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https://github.com/juanfont/headscale.git
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c8ebbede54
This PR removes the complicated session management introduced in https://github.com/juanfont/headscale/pull/1791 which kept track of the sessions in a map, in addition to the channel already kept track of in the notifier. Instead of trying to close the mapsession, it will now be replaced by the new one and closed after so all new updates goes to the right place. The map session serve function is also split into a streaming and a non-streaming version for better readability. RemoveNode in the notifier will not remove a node if the channel is not matching the one that has been passed (e.g. it has been replaced with a new one). A new tuning parameter has been added to added to set timeout before the notifier gives up to send an update to a node. Add a keep alive resetter so we wait with sending keep alives if a node has just received an update. In addition it adds a bunch of env debug flags that can be set: - `HEADSCALE_DEBUG_HIGH_CARDINALITY_METRICS`: make certain metrics include per node.id, not recommended to use in prod. - `HEADSCALE_DEBUG_PROFILING_ENABLED`: activate tracing - `HEADSCALE_DEBUG_PROFILING_PATH`: where to store traces - `HEADSCALE_DEBUG_DUMP_CONFIG`: calls `spew.Dump` on the config object startup - `HEADSCALE_DEBUG_DEADLOCK`: enable go-deadlock to dump goroutines if it looks like a deadlock has occured, enabled in integration tests. Signed-off-by: Kristoffer Dalby <kristoffer@tailscale.com>
243 lines
6.6 KiB
Go
243 lines
6.6 KiB
Go
package hscontrol
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import (
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"encoding/binary"
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"encoding/json"
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"io"
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"net/http"
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"github.com/gorilla/mux"
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"github.com/juanfont/headscale/hscontrol/types"
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"github.com/rs/zerolog/log"
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"golang.org/x/net/http2"
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"golang.org/x/net/http2/h2c"
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"tailscale.com/control/controlbase"
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"tailscale.com/control/controlhttp"
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"tailscale.com/tailcfg"
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"tailscale.com/types/key"
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)
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const (
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// ts2021UpgradePath is the path that the server listens on for the WebSockets upgrade.
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ts2021UpgradePath = "/ts2021"
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// The first 9 bytes from the server to client over Noise are either an HTTP/2
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// settings frame (a normal HTTP/2 setup) or, as Tailscale added later, an "early payload"
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// header that's also 9 bytes long: 5 bytes (earlyPayloadMagic) followed by 4 bytes
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// of length. Then that many bytes of JSON-encoded tailcfg.EarlyNoise.
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// The early payload is optional. Some servers may not send it... But we do!
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earlyPayloadMagic = "\xff\xff\xffTS"
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// EarlyNoise was added in protocol version 49.
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earlyNoiseCapabilityVersion = 49
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)
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type noiseServer struct {
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headscale *Headscale
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httpBaseConfig *http.Server
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http2Server *http2.Server
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conn *controlbase.Conn
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machineKey key.MachinePublic
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nodeKey key.NodePublic
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// EarlyNoise-related stuff
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challenge key.ChallengePrivate
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protocolVersion int
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}
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// NoiseUpgradeHandler is to upgrade the connection and hijack the net.Conn
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// in order to use the Noise-based TS2021 protocol. Listens in /ts2021.
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func (h *Headscale) NoiseUpgradeHandler(
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writer http.ResponseWriter,
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req *http.Request,
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) {
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log.Trace().Caller().Msgf("Noise upgrade handler for client %s", req.RemoteAddr)
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upgrade := req.Header.Get("Upgrade")
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if upgrade == "" {
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// This probably means that the user is running Headscale behind an
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// improperly configured reverse proxy. TS2021 requires WebSockets to
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// be passed to Headscale. Let's give them a hint.
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log.Warn().
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Caller().
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Msg("No Upgrade header in TS2021 request. If headscale is behind a reverse proxy, make sure it is configured to pass WebSockets through.")
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http.Error(writer, "Internal error", http.StatusInternalServerError)
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return
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}
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noiseServer := noiseServer{
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headscale: h,
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challenge: key.NewChallenge(),
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}
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noiseConn, err := controlhttp.AcceptHTTP(
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req.Context(),
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writer,
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req,
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*h.noisePrivateKey,
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noiseServer.earlyNoise,
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)
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if err != nil {
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log.Error().Err(err).Msg("noise upgrade failed")
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http.Error(writer, err.Error(), http.StatusInternalServerError)
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return
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}
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noiseServer.conn = noiseConn
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noiseServer.machineKey = noiseServer.conn.Peer()
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noiseServer.protocolVersion = noiseServer.conn.ProtocolVersion()
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// This router is served only over the Noise connection, and exposes only the new API.
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//
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// The HTTP2 server that exposes this router is created for
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// a single hijacked connection from /ts2021, using netutil.NewOneConnListener
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router := mux.NewRouter()
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router.Use(prometheusMiddleware)
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router.HandleFunc("/machine/register", noiseServer.NoiseRegistrationHandler).
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Methods(http.MethodPost)
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router.HandleFunc("/machine/map", noiseServer.NoisePollNetMapHandler)
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server := http.Server{
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ReadTimeout: types.HTTPTimeout,
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}
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noiseServer.httpBaseConfig = &http.Server{
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Handler: router,
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ReadHeaderTimeout: types.HTTPTimeout,
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}
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noiseServer.http2Server = &http2.Server{}
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server.Handler = h2c.NewHandler(router, noiseServer.http2Server)
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noiseServer.http2Server.ServeConn(
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noiseConn,
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&http2.ServeConnOpts{
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BaseConfig: noiseServer.httpBaseConfig,
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},
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)
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}
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func (ns *noiseServer) earlyNoise(protocolVersion int, writer io.Writer) error {
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log.Trace().
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Caller().
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Int("protocol_version", protocolVersion).
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Str("challenge", ns.challenge.Public().String()).
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Msg("earlyNoise called")
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if protocolVersion < earlyNoiseCapabilityVersion {
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log.Trace().
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Caller().
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Msgf("protocol version %d does not support early noise", protocolVersion)
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return nil
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}
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earlyJSON, err := json.Marshal(&tailcfg.EarlyNoise{
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NodeKeyChallenge: ns.challenge.Public(),
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})
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if err != nil {
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return err
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}
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// 5 bytes that won't be mistaken for an HTTP/2 frame:
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// https://httpwg.org/specs/rfc7540.html#rfc.section.4.1 (Especially not
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// an HTTP/2 settings frame, which isn't of type 'T')
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var notH2Frame [5]byte
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copy(notH2Frame[:], earlyPayloadMagic)
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var lenBuf [4]byte
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binary.BigEndian.PutUint32(lenBuf[:], uint32(len(earlyJSON)))
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// These writes are all buffered by caller, so fine to do them
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// separately:
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if _, err := writer.Write(notH2Frame[:]); err != nil {
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return err
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}
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if _, err := writer.Write(lenBuf[:]); err != nil {
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return err
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}
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if _, err := writer.Write(earlyJSON); 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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const (
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MinimumCapVersion tailcfg.CapabilityVersion = 58
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)
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// NoisePollNetMapHandler takes care of /machine/:id/map using the Noise protocol
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//
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// This is the busiest endpoint, as it keeps the HTTP long poll that updates
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// the clients when something in the network changes.
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//
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// The clients POST stuff like HostInfo and their Endpoints here, but
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// only after their first request (marked with the ReadOnly field).
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//
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// At this moment the updates are sent in a quite horrendous way, but they kinda work.
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func (ns *noiseServer) NoisePollNetMapHandler(
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writer http.ResponseWriter,
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req *http.Request,
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) {
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log.Trace().
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Str("handler", "NoisePollNetMap").
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Msg("PollNetMapHandler called")
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log.Trace().
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Any("headers", req.Header).
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Caller().
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Msg("Headers")
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body, _ := io.ReadAll(req.Body)
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mapRequest := tailcfg.MapRequest{}
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if err := json.Unmarshal(body, &mapRequest); err != nil {
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log.Error().
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Caller().
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Err(err).
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Msg("Cannot parse MapRequest")
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http.Error(writer, "Internal error", http.StatusInternalServerError)
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return
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}
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// Reject unsupported versions
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if mapRequest.Version < MinimumCapVersion {
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log.Info().
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Caller().
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Int("min_version", int(MinimumCapVersion)).
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Int("client_version", int(mapRequest.Version)).
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Msg("unsupported client connected")
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http.Error(writer, "Internal error", http.StatusBadRequest)
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return
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}
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ns.nodeKey = mapRequest.NodeKey
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node, err := ns.headscale.db.GetNodeByAnyKey(
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ns.conn.Peer(),
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mapRequest.NodeKey,
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key.NodePublic{},
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)
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if err != nil {
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log.Error().
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Str("handler", "NoisePollNetMap").
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Msgf("Failed to fetch node from the database with node key: %s", mapRequest.NodeKey.String())
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http.Error(writer, "Internal error", http.StatusInternalServerError)
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return
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}
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sess := ns.headscale.newMapSession(req.Context(), mapRequest, writer, node)
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sess.tracef("a node sending a MapRequest with Noise protocol")
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if !sess.isStreaming() {
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sess.serve()
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} else {
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sess.serveLongPoll()
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}
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}
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