Manual
Table Of Contents
- Table of Contents
- List of Figures
- Preface
- Chapter 1
- Overview
- Section I
- Basic Operations
- Chapter 2
- Starting a Local or Telnet Management Session
- Chapter 3
- Enhanced Stacking
- Chapter 4
- Basic Switch Parameters
- When Does a Switch Need an IP Address?
- Configuring an IP Address and Switch Name
- Activating the BOOTP and DHCP Client Software
- Rebooting a Switch
- Configuring the Manager and Operator Passwords
- Setting the System Time
- Configuring the Console Startup Mode
- Configuring the Console Timer
- Enabling or Disabling the Telnet Server
- Setting the Baud Rate of the RS-232 Terminal Port
- Pinging a Remote System
- Returning the AT-S62 Software to the Factory Default Values
- Viewing System Hardware and Software Information
- Setting the Switch’s Temperature Threshold
- Chapter 5
- SNMPv1 and SNMPv2c Configuration
- Chapter 6
- Port Parameters
- Chapter 7
- MAC Address Table
- Chapter 8
- Port Trunking
- Chapter 9
- Port Mirroring
- Chapter 10
- Ethernet Statistics
- Section II
- Advanced Operations
- Chapter 11
- File System
- Chapter 12
- File Downloads and Uploads
- Chapter 13
- Event Log
- Chapter 14
- Quality of Service
- Chapter 15
- IGMP Snooping
- Chapter 16
- Denial of Service Defense
- Section III
- SNMPv3 Operations
- Chapter 17
- SNMPv3 Configuration
- SNMPv3 Overview
- Configuring the SNMPv3 Protocol
- Configuring the SNMPv3 User Table
- Configuring the SNMPv3 View Table
- Configuring the SNMPv3 Access Table
- Configuring the SNMPv3 SecurityToGroup Table
- Configuring the SNMPv3 Notify Table
- Configuring the SNMPv3 Target Address Table
- Configuring the SNMPv3 Target Parameters Table
- Configuring the SNMPv3 Community Table
- Displaying SNMPv3 Table Menus
- Displaying the Display SNMPv3 User Table Menu
- Displaying the Display SNMPv3 View Table Menu
- Displaying the Display SNMPv3 Access Table Menu
- Displaying the Display SNMPv3 SecurityToGroup Table Menu
- Displaying the Display SNMPv3 Notify Table Menu
- Displaying the Display SNMPv3 Target Address Table Menu
- Displaying the Display SNMPv3 Target Parameters Table Menu
- Displaying the Display SNMPv3 Community Table Menu
- Section IV
- Spanning Tree Protocols
- Chapter 18
- Spanning Tree and Rapid Spanning Tree Protocols
- Chapter 19
- Multiple Spanning Tree Protocol
- Section V
- Virtual LANs
- Chapter 20
- Tagged and Port-based Virtual LANs
- VLAN Overview
- Port-based VLAN Overview
- Tagged VLAN Overview
- Creating a Port-based or Tagged VLAN
- Example of Creating a Port-based VLAN
- Example of Creating a Tagged VLAN
- Modifying a VLAN
- Displaying VLANs
- Deleting a VLAN
- Deleting All VLANs
- Displaying PVIDs and Port Priorities
- Enabling or Disabling Ingress Filtering
- Specifying a Management VLAN
- Chapter 21
- GARP VLAN Registration Protocol
- Chapter 22
- Multiple VLAN Modes
- Section VI
- Port Security
- Section VII
- Management Security
- Chapter 25
- Web Server
- Chapter 26
- Encryption Keys
- Chapter 27
- Public Key Infrastructure Certificates
- Chapter 28
- Secure Shell (SSH) Protocol
- Chapter 29
- RADIUS and TACACS+ Authentication Protocols
- Chapter 30
- Management Access Control List
- Section VIII
- Web Browser Management
- Chapter 31
- Starting a Web Browser Management Session
- Chapter 32
- Enhanced Stacking
- Chapter 33
- Basic Switch Parameters
- Chapter 34
- SNMPv1 and SNMPv2c Community Strings
- Chapter 35
- Port Parameters
- Chapter 36
- MAC Address Table
- Chapter 37
- Port Trunking
- Chapter 38
- Port Mirroring
- Chapter 39
- File Downloads and Uploads
- Chapter 40
- Event Log
- Chapter 41
- Quality of Service
- Chapter 42
- IGMP Snooping
- Chapter 43
- Denial of Service Defense
- Chapter 44
- SNMPv3 Protocol
- Configuring the SNMPv3 Protocol
- Enabling the SNMP Protocol
- Configuring the SNMPv3 User Table
- Configuring the SNMPv3 View Table
- Configuring the SNMPv3 Access Table
- Configuring the SNMPv3 SecurityToGroup Table
- Configuring the SNMPv3 Notify Table
- Configuring the SNMPv3 Target Address Table
- Configuring the SNMPv3 Target Parameters Table
- Configuring the SNMPv3 Community Table
- Displaying SNMPv3 Tables
- Chapter 45
- STP, RSTP, and MSTP
- Chapter 46
- Virtual LANs
- Chapter 47
- GARP VLAN Registration Protocol
- Chapter 48
- MAC Address Security
- Chapter 49
- 802.1x Port-based Access Control
- Chapter 50
- Secure Shell Protocol
- Chapter 51
- Encryption Keys, PKI, and SSL
- Chapter 52
- RADIUS and TACACS+ Authentication Protocols
- Chapter 53
- Management Access Control List
- Appendix A
- AT-S62 Default Settings
- Basic Switch Default Settings
- Enhanced Stacking Default Setting
- SNMP Default Settings
- Port Configuration Default Settings
- Event Log Default Settings
- Quality of Service
- IGMP Snooping Default Settings
- Denial of Service Prevention Default Settings
- STP, RSTP, and MSTP Default Settings
- VLAN Default Settings
- GVRP Default Settings
- MAC Address Security Default Settings
- 802.1x Port-Based Network Access Control Default Settings
- Web Server Default Settings
- SSL Default Settings
- PKI Default Settings
- SSH Default Settings
- Server-Based Authentication Default Settings
- Management Access Control List Default Setting
- AT-S62 Default Settings
- Appendix B
- Index

Chapter 14: Quality of Service
Section II: Advanced Operations 194
You can configure a port to completely ignore the priority levels in its
tagged packets and store all the packets in the same egress queue. For
instance, perhaps you decide that all tagged packets received on port 4
should be stored in the egress port’s Q3 egress queue, regardless of the
priority level in the packets themselves. The procedure for overriding
priority levels is explained in Configuring CoS on page 196.
CoS relates primarily to tagged packets rather than untagged packets
because untagged packets do not contain a priority level. By default, all
untagged packets are placed in a port’s Q0 egress queue, the queue with
the lowest priority. But you can override this and instruct a port’s
untagged frames to be stored in a higher priority queue. The procedure
for this is also explained in Configuring CoS on page 196.
One last thing to note is that the AT-S62 software does not change the
priority level in a tagged packet. The packet leaves the switch with the
same priority it had when it entered. This is true even if you change the
default priority-to-egress queue mappings.
Scheduling A switch port needs a mechanism for knowing the order in which it
should handle the packets in its four egress queues. For example, if all
the queues contain packets, should the port transmit all packets from
Q3, the highest priority queue, before moving on to the other queues, or
should it instead just do a few packets from each queue and, if so, how
many?
This control mechanism is called scheduling. Scheduling determines the
order in which a port handles the packets in its egress queues. The
AT-S62 software has two types of scheduling:
❑ Strict priority
❑ Weighted round robin priority
Note
Scheduling is set at the switch level. You cannot set this on a per-
port basis.
Strict Priority Scheduling
With this type of scheduling, a port transmits all packets out of higher
priority queues before it transmits any from the low priority queues. For
instance, as long as there are packets in Q3 it does not handle any
packets in Q2.
The value to this type of scheduling is that high priority packets are
always handled before low priority packets.