Abstract:
An I/O board of a VXLAN switch receives a multicast data packet from a VLAN, and sends the multicast data packet to the fabric board of the VXLAN switch when at least one multicast group member port corresponding to the multicast data packet is a first virtual port. The fabric board determines that layer 3 multicast forwarding is to be performed by the fabric board. When a multicast group member port corresponding to the multicast data packet is a VXLAN tunnel port, the fabric board modifies a source MAC address of the multicast data packet, and sends the modified multicast data packet to an I/O board corresponding to the multicast group member port on the VXLAN switch. The I/O board corresponding to the multicast group member port adds a VXLAN encapsulation to the multicast data packet and forwards the multicast data packet having the VXLAN encapsulation to a VXLAN.
Abstract:
A method for transmitting a packet is disclosed. An intermediate device in a network may acquire, after receiving a service packet of a target service from a server in the network, a guaranteed bandwidth of the target service corresponding to service information of the target service according to the service information carried in the service packet. Then the intermediate device may transmit the service packet of the target service according to the guaranteed bandwidth.
Abstract:
In an example, a network device may receive a L3VPN packet of which an egress label edge router (LER) is the network device, and acquire an adjacency index of an adjacency entry in an adjacency table according to the destination IP address of the inner IP datagram from the L3VPN packet. The network device may acquire a PW extended index of a PW extended entry in a PW extended table and a private network layer-2 header for the inner IP datagram from an adjacency entry having the adjacency index. By using the private network layer-2 header and a public network label, a private network label and a public network layer-2 header in a PW extended entry having the PW extended index, the network device may encapsulate the inner IP datagram into a L2VPN packet and forward the L2VPN packet through a physical egress interface in the PW extended entry.
Abstract:
An Access Point (AP) connection device establishes a virtual Inter-Process Communication (IPC) connection with each of a plurality of APs. The AP connection device establishes a Controlling and Provisioning of Wireless Access Points (CAPWAP) tunnel connection with a wireless Access Controller (AC).
Abstract:
A remote application server obtains an authorized application message of a user sent by an application authority management server; creates a list of authorized applications for the user according to the authorized application message of the user; determines whether the user has authority to access one or more applications being accessed according to the list of authorized applications of the user; and controls access of the user to the applications on the remote application server according to the result of the determination.
Abstract:
At least two Setup interfaces are stored in the non-volatile storage. An identifier of the Setup interface currently in use may be acquired when entering the DXE phase. The interface data of the Setup interface having the identifier may be loaded. The interface data includes the interface description data and the interface parsing data. The interface description data may be parsed by using the interface parsing data having the identifier. Then upon satisfying a given requirement, the Setup interface is displayed according to the result of the parsing.
Abstract:
This application provides a method for deciding on handling a failure of a stacking system, where the method includes: collecting values of a decision parameter for respective groups after the stacking system is divided; and applying a preset reserve strategy according to the values of the decision parameter for the respective groups to decide on one of the groups to be reserved.
Abstract:
A method for discovering a PMTU, applicable to a destination node of a path, includes: receiving fragment packets from a source node of the path; determining a detecting range based on a maximum length and a minimum fragment unit of the fragment packets; selecting a detecting value within the detecting range in accordance with a predetermined strategy, requesting the source node to respond with a response packet of a length equal to the detecting value, and determining a PMTU of the path based on whether the response packet from the source node is fragmented.
Abstract:
According to one example a VXLAN may be associated with a tunnel as follows. A first VTEP may receive a first notification message sent from a second VTEP via a first tunnel, wherein the first notification message may include a first VXLAN set indicating a VXLAN assigned to the second VTEP and capable of running via the first tunnel; the first VTEP may search for a first VXLAN included in both the first VXLAN set and a second VXLAN set, wherein the second VXLAN set may include a VXLAN assigned to the first VTEP and capable of running via the first tunnel; and in response to a determination that the first VXLAN is not associated with the first tunnel, the first VTEP may associates the first VXLAN with the first tunnel when the first VXLAN is found.
Abstract:
A wireless access device may be provided. The wireless access device may include: a control apparatus and at least one remote apparatus. The control apparatus may include: a CPU and a convergence root node. The remote apparatus may include: an RF module and an antenna. The control apparatus and remote apparatus are located at separate circuit boards and the RF module may couple to the convergence root node.