{"course":{"productid":37232,"modality":1,"active":true,"language":"en","title":"Arista Networking - WAN Routing - MPLS Core","productcode":"MPLSCORE","vendorcode":"AR","vendorname":"Arista","fullproductcode":"AR-MPLSCORE","courseware":{"has_ekit":true,"has_printkit":false,"language":""},"url":"https:\/\/portal.flane.ch\/course\/arista-mplscore","objective":"<p>At the end of the course, you should be able to understand these subjects:\n<\/p>\n<ul>\n<li>MPLS elements (LDP, RSVP-TE)<\/li><li>Secure L2\/3 VPN services via EVPN<\/li><li>Pseudowires<\/li><li>BGP, EVPN-VXLAN, protocol verification<\/li><li>Diagnostic techniques<\/li><\/ul>","essentials":"<ul>\n<li>Solid understanding of Layer 2\/3 network technologies and protocols<\/li><li>IGP protocols (OSPF, IS-IS)<\/li><li>Basic BGP knowledge<\/li><\/ul>","audience":"<p>This course targets network engineers or service provider technicians in telecom or enterprise settings who manage WAN configurations and troubleshooting. It&#039;s especially valuable for those with prior knowledge of routing protocols like BGP or IS-IS, professionals transitioning to Arista from other vendors, and individuals involved in data center interconnect initiatives.<\/p>","contents":"<h5>MPLS Overview<\/h5><p>\n<strong>MPLS Basics<\/strong>\n<\/p>\n<ul>\n<li>Introduction to MPLS labels<\/li><li>MPLS packet and devices<\/li><li>Establishing LDP sessions<\/li><li>MPLS flow and terminology<\/li><li>MPLS control plane &amp; data plane tables<\/li><li>IGP routing &amp; MPLS control plane convergence<\/li><li>MPLS data plane<\/li><li>Penultimate hop popping (PHP)<\/li><li>MPLS services vs. applications vs transport<\/li><li>Lab &ndash; Configuring IP addressing<\/li><li>Lab &ndash; Configuring provider network reachability<\/li><li>Lab &ndash; Configuring MPLS and LDP<\/li><\/ul><p><strong>MPLS troubleshooting basics<\/strong>\n<\/p>\n<ul>\n<li>Route aggregation in an MPLS domain<\/li><li>Loop detection with TTL propagation<\/li><li>IGP vs. LDP convergence<\/li><li>Show commands walkthrough &amp; LDP label distribution<\/li><\/ul><h5>Layer 2 VPN services<\/h5><p>\n<strong>Virtual private networks<\/strong>\n<\/p>\n<ul>\n<li>Overview of VPNs<\/li><li>Use of VRFs in VPN architecture<\/li><li>VPN control plane<\/li><li>VPN data plane<\/li><li>Benefits of MPLS<\/li><\/ul><p><strong>MPLS L2 VPN Basics<\/strong>\n<\/p>\n<ul>\n<li>Introduction to E-Line services and LDP pseudowires<\/li><li>Point-to-point layer 2 services<\/li><li>Multipoint Layer 2 VPN service<\/li><li>Configurating E-Line with LDP pseudowire<\/li><li>Lab &ndash; Configuring E-Line and LDP pseudowire<\/li><\/ul><p><strong>EVPN Overview<\/strong>\n<\/p>\n<ul>\n<li>Introduction to EVPN<\/li><li>EVPN terminology<\/li><li>VRF operation<\/li><li>EVPN route type 2 (MAC-IP)<\/li><li>Lab - E-Line with EVPN VPWS<\/li><li>Lab - E-LAN with EVPN Route Type 2<\/li><li>Lab - Configuring L3EVPN Route Type 5<\/li><li>Lab - Troubleshooting L3EVPN Data Plane<\/li><\/ul><p><strong>Ethernet VPN implementations<\/strong>\n<\/p>\n<ul>\n<li>Static flow aware transport (FAT) support on EVPN VPWS<\/li><li>E-Line with EVPN VPWS<\/li><li>E-LAN with EVPN type-2 (L2EVPN)<\/li><li>Lab &ndash; E-Line with EVPN VPWS<\/li><\/ul><h5>L3VPN with BGP<\/h5><p>\n<strong>BGP as PE-CE protocol<\/strong>\n<\/p>\n<ul>\n<li>Configuring common AS number in multiple sites<\/li><li>Allowas-In<\/li><li>Lab &ndash; Configuring MP-BGP and L3VPN<\/li><\/ul><p><strong>L3VPN advanced services<\/strong>\n<\/p>\n<ul>\n<li>Overlapping VPNs<\/li><li>Configuring overlapping VPNs<\/li><li>Share service VPNs<\/li><li>Configuring shared service VPN<\/li><li>Managed service VPNs<\/li><li>Configuring managed service VPN<\/li><li>Lab &ndash; Configuring managed service VPNs<\/li><li>Lab &ndash; Configuring overlapping VPNs<\/li><li>Lab &ndash; Configuring shared service VPNs<\/li><\/ul><h5>MPLS Tunnels<\/h5><p>\n<strong>MPLS RSVP-TE elements<\/strong>\n<\/p>\n<ul>\n<li>Introduction to TE<\/li><li>Tunnel and link attributes overview<\/li><li>RSVP path and reservation concepts<\/li><li>RSVP Parth state table and RSVP error messages<\/li><li>MPLS RSVP TE configuration<\/li><li>MPLS RSVP TE explicit path configuration<\/li><li>Lab &ndash; configuring MPLS RSVP TE dynamic tunnels<\/li><\/ul><p><strong>MPLS RSVP tunnel protection<\/strong>\n<\/p>\n<ul>\n<li>Tunnel protection via multiple tunnels<\/li><li>MPLS TE &ndash; RSVP &ndash; FRR<\/li><li>RSVP FRR facility bypass data plane<\/li><li>Configuring FRR node-protection bypass<\/li><li>Lab &ndash; Configuring RSVP TE multiple tunnels<\/li><li>Lab &ndash; Configuring dynamic and explicit multi-tunnel FRR<\/li><li>Lab &ndash; Using admin-groups for link and tunnel attributes<\/li><li>Lab - Using secondary path for path selection<\/li><\/ul><h5>Segment Routing<\/h5><p>\n<strong>Segment routing fundamentals and transitions<\/strong>\n<\/p>\n<ul>\n<li>BGP-SR fundamentals &ndash; building the MPLS foundation<\/li><li>Segment routing &ndash; Overview<\/li><li>Segment routing foundations and basic traffic engineering<\/li><li>LDP vs. segment routing &ndash; foundations and protocols<\/li><li>LDP vs. segment routing &ndash; a comparative overview<\/li><li>Exploring segment routing and traffic engineering in MPLS networks<\/li><li>MPLS transport SR options<\/li><li>MPLS core with SR-TE<\/li><li>Advanced segment routing &ndash; Global significance and network types<\/li><li>Advanced Segment routing &ndash; Traffic engineering and proxy sets<\/li><li>Lab &ndash; IS-IS SR TE<\/li><li>Lab &ndash; Configuring SR-TE policy<\/li><\/ul><p><strong>Segment routing traffic engineering and steering<\/strong>\n<\/p>\n<ul>\n<li>Traffic steering and service mapping case study<\/li><li>IS-IS SR TE configuration<\/li><li>SR-TE choosing best candidate paths<\/li><li>Verify and test SR-TE policy<\/li><li>Implementing SR-TE for color steering<\/li><li>Steering traffic into SR-TE policies<\/li><li>Configuring color steering with SR-TE policy<\/li><li>Lab &ndash; Steering traffic into TE policy<\/li><li>Lab &ndash; System tunnel RIB<\/li><li>Lab &ndash; User defined tunnel RIB<\/li><li>Lab &ndash; Color steering SR-TE policy<\/li><\/ul><h5>SR-WAN and DCI<\/h5><p>\n<strong>SR-WAN and DCI<\/strong>\n<\/p>\n<ul>\n<li>MPLS Inter-AS Deployment Scenarios<\/li><li>L2 Connectivity Over MPLS-SR WAN<\/li><li>DCI with BGP L3VPN and EVPN Connectivity Challenges<\/li><li>L3 Connectivity over MPLS-SR WAN<\/li><li>DCI EVPN VXLAN DC with MPLS-SR WAN<\/li><li>Case Study &ndash; L2 and L3 Connectivity over MPLS-SR WAN<\/li><li>Lab &ndash; Data Center Interconnect<\/li><\/ul>","outline":"<h5>MPLS Overview<\/h5><p>\n<strong>MPLS Basics<\/strong>\n<\/p>\n<ul>\n<li>Introduction to MPLS labels<\/li><li>MPLS packet and devices<\/li><li>Establishing LDP sessions<\/li><li>MPLS flow and terminology<\/li><li>MPLS control plane &amp; data plane tables<\/li><li>IGP routing &amp; MPLS control plane convergence<\/li><li>MPLS data plane<\/li><li>Penultimate hop popping (PHP)<\/li><li>MPLS services vs. applications vs transport<\/li><li>Lab &ndash; Configuring IP addressing<\/li><li>Lab &ndash; Configuring provider network reachability<\/li><li>Lab &ndash; Configuring MPLS and LDP<\/li><\/ul><p><strong>MPLS troubleshooting basics<\/strong>\n<\/p>\n<ul>\n<li>Route aggregation in an MPLS domain<\/li><li>Loop detection with TTL propagation<\/li><li>IGP vs. LDP convergence<\/li><li>Show commands walkthrough &amp; LDP label distribution<\/li><\/ul><h5>Layer 2 VPN services<\/h5><p>\n<strong>Virtual private networks<\/strong>\n<\/p>\n<ul>\n<li>Overview of VPNs<\/li><li>Use of VRFs in VPN architecture<\/li><li>VPN control plane<\/li><li>VPN data plane<\/li><li>Benefits of MPLS<\/li><\/ul><p><strong>MPLS L2 VPN Basics<\/strong>\n<\/p>\n<ul>\n<li>Introduction to E-Line services and LDP pseudowires<\/li><li>Point-to-point layer 2 services<\/li><li>Multipoint Layer 2 VPN service<\/li><li>Configurating E-Line with LDP pseudowire<\/li><li>Lab &ndash; Configuring E-Line and LDP pseudowire<\/li><\/ul><p><strong>EVPN Overview<\/strong>\n<\/p>\n<ul>\n<li>Introduction to EVPN<\/li><li>EVPN terminology<\/li><li>VRF operation<\/li><li>EVPN route type 2 (MAC-IP)<\/li><li>Lab - E-Line with EVPN VPWS<\/li><li>Lab - E-LAN with EVPN Route Type 2<\/li><li>Lab - Configuring L3EVPN Route Type 5<\/li><li>Lab - Troubleshooting L3EVPN Data Plane<\/li><\/ul><p><strong>Ethernet VPN implementations<\/strong>\n<\/p>\n<ul>\n<li>Static flow aware transport (FAT) support on EVPN VPWS<\/li><li>E-Line with EVPN VPWS<\/li><li>E-LAN with EVPN type-2 (L2EVPN)<\/li><li>Lab &ndash; E-Line with EVPN VPWS<\/li><\/ul><h5>L3VPN with BGP<\/h5><p>\n<strong>BGP as PE-CE protocol<\/strong>\n<\/p>\n<ul>\n<li>Configuring common AS number in multiple sites<\/li><li>Allowas-In<\/li><li>Lab &ndash; Configuring MP-BGP and L3VPN<\/li><\/ul><p><strong>L3VPN advanced services<\/strong>\n<\/p>\n<ul>\n<li>Overlapping VPNs<\/li><li>Configuring overlapping VPNs<\/li><li>Share service VPNs<\/li><li>Configuring shared service VPN<\/li><li>Managed service VPNs<\/li><li>Configuring managed service VPN<\/li><li>Lab &ndash; Configuring managed service VPNs<\/li><li>Lab &ndash; Configuring overlapping VPNs<\/li><li>Lab &ndash; Configuring shared service VPNs<\/li><\/ul><h5>MPLS Tunnels<\/h5><p>\n<strong>MPLS RSVP-TE elements<\/strong>\n<\/p>\n<ul>\n<li>Introduction to TE<\/li><li>Tunnel and link attributes overview<\/li><li>RSVP path and reservation concepts<\/li><li>RSVP Parth state table and RSVP error messages<\/li><li>MPLS RSVP TE configuration<\/li><li>MPLS RSVP TE explicit path configuration<\/li><li>Lab &ndash; configuring MPLS RSVP TE dynamic tunnels<\/li><\/ul><p><strong>MPLS RSVP tunnel protection<\/strong>\n<\/p>\n<ul>\n<li>Tunnel protection via multiple tunnels<\/li><li>MPLS TE &ndash; RSVP &ndash; FRR<\/li><li>RSVP FRR facility bypass data plane<\/li><li>Configuring FRR node-protection bypass<\/li><li>Lab &ndash; Configuring RSVP TE multiple tunnels<\/li><li>Lab &ndash; Configuring dynamic and explicit multi-tunnel FRR<\/li><li>Lab &ndash; Using admin-groups for link and tunnel attributes<\/li><li>Lab - Using secondary path for path selection<\/li><\/ul><h5>Segment Routing<\/h5><p>\n<strong>Segment routing fundamentals and transitions<\/strong>\n<\/p>\n<ul>\n<li>BGP-SR fundamentals &ndash; building the MPLS foundation<\/li><li>Segment routing &ndash; Overview<\/li><li>Segment routing foundations and basic traffic engineering<\/li><li>LDP vs. segment routing &ndash; foundations and protocols<\/li><li>LDP vs. segment routing &ndash; a comparative overview<\/li><li>Exploring segment routing and traffic engineering in MPLS networks<\/li><li>MPLS transport SR options<\/li><li>MPLS core with SR-TE<\/li><li>Advanced segment routing &ndash; Global significance and network types<\/li><li>Advanced Segment routing &ndash; Traffic engineering and proxy sets<\/li><li>Lab &ndash; IS-IS SR TE<\/li><li>Lab &ndash; Configuring SR-TE policy<\/li><\/ul><p><strong>Segment routing traffic engineering and steering<\/strong>\n<\/p>\n<ul>\n<li>Traffic steering and service mapping case study<\/li><li>IS-IS SR TE configuration<\/li><li>SR-TE choosing best candidate paths<\/li><li>Verify and test SR-TE policy<\/li><li>Implementing SR-TE for color steering<\/li><li>Steering traffic into SR-TE policies<\/li><li>Configuring color steering with SR-TE policy<\/li><li>Lab &ndash; Steering traffic into TE policy<\/li><li>Lab &ndash; System tunnel RIB<\/li><li>Lab &ndash; User defined tunnel RIB<\/li><li>Lab &ndash; Color steering SR-TE policy<\/li><\/ul><h5>SR-WAN and DCI<\/h5><p>\n<strong>SR-WAN and DCI<\/strong>\n<\/p>\n<ul>\n<li>MPLS Inter-AS Deployment Scenarios<\/li><li>L2 Connectivity Over MPLS-SR WAN<\/li><li>DCI with BGP L3VPN and EVPN Connectivity Challenges<\/li><li>L3 Connectivity over MPLS-SR WAN<\/li><li>DCI EVPN VXLAN DC with MPLS-SR WAN<\/li><li>Case Study &ndash; L2 and L3 Connectivity over MPLS-SR WAN<\/li><li>Lab &ndash; Data Center Interconnect<\/li><\/ul>","summary":"<p>The WAN Routing &ndash; MPLS Core track delivers a thorough overview of MPLS WAN technologies and segment routing architectures, progressing through six lessons on topics like MPLS fundamentals, Layer 2\/3 VPNs with EVPN and BGP, RSVP-TE tunnels, segment routing setups, traffic engineering, and SR-WAN with DCI, all reinforced by hands-on labs. By taking this course, students acquire specialized skills in Arista&#039;s WAN tools, leading to improved network design efficiency, quicker troubleshooting, and preparation for certifications that enhance professional opportunities in service provider roles.<\/p>","objective_plain":"At the end of the course, you should be able to understand these subjects:\n\n\n\n- MPLS elements (LDP, RSVP-TE)\n- Secure L2\/3 VPN services via EVPN\n- Pseudowires\n- BGP, EVPN-VXLAN, protocol verification\n- Diagnostic techniques","essentials_plain":"- Solid understanding of Layer 2\/3 network technologies and protocols\n- IGP protocols (OSPF, IS-IS)\n- Basic BGP knowledge","audience_plain":"This course targets network engineers or service provider technicians in telecom or enterprise settings who manage WAN configurations and troubleshooting. It's especially valuable for those with prior knowledge of routing protocols like BGP or IS-IS, professionals transitioning to Arista from other vendors, and individuals involved in data center interconnect initiatives.","contents_plain":"MPLS Overview\n\n\nMPLS Basics\n\n\n\n- Introduction to MPLS labels\n- MPLS packet and devices\n- Establishing LDP sessions\n- MPLS flow and terminology\n- MPLS control plane & data plane tables\n- IGP routing & MPLS control plane convergence\n- MPLS data plane\n- Penultimate hop popping (PHP)\n- MPLS services vs. applications vs transport\n- Lab \u2013 Configuring IP addressing\n- Lab \u2013 Configuring provider network reachability\n- Lab \u2013 Configuring MPLS and LDP\nMPLS troubleshooting basics\n\n\n\n- Route aggregation in an MPLS domain\n- Loop detection with TTL propagation\n- IGP vs. LDP convergence\n- Show commands walkthrough & LDP label distribution\nLayer 2 VPN services\n\n\nVirtual private networks\n\n\n\n- Overview of VPNs\n- Use of VRFs in VPN architecture\n- VPN control plane\n- VPN data plane\n- Benefits of MPLS\nMPLS L2 VPN Basics\n\n\n\n- Introduction to E-Line services and LDP pseudowires\n- Point-to-point layer 2 services\n- Multipoint Layer 2 VPN service\n- Configurating E-Line with LDP pseudowire\n- Lab \u2013 Configuring E-Line and LDP pseudowire\nEVPN Overview\n\n\n\n- Introduction to EVPN\n- EVPN terminology\n- VRF operation\n- EVPN route type 2 (MAC-IP)\n- Lab - E-Line with EVPN VPWS\n- Lab - E-LAN with EVPN Route Type 2\n- Lab - Configuring L3EVPN Route Type 5\n- Lab - Troubleshooting L3EVPN Data Plane\nEthernet VPN implementations\n\n\n\n- Static flow aware transport (FAT) support on EVPN VPWS\n- E-Line with EVPN VPWS\n- E-LAN with EVPN type-2 (L2EVPN)\n- Lab \u2013 E-Line with EVPN VPWS\nL3VPN with BGP\n\n\nBGP as PE-CE protocol\n\n\n\n- Configuring common AS number in multiple sites\n- Allowas-In\n- Lab \u2013 Configuring MP-BGP and L3VPN\nL3VPN advanced services\n\n\n\n- Overlapping VPNs\n- Configuring overlapping VPNs\n- Share service VPNs\n- Configuring shared service VPN\n- Managed service VPNs\n- Configuring managed service VPN\n- Lab \u2013 Configuring managed service VPNs\n- Lab \u2013 Configuring overlapping VPNs\n- Lab \u2013 Configuring shared service VPNs\nMPLS Tunnels\n\n\nMPLS RSVP-TE elements\n\n\n\n- Introduction to TE\n- Tunnel and link attributes overview\n- RSVP path and reservation concepts\n- RSVP Parth state table and RSVP error messages\n- MPLS RSVP TE configuration\n- MPLS RSVP TE explicit path configuration\n- Lab \u2013 configuring MPLS RSVP TE dynamic tunnels\nMPLS RSVP tunnel protection\n\n\n\n- Tunnel protection via multiple tunnels\n- MPLS TE \u2013 RSVP \u2013 FRR\n- RSVP FRR facility bypass data plane\n- Configuring FRR node-protection bypass\n- Lab \u2013 Configuring RSVP TE multiple tunnels\n- Lab \u2013 Configuring dynamic and explicit multi-tunnel FRR\n- Lab \u2013 Using admin-groups for link and tunnel attributes\n- Lab - Using secondary path for path selection\nSegment Routing\n\n\nSegment routing fundamentals and transitions\n\n\n\n- BGP-SR fundamentals \u2013 building the MPLS foundation\n- Segment routing \u2013 Overview\n- Segment routing foundations and basic traffic engineering\n- LDP vs. segment routing \u2013 foundations and protocols\n- LDP vs. segment routing \u2013 a comparative overview\n- Exploring segment routing and traffic engineering in MPLS networks\n- MPLS transport SR options\n- MPLS core with SR-TE\n- Advanced segment routing \u2013 Global significance and network types\n- Advanced Segment routing \u2013 Traffic engineering and proxy sets\n- Lab \u2013 IS-IS SR TE\n- Lab \u2013 Configuring SR-TE policy\nSegment routing traffic engineering and steering\n\n\n\n- Traffic steering and service mapping case study\n- IS-IS SR TE configuration\n- SR-TE choosing best candidate paths\n- Verify and test SR-TE policy\n- Implementing SR-TE for color steering\n- Steering traffic into SR-TE policies\n- Configuring color steering with SR-TE policy\n- Lab \u2013 Steering traffic into TE policy\n- Lab \u2013 System tunnel RIB\n- Lab \u2013 User defined tunnel RIB\n- Lab \u2013 Color steering SR-TE policy\nSR-WAN and DCI\n\n\nSR-WAN and DCI\n\n\n\n- MPLS Inter-AS Deployment Scenarios\n- L2 Connectivity Over MPLS-SR WAN\n- DCI with BGP L3VPN and EVPN Connectivity Challenges\n- L3 Connectivity over MPLS-SR WAN\n- DCI EVPN VXLAN DC with MPLS-SR WAN\n- Case Study \u2013 L2 and L3 Connectivity over MPLS-SR WAN\n- Lab \u2013 Data Center Interconnect","outline_plain":"MPLS Overview\n\n\nMPLS Basics\n\n\n\n- Introduction to MPLS labels\n- MPLS packet and devices\n- Establishing LDP sessions\n- MPLS flow and terminology\n- MPLS control plane & data plane tables\n- IGP routing & MPLS control plane convergence\n- MPLS data plane\n- Penultimate hop popping (PHP)\n- MPLS services vs. applications vs transport\n- Lab \u2013 Configuring IP addressing\n- Lab \u2013 Configuring provider network reachability\n- Lab \u2013 Configuring MPLS and LDP\nMPLS troubleshooting basics\n\n\n\n- Route aggregation in an MPLS domain\n- Loop detection with TTL propagation\n- IGP vs. LDP convergence\n- Show commands walkthrough & LDP label distribution\nLayer 2 VPN services\n\n\nVirtual private networks\n\n\n\n- Overview of VPNs\n- Use of VRFs in VPN architecture\n- VPN control plane\n- VPN data plane\n- Benefits of MPLS\nMPLS L2 VPN Basics\n\n\n\n- Introduction to E-Line services and LDP pseudowires\n- Point-to-point layer 2 services\n- Multipoint Layer 2 VPN service\n- Configurating E-Line with LDP pseudowire\n- Lab \u2013 Configuring E-Line and LDP pseudowire\nEVPN Overview\n\n\n\n- Introduction to EVPN\n- EVPN terminology\n- VRF operation\n- EVPN route type 2 (MAC-IP)\n- Lab - E-Line with EVPN VPWS\n- Lab - E-LAN with EVPN Route Type 2\n- Lab - Configuring L3EVPN Route Type 5\n- Lab - Troubleshooting L3EVPN Data Plane\nEthernet VPN implementations\n\n\n\n- Static flow aware transport (FAT) support on EVPN VPWS\n- E-Line with EVPN VPWS\n- E-LAN with EVPN type-2 (L2EVPN)\n- Lab \u2013 E-Line with EVPN VPWS\nL3VPN with BGP\n\n\nBGP as PE-CE protocol\n\n\n\n- Configuring common AS number in multiple sites\n- Allowas-In\n- Lab \u2013 Configuring MP-BGP and L3VPN\nL3VPN advanced services\n\n\n\n- Overlapping VPNs\n- Configuring overlapping VPNs\n- Share service VPNs\n- Configuring shared service VPN\n- Managed service VPNs\n- Configuring managed service VPN\n- Lab \u2013 Configuring managed service VPNs\n- Lab \u2013 Configuring overlapping VPNs\n- Lab \u2013 Configuring shared service VPNs\nMPLS Tunnels\n\n\nMPLS RSVP-TE elements\n\n\n\n- Introduction to TE\n- Tunnel and link attributes overview\n- RSVP path and reservation concepts\n- RSVP Parth state table and RSVP error messages\n- MPLS RSVP TE configuration\n- MPLS RSVP TE explicit path configuration\n- Lab \u2013 configuring MPLS RSVP TE dynamic tunnels\nMPLS RSVP tunnel protection\n\n\n\n- Tunnel protection via multiple tunnels\n- MPLS TE \u2013 RSVP \u2013 FRR\n- RSVP FRR facility bypass data plane\n- Configuring FRR node-protection bypass\n- Lab \u2013 Configuring RSVP TE multiple tunnels\n- Lab \u2013 Configuring dynamic and explicit multi-tunnel FRR\n- Lab \u2013 Using admin-groups for link and tunnel attributes\n- Lab - Using secondary path for path selection\nSegment Routing\n\n\nSegment routing fundamentals and transitions\n\n\n\n- BGP-SR fundamentals \u2013 building the MPLS foundation\n- Segment routing \u2013 Overview\n- Segment routing foundations and basic traffic engineering\n- LDP vs. segment routing \u2013 foundations and protocols\n- LDP vs. segment routing \u2013 a comparative overview\n- Exploring segment routing and traffic engineering in MPLS networks\n- MPLS transport SR options\n- MPLS core with SR-TE\n- Advanced segment routing \u2013 Global significance and network types\n- Advanced Segment routing \u2013 Traffic engineering and proxy sets\n- Lab \u2013 IS-IS SR TE\n- Lab \u2013 Configuring SR-TE policy\nSegment routing traffic engineering and steering\n\n\n\n- Traffic steering and service mapping case study\n- IS-IS SR TE configuration\n- SR-TE choosing best candidate paths\n- Verify and test SR-TE policy\n- Implementing SR-TE for color steering\n- Steering traffic into SR-TE policies\n- Configuring color steering with SR-TE policy\n- Lab \u2013 Steering traffic into TE policy\n- Lab \u2013 System tunnel RIB\n- Lab \u2013 User defined tunnel RIB\n- Lab \u2013 Color steering SR-TE policy\nSR-WAN and DCI\n\n\nSR-WAN and DCI\n\n\n\n- MPLS Inter-AS Deployment Scenarios\n- L2 Connectivity Over MPLS-SR WAN\n- DCI with BGP L3VPN and EVPN Connectivity Challenges\n- L3 Connectivity over MPLS-SR WAN\n- DCI EVPN VXLAN DC with MPLS-SR WAN\n- Case Study \u2013 L2 and L3 Connectivity over MPLS-SR WAN\n- Lab \u2013 Data Center Interconnect","summary_plain":"The WAN Routing \u2013 MPLS Core track delivers a thorough overview of MPLS WAN technologies and segment routing architectures, progressing through six lessons on topics like MPLS fundamentals, Layer 2\/3 VPNs with EVPN and BGP, RSVP-TE tunnels, segment routing setups, traffic engineering, and SR-WAN with DCI, all reinforced by hands-on labs. By taking this course, students acquire specialized skills in Arista's WAN tools, leading to improved network design efficiency, quicker troubleshooting, and preparation for certifications that enhance professional opportunities in service provider roles.","version":"1.0","duration":{"unit":"d","value":5,"formatted":"5 days"},"pricelist":{"List Price":{"FR":{"country":"FR","currency":"EUR","taxrate":19.6,"price":4995},"GB":{"country":"GB","currency":"GBP","taxrate":20,"price":4350},"DE":{"country":"DE","currency":"EUR","taxrate":19,"price":4995},"AT":{"country":"AT","currency":"EUR","taxrate":20,"price":4995},"CH":{"country":"CH","currency":"CHF","taxrate":8.1,"price":4995},"SE":{"country":"SE","currency":"EUR","taxrate":25,"price":4995}}},"lastchanged":"2026-07-10T14:17:49+02:00","parenturl":"https:\/\/portal.flane.ch\/swisscom\/en\/json-courses","nexturl_course_schedule":"https:\/\/portal.flane.ch\/swisscom\/en\/json-course-schedule\/37232","source_lang":"en","source":"https:\/\/portal.flane.ch\/swisscom\/en\/json-course\/arista-mplscore"}}