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Question # 1



An engineer must limit local and remote endpoint learning to the bridge domain subnet. Which action should be taken inside the Cisco APIC?

A.

Disable Remote EP Learn

B.

Enable Enforce Subnet Check

C.

Disable Endpoint Dataplane Learning

D.

Enable Limit IP Learning to Subnet




B.
  

Enable Enforce Subnet Check



Reference: https://www.cisco.com/c/en/us/solutions/collateral/data-centervirtualization/
application-centric- infrastructure/white-paper-c11-739989.html





Question # 2



Which action reduces the impact on workload when migrating from the existing Cisco NXOS VXLAN network infrastructure to the Cisco ACI fabric?

A.

Disable bridge domain unicast routing while a default gateway is in VXLAN infrastructure

B.

Set the default gateway in the Cisco ACI and VXLAN fabrics

C.

Use ACI spines for the Cisco ACI and VXLAN fabrics

D.

Configure vPC between the standalone Nexus and the Cisco ACI leaf




B.
  

Set the default gateway in the Cisco ACI and VXLAN fabrics



Reference:
https://www.cisco.com/c/en/us/td/docs/switches/datacenter/aci/apic/sw/migration_guides/
migrating_existing_networks_to_aci.html#_Toc27467765





Question # 3



Refer to the exhibit

A customer experiences resource overconsumption on one of its border leaf switches. Which action should be taken to reduce the consumption on this switch?

A.

Disable VRF Policy Control Enforcement

B.

Disable IP Data Plane Learning

C.

Migrate L3Outs to another switch

D.

Disable Remote EP Learning




B.
  

Disable IP Data Plane Learning







Question # 4



What is a use of the Overlay Multicast TEP in Cisco ACI Multi-Site communication?

A.

to perform headend replication

B.

to act as the source IP for BUM traffic

C.

to establish MP-BGP adjacencies with remote spines

D.

to send and receive unicast VXLAN data plane traffic




B.
  

to act as the source IP for BUM traffic



Reference: https://www.cisco.com/c/en/us/solutions/collateral/data-centervirtualization/
application-centric- infrastructure/white-paper-c11-
739609.html#CiscoACIMultiSiteoverlaydataplane





Question # 5



Which two actions should be taken to ensure a scalable solution when multiple EPGs in a VRF require unrestricted communication? (Choose two.)

A.

Configure a taboo contract between the EPGs that require unrestricted communication
between each other.

B.

Enable Preferred Group Member under the EPG Collection for VRF section.

C.

Set the VRF policy control enforcement preference to Unenforced.

D.

Set the EPGs that require unrestricted communication between each other as preferred group members.

E.

Set the EPGs that require policy enforcement between each other as preferred group members.




C.
  

Set the VRF policy control enforcement preference to Unenforced.




D.
  

Set the EPGs that require unrestricted communication between each other as preferred group members.



Reference: https://www.cisco.com/c/en/us/td/docs/switches/datacenter/aci/apic/sw/4-
x/basic-configuration/ Cisco-APIC-Basic-Configuration-Guide-42x/Cisco-APIC-Basic-
Configuration-Guide-42x_chapter_0110.html





Question # 6



Refer to the exhibit.

The client endpoint uses the load-balancer VIP as the destination address to send traffic to
the server endpoint. If the load balancer does not do source NAT, which set of
configurations must be applied on Cisco ACI to allow only the return traffic to be redirected
to the service node?

A.

Create a contract with a filter matching “IP” only Create a L4-L7 device, function type
“GoTo”
Create a L4-L7 Policy-Based Redirect Policy with the L3 Destination set to the loadbalancer
inside IP/
MAC
Create a service graph template that references the previously created contract and L4-L7
device Apply the service graph template. Select “L3 Destination” and reference L4-L7
Policy-Based Redirect Policy on the provider connector only

B.

Create a contract linked to the common/default filter Create a L4-L7 device, function
type “GoThrough”
Create a L4-L7 Policy-Based Redirect Policy with the L3 Destination set to the loadbalancer
inside IP/ MAC
Create a service graph template that references the previously created contract and L4-L7
device Apply the service graph template. Select “L3 Destination” and reference L4-L7
Policy-Based Redirect Policy on the consumer and provider connector

C.

Create a contract linked to the common/default filter Create a L4-L7 device, function
type “GoTo”
Create a L4-L7 Policy-Based Redirect Policy with “Anycast Endpoint” enabled and the L3
Destination set to the load-balancer inside IP/MAC
Create a service graph template that references the previously created contract and L4-L7
device Apply the service graph template. Select “L3 Destination” and reference L4-L7
Policy-Based Redirect Policy on the consumer connector only

D.

Create a contract with a filter matching “IP” only Create a L4-L7 device, function type
“GoThrough”
Create a L4-L7 Policy-Based Redirect Policy with “Anycast Endpoint” enabled and the L3
Destination set to the load-balancer inside IP/MAC
Create a service graph template that references the previously created contract and L4-L7
device Apply the service graph template. Select “L3 Destination” and reference L4-L7
Policy-Based Redirect Policy on the consumer and provider




D.
  

Create a contract with a filter matching “IP” only Create a L4-L7 device, function type
“GoThrough”
Create a L4-L7 Policy-Based Redirect Policy with “Anycast Endpoint” enabled and the L3
Destination set to the load-balancer inside IP/MAC
Create a service graph template that references the previously created contract and L4-L7
device Apply the service graph template. Select “L3 Destination” and reference L4-L7
Policy-Based Redirect Policy on the consumer and provider







Question # 7



An engineer designs a Cisco ACI Multi-Pod solution that requires a pair of active-standby
firewalls in different pods for external connectivity. How should the firewalls be
implemented?

A.

APBR for routed firewall

B.

separate L3Out peerings for routed firewalls

C.

routed firewall for the default gateway

D.

transparent firewalls




D.
  

transparent firewalls



Reference: https://www.cisco.com/c/en/us/solutions/collateral/data-centervirtualization/ application-centric- infrastructure/white-paper-c11-739571.html





Question # 8



Refer to the exhibit.

A network engineer configures a Layer 4 to Layer 7 device for an outside routed firewall
that is connected to POD-1 inside a Cisco ACI fabric that consists of two pods. All traffic
from POD-1 or POD-2 that uses the L3Out should pass through the routed firewall. Which
Function Type must be implemented in the service graph for POD-2 to use L3Out?

A.

GoThrough

B.

L1

C.

GoTo

D.

L2




D.
  

L2







Question # 9



Where are STP BPDUs flooded in Cisco ACI fabric?

A.

in the bridge domain VLAN

B.

in the native VLAN ID

C.

in the access encapsulation VLAN part of different VLAN pools
S

D.

in the VNID that is assigned to the FD VLAN




A.
  

in the bridge domain VLAN



Reference: https://www.cisco.com/c/en/us/solutions/collateral/data-centervirtualization/
application-centric- infrastructure/white-paper-c11-737909.html





Question # 10



Refer to the exhibit.


Which feature is available across sites if EPGs are stretched?

A.

active-active high-availability firewall clustering

B.

Layer 3 routing between sites

C.

Layer 2 flooding across sites

D.

live virtual machine migration




B.
  

Layer 3 routing between sites



Reference: https://www.cisco.com/c/en/us/td/docs/switches/datacenter/aci/aci_multisite/
sw/1x/fundamentals/ b_Cisco_ACI_Multi-Site_Fundamentals/b_ACI_Multi-
Zone_Fundamentals_chapter_01.pdf (6)




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Implementing Cisco Application Centric Infrastructure - Advanced (DCACIA) Exam Dumps


Exam Code: 300-630
Exam Name: Implementing Cisco Application Centric Infrastructure - Advanced (DCACIA)

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