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H3CSE-RS-SW Sample Questions:
1. Which of the following statements about the BPDU format of MSTP is correct? (Multiple choice)
A) The MSTP BPDU consists of the RSTBPDU field and the MST-specific field.
B) If the MST region is regarded as a switch running RSTP logically, the CIST external path cost is equivalent to the root path cost of the RSTP switch.
C) If the MST region is regarded as a switch running RSTP logically, the CIST region root ID is equivalent to the designated bridge ID of the RSTP switch. Usually, this ID is the smallest bridge ID in the MST region.
D) To calculate CST, only the value of the RSTBPDU field is required
2. In the network shown in the figure, the PIMSM protocol is running between RT1, RT2 and RT3, the RP is 1.1.1.1, and there is a multicast source connected to the downstream receiver RT3. Check the RT3 unicast routing table as follows:
[RT3] display ip routing-table Routing Tables: Public Destinations: 10 Routes: 10 Destination/MaskProtoPreCost NextHop Interface
1.1.1.1/32 OSPF 10 1562 192.168.2.1 s0/2/1
127.0.0.0/8 Direct 00 127.0.0.1 In Loop 0
127.0.0.1/32 Direct 00 127.0.0.1 In Loop 0
192.168.0.0/30 Direct 00 192.168.0.2 S0/2/0
192.168.0.1/32 Direct 00 192.168.0.1 S0/2/0
192.168.0.2/32 Direct 00 127.0.0.1 In Loop 0
192.168.1.0/30 OSPF 10 3 124 192.168.2.1 S0/2/1
192.168.2.0/30 Direct 00 192.168.2.2 so/2/1
192.168.2.1/32 Direct 00 192.168.2.1 so/2/1
192.168.2.2/32 Direct 00 127.0.0.1 In Loop 0
Then, when the RP sends a registration stop message, which of the following routers have (S, G) entries? (Multiple choice)
A) RT2
B) RT1
C) RT3
3. SWA/SWB/SWC are in the same MSTP region and configured with the same region configuration
Stp region-configuration region-name h3c
Instance 1 vlan 10
Instance 2 vlan 20
Instance 2 vlan 30
Active region-configuration
The ports of the three interconnected links are all Access and belong to the VLANs identified in the figure. The three switches create VLAN virtual interfaces corresponding to the Access links and run OSPF on the virtual interfaces. The IP addresses of the VLAN virtual interfaces are assigned as follows:
SWA: vlan-interface 10 (192.168.10.1); vlan-interface 30 (192.168.30.1) SWB: vlan-interface 10 (192.168.10.2); vlan-interface 20 (192.168.20.1) SWC: vlan-interface 20 (192.168.20.2); vlan-interface 30 (192.168.30.2) When all interconnected ports are UP and STP and OSPF calculations are complete, which of the following descriptions of network connectivity are correct?
A) The three switches can establish OSPF neighbor relationships between each other
B) Two of the three switches cannot establish an OSPF neighbor relationship
C) Among the 6 interconnected addresses, at least two interconnected addresses are unreachable to each other
D) All interconnected addresses of the three switches are reachable to each other
4. In the switching network shown in the figure, all three switches have only the default VLAN 1. The interconnected ports of the three switches are all Trunks, and all VLANs are allowed to pass. The global and port GVRP functions are enabled on the three switches. VLAN 10 is created on the switch SWA, VLAN 20 is created on the switch SWC, and the GVRP registration mode of the Ethernet 1/0/1 port on the switch SWA is set to Fixed. Check the status information of each Trunk port on the three switches.
Which of the following is correct?
A) [SWA] display interface Ethernet 1/0/1 Ethernet1/0/1 current state: UP ......
PVID: 1
Mdi type: auto
Link delay is 0 (sec)Port link-type: trunk
VLAN passing: 1 (default vlan), 10, 20
VLAN permitted: 1 (default vlan), 2-4094 Trunk port encapsulation: IEEE 802.1q
B) [SWB] display interface Ethernet 1/0/2 Ethernet1/0/2 current state: UP ......
PVID: 1
Mdi type: auto
Link delay is 0(sec)Port link-type: trunk
VLAN passing: 1(default vlan),10,20
VLAN permitted: 1(default vlan),2-4094 Trunk port encapsulation: IEEE 802.1q
C) [SWC] display interface Ethernet 1/0/1 Ethernet1/0/1 current state: UP ......
PVID: 1
Mdi type: auto
Link delay is 0 (sec)Port link-type: trunk
VLAN passing: 1 (default vlan), 10, 20
VLAN permitted: 1 (default vlan), 2-4094 Trunk port encapsulation: IEEE 802.1q
D) [SWB] display interface Ethernet 1/0/1 Ethernet1/0/1 current state: UP ......
PVID: 1
Mdi type: auto
Link delay is 0(sec)Port link-type: trunk
VLAN passing: 1(default vlan),10,20
VLAN permitted: 1(default vlan),2-4094 Trunk port encapsulation: IEEE 802.1q
5. In the network shown in the figure, the PIMSM protocol is running between RT1, RT2 and RT3, the RP is 1.1.1.1, and there is a multicast source connected to the downstream receiver RT3. Check the RT3 unicast routing table as follows:
[RT3] display ip routing-table Routing Tables: Public Destinations: 10 Routes:
10Destination/MaskProtoPreCost NextHop Interface
/1.1.1.1/320SPF 10 1562 192.168.0.1 S0/2/o
/127.0.0.0/8 Direct 00127.0.0.1 InLoopo/127.0.0.1/32 Direct 00127.0.0.1 InLoopO/192.168.0.0/30 Direct
00192.168.0.2 S0/2/0|192.168.0.1/32 Direct 00192.168.0.1 so/2/0|192.168.0.2/32 Direct 00127.0.0.1 InLoopo|192.168.1.0/300 SPF 10 3124 192.168.2.1 so/2/1/192.168.2.0/30 Direct 00192.168.2.2 so/2/1
|192.168.2.1/32Direct 00192.168.2.1 so/2/1|192.168.2.2/32Direct 00127.0.0.1 InLoopo Then, when the RP sends the registration stop message, which of the following routers have (S, G) entries?
A) RT2
B) RT1
C) RT3
Solutions:
Question # 1 Answer: A,B,D | Question # 2 Answer: A,C | Question # 3 Answer: A | Question # 4 Answer: C | Question # 5 Answer: B |