Supporting Multipoint-to-Point Label Switched Paths in Multiprotocol Label Switching Traffic Engineering
Seisho Yasukawa, Adrian Farrel
Abstract
Seisho Yasukawa, Adrian Farrel
Abstract
Traffic engineered Multiprotocol Label Switching (MPLS-TE) uses Resource Reservation Protocol traffic engineering extensions (RSVP-TE) as the signaling protocol to establish Label Switched Paths (LSPs). Although the Resource Reservation Protocol (RSVP) on which RSVP-TE is built supports the convergence of traffic flows toward a common destination, this concept has not been exploited in MPLS-TE which has been limited to point-to-point (P2P) and point-to-multipoint (P2MP) LSPs. This document describes extensions to RSVP-TE procedures and protocol elements to support multipoint-to-point (MP2P) LSPs.
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Traffic engineered Multiprotocol Label Switching (MPLS-TE) uses Resource Reservation Protocol traffic engineering extensions (RSVP-TE) as the signaling protocol to establish Label Switched Paths (LSPs). Although the Resource Reservation Protocol (RSVP) on which RSVP-TE is built supports the convergence of traffic flows toward a common destination, this concept has not been exploited in MPLS-TE which has been limited to point-to-point (P2P) and point-to-multipoint (P2MP) LSPs. This document describes extensions to RSVP-TE procedures and protocol elements to support multipoint-to-point (MP2P) LSPs.
Key concepts: Multiprotocol Label Switching, Label Distribution Protocol, Resource Reservation Protocol, Label switching, Computer network, Computer science, Protocol (science), Reservation