xref: /freebsd/sys/net80211/ieee80211.c (revision e2db307ebc5d29e4fdd1c88fc4a748fb8ca678f4)
11a1e1d21SSam Leffler /*-
27535e66aSSam Leffler  * Copyright (c) 2001 Atsushi Onoe
310ad9a77SSam Leffler  * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
41a1e1d21SSam Leffler  * All rights reserved.
51a1e1d21SSam Leffler  *
61a1e1d21SSam Leffler  * Redistribution and use in source and binary forms, with or without
71a1e1d21SSam Leffler  * modification, are permitted provided that the following conditions
81a1e1d21SSam Leffler  * are met:
91a1e1d21SSam Leffler  * 1. Redistributions of source code must retain the above copyright
107535e66aSSam Leffler  *    notice, this list of conditions and the following disclaimer.
117535e66aSSam Leffler  * 2. Redistributions in binary form must reproduce the above copyright
127535e66aSSam Leffler  *    notice, this list of conditions and the following disclaimer in the
137535e66aSSam Leffler  *    documentation and/or other materials provided with the distribution.
141a1e1d21SSam Leffler  *
157535e66aSSam Leffler  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
167535e66aSSam Leffler  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
177535e66aSSam Leffler  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
187535e66aSSam Leffler  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
197535e66aSSam Leffler  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
207535e66aSSam Leffler  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
217535e66aSSam Leffler  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
227535e66aSSam Leffler  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
237535e66aSSam Leffler  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
247535e66aSSam Leffler  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
251a1e1d21SSam Leffler  */
261a1e1d21SSam Leffler 
271a1e1d21SSam Leffler #include <sys/cdefs.h>
281a1e1d21SSam Leffler __FBSDID("$FreeBSD$");
291a1e1d21SSam Leffler 
301a1e1d21SSam Leffler /*
311a1e1d21SSam Leffler  * IEEE 802.11 generic handler
321a1e1d21SSam Leffler  */
33b032f27cSSam Leffler #include "opt_wlan.h"
341a1e1d21SSam Leffler 
351a1e1d21SSam Leffler #include <sys/param.h>
361a1e1d21SSam Leffler #include <sys/systm.h>
371a1e1d21SSam Leffler #include <sys/kernel.h>
388ec07310SGleb Smirnoff #include <sys/malloc.h>
398a1b9b6aSSam Leffler #include <sys/socket.h>
407a79cebfSGleb Smirnoff #include <sys/sbuf.h>
411a1e1d21SSam Leffler 
42c8f5794eSGleb Smirnoff #include <machine/stdarg.h>
43c8f5794eSGleb Smirnoff 
441a1e1d21SSam Leffler #include <net/if.h>
4576039bc8SGleb Smirnoff #include <net/if_var.h>
46b032f27cSSam Leffler #include <net/if_dl.h>
471a1e1d21SSam Leffler #include <net/if_media.h>
48b032f27cSSam Leffler #include <net/if_types.h>
491a1e1d21SSam Leffler #include <net/ethernet.h>
501a1e1d21SSam Leffler 
511a1e1d21SSam Leffler #include <net80211/ieee80211_var.h>
52b032f27cSSam Leffler #include <net80211/ieee80211_regdomain.h>
53616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
54616190d0SSam Leffler #include <net80211/ieee80211_superg.h>
55616190d0SSam Leffler #endif
56b6108616SRui Paulo #include <net80211/ieee80211_ratectl.h>
5767f4aa38SAdrian Chadd #include <net80211/ieee80211_vht.h>
581a1e1d21SSam Leffler 
591a1e1d21SSam Leffler #include <net/bpf.h>
601a1e1d21SSam Leffler 
61bb77492fSSam Leffler const char *ieee80211_phymode_name[IEEE80211_MODE_MAX] = {
62bb77492fSSam Leffler 	[IEEE80211_MODE_AUTO]	  = "auto",
63bb77492fSSam Leffler 	[IEEE80211_MODE_11A]	  = "11a",
64bb77492fSSam Leffler 	[IEEE80211_MODE_11B]	  = "11b",
65bb77492fSSam Leffler 	[IEEE80211_MODE_11G]	  = "11g",
66bb77492fSSam Leffler 	[IEEE80211_MODE_FH]	  = "FH",
67bb77492fSSam Leffler 	[IEEE80211_MODE_TURBO_A]  = "turboA",
68bb77492fSSam Leffler 	[IEEE80211_MODE_TURBO_G]  = "turboG",
69bb77492fSSam Leffler 	[IEEE80211_MODE_STURBO_A] = "sturboA",
706a76ae21SSam Leffler 	[IEEE80211_MODE_HALF]	  = "half",
716a76ae21SSam Leffler 	[IEEE80211_MODE_QUARTER]  = "quarter",
72bb77492fSSam Leffler 	[IEEE80211_MODE_11NA]	  = "11na",
73bb77492fSSam Leffler 	[IEEE80211_MODE_11NG]	  = "11ng",
740c67d389SAdrian Chadd 	[IEEE80211_MODE_VHT_2GHZ]	  = "11acg",
750c67d389SAdrian Chadd 	[IEEE80211_MODE_VHT_5GHZ]	  = "11ac",
761a1e1d21SSam Leffler };
77c43feedeSSam Leffler /* map ieee80211_opmode to the corresponding capability bit */
78c43feedeSSam Leffler const int ieee80211_opcap[IEEE80211_OPMODE_MAX] = {
79c43feedeSSam Leffler 	[IEEE80211_M_IBSS]	= IEEE80211_C_IBSS,
80c43feedeSSam Leffler 	[IEEE80211_M_WDS]	= IEEE80211_C_WDS,
81c43feedeSSam Leffler 	[IEEE80211_M_STA]	= IEEE80211_C_STA,
82c43feedeSSam Leffler 	[IEEE80211_M_AHDEMO]	= IEEE80211_C_AHDEMO,
83c43feedeSSam Leffler 	[IEEE80211_M_HOSTAP]	= IEEE80211_C_HOSTAP,
84c43feedeSSam Leffler 	[IEEE80211_M_MONITOR]	= IEEE80211_C_MONITOR,
8559aa14a9SRui Paulo #ifdef IEEE80211_SUPPORT_MESH
8659aa14a9SRui Paulo 	[IEEE80211_M_MBSS]	= IEEE80211_C_MBSS,
8759aa14a9SRui Paulo #endif
88c43feedeSSam Leffler };
89c43feedeSSam Leffler 
9092002144SGleb Smirnoff const uint8_t ieee80211broadcastaddr[IEEE80211_ADDR_LEN] =
91b032f27cSSam Leffler 	{ 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
92b032f27cSSam Leffler 
93b032f27cSSam Leffler static	void ieee80211_syncflag_locked(struct ieee80211com *ic, int flag);
942bfc8a91SSam Leffler static	void ieee80211_syncflag_ht_locked(struct ieee80211com *ic, int flag);
95b032f27cSSam Leffler static	void ieee80211_syncflag_ext_locked(struct ieee80211com *ic, int flag);
968e71a4aaSAdrian Chadd static	void ieee80211_syncflag_vht_locked(struct ieee80211com *ic, int flag);
97b032f27cSSam Leffler static	int ieee80211_media_setup(struct ieee80211com *ic,
98b032f27cSSam Leffler 		struct ifmedia *media, int caps, int addsta,
99b032f27cSSam Leffler 		ifm_change_cb_t media_change, ifm_stat_cb_t media_stat);
100b032f27cSSam Leffler static	int media_status(enum ieee80211_opmode,
101b032f27cSSam Leffler 		const struct ieee80211_channel *);
10228da1b56SGleb Smirnoff static uint64_t ieee80211_get_counter(struct ifnet *, ift_counter);
103b032f27cSSam Leffler 
104b032f27cSSam Leffler MALLOC_DEFINE(M_80211_VAP, "80211vap", "802.11 vap state");
1051a1e1d21SSam Leffler 
106aadecb1aSSam Leffler /*
107aadecb1aSSam Leffler  * Default supported rates for 802.11 operation (in IEEE .5Mb units).
108aadecb1aSSam Leffler  */
109aadecb1aSSam Leffler #define	B(r)	((r) | IEEE80211_RATE_BASIC)
110aadecb1aSSam Leffler static const struct ieee80211_rateset ieee80211_rateset_11a =
111aadecb1aSSam Leffler 	{ 8, { B(12), 18, B(24), 36, B(48), 72, 96, 108 } };
11241b3c790SSam Leffler static const struct ieee80211_rateset ieee80211_rateset_half =
11341b3c790SSam Leffler 	{ 8, { B(6), 9, B(12), 18, B(24), 36, 48, 54 } };
11441b3c790SSam Leffler static const struct ieee80211_rateset ieee80211_rateset_quarter =
11541b3c790SSam Leffler 	{ 8, { B(3), 4, B(6), 9, B(12), 18, 24, 27 } };
116aadecb1aSSam Leffler static const struct ieee80211_rateset ieee80211_rateset_11b =
117aadecb1aSSam Leffler 	{ 4, { B(2), B(4), B(11), B(22) } };
118aadecb1aSSam Leffler /* NB: OFDM rates are handled specially based on mode */
119aadecb1aSSam Leffler static const struct ieee80211_rateset ieee80211_rateset_11g =
120aadecb1aSSam Leffler 	{ 12, { B(2), B(4), B(11), B(22), 12, 18, 24, 36, 48, 72, 96, 108 } };
121aadecb1aSSam Leffler #undef B
122aadecb1aSSam Leffler 
12367f4aa38SAdrian Chadd static int set_vht_extchan(struct ieee80211_channel *c);
12467f4aa38SAdrian Chadd 
1251a1e1d21SSam Leffler /*
1261a1e1d21SSam Leffler  * Fill in 802.11 available channel set, mark
1271a1e1d21SSam Leffler  * all available channels as active, and pick
1281a1e1d21SSam Leffler  * a default channel if not already specified.
1291a1e1d21SSam Leffler  */
1307a79cebfSGleb Smirnoff void
13141b3c790SSam Leffler ieee80211_chan_init(struct ieee80211com *ic)
13241b3c790SSam Leffler {
13341b3c790SSam Leffler #define	DEFAULTRATES(m, def) do { \
1346a76ae21SSam Leffler 	if (ic->ic_sup_rates[m].rs_nrates == 0) \
13545fa8b0eSSam Leffler 		ic->ic_sup_rates[m] = def; \
13641b3c790SSam Leffler } while (0)
13741b3c790SSam Leffler 	struct ieee80211_channel *c;
13841b3c790SSam Leffler 	int i;
13941b3c790SSam Leffler 
14031378b1cSSam Leffler 	KASSERT(0 < ic->ic_nchans && ic->ic_nchans <= IEEE80211_CHAN_MAX,
14168e8e04eSSam Leffler 		("invalid number of channels specified: %u", ic->ic_nchans));
1421a1e1d21SSam Leffler 	memset(ic->ic_chan_avail, 0, sizeof(ic->ic_chan_avail));
143b032f27cSSam Leffler 	memset(ic->ic_modecaps, 0, sizeof(ic->ic_modecaps));
1446dbd16f1SSam Leffler 	setbit(ic->ic_modecaps, IEEE80211_MODE_AUTO);
14568e8e04eSSam Leffler 	for (i = 0; i < ic->ic_nchans; i++) {
1461a1e1d21SSam Leffler 		c = &ic->ic_channels[i];
14768e8e04eSSam Leffler 		KASSERT(c->ic_flags != 0, ("channel with no flags"));
1489c2c544dSSam Leffler 		/*
1499c2c544dSSam Leffler 		 * Help drivers that work only with frequencies by filling
1509c2c544dSSam Leffler 		 * in IEEE channel #'s if not already calculated.  Note this
1519c2c544dSSam Leffler 		 * mimics similar work done in ieee80211_setregdomain when
1529c2c544dSSam Leffler 		 * changing regulatory state.
1539c2c544dSSam Leffler 		 */
1549c2c544dSSam Leffler 		if (c->ic_ieee == 0)
1559c2c544dSSam Leffler 			c->ic_ieee = ieee80211_mhz2ieee(c->ic_freq,c->ic_flags);
15667f4aa38SAdrian Chadd 
15767f4aa38SAdrian Chadd 		/*
15867f4aa38SAdrian Chadd 		 * Setup the HT40/VHT40 upper/lower bits.
15967f4aa38SAdrian Chadd 		 * The VHT80 math is done elsewhere.
16067f4aa38SAdrian Chadd 		 */
1619c2c544dSSam Leffler 		if (IEEE80211_IS_CHAN_HT40(c) && c->ic_extieee == 0)
1629c2c544dSSam Leffler 			c->ic_extieee = ieee80211_mhz2ieee(c->ic_freq +
1639c2c544dSSam Leffler 			    (IEEE80211_IS_CHAN_HT40U(c) ? 20 : -20),
1649c2c544dSSam Leffler 			    c->ic_flags);
16567f4aa38SAdrian Chadd 
16667f4aa38SAdrian Chadd 		/* Update VHT math */
16767f4aa38SAdrian Chadd 		/*
16867f4aa38SAdrian Chadd 		 * XXX VHT again, note that this assumes VHT80 channels
16967f4aa38SAdrian Chadd 		 * are legit already
17067f4aa38SAdrian Chadd 		 */
17167f4aa38SAdrian Chadd 		set_vht_extchan(c);
17267f4aa38SAdrian Chadd 
1739c2c544dSSam Leffler 		/* default max tx power to max regulatory */
1749c2c544dSSam Leffler 		if (c->ic_maxpower == 0)
1759c2c544dSSam Leffler 			c->ic_maxpower = 2*c->ic_maxregpower;
17668e8e04eSSam Leffler 		setbit(ic->ic_chan_avail, c->ic_ieee);
1771a1e1d21SSam Leffler 		/*
1781a1e1d21SSam Leffler 		 * Identify mode capabilities.
1791a1e1d21SSam Leffler 		 */
1801a1e1d21SSam Leffler 		if (IEEE80211_IS_CHAN_A(c))
1816dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_11A);
1821a1e1d21SSam Leffler 		if (IEEE80211_IS_CHAN_B(c))
1836dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_11B);
18445fa8b0eSSam Leffler 		if (IEEE80211_IS_CHAN_ANYG(c))
1856dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_11G);
1864844aa7dSAtsushi Onoe 		if (IEEE80211_IS_CHAN_FHSS(c))
1876dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_FH);
18868e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_108A(c))
1896dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_TURBO_A);
1908a1b9b6aSSam Leffler 		if (IEEE80211_IS_CHAN_108G(c))
1916dbd16f1SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_TURBO_G);
19268e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_ST(c))
19368e8e04eSSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_STURBO_A);
1946a76ae21SSam Leffler 		if (IEEE80211_IS_CHAN_HALF(c))
1956a76ae21SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_HALF);
1966a76ae21SSam Leffler 		if (IEEE80211_IS_CHAN_QUARTER(c))
1976a76ae21SSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_QUARTER);
19868e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_HTA(c))
19968e8e04eSSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_11NA);
20068e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_HTG(c))
20168e8e04eSSam Leffler 			setbit(ic->ic_modecaps, IEEE80211_MODE_11NG);
2020c67d389SAdrian Chadd 		if (IEEE80211_IS_CHAN_VHTA(c))
2030c67d389SAdrian Chadd 			setbit(ic->ic_modecaps, IEEE80211_MODE_VHT_5GHZ);
2040c67d389SAdrian Chadd 		if (IEEE80211_IS_CHAN_VHTG(c))
2050c67d389SAdrian Chadd 			setbit(ic->ic_modecaps, IEEE80211_MODE_VHT_2GHZ);
20668e8e04eSSam Leffler 	}
20768e8e04eSSam Leffler 	/* initialize candidate channels to all available */
20868e8e04eSSam Leffler 	memcpy(ic->ic_chan_active, ic->ic_chan_avail,
20968e8e04eSSam Leffler 		sizeof(ic->ic_chan_avail));
21068e8e04eSSam Leffler 
211b032f27cSSam Leffler 	/* sort channel table to allow lookup optimizations */
212b032f27cSSam Leffler 	ieee80211_sort_channels(ic->ic_channels, ic->ic_nchans);
213b032f27cSSam Leffler 
214b032f27cSSam Leffler 	/* invalidate any previous state */
21568e8e04eSSam Leffler 	ic->ic_bsschan = IEEE80211_CHAN_ANYC;
216ab562eefSSam Leffler 	ic->ic_prevchan = NULL;
217b032f27cSSam Leffler 	ic->ic_csa_newchan = NULL;
218b5c99415SSam Leffler 	/* arbitrarily pick the first channel */
21968e8e04eSSam Leffler 	ic->ic_curchan = &ic->ic_channels[0];
22026d39e2cSSam Leffler 	ic->ic_rt = ieee80211_get_ratetable(ic->ic_curchan);
221aadecb1aSSam Leffler 
222aadecb1aSSam Leffler 	/* fillin well-known rate sets if driver has not specified */
22341b3c790SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_11B,	 ieee80211_rateset_11b);
22441b3c790SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_11G,	 ieee80211_rateset_11g);
22541b3c790SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_11A,	 ieee80211_rateset_11a);
22641b3c790SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_TURBO_A,	 ieee80211_rateset_11a);
22741b3c790SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_TURBO_G,	 ieee80211_rateset_11g);
2288500d65dSSam Leffler 	DEFAULTRATES(IEEE80211_MODE_STURBO_A,	 ieee80211_rateset_11a);
2296a76ae21SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_HALF,	 ieee80211_rateset_half);
2306a76ae21SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_QUARTER,	 ieee80211_rateset_quarter);
23140432d36SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_11NA,	 ieee80211_rateset_11a);
23240432d36SSam Leffler 	DEFAULTRATES(IEEE80211_MODE_11NG,	 ieee80211_rateset_11g);
2330c67d389SAdrian Chadd 	DEFAULTRATES(IEEE80211_MODE_VHT_2GHZ,	 ieee80211_rateset_11g);
2340c67d389SAdrian Chadd 	DEFAULTRATES(IEEE80211_MODE_VHT_5GHZ,	 ieee80211_rateset_11a);
23541b3c790SSam Leffler 
23641b3c790SSam Leffler 	/*
237fbbe47a9SBernhard Schmidt 	 * Setup required information to fill the mcsset field, if driver did
238fbbe47a9SBernhard Schmidt 	 * not. Assume a 2T2R setup for historic reasons.
239fbbe47a9SBernhard Schmidt 	 */
240fbbe47a9SBernhard Schmidt 	if (ic->ic_rxstream == 0)
241fbbe47a9SBernhard Schmidt 		ic->ic_rxstream = 2;
242fbbe47a9SBernhard Schmidt 	if (ic->ic_txstream == 0)
243fbbe47a9SBernhard Schmidt 		ic->ic_txstream = 2;
244fbbe47a9SBernhard Schmidt 
245dfabbaa0SAndriy Voskoboinyk 	ieee80211_init_suphtrates(ic);
246dfabbaa0SAndriy Voskoboinyk 
247fbbe47a9SBernhard Schmidt 	/*
24841b3c790SSam Leffler 	 * Set auto mode to reset active channel state and any desired channel.
24941b3c790SSam Leffler 	 */
25041b3c790SSam Leffler 	(void) ieee80211_setmode(ic, IEEE80211_MODE_AUTO);
25141b3c790SSam Leffler #undef DEFAULTRATES
25241b3c790SSam Leffler }
25341b3c790SSam Leffler 
254b032f27cSSam Leffler static void
255272f6adeSGleb Smirnoff null_update_mcast(struct ieee80211com *ic)
256b032f27cSSam Leffler {
257272f6adeSGleb Smirnoff 
258272f6adeSGleb Smirnoff 	ic_printf(ic, "need multicast update callback\n");
259b032f27cSSam Leffler }
260b032f27cSSam Leffler 
261b032f27cSSam Leffler static void
262272f6adeSGleb Smirnoff null_update_promisc(struct ieee80211com *ic)
263b032f27cSSam Leffler {
264272f6adeSGleb Smirnoff 
265272f6adeSGleb Smirnoff 	ic_printf(ic, "need promiscuous mode update callback\n");
266b032f27cSSam Leffler }
267b032f27cSSam Leffler 
268b94299c4SAdrian Chadd static void
269b94299c4SAdrian Chadd null_update_chw(struct ieee80211com *ic)
270b94299c4SAdrian Chadd {
271b94299c4SAdrian Chadd 
272c8f5794eSGleb Smirnoff 	ic_printf(ic, "%s: need callback\n", __func__);
273c8f5794eSGleb Smirnoff }
274c8f5794eSGleb Smirnoff 
275c8f5794eSGleb Smirnoff int
276c8f5794eSGleb Smirnoff ic_printf(struct ieee80211com *ic, const char * fmt, ...)
277c8f5794eSGleb Smirnoff {
278c8f5794eSGleb Smirnoff 	va_list ap;
279c8f5794eSGleb Smirnoff 	int retval;
280c8f5794eSGleb Smirnoff 
281c8f5794eSGleb Smirnoff 	retval = printf("%s: ", ic->ic_name);
282c8f5794eSGleb Smirnoff 	va_start(ap, fmt);
283c8f5794eSGleb Smirnoff 	retval += vprintf(fmt, ap);
284c8f5794eSGleb Smirnoff 	va_end(ap);
285c8f5794eSGleb Smirnoff 	return (retval);
286b94299c4SAdrian Chadd }
287b94299c4SAdrian Chadd 
2887a79cebfSGleb Smirnoff static LIST_HEAD(, ieee80211com) ic_head = LIST_HEAD_INITIALIZER(ic_head);
2897a79cebfSGleb Smirnoff static struct mtx ic_list_mtx;
2907a79cebfSGleb Smirnoff MTX_SYSINIT(ic_list, &ic_list_mtx, "ieee80211com list", MTX_DEF);
2917a79cebfSGleb Smirnoff 
2927a79cebfSGleb Smirnoff static int
2937a79cebfSGleb Smirnoff sysctl_ieee80211coms(SYSCTL_HANDLER_ARGS)
2947a79cebfSGleb Smirnoff {
2957a79cebfSGleb Smirnoff 	struct ieee80211com *ic;
296f09a089eSAndriy Voskoboinyk 	struct sbuf sb;
2977a79cebfSGleb Smirnoff 	char *sp;
2987a79cebfSGleb Smirnoff 	int error;
2997a79cebfSGleb Smirnoff 
300f09a089eSAndriy Voskoboinyk 	error = sysctl_wire_old_buffer(req, 0);
301f09a089eSAndriy Voskoboinyk 	if (error)
302f09a089eSAndriy Voskoboinyk 		return (error);
303f09a089eSAndriy Voskoboinyk 	sbuf_new_for_sysctl(&sb, NULL, 8, req);
304f09a089eSAndriy Voskoboinyk 	sbuf_clear_flags(&sb, SBUF_INCLUDENUL);
3057a79cebfSGleb Smirnoff 	sp = "";
3067a79cebfSGleb Smirnoff 	mtx_lock(&ic_list_mtx);
3077a79cebfSGleb Smirnoff 	LIST_FOREACH(ic, &ic_head, ic_next) {
308f09a089eSAndriy Voskoboinyk 		sbuf_printf(&sb, "%s%s", sp, ic->ic_name);
3097a79cebfSGleb Smirnoff 		sp = " ";
3107a79cebfSGleb Smirnoff 	}
3117a79cebfSGleb Smirnoff 	mtx_unlock(&ic_list_mtx);
312f09a089eSAndriy Voskoboinyk 	error = sbuf_finish(&sb);
313f09a089eSAndriy Voskoboinyk 	sbuf_delete(&sb);
3147a79cebfSGleb Smirnoff 	return (error);
3157a79cebfSGleb Smirnoff }
3167a79cebfSGleb Smirnoff 
3177a79cebfSGleb Smirnoff SYSCTL_PROC(_net_wlan, OID_AUTO, devices,
3187a79cebfSGleb Smirnoff     CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, 0,
3197a79cebfSGleb Smirnoff     sysctl_ieee80211coms, "A", "names of available 802.11 devices");
3207a79cebfSGleb Smirnoff 
321b032f27cSSam Leffler /*
322b032f27cSSam Leffler  * Attach/setup the common net80211 state.  Called by
323b032f27cSSam Leffler  * the driver on attach to prior to creating any vap's.
324b032f27cSSam Leffler  */
32541b3c790SSam Leffler void
3267a79cebfSGleb Smirnoff ieee80211_ifattach(struct ieee80211com *ic)
32741b3c790SSam Leffler {
32841b3c790SSam Leffler 
329c8f5794eSGleb Smirnoff 	IEEE80211_LOCK_INIT(ic, ic->ic_name);
330c8f5794eSGleb Smirnoff 	IEEE80211_TX_LOCK_INIT(ic, ic->ic_name);
331b032f27cSSam Leffler 	TAILQ_INIT(&ic->ic_vaps);
3325efea30fSAndrew Thompson 
3335efea30fSAndrew Thompson 	/* Create a taskqueue for all state changes */
3345efea30fSAndrew Thompson 	ic->ic_tq = taskqueue_create("ic_taskq", M_WAITOK | M_ZERO,
3355efea30fSAndrew Thompson 	    taskqueue_thread_enqueue, &ic->ic_tq);
3367b2b15ebSAdrian Chadd 	taskqueue_start_threads(&ic->ic_tq, 1, PI_NET, "%s net80211 taskq",
3377fc10b6bSGleb Smirnoff 	    ic->ic_name);
33828da1b56SGleb Smirnoff 	ic->ic_ierrors = counter_u64_alloc(M_WAITOK);
33928da1b56SGleb Smirnoff 	ic->ic_oerrors = counter_u64_alloc(M_WAITOK);
34041b3c790SSam Leffler 	/*
34141b3c790SSam Leffler 	 * Fill in 802.11 available channel set, mark all
34241b3c790SSam Leffler 	 * available channels as active, and pick a default
34341b3c790SSam Leffler 	 * channel if not already specified.
34441b3c790SSam Leffler 	 */
3457a79cebfSGleb Smirnoff 	ieee80211_chan_init(ic);
34668e8e04eSSam Leffler 
347b032f27cSSam Leffler 	ic->ic_update_mcast = null_update_mcast;
348b032f27cSSam Leffler 	ic->ic_update_promisc = null_update_promisc;
349b94299c4SAdrian Chadd 	ic->ic_update_chw = null_update_chw;
3501a1e1d21SSam Leffler 
3515b16c28cSSam Leffler 	ic->ic_hash_key = arc4random();
352d365f9c7SSam Leffler 	ic->ic_bintval = IEEE80211_BINTVAL_DEFAULT;
353d365f9c7SSam Leffler 	ic->ic_lintval = ic->ic_bintval;
3548a1b9b6aSSam Leffler 	ic->ic_txpowlimit = IEEE80211_TXPOWER_MAX;
3558a1b9b6aSSam Leffler 
35668e8e04eSSam Leffler 	ieee80211_crypto_attach(ic);
3578a1b9b6aSSam Leffler 	ieee80211_node_attach(ic);
35868e8e04eSSam Leffler 	ieee80211_power_attach(ic);
3598a1b9b6aSSam Leffler 	ieee80211_proto_attach(ic);
360616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
361616190d0SSam Leffler 	ieee80211_superg_attach(ic);
362616190d0SSam Leffler #endif
36368e8e04eSSam Leffler 	ieee80211_ht_attach(ic);
36467f4aa38SAdrian Chadd 	ieee80211_vht_attach(ic);
36568e8e04eSSam Leffler 	ieee80211_scan_attach(ic);
366b032f27cSSam Leffler 	ieee80211_regdomain_attach(ic);
367e95e0edbSSam Leffler 	ieee80211_dfs_attach(ic);
3688a1b9b6aSSam Leffler 
369b032f27cSSam Leffler 	ieee80211_sysctl_attach(ic);
3708a1b9b6aSSam Leffler 
3717a79cebfSGleb Smirnoff 	mtx_lock(&ic_list_mtx);
3727a79cebfSGleb Smirnoff 	LIST_INSERT_HEAD(&ic_head, ic, ic_next);
3737a79cebfSGleb Smirnoff 	mtx_unlock(&ic_list_mtx);
3741a1e1d21SSam Leffler }
3751a1e1d21SSam Leffler 
376b032f27cSSam Leffler /*
377b032f27cSSam Leffler  * Detach net80211 state on device detach.  Tear down
378b032f27cSSam Leffler  * all vap's and reclaim all common state prior to the
379b032f27cSSam Leffler  * device state going away.  Note we may call back into
380b032f27cSSam Leffler  * driver; it must be prepared for this.
381b032f27cSSam Leffler  */
3821a1e1d21SSam Leffler void
3838a1b9b6aSSam Leffler ieee80211_ifdetach(struct ieee80211com *ic)
3841a1e1d21SSam Leffler {
385b032f27cSSam Leffler 	struct ieee80211vap *vap;
3861a1e1d21SSam Leffler 
3877a79cebfSGleb Smirnoff 	mtx_lock(&ic_list_mtx);
3887a79cebfSGleb Smirnoff 	LIST_REMOVE(ic, ic_next);
3897a79cebfSGleb Smirnoff 	mtx_unlock(&ic_list_mtx);
3905c600a90SSam Leffler 
3914061c639SAndriy Voskoboinyk 	taskqueue_drain(taskqueue_thread, &ic->ic_restart_task);
3924061c639SAndriy Voskoboinyk 
39330e4856aSAdrian Chadd 	/*
39430e4856aSAdrian Chadd 	 * The VAP is responsible for setting and clearing
39530e4856aSAdrian Chadd 	 * the VIMAGE context.
39630e4856aSAdrian Chadd 	 */
397b032f27cSSam Leffler 	while ((vap = TAILQ_FIRST(&ic->ic_vaps)) != NULL)
398b032f27cSSam Leffler 		ieee80211_vap_destroy(vap);
399ae55932eSAndrew Thompson 	ieee80211_waitfor_parent(ic);
4008a1b9b6aSSam Leffler 
4018a1b9b6aSSam Leffler 	ieee80211_sysctl_detach(ic);
402e95e0edbSSam Leffler 	ieee80211_dfs_detach(ic);
403b032f27cSSam Leffler 	ieee80211_regdomain_detach(ic);
40468e8e04eSSam Leffler 	ieee80211_scan_detach(ic);
405616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
406616190d0SSam Leffler 	ieee80211_superg_detach(ic);
407616190d0SSam Leffler #endif
40867f4aa38SAdrian Chadd 	ieee80211_vht_detach(ic);
40968e8e04eSSam Leffler 	ieee80211_ht_detach(ic);
410ca4ac7aeSSam Leffler 	/* NB: must be called before ieee80211_node_detach */
4118a1b9b6aSSam Leffler 	ieee80211_proto_detach(ic);
4128a1b9b6aSSam Leffler 	ieee80211_crypto_detach(ic);
41368e8e04eSSam Leffler 	ieee80211_power_detach(ic);
4148a1b9b6aSSam Leffler 	ieee80211_node_detach(ic);
4158a1b9b6aSSam Leffler 
41628da1b56SGleb Smirnoff 	counter_u64_free(ic->ic_ierrors);
41728da1b56SGleb Smirnoff 	counter_u64_free(ic->ic_oerrors);
41830e4856aSAdrian Chadd 
4195efea30fSAndrew Thompson 	taskqueue_free(ic->ic_tq);
4205cda6006SAdrian Chadd 	IEEE80211_TX_LOCK_DESTROY(ic);
42168e8e04eSSam Leffler 	IEEE80211_LOCK_DESTROY(ic);
422b032f27cSSam Leffler }
4238a1b9b6aSSam Leffler 
4247a79cebfSGleb Smirnoff struct ieee80211com *
4257a79cebfSGleb Smirnoff ieee80211_find_com(const char *name)
4267a79cebfSGleb Smirnoff {
4277a79cebfSGleb Smirnoff 	struct ieee80211com *ic;
4287a79cebfSGleb Smirnoff 
4297a79cebfSGleb Smirnoff 	mtx_lock(&ic_list_mtx);
4307a79cebfSGleb Smirnoff 	LIST_FOREACH(ic, &ic_head, ic_next)
4317a79cebfSGleb Smirnoff 		if (strcmp(ic->ic_name, name) == 0)
4327a79cebfSGleb Smirnoff 			break;
4337a79cebfSGleb Smirnoff 	mtx_unlock(&ic_list_mtx);
4347a79cebfSGleb Smirnoff 
4357a79cebfSGleb Smirnoff 	return (ic);
4367a79cebfSGleb Smirnoff }
4377a79cebfSGleb Smirnoff 
4387cde0202SAndriy Voskoboinyk void
4397cde0202SAndriy Voskoboinyk ieee80211_iterate_coms(ieee80211_com_iter_func *f, void *arg)
4407cde0202SAndriy Voskoboinyk {
4417cde0202SAndriy Voskoboinyk 	struct ieee80211com *ic;
4427cde0202SAndriy Voskoboinyk 
4437cde0202SAndriy Voskoboinyk 	mtx_lock(&ic_list_mtx);
4447cde0202SAndriy Voskoboinyk 	LIST_FOREACH(ic, &ic_head, ic_next)
4457cde0202SAndriy Voskoboinyk 		(*f)(arg, ic);
4467cde0202SAndriy Voskoboinyk 	mtx_unlock(&ic_list_mtx);
4477cde0202SAndriy Voskoboinyk }
4487cde0202SAndriy Voskoboinyk 
449b032f27cSSam Leffler /*
450b032f27cSSam Leffler  * Default reset method for use with the ioctl support.  This
451b032f27cSSam Leffler  * method is invoked after any state change in the 802.11
452b032f27cSSam Leffler  * layer that should be propagated to the hardware but not
453b032f27cSSam Leffler  * require re-initialization of the 802.11 state machine (e.g
454b032f27cSSam Leffler  * rescanning for an ap).  We always return ENETRESET which
455b032f27cSSam Leffler  * should cause the driver to re-initialize the device. Drivers
456b032f27cSSam Leffler  * can override this method to implement more optimized support.
457b032f27cSSam Leffler  */
458b032f27cSSam Leffler static int
459b032f27cSSam Leffler default_reset(struct ieee80211vap *vap, u_long cmd)
460b032f27cSSam Leffler {
461b032f27cSSam Leffler 	return ENETRESET;
462b032f27cSSam Leffler }
463b032f27cSSam Leffler 
464b032f27cSSam Leffler /*
465781487cfSAdrian Chadd  * Default for updating the VAP default TX key index.
466781487cfSAdrian Chadd  *
467781487cfSAdrian Chadd  * Drivers that support TX offload as well as hardware encryption offload
468781487cfSAdrian Chadd  * may need to be informed of key index changes separate from the key
469781487cfSAdrian Chadd  * update.
470781487cfSAdrian Chadd  */
471781487cfSAdrian Chadd static void
472781487cfSAdrian Chadd default_update_deftxkey(struct ieee80211vap *vap, ieee80211_keyix kid)
473781487cfSAdrian Chadd {
474781487cfSAdrian Chadd 
475781487cfSAdrian Chadd 	/* XXX assert validity */
476781487cfSAdrian Chadd 	/* XXX assert we're in a key update block */
477781487cfSAdrian Chadd 	vap->iv_def_txkey = kid;
478781487cfSAdrian Chadd }
479781487cfSAdrian Chadd 
480781487cfSAdrian Chadd /*
48128da1b56SGleb Smirnoff  * Add underlying device errors to vap errors.
48228da1b56SGleb Smirnoff  */
48328da1b56SGleb Smirnoff static uint64_t
48428da1b56SGleb Smirnoff ieee80211_get_counter(struct ifnet *ifp, ift_counter cnt)
48528da1b56SGleb Smirnoff {
48628da1b56SGleb Smirnoff 	struct ieee80211vap *vap = ifp->if_softc;
48728da1b56SGleb Smirnoff 	struct ieee80211com *ic = vap->iv_ic;
48828da1b56SGleb Smirnoff 	uint64_t rv;
48928da1b56SGleb Smirnoff 
49028da1b56SGleb Smirnoff 	rv = if_get_counter_default(ifp, cnt);
49128da1b56SGleb Smirnoff 	switch (cnt) {
49228da1b56SGleb Smirnoff 	case IFCOUNTER_OERRORS:
49328da1b56SGleb Smirnoff 		rv += counter_u64_fetch(ic->ic_oerrors);
49428da1b56SGleb Smirnoff 		break;
49528da1b56SGleb Smirnoff 	case IFCOUNTER_IERRORS:
49628da1b56SGleb Smirnoff 		rv += counter_u64_fetch(ic->ic_ierrors);
49728da1b56SGleb Smirnoff 		break;
49828da1b56SGleb Smirnoff 	default:
49928da1b56SGleb Smirnoff 		break;
50028da1b56SGleb Smirnoff 	}
50128da1b56SGleb Smirnoff 
50228da1b56SGleb Smirnoff 	return (rv);
50328da1b56SGleb Smirnoff }
50428da1b56SGleb Smirnoff 
50528da1b56SGleb Smirnoff /*
506b032f27cSSam Leffler  * Prepare a vap for use.  Drivers use this call to
507b032f27cSSam Leffler  * setup net80211 state in new vap's prior attaching
508b032f27cSSam Leffler  * them with ieee80211_vap_attach (below).
509b032f27cSSam Leffler  */
510b032f27cSSam Leffler int
511b032f27cSSam Leffler ieee80211_vap_setup(struct ieee80211com *ic, struct ieee80211vap *vap,
512fcd9500fSBernhard Schmidt     const char name[IFNAMSIZ], int unit, enum ieee80211_opmode opmode,
5137a79cebfSGleb Smirnoff     int flags, const uint8_t bssid[IEEE80211_ADDR_LEN])
514b032f27cSSam Leffler {
515b032f27cSSam Leffler 	struct ifnet *ifp;
516b032f27cSSam Leffler 
517b032f27cSSam Leffler 	ifp = if_alloc(IFT_ETHER);
518b032f27cSSam Leffler 	if (ifp == NULL) {
519c8f5794eSGleb Smirnoff 		ic_printf(ic, "%s: unable to allocate ifnet\n",
520b032f27cSSam Leffler 		    __func__);
521b032f27cSSam Leffler 		return ENOMEM;
522b032f27cSSam Leffler 	}
523b032f27cSSam Leffler 	if_initname(ifp, name, unit);
524b032f27cSSam Leffler 	ifp->if_softc = vap;			/* back pointer */
525b032f27cSSam Leffler 	ifp->if_flags = IFF_SIMPLEX | IFF_BROADCAST | IFF_MULTICAST;
526e7495198SAdrian Chadd 	ifp->if_transmit = ieee80211_vap_transmit;
527e7495198SAdrian Chadd 	ifp->if_qflush = ieee80211_vap_qflush;
528b032f27cSSam Leffler 	ifp->if_ioctl = ieee80211_ioctl;
529b032f27cSSam Leffler 	ifp->if_init = ieee80211_init;
53028da1b56SGleb Smirnoff 	ifp->if_get_counter = ieee80211_get_counter;
531b032f27cSSam Leffler 
532b032f27cSSam Leffler 	vap->iv_ifp = ifp;
533b032f27cSSam Leffler 	vap->iv_ic = ic;
534b032f27cSSam Leffler 	vap->iv_flags = ic->ic_flags;		/* propagate common flags */
535b032f27cSSam Leffler 	vap->iv_flags_ext = ic->ic_flags_ext;
536b032f27cSSam Leffler 	vap->iv_flags_ven = ic->ic_flags_ven;
537b032f27cSSam Leffler 	vap->iv_caps = ic->ic_caps &~ IEEE80211_C_OPMODE;
53867f4aa38SAdrian Chadd 
53967f4aa38SAdrian Chadd 	/* 11n capabilities - XXX methodize */
540b032f27cSSam Leffler 	vap->iv_htcaps = ic->ic_htcaps;
541e1d36f83SRui Paulo 	vap->iv_htextcaps = ic->ic_htextcaps;
54267f4aa38SAdrian Chadd 
54367f4aa38SAdrian Chadd 	/* 11ac capabilities - XXX methodize */
54467f4aa38SAdrian Chadd 	vap->iv_vhtcaps = ic->ic_vhtcaps;
54567f4aa38SAdrian Chadd 	vap->iv_vhtextcaps = ic->ic_vhtextcaps;
54667f4aa38SAdrian Chadd 
547b032f27cSSam Leffler 	vap->iv_opmode = opmode;
548c43feedeSSam Leffler 	vap->iv_caps |= ieee80211_opcap[opmode];
5491d47c76cSAndriy Voskoboinyk 	IEEE80211_ADDR_COPY(vap->iv_myaddr, ic->ic_macaddr);
550b032f27cSSam Leffler 	switch (opmode) {
551b032f27cSSam Leffler 	case IEEE80211_M_WDS:
552b032f27cSSam Leffler 		/*
553b032f27cSSam Leffler 		 * WDS links must specify the bssid of the far end.
554b032f27cSSam Leffler 		 * For legacy operation this is a static relationship.
555b032f27cSSam Leffler 		 * For non-legacy operation the station must associate
556b032f27cSSam Leffler 		 * and be authorized to pass traffic.  Plumbing the
557b032f27cSSam Leffler 		 * vap to the proper node happens when the vap
558b032f27cSSam Leffler 		 * transitions to RUN state.
559b032f27cSSam Leffler 		 */
560b032f27cSSam Leffler 		IEEE80211_ADDR_COPY(vap->iv_des_bssid, bssid);
561b032f27cSSam Leffler 		vap->iv_flags |= IEEE80211_F_DESBSSID;
562b032f27cSSam Leffler 		if (flags & IEEE80211_CLONE_WDSLEGACY)
563b032f27cSSam Leffler 			vap->iv_flags_ext |= IEEE80211_FEXT_WDSLEGACY;
564b032f27cSSam Leffler 		break;
56510ad9a77SSam Leffler #ifdef IEEE80211_SUPPORT_TDMA
56610ad9a77SSam Leffler 	case IEEE80211_M_AHDEMO:
56710ad9a77SSam Leffler 		if (flags & IEEE80211_CLONE_TDMA) {
56810ad9a77SSam Leffler 			/* NB: checked before clone operation allowed */
56910ad9a77SSam Leffler 			KASSERT(ic->ic_caps & IEEE80211_C_TDMA,
57010ad9a77SSam Leffler 			    ("not TDMA capable, ic_caps 0x%x", ic->ic_caps));
57110ad9a77SSam Leffler 			/*
57210ad9a77SSam Leffler 			 * Propagate TDMA capability to mark vap; this
57310ad9a77SSam Leffler 			 * cannot be removed and is used to distinguish
57410ad9a77SSam Leffler 			 * regular ahdemo operation from ahdemo+tdma.
57510ad9a77SSam Leffler 			 */
57610ad9a77SSam Leffler 			vap->iv_caps |= IEEE80211_C_TDMA;
57710ad9a77SSam Leffler 		}
57810ad9a77SSam Leffler 		break;
57910ad9a77SSam Leffler #endif
580fcd9500fSBernhard Schmidt 	default:
581fcd9500fSBernhard Schmidt 		break;
582b032f27cSSam Leffler 	}
583ae3f00bbSSam Leffler 	/* auto-enable s/w beacon miss support */
584ae3f00bbSSam Leffler 	if (flags & IEEE80211_CLONE_NOBEACONS)
585ae3f00bbSSam Leffler 		vap->iv_flags_ext |= IEEE80211_FEXT_SWBMISS;
58683fcb812SAndrew Thompson 	/* auto-generated or user supplied MAC address */
58783fcb812SAndrew Thompson 	if (flags & (IEEE80211_CLONE_BSSID|IEEE80211_CLONE_MACADDR))
58883fcb812SAndrew Thompson 		vap->iv_flags_ext |= IEEE80211_FEXT_UNIQMAC;
589b032f27cSSam Leffler 	/*
590b032f27cSSam Leffler 	 * Enable various functionality by default if we're
591b032f27cSSam Leffler 	 * capable; the driver can override us if it knows better.
592b032f27cSSam Leffler 	 */
593b032f27cSSam Leffler 	if (vap->iv_caps & IEEE80211_C_WME)
594b032f27cSSam Leffler 		vap->iv_flags |= IEEE80211_F_WME;
595b032f27cSSam Leffler 	if (vap->iv_caps & IEEE80211_C_BURST)
596b032f27cSSam Leffler 		vap->iv_flags |= IEEE80211_F_BURST;
597b032f27cSSam Leffler 	/* NB: bg scanning only makes sense for station mode right now */
598b032f27cSSam Leffler 	if (vap->iv_opmode == IEEE80211_M_STA &&
599b032f27cSSam Leffler 	    (vap->iv_caps & IEEE80211_C_BGSCAN))
600b032f27cSSam Leffler 		vap->iv_flags |= IEEE80211_F_BGSCAN;
601c43feedeSSam Leffler 	vap->iv_flags |= IEEE80211_F_DOTH;	/* XXX no cap, just ena */
60282fd2577SSam Leffler 	/* NB: DFS support only makes sense for ap mode right now */
60382fd2577SSam Leffler 	if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
60482fd2577SSam Leffler 	    (vap->iv_caps & IEEE80211_C_DFS))
605b032f27cSSam Leffler 		vap->iv_flags_ext |= IEEE80211_FEXT_DFS;
606b032f27cSSam Leffler 
607b032f27cSSam Leffler 	vap->iv_des_chan = IEEE80211_CHAN_ANYC;		/* any channel is ok */
608b032f27cSSam Leffler 	vap->iv_bmissthreshold = IEEE80211_HWBMISS_DEFAULT;
609b032f27cSSam Leffler 	vap->iv_dtim_period = IEEE80211_DTIM_DEFAULT;
610b032f27cSSam Leffler 	/*
611b032f27cSSam Leffler 	 * Install a default reset method for the ioctl support;
612b032f27cSSam Leffler 	 * the driver can override this.
613b032f27cSSam Leffler 	 */
614b032f27cSSam Leffler 	vap->iv_reset = default_reset;
615b032f27cSSam Leffler 
616781487cfSAdrian Chadd 	/*
617781487cfSAdrian Chadd 	 * Install a default crypto key update method, the driver
618781487cfSAdrian Chadd 	 * can override this.
619781487cfSAdrian Chadd 	 */
620781487cfSAdrian Chadd 	vap->iv_update_deftxkey = default_update_deftxkey;
621781487cfSAdrian Chadd 
622b032f27cSSam Leffler 	ieee80211_sysctl_vattach(vap);
623b032f27cSSam Leffler 	ieee80211_crypto_vattach(vap);
624b032f27cSSam Leffler 	ieee80211_node_vattach(vap);
625b032f27cSSam Leffler 	ieee80211_power_vattach(vap);
626b032f27cSSam Leffler 	ieee80211_proto_vattach(vap);
627616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
628616190d0SSam Leffler 	ieee80211_superg_vattach(vap);
629616190d0SSam Leffler #endif
630b032f27cSSam Leffler 	ieee80211_ht_vattach(vap);
63167f4aa38SAdrian Chadd 	ieee80211_vht_vattach(vap);
632b032f27cSSam Leffler 	ieee80211_scan_vattach(vap);
633b032f27cSSam Leffler 	ieee80211_regdomain_vattach(vap);
6345463c4a4SSam Leffler 	ieee80211_radiotap_vattach(vap);
635a7c6aabdSBernhard Schmidt 	ieee80211_ratectl_set(vap, IEEE80211_RATECTL_NONE);
636b6108616SRui Paulo 
637b032f27cSSam Leffler 	return 0;
638b032f27cSSam Leffler }
639b032f27cSSam Leffler 
640b032f27cSSam Leffler /*
641b032f27cSSam Leffler  * Activate a vap.  State should have been prepared with a
642b032f27cSSam Leffler  * call to ieee80211_vap_setup and by the driver.  On return
643b032f27cSSam Leffler  * from this call the vap is ready for use.
644b032f27cSSam Leffler  */
645b032f27cSSam Leffler int
6467a79cebfSGleb Smirnoff ieee80211_vap_attach(struct ieee80211vap *vap, ifm_change_cb_t media_change,
6477a79cebfSGleb Smirnoff     ifm_stat_cb_t media_stat, const uint8_t macaddr[IEEE80211_ADDR_LEN])
648b032f27cSSam Leffler {
649b032f27cSSam Leffler 	struct ifnet *ifp = vap->iv_ifp;
650b032f27cSSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
651b032f27cSSam Leffler 	struct ifmediareq imr;
652b032f27cSSam Leffler 	int maxrate;
653b032f27cSSam Leffler 
654b032f27cSSam Leffler 	IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE,
655b032f27cSSam Leffler 	    "%s: %s parent %s flags 0x%x flags_ext 0x%x\n",
656b032f27cSSam Leffler 	    __func__, ieee80211_opmode_name[vap->iv_opmode],
657c8f5794eSGleb Smirnoff 	    ic->ic_name, vap->iv_flags, vap->iv_flags_ext);
658b032f27cSSam Leffler 
659b032f27cSSam Leffler 	/*
660b032f27cSSam Leffler 	 * Do late attach work that cannot happen until after
661b032f27cSSam Leffler 	 * the driver has had a chance to override defaults.
662b032f27cSSam Leffler 	 */
663b032f27cSSam Leffler 	ieee80211_node_latevattach(vap);
664b032f27cSSam Leffler 	ieee80211_power_latevattach(vap);
665b032f27cSSam Leffler 
666b032f27cSSam Leffler 	maxrate = ieee80211_media_setup(ic, &vap->iv_media, vap->iv_caps,
667b032f27cSSam Leffler 	    vap->iv_opmode == IEEE80211_M_STA, media_change, media_stat);
668b032f27cSSam Leffler 	ieee80211_media_status(ifp, &imr);
669b032f27cSSam Leffler 	/* NB: strip explicit mode; we're actually in autoselect */
670c3f10abdSSam Leffler 	ifmedia_set(&vap->iv_media,
671c3f10abdSSam Leffler 	    imr.ifm_active &~ (IFM_MMASK | IFM_IEEE80211_TURBO));
672b032f27cSSam Leffler 	if (maxrate)
673b032f27cSSam Leffler 		ifp->if_baudrate = IF_Mbps(maxrate);
674b032f27cSSam Leffler 
6757a79cebfSGleb Smirnoff 	ether_ifattach(ifp, macaddr);
6761d47c76cSAndriy Voskoboinyk 	IEEE80211_ADDR_COPY(vap->iv_myaddr, IF_LLADDR(ifp));
677b032f27cSSam Leffler 	/* hook output method setup by ether_ifattach */
678b032f27cSSam Leffler 	vap->iv_output = ifp->if_output;
679b032f27cSSam Leffler 	ifp->if_output = ieee80211_output;
680b032f27cSSam Leffler 	/* NB: if_mtu set by ether_ifattach to ETHERMTU */
681b032f27cSSam Leffler 
682b032f27cSSam Leffler 	IEEE80211_LOCK(ic);
683b032f27cSSam Leffler 	TAILQ_INSERT_TAIL(&ic->ic_vaps, vap, iv_next);
684b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_WME);
685616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
686b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_TURBOP);
687616190d0SSam Leffler #endif
688b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_PCF);
689b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_BURST);
6902bfc8a91SSam Leffler 	ieee80211_syncflag_ht_locked(ic, IEEE80211_FHT_HT);
6912bfc8a91SSam Leffler 	ieee80211_syncflag_ht_locked(ic, IEEE80211_FHT_USEHT40);
6928e71a4aaSAdrian Chadd 
6938e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_VHT);
6948e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT40);
6958e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT80);
6968e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT80P80);
6978e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT160);
698b032f27cSSam Leffler 	IEEE80211_UNLOCK(ic);
699b032f27cSSam Leffler 
700b032f27cSSam Leffler 	return 1;
701b032f27cSSam Leffler }
702b032f27cSSam Leffler 
703b032f27cSSam Leffler /*
704b032f27cSSam Leffler  * Tear down vap state and reclaim the ifnet.
705b032f27cSSam Leffler  * The driver is assumed to have prepared for
706b032f27cSSam Leffler  * this; e.g. by turning off interrupts for the
707b032f27cSSam Leffler  * underlying device.
708b032f27cSSam Leffler  */
709b032f27cSSam Leffler void
710b032f27cSSam Leffler ieee80211_vap_detach(struct ieee80211vap *vap)
711b032f27cSSam Leffler {
712b032f27cSSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
713b032f27cSSam Leffler 	struct ifnet *ifp = vap->iv_ifp;
714b032f27cSSam Leffler 
71530e4856aSAdrian Chadd 	CURVNET_SET(ifp->if_vnet);
71630e4856aSAdrian Chadd 
717b032f27cSSam Leffler 	IEEE80211_DPRINTF(vap, IEEE80211_MSG_STATE, "%s: %s parent %s\n",
7187fc10b6bSGleb Smirnoff 	    __func__, ieee80211_opmode_name[vap->iv_opmode], ic->ic_name);
719b032f27cSSam Leffler 
7201da89db5SSam Leffler 	/* NB: bpfdetach is called by ether_ifdetach and claims all taps */
7211da89db5SSam Leffler 	ether_ifdetach(ifp);
7221da89db5SSam Leffler 
7231da89db5SSam Leffler 	ieee80211_stop(vap);
724b032f27cSSam Leffler 
7255efea30fSAndrew Thompson 	/*
7265efea30fSAndrew Thompson 	 * Flush any deferred vap tasks.
7275efea30fSAndrew Thompson 	 */
7285efea30fSAndrew Thompson 	ieee80211_draintask(ic, &vap->iv_nstate_task);
7295efea30fSAndrew Thompson 	ieee80211_draintask(ic, &vap->iv_swbmiss_task);
730e3e94c96SAdrian Chadd 	ieee80211_draintask(ic, &vap->iv_wme_task);
731*e2db307eSAndriy Voskoboinyk 	ieee80211_draintask(ic, &ic->ic_parent_task);
7325efea30fSAndrew Thompson 
733ab501dd6SSam Leffler 	/* XXX band-aid until ifnet handles this for us */
734ab501dd6SSam Leffler 	taskqueue_drain(taskqueue_swi, &ifp->if_linktask);
735ab501dd6SSam Leffler 
7365efea30fSAndrew Thompson 	IEEE80211_LOCK(ic);
7375efea30fSAndrew Thompson 	KASSERT(vap->iv_state == IEEE80211_S_INIT , ("vap still running"));
738b032f27cSSam Leffler 	TAILQ_REMOVE(&ic->ic_vaps, vap, iv_next);
739b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_WME);
740616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
741b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_TURBOP);
742616190d0SSam Leffler #endif
743b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_PCF);
744b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, IEEE80211_F_BURST);
7452bfc8a91SSam Leffler 	ieee80211_syncflag_ht_locked(ic, IEEE80211_FHT_HT);
7462bfc8a91SSam Leffler 	ieee80211_syncflag_ht_locked(ic, IEEE80211_FHT_USEHT40);
7478e71a4aaSAdrian Chadd 
7488e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_VHT);
7498e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT40);
7508e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT80);
7518e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT80P80);
7528e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, IEEE80211_FVHT_USEVHT160);
7538e71a4aaSAdrian Chadd 
7545463c4a4SSam Leffler 	/* NB: this handles the bpfdetach done below */
7555463c4a4SSam Leffler 	ieee80211_syncflag_ext_locked(ic, IEEE80211_FEXT_BPF);
7567a79cebfSGleb Smirnoff 	if (vap->iv_ifflags & IFF_PROMISC)
7577a79cebfSGleb Smirnoff 		ieee80211_promisc(vap, false);
7587a79cebfSGleb Smirnoff 	if (vap->iv_ifflags & IFF_ALLMULTI)
7597a79cebfSGleb Smirnoff 		ieee80211_allmulti(vap, false);
760b032f27cSSam Leffler 	IEEE80211_UNLOCK(ic);
761b032f27cSSam Leffler 
762b032f27cSSam Leffler 	ifmedia_removeall(&vap->iv_media);
763b032f27cSSam Leffler 
7645463c4a4SSam Leffler 	ieee80211_radiotap_vdetach(vap);
765b032f27cSSam Leffler 	ieee80211_regdomain_vdetach(vap);
766b032f27cSSam Leffler 	ieee80211_scan_vdetach(vap);
767616190d0SSam Leffler #ifdef IEEE80211_SUPPORT_SUPERG
768616190d0SSam Leffler 	ieee80211_superg_vdetach(vap);
769616190d0SSam Leffler #endif
77067f4aa38SAdrian Chadd 	ieee80211_vht_vdetach(vap);
771b032f27cSSam Leffler 	ieee80211_ht_vdetach(vap);
772b032f27cSSam Leffler 	/* NB: must be before ieee80211_node_vdetach */
773b032f27cSSam Leffler 	ieee80211_proto_vdetach(vap);
774b032f27cSSam Leffler 	ieee80211_crypto_vdetach(vap);
775b032f27cSSam Leffler 	ieee80211_power_vdetach(vap);
776b032f27cSSam Leffler 	ieee80211_node_vdetach(vap);
777b032f27cSSam Leffler 	ieee80211_sysctl_vdetach(vap);
778b20f0ed1SWeongyo Jeong 
779b20f0ed1SWeongyo Jeong 	if_free(ifp);
78030e4856aSAdrian Chadd 
78130e4856aSAdrian Chadd 	CURVNET_RESTORE();
782b032f27cSSam Leffler }
783b032f27cSSam Leffler 
784b032f27cSSam Leffler /*
7857a79cebfSGleb Smirnoff  * Count number of vaps in promisc, and issue promisc on
7867a79cebfSGleb Smirnoff  * parent respectively.
787b032f27cSSam Leffler  */
788b032f27cSSam Leffler void
7897a79cebfSGleb Smirnoff ieee80211_promisc(struct ieee80211vap *vap, bool on)
790b032f27cSSam Leffler {
7917a79cebfSGleb Smirnoff 	struct ieee80211com *ic = vap->iv_ic;
792b032f27cSSam Leffler 
793c6427be9SAndriy Voskoboinyk 	IEEE80211_LOCK_ASSERT(ic);
794c6427be9SAndriy Voskoboinyk 
7957a79cebfSGleb Smirnoff 	if (on) {
7967a79cebfSGleb Smirnoff 		if (++ic->ic_promisc == 1)
797ba2c1fbcSAdrian Chadd 			ieee80211_runtask(ic, &ic->ic_promisc_task);
7987a79cebfSGleb Smirnoff 	} else {
7997a79cebfSGleb Smirnoff 		KASSERT(ic->ic_promisc > 0, ("%s: ic %p not promisc",
8007a79cebfSGleb Smirnoff 		    __func__, ic));
8017a79cebfSGleb Smirnoff 		if (--ic->ic_promisc == 0)
8027a79cebfSGleb Smirnoff 			ieee80211_runtask(ic, &ic->ic_promisc_task);
8037a79cebfSGleb Smirnoff 	}
8047a79cebfSGleb Smirnoff }
8057a79cebfSGleb Smirnoff 
8067a79cebfSGleb Smirnoff /*
8077a79cebfSGleb Smirnoff  * Count number of vaps in allmulti, and issue allmulti on
8087a79cebfSGleb Smirnoff  * parent respectively.
8097a79cebfSGleb Smirnoff  */
8107a79cebfSGleb Smirnoff void
8117a79cebfSGleb Smirnoff ieee80211_allmulti(struct ieee80211vap *vap, bool on)
8127a79cebfSGleb Smirnoff {
8137a79cebfSGleb Smirnoff 	struct ieee80211com *ic = vap->iv_ic;
8147a79cebfSGleb Smirnoff 
815c6427be9SAndriy Voskoboinyk 	IEEE80211_LOCK_ASSERT(ic);
816c6427be9SAndriy Voskoboinyk 
8177a79cebfSGleb Smirnoff 	if (on) {
8187a79cebfSGleb Smirnoff 		if (++ic->ic_allmulti == 1)
8197a79cebfSGleb Smirnoff 			ieee80211_runtask(ic, &ic->ic_mcast_task);
8207a79cebfSGleb Smirnoff 	} else {
8217a79cebfSGleb Smirnoff 		KASSERT(ic->ic_allmulti > 0, ("%s: ic %p not allmulti",
8227a79cebfSGleb Smirnoff 		    __func__, ic));
8237a79cebfSGleb Smirnoff 		if (--ic->ic_allmulti == 0)
8245efea30fSAndrew Thompson 			ieee80211_runtask(ic, &ic->ic_mcast_task);
825b032f27cSSam Leffler 	}
826b032f27cSSam Leffler }
827b032f27cSSam Leffler 
828b032f27cSSam Leffler /*
829b032f27cSSam Leffler  * Synchronize flag bit state in the com structure
830b032f27cSSam Leffler  * according to the state of all vap's.  This is used,
831b032f27cSSam Leffler  * for example, to handle state changes via ioctls.
832b032f27cSSam Leffler  */
833b032f27cSSam Leffler static void
834b032f27cSSam Leffler ieee80211_syncflag_locked(struct ieee80211com *ic, int flag)
835b032f27cSSam Leffler {
836b032f27cSSam Leffler 	struct ieee80211vap *vap;
837b032f27cSSam Leffler 	int bit;
838b032f27cSSam Leffler 
839b032f27cSSam Leffler 	IEEE80211_LOCK_ASSERT(ic);
840b032f27cSSam Leffler 
841b032f27cSSam Leffler 	bit = 0;
842b032f27cSSam Leffler 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
843b032f27cSSam Leffler 		if (vap->iv_flags & flag) {
844b032f27cSSam Leffler 			bit = 1;
845b032f27cSSam Leffler 			break;
846b032f27cSSam Leffler 		}
847b032f27cSSam Leffler 	if (bit)
848b032f27cSSam Leffler 		ic->ic_flags |= flag;
849b032f27cSSam Leffler 	else
850b032f27cSSam Leffler 		ic->ic_flags &= ~flag;
851b032f27cSSam Leffler }
852b032f27cSSam Leffler 
853b032f27cSSam Leffler void
854b032f27cSSam Leffler ieee80211_syncflag(struct ieee80211vap *vap, int flag)
855b032f27cSSam Leffler {
856b032f27cSSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
857b032f27cSSam Leffler 
858b032f27cSSam Leffler 	IEEE80211_LOCK(ic);
859b032f27cSSam Leffler 	if (flag < 0) {
860b032f27cSSam Leffler 		flag = -flag;
861b032f27cSSam Leffler 		vap->iv_flags &= ~flag;
862b032f27cSSam Leffler 	} else
863b032f27cSSam Leffler 		vap->iv_flags |= flag;
864b032f27cSSam Leffler 	ieee80211_syncflag_locked(ic, flag);
865b032f27cSSam Leffler 	IEEE80211_UNLOCK(ic);
866b032f27cSSam Leffler }
867b032f27cSSam Leffler 
868b032f27cSSam Leffler /*
8692bfc8a91SSam Leffler  * Synchronize flags_ht bit state in the com structure
8702bfc8a91SSam Leffler  * according to the state of all vap's.  This is used,
8712bfc8a91SSam Leffler  * for example, to handle state changes via ioctls.
8722bfc8a91SSam Leffler  */
8732bfc8a91SSam Leffler static void
8742bfc8a91SSam Leffler ieee80211_syncflag_ht_locked(struct ieee80211com *ic, int flag)
8752bfc8a91SSam Leffler {
8762bfc8a91SSam Leffler 	struct ieee80211vap *vap;
8772bfc8a91SSam Leffler 	int bit;
8782bfc8a91SSam Leffler 
8792bfc8a91SSam Leffler 	IEEE80211_LOCK_ASSERT(ic);
8802bfc8a91SSam Leffler 
8812bfc8a91SSam Leffler 	bit = 0;
8822bfc8a91SSam Leffler 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
8832bfc8a91SSam Leffler 		if (vap->iv_flags_ht & flag) {
8842bfc8a91SSam Leffler 			bit = 1;
8852bfc8a91SSam Leffler 			break;
8862bfc8a91SSam Leffler 		}
8872bfc8a91SSam Leffler 	if (bit)
8882bfc8a91SSam Leffler 		ic->ic_flags_ht |= flag;
8892bfc8a91SSam Leffler 	else
8902bfc8a91SSam Leffler 		ic->ic_flags_ht &= ~flag;
8912bfc8a91SSam Leffler }
8922bfc8a91SSam Leffler 
8932bfc8a91SSam Leffler void
8942bfc8a91SSam Leffler ieee80211_syncflag_ht(struct ieee80211vap *vap, int flag)
8952bfc8a91SSam Leffler {
8962bfc8a91SSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
8972bfc8a91SSam Leffler 
8982bfc8a91SSam Leffler 	IEEE80211_LOCK(ic);
8992bfc8a91SSam Leffler 	if (flag < 0) {
9002bfc8a91SSam Leffler 		flag = -flag;
9012bfc8a91SSam Leffler 		vap->iv_flags_ht &= ~flag;
9022bfc8a91SSam Leffler 	} else
9032bfc8a91SSam Leffler 		vap->iv_flags_ht |= flag;
9042bfc8a91SSam Leffler 	ieee80211_syncflag_ht_locked(ic, flag);
9052bfc8a91SSam Leffler 	IEEE80211_UNLOCK(ic);
9062bfc8a91SSam Leffler }
9072bfc8a91SSam Leffler 
9082bfc8a91SSam Leffler /*
9098e71a4aaSAdrian Chadd  * Synchronize flags_vht bit state in the com structure
9108e71a4aaSAdrian Chadd  * according to the state of all vap's.  This is used,
9118e71a4aaSAdrian Chadd  * for example, to handle state changes via ioctls.
9128e71a4aaSAdrian Chadd  */
9138e71a4aaSAdrian Chadd static void
9148e71a4aaSAdrian Chadd ieee80211_syncflag_vht_locked(struct ieee80211com *ic, int flag)
9158e71a4aaSAdrian Chadd {
9168e71a4aaSAdrian Chadd 	struct ieee80211vap *vap;
9178e71a4aaSAdrian Chadd 	int bit;
9188e71a4aaSAdrian Chadd 
9198e71a4aaSAdrian Chadd 	IEEE80211_LOCK_ASSERT(ic);
9208e71a4aaSAdrian Chadd 
9218e71a4aaSAdrian Chadd 	bit = 0;
9228e71a4aaSAdrian Chadd 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
9238e71a4aaSAdrian Chadd 		if (vap->iv_flags_vht & flag) {
9248e71a4aaSAdrian Chadd 			bit = 1;
9258e71a4aaSAdrian Chadd 			break;
9268e71a4aaSAdrian Chadd 		}
9278e71a4aaSAdrian Chadd 	if (bit)
9288e71a4aaSAdrian Chadd 		ic->ic_flags_vht |= flag;
9298e71a4aaSAdrian Chadd 	else
9308e71a4aaSAdrian Chadd 		ic->ic_flags_vht &= ~flag;
9318e71a4aaSAdrian Chadd }
9328e71a4aaSAdrian Chadd 
9338e71a4aaSAdrian Chadd void
9348e71a4aaSAdrian Chadd ieee80211_syncflag_vht(struct ieee80211vap *vap, int flag)
9358e71a4aaSAdrian Chadd {
9368e71a4aaSAdrian Chadd 	struct ieee80211com *ic = vap->iv_ic;
9378e71a4aaSAdrian Chadd 
9388e71a4aaSAdrian Chadd 	IEEE80211_LOCK(ic);
9398e71a4aaSAdrian Chadd 	if (flag < 0) {
9408e71a4aaSAdrian Chadd 		flag = -flag;
9418e71a4aaSAdrian Chadd 		vap->iv_flags_vht &= ~flag;
9428e71a4aaSAdrian Chadd 	} else
9438e71a4aaSAdrian Chadd 		vap->iv_flags_vht |= flag;
9448e71a4aaSAdrian Chadd 	ieee80211_syncflag_vht_locked(ic, flag);
9458e71a4aaSAdrian Chadd 	IEEE80211_UNLOCK(ic);
9468e71a4aaSAdrian Chadd }
9478e71a4aaSAdrian Chadd 
9488e71a4aaSAdrian Chadd /*
9492bfc8a91SSam Leffler  * Synchronize flags_ext bit state in the com structure
950b032f27cSSam Leffler  * according to the state of all vap's.  This is used,
951b032f27cSSam Leffler  * for example, to handle state changes via ioctls.
952b032f27cSSam Leffler  */
953b032f27cSSam Leffler static void
954b032f27cSSam Leffler ieee80211_syncflag_ext_locked(struct ieee80211com *ic, int flag)
955b032f27cSSam Leffler {
956b032f27cSSam Leffler 	struct ieee80211vap *vap;
957b032f27cSSam Leffler 	int bit;
958b032f27cSSam Leffler 
959b032f27cSSam Leffler 	IEEE80211_LOCK_ASSERT(ic);
960b032f27cSSam Leffler 
961b032f27cSSam Leffler 	bit = 0;
962b032f27cSSam Leffler 	TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next)
963b032f27cSSam Leffler 		if (vap->iv_flags_ext & flag) {
964b032f27cSSam Leffler 			bit = 1;
965b032f27cSSam Leffler 			break;
966b032f27cSSam Leffler 		}
967b032f27cSSam Leffler 	if (bit)
968b032f27cSSam Leffler 		ic->ic_flags_ext |= flag;
969b032f27cSSam Leffler 	else
970b032f27cSSam Leffler 		ic->ic_flags_ext &= ~flag;
971b032f27cSSam Leffler }
972b032f27cSSam Leffler 
973b032f27cSSam Leffler void
974b032f27cSSam Leffler ieee80211_syncflag_ext(struct ieee80211vap *vap, int flag)
975b032f27cSSam Leffler {
976b032f27cSSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
977b032f27cSSam Leffler 
978b032f27cSSam Leffler 	IEEE80211_LOCK(ic);
979b032f27cSSam Leffler 	if (flag < 0) {
980b032f27cSSam Leffler 		flag = -flag;
981b032f27cSSam Leffler 		vap->iv_flags_ext &= ~flag;
982b032f27cSSam Leffler 	} else
983b032f27cSSam Leffler 		vap->iv_flags_ext |= flag;
984b032f27cSSam Leffler 	ieee80211_syncflag_ext_locked(ic, flag);
985b032f27cSSam Leffler 	IEEE80211_UNLOCK(ic);
9861a1e1d21SSam Leffler }
9871a1e1d21SSam Leffler 
988ca4ac7aeSSam Leffler static __inline int
989ca4ac7aeSSam Leffler mapgsm(u_int freq, u_int flags)
990ca4ac7aeSSam Leffler {
991ca4ac7aeSSam Leffler 	freq *= 10;
992ca4ac7aeSSam Leffler 	if (flags & IEEE80211_CHAN_QUARTER)
993ca4ac7aeSSam Leffler 		freq += 5;
994ca4ac7aeSSam Leffler 	else if (flags & IEEE80211_CHAN_HALF)
995ca4ac7aeSSam Leffler 		freq += 10;
996ca4ac7aeSSam Leffler 	else
997ca4ac7aeSSam Leffler 		freq += 20;
998ca4ac7aeSSam Leffler 	/* NB: there is no 907/20 wide but leave room */
999ca4ac7aeSSam Leffler 	return (freq - 906*10) / 5;
1000ca4ac7aeSSam Leffler }
1001ca4ac7aeSSam Leffler 
1002ca4ac7aeSSam Leffler static __inline int
1003ca4ac7aeSSam Leffler mappsb(u_int freq, u_int flags)
1004ca4ac7aeSSam Leffler {
1005ca4ac7aeSSam Leffler 	return 37 + ((freq * 10) + ((freq % 5) == 2 ? 5 : 0) - 49400) / 5;
1006ca4ac7aeSSam Leffler }
1007ca4ac7aeSSam Leffler 
10081a1e1d21SSam Leffler /*
10091a1e1d21SSam Leffler  * Convert MHz frequency to IEEE channel number.
10101a1e1d21SSam Leffler  */
10116f322b78SSam Leffler int
10121a1e1d21SSam Leffler ieee80211_mhz2ieee(u_int freq, u_int flags)
10131a1e1d21SSam Leffler {
101411df4239SSam Leffler #define	IS_FREQ_IN_PSB(_freq) ((_freq) > 4940 && (_freq) < 4990)
1015ca4ac7aeSSam Leffler 	if (flags & IEEE80211_CHAN_GSM)
1016ca4ac7aeSSam Leffler 		return mapgsm(freq, flags);
10171a1e1d21SSam Leffler 	if (flags & IEEE80211_CHAN_2GHZ) {	/* 2GHz band */
10181a1e1d21SSam Leffler 		if (freq == 2484)
10191a1e1d21SSam Leffler 			return 14;
10201a1e1d21SSam Leffler 		if (freq < 2484)
10216f322b78SSam Leffler 			return ((int) freq - 2407) / 5;
10221a1e1d21SSam Leffler 		else
10231a1e1d21SSam Leffler 			return 15 + ((freq - 2512) / 20);
1024c032abb5SSam Leffler 	} else if (flags & IEEE80211_CHAN_5GHZ) {	/* 5Ghz band */
102541b3c790SSam Leffler 		if (freq <= 5000) {
102668e8e04eSSam Leffler 			/* XXX check regdomain? */
102711df4239SSam Leffler 			if (IS_FREQ_IN_PSB(freq))
1028ca4ac7aeSSam Leffler 				return mappsb(freq, flags);
10296f322b78SSam Leffler 			return (freq - 4000) / 5;
103041b3c790SSam Leffler 		} else
10311a1e1d21SSam Leffler 			return (freq - 5000) / 5;
10321a1e1d21SSam Leffler 	} else {				/* either, guess */
10331a1e1d21SSam Leffler 		if (freq == 2484)
10341a1e1d21SSam Leffler 			return 14;
1035ca4ac7aeSSam Leffler 		if (freq < 2484) {
1036ca4ac7aeSSam Leffler 			if (907 <= freq && freq <= 922)
1037ca4ac7aeSSam Leffler 				return mapgsm(freq, flags);
10386f322b78SSam Leffler 			return ((int) freq - 2407) / 5;
1039ca4ac7aeSSam Leffler 		}
10406f322b78SSam Leffler 		if (freq < 5000) {
104111df4239SSam Leffler 			if (IS_FREQ_IN_PSB(freq))
1042ca4ac7aeSSam Leffler 				return mappsb(freq, flags);
104341b3c790SSam Leffler 			else if (freq > 4900)
10446f322b78SSam Leffler 				return (freq - 4000) / 5;
10456f322b78SSam Leffler 			else
10461a1e1d21SSam Leffler 				return 15 + ((freq - 2512) / 20);
10476f322b78SSam Leffler 		}
10481a1e1d21SSam Leffler 		return (freq - 5000) / 5;
10491a1e1d21SSam Leffler 	}
105011df4239SSam Leffler #undef IS_FREQ_IN_PSB
10511a1e1d21SSam Leffler }
10521a1e1d21SSam Leffler 
10531a1e1d21SSam Leffler /*
10541a1e1d21SSam Leffler  * Convert channel to IEEE channel number.
10551a1e1d21SSam Leffler  */
10566f322b78SSam Leffler int
105738da1496SMatt Jacob ieee80211_chan2ieee(struct ieee80211com *ic, const struct ieee80211_channel *c)
10581a1e1d21SSam Leffler {
105968e8e04eSSam Leffler 	if (c == NULL) {
1060c8f5794eSGleb Smirnoff 		ic_printf(ic, "invalid channel (NULL)\n");
10618be0d570SSam Leffler 		return 0;		/* XXX */
10621a1e1d21SSam Leffler 	}
106368e8e04eSSam Leffler 	return (c == IEEE80211_CHAN_ANYC ?  IEEE80211_CHAN_ANY : c->ic_ieee);
10641a1e1d21SSam Leffler }
10651a1e1d21SSam Leffler 
10661a1e1d21SSam Leffler /*
10671a1e1d21SSam Leffler  * Convert IEEE channel number to MHz frequency.
10681a1e1d21SSam Leffler  */
10691a1e1d21SSam Leffler u_int
10701a1e1d21SSam Leffler ieee80211_ieee2mhz(u_int chan, u_int flags)
10711a1e1d21SSam Leffler {
1072ca4ac7aeSSam Leffler 	if (flags & IEEE80211_CHAN_GSM)
1073ca4ac7aeSSam Leffler 		return 907 + 5 * (chan / 10);
10741a1e1d21SSam Leffler 	if (flags & IEEE80211_CHAN_2GHZ) {	/* 2GHz band */
10751a1e1d21SSam Leffler 		if (chan == 14)
10761a1e1d21SSam Leffler 			return 2484;
10771a1e1d21SSam Leffler 		if (chan < 14)
10781a1e1d21SSam Leffler 			return 2407 + chan*5;
10791a1e1d21SSam Leffler 		else
10801a1e1d21SSam Leffler 			return 2512 + ((chan-15)*20);
10811a1e1d21SSam Leffler 	} else if (flags & IEEE80211_CHAN_5GHZ) {/* 5Ghz band */
108241b3c790SSam Leffler 		if (flags & (IEEE80211_CHAN_HALF|IEEE80211_CHAN_QUARTER)) {
108341b3c790SSam Leffler 			chan -= 37;
108441b3c790SSam Leffler 			return 4940 + chan*5 + (chan % 5 ? 2 : 0);
108541b3c790SSam Leffler 		}
10861a1e1d21SSam Leffler 		return 5000 + (chan*5);
10871a1e1d21SSam Leffler 	} else {				/* either, guess */
1088ca4ac7aeSSam Leffler 		/* XXX can't distinguish PSB+GSM channels */
10891a1e1d21SSam Leffler 		if (chan == 14)
10901a1e1d21SSam Leffler 			return 2484;
10911a1e1d21SSam Leffler 		if (chan < 14)			/* 0-13 */
10921a1e1d21SSam Leffler 			return 2407 + chan*5;
10931a1e1d21SSam Leffler 		if (chan < 27)			/* 15-26 */
10941a1e1d21SSam Leffler 			return 2512 + ((chan-15)*20);
10951a1e1d21SSam Leffler 		return 5000 + (chan*5);
10961a1e1d21SSam Leffler 	}
10971a1e1d21SSam Leffler }
10981a1e1d21SSam Leffler 
1099355fec48SAndriy Voskoboinyk static __inline void
1100355fec48SAndriy Voskoboinyk set_extchan(struct ieee80211_channel *c)
1101355fec48SAndriy Voskoboinyk {
1102355fec48SAndriy Voskoboinyk 
1103355fec48SAndriy Voskoboinyk 	/*
1104355fec48SAndriy Voskoboinyk 	 * IEEE Std 802.11-2012, page 1738, subclause 20.3.15.4:
1105355fec48SAndriy Voskoboinyk 	 * "the secondary channel number shall be 'N + [1,-1] * 4'
1106355fec48SAndriy Voskoboinyk 	 */
1107355fec48SAndriy Voskoboinyk 	if (c->ic_flags & IEEE80211_CHAN_HT40U)
1108355fec48SAndriy Voskoboinyk 		c->ic_extieee = c->ic_ieee + 4;
1109355fec48SAndriy Voskoboinyk 	else if (c->ic_flags & IEEE80211_CHAN_HT40D)
1110355fec48SAndriy Voskoboinyk 		c->ic_extieee = c->ic_ieee - 4;
1111355fec48SAndriy Voskoboinyk 	else
1112355fec48SAndriy Voskoboinyk 		c->ic_extieee = 0;
1113355fec48SAndriy Voskoboinyk }
1114355fec48SAndriy Voskoboinyk 
111567f4aa38SAdrian Chadd /*
111667f4aa38SAdrian Chadd  * Populate the freq1/freq2 fields as appropriate for VHT channels.
111767f4aa38SAdrian Chadd  *
111867f4aa38SAdrian Chadd  * This for now uses a hard-coded list of 80MHz wide channels.
111967f4aa38SAdrian Chadd  *
112067f4aa38SAdrian Chadd  * For HT20/HT40, freq1 just is the centre frequency of the 40MHz
112167f4aa38SAdrian Chadd  * wide channel we've already decided upon.
112267f4aa38SAdrian Chadd  *
112367f4aa38SAdrian Chadd  * For VHT80 and VHT160, there are only a small number of fixed
112467f4aa38SAdrian Chadd  * 80/160MHz wide channels, so we just use those.
112567f4aa38SAdrian Chadd  *
112667f4aa38SAdrian Chadd  * This is all likely very very wrong - both the regulatory code
112767f4aa38SAdrian Chadd  * and this code needs to ensure that all four channels are
112867f4aa38SAdrian Chadd  * available and valid before the VHT80 (and eight for VHT160) channel
112967f4aa38SAdrian Chadd  * is created.
113067f4aa38SAdrian Chadd  */
113167f4aa38SAdrian Chadd 
113267f4aa38SAdrian Chadd struct vht_chan_range {
113367f4aa38SAdrian Chadd 	uint16_t freq_start;
113467f4aa38SAdrian Chadd 	uint16_t freq_end;
113567f4aa38SAdrian Chadd };
113667f4aa38SAdrian Chadd 
113767f4aa38SAdrian Chadd struct vht_chan_range vht80_chan_ranges[] = {
113867f4aa38SAdrian Chadd 	{ 5170, 5250 },
113967f4aa38SAdrian Chadd 	{ 5250, 5330 },
114067f4aa38SAdrian Chadd 	{ 5490, 5570 },
114167f4aa38SAdrian Chadd 	{ 5570, 5650 },
114267f4aa38SAdrian Chadd 	{ 5650, 5730 },
114367f4aa38SAdrian Chadd 	{ 5735, 5815 },
114467f4aa38SAdrian Chadd 	{ 0, 0, }
114567f4aa38SAdrian Chadd };
114667f4aa38SAdrian Chadd 
114767f4aa38SAdrian Chadd static int
114867f4aa38SAdrian Chadd set_vht_extchan(struct ieee80211_channel *c)
114967f4aa38SAdrian Chadd {
115067f4aa38SAdrian Chadd 	int i;
115167f4aa38SAdrian Chadd 
115267f4aa38SAdrian Chadd 	if (! IEEE80211_IS_CHAN_VHT(c)) {
115367f4aa38SAdrian Chadd 		return (0);
115467f4aa38SAdrian Chadd 	}
115567f4aa38SAdrian Chadd 
115667f4aa38SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT20(c)) {
115767f4aa38SAdrian Chadd 		c->ic_vht_ch_freq1 = c->ic_ieee;
115867f4aa38SAdrian Chadd 		return (1);
115967f4aa38SAdrian Chadd 	}
116067f4aa38SAdrian Chadd 
116167f4aa38SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT40(c)) {
116267f4aa38SAdrian Chadd 		if (IEEE80211_IS_CHAN_HT40U(c))
116367f4aa38SAdrian Chadd 			c->ic_vht_ch_freq1 = c->ic_ieee + 2;
116467f4aa38SAdrian Chadd 		else if (IEEE80211_IS_CHAN_HT40D(c))
116567f4aa38SAdrian Chadd 			c->ic_vht_ch_freq1 = c->ic_ieee - 2;
116667f4aa38SAdrian Chadd 		else
116767f4aa38SAdrian Chadd 			return (0);
116867f4aa38SAdrian Chadd 		return (1);
116967f4aa38SAdrian Chadd 	}
117067f4aa38SAdrian Chadd 
117167f4aa38SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT80(c)) {
117267f4aa38SAdrian Chadd 		for (i = 0; vht80_chan_ranges[i].freq_start != 0; i++) {
117367f4aa38SAdrian Chadd 			if (c->ic_freq >= vht80_chan_ranges[i].freq_start &&
117467f4aa38SAdrian Chadd 			    c->ic_freq < vht80_chan_ranges[i].freq_end) {
117567f4aa38SAdrian Chadd 				int midpoint;
117667f4aa38SAdrian Chadd 
117767f4aa38SAdrian Chadd 				midpoint = vht80_chan_ranges[i].freq_start + 40;
117867f4aa38SAdrian Chadd 				c->ic_vht_ch_freq1 =
117967f4aa38SAdrian Chadd 				    ieee80211_mhz2ieee(midpoint, c->ic_flags);
118067f4aa38SAdrian Chadd 				c->ic_vht_ch_freq2 = 0;
118167f4aa38SAdrian Chadd #if 0
118267f4aa38SAdrian Chadd 				printf("%s: %d, freq=%d, midpoint=%d, freq1=%d, freq2=%d\n",
118367f4aa38SAdrian Chadd 				    __func__, c->ic_ieee, c->ic_freq, midpoint,
118467f4aa38SAdrian Chadd 				    c->ic_vht_ch_freq1, c->ic_vht_ch_freq2);
118567f4aa38SAdrian Chadd #endif
118667f4aa38SAdrian Chadd 				return (1);
118767f4aa38SAdrian Chadd 			}
118867f4aa38SAdrian Chadd 		}
118967f4aa38SAdrian Chadd 		return (0);
119067f4aa38SAdrian Chadd 	}
119167f4aa38SAdrian Chadd 
119267f4aa38SAdrian Chadd 	printf("%s: unknown VHT channel type (ieee=%d, flags=0x%08x)\n",
119367f4aa38SAdrian Chadd 	    __func__,
119467f4aa38SAdrian Chadd 	    c->ic_ieee,
119567f4aa38SAdrian Chadd 	    c->ic_flags);
119667f4aa38SAdrian Chadd 
119767f4aa38SAdrian Chadd 	return (0);
119867f4aa38SAdrian Chadd }
119967f4aa38SAdrian Chadd 
120067f4aa38SAdrian Chadd /*
120167f4aa38SAdrian Chadd  * Return whether the current channel could possibly be a part of
120267f4aa38SAdrian Chadd  * a VHT80 channel.
120367f4aa38SAdrian Chadd  *
120467f4aa38SAdrian Chadd  * This doesn't check that the whole range is in the allowed list
120567f4aa38SAdrian Chadd  * according to regulatory.
120667f4aa38SAdrian Chadd  */
120767f4aa38SAdrian Chadd static int
120867f4aa38SAdrian Chadd is_vht80_valid_freq(uint16_t freq)
120967f4aa38SAdrian Chadd {
121067f4aa38SAdrian Chadd 	int i;
121167f4aa38SAdrian Chadd 	for (i = 0; vht80_chan_ranges[i].freq_start != 0; i++) {
121267f4aa38SAdrian Chadd 		if (freq >= vht80_chan_ranges[i].freq_start &&
121367f4aa38SAdrian Chadd 		    freq < vht80_chan_ranges[i].freq_end)
121467f4aa38SAdrian Chadd 			return (1);
121567f4aa38SAdrian Chadd 	}
121667f4aa38SAdrian Chadd 	return (0);
121767f4aa38SAdrian Chadd }
121867f4aa38SAdrian Chadd 
1219355fec48SAndriy Voskoboinyk static int
1220355fec48SAndriy Voskoboinyk addchan(struct ieee80211_channel chans[], int maxchans, int *nchans,
1221355fec48SAndriy Voskoboinyk     uint8_t ieee, uint16_t freq, int8_t maxregpower, uint32_t flags)
1222355fec48SAndriy Voskoboinyk {
1223355fec48SAndriy Voskoboinyk 	struct ieee80211_channel *c;
1224355fec48SAndriy Voskoboinyk 
1225355fec48SAndriy Voskoboinyk 	if (*nchans >= maxchans)
1226355fec48SAndriy Voskoboinyk 		return (ENOBUFS);
1227355fec48SAndriy Voskoboinyk 
122867f4aa38SAdrian Chadd #if 0
122967f4aa38SAdrian Chadd 	printf("%s: %d: ieee=%d, freq=%d, flags=0x%08x\n",
123067f4aa38SAdrian Chadd 	    __func__,
123167f4aa38SAdrian Chadd 	    *nchans,
123267f4aa38SAdrian Chadd 	    ieee,
123367f4aa38SAdrian Chadd 	    freq,
123467f4aa38SAdrian Chadd 	    flags);
123567f4aa38SAdrian Chadd #endif
123667f4aa38SAdrian Chadd 
1237355fec48SAndriy Voskoboinyk 	c = &chans[(*nchans)++];
1238355fec48SAndriy Voskoboinyk 	c->ic_ieee = ieee;
1239355fec48SAndriy Voskoboinyk 	c->ic_freq = freq != 0 ? freq : ieee80211_ieee2mhz(ieee, flags);
1240355fec48SAndriy Voskoboinyk 	c->ic_maxregpower = maxregpower;
1241355fec48SAndriy Voskoboinyk 	c->ic_maxpower = 2 * maxregpower;
1242355fec48SAndriy Voskoboinyk 	c->ic_flags = flags;
124367f4aa38SAdrian Chadd 	c->ic_vht_ch_freq1 = 0;
124467f4aa38SAdrian Chadd 	c->ic_vht_ch_freq2 = 0;
1245355fec48SAndriy Voskoboinyk 	set_extchan(c);
124667f4aa38SAdrian Chadd 	set_vht_extchan(c);
1247355fec48SAndriy Voskoboinyk 
1248355fec48SAndriy Voskoboinyk 	return (0);
1249355fec48SAndriy Voskoboinyk }
1250355fec48SAndriy Voskoboinyk 
1251355fec48SAndriy Voskoboinyk static int
1252355fec48SAndriy Voskoboinyk copychan_prev(struct ieee80211_channel chans[], int maxchans, int *nchans,
1253355fec48SAndriy Voskoboinyk     uint32_t flags)
1254355fec48SAndriy Voskoboinyk {
1255355fec48SAndriy Voskoboinyk 	struct ieee80211_channel *c;
1256355fec48SAndriy Voskoboinyk 
1257355fec48SAndriy Voskoboinyk 	KASSERT(*nchans > 0, ("channel list is empty\n"));
1258355fec48SAndriy Voskoboinyk 
1259355fec48SAndriy Voskoboinyk 	if (*nchans >= maxchans)
1260355fec48SAndriy Voskoboinyk 		return (ENOBUFS);
1261355fec48SAndriy Voskoboinyk 
126267f4aa38SAdrian Chadd #if 0
126367f4aa38SAdrian Chadd 	printf("%s: %d: flags=0x%08x\n",
126467f4aa38SAdrian Chadd 	    __func__,
126567f4aa38SAdrian Chadd 	    *nchans,
126667f4aa38SAdrian Chadd 	    flags);
126767f4aa38SAdrian Chadd #endif
126867f4aa38SAdrian Chadd 
1269355fec48SAndriy Voskoboinyk 	c = &chans[(*nchans)++];
1270355fec48SAndriy Voskoboinyk 	c[0] = c[-1];
1271355fec48SAndriy Voskoboinyk 	c->ic_flags = flags;
127267f4aa38SAdrian Chadd 	c->ic_vht_ch_freq1 = 0;
127367f4aa38SAdrian Chadd 	c->ic_vht_ch_freq2 = 0;
1274355fec48SAndriy Voskoboinyk 	set_extchan(c);
127567f4aa38SAdrian Chadd 	set_vht_extchan(c);
1276355fec48SAndriy Voskoboinyk 
1277355fec48SAndriy Voskoboinyk 	return (0);
1278355fec48SAndriy Voskoboinyk }
1279355fec48SAndriy Voskoboinyk 
128067f4aa38SAdrian Chadd /*
128167f4aa38SAdrian Chadd  * XXX VHT-2GHz
128267f4aa38SAdrian Chadd  */
1283355fec48SAndriy Voskoboinyk static void
1284355fec48SAndriy Voskoboinyk getflags_2ghz(const uint8_t bands[], uint32_t flags[], int ht40)
1285355fec48SAndriy Voskoboinyk {
1286355fec48SAndriy Voskoboinyk 	int nmodes;
1287355fec48SAndriy Voskoboinyk 
1288355fec48SAndriy Voskoboinyk 	nmodes = 0;
1289355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11B))
1290355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_B;
1291355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11G))
1292355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_G;
1293355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11NG))
1294355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_G | IEEE80211_CHAN_HT20;
1295355fec48SAndriy Voskoboinyk 	if (ht40) {
1296355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_G | IEEE80211_CHAN_HT40U;
1297355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_G | IEEE80211_CHAN_HT40D;
1298355fec48SAndriy Voskoboinyk 	}
1299355fec48SAndriy Voskoboinyk 	flags[nmodes] = 0;
1300355fec48SAndriy Voskoboinyk }
1301355fec48SAndriy Voskoboinyk 
1302355fec48SAndriy Voskoboinyk static void
130367f4aa38SAdrian Chadd getflags_5ghz(const uint8_t bands[], uint32_t flags[], int ht40, int vht80)
1304355fec48SAndriy Voskoboinyk {
1305355fec48SAndriy Voskoboinyk 	int nmodes;
1306355fec48SAndriy Voskoboinyk 
130767f4aa38SAdrian Chadd 	/*
130867f4aa38SAdrian Chadd 	 * the addchan_list function seems to expect the flags array to
130967f4aa38SAdrian Chadd 	 * be in channel width order, so the VHT bits are interspersed
131067f4aa38SAdrian Chadd 	 * as appropriate to maintain said order.
131167f4aa38SAdrian Chadd 	 *
131267f4aa38SAdrian Chadd 	 * It also assumes HT40U is before HT40D.
131367f4aa38SAdrian Chadd 	 */
1314355fec48SAndriy Voskoboinyk 	nmodes = 0;
131567f4aa38SAdrian Chadd 
131667f4aa38SAdrian Chadd 	/* 20MHz */
1317355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11A))
1318355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_A;
1319355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11NA))
1320355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT20;
132167f4aa38SAdrian Chadd 	if (isset(bands, IEEE80211_MODE_VHT_5GHZ)) {
132267f4aa38SAdrian Chadd 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT20 |
132367f4aa38SAdrian Chadd 		    IEEE80211_CHAN_VHT20;
132498ff1f7cSAndriy Voskoboinyk 	}
132567f4aa38SAdrian Chadd 
132667f4aa38SAdrian Chadd 	/* 40MHz */
1327355fec48SAndriy Voskoboinyk 	if (ht40) {
1328355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT40U;
132967f4aa38SAdrian Chadd 	}
133067f4aa38SAdrian Chadd 	if (ht40 && isset(bands, IEEE80211_MODE_VHT_5GHZ)) {
133167f4aa38SAdrian Chadd 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT40U
133267f4aa38SAdrian Chadd 		    | IEEE80211_CHAN_VHT40U;
133367f4aa38SAdrian Chadd 	}
133467f4aa38SAdrian Chadd 	if (ht40) {
1335355fec48SAndriy Voskoboinyk 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT40D;
1336355fec48SAndriy Voskoboinyk 	}
133767f4aa38SAdrian Chadd 	if (ht40 && isset(bands, IEEE80211_MODE_VHT_5GHZ)) {
133867f4aa38SAdrian Chadd 		flags[nmodes++] = IEEE80211_CHAN_A | IEEE80211_CHAN_HT40D
133967f4aa38SAdrian Chadd 		    | IEEE80211_CHAN_VHT40D;
134067f4aa38SAdrian Chadd 	}
134167f4aa38SAdrian Chadd 
134267f4aa38SAdrian Chadd 	/* 80MHz */
134367f4aa38SAdrian Chadd 	if (vht80 && isset(bands, IEEE80211_MODE_VHT_5GHZ)) {
134467f4aa38SAdrian Chadd 		flags[nmodes++] = IEEE80211_CHAN_A |
134567f4aa38SAdrian Chadd 		    IEEE80211_CHAN_HT40U | IEEE80211_CHAN_VHT80;
134667f4aa38SAdrian Chadd 		flags[nmodes++] = IEEE80211_CHAN_A |
134767f4aa38SAdrian Chadd 		    IEEE80211_CHAN_HT40D | IEEE80211_CHAN_VHT80;
134867f4aa38SAdrian Chadd 	}
134967f4aa38SAdrian Chadd 
135067f4aa38SAdrian Chadd 	/* XXX VHT80+80 */
135167f4aa38SAdrian Chadd 	/* XXX VHT160 */
1352355fec48SAndriy Voskoboinyk 	flags[nmodes] = 0;
1353355fec48SAndriy Voskoboinyk }
1354355fec48SAndriy Voskoboinyk 
1355355fec48SAndriy Voskoboinyk static void
135667f4aa38SAdrian Chadd getflags(const uint8_t bands[], uint32_t flags[], int ht40, int vht80)
1357355fec48SAndriy Voskoboinyk {
1358355fec48SAndriy Voskoboinyk 
1359355fec48SAndriy Voskoboinyk 	flags[0] = 0;
1360355fec48SAndriy Voskoboinyk 	if (isset(bands, IEEE80211_MODE_11A) ||
136167f4aa38SAdrian Chadd 	    isset(bands, IEEE80211_MODE_11NA) ||
136267f4aa38SAdrian Chadd 	    isset(bands, IEEE80211_MODE_VHT_5GHZ)) {
1363355fec48SAndriy Voskoboinyk 		if (isset(bands, IEEE80211_MODE_11B) ||
1364355fec48SAndriy Voskoboinyk 		    isset(bands, IEEE80211_MODE_11G) ||
136567f4aa38SAdrian Chadd 		    isset(bands, IEEE80211_MODE_11NG) ||
136667f4aa38SAdrian Chadd 		    isset(bands, IEEE80211_MODE_VHT_2GHZ))
1367355fec48SAndriy Voskoboinyk 			return;
1368355fec48SAndriy Voskoboinyk 
136967f4aa38SAdrian Chadd 		getflags_5ghz(bands, flags, ht40, vht80);
1370355fec48SAndriy Voskoboinyk 	} else
1371355fec48SAndriy Voskoboinyk 		getflags_2ghz(bands, flags, ht40);
1372355fec48SAndriy Voskoboinyk }
1373355fec48SAndriy Voskoboinyk 
1374355fec48SAndriy Voskoboinyk /*
1375355fec48SAndriy Voskoboinyk  * Add one 20 MHz channel into specified channel list.
1376355fec48SAndriy Voskoboinyk  */
137767f4aa38SAdrian Chadd /* XXX VHT */
1378355fec48SAndriy Voskoboinyk int
1379355fec48SAndriy Voskoboinyk ieee80211_add_channel(struct ieee80211_channel chans[], int maxchans,
1380355fec48SAndriy Voskoboinyk     int *nchans, uint8_t ieee, uint16_t freq, int8_t maxregpower,
1381355fec48SAndriy Voskoboinyk     uint32_t chan_flags, const uint8_t bands[])
1382355fec48SAndriy Voskoboinyk {
1383355fec48SAndriy Voskoboinyk 	uint32_t flags[IEEE80211_MODE_MAX];
1384355fec48SAndriy Voskoboinyk 	int i, error;
1385355fec48SAndriy Voskoboinyk 
138667f4aa38SAdrian Chadd 	getflags(bands, flags, 0, 0);
1387355fec48SAndriy Voskoboinyk 	KASSERT(flags[0] != 0, ("%s: no correct mode provided\n", __func__));
1388355fec48SAndriy Voskoboinyk 
1389355fec48SAndriy Voskoboinyk 	error = addchan(chans, maxchans, nchans, ieee, freq, maxregpower,
1390355fec48SAndriy Voskoboinyk 	    flags[0] | chan_flags);
1391355fec48SAndriy Voskoboinyk 	for (i = 1; flags[i] != 0 && error == 0; i++) {
1392355fec48SAndriy Voskoboinyk 		error = copychan_prev(chans, maxchans, nchans,
1393355fec48SAndriy Voskoboinyk 		    flags[i] | chan_flags);
1394355fec48SAndriy Voskoboinyk 	}
1395355fec48SAndriy Voskoboinyk 
1396355fec48SAndriy Voskoboinyk 	return (error);
1397355fec48SAndriy Voskoboinyk }
1398355fec48SAndriy Voskoboinyk 
1399355fec48SAndriy Voskoboinyk static struct ieee80211_channel *
1400355fec48SAndriy Voskoboinyk findchannel(struct ieee80211_channel chans[], int nchans, uint16_t freq,
1401355fec48SAndriy Voskoboinyk     uint32_t flags)
1402355fec48SAndriy Voskoboinyk {
1403355fec48SAndriy Voskoboinyk 	struct ieee80211_channel *c;
1404355fec48SAndriy Voskoboinyk 	int i;
1405355fec48SAndriy Voskoboinyk 
1406355fec48SAndriy Voskoboinyk 	flags &= IEEE80211_CHAN_ALLTURBO;
1407355fec48SAndriy Voskoboinyk 	/* brute force search */
1408355fec48SAndriy Voskoboinyk 	for (i = 0; i < nchans; i++) {
1409355fec48SAndriy Voskoboinyk 		c = &chans[i];
1410355fec48SAndriy Voskoboinyk 		if (c->ic_freq == freq &&
1411355fec48SAndriy Voskoboinyk 		    (c->ic_flags & IEEE80211_CHAN_ALLTURBO) == flags)
1412355fec48SAndriy Voskoboinyk 			return c;
1413355fec48SAndriy Voskoboinyk 	}
1414355fec48SAndriy Voskoboinyk 	return NULL;
1415355fec48SAndriy Voskoboinyk }
1416355fec48SAndriy Voskoboinyk 
1417355fec48SAndriy Voskoboinyk /*
1418355fec48SAndriy Voskoboinyk  * Add 40 MHz channel pair into specified channel list.
1419355fec48SAndriy Voskoboinyk  */
142067f4aa38SAdrian Chadd /* XXX VHT */
1421355fec48SAndriy Voskoboinyk int
1422355fec48SAndriy Voskoboinyk ieee80211_add_channel_ht40(struct ieee80211_channel chans[], int maxchans,
1423355fec48SAndriy Voskoboinyk     int *nchans, uint8_t ieee, int8_t maxregpower, uint32_t flags)
1424355fec48SAndriy Voskoboinyk {
1425355fec48SAndriy Voskoboinyk 	struct ieee80211_channel *cent, *extc;
1426355fec48SAndriy Voskoboinyk 	uint16_t freq;
1427355fec48SAndriy Voskoboinyk 	int error;
1428355fec48SAndriy Voskoboinyk 
1429355fec48SAndriy Voskoboinyk 	freq = ieee80211_ieee2mhz(ieee, flags);
1430355fec48SAndriy Voskoboinyk 
1431355fec48SAndriy Voskoboinyk 	/*
1432355fec48SAndriy Voskoboinyk 	 * Each entry defines an HT40 channel pair; find the
1433355fec48SAndriy Voskoboinyk 	 * center channel, then the extension channel above.
1434355fec48SAndriy Voskoboinyk 	 */
1435355fec48SAndriy Voskoboinyk 	flags |= IEEE80211_CHAN_HT20;
1436355fec48SAndriy Voskoboinyk 	cent = findchannel(chans, *nchans, freq, flags);
1437355fec48SAndriy Voskoboinyk 	if (cent == NULL)
1438355fec48SAndriy Voskoboinyk 		return (EINVAL);
1439355fec48SAndriy Voskoboinyk 
1440355fec48SAndriy Voskoboinyk 	extc = findchannel(chans, *nchans, freq + 20, flags);
1441355fec48SAndriy Voskoboinyk 	if (extc == NULL)
1442355fec48SAndriy Voskoboinyk 		return (ENOENT);
1443355fec48SAndriy Voskoboinyk 
1444355fec48SAndriy Voskoboinyk 	flags &= ~IEEE80211_CHAN_HT;
1445355fec48SAndriy Voskoboinyk 	error = addchan(chans, maxchans, nchans, cent->ic_ieee, cent->ic_freq,
1446355fec48SAndriy Voskoboinyk 	    maxregpower, flags | IEEE80211_CHAN_HT40U);
1447355fec48SAndriy Voskoboinyk 	if (error != 0)
1448355fec48SAndriy Voskoboinyk 		return (error);
1449355fec48SAndriy Voskoboinyk 
1450355fec48SAndriy Voskoboinyk 	error = addchan(chans, maxchans, nchans, extc->ic_ieee, extc->ic_freq,
1451355fec48SAndriy Voskoboinyk 	    maxregpower, flags | IEEE80211_CHAN_HT40D);
1452355fec48SAndriy Voskoboinyk 
1453355fec48SAndriy Voskoboinyk 	return (error);
1454355fec48SAndriy Voskoboinyk }
1455355fec48SAndriy Voskoboinyk 
1456355fec48SAndriy Voskoboinyk /*
14574774b999SAdrian Chadd  * Fetch the center frequency for the primary channel.
14584774b999SAdrian Chadd  */
14594774b999SAdrian Chadd uint32_t
14604774b999SAdrian Chadd ieee80211_get_channel_center_freq(const struct ieee80211_channel *c)
14614774b999SAdrian Chadd {
14624774b999SAdrian Chadd 
14634774b999SAdrian Chadd 	return (c->ic_freq);
14644774b999SAdrian Chadd }
14654774b999SAdrian Chadd 
14664774b999SAdrian Chadd /*
14674774b999SAdrian Chadd  * Fetch the center frequency for the primary BAND channel.
14684774b999SAdrian Chadd  *
14694774b999SAdrian Chadd  * For 5, 10, 20MHz channels it'll be the normally configured channel
14704774b999SAdrian Chadd  * frequency.
14714774b999SAdrian Chadd  *
14724774b999SAdrian Chadd  * For 40MHz, 80MHz, 160Mhz channels it'll the the centre of the
14734774b999SAdrian Chadd  * wide channel, not the centre of the primary channel (that's ic_freq).
14744774b999SAdrian Chadd  *
14754774b999SAdrian Chadd  * For 80+80MHz channels this will be the centre of the primary
14764774b999SAdrian Chadd  * 80MHz channel; the secondary 80MHz channel will be center_freq2().
14774774b999SAdrian Chadd  */
14784774b999SAdrian Chadd uint32_t
14794774b999SAdrian Chadd ieee80211_get_channel_center_freq1(const struct ieee80211_channel *c)
14804774b999SAdrian Chadd {
14814774b999SAdrian Chadd 
148267f4aa38SAdrian Chadd 	/*
148367f4aa38SAdrian Chadd 	 * VHT - use the pre-calculated centre frequency
148467f4aa38SAdrian Chadd 	 * of the given channel.
148567f4aa38SAdrian Chadd 	 */
148667f4aa38SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT(c))
148767f4aa38SAdrian Chadd 		return (ieee80211_ieee2mhz(c->ic_vht_ch_freq1, c->ic_flags));
148867f4aa38SAdrian Chadd 
14894774b999SAdrian Chadd 	if (IEEE80211_IS_CHAN_HT40U(c)) {
14904774b999SAdrian Chadd 		return (c->ic_freq + 10);
14914774b999SAdrian Chadd 	}
14924774b999SAdrian Chadd 	if (IEEE80211_IS_CHAN_HT40D(c)) {
14934774b999SAdrian Chadd 		return (c->ic_freq - 10);
14944774b999SAdrian Chadd 	}
14954774b999SAdrian Chadd 
14964774b999SAdrian Chadd 	return (c->ic_freq);
14974774b999SAdrian Chadd }
14984774b999SAdrian Chadd 
14994774b999SAdrian Chadd /*
150067f4aa38SAdrian Chadd  * For now, no 80+80 support; it will likely always return 0.
15014774b999SAdrian Chadd  */
15024774b999SAdrian Chadd uint32_t
15034774b999SAdrian Chadd ieee80211_get_channel_center_freq2(const struct ieee80211_channel *c)
15044774b999SAdrian Chadd {
15054774b999SAdrian Chadd 
150667f4aa38SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT(c) && (c->ic_vht_ch_freq2 != 0))
150767f4aa38SAdrian Chadd 		return (ieee80211_ieee2mhz(c->ic_vht_ch_freq2, c->ic_flags));
150867f4aa38SAdrian Chadd 
15094774b999SAdrian Chadd 	return (0);
15104774b999SAdrian Chadd }
15114774b999SAdrian Chadd 
15124774b999SAdrian Chadd /*
1513355fec48SAndriy Voskoboinyk  * Adds channels into specified channel list (ieee[] array must be sorted).
1514355fec48SAndriy Voskoboinyk  * Channels are already sorted.
1515355fec48SAndriy Voskoboinyk  */
1516355fec48SAndriy Voskoboinyk static int
1517355fec48SAndriy Voskoboinyk add_chanlist(struct ieee80211_channel chans[], int maxchans, int *nchans,
1518355fec48SAndriy Voskoboinyk     const uint8_t ieee[], int nieee, uint32_t flags[])
1519355fec48SAndriy Voskoboinyk {
1520355fec48SAndriy Voskoboinyk 	uint16_t freq;
1521355fec48SAndriy Voskoboinyk 	int i, j, error;
152267f4aa38SAdrian Chadd 	int is_vht;
1523355fec48SAndriy Voskoboinyk 
1524355fec48SAndriy Voskoboinyk 	for (i = 0; i < nieee; i++) {
1525355fec48SAndriy Voskoboinyk 		freq = ieee80211_ieee2mhz(ieee[i], flags[0]);
1526355fec48SAndriy Voskoboinyk 		for (j = 0; flags[j] != 0; j++) {
152767f4aa38SAdrian Chadd 			/*
152867f4aa38SAdrian Chadd 			 * Notes:
152967f4aa38SAdrian Chadd 			 * + HT40 and VHT40 channels occur together, so
153067f4aa38SAdrian Chadd 			 *   we need to be careful that we actually allow that.
153167f4aa38SAdrian Chadd 			 * + VHT80, VHT160 will coexist with HT40/VHT40, so
153267f4aa38SAdrian Chadd 			 *   make sure it's not skipped because of the overlap
153367f4aa38SAdrian Chadd 			 *   check used for (V)HT40.
153467f4aa38SAdrian Chadd 			 */
153567f4aa38SAdrian Chadd 			is_vht = !! (flags[j] & IEEE80211_CHAN_VHT);
153667f4aa38SAdrian Chadd 
153767f4aa38SAdrian Chadd 			/*
153867f4aa38SAdrian Chadd 			 * Test for VHT80.
153967f4aa38SAdrian Chadd 			 * XXX This is all very broken right now.
154067f4aa38SAdrian Chadd 			 * What we /should/ do is:
154167f4aa38SAdrian Chadd 			 *
154267f4aa38SAdrian Chadd 			 * + check that the frequency is in the list of
154367f4aa38SAdrian Chadd 			 *   allowed VHT80 ranges; and
154467f4aa38SAdrian Chadd 			 * + the other 3 channels in the list are actually
154567f4aa38SAdrian Chadd 			 *   also available.
154667f4aa38SAdrian Chadd 			 */
154767f4aa38SAdrian Chadd 			if (is_vht && flags[j] & IEEE80211_CHAN_VHT80)
154867f4aa38SAdrian Chadd 				if (! is_vht80_valid_freq(freq))
154967f4aa38SAdrian Chadd 					continue;
155067f4aa38SAdrian Chadd 
155167f4aa38SAdrian Chadd 			/*
155267f4aa38SAdrian Chadd 			 * Test for (V)HT40.
155367f4aa38SAdrian Chadd 			 *
155467f4aa38SAdrian Chadd 			 * This is also a fall through from VHT80; as we only
155567f4aa38SAdrian Chadd 			 * allow a VHT80 channel if the VHT40 combination is
155667f4aa38SAdrian Chadd 			 * also valid.  If the VHT40 form is not valid then
155767f4aa38SAdrian Chadd 			 * we certainly can't do VHT80..
155867f4aa38SAdrian Chadd 			 */
1559355fec48SAndriy Voskoboinyk 			if (flags[j] & IEEE80211_CHAN_HT40D)
156067f4aa38SAdrian Chadd 				/*
156167f4aa38SAdrian Chadd 				 * Can't have a "lower" channel if we are the
156267f4aa38SAdrian Chadd 				 * first channel.
156367f4aa38SAdrian Chadd 				 *
156467f4aa38SAdrian Chadd 				 * Can't have a "lower" channel if it's below/
156567f4aa38SAdrian Chadd 				 * within 20MHz of the first channel.
156667f4aa38SAdrian Chadd 				 *
156767f4aa38SAdrian Chadd 				 * Can't have a "lower" channel if the channel
156867f4aa38SAdrian Chadd 				 * below it is not 20MHz away.
156967f4aa38SAdrian Chadd 				 */
1570355fec48SAndriy Voskoboinyk 				if (i == 0 || ieee[i] < ieee[0] + 4 ||
1571355fec48SAndriy Voskoboinyk 				    freq - 20 !=
1572355fec48SAndriy Voskoboinyk 				    ieee80211_ieee2mhz(ieee[i] - 4, flags[j]))
1573355fec48SAndriy Voskoboinyk 					continue;
1574355fec48SAndriy Voskoboinyk 			if (flags[j] & IEEE80211_CHAN_HT40U)
157567f4aa38SAdrian Chadd 				/*
157667f4aa38SAdrian Chadd 				 * Can't have an "upper" channel if we are
157767f4aa38SAdrian Chadd 				 * the last channel.
157867f4aa38SAdrian Chadd 				 *
157967f4aa38SAdrian Chadd 				 * Can't have an "upper" channel be above the
158067f4aa38SAdrian Chadd 				 * last channel in the list.
158167f4aa38SAdrian Chadd 				 *
158267f4aa38SAdrian Chadd 				 * Can't have an "upper" channel if the next
158367f4aa38SAdrian Chadd 				 * channel according to the math isn't 20MHz
158467f4aa38SAdrian Chadd 				 * away.  (Likely for channel 13/14.)
158567f4aa38SAdrian Chadd 				 */
1586355fec48SAndriy Voskoboinyk 				if (i == nieee - 1 ||
1587355fec48SAndriy Voskoboinyk 				    ieee[i] + 4 > ieee[nieee - 1] ||
1588355fec48SAndriy Voskoboinyk 				    freq + 20 !=
1589355fec48SAndriy Voskoboinyk 				    ieee80211_ieee2mhz(ieee[i] + 4, flags[j]))
1590355fec48SAndriy Voskoboinyk 					continue;
1591355fec48SAndriy Voskoboinyk 
1592355fec48SAndriy Voskoboinyk 			if (j == 0) {
1593355fec48SAndriy Voskoboinyk 				error = addchan(chans, maxchans, nchans,
1594355fec48SAndriy Voskoboinyk 				    ieee[i], freq, 0, flags[j]);
1595355fec48SAndriy Voskoboinyk 			} else {
1596355fec48SAndriy Voskoboinyk 				error = copychan_prev(chans, maxchans, nchans,
1597355fec48SAndriy Voskoboinyk 				    flags[j]);
1598355fec48SAndriy Voskoboinyk 			}
1599355fec48SAndriy Voskoboinyk 			if (error != 0)
1600355fec48SAndriy Voskoboinyk 				return (error);
1601355fec48SAndriy Voskoboinyk 		}
1602355fec48SAndriy Voskoboinyk 	}
1603355fec48SAndriy Voskoboinyk 
16046dbbec93SAndriy Voskoboinyk 	return (0);
1605355fec48SAndriy Voskoboinyk }
1606355fec48SAndriy Voskoboinyk 
1607355fec48SAndriy Voskoboinyk int
1608355fec48SAndriy Voskoboinyk ieee80211_add_channel_list_2ghz(struct ieee80211_channel chans[], int maxchans,
1609355fec48SAndriy Voskoboinyk     int *nchans, const uint8_t ieee[], int nieee, const uint8_t bands[],
1610355fec48SAndriy Voskoboinyk     int ht40)
1611355fec48SAndriy Voskoboinyk {
1612355fec48SAndriy Voskoboinyk 	uint32_t flags[IEEE80211_MODE_MAX];
1613355fec48SAndriy Voskoboinyk 
161467f4aa38SAdrian Chadd 	/* XXX no VHT for now */
1615355fec48SAndriy Voskoboinyk 	getflags_2ghz(bands, flags, ht40);
1616355fec48SAndriy Voskoboinyk 	KASSERT(flags[0] != 0, ("%s: no correct mode provided\n", __func__));
1617355fec48SAndriy Voskoboinyk 
1618355fec48SAndriy Voskoboinyk 	return (add_chanlist(chans, maxchans, nchans, ieee, nieee, flags));
1619355fec48SAndriy Voskoboinyk }
1620355fec48SAndriy Voskoboinyk 
1621355fec48SAndriy Voskoboinyk int
1622355fec48SAndriy Voskoboinyk ieee80211_add_channel_list_5ghz(struct ieee80211_channel chans[], int maxchans,
1623355fec48SAndriy Voskoboinyk     int *nchans, const uint8_t ieee[], int nieee, const uint8_t bands[],
1624355fec48SAndriy Voskoboinyk     int ht40)
1625355fec48SAndriy Voskoboinyk {
1626355fec48SAndriy Voskoboinyk 	uint32_t flags[IEEE80211_MODE_MAX];
162767f4aa38SAdrian Chadd 	int vht80 = 0;
1628355fec48SAndriy Voskoboinyk 
162967f4aa38SAdrian Chadd 	/*
163067f4aa38SAdrian Chadd 	 * For now, assume VHT == VHT80 support as a minimum.
163167f4aa38SAdrian Chadd 	 */
163267f4aa38SAdrian Chadd 	if (isset(bands, IEEE80211_MODE_VHT_5GHZ))
163367f4aa38SAdrian Chadd 		vht80 = 1;
163467f4aa38SAdrian Chadd 
163567f4aa38SAdrian Chadd 	getflags_5ghz(bands, flags, ht40, vht80);
1636355fec48SAndriy Voskoboinyk 	KASSERT(flags[0] != 0, ("%s: no correct mode provided\n", __func__));
1637355fec48SAndriy Voskoboinyk 
1638355fec48SAndriy Voskoboinyk 	return (add_chanlist(chans, maxchans, nchans, ieee, nieee, flags));
1639355fec48SAndriy Voskoboinyk }
1640355fec48SAndriy Voskoboinyk 
16411a1e1d21SSam Leffler /*
164268e8e04eSSam Leffler  * Locate a channel given a frequency+flags.  We cache
1643b032f27cSSam Leffler  * the previous lookup to optimize switching between two
164468e8e04eSSam Leffler  * channels--as happens with dynamic turbo.
164568e8e04eSSam Leffler  */
164668e8e04eSSam Leffler struct ieee80211_channel *
164768e8e04eSSam Leffler ieee80211_find_channel(struct ieee80211com *ic, int freq, int flags)
164868e8e04eSSam Leffler {
164968e8e04eSSam Leffler 	struct ieee80211_channel *c;
165068e8e04eSSam Leffler 
165168e8e04eSSam Leffler 	flags &= IEEE80211_CHAN_ALLTURBO;
165268e8e04eSSam Leffler 	c = ic->ic_prevchan;
165368e8e04eSSam Leffler 	if (c != NULL && c->ic_freq == freq &&
165468e8e04eSSam Leffler 	    (c->ic_flags & IEEE80211_CHAN_ALLTURBO) == flags)
165568e8e04eSSam Leffler 		return c;
165668e8e04eSSam Leffler 	/* brute force search */
1657355fec48SAndriy Voskoboinyk 	return (findchannel(ic->ic_channels, ic->ic_nchans, freq, flags));
165868e8e04eSSam Leffler }
165968e8e04eSSam Leffler 
1660a557c018SSam Leffler /*
1661a557c018SSam Leffler  * Locate a channel given a channel number+flags.  We cache
1662a557c018SSam Leffler  * the previous lookup to optimize switching between two
1663a557c018SSam Leffler  * channels--as happens with dynamic turbo.
1664a557c018SSam Leffler  */
1665a557c018SSam Leffler struct ieee80211_channel *
1666a557c018SSam Leffler ieee80211_find_channel_byieee(struct ieee80211com *ic, int ieee, int flags)
1667a557c018SSam Leffler {
1668a557c018SSam Leffler 	struct ieee80211_channel *c;
1669a557c018SSam Leffler 	int i;
1670a557c018SSam Leffler 
1671a557c018SSam Leffler 	flags &= IEEE80211_CHAN_ALLTURBO;
1672a557c018SSam Leffler 	c = ic->ic_prevchan;
1673a557c018SSam Leffler 	if (c != NULL && c->ic_ieee == ieee &&
1674a557c018SSam Leffler 	    (c->ic_flags & IEEE80211_CHAN_ALLTURBO) == flags)
1675a557c018SSam Leffler 		return c;
1676a557c018SSam Leffler 	/* brute force search */
1677a557c018SSam Leffler 	for (i = 0; i < ic->ic_nchans; i++) {
1678a557c018SSam Leffler 		c = &ic->ic_channels[i];
1679a557c018SSam Leffler 		if (c->ic_ieee == ieee &&
1680a557c018SSam Leffler 		    (c->ic_flags & IEEE80211_CHAN_ALLTURBO) == flags)
1681a557c018SSam Leffler 			return c;
1682a557c018SSam Leffler 	}
1683a557c018SSam Leffler 	return NULL;
1684a557c018SSam Leffler }
1685a557c018SSam Leffler 
1686c79f192cSAdrian Chadd /*
1687c79f192cSAdrian Chadd  * Lookup a channel suitable for the given rx status.
1688c79f192cSAdrian Chadd  *
1689c79f192cSAdrian Chadd  * This is used to find a channel for a frame (eg beacon, probe
1690c79f192cSAdrian Chadd  * response) based purely on the received PHY information.
1691c79f192cSAdrian Chadd  *
1692c79f192cSAdrian Chadd  * For now it tries to do it based on R_FREQ / R_IEEE.
1693c79f192cSAdrian Chadd  * This is enough for 11bg and 11a (and thus 11ng/11na)
1694c79f192cSAdrian Chadd  * but it will not be enough for GSM, PSB channels and the
1695c79f192cSAdrian Chadd  * like.  It also doesn't know about legacy-turbog and
1696c79f192cSAdrian Chadd  * legacy-turbo modes, which some offload NICs actually
1697c79f192cSAdrian Chadd  * support in weird ways.
1698c79f192cSAdrian Chadd  *
1699c79f192cSAdrian Chadd  * Takes the ic and rxstatus; returns the channel or NULL
1700c79f192cSAdrian Chadd  * if not found.
1701c79f192cSAdrian Chadd  *
1702c79f192cSAdrian Chadd  * XXX TODO: Add support for that when the need arises.
1703c79f192cSAdrian Chadd  */
1704c79f192cSAdrian Chadd struct ieee80211_channel *
1705c79f192cSAdrian Chadd ieee80211_lookup_channel_rxstatus(struct ieee80211vap *vap,
1706c79f192cSAdrian Chadd     const struct ieee80211_rx_stats *rxs)
1707c79f192cSAdrian Chadd {
1708c79f192cSAdrian Chadd 	struct ieee80211com *ic = vap->iv_ic;
1709c79f192cSAdrian Chadd 	uint32_t flags;
1710c79f192cSAdrian Chadd 	struct ieee80211_channel *c;
1711c79f192cSAdrian Chadd 
1712c79f192cSAdrian Chadd 	if (rxs == NULL)
1713c79f192cSAdrian Chadd 		return (NULL);
1714c79f192cSAdrian Chadd 
1715c79f192cSAdrian Chadd 	/*
1716c79f192cSAdrian Chadd 	 * Strictly speaking we only use freq for now,
1717c79f192cSAdrian Chadd 	 * however later on we may wish to just store
1718c79f192cSAdrian Chadd 	 * the ieee for verification.
1719c79f192cSAdrian Chadd 	 */
1720c79f192cSAdrian Chadd 	if ((rxs->r_flags & IEEE80211_R_FREQ) == 0)
1721c79f192cSAdrian Chadd 		return (NULL);
1722c79f192cSAdrian Chadd 	if ((rxs->r_flags & IEEE80211_R_IEEE) == 0)
1723c79f192cSAdrian Chadd 		return (NULL);
1724c79f192cSAdrian Chadd 
1725c79f192cSAdrian Chadd 	/*
1726c79f192cSAdrian Chadd 	 * If the rx status contains a valid ieee/freq, then
1727c79f192cSAdrian Chadd 	 * ensure we populate the correct channel information
1728c79f192cSAdrian Chadd 	 * in rxchan before passing it up to the scan infrastructure.
1729c79f192cSAdrian Chadd 	 * Offload NICs will pass up beacons from all channels
1730c79f192cSAdrian Chadd 	 * during background scans.
1731c79f192cSAdrian Chadd 	 */
1732c79f192cSAdrian Chadd 
1733c79f192cSAdrian Chadd 	/* Determine a band */
1734c79f192cSAdrian Chadd 	/* XXX should be done by the driver? */
1735c79f192cSAdrian Chadd 	if (rxs->c_freq < 3000) {
17362108f2a8SAdrian Chadd 		flags = IEEE80211_CHAN_G;
1737c79f192cSAdrian Chadd 	} else {
1738c79f192cSAdrian Chadd 		flags = IEEE80211_CHAN_A;
1739c79f192cSAdrian Chadd 	}
1740c79f192cSAdrian Chadd 
1741c79f192cSAdrian Chadd 	/* Channel lookup */
1742c79f192cSAdrian Chadd 	c = ieee80211_find_channel(ic, rxs->c_freq, flags);
1743c79f192cSAdrian Chadd 
1744c79f192cSAdrian Chadd 	IEEE80211_DPRINTF(vap, IEEE80211_MSG_INPUT,
1745c79f192cSAdrian Chadd 	    "%s: freq=%d, ieee=%d, flags=0x%08x; c=%p\n",
1746c79f192cSAdrian Chadd 	    __func__,
1747c79f192cSAdrian Chadd 	    (int) rxs->c_freq,
1748c79f192cSAdrian Chadd 	    (int) rxs->c_ieee,
1749c79f192cSAdrian Chadd 	    flags,
1750c79f192cSAdrian Chadd 	    c);
1751c79f192cSAdrian Chadd 
1752c79f192cSAdrian Chadd 	return (c);
1753c79f192cSAdrian Chadd }
1754c79f192cSAdrian Chadd 
175568e8e04eSSam Leffler static void
1756b032f27cSSam Leffler addmedia(struct ifmedia *media, int caps, int addsta, int mode, int mword)
175768e8e04eSSam Leffler {
175868e8e04eSSam Leffler #define	ADD(_ic, _s, _o) \
1759b032f27cSSam Leffler 	ifmedia_add(media, \
176068e8e04eSSam Leffler 		IFM_MAKEWORD(IFM_IEEE80211, (_s), (_o), 0), 0, NULL)
176168e8e04eSSam Leffler 	static const u_int mopts[IEEE80211_MODE_MAX] = {
1762c3f10abdSSam Leffler 	    [IEEE80211_MODE_AUTO]	= IFM_AUTO,
1763c3f10abdSSam Leffler 	    [IEEE80211_MODE_11A]	= IFM_IEEE80211_11A,
1764c3f10abdSSam Leffler 	    [IEEE80211_MODE_11B]	= IFM_IEEE80211_11B,
1765c3f10abdSSam Leffler 	    [IEEE80211_MODE_11G]	= IFM_IEEE80211_11G,
1766c3f10abdSSam Leffler 	    [IEEE80211_MODE_FH]		= IFM_IEEE80211_FH,
1767c3f10abdSSam Leffler 	    [IEEE80211_MODE_TURBO_A]	= IFM_IEEE80211_11A|IFM_IEEE80211_TURBO,
1768c3f10abdSSam Leffler 	    [IEEE80211_MODE_TURBO_G]	= IFM_IEEE80211_11G|IFM_IEEE80211_TURBO,
1769c3f10abdSSam Leffler 	    [IEEE80211_MODE_STURBO_A]	= IFM_IEEE80211_11A|IFM_IEEE80211_TURBO,
17706a76ae21SSam Leffler 	    [IEEE80211_MODE_HALF]	= IFM_IEEE80211_11A,	/* XXX */
17716a76ae21SSam Leffler 	    [IEEE80211_MODE_QUARTER]	= IFM_IEEE80211_11A,	/* XXX */
1772c3f10abdSSam Leffler 	    [IEEE80211_MODE_11NA]	= IFM_IEEE80211_11NA,
1773c3f10abdSSam Leffler 	    [IEEE80211_MODE_11NG]	= IFM_IEEE80211_11NG,
17740c67d389SAdrian Chadd 	    [IEEE80211_MODE_VHT_2GHZ]	= IFM_IEEE80211_VHT2G,
17750c67d389SAdrian Chadd 	    [IEEE80211_MODE_VHT_5GHZ]	= IFM_IEEE80211_VHT5G,
177668e8e04eSSam Leffler 	};
177768e8e04eSSam Leffler 	u_int mopt;
177868e8e04eSSam Leffler 
177968e8e04eSSam Leffler 	mopt = mopts[mode];
1780b032f27cSSam Leffler 	if (addsta)
1781b032f27cSSam Leffler 		ADD(ic, mword, mopt);	/* STA mode has no cap */
1782b032f27cSSam Leffler 	if (caps & IEEE80211_C_IBSS)
1783b032f27cSSam Leffler 		ADD(media, mword, mopt | IFM_IEEE80211_ADHOC);
1784b032f27cSSam Leffler 	if (caps & IEEE80211_C_HOSTAP)
1785b032f27cSSam Leffler 		ADD(media, mword, mopt | IFM_IEEE80211_HOSTAP);
1786b032f27cSSam Leffler 	if (caps & IEEE80211_C_AHDEMO)
1787b032f27cSSam Leffler 		ADD(media, mword, mopt | IFM_IEEE80211_ADHOC | IFM_FLAG0);
1788b032f27cSSam Leffler 	if (caps & IEEE80211_C_MONITOR)
1789b032f27cSSam Leffler 		ADD(media, mword, mopt | IFM_IEEE80211_MONITOR);
1790b032f27cSSam Leffler 	if (caps & IEEE80211_C_WDS)
1791b032f27cSSam Leffler 		ADD(media, mword, mopt | IFM_IEEE80211_WDS);
179259aa14a9SRui Paulo 	if (caps & IEEE80211_C_MBSS)
179359aa14a9SRui Paulo 		ADD(media, mword, mopt | IFM_IEEE80211_MBSS);
179468e8e04eSSam Leffler #undef ADD
179568e8e04eSSam Leffler }
179668e8e04eSSam Leffler 
179768e8e04eSSam Leffler /*
17981a1e1d21SSam Leffler  * Setup the media data structures according to the channel and
1799b032f27cSSam Leffler  * rate tables.
18001a1e1d21SSam Leffler  */
1801b032f27cSSam Leffler static int
1802b032f27cSSam Leffler ieee80211_media_setup(struct ieee80211com *ic,
1803b032f27cSSam Leffler 	struct ifmedia *media, int caps, int addsta,
18041a1e1d21SSam Leffler 	ifm_change_cb_t media_change, ifm_stat_cb_t media_stat)
18051a1e1d21SSam Leffler {
1806fcd9500fSBernhard Schmidt 	int i, j, rate, maxrate, mword, r;
1807fcd9500fSBernhard Schmidt 	enum ieee80211_phymode mode;
180868e8e04eSSam Leffler 	const struct ieee80211_rateset *rs;
18091a1e1d21SSam Leffler 	struct ieee80211_rateset allrates;
18101a1e1d21SSam Leffler 
18112692bb26SSam Leffler 	/*
18121a1e1d21SSam Leffler 	 * Fill in media characteristics.
18131a1e1d21SSam Leffler 	 */
1814b032f27cSSam Leffler 	ifmedia_init(media, 0, media_change, media_stat);
18151a1e1d21SSam Leffler 	maxrate = 0;
181668e8e04eSSam Leffler 	/*
181768e8e04eSSam Leffler 	 * Add media for legacy operating modes.
181868e8e04eSSam Leffler 	 */
18191a1e1d21SSam Leffler 	memset(&allrates, 0, sizeof(allrates));
182068e8e04eSSam Leffler 	for (mode = IEEE80211_MODE_AUTO; mode < IEEE80211_MODE_11NA; mode++) {
18216dbd16f1SSam Leffler 		if (isclr(ic->ic_modecaps, mode))
18221a1e1d21SSam Leffler 			continue;
1823b032f27cSSam Leffler 		addmedia(media, caps, addsta, mode, IFM_AUTO);
18241a1e1d21SSam Leffler 		if (mode == IEEE80211_MODE_AUTO)
18251a1e1d21SSam Leffler 			continue;
18261a1e1d21SSam Leffler 		rs = &ic->ic_sup_rates[mode];
18271a1e1d21SSam Leffler 		for (i = 0; i < rs->rs_nrates; i++) {
18281a1e1d21SSam Leffler 			rate = rs->rs_rates[i];
18291a1e1d21SSam Leffler 			mword = ieee80211_rate2media(ic, rate, mode);
18301a1e1d21SSam Leffler 			if (mword == 0)
18311a1e1d21SSam Leffler 				continue;
1832b032f27cSSam Leffler 			addmedia(media, caps, addsta, mode, mword);
18331a1e1d21SSam Leffler 			/*
183468e8e04eSSam Leffler 			 * Add legacy rate to the collection of all rates.
18351a1e1d21SSam Leffler 			 */
18361a1e1d21SSam Leffler 			r = rate & IEEE80211_RATE_VAL;
18371a1e1d21SSam Leffler 			for (j = 0; j < allrates.rs_nrates; j++)
18381a1e1d21SSam Leffler 				if (allrates.rs_rates[j] == r)
18391a1e1d21SSam Leffler 					break;
18401a1e1d21SSam Leffler 			if (j == allrates.rs_nrates) {
18411a1e1d21SSam Leffler 				/* unique, add to the set */
18421a1e1d21SSam Leffler 				allrates.rs_rates[j] = r;
18431a1e1d21SSam Leffler 				allrates.rs_nrates++;
18441a1e1d21SSam Leffler 			}
18451a1e1d21SSam Leffler 			rate = (rate & IEEE80211_RATE_VAL) / 2;
18461a1e1d21SSam Leffler 			if (rate > maxrate)
18471a1e1d21SSam Leffler 				maxrate = rate;
18481a1e1d21SSam Leffler 		}
18491a1e1d21SSam Leffler 	}
18501a1e1d21SSam Leffler 	for (i = 0; i < allrates.rs_nrates; i++) {
18511a1e1d21SSam Leffler 		mword = ieee80211_rate2media(ic, allrates.rs_rates[i],
18521a1e1d21SSam Leffler 				IEEE80211_MODE_AUTO);
18531a1e1d21SSam Leffler 		if (mword == 0)
18541a1e1d21SSam Leffler 			continue;
185568e8e04eSSam Leffler 		/* NB: remove media options from mword */
1856b032f27cSSam Leffler 		addmedia(media, caps, addsta,
1857b032f27cSSam Leffler 		    IEEE80211_MODE_AUTO, IFM_SUBTYPE(mword));
18581a1e1d21SSam Leffler 	}
185968e8e04eSSam Leffler 	/*
186068e8e04eSSam Leffler 	 * Add HT/11n media.  Note that we do not have enough
186168e8e04eSSam Leffler 	 * bits in the media subtype to express the MCS so we
186268e8e04eSSam Leffler 	 * use a "placeholder" media subtype and any fixed MCS
186368e8e04eSSam Leffler 	 * must be specified with a different mechanism.
186468e8e04eSSam Leffler 	 */
18656a76ae21SSam Leffler 	for (; mode <= IEEE80211_MODE_11NG; mode++) {
186668e8e04eSSam Leffler 		if (isclr(ic->ic_modecaps, mode))
186768e8e04eSSam Leffler 			continue;
1868b032f27cSSam Leffler 		addmedia(media, caps, addsta, mode, IFM_AUTO);
1869b032f27cSSam Leffler 		addmedia(media, caps, addsta, mode, IFM_IEEE80211_MCS);
187068e8e04eSSam Leffler 	}
187168e8e04eSSam Leffler 	if (isset(ic->ic_modecaps, IEEE80211_MODE_11NA) ||
187268e8e04eSSam Leffler 	    isset(ic->ic_modecaps, IEEE80211_MODE_11NG)) {
1873b032f27cSSam Leffler 		addmedia(media, caps, addsta,
1874b032f27cSSam Leffler 		    IEEE80211_MODE_AUTO, IFM_IEEE80211_MCS);
18756f897ba9SBernhard Schmidt 		i = ic->ic_txstream * 8 - 1;
18766f897ba9SBernhard Schmidt 		if ((ic->ic_htcaps & IEEE80211_HTCAP_CHWIDTH40) &&
18776f897ba9SBernhard Schmidt 		    (ic->ic_htcaps & IEEE80211_HTCAP_SHORTGI40))
18786f897ba9SBernhard Schmidt 			rate = ieee80211_htrates[i].ht40_rate_400ns;
18796f897ba9SBernhard Schmidt 		else if ((ic->ic_htcaps & IEEE80211_HTCAP_CHWIDTH40))
18806f897ba9SBernhard Schmidt 			rate = ieee80211_htrates[i].ht40_rate_800ns;
18816f897ba9SBernhard Schmidt 		else if ((ic->ic_htcaps & IEEE80211_HTCAP_SHORTGI20))
18826f897ba9SBernhard Schmidt 			rate = ieee80211_htrates[i].ht20_rate_400ns;
18836f897ba9SBernhard Schmidt 		else
18846f897ba9SBernhard Schmidt 			rate = ieee80211_htrates[i].ht20_rate_800ns;
18856f897ba9SBernhard Schmidt 		if (rate > maxrate)
18866f897ba9SBernhard Schmidt 			maxrate = rate;
1887b032f27cSSam Leffler 	}
18880c67d389SAdrian Chadd 
18890c67d389SAdrian Chadd 	/*
18900c67d389SAdrian Chadd 	 * Add VHT media.
18910c67d389SAdrian Chadd 	 */
18920c67d389SAdrian Chadd 	for (; mode <= IEEE80211_MODE_VHT_5GHZ; mode++) {
18930c67d389SAdrian Chadd 		if (isclr(ic->ic_modecaps, mode))
18940c67d389SAdrian Chadd 			continue;
18950c67d389SAdrian Chadd 		addmedia(media, caps, addsta, mode, IFM_AUTO);
18960c67d389SAdrian Chadd 		addmedia(media, caps, addsta, mode, IFM_IEEE80211_VHT);
18970c67d389SAdrian Chadd 
18980c67d389SAdrian Chadd 		/* XXX TODO: VHT maxrate */
18990c67d389SAdrian Chadd 	}
19000c67d389SAdrian Chadd 
1901b032f27cSSam Leffler 	return maxrate;
190268e8e04eSSam Leffler }
190368e8e04eSSam Leffler 
19046a76ae21SSam Leffler /* XXX inline or eliminate? */
190541b3c790SSam Leffler const struct ieee80211_rateset *
190641b3c790SSam Leffler ieee80211_get_suprates(struct ieee80211com *ic, const struct ieee80211_channel *c)
190741b3c790SSam Leffler {
190840432d36SSam Leffler 	/* XXX does this work for 11ng basic rates? */
190968e8e04eSSam Leffler 	return &ic->ic_sup_rates[ieee80211_chan2mode(c)];
191041b3c790SSam Leffler }
191141b3c790SSam Leffler 
1912dfabbaa0SAndriy Voskoboinyk /* XXX inline or eliminate? */
1913dfabbaa0SAndriy Voskoboinyk const struct ieee80211_htrateset *
1914dfabbaa0SAndriy Voskoboinyk ieee80211_get_suphtrates(struct ieee80211com *ic,
1915dfabbaa0SAndriy Voskoboinyk     const struct ieee80211_channel *c)
1916dfabbaa0SAndriy Voskoboinyk {
1917dfabbaa0SAndriy Voskoboinyk 	return &ic->ic_sup_htrates;
1918dfabbaa0SAndriy Voskoboinyk }
1919dfabbaa0SAndriy Voskoboinyk 
19208a1b9b6aSSam Leffler void
19218a1b9b6aSSam Leffler ieee80211_announce(struct ieee80211com *ic)
19228a1b9b6aSSam Leffler {
1923fcd9500fSBernhard Schmidt 	int i, rate, mword;
1924fcd9500fSBernhard Schmidt 	enum ieee80211_phymode mode;
192568e8e04eSSam Leffler 	const struct ieee80211_rateset *rs;
19268a1b9b6aSSam Leffler 
19277edb9e0aSSam Leffler 	/* NB: skip AUTO since it has no rates */
19287edb9e0aSSam Leffler 	for (mode = IEEE80211_MODE_AUTO+1; mode < IEEE80211_MODE_11NA; mode++) {
19296dbd16f1SSam Leffler 		if (isclr(ic->ic_modecaps, mode))
19308a1b9b6aSSam Leffler 			continue;
1931c8f5794eSGleb Smirnoff 		ic_printf(ic, "%s rates: ", ieee80211_phymode_name[mode]);
19328a1b9b6aSSam Leffler 		rs = &ic->ic_sup_rates[mode];
19338a1b9b6aSSam Leffler 		for (i = 0; i < rs->rs_nrates; i++) {
193468e8e04eSSam Leffler 			mword = ieee80211_rate2media(ic, rs->rs_rates[i], mode);
19358a1b9b6aSSam Leffler 			if (mword == 0)
19368a1b9b6aSSam Leffler 				continue;
193768e8e04eSSam Leffler 			rate = ieee80211_media2rate(mword);
19388a1b9b6aSSam Leffler 			printf("%s%d%sMbps", (i != 0 ? " " : ""),
193968e8e04eSSam Leffler 			    rate / 2, ((rate & 0x1) != 0 ? ".5" : ""));
19408a1b9b6aSSam Leffler 		}
19418a1b9b6aSSam Leffler 		printf("\n");
19428a1b9b6aSSam Leffler 	}
194368e8e04eSSam Leffler 	ieee80211_ht_announce(ic);
194467f4aa38SAdrian Chadd 	ieee80211_vht_announce(ic);
19458a1b9b6aSSam Leffler }
19468a1b9b6aSSam Leffler 
194768e8e04eSSam Leffler void
194868e8e04eSSam Leffler ieee80211_announce_channels(struct ieee80211com *ic)
19491a1e1d21SSam Leffler {
195068e8e04eSSam Leffler 	const struct ieee80211_channel *c;
195168e8e04eSSam Leffler 	char type;
195268e8e04eSSam Leffler 	int i, cw;
195368e8e04eSSam Leffler 
195468e8e04eSSam Leffler 	printf("Chan  Freq  CW  RegPwr  MinPwr  MaxPwr\n");
195568e8e04eSSam Leffler 	for (i = 0; i < ic->ic_nchans; i++) {
195668e8e04eSSam Leffler 		c = &ic->ic_channels[i];
195768e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_ST(c))
195868e8e04eSSam Leffler 			type = 'S';
195968e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_108A(c))
196068e8e04eSSam Leffler 			type = 'T';
196168e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_108G(c))
196268e8e04eSSam Leffler 			type = 'G';
196368e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_HT(c))
196468e8e04eSSam Leffler 			type = 'n';
196568e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_A(c))
196668e8e04eSSam Leffler 			type = 'a';
196768e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_ANYG(c))
196868e8e04eSSam Leffler 			type = 'g';
196968e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_B(c))
197068e8e04eSSam Leffler 			type = 'b';
197168e8e04eSSam Leffler 		else
197268e8e04eSSam Leffler 			type = 'f';
197368e8e04eSSam Leffler 		if (IEEE80211_IS_CHAN_HT40(c) || IEEE80211_IS_CHAN_TURBO(c))
197468e8e04eSSam Leffler 			cw = 40;
197568e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_HALF(c))
197668e8e04eSSam Leffler 			cw = 10;
197768e8e04eSSam Leffler 		else if (IEEE80211_IS_CHAN_QUARTER(c))
197868e8e04eSSam Leffler 			cw = 5;
197968e8e04eSSam Leffler 		else
198068e8e04eSSam Leffler 			cw = 20;
198168e8e04eSSam Leffler 		printf("%4d  %4d%c %2d%c %6d  %4d.%d  %4d.%d\n"
198268e8e04eSSam Leffler 			, c->ic_ieee, c->ic_freq, type
198368e8e04eSSam Leffler 			, cw
198468e8e04eSSam Leffler 			, IEEE80211_IS_CHAN_HT40U(c) ? '+' :
198568e8e04eSSam Leffler 			  IEEE80211_IS_CHAN_HT40D(c) ? '-' : ' '
198668e8e04eSSam Leffler 			, c->ic_maxregpower
198768e8e04eSSam Leffler 			, c->ic_minpower / 2, c->ic_minpower & 1 ? 5 : 0
198868e8e04eSSam Leffler 			, c->ic_maxpower / 2, c->ic_maxpower & 1 ? 5 : 0
198968e8e04eSSam Leffler 		);
199068e8e04eSSam Leffler 	}
19911a1e1d21SSam Leffler }
19921a1e1d21SSam Leffler 
199368e8e04eSSam Leffler static int
1994f945bd7aSSam Leffler media2mode(const struct ifmedia_entry *ime, uint32_t flags, uint16_t *mode)
199568e8e04eSSam Leffler {
19961a1e1d21SSam Leffler 	switch (IFM_MODE(ime->ifm_media)) {
19971a1e1d21SSam Leffler 	case IFM_IEEE80211_11A:
1998b032f27cSSam Leffler 		*mode = IEEE80211_MODE_11A;
19991a1e1d21SSam Leffler 		break;
20001a1e1d21SSam Leffler 	case IFM_IEEE80211_11B:
2001b032f27cSSam Leffler 		*mode = IEEE80211_MODE_11B;
20021a1e1d21SSam Leffler 		break;
20031a1e1d21SSam Leffler 	case IFM_IEEE80211_11G:
2004b032f27cSSam Leffler 		*mode = IEEE80211_MODE_11G;
20051a1e1d21SSam Leffler 		break;
20064844aa7dSAtsushi Onoe 	case IFM_IEEE80211_FH:
2007b032f27cSSam Leffler 		*mode = IEEE80211_MODE_FH;
20084844aa7dSAtsushi Onoe 		break;
200968e8e04eSSam Leffler 	case IFM_IEEE80211_11NA:
2010b032f27cSSam Leffler 		*mode = IEEE80211_MODE_11NA;
201168e8e04eSSam Leffler 		break;
201268e8e04eSSam Leffler 	case IFM_IEEE80211_11NG:
2013b032f27cSSam Leffler 		*mode = IEEE80211_MODE_11NG;
201468e8e04eSSam Leffler 		break;
20151a1e1d21SSam Leffler 	case IFM_AUTO:
2016b032f27cSSam Leffler 		*mode = IEEE80211_MODE_AUTO;
20171a1e1d21SSam Leffler 		break;
20181a1e1d21SSam Leffler 	default:
2019b032f27cSSam Leffler 		return 0;
20201a1e1d21SSam Leffler 	}
20211a1e1d21SSam Leffler 	/*
20228a1b9b6aSSam Leffler 	 * Turbo mode is an ``option''.
20238a1b9b6aSSam Leffler 	 * XXX does not apply to AUTO
20241a1e1d21SSam Leffler 	 */
20251a1e1d21SSam Leffler 	if (ime->ifm_media & IFM_IEEE80211_TURBO) {
2026b032f27cSSam Leffler 		if (*mode == IEEE80211_MODE_11A) {
2027f945bd7aSSam Leffler 			if (flags & IEEE80211_F_TURBOP)
2028b032f27cSSam Leffler 				*mode = IEEE80211_MODE_TURBO_A;
202968e8e04eSSam Leffler 			else
2030b032f27cSSam Leffler 				*mode = IEEE80211_MODE_STURBO_A;
2031b032f27cSSam Leffler 		} else if (*mode == IEEE80211_MODE_11G)
2032b032f27cSSam Leffler 			*mode = IEEE80211_MODE_TURBO_G;
20338a1b9b6aSSam Leffler 		else
2034b032f27cSSam Leffler 			return 0;
20351a1e1d21SSam Leffler 	}
203668e8e04eSSam Leffler 	/* XXX HT40 +/- */
2037b032f27cSSam Leffler 	return 1;
2038b032f27cSSam Leffler }
20391a1e1d21SSam Leffler 
20401a1e1d21SSam Leffler /*
2041b032f27cSSam Leffler  * Handle a media change request on the vap interface.
2042b032f27cSSam Leffler  */
2043b032f27cSSam Leffler int
2044b032f27cSSam Leffler ieee80211_media_change(struct ifnet *ifp)
2045b032f27cSSam Leffler {
2046b032f27cSSam Leffler 	struct ieee80211vap *vap = ifp->if_softc;
2047b032f27cSSam Leffler 	struct ifmedia_entry *ime = vap->iv_media.ifm_cur;
2048f945bd7aSSam Leffler 	uint16_t newmode;
2049b032f27cSSam Leffler 
2050f945bd7aSSam Leffler 	if (!media2mode(ime, vap->iv_flags, &newmode))
2051b032f27cSSam Leffler 		return EINVAL;
2052f945bd7aSSam Leffler 	if (vap->iv_des_mode != newmode) {
2053f945bd7aSSam Leffler 		vap->iv_des_mode = newmode;
20540a310468SSam Leffler 		/* XXX kick state machine if up+running */
2055b032f27cSSam Leffler 	}
2056b032f27cSSam Leffler 	return 0;
2057b032f27cSSam Leffler }
2058b032f27cSSam Leffler 
205968e8e04eSSam Leffler /*
206068e8e04eSSam Leffler  * Common code to calculate the media status word
206168e8e04eSSam Leffler  * from the operating mode and channel state.
206268e8e04eSSam Leffler  */
206368e8e04eSSam Leffler static int
206468e8e04eSSam Leffler media_status(enum ieee80211_opmode opmode, const struct ieee80211_channel *chan)
206568e8e04eSSam Leffler {
206668e8e04eSSam Leffler 	int status;
206768e8e04eSSam Leffler 
206868e8e04eSSam Leffler 	status = IFM_IEEE80211;
206968e8e04eSSam Leffler 	switch (opmode) {
207068e8e04eSSam Leffler 	case IEEE80211_M_STA:
207168e8e04eSSam Leffler 		break;
207268e8e04eSSam Leffler 	case IEEE80211_M_IBSS:
207368e8e04eSSam Leffler 		status |= IFM_IEEE80211_ADHOC;
207468e8e04eSSam Leffler 		break;
207568e8e04eSSam Leffler 	case IEEE80211_M_HOSTAP:
207668e8e04eSSam Leffler 		status |= IFM_IEEE80211_HOSTAP;
207768e8e04eSSam Leffler 		break;
207868e8e04eSSam Leffler 	case IEEE80211_M_MONITOR:
207968e8e04eSSam Leffler 		status |= IFM_IEEE80211_MONITOR;
208068e8e04eSSam Leffler 		break;
208168e8e04eSSam Leffler 	case IEEE80211_M_AHDEMO:
208268e8e04eSSam Leffler 		status |= IFM_IEEE80211_ADHOC | IFM_FLAG0;
208368e8e04eSSam Leffler 		break;
208468e8e04eSSam Leffler 	case IEEE80211_M_WDS:
2085b032f27cSSam Leffler 		status |= IFM_IEEE80211_WDS;
208668e8e04eSSam Leffler 		break;
208759aa14a9SRui Paulo 	case IEEE80211_M_MBSS:
208859aa14a9SRui Paulo 		status |= IFM_IEEE80211_MBSS;
208959aa14a9SRui Paulo 		break;
209068e8e04eSSam Leffler 	}
209168e8e04eSSam Leffler 	if (IEEE80211_IS_CHAN_HTA(chan)) {
209268e8e04eSSam Leffler 		status |= IFM_IEEE80211_11NA;
209368e8e04eSSam Leffler 	} else if (IEEE80211_IS_CHAN_HTG(chan)) {
209468e8e04eSSam Leffler 		status |= IFM_IEEE80211_11NG;
209568e8e04eSSam Leffler 	} else if (IEEE80211_IS_CHAN_A(chan)) {
209668e8e04eSSam Leffler 		status |= IFM_IEEE80211_11A;
209768e8e04eSSam Leffler 	} else if (IEEE80211_IS_CHAN_B(chan)) {
209868e8e04eSSam Leffler 		status |= IFM_IEEE80211_11B;
209968e8e04eSSam Leffler 	} else if (IEEE80211_IS_CHAN_ANYG(chan)) {
210068e8e04eSSam Leffler 		status |= IFM_IEEE80211_11G;
210168e8e04eSSam Leffler 	} else if (IEEE80211_IS_CHAN_FHSS(chan)) {
210268e8e04eSSam Leffler 		status |= IFM_IEEE80211_FH;
210368e8e04eSSam Leffler 	}
210468e8e04eSSam Leffler 	/* XXX else complain? */
210568e8e04eSSam Leffler 
210668e8e04eSSam Leffler 	if (IEEE80211_IS_CHAN_TURBO(chan))
210768e8e04eSSam Leffler 		status |= IFM_IEEE80211_TURBO;
2108b032f27cSSam Leffler #if 0
2109b032f27cSSam Leffler 	if (IEEE80211_IS_CHAN_HT20(chan))
2110b032f27cSSam Leffler 		status |= IFM_IEEE80211_HT20;
2111b032f27cSSam Leffler 	if (IEEE80211_IS_CHAN_HT40(chan))
2112b032f27cSSam Leffler 		status |= IFM_IEEE80211_HT40;
2113b032f27cSSam Leffler #endif
211468e8e04eSSam Leffler 	return status;
211568e8e04eSSam Leffler }
211668e8e04eSSam Leffler 
21171a1e1d21SSam Leffler void
21181a1e1d21SSam Leffler ieee80211_media_status(struct ifnet *ifp, struct ifmediareq *imr)
21191a1e1d21SSam Leffler {
2120b032f27cSSam Leffler 	struct ieee80211vap *vap = ifp->if_softc;
2121b032f27cSSam Leffler 	struct ieee80211com *ic = vap->iv_ic;
212268e8e04eSSam Leffler 	enum ieee80211_phymode mode;
21231a1e1d21SSam Leffler 
21241a1e1d21SSam Leffler 	imr->ifm_status = IFM_AVALID;
212568e8e04eSSam Leffler 	/*
212668e8e04eSSam Leffler 	 * NB: use the current channel's mode to lock down a xmit
212768e8e04eSSam Leffler 	 * rate only when running; otherwise we may have a mismatch
212868e8e04eSSam Leffler 	 * in which case the rate will not be convertible.
212968e8e04eSSam Leffler 	 */
21309f098ac7SAdrian Chadd 	if (vap->iv_state == IEEE80211_S_RUN ||
21319f098ac7SAdrian Chadd 	    vap->iv_state == IEEE80211_S_SLEEP) {
21321a1e1d21SSam Leffler 		imr->ifm_status |= IFM_ACTIVE;
213368e8e04eSSam Leffler 		mode = ieee80211_chan2mode(ic->ic_curchan);
213468e8e04eSSam Leffler 	} else
213568e8e04eSSam Leffler 		mode = IEEE80211_MODE_AUTO;
2136b032f27cSSam Leffler 	imr->ifm_active = media_status(vap->iv_opmode, ic->ic_curchan);
21378a1b9b6aSSam Leffler 	/*
21388a1b9b6aSSam Leffler 	 * Calculate a current rate if possible.
21398a1b9b6aSSam Leffler 	 */
2140b032f27cSSam Leffler 	if (vap->iv_txparms[mode].ucastrate != IEEE80211_FIXED_RATE_NONE) {
21418a1b9b6aSSam Leffler 		/*
21428a1b9b6aSSam Leffler 		 * A fixed rate is set, report that.
21438a1b9b6aSSam Leffler 		 */
21448a1b9b6aSSam Leffler 		imr->ifm_active |= ieee80211_rate2media(ic,
2145b032f27cSSam Leffler 			vap->iv_txparms[mode].ucastrate, mode);
2146b032f27cSSam Leffler 	} else if (vap->iv_opmode == IEEE80211_M_STA) {
21478a1b9b6aSSam Leffler 		/*
21488a1b9b6aSSam Leffler 		 * In station mode report the current transmit rate.
21498a1b9b6aSSam Leffler 		 */
21508a1b9b6aSSam Leffler 		imr->ifm_active |= ieee80211_rate2media(ic,
2151b032f27cSSam Leffler 			vap->iv_bss->ni_txrate, mode);
2152ba99a9b1SAndre Oppermann 	} else
21531a1e1d21SSam Leffler 		imr->ifm_active |= IFM_AUTO;
2154b032f27cSSam Leffler 	if (imr->ifm_status & IFM_ACTIVE)
2155b032f27cSSam Leffler 		imr->ifm_current = imr->ifm_active;
21561a1e1d21SSam Leffler }
21571a1e1d21SSam Leffler 
21581a1e1d21SSam Leffler /*
21591a1e1d21SSam Leffler  * Set the current phy mode and recalculate the active channel
21601a1e1d21SSam Leffler  * set based on the available channels for this mode.  Also
21611a1e1d21SSam Leffler  * select a new default/current channel if the current one is
21621a1e1d21SSam Leffler  * inappropriate for this mode.
21631a1e1d21SSam Leffler  */
21641a1e1d21SSam Leffler int
21651a1e1d21SSam Leffler ieee80211_setmode(struct ieee80211com *ic, enum ieee80211_phymode mode)
21661a1e1d21SSam Leffler {
21671a1e1d21SSam Leffler 	/*
2168ca4ac7aeSSam Leffler 	 * Adjust basic rates in 11b/11g supported rate set.
2169ca4ac7aeSSam Leffler 	 * Note that if operating on a hal/quarter rate channel
2170ca4ac7aeSSam Leffler 	 * this is a noop as those rates sets are different
2171ca4ac7aeSSam Leffler 	 * and used instead.
21721a1e1d21SSam Leffler 	 */
2173ca4ac7aeSSam Leffler 	if (mode == IEEE80211_MODE_11G || mode == IEEE80211_MODE_11B)
2174b032f27cSSam Leffler 		ieee80211_setbasicrates(&ic->ic_sup_rates[mode], mode);
2175ca4ac7aeSSam Leffler 
21761a1e1d21SSam Leffler 	ic->ic_curmode = mode;
21778a1b9b6aSSam Leffler 	ieee80211_reset_erp(ic);	/* reset ERP state */
21788a1b9b6aSSam Leffler 
21791a1e1d21SSam Leffler 	return 0;
21801a1e1d21SSam Leffler }
21811a1e1d21SSam Leffler 
21821a1e1d21SSam Leffler /*
218368e8e04eSSam Leffler  * Return the phy mode for with the specified channel.
21841a1e1d21SSam Leffler  */
21851a1e1d21SSam Leffler enum ieee80211_phymode
218668e8e04eSSam Leffler ieee80211_chan2mode(const struct ieee80211_channel *chan)
21871a1e1d21SSam Leffler {
218868e8e04eSSam Leffler 
21890c67d389SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT_2GHZ(chan))
21900c67d389SAdrian Chadd 		return IEEE80211_MODE_VHT_2GHZ;
21910c67d389SAdrian Chadd 	else if (IEEE80211_IS_CHAN_VHT_5GHZ(chan))
21920c67d389SAdrian Chadd 		return IEEE80211_MODE_VHT_5GHZ;
21930c67d389SAdrian Chadd 	else if (IEEE80211_IS_CHAN_HTA(chan))
219468e8e04eSSam Leffler 		return IEEE80211_MODE_11NA;
219568e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_HTG(chan))
219668e8e04eSSam Leffler 		return IEEE80211_MODE_11NG;
219768e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_108G(chan))
21988a1b9b6aSSam Leffler 		return IEEE80211_MODE_TURBO_G;
219968e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_ST(chan))
220068e8e04eSSam Leffler 		return IEEE80211_MODE_STURBO_A;
220168e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_TURBO(chan))
220268e8e04eSSam Leffler 		return IEEE80211_MODE_TURBO_A;
22036a76ae21SSam Leffler 	else if (IEEE80211_IS_CHAN_HALF(chan))
22046a76ae21SSam Leffler 		return IEEE80211_MODE_HALF;
22056a76ae21SSam Leffler 	else if (IEEE80211_IS_CHAN_QUARTER(chan))
22066a76ae21SSam Leffler 		return IEEE80211_MODE_QUARTER;
220768e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_A(chan))
220868e8e04eSSam Leffler 		return IEEE80211_MODE_11A;
220968e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_ANYG(chan))
22101a1e1d21SSam Leffler 		return IEEE80211_MODE_11G;
221168e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_B(chan))
221268e8e04eSSam Leffler 		return IEEE80211_MODE_11B;
221368e8e04eSSam Leffler 	else if (IEEE80211_IS_CHAN_FHSS(chan))
221468e8e04eSSam Leffler 		return IEEE80211_MODE_FH;
221568e8e04eSSam Leffler 
221668e8e04eSSam Leffler 	/* NB: should not get here */
221768e8e04eSSam Leffler 	printf("%s: cannot map channel to mode; freq %u flags 0x%x\n",
221868e8e04eSSam Leffler 		__func__, chan->ic_freq, chan->ic_flags);
22191a1e1d21SSam Leffler 	return IEEE80211_MODE_11B;
22201a1e1d21SSam Leffler }
22211a1e1d21SSam Leffler 
222268e8e04eSSam Leffler struct ratemedia {
222368e8e04eSSam Leffler 	u_int	match;	/* rate + mode */
222468e8e04eSSam Leffler 	u_int	media;	/* if_media rate */
222568e8e04eSSam Leffler };
222668e8e04eSSam Leffler 
222768e8e04eSSam Leffler static int
222868e8e04eSSam Leffler findmedia(const struct ratemedia rates[], int n, u_int match)
222968e8e04eSSam Leffler {
223068e8e04eSSam Leffler 	int i;
223168e8e04eSSam Leffler 
223268e8e04eSSam Leffler 	for (i = 0; i < n; i++)
223368e8e04eSSam Leffler 		if (rates[i].match == match)
223468e8e04eSSam Leffler 			return rates[i].media;
223568e8e04eSSam Leffler 	return IFM_AUTO;
223668e8e04eSSam Leffler }
223768e8e04eSSam Leffler 
22381a1e1d21SSam Leffler /*
223968e8e04eSSam Leffler  * Convert IEEE80211 rate value to ifmedia subtype.
224068e8e04eSSam Leffler  * Rate is either a legacy rate in units of 0.5Mbps
224168e8e04eSSam Leffler  * or an MCS index.
22421a1e1d21SSam Leffler  */
22431a1e1d21SSam Leffler int
22441a1e1d21SSam Leffler ieee80211_rate2media(struct ieee80211com *ic, int rate, enum ieee80211_phymode mode)
22451a1e1d21SSam Leffler {
224668e8e04eSSam Leffler 	static const struct ratemedia rates[] = {
22474844aa7dSAtsushi Onoe 		{   2 | IFM_IEEE80211_FH, IFM_IEEE80211_FH1 },
22484844aa7dSAtsushi Onoe 		{   4 | IFM_IEEE80211_FH, IFM_IEEE80211_FH2 },
22494844aa7dSAtsushi Onoe 		{   2 | IFM_IEEE80211_11B, IFM_IEEE80211_DS1 },
22504844aa7dSAtsushi Onoe 		{   4 | IFM_IEEE80211_11B, IFM_IEEE80211_DS2 },
22514844aa7dSAtsushi Onoe 		{  11 | IFM_IEEE80211_11B, IFM_IEEE80211_DS5 },
22524844aa7dSAtsushi Onoe 		{  22 | IFM_IEEE80211_11B, IFM_IEEE80211_DS11 },
22534844aa7dSAtsushi Onoe 		{  44 | IFM_IEEE80211_11B, IFM_IEEE80211_DS22 },
22544844aa7dSAtsushi Onoe 		{  12 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM6 },
22554844aa7dSAtsushi Onoe 		{  18 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM9 },
22564844aa7dSAtsushi Onoe 		{  24 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM12 },
22574844aa7dSAtsushi Onoe 		{  36 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM18 },
22584844aa7dSAtsushi Onoe 		{  48 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM24 },
22594844aa7dSAtsushi Onoe 		{  72 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM36 },
22604844aa7dSAtsushi Onoe 		{  96 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM48 },
22614844aa7dSAtsushi Onoe 		{ 108 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM54 },
22624844aa7dSAtsushi Onoe 		{   2 | IFM_IEEE80211_11G, IFM_IEEE80211_DS1 },
22634844aa7dSAtsushi Onoe 		{   4 | IFM_IEEE80211_11G, IFM_IEEE80211_DS2 },
22644844aa7dSAtsushi Onoe 		{  11 | IFM_IEEE80211_11G, IFM_IEEE80211_DS5 },
22654844aa7dSAtsushi Onoe 		{  22 | IFM_IEEE80211_11G, IFM_IEEE80211_DS11 },
22664844aa7dSAtsushi Onoe 		{  12 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM6 },
22674844aa7dSAtsushi Onoe 		{  18 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM9 },
22684844aa7dSAtsushi Onoe 		{  24 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM12 },
22694844aa7dSAtsushi Onoe 		{  36 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM18 },
22704844aa7dSAtsushi Onoe 		{  48 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM24 },
22714844aa7dSAtsushi Onoe 		{  72 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM36 },
22724844aa7dSAtsushi Onoe 		{  96 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM48 },
22734844aa7dSAtsushi Onoe 		{ 108 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM54 },
227441b3c790SSam Leffler 		{   6 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM3 },
227541b3c790SSam Leffler 		{   9 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM4 },
227641b3c790SSam Leffler 		{  54 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM27 },
2277a4641f4eSPedro F. Giffuni 		/* NB: OFDM72 doesn't really exist so we don't handle it */
22781a1e1d21SSam Leffler 	};
227968e8e04eSSam Leffler 	static const struct ratemedia htrates[] = {
228068e8e04eSSam Leffler 		{   0, IFM_IEEE80211_MCS },
228168e8e04eSSam Leffler 		{   1, IFM_IEEE80211_MCS },
228268e8e04eSSam Leffler 		{   2, IFM_IEEE80211_MCS },
228368e8e04eSSam Leffler 		{   3, IFM_IEEE80211_MCS },
228468e8e04eSSam Leffler 		{   4, IFM_IEEE80211_MCS },
228568e8e04eSSam Leffler 		{   5, IFM_IEEE80211_MCS },
228668e8e04eSSam Leffler 		{   6, IFM_IEEE80211_MCS },
228768e8e04eSSam Leffler 		{   7, IFM_IEEE80211_MCS },
228868e8e04eSSam Leffler 		{   8, IFM_IEEE80211_MCS },
228968e8e04eSSam Leffler 		{   9, IFM_IEEE80211_MCS },
229068e8e04eSSam Leffler 		{  10, IFM_IEEE80211_MCS },
229168e8e04eSSam Leffler 		{  11, IFM_IEEE80211_MCS },
229268e8e04eSSam Leffler 		{  12, IFM_IEEE80211_MCS },
229368e8e04eSSam Leffler 		{  13, IFM_IEEE80211_MCS },
229468e8e04eSSam Leffler 		{  14, IFM_IEEE80211_MCS },
229568e8e04eSSam Leffler 		{  15, IFM_IEEE80211_MCS },
2296f136f45fSBernhard Schmidt 		{  16, IFM_IEEE80211_MCS },
2297f136f45fSBernhard Schmidt 		{  17, IFM_IEEE80211_MCS },
2298f136f45fSBernhard Schmidt 		{  18, IFM_IEEE80211_MCS },
2299f136f45fSBernhard Schmidt 		{  19, IFM_IEEE80211_MCS },
2300f136f45fSBernhard Schmidt 		{  20, IFM_IEEE80211_MCS },
2301f136f45fSBernhard Schmidt 		{  21, IFM_IEEE80211_MCS },
2302f136f45fSBernhard Schmidt 		{  22, IFM_IEEE80211_MCS },
2303f136f45fSBernhard Schmidt 		{  23, IFM_IEEE80211_MCS },
2304f136f45fSBernhard Schmidt 		{  24, IFM_IEEE80211_MCS },
2305f136f45fSBernhard Schmidt 		{  25, IFM_IEEE80211_MCS },
2306f136f45fSBernhard Schmidt 		{  26, IFM_IEEE80211_MCS },
2307f136f45fSBernhard Schmidt 		{  27, IFM_IEEE80211_MCS },
2308f136f45fSBernhard Schmidt 		{  28, IFM_IEEE80211_MCS },
2309f136f45fSBernhard Schmidt 		{  29, IFM_IEEE80211_MCS },
2310f136f45fSBernhard Schmidt 		{  30, IFM_IEEE80211_MCS },
2311f136f45fSBernhard Schmidt 		{  31, IFM_IEEE80211_MCS },
2312f136f45fSBernhard Schmidt 		{  32, IFM_IEEE80211_MCS },
2313f136f45fSBernhard Schmidt 		{  33, IFM_IEEE80211_MCS },
2314f136f45fSBernhard Schmidt 		{  34, IFM_IEEE80211_MCS },
2315f136f45fSBernhard Schmidt 		{  35, IFM_IEEE80211_MCS },
2316f136f45fSBernhard Schmidt 		{  36, IFM_IEEE80211_MCS },
2317f136f45fSBernhard Schmidt 		{  37, IFM_IEEE80211_MCS },
2318f136f45fSBernhard Schmidt 		{  38, IFM_IEEE80211_MCS },
2319f136f45fSBernhard Schmidt 		{  39, IFM_IEEE80211_MCS },
2320f136f45fSBernhard Schmidt 		{  40, IFM_IEEE80211_MCS },
2321f136f45fSBernhard Schmidt 		{  41, IFM_IEEE80211_MCS },
2322f136f45fSBernhard Schmidt 		{  42, IFM_IEEE80211_MCS },
2323f136f45fSBernhard Schmidt 		{  43, IFM_IEEE80211_MCS },
2324f136f45fSBernhard Schmidt 		{  44, IFM_IEEE80211_MCS },
2325f136f45fSBernhard Schmidt 		{  45, IFM_IEEE80211_MCS },
2326f136f45fSBernhard Schmidt 		{  46, IFM_IEEE80211_MCS },
2327f136f45fSBernhard Schmidt 		{  47, IFM_IEEE80211_MCS },
2328f136f45fSBernhard Schmidt 		{  48, IFM_IEEE80211_MCS },
2329f136f45fSBernhard Schmidt 		{  49, IFM_IEEE80211_MCS },
2330f136f45fSBernhard Schmidt 		{  50, IFM_IEEE80211_MCS },
2331f136f45fSBernhard Schmidt 		{  51, IFM_IEEE80211_MCS },
2332f136f45fSBernhard Schmidt 		{  52, IFM_IEEE80211_MCS },
2333f136f45fSBernhard Schmidt 		{  53, IFM_IEEE80211_MCS },
2334f136f45fSBernhard Schmidt 		{  54, IFM_IEEE80211_MCS },
2335f136f45fSBernhard Schmidt 		{  55, IFM_IEEE80211_MCS },
2336f136f45fSBernhard Schmidt 		{  56, IFM_IEEE80211_MCS },
2337f136f45fSBernhard Schmidt 		{  57, IFM_IEEE80211_MCS },
2338f136f45fSBernhard Schmidt 		{  58, IFM_IEEE80211_MCS },
2339f136f45fSBernhard Schmidt 		{  59, IFM_IEEE80211_MCS },
2340f136f45fSBernhard Schmidt 		{  60, IFM_IEEE80211_MCS },
2341f136f45fSBernhard Schmidt 		{  61, IFM_IEEE80211_MCS },
2342f136f45fSBernhard Schmidt 		{  62, IFM_IEEE80211_MCS },
2343f136f45fSBernhard Schmidt 		{  63, IFM_IEEE80211_MCS },
2344f136f45fSBernhard Schmidt 		{  64, IFM_IEEE80211_MCS },
2345f136f45fSBernhard Schmidt 		{  65, IFM_IEEE80211_MCS },
2346f136f45fSBernhard Schmidt 		{  66, IFM_IEEE80211_MCS },
2347f136f45fSBernhard Schmidt 		{  67, IFM_IEEE80211_MCS },
2348f136f45fSBernhard Schmidt 		{  68, IFM_IEEE80211_MCS },
2349f136f45fSBernhard Schmidt 		{  69, IFM_IEEE80211_MCS },
2350f136f45fSBernhard Schmidt 		{  70, IFM_IEEE80211_MCS },
2351f136f45fSBernhard Schmidt 		{  71, IFM_IEEE80211_MCS },
2352f136f45fSBernhard Schmidt 		{  72, IFM_IEEE80211_MCS },
2353f136f45fSBernhard Schmidt 		{  73, IFM_IEEE80211_MCS },
2354f136f45fSBernhard Schmidt 		{  74, IFM_IEEE80211_MCS },
2355f136f45fSBernhard Schmidt 		{  75, IFM_IEEE80211_MCS },
2356f136f45fSBernhard Schmidt 		{  76, IFM_IEEE80211_MCS },
235768e8e04eSSam Leffler 	};
235868e8e04eSSam Leffler 	int m;
23591a1e1d21SSam Leffler 
236068e8e04eSSam Leffler 	/*
236168e8e04eSSam Leffler 	 * Check 11n rates first for match as an MCS.
236268e8e04eSSam Leffler 	 */
236368e8e04eSSam Leffler 	if (mode == IEEE80211_MODE_11NA) {
2364f0ee92d5SSam Leffler 		if (rate & IEEE80211_RATE_MCS) {
2365f0ee92d5SSam Leffler 			rate &= ~IEEE80211_RATE_MCS;
2366a3e08d6fSRui Paulo 			m = findmedia(htrates, nitems(htrates), rate);
236768e8e04eSSam Leffler 			if (m != IFM_AUTO)
236868e8e04eSSam Leffler 				return m | IFM_IEEE80211_11NA;
236968e8e04eSSam Leffler 		}
237068e8e04eSSam Leffler 	} else if (mode == IEEE80211_MODE_11NG) {
237168e8e04eSSam Leffler 		/* NB: 12 is ambiguous, it will be treated as an MCS */
2372f0ee92d5SSam Leffler 		if (rate & IEEE80211_RATE_MCS) {
2373f0ee92d5SSam Leffler 			rate &= ~IEEE80211_RATE_MCS;
2374a3e08d6fSRui Paulo 			m = findmedia(htrates, nitems(htrates), rate);
237568e8e04eSSam Leffler 			if (m != IFM_AUTO)
237668e8e04eSSam Leffler 				return m | IFM_IEEE80211_11NG;
237768e8e04eSSam Leffler 		}
237868e8e04eSSam Leffler 	}
237968e8e04eSSam Leffler 	rate &= IEEE80211_RATE_VAL;
23801a1e1d21SSam Leffler 	switch (mode) {
23811a1e1d21SSam Leffler 	case IEEE80211_MODE_11A:
23826a76ae21SSam Leffler 	case IEEE80211_MODE_HALF:		/* XXX good 'nuf */
23836a76ae21SSam Leffler 	case IEEE80211_MODE_QUARTER:
238468e8e04eSSam Leffler 	case IEEE80211_MODE_11NA:
23858a1b9b6aSSam Leffler 	case IEEE80211_MODE_TURBO_A:
238668e8e04eSSam Leffler 	case IEEE80211_MODE_STURBO_A:
2387a3e08d6fSRui Paulo 		return findmedia(rates, nitems(rates),
2388a3e08d6fSRui Paulo 		    rate | IFM_IEEE80211_11A);
23891a1e1d21SSam Leffler 	case IEEE80211_MODE_11B:
2390a3e08d6fSRui Paulo 		return findmedia(rates, nitems(rates),
2391a3e08d6fSRui Paulo 		    rate | IFM_IEEE80211_11B);
23924844aa7dSAtsushi Onoe 	case IEEE80211_MODE_FH:
2393a3e08d6fSRui Paulo 		return findmedia(rates, nitems(rates),
2394a3e08d6fSRui Paulo 		    rate | IFM_IEEE80211_FH);
23951a1e1d21SSam Leffler 	case IEEE80211_MODE_AUTO:
23961a1e1d21SSam Leffler 		/* NB: ic may be NULL for some drivers */
2397566d825bSSam Leffler 		if (ic != NULL && ic->ic_phytype == IEEE80211_T_FH)
2398a3e08d6fSRui Paulo 			return findmedia(rates, nitems(rates),
239968e8e04eSSam Leffler 			    rate | IFM_IEEE80211_FH);
24001a1e1d21SSam Leffler 		/* NB: hack, 11g matches both 11b+11a rates */
24011a1e1d21SSam Leffler 		/* fall thru... */
24021a1e1d21SSam Leffler 	case IEEE80211_MODE_11G:
240368e8e04eSSam Leffler 	case IEEE80211_MODE_11NG:
24048a1b9b6aSSam Leffler 	case IEEE80211_MODE_TURBO_G:
2405a3e08d6fSRui Paulo 		return findmedia(rates, nitems(rates), rate | IFM_IEEE80211_11G);
24067aebd3e5SAdrian Chadd 	case IEEE80211_MODE_VHT_2GHZ:
24077aebd3e5SAdrian Chadd 	case IEEE80211_MODE_VHT_5GHZ:
24087aebd3e5SAdrian Chadd 		/* XXX TODO: need to figure out mapping for VHT rates */
24097aebd3e5SAdrian Chadd 		return IFM_AUTO;
24101a1e1d21SSam Leffler 	}
24111a1e1d21SSam Leffler 	return IFM_AUTO;
24121a1e1d21SSam Leffler }
24131a1e1d21SSam Leffler 
24141a1e1d21SSam Leffler int
24151a1e1d21SSam Leffler ieee80211_media2rate(int mword)
24161a1e1d21SSam Leffler {
24171a1e1d21SSam Leffler 	static const int ieeerates[] = {
24181a1e1d21SSam Leffler 		-1,		/* IFM_AUTO */
24191a1e1d21SSam Leffler 		0,		/* IFM_MANUAL */
24201a1e1d21SSam Leffler 		0,		/* IFM_NONE */
24211a1e1d21SSam Leffler 		2,		/* IFM_IEEE80211_FH1 */
24221a1e1d21SSam Leffler 		4,		/* IFM_IEEE80211_FH2 */
24231a1e1d21SSam Leffler 		2,		/* IFM_IEEE80211_DS1 */
24241a1e1d21SSam Leffler 		4,		/* IFM_IEEE80211_DS2 */
24251a1e1d21SSam Leffler 		11,		/* IFM_IEEE80211_DS5 */
24261a1e1d21SSam Leffler 		22,		/* IFM_IEEE80211_DS11 */
24271a1e1d21SSam Leffler 		44,		/* IFM_IEEE80211_DS22 */
24281a1e1d21SSam Leffler 		12,		/* IFM_IEEE80211_OFDM6 */
24291a1e1d21SSam Leffler 		18,		/* IFM_IEEE80211_OFDM9 */
24301a1e1d21SSam Leffler 		24,		/* IFM_IEEE80211_OFDM12 */
24311a1e1d21SSam Leffler 		36,		/* IFM_IEEE80211_OFDM18 */
24321a1e1d21SSam Leffler 		48,		/* IFM_IEEE80211_OFDM24 */
24331a1e1d21SSam Leffler 		72,		/* IFM_IEEE80211_OFDM36 */
24341a1e1d21SSam Leffler 		96,		/* IFM_IEEE80211_OFDM48 */
24351a1e1d21SSam Leffler 		108,		/* IFM_IEEE80211_OFDM54 */
24361a1e1d21SSam Leffler 		144,		/* IFM_IEEE80211_OFDM72 */
243741b3c790SSam Leffler 		0,		/* IFM_IEEE80211_DS354k */
243841b3c790SSam Leffler 		0,		/* IFM_IEEE80211_DS512k */
243941b3c790SSam Leffler 		6,		/* IFM_IEEE80211_OFDM3 */
244041b3c790SSam Leffler 		9,		/* IFM_IEEE80211_OFDM4 */
244141b3c790SSam Leffler 		54,		/* IFM_IEEE80211_OFDM27 */
244268e8e04eSSam Leffler 		-1,		/* IFM_IEEE80211_MCS */
24437aebd3e5SAdrian Chadd 		-1,		/* IFM_IEEE80211_VHT */
24441a1e1d21SSam Leffler 	};
2445a3e08d6fSRui Paulo 	return IFM_SUBTYPE(mword) < nitems(ieeerates) ?
24461a1e1d21SSam Leffler 		ieeerates[IFM_SUBTYPE(mword)] : 0;
24471a1e1d21SSam Leffler }
24485b16c28cSSam Leffler 
24495b16c28cSSam Leffler /*
24505b16c28cSSam Leffler  * The following hash function is adapted from "Hash Functions" by Bob Jenkins
24515b16c28cSSam Leffler  * ("Algorithm Alley", Dr. Dobbs Journal, September 1997).
24525b16c28cSSam Leffler  */
24535b16c28cSSam Leffler #define	mix(a, b, c)							\
24545b16c28cSSam Leffler do {									\
24555b16c28cSSam Leffler 	a -= b; a -= c; a ^= (c >> 13);					\
24565b16c28cSSam Leffler 	b -= c; b -= a; b ^= (a << 8);					\
24575b16c28cSSam Leffler 	c -= a; c -= b; c ^= (b >> 13);					\
24585b16c28cSSam Leffler 	a -= b; a -= c; a ^= (c >> 12);					\
24595b16c28cSSam Leffler 	b -= c; b -= a; b ^= (a << 16);					\
24605b16c28cSSam Leffler 	c -= a; c -= b; c ^= (b >> 5);					\
24615b16c28cSSam Leffler 	a -= b; a -= c; a ^= (c >> 3);					\
24625b16c28cSSam Leffler 	b -= c; b -= a; b ^= (a << 10);					\
24635b16c28cSSam Leffler 	c -= a; c -= b; c ^= (b >> 15);					\
24645b16c28cSSam Leffler } while (/*CONSTCOND*/0)
24655b16c28cSSam Leffler 
24665b16c28cSSam Leffler uint32_t
24675b16c28cSSam Leffler ieee80211_mac_hash(const struct ieee80211com *ic,
24685b16c28cSSam Leffler 	const uint8_t addr[IEEE80211_ADDR_LEN])
24695b16c28cSSam Leffler {
24705b16c28cSSam Leffler 	uint32_t a = 0x9e3779b9, b = 0x9e3779b9, c = ic->ic_hash_key;
24715b16c28cSSam Leffler 
24725b16c28cSSam Leffler 	b += addr[5] << 8;
24735b16c28cSSam Leffler 	b += addr[4];
24745b16c28cSSam Leffler 	a += addr[3] << 24;
24755b16c28cSSam Leffler 	a += addr[2] << 16;
24765b16c28cSSam Leffler 	a += addr[1] << 8;
24775b16c28cSSam Leffler 	a += addr[0];
24785b16c28cSSam Leffler 
24795b16c28cSSam Leffler 	mix(a, b, c);
24805b16c28cSSam Leffler 
24815b16c28cSSam Leffler 	return c;
24825b16c28cSSam Leffler }
24835b16c28cSSam Leffler #undef mix
2484a1cbd043SAdrian Chadd 
2485a1cbd043SAdrian Chadd char
2486a1cbd043SAdrian Chadd ieee80211_channel_type_char(const struct ieee80211_channel *c)
2487a1cbd043SAdrian Chadd {
2488a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_ST(c))
2489a1cbd043SAdrian Chadd 		return 'S';
2490a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_108A(c))
2491a1cbd043SAdrian Chadd 		return 'T';
2492a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_108G(c))
2493a1cbd043SAdrian Chadd 		return 'G';
24947aebd3e5SAdrian Chadd 	if (IEEE80211_IS_CHAN_VHT(c))
24957aebd3e5SAdrian Chadd 		return 'v';
2496a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_HT(c))
2497a1cbd043SAdrian Chadd 		return 'n';
2498a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_A(c))
2499a1cbd043SAdrian Chadd 		return 'a';
2500a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_ANYG(c))
2501a1cbd043SAdrian Chadd 		return 'g';
2502a1cbd043SAdrian Chadd 	if (IEEE80211_IS_CHAN_B(c))
2503a1cbd043SAdrian Chadd 		return 'b';
2504a1cbd043SAdrian Chadd 	return 'f';
2505a1cbd043SAdrian Chadd }
2506