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dfbc2e81e3
quic-go now vendors all of its dependencies, so we don't need to vendor them here. Created by running: gvt delete github.com/lucas-clemente/quic-go gvt delete github.com/bifurcation/mint gvt delete github.com/lucas-clemente/aes12 gvt delete github.com/lucas-clemente/fnv128a gvt delete github.com/lucas-clemente/quic-go-certificates gvt delete github.com/aead/chacha20 gvt delete github.com/hashicorp/golang-lru gvt fetch -tag v0.10.0-no-integrationtests github.com/lucas-clemente/quic-go
420 lines
11 KiB
Go
420 lines
11 KiB
Go
package quic
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import (
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"crypto/tls"
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"errors"
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"fmt"
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"io"
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"net"
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"sync"
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"time"
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"github.com/lucas-clemente/quic-go/internal/crypto"
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"github.com/lucas-clemente/quic-go/internal/handshake"
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"github.com/lucas-clemente/quic-go/internal/protocol"
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"github.com/lucas-clemente/quic-go/internal/utils"
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"github.com/lucas-clemente/quic-go/internal/wire"
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)
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// packetHandler handles packets
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type packetHandler interface {
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handlePacket(*receivedPacket)
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io.Closer
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destroy(error)
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GetVersion() protocol.VersionNumber
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GetPerspective() protocol.Perspective
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}
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type unknownPacketHandler interface {
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handlePacket(*receivedPacket)
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closeWithError(error) error
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}
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type packetHandlerManager interface {
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Add(protocol.ConnectionID, packetHandler)
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SetServer(unknownPacketHandler)
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Remove(protocol.ConnectionID)
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CloseServer()
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}
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type quicSession interface {
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Session
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handlePacket(*receivedPacket)
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GetVersion() protocol.VersionNumber
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run() error
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destroy(error)
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closeRemote(error)
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}
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type sessionRunner interface {
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onHandshakeComplete(Session)
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removeConnectionID(protocol.ConnectionID)
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}
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type runner struct {
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onHandshakeCompleteImpl func(Session)
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removeConnectionIDImpl func(protocol.ConnectionID)
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}
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func (r *runner) onHandshakeComplete(s Session) { r.onHandshakeCompleteImpl(s) }
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func (r *runner) removeConnectionID(c protocol.ConnectionID) { r.removeConnectionIDImpl(c) }
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var _ sessionRunner = &runner{}
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// A Listener of QUIC
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type server struct {
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mutex sync.Mutex
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tlsConf *tls.Config
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config *Config
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conn net.PacketConn
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// If the server is started with ListenAddr, we create a packet conn.
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// If it is started with Listen, we take a packet conn as a parameter.
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createdPacketConn bool
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supportsTLS bool
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serverTLS *serverTLS
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certChain crypto.CertChain
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scfg *handshake.ServerConfig
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sessionHandler packetHandlerManager
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serverError error
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errorChan chan struct{}
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closed bool
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sessionQueue chan Session
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sessionRunner sessionRunner
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// set as a member, so they can be set in the tests
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newSession func(connection, sessionRunner, protocol.VersionNumber, protocol.ConnectionID, protocol.ConnectionID, *handshake.ServerConfig, *tls.Config, *Config, utils.Logger) (quicSession, error)
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logger utils.Logger
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}
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var _ Listener = &server{}
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var _ unknownPacketHandler = &server{}
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// ListenAddr creates a QUIC server listening on a given address.
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// The tls.Config must not be nil, the quic.Config may be nil.
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func ListenAddr(addr string, tlsConf *tls.Config, config *Config) (Listener, error) {
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udpAddr, err := net.ResolveUDPAddr("udp", addr)
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if err != nil {
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return nil, err
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}
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conn, err := net.ListenUDP("udp", udpAddr)
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if err != nil {
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return nil, err
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}
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serv, err := listen(conn, tlsConf, config)
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if err != nil {
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return nil, err
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}
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serv.createdPacketConn = true
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return serv, nil
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}
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// Listen listens for QUIC connections on a given net.PacketConn.
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// The tls.Config must not be nil, the quic.Config may be nil.
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func Listen(conn net.PacketConn, tlsConf *tls.Config, config *Config) (Listener, error) {
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return listen(conn, tlsConf, config)
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}
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func listen(conn net.PacketConn, tlsConf *tls.Config, config *Config) (*server, error) {
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certChain := crypto.NewCertChain(tlsConf)
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kex, err := crypto.NewCurve25519KEX()
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if err != nil {
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return nil, err
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}
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scfg, err := handshake.NewServerConfig(kex, certChain)
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if err != nil {
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return nil, err
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}
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config = populateServerConfig(config)
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var supportsTLS bool
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for _, v := range config.Versions {
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if !protocol.IsValidVersion(v) {
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return nil, fmt.Errorf("%s is not a valid QUIC version", v)
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}
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// check if any of the supported versions supports TLS
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if v.UsesTLS() {
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supportsTLS = true
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break
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}
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}
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sessionHandler, err := getMultiplexer().AddConn(conn, config.ConnectionIDLength)
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if err != nil {
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return nil, err
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}
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s := &server{
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conn: conn,
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tlsConf: tlsConf,
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config: config,
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certChain: certChain,
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scfg: scfg,
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newSession: newSession,
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sessionHandler: sessionHandler,
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sessionQueue: make(chan Session, 5),
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errorChan: make(chan struct{}),
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supportsTLS: supportsTLS,
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logger: utils.DefaultLogger.WithPrefix("server"),
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}
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s.setup()
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if supportsTLS {
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if err := s.setupTLS(); err != nil {
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return nil, err
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}
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}
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sessionHandler.SetServer(s)
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s.logger.Debugf("Listening for %s connections on %s", conn.LocalAddr().Network(), conn.LocalAddr().String())
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return s, nil
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}
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func (s *server) setup() {
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s.sessionRunner = &runner{
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onHandshakeCompleteImpl: func(sess Session) { s.sessionQueue <- sess },
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removeConnectionIDImpl: s.sessionHandler.Remove,
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}
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}
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func (s *server) setupTLS() error {
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serverTLS, sessionChan, err := newServerTLS(s.conn, s.config, s.sessionRunner, s.tlsConf, s.logger)
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if err != nil {
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return err
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}
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s.serverTLS = serverTLS
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// handle TLS connection establishment statelessly
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go func() {
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for {
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select {
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case <-s.errorChan:
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return
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case tlsSession := <-sessionChan:
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// The connection ID is a randomly chosen value.
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// It is safe to assume that it doesn't collide with other randomly chosen values.
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serverSession := newServerSession(tlsSession.sess, s.config, s.logger)
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s.sessionHandler.Add(tlsSession.connID, serverSession)
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}
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}
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}()
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return nil
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}
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var defaultAcceptCookie = func(clientAddr net.Addr, cookie *Cookie) bool {
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if cookie == nil {
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return false
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}
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if time.Now().After(cookie.SentTime.Add(protocol.CookieExpiryTime)) {
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return false
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}
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var sourceAddr string
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if udpAddr, ok := clientAddr.(*net.UDPAddr); ok {
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sourceAddr = udpAddr.IP.String()
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} else {
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sourceAddr = clientAddr.String()
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}
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return sourceAddr == cookie.RemoteAddr
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}
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// populateServerConfig populates fields in the quic.Config with their default values, if none are set
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// it may be called with nil
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func populateServerConfig(config *Config) *Config {
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if config == nil {
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config = &Config{}
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}
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versions := config.Versions
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if len(versions) == 0 {
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versions = protocol.SupportedVersions
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}
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vsa := defaultAcceptCookie
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if config.AcceptCookie != nil {
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vsa = config.AcceptCookie
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}
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handshakeTimeout := protocol.DefaultHandshakeTimeout
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if config.HandshakeTimeout != 0 {
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handshakeTimeout = config.HandshakeTimeout
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}
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idleTimeout := protocol.DefaultIdleTimeout
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if config.IdleTimeout != 0 {
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idleTimeout = config.IdleTimeout
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}
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maxReceiveStreamFlowControlWindow := config.MaxReceiveStreamFlowControlWindow
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if maxReceiveStreamFlowControlWindow == 0 {
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maxReceiveStreamFlowControlWindow = protocol.DefaultMaxReceiveStreamFlowControlWindowServer
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}
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maxReceiveConnectionFlowControlWindow := config.MaxReceiveConnectionFlowControlWindow
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if maxReceiveConnectionFlowControlWindow == 0 {
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maxReceiveConnectionFlowControlWindow = protocol.DefaultMaxReceiveConnectionFlowControlWindowServer
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}
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maxIncomingStreams := config.MaxIncomingStreams
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if maxIncomingStreams == 0 {
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maxIncomingStreams = protocol.DefaultMaxIncomingStreams
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} else if maxIncomingStreams < 0 {
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maxIncomingStreams = 0
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}
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maxIncomingUniStreams := config.MaxIncomingUniStreams
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if maxIncomingUniStreams == 0 {
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maxIncomingUniStreams = protocol.DefaultMaxIncomingUniStreams
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} else if maxIncomingUniStreams < 0 {
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maxIncomingUniStreams = 0
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}
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connIDLen := config.ConnectionIDLength
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if connIDLen == 0 {
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connIDLen = protocol.DefaultConnectionIDLength
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}
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for _, v := range versions {
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if v == protocol.Version44 {
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connIDLen = protocol.ConnectionIDLenGQUIC
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}
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}
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return &Config{
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Versions: versions,
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HandshakeTimeout: handshakeTimeout,
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IdleTimeout: idleTimeout,
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AcceptCookie: vsa,
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KeepAlive: config.KeepAlive,
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MaxReceiveStreamFlowControlWindow: maxReceiveStreamFlowControlWindow,
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MaxReceiveConnectionFlowControlWindow: maxReceiveConnectionFlowControlWindow,
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MaxIncomingStreams: maxIncomingStreams,
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MaxIncomingUniStreams: maxIncomingUniStreams,
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ConnectionIDLength: connIDLen,
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}
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}
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// Accept returns newly openend sessions
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func (s *server) Accept() (Session, error) {
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var sess Session
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select {
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case sess = <-s.sessionQueue:
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return sess, nil
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case <-s.errorChan:
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return nil, s.serverError
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}
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}
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// Close the server
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func (s *server) Close() error {
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s.mutex.Lock()
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defer s.mutex.Unlock()
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if s.closed {
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return nil
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}
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return s.closeWithMutex()
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}
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func (s *server) closeWithMutex() error {
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s.sessionHandler.CloseServer()
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if s.serverError == nil {
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s.serverError = errors.New("server closed")
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}
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var err error
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// If the server was started with ListenAddr, we created the packet conn.
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// We need to close it in order to make the go routine reading from that conn return.
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if s.createdPacketConn {
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err = s.conn.Close()
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}
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s.closed = true
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close(s.errorChan)
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return err
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}
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func (s *server) closeWithError(e error) error {
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s.mutex.Lock()
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defer s.mutex.Unlock()
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if s.closed {
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return nil
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}
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s.serverError = e
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return s.closeWithMutex()
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}
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// Addr returns the server's network address
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func (s *server) Addr() net.Addr {
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return s.conn.LocalAddr()
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}
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func (s *server) handlePacket(p *receivedPacket) {
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if err := s.handlePacketImpl(p); err != nil {
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s.logger.Debugf("error handling packet from %s: %s", p.remoteAddr, err)
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}
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}
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func (s *server) handlePacketImpl(p *receivedPacket) error {
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hdr := p.header
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if hdr.VersionFlag || hdr.IsLongHeader {
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// send a Version Negotiation Packet if the client is speaking a different protocol version
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if !protocol.IsSupportedVersion(s.config.Versions, hdr.Version) {
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return s.sendVersionNegotiationPacket(p)
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}
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}
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if hdr.Type == protocol.PacketTypeInitial && hdr.Version.UsesTLS() {
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go s.serverTLS.HandleInitial(p)
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return nil
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}
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// TODO(#943): send Stateless Reset, if this an IETF QUIC packet
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if !hdr.VersionFlag && !hdr.Version.UsesIETFHeaderFormat() {
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_, err := s.conn.WriteTo(wire.WritePublicReset(hdr.DestConnectionID, 0, 0), p.remoteAddr)
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return err
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}
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// This is (potentially) a Client Hello.
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// Make sure it has the minimum required size before spending any more ressources on it.
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if len(p.data) < protocol.MinClientHelloSize {
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return errors.New("dropping small packet for unknown connection")
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}
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var destConnID, srcConnID protocol.ConnectionID
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if hdr.Version.UsesIETFHeaderFormat() {
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srcConnID = hdr.DestConnectionID
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} else {
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destConnID = hdr.DestConnectionID
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srcConnID = hdr.DestConnectionID
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}
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s.logger.Infof("Serving new connection: %s, version %s from %v", hdr.DestConnectionID, hdr.Version, p.remoteAddr)
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sess, err := s.newSession(
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&conn{pconn: s.conn, currentAddr: p.remoteAddr},
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s.sessionRunner,
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hdr.Version,
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destConnID,
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srcConnID,
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s.scfg,
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s.tlsConf,
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s.config,
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s.logger,
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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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s.sessionHandler.Add(hdr.DestConnectionID, newServerSession(sess, s.config, s.logger))
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go sess.run()
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sess.handlePacket(p)
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return nil
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}
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func (s *server) sendVersionNegotiationPacket(p *receivedPacket) error {
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hdr := p.header
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s.logger.Debugf("Client offered version %s, sending VersionNegotiationPacket", hdr.Version)
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var data []byte
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if hdr.IsPublicHeader {
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data = wire.ComposeGQUICVersionNegotiation(hdr.DestConnectionID, s.config.Versions)
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} else {
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var err error
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data, err = wire.ComposeVersionNegotiation(hdr.SrcConnectionID, hdr.DestConnectionID, s.config.Versions)
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if err != nil {
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return err
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}
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}
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_, err := s.conn.WriteTo(data, p.remoteAddr)
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return err
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}
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