Esempio n. 1
0
func waitForPortForwardDataStreamAndRun(pod string, uid types.UID, errorStream httpstream.Stream, dataStreamChan chan httpstream.Stream, host HostInterface) {
	defer errorStream.Reset()

	var dataStream httpstream.Stream

	select {
	case dataStream = <-dataStreamChan:
	case <-time.After(streamCreationTimeout):
		errorStream.Write([]byte("Timed out waiting for data stream"))
		//TODO delete from dataStreamChans[port]
		return
	}

	portString := dataStream.Headers().Get(api.PortHeader)
	port, _ := strconv.ParseUint(portString, 10, 16)
	err := host.PortForward(pod, uid, uint16(port), dataStream)
	if err != nil {
		msg := fmt.Errorf("Error forwarding port %d to pod %s, uid %v: %v", port, pod, uid, err)
		glog.Error(msg)
		errorStream.Write([]byte(msg.Error()))
	}
}
Esempio n. 2
0
// handleExec handles requests to run a command inside a container.
func (s *Server) handleExec(w http.ResponseWriter, req *http.Request) {
	u, err := url.ParseRequestURI(req.RequestURI)
	if err != nil {
		s.error(w, err)
		return
	}
	podNamespace, podID, uid, container, err := parseContainerCoordinates(u.Path)
	if err != nil {
		http.Error(w, err.Error(), http.StatusBadRequest)
		return
	}
	pod, ok := s.host.GetPodByName(podNamespace, podID)
	if !ok {
		http.Error(w, "Pod does not exist", http.StatusNotFound)
		return
	}

	req.ParseForm()
	// start at 1 for error stream
	expectedStreams := 1
	if req.FormValue(api.ExecStdinParam) == "1" {
		expectedStreams++
	}
	if req.FormValue(api.ExecStdoutParam) == "1" {
		expectedStreams++
	}
	tty := req.FormValue(api.ExecTTYParam) == "1"
	if !tty && req.FormValue(api.ExecStderrParam) == "1" {
		expectedStreams++
	}

	if expectedStreams == 1 {
		http.Error(w, "You must specify at least 1 of stdin, stdout, stderr", http.StatusBadRequest)
		return
	}

	streamCh := make(chan httpstream.Stream)

	upgrader := spdy.NewResponseUpgrader()
	conn := upgrader.UpgradeResponse(w, req, func(stream httpstream.Stream) error {
		streamCh <- stream
		return nil
	})
	// from this point on, we can no longer call methods on w
	if conn == nil {
		// The upgrader is responsible for notifying the client of any errors that
		// occurred during upgrading. All we can do is return here at this point
		// if we weren't successful in upgrading.
		return
	}
	defer conn.Close()

	conn.SetIdleTimeout(s.host.StreamingConnectionIdleTimeout())

	// TODO make it configurable?
	expired := time.NewTimer(streamCreationTimeout)

	var errorStream, stdinStream, stdoutStream, stderrStream httpstream.Stream
	receivedStreams := 0
WaitForStreams:
	for {
		select {
		case stream := <-streamCh:
			streamType := stream.Headers().Get(api.StreamType)
			switch streamType {
			case api.StreamTypeError:
				errorStream = stream
				defer errorStream.Reset()
				receivedStreams++
			case api.StreamTypeStdin:
				stdinStream = stream
				receivedStreams++
			case api.StreamTypeStdout:
				stdoutStream = stream
				receivedStreams++
			case api.StreamTypeStderr:
				stderrStream = stream
				receivedStreams++
			default:
				glog.Errorf("Unexpected stream type: '%s'", streamType)
			}
			if receivedStreams == expectedStreams {
				break WaitForStreams
			}
		case <-expired.C:
			// TODO find a way to return the error to the user. Maybe use a separate
			// stream to report errors?
			glog.Error("Timed out waiting for client to create streams")
			return
		}
	}

	if stdinStream != nil {
		// close our half of the input stream, since we won't be writing to it
		stdinStream.Close()
	}

	err = s.host.ExecInContainer(kubecontainer.GetPodFullName(pod), uid, container, u.Query()[api.ExecCommandParamm], stdinStream, stdoutStream, stderrStream, tty)
	if err != nil {
		msg := fmt.Sprintf("Error executing command in container: %v", err)
		glog.Error(msg)
		errorStream.Write([]byte(msg))
	}
}