mirror of
https://git.kernel.org/pub/scm/network/wireless/iwd.git
synced 2024-11-05 11:39:24 +01:00
575 lines
12 KiB
C
575 lines
12 KiB
C
/*
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*
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* Wireless daemon for Linux
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*
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* Copyright (C) 2013-2014 Intel Corporation. All rights reserved.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*/
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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 <string.h>
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#include <stdio.h>
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#include <errno.h>
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#include <ell/ell.h>
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#include "eap.h"
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struct l_queue *eap_methods;
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struct eap_state {
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eap_tx_packet_func_t tx_packet;
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eap_key_material_func_t set_key_material;
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eap_complete_func_t complete;
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void *user_data;
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size_t mtu;
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struct eap_method *method;
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char *identity;
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int last_id;
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void *method_state;
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bool method_success;
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struct l_timeout *complete_timeout;
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};
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struct eap_state *eap_new(eap_tx_packet_func_t tx_packet,
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eap_complete_func_t complete, void *user_data)
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{
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struct eap_state *eap;
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eap = l_new(struct eap_state, 1);
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eap->last_id = -1;
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eap->mtu = 1024;
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eap->tx_packet = tx_packet;
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eap->complete = complete;
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eap->user_data = user_data;
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return eap;
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}
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/*
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* Setting a non-NULL set_key_material callback for this EAP instance will
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* disable the legacy methods that don't generate key material, such
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* as EAP-MD5.
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*/
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void eap_set_key_material_func(struct eap_state *eap,
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eap_key_material_func_t func)
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{
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eap->set_key_material = func;
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}
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void eap_free(struct eap_state *eap)
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{
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if (eap->method_state)
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eap->method->remove(eap);
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if (eap->identity)
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l_free(eap->identity);
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l_timeout_remove(eap->complete_timeout);
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l_free(eap);
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}
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/* Note: callers must check for a minimum value */
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void eap_set_mtu(struct eap_state *eap, size_t mtu)
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{
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eap->mtu = mtu;
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}
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size_t eap_get_mtu(struct eap_state *eap)
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{
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return eap->mtu;
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}
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void eap_send_response(struct eap_state *eap,
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enum eap_request_type request_type,
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uint8_t *buf, size_t len)
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{
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buf[0] = EAP_CODE_RESPONSE;
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buf[1] = eap->last_id;
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l_put_be16(len, &buf[2]);
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buf[4] = request_type;
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eap->tx_packet(buf, len, eap->user_data);
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}
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static void eap_complete_timeout(struct l_timeout *timeout, void *user_data)
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{
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struct eap_state *eap = user_data;
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eap->complete_timeout = NULL;
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eap->complete(eap->method_success ? EAP_RESULT_SUCCESS :
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EAP_RESULT_TIMEOUT, eap->user_data);
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}
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void eap_start_complete_timeout(struct eap_state *eap)
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{
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if (eap->complete_timeout)
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l_timeout_remove(eap->complete_timeout);
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eap->complete_timeout = l_timeout_create(5, eap_complete_timeout,
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eap, NULL);
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}
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static void eap_send_identity_response(struct eap_state *eap, char *identity)
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{
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int len = identity ? strlen(identity) : 0;
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uint8_t buf[5 + len];
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if (!identity)
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identity = "";
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memcpy(buf + 5, identity, len);
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eap_send_response(eap, EAP_TYPE_IDENTITY, buf, len + 5);
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}
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static void eap_handle_request(struct eap_state *eap,
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const uint8_t *pkt, size_t len)
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{
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enum eap_request_type type;
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uint8_t buf[10];
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int buf_len;
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if (len < 1)
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/* Invalid packets to be ignored */
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return;
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type = pkt[0];
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if (type >= __EAP_TYPE_MIN_METHOD) {
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if (!eap->method || type != eap->method->request_type) {
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l_warn("EAP server tried method %i while client was "
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"configured for method %i",
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type, eap->method->request_type);
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goto unsupported_method;
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}
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eap->method->handle_request(eap, pkt + 1, len - 1);
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return;
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}
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switch (type) {
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case EAP_TYPE_IDENTITY:
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if (len >= 2)
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l_warn("EAP identity prompt: \"%.*s\"",
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(int) len - 1, buf + 1);
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eap_send_identity_response(eap, eap->identity);
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return;
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case EAP_TYPE_NOTIFICATION:
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if (len < 2)
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/* Invalid packets to be ignored */
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return;
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l_warn("EAP notification: \"%.*s\"", (int) len - 1, buf + 1);
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eap_send_response(eap, EAP_TYPE_NOTIFICATION, buf, 5);
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return;
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default:
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unsupported_method:
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/* Send a legacy NAK response */
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buf_len = 5;
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buf[buf_len++] = eap->method ? eap->method->request_type : 0;
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eap_send_response(eap, EAP_TYPE_NAK, buf, buf_len);
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return;
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}
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}
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void eap_rx_packet(struct eap_state *eap, const uint8_t *pkt, size_t len)
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{
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uint8_t code, id;
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uint16_t eap_len;
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if (len < 4 || l_get_be16(&pkt[2]) < 4 || len < l_get_be16(&pkt[2]))
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/* Invalid packets to be silently discarded */
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return;
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code = pkt[0];
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id = pkt[1];
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eap_len = l_get_be16(&pkt[2]);
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switch ((enum eap_pkt_code) code) {
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case EAP_CODE_REQUEST:
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if (id == eap->last_id) {
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/*
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* We should resend the last response if this ever
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* happens and if one was sent already. This can
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* happen if the request_credentials callback needs
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* to wait for user input. We can assume a reliable
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* lower layer but the retransmission behaviour is
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* decided by the authenticator (Section 4.3).
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*/
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return;
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}
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eap->last_id = id;
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eap_handle_request(eap, pkt + 4, eap_len - 4);
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return;
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case EAP_CODE_FAILURE:
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case EAP_CODE_SUCCESS:
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l_timeout_remove(eap->complete_timeout);
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eap->complete_timeout = NULL;
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/* Section 4.2 */
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if (id != eap->last_id)
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return;
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if (eap_len != 4)
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/* Invalid packets to be silently discarded */
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return;
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if (code == EAP_CODE_SUCCESS && !eap->method_success)
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/* "Canned" success packets to be discarded */
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return;
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if (code == EAP_CODE_FAILURE && eap->method_success)
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/*
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* "On the peer, after success result indications have
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* been exchanged by both sides, a Failure packet MUST
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* be silently discarded."
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*
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* "Where the peer authenticates successfully to the
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* authenticator, but the authenticator does not send
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* a result indication, the authenticator MAY deny
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* access by sending a Failure packet where the peer
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* is not currently authorized for network access."
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* -- eap->method_success implies we've received
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* a full result indication.
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*/
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return;
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if (eap->method_state)
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eap->method->remove(eap);
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eap->method = NULL;
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eap->complete(code == EAP_CODE_SUCCESS ? EAP_RESULT_SUCCESS :
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EAP_RESULT_FAIL, eap->user_data);
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return;
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default:
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/* Invalid packets to be silently discarded */
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return;
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}
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}
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bool eap_load_settings(struct eap_state *eap, struct l_settings *settings,
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const char *prefix)
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{
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char setting[64];
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const char *method_name;
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const struct l_queue_entry *entry;
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struct eap_method *method;
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snprintf(setting, sizeof(setting), "%sMethod", prefix);
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method_name = l_settings_get_value(settings, "Security", setting);
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if (!method_name)
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return false;
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for (entry = l_queue_get_entries(eap_methods); entry;
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entry = entry->next) {
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method = entry->data;
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if (method->probe(eap, method_name) == 0) {
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eap->method = method;
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break;
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}
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}
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if (!eap->method)
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return false;
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/* Check if selected method is suitable for 802.1x */
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if (eap->set_key_material && !eap->method->exports_msk) {
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l_error("EAP method \"%s\" doesn't export key material",
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method_name);
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goto err;
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}
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snprintf(setting, sizeof(setting), "%sIdentity", prefix);
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eap->identity = l_strdup(l_settings_get_value(settings,
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"Security", setting));
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if (!eap->identity) {
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l_error("EAP Identity is missing");
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goto err;
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}
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if (!eap->method->load_settings)
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return true;
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if (!eap->method->load_settings(eap, settings, prefix))
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goto err;
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return true;
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err:
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if (eap->method->remove)
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eap->method->remove(eap);
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eap->method = NULL;
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return false;
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}
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void eap_set_data(struct eap_state *eap, void *data)
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{
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eap->method_state = data;
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}
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void *eap_get_data(struct eap_state *eap)
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{
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return eap->method_state;
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}
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void eap_set_key_material(struct eap_state *eap,
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const uint8_t *msk_data, size_t msk_len,
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const uint8_t *emsk_data, size_t emsk_len,
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const uint8_t *iv, size_t iv_len)
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{
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if (!eap->set_key_material)
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return;
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eap->set_key_material(msk_data, msk_len, emsk_data, emsk_len,
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iv, iv_len, eap->user_data);
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}
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void eap_method_success(struct eap_state *eap)
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{
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eap->method_success = true;
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}
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void eap_method_error(struct eap_state *eap)
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{
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/*
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* It looks like neither EAP nor EAP-TLS specify the error handling
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* behavior.
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*/
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eap->complete(EAP_RESULT_FAIL, eap->user_data);
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}
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void eap_save_last_id(struct eap_state *eap, uint8_t *last_id)
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{
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*last_id = eap->last_id;
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}
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void eap_restore_last_id(struct eap_state *eap, uint8_t last_id)
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{
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eap->last_id = last_id;
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}
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int eap_register_method(struct eap_method *method)
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{
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l_queue_push_head(eap_methods, method);
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return 0;
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}
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int eap_unregister_method(struct eap_method *method)
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{
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bool r;
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r = l_queue_remove(eap_methods, method);
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if (r)
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return 0;
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return -ENOENT;
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}
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static void __eap_method_enable(struct eap_method_desc *start,
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struct eap_method_desc *stop)
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{
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struct eap_method_desc *desc;
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l_debug("");
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if (start == NULL || stop == NULL)
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return;
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for (desc = start; desc < stop; desc++) {
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if (!desc->init)
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continue;
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desc->init();
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}
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}
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static void __eap_method_disable(struct eap_method_desc *start,
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struct eap_method_desc *stop)
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{
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struct eap_method_desc *desc;
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l_debug("");
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if (start == NULL || stop == NULL)
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return;
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for (desc = start; desc < stop; desc++) {
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if (!desc->exit)
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continue;
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desc->exit();
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}
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}
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extern struct eap_method_desc __start___eap[];
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extern struct eap_method_desc __stop___eap[];
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void eap_init(void)
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{
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eap_methods = l_queue_new();
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__eap_method_enable(__start___eap, __stop___eap);
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}
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void eap_exit(void)
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{
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__eap_method_disable(__start___eap, __stop___eap);
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l_queue_destroy(eap_methods, NULL);
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}
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struct eap_md5_state {
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char *secret;
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};
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static int eap_md5_probe(struct eap_state *eap, const char *name)
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{
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if (strcasecmp(name, "MD5"))
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return -ENOTSUP;
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eap->method_state = l_new(struct eap_md5_state, 1);
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return 0;
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}
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static void eap_md5_remove(struct eap_state *eap)
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{
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struct eap_md5_state *md5 = eap_get_data(eap);
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eap_set_data(eap, NULL);
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l_free(md5->secret);
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l_free(md5);
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}
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static void eap_md5_handle_request(struct eap_state *eap,
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const uint8_t *pkt, size_t len)
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{
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struct eap_md5_state *md5 = eap_get_data(eap);
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const uint8_t *value;
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struct l_checksum *hash;
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uint8_t identifier, response[5 + 1 + 16];
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if (len < 1 || len < (size_t) pkt[0] + 1 || pkt[0] < 1) {
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l_error("EAP-MD5 request too short");
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goto err;
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}
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value = pkt + 1;
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hash = l_checksum_new(L_CHECKSUM_MD5);
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if (!hash) {
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l_error("Can't create the MD5 checksum");
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goto err;
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}
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eap_save_last_id(eap, &identifier);
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l_checksum_update(hash, &identifier, 1);
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l_checksum_update(hash, md5->secret, strlen(md5->secret));
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l_checksum_update(hash, value, pkt[0]);
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response[5] = 16;
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l_checksum_get_digest(hash, response + 6, 16);
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l_checksum_free(hash);
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eap_send_response(eap, EAP_TYPE_MD5_CHALLENGE,
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response, sizeof(response));
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/* We have no choice but to call it a success */
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eap_method_success(eap);
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return;
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err:
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eap_method_error(eap);
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}
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static bool eap_md5_load_settings(struct eap_state *eap,
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struct l_settings *settings,
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const char *prefix)
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{
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struct eap_md5_state *md5 = eap_get_data(eap);
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char setting[64];
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snprintf(setting, sizeof(setting), "%sMD5-Secret", prefix);
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md5->secret = l_strdup(l_settings_get_value(settings,
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"Security", setting));
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if (!md5->secret) {
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l_error("EAP-MD5 secret is missing");
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return false;
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}
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return true;
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}
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static struct eap_method eap_md5 = {
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.request_type = EAP_TYPE_MD5_CHALLENGE,
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.exports_msk = false,
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.name = "MD5",
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.probe = eap_md5_probe,
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.remove = eap_md5_remove,
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.handle_request = eap_md5_handle_request,
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.load_settings = eap_md5_load_settings,
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};
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static int eap_md5_init(void)
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{
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l_debug("");
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return eap_register_method(&eap_md5);
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}
|
|
|
|
static void eap_md5_exit(void)
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|
{
|
|
l_debug("");
|
|
eap_unregister_method(&eap_md5);
|
|
}
|
|
|
|
EAP_METHOD_BUILTIN(eap_md5, eap_md5_init, eap_md5_exit)
|