1 /*- 2 * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 3 * 4 * Copyright (c) 2001 Atsushi Onoe 5 * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in the 15 * documentation and/or other materials provided with the distribution. 16 * 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 * 28 * $FreeBSD: releng/12.0/sys/net80211/ieee80211_var.h 326272 2017-11-27 15:23:17Z pfg $ 29 */ 30 #ifndef _NET80211_IEEE80211_VAR_H_ 31 #define _NET80211_IEEE80211_VAR_H_ 32 33 /* 34 * Definitions for IEEE 802.11 drivers. 35 */ 36 /* NB: portability glue must go first */ 37 #if defined(__NetBSD__) 38 #include <net80211/ieee80211_netbsd.h> 39 #elif defined(__FreeBSD__) 40 #include <net80211/ieee80211_freebsd.h> 41 #elif defined(__linux__) 42 #include <net80211/ieee80211_linux.h> 43 #elif defined(__HAIKU__) 44 #include <net80211/ieee80211_haiku.h> 45 #else 46 #error "No support for your operating system!" 47 #endif 48 49 #include <net80211/_ieee80211.h> 50 #include <net80211/ieee80211.h> 51 #include <net80211/ieee80211_ageq.h> 52 #include <net80211/ieee80211_crypto.h> 53 #include <net80211/ieee80211_dfs.h> 54 #include <net80211/ieee80211_ioctl.h> /* for ieee80211_stats */ 55 #include <net80211/ieee80211_phy.h> 56 #include <net80211/ieee80211_power.h> 57 #include <net80211/ieee80211_node.h> 58 #include <net80211/ieee80211_proto.h> 59 #include <net80211/ieee80211_radiotap.h> 60 #include <net80211/ieee80211_scan.h> 61 62 #define IEEE80211_TXPOWER_MAX 100 /* .5 dBm (XXX units?) */ 63 #define IEEE80211_TXPOWER_MIN 0 /* kill radio */ 64 65 #define IEEE80211_DTIM_DEFAULT 1 /* default DTIM period */ 66 #define IEEE80211_BINTVAL_DEFAULT 100 /* default beacon interval (TU's) */ 67 68 #define IEEE80211_BMISS_MAX 2 /* maximum consecutive bmiss allowed */ 69 #define IEEE80211_HWBMISS_DEFAULT 7 /* h/w bmiss threshold (beacons) */ 70 71 #define IEEE80211_BGSCAN_INTVAL_MIN 15 /* min bg scan intvl (secs) */ 72 #define IEEE80211_BGSCAN_INTVAL_DEFAULT (5*60) /* default bg scan intvl */ 73 74 #define IEEE80211_BGSCAN_IDLE_MIN 100 /* min idle time (ms) */ 75 #define IEEE80211_BGSCAN_IDLE_DEFAULT 250 /* default idle time (ms) */ 76 77 #define IEEE80211_SCAN_VALID_MIN 10 /* min scan valid time (secs) */ 78 #define IEEE80211_SCAN_VALID_DEFAULT 60 /* default scan valid time */ 79 80 #define IEEE80211_PS_SLEEP 0x1 /* STA is in power saving mode */ 81 #define IEEE80211_PS_MAX_QUEUE 50 /* maximum saved packets */ 82 83 #define IEEE80211_FIXED_RATE_NONE 0xff 84 #define IEEE80211_TXMAX_DEFAULT 6 /* default ucast max retries */ 85 86 #define IEEE80211_RTS_DEFAULT IEEE80211_RTS_MAX 87 #define IEEE80211_FRAG_DEFAULT IEEE80211_FRAG_MAX 88 89 #define IEEE80211_MS_TO_TU(x) (((x) * 1000) / 1024) 90 #define IEEE80211_TU_TO_MS(x) (((x) * 1024) / 1000) 91 /* XXX TODO: cap this at 1, in case hz is not 1000 */ 92 #define IEEE80211_TU_TO_TICKS(x)(((uint64_t)(x) * 1024 * hz) / (1000 * 1000)) 93 94 /* 95 * Technically, vhtflags may be 0 /and/ 11ac is enabled. 96 * At some point ic should just grow a flag somewhere that 97 * says that VHT is supported - and then this macro can be 98 * changed. 99 */ 100 #define IEEE80211_CONF_VHT(ic) \ 101 ((ic)->ic_flags_ext & IEEE80211_FEXT_VHT) 102 103 #define IEEE80211_CONF_SEQNO_OFFLOAD(ic) \ 104 ((ic)->ic_flags_ext & IEEE80211_FEXT_SEQNO_OFFLOAD) 105 #define IEEE80211_CONF_FRAG_OFFLOAD(ic) \ 106 ((ic)->ic_flags_ext & IEEE80211_FEXT_FRAG_OFFLOAD) 107 108 /* 109 * 802.11 control state is split into a common portion that maps 110 * 1-1 to a physical device and one or more "Virtual AP's" (VAP) 111 * that are bound to an ieee80211com instance and share a single 112 * underlying device. Each VAP has a corresponding OS device 113 * entity through which traffic flows and that applications use 114 * for issuing ioctls, etc. 115 */ 116 117 /* 118 * Data common to one or more virtual AP's. State shared by 119 * the underlying device and the net80211 layer is exposed here; 120 * e.g. device-specific callbacks. 121 */ 122 struct ieee80211vap; 123 typedef void (*ieee80211vap_attach)(struct ieee80211vap *); 124 125 struct ieee80211_appie { 126 uint16_t ie_len; /* size of ie_data */ 127 uint8_t ie_data[0]; /* user-specified IE's */ 128 }; 129 130 struct ieee80211_tdma_param; 131 struct ieee80211_rate_table; 132 struct ieee80211_tx_ampdu; 133 struct ieee80211_rx_ampdu; 134 struct ieee80211_superg; 135 struct ieee80211_frame; 136 137 struct ieee80211com { 138 void *ic_softc; /* driver softc */ 139 const char *ic_name; /* usually device name */ 140 ieee80211_com_lock_t ic_comlock; /* state update lock */ 141 ieee80211_tx_lock_t ic_txlock; /* ic/vap TX lock */ 142 ieee80211_ff_lock_t ic_fflock; /* stageq/ni_tx_superg lock */ 143 LIST_ENTRY(ieee80211com) ic_next; /* on global list */ 144 TAILQ_HEAD(, ieee80211vap) ic_vaps; /* list of vap instances */ 145 int ic_headroom; /* driver tx headroom needs */ 146 enum ieee80211_phytype ic_phytype; /* XXX wrong for multi-mode */ 147 enum ieee80211_opmode ic_opmode; /* operation mode */ 148 struct callout ic_inact; /* inactivity processing */ 149 struct taskqueue *ic_tq; /* deferred state thread */ 150 struct task ic_parent_task; /* deferred parent processing */ 151 struct task ic_promisc_task;/* deferred promisc update */ 152 struct task ic_mcast_task; /* deferred mcast update */ 153 struct task ic_chan_task; /* deferred channel change */ 154 struct task ic_bmiss_task; /* deferred beacon miss hndlr */ 155 struct task ic_chw_task; /* deferred HT CHW update */ 156 struct task ic_restart_task; /* deferred device restart */ 157 158 counter_u64_t ic_ierrors; /* input errors */ 159 counter_u64_t ic_oerrors; /* output errors */ 160 161 uint32_t ic_flags; /* state flags */ 162 uint32_t ic_flags_ext; /* extended state flags */ 163 uint32_t ic_flags_ht; /* HT state flags */ 164 uint32_t ic_flags_ven; /* vendor state flags */ 165 uint32_t ic_caps; /* capabilities */ 166 uint32_t ic_htcaps; /* HT capabilities */ 167 uint32_t ic_htextcaps; /* HT extended capabilities */ 168 uint32_t ic_cryptocaps; /* crypto capabilities */ 169 /* set of mode capabilities */ 170 uint8_t ic_modecaps[IEEE80211_MODE_BYTES]; 171 uint8_t ic_promisc; /* vap's needing promisc mode */ 172 uint8_t ic_allmulti; /* vap's needing all multicast*/ 173 uint8_t ic_nrunning; /* vap's marked running */ 174 uint8_t ic_curmode; /* current mode */ 175 uint8_t ic_macaddr[IEEE80211_ADDR_LEN]; 176 uint16_t ic_bintval; /* beacon interval */ 177 uint16_t ic_lintval; /* listen interval */ 178 uint16_t ic_holdover; /* PM hold over duration */ 179 uint16_t ic_txpowlimit; /* global tx power limit */ 180 struct ieee80211_rateset ic_sup_rates[IEEE80211_MODE_MAX]; 181 struct ieee80211_htrateset ic_sup_htrates; 182 183 /* 184 * Channel state: 185 * 186 * ic_channels is the set of available channels for the device; 187 * it is setup by the driver 188 * ic_nchans is the number of valid entries in ic_channels 189 * ic_chan_avail is a bit vector of these channels used to check 190 * whether a channel is available w/o searching the channel table. 191 * ic_chan_active is a (potentially) constrained subset of 192 * ic_chan_avail that reflects any mode setting or user-specified 193 * limit on the set of channels to use/scan 194 * ic_curchan is the current channel the device is set to; it may 195 * be different from ic_bsschan when we are off-channel scanning 196 * or otherwise doing background work 197 * ic_bsschan is the channel selected for operation; it may 198 * be undefined (IEEE80211_CHAN_ANYC) 199 * ic_prevchan is a cached ``previous channel'' used to optimize 200 * lookups when switching back+forth between two channels 201 * (e.g. for dynamic turbo) 202 */ 203 int ic_nchans; /* # entries in ic_channels */ 204 struct ieee80211_channel ic_channels[IEEE80211_CHAN_MAX]; 205 uint8_t ic_chan_avail[IEEE80211_CHAN_BYTES]; 206 uint8_t ic_chan_active[IEEE80211_CHAN_BYTES]; 207 uint8_t ic_chan_scan[IEEE80211_CHAN_BYTES]; 208 struct ieee80211_channel *ic_curchan; /* current channel */ 209 const struct ieee80211_rate_table *ic_rt; /* table for ic_curchan */ 210 struct ieee80211_channel *ic_bsschan; /* bss channel */ 211 struct ieee80211_channel *ic_prevchan; /* previous channel */ 212 struct ieee80211_regdomain ic_regdomain;/* regulatory data */ 213 struct ieee80211_appie *ic_countryie; /* calculated country ie */ 214 struct ieee80211_channel *ic_countryie_chan; 215 216 /* 802.11h/DFS state */ 217 struct ieee80211_channel *ic_csa_newchan;/* channel for doing CSA */ 218 short ic_csa_mode; /* mode for doing CSA */ 219 short ic_csa_count; /* count for doing CSA */ 220 struct ieee80211_dfs_state ic_dfs; /* DFS state */ 221 222 struct ieee80211_scan_state *ic_scan; /* scan state */ 223 struct ieee80211_scan_methods *ic_scan_methods; /* scan methods */ 224 int ic_lastdata; /* time of last data frame */ 225 int ic_lastscan; /* time last scan completed */ 226 227 /* NB: this is the union of all vap stations/neighbors */ 228 int ic_max_keyix; /* max h/w key index */ 229 struct ieee80211_node_table ic_sta; /* stations/neighbors */ 230 struct ieee80211_ageq ic_stageq; /* frame staging queue */ 231 uint32_t ic_hash_key; /* random key for mac hash */ 232 233 /* XXX multi-bss: split out common/vap parts */ 234 struct ieee80211_wme_state ic_wme; /* WME/WMM state */ 235 236 /* XXX multi-bss: can per-vap be done/make sense? */ 237 enum ieee80211_protmode ic_protmode; /* 802.11g protection mode */ 238 uint16_t ic_nonerpsta; /* # non-ERP stations */ 239 uint16_t ic_longslotsta; /* # long slot time stations */ 240 uint16_t ic_sta_assoc; /* stations associated */ 241 uint16_t ic_ht_sta_assoc;/* HT stations associated */ 242 uint16_t ic_ht40_sta_assoc;/* HT40 stations associated */ 243 uint8_t ic_curhtprotmode;/* HTINFO bss state */ 244 enum ieee80211_protmode ic_htprotmode; /* HT protection mode */ 245 int ic_lastnonerp; /* last time non-ERP sta noted*/ 246 int ic_lastnonht; /* last time non-HT sta noted */ 247 uint8_t ic_rxstream; /* # RX streams */ 248 uint8_t ic_txstream; /* # TX streams */ 249 250 /* VHT information */ 251 uint32_t ic_vhtcaps; /* VHT capabilities */ 252 uint32_t ic_vhtextcaps; /* VHT extended capabilities (TODO) */ 253 struct ieee80211_vht_mcs_info ic_vht_mcsinfo; /* Support TX/RX VHT MCS */ 254 uint32_t ic_flags_vht; /* VHT state flags */ 255 uint32_t ic_vht_spare[3]; 256 257 /* optional state for Atheros SuperG protocol extensions */ 258 struct ieee80211_superg *ic_superg; 259 260 /* radiotap handling */ 261 struct ieee80211_radiotap_header *ic_th;/* tx radiotap headers */ 262 void *ic_txchan; /* channel state in ic_th */ 263 struct ieee80211_radiotap_header *ic_rh;/* rx radiotap headers */ 264 void *ic_rxchan; /* channel state in ic_rh */ 265 int ic_montaps; /* active monitor mode taps */ 266 267 /* virtual ap create/delete */ 268 struct ieee80211vap* (*ic_vap_create)(struct ieee80211com *, 269 const char [IFNAMSIZ], int, 270 enum ieee80211_opmode, int, 271 const uint8_t [IEEE80211_ADDR_LEN], 272 const uint8_t [IEEE80211_ADDR_LEN]); 273 void (*ic_vap_delete)(struct ieee80211vap *); 274 /* device specific ioctls */ 275 int (*ic_ioctl)(struct ieee80211com *, 276 u_long, void *); 277 /* start/stop device */ 278 void (*ic_parent)(struct ieee80211com *); 279 /* operating mode attachment */ 280 ieee80211vap_attach ic_vattach[IEEE80211_OPMODE_MAX]; 281 /* return hardware/radio capabilities */ 282 void (*ic_getradiocaps)(struct ieee80211com *, 283 int, int *, struct ieee80211_channel []); 284 /* check and/or prepare regdomain state change */ 285 int (*ic_setregdomain)(struct ieee80211com *, 286 struct ieee80211_regdomain *, 287 int, struct ieee80211_channel []); 288 289 int (*ic_set_quiet)(struct ieee80211_node *, 290 u_int8_t *quiet_elm); 291 292 /* regular transmit */ 293 int (*ic_transmit)(struct ieee80211com *, 294 struct mbuf *); 295 /* send/recv 802.11 management frame */ 296 int (*ic_send_mgmt)(struct ieee80211_node *, 297 int, int); 298 /* send raw 802.11 frame */ 299 int (*ic_raw_xmit)(struct ieee80211_node *, 300 struct mbuf *, 301 const struct ieee80211_bpf_params *); 302 /* update device state for 802.11 slot time change */ 303 void (*ic_updateslot)(struct ieee80211com *); 304 /* handle multicast state changes */ 305 void (*ic_update_mcast)(struct ieee80211com *); 306 /* handle promiscuous mode changes */ 307 void (*ic_update_promisc)(struct ieee80211com *); 308 /* new station association callback/notification */ 309 void (*ic_newassoc)(struct ieee80211_node *, int); 310 /* TDMA update notification */ 311 void (*ic_tdma_update)(struct ieee80211_node *, 312 const struct ieee80211_tdma_param *, int); 313 /* node state management */ 314 struct ieee80211_node* (*ic_node_alloc)(struct ieee80211vap *, 315 const uint8_t [IEEE80211_ADDR_LEN]); 316 void (*ic_node_free)(struct ieee80211_node *); 317 void (*ic_node_cleanup)(struct ieee80211_node *); 318 void (*ic_node_age)(struct ieee80211_node *); 319 void (*ic_node_drain)(struct ieee80211_node *); 320 int8_t (*ic_node_getrssi)(const struct ieee80211_node*); 321 void (*ic_node_getsignal)(const struct ieee80211_node*, 322 int8_t *, int8_t *); 323 void (*ic_node_getmimoinfo)( 324 const struct ieee80211_node*, 325 struct ieee80211_mimo_info *); 326 /* scanning support */ 327 void (*ic_scan_start)(struct ieee80211com *); 328 void (*ic_scan_end)(struct ieee80211com *); 329 void (*ic_set_channel)(struct ieee80211com *); 330 void (*ic_scan_curchan)(struct ieee80211_scan_state *, 331 unsigned long); 332 void (*ic_scan_mindwell)(struct ieee80211_scan_state *); 333 334 /* 335 * 802.11n ADDBA support. A simple/generic implementation 336 * of A-MPDU tx aggregation is provided; the driver may 337 * override these methods to provide their own support. 338 * A-MPDU rx re-ordering happens automatically if the 339 * driver passes out-of-order frames to ieee80211_input 340 * from an assocated HT station. 341 */ 342 int (*ic_recv_action)(struct ieee80211_node *, 343 const struct ieee80211_frame *, 344 const uint8_t *frm, const uint8_t *efrm); 345 int (*ic_send_action)(struct ieee80211_node *, 346 int category, int action, void *); 347 /* check if A-MPDU should be enabled this station+ac */ 348 int (*ic_ampdu_enable)(struct ieee80211_node *, 349 struct ieee80211_tx_ampdu *); 350 /* start/stop doing A-MPDU tx aggregation for a station */ 351 int (*ic_addba_request)(struct ieee80211_node *, 352 struct ieee80211_tx_ampdu *, 353 int dialogtoken, int baparamset, 354 int batimeout); 355 int (*ic_addba_response)(struct ieee80211_node *, 356 struct ieee80211_tx_ampdu *, 357 int status, int baparamset, int batimeout); 358 void (*ic_addba_stop)(struct ieee80211_node *, 359 struct ieee80211_tx_ampdu *); 360 void (*ic_addba_response_timeout)(struct ieee80211_node *, 361 struct ieee80211_tx_ampdu *); 362 /* BAR response received */ 363 void (*ic_bar_response)(struct ieee80211_node *, 364 struct ieee80211_tx_ampdu *, int status); 365 /* start/stop doing A-MPDU rx processing for a station */ 366 int (*ic_ampdu_rx_start)(struct ieee80211_node *, 367 struct ieee80211_rx_ampdu *, int baparamset, 368 int batimeout, int baseqctl); 369 void (*ic_ampdu_rx_stop)(struct ieee80211_node *, 370 struct ieee80211_rx_ampdu *); 371 372 /* The channel width has changed (20<->2040) */ 373 void (*ic_update_chw)(struct ieee80211com *); 374 375 uint64_t ic_spare[7]; 376 }; 377 378 struct ieee80211_aclator; 379 struct ieee80211_tdma_state; 380 struct ieee80211_mesh_state; 381 struct ieee80211_hwmp_state; 382 383 struct ieee80211vap { 384 struct ifmedia iv_media; /* interface media config */ 385 struct ifnet *iv_ifp; /* associated device */ 386 struct bpf_if *iv_rawbpf; /* packet filter structure */ 387 struct sysctl_ctx_list *iv_sysctl; /* dynamic sysctl context */ 388 struct sysctl_oid *iv_oid; /* net.wlan.X sysctl oid */ 389 390 TAILQ_ENTRY(ieee80211vap) iv_next; /* list of vap instances */ 391 struct ieee80211com *iv_ic; /* back ptr to common state */ 392 /* MAC address: ifp or ic */ 393 uint8_t iv_myaddr[IEEE80211_ADDR_LEN]; 394 uint32_t iv_debug; /* debug msg flags */ 395 struct ieee80211_stats iv_stats; /* statistics */ 396 397 uint32_t iv_flags; /* state flags */ 398 uint32_t iv_flags_ext; /* extended state flags */ 399 uint32_t iv_flags_ht; /* HT state flags */ 400 uint32_t iv_flags_ven; /* vendor state flags */ 401 uint32_t iv_ifflags; /* ifnet flags */ 402 uint32_t iv_caps; /* capabilities */ 403 uint32_t iv_htcaps; /* HT capabilities */ 404 uint32_t iv_htextcaps; /* HT extended capabilities */ 405 enum ieee80211_opmode iv_opmode; /* operation mode */ 406 enum ieee80211_state iv_state; /* state machine state */ 407 enum ieee80211_state iv_nstate; /* pending state */ 408 int iv_nstate_arg; /* pending state arg */ 409 struct task iv_nstate_task; /* deferred state processing */ 410 struct task iv_swbmiss_task;/* deferred iv_bmiss call */ 411 struct callout iv_mgtsend; /* mgmt frame response timer */ 412 /* inactivity timer settings */ 413 int iv_inact_init; /* setting for new station */ 414 int iv_inact_auth; /* auth but not assoc setting */ 415 int iv_inact_run; /* authorized setting */ 416 int iv_inact_probe; /* inactive probe time */ 417 418 /* VHT flags */ 419 uint32_t iv_flags_vht; /* VHT state flags */ 420 uint32_t iv_vhtcaps; /* VHT capabilities */ 421 uint32_t iv_vhtextcaps; /* VHT extended capabilities (TODO) */ 422 struct ieee80211_vht_mcs_info iv_vht_mcsinfo; 423 uint32_t iv_vht_spare[4]; 424 425 int iv_des_nssid; /* # desired ssids */ 426 struct ieee80211_scan_ssid iv_des_ssid[1];/* desired ssid table */ 427 uint8_t iv_des_bssid[IEEE80211_ADDR_LEN]; 428 struct ieee80211_channel *iv_des_chan; /* desired channel */ 429 uint16_t iv_des_mode; /* desired mode */ 430 int iv_nicknamelen; /* XXX junk */ 431 uint8_t iv_nickname[IEEE80211_NWID_LEN]; 432 u_int iv_bgscanidle; /* bg scan idle threshold */ 433 u_int iv_bgscanintvl; /* bg scan min interval */ 434 u_int iv_scanvalid; /* scan cache valid threshold */ 435 u_int iv_scanreq_duration; 436 u_int iv_scanreq_mindwell; 437 u_int iv_scanreq_maxdwell; 438 uint16_t iv_scanreq_flags;/* held scan request params */ 439 uint8_t iv_scanreq_nssid; 440 struct ieee80211_scan_ssid iv_scanreq_ssid[IEEE80211_SCAN_MAX_SSID]; 441 /* sta-mode roaming state */ 442 enum ieee80211_roamingmode iv_roaming; /* roaming mode */ 443 struct ieee80211_roamparam iv_roamparms[IEEE80211_MODE_MAX]; 444 445 uint8_t iv_bmissthreshold; 446 uint8_t iv_bmiss_count; /* current beacon miss count */ 447 int iv_bmiss_max; /* max bmiss before scan */ 448 uint16_t iv_swbmiss_count;/* beacons in last period */ 449 uint16_t iv_swbmiss_period;/* s/w bmiss period */ 450 struct callout iv_swbmiss; /* s/w beacon miss timer */ 451 452 int iv_ampdu_rxmax; /* A-MPDU rx limit (bytes) */ 453 int iv_ampdu_density;/* A-MPDU density */ 454 int iv_ampdu_limit; /* A-MPDU tx limit (bytes) */ 455 int iv_amsdu_limit; /* A-MSDU tx limit (bytes) */ 456 u_int iv_ampdu_mintraffic[WME_NUM_AC]; 457 458 struct ieee80211_beacon_offsets iv_bcn_off; 459 uint32_t *iv_aid_bitmap; /* association id map */ 460 uint16_t iv_max_aid; 461 uint16_t iv_sta_assoc; /* stations associated */ 462 uint16_t iv_ps_sta; /* stations in power save */ 463 uint16_t iv_ps_pending; /* ps sta's w/ pending frames */ 464 uint16_t iv_txseq; /* mcast xmit seq# space */ 465 uint16_t iv_tim_len; /* ic_tim_bitmap size (bytes) */ 466 uint8_t *iv_tim_bitmap; /* power-save stations w/ data*/ 467 uint8_t iv_dtim_period; /* DTIM period */ 468 uint8_t iv_dtim_count; /* DTIM count from last bcn */ 469 /* set/unset aid pwrsav state */ 470 uint8_t iv_quiet; /* Quiet Element */ 471 uint8_t iv_quiet_count; /* constant count for Quiet Element */ 472 uint8_t iv_quiet_count_value; /* variable count for Quiet Element */ 473 uint8_t iv_quiet_period; /* period for Quiet Element */ 474 uint16_t iv_quiet_duration; /* duration for Quiet Element */ 475 uint16_t iv_quiet_offset; /* offset for Quiet Element */ 476 int iv_csa_count; /* count for doing CSA */ 477 478 struct ieee80211_node *iv_bss; /* information for this node */ 479 struct ieee80211_txparam iv_txparms[IEEE80211_MODE_MAX]; 480 uint16_t iv_rtsthreshold; 481 uint16_t iv_fragthreshold; 482 int iv_inact_timer; /* inactivity timer wait */ 483 /* application-specified IE's to attach to mgt frames */ 484 struct ieee80211_appie *iv_appie_beacon; 485 struct ieee80211_appie *iv_appie_probereq; 486 struct ieee80211_appie *iv_appie_proberesp; 487 struct ieee80211_appie *iv_appie_assocreq; 488 struct ieee80211_appie *iv_appie_assocresp; 489 struct ieee80211_appie *iv_appie_wpa; 490 uint8_t *iv_wpa_ie; 491 uint8_t *iv_rsn_ie; 492 493 /* Key management */ 494 uint16_t iv_max_keyix; /* max h/w key index */ 495 ieee80211_keyix iv_def_txkey; /* default/group tx key index */ 496 struct ieee80211_key iv_nw_keys[IEEE80211_WEP_NKID]; 497 int (*iv_key_alloc)(struct ieee80211vap *, 498 struct ieee80211_key *, 499 ieee80211_keyix *, ieee80211_keyix *); 500 int (*iv_key_delete)(struct ieee80211vap *, 501 const struct ieee80211_key *); 502 int (*iv_key_set)(struct ieee80211vap *, 503 const struct ieee80211_key *); 504 void (*iv_key_update_begin)(struct ieee80211vap *); 505 void (*iv_key_update_end)(struct ieee80211vap *); 506 void (*iv_update_deftxkey)(struct ieee80211vap *, 507 ieee80211_keyix deftxkey); 508 509 const struct ieee80211_authenticator *iv_auth; /* authenticator glue */ 510 void *iv_ec; /* private auth state */ 511 512 const struct ieee80211_aclator *iv_acl; /* acl glue */ 513 void *iv_as; /* private aclator state */ 514 515 const struct ieee80211_ratectl *iv_rate; 516 void *iv_rs; /* private ratectl state */ 517 518 struct ieee80211_tdma_state *iv_tdma; /* tdma state */ 519 struct ieee80211_mesh_state *iv_mesh; /* MBSS state */ 520 struct ieee80211_hwmp_state *iv_hwmp; /* HWMP state */ 521 522 /* operate-mode detach hook */ 523 void (*iv_opdetach)(struct ieee80211vap *); 524 /* receive processing */ 525 int (*iv_input)(struct ieee80211_node *, 526 struct mbuf *, 527 const struct ieee80211_rx_stats *, 528 int, int); 529 void (*iv_recv_mgmt)(struct ieee80211_node *, 530 struct mbuf *, int, 531 const struct ieee80211_rx_stats *, 532 int, int); 533 void (*iv_recv_ctl)(struct ieee80211_node *, 534 struct mbuf *, int); 535 void (*iv_deliver_data)(struct ieee80211vap *, 536 struct ieee80211_node *, struct mbuf *); 537 #if 0 538 /* send processing */ 539 int (*iv_send_mgmt)(struct ieee80211_node *, 540 int, int); 541 #endif 542 /* beacon miss processing */ 543 void (*iv_bmiss)(struct ieee80211vap *); 544 /* reset device state after 802.11 parameter/state change */ 545 int (*iv_reset)(struct ieee80211vap *, u_long); 546 /* [schedule] beacon frame update */ 547 void (*iv_update_beacon)(struct ieee80211vap *, int); 548 /* power save handling */ 549 void (*iv_update_ps)(struct ieee80211vap *, int); 550 int (*iv_set_tim)(struct ieee80211_node *, int); 551 void (*iv_node_ps)(struct ieee80211_node *, int); 552 void (*iv_sta_ps)(struct ieee80211vap *, int); 553 void (*iv_recv_pspoll)(struct ieee80211_node *, 554 struct mbuf *); 555 556 /* state machine processing */ 557 int (*iv_newstate)(struct ieee80211vap *, 558 enum ieee80211_state, int); 559 /* 802.3 output method for raw frame xmit */ 560 int (*iv_output)(struct ifnet *, struct mbuf *, 561 const struct sockaddr *, struct route *); 562 563 int (*iv_wme_update)(struct ieee80211vap *, 564 const struct wmeParams *wme_params); 565 struct task iv_wme_task; /* deferred VAP WME update */ 566 567 uint64_t iv_spare[6]; 568 }; 569 MALLOC_DECLARE(M_80211_VAP); 570 571 #define IEEE80211_ADDR_EQ(a1,a2) (memcmp(a1,a2,IEEE80211_ADDR_LEN) == 0) 572 #define IEEE80211_ADDR_COPY(dst,src) memcpy(dst,src,IEEE80211_ADDR_LEN) 573 574 /* ic_flags/iv_flags */ 575 #define IEEE80211_F_TURBOP 0x00000001 /* CONF: ATH Turbo enabled*/ 576 #define IEEE80211_F_COMP 0x00000002 /* CONF: ATH comp enabled */ 577 #define IEEE80211_F_FF 0x00000004 /* CONF: ATH FF enabled */ 578 #define IEEE80211_F_BURST 0x00000008 /* CONF: bursting enabled */ 579 /* NB: this is intentionally setup to be IEEE80211_CAPINFO_PRIVACY */ 580 #define IEEE80211_F_PRIVACY 0x00000010 /* CONF: privacy enabled */ 581 #define IEEE80211_F_PUREG 0x00000020 /* CONF: 11g w/o 11b sta's */ 582 #define IEEE80211_F_SCAN 0x00000080 /* STATUS: scanning */ 583 /* 0x00000300 reserved */ 584 /* NB: this is intentionally setup to be IEEE80211_CAPINFO_SHORT_SLOTTIME */ 585 #define IEEE80211_F_SHSLOT 0x00000400 /* STATUS: use short slot time*/ 586 #define IEEE80211_F_PMGTON 0x00000800 /* CONF: Power mgmt enable */ 587 #define IEEE80211_F_DESBSSID 0x00001000 /* CONF: des_bssid is set */ 588 #define IEEE80211_F_WME 0x00002000 /* CONF: enable WME use */ 589 #define IEEE80211_F_BGSCAN 0x00004000 /* CONF: bg scan enabled (???)*/ 590 #define IEEE80211_F_SWRETRY 0x00008000 /* CONF: sw tx retry enabled */ 591 /* 0x00030000 reserved */ 592 #define IEEE80211_F_SHPREAMBLE 0x00040000 /* STATUS: use short preamble */ 593 #define IEEE80211_F_DATAPAD 0x00080000 /* CONF: do alignment pad */ 594 #define IEEE80211_F_USEPROT 0x00100000 /* STATUS: protection enabled */ 595 #define IEEE80211_F_USEBARKER 0x00200000 /* STATUS: use barker preamble*/ 596 #define IEEE80211_F_CSAPENDING 0x00400000 /* STATUS: chan switch pending*/ 597 #define IEEE80211_F_WPA1 0x00800000 /* CONF: WPA enabled */ 598 #define IEEE80211_F_WPA2 0x01000000 /* CONF: WPA2 enabled */ 599 #define IEEE80211_F_WPA 0x01800000 /* CONF: WPA/WPA2 enabled */ 600 #define IEEE80211_F_DROPUNENC 0x02000000 /* CONF: drop unencrypted */ 601 #define IEEE80211_F_COUNTERM 0x04000000 /* CONF: TKIP countermeasures */ 602 #define IEEE80211_F_HIDESSID 0x08000000 /* CONF: hide SSID in beacon */ 603 #define IEEE80211_F_NOBRIDGE 0x10000000 /* CONF: dis. internal bridge */ 604 #define IEEE80211_F_PCF 0x20000000 /* CONF: PCF enabled */ 605 #define IEEE80211_F_DOTH 0x40000000 /* CONF: 11h enabled */ 606 #define IEEE80211_F_DWDS 0x80000000 /* CONF: Dynamic WDS enabled */ 607 608 #define IEEE80211_F_BITS \ 609 "\20\1TURBOP\2COMP\3FF\4BURST\5PRIVACY\6PUREG\10SCAN" \ 610 "\13SHSLOT\14PMGTON\15DESBSSID\16WME\17BGSCAN\20SWRETRY" \ 611 "\23SHPREAMBLE\24DATAPAD\25USEPROT\26USERBARKER\27CSAPENDING" \ 612 "\30WPA1\31WPA2\32DROPUNENC\33COUNTERM\34HIDESSID\35NOBRIDG\36PCF" \ 613 "\37DOTH\40DWDS" 614 615 /* Atheros protocol-specific flags */ 616 #define IEEE80211_F_ATHEROS \ 617 (IEEE80211_F_FF | IEEE80211_F_COMP | IEEE80211_F_TURBOP) 618 /* Check if an Atheros capability was negotiated for use */ 619 #define IEEE80211_ATH_CAP(vap, ni, bit) \ 620 ((vap)->iv_flags & (ni)->ni_ath_flags & (bit)) 621 622 /* ic_flags_ext/iv_flags_ext */ 623 #define IEEE80211_FEXT_INACT 0x00000002 /* CONF: sta inact handling */ 624 #define IEEE80211_FEXT_SCANWAIT 0x00000004 /* STATUS: awaiting scan */ 625 /* 0x00000006 reserved */ 626 #define IEEE80211_FEXT_BGSCAN 0x00000008 /* STATUS: complete bgscan */ 627 #define IEEE80211_FEXT_WPS 0x00000010 /* CONF: WPS enabled */ 628 #define IEEE80211_FEXT_TSN 0x00000020 /* CONF: TSN enabled */ 629 #define IEEE80211_FEXT_SCANREQ 0x00000040 /* STATUS: scan req params */ 630 #define IEEE80211_FEXT_RESUME 0x00000080 /* STATUS: start on resume */ 631 #define IEEE80211_FEXT_4ADDR 0x00000100 /* CONF: apply 4-addr encap */ 632 #define IEEE80211_FEXT_NONERP_PR 0x00000200 /* STATUS: non-ERP sta present*/ 633 #define IEEE80211_FEXT_SWBMISS 0x00000400 /* CONF: do bmiss in s/w */ 634 #define IEEE80211_FEXT_DFS 0x00000800 /* CONF: DFS enabled */ 635 #define IEEE80211_FEXT_DOTD 0x00001000 /* CONF: 11d enabled */ 636 #define IEEE80211_FEXT_STATEWAIT 0x00002000 /* STATUS: awaiting state chg */ 637 #define IEEE80211_FEXT_REINIT 0x00004000 /* STATUS: INIT state first */ 638 #define IEEE80211_FEXT_BPF 0x00008000 /* STATUS: BPF tap present */ 639 /* NB: immutable: should be set only when creating a vap */ 640 #define IEEE80211_FEXT_WDSLEGACY 0x00010000 /* CONF: legacy WDS operation */ 641 #define IEEE80211_FEXT_PROBECHAN 0x00020000 /* CONF: probe passive channel*/ 642 #define IEEE80211_FEXT_UNIQMAC 0x00040000 /* CONF: user or computed mac */ 643 #define IEEE80211_FEXT_SCAN_OFFLOAD 0x00080000 /* CONF: scan is fully offloaded */ 644 #define IEEE80211_FEXT_SEQNO_OFFLOAD 0x00100000 /* CONF: driver does seqno insertion/allocation */ 645 #define IEEE80211_FEXT_FRAG_OFFLOAD 0x00200000 /* CONF: hardware does 802.11 fragmentation + assignment */ 646 #define IEEE80211_FEXT_VHT 0x00400000 /* CONF: VHT support */ 647 #define IEEE80211_FEXT_QUIET_IE 0x00800000 /* STATUS: quiet IE in a beacon has been added */ 648 649 #define IEEE80211_FEXT_BITS \ 650 "\20\2INACT\3SCANWAIT\4BGSCAN\5WPS\6TSN\7SCANREQ\10RESUME" \ 651 "\0114ADDR\12NONEPR_PR\13SWBMISS\14DFS\15DOTD\16STATEWAIT\17REINIT" \ 652 "\20BPF\21WDSLEGACY\22PROBECHAN\23UNIQMAC\24SCAN_OFFLOAD\25SEQNO_OFFLOAD" \ 653 "\26VHT\27QUIET_IE" 654 655 /* ic_flags_ht/iv_flags_ht */ 656 #define IEEE80211_FHT_NONHT_PR 0x00000001 /* STATUS: non-HT sta present */ 657 #define IEEE80211_FHT_LDPC_TX 0x00010000 /* CONF: LDPC tx enabled */ 658 #define IEEE80211_FHT_LDPC_RX 0x00020000 /* CONF: LDPC rx enabled */ 659 #define IEEE80211_FHT_GF 0x00040000 /* CONF: Greenfield enabled */ 660 #define IEEE80211_FHT_HT 0x00080000 /* CONF: HT supported */ 661 #define IEEE80211_FHT_AMPDU_TX 0x00100000 /* CONF: A-MPDU tx supported */ 662 #define IEEE80211_FHT_AMPDU_RX 0x00200000 /* CONF: A-MPDU rx supported */ 663 #define IEEE80211_FHT_AMSDU_TX 0x00400000 /* CONF: A-MSDU tx supported */ 664 #define IEEE80211_FHT_AMSDU_RX 0x00800000 /* CONF: A-MSDU rx supported */ 665 #define IEEE80211_FHT_USEHT40 0x01000000 /* CONF: 20/40 use enabled */ 666 #define IEEE80211_FHT_PUREN 0x02000000 /* CONF: 11n w/o legacy sta's */ 667 #define IEEE80211_FHT_SHORTGI20 0x04000000 /* CONF: short GI in HT20 */ 668 #define IEEE80211_FHT_SHORTGI40 0x08000000 /* CONF: short GI in HT40 */ 669 #define IEEE80211_FHT_HTCOMPAT 0x10000000 /* CONF: HT vendor OUI's */ 670 #define IEEE80211_FHT_RIFS 0x20000000 /* CONF: RIFS enabled */ 671 #define IEEE80211_FHT_STBC_TX 0x40000000 /* CONF: STBC tx enabled */ 672 #define IEEE80211_FHT_STBC_RX 0x80000000 /* CONF: STBC rx enabled */ 673 674 #define IEEE80211_FHT_BITS \ 675 "\20\1NONHT_PR" \ 676 "\23GF\24HT\25AMPDU_TX\26AMPDU_TX" \ 677 "\27AMSDU_TX\30AMSDU_RX\31USEHT40\32PUREN\33SHORTGI20\34SHORTGI40" \ 678 "\35HTCOMPAT\36RIFS\37STBC_TX\40STBC_RX" 679 680 #define IEEE80211_FVEN_BITS "\20" 681 682 #define IEEE80211_FVHT_VHT 0x000000001 /* CONF: VHT supported */ 683 #define IEEE80211_FVHT_USEVHT40 0x000000002 /* CONF: Use VHT40 */ 684 #define IEEE80211_FVHT_USEVHT80 0x000000004 /* CONF: Use VHT80 */ 685 #define IEEE80211_FVHT_USEVHT80P80 0x000000008 /* CONF: Use VHT 80+80 */ 686 #define IEEE80211_FVHT_USEVHT160 0x000000010 /* CONF: Use VHT160 */ 687 #define IEEE80211_VFHT_BITS \ 688 "\20\1VHT\2VHT40\3VHT80\4VHT80P80\5VHT160" 689 690 int ic_printf(struct ieee80211com *, const char *, ...) __printflike(2, 3); 691 void ieee80211_ifattach(struct ieee80211com *); 692 void ieee80211_ifdetach(struct ieee80211com *); 693 int ieee80211_vap_setup(struct ieee80211com *, struct ieee80211vap *, 694 const char name[IFNAMSIZ], int unit, 695 enum ieee80211_opmode opmode, int flags, 696 const uint8_t bssid[IEEE80211_ADDR_LEN]); 697 int ieee80211_vap_attach(struct ieee80211vap *, 698 ifm_change_cb_t, ifm_stat_cb_t, 699 const uint8_t macaddr[IEEE80211_ADDR_LEN]); 700 void ieee80211_vap_detach(struct ieee80211vap *); 701 const struct ieee80211_rateset *ieee80211_get_suprates(struct ieee80211com *ic, 702 const struct ieee80211_channel *); 703 const struct ieee80211_htrateset *ieee80211_get_suphtrates( 704 struct ieee80211com *, const struct ieee80211_channel *); 705 void ieee80211_announce(struct ieee80211com *); 706 void ieee80211_announce_channels(struct ieee80211com *); 707 void ieee80211_drain(struct ieee80211com *); 708 void ieee80211_chan_init(struct ieee80211com *); 709 struct ieee80211com *ieee80211_find_vap(const uint8_t mac[IEEE80211_ADDR_LEN]); 710 struct ieee80211com *ieee80211_find_com(const char *name); 711 typedef void ieee80211_com_iter_func(void *, struct ieee80211com *); 712 void ieee80211_iterate_coms(ieee80211_com_iter_func *, void *); 713 int ieee80211_media_change(struct ifnet *); 714 void ieee80211_media_status(struct ifnet *, struct ifmediareq *); 715 int ieee80211_ioctl(struct ifnet *, u_long, caddr_t); 716 int ieee80211_rate2media(struct ieee80211com *, int, 717 enum ieee80211_phymode); 718 int ieee80211_media2rate(int); 719 int ieee80211_mhz2ieee(u_int, u_int); 720 int ieee80211_chan2ieee(struct ieee80211com *, 721 const struct ieee80211_channel *); 722 u_int ieee80211_ieee2mhz(u_int, u_int); 723 int ieee80211_add_channel(struct ieee80211_channel[], int, int *, 724 uint8_t, uint16_t, int8_t, uint32_t, const uint8_t[]); 725 int ieee80211_add_channel_ht40(struct ieee80211_channel[], int, int *, 726 uint8_t, int8_t, uint32_t); 727 uint32_t ieee80211_get_channel_center_freq(const struct ieee80211_channel *); 728 uint32_t ieee80211_get_channel_center_freq1(const struct ieee80211_channel *); 729 uint32_t ieee80211_get_channel_center_freq2(const struct ieee80211_channel *); 730 int ieee80211_add_channel_list_2ghz(struct ieee80211_channel[], int, int *, 731 const uint8_t[], int, const uint8_t[], int); 732 int ieee80211_add_channel_list_5ghz(struct ieee80211_channel[], int, int *, 733 const uint8_t[], int, const uint8_t[], int); 734 struct ieee80211_channel *ieee80211_find_channel(struct ieee80211com *, 735 int freq, int flags); 736 struct ieee80211_channel *ieee80211_find_channel_byieee(struct ieee80211com *, 737 int ieee, int flags); 738 struct ieee80211_channel *ieee80211_lookup_channel_rxstatus(struct ieee80211vap *, 739 const struct ieee80211_rx_stats *); 740 int ieee80211_setmode(struct ieee80211com *, enum ieee80211_phymode); 741 enum ieee80211_phymode ieee80211_chan2mode(const struct ieee80211_channel *); 742 uint32_t ieee80211_mac_hash(const struct ieee80211com *, 743 const uint8_t addr[IEEE80211_ADDR_LEN]); 744 char ieee80211_channel_type_char(const struct ieee80211_channel *c); 745 746 #define ieee80211_get_current_channel(_ic) ((_ic)->ic_curchan) 747 #define ieee80211_get_home_channel(_ic) ((_ic)->ic_bsschan) 748 #define ieee80211_get_vap_desired_channel(_iv) ((_iv)->iv_des_chan) 749 750 void ieee80211_radiotap_attach(struct ieee80211com *, 751 struct ieee80211_radiotap_header *th, int tlen, 752 uint32_t tx_radiotap, 753 struct ieee80211_radiotap_header *rh, int rlen, 754 uint32_t rx_radiotap); 755 void ieee80211_radiotap_attachv(struct ieee80211com *, 756 struct ieee80211_radiotap_header *th, 757 int tlen, int n_tx_v, uint32_t tx_radiotap, 758 struct ieee80211_radiotap_header *rh, 759 int rlen, int n_rx_v, uint32_t rx_radiotap); 760 void ieee80211_radiotap_detach(struct ieee80211com *); 761 void ieee80211_radiotap_vattach(struct ieee80211vap *); 762 void ieee80211_radiotap_vdetach(struct ieee80211vap *); 763 void ieee80211_radiotap_chan_change(struct ieee80211com *); 764 void ieee80211_radiotap_tx(struct ieee80211vap *, struct mbuf *); 765 void ieee80211_radiotap_rx(struct ieee80211vap *, struct mbuf *); 766 void ieee80211_radiotap_rx_all(struct ieee80211com *, struct mbuf *); 767 768 static __inline int 769 ieee80211_radiotap_active(const struct ieee80211com *ic) 770 { 771 return (ic->ic_flags_ext & IEEE80211_FEXT_BPF) != 0; 772 } 773 774 static __inline int 775 ieee80211_radiotap_active_vap(const struct ieee80211vap *vap) 776 { 777 return (vap->iv_flags_ext & IEEE80211_FEXT_BPF) || 778 vap->iv_ic->ic_montaps != 0; 779 } 780 781 /* 782 * Enqueue a task on the state thread. 783 */ 784 static __inline void 785 ieee80211_runtask(struct ieee80211com *ic, struct task *task) 786 { 787 taskqueue_enqueue(ic->ic_tq, task); 788 } 789 790 /* 791 * Wait for a queued task to complete. 792 */ 793 static __inline void 794 ieee80211_draintask(struct ieee80211com *ic, struct task *task) 795 { 796 taskqueue_drain(ic->ic_tq, task); 797 } 798 799 /* 800 * Key update synchronization methods. XXX should not be visible. 801 */ 802 static __inline void 803 ieee80211_key_update_begin(struct ieee80211vap *vap) 804 { 805 vap->iv_key_update_begin(vap); 806 } 807 static __inline void 808 ieee80211_key_update_end(struct ieee80211vap *vap) 809 { 810 vap->iv_key_update_end(vap); 811 } 812 813 /* 814 * XXX these need to be here for IEEE80211_F_DATAPAD 815 */ 816 817 /* 818 * Return the space occupied by the 802.11 header and any 819 * padding required by the driver. This works for a 820 * management or data frame. 821 */ 822 static __inline int 823 ieee80211_hdrspace(struct ieee80211com *ic, const void *data) 824 { 825 int size = ieee80211_hdrsize(data); 826 if (ic->ic_flags & IEEE80211_F_DATAPAD) 827 size = roundup(size, sizeof(uint32_t)); 828 return size; 829 } 830 831 /* 832 * Like ieee80211_hdrspace, but handles any type of frame. 833 */ 834 static __inline int 835 ieee80211_anyhdrspace(struct ieee80211com *ic, const void *data) 836 { 837 int size = ieee80211_anyhdrsize(data); 838 if (ic->ic_flags & IEEE80211_F_DATAPAD) 839 size = roundup(size, sizeof(uint32_t)); 840 return size; 841 } 842 843 /* 844 * Notify a vap that beacon state has been updated. 845 */ 846 static __inline void 847 ieee80211_beacon_notify(struct ieee80211vap *vap, int what) 848 { 849 if (vap->iv_state == IEEE80211_S_RUN) 850 vap->iv_update_beacon(vap, what); 851 } 852 853 /* 854 * Calculate HT channel promotion flags for a channel. 855 * XXX belongs in ieee80211_ht.h but needs IEEE80211_FHT_* 856 */ 857 static __inline int 858 ieee80211_htchanflags(const struct ieee80211_channel *c) 859 { 860 return IEEE80211_IS_CHAN_HT40(c) ? 861 IEEE80211_FHT_HT | IEEE80211_FHT_USEHT40 : 862 IEEE80211_IS_CHAN_HT(c) ? IEEE80211_FHT_HT : 0; 863 } 864 865 /* 866 * Calculate VHT channel promotion flags for a channel. 867 * XXX belongs in ieee80211_vht.h but needs IEEE80211_FVHT_* 868 */ 869 static __inline int 870 ieee80211_vhtchanflags(const struct ieee80211_channel *c) 871 { 872 873 if (IEEE80211_IS_CHAN_VHT160(c)) 874 return IEEE80211_FVHT_USEVHT160; 875 if (IEEE80211_IS_CHAN_VHT80_80(c)) 876 return IEEE80211_FVHT_USEVHT80P80; 877 if (IEEE80211_IS_CHAN_VHT80(c)) 878 return IEEE80211_FVHT_USEVHT80; 879 if (IEEE80211_IS_CHAN_VHT40(c)) 880 return IEEE80211_FVHT_USEVHT40; 881 if (IEEE80211_IS_CHAN_VHT(c)) 882 return IEEE80211_FVHT_VHT; 883 return (0); 884 } 885 886 /* 887 * Fetch the current TX power (cap) for the given node. 888 * 889 * This includes the node and ic/vap TX power limit as needed, 890 * but it doesn't take into account any per-rate limit. 891 */ 892 static __inline uint16_t 893 ieee80211_get_node_txpower(struct ieee80211_node *ni) 894 { 895 struct ieee80211com *ic = ni->ni_ic; 896 uint16_t txpower; 897 898 txpower = ni->ni_txpower; 899 txpower = MIN(txpower, ic->ic_txpowlimit); 900 if (ic->ic_curchan != NULL) { 901 txpower = MIN(txpower, 2 * ic->ic_curchan->ic_maxregpower); 902 txpower = MIN(txpower, ic->ic_curchan->ic_maxpower); 903 } 904 905 return (txpower); 906 } 907 908 /* 909 * Debugging facilities compiled in when IEEE80211_DEBUG is defined. 910 * 911 * The intent is that any problem in the net80211 layer can be 912 * diagnosed by inspecting the statistics (dumped by the wlanstats 913 * program) and/or the msgs generated by net80211. Messages are 914 * broken into functional classes and can be controlled with the 915 * wlandebug program. Certain of these msg groups are for facilities 916 * that are no longer part of net80211 (e.g. IEEE80211_MSG_DOT1XSM). 917 */ 918 #define IEEE80211_MSG_11N 0x80000000 /* 11n mode debug */ 919 #define IEEE80211_MSG_DEBUG 0x40000000 /* IFF_DEBUG equivalent */ 920 #define IEEE80211_MSG_DUMPPKTS 0x20000000 /* IFF_LINK2 equivalant */ 921 #define IEEE80211_MSG_CRYPTO 0x10000000 /* crypto work */ 922 #define IEEE80211_MSG_INPUT 0x08000000 /* input handling */ 923 #define IEEE80211_MSG_XRATE 0x04000000 /* rate set handling */ 924 #define IEEE80211_MSG_ELEMID 0x02000000 /* element id parsing */ 925 #define IEEE80211_MSG_NODE 0x01000000 /* node handling */ 926 #define IEEE80211_MSG_ASSOC 0x00800000 /* association handling */ 927 #define IEEE80211_MSG_AUTH 0x00400000 /* authentication handling */ 928 #define IEEE80211_MSG_SCAN 0x00200000 /* scanning */ 929 #define IEEE80211_MSG_OUTPUT 0x00100000 /* output handling */ 930 #define IEEE80211_MSG_STATE 0x00080000 /* state machine */ 931 #define IEEE80211_MSG_POWER 0x00040000 /* power save handling */ 932 #define IEEE80211_MSG_HWMP 0x00020000 /* hybrid mesh protocol */ 933 #define IEEE80211_MSG_DOT1XSM 0x00010000 /* 802.1x state machine */ 934 #define IEEE80211_MSG_RADIUS 0x00008000 /* 802.1x radius client */ 935 #define IEEE80211_MSG_RADDUMP 0x00004000 /* dump 802.1x radius packets */ 936 #define IEEE80211_MSG_MESH 0x00002000 /* mesh networking */ 937 #define IEEE80211_MSG_WPA 0x00001000 /* WPA/RSN protocol */ 938 #define IEEE80211_MSG_ACL 0x00000800 /* ACL handling */ 939 #define IEEE80211_MSG_WME 0x00000400 /* WME protocol */ 940 #define IEEE80211_MSG_SUPERG 0x00000200 /* Atheros SuperG protocol */ 941 #define IEEE80211_MSG_DOTH 0x00000100 /* 802.11h support */ 942 #define IEEE80211_MSG_INACT 0x00000080 /* inactivity handling */ 943 #define IEEE80211_MSG_ROAM 0x00000040 /* sta-mode roaming */ 944 #define IEEE80211_MSG_RATECTL 0x00000020 /* tx rate control */ 945 #define IEEE80211_MSG_ACTION 0x00000010 /* action frame handling */ 946 #define IEEE80211_MSG_WDS 0x00000008 /* WDS handling */ 947 #define IEEE80211_MSG_IOCTL 0x00000004 /* ioctl handling */ 948 #define IEEE80211_MSG_TDMA 0x00000002 /* TDMA handling */ 949 950 #define IEEE80211_MSG_ANY 0xffffffff /* anything */ 951 952 #define IEEE80211_MSG_BITS \ 953 "\20\2TDMA\3IOCTL\4WDS\5ACTION\6RATECTL\7ROAM\10INACT\11DOTH\12SUPERG" \ 954 "\13WME\14ACL\15WPA\16RADKEYS\17RADDUMP\20RADIUS\21DOT1XSM\22HWMP" \ 955 "\23POWER\24STATE\25OUTPUT\26SCAN\27AUTH\30ASSOC\31NODE\32ELEMID" \ 956 "\33XRATE\34INPUT\35CRYPTO\36DUPMPKTS\37DEBUG\04011N" 957 958 #ifdef IEEE80211_DEBUG 959 #define ieee80211_msg(_vap, _m) ((_vap)->iv_debug & (_m)) 960 #define IEEE80211_DPRINTF(_vap, _m, _fmt, ...) do { \ 961 if (ieee80211_msg(_vap, _m)) \ 962 ieee80211_note(_vap, _fmt, __VA_ARGS__); \ 963 } while (0) 964 #define IEEE80211_NOTE(_vap, _m, _ni, _fmt, ...) do { \ 965 if (ieee80211_msg(_vap, _m)) \ 966 ieee80211_note_mac(_vap, (_ni)->ni_macaddr, _fmt, __VA_ARGS__);\ 967 } while (0) 968 #define IEEE80211_NOTE_MAC(_vap, _m, _mac, _fmt, ...) do { \ 969 if (ieee80211_msg(_vap, _m)) \ 970 ieee80211_note_mac(_vap, _mac, _fmt, __VA_ARGS__); \ 971 } while (0) 972 #define IEEE80211_NOTE_FRAME(_vap, _m, _wh, _fmt, ...) do { \ 973 if (ieee80211_msg(_vap, _m)) \ 974 ieee80211_note_frame(_vap, _wh, _fmt, __VA_ARGS__); \ 975 } while (0) 976 void ieee80211_note(const struct ieee80211vap *, const char *, ...); 977 void ieee80211_note_mac(const struct ieee80211vap *, 978 const uint8_t mac[IEEE80211_ADDR_LEN], const char *, ...); 979 void ieee80211_note_frame(const struct ieee80211vap *, 980 const struct ieee80211_frame *, const char *, ...); 981 #define ieee80211_msg_debug(_vap) \ 982 ((_vap)->iv_debug & IEEE80211_MSG_DEBUG) 983 #define ieee80211_msg_dumppkts(_vap) \ 984 ((_vap)->iv_debug & IEEE80211_MSG_DUMPPKTS) 985 #define ieee80211_msg_input(_vap) \ 986 ((_vap)->iv_debug & IEEE80211_MSG_INPUT) 987 #define ieee80211_msg_radius(_vap) \ 988 ((_vap)->iv_debug & IEEE80211_MSG_RADIUS) 989 #define ieee80211_msg_dumpradius(_vap) \ 990 ((_vap)->iv_debug & IEEE80211_MSG_RADDUMP) 991 #define ieee80211_msg_dumpradkeys(_vap) \ 992 ((_vap)->iv_debug & IEEE80211_MSG_RADKEYS) 993 #define ieee80211_msg_scan(_vap) \ 994 ((_vap)->iv_debug & IEEE80211_MSG_SCAN) 995 #define ieee80211_msg_assoc(_vap) \ 996 ((_vap)->iv_debug & IEEE80211_MSG_ASSOC) 997 998 /* 999 * Emit a debug message about discarding a frame or information 1000 * element. One format is for extracting the mac address from 1001 * the frame header; the other is for when a header is not 1002 * available or otherwise appropriate. 1003 */ 1004 #define IEEE80211_DISCARD(_vap, _m, _wh, _type, _fmt, ...) do { \ 1005 if ((_vap)->iv_debug & (_m)) \ 1006 ieee80211_discard_frame(_vap, _wh, _type, _fmt, __VA_ARGS__);\ 1007 } while (0) 1008 #define IEEE80211_DISCARD_IE(_vap, _m, _wh, _type, _fmt, ...) do { \ 1009 if ((_vap)->iv_debug & (_m)) \ 1010 ieee80211_discard_ie(_vap, _wh, _type, _fmt, __VA_ARGS__);\ 1011 } while (0) 1012 #define IEEE80211_DISCARD_MAC(_vap, _m, _mac, _type, _fmt, ...) do { \ 1013 if ((_vap)->iv_debug & (_m)) \ 1014 ieee80211_discard_mac(_vap, _mac, _type, _fmt, __VA_ARGS__);\ 1015 } while (0) 1016 1017 void ieee80211_discard_frame(const struct ieee80211vap *, 1018 const struct ieee80211_frame *, const char *type, const char *fmt, ...); 1019 void ieee80211_discard_ie(const struct ieee80211vap *, 1020 const struct ieee80211_frame *, const char *type, const char *fmt, ...); 1021 void ieee80211_discard_mac(const struct ieee80211vap *, 1022 const uint8_t mac[IEEE80211_ADDR_LEN], const char *type, 1023 const char *fmt, ...); 1024 #else 1025 #define IEEE80211_DPRINTF(_vap, _m, _fmt, ...) 1026 #define IEEE80211_NOTE(_vap, _m, _ni, _fmt, ...) 1027 #define IEEE80211_NOTE_FRAME(_vap, _m, _wh, _fmt, ...) 1028 #define IEEE80211_NOTE_MAC(_vap, _m, _mac, _fmt, ...) 1029 #define ieee80211_msg_dumppkts(_vap) 0 1030 #define ieee80211_msg(_vap, _m) 0 1031 1032 #define IEEE80211_DISCARD(_vap, _m, _wh, _type, _fmt, ...) 1033 #define IEEE80211_DISCARD_IE(_vap, _m, _wh, _type, _fmt, ...) 1034 #define IEEE80211_DISCARD_MAC(_vap, _m, _mac, _type, _fmt, ...) 1035 #endif 1036 1037 #endif /* _NET80211_IEEE80211_VAR_H_ */ 1038