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ieee80211_netbsd.c revision 1.31.2.3
      1  1.31.2.3      phil /*	$NetBSD: ieee80211_netbsd.c,v 1.31.2.3 2018/07/16 20:11:11 phil Exp $ */
      2  1.31.2.2      phil 
      3  1.31.2.1      phil /*-
      4  1.31.2.1      phil  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
      5  1.31.2.1      phil  *
      6  1.31.2.1      phil  * Copyright (c) 2003-2009 Sam Leffler, Errno Consulting
      7       1.1    dyoung  * All rights reserved.
      8       1.1    dyoung  *
      9       1.1    dyoung  * Redistribution and use in source and binary forms, with or without
     10       1.1    dyoung  * modification, are permitted provided that the following conditions
     11       1.1    dyoung  * are met:
     12       1.1    dyoung  * 1. Redistributions of source code must retain the above copyright
     13       1.1    dyoung  *    notice, this list of conditions and the following disclaimer.
     14       1.1    dyoung  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1    dyoung  *    notice, this list of conditions and the following disclaimer in the
     16       1.1    dyoung  *    documentation and/or other materials provided with the distribution.
     17       1.1    dyoung  *
     18       1.1    dyoung  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19       1.1    dyoung  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20       1.1    dyoung  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21       1.1    dyoung  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22       1.1    dyoung  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     23       1.1    dyoung  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     24       1.1    dyoung  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     25       1.1    dyoung  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     26       1.1    dyoung  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     27       1.1    dyoung  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     28       1.1    dyoung  */
     29       1.1    dyoung 
     30       1.1    dyoung #include <sys/cdefs.h>
     31  1.31.2.2      phil /*  __FBSDID("$FreeBSD$");  */
     32  1.31.2.3      phil __KERNEL_RCSID(0, "$NetBSD: ieee80211_netbsd.c,v 1.31.2.3 2018/07/16 20:11:11 phil Exp $");
     33       1.1    dyoung 
     34       1.1    dyoung /*
     35  1.31.2.2      phil  * IEEE 802.11 support (NetBSD-specific code)
     36       1.1    dyoung  */
     37  1.31.2.2      phil 
     38  1.31.2.1      phil #include "opt_wlan.h"
     39  1.31.2.1      phil 
     40  1.31.2.2      phil #include <sys/atomic.h>
     41       1.1    dyoung #include <sys/param.h>
     42  1.31.2.1      phil #include <sys/systm.h>
     43       1.1    dyoung #include <sys/kernel.h>
     44  1.31.2.1      phil #include <sys/malloc.h>
     45  1.31.2.1      phil #include <sys/mbuf.h>
     46  1.31.2.1      phil #include <sys/module.h>
     47       1.1    dyoung #include <sys/proc.h>
     48       1.1    dyoung #include <sys/sysctl.h>
     49  1.31.2.2      phil #include <sys/syslog.h>
     50       1.1    dyoung 
     51       1.1    dyoung #include <sys/socket.h>
     52       1.1    dyoung 
     53  1.31.2.1      phil #include <net/bpf.h>
     54       1.1    dyoung #include <net/if.h>
     55  1.31.2.1      phil #include <net/if_dl.h>
     56  1.31.2.2      phil #include <net/if_ether.h>
     57       1.1    dyoung #include <net/if_media.h>
     58  1.31.2.1      phil #include <net/if_types.h>
     59       1.1    dyoung #include <net/route.h>
     60       1.1    dyoung 
     61       1.1    dyoung #include <net80211/ieee80211_var.h>
     62  1.31.2.1      phil #include <net80211/ieee80211_input.h>
     63       1.1    dyoung 
     64  1.31.2.2      phil #ifdef notyet
     65  1.31.2.1      phil SYSCTL_NODE(_net, OID_AUTO, wlan, CTLFLAG_RD, 0, "IEEE 80211 parameters");
     66      1.26     pooka 
     67       1.1    dyoung #ifdef IEEE80211_DEBUG
     68  1.31.2.1      phil static int	ieee80211_debug = 0;
     69  1.31.2.1      phil SYSCTL_INT(_net_wlan, OID_AUTO, debug, CTLFLAG_RW, &ieee80211_debug,
     70  1.31.2.1      phil 	    0, "debugging printfs");
     71       1.1    dyoung #endif
     72       1.1    dyoung 
     73  1.31.2.3      phil static struct if_clone *wlan_cloner;
     74  1.31.2.3      phil #endif
     75  1.31.2.3      phil /* notyet */
     76       1.8     skrll 
     77  1.31.2.1      phil static const char wlanname[] = "wlan";
     78       1.8     skrll 
     79  1.31.2.3      phil static __unused int
     80  1.31.2.3      phil wlan_clone_create(struct if_clone *ifc, int unit, void * params)
     81       1.8     skrll {
     82  1.31.2.1      phil 	struct ieee80211_clone_params cp;
     83  1.31.2.1      phil 	struct ieee80211vap *vap;
     84  1.31.2.1      phil 	struct ieee80211com *ic;
     85  1.31.2.1      phil 	int error;
     86       1.8     skrll 
     87  1.31.2.1      phil 	error = copyin(params, &cp, sizeof(cp));
     88  1.31.2.1      phil 	if (error)
     89  1.31.2.1      phil 		return error;
     90  1.31.2.1      phil 	ic = ieee80211_find_com(cp.icp_parent);
     91  1.31.2.1      phil 	if (ic == NULL)
     92  1.31.2.1      phil 		return ENXIO;
     93  1.31.2.1      phil 	if (cp.icp_opmode >= IEEE80211_OPMODE_MAX) {
     94  1.31.2.1      phil 		ic_printf(ic, "%s: invalid opmode %d\n", __func__,
     95  1.31.2.1      phil 		    cp.icp_opmode);
     96  1.31.2.1      phil 		return EINVAL;
     97  1.31.2.1      phil 	}
     98  1.31.2.1      phil 	if ((ic->ic_caps & ieee80211_opcap[cp.icp_opmode]) == 0) {
     99  1.31.2.1      phil 		ic_printf(ic, "%s mode not supported\n",
    100  1.31.2.1      phil 		    ieee80211_opmode_name[cp.icp_opmode]);
    101  1.31.2.1      phil 		return EOPNOTSUPP;
    102  1.31.2.1      phil 	}
    103  1.31.2.1      phil 	if ((cp.icp_flags & IEEE80211_CLONE_TDMA) &&
    104  1.31.2.1      phil #ifdef IEEE80211_SUPPORT_TDMA
    105  1.31.2.1      phil 	    (ic->ic_caps & IEEE80211_C_TDMA) == 0
    106  1.31.2.1      phil #else
    107  1.31.2.1      phil 	    (1)
    108  1.31.2.1      phil #endif
    109  1.31.2.1      phil 	) {
    110  1.31.2.1      phil 		ic_printf(ic, "TDMA not supported\n");
    111  1.31.2.1      phil 		return EOPNOTSUPP;
    112  1.31.2.1      phil 	}
    113  1.31.2.1      phil 	vap = ic->ic_vap_create(ic, wlanname, unit,
    114  1.31.2.1      phil 			cp.icp_opmode, cp.icp_flags, cp.icp_bssid,
    115  1.31.2.1      phil 			cp.icp_flags & IEEE80211_CLONE_MACADDR ?
    116  1.31.2.1      phil 			    cp.icp_macaddr : ic->ic_macaddr);
    117      1.26     pooka 
    118  1.31.2.1      phil 	return (vap == NULL ? EIO : 0);
    119  1.31.2.1      phil }
    120      1.22      matt 
    121  1.31.2.3      phil static __unused void
    122  1.31.2.1      phil wlan_clone_destroy(struct ifnet *ifp)
    123  1.31.2.1      phil {
    124  1.31.2.1      phil 	struct ieee80211vap *vap = ifp->if_softc;
    125  1.31.2.1      phil 	struct ieee80211com *ic = vap->iv_ic;
    126      1.12      yamt 
    127  1.31.2.1      phil 	ic->ic_vap_delete(vap);
    128       1.8     skrll }
    129       1.8     skrll 
    130      1.10   thorpej void
    131  1.31.2.1      phil ieee80211_vap_destroy(struct ieee80211vap *vap)
    132      1.10   thorpej {
    133  1.31.2.2      phil #ifdef notyet
    134  1.31.2.1      phil 	CURVNET_SET(vap->iv_ifp->if_vnet);
    135  1.31.2.1      phil 	if_clone_destroyif(wlan_cloner, vap->iv_ifp);
    136  1.31.2.1      phil 	CURVNET_RESTORE();
    137  1.31.2.2      phil #else
    138  1.31.2.3      phil 	printf ("vap_destroy called ... what next?\n");
    139  1.31.2.2      phil #endif
    140      1.10   thorpej }
    141      1.10   thorpej 
    142  1.31.2.2      phil #ifdef notyet
    143  1.31.2.1      phil int
    144  1.31.2.1      phil ieee80211_sysctl_msecs_ticks(SYSCTL_HANDLER_ARGS)
    145       1.1    dyoung {
    146  1.31.2.1      phil 	int msecs = ticks_to_msecs(*(int *)arg1);
    147       1.2    dyoung 	int error, t;
    148      1.30      maxv 
    149  1.31.2.1      phil 	error = sysctl_handle_int(oidp, &msecs, 0, req);
    150  1.31.2.1      phil 	if (error || !req->newptr)
    151      1.30      maxv 		return error;
    152  1.31.2.1      phil 	t = msecs_to_ticks(msecs);
    153  1.31.2.1      phil 	*(int *)arg1 = (t < 1) ? 1 : t;
    154      1.30      maxv 	return 0;
    155       1.1    dyoung }
    156       1.1    dyoung 
    157       1.1    dyoung static int
    158  1.31.2.1      phil ieee80211_sysctl_inact(SYSCTL_HANDLER_ARGS)
    159       1.1    dyoung {
    160  1.31.2.1      phil 	int inact = (*(int *)arg1) * IEEE80211_INACT_WAIT;
    161  1.31.2.1      phil 	int error;
    162       1.2    dyoung 
    163  1.31.2.1      phil 	error = sysctl_handle_int(oidp, &inact, 0, req);
    164  1.31.2.1      phil 	if (error || !req->newptr)
    165  1.31.2.1      phil 		return error;
    166  1.31.2.1      phil 	*(int *)arg1 = inact / IEEE80211_INACT_WAIT;
    167  1.31.2.1      phil 	return 0;
    168       1.2    dyoung }
    169       1.2    dyoung 
    170  1.31.2.1      phil static int
    171  1.31.2.1      phil ieee80211_sysctl_parent(SYSCTL_HANDLER_ARGS)
    172       1.2    dyoung {
    173  1.31.2.1      phil 	struct ieee80211com *ic = arg1;
    174       1.2    dyoung 
    175  1.31.2.1      phil 	return SYSCTL_OUT_STR(req, ic->ic_name);
    176       1.1    dyoung }
    177       1.1    dyoung 
    178  1.31.2.1      phil static int
    179  1.31.2.1      phil ieee80211_sysctl_radar(SYSCTL_HANDLER_ARGS)
    180       1.1    dyoung {
    181  1.31.2.1      phil 	struct ieee80211com *ic = arg1;
    182  1.31.2.1      phil 	int t = 0, error;
    183       1.1    dyoung 
    184  1.31.2.1      phil 	error = sysctl_handle_int(oidp, &t, 0, req);
    185  1.31.2.1      phil 	if (error || !req->newptr)
    186  1.31.2.1      phil 		return error;
    187  1.31.2.1      phil 	IEEE80211_LOCK(ic);
    188  1.31.2.1      phil 	ieee80211_dfs_notify_radar(ic, ic->ic_curchan);
    189  1.31.2.1      phil 	IEEE80211_UNLOCK(ic);
    190  1.31.2.1      phil 	return 0;
    191       1.2    dyoung }
    192       1.2    dyoung 
    193       1.2    dyoung /*
    194  1.31.2.1      phil  * For now, just restart everything.
    195       1.2    dyoung  *
    196  1.31.2.1      phil  * Later on, it'd be nice to have a separate VAP restart to
    197  1.31.2.1      phil  * full-device restart.
    198      1.30      maxv  */
    199  1.31.2.1      phil static int
    200  1.31.2.1      phil ieee80211_sysctl_vap_restart(SYSCTL_HANDLER_ARGS)
    201       1.2    dyoung {
    202  1.31.2.1      phil 	struct ieee80211vap *vap = arg1;
    203  1.31.2.1      phil 	int t = 0, error;
    204       1.1    dyoung 
    205  1.31.2.1      phil 	error = sysctl_handle_int(oidp, &t, 0, req);
    206  1.31.2.1      phil 	if (error || !req->newptr)
    207  1.31.2.1      phil 		return error;
    208       1.2    dyoung 
    209  1.31.2.1      phil 	ieee80211_restart_all(vap->iv_ic);
    210  1.31.2.1      phil 	return 0;
    211       1.2    dyoung }
    212  1.31.2.2      phil #endif /* notyet */
    213       1.2    dyoung 
    214  1.31.2.1      phil void
    215  1.31.2.1      phil ieee80211_sysctl_attach(struct ieee80211com *ic)
    216  1.31.2.1      phil {
    217       1.2    dyoung }
    218       1.2    dyoung 
    219  1.31.2.1      phil void
    220  1.31.2.1      phil ieee80211_sysctl_detach(struct ieee80211com *ic)
    221       1.2    dyoung {
    222       1.2    dyoung }
    223       1.2    dyoung 
    224  1.31.2.1      phil void
    225  1.31.2.1      phil ieee80211_sysctl_vattach(struct ieee80211vap *vap)
    226       1.2    dyoung {
    227  1.31.2.2      phil #ifdef notyet
    228  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    229  1.31.2.1      phil 	struct sysctl_ctx_list *ctx;
    230  1.31.2.1      phil 	struct sysctl_oid *oid;
    231  1.31.2.1      phil 	char num[14];			/* sufficient for 32 bits */
    232  1.31.2.1      phil 
    233  1.31.2.1      phil 	ctx = (struct sysctl_ctx_list *) IEEE80211_MALLOC(sizeof(struct sysctl_ctx_list),
    234  1.31.2.1      phil 		M_DEVBUF, IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
    235  1.31.2.1      phil 	if (ctx == NULL) {
    236  1.31.2.1      phil 		if_printf(ifp, "%s: cannot allocate sysctl context!\n",
    237  1.31.2.1      phil 			__func__);
    238       1.2    dyoung 		return;
    239  1.31.2.1      phil 	}
    240  1.31.2.1      phil 	sysctl_ctx_init(ctx);
    241  1.31.2.1      phil 	snprintf(num, sizeof(num), "%u", ifp->if_dunit);
    242  1.31.2.1      phil 	oid = SYSCTL_ADD_NODE(ctx, &SYSCTL_NODE_CHILDREN(_net, wlan),
    243  1.31.2.1      phil 		OID_AUTO, num, CTLFLAG_RD, NULL, "");
    244  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    245  1.31.2.1      phil 		"%parent", CTLTYPE_STRING | CTLFLAG_RD, vap->iv_ic, 0,
    246  1.31.2.1      phil 		ieee80211_sysctl_parent, "A", "parent device");
    247  1.31.2.1      phil 	SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    248  1.31.2.1      phil 		"driver_caps", CTLFLAG_RW, &vap->iv_caps, 0,
    249  1.31.2.1      phil 		"driver capabilities");
    250       1.2    dyoung #ifdef IEEE80211_DEBUG
    251  1.31.2.1      phil 	vap->iv_debug = ieee80211_debug;
    252  1.31.2.1      phil 	SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    253  1.31.2.1      phil 		"debug", CTLFLAG_RW, &vap->iv_debug, 0,
    254  1.31.2.1      phil 		"control debugging printfs");
    255      1.30      maxv #endif
    256  1.31.2.1      phil 	SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    257  1.31.2.1      phil 		"bmiss_max", CTLFLAG_RW, &vap->iv_bmiss_max, 0,
    258  1.31.2.1      phil 		"consecutive beacon misses before scanning");
    259  1.31.2.1      phil 	/* XXX inherit from tunables */
    260  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    261  1.31.2.1      phil 		"inact_run", CTLTYPE_INT | CTLFLAG_RW, &vap->iv_inact_run, 0,
    262  1.31.2.1      phil 		ieee80211_sysctl_inact, "I",
    263  1.31.2.1      phil 		"station inactivity timeout (sec)");
    264  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    265  1.31.2.1      phil 		"inact_probe", CTLTYPE_INT | CTLFLAG_RW, &vap->iv_inact_probe, 0,
    266  1.31.2.1      phil 		ieee80211_sysctl_inact, "I",
    267  1.31.2.1      phil 		"station inactivity probe timeout (sec)");
    268  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    269  1.31.2.1      phil 		"inact_auth", CTLTYPE_INT | CTLFLAG_RW, &vap->iv_inact_auth, 0,
    270  1.31.2.1      phil 		ieee80211_sysctl_inact, "I",
    271  1.31.2.1      phil 		"station authentication timeout (sec)");
    272  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    273  1.31.2.1      phil 		"inact_init", CTLTYPE_INT | CTLFLAG_RW, &vap->iv_inact_init, 0,
    274  1.31.2.1      phil 		ieee80211_sysctl_inact, "I",
    275  1.31.2.1      phil 		"station initial state timeout (sec)");
    276  1.31.2.1      phil 	if (vap->iv_htcaps & IEEE80211_HTC_HT) {
    277  1.31.2.1      phil 		SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    278  1.31.2.1      phil 			"ampdu_mintraffic_bk", CTLFLAG_RW,
    279  1.31.2.1      phil 			&vap->iv_ampdu_mintraffic[WME_AC_BK], 0,
    280  1.31.2.1      phil 			"BK traffic tx aggr threshold (pps)");
    281  1.31.2.1      phil 		SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    282  1.31.2.1      phil 			"ampdu_mintraffic_be", CTLFLAG_RW,
    283  1.31.2.1      phil 			&vap->iv_ampdu_mintraffic[WME_AC_BE], 0,
    284  1.31.2.1      phil 			"BE traffic tx aggr threshold (pps)");
    285  1.31.2.1      phil 		SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    286  1.31.2.1      phil 			"ampdu_mintraffic_vo", CTLFLAG_RW,
    287  1.31.2.1      phil 			&vap->iv_ampdu_mintraffic[WME_AC_VO], 0,
    288  1.31.2.1      phil 			"VO traffic tx aggr threshold (pps)");
    289  1.31.2.1      phil 		SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    290  1.31.2.1      phil 			"ampdu_mintraffic_vi", CTLFLAG_RW,
    291  1.31.2.1      phil 			&vap->iv_ampdu_mintraffic[WME_AC_VI], 0,
    292  1.31.2.1      phil 			"VI traffic tx aggr threshold (pps)");
    293  1.31.2.1      phil 	}
    294  1.31.2.1      phil 
    295  1.31.2.1      phil 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    296  1.31.2.1      phil 		"force_restart", CTLTYPE_INT | CTLFLAG_RW, vap, 0,
    297  1.31.2.1      phil 		ieee80211_sysctl_vap_restart, "I",
    298  1.31.2.1      phil 		"force a VAP restart");
    299  1.31.2.1      phil 
    300  1.31.2.1      phil 	if (vap->iv_caps & IEEE80211_C_DFS) {
    301  1.31.2.1      phil 		SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
    302  1.31.2.1      phil 			"radar", CTLTYPE_INT | CTLFLAG_RW, vap->iv_ic, 0,
    303  1.31.2.1      phil 			ieee80211_sysctl_radar, "I", "simulate radar event");
    304  1.31.2.1      phil 	}
    305  1.31.2.1      phil 	vap->iv_sysctl = ctx;
    306  1.31.2.1      phil 	vap->iv_oid = oid;
    307  1.31.2.2      phil #endif
    308  1.31.2.1      phil }
    309       1.2    dyoung 
    310  1.31.2.1      phil void
    311  1.31.2.1      phil ieee80211_sysctl_vdetach(struct ieee80211vap *vap)
    312  1.31.2.1      phil {
    313  1.31.2.2      phil #ifdef notyet
    314  1.31.2.1      phil 	if (vap->iv_sysctl != NULL) {
    315  1.31.2.1      phil 		sysctl_ctx_free(vap->iv_sysctl);
    316  1.31.2.1      phil 		IEEE80211_FREE(vap->iv_sysctl, M_DEVBUF);
    317  1.31.2.1      phil 		vap->iv_sysctl = NULL;
    318  1.31.2.1      phil 	}
    319  1.31.2.2      phil #endif
    320       1.1    dyoung }
    321       1.1    dyoung 
    322  1.31.2.2      phil 
    323       1.1    dyoung int
    324       1.1    dyoung ieee80211_node_dectestref(struct ieee80211_node *ni)
    325       1.1    dyoung {
    326  1.31.2.1      phil 	/* XXX need equivalent of atomic_dec_and_test */
    327  1.31.2.1      phil 	atomic_subtract_int(&ni->ni_refcnt, 1);
    328  1.31.2.2      phil 	return atomic_cas_uint(&ni->ni_refcnt, 0, 1) == 0;
    329       1.2    dyoung }
    330       1.2    dyoung 
    331       1.2    dyoung void
    332      1.15  degroote ieee80211_drain_ifq(struct ifqueue *ifq)
    333      1.15  degroote {
    334      1.15  degroote 	struct ieee80211_node *ni;
    335      1.15  degroote 	struct mbuf *m;
    336      1.15  degroote 
    337      1.15  degroote 	for (;;) {
    338      1.15  degroote 		IF_DEQUEUE(ifq, m);
    339      1.15  degroote 		if (m == NULL)
    340      1.15  degroote 			break;
    341      1.15  degroote 
    342  1.31.2.2      phil 		ni = (struct ieee80211_node *)m_get_rcvif_NOMPSAFE(m);
    343  1.31.2.2      phil 		FBSDKASSERT(ni != NULL, ("frame w/o node"));
    344      1.15  degroote 		ieee80211_free_node(ni);
    345  1.31.2.2      phil 		ieee80211_free_mbuf(m);
    346      1.15  degroote 	}
    347      1.15  degroote }
    348      1.15  degroote 
    349      1.15  degroote void
    350  1.31.2.1      phil ieee80211_flush_ifq(struct ifqueue *ifq, struct ieee80211vap *vap)
    351       1.2    dyoung {
    352  1.31.2.1      phil 	struct ieee80211_node *ni;
    353  1.31.2.1      phil 	struct mbuf *m, **mprev;
    354       1.2    dyoung 
    355  1.31.2.2      phil 	IFQ_LOCK(ifq);
    356  1.31.2.1      phil 	mprev = &ifq->ifq_head;
    357  1.31.2.1      phil 	while ((m = *mprev) != NULL) {
    358  1.31.2.2      phil 		ni = (struct ieee80211_node *)m_get_rcvif_NOMPSAFE(m);
    359  1.31.2.1      phil 		if (ni != NULL && ni->ni_vap == vap) {
    360  1.31.2.1      phil 			*mprev = m->m_nextpkt;		/* remove from list */
    361  1.31.2.1      phil 			ifq->ifq_len--;
    362       1.2    dyoung 
    363  1.31.2.1      phil 			ieee80211_free_node(ni);	/* reclaim ref */
    364  1.31.2.2      phil 			ieee80211_free_mbuf(m);
    365  1.31.2.1      phil 		} else
    366  1.31.2.1      phil 			mprev = &m->m_nextpkt;
    367  1.31.2.1      phil 	}
    368  1.31.2.1      phil 	/* recalculate tail ptr */
    369  1.31.2.1      phil 	m = ifq->ifq_head;
    370  1.31.2.1      phil 	for (; m != NULL && m->m_nextpkt != NULL; m = m->m_nextpkt)
    371  1.31.2.1      phil 		;
    372  1.31.2.1      phil 	ifq->ifq_tail = m;
    373  1.31.2.2      phil 	IFQ_UNLOCK(ifq);
    374       1.2    dyoung }
    375       1.2    dyoung 
    376       1.1    dyoung /*
    377  1.31.2.1      phil  * As above, for mbufs allocated with m_gethdr/MGETHDR
    378  1.31.2.1      phil  * or initialized by M_COPY_PKTHDR.
    379  1.31.2.1      phil  */
    380  1.31.2.1      phil #define	MC_ALIGN(m, len)						\
    381  1.31.2.1      phil do {									\
    382  1.31.2.1      phil 	(m)->m_data += rounddown2(MCLBYTES - (len), sizeof(long));	\
    383  1.31.2.1      phil } while (/* CONSTCOND */ 0)
    384  1.31.2.1      phil 
    385  1.31.2.1      phil /*
    386       1.1    dyoung  * Allocate and setup a management frame of the specified
    387       1.1    dyoung  * size.  We return the mbuf and a pointer to the start
    388       1.1    dyoung  * of the contiguous data area that's been reserved based
    389       1.1    dyoung  * on the packet length.  The data area is forced to 32-bit
    390       1.1    dyoung  * alignment and the buffer length to a multiple of 4 bytes.
    391       1.1    dyoung  * This is done mainly so beacon frames (that require this)
    392       1.1    dyoung  * can use this interface too.
    393       1.1    dyoung  */
    394       1.1    dyoung struct mbuf *
    395  1.31.2.1      phil ieee80211_getmgtframe(uint8_t **frm, int headroom, int pktlen)
    396       1.1    dyoung {
    397       1.1    dyoung 	struct mbuf *m;
    398       1.1    dyoung 	u_int len;
    399       1.1    dyoung 
    400       1.1    dyoung 	/*
    401       1.1    dyoung 	 * NB: we know the mbuf routines will align the data area
    402       1.1    dyoung 	 *     so we don't need to do anything special.
    403       1.1    dyoung 	 */
    404  1.31.2.1      phil 	len = roundup2(headroom + pktlen, 4);
    405  1.31.2.2      phil 	FBSDKASSERT(len <= MCLBYTES, ("802.11 mgt frame too large: %u", len));
    406  1.31.2.1      phil 	if (len < MINCLSIZE) {
    407  1.31.2.1      phil 		m = m_gethdr(M_NOWAIT, MT_DATA);
    408       1.1    dyoung 		/*
    409       1.1    dyoung 		 * Align the data in case additional headers are added.
    410       1.1    dyoung 		 * This should only happen when a WEP header is added
    411       1.1    dyoung 		 * which only happens for shared key authentication mgt
    412       1.1    dyoung 		 * frames which all fit in MHLEN.
    413       1.1    dyoung 		 */
    414       1.1    dyoung 		if (m != NULL)
    415  1.31.2.1      phil 			M_ALIGN(m, len);
    416      1.30      maxv 	} else {
    417  1.31.2.1      phil 		m = m_getcl(M_NOWAIT, MT_DATA, M_PKTHDR);
    418  1.31.2.1      phil 		if (m != NULL)
    419  1.31.2.1      phil 			MC_ALIGN(m, len);
    420      1.30      maxv 	}
    421       1.1    dyoung 	if (m != NULL) {
    422  1.31.2.1      phil 		m->m_data += headroom;
    423       1.1    dyoung 		*frm = m->m_data;
    424       1.1    dyoung 	}
    425       1.1    dyoung 	return m;
    426       1.1    dyoung }
    427       1.1    dyoung 
    428  1.31.2.1      phil #ifndef __NO_STRICT_ALIGNMENT
    429  1.31.2.1      phil /*
    430  1.31.2.1      phil  * Re-align the payload in the mbuf.  This is mainly used (right now)
    431  1.31.2.1      phil  * to handle IP header alignment requirements on certain architectures.
    432  1.31.2.1      phil  */
    433  1.31.2.1      phil struct mbuf *
    434  1.31.2.1      phil ieee80211_realign(struct ieee80211vap *vap, struct mbuf *m, size_t align)
    435  1.31.2.1      phil {
    436  1.31.2.1      phil 	int pktlen, space;
    437  1.31.2.1      phil 	struct mbuf *n;
    438  1.31.2.1      phil 
    439  1.31.2.1      phil 	pktlen = m->m_pkthdr.len;
    440  1.31.2.1      phil 	space = pktlen + align;
    441  1.31.2.1      phil 	if (space < MINCLSIZE)
    442  1.31.2.1      phil 		n = m_gethdr(M_NOWAIT, MT_DATA);
    443  1.31.2.1      phil 	else {
    444  1.31.2.1      phil 		n = m_getjcl(M_NOWAIT, MT_DATA, M_PKTHDR,
    445  1.31.2.1      phil 		    space <= MCLBYTES ?     MCLBYTES :
    446  1.31.2.1      phil #if MJUMPAGESIZE != MCLBYTES
    447  1.31.2.1      phil 		    space <= MJUMPAGESIZE ? MJUMPAGESIZE :
    448  1.31.2.1      phil #endif
    449  1.31.2.1      phil 		    space <= MJUM9BYTES ?   MJUM9BYTES : MJUM16BYTES);
    450  1.31.2.1      phil 	}
    451  1.31.2.1      phil 	if (__predict_true(n != NULL)) {
    452  1.31.2.1      phil 		m_move_pkthdr(n, m);
    453  1.31.2.1      phil 		n->m_data = (caddr_t)(ALIGN(n->m_data + align) - align);
    454  1.31.2.1      phil 		m_copydata(m, 0, pktlen, mtod(n, caddr_t));
    455  1.31.2.1      phil 		n->m_len = pktlen;
    456  1.31.2.1      phil 	} else {
    457  1.31.2.1      phil 		IEEE80211_DISCARD(vap, IEEE80211_MSG_ANY,
    458  1.31.2.1      phil 		    mtod(m, const struct ieee80211_frame *), NULL,
    459  1.31.2.1      phil 		    "%s", "no mbuf to realign");
    460  1.31.2.1      phil 		vap->iv_stats.is_rx_badalign++;
    461  1.31.2.1      phil 	}
    462  1.31.2.1      phil 	m_freem(m);
    463  1.31.2.1      phil 	return n;
    464  1.31.2.1      phil }
    465  1.31.2.1      phil #endif /* !__NO_STRICT_ALIGNMENT */
    466  1.31.2.1      phil 
    467  1.31.2.1      phil int
    468  1.31.2.1      phil ieee80211_add_callback(struct mbuf *m,
    469  1.31.2.1      phil 	void (*func)(struct ieee80211_node *, void *, int), void *arg)
    470  1.31.2.1      phil {
    471  1.31.2.1      phil 	struct m_tag *mtag;
    472  1.31.2.1      phil 	struct ieee80211_cb *cb;
    473  1.31.2.1      phil 
    474  1.31.2.2      phil 	mtag = m_tag_get(/*MTAG_ABI_NET80211*/ NET80211_TAG_CALLBACK,
    475  1.31.2.1      phil 			sizeof(struct ieee80211_cb), M_NOWAIT);
    476  1.31.2.1      phil 	if (mtag == NULL)
    477  1.31.2.1      phil 		return 0;
    478  1.31.2.1      phil 
    479  1.31.2.1      phil 	cb = (struct ieee80211_cb *)(mtag+1);
    480  1.31.2.1      phil 	cb->func = func;
    481  1.31.2.1      phil 	cb->arg = arg;
    482  1.31.2.1      phil 	m_tag_prepend(m, mtag);
    483  1.31.2.1      phil 	m->m_flags |= M_TXCB;
    484  1.31.2.1      phil 	return 1;
    485  1.31.2.1      phil }
    486  1.31.2.1      phil 
    487  1.31.2.1      phil int
    488  1.31.2.1      phil ieee80211_add_xmit_params(struct mbuf *m,
    489  1.31.2.1      phil     const struct ieee80211_bpf_params *params)
    490  1.31.2.1      phil {
    491  1.31.2.1      phil 	struct m_tag *mtag;
    492  1.31.2.1      phil 	struct ieee80211_tx_params *tx;
    493  1.31.2.1      phil 
    494  1.31.2.2      phil 	mtag = m_tag_get(/*MTAG_ABI_NET80211*/ NET80211_TAG_XMIT_PARAMS,
    495  1.31.2.1      phil 	    sizeof(struct ieee80211_tx_params), M_NOWAIT);
    496  1.31.2.1      phil 	if (mtag == NULL)
    497  1.31.2.1      phil 		return (0);
    498  1.31.2.1      phil 
    499  1.31.2.1      phil 	tx = (struct ieee80211_tx_params *)(mtag+1);
    500  1.31.2.1      phil 	memcpy(&tx->params, params, sizeof(struct ieee80211_bpf_params));
    501  1.31.2.1      phil 	m_tag_prepend(m, mtag);
    502  1.31.2.1      phil 	return (1);
    503  1.31.2.1      phil }
    504  1.31.2.1      phil 
    505  1.31.2.1      phil int
    506  1.31.2.1      phil ieee80211_get_xmit_params(struct mbuf *m,
    507  1.31.2.1      phil     struct ieee80211_bpf_params *params)
    508  1.31.2.1      phil {
    509  1.31.2.1      phil 	struct m_tag *mtag;
    510  1.31.2.1      phil 	struct ieee80211_tx_params *tx;
    511  1.31.2.1      phil 
    512  1.31.2.2      phil 	mtag = m_tag_find(m, /*MTAG_ABI_NET80211,*/ NET80211_TAG_XMIT_PARAMS,
    513  1.31.2.1      phil 	    NULL);
    514  1.31.2.1      phil 	if (mtag == NULL)
    515  1.31.2.1      phil 		return (-1);
    516  1.31.2.1      phil 	tx = (struct ieee80211_tx_params *)(mtag + 1);
    517  1.31.2.1      phil 	memcpy(params, &tx->params, sizeof(struct ieee80211_bpf_params));
    518  1.31.2.1      phil 	return (0);
    519  1.31.2.1      phil }
    520  1.31.2.1      phil 
    521       1.1    dyoung void
    522  1.31.2.1      phil ieee80211_process_callback(struct ieee80211_node *ni,
    523  1.31.2.1      phil 	struct mbuf *m, int status)
    524  1.31.2.1      phil {
    525  1.31.2.1      phil 	struct m_tag *mtag;
    526  1.31.2.1      phil 
    527  1.31.2.2      phil 	mtag = m_tag_find(m, /*MTAG_ABI_NET80211,*/ NET80211_TAG_CALLBACK, NULL);
    528  1.31.2.1      phil 	if (mtag != NULL) {
    529  1.31.2.1      phil 		struct ieee80211_cb *cb = (struct ieee80211_cb *)(mtag+1);
    530  1.31.2.1      phil 		cb->func(ni, cb->arg, status);
    531  1.31.2.1      phil 	}
    532  1.31.2.1      phil }
    533  1.31.2.1      phil 
    534  1.31.2.1      phil /*
    535  1.31.2.1      phil  * Add RX parameters to the given mbuf.
    536  1.31.2.1      phil  *
    537  1.31.2.1      phil  * Returns 1 if OK, 0 on error.
    538  1.31.2.1      phil  */
    539  1.31.2.1      phil int
    540  1.31.2.1      phil ieee80211_add_rx_params(struct mbuf *m, const struct ieee80211_rx_stats *rxs)
    541  1.31.2.1      phil {
    542  1.31.2.1      phil 	struct m_tag *mtag;
    543  1.31.2.1      phil 	struct ieee80211_rx_params *rx;
    544  1.31.2.1      phil 
    545  1.31.2.2      phil 	mtag = m_tag_get(/*MTAG_ABI_NET80211,*/ NET80211_TAG_RECV_PARAMS,
    546  1.31.2.1      phil 	    sizeof(struct ieee80211_rx_stats), M_NOWAIT);
    547  1.31.2.1      phil 	if (mtag == NULL)
    548  1.31.2.1      phil 		return (0);
    549  1.31.2.1      phil 
    550  1.31.2.1      phil 	rx = (struct ieee80211_rx_params *)(mtag + 1);
    551  1.31.2.1      phil 	memcpy(&rx->params, rxs, sizeof(*rxs));
    552  1.31.2.1      phil 	m_tag_prepend(m, mtag);
    553  1.31.2.1      phil 	return (1);
    554  1.31.2.1      phil }
    555  1.31.2.1      phil 
    556  1.31.2.1      phil int
    557  1.31.2.1      phil ieee80211_get_rx_params(struct mbuf *m, struct ieee80211_rx_stats *rxs)
    558  1.31.2.1      phil {
    559  1.31.2.1      phil 	struct m_tag *mtag;
    560  1.31.2.1      phil 	struct ieee80211_rx_params *rx;
    561  1.31.2.1      phil 
    562  1.31.2.2      phil 	mtag = m_tag_find(m, /*MTAG_ABI_NET80211,*/ NET80211_TAG_RECV_PARAMS,
    563  1.31.2.1      phil 	    NULL);
    564  1.31.2.1      phil 	if (mtag == NULL)
    565  1.31.2.1      phil 		return (-1);
    566  1.31.2.1      phil 	rx = (struct ieee80211_rx_params *)(mtag + 1);
    567  1.31.2.1      phil 	memcpy(rxs, &rx->params, sizeof(*rxs));
    568  1.31.2.1      phil 	return (0);
    569  1.31.2.1      phil }
    570  1.31.2.1      phil 
    571  1.31.2.1      phil const struct ieee80211_rx_stats *
    572  1.31.2.1      phil ieee80211_get_rx_params_ptr(struct mbuf *m)
    573  1.31.2.1      phil {
    574  1.31.2.1      phil 	struct m_tag *mtag;
    575  1.31.2.1      phil 	struct ieee80211_rx_params *rx;
    576  1.31.2.1      phil 
    577  1.31.2.2      phil 	mtag = m_tag_find(m, /*MTAG_ABI_NET80211,*/ NET80211_TAG_RECV_PARAMS,
    578  1.31.2.1      phil 	    NULL);
    579  1.31.2.1      phil 	if (mtag == NULL)
    580  1.31.2.1      phil 		return (NULL);
    581  1.31.2.1      phil 	rx = (struct ieee80211_rx_params *)(mtag + 1);
    582  1.31.2.1      phil 	return (&rx->params);
    583  1.31.2.1      phil }
    584  1.31.2.1      phil 
    585  1.31.2.1      phil 
    586  1.31.2.1      phil /*
    587  1.31.2.1      phil  * Add TOA parameters to the given mbuf.
    588  1.31.2.1      phil  */
    589  1.31.2.1      phil int
    590  1.31.2.1      phil ieee80211_add_toa_params(struct mbuf *m, const struct ieee80211_toa_params *p)
    591  1.31.2.1      phil {
    592  1.31.2.1      phil 	struct m_tag *mtag;
    593  1.31.2.1      phil 	struct ieee80211_toa_params *rp;
    594  1.31.2.1      phil 
    595  1.31.2.2      phil 	mtag = m_tag_get(/*MTAG_ABI_NET80211,*/ NET80211_TAG_TOA_PARAMS,
    596  1.31.2.1      phil 	    sizeof(struct ieee80211_toa_params), M_NOWAIT);
    597  1.31.2.1      phil 	if (mtag == NULL)
    598  1.31.2.1      phil 		return (0);
    599  1.31.2.1      phil 
    600  1.31.2.1      phil 	rp = (struct ieee80211_toa_params *)(mtag + 1);
    601  1.31.2.1      phil 	memcpy(rp, p, sizeof(*rp));
    602  1.31.2.1      phil 	m_tag_prepend(m, mtag);
    603  1.31.2.1      phil 	return (1);
    604  1.31.2.1      phil }
    605  1.31.2.1      phil 
    606  1.31.2.1      phil int
    607  1.31.2.1      phil ieee80211_get_toa_params(struct mbuf *m, struct ieee80211_toa_params *p)
    608  1.31.2.1      phil {
    609  1.31.2.1      phil 	struct m_tag *mtag;
    610  1.31.2.1      phil 	struct ieee80211_toa_params *rp;
    611  1.31.2.1      phil 
    612  1.31.2.2      phil 	mtag = m_tag_find(m, /*MTAG_ABI_NET80211,*/ NET80211_TAG_TOA_PARAMS,
    613  1.31.2.1      phil 	    NULL);
    614  1.31.2.1      phil 	if (mtag == NULL)
    615  1.31.2.1      phil 		return (0);
    616  1.31.2.1      phil 	rp = (struct ieee80211_toa_params *)(mtag + 1);
    617  1.31.2.1      phil 	if (p != NULL)
    618  1.31.2.1      phil 		memcpy(p, rp, sizeof(*p));
    619  1.31.2.1      phil 	return (1);
    620  1.31.2.1      phil }
    621  1.31.2.1      phil 
    622  1.31.2.1      phil /*
    623  1.31.2.1      phil  * Transmit a frame to the parent interface.
    624  1.31.2.1      phil  */
    625  1.31.2.1      phil int
    626  1.31.2.1      phil ieee80211_parent_xmitpkt(struct ieee80211com *ic, struct mbuf *m)
    627       1.1    dyoung {
    628  1.31.2.1      phil 	int error;
    629  1.31.2.1      phil 
    630  1.31.2.1      phil 	/*
    631  1.31.2.1      phil 	 * Assert the IC TX lock is held - this enforces the
    632  1.31.2.1      phil 	 * processing -> queuing order is maintained
    633  1.31.2.1      phil 	 */
    634  1.31.2.1      phil 	IEEE80211_TX_LOCK_ASSERT(ic);
    635  1.31.2.1      phil 	error = ic->ic_transmit(ic, m);
    636  1.31.2.1      phil 	if (error) {
    637  1.31.2.1      phil 		struct ieee80211_node *ni;
    638  1.31.2.1      phil 
    639  1.31.2.2      phil 		ni = (struct ieee80211_node *)m_get_rcvif_NOMPSAFE(m);
    640  1.31.2.1      phil 
    641  1.31.2.1      phil 		/* XXX number of fragments */
    642  1.31.2.1      phil 		if_inc_counter(ni->ni_vap->iv_ifp, IFCOUNTER_OERRORS, 1);
    643  1.31.2.1      phil 		ieee80211_free_node(ni);
    644  1.31.2.1      phil 		ieee80211_free_mbuf(m);
    645  1.31.2.1      phil 	}
    646  1.31.2.1      phil 	return (error);
    647       1.1    dyoung }
    648       1.1    dyoung 
    649  1.31.2.1      phil /*
    650  1.31.2.1      phil  * Transmit a frame to the VAP interface.
    651  1.31.2.1      phil  */
    652  1.31.2.1      phil int
    653  1.31.2.1      phil ieee80211_vap_xmitpkt(struct ieee80211vap *vap, struct mbuf *m)
    654  1.31.2.1      phil {
    655  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    656  1.31.2.1      phil 
    657  1.31.2.1      phil 	/*
    658  1.31.2.1      phil 	 * When transmitting via the VAP, we shouldn't hold
    659  1.31.2.1      phil 	 * any IC TX lock as the VAP TX path will acquire it.
    660  1.31.2.1      phil 	 */
    661  1.31.2.1      phil 	IEEE80211_TX_UNLOCK_ASSERT(vap->iv_ic);
    662  1.31.2.1      phil 
    663  1.31.2.1      phil 	return (ifp->if_transmit(ifp, m));
    664  1.31.2.1      phil 
    665  1.31.2.1      phil }
    666  1.31.2.1      phil 
    667       1.1    dyoung void
    668  1.31.2.1      phil get_random_bytes(void *p, size_t n)
    669       1.1    dyoung {
    670  1.31.2.1      phil 	uint8_t *dp = p;
    671       1.1    dyoung 
    672  1.31.2.1      phil 	while (n > 0) {
    673  1.31.2.1      phil 		uint32_t v = arc4random();
    674  1.31.2.1      phil 		size_t nb = n > sizeof(uint32_t) ? sizeof(uint32_t) : n;
    675  1.31.2.1      phil 		bcopy(&v, dp, n > sizeof(uint32_t) ? sizeof(uint32_t) : n);
    676  1.31.2.1      phil 		dp += sizeof(uint32_t), n -= nb;
    677  1.31.2.1      phil 	}
    678  1.31.2.1      phil }
    679       1.3    dyoung 
    680  1.31.2.1      phil /*
    681  1.31.2.1      phil  * Helper function for events that pass just a single mac address.
    682  1.31.2.1      phil  */
    683  1.31.2.1      phil static void
    684  1.31.2.1      phil notify_macaddr(struct ifnet *ifp, int op, const uint8_t mac[IEEE80211_ADDR_LEN])
    685  1.31.2.1      phil {
    686  1.31.2.1      phil 	struct ieee80211_join_event iev;
    687  1.31.2.1      phil 
    688  1.31.2.1      phil 	CURVNET_SET(ifp->if_vnet);
    689       1.7    dyoung 	memset(&iev, 0, sizeof(iev));
    690  1.31.2.1      phil 	IEEE80211_ADDR_COPY(iev.iev_addr, mac);
    691  1.31.2.1      phil 	rt_ieee80211msg(ifp, op, &iev, sizeof(iev));
    692  1.31.2.1      phil 	CURVNET_RESTORE();
    693  1.31.2.1      phil }
    694  1.31.2.1      phil 
    695  1.31.2.1      phil void
    696  1.31.2.1      phil ieee80211_notify_node_join(struct ieee80211_node *ni, int newassoc)
    697  1.31.2.1      phil {
    698  1.31.2.1      phil 	struct ieee80211vap *vap = ni->ni_vap;
    699  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    700  1.31.2.1      phil 
    701  1.31.2.1      phil 	CURVNET_SET_QUIET(ifp->if_vnet);
    702  1.31.2.1      phil 	IEEE80211_NOTE(vap, IEEE80211_MSG_NODE, ni, "%snode join",
    703  1.31.2.1      phil 	    (ni == vap->iv_bss) ? "bss " : "");
    704  1.31.2.1      phil 
    705  1.31.2.1      phil 	if (ni == vap->iv_bss) {
    706  1.31.2.1      phil 		notify_macaddr(ifp, newassoc ?
    707  1.31.2.1      phil 		    RTM_IEEE80211_ASSOC : RTM_IEEE80211_REASSOC, ni->ni_bssid);
    708       1.1    dyoung 		if_link_state_change(ifp, LINK_STATE_UP);
    709      1.16  christos 	} else {
    710  1.31.2.1      phil 		notify_macaddr(ifp, newassoc ?
    711  1.31.2.1      phil 		    RTM_IEEE80211_JOIN : RTM_IEEE80211_REJOIN, ni->ni_macaddr);
    712       1.1    dyoung 	}
    713  1.31.2.1      phil 	CURVNET_RESTORE();
    714       1.1    dyoung }
    715       1.1    dyoung 
    716       1.1    dyoung void
    717  1.31.2.1      phil ieee80211_notify_node_leave(struct ieee80211_node *ni)
    718       1.1    dyoung {
    719  1.31.2.1      phil 	struct ieee80211vap *vap = ni->ni_vap;
    720  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    721       1.1    dyoung 
    722  1.31.2.1      phil 	CURVNET_SET_QUIET(ifp->if_vnet);
    723  1.31.2.1      phil 	IEEE80211_NOTE(vap, IEEE80211_MSG_NODE, ni, "%snode leave",
    724  1.31.2.1      phil 	    (ni == vap->iv_bss) ? "bss " : "");
    725       1.3    dyoung 
    726  1.31.2.1      phil 	if (ni == vap->iv_bss) {
    727       1.1    dyoung 		rt_ieee80211msg(ifp, RTM_IEEE80211_DISASSOC, NULL, 0);
    728       1.1    dyoung 		if_link_state_change(ifp, LINK_STATE_DOWN);
    729       1.1    dyoung 	} else {
    730       1.1    dyoung 		/* fire off wireless event station leaving */
    731  1.31.2.1      phil 		notify_macaddr(ifp, RTM_IEEE80211_LEAVE, ni->ni_macaddr);
    732       1.1    dyoung 	}
    733  1.31.2.1      phil 	CURVNET_RESTORE();
    734       1.1    dyoung }
    735       1.1    dyoung 
    736       1.1    dyoung void
    737  1.31.2.1      phil ieee80211_notify_scan_done(struct ieee80211vap *vap)
    738       1.1    dyoung {
    739  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    740       1.1    dyoung 
    741  1.31.2.1      phil 	IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN, "%s\n", "notify scan done");
    742       1.1    dyoung 
    743       1.1    dyoung 	/* dispatch wireless event indicating scan completed */
    744  1.31.2.1      phil 	CURVNET_SET(ifp->if_vnet);
    745       1.1    dyoung 	rt_ieee80211msg(ifp, RTM_IEEE80211_SCAN, NULL, 0);
    746  1.31.2.1      phil 	CURVNET_RESTORE();
    747       1.1    dyoung }
    748       1.1    dyoung 
    749       1.1    dyoung void
    750  1.31.2.1      phil ieee80211_notify_replay_failure(struct ieee80211vap *vap,
    751       1.1    dyoung 	const struct ieee80211_frame *wh, const struct ieee80211_key *k,
    752  1.31.2.1      phil 	u_int64_t rsc, int tid)
    753       1.1    dyoung {
    754  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    755       1.1    dyoung 
    756  1.31.2.1      phil 	IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_CRYPTO, wh->i_addr2,
    757  1.31.2.1      phil 	    "%s replay detected tid %d <rsc %ju, csc %ju, keyix %u rxkeyix %u>",
    758  1.31.2.1      phil 	    k->wk_cipher->ic_name, tid, (intmax_t) rsc,
    759  1.31.2.1      phil 	    (intmax_t) k->wk_keyrsc[tid],
    760       1.8     skrll 	    k->wk_keyix, k->wk_rxkeyix);
    761       1.1    dyoung 
    762       1.1    dyoung 	if (ifp != NULL) {		/* NB: for cipher test modules */
    763       1.1    dyoung 		struct ieee80211_replay_event iev;
    764       1.1    dyoung 
    765       1.1    dyoung 		IEEE80211_ADDR_COPY(iev.iev_dst, wh->i_addr1);
    766       1.1    dyoung 		IEEE80211_ADDR_COPY(iev.iev_src, wh->i_addr2);
    767       1.1    dyoung 		iev.iev_cipher = k->wk_cipher->ic_cipher;
    768       1.8     skrll 		if (k->wk_rxkeyix != IEEE80211_KEYIX_NONE)
    769       1.8     skrll 			iev.iev_keyix = k->wk_rxkeyix;
    770       1.8     skrll 		else
    771       1.8     skrll 			iev.iev_keyix = k->wk_keyix;
    772  1.31.2.1      phil 		iev.iev_keyrsc = k->wk_keyrsc[tid];
    773       1.1    dyoung 		iev.iev_rsc = rsc;
    774  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    775       1.1    dyoung 		rt_ieee80211msg(ifp, RTM_IEEE80211_REPLAY, &iev, sizeof(iev));
    776  1.31.2.1      phil 		CURVNET_RESTORE();
    777       1.1    dyoung 	}
    778       1.1    dyoung }
    779       1.1    dyoung 
    780       1.1    dyoung void
    781  1.31.2.1      phil ieee80211_notify_michael_failure(struct ieee80211vap *vap,
    782       1.1    dyoung 	const struct ieee80211_frame *wh, u_int keyix)
    783       1.1    dyoung {
    784  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    785       1.1    dyoung 
    786  1.31.2.1      phil 	IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_CRYPTO, wh->i_addr2,
    787  1.31.2.1      phil 	    "michael MIC verification failed <keyix %u>", keyix);
    788  1.31.2.1      phil 	vap->iv_stats.is_rx_tkipmic++;
    789       1.1    dyoung 
    790       1.1    dyoung 	if (ifp != NULL) {		/* NB: for cipher test modules */
    791       1.1    dyoung 		struct ieee80211_michael_event iev;
    792       1.1    dyoung 
    793       1.1    dyoung 		IEEE80211_ADDR_COPY(iev.iev_dst, wh->i_addr1);
    794       1.1    dyoung 		IEEE80211_ADDR_COPY(iev.iev_src, wh->i_addr2);
    795       1.1    dyoung 		iev.iev_cipher = IEEE80211_CIPHER_TKIP;
    796       1.1    dyoung 		iev.iev_keyix = keyix;
    797  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    798       1.1    dyoung 		rt_ieee80211msg(ifp, RTM_IEEE80211_MICHAEL, &iev, sizeof(iev));
    799  1.31.2.1      phil 		CURVNET_RESTORE();
    800       1.1    dyoung 	}
    801       1.1    dyoung }
    802       1.1    dyoung 
    803       1.1    dyoung void
    804  1.31.2.1      phil ieee80211_notify_wds_discover(struct ieee80211_node *ni)
    805       1.1    dyoung {
    806  1.31.2.1      phil 	struct ieee80211vap *vap = ni->ni_vap;
    807  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    808  1.31.2.1      phil 
    809  1.31.2.1      phil 	notify_macaddr(ifp, RTM_IEEE80211_WDS, ni->ni_macaddr);
    810  1.31.2.1      phil }
    811  1.31.2.1      phil 
    812  1.31.2.1      phil void
    813  1.31.2.1      phil ieee80211_notify_csa(struct ieee80211com *ic,
    814  1.31.2.1      phil 	const struct ieee80211_channel *c, int mode, int count)
    815  1.31.2.1      phil {
    816  1.31.2.1      phil 	struct ieee80211_csa_event iev;
    817  1.31.2.1      phil 	struct ieee80211vap *vap;
    818  1.31.2.1      phil 	struct ifnet *ifp;
    819       1.1    dyoung 
    820  1.31.2.1      phil 	memset(&iev, 0, sizeof(iev));
    821  1.31.2.1      phil 	iev.iev_flags = c->ic_flags;
    822  1.31.2.1      phil 	iev.iev_freq = c->ic_freq;
    823  1.31.2.1      phil 	iev.iev_ieee = c->ic_ieee;
    824  1.31.2.1      phil 	iev.iev_mode = mode;
    825  1.31.2.1      phil 	iev.iev_count = count;
    826  1.31.2.1      phil 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
    827  1.31.2.1      phil 		ifp = vap->iv_ifp;
    828  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    829  1.31.2.1      phil 		rt_ieee80211msg(ifp, RTM_IEEE80211_CSA, &iev, sizeof(iev));
    830  1.31.2.1      phil 		CURVNET_RESTORE();
    831  1.31.2.1      phil 	}
    832  1.31.2.1      phil }
    833  1.31.2.1      phil 
    834  1.31.2.1      phil void
    835  1.31.2.1      phil ieee80211_notify_radar(struct ieee80211com *ic,
    836  1.31.2.1      phil 	const struct ieee80211_channel *c)
    837  1.31.2.1      phil {
    838  1.31.2.1      phil 	struct ieee80211_radar_event iev;
    839  1.31.2.1      phil 	struct ieee80211vap *vap;
    840  1.31.2.1      phil 	struct ifnet *ifp;
    841  1.31.2.1      phil 
    842  1.31.2.1      phil 	memset(&iev, 0, sizeof(iev));
    843  1.31.2.1      phil 	iev.iev_flags = c->ic_flags;
    844  1.31.2.1      phil 	iev.iev_freq = c->ic_freq;
    845  1.31.2.1      phil 	iev.iev_ieee = c->ic_ieee;
    846  1.31.2.1      phil 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
    847  1.31.2.1      phil 		ifp = vap->iv_ifp;
    848  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    849  1.31.2.1      phil 		rt_ieee80211msg(ifp, RTM_IEEE80211_RADAR, &iev, sizeof(iev));
    850  1.31.2.1      phil 		CURVNET_RESTORE();
    851  1.31.2.1      phil 	}
    852  1.31.2.1      phil }
    853  1.31.2.1      phil 
    854  1.31.2.1      phil void
    855  1.31.2.1      phil ieee80211_notify_cac(struct ieee80211com *ic,
    856  1.31.2.1      phil 	const struct ieee80211_channel *c, enum ieee80211_notify_cac_event type)
    857  1.31.2.1      phil {
    858  1.31.2.1      phil 	struct ieee80211_cac_event iev;
    859  1.31.2.1      phil 	struct ieee80211vap *vap;
    860  1.31.2.1      phil 	struct ifnet *ifp;
    861  1.31.2.1      phil 
    862  1.31.2.1      phil 	memset(&iev, 0, sizeof(iev));
    863  1.31.2.1      phil 	iev.iev_flags = c->ic_flags;
    864  1.31.2.1      phil 	iev.iev_freq = c->ic_freq;
    865  1.31.2.1      phil 	iev.iev_ieee = c->ic_ieee;
    866  1.31.2.1      phil 	iev.iev_type = type;
    867  1.31.2.1      phil 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
    868  1.31.2.1      phil 		ifp = vap->iv_ifp;
    869  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    870  1.31.2.1      phil 		rt_ieee80211msg(ifp, RTM_IEEE80211_CAC, &iev, sizeof(iev));
    871  1.31.2.1      phil 		CURVNET_RESTORE();
    872  1.31.2.1      phil 	}
    873  1.31.2.1      phil }
    874  1.31.2.1      phil 
    875  1.31.2.1      phil void
    876  1.31.2.1      phil ieee80211_notify_node_deauth(struct ieee80211_node *ni)
    877  1.31.2.1      phil {
    878  1.31.2.1      phil 	struct ieee80211vap *vap = ni->ni_vap;
    879  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    880  1.31.2.1      phil 
    881  1.31.2.1      phil 	IEEE80211_NOTE(vap, IEEE80211_MSG_NODE, ni, "%s", "node deauth");
    882  1.31.2.1      phil 
    883  1.31.2.1      phil 	notify_macaddr(ifp, RTM_IEEE80211_DEAUTH, ni->ni_macaddr);
    884  1.31.2.1      phil }
    885  1.31.2.1      phil 
    886  1.31.2.1      phil void
    887  1.31.2.1      phil ieee80211_notify_node_auth(struct ieee80211_node *ni)
    888  1.31.2.1      phil {
    889  1.31.2.1      phil 	struct ieee80211vap *vap = ni->ni_vap;
    890  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    891  1.31.2.1      phil 
    892  1.31.2.1      phil 	IEEE80211_NOTE(vap, IEEE80211_MSG_NODE, ni, "%s", "node auth");
    893  1.31.2.1      phil 
    894  1.31.2.1      phil 	notify_macaddr(ifp, RTM_IEEE80211_AUTH, ni->ni_macaddr);
    895  1.31.2.1      phil }
    896  1.31.2.1      phil 
    897  1.31.2.1      phil void
    898  1.31.2.1      phil ieee80211_notify_country(struct ieee80211vap *vap,
    899  1.31.2.1      phil 	const uint8_t bssid[IEEE80211_ADDR_LEN], const uint8_t cc[2])
    900  1.31.2.1      phil {
    901  1.31.2.1      phil 	struct ifnet *ifp = vap->iv_ifp;
    902  1.31.2.1      phil 	struct ieee80211_country_event iev;
    903  1.31.2.1      phil 
    904  1.31.2.1      phil 	memset(&iev, 0, sizeof(iev));
    905  1.31.2.1      phil 	IEEE80211_ADDR_COPY(iev.iev_addr, bssid);
    906  1.31.2.1      phil 	iev.iev_cc[0] = cc[0];
    907  1.31.2.1      phil 	iev.iev_cc[1] = cc[1];
    908  1.31.2.1      phil 	CURVNET_SET(ifp->if_vnet);
    909  1.31.2.1      phil 	rt_ieee80211msg(ifp, RTM_IEEE80211_COUNTRY, &iev, sizeof(iev));
    910  1.31.2.1      phil 	CURVNET_RESTORE();
    911  1.31.2.1      phil }
    912  1.31.2.1      phil 
    913  1.31.2.1      phil void
    914  1.31.2.1      phil ieee80211_notify_radio(struct ieee80211com *ic, int state)
    915  1.31.2.1      phil {
    916  1.31.2.1      phil 	struct ieee80211_radio_event iev;
    917  1.31.2.1      phil 	struct ieee80211vap *vap;
    918  1.31.2.1      phil 	struct ifnet *ifp;
    919  1.31.2.1      phil 
    920  1.31.2.1      phil 	memset(&iev, 0, sizeof(iev));
    921  1.31.2.1      phil 	iev.iev_state = state;
    922  1.31.2.1      phil 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
    923  1.31.2.1      phil 		ifp = vap->iv_ifp;
    924  1.31.2.1      phil 		CURVNET_SET(ifp->if_vnet);
    925  1.31.2.1      phil 		rt_ieee80211msg(ifp, RTM_IEEE80211_RADIO, &iev, sizeof(iev));
    926  1.31.2.1      phil 		CURVNET_RESTORE();
    927       1.1    dyoung 	}
    928  1.31.2.1      phil }
    929  1.31.2.1      phil 
    930  1.31.2.3      phil #ifdef notyet
    931  1.31.2.1      phil void
    932  1.31.2.1      phil ieee80211_load_module(const char *modname)
    933  1.31.2.1      phil {
    934  1.31.2.2      phil 	struct thread *td = curthread;
    935  1.31.2.2      phil 
    936  1.31.2.2      phil 	if (suser(td) == 0 && securelevel_gt(td->td_ucred, 0) == 0) {
    937  1.31.2.2      phil 		mtx_lock(&Giant);
    938  1.31.2.2      phil 		(void) linker_load_module(modname, NULL, NULL, NULL, NULL);
    939  1.31.2.2      phil 		mtx_unlock(&Giant);
    940  1.31.2.2      phil 	}
    941       1.1    dyoung }
    942  1.31.2.3      phil #endif
    943      1.31      maxv 
    944  1.31.2.2      phil #ifdef notyet
    945  1.31.2.1      phil static eventhandler_tag wlan_bpfevent;
    946  1.31.2.1      phil static eventhandler_tag wlan_ifllevent;
    947  1.31.2.1      phil 
    948  1.31.2.1      phil static void
    949  1.31.2.1      phil bpf_track(void *arg, struct ifnet *ifp, int dlt, int attach)
    950  1.31.2.1      phil {
    951  1.31.2.1      phil 	/* NB: identify vap's by if_init */
    952  1.31.2.1      phil 	if (dlt == DLT_IEEE802_11_RADIO &&
    953  1.31.2.1      phil 	    ifp->if_init == ieee80211_init) {
    954  1.31.2.1      phil 		struct ieee80211vap *vap = ifp->if_softc;
    955  1.31.2.1      phil 		/*
    956  1.31.2.1      phil 		 * Track bpf radiotap listener state.  We mark the vap
    957  1.31.2.1      phil 		 * to indicate if any listener is present and the com
    958  1.31.2.1      phil 		 * to indicate if any listener exists on any associated
    959  1.31.2.1      phil 		 * vap.  This flag is used by drivers to prepare radiotap
    960  1.31.2.1      phil 		 * state only when needed.
    961  1.31.2.1      phil 		 */
    962  1.31.2.1      phil 		if (attach) {
    963  1.31.2.1      phil 			ieee80211_syncflag_ext(vap, IEEE80211_FEXT_BPF);
    964  1.31.2.1      phil 			if (vap->iv_opmode == IEEE80211_M_MONITOR)
    965  1.31.2.1      phil 				atomic_add_int(&vap->iv_ic->ic_montaps, 1);
    966  1.31.2.1      phil 		} else if (!bpf_peers_present(vap->iv_rawbpf)) {
    967  1.31.2.1      phil 			ieee80211_syncflag_ext(vap, -IEEE80211_FEXT_BPF);
    968  1.31.2.1      phil 			if (vap->iv_opmode == IEEE80211_M_MONITOR)
    969  1.31.2.1      phil 				atomic_subtract_int(&vap->iv_ic->ic_montaps, 1);
    970  1.31.2.1      phil 		}
    971  1.31.2.1      phil 	}
    972  1.31.2.1      phil }
    973      1.31      maxv 
    974      1.31      maxv /*
    975  1.31.2.1      phil  * Change MAC address on the vap (if was not started).
    976      1.31      maxv  */
    977  1.31.2.1      phil static void
    978  1.31.2.1      phil wlan_iflladdr(void *arg __unused, struct ifnet *ifp)
    979      1.31      maxv {
    980  1.31.2.1      phil 	/* NB: identify vap's by if_init */
    981  1.31.2.1      phil 	if (ifp->if_init == ieee80211_init &&
    982  1.31.2.1      phil 	    (ifp->if_flags & IFF_UP) == 0) {
    983  1.31.2.1      phil 		struct ieee80211vap *vap = ifp->if_softc;
    984      1.31      maxv 
    985  1.31.2.1      phil 		IEEE80211_ADDR_COPY(vap->iv_myaddr, IF_LLADDR(ifp));
    986  1.31.2.1      phil 	}
    987      1.31      maxv }
    988  1.31.2.2      phil #endif
    989  1.31.2.2      phil 
    990  1.31.2.2      phil void
    991  1.31.2.2      phil if_inc_counter(struct ifnet *ifp, ift_counter ifc, int64_t value)
    992  1.31.2.2      phil {
    993  1.31.2.2      phil 	switch (ifc) {
    994  1.31.2.2      phil 	case IFCOUNTER_IPACKETS:
    995  1.31.2.2      phil 		ifp->if_data.ifi_ipackets += value;
    996  1.31.2.2      phil 		break;
    997  1.31.2.2      phil 	case IFCOUNTER_IERRORS:
    998  1.31.2.2      phil 		ifp->if_data.ifi_ierrors += value;
    999  1.31.2.2      phil 		break;
   1000  1.31.2.2      phil 	case IFCOUNTER_OPACKETS:
   1001  1.31.2.2      phil 		ifp->if_data.ifi_opackets += value;
   1002  1.31.2.2      phil 		break;
   1003  1.31.2.2      phil 	case IFCOUNTER_OERRORS:
   1004  1.31.2.2      phil 		ifp->if_data.ifi_oerrors += value;
   1005  1.31.2.2      phil 		break;
   1006  1.31.2.2      phil         case IFCOUNTER_COLLISIONS:
   1007  1.31.2.2      phil 		ifp->if_data.ifi_collisions += value;
   1008  1.31.2.2      phil 		break;
   1009  1.31.2.2      phil         case IFCOUNTER_IBYTES:
   1010  1.31.2.2      phil 		ifp->if_data.ifi_ibytes += value;
   1011  1.31.2.2      phil 		break;
   1012  1.31.2.2      phil         case IFCOUNTER_OBYTES:
   1013  1.31.2.2      phil 		ifp->if_data.ifi_obytes += value;
   1014  1.31.2.2      phil 		break;
   1015  1.31.2.2      phil         case IFCOUNTER_IMCASTS:
   1016  1.31.2.2      phil 		ifp->if_data.ifi_imcasts += value;
   1017  1.31.2.2      phil 		break;
   1018  1.31.2.2      phil         case IFCOUNTER_OMCASTS:
   1019  1.31.2.2      phil 		ifp->if_data.ifi_omcasts += value;
   1020  1.31.2.2      phil 		break;
   1021  1.31.2.2      phil         case IFCOUNTER_IQDROPS:
   1022  1.31.2.2      phil 		ifp->if_data.ifi_iqdrops += value;
   1023  1.31.2.2      phil 		break;
   1024  1.31.2.2      phil         case IFCOUNTER_OQDROPS:
   1025  1.31.2.2      phil 		/* ifp->if_data.ifi_oqdrops += value; No such field, just ignore it q*/
   1026  1.31.2.2      phil 		break;
   1027  1.31.2.2      phil         case IFCOUNTER_NOPROTO:
   1028  1.31.2.2      phil 		ifp->if_data.ifi_noproto += value;
   1029  1.31.2.2      phil 		break;
   1030  1.31.2.2      phil 	default:
   1031  1.31.2.2      phil 		panic("if_inc_counter: non-existant counter");
   1032  1.31.2.2      phil 	}
   1033  1.31.2.2      phil }
   1034  1.31.2.2      phil 
   1035      1.31      maxv 
   1036  1.31.2.2      phil #ifdef notyet
   1037      1.31      maxv /*
   1038  1.31.2.1      phil  * Module glue.
   1039      1.31      maxv  *
   1040  1.31.2.1      phil  * NB: the module name is "wlan" for compatibility with NetBSD.
   1041      1.31      maxv  */
   1042  1.31.2.1      phil static int
   1043  1.31.2.1      phil wlan_modevent(module_t mod, int type, void *unused)
   1044      1.31      maxv {
   1045  1.31.2.1      phil 	switch (type) {
   1046  1.31.2.1      phil 	case MOD_LOAD:
   1047  1.31.2.1      phil 		if (bootverbose)
   1048  1.31.2.1      phil 			printf("wlan: <802.11 Link Layer>\n");
   1049  1.31.2.1      phil 		wlan_bpfevent = EVENTHANDLER_REGISTER(bpf_track,
   1050  1.31.2.1      phil 		    bpf_track, 0, EVENTHANDLER_PRI_ANY);
   1051  1.31.2.1      phil 		wlan_ifllevent = EVENTHANDLER_REGISTER(iflladdr_event,
   1052  1.31.2.1      phil 		    wlan_iflladdr, NULL, EVENTHANDLER_PRI_ANY);
   1053  1.31.2.1      phil 		wlan_cloner = if_clone_simple(wlanname, wlan_clone_create,
   1054  1.31.2.1      phil 		    wlan_clone_destroy, 0);
   1055  1.31.2.1      phil 		return 0;
   1056  1.31.2.1      phil 	case MOD_UNLOAD:
   1057  1.31.2.1      phil 		if_clone_detach(wlan_cloner);
   1058  1.31.2.1      phil 		EVENTHANDLER_DEREGISTER(bpf_track, wlan_bpfevent);
   1059  1.31.2.1      phil 		EVENTHANDLER_DEREGISTER(iflladdr_event, wlan_ifllevent);
   1060  1.31.2.1      phil 		return 0;
   1061      1.31      maxv 	}
   1062  1.31.2.1      phil 	return EINVAL;
   1063      1.31      maxv }
   1064  1.31.2.1      phil 
   1065  1.31.2.1      phil static moduledata_t wlan_mod = {
   1066  1.31.2.1      phil 	wlanname,
   1067  1.31.2.1      phil 	wlan_modevent,
   1068  1.31.2.1      phil 	0
   1069  1.31.2.1      phil };
   1070  1.31.2.1      phil DECLARE_MODULE(wlan, wlan_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST);
   1071  1.31.2.1      phil MODULE_VERSION(wlan, 1);
   1072  1.31.2.1      phil MODULE_DEPEND(wlan, ether, 1, 1, 1);
   1073  1.31.2.2      phil #endif
   1074  1.31.2.2      phil 
   1075  1.31.2.1      phil #ifdef	IEEE80211_ALQ
   1076  1.31.2.1      phil MODULE_DEPEND(wlan, alq, 1, 1, 1);
   1077  1.31.2.1      phil #endif	/* IEEE80211_ALQ */
   1078  1.31.2.1      phil 
   1079  1.31.2.2      phil /* Missing support for if_printf in NetBSD ... */
   1080  1.31.2.2      phil int
   1081  1.31.2.2      phil if_printf(struct ifnet *ifp, const char *fmt, ...)
   1082  1.31.2.2      phil {
   1083  1.31.2.2      phil         char if_fmt[256];
   1084  1.31.2.2      phil         va_list ap;
   1085  1.31.2.2      phil 
   1086  1.31.2.2      phil         snprintf(if_fmt, sizeof(if_fmt), "%s: %s", ifp->if_xname, fmt);
   1087  1.31.2.2      phil         va_start(ap, fmt);
   1088  1.31.2.2      phil         vlog(LOG_INFO, if_fmt, ap);
   1089  1.31.2.2      phil         va_end(ap);
   1090  1.31.2.2      phil         return (0);
   1091  1.31.2.2      phil }
   1092  1.31.2.2      phil 
   1093  1.31.2.2      phil /*
   1094  1.31.2.2      phil  * Set the m_data pointer of a newly-allocated mbuf
   1095  1.31.2.2      phil  * to place an object of the specified size at the
   1096  1.31.2.2      phil  * end of the mbuf, longword aligned.
   1097  1.31.2.2      phil  */
   1098  1.31.2.2      phil void
   1099  1.31.2.2      phil m_align(struct mbuf *m, int len)
   1100  1.31.2.2      phil {
   1101  1.31.2.2      phil 	int adjust;
   1102  1.31.2.2      phil 
   1103  1.31.2.2      phil 	KASSERT(len != M_COPYALL);
   1104  1.31.2.2      phil 
   1105  1.31.2.2      phil 	if (m->m_flags & M_EXT)
   1106  1.31.2.2      phil 		adjust = m->m_ext.ext_size - len;
   1107  1.31.2.2      phil 	else if (m->m_flags & M_PKTHDR)
   1108  1.31.2.2      phil 		adjust = MHLEN - len;
   1109  1.31.2.2      phil 	else
   1110  1.31.2.2      phil 		adjust = MLEN - len;
   1111  1.31.2.2      phil 	m->m_data += adjust &~ (sizeof(long)-1);
   1112  1.31.2.2      phil }
   1113  1.31.2.2      phil 
   1114  1.31.2.2      phil /*
   1115  1.31.2.2      phil  * Append the specified data to the indicated mbuf chain,
   1116  1.31.2.2      phil  * Extend the mbuf chain if the new data does not fit in
   1117  1.31.2.2      phil  * existing space.
   1118  1.31.2.2      phil  *
   1119  1.31.2.2      phil  * Return 1 if able to complete the job; otherwise 0.
   1120  1.31.2.2      phil  */
   1121  1.31.2.2      phil int
   1122  1.31.2.2      phil m_append(struct mbuf *m0, int len, const void *cpv)
   1123  1.31.2.2      phil {
   1124  1.31.2.2      phil 	struct mbuf *m, *n;
   1125  1.31.2.2      phil 	int remainder, space;
   1126  1.31.2.2      phil 	const char *cp = cpv;
   1127  1.31.2.2      phil 
   1128  1.31.2.2      phil 	KASSERT(len != M_COPYALL);
   1129  1.31.2.2      phil 	for (m = m0; m->m_next != NULL; m = m->m_next)
   1130  1.31.2.2      phil 		continue;
   1131  1.31.2.2      phil 	remainder = len;
   1132  1.31.2.2      phil 	space = M_TRAILINGSPACE(m);
   1133  1.31.2.2      phil 	if (space > 0) {
   1134  1.31.2.2      phil 		/*
   1135  1.31.2.2      phil 		 * Copy into available space.
   1136  1.31.2.2      phil 		 */
   1137  1.31.2.2      phil 		if (space > remainder)
   1138  1.31.2.2      phil 			space = remainder;
   1139  1.31.2.2      phil 		memmove(mtod(m, char *) + m->m_len, cp, space);
   1140  1.31.2.2      phil 		m->m_len += space;
   1141  1.31.2.2      phil 		cp = cp + space, remainder -= space;
   1142  1.31.2.2      phil 	}
   1143  1.31.2.2      phil 	while (remainder > 0) {
   1144  1.31.2.2      phil 		/*
   1145  1.31.2.2      phil 		 * Allocate a new mbuf; could check space
   1146  1.31.2.2      phil 		 * and allocate a cluster instead.
   1147  1.31.2.2      phil 		 */
   1148  1.31.2.2      phil 		n = m_get(M_DONTWAIT, m->m_type);
   1149  1.31.2.2      phil 		if (n == NULL)
   1150  1.31.2.2      phil 			break;
   1151  1.31.2.2      phil 		n->m_len = min(MLEN, remainder);
   1152  1.31.2.2      phil 		memmove(mtod(n, void *), cp, n->m_len);
   1153  1.31.2.2      phil 		cp += n->m_len, remainder -= n->m_len;
   1154  1.31.2.2      phil 		m->m_next = n;
   1155  1.31.2.2      phil 		m = n;
   1156  1.31.2.2      phil 	}
   1157  1.31.2.2      phil 	if (m0->m_flags & M_PKTHDR)
   1158  1.31.2.2      phil 		m0->m_pkthdr.len += len - remainder;
   1159  1.31.2.2      phil 	return (remainder == 0);
   1160  1.31.2.2      phil }
   1161  1.31.2.2      phil 
   1162  1.31.2.2      phil /*
   1163  1.31.2.2      phil  * Create a writable copy of the mbuf chain.  While doing this
   1164  1.31.2.2      phil  * we compact the chain with a goal of producing a chain with
   1165  1.31.2.2      phil  * at most two mbufs.  The second mbuf in this chain is likely
   1166  1.31.2.2      phil  * to be a cluster.  The primary purpose of this work is to create
   1167  1.31.2.2      phil  * a writable packet for encryption, compression, etc.  The
   1168  1.31.2.2      phil  * secondary goal is to linearize the data so the data can be
   1169  1.31.2.2      phil  * passed to crypto hardware in the most efficient manner possible.
   1170  1.31.2.2      phil  */
   1171  1.31.2.2      phil struct mbuf *
   1172  1.31.2.2      phil m_unshare(struct mbuf *m0, int how)
   1173  1.31.2.2      phil {
   1174  1.31.2.2      phil 	struct mbuf *m, *mprev;
   1175  1.31.2.2      phil 	struct mbuf *n, *mfirst, *mlast;
   1176  1.31.2.2      phil 	int len, off;
   1177  1.31.2.2      phil 
   1178  1.31.2.2      phil 	mprev = NULL;
   1179  1.31.2.2      phil 	for (m = m0; m != NULL; m = mprev->m_next) {
   1180  1.31.2.2      phil 		/*
   1181  1.31.2.2      phil 		 * Regular mbufs are ignored unless there's a cluster
   1182  1.31.2.2      phil 		 * in front of it that we can use to coalesce.  We do
   1183  1.31.2.2      phil 		 * the latter mainly so later clusters can be coalesced
   1184  1.31.2.2      phil 		 * also w/o having to handle them specially (i.e. convert
   1185  1.31.2.2      phil 		 * mbuf+cluster -> cluster).  This optimization is heavily
   1186  1.31.2.2      phil 		 * influenced by the assumption that we're running over
   1187  1.31.2.2      phil 		 * Ethernet where MCLBYTES is large enough that the max
   1188  1.31.2.2      phil 		 * packet size will permit lots of coalescing into a
   1189  1.31.2.2      phil 		 * single cluster.  This in turn permits efficient
   1190  1.31.2.2      phil 		 * crypto operations, especially when using hardware.
   1191  1.31.2.2      phil 		 */
   1192  1.31.2.2      phil 		if ((m->m_flags & M_EXT) == 0) {
   1193  1.31.2.2      phil 			if (mprev && (mprev->m_flags & M_EXT) &&
   1194  1.31.2.2      phil 			    m->m_len <= M_TRAILINGSPACE(mprev)) {
   1195  1.31.2.2      phil 				/* XXX: this ignores mbuf types */
   1196  1.31.2.3      phil 				memcpy(mtod(mprev, __uint8_t *) + mprev->m_len,
   1197  1.31.2.3      phil 				    mtod(m, __uint8_t *), m->m_len);
   1198  1.31.2.2      phil 				mprev->m_len += m->m_len;
   1199  1.31.2.2      phil 				mprev->m_next = m->m_next;	/* unlink from chain */
   1200  1.31.2.2      phil 				m_free(m);			/* reclaim mbuf */
   1201  1.31.2.2      phil 			} else {
   1202  1.31.2.2      phil 				mprev = m;
   1203  1.31.2.2      phil 			}
   1204  1.31.2.2      phil 			continue;
   1205  1.31.2.2      phil 		}
   1206  1.31.2.2      phil 		/*
   1207  1.31.2.2      phil 		 * Writable mbufs are left alone (for now).
   1208  1.31.2.2      phil 		 */
   1209  1.31.2.2      phil 		if (!M_READONLY(m)) {
   1210  1.31.2.2      phil 			mprev = m;
   1211  1.31.2.2      phil 			continue;
   1212  1.31.2.2      phil 		}
   1213  1.31.2.2      phil 
   1214  1.31.2.2      phil 		/*
   1215  1.31.2.2      phil 		 * Not writable, replace with a copy or coalesce with
   1216  1.31.2.2      phil 		 * the previous mbuf if possible (since we have to copy
   1217  1.31.2.2      phil 		 * it anyway, we try to reduce the number of mbufs and
   1218  1.31.2.2      phil 		 * clusters so that future work is easier).
   1219  1.31.2.2      phil 		 */
   1220  1.31.2.2      phil 		FBSDKASSERT(m->m_flags & M_EXT, ("m_flags 0x%x", m->m_flags));
   1221  1.31.2.2      phil 		/* NB: we only coalesce into a cluster or larger */
   1222  1.31.2.2      phil 		if (mprev != NULL && (mprev->m_flags & M_EXT) &&
   1223  1.31.2.2      phil 		    m->m_len <= M_TRAILINGSPACE(mprev)) {
   1224  1.31.2.2      phil 			/* XXX: this ignores mbuf types */
   1225  1.31.2.3      phil 			memcpy(mtod(mprev, __uint8_t *) + mprev->m_len,
   1226  1.31.2.3      phil 			    mtod(m, __uint8_t *), m->m_len);
   1227  1.31.2.2      phil 			mprev->m_len += m->m_len;
   1228  1.31.2.2      phil 			mprev->m_next = m->m_next;	/* unlink from chain */
   1229  1.31.2.2      phil 			m_free(m);			/* reclaim mbuf */
   1230  1.31.2.2      phil 			continue;
   1231  1.31.2.2      phil 		}
   1232  1.31.2.2      phil 
   1233  1.31.2.2      phil 		/*
   1234  1.31.2.2      phil 		 * Allocate new space to hold the copy and copy the data.
   1235  1.31.2.2      phil 		 * We deal with jumbo mbufs (i.e. m_len > MCLBYTES) by
   1236  1.31.2.2      phil 		 * splitting them into clusters.  We could just malloc a
   1237  1.31.2.2      phil 		 * buffer and make it external but too many device drivers
   1238  1.31.2.2      phil 		 * don't know how to break up the non-contiguous memory when
   1239  1.31.2.2      phil 		 * doing DMA.
   1240  1.31.2.2      phil 		 */
   1241  1.31.2.2      phil 		n = m_getcl(how, m->m_type, m->m_flags & M_COPYFLAGS);
   1242  1.31.2.2      phil 		if (n == NULL) {
   1243  1.31.2.2      phil 			m_freem(m0);
   1244  1.31.2.2      phil 			return (NULL);
   1245  1.31.2.2      phil 		}
   1246  1.31.2.2      phil 		if (m->m_flags & M_PKTHDR) {
   1247  1.31.2.2      phil 			FBSDKASSERT(mprev == NULL, ("%s: m0 %p, m %p has M_PKTHDR",
   1248  1.31.2.2      phil 			    __func__, m0, m));
   1249  1.31.2.2      phil 			m_move_pkthdr(n, m);
   1250  1.31.2.2      phil 		}
   1251  1.31.2.2      phil 		len = m->m_len;
   1252  1.31.2.2      phil 		off = 0;
   1253  1.31.2.2      phil 		mfirst = n;
   1254  1.31.2.2      phil 		mlast = NULL;
   1255  1.31.2.2      phil 		for (;;) {
   1256  1.31.2.2      phil 			int cc = min(len, MCLBYTES);
   1257  1.31.2.3      phil 			memcpy(mtod(n, __uint8_t *), mtod(m, __uint8_t *) + off, cc);
   1258  1.31.2.2      phil 			n->m_len = cc;
   1259  1.31.2.2      phil 			if (mlast != NULL)
   1260  1.31.2.2      phil 				mlast->m_next = n;
   1261  1.31.2.2      phil 			mlast = n;
   1262  1.31.2.2      phil #if 0
   1263  1.31.2.2      phil 			newipsecstat.ips_clcopied++;
   1264  1.31.2.2      phil #endif
   1265  1.31.2.2      phil 
   1266  1.31.2.2      phil 			len -= cc;
   1267  1.31.2.2      phil 			if (len <= 0)
   1268  1.31.2.2      phil 				break;
   1269  1.31.2.2      phil 			off += cc;
   1270  1.31.2.2      phil 
   1271  1.31.2.2      phil 			n = m_getcl(how, m->m_type, m->m_flags & M_COPYFLAGS);
   1272  1.31.2.2      phil 			if (n == NULL) {
   1273  1.31.2.2      phil 				m_freem(mfirst);
   1274  1.31.2.2      phil 				m_freem(m0);
   1275  1.31.2.2      phil 				return (NULL);
   1276  1.31.2.2      phil 			}
   1277  1.31.2.2      phil 		}
   1278  1.31.2.2      phil 		n->m_next = m->m_next;
   1279  1.31.2.2      phil 		if (mprev == NULL)
   1280  1.31.2.2      phil 			m0 = mfirst;		/* new head of chain */
   1281  1.31.2.2      phil 		else
   1282  1.31.2.2      phil 			mprev->m_next = mfirst;	/* replace old mbuf */
   1283  1.31.2.2      phil 		m_free(m);			/* release old mbuf */
   1284  1.31.2.2      phil 		mprev = mfirst;
   1285  1.31.2.2      phil 	}
   1286  1.31.2.2      phil 	return (m0);
   1287  1.31.2.2      phil }
   1288