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ieee80211_ioctl.h revision 1.24.2.7
      1 /*	$NetBSD: ieee80211_ioctl.h,v 1.24.2.7 2020/04/13 08:05:16 martin Exp $	*/
      2 
      3 /*-
      4  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
      5  *
      6  * Copyright (c) 2001 Atsushi Onoe
      7  * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
      8  * All rights reserved.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     20  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     21  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     22  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     23  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     24  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     25  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     26  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     27  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     28  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     29  *
     30  * $FreeBSD$
     31  */
     32 #ifndef _NET80211_IEEE80211_IOCTL_H_
     33 #define _NET80211_IEEE80211_IOCTL_H_
     34 
     35 /*
     36  * IEEE 802.11 ioctls.
     37  */
     38 #include <sys/ioccom.h>
     39 #include <net/if.h>
     40 #include <net80211/_ieee80211.h>
     41 #include <net80211/ieee80211.h>
     42 #include <net80211/ieee80211_crypto.h>
     43 
     44 /*
     45  * Per/node (station) statistics.
     46  */
     47 struct ieee80211_nodestats {
     48 	uint32_t	ns_rx_data;		/* rx data frames */
     49 	uint32_t	ns_rx_mgmt;		/* rx management frames */
     50 	uint32_t	ns_rx_ctrl;		/* rx control frames */
     51 	uint32_t	ns_rx_ucast;		/* rx unicast frames */
     52 	uint32_t	ns_rx_mcast;		/* rx multi/broadcast frames */
     53 	uint64_t	ns_rx_bytes;		/* rx data count (bytes) */
     54 	uint64_t	ns_rx_beacons;		/* rx beacon frames */
     55 	uint32_t	ns_rx_proberesp;	/* rx probe response frames */
     56 
     57 	uint32_t	ns_rx_dup;		/* rx discard 'cuz dup */
     58 	uint32_t	ns_rx_noprivacy;	/* rx w/ wep but privacy off */
     59 	uint32_t	ns_rx_wepfail;		/* rx wep processing failed */
     60 	uint32_t	ns_rx_demicfail;	/* rx demic failed */
     61 	uint32_t	ns_rx_decap;		/* rx decapsulation failed */
     62 	uint32_t	ns_rx_defrag;		/* rx defragmentation failed */
     63 	uint32_t	ns_rx_disassoc;		/* rx disassociation */
     64 	uint32_t	ns_rx_deauth;		/* rx deauthentication */
     65 	uint32_t	ns_rx_action;		/* rx action */
     66 	uint32_t	ns_rx_decryptcrc;	/* rx decrypt failed on crc */
     67 	uint32_t	ns_rx_unauth;		/* rx on unauthorized port */
     68 	uint32_t	ns_rx_unencrypted;	/* rx unecrypted w/ privacy */
     69 	uint32_t	ns_rx_drop;		/* rx discard other reason */
     70 
     71 	uint32_t	ns_tx_data;		/* tx data frames */
     72 	uint32_t	ns_tx_mgmt;		/* tx management frames */
     73 	uint32_t	ns_tx_ctrl;		/* tx control frames */
     74 	uint32_t	ns_tx_ucast;		/* tx unicast frames */
     75 	uint32_t	ns_tx_mcast;		/* tx multi/broadcast frames */
     76 	uint64_t	ns_tx_bytes;		/* tx data count (bytes) */
     77 	uint32_t	ns_tx_probereq;		/* tx probe request frames */
     78 
     79 	uint32_t	ns_tx_novlantag;	/* tx discard 'cuz no tag */
     80 	uint32_t	ns_tx_vlanmismatch;	/* tx discard 'cuz bad tag */
     81 
     82 	uint32_t	ns_ps_discard;		/* ps discard 'cuz of age */
     83 
     84 	/* MIB-related state */
     85 	uint32_t	ns_tx_assoc;		/* [re]associations */
     86 	uint32_t	ns_tx_assoc_fail;	/* [re]association failures */
     87 	uint32_t	ns_tx_auth;		/* [re]authentications */
     88 	uint32_t	ns_tx_auth_fail;	/* [re]authentication failures*/
     89 	uint32_t	ns_tx_deauth;		/* deauthentications */
     90 	uint32_t	ns_tx_deauth_code;	/* last deauth reason */
     91 	uint32_t	ns_tx_disassoc;		/* disassociations */
     92 	uint32_t	ns_tx_disassoc_code;	/* last disassociation reason */
     93 
     94 	/* Hardware A-MSDU decode */
     95 	uint32_t	ns_rx_amsdu_more;	/* RX decap A-MSDU, more coming from A-MSDU */
     96 	uint32_t	ns_rx_amsdu_more_end;	/* RX decap A-MSDU (or any other frame), no more coming */
     97 	uint32_t	ns_spare[6];
     98 };
     99 
    100 struct ieee80211_ostats {
    101 	u_int32_t	is_rx_badversion;	/* rx frame with bad version */
    102 	u_int32_t	is_rx_tooshort;		/* rx frame too short */
    103 	u_int32_t	is_rx_wrongbss;		/* rx from wrong bssid */
    104 	u_int32_t	is_rx_dup;		/* rx discard 'cuz dup */
    105 	u_int32_t	is_rx_wrongdir;		/* rx w/ wrong direction */
    106 	u_int32_t	is_rx_mcastecho;	/* rx discard 'cuz mcast echo */
    107 	u_int32_t	is_rx_notassoc;		/* rx discard 'cuz sta !assoc */
    108 	u_int32_t	is_rx_nowep;		/* rx w/ wep but wep !config */
    109 	u_int32_t	is_rx_wepfail;		/* rx wep processing failed */
    110 	u_int32_t	is_rx_decap;		/* rx decapsulation failed */
    111 	u_int32_t	is_rx_mgtdiscard;	/* rx discard mgt frames */
    112 	u_int32_t	is_rx_ctl;		/* rx discard ctrl frames */
    113 	u_int32_t	is_rx_rstoobig;		/* rx rate set truncated */
    114 	u_int32_t	is_rx_elem_missing;	/* rx required element missing*/
    115 	u_int32_t	is_rx_elem_toobig;	/* rx element too big */
    116 	u_int32_t	is_rx_elem_toosmall;	/* rx element too small */
    117 	u_int32_t	is_rx_elem_unknown;	/* rx element unknown */
    118 	u_int32_t	is_rx_badchan;		/* rx frame w/ invalid chan */
    119 	u_int32_t	is_rx_chanmismatch;	/* rx frame chan mismatch */
    120 	u_int32_t	is_rx_nodealloc;	/* rx frame dropped */
    121 	u_int32_t	is_rx_ssidmismatch;	/* rx frame ssid mismatch  */
    122 	u_int32_t	is_rx_auth_unsupported;	/* rx w/ unsupported auth alg */
    123 	u_int32_t	is_rx_auth_fail;	/* rx sta auth failure */
    124 	u_int32_t	is_rx_assoc_bss;	/* rx assoc from wrong bssid */
    125 	u_int32_t	is_rx_assoc_notauth;	/* rx assoc w/o auth */
    126 	u_int32_t	is_rx_assoc_capmismatch;/* rx assoc w/ cap mismatch */
    127 	u_int32_t	is_rx_assoc_norate;	/* rx assoc w/ no rate match */
    128 	u_int32_t	is_rx_deauth;		/* rx deauthentication */
    129 	u_int32_t	is_rx_disassoc;		/* rx disassociation */
    130 	u_int32_t	is_rx_badsubtype;	/* rx frame w/ unknown subtype*/
    131 	u_int32_t	is_rx_nombuf;		/* rx failed for lack of mbuf */
    132 	u_int32_t	is_rx_decryptcrc;	/* rx decrypt failed on crc */
    133 	u_int32_t	is_rx_ahdemo_mgt;	/* rx discard ahdemo mgt frame*/
    134 	u_int32_t	is_rx_bad_auth;		/* rx bad auth request */
    135 	u_int32_t	is_tx_nombuf;		/* tx failed for lack of mbuf */
    136 	u_int32_t	is_tx_nonode;		/* tx failed for no node */
    137 	u_int32_t	is_tx_unknownmgt;	/* tx of unknown mgt frame */
    138 	u_int32_t	is_scan_active;		/* active scans started */
    139 	u_int32_t	is_scan_passive;	/* passive scans started */
    140 	u_int32_t	is_node_timeout;	/* nodes timed out inactivity */
    141 	u_int32_t	is_crypto_nomem;	/* no memory for crypto ctx */
    142 };
    143 
    144 /*
    145  * Summary statistics.
    146  */
    147 struct ieee80211_stats {
    148 	uint32_t	is_rx_badversion;	/* rx frame with bad version */
    149 	uint32_t	is_rx_tooshort;		/* rx frame too short */
    150 	uint32_t	is_rx_wrongbss;		/* rx from wrong bssid */
    151 	uint32_t	is_rx_dup;		/* rx discard 'cuz dup */
    152 	uint32_t	is_rx_wrongdir;		/* rx w/ wrong direction */
    153 	uint32_t	is_rx_mcastecho;	/* rx discard 'cuz mcast echo */
    154 	uint32_t	is_rx_notassoc;		/* rx discard 'cuz sta !assoc */
    155 	uint32_t	is_rx_noprivacy;	/* rx w/ wep but privacy off */
    156 	uint32_t	is_rx_unencrypted;	/* rx w/o wep and privacy on */
    157 	uint32_t	is_rx_wepfail;		/* rx wep processing failed */
    158 	uint32_t	is_rx_decap;		/* rx decapsulation failed */
    159 	uint32_t	is_rx_mgtdiscard;	/* rx discard mgt frames */
    160 	uint32_t	is_rx_ctl;		/* rx ctrl frames */
    161 	uint32_t	is_rx_beacon;		/* rx beacon frames */
    162 	uint32_t	is_rx_rstoobig;		/* rx rate set truncated */
    163 	uint32_t	is_rx_elem_missing;	/* rx required element missing*/
    164 	uint32_t	is_rx_elem_toobig;	/* rx element too big */
    165 	uint32_t	is_rx_elem_toosmall;	/* rx element too small */
    166 	uint32_t	is_rx_elem_unknown;	/* rx element unknown */
    167 	uint32_t	is_rx_badchan;		/* rx frame w/ invalid chan */
    168 	uint32_t	is_rx_chanmismatch;	/* rx frame chan mismatch */
    169 	uint32_t	is_rx_nodealloc;	/* rx frame dropped */
    170 	uint32_t	is_rx_ssidmismatch;	/* rx frame ssid mismatch  */
    171 	uint32_t	is_rx_auth_unsupported;	/* rx w/ unsupported auth alg */
    172 	uint32_t	is_rx_auth_fail;	/* rx sta auth failure */
    173 	uint32_t	is_rx_auth_countermeasures;/* rx auth discard 'cuz CM */
    174 	uint32_t	is_rx_assoc_bss;	/* rx assoc from wrong bssid */
    175 	uint32_t	is_rx_assoc_notauth;	/* rx assoc w/o auth */
    176 	uint32_t	is_rx_assoc_capmismatch;/* rx assoc w/ cap mismatch */
    177 	uint32_t	is_rx_assoc_norate;	/* rx assoc w/ no rate match */
    178 	uint32_t	is_rx_assoc_badwpaie;	/* rx assoc w/ bad WPA IE */
    179 	uint32_t	is_rx_deauth;		/* rx deauthentication */
    180 	uint32_t	is_rx_disassoc;		/* rx disassociation */
    181 	uint32_t	is_rx_badsubtype;	/* rx frame w/ unknown subtype*/
    182 	uint32_t	is_rx_nobuf;		/* rx failed for lack of buf */
    183 	uint32_t	is_rx_decryptcrc;	/* rx decrypt failed on crc */
    184 	uint32_t	is_rx_ahdemo_mgt;	/* rx discard ahdemo mgt frame*/
    185 	uint32_t	is_rx_bad_auth;		/* rx bad auth request */
    186 	uint32_t	is_rx_unauth;		/* rx on unauthorized port */
    187 	uint32_t	is_rx_badkeyid;		/* rx w/ incorrect keyid */
    188 	uint32_t	is_rx_ccmpreplay;	/* rx seq# violation (CCMP) */
    189 	uint32_t	is_rx_ccmpformat;	/* rx format bad (CCMP) */
    190 	uint32_t	is_rx_ccmpmic;		/* rx MIC check failed (CCMP) */
    191 	uint32_t	is_rx_tkipreplay;	/* rx seq# violation (TKIP) */
    192 	uint32_t	is_rx_tkipformat;	/* rx format bad (TKIP) */
    193 	uint32_t	is_rx_tkipmic;		/* rx MIC check failed (TKIP) */
    194 	uint32_t	is_rx_tkipicv;		/* rx ICV check failed (TKIP) */
    195 	uint32_t	is_rx_badcipher;	/* rx failed 'cuz key type */
    196 	uint32_t	is_rx_nocipherctx;	/* rx failed 'cuz key !setup */
    197 	uint32_t	is_rx_acl;		/* rx discard 'cuz acl policy */
    198 	uint32_t	is_tx_nobuf;		/* tx failed for lack of buf */
    199 	uint32_t	is_tx_nonode;		/* tx failed for no node */
    200 	uint32_t	is_tx_unknownmgt;	/* tx of unknown mgt frame */
    201 	uint32_t	is_tx_badcipher;	/* tx failed 'cuz key type */
    202 	uint32_t	is_tx_nodefkey;		/* tx failed 'cuz no defkey */
    203 	uint32_t	is_tx_noheadroom;	/* tx failed 'cuz no space */
    204 	uint32_t	is_tx_fragframes;	/* tx frames fragmented */
    205 	uint32_t	is_tx_frags;		/* tx fragments created */
    206 	uint32_t	is_scan_active;		/* active scans started */
    207 	uint32_t	is_scan_passive;	/* passive scans started */
    208 	uint32_t	is_node_timeout;	/* nodes timed out inactivity */
    209 	uint32_t	is_crypto_nomem;	/* no memory for crypto ctx */
    210 	uint32_t	is_crypto_tkip;		/* tkip crypto done in s/w */
    211 	uint32_t	is_crypto_tkipenmic;	/* tkip en-MIC done in s/w */
    212 	uint32_t	is_crypto_tkipdemic;	/* tkip de-MIC done in s/w */
    213 	uint32_t	is_crypto_tkipcm;	/* tkip counter measures */
    214 	uint32_t	is_crypto_ccmp;		/* ccmp crypto done in s/w */
    215 	uint32_t	is_crypto_wep;		/* wep crypto done in s/w */
    216 	uint32_t	is_crypto_setkey_cipher;/* cipher rejected key */
    217 	uint32_t	is_crypto_setkey_nokey;	/* no key index for setkey */
    218 	uint32_t	is_crypto_delkey;	/* driver key delete failed */
    219 	uint32_t	is_crypto_badcipher;	/* unknown cipher */
    220 	uint32_t	is_crypto_nocipher;	/* cipher not available */
    221 	uint32_t	is_crypto_attachfail;	/* cipher attach failed */
    222 	uint32_t	is_crypto_swfallback;	/* cipher fallback to s/w */
    223 	uint32_t	is_crypto_keyfail;	/* driver key alloc failed */
    224 	uint32_t	is_crypto_enmicfail;	/* en-MIC failed */
    225 	uint32_t	is_ibss_capmismatch;	/* merge failed-cap mismatch */
    226 	uint32_t	is_ibss_norate;		/* merge failed-rate mismatch */
    227 	uint32_t	is_ps_unassoc;		/* ps-poll for unassoc. sta */
    228 	uint32_t	is_ps_badaid;		/* ps-poll w/ incorrect aid */
    229 	uint32_t	is_ps_qempty;		/* ps-poll w/ nothing to send */
    230 	uint32_t	is_ff_badhdr;		/* fast frame rx'd w/ bad hdr */
    231 	uint32_t	is_ff_tooshort;		/* fast frame rx decap error */
    232 	uint32_t	is_ff_split;		/* fast frame rx split error */
    233 	uint32_t	is_ff_decap;		/* fast frames decap'd */
    234 	uint32_t	is_ff_encap;		/* fast frames encap'd for tx */
    235 	uint32_t	is_rx_badbintval;	/* rx frame w/ bogus bintval */
    236 	uint32_t	is_rx_demicfail;	/* rx demic failed */
    237 	uint32_t	is_rx_defrag;		/* rx defragmentation failed */
    238 	uint32_t	is_rx_mgmt;		/* rx management frames */
    239 	uint32_t	is_rx_action;		/* rx action mgt frames */
    240 	uint32_t	is_amsdu_tooshort;	/* A-MSDU rx decap error */
    241 	uint32_t	is_amsdu_split;		/* A-MSDU rx split error */
    242 	uint32_t	is_amsdu_decap;		/* A-MSDU decap'd */
    243 	uint32_t	is_amsdu_encap;		/* A-MSDU encap'd for tx */
    244 	uint32_t	is_ampdu_bar_bad;	/* A-MPDU BAR out of window */
    245 	uint32_t	is_ampdu_bar_oow;	/* A-MPDU BAR before ADDBA */
    246 	uint32_t	is_ampdu_bar_move;	/* A-MPDU BAR moved window */
    247 	uint32_t	is_ampdu_bar_rx;	/* A-MPDU BAR frames handled */
    248 	uint32_t	is_ampdu_rx_flush;	/* A-MPDU frames flushed */
    249 	uint32_t	is_ampdu_rx_oor;	/* A-MPDU frames out-of-order */
    250 	uint32_t	is_ampdu_rx_copy;	/* A-MPDU frames copied down */
    251 	uint32_t	is_ampdu_rx_drop;	/* A-MPDU frames dropped */
    252 	uint32_t	is_tx_badstate;		/* tx discard state != RUN */
    253 	uint32_t	is_tx_notassoc;		/* tx failed, sta not assoc */
    254 	uint32_t	is_tx_classify;		/* tx classification failed */
    255 	uint32_t	is_dwds_mcast;		/* discard mcast over dwds */
    256 	uint32_t	is_dwds_qdrop;		/* dwds pending frame q full */
    257 	uint32_t	is_ht_assoc_nohtcap;	/* non-HT sta rejected */
    258 	uint32_t	is_ht_assoc_downgrade;	/* HT sta forced to legacy */
    259 	uint32_t	is_ht_assoc_norate;	/* HT assoc w/ rate mismatch */
    260 	uint32_t	is_ampdu_rx_age;	/* A-MPDU sent up 'cuz of age */
    261 	uint32_t	is_ampdu_rx_move;	/* A-MPDU MSDU moved window */
    262 	uint32_t	is_addba_reject;	/* ADDBA reject 'cuz disabled */
    263 	uint32_t	is_addba_norequest;	/* ADDBA response w/o ADDBA */
    264 	uint32_t	is_addba_badtoken;	/* ADDBA response w/ wrong
    265 						   dialogtoken */
    266 	uint32_t	is_addba_badpolicy;	/* ADDBA resp w/ wrong policy */
    267 	uint32_t	is_ampdu_stop;		/* A-MPDU stream stopped */
    268 	uint32_t	is_ampdu_stop_failed;	/* A-MPDU stream not running */
    269 	uint32_t	is_ampdu_rx_reorder;	/* A-MPDU held for rx reorder */
    270 	uint32_t	is_scan_bg;		/* background scans started */
    271 	uint8_t		is_rx_deauth_code;	/* last rx'd deauth reason */
    272 	uint8_t		is_rx_disassoc_code;	/* last rx'd disassoc reason */
    273 	uint8_t		is_rx_authfail_code;	/* last rx'd auth fail reason */
    274 	uint32_t	is_beacon_miss;		/* beacon miss notification */
    275 	uint32_t	is_rx_badstate;		/* rx discard state != RUN */
    276 	uint32_t	is_ff_flush;		/* ff's flush'd from stageq */
    277 	uint32_t	is_tx_ctl;		/* tx ctrl frames */
    278 	uint32_t	is_ampdu_rexmt;		/* A-MPDU frames rexmt ok */
    279 	uint32_t	is_ampdu_rexmt_fail;	/* A-MPDU frames rexmt fail */
    280 
    281 	uint32_t	is_mesh_wrongmesh;	/* dropped 'cuz not mesh sta*/
    282 	uint32_t	is_mesh_nolink;		/* dropped 'cuz link not estab*/
    283 	uint32_t	is_mesh_fwd_ttl;	/* mesh not fwd'd 'cuz ttl 0 */
    284 	uint32_t	is_mesh_fwd_nobuf;	/* mesh not fwd'd 'cuz no mbuf*/
    285 	uint32_t	is_mesh_fwd_tooshort;	/* mesh not fwd'd 'cuz no hdr */
    286 	uint32_t	is_mesh_fwd_disabled;	/* mesh not fwd'd 'cuz disabled */
    287 	uint32_t	is_mesh_fwd_nopath;	/* mesh not fwd'd 'cuz path unknown */
    288 
    289 	uint32_t	is_hwmp_wrongseq;	/* wrong hwmp seq no. */
    290 	uint32_t	is_hwmp_rootreqs;	/* root PREQs sent */
    291 	uint32_t	is_hwmp_rootrann;	/* root RANNs sent */
    292 
    293 	uint32_t	is_mesh_badae;		/* dropped 'cuz invalid AE */
    294 	uint32_t	is_mesh_rtaddfailed;	/* route add failed */
    295 	uint32_t	is_mesh_notproxy;	/* dropped 'cuz not proxying */
    296 	uint32_t	is_rx_badalign;		/* dropped 'cuz misaligned */
    297 	uint32_t	is_hwmp_proxy;		/* PREP for proxy route */
    298 	uint32_t	is_beacon_bad;		/* Number of bad beacons */
    299 	uint32_t	is_ampdu_bar_tx;	/* A-MPDU BAR frames TXed */
    300 	uint32_t	is_ampdu_bar_tx_retry;	/* A-MPDU BAR frames TX rtry */
    301 	uint32_t	is_ampdu_bar_tx_fail;	/* A-MPDU BAR frames TX fail */
    302 
    303 	uint32_t	is_ff_encapfail;	/* failed FF encap */
    304 	uint32_t	is_amsdu_encapfail;	/* failed A-MSDU encap */
    305 
    306 	uint32_t	is_spare[5];
    307 };
    308 
    309 /*
    310  * Max size of optional information elements.  We artificially
    311  * constrain this; it's limited only by the max frame size (and
    312  * the max parameter size of the wireless extensions).
    313  */
    314 #define	IEEE80211_MAX_OPT_IE	256
    315 
    316 /*
    317  * WPA/RSN get/set key request.  Specify the key/cipher
    318  * type and whether the key is to be used for sending and/or
    319  * receiving.  The key index should be set only when working
    320  * with global keys (use IEEE80211_KEYIX_NONE for ``no index'').
    321  * Otherwise a unicast/pairwise key is specified by the bssid
    322  * (on a station) or mac address (on an ap).  They key length
    323  * must include any MIC key data; otherwise it should be no
    324  * more than IEEE80211_KEYBUF_SIZE.
    325  */
    326 struct ieee80211req_key {
    327 	uint8_t		ik_type;	/* key/cipher type */
    328 	uint8_t		ik_pad;
    329 	uint16_t	ik_keyix;	/* key index */
    330 	uint8_t		ik_keylen;	/* key length in bytes */
    331 	uint8_t		ik_flags;
    332 /* NB: IEEE80211_KEY_XMIT and IEEE80211_KEY_RECV defined elsewhere */
    333 #define	IEEE80211_KEY_DEFAULT	0x80	/* default xmit key */
    334 	uint8_t		ik_macaddr[IEEE80211_ADDR_LEN];
    335 	uint64_t	ik_keyrsc;	/* key receive sequence counter */
    336 	uint64_t	ik_keytsc;	/* key transmit sequence counter */
    337 	uint8_t		ik_keydata[IEEE80211_KEYBUF_SIZE+IEEE80211_MICBUF_SIZE];
    338 };
    339 
    340 /*
    341  * Delete a key either by index or address.  Set the index
    342  * to IEEE80211_KEYIX_NONE when deleting a unicast key.
    343  */
    344 struct ieee80211req_del_key {
    345 	uint8_t		idk_keyix;	/* key index */
    346 	uint8_t		idk_macaddr[IEEE80211_ADDR_LEN];
    347 };
    348 
    349 /*
    350  * MLME state manipulation request.  IEEE80211_MLME_ASSOC
    351  * only makes sense when operating as a station.  The other
    352  * requests can be used when operating as a station or an
    353  * ap (to effect a station).
    354  */
    355 struct ieee80211req_mlme {
    356 	uint8_t		im_op;		/* operation to perform */
    357 #define	IEEE80211_MLME_ASSOC		1	/* associate station */
    358 #define	IEEE80211_MLME_DISASSOC		2	/* disassociate station */
    359 #define	IEEE80211_MLME_DEAUTH		3	/* deauthenticate station */
    360 #define	IEEE80211_MLME_AUTHORIZE	4	/* authorize station */
    361 #define	IEEE80211_MLME_UNAUTHORIZE	5	/* unauthorize station */
    362 #define	IEEE80211_MLME_AUTH		6	/* authenticate station */
    363 	uint8_t		im_ssid_len;	/* length of optional ssid */
    364 	uint16_t	im_reason;	/* 802.11 reason code */
    365 	uint8_t		im_macaddr[IEEE80211_ADDR_LEN];
    366 	uint8_t		im_ssid[IEEE80211_NWID_LEN];
    367 };
    368 
    369 /*
    370  * MAC ACL operations.
    371  */
    372 enum {
    373 	IEEE80211_MACCMD_POLICY_OPEN	= 0,	/* set policy: no ACL's */
    374 	IEEE80211_MACCMD_POLICY_ALLOW	= 1,	/* set policy: allow traffic */
    375 	IEEE80211_MACCMD_POLICY_DENY	= 2,	/* set policy: deny traffic */
    376 	IEEE80211_MACCMD_FLUSH		= 3,	/* flush ACL database */
    377 	IEEE80211_MACCMD_DETACH		= 4,	/* detach ACL policy */
    378 	IEEE80211_MACCMD_POLICY		= 5,	/* get ACL policy */
    379 	IEEE80211_MACCMD_LIST		= 6,	/* get ACL database */
    380 	IEEE80211_MACCMD_POLICY_RADIUS	= 7,	/* set policy: RADIUS managed */
    381 };
    382 
    383 struct ieee80211req_maclist {
    384 	uint8_t		ml_macaddr[IEEE80211_ADDR_LEN];
    385 } __packed;
    386 
    387 /*
    388  * Mesh Routing Table Operations.
    389  */
    390 enum {
    391 	IEEE80211_MESH_RTCMD_LIST   = 0, /* list HWMP routing table */
    392 	IEEE80211_MESH_RTCMD_FLUSH  = 1, /* flush HWMP routing table */
    393 	IEEE80211_MESH_RTCMD_ADD    = 2, /* add entry to the table */
    394 	IEEE80211_MESH_RTCMD_DELETE = 3, /* delete an entry from the table */
    395 };
    396 
    397 struct ieee80211req_mesh_route {
    398 	uint8_t		imr_flags;
    399 #define	IEEE80211_MESHRT_FLAGS_DISCOVER	0x01
    400 #define	IEEE80211_MESHRT_FLAGS_VALID	0x02
    401 #define	IEEE80211_MESHRT_FLAGS_PROXY	0x04
    402 #define	IEEE80211_MESHRT_FLAGS_GATE	0x08
    403 	uint8_t		imr_dest[IEEE80211_ADDR_LEN];
    404 	uint8_t		imr_nexthop[IEEE80211_ADDR_LEN];
    405 	uint16_t	imr_nhops;
    406 	uint8_t		imr_pad;
    407 	uint32_t	imr_metric;
    408 	uint32_t	imr_lifetime;
    409 	uint32_t	imr_lastmseq;
    410 };
    411 
    412 /*
    413  * HWMP root modes
    414  */
    415 enum {
    416 	IEEE80211_HWMP_ROOTMODE_DISABLED	= 0, 	/* disabled */
    417 	IEEE80211_HWMP_ROOTMODE_NORMAL		= 1,	/* normal PREPs */
    418 	IEEE80211_HWMP_ROOTMODE_PROACTIVE	= 2,	/* proactive PREPS */
    419 	IEEE80211_HWMP_ROOTMODE_RANN		= 3,	/* use RANN elemid */
    420 };
    421 
    422 
    423 /*
    424  * Set the active channel list by IEEE channel #: each channel
    425  * to be marked active is set in a bit vector.  Note this list is
    426  * intersected with the available channel list in calculating
    427  * the set of channels actually used in scanning.
    428  */
    429 struct ieee80211req_chanlist {
    430 	uint8_t		ic_channels[32];	/* NB: can be variable length */
    431 };
    432 
    433 /*
    434  * Get the active channel list info.
    435  */
    436 struct ieee80211req_chaninfo {
    437 	u_int	ic_nchans;
    438 	struct ieee80211_channel ic_chans[1];	/* NB: variable length */
    439 };
    440 #define	IEEE80211_CHANINFO_SIZE(_nchan) \
    441 	(sizeof(struct ieee80211req_chaninfo) + \
    442 	 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
    443 #define	IEEE80211_CHANINFO_SPACE(_ci) \
    444 	IEEE80211_CHANINFO_SIZE((_ci)->ic_nchans)
    445 
    446 /*
    447  * Retrieve the WPA/RSN information element for an associated station.
    448  */
    449 struct ieee80211req_wpaie {	/* old version w/ only one ie */
    450 	uint8_t		wpa_macaddr[IEEE80211_ADDR_LEN];
    451 	uint8_t		wpa_ie[IEEE80211_MAX_OPT_IE];
    452 };
    453 struct ieee80211req_wpaie2 {
    454 	uint8_t		wpa_macaddr[IEEE80211_ADDR_LEN];
    455 	uint8_t		wpa_ie[IEEE80211_MAX_OPT_IE];
    456 	uint8_t		rsn_ie[IEEE80211_MAX_OPT_IE];
    457 };
    458 
    459 /*
    460  * Retrieve per-node statistics.
    461  */
    462 struct ieee80211req_sta_stats {
    463 	union {
    464 		/* NB: explicitly force 64-bit alignment */
    465 		uint8_t		macaddr[IEEE80211_ADDR_LEN];
    466 		uint64_t	pad;
    467 	} is_u;
    468 	struct ieee80211_nodestats is_stats;
    469 };
    470 
    471 /*
    472  * Station information block; the mac address is used
    473  * to retrieve other data like stats, unicast key, etc.
    474  */
    475 struct ieee80211req_sta_info {
    476 	uint16_t	isi_len;		/* total length (mult of 4) */
    477 	uint16_t	isi_ie_off;		/* offset to IE data */
    478 	uint16_t	isi_ie_len;		/* IE length */
    479 	uint16_t	isi_freq;		/* MHz */
    480 	uint32_t	isi_flags;		/* channel flags */
    481 	uint32_t	isi_state;		/* state flags */
    482 	uint8_t		isi_authmode;		/* authentication algorithm */
    483 	int8_t		isi_rssi;		/* receive signal strength */
    484 	int8_t		isi_noise;		/* noise floor */
    485 	uint8_t		isi_capinfo;		/* capabilities */
    486 	uint8_t		isi_erp;		/* ERP element */
    487 	uint8_t		isi_macaddr[IEEE80211_ADDR_LEN];
    488 	uint8_t		isi_nrates;
    489 						/* negotiated rates */
    490 	uint8_t		isi_rates[IEEE80211_RATE_MAXSIZE];
    491 	uint8_t		isi_txrate;		/* legacy/IEEE rate or MCS */
    492 	uint16_t	isi_associd;		/* assoc response */
    493 	uint16_t	isi_txpower;		/* current tx power */
    494 	uint16_t	isi_vlan;		/* vlan tag */
    495 	/* NB: [IEEE80211_NONQOS_TID] holds seq#'s for non-QoS stations */
    496 	uint16_t	isi_txseqs[IEEE80211_TID_SIZE];/* tx seq #/TID */
    497 	uint16_t	isi_rxseqs[IEEE80211_TID_SIZE];/* rx seq#/TID */
    498 	uint16_t	isi_inact;		/* inactivity timer */
    499 	uint16_t	isi_txmbps;		/* current tx rate in .5 Mb/s */
    500 	uint16_t	isi_pad;
    501 	uint32_t	isi_jointime;		/* time of assoc/join */
    502 	struct ieee80211_mimo_info isi_mimo;	/* MIMO info for 11n sta's */
    503 	/* 11s info */
    504 	uint16_t	isi_peerid;
    505 	uint16_t	isi_localid;
    506 	uint8_t		isi_peerstate;
    507 	/* XXX frag state? */
    508 	/* variable length IE data */
    509 };
    510 
    511 /*
    512  * Retrieve per-station information; to retrieve all
    513  * specify a mac address of ff:ff:ff:ff:ff:ff.
    514  */
    515 struct ieee80211req_sta_req {
    516 	union {
    517 		/* NB: explicitly force 64-bit alignment */
    518 		uint8_t		macaddr[IEEE80211_ADDR_LEN];
    519 		uint64_t	pad;
    520 	} is_u;
    521 	struct ieee80211req_sta_info info[1];	/* variable length */
    522 };
    523 
    524 /*
    525  * Get/set per-station tx power cap.
    526  */
    527 struct ieee80211req_sta_txpow {
    528 	uint8_t		it_macaddr[IEEE80211_ADDR_LEN];
    529 	uint8_t		it_txpow;
    530 };
    531 
    532 /*
    533  * WME parameters manipulated with IEEE80211_IOC_WME_CWMIN
    534  * through IEEE80211_IOC_WME_ACKPOLICY are set and return
    535  * using i_val and i_len.  i_val holds the value itself.
    536  * i_len specifies the AC and, as appropriate, then high bit
    537  * specifies whether the operation is to be applied to the
    538  * BSS or ourself.
    539  */
    540 #define	IEEE80211_WMEPARAM_SELF	0x0000		/* parameter applies to self */
    541 #define	IEEE80211_WMEPARAM_BSS	0x8000		/* parameter applies to BSS */
    542 #define	IEEE80211_WMEPARAM_VAL	0x7fff		/* parameter value */
    543 
    544 /*
    545  * Application Information Elements can be appended to a variety
    546  * of frames with the IEE80211_IOC_APPIE request.  This request
    547  * piggybacks on a normal ieee80211req; the frame type is passed
    548  * in i_val as the 802.11 FC0 bytes and the length of the IE data
    549  * is passed in i_len.  The data is referenced in i_data.  If i_len
    550  * is zero then any previously configured IE data is removed.  At
    551  * most IEEE80211_MAX_APPIE data be appened.  Note that multiple
    552  * IE's can be supplied; the data is treated opaquely.
    553  */
    554 #define	IEEE80211_MAX_APPIE	1024		/* max app IE data */
    555 /*
    556  * Hack: the WPA authenticator uses this mechanism to specify WPA
    557  * ie's that are used instead of the ones normally constructed using
    558  * the cipher state setup with separate ioctls.  This avoids issues
    559  * like the authenticator ordering ie data differently than the
    560  * net80211 layer and needing to keep separate state for WPA and RSN.
    561  */
    562 #define	IEEE80211_APPIE_WPA \
    563 	(IEEE80211_FC0_TYPE_MGT | IEEE80211_FC0_SUBTYPE_BEACON | \
    564 	 IEEE80211_FC0_SUBTYPE_PROBE_RESP)
    565 
    566 /*
    567  * Station mode roaming parameters.  These are maintained
    568  * per band/mode and control the roaming algorithm.
    569  */
    570 struct ieee80211_roamparams_req {
    571 	struct ieee80211_roamparam params[IEEE80211_MODE_MAX];
    572 };
    573 
    574 /*
    575  * Transmit parameters.  These can be used to set fixed transmit
    576  * rate for each operating mode when operating as client or on a
    577  * per-client basis according to the capabilities of the client
    578  * (e.g. an 11b client associated to an 11g ap) when operating as
    579  * an ap.
    580  *
    581  * MCS are distinguished from legacy rates by or'ing in 0x80.
    582  */
    583 struct ieee80211_txparams_req {
    584 	struct ieee80211_txparam params[IEEE80211_MODE_MAX];
    585 };
    586 
    587 /*
    588  * Set regulatory domain state with IEEE80211_IOC_REGDOMAIN.
    589  * Note this is both the regulatory description and the channel
    590  * list.  The get request for IEEE80211_IOC_REGDOMAIN returns
    591  * only the regdomain info; the channel list is obtained
    592  * separately with IEEE80211_IOC_CHANINFO.
    593  */
    594 struct ieee80211_regdomain_req {
    595 	struct ieee80211_regdomain	rd;
    596 	struct ieee80211req_chaninfo	chaninfo;
    597 };
    598 #define	IEEE80211_REGDOMAIN_SIZE(_nchan) \
    599 	(sizeof(struct ieee80211_regdomain_req) + \
    600 	 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
    601 #define	IEEE80211_REGDOMAIN_SPACE(_req) \
    602 	IEEE80211_REGDOMAIN_SIZE((_req)->chaninfo.ic_nchans)
    603 
    604 /*
    605  * Get driver capabilities.  Driver, hardware crypto, and
    606  * HT/802.11n capabilities, and a table that describes what
    607  * the radio can do.
    608  */
    609 struct ieee80211_devcaps_req {
    610 	uint32_t	dc_drivercaps;		/* general driver caps */
    611 	uint32_t	dc_cryptocaps;		/* hardware crypto support */
    612 	uint32_t	dc_htcaps;		/* HT/802.11n support */
    613 	uint32_t	dc_vhtcaps;		/* VHT/802.11ac capabilities */
    614 	struct ieee80211req_chaninfo dc_chaninfo;
    615 };
    616 #define	IEEE80211_DEVCAPS_SIZE(_nchan) \
    617 	(sizeof(struct ieee80211_devcaps_req) + \
    618 	 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
    619 #define	IEEE80211_DEVCAPS_SPACE(_dc) \
    620 	IEEE80211_DEVCAPS_SIZE((_dc)->dc_chaninfo.ic_nchans)
    621 
    622 struct ieee80211_chanswitch_req {
    623 	struct ieee80211_channel csa_chan;	/* new channel */
    624 	int		csa_mode;		/* CSA mode */
    625 	int		csa_count;		/* beacon count to switch */
    626 };
    627 
    628 /*
    629  * Get/set per-station vlan tag.
    630  */
    631 struct ieee80211req_sta_vlan {
    632 	uint8_t		sv_macaddr[IEEE80211_ADDR_LEN];
    633 	uint16_t	sv_vlan;
    634 };
    635 
    636 /*
    637  * FreeBSD-style ioctls.
    638  */
    639 /* the first member must be matched with struct ifreq */
    640 struct ieee80211req {
    641 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
    642 	uint16_t	i_type;			/* req type */
    643 	int16_t		i_val;			/* Index or simple value */
    644 	uint16_t	i_len;			/* Index or simple value */
    645 	void		*i_data;		/* Extra data */
    646 };
    647 
    648 #ifdef __FreeBSD__
    649 #define	SIOCS80211		 _IOW('i', 234, struct ieee80211req)
    650 #define	SIOCG80211		_IOWR('i', 235, struct ieee80211req)
    651 #define	SIOCG80211STATS		_IOWR('i', 236, struct ifreq)
    652 
    653 #elif __NetBSD__
    654 #define	SIOCS80211		 _IOW('i', 244, struct ieee80211req)
    655 #define	SIOCG80211		_IOWR('i', 245, struct ieee80211req)
    656 #define	SIOCG80211STATS		_IOWR('i', 246, struct ifreq)
    657 #define	SIOCG80211ZSTATS	_IOWR('i', 247, struct ifreq)
    658 #define	OSIOCG80211STATS	_IOWR('i', 242, struct ifreq)
    659 #define	OSIOCG80211ZSTATS	_IOWR('i', 243, struct ifreq)
    660 #endif /* __NetBSD__ */
    661 
    662 #define IEEE80211_IOC_SSID		1
    663 #define IEEE80211_IOC_NUMSSIDS		2
    664 #define IEEE80211_IOC_WEP		3
    665 #define 	IEEE80211_WEP_NOSUP	-1
    666 #define 	IEEE80211_WEP_OFF	0
    667 #define 	IEEE80211_WEP_ON	1
    668 #define 	IEEE80211_WEP_MIXED	2
    669 #define IEEE80211_IOC_WEPKEY		4
    670 #define IEEE80211_IOC_NUMWEPKEYS	5
    671 #define IEEE80211_IOC_WEPTXKEY		6
    672 #define IEEE80211_IOC_AUTHMODE		7
    673 #define IEEE80211_IOC_STATIONNAME	8
    674 #define IEEE80211_IOC_CHANNEL		9
    675 #define IEEE80211_IOC_POWERSAVE		10
    676 #define 	IEEE80211_POWERSAVE_NOSUP	-1
    677 #define 	IEEE80211_POWERSAVE_OFF		0
    678 #define 	IEEE80211_POWERSAVE_CAM		1
    679 #define 	IEEE80211_POWERSAVE_PSP		2
    680 #define 	IEEE80211_POWERSAVE_PSP_CAM	3
    681 #define 	IEEE80211_POWERSAVE_ON		IEEE80211_POWERSAVE_CAM
    682 #define IEEE80211_IOC_POWERSAVESLEEP	11
    683 #define	IEEE80211_IOC_RTSTHRESHOLD	12
    684 #define IEEE80211_IOC_PROTMODE		13
    685 #define 	IEEE80211_PROTMODE_OFF		0
    686 #define 	IEEE80211_PROTMODE_CTS		1
    687 #define 	IEEE80211_PROTMODE_RTSCTS	2
    688 #define	IEEE80211_IOC_TXPOWER		14	/* global tx power limit */
    689 #define	IEEE80211_IOC_BSSID		15
    690 #define	IEEE80211_IOC_ROAMING		16	/* roaming mode */
    691 #define	IEEE80211_IOC_PRIVACY		17	/* privacy invoked */
    692 #define	IEEE80211_IOC_DROPUNENCRYPTED	18	/* discard unencrypted frames */
    693 #define	IEEE80211_IOC_WPAKEY		19
    694 #define	IEEE80211_IOC_DELKEY		20
    695 #define	IEEE80211_IOC_MLME		21
    696 /* 22 was IEEE80211_IOC_OPTIE, replaced by IEEE80211_IOC_APPIE */
    697 /* 23 was IEEE80211_IOC_SCAN_REQ */
    698 /* 24 was IEEE80211_IOC_SCAN_RESULTS */
    699 #define	IEEE80211_IOC_COUNTERMEASURES	25	/* WPA/TKIP countermeasures */
    700 #define	IEEE80211_IOC_WPA		26	/* WPA mode (0,1,2) */
    701 #define	IEEE80211_IOC_CHANLIST		27	/* channel list */
    702 #define	IEEE80211_IOC_WME		28	/* WME mode (on, off) */
    703 #define	IEEE80211_IOC_HIDESSID		29	/* hide SSID mode (on, off) */
    704 #define	IEEE80211_IOC_APBRIDGE		30	/* AP inter-sta bridging */
    705 /* 31-35,37-38 were for WPA authenticator settings */
    706 /* 36 was IEEE80211_IOC_DRIVER_CAPS */
    707 #define	IEEE80211_IOC_WPAIE		39	/* WPA information element */
    708 #define	IEEE80211_IOC_STA_STATS		40	/* per-station statistics */
    709 #define	IEEE80211_IOC_MACCMD		41	/* MAC ACL operation */
    710 #define	IEEE80211_IOC_CHANINFO		42	/* channel info list */
    711 #define	IEEE80211_IOC_TXPOWMAX		43	/* max tx power for channel */
    712 #define	IEEE80211_IOC_STA_TXPOW		44	/* per-station tx power limit */
    713 /* 45 was IEEE80211_IOC_STA_INFO */
    714 #define	IEEE80211_IOC_WME_CWMIN		46	/* WME: ECWmin */
    715 #define	IEEE80211_IOC_WME_CWMAX		47	/* WME: ECWmax */
    716 #define	IEEE80211_IOC_WME_AIFS		48	/* WME: AIFSN */
    717 #define	IEEE80211_IOC_WME_TXOPLIMIT	49	/* WME: txops limit */
    718 #define	IEEE80211_IOC_WME_ACM		50	/* WME: ACM (bss only) */
    719 #define	IEEE80211_IOC_WME_ACKPOLICY	51	/* WME: ACK policy (!bss only)*/
    720 #define	IEEE80211_IOC_DTIM_PERIOD	52	/* DTIM period (beacons) */
    721 #define	IEEE80211_IOC_BEACON_INTERVAL	53	/* beacon interval (ms) */
    722 #define	IEEE80211_IOC_ADDMAC		54	/* add sta to MAC ACL table */
    723 #define	IEEE80211_IOC_DELMAC		55	/* del sta from MAC ACL table */
    724 #define	IEEE80211_IOC_PUREG		56	/* pure 11g (no 11b stations) */
    725 #define	IEEE80211_IOC_FF		57	/* ATH fast frames (on, off) */
    726 #define	IEEE80211_IOC_TURBOP		58	/* ATH turbo' (on, off) */
    727 #define	IEEE80211_IOC_BGSCAN		59	/* bg scanning (on, off) */
    728 #define	IEEE80211_IOC_BGSCAN_IDLE	60	/* bg scan idle threshold */
    729 #define	IEEE80211_IOC_BGSCAN_INTERVAL	61	/* bg scan interval */
    730 #define	IEEE80211_IOC_SCANVALID		65	/* scan cache valid threshold */
    731 /* 66-72 were IEEE80211_IOC_ROAM_* and IEEE80211_IOC_MCAST_RATE */
    732 #define	IEEE80211_IOC_FRAGTHRESHOLD	73	/* tx fragmentation threshold */
    733 #define	IEEE80211_IOC_BURST		75	/* packet bursting */
    734 #define	IEEE80211_IOC_SCAN_RESULTS	76	/* get scan results */
    735 #define	IEEE80211_IOC_BMISSTHRESHOLD	77	/* beacon miss threshold */
    736 #define	IEEE80211_IOC_STA_INFO		78	/* station/neighbor info */
    737 #define	IEEE80211_IOC_WPAIE2		79	/* WPA+RSN info elements */
    738 #define	IEEE80211_IOC_CURCHAN		80	/* current channel */
    739 #define	IEEE80211_IOC_SHORTGI		81	/* 802.11n half GI */
    740 #define	IEEE80211_IOC_AMPDU		82	/* 802.11n A-MPDU (on, off) */
    741 #define	IEEE80211_IOC_AMPDU_LIMIT	83	/* A-MPDU length limit */
    742 #define	IEEE80211_IOC_AMPDU_DENSITY	84	/* A-MPDU density */
    743 #define	IEEE80211_IOC_AMSDU		85	/* 802.11n A-MSDU (on, off) */
    744 #define	IEEE80211_IOC_AMSDU_LIMIT	86	/* A-MSDU length limit */
    745 #define	IEEE80211_IOC_PUREN		87	/* pure 11n (no legacy sta's) */
    746 #define	IEEE80211_IOC_DOTH		88	/* 802.11h (on, off) */
    747 /* 89-91 were regulatory items */
    748 #define	IEEE80211_IOC_HTCOMPAT		92	/* support pre-D1.10 HT ie's */
    749 #define	IEEE80211_IOC_DWDS		93	/* DWDS/4-address handling */
    750 #define	IEEE80211_IOC_INACTIVITY	94	/* sta inactivity handling */
    751 #define	IEEE80211_IOC_APPIE		95	/* application IE's */
    752 #define	IEEE80211_IOC_WPS		96	/* WPS operation */
    753 #define	IEEE80211_IOC_TSN		97	/* TSN operation */
    754 #define	IEEE80211_IOC_DEVCAPS		98	/* driver+device capabilities */
    755 #define	IEEE80211_IOC_CHANSWITCH	99	/* start 11h channel switch */
    756 #define	IEEE80211_IOC_DFS		100	/* DFS (on, off) */
    757 #define	IEEE80211_IOC_DOTD		101	/* 802.11d (on, off) */
    758 #define IEEE80211_IOC_HTPROTMODE	102	/* HT protection (off, rts) */
    759 #define	IEEE80211_IOC_SCAN_REQ		103	/* scan w/ specified params */
    760 #define	IEEE80211_IOC_SCAN_CANCEL	104	/* cancel ongoing scan */
    761 #define	IEEE80211_IOC_HTCONF		105	/* HT config (off, HT20, HT40)*/
    762 #define	IEEE80211_IOC_REGDOMAIN		106	/* regulatory domain info */
    763 #define	IEEE80211_IOC_ROAM		107	/* roaming params en masse */
    764 #define	IEEE80211_IOC_TXPARAMS		108	/* tx parameters */
    765 #define	IEEE80211_IOC_STA_VLAN		109	/* per-station vlan tag */
    766 #define	IEEE80211_IOC_SMPS		110	/* MIMO power save */
    767 #define	IEEE80211_IOC_RIFS		111	/* RIFS config (on, off) */
    768 #define	IEEE80211_IOC_GREENFIELD	112	/* Greenfield (on, off) */
    769 #define	IEEE80211_IOC_STBC		113	/* STBC Tx/RX (on, off) */
    770 #define	IEEE80211_IOC_LDPC		114	/* LDPC Tx/RX (on, off) */
    771 
    772 /* VHT */
    773 #define	IEEE80211_IOC_VHTCONF		130	/* VHT config (off, on; widths) */
    774 
    775 #define	IEEE80211_IOC_MESH_ID		170	/* mesh identifier */
    776 #define	IEEE80211_IOC_MESH_AP		171	/* accepting peerings */
    777 #define	IEEE80211_IOC_MESH_FWRD		172	/* forward frames */
    778 #define	IEEE80211_IOC_MESH_PROTO	173	/* mesh protocols */
    779 #define	IEEE80211_IOC_MESH_TTL		174	/* mesh TTL */
    780 #define	IEEE80211_IOC_MESH_RTCMD	175	/* mesh routing table commands*/
    781 #define	IEEE80211_IOC_MESH_PR_METRIC	176	/* mesh metric protocol */
    782 #define	IEEE80211_IOC_MESH_PR_PATH	177	/* mesh path protocol */
    783 #define	IEEE80211_IOC_MESH_PR_SIG	178	/* mesh sig protocol */
    784 #define	IEEE80211_IOC_MESH_PR_CC	179	/* mesh congestion protocol */
    785 #define	IEEE80211_IOC_MESH_PR_AUTH	180	/* mesh auth protocol */
    786 #define	IEEE80211_IOC_MESH_GATE		181	/* mesh gate XXX: 173? */
    787 
    788 #define	IEEE80211_IOC_HWMP_ROOTMODE	190	/* HWMP root mode */
    789 #define	IEEE80211_IOC_HWMP_MAXHOPS	191	/* number of hops before drop */
    790 #define	IEEE80211_IOC_HWMP_TTL		192	/* HWMP TTL */
    791 
    792 #define	IEEE80211_IOC_TDMA_SLOT		201	/* TDMA: assigned slot */
    793 #define	IEEE80211_IOC_TDMA_SLOTCNT	202	/* TDMA: slots in bss */
    794 #define	IEEE80211_IOC_TDMA_SLOTLEN	203	/* TDMA: slot length (usecs) */
    795 #define	IEEE80211_IOC_TDMA_BINTERVAL	204	/* TDMA: beacon intvl (slots) */
    796 
    797 #define	IEEE80211_IOC_QUIET		205	/* Quiet Enable/Disable */
    798 #define	IEEE80211_IOC_QUIET_PERIOD	206	/* Quiet Period */
    799 #define	IEEE80211_IOC_QUIET_OFFSET	207	/* Quiet Offset */
    800 #define	IEEE80211_IOC_QUIET_DUR		208	/* Quiet Duration */
    801 #define	IEEE80211_IOC_QUIET_COUNT	209	/* Quiet Count */
    802 /*
    803  * Parameters for controlling a scan requested with
    804  * IEEE80211_IOC_SCAN_REQ.
    805  *
    806  * Active scans cause ProbeRequest frames to be issued for each
    807  * specified ssid and, by default, a broadcast ProbeRequest frame.
    808  * The set of ssid's is specified in the request.
    809  *
    810  * By default the scan will cause a BSS to be joined (in station/adhoc
    811  * mode) or a channel to be selected for operation (hostap mode).
    812  * To disable that specify IEEE80211_IOC_SCAN_NOPICK and if the
    813  *
    814  * If the station is currently associated to an AP then a scan request
    815  * will cause the station to leave the current channel and potentially
    816  * miss frames from the AP.  Alternatively the station may notify the
    817  * AP that it is going into power save mode before it leaves the channel.
    818  * This ensures frames for the station are buffered by the AP.  This is
    819  * termed a ``bg scan'' and is requested with the IEEE80211_IOC_SCAN_BGSCAN
    820  * flag.  Background scans may take longer than foreground scans and may
    821  * be preempted by traffic.  If a station is not associated to an AP
    822  * then a request for a background scan is automatically done in the
    823  * foreground.
    824  *
    825  * The results of the scan request are cached by the system.  This
    826  * information is aged out and/or invalidated based on events like not
    827  * being able to associated to an AP.  To flush the current cache
    828  * contents before doing a scan the IEEE80211_IOC_SCAN_FLUSH flag may
    829  * be specified.
    830  *
    831  * By default the scan will be done until a suitable AP is located
    832  * or a channel is found for use.  A scan can also be constrained
    833  * to be done once (IEEE80211_IOC_SCAN_ONCE) or to last for no more
    834  * than a specified duration.
    835  */
    836 struct ieee80211_scan_req {
    837 	int		sr_flags;
    838 #define	IEEE80211_IOC_SCAN_NOPICK	0x00001	/* scan only, no selection */
    839 #define	IEEE80211_IOC_SCAN_ACTIVE	0x00002	/* active scan (probe req) */
    840 #define	IEEE80211_IOC_SCAN_PICK1ST	0x00004	/* ``hey sailor'' mode */
    841 #define	IEEE80211_IOC_SCAN_BGSCAN	0x00008	/* bg scan, exit ps at end */
    842 #define	IEEE80211_IOC_SCAN_ONCE		0x00010	/* do one complete pass */
    843 #define	IEEE80211_IOC_SCAN_NOBCAST	0x00020	/* don't send bcast probe req */
    844 #define	IEEE80211_IOC_SCAN_NOJOIN	0x00040	/* no auto-sequencing */
    845 #define	IEEE80211_IOC_SCAN_FLUSH	0x10000	/* flush scan cache first */
    846 #define	IEEE80211_IOC_SCAN_CHECK	0x20000	/* check scan cache first */
    847 	u_int		sr_duration;		/* duration (ms) */
    848 #define	IEEE80211_IOC_SCAN_DURATION_MIN	1
    849 #define	IEEE80211_IOC_SCAN_DURATION_MAX	0x7fffffff
    850 #define	IEEE80211_IOC_SCAN_FOREVER	IEEE80211_IOC_SCAN_DURATION_MAX
    851 	u_int		sr_mindwell;		/* min channel dwelltime (ms) */
    852 	u_int		sr_maxdwell;		/* max channel dwelltime (ms) */
    853 	int		sr_nssid;
    854 #define	IEEE80211_IOC_SCAN_MAX_SSID	3
    855 	struct {
    856 		int	 len;				/* length in bytes */
    857 		uint8_t ssid[IEEE80211_NWID_LEN];	/* ssid contents */
    858 	} sr_ssid[IEEE80211_IOC_SCAN_MAX_SSID];
    859 };
    860 
    861 /*
    862  * Scan result data returned for IEEE80211_IOC_SCAN_RESULTS.
    863  * Each result is a fixed size structure followed by a variable
    864  * length SSID and one or more variable length information elements.
    865  * The size of each variable length item is found in the fixed
    866  * size structure and the entire length of the record is specified
    867  * in isr_len.  Result records are rounded to a multiple of 4 bytes.
    868  */
    869 struct ieee80211req_scan_result {
    870 	uint16_t	isr_len;		/* total length (mult of 4) */
    871 	uint16_t	isr_ie_off;		/* offset to SSID+IE data */
    872 	uint16_t	isr_ie_len;		/* IE length */
    873 	uint16_t	isr_freq;		/* MHz */
    874 	uint16_t	isr_flags;		/* channel flags */
    875 	int8_t		isr_noise;
    876 	int8_t		isr_rssi;
    877 	uint16_t	isr_intval;		/* beacon interval */
    878 	uint8_t		isr_capinfo;		/* capabilities */
    879 	uint8_t		isr_erp;		/* ERP element */
    880 	uint8_t		isr_bssid[IEEE80211_ADDR_LEN];
    881 	uint8_t		isr_nrates;
    882 	uint8_t		isr_rates[IEEE80211_RATE_MAXSIZE];
    883 	uint8_t		isr_ssid_len;		/* SSID length */
    884 	uint8_t		isr_meshid_len;		/* MESH ID length */
    885 	/* variable length SSID, followed by variable length MESH ID,
    886 	  followed by IE data */
    887 };
    888 
    889 /*
    890  * Virtual AP cloning parameters.  The parent device must
    891  * be a vap-capable device.  All parameters specified with
    892  * the clone request are fixed for the lifetime of the vap.
    893  *
    894  * There are two flavors of WDS vaps: legacy and dynamic.
    895  * Legacy WDS operation implements a static binding between
    896  * two stations encapsulating traffic in 4-address frames.
    897  * Dynamic WDS vaps are created when a station associates to
    898  * an AP and sends a 4-address frame.  If the AP vap is
    899  * configured to support WDS then this will generate an
    900  * event to user programs listening on the routing socket
    901  * and a Dynamic WDS vap will be created to handle traffic
    902  * to/from that station.  In both cases the bssid of the
    903  * peer must be specified when creating the vap.
    904  *
    905  * By default a vap will inherit the mac address/bssid of
    906  * the underlying device.  To request a unique address the
    907  * IEEE80211_CLONE_BSSID flag should be supplied.  This is
    908  * meaningless for WDS vaps as they share the bssid of an
    909  * AP vap that must otherwise exist.  Note that some devices
    910  * may not be able to support multiple addresses.
    911  *
    912  * Station mode vap's normally depend on the device to notice
    913  * when the AP stops sending beacon frames.  If IEEE80211_CLONE_NOBEACONS
    914  * is specified the net80211 layer will do this in s/w.  This
    915  * is mostly useful when setting up a WDS repeater/extender where
    916  * an AP vap is combined with a sta vap and the device isn't able
    917  * to track beacon frames in hardware.
    918  */
    919 struct ieee80211_clone_params {
    920 	char	icp_parent[IFNAMSIZ];		/* parent device */
    921 	uint16_t icp_opmode;			/* operating mode */
    922 	uint16_t icp_flags;			/* see below */
    923 	uint8_t	icp_bssid[IEEE80211_ADDR_LEN];	/* for WDS links */
    924 	uint8_t	icp_macaddr[IEEE80211_ADDR_LEN];/* local address */
    925 };
    926 #define	IEEE80211_CLONE_BSSID		0x0001	/* allocate unique mac/bssid */
    927 #define	IEEE80211_CLONE_NOBEACONS	0x0002	/* don't setup beacon timers */
    928 #define	IEEE80211_CLONE_WDSLEGACY	0x0004	/* legacy WDS processing */
    929 #define	IEEE80211_CLONE_MACADDR		0x0008	/* use specified mac addr */
    930 #define	IEEE80211_CLONE_TDMA		0x0010	/* operate in TDMA mode */
    931 
    932 #if __NetBSD__
    933 
    934 #define	OLD_IEEE80211_IOC_SCAN_REQ	23
    935 #define	OLD_IEEE80211_IOC_SCAN_RESULTS	24
    936 
    937 /*
    938  * Scan result data returned for OLD_IEEE80211_IOC_SCAN_RESULTS.
    939  */
    940 struct old_ieee80211req_scan_result {
    941 	u_int16_t	isr_len;		/* length (mult of 4) */
    942 	u_int16_t	isr_freq;		/* MHz */
    943 	u_int16_t	isr_flags;		/* channel flags */
    944 	u_int8_t	isr_noise;
    945 	u_int8_t	isr_rssi;
    946 	u_int8_t	isr_intval;		/* beacon interval */
    947 	u_int8_t	isr_capinfo;		/* capabilities */
    948 	u_int8_t	isr_erp;		/* ERP element */
    949 	u_int8_t	isr_bssid[IEEE80211_ADDR_LEN];
    950 	u_int8_t	isr_nrates;
    951 	u_int8_t	isr_rates[IEEE80211_RATE_MAXSIZE];
    952 	u_int8_t	isr_ssid_len;		/* SSID length */
    953 	u_int8_t	isr_ie_len;		/* IE length */
    954 	u_int8_t	isr_pad[5];
    955 	/* variable length SSID followed by IE data */
    956 };
    957 
    958 
    959 /* nwid is pointed at by ifr.ifr_data */
    960 struct ieee80211_nwid {
    961 	u_int8_t	i_len;
    962 	u_int8_t	i_nwid[IEEE80211_NWID_LEN];
    963 };
    964 
    965 #define	SIOCS80211NWID		_IOWR('i', 230, struct ifreq)
    966 #define	SIOCG80211NWID		_IOWR('i', 231, struct ifreq)
    967 
    968 /* the first member must be matched with struct ifreq */
    969 struct ieee80211_nwkey {
    970 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
    971 	int		i_wepon;		/* wep enabled flag */
    972 	int		i_defkid;		/* default encrypt key id */
    973 	struct {
    974 		int		i_keylen;
    975 		u_int8_t	*i_keydat;
    976 	}		i_key[IEEE80211_WEP_NKID];
    977 };
    978 #define	SIOCS80211NWKEY		 _IOW('i', 232, struct ieee80211_nwkey)
    979 #define	SIOCG80211NWKEY		_IOWR('i', 233, struct ieee80211_nwkey)
    980 /* i_wepon */
    981 #define	IEEE80211_NWKEY_OPEN	0		/* No privacy */
    982 #define	IEEE80211_NWKEY_WEP	1		/* WEP enabled */
    983 #define	IEEE80211_NWKEY_EAP	2		/* EAP enabled */
    984 #define	IEEE80211_NWKEY_PERSIST	0x100		/* designate persist keyset */
    985 
    986 /* power management parameters */
    987 struct ieee80211_power {
    988 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
    989 	int		i_enabled;		/* 1 == on, 0 == off */
    990 	int		i_maxsleep;		/* max sleep in ms */
    991 };
    992 #define	SIOCS80211POWER		 _IOW('i', 234, struct ieee80211_power)
    993 #define	SIOCG80211POWER		_IOWR('i', 235, struct ieee80211_power)
    994 
    995 struct ieee80211_auth {
    996 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
    997 	int		i_authtype;
    998 };
    999 
   1000 #define	SIOCS80211AUTH		 _IOW('i', 236, struct ieee80211_auth)
   1001 #define	SIOCG80211AUTH		_IOWR('i', 237, struct ieee80211_auth)
   1002 
   1003 struct ieee80211chanreq {
   1004 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
   1005 	u_int16_t	i_channel;
   1006 };
   1007 
   1008 #ifndef IEEE80211_CHAN_ANY
   1009 #define	IEEE80211_CHAN_ANY	0xffff
   1010 #endif
   1011 
   1012 #define	SIOCS80211CHANNEL	 _IOW('i', 238, struct ieee80211chanreq)
   1013 #define	SIOCG80211CHANNEL	_IOWR('i', 239, struct ieee80211chanreq)
   1014 
   1015 struct ieee80211_bssid {
   1016 	char		i_name[IFNAMSIZ];	/* if_name, e.g. "wi0" */
   1017 	u_int8_t	i_bssid[IEEE80211_ADDR_LEN];
   1018 };
   1019 
   1020 #define	SIOCS80211BSSID		 _IOW('i', 240, struct ieee80211_bssid)
   1021 #define	SIOCG80211BSSID		_IOWR('i', 241, struct ieee80211_bssid)
   1022 
   1023 #endif
   1024 
   1025 
   1026 #endif /* _NET80211_IEEE80211_IOCTL_H_ */
   1027