constellation/bootstrapper/internal/initserver/initserver.go

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/*
Copyright (c) Edgeless Systems GmbH
SPDX-License-Identifier: AGPL-3.0-only
*/
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package initserver
import (
"context"
"fmt"
"net"
"strings"
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"time"
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"github.com/edgelesssys/constellation/v2/bootstrapper/initproto"
"github.com/edgelesssys/constellation/v2/bootstrapper/internal/diskencryption"
"github.com/edgelesssys/constellation/v2/internal/atls"
"github.com/edgelesssys/constellation/v2/internal/attestation"
"github.com/edgelesssys/constellation/v2/internal/attestation/azure/snp"
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"github.com/edgelesssys/constellation/v2/internal/crypto"
"github.com/edgelesssys/constellation/v2/internal/file"
"github.com/edgelesssys/constellation/v2/internal/grpc/atlscredentials"
"github.com/edgelesssys/constellation/v2/internal/grpc/grpclog"
"github.com/edgelesssys/constellation/v2/internal/kms/kms"
kmssetup "github.com/edgelesssys/constellation/v2/internal/kms/setup"
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"github.com/edgelesssys/constellation/v2/internal/logger"
"github.com/edgelesssys/constellation/v2/internal/nodestate"
"github.com/edgelesssys/constellation/v2/internal/role"
"github.com/edgelesssys/constellation/v2/internal/versions/components"
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"go.uber.org/zap"
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"golang.org/x/crypto/bcrypt"
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"google.golang.org/grpc"
"google.golang.org/grpc/codes"
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"google.golang.org/grpc/keepalive"
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"google.golang.org/grpc/status"
)
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// Server is the initialization server, which is started on each node.
// The server handles initialization calls from the CLI and initializes the
// Kubernetes cluster.
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type Server struct {
nodeLock locker
initializer ClusterInitializer
disk encryptedDisk
fileHandler file.Handler
grpcServer serveStopper
cleaner cleaner
issuer atls.Issuer
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initSecretHash []byte
log *logger.Logger
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initproto.UnimplementedAPIServer
}
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// New creates a new initialization server.
func New(ctx context.Context, lock locker, kube ClusterInitializer, issuer atls.Issuer, fh file.Handler, metadata MetadataAPI, log *logger.Logger) (*Server, error) {
log = log.Named("initServer")
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initSecretHash, err := metadata.InitSecretHash(ctx)
if err != nil {
return nil, fmt.Errorf("retrieving init secret hash: %w", err)
}
if len(initSecretHash) == 0 {
return nil, fmt.Errorf("init secret hash is empty")
}
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server := &Server{
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nodeLock: lock,
disk: diskencryption.New(),
initializer: kube,
fileHandler: fh,
issuer: issuer,
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log: log,
initSecretHash: initSecretHash,
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}
grpcServer := grpc.NewServer(
grpc.Creds(atlscredentials.New(issuer, nil)),
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grpc.KeepaliveParams(keepalive.ServerParameters{Time: 15 * time.Second}),
log.Named("gRPC").GetServerUnaryInterceptor(),
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)
initproto.RegisterAPIServer(grpcServer, server)
server.grpcServer = grpcServer
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return server, nil
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}
// Serve starts the initialization server.
func (s *Server) Serve(ip, port string, cleaner cleaner) error {
s.cleaner = cleaner
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lis, err := net.Listen("tcp", net.JoinHostPort(ip, port))
if err != nil {
return fmt.Errorf("failed to listen: %w", err)
}
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s.log.Infof("Starting")
return s.grpcServer.Serve(lis)
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}
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// Init initializes the cluster.
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func (s *Server) Init(ctx context.Context, req *initproto.InitRequest) (*initproto.InitResponse, error) {
defer s.cleaner.Clean()
log := s.log.With(zap.String("peer", grpclog.PeerAddrFromContext(ctx)))
log.Infof("Init called")
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if err := bcrypt.CompareHashAndPassword(s.initSecretHash, req.InitSecret); err != nil {
return nil, status.Errorf(codes.Internal, "invalid init secret %s", err)
}
cloudKms, err := kmssetup.KMS(ctx, req.StorageUri, req.KmsUri)
if err != nil {
return nil, fmt.Errorf("creating kms client: %w", err)
}
// generate values for cluster attestation
measurementSalt, clusterID, err := deriveMeasurementValues(ctx, cloudKms)
if err != nil {
return nil, status.Errorf(codes.Internal, "deriving measurement values: %s", err)
}
nodeLockAcquired, err := s.nodeLock.TryLockOnce(clusterID)
if err != nil {
return nil, status.Errorf(codes.Internal, "locking node: %s", err)
}
if !nodeLockAcquired {
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// The join client seems to already have a connection to an
// existing join service. At this point, any further call to
// init does not make sense, so we just stop.
//
// The server stops itself after the current call is done.
log.Warnf("Node is already in a join process")
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return nil, status.Error(codes.FailedPrecondition, "node is already being activated")
}
if err := s.setupDisk(ctx, cloudKms); err != nil {
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return nil, status.Errorf(codes.Internal, "setting up disk: %s", err)
}
state := nodestate.NodeState{
Role: role.ControlPlane,
MeasurementSalt: measurementSalt,
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}
if err := state.ToFile(s.fileHandler); err != nil {
return nil, status.Errorf(codes.Internal, "persisting node state: %s", err)
}
// Check if we are running on a CVM
_, isCVM := s.issuer.(*snp.Issuer)
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kubeconfig, err := s.initializer.InitCluster(ctx,
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req.CloudServiceAccountUri,
req.KubernetesVersion,
measurementSalt,
req.EnforcedPcrs,
req.EnforceIdkeydigest,
isCVM,
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req.HelmDeployments,
req.ConformanceMode,
components.NewComponentsFromInitProto(req.KubernetesComponents),
s.log,
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)
if err != nil {
return nil, status.Errorf(codes.Internal, "initializing cluster: %s", err)
}
log.Infof("Init succeeded")
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return &initproto.InitResponse{
Kubeconfig: kubeconfig,
ClusterId: clusterID,
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}, nil
}
// Stop stops the initialization server gracefully.
func (s *Server) Stop() {
s.log.Infof("Stopping")
s.grpcServer.GracefulStop()
s.log.Infof("Stopped")
}
func (s *Server) setupDisk(ctx context.Context, cloudKms kms.CloudKMS) error {
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if err := s.disk.Open(); err != nil {
return fmt.Errorf("opening encrypted disk: %w", err)
}
defer s.disk.Close()
uuid, err := s.disk.UUID()
if err != nil {
return fmt.Errorf("retrieving uuid of disk: %w", err)
}
uuid = strings.ToLower(uuid)
diskKey, err := cloudKms.GetDEK(ctx, crypto.DEKPrefix+uuid, crypto.StateDiskKeyLength)
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if err != nil {
return err
}
return s.disk.UpdatePassphrase(string(diskKey))
}
func deriveMeasurementValues(ctx context.Context, cloudKms kms.CloudKMS) (salt, clusterID []byte, err error) {
salt, err = crypto.GenerateRandomBytes(crypto.RNGLengthDefault)
if err != nil {
return nil, nil, err
}
secret, err := cloudKms.GetDEK(ctx, crypto.DEKPrefix+crypto.MeasurementSecretKeyID, crypto.DerivedKeyLengthDefault)
if err != nil {
return nil, nil, err
}
clusterID, err = attestation.DeriveClusterID(secret, salt)
if err != nil {
return nil, nil, err
}
return salt, clusterID, nil
}
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// ClusterInitializer has the ability to initialize a cluster.
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type ClusterInitializer interface {
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// InitCluster initializes a new Kubernetes cluster.
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InitCluster(
ctx context.Context,
cloudServiceAccountURI string,
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k8sVersion string,
measurementSalt []byte,
enforcedPcrs []uint32,
enforceIDKeyDigest bool,
azureCVM bool,
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helmDeployments []byte,
conformanceMode bool,
kubernetesComponents components.Components,
log *logger.Logger,
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) ([]byte, error)
}
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type encryptedDisk interface {
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// Open prepares the underlying device for disk operations.
Open() error
// Close closes the underlying device.
Close() error
// UUID gets the device's UUID.
UUID() (string, error)
// UpdatePassphrase switches the initial random passphrase of the encrypted disk to a permanent passphrase.
UpdatePassphrase(passphrase string) error
}
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type serveStopper interface {
// Serve starts the server.
Serve(lis net.Listener) error
// GracefulStop stops the server and blocks until all requests are done.
GracefulStop()
}
type locker interface {
// TryLockOnce tries to lock the node. If the node is already locked, it
// returns false. If the node is unlocked, it locks it and returns true.
TryLockOnce(clusterID []byte) (bool, error)
}
type cleaner interface {
Clean()
}
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// MetadataAPI provides information about the instances.
type MetadataAPI interface {
// InitSecretHash returns the initSecretHash of the instance.
InitSecretHash(ctx context.Context) ([]byte, error)
}