LOOP AVOIDANCE PROTOCOL
    1.
    发明申请

    公开(公告)号:US20210306252A1

    公开(公告)日:2021-09-30

    申请号:US17184830

    申请日:2021-02-25

    Abstract: Examples disclosed herein relate to a method comprising receiving a control packet originating from a originating network device. The control packet may have a control MAC address identifying the originating network device and the control packet is used for determining a traffic loop in a network including the first network device and the originating network device. The method may include determining, by the first network device, whether the control MAC address of the control packet matches a MAC address of the first network device. Wit is determined that the control MAC address of the control packet matches a MAC address of the first network device, the method may include determining that the match is indicative of the loop and blocking a port of the first network device that the control packet arrived on without blocking any other ports on the first network device. When it is determined that the control MAC address of the control packet does not match the MAC address of the first network device, the method may include transmitting the control packet to a second network device on the network without blocking any port on the first network device that received the control packet.

    ACTIVE TUNNEL SELECTION FOR FACILITATING LOOP-FREE LAYER-2 TRAFFIC FORWARDING IN AN OVERLAY NETWORK

    公开(公告)号:US20240146575A1

    公开(公告)日:2024-05-02

    申请号:US17976691

    申请日:2022-10-28

    CPC classification number: H04L12/4633 H04L12/4641 H04L45/64

    Abstract: A system for facilitating loop-free traffic forwarding is provided. During operation, the system can operate a switch as a tunnel endpoint for a plurality of tunnels with corresponding remote endpoints. The system can determine a tunnel network identifier (TNI) associated with a respective virtual local area network (VLAN) configured at the switch. The system can then enable the TNI for a first tunnel among the plurality of tunnels for carrying traffic of the VLAN. Here, traffic of the VLAN is only forwarded over the first tunnel. Therefore, the system can prevent the rest of the plurality of tunnels from looping the traffic of the VLAN back to the switch. The system can select a second tunnel as a standby tunnel for the TNI from the rest of the plurality of tunnels. If the first tunnel is unavailable, the system can enable the TNI for the second tunnel for traffic forwarding.

    LOOP DETECTION IN VIRTUAL EXTENSIBLE LOCAL AREA NETWORK OVERLAY

    公开(公告)号:US20240022451A1

    公开(公告)日:2024-01-18

    申请号:US17813103

    申请日:2022-07-18

    CPC classification number: H04L12/4641 H04L45/645 H04L12/42 H04L45/04

    Abstract: In an example, a network switch is to receive a loop detect packet from an access netwssork connected to a Data center network (DCN). The DCN includes a VXLAN overlay and the network switch is configured as a VTEP. The network switch compares the VNI of a source VTEP from which the loop detect packet originates with a locally configured VNI. In response to a match, it is determined that the network switch is configured as a peer VTEP. Import RT in the loop detect packet is compared with an export RT of the peer VTEP and the export RT in the loop detect packet is compared with an import RT of the peer VTEP. Based on the comparison, it is determined whether a VXLAN tunnel is configured between the peer and the source VTEPs. In response to the VXLAN tunnel being configured, the switch may determine that a network loop is present.

    Loop detection in virtual extensible local area network overlay

    公开(公告)号:US12132588B2

    公开(公告)日:2024-10-29

    申请号:US17813103

    申请日:2022-07-18

    CPC classification number: H04L12/4641 H04L12/42 H04L45/04 H04L45/645

    Abstract: In an example, a network switch is to receive a loop detect packet from an access netwssork connected to a Data center network (DCN). The DCN includes a VXLAN overlay and the network switch is configured as a VTEP. The network switch compares the VNI of a source VTEP from which the loop detect packet originates with a locally configured VNI. In response to a match, it is determined that the network switch is configured as a peer VTEP. Import RT in the loop detect packet is compared with an export RT of the peer VTEP and the export RT in the loop detect packet is compared with an import RT of the peer VTEP. Based on the comparison, it is determined whether a VXLAN tunnel is configured between the peer and the source VTEPs. In response to the VXLAN tunnel being configured, the switch may determine that a network loop is present.

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