RUCKUS FastIron Layer 3 Routing Configuration Guide, 09.0.10
- 1 Vistance Legal Statements
- Preface Ruckus
- 4 About This Document
- ARP
- 5 Address Resolution Protocol
- 5.1 ARP Parameter Configuration
- 5.1.1 How ARP Works
- 5.1.2 Rate limiting ARP Packets
- 5.1.3 ARP Aging
- 5.1.4 Configuring Global ARP Aging
- 5.1.5 Configuring the ARP Aging on a Specific Interface
- 5.1.6 Changing the Maximum Number of ARP Table Entries
- 5.1.7 Enabling Proxy ARP Globally
- 5.1.8 Enabling Proxy ARP on an Interface
- 5.1.9 Disabling Proxy ARP on an Interface
- 5.1.10 Static ARP
- 5.1.11 Creating Static ARP Entries
- 5.1.12 Changing the Maximum Number of Static ARP Table Entries
- 5.1.13 Enabling Learning Gratuitous ARP
- 5.1.14 Disabling Next Hop or ARP Port Movement Syslog Message Generation
- 5.1.15 ARP Packet Validation
- 5.1.16 Ingress ARP Packet Priority
- 5.2 Displaying the ARP Table
- 5.3 Reverse Address Resolution Protocol Configuration
- 5.4 Dynamic ARP Inspection Overview
- 5.4.1 ARP Poisoning
- 5.4.2 How Dynamic ARP Inspection Works
- 5.4.2.1 ARP and DHCP Snoop Entries
- 5.4.3 Configuration Notes and Feature Limitations for DAI
- 5.4.4 Configuring Dynamic ARP Inspection
- 5.4.4.1 Configuring an Inspection ARP Entry
- 5.4.4.2 Enabling DAI on a VLAN
- 5.4.4.3 Enabling ARP Inspection Trust on a Port
- 5.4.4.4 Disabling Syslog Messages for DAI
- 5.4.5 Multi-VRF Support for DAI
- 5.4.6 Displaying ARP Inspection Status and Ports
- 5.1 ARP Parameter Configuration
- 5 Address Resolution Protocol
- 6 IP Addressing
- 6.1 IP Addressing Overview
- 6.1.1 IP interfaces
- 6.1.2 IP Route Table
- 6.1.3 ACLs and IP Access Policies to Filter IP Traffic
- 6.1.4 IP Packet Flow Through a Layer 3
Device
- 6.1.4.1 IP forwarding cache
- 6.1.4.2 Layer 4 Session Table
- 6.1.5 Encapsulation Type and MTU Packet Parameters
- 6.2 Basic IP Configuration
- 6.3 Assigning an IP address to a loopback interface
- 6.4 Assigning an IPv4 Address to an Ethernet Port
- 6.5 Assigning an IP Address to a Virtual Ethernet Interface
- 6.6 Domain Name System
- 6.6.1 Configuring DNS
- 6.7 ICMP
- 6.8 ICMP Router Discovery Protocol
Configuration
- 6.8.1 Enabling IRDP
- 6.9 Configuring IP Follow on a Virtual Routing Interface
- 6.10 IP Address Replacement
- 6.10.1 Replacing an IP Address
- 6.11 Changing Packet Encapsulation Type and MTU
- 6.12 IPv4 Point-to-Point GRE Tunnels
- 6.12.1 GRE Tunnel Parameters
- 6.12.2 Path MTU Discovery Support
- 6.12.3 Support for IPv4 Multicast Routing Over GRE Tunnels
- 6.12.4 Configuring IP GRE Tunnels
- 6.12.5 Configuring Optional IP GRE Tunnel Parameters
- 6.12.6 Configuring Path MTU Discovery on a GRE Tunnel
- 6.12.7 Enabling IPv4 Multicast Routing Over a GRE Tunnel
- 6.12.8 Assigning a VRF routing instance to a GRE tunnel interface
- 6.12.9 Deleting an IP address from an interface configured as a tunnel source
- 6.12.10 Example Point-to-Point GRE Tunnel Configuration
- 6.12.11 Displaying GRE Tunneling Information
- 6.12.12 Clearing GRE statistics
- 6.13 Bandwidth for IP Interfaces
- 6.14 User-configurable MAC address per IP interface
- 6.15 Modifying and Displaying Layer 3 System Parameter Limits
- 6.16 Changing the Router ID
- 6.17 Configuring IP Forwarding Parameters
- 6.18 Configuring a Default Network Route
- 6.19 IP Load Sharing
- 6.20 Configuring IPv4 Option Type Filters
- 6.21 31-Bit Subnet Masks on Point-to-Point Networks
- 6.22 UDP broadcast and IP helper
- 6.23 Enabling or Disabling Layer 2 Switching
- 6.24 Configuring Delay Time for Notifying VE Down Event
- 6.25 Specifying a Single Source Interface for Specified Packet Types
- 6.26 Displaying IP Configuration Information
- 6.28 Clearing IP routes
- 6.29 Displaying IP Traffic Statistics
- 6.1 IP Addressing Overview
- 7 IPv6 Addressing
- 7.1 IPv6 Addressing Overview
- 7.1.1 IPv6 Address Types
- 7.1.2 IPv6 Stateless Auto-Configuration
- 7.2 Full Layer 3 IPv6 Feature Support
- 7.3 IPv6 CLI Command Support
- 7.4 IPv6 Host Address on a Layer 2 Switch
- 7.5 Configuring the management port for an IPv6 automatic address configuration
- 7.6 Configuring Basic IPv6 Connectivity on a Layer 3 Switch
- 7.7 IPv6 Over IPv4 Tunnels
- 7.8 IPv6 Management
- 7.8.1 Configuring IPv6 Management ACLs
- 7.8.2 Restricting SNMP access to an IPv6 node
- 7.8.3 Specifying an IPv6 SNMP trap receiver
- 7.8.4 Configuring SNMP V3 Over IPv6
- 7.8.5 Secure Shell, SCP, and IPv6
- 7.8.6 IPv6 Telnet
- 7.8.7 IPv6 traceroute
- 7.8.8 IPv6 Web Management Using HTTP and HTTPS
- 7.8.9 Restricting Web Management Access
- 7.8.10 Configuring Name-to-IPv6 Address Resolution Using IPv6 DNS Resolver
- 7.8.11 Defining an IPv6 DNS Entry
- 7.8.12 Pinging an IPv6 address
- 7.8.13 Configuring an IPv6 Syslog Server
- 7.8.14 Viewing IPv6 SNMP server addresses
- 7.8.15 Disabling router advertisement and solicitation messages
- 7.8.16 Disabling IPv6 on a Layer 2 Switch
- 7.9 IPv6 ICMP Feature Configuration
- 7.10 IPv6 Neighbor Discovery Configuration
- 7.10.1 IPv6 Neighbor Discovery Configuration Notes
- 7.10.2 Neighbor Solicitation and Advertisement Messages
- 7.10.3 Router advertisement and solicitation messages
- 7.10.4 Neighbor redirect messages
- 7.10.5 Duplicate Address Detection (DAD)
- 7.10.6 IPv6 router advertisement parameters
- 7.10.7 Prefixes Advertised in IPv6 Router Advertisement Messages
- 7.10.8 Domain Name System Search List
- 7.10.8.1 Configuring DNSSL
- 7.10.9 Recursive DNS server addresses
- 7.10.10 IPv6 address advertisement suppression
- 7.10.11 Flags in IPv6 Router Advertisement Messages
- 7.10.12 Enabling and disabling IPv6 router advertisements
- 7.10.13 IPv6 router advertisement preference support
- 7.10.13.1 Configuring IPv6 RA Preference
- 7.10.14 Configuring the Stale State Timeout for IPv6 Neighbors
- 7.10.15 Configuring the Maximum Number of IPv6 Cache Entries
- 7.10.16 Configuring the Maximum Number of IPv6 Neighbors
- 7.10.17 Reachable time for remote IPv6 nodes
- 7.11 IPv6 Neighbor Discovery Proxy
- 7.11.1 IPv6 ND Proxy
- 7.11.2 Local ND Proxy
- 7.11.3 Configuring IPv6 ND Proxy Globally
- 7.11.4 Configuring Local ND Proxy on an interface
- 7.11.5 Disabling IPv6 ND Proxy
- 7.12 IPv6 Neighbor Discovery Inspection
- 7.13 IPv6 MTU
- 7.14 Configuring IPv6 Extension Header Option Type Filters
- 7.15 127-Bit Subnet Masks on Point-to-Point Networks
- 7.16 Static Neighbor Entries Configuration
- 7.17 Limiting the number of hops an IPv6 packet can traverse
- 7.18 IPv6 source routing security enhancements
- 7.19 TCAM Space Configuration
- 7.19.1 Allocating TCAM Space
- 7.20 Displaying IPv6 Global Information
- 7.21 Displaying the IPv6 Local Router Information
- 7.22 Clearing Global IPv6 Information
- 7.1 IPv6 Addressing Overview
- 8 IPv4 Static Routing
- 8.1 Overview of Static Routing
- 8.2 Configuring a basic IP static route
- 8.3 Adding Metrics to a Static Route
- 8.4 Naming an IP static route
- 8.5 Removing a name or a static route
- 8.6 Configuring a physical interface as next hop
- 8.7 Configuring a virtual interface as next hop
- 8.8 Configuring a tunnel as next hop
- 8.9 Configuring a static route for use with a route map
- 8.10 Configuring a Null Route
- 8.11 Configuring a default static route
- 8.12 Resolving a Static Route Using Other Static Routes
- 8.13 Resolving the Next Hop Through a Protocol
- 8.14 Creating an IP Static Route in a Non-Default VRF
- 8.15 Inter-VRF Route Leaking Using Static Routes
- 8.17 Configuring Load Sharing and Redundancy
- 8.18 Determining maximum static routes
- 8.19 Displaying IPv4 static routes
- 9 IPv6 Static Routing
- 9.1 Overview of Static Routing
- 9.2 Configuring a basic IPv6 static route
- 9.3 Removing an IPv6 Static Route
- 9.4 Configuring an Interface as Next Hop
- 9.5 Configuring a virtual interface as next hop
- 9.6 Configuring a tunnel as next hop
- 9.7 Configuring a VRF as next hop for an IPv6 static route
- 9.8 Adding Metrics to an IPv6 Static Route
- 9.9 Configuring a Null Route
- 9.10 Configuring a Default Static Route
- 9.11 Resolving a Static Route Using Other Static Routes
- 9.12 Resolving the IPv6 static route through a protocol
- 9.13 Configuring Load Sharing and Redundancy
- 9.14 Adding an IPv6 Static Route Tag for Use with Route Maps
- 9.15 IPv6 multicast static routes
- 9.16 Configuring IPv6 Multicast Routes in a Non-Default VRF
- 9.17 Displaying information on IPv6 static routes
- 10 RIP
- 11 RIPng
- 12 OSPFv2
- 12.1 OSPFv2 Overview
- 12.2 Autonomous System
- 12.3 OSPFv2 Components and Roles
- 12.4 Reduction of Equivalent AS External LSAs
- 12.5 Algorithm for AS External LSA Reduction
- 12.6 Maximum limit overload processing
- 12.7 Enabling OSPFv2
- 12.8 Backbone area
- 12.9 Assigning OSPFv2 areas
- 12.10 Area range
- 12.10.1 Assigning an area range
- 12.11 Area Types
- 12.12 Stub area and totally stubby area
- 12.13 Not-So-Stubby Area (NSSA)
- 12.13.1 Configuring an NSSA
- 12.13.2 Configuring a Summary Address for the NSSA
- 12.14 Assigning Interfaces to an Area
- 12.15 Link State Advertisements
- 12.16 Configuring the Maximum Number of LSAs in the LSDB
- 12.17 Checking the LSDB Overflow State
- 12.18 Virtual Links
- 12.18.1 Configuring virtual links
- 12.19 Default Route Origination
- 12.20 External route summarization
- 12.21 SPF timers
- 12.22 Modifying Shortest Path First timers
- 12.23 OSPFv2 administrative distance
- 12.24 OSPFv2 LSA refreshes
- 12.25 Disabling the Opaque LSA Capability
- 12.26 Support for OSPF RFC 2328 Appendix E
- 12.27 OSPFv2 Graceful Restart
- 12.28 OSPFv2 stub router advertisement
- 12.29 OSPFv2 Shortest Path First throttling
- 12.30 IETF RFC and Internet Draft Support
- 12.31 OSPFv2 non-stop routing
- 12.31.1 Limitations of NSR
- 12.31.2 Enabling OSPFv2 NSR
- 12.32 Synchronization of critical OSPFv2 elements
- 12.32.1 Link state database synchronization
- 12.32.2 LSA delayed acknowledging
- 12.32.3 LSA syncing and packing
- 12.32.4 Neighbor device synchronization
- 12.32.5 Synchronization limitations
- 12.32.6 Interface synchronization
- 12.33 Standby Module Operations
- 12.34 OSPFv2 distribute list
- 12.35 OSPFv2 Route Redistribution
- 12.36 Redistributing routes into OSPFv2
- 12.37 Load Sharing
- 12.38 Interface types to which the reference bandwidth does not apply
- 12.39 Changing the Reference Bandwidth for the Cost on OSPFv2 Interfaces
- 12.40 OSPFv2 over VRF
- 12.41 Configuring the OSPFv2 Max-Metric Router LSA
- 12.42 Re-enabling OSPFv2 compatibility with RFC 1583
- 12.43 OSPFv2 Authentication
- 12.43.1 OSPFv2 Keychain Authentication
- 12.43.2 OSPFv2 authentication configuration
- 12.43.2.1 Configuring plain text authentication on an OSPFv2 interface
- 12.43.2.2 Configuring Plain Text Authentication on an OSPFv2 Virtual Link
- 12.43.2.3 Configuring MD5 authentication on an OSPFv2 interface
- 12.43.2.4 Configuring MD5 Authentication on an OSPFv2 Virtual Link
- 12.43.2.5 Configuring HMAC-SHA-1 or HMAC-SHA-256 authentication on an OSPFv2 interface
- 12.43.2.6 Configuring HMAC-SHA-1 or HMAC-SHA-256 on an OSPFv2 Virtual Link
- 12.43.2.7 Configuring keychain authentication on an OSPFv2 interface
- 12.43.2.8 Configuring Keychain Authentication on an OSPFv2 Virtual Link
- 12.43.2.9 Configuring authentication key activation wait time on an OSPFv2 interface
- 12.43.2.10 Configuring Authentication Key Activation Wait Time on an OSPFv2 Virtual Link
- 12.43.2.11 Displaying OSPFv2 Results
- 12.44 Changing Default Settings
- 12.45 Disabling and re-enabling OSPFv2 event logging
- 12.46 Understanding the effects of disabling OSPFv2
- 12.46.1 Disabling OSPFv2
- 13 OSPFv3
- 13.1 OSPFv3 Overview
- 13.2 Configuring the router ID
- 13.3 Enabling OSPFv3
- 13.4 Configuring OSPFv3
- 13.5 OSPFv3 areas
- 13.5.1 Backbone area
- 13.5.2 Area range
- 13.5.3 Area types
- 13.5.4 Assigning OSPFv3 areas
- 13.5.5 Assigning OSPFv3 areas to interfaces
- 13.5.6 Stub area and totally stubby area
- 13.5.7 Configuring a stub area
- 13.5.8 Not-so-stubby area
- 13.5.9 Configuring an NSSA
- 13.5.10 LSA types for OSPFv3
- 13.6 Virtual Links
- 13.7 OSPFv3 route redistribution
- 13.8 Default route origination
- 13.9 Disabling and re-enabling OSPFv3 event logging
- 13.10 Filtering OSPFv3 Routes
- 13.11 SPF timers
- 13.11.1 Modifying SPF timers
- 13.12 OSPFv3 administrative distance
- 13.13 Changing the reference bandwidth for the cost on OSPFv3 interfaces
- 13.14 OSPFv3 LSA refreshes
- 13.15 External route summarization
- 13.16 OSPFv3 over VRF
- 13.17 Setting all OSPFv3 interfaces to the passive state
- 13.18 OSPFv3 Graceful Restart Helper
- 13.19 OSPFv3 non-stop routing
- 13.19.1 Enabling OSPFv3 NSR
- 13.20 Configuring the Maximum Number of LSAs in the LSDB for OSPFv3
- 13.21 Checking the LSDB Overflow State for OSPFv3
- 13.22 OSPFv3 Authentication
- 13.22.1 OSPFv3 Authentication Trailer
- 13.22.1.1 OSPFv3 Keychain Authentication
- 13.22.1.2 OSPFv3 Authentication Trailer
Configuration
- 13.22.1.2.1 Configuring HMAC-SHA-1 or HMAC-SHA-256 Authentication on an OSPFv3 Interface
- 13.22.1.2.2 Configuring HMAC-SHA-1 or HMAC-SHA-256 Authentication on an OSPFv3 Virtual Link
- 13.22.1.2.3 Configuring HMAC-SHA-1 or HMAC-SHA-256 Authentication on an OSPFv3 Area
- 13.22.1.2.4 Configuring keychain authentication on an OSPFv3 interface
- 13.22.1.2.5 Configuring keychain authentication on an OSPFv3 virtual link
- 13.22.1.2.6 Configuring Keychain Authentication on an OSPFv3 Area
- 13.22.1.2.7 Configuring authentication key activation wait time on an OSPFv3 interface
- 13.22.1.2.8 Configuring Authentication Key Activation Wait Time on an OSPFv3 Virtual Link
- 13.22.1.2.9 Configuring RFC 6506 Authentication on an OSPFv3 Interface
- 13.22.1.2.10 Configuring RFC 6506 Authentication on an OSPFv3 Virtual Link
- 13.22.1.2.11 Displaying OSPFv3 Results
- 13.22.2 IPsec for OSPFv3
- 13.22.2.1 IPsec for OSPFv3 configuration
- 13.22.2.2 IPsec for OSPFv3 Considerations
- 13.22.2.3 Configuring IPsec on an OSPFv3 area
- 13.22.2.4 Configuring IPsec on an OSPFv3 interface
- 13.22.2.5 Configuring IPsec on OSPFv3 Virtual Links
- 13.22.2.6 Specifying the key rollover timer
- 13.22.2.7 Clearing IPsec Statistics
- 13.22.1 OSPFv3 Authentication Trailer
- 13.23 Displaying OSPFv3 Results
- 14 BGP4
- 14.1 BGP4 Overview
- 14.2 BGP4 Peering
- 14.3 BGP4 Message Types
- 14.4 BGP4 attributes
- 14.5 BGP4 Best Path Selection Algorithm
- 14.6 Implementation of BGP4
- 14.7 Device ID
- 14.8 BGP global mode
- 14.9 Configuring a local AS number
- 14.10 Neighbor configuration
- 14.10.1 Configuring BGP4 neighbors
- 14.11 Peer Groups
- 14.11.1 Configuring BGP4 peer groups
- 14.12 Advertising the default BGP4 route
- 14.13 Four-byte AS numbers
- 14.14 Cooperative BGP4 route filtering
- 14.15 BGP4 Parameters
- 14.16 Route Redistribution
- 14.16.1 Redistributing routes into BGP4
- 14.17 Advertised Networks
- 14.18 Importing routes into BGP4
- 14.19 Route reflection
- 14.20 Route flap dampening
- 14.21 Aggregating routes advertised to BGP neighbors
- 14.22 Advertising the default BGP4 route
- 14.23 Advertising the default BGP4 route to a specific neighbor
- 14.24 Multipath load sharing
- 14.25 Specifying the Weight Added to Received Routes
- 14.26 Using the IPv4 Default Route as a Valid Next Hop for a BGP4 Route
- 14.27 Adjusting defaults to improve routing performance
- 14.28 Next-hop recursion
- 14.28.1 Enabling next-hop recursion
- 14.29 Route Filtering
- 14.30 BGP Regular Expression Pattern-Matching Characters
- 14.31 Timers
- 14.32 BGP4 outbound route filtering
- 14.33 BGP4 Confederations
- 14.33.1 Configuring BGP4 confederations
- 14.34 BGP community and extended community
- 14.35 BGP4 graceful restart
- 14.36 Generalized TTL Security Mechanism support
- 14.36.1 Configuring GTSM for BGP4
- 14.37 Disabling the BGP AS_PATH Check Function
- 14.38 Matching on a destination network
- 14.39 Matching on a Next-Hop Device
- 14.40 Route Map Continue Statement for BGP4 Routes
- 14.41 BGP Keychain Authentication
- 14.42 Clearing diagnostic buffers
- 14.43 Displaying BGP4 Statistics
- 14.44 Displaying BGP4 Neighbor Statistics
- 15 BGP4+
- 15.1 BGP4+ overview
- 15.2 BGP global mode
- 15.3 IPv6 unicast address family
- 15.4 BGP4+ neighbors
- 15.5 BGP4+ Peer Groups
- 15.6 Importing routes into BGP4+
- 15.7 Advertising the default BGP4+ route
- 15.8 Advertising the default BGP4+ route to a specific neighbor
- 15.9 Using the IPv6 Default Route as a Valid Next Hop for a BGP4+ Route
- 15.10 BGP4+ next hop recursion
- 15.10.1 Enabling next-hop recursion
- 15.11 BGP4+ NLRIs and next hop attributes
- 15.12 BGP4+ route reflection
- 15.13 BGP4+ route aggregation
- 15.14 BGP4+ multipath
- 15.15 Route maps
- 15.16 Redistributing prefixes into BGP4+
- 15.17 Redistributing routes into BGP4+
- 15.18 Specifying the weight added to BGP4+ received routes
- 15.19 BGP4+ outbound route filtering
- 15.20 BGP4+ confederations
- 15.20.1 Configuring BGP4+ confederations
- 15.21 BGP4+ extended community
- 15.21.1 Defining a community ACL
- 15.21.2 Applying a BGP extended community filter
- 15.22 BGP4+ graceful restart
- 15.22.1 Disabling BGP4+ Graceful Restart
- 15.22.2 Re-enabling BGP4+ graceful restart
- 15.23 Generalized TTL Security Mechanism support
- 15.23.1 Configuring GTSM for BGP4+
- 15.24 Disabling the BGP AS_PATH Check Function
- 15.25 Displaying BGP4+ statistics
- 15.26 Displaying BGP4+ Neighbor Statistics
- 16 BFD
- 16.1 Bidirectional Forwarding Detection Overview
- 16.2 BFD Session States
- 16.3 BFD in a Stacking System
- 16.4 BFD High Availability Support
- 16.5 Micro-BFD
- 16.6 BFD Session Configuration Where Next Hop is a VE Interface
- 16.7 BFD Session Configuration Where Next Hop is a LAG Interface
- 16.8 BFD Considerations and Limitations
- 16.9 Holdover Timer
- 16.10 BFD Support for OSPF
- 16.10.1 Configuring BFD for OSPFv2 Globally
- 16.10.2 Enabling BFD on an OSPFv2-Enabled Interface
- 16.10.3 Configuring BFD for OSPFv3 Globally
- 16.10.4 Enabling BFD on an OSPFv3-Enabled Interface
- 16.10.5 Setting a BFD Session to Passive
- 16.10.6 Disabling BFD for OSPF-enabled Interfaces
- 16.10.7 Configuring BFD for OSPFv2 Globally in a Nondefault VRF Instance
- 16.10.8 Configuring BFD for OSPFv3 Globally in a Nondefault VRF Instance
- 16.11 BFD Support for BGP
- 16.11.1 Configuring BFD for BGP
- 16.11.2 Configuring BFD for BGP for a Nondefault VRF Instance
- 16.11.3 Enabling BFD Sessions for a BGP Neighbor
- 16.11.4 Enabling BFD Sessions for a BGP Peer Group
- 16.11.5 Enabling BFD Sessions for a BGP Neighbor for a Nondefault VRF Instance
- 16.11.6 Setting a BFD Session as Passive
- 16.11.7 Disabling a BFD Session for a BGP Neighbor
- 16.12 BFD for Static Routes
- 16.13 BFD Configuration Examples
- 16.13.1 Configuration Example: Single-Hop Static BFD Session for a LAG
- 16.13.2 Configuration Example: Single-Hop Session for One Member Link for a LAG
- 16.13.3 Configuration Example: BFD for OSPF Single-Hop Session for an Ethernet Interface
- 16.13.4 Configuration Example: BFD for OSPF Single-Hop Session for a LAG Interface
- 16.13.5 Configuration Example: BFD for OSPF Single-Hop Session for a VE Interface
- 16.13.6 Configuration Example: BFD for eBGP Single-Hop Session
- 16.13.7 Configuration Example: BFD for iBGP Single-Hop Session
- 16.13.8 Configuration Example: BFD for IP Static Routes Single-Hop Session
- 16.13.9 Configuration Example: BFD for IP Static Routes Multi-hop Session
- 16.14 Displaying BFD Information
- 17 VRRPv2
- 17.1 VRRPv2 Overview
- 17.1.1 VRRP Terminology
- 17.1.2 VRRP Limitations on ICX Devices
- 17.1.3 VRRP hold timer
- 17.1.4 VRRP interval timers
- 17.1.5 VRRP Authentication
- 17.1.6 VRRP master device abdication to backup device
- 17.1.7 ARP and VRRP control packets
- 17.2 Enabling an Owner VRRP Device
- 17.3 Enabling a backup VRRP device
- 17.4 Configuring simple text authentication on VRRP interfaces
- 17.5 Configuring MD5 authentication on VRRP interfaces
- 17.6 Abdicating VRRP master device status
- 17.7 Tracked ports and track priority with VRRP and VRRP-E
- 17.8 VRRP backup preemption
- 17.9 Accept mode for backup VRRP devices
- 17.10 Suppressing RIP route advertisements on VRRP backup devices
- 17.11 VRRP-Ev2 overview
- 17.12 Enabling a VRRP-E device
- 17.13 VRRP-E Load-Balancing Using Short-Path Forwarding
- 17.14 VRRP-E Hitless Upgrade
- 17.15 VRRP-E slow start timer
- 17.16 Configuration Example: ISSU Upgrade Using VRRP-E
- 17.17 Displaying VRRPv2 Information
- 17.18 Clearing VRRPv2 statistics
- 17.1 VRRPv2 Overview
- 18 VRRPv3
- 18.1 VRRPv3 overview
- 18.2 Enabling an IPv6 VRRPv3 owner device
- 18.3 Enabling an IPv6 VRRPv3 backup device
- 18.4 Enabling an IPv4 VRRPv3 owner device
- 18.5 Enabling an IPv4 VRRPv3 backup device
- 18.6 Tracked ports and track priority with VRRP and VRRP-E
- 18.7 Accept mode for backup VRRP devices
- 18.8 Alternate VRRPv2 checksum for VRRPv3 IPv4 sessions
- 18.9 Automatic generation of a virtual link-local address for VRRPv3
- 18.10 Displaying VRRPv3 Statistics
- 18.11 Clearing VRRPv3 statistics
- 18.12 VRRP-Ev3 Overview
- 18.13 Enabling an IPv6 VRRP-Ev3 device
- 18.14 Displaying and Clearing VRRP-Ev3 Statistics
- 19 Multi-VRF
- 19.1 Multi-VRF Overview
- 19.2 Multi-VRF Considerations
- 19.3 VRF-related System-Max Values
- 19.4 Additional Features to Support Multi-VRF
- 19.5 Configuring Multi-VRF
- 19.5.1 Configuring VRF system-max values
- 19.5.2 Creating VLANs as links on a tagged port for security
- 19.5.3 Configuring a VRF Instance
- 19.5.4 Starting a routing process for a VRF
- 19.5.5 Assigning a Layer 3 interface to a VRF
- 19.5.6 Assigning a Loopback Interface to a VRF
- 19.5.7 Verifying a Multi-VRF Configuration
- 19.5.8 Removing a VRF configuration
- 19.5.9 Configuring static ARP for Multi-VRF
- 19.5.10 Configuring Additional ARP Features for Multi-VRF
- 20 Unicast Reverse Path Forwarding