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6bda3d1515
Code value 0 is not assigned, and the code block guarded by the if() is specific to Request (1) and Response (2) only. This change prevents the printer from decoding some invalid EAP messages as if they were valid. [skip ci]
295 lines
9.1 KiB
C
295 lines
9.1 KiB
C
/*
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* Copyright (c) 2004 - Michael Richardson <mcr@xelerance.com>
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that: (1) source code distributions
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* retain the above copyright notice and this paragraph in its entirety, (2)
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* distributions including binary code include the above copyright notice and
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* this paragraph in its entirety in the documentation or other materials
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* provided with the distribution, and (3) all advertising materials mentioning
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* features or use of this software display the following acknowledgement:
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* ``This product includes software developed by the University of California,
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* Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
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* the University nor the names of its contributors may be used to endorse
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* or promote products derived from this software without specific prior
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* written permission.
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* THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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*/
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/* \summary: Extensible Authentication Protocol (EAP) printer */
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include "netdissect-stdinc.h"
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#include "netdissect.h"
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#include "extract.h"
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#define EAP_FRAME_TYPE_PACKET 0
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#define EAP_FRAME_TYPE_START 1
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#define EAP_FRAME_TYPE_LOGOFF 2
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#define EAP_FRAME_TYPE_KEY 3
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#define EAP_FRAME_TYPE_ENCAP_ASF_ALERT 4
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struct eap_frame_t {
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nd_uint8_t version;
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nd_uint8_t type;
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nd_uint16_t length;
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};
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static const struct tok eap_frame_type_values[] = {
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{ EAP_FRAME_TYPE_PACKET, "EAP packet" },
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{ EAP_FRAME_TYPE_START, "EAPOL start" },
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{ EAP_FRAME_TYPE_LOGOFF, "EAPOL logoff" },
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{ EAP_FRAME_TYPE_KEY, "EAPOL key" },
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{ EAP_FRAME_TYPE_ENCAP_ASF_ALERT, "Encapsulated ASF alert" },
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{ 0, NULL}
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};
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/* RFC 3748 */
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struct eap_packet_t {
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nd_uint8_t code;
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nd_uint8_t id;
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nd_uint16_t length;
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};
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#define EAP_REQUEST 1
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#define EAP_RESPONSE 2
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#define EAP_SUCCESS 3
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#define EAP_FAILURE 4
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static const struct tok eap_code_values[] = {
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{ EAP_REQUEST, "Request" },
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{ EAP_RESPONSE, "Response" },
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{ EAP_SUCCESS, "Success" },
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{ EAP_FAILURE, "Failure" },
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{ 0, NULL}
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};
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#define EAP_TYPE_NO_PROPOSED 0
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#define EAP_TYPE_IDENTITY 1
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#define EAP_TYPE_NOTIFICATION 2
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#define EAP_TYPE_NAK 3
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#define EAP_TYPE_MD5_CHALLENGE 4
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#define EAP_TYPE_OTP 5
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#define EAP_TYPE_GTC 6
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#define EAP_TYPE_TLS 13 /* RFC 2716 */
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#define EAP_TYPE_SIM 18 /* RFC 4186 */
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#define EAP_TYPE_TTLS 21 /* draft-funk-eap-ttls-v0-01.txt */
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#define EAP_TYPE_AKA 23 /* RFC 4187 */
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#define EAP_TYPE_FAST 43 /* RFC 4851 */
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#define EAP_TYPE_EXPANDED_TYPES 254
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#define EAP_TYPE_EXPERIMENTAL 255
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static const struct tok eap_type_values[] = {
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{ EAP_TYPE_NO_PROPOSED, "No proposed" },
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{ EAP_TYPE_IDENTITY, "Identity" },
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{ EAP_TYPE_NOTIFICATION, "Notification" },
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{ EAP_TYPE_NAK, "Nak" },
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{ EAP_TYPE_MD5_CHALLENGE, "MD5-challenge" },
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{ EAP_TYPE_OTP, "OTP" },
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{ EAP_TYPE_GTC, "GTC" },
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{ EAP_TYPE_TLS, "TLS" },
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{ EAP_TYPE_SIM, "SIM" },
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{ EAP_TYPE_TTLS, "TTLS" },
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{ EAP_TYPE_AKA, "AKA" },
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{ EAP_TYPE_FAST, "FAST" },
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{ EAP_TYPE_EXPANDED_TYPES, "Expanded types" },
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{ EAP_TYPE_EXPERIMENTAL, "Experimental" },
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{ 0, NULL}
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};
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#define EAP_TLS_EXTRACT_BIT_L(x) (((x)&0x80)>>7)
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/* RFC 2716 - EAP TLS bits */
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#define EAP_TLS_FLAGS_LEN_INCLUDED (1 << 7)
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#define EAP_TLS_FLAGS_MORE_FRAGMENTS (1 << 6)
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#define EAP_TLS_FLAGS_START (1 << 5)
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static const struct tok eap_tls_flags_values[] = {
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{ EAP_TLS_FLAGS_LEN_INCLUDED, "L bit" },
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{ EAP_TLS_FLAGS_MORE_FRAGMENTS, "More fragments bit"},
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{ EAP_TLS_FLAGS_START, "Start bit"},
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{ 0, NULL}
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};
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#define EAP_TTLS_VERSION(x) ((x)&0x07)
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/* EAP-AKA and EAP-SIM - RFC 4187 */
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#define EAP_AKA_CHALLENGE 1
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#define EAP_AKA_AUTH_REJECT 2
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#define EAP_AKA_SYNC_FAILURE 4
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#define EAP_AKA_IDENTITY 5
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#define EAP_SIM_START 10
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#define EAP_SIM_CHALLENGE 11
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#define EAP_AKA_NOTIFICATION 12
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#define EAP_AKA_REAUTH 13
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#define EAP_AKA_CLIENT_ERROR 14
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static const struct tok eap_aka_subtype_values[] = {
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{ EAP_AKA_CHALLENGE, "Challenge" },
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{ EAP_AKA_AUTH_REJECT, "Auth reject" },
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{ EAP_AKA_SYNC_FAILURE, "Sync failure" },
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{ EAP_AKA_IDENTITY, "Identity" },
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{ EAP_SIM_START, "Start" },
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{ EAP_SIM_CHALLENGE, "Challenge" },
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{ EAP_AKA_NOTIFICATION, "Notification" },
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{ EAP_AKA_REAUTH, "Reauth" },
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{ EAP_AKA_CLIENT_ERROR, "Client error" },
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{ 0, NULL}
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};
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/*
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* Print EAP requests / responses
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*/
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void
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eap_print(netdissect_options *ndo,
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const u_char *cp,
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u_int length)
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{
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const struct eap_frame_t *eap;
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const u_char *tptr;
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u_int eap_type, tlen, type, subtype;
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int count=0, len;
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ndo->ndo_protocol = "eap";
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tptr = cp;
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tlen = length;
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eap = (const struct eap_frame_t *)cp;
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ND_TCHECK_SIZE(eap);
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eap_type = EXTRACT_U_1(eap->type);
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ND_PRINT("%s (%u) v%u, len %u",
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tok2str(eap_frame_type_values, "unknown", eap_type),
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eap_type,
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EXTRACT_U_1(eap->version),
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EXTRACT_BE_U_2(eap->length));
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if (ndo->ndo_vflag < 1)
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return;
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tptr += sizeof(struct eap_frame_t);
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tlen -= sizeof(struct eap_frame_t);
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switch (eap_type) {
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case EAP_FRAME_TYPE_PACKET:
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ND_TCHECK_1(tptr);
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type = EXTRACT_U_1(tptr);
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ND_TCHECK_2(tptr + 2);
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len = EXTRACT_BE_U_2(tptr + 2);
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ND_PRINT(", %s (%u), id %u, len %u",
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tok2str(eap_code_values, "unknown", type),
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type,
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EXTRACT_U_1((tptr + 1)),
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len);
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ND_TCHECK_LEN(tptr, len);
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if (type == EAP_REQUEST || type == EAP_RESPONSE) {
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/* RFC 3748 Section 4.1 */
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ND_TCHECK_1(tptr + 4);
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subtype = EXTRACT_U_1(tptr + 4);
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ND_PRINT("\n\t\t Type %s (%u)",
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tok2str(eap_type_values, "unknown", subtype),
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subtype);
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switch (subtype) {
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case EAP_TYPE_IDENTITY:
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if (len - 5 > 0) {
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ND_PRINT(", Identity: ");
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(void)nd_printzp(ndo, tptr + 5, len - 5, NULL);
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}
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break;
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case EAP_TYPE_NOTIFICATION:
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if (len - 5 > 0) {
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ND_PRINT(", Notification: ");
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(void)nd_printzp(ndo, tptr + 5, len - 5, NULL);
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}
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break;
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case EAP_TYPE_NAK:
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count = 5;
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/*
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* one or more octets indicating
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* the desired authentication
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* type one octet per type
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*/
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while (count < len) {
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ND_TCHECK_1(tptr + count);
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ND_PRINT(" %s (%u),",
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tok2str(eap_type_values, "unknown", EXTRACT_U_1((tptr + count))),
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EXTRACT_U_1(tptr + count));
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count++;
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}
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break;
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case EAP_TYPE_TTLS:
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case EAP_TYPE_TLS:
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ND_TCHECK_1(tptr + 5);
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if (subtype == EAP_TYPE_TTLS)
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ND_PRINT(" TTLSv%u",
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EAP_TTLS_VERSION(EXTRACT_U_1((tptr + 5))));
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ND_PRINT(" flags [%s] 0x%02x,",
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bittok2str(eap_tls_flags_values, "none", EXTRACT_U_1((tptr + 5))),
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EXTRACT_U_1(tptr + 5));
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if (EAP_TLS_EXTRACT_BIT_L(EXTRACT_U_1(tptr + 5))) {
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ND_TCHECK_4(tptr + 6);
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ND_PRINT(" len %u", EXTRACT_BE_U_4(tptr + 6));
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}
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break;
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case EAP_TYPE_FAST:
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ND_TCHECK_1(tptr + 5);
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ND_PRINT(" FASTv%u",
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EAP_TTLS_VERSION(EXTRACT_U_1((tptr + 5))));
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ND_PRINT(" flags [%s] 0x%02x,",
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bittok2str(eap_tls_flags_values, "none", EXTRACT_U_1((tptr + 5))),
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EXTRACT_U_1(tptr + 5));
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if (EAP_TLS_EXTRACT_BIT_L(EXTRACT_U_1(tptr + 5))) {
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ND_TCHECK_4(tptr + 6);
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ND_PRINT(" len %u", EXTRACT_BE_U_4(tptr + 6));
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}
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/* FIXME - TLV attributes follow */
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break;
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case EAP_TYPE_AKA:
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case EAP_TYPE_SIM:
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ND_TCHECK_1(tptr + 5);
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ND_PRINT(" subtype [%s] 0x%02x,",
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tok2str(eap_aka_subtype_values, "unknown", EXTRACT_U_1((tptr + 5))),
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EXTRACT_U_1(tptr + 5));
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/* FIXME - TLV attributes follow */
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break;
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case EAP_TYPE_MD5_CHALLENGE:
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case EAP_TYPE_OTP:
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case EAP_TYPE_GTC:
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case EAP_TYPE_EXPANDED_TYPES:
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case EAP_TYPE_EXPERIMENTAL:
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default:
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break;
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}
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}
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break;
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case EAP_FRAME_TYPE_LOGOFF:
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case EAP_FRAME_TYPE_ENCAP_ASF_ALERT:
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default:
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break;
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}
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return;
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trunc:
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nd_print_trunc(ndo);
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}
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