mirror of
https://github.com/vanhoefm/fragattacks.git
synced 2024-11-29 18:58:21 -05:00
420 lines
8.2 KiB
C
420 lines
8.2 KiB
C
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/*
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* IEEE 802.1X-2010 Key Agree Protocol of PAE state machine
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* Copyright (c) 2013, Qualcomm Atheros, Inc.
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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 IEEE802_1X_KAY_I_H
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#define IEEE802_1X_KAY_I_H
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#include "utils/list.h"
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#include "common/defs.h"
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#include "common/ieee802_1x_defs.h"
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#define MKA_VERSION_ID 1
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/* IEEE Std 802.1X-2010, 11.11.1, Table 11-7 */
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enum mka_packet_type {
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MKA_BASIC_PARAMETER_SET = MKA_VERSION_ID,
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MKA_LIVE_PEER_LIST = 1,
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MKA_POTENTIAL_PEER_LIST = 2,
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MKA_SAK_USE = 3,
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MKA_DISTRIBUTED_SAK = 4,
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MKA_DISTRIBUTED_CAK = 5,
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MKA_KMD = 6,
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MKA_ANNOUNCEMENT = 7,
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MKA_ICV_INDICATOR = 255
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};
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#define ICV_LEN 16 /* 16 bytes */
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#define SAK_WRAPPED_LEN 24
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/* KN + Wrapper SAK */
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#define DEFAULT_DIS_SAK_BODY_LENGTH (SAK_WRAPPED_LEN + 4)
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#define MAX_RETRY_CNT 5
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struct ieee802_1x_kay;
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struct ieee802_1x_mka_peer_id {
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u8 mi[MI_LEN];
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u32 mn;
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};
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struct ieee802_1x_kay_peer {
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struct ieee802_1x_mka_sci sci;
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u8 mi[MI_LEN];
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u32 mn;
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time_t expire;
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Boolean is_key_server;
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u8 key_server_priority;
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Boolean macsec_desired;
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enum macsec_cap macsec_capbility;
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Boolean sak_used;
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struct dl_list list;
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};
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struct key_conf {
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u8 *key;
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struct ieee802_1x_mka_ki ki;
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enum confidentiality_offset offset;
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u8 an;
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Boolean tx;
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Boolean rx;
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int key_len; /* unit: byte */
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};
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struct data_key {
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u8 *key;
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int key_len;
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struct ieee802_1x_mka_ki key_identifier;
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enum confidentiality_offset confidentiality_offset;
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u8 an;
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Boolean transmits;
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Boolean receives;
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struct os_time created_time;
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u32 next_pn;
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/* not defined data */
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Boolean rx_latest;
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Boolean tx_latest;
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int user; /* FIXME: to indicate if it can be delete safely */
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struct dl_list list;
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};
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/* TransmitSC in IEEE Std 802.1AE-2006, Figure 10-6 */
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struct transmit_sc {
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struct ieee802_1x_mka_sci sci; /* const SCI sci */
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Boolean transmitting; /* bool transmitting (read only) */
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struct os_time created_time; /* Time createdTime */
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u8 encoding_sa; /* AN encodingSA (read only) */
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u8 enciphering_sa; /* AN encipheringSA (read only) */
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/* not defined data */
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unsigned int channel;
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struct dl_list list;
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struct dl_list sa_list;
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};
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/* TransmitSA in IEEE Std 802.1AE-2006, Figure 10-6 */
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struct transmit_sa {
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Boolean in_use; /* bool inUse (read only) */
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u32 next_pn; /* PN nextPN (read only) */
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struct os_time created_time; /* Time createdTime */
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Boolean enable_transmit; /* bool EnableTransmit */
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u8 an;
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Boolean confidentiality;
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struct data_key *pkey;
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struct transmit_sc *sc;
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struct dl_list list; /* list entry in struct transmit_sc::sa_list */
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};
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/* ReceiveSC in IEEE Std 802.1AE-2006, Figure 10-6 */
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struct receive_sc {
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struct ieee802_1x_mka_sci sci; /* const SCI sci */
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Boolean receiving; /* bool receiving (read only) */
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struct os_time created_time; /* Time createdTime */
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unsigned int channel;
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struct dl_list list;
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struct dl_list sa_list;
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};
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/* ReceiveSA in IEEE Std 802.1AE-2006, Figure 10-6 */
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struct receive_sa {
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Boolean enable_receive; /* bool enableReceive */
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Boolean in_use; /* bool inUse (read only) */
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u32 next_pn; /* PN nextPN (read only) */
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u32 lowest_pn; /* PN lowestPN (read only) */
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u8 an;
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struct os_time created_time;
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struct data_key *pkey;
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struct receive_sc *sc; /* list entry in struct receive_sc::sa_list */
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struct dl_list list;
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};
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struct macsec_ciphersuite {
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u8 id[CS_ID_LEN];
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char name[32];
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enum macsec_cap capable;
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int sak_len; /* unit: byte */
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u32 index;
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};
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struct mka_alg {
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u8 parameter[4];
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size_t cak_len;
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size_t kek_len;
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size_t ick_len;
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size_t icv_len;
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int (*cak_trfm)(const u8 *msk, const u8 *mac1, const u8 *mac2, u8 *cak);
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int (*ckn_trfm)(const u8 *msk, const u8 *mac1, const u8 *mac2,
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const u8 *sid, size_t sid_len, u8 *ckn);
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int (*kek_trfm)(const u8 *cak, const u8 *ckn, size_t ckn_len, u8 *kek);
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int (*ick_trfm)(const u8 *cak, const u8 *ckn, size_t ckn_len, u8 *ick);
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int (*icv_hash)(const u8 *ick, const u8 *msg, size_t msg_len, u8 *icv);
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int index; /* index for configuring */
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};
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#define DEFAULT_MKA_ALG_INDEX 0
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/* See IEEE Std 802.1X-2010, 9.16 MKA management */
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struct ieee802_1x_mka_participant {
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/* used for active and potential participant */
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struct mka_key_name ckn;
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struct mka_key cak;
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Boolean cached;
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/* used by management to monitor and control activation */
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Boolean active;
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Boolean participant;
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Boolean retain;
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enum { DEFAULT, DISABLED, ON_OPER_UP, ALWAYS } activate;
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/* used for active participant */
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Boolean principal;
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struct dl_list live_peers;
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struct dl_list potential_peers;
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/* not defined in IEEE 802.1X */
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struct dl_list list;
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struct mka_key kek;
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struct mka_key ick;
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struct ieee802_1x_mka_ki lki;
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u8 lan;
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Boolean ltx;
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Boolean lrx;
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struct ieee802_1x_mka_ki oki;
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u8 oan;
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Boolean otx;
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Boolean orx;
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Boolean is_key_server;
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Boolean is_obliged_key_server;
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Boolean can_be_key_server;
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Boolean is_elected;
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struct dl_list sak_list;
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struct dl_list rxsc_list;
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struct transmit_sc *txsc;
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u8 mi[MI_LEN];
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u32 mn;
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struct ieee802_1x_mka_peer_id current_peer_id;
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struct ieee802_1x_mka_sci current_peer_sci;
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time_t cak_life;
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time_t mka_life;
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Boolean to_dist_sak;
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Boolean to_use_sak;
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Boolean new_sak;
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Boolean advised_desired;
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enum macsec_cap advised_capability;
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struct data_key *new_key;
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u32 retry_count;
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struct ieee802_1x_kay *kay;
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};
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struct ieee802_1x_mka_hdr {
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/* octet 1 */
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u32 type:8;
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/* octet 2 */
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u32 reserve:8;
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 reserve1:4;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 reserve1:4;
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u32 length:4;
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#else
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#error "Please fix <bits/endian.h>"
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#endif
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/* octet 4 */
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u32 length1:8;
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};
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#define MKA_HDR_LEN sizeof(struct ieee802_1x_mka_hdr)
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struct ieee802_1x_mka_basic_body {
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/* octet 1 */
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u32 version:8;
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/* octet 2 */
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u32 priority:8;
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 macsec_capbility:2;
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u32 macsec_desired:1;
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u32 key_server:1;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 key_server:1;
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u32 macsec_desired:1;
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u32 macsec_capbility:2;
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u32 length:4;
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#endif
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/* octet 4 */
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u32 length1:8;
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struct ieee802_1x_mka_sci actor_sci;
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u8 actor_mi[MI_LEN];
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u32 actor_mn;
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u8 algo_agility[4];
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/* followed by CAK Name*/
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u8 ckn[0];
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};
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struct ieee802_1x_mka_peer_body {
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/* octet 1 */
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u32 type:8;
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/* octet 2 */
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u32 reserve:8;
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 reserve1:4;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 reserve1:4;
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u32 length:4;
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#endif
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/* octet 4 */
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u32 length1:8;
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u8 peer[0];
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/* followed by Peers */
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};
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struct ieee802_1x_mka_sak_use_body {
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/* octet 1 */
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u32 type:8;
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/* octet 2 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 orx:1;
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u32 otx:1;
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u32 oan:2;
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u32 lrx:1;
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u32 ltx:1;
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u32 lan:2;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 lan:2;
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u32 ltx:1;
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u32 lrx:1;
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u32 oan:2;
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u32 otx:1;
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u32 orx:1;
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#endif
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 delay_protect:1;
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u32 reserve:1;
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u32 prx:1;
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u32 ptx:1;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 ptx:1;
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u32 prx:1;
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u32 reserve:1;
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u32 delay_protect:1;
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u32 length:4;
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#endif
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/* octet 4 */
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u32 length1:8;
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/* octet 5 - 16 */
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u8 lsrv_mi[MI_LEN];
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/* octet 17 - 20 */
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u32 lkn;
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/* octet 21 - 24 */
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u32 llpn;
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/* octet 25 - 36 */
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u8 osrv_mi[MI_LEN];
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/* octet 37 - 40 */
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u32 okn;
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/* octet 41 - 44 */
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u32 olpn;
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};
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struct ieee802_1x_mka_dist_sak_body {
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/* octet 1 */
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u32 type:8;
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/* octet 2 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 reserve:4;
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u32 confid_offset:2;
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u32 dan:2;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 dan:2;
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u32 confid_offset:2;
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u32 reserve:4;
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#endif
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 reserve1:4;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 reserve1:4;
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u32 length:4;
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#endif
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/* octet 4 */
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u32 length1:8;
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/* octet 5 - 8 */
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u32 kn;
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/* for GCM-AES-128: octet 9-32: SAK
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* for other cipher suite: octet 9-16: cipher suite id, octet 17-: SAK
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*/
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u8 sak[0];
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};
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struct ieee802_1x_mka_icv_body {
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/* octet 1 */
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u32 type:8;
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/* octet 2 */
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u32 reserve:8;
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/* octet 3 */
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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u32 length:4;
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u32 reserve1:4;
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#elif __BYTE_ORDER == __BIG_ENDIAN
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u32 reserve1:4;
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u32 length:4;
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#endif
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/* octet 4 */
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u32 length1:8;
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/* octet 5 - */
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u8 icv[0];
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};
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#endif /* IEEE802_1X_KAY_I_H */
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