package xnet import ( "errors" "net/netip" "time" "github.com/soypat/lneto/dhcpv4" "github.com/soypat/lneto/tcp" ) const ( maxIter = 1000 maxTimeout = time.Minute maxSleep = maxTimeout / maxIter ) var ( errDeadlineExceed = errors.New("cywnet: deadline exceeded") ) func (s *StackAsync) StackBlocking() StackBlocking { return StackBlocking{ async: s, } } type StackBlocking struct { async *StackAsync } func (s StackBlocking) DoDHCPv4(reqAddr [4]byte, timeout time.Duration) (*DHCPResults, error) { err := s.async.StartDHCPv4Request(reqAddr) if err != nil { return nil, err } sleep := timeout/maxIter + 1 deadline := time.Now().Add(timeout) requested := false for i := 0; i < maxIter; i++ { state := s.async.dhcp.State() requested = requested || state > dhcpv4.StateInit if requested && state == dhcpv4.StateInit { return nil, errors.New("DHCP NACK") } else if state == dhcpv4.StateBound { break // DHCP done succesfully. } else if err = s.checkDeadline(deadline); err != nil { return nil, err } time.Sleep(sleep) } return s.async.ResultDHCP() } func (s StackBlocking) DoNTP(hostAddr netip.Addr, timeout time.Duration) (offset time.Duration, err error) { err = s.async.StartNTP(hostAddr) if err != nil { return -1, err } sleep := timeout/maxIter + 1 deadline := time.Now().Add(timeout) var done bool for i := 0; i < maxIter; i++ { offset, done = s.async.ResultNTPOffset() if done { return offset, nil } else if err = s.checkDeadline(deadline); err != nil { return -1, err } time.Sleep(sleep) } return -1, errDeadlineExceed } func (s StackBlocking) DoResolveHardwareAddress6(addr netip.Addr, timeout time.Duration) (hw [6]byte, err error) { err = s.async.StartResolveHardwareAddress6(addr) if err != nil { return hw, err } sleep := timeout/maxIter + 1 deadline := time.Now().Add(timeout) for i := 0; i < maxIter; i++ { hw, err = s.async.ResultResolveHardwareAddress6(addr) if err == nil { break } else if err = s.checkDeadline(deadline); err != nil { return hw, err } time.Sleep(sleep) err = errDeadlineExceed // Ensure that if iterations done error is returned. } return hw, err } func (s StackBlocking) DoLookupIP(host string, timeout time.Duration) (addrs []netip.Addr, err error) { err = s.async.StartLookupIP(host) if err != nil { return nil, err } sleep := timeout/maxIter + 1 deadline := time.Now().Add(timeout) for i := 0; i < maxIter; i++ { addrs, completed, err := s.async.ResultLookupIP(host) if completed { return addrs, err } else if err = s.checkDeadline(deadline); err != nil { return nil, err } time.Sleep(sleep) } return nil, errDeadlineExceed } var errTCPFailedToConnect = errors.New("tcp failed to connect") func (s StackBlocking) DoDialTCP(localPort uint16, addrp netip.AddrPort, timeout time.Duration) (conn *tcp.Conn, err error) { conn, err = s.async.DialTCP(localPort, addrp) if err != nil { return nil, err } sleep := timeout/maxIter + 1 deadline := time.Now().Add(timeout) for i := 0; i < maxIter; i++ { state := conn.State() if state == tcp.StateEstablished { return conn, nil } else if state == tcp.StateSynSent || state == tcp.StateSynRcvd || conn.InternalHandler().AwaitingSynSend() { if err = s.checkDeadline(deadline); err != nil { return nil, err } time.Sleep(sleep) } else { // Unexpected state, abort and terminate connection. conn.Abort() return nil, errTCPFailedToConnect } } return conn, errDeadlineExceed } func (s StackBlocking) checkDeadline(deadline time.Time) error { if time.Since(deadline) > 0 { return errDeadlineExceed } return nil }