For example, a LAG instance can specify a shaping rate of 100 Mbps on an Ethernet
port or a group node. The system shapes all Ethernet ports or group nodes to the
same rate within the LAG. Using load balancing, the system strives to balance the
traffic each link equally.
QoS and Ethernet Link Redundancy
You can configure Ethernet link redundancy for LAG interfaces. When you configure
QoS for those links, be sure to consider the following behaviors.
Active Link Failure and QoS
When an active link fails, traffic that is hashed-load balanced is redirected onto the
remaining active links in the LAG. Traffic that is hashed-load balanced might be lost
on the disabled link, but from the moment of switchover, traffic arriving from the
fabric on the egress line module is directed towards one of the remaining hashed
load-balanced queues.
Subscriber loadbalanced traffic takes more time to reestablish on active links because
of the amount of computation (approximately 3 ms per subscriber). During this time
period, traffic directed to the disabled link might be lost.
Administratively Disabling a Link and QoS
When a link is administratively disabled, the system immediately redirects traffic
from the link to other links in the LAG.
Adding a New Link to the LAG and QoS
When you add a new link to the LAG, the system immediately sends traffic that is
hashed-load balanced to the link. Traffic that is subscriber-load balanced moves to
the new link as new subscribers log in. The system automatically rebalances traffic
to the new link based on the load rebalance configuration for the LAG.
Related Topics
■
Hashed Load Balancing for 802.3ad Link Aggregation Groups Overview on
page 186
■
Subscriber Load Balancing for 802.3ad Link Aggregation Groups Overview on
page 186
■
For more information about configuring the lag-default QoS profile for default
subscriber load balancing, see Enabling Default Subscriber Load Balancing for
802.3ad Link Aggregation Groups on page 191
■
For more information about Ethernet link redundancy, see
JUNOSe Link Layer
Configuration Guide
■
For more information about configuring QoS parameters, see Parameter
Definition Attributes for QoS Administrators Overview on page 229
QoS for 802.3ad Link Aggregation Interfaces Overview
■
185
Chapter 21: Configuring QoS for 802.3ad Link Aggregation Groups
Содержание JUNOSE 11.1.X - QUALITY OF SERVICE CONFIGURATION GUIDE 3-21-2010
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Страница 24: ...xxiv List of Figures JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 28: ...xxviii List of Tables JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 33: ...Part 1 QoS on the E Series Router Quality of Service Overview on page 3 QoS on the E Series Router 1...
Страница 34: ...2 QoS on the E Series Router JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 44: ...12 Classifying Queuing and Dropping Traffic JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 76: ...44 Scheduling and Shaping Traffic JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 156: ...124 Monitoring QoS Scheduling and Shaping JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 162: ...130 Scaling Subscribers on the TFA ASIC with QoS JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 190: ...158 Interface Solutions for QoS JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 238: ...206 Monitoring QoS Configurations for L2TP JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 256: ...224 Managing Queuing and Scheduling with QoS Parameters JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 344: ...312 Monitoring and Troubleshooting QoS JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 388: ...356 Monitoring QoS Parameter Definitions JUNOSe 11 1 x Quality of Service Configuration Guide...
Страница 391: ...Part 8 Index Index on page 361 Index 359...
Страница 392: ...360 Index JUNOSe 11 1 x Quality of Service Configuration Guide...