Design Reference
Table Of Contents
- Contents
- Chapter 1: Introduction
- Chapter 2: New in this release
- Chapter 3: Network design fundamentals
- Chapter 4: Hardware fundamentals and guidelines
- Chapter 5: Optical routing design
- Chapter 6: Platform redundancy
- Chapter 7: Link redundancy
- Chapter 8: Layer 2 loop prevention
- Chapter 9: Layer 2 switch clustering and SMLT
- Chapter 10: Layer 3 switch clustering and RSMLT
- Chapter 11: Layer 3 switch clustering and multicast SMLT
- Chapter 12: Spanning tree
- Chapter 13: Layer 3 network design
- Chapter 14: SPBM design guidelines
- Chapter 15: IP multicast network design
- Multicast and VRF-Lite
- Multicast and MultiLink Trunking considerations
- Multicast scalability design rules
- IP multicast address range restrictions
- Multicast MAC address mapping considerations
- Dynamic multicast configuration changes
- IGMPv3 backward compatibility
- IGMP Layer 2 Querier
- TTL in IP multicast packets
- Multicast MAC filtering
- Guidelines for multicast access policies
- Split-subnet and multicast
- Protocol Independent Multicast-Sparse Mode guidelines
- Protocol Independent Multicast-Source Specific Multicast guidelines
- Multicast for multimedia
- Chapter 16: System and network stability and security
- Chapter 17: QoS design guidelines
- Chapter 18: Layer 1, 2, and 3 design examples
- Glossary
many IPv6 prefixes, one VLAN (VLAN 1, IP prefix A) spans all wiring closets. RSMLT provides the
loop-free topology. The aggregation layer switches are configured with routing enabled and provide
active-active default gateway functionality through RSMLT.
Figure 16: IPv6 RSMLT topology
In VLAN 3 of the preceding figure, routers R1 and R2 provide RSMLT-enabled IPv6 service to hosts
H1 and H2. Router R1 is the default IPv6 router for H1 and R2 is the default router for H2. R1 uses
the following configuration:
• link-local address of fe80::1
• global unicast address 2003::1
Routed SMLT
June 2015 Network Design Reference for Avaya VSP 4000 Series 59
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