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wi.c revision 1.130.2.5
      1  1.130.2.5     skrll /*	$NetBSD: wi.c,v 1.130.2.5 2004/11/29 07:24:15 skrll Exp $	*/
      2  1.130.2.1     skrll 
      3  1.130.2.1     skrll /*-
      4  1.130.2.1     skrll  * Copyright (c) 2004 The NetBSD Foundation, Inc.
      5  1.130.2.1     skrll  * All rights reserved.
      6  1.130.2.1     skrll  *
      7  1.130.2.1     skrll  * This code is derived from software contributed to The NetBSD Foundation
      8  1.130.2.1     skrll  * by Charles M. Hannum.
      9  1.130.2.1     skrll  *
     10  1.130.2.1     skrll  * Redistribution and use in source and binary forms, with or without
     11  1.130.2.1     skrll  * modification, are permitted provided that the following conditions
     12  1.130.2.1     skrll  * are met:
     13  1.130.2.1     skrll  * 1. Redistributions of source code must retain the above copyright
     14  1.130.2.1     skrll  *    notice, this list of conditions and the following disclaimer.
     15  1.130.2.1     skrll  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.130.2.1     skrll  *    notice, this list of conditions and the following disclaimer in the
     17  1.130.2.1     skrll  *    documentation and/or other materials provided with the distribution.
     18  1.130.2.1     skrll  * 3. All advertising materials mentioning features or use of this software
     19  1.130.2.1     skrll  *    must display the following acknowledgement:
     20  1.130.2.1     skrll  *        This product includes software developed by the NetBSD
     21  1.130.2.1     skrll  *        Foundation, Inc. and its contributors.
     22  1.130.2.1     skrll  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23  1.130.2.1     skrll  *    contributors may be used to endorse or promote products derived
     24  1.130.2.1     skrll  *    from this software without specific prior written permission.
     25  1.130.2.1     skrll  *
     26  1.130.2.1     skrll  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27  1.130.2.1     skrll  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28  1.130.2.1     skrll  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29  1.130.2.1     skrll  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30  1.130.2.1     skrll  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31  1.130.2.1     skrll  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32  1.130.2.1     skrll  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33  1.130.2.1     skrll  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34  1.130.2.1     skrll  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35  1.130.2.1     skrll  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36  1.130.2.1     skrll  * POSSIBILITY OF SUCH DAMAGE.
     37  1.130.2.1     skrll  */
     38        1.1    ichiro 
     39        1.1    ichiro /*
     40        1.1    ichiro  * Copyright (c) 1997, 1998, 1999
     41        1.1    ichiro  *	Bill Paul <wpaul (at) ctr.columbia.edu>.  All rights reserved.
     42        1.1    ichiro  *
     43        1.1    ichiro  * Redistribution and use in source and binary forms, with or without
     44        1.1    ichiro  * modification, are permitted provided that the following conditions
     45        1.1    ichiro  * are met:
     46        1.1    ichiro  * 1. Redistributions of source code must retain the above copyright
     47        1.1    ichiro  *    notice, this list of conditions and the following disclaimer.
     48        1.1    ichiro  * 2. Redistributions in binary form must reproduce the above copyright
     49        1.1    ichiro  *    notice, this list of conditions and the following disclaimer in the
     50        1.1    ichiro  *    documentation and/or other materials provided with the distribution.
     51        1.1    ichiro  * 3. All advertising materials mentioning features or use of this software
     52        1.1    ichiro  *    must display the following acknowledgement:
     53        1.1    ichiro  *	This product includes software developed by Bill Paul.
     54        1.1    ichiro  * 4. Neither the name of the author nor the names of any co-contributors
     55        1.1    ichiro  *    may be used to endorse or promote products derived from this software
     56        1.1    ichiro  *    without specific prior written permission.
     57        1.1    ichiro  *
     58        1.1    ichiro  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
     59        1.1    ichiro  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     60        1.1    ichiro  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     61        1.1    ichiro  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
     62        1.1    ichiro  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     63        1.1    ichiro  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     64        1.1    ichiro  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     65        1.1    ichiro  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     66        1.1    ichiro  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     67        1.1    ichiro  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     68        1.1    ichiro  * THE POSSIBILITY OF SUCH DAMAGE.
     69        1.1    ichiro  */
     70        1.1    ichiro 
     71        1.1    ichiro /*
     72        1.1    ichiro  * Lucent WaveLAN/IEEE 802.11 PCMCIA driver for NetBSD.
     73        1.1    ichiro  *
     74        1.1    ichiro  * Original FreeBSD driver written by Bill Paul <wpaul (at) ctr.columbia.edu>
     75        1.1    ichiro  * Electrical Engineering Department
     76        1.1    ichiro  * Columbia University, New York City
     77        1.1    ichiro  */
     78        1.1    ichiro 
     79        1.1    ichiro /*
     80        1.1    ichiro  * The WaveLAN/IEEE adapter is the second generation of the WaveLAN
     81        1.1    ichiro  * from Lucent. Unlike the older cards, the new ones are programmed
     82        1.1    ichiro  * entirely via a firmware-driven controller called the Hermes.
     83        1.1    ichiro  * Unfortunately, Lucent will not release the Hermes programming manual
     84        1.1    ichiro  * without an NDA (if at all). What they do release is an API library
     85        1.1    ichiro  * called the HCF (Hardware Control Functions) which is supposed to
     86        1.1    ichiro  * do the device-specific operations of a device driver for you. The
     87        1.1    ichiro  * publically available version of the HCF library (the 'HCF Light') is
     88        1.1    ichiro  * a) extremely gross, b) lacks certain features, particularly support
     89        1.1    ichiro  * for 802.11 frames, and c) is contaminated by the GNU Public License.
     90        1.1    ichiro  *
     91        1.1    ichiro  * This driver does not use the HCF or HCF Light at all. Instead, it
     92        1.1    ichiro  * programs the Hermes controller directly, using information gleaned
     93        1.1    ichiro  * from the HCF Light code and corresponding documentation.
     94        1.1    ichiro  *
     95        1.1    ichiro  * This driver supports both the PCMCIA and ISA versions of the
     96        1.1    ichiro  * WaveLAN/IEEE cards. Note however that the ISA card isn't really
     97        1.1    ichiro  * anything of the sort: it's actually a PCMCIA bridge adapter
     98        1.1    ichiro  * that fits into an ISA slot, into which a PCMCIA WaveLAN card is
     99        1.1    ichiro  * inserted. Consequently, you need to use the pccard support for
    100        1.1    ichiro  * both the ISA and PCMCIA adapters.
    101        1.1    ichiro  */
    102        1.1    ichiro 
    103        1.1    ichiro /*
    104        1.1    ichiro  * FreeBSD driver ported to NetBSD by Bill Sommerfeld in the back of the
    105        1.1    ichiro  * Oslo IETF plenary meeting.
    106        1.1    ichiro  */
    107       1.29     lukem 
    108       1.29     lukem #include <sys/cdefs.h>
    109  1.130.2.5     skrll __KERNEL_RCSID(0, "$NetBSD: wi.c,v 1.130.2.5 2004/11/29 07:24:15 skrll Exp $");
    110        1.1    ichiro 
    111        1.1    ichiro #define WI_HERMES_AUTOINC_WAR	/* Work around data write autoinc bug. */
    112        1.1    ichiro #define WI_HERMES_STATS_WAR	/* Work around stats counter bug. */
    113  1.130.2.1     skrll #undef WI_HISTOGRAM
    114  1.130.2.1     skrll #undef WI_RING_DEBUG
    115  1.130.2.1     skrll #define STATIC static
    116        1.1    ichiro 
    117        1.1    ichiro #include "bpfilter.h"
    118        1.1    ichiro 
    119        1.1    ichiro #include <sys/param.h>
    120        1.1    ichiro #include <sys/systm.h>
    121        1.1    ichiro #include <sys/callout.h>
    122        1.1    ichiro #include <sys/device.h>
    123        1.1    ichiro #include <sys/socket.h>
    124        1.1    ichiro #include <sys/mbuf.h>
    125        1.1    ichiro #include <sys/ioctl.h>
    126        1.1    ichiro #include <sys/kernel.h>		/* for hz */
    127        1.1    ichiro #include <sys/proc.h>
    128        1.1    ichiro 
    129        1.1    ichiro #include <net/if.h>
    130        1.1    ichiro #include <net/if_dl.h>
    131      1.116       kml #include <net/if_llc.h>
    132        1.1    ichiro #include <net/if_media.h>
    133        1.1    ichiro #include <net/if_ether.h>
    134  1.130.2.1     skrll #include <net/route.h>
    135  1.130.2.1     skrll 
    136  1.130.2.1     skrll #include <net80211/ieee80211_var.h>
    137  1.130.2.1     skrll #include <net80211/ieee80211_compat.h>
    138  1.130.2.1     skrll #include <net80211/ieee80211_ioctl.h>
    139  1.130.2.1     skrll #include <net80211/ieee80211_radiotap.h>
    140  1.130.2.1     skrll #include <net80211/ieee80211_rssadapt.h>
    141        1.1    ichiro 
    142        1.1    ichiro #if NBPFILTER > 0
    143        1.1    ichiro #include <net/bpf.h>
    144        1.1    ichiro #include <net/bpfdesc.h>
    145        1.1    ichiro #endif
    146        1.1    ichiro 
    147       1.18   nathanw #include <machine/bus.h>
    148        1.1    ichiro 
    149        1.1    ichiro #include <dev/ic/wi_ieee.h>
    150        1.1    ichiro #include <dev/ic/wireg.h>
    151        1.1    ichiro #include <dev/ic/wivar.h>
    152        1.1    ichiro 
    153  1.130.2.1     skrll STATIC int  wi_init(struct ifnet *);
    154  1.130.2.1     skrll STATIC void wi_stop(struct ifnet *, int);
    155  1.130.2.1     skrll STATIC void wi_start(struct ifnet *);
    156  1.130.2.1     skrll STATIC int  wi_reset(struct wi_softc *);
    157  1.130.2.1     skrll STATIC void wi_watchdog(struct ifnet *);
    158  1.130.2.1     skrll STATIC int  wi_ioctl(struct ifnet *, u_long, caddr_t);
    159  1.130.2.1     skrll STATIC int  wi_media_change(struct ifnet *);
    160  1.130.2.1     skrll STATIC void wi_media_status(struct ifnet *, struct ifmediareq *);
    161  1.130.2.1     skrll 
    162  1.130.2.1     skrll STATIC struct ieee80211_node *wi_node_alloc(struct ieee80211com *);
    163  1.130.2.1     skrll STATIC void wi_node_copy(struct ieee80211com *, struct ieee80211_node *,
    164  1.130.2.1     skrll     const struct ieee80211_node *);
    165  1.130.2.1     skrll STATIC void wi_node_free(struct ieee80211com *, struct ieee80211_node *);
    166  1.130.2.1     skrll 
    167  1.130.2.1     skrll STATIC void wi_raise_rate(struct ieee80211com *, struct ieee80211_rssdesc *);
    168  1.130.2.1     skrll STATIC void wi_lower_rate(struct ieee80211com *, struct ieee80211_rssdesc *);
    169  1.130.2.1     skrll STATIC int wi_choose_rate(struct ieee80211com *, struct ieee80211_node *,
    170  1.130.2.1     skrll     struct ieee80211_frame *, u_int);
    171  1.130.2.1     skrll STATIC void wi_rssadapt_updatestats_cb(void *, struct ieee80211_node *);
    172  1.130.2.1     skrll STATIC void wi_rssadapt_updatestats(void *);
    173  1.130.2.1     skrll STATIC void wi_rssdescs_init(struct wi_rssdesc (*)[], wi_rssdescq_t *);
    174  1.130.2.1     skrll STATIC void wi_rssdescs_reset(struct ieee80211com *, struct wi_rssdesc (*)[],
    175  1.130.2.1     skrll     wi_rssdescq_t *, u_int8_t (*)[]);
    176  1.130.2.1     skrll STATIC void wi_sync_bssid(struct wi_softc *, u_int8_t new_bssid[]);
    177  1.130.2.1     skrll 
    178  1.130.2.1     skrll STATIC void wi_rx_intr(struct wi_softc *);
    179  1.130.2.1     skrll STATIC void wi_txalloc_intr(struct wi_softc *);
    180  1.130.2.1     skrll STATIC void wi_cmd_intr(struct wi_softc *);
    181  1.130.2.1     skrll STATIC void wi_tx_intr(struct wi_softc *);
    182  1.130.2.1     skrll STATIC void wi_tx_ex_intr(struct wi_softc *);
    183  1.130.2.1     skrll STATIC void wi_info_intr(struct wi_softc *);
    184  1.130.2.1     skrll 
    185  1.130.2.1     skrll STATIC void wi_push_packet(struct wi_softc *);
    186  1.130.2.1     skrll STATIC int  wi_get_cfg(struct ifnet *, u_long, caddr_t);
    187  1.130.2.1     skrll STATIC int  wi_set_cfg(struct ifnet *, u_long, caddr_t);
    188  1.130.2.1     skrll STATIC int  wi_cfg_txrate(struct wi_softc *);
    189  1.130.2.1     skrll STATIC int  wi_write_txrate(struct wi_softc *, int);
    190  1.130.2.1     skrll STATIC int  wi_write_wep(struct wi_softc *);
    191  1.130.2.1     skrll STATIC int  wi_write_multi(struct wi_softc *);
    192  1.130.2.1     skrll STATIC int  wi_alloc_fid(struct wi_softc *, int, int *);
    193  1.130.2.1     skrll STATIC void wi_read_nicid(struct wi_softc *);
    194  1.130.2.1     skrll STATIC int  wi_write_ssid(struct wi_softc *, int, u_int8_t *, int);
    195  1.130.2.1     skrll 
    196  1.130.2.1     skrll STATIC int  wi_sendcmd(struct wi_softc *, int, int);
    197  1.130.2.1     skrll STATIC int  wi_cmd(struct wi_softc *, int, int, int, int);
    198  1.130.2.1     skrll STATIC int  wi_seek_bap(struct wi_softc *, int, int);
    199  1.130.2.1     skrll STATIC int  wi_read_bap(struct wi_softc *, int, int, void *, int);
    200  1.130.2.1     skrll STATIC int  wi_write_bap(struct wi_softc *, int, int, void *, int);
    201  1.130.2.1     skrll STATIC int  wi_mwrite_bap(struct wi_softc *, int, int, struct mbuf *, int);
    202  1.130.2.1     skrll STATIC int  wi_read_rid(struct wi_softc *, int, void *, int *);
    203  1.130.2.1     skrll STATIC int  wi_write_rid(struct wi_softc *, int, void *, int);
    204       1.90      onoe 
    205  1.130.2.1     skrll STATIC int  wi_newstate(struct ieee80211com *, enum ieee80211_state, int);
    206  1.130.2.1     skrll STATIC int  wi_set_tim(struct ieee80211com *, int, int);
    207       1.90      onoe 
    208  1.130.2.1     skrll STATIC int  wi_scan_ap(struct wi_softc *, u_int16_t, u_int16_t);
    209  1.130.2.1     skrll STATIC void wi_scan_result(struct wi_softc *, int, int);
    210       1.90      onoe 
    211  1.130.2.1     skrll STATIC void wi_dump_pkt(struct wi_frame *, struct ieee80211_node *, int rssi);
    212      1.119    dyoung 
    213       1.90      onoe static inline int
    214       1.90      onoe wi_write_val(struct wi_softc *sc, int rid, u_int16_t val)
    215       1.90      onoe {
    216       1.90      onoe 
    217       1.90      onoe 	val = htole16(val);
    218       1.90      onoe 	return wi_write_rid(sc, rid, &val, sizeof(val));
    219       1.90      onoe }
    220       1.90      onoe 
    221      1.121    dyoung static	struct timeval lasttxerror;	/* time of last tx error msg */
    222      1.126  christos static	int curtxeps = 0;		/* current tx error msgs/sec */
    223      1.121    dyoung static	int wi_txerate = 0;		/* tx error rate: max msgs/sec */
    224      1.121    dyoung 
    225       1.90      onoe #ifdef WI_DEBUG
    226      1.109    dyoung int wi_debug = 0;
    227       1.90      onoe 
    228       1.90      onoe #define	DPRINTF(X)	if (wi_debug) printf X
    229       1.90      onoe #define	DPRINTF2(X)	if (wi_debug > 1) printf X
    230      1.119    dyoung #define	IFF_DUMPPKTS(_ifp) \
    231      1.119    dyoung 	(((_ifp)->if_flags & (IFF_DEBUG|IFF_LINK2)) == (IFF_DEBUG|IFF_LINK2))
    232       1.90      onoe #else
    233       1.90      onoe #define	DPRINTF(X)
    234       1.90      onoe #define	DPRINTF2(X)
    235      1.119    dyoung #define	IFF_DUMPPKTS(_ifp)	0
    236       1.84   thorpej #endif
    237        1.1    ichiro 
    238  1.130.2.1     skrll #define WI_INTRS	(WI_EV_RX | WI_EV_ALLOC | WI_EV_INFO | \
    239  1.130.2.1     skrll 			 WI_EV_TX | WI_EV_TX_EXC | WI_EV_CMD)
    240       1.90      onoe 
    241       1.90      onoe struct wi_card_ident
    242       1.90      onoe wi_card_ident[] = {
    243       1.74   thorpej 	/* CARD_ID			CARD_NAME		FIRM_TYPE */
    244       1.67    ichiro 	{ WI_NIC_LUCENT_ID,		WI_NIC_LUCENT_STR,	WI_LUCENT },
    245       1.67    ichiro 	{ WI_NIC_SONY_ID,		WI_NIC_SONY_STR,	WI_LUCENT },
    246       1.67    ichiro 	{ WI_NIC_LUCENT_EMB_ID,		WI_NIC_LUCENT_EMB_STR,	WI_LUCENT },
    247       1.67    ichiro 	{ WI_NIC_EVB2_ID,		WI_NIC_EVB2_STR,	WI_INTERSIL },
    248       1.67    ichiro 	{ WI_NIC_HWB3763_ID,		WI_NIC_HWB3763_STR,	WI_INTERSIL },
    249       1.67    ichiro 	{ WI_NIC_HWB3163_ID,		WI_NIC_HWB3163_STR,	WI_INTERSIL },
    250       1.67    ichiro 	{ WI_NIC_HWB3163B_ID,		WI_NIC_HWB3163B_STR,	WI_INTERSIL },
    251       1.67    ichiro 	{ WI_NIC_EVB3_ID,		WI_NIC_EVB3_STR,	WI_INTERSIL },
    252       1.67    ichiro 	{ WI_NIC_HWB1153_ID,		WI_NIC_HWB1153_STR,	WI_INTERSIL },
    253       1.67    ichiro 	{ WI_NIC_P2_SST_ID,		WI_NIC_P2_SST_STR,	WI_INTERSIL },
    254       1.67    ichiro 	{ WI_NIC_EVB2_SST_ID,		WI_NIC_EVB2_SST_STR,	WI_INTERSIL },
    255       1.67    ichiro 	{ WI_NIC_3842_EVA_ID,		WI_NIC_3842_EVA_STR,	WI_INTERSIL },
    256       1.64    ichiro 	{ WI_NIC_3842_PCMCIA_AMD_ID,	WI_NIC_3842_PCMCIA_STR,	WI_INTERSIL },
    257       1.64    ichiro 	{ WI_NIC_3842_PCMCIA_SST_ID,	WI_NIC_3842_PCMCIA_STR,	WI_INTERSIL },
    258       1.64    ichiro 	{ WI_NIC_3842_PCMCIA_ATM_ID,	WI_NIC_3842_PCMCIA_STR,	WI_INTERSIL },
    259       1.64    ichiro 	{ WI_NIC_3842_MINI_AMD_ID,	WI_NIC_3842_MINI_STR,	WI_INTERSIL },
    260       1.64    ichiro 	{ WI_NIC_3842_MINI_SST_ID,	WI_NIC_3842_MINI_STR,	WI_INTERSIL },
    261       1.64    ichiro 	{ WI_NIC_3842_MINI_ATM_ID,	WI_NIC_3842_MINI_STR,	WI_INTERSIL },
    262       1.64    ichiro 	{ WI_NIC_3842_PCI_AMD_ID,	WI_NIC_3842_PCI_STR,	WI_INTERSIL },
    263       1.64    ichiro 	{ WI_NIC_3842_PCI_SST_ID,	WI_NIC_3842_PCI_STR,	WI_INTERSIL },
    264       1.64    ichiro 	{ WI_NIC_3842_PCI_ATM_ID,	WI_NIC_3842_PCI_STR,	WI_INTERSIL },
    265       1.64    ichiro 	{ WI_NIC_P3_PCMCIA_AMD_ID,	WI_NIC_P3_PCMCIA_STR,	WI_INTERSIL },
    266       1.64    ichiro 	{ WI_NIC_P3_PCMCIA_SST_ID,	WI_NIC_P3_PCMCIA_STR,	WI_INTERSIL },
    267       1.64    ichiro 	{ WI_NIC_P3_MINI_AMD_ID,	WI_NIC_P3_MINI_STR,	WI_INTERSIL },
    268       1.64    ichiro 	{ WI_NIC_P3_MINI_SST_ID,	WI_NIC_P3_MINI_STR,	WI_INTERSIL },
    269       1.64    ichiro 	{ 0,	NULL,	0 },
    270       1.64    ichiro };
    271       1.64    ichiro 
    272        1.1    ichiro int
    273  1.130.2.2     skrll wi_attach(struct wi_softc *sc, const u_int8_t *macaddr)
    274        1.1    ichiro {
    275       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
    276       1.90      onoe 	struct ifnet *ifp = &ic->ic_if;
    277  1.130.2.1     skrll 	int chan, nrate, buflen;
    278  1.130.2.1     skrll 	u_int16_t val, chanavail;
    279  1.130.2.1     skrll  	struct {
    280  1.130.2.1     skrll  		u_int16_t nrates;
    281  1.130.2.1     skrll  		char rates[IEEE80211_RATE_SIZE];
    282  1.130.2.1     skrll  	} ratebuf;
    283       1.90      onoe 	static const u_int8_t empty_macaddr[IEEE80211_ADDR_LEN] = {
    284        1.1    ichiro 		0x00, 0x00, 0x00, 0x00, 0x00, 0x00
    285        1.1    ichiro 	};
    286      1.125    dyoung 	int s;
    287        1.1    ichiro 
    288      1.125    dyoung 	s = splnet();
    289        1.1    ichiro 
    290        1.1    ichiro 	/* Make sure interrupts are disabled. */
    291        1.1    ichiro 	CSR_WRITE_2(sc, WI_INT_EN, 0);
    292       1.90      onoe 	CSR_WRITE_2(sc, WI_EVENT_ACK, ~0);
    293        1.1    ichiro 
    294      1.127    dyoung 	sc->sc_invalid = 0;
    295      1.127    dyoung 
    296        1.1    ichiro 	/* Reset the NIC. */
    297       1.90      onoe 	if (wi_reset(sc) != 0) {
    298      1.127    dyoung 		sc->sc_invalid = 1;
    299      1.125    dyoung 		splx(s);
    300       1.90      onoe 		return 1;
    301       1.90      onoe 	}
    302        1.1    ichiro 
    303       1.90      onoe 	buflen = IEEE80211_ADDR_LEN;
    304  1.130.2.2     skrll 	if (!macaddr) {
    305  1.130.2.2     skrll 		if (wi_read_rid(sc, WI_RID_MAC_NODE, ic->ic_myaddr, &buflen) != 0 ||
    306  1.130.2.2     skrll 		    buflen < IEEE80211_ADDR_LEN ||
    307  1.130.2.2     skrll 		    IEEE80211_ADDR_EQ(ic->ic_myaddr, empty_macaddr)) {
    308  1.130.2.2     skrll 			printf(" could not get mac address, attach failed\n");
    309  1.130.2.2     skrll 			splx(s);
    310  1.130.2.2     skrll 			return 1;
    311  1.130.2.2     skrll 		}
    312  1.130.2.2     skrll 	} else
    313  1.130.2.2     skrll 		memcpy(ic->ic_myaddr, macaddr, IEEE80211_ADDR_LEN);
    314        1.1    ichiro 
    315       1.90      onoe 	printf(" 802.11 address %s\n", ether_sprintf(ic->ic_myaddr));
    316        1.1    ichiro 
    317        1.4    ichiro 	/* Read NIC identification */
    318       1.90      onoe 	wi_read_nicid(sc);
    319        1.4    ichiro 
    320        1.1    ichiro 	memcpy(ifp->if_xname, sc->sc_dev.dv_xname, IFNAMSIZ);
    321        1.1    ichiro 	ifp->if_softc = sc;
    322        1.1    ichiro 	ifp->if_start = wi_start;
    323        1.1    ichiro 	ifp->if_ioctl = wi_ioctl;
    324        1.1    ichiro 	ifp->if_watchdog = wi_watchdog;
    325        1.1    ichiro 	ifp->if_init = wi_init;
    326        1.1    ichiro 	ifp->if_stop = wi_stop;
    327       1.90      onoe 	ifp->if_flags =
    328       1.90      onoe 	    IFF_SIMPLEX | IFF_BROADCAST | IFF_MULTICAST | IFF_NOTRAILERS;
    329        1.1    ichiro 	IFQ_SET_READY(&ifp->if_snd);
    330        1.1    ichiro 
    331       1.90      onoe 	ic->ic_phytype = IEEE80211_T_DS;
    332       1.90      onoe 	ic->ic_opmode = IEEE80211_M_STA;
    333  1.130.2.1     skrll 	ic->ic_caps = IEEE80211_C_AHDEMO;
    334       1.90      onoe 	ic->ic_state = IEEE80211_S_INIT;
    335      1.116       kml 	ic->ic_max_aid = WI_MAX_AID;
    336       1.90      onoe 
    337       1.90      onoe 	/* Find available channel */
    338  1.130.2.1     skrll 	buflen = sizeof(chanavail);
    339  1.130.2.2     skrll 	if (wi_read_rid(sc, WI_RID_CHANNEL_LIST, &chanavail, &buflen) != 0 &&
    340  1.130.2.2     skrll 	    buflen == sizeof(chanavail)) {
    341  1.130.2.2     skrll 		aprint_normal("%s: using default channel list\n", sc->sc_dev.dv_xname);
    342  1.130.2.2     skrll 		chanavail = htole16(0x1fff);	/* assume 1-13 */
    343  1.130.2.2     skrll 	}
    344  1.130.2.1     skrll 	for (chan = 16; chan > 0; chan--) {
    345  1.130.2.1     skrll 		if (!isset((u_int8_t*)&chanavail, chan - 1))
    346  1.130.2.1     skrll 			continue;
    347  1.130.2.1     skrll 		ic->ic_ibss_chan = &ic->ic_channels[chan];
    348  1.130.2.1     skrll 		ic->ic_channels[chan].ic_freq =
    349  1.130.2.1     skrll 		    ieee80211_ieee2mhz(chan, IEEE80211_CHAN_2GHZ);
    350  1.130.2.1     skrll 		ic->ic_channels[chan].ic_flags = IEEE80211_CHAN_B;
    351       1.90      onoe 	}
    352       1.90      onoe 
    353  1.130.2.1     skrll 	/* Find default IBSS channel */
    354      1.105    dyoung 	buflen = sizeof(val);
    355  1.130.2.2     skrll 	if (wi_read_rid(sc, WI_RID_OWN_CHNL, &val, &buflen) == 0 &&
    356  1.130.2.2     skrll 	    buflen == sizeof(val)) {
    357  1.130.2.1     skrll 		chan = le16toh(val);
    358  1.130.2.1     skrll 		if (isset((u_int8_t*)&chanavail, chan - 1))
    359  1.130.2.1     skrll 			ic->ic_ibss_chan = &ic->ic_channels[chan];
    360      1.102    dyoung 	}
    361  1.130.2.2     skrll 	if (ic->ic_ibss_chan == NULL) {
    362  1.130.2.2     skrll 		aprint_error("%s: no available channel\n", sc->sc_dev.dv_xname);
    363  1.130.2.2     skrll 		return 1;
    364  1.130.2.2     skrll 	}
    365      1.102    dyoung 
    366  1.130.2.1     skrll 	if (sc->sc_firmware_type == WI_LUCENT) {
    367  1.130.2.1     skrll 		sc->sc_dbm_offset = WI_LUCENT_DBM_OFFSET;
    368  1.130.2.1     skrll 	} else {
    369  1.130.2.1     skrll 		buflen = sizeof(val);
    370  1.130.2.1     skrll 		if ((sc->sc_flags & WI_FLAGS_HAS_DBMADJUST) &&
    371  1.130.2.2     skrll 		    wi_read_rid(sc, WI_RID_DBM_ADJUST, &val, &buflen) == 0 &&
    372  1.130.2.2     skrll 		    buflen == sizeof(val))
    373  1.130.2.1     skrll 			sc->sc_dbm_offset = le16toh(val);
    374  1.130.2.1     skrll 		else
    375  1.130.2.1     skrll 			sc->sc_dbm_offset = WI_PRISM_DBM_OFFSET;
    376       1.90      onoe 	}
    377       1.77   thorpej 
    378  1.130.2.1     skrll 	sc->sc_flags |= WI_FLAGS_RSSADAPTSTA;
    379  1.130.2.1     skrll 
    380       1.77   thorpej 	/*
    381       1.77   thorpej 	 * Set flags based on firmware version.
    382       1.77   thorpej 	 */
    383       1.77   thorpej 	switch (sc->sc_firmware_type) {
    384       1.77   thorpej 	case WI_LUCENT:
    385       1.90      onoe 		sc->sc_flags |= WI_FLAGS_HAS_SYSSCALE;
    386       1.90      onoe #ifdef WI_HERMES_AUTOINC_WAR
    387       1.90      onoe 		/* XXX: not confirmed, but never seen for recent firmware */
    388       1.90      onoe 		if (sc->sc_sta_firmware_ver <  40000) {
    389       1.90      onoe 			sc->sc_flags |= WI_FLAGS_BUG_AUTOINC;
    390       1.90      onoe 		}
    391       1.90      onoe #endif
    392       1.77   thorpej 		if (sc->sc_sta_firmware_ver >= 60000)
    393       1.90      onoe 			sc->sc_flags |= WI_FLAGS_HAS_MOR;
    394      1.130        rh 		if (sc->sc_sta_firmware_ver >= 60006) {
    395  1.130.2.1     skrll 			ic->ic_caps |= IEEE80211_C_IBSS;
    396  1.130.2.1     skrll 			ic->ic_caps |= IEEE80211_C_MONITOR;
    397      1.130        rh 		}
    398  1.130.2.1     skrll 		ic->ic_caps |= IEEE80211_C_PMGT;
    399       1.90      onoe 		sc->sc_ibss_port = 1;
    400       1.77   thorpej 		break;
    401       1.77   thorpej 
    402       1.77   thorpej 	case WI_INTERSIL:
    403      1.104    dyoung 		sc->sc_flags |= WI_FLAGS_HAS_FRAGTHR;
    404       1.90      onoe 		sc->sc_flags |= WI_FLAGS_HAS_ROAMING;
    405       1.90      onoe 		sc->sc_flags |= WI_FLAGS_HAS_SYSSCALE;
    406      1.105    dyoung 		if (sc->sc_sta_firmware_ver > 10101)
    407      1.105    dyoung 			sc->sc_flags |= WI_FLAGS_HAS_DBMADJUST;
    408       1.77   thorpej 		if (sc->sc_sta_firmware_ver >= 800) {
    409      1.114    dyoung 			if (sc->sc_sta_firmware_ver != 10402)
    410  1.130.2.1     skrll 				ic->ic_caps |= IEEE80211_C_HOSTAP;
    411  1.130.2.1     skrll 			ic->ic_caps |= IEEE80211_C_IBSS;
    412  1.130.2.1     skrll 			ic->ic_caps |= IEEE80211_C_MONITOR;
    413       1.77   thorpej 		}
    414  1.130.2.1     skrll 		ic->ic_caps |= IEEE80211_C_PMGT;
    415       1.90      onoe 		sc->sc_ibss_port = 0;
    416  1.130.2.1     skrll 		sc->sc_alt_retry = 2;
    417       1.77   thorpej 		break;
    418       1.77   thorpej 
    419       1.77   thorpej 	case WI_SYMBOL:
    420       1.90      onoe 		sc->sc_flags |= WI_FLAGS_HAS_DIVERSITY;
    421      1.101   mycroft 		if (sc->sc_sta_firmware_ver >= 20000)
    422  1.130.2.1     skrll 			ic->ic_caps |= IEEE80211_C_IBSS;
    423       1.90      onoe 		sc->sc_ibss_port = 4;
    424       1.77   thorpej 		break;
    425       1.77   thorpej 	}
    426       1.35    ichiro 
    427        1.1    ichiro 	/*
    428        1.1    ichiro 	 * Find out if we support WEP on this card.
    429        1.1    ichiro 	 */
    430       1.90      onoe 	buflen = sizeof(val);
    431       1.90      onoe 	if (wi_read_rid(sc, WI_RID_WEP_AVAIL, &val, &buflen) == 0 &&
    432  1.130.2.2     skrll 	    buflen == sizeof(val) && val != htole16(0))
    433  1.130.2.1     skrll 		ic->ic_caps |= IEEE80211_C_WEP;
    434       1.84   thorpej 
    435       1.78   thorpej 	/* Find supported rates. */
    436       1.90      onoe 	buflen = sizeof(ratebuf);
    437  1.130.2.2     skrll 	if (wi_read_rid(sc, WI_RID_DATA_RATES, &ratebuf, &buflen) == 0 &&
    438  1.130.2.2     skrll 	    buflen > 2) {
    439  1.130.2.1     skrll 		nrate = le16toh(ratebuf.nrates);
    440       1.90      onoe 		if (nrate > IEEE80211_RATE_SIZE)
    441       1.90      onoe 			nrate = IEEE80211_RATE_SIZE;
    442  1.130.2.1     skrll 		memcpy(ic->ic_sup_rates[IEEE80211_MODE_11B].rs_rates,
    443  1.130.2.1     skrll 		    &ratebuf.rates[0], nrate);
    444  1.130.2.1     skrll 		ic->ic_sup_rates[IEEE80211_MODE_11B].rs_nrates = nrate;
    445  1.130.2.2     skrll 	} else {
    446  1.130.2.2     skrll 		aprint_error("%s: no supported rate list\n", sc->sc_dev.dv_xname);
    447  1.130.2.2     skrll 		return 1;
    448       1.90      onoe 	}
    449       1.90      onoe 
    450       1.90      onoe 	sc->sc_max_datalen = 2304;
    451       1.90      onoe 	sc->sc_rts_thresh = 2347;
    452      1.102    dyoung 	sc->sc_frag_thresh = 2346;
    453       1.90      onoe 	sc->sc_system_scale = 1;
    454      1.100      onoe 	sc->sc_cnfauthmode = IEEE80211_AUTH_OPEN;
    455       1.90      onoe 	sc->sc_roaming_mode = 1;
    456       1.75   thorpej 
    457  1.130.2.1     skrll 	callout_init(&sc->sc_rssadapt_ch);
    458        1.1    ichiro 
    459        1.1    ichiro 	/*
    460        1.1    ichiro 	 * Call MI attach routines.
    461        1.1    ichiro 	 */
    462        1.1    ichiro 	if_attach(ifp);
    463       1.90      onoe 	ieee80211_ifattach(ifp);
    464       1.84   thorpej 
    465  1.130.2.1     skrll 	sc->sc_newstate = ic->ic_newstate;
    466  1.130.2.1     skrll 	ic->ic_newstate = wi_newstate;
    467  1.130.2.1     skrll 	ic->ic_node_alloc = wi_node_alloc;
    468  1.130.2.1     skrll 	ic->ic_node_free = wi_node_free;
    469  1.130.2.1     skrll 	ic->ic_node_copy = wi_node_copy;
    470  1.130.2.1     skrll 	ic->ic_set_tim = wi_set_tim;
    471  1.130.2.1     skrll 
    472  1.130.2.1     skrll 	ieee80211_media_init(ifp, wi_media_change, wi_media_status);
    473  1.130.2.1     skrll 
    474  1.130.2.1     skrll #if NBPFILTER > 0
    475  1.130.2.1     skrll 	bpfattach2(ifp, DLT_IEEE802_11_RADIO,
    476  1.130.2.1     skrll 	    sizeof(struct ieee80211_frame) + 64, &sc->sc_drvbpf);
    477  1.130.2.1     skrll #endif
    478  1.130.2.1     skrll 
    479  1.130.2.1     skrll 	memset(&sc->sc_rxtapu, 0, sizeof(sc->sc_rxtapu));
    480  1.130.2.1     skrll 	sc->sc_rxtap.wr_ihdr.it_len = sizeof(sc->sc_rxtapu);
    481  1.130.2.1     skrll 	sc->sc_rxtap.wr_ihdr.it_present = WI_RX_RADIOTAP_PRESENT;
    482  1.130.2.1     skrll 
    483  1.130.2.1     skrll 	memset(&sc->sc_txtapu, 0, sizeof(sc->sc_txtapu));
    484  1.130.2.1     skrll 	sc->sc_txtap.wt_ihdr.it_len = sizeof(sc->sc_txtapu);
    485  1.130.2.1     skrll 	sc->sc_txtap.wt_ihdr.it_present = WI_TX_RADIOTAP_PRESENT;
    486  1.130.2.1     skrll 
    487        1.1    ichiro 	/* Attach is successful. */
    488        1.1    ichiro 	sc->sc_attached = 1;
    489        1.1    ichiro 
    490      1.125    dyoung 	splx(s);
    491        1.1    ichiro 	return 0;
    492        1.1    ichiro }
    493        1.1    ichiro 
    494       1.90      onoe int
    495       1.90      onoe wi_detach(struct wi_softc *sc)
    496       1.84   thorpej {
    497       1.90      onoe 	struct ifnet *ifp = &sc->sc_ic.ic_if;
    498      1.125    dyoung 	int s;
    499       1.90      onoe 
    500       1.90      onoe 	if (!sc->sc_attached)
    501       1.90      onoe 		return 0;
    502       1.84   thorpej 
    503      1.125    dyoung 	s = splnet();
    504       1.84   thorpej 
    505      1.127    dyoung 	sc->sc_invalid = 1;
    506      1.127    dyoung 	wi_stop(ifp, 1);
    507      1.127    dyoung 
    508       1.90      onoe 	/* Delete all remaining media. */
    509  1.130.2.1     skrll 	ifmedia_delete_instance(&sc->sc_ic.ic_media, IFM_INST_ANY);
    510       1.84   thorpej 
    511       1.90      onoe 	ieee80211_ifdetach(ifp);
    512       1.90      onoe 	if_detach(ifp);
    513      1.125    dyoung 	splx(s);
    514       1.90      onoe 	return 0;
    515       1.84   thorpej }
    516       1.84   thorpej 
    517      1.122    dyoung #ifdef __NetBSD__
    518       1.90      onoe int
    519       1.90      onoe wi_activate(struct device *self, enum devact act)
    520       1.84   thorpej {
    521       1.90      onoe 	struct wi_softc *sc = (struct wi_softc *)self;
    522      1.125    dyoung 	int rv = 0, s;
    523       1.90      onoe 
    524      1.125    dyoung 	s = splnet();
    525       1.90      onoe 	switch (act) {
    526       1.90      onoe 	case DVACT_ACTIVATE:
    527       1.90      onoe 		rv = EOPNOTSUPP;
    528       1.90      onoe 		break;
    529       1.84   thorpej 
    530       1.90      onoe 	case DVACT_DEACTIVATE:
    531       1.90      onoe 		if_deactivate(&sc->sc_ic.ic_if);
    532       1.90      onoe 		break;
    533       1.84   thorpej 	}
    534      1.125    dyoung 	splx(s);
    535       1.90      onoe 	return rv;
    536       1.90      onoe }
    537       1.90      onoe 
    538       1.90      onoe void
    539       1.90      onoe wi_power(struct wi_softc *sc, int why)
    540       1.90      onoe {
    541       1.90      onoe 	struct ifnet *ifp = &sc->sc_ic.ic_if;
    542      1.125    dyoung 	int s;
    543       1.84   thorpej 
    544      1.125    dyoung 	s = splnet();
    545       1.90      onoe 	switch (why) {
    546       1.90      onoe 	case PWR_SUSPEND:
    547       1.90      onoe 	case PWR_STANDBY:
    548       1.90      onoe 		wi_stop(ifp, 1);
    549       1.90      onoe 		break;
    550       1.90      onoe 	case PWR_RESUME:
    551       1.90      onoe 		if (ifp->if_flags & IFF_UP) {
    552       1.90      onoe 			wi_init(ifp);
    553       1.90      onoe 			(void)wi_intr(sc);
    554       1.90      onoe 		}
    555       1.90      onoe 		break;
    556       1.90      onoe 	case PWR_SOFTSUSPEND:
    557       1.90      onoe 	case PWR_SOFTSTANDBY:
    558       1.90      onoe 	case PWR_SOFTRESUME:
    559       1.90      onoe 		break;
    560       1.84   thorpej 	}
    561      1.125    dyoung 	splx(s);
    562       1.90      onoe }
    563      1.122    dyoung #endif /* __NetBSD__ */
    564       1.84   thorpej 
    565       1.90      onoe void
    566       1.90      onoe wi_shutdown(struct wi_softc *sc)
    567       1.90      onoe {
    568       1.90      onoe 	struct ifnet *ifp = &sc->sc_ic.ic_if;
    569       1.84   thorpej 
    570       1.90      onoe 	if (sc->sc_attached)
    571       1.90      onoe 		wi_stop(ifp, 1);
    572       1.90      onoe }
    573       1.84   thorpej 
    574       1.90      onoe int
    575       1.90      onoe wi_intr(void *arg)
    576       1.90      onoe {
    577       1.90      onoe 	int i;
    578       1.90      onoe 	struct wi_softc	*sc = arg;
    579       1.90      onoe 	struct ifnet *ifp = &sc->sc_ic.ic_if;
    580      1.128    dyoung 	u_int16_t status;
    581       1.84   thorpej 
    582       1.90      onoe 	if (sc->sc_enabled == 0 ||
    583       1.90      onoe 	    (sc->sc_dev.dv_flags & DVF_ACTIVE) == 0 ||
    584       1.90      onoe 	    (ifp->if_flags & IFF_RUNNING) == 0)
    585       1.90      onoe 		return 0;
    586       1.84   thorpej 
    587       1.90      onoe 	if ((ifp->if_flags & IFF_UP) == 0) {
    588      1.111    dyoung 		CSR_WRITE_2(sc, WI_INT_EN, 0);
    589       1.90      onoe 		CSR_WRITE_2(sc, WI_EVENT_ACK, ~0);
    590       1.90      onoe 		return 1;
    591       1.90      onoe 	}
    592       1.84   thorpej 
    593      1.128    dyoung 	/* This is superfluous on Prism, but Lucent breaks if we
    594      1.128    dyoung 	 * do not disable interrupts.
    595      1.128    dyoung 	 */
    596      1.128    dyoung 	CSR_WRITE_2(sc, WI_INT_EN, 0);
    597      1.128    dyoung 
    598       1.90      onoe 	/* maximum 10 loops per interrupt */
    599       1.90      onoe 	for (i = 0; i < 10; i++) {
    600       1.90      onoe 		/*
    601       1.90      onoe 		 * Only believe a status bit when we enter wi_intr, or when
    602       1.90      onoe 		 * the bit was "off" the last time through the loop. This is
    603       1.90      onoe 		 * my strategy to avoid racing the hardware/firmware if I
    604       1.90      onoe 		 * can re-read the event status register more quickly than
    605       1.90      onoe 		 * it is updated.
    606       1.90      onoe 		 */
    607      1.128    dyoung 		status = CSR_READ_2(sc, WI_EVENT_STAT);
    608       1.90      onoe 		if ((status & WI_INTRS) == 0)
    609       1.90      onoe 			break;
    610       1.84   thorpej 
    611       1.90      onoe 		if (status & WI_EV_RX)
    612       1.90      onoe 			wi_rx_intr(sc);
    613       1.84   thorpej 
    614       1.90      onoe 		if (status & WI_EV_ALLOC)
    615  1.130.2.1     skrll 			wi_txalloc_intr(sc);
    616  1.130.2.1     skrll 
    617  1.130.2.1     skrll 		if (status & WI_EV_TX)
    618       1.90      onoe 			wi_tx_intr(sc);
    619       1.84   thorpej 
    620      1.121    dyoung 		if (status & WI_EV_TX_EXC)
    621      1.121    dyoung 			wi_tx_ex_intr(sc);
    622      1.121    dyoung 
    623       1.90      onoe 		if (status & WI_EV_INFO)
    624       1.90      onoe 			wi_info_intr(sc);
    625       1.84   thorpej 
    626  1.130.2.1     skrll 		CSR_WRITE_2(sc, WI_EVENT_ACK, status);
    627  1.130.2.1     skrll 
    628  1.130.2.1     skrll 		if (status & WI_EV_CMD)
    629  1.130.2.1     skrll 			wi_cmd_intr(sc);
    630  1.130.2.1     skrll 
    631       1.98      onoe 		if ((ifp->if_flags & IFF_OACTIVE) == 0 &&
    632       1.98      onoe 		    (sc->sc_flags & WI_FLAGS_OUTRANGE) == 0 &&
    633       1.90      onoe 		    !IFQ_IS_EMPTY(&ifp->if_snd))
    634       1.90      onoe 			wi_start(ifp);
    635       1.84   thorpej 	}
    636      1.128    dyoung 
    637      1.128    dyoung 	/* re-enable interrupts */
    638      1.128    dyoung 	CSR_WRITE_2(sc, WI_INT_EN, WI_INTRS);
    639       1.84   thorpej 
    640       1.90      onoe 	return 1;
    641       1.90      onoe }
    642       1.90      onoe 
    643  1.130.2.1     skrll #define arraylen(a) (sizeof(a) / sizeof((a)[0]))
    644  1.130.2.1     skrll 
    645  1.130.2.1     skrll STATIC void
    646  1.130.2.1     skrll wi_rssdescs_init(struct wi_rssdesc (*rssd)[WI_NTXRSS], wi_rssdescq_t *rssdfree)
    647  1.130.2.1     skrll {
    648  1.130.2.1     skrll 	int i;
    649  1.130.2.1     skrll 	SLIST_INIT(rssdfree);
    650  1.130.2.1     skrll 	for (i = 0; i < arraylen(*rssd); i++) {
    651  1.130.2.1     skrll 		SLIST_INSERT_HEAD(rssdfree, &(*rssd)[i], rd_next);
    652  1.130.2.1     skrll 	}
    653  1.130.2.1     skrll }
    654  1.130.2.1     skrll 
    655  1.130.2.1     skrll STATIC void
    656  1.130.2.1     skrll wi_rssdescs_reset(struct ieee80211com *ic, struct wi_rssdesc (*rssd)[WI_NTXRSS],
    657  1.130.2.1     skrll     wi_rssdescq_t *rssdfree, u_int8_t (*txpending)[IEEE80211_RATE_MAXSIZE])
    658  1.130.2.1     skrll {
    659  1.130.2.1     skrll 	struct ieee80211_node *ni;
    660  1.130.2.1     skrll 	int i;
    661  1.130.2.1     skrll 	for (i = 0; i < arraylen(*rssd); i++) {
    662  1.130.2.1     skrll 		ni = (*rssd)[i].rd_desc.id_node;
    663  1.130.2.1     skrll 		(*rssd)[i].rd_desc.id_node = NULL;
    664  1.130.2.1     skrll 		if (ni != NULL && (ic->ic_if.if_flags & IFF_DEBUG) != 0)
    665  1.130.2.1     skrll 			printf("%s: cleaning outstanding rssadapt "
    666  1.130.2.1     skrll 			    "descriptor for %s\n",
    667  1.130.2.1     skrll 			    ic->ic_if.if_xname, ether_sprintf(ni->ni_macaddr));
    668  1.130.2.2     skrll 		if (ni != NULL)
    669  1.130.2.2     skrll 			ieee80211_release_node(ic, ni);
    670  1.130.2.1     skrll 	}
    671  1.130.2.1     skrll 	memset(*txpending, 0, sizeof(*txpending));
    672  1.130.2.1     skrll 	wi_rssdescs_init(rssd, rssdfree);
    673  1.130.2.1     skrll }
    674  1.130.2.1     skrll 
    675  1.130.2.1     skrll STATIC int
    676       1.90      onoe wi_init(struct ifnet *ifp)
    677       1.90      onoe {
    678       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
    679       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
    680       1.90      onoe 	struct wi_joinreq join;
    681       1.90      onoe 	int i;
    682       1.90      onoe 	int error = 0, wasenabled;
    683       1.90      onoe 
    684       1.90      onoe 	DPRINTF(("wi_init: enabled %d\n", sc->sc_enabled));
    685       1.90      onoe 	wasenabled = sc->sc_enabled;
    686       1.90      onoe 	if (!sc->sc_enabled) {
    687       1.90      onoe 		if ((error = (*sc->sc_enable)(sc)) != 0)
    688       1.90      onoe 			goto out;
    689       1.90      onoe 		sc->sc_enabled = 1;
    690       1.90      onoe 	} else
    691       1.90      onoe 		wi_stop(ifp, 0);
    692       1.84   thorpej 
    693       1.90      onoe 	/* Symbol firmware cannot be initialized more than once */
    694      1.123    dyoung 	if (sc->sc_firmware_type != WI_SYMBOL || !wasenabled)
    695       1.90      onoe 		if ((error = wi_reset(sc)) != 0)
    696       1.90      onoe 			goto out;
    697       1.84   thorpej 
    698       1.90      onoe 	/* common 802.11 configuration */
    699       1.97      onoe 	ic->ic_flags &= ~IEEE80211_F_IBSSON;
    700       1.98      onoe 	sc->sc_flags &= ~WI_FLAGS_OUTRANGE;
    701       1.90      onoe 	switch (ic->ic_opmode) {
    702       1.90      onoe 	case IEEE80211_M_STA:
    703       1.90      onoe 		wi_write_val(sc, WI_RID_PORTTYPE, WI_PORTTYPE_BSS);
    704       1.90      onoe 		break;
    705       1.91      onoe 	case IEEE80211_M_IBSS:
    706       1.90      onoe 		wi_write_val(sc, WI_RID_PORTTYPE, sc->sc_ibss_port);
    707       1.97      onoe 		ic->ic_flags |= IEEE80211_F_IBSSON;
    708       1.90      onoe 		break;
    709       1.91      onoe 	case IEEE80211_M_AHDEMO:
    710       1.91      onoe 		wi_write_val(sc, WI_RID_PORTTYPE, WI_PORTTYPE_ADHOC);
    711       1.91      onoe 		break;
    712       1.90      onoe 	case IEEE80211_M_HOSTAP:
    713       1.90      onoe 		wi_write_val(sc, WI_RID_PORTTYPE, WI_PORTTYPE_HOSTAP);
    714       1.90      onoe 		break;
    715      1.112    dyoung 	case IEEE80211_M_MONITOR:
    716      1.130        rh 		if (sc->sc_firmware_type == WI_LUCENT)
    717      1.130        rh 			wi_write_val(sc, WI_RID_PORTTYPE, WI_PORTTYPE_ADHOC);
    718      1.112    dyoung 		wi_cmd(sc, WI_CMD_TEST | (WI_TEST_MONITOR << 8), 0, 0, 0);
    719      1.112    dyoung 		break;
    720       1.90      onoe 	}
    721       1.84   thorpej 
    722       1.90      onoe 	/* Intersil interprets this RID as joining ESS even in IBSS mode */
    723       1.90      onoe 	if (sc->sc_firmware_type == WI_LUCENT &&
    724       1.90      onoe 	    (ic->ic_flags & IEEE80211_F_IBSSON) && ic->ic_des_esslen > 0)
    725       1.90      onoe 		wi_write_val(sc, WI_RID_CREATE_IBSS, 1);
    726       1.90      onoe 	else
    727       1.90      onoe 		wi_write_val(sc, WI_RID_CREATE_IBSS, 0);
    728       1.90      onoe 	wi_write_val(sc, WI_RID_MAX_SLEEP, ic->ic_lintval);
    729       1.90      onoe 	wi_write_ssid(sc, WI_RID_DESIRED_SSID, ic->ic_des_essid,
    730       1.90      onoe 	    ic->ic_des_esslen);
    731  1.130.2.1     skrll 	wi_write_val(sc, WI_RID_OWN_CHNL,
    732  1.130.2.1     skrll 	    ieee80211_chan2ieee(ic, ic->ic_ibss_chan));
    733       1.90      onoe 	wi_write_ssid(sc, WI_RID_OWN_SSID, ic->ic_des_essid, ic->ic_des_esslen);
    734       1.93      onoe 	IEEE80211_ADDR_COPY(ic->ic_myaddr, LLADDR(ifp->if_sadl));
    735       1.90      onoe 	wi_write_rid(sc, WI_RID_MAC_NODE, ic->ic_myaddr, IEEE80211_ADDR_LEN);
    736  1.130.2.1     skrll 	if (ic->ic_caps & IEEE80211_C_PMGT)
    737  1.130.2.1     skrll 		wi_write_val(sc, WI_RID_PM_ENABLED,
    738  1.130.2.1     skrll 		    (ic->ic_flags & IEEE80211_F_PMGTON) ? 1 : 0);
    739       1.90      onoe 
    740       1.90      onoe 	/* not yet common 802.11 configuration */
    741       1.90      onoe 	wi_write_val(sc, WI_RID_MAX_DATALEN, sc->sc_max_datalen);
    742       1.90      onoe 	wi_write_val(sc, WI_RID_RTS_THRESH, sc->sc_rts_thresh);
    743      1.104    dyoung 	if (sc->sc_flags & WI_FLAGS_HAS_FRAGTHR)
    744      1.104    dyoung 		wi_write_val(sc, WI_RID_FRAG_THRESH, sc->sc_frag_thresh);
    745       1.90      onoe 
    746       1.90      onoe 	/* driver specific 802.11 configuration */
    747       1.90      onoe 	if (sc->sc_flags & WI_FLAGS_HAS_SYSSCALE)
    748       1.90      onoe 		wi_write_val(sc, WI_RID_SYSTEM_SCALE, sc->sc_system_scale);
    749       1.90      onoe 	if (sc->sc_flags & WI_FLAGS_HAS_ROAMING)
    750       1.90      onoe 		wi_write_val(sc, WI_RID_ROAMING_MODE, sc->sc_roaming_mode);
    751       1.90      onoe 	if (sc->sc_flags & WI_FLAGS_HAS_MOR)
    752       1.90      onoe 		wi_write_val(sc, WI_RID_MICROWAVE_OVEN, sc->sc_microwave_oven);
    753  1.130.2.1     skrll 	wi_cfg_txrate(sc);
    754       1.90      onoe 	wi_write_ssid(sc, WI_RID_NODENAME, sc->sc_nodename, sc->sc_nodelen);
    755       1.90      onoe 
    756       1.95      onoe 	if (ic->ic_opmode == IEEE80211_M_HOSTAP &&
    757       1.95      onoe 	    sc->sc_firmware_type == WI_INTERSIL) {
    758       1.90      onoe 		wi_write_val(sc, WI_RID_OWN_BEACON_INT, ic->ic_lintval);
    759       1.90      onoe 		wi_write_val(sc, WI_RID_DTIM_PERIOD, 1);
    760       1.84   thorpej 	}
    761       1.84   thorpej 
    762  1.130.2.1     skrll 	if (sc->sc_firmware_type == WI_INTERSIL) {
    763  1.130.2.1     skrll 		struct ieee80211_rateset *rs =
    764  1.130.2.1     skrll 		    &ic->ic_sup_rates[IEEE80211_MODE_11B];
    765  1.130.2.1     skrll 		u_int16_t basic = 0, supported = 0, rate;
    766  1.130.2.1     skrll 
    767  1.130.2.1     skrll 		for (i = 0; i < rs->rs_nrates; i++) {
    768  1.130.2.1     skrll 			switch (rs->rs_rates[i] & IEEE80211_RATE_VAL) {
    769  1.130.2.1     skrll 			case 2:
    770  1.130.2.1     skrll 				rate = 1;
    771  1.130.2.1     skrll 				break;
    772  1.130.2.1     skrll 			case 4:
    773  1.130.2.1     skrll 				rate = 2;
    774  1.130.2.1     skrll 				break;
    775  1.130.2.1     skrll 			case 11:
    776  1.130.2.1     skrll 				rate = 4;
    777  1.130.2.1     skrll 				break;
    778  1.130.2.1     skrll 			case 22:
    779  1.130.2.1     skrll 				rate = 8;
    780  1.130.2.1     skrll 				break;
    781  1.130.2.1     skrll 			default:
    782  1.130.2.1     skrll 				rate = 0;
    783  1.130.2.1     skrll 				break;
    784  1.130.2.1     skrll 			}
    785  1.130.2.1     skrll 			if (rs->rs_rates[i] & IEEE80211_RATE_BASIC)
    786  1.130.2.1     skrll 				basic |= rate;
    787  1.130.2.1     skrll 			supported |= rate;
    788  1.130.2.1     skrll 		}
    789  1.130.2.1     skrll 		wi_write_val(sc, WI_RID_BASIC_RATE, basic);
    790  1.130.2.1     skrll 		wi_write_val(sc, WI_RID_SUPPORT_RATE, supported);
    791  1.130.2.1     skrll 		wi_write_val(sc, WI_RID_ALT_RETRY_COUNT, sc->sc_alt_retry);
    792  1.130.2.1     skrll 	}
    793  1.130.2.1     skrll 
    794       1.90      onoe 	/*
    795       1.90      onoe 	 * Initialize promisc mode.
    796  1.130.2.1     skrll 	 *	Being in Host-AP mode causes a great
    797  1.130.2.1     skrll 	 *	deal of pain if promiscuous mode is set.
    798       1.90      onoe 	 *	Therefore we avoid confusing the firmware
    799       1.90      onoe 	 *	and always reset promisc mode in Host-AP
    800       1.90      onoe 	 *	mode.  Host-AP sees all the packets anyway.
    801       1.90      onoe 	 */
    802       1.90      onoe 	if (ic->ic_opmode != IEEE80211_M_HOSTAP &&
    803       1.90      onoe 	    (ifp->if_flags & IFF_PROMISC) != 0) {
    804       1.90      onoe 		wi_write_val(sc, WI_RID_PROMISC, 1);
    805       1.90      onoe 	} else {
    806       1.90      onoe 		wi_write_val(sc, WI_RID_PROMISC, 0);
    807       1.84   thorpej 	}
    808       1.84   thorpej 
    809       1.90      onoe 	/* Configure WEP. */
    810  1.130.2.1     skrll 	if (ic->ic_caps & IEEE80211_C_WEP)
    811       1.90      onoe 		wi_write_wep(sc);
    812       1.84   thorpej 
    813       1.90      onoe 	/* Set multicast filter. */
    814       1.90      onoe 	wi_write_multi(sc);
    815       1.84   thorpej 
    816  1.130.2.1     skrll 	sc->sc_txalloc = 0;
    817  1.130.2.1     skrll 	sc->sc_txalloced = 0;
    818  1.130.2.1     skrll 	sc->sc_txqueue = 0;
    819  1.130.2.1     skrll 	sc->sc_txqueued = 0;
    820  1.130.2.1     skrll 	sc->sc_txstart = 0;
    821  1.130.2.1     skrll 	sc->sc_txstarted = 0;
    822  1.130.2.1     skrll 
    823       1.96      onoe 	if (sc->sc_firmware_type != WI_SYMBOL || !wasenabled) {
    824       1.96      onoe 		sc->sc_buflen = IEEE80211_MAX_LEN + sizeof(struct wi_frame);
    825       1.96      onoe 		if (sc->sc_firmware_type == WI_SYMBOL)
    826       1.96      onoe 			sc->sc_buflen = 1585;	/* XXX */
    827       1.96      onoe 		for (i = 0; i < WI_NTXBUF; i++) {
    828       1.96      onoe 			error = wi_alloc_fid(sc, sc->sc_buflen,
    829       1.96      onoe 			    &sc->sc_txd[i].d_fid);
    830       1.96      onoe 			if (error) {
    831       1.96      onoe 				printf("%s: tx buffer allocation failed\n",
    832       1.96      onoe 				    sc->sc_dev.dv_xname);
    833       1.96      onoe 				goto out;
    834       1.96      onoe 			}
    835       1.96      onoe 			DPRINTF2(("wi_init: txbuf %d allocated %x\n", i,
    836       1.96      onoe 			    sc->sc_txd[i].d_fid));
    837  1.130.2.1     skrll 			++sc->sc_txalloced;
    838       1.90      onoe 		}
    839       1.84   thorpej 	}
    840  1.130.2.1     skrll 
    841  1.130.2.1     skrll 	wi_rssdescs_init(&sc->sc_rssd, &sc->sc_rssdfree);
    842       1.84   thorpej 
    843      1.118    dyoung 	/* Enable desired port */
    844      1.118    dyoung 	wi_cmd(sc, WI_CMD_ENABLE | sc->sc_portnum, 0, 0, 0);
    845       1.90      onoe 	ifp->if_flags |= IFF_RUNNING;
    846       1.90      onoe 	ifp->if_flags &= ~IFF_OACTIVE;
    847  1.130.2.1     skrll 	ic->ic_state = IEEE80211_S_INIT;
    848  1.130.2.1     skrll 
    849       1.91      onoe 	if (ic->ic_opmode == IEEE80211_M_AHDEMO ||
    850      1.112    dyoung 	    ic->ic_opmode == IEEE80211_M_MONITOR ||
    851       1.91      onoe 	    ic->ic_opmode == IEEE80211_M_HOSTAP)
    852  1.130.2.1     skrll 		ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
    853       1.90      onoe 
    854       1.90      onoe 	/* Enable interrupts */
    855       1.90      onoe 	CSR_WRITE_2(sc, WI_INT_EN, WI_INTRS);
    856       1.84   thorpej 
    857       1.96      onoe 	if (!wasenabled &&
    858       1.96      onoe 	    ic->ic_opmode == IEEE80211_M_HOSTAP &&
    859       1.96      onoe 	    sc->sc_firmware_type == WI_INTERSIL) {
    860       1.90      onoe 		/* XXX: some card need to be re-enabled for hostap */
    861       1.90      onoe 		wi_cmd(sc, WI_CMD_DISABLE | WI_PORT0, 0, 0, 0);
    862       1.90      onoe 		wi_cmd(sc, WI_CMD_ENABLE | WI_PORT0, 0, 0, 0);
    863       1.90      onoe 	}
    864       1.84   thorpej 
    865       1.90      onoe 	if (ic->ic_opmode == IEEE80211_M_STA &&
    866       1.90      onoe 	    ((ic->ic_flags & IEEE80211_F_DESBSSID) ||
    867  1.130.2.1     skrll 	    ic->ic_des_chan != IEEE80211_CHAN_ANYC)) {
    868       1.90      onoe 		memset(&join, 0, sizeof(join));
    869       1.90      onoe 		if (ic->ic_flags & IEEE80211_F_DESBSSID)
    870       1.90      onoe 			IEEE80211_ADDR_COPY(&join.wi_bssid, ic->ic_des_bssid);
    871  1.130.2.1     skrll 		if (ic->ic_des_chan != IEEE80211_CHAN_ANYC)
    872  1.130.2.1     skrll 			join.wi_chan =
    873  1.130.2.1     skrll 			    htole16(ieee80211_chan2ieee(ic, ic->ic_des_chan));
    874      1.106    dyoung 		/* Lucent firmware does not support the JOIN RID. */
    875      1.106    dyoung 		if (sc->sc_firmware_type != WI_LUCENT)
    876      1.106    dyoung 			wi_write_rid(sc, WI_RID_JOIN_REQ, &join, sizeof(join));
    877       1.84   thorpej 	}
    878       1.84   thorpej 
    879       1.90      onoe  out:
    880       1.90      onoe 	if (error) {
    881       1.90      onoe 		printf("%s: interface not running\n", sc->sc_dev.dv_xname);
    882       1.95      onoe 		wi_stop(ifp, 0);
    883       1.90      onoe 	}
    884       1.90      onoe 	DPRINTF(("wi_init: return %d\n", error));
    885       1.90      onoe 	return error;
    886       1.84   thorpej }
    887       1.84   thorpej 
    888  1.130.2.1     skrll STATIC void
    889       1.90      onoe wi_stop(struct ifnet *ifp, int disable)
    890       1.84   thorpej {
    891       1.90      onoe 	struct wi_softc	*sc = ifp->if_softc;
    892  1.130.2.1     skrll 	struct ieee80211com *ic = &sc->sc_ic;
    893      1.125    dyoung 	int s;
    894      1.118    dyoung 
    895      1.127    dyoung 	if (!sc->sc_enabled)
    896      1.127    dyoung 		return;
    897      1.127    dyoung 
    898      1.125    dyoung 	s = splnet();
    899       1.84   thorpej 
    900       1.90      onoe 	DPRINTF(("wi_stop: disable %d\n", disable));
    901      1.127    dyoung 
    902  1.130.2.1     skrll 	ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
    903      1.127    dyoung 	if (!sc->sc_invalid) {
    904       1.90      onoe 		CSR_WRITE_2(sc, WI_INT_EN, 0);
    905      1.118    dyoung 		wi_cmd(sc, WI_CMD_DISABLE | sc->sc_portnum, 0, 0, 0);
    906       1.84   thorpej 	}
    907       1.84   thorpej 
    908  1.130.2.1     skrll 	wi_rssdescs_reset(ic, &sc->sc_rssd, &sc->sc_rssdfree,
    909  1.130.2.1     skrll 	    &sc->sc_txpending);
    910  1.130.2.1     skrll 
    911       1.90      onoe 	sc->sc_tx_timer = 0;
    912       1.90      onoe 	sc->sc_scan_timer = 0;
    913      1.107    dyoung 	sc->sc_false_syns = 0;
    914       1.90      onoe 	sc->sc_naps = 0;
    915       1.90      onoe 	ifp->if_flags &= ~(IFF_OACTIVE | IFF_RUNNING);
    916       1.90      onoe 	ifp->if_timer = 0;
    917      1.118    dyoung 
    918      1.127    dyoung 	if (disable) {
    919      1.127    dyoung 		if (sc->sc_disable)
    920      1.127    dyoung 			(*sc->sc_disable)(sc);
    921      1.127    dyoung 		sc->sc_enabled = 0;
    922      1.127    dyoung 	}
    923      1.125    dyoung 	splx(s);
    924       1.90      onoe }
    925       1.84   thorpej 
    926  1.130.2.1     skrll /*
    927  1.130.2.1     skrll  * Choose a data rate for a packet len bytes long that suits the packet
    928  1.130.2.1     skrll  * type and the wireless conditions.
    929  1.130.2.1     skrll  *
    930  1.130.2.1     skrll  * TBD Adapt fragmentation threshold.
    931  1.130.2.1     skrll  */
    932  1.130.2.1     skrll STATIC int
    933  1.130.2.1     skrll wi_choose_rate(struct ieee80211com *ic, struct ieee80211_node *ni,
    934  1.130.2.1     skrll     struct ieee80211_frame *wh, u_int len)
    935  1.130.2.1     skrll {
    936  1.130.2.1     skrll 	struct wi_softc	*sc = ic->ic_if.if_softc;
    937  1.130.2.1     skrll 	struct wi_node *wn = (void*)ni;
    938  1.130.2.1     skrll 	struct ieee80211_rssadapt *ra = &wn->wn_rssadapt;
    939  1.130.2.1     skrll 	int do_not_adapt, i, rateidx, s;
    940  1.130.2.1     skrll 
    941  1.130.2.1     skrll 	do_not_adapt = (ic->ic_opmode != IEEE80211_M_HOSTAP) &&
    942  1.130.2.1     skrll 	    (sc->sc_flags & WI_FLAGS_RSSADAPTSTA) == 0;
    943  1.130.2.1     skrll 
    944  1.130.2.1     skrll 	s = splnet();
    945  1.130.2.1     skrll 
    946  1.130.2.1     skrll 	rateidx = ieee80211_rssadapt_choose(ra, &ni->ni_rates, wh, len,
    947  1.130.2.1     skrll 	    ic->ic_fixed_rate,
    948  1.130.2.1     skrll 	    ((ic->ic_if.if_flags & IFF_DEBUG) == 0) ? NULL : ic->ic_if.if_xname,
    949  1.130.2.1     skrll 	    do_not_adapt);
    950  1.130.2.1     skrll 
    951  1.130.2.1     skrll 	ni->ni_txrate = rateidx;
    952  1.130.2.1     skrll 
    953  1.130.2.1     skrll 	if (ic->ic_opmode != IEEE80211_M_HOSTAP) {
    954  1.130.2.1     skrll 		/* choose the slowest pending rate so that we don't
    955  1.130.2.1     skrll 		 * accidentally send a packet on the MAC's queue
    956  1.130.2.1     skrll 		 * too fast. TBD find out if the MAC labels Tx
    957  1.130.2.1     skrll 		 * packets w/ rate when enqueued or dequeued.
    958  1.130.2.1     skrll 		 */
    959  1.130.2.1     skrll 		for (i = 0; i < rateidx && sc->sc_txpending[i] == 0; i++);
    960  1.130.2.1     skrll 		rateidx = i;
    961  1.130.2.1     skrll 	}
    962  1.130.2.1     skrll 
    963  1.130.2.1     skrll 	splx(s);
    964  1.130.2.1     skrll 	return (rateidx);
    965  1.130.2.1     skrll }
    966  1.130.2.1     skrll 
    967  1.130.2.1     skrll STATIC void
    968  1.130.2.1     skrll wi_raise_rate(struct ieee80211com *ic, struct ieee80211_rssdesc *id)
    969  1.130.2.1     skrll {
    970  1.130.2.1     skrll 	struct wi_node *wn;
    971  1.130.2.1     skrll 	if (id->id_node == NULL)
    972  1.130.2.1     skrll 		return;
    973  1.130.2.1     skrll 
    974  1.130.2.1     skrll 	wn = (void*)id->id_node;
    975  1.130.2.1     skrll 	ieee80211_rssadapt_raise_rate(ic, &wn->wn_rssadapt, id);
    976  1.130.2.1     skrll }
    977  1.130.2.1     skrll 
    978  1.130.2.1     skrll STATIC void
    979  1.130.2.1     skrll wi_lower_rate(struct ieee80211com *ic, struct ieee80211_rssdesc *id)
    980  1.130.2.1     skrll {
    981  1.130.2.1     skrll 	struct ieee80211_node *ni;
    982  1.130.2.1     skrll 	struct wi_node *wn;
    983  1.130.2.1     skrll 	int s;
    984  1.130.2.1     skrll 
    985  1.130.2.1     skrll 	s = splnet();
    986  1.130.2.1     skrll 
    987  1.130.2.1     skrll 	if ((ni = id->id_node) == NULL) {
    988  1.130.2.1     skrll 		DPRINTF(("wi_lower_rate: missing node\n"));
    989  1.130.2.1     skrll 		goto out;
    990  1.130.2.1     skrll 	}
    991  1.130.2.1     skrll 
    992  1.130.2.1     skrll 	wn = (void *)ni;
    993  1.130.2.1     skrll 
    994  1.130.2.1     skrll 	ieee80211_rssadapt_lower_rate(ic, ni, &wn->wn_rssadapt, id);
    995  1.130.2.1     skrll out:
    996  1.130.2.1     skrll 	splx(s);
    997  1.130.2.1     skrll 	return;
    998  1.130.2.1     skrll }
    999  1.130.2.1     skrll 
   1000  1.130.2.1     skrll STATIC void
   1001       1.90      onoe wi_start(struct ifnet *ifp)
   1002       1.90      onoe {
   1003       1.90      onoe 	struct wi_softc	*sc = ifp->if_softc;
   1004       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1005      1.125    dyoung 	struct ieee80211_node *ni;
   1006       1.90      onoe 	struct ieee80211_frame *wh;
   1007  1.130.2.1     skrll 	struct ieee80211_rateset *rs;
   1008  1.130.2.1     skrll 	struct wi_rssdesc *rd;
   1009  1.130.2.1     skrll 	struct ieee80211_rssdesc *id;
   1010      1.108    dyoung 	struct mbuf *m0;
   1011       1.90      onoe 	struct wi_frame frmhdr;
   1012  1.130.2.1     skrll 	int cur, fid, off, rateidx;
   1013      1.123    dyoung 
   1014      1.127    dyoung 	if (!sc->sc_enabled || sc->sc_invalid)
   1015      1.123    dyoung 		return;
   1016      1.125    dyoung 	if (sc->sc_flags & WI_FLAGS_OUTRANGE)
   1017       1.98      onoe 		return;
   1018       1.84   thorpej 
   1019       1.90      onoe 	memset(&frmhdr, 0, sizeof(frmhdr));
   1020  1.130.2.1     skrll 	cur = sc->sc_txqueue;
   1021       1.90      onoe 	for (;;) {
   1022  1.130.2.1     skrll 		ni = ic->ic_bss;
   1023  1.130.2.1     skrll 		if (sc->sc_txalloced == 0 || SLIST_EMPTY(&sc->sc_rssdfree)) {
   1024  1.130.2.1     skrll 			ifp->if_flags |= IFF_OACTIVE;
   1025  1.130.2.1     skrll 			break;
   1026  1.130.2.1     skrll 		}
   1027      1.116       kml 		if (!IF_IS_EMPTY(&ic->ic_mgtq)) {
   1028       1.90      onoe 			IF_DEQUEUE(&ic->ic_mgtq, m0);
   1029       1.90      onoe 			m_copydata(m0, 4, ETHER_ADDR_LEN * 2,
   1030       1.90      onoe 			    (caddr_t)&frmhdr.wi_ehdr);
   1031       1.90      onoe 			frmhdr.wi_ehdr.ether_type = 0;
   1032       1.90      onoe                         wh = mtod(m0, struct ieee80211_frame *);
   1033  1.130.2.1     skrll 			ni = (struct ieee80211_node *)m0->m_pkthdr.rcvif;
   1034  1.130.2.1     skrll 			m0->m_pkthdr.rcvif = NULL;
   1035  1.130.2.1     skrll 		} else if (ic->ic_state != IEEE80211_S_RUN)
   1036  1.130.2.1     skrll 			break;
   1037  1.130.2.1     skrll 		else if (!IF_IS_EMPTY(&ic->ic_pwrsaveq)) {
   1038      1.116       kml 			struct llc *llc;
   1039      1.116       kml 
   1040      1.116       kml 			/*
   1041      1.116       kml 			 * Should these packets be processed after the
   1042      1.116       kml 			 * regular packets or before?  Since they are being
   1043      1.116       kml 			 * probed for, they are probably less time critical
   1044      1.116       kml 			 * than other packets, but, on the other hand,
   1045      1.116       kml 			 * we want the power saving nodes to go back to
   1046      1.116       kml 			 * sleep as quickly as possible to save power...
   1047      1.116       kml 			 */
   1048      1.116       kml 
   1049      1.116       kml 			IF_DEQUEUE(&ic->ic_pwrsaveq, m0);
   1050      1.116       kml                         wh = mtod(m0, struct ieee80211_frame *);
   1051      1.116       kml 			llc = (struct llc *) (wh + 1);
   1052      1.116       kml 			m_copydata(m0, 4, ETHER_ADDR_LEN * 2,
   1053      1.116       kml 			    (caddr_t)&frmhdr.wi_ehdr);
   1054      1.116       kml 			frmhdr.wi_ehdr.ether_type = llc->llc_snap.ether_type;
   1055  1.130.2.1     skrll 			ni = (struct ieee80211_node *)m0->m_pkthdr.rcvif;
   1056  1.130.2.1     skrll 			m0->m_pkthdr.rcvif = NULL;
   1057       1.90      onoe 		} else {
   1058       1.90      onoe 			IFQ_POLL(&ifp->if_snd, m0);
   1059  1.130.2.1     skrll 			if (m0 == NULL) {
   1060       1.90      onoe 				break;
   1061       1.90      onoe 			}
   1062       1.90      onoe 			IFQ_DEQUEUE(&ifp->if_snd, m0);
   1063       1.90      onoe 			ifp->if_opackets++;
   1064       1.90      onoe 			m_copydata(m0, 0, ETHER_HDR_LEN,
   1065       1.90      onoe 			    (caddr_t)&frmhdr.wi_ehdr);
   1066       1.90      onoe #if NBPFILTER > 0
   1067       1.90      onoe 			if (ifp->if_bpf)
   1068       1.90      onoe 				bpf_mtap(ifp->if_bpf, m0);
   1069       1.90      onoe #endif
   1070       1.84   thorpej 
   1071  1.130.2.1     skrll 			if ((m0 = ieee80211_encap(ifp, m0, &ni)) == NULL) {
   1072       1.90      onoe 				ifp->if_oerrors++;
   1073       1.90      onoe 				continue;
   1074       1.90      onoe 			}
   1075       1.90      onoe                         wh = mtod(m0, struct ieee80211_frame *);
   1076       1.90      onoe 			if (ic->ic_opmode == IEEE80211_M_HOSTAP &&
   1077       1.90      onoe 			    !IEEE80211_IS_MULTICAST(wh->i_addr1) &&
   1078       1.90      onoe 			    (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) ==
   1079      1.116       kml 			    IEEE80211_FC0_TYPE_DATA) {
   1080  1.130.2.1     skrll 				if (ni->ni_associd == 0) {
   1081      1.116       kml 					m_freem(m0);
   1082      1.116       kml 					ifp->if_oerrors++;
   1083  1.130.2.1     skrll 					goto next;
   1084      1.116       kml 				}
   1085      1.116       kml 				if (ni->ni_pwrsave & IEEE80211_PS_SLEEP) {
   1086      1.116       kml 					ieee80211_pwrsave(ic, ni, m0);
   1087  1.130.2.1     skrll 					continue; /* don't free node. */
   1088      1.116       kml 				}
   1089       1.90      onoe 			}
   1090       1.90      onoe 		}
   1091       1.90      onoe #if NBPFILTER > 0
   1092       1.90      onoe 		if (ic->ic_rawbpf)
   1093       1.90      onoe 			bpf_mtap(ic->ic_rawbpf, m0);
   1094       1.90      onoe #endif
   1095  1.130.2.1     skrll 		frmhdr.wi_tx_ctl =
   1096  1.130.2.1     skrll 		    htole16(WI_ENC_TX_802_11|WI_TXCNTL_TX_EX|WI_TXCNTL_TX_OK);
   1097  1.130.2.1     skrll 		if (ic->ic_opmode == IEEE80211_M_HOSTAP)
   1098  1.130.2.1     skrll 			frmhdr.wi_tx_ctl |= htole16(WI_TXCNTL_ALTRTRY);
   1099       1.90      onoe 		if (ic->ic_opmode == IEEE80211_M_HOSTAP &&
   1100       1.90      onoe 		    (wh->i_fc[1] & IEEE80211_FC1_WEP)) {
   1101       1.90      onoe 			if ((m0 = ieee80211_wep_crypt(ifp, m0, 1)) == NULL) {
   1102       1.90      onoe 				ifp->if_oerrors++;
   1103  1.130.2.1     skrll 				goto next;
   1104       1.90      onoe 			}
   1105       1.90      onoe 			frmhdr.wi_tx_ctl |= htole16(WI_TXCNTL_NOCRYPT);
   1106       1.90      onoe 		}
   1107  1.130.2.1     skrll 
   1108  1.130.2.1     skrll 		rateidx = wi_choose_rate(ic, ni, wh, m0->m_pkthdr.len);
   1109  1.130.2.1     skrll 		rs = &ni->ni_rates;
   1110  1.130.2.1     skrll 
   1111       1.90      onoe #if NBPFILTER > 0
   1112       1.90      onoe 		if (sc->sc_drvbpf) {
   1113  1.130.2.1     skrll 			struct wi_tx_radiotap_header *tap = &sc->sc_txtap;
   1114  1.130.2.1     skrll 
   1115  1.130.2.1     skrll 			tap->wt_rate = rs->rs_rates[rateidx];
   1116  1.130.2.1     skrll 			tap->wt_chan_freq =
   1117  1.130.2.1     skrll 			    htole16(ic->ic_bss->ni_chan->ic_freq);
   1118  1.130.2.1     skrll 			tap->wt_chan_flags =
   1119  1.130.2.1     skrll 			    htole16(ic->ic_bss->ni_chan->ic_flags);
   1120  1.130.2.1     skrll 			/* TBD tap->wt_flags */
   1121  1.130.2.1     skrll 
   1122  1.130.2.2     skrll 			bpf_mtap2(sc->sc_drvbpf, tap, tap->wt_ihdr.it_len, m0);
   1123       1.90      onoe 		}
   1124       1.90      onoe #endif
   1125  1.130.2.1     skrll 
   1126  1.130.2.1     skrll 		rd = SLIST_FIRST(&sc->sc_rssdfree);
   1127  1.130.2.1     skrll 		id = &rd->rd_desc;
   1128  1.130.2.1     skrll 		id->id_len = m0->m_pkthdr.len;
   1129  1.130.2.1     skrll 		id->id_rateidx = ni->ni_txrate;
   1130  1.130.2.1     skrll 		id->id_rssi = ni->ni_rssi;
   1131  1.130.2.1     skrll 
   1132  1.130.2.1     skrll 		frmhdr.wi_tx_idx = rd - sc->sc_rssd;
   1133  1.130.2.1     skrll 
   1134  1.130.2.1     skrll 		if (ic->ic_opmode == IEEE80211_M_HOSTAP)
   1135  1.130.2.1     skrll 			frmhdr.wi_tx_rate = 5 * (rs->rs_rates[rateidx] &
   1136  1.130.2.1     skrll 			    IEEE80211_RATE_VAL);
   1137  1.130.2.1     skrll 		else if (sc->sc_flags & WI_FLAGS_RSSADAPTSTA)
   1138  1.130.2.1     skrll 			(void)wi_write_txrate(sc, rs->rs_rates[rateidx]);
   1139  1.130.2.1     skrll 
   1140  1.130.2.1     skrll 		m_copydata(m0, 0, sizeof(struct ieee80211_frame),
   1141  1.130.2.1     skrll 		    (caddr_t)&frmhdr.wi_whdr);
   1142  1.130.2.1     skrll 		m_adj(m0, sizeof(struct ieee80211_frame));
   1143  1.130.2.1     skrll 		frmhdr.wi_dat_len = htole16(m0->m_pkthdr.len);
   1144      1.119    dyoung 		if (IFF_DUMPPKTS(ifp))
   1145      1.119    dyoung 			wi_dump_pkt(&frmhdr, ni, -1);
   1146       1.90      onoe 		fid = sc->sc_txd[cur].d_fid;
   1147       1.90      onoe 		off = sizeof(frmhdr);
   1148      1.108    dyoung 		if (wi_write_bap(sc, fid, 0, &frmhdr, sizeof(frmhdr)) != 0 ||
   1149      1.108    dyoung 		    wi_mwrite_bap(sc, fid, off, m0, m0->m_pkthdr.len) != 0) {
   1150  1.130.2.1     skrll 			printf("%s: %s write fid %x failed\n",
   1151  1.130.2.1     skrll 			    sc->sc_dev.dv_xname, __func__, fid);
   1152      1.108    dyoung 			ifp->if_oerrors++;
   1153      1.108    dyoung 			m_freem(m0);
   1154  1.130.2.1     skrll 			goto next;
   1155       1.90      onoe 		}
   1156       1.90      onoe 		m_freem(m0);
   1157  1.130.2.1     skrll 		sc->sc_txpending[ni->ni_txrate]++;
   1158  1.130.2.1     skrll 		--sc->sc_txalloced;
   1159  1.130.2.1     skrll 		if (sc->sc_txqueued++ == 0) {
   1160  1.130.2.1     skrll #ifdef DIAGNOSTIC
   1161  1.130.2.1     skrll 			if (cur != sc->sc_txstart)
   1162  1.130.2.1     skrll 				printf("%s: ring is desynchronized\n",
   1163       1.90      onoe 				    sc->sc_dev.dv_xname);
   1164  1.130.2.1     skrll #endif
   1165  1.130.2.1     skrll 			wi_push_packet(sc);
   1166  1.130.2.1     skrll 		} else {
   1167  1.130.2.1     skrll #ifdef WI_RING_DEBUG
   1168  1.130.2.1     skrll 	printf("%s: queue %04x, alloc %d queue %d start %d alloced %d queued %d started %d\n",
   1169  1.130.2.1     skrll 	    sc->sc_dev.dv_xname, fid,
   1170  1.130.2.1     skrll 	    sc->sc_txalloc, sc->sc_txqueue, sc->sc_txstart,
   1171  1.130.2.1     skrll 	    sc->sc_txalloced, sc->sc_txqueued, sc->sc_txstarted);
   1172  1.130.2.1     skrll #endif
   1173       1.90      onoe 		}
   1174  1.130.2.1     skrll 		sc->sc_txqueue = cur = (cur + 1) % WI_NTXBUF;
   1175  1.130.2.1     skrll 		SLIST_REMOVE_HEAD(&sc->sc_rssdfree, rd_next);
   1176  1.130.2.1     skrll 		id->id_node = ni;
   1177  1.130.2.1     skrll 		continue;
   1178  1.130.2.1     skrll next:
   1179  1.130.2.2     skrll 		if (ni != NULL)
   1180  1.130.2.2     skrll 			ieee80211_release_node(ic, ni);
   1181       1.84   thorpej 	}
   1182       1.90      onoe }
   1183       1.84   thorpej 
   1184       1.84   thorpej 
   1185  1.130.2.1     skrll STATIC int
   1186       1.90      onoe wi_reset(struct wi_softc *sc)
   1187       1.84   thorpej {
   1188       1.90      onoe 	int i, error;
   1189       1.90      onoe 
   1190       1.90      onoe 	DPRINTF(("wi_reset\n"));
   1191      1.113    dyoung 
   1192      1.113    dyoung 	if (sc->sc_reset)
   1193      1.113    dyoung 		(*sc->sc_reset)(sc);
   1194      1.113    dyoung 
   1195       1.90      onoe 	error = 0;
   1196       1.90      onoe 	for (i = 0; i < 5; i++) {
   1197       1.90      onoe 		DELAY(20*1000);	/* XXX: way too long! */
   1198       1.90      onoe 		if ((error = wi_cmd(sc, WI_CMD_INI, 0, 0, 0)) == 0)
   1199       1.90      onoe 			break;
   1200       1.90      onoe 	}
   1201       1.90      onoe 	if (error) {
   1202       1.90      onoe 		printf("%s: init failed\n", sc->sc_dev.dv_xname);
   1203       1.90      onoe 		return error;
   1204       1.84   thorpej 	}
   1205       1.90      onoe 	CSR_WRITE_2(sc, WI_INT_EN, 0);
   1206       1.90      onoe 	CSR_WRITE_2(sc, WI_EVENT_ACK, ~0);
   1207       1.84   thorpej 
   1208       1.90      onoe 	/* Calibrate timer. */
   1209       1.90      onoe 	wi_write_val(sc, WI_RID_TICK_TIME, 0);
   1210       1.90      onoe 	return 0;
   1211       1.90      onoe }
   1212       1.84   thorpej 
   1213  1.130.2.1     skrll STATIC void
   1214       1.90      onoe wi_watchdog(struct ifnet *ifp)
   1215       1.90      onoe {
   1216       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
   1217       1.84   thorpej 
   1218       1.90      onoe 	ifp->if_timer = 0;
   1219       1.90      onoe 	if (!sc->sc_enabled)
   1220       1.90      onoe 		return;
   1221       1.84   thorpej 
   1222       1.90      onoe 	if (sc->sc_tx_timer) {
   1223       1.90      onoe 		if (--sc->sc_tx_timer == 0) {
   1224       1.90      onoe 			printf("%s: device timeout\n", ifp->if_xname);
   1225       1.90      onoe 			ifp->if_oerrors++;
   1226       1.90      onoe 			wi_init(ifp);
   1227       1.90      onoe 			return;
   1228       1.90      onoe 		}
   1229       1.90      onoe 		ifp->if_timer = 1;
   1230       1.90      onoe 	}
   1231       1.84   thorpej 
   1232       1.90      onoe 	if (sc->sc_scan_timer) {
   1233       1.90      onoe 		if (--sc->sc_scan_timer <= WI_SCAN_WAIT - WI_SCAN_INQWAIT &&
   1234       1.90      onoe 		    sc->sc_firmware_type == WI_INTERSIL) {
   1235       1.90      onoe 			DPRINTF(("wi_watchdog: inquire scan\n"));
   1236       1.90      onoe 			wi_cmd(sc, WI_CMD_INQUIRE, WI_INFO_SCAN_RESULTS, 0, 0);
   1237       1.90      onoe 		}
   1238       1.90      onoe 		if (sc->sc_scan_timer)
   1239       1.90      onoe 			ifp->if_timer = 1;
   1240       1.90      onoe 	}
   1241       1.84   thorpej 
   1242       1.90      onoe 	/* TODO: rate control */
   1243       1.90      onoe 	ieee80211_watchdog(ifp);
   1244       1.84   thorpej }
   1245       1.84   thorpej 
   1246  1.130.2.1     skrll STATIC int
   1247       1.90      onoe wi_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
   1248        1.1    ichiro {
   1249       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
   1250       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1251       1.90      onoe 	struct ifreq *ifr = (struct ifreq *)data;
   1252      1.125    dyoung 	int s, error = 0;
   1253        1.1    ichiro 
   1254       1.90      onoe 	if ((sc->sc_dev.dv_flags & DVF_ACTIVE) == 0)
   1255       1.90      onoe 		return ENXIO;
   1256        1.1    ichiro 
   1257      1.125    dyoung 	s = splnet();
   1258        1.1    ichiro 
   1259       1.90      onoe 	switch (cmd) {
   1260        1.1    ichiro 	case SIOCSIFFLAGS:
   1261      1.123    dyoung 		/*
   1262      1.123    dyoung 		 * Can't do promisc and hostap at the same time.  If all that's
   1263      1.123    dyoung 		 * changing is the promisc flag, try to short-circuit a call to
   1264      1.123    dyoung 		 * wi_init() by just setting PROMISC in the hardware.
   1265      1.123    dyoung 		 */
   1266        1.3    ichiro 		if (ifp->if_flags & IFF_UP) {
   1267       1.90      onoe 			if (sc->sc_enabled) {
   1268       1.90      onoe 				if (ic->ic_opmode != IEEE80211_M_HOSTAP &&
   1269       1.90      onoe 				    (ifp->if_flags & IFF_PROMISC) != 0)
   1270       1.90      onoe 					wi_write_val(sc, WI_RID_PROMISC, 1);
   1271       1.90      onoe 				else
   1272       1.90      onoe 					wi_write_val(sc, WI_RID_PROMISC, 0);
   1273       1.79   thorpej 			} else
   1274       1.90      onoe 				error = wi_init(ifp);
   1275       1.90      onoe 		} else if (sc->sc_enabled)
   1276       1.90      onoe 			wi_stop(ifp, 1);
   1277       1.90      onoe 		break;
   1278       1.90      onoe 	case SIOCSIFMEDIA:
   1279       1.90      onoe 	case SIOCGIFMEDIA:
   1280  1.130.2.1     skrll 		error = ifmedia_ioctl(ifp, ifr, &ic->ic_media, cmd);
   1281        1.1    ichiro 		break;
   1282        1.1    ichiro 	case SIOCADDMULTI:
   1283        1.1    ichiro 	case SIOCDELMULTI:
   1284       1.90      onoe 		error = (cmd == SIOCADDMULTI) ?
   1285       1.90      onoe 		    ether_addmulti(ifr, &sc->sc_ic.ic_ec) :
   1286       1.90      onoe 		    ether_delmulti(ifr, &sc->sc_ic.ic_ec);
   1287        1.1    ichiro 		if (error == ENETRESET) {
   1288  1.130.2.4     skrll 			if (ifp->if_flags & IFF_RUNNING) {
   1289       1.90      onoe 				/* do not rescan */
   1290       1.90      onoe 				error = wi_write_multi(sc);
   1291       1.90      onoe 			} else
   1292       1.90      onoe 				error = 0;
   1293        1.1    ichiro 		}
   1294        1.1    ichiro 		break;
   1295       1.90      onoe 	case SIOCGIFGENERIC:
   1296       1.90      onoe 		error = wi_get_cfg(ifp, cmd, data);
   1297        1.1    ichiro 		break;
   1298       1.90      onoe 	case SIOCSIFGENERIC:
   1299       1.90      onoe 		error = suser(curproc->p_ucred, &curproc->p_acflag);
   1300        1.1    ichiro 		if (error)
   1301        1.1    ichiro 			break;
   1302       1.90      onoe 		error = wi_set_cfg(ifp, cmd, data);
   1303       1.90      onoe 		if (error == ENETRESET) {
   1304  1.130.2.4     skrll 			if (ifp->if_flags & IFF_RUNNING)
   1305       1.90      onoe 				error = wi_init(ifp);
   1306        1.1    ichiro 			else
   1307       1.90      onoe 				error = 0;
   1308        1.1    ichiro 		}
   1309        1.1    ichiro 		break;
   1310      1.106    dyoung 	case SIOCS80211BSSID:
   1311      1.106    dyoung 		if (sc->sc_firmware_type == WI_LUCENT) {
   1312      1.106    dyoung 			error = ENODEV;
   1313      1.106    dyoung 			break;
   1314      1.106    dyoung 		}
   1315      1.106    dyoung 		/* fall through */
   1316       1.90      onoe 	default:
   1317       1.90      onoe 		error = ieee80211_ioctl(ifp, cmd, data);
   1318       1.90      onoe 		if (error == ENETRESET) {
   1319       1.49       dbj 			if (sc->sc_enabled)
   1320       1.90      onoe 				error = wi_init(ifp);
   1321       1.90      onoe 			else
   1322       1.90      onoe 				error = 0;
   1323        1.1    ichiro 		}
   1324        1.1    ichiro 		break;
   1325        1.1    ichiro 	}
   1326      1.125    dyoung 	splx(s);
   1327       1.90      onoe 	return error;
   1328        1.1    ichiro }
   1329        1.1    ichiro 
   1330  1.130.2.1     skrll STATIC int
   1331       1.90      onoe wi_media_change(struct ifnet *ifp)
   1332        1.1    ichiro {
   1333        1.1    ichiro 	struct wi_softc *sc = ifp->if_softc;
   1334       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1335  1.130.2.1     skrll 	int error;
   1336  1.130.2.1     skrll 
   1337  1.130.2.1     skrll 	error = ieee80211_media_change(ifp);
   1338       1.90      onoe 	if (error == ENETRESET) {
   1339       1.90      onoe 		if (sc->sc_enabled)
   1340       1.90      onoe 			error = wi_init(ifp);
   1341       1.90      onoe 		else
   1342       1.90      onoe 			error = 0;
   1343       1.90      onoe 	}
   1344  1.130.2.1     skrll 	ifp->if_baudrate = ifmedia_baudrate(ic->ic_media.ifm_cur->ifm_media);
   1345       1.84   thorpej 
   1346       1.91      onoe 	return error;
   1347       1.90      onoe }
   1348       1.84   thorpej 
   1349  1.130.2.1     skrll STATIC void
   1350       1.90      onoe wi_media_status(struct ifnet *ifp, struct ifmediareq *imr)
   1351       1.90      onoe {
   1352       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
   1353       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1354       1.90      onoe 	u_int16_t val;
   1355       1.90      onoe 	int rate, len;
   1356       1.84   thorpej 
   1357       1.90      onoe 	if (sc->sc_enabled == 0) {
   1358       1.90      onoe 		imr->ifm_active = IFM_IEEE80211 | IFM_NONE;
   1359       1.90      onoe 		imr->ifm_status = 0;
   1360       1.90      onoe 		return;
   1361       1.90      onoe 	}
   1362       1.84   thorpej 
   1363       1.90      onoe 	imr->ifm_status = IFM_AVALID;
   1364       1.90      onoe 	imr->ifm_active = IFM_IEEE80211;
   1365       1.98      onoe 	if (ic->ic_state == IEEE80211_S_RUN &&
   1366       1.98      onoe 	    (sc->sc_flags & WI_FLAGS_OUTRANGE) == 0)
   1367       1.90      onoe 		imr->ifm_status |= IFM_ACTIVE;
   1368       1.98      onoe 	len = sizeof(val);
   1369  1.130.2.2     skrll 	if (wi_read_rid(sc, WI_RID_CUR_TX_RATE, &val, &len) == 0 &&
   1370  1.130.2.2     skrll 	    len == sizeof(val)) {
   1371       1.98      onoe 		/* convert to 802.11 rate */
   1372  1.130.2.1     skrll 		val = le16toh(val);
   1373       1.98      onoe 		rate = val * 2;
   1374       1.98      onoe 		if (sc->sc_firmware_type == WI_LUCENT) {
   1375       1.98      onoe 			if (rate == 10)
   1376       1.98      onoe 				rate = 11;	/* 5.5Mbps */
   1377       1.98      onoe 		} else {
   1378       1.98      onoe 			if (rate == 4*2)
   1379       1.98      onoe 				rate = 11;	/* 5.5Mbps */
   1380       1.98      onoe 			else if (rate == 8*2)
   1381       1.98      onoe 				rate = 22;	/* 11Mbps */
   1382       1.90      onoe 		}
   1383  1.130.2.2     skrll 	} else
   1384  1.130.2.2     skrll 		rate = 0;
   1385  1.130.2.1     skrll 	imr->ifm_active |= ieee80211_rate2media(ic, rate, IEEE80211_MODE_11B);
   1386       1.90      onoe 	switch (ic->ic_opmode) {
   1387       1.90      onoe 	case IEEE80211_M_STA:
   1388       1.90      onoe 		break;
   1389       1.91      onoe 	case IEEE80211_M_IBSS:
   1390       1.90      onoe 		imr->ifm_active |= IFM_IEEE80211_ADHOC;
   1391       1.91      onoe 		break;
   1392       1.91      onoe 	case IEEE80211_M_AHDEMO:
   1393       1.91      onoe 		imr->ifm_active |= IFM_IEEE80211_ADHOC | IFM_FLAG0;
   1394       1.90      onoe 		break;
   1395       1.90      onoe 	case IEEE80211_M_HOSTAP:
   1396       1.90      onoe 		imr->ifm_active |= IFM_IEEE80211_HOSTAP;
   1397       1.90      onoe 		break;
   1398      1.112    dyoung 	case IEEE80211_M_MONITOR:
   1399      1.112    dyoung 		imr->ifm_active |= IFM_IEEE80211_MONITOR;
   1400      1.112    dyoung 		break;
   1401       1.90      onoe 	}
   1402       1.90      onoe }
   1403       1.84   thorpej 
   1404  1.130.2.1     skrll STATIC struct ieee80211_node *
   1405  1.130.2.1     skrll wi_node_alloc(struct ieee80211com *ic)
   1406  1.130.2.1     skrll {
   1407  1.130.2.1     skrll 	struct wi_node *wn =
   1408  1.130.2.1     skrll 	    malloc(sizeof(struct wi_node), M_DEVBUF, M_NOWAIT | M_ZERO);
   1409  1.130.2.1     skrll 	return wn ? &wn->wn_node : NULL;
   1410  1.130.2.1     skrll }
   1411  1.130.2.1     skrll 
   1412  1.130.2.1     skrll STATIC void
   1413  1.130.2.1     skrll wi_node_free(struct ieee80211com *ic, struct ieee80211_node *ni)
   1414  1.130.2.1     skrll {
   1415  1.130.2.1     skrll 	struct wi_softc *sc = ic->ic_if.if_softc;
   1416  1.130.2.1     skrll 	int i;
   1417  1.130.2.1     skrll 
   1418  1.130.2.1     skrll 	for (i = 0; i < WI_NTXRSS; i++) {
   1419  1.130.2.1     skrll 		if (sc->sc_rssd[i].rd_desc.id_node == ni)
   1420  1.130.2.1     skrll 			sc->sc_rssd[i].rd_desc.id_node = NULL;
   1421  1.130.2.1     skrll 	}
   1422  1.130.2.1     skrll 	free(ni, M_DEVBUF);
   1423  1.130.2.1     skrll }
   1424  1.130.2.1     skrll 
   1425  1.130.2.1     skrll STATIC void
   1426  1.130.2.1     skrll wi_node_copy(struct ieee80211com *ic, struct ieee80211_node *dst,
   1427  1.130.2.1     skrll     const struct ieee80211_node *src)
   1428  1.130.2.1     skrll {
   1429  1.130.2.1     skrll 	*(struct wi_node *)dst = *(const struct wi_node *)src;
   1430  1.130.2.1     skrll }
   1431  1.130.2.1     skrll 
   1432  1.130.2.1     skrll STATIC void
   1433      1.107    dyoung wi_sync_bssid(struct wi_softc *sc, u_int8_t new_bssid[IEEE80211_ADDR_LEN])
   1434      1.107    dyoung {
   1435      1.107    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1436  1.130.2.1     skrll 	struct ieee80211_node *ni = ic->ic_bss;
   1437      1.107    dyoung 	struct ifnet *ifp = &ic->ic_if;
   1438      1.107    dyoung 
   1439      1.107    dyoung 	if (IEEE80211_ADDR_EQ(new_bssid, ni->ni_bssid))
   1440      1.107    dyoung 		return;
   1441      1.107    dyoung 
   1442      1.123    dyoung 	DPRINTF(("wi_sync_bssid: bssid %s -> ", ether_sprintf(ni->ni_bssid)));
   1443      1.107    dyoung 	DPRINTF(("%s ?\n", ether_sprintf(new_bssid)));
   1444      1.107    dyoung 
   1445      1.107    dyoung 	/* In promiscuous mode, the BSSID field is not a reliable
   1446      1.107    dyoung 	 * indicator of the firmware's BSSID. Damp spurious
   1447      1.107    dyoung 	 * change-of-BSSID indications.
   1448      1.107    dyoung 	 */
   1449      1.107    dyoung 	if ((ifp->if_flags & IFF_PROMISC) != 0 &&
   1450  1.130.2.3     skrll 	    !ppsratecheck(&sc->sc_last_syn, &sc->sc_false_syns,
   1451  1.130.2.3     skrll 	                 WI_MAX_FALSE_SYNS))
   1452      1.107    dyoung 		return;
   1453      1.107    dyoung 
   1454  1.130.2.1     skrll 	ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
   1455      1.107    dyoung }
   1456      1.107    dyoung 
   1457  1.130.2.1     skrll static __inline void
   1458  1.130.2.1     skrll wi_rssadapt_input(struct ieee80211com *ic, struct ieee80211_node *ni,
   1459  1.130.2.1     skrll     struct ieee80211_frame *wh, int rssi)
   1460  1.130.2.1     skrll {
   1461  1.130.2.1     skrll 	struct wi_node *wn;
   1462  1.130.2.1     skrll 
   1463  1.130.2.1     skrll 	if (ni == NULL) {
   1464  1.130.2.1     skrll 		printf("%s: null node", __func__);
   1465  1.130.2.1     skrll 		return;
   1466  1.130.2.1     skrll 	}
   1467  1.130.2.1     skrll 
   1468  1.130.2.1     skrll 	wn = (void*)ni;
   1469  1.130.2.1     skrll 	ieee80211_rssadapt_input(ic, ni, &wn->wn_rssadapt, rssi);
   1470  1.130.2.1     skrll }
   1471  1.130.2.1     skrll 
   1472  1.130.2.1     skrll STATIC void
   1473       1.90      onoe wi_rx_intr(struct wi_softc *sc)
   1474       1.90      onoe {
   1475       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1476       1.90      onoe 	struct ifnet *ifp = &ic->ic_if;
   1477  1.130.2.1     skrll 	struct ieee80211_node *ni;
   1478       1.90      onoe 	struct wi_frame frmhdr;
   1479       1.90      onoe 	struct mbuf *m;
   1480       1.90      onoe 	struct ieee80211_frame *wh;
   1481       1.96      onoe 	int fid, len, off, rssi;
   1482      1.107    dyoung 	u_int8_t dir;
   1483       1.90      onoe 	u_int16_t status;
   1484       1.96      onoe 	u_int32_t rstamp;
   1485        1.1    ichiro 
   1486       1.90      onoe 	fid = CSR_READ_2(sc, WI_RX_FID);
   1487        1.1    ichiro 
   1488       1.90      onoe 	/* First read in the frame header */
   1489       1.90      onoe 	if (wi_read_bap(sc, fid, 0, &frmhdr, sizeof(frmhdr))) {
   1490  1.130.2.1     skrll 		printf("%s: %s read fid %x failed\n", sc->sc_dev.dv_xname,
   1491  1.130.2.1     skrll 		    __func__, fid);
   1492       1.90      onoe 		ifp->if_ierrors++;
   1493       1.90      onoe 		return;
   1494        1.1    ichiro 	}
   1495      1.120    dyoung 
   1496      1.120    dyoung 	if (IFF_DUMPPKTS(ifp))
   1497      1.120    dyoung 		wi_dump_pkt(&frmhdr, NULL, frmhdr.wi_rx_signal);
   1498        1.1    ichiro 
   1499        1.1    ichiro 	/*
   1500       1.90      onoe 	 * Drop undecryptable or packets with receive errors here
   1501        1.1    ichiro 	 */
   1502       1.90      onoe 	status = le16toh(frmhdr.wi_status);
   1503  1.130.2.1     skrll 	if ((status & WI_STAT_ERRSTAT) != 0 &&
   1504  1.130.2.1     skrll 	    ic->ic_opmode != IEEE80211_M_MONITOR) {
   1505       1.90      onoe 		ifp->if_ierrors++;
   1506       1.90      onoe 		DPRINTF(("wi_rx_intr: fid %x error status %x\n", fid, status));
   1507       1.90      onoe 		return;
   1508       1.90      onoe 	}
   1509       1.96      onoe 	rssi = frmhdr.wi_rx_signal;
   1510       1.96      onoe 	rstamp = (le16toh(frmhdr.wi_rx_tstamp0) << 16) |
   1511       1.96      onoe 	    le16toh(frmhdr.wi_rx_tstamp1);
   1512        1.1    ichiro 
   1513       1.90      onoe 	len = le16toh(frmhdr.wi_dat_len);
   1514       1.90      onoe 	off = ALIGN(sizeof(struct ieee80211_frame));
   1515        1.1    ichiro 
   1516      1.112    dyoung 	/* Sometimes the PRISM2.x returns bogusly large frames. Except
   1517      1.112    dyoung 	 * in monitor mode, just throw them away.
   1518      1.112    dyoung 	 */
   1519      1.108    dyoung 	if (off + len > MCLBYTES) {
   1520      1.112    dyoung 		if (ic->ic_opmode != IEEE80211_M_MONITOR) {
   1521      1.112    dyoung 			ifp->if_ierrors++;
   1522      1.112    dyoung 			DPRINTF(("wi_rx_intr: oversized packet\n"));
   1523      1.112    dyoung 			return;
   1524      1.112    dyoung 		} else
   1525      1.112    dyoung 			len = 0;
   1526      1.108    dyoung 	}
   1527      1.108    dyoung 
   1528       1.90      onoe 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1529       1.90      onoe 	if (m == NULL) {
   1530       1.90      onoe 		ifp->if_ierrors++;
   1531       1.90      onoe 		DPRINTF(("wi_rx_intr: MGET failed\n"));
   1532       1.90      onoe 		return;
   1533       1.90      onoe 	}
   1534       1.90      onoe 	if (off + len > MHLEN) {
   1535       1.90      onoe 		MCLGET(m, M_DONTWAIT);
   1536       1.90      onoe 		if ((m->m_flags & M_EXT) == 0) {
   1537       1.90      onoe 			m_freem(m);
   1538       1.90      onoe 			ifp->if_ierrors++;
   1539       1.90      onoe 			DPRINTF(("wi_rx_intr: MCLGET failed\n"));
   1540       1.90      onoe 			return;
   1541       1.90      onoe 		}
   1542       1.90      onoe 	}
   1543        1.1    ichiro 
   1544       1.90      onoe 	m->m_data += off - sizeof(struct ieee80211_frame);
   1545       1.90      onoe 	memcpy(m->m_data, &frmhdr.wi_whdr, sizeof(struct ieee80211_frame));
   1546       1.90      onoe 	wi_read_bap(sc, fid, sizeof(frmhdr),
   1547       1.90      onoe 	    m->m_data + sizeof(struct ieee80211_frame), len);
   1548       1.90      onoe 	m->m_pkthdr.len = m->m_len = sizeof(struct ieee80211_frame) + len;
   1549       1.90      onoe 	m->m_pkthdr.rcvif = ifp;
   1550        1.1    ichiro 
   1551       1.90      onoe #if NBPFILTER > 0
   1552       1.90      onoe 	if (sc->sc_drvbpf) {
   1553  1.130.2.1     skrll 		struct wi_rx_radiotap_header *tap = &sc->sc_rxtap;
   1554  1.130.2.1     skrll 
   1555  1.130.2.1     skrll 		tap->wr_rate = frmhdr.wi_rx_rate / 5;
   1556  1.130.2.2     skrll 		tap->wr_antsignal = frmhdr.wi_rx_signal;
   1557  1.130.2.2     skrll 		tap->wr_antnoise = frmhdr.wi_rx_silence;
   1558  1.130.2.1     skrll 		tap->wr_chan_freq = htole16(ic->ic_bss->ni_chan->ic_freq);
   1559  1.130.2.1     skrll 		tap->wr_chan_flags = htole16(ic->ic_bss->ni_chan->ic_flags);
   1560  1.130.2.1     skrll 		if (frmhdr.wi_status & WI_STAT_PCF)
   1561  1.130.2.1     skrll 			tap->wr_flags |= IEEE80211_RADIOTAP_F_CFP;
   1562        1.1    ichiro 
   1563  1.130.2.2     skrll 		bpf_mtap2(sc->sc_drvbpf, tap, tap->wr_ihdr.it_len, m);
   1564       1.90      onoe 	}
   1565       1.84   thorpej #endif
   1566       1.90      onoe 	wh = mtod(m, struct ieee80211_frame *);
   1567       1.90      onoe 	if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
   1568       1.90      onoe 		/*
   1569       1.90      onoe 		 * WEP is decrypted by hardware. Clear WEP bit
   1570       1.90      onoe 		 * header for ieee80211_input().
   1571       1.90      onoe 		 */
   1572       1.90      onoe 		wh->i_fc[1] &= ~IEEE80211_FC1_WEP;
   1573        1.1    ichiro 	}
   1574      1.107    dyoung 
   1575      1.107    dyoung 	/* synchronize driver's BSSID with firmware's BSSID */
   1576      1.107    dyoung 	dir = wh->i_fc[1] & IEEE80211_FC1_DIR_MASK;
   1577      1.107    dyoung 	if (ic->ic_opmode == IEEE80211_M_IBSS && dir == IEEE80211_FC1_DIR_NODS)
   1578      1.107    dyoung 		wi_sync_bssid(sc, wh->i_addr3);
   1579      1.107    dyoung 
   1580  1.130.2.1     skrll 	ni = ieee80211_find_rxnode(ic, wh);
   1581  1.130.2.1     skrll 
   1582  1.130.2.1     skrll 	ieee80211_input(ifp, m, ni, rssi, rstamp);
   1583  1.130.2.1     skrll 
   1584  1.130.2.1     skrll 	wi_rssadapt_input(ic, ni, wh, rssi);
   1585  1.130.2.1     skrll 
   1586  1.130.2.1     skrll 	/*
   1587  1.130.2.1     skrll 	 * The frame may have caused the node to be marked for
   1588  1.130.2.1     skrll 	 * reclamation (e.g. in response to a DEAUTH message)
   1589  1.130.2.2     skrll 	 * so use release_node here instead of unref_node.
   1590  1.130.2.1     skrll 	 */
   1591  1.130.2.2     skrll 	ieee80211_release_node(ic, ni);
   1592      1.121    dyoung }
   1593      1.121    dyoung 
   1594  1.130.2.1     skrll STATIC void
   1595      1.121    dyoung wi_tx_ex_intr(struct wi_softc *sc)
   1596      1.121    dyoung {
   1597      1.121    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1598      1.121    dyoung 	struct ifnet *ifp = &ic->ic_if;
   1599  1.130.2.1     skrll 	struct ieee80211_node *ni;
   1600  1.130.2.1     skrll 	struct ieee80211_rssdesc *id;
   1601  1.130.2.1     skrll 	struct wi_rssdesc *rssd;
   1602      1.121    dyoung 	struct wi_frame frmhdr;
   1603      1.121    dyoung 	int fid;
   1604  1.130.2.1     skrll 	u_int16_t status;
   1605      1.121    dyoung 
   1606      1.121    dyoung 	fid = CSR_READ_2(sc, WI_TX_CMP_FID);
   1607      1.121    dyoung 	/* Read in the frame header */
   1608  1.130.2.1     skrll 	if (wi_read_bap(sc, fid, 0, &frmhdr, sizeof(frmhdr)) != 0) {
   1609  1.130.2.1     skrll 		printf("%s: %s read fid %x failed\n", sc->sc_dev.dv_xname,
   1610  1.130.2.1     skrll 		    __func__, fid);
   1611  1.130.2.1     skrll 		wi_rssdescs_reset(ic, &sc->sc_rssd, &sc->sc_rssdfree,
   1612  1.130.2.1     skrll 		    &sc->sc_txpending);
   1613  1.130.2.1     skrll 		goto out;
   1614  1.130.2.1     skrll 	}
   1615      1.121    dyoung 
   1616  1.130.2.1     skrll 	if (frmhdr.wi_tx_idx >= WI_NTXRSS) {
   1617  1.130.2.1     skrll 		printf("%s: %s bad idx %02x\n",
   1618  1.130.2.1     skrll 		    sc->sc_dev.dv_xname, __func__, frmhdr.wi_tx_idx);
   1619  1.130.2.1     skrll 		wi_rssdescs_reset(ic, &sc->sc_rssd, &sc->sc_rssdfree,
   1620  1.130.2.1     skrll 		    &sc->sc_txpending);
   1621  1.130.2.1     skrll 		goto out;
   1622  1.130.2.1     skrll 	}
   1623  1.130.2.1     skrll 
   1624  1.130.2.1     skrll 	status = le16toh(frmhdr.wi_status);
   1625  1.130.2.1     skrll 
   1626  1.130.2.1     skrll 	/*
   1627  1.130.2.1     skrll 	 * Spontaneous station disconnects appear as xmit
   1628  1.130.2.1     skrll 	 * errors.  Don't announce them and/or count them
   1629  1.130.2.1     skrll 	 * as an output error.
   1630  1.130.2.1     skrll 	 */
   1631  1.130.2.1     skrll 	if (ppsratecheck(&lasttxerror, &curtxeps, wi_txerate)) {
   1632  1.130.2.1     skrll 		printf("%s: tx failed", sc->sc_dev.dv_xname);
   1633  1.130.2.1     skrll 		if (status & WI_TXSTAT_RET_ERR)
   1634  1.130.2.1     skrll 			printf(", retry limit exceeded");
   1635  1.130.2.1     skrll 		if (status & WI_TXSTAT_AGED_ERR)
   1636  1.130.2.1     skrll 			printf(", max transmit lifetime exceeded");
   1637  1.130.2.1     skrll 		if (status & WI_TXSTAT_DISCONNECT)
   1638  1.130.2.1     skrll 			printf(", port disconnected");
   1639  1.130.2.1     skrll 		if (status & WI_TXSTAT_FORM_ERR)
   1640  1.130.2.1     skrll 			printf(", invalid format (data len %u src %s)",
   1641  1.130.2.1     skrll 				le16toh(frmhdr.wi_dat_len),
   1642  1.130.2.1     skrll 				ether_sprintf(frmhdr.wi_ehdr.ether_shost));
   1643  1.130.2.1     skrll 		if (status & ~0xf)
   1644  1.130.2.1     skrll 			printf(", status=0x%x", status);
   1645  1.130.2.1     skrll 		printf("\n");
   1646  1.130.2.1     skrll 	}
   1647  1.130.2.1     skrll 	ifp->if_oerrors++;
   1648  1.130.2.1     skrll 	rssd = &sc->sc_rssd[frmhdr.wi_tx_idx];
   1649  1.130.2.1     skrll 	id = &rssd->rd_desc;
   1650  1.130.2.1     skrll 	if ((status & WI_TXSTAT_RET_ERR) != 0)
   1651  1.130.2.1     skrll 		wi_lower_rate(ic, id);
   1652  1.130.2.1     skrll 
   1653  1.130.2.1     skrll 	ni = id->id_node;
   1654  1.130.2.1     skrll 	id->id_node = NULL;
   1655  1.130.2.1     skrll 
   1656  1.130.2.1     skrll 	if (ni == NULL) {
   1657  1.130.2.1     skrll 		printf("%s: %s null node, rssdesc %02x\n",
   1658  1.130.2.1     skrll 		    sc->sc_dev.dv_xname, __func__, frmhdr.wi_tx_idx);
   1659  1.130.2.1     skrll 		goto out;
   1660  1.130.2.1     skrll 	}
   1661  1.130.2.1     skrll 
   1662  1.130.2.1     skrll 	if (sc->sc_txpending[id->id_rateidx]-- == 0) {
   1663  1.130.2.1     skrll 	        printf("%s: %s txpending[%i] wraparound", sc->sc_dev.dv_xname,
   1664  1.130.2.1     skrll 		    __func__, id->id_rateidx);
   1665  1.130.2.1     skrll 		sc->sc_txpending[id->id_rateidx] = 0;
   1666  1.130.2.1     skrll 	}
   1667  1.130.2.2     skrll 	if (ni != NULL)
   1668  1.130.2.2     skrll 		ieee80211_release_node(ic, ni);
   1669  1.130.2.1     skrll 	SLIST_INSERT_HEAD(&sc->sc_rssdfree, rssd, rd_next);
   1670  1.130.2.1     skrll out:
   1671  1.130.2.1     skrll 	ifp->if_flags &= ~IFF_OACTIVE;
   1672        1.1    ichiro }
   1673        1.1    ichiro 
   1674  1.130.2.1     skrll STATIC void
   1675  1.130.2.1     skrll wi_txalloc_intr(struct wi_softc *sc)
   1676        1.1    ichiro {
   1677       1.90      onoe 	int fid, cur;
   1678        1.1    ichiro 
   1679       1.90      onoe 	fid = CSR_READ_2(sc, WI_ALLOC_FID);
   1680       1.79   thorpej 
   1681  1.130.2.1     skrll 	cur = sc->sc_txalloc;
   1682  1.130.2.1     skrll #ifdef DIAGNOSTIC
   1683  1.130.2.1     skrll 	if (sc->sc_txstarted == 0) {
   1684  1.130.2.1     skrll 		printf("%s: spurious alloc %x != %x, alloc %d queue %d start %d alloced %d queued %d started %d\n",
   1685       1.96      onoe 		    sc->sc_dev.dv_xname, fid, sc->sc_txd[cur].d_fid, cur,
   1686  1.130.2.1     skrll 		    sc->sc_txqueue, sc->sc_txstart, sc->sc_txalloced, sc->sc_txqueued, sc->sc_txstarted);
   1687       1.84   thorpej 		return;
   1688       1.90      onoe 	}
   1689  1.130.2.1     skrll #endif
   1690  1.130.2.1     skrll 	--sc->sc_txstarted;
   1691  1.130.2.1     skrll 	++sc->sc_txalloced;
   1692  1.130.2.1     skrll 	sc->sc_txd[cur].d_fid = fid;
   1693  1.130.2.1     skrll 	sc->sc_txalloc = (cur + 1) % WI_NTXBUF;
   1694  1.130.2.1     skrll #ifdef WI_RING_DEBUG
   1695  1.130.2.1     skrll 	printf("%s: alloc %04x, alloc %d queue %d start %d alloced %d queued %d started %d\n",
   1696  1.130.2.1     skrll 	    sc->sc_dev.dv_xname, fid,
   1697  1.130.2.1     skrll 	    sc->sc_txalloc, sc->sc_txqueue, sc->sc_txstart,
   1698  1.130.2.1     skrll 	    sc->sc_txalloced, sc->sc_txqueued, sc->sc_txstarted);
   1699  1.130.2.1     skrll #endif
   1700  1.130.2.1     skrll }
   1701  1.130.2.1     skrll 
   1702  1.130.2.1     skrll STATIC void
   1703  1.130.2.1     skrll wi_cmd_intr(struct wi_softc *sc)
   1704  1.130.2.1     skrll {
   1705  1.130.2.1     skrll 	struct ieee80211com *ic = &sc->sc_ic;
   1706  1.130.2.1     skrll 	struct ifnet *ifp = &ic->ic_if;
   1707  1.130.2.1     skrll 
   1708  1.130.2.1     skrll 	if (--sc->sc_txqueued == 0) {
   1709  1.130.2.1     skrll 		sc->sc_tx_timer = 0;
   1710       1.90      onoe 		ifp->if_flags &= ~IFF_OACTIVE;
   1711  1.130.2.1     skrll #ifdef WI_RING_DEBUG
   1712  1.130.2.1     skrll 	printf("%s: cmd       , alloc %d queue %d start %d alloced %d queued %d started %d\n",
   1713  1.130.2.1     skrll 	    sc->sc_dev.dv_xname,
   1714  1.130.2.1     skrll 	    sc->sc_txalloc, sc->sc_txqueue, sc->sc_txstart,
   1715  1.130.2.1     skrll 	    sc->sc_txalloced, sc->sc_txqueued, sc->sc_txstarted);
   1716  1.130.2.1     skrll #endif
   1717  1.130.2.1     skrll 	} else
   1718  1.130.2.1     skrll 		wi_push_packet(sc);
   1719  1.130.2.1     skrll }
   1720  1.130.2.1     skrll 
   1721  1.130.2.1     skrll STATIC void
   1722  1.130.2.1     skrll wi_push_packet(struct wi_softc *sc)
   1723  1.130.2.1     skrll {
   1724  1.130.2.1     skrll 	struct ieee80211com *ic = &sc->sc_ic;
   1725  1.130.2.1     skrll 	struct ifnet *ifp = &ic->ic_if;
   1726  1.130.2.1     skrll 	int cur, fid;
   1727  1.130.2.1     skrll 
   1728  1.130.2.1     skrll 	cur = sc->sc_txstart;
   1729  1.130.2.1     skrll 	fid = sc->sc_txd[cur].d_fid;
   1730  1.130.2.1     skrll 	if (wi_sendcmd(sc, WI_CMD_TX | WI_RECLAIM, fid)) {
   1731  1.130.2.1     skrll 		printf("%s: xmit failed\n", sc->sc_dev.dv_xname);
   1732  1.130.2.1     skrll 		/* XXX ring might have a hole */
   1733  1.130.2.1     skrll 	}
   1734  1.130.2.1     skrll 	++sc->sc_txstarted;
   1735  1.130.2.1     skrll #ifdef DIAGNOSTIC
   1736  1.130.2.1     skrll 	if (sc->sc_txstarted > WI_NTXBUF)
   1737  1.130.2.1     skrll 		printf("%s: too many buffers started\n", sc->sc_dev.dv_xname);
   1738  1.130.2.1     skrll #endif
   1739  1.130.2.1     skrll 	sc->sc_txstart = (cur + 1) % WI_NTXBUF;
   1740  1.130.2.1     skrll 	sc->sc_tx_timer = 5;
   1741  1.130.2.1     skrll 	ifp->if_timer = 1;
   1742  1.130.2.1     skrll #ifdef WI_RING_DEBUG
   1743  1.130.2.1     skrll 	printf("%s: push  %04x, alloc %d queue %d start %d alloced %d queued %d started %d\n",
   1744  1.130.2.1     skrll 	    sc->sc_dev.dv_xname, fid,
   1745  1.130.2.1     skrll 	    sc->sc_txalloc, sc->sc_txqueue, sc->sc_txstart,
   1746  1.130.2.1     skrll 	    sc->sc_txalloced, sc->sc_txqueued, sc->sc_txstarted);
   1747  1.130.2.1     skrll #endif
   1748        1.1    ichiro }
   1749        1.1    ichiro 
   1750  1.130.2.1     skrll STATIC void
   1751  1.130.2.1     skrll wi_tx_intr(struct wi_softc *sc)
   1752  1.130.2.1     skrll {
   1753  1.130.2.1     skrll 	struct ieee80211com *ic = &sc->sc_ic;
   1754  1.130.2.1     skrll 	struct ifnet *ifp = &ic->ic_if;
   1755  1.130.2.1     skrll 	struct ieee80211_node *ni;
   1756  1.130.2.1     skrll 	struct ieee80211_rssdesc *id;
   1757  1.130.2.1     skrll 	struct wi_rssdesc *rssd;
   1758  1.130.2.1     skrll 	struct wi_frame frmhdr;
   1759  1.130.2.1     skrll 	int fid;
   1760  1.130.2.1     skrll 
   1761  1.130.2.1     skrll 	fid = CSR_READ_2(sc, WI_TX_CMP_FID);
   1762  1.130.2.1     skrll 	/* Read in the frame header */
   1763  1.130.2.1     skrll 	if (wi_read_bap(sc, fid, 8, &frmhdr.wi_rx_rate, 2) != 0) {
   1764  1.130.2.1     skrll 		printf("%s: %s read fid %x failed\n", sc->sc_dev.dv_xname,
   1765  1.130.2.1     skrll 		    __func__, fid);
   1766  1.130.2.1     skrll 		wi_rssdescs_reset(ic, &sc->sc_rssd, &sc->sc_rssdfree,
   1767  1.130.2.1     skrll 		    &sc->sc_txpending);
   1768  1.130.2.1     skrll 		goto out;
   1769  1.130.2.1     skrll 	}
   1770  1.130.2.1     skrll 
   1771  1.130.2.1     skrll 	if (frmhdr.wi_tx_idx >= WI_NTXRSS) {
   1772  1.130.2.1     skrll 		printf("%s: %s bad idx %02x\n",
   1773  1.130.2.1     skrll 		    sc->sc_dev.dv_xname, __func__, frmhdr.wi_tx_idx);
   1774  1.130.2.1     skrll 		wi_rssdescs_reset(ic, &sc->sc_rssd, &sc->sc_rssdfree,
   1775  1.130.2.1     skrll 		    &sc->sc_txpending);
   1776  1.130.2.1     skrll 		goto out;
   1777  1.130.2.1     skrll 	}
   1778  1.130.2.1     skrll 
   1779  1.130.2.1     skrll 	rssd = &sc->sc_rssd[frmhdr.wi_tx_idx];
   1780  1.130.2.1     skrll 	id = &rssd->rd_desc;
   1781  1.130.2.1     skrll 	wi_raise_rate(ic, id);
   1782  1.130.2.1     skrll 
   1783  1.130.2.1     skrll 	ni = id->id_node;
   1784  1.130.2.1     skrll 	id->id_node = NULL;
   1785  1.130.2.1     skrll 
   1786  1.130.2.1     skrll 	if (ni == NULL) {
   1787  1.130.2.1     skrll 		printf("%s: %s null node, rssdesc %02x\n",
   1788  1.130.2.1     skrll 		    sc->sc_dev.dv_xname, __func__, frmhdr.wi_tx_idx);
   1789  1.130.2.1     skrll 		goto out;
   1790  1.130.2.1     skrll 	}
   1791  1.130.2.1     skrll 
   1792  1.130.2.1     skrll 	if (sc->sc_txpending[id->id_rateidx]-- == 0) {
   1793  1.130.2.1     skrll 	        printf("%s: %s txpending[%i] wraparound", sc->sc_dev.dv_xname,
   1794  1.130.2.1     skrll 		    __func__, id->id_rateidx);
   1795  1.130.2.1     skrll 		sc->sc_txpending[id->id_rateidx] = 0;
   1796  1.130.2.1     skrll 	}
   1797  1.130.2.2     skrll 	if (ni != NULL)
   1798  1.130.2.2     skrll 		ieee80211_release_node(ic, ni);
   1799  1.130.2.1     skrll 	SLIST_INSERT_HEAD(&sc->sc_rssdfree, rssd, rd_next);
   1800  1.130.2.1     skrll out:
   1801  1.130.2.1     skrll 	ifp->if_flags &= ~IFF_OACTIVE;
   1802  1.130.2.1     skrll }
   1803  1.130.2.1     skrll 
   1804  1.130.2.1     skrll STATIC void
   1805       1.90      onoe wi_info_intr(struct wi_softc *sc)
   1806        1.1    ichiro {
   1807       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   1808       1.90      onoe 	struct ifnet *ifp = &ic->ic_if;
   1809       1.90      onoe 	int i, fid, len, off;
   1810       1.90      onoe 	u_int16_t ltbuf[2];
   1811       1.90      onoe 	u_int16_t stat;
   1812       1.90      onoe 	u_int32_t *ptr;
   1813       1.90      onoe 
   1814       1.90      onoe 	fid = CSR_READ_2(sc, WI_INFO_FID);
   1815       1.90      onoe 	wi_read_bap(sc, fid, 0, ltbuf, sizeof(ltbuf));
   1816       1.90      onoe 
   1817       1.90      onoe 	switch (le16toh(ltbuf[1])) {
   1818       1.90      onoe 
   1819       1.90      onoe 	case WI_INFO_LINK_STAT:
   1820       1.90      onoe 		wi_read_bap(sc, fid, sizeof(ltbuf), &stat, sizeof(stat));
   1821       1.90      onoe 		DPRINTF(("wi_info_intr: LINK_STAT 0x%x\n", le16toh(stat)));
   1822       1.90      onoe 		switch (le16toh(stat)) {
   1823       1.90      onoe 		case CONNECTED:
   1824       1.98      onoe 			sc->sc_flags &= ~WI_FLAGS_OUTRANGE;
   1825       1.99      onoe 			if (ic->ic_state == IEEE80211_S_RUN &&
   1826       1.99      onoe 			    ic->ic_opmode != IEEE80211_M_IBSS)
   1827       1.90      onoe 				break;
   1828       1.90      onoe 			/* FALLTHROUGH */
   1829       1.90      onoe 		case AP_CHANGE:
   1830  1.130.2.1     skrll 			ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
   1831       1.94      onoe 			break;
   1832       1.90      onoe 		case AP_IN_RANGE:
   1833       1.98      onoe 			sc->sc_flags &= ~WI_FLAGS_OUTRANGE;
   1834       1.90      onoe 			break;
   1835       1.90      onoe 		case AP_OUT_OF_RANGE:
   1836       1.90      onoe 			if (sc->sc_firmware_type == WI_SYMBOL &&
   1837       1.90      onoe 			    sc->sc_scan_timer > 0) {
   1838       1.90      onoe 				if (wi_cmd(sc, WI_CMD_INQUIRE,
   1839       1.90      onoe 				    WI_INFO_HOST_SCAN_RESULTS, 0, 0) != 0)
   1840       1.90      onoe 					sc->sc_scan_timer = 0;
   1841       1.90      onoe 				break;
   1842       1.90      onoe 			}
   1843       1.98      onoe 			if (ic->ic_opmode == IEEE80211_M_STA)
   1844       1.98      onoe 				sc->sc_flags |= WI_FLAGS_OUTRANGE;
   1845       1.98      onoe 			break;
   1846       1.90      onoe 		case DISCONNECTED:
   1847       1.90      onoe 		case ASSOC_FAILED:
   1848       1.91      onoe 			if (ic->ic_opmode == IEEE80211_M_STA)
   1849  1.130.2.1     skrll 				ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
   1850       1.90      onoe 			break;
   1851       1.90      onoe 		}
   1852       1.90      onoe 		break;
   1853        1.1    ichiro 
   1854       1.90      onoe 	case WI_INFO_COUNTERS:
   1855       1.90      onoe 		/* some card versions have a larger stats structure */
   1856       1.90      onoe 		len = min(le16toh(ltbuf[0]) - 1, sizeof(sc->sc_stats) / 4);
   1857       1.90      onoe 		ptr = (u_int32_t *)&sc->sc_stats;
   1858       1.90      onoe 		off = sizeof(ltbuf);
   1859       1.90      onoe 		for (i = 0; i < len; i++, off += 2, ptr++) {
   1860       1.90      onoe 			wi_read_bap(sc, fid, off, &stat, sizeof(stat));
   1861  1.130.2.1     skrll 			stat = le16toh(stat);
   1862       1.90      onoe #ifdef WI_HERMES_STATS_WAR
   1863       1.90      onoe 			if (stat & 0xf000)
   1864       1.90      onoe 				stat = ~stat;
   1865       1.90      onoe #endif
   1866       1.90      onoe 			*ptr += stat;
   1867       1.90      onoe 		}
   1868       1.90      onoe 		ifp->if_collisions = sc->sc_stats.wi_tx_single_retries +
   1869       1.90      onoe 		    sc->sc_stats.wi_tx_multi_retries +
   1870       1.90      onoe 		    sc->sc_stats.wi_tx_retry_limit;
   1871       1.90      onoe 		break;
   1872        1.1    ichiro 
   1873       1.90      onoe 	case WI_INFO_SCAN_RESULTS:
   1874       1.90      onoe 	case WI_INFO_HOST_SCAN_RESULTS:
   1875       1.90      onoe 		wi_scan_result(sc, fid, le16toh(ltbuf[0]));
   1876       1.90      onoe 		break;
   1877        1.1    ichiro 
   1878       1.90      onoe 	default:
   1879       1.90      onoe 		DPRINTF(("wi_info_intr: got fid %x type %x len %d\n", fid,
   1880       1.90      onoe 		    le16toh(ltbuf[1]), le16toh(ltbuf[0])));
   1881       1.90      onoe 		break;
   1882       1.90      onoe 	}
   1883        1.1    ichiro }
   1884        1.1    ichiro 
   1885  1.130.2.1     skrll STATIC int
   1886       1.90      onoe wi_write_multi(struct wi_softc *sc)
   1887        1.1    ichiro {
   1888       1.90      onoe 	struct ifnet *ifp = &sc->sc_ic.ic_if;
   1889      1.123    dyoung 	int n;
   1890       1.90      onoe 	struct wi_mcast mlist;
   1891       1.90      onoe 	struct ether_multi *enm;
   1892       1.90      onoe 	struct ether_multistep estep;
   1893        1.1    ichiro 
   1894      1.129    dyoung 	if ((ifp->if_flags & IFF_PROMISC) != 0) {
   1895       1.90      onoe allmulti:
   1896       1.90      onoe 		ifp->if_flags |= IFF_ALLMULTI;
   1897       1.90      onoe 		memset(&mlist, 0, sizeof(mlist));
   1898       1.90      onoe 		return wi_write_rid(sc, WI_RID_MCAST_LIST, &mlist,
   1899       1.90      onoe 		    sizeof(mlist));
   1900       1.11    tsubai 	}
   1901       1.84   thorpej 
   1902       1.90      onoe 	n = 0;
   1903       1.90      onoe 	ETHER_FIRST_MULTI(estep, &sc->sc_ic.ic_ec, enm);
   1904       1.90      onoe 	while (enm != NULL) {
   1905       1.90      onoe 		/* Punt on ranges or too many multicast addresses. */
   1906       1.90      onoe 		if (!IEEE80211_ADDR_EQ(enm->enm_addrlo, enm->enm_addrhi) ||
   1907       1.90      onoe 		    n >= sizeof(mlist) / sizeof(mlist.wi_mcast[0]))
   1908       1.90      onoe 			goto allmulti;
   1909        1.1    ichiro 
   1910       1.90      onoe 		IEEE80211_ADDR_COPY(&mlist.wi_mcast[n], enm->enm_addrlo);
   1911       1.90      onoe 		n++;
   1912       1.90      onoe 		ETHER_NEXT_MULTI(estep, enm);
   1913        1.1    ichiro 	}
   1914       1.90      onoe 	ifp->if_flags &= ~IFF_ALLMULTI;
   1915       1.90      onoe 	return wi_write_rid(sc, WI_RID_MCAST_LIST, &mlist,
   1916       1.90      onoe 	    IEEE80211_ADDR_LEN * n);
   1917        1.1    ichiro }
   1918        1.1    ichiro 
   1919       1.90      onoe 
   1920  1.130.2.1     skrll STATIC void
   1921      1.123    dyoung wi_read_nicid(struct wi_softc *sc)
   1922        1.4    ichiro {
   1923       1.90      onoe 	struct wi_card_ident *id;
   1924       1.90      onoe 	char *p;
   1925       1.90      onoe 	int len;
   1926       1.90      onoe 	u_int16_t ver[4];
   1927        1.4    ichiro 
   1928        1.6    ichiro 	/* getting chip identity */
   1929       1.90      onoe 	memset(ver, 0, sizeof(ver));
   1930       1.90      onoe 	len = sizeof(ver);
   1931       1.90      onoe 	wi_read_rid(sc, WI_RID_CARD_ID, ver, &len);
   1932        1.9    ichiro 	printf("%s: using ", sc->sc_dev.dv_xname);
   1933       1.90      onoe DPRINTF2(("wi_read_nicid: CARD_ID: %x %x %x %x\n", le16toh(ver[0]), le16toh(ver[1]), le16toh(ver[2]), le16toh(ver[3])));
   1934       1.64    ichiro 
   1935       1.67    ichiro 	sc->sc_firmware_type = WI_NOTYPE;
   1936       1.64    ichiro 	for (id = wi_card_ident; id->card_name != NULL; id++) {
   1937       1.90      onoe 		if (le16toh(ver[0]) == id->card_id) {
   1938       1.64    ichiro 			printf("%s", id->card_name);
   1939       1.64    ichiro 			sc->sc_firmware_type = id->firm_type;
   1940       1.64    ichiro 			break;
   1941       1.64    ichiro 		}
   1942       1.64    ichiro 	}
   1943       1.67    ichiro 	if (sc->sc_firmware_type == WI_NOTYPE) {
   1944       1.90      onoe 		if (le16toh(ver[0]) & 0x8000) {
   1945       1.56      onoe 			printf("Unknown PRISM2 chip");
   1946       1.56      onoe 			sc->sc_firmware_type = WI_INTERSIL;
   1947       1.56      onoe 		} else {
   1948       1.56      onoe 			printf("Unknown Lucent chip");
   1949       1.56      onoe 			sc->sc_firmware_type = WI_LUCENT;
   1950       1.56      onoe 		}
   1951        1.4    ichiro 	}
   1952        1.6    ichiro 
   1953       1.67    ichiro 	/* get primary firmware version (Only Prism chips) */
   1954       1.68    ichiro 	if (sc->sc_firmware_type != WI_LUCENT) {
   1955       1.90      onoe 		memset(ver, 0, sizeof(ver));
   1956       1.90      onoe 		len = sizeof(ver);
   1957       1.90      onoe 		wi_read_rid(sc, WI_RID_PRI_IDENTITY, ver, &len);
   1958       1.90      onoe 		sc->sc_pri_firmware_ver = le16toh(ver[2]) * 10000 +
   1959       1.90      onoe 		    le16toh(ver[3]) * 100 + le16toh(ver[1]);
   1960       1.67    ichiro 	}
   1961       1.58    ichiro 
   1962       1.57    ichiro 	/* get station firmware version */
   1963       1.90      onoe 	memset(ver, 0, sizeof(ver));
   1964       1.90      onoe 	len = sizeof(ver);
   1965       1.90      onoe 	wi_read_rid(sc, WI_RID_STA_IDENTITY, ver, &len);
   1966       1.90      onoe 	sc->sc_sta_firmware_ver = le16toh(ver[2]) * 10000 +
   1967       1.90      onoe 	    le16toh(ver[3]) * 100 + le16toh(ver[1]);
   1968       1.56      onoe 	if (sc->sc_firmware_type == WI_INTERSIL &&
   1969       1.90      onoe 	    (sc->sc_sta_firmware_ver == 10102 ||
   1970       1.90      onoe 	     sc->sc_sta_firmware_ver == 20102)) {
   1971       1.90      onoe 		char ident[12];
   1972       1.90      onoe 		memset(ident, 0, sizeof(ident));
   1973       1.90      onoe 		len = sizeof(ident);
   1974       1.70      onoe 		/* value should be the format like "V2.00-11" */
   1975       1.90      onoe 		if (wi_read_rid(sc, WI_RID_SYMBOL_IDENTITY, ident, &len) == 0 &&
   1976       1.90      onoe 		    *(p = (char *)ident) >= 'A' &&
   1977       1.56      onoe 		    p[2] == '.' && p[5] == '-' && p[8] == '\0') {
   1978       1.56      onoe 			sc->sc_firmware_type = WI_SYMBOL;
   1979       1.58    ichiro 			sc->sc_sta_firmware_ver = (p[1] - '0') * 10000 +
   1980       1.56      onoe 			    (p[3] - '0') * 1000 + (p[4] - '0') * 100 +
   1981       1.56      onoe 			    (p[6] - '0') * 10 + (p[7] - '0');
   1982       1.56      onoe 		}
   1983       1.56      onoe 	}
   1984       1.58    ichiro 
   1985       1.69  augustss 	printf("\n%s: %s Firmware: ", sc->sc_dev.dv_xname,
   1986       1.58    ichiro 	     sc->sc_firmware_type == WI_LUCENT ? "Lucent" :
   1987       1.58    ichiro 	    (sc->sc_firmware_type == WI_SYMBOL ? "Symbol" : "Intersil"));
   1988       1.58    ichiro 	if (sc->sc_firmware_type != WI_LUCENT)	/* XXX */
   1989       1.90      onoe 		printf("Primary (%u.%u.%u), ",
   1990       1.90      onoe 		    sc->sc_pri_firmware_ver / 10000,
   1991       1.58    ichiro 		    (sc->sc_pri_firmware_ver % 10000) / 100,
   1992       1.58    ichiro 		    sc->sc_pri_firmware_ver % 100);
   1993       1.58    ichiro 	printf("Station (%u.%u.%u)\n",
   1994       1.90      onoe 	    sc->sc_sta_firmware_ver / 10000,
   1995       1.90      onoe 	    (sc->sc_sta_firmware_ver % 10000) / 100,
   1996       1.58    ichiro 	    sc->sc_sta_firmware_ver % 100);
   1997       1.90      onoe }
   1998        1.6    ichiro 
   1999  1.130.2.1     skrll STATIC int
   2000       1.90      onoe wi_write_ssid(struct wi_softc *sc, int rid, u_int8_t *buf, int buflen)
   2001       1.90      onoe {
   2002       1.90      onoe 	struct wi_ssid ssid;
   2003       1.90      onoe 
   2004       1.90      onoe 	if (buflen > IEEE80211_NWID_LEN)
   2005       1.90      onoe 		return ENOBUFS;
   2006       1.95      onoe 	memset(&ssid, 0, sizeof(ssid));
   2007       1.90      onoe 	ssid.wi_len = htole16(buflen);
   2008       1.90      onoe 	memcpy(ssid.wi_ssid, buf, buflen);
   2009       1.95      onoe 	return wi_write_rid(sc, rid, &ssid, sizeof(ssid));
   2010        1.4    ichiro }
   2011        1.4    ichiro 
   2012  1.130.2.1     skrll STATIC int
   2013       1.90      onoe wi_get_cfg(struct ifnet *ifp, u_long cmd, caddr_t data)
   2014        1.1    ichiro {
   2015       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
   2016       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   2017       1.90      onoe 	struct ifreq *ifr = (struct ifreq *)data;
   2018       1.90      onoe 	struct wi_req wreq;
   2019       1.90      onoe 	int len, n, error;
   2020       1.90      onoe 
   2021       1.90      onoe 	error = copyin(ifr->ifr_data, &wreq, sizeof(wreq));
   2022       1.90      onoe 	if (error)
   2023       1.90      onoe 		return error;
   2024       1.90      onoe 	len = (wreq.wi_len - 1) * 2;
   2025       1.90      onoe 	if (len < sizeof(u_int16_t))
   2026       1.90      onoe 		return ENOSPC;
   2027       1.90      onoe 	if (len > sizeof(wreq.wi_val))
   2028       1.90      onoe 		len = sizeof(wreq.wi_val);
   2029       1.90      onoe 
   2030       1.90      onoe 	switch (wreq.wi_type) {
   2031       1.90      onoe 
   2032       1.90      onoe 	case WI_RID_IFACE_STATS:
   2033       1.90      onoe 		memcpy(wreq.wi_val, &sc->sc_stats, sizeof(sc->sc_stats));
   2034       1.90      onoe 		if (len < sizeof(sc->sc_stats))
   2035       1.90      onoe 			error = ENOSPC;
   2036       1.90      onoe 		else
   2037       1.90      onoe 			len = sizeof(sc->sc_stats);
   2038       1.90      onoe 		break;
   2039       1.90      onoe 
   2040       1.90      onoe 	case WI_RID_ENCRYPTION:
   2041       1.90      onoe 	case WI_RID_TX_CRYPT_KEY:
   2042       1.90      onoe 	case WI_RID_DEFLT_CRYPT_KEYS:
   2043      1.103    dyoung 	case WI_RID_TX_RATE:
   2044       1.90      onoe 		return ieee80211_cfgget(ifp, cmd, data);
   2045       1.90      onoe 
   2046       1.90      onoe 	case WI_RID_MICROWAVE_OVEN:
   2047       1.90      onoe 		if (sc->sc_enabled && (sc->sc_flags & WI_FLAGS_HAS_MOR)) {
   2048       1.90      onoe 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2049       1.90      onoe 			    &len);
   2050       1.90      onoe 			break;
   2051       1.90      onoe 		}
   2052       1.90      onoe 		wreq.wi_val[0] = htole16(sc->sc_microwave_oven);
   2053       1.90      onoe 		len = sizeof(u_int16_t);
   2054       1.90      onoe 		break;
   2055        1.1    ichiro 
   2056      1.105    dyoung 	case WI_RID_DBM_ADJUST:
   2057      1.105    dyoung 		if (sc->sc_enabled && (sc->sc_flags & WI_FLAGS_HAS_DBMADJUST)) {
   2058      1.105    dyoung 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2059      1.105    dyoung 			    &len);
   2060      1.105    dyoung 			break;
   2061      1.105    dyoung 		}
   2062  1.130.2.1     skrll 		wreq.wi_val[0] = htole16(sc->sc_dbm_offset);
   2063      1.105    dyoung 		len = sizeof(u_int16_t);
   2064      1.105    dyoung 		break;
   2065      1.105    dyoung 
   2066       1.90      onoe 	case WI_RID_ROAMING_MODE:
   2067       1.90      onoe 		if (sc->sc_enabled && (sc->sc_flags & WI_FLAGS_HAS_ROAMING)) {
   2068       1.90      onoe 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2069       1.90      onoe 			    &len);
   2070       1.90      onoe 			break;
   2071       1.90      onoe 		}
   2072       1.90      onoe 		wreq.wi_val[0] = htole16(sc->sc_roaming_mode);
   2073       1.90      onoe 		len = sizeof(u_int16_t);
   2074       1.90      onoe 		break;
   2075        1.1    ichiro 
   2076       1.90      onoe 	case WI_RID_SYSTEM_SCALE:
   2077       1.90      onoe 		if (sc->sc_enabled && (sc->sc_flags & WI_FLAGS_HAS_SYSSCALE)) {
   2078       1.90      onoe 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2079       1.90      onoe 			    &len);
   2080       1.90      onoe 			break;
   2081       1.90      onoe 		}
   2082       1.90      onoe 		wreq.wi_val[0] = htole16(sc->sc_system_scale);
   2083       1.90      onoe 		len = sizeof(u_int16_t);
   2084       1.90      onoe 		break;
   2085        1.1    ichiro 
   2086      1.104    dyoung 	case WI_RID_FRAG_THRESH:
   2087      1.104    dyoung 		if (sc->sc_enabled && (sc->sc_flags & WI_FLAGS_HAS_FRAGTHR)) {
   2088      1.104    dyoung 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2089      1.104    dyoung 			    &len);
   2090      1.104    dyoung 			break;
   2091      1.104    dyoung 		}
   2092      1.104    dyoung 		wreq.wi_val[0] = htole16(sc->sc_frag_thresh);
   2093      1.104    dyoung 		len = sizeof(u_int16_t);
   2094      1.104    dyoung 		break;
   2095      1.104    dyoung 
   2096       1.90      onoe 	case WI_RID_READ_APS:
   2097       1.90      onoe 		if (ic->ic_opmode == IEEE80211_M_HOSTAP)
   2098       1.90      onoe 			return ieee80211_cfgget(ifp, cmd, data);
   2099       1.90      onoe 		if (sc->sc_scan_timer > 0) {
   2100       1.90      onoe 			error = EINPROGRESS;
   2101       1.90      onoe 			break;
   2102       1.90      onoe 		}
   2103       1.90      onoe 		n = sc->sc_naps;
   2104       1.90      onoe 		if (len < sizeof(n)) {
   2105       1.90      onoe 			error = ENOSPC;
   2106       1.90      onoe 			break;
   2107       1.90      onoe 		}
   2108       1.90      onoe 		if (len < sizeof(n) + sizeof(struct wi_apinfo) * n)
   2109       1.90      onoe 			n = (len - sizeof(n)) / sizeof(struct wi_apinfo);
   2110       1.90      onoe 		len = sizeof(n) + sizeof(struct wi_apinfo) * n;
   2111       1.90      onoe 		memcpy(wreq.wi_val, &n, sizeof(n));
   2112       1.90      onoe 		memcpy((caddr_t)wreq.wi_val + sizeof(n), sc->sc_aps,
   2113       1.90      onoe 		    sizeof(struct wi_apinfo) * n);
   2114       1.90      onoe 		break;
   2115        1.1    ichiro 
   2116       1.90      onoe 	default:
   2117       1.90      onoe 		if (sc->sc_enabled) {
   2118       1.90      onoe 			error = wi_read_rid(sc, wreq.wi_type, wreq.wi_val,
   2119       1.90      onoe 			    &len);
   2120       1.90      onoe 			break;
   2121       1.90      onoe 		}
   2122       1.90      onoe 		switch (wreq.wi_type) {
   2123       1.90      onoe 		case WI_RID_MAX_DATALEN:
   2124       1.90      onoe 			wreq.wi_val[0] = htole16(sc->sc_max_datalen);
   2125      1.110    dyoung 			len = sizeof(u_int16_t);
   2126      1.110    dyoung 			break;
   2127      1.110    dyoung 		case WI_RID_FRAG_THRESH:
   2128      1.110    dyoung 			wreq.wi_val[0] = htole16(sc->sc_frag_thresh);
   2129       1.90      onoe 			len = sizeof(u_int16_t);
   2130       1.90      onoe 			break;
   2131       1.90      onoe 		case WI_RID_RTS_THRESH:
   2132       1.90      onoe 			wreq.wi_val[0] = htole16(sc->sc_rts_thresh);
   2133       1.90      onoe 			len = sizeof(u_int16_t);
   2134       1.90      onoe 			break;
   2135       1.90      onoe 		case WI_RID_CNFAUTHMODE:
   2136       1.90      onoe 			wreq.wi_val[0] = htole16(sc->sc_cnfauthmode);
   2137       1.90      onoe 			len = sizeof(u_int16_t);
   2138       1.90      onoe 			break;
   2139       1.90      onoe 		case WI_RID_NODENAME:
   2140       1.90      onoe 			if (len < sc->sc_nodelen + sizeof(u_int16_t)) {
   2141       1.90      onoe 				error = ENOSPC;
   2142       1.90      onoe 				break;
   2143       1.90      onoe 			}
   2144       1.90      onoe 			len = sc->sc_nodelen + sizeof(u_int16_t);
   2145       1.90      onoe 			wreq.wi_val[0] = htole16((sc->sc_nodelen + 1) / 2);
   2146       1.90      onoe 			memcpy(&wreq.wi_val[1], sc->sc_nodename,
   2147       1.90      onoe 			    sc->sc_nodelen);
   2148       1.90      onoe 			break;
   2149       1.90      onoe 		default:
   2150       1.90      onoe 			return ieee80211_cfgget(ifp, cmd, data);
   2151       1.90      onoe 		}
   2152       1.90      onoe 		break;
   2153        1.1    ichiro 	}
   2154       1.90      onoe 	if (error)
   2155       1.90      onoe 		return error;
   2156       1.90      onoe 	wreq.wi_len = (len + 1) / 2 + 1;
   2157       1.90      onoe 	return copyout(&wreq, ifr->ifr_data, (wreq.wi_len + 1) * 2);
   2158        1.1    ichiro }
   2159        1.1    ichiro 
   2160  1.130.2.1     skrll STATIC int
   2161       1.90      onoe wi_set_cfg(struct ifnet *ifp, u_long cmd, caddr_t data)
   2162       1.90      onoe {
   2163       1.90      onoe 	struct wi_softc *sc = ifp->if_softc;
   2164       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   2165       1.90      onoe 	struct ifreq *ifr = (struct ifreq *)data;
   2166  1.130.2.1     skrll 	struct ieee80211_rateset *rs = &ic->ic_sup_rates[IEEE80211_MODE_11B];
   2167       1.90      onoe 	struct wi_req wreq;
   2168       1.90      onoe 	struct mbuf *m;
   2169       1.90      onoe 	int i, len, error;
   2170       1.90      onoe 
   2171       1.90      onoe 	error = copyin(ifr->ifr_data, &wreq, sizeof(wreq));
   2172       1.90      onoe 	if (error)
   2173       1.90      onoe 		return error;
   2174       1.90      onoe 	len = (wreq.wi_len - 1) * 2;
   2175       1.90      onoe 	switch (wreq.wi_type) {
   2176      1.105    dyoung 	case WI_RID_DBM_ADJUST:
   2177      1.105    dyoung 		return ENODEV;
   2178      1.105    dyoung 
   2179       1.90      onoe 	case WI_RID_NODENAME:
   2180       1.90      onoe 		if (le16toh(wreq.wi_val[0]) * 2 > len ||
   2181       1.90      onoe 		    le16toh(wreq.wi_val[0]) > sizeof(sc->sc_nodename)) {
   2182       1.90      onoe 			error = ENOSPC;
   2183       1.90      onoe 			break;
   2184       1.90      onoe 		}
   2185       1.90      onoe 		if (sc->sc_enabled) {
   2186       1.90      onoe 			error = wi_write_rid(sc, wreq.wi_type, wreq.wi_val,
   2187       1.90      onoe 			    len);
   2188       1.90      onoe 			if (error)
   2189       1.90      onoe 				break;
   2190       1.90      onoe 		}
   2191       1.90      onoe 		sc->sc_nodelen = le16toh(wreq.wi_val[0]) * 2;
   2192       1.90      onoe 		memcpy(sc->sc_nodename, &wreq.wi_val[1], sc->sc_nodelen);
   2193       1.90      onoe 		break;
   2194       1.91      onoe 
   2195       1.90      onoe 	case WI_RID_MICROWAVE_OVEN:
   2196       1.90      onoe 	case WI_RID_ROAMING_MODE:
   2197       1.90      onoe 	case WI_RID_SYSTEM_SCALE:
   2198      1.104    dyoung 	case WI_RID_FRAG_THRESH:
   2199       1.90      onoe 		if (wreq.wi_type == WI_RID_MICROWAVE_OVEN &&
   2200       1.90      onoe 		    (sc->sc_flags & WI_FLAGS_HAS_MOR) == 0)
   2201       1.90      onoe 			break;
   2202       1.90      onoe 		if (wreq.wi_type == WI_RID_ROAMING_MODE &&
   2203       1.90      onoe 		    (sc->sc_flags & WI_FLAGS_HAS_ROAMING) == 0)
   2204       1.90      onoe 			break;
   2205       1.90      onoe 		if (wreq.wi_type == WI_RID_SYSTEM_SCALE &&
   2206       1.90      onoe 		    (sc->sc_flags & WI_FLAGS_HAS_SYSSCALE) == 0)
   2207       1.90      onoe 			break;
   2208      1.104    dyoung 		if (wreq.wi_type == WI_RID_FRAG_THRESH &&
   2209      1.104    dyoung 		    (sc->sc_flags & WI_FLAGS_HAS_FRAGTHR) == 0)
   2210      1.104    dyoung 			break;
   2211       1.90      onoe 		/* FALLTHROUGH */
   2212       1.90      onoe 	case WI_RID_RTS_THRESH:
   2213       1.90      onoe 	case WI_RID_CNFAUTHMODE:
   2214       1.90      onoe 	case WI_RID_MAX_DATALEN:
   2215       1.90      onoe 		if (sc->sc_enabled) {
   2216       1.90      onoe 			error = wi_write_rid(sc, wreq.wi_type, wreq.wi_val,
   2217       1.90      onoe 			    sizeof(u_int16_t));
   2218       1.90      onoe 			if (error)
   2219       1.90      onoe 				break;
   2220       1.90      onoe 		}
   2221       1.90      onoe 		switch (wreq.wi_type) {
   2222      1.102    dyoung 		case WI_RID_FRAG_THRESH:
   2223      1.102    dyoung 			sc->sc_frag_thresh = le16toh(wreq.wi_val[0]);
   2224      1.102    dyoung 			break;
   2225       1.90      onoe 		case WI_RID_RTS_THRESH:
   2226       1.90      onoe 			sc->sc_rts_thresh = le16toh(wreq.wi_val[0]);
   2227       1.90      onoe 			break;
   2228       1.90      onoe 		case WI_RID_MICROWAVE_OVEN:
   2229       1.90      onoe 			sc->sc_microwave_oven = le16toh(wreq.wi_val[0]);
   2230       1.90      onoe 			break;
   2231       1.90      onoe 		case WI_RID_ROAMING_MODE:
   2232       1.90      onoe 			sc->sc_roaming_mode = le16toh(wreq.wi_val[0]);
   2233       1.90      onoe 			break;
   2234       1.90      onoe 		case WI_RID_SYSTEM_SCALE:
   2235       1.90      onoe 			sc->sc_system_scale = le16toh(wreq.wi_val[0]);
   2236       1.90      onoe 			break;
   2237       1.90      onoe 		case WI_RID_CNFAUTHMODE:
   2238       1.90      onoe 			sc->sc_cnfauthmode = le16toh(wreq.wi_val[0]);
   2239       1.90      onoe 			break;
   2240       1.90      onoe 		case WI_RID_MAX_DATALEN:
   2241       1.90      onoe 			sc->sc_max_datalen = le16toh(wreq.wi_val[0]);
   2242       1.90      onoe 			break;
   2243       1.90      onoe 		}
   2244       1.90      onoe 		break;
   2245       1.91      onoe 
   2246       1.90      onoe 	case WI_RID_TX_RATE:
   2247       1.90      onoe 		switch (le16toh(wreq.wi_val[0])) {
   2248       1.90      onoe 		case 3:
   2249       1.90      onoe 			ic->ic_fixed_rate = -1;
   2250       1.90      onoe 			break;
   2251       1.90      onoe 		default:
   2252       1.90      onoe 			for (i = 0; i < IEEE80211_RATE_SIZE; i++) {
   2253  1.130.2.1     skrll 				if ((rs->rs_rates[i] & IEEE80211_RATE_VAL)
   2254       1.90      onoe 				    / 2 == le16toh(wreq.wi_val[0]))
   2255       1.90      onoe 					break;
   2256       1.90      onoe 			}
   2257       1.90      onoe 			if (i == IEEE80211_RATE_SIZE)
   2258       1.90      onoe 				return EINVAL;
   2259       1.90      onoe 			ic->ic_fixed_rate = i;
   2260        1.4    ichiro 		}
   2261       1.90      onoe 		if (sc->sc_enabled)
   2262  1.130.2.1     skrll 			error = wi_cfg_txrate(sc);
   2263        1.1    ichiro 		break;
   2264       1.91      onoe 
   2265       1.90      onoe 	case WI_RID_SCAN_APS:
   2266       1.90      onoe 		if (sc->sc_enabled && ic->ic_opmode != IEEE80211_M_HOSTAP)
   2267      1.123    dyoung 			error = wi_scan_ap(sc, 0x3fff, 0x000f);
   2268       1.90      onoe 		break;
   2269       1.91      onoe 
   2270       1.90      onoe 	case WI_RID_MGMT_XMIT:
   2271       1.90      onoe 		if (!sc->sc_enabled) {
   2272       1.90      onoe 			error = ENETDOWN;
   2273       1.90      onoe 			break;
   2274       1.90      onoe 		}
   2275       1.90      onoe 		if (ic->ic_mgtq.ifq_len > 5) {
   2276       1.90      onoe 			error = EAGAIN;
   2277       1.90      onoe 			break;
   2278       1.90      onoe 		}
   2279       1.90      onoe 		/* XXX wi_len looks in u_int8_t, not in u_int16_t */
   2280       1.90      onoe 		m = m_devget((char *)&wreq.wi_val, wreq.wi_len, 0, ifp, NULL);
   2281       1.90      onoe 		if (m == NULL) {
   2282       1.90      onoe 			error = ENOMEM;
   2283       1.90      onoe 			break;
   2284       1.90      onoe 		}
   2285       1.90      onoe 		IF_ENQUEUE(&ic->ic_mgtq, m);
   2286        1.1    ichiro 		break;
   2287       1.91      onoe 
   2288       1.90      onoe 	default:
   2289       1.90      onoe 		if (sc->sc_enabled) {
   2290       1.90      onoe 			error = wi_write_rid(sc, wreq.wi_type, wreq.wi_val,
   2291       1.90      onoe 			    len);
   2292       1.90      onoe 			if (error)
   2293       1.90      onoe 				break;
   2294       1.90      onoe 		}
   2295       1.90      onoe 		error = ieee80211_cfgset(ifp, cmd, data);
   2296        1.1    ichiro 		break;
   2297        1.1    ichiro 	}
   2298       1.90      onoe 	return error;
   2299        1.1    ichiro }
   2300        1.1    ichiro 
   2301  1.130.2.1     skrll /* Rate is 0 for hardware auto-select, otherwise rate is
   2302  1.130.2.1     skrll  * 2, 4, 11, or 22 (units of 500Kbps).
   2303  1.130.2.1     skrll  */
   2304  1.130.2.1     skrll STATIC int
   2305  1.130.2.1     skrll wi_write_txrate(struct wi_softc *sc, int rate)
   2306        1.1    ichiro {
   2307  1.130.2.1     skrll 	u_int16_t hwrate;
   2308        1.1    ichiro 
   2309  1.130.2.1     skrll 	/* rate: 0, 2, 4, 11, 22 */
   2310       1.90      onoe 	switch (sc->sc_firmware_type) {
   2311       1.90      onoe 	case WI_LUCENT:
   2312  1.130.2.1     skrll 		switch (rate & IEEE80211_RATE_VAL) {
   2313  1.130.2.1     skrll 		case 2:
   2314  1.130.2.1     skrll 			hwrate = 1;
   2315  1.130.2.1     skrll 			break;
   2316  1.130.2.1     skrll 		case 4:
   2317  1.130.2.1     skrll 			hwrate = 2;
   2318  1.130.2.1     skrll 			break;
   2319  1.130.2.1     skrll 		default:
   2320  1.130.2.1     skrll 			hwrate = 3;	/* auto */
   2321  1.130.2.1     skrll 			break;
   2322  1.130.2.1     skrll 		case 11:
   2323  1.130.2.1     skrll 			hwrate = 4;
   2324  1.130.2.1     skrll 			break;
   2325  1.130.2.1     skrll 		case 22:
   2326  1.130.2.1     skrll 			hwrate = 5;
   2327  1.130.2.1     skrll 			break;
   2328  1.130.2.1     skrll 		}
   2329       1.90      onoe 		break;
   2330       1.90      onoe 	default:
   2331  1.130.2.1     skrll 		switch (rate & IEEE80211_RATE_VAL) {
   2332  1.130.2.1     skrll 		case 2:
   2333  1.130.2.1     skrll 			hwrate = 1;
   2334  1.130.2.1     skrll 			break;
   2335  1.130.2.1     skrll 		case 4:
   2336  1.130.2.1     skrll 			hwrate = 2;
   2337  1.130.2.1     skrll 			break;
   2338  1.130.2.1     skrll 		case 11:
   2339  1.130.2.1     skrll 			hwrate = 4;
   2340  1.130.2.1     skrll 			break;
   2341  1.130.2.1     skrll 		case 22:
   2342  1.130.2.1     skrll 			hwrate = 8;
   2343  1.130.2.1     skrll 			break;
   2344  1.130.2.1     skrll 		default:
   2345  1.130.2.1     skrll 			hwrate = 15;	/* auto */
   2346  1.130.2.1     skrll 			break;
   2347       1.90      onoe 		}
   2348       1.90      onoe 		break;
   2349       1.90      onoe 	}
   2350  1.130.2.1     skrll 
   2351  1.130.2.1     skrll 	if (sc->sc_tx_rate == hwrate)
   2352  1.130.2.1     skrll 		return 0;
   2353  1.130.2.1     skrll 
   2354  1.130.2.1     skrll 	if (sc->sc_if.if_flags & IFF_DEBUG)
   2355  1.130.2.1     skrll 		printf("%s: tx rate %d -> %d (%d)\n", __func__, sc->sc_tx_rate,
   2356  1.130.2.1     skrll 		    hwrate, rate);
   2357  1.130.2.1     skrll 
   2358  1.130.2.1     skrll 	sc->sc_tx_rate = hwrate;
   2359  1.130.2.1     skrll 
   2360  1.130.2.1     skrll 	return wi_write_val(sc, WI_RID_TX_RATE, sc->sc_tx_rate);
   2361        1.1    ichiro }
   2362        1.1    ichiro 
   2363  1.130.2.1     skrll STATIC int
   2364  1.130.2.1     skrll wi_cfg_txrate(struct wi_softc *sc)
   2365  1.130.2.1     skrll {
   2366  1.130.2.1     skrll 	struct ieee80211com *ic = &sc->sc_ic;
   2367  1.130.2.1     skrll 	struct ieee80211_rateset *rs;
   2368  1.130.2.1     skrll 	int rate;
   2369  1.130.2.1     skrll 
   2370  1.130.2.1     skrll 	rs = &ic->ic_sup_rates[IEEE80211_MODE_11B];
   2371  1.130.2.1     skrll 
   2372  1.130.2.1     skrll 	sc->sc_tx_rate = 0; /* force write to RID */
   2373  1.130.2.1     skrll 
   2374  1.130.2.1     skrll 	if (ic->ic_fixed_rate < 0)
   2375  1.130.2.1     skrll 		rate = 0;	/* auto */
   2376  1.130.2.1     skrll 	else
   2377  1.130.2.1     skrll 		rate = rs->rs_rates[ic->ic_fixed_rate];
   2378  1.130.2.1     skrll 
   2379  1.130.2.1     skrll 	return wi_write_txrate(sc, rate);
   2380  1.130.2.1     skrll }
   2381  1.130.2.1     skrll 
   2382  1.130.2.1     skrll STATIC int
   2383       1.90      onoe wi_write_wep(struct wi_softc *sc)
   2384        1.1    ichiro {
   2385       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   2386       1.90      onoe 	int error = 0;
   2387       1.90      onoe 	int i, keylen;
   2388       1.90      onoe 	u_int16_t val;
   2389       1.90      onoe 	struct wi_key wkey[IEEE80211_WEP_NKID];
   2390        1.1    ichiro 
   2391       1.90      onoe 	switch (sc->sc_firmware_type) {
   2392       1.90      onoe 	case WI_LUCENT:
   2393  1.130.2.1     skrll 		val = (ic->ic_flags & IEEE80211_F_PRIVACY) ? 1 : 0;
   2394       1.90      onoe 		error = wi_write_val(sc, WI_RID_ENCRYPTION, val);
   2395       1.90      onoe 		if (error)
   2396       1.90      onoe 			break;
   2397       1.90      onoe 		error = wi_write_val(sc, WI_RID_TX_CRYPT_KEY, ic->ic_wep_txkey);
   2398       1.90      onoe 		if (error)
   2399       1.90      onoe 			break;
   2400       1.90      onoe 		memset(wkey, 0, sizeof(wkey));
   2401       1.90      onoe 		for (i = 0; i < IEEE80211_WEP_NKID; i++) {
   2402       1.90      onoe 			keylen = ic->ic_nw_keys[i].wk_len;
   2403       1.90      onoe 			wkey[i].wi_keylen = htole16(keylen);
   2404       1.90      onoe 			memcpy(wkey[i].wi_keydat, ic->ic_nw_keys[i].wk_key,
   2405       1.90      onoe 			    keylen);
   2406       1.90      onoe 		}
   2407       1.90      onoe 		error = wi_write_rid(sc, WI_RID_DEFLT_CRYPT_KEYS,
   2408       1.90      onoe 		    wkey, sizeof(wkey));
   2409        1.1    ichiro 		break;
   2410       1.77   thorpej 
   2411       1.90      onoe 	case WI_INTERSIL:
   2412       1.90      onoe 	case WI_SYMBOL:
   2413  1.130.2.1     skrll 		if (ic->ic_flags & IEEE80211_F_PRIVACY) {
   2414       1.90      onoe 			/*
   2415       1.90      onoe 			 * ONLY HWB3163 EVAL-CARD Firmware version
   2416       1.90      onoe 			 * less than 0.8 variant2
   2417       1.90      onoe 			 *
   2418       1.90      onoe 			 *   If promiscuous mode disable, Prism2 chip
   2419       1.90      onoe 			 *  does not work with WEP .
   2420       1.90      onoe 			 * It is under investigation for details.
   2421  1.130.2.1     skrll 			 * (ichiro (at) NetBSD.org)
   2422       1.90      onoe 			 */
   2423       1.90      onoe 			if (sc->sc_firmware_type == WI_INTERSIL &&
   2424       1.90      onoe 			    sc->sc_sta_firmware_ver < 802 ) {
   2425       1.90      onoe 				/* firm ver < 0.8 variant 2 */
   2426       1.90      onoe 				wi_write_val(sc, WI_RID_PROMISC, 1);
   2427       1.90      onoe 			}
   2428       1.90      onoe 			wi_write_val(sc, WI_RID_CNFAUTHMODE,
   2429       1.90      onoe 			    sc->sc_cnfauthmode);
   2430       1.90      onoe 			val = PRIVACY_INVOKED | EXCLUDE_UNENCRYPTED;
   2431      1.100      onoe 			/*
   2432      1.100      onoe 			 * Encryption firmware has a bug for HostAP mode.
   2433      1.100      onoe 			 */
   2434      1.100      onoe 			if (sc->sc_firmware_type == WI_INTERSIL &&
   2435      1.100      onoe 			    ic->ic_opmode == IEEE80211_M_HOSTAP)
   2436       1.90      onoe 				val |= HOST_ENCRYPT;
   2437       1.90      onoe 		} else {
   2438      1.100      onoe 			wi_write_val(sc, WI_RID_CNFAUTHMODE,
   2439      1.100      onoe 			    IEEE80211_AUTH_OPEN);
   2440       1.90      onoe 			val = HOST_ENCRYPT | HOST_DECRYPT;
   2441       1.90      onoe 		}
   2442       1.90      onoe 		error = wi_write_val(sc, WI_RID_P2_ENCRYPTION, val);
   2443       1.90      onoe 		if (error)
   2444       1.90      onoe 			break;
   2445       1.90      onoe 		error = wi_write_val(sc, WI_RID_P2_TX_CRYPT_KEY,
   2446       1.90      onoe 		    ic->ic_wep_txkey);
   2447       1.90      onoe 		if (error)
   2448       1.90      onoe 			break;
   2449      1.100      onoe 		/*
   2450      1.100      onoe 		 * It seems that the firmware accept 104bit key only if
   2451      1.100      onoe 		 * all the keys have 104bit length.  We get the length of
   2452      1.100      onoe 		 * the transmit key and use it for all other keys.
   2453      1.100      onoe 		 * Perhaps we should use software WEP for such situation.
   2454      1.100      onoe 		 */
   2455      1.100      onoe 		keylen = ic->ic_nw_keys[ic->ic_wep_txkey].wk_len;
   2456      1.100      onoe 		if (keylen > IEEE80211_WEP_KEYLEN)
   2457      1.100      onoe 			keylen = 13;	/* 104bit keys */
   2458      1.100      onoe 		else
   2459      1.100      onoe 			keylen = IEEE80211_WEP_KEYLEN;
   2460       1.90      onoe 		for (i = 0; i < IEEE80211_WEP_NKID; i++) {
   2461       1.90      onoe 			error = wi_write_rid(sc, WI_RID_P2_CRYPT_KEY0 + i,
   2462       1.90      onoe 			    ic->ic_nw_keys[i].wk_key, keylen);
   2463       1.90      onoe 			if (error)
   2464       1.90      onoe 				break;
   2465       1.90      onoe 		}
   2466        1.1    ichiro 		break;
   2467        1.1    ichiro 	}
   2468       1.90      onoe 	return error;
   2469        1.1    ichiro }
   2470        1.1    ichiro 
   2471       1.90      onoe /* Must be called at proper protection level! */
   2472  1.130.2.1     skrll STATIC int
   2473  1.130.2.1     skrll wi_sendcmd(struct wi_softc *sc, int cmd, int val0)
   2474  1.130.2.1     skrll {
   2475  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2476  1.130.2.1     skrll 	static int hist3[11];
   2477  1.130.2.1     skrll 	static int hist3count;
   2478  1.130.2.1     skrll #endif
   2479  1.130.2.1     skrll 	int i;
   2480  1.130.2.1     skrll 
   2481  1.130.2.1     skrll 	/* wait for the busy bit to clear */
   2482  1.130.2.1     skrll 	for (i = 500; i > 0; i--) {	/* 5s */
   2483  1.130.2.1     skrll 		if ((CSR_READ_2(sc, WI_COMMAND) & WI_CMD_BUSY) == 0)
   2484  1.130.2.1     skrll 			break;
   2485  1.130.2.1     skrll 		DELAY(1000);	/* 1 m sec */
   2486  1.130.2.1     skrll 	}
   2487  1.130.2.1     skrll 	if (i == 0) {
   2488  1.130.2.1     skrll 		printf("%s: wi_sendcmd: busy bit won't clear.\n",
   2489  1.130.2.1     skrll 		    sc->sc_dev.dv_xname);
   2490  1.130.2.1     skrll 		return(ETIMEDOUT);
   2491  1.130.2.1     skrll   	}
   2492  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2493  1.130.2.1     skrll 	if (i > 490)
   2494  1.130.2.1     skrll 		hist3[500 - i]++;
   2495  1.130.2.1     skrll 	else
   2496  1.130.2.1     skrll 		hist3[10]++;
   2497  1.130.2.1     skrll 	if (++hist3count == 1000) {
   2498  1.130.2.1     skrll 		hist3count = 0;
   2499  1.130.2.1     skrll 		printf("%s: hist3: %d %d %d %d %d %d %d %d %d %d %d\n",
   2500  1.130.2.1     skrll 		    sc->sc_dev.dv_xname,
   2501  1.130.2.1     skrll 		    hist3[0], hist3[1], hist3[2], hist3[3], hist3[4],
   2502  1.130.2.1     skrll 		    hist3[5], hist3[6], hist3[7], hist3[8], hist3[9],
   2503  1.130.2.1     skrll 		    hist3[10]);
   2504  1.130.2.1     skrll 	}
   2505  1.130.2.1     skrll #endif
   2506  1.130.2.1     skrll 	CSR_WRITE_2(sc, WI_PARAM0, val0);
   2507  1.130.2.1     skrll 	CSR_WRITE_2(sc, WI_PARAM1, 0);
   2508  1.130.2.1     skrll 	CSR_WRITE_2(sc, WI_PARAM2, 0);
   2509  1.130.2.1     skrll 	CSR_WRITE_2(sc, WI_COMMAND, cmd);
   2510  1.130.2.1     skrll 
   2511  1.130.2.1     skrll 	return 0;
   2512  1.130.2.1     skrll }
   2513  1.130.2.1     skrll 
   2514  1.130.2.1     skrll STATIC int
   2515       1.90      onoe wi_cmd(struct wi_softc *sc, int cmd, int val0, int val1, int val2)
   2516        1.1    ichiro {
   2517  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2518  1.130.2.1     skrll 	static int hist1[11];
   2519  1.130.2.1     skrll 	static int hist1count;
   2520  1.130.2.1     skrll 	static int hist2[11];
   2521  1.130.2.1     skrll 	static int hist2count;
   2522  1.130.2.1     skrll #endif
   2523       1.90      onoe 	int i, status;
   2524       1.90      onoe 
   2525       1.90      onoe 	/* wait for the busy bit to clear */
   2526      1.117    dyoung 	for (i = 500; i > 0; i--) {	/* 5s */
   2527       1.90      onoe 		if ((CSR_READ_2(sc, WI_COMMAND) & WI_CMD_BUSY) == 0)
   2528       1.90      onoe 			break;
   2529  1.130.2.1     skrll 		DELAY(1000);	/* 1 m sec */
   2530       1.77   thorpej 	}
   2531      1.117    dyoung 	if (i == 0) {
   2532      1.117    dyoung 		printf("%s: wi_cmd: busy bit won't clear.\n",
   2533      1.117    dyoung 		    sc->sc_dev.dv_xname);
   2534      1.117    dyoung 		return(ETIMEDOUT);
   2535      1.117    dyoung   	}
   2536  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2537  1.130.2.1     skrll 	if (i > 490)
   2538  1.130.2.1     skrll 		hist1[500 - i]++;
   2539  1.130.2.1     skrll 	else
   2540  1.130.2.1     skrll 		hist1[10]++;
   2541  1.130.2.1     skrll 	if (++hist1count == 1000) {
   2542  1.130.2.1     skrll 		hist1count = 0;
   2543  1.130.2.1     skrll 		printf("%s: hist1: %d %d %d %d %d %d %d %d %d %d %d\n",
   2544  1.130.2.1     skrll 		    sc->sc_dev.dv_xname,
   2545  1.130.2.1     skrll 		    hist1[0], hist1[1], hist1[2], hist1[3], hist1[4],
   2546  1.130.2.1     skrll 		    hist1[5], hist1[6], hist1[7], hist1[8], hist1[9],
   2547  1.130.2.1     skrll 		    hist1[10]);
   2548  1.130.2.1     skrll 	}
   2549  1.130.2.1     skrll #endif
   2550       1.90      onoe 	CSR_WRITE_2(sc, WI_PARAM0, val0);
   2551       1.90      onoe 	CSR_WRITE_2(sc, WI_PARAM1, val1);
   2552       1.90      onoe 	CSR_WRITE_2(sc, WI_PARAM2, val2);
   2553       1.90      onoe 	CSR_WRITE_2(sc, WI_COMMAND, cmd);
   2554       1.90      onoe 
   2555       1.90      onoe 	if (cmd == WI_CMD_INI) {
   2556       1.90      onoe 		/* XXX: should sleep here. */
   2557       1.90      onoe 		DELAY(100*1000);
   2558       1.90      onoe 	}
   2559       1.90      onoe 	/* wait for the cmd completed bit */
   2560       1.90      onoe 	for (i = 0; i < WI_TIMEOUT; i++) {
   2561       1.90      onoe 		if (CSR_READ_2(sc, WI_EVENT_STAT) & WI_EV_CMD)
   2562       1.90      onoe 			break;
   2563      1.123    dyoung 		DELAY(WI_DELAY);
   2564        1.1    ichiro 	}
   2565  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2566  1.130.2.1     skrll 	if (i < 100)
   2567  1.130.2.1     skrll 		hist2[i/10]++;
   2568  1.130.2.1     skrll 	else
   2569  1.130.2.1     skrll 		hist2[10]++;
   2570  1.130.2.1     skrll 	if (++hist2count == 1000) {
   2571  1.130.2.1     skrll 		hist2count = 0;
   2572  1.130.2.1     skrll 		printf("%s: hist2: %d %d %d %d %d %d %d %d %d %d %d\n",
   2573  1.130.2.1     skrll 		    sc->sc_dev.dv_xname,
   2574  1.130.2.1     skrll 		    hist2[0], hist2[1], hist2[2], hist2[3], hist2[4],
   2575  1.130.2.1     skrll 		    hist2[5], hist2[6], hist2[7], hist2[8], hist2[9],
   2576  1.130.2.1     skrll 		    hist2[10]);
   2577  1.130.2.1     skrll 	}
   2578  1.130.2.1     skrll #endif
   2579        1.1    ichiro 
   2580       1.90      onoe 	status = CSR_READ_2(sc, WI_STATUS);
   2581       1.90      onoe 
   2582       1.90      onoe 	/* Ack the command */
   2583       1.90      onoe 	CSR_WRITE_2(sc, WI_EVENT_ACK, WI_EV_CMD);
   2584       1.90      onoe 
   2585       1.90      onoe 	if (i == WI_TIMEOUT) {
   2586       1.90      onoe 		printf("%s: command timed out, cmd=0x%x, arg=0x%x\n",
   2587       1.90      onoe 		    sc->sc_dev.dv_xname, cmd, val0);
   2588       1.90      onoe 		return ETIMEDOUT;
   2589        1.1    ichiro 	}
   2590        1.1    ichiro 
   2591       1.90      onoe 	if (status & WI_STAT_CMD_RESULT) {
   2592       1.90      onoe 		printf("%s: command failed, cmd=0x%x, arg=0x%x\n",
   2593       1.90      onoe 		    sc->sc_dev.dv_xname, cmd, val0);
   2594       1.90      onoe 		return EIO;
   2595       1.90      onoe 	}
   2596       1.90      onoe 	return 0;
   2597        1.1    ichiro }
   2598        1.1    ichiro 
   2599  1.130.2.1     skrll STATIC int
   2600       1.90      onoe wi_seek_bap(struct wi_softc *sc, int id, int off)
   2601        1.1    ichiro {
   2602  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2603  1.130.2.1     skrll 	static int hist4[11];
   2604  1.130.2.1     skrll 	static int hist4count;
   2605  1.130.2.1     skrll #endif
   2606       1.90      onoe 	int i, status;
   2607        1.1    ichiro 
   2608       1.90      onoe 	CSR_WRITE_2(sc, WI_SEL0, id);
   2609       1.90      onoe 	CSR_WRITE_2(sc, WI_OFF0, off);
   2610        1.1    ichiro 
   2611       1.90      onoe 	for (i = 0; ; i++) {
   2612       1.90      onoe 		status = CSR_READ_2(sc, WI_OFF0);
   2613       1.90      onoe 		if ((status & WI_OFF_BUSY) == 0)
   2614       1.84   thorpej 			break;
   2615       1.90      onoe 		if (i == WI_TIMEOUT) {
   2616       1.90      onoe 			printf("%s: timeout in wi_seek to %x/%x\n",
   2617       1.90      onoe 			    sc->sc_dev.dv_xname, id, off);
   2618       1.90      onoe 			sc->sc_bap_off = WI_OFF_ERR;	/* invalidate */
   2619       1.90      onoe 			return ETIMEDOUT;
   2620       1.84   thorpej 		}
   2621  1.130.2.1     skrll 		DELAY(2);
   2622  1.130.2.1     skrll 	}
   2623  1.130.2.1     skrll #ifdef WI_HISTOGRAM
   2624  1.130.2.1     skrll 	if (i < 100)
   2625  1.130.2.1     skrll 		hist4[i/10]++;
   2626  1.130.2.1     skrll 	else
   2627  1.130.2.1     skrll 		hist4[10]++;
   2628  1.130.2.1     skrll 	if (++hist4count == 2500) {
   2629  1.130.2.1     skrll 		hist4count = 0;
   2630  1.130.2.1     skrll 		printf("%s: hist4: %d %d %d %d %d %d %d %d %d %d %d\n",
   2631  1.130.2.1     skrll 		    sc->sc_dev.dv_xname,
   2632  1.130.2.1     skrll 		    hist4[0], hist4[1], hist4[2], hist4[3], hist4[4],
   2633  1.130.2.1     skrll 		    hist4[5], hist4[6], hist4[7], hist4[8], hist4[9],
   2634  1.130.2.1     skrll 		    hist4[10]);
   2635       1.84   thorpej 	}
   2636  1.130.2.1     skrll #endif
   2637       1.90      onoe 	if (status & WI_OFF_ERR) {
   2638       1.90      onoe 		printf("%s: failed in wi_seek to %x/%x\n",
   2639       1.90      onoe 		    sc->sc_dev.dv_xname, id, off);
   2640       1.90      onoe 		sc->sc_bap_off = WI_OFF_ERR;	/* invalidate */
   2641       1.90      onoe 		return EIO;
   2642       1.84   thorpej 	}
   2643       1.90      onoe 	sc->sc_bap_id = id;
   2644       1.90      onoe 	sc->sc_bap_off = off;
   2645       1.90      onoe 	return 0;
   2646        1.1    ichiro }
   2647        1.1    ichiro 
   2648  1.130.2.1     skrll STATIC int
   2649       1.90      onoe wi_read_bap(struct wi_softc *sc, int id, int off, void *buf, int buflen)
   2650        1.1    ichiro {
   2651       1.90      onoe 	int error, cnt;
   2652        1.1    ichiro 
   2653       1.90      onoe 	if (buflen == 0)
   2654       1.90      onoe 		return 0;
   2655       1.90      onoe 	if (id != sc->sc_bap_id || off != sc->sc_bap_off) {
   2656       1.90      onoe 		if ((error = wi_seek_bap(sc, id, off)) != 0)
   2657        1.1    ichiro 			return error;
   2658        1.1    ichiro 	}
   2659       1.90      onoe 	cnt = (buflen + 1) / 2;
   2660       1.90      onoe 	CSR_READ_MULTI_STREAM_2(sc, WI_DATA0, (u_int16_t *)buf, cnt);
   2661       1.90      onoe 	sc->sc_bap_off += cnt * 2;
   2662       1.90      onoe 	return 0;
   2663       1.90      onoe }
   2664       1.90      onoe 
   2665  1.130.2.1     skrll STATIC int
   2666       1.90      onoe wi_write_bap(struct wi_softc *sc, int id, int off, void *buf, int buflen)
   2667       1.90      onoe {
   2668       1.90      onoe 	int error, cnt;
   2669        1.1    ichiro 
   2670       1.90      onoe 	if (buflen == 0)
   2671       1.90      onoe 		return 0;
   2672        1.1    ichiro 
   2673       1.90      onoe #ifdef WI_HERMES_AUTOINC_WAR
   2674       1.90      onoe   again:
   2675       1.90      onoe #endif
   2676       1.90      onoe 	if (id != sc->sc_bap_id || off != sc->sc_bap_off) {
   2677       1.90      onoe 		if ((error = wi_seek_bap(sc, id, off)) != 0)
   2678        1.1    ichiro 			return error;
   2679        1.1    ichiro 	}
   2680       1.90      onoe 	cnt = (buflen + 1) / 2;
   2681       1.90      onoe 	CSR_WRITE_MULTI_STREAM_2(sc, WI_DATA0, (u_int16_t *)buf, cnt);
   2682       1.90      onoe 	sc->sc_bap_off += cnt * 2;
   2683        1.1    ichiro 
   2684       1.90      onoe #ifdef WI_HERMES_AUTOINC_WAR
   2685       1.90      onoe 	/*
   2686       1.90      onoe 	 * According to the comments in the HCF Light code, there is a bug
   2687       1.90      onoe 	 * in the Hermes (or possibly in certain Hermes firmware revisions)
   2688       1.90      onoe 	 * where the chip's internal autoincrement counter gets thrown off
   2689       1.90      onoe 	 * during data writes:  the autoincrement is missed, causing one
   2690       1.90      onoe 	 * data word to be overwritten and subsequent words to be written to
   2691       1.90      onoe 	 * the wrong memory locations. The end result is that we could end
   2692       1.90      onoe 	 * up transmitting bogus frames without realizing it. The workaround
   2693       1.90      onoe 	 * for this is to write a couple of extra guard words after the end
   2694       1.90      onoe 	 * of the transfer, then attempt to read then back. If we fail to
   2695       1.90      onoe 	 * locate the guard words where we expect them, we preform the
   2696       1.90      onoe 	 * transfer over again.
   2697       1.90      onoe 	 */
   2698       1.90      onoe 	if ((sc->sc_flags & WI_FLAGS_BUG_AUTOINC) && (id & 0xf000) == 0) {
   2699       1.90      onoe 		CSR_WRITE_2(sc, WI_DATA0, 0x1234);
   2700       1.90      onoe 		CSR_WRITE_2(sc, WI_DATA0, 0x5678);
   2701       1.90      onoe 		wi_seek_bap(sc, id, sc->sc_bap_off);
   2702       1.90      onoe 		sc->sc_bap_off = WI_OFF_ERR;	/* invalidate */
   2703       1.90      onoe 		if (CSR_READ_2(sc, WI_DATA0) != 0x1234 ||
   2704       1.90      onoe 		    CSR_READ_2(sc, WI_DATA0) != 0x5678) {
   2705       1.90      onoe 			printf("%s: detect auto increment bug, try again\n",
   2706       1.90      onoe 			    sc->sc_dev.dv_xname);
   2707       1.90      onoe 			goto again;
   2708       1.90      onoe 		}
   2709        1.1    ichiro 	}
   2710       1.90      onoe #endif
   2711      1.108    dyoung 	return 0;
   2712      1.108    dyoung }
   2713      1.108    dyoung 
   2714  1.130.2.1     skrll STATIC int
   2715      1.108    dyoung wi_mwrite_bap(struct wi_softc *sc, int id, int off, struct mbuf *m0, int totlen)
   2716      1.108    dyoung {
   2717      1.108    dyoung 	int error, len;
   2718      1.108    dyoung 	struct mbuf *m;
   2719      1.108    dyoung 
   2720      1.108    dyoung 	for (m = m0; m != NULL && totlen > 0; m = m->m_next) {
   2721      1.108    dyoung 		if (m->m_len == 0)
   2722      1.108    dyoung 			continue;
   2723      1.108    dyoung 
   2724      1.108    dyoung 		len = min(m->m_len, totlen);
   2725      1.108    dyoung 
   2726      1.108    dyoung 		if (((u_long)m->m_data) % 2 != 0 || len % 2 != 0) {
   2727      1.108    dyoung 			m_copydata(m, 0, totlen, (caddr_t)&sc->sc_txbuf);
   2728      1.108    dyoung 			return wi_write_bap(sc, id, off, (caddr_t)&sc->sc_txbuf,
   2729      1.108    dyoung 			    totlen);
   2730      1.108    dyoung 		}
   2731      1.108    dyoung 
   2732      1.108    dyoung 		if ((error = wi_write_bap(sc, id, off, m->m_data, len)) != 0)
   2733      1.108    dyoung 			return error;
   2734      1.108    dyoung 
   2735      1.108    dyoung 		off += m->m_len;
   2736      1.108    dyoung 		totlen -= len;
   2737      1.108    dyoung 	}
   2738        1.1    ichiro 	return 0;
   2739        1.1    ichiro }
   2740        1.1    ichiro 
   2741  1.130.2.1     skrll STATIC int
   2742       1.90      onoe wi_alloc_fid(struct wi_softc *sc, int len, int *idp)
   2743        1.1    ichiro {
   2744       1.90      onoe 	int i;
   2745       1.90      onoe 
   2746       1.90      onoe 	if (wi_cmd(sc, WI_CMD_ALLOC_MEM, len, 0, 0)) {
   2747       1.90      onoe 		printf("%s: failed to allocate %d bytes on NIC\n",
   2748       1.90      onoe 		    sc->sc_dev.dv_xname, len);
   2749       1.90      onoe 		return ENOMEM;
   2750       1.90      onoe 	}
   2751        1.1    ichiro 
   2752       1.90      onoe 	for (i = 0; i < WI_TIMEOUT; i++) {
   2753       1.90      onoe 		if (CSR_READ_2(sc, WI_EVENT_STAT) & WI_EV_ALLOC)
   2754       1.90      onoe 			break;
   2755       1.90      onoe 		if (i == WI_TIMEOUT) {
   2756       1.90      onoe 			printf("%s: timeout in alloc\n", sc->sc_dev.dv_xname);
   2757       1.90      onoe 			return ETIMEDOUT;
   2758       1.90      onoe 		}
   2759       1.90      onoe 		DELAY(1);
   2760        1.1    ichiro 	}
   2761       1.90      onoe 	*idp = CSR_READ_2(sc, WI_ALLOC_FID);
   2762       1.90      onoe 	CSR_WRITE_2(sc, WI_EVENT_ACK, WI_EV_ALLOC);
   2763        1.1    ichiro 	return 0;
   2764        1.1    ichiro }
   2765        1.1    ichiro 
   2766  1.130.2.1     skrll STATIC int
   2767       1.90      onoe wi_read_rid(struct wi_softc *sc, int rid, void *buf, int *buflenp)
   2768        1.1    ichiro {
   2769       1.90      onoe 	int error, len;
   2770       1.90      onoe 	u_int16_t ltbuf[2];
   2771        1.1    ichiro 
   2772       1.90      onoe 	/* Tell the NIC to enter record read mode. */
   2773       1.90      onoe 	error = wi_cmd(sc, WI_CMD_ACCESS | WI_ACCESS_READ, rid, 0, 0);
   2774       1.90      onoe 	if (error)
   2775       1.90      onoe 		return error;
   2776        1.1    ichiro 
   2777       1.90      onoe 	error = wi_read_bap(sc, rid, 0, ltbuf, sizeof(ltbuf));
   2778       1.90      onoe 	if (error)
   2779       1.90      onoe 		return error;
   2780        1.1    ichiro 
   2781  1.130.2.2     skrll 	if (le16toh(ltbuf[0]) == 0)
   2782  1.130.2.2     skrll 		return EOPNOTSUPP;
   2783       1.90      onoe 	if (le16toh(ltbuf[1]) != rid) {
   2784       1.90      onoe 		printf("%s: record read mismatch, rid=%x, got=%x\n",
   2785       1.90      onoe 		    sc->sc_dev.dv_xname, rid, le16toh(ltbuf[1]));
   2786       1.90      onoe 		return EIO;
   2787       1.90      onoe 	}
   2788  1.130.2.2     skrll 	len = (le16toh(ltbuf[0]) - 1) * 2;	 /* already got rid */
   2789       1.90      onoe 	if (*buflenp < len) {
   2790       1.90      onoe 		printf("%s: record buffer is too small, "
   2791       1.90      onoe 		    "rid=%x, size=%d, len=%d\n",
   2792       1.90      onoe 		    sc->sc_dev.dv_xname, rid, *buflenp, len);
   2793       1.90      onoe 		return ENOSPC;
   2794       1.90      onoe 	}
   2795       1.90      onoe 	*buflenp = len;
   2796       1.90      onoe 	return wi_read_bap(sc, rid, sizeof(ltbuf), buf, len);
   2797        1.1    ichiro }
   2798        1.1    ichiro 
   2799  1.130.2.1     skrll STATIC int
   2800       1.90      onoe wi_write_rid(struct wi_softc *sc, int rid, void *buf, int buflen)
   2801        1.1    ichiro {
   2802       1.90      onoe 	int error;
   2803       1.90      onoe 	u_int16_t ltbuf[2];
   2804       1.90      onoe 
   2805       1.90      onoe 	ltbuf[0] = htole16((buflen + 1) / 2 + 1);	 /* includes rid */
   2806       1.90      onoe 	ltbuf[1] = htole16(rid);
   2807        1.1    ichiro 
   2808       1.90      onoe 	error = wi_write_bap(sc, rid, 0, ltbuf, sizeof(ltbuf));
   2809       1.90      onoe 	if (error)
   2810       1.90      onoe 		return error;
   2811       1.90      onoe 	error = wi_write_bap(sc, rid, sizeof(ltbuf), buf, buflen);
   2812       1.90      onoe 	if (error)
   2813       1.90      onoe 		return error;
   2814        1.1    ichiro 
   2815       1.90      onoe 	return wi_cmd(sc, WI_CMD_ACCESS | WI_ACCESS_WRITE, rid, 0, 0);
   2816       1.84   thorpej }
   2817       1.84   thorpej 
   2818  1.130.2.1     skrll STATIC void
   2819  1.130.2.1     skrll wi_rssadapt_updatestats_cb(void *arg, struct ieee80211_node *ni)
   2820  1.130.2.1     skrll {
   2821  1.130.2.1     skrll 	struct wi_node *wn = (void*)ni;
   2822  1.130.2.1     skrll 	ieee80211_rssadapt_updatestats(&wn->wn_rssadapt);
   2823  1.130.2.1     skrll }
   2824  1.130.2.1     skrll 
   2825  1.130.2.1     skrll STATIC void
   2826  1.130.2.1     skrll wi_rssadapt_updatestats(void *arg)
   2827       1.84   thorpej {
   2828       1.90      onoe 	struct wi_softc *sc = arg;
   2829       1.90      onoe 	struct ieee80211com *ic = &sc->sc_ic;
   2830  1.130.2.1     skrll 	ieee80211_iterate_nodes(ic, wi_rssadapt_updatestats_cb, arg);
   2831  1.130.2.1     skrll 	if (ic->ic_opmode != IEEE80211_M_MONITOR &&
   2832  1.130.2.1     skrll 	    ic->ic_state == IEEE80211_S_RUN)
   2833  1.130.2.1     skrll 		callout_reset(&sc->sc_rssadapt_ch, hz / 10,
   2834  1.130.2.1     skrll 		    wi_rssadapt_updatestats, arg);
   2835  1.130.2.1     skrll }
   2836  1.130.2.1     skrll 
   2837  1.130.2.1     skrll STATIC int
   2838  1.130.2.1     skrll wi_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
   2839  1.130.2.1     skrll {
   2840  1.130.2.1     skrll 	struct ifnet *ifp = &ic->ic_if;
   2841  1.130.2.1     skrll 	struct wi_softc *sc = ic->ic_softc;
   2842  1.130.2.1     skrll 	struct ieee80211_node *ni = ic->ic_bss;
   2843  1.130.2.1     skrll 	int buflen, linkstate = LINK_STATE_DOWN, s;
   2844       1.90      onoe 	u_int16_t val;
   2845       1.90      onoe 	struct wi_ssid ssid;
   2846  1.130.2.1     skrll 	struct wi_macaddr bssid, old_bssid;
   2847       1.90      onoe 	enum ieee80211_state ostate;
   2848       1.90      onoe #ifdef WI_DEBUG
   2849       1.90      onoe 	static const char *stname[] =
   2850       1.90      onoe 	    { "INIT", "SCAN", "AUTH", "ASSOC", "RUN" };
   2851       1.90      onoe #endif /* WI_DEBUG */
   2852       1.90      onoe 
   2853       1.90      onoe 	ostate = ic->ic_state;
   2854       1.90      onoe 	DPRINTF(("wi_newstate: %s -> %s\n", stname[ostate], stname[nstate]));
   2855       1.90      onoe 
   2856       1.90      onoe 	switch (nstate) {
   2857       1.90      onoe 	case IEEE80211_S_INIT:
   2858  1.130.2.1     skrll 		if (ic->ic_opmode != IEEE80211_M_MONITOR)
   2859  1.130.2.1     skrll 			callout_stop(&sc->sc_rssadapt_ch);
   2860       1.90      onoe 		ic->ic_flags &= ~IEEE80211_F_SIBSS;
   2861       1.98      onoe 		sc->sc_flags &= ~WI_FLAGS_OUTRANGE;
   2862  1.130.2.1     skrll 		return (*sc->sc_newstate)(ic, nstate, arg);
   2863       1.90      onoe 
   2864       1.90      onoe 	case IEEE80211_S_RUN:
   2865  1.130.2.1     skrll 		linkstate = LINK_STATE_UP;
   2866       1.98      onoe 		sc->sc_flags &= ~WI_FLAGS_OUTRANGE;
   2867       1.90      onoe 		buflen = IEEE80211_ADDR_LEN;
   2868  1.130.2.1     skrll 		IEEE80211_ADDR_COPY(old_bssid.wi_mac_addr, ni->ni_bssid);
   2869  1.130.2.1     skrll 		wi_read_rid(sc, WI_RID_CURRENT_BSSID, &bssid, &buflen);
   2870  1.130.2.1     skrll 		IEEE80211_ADDR_COPY(ni->ni_bssid, &bssid);
   2871  1.130.2.1     skrll 		IEEE80211_ADDR_COPY(ni->ni_macaddr, &bssid);
   2872       1.90      onoe 		buflen = sizeof(val);
   2873       1.90      onoe 		wi_read_rid(sc, WI_RID_CURRENT_CHAN, &val, &buflen);
   2874  1.130.2.1     skrll 		if (!isset(ic->ic_chan_avail, le16toh(val)))
   2875  1.130.2.1     skrll 			panic("%s: invalid channel %d\n", sc->sc_dev.dv_xname,
   2876  1.130.2.1     skrll 			    le16toh(val));
   2877  1.130.2.1     skrll 		ni->ni_chan = &ic->ic_channels[le16toh(val)];
   2878      1.107    dyoung 
   2879  1.130.2.3     skrll 		/* If not equal, then discount a false synchronization. */
   2880  1.130.2.3     skrll 		if (!IEEE80211_ADDR_EQ(old_bssid.wi_mac_addr, ni->ni_bssid))
   2881  1.130.2.3     skrll 			sc->sc_false_syns = MAX(0, sc->sc_false_syns - 1);
   2882       1.90      onoe 
   2883       1.96      onoe 		if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
   2884       1.96      onoe 			ni->ni_esslen = ic->ic_des_esslen;
   2885       1.96      onoe 			memcpy(ni->ni_essid, ic->ic_des_essid, ni->ni_esslen);
   2886  1.130.2.1     skrll 			ni->ni_rates = ic->ic_sup_rates[
   2887  1.130.2.1     skrll 			    ieee80211_chan2mode(ic, ni->ni_chan)];
   2888       1.96      onoe 			ni->ni_intval = ic->ic_lintval;
   2889       1.96      onoe 			ni->ni_capinfo = IEEE80211_CAPINFO_ESS;
   2890  1.130.2.1     skrll 			if (ic->ic_flags & IEEE80211_F_PRIVACY)
   2891       1.96      onoe 				ni->ni_capinfo |= IEEE80211_CAPINFO_PRIVACY;
   2892       1.96      onoe 		} else {
   2893       1.96      onoe 			buflen = sizeof(ssid);
   2894       1.96      onoe 			wi_read_rid(sc, WI_RID_CURRENT_SSID, &ssid, &buflen);
   2895       1.96      onoe 			ni->ni_esslen = le16toh(ssid.wi_len);
   2896       1.96      onoe 			if (ni->ni_esslen > IEEE80211_NWID_LEN)
   2897       1.96      onoe 				ni->ni_esslen = IEEE80211_NWID_LEN;	/*XXX*/
   2898       1.96      onoe 			memcpy(ni->ni_essid, ssid.wi_ssid, ni->ni_esslen);
   2899  1.130.2.1     skrll 			ni->ni_rates = ic->ic_sup_rates[
   2900  1.130.2.1     skrll 			    ieee80211_chan2mode(ic, ni->ni_chan)]; /*XXX*/
   2901       1.96      onoe 		}
   2902  1.130.2.1     skrll 		if (ic->ic_opmode != IEEE80211_M_MONITOR)
   2903  1.130.2.1     skrll 			callout_reset(&sc->sc_rssadapt_ch, hz / 10,
   2904  1.130.2.1     skrll 			    wi_rssadapt_updatestats, sc);
   2905       1.90      onoe 		break;
   2906       1.90      onoe 
   2907       1.90      onoe 	case IEEE80211_S_SCAN:
   2908       1.90      onoe 	case IEEE80211_S_AUTH:
   2909       1.90      onoe 	case IEEE80211_S_ASSOC:
   2910       1.90      onoe 		break;
   2911       1.84   thorpej 	}
   2912       1.84   thorpej 
   2913  1.130.2.1     skrll 	if (ifp->if_link_state != linkstate) {
   2914  1.130.2.1     skrll 		ifp->if_link_state = linkstate;
   2915  1.130.2.1     skrll 		s = splnet();
   2916  1.130.2.1     skrll 		rt_ifmsg(ifp);
   2917  1.130.2.1     skrll 		splx(s);
   2918  1.130.2.1     skrll 	}
   2919  1.130.2.1     skrll 	ic->ic_state = nstate;
   2920       1.90      onoe 	/* skip standard ieee80211 handling */
   2921  1.130.2.1     skrll 	return 0;
   2922      1.116       kml }
   2923      1.116       kml 
   2924  1.130.2.1     skrll STATIC int
   2925      1.116       kml wi_set_tim(struct ieee80211com *ic, int aid, int which)
   2926      1.116       kml {
   2927      1.116       kml 	struct wi_softc *sc = ic->ic_softc;
   2928      1.116       kml 
   2929      1.116       kml 	aid &= ~0xc000;
   2930      1.116       kml 	if (which)
   2931      1.116       kml 		aid |= 0x8000;
   2932      1.116       kml 
   2933      1.116       kml 	return wi_write_val(sc, WI_RID_SET_TIM, aid);
   2934       1.90      onoe }
   2935       1.90      onoe 
   2936  1.130.2.1     skrll STATIC int
   2937      1.123    dyoung wi_scan_ap(struct wi_softc *sc, u_int16_t chanmask, u_int16_t txrate)
   2938       1.90      onoe {
   2939       1.90      onoe 	int error = 0;
   2940       1.90      onoe 	u_int16_t val[2];
   2941       1.84   thorpej 
   2942       1.90      onoe 	if (!sc->sc_enabled)
   2943       1.90      onoe 		return ENXIO;
   2944       1.90      onoe 	switch (sc->sc_firmware_type) {
   2945       1.90      onoe 	case WI_LUCENT:
   2946       1.90      onoe 		(void)wi_cmd(sc, WI_CMD_INQUIRE, WI_INFO_SCAN_RESULTS, 0, 0);
   2947       1.90      onoe 		break;
   2948       1.90      onoe 	case WI_INTERSIL:
   2949  1.130.2.1     skrll 		val[0] = htole16(chanmask);	/* channel */
   2950  1.130.2.1     skrll 		val[1] = htole16(txrate);	/* tx rate */
   2951       1.90      onoe 		error = wi_write_rid(sc, WI_RID_SCAN_REQ, val, sizeof(val));
   2952       1.90      onoe 		break;
   2953       1.90      onoe 	case WI_SYMBOL:
   2954       1.90      onoe 		/*
   2955       1.90      onoe 		 * XXX only supported on 3.x ?
   2956       1.84   thorpej 		 */
   2957  1.130.2.5     skrll 		val[0] = htole16(BSCAN_BCAST | BSCAN_ONETIME);
   2958       1.90      onoe 		error = wi_write_rid(sc, WI_RID_BCAST_SCAN_REQ,
   2959       1.90      onoe 		    val, sizeof(val[0]));
   2960       1.84   thorpej 		break;
   2961       1.84   thorpej 	}
   2962       1.90      onoe 	if (error == 0) {
   2963       1.90      onoe 		sc->sc_scan_timer = WI_SCAN_WAIT;
   2964       1.90      onoe 		sc->sc_ic.ic_if.if_timer = 1;
   2965      1.123    dyoung 		DPRINTF(("wi_scan_ap: start scanning, "
   2966      1.123    dyoung 			"chanmask 0x%x txrate 0x%x\n", chanmask, txrate));
   2967       1.90      onoe 	}
   2968       1.84   thorpej 	return error;
   2969       1.84   thorpej }
   2970       1.84   thorpej 
   2971  1.130.2.1     skrll STATIC void
   2972       1.90      onoe wi_scan_result(struct wi_softc *sc, int fid, int cnt)
   2973       1.84   thorpej {
   2974      1.123    dyoung #define	N(a)	(sizeof (a) / sizeof (a[0]))
   2975       1.90      onoe 	int i, naps, off, szbuf;
   2976       1.90      onoe 	struct wi_scan_header ws_hdr;	/* Prism2 header */
   2977       1.90      onoe 	struct wi_scan_data_p2 ws_dat;	/* Prism2 scantable*/
   2978       1.90      onoe 	struct wi_apinfo *ap;
   2979       1.90      onoe 
   2980       1.90      onoe 	off = sizeof(u_int16_t) * 2;
   2981       1.90      onoe 	memset(&ws_hdr, 0, sizeof(ws_hdr));
   2982       1.90      onoe 	switch (sc->sc_firmware_type) {
   2983       1.90      onoe 	case WI_INTERSIL:
   2984       1.90      onoe 		wi_read_bap(sc, fid, off, &ws_hdr, sizeof(ws_hdr));
   2985       1.90      onoe 		off += sizeof(ws_hdr);
   2986       1.90      onoe 		szbuf = sizeof(struct wi_scan_data_p2);
   2987       1.90      onoe 		break;
   2988       1.90      onoe 	case WI_SYMBOL:
   2989       1.90      onoe 		szbuf = sizeof(struct wi_scan_data_p2) + 6;
   2990       1.90      onoe 		break;
   2991       1.90      onoe 	case WI_LUCENT:
   2992       1.90      onoe 		szbuf = sizeof(struct wi_scan_data);
   2993       1.84   thorpej 		break;
   2994      1.123    dyoung 	default:
   2995      1.123    dyoung 		printf("%s: wi_scan_result: unknown firmware type %u\n",
   2996      1.123    dyoung 		    sc->sc_dev.dv_xname, sc->sc_firmware_type);
   2997      1.123    dyoung 		naps = 0;
   2998      1.123    dyoung 		goto done;
   2999       1.84   thorpej 	}
   3000       1.90      onoe 	naps = (cnt * 2 + 2 - off) / szbuf;
   3001      1.123    dyoung 	if (naps > N(sc->sc_aps))
   3002      1.123    dyoung 		naps = N(sc->sc_aps);
   3003       1.90      onoe 	sc->sc_naps = naps;
   3004       1.90      onoe 	/* Read Data */
   3005       1.90      onoe 	ap = sc->sc_aps;
   3006       1.90      onoe 	memset(&ws_dat, 0, sizeof(ws_dat));
   3007       1.90      onoe 	for (i = 0; i < naps; i++, ap++) {
   3008       1.90      onoe 		wi_read_bap(sc, fid, off, &ws_dat,
   3009       1.90      onoe 		    (sizeof(ws_dat) < szbuf ? sizeof(ws_dat) : szbuf));
   3010       1.90      onoe 		DPRINTF2(("wi_scan_result: #%d: off %d bssid %s\n", i, off,
   3011       1.90      onoe 		    ether_sprintf(ws_dat.wi_bssid)));
   3012       1.90      onoe 		off += szbuf;
   3013       1.90      onoe 		ap->scanreason = le16toh(ws_hdr.wi_reason);
   3014       1.90      onoe 		memcpy(ap->bssid, ws_dat.wi_bssid, sizeof(ap->bssid));
   3015       1.90      onoe 		ap->channel = le16toh(ws_dat.wi_chid);
   3016       1.90      onoe 		ap->signal  = le16toh(ws_dat.wi_signal);
   3017       1.90      onoe 		ap->noise   = le16toh(ws_dat.wi_noise);
   3018       1.90      onoe 		ap->quality = ap->signal - ap->noise;
   3019       1.90      onoe 		ap->capinfo = le16toh(ws_dat.wi_capinfo);
   3020       1.90      onoe 		ap->interval = le16toh(ws_dat.wi_interval);
   3021       1.90      onoe 		ap->rate    = le16toh(ws_dat.wi_rate);
   3022       1.90      onoe 		ap->namelen = le16toh(ws_dat.wi_namelen);
   3023       1.90      onoe 		if (ap->namelen > sizeof(ap->name))
   3024       1.90      onoe 			ap->namelen = sizeof(ap->name);
   3025       1.90      onoe 		memcpy(ap->name, ws_dat.wi_name, ap->namelen);
   3026       1.90      onoe 	}
   3027      1.123    dyoung done:
   3028       1.90      onoe 	/* Done scanning */
   3029       1.90      onoe 	sc->sc_scan_timer = 0;
   3030       1.90      onoe 	DPRINTF(("wi_scan_result: scan complete: ap %d\n", naps));
   3031      1.123    dyoung #undef N
   3032      1.119    dyoung }
   3033      1.119    dyoung 
   3034  1.130.2.1     skrll STATIC void
   3035      1.119    dyoung wi_dump_pkt(struct wi_frame *wh, struct ieee80211_node *ni, int rssi)
   3036      1.119    dyoung {
   3037      1.119    dyoung 	ieee80211_dump_pkt((u_int8_t *) &wh->wi_whdr, sizeof(wh->wi_whdr),
   3038  1.130.2.1     skrll 	    ni	? ni->ni_rates.rs_rates[ni->ni_txrate] & IEEE80211_RATE_VAL
   3039  1.130.2.1     skrll 		: -1,
   3040  1.130.2.1     skrll 	    rssi);
   3041      1.119    dyoung 	printf(" status 0x%x rx_tstamp1 %u rx_tstamp0 0x%u rx_silence %u\n",
   3042      1.119    dyoung 		le16toh(wh->wi_status), le16toh(wh->wi_rx_tstamp1),
   3043      1.119    dyoung 		le16toh(wh->wi_rx_tstamp0), wh->wi_rx_silence);
   3044      1.119    dyoung 	printf(" rx_signal %u rx_rate %u rx_flow %u\n",
   3045      1.119    dyoung 		wh->wi_rx_signal, wh->wi_rx_rate, wh->wi_rx_flow);
   3046      1.119    dyoung 	printf(" tx_rtry %u tx_rate %u tx_ctl 0x%x dat_len %u\n",
   3047      1.119    dyoung 		wh->wi_tx_rtry, wh->wi_tx_rate,
   3048      1.119    dyoung 		le16toh(wh->wi_tx_ctl), le16toh(wh->wi_dat_len));
   3049      1.119    dyoung 	printf(" ehdr dst %s src %s type 0x%x\n",
   3050      1.119    dyoung 		ether_sprintf(wh->wi_ehdr.ether_dhost),
   3051      1.119    dyoung 		ether_sprintf(wh->wi_ehdr.ether_shost),
   3052      1.119    dyoung 		wh->wi_ehdr.ether_type);
   3053        1.1    ichiro }
   3054