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•
To support Q-in-Q over VLT, ICL is implicitly made as
vlan-stack trunk port
and the TPID of the ICL is set as
8100
.
•
Layer 2 Protocol Tunneling is not supported in VLT.
Configuration Notes
When you configure VLT, the following conditions apply.
•
VLT domain
– A VLT domain supports two chassis members, which appear as a single logical device to network access devices connected
to VLT ports through a port channel.
– A VLT domain consists of the two core chassis, the interconnect trunk, backup link, and the LAG members connected to
attached devices.
– Each VLT domain has a unique MAC address that you create or VLT creates automatically.
– ARP tables are synchronized between the VLT peer nodes.
– VLT peer switches operate as separate chassis with independent control and data planes for devices attached on non-VLT
ports.
– One chassis in the VLT domain is assigned a primary role; the other chassis takes the secondary role. The primary and
secondary roles are required for scenarios when connectivity between the chassis is lost. VLT assigns the primary chassis
role according to the lowest MAC address. You can configure the primary role.
– In a VLT domain, the peer switches must run the same Dell Networking OS software version.
– Separately configure each VLT peer switch with the same VLT domain ID and the VLT version. If the system detects
mismatches between VLT peer switches in the VLT domain ID or VLT version, the VLT Interconnect (VLTi) does not activate.
To find the reason for the VLTi being down, use the
show vlt statistics
command to verify that there are mismatch
errors, then use the
show vlt brief
command on each VLT peer to view the VLT version on the peer switch. If the VLT
version is more than one release different from the current version in use, the VLTi does not activate.
– The chassis members in a VLT domain support connection to orphan hosts and switches that are not connected to both
switches in the VLT core.
•
VLT interconnect (VLTi)
– The VLT interconnect must consist of either 10G or 40G ports. A maximum of eight 10G or four 40G ports is supported. A
combination of 10G and 40G ports is not supported.
– A VLT interconnect over 1G ports is
not
supported.
– The port channel must be in Default mode (not Switchport mode) to have VLTi recognize it.
– The system automatically includes the required VLANs in VLTi. You do not need to manually select VLANs.
– VLT peer switches operate as separate chassis with independent control and data planes for devices attached to non-VLT
ports.
– Port-channel link aggregation (LAG) across the ports in the VLT interconnect is required; individual ports are not supported.
Dell Networking strongly recommends configuring a static LAG for VLTi.
– The VLT interconnect synchronizes L2 and L3 control-plane information across the two chassis.
– The VLT interconnect is used for data traffic only when there is a link failure that requires using VLTi in order for data packets
to reach their final destination.
– Unknown, multicast, and broadcast traffic can be flooded across the VLT interconnect.
– MAC addresses for VLANs configured across VLT peer chassis are synchronized over the VLT interconnect on an egress port
such as a VLT LAG. MAC addresses are the same on both VLT peer nodes.
– ARP entries configured across the VLTi are the same on both VLT peer nodes.
– If you shut down the port channel used in the VLT interconnect on a peer switch in a VLT domain in which you did not
configure a backup link, the switch’s role displays in the
show vlt brief
command output as Primary instead of
Standalone.
– When you change the default VLAN ID on a VLT peer switch, the VLT interconnect may flap.
– In a VLT domain, the following software features are supported on VLTi: link layer discovery protocol (LLDP), flow control,
port monitoring, jumbo frames, and data center bridging (DCB).
– When you enable the VLTi link, the link between the VLT peer switches is established if the following configured information
is true on both peer switches:
* the VLT system MAC address matches.
904
Virtual Link Trunking (VLT)
Содержание S4048-ON
Страница 1: ...Dell Configuration Guide for the S4048 ON System 9 9 0 0 ...
Страница 146: ...Figure 14 BFD Three Way Handshake State Changes 146 Bidirectional Forwarding Detection BFD ...
Страница 477: ...Figure 68 Inspecting Configuration of LAG 10 on ALPHA Link Aggregation Control Protocol LACP 477 ...
Страница 480: ...Figure 70 Inspecting a LAG Port on BRAVO Using the show interface Command 480 Link Aggregation Control Protocol LACP ...
Страница 481: ...Figure 71 Inspecting LAG 10 Using the show interfaces port channel Command Link Aggregation Control Protocol LACP 481 ...
Страница 522: ...Figure 87 Configuring Interfaces for MSDP 522 Multicast Source Discovery Protocol MSDP ...
Страница 523: ...Figure 88 Configuring OSPF and BGP for MSDP Multicast Source Discovery Protocol MSDP 523 ...
Страница 524: ...Figure 89 Configuring PIM in Multiple Routing Domains 524 Multicast Source Discovery Protocol MSDP ...
Страница 528: ...Figure 91 MSDP Default Peer Scenario 1 528 Multicast Source Discovery Protocol MSDP ...
Страница 529: ...Figure 92 MSDP Default Peer Scenario 2 Multicast Source Discovery Protocol MSDP 529 ...
Страница 530: ...Figure 93 MSDP Default Peer Scenario 3 530 Multicast Source Discovery Protocol MSDP ...
Страница 633: ...Policy based Routing PBR 633 ...
Страница 777: ...Figure 119 Single and Double Tag TPID Match Service Provider Bridging 777 ...
Страница 778: ...Figure 120 Single and Double Tag First byte TPID Match 778 Service Provider Bridging ...