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@ -28,6 +28,13 @@ const (
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TargetNetworkUDP TargetNetwork = 0x02
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TargetNetworkUDP TargetNetwork = 0x02
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)
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)
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var addrParser = protocol.NewAddressParser(
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protocol.AddressFamilyByte(byte(protocol.AddressTypeIPv4), net.AddressFamilyIPv4),
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protocol.AddressFamilyByte(byte(protocol.AddressTypeDomain), net.AddressFamilyDomain),
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protocol.AddressFamilyByte(byte(protocol.AddressTypeIPv6), net.AddressFamilyIPv6),
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protocol.PortThenAddress(),
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)
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/*
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/*
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Frame format
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Frame format
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2 bytes - length
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2 bytes - length
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@ -48,88 +55,55 @@ type FrameMetadata struct {
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SessionStatus SessionStatus
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SessionStatus SessionStatus
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}
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}
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func (f FrameMetadata) AsSupplier() buf.Supplier {
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func (f FrameMetadata) WriteTo(b *buf.Buffer) error {
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return func(b []byte) (int, error) {
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lenBytes := b.Bytes()
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lengthBytes := b
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b.AppendBytes(0x00, 0x00)
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b = serial.Uint16ToBytes(uint16(0), b[:0]) // place holder for length
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len0 := b.Len()
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b = serial.Uint16ToBytes(f.SessionID, b)
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if err := b.AppendSupplier(serial.WriteUint16(f.SessionID)); err != nil {
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b = append(b, byte(f.SessionStatus), byte(f.Option))
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return err
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length := 4
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}
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if f.SessionStatus == SessionStatusNew {
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b.AppendBytes(byte(f.SessionStatus), byte(f.Option))
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switch f.Target.Network {
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case net.Network_TCP:
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if f.SessionStatus == SessionStatusNew {
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b = append(b, byte(TargetNetworkTCP))
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switch f.Target.Network {
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case net.Network_UDP:
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case net.Network_TCP:
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b = append(b, byte(TargetNetworkUDP))
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b.AppendBytes(byte(TargetNetworkTCP))
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}
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case net.Network_UDP:
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length++
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b.AppendBytes(byte(TargetNetworkUDP))
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b = serial.Uint16ToBytes(f.Target.Port.Value(), b)
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length += 2
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addr := f.Target.Address
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switch addr.Family() {
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case net.AddressFamilyIPv4:
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b = append(b, byte(protocol.AddressTypeIPv4))
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b = append(b, addr.IP()...)
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length += 5
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case net.AddressFamilyIPv6:
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b = append(b, byte(protocol.AddressTypeIPv6))
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b = append(b, addr.IP()...)
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length += 17
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case net.AddressFamilyDomain:
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domain := addr.Domain()
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if protocol.IsDomainTooLong(domain) {
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return 0, newError("domain name too long: ", domain)
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}
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nDomain := len(domain)
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b = append(b, byte(protocol.AddressTypeDomain), byte(nDomain))
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b = append(b, domain...)
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length += nDomain + 2
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}
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}
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}
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serial.Uint16ToBytes(uint16(length), lengthBytes[:0])
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if err := addrParser.WriteAddressPort(b, f.Target.Address, f.Target.Port); err != nil {
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return length + 2, nil
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return err
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}
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}
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}
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len1 := b.Len()
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serial.Uint16ToBytes(uint16(len1-len0), lenBytes)
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return nil
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}
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}
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func ReadFrameFrom(b []byte) (*FrameMetadata, error) {
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func ReadFrameFrom(b *buf.Buffer) (*FrameMetadata, error) {
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if len(b) < 4 {
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if b.Len() < 4 {
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return nil, newError("insufficient buffer: ", len(b))
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return nil, newError("insufficient buffer: ", b.Len())
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}
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}
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f := &FrameMetadata{
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f := &FrameMetadata{
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SessionID: serial.BytesToUint16(b[:2]),
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SessionID: serial.BytesToUint16(b.BytesTo(2)),
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SessionStatus: SessionStatus(b[2]),
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SessionStatus: SessionStatus(b.Byte(2)),
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Option: bitmask.Byte(b[3]),
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Option: bitmask.Byte(b.Byte(3)),
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}
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}
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b = b[4:]
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if f.SessionStatus == SessionStatusNew {
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if f.SessionStatus == SessionStatusNew {
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network := TargetNetwork(b[0])
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network := TargetNetwork(b.Byte(4))
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port := net.PortFromBytes(b[1:3])
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b.SliceFrom(5)
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addrType := protocol.AddressType(b[3])
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b = b[4:]
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addr, port, err := addrParser.ReadAddressPort(nil, b)
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if err != nil {
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var addr net.Address
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return nil, newError("failed to parse address and port").Base(err)
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switch addrType {
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case protocol.AddressTypeIPv4:
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addr = net.IPAddress(b[0:4])
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b = b[4:]
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case protocol.AddressTypeIPv6:
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addr = net.IPAddress(b[0:16])
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b = b[16:]
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case protocol.AddressTypeDomain:
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nDomain := int(b[0])
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addr = net.DomainAddress(string(b[1 : 1+nDomain]))
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b = b[nDomain+1:]
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default:
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return nil, newError("unknown address type: ", addrType)
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}
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}
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switch network {
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switch network {
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case TargetNetworkTCP:
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case TargetNetworkTCP:
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f.Target = net.TCPDestination(addr, port)
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f.Target = net.TCPDestination(addr, port)
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