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Dell Networking recommends the
vlt-peer-mac transmit
command only for square VLTs without diagonal links.
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The virtual router redundancy (VRRP) protocol and IPv6 routing is not supported.
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Private VLANs (PVLANs) are not supported.
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When a Virtual Machine (VM) moves from one VLT domain to the another VLT domain, the VM host sends the gratuitous ARP
(GARP) , which in-turn triggers a mac movement from the previous VLT domain to the newer VLT domain.
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After a station move, if the host sends a TTL1 packet destined to its gateway; for example, a previous VLT node, the packet can
be dropped.
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After a station move, if the host first PINGs its gateway; for example, a previous VLT node it results in a 40 to 60% success rate
considering it takes a longer path.
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When you remove and add back a MAC address, L3 frames can be received out-of-order at the L3 cloud. This happens when
proxy gateway routing and sub-optimal routing intersperse with each other.
Enabling the VLT Proxy Gateway
To enable the VLT proxy gateway, the system mac addresses of C and D in the local VLT domain must be installed in C1 and D1 in the
remote VLT domain and vice versa. You can install the mac address in two methods - the
proxy-gateway lldp
method or the
proxy-gateway static
configuration. Proxy-gateway LLDP is a dynamic method of installing the local mac addresses in the
remote VLT domain, which is achieved using a new organizational type, length, value (TLV) in LLDP packets.
You can configure the VLT proxy gateway in a VLT domain using the
proxy-gateway LLDP
command in proxy-gateway
Configuration mode. Specify the port-channel interface of the square VLT link on which LLDP packets are sent using the
peer-
domain-link port-channel
command.
Configuring the
proxy gateway lldp
and the
peer-domain-link
port channel, LLDP sets TLV flags on the interfaces for
receiving and transmitting private TLV packets. After defining these organizational TLV settings, LLDP encodes the local system
mac-addresses as organizational TLVs for transmitting to the peer. If you specify the
no proxy gateway LLDP interface
command, LLDP stops transmitting and receiving proxy gateway TLV packets on the specified interfaces. However, other TLVs are
not affected. From the interfaces on which you enabled the proxy gateway LLDP, LLDP decodes the TLV packets from the remote
LLDP by using the new organizational TLV.
The following requirements must be satisfied for LLDP proxy gateway to function correctly:
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Data centers must be directly connected.
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LLDP has a limited TLV size. As a result, information that is carried by the new TLV is limited to one or two MAC addresses.
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You must have all related systems properly configured and set up.
LLDP Organizational TLV for Proxy Gateway
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LLDP defines an organizationally specific TLV (type 127) with a unique identifier (0x0001E8) and a defined subtype (0x01) for
sending or receiving information.
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LLDP uses the existing infrastructure and adds a new TLV for sending and receiving on the configured ports.
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There are only a few MAC addresses for each unit transmitted. All currently active MAC addresses are carried on the newly
defined TLV.
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Dell Networking devices not configured with VLT proxy gateway process standard TLVs and ignore TLVs configured with VLT
proxy gateway.
The LLDP organizational TLV passes local destination MAC address information to peer VLT domain devices so they can act as a
proxy gateway. To enable proxy gateway LLDP, two configurations are required:
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You must configure the global proxy gateway LLDP to enable the proxy-gateway LLDP TLV.
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You must configure the interface proxy gateway LLDP to enable or disable a proxy-gateway LLDP TLV on specific interfaces.
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The interface is typically a VLT port-channel that connects to a remote VLT domain.
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The new proxy gateway TLV is carried on the physical links under the port channel only.
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VLT Proxy Gateway
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 ...