Files
seaweedfs/weed/shell/command_volume_tier_download.go
T
Chris LuandGitHub f09e8345c6 storage: stop keeping the remote storage key on the master (#10672)
A master decides nothing from it. Every caller that read it was asking whether
a volume is remote, which the backend name answers, and the value itself is
reported on demand by the server holding the volume, through the volume info in
ReadVolumeFileStatus.

It is also the one string here that cannot be shared: unique per volume, so
unlike the collection and backend names it carries its own characters for every
volume a master tracks.

VolumeInfo goes from 136 bytes to 120. 800k volumes registered from a heartbeat
that has been over the wire go from 214 to 163 B/volume when tiered.

The volume server's own status page keeps showing the key, now read from the
volume it holds rather than relayed through a master, which is also where the
other volume server implementation reads it.

The heartbeat digest drops it on the same grounds: a change to something the
master does not hold cannot make its copy stale. Both implementations and their
shared vectors move together, and the field-coverage test now names what is
deliberately not retained rather than being loosened.
2026-08-09 12:43:31 -07:00

199 lines
5.7 KiB
Go

package shell
import (
"context"
"flag"
"fmt"
"io"
"strings"
"github.com/seaweedfs/seaweedfs/weed/pb"
"google.golang.org/grpc"
"github.com/seaweedfs/seaweedfs/weed/operation"
"github.com/seaweedfs/seaweedfs/weed/pb/master_pb"
"github.com/seaweedfs/seaweedfs/weed/pb/volume_server_pb"
"github.com/seaweedfs/seaweedfs/weed/storage/needle"
)
func init() {
Commands = append(Commands, &commandVolumeTierDownload{})
}
type commandVolumeTierDownload struct {
}
func (c *commandVolumeTierDownload) Name() string {
return "volume.tier.download"
}
func (c *commandVolumeTierDownload) Help() string {
return `download the dat file of a volume from a remote tier
volume.tier.download [-collection=""]
volume.tier.download [-collection=""] -volumeId=<volume_id>
The -collection parameter supports regular expressions for pattern matching:
- Use exact match: volume.tier.download -collection="^mybucket$"
- Match multiple buckets: volume.tier.download -collection="bucket.*"
- Match all collections: volume.tier.download -collection=".*"
e.g.:
volume.tier.download -volumeId=7
This command will download the dat file of a volume from a remote tier to a volume server in local cluster.
`
}
func (c *commandVolumeTierDownload) HasTag(CommandTag) bool {
return false
}
func (c *commandVolumeTierDownload) Do(args []string, commandEnv *CommandEnv, writer io.Writer) (err error) {
tierCommand := flag.NewFlagSet(c.Name(), flag.ContinueOnError)
volumeId := tierCommand.Int("volumeId", 0, "the volume id")
collection := tierCommand.String("collection", "", "the collection name")
if err = tierCommand.Parse(args); err != nil {
return nil
}
if err = commandEnv.confirmIsLocked(args); err != nil {
return
}
vid := needle.VolumeId(*volumeId)
// collect topology information
topologyInfo, _, err := collectTopologyInfo(commandEnv, 0)
if err != nil {
return err
}
// volumeId is provided
if vid != 0 {
return doVolumeTierDownload(commandEnv, writer, *collection, vid)
}
// apply to all volumes in the collection
// reusing collectVolumeIdsForEcEncode for now
volumeIds, err := collectRemoteVolumes(topologyInfo, *collection)
if err != nil {
return err
}
fmt.Printf("tier download volumes: %v\n", volumeIds)
for _, vid := range volumeIds {
if err = doVolumeTierDownload(commandEnv, writer, *collection, vid); err != nil {
return err
}
}
return nil
}
func collectRemoteVolumes(topoInfo *master_pb.TopologyInfo, collectionPattern string) (vids []needle.VolumeId, err error) {
// compile regex pattern for collection matching
collectionRegex, err := compileCollectionPattern(collectionPattern)
if err != nil {
return nil, fmt.Errorf("invalid collection pattern '%s': %v", collectionPattern, err)
}
vidMap := make(map[uint32]bool)
eachDataNode(topoInfo, func(dc DataCenterId, rack RackId, dn *master_pb.DataNodeInfo) {
for _, diskInfo := range dn.DiskInfos {
for _, v := range diskInfo.VolumeInfos {
if collectionRegex.MatchString(v.Collection) && v.RemoteStorageName != "" {
vidMap[v.Id] = true
}
}
}
})
for vid := range vidMap {
vids = append(vids, needle.VolumeId(vid))
}
return
}
func doVolumeTierDownload(commandEnv *CommandEnv, writer io.Writer, collection string, vid needle.VolumeId) (err error) {
// find volume location
locations, found := commandEnv.MasterClient.GetLocationsClone(uint32(vid))
if !found {
return fmt.Errorf("volume %d not found", vid)
}
// All replicas point at the same remote object; only the final download may delete
// it. Every earlier replica keeps it so the survivors are not left dangling.
// TODO parallelize this
for i, loc := range locations {
keepRemote := i < len(locations)-1
// copy the .dat file from remote tier to local
err = downloadDatFromRemoteTier(commandEnv.option.GrpcDialOption, writer, needle.VolumeId(vid), collection, loc.ServerAddress(), keepRemote)
if err != nil {
// A replica already made local by a prior interrupted run is not a
// failure; skip it so the remaining remote replicas still download.
if strings.Contains(err.Error(), "already on local disk") {
fmt.Fprintf(writer, "volume %d on %s is already on local disk, skipping\n", vid, loc.Url)
continue
}
return fmt.Errorf("download dat file for volume %d to %s: %v", vid, loc.Url, err)
}
}
return nil
}
func downloadDatFromRemoteTier(grpcDialOption grpc.DialOption, writer io.Writer, volumeId needle.VolumeId, collection string, targetVolumeServer pb.ServerAddress, keepRemote bool) error {
err := operation.WithVolumeServerClient(true, targetVolumeServer, grpcDialOption, func(volumeServerClient volume_server_pb.VolumeServerClient) error {
stream, downloadErr := volumeServerClient.VolumeTierMoveDatFromRemote(context.Background(), &volume_server_pb.VolumeTierMoveDatFromRemoteRequest{
VolumeId: uint32(volumeId),
Collection: collection,
KeepRemoteDatFile: keepRemote,
})
var lastProcessed int64
for {
resp, recvErr := stream.Recv()
if recvErr != nil {
if recvErr == io.EOF {
break
} else {
return recvErr
}
}
processingSpeed := float64(resp.Processed-lastProcessed) / 1024.0 / 1024.0
fmt.Fprintf(writer, "downloaded %.2f%%, %d bytes, %.2fMB/s\n", resp.ProcessedPercentage, resp.Processed, processingSpeed)
lastProcessed = resp.Processed
}
if downloadErr != nil {
return downloadErr
}
_, unmountErr := volumeServerClient.VolumeUnmount(context.Background(), &volume_server_pb.VolumeUnmountRequest{
VolumeId: uint32(volumeId),
})
if unmountErr != nil {
return unmountErr
}
_, mountErr := volumeServerClient.VolumeMount(context.Background(), &volume_server_pb.VolumeMountRequest{
VolumeId: uint32(volumeId),
})
if mountErr != nil {
return mountErr
}
return nil
})
return err
}