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MPLS Label Distribution

MPLS label distribution protocols include:1. LDP (Label Distribution Protocol)2. TDP (CISCO private)3. RSVP Resource Reservation Protocol4. CE-LDP5. MP-BGP (Multi-Protocol extensions for BGP-4)6. Labeled BGP (BGPV4 with label distribution capability)LDP (Label Distribution Protocol) Label Distribution ProtocolLDP operations mainly include the following four stages:(1) discovery stage(2) session establishment and maintenance(3) LSP establishment and ma

Rd and RT (mpls vpn bgp)

VPN instance changes, the changed PE device should take the initiative to send the BGP refresh packet to refresh the VPN route, and use the new RT attribute to filter the route. Different from RD, We can configure multiple RT attributes for a VPN instance, and the RT attributes are released in the extended group attributes of the bgp update message. The format is similar to that of common group attributes. When a route carries multiple extended group attributes and RT attributes at the same tim

Describes the configuration process of MPLS fast re-routing technology

At present, the MPLS fast rerunning technology is widely used. We believe that with the development of the communication industry, the MPLS fast rerunning technology will be more comprehensive and stable, bringing users a good network environment. To meet real-time applications such as video conferencing and television services, LSP protection capabilities similar to traditional SDHAPS must be provided for

Some easy-to-ignore points about MPLS protocol

1. With the advances in hardware technology and the creation of high-speed routers and three-layer switches, MPLS has had little meaning to increase the speed of forwarding. However, MPLS has been widely used in virtual private network, traffic engineering, QoS and so on because of its support of tag stack and connection-oriented characteristics. MPLS Label switc

How to forward data into tunnels in MPLS TE traffic engineering

The previous document has already learned the information dissemination through OSPF, also introduced the CSPF and path's establishment RSVP work principle. What should we do next? You can forward customer data traffic along the tunnel interface in three ways: Static routing routes Policy Routing Policy Routing Automatic routing Autoroute So to be more blunt, this piece of content is the final phase of Te Tunnel, the key to the key. Just imagine, through arduous, established a te tunnel, b

Progress in standardization of BGP/MPLS VPN

In March 1999, the Internet Task Force (IETF) published a RFC2547 by Cisco, describing a way for operators to provide virtual private network (VPN) services to users through an IP backbone network. This method uses an extended BGP (Boundary routing protocol) to distribute VPN routing information through the carrier backbone network, and uses Multiprotocol token switching (MPLS) to forward VPN traffic between the VPN user sites. The main purpose of thi

MPLS Principle Learning

Before learning MPLS, you should know that MPLS has two modes of operation. 1, Frame mode--gt; in the third-level group header (such as IP packet header) before the tag to forward. 2.---gt; in the MPLS network composed of ATM LSR, MPLS is used to exchange Vpi/vci information in the control plane instead of using ATM

HUB-AND-SPOKE environment of mpls vpn

255.255.255.0 area 0Log-adj-changes!Router ospf 300Network 192.168.200.0 255.255.255.0 area 0Log-adj-changesRedistribute ospf 200 subnets --------------------------------------------- Split line ------------------------------------- R6: R6 # SHOW RUNBuilding configuration... Current configuration: 2320 bytes!Version 12.4:Service timestamps debug datetime msecService timestamps log datetime msecNo service password-encryption!Hostname R6!Boot-start-markerBoot-end-marker!!No aaa new-modelMemory-

Discussion on MPLS MTU problem

MPLS default MTU is 1500, do not make any changes, I ping full package does not fragment, why can pass! It adds MPLS information altogether is 1504 bytes, how can transmit? Here is my reply: It has been verified, what you need to do is to study your network topology again, if you have a ready-made environment, put your detailed topology map, as well as the configuration of each device sent to me, I can he

The protection and recovery mechanism of MPLS TE: Experimental version

The principle of the protection of TE is already mentioned. Today's focus is to explain how the Frr-fast-reroute in Te Protection is configured, and how to look at the state. Before introducing the configuration, it is important to note that FRR fast rerouting is a protection mechanism. Imagine if the R2 to R6 is an ordinary IGP network. After the middle link down, what is the situation? It should be the first problem the router sends the LSA through the other interface and then reddening to

Mpls-vpn Configuration Detailed

Cea1:r01 (R01---E0/2---R06) CEB1:R07 (R07---e0/0---R06) temporarily end with this CE end ISP:R06---E1/1---R02---e1/0---R08 CEA2:R03 (R03---E0/2---R08) CEB2:S09 (R08---e0/0---S09) temporarily end with this CE end 1, the core of the SP to run a IGP first, so that the core of the routers within the route to reach 2, the SP's PE end runs between the MP-BGP (VPNV4,MP-BGP neighbor must use the ring back to establish) 3, the SP PE end to create VRF, and CE-connected interface into the VRF 4, in

How MPLS technology supports mobile IPv6

, which is intercepted by the owner proxy and encapsulated through a IPv6-in-IPv6) tunnel to the current transfer address of the mobile node. When a mobile node receives a packet encapsulated by a IPv6-in-IPv6, it sends a binding update message. If the entry LER receives the Binding Update message from the mobile node, it initiates the LSP operation between the entry LER and the exit LER. The IP-in-IP tunneling technology of the original Mobile IP protocol has a high header overhead and heavy lo

Analysis of MPLS, IPSEC, and SSL

MPLS, IPSEC, and SSL analysis MPLS leased line MPLS (Multi-Protocol Label Switching), Multi-Protocol Label Switching. * Multi-Protocol refers to MPLS's support for multiple network layer protocols, such as IP, IPv6, and IPX. It is also compatible with multiple link layer technologies, including ATM, frame relay, Ethernet, and PPP; * label exchange is to attach a

90. MPLS Basic Configuration Experiment

1. MPLS Analysis650) this.width=650; "src=" Http://s5.51cto.com/wyfs02/M01/79/99/wKioL1aV_wbiLgHlAAF3aI0JkGg933.png "title=" m3.png "alt=" Wkiol1av_wbilghlaaf3ai0jkgg933.png "/>650) this.width=650; "src=" Http://s1.51cto.com/wyfs02/M01/79/9A/wKiom1aV_vayHqTTAAGex9RAcs4045.png "title=" m4.png "alt=" Wkiom1av_vayhqttaagex9racs4045.png "/>650) this.width=650; "src=" Http://s4.51cto.com/wyfs02/M02/79/9A/wKiom1aV_zTCy8odAAHJyQY2KQw309.png "style=" float: n

The working principle of MPLS CSPF and related experiments

Key knowledge points in this document: Principle of CSPF Route selection Parameters that have an effect on the CSPF path selection How does the MPLS te display path be established? cspf--constrained SPF (shorest path tree). Is the core of Mpls te path selection, as we already know, the functions of Mpls te are: 1, Information Release 2, path calculation and

Troubleshooting for MPLS LDP

This article is about troubleshooting MPLS ldp. Two devices establish direct-attached LDP neighbors: R2 and R3.r2 's interface Giga 2/0 and R3 interface to establish the LDP's direct-link neighbors. First, review the LDP's neighbor establishment process: LDP utility is the UDP/TCP Port 646来 discovers the neighbor's. So in the future troubleshooting, if the two sides can ping, but can not build a neighbor to check whether the port has been sealed

MPLS: Access to the Internet via Global routing table (GRE)

configuration:1867 bytes!Version 12.4Service Timestamps Debug DateTime msecService Timestamps log datetime msecNo service password-encryption!Hostname R1!Boot-start-markerBoot-end-marker!No AAA New-modelMemory-size Iomem 5!!IP CEFNo IP domain Lookup!IP VRF R1Rd 1:100Route-target Export 1:100Route-target Import 4:100!MPLS Label Range 100 199MPLS Label Protocol LDP!Interface Loopback0IP Address 1.1.1.1 255.255.255.255!Interface Tunnel1IP address 10.0.0

Understanding and difference of RD and RT parameters in VRF in MPLS VPN

Recently, I have been reading mpls vpn, but I have never understood the differences between the two RD and RT parameters in VRF. By searching materials on the Internet for repeated reading and thinking, I finally understood it. The following uses a more understandable metaphor for sharing. For example, if you receive an invitation letter, you need to go to a high-end office building to attend the meeting. Because of the strict security requirements,

MPLS applications on the frame relay network (1)

1 Introduction The structure of MPLSMultiprotocol Label Switching protocol is described in [1. A label exchange router can be used for Frame Relay switching. Frame relay switches the routing algorithms at the network layer, such as OSPF, IS-IS, and forward data based on these routing algorithms. You do not need to select a specific frame relay path.Frame Relay switching applies to the top-level current tags in the first DLCIData Link Connection Identifier Field of the frame relay data Link layer

Implementation of vrp mpls RSVP-TE Tunnel Configuration

R0 creates a tunnel to R1 to enable multicast. It's very simple to scale up and you can see the configuration at first glance. Wvrp has passed. R0 #Sysname quidway#Multicast Routing-enable#Mpls lsr-ID 1.1.1.1MPLSMPLS teMpls rsvp-teMPLS te CSPF#Interface ethernet0/0/0IP address 192.168.1.1 255.255.255.0PIM SMMPLSMPLS teMPLS te max-link-bandwidth 10000MPLS te max-reservable-bandwidth 5000Mpls rsvp-te#Interface null0#Interface loopback0IP address 1.1.1.1

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