Files
seaweedfs/weed/server/master_grpc_server_volume.go
T
Chris LuandGitHub a02c0024e5 master: cap the reported capacity at what the disks hold (#10960)
* master: cap the reported capacity at what the disks hold

Statistics reported max volume count times the volume size limit, which is
how many volumes the cluster is allowed to place, not how much space it has.
A cluster given far more slots than its disks can fill reported a capacity it
could never reach -- 65536 slots at 30GB read as 1.9PB on a 460GB disk -- and
the number never moved, since writing data changes neither the slot count nor
the size limit.

The volume servers already report each filesystem's total and free bytes in
their heartbeats, so bound the answer by what they say is left.

* mount: keep the last known sizes when filer statistics fails

A failed Statistics call returned before df's answer was filled in, so a
mount whose filer or master was briefly unreachable reported an empty
filesystem rather than the sizes it already had.

* master: drop the disk ceiling when a volume server does not report

A cluster part way through an upgrade has volume servers that predate the disk
bytes in the heartbeat. Summing only the ones that answered left the quiet
server's free space out of the total, and the server holding the room is
exactly the one that could make the cluster read as full.

Answer with the disks only when every one of them reported.
2026-08-26 00:12:56 -07:00

484 lines
16 KiB
Go

package weed_server
import (
"context"
"fmt"
"math/rand/v2"
"strings"
"sync"
"time"
"github.com/seaweedfs/seaweedfs/weed/stats"
"github.com/seaweedfs/seaweedfs/weed/topology"
"github.com/seaweedfs/raft"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/pb"
"github.com/seaweedfs/seaweedfs/weed/pb/master_pb"
"github.com/seaweedfs/seaweedfs/weed/security"
"github.com/seaweedfs/seaweedfs/weed/storage/needle"
"github.com/seaweedfs/seaweedfs/weed/storage/super_block"
"github.com/seaweedfs/seaweedfs/weed/storage/types"
"google.golang.org/grpc/codes"
"google.golang.org/grpc/status"
)
const (
volumeGrowStepCount = 2
)
func (ms *MasterServer) DoAutomaticVolumeGrow(req *topology.VolumeGrowRequest) {
if ms.option.VolumeGrowthDisabled {
glog.V(1).Infof("automatic volume grow disabled")
return
}
glog.V(1).Infoln("starting automatic volume grow")
start := time.Now()
newVidLocations, err := ms.vg.AutomaticGrowByType(req.Option, ms.grpcDialOption, ms.Topo, req.Count)
glog.V(1).Infoln("finished automatic volume grow, cost ", time.Now().Sub(start))
if err != nil {
glog.V(1).Infof("automatic volume grow failed: %+v", err)
return
}
ms.broadcastVolumeLocationsToClients(newVidLocations)
}
func (ms *MasterServer) ProcessGrowRequest() {
go func() {
ctx := context.Background()
firstRun := true
for {
if firstRun {
firstRun = false
} else {
time.Sleep(5*time.Minute + time.Duration(30*rand.Float32())*time.Second)
}
if !ms.Topo.IsLeader() {
continue
}
dcs := ms.Topo.ListDCAndRacks()
for _, vlc := range ms.Topo.ListVolumeLayoutCollections() {
var err error
vl := vlc.VolumeLayout
lastGrowCount := vl.GetLastGrowCount()
if vl.HasGrowRequest() {
continue
}
writable, crowded := vl.GetWritableVolumeCount()
mustGrow := int(lastGrowCount) - writable
vgr := vlc.ToVolumeGrowRequest()
underReplicated := vl.CountUnderReplicatedVolumes()
stats.MasterVolumeLayoutWritable.WithLabelValues(vlc.Collection, vgr.DiskType, vgr.Replication, vgr.Ttl).Set(float64(writable))
stats.MasterVolumeLayoutCrowded.WithLabelValues(vlc.Collection, vgr.DiskType, vgr.Replication, vgr.Ttl).Set(float64(crowded))
stats.MasterUnderReplicatedVolumes.WithLabelValues(vlc.Collection, vgr.DiskType, vgr.Replication, vgr.Ttl).Set(float64(underReplicated))
switch {
case mustGrow > 0:
if rp, rpErr := super_block.NewReplicaPlacementFromString(vgr.Replication); rpErr != nil {
glog.V(0).Infof("failed to parse replica placement %s: %v", vgr.Replication, rpErr)
} else {
vgr.WritableVolumeCount = uint32(mustGrow)
if ms.Topo.AvailableSpaceFor(&topology.VolumeGrowOption{DiskType: types.ToDiskType(vgr.DiskType)}) >= int64(vgr.WritableVolumeCount*uint32(rp.GetCopyCount())) {
_, err = ms.VolumeGrow(ctx, vgr)
}
}
case lastGrowCount > 0 && writable < int(lastGrowCount*2) && float64(crowded+volumeGrowStepCount) > float64(writable)*topology.VolumeGrowStrategy.Threshold:
vgr.WritableVolumeCount = volumeGrowStepCount
_, err = ms.VolumeGrow(ctx, vgr)
}
if err != nil {
glog.V(0).Infof("volume grow request failed: %+v", err)
}
for _, plan := range vl.PlanRackAwareGrowth(dcs, lastGrowCount, volumeGrowStepCount) {
vgr.DataCenter = plan.DataCenter
vgr.Rack = plan.Rack
vgr.WritableVolumeCount = plan.WritableVolumeCount
if _, err = ms.VolumeGrow(ctx, vgr); err != nil {
glog.V(0).Infof("volume grow request for dc:%s rack:%s failed: %+v", plan.DataCenter, plan.Rack, err)
}
}
}
}
}()
go func() {
filter := sync.Map{}
for {
req, ok := <-ms.volumeGrowthRequestChan
if !ok {
break
}
option := req.Option
vl := ms.Topo.GetVolumeLayout(option.Collection, option.ReplicaPlacement, option.Ttl, option.DiskType)
if !ms.Topo.IsLeader() {
//discard buffered requests
time.Sleep(time.Second * 1)
vl.DoneGrowRequest()
continue
}
// filter out identical requests being processed
found := false
filter.Range(func(k, v interface{}) bool {
existingReq := k.(*topology.VolumeGrowRequest)
if existingReq.Equals(req) {
found = true
}
return !found
})
// not atomic but it's okay
if found || (!req.Force && !vl.ShouldGrowVolumes()) {
glog.V(4).Infoln("discard volume grow request")
time.Sleep(time.Millisecond * 211)
vl.DoneGrowRequest()
continue
}
filter.Store(req, nil)
// we have lock called inside vg
glog.V(0).Infof("volume grow %+v", req)
go func(req *topology.VolumeGrowRequest, vl *topology.VolumeLayout) {
// defer so a panic can't strand growRequest.
defer filter.Delete(req)
defer vl.DoneGrowRequest()
ms.DoAutomaticVolumeGrow(req)
}(req, vl)
}
}()
}
func (ms *MasterServer) LookupVolume(ctx context.Context, req *master_pb.LookupVolumeRequest) (*master_pb.LookupVolumeResponse, error) {
resp := &master_pb.LookupVolumeResponse{}
volumeLocations := ms.lookupVolumeId(req.VolumeOrFileIds, req.Collection)
notFoundCount := 0
for _, volumeOrFileId := range req.VolumeOrFileIds {
vid := volumeOrFileId
commaSep := strings.Index(vid, ",")
if commaSep > 0 {
vid = vid[0:commaSep]
}
if result, found := volumeLocations[vid]; found {
var locations []*master_pb.Location
for _, loc := range result.Locations {
locations = append(locations, &master_pb.Location{
Url: loc.Url,
PublicUrl: loc.PublicUrl,
DataCenter: loc.DataCenter,
GrpcPort: uint32(loc.GrpcPort),
})
}
var auth string
if commaSep > 0 { // this is a file id
auth = string(security.GenJwtForVolumeServer(ms.guard.SigningKey(), ms.guard.ExpiresAfterSec(), result.VolumeOrFileId))
}
if result.NotFound {
notFoundCount++
}
resp.VolumeIdLocations = append(resp.VolumeIdLocations, &master_pb.LookupVolumeResponse_VolumeIdLocation{
VolumeOrFileId: result.VolumeOrFileId,
Locations: locations,
Error: result.Error,
Auth: auth,
})
}
}
// Only return Unavailable during warmup when every requested ID was a transient not-found
if len(req.VolumeOrFileIds) > 0 && notFoundCount == len(req.VolumeOrFileIds) && ms.Topo.IsLeader() && ms.Topo.IsWarmingUp() {
glog.V(0).Infof("lookup volume warming up: topology is still loading (%d not found)", notFoundCount)
return nil, status.Errorf(codes.Unavailable, "master is warming up, topology is still loading")
}
return resp, nil
}
// CollectionStatistics summarises every collection, so callers tracking usage
// do not pull the whole volume list to add it up themselves.
func (ms *MasterServer) CollectionStatistics(ctx context.Context, req *master_pb.CollectionStatisticsRequest) (*master_pb.CollectionStatisticsResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
stats := ms.Topo.CollectionStatistics()
resp := &master_pb.CollectionStatisticsResponse{
Collections: make([]*master_pb.CollectionStatistics, 0, len(stats)),
}
for _, s := range stats {
resp.Collections = append(resp.Collections, &master_pb.CollectionStatistics{
Collection: s.Collection,
FileCount: s.FileCount,
DeleteCount: s.DeleteCount,
DeletedByteCount: s.DeletedByteCount,
Size: s.Size,
PhysicalSize: s.PhysicalSize,
VolumeCount: s.VolumeCount,
})
}
return resp, nil
}
func (ms *MasterServer) Statistics(ctx context.Context, req *master_pb.StatisticsRequest) (*master_pb.StatisticsResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
// an empty collection means all collections, and a named collection covers
// all its layouts and EC volumes
stats := ms.Topo.CollectionVolumeStats(req.Collection)
totalSize := uint64(ms.Topo.GetDiskUsages().GetMaxVolumeCount() * int64(ms.option.VolumeSizeLimitMB) * 1024 * 1024)
// capacity is cluster-wide, so what is left over is what every collection
// has not taken, not just the one asked about
clusterUsedSize := stats.UsedSize
if req.Collection != "" {
clusterUsedSize = ms.Topo.CollectionVolumeStats("").UsedSize
}
// volume slots are provisioning, not capacity: a cluster configured with
// more of them than its disks hold would report space it can never take.
// What the disks still have free, on top of what the cluster already wrote,
// is the real ceiling.
if freeBytes, reported := ms.Topo.FreeBytes(); reported {
totalSize = min(totalSize, clusterUsedSize+freeBytes)
}
// and the free space holds that many copies fewer of whatever the caller writes
var freeSize uint64
if totalSize > clusterUsedSize {
freeSize = (totalSize - clusterUsedSize) / uint64(ms.replicaCopyCount(req.Replication))
}
resp := &master_pb.StatisticsResponse{
TotalSize: totalSize,
UsedSize: stats.UsedSize,
FileCount: stats.FileCount,
LogicalTotalSize: stats.LogicalUsedSize + freeSize,
LogicalUsedSize: stats.LogicalUsedSize,
}
return resp, nil
}
// replicaCopyCount returns how many copies the given replication makes, falling
// back to the master default and then to a single copy. Unparsable input is
// reported rather than failing the call: statistics are informational.
func (ms *MasterServer) replicaCopyCount(replication string) int {
for _, s := range []string{replication, ms.option.DefaultReplicaPlacement} {
if s == "" {
continue
}
rp, err := super_block.NewReplicaPlacementFromString(s)
if err != nil {
glog.V(1).Infof("statistics replication %q: %v", s, err)
continue
}
return rp.GetCopyCount()
}
return 1
}
func (ms *MasterServer) VolumeList(ctx context.Context, req *master_pb.VolumeListRequest) (*master_pb.VolumeListResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
resp := &master_pb.VolumeListResponse{
TopologyInfo: ms.Topo.ToTopologyInfo(topology.NewVolumeFilter(req)),
VolumeSizeLimitMb: uint64(ms.option.VolumeSizeLimitMB),
}
return resp, nil
}
// VolumeListStream answers VolumeList without building the whole reply first.
// The topology goes out on its own, then the volumes in batches, so the master
// holds one batch rather than every volume in the cluster.
func (ms *MasterServer) VolumeListStream(req *master_pb.VolumeListRequest, stream master_pb.Seaweed_VolumeListStreamServer) error {
if !ms.Topo.IsLeader() {
return raft.NotLeaderError
}
listed := ms.Topo.ToTopologyInfo(topology.NoVolumes())
err := stream.Send(&master_pb.VolumeListStreamResponse{
Header: &master_pb.VolumeListResponse{
TopologyInfo: listed,
VolumeSizeLimitMb: uint64(ms.option.VolumeSizeLimitMB),
},
})
if err != nil {
return err
}
return ms.Topo.StreamVolumes(listed, topology.NewVolumeFilter(req), 0, stream.Send)
}
func (ms *MasterServer) LookupEcVolume(ctx context.Context, req *master_pb.LookupEcVolumeRequest) (*master_pb.LookupEcVolumeResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
resp := &master_pb.LookupEcVolumeResponse{}
ecLocations, found := ms.Topo.LookupEcShards(needle.VolumeId(req.VolumeId))
if !found {
return resp, fmt.Errorf("ec volume %d not found", req.VolumeId)
}
resp.VolumeId = req.VolumeId
for shardId, shardLocations := range ecLocations.Locations {
var locations []*master_pb.Location
for _, dn := range shardLocations {
locations = append(locations, &master_pb.Location{
Url: dn.Url(),
PublicUrl: dn.PublicUrl,
DataCenter: dn.GetDataCenterId(),
// without this, clients derive grpc as httpPort+10000
GrpcPort: uint32(dn.GrpcPort),
})
}
resp.ShardIdLocations = append(resp.ShardIdLocations, &master_pb.LookupEcVolumeResponse_EcShardIdLocation{
ShardId: uint32(shardId),
Locations: locations,
})
}
return resp, nil
}
func (ms *MasterServer) VacuumVolume(ctx context.Context, req *master_pb.VacuumVolumeRequest) (*master_pb.VacuumVolumeResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
resp := &master_pb.VacuumVolumeResponse{}
ms.Topo.Vacuum(ms.grpcDialOption, float64(req.GarbageThreshold), ms.option.MaxParallelVacuumPerServer, req.VolumeId, req.Collection, ms.preallocateSize, false)
return resp, nil
}
func (ms *MasterServer) DisableVacuum(ctx context.Context, req *master_pb.DisableVacuumRequest) (*master_pb.DisableVacuumResponse, error) {
// The caller explicitly indicates whether this disable request comes
// from the vacuum plugin monitor. Track ownership so the safety net
// in the vacuum loop won't override an operator's intentional disable.
if req.GetByPlugin() {
ms.Topo.DisableVacuumByPlugin()
} else {
ms.Topo.DisableVacuum()
}
resp := &master_pb.DisableVacuumResponse{}
return resp, nil
}
func (ms *MasterServer) EnableVacuum(ctx context.Context, req *master_pb.EnableVacuumRequest) (*master_pb.EnableVacuumResponse, error) {
if req.GetByPlugin() {
ms.Topo.EnableVacuumByPlugin()
} else {
ms.Topo.EnableVacuum()
}
resp := &master_pb.EnableVacuumResponse{}
return resp, nil
}
func (ms *MasterServer) VolumeMarkReadonly(ctx context.Context, req *master_pb.VolumeMarkReadonlyRequest) (*master_pb.VolumeMarkReadonlyResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
resp := &master_pb.VolumeMarkReadonlyResponse{}
replicaPlacement, _ := super_block.NewReplicaPlacementFromByte(byte(req.ReplicaPlacement))
vl := ms.Topo.GetVolumeLayout(req.Collection, replicaPlacement, needle.LoadTTLFromUint32(req.Ttl), types.ToDiskType(req.DiskType))
vid := needle.VolumeId(req.VolumeId)
dataNodes := ms.Topo.Lookup(req.Collection, vid)
found := false
for _, dn := range dataNodes {
if dn.Ip == req.Ip && dn.Port == int(req.Port) {
found = true
if req.IsReadonly {
vl.SetVolumeReadOnly(dn, vid)
if pending := vl.GetPendingSize(vid); pending > 0 {
glog.V(0).Infof("volume %d marked readonly with %d pending bytes", vid, pending)
}
} else {
vl.SetVolumeWritable(dn, vid)
}
}
}
// A vacuum worker marks the volume writable after a successful commit. If the
// index lost it meanwhile (e.g. a disconnect race during the vacuum), the loop
// found nothing to update; re-register it from the node that still holds it so
// LookupVolume stops returning "not found".
if !found && !req.IsReadonly {
if dn := ms.Topo.LookupDataNodeByAddress(pb.NewServerAddress(req.Ip, int(req.Port), 0)); dn != nil {
if vi, err := dn.GetVolumesById(vid); err == nil {
ms.Topo.RegisterVolumeLayout(vi, dn)
glog.V(0).Infof("volume %d re-registered from %s:%d, was missing from the lookup index at mark-writable", vid, req.Ip, req.Port)
}
}
}
return resp, nil
}
func (ms *MasterServer) VolumeGrow(ctx context.Context, req *master_pb.VolumeGrowRequest) (*master_pb.VolumeGrowResponse, error) {
if !ms.Topo.IsLeader() {
return nil, raft.NotLeaderError
}
if req.Replication == "" {
req.Replication = ms.option.DefaultReplicaPlacement
}
replicaPlacement, err := super_block.NewReplicaPlacementFromString(req.Replication)
if err != nil {
return nil, err
}
ttl, err := needle.ReadTTL(req.Ttl)
if err != nil {
return nil, err
}
if req.DataCenter != "" && !ms.Topo.DataCenterExists(req.DataCenter) {
return nil, fmt.Errorf("data center not exists")
}
ver := needle.GetCurrentVersion()
volumeGrowOption := topology.VolumeGrowOption{
Collection: req.Collection,
ReplicaPlacement: replicaPlacement,
Ttl: ttl,
DiskType: types.ToDiskType(req.DiskType),
Preallocate: ms.preallocateSize,
DataCenter: req.DataCenter,
Rack: req.Rack,
DataNode: req.DataNode,
MemoryMapMaxSizeMb: req.MemoryMapMaxSizeMb,
Version: uint32(ver),
}
volumeGrowRequest := topology.VolumeGrowRequest{
Option: &volumeGrowOption,
Count: req.WritableVolumeCount,
Force: true,
Reason: "grpc volume grow",
}
replicaCount := int64(req.WritableVolumeCount * uint32(replicaPlacement.GetCopyCount()))
if ms.Topo.AvailableSpaceFor(&volumeGrowOption) < replicaCount {
return nil, fmt.Errorf("only %d volumes left, not enough for %d", ms.Topo.AvailableSpaceFor(&volumeGrowOption), replicaCount)
}
ms.DoAutomaticVolumeGrow(&volumeGrowRequest)
return &master_pb.VolumeGrowResponse{}, nil
}