11a1e1d21SSam Leffler /*- 27535e66aSSam Leffler * Copyright (c) 2001 Atsushi Onoe 3b032f27cSSam Leffler * Copyright (c) 2002-2008 Sam Leffler, Errno Consulting 41a1e1d21SSam Leffler * All rights reserved. 51a1e1d21SSam Leffler * 61a1e1d21SSam Leffler * Redistribution and use in source and binary forms, with or without 71a1e1d21SSam Leffler * modification, are permitted provided that the following conditions 81a1e1d21SSam Leffler * are met: 91a1e1d21SSam Leffler * 1. Redistributions of source code must retain the above copyright 107535e66aSSam Leffler * notice, this list of conditions and the following disclaimer. 117535e66aSSam Leffler * 2. Redistributions in binary form must reproduce the above copyright 127535e66aSSam Leffler * notice, this list of conditions and the following disclaimer in the 137535e66aSSam Leffler * documentation and/or other materials provided with the distribution. 141a1e1d21SSam Leffler * 157535e66aSSam Leffler * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 167535e66aSSam Leffler * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 177535e66aSSam Leffler * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 187535e66aSSam Leffler * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 197535e66aSSam Leffler * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 207535e66aSSam Leffler * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 217535e66aSSam Leffler * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 227535e66aSSam Leffler * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 237535e66aSSam Leffler * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 247535e66aSSam Leffler * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 251a1e1d21SSam Leffler */ 261a1e1d21SSam Leffler 271a1e1d21SSam Leffler #include <sys/cdefs.h> 281a1e1d21SSam Leffler __FBSDID("$FreeBSD$"); 291a1e1d21SSam Leffler 301a1e1d21SSam Leffler /* 311a1e1d21SSam Leffler * IEEE 802.11 protocol support. 321a1e1d21SSam Leffler */ 331a1e1d21SSam Leffler 341a1e1d21SSam Leffler #include "opt_inet.h" 35b032f27cSSam Leffler #include "opt_wlan.h" 361a1e1d21SSam Leffler 371a1e1d21SSam Leffler #include <sys/param.h> 381a1e1d21SSam Leffler #include <sys/kernel.h> 398a1b9b6aSSam Leffler #include <sys/systm.h> 401a1e1d21SSam Leffler 418a1b9b6aSSam Leffler #include <sys/socket.h> 42b032f27cSSam Leffler #include <sys/sockio.h> 431a1e1d21SSam Leffler 441a1e1d21SSam Leffler #include <net/if.h> 4576039bc8SGleb Smirnoff #include <net/if_var.h> 461a1e1d21SSam Leffler #include <net/if_media.h> 478a1b9b6aSSam Leffler #include <net/ethernet.h> /* XXX for ether_sprintf */ 481a1e1d21SSam Leffler 491a1e1d21SSam Leffler #include <net80211/ieee80211_var.h> 50b032f27cSSam Leffler #include <net80211/ieee80211_adhoc.h> 51b032f27cSSam Leffler #include <net80211/ieee80211_sta.h> 52b032f27cSSam Leffler #include <net80211/ieee80211_hostap.h> 53b032f27cSSam Leffler #include <net80211/ieee80211_wds.h> 5459aa14a9SRui Paulo #ifdef IEEE80211_SUPPORT_MESH 5559aa14a9SRui Paulo #include <net80211/ieee80211_mesh.h> 5659aa14a9SRui Paulo #endif 57b032f27cSSam Leffler #include <net80211/ieee80211_monitor.h> 58b032f27cSSam Leffler #include <net80211/ieee80211_input.h> 591a1e1d21SSam Leffler 608a1b9b6aSSam Leffler /* XXX tunables */ 618a1b9b6aSSam Leffler #define AGGRESSIVE_MODE_SWITCH_HYSTERESIS 3 /* pkts / 100ms */ 628a1b9b6aSSam Leffler #define HIGH_PRI_SWITCH_THRESH 10 /* pkts / 100ms */ 631a1e1d21SSam Leffler 641a1e1d21SSam Leffler const char *ieee80211_mgt_subtype_name[] = { 651a1e1d21SSam Leffler "assoc_req", "assoc_resp", "reassoc_req", "reassoc_resp", 661a1e1d21SSam Leffler "probe_req", "probe_resp", "reserved#6", "reserved#7", 671a1e1d21SSam Leffler "beacon", "atim", "disassoc", "auth", 6896283082SBernhard Schmidt "deauth", "action", "action_noack", "reserved#15" 691a1e1d21SSam Leffler }; 708a1b9b6aSSam Leffler const char *ieee80211_ctl_subtype_name[] = { 718a1b9b6aSSam Leffler "reserved#0", "reserved#1", "reserved#2", "reserved#3", 728a1b9b6aSSam Leffler "reserved#3", "reserved#5", "reserved#6", "reserved#7", 738a1b9b6aSSam Leffler "reserved#8", "reserved#9", "ps_poll", "rts", 748a1b9b6aSSam Leffler "cts", "ack", "cf_end", "cf_end_ack" 758a1b9b6aSSam Leffler }; 7649aa47d6SSam Leffler const char *ieee80211_opmode_name[IEEE80211_OPMODE_MAX] = { 7749aa47d6SSam Leffler "IBSS", /* IEEE80211_M_IBSS */ 7849aa47d6SSam Leffler "STA", /* IEEE80211_M_STA */ 79b032f27cSSam Leffler "WDS", /* IEEE80211_M_WDS */ 8049aa47d6SSam Leffler "AHDEMO", /* IEEE80211_M_AHDEMO */ 8149aa47d6SSam Leffler "HOSTAP", /* IEEE80211_M_HOSTAP */ 8259aa14a9SRui Paulo "MONITOR", /* IEEE80211_M_MONITOR */ 8359aa14a9SRui Paulo "MBSS" /* IEEE80211_M_MBSS */ 8449aa47d6SSam Leffler }; 85a11c9a5cSSam Leffler const char *ieee80211_state_name[IEEE80211_S_MAX] = { 86a11c9a5cSSam Leffler "INIT", /* IEEE80211_S_INIT */ 87a11c9a5cSSam Leffler "SCAN", /* IEEE80211_S_SCAN */ 88a11c9a5cSSam Leffler "AUTH", /* IEEE80211_S_AUTH */ 89a11c9a5cSSam Leffler "ASSOC", /* IEEE80211_S_ASSOC */ 9014fb6b8fSSam Leffler "CAC", /* IEEE80211_S_CAC */ 9114fb6b8fSSam Leffler "RUN", /* IEEE80211_S_RUN */ 9214fb6b8fSSam Leffler "CSA", /* IEEE80211_S_CSA */ 9314fb6b8fSSam Leffler "SLEEP", /* IEEE80211_S_SLEEP */ 94a11c9a5cSSam Leffler }; 958a1b9b6aSSam Leffler const char *ieee80211_wme_acnames[] = { 968a1b9b6aSSam Leffler "WME_AC_BE", 978a1b9b6aSSam Leffler "WME_AC_BK", 988a1b9b6aSSam Leffler "WME_AC_VI", 998a1b9b6aSSam Leffler "WME_AC_VO", 1008a1b9b6aSSam Leffler "WME_UPSD", 1018a1b9b6aSSam Leffler }; 102a11c9a5cSSam Leffler 1035efea30fSAndrew Thompson static void beacon_miss(void *, int); 1045efea30fSAndrew Thompson static void beacon_swmiss(void *, int); 105b032f27cSSam Leffler static void parent_updown(void *, int); 1065efea30fSAndrew Thompson static void update_mcast(void *, int); 1075efea30fSAndrew Thompson static void update_promisc(void *, int); 1085efea30fSAndrew Thompson static void update_channel(void *, int); 109b94299c4SAdrian Chadd static void update_chw(void *, int); 1105efea30fSAndrew Thompson static void ieee80211_newstate_cb(void *, int); 1111a1e1d21SSam Leffler 112b032f27cSSam Leffler static int 113b032f27cSSam Leffler null_raw_xmit(struct ieee80211_node *ni, struct mbuf *m, 114b032f27cSSam Leffler const struct ieee80211_bpf_params *params) 115b105a069SSam Leffler { 116b032f27cSSam Leffler 117c8f5794eSGleb Smirnoff ic_printf(ni->ni_ic, "missing ic_raw_xmit callback, drop frame\n"); 118b032f27cSSam Leffler m_freem(m); 119b032f27cSSam Leffler return ENETDOWN; 120b105a069SSam Leffler } 121b105a069SSam Leffler 1221a1e1d21SSam Leffler void 1238a1b9b6aSSam Leffler ieee80211_proto_attach(struct ieee80211com *ic) 1241a1e1d21SSam Leffler { 125*7a79cebfSGleb Smirnoff uint8_t hdrlen; 1261a1e1d21SSam Leffler 127b032f27cSSam Leffler /* override the 802.3 setting */ 128*7a79cebfSGleb Smirnoff hdrlen = ic->ic_headroom 129b032f27cSSam Leffler + sizeof(struct ieee80211_qosframe_addr4) 130b032f27cSSam Leffler + IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN 131b032f27cSSam Leffler + IEEE80211_WEP_EXTIVLEN; 132b032f27cSSam Leffler /* XXX no way to recalculate on ifdetach */ 133*7a79cebfSGleb Smirnoff if (ALIGN(hdrlen) > max_linkhdr) { 134b032f27cSSam Leffler /* XXX sanity check... */ 135*7a79cebfSGleb Smirnoff max_linkhdr = ALIGN(hdrlen); 136b032f27cSSam Leffler max_hdr = max_linkhdr + max_protohdr; 137b032f27cSSam Leffler max_datalen = MHLEN - max_hdr; 138b032f27cSSam Leffler } 1392e79ca97SSam Leffler ic->ic_protmode = IEEE80211_PROT_CTSONLY; 140b032f27cSSam Leffler 141*7a79cebfSGleb Smirnoff TASK_INIT(&ic->ic_parent_task, 0, parent_updown, ic); 1425efea30fSAndrew Thompson TASK_INIT(&ic->ic_mcast_task, 0, update_mcast, ic); 1435efea30fSAndrew Thompson TASK_INIT(&ic->ic_promisc_task, 0, update_promisc, ic); 1445efea30fSAndrew Thompson TASK_INIT(&ic->ic_chan_task, 0, update_channel, ic); 1455efea30fSAndrew Thompson TASK_INIT(&ic->ic_bmiss_task, 0, beacon_miss, ic); 146b94299c4SAdrian Chadd TASK_INIT(&ic->ic_chw_task, 0, update_chw, ic); 1478a1b9b6aSSam Leffler 1488a1b9b6aSSam Leffler ic->ic_wme.wme_hipri_switch_hysteresis = 1498a1b9b6aSSam Leffler AGGRESSIVE_MODE_SWITCH_HYSTERESIS; 1501a1e1d21SSam Leffler 1511a1e1d21SSam Leffler /* initialize management frame handlers */ 1521a1e1d21SSam Leffler ic->ic_send_mgmt = ieee80211_send_mgmt; 153b032f27cSSam Leffler ic->ic_raw_xmit = null_raw_xmit; 154b032f27cSSam Leffler 155b032f27cSSam Leffler ieee80211_adhoc_attach(ic); 156b032f27cSSam Leffler ieee80211_sta_attach(ic); 157b032f27cSSam Leffler ieee80211_wds_attach(ic); 158b032f27cSSam Leffler ieee80211_hostap_attach(ic); 15959aa14a9SRui Paulo #ifdef IEEE80211_SUPPORT_MESH 16059aa14a9SRui Paulo ieee80211_mesh_attach(ic); 16159aa14a9SRui Paulo #endif 162b032f27cSSam Leffler ieee80211_monitor_attach(ic); 1631a1e1d21SSam Leffler } 1641a1e1d21SSam Leffler 1651a1e1d21SSam Leffler void 1668a1b9b6aSSam Leffler ieee80211_proto_detach(struct ieee80211com *ic) 1671a1e1d21SSam Leffler { 168b032f27cSSam Leffler ieee80211_monitor_detach(ic); 16959aa14a9SRui Paulo #ifdef IEEE80211_SUPPORT_MESH 17059aa14a9SRui Paulo ieee80211_mesh_detach(ic); 17159aa14a9SRui Paulo #endif 172b032f27cSSam Leffler ieee80211_hostap_detach(ic); 173b032f27cSSam Leffler ieee80211_wds_detach(ic); 174b032f27cSSam Leffler ieee80211_adhoc_detach(ic); 175b032f27cSSam Leffler ieee80211_sta_detach(ic); 176b032f27cSSam Leffler } 1778a1b9b6aSSam Leffler 178b032f27cSSam Leffler static void 179b032f27cSSam Leffler null_update_beacon(struct ieee80211vap *vap, int item) 180b032f27cSSam Leffler { 181b032f27cSSam Leffler } 182b032f27cSSam Leffler 183b032f27cSSam Leffler void 184b032f27cSSam Leffler ieee80211_proto_vattach(struct ieee80211vap *vap) 185b032f27cSSam Leffler { 186b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 187b032f27cSSam Leffler struct ifnet *ifp = vap->iv_ifp; 188b032f27cSSam Leffler int i; 189b032f27cSSam Leffler 190b032f27cSSam Leffler /* override the 802.3 setting */ 191*7a79cebfSGleb Smirnoff ifp->if_hdrlen = ic->ic_headroom 192*7a79cebfSGleb Smirnoff + sizeof(struct ieee80211_qosframe_addr4) 193*7a79cebfSGleb Smirnoff + IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN 194*7a79cebfSGleb Smirnoff + IEEE80211_WEP_EXTIVLEN; 195b032f27cSSam Leffler 196b032f27cSSam Leffler vap->iv_rtsthreshold = IEEE80211_RTS_DEFAULT; 197b032f27cSSam Leffler vap->iv_fragthreshold = IEEE80211_FRAG_DEFAULT; 198b032f27cSSam Leffler vap->iv_bmiss_max = IEEE80211_BMISS_MAX; 19923401900SAdrian Chadd callout_init_mtx(&vap->iv_swbmiss, IEEE80211_LOCK_OBJ(ic), 0); 200fd90e2edSJung-uk Kim callout_init(&vap->iv_mgtsend, 1); 2015efea30fSAndrew Thompson TASK_INIT(&vap->iv_nstate_task, 0, ieee80211_newstate_cb, vap); 2025efea30fSAndrew Thompson TASK_INIT(&vap->iv_swbmiss_task, 0, beacon_swmiss, vap); 203b032f27cSSam Leffler /* 204b032f27cSSam Leffler * Install default tx rate handling: no fixed rate, lowest 205b032f27cSSam Leffler * supported rate for mgmt and multicast frames. Default 206b032f27cSSam Leffler * max retry count. These settings can be changed by the 207b032f27cSSam Leffler * driver and/or user applications. 208b032f27cSSam Leffler */ 209047db6b3SSam Leffler for (i = IEEE80211_MODE_11A; i < IEEE80211_MODE_MAX; i++) { 210b032f27cSSam Leffler const struct ieee80211_rateset *rs = &ic->ic_sup_rates[i]; 211b032f27cSSam Leffler 212b032f27cSSam Leffler vap->iv_txparms[i].ucastrate = IEEE80211_FIXED_RATE_NONE; 213338452c9SAdrian Chadd 214338452c9SAdrian Chadd /* 215338452c9SAdrian Chadd * Setting the management rate to MCS 0 assumes that the 216338452c9SAdrian Chadd * BSS Basic rate set is empty and the BSS Basic MCS set 217338452c9SAdrian Chadd * is not. 218338452c9SAdrian Chadd * 219338452c9SAdrian Chadd * Since we're not checking this, default to the lowest 220338452c9SAdrian Chadd * defined rate for this mode. 221338452c9SAdrian Chadd * 222338452c9SAdrian Chadd * At least one 11n AP (DLINK DIR-825) is reported to drop 223338452c9SAdrian Chadd * some MCS management traffic (eg BA response frames.) 224338452c9SAdrian Chadd * 225338452c9SAdrian Chadd * See also: 9.6.0 of the 802.11n-2009 specification. 226338452c9SAdrian Chadd */ 227338452c9SAdrian Chadd #ifdef NOTYET 228047db6b3SSam Leffler if (i == IEEE80211_MODE_11NA || i == IEEE80211_MODE_11NG) { 229047db6b3SSam Leffler vap->iv_txparms[i].mgmtrate = 0 | IEEE80211_RATE_MCS; 230047db6b3SSam Leffler vap->iv_txparms[i].mcastrate = 0 | IEEE80211_RATE_MCS; 231047db6b3SSam Leffler } else { 232b032f27cSSam Leffler vap->iv_txparms[i].mgmtrate = 233b032f27cSSam Leffler rs->rs_rates[0] & IEEE80211_RATE_VAL; 234b032f27cSSam Leffler vap->iv_txparms[i].mcastrate = 235b032f27cSSam Leffler rs->rs_rates[0] & IEEE80211_RATE_VAL; 236b032f27cSSam Leffler } 237338452c9SAdrian Chadd #endif 238338452c9SAdrian Chadd vap->iv_txparms[i].mgmtrate = rs->rs_rates[0] & IEEE80211_RATE_VAL; 239338452c9SAdrian Chadd vap->iv_txparms[i].mcastrate = rs->rs_rates[0] & IEEE80211_RATE_VAL; 240b032f27cSSam Leffler vap->iv_txparms[i].maxretry = IEEE80211_TXMAX_DEFAULT; 241b032f27cSSam Leffler } 242b032f27cSSam Leffler vap->iv_roaming = IEEE80211_ROAMING_AUTO; 243b032f27cSSam Leffler 244b032f27cSSam Leffler vap->iv_update_beacon = null_update_beacon; 245b032f27cSSam Leffler vap->iv_deliver_data = ieee80211_deliver_data; 246b032f27cSSam Leffler 247b032f27cSSam Leffler /* attach support for operating mode */ 248b032f27cSSam Leffler ic->ic_vattach[vap->iv_opmode](vap); 249b032f27cSSam Leffler } 250b032f27cSSam Leffler 251b032f27cSSam Leffler void 252b032f27cSSam Leffler ieee80211_proto_vdetach(struct ieee80211vap *vap) 253b032f27cSSam Leffler { 254b032f27cSSam Leffler #define FREEAPPIE(ie) do { \ 255b032f27cSSam Leffler if (ie != NULL) \ 256b9b53389SAdrian Chadd IEEE80211_FREE(ie, M_80211_NODE_IE); \ 257b032f27cSSam Leffler } while (0) 258b032f27cSSam Leffler /* 259b032f27cSSam Leffler * Detach operating mode module. 260b032f27cSSam Leffler */ 261b032f27cSSam Leffler if (vap->iv_opdetach != NULL) 262b032f27cSSam Leffler vap->iv_opdetach(vap); 2638a1b9b6aSSam Leffler /* 2648a1b9b6aSSam Leffler * This should not be needed as we detach when reseting 2658a1b9b6aSSam Leffler * the state but be conservative here since the 2668a1b9b6aSSam Leffler * authenticator may do things like spawn kernel threads. 2678a1b9b6aSSam Leffler */ 268b032f27cSSam Leffler if (vap->iv_auth->ia_detach != NULL) 269b032f27cSSam Leffler vap->iv_auth->ia_detach(vap); 2708a1b9b6aSSam Leffler /* 2718a1b9b6aSSam Leffler * Detach any ACL'ator. 2728a1b9b6aSSam Leffler */ 273b032f27cSSam Leffler if (vap->iv_acl != NULL) 274b032f27cSSam Leffler vap->iv_acl->iac_detach(vap); 275b032f27cSSam Leffler 276b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_beacon); 277b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_probereq); 278b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_proberesp); 279b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_assocreq); 280b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_assocresp); 281b032f27cSSam Leffler FREEAPPIE(vap->iv_appie_wpa); 282b032f27cSSam Leffler #undef FREEAPPIE 2838a1b9b6aSSam Leffler } 2848a1b9b6aSSam Leffler 2858a1b9b6aSSam Leffler /* 2868a1b9b6aSSam Leffler * Simple-minded authenticator module support. 2878a1b9b6aSSam Leffler */ 2888a1b9b6aSSam Leffler 2898a1b9b6aSSam Leffler #define IEEE80211_AUTH_MAX (IEEE80211_AUTH_WPA+1) 2908a1b9b6aSSam Leffler /* XXX well-known names */ 2918a1b9b6aSSam Leffler static const char *auth_modnames[IEEE80211_AUTH_MAX] = { 2928a1b9b6aSSam Leffler "wlan_internal", /* IEEE80211_AUTH_NONE */ 2938a1b9b6aSSam Leffler "wlan_internal", /* IEEE80211_AUTH_OPEN */ 2948a1b9b6aSSam Leffler "wlan_internal", /* IEEE80211_AUTH_SHARED */ 2958a1b9b6aSSam Leffler "wlan_xauth", /* IEEE80211_AUTH_8021X */ 2968a1b9b6aSSam Leffler "wlan_internal", /* IEEE80211_AUTH_AUTO */ 2978a1b9b6aSSam Leffler "wlan_xauth", /* IEEE80211_AUTH_WPA */ 2988a1b9b6aSSam Leffler }; 2998a1b9b6aSSam Leffler static const struct ieee80211_authenticator *authenticators[IEEE80211_AUTH_MAX]; 3008a1b9b6aSSam Leffler 3018a1b9b6aSSam Leffler static const struct ieee80211_authenticator auth_internal = { 3028a1b9b6aSSam Leffler .ia_name = "wlan_internal", 3038a1b9b6aSSam Leffler .ia_attach = NULL, 3048a1b9b6aSSam Leffler .ia_detach = NULL, 3058a1b9b6aSSam Leffler .ia_node_join = NULL, 3068a1b9b6aSSam Leffler .ia_node_leave = NULL, 3078a1b9b6aSSam Leffler }; 3088a1b9b6aSSam Leffler 3098a1b9b6aSSam Leffler /* 3108a1b9b6aSSam Leffler * Setup internal authenticators once; they are never unregistered. 3118a1b9b6aSSam Leffler */ 3128a1b9b6aSSam Leffler static void 3138a1b9b6aSSam Leffler ieee80211_auth_setup(void) 3148a1b9b6aSSam Leffler { 3158a1b9b6aSSam Leffler ieee80211_authenticator_register(IEEE80211_AUTH_OPEN, &auth_internal); 3168a1b9b6aSSam Leffler ieee80211_authenticator_register(IEEE80211_AUTH_SHARED, &auth_internal); 3178a1b9b6aSSam Leffler ieee80211_authenticator_register(IEEE80211_AUTH_AUTO, &auth_internal); 3188a1b9b6aSSam Leffler } 3198a1b9b6aSSam Leffler SYSINIT(wlan_auth, SI_SUB_DRIVERS, SI_ORDER_FIRST, ieee80211_auth_setup, NULL); 3208a1b9b6aSSam Leffler 3218a1b9b6aSSam Leffler const struct ieee80211_authenticator * 3228a1b9b6aSSam Leffler ieee80211_authenticator_get(int auth) 3238a1b9b6aSSam Leffler { 3248a1b9b6aSSam Leffler if (auth >= IEEE80211_AUTH_MAX) 3258a1b9b6aSSam Leffler return NULL; 3268a1b9b6aSSam Leffler if (authenticators[auth] == NULL) 3278a1b9b6aSSam Leffler ieee80211_load_module(auth_modnames[auth]); 3288a1b9b6aSSam Leffler return authenticators[auth]; 3291a1e1d21SSam Leffler } 3301a1e1d21SSam Leffler 3311a1e1d21SSam Leffler void 3328a1b9b6aSSam Leffler ieee80211_authenticator_register(int type, 3338a1b9b6aSSam Leffler const struct ieee80211_authenticator *auth) 3341a1e1d21SSam Leffler { 3358a1b9b6aSSam Leffler if (type >= IEEE80211_AUTH_MAX) 3368a1b9b6aSSam Leffler return; 3378a1b9b6aSSam Leffler authenticators[type] = auth; 3388a1b9b6aSSam Leffler } 3398a1b9b6aSSam Leffler 3408a1b9b6aSSam Leffler void 3418a1b9b6aSSam Leffler ieee80211_authenticator_unregister(int type) 3428a1b9b6aSSam Leffler { 3438a1b9b6aSSam Leffler 3448a1b9b6aSSam Leffler if (type >= IEEE80211_AUTH_MAX) 3458a1b9b6aSSam Leffler return; 3468a1b9b6aSSam Leffler authenticators[type] = NULL; 3478a1b9b6aSSam Leffler } 3488a1b9b6aSSam Leffler 3498a1b9b6aSSam Leffler /* 3508a1b9b6aSSam Leffler * Very simple-minded ACL module support. 3518a1b9b6aSSam Leffler */ 3528a1b9b6aSSam Leffler /* XXX just one for now */ 3538a1b9b6aSSam Leffler static const struct ieee80211_aclator *acl = NULL; 3548a1b9b6aSSam Leffler 3558a1b9b6aSSam Leffler void 3568a1b9b6aSSam Leffler ieee80211_aclator_register(const struct ieee80211_aclator *iac) 3578a1b9b6aSSam Leffler { 3588a1b9b6aSSam Leffler printf("wlan: %s acl policy registered\n", iac->iac_name); 3598a1b9b6aSSam Leffler acl = iac; 3608a1b9b6aSSam Leffler } 3618a1b9b6aSSam Leffler 3628a1b9b6aSSam Leffler void 3638a1b9b6aSSam Leffler ieee80211_aclator_unregister(const struct ieee80211_aclator *iac) 3648a1b9b6aSSam Leffler { 3658a1b9b6aSSam Leffler if (acl == iac) 3668a1b9b6aSSam Leffler acl = NULL; 3678a1b9b6aSSam Leffler printf("wlan: %s acl policy unregistered\n", iac->iac_name); 3688a1b9b6aSSam Leffler } 3698a1b9b6aSSam Leffler 3708a1b9b6aSSam Leffler const struct ieee80211_aclator * 3718a1b9b6aSSam Leffler ieee80211_aclator_get(const char *name) 3728a1b9b6aSSam Leffler { 3738a1b9b6aSSam Leffler if (acl == NULL) 3748a1b9b6aSSam Leffler ieee80211_load_module("wlan_acl"); 3758a1b9b6aSSam Leffler return acl != NULL && strcmp(acl->iac_name, name) == 0 ? acl : NULL; 3768a1b9b6aSSam Leffler } 3778a1b9b6aSSam Leffler 3788a1b9b6aSSam Leffler void 37968e8e04eSSam Leffler ieee80211_print_essid(const uint8_t *essid, int len) 3808a1b9b6aSSam Leffler { 38168e8e04eSSam Leffler const uint8_t *p; 3821a1e1d21SSam Leffler int i; 3831a1e1d21SSam Leffler 3841a1e1d21SSam Leffler if (len > IEEE80211_NWID_LEN) 3851a1e1d21SSam Leffler len = IEEE80211_NWID_LEN; 3861a1e1d21SSam Leffler /* determine printable or not */ 3871a1e1d21SSam Leffler for (i = 0, p = essid; i < len; i++, p++) { 3881a1e1d21SSam Leffler if (*p < ' ' || *p > 0x7e) 3891a1e1d21SSam Leffler break; 3901a1e1d21SSam Leffler } 3911a1e1d21SSam Leffler if (i == len) { 3921a1e1d21SSam Leffler printf("\""); 3931a1e1d21SSam Leffler for (i = 0, p = essid; i < len; i++, p++) 3941a1e1d21SSam Leffler printf("%c", *p); 3951a1e1d21SSam Leffler printf("\""); 3961a1e1d21SSam Leffler } else { 3971a1e1d21SSam Leffler printf("0x"); 3981a1e1d21SSam Leffler for (i = 0, p = essid; i < len; i++, p++) 3991a1e1d21SSam Leffler printf("%02x", *p); 4001a1e1d21SSam Leffler } 4011a1e1d21SSam Leffler } 4021a1e1d21SSam Leffler 4031a1e1d21SSam Leffler void 40468e8e04eSSam Leffler ieee80211_dump_pkt(struct ieee80211com *ic, 40568e8e04eSSam Leffler const uint8_t *buf, int len, int rate, int rssi) 4061a1e1d21SSam Leffler { 4078a1b9b6aSSam Leffler const struct ieee80211_frame *wh; 4081a1e1d21SSam Leffler int i; 4091a1e1d21SSam Leffler 4108a1b9b6aSSam Leffler wh = (const struct ieee80211_frame *)buf; 4111a1e1d21SSam Leffler switch (wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) { 4121a1e1d21SSam Leffler case IEEE80211_FC1_DIR_NODS: 4131a1e1d21SSam Leffler printf("NODS %s", ether_sprintf(wh->i_addr2)); 4141a1e1d21SSam Leffler printf("->%s", ether_sprintf(wh->i_addr1)); 4151a1e1d21SSam Leffler printf("(%s)", ether_sprintf(wh->i_addr3)); 4161a1e1d21SSam Leffler break; 4171a1e1d21SSam Leffler case IEEE80211_FC1_DIR_TODS: 4181a1e1d21SSam Leffler printf("TODS %s", ether_sprintf(wh->i_addr2)); 4191a1e1d21SSam Leffler printf("->%s", ether_sprintf(wh->i_addr3)); 4201a1e1d21SSam Leffler printf("(%s)", ether_sprintf(wh->i_addr1)); 4211a1e1d21SSam Leffler break; 4221a1e1d21SSam Leffler case IEEE80211_FC1_DIR_FROMDS: 4231a1e1d21SSam Leffler printf("FRDS %s", ether_sprintf(wh->i_addr3)); 4241a1e1d21SSam Leffler printf("->%s", ether_sprintf(wh->i_addr1)); 4251a1e1d21SSam Leffler printf("(%s)", ether_sprintf(wh->i_addr2)); 4261a1e1d21SSam Leffler break; 4271a1e1d21SSam Leffler case IEEE80211_FC1_DIR_DSTODS: 42868e8e04eSSam Leffler printf("DSDS %s", ether_sprintf((const uint8_t *)&wh[1])); 4291a1e1d21SSam Leffler printf("->%s", ether_sprintf(wh->i_addr3)); 4301a1e1d21SSam Leffler printf("(%s", ether_sprintf(wh->i_addr2)); 4311a1e1d21SSam Leffler printf("->%s)", ether_sprintf(wh->i_addr1)); 4321a1e1d21SSam Leffler break; 4331a1e1d21SSam Leffler } 4341a1e1d21SSam Leffler switch (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) { 4351a1e1d21SSam Leffler case IEEE80211_FC0_TYPE_DATA: 4361a1e1d21SSam Leffler printf(" data"); 4371a1e1d21SSam Leffler break; 4381a1e1d21SSam Leffler case IEEE80211_FC0_TYPE_MGT: 4391a1e1d21SSam Leffler printf(" %s", ieee80211_mgt_subtype_name[ 4401a1e1d21SSam Leffler (wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK) 4411a1e1d21SSam Leffler >> IEEE80211_FC0_SUBTYPE_SHIFT]); 4421a1e1d21SSam Leffler break; 4431a1e1d21SSam Leffler default: 4441a1e1d21SSam Leffler printf(" type#%d", wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK); 4451a1e1d21SSam Leffler break; 4461a1e1d21SSam Leffler } 44768e8e04eSSam Leffler if (IEEE80211_QOS_HAS_SEQ(wh)) { 44868e8e04eSSam Leffler const struct ieee80211_qosframe *qwh = 44968e8e04eSSam Leffler (const struct ieee80211_qosframe *)buf; 45068e8e04eSSam Leffler printf(" QoS [TID %u%s]", qwh->i_qos[0] & IEEE80211_QOS_TID, 45168e8e04eSSam Leffler qwh->i_qos[0] & IEEE80211_QOS_ACKPOLICY ? " ACM" : ""); 45268e8e04eSSam Leffler } 4535945b5f5SKevin Lo if (wh->i_fc[1] & IEEE80211_FC1_PROTECTED) { 45468e8e04eSSam Leffler int off; 45568e8e04eSSam Leffler 45668e8e04eSSam Leffler off = ieee80211_anyhdrspace(ic, wh); 45768e8e04eSSam Leffler printf(" WEP [IV %.02x %.02x %.02x", 45868e8e04eSSam Leffler buf[off+0], buf[off+1], buf[off+2]); 45968e8e04eSSam Leffler if (buf[off+IEEE80211_WEP_IVLEN] & IEEE80211_WEP_EXTIV) 46068e8e04eSSam Leffler printf(" %.02x %.02x %.02x", 46168e8e04eSSam Leffler buf[off+4], buf[off+5], buf[off+6]); 46268e8e04eSSam Leffler printf(" KID %u]", buf[off+IEEE80211_WEP_IVLEN] >> 6); 4638a1b9b6aSSam Leffler } 4641a1e1d21SSam Leffler if (rate >= 0) 4651a1e1d21SSam Leffler printf(" %dM", rate / 2); 4661a1e1d21SSam Leffler if (rssi >= 0) 4671a1e1d21SSam Leffler printf(" +%d", rssi); 4681a1e1d21SSam Leffler printf("\n"); 4691a1e1d21SSam Leffler if (len > 0) { 4701a1e1d21SSam Leffler for (i = 0; i < len; i++) { 4711a1e1d21SSam Leffler if ((i & 1) == 0) 4721a1e1d21SSam Leffler printf(" "); 4731a1e1d21SSam Leffler printf("%02x", buf[i]); 4741a1e1d21SSam Leffler } 4751a1e1d21SSam Leffler printf("\n"); 4761a1e1d21SSam Leffler } 4771a1e1d21SSam Leffler } 4781a1e1d21SSam Leffler 47979edaebfSSam Leffler static __inline int 48079edaebfSSam Leffler findrix(const struct ieee80211_rateset *rs, int r) 48179edaebfSSam Leffler { 48279edaebfSSam Leffler int i; 48379edaebfSSam Leffler 48479edaebfSSam Leffler for (i = 0; i < rs->rs_nrates; i++) 48579edaebfSSam Leffler if ((rs->rs_rates[i] & IEEE80211_RATE_VAL) == r) 48679edaebfSSam Leffler return i; 48779edaebfSSam Leffler return -1; 48879edaebfSSam Leffler } 48979edaebfSSam Leffler 4901a1e1d21SSam Leffler int 49170e28b9aSSam Leffler ieee80211_fix_rate(struct ieee80211_node *ni, 49270e28b9aSSam Leffler struct ieee80211_rateset *nrs, int flags) 4931a1e1d21SSam Leffler { 4941a1e1d21SSam Leffler #define RV(v) ((v) & IEEE80211_RATE_VAL) 495b032f27cSSam Leffler struct ieee80211vap *vap = ni->ni_vap; 4967d77cd53SSam Leffler struct ieee80211com *ic = ni->ni_ic; 49779edaebfSSam Leffler int i, j, rix, error; 498b032f27cSSam Leffler int okrate, badrate, fixedrate, ucastrate; 49941b3c790SSam Leffler const struct ieee80211_rateset *srs; 50068e8e04eSSam Leffler uint8_t r; 5011a1e1d21SSam Leffler 5021a1e1d21SSam Leffler error = 0; 50368e8e04eSSam Leffler okrate = badrate = 0; 504b032f27cSSam Leffler ucastrate = vap->iv_txparms[ieee80211_chan2mode(ni->ni_chan)].ucastrate; 505b032f27cSSam Leffler if (ucastrate != IEEE80211_FIXED_RATE_NONE) { 506b032f27cSSam Leffler /* 507b032f27cSSam Leffler * Workaround awkwardness with fixed rate. We are called 508b032f27cSSam Leffler * to check both the legacy rate set and the HT rate set 509b032f27cSSam Leffler * but we must apply any legacy fixed rate check only to the 510b032f27cSSam Leffler * legacy rate set and vice versa. We cannot tell what type 511b032f27cSSam Leffler * of rate set we've been given (legacy or HT) but we can 512b032f27cSSam Leffler * distinguish the fixed rate type (MCS have 0x80 set). 513b032f27cSSam Leffler * So to deal with this the caller communicates whether to 514b032f27cSSam Leffler * check MCS or legacy rate using the flags and we use the 515b032f27cSSam Leffler * type of any fixed rate to avoid applying an MCS to a 516b032f27cSSam Leffler * legacy rate and vice versa. 517b032f27cSSam Leffler */ 518b032f27cSSam Leffler if (ucastrate & 0x80) { 519b032f27cSSam Leffler if (flags & IEEE80211_F_DOFRATE) 520b032f27cSSam Leffler flags &= ~IEEE80211_F_DOFRATE; 521b032f27cSSam Leffler } else if ((ucastrate & 0x80) == 0) { 522b032f27cSSam Leffler if (flags & IEEE80211_F_DOFMCS) 523b032f27cSSam Leffler flags &= ~IEEE80211_F_DOFMCS; 524b032f27cSSam Leffler } 525b032f27cSSam Leffler /* NB: required to make MCS match below work */ 526b032f27cSSam Leffler ucastrate &= IEEE80211_RATE_VAL; 527b032f27cSSam Leffler } 52868e8e04eSSam Leffler fixedrate = IEEE80211_FIXED_RATE_NONE; 529b032f27cSSam Leffler /* 530b032f27cSSam Leffler * XXX we are called to process both MCS and legacy rates; 531b032f27cSSam Leffler * we must use the appropriate basic rate set or chaos will 532b032f27cSSam Leffler * ensue; for now callers that want MCS must supply 533b032f27cSSam Leffler * IEEE80211_F_DOBRS; at some point we'll need to split this 534b032f27cSSam Leffler * function so there are two variants, one for MCS and one 535b032f27cSSam Leffler * for legacy rates. 536b032f27cSSam Leffler */ 537b032f27cSSam Leffler if (flags & IEEE80211_F_DOBRS) 538b032f27cSSam Leffler srs = (const struct ieee80211_rateset *) 539b032f27cSSam Leffler ieee80211_get_suphtrates(ic, ni->ni_chan); 540b032f27cSSam Leffler else 54141b3c790SSam Leffler srs = ieee80211_get_suprates(ic, ni->ni_chan); 542ef39d4beSSam Leffler for (i = 0; i < nrs->rs_nrates; ) { 5431a1e1d21SSam Leffler if (flags & IEEE80211_F_DOSORT) { 5441a1e1d21SSam Leffler /* 5451a1e1d21SSam Leffler * Sort rates. 5461a1e1d21SSam Leffler */ 5471a1e1d21SSam Leffler for (j = i + 1; j < nrs->rs_nrates; j++) { 5481a1e1d21SSam Leffler if (RV(nrs->rs_rates[i]) > RV(nrs->rs_rates[j])) { 5491a1e1d21SSam Leffler r = nrs->rs_rates[i]; 5501a1e1d21SSam Leffler nrs->rs_rates[i] = nrs->rs_rates[j]; 5511a1e1d21SSam Leffler nrs->rs_rates[j] = r; 5521a1e1d21SSam Leffler } 5531a1e1d21SSam Leffler } 5541a1e1d21SSam Leffler } 5551a1e1d21SSam Leffler r = nrs->rs_rates[i] & IEEE80211_RATE_VAL; 5561a1e1d21SSam Leffler badrate = r; 5571a1e1d21SSam Leffler /* 55868e8e04eSSam Leffler * Check for fixed rate. 5591a1e1d21SSam Leffler */ 560b032f27cSSam Leffler if (r == ucastrate) 5618a1b9b6aSSam Leffler fixedrate = r; 5621a1e1d21SSam Leffler /* 5631a1e1d21SSam Leffler * Check against supported rates. 5641a1e1d21SSam Leffler */ 56579edaebfSSam Leffler rix = findrix(srs, r); 56679edaebfSSam Leffler if (flags & IEEE80211_F_DONEGO) { 56779edaebfSSam Leffler if (rix < 0) { 568ef39d4beSSam Leffler /* 569ef39d4beSSam Leffler * A rate in the node's rate set is not 570ef39d4beSSam Leffler * supported. If this is a basic rate and we 57179edaebfSSam Leffler * are operating as a STA then this is an error. 572ef39d4beSSam Leffler * Otherwise we just discard/ignore the rate. 573ef39d4beSSam Leffler */ 57479edaebfSSam Leffler if ((flags & IEEE80211_F_JOIN) && 575ef39d4beSSam Leffler (nrs->rs_rates[i] & IEEE80211_RATE_BASIC)) 5761a1e1d21SSam Leffler error++; 57779edaebfSSam Leffler } else if ((flags & IEEE80211_F_JOIN) == 0) { 57879edaebfSSam Leffler /* 57979edaebfSSam Leffler * Overwrite with the supported rate 58079edaebfSSam Leffler * value so any basic rate bit is set. 58179edaebfSSam Leffler */ 58279edaebfSSam Leffler nrs->rs_rates[i] = srs->rs_rates[rix]; 5831a1e1d21SSam Leffler } 5841a1e1d21SSam Leffler } 58579edaebfSSam Leffler if ((flags & IEEE80211_F_DODEL) && rix < 0) { 5861a1e1d21SSam Leffler /* 5871a1e1d21SSam Leffler * Delete unacceptable rates. 5881a1e1d21SSam Leffler */ 5891a1e1d21SSam Leffler nrs->rs_nrates--; 5901a1e1d21SSam Leffler for (j = i; j < nrs->rs_nrates; j++) 5911a1e1d21SSam Leffler nrs->rs_rates[j] = nrs->rs_rates[j + 1]; 5921a1e1d21SSam Leffler nrs->rs_rates[j] = 0; 5931a1e1d21SSam Leffler continue; 5941a1e1d21SSam Leffler } 59579edaebfSSam Leffler if (rix >= 0) 5961a1e1d21SSam Leffler okrate = nrs->rs_rates[i]; 5971a1e1d21SSam Leffler i++; 5981a1e1d21SSam Leffler } 5998a1b9b6aSSam Leffler if (okrate == 0 || error != 0 || 600b032f27cSSam Leffler ((flags & (IEEE80211_F_DOFRATE|IEEE80211_F_DOFMCS)) && 601b032f27cSSam Leffler fixedrate != ucastrate)) { 602b032f27cSSam Leffler IEEE80211_NOTE(vap, IEEE80211_MSG_XRATE | IEEE80211_MSG_11N, ni, 603b032f27cSSam Leffler "%s: flags 0x%x okrate %d error %d fixedrate 0x%x " 604b032f27cSSam Leffler "ucastrate %x\n", __func__, fixedrate, ucastrate, flags); 6051a1e1d21SSam Leffler return badrate | IEEE80211_RATE_BASIC; 606b032f27cSSam Leffler } else 6071a1e1d21SSam Leffler return RV(okrate); 6081a1e1d21SSam Leffler #undef RV 6091a1e1d21SSam Leffler } 6101a1e1d21SSam Leffler 6118a1b9b6aSSam Leffler /* 6128a1b9b6aSSam Leffler * Reset 11g-related state. 6138a1b9b6aSSam Leffler */ 6148a1b9b6aSSam Leffler void 6158a1b9b6aSSam Leffler ieee80211_reset_erp(struct ieee80211com *ic) 6161a1e1d21SSam Leffler { 6178a1b9b6aSSam Leffler ic->ic_flags &= ~IEEE80211_F_USEPROT; 6188a1b9b6aSSam Leffler ic->ic_nonerpsta = 0; 6198a1b9b6aSSam Leffler ic->ic_longslotsta = 0; 6208a1b9b6aSSam Leffler /* 6218a1b9b6aSSam Leffler * Short slot time is enabled only when operating in 11g 6228a1b9b6aSSam Leffler * and not in an IBSS. We must also honor whether or not 6238a1b9b6aSSam Leffler * the driver is capable of doing it. 6248a1b9b6aSSam Leffler */ 6258a1b9b6aSSam Leffler ieee80211_set_shortslottime(ic, 62668e8e04eSSam Leffler IEEE80211_IS_CHAN_A(ic->ic_curchan) || 62768e8e04eSSam Leffler IEEE80211_IS_CHAN_HT(ic->ic_curchan) || 62868e8e04eSSam Leffler (IEEE80211_IS_CHAN_ANYG(ic->ic_curchan) && 6298a1b9b6aSSam Leffler ic->ic_opmode == IEEE80211_M_HOSTAP && 6308a1b9b6aSSam Leffler (ic->ic_caps & IEEE80211_C_SHSLOT))); 6318a1b9b6aSSam Leffler /* 6328a1b9b6aSSam Leffler * Set short preamble and ERP barker-preamble flags. 6338a1b9b6aSSam Leffler */ 63468e8e04eSSam Leffler if (IEEE80211_IS_CHAN_A(ic->ic_curchan) || 6358a1b9b6aSSam Leffler (ic->ic_caps & IEEE80211_C_SHPREAMBLE)) { 6368a1b9b6aSSam Leffler ic->ic_flags |= IEEE80211_F_SHPREAMBLE; 6378a1b9b6aSSam Leffler ic->ic_flags &= ~IEEE80211_F_USEBARKER; 6388a1b9b6aSSam Leffler } else { 6398a1b9b6aSSam Leffler ic->ic_flags &= ~IEEE80211_F_SHPREAMBLE; 6408a1b9b6aSSam Leffler ic->ic_flags |= IEEE80211_F_USEBARKER; 6418a1b9b6aSSam Leffler } 6428a1b9b6aSSam Leffler } 6438a1b9b6aSSam Leffler 6448a1b9b6aSSam Leffler /* 6458a1b9b6aSSam Leffler * Set the short slot time state and notify the driver. 6468a1b9b6aSSam Leffler */ 6478a1b9b6aSSam Leffler void 6488a1b9b6aSSam Leffler ieee80211_set_shortslottime(struct ieee80211com *ic, int onoff) 6498a1b9b6aSSam Leffler { 6508a1b9b6aSSam Leffler if (onoff) 6518a1b9b6aSSam Leffler ic->ic_flags |= IEEE80211_F_SHSLOT; 6528a1b9b6aSSam Leffler else 6538a1b9b6aSSam Leffler ic->ic_flags &= ~IEEE80211_F_SHSLOT; 6548a1b9b6aSSam Leffler /* notify driver */ 6558a1b9b6aSSam Leffler if (ic->ic_updateslot != NULL) 656272f6adeSGleb Smirnoff ic->ic_updateslot(ic); 6578a1b9b6aSSam Leffler } 6588a1b9b6aSSam Leffler 6598a1b9b6aSSam Leffler /* 6608a1b9b6aSSam Leffler * Check if the specified rate set supports ERP. 6618a1b9b6aSSam Leffler * NB: the rate set is assumed to be sorted. 6628a1b9b6aSSam Leffler */ 6638a1b9b6aSSam Leffler int 664b032f27cSSam Leffler ieee80211_iserp_rateset(const struct ieee80211_rateset *rs) 6658a1b9b6aSSam Leffler { 6668a1b9b6aSSam Leffler static const int rates[] = { 2, 4, 11, 22, 12, 24, 48 }; 6678a1b9b6aSSam Leffler int i, j; 6688a1b9b6aSSam Leffler 669a3e08d6fSRui Paulo if (rs->rs_nrates < nitems(rates)) 6708a1b9b6aSSam Leffler return 0; 671a3e08d6fSRui Paulo for (i = 0; i < nitems(rates); i++) { 6728a1b9b6aSSam Leffler for (j = 0; j < rs->rs_nrates; j++) { 6738a1b9b6aSSam Leffler int r = rs->rs_rates[j] & IEEE80211_RATE_VAL; 6748a1b9b6aSSam Leffler if (rates[i] == r) 6758a1b9b6aSSam Leffler goto next; 6768a1b9b6aSSam Leffler if (r > rates[i]) 6778a1b9b6aSSam Leffler return 0; 6788a1b9b6aSSam Leffler } 6798a1b9b6aSSam Leffler return 0; 6808a1b9b6aSSam Leffler next: 6818a1b9b6aSSam Leffler ; 6828a1b9b6aSSam Leffler } 6838a1b9b6aSSam Leffler return 1; 6848a1b9b6aSSam Leffler } 6858a1b9b6aSSam Leffler 6868a1b9b6aSSam Leffler /* 687b032f27cSSam Leffler * Mark the basic rates for the rate table based on the 6888a1b9b6aSSam Leffler * operating mode. For real 11g we mark all the 11b rates 6898a1b9b6aSSam Leffler * and 6, 12, and 24 OFDM. For 11b compatibility we mark only 6908a1b9b6aSSam Leffler * 11b rates. There's also a pseudo 11a-mode used to mark only 6918a1b9b6aSSam Leffler * the basic OFDM rates. 6928a1b9b6aSSam Leffler */ 693b032f27cSSam Leffler static void 694b032f27cSSam Leffler setbasicrates(struct ieee80211_rateset *rs, 695b032f27cSSam Leffler enum ieee80211_phymode mode, int add) 6968a1b9b6aSSam Leffler { 69768e8e04eSSam Leffler static const struct ieee80211_rateset basic[IEEE80211_MODE_MAX] = { 698be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 3, { 12, 24, 48 } }, 699be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 2, { 2, 4 } }, 700be0df3e7SSam Leffler /* NB: mixed b/g */ 701be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 4, { 2, 4, 11, 22 } }, 702be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A] = { 3, { 12, 24, 48 } }, 703be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G] = { 4, { 2, 4, 11, 22 } }, 704be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A] = { 3, { 12, 24, 48 } }, 7056a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 3, { 6, 12, 24 } }, 7066a76ae21SSam Leffler [IEEE80211_MODE_QUARTER] = { 3, { 3, 6, 12 } }, 707be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 3, { 12, 24, 48 } }, 708be0df3e7SSam Leffler /* NB: mixed b/g */ 709be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 4, { 2, 4, 11, 22 } }, 7108a1b9b6aSSam Leffler }; 7118a1b9b6aSSam Leffler int i, j; 7128a1b9b6aSSam Leffler 7138a1b9b6aSSam Leffler for (i = 0; i < rs->rs_nrates; i++) { 714b032f27cSSam Leffler if (!add) 7158a1b9b6aSSam Leffler rs->rs_rates[i] &= IEEE80211_RATE_VAL; 7168a1b9b6aSSam Leffler for (j = 0; j < basic[mode].rs_nrates; j++) 7178a1b9b6aSSam Leffler if (basic[mode].rs_rates[j] == rs->rs_rates[i]) { 7188a1b9b6aSSam Leffler rs->rs_rates[i] |= IEEE80211_RATE_BASIC; 7198a1b9b6aSSam Leffler break; 7208a1b9b6aSSam Leffler } 7218a1b9b6aSSam Leffler } 7228a1b9b6aSSam Leffler } 7238a1b9b6aSSam Leffler 7248a1b9b6aSSam Leffler /* 725b032f27cSSam Leffler * Set the basic rates in a rate set. 726b032f27cSSam Leffler */ 727b032f27cSSam Leffler void 728b032f27cSSam Leffler ieee80211_setbasicrates(struct ieee80211_rateset *rs, 729b032f27cSSam Leffler enum ieee80211_phymode mode) 730b032f27cSSam Leffler { 731b032f27cSSam Leffler setbasicrates(rs, mode, 0); 732b032f27cSSam Leffler } 733b032f27cSSam Leffler 734b032f27cSSam Leffler /* 735b032f27cSSam Leffler * Add basic rates to a rate set. 736b032f27cSSam Leffler */ 737b032f27cSSam Leffler void 738b032f27cSSam Leffler ieee80211_addbasicrates(struct ieee80211_rateset *rs, 739b032f27cSSam Leffler enum ieee80211_phymode mode) 740b032f27cSSam Leffler { 741b032f27cSSam Leffler setbasicrates(rs, mode, 1); 742b032f27cSSam Leffler } 743b032f27cSSam Leffler 744b032f27cSSam Leffler /* 745b032f27cSSam Leffler * WME protocol support. 746b032f27cSSam Leffler * 747b032f27cSSam Leffler * The default 11a/b/g/n parameters come from the WiFi Alliance WMM 748b032f27cSSam Leffler * System Interopability Test Plan (v1.4, Appendix F) and the 802.11n 749b032f27cSSam Leffler * Draft 2.0 Test Plan (Appendix D). 750b032f27cSSam Leffler * 751b032f27cSSam Leffler * Static/Dynamic Turbo mode settings come from Atheros. 7528a1b9b6aSSam Leffler */ 7538a1b9b6aSSam Leffler typedef struct phyParamType { 75468e8e04eSSam Leffler uint8_t aifsn; 75568e8e04eSSam Leffler uint8_t logcwmin; 75668e8e04eSSam Leffler uint8_t logcwmax; 75768e8e04eSSam Leffler uint16_t txopLimit; 75868e8e04eSSam Leffler uint8_t acm; 7598a1b9b6aSSam Leffler } paramType; 7608a1b9b6aSSam Leffler 7618a1b9b6aSSam Leffler static const struct phyParamType phyParamForAC_BE[IEEE80211_MODE_MAX] = { 762be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 3, 4, 6, 0, 0 }, 763be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 3, 4, 6, 0, 0 }, 764be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 3, 4, 6, 0, 0 }, 765be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 3, 4, 6, 0, 0 }, 766be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 3, 4, 6, 0, 0 }, 767be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 2, 3, 5, 0, 0 }, 768be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 2, 3, 5, 0, 0 }, 769be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 2, 3, 5, 0, 0 }, 7706a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 3, 4, 6, 0, 0 }, 7716a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 3, 4, 6, 0, 0 }, 772be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 3, 4, 6, 0, 0 }, 773be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 3, 4, 6, 0, 0 }, 7748a1b9b6aSSam Leffler }; 7758a1b9b6aSSam Leffler static const struct phyParamType phyParamForAC_BK[IEEE80211_MODE_MAX] = { 776be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 7, 4, 10, 0, 0 }, 777be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 7, 4, 10, 0, 0 }, 778be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 7, 4, 10, 0, 0 }, 779be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 7, 4, 10, 0, 0 }, 780be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 7, 4, 10, 0, 0 }, 781be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 7, 3, 10, 0, 0 }, 782be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 7, 3, 10, 0, 0 }, 783be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 7, 3, 10, 0, 0 }, 7846a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 7, 4, 10, 0, 0 }, 7856a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 7, 4, 10, 0, 0 }, 786be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 7, 4, 10, 0, 0 }, 787be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 7, 4, 10, 0, 0 }, 7888a1b9b6aSSam Leffler }; 7898a1b9b6aSSam Leffler static const struct phyParamType phyParamForAC_VI[IEEE80211_MODE_MAX] = { 790be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 1, 3, 4, 94, 0 }, 791be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 1, 3, 4, 94, 0 }, 792be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 1, 3, 4, 188, 0 }, 793be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 1, 3, 4, 94, 0 }, 794be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 1, 3, 4, 188, 0 }, 795be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 1, 2, 3, 94, 0 }, 796be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 1, 2, 3, 94, 0 }, 797be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 1, 2, 3, 94, 0 }, 7986a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 1, 3, 4, 94, 0 }, 7996a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 1, 3, 4, 94, 0 }, 800be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 1, 3, 4, 94, 0 }, 801be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 1, 3, 4, 94, 0 }, 8028a1b9b6aSSam Leffler }; 8038a1b9b6aSSam Leffler static const struct phyParamType phyParamForAC_VO[IEEE80211_MODE_MAX] = { 804be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 1, 2, 3, 47, 0 }, 805be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 1, 2, 3, 47, 0 }, 806be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 1, 2, 3, 102, 0 }, 807be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 1, 2, 3, 47, 0 }, 808be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 1, 2, 3, 102, 0 }, 809be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 1, 2, 2, 47, 0 }, 810be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 1, 2, 2, 47, 0 }, 811be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 1, 2, 2, 47, 0 }, 8126a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 1, 2, 3, 47, 0 }, 8136a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 1, 2, 3, 47, 0 }, 814be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 1, 2, 3, 47, 0 }, 815be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 1, 2, 3, 47, 0 }, 8168a1b9b6aSSam Leffler }; 8178a1b9b6aSSam Leffler 8188a1b9b6aSSam Leffler static const struct phyParamType bssPhyParamForAC_BE[IEEE80211_MODE_MAX] = { 819be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 3, 4, 10, 0, 0 }, 820be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 3, 4, 10, 0, 0 }, 821be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 3, 4, 10, 0, 0 }, 822be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 3, 4, 10, 0, 0 }, 823be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 3, 4, 10, 0, 0 }, 824be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 2, 3, 10, 0, 0 }, 825be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 2, 3, 10, 0, 0 }, 826be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 2, 3, 10, 0, 0 }, 8276a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 3, 4, 10, 0, 0 }, 8286a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 3, 4, 10, 0, 0 }, 829be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 3, 4, 10, 0, 0 }, 830be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 3, 4, 10, 0, 0 }, 8318a1b9b6aSSam Leffler }; 8328a1b9b6aSSam Leffler static const struct phyParamType bssPhyParamForAC_VI[IEEE80211_MODE_MAX] = { 833be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 2, 3, 4, 94, 0 }, 834be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 2, 3, 4, 94, 0 }, 835be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 2, 3, 4, 188, 0 }, 836be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 2, 3, 4, 94, 0 }, 837be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 2, 3, 4, 188, 0 }, 838be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 2, 2, 3, 94, 0 }, 839be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 2, 2, 3, 94, 0 }, 840be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 2, 2, 3, 94, 0 }, 8416a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 2, 3, 4, 94, 0 }, 8426a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 2, 3, 4, 94, 0 }, 843be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 2, 3, 4, 94, 0 }, 844be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 2, 3, 4, 94, 0 }, 8458a1b9b6aSSam Leffler }; 8468a1b9b6aSSam Leffler static const struct phyParamType bssPhyParamForAC_VO[IEEE80211_MODE_MAX] = { 847be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 2, 2, 3, 47, 0 }, 848be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 2, 2, 3, 47, 0 }, 849be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 2, 2, 3, 102, 0 }, 850be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 2, 2, 3, 47, 0 }, 851be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 2, 2, 3, 102, 0 }, 852be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A]= { 1, 2, 2, 47, 0 }, 853be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G]= { 1, 2, 2, 47, 0 }, 854be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A]={ 1, 2, 2, 47, 0 }, 8556a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 2, 2, 3, 47, 0 }, 8566a76ae21SSam Leffler [IEEE80211_MODE_QUARTER]= { 2, 2, 3, 47, 0 }, 857be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 2, 2, 3, 47, 0 }, 858be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 2, 2, 3, 47, 0 }, 8598a1b9b6aSSam Leffler }; 8608a1b9b6aSSam Leffler 861b032f27cSSam Leffler static void 86267ce310aSSam Leffler _setifsparams(struct wmeParams *wmep, const paramType *phy) 86367ce310aSSam Leffler { 86467ce310aSSam Leffler wmep->wmep_aifsn = phy->aifsn; 86567ce310aSSam Leffler wmep->wmep_logcwmin = phy->logcwmin; 86667ce310aSSam Leffler wmep->wmep_logcwmax = phy->logcwmax; 86767ce310aSSam Leffler wmep->wmep_txopLimit = phy->txopLimit; 86867ce310aSSam Leffler } 86967ce310aSSam Leffler 87067ce310aSSam Leffler static void 87167ce310aSSam Leffler setwmeparams(struct ieee80211vap *vap, const char *type, int ac, 87267ce310aSSam Leffler struct wmeParams *wmep, const paramType *phy) 87367ce310aSSam Leffler { 87467ce310aSSam Leffler wmep->wmep_acm = phy->acm; 87567ce310aSSam Leffler _setifsparams(wmep, phy); 87667ce310aSSam Leffler 87767ce310aSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME, 87867ce310aSSam Leffler "set %s (%s) [acm %u aifsn %u logcwmin %u logcwmax %u txop %u]\n", 87967ce310aSSam Leffler ieee80211_wme_acnames[ac], type, 88067ce310aSSam Leffler wmep->wmep_acm, wmep->wmep_aifsn, wmep->wmep_logcwmin, 88167ce310aSSam Leffler wmep->wmep_logcwmax, wmep->wmep_txopLimit); 88267ce310aSSam Leffler } 88367ce310aSSam Leffler 88467ce310aSSam Leffler static void 885b032f27cSSam Leffler ieee80211_wme_initparams_locked(struct ieee80211vap *vap) 8868a1b9b6aSSam Leffler { 887b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 8888a1b9b6aSSam Leffler struct ieee80211_wme_state *wme = &ic->ic_wme; 8898a1b9b6aSSam Leffler const paramType *pPhyParam, *pBssPhyParam; 8908a1b9b6aSSam Leffler struct wmeParams *wmep; 89168e8e04eSSam Leffler enum ieee80211_phymode mode; 8928a1b9b6aSSam Leffler int i; 8938a1b9b6aSSam Leffler 894b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 895b032f27cSSam Leffler 896a4b3c7a5SSam Leffler if ((ic->ic_caps & IEEE80211_C_WME) == 0 || ic->ic_nrunning > 1) 8978a1b9b6aSSam Leffler return; 8988a1b9b6aSSam Leffler 89968e8e04eSSam Leffler /* 9000d4e4e5eSAdrian Chadd * Clear the wme cap_info field so a qoscount from a previous 9010d4e4e5eSAdrian Chadd * vap doesn't confuse later code which only parses the beacon 9020d4e4e5eSAdrian Chadd * field and updates hardware when said field changes. 9030d4e4e5eSAdrian Chadd * Otherwise the hardware is programmed with defaults, not what 9040d4e4e5eSAdrian Chadd * the beacon actually announces. 9050d4e4e5eSAdrian Chadd */ 9060d4e4e5eSAdrian Chadd wme->wme_wmeChanParams.cap_info = 0; 9070d4e4e5eSAdrian Chadd 9080d4e4e5eSAdrian Chadd /* 90968e8e04eSSam Leffler * Select mode; we can be called early in which case we 91068e8e04eSSam Leffler * always use auto mode. We know we'll be called when 91168e8e04eSSam Leffler * entering the RUN state with bsschan setup properly 91268e8e04eSSam Leffler * so state will eventually get set correctly 91368e8e04eSSam Leffler */ 91468e8e04eSSam Leffler if (ic->ic_bsschan != IEEE80211_CHAN_ANYC) 91568e8e04eSSam Leffler mode = ieee80211_chan2mode(ic->ic_bsschan); 91668e8e04eSSam Leffler else 91768e8e04eSSam Leffler mode = IEEE80211_MODE_AUTO; 9188a1b9b6aSSam Leffler for (i = 0; i < WME_NUM_AC; i++) { 9198a1b9b6aSSam Leffler switch (i) { 9208a1b9b6aSSam Leffler case WME_AC_BK: 92168e8e04eSSam Leffler pPhyParam = &phyParamForAC_BK[mode]; 92268e8e04eSSam Leffler pBssPhyParam = &phyParamForAC_BK[mode]; 9238a1b9b6aSSam Leffler break; 9248a1b9b6aSSam Leffler case WME_AC_VI: 92568e8e04eSSam Leffler pPhyParam = &phyParamForAC_VI[mode]; 92668e8e04eSSam Leffler pBssPhyParam = &bssPhyParamForAC_VI[mode]; 9278a1b9b6aSSam Leffler break; 9288a1b9b6aSSam Leffler case WME_AC_VO: 92968e8e04eSSam Leffler pPhyParam = &phyParamForAC_VO[mode]; 93068e8e04eSSam Leffler pBssPhyParam = &bssPhyParamForAC_VO[mode]; 9318a1b9b6aSSam Leffler break; 9328a1b9b6aSSam Leffler case WME_AC_BE: 9338a1b9b6aSSam Leffler default: 93468e8e04eSSam Leffler pPhyParam = &phyParamForAC_BE[mode]; 93568e8e04eSSam Leffler pBssPhyParam = &bssPhyParamForAC_BE[mode]; 9368a1b9b6aSSam Leffler break; 9378a1b9b6aSSam Leffler } 9388a1b9b6aSSam Leffler wmep = &wme->wme_wmeChanParams.cap_wmeParams[i]; 9398a1b9b6aSSam Leffler if (ic->ic_opmode == IEEE80211_M_HOSTAP) { 94067ce310aSSam Leffler setwmeparams(vap, "chan", i, wmep, pPhyParam); 9418a1b9b6aSSam Leffler } else { 94267ce310aSSam Leffler setwmeparams(vap, "chan", i, wmep, pBssPhyParam); 9438a1b9b6aSSam Leffler } 9448a1b9b6aSSam Leffler wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[i]; 94567ce310aSSam Leffler setwmeparams(vap, "bss ", i, wmep, pBssPhyParam); 9468a1b9b6aSSam Leffler } 9478a1b9b6aSSam Leffler /* NB: check ic_bss to avoid NULL deref on initial attach */ 948b032f27cSSam Leffler if (vap->iv_bss != NULL) { 9498a1b9b6aSSam Leffler /* 9508a1b9b6aSSam Leffler * Calculate agressive mode switching threshold based 9518a1b9b6aSSam Leffler * on beacon interval. This doesn't need locking since 9528a1b9b6aSSam Leffler * we're only called before entering the RUN state at 9538a1b9b6aSSam Leffler * which point we start sending beacon frames. 9548a1b9b6aSSam Leffler */ 9558a1b9b6aSSam Leffler wme->wme_hipri_switch_thresh = 956b032f27cSSam Leffler (HIGH_PRI_SWITCH_THRESH * vap->iv_bss->ni_intval) / 100; 957a4b3c7a5SSam Leffler wme->wme_flags &= ~WME_F_AGGRMODE; 958b032f27cSSam Leffler ieee80211_wme_updateparams(vap); 9598a1b9b6aSSam Leffler } 9608a1b9b6aSSam Leffler } 9618a1b9b6aSSam Leffler 962b032f27cSSam Leffler void 963b032f27cSSam Leffler ieee80211_wme_initparams(struct ieee80211vap *vap) 964b032f27cSSam Leffler { 965b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 966b032f27cSSam Leffler 967b032f27cSSam Leffler IEEE80211_LOCK(ic); 968b032f27cSSam Leffler ieee80211_wme_initparams_locked(vap); 969b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 970b032f27cSSam Leffler } 971b032f27cSSam Leffler 9728a1b9b6aSSam Leffler /* 9738a1b9b6aSSam Leffler * Update WME parameters for ourself and the BSS. 9748a1b9b6aSSam Leffler */ 9758a1b9b6aSSam Leffler void 976b032f27cSSam Leffler ieee80211_wme_updateparams_locked(struct ieee80211vap *vap) 9778a1b9b6aSSam Leffler { 97867ce310aSSam Leffler static const paramType aggrParam[IEEE80211_MODE_MAX] = { 979be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = { 2, 4, 10, 64, 0 }, 980be0df3e7SSam Leffler [IEEE80211_MODE_11A] = { 2, 4, 10, 64, 0 }, 981be0df3e7SSam Leffler [IEEE80211_MODE_11B] = { 2, 5, 10, 64, 0 }, 982be0df3e7SSam Leffler [IEEE80211_MODE_11G] = { 2, 4, 10, 64, 0 }, 983be0df3e7SSam Leffler [IEEE80211_MODE_FH] = { 2, 5, 10, 64, 0 }, 984be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A] = { 1, 3, 10, 64, 0 }, 985be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G] = { 1, 3, 10, 64, 0 }, 986be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A] = { 1, 3, 10, 64, 0 }, 9876a76ae21SSam Leffler [IEEE80211_MODE_HALF] = { 2, 4, 10, 64, 0 }, 9886a76ae21SSam Leffler [IEEE80211_MODE_QUARTER] = { 2, 4, 10, 64, 0 }, 989be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/ 990be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/ 9918a1b9b6aSSam Leffler }; 992b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 9938a1b9b6aSSam Leffler struct ieee80211_wme_state *wme = &ic->ic_wme; 9948a1b9b6aSSam Leffler const struct wmeParams *wmep; 9958a1b9b6aSSam Leffler struct wmeParams *chanp, *bssp; 99668e8e04eSSam Leffler enum ieee80211_phymode mode; 9978a1b9b6aSSam Leffler int i; 998a48a8ad7SAdrian Chadd int do_aggrmode = 0; 9998a1b9b6aSSam Leffler 100067ce310aSSam Leffler /* 100167ce310aSSam Leffler * Set up the channel access parameters for the physical 100267ce310aSSam Leffler * device. First populate the configured settings. 100367ce310aSSam Leffler */ 10048a1b9b6aSSam Leffler for (i = 0; i < WME_NUM_AC; i++) { 10058a1b9b6aSSam Leffler chanp = &wme->wme_chanParams.cap_wmeParams[i]; 10068a1b9b6aSSam Leffler wmep = &wme->wme_wmeChanParams.cap_wmeParams[i]; 10078a1b9b6aSSam Leffler chanp->wmep_aifsn = wmep->wmep_aifsn; 10088a1b9b6aSSam Leffler chanp->wmep_logcwmin = wmep->wmep_logcwmin; 10098a1b9b6aSSam Leffler chanp->wmep_logcwmax = wmep->wmep_logcwmax; 10108a1b9b6aSSam Leffler chanp->wmep_txopLimit = wmep->wmep_txopLimit; 10118a1b9b6aSSam Leffler 10128a1b9b6aSSam Leffler chanp = &wme->wme_bssChanParams.cap_wmeParams[i]; 10138a1b9b6aSSam Leffler wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[i]; 10148a1b9b6aSSam Leffler chanp->wmep_aifsn = wmep->wmep_aifsn; 10158a1b9b6aSSam Leffler chanp->wmep_logcwmin = wmep->wmep_logcwmin; 10168a1b9b6aSSam Leffler chanp->wmep_logcwmax = wmep->wmep_logcwmax; 10178a1b9b6aSSam Leffler chanp->wmep_txopLimit = wmep->wmep_txopLimit; 10188a1b9b6aSSam Leffler } 10198a1b9b6aSSam Leffler 10208a1b9b6aSSam Leffler /* 102168e8e04eSSam Leffler * Select mode; we can be called early in which case we 102268e8e04eSSam Leffler * always use auto mode. We know we'll be called when 102368e8e04eSSam Leffler * entering the RUN state with bsschan setup properly 102468e8e04eSSam Leffler * so state will eventually get set correctly 102568e8e04eSSam Leffler */ 102668e8e04eSSam Leffler if (ic->ic_bsschan != IEEE80211_CHAN_ANYC) 102768e8e04eSSam Leffler mode = ieee80211_chan2mode(ic->ic_bsschan); 102868e8e04eSSam Leffler else 102968e8e04eSSam Leffler mode = IEEE80211_MODE_AUTO; 103068e8e04eSSam Leffler 103168e8e04eSSam Leffler /* 10328a1b9b6aSSam Leffler * This implements agressive mode as found in certain 10338a1b9b6aSSam Leffler * vendors' AP's. When there is significant high 10348a1b9b6aSSam Leffler * priority (VI/VO) traffic in the BSS throttle back BE 10358a1b9b6aSSam Leffler * traffic by using conservative parameters. Otherwise 10368a1b9b6aSSam Leffler * BE uses agressive params to optimize performance of 10378a1b9b6aSSam Leffler * legacy/non-QoS traffic. 10388a1b9b6aSSam Leffler */ 1039a48a8ad7SAdrian Chadd 1040a48a8ad7SAdrian Chadd /* Hostap? Only if aggressive mode is enabled */ 1041a48a8ad7SAdrian Chadd if (vap->iv_opmode == IEEE80211_M_HOSTAP && 1042a48a8ad7SAdrian Chadd (wme->wme_flags & WME_F_AGGRMODE) != 0) 1043a48a8ad7SAdrian Chadd do_aggrmode = 1; 1044a48a8ad7SAdrian Chadd 1045a48a8ad7SAdrian Chadd /* 1046a48a8ad7SAdrian Chadd * Station? Only if we're in a non-QoS BSS. 1047a48a8ad7SAdrian Chadd */ 1048a48a8ad7SAdrian Chadd else if ((vap->iv_opmode == IEEE80211_M_STA && 1049a48a8ad7SAdrian Chadd (vap->iv_bss->ni_flags & IEEE80211_NODE_QOS) == 0)) 1050a48a8ad7SAdrian Chadd do_aggrmode = 1; 1051a48a8ad7SAdrian Chadd 1052a48a8ad7SAdrian Chadd /* 1053a48a8ad7SAdrian Chadd * IBSS? Only if we we have WME enabled. 1054a48a8ad7SAdrian Chadd */ 1055a48a8ad7SAdrian Chadd else if ((vap->iv_opmode == IEEE80211_M_IBSS) && 1056a48a8ad7SAdrian Chadd (vap->iv_flags & IEEE80211_F_WME)) 1057a48a8ad7SAdrian Chadd do_aggrmode = 1; 1058a48a8ad7SAdrian Chadd 1059a48a8ad7SAdrian Chadd /* 1060a48a8ad7SAdrian Chadd * If WME is disabled on this VAP, default to aggressive mode 1061a48a8ad7SAdrian Chadd * regardless of the configuration. 1062a48a8ad7SAdrian Chadd */ 1063a48a8ad7SAdrian Chadd if ((vap->iv_flags & IEEE80211_F_WME) == 0) 1064a48a8ad7SAdrian Chadd do_aggrmode = 1; 1065a48a8ad7SAdrian Chadd 1066a48a8ad7SAdrian Chadd /* XXX WDS? */ 1067a48a8ad7SAdrian Chadd 1068a48a8ad7SAdrian Chadd /* XXX MBSS? */ 1069a48a8ad7SAdrian Chadd 1070a48a8ad7SAdrian Chadd if (do_aggrmode) { 10718a1b9b6aSSam Leffler chanp = &wme->wme_chanParams.cap_wmeParams[WME_AC_BE]; 10728a1b9b6aSSam Leffler bssp = &wme->wme_bssChanParams.cap_wmeParams[WME_AC_BE]; 10738a1b9b6aSSam Leffler 107467ce310aSSam Leffler chanp->wmep_aifsn = bssp->wmep_aifsn = aggrParam[mode].aifsn; 10758a1b9b6aSSam Leffler chanp->wmep_logcwmin = bssp->wmep_logcwmin = 107667ce310aSSam Leffler aggrParam[mode].logcwmin; 10778a1b9b6aSSam Leffler chanp->wmep_logcwmax = bssp->wmep_logcwmax = 107867ce310aSSam Leffler aggrParam[mode].logcwmax; 10798a1b9b6aSSam Leffler chanp->wmep_txopLimit = bssp->wmep_txopLimit = 1080b032f27cSSam Leffler (vap->iv_flags & IEEE80211_F_BURST) ? 108167ce310aSSam Leffler aggrParam[mode].txopLimit : 0; 1082b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME, 108367ce310aSSam Leffler "update %s (chan+bss) [acm %u aifsn %u logcwmin %u " 108467ce310aSSam Leffler "logcwmax %u txop %u]\n", ieee80211_wme_acnames[WME_AC_BE], 108567ce310aSSam Leffler chanp->wmep_acm, chanp->wmep_aifsn, chanp->wmep_logcwmin, 108667ce310aSSam Leffler chanp->wmep_logcwmax, chanp->wmep_txopLimit); 10878a1b9b6aSSam Leffler } 10888a1b9b6aSSam Leffler 1089a48a8ad7SAdrian Chadd 1090a48a8ad7SAdrian Chadd /* 1091a48a8ad7SAdrian Chadd * Change the contention window based on the number of associated 1092a48a8ad7SAdrian Chadd * stations. If the number of associated stations is 1 and 1093a48a8ad7SAdrian Chadd * aggressive mode is enabled, lower the contention window even 1094a48a8ad7SAdrian Chadd * further. 1095a48a8ad7SAdrian Chadd */ 1096b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_HOSTAP && 1097ad262427SSam Leffler ic->ic_sta_assoc < 2 && (wme->wme_flags & WME_F_AGGRMODE) != 0) { 109868e8e04eSSam Leffler static const uint8_t logCwMin[IEEE80211_MODE_MAX] = { 1099be0df3e7SSam Leffler [IEEE80211_MODE_AUTO] = 3, 1100be0df3e7SSam Leffler [IEEE80211_MODE_11A] = 3, 1101be0df3e7SSam Leffler [IEEE80211_MODE_11B] = 4, 1102be0df3e7SSam Leffler [IEEE80211_MODE_11G] = 3, 1103be0df3e7SSam Leffler [IEEE80211_MODE_FH] = 4, 1104be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_A] = 3, 1105be0df3e7SSam Leffler [IEEE80211_MODE_TURBO_G] = 3, 1106be0df3e7SSam Leffler [IEEE80211_MODE_STURBO_A] = 3, 11076a76ae21SSam Leffler [IEEE80211_MODE_HALF] = 3, 11086a76ae21SSam Leffler [IEEE80211_MODE_QUARTER] = 3, 1109be0df3e7SSam Leffler [IEEE80211_MODE_11NA] = 3, 1110be0df3e7SSam Leffler [IEEE80211_MODE_11NG] = 3, 11118a1b9b6aSSam Leffler }; 11128a1b9b6aSSam Leffler chanp = &wme->wme_chanParams.cap_wmeParams[WME_AC_BE]; 11138a1b9b6aSSam Leffler bssp = &wme->wme_bssChanParams.cap_wmeParams[WME_AC_BE]; 11148a1b9b6aSSam Leffler 111568e8e04eSSam Leffler chanp->wmep_logcwmin = bssp->wmep_logcwmin = logCwMin[mode]; 1116b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME, 111767ce310aSSam Leffler "update %s (chan+bss) logcwmin %u\n", 111867ce310aSSam Leffler ieee80211_wme_acnames[WME_AC_BE], chanp->wmep_logcwmin); 11198a1b9b6aSSam Leffler } 1120a48a8ad7SAdrian Chadd 1121a48a8ad7SAdrian Chadd /* 1122a48a8ad7SAdrian Chadd * Arrange for the beacon update. 1123a48a8ad7SAdrian Chadd * 1124a48a8ad7SAdrian Chadd * XXX what about MBSS, WDS? 1125a48a8ad7SAdrian Chadd */ 1126a48a8ad7SAdrian Chadd if (vap->iv_opmode == IEEE80211_M_HOSTAP 1127a48a8ad7SAdrian Chadd || vap->iv_opmode == IEEE80211_M_IBSS) { 11288a1b9b6aSSam Leffler /* 11298a1b9b6aSSam Leffler * Arrange for a beacon update and bump the parameter 11308a1b9b6aSSam Leffler * set number so associated stations load the new values. 11318a1b9b6aSSam Leffler */ 11328a1b9b6aSSam Leffler wme->wme_bssChanParams.cap_info = 11338a1b9b6aSSam Leffler (wme->wme_bssChanParams.cap_info+1) & WME_QOSINFO_COUNT; 1134b032f27cSSam Leffler ieee80211_beacon_notify(vap, IEEE80211_BEACON_WME); 11358a1b9b6aSSam Leffler } 11368a1b9b6aSSam Leffler 11378a1b9b6aSSam Leffler wme->wme_update(ic); 11388a1b9b6aSSam Leffler 1139b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME, 11408a1b9b6aSSam Leffler "%s: WME params updated, cap_info 0x%x\n", __func__, 1141b032f27cSSam Leffler vap->iv_opmode == IEEE80211_M_STA ? 11428a1b9b6aSSam Leffler wme->wme_wmeChanParams.cap_info : 11438a1b9b6aSSam Leffler wme->wme_bssChanParams.cap_info); 11448a1b9b6aSSam Leffler } 11458a1b9b6aSSam Leffler 11468a1b9b6aSSam Leffler void 1147b032f27cSSam Leffler ieee80211_wme_updateparams(struct ieee80211vap *vap) 11488a1b9b6aSSam Leffler { 1149b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 11508a1b9b6aSSam Leffler 11518a1b9b6aSSam Leffler if (ic->ic_caps & IEEE80211_C_WME) { 1152b032f27cSSam Leffler IEEE80211_LOCK(ic); 1153b032f27cSSam Leffler ieee80211_wme_updateparams_locked(vap); 1154b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 11558a1b9b6aSSam Leffler } 11568a1b9b6aSSam Leffler } 11578a1b9b6aSSam Leffler 1158b032f27cSSam Leffler static void 1159b032f27cSSam Leffler parent_updown(void *arg, int npending) 116068e8e04eSSam Leffler { 1161*7a79cebfSGleb Smirnoff struct ieee80211com *ic = arg; 116268e8e04eSSam Leffler 1163*7a79cebfSGleb Smirnoff ic->ic_parent(ic); 1164b032f27cSSam Leffler } 116568e8e04eSSam Leffler 11665efea30fSAndrew Thompson static void 11675efea30fSAndrew Thompson update_mcast(void *arg, int npending) 11685efea30fSAndrew Thompson { 11695efea30fSAndrew Thompson struct ieee80211com *ic = arg; 11705efea30fSAndrew Thompson 1171272f6adeSGleb Smirnoff ic->ic_update_mcast(ic); 11725efea30fSAndrew Thompson } 11735efea30fSAndrew Thompson 11745efea30fSAndrew Thompson static void 11755efea30fSAndrew Thompson update_promisc(void *arg, int npending) 11765efea30fSAndrew Thompson { 11775efea30fSAndrew Thompson struct ieee80211com *ic = arg; 11785efea30fSAndrew Thompson 1179272f6adeSGleb Smirnoff ic->ic_update_promisc(ic); 11805efea30fSAndrew Thompson } 11815efea30fSAndrew Thompson 11825efea30fSAndrew Thompson static void 11835efea30fSAndrew Thompson update_channel(void *arg, int npending) 11845efea30fSAndrew Thompson { 11855efea30fSAndrew Thompson struct ieee80211com *ic = arg; 11865efea30fSAndrew Thompson 11875efea30fSAndrew Thompson ic->ic_set_channel(ic); 11885463c4a4SSam Leffler ieee80211_radiotap_chan_change(ic); 11895efea30fSAndrew Thompson } 11905efea30fSAndrew Thompson 1191b94299c4SAdrian Chadd static void 1192b94299c4SAdrian Chadd update_chw(void *arg, int npending) 1193b94299c4SAdrian Chadd { 1194b94299c4SAdrian Chadd struct ieee80211com *ic = arg; 1195b94299c4SAdrian Chadd 1196b94299c4SAdrian Chadd /* 1197b94299c4SAdrian Chadd * XXX should we defer the channel width _config_ update until now? 1198b94299c4SAdrian Chadd */ 1199b94299c4SAdrian Chadd ic->ic_update_chw(ic); 1200b94299c4SAdrian Chadd } 1201b94299c4SAdrian Chadd 120268e8e04eSSam Leffler /* 1203ae55932eSAndrew Thompson * Block until the parent is in a known state. This is 1204ae55932eSAndrew Thompson * used after any operations that dispatch a task (e.g. 1205ae55932eSAndrew Thompson * to auto-configure the parent device up/down). 1206ae55932eSAndrew Thompson */ 1207ae55932eSAndrew Thompson void 1208ae55932eSAndrew Thompson ieee80211_waitfor_parent(struct ieee80211com *ic) 1209ae55932eSAndrew Thompson { 12105efea30fSAndrew Thompson taskqueue_block(ic->ic_tq); 12115efea30fSAndrew Thompson ieee80211_draintask(ic, &ic->ic_parent_task); 12125efea30fSAndrew Thompson ieee80211_draintask(ic, &ic->ic_mcast_task); 12135efea30fSAndrew Thompson ieee80211_draintask(ic, &ic->ic_promisc_task); 12145efea30fSAndrew Thompson ieee80211_draintask(ic, &ic->ic_chan_task); 12155efea30fSAndrew Thompson ieee80211_draintask(ic, &ic->ic_bmiss_task); 1216b94299c4SAdrian Chadd ieee80211_draintask(ic, &ic->ic_chw_task); 12175efea30fSAndrew Thompson taskqueue_unblock(ic->ic_tq); 1218ae55932eSAndrew Thompson } 1219ae55932eSAndrew Thompson 1220ae55932eSAndrew Thompson /* 122124034ddbSAdrian Chadd * Check to see whether the current channel needs reset. 122224034ddbSAdrian Chadd * 122324034ddbSAdrian Chadd * Some devices don't handle being given an invalid channel 122424034ddbSAdrian Chadd * in their operating mode very well (eg wpi(4) will throw a 122524034ddbSAdrian Chadd * firmware exception.) 122624034ddbSAdrian Chadd * 122724034ddbSAdrian Chadd * Return 0 if we're ok, 1 if the channel needs to be reset. 122824034ddbSAdrian Chadd * 122924034ddbSAdrian Chadd * See PR kern/202502. 123024034ddbSAdrian Chadd */ 123124034ddbSAdrian Chadd static int 123224034ddbSAdrian Chadd ieee80211_start_check_reset_chan(struct ieee80211vap *vap) 123324034ddbSAdrian Chadd { 123424034ddbSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 123524034ddbSAdrian Chadd 123624034ddbSAdrian Chadd if ((vap->iv_opmode == IEEE80211_M_IBSS && 123724034ddbSAdrian Chadd IEEE80211_IS_CHAN_NOADHOC(ic->ic_curchan)) || 123824034ddbSAdrian Chadd (vap->iv_opmode == IEEE80211_M_HOSTAP && 123924034ddbSAdrian Chadd IEEE80211_IS_CHAN_NOHOSTAP(ic->ic_curchan))) 124024034ddbSAdrian Chadd return (1); 124124034ddbSAdrian Chadd return (0); 124224034ddbSAdrian Chadd } 124324034ddbSAdrian Chadd 124424034ddbSAdrian Chadd /* 124524034ddbSAdrian Chadd * Reset the curchan to a known good state. 124624034ddbSAdrian Chadd */ 124724034ddbSAdrian Chadd static void 124824034ddbSAdrian Chadd ieee80211_start_reset_chan(struct ieee80211vap *vap) 124924034ddbSAdrian Chadd { 125024034ddbSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 125124034ddbSAdrian Chadd 125224034ddbSAdrian Chadd ic->ic_curchan = &ic->ic_channels[0]; 125324034ddbSAdrian Chadd } 125424034ddbSAdrian Chadd 125524034ddbSAdrian Chadd /* 1256b032f27cSSam Leffler * Start a vap running. If this is the first vap to be 1257b032f27cSSam Leffler * set running on the underlying device then we 1258b032f27cSSam Leffler * automatically bring the device up. 125968e8e04eSSam Leffler */ 1260b032f27cSSam Leffler void 1261b032f27cSSam Leffler ieee80211_start_locked(struct ieee80211vap *vap) 1262b032f27cSSam Leffler { 1263b032f27cSSam Leffler struct ifnet *ifp = vap->iv_ifp; 1264b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 1265b032f27cSSam Leffler 1266b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1267b032f27cSSam Leffler 1268b032f27cSSam Leffler IEEE80211_DPRINTF(vap, 1269b032f27cSSam Leffler IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG, 1270b032f27cSSam Leffler "start running, %d vaps running\n", ic->ic_nrunning); 1271b032f27cSSam Leffler 1272b032f27cSSam Leffler if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) { 1273b032f27cSSam Leffler /* 1274b032f27cSSam Leffler * Mark us running. Note that it's ok to do this first; 1275b032f27cSSam Leffler * if we need to bring the parent device up we defer that 1276b032f27cSSam Leffler * to avoid dropping the com lock. We expect the device 1277b032f27cSSam Leffler * to respond to being marked up by calling back into us 1278b032f27cSSam Leffler * through ieee80211_start_all at which point we'll come 1279b032f27cSSam Leffler * back in here and complete the work. 1280b032f27cSSam Leffler */ 1281b032f27cSSam Leffler ifp->if_drv_flags |= IFF_DRV_RUNNING; 1282b032f27cSSam Leffler /* 1283b032f27cSSam Leffler * We are not running; if this we are the first vap 1284b032f27cSSam Leffler * to be brought up auto-up the parent if necessary. 1285b032f27cSSam Leffler */ 1286*7a79cebfSGleb Smirnoff if (ic->ic_nrunning++ == 0) { 128724034ddbSAdrian Chadd 128824034ddbSAdrian Chadd /* reset the channel to a known good channel */ 128924034ddbSAdrian Chadd if (ieee80211_start_check_reset_chan(vap)) 129024034ddbSAdrian Chadd ieee80211_start_reset_chan(vap); 129124034ddbSAdrian Chadd 1292b032f27cSSam Leffler IEEE80211_DPRINTF(vap, 1293b032f27cSSam Leffler IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG, 1294*7a79cebfSGleb Smirnoff "%s: up parent %s\n", __func__, ic->ic_name); 12955efea30fSAndrew Thompson ieee80211_runtask(ic, &ic->ic_parent_task); 1296b032f27cSSam Leffler return; 1297b032f27cSSam Leffler } 1298b032f27cSSam Leffler } 1299b032f27cSSam Leffler /* 1300b032f27cSSam Leffler * If the parent is up and running, then kick the 1301b032f27cSSam Leffler * 802.11 state machine as appropriate. 1302b032f27cSSam Leffler */ 1303*7a79cebfSGleb Smirnoff if (vap->iv_roaming != IEEE80211_ROAMING_MANUAL) { 1304b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_STA) { 1305b032f27cSSam Leffler #if 0 1306b032f27cSSam Leffler /* XXX bypasses scan too easily; disable for now */ 1307b032f27cSSam Leffler /* 1308b032f27cSSam Leffler * Try to be intelligent about clocking the state 1309b032f27cSSam Leffler * machine. If we're currently in RUN state then 1310b032f27cSSam Leffler * we should be able to apply any new state/parameters 1311b032f27cSSam Leffler * simply by re-associating. Otherwise we need to 1312b032f27cSSam Leffler * re-scan to select an appropriate ap. 1313b032f27cSSam Leffler */ 1314b032f27cSSam Leffler if (vap->iv_state >= IEEE80211_S_RUN) 1315b032f27cSSam Leffler ieee80211_new_state_locked(vap, 1316b032f27cSSam Leffler IEEE80211_S_ASSOC, 1); 1317b032f27cSSam Leffler else 1318b032f27cSSam Leffler #endif 1319b032f27cSSam Leffler ieee80211_new_state_locked(vap, 1320b032f27cSSam Leffler IEEE80211_S_SCAN, 0); 132168e8e04eSSam Leffler } else { 132268e8e04eSSam Leffler /* 1323b032f27cSSam Leffler * For monitor+wds mode there's nothing to do but 1324b032f27cSSam Leffler * start running. Otherwise if this is the first 132568e8e04eSSam Leffler * vap to be brought up, start a scan which may be 132668e8e04eSSam Leffler * preempted if the station is locked to a particular 132768e8e04eSSam Leffler * channel. 132868e8e04eSSam Leffler */ 13295efea30fSAndrew Thompson vap->iv_flags_ext |= IEEE80211_FEXT_REINIT; 1330b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_MONITOR || 1331b032f27cSSam Leffler vap->iv_opmode == IEEE80211_M_WDS) 1332b032f27cSSam Leffler ieee80211_new_state_locked(vap, 1333b032f27cSSam Leffler IEEE80211_S_RUN, -1); 1334b032f27cSSam Leffler else 1335b032f27cSSam Leffler ieee80211_new_state_locked(vap, 1336b032f27cSSam Leffler IEEE80211_S_SCAN, 0); 133768e8e04eSSam Leffler } 133868e8e04eSSam Leffler } 1339b032f27cSSam Leffler } 1340b032f27cSSam Leffler 1341b032f27cSSam Leffler /* 1342b032f27cSSam Leffler * Start a single vap. 1343b032f27cSSam Leffler */ 1344b032f27cSSam Leffler void 1345b032f27cSSam Leffler ieee80211_init(void *arg) 1346b032f27cSSam Leffler { 1347b032f27cSSam Leffler struct ieee80211vap *vap = arg; 1348b032f27cSSam Leffler 134935f434b2SSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG, 1350b032f27cSSam Leffler "%s\n", __func__); 1351b032f27cSSam Leffler 1352b032f27cSSam Leffler IEEE80211_LOCK(vap->iv_ic); 1353b032f27cSSam Leffler ieee80211_start_locked(vap); 1354b032f27cSSam Leffler IEEE80211_UNLOCK(vap->iv_ic); 1355b032f27cSSam Leffler } 1356b032f27cSSam Leffler 1357b032f27cSSam Leffler /* 1358b032f27cSSam Leffler * Start all runnable vap's on a device. 1359b032f27cSSam Leffler */ 1360b032f27cSSam Leffler void 1361b032f27cSSam Leffler ieee80211_start_all(struct ieee80211com *ic) 1362b032f27cSSam Leffler { 1363b032f27cSSam Leffler struct ieee80211vap *vap; 1364b032f27cSSam Leffler 1365b032f27cSSam Leffler IEEE80211_LOCK(ic); 1366b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1367b032f27cSSam Leffler struct ifnet *ifp = vap->iv_ifp; 1368b032f27cSSam Leffler if (IFNET_IS_UP_RUNNING(ifp)) /* NB: avoid recursion */ 1369b032f27cSSam Leffler ieee80211_start_locked(vap); 1370b032f27cSSam Leffler } 1371b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 1372b032f27cSSam Leffler } 1373b032f27cSSam Leffler 1374b032f27cSSam Leffler /* 1375b032f27cSSam Leffler * Stop a vap. We force it down using the state machine 1376b032f27cSSam Leffler * then mark it's ifnet not running. If this is the last 1377b032f27cSSam Leffler * vap running on the underlying device then we close it 1378b032f27cSSam Leffler * too to insure it will be properly initialized when the 1379b032f27cSSam Leffler * next vap is brought up. 1380b032f27cSSam Leffler */ 1381b032f27cSSam Leffler void 1382b032f27cSSam Leffler ieee80211_stop_locked(struct ieee80211vap *vap) 1383b032f27cSSam Leffler { 1384b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 1385b032f27cSSam Leffler struct ifnet *ifp = vap->iv_ifp; 1386b032f27cSSam Leffler 1387b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1388b032f27cSSam Leffler 1389b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG, 1390b032f27cSSam Leffler "stop running, %d vaps running\n", ic->ic_nrunning); 1391b032f27cSSam Leffler 1392b032f27cSSam Leffler ieee80211_new_state_locked(vap, IEEE80211_S_INIT, -1); 1393b032f27cSSam Leffler if (ifp->if_drv_flags & IFF_DRV_RUNNING) { 1394b032f27cSSam Leffler ifp->if_drv_flags &= ~IFF_DRV_RUNNING; /* mark us stopped */ 1395*7a79cebfSGleb Smirnoff if (--ic->ic_nrunning == 0) { 1396b032f27cSSam Leffler IEEE80211_DPRINTF(vap, 1397b032f27cSSam Leffler IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG, 1398*7a79cebfSGleb Smirnoff "down parent %s\n", ic->ic_name); 13995efea30fSAndrew Thompson ieee80211_runtask(ic, &ic->ic_parent_task); 1400b032f27cSSam Leffler } 1401b032f27cSSam Leffler } 1402b032f27cSSam Leffler } 1403b032f27cSSam Leffler 1404b032f27cSSam Leffler void 1405b032f27cSSam Leffler ieee80211_stop(struct ieee80211vap *vap) 1406b032f27cSSam Leffler { 1407b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 1408b032f27cSSam Leffler 1409b032f27cSSam Leffler IEEE80211_LOCK(ic); 1410b032f27cSSam Leffler ieee80211_stop_locked(vap); 1411b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 1412b032f27cSSam Leffler } 1413b032f27cSSam Leffler 1414b032f27cSSam Leffler /* 1415b032f27cSSam Leffler * Stop all vap's running on a device. 1416b032f27cSSam Leffler */ 1417b032f27cSSam Leffler void 1418b032f27cSSam Leffler ieee80211_stop_all(struct ieee80211com *ic) 1419b032f27cSSam Leffler { 1420b032f27cSSam Leffler struct ieee80211vap *vap; 1421b032f27cSSam Leffler 1422b032f27cSSam Leffler IEEE80211_LOCK(ic); 1423b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1424b032f27cSSam Leffler struct ifnet *ifp = vap->iv_ifp; 1425b032f27cSSam Leffler if (IFNET_IS_UP_RUNNING(ifp)) /* NB: avoid recursion */ 1426b032f27cSSam Leffler ieee80211_stop_locked(vap); 1427b032f27cSSam Leffler } 1428b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 1429ae55932eSAndrew Thompson 1430ae55932eSAndrew Thompson ieee80211_waitfor_parent(ic); 143168e8e04eSSam Leffler } 143268e8e04eSSam Leffler 143368e8e04eSSam Leffler /* 14346076cbacSSam Leffler * Stop all vap's running on a device and arrange 14356076cbacSSam Leffler * for those that were running to be resumed. 14366076cbacSSam Leffler */ 14376076cbacSSam Leffler void 14386076cbacSSam Leffler ieee80211_suspend_all(struct ieee80211com *ic) 14396076cbacSSam Leffler { 14406076cbacSSam Leffler struct ieee80211vap *vap; 14416076cbacSSam Leffler 14426076cbacSSam Leffler IEEE80211_LOCK(ic); 14436076cbacSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 14446076cbacSSam Leffler struct ifnet *ifp = vap->iv_ifp; 14456076cbacSSam Leffler if (IFNET_IS_UP_RUNNING(ifp)) { /* NB: avoid recursion */ 14466076cbacSSam Leffler vap->iv_flags_ext |= IEEE80211_FEXT_RESUME; 14476076cbacSSam Leffler ieee80211_stop_locked(vap); 14486076cbacSSam Leffler } 14496076cbacSSam Leffler } 14506076cbacSSam Leffler IEEE80211_UNLOCK(ic); 1451ae55932eSAndrew Thompson 1452ae55932eSAndrew Thompson ieee80211_waitfor_parent(ic); 14536076cbacSSam Leffler } 14546076cbacSSam Leffler 14556076cbacSSam Leffler /* 14566076cbacSSam Leffler * Start all vap's marked for resume. 14576076cbacSSam Leffler */ 14586076cbacSSam Leffler void 14596076cbacSSam Leffler ieee80211_resume_all(struct ieee80211com *ic) 14606076cbacSSam Leffler { 14616076cbacSSam Leffler struct ieee80211vap *vap; 14626076cbacSSam Leffler 14636076cbacSSam Leffler IEEE80211_LOCK(ic); 14646076cbacSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 14656076cbacSSam Leffler struct ifnet *ifp = vap->iv_ifp; 14666076cbacSSam Leffler if (!IFNET_IS_UP_RUNNING(ifp) && 14676076cbacSSam Leffler (vap->iv_flags_ext & IEEE80211_FEXT_RESUME)) { 14686076cbacSSam Leffler vap->iv_flags_ext &= ~IEEE80211_FEXT_RESUME; 14696076cbacSSam Leffler ieee80211_start_locked(vap); 14706076cbacSSam Leffler } 14716076cbacSSam Leffler } 14726076cbacSSam Leffler IEEE80211_UNLOCK(ic); 14736076cbacSSam Leffler } 14746076cbacSSam Leffler 1475e701e041SSam Leffler void 1476e701e041SSam Leffler ieee80211_beacon_miss(struct ieee80211com *ic) 1477e701e041SSam Leffler { 14785efea30fSAndrew Thompson IEEE80211_LOCK(ic); 14795efea30fSAndrew Thompson if ((ic->ic_flags & IEEE80211_F_SCAN) == 0) { 14805efea30fSAndrew Thompson /* Process in a taskq, the handler may reenter the driver */ 14815efea30fSAndrew Thompson ieee80211_runtask(ic, &ic->ic_bmiss_task); 14825efea30fSAndrew Thompson } 14835efea30fSAndrew Thompson IEEE80211_UNLOCK(ic); 14845efea30fSAndrew Thompson } 14855efea30fSAndrew Thompson 14865efea30fSAndrew Thompson static void 14875efea30fSAndrew Thompson beacon_miss(void *arg, int npending) 14885efea30fSAndrew Thompson { 14895efea30fSAndrew Thompson struct ieee80211com *ic = arg; 1490b032f27cSSam Leffler struct ieee80211vap *vap; 1491e701e041SSam Leffler 149223401900SAdrian Chadd IEEE80211_LOCK(ic); 1493b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1494e701e041SSam Leffler /* 1495b032f27cSSam Leffler * We only pass events through for sta vap's in RUN state; 1496b032f27cSSam Leffler * may be too restrictive but for now this saves all the 1497b032f27cSSam Leffler * handlers duplicating these checks. 1498e701e041SSam Leffler */ 1499b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_STA && 1500c70761e6SSam Leffler vap->iv_state >= IEEE80211_S_RUN && 1501b032f27cSSam Leffler vap->iv_bmiss != NULL) 1502b032f27cSSam Leffler vap->iv_bmiss(vap); 1503e701e041SSam Leffler } 150423401900SAdrian Chadd IEEE80211_UNLOCK(ic); 150568e8e04eSSam Leffler } 1506e701e041SSam Leffler 15075efea30fSAndrew Thompson static void 15085efea30fSAndrew Thompson beacon_swmiss(void *arg, int npending) 15095efea30fSAndrew Thompson { 15105efea30fSAndrew Thompson struct ieee80211vap *vap = arg; 151123401900SAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 15125efea30fSAndrew Thompson 151323401900SAdrian Chadd IEEE80211_LOCK(ic); 151423401900SAdrian Chadd if (vap->iv_state == IEEE80211_S_RUN) { 15155efea30fSAndrew Thompson /* XXX Call multiple times if npending > zero? */ 15165efea30fSAndrew Thompson vap->iv_bmiss(vap); 15175efea30fSAndrew Thompson } 151823401900SAdrian Chadd IEEE80211_UNLOCK(ic); 151923401900SAdrian Chadd } 15205efea30fSAndrew Thompson 1521e99662a6SSam Leffler /* 1522e99662a6SSam Leffler * Software beacon miss handling. Check if any beacons 1523e99662a6SSam Leffler * were received in the last period. If not post a 1524e99662a6SSam Leffler * beacon miss; otherwise reset the counter. 1525e99662a6SSam Leffler */ 1526b032f27cSSam Leffler void 1527e99662a6SSam Leffler ieee80211_swbmiss(void *arg) 1528e99662a6SSam Leffler { 1529b032f27cSSam Leffler struct ieee80211vap *vap = arg; 1530c448998dSSam Leffler struct ieee80211com *ic = vap->iv_ic; 1531e99662a6SSam Leffler 153223401900SAdrian Chadd IEEE80211_LOCK_ASSERT(ic); 153323401900SAdrian Chadd 1534c448998dSSam Leffler /* XXX sleep state? */ 1535c448998dSSam Leffler KASSERT(vap->iv_state == IEEE80211_S_RUN, 1536c448998dSSam Leffler ("wrong state %d", vap->iv_state)); 1537c448998dSSam Leffler 1538c448998dSSam Leffler if (ic->ic_flags & IEEE80211_F_SCAN) { 1539c448998dSSam Leffler /* 1540c448998dSSam Leffler * If scanning just ignore and reset state. If we get a 1541c448998dSSam Leffler * bmiss after coming out of scan because we haven't had 1542c448998dSSam Leffler * time to receive a beacon then we should probe the AP 1543c448998dSSam Leffler * before posting a real bmiss (unless iv_bmiss_max has 1544c448998dSSam Leffler * been artifiically lowered). A cleaner solution might 1545c448998dSSam Leffler * be to disable the timer on scan start/end but to handle 1546c448998dSSam Leffler * case of multiple sta vap's we'd need to disable the 1547c448998dSSam Leffler * timers of all affected vap's. 1548c448998dSSam Leffler */ 1549c448998dSSam Leffler vap->iv_swbmiss_count = 0; 1550c448998dSSam Leffler } else if (vap->iv_swbmiss_count == 0) { 1551b032f27cSSam Leffler if (vap->iv_bmiss != NULL) 15525efea30fSAndrew Thompson ieee80211_runtask(ic, &vap->iv_swbmiss_task); 1553e99662a6SSam Leffler } else 1554b032f27cSSam Leffler vap->iv_swbmiss_count = 0; 1555b032f27cSSam Leffler callout_reset(&vap->iv_swbmiss, vap->iv_swbmiss_period, 1556b032f27cSSam Leffler ieee80211_swbmiss, vap); 15577edb8cf9SSam Leffler } 15587edb8cf9SSam Leffler 155968e8e04eSSam Leffler /* 1560b032f27cSSam Leffler * Start an 802.11h channel switch. We record the parameters, 1561b032f27cSSam Leffler * mark the operation pending, notify each vap through the 1562b032f27cSSam Leffler * beacon update mechanism so it can update the beacon frame 1563b032f27cSSam Leffler * contents, and then switch vap's to CSA state to block outbound 1564b032f27cSSam Leffler * traffic. Devices that handle CSA directly can use the state 1565b032f27cSSam Leffler * switch to do the right thing so long as they call 1566b032f27cSSam Leffler * ieee80211_csa_completeswitch when it's time to complete the 1567b032f27cSSam Leffler * channel change. Devices that depend on the net80211 layer can 1568b032f27cSSam Leffler * use ieee80211_beacon_update to handle the countdown and the 1569b032f27cSSam Leffler * channel switch. 1570b032f27cSSam Leffler */ 1571b032f27cSSam Leffler void 1572b032f27cSSam Leffler ieee80211_csa_startswitch(struct ieee80211com *ic, 1573b032f27cSSam Leffler struct ieee80211_channel *c, int mode, int count) 1574b032f27cSSam Leffler { 1575b032f27cSSam Leffler struct ieee80211vap *vap; 1576b032f27cSSam Leffler 1577b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1578b032f27cSSam Leffler 1579b032f27cSSam Leffler ic->ic_csa_newchan = c; 1580c70761e6SSam Leffler ic->ic_csa_mode = mode; 1581b032f27cSSam Leffler ic->ic_csa_count = count; 1582b032f27cSSam Leffler ic->ic_flags |= IEEE80211_F_CSAPENDING; 1583b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1584b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_HOSTAP || 158559aa14a9SRui Paulo vap->iv_opmode == IEEE80211_M_IBSS || 158659aa14a9SRui Paulo vap->iv_opmode == IEEE80211_M_MBSS) 1587b032f27cSSam Leffler ieee80211_beacon_notify(vap, IEEE80211_BEACON_CSA); 1588b032f27cSSam Leffler /* switch to CSA state to block outbound traffic */ 1589b032f27cSSam Leffler if (vap->iv_state == IEEE80211_S_RUN) 1590b032f27cSSam Leffler ieee80211_new_state_locked(vap, IEEE80211_S_CSA, 0); 1591b032f27cSSam Leffler } 1592b032f27cSSam Leffler ieee80211_notify_csa(ic, c, mode, count); 1593b032f27cSSam Leffler } 1594b032f27cSSam Leffler 1595886bbec1SAdrian Chadd /* 1596886bbec1SAdrian Chadd * Complete the channel switch by transitioning all CSA VAPs to RUN. 1597886bbec1SAdrian Chadd * This is called by both the completion and cancellation functions 1598886bbec1SAdrian Chadd * so each VAP is placed back in the RUN state and can thus transmit. 1599886bbec1SAdrian Chadd */ 1600c70761e6SSam Leffler static void 1601c70761e6SSam Leffler csa_completeswitch(struct ieee80211com *ic) 1602c70761e6SSam Leffler { 1603c70761e6SSam Leffler struct ieee80211vap *vap; 1604c70761e6SSam Leffler 1605c70761e6SSam Leffler ic->ic_csa_newchan = NULL; 1606c70761e6SSam Leffler ic->ic_flags &= ~IEEE80211_F_CSAPENDING; 1607c70761e6SSam Leffler 1608c70761e6SSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) 1609c70761e6SSam Leffler if (vap->iv_state == IEEE80211_S_CSA) 1610c70761e6SSam Leffler ieee80211_new_state_locked(vap, IEEE80211_S_RUN, 0); 1611c70761e6SSam Leffler } 1612c70761e6SSam Leffler 1613b032f27cSSam Leffler /* 1614b032f27cSSam Leffler * Complete an 802.11h channel switch started by ieee80211_csa_startswitch. 1615b032f27cSSam Leffler * We clear state and move all vap's in CSA state to RUN state 1616b032f27cSSam Leffler * so they can again transmit. 1617886bbec1SAdrian Chadd * 1618886bbec1SAdrian Chadd * Although this may not be completely correct, update the BSS channel 1619886bbec1SAdrian Chadd * for each VAP to the newly configured channel. The setcurchan sets 1620886bbec1SAdrian Chadd * the current operating channel for the interface (so the radio does 1621886bbec1SAdrian Chadd * switch over) but the VAP BSS isn't updated, leading to incorrectly 1622886bbec1SAdrian Chadd * reported information via ioctl. 1623b032f27cSSam Leffler */ 1624b032f27cSSam Leffler void 1625b032f27cSSam Leffler ieee80211_csa_completeswitch(struct ieee80211com *ic) 1626b032f27cSSam Leffler { 16276f16ec31SAdrian Chadd struct ieee80211vap *vap; 16286f16ec31SAdrian Chadd 1629b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1630b032f27cSSam Leffler 1631b032f27cSSam Leffler KASSERT(ic->ic_flags & IEEE80211_F_CSAPENDING, ("csa not pending")); 1632b032f27cSSam Leffler 1633b032f27cSSam Leffler ieee80211_setcurchan(ic, ic->ic_csa_newchan); 1634886bbec1SAdrian Chadd TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) 1635886bbec1SAdrian Chadd if (vap->iv_state == IEEE80211_S_CSA) 1636886bbec1SAdrian Chadd vap->iv_bss->ni_chan = ic->ic_curchan; 1637886bbec1SAdrian Chadd 1638c70761e6SSam Leffler csa_completeswitch(ic); 1639c70761e6SSam Leffler } 1640b032f27cSSam Leffler 1641c70761e6SSam Leffler /* 1642c70761e6SSam Leffler * Cancel an 802.11h channel switch started by ieee80211_csa_startswitch. 1643c70761e6SSam Leffler * We clear state and move all vap's in CSA state to RUN state 1644c70761e6SSam Leffler * so they can again transmit. 1645c70761e6SSam Leffler */ 1646c70761e6SSam Leffler void 1647c70761e6SSam Leffler ieee80211_csa_cancelswitch(struct ieee80211com *ic) 1648c70761e6SSam Leffler { 1649c70761e6SSam Leffler IEEE80211_LOCK_ASSERT(ic); 1650c70761e6SSam Leffler 1651c70761e6SSam Leffler csa_completeswitch(ic); 1652b032f27cSSam Leffler } 1653b032f27cSSam Leffler 1654b032f27cSSam Leffler /* 1655b032f27cSSam Leffler * Complete a DFS CAC started by ieee80211_dfs_cac_start. 1656b032f27cSSam Leffler * We clear state and move all vap's in CAC state to RUN state. 1657b032f27cSSam Leffler */ 1658b032f27cSSam Leffler void 1659b032f27cSSam Leffler ieee80211_cac_completeswitch(struct ieee80211vap *vap0) 1660b032f27cSSam Leffler { 1661b032f27cSSam Leffler struct ieee80211com *ic = vap0->iv_ic; 1662b032f27cSSam Leffler struct ieee80211vap *vap; 1663b032f27cSSam Leffler 1664b032f27cSSam Leffler IEEE80211_LOCK(ic); 1665b032f27cSSam Leffler /* 1666b032f27cSSam Leffler * Complete CAC state change for lead vap first; then 1667b032f27cSSam Leffler * clock all the other vap's waiting. 1668b032f27cSSam Leffler */ 1669b032f27cSSam Leffler KASSERT(vap0->iv_state == IEEE80211_S_CAC, 1670b032f27cSSam Leffler ("wrong state %d", vap0->iv_state)); 1671b032f27cSSam Leffler ieee80211_new_state_locked(vap0, IEEE80211_S_RUN, 0); 1672b032f27cSSam Leffler 1673b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) 1674b032f27cSSam Leffler if (vap->iv_state == IEEE80211_S_CAC) 1675b032f27cSSam Leffler ieee80211_new_state_locked(vap, IEEE80211_S_RUN, 0); 1676b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 1677b032f27cSSam Leffler } 1678b032f27cSSam Leffler 1679b032f27cSSam Leffler /* 1680b032f27cSSam Leffler * Force all vap's other than the specified vap to the INIT state 1681b032f27cSSam Leffler * and mark them as waiting for a scan to complete. These vaps 1682b032f27cSSam Leffler * will be brought up when the scan completes and the scanning vap 1683b032f27cSSam Leffler * reaches RUN state by wakeupwaiting. 168468e8e04eSSam Leffler */ 168568e8e04eSSam Leffler static void 1686b032f27cSSam Leffler markwaiting(struct ieee80211vap *vap0) 168768e8e04eSSam Leffler { 1688b032f27cSSam Leffler struct ieee80211com *ic = vap0->iv_ic; 1689b032f27cSSam Leffler struct ieee80211vap *vap; 1690b032f27cSSam Leffler 1691b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1692b032f27cSSam Leffler 16935efea30fSAndrew Thompson /* 16945efea30fSAndrew Thompson * A vap list entry can not disappear since we are running on the 16955efea30fSAndrew Thompson * taskqueue and a vap destroy will queue and drain another state 16965efea30fSAndrew Thompson * change task. 16975efea30fSAndrew Thompson */ 1698b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1699b032f27cSSam Leffler if (vap == vap0) 1700b032f27cSSam Leffler continue; 1701b032f27cSSam Leffler if (vap->iv_state != IEEE80211_S_INIT) { 17025efea30fSAndrew Thompson /* NB: iv_newstate may drop the lock */ 1703b032f27cSSam Leffler vap->iv_newstate(vap, IEEE80211_S_INIT, 0); 1704dcc56af0SAdrian Chadd IEEE80211_LOCK_ASSERT(ic); 1705b032f27cSSam Leffler vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT; 1706b032f27cSSam Leffler } 170768e8e04eSSam Leffler } 170868e8e04eSSam Leffler } 170968e8e04eSSam Leffler 1710b032f27cSSam Leffler /* 1711b032f27cSSam Leffler * Wakeup all vap's waiting for a scan to complete. This is the 1712b032f27cSSam Leffler * companion to markwaiting (above) and is used to coordinate 1713b032f27cSSam Leffler * multiple vaps scanning. 17145efea30fSAndrew Thompson * This is called from the state taskqueue. 1715b032f27cSSam Leffler */ 1716b032f27cSSam Leffler static void 1717b032f27cSSam Leffler wakeupwaiting(struct ieee80211vap *vap0) 1718b032f27cSSam Leffler { 1719b032f27cSSam Leffler struct ieee80211com *ic = vap0->iv_ic; 1720b032f27cSSam Leffler struct ieee80211vap *vap; 1721b032f27cSSam Leffler 1722b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1723b032f27cSSam Leffler 17245efea30fSAndrew Thompson /* 17255efea30fSAndrew Thompson * A vap list entry can not disappear since we are running on the 17265efea30fSAndrew Thompson * taskqueue and a vap destroy will queue and drain another state 17275efea30fSAndrew Thompson * change task. 17285efea30fSAndrew Thompson */ 1729b032f27cSSam Leffler TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) { 1730b032f27cSSam Leffler if (vap == vap0) 1731b032f27cSSam Leffler continue; 1732b032f27cSSam Leffler if (vap->iv_flags_ext & IEEE80211_FEXT_SCANWAIT) { 1733b032f27cSSam Leffler vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANWAIT; 1734b032f27cSSam Leffler /* NB: sta's cannot go INIT->RUN */ 17355efea30fSAndrew Thompson /* NB: iv_newstate may drop the lock */ 1736b032f27cSSam Leffler vap->iv_newstate(vap, 1737b032f27cSSam Leffler vap->iv_opmode == IEEE80211_M_STA ? 1738b032f27cSSam Leffler IEEE80211_S_SCAN : IEEE80211_S_RUN, 0); 1739dcc56af0SAdrian Chadd IEEE80211_LOCK_ASSERT(ic); 1740b032f27cSSam Leffler } 1741b032f27cSSam Leffler } 1742b032f27cSSam Leffler } 1743b032f27cSSam Leffler 1744b032f27cSSam Leffler /* 1745b032f27cSSam Leffler * Handle post state change work common to all operating modes. 1746b032f27cSSam Leffler */ 1747b032f27cSSam Leffler static void 17485efea30fSAndrew Thompson ieee80211_newstate_cb(void *xvap, int npending) 1749b032f27cSSam Leffler { 17505efea30fSAndrew Thompson struct ieee80211vap *vap = xvap; 1751b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 17525efea30fSAndrew Thompson enum ieee80211_state nstate, ostate; 17535efea30fSAndrew Thompson int arg, rc; 1754b032f27cSSam Leffler 17555efea30fSAndrew Thompson IEEE80211_LOCK(ic); 17565efea30fSAndrew Thompson nstate = vap->iv_nstate; 17575efea30fSAndrew Thompson arg = vap->iv_nstate_arg; 1758b032f27cSSam Leffler 17595efea30fSAndrew Thompson if (vap->iv_flags_ext & IEEE80211_FEXT_REINIT) { 17605efea30fSAndrew Thompson /* 17615efea30fSAndrew Thompson * We have been requested to drop back to the INIT before 17625efea30fSAndrew Thompson * proceeding to the new state. 17635efea30fSAndrew Thompson */ 1764b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 17655efea30fSAndrew Thompson "%s: %s -> %s arg %d\n", __func__, 17665efea30fSAndrew Thompson ieee80211_state_name[vap->iv_state], 17675efea30fSAndrew Thompson ieee80211_state_name[IEEE80211_S_INIT], arg); 17685efea30fSAndrew Thompson vap->iv_newstate(vap, IEEE80211_S_INIT, arg); 1769dcc56af0SAdrian Chadd IEEE80211_LOCK_ASSERT(ic); 17705efea30fSAndrew Thompson vap->iv_flags_ext &= ~IEEE80211_FEXT_REINIT; 17715efea30fSAndrew Thompson } 17725efea30fSAndrew Thompson 17735efea30fSAndrew Thompson ostate = vap->iv_state; 17745efea30fSAndrew Thompson if (nstate == IEEE80211_S_SCAN && ostate != IEEE80211_S_INIT) { 17755efea30fSAndrew Thompson /* 17765efea30fSAndrew Thompson * SCAN was forced; e.g. on beacon miss. Force other running 17775efea30fSAndrew Thompson * vap's to INIT state and mark them as waiting for the scan to 17785efea30fSAndrew Thompson * complete. This insures they don't interfere with our 17795efea30fSAndrew Thompson * scanning. Since we are single threaded the vaps can not 17805efea30fSAndrew Thompson * transition again while we are executing. 17815efea30fSAndrew Thompson * 17825efea30fSAndrew Thompson * XXX not always right, assumes ap follows sta 17835efea30fSAndrew Thompson */ 17845efea30fSAndrew Thompson markwaiting(vap); 17855efea30fSAndrew Thompson } 17865efea30fSAndrew Thompson IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 17875efea30fSAndrew Thompson "%s: %s -> %s arg %d\n", __func__, 17885efea30fSAndrew Thompson ieee80211_state_name[ostate], ieee80211_state_name[nstate], arg); 17895efea30fSAndrew Thompson 17905efea30fSAndrew Thompson rc = vap->iv_newstate(vap, nstate, arg); 1791dcc56af0SAdrian Chadd IEEE80211_LOCK_ASSERT(ic); 17925efea30fSAndrew Thompson vap->iv_flags_ext &= ~IEEE80211_FEXT_STATEWAIT; 17935efea30fSAndrew Thompson if (rc != 0) { 17945efea30fSAndrew Thompson /* State transition failed */ 17955efea30fSAndrew Thompson KASSERT(rc != EINPROGRESS, ("iv_newstate was deferred")); 17965efea30fSAndrew Thompson KASSERT(nstate != IEEE80211_S_INIT, 17975efea30fSAndrew Thompson ("INIT state change failed")); 17985efea30fSAndrew Thompson IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 17995efea30fSAndrew Thompson "%s: %s returned error %d\n", __func__, 18005efea30fSAndrew Thompson ieee80211_state_name[nstate], rc); 18015efea30fSAndrew Thompson goto done; 18025efea30fSAndrew Thompson } 18035efea30fSAndrew Thompson 18045efea30fSAndrew Thompson /* No actual transition, skip post processing */ 18055efea30fSAndrew Thompson if (ostate == nstate) 18065efea30fSAndrew Thompson goto done; 1807b032f27cSSam Leffler 1808b032f27cSSam Leffler if (nstate == IEEE80211_S_RUN) { 1809b032f27cSSam Leffler /* 1810b032f27cSSam Leffler * OACTIVE may be set on the vap if the upper layer 1811b032f27cSSam Leffler * tried to transmit (e.g. IPv6 NDP) before we reach 1812b032f27cSSam Leffler * RUN state. Clear it and restart xmit. 1813b032f27cSSam Leffler * 1814b032f27cSSam Leffler * Note this can also happen as a result of SLEEP->RUN 1815b032f27cSSam Leffler * (i.e. coming out of power save mode). 1816b032f27cSSam Leffler */ 1817b032f27cSSam Leffler vap->iv_ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 1818a7f31a36SAdrian Chadd 1819a7f31a36SAdrian Chadd /* 1820e7495198SAdrian Chadd * XXX TODO Kick-start a VAP queue - this should be a method! 1821a7f31a36SAdrian Chadd */ 1822b032f27cSSam Leffler 1823b032f27cSSam Leffler /* bring up any vaps waiting on us */ 1824b032f27cSSam Leffler wakeupwaiting(vap); 1825b032f27cSSam Leffler } else if (nstate == IEEE80211_S_INIT) { 1826b032f27cSSam Leffler /* 1827b032f27cSSam Leffler * Flush the scan cache if we did the last scan (XXX?) 1828b032f27cSSam Leffler * and flush any frames on send queues from this vap. 1829b032f27cSSam Leffler * Note the mgt q is used only for legacy drivers and 1830b032f27cSSam Leffler * will go away shortly. 1831b032f27cSSam Leffler */ 1832b032f27cSSam Leffler ieee80211_scan_flush(vap); 1833b032f27cSSam Leffler 1834e7495198SAdrian Chadd /* 1835e7495198SAdrian Chadd * XXX TODO: ic/vap queue flush 1836e7495198SAdrian Chadd */ 1837b032f27cSSam Leffler } 18385efea30fSAndrew Thompson done: 18395efea30fSAndrew Thompson IEEE80211_UNLOCK(ic); 1840b032f27cSSam Leffler } 1841b032f27cSSam Leffler 1842b032f27cSSam Leffler /* 1843b032f27cSSam Leffler * Public interface for initiating a state machine change. 1844b032f27cSSam Leffler * This routine single-threads the request and coordinates 1845b032f27cSSam Leffler * the scheduling of multiple vaps for the purpose of selecting 1846b032f27cSSam Leffler * an operating channel. Specifically the following scenarios 1847b032f27cSSam Leffler * are handled: 1848b032f27cSSam Leffler * o only one vap can be selecting a channel so on transition to 1849b032f27cSSam Leffler * SCAN state if another vap is already scanning then 1850b032f27cSSam Leffler * mark the caller for later processing and return without 1851b032f27cSSam Leffler * doing anything (XXX? expectations by caller of synchronous operation) 1852b032f27cSSam Leffler * o only one vap can be doing CAC of a channel so on transition to 1853b032f27cSSam Leffler * CAC state if another vap is already scanning for radar then 1854b032f27cSSam Leffler * mark the caller for later processing and return without 1855b032f27cSSam Leffler * doing anything (XXX? expectations by caller of synchronous operation) 1856b032f27cSSam Leffler * o if another vap is already running when a request is made 1857b032f27cSSam Leffler * to SCAN then an operating channel has been chosen; bypass 1858b032f27cSSam Leffler * the scan and just join the channel 1859b032f27cSSam Leffler * 1860b032f27cSSam Leffler * Note that the state change call is done through the iv_newstate 1861b032f27cSSam Leffler * method pointer so any driver routine gets invoked. The driver 1862b032f27cSSam Leffler * will normally call back into operating mode-specific 1863b032f27cSSam Leffler * ieee80211_newstate routines (below) unless it needs to completely 1864b032f27cSSam Leffler * bypass the state machine (e.g. because the firmware has it's 1865b032f27cSSam Leffler * own idea how things should work). Bypassing the net80211 layer 1866b032f27cSSam Leffler * is usually a mistake and indicates lack of proper integration 1867b032f27cSSam Leffler * with the net80211 layer. 1868b032f27cSSam Leffler */ 1869e94527beSAdrian Chadd int 1870b032f27cSSam Leffler ieee80211_new_state_locked(struct ieee80211vap *vap, 1871b032f27cSSam Leffler enum ieee80211_state nstate, int arg) 18728a1b9b6aSSam Leffler { 1873b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 1874b032f27cSSam Leffler struct ieee80211vap *vp; 1875a11c9a5cSSam Leffler enum ieee80211_state ostate; 18765efea30fSAndrew Thompson int nrunning, nscanning; 18771a1e1d21SSam Leffler 1878b032f27cSSam Leffler IEEE80211_LOCK_ASSERT(ic); 1879b032f27cSSam Leffler 18805efea30fSAndrew Thompson if (vap->iv_flags_ext & IEEE80211_FEXT_STATEWAIT) { 18815efea30fSAndrew Thompson if (vap->iv_nstate == IEEE80211_S_INIT) { 18825efea30fSAndrew Thompson /* 18835efea30fSAndrew Thompson * XXX The vap is being stopped, do no allow any other 18845efea30fSAndrew Thompson * state changes until this is completed. 18855efea30fSAndrew Thompson */ 18865efea30fSAndrew Thompson return -1; 18878ee6f90aSAndrew Thompson } else if (vap->iv_state != vap->iv_nstate) { 18885efea30fSAndrew Thompson #if 0 18895efea30fSAndrew Thompson /* Warn if the previous state hasn't completed. */ 18905efea30fSAndrew Thompson IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 18915efea30fSAndrew Thompson "%s: pending %s -> %s transition lost\n", __func__, 18925efea30fSAndrew Thompson ieee80211_state_name[vap->iv_state], 18935efea30fSAndrew Thompson ieee80211_state_name[vap->iv_nstate]); 18945efea30fSAndrew Thompson #else 18955efea30fSAndrew Thompson /* XXX temporarily enable to identify issues */ 18968ee6f90aSAndrew Thompson if_printf(vap->iv_ifp, 18978ee6f90aSAndrew Thompson "%s: pending %s -> %s transition lost\n", 18985efea30fSAndrew Thompson __func__, ieee80211_state_name[vap->iv_state], 18995efea30fSAndrew Thompson ieee80211_state_name[vap->iv_nstate]); 19005efea30fSAndrew Thompson #endif 19015efea30fSAndrew Thompson } 19028ee6f90aSAndrew Thompson } 19035efea30fSAndrew Thompson 1904b032f27cSSam Leffler nrunning = nscanning = 0; 1905b032f27cSSam Leffler /* XXX can track this state instead of calculating */ 1906b032f27cSSam Leffler TAILQ_FOREACH(vp, &ic->ic_vaps, iv_next) { 1907b032f27cSSam Leffler if (vp != vap) { 1908b032f27cSSam Leffler if (vp->iv_state >= IEEE80211_S_RUN) 1909b032f27cSSam Leffler nrunning++; 1910b032f27cSSam Leffler /* XXX doesn't handle bg scan */ 1911b032f27cSSam Leffler /* NB: CAC+AUTH+ASSOC treated like SCAN */ 1912b032f27cSSam Leffler else if (vp->iv_state > IEEE80211_S_INIT) 1913b032f27cSSam Leffler nscanning++; 1914b032f27cSSam Leffler } 1915b032f27cSSam Leffler } 1916b032f27cSSam Leffler ostate = vap->iv_state; 1917b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 1918b032f27cSSam Leffler "%s: %s -> %s (nrunning %d nscanning %d)\n", __func__, 1919b032f27cSSam Leffler ieee80211_state_name[ostate], ieee80211_state_name[nstate], 1920b032f27cSSam Leffler nrunning, nscanning); 19211a1e1d21SSam Leffler switch (nstate) { 19221a1e1d21SSam Leffler case IEEE80211_S_SCAN: 1923b032f27cSSam Leffler if (ostate == IEEE80211_S_INIT) { 19241a1e1d21SSam Leffler /* 1925b032f27cSSam Leffler * INIT -> SCAN happens on initial bringup. 19261a1e1d21SSam Leffler */ 1927b032f27cSSam Leffler KASSERT(!(nscanning && nrunning), 1928b032f27cSSam Leffler ("%d scanning and %d running", nscanning, nrunning)); 1929b032f27cSSam Leffler if (nscanning) { 193068e8e04eSSam Leffler /* 1931b032f27cSSam Leffler * Someone is scanning, defer our state 1932b032f27cSSam Leffler * change until the work has completed. 193368e8e04eSSam Leffler */ 1934b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 1935b032f27cSSam Leffler "%s: defer %s -> %s\n", 1936b032f27cSSam Leffler __func__, ieee80211_state_name[ostate], 1937b032f27cSSam Leffler ieee80211_state_name[nstate]); 1938b032f27cSSam Leffler vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT; 19395efea30fSAndrew Thompson return 0; 194068e8e04eSSam Leffler } 1941b032f27cSSam Leffler if (nrunning) { 194268e8e04eSSam Leffler /* 1943b032f27cSSam Leffler * Someone is operating; just join the channel 1944b032f27cSSam Leffler * they have chosen. 194568e8e04eSSam Leffler */ 1946b032f27cSSam Leffler /* XXX kill arg? */ 1947b032f27cSSam Leffler /* XXX check each opmode, adhoc? */ 1948b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_STA) 1949b032f27cSSam Leffler nstate = IEEE80211_S_SCAN; 19501a1e1d21SSam Leffler else 1951b032f27cSSam Leffler nstate = IEEE80211_S_RUN; 1952b032f27cSSam Leffler #ifdef IEEE80211_DEBUG 1953b032f27cSSam Leffler if (nstate != IEEE80211_S_SCAN) { 1954b032f27cSSam Leffler IEEE80211_DPRINTF(vap, 1955b032f27cSSam Leffler IEEE80211_MSG_STATE, 1956b032f27cSSam Leffler "%s: override, now %s -> %s\n", 1957b032f27cSSam Leffler __func__, 1958b032f27cSSam Leffler ieee80211_state_name[ostate], 1959b032f27cSSam Leffler ieee80211_state_name[nstate]); 19601a1e1d21SSam Leffler } 19618a1b9b6aSSam Leffler #endif 196268e8e04eSSam Leffler } 1963b032f27cSSam Leffler } 19641a1e1d21SSam Leffler break; 1965b032f27cSSam Leffler case IEEE80211_S_RUN: 1966b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_WDS && 1967b032f27cSSam Leffler (vap->iv_flags_ext & IEEE80211_FEXT_WDSLEGACY) && 1968b032f27cSSam Leffler nscanning) { 1969b032f27cSSam Leffler /* 1970b032f27cSSam Leffler * Legacy WDS with someone else scanning; don't 1971b032f27cSSam Leffler * go online until that completes as we should 1972b032f27cSSam Leffler * follow the other vap to the channel they choose. 1973b032f27cSSam Leffler */ 1974b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 1975b032f27cSSam Leffler "%s: defer %s -> %s (legacy WDS)\n", __func__, 1976b032f27cSSam Leffler ieee80211_state_name[ostate], 1977b032f27cSSam Leffler ieee80211_state_name[nstate]); 1978b032f27cSSam Leffler vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT; 19795efea30fSAndrew Thompson return 0; 1980b032f27cSSam Leffler } 1981b032f27cSSam Leffler if (vap->iv_opmode == IEEE80211_M_HOSTAP && 1982b032f27cSSam Leffler IEEE80211_IS_CHAN_DFS(ic->ic_bsschan) && 1983b032f27cSSam Leffler (vap->iv_flags_ext & IEEE80211_FEXT_DFS) && 1984b032f27cSSam Leffler !IEEE80211_IS_CHAN_CACDONE(ic->ic_bsschan)) { 1985b032f27cSSam Leffler /* 1986b032f27cSSam Leffler * This is a DFS channel, transition to CAC state 1987b032f27cSSam Leffler * instead of RUN. This allows us to initiate 1988b032f27cSSam Leffler * Channel Availability Check (CAC) as specified 1989b032f27cSSam Leffler * by 11h/DFS. 1990b032f27cSSam Leffler */ 1991b032f27cSSam Leffler nstate = IEEE80211_S_CAC; 1992b032f27cSSam Leffler IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, 1993b032f27cSSam Leffler "%s: override %s -> %s (DFS)\n", __func__, 1994b032f27cSSam Leffler ieee80211_state_name[ostate], 1995b032f27cSSam Leffler ieee80211_state_name[nstate]); 1996b032f27cSSam Leffler } 1997b032f27cSSam Leffler break; 1998b032f27cSSam Leffler case IEEE80211_S_INIT: 1999b016f58cSAndrew Thompson /* cancel any scan in progress */ 2000b016f58cSAndrew Thompson ieee80211_cancel_scan(vap); 2001b032f27cSSam Leffler if (ostate == IEEE80211_S_INIT ) { 2002b032f27cSSam Leffler /* XXX don't believe this */ 2003b032f27cSSam Leffler /* INIT -> INIT. nothing to do */ 2004b032f27cSSam Leffler vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANWAIT; 2005b032f27cSSam Leffler } 2006b032f27cSSam Leffler /* fall thru... */ 200714fb6b8fSSam Leffler default: 200814fb6b8fSSam Leffler break; 20091a1e1d21SSam Leffler } 20105efea30fSAndrew Thompson /* defer the state change to a thread */ 20115efea30fSAndrew Thompson vap->iv_nstate = nstate; 20125efea30fSAndrew Thompson vap->iv_nstate_arg = arg; 20135efea30fSAndrew Thompson vap->iv_flags_ext |= IEEE80211_FEXT_STATEWAIT; 20145efea30fSAndrew Thompson ieee80211_runtask(ic, &vap->iv_nstate_task); 20155efea30fSAndrew Thompson return EINPROGRESS; 20168a1b9b6aSSam Leffler } 2017b032f27cSSam Leffler 2018b032f27cSSam Leffler int 2019b032f27cSSam Leffler ieee80211_new_state(struct ieee80211vap *vap, 2020b032f27cSSam Leffler enum ieee80211_state nstate, int arg) 2021b032f27cSSam Leffler { 2022b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 2023b032f27cSSam Leffler int rc; 2024b032f27cSSam Leffler 2025b032f27cSSam Leffler IEEE80211_LOCK(ic); 2026b032f27cSSam Leffler rc = ieee80211_new_state_locked(vap, nstate, arg); 2027b032f27cSSam Leffler IEEE80211_UNLOCK(ic); 2028b032f27cSSam Leffler return rc; 20291a1e1d21SSam Leffler } 2030