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control/controlclient: refactor noiseClient, connections, http2
In prep for stateful http2 noise connections. Updates #5972 Change-Id: I9ebecc3b2d5d193621b87d39b506f231d6c82145 Signed-off-by: Brad Fitzpatrick <bradfitz@tailscale.com>
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@ -7,10 +7,8 @@
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import (
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"bytes"
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"context"
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"crypto/tls"
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"encoding/json"
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"math"
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"net"
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"net/http"
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"net/url"
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"sync"
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@ -24,6 +22,7 @@
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"tailscale.com/types/key"
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"tailscale.com/util/mak"
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"tailscale.com/util/multierr"
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"tailscale.com/util/singleflight"
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)
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// noiseConn is a wrapper around controlbase.Conn.
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@ -34,6 +33,7 @@ type noiseConn struct {
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*controlbase.Conn
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id int
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pool *noiseClient
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h2cc *http2.ClientConn
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}
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func (c *noiseConn) Close() error {
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@ -47,7 +47,24 @@ func (c *noiseConn) Close() error {
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// noiseClient provides a http.Client to connect to tailcontrol over
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// the ts2021 protocol.
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type noiseClient struct {
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*http.Client // HTTP client used to talk to tailcontrol
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// Client is an HTTP client to talk to the coordination server.
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// It automatically makes a new Noise connection as needed.
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// It does not support node key proofs. To do that, call
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// noiseClient.getConn instead to make a connection.
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*http.Client
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// h2t is the HTTP/2 transport we use a bit to create new
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// *http2.ClientConns. We don't use its connection pool and we don't use its
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// dialing. We use it for exactly one reason: its idle timeout that can only
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// be configured via the HTTP/1 config. And then we call NewClientConn (with
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// an existing Noise connection) on the http2.Transport which sets up an
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// http2.ClientConn using that idle timeout from an http1.Transport.
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h2t *http2.Transport
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// sfDial ensures that two concurrent requests for a noise connection only
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// produce one shared one between the two callers.
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sfDial singleflight.Group[struct{}, *noiseConn]
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dialer *tsdial.Dialer
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privKey key.MachinePrivate
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serverPubKey key.MachinePublic
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@ -62,6 +79,7 @@ type noiseClient struct {
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// mu only protects the following variables.
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mu sync.Mutex
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last *noiseConn // or nil
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nextID int
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connPool map[int]*noiseConn // active connections not yet closed; see noiseConn.Close
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}
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@ -112,30 +130,48 @@ func newNoiseClient(priKey key.MachinePrivate, serverPubKey key.MachinePublic, s
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if err != nil {
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return nil, err
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}
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np.h2t = h2Transport
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// Let the HTTP/2 Transport think it's dialing out using TLS,
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// but it's actually our Noise dialer:
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h2Transport.DialTLS = np.dial
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// ConfigureTransports assumes it's being used to wire up an HTTP/1
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// and HTTP/2 Transport together, so its returned http2.Transport
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// has a ConnPool already initialized that's configured to not dial
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// (assuming it's only called from the HTTP/1 Transport). But we
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// want it to dial, so nil it out before use. On first use it has
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// a sync.Once that lazily initializes the ConnPool to its default
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// one that dials.
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h2Transport.ConnPool = nil
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np.Client = &http.Client{Transport: h2Transport}
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np.Client = &http.Client{Transport: np}
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return np, nil
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}
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func (nc *noiseClient) getConn(ctx context.Context) (*noiseConn, error) {
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nc.mu.Lock()
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if last := nc.last; last != nil && last.canTakeNewRequest() {
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nc.mu.Unlock()
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return last, nil
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}
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nc.mu.Unlock()
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conn, err, _ := nc.sfDial.Do(struct{}{}, nc.dial)
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if err != nil {
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return nil, err
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}
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return conn, nil
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}
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func (nc *noiseClient) RoundTrip(req *http.Request) (*http.Response, error) {
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ctx := req.Context()
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conn, err := nc.getConn(ctx)
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if err != nil {
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return nil, err
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}
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return conn.h2cc.RoundTrip(req)
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}
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// connClosed removes the connection with the provided ID from the pool
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// of active connections.
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func (nc *noiseClient) connClosed(id int) {
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nc.mu.Lock()
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defer nc.mu.Unlock()
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delete(nc.connPool, id)
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conn := nc.connPool[id]
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if conn != nil {
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delete(nc.connPool, id)
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if nc.last == conn {
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nc.last = nil
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}
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}
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}
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// Close closes all the underlying noise connections.
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@ -156,10 +192,8 @@ func (nc *noiseClient) Close() error {
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}
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// dial opens a new connection to tailcontrol, fetching the server noise key
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// if not cached. It implements the signature needed by http2.Transport.DialTLS
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// but ignores all params as it only dials out to the server the noiseClient was
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// created for.
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func (nc *noiseClient) dial(_, _ string, _ *tls.Config) (net.Conn, error) {
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// if not cached.
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func (nc *noiseClient) dial() (*noiseConn, error) {
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nc.mu.Lock()
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connID := nc.nextID
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nc.nextID++
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@ -224,10 +258,25 @@ func (nc *noiseClient) dial(_, _ string, _ *tls.Config) (net.Conn, error) {
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return nil, err
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}
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ncc := &noiseConn{
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Conn: clientConn.Conn,
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id: connID,
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pool: nc,
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}
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// TODO(bradfitz): wrap clientConn in a type that sniffs the leading bytes
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// from the server to see if it has early post-Noise, pre-H2 data for us.
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h2cc, err := nc.h2t.NewClientConn(ncc)
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if err != nil {
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return nil, err
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}
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ncc.h2cc = h2cc
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nc.mu.Lock()
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defer nc.mu.Unlock()
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ncc := &noiseConn{Conn: clientConn.Conn, id: connID, pool: nc}
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mak.Set(&nc.connPool, ncc.id, ncc)
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nc.last = ncc
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return ncc, nil
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}
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@ -241,5 +290,14 @@ func (nc *noiseClient) post(ctx context.Context, path string, body any) (*http.R
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return nil, err
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}
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req.Header.Set("Content-Type", "application/json")
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return nc.Do(req)
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conn, err := nc.getConn(ctx)
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if err != nil {
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return nil, err
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}
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return conn.h2cc.RoundTrip(req)
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}
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func (c *noiseConn) canTakeNewRequest() bool {
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return c.h2cc.CanTakeNewRequest()
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}
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