ieee80211_proto.c revision 1.34.14.5 1 1.34.14.5 phil /* $NetBSD: ieee80211_proto.c,v 1.34.14.5 2018/07/28 00:49:43 phil Exp $ */
2 1.34.14.2 phil
3 1.1 dyoung /*-
4 1.34.14.1 phil * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
5 1.34.14.1 phil *
6 1.1 dyoung * Copyright (c) 2001 Atsushi Onoe
7 1.34.14.1 phil * Copyright (c) 2002-2008 Sam Leffler, Errno Consulting
8 1.34.14.1 phil * Copyright (c) 2012 IEEE
9 1.1 dyoung * All rights reserved.
10 1.1 dyoung *
11 1.1 dyoung * Redistribution and use in source and binary forms, with or without
12 1.1 dyoung * modification, are permitted provided that the following conditions
13 1.1 dyoung * are met:
14 1.1 dyoung * 1. Redistributions of source code must retain the above copyright
15 1.1 dyoung * notice, this list of conditions and the following disclaimer.
16 1.1 dyoung * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 dyoung * notice, this list of conditions and the following disclaimer in the
18 1.1 dyoung * documentation and/or other materials provided with the distribution.
19 1.1 dyoung *
20 1.1 dyoung * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
21 1.1 dyoung * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
22 1.1 dyoung * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
23 1.1 dyoung * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
24 1.1 dyoung * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
25 1.1 dyoung * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
26 1.1 dyoung * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
27 1.1 dyoung * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 1.1 dyoung * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
29 1.1 dyoung * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 1.1 dyoung */
31 1.1 dyoung
32 1.1 dyoung #include <sys/cdefs.h>
33 1.34.14.2 phil #if __FreeBSD__
34 1.34.14.1 phil __FBSDID("$FreeBSD$");
35 1.34.14.2 phil #endif
36 1.1 dyoung
37 1.1 dyoung /*
38 1.1 dyoung * IEEE 802.11 protocol support.
39 1.1 dyoung */
40 1.1 dyoung
41 1.1 dyoung #include "opt_inet.h"
42 1.34.14.1 phil #include "opt_wlan.h"
43 1.1 dyoung
44 1.1 dyoung #include <sys/param.h>
45 1.34.14.1 phil #include <sys/systm.h>
46 1.1 dyoung #include <sys/kernel.h>
47 1.34.14.1 phil #include <sys/malloc.h>
48 1.34.14.2 phil #ifdef __NetBSD__
49 1.34.14.2 phil #include <sys/mbuf.h>
50 1.34.14.4 phil #include <sys/once.h>
51 1.34.14.2 phil #endif
52 1.34.14.1 phil
53 1.1 dyoung #include <sys/socket.h>
54 1.1 dyoung #include <sys/sockio.h>
55 1.1 dyoung
56 1.1 dyoung #include <net/if.h>
57 1.34.14.2 phil #if __FreeBSD__
58 1.34.14.1 phil #include <net/if_var.h>
59 1.34.14.2 phil #endif
60 1.1 dyoung #include <net/if_media.h>
61 1.34.14.2 phil #if __FreeBSD__
62 1.34.14.1 phil #include <net/ethernet.h> /* XXX for ether_sprintf */
63 1.34.14.2 phil #endif
64 1.34.14.2 phil #ifdef __NetBSD__
65 1.34.14.2 phil #include <net/if_ether.h>
66 1.34.14.2 phil #include <net/route.h>
67 1.34.14.2 phil #endif
68 1.1 dyoung
69 1.1 dyoung #include <net80211/ieee80211_var.h>
70 1.34.14.1 phil #include <net80211/ieee80211_adhoc.h>
71 1.34.14.1 phil #include <net80211/ieee80211_sta.h>
72 1.34.14.1 phil #include <net80211/ieee80211_hostap.h>
73 1.34.14.1 phil #include <net80211/ieee80211_wds.h>
74 1.34.14.1 phil #ifdef IEEE80211_SUPPORT_MESH
75 1.34.14.1 phil #include <net80211/ieee80211_mesh.h>
76 1.4 dyoung #endif
77 1.34.14.1 phil #include <net80211/ieee80211_monitor.h>
78 1.34.14.1 phil #include <net80211/ieee80211_input.h>
79 1.1 dyoung
80 1.34.14.2 phil #ifdef __NetBSD__
81 1.34.14.2 phil #undef KASSERT
82 1.34.14.2 phil #define KASSERT(__cond, __complaint) FBSDKASSERT(__cond, __complaint)
83 1.34.14.2 phil #endif
84 1.34.14.2 phil
85 1.34.14.3 phil #if __NetBSD__
86 1.34.14.3 phil extern const struct ieee80211_authenticator auth_xauth;
87 1.34.14.3 phil #endif
88 1.34.14.3 phil
89 1.19 dyoung /* XXX tunables */
90 1.19 dyoung #define AGGRESSIVE_MODE_SWITCH_HYSTERESIS 3 /* pkts / 100ms */
91 1.19 dyoung #define HIGH_PRI_SWITCH_THRESH 10 /* pkts / 100ms */
92 1.9 dyoung
93 1.34.14.1 phil const char *mgt_subtype_name[] = {
94 1.1 dyoung "assoc_req", "assoc_resp", "reassoc_req", "reassoc_resp",
95 1.34.14.1 phil "probe_req", "probe_resp", "timing_adv", "reserved#7",
96 1.1 dyoung "beacon", "atim", "disassoc", "auth",
97 1.34.14.1 phil "deauth", "action", "action_noack", "reserved#15"
98 1.1 dyoung };
99 1.34.14.1 phil const char *ctl_subtype_name[] = {
100 1.19 dyoung "reserved#0", "reserved#1", "reserved#2", "reserved#3",
101 1.34.14.1 phil "reserved#4", "reserved#5", "reserved#6", "control_wrap",
102 1.34.14.1 phil "bar", "ba", "ps_poll", "rts",
103 1.19 dyoung "cts", "ack", "cf_end", "cf_end_ack"
104 1.19 dyoung };
105 1.34.14.1 phil const char *ieee80211_opmode_name[IEEE80211_OPMODE_MAX] = {
106 1.34.14.1 phil "IBSS", /* IEEE80211_M_IBSS */
107 1.34.14.1 phil "STA", /* IEEE80211_M_STA */
108 1.34.14.1 phil "WDS", /* IEEE80211_M_WDS */
109 1.34.14.1 phil "AHDEMO", /* IEEE80211_M_AHDEMO */
110 1.34.14.1 phil "HOSTAP", /* IEEE80211_M_HOSTAP */
111 1.34.14.1 phil "MONITOR", /* IEEE80211_M_MONITOR */
112 1.34.14.1 phil "MBSS" /* IEEE80211_M_MBSS */
113 1.34.14.1 phil };
114 1.1 dyoung const char *ieee80211_state_name[IEEE80211_S_MAX] = {
115 1.1 dyoung "INIT", /* IEEE80211_S_INIT */
116 1.1 dyoung "SCAN", /* IEEE80211_S_SCAN */
117 1.1 dyoung "AUTH", /* IEEE80211_S_AUTH */
118 1.1 dyoung "ASSOC", /* IEEE80211_S_ASSOC */
119 1.34.14.1 phil "CAC", /* IEEE80211_S_CAC */
120 1.34.14.1 phil "RUN", /* IEEE80211_S_RUN */
121 1.34.14.1 phil "CSA", /* IEEE80211_S_CSA */
122 1.34.14.1 phil "SLEEP", /* IEEE80211_S_SLEEP */
123 1.1 dyoung };
124 1.19 dyoung const char *ieee80211_wme_acnames[] = {
125 1.19 dyoung "WME_AC_BE",
126 1.19 dyoung "WME_AC_BK",
127 1.19 dyoung "WME_AC_VI",
128 1.19 dyoung "WME_AC_VO",
129 1.19 dyoung "WME_UPSD",
130 1.19 dyoung };
131 1.1 dyoung
132 1.34.14.1 phil
133 1.34.14.1 phil /*
134 1.34.14.1 phil * Reason code descriptions were (mostly) obtained from
135 1.34.14.1 phil * IEEE Std 802.11-2012, pp. 442-445 Table 8-36.
136 1.34.14.1 phil */
137 1.34.14.1 phil const char *
138 1.34.14.1 phil ieee80211_reason_to_string(uint16_t reason)
139 1.34.14.1 phil {
140 1.34.14.1 phil switch (reason) {
141 1.34.14.1 phil case IEEE80211_REASON_UNSPECIFIED:
142 1.34.14.1 phil return ("unspecified");
143 1.34.14.1 phil case IEEE80211_REASON_AUTH_EXPIRE:
144 1.34.14.1 phil return ("previous authentication is expired");
145 1.34.14.1 phil case IEEE80211_REASON_AUTH_LEAVE:
146 1.34.14.1 phil return ("sending STA is leaving/has left IBSS or ESS");
147 1.34.14.1 phil case IEEE80211_REASON_ASSOC_EXPIRE:
148 1.34.14.1 phil return ("disassociated due to inactivity");
149 1.34.14.1 phil case IEEE80211_REASON_ASSOC_TOOMANY:
150 1.34.14.1 phil return ("too many associated STAs");
151 1.34.14.1 phil case IEEE80211_REASON_NOT_AUTHED:
152 1.34.14.1 phil return ("class 2 frame received from nonauthenticated STA");
153 1.34.14.1 phil case IEEE80211_REASON_NOT_ASSOCED:
154 1.34.14.1 phil return ("class 3 frame received from nonassociated STA");
155 1.34.14.1 phil case IEEE80211_REASON_ASSOC_LEAVE:
156 1.34.14.1 phil return ("sending STA is leaving/has left BSS");
157 1.34.14.1 phil case IEEE80211_REASON_ASSOC_NOT_AUTHED:
158 1.34.14.1 phil return ("STA requesting (re)association is not authenticated");
159 1.34.14.1 phil case IEEE80211_REASON_DISASSOC_PWRCAP_BAD:
160 1.34.14.1 phil return ("information in the Power Capability element is "
161 1.34.14.1 phil "unacceptable");
162 1.34.14.1 phil case IEEE80211_REASON_DISASSOC_SUPCHAN_BAD:
163 1.34.14.1 phil return ("information in the Supported Channels element is "
164 1.34.14.1 phil "unacceptable");
165 1.34.14.1 phil case IEEE80211_REASON_IE_INVALID:
166 1.34.14.1 phil return ("invalid element");
167 1.34.14.1 phil case IEEE80211_REASON_MIC_FAILURE:
168 1.34.14.1 phil return ("MIC failure");
169 1.34.14.1 phil case IEEE80211_REASON_4WAY_HANDSHAKE_TIMEOUT:
170 1.34.14.1 phil return ("4-Way handshake timeout");
171 1.34.14.1 phil case IEEE80211_REASON_GROUP_KEY_UPDATE_TIMEOUT:
172 1.34.14.1 phil return ("group key update timeout");
173 1.34.14.1 phil case IEEE80211_REASON_IE_IN_4WAY_DIFFERS:
174 1.34.14.1 phil return ("element in 4-Way handshake different from "
175 1.34.14.1 phil "(re)association request/probe response/beacon frame");
176 1.34.14.1 phil case IEEE80211_REASON_GROUP_CIPHER_INVALID:
177 1.34.14.1 phil return ("invalid group cipher");
178 1.34.14.1 phil case IEEE80211_REASON_PAIRWISE_CIPHER_INVALID:
179 1.34.14.1 phil return ("invalid pairwise cipher");
180 1.34.14.1 phil case IEEE80211_REASON_AKMP_INVALID:
181 1.34.14.1 phil return ("invalid AKMP");
182 1.34.14.1 phil case IEEE80211_REASON_UNSUPP_RSN_IE_VERSION:
183 1.34.14.1 phil return ("unsupported version in RSN IE");
184 1.34.14.1 phil case IEEE80211_REASON_INVALID_RSN_IE_CAP:
185 1.34.14.1 phil return ("invalid capabilities in RSN IE");
186 1.34.14.1 phil case IEEE80211_REASON_802_1X_AUTH_FAILED:
187 1.34.14.1 phil return ("IEEE 802.1X authentication failed");
188 1.34.14.1 phil case IEEE80211_REASON_CIPHER_SUITE_REJECTED:
189 1.34.14.1 phil return ("cipher suite rejected because of the security "
190 1.34.14.1 phil "policy");
191 1.34.14.1 phil case IEEE80211_REASON_UNSPECIFIED_QOS:
192 1.34.14.1 phil return ("unspecified (QoS-related)");
193 1.34.14.1 phil case IEEE80211_REASON_INSUFFICIENT_BW:
194 1.34.14.1 phil return ("QoS AP lacks sufficient bandwidth for this QoS STA");
195 1.34.14.1 phil case IEEE80211_REASON_TOOMANY_FRAMES:
196 1.34.14.1 phil return ("too many frames need to be acknowledged");
197 1.34.14.1 phil case IEEE80211_REASON_OUTSIDE_TXOP:
198 1.34.14.1 phil return ("STA is transmitting outside the limits of its TXOPs");
199 1.34.14.1 phil case IEEE80211_REASON_LEAVING_QBSS:
200 1.34.14.1 phil return ("requested from peer STA (the STA is "
201 1.34.14.1 phil "resetting/leaving the BSS)");
202 1.34.14.1 phil case IEEE80211_REASON_BAD_MECHANISM:
203 1.34.14.1 phil return ("requested from peer STA (it does not want to use "
204 1.34.14.1 phil "the mechanism)");
205 1.34.14.1 phil case IEEE80211_REASON_SETUP_NEEDED:
206 1.34.14.1 phil return ("requested from peer STA (setup is required for the "
207 1.34.14.1 phil "used mechanism)");
208 1.34.14.1 phil case IEEE80211_REASON_TIMEOUT:
209 1.34.14.1 phil return ("requested from peer STA (timeout)");
210 1.34.14.1 phil case IEEE80211_REASON_PEER_LINK_CANCELED:
211 1.34.14.1 phil return ("SME cancels the mesh peering instance (not related "
212 1.34.14.1 phil "to the maximum number of peer mesh STAs)");
213 1.34.14.1 phil case IEEE80211_REASON_MESH_MAX_PEERS:
214 1.34.14.1 phil return ("maximum number of peer mesh STAs was reached");
215 1.34.14.1 phil case IEEE80211_REASON_MESH_CPVIOLATION:
216 1.34.14.1 phil return ("the received information violates the Mesh "
217 1.34.14.1 phil "Configuration policy configured in the mesh STA "
218 1.34.14.1 phil "profile");
219 1.34.14.1 phil case IEEE80211_REASON_MESH_CLOSE_RCVD:
220 1.34.14.1 phil return ("the mesh STA has received a Mesh Peering Close "
221 1.34.14.1 phil "message requesting to close the mesh peering");
222 1.34.14.1 phil case IEEE80211_REASON_MESH_MAX_RETRIES:
223 1.34.14.1 phil return ("the mesh STA has resent dot11MeshMaxRetries Mesh "
224 1.34.14.1 phil "Peering Open messages, without receiving a Mesh "
225 1.34.14.1 phil "Peering Confirm message");
226 1.34.14.1 phil case IEEE80211_REASON_MESH_CONFIRM_TIMEOUT:
227 1.34.14.1 phil return ("the confirmTimer for the mesh peering instance times "
228 1.34.14.1 phil "out");
229 1.34.14.1 phil case IEEE80211_REASON_MESH_INVALID_GTK:
230 1.34.14.1 phil return ("the mesh STA fails to unwrap the GTK or the values "
231 1.34.14.1 phil "in the wrapped contents do not match");
232 1.34.14.1 phil case IEEE80211_REASON_MESH_INCONS_PARAMS:
233 1.34.14.1 phil return ("the mesh STA receives inconsistent information about "
234 1.34.14.1 phil "the mesh parameters between Mesh Peering Management "
235 1.34.14.1 phil "frames");
236 1.34.14.1 phil case IEEE80211_REASON_MESH_INVALID_SECURITY:
237 1.34.14.1 phil return ("the mesh STA fails the authenticated mesh peering "
238 1.34.14.1 phil "exchange because due to failure in selecting "
239 1.34.14.1 phil "pairwise/group ciphersuite");
240 1.34.14.1 phil case IEEE80211_REASON_MESH_PERR_NO_PROXY:
241 1.34.14.1 phil return ("the mesh STA does not have proxy information for "
242 1.34.14.1 phil "this external destination");
243 1.34.14.1 phil case IEEE80211_REASON_MESH_PERR_NO_FI:
244 1.34.14.1 phil return ("the mesh STA does not have forwarding information "
245 1.34.14.1 phil "for this destination");
246 1.34.14.1 phil case IEEE80211_REASON_MESH_PERR_DEST_UNREACH:
247 1.34.14.1 phil return ("the mesh STA determines that the link to the next "
248 1.34.14.1 phil "hop of an active path in its forwarding information "
249 1.34.14.1 phil "is no longer usable");
250 1.34.14.1 phil case IEEE80211_REASON_MESH_MAC_ALRDY_EXISTS_MBSS:
251 1.34.14.1 phil return ("the MAC address of the STA already exists in the "
252 1.34.14.1 phil "mesh BSS");
253 1.34.14.1 phil case IEEE80211_REASON_MESH_CHAN_SWITCH_REG:
254 1.34.14.1 phil return ("the mesh STA performs channel switch to meet "
255 1.34.14.1 phil "regulatory requirements");
256 1.34.14.1 phil case IEEE80211_REASON_MESH_CHAN_SWITCH_UNSPEC:
257 1.34.14.1 phil return ("the mesh STA performs channel switch with "
258 1.34.14.1 phil "unspecified reason");
259 1.34.14.1 phil default:
260 1.34.14.1 phil return ("reserved/unknown");
261 1.34.14.1 phil }
262 1.34.14.1 phil }
263 1.34.14.1 phil
264 1.34.14.1 phil static void beacon_miss(void *, int);
265 1.34.14.1 phil static void beacon_swmiss(void *, int);
266 1.34.14.1 phil static void parent_updown(void *, int);
267 1.34.14.1 phil static void update_mcast(void *, int);
268 1.34.14.1 phil static void update_promisc(void *, int);
269 1.34.14.1 phil static void update_channel(void *, int);
270 1.34.14.1 phil static void update_chw(void *, int);
271 1.34.14.1 phil static void vap_update_wme(void *, int);
272 1.34.14.1 phil static void restart_vaps(void *, int);
273 1.34.14.1 phil static void ieee80211_newstate_cb(void *, int);
274 1.34.14.1 phil
275 1.34.14.1 phil static int
276 1.34.14.1 phil null_raw_xmit(struct ieee80211_node *ni, struct mbuf *m,
277 1.34.14.1 phil const struct ieee80211_bpf_params *params)
278 1.34.14.1 phil {
279 1.34.14.1 phil
280 1.34.14.1 phil ic_printf(ni->ni_ic, "missing ic_raw_xmit callback, drop frame\n");
281 1.34.14.1 phil m_freem(m);
282 1.34.14.1 phil return ENETDOWN;
283 1.34.14.1 phil }
284 1.1 dyoung
285 1.1 dyoung void
286 1.19 dyoung ieee80211_proto_attach(struct ieee80211com *ic)
287 1.1 dyoung {
288 1.34.14.1 phil uint8_t hdrlen;
289 1.1 dyoung
290 1.34.14.5 phil printf ("i33380211_proto_attach called\n"); /* NNN debug */
291 1.34.14.5 phil
292 1.34.14.1 phil /* override the 802.3 setting */
293 1.34.14.1 phil hdrlen = ic->ic_headroom
294 1.34.14.1 phil + sizeof(struct ieee80211_qosframe_addr4)
295 1.34.14.1 phil + IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN
296 1.34.14.1 phil + IEEE80211_WEP_EXTIVLEN;
297 1.34.14.1 phil /* XXX no way to recalculate on ifdetach */
298 1.34.14.1 phil if (ALIGN(hdrlen) > max_linkhdr) {
299 1.34.14.1 phil /* XXX sanity check... */
300 1.34.14.1 phil max_linkhdr = ALIGN(hdrlen);
301 1.34.14.1 phil max_hdr = max_linkhdr + max_protohdr;
302 1.34.14.1 phil max_datalen = MHLEN - max_hdr;
303 1.34.14.1 phil }
304 1.8 dyoung ic->ic_protmode = IEEE80211_PROT_CTSONLY;
305 1.34.14.1 phil
306 1.34.14.1 phil TASK_INIT(&ic->ic_parent_task, 0, parent_updown, ic);
307 1.34.14.5 phil printf ("parent task: t_work.wk_dummy 0x%lx, t_func 0x%lx t_arg 0x%lx\n",
308 1.34.14.5 phil (long)(ic->ic_parent_task.t_work.wk_dummy),
309 1.34.14.5 phil (long)(ic->ic_parent_task.t_func),
310 1.34.14.5 phil (long)(ic->ic_parent_task.t_arg));
311 1.34.14.1 phil TASK_INIT(&ic->ic_mcast_task, 0, update_mcast, ic);
312 1.34.14.1 phil TASK_INIT(&ic->ic_promisc_task, 0, update_promisc, ic);
313 1.34.14.1 phil TASK_INIT(&ic->ic_chan_task, 0, update_channel, ic);
314 1.34.14.1 phil TASK_INIT(&ic->ic_bmiss_task, 0, beacon_miss, ic);
315 1.34.14.1 phil TASK_INIT(&ic->ic_chw_task, 0, update_chw, ic);
316 1.34.14.1 phil TASK_INIT(&ic->ic_restart_task, 0, restart_vaps, ic);
317 1.1 dyoung
318 1.19 dyoung ic->ic_wme.wme_hipri_switch_hysteresis =
319 1.19 dyoung AGGRESSIVE_MODE_SWITCH_HYSTERESIS;
320 1.1 dyoung
321 1.1 dyoung /* initialize management frame handlers */
322 1.1 dyoung ic->ic_send_mgmt = ieee80211_send_mgmt;
323 1.34.14.1 phil ic->ic_raw_xmit = null_raw_xmit;
324 1.34.14.1 phil
325 1.34.14.1 phil ieee80211_adhoc_attach(ic);
326 1.34.14.1 phil ieee80211_sta_attach(ic);
327 1.34.14.1 phil ieee80211_wds_attach(ic);
328 1.34.14.1 phil ieee80211_hostap_attach(ic);
329 1.34.14.1 phil #ifdef IEEE80211_SUPPORT_MESH
330 1.34.14.1 phil ieee80211_mesh_attach(ic);
331 1.34.14.1 phil #endif
332 1.34.14.1 phil ieee80211_monitor_attach(ic);
333 1.1 dyoung }
334 1.1 dyoung
335 1.1 dyoung void
336 1.19 dyoung ieee80211_proto_detach(struct ieee80211com *ic)
337 1.1 dyoung {
338 1.34.14.1 phil ieee80211_monitor_detach(ic);
339 1.34.14.1 phil #ifdef IEEE80211_SUPPORT_MESH
340 1.34.14.1 phil ieee80211_mesh_detach(ic);
341 1.34.14.1 phil #endif
342 1.34.14.1 phil ieee80211_hostap_detach(ic);
343 1.34.14.1 phil ieee80211_wds_detach(ic);
344 1.34.14.1 phil ieee80211_adhoc_detach(ic);
345 1.34.14.1 phil ieee80211_sta_detach(ic);
346 1.34.14.1 phil }
347 1.34.14.1 phil
348 1.34.14.1 phil static void
349 1.34.14.1 phil null_update_beacon(struct ieee80211vap *vap, int item)
350 1.34.14.1 phil {
351 1.34.14.1 phil }
352 1.34.14.1 phil
353 1.34.14.1 phil void
354 1.34.14.1 phil ieee80211_proto_vattach(struct ieee80211vap *vap)
355 1.34.14.1 phil {
356 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
357 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
358 1.34.14.1 phil int i;
359 1.34.14.1 phil
360 1.34.14.1 phil /* override the 802.3 setting */
361 1.34.14.1 phil ifp->if_hdrlen = ic->ic_headroom
362 1.34.14.1 phil + sizeof(struct ieee80211_qosframe_addr4)
363 1.34.14.1 phil + IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN
364 1.34.14.1 phil + IEEE80211_WEP_EXTIVLEN;
365 1.34.14.1 phil
366 1.34.14.1 phil vap->iv_rtsthreshold = IEEE80211_RTS_DEFAULT;
367 1.34.14.1 phil vap->iv_fragthreshold = IEEE80211_FRAG_DEFAULT;
368 1.34.14.1 phil vap->iv_bmiss_max = IEEE80211_BMISS_MAX;
369 1.34.14.2 phil #if __FreeBSD__
370 1.34.14.1 phil callout_init_mtx(&vap->iv_swbmiss, IEEE80211_LOCK_OBJ(ic), 0);
371 1.34.14.1 phil callout_init(&vap->iv_mgtsend, 1);
372 1.34.14.3 phil #elif __NetBSD__
373 1.34.14.3 phil /* NNN need to do something with iv_swbmiss ... */
374 1.34.14.3 phil callout_init(&vap->iv_mgtsend, CALLOUT_MPSAFE);
375 1.34.14.3 phil #endif
376 1.34.14.1 phil TASK_INIT(&vap->iv_nstate_task, 0, ieee80211_newstate_cb, vap);
377 1.34.14.1 phil TASK_INIT(&vap->iv_swbmiss_task, 0, beacon_swmiss, vap);
378 1.34.14.1 phil TASK_INIT(&vap->iv_wme_task, 0, vap_update_wme, vap);
379 1.34.14.5 phil
380 1.34.14.1 phil /*
381 1.34.14.1 phil * Install default tx rate handling: no fixed rate, lowest
382 1.34.14.1 phil * supported rate for mgmt and multicast frames. Default
383 1.34.14.1 phil * max retry count. These settings can be changed by the
384 1.34.14.1 phil * driver and/or user applications.
385 1.34.14.1 phil */
386 1.34.14.1 phil for (i = IEEE80211_MODE_11A; i < IEEE80211_MODE_MAX; i++) {
387 1.34.14.1 phil const struct ieee80211_rateset *rs = &ic->ic_sup_rates[i];
388 1.34.14.1 phil
389 1.34.14.1 phil vap->iv_txparms[i].ucastrate = IEEE80211_FIXED_RATE_NONE;
390 1.34.14.1 phil
391 1.34.14.1 phil /*
392 1.34.14.1 phil * Setting the management rate to MCS 0 assumes that the
393 1.34.14.1 phil * BSS Basic rate set is empty and the BSS Basic MCS set
394 1.34.14.1 phil * is not.
395 1.34.14.1 phil *
396 1.34.14.1 phil * Since we're not checking this, default to the lowest
397 1.34.14.1 phil * defined rate for this mode.
398 1.34.14.1 phil *
399 1.34.14.1 phil * At least one 11n AP (DLINK DIR-825) is reported to drop
400 1.34.14.1 phil * some MCS management traffic (eg BA response frames.)
401 1.34.14.1 phil *
402 1.34.14.1 phil * See also: 9.6.0 of the 802.11n-2009 specification.
403 1.34.14.1 phil */
404 1.34.14.1 phil #ifdef NOTYET
405 1.34.14.1 phil if (i == IEEE80211_MODE_11NA || i == IEEE80211_MODE_11NG) {
406 1.34.14.1 phil vap->iv_txparms[i].mgmtrate = 0 | IEEE80211_RATE_MCS;
407 1.34.14.1 phil vap->iv_txparms[i].mcastrate = 0 | IEEE80211_RATE_MCS;
408 1.34.14.1 phil } else {
409 1.34.14.1 phil vap->iv_txparms[i].mgmtrate =
410 1.34.14.1 phil rs->rs_rates[0] & IEEE80211_RATE_VAL;
411 1.34.14.1 phil vap->iv_txparms[i].mcastrate =
412 1.34.14.1 phil rs->rs_rates[0] & IEEE80211_RATE_VAL;
413 1.34.14.1 phil }
414 1.34.14.1 phil #endif
415 1.34.14.1 phil vap->iv_txparms[i].mgmtrate = rs->rs_rates[0] & IEEE80211_RATE_VAL;
416 1.34.14.1 phil vap->iv_txparms[i].mcastrate = rs->rs_rates[0] & IEEE80211_RATE_VAL;
417 1.34.14.1 phil vap->iv_txparms[i].maxretry = IEEE80211_TXMAX_DEFAULT;
418 1.34.14.1 phil }
419 1.34.14.1 phil vap->iv_roaming = IEEE80211_ROAMING_AUTO;
420 1.34.14.1 phil
421 1.34.14.1 phil vap->iv_update_beacon = null_update_beacon;
422 1.34.14.1 phil vap->iv_deliver_data = ieee80211_deliver_data;
423 1.34.14.1 phil
424 1.34.14.1 phil /* attach support for operating mode */
425 1.34.14.1 phil ic->ic_vattach[vap->iv_opmode](vap);
426 1.34.14.1 phil }
427 1.1 dyoung
428 1.34.14.1 phil void
429 1.34.14.1 phil ieee80211_proto_vdetach(struct ieee80211vap *vap)
430 1.34.14.1 phil {
431 1.34.14.1 phil #define FREEAPPIE(ie) do { \
432 1.34.14.1 phil if (ie != NULL) \
433 1.34.14.1 phil IEEE80211_FREE(ie, M_80211_NODE_IE); \
434 1.34.14.1 phil } while (0)
435 1.34.14.1 phil /*
436 1.34.14.1 phil * Detach operating mode module.
437 1.34.14.1 phil */
438 1.34.14.1 phil if (vap->iv_opdetach != NULL)
439 1.34.14.1 phil vap->iv_opdetach(vap);
440 1.19 dyoung /*
441 1.19 dyoung * This should not be needed as we detach when reseting
442 1.19 dyoung * the state but be conservative here since the
443 1.19 dyoung * authenticator may do things like spawn kernel threads.
444 1.19 dyoung */
445 1.34.14.1 phil if (vap->iv_auth->ia_detach != NULL)
446 1.34.14.1 phil vap->iv_auth->ia_detach(vap);
447 1.19 dyoung /*
448 1.19 dyoung * Detach any ACL'ator.
449 1.19 dyoung */
450 1.34.14.1 phil if (vap->iv_acl != NULL)
451 1.34.14.1 phil vap->iv_acl->iac_detach(vap);
452 1.34.14.1 phil
453 1.34.14.1 phil FREEAPPIE(vap->iv_appie_beacon);
454 1.34.14.1 phil FREEAPPIE(vap->iv_appie_probereq);
455 1.34.14.1 phil FREEAPPIE(vap->iv_appie_proberesp);
456 1.34.14.1 phil FREEAPPIE(vap->iv_appie_assocreq);
457 1.34.14.1 phil FREEAPPIE(vap->iv_appie_assocresp);
458 1.34.14.1 phil FREEAPPIE(vap->iv_appie_wpa);
459 1.34.14.1 phil #undef FREEAPPIE
460 1.19 dyoung }
461 1.19 dyoung
462 1.19 dyoung /*
463 1.19 dyoung * Simple-minded authenticator module support.
464 1.19 dyoung */
465 1.19 dyoung
466 1.19 dyoung #define IEEE80211_AUTH_MAX (IEEE80211_AUTH_WPA+1)
467 1.19 dyoung /* XXX well-known names */
468 1.34.14.3 phil #if __FreeBSD__
469 1.19 dyoung static const char *auth_modnames[IEEE80211_AUTH_MAX] = {
470 1.19 dyoung "wlan_internal", /* IEEE80211_AUTH_NONE */
471 1.19 dyoung "wlan_internal", /* IEEE80211_AUTH_OPEN */
472 1.19 dyoung "wlan_internal", /* IEEE80211_AUTH_SHARED */
473 1.19 dyoung "wlan_xauth", /* IEEE80211_AUTH_8021X */
474 1.19 dyoung "wlan_internal", /* IEEE80211_AUTH_AUTO */
475 1.19 dyoung "wlan_xauth", /* IEEE80211_AUTH_WPA */
476 1.19 dyoung };
477 1.34.14.3 phil #endif
478 1.34.14.3 phil
479 1.19 dyoung static const struct ieee80211_authenticator *authenticators[IEEE80211_AUTH_MAX];
480 1.19 dyoung
481 1.19 dyoung static const struct ieee80211_authenticator auth_internal = {
482 1.19 dyoung .ia_name = "wlan_internal",
483 1.19 dyoung .ia_attach = NULL,
484 1.19 dyoung .ia_detach = NULL,
485 1.19 dyoung .ia_node_join = NULL,
486 1.19 dyoung .ia_node_leave = NULL,
487 1.19 dyoung };
488 1.19 dyoung
489 1.34.14.3 phil
490 1.19 dyoung /*
491 1.19 dyoung * Setup internal authenticators once; they are never unregistered.
492 1.19 dyoung */
493 1.34.14.3 phil #if __FreeBSD__
494 1.34.14.3 phil static void
495 1.34.14.3 phil #elif __NetBSD__
496 1.34.14.3 phil void
497 1.34.14.3 phil #endif
498 1.19 dyoung ieee80211_auth_setup(void)
499 1.19 dyoung {
500 1.19 dyoung ieee80211_authenticator_register(IEEE80211_AUTH_OPEN, &auth_internal);
501 1.19 dyoung ieee80211_authenticator_register(IEEE80211_AUTH_SHARED, &auth_internal);
502 1.19 dyoung ieee80211_authenticator_register(IEEE80211_AUTH_AUTO, &auth_internal);
503 1.34.14.3 phil #if __NetBSD__
504 1.34.14.3 phil ieee80211_authenticator_register(IEEE80211_AUTH_8021X, &auth_xauth);
505 1.34.14.3 phil ieee80211_authenticator_register(IEEE80211_AUTH_WPA, &auth_xauth);
506 1.34.14.3 phil #endif
507 1.19 dyoung }
508 1.34.14.1 phil SYSINIT(wlan_auth, SI_SUB_DRIVERS, SI_ORDER_FIRST, ieee80211_auth_setup, NULL);
509 1.19 dyoung
510 1.19 dyoung const struct ieee80211_authenticator *
511 1.19 dyoung ieee80211_authenticator_get(int auth)
512 1.19 dyoung {
513 1.19 dyoung if (auth >= IEEE80211_AUTH_MAX)
514 1.19 dyoung return NULL;
515 1.34.14.3 phil #if __FreeBSD__
516 1.19 dyoung if (authenticators[auth] == NULL)
517 1.19 dyoung ieee80211_load_module(auth_modnames[auth]);
518 1.34.14.3 phil #endif
519 1.19 dyoung return authenticators[auth];
520 1.19 dyoung }
521 1.19 dyoung
522 1.19 dyoung void
523 1.19 dyoung ieee80211_authenticator_register(int type,
524 1.19 dyoung const struct ieee80211_authenticator *auth)
525 1.19 dyoung {
526 1.19 dyoung if (type >= IEEE80211_AUTH_MAX)
527 1.19 dyoung return;
528 1.19 dyoung authenticators[type] = auth;
529 1.19 dyoung }
530 1.19 dyoung
531 1.19 dyoung void
532 1.19 dyoung ieee80211_authenticator_unregister(int type)
533 1.19 dyoung {
534 1.19 dyoung
535 1.19 dyoung if (type >= IEEE80211_AUTH_MAX)
536 1.19 dyoung return;
537 1.19 dyoung authenticators[type] = NULL;
538 1.19 dyoung }
539 1.19 dyoung
540 1.19 dyoung /*
541 1.19 dyoung * Very simple-minded ACL module support.
542 1.19 dyoung */
543 1.19 dyoung /* XXX just one for now */
544 1.19 dyoung static const struct ieee80211_aclator *acl = NULL;
545 1.19 dyoung
546 1.19 dyoung void
547 1.19 dyoung ieee80211_aclator_register(const struct ieee80211_aclator *iac)
548 1.19 dyoung {
549 1.19 dyoung printf("wlan: %s acl policy registered\n", iac->iac_name);
550 1.19 dyoung acl = iac;
551 1.19 dyoung }
552 1.19 dyoung
553 1.19 dyoung void
554 1.19 dyoung ieee80211_aclator_unregister(const struct ieee80211_aclator *iac)
555 1.19 dyoung {
556 1.19 dyoung if (acl == iac)
557 1.19 dyoung acl = NULL;
558 1.19 dyoung printf("wlan: %s acl policy unregistered\n", iac->iac_name);
559 1.19 dyoung }
560 1.19 dyoung
561 1.19 dyoung const struct ieee80211_aclator *
562 1.19 dyoung ieee80211_aclator_get(const char *name)
563 1.19 dyoung {
564 1.34.14.3 phil #if __FreeBSD__
565 1.19 dyoung if (acl == NULL)
566 1.19 dyoung ieee80211_load_module("wlan_acl");
567 1.34.14.3 phil #endif
568 1.19 dyoung return acl != NULL && strcmp(acl->iac_name, name) == 0 ? acl : NULL;
569 1.1 dyoung }
570 1.1 dyoung
571 1.1 dyoung void
572 1.34.14.1 phil ieee80211_print_essid(const uint8_t *essid, int len)
573 1.1 dyoung {
574 1.34.14.1 phil const uint8_t *p;
575 1.1 dyoung int i;
576 1.1 dyoung
577 1.1 dyoung if (len > IEEE80211_NWID_LEN)
578 1.1 dyoung len = IEEE80211_NWID_LEN;
579 1.1 dyoung /* determine printable or not */
580 1.1 dyoung for (i = 0, p = essid; i < len; i++, p++) {
581 1.1 dyoung if (*p < ' ' || *p > 0x7e)
582 1.1 dyoung break;
583 1.1 dyoung }
584 1.1 dyoung if (i == len) {
585 1.1 dyoung printf("\"");
586 1.1 dyoung for (i = 0, p = essid; i < len; i++, p++)
587 1.1 dyoung printf("%c", *p);
588 1.1 dyoung printf("\"");
589 1.1 dyoung } else {
590 1.1 dyoung printf("0x");
591 1.1 dyoung for (i = 0, p = essid; i < len; i++, p++)
592 1.1 dyoung printf("%02x", *p);
593 1.1 dyoung }
594 1.1 dyoung }
595 1.1 dyoung
596 1.1 dyoung void
597 1.34.14.1 phil ieee80211_dump_pkt(struct ieee80211com *ic,
598 1.34.14.1 phil const uint8_t *buf, int len, int rate, int rssi)
599 1.1 dyoung {
600 1.19 dyoung const struct ieee80211_frame *wh;
601 1.1 dyoung int i;
602 1.1 dyoung
603 1.19 dyoung wh = (const struct ieee80211_frame *)buf;
604 1.1 dyoung switch (wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) {
605 1.1 dyoung case IEEE80211_FC1_DIR_NODS:
606 1.1 dyoung printf("NODS %s", ether_sprintf(wh->i_addr2));
607 1.1 dyoung printf("->%s", ether_sprintf(wh->i_addr1));
608 1.1 dyoung printf("(%s)", ether_sprintf(wh->i_addr3));
609 1.1 dyoung break;
610 1.1 dyoung case IEEE80211_FC1_DIR_TODS:
611 1.1 dyoung printf("TODS %s", ether_sprintf(wh->i_addr2));
612 1.1 dyoung printf("->%s", ether_sprintf(wh->i_addr3));
613 1.1 dyoung printf("(%s)", ether_sprintf(wh->i_addr1));
614 1.1 dyoung break;
615 1.1 dyoung case IEEE80211_FC1_DIR_FROMDS:
616 1.1 dyoung printf("FRDS %s", ether_sprintf(wh->i_addr3));
617 1.1 dyoung printf("->%s", ether_sprintf(wh->i_addr1));
618 1.1 dyoung printf("(%s)", ether_sprintf(wh->i_addr2));
619 1.1 dyoung break;
620 1.1 dyoung case IEEE80211_FC1_DIR_DSTODS:
621 1.34.14.1 phil printf("DSDS %s", ether_sprintf((const uint8_t *)&wh[1]));
622 1.1 dyoung printf("->%s", ether_sprintf(wh->i_addr3));
623 1.1 dyoung printf("(%s", ether_sprintf(wh->i_addr2));
624 1.1 dyoung printf("->%s)", ether_sprintf(wh->i_addr1));
625 1.1 dyoung break;
626 1.1 dyoung }
627 1.1 dyoung switch (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) {
628 1.1 dyoung case IEEE80211_FC0_TYPE_DATA:
629 1.1 dyoung printf(" data");
630 1.1 dyoung break;
631 1.1 dyoung case IEEE80211_FC0_TYPE_MGT:
632 1.34.14.1 phil printf(" %s", ieee80211_mgt_subtype_name(wh->i_fc[0]));
633 1.1 dyoung break;
634 1.1 dyoung default:
635 1.1 dyoung printf(" type#%d", wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK);
636 1.1 dyoung break;
637 1.1 dyoung }
638 1.34.14.1 phil if (IEEE80211_QOS_HAS_SEQ(wh)) {
639 1.34.14.1 phil const struct ieee80211_qosframe *qwh =
640 1.34.14.1 phil (const struct ieee80211_qosframe *)buf;
641 1.34.14.1 phil printf(" QoS [TID %u%s]", qwh->i_qos[0] & IEEE80211_QOS_TID,
642 1.34.14.1 phil qwh->i_qos[0] & IEEE80211_QOS_ACKPOLICY ? " ACM" : "");
643 1.34.14.1 phil }
644 1.34.14.1 phil if (wh->i_fc[1] & IEEE80211_FC1_PROTECTED) {
645 1.34.14.1 phil int off;
646 1.34.14.1 phil
647 1.34.14.1 phil off = ieee80211_anyhdrspace(ic, wh);
648 1.34.14.1 phil printf(" WEP [IV %.02x %.02x %.02x",
649 1.34.14.1 phil buf[off+0], buf[off+1], buf[off+2]);
650 1.34.14.1 phil if (buf[off+IEEE80211_WEP_IVLEN] & IEEE80211_WEP_EXTIV)
651 1.34.14.1 phil printf(" %.02x %.02x %.02x",
652 1.34.14.1 phil buf[off+4], buf[off+5], buf[off+6]);
653 1.34.14.1 phil printf(" KID %u]", buf[off+IEEE80211_WEP_IVLEN] >> 6);
654 1.19 dyoung }
655 1.1 dyoung if (rate >= 0)
656 1.1 dyoung printf(" %dM", rate / 2);
657 1.1 dyoung if (rssi >= 0)
658 1.1 dyoung printf(" +%d", rssi);
659 1.1 dyoung printf("\n");
660 1.1 dyoung if (len > 0) {
661 1.1 dyoung for (i = 0; i < len; i++) {
662 1.1 dyoung if ((i & 1) == 0)
663 1.1 dyoung printf(" ");
664 1.1 dyoung printf("%02x", buf[i]);
665 1.1 dyoung }
666 1.1 dyoung printf("\n");
667 1.1 dyoung }
668 1.1 dyoung }
669 1.1 dyoung
670 1.34.14.1 phil static __inline int
671 1.34.14.1 phil findrix(const struct ieee80211_rateset *rs, int r)
672 1.34.14.1 phil {
673 1.34.14.1 phil int i;
674 1.34.14.1 phil
675 1.34.14.1 phil for (i = 0; i < rs->rs_nrates; i++)
676 1.34.14.1 phil if ((rs->rs_rates[i] & IEEE80211_RATE_VAL) == r)
677 1.34.14.1 phil return i;
678 1.34.14.1 phil return -1;
679 1.34.14.1 phil }
680 1.34.14.1 phil
681 1.1 dyoung int
682 1.34.14.1 phil ieee80211_fix_rate(struct ieee80211_node *ni,
683 1.34.14.1 phil struct ieee80211_rateset *nrs, int flags)
684 1.1 dyoung {
685 1.34.14.1 phil struct ieee80211vap *vap = ni->ni_vap;
686 1.23 skrll struct ieee80211com *ic = ni->ni_ic;
687 1.34.14.1 phil int i, j, rix, error;
688 1.34.14.1 phil int okrate, badrate, fixedrate, ucastrate;
689 1.34.14.1 phil const struct ieee80211_rateset *srs;
690 1.34.14.1 phil uint8_t r;
691 1.1 dyoung
692 1.1 dyoung error = 0;
693 1.34.14.1 phil okrate = badrate = 0;
694 1.34.14.1 phil ucastrate = vap->iv_txparms[ieee80211_chan2mode(ni->ni_chan)].ucastrate;
695 1.34.14.1 phil if (ucastrate != IEEE80211_FIXED_RATE_NONE) {
696 1.34.14.1 phil /*
697 1.34.14.1 phil * Workaround awkwardness with fixed rate. We are called
698 1.34.14.1 phil * to check both the legacy rate set and the HT rate set
699 1.34.14.1 phil * but we must apply any legacy fixed rate check only to the
700 1.34.14.1 phil * legacy rate set and vice versa. We cannot tell what type
701 1.34.14.1 phil * of rate set we've been given (legacy or HT) but we can
702 1.34.14.1 phil * distinguish the fixed rate type (MCS have 0x80 set).
703 1.34.14.1 phil * So to deal with this the caller communicates whether to
704 1.34.14.1 phil * check MCS or legacy rate using the flags and we use the
705 1.34.14.1 phil * type of any fixed rate to avoid applying an MCS to a
706 1.34.14.1 phil * legacy rate and vice versa.
707 1.34.14.1 phil */
708 1.34.14.1 phil if (ucastrate & 0x80) {
709 1.34.14.1 phil if (flags & IEEE80211_F_DOFRATE)
710 1.34.14.1 phil flags &= ~IEEE80211_F_DOFRATE;
711 1.34.14.1 phil } else if ((ucastrate & 0x80) == 0) {
712 1.34.14.1 phil if (flags & IEEE80211_F_DOFMCS)
713 1.34.14.1 phil flags &= ~IEEE80211_F_DOFMCS;
714 1.34.14.1 phil }
715 1.34.14.1 phil /* NB: required to make MCS match below work */
716 1.34.14.1 phil ucastrate &= IEEE80211_RATE_VAL;
717 1.34.14.1 phil }
718 1.34.14.1 phil fixedrate = IEEE80211_FIXED_RATE_NONE;
719 1.34.14.1 phil /*
720 1.34.14.1 phil * XXX we are called to process both MCS and legacy rates;
721 1.34.14.1 phil * we must use the appropriate basic rate set or chaos will
722 1.34.14.1 phil * ensue; for now callers that want MCS must supply
723 1.34.14.1 phil * IEEE80211_F_DOBRS; at some point we'll need to split this
724 1.34.14.1 phil * function so there are two variants, one for MCS and one
725 1.34.14.1 phil * for legacy rates.
726 1.34.14.1 phil */
727 1.34.14.1 phil if (flags & IEEE80211_F_DOBRS)
728 1.34.14.1 phil srs = (const struct ieee80211_rateset *)
729 1.34.14.1 phil ieee80211_get_suphtrates(ic, ni->ni_chan);
730 1.34.14.1 phil else
731 1.34.14.1 phil srs = ieee80211_get_suprates(ic, ni->ni_chan);
732 1.6 dyoung for (i = 0; i < nrs->rs_nrates; ) {
733 1.34.14.1 phil if (flags & IEEE80211_F_DOSORT) {
734 1.1 dyoung /*
735 1.1 dyoung * Sort rates.
736 1.1 dyoung */
737 1.1 dyoung for (j = i + 1; j < nrs->rs_nrates; j++) {
738 1.34.14.1 phil if (IEEE80211_RV(nrs->rs_rates[i]) >
739 1.34.14.1 phil IEEE80211_RV(nrs->rs_rates[j])) {
740 1.1 dyoung r = nrs->rs_rates[i];
741 1.1 dyoung nrs->rs_rates[i] = nrs->rs_rates[j];
742 1.1 dyoung nrs->rs_rates[j] = r;
743 1.1 dyoung }
744 1.1 dyoung }
745 1.1 dyoung }
746 1.1 dyoung r = nrs->rs_rates[i] & IEEE80211_RATE_VAL;
747 1.1 dyoung badrate = r;
748 1.34.14.1 phil /*
749 1.34.14.1 phil * Check for fixed rate.
750 1.34.14.1 phil */
751 1.34.14.1 phil if (r == ucastrate)
752 1.34.14.1 phil fixedrate = r;
753 1.34.14.1 phil /*
754 1.34.14.1 phil * Check against supported rates.
755 1.34.14.1 phil */
756 1.34.14.1 phil rix = findrix(srs, r);
757 1.34.14.1 phil if (flags & IEEE80211_F_DONEGO) {
758 1.34.14.1 phil if (rix < 0) {
759 1.6 dyoung /*
760 1.6 dyoung * A rate in the node's rate set is not
761 1.6 dyoung * supported. If this is a basic rate and we
762 1.34.14.1 phil * are operating as a STA then this is an error.
763 1.6 dyoung * Otherwise we just discard/ignore the rate.
764 1.6 dyoung */
765 1.34.14.1 phil if ((flags & IEEE80211_F_JOIN) &&
766 1.6 dyoung (nrs->rs_rates[i] & IEEE80211_RATE_BASIC))
767 1.1 dyoung error++;
768 1.34.14.1 phil } else if ((flags & IEEE80211_F_JOIN) == 0) {
769 1.34.14.1 phil /*
770 1.34.14.1 phil * Overwrite with the supported rate
771 1.34.14.1 phil * value so any basic rate bit is set.
772 1.34.14.1 phil */
773 1.34.14.1 phil nrs->rs_rates[i] = srs->rs_rates[rix];
774 1.1 dyoung }
775 1.1 dyoung }
776 1.34.14.1 phil if ((flags & IEEE80211_F_DODEL) && rix < 0) {
777 1.1 dyoung /*
778 1.1 dyoung * Delete unacceptable rates.
779 1.1 dyoung */
780 1.34.14.1 phil nrs->rs_nrates--;
781 1.34.14.1 phil for (j = i; j < nrs->rs_nrates; j++)
782 1.34.14.1 phil nrs->rs_rates[j] = nrs->rs_rates[j + 1];
783 1.34.14.1 phil nrs->rs_rates[j] = 0;
784 1.34.14.1 phil continue;
785 1.1 dyoung }
786 1.34.14.1 phil if (rix >= 0)
787 1.1 dyoung okrate = nrs->rs_rates[i];
788 1.1 dyoung i++;
789 1.1 dyoung }
790 1.19 dyoung if (okrate == 0 || error != 0 ||
791 1.34.14.1 phil ((flags & (IEEE80211_F_DOFRATE|IEEE80211_F_DOFMCS)) &&
792 1.34.14.1 phil fixedrate != ucastrate)) {
793 1.34.14.1 phil IEEE80211_NOTE(vap, IEEE80211_MSG_XRATE | IEEE80211_MSG_11N, ni,
794 1.34.14.1 phil "%s: flags 0x%x okrate %d error %d fixedrate 0x%x "
795 1.34.14.1 phil "ucastrate %x\n", __func__, fixedrate, ucastrate, flags);
796 1.1 dyoung return badrate | IEEE80211_RATE_BASIC;
797 1.34.14.1 phil } else
798 1.34.14.1 phil return IEEE80211_RV(okrate);
799 1.1 dyoung }
800 1.1 dyoung
801 1.19 dyoung /*
802 1.19 dyoung * Reset 11g-related state.
803 1.19 dyoung */
804 1.19 dyoung void
805 1.19 dyoung ieee80211_reset_erp(struct ieee80211com *ic)
806 1.19 dyoung {
807 1.19 dyoung ic->ic_flags &= ~IEEE80211_F_USEPROT;
808 1.19 dyoung ic->ic_nonerpsta = 0;
809 1.19 dyoung ic->ic_longslotsta = 0;
810 1.19 dyoung /*
811 1.19 dyoung * Short slot time is enabled only when operating in 11g
812 1.19 dyoung * and not in an IBSS. We must also honor whether or not
813 1.19 dyoung * the driver is capable of doing it.
814 1.19 dyoung */
815 1.19 dyoung ieee80211_set_shortslottime(ic,
816 1.34.14.1 phil IEEE80211_IS_CHAN_A(ic->ic_curchan) ||
817 1.34.14.1 phil IEEE80211_IS_CHAN_HT(ic->ic_curchan) ||
818 1.34.14.1 phil (IEEE80211_IS_CHAN_ANYG(ic->ic_curchan) &&
819 1.19 dyoung ic->ic_opmode == IEEE80211_M_HOSTAP &&
820 1.19 dyoung (ic->ic_caps & IEEE80211_C_SHSLOT)));
821 1.19 dyoung /*
822 1.19 dyoung * Set short preamble and ERP barker-preamble flags.
823 1.19 dyoung */
824 1.34.14.1 phil if (IEEE80211_IS_CHAN_A(ic->ic_curchan) ||
825 1.19 dyoung (ic->ic_caps & IEEE80211_C_SHPREAMBLE)) {
826 1.19 dyoung ic->ic_flags |= IEEE80211_F_SHPREAMBLE;
827 1.19 dyoung ic->ic_flags &= ~IEEE80211_F_USEBARKER;
828 1.19 dyoung } else {
829 1.19 dyoung ic->ic_flags &= ~IEEE80211_F_SHPREAMBLE;
830 1.19 dyoung ic->ic_flags |= IEEE80211_F_USEBARKER;
831 1.19 dyoung }
832 1.19 dyoung }
833 1.19 dyoung
834 1.19 dyoung /*
835 1.19 dyoung * Set the short slot time state and notify the driver.
836 1.19 dyoung */
837 1.19 dyoung void
838 1.19 dyoung ieee80211_set_shortslottime(struct ieee80211com *ic, int onoff)
839 1.19 dyoung {
840 1.19 dyoung if (onoff)
841 1.19 dyoung ic->ic_flags |= IEEE80211_F_SHSLOT;
842 1.19 dyoung else
843 1.19 dyoung ic->ic_flags &= ~IEEE80211_F_SHSLOT;
844 1.19 dyoung /* notify driver */
845 1.19 dyoung if (ic->ic_updateslot != NULL)
846 1.34.14.1 phil ic->ic_updateslot(ic);
847 1.19 dyoung }
848 1.19 dyoung
849 1.19 dyoung /*
850 1.19 dyoung * Check if the specified rate set supports ERP.
851 1.19 dyoung * NB: the rate set is assumed to be sorted.
852 1.19 dyoung */
853 1.19 dyoung int
854 1.34.14.1 phil ieee80211_iserp_rateset(const struct ieee80211_rateset *rs)
855 1.19 dyoung {
856 1.19 dyoung static const int rates[] = { 2, 4, 11, 22, 12, 24, 48 };
857 1.19 dyoung int i, j;
858 1.19 dyoung
859 1.34.14.1 phil if (rs->rs_nrates < nitems(rates))
860 1.19 dyoung return 0;
861 1.34.14.1 phil for (i = 0; i < nitems(rates); i++) {
862 1.19 dyoung for (j = 0; j < rs->rs_nrates; j++) {
863 1.19 dyoung int r = rs->rs_rates[j] & IEEE80211_RATE_VAL;
864 1.19 dyoung if (rates[i] == r)
865 1.19 dyoung goto next;
866 1.19 dyoung if (r > rates[i])
867 1.19 dyoung return 0;
868 1.19 dyoung }
869 1.19 dyoung return 0;
870 1.19 dyoung next:
871 1.19 dyoung ;
872 1.19 dyoung }
873 1.19 dyoung return 1;
874 1.19 dyoung }
875 1.19 dyoung
876 1.19 dyoung /*
877 1.34.14.1 phil * Mark the basic rates for the rate table based on the
878 1.19 dyoung * operating mode. For real 11g we mark all the 11b rates
879 1.19 dyoung * and 6, 12, and 24 OFDM. For 11b compatibility we mark only
880 1.19 dyoung * 11b rates. There's also a pseudo 11a-mode used to mark only
881 1.19 dyoung * the basic OFDM rates.
882 1.19 dyoung */
883 1.34.14.1 phil static void
884 1.34.14.1 phil setbasicrates(struct ieee80211_rateset *rs,
885 1.34.14.1 phil enum ieee80211_phymode mode, int add)
886 1.19 dyoung {
887 1.34.14.1 phil static const struct ieee80211_rateset basic[IEEE80211_MODE_MAX] = {
888 1.34.14.1 phil [IEEE80211_MODE_11A] = { 3, { 12, 24, 48 } },
889 1.34.14.1 phil [IEEE80211_MODE_11B] = { 2, { 2, 4 } },
890 1.34.14.1 phil /* NB: mixed b/g */
891 1.34.14.1 phil [IEEE80211_MODE_11G] = { 4, { 2, 4, 11, 22 } },
892 1.34.14.1 phil [IEEE80211_MODE_TURBO_A] = { 3, { 12, 24, 48 } },
893 1.34.14.1 phil [IEEE80211_MODE_TURBO_G] = { 4, { 2, 4, 11, 22 } },
894 1.34.14.1 phil [IEEE80211_MODE_STURBO_A] = { 3, { 12, 24, 48 } },
895 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 3, { 6, 12, 24 } },
896 1.34.14.1 phil [IEEE80211_MODE_QUARTER] = { 3, { 3, 6, 12 } },
897 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 3, { 12, 24, 48 } },
898 1.34.14.1 phil /* NB: mixed b/g */
899 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 4, { 2, 4, 11, 22 } },
900 1.34.14.1 phil /* NB: mixed b/g */
901 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 4, { 2, 4, 11, 22 } },
902 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 3, { 12, 24, 48 } },
903 1.19 dyoung };
904 1.19 dyoung int i, j;
905 1.19 dyoung
906 1.19 dyoung for (i = 0; i < rs->rs_nrates; i++) {
907 1.34.14.1 phil if (!add)
908 1.34.14.1 phil rs->rs_rates[i] &= IEEE80211_RATE_VAL;
909 1.19 dyoung for (j = 0; j < basic[mode].rs_nrates; j++)
910 1.19 dyoung if (basic[mode].rs_rates[j] == rs->rs_rates[i]) {
911 1.19 dyoung rs->rs_rates[i] |= IEEE80211_RATE_BASIC;
912 1.19 dyoung break;
913 1.19 dyoung }
914 1.19 dyoung }
915 1.19 dyoung }
916 1.19 dyoung
917 1.19 dyoung /*
918 1.34.14.1 phil * Set the basic rates in a rate set.
919 1.34.14.1 phil */
920 1.34.14.1 phil void
921 1.34.14.1 phil ieee80211_setbasicrates(struct ieee80211_rateset *rs,
922 1.34.14.1 phil enum ieee80211_phymode mode)
923 1.34.14.1 phil {
924 1.34.14.1 phil setbasicrates(rs, mode, 0);
925 1.34.14.1 phil }
926 1.34.14.1 phil
927 1.34.14.1 phil /*
928 1.34.14.1 phil * Add basic rates to a rate set.
929 1.34.14.1 phil */
930 1.34.14.1 phil void
931 1.34.14.1 phil ieee80211_addbasicrates(struct ieee80211_rateset *rs,
932 1.34.14.1 phil enum ieee80211_phymode mode)
933 1.34.14.1 phil {
934 1.34.14.1 phil setbasicrates(rs, mode, 1);
935 1.34.14.1 phil }
936 1.34.14.1 phil
937 1.34.14.1 phil /*
938 1.34.14.1 phil * WME protocol support.
939 1.34.14.1 phil *
940 1.34.14.1 phil * The default 11a/b/g/n parameters come from the WiFi Alliance WMM
941 1.34.14.1 phil * System Interopability Test Plan (v1.4, Appendix F) and the 802.11n
942 1.34.14.1 phil * Draft 2.0 Test Plan (Appendix D).
943 1.34.14.1 phil *
944 1.34.14.1 phil * Static/Dynamic Turbo mode settings come from Atheros.
945 1.19 dyoung */
946 1.19 dyoung typedef struct phyParamType {
947 1.34.14.1 phil uint8_t aifsn;
948 1.34.14.1 phil uint8_t logcwmin;
949 1.34.14.1 phil uint8_t logcwmax;
950 1.34.14.1 phil uint16_t txopLimit;
951 1.34.14.1 phil uint8_t acm;
952 1.19 dyoung } paramType;
953 1.19 dyoung
954 1.19 dyoung static const struct phyParamType phyParamForAC_BE[IEEE80211_MODE_MAX] = {
955 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 3, 4, 6, 0, 0 },
956 1.34.14.1 phil [IEEE80211_MODE_11A] = { 3, 4, 6, 0, 0 },
957 1.34.14.1 phil [IEEE80211_MODE_11B] = { 3, 4, 6, 0, 0 },
958 1.34.14.1 phil [IEEE80211_MODE_11G] = { 3, 4, 6, 0, 0 },
959 1.34.14.1 phil [IEEE80211_MODE_FH] = { 3, 4, 6, 0, 0 },
960 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 2, 3, 5, 0, 0 },
961 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 2, 3, 5, 0, 0 },
962 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 2, 3, 5, 0, 0 },
963 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 3, 4, 6, 0, 0 },
964 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 3, 4, 6, 0, 0 },
965 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 3, 4, 6, 0, 0 },
966 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 3, 4, 6, 0, 0 },
967 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 3, 4, 6, 0, 0 },
968 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 3, 4, 6, 0, 0 },
969 1.19 dyoung };
970 1.19 dyoung static const struct phyParamType phyParamForAC_BK[IEEE80211_MODE_MAX] = {
971 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 7, 4, 10, 0, 0 },
972 1.34.14.1 phil [IEEE80211_MODE_11A] = { 7, 4, 10, 0, 0 },
973 1.34.14.1 phil [IEEE80211_MODE_11B] = { 7, 4, 10, 0, 0 },
974 1.34.14.1 phil [IEEE80211_MODE_11G] = { 7, 4, 10, 0, 0 },
975 1.34.14.1 phil [IEEE80211_MODE_FH] = { 7, 4, 10, 0, 0 },
976 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 7, 3, 10, 0, 0 },
977 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 7, 3, 10, 0, 0 },
978 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 7, 3, 10, 0, 0 },
979 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 7, 4, 10, 0, 0 },
980 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 7, 4, 10, 0, 0 },
981 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 7, 4, 10, 0, 0 },
982 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 7, 4, 10, 0, 0 },
983 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 7, 4, 10, 0, 0 },
984 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 7, 4, 10, 0, 0 },
985 1.19 dyoung };
986 1.19 dyoung static const struct phyParamType phyParamForAC_VI[IEEE80211_MODE_MAX] = {
987 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 1, 3, 4, 94, 0 },
988 1.34.14.1 phil [IEEE80211_MODE_11A] = { 1, 3, 4, 94, 0 },
989 1.34.14.1 phil [IEEE80211_MODE_11B] = { 1, 3, 4, 188, 0 },
990 1.34.14.1 phil [IEEE80211_MODE_11G] = { 1, 3, 4, 94, 0 },
991 1.34.14.1 phil [IEEE80211_MODE_FH] = { 1, 3, 4, 188, 0 },
992 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 1, 2, 3, 94, 0 },
993 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 1, 2, 3, 94, 0 },
994 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 1, 2, 3, 94, 0 },
995 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 1, 3, 4, 94, 0 },
996 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 1, 3, 4, 94, 0 },
997 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 1, 3, 4, 94, 0 },
998 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 1, 3, 4, 94, 0 },
999 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 1, 3, 4, 94, 0 },
1000 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 1, 3, 4, 94, 0 },
1001 1.19 dyoung };
1002 1.19 dyoung static const struct phyParamType phyParamForAC_VO[IEEE80211_MODE_MAX] = {
1003 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 1, 2, 3, 47, 0 },
1004 1.34.14.1 phil [IEEE80211_MODE_11A] = { 1, 2, 3, 47, 0 },
1005 1.34.14.1 phil [IEEE80211_MODE_11B] = { 1, 2, 3, 102, 0 },
1006 1.34.14.1 phil [IEEE80211_MODE_11G] = { 1, 2, 3, 47, 0 },
1007 1.34.14.1 phil [IEEE80211_MODE_FH] = { 1, 2, 3, 102, 0 },
1008 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 1, 2, 2, 47, 0 },
1009 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 1, 2, 2, 47, 0 },
1010 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 1, 2, 2, 47, 0 },
1011 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 1, 2, 3, 47, 0 },
1012 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 1, 2, 3, 47, 0 },
1013 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 1, 2, 3, 47, 0 },
1014 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 1, 2, 3, 47, 0 },
1015 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 1, 2, 3, 47, 0 },
1016 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 1, 2, 3, 47, 0 },
1017 1.19 dyoung };
1018 1.19 dyoung
1019 1.19 dyoung static const struct phyParamType bssPhyParamForAC_BE[IEEE80211_MODE_MAX] = {
1020 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 3, 4, 10, 0, 0 },
1021 1.34.14.1 phil [IEEE80211_MODE_11A] = { 3, 4, 10, 0, 0 },
1022 1.34.14.1 phil [IEEE80211_MODE_11B] = { 3, 4, 10, 0, 0 },
1023 1.34.14.1 phil [IEEE80211_MODE_11G] = { 3, 4, 10, 0, 0 },
1024 1.34.14.1 phil [IEEE80211_MODE_FH] = { 3, 4, 10, 0, 0 },
1025 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 2, 3, 10, 0, 0 },
1026 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 2, 3, 10, 0, 0 },
1027 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 2, 3, 10, 0, 0 },
1028 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 3, 4, 10, 0, 0 },
1029 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 3, 4, 10, 0, 0 },
1030 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 3, 4, 10, 0, 0 },
1031 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 3, 4, 10, 0, 0 },
1032 1.19 dyoung };
1033 1.19 dyoung static const struct phyParamType bssPhyParamForAC_VI[IEEE80211_MODE_MAX] = {
1034 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 2, 3, 4, 94, 0 },
1035 1.34.14.1 phil [IEEE80211_MODE_11A] = { 2, 3, 4, 94, 0 },
1036 1.34.14.1 phil [IEEE80211_MODE_11B] = { 2, 3, 4, 188, 0 },
1037 1.34.14.1 phil [IEEE80211_MODE_11G] = { 2, 3, 4, 94, 0 },
1038 1.34.14.1 phil [IEEE80211_MODE_FH] = { 2, 3, 4, 188, 0 },
1039 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 2, 2, 3, 94, 0 },
1040 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 2, 2, 3, 94, 0 },
1041 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 2, 2, 3, 94, 0 },
1042 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 2, 3, 4, 94, 0 },
1043 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 2, 3, 4, 94, 0 },
1044 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 2, 3, 4, 94, 0 },
1045 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 2, 3, 4, 94, 0 },
1046 1.19 dyoung };
1047 1.19 dyoung static const struct phyParamType bssPhyParamForAC_VO[IEEE80211_MODE_MAX] = {
1048 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 2, 2, 3, 47, 0 },
1049 1.34.14.1 phil [IEEE80211_MODE_11A] = { 2, 2, 3, 47, 0 },
1050 1.34.14.1 phil [IEEE80211_MODE_11B] = { 2, 2, 3, 102, 0 },
1051 1.34.14.1 phil [IEEE80211_MODE_11G] = { 2, 2, 3, 47, 0 },
1052 1.34.14.1 phil [IEEE80211_MODE_FH] = { 2, 2, 3, 102, 0 },
1053 1.34.14.1 phil [IEEE80211_MODE_TURBO_A]= { 1, 2, 2, 47, 0 },
1054 1.34.14.1 phil [IEEE80211_MODE_TURBO_G]= { 1, 2, 2, 47, 0 },
1055 1.34.14.1 phil [IEEE80211_MODE_STURBO_A]={ 1, 2, 2, 47, 0 },
1056 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 2, 2, 3, 47, 0 },
1057 1.34.14.1 phil [IEEE80211_MODE_QUARTER]= { 2, 2, 3, 47, 0 },
1058 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 2, 2, 3, 47, 0 },
1059 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 2, 2, 3, 47, 0 },
1060 1.19 dyoung };
1061 1.19 dyoung
1062 1.34.14.1 phil static void
1063 1.34.14.1 phil _setifsparams(struct wmeParams *wmep, const paramType *phy)
1064 1.34.14.1 phil {
1065 1.34.14.1 phil wmep->wmep_aifsn = phy->aifsn;
1066 1.34.14.1 phil wmep->wmep_logcwmin = phy->logcwmin;
1067 1.34.14.1 phil wmep->wmep_logcwmax = phy->logcwmax;
1068 1.34.14.1 phil wmep->wmep_txopLimit = phy->txopLimit;
1069 1.34.14.1 phil }
1070 1.34.14.1 phil
1071 1.34.14.1 phil static void
1072 1.34.14.1 phil setwmeparams(struct ieee80211vap *vap, const char *type, int ac,
1073 1.34.14.1 phil struct wmeParams *wmep, const paramType *phy)
1074 1.19 dyoung {
1075 1.34.14.1 phil wmep->wmep_acm = phy->acm;
1076 1.34.14.1 phil _setifsparams(wmep, phy);
1077 1.34.14.1 phil
1078 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME,
1079 1.34.14.1 phil "set %s (%s) [acm %u aifsn %u logcwmin %u logcwmax %u txop %u]\n",
1080 1.34.14.1 phil ieee80211_wme_acnames[ac], type,
1081 1.34.14.1 phil wmep->wmep_acm, wmep->wmep_aifsn, wmep->wmep_logcwmin,
1082 1.34.14.1 phil wmep->wmep_logcwmax, wmep->wmep_txopLimit);
1083 1.34.14.1 phil }
1084 1.34.14.1 phil
1085 1.34.14.1 phil static void
1086 1.34.14.1 phil ieee80211_wme_initparams_locked(struct ieee80211vap *vap)
1087 1.34.14.1 phil {
1088 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1089 1.19 dyoung struct ieee80211_wme_state *wme = &ic->ic_wme;
1090 1.19 dyoung const paramType *pPhyParam, *pBssPhyParam;
1091 1.19 dyoung struct wmeParams *wmep;
1092 1.34.14.1 phil enum ieee80211_phymode mode;
1093 1.19 dyoung int i;
1094 1.19 dyoung
1095 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1096 1.34.14.1 phil
1097 1.34.14.1 phil if ((ic->ic_caps & IEEE80211_C_WME) == 0 || ic->ic_nrunning > 1)
1098 1.19 dyoung return;
1099 1.19 dyoung
1100 1.34.14.1 phil /*
1101 1.34.14.1 phil * Clear the wme cap_info field so a qoscount from a previous
1102 1.34.14.1 phil * vap doesn't confuse later code which only parses the beacon
1103 1.34.14.1 phil * field and updates hardware when said field changes.
1104 1.34.14.1 phil * Otherwise the hardware is programmed with defaults, not what
1105 1.34.14.1 phil * the beacon actually announces.
1106 1.34.14.1 phil */
1107 1.34.14.1 phil wme->wme_wmeChanParams.cap_info = 0;
1108 1.34.14.1 phil
1109 1.34.14.1 phil /*
1110 1.34.14.1 phil * Select mode; we can be called early in which case we
1111 1.34.14.1 phil * always use auto mode. We know we'll be called when
1112 1.34.14.1 phil * entering the RUN state with bsschan setup properly
1113 1.34.14.1 phil * so state will eventually get set correctly
1114 1.34.14.1 phil */
1115 1.34.14.1 phil if (ic->ic_bsschan != IEEE80211_CHAN_ANYC)
1116 1.34.14.1 phil mode = ieee80211_chan2mode(ic->ic_bsschan);
1117 1.34.14.1 phil else
1118 1.34.14.1 phil mode = IEEE80211_MODE_AUTO;
1119 1.19 dyoung for (i = 0; i < WME_NUM_AC; i++) {
1120 1.19 dyoung switch (i) {
1121 1.19 dyoung case WME_AC_BK:
1122 1.34.14.1 phil pPhyParam = &phyParamForAC_BK[mode];
1123 1.34.14.1 phil pBssPhyParam = &phyParamForAC_BK[mode];
1124 1.19 dyoung break;
1125 1.19 dyoung case WME_AC_VI:
1126 1.34.14.1 phil pPhyParam = &phyParamForAC_VI[mode];
1127 1.34.14.1 phil pBssPhyParam = &bssPhyParamForAC_VI[mode];
1128 1.19 dyoung break;
1129 1.19 dyoung case WME_AC_VO:
1130 1.34.14.1 phil pPhyParam = &phyParamForAC_VO[mode];
1131 1.34.14.1 phil pBssPhyParam = &bssPhyParamForAC_VO[mode];
1132 1.19 dyoung break;
1133 1.19 dyoung case WME_AC_BE:
1134 1.19 dyoung default:
1135 1.34.14.1 phil pPhyParam = &phyParamForAC_BE[mode];
1136 1.34.14.1 phil pBssPhyParam = &bssPhyParamForAC_BE[mode];
1137 1.19 dyoung break;
1138 1.19 dyoung }
1139 1.19 dyoung wmep = &wme->wme_wmeChanParams.cap_wmeParams[i];
1140 1.19 dyoung if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
1141 1.34.14.1 phil setwmeparams(vap, "chan", i, wmep, pPhyParam);
1142 1.19 dyoung } else {
1143 1.34.14.1 phil setwmeparams(vap, "chan", i, wmep, pBssPhyParam);
1144 1.19 dyoung }
1145 1.19 dyoung wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[i];
1146 1.34.14.1 phil setwmeparams(vap, "bss ", i, wmep, pBssPhyParam);
1147 1.19 dyoung }
1148 1.19 dyoung /* NB: check ic_bss to avoid NULL deref on initial attach */
1149 1.34.14.1 phil if (vap->iv_bss != NULL) {
1150 1.19 dyoung /*
1151 1.34.14.1 phil * Calculate aggressive mode switching threshold based
1152 1.19 dyoung * on beacon interval. This doesn't need locking since
1153 1.19 dyoung * we're only called before entering the RUN state at
1154 1.19 dyoung * which point we start sending beacon frames.
1155 1.19 dyoung */
1156 1.19 dyoung wme->wme_hipri_switch_thresh =
1157 1.34.14.1 phil (HIGH_PRI_SWITCH_THRESH * vap->iv_bss->ni_intval) / 100;
1158 1.34.14.1 phil wme->wme_flags &= ~WME_F_AGGRMODE;
1159 1.34.14.1 phil ieee80211_wme_updateparams(vap);
1160 1.19 dyoung }
1161 1.19 dyoung }
1162 1.19 dyoung
1163 1.34.14.1 phil void
1164 1.34.14.1 phil ieee80211_wme_initparams(struct ieee80211vap *vap)
1165 1.34.14.1 phil {
1166 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1167 1.34.14.1 phil
1168 1.34.14.1 phil IEEE80211_LOCK(ic);
1169 1.34.14.1 phil ieee80211_wme_initparams_locked(vap);
1170 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1171 1.34.14.1 phil }
1172 1.34.14.1 phil
1173 1.19 dyoung /*
1174 1.19 dyoung * Update WME parameters for ourself and the BSS.
1175 1.19 dyoung */
1176 1.19 dyoung void
1177 1.34.14.1 phil ieee80211_wme_updateparams_locked(struct ieee80211vap *vap)
1178 1.19 dyoung {
1179 1.34.14.1 phil static const paramType aggrParam[IEEE80211_MODE_MAX] = {
1180 1.34.14.1 phil [IEEE80211_MODE_AUTO] = { 2, 4, 10, 64, 0 },
1181 1.34.14.1 phil [IEEE80211_MODE_11A] = { 2, 4, 10, 64, 0 },
1182 1.34.14.1 phil [IEEE80211_MODE_11B] = { 2, 5, 10, 64, 0 },
1183 1.34.14.1 phil [IEEE80211_MODE_11G] = { 2, 4, 10, 64, 0 },
1184 1.34.14.1 phil [IEEE80211_MODE_FH] = { 2, 5, 10, 64, 0 },
1185 1.34.14.1 phil [IEEE80211_MODE_TURBO_A] = { 1, 3, 10, 64, 0 },
1186 1.34.14.1 phil [IEEE80211_MODE_TURBO_G] = { 1, 3, 10, 64, 0 },
1187 1.34.14.1 phil [IEEE80211_MODE_STURBO_A] = { 1, 3, 10, 64, 0 },
1188 1.34.14.1 phil [IEEE80211_MODE_HALF] = { 2, 4, 10, 64, 0 },
1189 1.34.14.1 phil [IEEE80211_MODE_QUARTER] = { 2, 4, 10, 64, 0 },
1190 1.34.14.1 phil [IEEE80211_MODE_11NA] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/
1191 1.34.14.1 phil [IEEE80211_MODE_11NG] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/
1192 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/
1193 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = { 2, 4, 10, 64, 0 }, /* XXXcheck*/
1194 1.19 dyoung };
1195 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1196 1.19 dyoung struct ieee80211_wme_state *wme = &ic->ic_wme;
1197 1.19 dyoung const struct wmeParams *wmep;
1198 1.19 dyoung struct wmeParams *chanp, *bssp;
1199 1.34.14.1 phil enum ieee80211_phymode mode;
1200 1.19 dyoung int i;
1201 1.34.14.1 phil int do_aggrmode = 0;
1202 1.19 dyoung
1203 1.34.14.1 phil /*
1204 1.34.14.1 phil * Set up the channel access parameters for the physical
1205 1.34.14.1 phil * device. First populate the configured settings.
1206 1.34.14.1 phil */
1207 1.19 dyoung for (i = 0; i < WME_NUM_AC; i++) {
1208 1.19 dyoung chanp = &wme->wme_chanParams.cap_wmeParams[i];
1209 1.19 dyoung wmep = &wme->wme_wmeChanParams.cap_wmeParams[i];
1210 1.19 dyoung chanp->wmep_aifsn = wmep->wmep_aifsn;
1211 1.19 dyoung chanp->wmep_logcwmin = wmep->wmep_logcwmin;
1212 1.19 dyoung chanp->wmep_logcwmax = wmep->wmep_logcwmax;
1213 1.19 dyoung chanp->wmep_txopLimit = wmep->wmep_txopLimit;
1214 1.19 dyoung
1215 1.19 dyoung chanp = &wme->wme_bssChanParams.cap_wmeParams[i];
1216 1.19 dyoung wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[i];
1217 1.19 dyoung chanp->wmep_aifsn = wmep->wmep_aifsn;
1218 1.19 dyoung chanp->wmep_logcwmin = wmep->wmep_logcwmin;
1219 1.19 dyoung chanp->wmep_logcwmax = wmep->wmep_logcwmax;
1220 1.19 dyoung chanp->wmep_txopLimit = wmep->wmep_txopLimit;
1221 1.19 dyoung }
1222 1.19 dyoung
1223 1.19 dyoung /*
1224 1.34.14.1 phil * Select mode; we can be called early in which case we
1225 1.34.14.1 phil * always use auto mode. We know we'll be called when
1226 1.34.14.1 phil * entering the RUN state with bsschan setup properly
1227 1.34.14.1 phil * so state will eventually get set correctly
1228 1.34.14.1 phil */
1229 1.34.14.1 phil if (ic->ic_bsschan != IEEE80211_CHAN_ANYC)
1230 1.34.14.1 phil mode = ieee80211_chan2mode(ic->ic_bsschan);
1231 1.34.14.1 phil else
1232 1.34.14.1 phil mode = IEEE80211_MODE_AUTO;
1233 1.34.14.1 phil
1234 1.34.14.1 phil /*
1235 1.34.14.1 phil * This implements aggressive mode as found in certain
1236 1.19 dyoung * vendors' AP's. When there is significant high
1237 1.19 dyoung * priority (VI/VO) traffic in the BSS throttle back BE
1238 1.19 dyoung * traffic by using conservative parameters. Otherwise
1239 1.34.14.1 phil * BE uses aggressive params to optimize performance of
1240 1.19 dyoung * legacy/non-QoS traffic.
1241 1.19 dyoung */
1242 1.34.14.1 phil
1243 1.34.14.1 phil /* Hostap? Only if aggressive mode is enabled */
1244 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
1245 1.34.14.1 phil (wme->wme_flags & WME_F_AGGRMODE) != 0)
1246 1.34.14.1 phil do_aggrmode = 1;
1247 1.34.14.1 phil
1248 1.34.14.1 phil /*
1249 1.34.14.1 phil * Station? Only if we're in a non-QoS BSS.
1250 1.34.14.1 phil */
1251 1.34.14.1 phil else if ((vap->iv_opmode == IEEE80211_M_STA &&
1252 1.34.14.1 phil (vap->iv_bss->ni_flags & IEEE80211_NODE_QOS) == 0))
1253 1.34.14.1 phil do_aggrmode = 1;
1254 1.34.14.1 phil
1255 1.34.14.1 phil /*
1256 1.34.14.1 phil * IBSS? Only if we we have WME enabled.
1257 1.34.14.1 phil */
1258 1.34.14.1 phil else if ((vap->iv_opmode == IEEE80211_M_IBSS) &&
1259 1.34.14.1 phil (vap->iv_flags & IEEE80211_F_WME))
1260 1.34.14.1 phil do_aggrmode = 1;
1261 1.34.14.1 phil
1262 1.34.14.1 phil /*
1263 1.34.14.1 phil * If WME is disabled on this VAP, default to aggressive mode
1264 1.34.14.1 phil * regardless of the configuration.
1265 1.34.14.1 phil */
1266 1.34.14.1 phil if ((vap->iv_flags & IEEE80211_F_WME) == 0)
1267 1.34.14.1 phil do_aggrmode = 1;
1268 1.34.14.1 phil
1269 1.34.14.1 phil /* XXX WDS? */
1270 1.34.14.1 phil
1271 1.34.14.1 phil /* XXX MBSS? */
1272 1.34.14.1 phil
1273 1.34.14.1 phil if (do_aggrmode) {
1274 1.19 dyoung chanp = &wme->wme_chanParams.cap_wmeParams[WME_AC_BE];
1275 1.19 dyoung bssp = &wme->wme_bssChanParams.cap_wmeParams[WME_AC_BE];
1276 1.19 dyoung
1277 1.34.14.1 phil chanp->wmep_aifsn = bssp->wmep_aifsn = aggrParam[mode].aifsn;
1278 1.19 dyoung chanp->wmep_logcwmin = bssp->wmep_logcwmin =
1279 1.34.14.1 phil aggrParam[mode].logcwmin;
1280 1.19 dyoung chanp->wmep_logcwmax = bssp->wmep_logcwmax =
1281 1.34.14.1 phil aggrParam[mode].logcwmax;
1282 1.19 dyoung chanp->wmep_txopLimit = bssp->wmep_txopLimit =
1283 1.34.14.1 phil (vap->iv_flags & IEEE80211_F_BURST) ?
1284 1.34.14.1 phil aggrParam[mode].txopLimit : 0;
1285 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME,
1286 1.34.14.1 phil "update %s (chan+bss) [acm %u aifsn %u logcwmin %u "
1287 1.34.14.1 phil "logcwmax %u txop %u]\n", ieee80211_wme_acnames[WME_AC_BE],
1288 1.34.14.1 phil chanp->wmep_acm, chanp->wmep_aifsn, chanp->wmep_logcwmin,
1289 1.34.14.1 phil chanp->wmep_logcwmax, chanp->wmep_txopLimit);
1290 1.19 dyoung }
1291 1.34.14.1 phil
1292 1.34.14.1 phil
1293 1.34.14.1 phil /*
1294 1.34.14.1 phil * Change the contention window based on the number of associated
1295 1.34.14.1 phil * stations. If the number of associated stations is 1 and
1296 1.34.14.1 phil * aggressive mode is enabled, lower the contention window even
1297 1.34.14.1 phil * further.
1298 1.34.14.1 phil */
1299 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
1300 1.34.14.1 phil ic->ic_sta_assoc < 2 && (wme->wme_flags & WME_F_AGGRMODE) != 0) {
1301 1.34.14.1 phil static const uint8_t logCwMin[IEEE80211_MODE_MAX] = {
1302 1.34.14.1 phil [IEEE80211_MODE_AUTO] = 3,
1303 1.34.14.1 phil [IEEE80211_MODE_11A] = 3,
1304 1.34.14.1 phil [IEEE80211_MODE_11B] = 4,
1305 1.34.14.1 phil [IEEE80211_MODE_11G] = 3,
1306 1.34.14.1 phil [IEEE80211_MODE_FH] = 4,
1307 1.34.14.1 phil [IEEE80211_MODE_TURBO_A] = 3,
1308 1.34.14.1 phil [IEEE80211_MODE_TURBO_G] = 3,
1309 1.34.14.1 phil [IEEE80211_MODE_STURBO_A] = 3,
1310 1.34.14.1 phil [IEEE80211_MODE_HALF] = 3,
1311 1.34.14.1 phil [IEEE80211_MODE_QUARTER] = 3,
1312 1.34.14.1 phil [IEEE80211_MODE_11NA] = 3,
1313 1.34.14.1 phil [IEEE80211_MODE_11NG] = 3,
1314 1.34.14.1 phil [IEEE80211_MODE_VHT_2GHZ] = 3,
1315 1.34.14.1 phil [IEEE80211_MODE_VHT_5GHZ] = 3,
1316 1.19 dyoung };
1317 1.19 dyoung chanp = &wme->wme_chanParams.cap_wmeParams[WME_AC_BE];
1318 1.19 dyoung bssp = &wme->wme_bssChanParams.cap_wmeParams[WME_AC_BE];
1319 1.19 dyoung
1320 1.34.14.1 phil chanp->wmep_logcwmin = bssp->wmep_logcwmin = logCwMin[mode];
1321 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME,
1322 1.34.14.1 phil "update %s (chan+bss) logcwmin %u\n",
1323 1.34.14.1 phil ieee80211_wme_acnames[WME_AC_BE], chanp->wmep_logcwmin);
1324 1.34.14.1 phil }
1325 1.34.14.1 phil
1326 1.34.14.1 phil /*
1327 1.34.14.1 phil * Arrange for the beacon update.
1328 1.34.14.1 phil *
1329 1.34.14.1 phil * XXX what about MBSS, WDS?
1330 1.34.14.1 phil */
1331 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_HOSTAP
1332 1.34.14.1 phil || vap->iv_opmode == IEEE80211_M_IBSS) {
1333 1.19 dyoung /*
1334 1.19 dyoung * Arrange for a beacon update and bump the parameter
1335 1.19 dyoung * set number so associated stations load the new values.
1336 1.19 dyoung */
1337 1.19 dyoung wme->wme_bssChanParams.cap_info =
1338 1.19 dyoung (wme->wme_bssChanParams.cap_info+1) & WME_QOSINFO_COUNT;
1339 1.34.14.1 phil ieee80211_beacon_notify(vap, IEEE80211_BEACON_WME);
1340 1.19 dyoung }
1341 1.19 dyoung
1342 1.34.14.1 phil /* schedule the deferred WME update */
1343 1.34.14.1 phil ieee80211_runtask(ic, &vap->iv_wme_task);
1344 1.19 dyoung
1345 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_WME,
1346 1.34.14.1 phil "%s: WME params updated, cap_info 0x%x\n", __func__,
1347 1.34.14.1 phil vap->iv_opmode == IEEE80211_M_STA ?
1348 1.34.14.1 phil wme->wme_wmeChanParams.cap_info :
1349 1.34.14.1 phil wme->wme_bssChanParams.cap_info);
1350 1.19 dyoung }
1351 1.19 dyoung
1352 1.19 dyoung void
1353 1.34.14.1 phil ieee80211_wme_updateparams(struct ieee80211vap *vap)
1354 1.19 dyoung {
1355 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1356 1.19 dyoung
1357 1.19 dyoung if (ic->ic_caps & IEEE80211_C_WME) {
1358 1.34.14.1 phil IEEE80211_LOCK(ic);
1359 1.34.14.1 phil ieee80211_wme_updateparams_locked(vap);
1360 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1361 1.19 dyoung }
1362 1.19 dyoung }
1363 1.19 dyoung
1364 1.34.14.1 phil /*
1365 1.34.14.1 phil * Fetch the WME parameters for the given VAP.
1366 1.34.14.1 phil *
1367 1.34.14.1 phil * When net80211 grows p2p, etc support, this may return different
1368 1.34.14.1 phil * parameters for each VAP.
1369 1.34.14.1 phil */
1370 1.34.14.1 phil void
1371 1.34.14.1 phil ieee80211_wme_vap_getparams(struct ieee80211vap *vap, struct chanAccParams *wp)
1372 1.34.14.1 phil {
1373 1.34.14.1 phil
1374 1.34.14.1 phil memcpy(wp, &vap->iv_ic->ic_wme.wme_chanParams, sizeof(*wp));
1375 1.34.14.1 phil }
1376 1.34.14.1 phil
1377 1.34.14.1 phil /*
1378 1.34.14.1 phil * For NICs which only support one set of WME paramaters (ie, softmac NICs)
1379 1.34.14.1 phil * there may be different VAP WME parameters but only one is "active".
1380 1.34.14.1 phil * This returns the "NIC" WME parameters for the currently active
1381 1.34.14.1 phil * context.
1382 1.34.14.1 phil */
1383 1.34.14.1 phil void
1384 1.34.14.1 phil ieee80211_wme_ic_getparams(struct ieee80211com *ic, struct chanAccParams *wp)
1385 1.34.14.1 phil {
1386 1.34.14.1 phil
1387 1.34.14.1 phil memcpy(wp, &ic->ic_wme.wme_chanParams, sizeof(*wp));
1388 1.34.14.1 phil }
1389 1.34.14.1 phil
1390 1.34.14.1 phil /*
1391 1.34.14.1 phil * Return whether to use QoS on a given WME queue.
1392 1.34.14.1 phil *
1393 1.34.14.1 phil * This is intended to be called from the transmit path of softmac drivers
1394 1.34.14.1 phil * which are setting NoAck bits in transmit descriptors.
1395 1.34.14.1 phil *
1396 1.34.14.1 phil * Ideally this would be set in some transmit field before the packet is
1397 1.34.14.1 phil * queued to the driver but net80211 isn't quite there yet.
1398 1.34.14.1 phil */
1399 1.34.14.1 phil int
1400 1.34.14.1 phil ieee80211_wme_vap_ac_is_noack(struct ieee80211vap *vap, int ac)
1401 1.34.14.1 phil {
1402 1.34.14.1 phil /* Bounds/sanity check */
1403 1.34.14.1 phil if (ac < 0 || ac >= WME_NUM_AC)
1404 1.34.14.1 phil return (0);
1405 1.34.14.1 phil
1406 1.34.14.1 phil /* Again, there's only one global context for now */
1407 1.34.14.1 phil return (!! vap->iv_ic->ic_wme.wme_chanParams.cap_wmeParams[ac].wmep_noackPolicy);
1408 1.34.14.1 phil }
1409 1.34.14.1 phil
1410 1.21 dyoung static void
1411 1.34.14.1 phil parent_updown(void *arg, int npending)
1412 1.21 dyoung {
1413 1.21 dyoung struct ieee80211com *ic = arg;
1414 1.21 dyoung
1415 1.34.14.5 phil printf ("parent_updown called on %s!\n", ic->ic_name);
1416 1.34.14.5 phil // ic->ic_parent(ic);
1417 1.21 dyoung }
1418 1.24 dyoung
1419 1.34.14.1 phil static void
1420 1.34.14.1 phil update_mcast(void *arg, int npending)
1421 1.24 dyoung {
1422 1.34.14.1 phil struct ieee80211com *ic = arg;
1423 1.24 dyoung
1424 1.34.14.1 phil ic->ic_update_mcast(ic);
1425 1.34.14.1 phil }
1426 1.34.14.1 phil
1427 1.34.14.1 phil static void
1428 1.34.14.1 phil update_promisc(void *arg, int npending)
1429 1.34.14.1 phil {
1430 1.34.14.1 phil struct ieee80211com *ic = arg;
1431 1.34.14.1 phil
1432 1.34.14.1 phil ic->ic_update_promisc(ic);
1433 1.34.14.1 phil }
1434 1.34.14.1 phil
1435 1.34.14.1 phil static void
1436 1.34.14.1 phil update_channel(void *arg, int npending)
1437 1.34.14.1 phil {
1438 1.34.14.1 phil struct ieee80211com *ic = arg;
1439 1.34.14.1 phil
1440 1.34.14.1 phil ic->ic_set_channel(ic);
1441 1.34.14.1 phil ieee80211_radiotap_chan_change(ic);
1442 1.34.14.1 phil }
1443 1.34.14.1 phil
1444 1.34.14.1 phil static void
1445 1.34.14.1 phil update_chw(void *arg, int npending)
1446 1.34.14.1 phil {
1447 1.34.14.1 phil struct ieee80211com *ic = arg;
1448 1.24 dyoung
1449 1.24 dyoung /*
1450 1.34.14.1 phil * XXX should we defer the channel width _config_ update until now?
1451 1.24 dyoung */
1452 1.34.14.1 phil ic->ic_update_chw(ic);
1453 1.34.14.1 phil }
1454 1.21 dyoung
1455 1.34.14.1 phil /*
1456 1.34.14.1 phil * Deferred WME update.
1457 1.34.14.1 phil *
1458 1.34.14.1 phil * In preparation for per-VAP WME configuration, call the VAP
1459 1.34.14.1 phil * method if the VAP requires it. Otherwise, just call the
1460 1.34.14.1 phil * older global method. There isn't a per-VAP WME configuration
1461 1.34.14.1 phil * just yet so for now just use the global configuration.
1462 1.34.14.1 phil */
1463 1.34.14.1 phil static void
1464 1.34.14.1 phil vap_update_wme(void *arg, int npending)
1465 1.34.14.1 phil {
1466 1.34.14.1 phil struct ieee80211vap *vap = arg;
1467 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1468 1.34.14.1 phil
1469 1.34.14.1 phil if (vap->iv_wme_update != NULL)
1470 1.34.14.1 phil vap->iv_wme_update(vap,
1471 1.34.14.1 phil ic->ic_wme.wme_chanParams.cap_wmeParams);
1472 1.34.14.1 phil else
1473 1.34.14.1 phil ic->ic_wme.wme_update(ic);
1474 1.24 dyoung }
1475 1.24 dyoung
1476 1.21 dyoung static void
1477 1.34.14.1 phil restart_vaps(void *arg, int npending)
1478 1.21 dyoung {
1479 1.21 dyoung struct ieee80211com *ic = arg;
1480 1.21 dyoung
1481 1.34.14.1 phil ieee80211_suspend_all(ic);
1482 1.34.14.1 phil ieee80211_resume_all(ic);
1483 1.34.14.1 phil }
1484 1.34.14.1 phil
1485 1.34.14.1 phil /*
1486 1.34.14.1 phil * Block until the parent is in a known state. This is
1487 1.34.14.1 phil * used after any operations that dispatch a task (e.g.
1488 1.34.14.1 phil * to auto-configure the parent device up/down).
1489 1.34.14.1 phil */
1490 1.34.14.1 phil void
1491 1.34.14.1 phil ieee80211_waitfor_parent(struct ieee80211com *ic)
1492 1.34.14.1 phil {
1493 1.34.14.1 phil taskqueue_block(ic->ic_tq);
1494 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_parent_task);
1495 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_mcast_task);
1496 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_promisc_task);
1497 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_chan_task);
1498 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_bmiss_task);
1499 1.34.14.1 phil ieee80211_draintask(ic, &ic->ic_chw_task);
1500 1.34.14.1 phil taskqueue_unblock(ic->ic_tq);
1501 1.21 dyoung }
1502 1.21 dyoung
1503 1.34.14.1 phil /*
1504 1.34.14.1 phil * Check to see whether the current channel needs reset.
1505 1.34.14.1 phil *
1506 1.34.14.1 phil * Some devices don't handle being given an invalid channel
1507 1.34.14.1 phil * in their operating mode very well (eg wpi(4) will throw a
1508 1.34.14.1 phil * firmware exception.)
1509 1.34.14.1 phil *
1510 1.34.14.1 phil * Return 0 if we're ok, 1 if the channel needs to be reset.
1511 1.34.14.1 phil *
1512 1.34.14.1 phil * See PR kern/202502.
1513 1.34.14.1 phil */
1514 1.1 dyoung static int
1515 1.34.14.1 phil ieee80211_start_check_reset_chan(struct ieee80211vap *vap)
1516 1.1 dyoung {
1517 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1518 1.1 dyoung
1519 1.34.14.1 phil if ((vap->iv_opmode == IEEE80211_M_IBSS &&
1520 1.34.14.1 phil IEEE80211_IS_CHAN_NOADHOC(ic->ic_curchan)) ||
1521 1.34.14.1 phil (vap->iv_opmode == IEEE80211_M_HOSTAP &&
1522 1.34.14.1 phil IEEE80211_IS_CHAN_NOHOSTAP(ic->ic_curchan)))
1523 1.34.14.1 phil return (1);
1524 1.34.14.1 phil return (0);
1525 1.34.14.1 phil }
1526 1.34 nonaka
1527 1.34.14.1 phil /*
1528 1.34.14.1 phil * Reset the curchan to a known good state.
1529 1.34.14.1 phil */
1530 1.34.14.1 phil static void
1531 1.34.14.1 phil ieee80211_start_reset_chan(struct ieee80211vap *vap)
1532 1.34.14.1 phil {
1533 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1534 1.34.14.1 phil
1535 1.34.14.1 phil ic->ic_curchan = &ic->ic_channels[0];
1536 1.34.14.1 phil }
1537 1.34.14.1 phil
1538 1.34.14.1 phil /*
1539 1.34.14.1 phil * Start a vap running. If this is the first vap to be
1540 1.34.14.1 phil * set running on the underlying device then we
1541 1.34.14.1 phil * automatically bring the device up.
1542 1.34.14.1 phil */
1543 1.34.14.1 phil void
1544 1.34.14.1 phil ieee80211_start_locked(struct ieee80211vap *vap)
1545 1.34.14.1 phil {
1546 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1547 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1548 1.34.14.1 phil
1549 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1550 1.34.14.1 phil
1551 1.34.14.1 phil IEEE80211_DPRINTF(vap,
1552 1.34.14.1 phil IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1553 1.34.14.1 phil "start running, %d vaps running\n", ic->ic_nrunning);
1554 1.34.14.1 phil
1555 1.34.14.4 phil printf ("returning from start_locked too soon.\n");
1556 1.34.14.4 phil return;
1557 1.34.14.4 phil
1558 1.34.14.2 phil #if __FreeBSD__
1559 1.34.14.1 phil if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) {
1560 1.34.14.2 phil #elif __NetBSD__
1561 1.34.14.2 phil if ((ifp->if_flags & IFF_RUNNING) == 0) {
1562 1.34.14.2 phil #endif
1563 1.34.14.1 phil /*
1564 1.34.14.1 phil * Mark us running. Note that it's ok to do this first;
1565 1.34.14.1 phil * if we need to bring the parent device up we defer that
1566 1.34.14.1 phil * to avoid dropping the com lock. We expect the device
1567 1.34.14.1 phil * to respond to being marked up by calling back into us
1568 1.34.14.1 phil * through ieee80211_start_all at which point we'll come
1569 1.34.14.1 phil * back in here and complete the work.
1570 1.34.14.1 phil */
1571 1.34.14.2 phil #if __FreeBSD__
1572 1.34.14.1 phil ifp->if_drv_flags |= IFF_DRV_RUNNING;
1573 1.34.14.2 phil #elif __NetBSD__
1574 1.34.14.2 phil ifp->if_flags |= IFF_RUNNING;
1575 1.34.14.2 phil #endif
1576 1.34.14.1 phil /*
1577 1.34.14.1 phil * We are not running; if this we are the first vap
1578 1.34.14.1 phil * to be brought up auto-up the parent if necessary.
1579 1.34.14.1 phil */
1580 1.34.14.1 phil if (ic->ic_nrunning++ == 0) {
1581 1.34.14.4 phil printf (" calling start_check_reset_chan\n");
1582 1.34.14.1 phil /* reset the channel to a known good channel */
1583 1.34.14.1 phil if (ieee80211_start_check_reset_chan(vap))
1584 1.34.14.1 phil ieee80211_start_reset_chan(vap);
1585 1.34.14.1 phil
1586 1.34.14.1 phil IEEE80211_DPRINTF(vap,
1587 1.34.14.1 phil IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1588 1.34.14.1 phil "%s: up parent %s\n", __func__, ic->ic_name);
1589 1.34.14.1 phil ieee80211_runtask(ic, &ic->ic_parent_task);
1590 1.34.14.1 phil return;
1591 1.1 dyoung }
1592 1.34.14.1 phil }
1593 1.34.14.1 phil /*
1594 1.34.14.1 phil * If the parent is up and running, then kick the
1595 1.34.14.1 phil * 802.11 state machine as appropriate.
1596 1.34.14.1 phil */
1597 1.34.14.1 phil if (vap->iv_roaming != IEEE80211_ROAMING_MANUAL) {
1598 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_STA) {
1599 1.34.14.1 phil #if 0
1600 1.34.14.1 phil /* XXX bypasses scan too easily; disable for now */
1601 1.34.14.1 phil /*
1602 1.34.14.1 phil * Try to be intelligent about clocking the state
1603 1.34.14.1 phil * machine. If we're currently in RUN state then
1604 1.34.14.1 phil * we should be able to apply any new state/parameters
1605 1.34.14.1 phil * simply by re-associating. Otherwise we need to
1606 1.34.14.1 phil * re-scan to select an appropriate ap.
1607 1.34.14.1 phil */
1608 1.34.14.1 phil if (vap->iv_state >= IEEE80211_S_RUN)
1609 1.34.14.1 phil ieee80211_new_state_locked(vap,
1610 1.34.14.1 phil IEEE80211_S_ASSOC, 1);
1611 1.34.14.1 phil else
1612 1.34.14.1 phil #endif
1613 1.34.14.1 phil ieee80211_new_state_locked(vap,
1614 1.34.14.1 phil IEEE80211_S_SCAN, 0);
1615 1.34.14.1 phil } else {
1616 1.34.14.4 phil printf (" first vap??? \n");
1617 1.34.14.1 phil /*
1618 1.34.14.1 phil * For monitor+wds mode there's nothing to do but
1619 1.34.14.1 phil * start running. Otherwise if this is the first
1620 1.34.14.1 phil * vap to be brought up, start a scan which may be
1621 1.34.14.1 phil * preempted if the station is locked to a particular
1622 1.34.14.1 phil * channel.
1623 1.34.14.1 phil */
1624 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_REINIT;
1625 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_MONITOR ||
1626 1.34.14.1 phil vap->iv_opmode == IEEE80211_M_WDS)
1627 1.34.14.1 phil ieee80211_new_state_locked(vap,
1628 1.34.14.1 phil IEEE80211_S_RUN, -1);
1629 1.34.14.1 phil else
1630 1.34.14.1 phil ieee80211_new_state_locked(vap,
1631 1.34.14.1 phil IEEE80211_S_SCAN, 0);
1632 1.1 dyoung }
1633 1.34.14.1 phil }
1634 1.34.14.1 phil }
1635 1.34.14.1 phil
1636 1.34.14.1 phil /*
1637 1.34.14.1 phil * Start a single vap.
1638 1.34.14.1 phil */
1639 1.34.14.3 phil #if __FreeBSD__
1640 1.34.14.1 phil void
1641 1.34.14.1 phil ieee80211_init(void *arg)
1642 1.34.14.1 phil {
1643 1.34.14.1 phil struct ieee80211vap *vap = arg;
1644 1.34.14.1 phil
1645 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1646 1.34.14.1 phil "%s\n", __func__);
1647 1.34.14.1 phil
1648 1.34.14.1 phil IEEE80211_LOCK(vap->iv_ic);
1649 1.34.14.1 phil ieee80211_start_locked(vap);
1650 1.34.14.1 phil IEEE80211_UNLOCK(vap->iv_ic);
1651 1.34.14.1 phil }
1652 1.34.14.3 phil #elif __NetBSD__
1653 1.34.14.3 phil int
1654 1.34.14.3 phil ieee80211_init(struct ifnet *ifp)
1655 1.34.14.3 phil {
1656 1.34.14.3 phil struct ieee80211vap *vap = ifp->if_softc;
1657 1.34.14.4 phil static ONCE_DECL(ieee80211_init_once);
1658 1.34.14.3 phil
1659 1.34.14.3 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1660 1.34.14.3 phil "%s\n", __func__);
1661 1.34.14.3 phil
1662 1.34.14.4 phil RUN_ONCE(&ieee80211_init_once, ieee80211_init0);
1663 1.34.14.4 phil
1664 1.34.14.3 phil IEEE80211_LOCK(vap->iv_ic);
1665 1.34.14.3 phil ieee80211_start_locked(vap);
1666 1.34.14.3 phil IEEE80211_UNLOCK(vap->iv_ic);
1667 1.34.14.3 phil return 0;
1668 1.34.14.3 phil }
1669 1.34.14.3 phil #endif
1670 1.34.14.1 phil
1671 1.34.14.1 phil /*
1672 1.34.14.1 phil * Start all runnable vap's on a device.
1673 1.34.14.1 phil */
1674 1.34.14.1 phil void
1675 1.34.14.1 phil ieee80211_start_all(struct ieee80211com *ic)
1676 1.34.14.1 phil {
1677 1.34.14.1 phil struct ieee80211vap *vap;
1678 1.34.14.1 phil
1679 1.34.14.1 phil IEEE80211_LOCK(ic);
1680 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1681 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1682 1.34.14.1 phil if (IFNET_IS_UP_RUNNING(ifp)) /* NB: avoid recursion */
1683 1.34.14.1 phil ieee80211_start_locked(vap);
1684 1.34.14.1 phil }
1685 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1686 1.34.14.1 phil }
1687 1.34.14.1 phil
1688 1.34.14.1 phil /*
1689 1.34.14.1 phil * Stop a vap. We force it down using the state machine
1690 1.34.14.1 phil * then mark it's ifnet not running. If this is the last
1691 1.34.14.1 phil * vap running on the underlying device then we close it
1692 1.34.14.1 phil * too to insure it will be properly initialized when the
1693 1.34.14.1 phil * next vap is brought up.
1694 1.34.14.1 phil */
1695 1.34.14.1 phil void
1696 1.34.14.1 phil ieee80211_stop_locked(struct ieee80211vap *vap)
1697 1.34.14.1 phil {
1698 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1699 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1700 1.34.14.1 phil
1701 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1702 1.34.14.1 phil
1703 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1704 1.34.14.1 phil "stop running, %d vaps running\n", ic->ic_nrunning);
1705 1.34.14.1 phil
1706 1.34.14.1 phil ieee80211_new_state_locked(vap, IEEE80211_S_INIT, -1);
1707 1.34.14.2 phil #if __FreeBSD__
1708 1.34.14.1 phil if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
1709 1.34.14.1 phil ifp->if_drv_flags &= ~IFF_DRV_RUNNING; /* mark us stopped */
1710 1.34.14.2 phil #elif __NetBSD__
1711 1.34.14.2 phil if (ifp->if_flags & IFF_RUNNING) {
1712 1.34.14.2 phil ifp->if_flags &= ~IFF_RUNNING; /* mark us stopped */
1713 1.34.14.2 phil #endif
1714 1.34.14.1 phil if (--ic->ic_nrunning == 0) {
1715 1.34.14.1 phil IEEE80211_DPRINTF(vap,
1716 1.34.14.1 phil IEEE80211_MSG_STATE | IEEE80211_MSG_DEBUG,
1717 1.34.14.1 phil "down parent %s\n", ic->ic_name);
1718 1.34.14.1 phil ieee80211_runtask(ic, &ic->ic_parent_task);
1719 1.1 dyoung }
1720 1.34.14.1 phil }
1721 1.34.14.1 phil }
1722 1.34.14.1 phil
1723 1.34.14.1 phil void
1724 1.34.14.1 phil ieee80211_stop(struct ieee80211vap *vap)
1725 1.34.14.1 phil {
1726 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1727 1.34.14.1 phil
1728 1.34.14.1 phil IEEE80211_LOCK(ic);
1729 1.34.14.1 phil ieee80211_stop_locked(vap);
1730 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1731 1.34.14.1 phil }
1732 1.34.14.1 phil
1733 1.34.14.1 phil /*
1734 1.34.14.1 phil * Stop all vap's running on a device.
1735 1.34.14.1 phil */
1736 1.34.14.1 phil void
1737 1.34.14.1 phil ieee80211_stop_all(struct ieee80211com *ic)
1738 1.34.14.1 phil {
1739 1.34.14.1 phil struct ieee80211vap *vap;
1740 1.34.14.1 phil
1741 1.34.14.1 phil IEEE80211_LOCK(ic);
1742 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1743 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1744 1.34.14.1 phil if (IFNET_IS_UP_RUNNING(ifp)) /* NB: avoid recursion */
1745 1.34.14.1 phil ieee80211_stop_locked(vap);
1746 1.34.14.1 phil }
1747 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1748 1.34.14.1 phil
1749 1.34.14.1 phil ieee80211_waitfor_parent(ic);
1750 1.34.14.1 phil }
1751 1.34.14.1 phil
1752 1.34.14.1 phil /*
1753 1.34.14.1 phil * Stop all vap's running on a device and arrange
1754 1.34.14.1 phil * for those that were running to be resumed.
1755 1.34.14.1 phil */
1756 1.34.14.1 phil void
1757 1.34.14.1 phil ieee80211_suspend_all(struct ieee80211com *ic)
1758 1.34.14.1 phil {
1759 1.34.14.1 phil struct ieee80211vap *vap;
1760 1.34.14.1 phil
1761 1.34.14.1 phil IEEE80211_LOCK(ic);
1762 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1763 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1764 1.34.14.1 phil if (IFNET_IS_UP_RUNNING(ifp)) { /* NB: avoid recursion */
1765 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_RESUME;
1766 1.34.14.1 phil ieee80211_stop_locked(vap);
1767 1.19 dyoung }
1768 1.34.14.1 phil }
1769 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1770 1.34.14.1 phil
1771 1.34.14.1 phil ieee80211_waitfor_parent(ic);
1772 1.34.14.1 phil }
1773 1.34.14.1 phil
1774 1.34.14.1 phil /*
1775 1.34.14.1 phil * Start all vap's marked for resume.
1776 1.34.14.1 phil */
1777 1.34.14.1 phil void
1778 1.34.14.1 phil ieee80211_resume_all(struct ieee80211com *ic)
1779 1.34.14.1 phil {
1780 1.34.14.1 phil struct ieee80211vap *vap;
1781 1.34.14.1 phil
1782 1.34.14.1 phil IEEE80211_LOCK(ic);
1783 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1784 1.34.14.1 phil struct ifnet *ifp = vap->iv_ifp;
1785 1.34.14.1 phil if (!IFNET_IS_UP_RUNNING(ifp) &&
1786 1.34.14.1 phil (vap->iv_flags_ext & IEEE80211_FEXT_RESUME)) {
1787 1.34.14.1 phil vap->iv_flags_ext &= ~IEEE80211_FEXT_RESUME;
1788 1.34.14.1 phil ieee80211_start_locked(vap);
1789 1.1 dyoung }
1790 1.34.14.1 phil }
1791 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1792 1.34.14.1 phil }
1793 1.34.14.1 phil
1794 1.34.14.1 phil /*
1795 1.34.14.1 phil * Restart all vap's running on a device.
1796 1.34.14.1 phil */
1797 1.34.14.1 phil void
1798 1.34.14.1 phil ieee80211_restart_all(struct ieee80211com *ic)
1799 1.34.14.1 phil {
1800 1.34.14.1 phil /*
1801 1.34.14.1 phil * NB: do not use ieee80211_runtask here, we will
1802 1.34.14.1 phil * block & drain net80211 taskqueue.
1803 1.34.14.1 phil */
1804 1.34.14.5 phil #if __FreeBSD__
1805 1.34.14.1 phil taskqueue_enqueue(taskqueue_thread, &ic->ic_restart_task);
1806 1.34.14.5 phil #elif __NetBSD__
1807 1.34.14.5 phil printf ("ieee80211_restart_all called .... should add code.\n");
1808 1.34.14.5 phil #endif
1809 1.34.14.1 phil }
1810 1.34.14.1 phil
1811 1.34.14.1 phil void
1812 1.34.14.1 phil ieee80211_beacon_miss(struct ieee80211com *ic)
1813 1.34.14.1 phil {
1814 1.34.14.1 phil IEEE80211_LOCK(ic);
1815 1.34.14.1 phil if ((ic->ic_flags & IEEE80211_F_SCAN) == 0) {
1816 1.34.14.1 phil /* Process in a taskq, the handler may reenter the driver */
1817 1.34.14.1 phil ieee80211_runtask(ic, &ic->ic_bmiss_task);
1818 1.34.14.1 phil }
1819 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1820 1.34.14.1 phil }
1821 1.34.14.1 phil
1822 1.34.14.1 phil static void
1823 1.34.14.1 phil beacon_miss(void *arg, int npending)
1824 1.34.14.1 phil {
1825 1.34.14.1 phil struct ieee80211com *ic = arg;
1826 1.34.14.1 phil struct ieee80211vap *vap;
1827 1.34.14.1 phil
1828 1.34.14.1 phil IEEE80211_LOCK(ic);
1829 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1830 1.19 dyoung /*
1831 1.34.14.1 phil * We only pass events through for sta vap's in RUN+ state;
1832 1.34.14.1 phil * may be too restrictive but for now this saves all the
1833 1.34.14.1 phil * handlers duplicating these checks.
1834 1.19 dyoung */
1835 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_STA &&
1836 1.34.14.1 phil vap->iv_state >= IEEE80211_S_RUN &&
1837 1.34.14.1 phil vap->iv_bmiss != NULL)
1838 1.34.14.1 phil vap->iv_bmiss(vap);
1839 1.34.14.1 phil }
1840 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1841 1.34.14.1 phil }
1842 1.34.14.1 phil
1843 1.34.14.1 phil static void
1844 1.34.14.1 phil beacon_swmiss(void *arg, int npending)
1845 1.34.14.1 phil {
1846 1.34.14.1 phil struct ieee80211vap *vap = arg;
1847 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1848 1.34.14.1 phil
1849 1.34.14.1 phil IEEE80211_LOCK(ic);
1850 1.34.14.1 phil if (vap->iv_state >= IEEE80211_S_RUN) {
1851 1.34.14.1 phil /* XXX Call multiple times if npending > zero? */
1852 1.34.14.1 phil vap->iv_bmiss(vap);
1853 1.34.14.1 phil }
1854 1.34.14.1 phil IEEE80211_UNLOCK(ic);
1855 1.34.14.1 phil }
1856 1.34.14.1 phil
1857 1.34.14.1 phil /*
1858 1.34.14.1 phil * Software beacon miss handling. Check if any beacons
1859 1.34.14.1 phil * were received in the last period. If not post a
1860 1.34.14.1 phil * beacon miss; otherwise reset the counter.
1861 1.34.14.1 phil */
1862 1.34.14.1 phil void
1863 1.34.14.1 phil ieee80211_swbmiss(void *arg)
1864 1.34.14.1 phil {
1865 1.34.14.1 phil struct ieee80211vap *vap = arg;
1866 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
1867 1.34.14.1 phil
1868 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1869 1.34.14.1 phil
1870 1.34.14.1 phil KASSERT(vap->iv_state >= IEEE80211_S_RUN,
1871 1.34.14.1 phil ("wrong state %d", vap->iv_state));
1872 1.34.14.1 phil
1873 1.34.14.1 phil if (ic->ic_flags & IEEE80211_F_SCAN) {
1874 1.34.14.1 phil /*
1875 1.34.14.1 phil * If scanning just ignore and reset state. If we get a
1876 1.34.14.1 phil * bmiss after coming out of scan because we haven't had
1877 1.34.14.1 phil * time to receive a beacon then we should probe the AP
1878 1.34.14.1 phil * before posting a real bmiss (unless iv_bmiss_max has
1879 1.34.14.1 phil * been artifiically lowered). A cleaner solution might
1880 1.34.14.1 phil * be to disable the timer on scan start/end but to handle
1881 1.34.14.1 phil * case of multiple sta vap's we'd need to disable the
1882 1.34.14.1 phil * timers of all affected vap's.
1883 1.34.14.1 phil */
1884 1.34.14.1 phil vap->iv_swbmiss_count = 0;
1885 1.34.14.1 phil } else if (vap->iv_swbmiss_count == 0) {
1886 1.34.14.1 phil if (vap->iv_bmiss != NULL)
1887 1.34.14.1 phil ieee80211_runtask(ic, &vap->iv_swbmiss_task);
1888 1.34.14.1 phil } else
1889 1.34.14.1 phil vap->iv_swbmiss_count = 0;
1890 1.34.14.1 phil callout_reset(&vap->iv_swbmiss, vap->iv_swbmiss_period,
1891 1.34.14.1 phil ieee80211_swbmiss, vap);
1892 1.34.14.1 phil }
1893 1.34.14.1 phil
1894 1.34.14.1 phil /*
1895 1.34.14.1 phil * Start an 802.11h channel switch. We record the parameters,
1896 1.34.14.1 phil * mark the operation pending, notify each vap through the
1897 1.34.14.1 phil * beacon update mechanism so it can update the beacon frame
1898 1.34.14.1 phil * contents, and then switch vap's to CSA state to block outbound
1899 1.34.14.1 phil * traffic. Devices that handle CSA directly can use the state
1900 1.34.14.1 phil * switch to do the right thing so long as they call
1901 1.34.14.1 phil * ieee80211_csa_completeswitch when it's time to complete the
1902 1.34.14.1 phil * channel change. Devices that depend on the net80211 layer can
1903 1.34.14.1 phil * use ieee80211_beacon_update to handle the countdown and the
1904 1.34.14.1 phil * channel switch.
1905 1.34.14.1 phil */
1906 1.34.14.1 phil void
1907 1.34.14.1 phil ieee80211_csa_startswitch(struct ieee80211com *ic,
1908 1.34.14.1 phil struct ieee80211_channel *c, int mode, int count)
1909 1.34.14.1 phil {
1910 1.34.14.1 phil struct ieee80211vap *vap;
1911 1.34.14.1 phil
1912 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1913 1.34.14.1 phil
1914 1.34.14.1 phil ic->ic_csa_newchan = c;
1915 1.34.14.1 phil ic->ic_csa_mode = mode;
1916 1.34.14.1 phil ic->ic_csa_count = count;
1917 1.34.14.1 phil ic->ic_flags |= IEEE80211_F_CSAPENDING;
1918 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
1919 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_HOSTAP ||
1920 1.34.14.1 phil vap->iv_opmode == IEEE80211_M_IBSS ||
1921 1.34.14.1 phil vap->iv_opmode == IEEE80211_M_MBSS)
1922 1.34.14.1 phil ieee80211_beacon_notify(vap, IEEE80211_BEACON_CSA);
1923 1.34.14.1 phil /* switch to CSA state to block outbound traffic */
1924 1.34.14.1 phil if (vap->iv_state == IEEE80211_S_RUN)
1925 1.34.14.1 phil ieee80211_new_state_locked(vap, IEEE80211_S_CSA, 0);
1926 1.34.14.1 phil }
1927 1.34.14.1 phil ieee80211_notify_csa(ic, c, mode, count);
1928 1.34.14.1 phil }
1929 1.34.14.1 phil
1930 1.34.14.1 phil /*
1931 1.34.14.1 phil * Complete the channel switch by transitioning all CSA VAPs to RUN.
1932 1.34.14.1 phil * This is called by both the completion and cancellation functions
1933 1.34.14.1 phil * so each VAP is placed back in the RUN state and can thus transmit.
1934 1.34.14.1 phil */
1935 1.34.14.1 phil static void
1936 1.34.14.1 phil csa_completeswitch(struct ieee80211com *ic)
1937 1.34.14.1 phil {
1938 1.34.14.1 phil struct ieee80211vap *vap;
1939 1.34.14.1 phil
1940 1.34.14.1 phil ic->ic_csa_newchan = NULL;
1941 1.34.14.1 phil ic->ic_flags &= ~IEEE80211_F_CSAPENDING;
1942 1.34.14.1 phil
1943 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
1944 1.34.14.1 phil if (vap->iv_state == IEEE80211_S_CSA)
1945 1.34.14.1 phil ieee80211_new_state_locked(vap, IEEE80211_S_RUN, 0);
1946 1.34.14.1 phil }
1947 1.34.14.1 phil
1948 1.34.14.1 phil /*
1949 1.34.14.1 phil * Complete an 802.11h channel switch started by ieee80211_csa_startswitch.
1950 1.34.14.1 phil * We clear state and move all vap's in CSA state to RUN state
1951 1.34.14.1 phil * so they can again transmit.
1952 1.34.14.1 phil *
1953 1.34.14.1 phil * Although this may not be completely correct, update the BSS channel
1954 1.34.14.1 phil * for each VAP to the newly configured channel. The setcurchan sets
1955 1.34.14.1 phil * the current operating channel for the interface (so the radio does
1956 1.34.14.1 phil * switch over) but the VAP BSS isn't updated, leading to incorrectly
1957 1.34.14.1 phil * reported information via ioctl.
1958 1.34.14.1 phil */
1959 1.34.14.1 phil void
1960 1.34.14.1 phil ieee80211_csa_completeswitch(struct ieee80211com *ic)
1961 1.34.14.1 phil {
1962 1.34.14.1 phil struct ieee80211vap *vap;
1963 1.34.14.1 phil
1964 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1965 1.34.14.1 phil
1966 1.34.14.1 phil KASSERT(ic->ic_flags & IEEE80211_F_CSAPENDING, ("csa not pending"));
1967 1.34.14.1 phil
1968 1.34.14.1 phil ieee80211_setcurchan(ic, ic->ic_csa_newchan);
1969 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
1970 1.34.14.1 phil if (vap->iv_state == IEEE80211_S_CSA)
1971 1.34.14.1 phil vap->iv_bss->ni_chan = ic->ic_curchan;
1972 1.34.14.1 phil
1973 1.34.14.1 phil csa_completeswitch(ic);
1974 1.34.14.1 phil }
1975 1.34.14.1 phil
1976 1.34.14.1 phil /*
1977 1.34.14.1 phil * Cancel an 802.11h channel switch started by ieee80211_csa_startswitch.
1978 1.34.14.1 phil * We clear state and move all vap's in CSA state to RUN state
1979 1.34.14.1 phil * so they can again transmit.
1980 1.34.14.1 phil */
1981 1.34.14.1 phil void
1982 1.34.14.1 phil ieee80211_csa_cancelswitch(struct ieee80211com *ic)
1983 1.34.14.1 phil {
1984 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
1985 1.34.14.1 phil
1986 1.34.14.1 phil csa_completeswitch(ic);
1987 1.34.14.1 phil }
1988 1.34.14.1 phil
1989 1.34.14.1 phil /*
1990 1.34.14.1 phil * Complete a DFS CAC started by ieee80211_dfs_cac_start.
1991 1.34.14.1 phil * We clear state and move all vap's in CAC state to RUN state.
1992 1.34.14.1 phil */
1993 1.34.14.1 phil void
1994 1.34.14.1 phil ieee80211_cac_completeswitch(struct ieee80211vap *vap0)
1995 1.34.14.1 phil {
1996 1.34.14.1 phil struct ieee80211com *ic = vap0->iv_ic;
1997 1.34.14.1 phil struct ieee80211vap *vap;
1998 1.34.14.1 phil
1999 1.34.14.1 phil IEEE80211_LOCK(ic);
2000 1.34.14.1 phil /*
2001 1.34.14.1 phil * Complete CAC state change for lead vap first; then
2002 1.34.14.1 phil * clock all the other vap's waiting.
2003 1.34.14.1 phil */
2004 1.34.14.1 phil KASSERT(vap0->iv_state == IEEE80211_S_CAC,
2005 1.34.14.1 phil ("wrong state %d", vap0->iv_state));
2006 1.34.14.1 phil ieee80211_new_state_locked(vap0, IEEE80211_S_RUN, 0);
2007 1.34.14.1 phil
2008 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
2009 1.34.14.1 phil if (vap->iv_state == IEEE80211_S_CAC && vap != vap0)
2010 1.34.14.1 phil ieee80211_new_state_locked(vap, IEEE80211_S_RUN, 0);
2011 1.34.14.1 phil IEEE80211_UNLOCK(ic);
2012 1.34.14.1 phil }
2013 1.34.14.1 phil
2014 1.34.14.1 phil /*
2015 1.34.14.1 phil * Force all vap's other than the specified vap to the INIT state
2016 1.34.14.1 phil * and mark them as waiting for a scan to complete. These vaps
2017 1.34.14.1 phil * will be brought up when the scan completes and the scanning vap
2018 1.34.14.1 phil * reaches RUN state by wakeupwaiting.
2019 1.34.14.1 phil */
2020 1.34.14.1 phil static void
2021 1.34.14.1 phil markwaiting(struct ieee80211vap *vap0)
2022 1.34.14.1 phil {
2023 1.34.14.1 phil struct ieee80211com *ic = vap0->iv_ic;
2024 1.34.14.1 phil struct ieee80211vap *vap;
2025 1.34.14.1 phil
2026 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2027 1.34.14.1 phil
2028 1.34.14.1 phil /*
2029 1.34.14.1 phil * A vap list entry can not disappear since we are running on the
2030 1.34.14.1 phil * taskqueue and a vap destroy will queue and drain another state
2031 1.34.14.1 phil * change task.
2032 1.34.14.1 phil */
2033 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
2034 1.34.14.1 phil if (vap == vap0)
2035 1.34.14.1 phil continue;
2036 1.34.14.1 phil if (vap->iv_state != IEEE80211_S_INIT) {
2037 1.34.14.1 phil /* NB: iv_newstate may drop the lock */
2038 1.34.14.1 phil vap->iv_newstate(vap, IEEE80211_S_INIT, 0);
2039 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2040 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT;
2041 1.34.14.1 phil }
2042 1.34.14.1 phil }
2043 1.34.14.1 phil }
2044 1.34.14.1 phil
2045 1.34.14.1 phil /*
2046 1.34.14.1 phil * Wakeup all vap's waiting for a scan to complete. This is the
2047 1.34.14.1 phil * companion to markwaiting (above) and is used to coordinate
2048 1.34.14.1 phil * multiple vaps scanning.
2049 1.34.14.1 phil * This is called from the state taskqueue.
2050 1.34.14.1 phil */
2051 1.34.14.1 phil static void
2052 1.34.14.1 phil wakeupwaiting(struct ieee80211vap *vap0)
2053 1.34.14.1 phil {
2054 1.34.14.1 phil struct ieee80211com *ic = vap0->iv_ic;
2055 1.34.14.1 phil struct ieee80211vap *vap;
2056 1.34.14.1 phil
2057 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2058 1.34.14.1 phil
2059 1.34.14.1 phil /*
2060 1.34.14.1 phil * A vap list entry can not disappear since we are running on the
2061 1.34.14.1 phil * taskqueue and a vap destroy will queue and drain another state
2062 1.34.14.1 phil * change task.
2063 1.34.14.1 phil */
2064 1.34.14.1 phil TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
2065 1.34.14.1 phil if (vap == vap0)
2066 1.34.14.1 phil continue;
2067 1.34.14.1 phil if (vap->iv_flags_ext & IEEE80211_FEXT_SCANWAIT) {
2068 1.34.14.1 phil vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANWAIT;
2069 1.34.14.1 phil /* NB: sta's cannot go INIT->RUN */
2070 1.34.14.1 phil /* NB: iv_newstate may drop the lock */
2071 1.34.14.1 phil vap->iv_newstate(vap,
2072 1.34.14.1 phil vap->iv_opmode == IEEE80211_M_STA ?
2073 1.34.14.1 phil IEEE80211_S_SCAN : IEEE80211_S_RUN, 0);
2074 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2075 1.19 dyoung }
2076 1.34.14.1 phil }
2077 1.34.14.1 phil }
2078 1.34.14.1 phil
2079 1.34.14.1 phil /*
2080 1.34.14.1 phil * Handle post state change work common to all operating modes.
2081 1.34.14.1 phil */
2082 1.34.14.1 phil static void
2083 1.34.14.1 phil ieee80211_newstate_cb(void *xvap, int npending)
2084 1.34.14.1 phil {
2085 1.34.14.1 phil struct ieee80211vap *vap = xvap;
2086 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
2087 1.34.14.1 phil enum ieee80211_state nstate, ostate;
2088 1.34.14.1 phil int arg, rc;
2089 1.34.14.1 phil
2090 1.34.14.1 phil IEEE80211_LOCK(ic);
2091 1.34.14.1 phil nstate = vap->iv_nstate;
2092 1.34.14.1 phil arg = vap->iv_nstate_arg;
2093 1.34.14.1 phil
2094 1.34.14.1 phil if (vap->iv_flags_ext & IEEE80211_FEXT_REINIT) {
2095 1.19 dyoung /*
2096 1.34.14.1 phil * We have been requested to drop back to the INIT before
2097 1.34.14.1 phil * proceeding to the new state.
2098 1.19 dyoung */
2099 1.34.14.1 phil /* Deny any state changes while we are here. */
2100 1.34.14.1 phil vap->iv_nstate = IEEE80211_S_INIT;
2101 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2102 1.34.14.1 phil "%s: %s -> %s arg %d\n", __func__,
2103 1.34.14.1 phil ieee80211_state_name[vap->iv_state],
2104 1.34.14.1 phil ieee80211_state_name[vap->iv_nstate], arg);
2105 1.34.14.1 phil vap->iv_newstate(vap, vap->iv_nstate, 0);
2106 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2107 1.34.14.1 phil vap->iv_flags_ext &= ~(IEEE80211_FEXT_REINIT |
2108 1.34.14.1 phil IEEE80211_FEXT_STATEWAIT);
2109 1.34.14.1 phil /* enqueue new state transition after cancel_scan() task */
2110 1.34.14.1 phil ieee80211_new_state_locked(vap, nstate, arg);
2111 1.34.14.1 phil goto done;
2112 1.34.14.1 phil }
2113 1.34.14.1 phil
2114 1.34.14.1 phil ostate = vap->iv_state;
2115 1.34.14.1 phil if (nstate == IEEE80211_S_SCAN && ostate != IEEE80211_S_INIT) {
2116 1.19 dyoung /*
2117 1.34.14.1 phil * SCAN was forced; e.g. on beacon miss. Force other running
2118 1.34.14.1 phil * vap's to INIT state and mark them as waiting for the scan to
2119 1.34.14.1 phil * complete. This insures they don't interfere with our
2120 1.34.14.1 phil * scanning. Since we are single threaded the vaps can not
2121 1.34.14.1 phil * transition again while we are executing.
2122 1.34.14.1 phil *
2123 1.34.14.1 phil * XXX not always right, assumes ap follows sta
2124 1.19 dyoung */
2125 1.34.14.1 phil markwaiting(vap);
2126 1.34.14.1 phil }
2127 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2128 1.34.14.1 phil "%s: %s -> %s arg %d\n", __func__,
2129 1.34.14.1 phil ieee80211_state_name[ostate], ieee80211_state_name[nstate], arg);
2130 1.34.14.1 phil
2131 1.34.14.1 phil rc = vap->iv_newstate(vap, nstate, arg);
2132 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2133 1.34.14.1 phil vap->iv_flags_ext &= ~IEEE80211_FEXT_STATEWAIT;
2134 1.34.14.1 phil if (rc != 0) {
2135 1.34.14.1 phil /* State transition failed */
2136 1.34.14.1 phil KASSERT(rc != EINPROGRESS, ("iv_newstate was deferred"));
2137 1.34.14.1 phil KASSERT(nstate != IEEE80211_S_INIT,
2138 1.34.14.1 phil ("INIT state change failed"));
2139 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2140 1.34.14.1 phil "%s: %s returned error %d\n", __func__,
2141 1.34.14.1 phil ieee80211_state_name[nstate], rc);
2142 1.34.14.1 phil goto done;
2143 1.34.14.1 phil }
2144 1.34.14.1 phil
2145 1.34.14.1 phil /* No actual transition, skip post processing */
2146 1.34.14.1 phil if (ostate == nstate)
2147 1.34.14.1 phil goto done;
2148 1.34.14.1 phil
2149 1.34.14.1 phil if (nstate == IEEE80211_S_RUN) {
2150 1.34.14.1 phil /*
2151 1.34.14.1 phil * OACTIVE may be set on the vap if the upper layer
2152 1.34.14.1 phil * tried to transmit (e.g. IPv6 NDP) before we reach
2153 1.34.14.1 phil * RUN state. Clear it and restart xmit.
2154 1.34.14.1 phil *
2155 1.34.14.1 phil * Note this can also happen as a result of SLEEP->RUN
2156 1.34.14.1 phil * (i.e. coming out of power save mode).
2157 1.34.14.1 phil */
2158 1.34.14.2 phil #if __FreeBSD__
2159 1.34.14.1 phil vap->iv_ifp->if_drv_flags &= ~IFF_DRV_OACTIVE;
2160 1.34.14.2 phil #elif __NetBSD__
2161 1.34.14.2 phil vap->iv_ifp->if_flags &= ~IFF_OACTIVE;
2162 1.34.14.2 phil #endif
2163 1.34.14.1 phil
2164 1.34.14.1 phil /*
2165 1.34.14.1 phil * XXX TODO Kick-start a VAP queue - this should be a method!
2166 1.34.14.1 phil */
2167 1.34.14.1 phil
2168 1.34.14.1 phil /* bring up any vaps waiting on us */
2169 1.34.14.1 phil wakeupwaiting(vap);
2170 1.34.14.1 phil } else if (nstate == IEEE80211_S_INIT) {
2171 1.34.14.1 phil /*
2172 1.34.14.1 phil * Flush the scan cache if we did the last scan (XXX?)
2173 1.34.14.1 phil * and flush any frames on send queues from this vap.
2174 1.34.14.1 phil * Note the mgt q is used only for legacy drivers and
2175 1.34.14.1 phil * will go away shortly.
2176 1.34.14.1 phil */
2177 1.34.14.1 phil ieee80211_scan_flush(vap);
2178 1.34.14.1 phil
2179 1.34.14.1 phil /*
2180 1.34.14.1 phil * XXX TODO: ic/vap queue flush
2181 1.34.14.1 phil */
2182 1.34.14.1 phil }
2183 1.34.14.1 phil done:
2184 1.34.14.1 phil IEEE80211_UNLOCK(ic);
2185 1.34.14.1 phil }
2186 1.34.14.1 phil
2187 1.34.14.1 phil /*
2188 1.34.14.1 phil * Public interface for initiating a state machine change.
2189 1.34.14.1 phil * This routine single-threads the request and coordinates
2190 1.34.14.1 phil * the scheduling of multiple vaps for the purpose of selecting
2191 1.34.14.1 phil * an operating channel. Specifically the following scenarios
2192 1.34.14.1 phil * are handled:
2193 1.34.14.1 phil * o only one vap can be selecting a channel so on transition to
2194 1.34.14.1 phil * SCAN state if another vap is already scanning then
2195 1.34.14.1 phil * mark the caller for later processing and return without
2196 1.34.14.1 phil * doing anything (XXX? expectations by caller of synchronous operation)
2197 1.34.14.1 phil * o only one vap can be doing CAC of a channel so on transition to
2198 1.34.14.1 phil * CAC state if another vap is already scanning for radar then
2199 1.34.14.1 phil * mark the caller for later processing and return without
2200 1.34.14.1 phil * doing anything (XXX? expectations by caller of synchronous operation)
2201 1.34.14.1 phil * o if another vap is already running when a request is made
2202 1.34.14.1 phil * to SCAN then an operating channel has been chosen; bypass
2203 1.34.14.1 phil * the scan and just join the channel
2204 1.34.14.1 phil *
2205 1.34.14.1 phil * Note that the state change call is done through the iv_newstate
2206 1.34.14.1 phil * method pointer so any driver routine gets invoked. The driver
2207 1.34.14.1 phil * will normally call back into operating mode-specific
2208 1.34.14.1 phil * ieee80211_newstate routines (below) unless it needs to completely
2209 1.34.14.1 phil * bypass the state machine (e.g. because the firmware has it's
2210 1.34.14.1 phil * own idea how things should work). Bypassing the net80211 layer
2211 1.34.14.1 phil * is usually a mistake and indicates lack of proper integration
2212 1.34.14.1 phil * with the net80211 layer.
2213 1.34.14.1 phil */
2214 1.34.14.1 phil int
2215 1.34.14.1 phil ieee80211_new_state_locked(struct ieee80211vap *vap,
2216 1.34.14.1 phil enum ieee80211_state nstate, int arg)
2217 1.34.14.1 phil {
2218 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
2219 1.34.14.1 phil struct ieee80211vap *vp;
2220 1.34.14.1 phil enum ieee80211_state ostate;
2221 1.34.14.1 phil int nrunning, nscanning;
2222 1.34.14.1 phil
2223 1.34.14.1 phil IEEE80211_LOCK_ASSERT(ic);
2224 1.34.14.1 phil
2225 1.34.14.1 phil if (vap->iv_flags_ext & IEEE80211_FEXT_STATEWAIT) {
2226 1.34.14.1 phil if (vap->iv_nstate == IEEE80211_S_INIT ||
2227 1.34.14.1 phil ((vap->iv_state == IEEE80211_S_INIT ||
2228 1.34.14.1 phil (vap->iv_flags_ext & IEEE80211_FEXT_REINIT)) &&
2229 1.34.14.1 phil vap->iv_nstate == IEEE80211_S_SCAN &&
2230 1.34.14.1 phil nstate > IEEE80211_S_SCAN)) {
2231 1.34.14.1 phil /*
2232 1.34.14.1 phil * XXX The vap is being stopped/started,
2233 1.34.14.1 phil * do not allow any other state changes
2234 1.34.14.1 phil * until this is completed.
2235 1.34.14.1 phil */
2236 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2237 1.34.14.1 phil "%s: %s -> %s (%s) transition discarded\n",
2238 1.34.14.1 phil __func__,
2239 1.34.14.1 phil ieee80211_state_name[vap->iv_state],
2240 1.34.14.1 phil ieee80211_state_name[nstate],
2241 1.34.14.1 phil ieee80211_state_name[vap->iv_nstate]);
2242 1.34.14.1 phil return -1;
2243 1.34.14.1 phil } else if (vap->iv_state != vap->iv_nstate) {
2244 1.34.14.1 phil #if 0
2245 1.34.14.1 phil /* Warn if the previous state hasn't completed. */
2246 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2247 1.34.14.1 phil "%s: pending %s -> %s transition lost\n", __func__,
2248 1.34.14.1 phil ieee80211_state_name[vap->iv_state],
2249 1.34.14.1 phil ieee80211_state_name[vap->iv_nstate]);
2250 1.34.14.1 phil #else
2251 1.34.14.1 phil /* XXX temporarily enable to identify issues */
2252 1.34.14.1 phil if_printf(vap->iv_ifp,
2253 1.34.14.1 phil "%s: pending %s -> %s transition lost\n",
2254 1.34.14.1 phil __func__, ieee80211_state_name[vap->iv_state],
2255 1.34.14.1 phil ieee80211_state_name[vap->iv_nstate]);
2256 1.34.14.1 phil #endif
2257 1.34.14.1 phil }
2258 1.34.14.1 phil }
2259 1.34.14.1 phil
2260 1.34.14.1 phil nrunning = nscanning = 0;
2261 1.34.14.1 phil /* XXX can track this state instead of calculating */
2262 1.34.14.1 phil TAILQ_FOREACH(vp, &ic->ic_vaps, iv_next) {
2263 1.34.14.1 phil if (vp != vap) {
2264 1.34.14.1 phil if (vp->iv_state >= IEEE80211_S_RUN)
2265 1.34.14.1 phil nrunning++;
2266 1.34.14.1 phil /* XXX doesn't handle bg scan */
2267 1.34.14.1 phil /* NB: CAC+AUTH+ASSOC treated like SCAN */
2268 1.34.14.1 phil else if (vp->iv_state > IEEE80211_S_INIT)
2269 1.34.14.1 phil nscanning++;
2270 1.34.14.1 phil }
2271 1.34.14.1 phil }
2272 1.34.14.1 phil ostate = vap->iv_state;
2273 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2274 1.34.14.1 phil "%s: %s -> %s (nrunning %d nscanning %d)\n", __func__,
2275 1.34.14.1 phil ieee80211_state_name[ostate], ieee80211_state_name[nstate],
2276 1.34.14.1 phil nrunning, nscanning);
2277 1.34.14.1 phil switch (nstate) {
2278 1.34.14.1 phil case IEEE80211_S_SCAN:
2279 1.34.14.1 phil if (ostate == IEEE80211_S_INIT) {
2280 1.34.14.1 phil /*
2281 1.34.14.1 phil * INIT -> SCAN happens on initial bringup.
2282 1.34.14.1 phil */
2283 1.34.14.1 phil KASSERT(!(nscanning && nrunning),
2284 1.34.14.1 phil ("%d scanning and %d running", nscanning, nrunning));
2285 1.34.14.1 phil if (nscanning) {
2286 1.34.14.1 phil /*
2287 1.34.14.1 phil * Someone is scanning, defer our state
2288 1.34.14.1 phil * change until the work has completed.
2289 1.34.14.1 phil */
2290 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2291 1.34.14.1 phil "%s: defer %s -> %s\n",
2292 1.34.14.1 phil __func__, ieee80211_state_name[ostate],
2293 1.34.14.1 phil ieee80211_state_name[nstate]);
2294 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT;
2295 1.34.14.1 phil return 0;
2296 1.34.14.1 phil }
2297 1.34.14.1 phil if (nrunning) {
2298 1.34.14.1 phil /*
2299 1.34.14.1 phil * Someone is operating; just join the channel
2300 1.34.14.1 phil * they have chosen.
2301 1.34.14.1 phil */
2302 1.34.14.1 phil /* XXX kill arg? */
2303 1.34.14.1 phil /* XXX check each opmode, adhoc? */
2304 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_STA)
2305 1.34.14.1 phil nstate = IEEE80211_S_SCAN;
2306 1.34.14.1 phil else
2307 1.34.14.1 phil nstate = IEEE80211_S_RUN;
2308 1.34.14.1 phil #ifdef IEEE80211_DEBUG
2309 1.34.14.1 phil if (nstate != IEEE80211_S_SCAN) {
2310 1.34.14.1 phil IEEE80211_DPRINTF(vap,
2311 1.34.14.1 phil IEEE80211_MSG_STATE,
2312 1.34.14.1 phil "%s: override, now %s -> %s\n",
2313 1.34.14.1 phil __func__,
2314 1.34.14.1 phil ieee80211_state_name[ostate],
2315 1.34.14.1 phil ieee80211_state_name[nstate]);
2316 1.34.14.1 phil }
2317 1.34.14.1 phil #endif
2318 1.34.14.1 phil }
2319 1.34.14.1 phil }
2320 1.34.14.1 phil break;
2321 1.34.14.1 phil case IEEE80211_S_RUN:
2322 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_WDS &&
2323 1.34.14.1 phil (vap->iv_flags_ext & IEEE80211_FEXT_WDSLEGACY) &&
2324 1.34.14.1 phil nscanning) {
2325 1.34.14.1 phil /*
2326 1.34.14.1 phil * Legacy WDS with someone else scanning; don't
2327 1.34.14.1 phil * go online until that completes as we should
2328 1.34.14.1 phil * follow the other vap to the channel they choose.
2329 1.34.14.1 phil */
2330 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2331 1.34.14.1 phil "%s: defer %s -> %s (legacy WDS)\n", __func__,
2332 1.34.14.1 phil ieee80211_state_name[ostate],
2333 1.34.14.1 phil ieee80211_state_name[nstate]);
2334 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_SCANWAIT;
2335 1.34.14.1 phil return 0;
2336 1.34.14.1 phil }
2337 1.34.14.1 phil if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
2338 1.34.14.1 phil IEEE80211_IS_CHAN_DFS(ic->ic_bsschan) &&
2339 1.34.14.1 phil (vap->iv_flags_ext & IEEE80211_FEXT_DFS) &&
2340 1.34.14.1 phil !IEEE80211_IS_CHAN_CACDONE(ic->ic_bsschan)) {
2341 1.34.14.1 phil /*
2342 1.34.14.1 phil * This is a DFS channel, transition to CAC state
2343 1.34.14.1 phil * instead of RUN. This allows us to initiate
2344 1.34.14.1 phil * Channel Availability Check (CAC) as specified
2345 1.34.14.1 phil * by 11h/DFS.
2346 1.34.14.1 phil */
2347 1.34.14.1 phil nstate = IEEE80211_S_CAC;
2348 1.34.14.1 phil IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
2349 1.34.14.1 phil "%s: override %s -> %s (DFS)\n", __func__,
2350 1.34.14.1 phil ieee80211_state_name[ostate],
2351 1.34.14.1 phil ieee80211_state_name[nstate]);
2352 1.34.14.1 phil }
2353 1.34.14.1 phil break;
2354 1.34.14.1 phil case IEEE80211_S_INIT:
2355 1.34.14.1 phil /* cancel any scan in progress */
2356 1.34.14.1 phil ieee80211_cancel_scan(vap);
2357 1.34.14.1 phil if (ostate == IEEE80211_S_INIT ) {
2358 1.34.14.1 phil /* XXX don't believe this */
2359 1.34.14.1 phil /* INIT -> INIT. nothing to do */
2360 1.34.14.1 phil vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANWAIT;
2361 1.34.14.1 phil }
2362 1.34.14.1 phil /* fall thru... */
2363 1.34.14.1 phil default:
2364 1.1 dyoung break;
2365 1.1 dyoung }
2366 1.34.14.1 phil /* defer the state change to a thread */
2367 1.34.14.1 phil vap->iv_nstate = nstate;
2368 1.34.14.1 phil vap->iv_nstate_arg = arg;
2369 1.34.14.1 phil vap->iv_flags_ext |= IEEE80211_FEXT_STATEWAIT;
2370 1.34.14.1 phil ieee80211_runtask(ic, &vap->iv_nstate_task);
2371 1.34.14.1 phil return EINPROGRESS;
2372 1.34.14.1 phil }
2373 1.34.14.1 phil
2374 1.34.14.1 phil int
2375 1.34.14.1 phil ieee80211_new_state(struct ieee80211vap *vap,
2376 1.34.14.1 phil enum ieee80211_state nstate, int arg)
2377 1.34.14.1 phil {
2378 1.34.14.1 phil struct ieee80211com *ic = vap->iv_ic;
2379 1.34.14.1 phil int rc;
2380 1.34.14.1 phil
2381 1.34.14.1 phil IEEE80211_LOCK(ic);
2382 1.34.14.1 phil rc = ieee80211_new_state_locked(vap, nstate, arg);
2383 1.34.14.1 phil IEEE80211_UNLOCK(ic);
2384 1.34.14.1 phil return rc;
2385 1.1 dyoung }
2386