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ieee80211_output.c revision 1.47.34.1
      1       1.47  christos /*	$NetBSD: ieee80211_output.c,v 1.47.34.1 2008/02/22 16:50:25 skrll Exp $	*/
      2        1.1    dyoung /*-
      3        1.1    dyoung  * Copyright (c) 2001 Atsushi Onoe
      4  1.47.34.1     skrll  * Copyright (c) 2002-2007 Sam Leffler, Errno Consulting
      5        1.1    dyoung  * All rights reserved.
      6        1.1    dyoung  *
      7        1.1    dyoung  * Redistribution and use in source and binary forms, with or without
      8        1.1    dyoung  * modification, are permitted provided that the following conditions
      9        1.1    dyoung  * are met:
     10        1.1    dyoung  * 1. Redistributions of source code must retain the above copyright
     11        1.1    dyoung  *    notice, this list of conditions and the following disclaimer.
     12        1.1    dyoung  * 2. Redistributions in binary form must reproduce the above copyright
     13        1.1    dyoung  *    notice, this list of conditions and the following disclaimer in the
     14        1.1    dyoung  *    documentation and/or other materials provided with the distribution.
     15        1.1    dyoung  *
     16        1.1    dyoung  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17        1.1    dyoung  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18        1.1    dyoung  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19        1.1    dyoung  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20        1.1    dyoung  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21        1.1    dyoung  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22        1.1    dyoung  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23        1.1    dyoung  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24        1.1    dyoung  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25        1.1    dyoung  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26        1.1    dyoung  */
     27        1.1    dyoung 
     28        1.1    dyoung #include <sys/cdefs.h>
     29        1.4    dyoung #ifdef __FreeBSD__
     30  1.47.34.1     skrll __FBSDID("$FreeBSD: src/sys/net80211/ieee80211_output.c,v 1.57 2007/12/07 01:46:12 kmacy Exp $");
     31       1.29    dyoung #endif
     32       1.29    dyoung #ifdef __NetBSD__
     33       1.47  christos __KERNEL_RCSID(0, "$NetBSD: ieee80211_output.c,v 1.47.34.1 2008/02/22 16:50:25 skrll Exp $");
     34        1.4    dyoung #endif
     35        1.1    dyoung 
     36        1.1    dyoung #include "opt_inet.h"
     37        1.1    dyoung 
     38        1.6    dyoung #ifdef __NetBSD__
     39        1.6    dyoung #include "bpfilter.h"
     40        1.6    dyoung #endif /* __NetBSD__ */
     41        1.6    dyoung 
     42        1.1    dyoung #include <sys/param.h>
     43       1.29    dyoung #include <sys/systm.h>
     44       1.29    dyoung #include <sys/mbuf.h>
     45        1.1    dyoung #include <sys/kernel.h>
     46        1.1    dyoung #include <sys/endian.h>
     47        1.1    dyoung #include <sys/errno.h>
     48        1.1    dyoung #include <sys/proc.h>
     49        1.1    dyoung #include <sys/sysctl.h>
     50        1.1    dyoung 
     51        1.1    dyoung #include <net/if.h>
     52       1.29    dyoung #include <net/if_llc.h>
     53        1.1    dyoung #include <net/if_media.h>
     54        1.1    dyoung #include <net/if_arp.h>
     55        1.5    dyoung #include <net/if_ether.h>
     56        1.1    dyoung #include <net/if_llc.h>
     57       1.29    dyoung #include <net/if_vlanvar.h>
     58        1.1    dyoung 
     59       1.29    dyoung #include <net80211/ieee80211_netbsd.h>
     60        1.5    dyoung #include <net80211/ieee80211_var.h>
     61  1.47.34.1     skrll #include <net80211/ieee80211_regdomain.h>
     62        1.1    dyoung 
     63        1.6    dyoung #if NBPFILTER > 0
     64        1.1    dyoung #include <net/bpf.h>
     65        1.6    dyoung #endif
     66        1.1    dyoung 
     67        1.1    dyoung #ifdef INET
     68       1.28     perry #include <netinet/in.h>
     69       1.29    dyoung #include <netinet/in_systm.h>
     70       1.29    dyoung #include <netinet/in_var.h>
     71       1.29    dyoung #include <netinet/ip.h>
     72        1.5    dyoung #include <net/if_ether.h>
     73        1.5    dyoung #endif
     74        1.1    dyoung 
     75  1.47.34.1     skrll #define	ETHER_HEADER_COPY(dst, src) \
     76  1.47.34.1     skrll 	memcpy(dst, src, sizeof(struct ether_header))
     77  1.47.34.1     skrll 
     78  1.47.34.1     skrll static struct mbuf *ieee80211_encap_fastframe(struct ieee80211com *ic,
     79  1.47.34.1     skrll 	struct mbuf *m1, const struct ether_header *eh1,
     80  1.47.34.1     skrll 	struct mbuf *m2, const struct ether_header *eh2);
     81       1.46    dyoung static int ieee80211_fragment(struct ieee80211com *, struct mbuf *,
     82       1.46    dyoung 	u_int hdrsize, u_int ciphdrsize, u_int mtu);
     83  1.47.34.1     skrll static	void ieee80211_tx_mgt_cb(struct ieee80211_node *, void *, int);
     84       1.46    dyoung 
     85       1.15   mycroft #ifdef IEEE80211_DEBUG
     86       1.15   mycroft /*
     87       1.15   mycroft  * Decide if an outbound management frame should be
     88       1.15   mycroft  * printed when debugging is enabled.  This filters some
     89       1.15   mycroft  * of the less interesting frames that come frequently
     90       1.15   mycroft  * (e.g. beacons).
     91       1.15   mycroft  */
     92       1.15   mycroft static __inline int
     93       1.15   mycroft doprint(struct ieee80211com *ic, int subtype)
     94       1.15   mycroft {
     95       1.15   mycroft 	switch (subtype) {
     96       1.15   mycroft 	case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
     97       1.15   mycroft 		return (ic->ic_opmode == IEEE80211_M_IBSS);
     98       1.15   mycroft 	}
     99       1.15   mycroft 	return 1;
    100       1.15   mycroft }
    101       1.15   mycroft #endif
    102       1.15   mycroft 
    103        1.1    dyoung /*
    104       1.39     skrll  * Set the direction field and address fields of an outgoing
    105       1.39     skrll  * non-QoS frame.  Note this should be called early on in
    106       1.39     skrll  * constructing a frame as it sets i_fc[1]; other bits can
    107       1.39     skrll  * then be or'd in.
    108       1.39     skrll  */
    109       1.39     skrll static void
    110       1.39     skrll ieee80211_send_setup(struct ieee80211com *ic,
    111       1.39     skrll 	struct ieee80211_node *ni,
    112       1.39     skrll 	struct ieee80211_frame *wh,
    113       1.39     skrll 	int type,
    114  1.47.34.1     skrll 	const uint8_t sa[IEEE80211_ADDR_LEN],
    115  1.47.34.1     skrll 	const uint8_t da[IEEE80211_ADDR_LEN],
    116  1.47.34.1     skrll 	const uint8_t bssid[IEEE80211_ADDR_LEN])
    117       1.39     skrll {
    118       1.39     skrll #define	WH4(wh)	((struct ieee80211_frame_addr4 *)wh)
    119       1.39     skrll 
    120       1.39     skrll 	wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | type;
    121       1.39     skrll 	if ((type & IEEE80211_FC0_TYPE_MASK) == IEEE80211_FC0_TYPE_DATA) {
    122       1.39     skrll 		switch (ic->ic_opmode) {
    123       1.39     skrll 		case IEEE80211_M_STA:
    124       1.39     skrll 			wh->i_fc[1] = IEEE80211_FC1_DIR_TODS;
    125       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr1, bssid);
    126       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr2, sa);
    127       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr3, da);
    128       1.39     skrll 			break;
    129       1.39     skrll 		case IEEE80211_M_IBSS:
    130       1.39     skrll 		case IEEE80211_M_AHDEMO:
    131       1.39     skrll 			wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
    132       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr1, da);
    133       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr2, sa);
    134       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr3, bssid);
    135       1.39     skrll 			break;
    136       1.39     skrll 		case IEEE80211_M_HOSTAP:
    137       1.39     skrll 			wh->i_fc[1] = IEEE80211_FC1_DIR_FROMDS;
    138       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr1, da);
    139       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr2, bssid);
    140       1.39     skrll 			IEEE80211_ADDR_COPY(wh->i_addr3, sa);
    141       1.39     skrll 			break;
    142  1.47.34.1     skrll 		case IEEE80211_M_WDS:
    143  1.47.34.1     skrll 			wh->i_fc[1] = IEEE80211_FC1_DIR_DSTODS;
    144  1.47.34.1     skrll 			/* XXX cheat, bssid holds RA */
    145  1.47.34.1     skrll 			IEEE80211_ADDR_COPY(wh->i_addr1, bssid);
    146  1.47.34.1     skrll 			IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
    147  1.47.34.1     skrll 			IEEE80211_ADDR_COPY(wh->i_addr3, da);
    148  1.47.34.1     skrll 			IEEE80211_ADDR_COPY(WH4(wh)->i_addr4, sa);
    149  1.47.34.1     skrll 			break;
    150       1.39     skrll 		case IEEE80211_M_MONITOR:	/* NB: to quiet compiler */
    151       1.39     skrll 			break;
    152       1.39     skrll 		}
    153       1.39     skrll 	} else {
    154       1.39     skrll 		wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
    155       1.39     skrll 		IEEE80211_ADDR_COPY(wh->i_addr1, da);
    156       1.39     skrll 		IEEE80211_ADDR_COPY(wh->i_addr2, sa);
    157       1.39     skrll 		IEEE80211_ADDR_COPY(wh->i_addr3, bssid);
    158       1.39     skrll 	}
    159  1.47.34.1     skrll 	*(uint16_t *)&wh->i_dur[0] = 0;
    160       1.39     skrll 	/* NB: use non-QoS tid */
    161  1.47.34.1     skrll 	*(uint16_t *)&wh->i_seq[0] =
    162  1.47.34.1     skrll 	    htole16(ni->ni_txseqs[IEEE80211_NONQOS_TID] << IEEE80211_SEQ_SEQ_SHIFT);
    163  1.47.34.1     skrll 	ni->ni_txseqs[IEEE80211_NONQOS_TID]++;
    164       1.39     skrll #undef WH4
    165       1.39     skrll }
    166       1.39     skrll 
    167       1.39     skrll /*
    168        1.1    dyoung  * Send a management frame to the specified node.  The node pointer
    169        1.1    dyoung  * must have a reference as the pointer will be passed to the driver
    170        1.1    dyoung  * and potentially held for a long time.  If the frame is successfully
    171        1.1    dyoung  * dispatched to the driver, then it is responsible for freeing the
    172        1.1    dyoung  * reference (and potentially free'ing up any associated storage).
    173        1.1    dyoung  */
    174  1.47.34.1     skrll int
    175       1.29    dyoung ieee80211_mgmt_output(struct ieee80211com *ic, struct ieee80211_node *ni,
    176  1.47.34.1     skrll     struct mbuf *m, int type)
    177        1.1    dyoung {
    178       1.29    dyoung 	struct ifnet *ifp = ic->ic_ifp;
    179        1.1    dyoung 	struct ieee80211_frame *wh;
    180        1.1    dyoung 
    181       1.11    dyoung 	IASSERT(ni != NULL, ("null node"));
    182        1.1    dyoung 
    183        1.1    dyoung 	/*
    184        1.1    dyoung 	 * Yech, hack alert!  We want to pass the node down to the
    185        1.1    dyoung 	 * driver's start routine.  If we don't do so then the start
    186        1.1    dyoung 	 * routine must immediately look it up again and that can
    187        1.1    dyoung 	 * cause a lock order reversal if, for example, this frame
    188        1.1    dyoung 	 * is being sent because the station is being timedout and
    189        1.1    dyoung 	 * the frame being sent is a DEAUTH message.  We could stick
    190        1.1    dyoung 	 * this in an m_tag and tack that on to the mbuf.  However
    191        1.1    dyoung 	 * that's rather expensive to do for every frame so instead
    192        1.1    dyoung 	 * we stuff it in the rcvif field since outbound frames do
    193        1.1    dyoung 	 * not (presently) use this.
    194        1.1    dyoung 	 */
    195        1.1    dyoung 	M_PREPEND(m, sizeof(struct ieee80211_frame), M_DONTWAIT);
    196        1.1    dyoung 	if (m == NULL)
    197        1.1    dyoung 		return ENOMEM;
    198        1.5    dyoung #ifdef __FreeBSD__
    199  1.47.34.1     skrll 	IASSERT(m->m_pkthdr.rcvif == NULL, ("rcvif not null"));
    200        1.5    dyoung #endif
    201        1.1    dyoung 	m->m_pkthdr.rcvif = (void *)ni;
    202        1.1    dyoung 
    203        1.1    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    204       1.39     skrll 	ieee80211_send_setup(ic, ni, wh,
    205       1.39     skrll 		IEEE80211_FC0_TYPE_MGT | type,
    206       1.39     skrll 		ic->ic_myaddr, ni->ni_macaddr, ni->ni_bssid);
    207        1.7    dyoung 	if ((m->m_flags & M_LINK0) != 0 && ni->ni_challenge != NULL) {
    208        1.7    dyoung 		m->m_flags &= ~M_LINK0;
    209       1.14   mycroft 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
    210       1.29    dyoung 			"[%s] encrypting frame (%s)\n",
    211       1.29    dyoung 			ether_sprintf(wh->i_addr1), __func__);
    212        1.7    dyoung 		wh->i_fc[1] |= IEEE80211_FC1_WEP;
    213        1.7    dyoung 	}
    214  1.47.34.1     skrll 	if (ni->ni_flags & IEEE80211_NODE_QOS) {
    215  1.47.34.1     skrll 		/* NB: force all management frames to the highest queue */
    216  1.47.34.1     skrll 		M_WME_SETAC(m, WME_AC_VO);
    217  1.47.34.1     skrll 	} else
    218  1.47.34.1     skrll 		M_WME_SETAC(m, WME_AC_BE);
    219        1.1    dyoung #ifdef IEEE80211_DEBUG
    220       1.15   mycroft 	/* avoid printing too many frames */
    221       1.15   mycroft 	if ((ieee80211_msg_debug(ic) && doprint(ic, type)) ||
    222       1.15   mycroft 	    ieee80211_msg_dumppkts(ic)) {
    223       1.29    dyoung 		printf("[%s] send %s on channel %u\n",
    224       1.29    dyoung 		    ether_sprintf(wh->i_addr1),
    225       1.15   mycroft 		    ieee80211_mgt_subtype_name[
    226       1.29    dyoung 			(type & IEEE80211_FC0_SUBTYPE_MASK) >>
    227       1.29    dyoung 				IEEE80211_FC0_SUBTYPE_SHIFT],
    228       1.39     skrll 		    ieee80211_chan2ieee(ic, ic->ic_curchan));
    229       1.15   mycroft 	}
    230        1.1    dyoung #endif
    231       1.29    dyoung 	IEEE80211_NODE_STAT(ni, tx_mgmt);
    232        1.1    dyoung 	IF_ENQUEUE(&ic->ic_mgtq, m);
    233  1.47.34.1     skrll 	ifp->if_timer = 1;
    234  1.47.34.1     skrll 	(*ifp->if_start)(ifp);
    235  1.47.34.1     skrll 	ifp->if_opackets++;
    236  1.47.34.1     skrll 
    237  1.47.34.1     skrll 	return 0;
    238  1.47.34.1     skrll }
    239  1.47.34.1     skrll 
    240  1.47.34.1     skrll /*
    241  1.47.34.1     skrll  * Raw packet transmit stub for legacy drivers.
    242  1.47.34.1     skrll  * Send the packet through the mgt q so we bypass
    243  1.47.34.1     skrll  * the normal encapsulation work.
    244  1.47.34.1     skrll  */
    245  1.47.34.1     skrll int
    246  1.47.34.1     skrll ieee80211_raw_xmit(struct ieee80211_node *ni, struct mbuf *m,
    247  1.47.34.1     skrll 	const struct ieee80211_bpf_params *params)
    248  1.47.34.1     skrll {
    249  1.47.34.1     skrll 	struct ieee80211com *ic = ni->ni_ic;
    250  1.47.34.1     skrll 	struct ifnet *ifp = ic->ic_ifp;
    251  1.47.34.1     skrll 
    252  1.47.34.1     skrll 	m->m_pkthdr.rcvif = (void *) ni;
    253  1.47.34.1     skrll 	IF_ENQUEUE(&ic->ic_mgtq, m);
    254  1.47.34.1     skrll 	(*ifp->if_start)(ifp);
    255  1.47.34.1     skrll 	ifp->if_opackets++;
    256  1.47.34.1     skrll 
    257  1.47.34.1     skrll 	return 0;
    258  1.47.34.1     skrll }
    259  1.47.34.1     skrll 
    260  1.47.34.1     skrll /* XXXNH */
    261  1.47.34.1     skrll #if 0
    262  1.47.34.1     skrll /*
    263  1.47.34.1     skrll  * 802.11 output routine. This is (currently) used only to
    264  1.47.34.1     skrll  * connect bpf write calls to the 802.11 layer for injecting
    265  1.47.34.1     skrll  * raw 802.11 frames.  Note we locate the ieee80211com from
    266  1.47.34.1     skrll  * the ifnet using a spare field setup at attach time.  This
    267  1.47.34.1     skrll  * will go away when the virtual ap support comes in.
    268  1.47.34.1     skrll  */
    269  1.47.34.1     skrll int
    270  1.47.34.1     skrll ieee80211_output(struct ifnet *ifp, struct mbuf *m,
    271  1.47.34.1     skrll 	const struct sockaddr *dst, struct rtentry *rt0)
    272  1.47.34.1     skrll {
    273  1.47.34.1     skrll #define senderr(e) do { error = (e); goto bad;} while (0)
    274  1.47.34.1     skrll 	struct ieee80211com *ic = ifp->if_llsoftc;	/* XXX */
    275  1.47.34.1     skrll 	struct ieee80211_node *ni = NULL;
    276  1.47.34.1     skrll 	struct ieee80211_frame *wh;
    277  1.47.34.1     skrll 	int error;
    278  1.47.34.1     skrll 
    279  1.47.34.1     skrll 	/*
    280  1.47.34.1     skrll 	 * Hand to the 802.3 code if not tagged as
    281  1.47.34.1     skrll 	 * a raw 802.11 frame.
    282  1.47.34.1     skrll 	 */
    283  1.47.34.1     skrll 	if (dst->sa_family != AF_IEEE80211)
    284  1.47.34.1     skrll 		return ether_output(ifp, m, dst, rt0);
    285  1.47.34.1     skrll #ifdef MAC
    286  1.47.34.1     skrll 	error = mac_check_ifnet_transmit(ifp, m);
    287  1.47.34.1     skrll 	if (error)
    288  1.47.34.1     skrll 		senderr(error);
    289  1.47.34.1     skrll #endif
    290  1.47.34.1     skrll 	if (ifp->if_flags & IFF_MONITOR)
    291  1.47.34.1     skrll 		senderr(ENETDOWN);
    292  1.47.34.1     skrll 	if ((ifp->if_flags & IFF_UP) == 0)
    293  1.47.34.1     skrll 		senderr(ENETDOWN);
    294  1.47.34.1     skrll 
    295  1.47.34.1     skrll 	/* XXX bypass bridge, pfil, carp, etc. */
    296  1.47.34.1     skrll 
    297  1.47.34.1     skrll 	if (m->m_pkthdr.len < sizeof(struct ieee80211_frame_ack))
    298  1.47.34.1     skrll 		senderr(EIO);	/* XXX */
    299  1.47.34.1     skrll 	wh = mtod(m, struct ieee80211_frame *);
    300  1.47.34.1     skrll 	if ((wh->i_fc[0] & IEEE80211_FC0_VERSION_MASK) !=
    301  1.47.34.1     skrll 	    IEEE80211_FC0_VERSION_0)
    302  1.47.34.1     skrll 		senderr(EIO);	/* XXX */
    303  1.47.34.1     skrll 
    304  1.47.34.1     skrll 	/* locate destination node */
    305  1.47.34.1     skrll 	switch (wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) {
    306  1.47.34.1     skrll 	case IEEE80211_FC1_DIR_NODS:
    307  1.47.34.1     skrll 	case IEEE80211_FC1_DIR_FROMDS:
    308  1.47.34.1     skrll 		ni = ieee80211_find_txnode(ic, wh->i_addr1);
    309  1.47.34.1     skrll 		break;
    310  1.47.34.1     skrll 	case IEEE80211_FC1_DIR_TODS:
    311  1.47.34.1     skrll 	case IEEE80211_FC1_DIR_DSTODS:
    312  1.47.34.1     skrll 		if (m->m_pkthdr.len < sizeof(struct ieee80211_frame))
    313  1.47.34.1     skrll 			senderr(EIO);	/* XXX */
    314  1.47.34.1     skrll 		ni = ieee80211_find_txnode(ic, wh->i_addr3);
    315  1.47.34.1     skrll 		break;
    316  1.47.34.1     skrll 	default:
    317  1.47.34.1     skrll 		senderr(EIO);	/* XXX */
    318  1.47.34.1     skrll 	}
    319  1.47.34.1     skrll 	if (ni == NULL) {
    320       1.43    dyoung 		/*
    321  1.47.34.1     skrll 		 * Permit packets w/ bpf params through regardless
    322  1.47.34.1     skrll 		 * (see below about sa_len).
    323       1.43    dyoung 		 */
    324  1.47.34.1     skrll 		if (dst->sa_len == 0)
    325  1.47.34.1     skrll 			senderr(EHOSTUNREACH);
    326  1.47.34.1     skrll 		ni = ieee80211_ref_node(ic->ic_bss);
    327       1.43    dyoung 	}
    328  1.47.34.1     skrll 
    329  1.47.34.1     skrll 	/* XXX ctrl frames should go through */
    330  1.47.34.1     skrll 	if ((ni->ni_flags & IEEE80211_NODE_PWR_MGT) &&
    331  1.47.34.1     skrll 	    (m->m_flags & M_PWR_SAV) == 0) {
    332  1.47.34.1     skrll 		/*
    333  1.47.34.1     skrll 		 * Station in power save mode; pass the frame
    334  1.47.34.1     skrll 		 * to the 802.11 layer and continue.  We'll get
    335  1.47.34.1     skrll 		 * the frame back when the time is right.
    336  1.47.34.1     skrll 		 */
    337  1.47.34.1     skrll 		ieee80211_pwrsave(ni, m);
    338  1.47.34.1     skrll 		error = 0;
    339  1.47.34.1     skrll 		goto reclaim;
    340  1.47.34.1     skrll 	}
    341  1.47.34.1     skrll 
    342  1.47.34.1     skrll 	/* calculate priority so drivers can find the tx queue */
    343  1.47.34.1     skrll 	/* XXX assumes an 802.3 frame */
    344  1.47.34.1     skrll 	if (ieee80211_classify(ic, m, ni))
    345  1.47.34.1     skrll 		senderr(EIO);		/* XXX */
    346  1.47.34.1     skrll 
    347  1.47.34.1     skrll 	BPF_MTAP(ifp, m);
    348  1.47.34.1     skrll 	/*
    349  1.47.34.1     skrll 	 * NB: DLT_IEEE802_11_RADIO identifies the parameters are
    350  1.47.34.1     skrll 	 * present by setting the sa_len field of the sockaddr (yes,
    351  1.47.34.1     skrll 	 * this is a hack).
    352  1.47.34.1     skrll 	 * NB: we assume sa_data is suitably aligned to cast.
    353  1.47.34.1     skrll 	 */
    354  1.47.34.1     skrll 	return ic->ic_raw_xmit(ni, m, (const struct ieee80211_bpf_params *)
    355  1.47.34.1     skrll 		(dst->sa_len ? dst->sa_data : NULL));
    356  1.47.34.1     skrll bad:
    357  1.47.34.1     skrll 	if (m != NULL)
    358  1.47.34.1     skrll 		m_freem(m);
    359  1.47.34.1     skrll reclaim:
    360  1.47.34.1     skrll 	if (ni != NULL)
    361  1.47.34.1     skrll 		ieee80211_free_node(ni);
    362  1.47.34.1     skrll 	return error;
    363  1.47.34.1     skrll #undef senderr
    364        1.1    dyoung }
    365  1.47.34.1     skrll #endif
    366        1.1    dyoung 
    367        1.1    dyoung /*
    368       1.29    dyoung  * Send a null data frame to the specified node.
    369       1.39     skrll  *
    370       1.39     skrll  * NB: the caller is assumed to have setup a node reference
    371       1.39     skrll  *     for use; this is necessary to deal with a race condition
    372       1.39     skrll  *     when probing for inactive stations.
    373       1.29    dyoung  */
    374       1.29    dyoung int
    375       1.39     skrll ieee80211_send_nulldata(struct ieee80211_node *ni)
    376       1.29    dyoung {
    377       1.39     skrll 	struct ieee80211com *ic = ni->ni_ic;
    378       1.29    dyoung 	struct ifnet *ifp = ic->ic_ifp;
    379       1.29    dyoung 	struct mbuf *m;
    380       1.29    dyoung 	struct ieee80211_frame *wh;
    381       1.29    dyoung 
    382  1.47.34.1     skrll 	MGETHDR(m, M_NOWAIT, MT_DATA);
    383       1.29    dyoung 	if (m == NULL) {
    384       1.29    dyoung 		/* XXX debug msg */
    385       1.39     skrll 		ieee80211_unref_node(&ni);
    386  1.47.34.1     skrll 		ic->ic_stats.is_tx_nobuf++;
    387       1.29    dyoung 		return ENOMEM;
    388       1.29    dyoung 	}
    389  1.47.34.1     skrll 	MH_ALIGN(m, sizeof(struct ieee80211_frame));
    390       1.39     skrll 	m->m_pkthdr.rcvif = (void *) ni;
    391       1.29    dyoung 
    392       1.29    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    393       1.39     skrll 	ieee80211_send_setup(ic, ni, wh,
    394       1.39     skrll 		IEEE80211_FC0_TYPE_DATA | IEEE80211_FC0_SUBTYPE_NODATA,
    395       1.39     skrll 		ic->ic_myaddr, ni->ni_macaddr, ni->ni_bssid);
    396       1.39     skrll 	/* NB: power management bit is never sent by an AP */
    397       1.39     skrll 	if ((ni->ni_flags & IEEE80211_NODE_PWR_MGT) &&
    398  1.47.34.1     skrll 	    ic->ic_opmode != IEEE80211_M_HOSTAP &&
    399  1.47.34.1     skrll 	    ic->ic_opmode != IEEE80211_M_WDS)
    400       1.39     skrll 		wh->i_fc[1] |= IEEE80211_FC1_PWR_MGT;
    401       1.29    dyoung 	m->m_len = m->m_pkthdr.len = sizeof(struct ieee80211_frame);
    402  1.47.34.1     skrll 	M_WME_SETAC(m, WME_AC_BE);
    403       1.29    dyoung 
    404       1.29    dyoung 	IEEE80211_NODE_STAT(ni, tx_data);
    405       1.29    dyoung 
    406       1.39     skrll 	IEEE80211_DPRINTF(ic, IEEE80211_MSG_DEBUG | IEEE80211_MSG_DUMPPKTS,
    407       1.39     skrll 	    "[%s] send null data frame on channel %u, pwr mgt %s\n",
    408       1.39     skrll 	    ether_sprintf(ni->ni_macaddr),
    409       1.39     skrll 	    ieee80211_chan2ieee(ic, ic->ic_curchan),
    410       1.39     skrll 	    wh->i_fc[1] & IEEE80211_FC1_PWR_MGT ? "ena" : "dis");
    411       1.39     skrll 
    412       1.29    dyoung 	IF_ENQUEUE(&ic->ic_mgtq, m);		/* cheat */
    413       1.29    dyoung 	(*ifp->if_start)(ifp);
    414       1.29    dyoung 
    415       1.29    dyoung 	return 0;
    416       1.29    dyoung }
    417       1.29    dyoung 
    418       1.29    dyoung /*
    419       1.29    dyoung  * Assign priority to a frame based on any vlan tag assigned
    420       1.29    dyoung  * to the station and/or any Diffserv setting in an IP header.
    421       1.29    dyoung  * Finally, if an ACM policy is setup (in station mode) it's
    422       1.29    dyoung  * applied.
    423       1.29    dyoung  */
    424       1.29    dyoung int
    425       1.29    dyoung ieee80211_classify(struct ieee80211com *ic, struct mbuf *m, struct ieee80211_node *ni)
    426       1.29    dyoung {
    427       1.29    dyoung 	int v_wme_ac, d_wme_ac, ac;
    428       1.29    dyoung #ifdef INET
    429       1.29    dyoung 	struct ether_header *eh;
    430       1.29    dyoung #endif
    431       1.29    dyoung 
    432       1.29    dyoung 	if ((ni->ni_flags & IEEE80211_NODE_QOS) == 0) {
    433       1.29    dyoung 		ac = WME_AC_BE;
    434       1.29    dyoung 		goto done;
    435       1.29    dyoung 	}
    436       1.29    dyoung 
    437       1.29    dyoung 	/*
    438       1.29    dyoung 	 * If node has a vlan tag then all traffic
    439       1.29    dyoung 	 * to it must have a matching tag.
    440       1.29    dyoung 	 */
    441       1.29    dyoung 	v_wme_ac = 0;
    442       1.29    dyoung 	if (ni->ni_vlan != 0) {
    443       1.29    dyoung 		/* XXX used to check ec_nvlans. */
    444       1.38    dyoung 		struct m_tag *mtag = m_tag_find(m, PACKET_TAG_VLAN, NULL);
    445       1.38    dyoung 		if (mtag == NULL) {
    446       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_novlantag);
    447       1.29    dyoung 			return 1;
    448       1.29    dyoung 		}
    449       1.29    dyoung 		if (EVL_VLANOFTAG(VLAN_TAG_VALUE(mtag)) !=
    450       1.29    dyoung 		    EVL_VLANOFTAG(ni->ni_vlan)) {
    451       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_vlanmismatch);
    452       1.29    dyoung 			return 1;
    453       1.29    dyoung 		}
    454       1.29    dyoung 		/* map vlan priority to AC */
    455  1.47.34.1     skrll 		v_wme_ac = TID_TO_WME_AC(EVL_PRIOFTAG(ni->ni_vlan));
    456       1.29    dyoung 	}
    457       1.29    dyoung 
    458       1.29    dyoung #ifdef INET
    459       1.29    dyoung 	eh = mtod(m, struct ether_header *);
    460       1.29    dyoung 	if (eh->ether_type == htons(ETHERTYPE_IP)) {
    461  1.47.34.1     skrll 		uint8_t tos;
    462       1.29    dyoung 		/*
    463  1.47.34.1     skrll 		 * IP frame, map the DSCP bits from the TOS field.
    464       1.29    dyoung 		 */
    465  1.47.34.1     skrll 		/* XXX m_copydata may be too slow for fast path */
    466  1.47.34.1     skrll 		/* NB: ip header may not be in first mbuf */
    467  1.47.34.1     skrll 		m_copydata(m, sizeof(struct ether_header) +
    468  1.47.34.1     skrll 		    offsetof(struct ip, ip_tos), sizeof(tos), &tos);
    469  1.47.34.1     skrll 		tos >>= 5;		/* NB: ECN + low 3 bits of DSCP */
    470  1.47.34.1     skrll 		d_wme_ac = TID_TO_WME_AC(tos);
    471       1.29    dyoung 	} else {
    472       1.29    dyoung #endif /* INET */
    473       1.29    dyoung 		d_wme_ac = WME_AC_BE;
    474       1.29    dyoung #ifdef INET
    475       1.29    dyoung 	}
    476       1.29    dyoung #endif
    477       1.29    dyoung 	/*
    478       1.29    dyoung 	 * Use highest priority AC.
    479       1.29    dyoung 	 */
    480       1.29    dyoung 	if (v_wme_ac > d_wme_ac)
    481       1.29    dyoung 		ac = v_wme_ac;
    482       1.29    dyoung 	else
    483       1.29    dyoung 		ac = d_wme_ac;
    484       1.29    dyoung 
    485       1.29    dyoung 	/*
    486       1.29    dyoung 	 * Apply ACM policy.
    487       1.29    dyoung 	 */
    488       1.29    dyoung 	if (ic->ic_opmode == IEEE80211_M_STA) {
    489       1.29    dyoung 		static const int acmap[4] = {
    490       1.29    dyoung 			WME_AC_BK,	/* WME_AC_BE */
    491       1.29    dyoung 			WME_AC_BK,	/* WME_AC_BK */
    492       1.29    dyoung 			WME_AC_BE,	/* WME_AC_VI */
    493       1.29    dyoung 			WME_AC_VI,	/* WME_AC_VO */
    494       1.29    dyoung 		};
    495       1.29    dyoung 		while (ac != WME_AC_BK &&
    496       1.29    dyoung 		    ic->ic_wme.wme_wmeBssChanParams.cap_wmeParams[ac].wmep_acm)
    497       1.29    dyoung 			ac = acmap[ac];
    498       1.29    dyoung 	}
    499       1.29    dyoung done:
    500       1.29    dyoung 	M_WME_SETAC(m, ac);
    501       1.29    dyoung 	return 0;
    502       1.29    dyoung }
    503       1.29    dyoung 
    504       1.29    dyoung /*
    505       1.29    dyoung  * Insure there is sufficient contiguous space to encapsulate the
    506       1.29    dyoung  * 802.11 data frame.  If room isn't already there, arrange for it.
    507       1.29    dyoung  * Drivers and cipher modules assume we have done the necessary work
    508       1.29    dyoung  * and fail rudely if they don't find the space they need.
    509       1.29    dyoung  */
    510       1.29    dyoung static struct mbuf *
    511       1.29    dyoung ieee80211_mbuf_adjust(struct ieee80211com *ic, int hdrsize,
    512       1.29    dyoung 	struct ieee80211_key *key, struct mbuf *m)
    513       1.29    dyoung {
    514       1.29    dyoung #define	TO_BE_RECLAIMED	(sizeof(struct ether_header) - sizeof(struct llc))
    515  1.47.34.1     skrll 	int needed_space = ic->ic_headroom + hdrsize;
    516       1.37    dyoung 	int wlen = 0;
    517       1.29    dyoung 
    518       1.29    dyoung 	if (key != NULL) {
    519       1.29    dyoung 		/* XXX belongs in crypto code? */
    520       1.29    dyoung 		needed_space += key->wk_cipher->ic_header;
    521       1.29    dyoung 		/* XXX frags */
    522       1.29    dyoung 	}
    523       1.29    dyoung 	/*
    524       1.29    dyoung 	 * We know we are called just before stripping an Ethernet
    525       1.29    dyoung 	 * header and prepending an LLC header.  This means we know
    526       1.29    dyoung 	 * there will be
    527       1.29    dyoung 	 *	sizeof(struct ether_header) - sizeof(struct llc)
    528       1.29    dyoung 	 * bytes recovered to which we need additional space for the
    529       1.29    dyoung 	 * 802.11 header and any crypto header.
    530       1.29    dyoung 	 */
    531       1.29    dyoung 	/* XXX check trailing space and copy instead? */
    532       1.29    dyoung 	if (M_LEADINGSPACE(m) < needed_space - TO_BE_RECLAIMED) {
    533       1.29    dyoung 		struct mbuf *n = m_gethdr(M_NOWAIT, m->m_type);
    534       1.29    dyoung 		if (n == NULL) {
    535       1.29    dyoung 			IEEE80211_DPRINTF(ic, IEEE80211_MSG_OUTPUT,
    536       1.29    dyoung 			    "%s: cannot expand storage\n", __func__);
    537       1.29    dyoung 			ic->ic_stats.is_tx_nobuf++;
    538       1.29    dyoung 			m_freem(m);
    539       1.29    dyoung 			return NULL;
    540       1.29    dyoung 		}
    541       1.29    dyoung 		IASSERT(needed_space <= MHLEN,
    542       1.29    dyoung 		    ("not enough room, need %u got %zu\n", needed_space, MHLEN));
    543       1.29    dyoung 		/*
    544       1.29    dyoung 		 * Setup new mbuf to have leading space to prepend the
    545       1.29    dyoung 		 * 802.11 header and any crypto header bits that are
    546       1.29    dyoung 		 * required (the latter are added when the driver calls
    547       1.29    dyoung 		 * back to ieee80211_crypto_encap to do crypto encapsulation).
    548       1.29    dyoung 		 */
    549       1.29    dyoung 		/* NB: must be first 'cuz it clobbers m_data */
    550       1.36      yamt 		M_MOVE_PKTHDR(n, m);
    551       1.29    dyoung 		n->m_len = 0;			/* NB: m_gethdr does not set */
    552       1.29    dyoung 		n->m_data += needed_space;
    553       1.29    dyoung 		/*
    554       1.29    dyoung 		 * Pull up Ethernet header to create the expected layout.
    555       1.29    dyoung 		 * We could use m_pullup but that's overkill (i.e. we don't
    556       1.29    dyoung 		 * need the actual data) and it cannot fail so do it inline
    557       1.29    dyoung 		 * for speed.
    558       1.29    dyoung 		 */
    559       1.29    dyoung 		/* NB: struct ether_header is known to be contiguous */
    560       1.29    dyoung 		n->m_len += sizeof(struct ether_header);
    561       1.29    dyoung 		m->m_len -= sizeof(struct ether_header);
    562       1.29    dyoung 		m->m_data += sizeof(struct ether_header);
    563       1.29    dyoung 		/*
    564       1.29    dyoung 		 * Replace the head of the chain.
    565       1.29    dyoung 		 */
    566       1.29    dyoung 		n->m_next = m;
    567       1.29    dyoung 		m = n;
    568       1.37    dyoung 	} else {
    569       1.37    dyoung                 /* We will overwrite the ethernet header in the
    570       1.37    dyoung                  * 802.11 encapsulation stage.  Make sure that it
    571       1.37    dyoung                  * is writable.
    572       1.37    dyoung 		 */
    573       1.37    dyoung 		wlen = sizeof(struct ether_header);
    574       1.29    dyoung 	}
    575       1.34     skrll 
    576       1.34     skrll 	/*
    577       1.34     skrll 	 * If we're going to s/w encrypt the mbuf chain make sure it is
    578       1.34     skrll 	 * writable.
    579       1.34     skrll 	 */
    580       1.37    dyoung 	if (key != NULL && (key->wk_flags & IEEE80211_KEY_SWCRYPT) != 0)
    581       1.37    dyoung 		wlen = M_COPYALL;
    582       1.34     skrll 
    583       1.37    dyoung 	if (wlen != 0 && m_makewritable(&m, 0, wlen, M_DONTWAIT) != 0) {
    584  1.47.34.1     skrll 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_OUTPUT,
    585  1.47.34.1     skrll 		    "%s: cannot get writable mbuf\n", __func__);
    586  1.47.34.1     skrll 		ic->ic_stats.is_tx_nobuf++; /* XXX new stat */
    587       1.37    dyoung 		m_freem(m);
    588       1.37    dyoung 		return NULL;
    589       1.34     skrll 	}
    590       1.29    dyoung 	return m;
    591       1.29    dyoung #undef TO_BE_RECLAIMED
    592       1.29    dyoung }
    593       1.29    dyoung 
    594       1.29    dyoung /*
    595       1.29    dyoung  * Return the transmit key to use in sending a unicast frame.
    596       1.29    dyoung  * If a unicast key is set we use that.  When no unicast key is set
    597       1.29    dyoung  * we fall back to the default transmit key.
    598       1.29    dyoung  */
    599       1.29    dyoung static __inline struct ieee80211_key *
    600       1.29    dyoung ieee80211_crypto_getucastkey(struct ieee80211com *ic, struct ieee80211_node *ni)
    601       1.29    dyoung {
    602  1.47.34.1     skrll 	if (IEEE80211_KEY_UNDEFINED(&ni->ni_ucastkey)) {
    603       1.29    dyoung 		if (ic->ic_def_txkey == IEEE80211_KEYIX_NONE ||
    604  1.47.34.1     skrll 		    IEEE80211_KEY_UNDEFINED(&ic->ic_nw_keys[ic->ic_def_txkey]))
    605       1.29    dyoung 			return NULL;
    606       1.29    dyoung 		return &ic->ic_nw_keys[ic->ic_def_txkey];
    607       1.29    dyoung 	} else {
    608       1.29    dyoung 		return &ni->ni_ucastkey;
    609       1.29    dyoung 	}
    610       1.29    dyoung }
    611       1.29    dyoung 
    612       1.29    dyoung /*
    613       1.29    dyoung  * Return the transmit key to use in sending a multicast frame.
    614       1.29    dyoung  * Multicast traffic always uses the group key which is installed as
    615       1.29    dyoung  * the default tx key.
    616       1.29    dyoung  */
    617       1.29    dyoung static __inline struct ieee80211_key *
    618       1.44  christos ieee80211_crypto_getmcastkey(struct ieee80211com *ic,
    619       1.45  christos     struct ieee80211_node *ni)
    620       1.29    dyoung {
    621       1.29    dyoung 	if (ic->ic_def_txkey == IEEE80211_KEYIX_NONE ||
    622  1.47.34.1     skrll 	    IEEE80211_KEY_UNDEFINED(&ic->ic_nw_keys[ic->ic_def_txkey]))
    623       1.29    dyoung 		return NULL;
    624       1.29    dyoung 	return &ic->ic_nw_keys[ic->ic_def_txkey];
    625       1.29    dyoung }
    626       1.29    dyoung 
    627       1.29    dyoung /*
    628       1.29    dyoung  * Encapsulate an outbound data frame.  The mbuf chain is updated.
    629       1.29    dyoung  * If an error is encountered NULL is returned.  The caller is required
    630       1.29    dyoung  * to provide a node reference and pullup the ethernet header in the
    631       1.29    dyoung  * first mbuf.
    632        1.1    dyoung  */
    633        1.1    dyoung struct mbuf *
    634       1.29    dyoung ieee80211_encap(struct ieee80211com *ic, struct mbuf *m,
    635       1.29    dyoung 	struct ieee80211_node *ni)
    636        1.1    dyoung {
    637        1.1    dyoung 	struct ether_header eh;
    638        1.1    dyoung 	struct ieee80211_frame *wh;
    639       1.29    dyoung 	struct ieee80211_key *key;
    640        1.1    dyoung 	struct llc *llc;
    641  1.47.34.1     skrll 	int hdrsize, datalen, addqos, txfrag, isff;
    642        1.1    dyoung 
    643  1.47.34.1     skrll 	/*
    644  1.47.34.1     skrll 	 * Copy existing Ethernet header to a safe place.  The
    645  1.47.34.1     skrll 	 * rest of the code assumes it's ok to strip it when
    646  1.47.34.1     skrll 	 * reorganizing state for the final encapsulation.
    647  1.47.34.1     skrll 	 */
    648       1.29    dyoung 	IASSERT(m->m_len >= sizeof(eh), ("no ethernet header!"));
    649       1.47  christos 	memcpy(&eh, mtod(m, void *), sizeof(struct ether_header));
    650        1.1    dyoung 
    651       1.29    dyoung 	/*
    652       1.29    dyoung 	 * Insure space for additional headers.  First identify
    653       1.29    dyoung 	 * transmit key to use in calculating any buffer adjustments
    654       1.29    dyoung 	 * required.  This is also used below to do privacy
    655       1.29    dyoung 	 * encapsulation work.  Then calculate the 802.11 header
    656       1.29    dyoung 	 * size and any padding required by the driver.
    657       1.29    dyoung 	 *
    658       1.29    dyoung 	 * Note key may be NULL if we fall back to the default
    659       1.29    dyoung 	 * transmit key and that is not set.  In that case the
    660       1.29    dyoung 	 * buffer may not be expanded as needed by the cipher
    661       1.29    dyoung 	 * routines, but they will/should discard it.
    662       1.29    dyoung 	 */
    663       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_PRIVACY) {
    664       1.29    dyoung 		if (ic->ic_opmode == IEEE80211_M_STA ||
    665       1.29    dyoung 		    !IEEE80211_IS_MULTICAST(eh.ether_dhost))
    666       1.29    dyoung 			key = ieee80211_crypto_getucastkey(ic, ni);
    667       1.29    dyoung 		else
    668       1.29    dyoung 			key = ieee80211_crypto_getmcastkey(ic, ni);
    669       1.29    dyoung 		if (key == NULL && eh.ether_type != htons(ETHERTYPE_PAE)) {
    670       1.29    dyoung 			IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
    671       1.29    dyoung 			    "[%s] no default transmit key (%s) deftxkey %u\n",
    672       1.29    dyoung 			    ether_sprintf(eh.ether_dhost), __func__,
    673       1.29    dyoung 			    ic->ic_def_txkey);
    674       1.29    dyoung 			ic->ic_stats.is_tx_nodefkey++;
    675  1.47.34.1     skrll 			goto bad;
    676       1.29    dyoung 		}
    677       1.29    dyoung 	} else
    678       1.29    dyoung 		key = NULL;
    679       1.29    dyoung 	/* XXX 4-address format */
    680       1.29    dyoung 	/*
    681       1.29    dyoung 	 * XXX Some ap's don't handle QoS-encapsulated EAPOL
    682       1.29    dyoung 	 * frames so suppress use.  This may be an issue if other
    683       1.29    dyoung 	 * ap's require all data frames to be QoS-encapsulated
    684       1.29    dyoung 	 * once negotiated in which case we'll need to make this
    685       1.29    dyoung 	 * configurable.
    686       1.29    dyoung 	 */
    687  1.47.34.1     skrll 	addqos = (ni->ni_flags & (IEEE80211_NODE_QOS|IEEE80211_NODE_HT)) &&
    688       1.29    dyoung 		 eh.ether_type != htons(ETHERTYPE_PAE);
    689       1.29    dyoung 	if (addqos)
    690       1.29    dyoung 		hdrsize = sizeof(struct ieee80211_qosframe);
    691       1.29    dyoung 	else
    692       1.29    dyoung 		hdrsize = sizeof(struct ieee80211_frame);
    693       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_DATAPAD)
    694  1.47.34.1     skrll 		hdrsize = roundup(hdrsize, sizeof(uint32_t));
    695        1.1    dyoung 
    696  1.47.34.1     skrll 	if ((isff = m->m_flags & M_FF) != 0) {
    697  1.47.34.1     skrll 		struct mbuf *m2;
    698  1.47.34.1     skrll 		struct ether_header eh2;
    699  1.47.34.1     skrll 
    700  1.47.34.1     skrll 		/*
    701  1.47.34.1     skrll 		 * Fast frame encapsulation.  There must be two packets
    702  1.47.34.1     skrll 		 * chained with m_nextpkt.  We do header adjustment for
    703  1.47.34.1     skrll 		 * each, add the tunnel encapsulation, and then concatenate
    704  1.47.34.1     skrll 		 * the mbuf chains to form a single frame for transmission.
    705  1.47.34.1     skrll 		 */
    706  1.47.34.1     skrll 		m2 = m->m_nextpkt;
    707  1.47.34.1     skrll 		if (m2 == NULL) {
    708  1.47.34.1     skrll 			IEEE80211_DPRINTF(ic, IEEE80211_MSG_SUPERG,
    709  1.47.34.1     skrll 				"%s: only one frame\n", __func__);
    710  1.47.34.1     skrll 			goto bad;
    711  1.47.34.1     skrll 		}
    712  1.47.34.1     skrll 		m->m_nextpkt = NULL;
    713  1.47.34.1     skrll 		/*
    714  1.47.34.1     skrll 		 * Include fast frame headers in adjusting header
    715  1.47.34.1     skrll 		 * layout; this allocates space according to what
    716  1.47.34.1     skrll 		 * ieee80211_encap_fastframe will do.
    717  1.47.34.1     skrll 		 */
    718  1.47.34.1     skrll 		m = ieee80211_mbuf_adjust(ic,
    719  1.47.34.1     skrll 			hdrsize + sizeof(struct llc) + sizeof(uint32_t) + 2 +
    720  1.47.34.1     skrll 			    sizeof(struct ether_header),
    721  1.47.34.1     skrll 			key, m);
    722  1.47.34.1     skrll 		if (m == NULL) {
    723  1.47.34.1     skrll 			/* NB: ieee80211_mbuf_adjust handles msgs+statistics */
    724  1.47.34.1     skrll 			m_freem(m2);
    725  1.47.34.1     skrll 			goto bad;
    726  1.47.34.1     skrll 		}
    727  1.47.34.1     skrll 		/*
    728  1.47.34.1     skrll 		 * Copy second frame's Ethernet header out of line
    729  1.47.34.1     skrll 		 * and adjust for encapsulation headers.  Note that
    730  1.47.34.1     skrll 		 * we make room for padding in case there isn't room
    731  1.47.34.1     skrll 		 * at the end of first frame.
    732  1.47.34.1     skrll 		 */
    733  1.47.34.1     skrll 		IASSERT(m2->m_len >= sizeof(eh2), ("no ethernet header!"));
    734  1.47.34.1     skrll 		memcpy(&eh2, mtod(m2, void *), sizeof(struct ether_header));
    735  1.47.34.1     skrll 		m2 = ieee80211_mbuf_adjust(ic,
    736  1.47.34.1     skrll 			ATH_FF_MAX_HDR_PAD + sizeof(struct ether_header),
    737  1.47.34.1     skrll 			NULL, m2);
    738  1.47.34.1     skrll 		if (m2 == NULL) {
    739  1.47.34.1     skrll 			/* NB: ieee80211_mbuf_adjust handles msgs+statistics */
    740  1.47.34.1     skrll 			goto bad;
    741  1.47.34.1     skrll 		}
    742  1.47.34.1     skrll 		m = ieee80211_encap_fastframe(ic, m, &eh, m2, &eh2);
    743  1.47.34.1     skrll 		if (m == NULL)
    744  1.47.34.1     skrll 			goto bad;
    745  1.47.34.1     skrll 	} else {
    746  1.47.34.1     skrll 		/*
    747  1.47.34.1     skrll 		 * Normal frame.
    748  1.47.34.1     skrll 		 */
    749  1.47.34.1     skrll 		m = ieee80211_mbuf_adjust(ic, hdrsize, key, m);
    750  1.47.34.1     skrll 		if (m == NULL) {
    751  1.47.34.1     skrll 			/* NB: ieee80211_mbuf_adjust handles msgs+statistics */
    752  1.47.34.1     skrll 			goto bad;
    753  1.47.34.1     skrll 		}
    754  1.47.34.1     skrll 		/* NB: this could be optimized 'cuz of ieee80211_mbuf_adjust */
    755  1.47.34.1     skrll 		m_adj(m, sizeof(struct ether_header) - sizeof(struct llc));
    756  1.47.34.1     skrll 		llc = mtod(m, struct llc *);
    757  1.47.34.1     skrll 		llc->llc_dsap = llc->llc_ssap = LLC_SNAP_LSAP;
    758  1.47.34.1     skrll 		llc->llc_control = LLC_UI;
    759  1.47.34.1     skrll 		llc->llc_snap.org_code[0] = 0;
    760  1.47.34.1     skrll 		llc->llc_snap.org_code[1] = 0;
    761  1.47.34.1     skrll 		llc->llc_snap.org_code[2] = 0;
    762  1.47.34.1     skrll 		llc->llc_snap.ether_type = eh.ether_type;
    763  1.47.34.1     skrll 	}
    764       1.29    dyoung 	datalen = m->m_pkthdr.len;		/* NB: w/o 802.11 header */
    765       1.29    dyoung 
    766       1.29    dyoung 	M_PREPEND(m, hdrsize, M_DONTWAIT);
    767       1.10    dyoung 	if (m == NULL) {
    768       1.29    dyoung 		ic->ic_stats.is_tx_nobuf++;
    769        1.1    dyoung 		goto bad;
    770       1.10    dyoung 	}
    771        1.1    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    772        1.1    dyoung 	wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_DATA;
    773  1.47.34.1     skrll 	*(uint16_t *)wh->i_dur = 0;
    774        1.1    dyoung 	switch (ic->ic_opmode) {
    775        1.1    dyoung 	case IEEE80211_M_STA:
    776        1.1    dyoung 		wh->i_fc[1] = IEEE80211_FC1_DIR_TODS;
    777        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr1, ni->ni_bssid);
    778        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr2, eh.ether_shost);
    779        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr3, eh.ether_dhost);
    780        1.1    dyoung 		break;
    781        1.1    dyoung 	case IEEE80211_M_IBSS:
    782        1.1    dyoung 	case IEEE80211_M_AHDEMO:
    783        1.1    dyoung 		wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
    784        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr1, eh.ether_dhost);
    785        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr2, eh.ether_shost);
    786       1.29    dyoung 		/*
    787       1.29    dyoung 		 * NB: always use the bssid from ic_bss as the
    788       1.29    dyoung 		 *     neighbor's may be stale after an ibss merge
    789       1.29    dyoung 		 */
    790       1.27    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr3, ic->ic_bss->ni_bssid);
    791        1.1    dyoung 		break;
    792        1.1    dyoung 	case IEEE80211_M_HOSTAP:
    793       1.30    dyoung #ifndef IEEE80211_NO_HOSTAP
    794        1.1    dyoung 		wh->i_fc[1] = IEEE80211_FC1_DIR_FROMDS;
    795        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr1, eh.ether_dhost);
    796        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr2, ni->ni_bssid);
    797        1.1    dyoung 		IEEE80211_ADDR_COPY(wh->i_addr3, eh.ether_shost);
    798       1.30    dyoung #endif /* !IEEE80211_NO_HOSTAP */
    799        1.1    dyoung 		break;
    800        1.1    dyoung 	case IEEE80211_M_MONITOR:
    801  1.47.34.1     skrll 	case IEEE80211_M_WDS:
    802        1.1    dyoung 		goto bad;
    803        1.1    dyoung 	}
    804       1.33    dyoung 	if (m->m_flags & M_MORE_DATA)
    805       1.33    dyoung 		wh->i_fc[1] |= IEEE80211_FC1_MORE_DATA;
    806       1.29    dyoung 	if (addqos) {
    807       1.29    dyoung 		struct ieee80211_qosframe *qwh =
    808       1.29    dyoung 			(struct ieee80211_qosframe *) wh;
    809       1.29    dyoung 		int ac, tid;
    810       1.29    dyoung 
    811       1.29    dyoung 		ac = M_WME_GETAC(m);
    812       1.29    dyoung 		/* map from access class/queue to 11e header priorty value */
    813       1.29    dyoung 		tid = WME_AC_TO_TID(ac);
    814       1.29    dyoung 		qwh->i_qos[0] = tid & IEEE80211_QOS_TID;
    815  1.47.34.1     skrll 		/*
    816  1.47.34.1     skrll 		 * Check if A-MPDU tx aggregation is setup or if we
    817  1.47.34.1     skrll 		 * should try to enable it.  The sta must be associated
    818  1.47.34.1     skrll 		 * with HT and A-MPDU enabled for use.  On the first
    819  1.47.34.1     skrll 		 * frame that goes out We issue an ADDBA request and
    820  1.47.34.1     skrll 		 * wait for a reply.  The frame being encapsulated
    821  1.47.34.1     skrll 		 * will go out w/o using A-MPDU, or possibly it might
    822  1.47.34.1     skrll 		 * be collected by the driver and held/retransmit.
    823  1.47.34.1     skrll 		 * ieee80211_ampdu_request handles staggering requests
    824  1.47.34.1     skrll 		 * in case the receiver NAK's us or we are otherwise
    825  1.47.34.1     skrll 		 * unable to establish a BA stream.
    826  1.47.34.1     skrll 		 */
    827  1.47.34.1     skrll 		if ((ni->ni_flags & IEEE80211_NODE_AMPDU_TX) &&
    828  1.47.34.1     skrll 		    (ic->ic_flags_ext & IEEE80211_FEXT_AMPDU_TX)) {
    829  1.47.34.1     skrll 			struct ieee80211_tx_ampdu *tap = &ni->ni_tx_ampdu[ac];
    830  1.47.34.1     skrll 
    831  1.47.34.1     skrll 			if (IEEE80211_AMPDU_RUNNING(tap)) {
    832  1.47.34.1     skrll 				/*
    833  1.47.34.1     skrll 				 * Operational, mark frame for aggregation.
    834  1.47.34.1     skrll 				 */
    835  1.47.34.1     skrll 				qwh->i_qos[0] |= IEEE80211_QOS_ACKPOLICY_BA;
    836  1.47.34.1     skrll 			} else if (!IEEE80211_AMPDU_REQUESTED(tap)) {
    837  1.47.34.1     skrll 				/*
    838  1.47.34.1     skrll 				 * Not negotiated yet, request service.
    839  1.47.34.1     skrll 				 */
    840  1.47.34.1     skrll 				ieee80211_ampdu_request(ni, tap);
    841  1.47.34.1     skrll 			}
    842  1.47.34.1     skrll 		}
    843  1.47.34.1     skrll 		/* XXX works even when BA marked above */
    844       1.29    dyoung 		if (ic->ic_wme.wme_wmeChanParams.cap_wmeParams[ac].wmep_noackPolicy)
    845  1.47.34.1     skrll 			qwh->i_qos[0] |= IEEE80211_QOS_ACKPOLICY_NOACK;
    846       1.29    dyoung 		qwh->i_qos[1] = 0;
    847       1.29    dyoung 		qwh->i_fc[0] |= IEEE80211_FC0_SUBTYPE_QOS;
    848       1.29    dyoung 
    849  1.47.34.1     skrll 		*(uint16_t *)wh->i_seq =
    850       1.29    dyoung 		    htole16(ni->ni_txseqs[tid] << IEEE80211_SEQ_SEQ_SHIFT);
    851       1.29    dyoung 		ni->ni_txseqs[tid]++;
    852       1.29    dyoung 	} else {
    853  1.47.34.1     skrll 		*(uint16_t *)wh->i_seq =
    854  1.47.34.1     skrll 		    htole16(ni->ni_txseqs[IEEE80211_NONQOS_TID] << IEEE80211_SEQ_SEQ_SHIFT);
    855  1.47.34.1     skrll 		ni->ni_txseqs[IEEE80211_NONQOS_TID]++;
    856       1.29    dyoung 	}
    857       1.46    dyoung 	/* check if xmit fragmentation is required */
    858       1.46    dyoung 	txfrag = (m->m_pkthdr.len > ic->ic_fragthreshold &&
    859       1.46    dyoung 	    !IEEE80211_IS_MULTICAST(wh->i_addr1) &&
    860  1.47.34.1     skrll 	    (ic->ic_caps & IEEE80211_C_TXFRAG) &&
    861  1.47.34.1     skrll 	    !isff);		/* NB: don't fragment ff's */
    862       1.29    dyoung 	if (key != NULL) {
    863       1.29    dyoung 		/*
    864       1.29    dyoung 		 * IEEE 802.1X: send EAPOL frames always in the clear.
    865       1.29    dyoung 		 * WPA/WPA2: encrypt EAPOL keys when pairwise keys are set.
    866       1.29    dyoung 		 */
    867       1.29    dyoung 		if (eh.ether_type != htons(ETHERTYPE_PAE) ||
    868       1.29    dyoung 		    ((ic->ic_flags & IEEE80211_F_WPA) &&
    869       1.29    dyoung 		     (ic->ic_opmode == IEEE80211_M_STA ?
    870  1.47.34.1     skrll 		      !IEEE80211_KEY_UNDEFINED(key) :
    871  1.47.34.1     skrll 		      !IEEE80211_KEY_UNDEFINED(&ni->ni_ucastkey)))) {
    872       1.29    dyoung 			wh->i_fc[1] |= IEEE80211_FC1_WEP;
    873       1.46    dyoung 			if (!ieee80211_crypto_enmic(ic, key, m, txfrag)) {
    874       1.29    dyoung 				IEEE80211_DPRINTF(ic, IEEE80211_MSG_OUTPUT,
    875       1.29    dyoung 				    "[%s] enmic failed, discard frame\n",
    876       1.29    dyoung 				    ether_sprintf(eh.ether_dhost));
    877       1.29    dyoung 				ic->ic_stats.is_crypto_enmicfail++;
    878       1.29    dyoung 				goto bad;
    879       1.29    dyoung 			}
    880       1.29    dyoung 		}
    881       1.29    dyoung 	}
    882  1.47.34.1     skrll 	/*
    883  1.47.34.1     skrll 	 * NB: frag flags may leak from above; they should only
    884  1.47.34.1     skrll 	 *     be set on return to the caller if we fragment at
    885  1.47.34.1     skrll 	 *     the 802.11 layer.
    886  1.47.34.1     skrll 	 */
    887  1.47.34.1     skrll 	m->m_flags &= ~(M_FRAG | M_FIRSTFRAG);
    888       1.46    dyoung 	if (txfrag && !ieee80211_fragment(ic, m, hdrsize,
    889       1.46    dyoung 	    key != NULL ? key->wk_cipher->ic_header : 0, ic->ic_fragthreshold))
    890       1.46    dyoung 		goto bad;
    891       1.29    dyoung 
    892       1.29    dyoung 	IEEE80211_NODE_STAT(ni, tx_data);
    893  1.47.34.1     skrll 	if (IEEE80211_IS_MULTICAST(wh->i_addr1))
    894  1.47.34.1     skrll 		IEEE80211_NODE_STAT(ni, tx_mcast);
    895  1.47.34.1     skrll 	else
    896  1.47.34.1     skrll 		IEEE80211_NODE_STAT(ni, tx_ucast);
    897       1.29    dyoung 	IEEE80211_NODE_STAT_ADD(ni, tx_bytes, datalen);
    898       1.29    dyoung 
    899        1.1    dyoung 	return m;
    900        1.1    dyoung bad:
    901        1.1    dyoung 	if (m != NULL)
    902        1.1    dyoung 		m_freem(m);
    903        1.1    dyoung 	return NULL;
    904        1.1    dyoung }
    905        1.1    dyoung 
    906        1.1    dyoung /*
    907       1.18    dyoung  * Arguments in:
    908       1.18    dyoung  *
    909       1.18    dyoung  * paylen:  payload length (no FCS, no WEP header)
    910       1.18    dyoung  *
    911       1.18    dyoung  * hdrlen:  header length
    912       1.18    dyoung  *
    913       1.18    dyoung  * rate:    MSDU speed, units 500kb/s
    914       1.18    dyoung  *
    915       1.18    dyoung  * flags:   IEEE80211_F_SHPREAMBLE (use short preamble),
    916       1.18    dyoung  *          IEEE80211_F_SHSLOT (use short slot length)
    917       1.18    dyoung  *
    918       1.18    dyoung  * Arguments out:
    919       1.18    dyoung  *
    920       1.21   mycroft  * d:       802.11 Duration field for RTS,
    921       1.21   mycroft  *          802.11 Duration field for data frame,
    922       1.18    dyoung  *          PLCP Length for data frame,
    923       1.21   mycroft  *          residual octets at end of data slot
    924       1.18    dyoung  */
    925       1.18    dyoung static int
    926       1.41    dyoung ieee80211_compute_duration1(int len, int use_ack, uint32_t icflags, int rate,
    927       1.18    dyoung     struct ieee80211_duration *d)
    928       1.18    dyoung {
    929       1.22   mycroft 	int pre, ctsrate;
    930       1.23    dyoung 	int ack, bitlen, data_dur, remainder;
    931       1.18    dyoung 
    932       1.18    dyoung 	/* RTS reserves medium for SIFS | CTS | SIFS | (DATA) | SIFS | ACK
    933       1.18    dyoung 	 * DATA reserves medium for SIFS | ACK
    934       1.22   mycroft 	 *
    935       1.22   mycroft 	 * XXXMYC: no ACK on multicast/broadcast or control packets
    936       1.18    dyoung 	 */
    937       1.18    dyoung 
    938       1.18    dyoung 	bitlen = len * 8;
    939       1.18    dyoung 
    940       1.22   mycroft 	pre = IEEE80211_DUR_DS_SIFS;
    941       1.41    dyoung 	if ((icflags & IEEE80211_F_SHPREAMBLE) != 0)
    942       1.22   mycroft 		pre += IEEE80211_DUR_DS_SHORT_PREAMBLE + IEEE80211_DUR_DS_FAST_PLCPHDR;
    943       1.22   mycroft 	else
    944       1.22   mycroft 		pre += IEEE80211_DUR_DS_LONG_PREAMBLE + IEEE80211_DUR_DS_SLOW_PLCPHDR;
    945       1.22   mycroft 
    946       1.20   mycroft 	d->d_residue = 0;
    947       1.20   mycroft 	data_dur = (bitlen * 2) / rate;
    948       1.22   mycroft 	remainder = (bitlen * 2) % rate;
    949       1.22   mycroft 	if (remainder != 0) {
    950       1.22   mycroft 		d->d_residue = (rate - remainder) / 16;
    951       1.22   mycroft 		data_dur++;
    952       1.22   mycroft 	}
    953       1.18    dyoung 
    954       1.18    dyoung 	switch (rate) {
    955       1.18    dyoung 	case 2:		/* 1 Mb/s */
    956       1.18    dyoung 	case 4:		/* 2 Mb/s */
    957       1.18    dyoung 		/* 1 - 2 Mb/s WLAN: send ACK/CTS at 1 Mb/s */
    958       1.22   mycroft 		ctsrate = 2;
    959       1.18    dyoung 		break;
    960       1.18    dyoung 	case 11:	/* 5.5 Mb/s */
    961       1.18    dyoung 	case 22:	/* 11  Mb/s */
    962       1.20   mycroft 	case 44:	/* 22  Mb/s */
    963       1.18    dyoung 		/* 5.5 - 11 Mb/s WLAN: send ACK/CTS at 2 Mb/s */
    964       1.22   mycroft 		ctsrate = 4;
    965       1.18    dyoung 		break;
    966       1.18    dyoung 	default:
    967       1.18    dyoung 		/* TBD */
    968       1.18    dyoung 		return -1;
    969       1.18    dyoung 	}
    970       1.18    dyoung 
    971       1.19    dyoung 	d->d_plcp_len = data_dur;
    972       1.19    dyoung 
    973       1.23    dyoung 	ack = (use_ack) ? pre + (IEEE80211_DUR_DS_SLOW_ACK * 2) / ctsrate : 0;
    974       1.23    dyoung 
    975       1.22   mycroft 	d->d_rts_dur =
    976       1.22   mycroft 	    pre + (IEEE80211_DUR_DS_SLOW_CTS * 2) / ctsrate +
    977       1.22   mycroft 	    pre + data_dur +
    978       1.23    dyoung 	    ack;
    979       1.18    dyoung 
    980       1.23    dyoung 	d->d_data_dur = ack;
    981       1.18    dyoung 
    982       1.18    dyoung 	return 0;
    983       1.18    dyoung }
    984       1.18    dyoung 
    985       1.18    dyoung /*
    986       1.18    dyoung  * Arguments in:
    987       1.18    dyoung  *
    988       1.18    dyoung  * wh:      802.11 header
    989       1.18    dyoung  *
    990       1.18    dyoung  * paylen:  payload length (no FCS, no WEP header)
    991       1.18    dyoung  *
    992       1.18    dyoung  * rate:    MSDU speed, units 500kb/s
    993       1.18    dyoung  *
    994       1.18    dyoung  * fraglen: fragment length, set to maximum (or higher) for no
    995       1.18    dyoung  *          fragmentation
    996       1.18    dyoung  *
    997       1.18    dyoung  * flags:   IEEE80211_F_PRIVACY (hardware adds WEP),
    998       1.18    dyoung  *          IEEE80211_F_SHPREAMBLE (use short preamble),
    999       1.18    dyoung  *          IEEE80211_F_SHSLOT (use short slot length)
   1000       1.18    dyoung  *
   1001       1.18    dyoung  * Arguments out:
   1002       1.18    dyoung  *
   1003       1.18    dyoung  * d0: 802.11 Duration fields (RTS/Data), PLCP Length, Service fields
   1004       1.18    dyoung  *     of first/only fragment
   1005       1.18    dyoung  *
   1006       1.18    dyoung  * dn: 802.11 Duration fields (RTS/Data), PLCP Length, Service fields
   1007       1.40    dyoung  *     of last fragment
   1008       1.41    dyoung  *
   1009       1.41    dyoung  * ieee80211_compute_duration assumes crypto-encapsulation, if any,
   1010       1.41    dyoung  * has already taken place.
   1011       1.18    dyoung  */
   1012       1.18    dyoung int
   1013       1.41    dyoung ieee80211_compute_duration(const struct ieee80211_frame_min *wh,
   1014       1.41    dyoung     const struct ieee80211_key *wk, int len,
   1015       1.41    dyoung     uint32_t icflags, int fraglen, int rate, struct ieee80211_duration *d0,
   1016       1.19    dyoung     struct ieee80211_duration *dn, int *npktp, int debug)
   1017       1.18    dyoung {
   1018       1.23    dyoung 	int ack, rc;
   1019       1.42    dyoung 	int cryptolen,	/* crypto overhead: header+trailer */
   1020       1.42    dyoung 	    firstlen,	/* first fragment's payload + overhead length */
   1021       1.41    dyoung 	    hdrlen,	/* header length w/o driver padding */
   1022       1.41    dyoung 	    lastlen,	/* last fragment's payload length w/ overhead */
   1023       1.41    dyoung 	    lastlen0,	/* last fragment's payload length w/o overhead */
   1024       1.41    dyoung 	    npkt,	/* number of fragments */
   1025       1.41    dyoung 	    overlen,	/* non-802.11 header overhead per fragment */
   1026       1.41    dyoung 	    paylen;	/* payload length w/o overhead */
   1027       1.41    dyoung 
   1028       1.41    dyoung 	hdrlen = ieee80211_anyhdrsize((const void *)wh);
   1029       1.41    dyoung 
   1030       1.41    dyoung         /* Account for padding required by the driver. */
   1031       1.41    dyoung 	if (icflags & IEEE80211_F_DATAPAD)
   1032       1.41    dyoung 		paylen = len - roundup(hdrlen, sizeof(u_int32_t));
   1033       1.18    dyoung 	else
   1034       1.41    dyoung 		paylen = len - hdrlen;
   1035       1.18    dyoung 
   1036       1.41    dyoung 	overlen = IEEE80211_CRC_LEN;
   1037       1.19    dyoung 
   1038       1.41    dyoung 	if (wk != NULL) {
   1039       1.42    dyoung 		cryptolen = wk->wk_cipher->ic_header +
   1040       1.42    dyoung 		            wk->wk_cipher->ic_trailer;
   1041       1.42    dyoung 		paylen -= cryptolen;
   1042       1.42    dyoung 		overlen += cryptolen;
   1043       1.41    dyoung 	}
   1044       1.18    dyoung 
   1045       1.18    dyoung 	npkt = paylen / fraglen;
   1046       1.18    dyoung 	lastlen0 = paylen % fraglen;
   1047       1.18    dyoung 
   1048       1.24    dyoung 	if (npkt == 0)			/* no fragments */
   1049       1.18    dyoung 		lastlen = paylen + overlen;
   1050       1.24    dyoung 	else if (lastlen0 != 0) {	/* a short "tail" fragment */
   1051       1.18    dyoung 		lastlen = lastlen0 + overlen;
   1052       1.18    dyoung 		npkt++;
   1053       1.24    dyoung 	} else				/* full-length "tail" fragment */
   1054       1.18    dyoung 		lastlen = fraglen + overlen;
   1055       1.18    dyoung 
   1056       1.18    dyoung 	if (npktp != NULL)
   1057       1.18    dyoung 		*npktp = npkt;
   1058       1.18    dyoung 
   1059       1.18    dyoung 	if (npkt > 1)
   1060       1.18    dyoung 		firstlen = fraglen + overlen;
   1061       1.18    dyoung 	else
   1062       1.18    dyoung 		firstlen = paylen + overlen;
   1063       1.18    dyoung 
   1064       1.19    dyoung 	if (debug) {
   1065       1.19    dyoung 		printf("%s: npkt %d firstlen %d lastlen0 %d lastlen %d "
   1066       1.41    dyoung 		    "fraglen %d overlen %d len %d rate %d icflags %08x\n",
   1067       1.19    dyoung 		    __func__, npkt, firstlen, lastlen0, lastlen, fraglen,
   1068       1.41    dyoung 		    overlen, len, rate, icflags);
   1069       1.19    dyoung 	}
   1070       1.23    dyoung 
   1071       1.23    dyoung 	ack = !IEEE80211_IS_MULTICAST(wh->i_addr1) &&
   1072       1.23    dyoung 	    (wh->i_fc[1] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_CTL;
   1073       1.23    dyoung 
   1074       1.23    dyoung 	rc = ieee80211_compute_duration1(firstlen + hdrlen,
   1075       1.41    dyoung 	    ack, icflags, rate, d0);
   1076       1.18    dyoung 	if (rc == -1)
   1077       1.18    dyoung 		return rc;
   1078       1.19    dyoung 
   1079       1.19    dyoung 	if (npkt <= 1) {
   1080       1.18    dyoung 		*dn = *d0;
   1081       1.18    dyoung 		return 0;
   1082       1.18    dyoung 	}
   1083       1.41    dyoung 	return ieee80211_compute_duration1(lastlen + hdrlen, ack, icflags, rate,
   1084       1.23    dyoung 	    dn);
   1085       1.18    dyoung }
   1086       1.18    dyoung 
   1087       1.18    dyoung /*
   1088  1.47.34.1     skrll  * Do Ethernet-LLC encapsulation for each payload in a fast frame
   1089  1.47.34.1     skrll  * tunnel encapsulation.  The frame is assumed to have an Ethernet
   1090  1.47.34.1     skrll  * header at the front that must be stripped before prepending the
   1091  1.47.34.1     skrll  * LLC followed by the Ethernet header passed in (with an Ethernet
   1092  1.47.34.1     skrll  * type that specifies the payload size).
   1093  1.47.34.1     skrll  */
   1094  1.47.34.1     skrll static struct mbuf *
   1095  1.47.34.1     skrll ieee80211_encap1(struct ieee80211com *ic, struct mbuf *m,
   1096  1.47.34.1     skrll 	const struct ether_header *eh)
   1097  1.47.34.1     skrll {
   1098  1.47.34.1     skrll 	struct llc *llc;
   1099  1.47.34.1     skrll 	uint16_t payload;
   1100  1.47.34.1     skrll 
   1101  1.47.34.1     skrll 	/* XXX optimize by combining m_adj+M_PREPEND */
   1102  1.47.34.1     skrll 	m_adj(m, sizeof(struct ether_header) - sizeof(struct llc));
   1103  1.47.34.1     skrll 	llc = mtod(m, struct llc *);
   1104  1.47.34.1     skrll 	llc->llc_dsap = llc->llc_ssap = LLC_SNAP_LSAP;
   1105  1.47.34.1     skrll 	llc->llc_control = LLC_UI;
   1106  1.47.34.1     skrll 	llc->llc_snap.org_code[0] = 0;
   1107  1.47.34.1     skrll 	llc->llc_snap.org_code[1] = 0;
   1108  1.47.34.1     skrll 	llc->llc_snap.org_code[2] = 0;
   1109  1.47.34.1     skrll 	llc->llc_snap.ether_type = eh->ether_type;
   1110  1.47.34.1     skrll 	payload = m->m_pkthdr.len;		/* NB: w/o Ethernet header */
   1111  1.47.34.1     skrll 
   1112  1.47.34.1     skrll 	M_PREPEND(m, sizeof(struct ether_header), M_DONTWAIT);
   1113  1.47.34.1     skrll 	if (m == NULL) {		/* XXX cannot happen */
   1114  1.47.34.1     skrll 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_SUPERG,
   1115  1.47.34.1     skrll 			"%s: no space for ether_header\n", __func__);
   1116  1.47.34.1     skrll 		ic->ic_stats.is_tx_nobuf++;
   1117  1.47.34.1     skrll 		return NULL;
   1118  1.47.34.1     skrll 	}
   1119  1.47.34.1     skrll 	ETHER_HEADER_COPY(mtod(m, void *), eh);
   1120  1.47.34.1     skrll 	mtod(m, struct ether_header *)->ether_type = htons(payload);
   1121  1.47.34.1     skrll 	return m;
   1122  1.47.34.1     skrll }
   1123  1.47.34.1     skrll 
   1124  1.47.34.1     skrll /*
   1125  1.47.34.1     skrll  * Do fast frame tunnel encapsulation.  The two frames and
   1126  1.47.34.1     skrll  * Ethernet headers are supplied.  The caller is assumed to
   1127  1.47.34.1     skrll  * have arrange for space in the mbuf chains for encapsulating
   1128  1.47.34.1     skrll  * headers (to avoid major mbuf fragmentation).
   1129  1.47.34.1     skrll  *
   1130  1.47.34.1     skrll  * The encapsulated frame is returned or NULL if there is a
   1131  1.47.34.1     skrll  * problem (should not happen).
   1132  1.47.34.1     skrll  */
   1133  1.47.34.1     skrll static struct mbuf *
   1134  1.47.34.1     skrll ieee80211_encap_fastframe(struct ieee80211com *ic,
   1135  1.47.34.1     skrll 	struct mbuf *m1, const struct ether_header *eh1,
   1136  1.47.34.1     skrll 	struct mbuf *m2, const struct ether_header *eh2)
   1137  1.47.34.1     skrll {
   1138  1.47.34.1     skrll 	struct llc *llc;
   1139  1.47.34.1     skrll 	struct mbuf *m;
   1140  1.47.34.1     skrll 	int pad;
   1141  1.47.34.1     skrll 
   1142  1.47.34.1     skrll 	/*
   1143  1.47.34.1     skrll 	 * First, each frame gets a standard encapsulation.
   1144  1.47.34.1     skrll 	 */
   1145  1.47.34.1     skrll 	m1 = ieee80211_encap1(ic, m1, eh1);
   1146  1.47.34.1     skrll 	if (m1 == NULL) {
   1147  1.47.34.1     skrll 		m_freem(m2);
   1148  1.47.34.1     skrll 		return NULL;
   1149  1.47.34.1     skrll 	}
   1150  1.47.34.1     skrll 	m2 = ieee80211_encap1(ic, m2, eh2);
   1151  1.47.34.1     skrll 	if (m2 == NULL) {
   1152  1.47.34.1     skrll 		m_freem(m1);
   1153  1.47.34.1     skrll 		return NULL;
   1154  1.47.34.1     skrll 	}
   1155  1.47.34.1     skrll 
   1156  1.47.34.1     skrll 	/*
   1157  1.47.34.1     skrll 	 * Pad leading frame to a 4-byte boundary.  If there
   1158  1.47.34.1     skrll 	 * is space at the end of the first frame, put it
   1159  1.47.34.1     skrll 	 * there; otherwise prepend to the front of the second
   1160  1.47.34.1     skrll 	 * frame.  We know doing the second will always work
   1161  1.47.34.1     skrll 	 * because we reserve space above.  We prefer appending
   1162  1.47.34.1     skrll 	 * as this typically has better DMA alignment properties.
   1163  1.47.34.1     skrll 	 */
   1164  1.47.34.1     skrll 	for (m = m1; m->m_next != NULL; m = m->m_next)
   1165  1.47.34.1     skrll 		;
   1166  1.47.34.1     skrll 	pad = roundup2(m1->m_pkthdr.len, 4) - m1->m_pkthdr.len;
   1167  1.47.34.1     skrll 	if (pad) {
   1168  1.47.34.1     skrll 		if (M_TRAILINGSPACE(m) < pad) {		/* prepend to second */
   1169  1.47.34.1     skrll 			m2->m_data -= pad;
   1170  1.47.34.1     skrll 			m2->m_len += pad;
   1171  1.47.34.1     skrll 			m2->m_pkthdr.len += pad;
   1172  1.47.34.1     skrll 		} else {				/* append to first */
   1173  1.47.34.1     skrll 			m->m_len += pad;
   1174  1.47.34.1     skrll 			m1->m_pkthdr.len += pad;
   1175  1.47.34.1     skrll 		}
   1176  1.47.34.1     skrll 	}
   1177  1.47.34.1     skrll 
   1178  1.47.34.1     skrll 	/*
   1179  1.47.34.1     skrll 	 * Now, stick 'em together and prepend the tunnel headers;
   1180  1.47.34.1     skrll 	 * first the Atheros tunnel header (all zero for now) and
   1181  1.47.34.1     skrll 	 * then a special fast frame LLC.
   1182  1.47.34.1     skrll 	 *
   1183  1.47.34.1     skrll 	 * XXX optimize by prepending together
   1184  1.47.34.1     skrll 	 */
   1185  1.47.34.1     skrll 	m->m_next = m2;			/* NB: last mbuf from above */
   1186  1.47.34.1     skrll 	m1->m_pkthdr.len += m2->m_pkthdr.len;
   1187  1.47.34.1     skrll 	M_PREPEND(m1, sizeof(uint32_t)+2, M_DONTWAIT);
   1188  1.47.34.1     skrll 	if (m1 == NULL) {		/* XXX cannot happen */
   1189  1.47.34.1     skrll 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_SUPERG,
   1190  1.47.34.1     skrll 			"%s: no space for tunnel header\n", __func__);
   1191  1.47.34.1     skrll 		ic->ic_stats.is_tx_nobuf++;
   1192  1.47.34.1     skrll 		return NULL;
   1193  1.47.34.1     skrll 	}
   1194  1.47.34.1     skrll 	memset(mtod(m1, void *), 0, sizeof(uint32_t)+2);
   1195  1.47.34.1     skrll 
   1196  1.47.34.1     skrll 	M_PREPEND(m1, sizeof(struct llc), M_DONTWAIT);
   1197  1.47.34.1     skrll 	if (m1 == NULL) {		/* XXX cannot happen */
   1198  1.47.34.1     skrll 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_SUPERG,
   1199  1.47.34.1     skrll 			"%s: no space for llc header\n", __func__);
   1200  1.47.34.1     skrll 		ic->ic_stats.is_tx_nobuf++;
   1201  1.47.34.1     skrll 		return NULL;
   1202  1.47.34.1     skrll 	}
   1203  1.47.34.1     skrll 	llc = mtod(m1, struct llc *);
   1204  1.47.34.1     skrll 	llc->llc_dsap = llc->llc_ssap = LLC_SNAP_LSAP;
   1205  1.47.34.1     skrll 	llc->llc_control = LLC_UI;
   1206  1.47.34.1     skrll 	llc->llc_snap.org_code[0] = ATH_FF_SNAP_ORGCODE_0;
   1207  1.47.34.1     skrll 	llc->llc_snap.org_code[1] = ATH_FF_SNAP_ORGCODE_1;
   1208  1.47.34.1     skrll 	llc->llc_snap.org_code[2] = ATH_FF_SNAP_ORGCODE_2;
   1209  1.47.34.1     skrll 	llc->llc_snap.ether_type = htons(ATH_FF_ETH_TYPE);
   1210  1.47.34.1     skrll 
   1211  1.47.34.1     skrll 	ic->ic_stats.is_ff_encap++;
   1212  1.47.34.1     skrll 
   1213  1.47.34.1     skrll 	return m1;
   1214  1.47.34.1     skrll }
   1215  1.47.34.1     skrll 
   1216  1.47.34.1     skrll /*
   1217       1.46    dyoung  * Fragment the frame according to the specified mtu.
   1218       1.46    dyoung  * The size of the 802.11 header (w/o padding) is provided
   1219       1.46    dyoung  * so we don't need to recalculate it.  We create a new
   1220       1.46    dyoung  * mbuf for each fragment and chain it through m_nextpkt;
   1221       1.46    dyoung  * we might be able to optimize this by reusing the original
   1222       1.46    dyoung  * packet's mbufs but that is significantly more complicated.
   1223       1.46    dyoung  */
   1224       1.46    dyoung static int
   1225       1.46    dyoung ieee80211_fragment(struct ieee80211com *ic, struct mbuf *m0,
   1226       1.46    dyoung 	u_int hdrsize, u_int ciphdrsize, u_int mtu)
   1227       1.46    dyoung {
   1228       1.46    dyoung 	struct ieee80211_frame *wh, *whf;
   1229       1.46    dyoung 	struct mbuf *m, *prev, *next;
   1230       1.46    dyoung 	u_int totalhdrsize, fragno, fragsize, off, remainder, payload;
   1231       1.46    dyoung 
   1232       1.46    dyoung 	IASSERT(m0->m_nextpkt == NULL, ("mbuf already chained?"));
   1233       1.46    dyoung 	IASSERT(m0->m_pkthdr.len > mtu,
   1234       1.46    dyoung 		("pktlen %u mtu %u", m0->m_pkthdr.len, mtu));
   1235       1.46    dyoung 
   1236       1.46    dyoung 	wh = mtod(m0, struct ieee80211_frame *);
   1237       1.46    dyoung 	/* NB: mark the first frag; it will be propagated below */
   1238       1.46    dyoung 	wh->i_fc[1] |= IEEE80211_FC1_MORE_FRAG;
   1239       1.46    dyoung 	totalhdrsize = hdrsize + ciphdrsize;
   1240       1.46    dyoung 	fragno = 1;
   1241       1.46    dyoung 	off = mtu - ciphdrsize;
   1242       1.46    dyoung 	remainder = m0->m_pkthdr.len - off;
   1243       1.46    dyoung 	prev = m0;
   1244       1.46    dyoung 	do {
   1245       1.46    dyoung 		fragsize = totalhdrsize + remainder;
   1246       1.46    dyoung 		if (fragsize > mtu)
   1247       1.46    dyoung 			fragsize = mtu;
   1248       1.46    dyoung 		IASSERT(fragsize < MCLBYTES,
   1249       1.46    dyoung 			("fragment size %u too big!", fragsize));
   1250       1.46    dyoung 		if (fragsize > MHLEN)
   1251       1.46    dyoung 			m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
   1252       1.46    dyoung 		else
   1253       1.46    dyoung 			m = m_gethdr(M_DONTWAIT, MT_DATA);
   1254       1.46    dyoung 		if (m == NULL)
   1255       1.46    dyoung 			goto bad;
   1256       1.46    dyoung 		/* leave room to prepend any cipher header */
   1257       1.46    dyoung 		m_align(m, fragsize - ciphdrsize);
   1258       1.46    dyoung 
   1259       1.46    dyoung 		/*
   1260       1.46    dyoung 		 * Form the header in the fragment.  Note that since
   1261       1.46    dyoung 		 * we mark the first fragment with the MORE_FRAG bit
   1262       1.46    dyoung 		 * it automatically is propagated to each fragment; we
   1263       1.46    dyoung 		 * need only clear it on the last fragment (done below).
   1264       1.46    dyoung 		 */
   1265       1.46    dyoung 		whf = mtod(m, struct ieee80211_frame *);
   1266       1.46    dyoung 		memcpy(whf, wh, hdrsize);
   1267       1.46    dyoung 		*(u_int16_t *)&whf->i_seq[0] |= htole16(
   1268       1.46    dyoung 			(fragno & IEEE80211_SEQ_FRAG_MASK) <<
   1269       1.46    dyoung 				IEEE80211_SEQ_FRAG_SHIFT);
   1270       1.46    dyoung 		fragno++;
   1271       1.46    dyoung 
   1272       1.46    dyoung 		payload = fragsize - totalhdrsize;
   1273       1.46    dyoung 		/* NB: destination is known to be contiguous */
   1274       1.46    dyoung 		m_copydata(m0, off, payload, mtod(m, u_int8_t *) + hdrsize);
   1275       1.46    dyoung 		m->m_len = hdrsize + payload;
   1276       1.46    dyoung 		m->m_pkthdr.len = hdrsize + payload;
   1277       1.46    dyoung 		m->m_flags |= M_FRAG;
   1278       1.46    dyoung 
   1279       1.46    dyoung 		/* chain up the fragment */
   1280       1.46    dyoung 		prev->m_nextpkt = m;
   1281       1.46    dyoung 		prev = m;
   1282       1.46    dyoung 
   1283       1.46    dyoung 		/* deduct fragment just formed */
   1284       1.46    dyoung 		remainder -= payload;
   1285       1.46    dyoung 		off += payload;
   1286       1.46    dyoung 	} while (remainder != 0);
   1287       1.46    dyoung 	whf->i_fc[1] &= ~IEEE80211_FC1_MORE_FRAG;
   1288       1.46    dyoung 
   1289       1.46    dyoung 	/* strip first mbuf now that everything has been copied */
   1290       1.46    dyoung 	m_adj(m0, -(m0->m_pkthdr.len - (mtu - ciphdrsize)));
   1291       1.46    dyoung 	m0->m_flags |= M_FIRSTFRAG | M_FRAG;
   1292       1.46    dyoung 
   1293       1.46    dyoung 	ic->ic_stats.is_tx_fragframes++;
   1294       1.46    dyoung 	ic->ic_stats.is_tx_frags += fragno-1;
   1295       1.46    dyoung 
   1296       1.46    dyoung 	return 1;
   1297       1.46    dyoung bad:
   1298       1.46    dyoung 	/* reclaim fragments but leave original frame for caller to free */
   1299       1.46    dyoung 	for (m = m0->m_nextpkt; m != NULL; m = next) {
   1300       1.46    dyoung 		next = m->m_nextpkt;
   1301       1.46    dyoung 		m->m_nextpkt = NULL;            /* XXX paranoid */
   1302       1.46    dyoung 		m_freem(m);
   1303       1.46    dyoung 	}
   1304       1.46    dyoung 	m0->m_nextpkt = NULL;
   1305       1.46    dyoung 	return 0;
   1306       1.46    dyoung }
   1307       1.46    dyoung 
   1308       1.46    dyoung /*
   1309        1.1    dyoung  * Add a supported rates element id to a frame.
   1310        1.1    dyoung  */
   1311  1.47.34.1     skrll static uint8_t *
   1312  1.47.34.1     skrll ieee80211_add_rates(uint8_t *frm, const struct ieee80211_rateset *rs)
   1313        1.1    dyoung {
   1314        1.1    dyoung 	int nrates;
   1315        1.1    dyoung 
   1316        1.1    dyoung 	*frm++ = IEEE80211_ELEMID_RATES;
   1317        1.1    dyoung 	nrates = rs->rs_nrates;
   1318        1.1    dyoung 	if (nrates > IEEE80211_RATE_SIZE)
   1319        1.1    dyoung 		nrates = IEEE80211_RATE_SIZE;
   1320        1.1    dyoung 	*frm++ = nrates;
   1321        1.1    dyoung 	memcpy(frm, rs->rs_rates, nrates);
   1322        1.1    dyoung 	return frm + nrates;
   1323        1.1    dyoung }
   1324        1.1    dyoung 
   1325        1.1    dyoung /*
   1326        1.1    dyoung  * Add an extended supported rates element id to a frame.
   1327        1.1    dyoung  */
   1328  1.47.34.1     skrll static uint8_t *
   1329  1.47.34.1     skrll ieee80211_add_xrates(uint8_t *frm, const struct ieee80211_rateset *rs)
   1330        1.1    dyoung {
   1331        1.1    dyoung 	/*
   1332        1.1    dyoung 	 * Add an extended supported rates element if operating in 11g mode.
   1333        1.1    dyoung 	 */
   1334        1.1    dyoung 	if (rs->rs_nrates > IEEE80211_RATE_SIZE) {
   1335        1.1    dyoung 		int nrates = rs->rs_nrates - IEEE80211_RATE_SIZE;
   1336        1.1    dyoung 		*frm++ = IEEE80211_ELEMID_XRATES;
   1337        1.1    dyoung 		*frm++ = nrates;
   1338        1.1    dyoung 		memcpy(frm, rs->rs_rates + IEEE80211_RATE_SIZE, nrates);
   1339        1.1    dyoung 		frm += nrates;
   1340        1.1    dyoung 	}
   1341        1.1    dyoung 	return frm;
   1342        1.1    dyoung }
   1343        1.1    dyoung 
   1344       1.29    dyoung /*
   1345        1.1    dyoung  * Add an ssid elemet to a frame.
   1346        1.1    dyoung  */
   1347  1.47.34.1     skrll static uint8_t *
   1348  1.47.34.1     skrll ieee80211_add_ssid(uint8_t *frm, const uint8_t *ssid, u_int len)
   1349        1.1    dyoung {
   1350        1.1    dyoung 	*frm++ = IEEE80211_ELEMID_SSID;
   1351        1.1    dyoung 	*frm++ = len;
   1352        1.1    dyoung 	memcpy(frm, ssid, len);
   1353        1.1    dyoung 	return frm + len;
   1354        1.1    dyoung }
   1355        1.1    dyoung 
   1356       1.29    dyoung /*
   1357       1.29    dyoung  * Add an erp element to a frame.
   1358       1.29    dyoung  */
   1359  1.47.34.1     skrll static uint8_t *
   1360  1.47.34.1     skrll ieee80211_add_erp(uint8_t *frm, struct ieee80211com *ic)
   1361       1.29    dyoung {
   1362  1.47.34.1     skrll 	uint8_t erp;
   1363       1.29    dyoung 
   1364       1.29    dyoung 	*frm++ = IEEE80211_ELEMID_ERP;
   1365       1.29    dyoung 	*frm++ = 1;
   1366       1.29    dyoung 	erp = 0;
   1367       1.29    dyoung 	if (ic->ic_nonerpsta != 0)
   1368       1.29    dyoung 		erp |= IEEE80211_ERP_NON_ERP_PRESENT;
   1369       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_USEPROT)
   1370       1.29    dyoung 		erp |= IEEE80211_ERP_USE_PROTECTION;
   1371       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_USEBARKER)
   1372       1.29    dyoung 		erp |= IEEE80211_ERP_LONG_PREAMBLE;
   1373       1.29    dyoung 	*frm++ = erp;
   1374       1.29    dyoung 	return frm;
   1375       1.29    dyoung }
   1376       1.29    dyoung 
   1377  1.47.34.1     skrll static uint8_t *
   1378  1.47.34.1     skrll ieee80211_setup_wpa_ie(struct ieee80211com *ic, uint8_t *ie)
   1379       1.29    dyoung {
   1380       1.29    dyoung #define	WPA_OUI_BYTES		0x00, 0x50, 0xf2
   1381       1.29    dyoung #define	ADDSHORT(frm, v) do {			\
   1382       1.29    dyoung 	frm[0] = (v) & 0xff;			\
   1383       1.29    dyoung 	frm[1] = (v) >> 8;			\
   1384       1.29    dyoung 	frm += 2;				\
   1385       1.29    dyoung } while (0)
   1386       1.29    dyoung #define	ADDSELECTOR(frm, sel) do {		\
   1387       1.29    dyoung 	memcpy(frm, sel, 4);			\
   1388       1.29    dyoung 	frm += 4;				\
   1389       1.29    dyoung } while (0)
   1390  1.47.34.1     skrll 	static const uint8_t oui[4] = { WPA_OUI_BYTES, WPA_OUI_TYPE };
   1391  1.47.34.1     skrll 	static const uint8_t cipher_suite[][4] = {
   1392       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_CSE_WEP40 },	/* NB: 40-bit */
   1393       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_CSE_TKIP },
   1394       1.29    dyoung 		{ 0x00, 0x00, 0x00, 0x00 },		/* XXX WRAP */
   1395       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_CSE_CCMP },
   1396       1.29    dyoung 		{ 0x00, 0x00, 0x00, 0x00 },		/* XXX CKIP */
   1397       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_CSE_NULL },
   1398       1.29    dyoung 	};
   1399  1.47.34.1     skrll 	static const uint8_t wep104_suite[4] =
   1400       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_CSE_WEP104 };
   1401  1.47.34.1     skrll 	static const uint8_t key_mgt_unspec[4] =
   1402       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_ASE_8021X_UNSPEC };
   1403  1.47.34.1     skrll 	static const uint8_t key_mgt_psk[4] =
   1404       1.29    dyoung 		{ WPA_OUI_BYTES, WPA_ASE_8021X_PSK };
   1405       1.29    dyoung 	const struct ieee80211_rsnparms *rsn = &ic->ic_bss->ni_rsn;
   1406  1.47.34.1     skrll 	uint8_t *frm = ie;
   1407  1.47.34.1     skrll 	uint8_t *selcnt;
   1408       1.29    dyoung 
   1409       1.29    dyoung 	*frm++ = IEEE80211_ELEMID_VENDOR;
   1410       1.29    dyoung 	*frm++ = 0;				/* length filled in below */
   1411       1.29    dyoung 	memcpy(frm, oui, sizeof(oui));		/* WPA OUI */
   1412       1.29    dyoung 	frm += sizeof(oui);
   1413       1.29    dyoung 	ADDSHORT(frm, WPA_VERSION);
   1414       1.29    dyoung 
   1415       1.29    dyoung 	/* XXX filter out CKIP */
   1416       1.29    dyoung 
   1417       1.29    dyoung 	/* multicast cipher */
   1418       1.29    dyoung 	if (rsn->rsn_mcastcipher == IEEE80211_CIPHER_WEP &&
   1419       1.29    dyoung 	    rsn->rsn_mcastkeylen >= 13)
   1420       1.29    dyoung 		ADDSELECTOR(frm, wep104_suite);
   1421       1.29    dyoung 	else
   1422       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[rsn->rsn_mcastcipher]);
   1423       1.29    dyoung 
   1424       1.29    dyoung 	/* unicast cipher list */
   1425       1.29    dyoung 	selcnt = frm;
   1426       1.29    dyoung 	ADDSHORT(frm, 0);			/* selector count */
   1427       1.29    dyoung 	if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_AES_CCM)) {
   1428       1.29    dyoung 		selcnt[0]++;
   1429       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_AES_CCM]);
   1430       1.29    dyoung 	}
   1431       1.29    dyoung 	if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_TKIP)) {
   1432       1.29    dyoung 		selcnt[0]++;
   1433       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_TKIP]);
   1434       1.29    dyoung 	}
   1435       1.29    dyoung 
   1436       1.29    dyoung 	/* authenticator selector list */
   1437       1.29    dyoung 	selcnt = frm;
   1438       1.29    dyoung 	ADDSHORT(frm, 0);			/* selector count */
   1439       1.29    dyoung 	if (rsn->rsn_keymgmtset & WPA_ASE_8021X_UNSPEC) {
   1440       1.29    dyoung 		selcnt[0]++;
   1441       1.29    dyoung 		ADDSELECTOR(frm, key_mgt_unspec);
   1442       1.29    dyoung 	}
   1443       1.29    dyoung 	if (rsn->rsn_keymgmtset & WPA_ASE_8021X_PSK) {
   1444       1.29    dyoung 		selcnt[0]++;
   1445       1.29    dyoung 		ADDSELECTOR(frm, key_mgt_psk);
   1446       1.29    dyoung 	}
   1447       1.29    dyoung 
   1448       1.29    dyoung 	/* optional capabilities */
   1449       1.33    dyoung 	if (rsn->rsn_caps != 0 && rsn->rsn_caps != RSN_CAP_PREAUTH)
   1450       1.29    dyoung 		ADDSHORT(frm, rsn->rsn_caps);
   1451       1.29    dyoung 
   1452       1.29    dyoung 	/* calculate element length */
   1453       1.29    dyoung 	ie[1] = frm - ie - 2;
   1454       1.29    dyoung 	IASSERT(ie[1]+2 <= sizeof(struct ieee80211_ie_wpa),
   1455       1.29    dyoung 		("WPA IE too big, %u > %zu",
   1456       1.29    dyoung 		ie[1]+2, sizeof(struct ieee80211_ie_wpa)));
   1457       1.29    dyoung 	return frm;
   1458       1.29    dyoung #undef ADDSHORT
   1459       1.29    dyoung #undef ADDSELECTOR
   1460       1.29    dyoung #undef WPA_OUI_BYTES
   1461       1.29    dyoung }
   1462       1.29    dyoung 
   1463  1.47.34.1     skrll static uint8_t *
   1464  1.47.34.1     skrll ieee80211_setup_rsn_ie(struct ieee80211com *ic, uint8_t *ie)
   1465       1.29    dyoung {
   1466       1.29    dyoung #define	RSN_OUI_BYTES		0x00, 0x0f, 0xac
   1467       1.29    dyoung #define	ADDSHORT(frm, v) do {			\
   1468       1.29    dyoung 	frm[0] = (v) & 0xff;			\
   1469       1.29    dyoung 	frm[1] = (v) >> 8;			\
   1470       1.29    dyoung 	frm += 2;				\
   1471       1.29    dyoung } while (0)
   1472       1.29    dyoung #define	ADDSELECTOR(frm, sel) do {		\
   1473       1.29    dyoung 	memcpy(frm, sel, 4);			\
   1474       1.29    dyoung 	frm += 4;				\
   1475       1.29    dyoung } while (0)
   1476  1.47.34.1     skrll 	static const uint8_t cipher_suite[][4] = {
   1477       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_WEP40 },	/* NB: 40-bit */
   1478       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_TKIP },
   1479       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_WRAP },
   1480       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_CCMP },
   1481       1.29    dyoung 		{ 0x00, 0x00, 0x00, 0x00 },		/* XXX CKIP */
   1482       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_NULL },
   1483       1.29    dyoung 	};
   1484  1.47.34.1     skrll 	static const uint8_t wep104_suite[4] =
   1485       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_CSE_WEP104 };
   1486  1.47.34.1     skrll 	static const uint8_t key_mgt_unspec[4] =
   1487       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_ASE_8021X_UNSPEC };
   1488  1.47.34.1     skrll 	static const uint8_t key_mgt_psk[4] =
   1489       1.29    dyoung 		{ RSN_OUI_BYTES, RSN_ASE_8021X_PSK };
   1490       1.29    dyoung 	const struct ieee80211_rsnparms *rsn = &ic->ic_bss->ni_rsn;
   1491  1.47.34.1     skrll 	uint8_t *frm = ie;
   1492  1.47.34.1     skrll 	uint8_t *selcnt;
   1493       1.29    dyoung 
   1494       1.29    dyoung 	*frm++ = IEEE80211_ELEMID_RSN;
   1495       1.29    dyoung 	*frm++ = 0;				/* length filled in below */
   1496       1.29    dyoung 	ADDSHORT(frm, RSN_VERSION);
   1497       1.29    dyoung 
   1498       1.29    dyoung 	/* XXX filter out CKIP */
   1499       1.29    dyoung 
   1500       1.29    dyoung 	/* multicast cipher */
   1501       1.29    dyoung 	if (rsn->rsn_mcastcipher == IEEE80211_CIPHER_WEP &&
   1502       1.29    dyoung 	    rsn->rsn_mcastkeylen >= 13)
   1503       1.29    dyoung 		ADDSELECTOR(frm, wep104_suite);
   1504       1.29    dyoung 	else
   1505       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[rsn->rsn_mcastcipher]);
   1506       1.29    dyoung 
   1507       1.29    dyoung 	/* unicast cipher list */
   1508       1.29    dyoung 	selcnt = frm;
   1509       1.29    dyoung 	ADDSHORT(frm, 0);			/* selector count */
   1510       1.29    dyoung 	if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_AES_CCM)) {
   1511       1.29    dyoung 		selcnt[0]++;
   1512       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_AES_CCM]);
   1513       1.29    dyoung 	}
   1514       1.29    dyoung 	if (rsn->rsn_ucastcipherset & (1<<IEEE80211_CIPHER_TKIP)) {
   1515       1.29    dyoung 		selcnt[0]++;
   1516       1.29    dyoung 		ADDSELECTOR(frm, cipher_suite[IEEE80211_CIPHER_TKIP]);
   1517       1.29    dyoung 	}
   1518       1.29    dyoung 
   1519       1.29    dyoung 	/* authenticator selector list */
   1520       1.29    dyoung 	selcnt = frm;
   1521       1.29    dyoung 	ADDSHORT(frm, 0);			/* selector count */
   1522       1.29    dyoung 	if (rsn->rsn_keymgmtset & WPA_ASE_8021X_UNSPEC) {
   1523       1.29    dyoung 		selcnt[0]++;
   1524       1.29    dyoung 		ADDSELECTOR(frm, key_mgt_unspec);
   1525       1.29    dyoung 	}
   1526       1.29    dyoung 	if (rsn->rsn_keymgmtset & WPA_ASE_8021X_PSK) {
   1527       1.29    dyoung 		selcnt[0]++;
   1528       1.29    dyoung 		ADDSELECTOR(frm, key_mgt_psk);
   1529       1.29    dyoung 	}
   1530       1.29    dyoung 
   1531       1.29    dyoung 	/* optional capabilities */
   1532       1.33    dyoung 	ADDSHORT(frm, rsn->rsn_caps);
   1533       1.29    dyoung 	/* XXX PMKID */
   1534       1.29    dyoung 
   1535       1.29    dyoung 	/* calculate element length */
   1536       1.29    dyoung 	ie[1] = frm - ie - 2;
   1537       1.29    dyoung 	IASSERT(ie[1]+2 <= sizeof(struct ieee80211_ie_wpa),
   1538       1.29    dyoung 		("RSN IE too big, %u > %zu",
   1539       1.29    dyoung 		ie[1]+2, sizeof(struct ieee80211_ie_wpa)));
   1540       1.29    dyoung 	return frm;
   1541       1.29    dyoung #undef ADDSELECTOR
   1542       1.29    dyoung #undef ADDSHORT
   1543       1.29    dyoung #undef RSN_OUI_BYTES
   1544       1.29    dyoung }
   1545       1.29    dyoung 
   1546       1.29    dyoung /*
   1547       1.29    dyoung  * Add a WPA/RSN element to a frame.
   1548       1.29    dyoung  */
   1549  1.47.34.1     skrll static uint8_t *
   1550  1.47.34.1     skrll ieee80211_add_wpa(uint8_t *frm, struct ieee80211com *ic)
   1551       1.29    dyoung {
   1552       1.29    dyoung 
   1553       1.29    dyoung 	IASSERT(ic->ic_flags & IEEE80211_F_WPA, ("no WPA/RSN!"));
   1554       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_WPA2)
   1555       1.29    dyoung 		frm = ieee80211_setup_rsn_ie(ic, frm);
   1556       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_WPA1)
   1557       1.29    dyoung 		frm = ieee80211_setup_wpa_ie(ic, frm);
   1558       1.29    dyoung 	return frm;
   1559       1.29    dyoung }
   1560       1.29    dyoung 
   1561       1.29    dyoung #define	WME_OUI_BYTES		0x00, 0x50, 0xf2
   1562       1.29    dyoung /*
   1563       1.29    dyoung  * Add a WME information element to a frame.
   1564       1.29    dyoung  */
   1565  1.47.34.1     skrll static uint8_t *
   1566  1.47.34.1     skrll ieee80211_add_wme_info(uint8_t *frm, struct ieee80211_wme_state *wme)
   1567        1.1    dyoung {
   1568       1.29    dyoung 	static const struct ieee80211_wme_info info = {
   1569       1.29    dyoung 		.wme_id		= IEEE80211_ELEMID_VENDOR,
   1570       1.29    dyoung 		.wme_len	= sizeof(struct ieee80211_wme_info) - 2,
   1571       1.29    dyoung 		.wme_oui	= { WME_OUI_BYTES },
   1572       1.29    dyoung 		.wme_type	= WME_OUI_TYPE,
   1573       1.29    dyoung 		.wme_subtype	= WME_INFO_OUI_SUBTYPE,
   1574       1.29    dyoung 		.wme_version	= WME_VERSION,
   1575       1.29    dyoung 		.wme_info	= 0,
   1576       1.29    dyoung 	};
   1577       1.29    dyoung 	memcpy(frm, &info, sizeof(info));
   1578       1.29    dyoung 	return frm + sizeof(info);
   1579       1.29    dyoung }
   1580        1.1    dyoung 
   1581       1.29    dyoung /*
   1582       1.29    dyoung  * Add a WME parameters element to a frame.
   1583       1.29    dyoung  */
   1584  1.47.34.1     skrll static uint8_t *
   1585  1.47.34.1     skrll ieee80211_add_wme_param(uint8_t *frm, struct ieee80211_wme_state *wme)
   1586       1.29    dyoung {
   1587       1.29    dyoung #define	SM(_v, _f)	(((_v) << _f##_S) & _f)
   1588       1.29    dyoung #define	ADDSHORT(frm, v) do {			\
   1589       1.29    dyoung 	frm[0] = (v) & 0xff;			\
   1590       1.29    dyoung 	frm[1] = (v) >> 8;			\
   1591       1.29    dyoung 	frm += 2;				\
   1592       1.29    dyoung } while (0)
   1593       1.29    dyoung 	/* NB: this works 'cuz a param has an info at the front */
   1594       1.29    dyoung 	static const struct ieee80211_wme_info param = {
   1595       1.29    dyoung 		.wme_id		= IEEE80211_ELEMID_VENDOR,
   1596       1.29    dyoung 		.wme_len	= sizeof(struct ieee80211_wme_param) - 2,
   1597       1.29    dyoung 		.wme_oui	= { WME_OUI_BYTES },
   1598       1.29    dyoung 		.wme_type	= WME_OUI_TYPE,
   1599       1.29    dyoung 		.wme_subtype	= WME_PARAM_OUI_SUBTYPE,
   1600       1.29    dyoung 		.wme_version	= WME_VERSION,
   1601       1.29    dyoung 	};
   1602       1.29    dyoung 	int i;
   1603       1.29    dyoung 
   1604       1.29    dyoung 	memcpy(frm, &param, sizeof(param));
   1605       1.29    dyoung 	frm += __offsetof(struct ieee80211_wme_info, wme_info);
   1606       1.29    dyoung 	*frm++ = wme->wme_bssChanParams.cap_info;	/* AC info */
   1607       1.29    dyoung 	*frm++ = 0;					/* reserved field */
   1608       1.29    dyoung 	for (i = 0; i < WME_NUM_AC; i++) {
   1609       1.29    dyoung 		const struct wmeParams *ac =
   1610       1.29    dyoung 		       &wme->wme_bssChanParams.cap_wmeParams[i];
   1611       1.29    dyoung 		*frm++ = SM(i, WME_PARAM_ACI)
   1612       1.29    dyoung 		       | SM(ac->wmep_acm, WME_PARAM_ACM)
   1613       1.29    dyoung 		       | SM(ac->wmep_aifsn, WME_PARAM_AIFSN)
   1614       1.29    dyoung 		       ;
   1615       1.29    dyoung 		*frm++ = SM(ac->wmep_logcwmax, WME_PARAM_LOGCWMAX)
   1616       1.29    dyoung 		       | SM(ac->wmep_logcwmin, WME_PARAM_LOGCWMIN)
   1617       1.29    dyoung 		       ;
   1618       1.29    dyoung 		ADDSHORT(frm, ac->wmep_txopLimit);
   1619       1.29    dyoung 	}
   1620       1.29    dyoung 	return frm;
   1621       1.29    dyoung #undef SM
   1622       1.29    dyoung #undef ADDSHORT
   1623        1.1    dyoung }
   1624       1.29    dyoung #undef WME_OUI_BYTES
   1625        1.1    dyoung 
   1626  1.47.34.1     skrll #define	ATH_OUI_BYTES		0x00, 0x03, 0x7f
   1627  1.47.34.1     skrll /*
   1628  1.47.34.1     skrll  * Add a WME information element to a frame.
   1629  1.47.34.1     skrll  */
   1630  1.47.34.1     skrll static uint8_t *
   1631  1.47.34.1     skrll ieee80211_add_ath(uint8_t *frm, uint8_t caps, uint16_t defkeyix)
   1632  1.47.34.1     skrll {
   1633  1.47.34.1     skrll 	static const struct ieee80211_ath_ie info = {
   1634  1.47.34.1     skrll 		.ath_id		= IEEE80211_ELEMID_VENDOR,
   1635  1.47.34.1     skrll 		.ath_len	= sizeof(struct ieee80211_ath_ie) - 2,
   1636  1.47.34.1     skrll 		.ath_oui	= { ATH_OUI_BYTES },
   1637  1.47.34.1     skrll 		.ath_oui_type	= ATH_OUI_TYPE,
   1638  1.47.34.1     skrll 		.ath_oui_subtype= ATH_OUI_SUBTYPE,
   1639  1.47.34.1     skrll 		.ath_version	= ATH_OUI_VERSION,
   1640  1.47.34.1     skrll 	};
   1641  1.47.34.1     skrll 	struct ieee80211_ath_ie *ath = (struct ieee80211_ath_ie *) frm;
   1642  1.47.34.1     skrll 
   1643  1.47.34.1     skrll 	memcpy(frm, &info, sizeof(info));
   1644  1.47.34.1     skrll 	ath->ath_capability = caps;
   1645  1.47.34.1     skrll 	ath->ath_defkeyix[0] = (defkeyix & 0xff);
   1646  1.47.34.1     skrll 	ath->ath_defkeyix[1] = ((defkeyix >> 8) & 0xff);
   1647  1.47.34.1     skrll 	return frm + sizeof(info);
   1648  1.47.34.1     skrll }
   1649  1.47.34.1     skrll #undef ATH_OUI_BYTES
   1650  1.47.34.1     skrll 
   1651        1.1    dyoung /*
   1652       1.39     skrll  * Send a probe request frame with the specified ssid
   1653       1.39     skrll  * and any optional information element data.
   1654       1.39     skrll  */
   1655       1.39     skrll int
   1656       1.39     skrll ieee80211_send_probereq(struct ieee80211_node *ni,
   1657  1.47.34.1     skrll 	const uint8_t sa[IEEE80211_ADDR_LEN],
   1658  1.47.34.1     skrll 	const uint8_t da[IEEE80211_ADDR_LEN],
   1659  1.47.34.1     skrll 	const uint8_t bssid[IEEE80211_ADDR_LEN],
   1660  1.47.34.1     skrll 	const uint8_t *ssid, size_t ssidlen,
   1661       1.39     skrll 	const void *optie, size_t optielen)
   1662       1.39     skrll {
   1663       1.39     skrll 	struct ieee80211com *ic = ni->ni_ic;
   1664       1.39     skrll 	struct ieee80211_frame *wh;
   1665  1.47.34.1     skrll 	const struct ieee80211_rateset *rs;
   1666       1.39     skrll 	struct mbuf *m;
   1667  1.47.34.1     skrll 	uint8_t *frm;
   1668       1.39     skrll 
   1669       1.39     skrll 	/*
   1670       1.39     skrll 	 * Hold a reference on the node so it doesn't go away until after
   1671       1.39     skrll 	 * the xmit is complete all the way in the driver.  On error we
   1672       1.39     skrll 	 * will remove our reference.
   1673       1.39     skrll 	 */
   1674       1.39     skrll 	IEEE80211_DPRINTF(ic, IEEE80211_MSG_NODE,
   1675       1.39     skrll 		"ieee80211_ref_node (%s:%u) %p<%s> refcnt %d\n",
   1676       1.39     skrll 		__func__, __LINE__,
   1677       1.39     skrll 		ni, ether_sprintf(ni->ni_macaddr),
   1678       1.39     skrll 		ieee80211_node_refcnt(ni)+1);
   1679       1.39     skrll 	ieee80211_ref_node(ni);
   1680       1.39     skrll 
   1681       1.39     skrll 	/*
   1682       1.39     skrll 	 * prreq frame format
   1683       1.39     skrll 	 *	[tlv] ssid
   1684       1.39     skrll 	 *	[tlv] supported rates
   1685       1.39     skrll 	 *	[tlv] extended supported rates
   1686       1.39     skrll 	 *	[tlv] user-specified ie's
   1687       1.39     skrll 	 */
   1688       1.39     skrll 	m = ieee80211_getmgtframe(&frm,
   1689  1.47.34.1     skrll 		 ic->ic_headroom + sizeof(struct ieee80211_frame),
   1690       1.39     skrll 		 2 + IEEE80211_NWID_LEN
   1691       1.39     skrll 	       + 2 + IEEE80211_RATE_SIZE
   1692       1.39     skrll 	       + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
   1693       1.39     skrll 	       + (optie != NULL ? optielen : 0)
   1694       1.39     skrll 	);
   1695       1.39     skrll 	if (m == NULL) {
   1696       1.39     skrll 		ic->ic_stats.is_tx_nobuf++;
   1697       1.39     skrll 		ieee80211_free_node(ni);
   1698       1.39     skrll 		return ENOMEM;
   1699       1.39     skrll 	}
   1700       1.39     skrll 
   1701       1.39     skrll 	frm = ieee80211_add_ssid(frm, ssid, ssidlen);
   1702  1.47.34.1     skrll 	rs = ieee80211_get_suprates(ic, ic->ic_curchan);
   1703  1.47.34.1     skrll 	frm = ieee80211_add_rates(frm, rs);
   1704  1.47.34.1     skrll 	frm = ieee80211_add_xrates(frm, rs);
   1705       1.39     skrll 
   1706       1.39     skrll 	if (optie != NULL) {
   1707       1.39     skrll 		memcpy(frm, optie, optielen);
   1708       1.39     skrll 		frm += optielen;
   1709       1.39     skrll 	}
   1710  1.47.34.1     skrll 	m->m_pkthdr.len = m->m_len = frm - mtod(m, uint8_t *);
   1711       1.39     skrll 
   1712       1.39     skrll 	M_PREPEND(m, sizeof(struct ieee80211_frame), M_DONTWAIT);
   1713       1.39     skrll 	if (m == NULL)
   1714       1.39     skrll 		return ENOMEM;
   1715       1.39     skrll 	IASSERT(m->m_pkthdr.rcvif == NULL, ("rcvif not null"));
   1716       1.39     skrll 	m->m_pkthdr.rcvif = (void *)ni;
   1717       1.39     skrll 
   1718       1.39     skrll 	wh = mtod(m, struct ieee80211_frame *);
   1719       1.39     skrll 	ieee80211_send_setup(ic, ni, wh,
   1720       1.39     skrll 		IEEE80211_FC0_TYPE_MGT | IEEE80211_FC0_SUBTYPE_PROBE_REQ,
   1721       1.39     skrll 		sa, da, bssid);
   1722       1.39     skrll 	/* XXX power management? */
   1723       1.39     skrll 
   1724       1.39     skrll 	IEEE80211_NODE_STAT(ni, tx_probereq);
   1725       1.39     skrll 	IEEE80211_NODE_STAT(ni, tx_mgmt);
   1726       1.39     skrll 
   1727       1.39     skrll 	IEEE80211_DPRINTF(ic, IEEE80211_MSG_DEBUG | IEEE80211_MSG_DUMPPKTS,
   1728       1.39     skrll 	    "[%s] send probe req on channel %u\n",
   1729       1.39     skrll 	    ether_sprintf(wh->i_addr1),
   1730       1.39     skrll 	    ieee80211_chan2ieee(ic, ic->ic_curchan));
   1731       1.39     skrll 
   1732       1.39     skrll 	IF_ENQUEUE(&ic->ic_mgtq, m);
   1733       1.39     skrll 	(*ic->ic_ifp->if_start)(ic->ic_ifp);
   1734       1.39     skrll 	return 0;
   1735       1.39     skrll }
   1736       1.39     skrll 
   1737       1.39     skrll /*
   1738  1.47.34.1     skrll  * Calculate capability information for mgt frames.
   1739  1.47.34.1     skrll  */
   1740  1.47.34.1     skrll static uint16_t
   1741  1.47.34.1     skrll getcapinfo(struct ieee80211com *ic, struct ieee80211_channel *chan)
   1742  1.47.34.1     skrll {
   1743  1.47.34.1     skrll 	uint16_t capinfo;
   1744  1.47.34.1     skrll 
   1745  1.47.34.1     skrll 	IASSERT(ic->ic_opmode != IEEE80211_M_STA, ("station mode"));
   1746  1.47.34.1     skrll 
   1747  1.47.34.1     skrll 	if (ic->ic_opmode == IEEE80211_M_HOSTAP)
   1748  1.47.34.1     skrll 		capinfo = IEEE80211_CAPINFO_ESS;
   1749  1.47.34.1     skrll 	else if (ic->ic_opmode == IEEE80211_M_IBSS)
   1750  1.47.34.1     skrll 		capinfo = IEEE80211_CAPINFO_IBSS;
   1751  1.47.34.1     skrll 	else
   1752  1.47.34.1     skrll 		capinfo = 0;
   1753  1.47.34.1     skrll 	if (ic->ic_flags & IEEE80211_F_PRIVACY)
   1754  1.47.34.1     skrll 		capinfo |= IEEE80211_CAPINFO_PRIVACY;
   1755  1.47.34.1     skrll 	if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
   1756  1.47.34.1     skrll 	    IEEE80211_IS_CHAN_2GHZ(chan))
   1757  1.47.34.1     skrll 		capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
   1758  1.47.34.1     skrll 	if (ic->ic_flags & IEEE80211_F_SHSLOT)
   1759  1.47.34.1     skrll 		capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
   1760  1.47.34.1     skrll 	return capinfo;
   1761  1.47.34.1     skrll }
   1762  1.47.34.1     skrll 
   1763  1.47.34.1     skrll /*
   1764        1.1    dyoung  * Send a management frame.  The node is for the destination (or ic_bss
   1765        1.1    dyoung  * when in station mode).  Nodes other than ic_bss have their reference
   1766        1.1    dyoung  * count bumped to reflect our use for an indeterminant time.
   1767        1.1    dyoung  */
   1768        1.1    dyoung int
   1769        1.1    dyoung ieee80211_send_mgmt(struct ieee80211com *ic, struct ieee80211_node *ni,
   1770        1.1    dyoung 	int type, int arg)
   1771        1.1    dyoung {
   1772  1.47.34.1     skrll #define	HTFLAGS (IEEE80211_NODE_HT | IEEE80211_NODE_HTCOMPAT)
   1773       1.10    dyoung #define	senderr(_x, _v)	do { ic->ic_stats._v++; ret = _x; goto bad; } while (0)
   1774  1.47.34.1     skrll 	const struct ieee80211_rateset *rs;
   1775        1.1    dyoung 	struct mbuf *m;
   1776  1.47.34.1     skrll 	uint8_t *frm;
   1777  1.47.34.1     skrll 	uint16_t capinfo;
   1778  1.47.34.1     skrll 	int has_challenge, is_shared_key, ret, status;
   1779        1.1    dyoung 
   1780       1.11    dyoung 	IASSERT(ni != NULL, ("null node"));
   1781        1.1    dyoung 
   1782        1.1    dyoung 	/*
   1783        1.1    dyoung 	 * Hold a reference on the node so it doesn't go away until after
   1784        1.1    dyoung 	 * the xmit is complete all the way in the driver.  On error we
   1785        1.1    dyoung 	 * will remove our reference.
   1786        1.1    dyoung 	 */
   1787       1.29    dyoung 	IEEE80211_DPRINTF(ic, IEEE80211_MSG_NODE,
   1788       1.29    dyoung 		"ieee80211_ref_node (%s:%u) %p<%s> refcnt %d\n",
   1789       1.29    dyoung 		__func__, __LINE__,
   1790       1.29    dyoung 		ni, ether_sprintf(ni->ni_macaddr),
   1791       1.29    dyoung 		ieee80211_node_refcnt(ni)+1);
   1792       1.17    dyoung 	ieee80211_ref_node(ni);
   1793       1.29    dyoung 
   1794        1.1    dyoung 	switch (type) {
   1795        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
   1796        1.1    dyoung 		/*
   1797        1.1    dyoung 		 * probe response frame format
   1798        1.1    dyoung 		 *	[8] time stamp
   1799        1.1    dyoung 		 *	[2] beacon interval
   1800        1.1    dyoung 		 *	[2] cabability information
   1801        1.1    dyoung 		 *	[tlv] ssid
   1802        1.1    dyoung 		 *	[tlv] supported rates
   1803       1.10    dyoung 		 *	[tlv] parameter set (FH/DS)
   1804        1.1    dyoung 		 *	[tlv] parameter set (IBSS)
   1805       1.29    dyoung 		 *	[tlv] extended rate phy (ERP)
   1806        1.1    dyoung 		 *	[tlv] extended supported rates
   1807       1.29    dyoung 		 *	[tlv] WPA
   1808       1.29    dyoung 		 *	[tlv] WME (optional)
   1809  1.47.34.1     skrll 		 *	[tlv] HT capabilities
   1810  1.47.34.1     skrll 		 *	[tlv] HT information
   1811  1.47.34.1     skrll 		 *	[tlv] Vendor OUI HT capabilities (optional)
   1812  1.47.34.1     skrll 		 *	[tlv] Vendor OUI HT information (optional)
   1813  1.47.34.1     skrll 		 *	[tlv] Atheros capabilities
   1814        1.1    dyoung 		 */
   1815       1.29    dyoung 		m = ieee80211_getmgtframe(&frm,
   1816  1.47.34.1     skrll 			 ic->ic_headroom + sizeof(struct ieee80211_frame),
   1817       1.29    dyoung 			 8
   1818  1.47.34.1     skrll 		       + sizeof(uint16_t)
   1819  1.47.34.1     skrll 		       + sizeof(uint16_t)
   1820       1.29    dyoung 		       + 2 + IEEE80211_NWID_LEN
   1821        1.1    dyoung 		       + 2 + IEEE80211_RATE_SIZE
   1822       1.29    dyoung 		       + 7	/* max(7,3) */
   1823        1.1    dyoung 		       + 6
   1824       1.29    dyoung 		       + 3
   1825       1.29    dyoung 		       + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
   1826       1.29    dyoung 		       /* XXX !WPA1+WPA2 fits w/o a cluster */
   1827       1.29    dyoung 		       + (ic->ic_flags & IEEE80211_F_WPA ?
   1828       1.29    dyoung 				2*sizeof(struct ieee80211_ie_wpa) : 0)
   1829       1.29    dyoung 		       + sizeof(struct ieee80211_wme_param)
   1830  1.47.34.1     skrll 		       /* XXX check for cluster requirement */
   1831  1.47.34.1     skrll 		       + 2*sizeof(struct ieee80211_ie_htcap) + 4
   1832  1.47.34.1     skrll 		       + 2*sizeof(struct ieee80211_ie_htinfo) + 4
   1833  1.47.34.1     skrll 		       + sizeof(struct ieee80211_ath_ie)
   1834       1.29    dyoung 		);
   1835        1.1    dyoung 		if (m == NULL)
   1836       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   1837        1.1    dyoung 
   1838        1.1    dyoung 		memset(frm, 0, 8);	/* timestamp should be filled later */
   1839        1.1    dyoung 		frm += 8;
   1840  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(ic->ic_bss->ni_intval);
   1841        1.1    dyoung 		frm += 2;
   1842  1.47.34.1     skrll 		capinfo = getcapinfo(ic, ic->ic_curchan);
   1843  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(capinfo);
   1844        1.1    dyoung 		frm += 2;
   1845        1.1    dyoung 
   1846        1.1    dyoung 		frm = ieee80211_add_ssid(frm, ic->ic_bss->ni_essid,
   1847        1.1    dyoung 				ic->ic_bss->ni_esslen);
   1848  1.47.34.1     skrll 		rs = ieee80211_get_suprates(ic, ic->ic_curchan);
   1849  1.47.34.1     skrll 		frm = ieee80211_add_rates(frm, rs);
   1850        1.1    dyoung 
   1851  1.47.34.1     skrll 		if (IEEE80211_IS_CHAN_FHSS(ic->ic_curchan)) {
   1852        1.6    dyoung                         *frm++ = IEEE80211_ELEMID_FHPARMS;
   1853        1.6    dyoung                         *frm++ = 5;
   1854        1.6    dyoung                         *frm++ = ni->ni_fhdwell & 0x00ff;
   1855        1.6    dyoung                         *frm++ = (ni->ni_fhdwell >> 8) & 0x00ff;
   1856        1.6    dyoung                         *frm++ = IEEE80211_FH_CHANSET(
   1857       1.39     skrll 			    ieee80211_chan2ieee(ic, ic->ic_curchan));
   1858        1.6    dyoung                         *frm++ = IEEE80211_FH_CHANPAT(
   1859       1.39     skrll 			    ieee80211_chan2ieee(ic, ic->ic_curchan));
   1860        1.6    dyoung                         *frm++ = ni->ni_fhindex;
   1861       1.10    dyoung 		} else {
   1862       1.10    dyoung 			*frm++ = IEEE80211_ELEMID_DSPARMS;
   1863       1.10    dyoung 			*frm++ = 1;
   1864       1.39     skrll 			*frm++ = ieee80211_chan2ieee(ic, ic->ic_curchan);
   1865       1.10    dyoung 		}
   1866        1.6    dyoung 
   1867        1.1    dyoung 		if (ic->ic_opmode == IEEE80211_M_IBSS) {
   1868        1.1    dyoung 			*frm++ = IEEE80211_ELEMID_IBSSPARMS;
   1869        1.1    dyoung 			*frm++ = 2;
   1870        1.1    dyoung 			*frm++ = 0; *frm++ = 0;		/* TODO: ATIM window */
   1871        1.1    dyoung 		}
   1872       1.29    dyoung 		if (ic->ic_flags & IEEE80211_F_WPA)
   1873       1.29    dyoung 			frm = ieee80211_add_wpa(frm, ic);
   1874  1.47.34.1     skrll 		if (IEEE80211_IS_CHAN_ANYG(ic->ic_curchan))
   1875       1.29    dyoung 			frm = ieee80211_add_erp(frm, ic);
   1876  1.47.34.1     skrll 		frm = ieee80211_add_xrates(frm, rs);
   1877  1.47.34.1     skrll 		/*
   1878  1.47.34.1     skrll 		 * NB: legacy 11b clients do not get certain ie's.
   1879  1.47.34.1     skrll 		 *     The caller identifies such clients by passing
   1880  1.47.34.1     skrll 		 *     a token in arg to us.  Could expand this to be
   1881  1.47.34.1     skrll 		 *     any legacy client for stuff like HT ie's.
   1882  1.47.34.1     skrll 		 */
   1883  1.47.34.1     skrll 		if (IEEE80211_IS_CHAN_HT(ic->ic_curchan) &&
   1884  1.47.34.1     skrll 		    arg != IEEE80211_SEND_LEGACY_11B) {
   1885  1.47.34.1     skrll 			frm = ieee80211_add_htcap(frm, ni);
   1886  1.47.34.1     skrll 			frm = ieee80211_add_htinfo(frm, ni);
   1887  1.47.34.1     skrll 		}
   1888       1.29    dyoung 		if (ic->ic_flags & IEEE80211_F_WME)
   1889       1.29    dyoung 			frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
   1890  1.47.34.1     skrll 		if (IEEE80211_IS_CHAN_HT(ic->ic_curchan) &&
   1891  1.47.34.1     skrll 		    (ic->ic_flags_ext & IEEE80211_FEXT_HTCOMPAT) &&
   1892  1.47.34.1     skrll 		    arg != IEEE80211_SEND_LEGACY_11B) {
   1893  1.47.34.1     skrll 			frm = ieee80211_add_htcap_vendor(frm, ni);
   1894  1.47.34.1     skrll 			frm = ieee80211_add_htinfo_vendor(frm, ni);
   1895  1.47.34.1     skrll 		}
   1896  1.47.34.1     skrll 		if (ni->ni_ath_ie != NULL)
   1897  1.47.34.1     skrll 			frm = ieee80211_add_ath(frm, ni->ni_ath_flags,
   1898  1.47.34.1     skrll 				ni->ni_ath_defkeyix);
   1899  1.47.34.1     skrll 		m->m_pkthdr.len = m->m_len = frm - mtod(m, uint8_t *);
   1900        1.1    dyoung 		break;
   1901        1.1    dyoung 
   1902        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_AUTH:
   1903       1.29    dyoung 		status = arg >> 16;
   1904       1.29    dyoung 		arg &= 0xffff;
   1905        1.7    dyoung 		has_challenge = ((arg == IEEE80211_AUTH_SHARED_CHALLENGE ||
   1906        1.7    dyoung 		    arg == IEEE80211_AUTH_SHARED_RESPONSE) &&
   1907        1.7    dyoung 		    ni->ni_challenge != NULL);
   1908        1.7    dyoung 
   1909       1.29    dyoung 		/*
   1910       1.29    dyoung 		 * Deduce whether we're doing open authentication or
   1911       1.29    dyoung 		 * shared key authentication.  We do the latter if
   1912       1.29    dyoung 		 * we're in the middle of a shared key authentication
   1913       1.29    dyoung 		 * handshake or if we're initiating an authentication
   1914       1.29    dyoung 		 * request and configured to use shared key.
   1915       1.29    dyoung 		 */
   1916       1.29    dyoung 		is_shared_key = has_challenge ||
   1917       1.29    dyoung 		     arg >= IEEE80211_AUTH_SHARED_RESPONSE ||
   1918       1.29    dyoung 		     (arg == IEEE80211_AUTH_SHARED_REQUEST &&
   1919       1.29    dyoung 		      ic->ic_bss->ni_authmode == IEEE80211_AUTH_SHARED);
   1920       1.29    dyoung 
   1921       1.29    dyoung 		m = ieee80211_getmgtframe(&frm,
   1922  1.47.34.1     skrll 			  ic->ic_headroom + sizeof(struct ieee80211_frame),
   1923  1.47.34.1     skrll 			  3 * sizeof(uint16_t)
   1924       1.29    dyoung 			+ (has_challenge && status == IEEE80211_STATUS_SUCCESS ?
   1925  1.47.34.1     skrll 				sizeof(uint16_t)+IEEE80211_CHALLENGE_LEN : 0)
   1926       1.29    dyoung 		);
   1927       1.29    dyoung 		if (m == NULL)
   1928       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   1929        1.7    dyoung 
   1930  1.47.34.1     skrll 		((uint16_t *)frm)[0] =
   1931        1.7    dyoung 		    (is_shared_key) ? htole16(IEEE80211_AUTH_ALG_SHARED)
   1932        1.7    dyoung 		                    : htole16(IEEE80211_AUTH_ALG_OPEN);
   1933  1.47.34.1     skrll 		((uint16_t *)frm)[1] = htole16(arg);	/* sequence number */
   1934  1.47.34.1     skrll 		((uint16_t *)frm)[2] = htole16(status);/* status */
   1935        1.7    dyoung 
   1936       1.29    dyoung 		if (has_challenge && status == IEEE80211_STATUS_SUCCESS) {
   1937  1.47.34.1     skrll 			((uint16_t *)frm)[3] =
   1938        1.7    dyoung 			    htole16((IEEE80211_CHALLENGE_LEN << 8) |
   1939        1.7    dyoung 			    IEEE80211_ELEMID_CHALLENGE);
   1940  1.47.34.1     skrll 			memcpy(&((uint16_t *)frm)[4], ni->ni_challenge,
   1941        1.7    dyoung 			    IEEE80211_CHALLENGE_LEN);
   1942       1.29    dyoung 			m->m_pkthdr.len = m->m_len =
   1943  1.47.34.1     skrll 				4 * sizeof(uint16_t) + IEEE80211_CHALLENGE_LEN;
   1944        1.7    dyoung 			if (arg == IEEE80211_AUTH_SHARED_RESPONSE) {
   1945       1.14   mycroft 				IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
   1946       1.29    dyoung 				    "[%s] request encrypt frame (%s)\n",
   1947       1.29    dyoung 				    ether_sprintf(ni->ni_macaddr), __func__);
   1948        1.7    dyoung 				m->m_flags |= M_LINK0; /* WEP-encrypt, please */
   1949        1.7    dyoung 			}
   1950       1.29    dyoung 		} else
   1951  1.47.34.1     skrll 			m->m_pkthdr.len = m->m_len = 3 * sizeof(uint16_t);
   1952       1.29    dyoung 
   1953       1.29    dyoung 		/* XXX not right for shared key */
   1954       1.29    dyoung 		if (status == IEEE80211_STATUS_SUCCESS)
   1955       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_auth);
   1956       1.29    dyoung 		else
   1957       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_auth_fail);
   1958       1.29    dyoung 
   1959        1.1    dyoung 		if (ic->ic_opmode == IEEE80211_M_STA)
   1960  1.47.34.1     skrll 			ieee80211_add_callback(m, ieee80211_tx_mgt_cb,
   1961  1.47.34.1     skrll 				(void *) ic->ic_state);
   1962        1.1    dyoung 		break;
   1963        1.1    dyoung 
   1964        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_DEAUTH:
   1965       1.15   mycroft 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_AUTH,
   1966       1.29    dyoung 			"[%s] send station deauthenticate (reason %d)\n",
   1967       1.29    dyoung 			ether_sprintf(ni->ni_macaddr), arg);
   1968  1.47.34.1     skrll 		m = ieee80211_getmgtframe(&frm,
   1969  1.47.34.1     skrll 			ic->ic_headroom + sizeof(struct ieee80211_frame),
   1970  1.47.34.1     skrll 			sizeof(uint16_t));
   1971        1.1    dyoung 		if (m == NULL)
   1972       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   1973  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(arg);	/* reason */
   1974  1.47.34.1     skrll 		m->m_pkthdr.len = m->m_len = sizeof(uint16_t);
   1975       1.29    dyoung 
   1976       1.29    dyoung 		IEEE80211_NODE_STAT(ni, tx_deauth);
   1977       1.29    dyoung 		IEEE80211_NODE_STAT_SET(ni, tx_deauth_code, arg);
   1978       1.29    dyoung 
   1979       1.39     skrll 		ieee80211_node_unauthorize(ni);		/* port closed */
   1980        1.1    dyoung 		break;
   1981        1.1    dyoung 
   1982        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
   1983        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_REASSOC_REQ:
   1984        1.1    dyoung 		/*
   1985        1.1    dyoung 		 * asreq frame format
   1986        1.1    dyoung 		 *	[2] capability information
   1987        1.1    dyoung 		 *	[2] listen interval
   1988        1.1    dyoung 		 *	[6*] current AP address (reassoc only)
   1989        1.1    dyoung 		 *	[tlv] ssid
   1990        1.1    dyoung 		 *	[tlv] supported rates
   1991        1.1    dyoung 		 *	[tlv] extended supported rates
   1992       1.29    dyoung 		 *	[tlv] WME
   1993  1.47.34.1     skrll 		 *	[tlv] HT capabilities
   1994  1.47.34.1     skrll 		 *	[tlv] Vendor OUI HT capabilities (optional)
   1995  1.47.34.1     skrll 		 *	[tlv] Atheros capabilities (if negotiated)
   1996       1.29    dyoung 		 *	[tlv] user-specified ie's
   1997        1.1    dyoung 		 */
   1998       1.29    dyoung 		m = ieee80211_getmgtframe(&frm,
   1999  1.47.34.1     skrll 			 ic->ic_headroom + sizeof(struct ieee80211_frame),
   2000  1.47.34.1     skrll 			 sizeof(uint16_t)
   2001  1.47.34.1     skrll 		       + sizeof(uint16_t)
   2002        1.1    dyoung 		       + IEEE80211_ADDR_LEN
   2003       1.29    dyoung 		       + 2 + IEEE80211_NWID_LEN
   2004        1.1    dyoung 		       + 2 + IEEE80211_RATE_SIZE
   2005       1.29    dyoung 		       + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
   2006       1.29    dyoung 		       + sizeof(struct ieee80211_wme_info)
   2007  1.47.34.1     skrll 		       + 2*sizeof(struct ieee80211_ie_htcap) + 4
   2008  1.47.34.1     skrll 		       + sizeof(struct ieee80211_ath_ie)
   2009       1.29    dyoung 		       + (ic->ic_opt_ie != NULL ? ic->ic_opt_ie_len : 0)
   2010       1.29    dyoung 		);
   2011        1.1    dyoung 		if (m == NULL)
   2012       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   2013        1.1    dyoung 
   2014  1.47.34.1     skrll 		IASSERT(ic->ic_opmode == IEEE80211_M_STA,
   2015  1.47.34.1     skrll 		    ("wrong mode %u", ic->ic_opmode));
   2016  1.47.34.1     skrll 		capinfo = IEEE80211_CAPINFO_ESS;
   2017       1.16   mycroft 		if (ic->ic_flags & IEEE80211_F_PRIVACY)
   2018        1.1    dyoung 			capinfo |= IEEE80211_CAPINFO_PRIVACY;
   2019       1.10    dyoung 		/*
   2020       1.10    dyoung 		 * NB: Some 11a AP's reject the request when
   2021       1.10    dyoung 		 *     short premable is set.
   2022       1.10    dyoung 		 */
   2023       1.10    dyoung 		if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
   2024       1.39     skrll 		    IEEE80211_IS_CHAN_2GHZ(ic->ic_curchan))
   2025        1.1    dyoung 			capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
   2026  1.47.34.1     skrll 		if (IEEE80211_IS_CHAN_ANYG(ic->ic_curchan) &&
   2027       1.29    dyoung 		    (ic->ic_caps & IEEE80211_C_SHSLOT))
   2028        1.1    dyoung 			capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
   2029  1.47.34.1     skrll 		if ((ni->ni_capinfo & IEEE80211_CAPINFO_SPECTRUM_MGMT) &&
   2030  1.47.34.1     skrll 		    (ic->ic_flags & IEEE80211_F_DOTH))
   2031  1.47.34.1     skrll 			capinfo |= IEEE80211_CAPINFO_SPECTRUM_MGMT;
   2032  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(capinfo);
   2033        1.1    dyoung 		frm += 2;
   2034        1.1    dyoung 
   2035  1.47.34.1     skrll 		IASSERT(ic->ic_bss->ni_intval != 0,
   2036  1.47.34.1     skrll 			("beacon interval is zero!"));
   2037  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(howmany(ic->ic_lintval,
   2038  1.47.34.1     skrll 						   ic->ic_bss->ni_intval));
   2039        1.1    dyoung 		frm += 2;
   2040        1.1    dyoung 
   2041        1.1    dyoung 		if (type == IEEE80211_FC0_SUBTYPE_REASSOC_REQ) {
   2042        1.1    dyoung 			IEEE80211_ADDR_COPY(frm, ic->ic_bss->ni_bssid);
   2043        1.1    dyoung 			frm += IEEE80211_ADDR_LEN;
   2044        1.1    dyoung 		}
   2045        1.1    dyoung 
   2046        1.1    dyoung 		frm = ieee80211_add_ssid(frm, ni->ni_essid, ni->ni_esslen);
   2047        1.1    dyoung 		frm = ieee80211_add_rates(frm, &ni->ni_rates);
   2048        1.1    dyoung 		frm = ieee80211_add_xrates(frm, &ni->ni_rates);
   2049  1.47.34.1     skrll 		if ((ic->ic_flags_ext & IEEE80211_FEXT_HT) &&
   2050  1.47.34.1     skrll 		    ni->ni_htcap_ie != NULL &&
   2051  1.47.34.1     skrll 		    ni->ni_htcap_ie[0] == IEEE80211_ELEMID_HTCAP)
   2052  1.47.34.1     skrll 			frm = ieee80211_add_htcap(frm, ni);
   2053       1.29    dyoung 		if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL)
   2054       1.29    dyoung 			frm = ieee80211_add_wme_info(frm, &ic->ic_wme);
   2055  1.47.34.1     skrll 		if ((ic->ic_flags_ext & IEEE80211_FEXT_HT) &&
   2056  1.47.34.1     skrll 		    ni->ni_htcap_ie != NULL &&
   2057  1.47.34.1     skrll 		    ni->ni_htcap_ie[0] == IEEE80211_ELEMID_VENDOR)
   2058  1.47.34.1     skrll 			frm = ieee80211_add_htcap_vendor(frm, ni);
   2059  1.47.34.1     skrll 		if (IEEE80211_ATH_CAP(ic, ni, IEEE80211_F_ATHEROS))
   2060  1.47.34.1     skrll 			frm = ieee80211_add_ath(frm,
   2061  1.47.34.1     skrll 				IEEE80211_ATH_CAP(ic, ni, IEEE80211_F_ATHEROS),
   2062  1.47.34.1     skrll 				(ic->ic_flags & IEEE80211_F_WPA) == 0 &&
   2063  1.47.34.1     skrll 				ni->ni_authmode != IEEE80211_AUTH_8021X &&
   2064  1.47.34.1     skrll 				ic->ic_def_txkey != IEEE80211_KEYIX_NONE ?
   2065  1.47.34.1     skrll 				ic->ic_def_txkey : 0x7fff);
   2066       1.29    dyoung 		if (ic->ic_opt_ie != NULL) {
   2067       1.29    dyoung 			memcpy(frm, ic->ic_opt_ie, ic->ic_opt_ie_len);
   2068       1.29    dyoung 			frm += ic->ic_opt_ie_len;
   2069       1.29    dyoung 		}
   2070  1.47.34.1     skrll 		m->m_pkthdr.len = m->m_len = frm - mtod(m, uint8_t *);
   2071        1.1    dyoung 
   2072  1.47.34.1     skrll 		ieee80211_add_callback(m, ieee80211_tx_mgt_cb,
   2073  1.47.34.1     skrll 			(void *) ic->ic_state);
   2074        1.1    dyoung 		break;
   2075        1.1    dyoung 
   2076        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
   2077        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_REASSOC_RESP:
   2078        1.1    dyoung 		/*
   2079  1.47.34.1     skrll 		 * asresp frame format
   2080        1.1    dyoung 		 *	[2] capability information
   2081        1.1    dyoung 		 *	[2] status
   2082        1.1    dyoung 		 *	[2] association ID
   2083        1.1    dyoung 		 *	[tlv] supported rates
   2084        1.1    dyoung 		 *	[tlv] extended supported rates
   2085       1.29    dyoung 		 *	[tlv] WME (if enabled and STA enabled)
   2086  1.47.34.1     skrll 		 *	[tlv] HT capabilities (standard or vendor OUI)
   2087  1.47.34.1     skrll 		 *	[tlv] HT information (standard or vendor OUI)
   2088  1.47.34.1     skrll 		 *	[tlv] Atheros capabilities (if enabled and STA enabled)
   2089        1.1    dyoung 		 */
   2090       1.29    dyoung 		m = ieee80211_getmgtframe(&frm,
   2091  1.47.34.1     skrll 			 ic->ic_headroom + sizeof(struct ieee80211_frame),
   2092  1.47.34.1     skrll 			 sizeof(uint16_t)
   2093  1.47.34.1     skrll 		       + sizeof(uint16_t)
   2094  1.47.34.1     skrll 		       + sizeof(uint16_t)
   2095        1.1    dyoung 		       + 2 + IEEE80211_RATE_SIZE
   2096       1.29    dyoung 		       + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
   2097       1.29    dyoung 		       + sizeof(struct ieee80211_wme_param)
   2098  1.47.34.1     skrll 		       + sizeof(struct ieee80211_ie_htcap) + 4
   2099  1.47.34.1     skrll 		       + sizeof(struct ieee80211_ie_htinfo) + 4
   2100  1.47.34.1     skrll 		       + sizeof(struct ieee80211_ath_ie)
   2101       1.29    dyoung 		);
   2102        1.1    dyoung 		if (m == NULL)
   2103       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   2104        1.1    dyoung 
   2105  1.47.34.1     skrll 		capinfo = getcapinfo(ic, ic->ic_curchan);
   2106  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(capinfo);
   2107        1.1    dyoung 		frm += 2;
   2108        1.1    dyoung 
   2109  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(arg);	/* status */
   2110        1.1    dyoung 		frm += 2;
   2111        1.1    dyoung 
   2112       1.29    dyoung 		if (arg == IEEE80211_STATUS_SUCCESS) {
   2113  1.47.34.1     skrll 			*(uint16_t *)frm = htole16(ni->ni_associd);
   2114       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_assoc);
   2115       1.29    dyoung 		} else
   2116       1.29    dyoung 			IEEE80211_NODE_STAT(ni, tx_assoc_fail);
   2117        1.1    dyoung 		frm += 2;
   2118        1.1    dyoung 
   2119        1.1    dyoung 		frm = ieee80211_add_rates(frm, &ni->ni_rates);
   2120        1.1    dyoung 		frm = ieee80211_add_xrates(frm, &ni->ni_rates);
   2121  1.47.34.1     skrll 		/* NB: respond according to what we received */
   2122  1.47.34.1     skrll 		if ((ni->ni_flags & HTFLAGS) == IEEE80211_NODE_HT) {
   2123  1.47.34.1     skrll 			frm = ieee80211_add_htcap(frm, ni);
   2124  1.47.34.1     skrll 			frm = ieee80211_add_htinfo(frm, ni);
   2125  1.47.34.1     skrll 		}
   2126       1.29    dyoung 		if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL)
   2127       1.29    dyoung 			frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
   2128  1.47.34.1     skrll 		if ((ni->ni_flags & HTFLAGS) == HTFLAGS) {
   2129  1.47.34.1     skrll 			frm = ieee80211_add_htcap_vendor(frm, ni);
   2130  1.47.34.1     skrll 			frm = ieee80211_add_htinfo_vendor(frm, ni);
   2131  1.47.34.1     skrll 		}
   2132  1.47.34.1     skrll 		if (IEEE80211_ATH_CAP(ic, ni, IEEE80211_F_ATHEROS))
   2133  1.47.34.1     skrll 			frm = ieee80211_add_ath(frm,
   2134  1.47.34.1     skrll 				IEEE80211_ATH_CAP(ic, ni, IEEE80211_F_ATHEROS),
   2135  1.47.34.1     skrll 				ni->ni_ath_defkeyix);
   2136  1.47.34.1     skrll 		m->m_pkthdr.len = m->m_len = frm - mtod(m, uint8_t *);
   2137        1.1    dyoung 		break;
   2138        1.1    dyoung 
   2139        1.1    dyoung 	case IEEE80211_FC0_SUBTYPE_DISASSOC:
   2140       1.15   mycroft 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_ASSOC,
   2141       1.29    dyoung 			"[%s] send station disassociate (reason %d)\n",
   2142       1.29    dyoung 			ether_sprintf(ni->ni_macaddr), arg);
   2143  1.47.34.1     skrll 		m = ieee80211_getmgtframe(&frm,
   2144  1.47.34.1     skrll 			ic->ic_headroom + sizeof(struct ieee80211_frame),
   2145  1.47.34.1     skrll 			sizeof(uint16_t));
   2146        1.1    dyoung 		if (m == NULL)
   2147       1.29    dyoung 			senderr(ENOMEM, is_tx_nobuf);
   2148  1.47.34.1     skrll 		*(uint16_t *)frm = htole16(arg);	/* reason */
   2149  1.47.34.1     skrll 		m->m_pkthdr.len = m->m_len = sizeof(uint16_t);
   2150       1.29    dyoung 
   2151       1.29    dyoung 		IEEE80211_NODE_STAT(ni, tx_disassoc);
   2152       1.29    dyoung 		IEEE80211_NODE_STAT_SET(ni, tx_disassoc_code, arg);
   2153        1.1    dyoung 		break;
   2154        1.1    dyoung 
   2155        1.1    dyoung 	default:
   2156       1.14   mycroft 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
   2157       1.29    dyoung 			"[%s] invalid mgmt frame type %u\n",
   2158       1.29    dyoung 			ether_sprintf(ni->ni_macaddr), type);
   2159       1.10    dyoung 		senderr(EINVAL, is_tx_unknownmgt);
   2160        1.1    dyoung 		/* NOTREACHED */
   2161        1.1    dyoung 	}
   2162  1.47.34.1     skrll 
   2163  1.47.34.1     skrll 	ret = ieee80211_mgmt_output(ic, ni, m, type);
   2164  1.47.34.1     skrll 	if (ret != 0)
   2165  1.47.34.1     skrll 		goto bad;
   2166  1.47.34.1     skrll 	return 0;
   2167        1.1    dyoung bad:
   2168  1.47.34.1     skrll 	ieee80211_free_node(ni);
   2169        1.1    dyoung 	return ret;
   2170        1.1    dyoung #undef senderr
   2171  1.47.34.1     skrll #undef HTFLAGS
   2172  1.47.34.1     skrll }
   2173  1.47.34.1     skrll 
   2174  1.47.34.1     skrll static void
   2175  1.47.34.1     skrll ieee80211_tx_mgt_timeout(void *arg)
   2176  1.47.34.1     skrll {
   2177  1.47.34.1     skrll 	struct ieee80211_node *ni = arg;
   2178  1.47.34.1     skrll 	struct ieee80211com *ic	= ni->ni_ic;
   2179  1.47.34.1     skrll 
   2180  1.47.34.1     skrll 	if (ic->ic_state != IEEE80211_S_INIT &&
   2181  1.47.34.1     skrll 	    (ic->ic_flags & IEEE80211_F_SCAN) == 0) {
   2182  1.47.34.1     skrll 		/*
   2183  1.47.34.1     skrll 		 * NB: it's safe to specify a timeout as the reason here;
   2184  1.47.34.1     skrll 		 *     it'll only be used in the right state.
   2185  1.47.34.1     skrll 		 */
   2186  1.47.34.1     skrll 		ieee80211_new_state(ic, IEEE80211_S_SCAN,
   2187  1.47.34.1     skrll 			IEEE80211_SCAN_FAIL_TIMEOUT);
   2188  1.47.34.1     skrll 	}
   2189  1.47.34.1     skrll }
   2190  1.47.34.1     skrll 
   2191  1.47.34.1     skrll static void
   2192  1.47.34.1     skrll ieee80211_tx_mgt_cb(struct ieee80211_node *ni, void *arg, int status)
   2193  1.47.34.1     skrll {
   2194  1.47.34.1     skrll 	struct ieee80211com *ic = ni->ni_ic;
   2195  1.47.34.1     skrll 	enum ieee80211_state ostate = (enum ieee80211_state) arg;
   2196  1.47.34.1     skrll 
   2197  1.47.34.1     skrll 	/*
   2198  1.47.34.1     skrll 	 * Frame transmit completed; arrange timer callback.  If
   2199  1.47.34.1     skrll 	 * transmit was successfuly we wait for response.  Otherwise
   2200  1.47.34.1     skrll 	 * we arrange an immediate callback instead of doing the
   2201  1.47.34.1     skrll 	 * callback directly since we don't know what state the driver
   2202  1.47.34.1     skrll 	 * is in (e.g. what locks it is holding).  This work should
   2203  1.47.34.1     skrll 	 * not be too time-critical and not happen too often so the
   2204  1.47.34.1     skrll 	 * added overhead is acceptable.
   2205  1.47.34.1     skrll 	 *
   2206  1.47.34.1     skrll 	 * XXX what happens if !acked but response shows up before callback?
   2207  1.47.34.1     skrll 	 */
   2208  1.47.34.1     skrll 	if (ic->ic_state == ostate)
   2209  1.47.34.1     skrll 		callout_reset(&ic->ic_mgtsend,
   2210  1.47.34.1     skrll 			status == 0 ? IEEE80211_TRANS_WAIT*hz : 0,
   2211  1.47.34.1     skrll 			ieee80211_tx_mgt_timeout, ni);
   2212        1.1    dyoung }
   2213        1.6    dyoung 
   2214       1.29    dyoung /*
   2215       1.29    dyoung  * Allocate a beacon frame and fillin the appropriate bits.
   2216       1.29    dyoung  */
   2217       1.29    dyoung struct mbuf *
   2218  1.47.34.1     skrll ieee80211_beacon_alloc(struct ieee80211_node *ni,
   2219       1.29    dyoung 	struct ieee80211_beacon_offsets *bo)
   2220       1.29    dyoung {
   2221  1.47.34.1     skrll 	struct ieee80211com *ic = ni->ni_ic;
   2222       1.29    dyoung 	struct ifnet *ifp = ic->ic_ifp;
   2223       1.29    dyoung 	struct ieee80211_frame *wh;
   2224       1.29    dyoung 	struct mbuf *m;
   2225       1.29    dyoung 	int pktlen;
   2226  1.47.34.1     skrll 	uint8_t *frm;
   2227  1.47.34.1     skrll 	uint16_t capinfo;
   2228       1.29    dyoung 	struct ieee80211_rateset *rs;
   2229       1.29    dyoung 
   2230       1.29    dyoung 	/*
   2231       1.29    dyoung 	 * beacon frame format
   2232       1.29    dyoung 	 *	[8] time stamp
   2233       1.29    dyoung 	 *	[2] beacon interval
   2234       1.29    dyoung 	 *	[2] cabability information
   2235       1.29    dyoung 	 *	[tlv] ssid
   2236       1.29    dyoung 	 *	[tlv] supported rates
   2237       1.29    dyoung 	 *	[3] parameter set (DS)
   2238       1.29    dyoung 	 *	[tlv] parameter set (IBSS/TIM)
   2239  1.47.34.1     skrll 	 *	[tlv] country code
   2240       1.29    dyoung 	 *	[tlv] extended rate phy (ERP)
   2241       1.29    dyoung 	 *	[tlv] extended supported rates
   2242       1.29    dyoung 	 *	[tlv] WME parameters
   2243       1.29    dyoung 	 *	[tlv] WPA/RSN parameters
   2244  1.47.34.1     skrll 	 *	[tlv] HT capabilities
   2245  1.47.34.1     skrll 	 *	[tlv] HT information
   2246  1.47.34.1     skrll 	 *	[tlv] Vendor OUI HT capabilities (optional)
   2247  1.47.34.1     skrll 	 *	[tlv] Vendor OUI HT information (optional)
   2248       1.29    dyoung 	 * XXX Vendor-specific OIDs (e.g. Atheros)
   2249       1.29    dyoung 	 * NB: we allocate the max space required for the TIM bitmap.
   2250       1.29    dyoung 	 */
   2251       1.29    dyoung 	rs = &ni->ni_rates;
   2252       1.29    dyoung 	pktlen =   8					/* time stamp */
   2253  1.47.34.1     skrll 		 + sizeof(uint16_t)			/* beacon interval */
   2254  1.47.34.1     skrll 		 + sizeof(uint16_t)			/* capabilities */
   2255       1.29    dyoung 		 + 2 + ni->ni_esslen			/* ssid */
   2256       1.29    dyoung 	         + 2 + IEEE80211_RATE_SIZE		/* supported rates */
   2257       1.29    dyoung 	         + 2 + 1				/* DS parameters */
   2258       1.29    dyoung 		 + 2 + 4 + ic->ic_tim_len		/* DTIM/IBSSPARMS */
   2259  1.47.34.1     skrll 		 + sizeof(struct ieee80211_country_ie)	/* country code */
   2260       1.29    dyoung 		 + 2 + 1				/* ERP */
   2261       1.29    dyoung 	         + 2 + (IEEE80211_RATE_MAXSIZE - IEEE80211_RATE_SIZE)
   2262       1.29    dyoung 		 + (ic->ic_caps & IEEE80211_C_WME ?	/* WME */
   2263       1.29    dyoung 			sizeof(struct ieee80211_wme_param) : 0)
   2264       1.29    dyoung 		 + (ic->ic_caps & IEEE80211_C_WPA ?	/* WPA 1+2 */
   2265       1.29    dyoung 			2*sizeof(struct ieee80211_ie_wpa) : 0)
   2266  1.47.34.1     skrll 		 /* XXX conditional? */
   2267  1.47.34.1     skrll 		 + 4+2*sizeof(struct ieee80211_ie_htcap)/* HT caps */
   2268  1.47.34.1     skrll 		 + 4+2*sizeof(struct ieee80211_ie_htinfo)/* HT info */
   2269       1.29    dyoung 		 ;
   2270  1.47.34.1     skrll 	m = ieee80211_getmgtframe(&frm,
   2271  1.47.34.1     skrll 		ic->ic_headroom + sizeof(struct ieee80211_frame), pktlen);
   2272       1.29    dyoung 	if (m == NULL) {
   2273       1.29    dyoung 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
   2274       1.29    dyoung 			"%s: cannot get buf; size %u\n", __func__, pktlen);
   2275       1.29    dyoung 		ic->ic_stats.is_tx_nobuf++;
   2276       1.29    dyoung 		return NULL;
   2277       1.29    dyoung 	}
   2278       1.29    dyoung 
   2279  1.47.34.1     skrll 	memset(bo, 0, sizeof(*bo));
   2280  1.47.34.1     skrll 
   2281       1.29    dyoung 	memset(frm, 0, 8);	/* XXX timestamp is set by hardware/driver */
   2282       1.29    dyoung 	frm += 8;
   2283  1.47.34.1     skrll 	*(uint16_t *)frm = htole16(ni->ni_intval);
   2284       1.29    dyoung 	frm += 2;
   2285  1.47.34.1     skrll 	capinfo = getcapinfo(ic, ni->ni_chan);
   2286  1.47.34.1     skrll 	bo->bo_caps = (uint16_t *)frm;
   2287  1.47.34.1     skrll 	*(uint16_t *)frm = htole16(capinfo);
   2288       1.29    dyoung 	frm += 2;
   2289       1.29    dyoung 	*frm++ = IEEE80211_ELEMID_SSID;
   2290       1.29    dyoung 	if ((ic->ic_flags & IEEE80211_F_HIDESSID) == 0) {
   2291       1.29    dyoung 		*frm++ = ni->ni_esslen;
   2292       1.29    dyoung 		memcpy(frm, ni->ni_essid, ni->ni_esslen);
   2293       1.29    dyoung 		frm += ni->ni_esslen;
   2294       1.29    dyoung 	} else
   2295       1.29    dyoung 		*frm++ = 0;
   2296       1.29    dyoung 	frm = ieee80211_add_rates(frm, rs);
   2297  1.47.34.1     skrll 	if (!IEEE80211_IS_CHAN_FHSS(ic->ic_bsschan)) {
   2298       1.29    dyoung 		*frm++ = IEEE80211_ELEMID_DSPARMS;
   2299       1.29    dyoung 		*frm++ = 1;
   2300  1.47.34.1     skrll 		*frm++ = ieee80211_chan2ieee(ic, ic->ic_bsschan);
   2301       1.29    dyoung 	}
   2302       1.29    dyoung 	bo->bo_tim = frm;
   2303       1.29    dyoung 	if (ic->ic_opmode == IEEE80211_M_IBSS) {
   2304       1.29    dyoung 		*frm++ = IEEE80211_ELEMID_IBSSPARMS;
   2305       1.29    dyoung 		*frm++ = 2;
   2306       1.29    dyoung 		*frm++ = 0; *frm++ = 0;		/* TODO: ATIM window */
   2307       1.29    dyoung 		bo->bo_tim_len = 0;
   2308  1.47.34.1     skrll 	} else if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
   2309       1.29    dyoung 		struct ieee80211_tim_ie *tie = (struct ieee80211_tim_ie *) frm;
   2310       1.29    dyoung 
   2311       1.29    dyoung 		tie->tim_ie = IEEE80211_ELEMID_TIM;
   2312       1.29    dyoung 		tie->tim_len = 4;	/* length */
   2313       1.29    dyoung 		tie->tim_count = 0;	/* DTIM count */
   2314       1.29    dyoung 		tie->tim_period = ic->ic_dtim_period;	/* DTIM period */
   2315       1.29    dyoung 		tie->tim_bitctl = 0;	/* bitmap control */
   2316       1.29    dyoung 		tie->tim_bitmap[0] = 0;	/* Partial Virtual Bitmap */
   2317       1.29    dyoung 		frm += sizeof(struct ieee80211_tim_ie);
   2318       1.29    dyoung 		bo->bo_tim_len = 1;
   2319       1.29    dyoung 	}
   2320  1.47.34.1     skrll 	bo->bo_tim_trailer = frm;
   2321  1.47.34.1     skrll 	if (ic->ic_flags & IEEE80211_F_DOTH)
   2322  1.47.34.1     skrll 		frm = ieee80211_add_countryie(frm, ic,
   2323  1.47.34.1     skrll 			ic->ic_countrycode, ic->ic_location);
   2324  1.47.34.1     skrll 	if (ic->ic_flags & IEEE80211_F_WPA)
   2325  1.47.34.1     skrll 		frm = ieee80211_add_wpa(frm, ic);
   2326  1.47.34.1     skrll 	if (IEEE80211_IS_CHAN_ANYG(ic->ic_bsschan)) {
   2327  1.47.34.1     skrll 		bo->bo_erp = frm;
   2328  1.47.34.1     skrll 		frm = ieee80211_add_erp(frm, ic);
   2329  1.47.34.1     skrll 	}
   2330  1.47.34.1     skrll 	frm = ieee80211_add_xrates(frm, rs);
   2331  1.47.34.1     skrll 	if (IEEE80211_IS_CHAN_HT(ic->ic_bsschan)) {
   2332  1.47.34.1     skrll 		frm = ieee80211_add_htcap(frm, ni);
   2333  1.47.34.1     skrll 		bo->bo_htinfo = frm;
   2334  1.47.34.1     skrll 		frm = ieee80211_add_htinfo(frm, ni);
   2335  1.47.34.1     skrll 	}
   2336       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_WME) {
   2337       1.29    dyoung 		bo->bo_wme = frm;
   2338       1.29    dyoung 		frm = ieee80211_add_wme_param(frm, &ic->ic_wme);
   2339       1.29    dyoung 	}
   2340  1.47.34.1     skrll 	if (IEEE80211_IS_CHAN_HT(ic->ic_bsschan) &&
   2341  1.47.34.1     skrll 	    (ic->ic_flags_ext & IEEE80211_FEXT_HTCOMPAT)) {
   2342  1.47.34.1     skrll 		frm = ieee80211_add_htcap_vendor(frm, ni);
   2343  1.47.34.1     skrll 		frm = ieee80211_add_htinfo_vendor(frm, ni);
   2344  1.47.34.1     skrll 	}
   2345  1.47.34.1     skrll 	bo->bo_tim_trailer_len = frm - bo->bo_tim_trailer;
   2346  1.47.34.1     skrll 	m->m_pkthdr.len = m->m_len = frm - mtod(m, uint8_t *);
   2347       1.29    dyoung 
   2348       1.29    dyoung 	M_PREPEND(m, sizeof(struct ieee80211_frame), M_DONTWAIT);
   2349       1.29    dyoung 	IASSERT(m != NULL, ("no space for 802.11 header?"));
   2350       1.29    dyoung 	wh = mtod(m, struct ieee80211_frame *);
   2351       1.29    dyoung 	wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_MGT |
   2352       1.29    dyoung 	    IEEE80211_FC0_SUBTYPE_BEACON;
   2353       1.29    dyoung 	wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
   2354  1.47.34.1     skrll 	*(uint16_t *)wh->i_dur = 0;
   2355       1.29    dyoung 	IEEE80211_ADDR_COPY(wh->i_addr1, ifp->if_broadcastaddr);
   2356       1.29    dyoung 	IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
   2357       1.29    dyoung 	IEEE80211_ADDR_COPY(wh->i_addr3, ni->ni_bssid);
   2358  1.47.34.1     skrll 	*(uint16_t *)wh->i_seq = 0;
   2359       1.29    dyoung 
   2360       1.29    dyoung 	return m;
   2361       1.29    dyoung }
   2362       1.29    dyoung 
   2363       1.29    dyoung /*
   2364       1.29    dyoung  * Update the dynamic parts of a beacon frame based on the current state.
   2365       1.29    dyoung  */
   2366       1.29    dyoung int
   2367  1.47.34.1     skrll ieee80211_beacon_update(struct ieee80211_node *ni,
   2368       1.45  christos     struct ieee80211_beacon_offsets *bo, struct mbuf *m, int mcast)
   2369       1.29    dyoung {
   2370  1.47.34.1     skrll 	struct ieee80211com *ic = ni->ni_ic;
   2371       1.29    dyoung 	int len_changed = 0;
   2372  1.47.34.1     skrll 	uint16_t capinfo;
   2373       1.29    dyoung 
   2374       1.29    dyoung 	IEEE80211_BEACON_LOCK(ic);
   2375       1.29    dyoung 	/* XXX faster to recalculate entirely or just changes? */
   2376  1.47.34.1     skrll 	capinfo = getcapinfo(ic, ni->ni_chan);
   2377       1.29    dyoung 	*bo->bo_caps = htole16(capinfo);
   2378       1.29    dyoung 
   2379       1.29    dyoung 	if (ic->ic_flags & IEEE80211_F_WME) {
   2380       1.29    dyoung 		struct ieee80211_wme_state *wme = &ic->ic_wme;
   2381       1.29    dyoung 
   2382       1.29    dyoung 		/*
   2383       1.29    dyoung 		 * Check for agressive mode change.  When there is
   2384       1.29    dyoung 		 * significant high priority traffic in the BSS
   2385       1.29    dyoung 		 * throttle back BE traffic by using conservative
   2386       1.29    dyoung 		 * parameters.  Otherwise BE uses agressive params
   2387       1.29    dyoung 		 * to optimize performance of legacy/non-QoS traffic.
   2388       1.29    dyoung 		 */
   2389       1.29    dyoung 		if (wme->wme_flags & WME_F_AGGRMODE) {
   2390       1.29    dyoung 			if (wme->wme_hipri_traffic >
   2391       1.29    dyoung 			    wme->wme_hipri_switch_thresh) {
   2392       1.29    dyoung 				IEEE80211_DPRINTF(ic, IEEE80211_MSG_WME,
   2393       1.29    dyoung 				    "%s: traffic %u, disable aggressive mode\n",
   2394       1.29    dyoung 				    __func__, wme->wme_hipri_traffic);
   2395       1.29    dyoung 				wme->wme_flags &= ~WME_F_AGGRMODE;
   2396       1.29    dyoung 				ieee80211_wme_updateparams_locked(ic);
   2397       1.29    dyoung 				wme->wme_hipri_traffic =
   2398       1.29    dyoung 					wme->wme_hipri_switch_hysteresis;
   2399       1.29    dyoung 			} else
   2400       1.29    dyoung 				wme->wme_hipri_traffic = 0;
   2401       1.29    dyoung 		} else {
   2402       1.29    dyoung 			if (wme->wme_hipri_traffic <=
   2403       1.29    dyoung 			    wme->wme_hipri_switch_thresh) {
   2404       1.29    dyoung 				IEEE80211_DPRINTF(ic, IEEE80211_MSG_WME,
   2405       1.29    dyoung 				    "%s: traffic %u, enable aggressive mode\n",
   2406       1.29    dyoung 				    __func__, wme->wme_hipri_traffic);
   2407       1.29    dyoung 				wme->wme_flags |= WME_F_AGGRMODE;
   2408       1.29    dyoung 				ieee80211_wme_updateparams_locked(ic);
   2409       1.29    dyoung 				wme->wme_hipri_traffic = 0;
   2410       1.29    dyoung 			} else
   2411       1.29    dyoung 				wme->wme_hipri_traffic =
   2412       1.29    dyoung 					wme->wme_hipri_switch_hysteresis;
   2413       1.29    dyoung 		}
   2414  1.47.34.1     skrll 		if (isset(bo->bo_flags, IEEE80211_BEACON_WME)) {
   2415       1.29    dyoung 			(void) ieee80211_add_wme_param(bo->bo_wme, wme);
   2416  1.47.34.1     skrll 			clrbit(bo->bo_flags, IEEE80211_BEACON_WME);
   2417       1.29    dyoung 		}
   2418       1.29    dyoung 	}
   2419       1.29    dyoung 
   2420  1.47.34.1     skrll 	if (isset(bo->bo_flags, IEEE80211_BEACON_HTINFO)) {
   2421  1.47.34.1     skrll 		ieee80211_ht_update_beacon(ic, bo);
   2422  1.47.34.1     skrll 		clrbit(bo->bo_flags, IEEE80211_BEACON_HTINFO);
   2423  1.47.34.1     skrll 	}
   2424  1.47.34.1     skrll 
   2425       1.30    dyoung #ifndef IEEE80211_NO_HOSTAP
   2426       1.29    dyoung 	if (ic->ic_opmode == IEEE80211_M_HOSTAP) {	/* NB: no IBSS support*/
   2427       1.29    dyoung 		struct ieee80211_tim_ie *tie =
   2428       1.29    dyoung 			(struct ieee80211_tim_ie *) bo->bo_tim;
   2429  1.47.34.1     skrll 		if (isset(bo->bo_flags, IEEE80211_BEACON_TIM)) {
   2430       1.29    dyoung 			u_int timlen, timoff, i;
   2431       1.29    dyoung 			/*
   2432       1.29    dyoung 			 * ATIM/DTIM needs updating.  If it fits in the
   2433       1.29    dyoung 			 * current space allocated then just copy in the
   2434       1.29    dyoung 			 * new bits.  Otherwise we need to move any trailing
   2435       1.29    dyoung 			 * data to make room.  Note that we know there is
   2436       1.29    dyoung 			 * contiguous space because ieee80211_beacon_allocate
   2437       1.29    dyoung 			 * insures there is space in the mbuf to write a
   2438       1.29    dyoung 			 * maximal-size virtual bitmap (based on ic_max_aid).
   2439       1.29    dyoung 			 */
   2440       1.29    dyoung 			/*
   2441       1.29    dyoung 			 * Calculate the bitmap size and offset, copy any
   2442       1.29    dyoung 			 * trailer out of the way, and then copy in the
   2443       1.29    dyoung 			 * new bitmap and update the information element.
   2444       1.29    dyoung 			 * Note that the tim bitmap must contain at least
   2445       1.29    dyoung 			 * one byte and any offset must be even.
   2446       1.29    dyoung 			 */
   2447       1.29    dyoung 			if (ic->ic_ps_pending != 0) {
   2448       1.29    dyoung 				timoff = 128;		/* impossibly large */
   2449       1.29    dyoung 				for (i = 0; i < ic->ic_tim_len; i++)
   2450       1.29    dyoung 					if (ic->ic_tim_bitmap[i]) {
   2451       1.29    dyoung 						timoff = i &~ 1;
   2452       1.29    dyoung 						break;
   2453       1.29    dyoung 					}
   2454       1.29    dyoung 				IASSERT(timoff != 128, ("tim bitmap empty!"));
   2455       1.29    dyoung 				for (i = ic->ic_tim_len-1; i >= timoff; i--)
   2456       1.29    dyoung 					if (ic->ic_tim_bitmap[i])
   2457       1.29    dyoung 						break;
   2458       1.29    dyoung 				timlen = 1 + (i - timoff);
   2459       1.29    dyoung 			} else {
   2460       1.29    dyoung 				timoff = 0;
   2461       1.29    dyoung 				timlen = 1;
   2462       1.29    dyoung 			}
   2463       1.29    dyoung 			if (timlen != bo->bo_tim_len) {
   2464       1.29    dyoung 				/* copy up/down trailer */
   2465  1.47.34.1     skrll 				int adjust = tie->tim_bitmap+timlen
   2466  1.47.34.1     skrll 					   - bo->bo_tim_trailer;
   2467  1.47.34.1     skrll 				ovbcopy(bo->bo_tim_trailer,
   2468  1.47.34.1     skrll 				    bo->bo_tim_trailer+adjust,
   2469  1.47.34.1     skrll 				    bo->bo_tim_trailer_len);
   2470  1.47.34.1     skrll 				bo->bo_tim_trailer += adjust;
   2471  1.47.34.1     skrll 				bo->bo_wme += adjust;
   2472  1.47.34.1     skrll 				bo->bo_erp += adjust;
   2473  1.47.34.1     skrll 				bo->bo_htinfo += adjust;
   2474       1.29    dyoung 				bo->bo_tim_len = timlen;
   2475       1.29    dyoung 
   2476       1.29    dyoung 				/* update information element */
   2477       1.29    dyoung 				tie->tim_len = 3 + timlen;
   2478       1.29    dyoung 				tie->tim_bitctl = timoff;
   2479       1.29    dyoung 				len_changed = 1;
   2480       1.29    dyoung 			}
   2481       1.29    dyoung 			memcpy(tie->tim_bitmap, ic->ic_tim_bitmap + timoff,
   2482       1.29    dyoung 				bo->bo_tim_len);
   2483       1.29    dyoung 
   2484  1.47.34.1     skrll 			clrbit(bo->bo_flags, IEEE80211_BEACON_TIM);
   2485       1.29    dyoung 
   2486       1.29    dyoung 			IEEE80211_DPRINTF(ic, IEEE80211_MSG_POWER,
   2487       1.29    dyoung 				"%s: TIM updated, pending %u, off %u, len %u\n",
   2488       1.29    dyoung 				__func__, ic->ic_ps_pending, timoff, timlen);
   2489       1.29    dyoung 		}
   2490       1.29    dyoung 		/* count down DTIM period */
   2491       1.29    dyoung 		if (tie->tim_count == 0)
   2492       1.29    dyoung 			tie->tim_count = tie->tim_period - 1;
   2493       1.29    dyoung 		else
   2494       1.29    dyoung 			tie->tim_count--;
   2495       1.29    dyoung 		/* update state for buffered multicast frames on DTIM */
   2496  1.47.34.1     skrll 		if (mcast && tie->tim_count == 0)
   2497       1.29    dyoung 			tie->tim_bitctl |= 1;
   2498       1.29    dyoung 		else
   2499       1.29    dyoung 			tie->tim_bitctl &= ~1;
   2500  1.47.34.1     skrll 		if (isset(bo->bo_flags, IEEE80211_BEACON_ERP)) {
   2501  1.47.34.1     skrll 			/*
   2502  1.47.34.1     skrll 			 * ERP element needs updating.
   2503  1.47.34.1     skrll 			 */
   2504  1.47.34.1     skrll 			(void) ieee80211_add_erp(bo->bo_erp, ic);
   2505  1.47.34.1     skrll 			clrbit(bo->bo_flags, IEEE80211_BEACON_ERP);
   2506  1.47.34.1     skrll 		}
   2507       1.29    dyoung 	}
   2508       1.30    dyoung #endif /* !IEEE80211_NO_HOSTAP */
   2509       1.29    dyoung 	IEEE80211_BEACON_UNLOCK(ic);
   2510       1.29    dyoung 
   2511       1.29    dyoung 	return len_changed;
   2512       1.29    dyoung }
   2513