• Change the default (0) to another algorithm and apply it to ECMP, LAG hashing, or a particular line
card.
CONFIGURATION mode
hash-algorithm | [ecmp{crc16|crc16cc|crc32LSB|crc32MSB|crc-upper|dest-ip |lsb
|xor1| xor2| xor4| xor8| xor16}|lag{crc16|crc16cc|crc32LSB|crc32MSB|xor1|
xor2|xor4|xor8|xor16}| seed ]
For more information about algorithm choices, refer to the command details in the
IP Routing
chapter of the
Dell Networking OS Command Reference Guide
.
• Change the Hash algorithm seed value to get better hash value
Hash seed is used to compute the hash value. By default hash seed is chassis MAC 32 bits. we can also
change the hash seed by the following command.
CONFIGURATION mode
hash-algorithm seed {seed value}
• Change to another algorithm.
CONFIGURATION mode
hash-algorithm [ecmp{crc16|crc16cc|crc32LSB|crc32MSB|crc-upper|dest-ip|lsb|
xor1|xor2|xor4|xor8|xor16}]
Example of the
hash-algorithm
Command
Dell(conf)#hash-algorithm ecmp xor 26 lag crc 26 nh-ecmp checksum 26
Dell(conf)#
The
hash-algorithm
command is specific to ECMP group. The default ECMP hash configuration is
crc-
lower
. This command takes the lower 32 bits of the hash key to compute the egress port. Other options
for ECMP hash-algorithms are:
•
crc16
— uses 16 bit CRC16-bisync polynomial
•
crc16cc
— uses 16 bit CRC16 using CRC16-CCITT polynomial
•
crc32LSB
— uses LSB 16 bits of computed CRC32
•
crc32MSB
— uses MSB 16 bits of computed CRC32(default)
•
crc-upper
— uses the upper 32 bits of the hash key to compute the egress port.
•
dest-ip
— uses destination IP address as part of the hash key.
•
lsb
—uses always return the LSB of the key as the hash
•
xor1
— uses Upper 8 bits of CRC16-BISYNC and lower 8 bits of xor1
•
xor2
— Upper 8 bits of CRC16-BISYNC and lower 8 bits of xor2
•
xor4
—Upper 8 bits of CRC16-BISYNC and lower 8 bits of xor4
•
xor8
— Upper 8 bits of CRC16-BISYNC and lower 8 bits of xor8
•
xor16
— uses 16 bit XOR.
450
Interfaces
Содержание S4820T
Страница 1: ...Dell Configuration Guide for the S4820T System 9 8 0 0 ...
Страница 282: ...Dell 282 Control Plane Policing CoPP ...
Страница 569: ...Figure 62 Inspecting Configuration of LAG 10 on ALPHA Link Aggregation Control Protocol LACP 569 ...
Страница 572: ...Figure 64 Inspecting a LAG Port on BRAVO Using the show interface Command 572 Link Aggregation Control Protocol LACP ...
Страница 573: ...Figure 65 Inspecting LAG 10 Using the show interfaces port channel Command Link Aggregation Control Protocol LACP 573 ...
Страница 617: ...mac address table static multicast mac address vlan vlan id output range interface Microsoft Network Load Balancing 617 ...
Страница 622: ...Figure 81 Configuring Interfaces for MSDP 622 Multicast Source Discovery Protocol MSDP ...
Страница 623: ...Figure 82 Configuring OSPF and BGP for MSDP Multicast Source Discovery Protocol MSDP 623 ...
Страница 624: ...Figure 83 Configuring PIM in Multiple Routing Domains 624 Multicast Source Discovery Protocol MSDP ...
Страница 629: ...Figure 86 MSDP Default Peer Scenario 2 Multicast Source Discovery Protocol MSDP 629 ...
Страница 630: ...Figure 87 MSDP Default Peer Scenario 3 630 Multicast Source Discovery Protocol MSDP ...
Страница 751: ...10 11 5 2 00 00 05 00 02 04 Member Ports Te 1 2 1 PIM Source Specific Mode PIM SSM 751 ...
Страница 905: ...Figure 112 Single and Double Tag First byte TPID Match Service Provider Bridging 905 ...
Страница 979: ...6 Member not present 7 Member not present Stacking 979 ...
Страница 981: ...storm control Storm Control 981 ...
Страница 999: ... Te 1 1 0 INCON Root Rootguard Te 1 2 0 LIS Loopguard Te 1 3 0 EDS Shut Bpduguard Spanning Tree Protocol STP 999 ...
Страница 1103: ...Figure 134 Setup OSPF and Static Routes Virtual Routing and Forwarding VRF 1103 ...