D-Link DGS-1250 Emulator - Page 412

cpu-protect sub-interface

Page 412 highlights

DGS-1250 Series Gigabit Ethernet Smart Managed Switch CLI Reference Guide to the specified percentage, the Safeguard Engine mechanism will shut down. The valid range is from 20 to 100. Default By default, Safeguard Engine is disabled. By default, the rising threshold of CPU utilization is 70. By default, the falling threshold of CPU utilization is 20. Command Mode Global Configuration Mode. Usage Guideline The Safeguard Engine can help the overall operability of the device by minimizing the workload of the Switch while the attack is ongoing, thus making it capable to forward essential packets over its network in a limited bandwidth. When the CPU utilization of the Switch rises over configured rising threshold, it will enter exhausted mode. In exhausted mode, the Switch limits the bandwidth of receiving ARP and broadcast IP packets. Example This example shows how to enable the Safeguard Engine and configure the thresholds, which the rising and falling threshold are 60 and 40 respectively. Switch# configure terminal Switch(config)# cpu-protect safeguard threshold 60 40 Switch(config)# 54-3 cpu-protect sub-interface This command is used to configure the rate limit for traffic destined for the CPU by sub-interface types. Use the no form of this command to revert to the default settings. cpu-protect sub-interface {manage | protocol | route} pps RATE no cpu-protect sub-interface {manage | protocol | route} Parameters RATE Specifies the threshold value. The unit is packets per second. When set to 0, all packets of the specified sub-interface type will be dropped. Default None. Command Mode Global Configuration Mode. Usage Guideline The reasons of packets that are destined to the CPU can be classified into three groups: manage, protocol and route. The sub-interface is a logical interface, which handles the CPU received packets by different groups. Generally speaking, the protocol packets should have higher priority to make sure the functions work normally. The CPU usually is not involved in the routing of packets. In few cases, such as learning new IP address or if the 409

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DGS-1250 Series Gigabit Ethernet Smart Managed Switch CLI Reference Guide
409
to the specified percentage, the Safeguard Engine mechanism will shut down.
The valid range is from 20 to 100.
Default
By default, Safeguard Engine is disabled.
By default, the rising threshold of CPU utilization is 70.
By default, the falling threshold of CPU utilization is 20.
Command Mode
Global Configuration Mode.
Usage Guideline
The Safeguard Engine can help the overall operability of the device by minimizing the workload of the Switch while
the attack is ongoing, thus making it capable to forward essential packets over its network in a limited bandwidth.
When the CPU utilization of the Switch rises over configured rising threshold, it will enter exhausted mode. In
exhausted mode, the Switch limits the bandwidth of receiving ARP and broadcast IP packets.
Example
This example shows how to enable the Safeguard Engine and configure the thresholds, which the rising and falling
threshold are 60 and 40 respectively.
Switch# configure terminal
Switch(config)# cpu-protect safeguard threshold 60 40
Switch(config)#
54-3
cpu-protect sub-interface
This command is used to configure the rate limit for traffic destined for the CPU by sub-interface types. Use the
no
form of this command to revert to the default settings.
cpu-protect sub-interface {manage | protocol | route} pps
RATE
no cpu-protect sub-interface {manage | protocol | route}
Parameters
RATE
Specifies the threshold value. The unit is packets per second. When set to 0, all
packets of the specified sub-interface type will be dropped.
Default
None.
Command Mode
Global Configuration Mode.
Usage Guideline
The reasons of packets that are destined to the CPU can be classified into three groups:
manage
,
protocol
and
route
. The sub-interface is a logical interface, which handles the CPU received packets by different groups.
Generally speaking, the protocol packets should have higher priority to make sure the functions work normally. The
CPU usually is not involved in the routing of packets. In few cases, such as learning new IP address or if the