Files
uncloud/internal/machine/network.go
T

275 lines
8.5 KiB
Go

package machine
import (
"context"
"fmt"
dnetwork "github.com/docker/docker/api/types/network"
"github.com/docker/docker/client"
"github.com/docker/docker/libnetwork/iptables"
"golang.org/x/sync/errgroup"
"google.golang.org/grpc"
"log/slog"
"net"
"net/netip"
"strconv"
"time"
"uncloud/internal/machine/api/pb"
"uncloud/internal/machine/network"
)
const (
APIPort = 51000
DockerNetworkName = "uncloud"
DockerUserChain = "DOCKER-USER"
)
type networkController struct {
state *State
wgnet *network.WireGuardNetwork
server *grpc.Server
newMachinesCh <-chan *pb.MachineInfo
// TODO: DNS server/resolver listening on the machine IP, e.g. 10.210.0.1:53. It can't listen on 127.0.X.X
// like resolved does because it needs to be reachable from both the host and the containers.
}
func newNetworkController(state *State, server *grpc.Server, newMachCh <-chan *pb.MachineInfo) (
*networkController, error,
) {
slog.Info("Starting WireGuard network.")
wgnet, err := network.NewWireGuardNetwork()
if err != nil {
return nil, fmt.Errorf("create WireGuard network: %w", err)
}
return &networkController{
state: state,
wgnet: wgnet,
server: server,
newMachinesCh: newMachCh,
}, nil
}
func (nc *networkController) Run(ctx context.Context) error {
if err := nc.wgnet.Configure(*nc.state.Network); err != nil {
return fmt.Errorf("configure WireGuard network: %w", err)
}
slog.Info("WireGuard network configured.")
errGroup, ctx := errgroup.WithContext(ctx)
// Start the network API server. Assume the management IP can't be changed when the network is running.
apiAddr := net.JoinHostPort(nc.state.Network.ManagementIP.String(), strconv.Itoa(APIPort))
listener, err := net.Listen("tcp", apiAddr)
if err != nil {
return fmt.Errorf("listen API port: %w", err)
}
errGroup.Go(
func() error {
slog.Info("Starting network API server.", "addr", apiAddr)
if err := nc.server.Serve(listener); err != nil {
return fmt.Errorf("network API server failed: %w", err)
}
return nil
},
)
// Setup Docker network and iptables rules in a goroutine because it may block until the Docker daemon is ready.
errGroup.Go(
func() error {
if err := nc.setupDockerNetwork(ctx); err != nil {
return fmt.Errorf("setup Docker network: %w", err)
}
slog.Info("Docker network configured.")
return nil
},
)
// Handle new machines added to the cluster. Handling new machines and endpoint changes should be done
// in separate goroutines to avoid a deadlock when reconfiguring the network.
errGroup.Go(
func() error {
if err := nc.handleNewMachines(ctx); err != nil {
return fmt.Errorf("handle new machines: %w", err)
}
return nil
},
)
// TODO: run another goroutine to watch WG network endpoint changes and update the state accordingly.
// Network updates in the state should not occur outside of this controller.
errGroup.Go(
func() error {
if err = nc.wgnet.Run(ctx); err != nil {
return fmt.Errorf("WireGuard network failed: %w", err)
}
return nil
},
)
// Wait for the context to be done and stop the network API server.
errGroup.Go(
func() error {
<-ctx.Done()
slog.Info("Stopping network API server.")
// TODO: implement timeout for graceful shutdown.
nc.server.GracefulStop()
slog.Info("Network API server stopped.")
return nil
},
)
return errGroup.Wait()
}
// setupDockerNetwork creates the Docker bridge network DockerNetworkName with the machine subnet and configures
// iptables to allow WireGuard network to access containers.
func (nc *networkController) setupDockerNetwork(ctx context.Context) error {
cli, err := client.NewClientWithOpts(client.FromEnv, client.WithAPIVersionNegotiation())
if err != nil {
return fmt.Errorf("init Docker client: %w", err)
}
defer cli.Close()
// Wait for the Docker daemon to start and be ready by sending a ping request in a loop.
ticker := time.NewTicker(1 * time.Second)
defer ticker.Stop()
ready, waitingLogged := false, false
for !ready {
select {
case <-ctx.Done():
return ctx.Err()
case <-ticker.C:
_, err = cli.Ping(ctx)
if err == nil {
ready = true
break
}
if !client.IsErrConnectionFailed(err) {
return fmt.Errorf("connect to Docker daemon: %w", err)
}
if !waitingLogged {
slog.Info("Waiting for Docker daemon to start and be ready to setup Docker network.")
waitingLogged = true
}
}
}
// Ensure the Docker network 'uncloud' is created with the correct subnet.
needsCreation := false
nw, err := cli.NetworkInspect(ctx, DockerNetworkName, dnetwork.InspectOptions{})
if err != nil {
if !client.IsErrNotFound(err) {
return fmt.Errorf("inspect Docker network %q: %w", DockerNetworkName, err)
}
needsCreation = true
} else if nw.IPAM.Config[0].Subnet != nc.state.Network.Subnet.String() {
// Remove the Docker network if the subnet is different.
// It could be a leftover from a previous incomplete cleanup.
slog.Info(
"Removing Docker network with old subnet.", "name", DockerNetworkName, "subnet", nw.IPAM.Config[0].Subnet,
)
if err = cli.NetworkRemove(ctx, DockerNetworkName); err != nil {
// It can still fail if the network is in use by a container. Leave it to the user to resolve the issue.
return fmt.Errorf("remove Docker network %q: %w", DockerNetworkName, err)
}
needsCreation = true
}
if needsCreation {
if _, err = cli.NetworkCreate(
ctx, DockerNetworkName, dnetwork.CreateOptions{
Driver: "bridge",
Scope: "local",
IPAM: &dnetwork.IPAM{
Config: []dnetwork.IPAMConfig{
{
Subnet: nc.state.Network.Subnet.String(),
},
},
},
},
); err != nil {
return fmt.Errorf("create Docker network %q: %w", DockerNetworkName, err)
}
slog.Info("Docker network created.", "name", DockerNetworkName, "subnet", nc.state.Network.Subnet.String())
if nw, err = cli.NetworkInspect(ctx, DockerNetworkName, dnetwork.InspectOptions{}); err != nil {
return fmt.Errorf("inspect Docker network %q: %w", DockerNetworkName, err)
}
}
// Configure iptables to allow WireGuard network to access containers. The Docker daemon should have already
// created the DOCKER-USER chain at this point.
// TODO: check if this works when firewalld used instead of raw iptables. The Docker daemon has a different
// code path for firewalld.
// Bridge name doesn't seem to be documented but this is the source code where it is generated:
// https://github.com/moby/moby/blob/v27.2.1/libnetwork/drivers/bridge/bridge_linux.go#L664
bridgeName := "br-" + nw.ID[:12]
ipt := iptables.GetIptable(iptables.IPv4)
rule := []string{"--in-interface", network.WireGuardInterfaceName, "--out-interface", bridgeName, "-j", "ACCEPT"}
if err = ipt.ProgramRule(iptables.Filter, DockerUserChain, iptables.Insert, rule); err != nil {
return fmt.Errorf("insert iptables rule: %w", err)
}
return nil
}
func (nc *networkController) handleNewMachines(ctx context.Context) error {
for {
select {
case minfo := <-nc.newMachinesCh:
slog.Info("Handling new machine added to the cluster.", "name", minfo.Name)
// Skip the current machine.
nc.state.mu.RLock()
currentMachID := nc.state.ID
nc.state.mu.RUnlock()
if minfo.Id == currentMachID {
continue
}
if err := minfo.Network.Validate(); err != nil {
slog.Error("Invalid machine network configuration.", "err", err)
continue
}
// Ignore errors as they are already validated.
subnet, _ := minfo.Network.Subnet.ToPrefix()
manageIP, _ := minfo.Network.ManagementIp.ToAddr()
endpoints := make([]netip.AddrPort, len(minfo.Network.Endpoints))
for i, ep := range minfo.Network.Endpoints {
addrPort, _ := ep.ToAddrPort()
endpoints[i] = addrPort
}
peer := network.PeerConfig{
Subnet: &subnet,
ManagementIP: manageIP,
AllEndpoints: endpoints,
PublicKey: minfo.Network.PublicKey,
}
if len(endpoints) > 0 {
peer.Endpoint = &endpoints[0]
}
nc.state.mu.Lock()
// TODO: deduplicate peers by public key, maybe implement addNetworkPeer method in the state.
nc.state.Network.Peers = append(nc.state.Network.Peers, peer)
err := nc.state.Save()
nc.state.mu.Unlock()
if err != nil {
return fmt.Errorf("save machine state: %w", err)
}
if err := nc.wgnet.Configure(*nc.state.Network); err != nil {
return fmt.Errorf("configure network with new peer: %w", err)
}
case <-ctx.Done():
return nil
}
}
}
// TODO: method to shutdown network when leaving a cluster. Regular context cancellation shouldn't bring it down.