mirror of
https://github.com/seaweedfs/seaweedfs.git
synced 2026-09-10 08:30:47 +02:00
* fix(volume): add authentication to destructive gRPC admin endpoints Three destructive VolumeServer gRPC endpoints (DeleteCollection, VolumeDelete, VolumeServerLeave) had no authentication checks, unlike their HTTP counterparts which are protected by the Guard whitelist. Add IsWhiteListed(host) to security.Guard and a checkGrpcAdminAuth helper on VolumeServer that extracts the peer IP from gRPC context and validates it against the guard whitelist. Gate all three endpoints behind this check. * fix(volume): tolerate unparseable gRPC peer address in admin auth check S3 Filer Group integration tests were failing with PermissionDenied "bad peer address: address @: missing port in address" when DeleteCollection ran across the in-process gRPC connection between filer and volume server — the peer addr surfaces as "@" there and net.SplitHostPort can't parse it. The check rejected before IsWhiteListed could exercise its allow-all path for empty-whitelist deployments. Hand the raw peer string to IsWhiteListed when SplitHostPort fails. With no whitelist configured (the test environment's mode) it accepts; with a whitelist configured the unparseable host won't match anything and the call still gets denied as it should. Adds three regression tests for IsWhiteListed pinning the empty-config allow-all, populated-list reject-unknown, and signing-key-only allow- all branches that the gRPC admin helper relies on. * refactor(security): dedup checkWhiteList through IsWhiteListed The HTTP-side checkWhiteList and the gRPC-side IsWhiteListed had the same lookup logic in two places; future drift was just a matter of time. Have checkWhiteList delegate so the membership semantics live in exactly one function. Behaviour is unchanged: the new path still returns nil for isEmptyWhiteList (signing-key-only mode) and still rejects unknown hosts when a whitelist is configured. Addresses gemini medium review on PR #8876. * fix(volume): protect remaining state-altering gRPC admin endpoints DeleteCollection, VolumeDelete, and VolumeServerLeave were the truly-destructive endpoints, but AllocateVolume, VolumeMount, VolumeUnmount, VolumeConfigure, VolumeMarkReadonly, and VolumeMarkWritable also modify server state and should sit behind the same whitelist gate. Read-only endpoints (VolumeStatus, VolumeServerStatus, VolumeNeedleStatus, Ping) stay open. The check is a no-op when no whitelist is configured (the default), so existing deployments keep working; operators who lock down their volume servers via guard.white_list now get consistent coverage. Addresses gemini security-high review on PR #8876. * fix(volume): typed peer addr + audit log for gRPC admin auth Prefer a typed *net.TCPAddr when extracting the peer IP — string parsing was already a fallback for the in-process case but using the typed form first is cleaner and skips an unnecessary parse on the common path. Log failed authorization attempts at V(0) so an operator running with a whitelist sees the host that was rejected (and the raw remote address in case the IP lookup itself was the failure mode), matching what the HTTP Guard already does. Addresses gemini medium review on PR #8876. * fix(volume): protect vacuum + scrub + EC-shards-delete admin endpoints Five more master/admin-driven destructive operations live outside volume_grpc_admin.go and were missing the same whitelist gate: - VacuumVolumeCompact, VacuumVolumeCommit, VacuumVolumeCleanup - ScrubVolume - VolumeEcShardsDelete VacuumVolumeCheck stays open (read-only). BatchDelete also stays open: it's the data-plane multi-object delete called from the S3 API and filer, not an admin operation; gating it would break ordinary S3 DeleteObjects calls. Addresses gemini security-high review on PR #8876. * fix(volume): simplify no-peer-info branch in gRPC admin auth The IsWhiteListed("") fallback was defending against a scenario that doesn't actually arise — real gRPC connections always populate peer info. Drop the branch and just deny when peer info is missing, which is the safer default and matches "if we don't know who the caller is, refuse". * fix(volume-rust): mirror gRPC admin auth on the rust volume server The rust volume server has the same set of destructive admin endpoints as the Go side and the same Guard infrastructure, but nothing was wired together — every endpoint accepted unauthenticated calls regardless of guard configuration. Same vulnerability class the Go fix on this PR closes; this commit closes it on the rust side too so the two stacks stay aligned. Adds VolumeGrpcService::check_grpc_admin_auth that pulls the peer SocketAddr off the tonic Request and runs Guard::check_whitelist on its IP, then applies the helper to the same set the Go side covers: DeleteCollection, AllocateVolume, VolumeMount, VolumeUnmount, VolumeDelete, VolumeMarkReadonly, VolumeMarkWritable, VolumeConfigure, VacuumVolumeCompact, VacuumVolumeCommit, VacuumVolumeCleanup, VolumeServerLeave, ScrubVolume, VolumeEcShardsDelete. Read-only endpoints stay open; BatchDelete stays open as a data-plane multi-object delete.
475 lines
14 KiB
Go
475 lines
14 KiB
Go
package weed_server
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import (
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"context"
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"fmt"
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"net"
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"path/filepath"
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"time"
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"google.golang.org/grpc/codes"
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"google.golang.org/grpc/peer"
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"google.golang.org/grpc/status"
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"github.com/seaweedfs/seaweedfs/weed/util/version"
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"github.com/seaweedfs/seaweedfs/weed/storage"
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"github.com/seaweedfs/seaweedfs/weed/cluster"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/pb"
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"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
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"github.com/seaweedfs/seaweedfs/weed/pb/master_pb"
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"github.com/seaweedfs/seaweedfs/weed/pb/volume_server_pb"
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"github.com/seaweedfs/seaweedfs/weed/stats"
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"github.com/seaweedfs/seaweedfs/weed/storage/needle"
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"github.com/seaweedfs/seaweedfs/weed/storage/super_block"
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"github.com/seaweedfs/seaweedfs/weed/storage/types"
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)
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// checkGrpcAdminAuth verifies the gRPC caller is authorized for destructive
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// admin operations by checking the peer address against the guard's whitelist.
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//
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// IP extraction prefers a typed *net.TCPAddr where available, falling back to
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// SplitHostPort on the string form, then to the raw string. The fallback
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// chain matters because in-process/passthrough connections used in tests
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// surface as unparseable strings like "@"; with an empty whitelist the
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// allow-all branch in IsWhiteListed accepts them, with a whitelist they're
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// denied as expected.
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//
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// Failed authorization attempts are logged so an operator running with a
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// configured whitelist can spot misconfigured callers and probe attempts.
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func (vs *VolumeServer) checkGrpcAdminAuth(ctx context.Context) error {
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if vs.guard == nil {
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return nil
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}
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pr, ok := peer.FromContext(ctx)
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if !ok {
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// Real gRPC connections always populate peer info; if we don't know
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// who the caller is, deny.
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glog.V(0).Infof("gRPC admin auth failed: no peer info")
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return status.Error(codes.PermissionDenied, "no peer info")
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}
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addr := pr.Addr.String()
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var host string
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if tcpAddr, ok := pr.Addr.(*net.TCPAddr); ok {
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host = tcpAddr.IP.String()
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} else if h, _, splitErr := net.SplitHostPort(addr); splitErr == nil {
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host = h
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} else {
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host = addr
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}
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if !vs.guard.IsWhiteListed(host) {
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glog.V(0).Infof("gRPC admin auth failed: %s is not whitelisted (remote: %s)", host, addr)
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return status.Errorf(codes.PermissionDenied, "not authorized: %s", host)
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}
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return nil
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}
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func (vs *VolumeServer) DeleteCollection(ctx context.Context, req *volume_server_pb.DeleteCollectionRequest) (*volume_server_pb.DeleteCollectionResponse, error) {
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resp := &volume_server_pb.DeleteCollectionResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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err := vs.store.DeleteCollection(req.Collection)
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if err != nil {
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glog.Errorf("delete collection %s: %v", req.Collection, err)
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} else {
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glog.V(2).Infof("delete collection %v", req)
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}
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return resp, err
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}
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func (vs *VolumeServer) AllocateVolume(ctx context.Context, req *volume_server_pb.AllocateVolumeRequest) (*volume_server_pb.AllocateVolumeResponse, error) {
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resp := &volume_server_pb.AllocateVolumeResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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if err := vs.CheckMaintenanceMode(); err != nil {
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return resp, err
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}
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err := vs.store.AddVolume(
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needle.VolumeId(req.VolumeId),
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req.Collection,
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vs.needleMapKind,
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req.Replication,
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req.Ttl,
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req.Preallocate,
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needle.Version(req.Version),
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req.MemoryMapMaxSizeMb,
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types.ToDiskType(req.DiskType),
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vs.ldbTimout,
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)
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if err != nil {
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glog.Errorf("assign volume %v: %v", req, err)
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} else {
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glog.V(2).Infof("assign volume %v", req)
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}
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return resp, err
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}
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func (vs *VolumeServer) VolumeMount(ctx context.Context, req *volume_server_pb.VolumeMountRequest) (*volume_server_pb.VolumeMountResponse, error) {
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resp := &volume_server_pb.VolumeMountResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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err := vs.store.MountVolume(needle.VolumeId(req.VolumeId))
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if err != nil {
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glog.Errorf("volume mount %v: %v", req, err)
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} else {
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glog.V(2).Infof("volume mount %v", req)
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}
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return resp, err
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}
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func (vs *VolumeServer) VolumeUnmount(ctx context.Context, req *volume_server_pb.VolumeUnmountRequest) (*volume_server_pb.VolumeUnmountResponse, error) {
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resp := &volume_server_pb.VolumeUnmountResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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err := vs.store.UnmountVolume(needle.VolumeId(req.VolumeId))
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if err != nil {
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glog.Errorf("volume unmount %v: %v", req, err)
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} else {
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glog.V(2).Infof("volume unmount %v", req)
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}
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return resp, err
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}
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func (vs *VolumeServer) VolumeDelete(ctx context.Context, req *volume_server_pb.VolumeDeleteRequest) (*volume_server_pb.VolumeDeleteResponse, error) {
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resp := &volume_server_pb.VolumeDeleteResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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if err := vs.CheckMaintenanceMode(); err != nil {
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return resp, err
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}
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err := vs.store.DeleteVolume(needle.VolumeId(req.VolumeId), req.OnlyEmpty)
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if err != nil {
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glog.Errorf("volume delete %v: %v", req, err)
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} else {
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glog.V(2).Infof("volume delete %v", req)
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}
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return resp, err
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}
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func (vs *VolumeServer) VolumeConfigure(ctx context.Context, req *volume_server_pb.VolumeConfigureRequest) (*volume_server_pb.VolumeConfigureResponse, error) {
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resp := &volume_server_pb.VolumeConfigureResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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if err := vs.CheckMaintenanceMode(); err != nil {
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return resp, err
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}
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// check replication format
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if _, err := super_block.NewReplicaPlacementFromString(req.Replication); err != nil {
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resp.Error = fmt.Sprintf("volume configure replication %v: %v", req, err)
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return resp, nil
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}
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// unmount
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if err := vs.store.UnmountVolume(needle.VolumeId(req.VolumeId)); err != nil {
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glog.Errorf("volume configure unmount %v: %v", req, err)
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resp.Error = fmt.Sprintf("volume configure unmount %v: %v", req, err)
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return resp, nil
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}
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// modify the volume info file
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if err := vs.store.ConfigureVolume(needle.VolumeId(req.VolumeId), req.Replication); err != nil {
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glog.Errorf("volume configure %v: %v", req, err)
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resp.Error = fmt.Sprintf("volume configure %v: %v", req, err)
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// Try to re-mount to restore the volume state
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if mountErr := vs.store.MountVolume(needle.VolumeId(req.VolumeId)); mountErr != nil {
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glog.Errorf("volume configure failed to restore mount %v: %v", req, mountErr)
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resp.Error += fmt.Sprintf(". Also failed to restore mount: %v", mountErr)
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}
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return resp, nil
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}
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// mount
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if err := vs.store.MountVolume(needle.VolumeId(req.VolumeId)); err != nil {
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glog.Errorf("volume configure mount %v: %v", req, err)
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resp.Error = fmt.Sprintf("volume configure mount %v: %v", req, err)
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return resp, nil
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}
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return resp, nil
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}
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func (vs *VolumeServer) makeVolumeReadonly(ctx context.Context, v *storage.Volume, persist bool) error {
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if err := vs.CheckMaintenanceMode(); err != nil {
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return err
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}
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// step 1: stop master from redirecting traffic here
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if err := vs.notifyMasterVolumeReadonly(ctx, v, true); err != nil {
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return err
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}
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// rare case 1.5: it will be unlucky if heartbeat happened between step 1 and 2.
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// step 2: mark local volume as readonly
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if err := vs.store.MarkVolumeReadonly(v.Id, persist); err != nil {
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glog.Errorf("mark volume %d readonly: %v", v.Id, err)
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return err
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} else {
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glog.V(2).Infof("volume %d marked readonly", v.Id)
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}
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// step 3: tell master from redirecting traffic here again, to prevent rare case 1.5
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if err := vs.notifyMasterVolumeReadonly(ctx, v, true); err != nil {
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return err
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}
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return nil
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}
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func (vs *VolumeServer) makeVolumeWritable(ctx context.Context, v *storage.Volume) error {
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if err := vs.CheckMaintenanceMode(); err != nil {
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return err
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}
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if err := vs.store.MarkVolumeWritable(v.Id); err != nil {
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glog.Errorf("mark volume %d writable: %v", v.Id, err)
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return err
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} else {
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glog.V(2).Infof("volume %d marked writable", v.Id)
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}
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// enable master to redirect traffic here
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if err := vs.notifyMasterVolumeReadonly(ctx, v, false); err != nil {
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return err
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}
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return nil
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}
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func (vs *VolumeServer) notifyMasterVolumeReadonly(ctx context.Context, v *storage.Volume, isReadOnly bool) error {
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if grpcErr := pb.WithMasterClient(false, vs.GetMaster(ctx), vs.grpcDialOption, false, func(client master_pb.SeaweedClient) error {
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_, err := client.VolumeMarkReadonly(context.Background(), &master_pb.VolumeMarkReadonlyRequest{
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Ip: vs.store.Ip,
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Port: uint32(vs.store.Port),
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VolumeId: uint32(v.Id),
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Collection: v.Collection,
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ReplicaPlacement: uint32(v.ReplicaPlacement.Byte()),
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Ttl: v.Ttl.ToUint32(),
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DiskType: string(v.DiskType()),
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IsReadonly: isReadOnly,
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})
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if err != nil {
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return fmt.Errorf("set volume %d to read only on master: %v", v.Id, err)
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}
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return nil
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}); grpcErr != nil {
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glog.V(0).Infof("connect to %s: %v", vs.GetMaster(context.Background()), grpcErr)
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return fmt.Errorf("grpc VolumeMarkReadonly with master %s: %v", vs.GetMaster(context.Background()), grpcErr)
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}
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return nil
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}
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func (vs *VolumeServer) VolumeMarkReadonly(ctx context.Context, req *volume_server_pb.VolumeMarkReadonlyRequest) (*volume_server_pb.VolumeMarkReadonlyResponse, error) {
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resp := &volume_server_pb.VolumeMarkReadonlyResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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v := vs.store.GetVolume(needle.VolumeId(req.VolumeId))
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if v == nil {
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return resp, fmt.Errorf("volume %d not found", req.VolumeId)
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}
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if err := vs.makeVolumeReadonly(ctx, v, req.GetPersist()); err != nil {
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return resp, err
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}
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return resp, nil
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}
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func (vs *VolumeServer) VolumeMarkWritable(ctx context.Context, req *volume_server_pb.VolumeMarkWritableRequest) (*volume_server_pb.VolumeMarkWritableResponse, error) {
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resp := &volume_server_pb.VolumeMarkWritableResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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v := vs.store.GetVolume(needle.VolumeId(req.VolumeId))
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if v == nil {
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return resp, fmt.Errorf("volume %d not found", req.VolumeId)
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}
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if err := vs.makeVolumeWritable(ctx, v); err != nil {
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return resp, err
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}
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return resp, nil
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}
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func (vs *VolumeServer) VolumeStatus(ctx context.Context, req *volume_server_pb.VolumeStatusRequest) (*volume_server_pb.VolumeStatusResponse, error) {
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resp := &volume_server_pb.VolumeStatusResponse{}
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v := vs.store.GetVolume(needle.VolumeId(req.VolumeId))
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if v == nil {
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return nil, fmt.Errorf("not found volume id %d", req.VolumeId)
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}
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if v.DataBackend == nil {
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return nil, fmt.Errorf("volume %d data backend not found", req.VolumeId)
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}
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volumeSize, _, _ := v.DataBackend.GetStat()
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resp.IsReadOnly = v.IsReadOnly()
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resp.VolumeSize = uint64(volumeSize)
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resp.FileCount = v.FileCount()
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resp.FileDeletedCount = v.DeletedCount()
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return resp, nil
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}
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func (vs *VolumeServer) VolumeServerStatus(ctx context.Context, req *volume_server_pb.VolumeServerStatusRequest) (*volume_server_pb.VolumeServerStatusResponse, error) {
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resp := &volume_server_pb.VolumeServerStatusResponse{
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State: vs.store.State.Proto(),
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MemoryStatus: stats.MemStat(),
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Version: version.Version(),
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DataCenter: vs.dataCenter,
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Rack: vs.rack,
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}
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for _, loc := range vs.store.Locations {
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if dir, e := filepath.Abs(loc.Directory); e == nil {
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resp.DiskStatuses = append(resp.DiskStatuses, stats.NewDiskStatus(dir))
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}
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}
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return resp, nil
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}
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func (vs *VolumeServer) VolumeServerLeave(ctx context.Context, req *volume_server_pb.VolumeServerLeaveRequest) (*volume_server_pb.VolumeServerLeaveResponse, error) {
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resp := &volume_server_pb.VolumeServerLeaveResponse{}
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if err := vs.checkGrpcAdminAuth(ctx); err != nil {
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return resp, err
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}
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vs.StopHeartbeat()
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return resp, nil
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}
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func (vs *VolumeServer) VolumeNeedleStatus(ctx context.Context, req *volume_server_pb.VolumeNeedleStatusRequest) (*volume_server_pb.VolumeNeedleStatusResponse, error) {
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resp := &volume_server_pb.VolumeNeedleStatusResponse{}
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volumeId := needle.VolumeId(req.VolumeId)
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n := &needle.Needle{
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Id: types.NeedleId(req.NeedleId),
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}
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var count int
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var err error
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hasVolume := vs.store.HasVolume(volumeId)
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if !hasVolume {
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_, hasEcVolume := vs.store.FindEcVolume(volumeId)
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if !hasEcVolume {
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return nil, fmt.Errorf("volume not found %d", req.VolumeId)
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}
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count, err = vs.store.ReadEcShardNeedle(volumeId, n, nil)
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} else {
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count, err = vs.store.ReadVolumeNeedle(volumeId, n, nil, nil)
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}
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if err != nil {
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return nil, err
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}
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if count < 0 {
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return nil, fmt.Errorf("needle not found %d", n.Id)
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}
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resp.NeedleId = uint64(n.Id)
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resp.Cookie = uint32(n.Cookie)
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resp.Size = uint32(n.Size)
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resp.LastModified = n.LastModified
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resp.Crc = n.Checksum.Value()
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if n.HasTtl() {
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|
resp.Ttl = n.Ttl.String()
|
|
}
|
|
return resp, nil
|
|
|
|
}
|
|
|
|
func (vs *VolumeServer) Ping(ctx context.Context, req *volume_server_pb.PingRequest) (resp *volume_server_pb.PingResponse, pingErr error) {
|
|
resp = &volume_server_pb.PingResponse{
|
|
StartTimeNs: time.Now().UnixNano(),
|
|
}
|
|
if req.TargetType == cluster.FilerType {
|
|
pingErr = pb.WithFilerClient(false, 0, pb.ServerAddress(req.Target), vs.grpcDialOption, func(client filer_pb.SeaweedFilerClient) error {
|
|
pingResp, err := client.Ping(ctx, &filer_pb.PingRequest{})
|
|
if pingResp != nil {
|
|
resp.RemoteTimeNs = pingResp.StartTimeNs
|
|
}
|
|
return err
|
|
})
|
|
}
|
|
if req.TargetType == cluster.VolumeServerType {
|
|
pingErr = pb.WithVolumeServerClient(false, pb.ServerAddress(req.Target), vs.grpcDialOption, func(client volume_server_pb.VolumeServerClient) error {
|
|
pingResp, err := client.Ping(ctx, &volume_server_pb.PingRequest{})
|
|
if pingResp != nil {
|
|
resp.RemoteTimeNs = pingResp.StartTimeNs
|
|
}
|
|
return err
|
|
})
|
|
}
|
|
if req.TargetType == cluster.MasterType {
|
|
pingErr = pb.WithMasterClient(false, pb.ServerAddress(req.Target), vs.grpcDialOption, false, func(client master_pb.SeaweedClient) error {
|
|
pingResp, err := client.Ping(ctx, &master_pb.PingRequest{})
|
|
if pingResp != nil {
|
|
resp.RemoteTimeNs = pingResp.StartTimeNs
|
|
}
|
|
return err
|
|
})
|
|
}
|
|
if pingErr != nil {
|
|
pingErr = fmt.Errorf("ping %s %s: %v", req.TargetType, req.Target, pingErr)
|
|
}
|
|
resp.StopTimeNs = time.Now().UnixNano()
|
|
return
|
|
}
|