Chapter 14: Quality of Service
164
Section II: Advanced Operations
Packet Processing
You can use the switch’s QoS tools to perform any combination of the
following functions on a packet flow:
Limiting bandwidth
Prioritizing packets to determine the level of precedence the switch will
give to the packet for processing
Replacing the VLAN tag User Priority to enable the next switch in the
network to process the packet correctly
Replacing the TOS precedence or DSCP value to enable the next
switch in the network to process the packet correctly.
Bandwidth Allocation
Bandwidth limiting is configured at the level of traffic classes, and
encompasses the flow groups contained in the traffic class. Traffic classes
can be assigned maximum bandwidths, specified in kbps, Mbps, or Gbps.
Packet Prioritization
The switch has eight Class of Service (CoS) egress queues, numbered
from 0 to 7. Queue 7 has the highest priority. When the switch becomes
congested, it gives high priority queues precedence over lower-priority
queues. When the switch has information about a packet’s priority, it
sends the packet to the appropriate queue. You can specify the queue
where the switch sends traffic, how much precedence each queue has,
and whether priority remapping is written into the packet’s header for the
next hop to use.
Prioritizing packets cannot improve your network’s performance when
bandwidth is over-subscribed to the point that egress queues are always
full. If one type of traffic is causing the congestion, you can limit its
bandwidth. Other solutions are to increase bandwidth or decrease traffic.
You can set a packet’s priority by configuring a priority in the flow group or
traffic class to which the packet belongs. The packet is put in the
appropriate CoS queue for that priority. If the flow group and traffic class
do not include a priority, the switch can determine the priority from the
VLAN tag User Priority field of incoming tagged packets. The packet is put
in the appropriate CoS queue for its VLAN tag User Priority field. If neither
the traffic class / flow group priority nor the VLAN tag User Priority is set,
the packet is sent to the default queue, queue 1.
Summary of Contents for AT-S63
Page 14: ...Figures 14 ...
Page 18: ...Tables 18 ...
Page 28: ...28 Section I Basic Operations ...
Page 58: ...Chapter 1 Overview 58 ...
Page 76: ...Chapter 2 AT 9400Ts Stacks 76 Section I Basic Operations ...
Page 96: ...Chapter 5 MAC Address Table 96 Section I Basic Operations ...
Page 114: ...Chapter 8 Port Mirror 114 Section I Basic Operations ...
Page 116: ...116 Section II Advanced Operations ...
Page 146: ...Chapter 12 Access Control Lists 146 Section II Advanced Operations ...
Page 176: ...Chapter 14 Quality of Service 176 Section II Advanced Operations ...
Page 196: ...196 Section III Snooping Protocols ...
Page 204: ...Chapter 18 Multicast Listener Discovery Snooping 204 Section III Snooping Protocols ...
Page 216: ...Chapter 20 Ethernet Protection Switching Ring Snooping 216 Section III Snooping Protocols ...
Page 218: ...218 Section IV SNMPv3 ...
Page 234: ...234 Section V Spanning Tree Protocols ...
Page 268: ...268 Section VI Virtual LANs ...
Page 306: ...Chapter 27 Protected Ports VLANs 306 Section VI Virtual LANs ...
Page 320: ...320 Section VII Internet Protocol Routing ...
Page 360: ...Chapter 30 BOOTP Relay Agent 360 Section VII Routing ...
Page 370: ...Chapter 31 Virtual Router Redundancy Protocol 370 Section VII Routing ...
Page 372: ...372 Section VIII Port Security ...
Page 402: ...Chapter 33 802 1x Port based Network Access Control 402 Section VIII Port Security ...
Page 404: ...404 Section IX Management Security ...
Page 436: ...Chapter 36 PKI Certificates and SSL 436 Section IX Management Security ...
Page 454: ...Chapter 38 TACACS and RADIUS Protocols 454 Section IX Management Security ...
Page 462: ...Chapter 39 Management Access Control List 462 Section IX Management Security ...
Page 532: ...Appendix D MIB Objects 532 ...