilerRequestCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "request_total",
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Help: "Counter of filer requests.",
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}, []string{"type", "code"})
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FilerHandlerCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "handler_total",
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Help: "Counter of filer handlers.",
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}, []string{"type"})
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FilerRequestHistogram = prometheus.NewHistogramVec(
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prometheus.HistogramOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "request_seconds",
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Help: "Bucketed histogram of filer request processing time.",
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Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
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}, []string{"type"})
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FilerInFlightRequestsGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "in_flight_requests",
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Help: "Current number of in-flight requests being handled by filer.",
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}, []string{"type"})
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FilerInFlightUploadBytesGauge = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "in_flight_upload_bytes",
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Help: "Current number of bytes being uploaded to filer.",
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})
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FilerInFlightUploadCountGauge = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "in_flight_upload_count",
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Help: "Current number of uploads in progress to filer.",
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})
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FilerServerLastSendTsOfSubscribeGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "last_send_timestamp_of_subscribe",
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Help: "The last send timestamp of the filer subscription.",
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}, []string{"sourceFiler", "clientName", "path"})
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FilerSubscribeUnprovenGapCrossings = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "subscribe_unproven_gap_crossings",
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Help: "Times a metadata subscriber moved past a log range without proof it was persisted: scope=aggregated means a peer may not have flushed it, scope=local means this filer's own log flush was wedged past the give-up bound.",
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}, []string{"scope"})
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FilerSubscribeGapStalledGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "subscribe_gap_stalled",
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Help: "Number of metadata subscribers currently parked waiting to read past a gap in the metadata log.",
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}, []string{"scope"})
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FilerMetaAggregatorReplayFailures = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "meta_aggregator_replay_failures",
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Help: "Number of peer metadata events skipped after replay retries were exhausted, leaving that entry diverged from the peer.",
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}, []string{"peer"})
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// Sampled only on first creation, so counts track distinct objects.
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FilerObjectSizeBytesHistogram = prometheus.NewHistogram(
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prometheus.HistogramOpts{
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Namespace: Namespace,
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Subsystem: subsystemFiler,
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Name: "object_size_bytes",
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Help: "Distribution of object sizes in bytes, sampled when an object is first created.",
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Buckets: []float64{1024, 102400, 1048576, 104857600, 1073741824},
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})
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FilerStoreCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemFilerStore,
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Name: "request_total",
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Help: "Counter of filer store requests.",
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}, []string{"store", "type"})
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FilerStoreHistogram = prometheus.NewHistogramVec(
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prometheus.HistogramOpts{
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Namespace: Namespace,
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Subsystem: subsystemFilerStore,
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Name: "request_seconds",
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Help: "Bucketed histogram of filer store request processing time.",
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Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
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}, []string{"store", "type"})
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FilerSyncOffsetGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemFilerSync,
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Name: "sync_offset",
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Help: "The offset of the filer synchronization service.",
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}, []string{"sourceFiler", "targetFiler", "clientName", "path"})
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VolumeServerStartTimeSeconds = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "start_time_seconds",
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Help: "Start time of the volume server, as seconds since UNIX epoch.",
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})
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VolumeServerRequestCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "request_total",
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Help: "Counter of volume server requests.",
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}, []string{"type", "code"})
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VolumeServerHandlerCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "handler_total",
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Help: "Counter of volume server handlers.",
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}, []string{"type"})
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VolumeServerVacuumingCompactCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "vacuuming_compact_count",
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Help: "Counter of volume vacuuming Compact counter",
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}, []string{"success"})
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VolumeServerVacuumingCommitCounter = prometheus.NewCounterVec(
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prometheus.CounterOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "vacuuming_commit_count",
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Help: "Counter of volume vacuuming commit counter",
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}, []string{"success"})
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VolumeServerVacuumingHistogram = prometheus.NewHistogramVec(
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prometheus.HistogramOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "vacuuming_seconds",
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Help: "Bucketed histogram of volume server vacuuming processing time.",
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Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
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}, []string{"type"})
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VolumeServerRequestHistogram = prometheus.NewHistogramVec(
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prometheus.HistogramOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "request_seconds",
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Help: "Bucketed histogram of volume server request processing time.",
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Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
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}, []string{"type"})
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VolumeServerInFlightRequestsGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "in_flight_requests",
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Help: "Current number of in-flight requests being handled by volume server.",
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}, []string{"type"})
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VolumeServerVolumeGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "volumes",
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Help: "Number of volumes or shards.",
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}, []string{"collection", "type"})
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VolumeServerReadOnlyVolumeGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "read_only_volumes",
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Help: "Number of read only volumes.",
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}, []string{"collection", "type"})
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VolumeServerMaxVolumeCounter = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "max_volumes",
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Help: "Maximum number of volumes.",
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})
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VolumeServerDiskSizeGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "total_disk_size",
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Help: "Actual disk size used by volumes.",
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}, []string{"collection", "type"})
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VolumeServerResourceGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "resource",
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Help: "Resource usage",
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}, []string{"name", "type"})
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VolumeServerDiskErrorGauge = prometheus.NewGaugeVec(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "disk_error_status",
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Help: "Disk error status",
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}, []string{"name", "type"})
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VolumeServerConcurrentDownloadLimit = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "concurrent_download_limit",
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Help: "Limit total concurrent download size.",
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})
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VolumeServerConcurrentUploadLimit = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "concurrent_upload_limit",
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Help: "Limit total concurrent upload size.",
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})
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VolumeServerInFlightDownloadSize = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
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Subsystem: subsystemVolumeServer,
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Name: "in_flight_download_size",
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Help: "In flight total download size.",
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})
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VolumeServerInFlightUploadSize = prometheus.NewGauge(
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prometheus.GaugeOpts{
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Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "in_flight_upload_size",
|
|
Help: "In flight total upload size.",
|
|
})
|
|
|
|
VolumeServerMasterDisconnections = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "master_disconnections",
|
|
Help: "Number of master server disconnections.",
|
|
}, []string{"address"})
|
|
|
|
VolumeServerFileReadFailures = prometheus.NewCounter(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "file_read_failures",
|
|
Help: "Counter of overall failed file read requests from clients.",
|
|
})
|
|
|
|
VolumeServerFileReadInvalidNeedles = prometheus.NewCounter(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "file_read_invalid_needles",
|
|
Help: "Counter of failed file read requests due to invalid needle IDs from clients.",
|
|
})
|
|
|
|
VolumeServerFileWriteFailures = prometheus.NewCounter(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "file_write_failures",
|
|
Help: "Counter of overall failed file write requests from clients.",
|
|
})
|
|
|
|
VolumeServerScrubLastTimeSeconds = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "scrub_last_time_seconds",
|
|
Help: "Last scrub execution time, as seconds since UNIX epoch.",
|
|
}, []string{"mode"})
|
|
|
|
VolumeServerScrubVolumeFailures = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "scrub_volume_failures",
|
|
Help: "Counter of overall volumes with issues detected during scrubbing.",
|
|
}, []string{"mode"})
|
|
|
|
VolumeServerScrubShardFailures = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "scrub_shard_failures",
|
|
Help: "Counter of overall EC shards with issues detected during scrubbing.",
|
|
}, []string{"mode"})
|
|
|
|
// VolumeServerReplicationCounter counts replication operations by operation type
|
|
// (write, delete) and result (success, failure).
|
|
VolumeServerReplicationCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "replication_operations_total",
|
|
Help: "Counter of replication operations by type (write, delete) and result (success, failure).",
|
|
}, []string{"operation", "result"})
|
|
|
|
// VolumeServerReplicationHistogram records replication operation duration in seconds,
|
|
// partitioned by operation type (write, delete).
|
|
VolumeServerReplicationHistogram = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "replication_seconds",
|
|
Help: "Bucketed histogram of replication operation duration in seconds.",
|
|
Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
|
|
}, []string{"operation"})
|
|
|
|
// VolumeServerReplicationTargets records the number of replica targets per replication
|
|
// operation, useful for observing fan-out width.
|
|
VolumeServerReplicationTargets = prometheus.NewHistogram(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "replication_targets",
|
|
Help: "Histogram of replica targets count per replication operation.",
|
|
Buckets: []float64{1, 2, 3, 4, 5},
|
|
})
|
|
|
|
// VolumeServerReplicationFailures counts replication failures by operation type
|
|
// and failure reason (timeout, connection_refused, context_cancelled, server_error).
|
|
VolumeServerReplicationFailures = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "replication_failures_total",
|
|
Help: "Counter of replication failures by operation and reason (timeout, connection_refused, context_cancelled, server_error).",
|
|
}, []string{"operation", "reason"})
|
|
|
|
// VolumeServerECRebuildHistogram records the duration of EC shard rebuild operations by result (success, failure).
|
|
VolumeServerECRebuildHistogram = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "ec_rebuild_seconds",
|
|
Help: "Bucketed histogram of EC shard rebuild/reconstruct duration by result.",
|
|
Buckets: prometheus.ExponentialBuckets(0.01, 2, 20),
|
|
}, []string{"result"})
|
|
|
|
// VolumeServerECRebuildCounter counts EC shard rebuild operations by result (success, failure).
|
|
VolumeServerECRebuildCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemVolumeServer,
|
|
Name: "ec_rebuild_total",
|
|
Help: "Counter of EC shard rebuild operations by result.",
|
|
}, []string{"result"})
|
|
|
|
S3RequestCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "request_total",
|
|
Help: "Counter of s3 requests.",
|
|
}, []string{"type", "code", "bucket"})
|
|
|
|
S3HandlerCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "handler_total",
|
|
Help: "Counter of s3 server handlers.",
|
|
}, []string{"type"})
|
|
|
|
S3RequestHistogram = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "request_seconds",
|
|
Help: "Bucketed histogram of s3 request processing time.",
|
|
Buckets: prometheus.ExponentialBuckets(0.0001, 2, 24),
|
|
}, []string{"type", "bucket"})
|
|
|
|
S3TimeToFirstByteHistogram = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "time_to_first_byte_millisecond",
|
|
Help: "Bucketed histogram of s3 time to first byte request processing time.",
|
|
Buckets: prometheus.ExponentialBuckets(0.001, 2, 27),
|
|
}, []string{"type", "bucket"})
|
|
S3InFlightRequestsGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "in_flight_requests",
|
|
Help: "Current number of in-flight requests being handled by s3.",
|
|
}, []string{"type"})
|
|
|
|
S3InFlightUploadBytesGauge = prometheus.NewGauge(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "in_flight_upload_bytes",
|
|
Help: "Current number of bytes being uploaded to S3.",
|
|
})
|
|
|
|
S3InFlightUploadCountGauge = prometheus.NewGauge(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "in_flight_upload_count",
|
|
Help: "Current number of uploads in progress to S3.",
|
|
})
|
|
|
|
S3BucketTrafficReceivedBytesCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_traffic_received_bytes_total",
|
|
Help: "Total number of bytes received by an S3 bucket from clients.",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketTrafficSentBytesCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_traffic_sent_bytes_total",
|
|
Help: "Total number of bytes sent from an S3 bucket to clients.",
|
|
}, []string{"bucket"})
|
|
|
|
S3DeletedObjectsCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "deleted_objects",
|
|
Help: "Number of objects deleted in each bucket.",
|
|
}, []string{"bucket"})
|
|
|
|
S3UploadedObjectsCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "uploaded_objects",
|
|
Help: "Number of objects uploaded in each bucket.",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketSizeBytesGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_size_bytes",
|
|
Help: "Current size of each S3 bucket in bytes (logical size, deduplicated across replicas).",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketPhysicalSizeBytesGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_physical_size_bytes",
|
|
Help: "Current physical size of each S3 bucket in bytes (including all replicas).",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketObjectCountGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_object_count",
|
|
Help: "Current number of objects in each S3 bucket (logical count, deduplicated across replicas).",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketQuotaBytesGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_quota_bytes",
|
|
Help: "Configured quota of each S3 bucket in bytes. Only present for buckets with an enabled quota.",
|
|
}, []string{"bucket"})
|
|
|
|
S3BucketReadOnlyGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3,
|
|
Name: "bucket_read_only",
|
|
Help: "Whether each S3 bucket is read-only (1) or writable (0), e.g. after exceeding its quota.",
|
|
}, []string{"bucket"})
|
|
|
|
RemoteCacheReadCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemRemote,
|
|
Name: "cache_read_total",
|
|
Help: "Remote-mount object read attempts by source, bucket and cache result. A cold object retried before caching completes records a miss per attempt; paths outside the buckets folder use bucket \"_other\".",
|
|
}, []string{"source", "bucket", "result"})
|
|
|
|
UploadErrorCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Name: "upload_error_total",
|
|
Help: "Counter of upload errors by HTTP status code. Code 0 means transport error (no response received).",
|
|
}, []string{"code"})
|
|
|
|
S3LifecycleDispatchCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "dispatch_total",
|
|
Help: "Counter of LifecycleDelete RPC outcomes by bucket, action kind, and outcome.",
|
|
}, []string{"bucket", "kind", "outcome"})
|
|
|
|
S3LifecycleScheduleDepthGauge = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "schedule_depth",
|
|
Help: "Number of pending matches in the dispatcher schedule per shard.",
|
|
}, []string{"shard"})
|
|
|
|
S3LifecycleCursorMinTsNs = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "cursor_min_ts_ns",
|
|
Help: "Per-shard min cursor timestamp in nanoseconds since epoch (lag = now - min).",
|
|
}, []string{"shard"})
|
|
|
|
S3LifecycleEventCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "events_total",
|
|
Help: "Counter of meta-log events the reader emitted to the router, partitioned by shard.",
|
|
}, []string{"shard"})
|
|
|
|
S3LifecycleBootstrapDispatchCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "bootstrap_dispatch_total",
|
|
Help: "Counter of bootstrap-walk Delete dispatches by bucket and action kind.",
|
|
}, []string{"bucket", "kind"})
|
|
|
|
// S3LifecycleMetadataOnlyCounter counts successful LifecycleDelete
|
|
// dispatches that took the metadata-only path — entry was removed
|
|
// without per-chunk DeleteFile RPCs because the entry's Attributes
|
|
// .TtlSec > 0 and the volume's natural TTL will reclaim chunks. Per-
|
|
// rule cardinality (rule_hash hex-encoded) lets operators identify
|
|
// which specific rule is exercising the optimization; in clusters
|
|
// with many rules this can be reduced via Prometheus relabeling.
|
|
S3LifecycleMetadataOnlyCounter = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "metadata_only_total",
|
|
Help: "Counter of LifecycleDelete completions that skipped per-chunk delete (volume TTL reclaim).",
|
|
}, []string{"bucket", "rule_hash"})
|
|
|
|
// S3LifecycleDispatchLimiterWaitSeconds is the cluster-wide rate
|
|
// limiter's per-dispatch wait time on the daily-replay path. The
|
|
// limiter blocks just before each LifecycleDelete RPC; near-zero
|
|
// observations mean the cluster cap isn't binding, a long-tail at
|
|
// the configured 1/rate ceiling means the cluster cap is the
|
|
// active throttle. Operators tune cluster_deletes_per_second by
|
|
// reading p95/p99 on this histogram.
|
|
S3LifecycleDispatchLimiterWaitSeconds = prometheus.NewHistogram(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "dispatch_limiter_wait_seconds",
|
|
Help: "Time spent waiting on the cluster rate limiter before issuing a LifecycleDelete RPC. Non-zero values indicate the cluster cap is binding.",
|
|
Buckets: []float64{0.0001, 0.001, 0.01, 0.05, 0.1, 0.25, 0.5, 1, 2.5, 5, 10},
|
|
})
|
|
|
|
S3LifecycleDailyRunShardDurationSeconds = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "daily_run_shard_duration_seconds",
|
|
Help: "Wall-clock seconds spent in one shard's daily_replay pass. p95 climbing toward MaxRuntime means the shard is brushing its budget.",
|
|
Buckets: []float64{0.1, 0.5, 1, 5, 15, 60, 300, 900, 1800, 3600},
|
|
}, []string{"shard"})
|
|
|
|
S3LifecycleDailyRunEventsScanned = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "daily_run_events_scanned_total",
|
|
Help: "Counter of meta-log events drainShardEvents processed on the daily_replay path, partitioned by shard.",
|
|
}, []string{"shard"})
|
|
|
|
// S3LifecycleDailyRunLastWalkedNs is the per-shard wall-clock
|
|
// timestamp (UnixNano) of the most recent successful steady-state /
|
|
// empty-replay walker fire. Set by dailyrun.runShard after each
|
|
// cursor save. Zero means the shard hasn't completed a walk yet
|
|
// (either cold start, or the walker never fired because the bucket
|
|
// has only replay-eligible rules and the throttle hasn't elapsed).
|
|
// Operators read (now - last_walked_ns) to confirm the walker
|
|
// cadence matches WalkerInterval; a stuck value means the
|
|
// scheduler isn't invoking the worker, the throttle is too long,
|
|
// or the walker is failing.
|
|
S3LifecycleDailyRunLastWalkedNs = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemS3Lifecycle,
|
|
Name: "daily_run_last_walked_ns",
|
|
Help: "Per-shard timestamp (UnixNano) of the most recent successful walker fire. 0 means the shard hasn't completed a walk yet.",
|
|
}, []string{"shard"})
|
|
|
|
AdminMaintenanceTasksByStatus = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_tasks_by_status",
|
|
Help: "Current number of maintenance tasks by status (pending, assigned, in_progress, completed, failed, cancelled).",
|
|
}, []string{"status"})
|
|
|
|
AdminMaintenanceTasksByType = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_tasks_by_type",
|
|
Help: "Current number of maintenance tasks by type.",
|
|
}, []string{"type"})
|
|
|
|
AdminMaintenanceTasksCompletedTotal = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_tasks_completed_total",
|
|
Help: "Counter of maintenance tasks that reached a terminal state, by type and outcome (completed, failed).",
|
|
}, []string{"type", "outcome"})
|
|
|
|
AdminMaintenanceTaskDurationSeconds = prometheus.NewHistogramVec(
|
|
prometheus.HistogramOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_task_duration_seconds",
|
|
Help: "Execution time of maintenance tasks that reached a terminal state, by type.",
|
|
Buckets: prometheus.ExponentialBuckets(1, 2, 16),
|
|
}, []string{"type"})
|
|
|
|
AdminMaintenanceLastScanTimestampSeconds = prometheus.NewGauge(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_last_scan_timestamp_seconds",
|
|
Help: "Unix timestamp of the most recent maintenance scan. 0 means no scan has run yet.",
|
|
})
|
|
|
|
AdminMaintenanceNextScanTimestampSeconds = prometheus.NewGauge(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "maintenance_next_scan_timestamp_seconds",
|
|
Help: "Unix timestamp of the next expected maintenance scan.",
|
|
})
|
|
|
|
AdminWorkersConnected = prometheus.NewGauge(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "workers_connected",
|
|
Help: "Current number of maintenance workers known to the admin server.",
|
|
})
|
|
|
|
AdminWorkerSlots = prometheus.NewGaugeVec(
|
|
prometheus.GaugeOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "worker_slots",
|
|
Help: "Maintenance worker task slots aggregated across workers, by state (used, max).",
|
|
}, []string{"state"})
|
|
|
|
AdminWorkerEventsTotal = prometheus.NewCounterVec(
|
|
prometheus.CounterOpts{
|
|
Namespace: Namespace,
|
|
Subsystem: subsystemAdmin,
|
|
Name: "worker_events_total",
|
|
Help: "Counter of maintenance worker lifecycle events by type (registered, unregistered, stale_removed).",
|
|
}, []string{"event"})
|
|
)
|
|
|
|
func init() {
|
|
Gather.MustRegister(BuildInfo)
|
|
|
|
Gather.MustRegister(MasterStartTimeSeconds)
|
|
Gather.MustRegister(MasterClientConnectCounter)
|
|
Gather.MustRegister(MasterRaftIsleader)
|
|
Gather.MustRegister(MasterAdminLock)
|
|
Gather.MustRegister(MasterReceivedHeartbeatCounter)
|
|
Gather.MustRegister(MasterLeaderChangeCounter)
|
|
Gather.MustRegister(MasterReplicaPlacementMismatch)
|
|
Gather.MustRegister(MasterVolumeLayoutWritable)
|
|
Gather.MustRegister(MasterVolumeLayoutCrowded)
|
|
Gather.MustRegister(MasterPickForWriteErrorCounter)
|
|
Gather.MustRegister(MasterBroadcastToFullErrorCounter)
|
|
|
|
Gather.MustRegister(FilerRequestCounter)
|
|
Gather.MustRegister(FilerHandlerCounter)
|
|
Gather.MustRegister(FilerRequestHistogram)
|
|
Gather.MustRegister(FilerInFlightRequestsGauge)
|
|
Gather.MustRegister(FilerInFlightUploadBytesGauge)
|
|
Gather.MustRegister(FilerInFlightUploadCountGauge)
|
|
Gather.MustRegister(FilerStoreCounter)
|
|
Gather.MustRegister(FilerStoreHistogram)
|
|
Gather.MustRegister(FilerSyncOffsetGauge)
|
|
Gather.MustRegister(FilerServerLastSendTsOfSubscribeGauge)
|
|
Gather.MustRegister(FilerSubscribeGapStalledGauge)
|
|
Gather.MustRegister(FilerSubscribeUnprovenGapCrossings)
|
|
Gather.MustRegister(FilerMetaAggregatorReplayFailures)
|
|
Gather.MustRegister(FilerObjectSizeBytesHistogram)
|
|
Gather.MustRegister(collectors.NewGoCollector())
|
|
Gather.MustRegister(collectors.NewProcessCollector(collectors.ProcessCollectorOpts{}))
|
|
|
|
Gather.MustRegister(VolumeServerStartTimeSeconds)
|
|
Gather.MustRegister(VolumeServerRequestCounter)
|
|
Gather.MustRegister(VolumeServerHandlerCounter)
|
|
Gather.MustRegister(VolumeServerRequestHistogram)
|
|
Gather.MustRegister(VolumeServerInFlightRequestsGauge)
|
|
Gather.MustRegister(VolumeServerVacuumingCompactCounter)
|
|
Gather.MustRegister(VolumeServerVacuumingCommitCounter)
|
|
Gather.MustRegister(VolumeServerVacuumingHistogram)
|
|
Gather.MustRegister(VolumeServerVolumeGauge)
|
|
Gather.MustRegister(VolumeServerMaxVolumeCounter)
|
|
Gather.MustRegister(VolumeServerReadOnlyVolumeGauge)
|
|
Gather.MustRegister(VolumeServerDiskSizeGauge)
|
|
Gather.MustRegister(VolumeServerResourceGauge)
|
|
Gather.MustRegister(VolumeServerDiskErrorGauge)
|
|
Gather.MustRegister(VolumeServerConcurrentDownloadLimit)
|
|
Gather.MustRegister(VolumeServerConcurrentUploadLimit)
|
|
Gather.MustRegister(VolumeServerInFlightDownloadSize)
|
|
Gather.MustRegister(VolumeServerInFlightUploadSize)
|
|
Gather.MustRegister(VolumeServerMasterDisconnections)
|
|
Gather.MustRegister(VolumeServerFileReadFailures)
|
|
Gather.MustRegister(VolumeServerFileReadInvalidNeedles)
|
|
Gather.MustRegister(VolumeServerFileWriteFailures)
|
|
Gather.MustRegister(VolumeServerScrubLastTimeSeconds)
|
|
Gather.MustRegister(VolumeServerScrubVolumeFailures)
|
|
Gather.MustRegister(VolumeServerScrubShardFailures)
|
|
Gather.MustRegister(VolumeServerReplicationCounter)
|
|
Gather.MustRegister(VolumeServerReplicationHistogram)
|
|
Gather.MustRegister(VolumeServerReplicationTargets)
|
|
Gather.MustRegister(VolumeServerReplicationFailures)
|
|
Gather.MustRegister(VolumeServerECRebuildHistogram)
|
|
Gather.MustRegister(VolumeServerECRebuildCounter)
|
|
Gather.MustRegister(MasterUnderReplicatedVolumes)
|
|
Gather.MustRegister(MasterVolumeCreationCounter)
|
|
|
|
Gather.MustRegister(S3RequestCounter)
|
|
Gather.MustRegister(S3HandlerCounter)
|
|
Gather.MustRegister(S3RequestHistogram)
|
|
Gather.MustRegister(S3InFlightRequestsGauge)
|
|
Gather.MustRegister(S3InFlightUploadBytesGauge)
|
|
Gather.MustRegister(S3InFlightUploadCountGauge)
|
|
Gather.MustRegister(S3TimeToFirstByteHistogram)
|
|
Gather.MustRegister(S3BucketTrafficReceivedBytesCounter)
|
|
Gather.MustRegister(S3BucketTrafficSentBytesCounter)
|
|
Gather.MustRegister(S3DeletedObjectsCounter)
|
|
Gather.MustRegister(S3UploadedObjectsCounter)
|
|
Gather.MustRegister(S3BucketSizeBytesGauge)
|
|
Gather.MustRegister(S3BucketPhysicalSizeBytesGauge)
|
|
Gather.MustRegister(S3BucketObjectCountGauge)
|
|
Gather.MustRegister(S3BucketQuotaBytesGauge)
|
|
Gather.MustRegister(S3BucketReadOnlyGauge)
|
|
|
|
Gather.MustRegister(RemoteCacheReadCounter)
|
|
|
|
Gather.MustRegister(S3LifecycleDispatchCounter)
|
|
Gather.MustRegister(S3LifecycleScheduleDepthGauge)
|
|
Gather.MustRegister(S3LifecycleCursorMinTsNs)
|
|
Gather.MustRegister(S3LifecycleEventCounter)
|
|
Gather.MustRegister(S3LifecycleBootstrapDispatchCounter)
|
|
Gather.MustRegister(S3LifecycleMetadataOnlyCounter)
|
|
Gather.MustRegister(S3LifecycleDispatchLimiterWaitSeconds)
|
|
Gather.MustRegister(S3LifecycleDailyRunShardDurationSeconds)
|
|
Gather.MustRegister(S3LifecycleDailyRunEventsScanned)
|
|
Gather.MustRegister(S3LifecycleDailyRunLastWalkedNs)
|
|
|
|
Gather.MustRegister(UploadErrorCounter)
|
|
|
|
Gather.MustRegister(AdminMaintenanceTasksByStatus)
|
|
Gather.MustRegister(AdminMaintenanceTasksByType)
|
|
Gather.MustRegister(AdminMaintenanceTasksCompletedTotal)
|
|
Gather.MustRegister(AdminMaintenanceTaskDurationSeconds)
|
|
Gather.MustRegister(AdminMaintenanceLastScanTimestampSeconds)
|
|
Gather.MustRegister(AdminMaintenanceNextScanTimestampSeconds)
|
|
Gather.MustRegister(AdminWorkersConnected)
|
|
Gather.MustRegister(AdminWorkerSlots)
|
|
Gather.MustRegister(AdminWorkerEventsTotal)
|
|
|
|
go bucketMetricTTLControl()
|
|
}
|
|
|
|
func LoopPushingMetric(name, instance, addr string, intervalSeconds int) {
|
|
if addr == "" || intervalSeconds == 0 {
|
|
return
|
|
}
|
|
|
|
glog.V(0).Infof("%s server sends metrics to %s every %d seconds", name, addr, intervalSeconds)
|
|
|
|
pusher := push.New(addr, name).Gatherer(Gather).Grouping("instance", instance)
|
|
|
|
for {
|
|
err := pusher.Push()
|
|
if err != nil && !strings.HasPrefix(err.Error(), "unexpected status code 200") {
|
|
glog.V(0).Infof("could not push metrics to prometheus push gateway %s: %v", addr, err)
|
|
}
|
|
if intervalSeconds <= 0 {
|
|
intervalSeconds = 15
|
|
}
|
|
time.Sleep(time.Duration(intervalSeconds) * time.Second)
|
|
}
|
|
}
|
|
|
|
func JoinHostPort(host string, port int) string {
|
|
portStr := strconv.Itoa(port)
|
|
if strings.HasPrefix(host, "[") && strings.HasSuffix(host, "]") {
|
|
return host + ":" + portStr
|
|
}
|
|
return net.JoinHostPort(host, portStr)
|
|
}
|
|
|
|
func StartMetricsServer(ip string, port int) {
|
|
if port == 0 {
|
|
return
|
|
}
|
|
http.Handle("/metrics", promhttp.HandlerFor(Gather, promhttp.HandlerOpts{}))
|
|
glog.Fatal(http.ListenAndServe(JoinHostPort(ip, port), nil))
|
|
}
|
|
|
|
func SourceName(port uint32) string {
|
|
hostname, err := os.Hostname()
|
|
if err != nil {
|
|
return "unknown"
|
|
}
|
|
return net.JoinHostPort(hostname, strconv.Itoa(int(port)))
|
|
}
|
|
|
|
func RecordBucketActiveTime(bucket string) {
|
|
bucketLastActiveLock.Lock()
|
|
bucketLastActiveTsNs[bucket] = time.Now().UnixNano()
|
|
bucketLastActiveLock.Unlock()
|
|
}
|
|
|
|
func RecordRemoteCacheRead(source, bucket string, hit bool) {
|
|
if bucket == "" {
|
|
bucket = "_other"
|
|
}
|
|
result := RemoteCacheResultMiss
|
|
if hit {
|
|
result = RemoteCacheResultHit
|
|
}
|
|
RemoteCacheReadCounter.WithLabelValues(source, bucket, result).Inc()
|
|
}
|
|
|
|
func DeleteBucketMetrics(bucket string) {
|
|
bucketLastActiveLock.Lock()
|
|
delete(bucketLastActiveTsNs, bucket)
|
|
bucketLastActiveLock.Unlock()
|
|
|
|
labels := prometheus.Labels{"bucket": bucket}
|
|
c := S3RequestCounter.DeletePartialMatch(labels)
|
|
c += S3RequestHistogram.DeletePartialMatch(labels)
|
|
c += S3TimeToFirstByteHistogram.DeletePartialMatch(labels)
|
|
c += S3BucketTrafficReceivedBytesCounter.DeletePartialMatch(labels)
|
|
c += S3BucketTrafficSentBytesCounter.DeletePartialMatch(labels)
|
|
c += S3DeletedObjectsCounter.DeletePartialMatch(labels)
|
|
c += S3UploadedObjectsCounter.DeletePartialMatch(labels)
|
|
c += S3BucketSizeBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketPhysicalSizeBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketObjectCountGauge.DeletePartialMatch(labels)
|
|
c += S3BucketQuotaBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketReadOnlyGauge.DeletePartialMatch(labels)
|
|
c += S3LifecycleDispatchCounter.DeletePartialMatch(labels)
|
|
c += S3LifecycleBootstrapDispatchCounter.DeletePartialMatch(labels)
|
|
c += S3LifecycleMetadataOnlyCounter.DeletePartialMatch(labels)
|
|
c += RemoteCacheReadCounter.DeletePartialMatch(labels)
|
|
|
|
glog.V(0).Infof("delete bucket metrics, %s: %d", bucket, c)
|
|
}
|
|
|
|
func DeleteCollectionMetrics(collection string) {
|
|
labels := prometheus.Labels{"collection": collection}
|
|
c := MasterReplicaPlacementMismatch.DeletePartialMatch(labels)
|
|
c += MasterVolumeLayoutWritable.DeletePartialMatch(labels)
|
|
c += MasterVolumeLayoutCrowded.DeletePartialMatch(labels)
|
|
c += MasterUnderReplicatedVolumes.DeletePartialMatch(labels)
|
|
c += VolumeServerDiskSizeGauge.DeletePartialMatch(labels)
|
|
c += VolumeServerVolumeGauge.DeletePartialMatch(labels)
|
|
c += VolumeServerReadOnlyVolumeGauge.DeletePartialMatch(labels)
|
|
|
|
glog.V(0).Infof("delete collection metrics, %s: %d", collection, c)
|
|
}
|
|
|
|
func bucketMetricTTLControl() {
|
|
ttlNs := bucketAtiveTTL.Nanoseconds()
|
|
for {
|
|
now := time.Now().UnixNano()
|
|
|
|
// Collect expired buckets under the lock, then release before
|
|
// doing the expensive Prometheus DeletePartialMatch calls.
|
|
// This prevents blocking RecordBucketActiveTime during cleanup.
|
|
bucketLastActiveLock.Lock()
|
|
var expiredBuckets []string
|
|
for bucket, ts := range bucketLastActiveTsNs {
|
|
if (now - ts) > ttlNs {
|
|
expiredBuckets = append(expiredBuckets, bucket)
|
|
delete(bucketLastActiveTsNs, bucket)
|
|
}
|
|
}
|
|
bucketLastActiveLock.Unlock()
|
|
|
|
for _, bucket := range expiredBuckets {
|
|
labels := prometheus.Labels{"bucket": bucket}
|
|
// Only delete gauges and histograms, which represent current state.
|
|
// Counters (traffic, requests, objects) must persist for the process
|
|
// lifetime so that Prometheus rate()/increase() queries work correctly.
|
|
c := S3RequestHistogram.DeletePartialMatch(labels)
|
|
c += S3TimeToFirstByteHistogram.DeletePartialMatch(labels)
|
|
c += S3BucketSizeBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketPhysicalSizeBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketObjectCountGauge.DeletePartialMatch(labels)
|
|
c += S3BucketQuotaBytesGauge.DeletePartialMatch(labels)
|
|
c += S3BucketReadOnlyGauge.DeletePartialMatch(labels)
|
|
glog.V(0).Infof("delete inactive bucket metrics, %s: %d", bucket, c)
|
|
}
|
|
|
|
time.Sleep(bucketAtiveTTL)
|
|
}
|
|
|
|
}
|
|
|
|
// UpdateBucketSizeMetrics updates the bucket size gauges
|
|
// logicalSize is the deduplicated size (accounting for replication)
|
|
// physicalSize is the raw size including all replicas
|
|
// objectCount is the number of objects in the bucket (deduplicated)
|
|
func UpdateBucketSizeMetrics(bucket string, logicalSize, physicalSize float64, objectCount float64) {
|
|
S3BucketSizeBytesGauge.WithLabelValues(bucket).Set(logicalSize)
|
|
S3BucketPhysicalSizeBytesGauge.WithLabelValues(bucket).Set(physicalSize)
|
|
S3BucketObjectCountGauge.WithLabelValues(bucket).Set(objectCount)
|
|
RecordBucketActiveTime(bucket)
|
|
}
|
|
|
|
// UpdateBucketQuotaMetrics updates the per-bucket quota gauges. A non-positive
|
|
// quota removes the quota series so utilization queries like
|
|
// bucket_size_bytes / bucket_quota_bytes only see enforced quotas.
|
|
func UpdateBucketQuotaMetrics(bucket string, quota float64, readOnly bool) {
|
|
if quota > 0 {
|
|
S3BucketQuotaBytesGauge.WithLabelValues(bucket).Set(quota)
|
|
} else {
|
|
S3BucketQuotaBytesGauge.DeleteLabelValues(bucket)
|
|
}
|
|
readOnlyValue := float64(0)
|
|
if readOnly {
|
|
readOnlyValue = 1
|
|
}
|
|
S3BucketReadOnlyGauge.WithLabelValues(bucket).Set(readOnlyValue)
|
|
}
|