2019-07-01 18:37:39 +01:00
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package tunnel
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import (
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"crypto/sha256"
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"errors"
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"fmt"
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"sync"
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"github.com/google/uuid"
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2019-07-07 10:37:34 +01:00
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"github.com/micro/go-micro/network/transport"
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2019-07-01 18:37:39 +01:00
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)
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// tun represents a network tunnel
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type tun struct {
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// interface to use
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net Interface
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// connect
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mtx sync.RWMutex
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connected bool
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// the send channel
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send chan *message
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// close channel
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closed chan bool
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// sockets
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sockets map[string]*socket
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}
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// create new tunnel
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func newTunnel(net Interface) *tun {
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return &tun{
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net: net,
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send: make(chan *message, 128),
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closed: make(chan bool),
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sockets: make(map[string]*socket),
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}
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}
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func (t *tun) getSocket(id string) (*socket, bool) {
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// get the socket
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t.mtx.RLock()
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s, ok := t.sockets[id]
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t.mtx.RUnlock()
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return s, ok
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}
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func (t *tun) newSocket(id string) *socket {
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// new id if it doesn't exist
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if len(id) == 0 {
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id = uuid.New().String()
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}
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// hash the id
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h := sha256.New()
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h.Write([]byte(id))
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id = fmt.Sprintf("%x", h.Sum(nil))
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// new socket
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s := &socket{
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id: id,
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closed: make(chan bool),
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recv: make(chan *message, 128),
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send: t.send,
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}
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// save socket
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t.mtx.Lock()
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t.sockets[id] = s
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t.mtx.Unlock()
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// return socket
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return s
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}
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// process outgoing messages
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func (t *tun) process() {
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// manage the send buffer
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// all pseudo sockets throw everything down this
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for {
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select {
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case msg := <-t.send:
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nmsg := &Message{
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Header: msg.data.Header,
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Body: msg.data.Body,
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}
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// set the stream id on the outgoing message
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nmsg.Header["Micro-Stream"] = msg.id
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// send the message via the interface
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if err := t.net.Send(nmsg); err != nil {
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// no op
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// TODO: do something
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}
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case <-t.closed:
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return
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}
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}
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}
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// process incoming messages
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func (t *tun) listen() {
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for {
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// process anything via the net interface
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msg, err := t.net.Recv()
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if err != nil {
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return
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}
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// a stream id
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id := msg.Header["Micro-Stream"]
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// get the socket
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s, exists := t.getSocket(id)
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if !exists {
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// no op
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continue
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}
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// is the socket closed?
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select {
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case <-s.closed:
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// closed
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delete(t.sockets, id)
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continue
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default:
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// process
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}
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// is the socket new?
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select {
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// if its new it will block here
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case <-s.wait:
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// its not new
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default:
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// its new
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// set remote address of the socket
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s.remote = msg.Header["Remote"]
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close(s.wait)
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}
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tmsg := &transport.Message{
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Header: msg.Header,
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Body: msg.Body,
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}
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// TODO: don't block on queuing
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// append to recv backlog
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s.recv <- &message{id: id, data: tmsg}
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}
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}
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// Close the tunnel
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func (t *tun) Close() error {
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t.mtx.Lock()
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defer t.mtx.Unlock()
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if !t.connected {
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return nil
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}
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select {
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case <-t.closed:
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return nil
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default:
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// close all the sockets
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for _, s := range t.sockets {
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s.Close()
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}
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// close the connection
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close(t.closed)
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t.connected = false
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}
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return nil
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}
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// Connect the tunnel
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func (t *tun) Connect() error {
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t.mtx.Lock()
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defer t.mtx.Unlock()
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// already connected
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if t.connected {
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return nil
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}
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// set as connected
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t.connected = true
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// create new close channel
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t.closed = make(chan bool)
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// process messages to be sent
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go t.process()
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// process incoming messages
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go t.listen()
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return nil
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}
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// Dial an address
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func (t *tun) Dial(addr string) (Conn, error) {
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c := t.newSocket(addr)
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// set remote
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c.remote = addr
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// set local
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c.local = t.net.Addr()
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return c, nil
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}
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func (t *tun) Accept(addr string) (Conn, error) {
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c := t.newSocket(addr)
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// set remote
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c.remote = t.net.Addr()
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// set local
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c.local = addr
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select {
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case <-c.closed:
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return nil, errors.New("error creating socket")
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// wait for the first message
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case <-c.wait:
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}
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// return socket
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return c, nil
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}
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