package internet import ( "encoding/binary" "errors" "io" "log/slog" "math" "strconv" "github.com/soypat/lneto" "github.com/soypat/lneto/ethernet" "github.com/soypat/lneto/internal" ) type StackPorts struct { connID uint64 handlers handlers dstPortOff uint16 protocol uint16 // stores last node to demux/encapsulate. } func (ps *StackPorts) ResetUDP(maxNodes int) error { return ps.Reset(uint64(lneto.IPProtoUDP), 2, maxNodes) } func (ps *StackPorts) ResetTCP(maxNodes int) error { return ps.Reset(uint64(lneto.IPProtoTCP), 2, maxNodes) } func (ps *StackPorts) Reset(protocol uint64, dstPortOffset uint16, maxNodes int) error { if protocol > math.MaxUint16 { return errInvalidProto } else if maxNodes <= 0 { return errZeroMaxNodesArg } ps.handlers.reset("StackPorts(proto="+strconv.Itoa(int(protocol))+")", maxNodes) *ps = StackPorts{ connID: ps.connID + 1, handlers: ps.handlers, dstPortOff: dstPortOffset, protocol: uint16(protocol), } return nil } func (ps *StackPorts) LocalPort() uint16 { return 0 } func (ps *StackPorts) Protocol() uint64 { return uint64(ps.protocol) } func (ps *StackPorts) ConnectionID() *uint64 { return &ps.connID } func (ps *StackPorts) Encapsulate(carrierData []byte, offsetToIP, offsetToFrame int) (n int, err error) { if int(ps.dstPortOff)+offsetToFrame+2 > len(carrierData) { return 0, io.ErrShortBuffer } _, n, err = ps.handlers.encapsulateAny(carrierData, offsetToIP, offsetToFrame) return n, err } func (ps *StackPorts) Demux(b []byte, offset int) (err error) { if int(ps.dstPortOff)+offset+2 > len(b) { return io.ErrShortBuffer } port := binary.BigEndian.Uint16(b[int(ps.dstPortOff)+offset:]) _, err = ps.handlers.demuxByPort(b, offset, port) return err } // Register registers a port StackNode on StackPorts. // If dstMAC is set to non-nil, length six buffer then func (ps *StackPorts) Register(h StackNode) error { port := h.LocalPort() proto := h.Protocol() if port <= 0 { return errZeroPort } else if proto != uint64(ps.protocol) { return errInvalidProto } return ps.handlers.registerByPortProto(nodeFromStackNode(h, port, proto, nil)) } // StackPortsMACFiltered is a StackPorts implementation but that avoids calling encapsulate on nodes // with a non-nil MAC address registered via Register method that is set to all zero values. // If the address is set to nil no filtering occurs. MAC Address is set automatically on the ethernet frame by StackPortsMACFiltered when non-nil. type StackPortsMACFiltered struct { sp StackPorts } func (mfsp *StackPortsMACFiltered) Register(h StackNode, addr []byte) error { port := h.LocalPort() proto := h.Protocol() if port <= 0 { return errZeroPort } else if proto != uint64(mfsp.sp.protocol) { return errInvalidProto } else if addr != nil && len(addr) != 6 { return errors.New("invalid MAC") } return mfsp.sp.handlers.registerByPortProto(nodeFromStackNode(h, port, proto, addr)) } func (ps *StackPortsMACFiltered) ResetUDP(maxNodes int) error { return ps.sp.ResetUDP(maxNodes) } func (ps *StackPortsMACFiltered) ResetTCP(maxNodes int) error { return ps.sp.ResetTCP(maxNodes) } func (ps *StackPortsMACFiltered) Reset(protocol uint64, dstPortOffset uint16, maxNodes int) error { return ps.sp.Reset(protocol, dstPortOffset, maxNodes) } func (ps *StackPortsMACFiltered) LocalPort() uint16 { return 0 } func (ps *StackPortsMACFiltered) Protocol() uint64 { return uint64(ps.sp.protocol) } func (ps *StackPortsMACFiltered) ConnectionID() *uint64 { return &ps.sp.connID } func (ps *StackPortsMACFiltered) Demux(b []byte, offset int) (err error) { // No MAC Filtering on ingress. TODO? return ps.sp.Demux(b, offset) } func (ps *StackPortsMACFiltered) Encapsulate(carrierData []byte, offsetToIP, offsetToFrame int) (n int, err error) { if int(ps.sp.dstPortOff)+offsetToFrame+2 > len(carrierData) { return 0, io.ErrShortBuffer } h := &ps.sp.handlers for i := range h.nodes { node := &h.nodes[i] if node.IsInvalid() || (len(node.remoteAddr) > 0 && internal.IsZeroed(node.remoteAddr...)) { continue } n, err = node.encapsulate(carrierData, offsetToIP, offsetToFrame) if h.tryHandleError(node, err) { err = nil // CLOSE error handled gracefully by deleting node. } if n > 0 { if len(node.remoteAddr) == 6 && offsetToIP >= 14 { efrm, _ := ethernet.NewFrame(carrierData[offsetToIP-14:]) *efrm.DestinationHardwareAddr() = [6]byte(node.remoteAddr) } return n, err } else if err != nil { // Make sure not to hang on one handler that keeps returning an error. h.error("handlers:encapsulate", slog.String("func", "encapsulateAny"), slog.String("ctx", h.context), slog.String("err", err.Error())) } } return 0, err // Return last written error. }