Captive portal detection was half-migrated: it had a build tag and buildfeatures constant, but its code still lived in build-tag-gated files in ipn/ipnlocal and net/netcheck, with its per-backend state (context, cancel func, signaling channel) as fields on LocalBackend. Move it under feature/captiveportal. The health-driven detection loop becomes an ipnext.Extension holding its own state: it starts and stops the loop from the BackendStateChange hook and subscribes to health.Change events on the eventbus itself, removing the captive portal hooks and special cases from LocalBackend entirely. The DERP map now comes from a new ipnext.NodeBackend.DERPMap method, and the preferred DERP region from magicsock's last netcheck report (the same underlying source as the previously used Hostinfo.NetInfo). The netcheck probe hook is now exported with a signature free of netcheck internals, and its implementation moves to the small feature/captiveportal/netcheckhook package, which installs the hook as an import side effect. That package stays free of tsd/wgengine dependencies so the tailscale CLI can keep probing for captive portals in "tailscale netcheck" without linking the daemon-side extension. The net/captivedetection library itself is unchanged and stays put; after this change it is only linked when something pulls in netcheckhook or the feature extension. tailscaled links the feature by default via condregister as before, but tsnet no longer does (shrinking tsnet, k8s-operator, and tsidp); tsnet users who want it can blank-import the feature package, and tsnet's dep test now locks that in. Updates #12614 Signed-off-by: Brad Fitzpatrick <bradfitz@tailscale.com> Change-Id: I3f1d09f9dc03e18f9a648ab5e42d16fa540b3fa9 |
||
|---|---|---|
| .. | ||
| example | ||
| depaware.txt | ||
| example_tshello_test.go | ||
| example_tsnet_listen_service_multiple_ports_test.go | ||
| example_tsnet_test.go | ||
| listenssh_test.go | ||
| maybe_acme.go | ||
| packet_filter_test.go | ||
| README.md | ||
| tailnetlock_test.go | ||
| tsnet_test.go | ||
| tsnet.go | ||
tsnet
Package tsnet embeds a Tailscale node directly into a Go program, allowing it to join a tailnet and accept or dial connections without running a separate tailscaled daemon or requiring any system-level configuration.
Overview
Normally, Tailscale runs as a background system service (tailscaled) that manages a virtual network interface for the whole machine. tsnet takes a different approach: it runs a fully self-contained Tailscale node inside your process using a userspace TCP/IP stack (gVisor). This means:
- No root privileges required.
- No system daemons to install or manage.
- Multiple independent Tailscale nodes can run within a single binary.
- The node's Tailscale identity and state are stored in a directory you control.
The core type is Server, which represents one embedded Tailscale node. Calling Server.Listen or Server.Dial routes traffic exclusively over the tailnet. The standard library's net.Listener and net.Conn interfaces are returned, so any existing Go HTTP server, gRPC server, or other net-based code works without modification.
Usage
import "tailscale.com/tsnet"
s := &tsnet.Server{
Hostname: "my-service",
AuthKey: os.Getenv("TS_AUTHKEY"),
}
defer s.Close()
ln, err := s.Listen("tcp", ":80")
if err != nil {
log.Fatal(err)
}
log.Fatal(http.Serve(ln, myHandler))
On first run, if no Server.AuthKey is provided and the node is not already enrolled, the server logs an authentication URL. Open it in a browser to add the node to your tailnet.
Authentication
A Server authenticates using, in order of precedence:
-
The TS_AUTHKEY environment variable.
-
The TS_AUTH_KEY environment variable.
-
An OAuth client secret (Server.ClientSecret or TS_CLIENT_SECRET), used to mint an auth key.
-
Workload identity federation (Server.ClientID plus Server.IDToken or Server.Audience). Available only if the program imports the feature:
import _ "tailscale.com/feature/identityfederation"
The feature is not linked by default to keep the AWS SDK and other cloud-provider dependencies out of programs that don't use workload identity federation.
-
An interactive login URL printed to Server.UserLogf.
If the node is already enrolled (state found in Server.Store), the auth key is ignored unless TSNET_FORCE_LOGIN=1 is set.
Identifying callers
Use the WhoIs method on the client returned by Server.LocalClient to identify who is making a request:
lc, _ := srv.LocalClient()
http.Serve(ln, http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
who, err := lc.WhoIs(r.Context(), r.RemoteAddr)
if err != nil {
http.Error(w, err.Error(), 500)
return
}
fmt.Fprintf(w, "Hello, %s!", who.UserProfile.LoginName)
}))
Tailscale Funnel
Server.ListenFunnel exposes your service on the public internet. Tailscale Funnel currently supports TCP on ports 443, 8443, and 10000. HTTPS must be enabled in the Tailscale admin console.
ln, err := srv.ListenFunnel("tcp", ":443")
// ln is a TLS listener; connections can come from anywhere on the
// internet as well as from your tailnet.
// To restrict to public traffic only:
ln, err = srv.ListenFunnel("tcp", ":443", tsnet.FunnelOnly())
Tailscale Services
Server.ListenService advertises the node as a host for a named Tailscale Service. The node must use a tag-based identity. To advertise multiple ports, call ListenService once per port.
srv.AdvertiseTags = []string{"tag:myservice"}
ln, err := srv.ListenService("svc:my-service", tsnet.ServiceModeHTTP{
HTTPS: true,
Port: 443,
})
log.Printf("Listening on https://%s", ln.FQDN)
Running multiple nodes in one process
Each Server instance is an independent node. Give each a unique Server.Dir and Server.Hostname:
for _, name := range []string{"frontend", "backend"} {
srv := &tsnet.Server{
Hostname: name,
Dir: filepath.Join(baseDir, name),
AuthKey: os.Getenv("TS_AUTHKEY"),
Ephemeral: true,
}
srv.Start()
}