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server.go
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// Package coap provides a CoAP client and server.
package coap
import (
"context"
"crypto/tls"
"fmt"
"net"
"reflect"
"strconv"
"strings"
"sync"
"sync/atomic"
"time"
"github.com/go-ocf/go-coap/codes"
coapNet "github.com/go-ocf/go-coap/net"
dtls "github.com/pion/dtls/v2"
)
// Interval for stop worker if no load
const idleWorkerTimeout = 10 * time.Second
// Maximum number of workers
const maxWorkersCount = 10000
const coapTimeout time.Duration = 3600 * time.Second
const waitTimer time.Duration = 100 * time.Millisecond
const syncTimeout time.Duration = 30 * time.Second
const maxMessageSize = 1152
const (
defaultReadBufferSize = 4096
defaultWriteBufferSize = 4096
)
// Listener defined used by coap
type Listener interface {
Close() error
AcceptWithContext(ctx context.Context) (net.Conn, error)
}
//DefaultPort default unsecure port for COAP server
const DefaultPort = 5683
//DefaultSecurePort default secure port for COAP server
const DefaultSecurePort = 5684
//const tcpIdleTimeout time.Duration = 8 * time.Second
// Handler is implemented by any value that implements ServeCOAP.
type Handler interface {
ServeCOAP(w ResponseWriter, r *Request)
}
// The HandlerFunc type is an adapter to allow the use of
// ordinary functions as COAP handlers. If f is a function
// with the appropriate signature, HandlerFunc(f) is a
// Handler object that calls f.
type HandlerFunc func(ResponseWriter, *Request)
// ServeCOAP calls f(w, r).
func (f HandlerFunc) ServeCOAP(w ResponseWriter, r *Request) {
f(w, r)
}
// HandleFailed returns a HandlerFunc that returns NotFound for every request it gets.
func HandleFailed(w ResponseWriter, req *Request) {
msg := req.Client.NewMessage(MessageParams{
Type: Acknowledgement,
Code: codes.NotFound,
MessageID: req.Msg.MessageID(),
Token: req.Msg.Token(),
})
w.WriteMsgWithContext(req.Ctx, msg)
}
func failedHandler() Handler { return HandlerFunc(HandleFailed) }
// ListenAndServe Starts a server on address and network specified Invoke handler
// for incoming queries.
func ListenAndServe(network string, addr string, handler Handler) error {
server := &Server{Addr: addr, Net: network, Handler: handler}
return server.ListenAndServe()
}
// ListenAndServeTLS acts like http.ListenAndServeTLS, more information in
// http://golang.org/pkg/net/http/#ListenAndServeTLS
func ListenAndServeTLS(network, addr string, config *tls.Config, handler Handler) error {
server := &Server{
Addr: addr,
Net: fixNetTLS(network),
TLSConfig: config,
Handler: handler,
}
return server.ListenAndServe()
}
// ListenAndServeDTLS acts like ListenAndServeTLS, more information in
// http://golang.org/pkg/net/http/#ListenAndServeTLS
func ListenAndServeDTLS(network string, addr string, config *dtls.Config, handler Handler) error {
server := &Server{
Addr: addr,
Net: fixNetDTLS(network),
DTLSConfig: config,
Handler: handler,
}
return server.ListenAndServe()
}
// ActivateAndServe activates a server with a listener from systemd,
// l and p should not both be non-nil.
// If both l and p are not nil only p will be used.
// Invoke handler for incoming queries.
func ActivateAndServe(l Listener, p net.Conn, handler Handler) error {
server := &Server{Listener: l, Conn: p, Handler: handler}
return server.ActivateAndServe()
}
// A Server defines parameters for running an COAP server.
type Server struct {
// Address to listen on, ":COAP" if empty.
Addr string
// if "tcp" or "tcp-tls" (COAP over TLS) it will invoke a TCP listener, otherwise an UDP one
Net string
// TCP Listener to use, this is to aid in systemd's socket activation.
Listener Listener
// TLS connection configuration
TLSConfig *tls.Config
// DTLSConfig connection configuration
DTLSConfig *dtls.Config
// UDP/TCP "Listener/Connection" to use, this is to aid in systemd's socket activation.
Conn net.Conn
// Handler to invoke, COAP.DefaultServeMux if nil.
Handler Handler
// Max message size that could be received from peer. Min 16bytes. If not set
// it defaults is unlimited.
MaxMessageSize uint32
// The net.Conn.SetReadTimeout value for new connections, defaults to 1hour.
ReadTimeout time.Duration
// The net.Conn.SetWriteTimeout value for new connections, defaults to 1hour.
WriteTimeout time.Duration
// If NotifyStartedFunc is set it is called once the server has started listening.
NotifyStartedFunc func()
// Defines wake up interval from operations Read, Write over connection. defaults is 100ms.
HeartBeat time.Duration
// If newSessionUDPFunc is set it is called when session UDP want to be created
newSessionUDPFunc func(connection *coapNet.ConnUDP, srv *Server, sessionUDPData *coapNet.ConnUDPContext) (networkSession, error)
// If newSessionUDPFunc is set it is called when session TCP want to be created
newSessionTCPFunc func(connection *coapNet.Conn, srv *Server) (networkSession, error)
// If newSessionUDPFunc is set it is called when session DTLS want to be created
newSessionDTLSFunc func(connection *coapNet.Conn, srv *Server) (networkSession, error)
// If NotifyNewSession is set it is called when new TCP/UDP session was created.
NotifySessionNewFunc func(w *ClientConn)
// If NotifyNewSession is set it is called when TCP/UDP session was ended.
NotifySessionEndFunc func(w *ClientConn, err error)
// The interfaces that will be used for udp-mcast (default uses the system assigned for multicast)
UDPMcastInterfaces []net.Interface
// Use blockWise transfer for transfer payload (default for UDP it's enabled, for TCP it's disable)
BlockWiseTransfer *bool
// Set maximal block size of payload that will be send in fragment
BlockWiseTransferSzx *BlockWiseSzx
// Disable send tcp signal CSM message
DisableTCPSignalMessageCSM bool
// Disable processes Capabilities and Settings Messages from client - iotivity sends max message size without blockwise.
DisablePeerTCPSignalMessageCSMs bool
// Keepalive setup
KeepAlive KeepAlive
// UDP packet or TCP connection queue
queue chan *Request
// Workers count
workersCount int32
sessionUDPMapLock sync.Mutex
sessionUDPMap map[string]networkSession
doneLock sync.Mutex
doneChan chan struct{}
}
func (srv *Server) workerChannelHandler(inUse bool, timeout *time.Timer) bool {
select {
case w, ok := <-srv.queue:
if !ok {
return false
}
inUse = true
srv.serve(w)
case <-timeout.C:
if !inUse {
return false
}
inUse = false
timeout.Reset(idleWorkerTimeout)
}
return true
}
func (srv *Server) worker(w *Request) {
srv.serve(w)
for {
count := atomic.LoadInt32(&srv.workersCount)
if count > maxWorkersCount {
return
}
if atomic.CompareAndSwapInt32(&srv.workersCount, count, count+1) {
break
}
}
defer atomic.AddInt32(&srv.workersCount, -1)
inUse := false
timeout := time.NewTimer(idleWorkerTimeout)
defer timeout.Stop()
for srv.workerChannelHandler(inUse, timeout) {
}
}
func (srv *Server) spawnWorker(w *Request) {
select {
case srv.queue <- w:
default:
go srv.worker(w)
}
}
// ListenAndServe starts a coapserver on the configured address in *Server.
func (srv *Server) ListenAndServe() error {
var listener Listener
var connUDP *coapNet.ConnUDP
addr := srv.Addr
var err error
if addr == "" {
switch {
case strings.Contains(srv.Net, "-tls"):
addr = ":" + strconv.Itoa(DefaultSecurePort)
default:
addr = ":" + strconv.Itoa(DefaultPort)
}
}
switch srv.Net {
case "tcp", "tcp4", "tcp6":
listener, err = coapNet.NewTCPListener(srv.Net, addr, srv.heartBeat())
if err != nil {
return fmt.Errorf("cannot listen and serve: %v", err)
}
defer listener.Close()
case "tcp-tls", "tcp4-tls", "tcp6-tls":
network := strings.TrimSuffix(srv.Net, "-tls")
listener, err = coapNet.NewTLSListener(network, addr, srv.TLSConfig, srv.heartBeat())
if err != nil {
return fmt.Errorf("cannot listen and serve: %v", err)
}
defer listener.Close()
case "udp", "udp4", "udp6":
a, err := net.ResolveUDPAddr(srv.Net, addr)
if err != nil {
return err
}
l, err := net.ListenUDP(srv.Net, a)
if err != nil {
return err
}
if err := coapNet.SetUDPSocketOptions(l); err != nil {
return err
}
connUDP = coapNet.NewConnUDP(l, srv.heartBeat(), 2)
defer connUDP.Close()
case "udp-mcast", "udp4-mcast", "udp6-mcast":
network := strings.TrimSuffix(srv.Net, "-mcast")
a, err := net.ResolveUDPAddr(network, addr)
if err != nil {
return err
}
l, err := net.ListenUDP(network, a)
if err != nil {
return err
}
if err := coapNet.SetUDPSocketOptions(l); err != nil {
return err
}
connUDP = coapNet.NewConnUDP(l, srv.heartBeat(), 2)
defer connUDP.Close()
ifaces := srv.UDPMcastInterfaces
if len(ifaces) == 0 {
ifaces, err = net.Interfaces()
if err != nil {
return err
}
}
for _, iface := range ifaces {
if err := connUDP.JoinGroup(&iface, a); err != nil {
return err
}
}
if err := connUDP.SetMulticastLoopback(true); err != nil {
return err
}
case "udp-dtls", "udp4-dtls", "udp6-dtls":
network := strings.TrimSuffix(srv.Net, "-dtls")
listener, err = coapNet.NewDTLSListener(network, addr, srv.DTLSConfig, srv.heartBeat())
if err != nil {
return fmt.Errorf("cannot listen and serve: %v", err)
}
defer listener.Close()
default:
return ErrInvalidNetParameter
}
return srv.activateAndServe(listener, nil, connUDP)
}
func (srv *Server) initServeUDP(connUDP *coapNet.ConnUDP) error {
doneChan, err := srv.initDone()
if err != nil {
return err
}
return srv.serveUDP(newShutdownWithContext(doneChan), connUDP)
}
func (srv *Server) initServeTCP(conn *coapNet.Conn) error {
doneChan, err := srv.initDone()
if err != nil {
return err
}
if srv.NotifyStartedFunc != nil {
srv.NotifyStartedFunc()
}
return srv.serveTCPConnection(newShutdownWithContext(doneChan), conn)
}
func (srv *Server) initDone() (<-chan struct{}, error) {
srv.doneLock.Lock()
defer srv.doneLock.Unlock()
if srv.doneChan != nil {
return nil, fmt.Errorf("server already serve connections")
}
doneChan := make(chan struct{})
srv.doneChan = doneChan
return doneChan, nil
}
func (srv *Server) initServeDTLS(conn *coapNet.Conn) error {
doneChan, err := srv.initDone()
if err != nil {
return err
}
if srv.NotifyStartedFunc != nil {
srv.NotifyStartedFunc()
}
return srv.serveDTLSConnection(newShutdownWithContext(doneChan), conn)
}
// ActivateAndServe starts a coapserver with the PacketConn or Listener
// configured in *Server. Its main use is to start a server from systemd.
func (srv *Server) ActivateAndServe() error {
if srv.Conn != nil {
switch c := srv.Conn.(type) {
case *net.TCPConn:
if srv.Net == "" {
srv.Net = "tcp"
}
return srv.activateAndServe(nil, coapNet.NewConn(c, srv.heartBeat()), nil)
case *tls.Conn:
if srv.Net == "" {
srv.Net = "tcp-tls"
}
return srv.activateAndServe(nil, coapNet.NewConn(c, srv.heartBeat()), nil)
case *coapNet.ConnDTLS:
if srv.Net == "" {
srv.Net = "udp-dtls"
}
return srv.activateAndServe(nil, coapNet.NewConn(c, srv.heartBeat()), nil)
case *net.UDPConn:
if srv.Net == "" {
srv.Net = "udp"
}
return srv.activateAndServe(nil, nil, coapNet.NewConnUDP(c, srv.heartBeat(), 2))
}
return ErrInvalidServerConnParameter
}
if srv.Listener != nil {
return srv.activateAndServe(srv.Listener, nil, nil)
}
return ErrInvalidServerListenerParameter
}
func (srv *Server) activateAndServe(listener Listener, conn *coapNet.Conn, connUDP *coapNet.ConnUDP) error {
if srv.MaxMessageSize > 0 && srv.MaxMessageSize < uint32(szxToBytes[BlockWiseSzx16]) {
return ErrInvalidMaxMesssageSizeParameter
}
err := validateKeepAlive(srv.KeepAlive)
if err != nil {
return fmt.Errorf("keepalive: %w", err)
}
srv.sessionUDPMapLock.Lock()
srv.sessionUDPMap = make(map[string]networkSession)
srv.sessionUDPMapLock.Unlock()
srv.queue = make(chan *Request)
defer close(srv.queue)
if srv.newSessionTCPFunc == nil {
srv.newSessionTCPFunc = func(connection *coapNet.Conn, srv *Server) (networkSession, error) {
session, err := newSessionTCP(connection, srv)
if err != nil {
return nil, err
}
if srv.KeepAlive.Enable {
session = newKeepAliveSession(session, srv)
}
if session.blockWiseEnabled() {
return &blockWiseSession{networkSession: session}, nil
}
return session, nil
}
}
if srv.newSessionDTLSFunc == nil {
srv.newSessionDTLSFunc = func(connection *coapNet.Conn, srv *Server) (networkSession, error) {
session, err := newSessionDTLS(connection, srv)
if err != nil {
return nil, err
}
if srv.KeepAlive.Enable {
session = newKeepAliveSession(session, srv)
}
if session.blockWiseEnabled() {
return &blockWiseSession{networkSession: session}, nil
}
return session, nil
}
}
if srv.newSessionUDPFunc == nil {
srv.newSessionUDPFunc = func(connection *coapNet.ConnUDP, srv *Server, sessionUDPData *coapNet.ConnUDPContext) (networkSession, error) {
session, err := newSessionUDP(connection, srv, sessionUDPData)
if err != nil {
return nil, err
}
if srv.KeepAlive.Enable {
session = newKeepAliveSession(session, srv)
}
if session.blockWiseEnabled() {
return &blockWiseSession{networkSession: session}, nil
}
return session, nil
}
}
if srv.NotifySessionNewFunc == nil {
srv.NotifySessionNewFunc = func(w *ClientConn) {}
}
if srv.NotifySessionEndFunc == nil {
srv.NotifySessionEndFunc = func(w *ClientConn, err error) {}
}
switch {
case listener != nil:
if _, ok := listener.(*coapNet.DTLSListener); ok {
return srv.serveDTLSListener(listener)
}
return srv.serveTCPListener(listener)
case conn != nil:
if strings.HasSuffix(srv.Net, "-dtls") {
return srv.initServeDTLS(conn)
}
return srv.initServeTCP(conn)
case connUDP != nil:
return srv.initServeUDP(connUDP)
}
return ErrInvalidServerListenerParameter
}
// Shutdown shuts down a server. After a call to Shutdown, ListenAndServe and
// ActivateAndServe will return.
func (srv *Server) Shutdown() error {
srv.doneLock.Lock()
defer srv.doneLock.Unlock()
if srv.doneChan == nil {
return fmt.Errorf("already shutdowned")
}
close(srv.doneChan)
srv.doneChan = nil
return nil
}
// readTimeout is a helper func to use system timeout if server did not intend to change it.
func (srv *Server) readTimeout() time.Duration {
if srv.ReadTimeout != 0 {
return srv.ReadTimeout
}
return coapTimeout
}
// readTimeout is a helper func to use system timeout if server did not intend to change it.
func (srv *Server) writeTimeout() time.Duration {
if srv.WriteTimeout != 0 {
return srv.WriteTimeout
}
return coapTimeout
}
// readTimeout is a helper func to use system timeout if server did not intend to change it.
func (srv *Server) heartBeat() time.Duration {
if srv.HeartBeat != 0 {
return srv.HeartBeat
}
return time.Millisecond * 100
}
func (srv *Server) serveDTLSConnection(ctx *shutdownContext, conn *coapNet.Conn) error {
session, err := srv.newSessionDTLSFunc(conn, srv)
if err != nil {
return err
}
c := ClientConn{commander: &ClientCommander{session}}
srv.NotifySessionNewFunc(&c)
sessCtx, cancel := context.WithCancel(context.Background())
defer cancel()
for {
m := make([]byte, ^uint16(0))
n, err := conn.ReadWithContext(ctx, m)
if err != nil {
err := fmt.Errorf("cannot serve DTLS connection %v", err)
srv.closeSessions(err)
return err
}
msg, err := ParseDgramMessage(m[:n])
if err != nil {
continue
}
// We will block poller wait loop when
// all pool workers are busy.
c := ClientConn{commander: &ClientCommander{session}}
srv.spawnWorker(&Request{Client: &c, Msg: msg, Ctx: sessCtx, Sequence: c.Sequence()})
}
}
// serveListener starts a DTLS listener for the server.
func (srv *Server) serveDTLSListener(l Listener) error {
doneChan, err := srv.initDone()
if err != nil {
return err
}
if srv.NotifyStartedFunc != nil {
srv.NotifyStartedFunc()
}
var wg sync.WaitGroup
ctx := newShutdownWithContext(doneChan)
for {
rw, err := l.AcceptWithContext(ctx)
if err != nil {
switch err {
case ErrServerClosed, context.DeadlineExceeded, context.Canceled:
wg.Wait()
return fmt.Errorf("cannot accept DTLS: %v", err)
default:
continue
}
}
if rw != nil {
wg.Add(1)
go func() {
defer wg.Done()
srv.serveDTLSConnection(ctx, coapNet.NewConn(rw, srv.heartBeat()))
}()
}
}
}
func (srv *Server) serveTCPConnection(ctx *shutdownContext, conn *coapNet.Conn) error {
session, err := srv.newSessionTCPFunc(conn, srv)
if err != nil {
return err
}
c := ClientConn{commander: &ClientCommander{session}}
srv.NotifySessionNewFunc(&c)
sessCtx, cancel := context.WithCancel(context.Background())
defer cancel()
for {
mti, err := readTcpMsgInfo(ctx, conn)
if err != nil {
return session.closeWithError(fmt.Errorf("cannot serve TCP connection: %v", err))
}
if srv.MaxMessageSize != 0 &&
uint32(mti.totLen) > srv.MaxMessageSize {
return session.closeWithError(fmt.Errorf("cannot serve TCP connection: %v", ErrMaxMessageSizeLimitExceeded))
}
body := make([]byte, mti.BodyLen())
err = conn.ReadFullWithContext(ctx, body)
if err != nil {
return session.closeWithError(fmt.Errorf("cannot serve TCP connection: %v", err))
}
o, p, err := parseTcpOptionsPayload(mti, body)
if err != nil {
return session.closeWithError(fmt.Errorf("cannot serve TCP connection: %v", err))
}
msg := new(TcpMessage)
msg.fill(mti, o, p)
// We will block poller wait loop when
// all pool workers are busy.
c := ClientConn{commander: &ClientCommander{session}}
srv.spawnWorker(&Request{Client: &c, Msg: msg, Ctx: sessCtx, Sequence: c.Sequence()})
}
}
// serveListener starts a TCP listener for the server.
func (srv *Server) serveTCPListener(l Listener) error {
doneChan, err := srv.initDone()
if err != nil {
return err
}
if srv.NotifyStartedFunc != nil {
srv.NotifyStartedFunc()
}
var wg sync.WaitGroup
ctx := newShutdownWithContext(doneChan)
for {
rw, err := l.AcceptWithContext(ctx)
if err != nil {
switch err {
case ErrServerClosed, context.DeadlineExceeded, context.Canceled:
wg.Wait()
return fmt.Errorf("cannot accept TCP: %v", err)
default:
continue
}
}
if rw != nil {
wg.Add(1)
go func() {
defer wg.Done()
srv.serveTCPConnection(ctx, coapNet.NewConn(rw, srv.heartBeat()))
}()
}
}
}
func (srv *Server) closeSessions(err error) {
srv.sessionUDPMapLock.Lock()
tmp := srv.sessionUDPMap
srv.sessionUDPMap = make(map[string]networkSession)
srv.sessionUDPMapLock.Unlock()
for _, v := range tmp {
v.closeWithError(err)
}
}
func (srv *Server) getOrCreateUDPSession(connUDP *coapNet.ConnUDP, s *coapNet.ConnUDPContext) (networkSession, error) {
srv.sessionUDPMapLock.Lock()
defer srv.sessionUDPMapLock.Unlock()
session := srv.sessionUDPMap[s.Key()]
var err error
if session == nil {
session, err = srv.newSessionUDPFunc(connUDP, srv, s)
if err != nil {
return nil, err
}
c := ClientConn{commander: &ClientCommander{session}}
srv.NotifySessionNewFunc(&c)
srv.sessionUDPMap[s.Key()] = session
}
return session, nil
}
// serveUDP starts a UDP listener for the server.
func (srv *Server) serveUDP(ctx *shutdownContext, connUDP *coapNet.ConnUDP) error {
if srv.NotifyStartedFunc != nil {
srv.NotifyStartedFunc()
}
sessCtx, cancel := context.WithCancel(context.Background())
defer cancel()
for {
m := make([]byte, ^uint16(0))
n, s, err := connUDP.ReadWithContext(ctx, m)
if err != nil {
err := fmt.Errorf("cannot serve UDP connection %v", err)
srv.closeSessions(err)
return err
}
m = m[:n]
session, err := srv.getOrCreateUDPSession(connUDP, s)
if err != nil {
return err
}
msg, err := ParseDgramMessage(m)
if err != nil {
continue
}
c := ClientConn{commander: &ClientCommander{session}}
srv.spawnWorker(&Request{Msg: msg, Client: &c, Ctx: sessCtx, Sequence: c.Sequence()})
}
}
func (srv *Server) serve(r *Request) {
w := responseWriterFromRequest(r)
handlePairMsg(w, r, func(w ResponseWriter, r *Request) {
handleSignalMsg(w, r, func(w ResponseWriter, r *Request) {
handleBySessionTokenHandler(w, r, func(w ResponseWriter, r *Request) {
handleBlockWiseMsg(w, r, srv.serveCOAP)
})
})
})
}
func (srv *Server) serveCOAP(w ResponseWriter, r *Request) {
handler := srv.Handler
if handler == nil || reflect.ValueOf(handler).IsNil() {
handler = DefaultServeMux
}
handler.ServeCOAP(w, r) // Writes back to the client
}