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GARP VLAN Registration (GVRP)
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Important Points to Remember
•
GVRP is supported on Layer 2 ports only.
•
All VLAN ports added by GVRP are tagged.
•
GVRP is supported on untagged ports belonging to a default VLAN, and tagged ports.
•
GVRP cannot be enabled on untagged ports belonging to a non-default VLAN
unless
native
VLAN is turned on.
•
GVRP requires end stations with dynamic access NICs.
•
Based on updates from GVRP-enabled devices, GVRP allows the system to dynamically create a
port-based VLAN (unspecified) with a specific VLAN ID and a specific port.
•
On a port-by-port basis, GVRP allows the system to learn about GVRP updates to an existing
port-based VLAN with that VLAN ID and IEEE 802.1Q tagging.
•
GVRP allows the system to send dynamic GVRP updates about your existing port-based VLAN.
•
GVRP updates are not sent to any blocked Spanning Tree Protocol (STP) ports. GVRP operates
only on ports that are in the forwarding state.
•
GVRP operates only on ports that are in the STP forwarding state. If GVRP is enabled, a port that
changes to the STP forwarding state automatically begins to participate in GVRP. A port that
changes to an STP state other than forwarding no longer participates in GVRP.
•
VLANs created dynamically with GVRP exist only as long as a GVRP-enabled device is sending
updates. If the devices no longer send updates, or GVRP is disabled, or the system is rebooted, all
dynamic VLANs are removed.
•
GVRP manages the active topology, not non-topological data such as VLAN protocols. If a local
bridge needs to classify and analyze packets by VLAN protocols, you must manually configure
protocol-based VLANs, and simply rely on GVRP for VLAN updates. But if the local bridge
needs to know only how to reach a given VLAN, then GVRP provides all necessary information.
•
The VLAN topologies that GVRP learns are treated differently from VLANs that are statically
configured. The GVRP dynamic updates are not saved in NVRAM, while static updates are saved
in NVRAM. When GVRP is disabled, the system deletes all VLAN interfaces that were learned
through GVRP and leaves unchanged all VLANs that were manually configured.
bpdu-destination-mac-address
c s
Use the Provider Bridge Group address in Spanning Tree or GVRP PDUs.
Syntax
bpdu-destination-mac-address
[
stp
|
gvrp
]
provider-bridge-group
Parameters
Defaults
The destination MAC address for BPDUs is the Bridge Group Address.
Command Modes
CONFIGURATION
Command
History
stp
Force STP, RSTP, and MSTP to use the Provider Bridge Group address as the
destination MAC address in its BPDUs.
gvrp
Forces GVRP to use the Provider Bridge GVRP Address as the destination
MAC address in its PDUs.
Version 8.2.1.0
Introduced on C-Series and S-Series.
Содержание Force10 TeraScale C Series
Страница 1: ...FTOS Command Line Reference Guide FTOS 8 4 2 7 E Series TeraScale C Series S Series S50 S25 ...
Страница 164: ...164 Control and Monitoring w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 176: ...176 802 1ag w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 188: ...188 802 3ah w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 204: ...204 802 1X w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 294: ...294 Access Control Lists ACL w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 428: ...428 Border Gateway Protocol IPv4 BGPv4 w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 456: ...456 Configuration Rollback w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 472: ...472 Dynamic Host Configuration Protocol DHCP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 484: ...484 Far End Failure Detection FEFD w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 682: ...682 IPv4 Routing w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 732: ...732 IPv6 Basics w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 896: ...896 Layer 2 w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 914: ...914 Link Layer Detection Protocol LLDP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 926: ...926 Multicast Listener Discovery MLD w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 952: ...952 Multiple Spanning Tree Protocol MSTP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 976: ...976 Multicast w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 984: ...984 Neighbor Discovery Protocol NDP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1094: ...1094 Policy based Routing PBR w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1130: ...1130 PIM Sparse Mode PIM SM w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1164: ...1164 Private VLAN PVLAN w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1276: ...1276 Rapid Spanning Tree Protocol RSTP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1342: ...1342 Service Provider Bridging w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1354: ...1354 sFlow w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1428: ...1428 Spanning Tree Protocol STP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1444: ...1444 Time and Network Time Protocol NTP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1464: ...1464 VLAN Stacking w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1494: ...1494 Virtual Router Redundancy Protocol VRRP w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1534: ...1534 C Series Diagnostics and Debugging w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1574: ...1574 E Series Debugging and Diagnostics w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1592: ...1592 S Series Debugging and Diagnostics w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1622: ...1622 Index w w w d e l l c o m s u p p o r t d e l l c o m ...
Страница 1640: ...1640 Command Index w w w d e l l c o m s u p p o r t d e l l c o m ...