Abstract:
Provided are a method and device for negotiating a traffic path in an LAG, wherein the method includes that an aggregation port acquires indication information, wherein the indication information is used for indicating one or more groups of services or sessions needing to be borne by the aggregation ports, each group of the services or sessions includes one or more services or sessions; the aggregation port determines multiple groups of services or sessions to be borne, and/or services or sessions currently being borne by the aggregation port; an aggregation group portal to which the aggregation port belongs, performs traffic distribution according to services or sessions currently being borne by each aggregation port which belongs to the aggregation group portal. It is solved the problem in the related art that the same service or session cannot be transmitted bi-directionally on the same path, thus implementing the protection on the interconnect interface.
Abstract:
Provided are a method and device for traffic path negotiation in a link aggregation group (LAG). The method includes: an aggregation port acquiring indication information including one or more services or sessions currently being carried by an aggregation port, and determining one or more services or sessions currently being carried by the aggregation port; an aggregation group portal to which the aggregation port belongs distributing traffic according to one or more services or sessions currently being carried by each aggregation port. The technical solution can effectively ensure that the same aggregation link can be selected for a same service on two ends of a LAG, enabling protection of an interconnect interface.
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:
Disclosed are a method and system for information interaction between systems in a same portal in a distributed resilient network interconnection, wherein the method is applied to each system in an portal in a link aggregation group, including: sending a distributed relay control protocol (DRCP) message through an intra-portal interface, wherein at least system information of a present system is carried; after receiving a DRCP message sent by an adjacent system, if it is determined that the present system and the adjacent system can form one portal in the distributed resilient network interconnection, determining an operational Key value of the present system. The system includes: a sending state machine, a receiving state machine, a negotiating state machine, a synchronizing state machine and a periodic sending state machine.
Abstract:
Provided are a service function chain detection path method and device. The method comprises: sealing a sending service function chain path identifier and a returning service function chain path identifier in a message header, and obtaining a service function chain detection message, the sending service function chain path identifier being used for indicating a path of the service function chain detection message, the returning service function chain path identifier being used for indicating a path of a service function chain detection reply message corresponding to the service function chain detection message; sending the service function chain detection message; receiving the service function chain detection reply message, the service function chain detection reply message comprising returning path information, the returning path information being used for indicating a service function chain path of the service function chain detection message during sending.
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 congestion control method, a terminal and a readable storage medium. The congestion control method includes: identifying, in response to that a congestion phenomenon occurs in data transmission of a downstream device, a congestion flow causing the congestion phenomenon; acquiring identification information of the congestion flow, and packaging the identification information in a congestion control notification message; and sending the congestion control notification message to an upstream device that performs a congestion control operation according to the congestion control notification message.
Abstract:
Provided are a method for load balancing of a Service Function Chain (SFC), a Service Function forwarder (SFF), a classification device, a controller and an SFC system. The method includes: an SFF receives a packet, herein an SFC header of the packet carries a Service Function Chain Flow Identifier (SFCFID); and the SFF forwards the packet in a load balancing path according to the SFCFID carried in the SFC header of the packet.
Abstract:
Provided are a method for load balancing of a Service Function Chain (SFC), a Service Function forwarder (SFF), a classification device, a controller and an SFC system. The method includes: an SFF receives a packet, herein an SFC header of the packet carries a Service Function Chain Flow Identifier (SFCFID); and the SFF forwards the packet in a load balancing path according to the SFCFID carried in the SFC header of the packet.
Abstract:
The embodiment of the present document provides a collaboration method in a distributed resilient network interconnected system, including: a link aggregation control protocol (LACP) system receiving system parameters notified by a distributed relay control protocol (DRCP) system, and using the system parameters of the DRCP system as system negotiation parameters of the LACP system. The embodiments of the present document further provide a link aggregation control protocol (LACP) system, wherein the LACP system includes a receiving module and a controlling module, the receiving module is configured to receive system parameters notified by a distributed relay control protocol (DRCP) system; the controlling module is configured to take the system parameters of the DRCP system as system negotiation parameters of the LACP system. The embodiment of the present document achieves a collaboration between the LACP system and the DRCP system