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dfb48bac17
There has been some confusion about using different variables for the InstanceID of the RBD-driver. By removing the global variable CSIInstanceID, there should be no confusion anymore what variable to use. Signed-off-by: Niels de Vos <ndevos@ibm.com>
253 lines
7.7 KiB
Go
253 lines
7.7 KiB
Go
/*
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Copyright 2018 The Ceph-CSI Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package rbddriver
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import (
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"errors"
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"fmt"
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"os"
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casrbd "github.com/ceph/ceph-csi/internal/csi-addons/rbd"
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csiaddons "github.com/ceph/ceph-csi/internal/csi-addons/server"
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csicommon "github.com/ceph/ceph-csi/internal/csi-common"
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"github.com/ceph/ceph-csi/internal/rbd"
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"github.com/ceph/ceph-csi/internal/util"
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"github.com/ceph/ceph-csi/internal/util/k8s"
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"github.com/ceph/ceph-csi/internal/util/log"
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"github.com/container-storage-interface/spec/lib/go/csi"
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)
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// Driver contains the default identity,node and controller struct.
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type Driver struct {
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cd *csicommon.CSIDriver
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ids *rbd.IdentityServer
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ns *rbd.NodeServer
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cs *rbd.ControllerServer
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// cas is the CSIAddonsServer where CSI-Addons services are handled
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cas *csiaddons.CSIAddonsServer
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}
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// NewDriver returns new rbd driver.
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func NewDriver() *Driver {
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return &Driver{}
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}
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// NewIdentityServer initialize a identity server for rbd CSI driver.
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func NewIdentityServer(d *csicommon.CSIDriver) *rbd.IdentityServer {
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return &rbd.IdentityServer{
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DefaultIdentityServer: csicommon.NewDefaultIdentityServer(d),
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}
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}
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// NewControllerServer initialize a controller server for rbd CSI driver.
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func NewControllerServer(d *csicommon.CSIDriver) *rbd.ControllerServer {
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return &rbd.ControllerServer{
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DefaultControllerServer: csicommon.NewDefaultControllerServer(d),
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VolumeLocks: util.NewVolumeLocks(),
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SnapshotLocks: util.NewVolumeLocks(),
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OperationLocks: util.NewOperationLock(),
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}
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}
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// NewNodeServer initialize a node server for rbd CSI driver.
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func NewNodeServer(
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d *csicommon.CSIDriver,
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t string,
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nodeLabels, topology, crushLocationMap map[string]string,
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) *rbd.NodeServer {
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cliReadAffinityMapOptions := util.ConstructReadAffinityMapOption(crushLocationMap)
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ns := rbd.NodeServer{
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DefaultNodeServer: csicommon.NewDefaultNodeServer(d, t, cliReadAffinityMapOptions, topology, nodeLabels),
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VolumeLocks: util.NewVolumeLocks(),
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}
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return &ns
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}
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// Run start a non-blocking grpc controller,node and identityserver for
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// rbd CSI driver which can serve multiple parallel requests.
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//
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// This also configures and starts a new CSI-Addons service, by calling
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// setupCSIAddonsServer().
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func (r *Driver) Run(conf *util.Config) {
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var (
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err error
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nodeLabels, topology, crushLocationMap map[string]string
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)
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// update clone soft and hard limit
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rbd.SetGlobalInt("rbdHardMaxCloneDepth", conf.RbdHardMaxCloneDepth)
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rbd.SetGlobalInt("rbdSoftMaxCloneDepth", conf.RbdSoftMaxCloneDepth)
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rbd.SetGlobalBool("skipForceFlatten", conf.SkipForceFlatten)
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rbd.SetGlobalInt("maxSnapshotsOnImage", conf.MaxSnapshotsOnImage)
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rbd.SetGlobalInt("minSnapshotsOnImageToStartFlatten", conf.MinSnapshotsOnImage)
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// Create instances of the volume and snapshot journal
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rbd.InitJournals(conf.InstanceID)
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// Initialize default library driver
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r.cd = csicommon.NewCSIDriver(conf.DriverName, util.DriverVersion, conf.NodeID, conf.InstanceID)
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if r.cd == nil {
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log.FatalLogMsg("Failed to initialize CSI Driver.")
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}
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if conf.IsControllerServer || !conf.IsNodeServer {
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r.cd.AddControllerServiceCapabilities([]csi.ControllerServiceCapability_RPC_Type{
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csi.ControllerServiceCapability_RPC_CREATE_DELETE_VOLUME,
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csi.ControllerServiceCapability_RPC_CREATE_DELETE_SNAPSHOT,
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csi.ControllerServiceCapability_RPC_CLONE_VOLUME,
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csi.ControllerServiceCapability_RPC_EXPAND_VOLUME,
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})
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// We only support the multi-writer option when using block, but it's a supported capability for the plugin in
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// general
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// In addition, we want to add the remaining modes like MULTI_NODE_READER_ONLY,
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// MULTI_NODE_SINGLE_WRITER etc, but need to do some verification of RO modes first
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// will work those as follow-up features
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r.cd.AddVolumeCapabilityAccessModes(
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[]csi.VolumeCapability_AccessMode_Mode{
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csi.VolumeCapability_AccessMode_SINGLE_NODE_WRITER,
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csi.VolumeCapability_AccessMode_MULTI_NODE_MULTI_WRITER,
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csi.VolumeCapability_AccessMode_SINGLE_NODE_SINGLE_WRITER,
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csi.VolumeCapability_AccessMode_SINGLE_NODE_MULTI_WRITER,
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})
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}
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if k8s.RunsOnKubernetes() && conf.IsNodeServer {
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nodeLabels, err = k8s.GetNodeLabels(conf.NodeID)
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if err != nil {
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log.FatalLogMsg(err.Error())
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}
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}
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if conf.EnableReadAffinity {
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crushLocationMap = util.GetCrushLocationMap(conf.CrushLocationLabels, nodeLabels)
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}
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// Create GRPC servers
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r.ids = NewIdentityServer(r.cd)
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if conf.IsNodeServer {
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topology, err = util.GetTopologyFromDomainLabels(conf.DomainLabels, conf.NodeID, conf.DriverName)
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if err != nil {
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log.FatalLogMsg(err.Error())
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}
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r.ns = NewNodeServer(r.cd, conf.Vtype, nodeLabels, topology, crushLocationMap)
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var attr string
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attr, err = rbd.GetKrbdSupportedFeatures()
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if err != nil && !errors.Is(err, os.ErrNotExist) {
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log.FatalLogMsg(err.Error())
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}
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var krbdFeatures uint
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krbdFeatures, err = rbd.HexStringToInteger(attr)
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if err != nil {
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log.FatalLogMsg(err.Error())
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}
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rbd.SetGlobalInt("krbdFeatures", krbdFeatures)
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rbd.SetRbdNbdToolFeatures()
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}
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if conf.IsControllerServer {
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r.cs = NewControllerServer(r.cd)
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r.cs.ClusterName = conf.ClusterName
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r.cs.SetMetadata = conf.SetMetadata
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}
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// configure CSI-Addons server and components
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err = r.setupCSIAddonsServer(conf)
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if err != nil {
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log.FatalLogMsg(err.Error())
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}
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s := csicommon.NewNonBlockingGRPCServer()
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srv := csicommon.Servers{
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IS: r.ids,
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CS: r.cs,
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NS: r.ns,
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}
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s.Start(conf.Endpoint, srv)
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r.startProfiling(conf)
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if conf.IsNodeServer {
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go func() {
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// TODO: move the healer to csi-addons
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err := rbd.RunVolumeHealer(r.ns, conf)
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if err != nil {
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log.ErrorLogMsg("healer had failures, err %v\n", err)
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}
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}()
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}
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s.Wait()
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}
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// setupCSIAddonsServer creates a new CSI-Addons Server on the given (URL)
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// endpoint. The supported CSI-Addons operations get registered as their own
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// services.
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func (r *Driver) setupCSIAddonsServer(conf *util.Config) error {
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var err error
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r.cas, err = csiaddons.NewCSIAddonsServer(conf.CSIAddonsEndpoint)
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if err != nil {
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return fmt.Errorf("failed to create CSI-Addons server: %w", err)
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}
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// register services
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is := casrbd.NewIdentityServer(conf)
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r.cas.RegisterService(is)
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if conf.IsControllerServer {
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rs := casrbd.NewReclaimSpaceControllerServer(r.cs.VolumeLocks)
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r.cas.RegisterService(rs)
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fcs := casrbd.NewFenceControllerServer()
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r.cas.RegisterService(fcs)
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rcs := casrbd.NewReplicationServer(conf.InstanceID, NewControllerServer(r.cd))
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r.cas.RegisterService(rcs)
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vgcs := casrbd.NewVolumeGroupServer(conf.InstanceID)
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r.cas.RegisterService(vgcs)
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}
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if conf.IsNodeServer {
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rs := casrbd.NewReclaimSpaceNodeServer(r.ns.VolumeLocks)
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r.cas.RegisterService(rs)
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ekr := casrbd.NewEncryptionKeyRotationServer(r.ns.VolumeLocks)
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r.cas.RegisterService(ekr)
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}
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// start the server, this does not block, it runs a new go-routine
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err = r.cas.Start()
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if err != nil {
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return fmt.Errorf("failed to start CSI-Addons server: %w", err)
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}
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return nil
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}
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// startProfiling checks which profiling options are enabled in the config and
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// starts the required profiling services.
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func (r *Driver) startProfiling(conf *util.Config) {
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if conf.EnableProfiling {
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go util.StartMetricsServer(conf)
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log.DebugLogMsg("Registering profiling handler")
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go util.EnableProfiling()
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}
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}
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