2020-10-24 13:15:32 -06:00
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package gemini
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2020-09-25 17:06:56 -06:00
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import (
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"context"
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"crypto/tls"
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"errors"
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"log"
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"net"
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"runtime"
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"sync"
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"sync/atomic"
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"time"
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)
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// A Server defines parameters for running a Gemini server. The zero value for
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// Server is a valid configuration.
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type Server struct {
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// Addr optionally specifies the TCP address for the server to listen on,
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// in the form "host:port". If empty, ":1965" (port 1965) is used.
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// See net.Dial for details of the address format.
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Addr string
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// The Handler to invoke.
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Handler Handler
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// ReadTimeout is the maximum duration for reading the entire
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// request.
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//
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// A ReadTimeout of zero means no timeout.
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ReadTimeout time.Duration
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// WriteTimeout is the maximum duration before timing out
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// writes of the response.
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//
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// A WriteTimeout of zero means no timeout.
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WriteTimeout time.Duration
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// GetCertificate, if not nil, will be called to retrieve a new certificate
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// if the current one is expired or missing.
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GetCertificate func(hostname string) (*tls.Certificate, error)
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// ErrorLog specifies an optional logger for errors accepting connections,
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// unexpected behavior from handlers, and underlying file system errors.
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// If nil, logging is done via the log package's standard logger.
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ErrorLog *log.Logger
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listeners map[*net.Listener]struct{}
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conns map[*net.Conn]struct{}
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done int32
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mu sync.Mutex
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}
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// ListenAndServe listens for requests at the server's configured address.
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// ListenAndServe listens on the TCP network address srv.Addr and then calls
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// Serve to handle requests on incoming connections.
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//
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// If srv.Addr is blank, ":1965" is used.
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//
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// ListenAndServe always returns a non-nil error. After Shutdown or Close, the
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// returned error is ErrServerClosed.
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func (srv *Server) ListenAndServe() error {
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if atomic.LoadInt32(&srv.done) == 1 {
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return ErrServerClosed
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}
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addr := srv.Addr
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if addr == "" {
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addr = ":1965"
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}
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ln, err := net.Listen("tcp", addr)
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if err != nil {
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return err
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}
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defer ln.Close()
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return srv.Serve(tls.NewListener(ln, &tls.Config{
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ClientAuth: tls.RequestClientCert,
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MinVersion: tls.VersionTLS12,
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GetCertificate: srv.getCertificate,
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}))
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}
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func (srv *Server) trackListener(l *net.Listener) {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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if srv.listeners == nil {
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srv.listeners = make(map[*net.Listener]struct{})
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}
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srv.listeners[l] = struct{}{}
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}
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func (srv *Server) deleteListener(l *net.Listener) {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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delete(srv.listeners, l)
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}
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// Serve accepts incoming connections on the Listener l, creating a new
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// service goroutine for each. The service goroutines read requests and
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// then calls the appropriate Handler to reply to them.
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//
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// Serve always returns a non-nil error and closes l. After Shutdown or Close,
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// the returned error is ErrServerClosed.
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func (srv *Server) Serve(l net.Listener) error {
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defer l.Close()
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srv.trackListener(&l)
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defer srv.deleteListener(&l)
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if atomic.LoadInt32(&srv.done) == 1 {
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return ErrServerClosed
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}
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var tempDelay time.Duration // how long to sleep on accept failure
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for {
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rw, err := l.Accept()
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if err != nil {
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if atomic.LoadInt32(&srv.done) == 1 {
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return ErrServerClosed
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}
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// If this is a temporary error, sleep
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if ne, ok := err.(net.Error); ok && ne.Temporary() {
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if tempDelay == 0 {
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tempDelay = 5 * time.Millisecond
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} else {
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tempDelay *= 2
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}
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if max := 1 * time.Second; tempDelay > max {
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tempDelay = max
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}
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srv.logf("gemini: Accept error: %v; retrying in %v", err, tempDelay)
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time.Sleep(tempDelay)
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continue
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}
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// Otherwise, return the error
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return err
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}
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tempDelay = 0
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go srv.respond(rw)
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}
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}
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func (srv *Server) closeListenersLocked() error {
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var err error
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for ln := range srv.listeners {
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if cerr := (*ln).Close(); cerr != nil && err == nil {
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err = cerr
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}
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delete(srv.listeners, ln)
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}
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return err
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}
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// Close immediately closes all active net.Listeners and connections.
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// For a graceful shutdown, use Shutdown.
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//
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// Close returns any error returned from closing the Server's
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// underlying Listener(s).
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func (srv *Server) Close() error {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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if !atomic.CompareAndSwapInt32(&srv.done, 0, 1) {
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return ErrServerClosed
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}
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err := srv.closeListenersLocked()
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// Close active connections
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for conn := range srv.conns {
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(*conn).Close()
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delete(srv.conns, conn)
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}
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return err
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}
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func (srv *Server) numConns() int {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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return len(srv.conns)
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}
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// shutdownPollInterval is how often we poll for quiescence
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// during Server.Shutdown. This is lower during tests, to
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// speed up tests.
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// Ideally we could find a solution that doesn't involve polling,
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// but which also doesn't have a high runtime cost (and doesn't
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// involve any contentious mutexes), but that is left as an
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// exercise for the reader.
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var shutdownPollInterval = 500 * time.Millisecond
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// Shutdown gracefully shuts down the server without interrupting any
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// active connections. Shutdown works by first closing all open
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// listeners and then waiting indefinitely for connections
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// to close and then shut down.
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// If the provided context expires before the shutdown is complete,
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// Shutdown returns the context's error, otherwise it returns any
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// error returned from closing the Server's underlying Listener(s).
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//
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// When Shutdown is called, Serve, ListenAndServe, and
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// ListenAndServeTLS immediately return ErrServerClosed. Make sure the
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// program doesn't exit and waits instead for Shutdown to return.
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//
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// Once Shutdown has been called on a server, it may not be reused;
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// future calls to methods such as Serve will return ErrServerClosed.
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func (srv *Server) Shutdown(ctx context.Context) error {
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if !atomic.CompareAndSwapInt32(&srv.done, 0, 1) {
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return ErrServerClosed
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}
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srv.mu.Lock()
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err := srv.closeListenersLocked()
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srv.mu.Unlock()
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// Wait for active connections to close
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ticker := time.NewTicker(shutdownPollInterval)
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defer ticker.Stop()
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for {
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if srv.numConns() == 0 {
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return err
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}
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select {
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case <-ctx.Done():
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return ctx.Err()
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case <-ticker.C:
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}
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}
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}
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func (srv *Server) getCertificate(h *tls.ClientHelloInfo) (*tls.Certificate, error) {
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if srv.GetCertificate == nil {
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return nil, errors.New("gemini: GetCertificate is nil")
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}
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return srv.GetCertificate(h.ServerName)
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}
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func (srv *Server) trackConn(conn *net.Conn) {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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if srv.conns == nil {
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srv.conns = make(map[*net.Conn]struct{})
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}
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srv.conns[conn] = struct{}{}
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}
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func (srv *Server) deleteConn(conn *net.Conn) {
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srv.mu.Lock()
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defer srv.mu.Unlock()
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delete(srv.conns, conn)
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}
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// respond responds to a connection.
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func (srv *Server) respond(conn net.Conn) {
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defer conn.Close()
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defer func() {
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if err := recover(); err != nil && err != ErrAbortHandler {
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const size = 64 << 10
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buf := make([]byte, size)
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buf = buf[:runtime.Stack(buf, false)]
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srv.logf("gemini: panic serving %v: %v\n%s", conn.RemoteAddr(), err, buf)
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}
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}()
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srv.trackConn(&conn)
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defer srv.deleteConn(&conn)
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if d := srv.ReadTimeout; d != 0 {
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conn.SetReadDeadline(time.Now().Add(d))
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}
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if d := srv.WriteTimeout; d != 0 {
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conn.SetWriteDeadline(time.Now().Add(d))
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}
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w := newResponseWriter(conn)
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req, err := ReadRequest(conn)
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if err != nil {
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w.WriteHeader(StatusBadRequest, "Bad request")
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w.Flush()
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return
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}
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// Store information about the TLS connection
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if tlsConn, ok := conn.(*tls.Conn); ok {
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state := tlsConn.ConnectionState()
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req.TLS = &state
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}
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// Store remote address
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req.RemoteAddr = conn.RemoteAddr()
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h := srv.Handler
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if h == nil {
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w.WriteHeader(StatusNotFound, "Not found")
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w.Flush()
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return
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}
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h.ServeGemini(w, req)
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w.Flush()
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}
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func (srv *Server) logf(format string, args ...interface{}) {
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if srv.ErrorLog != nil {
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srv.ErrorLog.Printf(format, args...)
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} else {
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log.Printf(format, args...)
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}
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}
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