Type 4 5 6 9 13 15 17 21 in .NET

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Table 10.2 Type 4 5 6 9 13 15 17 21
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Popular EAP method types Type 23 25 26 32 38 43 46 191 192 255 Type UMTS Authentication and key agreement PEAP MS-EAP Authentication Secur ID EAP EAP-HTTP Digest EAP-FAST Available via review by Designated expert Reserved + Experimental
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Method MD5-challenge One-Time password Generic Token Card (GTC) RSA Public Key Authentication EAP-TLS RSA security Secur ID EAP EAP-Cisco Wireless (LEAP) EAP-TTLS
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The request message carries a challenge, while the response either carries a reply to challenge (type 4) or a NAK (type 3) if the peer does not accept the MD5-challenge as authentication mechanism. Type value 5 indicates that messaging relates to one-time passwords (OTPs). We explained OTPs in 2. Here, the request contains an OTP challenge, while the response includes a reply. Type value 6 indicates that messaging relates to authentication method using a generic token card implementation that requires user input. The request contains a displayable message and the response contains the token card information necessary for authentication. In the remainder of this chapter we will explain how some of the more sophisticated authentication methods work. However, before doing that it is useful to go through how the EAP framework is used to carry a generic authentication method both in order to understand the remainder of the chapter better and to help the reader with her own design of future EAP authentication methods.
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10.3 EAP-XXX
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The EAP framework is simply a facilitator for providing a forum that allows the peer and the EAP server to negotiate the authentication method and later perform the authentication exchange itself through a dumb proxy authenticator (NAS). The EAP itself does not perform the actual authentication; rather, EAP is augmented with an authentication method that has its own requirements and procedures. EAP request and response messages are used to carry the information required for this authentication method between the peer and the server until the EAP server indicates to the NAS success or failure for the authentication process. In this section we will explain the mechanics of carrying the messages for a generic authentication method. Let us say that during the initial EAP request and response exchange, the peer and the EAP server agree to choose the authentication method XXX, which may or may not be a mutual authentication process. When EAP is deployed to help the peer and the authentication server to perform authentication mechanism XXX, it is customary to say that an EAP-XXX authentication has been performed, where XXX is the actual authentication method, whose exchanges are carried over EAP messages. Examples of EAP-XXX are EAP-TLS, EAP-TTLS and EAP-SIM. Also Cisco has provided LEAP (lightweight EAP) and PEAP (protected EAP). We will come back to these processes later on. But for now let us see how generic EAP-XXX messages are treated in the EAP framework. Figure 10.4 shows how method-specific messages for authentication method XXX are carried over EAP. As the message arrives at the lower layers and is delivered to the EAP processing entity, based on the code field in the EAP message, the entity knows what sort of EAP message (request, response, etc.) it has received. When the EAP packet is a request or response and includes a type field, based on the type field, the EAP entity knows what authentication method has to be performed and delivers the message to the process designated for that authentication method. In cases, where the identity has been exchanged through an earlier EAP-Identity request/response process, the identity may be passed to the authentication method processor. The final EAP success or failure messages do not include any type field and hence can be processed by a generic EAP entity, such as a NAS. This is a powerful feature, since it allows
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