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Configuring Dynamic VLAN Assignment with Port Authentication
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Guest and Authentication-Fail VLANs
Port-Authentication Process
The authentication process begins when the authenticator senses that a link status has changed from down to up:
1
When the authenticator senses a link state change, it requests that the supplicant identify itself using an EAP Identity Request frame.
2
The supplicant responds with its identity in an EAP Response Identity frame.
3
The authenticator decapsulates the EAP response from the EAPOL frame, encapsulates it in a RADIUS Access-Request frame and
forwards the frame to the authentication server.
4
The authentication server replies with an Access-Challenge frame. The Access-Challenge frame requests the supplicant to prove that
it is who it claims to be, using a specified method (an EAP-Method). The challenge is translated and forwarded to the supplicant by
the authenticator.
5
The supplicant can negotiate the authentication method, but if it is acceptable, the supplicant provides the Requested Challenge
information in an EAP response, which is translated and forwarded to the authentication server as another Access-Request frame.
6
If the identity information provided by the supplicant is valid, the authentication server sends an Access-Accept frame in which
network privileges are specified. The authenticator changes the port state to authorized and forwards an EAP Success frame. If the
identity information is invalid, the server sends an Access-Reject frame. If the port state remains unauthorized, the authenticator
forwards an EAP Failure frame.
Figure 5. EAP Port-Authentication
EAP over RADIUS
802.1X uses RADIUS to shuttle EAP packets between the authenticator and the authentication server, as defined in RFC 3579.
EAP messages are encapsulated in RADIUS packets as a type of attribute in Type, Length, Value (TLV) format. The Type value for EAP
messages is 79.
90
802.1X
Содержание S4048T-ON
Страница 1: ...Dell Configuration Guide for the S4048 ON System 9 11 2 1 ...
Страница 148: ...Figure 10 BFD Three Way Handshake State Changes 148 Bidirectional Forwarding Detection BFD ...
Страница 251: ...Dell Control Plane Policing CoPP 251 ...
Страница 363: ... RPM Synchronization GARP VLAN Registration Protocol GVRP 363 ...
Страница 511: ...Figure 64 Inspecting the LAG Configuration Link Aggregation Control Protocol LACP 511 ...
Страница 512: ...Figure 65 Inspecting Configuration of LAG 10 on ALPHA 512 Link Aggregation Control Protocol LACP ...
Страница 515: ...Figure 67 Inspecting a LAG Port on BRAVO Using the show interface Command Link Aggregation Control Protocol LACP 515 ...
Страница 516: ...Figure 68 Inspecting LAG 10 Using the show interfaces port channel Command 516 Link Aggregation Control Protocol LACP ...
Страница 558: ...Figure 84 Configuring Interfaces for MSDP 558 Multicast Source Discovery Protocol MSDP ...
Страница 559: ...Figure 85 Configuring OSPF and BGP for MSDP Multicast Source Discovery Protocol MSDP 559 ...
Страница 560: ...Figure 86 Configuring PIM in Multiple Routing Domains 560 Multicast Source Discovery Protocol MSDP ...
Страница 564: ...Figure 88 MSDP Default Peer Scenario 2 564 Multicast Source Discovery Protocol MSDP ...
Страница 565: ...Figure 89 MSDP Default Peer Scenario 3 Multicast Source Discovery Protocol MSDP 565 ...
Страница 729: ...protocol spanning tree pvst no disable vlan 300 bridge priority 4096 Per VLAN Spanning Tree Plus PVST 729 ...
Страница 841: ...Figure 115 Single and Double Tag TPID Match Service Provider Bridging 841 ...
Страница 842: ...Figure 116 Single and Double Tag First byte TPID Match 842 Service Provider Bridging ...