Abstract:
The disclosure discloses a method and device for information processing. In the method, information, which is notified by a Network Virtualization Edge (NVE), about a terminal connected to the NVE and information, which is notified by the NVE, about a connection between the NVE and the terminal is received; and according to the information about the terminal and the information about the connection, a corresponding operation is executed.
Abstract:
The disclosure discloses a method and device for processing a Service Function Chaining (SFC). The method includes that: the SFC receives a message sent from forwarding equipment; the SFC generates a forwarding table corresponding to the message; and under a condition that a preset state of a forwarding table sending switch is on, the SFC sends the forwarding table to the forwarding equipment to make the forwarding equipment forward the message according to the forwarding table when receiving the message, wherein the forwarding table sending switch is used for indicating the SFC whether to send the forwarding table to the forwarding equipment or not. By the disclosure, an effect of increasing a success rate of data forwarding of the SFC is achieved.
Abstract:
A method and apparatus for reporting a feature of an OpenFlow switch are provided. The method includes: when the OpenFlow switch learns that an OpenFlow controller needs to query for port information, reporting port group identifiers of port groups, to which each port of the OpenFlow switch or each port to be queried by the OpenFlow controller belongs, to the OpenFlow controller, herein the port groups are obtained by grouping ports with different features in the OpenFlow switch based on one or more feature types, and each of the port groups has a port group identifier.
Abstract:
A method, device and system for message forwarding are provided. The method may include the following acts. A second device in a second domain receives a first message from a first domain. The second device allocates, for the first message, a second Service Function Path Identifier (SFPID) corresponding to a Service Function Chain (SFC) in the second domain, and obtains a second message. The second device sends the second message to one or more other devices, except the second device, in the second domain.
Abstract:
The present disclosure discloses a message transmission method, including: carrying a routing label and segment list information in a message, and transmitting the routing label and the segment list information along with the message in a message transmission process; the routing label being used for indicating that the message carries the segment list information, and the segment list information being used for representing a transmission path of the message. The present disclosure further discloses four nodes, two path management servers and a storage medium at the same time.
Abstract:
Provided are a method and device for processing a data message. The method may include that: an Internet Protocol version 6 (IPv6) transition strategy used for executing an IPv6 transition technology is received from a Service function chain (SFC) controller; and a received data message is processed according to the received IPv6 transition strategy. By the technical solution, the problems of incapability of a network system in effective running during fusion with an IPv6 transition technology and incapability in effective implementation of unified deployment of the IPv6 transition technology in the related technology are solved, and the effects of effectively reducing performance pressure on an existing network and greatly alleviating channel congestion between equipment and equipment are further achieved.
Abstract:
The present disclosure discloses a Virtual Private Network (VPN) implementation processing method and device for an edge device. The method includes that: a VPN application request is acquired, wherein the VPN application request carries attribute configuration information about a VPN; VPN routing information is received from each edge device in the VPN; and VPN routing control information is sent to the edge devices, wherein the VPN routing control information is routing information obtained by performing centralized calculation and processing on the attribute configuration information and the VPN routing information. Adopting the above solution provided in the present disclosure solves the technical problems in the prior art that there are more complex configuration and table item contents in an automatic control solution for the VPN, etc., thereby being able to automatically control simpler configuration issuing, more intensive table item management and table item issuing under a uniform control platform, so that the configuration and table item capacity of the existing device are reduced.
Abstract:
Provided in embodiments of the present disclosure are a packet forwarding method, device and apparatus, and a storage medium. The method includes: receiving a bit indexed explicit replication (BIER) packet sent by a source apparatus; and forwarding the BIER packet to a destination apparatus according to a set identifier (SI) carried by a packet header of the BIER packet, wherein the set identifier (SI) indicates a cluster in which the destination apparatus resides.
Abstract:
Disclosed are a method and apparatus for processing address information, wherein the method includes: a first node that supports a segment routing (SR) and resource reservation protocol (RSVP) issuing address information of SR nodes to a RSVP domain; and the first node announcing address information of RSVP nodes to a segment routing management server (SRMS) in a SR domain.
Abstract:
Provided are a method and device for implementing QoS in an OpenFlow network. The method includes that: for a packet entering an OpenFlow switch, when a flow table is successfully matched, an instruction which is used for calling a scheduler and adding the packet into a specified queue in the scheduler is executed; and under the triggering of the instruction, queue scheduling is managed by using the scheduler. By using the technical means provided by the disclosure, the technical problem in related art that the OpenFlow switch cannot implement Hierarchical QoS (HQoS) is solved, so that the OpenFlow switch may implement both single-layer QoS and HQoS.