ZyXEL GS1920 Series User Guide - Page 224

ZyXEL GS1920 Series Manual

Page 224 highlights

Chapter 26 Loop Guard • It will receive broadcast messages sent out from the switch in loop state. • It will receive its own broadcast messages that it sends out as they loop back. It will then rebroadcast those messages again. The following figure shows port N on switch A connected to switch B. Switch B is in loop state. When broadcast or multicast packets leave port N and reach switch B, they are sent back to port N on A as they are rebroadcast from B. Figure 162 Switch in Loop State A B N The loop guard feature checks to see if a loop guard enabled port is connected to a switch in loop state. This is accomplished by periodically sending a probe packet and seeing if the packet returns on the same port. If this is the case, the Switch will shut down the port connected to the switch in loop state. The following figure shows a loop guard enabled port N on switch A sending a probe packet P to switch B. Since switch B is in loop state, the probe packet P returns to port N on A. The Switch then shuts down port N to ensure that the rest of the network is not affected by the switch in loop state. Figure 163 Loop Guard - Probe Packet A B P N P The Switch also shuts down port N if the probe packet returns to switch A on any other port. In other words loop guard also protects against standard network loops. The following figure illustrates three switches forming a loop. A sample path of the loop guard probe packet is also shown. In this example, the probe packet is sent from port N and returns on another port. As long as loop guard is enabled on port N. The Switch will shut down port N if it detects that the probe packet has returned to the Switch. GS1920 Series User's Guide 224

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Chapter 26 Loop Guard
GS1920 Series User’s Guide
224
It will receive broadcast messages sent out from the switch in loop state.
It will receive its own broadcast messages that it sends out as they loop back. It will then re-
broadcast those messages again.
The following figure shows port
N
on switch
A
connected to switch
B
. Switch
B
is in loop state.
When broadcast or multicast packets leave port
N
and reach switch
B
, they are sent back to port
N
on
A
as they are rebroadcast from B.
Figure 162
Switch in Loop State
The loop guard feature checks to see if a loop guard enabled port is connected to a switch in loop
state. This is accomplished by periodically sending a probe packet and seeing if the packet returns
on the same port. If this is the case, the Switch will shut down the port connected to the switch in
loop state.
The following figure shows a loop guard enabled port
N
on switch
A
sending a probe packet
P
to
switch
B
. Since switch
B
is in loop state, the probe packet
P
returns to port
N
on
A
. The Switch
then shuts down port
N
to ensure that the rest of the network is not affected by the switch in loop
state.
Figure 163
Loop Guard - Probe Packet
The Switch also shuts down port
N
if the probe packet returns to switch
A
on any other port. In
other words loop guard also protects against standard network loops. The following figure
illustrates three switches forming a loop. A sample path of the loop guard probe packet is also
shown. In this example, the probe packet is sent from port
N
and returns on another port. As long
as loop guard is enabled on port
N
. The Switch will shut down port
N
if it detects that the probe
packet has returned to the Switch.
A
B
N
A
B
P
P
N