ieee80211_output.c revision 1.16.2.9 1 1.16.2.9 skrll /* $NetBSD: ieee80211_output.c,v 1.16.2.9 2005/11/10 14:10:51 skrll Exp $ */
2 1.16.2.2 skrll /*-
3 1.16.2.2 skrll * Copyright (c) 2001 Atsushi Onoe
4 1.16.2.9 skrll * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
5 1.16.2.2 skrll * All rights reserved.
6 1.16.2.2 skrll *
7 1.16.2.2 skrll * Redistribution and use in source and binary forms, with or without
8 1.16.2.2 skrll * modification, are permitted provided that the following conditions
9 1.16.2.2 skrll * are met:
10 1.16.2.2 skrll * 1. Redistributions of source code must retain the above copyright
11 1.16.2.2 skrll * notice, this list of conditions and the following disclaimer.
12 1.16.2.2 skrll * 2. Redistributions in binary form must reproduce the above copyright
13 1.16.2.2 skrll * notice, this list of conditions and the following disclaimer in the
14 1.16.2.2 skrll * documentation and/or other materials provided with the distribution.
15 1.16.2.2 skrll * 3. The name of the author may not be used to endorse or promote products
16 1.16.2.2 skrll * derived from this software without specific prior written permission.
17 1.16.2.2 skrll *
18 1.16.2.2 skrll * Alternatively, this software may be distributed under the terms of the
19 1.16.2.2 skrll * GNU General Public License ("GPL") version 2 as published by the Free
20 1.16.2.2 skrll * Software Foundation.
21 1.16.2.2 skrll *
22 1.16.2.2 skrll * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.16.2.2 skrll * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.16.2.2 skrll * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.16.2.2 skrll * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.16.2.2 skrll * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.16.2.2 skrll * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.16.2.2 skrll * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.16.2.2 skrll * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.16.2.2 skrll * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.16.2.2 skrll * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.16.2.2 skrll */
33 1.16.2.2 skrll
34 1.16.2.2 skrll #include <sys/cdefs.h>
35 1.16.2.2 skrll #ifdef __FreeBSD__
36 1.16.2.9 skrll __FBSDID("$FreeBSD: src/sys/net80211/ieee80211_output.c,v 1.26 2005/07/06 01:55:17 sam Exp $");
37 1.16.2.9 skrll #endif
38 1.16.2.9 skrll #ifdef __NetBSD__
39 1.16.2.9 skrll __KERNEL_RCSID(0, "$NetBSD: ieee80211_output.c,v 1.16.2.9 2005/11/10 14:10:51 skrll Exp $");
40 1.16.2.2 skrll #endif
41 1.16.2.2 skrll
42 1.16.2.2 skrll #include "opt_inet.h"
43 1.16.2.2 skrll
44 1.16.2.2 skrll #ifdef __NetBSD__
45 1.16.2.2 skrll #include "bpfilter.h"
46 1.16.2.2 skrll #endif /* __NetBSD__ */
47 1.16.2.2 skrll
48 1.16.2.2 skrll #include <sys/param.h>
49 1.16.2.9 skrll #include <sys/systm.h>
50 1.16.2.9 skrll #include <sys/mbuf.h>
51 1.16.2.2 skrll #include <sys/kernel.h>
52 1.16.2.2 skrll #include <sys/endian.h>
53 1.16.2.2 skrll #include <sys/errno.h>
54 1.16.2.2 skrll #include <sys/proc.h>
55 1.16.2.2 skrll #include <sys/sysctl.h>
56 1.16.2.2 skrll
57 1.16.2.2 skrll #include <net/if.h>
58 1.16.2.9 skrll #include <net/if_llc.h>
59 1.16.2.2 skrll #include <net/if_media.h>
60 1.16.2.2 skrll #include <net/if_arp.h>
61 1.16.2.2 skrll #include <net/if_ether.h>
62 1.16.2.2 skrll #include <net/if_llc.h>
63 1.16.2.9 skrll #include <net/if_vlanvar.h>
64 1.16.2.2 skrll
65 1.16.2.9 skrll #include <net80211/ieee80211_netbsd.h>
66 1.16.2.2 skrll #include <net80211/ieee80211_var.h>
67 1.16.2.2 skrll
68 1.16.2.2 skrll #if NBPFILTER > 0
69 1.16.2.2 skrll #include <net/bpf.h>
70 1.16.2.2 skrll #endif
71 1.16.2.2 skrll
72 1.16.2.2 skrll #ifdef INET
73 1.16.2.8 skrll #include <netinet/in.h>
74 1.16.2.9 skrll #include <netinet/in_systm.h>
75 1.16.2.9 skrll #include <netinet/in_var.h>
76 1.16.2.9 skrll #include <netinet/ip.h>
77 1.16.2.2 skrll #include <net/if_ether.h>
78 1.16.2.2 skrll #endif
79 1.16.2.2 skrll
80 1.16.2.2 skrll #ifdef IEEE80211_DEBUG
81 1.16.2.2 skrll /*
82 1.16.2.2 skrll * Decide if an outbound management frame should be
83 1.16.2.2 skrll * printed when debugging is enabled. This filters some
84 1.16.2.2 skrll * of the less interesting frames that come frequently
85 1.16.2.2 skrll * (e.g. beacons).
86 1.16.2.2 skrll */
87 1.16.2.2 skrll static __inline int
88 1.16.2.2 skrll doprint(struct ieee80211com *ic, int subtype)
89 1.16.2.2 skrll {
90 1.16.2.2 skrll switch (subtype) {
91 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
92 1.16.2.2 skrll return (ic->ic_opmode == IEEE80211_M_IBSS);
93 1.16.2.2 skrll }
94 1.16.2.2 skrll return 1;
95 1.16.2.2 skrll }
96 1.16.2.2 skrll #endif
97 1.16.2.2 skrll
98 1.16.2.2 skrll /*
99 1.16.2.2 skrll * Send a management frame to the specified node. The node pointer
100 1.16.2.2 skrll * must have a reference as the pointer will be passed to the driver
101 1.16.2.2 skrll * and potentially held for a long time. If the frame is successfully
102 1.16.2.2 skrll * dispatched to the driver, then it is responsible for freeing the
103 1.16.2.2 skrll * reference (and potentially free'ing up any associated storage).
104 1.16.2.2 skrll */
105 1.16.2.2 skrll static int
106 1.16.2.9 skrll ieee80211_mgmt_output(struct ieee80211com *ic, struct ieee80211_node *ni,
107 1.16.2.2 skrll struct mbuf *m, int type)
108 1.16.2.2 skrll {
109 1.16.2.9 skrll struct ifnet *ifp = ic->ic_ifp;
110 1.16.2.2 skrll struct ieee80211_frame *wh;
111 1.16.2.2 skrll
112 1.16.2.2 skrll IASSERT(ni != NULL, ("null node"));
113 1.16.2.2 skrll
114 1.16.2.2 skrll /*
115 1.16.2.2 skrll * Yech, hack alert! We want to pass the node down to the
116 1.16.2.2 skrll * driver's start routine. If we don't do so then the start
117 1.16.2.2 skrll * routine must immediately look it up again and that can
118 1.16.2.2 skrll * cause a lock order reversal if, for example, this frame
119 1.16.2.2 skrll * is being sent because the station is being timedout and
120 1.16.2.2 skrll * the frame being sent is a DEAUTH message. We could stick
121 1.16.2.2 skrll * this in an m_tag and tack that on to the mbuf. However
122 1.16.2.2 skrll * that's rather expensive to do for every frame so instead
123 1.16.2.2 skrll * we stuff it in the rcvif field since outbound frames do
124 1.16.2.2 skrll * not (presently) use this.
125 1.16.2.2 skrll */
126 1.16.2.2 skrll M_PREPEND(m, sizeof(struct ieee80211_frame), M_DONTWAIT);
127 1.16.2.2 skrll if (m == NULL)
128 1.16.2.2 skrll return ENOMEM;
129 1.16.2.2 skrll #ifdef __FreeBSD__
130 1.16.2.2 skrll KASSERT(m->m_pkthdr.rcvif == NULL, ("rcvif not null"));
131 1.16.2.2 skrll #endif
132 1.16.2.2 skrll m->m_pkthdr.rcvif = (void *)ni;
133 1.16.2.2 skrll
134 1.16.2.2 skrll wh = mtod(m, struct ieee80211_frame *);
135 1.16.2.2 skrll wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_MGT | type;
136 1.16.2.2 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
137 1.16.2.9 skrll *(u_int16_t *)wh->i_dur = 0;
138 1.16.2.9 skrll *(u_int16_t *)wh->i_seq =
139 1.16.2.9 skrll htole16(ni->ni_txseqs[0] << IEEE80211_SEQ_SEQ_SHIFT);
140 1.16.2.9 skrll ni->ni_txseqs[0]++;
141 1.16.2.9 skrll /*
142 1.16.2.9 skrll * Hack. When sending PROBE_REQ frames while scanning we
143 1.16.2.9 skrll * explicitly force a broadcast rather than (as before) clobber
144 1.16.2.9 skrll * ni_macaddr and ni_bssid. This is stopgap, we need a way
145 1.16.2.9 skrll * to communicate this directly rather than do something
146 1.16.2.9 skrll * implicit based on surrounding state.
147 1.16.2.9 skrll */
148 1.16.2.9 skrll if (type == IEEE80211_FC0_SUBTYPE_PROBE_REQ &&
149 1.16.2.9 skrll (ic->ic_flags & IEEE80211_F_SCAN)) {
150 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr1, ifp->if_broadcastaddr);
151 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
152 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr3, ifp->if_broadcastaddr);
153 1.16.2.9 skrll } else {
154 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr1, ni->ni_macaddr);
155 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
156 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr3, ni->ni_bssid);
157 1.16.2.9 skrll }
158 1.16.2.2 skrll
159 1.16.2.2 skrll if ((m->m_flags & M_LINK0) != 0 && ni->ni_challenge != NULL) {
160 1.16.2.2 skrll m->m_flags &= ~M_LINK0;
161 1.16.2.2 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
162 1.16.2.9 skrll "[%s] encrypting frame (%s)\n",
163 1.16.2.9 skrll ether_sprintf(wh->i_addr1), __func__);
164 1.16.2.2 skrll wh->i_fc[1] |= IEEE80211_FC1_WEP;
165 1.16.2.2 skrll }
166 1.16.2.2 skrll #ifdef IEEE80211_DEBUG
167 1.16.2.2 skrll /* avoid printing too many frames */
168 1.16.2.2 skrll if ((ieee80211_msg_debug(ic) && doprint(ic, type)) ||
169 1.16.2.2 skrll ieee80211_msg_dumppkts(ic)) {
170 1.16.2.9 skrll printf("[%s] send %s on channel %u\n",
171 1.16.2.9 skrll ether_sprintf(wh->i_addr1),
172 1.16.2.2 skrll ieee80211_mgt_subtype_name[
173 1.16.2.9 skrll (type & IEEE80211_FC0_SUBTYPE_MASK) >>
174 1.16.2.9 skrll IEEE80211_FC0_SUBTYPE_SHIFT],
175 1.16.2.2 skrll ieee80211_chan2ieee(ic, ni->ni_chan));
176 1.16.2.2 skrll }
177 1.16.2.2 skrll #endif
178 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_mgmt);
179 1.16.2.2 skrll IF_ENQUEUE(&ic->ic_mgtq, m);
180 1.16.2.2 skrll ifp->if_timer = 1;
181 1.16.2.2 skrll (*ifp->if_start)(ifp);
182 1.16.2.2 skrll return 0;
183 1.16.2.2 skrll }
184 1.16.2.2 skrll
185 1.16.2.2 skrll /*
186 1.16.2.9 skrll * Send a null data frame to the specified node.
187 1.16.2.9 skrll */
188 1.16.2.9 skrll int
189 1.16.2.9 skrll ieee80211_send_nulldata(struct ieee80211com *ic, struct ieee80211_node *ni)
190 1.16.2.9 skrll {
191 1.16.2.9 skrll struct ifnet *ifp = ic->ic_ifp;
192 1.16.2.9 skrll struct mbuf *m;
193 1.16.2.9 skrll struct ieee80211_frame *wh;
194 1.16.2.9 skrll
195 1.16.2.9 skrll MGETHDR(m, M_NOWAIT, MT_HEADER);
196 1.16.2.9 skrll if (m == NULL) {
197 1.16.2.9 skrll /* XXX debug msg */
198 1.16.2.9 skrll ic->ic_stats.is_tx_nobuf++;
199 1.16.2.9 skrll return ENOMEM;
200 1.16.2.9 skrll }
201 1.16.2.9 skrll m->m_pkthdr.rcvif = (void *) ieee80211_ref_node(ni);
202 1.16.2.9 skrll
203 1.16.2.9 skrll wh = mtod(m, struct ieee80211_frame *);
204 1.16.2.9 skrll wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_DATA |
205 1.16.2.9 skrll IEEE80211_FC0_SUBTYPE_NODATA;
206 1.16.2.9 skrll *(u_int16_t *)wh->i_dur = 0;
207 1.16.2.9 skrll *(u_int16_t *)wh->i_seq =
208 1.16.2.9 skrll htole16(ni->ni_txseqs[0] << IEEE80211_SEQ_SEQ_SHIFT);
209 1.16.2.9 skrll ni->ni_txseqs[0]++;
210 1.16.2.9 skrll
211 1.16.2.9 skrll /* XXX WDS */
212 1.16.2.9 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_FROMDS;
213 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr1, ni->ni_macaddr);
214 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr2, ni->ni_bssid);
215 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr3, ic->ic_myaddr);
216 1.16.2.9 skrll m->m_len = m->m_pkthdr.len = sizeof(struct ieee80211_frame);
217 1.16.2.9 skrll
218 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_data);
219 1.16.2.9 skrll
220 1.16.2.9 skrll IF_ENQUEUE(&ic->ic_mgtq, m); /* cheat */
221 1.16.2.9 skrll (*ifp->if_start)(ifp);
222 1.16.2.9 skrll
223 1.16.2.9 skrll return 0;
224 1.16.2.9 skrll }
225 1.16.2.9 skrll
226 1.16.2.9 skrll /*
227 1.16.2.9 skrll * Assign priority to a frame based on any vlan tag assigned
228 1.16.2.9 skrll * to the station and/or any Diffserv setting in an IP header.
229 1.16.2.9 skrll * Finally, if an ACM policy is setup (in station mode) it's
230 1.16.2.9 skrll * applied.
231 1.16.2.9 skrll */
232 1.16.2.9 skrll int
233 1.16.2.9 skrll ieee80211_classify(struct ieee80211com *ic, struct mbuf *m, struct ieee80211_node *ni)
234 1.16.2.9 skrll {
235 1.16.2.9 skrll int v_wme_ac, d_wme_ac, ac;
236 1.16.2.9 skrll #ifdef INET
237 1.16.2.9 skrll struct ether_header *eh;
238 1.16.2.9 skrll #endif
239 1.16.2.9 skrll
240 1.16.2.9 skrll if ((ni->ni_flags & IEEE80211_NODE_QOS) == 0) {
241 1.16.2.9 skrll ac = WME_AC_BE;
242 1.16.2.9 skrll goto done;
243 1.16.2.9 skrll }
244 1.16.2.9 skrll
245 1.16.2.9 skrll /*
246 1.16.2.9 skrll * If node has a vlan tag then all traffic
247 1.16.2.9 skrll * to it must have a matching tag.
248 1.16.2.9 skrll */
249 1.16.2.9 skrll v_wme_ac = 0;
250 1.16.2.9 skrll if (ni->ni_vlan != 0) {
251 1.16.2.9 skrll /* XXX used to check ec_nvlans. */
252 1.16.2.9 skrll struct m_tag *mtag = m_tag_find(m, PACKET_TAG_VLAN, NULL);
253 1.16.2.9 skrll if (mtag == NULL) {
254 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_novlantag);
255 1.16.2.9 skrll return 1;
256 1.16.2.9 skrll }
257 1.16.2.9 skrll if (EVL_VLANOFTAG(VLAN_TAG_VALUE(mtag)) !=
258 1.16.2.9 skrll EVL_VLANOFTAG(ni->ni_vlan)) {
259 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_vlanmismatch);
260 1.16.2.9 skrll return 1;
261 1.16.2.9 skrll }
262 1.16.2.9 skrll /* map vlan priority to AC */
263 1.16.2.9 skrll switch (EVL_PRIOFTAG(ni->ni_vlan)) {
264 1.16.2.9 skrll case 1:
265 1.16.2.9 skrll case 2:
266 1.16.2.9 skrll v_wme_ac = WME_AC_BK;
267 1.16.2.9 skrll break;
268 1.16.2.9 skrll case 0:
269 1.16.2.9 skrll case 3:
270 1.16.2.9 skrll v_wme_ac = WME_AC_BE;
271 1.16.2.9 skrll break;
272 1.16.2.9 skrll case 4:
273 1.16.2.9 skrll case 5:
274 1.16.2.9 skrll v_wme_ac = WME_AC_VI;
275 1.16.2.9 skrll break;
276 1.16.2.9 skrll case 6:
277 1.16.2.9 skrll case 7:
278 1.16.2.9 skrll v_wme_ac = WME_AC_VO;
279 1.16.2.9 skrll break;
280 1.16.2.9 skrll }
281 1.16.2.9 skrll }
282 1.16.2.9 skrll
283 1.16.2.9 skrll #ifdef INET
284 1.16.2.9 skrll eh = mtod(m, struct ether_header *);
285 1.16.2.9 skrll if (eh->ether_type == htons(ETHERTYPE_IP)) {
286 1.16.2.9 skrll const struct ip *ip = (struct ip *)
287 1.16.2.9 skrll (mtod(m, u_int8_t *) + sizeof (*eh));
288 1.16.2.9 skrll /*
289 1.16.2.9 skrll * IP frame, map the TOS field.
290 1.16.2.9 skrll */
291 1.16.2.9 skrll switch (ip->ip_tos) {
292 1.16.2.9 skrll case 0x08:
293 1.16.2.9 skrll case 0x20:
294 1.16.2.9 skrll d_wme_ac = WME_AC_BK; /* background */
295 1.16.2.9 skrll break;
296 1.16.2.9 skrll case 0x28:
297 1.16.2.9 skrll case 0xa0:
298 1.16.2.9 skrll d_wme_ac = WME_AC_VI; /* video */
299 1.16.2.9 skrll break;
300 1.16.2.9 skrll case 0x30: /* voice */
301 1.16.2.9 skrll case 0xe0:
302 1.16.2.9 skrll case 0x88: /* XXX UPSD */
303 1.16.2.9 skrll case 0xb8:
304 1.16.2.9 skrll d_wme_ac = WME_AC_VO;
305 1.16.2.9 skrll break;
306 1.16.2.9 skrll default:
307 1.16.2.9 skrll d_wme_ac = WME_AC_BE;
308 1.16.2.9 skrll break;
309 1.16.2.9 skrll }
310 1.16.2.9 skrll } else {
311 1.16.2.9 skrll #endif /* INET */
312 1.16.2.9 skrll d_wme_ac = WME_AC_BE;
313 1.16.2.9 skrll #ifdef INET
314 1.16.2.9 skrll }
315 1.16.2.9 skrll #endif
316 1.16.2.9 skrll /*
317 1.16.2.9 skrll * Use highest priority AC.
318 1.16.2.9 skrll */
319 1.16.2.9 skrll if (v_wme_ac > d_wme_ac)
320 1.16.2.9 skrll ac = v_wme_ac;
321 1.16.2.9 skrll else
322 1.16.2.9 skrll ac = d_wme_ac;
323 1.16.2.9 skrll
324 1.16.2.9 skrll /*
325 1.16.2.9 skrll * Apply ACM policy.
326 1.16.2.9 skrll */
327 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_STA) {
328 1.16.2.9 skrll static const int acmap[4] = {
329 1.16.2.9 skrll WME_AC_BK, /* WME_AC_BE */
330 1.16.2.9 skrll WME_AC_BK, /* WME_AC_BK */
331 1.16.2.9 skrll WME_AC_BE, /* WME_AC_VI */
332 1.16.2.9 skrll WME_AC_VI, /* WME_AC_VO */
333 1.16.2.9 skrll };
334 1.16.2.9 skrll while (ac != WME_AC_BK &&
335 1.16.2.9 skrll ic->ic_wme.wme_wmeBssChanParams.cap_wmeParams[ac].wmep_acm)
336 1.16.2.9 skrll ac = acmap[ac];
337 1.16.2.9 skrll }
338 1.16.2.9 skrll done:
339 1.16.2.9 skrll M_WME_SETAC(m, ac);
340 1.16.2.9 skrll return 0;
341 1.16.2.9 skrll }
342 1.16.2.9 skrll
343 1.16.2.9 skrll /*
344 1.16.2.9 skrll * Insure there is sufficient contiguous space to encapsulate the
345 1.16.2.9 skrll * 802.11 data frame. If room isn't already there, arrange for it.
346 1.16.2.9 skrll * Drivers and cipher modules assume we have done the necessary work
347 1.16.2.9 skrll * and fail rudely if they don't find the space they need.
348 1.16.2.9 skrll */
349 1.16.2.9 skrll static struct mbuf *
350 1.16.2.9 skrll ieee80211_mbuf_adjust(struct ieee80211com *ic, int hdrsize,
351 1.16.2.9 skrll struct ieee80211_key *key, struct mbuf *m)
352 1.16.2.9 skrll {
353 1.16.2.9 skrll #define TO_BE_RECLAIMED (sizeof(struct ether_header) - sizeof(struct llc))
354 1.16.2.9 skrll int needed_space = hdrsize;
355 1.16.2.9 skrll int wlen = 0;
356 1.16.2.9 skrll
357 1.16.2.9 skrll if (key != NULL) {
358 1.16.2.9 skrll /* XXX belongs in crypto code? */
359 1.16.2.9 skrll needed_space += key->wk_cipher->ic_header;
360 1.16.2.9 skrll /* XXX frags */
361 1.16.2.9 skrll }
362 1.16.2.9 skrll /*
363 1.16.2.9 skrll * We know we are called just before stripping an Ethernet
364 1.16.2.9 skrll * header and prepending an LLC header. This means we know
365 1.16.2.9 skrll * there will be
366 1.16.2.9 skrll * sizeof(struct ether_header) - sizeof(struct llc)
367 1.16.2.9 skrll * bytes recovered to which we need additional space for the
368 1.16.2.9 skrll * 802.11 header and any crypto header.
369 1.16.2.9 skrll */
370 1.16.2.9 skrll /* XXX check trailing space and copy instead? */
371 1.16.2.9 skrll if (M_LEADINGSPACE(m) < needed_space - TO_BE_RECLAIMED) {
372 1.16.2.9 skrll struct mbuf *n = m_gethdr(M_NOWAIT, m->m_type);
373 1.16.2.9 skrll if (n == NULL) {
374 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_OUTPUT,
375 1.16.2.9 skrll "%s: cannot expand storage\n", __func__);
376 1.16.2.9 skrll ic->ic_stats.is_tx_nobuf++;
377 1.16.2.9 skrll m_freem(m);
378 1.16.2.9 skrll return NULL;
379 1.16.2.9 skrll }
380 1.16.2.9 skrll IASSERT(needed_space <= MHLEN,
381 1.16.2.9 skrll ("not enough room, need %u got %zu\n", needed_space, MHLEN));
382 1.16.2.9 skrll /*
383 1.16.2.9 skrll * Setup new mbuf to have leading space to prepend the
384 1.16.2.9 skrll * 802.11 header and any crypto header bits that are
385 1.16.2.9 skrll * required (the latter are added when the driver calls
386 1.16.2.9 skrll * back to ieee80211_crypto_encap to do crypto encapsulation).
387 1.16.2.9 skrll */
388 1.16.2.9 skrll /* NB: must be first 'cuz it clobbers m_data */
389 1.16.2.9 skrll M_MOVE_PKTHDR(n, m);
390 1.16.2.9 skrll n->m_len = 0; /* NB: m_gethdr does not set */
391 1.16.2.9 skrll n->m_data += needed_space;
392 1.16.2.9 skrll /*
393 1.16.2.9 skrll * Pull up Ethernet header to create the expected layout.
394 1.16.2.9 skrll * We could use m_pullup but that's overkill (i.e. we don't
395 1.16.2.9 skrll * need the actual data) and it cannot fail so do it inline
396 1.16.2.9 skrll * for speed.
397 1.16.2.9 skrll */
398 1.16.2.9 skrll /* NB: struct ether_header is known to be contiguous */
399 1.16.2.9 skrll n->m_len += sizeof(struct ether_header);
400 1.16.2.9 skrll m->m_len -= sizeof(struct ether_header);
401 1.16.2.9 skrll m->m_data += sizeof(struct ether_header);
402 1.16.2.9 skrll /*
403 1.16.2.9 skrll * Replace the head of the chain.
404 1.16.2.9 skrll */
405 1.16.2.9 skrll n->m_next = m;
406 1.16.2.9 skrll m = n;
407 1.16.2.9 skrll } else {
408 1.16.2.9 skrll /* We will overwrite the ethernet header in the
409 1.16.2.9 skrll * 802.11 encapsulation stage. Make sure that it
410 1.16.2.9 skrll * is writable.
411 1.16.2.9 skrll */
412 1.16.2.9 skrll wlen = sizeof(struct ether_header);
413 1.16.2.9 skrll }
414 1.16.2.9 skrll
415 1.16.2.9 skrll /*
416 1.16.2.9 skrll * If we're going to s/w encrypt the mbuf chain make sure it is
417 1.16.2.9 skrll * writable.
418 1.16.2.9 skrll */
419 1.16.2.9 skrll if (key != NULL && (key->wk_flags & IEEE80211_KEY_SWCRYPT) != 0)
420 1.16.2.9 skrll wlen = M_COPYALL;
421 1.16.2.9 skrll
422 1.16.2.9 skrll if (wlen != 0 && m_makewritable(&m, 0, wlen, M_DONTWAIT) != 0) {
423 1.16.2.9 skrll m_freem(m);
424 1.16.2.9 skrll return NULL;
425 1.16.2.9 skrll }
426 1.16.2.9 skrll return m;
427 1.16.2.9 skrll #undef TO_BE_RECLAIMED
428 1.16.2.9 skrll }
429 1.16.2.9 skrll
430 1.16.2.9 skrll /*
431 1.16.2.9 skrll * Return the transmit key to use in sending a unicast frame.
432 1.16.2.9 skrll * If a unicast key is set we use that. When no unicast key is set
433 1.16.2.9 skrll * we fall back to the default transmit key.
434 1.16.2.9 skrll */
435 1.16.2.9 skrll static __inline struct ieee80211_key *
436 1.16.2.9 skrll ieee80211_crypto_getucastkey(struct ieee80211com *ic, struct ieee80211_node *ni)
437 1.16.2.9 skrll {
438 1.16.2.9 skrll if (IEEE80211_KEY_UNDEFINED(ni->ni_ucastkey)) {
439 1.16.2.9 skrll if (ic->ic_def_txkey == IEEE80211_KEYIX_NONE ||
440 1.16.2.9 skrll IEEE80211_KEY_UNDEFINED(ic->ic_nw_keys[ic->ic_def_txkey]))
441 1.16.2.9 skrll return NULL;
442 1.16.2.9 skrll return &ic->ic_nw_keys[ic->ic_def_txkey];
443 1.16.2.9 skrll } else {
444 1.16.2.9 skrll return &ni->ni_ucastkey;
445 1.16.2.9 skrll }
446 1.16.2.9 skrll }
447 1.16.2.9 skrll
448 1.16.2.9 skrll /*
449 1.16.2.9 skrll * Return the transmit key to use in sending a multicast frame.
450 1.16.2.9 skrll * Multicast traffic always uses the group key which is installed as
451 1.16.2.9 skrll * the default tx key.
452 1.16.2.9 skrll */
453 1.16.2.9 skrll static __inline struct ieee80211_key *
454 1.16.2.9 skrll ieee80211_crypto_getmcastkey(struct ieee80211com *ic, struct ieee80211_node *ni)
455 1.16.2.9 skrll {
456 1.16.2.9 skrll if (ic->ic_def_txkey == IEEE80211_KEYIX_NONE ||
457 1.16.2.9 skrll IEEE80211_KEY_UNDEFINED(ic->ic_nw_keys[ic->ic_def_txkey]))
458 1.16.2.9 skrll return NULL;
459 1.16.2.9 skrll return &ic->ic_nw_keys[ic->ic_def_txkey];
460 1.16.2.9 skrll }
461 1.16.2.9 skrll
462 1.16.2.9 skrll /*
463 1.16.2.9 skrll * Encapsulate an outbound data frame. The mbuf chain is updated.
464 1.16.2.9 skrll * If an error is encountered NULL is returned. The caller is required
465 1.16.2.9 skrll * to provide a node reference and pullup the ethernet header in the
466 1.16.2.9 skrll * first mbuf.
467 1.16.2.2 skrll */
468 1.16.2.2 skrll struct mbuf *
469 1.16.2.9 skrll ieee80211_encap(struct ieee80211com *ic, struct mbuf *m,
470 1.16.2.9 skrll struct ieee80211_node *ni)
471 1.16.2.2 skrll {
472 1.16.2.2 skrll struct ether_header eh;
473 1.16.2.2 skrll struct ieee80211_frame *wh;
474 1.16.2.9 skrll struct ieee80211_key *key;
475 1.16.2.2 skrll struct llc *llc;
476 1.16.2.9 skrll int hdrsize, datalen, addqos;
477 1.16.2.2 skrll
478 1.16.2.9 skrll IASSERT(m->m_len >= sizeof(eh), ("no ethernet header!"));
479 1.16.2.2 skrll memcpy(&eh, mtod(m, caddr_t), sizeof(struct ether_header));
480 1.16.2.2 skrll
481 1.16.2.9 skrll /*
482 1.16.2.9 skrll * Insure space for additional headers. First identify
483 1.16.2.9 skrll * transmit key to use in calculating any buffer adjustments
484 1.16.2.9 skrll * required. This is also used below to do privacy
485 1.16.2.9 skrll * encapsulation work. Then calculate the 802.11 header
486 1.16.2.9 skrll * size and any padding required by the driver.
487 1.16.2.9 skrll *
488 1.16.2.9 skrll * Note key may be NULL if we fall back to the default
489 1.16.2.9 skrll * transmit key and that is not set. In that case the
490 1.16.2.9 skrll * buffer may not be expanded as needed by the cipher
491 1.16.2.9 skrll * routines, but they will/should discard it.
492 1.16.2.9 skrll */
493 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY) {
494 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_STA ||
495 1.16.2.9 skrll !IEEE80211_IS_MULTICAST(eh.ether_dhost))
496 1.16.2.9 skrll key = ieee80211_crypto_getucastkey(ic, ni);
497 1.16.2.9 skrll else
498 1.16.2.9 skrll key = ieee80211_crypto_getmcastkey(ic, ni);
499 1.16.2.9 skrll if (key == NULL && eh.ether_type != htons(ETHERTYPE_PAE)) {
500 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
501 1.16.2.9 skrll "[%s] no default transmit key (%s) deftxkey %u\n",
502 1.16.2.9 skrll ether_sprintf(eh.ether_dhost), __func__,
503 1.16.2.9 skrll ic->ic_def_txkey);
504 1.16.2.9 skrll ic->ic_stats.is_tx_nodefkey++;
505 1.16.2.9 skrll }
506 1.16.2.9 skrll } else
507 1.16.2.9 skrll key = NULL;
508 1.16.2.9 skrll /* XXX 4-address format */
509 1.16.2.9 skrll /*
510 1.16.2.9 skrll * XXX Some ap's don't handle QoS-encapsulated EAPOL
511 1.16.2.9 skrll * frames so suppress use. This may be an issue if other
512 1.16.2.9 skrll * ap's require all data frames to be QoS-encapsulated
513 1.16.2.9 skrll * once negotiated in which case we'll need to make this
514 1.16.2.9 skrll * configurable.
515 1.16.2.9 skrll */
516 1.16.2.9 skrll addqos = (ni->ni_flags & IEEE80211_NODE_QOS) &&
517 1.16.2.9 skrll eh.ether_type != htons(ETHERTYPE_PAE);
518 1.16.2.9 skrll if (addqos)
519 1.16.2.9 skrll hdrsize = sizeof(struct ieee80211_qosframe);
520 1.16.2.9 skrll else
521 1.16.2.9 skrll hdrsize = sizeof(struct ieee80211_frame);
522 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_DATAPAD)
523 1.16.2.9 skrll hdrsize = roundup(hdrsize, sizeof(u_int32_t));
524 1.16.2.9 skrll m = ieee80211_mbuf_adjust(ic, hdrsize, key, m);
525 1.16.2.9 skrll if (m == NULL) {
526 1.16.2.9 skrll /* NB: ieee80211_mbuf_adjust handles msgs+statistics */
527 1.16.2.2 skrll goto bad;
528 1.16.2.2 skrll }
529 1.16.2.2 skrll
530 1.16.2.9 skrll /* NB: this could be optimized because of ieee80211_mbuf_adjust */
531 1.16.2.2 skrll m_adj(m, sizeof(struct ether_header) - sizeof(struct llc));
532 1.16.2.2 skrll llc = mtod(m, struct llc *);
533 1.16.2.2 skrll llc->llc_dsap = llc->llc_ssap = LLC_SNAP_LSAP;
534 1.16.2.2 skrll llc->llc_control = LLC_UI;
535 1.16.2.2 skrll llc->llc_snap.org_code[0] = 0;
536 1.16.2.2 skrll llc->llc_snap.org_code[1] = 0;
537 1.16.2.2 skrll llc->llc_snap.org_code[2] = 0;
538 1.16.2.2 skrll llc->llc_snap.ether_type = eh.ether_type;
539 1.16.2.9 skrll datalen = m->m_pkthdr.len; /* NB: w/o 802.11 header */
540 1.16.2.9 skrll
541 1.16.2.9 skrll M_PREPEND(m, hdrsize, M_DONTWAIT);
542 1.16.2.2 skrll if (m == NULL) {
543 1.16.2.9 skrll ic->ic_stats.is_tx_nobuf++;
544 1.16.2.2 skrll goto bad;
545 1.16.2.2 skrll }
546 1.16.2.2 skrll wh = mtod(m, struct ieee80211_frame *);
547 1.16.2.2 skrll wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_DATA;
548 1.16.2.9 skrll *(u_int16_t *)wh->i_dur = 0;
549 1.16.2.2 skrll switch (ic->ic_opmode) {
550 1.16.2.2 skrll case IEEE80211_M_STA:
551 1.16.2.2 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_TODS;
552 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr1, ni->ni_bssid);
553 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr2, eh.ether_shost);
554 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr3, eh.ether_dhost);
555 1.16.2.2 skrll break;
556 1.16.2.2 skrll case IEEE80211_M_IBSS:
557 1.16.2.2 skrll case IEEE80211_M_AHDEMO:
558 1.16.2.2 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
559 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr1, eh.ether_dhost);
560 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr2, eh.ether_shost);
561 1.16.2.9 skrll /*
562 1.16.2.9 skrll * NB: always use the bssid from ic_bss as the
563 1.16.2.9 skrll * neighbor's may be stale after an ibss merge
564 1.16.2.9 skrll */
565 1.16.2.7 skrll IEEE80211_ADDR_COPY(wh->i_addr3, ic->ic_bss->ni_bssid);
566 1.16.2.2 skrll break;
567 1.16.2.2 skrll case IEEE80211_M_HOSTAP:
568 1.16.2.9 skrll #ifndef IEEE80211_NO_HOSTAP
569 1.16.2.2 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_FROMDS;
570 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr1, eh.ether_dhost);
571 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr2, ni->ni_bssid);
572 1.16.2.2 skrll IEEE80211_ADDR_COPY(wh->i_addr3, eh.ether_shost);
573 1.16.2.9 skrll #endif /* !IEEE80211_NO_HOSTAP */
574 1.16.2.2 skrll break;
575 1.16.2.2 skrll case IEEE80211_M_MONITOR:
576 1.16.2.2 skrll goto bad;
577 1.16.2.2 skrll }
578 1.16.2.9 skrll if (m->m_flags & M_MORE_DATA)
579 1.16.2.9 skrll wh->i_fc[1] |= IEEE80211_FC1_MORE_DATA;
580 1.16.2.9 skrll if (addqos) {
581 1.16.2.9 skrll struct ieee80211_qosframe *qwh =
582 1.16.2.9 skrll (struct ieee80211_qosframe *) wh;
583 1.16.2.9 skrll int ac, tid;
584 1.16.2.9 skrll
585 1.16.2.9 skrll ac = M_WME_GETAC(m);
586 1.16.2.9 skrll /* map from access class/queue to 11e header priorty value */
587 1.16.2.9 skrll tid = WME_AC_TO_TID(ac);
588 1.16.2.9 skrll qwh->i_qos[0] = tid & IEEE80211_QOS_TID;
589 1.16.2.9 skrll if (ic->ic_wme.wme_wmeChanParams.cap_wmeParams[ac].wmep_noackPolicy)
590 1.16.2.9 skrll qwh->i_qos[0] |= 1 << IEEE80211_QOS_ACKPOLICY_S;
591 1.16.2.9 skrll qwh->i_qos[1] = 0;
592 1.16.2.9 skrll qwh->i_fc[0] |= IEEE80211_FC0_SUBTYPE_QOS;
593 1.16.2.9 skrll
594 1.16.2.9 skrll *(u_int16_t *)wh->i_seq =
595 1.16.2.9 skrll htole16(ni->ni_txseqs[tid] << IEEE80211_SEQ_SEQ_SHIFT);
596 1.16.2.9 skrll ni->ni_txseqs[tid]++;
597 1.16.2.9 skrll } else {
598 1.16.2.9 skrll *(u_int16_t *)wh->i_seq =
599 1.16.2.9 skrll htole16(ni->ni_txseqs[0] << IEEE80211_SEQ_SEQ_SHIFT);
600 1.16.2.9 skrll ni->ni_txseqs[0]++;
601 1.16.2.9 skrll }
602 1.16.2.9 skrll if (key != NULL) {
603 1.16.2.9 skrll /*
604 1.16.2.9 skrll * IEEE 802.1X: send EAPOL frames always in the clear.
605 1.16.2.9 skrll * WPA/WPA2: encrypt EAPOL keys when pairwise keys are set.
606 1.16.2.9 skrll */
607 1.16.2.9 skrll if (eh.ether_type != htons(ETHERTYPE_PAE) ||
608 1.16.2.9 skrll ((ic->ic_flags & IEEE80211_F_WPA) &&
609 1.16.2.9 skrll (ic->ic_opmode == IEEE80211_M_STA ?
610 1.16.2.9 skrll !IEEE80211_KEY_UNDEFINED(*key) :
611 1.16.2.9 skrll !IEEE80211_KEY_UNDEFINED(ni->ni_ucastkey)))) {
612 1.16.2.9 skrll wh->i_fc[1] |= IEEE80211_FC1_WEP;
613 1.16.2.9 skrll /* XXX do fragmentation */
614 1.16.2.9 skrll if (!ieee80211_crypto_enmic(ic, key, m, 0)) {
615 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_OUTPUT,
616 1.16.2.9 skrll "[%s] enmic failed, discard frame\n",
617 1.16.2.9 skrll ether_sprintf(eh.ether_dhost));
618 1.16.2.9 skrll ic->ic_stats.is_crypto_enmicfail++;
619 1.16.2.9 skrll goto bad;
620 1.16.2.9 skrll }
621 1.16.2.9 skrll }
622 1.16.2.9 skrll }
623 1.16.2.9 skrll
624 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_data);
625 1.16.2.9 skrll IEEE80211_NODE_STAT_ADD(ni, tx_bytes, datalen);
626 1.16.2.9 skrll
627 1.16.2.2 skrll return m;
628 1.16.2.2 skrll bad:
629 1.16.2.2 skrll if (m != NULL)
630 1.16.2.2 skrll m_freem(m);
631 1.16.2.2 skrll return NULL;
632 1.16.2.2 skrll }
633 1.16.2.2 skrll
634 1.16.2.2 skrll /*
635 1.16.2.6 skrll * Arguments in:
636 1.16.2.6 skrll *
637 1.16.2.6 skrll * paylen: payload length (no FCS, no WEP header)
638 1.16.2.6 skrll *
639 1.16.2.6 skrll * hdrlen: header length
640 1.16.2.6 skrll *
641 1.16.2.6 skrll * rate: MSDU speed, units 500kb/s
642 1.16.2.6 skrll *
643 1.16.2.6 skrll * flags: IEEE80211_F_SHPREAMBLE (use short preamble),
644 1.16.2.6 skrll * IEEE80211_F_SHSLOT (use short slot length)
645 1.16.2.6 skrll *
646 1.16.2.6 skrll * Arguments out:
647 1.16.2.6 skrll *
648 1.16.2.6 skrll * d: 802.11 Duration field for RTS,
649 1.16.2.6 skrll * 802.11 Duration field for data frame,
650 1.16.2.6 skrll * PLCP Length for data frame,
651 1.16.2.6 skrll * residual octets at end of data slot
652 1.16.2.6 skrll */
653 1.16.2.6 skrll static int
654 1.16.2.6 skrll ieee80211_compute_duration1(int len, int use_ack, uint32_t flags, int rate,
655 1.16.2.6 skrll struct ieee80211_duration *d)
656 1.16.2.6 skrll {
657 1.16.2.6 skrll int pre, ctsrate;
658 1.16.2.6 skrll int ack, bitlen, data_dur, remainder;
659 1.16.2.6 skrll
660 1.16.2.6 skrll /* RTS reserves medium for SIFS | CTS | SIFS | (DATA) | SIFS | ACK
661 1.16.2.6 skrll * DATA reserves medium for SIFS | ACK
662 1.16.2.6 skrll *
663 1.16.2.6 skrll * XXXMYC: no ACK on multicast/broadcast or control packets
664 1.16.2.6 skrll */
665 1.16.2.6 skrll
666 1.16.2.6 skrll bitlen = len * 8;
667 1.16.2.6 skrll
668 1.16.2.6 skrll pre = IEEE80211_DUR_DS_SIFS;
669 1.16.2.6 skrll if ((flags & IEEE80211_F_SHPREAMBLE) != 0)
670 1.16.2.6 skrll pre += IEEE80211_DUR_DS_SHORT_PREAMBLE + IEEE80211_DUR_DS_FAST_PLCPHDR;
671 1.16.2.6 skrll else
672 1.16.2.6 skrll pre += IEEE80211_DUR_DS_LONG_PREAMBLE + IEEE80211_DUR_DS_SLOW_PLCPHDR;
673 1.16.2.6 skrll
674 1.16.2.6 skrll d->d_residue = 0;
675 1.16.2.6 skrll data_dur = (bitlen * 2) / rate;
676 1.16.2.6 skrll remainder = (bitlen * 2) % rate;
677 1.16.2.6 skrll if (remainder != 0) {
678 1.16.2.6 skrll d->d_residue = (rate - remainder) / 16;
679 1.16.2.6 skrll data_dur++;
680 1.16.2.6 skrll }
681 1.16.2.6 skrll
682 1.16.2.6 skrll switch (rate) {
683 1.16.2.6 skrll case 2: /* 1 Mb/s */
684 1.16.2.6 skrll case 4: /* 2 Mb/s */
685 1.16.2.6 skrll /* 1 - 2 Mb/s WLAN: send ACK/CTS at 1 Mb/s */
686 1.16.2.6 skrll ctsrate = 2;
687 1.16.2.6 skrll break;
688 1.16.2.6 skrll case 11: /* 5.5 Mb/s */
689 1.16.2.6 skrll case 22: /* 11 Mb/s */
690 1.16.2.6 skrll case 44: /* 22 Mb/s */
691 1.16.2.6 skrll /* 5.5 - 11 Mb/s WLAN: send ACK/CTS at 2 Mb/s */
692 1.16.2.6 skrll ctsrate = 4;
693 1.16.2.6 skrll break;
694 1.16.2.6 skrll default:
695 1.16.2.6 skrll /* TBD */
696 1.16.2.6 skrll return -1;
697 1.16.2.6 skrll }
698 1.16.2.6 skrll
699 1.16.2.6 skrll d->d_plcp_len = data_dur;
700 1.16.2.6 skrll
701 1.16.2.6 skrll ack = (use_ack) ? pre + (IEEE80211_DUR_DS_SLOW_ACK * 2) / ctsrate : 0;
702 1.16.2.6 skrll
703 1.16.2.6 skrll d->d_rts_dur =
704 1.16.2.6 skrll pre + (IEEE80211_DUR_DS_SLOW_CTS * 2) / ctsrate +
705 1.16.2.6 skrll pre + data_dur +
706 1.16.2.6 skrll ack;
707 1.16.2.6 skrll
708 1.16.2.6 skrll d->d_data_dur = ack;
709 1.16.2.6 skrll
710 1.16.2.6 skrll return 0;
711 1.16.2.6 skrll }
712 1.16.2.6 skrll
713 1.16.2.6 skrll /*
714 1.16.2.6 skrll * Arguments in:
715 1.16.2.6 skrll *
716 1.16.2.6 skrll * wh: 802.11 header
717 1.16.2.6 skrll *
718 1.16.2.6 skrll * paylen: payload length (no FCS, no WEP header)
719 1.16.2.6 skrll *
720 1.16.2.6 skrll * rate: MSDU speed, units 500kb/s
721 1.16.2.6 skrll *
722 1.16.2.6 skrll * fraglen: fragment length, set to maximum (or higher) for no
723 1.16.2.6 skrll * fragmentation
724 1.16.2.6 skrll *
725 1.16.2.6 skrll * flags: IEEE80211_F_PRIVACY (hardware adds WEP),
726 1.16.2.6 skrll * IEEE80211_F_SHPREAMBLE (use short preamble),
727 1.16.2.6 skrll * IEEE80211_F_SHSLOT (use short slot length)
728 1.16.2.6 skrll *
729 1.16.2.6 skrll * Arguments out:
730 1.16.2.6 skrll *
731 1.16.2.6 skrll * d0: 802.11 Duration fields (RTS/Data), PLCP Length, Service fields
732 1.16.2.6 skrll * of first/only fragment
733 1.16.2.6 skrll *
734 1.16.2.6 skrll * dn: 802.11 Duration fields (RTS/Data), PLCP Length, Service fields
735 1.16.2.6 skrll * of first/only fragment
736 1.16.2.6 skrll */
737 1.16.2.6 skrll int
738 1.16.2.9 skrll ieee80211_compute_duration(struct ieee80211_frame_min *wh, int len,
739 1.16.2.6 skrll uint32_t flags, int fraglen, int rate, struct ieee80211_duration *d0,
740 1.16.2.6 skrll struct ieee80211_duration *dn, int *npktp, int debug)
741 1.16.2.6 skrll {
742 1.16.2.6 skrll int ack, rc;
743 1.16.2.6 skrll int firstlen, hdrlen, lastlen, lastlen0, npkt, overlen, paylen;
744 1.16.2.6 skrll
745 1.16.2.6 skrll if ((wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) == IEEE80211_FC1_DIR_DSTODS)
746 1.16.2.6 skrll hdrlen = sizeof(struct ieee80211_frame_addr4);
747 1.16.2.6 skrll else
748 1.16.2.6 skrll hdrlen = sizeof(struct ieee80211_frame);
749 1.16.2.6 skrll
750 1.16.2.6 skrll paylen = len - hdrlen;
751 1.16.2.6 skrll
752 1.16.2.9 skrll if ((wh->i_fc[1] & IEEE80211_FC1_WEP) != 0) {
753 1.16.2.9 skrll /* XXX assumes the packet is already WEP encapsulated */
754 1.16.2.9 skrll paylen -= IEEE80211_WEP_TOTLEN;
755 1.16.2.6 skrll overlen = IEEE80211_WEP_TOTLEN + IEEE80211_CRC_LEN;
756 1.16.2.9 skrll } else
757 1.16.2.6 skrll overlen = IEEE80211_CRC_LEN;
758 1.16.2.6 skrll
759 1.16.2.6 skrll npkt = paylen / fraglen;
760 1.16.2.6 skrll lastlen0 = paylen % fraglen;
761 1.16.2.6 skrll
762 1.16.2.6 skrll if (npkt == 0) /* no fragments */
763 1.16.2.6 skrll lastlen = paylen + overlen;
764 1.16.2.6 skrll else if (lastlen0 != 0) { /* a short "tail" fragment */
765 1.16.2.6 skrll lastlen = lastlen0 + overlen;
766 1.16.2.6 skrll npkt++;
767 1.16.2.6 skrll } else /* full-length "tail" fragment */
768 1.16.2.6 skrll lastlen = fraglen + overlen;
769 1.16.2.6 skrll
770 1.16.2.6 skrll if (npktp != NULL)
771 1.16.2.6 skrll *npktp = npkt;
772 1.16.2.6 skrll
773 1.16.2.6 skrll if (npkt > 1)
774 1.16.2.6 skrll firstlen = fraglen + overlen;
775 1.16.2.6 skrll else
776 1.16.2.6 skrll firstlen = paylen + overlen;
777 1.16.2.6 skrll
778 1.16.2.6 skrll if (debug) {
779 1.16.2.6 skrll printf("%s: npkt %d firstlen %d lastlen0 %d lastlen %d "
780 1.16.2.6 skrll "fraglen %d overlen %d len %d rate %d flags %08x\n",
781 1.16.2.6 skrll __func__, npkt, firstlen, lastlen0, lastlen, fraglen,
782 1.16.2.6 skrll overlen, len, rate, flags);
783 1.16.2.6 skrll }
784 1.16.2.6 skrll
785 1.16.2.6 skrll ack = !IEEE80211_IS_MULTICAST(wh->i_addr1) &&
786 1.16.2.6 skrll (wh->i_fc[1] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_CTL;
787 1.16.2.6 skrll
788 1.16.2.6 skrll rc = ieee80211_compute_duration1(firstlen + hdrlen,
789 1.16.2.6 skrll ack, flags, rate, d0);
790 1.16.2.6 skrll if (rc == -1)
791 1.16.2.6 skrll return rc;
792 1.16.2.6 skrll
793 1.16.2.6 skrll if (npkt <= 1) {
794 1.16.2.6 skrll *dn = *d0;
795 1.16.2.6 skrll return 0;
796 1.16.2.6 skrll }
797 1.16.2.6 skrll return ieee80211_compute_duration1(lastlen + hdrlen, ack, flags, rate,
798 1.16.2.6 skrll dn);
799 1.16.2.6 skrll }
800 1.16.2.6 skrll
801 1.16.2.6 skrll /*
802 1.16.2.2 skrll * Add a supported rates element id to a frame.
803 1.16.2.2 skrll */
804 1.16.2.9 skrll static u_int8_t *
805 1.16.2.2 skrll ieee80211_add_rates(u_int8_t *frm, const struct ieee80211_rateset *rs)
806 1.16.2.2 skrll {
807 1.16.2.2 skrll int nrates;
808 1.16.2.2 skrll
809 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_RATES;
810 1.16.2.2 skrll nrates = rs->rs_nrates;
811 1.16.2.2 skrll if (nrates > IEEE80211_RATE_SIZE)
812 1.16.2.2 skrll nrates = IEEE80211_RATE_SIZE;
813 1.16.2.2 skrll *frm++ = nrates;
814 1.16.2.2 skrll memcpy(frm, rs->rs_rates, nrates);
815 1.16.2.2 skrll return frm + nrates;
816 1.16.2.2 skrll }
817 1.16.2.2 skrll
818 1.16.2.2 skrll /*
819 1.16.2.2 skrll * Add an extended supported rates element id to a frame.
820 1.16.2.2 skrll */
821 1.16.2.9 skrll static u_int8_t *
822 1.16.2.2 skrll ieee80211_add_xrates(u_int8_t *frm, const struct ieee80211_rateset *rs)
823 1.16.2.2 skrll {
824 1.16.2.2 skrll /*
825 1.16.2.2 skrll * Add an extended supported rates element if operating in 11g mode.
826 1.16.2.2 skrll */
827 1.16.2.2 skrll if (rs->rs_nrates > IEEE80211_RATE_SIZE) {
828 1.16.2.2 skrll int nrates = rs->rs_nrates - IEEE80211_RATE_SIZE;
829 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_XRATES;
830 1.16.2.2 skrll *frm++ = nrates;
831 1.16.2.2 skrll memcpy(frm, rs->rs_rates + IEEE80211_RATE_SIZE, nrates);
832 1.16.2.2 skrll frm += nrates;
833 1.16.2.2 skrll }
834 1.16.2.2 skrll return frm;
835 1.16.2.2 skrll }
836 1.16.2.2 skrll
837 1.16.2.9 skrll /*
838 1.16.2.2 skrll * Add an ssid elemet to a frame.
839 1.16.2.2 skrll */
840 1.16.2.2 skrll static u_int8_t *
841 1.16.2.2 skrll ieee80211_add_ssid(u_int8_t *frm, const u_int8_t *ssid, u_int len)
842 1.16.2.2 skrll {
843 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_SSID;
844 1.16.2.2 skrll *frm++ = len;
845 1.16.2.2 skrll memcpy(frm, ssid, len);
846 1.16.2.2 skrll return frm + len;
847 1.16.2.2 skrll }
848 1.16.2.2 skrll
849 1.16.2.9 skrll /*
850 1.16.2.9 skrll * Add an erp element to a frame.
851 1.16.2.9 skrll */
852 1.16.2.9 skrll static u_int8_t *
853 1.16.2.9 skrll ieee80211_add_erp(u_int8_t *frm, struct ieee80211com *ic)
854 1.16.2.2 skrll {
855 1.16.2.9 skrll u_int8_t erp;
856 1.16.2.2 skrll
857 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_ERP;
858 1.16.2.9 skrll *frm++ = 1;
859 1.16.2.9 skrll erp = 0;
860 1.16.2.9 skrll if (ic->ic_nonerpsta != 0)
861 1.16.2.9 skrll erp |= IEEE80211_ERP_NON_ERP_PRESENT;
862 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_USEPROT)
863 1.16.2.9 skrll erp |= IEEE80211_ERP_USE_PROTECTION;
864 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_USEBARKER)
865 1.16.2.9 skrll erp |= IEEE80211_ERP_LONG_PREAMBLE;
866 1.16.2.9 skrll *frm++ = erp;
867 1.16.2.9 skrll return frm;
868 1.16.2.2 skrll }
869 1.16.2.2 skrll
870 1.16.2.9 skrll static u_int8_t *
871 1.16.2.9 skrll ieee80211_setup_wpa_ie(struct ieee80211com *ic, u_int8_t *ie)
872 1.16.2.9 skrll {
873 1.16.2.9 skrll #define WPA_OUI_BYTES 0x00, 0x50, 0xf2
874 1.16.2.9 skrll #define ADDSHORT(frm, v) do { \
875 1.16.2.9 skrll frm[0] = (v) & 0xff; \
876 1.16.2.9 skrll frm[1] = (v) >> 8; \
877 1.16.2.9 skrll frm += 2; \
878 1.16.2.9 skrll } while (0)
879 1.16.2.9 skrll #define ADDSELECTOR(frm, sel) do { \
880 1.16.2.9 skrll memcpy(frm, sel, 4); \
881 1.16.2.9 skrll frm += 4; \
882 1.16.2.9 skrll } while (0)
883 1.16.2.9 skrll static const u_int8_t oui[4] = { WPA_OUI_BYTES, WPA_OUI_TYPE };
884 1.16.2.9 skrll static const u_int8_t cipher_suite[][4] = {
885 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_CSE_WEP40 }, /* NB: 40-bit */
886 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_CSE_TKIP },
887 1.16.2.9 skrll { 0x00, 0x00, 0x00, 0x00 }, /* XXX WRAP */
888 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_CSE_CCMP },
889 1.16.2.9 skrll { 0x00, 0x00, 0x00, 0x00 }, /* XXX CKIP */
890 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_CSE_NULL },
891 1.16.2.9 skrll };
892 1.16.2.9 skrll static const u_int8_t wep104_suite[4] =
893 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_CSE_WEP104 };
894 1.16.2.9 skrll static const u_int8_t key_mgt_unspec[4] =
895 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_ASE_8021X_UNSPEC };
896 1.16.2.9 skrll static const u_int8_t key_mgt_psk[4] =
897 1.16.2.9 skrll { WPA_OUI_BYTES, WPA_ASE_8021X_PSK };
898 1.16.2.9 skrll const struct ieee80211_rsnparms *rsn = &ic->ic_bss->ni_rsn;
899 1.16.2.9 skrll u_int8_t *frm = ie;
900 1.16.2.9 skrll u_int8_t *selcnt;
901 1.16.2.9 skrll
902 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_VENDOR;
903 1.16.2.9 skrll *frm++ = 0; /* length filled in below */
904 1.16.2.9 skrll memcpy(frm, oui, sizeof(oui)); /* WPA OUI */
905 1.16.2.9 skrll frm += sizeof(oui);
906 1.16.2.9 skrll ADDSHORT(frm, WPA_VERSION);
907 1.16.2.9 skrll
908 1.16.2.9 skrll /* XXX filter out CKIP */
909 1.16.2.9 skrll
910 1.16.2.9 skrll /* multicast cipher */
911 1.16.2.9 skrll if (rsn->rsn_mcastcipher == IEEE80211_CIPHER_WEP &&
912 1.16.2.9 skrll rsn->rsn_mcastkeylen >= 13)
913 1.16.2.9 skrll ADDSELECTOR(frm, wep104_suite);
914 1.16.2.9 skrll else
915 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[rsn->rsn_mcastcipher]);
916 1.16.2.9 skrll
917 1.16.2.9 skrll /* unicast cipher list */
918 1.16.2.9 skrll selcnt = frm;
919 1.16.2.9 skrll ADDSHORT(frm, 0); /* selector count */
920 1.16.2.9 skrll if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_AES_CCM)) {
921 1.16.2.9 skrll selcnt[0]++;
922 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_AES_CCM]);
923 1.16.2.9 skrll }
924 1.16.2.9 skrll if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_TKIP)) {
925 1.16.2.9 skrll selcnt[0]++;
926 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_TKIP]);
927 1.16.2.9 skrll }
928 1.16.2.9 skrll
929 1.16.2.9 skrll /* authenticator selector list */
930 1.16.2.9 skrll selcnt = frm;
931 1.16.2.9 skrll ADDSHORT(frm, 0); /* selector count */
932 1.16.2.9 skrll if (rsn->rsn_keymgmtset & WPA_ASE_8021X_UNSPEC) {
933 1.16.2.9 skrll selcnt[0]++;
934 1.16.2.9 skrll ADDSELECTOR(frm, key_mgt_unspec);
935 1.16.2.9 skrll }
936 1.16.2.9 skrll if (rsn->rsn_keymgmtset & WPA_ASE_8021X_PSK) {
937 1.16.2.9 skrll selcnt[0]++;
938 1.16.2.9 skrll ADDSELECTOR(frm, key_mgt_psk);
939 1.16.2.9 skrll }
940 1.16.2.9 skrll
941 1.16.2.9 skrll /* optional capabilities */
942 1.16.2.9 skrll if (rsn->rsn_caps != 0 && rsn->rsn_caps != RSN_CAP_PREAUTH)
943 1.16.2.9 skrll ADDSHORT(frm, rsn->rsn_caps);
944 1.16.2.9 skrll
945 1.16.2.9 skrll /* calculate element length */
946 1.16.2.9 skrll ie[1] = frm - ie - 2;
947 1.16.2.9 skrll IASSERT(ie[1]+2 <= sizeof(struct ieee80211_ie_wpa),
948 1.16.2.9 skrll ("WPA IE too big, %u > %zu",
949 1.16.2.9 skrll ie[1]+2, sizeof(struct ieee80211_ie_wpa)));
950 1.16.2.9 skrll return frm;
951 1.16.2.9 skrll #undef ADDSHORT
952 1.16.2.9 skrll #undef ADDSELECTOR
953 1.16.2.9 skrll #undef WPA_OUI_BYTES
954 1.16.2.9 skrll }
955 1.16.2.9 skrll
956 1.16.2.9 skrll static u_int8_t *
957 1.16.2.9 skrll ieee80211_setup_rsn_ie(struct ieee80211com *ic, u_int8_t *ie)
958 1.16.2.9 skrll {
959 1.16.2.9 skrll #define RSN_OUI_BYTES 0x00, 0x0f, 0xac
960 1.16.2.9 skrll #define ADDSHORT(frm, v) do { \
961 1.16.2.9 skrll frm[0] = (v) & 0xff; \
962 1.16.2.9 skrll frm[1] = (v) >> 8; \
963 1.16.2.9 skrll frm += 2; \
964 1.16.2.9 skrll } while (0)
965 1.16.2.9 skrll #define ADDSELECTOR(frm, sel) do { \
966 1.16.2.9 skrll memcpy(frm, sel, 4); \
967 1.16.2.9 skrll frm += 4; \
968 1.16.2.9 skrll } while (0)
969 1.16.2.9 skrll static const u_int8_t cipher_suite[][4] = {
970 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_WEP40 }, /* NB: 40-bit */
971 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_TKIP },
972 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_WRAP },
973 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_CCMP },
974 1.16.2.9 skrll { 0x00, 0x00, 0x00, 0x00 }, /* XXX CKIP */
975 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_NULL },
976 1.16.2.9 skrll };
977 1.16.2.9 skrll static const u_int8_t wep104_suite[4] =
978 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_CSE_WEP104 };
979 1.16.2.9 skrll static const u_int8_t key_mgt_unspec[4] =
980 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_ASE_8021X_UNSPEC };
981 1.16.2.9 skrll static const u_int8_t key_mgt_psk[4] =
982 1.16.2.9 skrll { RSN_OUI_BYTES, RSN_ASE_8021X_PSK };
983 1.16.2.9 skrll const struct ieee80211_rsnparms *rsn = &ic->ic_bss->ni_rsn;
984 1.16.2.9 skrll u_int8_t *frm = ie;
985 1.16.2.9 skrll u_int8_t *selcnt;
986 1.16.2.9 skrll
987 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_RSN;
988 1.16.2.9 skrll *frm++ = 0; /* length filled in below */
989 1.16.2.9 skrll ADDSHORT(frm, RSN_VERSION);
990 1.16.2.9 skrll
991 1.16.2.9 skrll /* XXX filter out CKIP */
992 1.16.2.9 skrll
993 1.16.2.9 skrll /* multicast cipher */
994 1.16.2.9 skrll if (rsn->rsn_mcastcipher == IEEE80211_CIPHER_WEP &&
995 1.16.2.9 skrll rsn->rsn_mcastkeylen >= 13)
996 1.16.2.9 skrll ADDSELECTOR(frm, wep104_suite);
997 1.16.2.9 skrll else
998 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[rsn->rsn_mcastcipher]);
999 1.16.2.9 skrll
1000 1.16.2.9 skrll /* unicast cipher list */
1001 1.16.2.9 skrll selcnt = frm;
1002 1.16.2.9 skrll ADDSHORT(frm, 0); /* selector count */
1003 1.16.2.9 skrll if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_AES_CCM)) {
1004 1.16.2.9 skrll selcnt[0]++;
1005 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_AES_CCM]);
1006 1.16.2.9 skrll }
1007 1.16.2.9 skrll if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_TKIP)) {
1008 1.16.2.9 skrll selcnt[0]++;
1009 1.16.2.9 skrll ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_TKIP]);
1010 1.16.2.9 skrll }
1011 1.16.2.9 skrll
1012 1.16.2.9 skrll /* authenticator selector list */
1013 1.16.2.9 skrll selcnt = frm;
1014 1.16.2.9 skrll ADDSHORT(frm, 0); /* selector count */
1015 1.16.2.9 skrll if (rsn->rsn_keymgmtset & WPA_ASE_8021X_UNSPEC) {
1016 1.16.2.9 skrll selcnt[0]++;
1017 1.16.2.9 skrll ADDSELECTOR(frm, key_mgt_unspec);
1018 1.16.2.9 skrll }
1019 1.16.2.9 skrll if (rsn->rsn_keymgmtset & WPA_ASE_8021X_PSK) {
1020 1.16.2.9 skrll selcnt[0]++;
1021 1.16.2.9 skrll ADDSELECTOR(frm, key_mgt_psk);
1022 1.16.2.9 skrll }
1023 1.16.2.9 skrll
1024 1.16.2.9 skrll /* optional capabilities */
1025 1.16.2.9 skrll ADDSHORT(frm, rsn->rsn_caps);
1026 1.16.2.9 skrll /* XXX PMKID */
1027 1.16.2.9 skrll
1028 1.16.2.9 skrll /* calculate element length */
1029 1.16.2.9 skrll ie[1] = frm - ie - 2;
1030 1.16.2.9 skrll IASSERT(ie[1]+2 <= sizeof(struct ieee80211_ie_wpa),
1031 1.16.2.9 skrll ("RSN IE too big, %u > %zu",
1032 1.16.2.9 skrll ie[1]+2, sizeof(struct ieee80211_ie_wpa)));
1033 1.16.2.9 skrll return frm;
1034 1.16.2.9 skrll #undef ADDSELECTOR
1035 1.16.2.9 skrll #undef ADDSHORT
1036 1.16.2.9 skrll #undef RSN_OUI_BYTES
1037 1.16.2.9 skrll }
1038 1.16.2.9 skrll
1039 1.16.2.9 skrll /*
1040 1.16.2.9 skrll * Add a WPA/RSN element to a frame.
1041 1.16.2.9 skrll */
1042 1.16.2.9 skrll static u_int8_t *
1043 1.16.2.9 skrll ieee80211_add_wpa(u_int8_t *frm, struct ieee80211com *ic)
1044 1.16.2.9 skrll {
1045 1.16.2.9 skrll
1046 1.16.2.9 skrll IASSERT(ic->ic_flags & IEEE80211_F_WPA, ("no WPA/RSN!"));
1047 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WPA2)
1048 1.16.2.9 skrll frm = ieee80211_setup_rsn_ie(ic, frm);
1049 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WPA1)
1050 1.16.2.9 skrll frm = ieee80211_setup_wpa_ie(ic, frm);
1051 1.16.2.9 skrll return frm;
1052 1.16.2.9 skrll }
1053 1.16.2.9 skrll
1054 1.16.2.9 skrll #define WME_OUI_BYTES 0x00, 0x50, 0xf2
1055 1.16.2.9 skrll /*
1056 1.16.2.9 skrll * Add a WME information element to a frame.
1057 1.16.2.9 skrll */
1058 1.16.2.9 skrll static u_int8_t *
1059 1.16.2.9 skrll ieee80211_add_wme_info(u_int8_t *frm, struct ieee80211_wme_state *wme)
1060 1.16.2.9 skrll {
1061 1.16.2.9 skrll static const struct ieee80211_wme_info info = {
1062 1.16.2.9 skrll .wme_id = IEEE80211_ELEMID_VENDOR,
1063 1.16.2.9 skrll .wme_len = sizeof(struct ieee80211_wme_info) - 2,
1064 1.16.2.9 skrll .wme_oui = { WME_OUI_BYTES },
1065 1.16.2.9 skrll .wme_type = WME_OUI_TYPE,
1066 1.16.2.9 skrll .wme_subtype = WME_INFO_OUI_SUBTYPE,
1067 1.16.2.9 skrll .wme_version = WME_VERSION,
1068 1.16.2.9 skrll .wme_info = 0,
1069 1.16.2.9 skrll };
1070 1.16.2.9 skrll memcpy(frm, &info, sizeof(info));
1071 1.16.2.9 skrll return frm + sizeof(info);
1072 1.16.2.9 skrll }
1073 1.16.2.9 skrll
1074 1.16.2.9 skrll /*
1075 1.16.2.9 skrll * Add a WME parameters element to a frame.
1076 1.16.2.9 skrll */
1077 1.16.2.9 skrll static u_int8_t *
1078 1.16.2.9 skrll ieee80211_add_wme_param(u_int8_t *frm, struct ieee80211_wme_state *wme)
1079 1.16.2.9 skrll {
1080 1.16.2.9 skrll #define SM(_v, _f) (((_v) << _f##_S) & _f)
1081 1.16.2.9 skrll #define ADDSHORT(frm, v) do { \
1082 1.16.2.9 skrll frm[0] = (v) & 0xff; \
1083 1.16.2.9 skrll frm[1] = (v) >> 8; \
1084 1.16.2.9 skrll frm += 2; \
1085 1.16.2.9 skrll } while (0)
1086 1.16.2.9 skrll /* NB: this works 'cuz a param has an info at the front */
1087 1.16.2.9 skrll static const struct ieee80211_wme_info param = {
1088 1.16.2.9 skrll .wme_id = IEEE80211_ELEMID_VENDOR,
1089 1.16.2.9 skrll .wme_len = sizeof(struct ieee80211_wme_param) - 2,
1090 1.16.2.9 skrll .wme_oui = { WME_OUI_BYTES },
1091 1.16.2.9 skrll .wme_type = WME_OUI_TYPE,
1092 1.16.2.9 skrll .wme_subtype = WME_PARAM_OUI_SUBTYPE,
1093 1.16.2.9 skrll .wme_version = WME_VERSION,
1094 1.16.2.9 skrll };
1095 1.16.2.9 skrll int i;
1096 1.16.2.9 skrll
1097 1.16.2.9 skrll memcpy(frm, ¶m, sizeof(param));
1098 1.16.2.9 skrll frm += __offsetof(struct ieee80211_wme_info, wme_info);
1099 1.16.2.9 skrll *frm++ = wme->wme_bssChanParams.cap_info; /* AC info */
1100 1.16.2.9 skrll *frm++ = 0; /* reserved field */
1101 1.16.2.9 skrll for (i = 0; i < WME_NUM_AC; i++) {
1102 1.16.2.9 skrll const struct wmeParams *ac =
1103 1.16.2.9 skrll &wme->wme_bssChanParams.cap_wmeParams[i];
1104 1.16.2.9 skrll *frm++ = SM(i, WME_PARAM_ACI)
1105 1.16.2.9 skrll | SM(ac->wmep_acm, WME_PARAM_ACM)
1106 1.16.2.9 skrll | SM(ac->wmep_aifsn, WME_PARAM_AIFSN)
1107 1.16.2.9 skrll ;
1108 1.16.2.9 skrll *frm++ = SM(ac->wmep_logcwmax, WME_PARAM_LOGCWMAX)
1109 1.16.2.9 skrll | SM(ac->wmep_logcwmin, WME_PARAM_LOGCWMIN)
1110 1.16.2.9 skrll ;
1111 1.16.2.9 skrll ADDSHORT(frm, ac->wmep_txopLimit);
1112 1.16.2.9 skrll }
1113 1.16.2.9 skrll return frm;
1114 1.16.2.9 skrll #undef SM
1115 1.16.2.9 skrll #undef ADDSHORT
1116 1.16.2.9 skrll }
1117 1.16.2.9 skrll #undef WME_OUI_BYTES
1118 1.16.2.9 skrll
1119 1.16.2.2 skrll /*
1120 1.16.2.2 skrll * Send a management frame. The node is for the destination (or ic_bss
1121 1.16.2.2 skrll * when in station mode). Nodes other than ic_bss have their reference
1122 1.16.2.2 skrll * count bumped to reflect our use for an indeterminant time.
1123 1.16.2.2 skrll */
1124 1.16.2.2 skrll int
1125 1.16.2.2 skrll ieee80211_send_mgmt(struct ieee80211com *ic, struct ieee80211_node *ni,
1126 1.16.2.2 skrll int type, int arg)
1127 1.16.2.2 skrll {
1128 1.16.2.2 skrll #define senderr(_x, _v) do { ic->ic_stats._v++; ret = _x; goto bad; } while (0)
1129 1.16.2.2 skrll struct mbuf *m;
1130 1.16.2.2 skrll u_int8_t *frm;
1131 1.16.2.2 skrll enum ieee80211_phymode mode;
1132 1.16.2.2 skrll u_int16_t capinfo;
1133 1.16.2.9 skrll int has_challenge, is_shared_key, ret, timer, status;
1134 1.16.2.2 skrll
1135 1.16.2.2 skrll IASSERT(ni != NULL, ("null node"));
1136 1.16.2.2 skrll
1137 1.16.2.2 skrll /*
1138 1.16.2.2 skrll * Hold a reference on the node so it doesn't go away until after
1139 1.16.2.2 skrll * the xmit is complete all the way in the driver. On error we
1140 1.16.2.2 skrll * will remove our reference.
1141 1.16.2.2 skrll */
1142 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_NODE,
1143 1.16.2.9 skrll "ieee80211_ref_node (%s:%u) %p<%s> refcnt %d\n",
1144 1.16.2.9 skrll __func__, __LINE__,
1145 1.16.2.9 skrll ni, ether_sprintf(ni->ni_macaddr),
1146 1.16.2.9 skrll ieee80211_node_refcnt(ni)+1);
1147 1.16.2.3 skrll ieee80211_ref_node(ni);
1148 1.16.2.9 skrll
1149 1.16.2.2 skrll timer = 0;
1150 1.16.2.2 skrll switch (type) {
1151 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_PROBE_REQ:
1152 1.16.2.2 skrll /*
1153 1.16.2.2 skrll * prreq frame format
1154 1.16.2.2 skrll * [tlv] ssid
1155 1.16.2.2 skrll * [tlv] supported rates
1156 1.16.2.2 skrll * [tlv] extended supported rates
1157 1.16.2.9 skrll * [tlv] user-specified ie's
1158 1.16.2.2 skrll */
1159 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm,
1160 1.16.2.9 skrll 2 + IEEE80211_NWID_LEN
1161 1.16.2.2 skrll + 2 + IEEE80211_RATE_SIZE
1162 1.16.2.9 skrll + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
1163 1.16.2.9 skrll + (ic->ic_opt_ie != NULL ? ic->ic_opt_ie_len : 0)
1164 1.16.2.9 skrll );
1165 1.16.2.2 skrll if (m == NULL)
1166 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1167 1.16.2.9 skrll
1168 1.16.2.2 skrll frm = ieee80211_add_ssid(frm, ic->ic_des_essid, ic->ic_des_esslen);
1169 1.16.2.2 skrll mode = ieee80211_chan2mode(ic, ni->ni_chan);
1170 1.16.2.2 skrll frm = ieee80211_add_rates(frm, &ic->ic_sup_rates[mode]);
1171 1.16.2.2 skrll frm = ieee80211_add_xrates(frm, &ic->ic_sup_rates[mode]);
1172 1.16.2.9 skrll if (ic->ic_opt_ie != NULL) {
1173 1.16.2.9 skrll memcpy(frm, ic->ic_opt_ie, ic->ic_opt_ie_len);
1174 1.16.2.9 skrll frm += ic->ic_opt_ie_len;
1175 1.16.2.9 skrll }
1176 1.16.2.2 skrll m->m_pkthdr.len = m->m_len = frm - mtod(m, u_int8_t *);
1177 1.16.2.2 skrll
1178 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_probereq);
1179 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_STA)
1180 1.16.2.9 skrll timer = IEEE80211_TRANS_WAIT;
1181 1.16.2.2 skrll break;
1182 1.16.2.2 skrll
1183 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
1184 1.16.2.2 skrll /*
1185 1.16.2.2 skrll * probe response frame format
1186 1.16.2.2 skrll * [8] time stamp
1187 1.16.2.2 skrll * [2] beacon interval
1188 1.16.2.2 skrll * [2] cabability information
1189 1.16.2.2 skrll * [tlv] ssid
1190 1.16.2.2 skrll * [tlv] supported rates
1191 1.16.2.2 skrll * [tlv] parameter set (FH/DS)
1192 1.16.2.2 skrll * [tlv] parameter set (IBSS)
1193 1.16.2.9 skrll * [tlv] extended rate phy (ERP)
1194 1.16.2.2 skrll * [tlv] extended supported rates
1195 1.16.2.9 skrll * [tlv] WPA
1196 1.16.2.9 skrll * [tlv] WME (optional)
1197 1.16.2.2 skrll */
1198 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm,
1199 1.16.2.9 skrll 8
1200 1.16.2.9 skrll + sizeof(u_int16_t)
1201 1.16.2.9 skrll + sizeof(u_int16_t)
1202 1.16.2.9 skrll + 2 + IEEE80211_NWID_LEN
1203 1.16.2.2 skrll + 2 + IEEE80211_RATE_SIZE
1204 1.16.2.9 skrll + 7 /* max(7,3) */
1205 1.16.2.2 skrll + 6
1206 1.16.2.9 skrll + 3
1207 1.16.2.9 skrll + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
1208 1.16.2.9 skrll /* XXX !WPA1+WPA2 fits w/o a cluster */
1209 1.16.2.9 skrll + (ic->ic_flags & IEEE80211_F_WPA ?
1210 1.16.2.9 skrll 2*sizeof(struct ieee80211_ie_wpa) : 0)
1211 1.16.2.9 skrll + sizeof(struct ieee80211_wme_param)
1212 1.16.2.9 skrll );
1213 1.16.2.2 skrll if (m == NULL)
1214 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1215 1.16.2.2 skrll
1216 1.16.2.2 skrll memset(frm, 0, 8); /* timestamp should be filled later */
1217 1.16.2.2 skrll frm += 8;
1218 1.16.2.2 skrll *(u_int16_t *)frm = htole16(ic->ic_bss->ni_intval);
1219 1.16.2.2 skrll frm += 2;
1220 1.16.2.2 skrll if (ic->ic_opmode == IEEE80211_M_IBSS)
1221 1.16.2.2 skrll capinfo = IEEE80211_CAPINFO_IBSS;
1222 1.16.2.2 skrll else
1223 1.16.2.2 skrll capinfo = IEEE80211_CAPINFO_ESS;
1224 1.16.2.2 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY)
1225 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_PRIVACY;
1226 1.16.2.2 skrll if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
1227 1.16.2.2 skrll IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
1228 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
1229 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_SHSLOT)
1230 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
1231 1.16.2.2 skrll *(u_int16_t *)frm = htole16(capinfo);
1232 1.16.2.2 skrll frm += 2;
1233 1.16.2.2 skrll
1234 1.16.2.2 skrll frm = ieee80211_add_ssid(frm, ic->ic_bss->ni_essid,
1235 1.16.2.2 skrll ic->ic_bss->ni_esslen);
1236 1.16.2.9 skrll frm = ieee80211_add_rates(frm, &ni->ni_rates);
1237 1.16.2.2 skrll
1238 1.16.2.2 skrll if (ic->ic_phytype == IEEE80211_T_FH) {
1239 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_FHPARMS;
1240 1.16.2.2 skrll *frm++ = 5;
1241 1.16.2.2 skrll *frm++ = ni->ni_fhdwell & 0x00ff;
1242 1.16.2.2 skrll *frm++ = (ni->ni_fhdwell >> 8) & 0x00ff;
1243 1.16.2.2 skrll *frm++ = IEEE80211_FH_CHANSET(
1244 1.16.2.2 skrll ieee80211_chan2ieee(ic, ni->ni_chan));
1245 1.16.2.2 skrll *frm++ = IEEE80211_FH_CHANPAT(
1246 1.16.2.2 skrll ieee80211_chan2ieee(ic, ni->ni_chan));
1247 1.16.2.2 skrll *frm++ = ni->ni_fhindex;
1248 1.16.2.2 skrll } else {
1249 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_DSPARMS;
1250 1.16.2.2 skrll *frm++ = 1;
1251 1.16.2.2 skrll *frm++ = ieee80211_chan2ieee(ic, ni->ni_chan);
1252 1.16.2.2 skrll }
1253 1.16.2.2 skrll
1254 1.16.2.2 skrll if (ic->ic_opmode == IEEE80211_M_IBSS) {
1255 1.16.2.2 skrll *frm++ = IEEE80211_ELEMID_IBSSPARMS;
1256 1.16.2.2 skrll *frm++ = 2;
1257 1.16.2.2 skrll *frm++ = 0; *frm++ = 0; /* TODO: ATIM window */
1258 1.16.2.2 skrll }
1259 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WPA)
1260 1.16.2.9 skrll frm = ieee80211_add_wpa(frm, ic);
1261 1.16.2.9 skrll if (ic->ic_curmode == IEEE80211_MODE_11G)
1262 1.16.2.9 skrll frm = ieee80211_add_erp(frm, ic);
1263 1.16.2.9 skrll frm = ieee80211_add_xrates(frm, &ni->ni_rates);
1264 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WME)
1265 1.16.2.9 skrll frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
1266 1.16.2.2 skrll m->m_pkthdr.len = m->m_len = frm - mtod(m, u_int8_t *);
1267 1.16.2.2 skrll break;
1268 1.16.2.2 skrll
1269 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_AUTH:
1270 1.16.2.9 skrll status = arg >> 16;
1271 1.16.2.9 skrll arg &= 0xffff;
1272 1.16.2.2 skrll has_challenge = ((arg == IEEE80211_AUTH_SHARED_CHALLENGE ||
1273 1.16.2.2 skrll arg == IEEE80211_AUTH_SHARED_RESPONSE) &&
1274 1.16.2.2 skrll ni->ni_challenge != NULL);
1275 1.16.2.2 skrll
1276 1.16.2.9 skrll /*
1277 1.16.2.9 skrll * Deduce whether we're doing open authentication or
1278 1.16.2.9 skrll * shared key authentication. We do the latter if
1279 1.16.2.9 skrll * we're in the middle of a shared key authentication
1280 1.16.2.9 skrll * handshake or if we're initiating an authentication
1281 1.16.2.9 skrll * request and configured to use shared key.
1282 1.16.2.9 skrll */
1283 1.16.2.9 skrll is_shared_key = has_challenge ||
1284 1.16.2.9 skrll arg >= IEEE80211_AUTH_SHARED_RESPONSE ||
1285 1.16.2.9 skrll (arg == IEEE80211_AUTH_SHARED_REQUEST &&
1286 1.16.2.9 skrll ic->ic_bss->ni_authmode == IEEE80211_AUTH_SHARED);
1287 1.16.2.9 skrll
1288 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm,
1289 1.16.2.9 skrll 3 * sizeof(u_int16_t)
1290 1.16.2.9 skrll + (has_challenge && status == IEEE80211_STATUS_SUCCESS ?
1291 1.16.2.9 skrll sizeof(u_int16_t)+IEEE80211_CHALLENGE_LEN : 0)
1292 1.16.2.9 skrll );
1293 1.16.2.9 skrll if (m == NULL)
1294 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1295 1.16.2.2 skrll
1296 1.16.2.2 skrll ((u_int16_t *)frm)[0] =
1297 1.16.2.2 skrll (is_shared_key) ? htole16(IEEE80211_AUTH_ALG_SHARED)
1298 1.16.2.2 skrll : htole16(IEEE80211_AUTH_ALG_OPEN);
1299 1.16.2.2 skrll ((u_int16_t *)frm)[1] = htole16(arg); /* sequence number */
1300 1.16.2.9 skrll ((u_int16_t *)frm)[2] = htole16(status);/* status */
1301 1.16.2.2 skrll
1302 1.16.2.9 skrll if (has_challenge && status == IEEE80211_STATUS_SUCCESS) {
1303 1.16.2.2 skrll ((u_int16_t *)frm)[3] =
1304 1.16.2.2 skrll htole16((IEEE80211_CHALLENGE_LEN << 8) |
1305 1.16.2.2 skrll IEEE80211_ELEMID_CHALLENGE);
1306 1.16.2.2 skrll memcpy(&((u_int16_t *)frm)[4], ni->ni_challenge,
1307 1.16.2.2 skrll IEEE80211_CHALLENGE_LEN);
1308 1.16.2.9 skrll m->m_pkthdr.len = m->m_len =
1309 1.16.2.9 skrll 4 * sizeof(u_int16_t) + IEEE80211_CHALLENGE_LEN;
1310 1.16.2.2 skrll if (arg == IEEE80211_AUTH_SHARED_RESPONSE) {
1311 1.16.2.2 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
1312 1.16.2.9 skrll "[%s] request encrypt frame (%s)\n",
1313 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr), __func__);
1314 1.16.2.2 skrll m->m_flags |= M_LINK0; /* WEP-encrypt, please */
1315 1.16.2.2 skrll }
1316 1.16.2.9 skrll } else
1317 1.16.2.9 skrll m->m_pkthdr.len = m->m_len = 3 * sizeof(u_int16_t);
1318 1.16.2.9 skrll
1319 1.16.2.9 skrll /* XXX not right for shared key */
1320 1.16.2.9 skrll if (status == IEEE80211_STATUS_SUCCESS)
1321 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_auth);
1322 1.16.2.9 skrll else
1323 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_auth_fail);
1324 1.16.2.9 skrll
1325 1.16.2.2 skrll if (ic->ic_opmode == IEEE80211_M_STA)
1326 1.16.2.2 skrll timer = IEEE80211_TRANS_WAIT;
1327 1.16.2.2 skrll break;
1328 1.16.2.2 skrll
1329 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_DEAUTH:
1330 1.16.2.2 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
1331 1.16.2.9 skrll "[%s] send station deauthenticate (reason %d)\n",
1332 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr), arg);
1333 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm, sizeof(u_int16_t));
1334 1.16.2.2 skrll if (m == NULL)
1335 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1336 1.16.2.9 skrll *(u_int16_t *)frm = htole16(arg); /* reason */
1337 1.16.2.9 skrll m->m_pkthdr.len = m->m_len = sizeof(u_int16_t);
1338 1.16.2.9 skrll
1339 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_deauth);
1340 1.16.2.9 skrll IEEE80211_NODE_STAT_SET(ni, tx_deauth_code, arg);
1341 1.16.2.9 skrll
1342 1.16.2.9 skrll ieee80211_node_unauthorize(ic, ni); /* port closed */
1343 1.16.2.2 skrll break;
1344 1.16.2.2 skrll
1345 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
1346 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_REASSOC_REQ:
1347 1.16.2.2 skrll /*
1348 1.16.2.2 skrll * asreq frame format
1349 1.16.2.2 skrll * [2] capability information
1350 1.16.2.2 skrll * [2] listen interval
1351 1.16.2.2 skrll * [6*] current AP address (reassoc only)
1352 1.16.2.2 skrll * [tlv] ssid
1353 1.16.2.2 skrll * [tlv] supported rates
1354 1.16.2.2 skrll * [tlv] extended supported rates
1355 1.16.2.9 skrll * [tlv] WME
1356 1.16.2.9 skrll * [tlv] user-specified ie's
1357 1.16.2.2 skrll */
1358 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm,
1359 1.16.2.9 skrll sizeof(u_int16_t)
1360 1.16.2.2 skrll + sizeof(u_int16_t)
1361 1.16.2.2 skrll + IEEE80211_ADDR_LEN
1362 1.16.2.9 skrll + 2 + IEEE80211_NWID_LEN
1363 1.16.2.2 skrll + 2 + IEEE80211_RATE_SIZE
1364 1.16.2.9 skrll + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
1365 1.16.2.9 skrll + sizeof(struct ieee80211_wme_info)
1366 1.16.2.9 skrll + (ic->ic_opt_ie != NULL ? ic->ic_opt_ie_len : 0)
1367 1.16.2.9 skrll );
1368 1.16.2.2 skrll if (m == NULL)
1369 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1370 1.16.2.2 skrll
1371 1.16.2.2 skrll capinfo = 0;
1372 1.16.2.2 skrll if (ic->ic_opmode == IEEE80211_M_IBSS)
1373 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_IBSS;
1374 1.16.2.2 skrll else /* IEEE80211_M_STA */
1375 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_ESS;
1376 1.16.2.2 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY)
1377 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_PRIVACY;
1378 1.16.2.2 skrll /*
1379 1.16.2.2 skrll * NB: Some 11a AP's reject the request when
1380 1.16.2.2 skrll * short premable is set.
1381 1.16.2.2 skrll */
1382 1.16.2.2 skrll if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
1383 1.16.2.2 skrll IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
1384 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
1385 1.16.2.9 skrll if ((ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_SLOTTIME) &&
1386 1.16.2.9 skrll (ic->ic_caps & IEEE80211_C_SHSLOT))
1387 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
1388 1.16.2.2 skrll *(u_int16_t *)frm = htole16(capinfo);
1389 1.16.2.2 skrll frm += 2;
1390 1.16.2.2 skrll
1391 1.16.2.2 skrll *(u_int16_t *)frm = htole16(ic->ic_lintval);
1392 1.16.2.2 skrll frm += 2;
1393 1.16.2.2 skrll
1394 1.16.2.2 skrll if (type == IEEE80211_FC0_SUBTYPE_REASSOC_REQ) {
1395 1.16.2.2 skrll IEEE80211_ADDR_COPY(frm, ic->ic_bss->ni_bssid);
1396 1.16.2.2 skrll frm += IEEE80211_ADDR_LEN;
1397 1.16.2.2 skrll }
1398 1.16.2.2 skrll
1399 1.16.2.2 skrll frm = ieee80211_add_ssid(frm, ni->ni_essid, ni->ni_esslen);
1400 1.16.2.2 skrll frm = ieee80211_add_rates(frm, &ni->ni_rates);
1401 1.16.2.2 skrll frm = ieee80211_add_xrates(frm, &ni->ni_rates);
1402 1.16.2.9 skrll if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL)
1403 1.16.2.9 skrll frm = ieee80211_add_wme_info(frm, &ic->ic_wme);
1404 1.16.2.9 skrll if (ic->ic_opt_ie != NULL) {
1405 1.16.2.9 skrll memcpy(frm, ic->ic_opt_ie, ic->ic_opt_ie_len);
1406 1.16.2.9 skrll frm += ic->ic_opt_ie_len;
1407 1.16.2.9 skrll }
1408 1.16.2.2 skrll m->m_pkthdr.len = m->m_len = frm - mtod(m, u_int8_t *);
1409 1.16.2.2 skrll
1410 1.16.2.2 skrll timer = IEEE80211_TRANS_WAIT;
1411 1.16.2.2 skrll break;
1412 1.16.2.2 skrll
1413 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
1414 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_REASSOC_RESP:
1415 1.16.2.2 skrll /*
1416 1.16.2.2 skrll * asreq frame format
1417 1.16.2.2 skrll * [2] capability information
1418 1.16.2.2 skrll * [2] status
1419 1.16.2.2 skrll * [2] association ID
1420 1.16.2.2 skrll * [tlv] supported rates
1421 1.16.2.2 skrll * [tlv] extended supported rates
1422 1.16.2.9 skrll * [tlv] WME (if enabled and STA enabled)
1423 1.16.2.2 skrll */
1424 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm,
1425 1.16.2.9 skrll sizeof(u_int16_t)
1426 1.16.2.2 skrll + sizeof(u_int16_t)
1427 1.16.2.2 skrll + sizeof(u_int16_t)
1428 1.16.2.2 skrll + 2 + IEEE80211_RATE_SIZE
1429 1.16.2.9 skrll + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
1430 1.16.2.9 skrll + sizeof(struct ieee80211_wme_param)
1431 1.16.2.9 skrll );
1432 1.16.2.2 skrll if (m == NULL)
1433 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1434 1.16.2.2 skrll
1435 1.16.2.2 skrll capinfo = IEEE80211_CAPINFO_ESS;
1436 1.16.2.2 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY)
1437 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_PRIVACY;
1438 1.16.2.2 skrll if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
1439 1.16.2.2 skrll IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
1440 1.16.2.2 skrll capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
1441 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_SHSLOT)
1442 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
1443 1.16.2.2 skrll *(u_int16_t *)frm = htole16(capinfo);
1444 1.16.2.2 skrll frm += 2;
1445 1.16.2.2 skrll
1446 1.16.2.2 skrll *(u_int16_t *)frm = htole16(arg); /* status */
1447 1.16.2.2 skrll frm += 2;
1448 1.16.2.2 skrll
1449 1.16.2.9 skrll if (arg == IEEE80211_STATUS_SUCCESS) {
1450 1.16.2.2 skrll *(u_int16_t *)frm = htole16(ni->ni_associd);
1451 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_assoc);
1452 1.16.2.9 skrll } else
1453 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_assoc_fail);
1454 1.16.2.2 skrll frm += 2;
1455 1.16.2.2 skrll
1456 1.16.2.2 skrll frm = ieee80211_add_rates(frm, &ni->ni_rates);
1457 1.16.2.2 skrll frm = ieee80211_add_xrates(frm, &ni->ni_rates);
1458 1.16.2.9 skrll if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL)
1459 1.16.2.9 skrll frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
1460 1.16.2.2 skrll m->m_pkthdr.len = m->m_len = frm - mtod(m, u_int8_t *);
1461 1.16.2.2 skrll break;
1462 1.16.2.2 skrll
1463 1.16.2.2 skrll case IEEE80211_FC0_SUBTYPE_DISASSOC:
1464 1.16.2.2 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_ASSOC,
1465 1.16.2.9 skrll "[%s] send station disassociate (reason %d)\n",
1466 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr), arg);
1467 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm, sizeof(u_int16_t));
1468 1.16.2.2 skrll if (m == NULL)
1469 1.16.2.9 skrll senderr(ENOMEM, is_tx_nobuf);
1470 1.16.2.9 skrll *(u_int16_t *)frm = htole16(arg); /* reason */
1471 1.16.2.9 skrll m->m_pkthdr.len = m->m_len = sizeof(u_int16_t);
1472 1.16.2.9 skrll
1473 1.16.2.9 skrll IEEE80211_NODE_STAT(ni, tx_disassoc);
1474 1.16.2.9 skrll IEEE80211_NODE_STAT_SET(ni, tx_disassoc_code, arg);
1475 1.16.2.2 skrll break;
1476 1.16.2.2 skrll
1477 1.16.2.2 skrll default:
1478 1.16.2.2 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
1479 1.16.2.9 skrll "[%s] invalid mgmt frame type %u\n",
1480 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr), type);
1481 1.16.2.2 skrll senderr(EINVAL, is_tx_unknownmgt);
1482 1.16.2.2 skrll /* NOTREACHED */
1483 1.16.2.2 skrll }
1484 1.16.2.2 skrll
1485 1.16.2.9 skrll ret = ieee80211_mgmt_output(ic, ni, m, type);
1486 1.16.2.2 skrll if (ret == 0) {
1487 1.16.2.2 skrll if (timer)
1488 1.16.2.2 skrll ic->ic_mgt_timer = timer;
1489 1.16.2.2 skrll } else {
1490 1.16.2.2 skrll bad:
1491 1.16.2.9 skrll ieee80211_free_node(ni);
1492 1.16.2.2 skrll }
1493 1.16.2.2 skrll return ret;
1494 1.16.2.2 skrll #undef senderr
1495 1.16.2.2 skrll }
1496 1.16.2.2 skrll
1497 1.16.2.9 skrll /*
1498 1.16.2.9 skrll * Allocate a beacon frame and fillin the appropriate bits.
1499 1.16.2.9 skrll */
1500 1.16.2.9 skrll struct mbuf *
1501 1.16.2.9 skrll ieee80211_beacon_alloc(struct ieee80211com *ic, struct ieee80211_node *ni,
1502 1.16.2.9 skrll struct ieee80211_beacon_offsets *bo)
1503 1.16.2.2 skrll {
1504 1.16.2.9 skrll struct ifnet *ifp = ic->ic_ifp;
1505 1.16.2.9 skrll struct ieee80211_frame *wh;
1506 1.16.2.9 skrll struct mbuf *m;
1507 1.16.2.9 skrll int pktlen;
1508 1.16.2.9 skrll u_int8_t *frm, *efrm;
1509 1.16.2.9 skrll u_int16_t capinfo;
1510 1.16.2.9 skrll struct ieee80211_rateset *rs;
1511 1.16.2.2 skrll
1512 1.16.2.9 skrll /*
1513 1.16.2.9 skrll * beacon frame format
1514 1.16.2.9 skrll * [8] time stamp
1515 1.16.2.9 skrll * [2] beacon interval
1516 1.16.2.9 skrll * [2] cabability information
1517 1.16.2.9 skrll * [tlv] ssid
1518 1.16.2.9 skrll * [tlv] supported rates
1519 1.16.2.9 skrll * [3] parameter set (DS)
1520 1.16.2.9 skrll * [tlv] parameter set (IBSS/TIM)
1521 1.16.2.9 skrll * [tlv] extended rate phy (ERP)
1522 1.16.2.9 skrll * [tlv] extended supported rates
1523 1.16.2.9 skrll * [tlv] WME parameters
1524 1.16.2.9 skrll * [tlv] WPA/RSN parameters
1525 1.16.2.9 skrll * XXX Vendor-specific OIDs (e.g. Atheros)
1526 1.16.2.9 skrll * NB: we allocate the max space required for the TIM bitmap.
1527 1.16.2.9 skrll */
1528 1.16.2.9 skrll rs = &ni->ni_rates;
1529 1.16.2.9 skrll pktlen = 8 /* time stamp */
1530 1.16.2.9 skrll + sizeof(u_int16_t) /* beacon interval */
1531 1.16.2.9 skrll + sizeof(u_int16_t) /* capabilities */
1532 1.16.2.9 skrll + 2 + ni->ni_esslen /* ssid */
1533 1.16.2.9 skrll + 2 + IEEE80211_RATE_SIZE /* supported rates */
1534 1.16.2.9 skrll + 2 + 1 /* DS parameters */
1535 1.16.2.9 skrll + 2 + 4 + ic->ic_tim_len /* DTIM/IBSSPARMS */
1536 1.16.2.9 skrll + 2 + 1 /* ERP */
1537 1.16.2.9 skrll + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
1538 1.16.2.9 skrll + (ic->ic_caps & IEEE80211_C_WME ? /* WME */
1539 1.16.2.9 skrll sizeof(struct ieee80211_wme_param) : 0)
1540 1.16.2.9 skrll + (ic->ic_caps & IEEE80211_C_WPA ? /* WPA 1+2 */
1541 1.16.2.9 skrll 2*sizeof(struct ieee80211_ie_wpa) : 0)
1542 1.16.2.9 skrll ;
1543 1.16.2.9 skrll m = ieee80211_getmgtframe(&frm, pktlen);
1544 1.16.2.9 skrll if (m == NULL) {
1545 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
1546 1.16.2.9 skrll "%s: cannot get buf; size %u\n", __func__, pktlen);
1547 1.16.2.9 skrll ic->ic_stats.is_tx_nobuf++;
1548 1.16.2.9 skrll return NULL;
1549 1.16.2.2 skrll }
1550 1.16.2.9 skrll
1551 1.16.2.9 skrll memset(frm, 0, 8); /* XXX timestamp is set by hardware/driver */
1552 1.16.2.9 skrll frm += 8;
1553 1.16.2.9 skrll *(u_int16_t *)frm = htole16(ni->ni_intval);
1554 1.16.2.9 skrll frm += 2;
1555 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_IBSS)
1556 1.16.2.9 skrll capinfo = IEEE80211_CAPINFO_IBSS;
1557 1.16.2.9 skrll else
1558 1.16.2.9 skrll capinfo = IEEE80211_CAPINFO_ESS;
1559 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY)
1560 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_PRIVACY;
1561 1.16.2.9 skrll if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
1562 1.16.2.9 skrll IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
1563 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
1564 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_SHSLOT)
1565 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
1566 1.16.2.9 skrll bo->bo_caps = (u_int16_t *)frm;
1567 1.16.2.9 skrll *(u_int16_t *)frm = htole16(capinfo);
1568 1.16.2.9 skrll frm += 2;
1569 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_SSID;
1570 1.16.2.9 skrll if ((ic->ic_flags & IEEE80211_F_HIDESSID) == 0) {
1571 1.16.2.9 skrll *frm++ = ni->ni_esslen;
1572 1.16.2.9 skrll memcpy(frm, ni->ni_essid, ni->ni_esslen);
1573 1.16.2.9 skrll frm += ni->ni_esslen;
1574 1.16.2.9 skrll } else
1575 1.16.2.9 skrll *frm++ = 0;
1576 1.16.2.9 skrll frm = ieee80211_add_rates(frm, rs);
1577 1.16.2.9 skrll if (ic->ic_curmode != IEEE80211_MODE_FH) {
1578 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_DSPARMS;
1579 1.16.2.9 skrll *frm++ = 1;
1580 1.16.2.9 skrll *frm++ = ieee80211_chan2ieee(ic, ni->ni_chan);
1581 1.16.2.9 skrll }
1582 1.16.2.9 skrll bo->bo_tim = frm;
1583 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_IBSS) {
1584 1.16.2.9 skrll *frm++ = IEEE80211_ELEMID_IBSSPARMS;
1585 1.16.2.9 skrll *frm++ = 2;
1586 1.16.2.9 skrll *frm++ = 0; *frm++ = 0; /* TODO: ATIM window */
1587 1.16.2.9 skrll bo->bo_tim_len = 0;
1588 1.16.2.2 skrll } else {
1589 1.16.2.9 skrll struct ieee80211_tim_ie *tie = (struct ieee80211_tim_ie *) frm;
1590 1.16.2.9 skrll
1591 1.16.2.9 skrll tie->tim_ie = IEEE80211_ELEMID_TIM;
1592 1.16.2.9 skrll tie->tim_len = 4; /* length */
1593 1.16.2.9 skrll tie->tim_count = 0; /* DTIM count */
1594 1.16.2.9 skrll tie->tim_period = ic->ic_dtim_period; /* DTIM period */
1595 1.16.2.9 skrll tie->tim_bitctl = 0; /* bitmap control */
1596 1.16.2.9 skrll tie->tim_bitmap[0] = 0; /* Partial Virtual Bitmap */
1597 1.16.2.9 skrll frm += sizeof(struct ieee80211_tim_ie);
1598 1.16.2.9 skrll bo->bo_tim_len = 1;
1599 1.16.2.9 skrll }
1600 1.16.2.9 skrll bo->bo_trailer = frm;
1601 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WME) {
1602 1.16.2.9 skrll bo->bo_wme = frm;
1603 1.16.2.9 skrll frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
1604 1.16.2.9 skrll ic->ic_flags &= ~IEEE80211_F_WMEUPDATE;
1605 1.16.2.9 skrll }
1606 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WPA)
1607 1.16.2.9 skrll frm = ieee80211_add_wpa(frm, ic);
1608 1.16.2.9 skrll if (ic->ic_curmode == IEEE80211_MODE_11G)
1609 1.16.2.9 skrll frm = ieee80211_add_erp(frm, ic);
1610 1.16.2.9 skrll efrm = ieee80211_add_xrates(frm, rs);
1611 1.16.2.9 skrll bo->bo_trailer_len = efrm - bo->bo_trailer;
1612 1.16.2.9 skrll m->m_pkthdr.len = m->m_len = efrm - mtod(m, u_int8_t *);
1613 1.16.2.9 skrll
1614 1.16.2.9 skrll M_PREPEND(m, sizeof(struct ieee80211_frame), M_DONTWAIT);
1615 1.16.2.9 skrll IASSERT(m != NULL, ("no space for 802.11 header?"));
1616 1.16.2.9 skrll wh = mtod(m, struct ieee80211_frame *);
1617 1.16.2.9 skrll wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_MGT |
1618 1.16.2.9 skrll IEEE80211_FC0_SUBTYPE_BEACON;
1619 1.16.2.9 skrll wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
1620 1.16.2.9 skrll *(u_int16_t *)wh->i_dur = 0;
1621 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr1, ifp->if_broadcastaddr);
1622 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
1623 1.16.2.9 skrll IEEE80211_ADDR_COPY(wh->i_addr3, ni->ni_bssid);
1624 1.16.2.9 skrll *(u_int16_t *)wh->i_seq = 0;
1625 1.16.2.9 skrll
1626 1.16.2.9 skrll return m;
1627 1.16.2.9 skrll }
1628 1.16.2.9 skrll
1629 1.16.2.9 skrll /*
1630 1.16.2.9 skrll * Update the dynamic parts of a beacon frame based on the current state.
1631 1.16.2.9 skrll */
1632 1.16.2.9 skrll int
1633 1.16.2.9 skrll ieee80211_beacon_update(struct ieee80211com *ic, struct ieee80211_node *ni,
1634 1.16.2.9 skrll struct ieee80211_beacon_offsets *bo, struct mbuf *m, int mcast)
1635 1.16.2.9 skrll {
1636 1.16.2.9 skrll int len_changed = 0;
1637 1.16.2.9 skrll u_int16_t capinfo;
1638 1.16.2.9 skrll
1639 1.16.2.9 skrll IEEE80211_BEACON_LOCK(ic);
1640 1.16.2.9 skrll /* XXX faster to recalculate entirely or just changes? */
1641 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_IBSS)
1642 1.16.2.9 skrll capinfo = IEEE80211_CAPINFO_IBSS;
1643 1.16.2.9 skrll else
1644 1.16.2.9 skrll capinfo = IEEE80211_CAPINFO_ESS;
1645 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY)
1646 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_PRIVACY;
1647 1.16.2.9 skrll if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
1648 1.16.2.9 skrll IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
1649 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
1650 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_SHSLOT)
1651 1.16.2.9 skrll capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
1652 1.16.2.9 skrll *bo->bo_caps = htole16(capinfo);
1653 1.16.2.9 skrll
1654 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WME) {
1655 1.16.2.9 skrll struct ieee80211_wme_state *wme = &ic->ic_wme;
1656 1.16.2.9 skrll
1657 1.16.2.9 skrll /*
1658 1.16.2.9 skrll * Check for agressive mode change. When there is
1659 1.16.2.9 skrll * significant high priority traffic in the BSS
1660 1.16.2.9 skrll * throttle back BE traffic by using conservative
1661 1.16.2.9 skrll * parameters. Otherwise BE uses agressive params
1662 1.16.2.9 skrll * to optimize performance of legacy/non-QoS traffic.
1663 1.16.2.2 skrll */
1664 1.16.2.9 skrll if (wme->wme_flags & WME_F_AGGRMODE) {
1665 1.16.2.9 skrll if (wme->wme_hipri_traffic >
1666 1.16.2.9 skrll wme->wme_hipri_switch_thresh) {
1667 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_WME,
1668 1.16.2.9 skrll "%s: traffic %u, disable aggressive mode\n",
1669 1.16.2.9 skrll __func__, wme->wme_hipri_traffic);
1670 1.16.2.9 skrll wme->wme_flags &= ~WME_F_AGGRMODE;
1671 1.16.2.9 skrll ieee80211_wme_updateparams_locked(ic);
1672 1.16.2.9 skrll wme->wme_hipri_traffic =
1673 1.16.2.9 skrll wme->wme_hipri_switch_hysteresis;
1674 1.16.2.9 skrll } else
1675 1.16.2.9 skrll wme->wme_hipri_traffic = 0;
1676 1.16.2.9 skrll } else {
1677 1.16.2.9 skrll if (wme->wme_hipri_traffic <=
1678 1.16.2.9 skrll wme->wme_hipri_switch_thresh) {
1679 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_WME,
1680 1.16.2.9 skrll "%s: traffic %u, enable aggressive mode\n",
1681 1.16.2.9 skrll __func__, wme->wme_hipri_traffic);
1682 1.16.2.9 skrll wme->wme_flags |= WME_F_AGGRMODE;
1683 1.16.2.9 skrll ieee80211_wme_updateparams_locked(ic);
1684 1.16.2.9 skrll wme->wme_hipri_traffic = 0;
1685 1.16.2.9 skrll } else
1686 1.16.2.9 skrll wme->wme_hipri_traffic =
1687 1.16.2.9 skrll wme->wme_hipri_switch_hysteresis;
1688 1.16.2.9 skrll }
1689 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_WMEUPDATE) {
1690 1.16.2.9 skrll (void) ieee80211_add_wme_param(bo->bo_wme, wme);
1691 1.16.2.9 skrll ic->ic_flags &= ~IEEE80211_F_WMEUPDATE;
1692 1.16.2.9 skrll }
1693 1.16.2.2 skrll }
1694 1.16.2.9 skrll
1695 1.16.2.9 skrll #ifndef IEEE80211_NO_HOSTAP
1696 1.16.2.9 skrll if (ic->ic_opmode == IEEE80211_M_HOSTAP) { /* NB: no IBSS support*/
1697 1.16.2.9 skrll struct ieee80211_tim_ie *tie =
1698 1.16.2.9 skrll (struct ieee80211_tim_ie *) bo->bo_tim;
1699 1.16.2.9 skrll if (ic->ic_flags & IEEE80211_F_TIMUPDATE) {
1700 1.16.2.9 skrll u_int timlen, timoff, i;
1701 1.16.2.9 skrll /*
1702 1.16.2.9 skrll * ATIM/DTIM needs updating. If it fits in the
1703 1.16.2.9 skrll * current space allocated then just copy in the
1704 1.16.2.9 skrll * new bits. Otherwise we need to move any trailing
1705 1.16.2.9 skrll * data to make room. Note that we know there is
1706 1.16.2.9 skrll * contiguous space because ieee80211_beacon_allocate
1707 1.16.2.9 skrll * insures there is space in the mbuf to write a
1708 1.16.2.9 skrll * maximal-size virtual bitmap (based on ic_max_aid).
1709 1.16.2.9 skrll */
1710 1.16.2.9 skrll /*
1711 1.16.2.9 skrll * Calculate the bitmap size and offset, copy any
1712 1.16.2.9 skrll * trailer out of the way, and then copy in the
1713 1.16.2.9 skrll * new bitmap and update the information element.
1714 1.16.2.9 skrll * Note that the tim bitmap must contain at least
1715 1.16.2.9 skrll * one byte and any offset must be even.
1716 1.16.2.9 skrll */
1717 1.16.2.9 skrll if (ic->ic_ps_pending != 0) {
1718 1.16.2.9 skrll timoff = 128; /* impossibly large */
1719 1.16.2.9 skrll for (i = 0; i < ic->ic_tim_len; i++)
1720 1.16.2.9 skrll if (ic->ic_tim_bitmap[i]) {
1721 1.16.2.9 skrll timoff = i &~ 1;
1722 1.16.2.9 skrll break;
1723 1.16.2.9 skrll }
1724 1.16.2.9 skrll IASSERT(timoff != 128, ("tim bitmap empty!"));
1725 1.16.2.9 skrll for (i = ic->ic_tim_len-1; i >= timoff; i--)
1726 1.16.2.9 skrll if (ic->ic_tim_bitmap[i])
1727 1.16.2.9 skrll break;
1728 1.16.2.9 skrll timlen = 1 + (i - timoff);
1729 1.16.2.9 skrll } else {
1730 1.16.2.9 skrll timoff = 0;
1731 1.16.2.9 skrll timlen = 1;
1732 1.16.2.9 skrll }
1733 1.16.2.9 skrll if (timlen != bo->bo_tim_len) {
1734 1.16.2.9 skrll /* copy up/down trailer */
1735 1.16.2.9 skrll ovbcopy(bo->bo_trailer, tie->tim_bitmap+timlen,
1736 1.16.2.9 skrll bo->bo_trailer_len);
1737 1.16.2.9 skrll bo->bo_trailer = tie->tim_bitmap+timlen;
1738 1.16.2.9 skrll bo->bo_wme = bo->bo_trailer;
1739 1.16.2.9 skrll bo->bo_tim_len = timlen;
1740 1.16.2.9 skrll
1741 1.16.2.9 skrll /* update information element */
1742 1.16.2.9 skrll tie->tim_len = 3 + timlen;
1743 1.16.2.9 skrll tie->tim_bitctl = timoff;
1744 1.16.2.9 skrll len_changed = 1;
1745 1.16.2.9 skrll }
1746 1.16.2.9 skrll memcpy(tie->tim_bitmap, ic->ic_tim_bitmap + timoff,
1747 1.16.2.9 skrll bo->bo_tim_len);
1748 1.16.2.9 skrll
1749 1.16.2.9 skrll ic->ic_flags &= ~IEEE80211_F_TIMUPDATE;
1750 1.16.2.9 skrll
1751 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_POWER,
1752 1.16.2.9 skrll "%s: TIM updated, pending %u, off %u, len %u\n",
1753 1.16.2.9 skrll __func__, ic->ic_ps_pending, timoff, timlen);
1754 1.16.2.9 skrll }
1755 1.16.2.9 skrll /* count down DTIM period */
1756 1.16.2.9 skrll if (tie->tim_count == 0)
1757 1.16.2.9 skrll tie->tim_count = tie->tim_period - 1;
1758 1.16.2.9 skrll else
1759 1.16.2.9 skrll tie->tim_count--;
1760 1.16.2.9 skrll /* update state for buffered multicast frames on DTIM */
1761 1.16.2.9 skrll if (mcast && (tie->tim_count == 1 || tie->tim_period == 1))
1762 1.16.2.9 skrll tie->tim_bitctl |= 1;
1763 1.16.2.9 skrll else
1764 1.16.2.9 skrll tie->tim_bitctl &= ~1;
1765 1.16.2.9 skrll }
1766 1.16.2.9 skrll #endif /* !IEEE80211_NO_HOSTAP */
1767 1.16.2.9 skrll IEEE80211_BEACON_UNLOCK(ic);
1768 1.16.2.9 skrll
1769 1.16.2.9 skrll return len_changed;
1770 1.16.2.2 skrll }
1771 1.16.2.2 skrll
1772 1.16.2.9 skrll /*
1773 1.16.2.9 skrll * Save an outbound packet for a node in power-save sleep state.
1774 1.16.2.9 skrll * The new packet is placed on the node's saved queue, and the TIM
1775 1.16.2.9 skrll * is changed, if necessary.
1776 1.16.2.9 skrll */
1777 1.16.2.9 skrll void
1778 1.16.2.9 skrll ieee80211_pwrsave(struct ieee80211com *ic, struct ieee80211_node *ni,
1779 1.16.2.9 skrll struct mbuf *m)
1780 1.16.2.9 skrll {
1781 1.16.2.9 skrll int qlen, age;
1782 1.16.2.9 skrll
1783 1.16.2.9 skrll IEEE80211_NODE_SAVEQ_LOCK(ni);
1784 1.16.2.9 skrll if (IF_QFULL(&ni->ni_savedq)) {
1785 1.16.2.9 skrll IF_DROP(&ni->ni_savedq);
1786 1.16.2.9 skrll IEEE80211_NODE_SAVEQ_UNLOCK(ni);
1787 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
1788 1.16.2.9 skrll "[%s] pwr save q overflow, drops %d (size %d)\n",
1789 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr),
1790 1.16.2.9 skrll ni->ni_savedq.ifq_drops, IEEE80211_PS_MAX_QUEUE);
1791 1.16.2.9 skrll #ifdef IEEE80211_DEBUG
1792 1.16.2.9 skrll if (ieee80211_msg_dumppkts(ic))
1793 1.16.2.9 skrll ieee80211_dump_pkt(mtod(m, caddr_t), m->m_len, -1, -1);
1794 1.16.2.9 skrll #endif
1795 1.16.2.9 skrll m_freem(m);
1796 1.16.2.9 skrll return;
1797 1.16.2.9 skrll }
1798 1.16.2.9 skrll /*
1799 1.16.2.9 skrll * Tag the frame with it's expiry time and insert
1800 1.16.2.9 skrll * it in the queue. The aging interval is 4 times
1801 1.16.2.9 skrll * the listen interval specified by the station.
1802 1.16.2.9 skrll * Frames that sit around too long are reclaimed
1803 1.16.2.9 skrll * using this information.
1804 1.16.2.9 skrll */
1805 1.16.2.9 skrll /* XXX handle overflow? */
1806 1.16.2.9 skrll age = ((ni->ni_intval * ic->ic_lintval) << 2) / 1024; /* TU -> secs */
1807 1.16.2.9 skrll _IEEE80211_NODE_SAVEQ_ENQUEUE(ni, m, qlen, age);
1808 1.16.2.9 skrll IEEE80211_NODE_SAVEQ_UNLOCK(ni);
1809 1.16.2.9 skrll
1810 1.16.2.9 skrll IEEE80211_DPRINTF(ic, IEEE80211_MSG_POWER,
1811 1.16.2.9 skrll "[%s] save frame, %u now queued\n",
1812 1.16.2.9 skrll ether_sprintf(ni->ni_macaddr), qlen);
1813 1.16.2.9 skrll
1814 1.16.2.9 skrll if (qlen == 1)
1815 1.16.2.9 skrll ic->ic_set_tim(ic, ni, 1);
1816 1.16.2.9 skrll }
1817