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12: 0 up MPLS VC labels: local 16, remote 16 Group ID: local 0, remote 0 MTU: local n/a, remote n/a Remote interface description: Sequencing: receive disabled, send disabled VC statistics: packet totals: receive 9693985, send 777914411 byte totals: receive 581639100, send 3725191700 packet drops: receive 0, send 0 MPLS Intro and Services Update © 2004, Cisco Systems, Inc. When many routes exist on the network, the Incoming Label Map (ILM) maintains these entries, requiring high router capacity. Each route in a VRF is assigned one label.
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10, VC ID: 200, VC status: up Preferred path: not configured Default path: active Tunnel label: imp-null, next hop point 2 point Output interface: Tu 200, imposed label stack Create time: 23: 16: 48, last status change time: 16: 53: 49 Signaling protocol: LDP, peer 192. A PE device distributes MPLS labels in either of the following ways: One label per route. Upon receipt of the message, any NE can obtain information about the.
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Explain the Interior Gateway Protocol (IGP) extensions used to build the. In an IGP area, a network element (NE) sends extended IGP messages to flood its own node SID and adjacency SID. Junos MPLS Fundamentals V-16.a Student Guide Worldwide Education Services 1133. Describe the Constrained Shortest Path First (. Segment routing involves the following concepts: Segment routing domain: is a set of SR nodes. The person giving the course said that because of how the PEs interact with the P LSRs that is isnt necessary to run a routing protocol in the core on the Ps and that savings in resource is a reason to go. 10 200 UP Local interface: AT 2/0/0 up, line protocol up, ATM VPC CELL 0 Destination address: 192. Explain the Interior Gateway Protocol (IGP) extensions used to build the Traffic Engineering Database (TED). I took an MPLS course online and it pointed something out I really didnt get, or at least need clarification on. M-PE# show mpls l 2 vc Local intf Local circuit -AT 4/0 ATM VPC CELL 0 Dest address - VC ID Status - 192.