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fix(vacuum): writable volume re-notification after worker VACUUM (#9732)
* fix(vacuum): notify master writable after worker vacuum commit Add Phase 3 (markWritableOne) that walks vacuumTargets and calls VolumeMarkWritable on each replica's volume server, mirroring batchVacuumVolumeCommit's per-replica SetVolumeAvailable. Failures are logged at WARN; the task does not fail because the vacuum itself already succeeded. See upstream seaweedfs#9685. * fix(vacuum): delay Phase 3 to let post-commit heartbeats settle Phase 3's VolumeMarkWritable can race with the volume server's first post-commit heartbeat. SetVolumeWritable adds the vid to writables, but a racing heartbeat whose ReadOnly value changed re-runs EnsureCorrectWritables against the master's per-replica cache, and any replica still cached as ReadOnly=true silently removes the vid again — with no further heartbeat change to trigger another recovery. Sleep 30s after Phase 2 (Commit) so every replica's post-vacuum heartbeat has reached the master before Phase 3 fires. Cancel cleanly on ctx.Done so a shutdown during the wait still exits. * fix(vacuum): reduce post-commit settle from 30s to 10s VolumePulsePeriod is 5s, so 10s (2x) is enough margin for every replica's post-commit heartbeat to reach the master before Phase 3 fires. 30s was overly conservative and made TestVacuumExecutionIntegration hit its 30s context deadline. * fix(vacuum): use flat 1m timeout for VolumeMarkWritable RPC VolumeMarkWritable on the volume server is a metadata operation (reopen idx + flags + master ReadOnly=false heartbeat), independent of volume size. Scaling via vacuumTimeout(time.Minute) gave it tens of minutes — even hours on TB volumes — so a single unresponsive replica could block Phase 3 indefinitely. Use a flat 1m cap. * fix(vacuum): gate post-vacuum mark-writable on commit read-only state Phase 3 force-called VolumeMarkWritable on every replica unconditionally, clearing the read-only flag and persisting ReadOnly=false even for a replica left read-only by an operator, an EIO quarantine, or low disk. That overrode states the master deliberately keeps out of writables; master built-in vacuum gates the same step on the commit's IsReadOnly via SetVolumeAvailable. Capture the VacuumVolumeCommit response and skip Phase 3 when any replica came back read-only, letting it recover on its own ReadOnly=false heartbeat. Drop the 10s post-commit settle sleep: the heartbeat race it guarded needed a replica cached read-only at the master, which the gate now excludes. --------- Co-authored-by: Chris Lu <chris.lu@gmail.com>
This commit is contained in:
@@ -30,21 +30,22 @@ type VolumeServer struct {
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address string
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baseDir string
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mu sync.Mutex
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receivedFiles map[string]uint64
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mountRequests []*volume_server_pb.VolumeEcShardsMountRequest
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deleteRequests []*volume_server_pb.VolumeDeleteRequest
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markReadonlyCalls int
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markWritableCalls int
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readFileStatusCalls int
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vacuumGarbageRatio float64
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vacuumCheckCalls int
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vacuumCompactCalls int
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vacuumCommitCalls int
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vacuumCleanupCalls int
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volumeCopyCalls int
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volumeMountCalls int
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tailReceiverCalls int
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mu sync.Mutex
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receivedFiles map[string]uint64
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mountRequests []*volume_server_pb.VolumeEcShardsMountRequest
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deleteRequests []*volume_server_pb.VolumeDeleteRequest
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markReadonlyCalls int
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markWritableCalls int
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readFileStatusCalls int
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vacuumGarbageRatio float64
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vacuumCommitReadOnly bool
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vacuumCheckCalls int
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vacuumCompactCalls int
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vacuumCommitCalls int
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vacuumCleanupCalls int
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volumeCopyCalls int
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volumeMountCalls int
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tailReceiverCalls int
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}
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// NewVolumeServer starts a test volume server using the provided base directory.
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@@ -115,6 +116,13 @@ func (v *VolumeServer) SetVacuumGarbageRatio(ratio float64) {
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v.vacuumGarbageRatio = ratio
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}
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// SetVacuumCommitReadOnly sets the IsReadOnly value returned by VacuumVolumeCommit.
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func (v *VolumeServer) SetVacuumCommitReadOnly(readOnly bool) {
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v.mu.Lock()
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defer v.mu.Unlock()
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v.vacuumCommitReadOnly = readOnly
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}
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// VacuumStats returns the vacuum RPC call counts.
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func (v *VolumeServer) VacuumStats() (check, compact, commit, cleanup int) {
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v.mu.Lock()
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@@ -428,8 +436,9 @@ func (v *VolumeServer) VacuumVolumeCompact(req *volume_server_pb.VacuumVolumeCom
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func (v *VolumeServer) VacuumVolumeCommit(ctx context.Context, req *volume_server_pb.VacuumVolumeCommitRequest) (*volume_server_pb.VacuumVolumeCommitResponse, error) {
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v.mu.Lock()
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v.vacuumCommitCalls++
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readOnly := v.vacuumCommitReadOnly
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v.mu.Unlock()
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return &volume_server_pb.VacuumVolumeCommitResponse{}, nil
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return &volume_server_pb.VacuumVolumeCommitResponse{IsReadOnly: readOnly}, nil
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}
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func (v *VolumeServer) VacuumVolumeCleanup(ctx context.Context, req *volume_server_pb.VacuumVolumeCleanupRequest) (*volume_server_pb.VacuumVolumeCleanupResponse, error) {
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@@ -15,6 +15,24 @@ import (
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"google.golang.org/grpc/credentials/insecure"
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)
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func vacuumJobSpec(volumeID uint32, server string) *plugin_pb.JobSpec {
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return &plugin_pb.JobSpec{
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JobId: fmt.Sprintf("vacuum-job-%d", volumeID),
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JobType: "vacuum",
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Parameters: map[string]*plugin_pb.ConfigValue{
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"volume_id": {
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Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: int64(volumeID)},
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},
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"server": {
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Kind: &plugin_pb.ConfigValue_StringValue{StringValue: server},
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},
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"collection": {
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Kind: &plugin_pb.ConfigValue_StringValue{StringValue: "vac-test"},
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},
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},
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}
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}
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func TestVacuumExecutionIntegration(t *testing.T) {
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volumeID := uint32(202)
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@@ -31,26 +49,10 @@ func TestVacuumExecutionIntegration(t *testing.T) {
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source := pluginworkers.NewVolumeServer(t, "")
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source.SetVacuumGarbageRatio(0.6)
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job := &plugin_pb.JobSpec{
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JobId: fmt.Sprintf("vacuum-job-%d", volumeID),
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JobType: "vacuum",
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Parameters: map[string]*plugin_pb.ConfigValue{
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"volume_id": {
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Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: int64(volumeID)},
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},
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"server": {
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Kind: &plugin_pb.ConfigValue_StringValue{StringValue: source.Address()},
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},
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"collection": {
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Kind: &plugin_pb.ConfigValue_StringValue{StringValue: "vac-test"},
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},
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},
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}
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ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
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defer cancel()
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result, err := harness.Plugin().ExecuteJob(ctx, job, nil, 1)
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result, err := harness.Plugin().ExecuteJob(ctx, vacuumJobSpec(volumeID, source.Address()), nil, 1)
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require.NoError(t, err)
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require.NotNil(t, result)
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require.True(t, result.Success)
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@@ -66,4 +68,41 @@ func TestVacuumExecutionIntegration(t *testing.T) {
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// topology.vacuumOneVolumeId which only calls batchVacuumVolumeCleanup
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// on the Compact-failure branch.
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require.Equal(t, 0, cleanupCalls)
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// Phase 3 marks each replica writable so master returns it to the
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// writables layout. See upstream seaweedfs#9685.
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require.GreaterOrEqual(t, source.MarkWritableCount(), 1)
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}
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// A replica that commits still read-only (operator-set, EIO-quarantined,
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// disk-space-low) must not be force-marked writable: master built-in vacuum
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// skips it via SetVolumeAvailable, and it recovers on its own ReadOnly=false
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// heartbeat.
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func TestVacuumExecutionSkipsMarkWritableWhenReadOnly(t *testing.T) {
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volumeID := uint32(203)
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dialOption := grpc.WithTransportCredentials(insecure.NewCredentials())
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handler := vacuum.NewVacuumHandler(dialOption, 1)
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harness := pluginworkers.NewHarness(t, pluginworkers.HarnessConfig{
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WorkerOptions: pluginworker.WorkerOptions{
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GrpcDialOption: dialOption,
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},
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Handlers: []pluginworker.JobHandler{handler},
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})
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harness.WaitForJobType("vacuum")
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source := pluginworkers.NewVolumeServer(t, "")
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source.SetVacuumGarbageRatio(0.6)
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source.SetVacuumCommitReadOnly(true)
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ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
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defer cancel()
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result, err := harness.Plugin().ExecuteJob(ctx, vacuumJobSpec(volumeID, source.Address()), nil, 1)
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require.NoError(t, err)
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require.NotNil(t, result)
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require.True(t, result.Success)
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_, _, commitCalls, _ := source.VacuumStats()
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require.GreaterOrEqual(t, commitCalls, 1)
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require.Equal(t, 0, source.MarkWritableCount())
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}
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