fsLaPortChannelDLAGDistributingPortIndex
SUPERMICRO-LA-MIB ·
.1.3.6.1.4.1.10876.101.1.63.2.1.1.12
Object
This object is used to configure the distributing
port on which D-LAG periodic-sync and
D-LAG event-update messages will be sent/received
for D-LAG internal communication between the D-LAG
nodes.
Ports which are already part of Port channel should not be
configured as Distributing port.
D-LAG node should immediately detect and handle distributing port
failure with high priority and allow load to be carried on the all
the configured ports.
Context
- MIB
- SUPERMICRO-LA-MIB
- OID
.1.3.6.1.4.1.10876.101.1.63.2.1.1.12- Type
- column
- Access
- readwrite
- Status
- current
- Parent
- fsLaPortChannelEntry
Net-SNMP examples
How SNMP and these commands workWalk the column to discover its indexed instances, or supply every index to read one instance.
Walk the column
/usr/bin/snmpbulkwalk -v2c -c '<community>' -Pud -Ir -OQUs -m 'SUPERMICRO-LA-MIB' -M '/opt/observium/mibs/supermicro:/opt/observium/mibs/rfc:/opt/observium/mibs/net-snmp' 'udp:<hostname>:161' 'SUPERMICRO-LA-MIB::fsLaPortChannelDLAGDistributingPortIndex'
More examples
Read one indexed instance
/usr/bin/snmpget -v2c -c '<community>' -Pud -Ir -OQUv -m 'SUPERMICRO-LA-MIB' -M '/opt/observium/mibs/supermicro:/opt/observium/mibs/rfc:/opt/observium/mibs/net-snmp' 'udp:<hostname>:161' 'SUPERMICRO-LA-MIB::fsLaPortChannelDLAGDistributingPortIndex.<fsLaPortChannelIfIndex>'
Translate to a numeric OID
/usr/bin/snmptranslate -Pud -Ir -On -m 'SUPERMICRO-LA-MIB' -M '/opt/observium/mibs/supermicro:/opt/observium/mibs/rfc:/opt/observium/mibs/net-snmp' 'SUPERMICRO-LA-MIB::fsLaPortChannelDLAGDistributingPortIndex'
Syntax
- Source
- IF-MIBInterfaceIndexOrZero
- Base type
Integer32- Display format
d
Type Description
This textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced.
Values & Constraints
Type Constraints
range: 0..2147483647