use of org.onlab.packet.UDP in project aaa by opencord.
the class PortBasedRadiusCommunicator method handleIPv4PacketFromServer.
/**
* Handles IP packets from RADIUS server.
*
* @param context Context for the packet
*/
private void handleIPv4PacketFromServer(PacketContext context) {
// Extract the original Ethernet frame from the packet information
InboundPacket pkt = context.inPacket();
Ethernet ethPkt = pkt.parsed();
if (ethPkt == null) {
return;
}
IPv4 ipv4Packet = (IPv4) ethPkt.getPayload();
if (ipv4Packet.getProtocol() == IPv4.PROTOCOL_UDP) {
UDP udpPacket = (UDP) ipv4Packet.getPayload();
if (udpPacket.getSourcePort() == radiusServerPort) {
// This packet is RADIUS packet from the server.
RADIUS radiusMsg;
try {
radiusMsg = RADIUS.deserializer().deserialize(udpPacket.serialize(), 8, udpPacket.getLength() - 8);
aaaManager.aaaStatisticsManager.handleRoundtripTime(radiusMsg.getIdentifier());
aaaManager.handleRadiusPacket(radiusMsg);
} catch (DeserializationException dex) {
log.error("Cannot deserialize packet", dex);
}
}
}
}
use of org.onlab.packet.UDP in project onos by opennetworkinglab.
the class ReactiveForwarding method installRule.
// Install a rule forwarding the packet to the specified port.
private void installRule(PacketContext context, PortNumber portNumber, ReactiveForwardMetrics macMetrics) {
//
// We don't support (yet) buffer IDs in the Flow Service so
// packet out first.
//
Ethernet inPkt = context.inPacket().parsed();
TrafficSelector.Builder selectorBuilder = DefaultTrafficSelector.builder();
// If PacketOutOnly or ARP packet than forward directly to output port
if (packetOutOnly || inPkt.getEtherType() == Ethernet.TYPE_ARP) {
packetOut(context, portNumber, macMetrics);
return;
}
//
if (matchDstMacOnly) {
selectorBuilder.matchEthDst(inPkt.getDestinationMAC());
} else {
selectorBuilder.matchInPort(context.inPacket().receivedFrom().port()).matchEthSrc(inPkt.getSourceMAC()).matchEthDst(inPkt.getDestinationMAC());
// If configured Match Vlan ID
if (matchVlanId && inPkt.getVlanID() != Ethernet.VLAN_UNTAGGED) {
selectorBuilder.matchVlanId(VlanId.vlanId(inPkt.getVlanID()));
}
//
if (matchIpv4Address && inPkt.getEtherType() == Ethernet.TYPE_IPV4) {
IPv4 ipv4Packet = (IPv4) inPkt.getPayload();
byte ipv4Protocol = ipv4Packet.getProtocol();
Ip4Prefix matchIp4SrcPrefix = Ip4Prefix.valueOf(ipv4Packet.getSourceAddress(), Ip4Prefix.MAX_MASK_LENGTH);
Ip4Prefix matchIp4DstPrefix = Ip4Prefix.valueOf(ipv4Packet.getDestinationAddress(), Ip4Prefix.MAX_MASK_LENGTH);
selectorBuilder.matchEthType(Ethernet.TYPE_IPV4).matchIPSrc(matchIp4SrcPrefix).matchIPDst(matchIp4DstPrefix);
if (matchIpv4Dscp) {
byte dscp = ipv4Packet.getDscp();
byte ecn = ipv4Packet.getEcn();
selectorBuilder.matchIPDscp(dscp).matchIPEcn(ecn);
}
if (matchTcpUdpPorts && ipv4Protocol == IPv4.PROTOCOL_TCP) {
TCP tcpPacket = (TCP) ipv4Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv4Protocol).matchTcpSrc(TpPort.tpPort(tcpPacket.getSourcePort())).matchTcpDst(TpPort.tpPort(tcpPacket.getDestinationPort()));
}
if (matchTcpUdpPorts && ipv4Protocol == IPv4.PROTOCOL_UDP) {
UDP udpPacket = (UDP) ipv4Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv4Protocol).matchUdpSrc(TpPort.tpPort(udpPacket.getSourcePort())).matchUdpDst(TpPort.tpPort(udpPacket.getDestinationPort()));
}
if (matchIcmpFields && ipv4Protocol == IPv4.PROTOCOL_ICMP) {
ICMP icmpPacket = (ICMP) ipv4Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv4Protocol).matchIcmpType(icmpPacket.getIcmpType()).matchIcmpCode(icmpPacket.getIcmpCode());
}
}
//
if (matchIpv6Address && inPkt.getEtherType() == Ethernet.TYPE_IPV6) {
IPv6 ipv6Packet = (IPv6) inPkt.getPayload();
byte ipv6NextHeader = ipv6Packet.getNextHeader();
Ip6Prefix matchIp6SrcPrefix = Ip6Prefix.valueOf(ipv6Packet.getSourceAddress(), Ip6Prefix.MAX_MASK_LENGTH);
Ip6Prefix matchIp6DstPrefix = Ip6Prefix.valueOf(ipv6Packet.getDestinationAddress(), Ip6Prefix.MAX_MASK_LENGTH);
selectorBuilder.matchEthType(Ethernet.TYPE_IPV6).matchIPv6Src(matchIp6SrcPrefix).matchIPv6Dst(matchIp6DstPrefix);
if (matchIpv6FlowLabel) {
selectorBuilder.matchIPv6FlowLabel(ipv6Packet.getFlowLabel());
}
if (matchTcpUdpPorts && ipv6NextHeader == IPv6.PROTOCOL_TCP) {
TCP tcpPacket = (TCP) ipv6Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv6NextHeader).matchTcpSrc(TpPort.tpPort(tcpPacket.getSourcePort())).matchTcpDst(TpPort.tpPort(tcpPacket.getDestinationPort()));
}
if (matchTcpUdpPorts && ipv6NextHeader == IPv6.PROTOCOL_UDP) {
UDP udpPacket = (UDP) ipv6Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv6NextHeader).matchUdpSrc(TpPort.tpPort(udpPacket.getSourcePort())).matchUdpDst(TpPort.tpPort(udpPacket.getDestinationPort()));
}
if (matchIcmpFields && ipv6NextHeader == IPv6.PROTOCOL_ICMP6) {
ICMP6 icmp6Packet = (ICMP6) ipv6Packet.getPayload();
selectorBuilder.matchIPProtocol(ipv6NextHeader).matchIcmpv6Type(icmp6Packet.getIcmpType()).matchIcmpv6Code(icmp6Packet.getIcmpCode());
}
}
}
TrafficTreatment treatment;
if (inheritFlowTreatment) {
treatment = context.treatmentBuilder().setOutput(portNumber).build();
} else {
treatment = DefaultTrafficTreatment.builder().setOutput(portNumber).build();
}
ForwardingObjective forwardingObjective = DefaultForwardingObjective.builder().withSelector(selectorBuilder.build()).withTreatment(treatment).withPriority(flowPriority).withFlag(ForwardingObjective.Flag.VERSATILE).fromApp(appId).makeTemporary(flowTimeout).add();
flowObjectiveService.forward(context.inPacket().receivedFrom().deviceId(), forwardingObjective);
forwardPacket(macMetrics);
//
if (packetOutOfppTable) {
packetOut(context, PortNumber.TABLE, macMetrics);
} else {
packetOut(context, portNumber, macMetrics);
}
}
use of org.onlab.packet.UDP in project onos by opennetworkinglab.
the class Dhcp4HandlerImpl method processLeaseQueryFromServer.
/**
* Build the DHCP offer/ack with proper client port.
*
* @param ethernetPacket the original packet comes from server
* @return new packet which will send to the client
*/
private InternalPacket processLeaseQueryFromServer(Ethernet ethernetPacket) {
// get dhcp header.
Ethernet etherReply = (Ethernet) ethernetPacket.clone();
IPv4 ipv4Packet = (IPv4) etherReply.getPayload();
UDP udpPacket = (UDP) ipv4Packet.getPayload();
DHCP dhcpPayload = (DHCP) udpPacket.getPayload();
// determine the vlanId of the client host - note that this vlan id
// could be different from the vlan in the packet from the server
Interface clientInterface = null;
MacAddress destinationMac = MacAddress.valueOf(dhcpPayload.getClientHardwareAddress());
if (!learnRouteFromLeasequery) {
int giaddr = ipv4Packet.getDestinationAddress();
IpAddress destinationAddress = Ip4Address.valueOf(giaddr);
log.debug("DHCPLEASEQUERYRESP giaddr: {}({})", giaddr, destinationAddress);
Host destinationHost = hostService.getHostsByIp(destinationAddress).stream().findFirst().orElse(null);
if (destinationHost != null) {
destinationMac = destinationHost.mac();
log.trace("DHCPLEASEQUERYRESP destination mac is: {}", destinationMac);
ConnectPoint destinationLocation = destinationHost.location();
log.trace("Lookup for client interface by destination location {}", destinationLocation);
clientInterface = interfaceService.getInterfacesByPort(destinationLocation).stream().filter(iface -> interfaceContainsVlan(iface, VlanId.vlanId(etherReply.getVlanID()))).findFirst().orElse(null);
log.trace("Found Host {} by ip {}", destinationHost, destinationAddress);
log.debug("DHCPLEASEQUERYRESP Client interface: {}", (clientInterface != null ? clientInterface : "not resolved"));
}
} else {
clientInterface = getClientInterface(ethernetPacket, dhcpPayload).orElse(null);
}
if (clientInterface == null) {
log.warn("Cannot find the interface for the DHCP {}", dhcpPayload);
return null;
}
VlanId vlanId;
if (clientInterface.vlanTagged().isEmpty()) {
vlanId = clientInterface.vlan();
} else {
// might be multiple vlan in same interface
vlanId = getVlanIdFromRelayAgentOption(dhcpPayload);
}
if (vlanId == null) {
vlanId = VlanId.NONE;
}
etherReply.setVlanID(vlanId.toShort());
etherReply.setSourceMACAddress(clientInterface.mac());
if (!directlyConnected(dhcpPayload) && learnRouteFromLeasequery) {
// if client is indirectly connected, try use next hop mac address
MacAddress macAddress = MacAddress.valueOf(dhcpPayload.getClientHardwareAddress());
HostId hostId = HostId.hostId(macAddress, vlanId);
DhcpRecord record = dhcpRelayStore.getDhcpRecord(hostId).orElse(null);
if (record != null) {
// if next hop can be found, use mac address of next hop
Optional<MacAddress> nextHop = record.nextHopTemp();
if (!nextHop.isPresent()) {
nextHop = record.nextHop();
}
nextHop.ifPresent(etherReply::setDestinationMACAddress);
} else {
// otherwise, discard the packet
log.warn("Can't find record for host id {}, discard packet", hostId);
return null;
}
} else {
etherReply.setDestinationMACAddress(destinationMac);
}
udpPacket.setSourcePort(UDP.DHCP_SERVER_PORT);
if (directlyConnected(dhcpPayload)) {
udpPacket.setDestinationPort(UDP.DHCP_CLIENT_PORT);
} else {
udpPacket.setDestinationPort(UDP.DHCP_SERVER_PORT);
}
udpPacket.setPayload(dhcpPayload);
ipv4Packet.setPayload(udpPacket);
etherReply.setPayload(ipv4Packet);
udpPacket.resetChecksum();
return InternalPacket.internalPacket(etherReply, clientInterface.connectPoint());
}
use of org.onlab.packet.UDP in project onos by opennetworkinglab.
the class Dhcp4HandlerImpl method processDhcpPacketFromClient.
/**
* Build the DHCP discover/request packet with gateway IP(unicast packet).
*
* @param context the packet context
* @param ethernetPacket the ethernet payload to process
* @return processed packet
*/
private List<InternalPacket> processDhcpPacketFromClient(PacketContext context, Ethernet ethernetPacket, Set<Interface> clientInterfaces) {
ConnectPoint receivedFrom = context.inPacket().receivedFrom();
DeviceId receivedFromDevice = receivedFrom.deviceId();
Ip4Address relayAgentIp = null;
relayAgentIp = Dhcp4HandlerUtil.getRelayAgentIPv4Address(clientInterfaces);
MacAddress relayAgentMac = clientInterfaces.iterator().next().mac();
if (relayAgentIp == null || relayAgentMac == null) {
log.warn("Missing DHCP relay agent interface Ipv4 addr config for " + "packet from client on port: {}. Aborting packet processing", clientInterfaces.iterator().next().connectPoint());
return Lists.newArrayList();
}
log.debug("Multi DHCP V4 processDhcpPacketFromClient on port {}", clientInterfaces.iterator().next().connectPoint());
// get dhcp header.
Ethernet etherReply = (Ethernet) ethernetPacket.clone();
IPv4 ipv4Packet = (IPv4) etherReply.getPayload();
UDP udpPacket = (UDP) ipv4Packet.getPayload();
DHCP dhcpPacket = (DHCP) udpPacket.getPayload();
Ip4Address clientInterfaceIp = interfaceService.getInterfacesByPort(context.inPacket().receivedFrom()).stream().map(Interface::ipAddressesList).flatMap(Collection::stream).map(InterfaceIpAddress::ipAddress).filter(IpAddress::isIp4).map(IpAddress::getIp4Address).findFirst().orElse(null);
if (clientInterfaceIp == null) {
log.warn("Can't find interface IP for client interface for port {}", context.inPacket().receivedFrom());
return Lists.newArrayList();
}
boolean isDirectlyConnected = directlyConnected(dhcpPacket);
boolean directConnFlag = directlyConnected(dhcpPacket);
// Multi DHCP Start
ConnectPoint clientConnectionPoint = context.inPacket().receivedFrom();
VlanId vlanIdInUse = VlanId.vlanId(ethernetPacket.getVlanID());
Interface clientInterface = interfaceService.getInterfacesByPort(clientConnectionPoint).stream().filter(iface -> Dhcp4HandlerUtil.interfaceContainsVlan(iface, vlanIdInUse)).findFirst().orElse(null);
List<InternalPacket> internalPackets = new ArrayList<>();
List<DhcpServerInfo> serverInfoList = findValidServerInfo(directConnFlag);
List<DhcpServerInfo> copyServerInfoList = new ArrayList<DhcpServerInfo>(serverInfoList);
boolean serverFound = false;
for (DhcpServerInfo serverInfo : copyServerInfoList) {
etherReply = (Ethernet) ethernetPacket.clone();
ipv4Packet = (IPv4) etherReply.getPayload();
udpPacket = (UDP) ipv4Packet.getPayload();
dhcpPacket = (DHCP) udpPacket.getPayload();
if (!checkDhcpServerConnPt(directConnFlag, serverInfo)) {
log.warn("Can't get server connect point, ignore");
continue;
}
DhcpServerInfo newServerInfo = getHostInfoForServerInfo(serverInfo, serverInfoList);
if (newServerInfo == null) {
log.debug("Can't get server interface with host info resolved, ignore serverInfo {} serverInfoList {}", serverInfo, serverInfoList);
continue;
}
Interface serverInterface = getServerInterface(newServerInfo);
if (serverInterface == null) {
log.debug("Can't get server interface, ignore for serverInfo {}, serverInfoList {}", serverInfo, serverInfoList);
continue;
}
Ip4Address ipFacingServer = getFirstIpFromInterface(serverInterface);
MacAddress macFacingServer = serverInterface.mac();
log.debug("Interfacing server {} Mac : {} ", ipFacingServer, macFacingServer);
if (ipFacingServer == null || macFacingServer == null) {
log.debug("No IP address for server Interface {}", serverInterface);
continue;
}
serverFound = true;
log.debug("Server Info Found {}", serverInfo.getDhcpConnectMac());
etherReply.setSourceMACAddress(macFacingServer);
// set default info and replace with indirect if available later on.
if (newServerInfo.getDhcpConnectMac().isPresent()) {
etherReply.setDestinationMACAddress(newServerInfo.getDhcpConnectMac().get());
}
if (newServerInfo.getDhcpConnectVlan().isPresent()) {
etherReply.setVlanID(newServerInfo.getDhcpConnectVlan().get().toShort());
}
ipv4Packet.setSourceAddress(ipFacingServer.toInt());
ipv4Packet.setDestinationAddress(newServerInfo.getDhcpServerIp4().get().toInt());
log.debug("Directly connected {}", isDirectlyConnected);
log.debug("DHCP server IP: {}", newServerInfo.getDhcpServerIp4().get());
if (isDirectlyConnected) {
log.debug("Default DHCP server IP: {}", newServerInfo.getDhcpServerIp4().get());
if (newServerInfo.getDhcpConnectMac().isPresent()) {
etherReply.setDestinationMACAddress(newServerInfo.getDhcpConnectMac().get());
}
if (newServerInfo.getDhcpConnectVlan().isPresent()) {
etherReply.setVlanID(newServerInfo.getDhcpConnectVlan().get().toShort());
}
ipv4Packet.setDestinationAddress(newServerInfo.getDhcpServerIp4().get().toInt());
ConnectPoint inPort = context.inPacket().receivedFrom();
VlanId vlanId = VlanId.vlanId(ethernetPacket.getVlanID());
// add connected in port and vlan
CircuitId cid = new CircuitId(inPort.toString(), vlanId);
byte[] circuitId = cid.serialize();
DhcpOption circuitIdSubOpt = new DhcpOption();
circuitIdSubOpt.setCode(CIRCUIT_ID.getValue()).setLength((byte) circuitId.length).setData(circuitId);
DhcpRelayAgentOption newRelayAgentOpt = new DhcpRelayAgentOption();
newRelayAgentOpt.setCode(OptionCode_CircuitID.getValue());
newRelayAgentOpt.addSubOption(circuitIdSubOpt);
// Removes END option first
List<DhcpOption> options = dhcpPacket.getOptions().stream().filter(opt -> opt.getCode() != OptionCode_END.getValue()).collect(Collectors.toList());
// push relay agent option
options.add(newRelayAgentOpt);
// make sure option 255(End) is the last option
DhcpOption endOption = new DhcpOption();
endOption.setCode(OptionCode_END.getValue());
options.add(endOption);
dhcpPacket.setOptions(options);
relayAgentIp = serverInfo.getRelayAgentIp4(receivedFromDevice).orElse(null);
// Sets relay agent IP
int effectiveRelayAgentIp = relayAgentIp != null ? relayAgentIp.toInt() : clientInterfaceIp.toInt();
dhcpPacket.setGatewayIPAddress(effectiveRelayAgentIp);
log.debug("In Default, Relay Agent IP {}", effectiveRelayAgentIp);
} else {
if (!newServerInfo.getDhcpServerIp4().isPresent()) {
// do nothing
} else if (!newServerInfo.getDhcpConnectMac().isPresent()) {
continue;
} else {
relayAgentIp = newServerInfo.getRelayAgentIp4(receivedFromDevice).orElse(null);
// Sets relay agent IP
int effectiveRelayAgentIp = relayAgentIp != null ? relayAgentIp.toInt() : clientInterfaceIp.toInt();
Ip4Address effectiveRealRealyAgentIP = relayAgentIp != null ? relayAgentIp : clientInterfaceIp;
dhcpPacket.setGatewayIPAddress(effectiveRelayAgentIp);
ipv4Packet.setSourceAddress(effectiveRealRealyAgentIP.toInt());
log.debug("Source IP address set as relay agent IP with value: {}", effectiveRealRealyAgentIP);
}
}
// Remove broadcast flag
dhcpPacket.setFlags((short) 0);
udpPacket.setPayload(dhcpPacket);
// As a DHCP relay, the source port should be server port( instead
// of client port.
udpPacket.setSourcePort(UDP.DHCP_SERVER_PORT);
udpPacket.setDestinationPort(UDP.DHCP_SERVER_PORT);
ipv4Packet.setPayload(udpPacket);
ipv4Packet.setTtl((byte) 64);
etherReply.setPayload(ipv4Packet);
InternalPacket internalPacket = InternalPacket.internalPacket(etherReply, serverInfo.getDhcpServerConnectPoint().get());
internalPackets.add(internalPacket);
}
if (!serverFound) {
log.warn("ProcessDhcp4PacketFromClient No Server Found");
}
return internalPackets;
}
use of org.onlab.packet.UDP in project onos by opennetworkinglab.
the class Dhcp4HandlerImpl method removeRelayAgentOption.
/**
* Removes DHCP relay agent information option (option 82) from DHCP payload.
* Also reset giaddr to 0
*
* @param ethPacket the Ethernet packet to be processed
* @return Ethernet packet processed
*/
private Ethernet removeRelayAgentOption(Ethernet ethPacket) {
Ethernet ethernet = (Ethernet) ethPacket.duplicate();
IPv4 ipv4 = (IPv4) ethernet.getPayload();
UDP udp = (UDP) ipv4.getPayload();
DHCP dhcpPayload = (DHCP) udp.getPayload();
// removes relay agent information option
List<DhcpOption> options = dhcpPayload.getOptions();
options = options.stream().filter(option -> option.getCode() != OptionCode_CircuitID.getValue()).collect(Collectors.toList());
dhcpPayload.setOptions(options);
dhcpPayload.setGatewayIPAddress(0);
udp.setPayload(dhcpPayload);
ipv4.setPayload(udp);
ethernet.setPayload(ipv4);
return ethernet;
}
Aggregations