A network administrator is troubleshooting an IEEE 802.1Q trunk link between two switches, SW-Access-A and SW-Access-B. On SW-Access-A, interface GigabitEthernet1/0/1 is configured as an 802.1Q trunk with native VLAN 20 and allowed VLANs 10, 20, and 30. On SW-Access-B, interface GigabitEthernet1/0/1 is configured as an 802.1Q trunk with native VLAN 1 and allowed VLANs 10, 20, and 30. Which of the following operational outcomes will occur on this trunk link? (Select TWO.)
- Untagged frames transmitted from VLAN 20 on SW-Access-A will be assigned to VLAN 1 upon reception on SW-Access-B.Cevap
- Link-layer protocols such as CDP or LLDP will log native VLAN mismatch warnings on both switches.Cevap
- CTagged frames belonging to VLAN 10 will be dropped at the receiving interface due to the native VLAN configuration mismatch.
- DTraffic from VLAN 30 on SW-Access-A will automatically be routed into VLAN 10 on SW-Access-B through the trunk link.
Cevap
The correct outcomes are: untagged frames transmitted from VLAN 20 on SW-Access-A will be assigned to VLAN 1 upon reception on SW-Access-B, and link-layer protocols such as CDP or LLDP will log native VLAN mismatch warnings on both switches.
When native VLAN IDs differ across an 802.1Q trunk link, untagged traffic sent by one switch's native VLAN is implicitly placed into the receiving switch's native VLAN, causing cross-VLAN traffic leakage. Additionally, neighbor discovery protocols like CDP or LLDP continuously exchange native VLAN parameters and log errors when a mismatch is detected.
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802.1Q Native VLAN Operation and Mismatch Behaviors
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