0f3d578efc
Remove the GPL notification text from the files that were initially contributed by myself. Signed-hostap: Jouni Malinen <j@w1.fi>
215 lines
6.1 KiB
C
215 lines
6.1 KiB
C
/*
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* RADIUS authentication server
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* Copyright (c) 2005-2009, 2011, Jouni Malinen <j@w1.fi>
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*
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* This software may be distributed under the terms of the BSD license.
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* See README for more details.
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*/
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#ifndef RADIUS_SERVER_H
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#define RADIUS_SERVER_H
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struct radius_server_data;
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struct eap_user;
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/**
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* struct radius_server_conf - RADIUS server configuration
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*/
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struct radius_server_conf {
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/**
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* auth_port - UDP port to listen to as an authentication server
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*/
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int auth_port;
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/**
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* client_file - RADIUS client configuration file
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*
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* This file contains the RADIUS clients and the shared secret to be
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* used with them in a format where each client is on its own line. The
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* first item on the line is the IPv4 or IPv6 address of the client
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* with an optional address mask to allow full network to be specified
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* (e.g., 192.168.1.2 or 192.168.1.0/24). This is followed by white
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* space (space or tabulator) and the shared secret. Lines starting
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* with '#' are skipped and can be used as comments.
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*/
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char *client_file;
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/**
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* conf_ctx - Context pointer for callbacks
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*
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* This is used as the ctx argument in get_eap_user() calls.
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*/
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void *conf_ctx;
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/**
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* eap_sim_db_priv - EAP-SIM/AKA database context
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*
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* This is passed to the EAP-SIM/AKA server implementation as a
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* callback context.
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*/
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void *eap_sim_db_priv;
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/**
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* ssl_ctx - TLS context
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*
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* This is passed to the EAP server implementation as a callback
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* context for TLS operations.
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*/
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void *ssl_ctx;
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/**
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* pac_opaque_encr_key - PAC-Opaque encryption key for EAP-FAST
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*
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* This parameter is used to set a key for EAP-FAST to encrypt the
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* PAC-Opaque data. It can be set to %NULL if EAP-FAST is not used. If
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* set, must point to a 16-octet key.
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*/
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u8 *pac_opaque_encr_key;
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/**
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* eap_fast_a_id - EAP-FAST authority identity (A-ID)
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*
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* If EAP-FAST is not used, this can be set to %NULL. In theory, this
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* is a variable length field, but due to some existing implementations
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* requiring A-ID to be 16 octets in length, it is recommended to use
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* that length for the field to provide interoperability with deployed
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* peer implementations.
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*/
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u8 *eap_fast_a_id;
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/**
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* eap_fast_a_id_len - Length of eap_fast_a_id buffer in octets
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*/
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size_t eap_fast_a_id_len;
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/**
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* eap_fast_a_id_info - EAP-FAST authority identifier information
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*
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* This A-ID-Info contains a user-friendly name for the A-ID. For
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* example, this could be the enterprise and server names in
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* human-readable format. This field is encoded as UTF-8. If EAP-FAST
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* is not used, this can be set to %NULL.
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*/
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char *eap_fast_a_id_info;
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/**
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* eap_fast_prov - EAP-FAST provisioning modes
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*
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* 0 = provisioning disabled, 1 = only anonymous provisioning allowed,
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* 2 = only authenticated provisioning allowed, 3 = both provisioning
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* modes allowed.
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*/
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int eap_fast_prov;
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/**
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* pac_key_lifetime - EAP-FAST PAC-Key lifetime in seconds
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*
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* This is the hard limit on how long a provisioned PAC-Key can be
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* used.
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*/
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int pac_key_lifetime;
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/**
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* pac_key_refresh_time - EAP-FAST PAC-Key refresh time in seconds
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*
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* This is a soft limit on the PAC-Key. The server will automatically
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* generate a new PAC-Key when this number of seconds (or fewer) of the
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* lifetime remains.
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*/
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int pac_key_refresh_time;
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/**
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* eap_sim_aka_result_ind - EAP-SIM/AKA protected success indication
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*
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* This controls whether the protected success/failure indication
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* (AT_RESULT_IND) is used with EAP-SIM and EAP-AKA.
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*/
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int eap_sim_aka_result_ind;
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/**
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* tnc - Trusted Network Connect (TNC)
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*
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* This controls whether TNC is enabled and will be required before the
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* peer is allowed to connect. Note: This is only used with EAP-TTLS
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* and EAP-FAST. If any other EAP method is enabled, the peer will be
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* allowed to connect without TNC.
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*/
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int tnc;
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/**
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* pwd_group - EAP-pwd D-H group
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*
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* This is used to select which D-H group to use with EAP-pwd.
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*/
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u16 pwd_group;
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/**
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* wps - Wi-Fi Protected Setup context
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*
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* If WPS is used with an external RADIUS server (which is quite
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* unlikely configuration), this is used to provide a pointer to WPS
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* context data. Normally, this can be set to %NULL.
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*/
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struct wps_context *wps;
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/**
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* ipv6 - Whether to enable IPv6 support in the RADIUS server
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*/
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int ipv6;
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/**
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* get_eap_user - Callback for fetching EAP user information
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* @ctx: Context data from conf_ctx
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* @identity: User identity
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* @identity_len: identity buffer length in octets
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* @phase2: Whether this is for Phase 2 identity
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* @user: Data structure for filling in the user information
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* Returns: 0 on success, -1 on failure
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*
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* This is used to fetch information from user database. The callback
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* will fill in information about allowed EAP methods and the user
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* password. The password field will be an allocated copy of the
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* password data and RADIUS server will free it after use.
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*/
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int (*get_eap_user)(void *ctx, const u8 *identity, size_t identity_len,
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int phase2, struct eap_user *user);
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/**
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* eap_req_id_text - Optional data for EAP-Request/Identity
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*
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* This can be used to configure an optional, displayable message that
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* will be sent in EAP-Request/Identity. This string can contain an
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* ASCII-0 character (nul) to separate network infromation per RFC
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* 4284. The actual string length is explicit provided in
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* eap_req_id_text_len since nul character will not be used as a string
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* terminator.
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*/
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const char *eap_req_id_text;
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/**
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* eap_req_id_text_len - Length of eap_req_id_text buffer in octets
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*/
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size_t eap_req_id_text_len;
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/*
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* msg_ctx - Context data for wpa_msg() calls
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*/
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void *msg_ctx;
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#ifdef CONFIG_RADIUS_TEST
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const char *dump_msk_file;
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#endif /* CONFIG_RADIUS_TEST */
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};
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struct radius_server_data *
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radius_server_init(struct radius_server_conf *conf);
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void radius_server_deinit(struct radius_server_data *data);
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int radius_server_get_mib(struct radius_server_data *data, char *buf,
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size_t buflen);
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void radius_server_eap_pending_cb(struct radius_server_data *data, void *ctx);
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#endif /* RADIUS_SERVER_H */
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