4A0-D03資格専門知識 & 4A0-D03問題集

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Nokia 4A0-D03 Exam Syllabus Topics:

SectionObjectives
BGP EVPN Control Plane Operations- Route distribution and policies
  • 1. Policy-based control of EVPN routes
    • 2. Route targets and route distinguishers
      - Multi-homing scenarios
      • 1. DF election mechanisms
        • 2. Active-active and active-standby models
          EVPN Fundamentals- VXLAN data plane basics
          • 1. VTEP operation principles
            • 2. Encapsulation and forwarding behavior
              - EVPN architecture and control plane
              • 1. BGP EVPN route types overview
                • 2. MAC/IP advertisement concepts
                  Data Center Interconnect (DCI)- Resiliency and convergence
                  • 1. Failure handling mechanisms
                    • 2. Multi-site redundancy design
                      - Interconnecting data centers with EVPN
                      • 1. Routing separation and segmentation
                        • 2. L2 and L3 extension methods
                          SR Linux Data Center Architecture- Fabric design principles
                          • 1. Leaf-spine topology design
                            • 2. Scalability and redundancy considerations
                              - SR Linux system fundamentals
                              • 1. Configuration model and management
                                • 2. Network operating system concepts

                                  >> 4A0-D03資格専門知識 <<

                                  Nokia 4A0-D03問題集 & 4A0-D03合格対策

                                  弊社の商品は試験の範囲を広くカバーすることが他のサイトがなかなか及ばならないです。それほかに品質はもっと高くてNokiaの4A0-D03認定試験「Nokia SR Linux EVPN and Data Center Interconnect」の受験生が最良の選択であり、成功の最高の保障でございます。

                                  Nokia SR Linux EVPN and Data Center Interconnect 認定 4A0-D03 試験問題 (Q24-Q29):

                                  質問 # 24
                                  Consider the exhibit.

                                  All connected leaf routers have the same Ethernet segment configuration. The IP-VRF is configured properly and is operational.
                                  Which of the following statements is FALSE?

                                  正解:C

                                  解説:
                                  Comprehensive and Detailed 150 to 250 words of Explanation From [SR Linux EVPN and Data Center Interconnect/Course Guide/topics]:
                                  The exhibit describes a Layer 3 multi-homing scenario where the Ethernet Segment is associated with an IP-VRF and the configuration references an EVI value of 1000. The segment is configured with all-active multi-homing, allowing multiple attached leaf routers to advertise reachability for the same external L3 next-hop or third-party prefix attachment. In this model, the Ethernet Segment represents the shared L3 attachment and is used by EVPN to associate remote prefix reachability with the multi-homed segment. The incorrect statement is that a LAG must be configured on the connected leaf routers and the host. That requirement is specific to many Layer 2 all-active host attachment designs, where the host commonly uses LACP toward multiple leaf routers and the leaf LAG subinterfaces are associated with the Ethernet Segment. In Layer 3 multi-homing, the attached device can be a router or VNF, and the EVPN ES association can be used for L3 prefix reachability without mandating that the host side be configured as a LAG. Reference: L3 EVPN multi-homing, EVI association, all-active Ethernet Segment behavior.


                                  質問 # 25
                                  Leaf routers are configured to support Layer 2 multi-homing all-active mode.
                                  Which of the following statements is FALSE?

                                  正解:D

                                  解説:
                                  Comprehensive and Detailed 150 to 250 words of Explanation From [SR Linux EVPN and Data Center Interconnect/Course Guide/topics]:
                                  In all-active Layer 2 EVPN multi-homing, the host is typically dual-homed to two or more leaf routers using a LAG. The participating leaf routers must configure the LAG and associate it with the Ethernet Segment so EVPN can advertise the common ESI and apply aliasing, split-horizon, and DF procedures. If VLAN tagging is used for service separation, tagging must be configured on the LAG interface so that the correct subinterfaces can bind into the MAC-VRF and Ethernet Segment. Option C is false because it states that the LACP system-id-mac must uniquely identify each leaf router. In an all-active EVPN multihomed LAG, the opposite principle applies: from the host's LACP perspective, the multihomed leaf pair must appear as a single logical LACP system. That generally requires a shared LACP system ID or coordinated system MAC behavior across the participating PEs. If each leaf presented a unique LACP system identity, the host would treat them as separate LAG partners and the all-active bundle would not form correctly. Reference: all-active L2 EVPN multi-homing, LAG attachment, LACP system ID behavior, Ethernet Segment association.


                                  質問 # 26
                                  A host is connected to a MAC-VRF on leaf1 and leaf2. The MAC-VRF interfaces on leaf1 and leaf2 are associated to an Ethernet segment configured for active-standby multi-homing.
                                  Which of the following statements is FALSE?

                                  正解:C

                                  解説:
                                  Comprehensive and Detailed 150 to 250 words of Explanation From [SR Linux EVPN and Data Center Interconnect/Course Guide/topics]:
                                  In active-standby, or single-active, Layer 2 EVPN multi-homing, only one PE is active for the Ethernet Segment and MAC-VRF at a time. Leaf1 and Leaf2 participate in DF election, and the elected DF becomes the active forwarding PE for that service attachment. Because this is not all-active multi-homing, the non-DF must not forward traffic to the host for the protected service. This prevents duplicate frames, incorrect MAC learning, and loops on the access side. The DF accepts traffic from the host and forwards BUM traffic received from remote PEs toward the host-facing segment. Option D is false because it claims that the non-DF can forward unicast traffic from remote PEs to the host. In single-active operation, remote peers must direct traffic to the active PE, and the standby PE remains ready to take over only after DF state changes. This is the operational distinction from all-active multi-homing, where more than one PE may be used for forwarding depending on the traffic type and aliasing behavior. Reference: single-active L2 EVPN multi-homing, DF role, non-DF forwarding suppression.


                                  質問 # 27
                                  Which of the following statements about EVPN PE-CE routing, using BGP as the routing protocol, is FALSE?

                                  正解:B

                                  解説:
                                  Comprehensive and Detailed 150 to 250 words of Explanation From [SR Linux EVPN and Data Center Interconnect/Course Guide/topics]:
                                  In EVPN PE-CE routing, the PE exchanges ordinary IPv4 or IPv6 unicast routing information with the CE. When the PE learns CE prefixes, it imports them into the tenant IP-VRF and advertises them to other EVPN PEs as EVPN route type 5 IP Prefix routes. Conversely, when the PE receives EVPN routes from remote PEs, it can advertise corresponding IPv4/IPv6 BGP updates toward the CE, subject to policy. Import and export policies are essential because they control which customer routes are accepted, which EVPN-learned routes are advertised, and how attributes are modified. Option C is false because iBGP is not the preferred PE-CE model in this context. eBGP is typically preferred between PE and CE because it creates a clean administrative routing boundary between the provider/data-center edge and the customer or external router. Using eBGP also simplifies route policy, loop prevention, and operational separation. The CE does not need to participate in the EVPN overlay; it speaks standard BGP unicast with the PE, while the PE performs the EVPN RT-5 advertisement into the fabric. Reference: EVPN PE-CE BGP routing, eBGP preference, RT-5 prefix advertisement, import/export policy.


                                  質問 # 28
                                  Which of the following statements describes the function or operation of the integrated gateway-based data center interconnect solution?

                                  正解:D

                                  解説:
                                  Comprehensive and Detailed 150 to 250 words of Explanation From [SR Linux EVPN and Data Center Interconnect/Course Guide/topics]:
                                  In an integrated gateway-based DCI design, the same physical or logical router performs both the data center gateway role and the WAN PE role. This is why option D is correct. The device terminates or participates in the data center-side EVPN service and also handles the WAN-side VPN transport, including route translation or re-advertisement where needed. This approach avoids exposing every data center leaf router to the WAN and avoids requiring route reflector reachability between data centers. It also avoids building VXLAN tunnels directly between all leaf routers in separate data centers. Those characteristics belong to gateway-less DCI, where the EVPN overlay stretches more directly across the WAN and the WAN must carry the underlay or overlay reachability required by the data center leaves. Integrated gateway design is more controlled: the gateway is the interworking point, which makes it suitable when the provider or operator wants a strong service boundary and centralized DCI policy enforcement. Reference: integrated gateway-based DCI, single-router gateway/WAN PE function, EVPN/VPN interworking.


                                  質問 # 29
                                  ......

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