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ath.c revision 1.106
      1  1.106  jmcneill /*	$NetBSD: ath.c,v 1.106 2009/08/02 13:26:33 jmcneill Exp $	*/
      2    1.9    itojun 
      3    1.1    dyoung /*-
      4   1.47    dyoung  * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
      5    1.1    dyoung  * All rights reserved.
      6    1.1    dyoung  *
      7    1.1    dyoung  * Redistribution and use in source and binary forms, with or without
      8    1.1    dyoung  * modification, are permitted provided that the following conditions
      9    1.1    dyoung  * are met:
     10    1.1    dyoung  * 1. Redistributions of source code must retain the above copyright
     11    1.1    dyoung  *    notice, this list of conditions and the following disclaimer,
     12    1.1    dyoung  *    without modification.
     13    1.1    dyoung  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
     14    1.1    dyoung  *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
     15    1.1    dyoung  *    redistribution must be conditioned upon including a substantially
     16    1.1    dyoung  *    similar Disclaimer requirement for further binary redistribution.
     17    1.1    dyoung  * 3. Neither the names of the above-listed copyright holders nor the names
     18    1.1    dyoung  *    of any contributors may be used to endorse or promote products derived
     19    1.1    dyoung  *    from this software without specific prior written permission.
     20    1.1    dyoung  *
     21    1.1    dyoung  * Alternatively, this software may be distributed under the terms of the
     22    1.1    dyoung  * GNU General Public License ("GPL") version 2 as published by the Free
     23    1.1    dyoung  * Software Foundation.
     24    1.1    dyoung  *
     25    1.1    dyoung  * NO WARRANTY
     26    1.1    dyoung  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     27    1.1    dyoung  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     28    1.1    dyoung  * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
     29    1.1    dyoung  * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
     30    1.1    dyoung  * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
     31    1.1    dyoung  * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32    1.1    dyoung  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33    1.1    dyoung  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
     34    1.1    dyoung  * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35    1.1    dyoung  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     36    1.1    dyoung  * THE POSSIBILITY OF SUCH DAMAGES.
     37    1.1    dyoung  */
     38    1.1    dyoung 
     39    1.1    dyoung #include <sys/cdefs.h>
     40    1.2    dyoung #ifdef __FreeBSD__
     41   1.61     skrll __FBSDID("$FreeBSD: src/sys/dev/ath/if_ath.c,v 1.104 2005/09/16 10:09:23 ru Exp $");
     42    1.2    dyoung #endif
     43    1.2    dyoung #ifdef __NetBSD__
     44  1.106  jmcneill __KERNEL_RCSID(0, "$NetBSD: ath.c,v 1.106 2009/08/02 13:26:33 jmcneill Exp $");
     45    1.2    dyoung #endif
     46    1.1    dyoung 
     47    1.1    dyoung /*
     48    1.1    dyoung  * Driver for the Atheros Wireless LAN controller.
     49    1.1    dyoung  *
     50    1.1    dyoung  * This software is derived from work of Atsushi Onoe; his contribution
     51    1.1    dyoung  * is greatly appreciated.
     52    1.1    dyoung  */
     53    1.1    dyoung 
     54    1.1    dyoung #include "opt_inet.h"
     55    1.1    dyoung 
     56    1.2    dyoung #ifdef __NetBSD__
     57    1.2    dyoung #include "bpfilter.h"
     58    1.2    dyoung #endif /* __NetBSD__ */
     59    1.2    dyoung 
     60    1.1    dyoung #include <sys/param.h>
     61   1.73     blymn #include <sys/reboot.h>
     62   1.73     blymn #include <sys/systm.h>
     63    1.2    dyoung #include <sys/types.h>
     64    1.1    dyoung #include <sys/sysctl.h>
     65   1.73     blymn #include <sys/mbuf.h>
     66    1.1    dyoung #include <sys/malloc.h>
     67    1.1    dyoung #include <sys/kernel.h>
     68    1.1    dyoung #include <sys/socket.h>
     69    1.1    dyoung #include <sys/sockio.h>
     70    1.1    dyoung #include <sys/errno.h>
     71    1.1    dyoung #include <sys/callout.h>
     72   1.87        ad #include <sys/bus.h>
     73    1.1    dyoung #include <sys/endian.h>
     74    1.1    dyoung 
     75    1.1    dyoung #include <net/if.h>
     76    1.1    dyoung #include <net/if_dl.h>
     77    1.1    dyoung #include <net/if_media.h>
     78   1.55    dyoung #include <net/if_types.h>
     79    1.1    dyoung #include <net/if_arp.h>
     80    1.2    dyoung #include <net/if_ether.h>
     81    1.1    dyoung #include <net/if_llc.h>
     82    1.1    dyoung 
     83   1.47    dyoung #include <net80211/ieee80211_netbsd.h>
     84    1.1    dyoung #include <net80211/ieee80211_var.h>
     85    1.1    dyoung 
     86    1.2    dyoung #if NBPFILTER > 0
     87    1.1    dyoung #include <net/bpf.h>
     88    1.2    dyoung #endif
     89    1.1    dyoung 
     90    1.1    dyoung #ifdef INET
     91   1.73     blymn #include <netinet/in.h>
     92    1.1    dyoung #endif
     93    1.1    dyoung 
     94   1.48    martin #include <sys/device.h>
     95   1.47    dyoung #include <dev/ic/ath_netbsd.h>
     96    1.2    dyoung 
     97    1.1    dyoung #define	AR_DEBUG
     98    1.2    dyoung #include <dev/ic/athvar.h>
     99  1.104       alc #include "ah_desc.h"
    100  1.104       alc #include "ah_devid.h"	/* XXX for softled */
    101  1.104       alc #include "opt_ah.h"
    102    1.1    dyoung 
    103   1.68    dyoung #ifdef ATH_TX99_DIAG
    104   1.68    dyoung #include <dev/ath/ath_tx99/ath_tx99.h>
    105   1.68    dyoung #endif
    106   1.68    dyoung 
    107   1.55    dyoung /* unaligned little endian access */
    108    1.1    dyoung #define LE_READ_2(p)							\
    109    1.1    dyoung 	((u_int16_t)							\
    110    1.1    dyoung 	 ((((u_int8_t *)(p))[0]      ) | (((u_int8_t *)(p))[1] <<  8)))
    111    1.1    dyoung #define LE_READ_4(p)							\
    112    1.1    dyoung 	((u_int32_t)							\
    113    1.1    dyoung 	 ((((u_int8_t *)(p))[0]      ) | (((u_int8_t *)(p))[1] <<  8) |	\
    114    1.1    dyoung 	  (((u_int8_t *)(p))[2] << 16) | (((u_int8_t *)(p))[3] << 24)))
    115    1.1    dyoung 
    116   1.47    dyoung enum {
    117   1.47    dyoung 	ATH_LED_TX,
    118   1.47    dyoung 	ATH_LED_RX,
    119   1.47    dyoung 	ATH_LED_POLL,
    120   1.47    dyoung };
    121   1.47    dyoung 
    122   1.74   gdamore #ifdef	AH_NEED_DESC_SWAP
    123   1.74   gdamore #define	HTOAH32(x)	htole32(x)
    124   1.74   gdamore #else
    125   1.74   gdamore #define	HTOAH32(x)	(x)
    126   1.74   gdamore #endif
    127   1.74   gdamore 
    128   1.55    dyoung static int	ath_ifinit(struct ifnet *);
    129   1.55    dyoung static int	ath_init(struct ath_softc *);
    130   1.47    dyoung static void	ath_stop_locked(struct ifnet *, int);
    131   1.40    dyoung static void	ath_stop(struct ifnet *, int);
    132    1.1    dyoung static void	ath_start(struct ifnet *);
    133    1.1    dyoung static int	ath_media_change(struct ifnet *);
    134    1.1    dyoung static void	ath_watchdog(struct ifnet *);
    135   1.82  christos static int	ath_ioctl(struct ifnet *, u_long, void *);
    136    1.1    dyoung static void	ath_fatal_proc(void *, int);
    137    1.1    dyoung static void	ath_rxorn_proc(void *, int);
    138    1.1    dyoung static void	ath_bmiss_proc(void *, int);
    139   1.68    dyoung static void	ath_radar_proc(void *, int);
    140   1.47    dyoung static int	ath_key_alloc(struct ieee80211com *,
    141   1.61     skrll 			const struct ieee80211_key *,
    142   1.61     skrll 			ieee80211_keyix *, ieee80211_keyix *);
    143   1.47    dyoung static int	ath_key_delete(struct ieee80211com *,
    144   1.47    dyoung 			const struct ieee80211_key *);
    145   1.47    dyoung static int	ath_key_set(struct ieee80211com *, const struct ieee80211_key *,
    146   1.47    dyoung 			const u_int8_t mac[IEEE80211_ADDR_LEN]);
    147   1.47    dyoung static void	ath_key_update_begin(struct ieee80211com *);
    148   1.47    dyoung static void	ath_key_update_end(struct ieee80211com *);
    149    1.1    dyoung static void	ath_mode_init(struct ath_softc *);
    150   1.47    dyoung static void	ath_setslottime(struct ath_softc *);
    151   1.47    dyoung static void	ath_updateslot(struct ifnet *);
    152   1.47    dyoung static int	ath_beaconq_setup(struct ath_hal *);
    153    1.1    dyoung static int	ath_beacon_alloc(struct ath_softc *, struct ieee80211_node *);
    154   1.47    dyoung static void	ath_beacon_setup(struct ath_softc *, struct ath_buf *);
    155   1.47    dyoung static void	ath_beacon_proc(void *, int);
    156   1.47    dyoung static void	ath_bstuck_proc(void *, int);
    157    1.1    dyoung static void	ath_beacon_free(struct ath_softc *);
    158    1.1    dyoung static void	ath_beacon_config(struct ath_softc *);
    159   1.47    dyoung static void	ath_descdma_cleanup(struct ath_softc *sc,
    160   1.47    dyoung 			struct ath_descdma *, ath_bufhead *);
    161    1.1    dyoung static int	ath_desc_alloc(struct ath_softc *);
    162    1.1    dyoung static void	ath_desc_free(struct ath_softc *);
    163   1.47    dyoung static struct ieee80211_node *ath_node_alloc(struct ieee80211_node_table *);
    164   1.47    dyoung static void	ath_node_free(struct ieee80211_node *);
    165   1.47    dyoung static u_int8_t	ath_node_getrssi(const struct ieee80211_node *);
    166    1.1    dyoung static int	ath_rxbuf_init(struct ath_softc *, struct ath_buf *);
    167   1.47    dyoung static void	ath_recv_mgmt(struct ieee80211com *ic, struct mbuf *m,
    168   1.47    dyoung 			struct ieee80211_node *ni,
    169   1.47    dyoung 			int subtype, int rssi, u_int32_t rstamp);
    170   1.47    dyoung static void	ath_setdefantenna(struct ath_softc *, u_int);
    171    1.1    dyoung static void	ath_rx_proc(void *, int);
    172   1.47    dyoung static struct ath_txq *ath_txq_setup(struct ath_softc*, int qtype, int subtype);
    173   1.47    dyoung static int	ath_tx_setup(struct ath_softc *, int, int);
    174   1.47    dyoung static int	ath_wme_update(struct ieee80211com *);
    175   1.47    dyoung static void	ath_tx_cleanupq(struct ath_softc *, struct ath_txq *);
    176   1.47    dyoung static void	ath_tx_cleanup(struct ath_softc *);
    177    1.1    dyoung static int	ath_tx_start(struct ath_softc *, struct ieee80211_node *,
    178    1.1    dyoung 			     struct ath_buf *, struct mbuf *);
    179   1.47    dyoung static void	ath_tx_proc_q0(void *, int);
    180   1.47    dyoung static void	ath_tx_proc_q0123(void *, int);
    181    1.1    dyoung static void	ath_tx_proc(void *, int);
    182    1.1    dyoung static int	ath_chan_set(struct ath_softc *, struct ieee80211_channel *);
    183    1.1    dyoung static void	ath_draintxq(struct ath_softc *);
    184    1.1    dyoung static void	ath_stoprecv(struct ath_softc *);
    185    1.1    dyoung static int	ath_startrecv(struct ath_softc *);
    186   1.47    dyoung static void	ath_chan_change(struct ath_softc *, struct ieee80211_channel *);
    187    1.1    dyoung static void	ath_next_scan(void *);
    188    1.1    dyoung static void	ath_calibrate(void *);
    189    1.1    dyoung static int	ath_newstate(struct ieee80211com *, enum ieee80211_state, int);
    190   1.55    dyoung static void	ath_setup_stationkey(struct ieee80211_node *);
    191   1.61     skrll static void	ath_newassoc(struct ieee80211_node *, int);
    192   1.47    dyoung static int	ath_getchannels(struct ath_softc *, u_int cc,
    193   1.47    dyoung 			HAL_BOOL outdoor, HAL_BOOL xchanmode);
    194   1.47    dyoung static void	ath_led_event(struct ath_softc *, int);
    195   1.47    dyoung static void	ath_update_txpow(struct ath_softc *);
    196   1.83    dyoung static void	ath_freetx(struct mbuf *);
    197   1.89    dyoung static void	ath_restore_diversity(struct ath_softc *);
    198    1.1    dyoung 
    199   1.47    dyoung static int	ath_rate_setup(struct ath_softc *, u_int mode);
    200    1.1    dyoung static void	ath_setcurmode(struct ath_softc *, enum ieee80211_phymode);
    201    1.1    dyoung 
    202   1.64    rpaulo #if NBPFILTER > 0
    203   1.47    dyoung static void	ath_bpfattach(struct ath_softc *);
    204   1.64    rpaulo #endif
    205   1.47    dyoung static void	ath_announce(struct ath_softc *);
    206   1.20    dyoung 
    207   1.47    dyoung int ath_dwelltime = 200;		/* 5 channels/second */
    208   1.47    dyoung int ath_calinterval = 30;		/* calibrate every 30 secs */
    209   1.47    dyoung int ath_outdoor = AH_TRUE;		/* outdoor operation */
    210   1.47    dyoung int ath_xchanmode = AH_TRUE;		/* enable extended channels */
    211   1.47    dyoung int ath_countrycode = CTRY_DEFAULT;	/* country code */
    212   1.47    dyoung int ath_regdomain = 0;			/* regulatory domain */
    213   1.47    dyoung int ath_debug = 0;
    214   1.68    dyoung int ath_rxbuf = ATH_RXBUF;		/* # rx buffers to allocate */
    215   1.68    dyoung int ath_txbuf = ATH_TXBUF;		/* # tx buffers to allocate */
    216    1.1    dyoung 
    217    1.1    dyoung #ifdef AR_DEBUG
    218   1.25    dyoung enum {
    219   1.25    dyoung 	ATH_DEBUG_XMIT		= 0x00000001,	/* basic xmit operation */
    220   1.25    dyoung 	ATH_DEBUG_XMIT_DESC	= 0x00000002,	/* xmit descriptors */
    221   1.25    dyoung 	ATH_DEBUG_RECV		= 0x00000004,	/* basic recv operation */
    222   1.25    dyoung 	ATH_DEBUG_RECV_DESC	= 0x00000008,	/* recv descriptors */
    223   1.25    dyoung 	ATH_DEBUG_RATE		= 0x00000010,	/* rate control */
    224   1.25    dyoung 	ATH_DEBUG_RESET		= 0x00000020,	/* reset processing */
    225   1.25    dyoung 	ATH_DEBUG_MODE		= 0x00000040,	/* mode init/setup */
    226   1.25    dyoung 	ATH_DEBUG_BEACON 	= 0x00000080,	/* beacon handling */
    227   1.25    dyoung 	ATH_DEBUG_WATCHDOG 	= 0x00000100,	/* watchdog timeout */
    228   1.25    dyoung 	ATH_DEBUG_INTR		= 0x00001000,	/* ISR */
    229   1.25    dyoung 	ATH_DEBUG_TX_PROC	= 0x00002000,	/* tx ISR proc */
    230   1.25    dyoung 	ATH_DEBUG_RX_PROC	= 0x00004000,	/* rx ISR proc */
    231   1.25    dyoung 	ATH_DEBUG_BEACON_PROC	= 0x00008000,	/* beacon ISR proc */
    232   1.25    dyoung 	ATH_DEBUG_CALIBRATE	= 0x00010000,	/* periodic calibration */
    233   1.47    dyoung 	ATH_DEBUG_KEYCACHE	= 0x00020000,	/* key cache management */
    234   1.47    dyoung 	ATH_DEBUG_STATE		= 0x00040000,	/* 802.11 state transitions */
    235   1.47    dyoung 	ATH_DEBUG_NODE		= 0x00080000,	/* node management */
    236   1.47    dyoung 	ATH_DEBUG_LED		= 0x00100000,	/* led management */
    237   1.68    dyoung 	ATH_DEBUG_FF		= 0x00200000,	/* fast frames */
    238   1.68    dyoung 	ATH_DEBUG_DFS		= 0x00400000,	/* DFS processing */
    239   1.47    dyoung 	ATH_DEBUG_FATAL		= 0x80000000,	/* fatal errors */
    240   1.25    dyoung 	ATH_DEBUG_ANY		= 0xffffffff
    241   1.25    dyoung };
    242   1.47    dyoung #define	IFF_DUMPPKTS(sc, m) \
    243   1.47    dyoung 	((sc->sc_debug & (m)) || \
    244   1.47    dyoung 	    (sc->sc_if.if_flags & (IFF_DEBUG|IFF_LINK2)) == (IFF_DEBUG|IFF_LINK2))
    245   1.47    dyoung #define	DPRINTF(sc, m, fmt, ...) do {				\
    246   1.47    dyoung 	if (sc->sc_debug & (m))					\
    247   1.47    dyoung 		printf(fmt, __VA_ARGS__);			\
    248   1.47    dyoung } while (0)
    249   1.47    dyoung #define	KEYPRINTF(sc, ix, hk, mac) do {				\
    250   1.47    dyoung 	if (sc->sc_debug & ATH_DEBUG_KEYCACHE)			\
    251   1.47    dyoung 		ath_keyprint(__func__, ix, hk, mac);		\
    252   1.47    dyoung } while (0)
    253   1.47    dyoung static	void ath_printrxbuf(struct ath_buf *bf, int);
    254   1.47    dyoung static	void ath_printtxbuf(struct ath_buf *bf, int);
    255    1.1    dyoung #else
    256  1.104       alc #define        IFF_DUMPPKTS(sc, m) \
    257   1.47    dyoung 	((sc->sc_if.if_flags & (IFF_DEBUG|IFF_LINK2)) == (IFF_DEBUG|IFF_LINK2))
    258  1.104       alc #define        DPRINTF(m, fmt, ...)
    259  1.104       alc #define        KEYPRINTF(sc, k, ix, mac)
    260    1.1    dyoung #endif
    261    1.1    dyoung 
    262   1.47    dyoung MALLOC_DEFINE(M_ATHDEV, "athdev", "ath driver dma buffers");
    263    1.3    ichiro 
    264    1.1    dyoung int
    265    1.1    dyoung ath_attach(u_int16_t devid, struct ath_softc *sc)
    266    1.1    dyoung {
    267   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
    268    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    269   1.55    dyoung 	struct ath_hal *ah = NULL;
    270    1.1    dyoung 	HAL_STATUS status;
    271   1.47    dyoung 	int error = 0, i;
    272    1.1    dyoung 
    273   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_ANY, "%s: devid 0x%x\n", __func__, devid);
    274    1.1    dyoung 
    275  1.102     joerg 	memcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
    276    1.1    dyoung 
    277   1.74   gdamore 	ah = ath_hal_attach(devid, sc, sc->sc_st, sc->sc_sh, &status);
    278    1.1    dyoung 	if (ah == NULL) {
    279    1.1    dyoung 		if_printf(ifp, "unable to attach hardware; HAL status %u\n",
    280    1.1    dyoung 			status);
    281    1.1    dyoung 		error = ENXIO;
    282    1.1    dyoung 		goto bad;
    283    1.1    dyoung 	}
    284   1.18    dyoung 	if (ah->ah_abi != HAL_ABI_VERSION) {
    285   1.47    dyoung 		if_printf(ifp, "HAL ABI mismatch detected "
    286   1.47    dyoung 			"(HAL:0x%x != driver:0x%x)\n",
    287   1.18    dyoung 			ah->ah_abi, HAL_ABI_VERSION);
    288   1.18    dyoung 		error = ENXIO;
    289   1.18    dyoung 		goto bad;
    290   1.18    dyoung 	}
    291    1.1    dyoung 	sc->sc_ah = ah;
    292   1.99    dyoung 
    293  1.102     joerg 	if (!prop_dictionary_set_bool(device_properties(sc->sc_dev),
    294   1.99    dyoung 	    "pmf-powerdown", false))
    295   1.99    dyoung 		goto bad;
    296    1.1    dyoung 
    297    1.1    dyoung 	/*
    298   1.47    dyoung 	 * Check if the MAC has multi-rate retry support.
    299   1.47    dyoung 	 * We do this by trying to setup a fake extended
    300   1.47    dyoung 	 * descriptor.  MAC's that don't have support will
    301   1.47    dyoung 	 * return false w/o doing anything.  MAC's that do
    302   1.47    dyoung 	 * support it will return true w/o doing anything.
    303   1.47    dyoung 	 */
    304   1.47    dyoung 	sc->sc_mrretry = ath_hal_setupxtxdesc(ah, NULL, 0,0, 0,0, 0,0);
    305   1.47    dyoung 
    306   1.47    dyoung 	/*
    307   1.47    dyoung 	 * Check if the device has hardware counters for PHY
    308   1.47    dyoung 	 * errors.  If so we need to enable the MIB interrupt
    309   1.47    dyoung 	 * so we can act on stat triggers.
    310   1.47    dyoung 	 */
    311   1.47    dyoung 	if (ath_hal_hwphycounters(ah))
    312   1.47    dyoung 		sc->sc_needmib = 1;
    313   1.47    dyoung 
    314   1.47    dyoung 	/*
    315   1.47    dyoung 	 * Get the hardware key cache size.
    316   1.47    dyoung 	 */
    317   1.47    dyoung 	sc->sc_keymax = ath_hal_keycachesize(ah);
    318   1.55    dyoung 	if (sc->sc_keymax > ATH_KEYMAX) {
    319   1.55    dyoung 		if_printf(ifp, "Warning, using only %u of %u key cache slots\n",
    320   1.55    dyoung 			ATH_KEYMAX, sc->sc_keymax);
    321   1.55    dyoung 		sc->sc_keymax = ATH_KEYMAX;
    322   1.47    dyoung 	}
    323   1.47    dyoung 	/*
    324   1.47    dyoung 	 * Reset the key cache since some parts do not
    325   1.47    dyoung 	 * reset the contents on initial power up.
    326   1.47    dyoung 	 */
    327   1.47    dyoung 	for (i = 0; i < sc->sc_keymax; i++)
    328   1.47    dyoung 		ath_hal_keyreset(ah, i);
    329   1.47    dyoung 	/*
    330   1.47    dyoung 	 * Mark key cache slots associated with global keys
    331   1.47    dyoung 	 * as in use.  If we knew TKIP was not to be used we
    332   1.47    dyoung 	 * could leave the +32, +64, and +32+64 slots free.
    333   1.47    dyoung 	 * XXX only for splitmic.
    334   1.47    dyoung 	 */
    335   1.47    dyoung 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    336   1.47    dyoung 		setbit(sc->sc_keymap, i);
    337   1.47    dyoung 		setbit(sc->sc_keymap, i+32);
    338   1.47    dyoung 		setbit(sc->sc_keymap, i+64);
    339   1.47    dyoung 		setbit(sc->sc_keymap, i+32+64);
    340   1.47    dyoung 	}
    341   1.47    dyoung 
    342   1.47    dyoung 	/*
    343    1.1    dyoung 	 * Collect the channel list using the default country
    344    1.1    dyoung 	 * code and including outdoor channels.  The 802.11 layer
    345    1.1    dyoung 	 * is resposible for filtering this list based on settings
    346    1.1    dyoung 	 * like the phy mode.
    347    1.1    dyoung 	 */
    348   1.47    dyoung 	error = ath_getchannels(sc, ath_countrycode,
    349   1.47    dyoung 			ath_outdoor, ath_xchanmode);
    350    1.1    dyoung 	if (error != 0)
    351    1.1    dyoung 		goto bad;
    352    1.1    dyoung 
    353    1.1    dyoung 	/*
    354    1.1    dyoung 	 * Setup rate tables for all potential media types.
    355    1.1    dyoung 	 */
    356    1.1    dyoung 	ath_rate_setup(sc, IEEE80211_MODE_11A);
    357    1.1    dyoung 	ath_rate_setup(sc, IEEE80211_MODE_11B);
    358    1.1    dyoung 	ath_rate_setup(sc, IEEE80211_MODE_11G);
    359   1.47    dyoung 	ath_rate_setup(sc, IEEE80211_MODE_TURBO_A);
    360   1.47    dyoung 	ath_rate_setup(sc, IEEE80211_MODE_TURBO_G);
    361   1.47    dyoung 	/* NB: setup here so ath_rate_update is happy */
    362   1.47    dyoung 	ath_setcurmode(sc, IEEE80211_MODE_11A);
    363    1.1    dyoung 
    364   1.47    dyoung 	/*
    365   1.47    dyoung 	 * Allocate tx+rx descriptors and populate the lists.
    366   1.47    dyoung 	 */
    367    1.1    dyoung 	error = ath_desc_alloc(sc);
    368    1.1    dyoung 	if (error != 0) {
    369    1.1    dyoung 		if_printf(ifp, "failed to allocate descriptors: %d\n", error);
    370    1.1    dyoung 		goto bad;
    371    1.1    dyoung 	}
    372   1.47    dyoung 	ATH_CALLOUT_INIT(&sc->sc_scan_ch, debug_mpsafenet ? CALLOUT_MPSAFE : 0);
    373   1.47    dyoung 	ATH_CALLOUT_INIT(&sc->sc_cal_ch, CALLOUT_MPSAFE);
    374  1.104       alc #if 0
    375   1.68    dyoung 	ATH_CALLOUT_INIT(&sc->sc_dfs_ch, CALLOUT_MPSAFE);
    376  1.104       alc #endif
    377    1.1    dyoung 
    378   1.18    dyoung 	ATH_TXBUF_LOCK_INIT(sc);
    379    1.1    dyoung 
    380   1.47    dyoung 	TASK_INIT(&sc->sc_rxtask, 0, ath_rx_proc, sc);
    381   1.47    dyoung 	TASK_INIT(&sc->sc_rxorntask, 0, ath_rxorn_proc, sc);
    382   1.47    dyoung 	TASK_INIT(&sc->sc_fataltask, 0, ath_fatal_proc, sc);
    383   1.47    dyoung 	TASK_INIT(&sc->sc_bmisstask, 0, ath_bmiss_proc, sc);
    384   1.68    dyoung 	TASK_INIT(&sc->sc_bstucktask,0, ath_bstuck_proc, sc);
    385   1.68    dyoung 	TASK_INIT(&sc->sc_radartask, 0, ath_radar_proc, sc);
    386    1.1    dyoung 
    387    1.1    dyoung 	/*
    388   1.47    dyoung 	 * Allocate hardware transmit queues: one queue for
    389   1.47    dyoung 	 * beacon frames and one data queue for each QoS
    390   1.47    dyoung 	 * priority.  Note that the hal handles reseting
    391   1.47    dyoung 	 * these queues at the needed time.
    392   1.47    dyoung 	 *
    393   1.47    dyoung 	 * XXX PS-Poll
    394    1.1    dyoung 	 */
    395   1.47    dyoung 	sc->sc_bhalq = ath_beaconq_setup(ah);
    396   1.31    dyoung 	if (sc->sc_bhalq == (u_int) -1) {
    397   1.31    dyoung 		if_printf(ifp, "unable to setup a beacon xmit queue!\n");
    398   1.47    dyoung 		error = EIO;
    399   1.47    dyoung 		goto bad2;
    400   1.47    dyoung 	}
    401   1.47    dyoung 	sc->sc_cabq = ath_txq_setup(sc, HAL_TX_QUEUE_CAB, 0);
    402   1.47    dyoung 	if (sc->sc_cabq == NULL) {
    403   1.47    dyoung 		if_printf(ifp, "unable to setup CAB xmit queue!\n");
    404   1.47    dyoung 		error = EIO;
    405   1.47    dyoung 		goto bad2;
    406   1.47    dyoung 	}
    407   1.47    dyoung 	/* NB: insure BK queue is the lowest priority h/w queue */
    408   1.47    dyoung 	if (!ath_tx_setup(sc, WME_AC_BK, HAL_WME_AC_BK)) {
    409   1.47    dyoung 		if_printf(ifp, "unable to setup xmit queue for %s traffic!\n",
    410   1.47    dyoung 			ieee80211_wme_acnames[WME_AC_BK]);
    411   1.47    dyoung 		error = EIO;
    412   1.31    dyoung 		goto bad2;
    413   1.31    dyoung 	}
    414   1.47    dyoung 	if (!ath_tx_setup(sc, WME_AC_BE, HAL_WME_AC_BE) ||
    415   1.47    dyoung 	    !ath_tx_setup(sc, WME_AC_VI, HAL_WME_AC_VI) ||
    416   1.47    dyoung 	    !ath_tx_setup(sc, WME_AC_VO, HAL_WME_AC_VO)) {
    417   1.73     blymn 		/*
    418   1.47    dyoung 		 * Not enough hardware tx queues to properly do WME;
    419   1.47    dyoung 		 * just punt and assign them all to the same h/w queue.
    420   1.47    dyoung 		 * We could do a better job of this if, for example,
    421   1.47    dyoung 		 * we allocate queues when we switch from station to
    422   1.47    dyoung 		 * AP mode.
    423   1.47    dyoung 		 */
    424   1.47    dyoung 		if (sc->sc_ac2q[WME_AC_VI] != NULL)
    425   1.47    dyoung 			ath_tx_cleanupq(sc, sc->sc_ac2q[WME_AC_VI]);
    426   1.47    dyoung 		if (sc->sc_ac2q[WME_AC_BE] != NULL)
    427   1.47    dyoung 			ath_tx_cleanupq(sc, sc->sc_ac2q[WME_AC_BE]);
    428   1.47    dyoung 		sc->sc_ac2q[WME_AC_BE] = sc->sc_ac2q[WME_AC_BK];
    429   1.47    dyoung 		sc->sc_ac2q[WME_AC_VI] = sc->sc_ac2q[WME_AC_BK];
    430   1.47    dyoung 		sc->sc_ac2q[WME_AC_VO] = sc->sc_ac2q[WME_AC_BK];
    431   1.47    dyoung 	}
    432   1.47    dyoung 
    433   1.73     blymn 	/*
    434   1.47    dyoung 	 * Special case certain configurations.  Note the
    435   1.47    dyoung 	 * CAB queue is handled by these specially so don't
    436   1.47    dyoung 	 * include them when checking the txq setup mask.
    437   1.47    dyoung 	 */
    438   1.47    dyoung 	switch (sc->sc_txqsetup &~ (1<<sc->sc_cabq->axq_qnum)) {
    439   1.47    dyoung 	case 0x01:
    440   1.47    dyoung 		TASK_INIT(&sc->sc_txtask, 0, ath_tx_proc_q0, sc);
    441   1.47    dyoung 		break;
    442   1.47    dyoung 	case 0x0f:
    443   1.47    dyoung 		TASK_INIT(&sc->sc_txtask, 0, ath_tx_proc_q0123, sc);
    444   1.47    dyoung 		break;
    445   1.47    dyoung 	default:
    446   1.47    dyoung 		TASK_INIT(&sc->sc_txtask, 0, ath_tx_proc, sc);
    447   1.47    dyoung 		break;
    448   1.47    dyoung 	}
    449   1.31    dyoung 
    450   1.47    dyoung 	/*
    451   1.47    dyoung 	 * Setup rate control.  Some rate control modules
    452   1.47    dyoung 	 * call back to change the anntena state so expose
    453   1.47    dyoung 	 * the necessary entry points.
    454   1.47    dyoung 	 * XXX maybe belongs in struct ath_ratectrl?
    455   1.47    dyoung 	 */
    456   1.47    dyoung 	sc->sc_setdefantenna = ath_setdefantenna;
    457   1.47    dyoung 	sc->sc_rc = ath_rate_attach(sc);
    458   1.47    dyoung 	if (sc->sc_rc == NULL) {
    459   1.47    dyoung 		error = EIO;
    460   1.25    dyoung 		goto bad2;
    461    1.1    dyoung 	}
    462    1.1    dyoung 
    463   1.47    dyoung 	sc->sc_blinking = 0;
    464   1.47    dyoung 	sc->sc_ledstate = 1;
    465   1.47    dyoung 	sc->sc_ledon = 0;			/* low true */
    466   1.47    dyoung 	sc->sc_ledidle = (2700*hz)/1000;	/* 2.7sec */
    467   1.47    dyoung 	ATH_CALLOUT_INIT(&sc->sc_ledtimer, CALLOUT_MPSAFE);
    468   1.47    dyoung 	/*
    469   1.47    dyoung 	 * Auto-enable soft led processing for IBM cards and for
    470   1.47    dyoung 	 * 5211 minipci cards.  Users can also manually enable/disable
    471   1.47    dyoung 	 * support with a sysctl.
    472   1.47    dyoung 	 */
    473   1.47    dyoung 	sc->sc_softled = (devid == AR5212_DEVID_IBM || devid == AR5211_DEVID);
    474   1.47    dyoung 	if (sc->sc_softled) {
    475   1.47    dyoung 		ath_hal_gpioCfgOutput(ah, sc->sc_ledpin);
    476   1.47    dyoung 		ath_hal_gpioset(ah, sc->sc_ledpin, !sc->sc_ledon);
    477   1.47    dyoung 	}
    478   1.47    dyoung 
    479    1.1    dyoung 	ifp->if_softc = sc;
    480    1.1    dyoung 	ifp->if_flags = IFF_SIMPLEX | IFF_BROADCAST | IFF_MULTICAST;
    481    1.1    dyoung 	ifp->if_start = ath_start;
    482   1.93  jmcneill 	ifp->if_stop = ath_stop;
    483    1.1    dyoung 	ifp->if_watchdog = ath_watchdog;
    484    1.1    dyoung 	ifp->if_ioctl = ath_ioctl;
    485   1.55    dyoung 	ifp->if_init = ath_ifinit;
    486    1.2    dyoung 	IFQ_SET_READY(&ifp->if_snd);
    487    1.1    dyoung 
    488   1.47    dyoung 	ic->ic_ifp = ifp;
    489   1.47    dyoung 	ic->ic_reset = ath_reset;
    490    1.1    dyoung 	ic->ic_newassoc = ath_newassoc;
    491   1.47    dyoung 	ic->ic_updateslot = ath_updateslot;
    492   1.47    dyoung 	ic->ic_wme.wme_update = ath_wme_update;
    493    1.1    dyoung 	/* XXX not right but it's not used anywhere important */
    494    1.1    dyoung 	ic->ic_phytype = IEEE80211_T_OFDM;
    495    1.1    dyoung 	ic->ic_opmode = IEEE80211_M_STA;
    496   1.47    dyoung 	ic->ic_caps =
    497   1.47    dyoung 		  IEEE80211_C_IBSS		/* ibss, nee adhoc, mode */
    498   1.18    dyoung 		| IEEE80211_C_HOSTAP		/* hostap mode */
    499   1.18    dyoung 		| IEEE80211_C_MONITOR		/* monitor mode */
    500   1.18    dyoung 		| IEEE80211_C_SHPREAMBLE	/* short preamble supported */
    501   1.47    dyoung 		| IEEE80211_C_SHSLOT		/* short slot time supported */
    502   1.47    dyoung 		| IEEE80211_C_WPA		/* capable of WPA1+WPA2 */
    503   1.80    dyoung 		| IEEE80211_C_TXFRAG		/* handle tx frags */
    504   1.25    dyoung 		;
    505   1.47    dyoung 	/*
    506   1.47    dyoung 	 * Query the hal to figure out h/w crypto support.
    507   1.47    dyoung 	 */
    508   1.47    dyoung 	if (ath_hal_ciphersupported(ah, HAL_CIPHER_WEP))
    509   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_WEP;
    510   1.47    dyoung 	if (ath_hal_ciphersupported(ah, HAL_CIPHER_AES_OCB))
    511   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_AES;
    512   1.47    dyoung 	if (ath_hal_ciphersupported(ah, HAL_CIPHER_AES_CCM))
    513   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_AES_CCM;
    514   1.47    dyoung 	if (ath_hal_ciphersupported(ah, HAL_CIPHER_CKIP))
    515   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_CKIP;
    516   1.47    dyoung 	if (ath_hal_ciphersupported(ah, HAL_CIPHER_TKIP)) {
    517   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_TKIP;
    518   1.47    dyoung 		/*
    519   1.47    dyoung 		 * Check if h/w does the MIC and/or whether the
    520   1.47    dyoung 		 * separate key cache entries are required to
    521   1.47    dyoung 		 * handle both tx+rx MIC keys.
    522   1.47    dyoung 		 */
    523  1.106  jmcneill 		if (ath_hal_ciphersupported(ah, HAL_CIPHER_MIC))
    524   1.47    dyoung 			ic->ic_caps |= IEEE80211_C_TKIPMIC;
    525  1.104       alc 
    526  1.104       alc 		/*
    527  1.104       alc 		 * If the h/w supports storing tx+rx MIC keys
    528  1.104       alc 		 * in one cache slot automatically enable use.
    529  1.104       alc 		 */
    530  1.106  jmcneill 		if (ath_hal_hastkipsplit(ah) ||
    531  1.104       alc 		    !ath_hal_settkipsplit(ah, AH_FALSE))
    532   1.47    dyoung 			sc->sc_splitmic = 1;
    533  1.106  jmcneill 
    534  1.106  jmcneill 		/*
    535  1.106  jmcneill 		 * If the h/w can do TKIP MIC together with WME then
    536  1.106  jmcneill 		 * we use it; otherwise we force the MIC to be done
    537  1.106  jmcneill 		 * in software by the net80211 layer.
    538  1.106  jmcneill 		 */
    539  1.106  jmcneill 		if (ath_hal_haswmetkipmic(ah))
    540  1.106  jmcneill 			ic->ic_caps |= IEEE80211_C_WME_TKIPMIC;
    541   1.47    dyoung 	}
    542   1.55    dyoung 	sc->sc_hasclrkey = ath_hal_ciphersupported(ah, HAL_CIPHER_CLR);
    543   1.55    dyoung 	sc->sc_mcastkey = ath_hal_getmcastkeysearch(ah);
    544  1.106  jmcneill 	/*
    545  1.106  jmcneill 	 * Mark key cache slots associated with global keys
    546  1.106  jmcneill 	 * as in use.  If we knew TKIP was not to be used we
    547  1.106  jmcneill 	 * could leave the +32, +64, and +32+64 slots free.
    548  1.106  jmcneill 	 */
    549  1.106  jmcneill 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    550  1.106  jmcneill 		setbit(sc->sc_keymap, i);
    551  1.106  jmcneill 		setbit(sc->sc_keymap, i+64);
    552  1.106  jmcneill 		if (sc->sc_splitmic) {
    553  1.106  jmcneill 			setbit(sc->sc_keymap, i+32);
    554  1.106  jmcneill 			setbit(sc->sc_keymap, i+32+64);
    555  1.106  jmcneill 		}
    556  1.106  jmcneill 	}
    557   1.61     skrll 	/*
    558   1.61     skrll 	 * TPC support can be done either with a global cap or
    559   1.61     skrll 	 * per-packet support.  The latter is not available on
    560   1.61     skrll 	 * all parts.  We're a bit pedantic here as all parts
    561   1.61     skrll 	 * support a global cap.
    562   1.61     skrll 	 */
    563   1.61     skrll 	if (ath_hal_hastpc(ah) || ath_hal_hastxpowlimit(ah))
    564   1.61     skrll 		ic->ic_caps |= IEEE80211_C_TXPMGT;
    565   1.47    dyoung 
    566   1.47    dyoung 	/*
    567   1.47    dyoung 	 * Mark WME capability only if we have sufficient
    568   1.47    dyoung 	 * hardware queues to do proper priority scheduling.
    569   1.47    dyoung 	 */
    570   1.47    dyoung 	if (sc->sc_ac2q[WME_AC_BE] != sc->sc_ac2q[WME_AC_BK])
    571   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_WME;
    572   1.47    dyoung 	/*
    573   1.55    dyoung 	 * Check for misc other capabilities.
    574   1.47    dyoung 	 */
    575   1.47    dyoung 	if (ath_hal_hasbursting(ah))
    576   1.47    dyoung 		ic->ic_caps |= IEEE80211_C_BURST;
    577   1.47    dyoung 
    578   1.47    dyoung 	/*
    579   1.47    dyoung 	 * Indicate we need the 802.11 header padded to a
    580   1.47    dyoung 	 * 32-bit boundary for 4-address and QoS frames.
    581   1.47    dyoung 	 */
    582   1.47    dyoung 	ic->ic_flags |= IEEE80211_F_DATAPAD;
    583   1.47    dyoung 
    584   1.47    dyoung 	/*
    585   1.61     skrll 	 * Query the hal about antenna support.
    586   1.61     skrll 	 */
    587   1.61     skrll 	sc->sc_defant = ath_hal_getdefantenna(ah);
    588   1.61     skrll 
    589   1.61     skrll 	/*
    590   1.47    dyoung 	 * Not all chips have the VEOL support we want to
    591   1.47    dyoung 	 * use with IBSS beacons; check here for it.
    592   1.47    dyoung 	 */
    593   1.47    dyoung 	sc->sc_hasveol = ath_hal_hasveol(ah);
    594    1.1    dyoung 
    595    1.1    dyoung 	/* get mac address from hardware */
    596    1.1    dyoung 	ath_hal_getmac(ah, ic->ic_myaddr);
    597    1.1    dyoung 
    598    1.2    dyoung 	if_attach(ifp);
    599    1.1    dyoung 	/* call MI attach routine. */
    600   1.47    dyoung 	ieee80211_ifattach(ic);
    601    1.1    dyoung 	/* override default methods */
    602    1.1    dyoung 	ic->ic_node_alloc = ath_node_alloc;
    603   1.25    dyoung 	sc->sc_node_free = ic->ic_node_free;
    604    1.1    dyoung 	ic->ic_node_free = ath_node_free;
    605   1.18    dyoung 	ic->ic_node_getrssi = ath_node_getrssi;
    606   1.47    dyoung 	sc->sc_recv_mgmt = ic->ic_recv_mgmt;
    607   1.47    dyoung 	ic->ic_recv_mgmt = ath_recv_mgmt;
    608    1.1    dyoung 	sc->sc_newstate = ic->ic_newstate;
    609    1.1    dyoung 	ic->ic_newstate = ath_newstate;
    610   1.61     skrll 	ic->ic_crypto.cs_max_keyix = sc->sc_keymax;
    611   1.47    dyoung 	ic->ic_crypto.cs_key_alloc = ath_key_alloc;
    612   1.47    dyoung 	ic->ic_crypto.cs_key_delete = ath_key_delete;
    613   1.47    dyoung 	ic->ic_crypto.cs_key_set = ath_key_set;
    614   1.47    dyoung 	ic->ic_crypto.cs_key_update_begin = ath_key_update_begin;
    615   1.47    dyoung 	ic->ic_crypto.cs_key_update_end = ath_key_update_end;
    616    1.1    dyoung 	/* complete initialization */
    617   1.47    dyoung 	ieee80211_media_init(ic, ath_media_change, ieee80211_media_status);
    618   1.25    dyoung 
    619   1.64    rpaulo #if NBPFILTER > 0
    620   1.47    dyoung 	ath_bpfattach(sc);
    621   1.64    rpaulo #endif
    622    1.1    dyoung 
    623    1.3    ichiro 	sc->sc_flags |= ATH_ATTACHED;
    624   1.61     skrll 
    625   1.61     skrll 	/*
    626   1.61     skrll 	 * Setup dynamic sysctl's now that country code and
    627   1.61     skrll 	 * regdomain are available from the hal.
    628   1.61     skrll 	 */
    629   1.61     skrll 	ath_sysctlattach(sc);
    630   1.61     skrll 
    631   1.54    dyoung 	ieee80211_announce(ic);
    632   1.47    dyoung 	ath_announce(sc);
    633    1.1    dyoung 	return 0;
    634   1.25    dyoung bad2:
    635   1.47    dyoung 	ath_tx_cleanup(sc);
    636   1.25    dyoung 	ath_desc_free(sc);
    637    1.1    dyoung bad:
    638    1.1    dyoung 	if (ah)
    639    1.1    dyoung 		ath_hal_detach(ah);
    640   1.99    dyoung 	/* XXX don't get under the abstraction like this */
    641  1.102     joerg 	sc->sc_dev->dv_flags &= ~DVF_ACTIVE;
    642    1.1    dyoung 	return error;
    643    1.1    dyoung }
    644    1.1    dyoung 
    645    1.1    dyoung int
    646    1.1    dyoung ath_detach(struct ath_softc *sc)
    647    1.1    dyoung {
    648   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
    649   1.47    dyoung 	int s;
    650    1.1    dyoung 
    651    1.3    ichiro 	if ((sc->sc_flags & ATH_ATTACHED) == 0)
    652    1.3    ichiro 		return (0);
    653    1.1    dyoung 
    654   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_ANY, "%s: if_flags %x\n",
    655   1.47    dyoung 		__func__, ifp->if_flags);
    656   1.47    dyoung 
    657   1.47    dyoung 	s = splnet();
    658   1.40    dyoung 	ath_stop(ifp, 1);
    659    1.2    dyoung #if NBPFILTER > 0
    660    1.1    dyoung 	bpfdetach(ifp);
    661    1.2    dyoung #endif
    662   1.73     blymn 	/*
    663   1.47    dyoung 	 * NB: the order of these is important:
    664   1.47    dyoung 	 * o call the 802.11 layer before detaching the hal to
    665   1.47    dyoung 	 *   insure callbacks into the driver to delete global
    666   1.47    dyoung 	 *   key cache entries can be handled
    667   1.47    dyoung 	 * o reclaim the tx queue data structures after calling
    668   1.47    dyoung 	 *   the 802.11 layer as we'll get called back to reclaim
    669   1.47    dyoung 	 *   node state and potentially want to use them
    670   1.47    dyoung 	 * o to cleanup the tx queues the hal is called, so detach
    671   1.47    dyoung 	 *   it last
    672   1.47    dyoung 	 * Other than that, it's straightforward...
    673   1.47    dyoung 	 */
    674   1.47    dyoung 	ieee80211_ifdetach(&sc->sc_ic);
    675   1.68    dyoung #ifdef ATH_TX99_DIAG
    676   1.68    dyoung 	if (sc->sc_tx99 != NULL)
    677   1.68    dyoung 		sc->sc_tx99->detach(sc->sc_tx99);
    678   1.68    dyoung #endif
    679   1.47    dyoung 	ath_rate_detach(sc->sc_rc);
    680    1.1    dyoung 	ath_desc_free(sc);
    681   1.47    dyoung 	ath_tx_cleanup(sc);
    682   1.52    dyoung 	sysctl_teardown(&sc->sc_sysctllog);
    683    1.1    dyoung 	ath_hal_detach(sc->sc_ah);
    684    1.2    dyoung 	if_detach(ifp);
    685   1.47    dyoung 	splx(s);
    686   1.18    dyoung 
    687    1.1    dyoung 	return 0;
    688    1.1    dyoung }
    689    1.1    dyoung 
    690    1.1    dyoung void
    691   1.99    dyoung ath_suspend(struct ath_softc *sc)
    692   1.99    dyoung {
    693  1.104       alc #if notyet
    694   1.99    dyoung 	/*
    695   1.99    dyoung 	 * Set the chip in full sleep mode.  Note that we are
    696   1.99    dyoung 	 * careful to do this only when bringing the interface
    697   1.99    dyoung 	 * completely to a stop.  When the chip is in this state
    698   1.99    dyoung 	 * it must be carefully woken up or references to
    699   1.99    dyoung 	 * registers in the PCI clock domain may freeze the bus
    700   1.99    dyoung 	 * (and system).  This varies by chip and is mostly an
    701   1.99    dyoung 	 * issue with newer parts that go to sleep more quickly.
    702   1.99    dyoung 	 */
    703   1.99    dyoung 	ath_hal_setpower(sc->sc_ah, HAL_PM_FULL_SLEEP);
    704  1.104       alc #endif
    705   1.99    dyoung }
    706   1.99    dyoung 
    707   1.99    dyoung bool
    708   1.93  jmcneill ath_resume(struct ath_softc *sc)
    709    1.1    dyoung {
    710  1.104       alc 	struct ath_hal *ah = sc->sc_ah;
    711  1.104       alc 	struct ieee80211com *ic = &sc->sc_ic;
    712  1.104       alc 	HAL_STATUS status;
    713   1.99    dyoung 	int i;
    714   1.99    dyoung 
    715  1.104       alc #if notyet
    716   1.99    dyoung 	ath_hal_setpower(ah, HAL_PM_AWAKE);
    717  1.104       alc #else
    718  1.104       alc 	ath_hal_reset(ah, ic->ic_opmode, &sc->sc_curchan, AH_FALSE, &status);
    719  1.104       alc #endif
    720   1.99    dyoung 
    721   1.99    dyoung 	/*
    722   1.99    dyoung 	 * Reset the key cache since some parts do not
    723   1.99    dyoung 	 * reset the contents on initial power up.
    724   1.99    dyoung 	 */
    725   1.99    dyoung 	for (i = 0; i < sc->sc_keymax; i++)
    726   1.99    dyoung 		ath_hal_keyreset(ah, i);
    727   1.99    dyoung 
    728   1.99    dyoung 	ath_hal_resettxqueue(ah, sc->sc_bhalq);
    729   1.99    dyoung 	for (i = 0; i < HAL_NUM_TX_QUEUES; i++)
    730   1.99    dyoung 		if (ATH_TXQ_SETUP(sc, i))
    731   1.99    dyoung 			ath_hal_resettxqueue(ah, i);
    732   1.99    dyoung 
    733   1.55    dyoung 	if (sc->sc_softled) {
    734   1.55    dyoung 		ath_hal_gpioCfgOutput(sc->sc_ah, sc->sc_ledpin);
    735   1.55    dyoung 		ath_hal_gpioset(sc->sc_ah, sc->sc_ledpin, !sc->sc_ledon);
    736   1.55    dyoung 	}
    737   1.99    dyoung 	return true;
    738    1.1    dyoung }
    739    1.1    dyoung 
    740   1.47    dyoung /*
    741   1.47    dyoung  * Interrupt handler.  Most of the actual processing is deferred.
    742   1.47    dyoung  */
    743    1.2    dyoung int
    744    1.2    dyoung ath_intr(void *arg)
    745    1.2    dyoung {
    746   1.47    dyoung 	struct ath_softc *sc = arg;
    747   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
    748    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
    749    1.1    dyoung 	HAL_INT status;
    750    1.1    dyoung 
    751  1.102     joerg 	if (!device_is_active(sc->sc_dev)) {
    752    1.1    dyoung 		/*
    753    1.1    dyoung 		 * The hardware is not ready/present, don't touch anything.
    754    1.1    dyoung 		 * Note this can happen early on if the IRQ is shared.
    755    1.1    dyoung 		 */
    756   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY, "%s: invalid; ignored\n", __func__);
    757    1.2    dyoung 		return 0;
    758    1.1    dyoung 	}
    759   1.74   gdamore 
    760   1.25    dyoung 	if (!ath_hal_intrpend(ah))		/* shared irq, not for us */
    761   1.25    dyoung 		return 0;
    762   1.74   gdamore 
    763    1.1    dyoung 	if ((ifp->if_flags & (IFF_RUNNING|IFF_UP)) != (IFF_RUNNING|IFF_UP)) {
    764   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY, "%s: if_flags 0x%x\n",
    765   1.47    dyoung 			__func__, ifp->if_flags);
    766    1.1    dyoung 		ath_hal_getisr(ah, &status);	/* clear ISR */
    767    1.1    dyoung 		ath_hal_intrset(ah, 0);		/* disable further intr's */
    768    1.2    dyoung 		return 1; /* XXX */
    769    1.1    dyoung 	}
    770   1.47    dyoung 	/*
    771   1.47    dyoung 	 * Figure out the reason(s) for the interrupt.  Note
    772   1.47    dyoung 	 * that the hal returns a pseudo-ISR that may include
    773   1.47    dyoung 	 * bits we haven't explicitly enabled so we mask the
    774   1.47    dyoung 	 * value to insure we only process bits we requested.
    775   1.47    dyoung 	 */
    776    1.1    dyoung 	ath_hal_getisr(ah, &status);		/* NB: clears ISR too */
    777   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_INTR, "%s: status 0x%x\n", __func__, status);
    778   1.18    dyoung 	status &= sc->sc_imask;			/* discard unasked for bits */
    779    1.1    dyoung 	if (status & HAL_INT_FATAL) {
    780   1.47    dyoung 		/*
    781   1.47    dyoung 		 * Fatal errors are unrecoverable.  Typically
    782   1.47    dyoung 		 * these are caused by DMA errors.  Unfortunately
    783   1.47    dyoung 		 * the exact reason is not (presently) returned
    784   1.47    dyoung 		 * by the hal.
    785   1.47    dyoung 		 */
    786    1.1    dyoung 		sc->sc_stats.ast_hardware++;
    787    1.1    dyoung 		ath_hal_intrset(ah, 0);		/* disable intr's until reset */
    788   1.47    dyoung 		TASK_RUN_OR_ENQUEUE(&sc->sc_fataltask);
    789    1.1    dyoung 	} else if (status & HAL_INT_RXORN) {
    790    1.1    dyoung 		sc->sc_stats.ast_rxorn++;
    791    1.1    dyoung 		ath_hal_intrset(ah, 0);		/* disable intr's until reset */
    792   1.47    dyoung 		TASK_RUN_OR_ENQUEUE(&sc->sc_rxorntask);
    793    1.1    dyoung 	} else {
    794   1.47    dyoung 		if (status & HAL_INT_SWBA) {
    795   1.47    dyoung 			/*
    796   1.47    dyoung 			 * Software beacon alert--time to send a beacon.
    797   1.47    dyoung 			 * Handle beacon transmission directly; deferring
    798   1.47    dyoung 			 * this is too slow to meet timing constraints
    799   1.47    dyoung 			 * under load.
    800   1.47    dyoung 			 */
    801   1.47    dyoung 			ath_beacon_proc(sc, 0);
    802   1.47    dyoung 		}
    803    1.1    dyoung 		if (status & HAL_INT_RXEOL) {
    804    1.1    dyoung 			/*
    805    1.1    dyoung 			 * NB: the hardware should re-read the link when
    806    1.1    dyoung 			 *     RXE bit is written, but it doesn't work at
    807    1.1    dyoung 			 *     least on older hardware revs.
    808    1.1    dyoung 			 */
    809    1.1    dyoung 			sc->sc_stats.ast_rxeol++;
    810    1.1    dyoung 			sc->sc_rxlink = NULL;
    811    1.1    dyoung 		}
    812    1.1    dyoung 		if (status & HAL_INT_TXURN) {
    813    1.1    dyoung 			sc->sc_stats.ast_txurn++;
    814    1.1    dyoung 			/* bump tx trigger level */
    815    1.1    dyoung 			ath_hal_updatetxtriglevel(ah, AH_TRUE);
    816    1.1    dyoung 		}
    817    1.1    dyoung 		if (status & HAL_INT_RX)
    818   1.47    dyoung 			TASK_RUN_OR_ENQUEUE(&sc->sc_rxtask);
    819    1.1    dyoung 		if (status & HAL_INT_TX)
    820   1.47    dyoung 			TASK_RUN_OR_ENQUEUE(&sc->sc_txtask);
    821   1.47    dyoung 		if (status & HAL_INT_BMISS) {
    822   1.47    dyoung 			sc->sc_stats.ast_bmiss++;
    823   1.47    dyoung 			TASK_RUN_OR_ENQUEUE(&sc->sc_bmisstask);
    824   1.47    dyoung 		}
    825   1.47    dyoung 		if (status & HAL_INT_MIB) {
    826   1.47    dyoung 			sc->sc_stats.ast_mib++;
    827   1.47    dyoung 			/*
    828   1.47    dyoung 			 * Disable interrupts until we service the MIB
    829   1.47    dyoung 			 * interrupt; otherwise it will continue to fire.
    830   1.47    dyoung 			 */
    831   1.47    dyoung 			ath_hal_intrset(ah, 0);
    832   1.25    dyoung 			/*
    833   1.47    dyoung 			 * Let the hal handle the event.  We assume it will
    834   1.47    dyoung 			 * clear whatever condition caused the interrupt.
    835   1.25    dyoung 			 */
    836   1.68    dyoung 			ath_hal_mibevent(ah, &sc->sc_halstats);
    837   1.47    dyoung 			ath_hal_intrset(ah, sc->sc_imask);
    838    1.1    dyoung 		}
    839    1.1    dyoung 	}
    840    1.2    dyoung 	return 1;
    841    1.1    dyoung }
    842    1.1    dyoung 
    843   1.74   gdamore /* Swap transmit descriptor.
    844   1.74   gdamore  * if AH_NEED_DESC_SWAP flag is not defined this becomes a "null"
    845   1.74   gdamore  * function.
    846   1.74   gdamore  */
    847   1.74   gdamore static inline void
    848   1.79  christos ath_desc_swap(struct ath_desc *ds)
    849   1.74   gdamore {
    850   1.74   gdamore #ifdef AH_NEED_DESC_SWAP
    851   1.74   gdamore 	ds->ds_link = htole32(ds->ds_link);
    852   1.74   gdamore 	ds->ds_data = htole32(ds->ds_data);
    853   1.74   gdamore 	ds->ds_ctl0 = htole32(ds->ds_ctl0);
    854   1.74   gdamore 	ds->ds_ctl1 = htole32(ds->ds_ctl1);
    855   1.74   gdamore 	ds->ds_hw[0] = htole32(ds->ds_hw[0]);
    856   1.74   gdamore 	ds->ds_hw[1] = htole32(ds->ds_hw[1]);
    857   1.74   gdamore #endif
    858   1.74   gdamore }
    859   1.74   gdamore 
    860    1.1    dyoung static void
    861   1.79  christos ath_fatal_proc(void *arg, int pending)
    862    1.1    dyoung {
    863    1.1    dyoung 	struct ath_softc *sc = arg;
    864   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
    865    1.1    dyoung 
    866   1.47    dyoung 	if_printf(ifp, "hardware error; resetting\n");
    867   1.47    dyoung 	ath_reset(ifp);
    868    1.1    dyoung }
    869    1.1    dyoung 
    870    1.1    dyoung static void
    871   1.79  christos ath_rxorn_proc(void *arg, int pending)
    872    1.1    dyoung {
    873    1.1    dyoung 	struct ath_softc *sc = arg;
    874   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
    875    1.1    dyoung 
    876   1.47    dyoung 	if_printf(ifp, "rx FIFO overrun; resetting\n");
    877   1.47    dyoung 	ath_reset(ifp);
    878    1.1    dyoung }
    879    1.1    dyoung 
    880    1.1    dyoung static void
    881    1.1    dyoung ath_bmiss_proc(void *arg, int pending)
    882    1.1    dyoung {
    883    1.1    dyoung 	struct ath_softc *sc = arg;
    884    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    885    1.1    dyoung 
    886   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_ANY, "%s: pending %u\n", __func__, pending);
    887   1.47    dyoung 	KASSERT(ic->ic_opmode == IEEE80211_M_STA,
    888   1.47    dyoung 		("unexpect operating mode %u", ic->ic_opmode));
    889   1.18    dyoung 	if (ic->ic_state == IEEE80211_S_RUN) {
    890   1.68    dyoung 		u_int64_t lastrx = sc->sc_lastrx;
    891   1.68    dyoung 		u_int64_t tsf = ath_hal_gettsf64(sc->sc_ah);
    892   1.68    dyoung 
    893   1.68    dyoung 		DPRINTF(sc, ATH_DEBUG_BEACON,
    894   1.68    dyoung 		    "%s: tsf %" PRIu64 " lastrx %" PRId64
    895   1.68    dyoung 		    " (%" PRIu64 ") bmiss %u\n",
    896   1.68    dyoung 		    __func__, tsf, tsf - lastrx, lastrx,
    897   1.68    dyoung 		    ic->ic_bmisstimeout*1024);
    898   1.68    dyoung 		/*
    899   1.68    dyoung 		 * Workaround phantom bmiss interrupts by sanity-checking
    900   1.68    dyoung 		 * the time of our last rx'd frame.  If it is within the
    901   1.68    dyoung 		 * beacon miss interval then ignore the interrupt.  If it's
    902   1.68    dyoung 		 * truly a bmiss we'll get another interrupt soon and that'll
    903   1.68    dyoung 		 * be dispatched up for processing.
    904   1.68    dyoung 		 */
    905   1.68    dyoung 		if (tsf - lastrx > ic->ic_bmisstimeout*1024) {
    906   1.68    dyoung 			NET_LOCK_GIANT();
    907   1.68    dyoung 			ieee80211_beacon_miss(ic);
    908   1.68    dyoung 			NET_UNLOCK_GIANT();
    909   1.68    dyoung 		} else
    910   1.68    dyoung 			sc->sc_stats.ast_bmiss_phantom++;
    911   1.68    dyoung 	}
    912   1.68    dyoung }
    913   1.68    dyoung 
    914   1.68    dyoung static void
    915   1.79  christos ath_radar_proc(void *arg, int pending)
    916   1.68    dyoung {
    917  1.104       alc #if 0
    918   1.68    dyoung 	struct ath_softc *sc = arg;
    919   1.68    dyoung 	struct ifnet *ifp = &sc->sc_if;
    920   1.68    dyoung 	struct ath_hal *ah = sc->sc_ah;
    921   1.68    dyoung 	HAL_CHANNEL hchan;
    922   1.68    dyoung 
    923   1.68    dyoung 	if (ath_hal_procdfs(ah, &hchan)) {
    924   1.68    dyoung 		if_printf(ifp, "radar detected on channel %u/0x%x/0x%x\n",
    925   1.68    dyoung 			hchan.channel, hchan.channelFlags, hchan.privFlags);
    926   1.18    dyoung 		/*
    927   1.68    dyoung 		 * Initiate channel change.
    928   1.68    dyoung 		 */
    929   1.68    dyoung 		/* XXX not yet */
    930   1.18    dyoung 	}
    931  1.104       alc #endif
    932    1.1    dyoung }
    933    1.1    dyoung 
    934    1.1    dyoung static u_int
    935    1.1    dyoung ath_chan2flags(struct ieee80211com *ic, struct ieee80211_channel *chan)
    936    1.1    dyoung {
    937   1.47    dyoung #define	N(a)	(sizeof(a) / sizeof(a[0]))
    938   1.47    dyoung 	static const u_int modeflags[] = {
    939   1.47    dyoung 		0,			/* IEEE80211_MODE_AUTO */
    940   1.47    dyoung 		CHANNEL_A,		/* IEEE80211_MODE_11A */
    941   1.47    dyoung 		CHANNEL_B,		/* IEEE80211_MODE_11B */
    942   1.47    dyoung 		CHANNEL_PUREG,		/* IEEE80211_MODE_11G */
    943   1.47    dyoung 		0,			/* IEEE80211_MODE_FH */
    944   1.68    dyoung 		CHANNEL_ST,		/* IEEE80211_MODE_TURBO_A */
    945   1.47    dyoung 		CHANNEL_108G		/* IEEE80211_MODE_TURBO_G */
    946   1.47    dyoung 	};
    947    1.4    dyoung 	enum ieee80211_phymode mode = ieee80211_chan2mode(ic, chan);
    948    1.4    dyoung 
    949   1.47    dyoung 	KASSERT(mode < N(modeflags), ("unexpected phy mode %u", mode));
    950   1.47    dyoung 	KASSERT(modeflags[mode] != 0, ("mode %u undefined", mode));
    951   1.47    dyoung 	return modeflags[mode];
    952   1.47    dyoung #undef N
    953    1.1    dyoung }
    954    1.1    dyoung 
    955    1.2    dyoung static int
    956   1.55    dyoung ath_ifinit(struct ifnet *ifp)
    957    1.2    dyoung {
    958   1.47    dyoung 	struct ath_softc *sc = (struct ath_softc *)ifp->if_softc;
    959   1.55    dyoung 
    960   1.55    dyoung 	return ath_init(sc);
    961   1.55    dyoung }
    962   1.55    dyoung 
    963  1.106  jmcneill static void
    964  1.106  jmcneill ath_settkipmic(struct ath_softc *sc)
    965  1.106  jmcneill {
    966  1.106  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    967  1.106  jmcneill 	struct ath_hal *ah = sc->sc_ah;
    968  1.106  jmcneill 
    969  1.106  jmcneill 	if ((ic->ic_caps & IEEE80211_C_TKIP) &&
    970  1.106  jmcneill 	    !(ic->ic_caps & IEEE80211_C_WME_TKIPMIC)) {
    971  1.106  jmcneill 		if (ic->ic_flags & IEEE80211_F_WME) {
    972  1.106  jmcneill 			(void)ath_hal_settkipmic(ah, AH_FALSE);
    973  1.106  jmcneill 			ic->ic_caps &= ~IEEE80211_C_TKIPMIC;
    974  1.106  jmcneill 		} else {
    975  1.106  jmcneill 			(void)ath_hal_settkipmic(ah, AH_TRUE);
    976  1.106  jmcneill 			ic->ic_caps |= IEEE80211_C_TKIPMIC;
    977  1.106  jmcneill 		}
    978  1.106  jmcneill 	}
    979  1.106  jmcneill }
    980  1.106  jmcneill 
    981   1.55    dyoung static int
    982   1.55    dyoung ath_init(struct ath_softc *sc)
    983   1.55    dyoung {
    984   1.55    dyoung 	struct ifnet *ifp = &sc->sc_if;
    985    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    986    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
    987    1.1    dyoung 	HAL_STATUS status;
    988    1.2    dyoung 	int error = 0;
    989    1.1    dyoung 
    990   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_ANY, "%s: if_flags 0x%x\n",
    991   1.47    dyoung 		__func__, ifp->if_flags);
    992   1.47    dyoung 
    993  1.102     joerg 	if (device_is_active(sc->sc_dev)) {
    994   1.99    dyoung 		ATH_LOCK(sc);
    995  1.102     joerg 	} else if (!pmf_device_resume_self(sc->sc_dev))
    996   1.99    dyoung 		return ENXIO;
    997   1.99    dyoung 	else
    998   1.99    dyoung 		ATH_LOCK(sc);
    999    1.3    ichiro 
   1000    1.1    dyoung 	/*
   1001    1.1    dyoung 	 * Stop anything previously setup.  This is safe
   1002    1.1    dyoung 	 * whether this is the first time through or not.
   1003    1.1    dyoung 	 */
   1004   1.47    dyoung 	ath_stop_locked(ifp, 0);
   1005    1.1    dyoung 
   1006    1.1    dyoung 	/*
   1007    1.1    dyoung 	 * The basic interface to setting the hardware in a good
   1008    1.1    dyoung 	 * state is ``reset''.  On return the hardware is known to
   1009    1.1    dyoung 	 * be powered up and with interrupts disabled.  This must
   1010    1.1    dyoung 	 * be followed by initialization of the appropriate bits
   1011    1.1    dyoung 	 * and then setup of the interrupt mask.
   1012    1.1    dyoung 	 */
   1013  1.106  jmcneill 	ath_settkipmic(sc);
   1014   1.61     skrll 	sc->sc_curchan.channel = ic->ic_curchan->ic_freq;
   1015   1.61     skrll 	sc->sc_curchan.channelFlags = ath_chan2flags(ic, ic->ic_curchan);
   1016   1.47    dyoung 	if (!ath_hal_reset(ah, ic->ic_opmode, &sc->sc_curchan, AH_FALSE, &status)) {
   1017    1.1    dyoung 		if_printf(ifp, "unable to reset hardware; hal status %u\n",
   1018    1.1    dyoung 			status);
   1019   1.34      yamt 		error = EIO;
   1020    1.1    dyoung 		goto done;
   1021    1.1    dyoung 	}
   1022    1.1    dyoung 
   1023    1.1    dyoung 	/*
   1024   1.47    dyoung 	 * This is needed only to setup initial state
   1025   1.47    dyoung 	 * but it's best done after a reset.
   1026   1.47    dyoung 	 */
   1027   1.47    dyoung 	ath_update_txpow(sc);
   1028   1.61     skrll 	/*
   1029   1.61     skrll 	 * Likewise this is set during reset so update
   1030   1.61     skrll 	 * state cached in the driver.
   1031   1.61     skrll 	 */
   1032   1.89    dyoung 	ath_restore_diversity(sc);
   1033   1.68    dyoung 	sc->sc_calinterval = 1;
   1034   1.68    dyoung 	sc->sc_caltries = 0;
   1035   1.47    dyoung 
   1036   1.47    dyoung 	/*
   1037    1.1    dyoung 	 * Setup the hardware after reset: the key cache
   1038    1.1    dyoung 	 * is filled as needed and the receive engine is
   1039    1.1    dyoung 	 * set going.  Frame transmit is handled entirely
   1040    1.1    dyoung 	 * in the frame output path; there's nothing to do
   1041    1.1    dyoung 	 * here except setup the interrupt mask.
   1042    1.1    dyoung 	 */
   1043    1.2    dyoung 	if ((error = ath_startrecv(sc)) != 0) {
   1044    1.1    dyoung 		if_printf(ifp, "unable to start recv logic\n");
   1045    1.1    dyoung 		goto done;
   1046    1.1    dyoung 	}
   1047    1.1    dyoung 
   1048    1.1    dyoung 	/*
   1049    1.1    dyoung 	 * Enable interrupts.
   1050    1.1    dyoung 	 */
   1051    1.1    dyoung 	sc->sc_imask = HAL_INT_RX | HAL_INT_TX
   1052    1.1    dyoung 		  | HAL_INT_RXEOL | HAL_INT_RXORN
   1053    1.1    dyoung 		  | HAL_INT_FATAL | HAL_INT_GLOBAL;
   1054   1.47    dyoung 	/*
   1055   1.47    dyoung 	 * Enable MIB interrupts when there are hardware phy counters.
   1056   1.47    dyoung 	 * Note we only do this (at the moment) for station mode.
   1057   1.47    dyoung 	 */
   1058   1.47    dyoung 	if (sc->sc_needmib && ic->ic_opmode == IEEE80211_M_STA)
   1059   1.47    dyoung 		sc->sc_imask |= HAL_INT_MIB;
   1060    1.1    dyoung 	ath_hal_intrset(ah, sc->sc_imask);
   1061    1.1    dyoung 
   1062    1.1    dyoung 	ifp->if_flags |= IFF_RUNNING;
   1063    1.1    dyoung 	ic->ic_state = IEEE80211_S_INIT;
   1064    1.1    dyoung 
   1065    1.1    dyoung 	/*
   1066    1.1    dyoung 	 * The hardware should be ready to go now so it's safe
   1067    1.1    dyoung 	 * to kick the 802.11 state machine as it's likely to
   1068    1.1    dyoung 	 * immediately call back to us to send mgmt frames.
   1069    1.1    dyoung 	 */
   1070   1.61     skrll 	ath_chan_change(sc, ic->ic_curchan);
   1071   1.68    dyoung #ifdef ATH_TX99_DIAG
   1072   1.68    dyoung 	if (sc->sc_tx99 != NULL)
   1073   1.68    dyoung 		sc->sc_tx99->start(sc->sc_tx99);
   1074   1.68    dyoung 	else
   1075   1.68    dyoung #endif
   1076   1.47    dyoung 	if (ic->ic_opmode != IEEE80211_M_MONITOR) {
   1077   1.47    dyoung 		if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
   1078   1.47    dyoung 			ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
   1079   1.47    dyoung 	} else
   1080   1.47    dyoung 		ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
   1081    1.1    dyoung done:
   1082   1.47    dyoung 	ATH_UNLOCK(sc);
   1083    1.2    dyoung 	return error;
   1084    1.1    dyoung }
   1085    1.1    dyoung 
   1086    1.1    dyoung static void
   1087   1.47    dyoung ath_stop_locked(struct ifnet *ifp, int disable)
   1088    1.1    dyoung {
   1089    1.1    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1090   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1091    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1092    1.1    dyoung 
   1093   1.99    dyoung 	DPRINTF(sc, ATH_DEBUG_ANY, "%s: invalid %d if_flags 0x%x\n",
   1094  1.102     joerg 		__func__, !device_is_enabled(sc->sc_dev), ifp->if_flags);
   1095    1.1    dyoung 
   1096   1.47    dyoung 	ATH_LOCK_ASSERT(sc);
   1097    1.1    dyoung 	if (ifp->if_flags & IFF_RUNNING) {
   1098    1.1    dyoung 		/*
   1099    1.1    dyoung 		 * Shutdown the hardware and driver:
   1100   1.47    dyoung 		 *    reset 802.11 state machine
   1101   1.47    dyoung 		 *    turn off timers
   1102    1.1    dyoung 		 *    disable interrupts
   1103   1.47    dyoung 		 *    turn off the radio
   1104    1.1    dyoung 		 *    clear transmit machinery
   1105    1.1    dyoung 		 *    clear receive machinery
   1106    1.1    dyoung 		 *    drain and release tx queues
   1107    1.1    dyoung 		 *    reclaim beacon resources
   1108    1.1    dyoung 		 *    power down hardware
   1109    1.1    dyoung 		 *
   1110    1.1    dyoung 		 * Note that some of this work is not possible if the
   1111    1.1    dyoung 		 * hardware is gone (invalid).
   1112    1.1    dyoung 		 */
   1113   1.68    dyoung #ifdef ATH_TX99_DIAG
   1114   1.68    dyoung 		if (sc->sc_tx99 != NULL)
   1115   1.68    dyoung 			sc->sc_tx99->stop(sc->sc_tx99);
   1116   1.68    dyoung #endif
   1117   1.47    dyoung 		ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
   1118    1.1    dyoung 		ifp->if_flags &= ~IFF_RUNNING;
   1119    1.1    dyoung 		ifp->if_timer = 0;
   1120  1.102     joerg 		if (device_is_enabled(sc->sc_dev)) {
   1121   1.47    dyoung 			if (sc->sc_softled) {
   1122   1.47    dyoung 				callout_stop(&sc->sc_ledtimer);
   1123   1.47    dyoung 				ath_hal_gpioset(ah, sc->sc_ledpin,
   1124   1.47    dyoung 					!sc->sc_ledon);
   1125   1.47    dyoung 				sc->sc_blinking = 0;
   1126   1.47    dyoung 			}
   1127    1.1    dyoung 			ath_hal_intrset(ah, 0);
   1128   1.47    dyoung 		}
   1129    1.1    dyoung 		ath_draintxq(sc);
   1130  1.102     joerg 		if (device_is_enabled(sc->sc_dev)) {
   1131    1.1    dyoung 			ath_stoprecv(sc);
   1132   1.47    dyoung 			ath_hal_phydisable(ah);
   1133   1.47    dyoung 		} else
   1134    1.1    dyoung 			sc->sc_rxlink = NULL;
   1135    1.2    dyoung 		IF_PURGE(&ifp->if_snd);
   1136    1.1    dyoung 		ath_beacon_free(sc);
   1137   1.40    dyoung 		if (disable)
   1138  1.102     joerg 			pmf_device_suspend_self(sc->sc_dev);
   1139    1.1    dyoung 	}
   1140   1.47    dyoung }
   1141   1.47    dyoung 
   1142   1.47    dyoung static void
   1143   1.47    dyoung ath_stop(struct ifnet *ifp, int disable)
   1144   1.47    dyoung {
   1145   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1146   1.47    dyoung 
   1147   1.47    dyoung 	ATH_LOCK(sc);
   1148   1.47    dyoung 	ath_stop_locked(ifp, disable);
   1149   1.47    dyoung 	ATH_UNLOCK(sc);
   1150    1.1    dyoung }
   1151    1.1    dyoung 
   1152   1.89    dyoung static void
   1153   1.89    dyoung ath_restore_diversity(struct ath_softc *sc)
   1154   1.89    dyoung {
   1155   1.89    dyoung 	struct ifnet *ifp = &sc->sc_if;
   1156   1.89    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1157   1.89    dyoung 
   1158   1.89    dyoung 	if (!ath_hal_setdiversity(sc->sc_ah, sc->sc_diversity) ||
   1159   1.89    dyoung 	    sc->sc_diversity != ath_hal_getdiversity(ah)) {
   1160   1.89    dyoung 		if_printf(ifp, "could not restore diversity setting %d\n",
   1161   1.89    dyoung 		    sc->sc_diversity);
   1162   1.89    dyoung 		sc->sc_diversity = ath_hal_getdiversity(ah);
   1163   1.89    dyoung 	}
   1164   1.89    dyoung }
   1165   1.89    dyoung 
   1166    1.1    dyoung /*
   1167    1.1    dyoung  * Reset the hardware w/o losing operational state.  This is
   1168    1.1    dyoung  * basically a more efficient way of doing ath_stop, ath_init,
   1169    1.1    dyoung  * followed by state transitions to the current 802.11
   1170   1.47    dyoung  * operational state.  Used to recover from various errors and
   1171   1.47    dyoung  * to reset or reload hardware state.
   1172    1.1    dyoung  */
   1173   1.47    dyoung int
   1174   1.47    dyoung ath_reset(struct ifnet *ifp)
   1175    1.1    dyoung {
   1176   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1177    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1178    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1179    1.1    dyoung 	struct ieee80211_channel *c;
   1180    1.1    dyoung 	HAL_STATUS status;
   1181    1.1    dyoung 
   1182    1.1    dyoung 	/*
   1183    1.1    dyoung 	 * Convert to a HAL channel description with the flags
   1184    1.1    dyoung 	 * constrained to reflect the current operating mode.
   1185    1.1    dyoung 	 */
   1186   1.61     skrll 	c = ic->ic_curchan;
   1187   1.47    dyoung 	sc->sc_curchan.channel = c->ic_freq;
   1188   1.47    dyoung 	sc->sc_curchan.channelFlags = ath_chan2flags(ic, c);
   1189    1.1    dyoung 
   1190    1.1    dyoung 	ath_hal_intrset(ah, 0);		/* disable interrupts */
   1191    1.1    dyoung 	ath_draintxq(sc);		/* stop xmit side */
   1192    1.1    dyoung 	ath_stoprecv(sc);		/* stop recv side */
   1193  1.106  jmcneill 	ath_settkipmic(sc);		/* configure TKIP MIC handling */
   1194    1.1    dyoung 	/* NB: indicate channel change so we do a full reset */
   1195   1.47    dyoung 	if (!ath_hal_reset(ah, ic->ic_opmode, &sc->sc_curchan, AH_TRUE, &status))
   1196    1.1    dyoung 		if_printf(ifp, "%s: unable to reset hardware; hal status %u\n",
   1197    1.1    dyoung 			__func__, status);
   1198   1.47    dyoung 	ath_update_txpow(sc);		/* update tx power state */
   1199   1.89    dyoung 	ath_restore_diversity(sc);
   1200   1.68    dyoung 	sc->sc_calinterval = 1;
   1201   1.68    dyoung 	sc->sc_caltries = 0;
   1202    1.1    dyoung 	if (ath_startrecv(sc) != 0)	/* restart recv */
   1203    1.1    dyoung 		if_printf(ifp, "%s: unable to start recv logic\n", __func__);
   1204   1.47    dyoung 	/*
   1205   1.47    dyoung 	 * We may be doing a reset in response to an ioctl
   1206   1.47    dyoung 	 * that changes the channel so update any state that
   1207   1.47    dyoung 	 * might change as a result.
   1208   1.47    dyoung 	 */
   1209   1.47    dyoung 	ath_chan_change(sc, c);
   1210    1.1    dyoung 	if (ic->ic_state == IEEE80211_S_RUN)
   1211    1.1    dyoung 		ath_beacon_config(sc);	/* restart beacons */
   1212   1.47    dyoung 	ath_hal_intrset(ah, sc->sc_imask);
   1213   1.47    dyoung 
   1214   1.47    dyoung 	ath_start(ifp);			/* restart xmit */
   1215   1.47    dyoung 	return 0;
   1216    1.1    dyoung }
   1217    1.1    dyoung 
   1218   1.80    dyoung /*
   1219   1.80    dyoung  * Cleanup driver resources when we run out of buffers
   1220   1.80    dyoung  * while processing fragments; return the tx buffers
   1221   1.80    dyoung  * allocated and drop node references.
   1222   1.80    dyoung  */
   1223   1.80    dyoung static void
   1224   1.80    dyoung ath_txfrag_cleanup(struct ath_softc *sc,
   1225   1.80    dyoung 	ath_bufhead *frags, struct ieee80211_node *ni)
   1226   1.80    dyoung {
   1227   1.80    dyoung 	struct ath_buf *bf;
   1228   1.80    dyoung 
   1229   1.80    dyoung 	ATH_TXBUF_LOCK_ASSERT(sc);
   1230   1.80    dyoung 
   1231   1.80    dyoung 	while ((bf = STAILQ_FIRST(frags)) != NULL) {
   1232   1.80    dyoung 		STAILQ_REMOVE_HEAD(frags, bf_list);
   1233   1.80    dyoung 		STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   1234   1.84    dyoung 		sc->sc_if.if_flags &= ~IFF_OACTIVE;
   1235   1.80    dyoung 		ieee80211_node_decref(ni);
   1236   1.80    dyoung 	}
   1237   1.80    dyoung }
   1238   1.80    dyoung 
   1239   1.80    dyoung /*
   1240   1.80    dyoung  * Setup xmit of a fragmented frame.  Allocate a buffer
   1241   1.80    dyoung  * for each frag and bump the node reference count to
   1242   1.80    dyoung  * reflect the held reference to be setup by ath_tx_start.
   1243   1.80    dyoung  */
   1244   1.80    dyoung static int
   1245   1.80    dyoung ath_txfrag_setup(struct ath_softc *sc, ath_bufhead *frags,
   1246   1.80    dyoung 	struct mbuf *m0, struct ieee80211_node *ni)
   1247   1.80    dyoung {
   1248   1.80    dyoung 	struct mbuf *m;
   1249   1.80    dyoung 	struct ath_buf *bf;
   1250   1.80    dyoung 
   1251   1.80    dyoung 	ATH_TXBUF_LOCK(sc);
   1252   1.80    dyoung 	for (m = m0->m_nextpkt; m != NULL; m = m->m_nextpkt) {
   1253   1.80    dyoung 		bf = STAILQ_FIRST(&sc->sc_txbuf);
   1254   1.80    dyoung 		if (bf == NULL) {       /* out of buffers, cleanup */
   1255   1.84    dyoung 			DPRINTF(sc, ATH_DEBUG_XMIT, "%s: out of xmit buffers\n",
   1256   1.84    dyoung 				__func__);
   1257   1.84    dyoung 			sc->sc_if.if_flags |= IFF_OACTIVE;
   1258   1.80    dyoung 			ath_txfrag_cleanup(sc, frags, ni);
   1259   1.80    dyoung 			break;
   1260   1.80    dyoung 		}
   1261   1.80    dyoung 		STAILQ_REMOVE_HEAD(&sc->sc_txbuf, bf_list);
   1262   1.80    dyoung 		ieee80211_node_incref(ni);
   1263   1.80    dyoung 		STAILQ_INSERT_TAIL(frags, bf, bf_list);
   1264   1.80    dyoung 	}
   1265   1.80    dyoung 	ATH_TXBUF_UNLOCK(sc);
   1266   1.80    dyoung 
   1267   1.80    dyoung 	return !STAILQ_EMPTY(frags);
   1268   1.80    dyoung }
   1269   1.80    dyoung 
   1270    1.1    dyoung static void
   1271    1.1    dyoung ath_start(struct ifnet *ifp)
   1272    1.1    dyoung {
   1273    1.1    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1274    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1275    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1276    1.1    dyoung 	struct ieee80211_node *ni;
   1277    1.1    dyoung 	struct ath_buf *bf;
   1278   1.80    dyoung 	struct mbuf *m, *next;
   1279    1.1    dyoung 	struct ieee80211_frame *wh;
   1280   1.47    dyoung 	struct ether_header *eh;
   1281   1.80    dyoung 	ath_bufhead frags;
   1282    1.1    dyoung 
   1283   1.99    dyoung 	if ((ifp->if_flags & IFF_RUNNING) == 0 ||
   1284  1.102     joerg 	    !device_is_active(sc->sc_dev))
   1285    1.1    dyoung 		return;
   1286    1.1    dyoung 	for (;;) {
   1287    1.1    dyoung 		/*
   1288    1.1    dyoung 		 * Grab a TX buffer and associated resources.
   1289    1.1    dyoung 		 */
   1290   1.47    dyoung 		ATH_TXBUF_LOCK(sc);
   1291   1.47    dyoung 		bf = STAILQ_FIRST(&sc->sc_txbuf);
   1292    1.1    dyoung 		if (bf != NULL)
   1293   1.47    dyoung 			STAILQ_REMOVE_HEAD(&sc->sc_txbuf, bf_list);
   1294   1.47    dyoung 		ATH_TXBUF_UNLOCK(sc);
   1295    1.1    dyoung 		if (bf == NULL) {
   1296   1.67    dyoung 			DPRINTF(sc, ATH_DEBUG_XMIT, "%s: out of xmit buffers\n",
   1297   1.47    dyoung 				__func__);
   1298    1.1    dyoung 			sc->sc_stats.ast_tx_qstop++;
   1299    1.1    dyoung 			ifp->if_flags |= IFF_OACTIVE;
   1300    1.1    dyoung 			break;
   1301    1.1    dyoung 		}
   1302    1.1    dyoung 		/*
   1303    1.1    dyoung 		 * Poll the management queue for frames; they
   1304    1.1    dyoung 		 * have priority over normal data frames.
   1305    1.1    dyoung 		 */
   1306    1.1    dyoung 		IF_DEQUEUE(&ic->ic_mgtq, m);
   1307    1.1    dyoung 		if (m == NULL) {
   1308    1.1    dyoung 			/*
   1309    1.1    dyoung 			 * No data frames go out unless we're associated.
   1310    1.1    dyoung 			 */
   1311    1.1    dyoung 			if (ic->ic_state != IEEE80211_S_RUN) {
   1312   1.67    dyoung 				DPRINTF(sc, ATH_DEBUG_XMIT,
   1313   1.67    dyoung 				    "%s: discard data packet, state %s\n",
   1314   1.67    dyoung 				    __func__,
   1315   1.67    dyoung 				    ieee80211_state_name[ic->ic_state]);
   1316    1.1    dyoung 				sc->sc_stats.ast_tx_discard++;
   1317   1.47    dyoung 				ATH_TXBUF_LOCK(sc);
   1318   1.47    dyoung 				STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   1319   1.47    dyoung 				ATH_TXBUF_UNLOCK(sc);
   1320    1.1    dyoung 				break;
   1321    1.1    dyoung 			}
   1322   1.47    dyoung 			IFQ_DEQUEUE(&ifp->if_snd, m);	/* XXX: LOCK */
   1323    1.1    dyoung 			if (m == NULL) {
   1324   1.47    dyoung 				ATH_TXBUF_LOCK(sc);
   1325   1.47    dyoung 				STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   1326   1.47    dyoung 				ATH_TXBUF_UNLOCK(sc);
   1327    1.1    dyoung 				break;
   1328    1.1    dyoung 			}
   1329   1.80    dyoung 			STAILQ_INIT(&frags);
   1330   1.73     blymn 			/*
   1331   1.47    dyoung 			 * Find the node for the destination so we can do
   1332   1.47    dyoung 			 * things like power save and fast frames aggregation.
   1333   1.47    dyoung 			 */
   1334   1.47    dyoung 			if (m->m_len < sizeof(struct ether_header) &&
   1335   1.47    dyoung 			   (m = m_pullup(m, sizeof(struct ether_header))) == NULL) {
   1336   1.47    dyoung 				ic->ic_stats.is_tx_nobuf++;	/* XXX */
   1337   1.47    dyoung 				ni = NULL;
   1338   1.47    dyoung 				goto bad;
   1339   1.47    dyoung 			}
   1340   1.47    dyoung 			eh = mtod(m, struct ether_header *);
   1341   1.47    dyoung 			ni = ieee80211_find_txnode(ic, eh->ether_dhost);
   1342   1.47    dyoung 			if (ni == NULL) {
   1343   1.47    dyoung 				/* NB: ieee80211_find_txnode does stat+msg */
   1344   1.47    dyoung 				m_freem(m);
   1345   1.47    dyoung 				goto bad;
   1346   1.47    dyoung 			}
   1347   1.47    dyoung 			if ((ni->ni_flags & IEEE80211_NODE_PWR_MGT) &&
   1348   1.47    dyoung 			    (m->m_flags & M_PWR_SAV) == 0) {
   1349   1.47    dyoung 				/*
   1350   1.47    dyoung 				 * Station in power save mode; pass the frame
   1351   1.47    dyoung 				 * to the 802.11 layer and continue.  We'll get
   1352   1.47    dyoung 				 * the frame back when the time is right.
   1353   1.47    dyoung 				 */
   1354   1.47    dyoung 				ieee80211_pwrsave(ic, ni, m);
   1355   1.47    dyoung 				goto reclaim;
   1356   1.47    dyoung 			}
   1357   1.47    dyoung 			/* calculate priority so we can find the tx queue */
   1358   1.47    dyoung 			if (ieee80211_classify(ic, m, ni)) {
   1359   1.47    dyoung 				DPRINTF(sc, ATH_DEBUG_XMIT,
   1360   1.47    dyoung 					"%s: discard, classification failure\n",
   1361   1.47    dyoung 					__func__);
   1362   1.47    dyoung 				m_freem(m);
   1363   1.47    dyoung 				goto bad;
   1364   1.47    dyoung 			}
   1365    1.1    dyoung 			ifp->if_opackets++;
   1366    1.2    dyoung 
   1367    1.2    dyoung #if NBPFILTER > 0
   1368    1.2    dyoung 			if (ifp->if_bpf)
   1369    1.2    dyoung 				bpf_mtap(ifp->if_bpf, m);
   1370    1.2    dyoung #endif
   1371    1.1    dyoung 			/*
   1372    1.1    dyoung 			 * Encapsulate the packet in prep for transmission.
   1373    1.1    dyoung 			 */
   1374   1.47    dyoung 			m = ieee80211_encap(ic, m, ni);
   1375    1.1    dyoung 			if (m == NULL) {
   1376   1.67    dyoung 				DPRINTF(sc, ATH_DEBUG_XMIT,
   1377   1.47    dyoung 					"%s: encapsulation failure\n",
   1378   1.47    dyoung 					__func__);
   1379    1.1    dyoung 				sc->sc_stats.ast_tx_encap++;
   1380    1.1    dyoung 				goto bad;
   1381    1.1    dyoung 			}
   1382   1.80    dyoung 			/*
   1383   1.80    dyoung 			 * Check for fragmentation.  If this has frame
   1384   1.80    dyoung 			 * has been broken up verify we have enough
   1385   1.80    dyoung 			 * buffers to send all the fragments so all
   1386   1.80    dyoung 			 * go out or none...
   1387   1.80    dyoung 			 */
   1388  1.104       alc 			if ((m->m_flags & M_FRAG) &&
   1389   1.80    dyoung 			    !ath_txfrag_setup(sc, &frags, m, ni)) {
   1390   1.80    dyoung 				DPRINTF(sc, ATH_DEBUG_ANY,
   1391   1.80    dyoung 				    "%s: out of txfrag buffers\n", __func__);
   1392   1.80    dyoung 				ic->ic_stats.is_tx_nobuf++;     /* XXX */
   1393   1.83    dyoung 				ath_freetx(m);
   1394   1.80    dyoung 				goto bad;
   1395   1.80    dyoung 			}
   1396    1.1    dyoung 		} else {
   1397    1.1    dyoung 			/*
   1398    1.1    dyoung 			 * Hack!  The referenced node pointer is in the
   1399    1.1    dyoung 			 * rcvif field of the packet header.  This is
   1400    1.1    dyoung 			 * placed there by ieee80211_mgmt_output because
   1401    1.1    dyoung 			 * we need to hold the reference with the frame
   1402    1.1    dyoung 			 * and there's no other way (other than packet
   1403    1.1    dyoung 			 * tags which we consider too expensive to use)
   1404    1.1    dyoung 			 * to pass it along.
   1405    1.1    dyoung 			 */
   1406    1.1    dyoung 			ni = (struct ieee80211_node *) m->m_pkthdr.rcvif;
   1407    1.1    dyoung 			m->m_pkthdr.rcvif = NULL;
   1408    1.1    dyoung 
   1409    1.1    dyoung 			wh = mtod(m, struct ieee80211_frame *);
   1410    1.1    dyoung 			if ((wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK) ==
   1411    1.1    dyoung 			    IEEE80211_FC0_SUBTYPE_PROBE_RESP) {
   1412    1.1    dyoung 				/* fill time stamp */
   1413    1.1    dyoung 				u_int64_t tsf;
   1414    1.1    dyoung 				u_int32_t *tstamp;
   1415    1.1    dyoung 
   1416    1.1    dyoung 				tsf = ath_hal_gettsf64(ah);
   1417    1.1    dyoung 				/* XXX: adjust 100us delay to xmit */
   1418    1.1    dyoung 				tsf += 100;
   1419    1.1    dyoung 				tstamp = (u_int32_t *)&wh[1];
   1420    1.1    dyoung 				tstamp[0] = htole32(tsf & 0xffffffff);
   1421    1.1    dyoung 				tstamp[1] = htole32(tsf >> 32);
   1422    1.1    dyoung 			}
   1423    1.1    dyoung 			sc->sc_stats.ast_tx_mgmt++;
   1424    1.1    dyoung 		}
   1425    1.1    dyoung 
   1426   1.80    dyoung 	nextfrag:
   1427   1.80    dyoung 		next = m->m_nextpkt;
   1428    1.1    dyoung 		if (ath_tx_start(sc, ni, bf, m)) {
   1429    1.1    dyoung 	bad:
   1430    1.1    dyoung 			ifp->if_oerrors++;
   1431   1.47    dyoung 	reclaim:
   1432   1.47    dyoung 			ATH_TXBUF_LOCK(sc);
   1433   1.47    dyoung 			STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   1434   1.80    dyoung 			ath_txfrag_cleanup(sc, &frags, ni);
   1435   1.47    dyoung 			ATH_TXBUF_UNLOCK(sc);
   1436   1.35    dyoung 			if (ni != NULL)
   1437   1.47    dyoung 				ieee80211_free_node(ni);
   1438    1.1    dyoung 			continue;
   1439    1.1    dyoung 		}
   1440   1.80    dyoung 		if (next != NULL) {
   1441   1.80    dyoung 			m = next;
   1442   1.80    dyoung 			bf = STAILQ_FIRST(&frags);
   1443   1.80    dyoung 			KASSERT(bf != NULL, ("no buf for txfrag"));
   1444   1.80    dyoung 			STAILQ_REMOVE_HEAD(&frags, bf_list);
   1445   1.80    dyoung 			goto nextfrag;
   1446   1.80    dyoung 		}
   1447    1.1    dyoung 
   1448    1.1    dyoung 		ifp->if_timer = 1;
   1449    1.1    dyoung 	}
   1450    1.1    dyoung }
   1451    1.1    dyoung 
   1452    1.1    dyoung static int
   1453    1.1    dyoung ath_media_change(struct ifnet *ifp)
   1454    1.1    dyoung {
   1455   1.47    dyoung #define	IS_UP(ifp) \
   1456   1.61     skrll 	((ifp->if_flags & IFF_UP) && (ifp->if_flags & IFF_RUNNING))
   1457    1.1    dyoung 	int error;
   1458    1.1    dyoung 
   1459    1.1    dyoung 	error = ieee80211_media_change(ifp);
   1460    1.1    dyoung 	if (error == ENETRESET) {
   1461   1.47    dyoung 		if (IS_UP(ifp))
   1462   1.55    dyoung 			ath_init(ifp->if_softc);	/* XXX lose error */
   1463    1.1    dyoung 		error = 0;
   1464    1.1    dyoung 	}
   1465    1.1    dyoung 	return error;
   1466   1.47    dyoung #undef IS_UP
   1467    1.1    dyoung }
   1468    1.1    dyoung 
   1469   1.47    dyoung #ifdef AR_DEBUG
   1470    1.1    dyoung static void
   1471   1.47    dyoung ath_keyprint(const char *tag, u_int ix,
   1472   1.47    dyoung 	const HAL_KEYVAL *hk, const u_int8_t mac[IEEE80211_ADDR_LEN])
   1473   1.47    dyoung {
   1474   1.47    dyoung 	static const char *ciphers[] = {
   1475   1.47    dyoung 		"WEP",
   1476   1.47    dyoung 		"AES-OCB",
   1477   1.47    dyoung 		"AES-CCM",
   1478   1.47    dyoung 		"CKIP",
   1479   1.47    dyoung 		"TKIP",
   1480   1.47    dyoung 		"CLR",
   1481   1.47    dyoung 	};
   1482   1.47    dyoung 	int i, n;
   1483   1.47    dyoung 
   1484   1.47    dyoung 	printf("%s: [%02u] %-7s ", tag, ix, ciphers[hk->kv_type]);
   1485   1.47    dyoung 	for (i = 0, n = hk->kv_len; i < n; i++)
   1486   1.47    dyoung 		printf("%02x", hk->kv_val[i]);
   1487   1.47    dyoung 	printf(" mac %s", ether_sprintf(mac));
   1488   1.47    dyoung 	if (hk->kv_type == HAL_CIPHER_TKIP) {
   1489   1.47    dyoung 		printf(" mic ");
   1490   1.47    dyoung 		for (i = 0; i < sizeof(hk->kv_mic); i++)
   1491   1.47    dyoung 			printf("%02x", hk->kv_mic[i]);
   1492   1.47    dyoung 	}
   1493   1.47    dyoung 	printf("\n");
   1494   1.47    dyoung }
   1495   1.47    dyoung #endif
   1496   1.47    dyoung 
   1497   1.47    dyoung /*
   1498   1.47    dyoung  * Set a TKIP key into the hardware.  This handles the
   1499   1.47    dyoung  * potential distribution of key state to multiple key
   1500   1.47    dyoung  * cache slots for TKIP.
   1501   1.47    dyoung  */
   1502   1.47    dyoung static int
   1503   1.47    dyoung ath_keyset_tkip(struct ath_softc *sc, const struct ieee80211_key *k,
   1504   1.47    dyoung 	HAL_KEYVAL *hk, const u_int8_t mac[IEEE80211_ADDR_LEN])
   1505    1.1    dyoung {
   1506   1.47    dyoung #define	IEEE80211_KEY_XR	(IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV)
   1507   1.47    dyoung 	static const u_int8_t zerobssid[IEEE80211_ADDR_LEN];
   1508   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1509    1.1    dyoung 
   1510   1.47    dyoung 	KASSERT(k->wk_cipher->ic_cipher == IEEE80211_CIPHER_TKIP,
   1511   1.47    dyoung 		("got a non-TKIP key, cipher %u", k->wk_cipher->ic_cipher));
   1512   1.47    dyoung 	if ((k->wk_flags & IEEE80211_KEY_XR) == IEEE80211_KEY_XR) {
   1513  1.104       alc 		if (sc->sc_splitmic) {
   1514  1.104       alc 			/*
   1515  1.104       alc 			 * TX key goes at first index, RX key at the rx index.
   1516  1.104       alc 			 * The hal handles the MIC keys at index+64.
   1517  1.104       alc 			 */
   1518  1.104       alc 			memcpy(hk->kv_mic, k->wk_txmic, sizeof(hk->kv_mic));
   1519  1.104       alc 			KEYPRINTF(sc, k->wk_keyix, hk, zerobssid);
   1520  1.104       alc 			if (!ath_hal_keyset(ah, ATH_KEY(k->wk_keyix), hk,
   1521  1.104       alc 						zerobssid))
   1522  1.104       alc 				return 0;
   1523  1.104       alc 
   1524  1.104       alc 			memcpy(hk->kv_mic, k->wk_rxmic, sizeof(hk->kv_mic));
   1525  1.104       alc 			KEYPRINTF(sc, k->wk_keyix+32, hk, mac);
   1526  1.104       alc 			/* XXX delete tx key on failure? */
   1527  1.104       alc 			return ath_hal_keyset(ah, ATH_KEY(k->wk_keyix+32),
   1528  1.104       alc 					hk, mac);
   1529  1.104       alc 		} else {
   1530  1.104       alc 			/*
   1531  1.104       alc 			 * Room for both TX+RX MIC keys in one key cache
   1532  1.104       alc 			 * slot, just set key at the first index; the HAL
   1533  1.104       alc 			 * will handle the reset.
   1534  1.104       alc 			 */
   1535  1.104       alc 			memcpy(hk->kv_mic, k->wk_rxmic, sizeof(hk->kv_mic));
   1536  1.104       alc 			memcpy(hk->kv_txmic, k->wk_txmic, sizeof(hk->kv_txmic));
   1537  1.104       alc 			KEYPRINTF(sc, k->wk_keyix, hk, mac);
   1538  1.104       alc 			return ath_hal_keyset(ah, ATH_KEY(k->wk_keyix), hk, mac);
   1539  1.104       alc 		}
   1540  1.106  jmcneill 	} else if (k->wk_flags & IEEE80211_KEY_XMIT) {
   1541  1.106  jmcneill 		if (sc->sc_splitmic) {
   1542  1.106  jmcneill 			/*
   1543  1.106  jmcneill 			 * NB: must pass MIC key in expected location when
   1544  1.106  jmcneill 			 * the keycache only holds one MIC key per entry.
   1545  1.106  jmcneill 			 */
   1546  1.106  jmcneill 			memcpy(hk->kv_mic, k->wk_txmic, sizeof(hk->kv_txmic));
   1547  1.106  jmcneill 		} else
   1548  1.106  jmcneill 			memcpy(hk->kv_txmic, k->wk_txmic, sizeof(hk->kv_txmic));
   1549   1.55    dyoung 		KEYPRINTF(sc, k->wk_keyix, hk, mac);
   1550  1.104       alc 		return ath_hal_keyset(ah, ATH_KEY(k->wk_keyix), hk, mac);
   1551  1.106  jmcneill 	} else if (k->wk_flags & IEEE80211_KEY_RECV) {
   1552  1.106  jmcneill 		memcpy(hk->kv_mic, k->wk_rxmic, sizeof(hk->kv_mic));
   1553  1.106  jmcneill 		KEYPRINTF(sc, k->wk_keyix, hk, mac);
   1554  1.106  jmcneill 		return ath_hal_keyset(ah, k->wk_keyix, hk, mac);
   1555    1.1    dyoung 	}
   1556   1.47    dyoung 	return 0;
   1557   1.47    dyoung #undef IEEE80211_KEY_XR
   1558    1.1    dyoung }
   1559    1.1    dyoung 
   1560   1.47    dyoung /*
   1561   1.47    dyoung  * Set a net80211 key into the hardware.  This handles the
   1562   1.47    dyoung  * potential distribution of key state to multiple key
   1563   1.47    dyoung  * cache slots for TKIP with hardware MIC support.
   1564   1.47    dyoung  */
   1565    1.1    dyoung static int
   1566   1.47    dyoung ath_keyset(struct ath_softc *sc, const struct ieee80211_key *k,
   1567   1.55    dyoung 	const u_int8_t mac0[IEEE80211_ADDR_LEN],
   1568   1.55    dyoung 	struct ieee80211_node *bss)
   1569    1.1    dyoung {
   1570   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   1571   1.47    dyoung 	static const u_int8_t ciphermap[] = {
   1572   1.47    dyoung 		HAL_CIPHER_WEP,		/* IEEE80211_CIPHER_WEP */
   1573   1.47    dyoung 		HAL_CIPHER_TKIP,	/* IEEE80211_CIPHER_TKIP */
   1574   1.47    dyoung 		HAL_CIPHER_AES_OCB,	/* IEEE80211_CIPHER_AES_OCB */
   1575   1.47    dyoung 		HAL_CIPHER_AES_CCM,	/* IEEE80211_CIPHER_AES_CCM */
   1576   1.47    dyoung 		(u_int8_t) -1,		/* 4 is not allocated */
   1577   1.47    dyoung 		HAL_CIPHER_CKIP,	/* IEEE80211_CIPHER_CKIP */
   1578   1.47    dyoung 		HAL_CIPHER_CLR,		/* IEEE80211_CIPHER_NONE */
   1579   1.47    dyoung 	};
   1580   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1581   1.47    dyoung 	const struct ieee80211_cipher *cip = k->wk_cipher;
   1582   1.55    dyoung 	u_int8_t gmac[IEEE80211_ADDR_LEN];
   1583   1.55    dyoung 	const u_int8_t *mac;
   1584   1.47    dyoung 	HAL_KEYVAL hk;
   1585   1.47    dyoung 
   1586   1.47    dyoung 	memset(&hk, 0, sizeof(hk));
   1587   1.47    dyoung 	/*
   1588   1.47    dyoung 	 * Software crypto uses a "clear key" so non-crypto
   1589   1.47    dyoung 	 * state kept in the key cache are maintained and
   1590   1.47    dyoung 	 * so that rx frames have an entry to match.
   1591   1.47    dyoung 	 */
   1592   1.47    dyoung 	if ((k->wk_flags & IEEE80211_KEY_SWCRYPT) == 0) {
   1593   1.47    dyoung 		KASSERT(cip->ic_cipher < N(ciphermap),
   1594   1.47    dyoung 			("invalid cipher type %u", cip->ic_cipher));
   1595   1.47    dyoung 		hk.kv_type = ciphermap[cip->ic_cipher];
   1596   1.47    dyoung 		hk.kv_len = k->wk_keylen;
   1597   1.47    dyoung 		memcpy(hk.kv_val, k->wk_key, k->wk_keylen);
   1598   1.47    dyoung 	} else
   1599   1.47    dyoung 		hk.kv_type = HAL_CIPHER_CLR;
   1600    1.1    dyoung 
   1601   1.55    dyoung 	if ((k->wk_flags & IEEE80211_KEY_GROUP) && sc->sc_mcastkey) {
   1602   1.55    dyoung 		/*
   1603   1.55    dyoung 		 * Group keys on hardware that supports multicast frame
   1604   1.55    dyoung 		 * key search use a mac that is the sender's address with
   1605   1.55    dyoung 		 * the high bit set instead of the app-specified address.
   1606   1.55    dyoung 		 */
   1607   1.55    dyoung 		IEEE80211_ADDR_COPY(gmac, bss->ni_macaddr);
   1608   1.55    dyoung 		gmac[0] |= 0x80;
   1609   1.55    dyoung 		mac = gmac;
   1610   1.55    dyoung 	} else
   1611   1.55    dyoung 		mac = mac0;
   1612   1.55    dyoung 
   1613  1.104       alc 	if ((hk.kv_type == HAL_CIPHER_TKIP &&
   1614  1.106  jmcneill 	    (k->wk_flags & IEEE80211_KEY_SWMIC) == 0)) {
   1615   1.47    dyoung 		return ath_keyset_tkip(sc, k, &hk, mac);
   1616   1.47    dyoung 	} else {
   1617   1.47    dyoung 		KEYPRINTF(sc, k->wk_keyix, &hk, mac);
   1618  1.104       alc 		return ath_hal_keyset(ah, ATH_KEY(k->wk_keyix), &hk, mac);
   1619    1.1    dyoung 	}
   1620   1.47    dyoung #undef N
   1621    1.1    dyoung }
   1622    1.1    dyoung 
   1623    1.1    dyoung /*
   1624   1.47    dyoung  * Allocate tx/rx key slots for TKIP.  We allocate two slots for
   1625   1.47    dyoung  * each key, one for decrypt/encrypt and the other for the MIC.
   1626   1.47    dyoung  */
   1627   1.47    dyoung static u_int16_t
   1628   1.61     skrll key_alloc_2pair(struct ath_softc *sc,
   1629   1.61     skrll 	ieee80211_keyix *txkeyix, ieee80211_keyix *rxkeyix)
   1630   1.47    dyoung {
   1631   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   1632   1.47    dyoung 	u_int i, keyix;
   1633   1.33    dyoung 
   1634   1.47    dyoung 	KASSERT(sc->sc_splitmic, ("key cache !split"));
   1635   1.47    dyoung 	/* XXX could optimize */
   1636   1.47    dyoung 	for (i = 0; i < N(sc->sc_keymap)/4; i++) {
   1637   1.47    dyoung 		u_int8_t b = sc->sc_keymap[i];
   1638   1.47    dyoung 		if (b != 0xff) {
   1639   1.47    dyoung 			/*
   1640   1.47    dyoung 			 * One or more slots in this byte are free.
   1641   1.47    dyoung 			 */
   1642   1.47    dyoung 			keyix = i*NBBY;
   1643   1.47    dyoung 			while (b & 1) {
   1644   1.47    dyoung 		again:
   1645   1.47    dyoung 				keyix++;
   1646   1.47    dyoung 				b >>= 1;
   1647   1.47    dyoung 			}
   1648   1.47    dyoung 			/* XXX IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV */
   1649   1.47    dyoung 			if (isset(sc->sc_keymap, keyix+32) ||
   1650   1.47    dyoung 			    isset(sc->sc_keymap, keyix+64) ||
   1651   1.47    dyoung 			    isset(sc->sc_keymap, keyix+32+64)) {
   1652   1.47    dyoung 				/* full pair unavailable */
   1653   1.47    dyoung 				/* XXX statistic */
   1654   1.47    dyoung 				if (keyix == (i+1)*NBBY) {
   1655   1.47    dyoung 					/* no slots were appropriate, advance */
   1656   1.47    dyoung 					continue;
   1657   1.47    dyoung 				}
   1658   1.47    dyoung 				goto again;
   1659   1.47    dyoung 			}
   1660   1.47    dyoung 			setbit(sc->sc_keymap, keyix);
   1661   1.47    dyoung 			setbit(sc->sc_keymap, keyix+64);
   1662   1.47    dyoung 			setbit(sc->sc_keymap, keyix+32);
   1663   1.47    dyoung 			setbit(sc->sc_keymap, keyix+32+64);
   1664   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_KEYCACHE,
   1665   1.47    dyoung 				"%s: key pair %u,%u %u,%u\n",
   1666   1.47    dyoung 				__func__, keyix, keyix+64,
   1667   1.47    dyoung 				keyix+32, keyix+32+64);
   1668   1.61     skrll 			*txkeyix = keyix;
   1669   1.61     skrll 			*rxkeyix = keyix+32;
   1670  1.104       alc 			return keyix;
   1671   1.33    dyoung 		}
   1672    1.1    dyoung 	}
   1673   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s: out of pair space\n", __func__);
   1674  1.104       alc 	return IEEE80211_KEYIX_NONE;
   1675   1.47    dyoung #undef N
   1676    1.1    dyoung }
   1677    1.1    dyoung 
   1678   1.47    dyoung /*
   1679  1.106  jmcneill  * Allocate tx/rx key slots for TKIP.  We allocate two slots for
   1680  1.106  jmcneill  * each key, one for decrypt/encrypt and the other for the MIC.
   1681  1.106  jmcneill  */
   1682  1.106  jmcneill static int
   1683  1.106  jmcneill key_alloc_pair(struct ath_softc *sc, ieee80211_keyix *txkeyix,
   1684  1.106  jmcneill     ieee80211_keyix *rxkeyix)
   1685  1.106  jmcneill {
   1686  1.106  jmcneill #define N(a)	(sizeof(a)/sizeof(a[0]))
   1687  1.106  jmcneill 	u_int i, keyix;
   1688  1.106  jmcneill 
   1689  1.106  jmcneill 	KASSERT(!sc->sc_splitmic, ("key cache split"));
   1690  1.106  jmcneill 	/* XXX could optimize */
   1691  1.106  jmcneill 	for (i = 0; i < N(sc->sc_keymap)/4; i++) {
   1692  1.106  jmcneill 		uint8_t b = sc->sc_keymap[i];
   1693  1.106  jmcneill 		if (b != 0xff) {
   1694  1.106  jmcneill 			/*
   1695  1.106  jmcneill 			 * One or more slots in this byte are free.
   1696  1.106  jmcneill 			 */
   1697  1.106  jmcneill 			keyix = i*NBBY;
   1698  1.106  jmcneill 			while (b & 1) {
   1699  1.106  jmcneill 		again:
   1700  1.106  jmcneill 				keyix++;
   1701  1.106  jmcneill 				b >>= 1;
   1702  1.106  jmcneill 			}
   1703  1.106  jmcneill 			if (isset(sc->sc_keymap, keyix+64)) {
   1704  1.106  jmcneill 				/* full pair unavailable */
   1705  1.106  jmcneill 				/* XXX statistic */
   1706  1.106  jmcneill 				if (keyix == (i+1)*NBBY) {
   1707  1.106  jmcneill 					/* no slots were appropriate, advance */
   1708  1.106  jmcneill 					continue;
   1709  1.106  jmcneill 				}
   1710  1.106  jmcneill 				goto again;
   1711  1.106  jmcneill 			}
   1712  1.106  jmcneill 			setbit(sc->sc_keymap, keyix);
   1713  1.106  jmcneill 			setbit(sc->sc_keymap, keyix+64);
   1714  1.106  jmcneill 			DPRINTF(sc, ATH_DEBUG_KEYCACHE,
   1715  1.106  jmcneill 				"%s: key pair %u,%u\n",
   1716  1.106  jmcneill 				__func__, keyix, keyix+64);
   1717  1.106  jmcneill 			*txkeyix = *rxkeyix = keyix;
   1718  1.106  jmcneill 			return 1;
   1719  1.106  jmcneill 		}
   1720  1.106  jmcneill 	}
   1721  1.106  jmcneill 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s: out of pair space\n", __func__);
   1722  1.106  jmcneill 	return 0;
   1723  1.106  jmcneill #undef N
   1724  1.106  jmcneill }
   1725  1.106  jmcneill 
   1726  1.106  jmcneill /*
   1727   1.47    dyoung  * Allocate a single key cache slot.
   1728   1.47    dyoung  */
   1729   1.61     skrll static int
   1730   1.61     skrll key_alloc_single(struct ath_softc *sc,
   1731   1.61     skrll 	ieee80211_keyix *txkeyix, ieee80211_keyix *rxkeyix)
   1732    1.2    dyoung {
   1733   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   1734   1.47    dyoung 	u_int i, keyix;
   1735    1.2    dyoung 
   1736   1.47    dyoung 	/* XXX try i,i+32,i+64,i+32+64 to minimize key pair conflicts */
   1737   1.47    dyoung 	for (i = 0; i < N(sc->sc_keymap); i++) {
   1738   1.47    dyoung 		u_int8_t b = sc->sc_keymap[i];
   1739   1.47    dyoung 		if (b != 0xff) {
   1740   1.47    dyoung 			/*
   1741   1.47    dyoung 			 * One or more slots are free.
   1742   1.47    dyoung 			 */
   1743   1.47    dyoung 			keyix = i*NBBY;
   1744   1.47    dyoung 			while (b & 1)
   1745   1.47    dyoung 				keyix++, b >>= 1;
   1746   1.47    dyoung 			setbit(sc->sc_keymap, keyix);
   1747   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s: key %u\n",
   1748   1.47    dyoung 				__func__, keyix);
   1749   1.61     skrll 			*txkeyix = *rxkeyix = keyix;
   1750   1.61     skrll 			return 1;
   1751   1.47    dyoung 		}
   1752   1.47    dyoung 	}
   1753   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s: out of space\n", __func__);
   1754   1.61     skrll 	return 0;
   1755   1.47    dyoung #undef N
   1756    1.2    dyoung }
   1757    1.2    dyoung 
   1758   1.47    dyoung /*
   1759   1.47    dyoung  * Allocate one or more key cache slots for a uniacst key.  The
   1760   1.47    dyoung  * key itself is needed only to identify the cipher.  For hardware
   1761   1.47    dyoung  * TKIP with split cipher+MIC keys we allocate two key cache slot
   1762   1.47    dyoung  * pairs so that we can setup separate TX and RX MIC keys.  Note
   1763   1.47    dyoung  * that the MIC key for a TKIP key at slot i is assumed by the
   1764   1.47    dyoung  * hardware to be at slot i+64.  This limits TKIP keys to the first
   1765   1.47    dyoung  * 64 entries.
   1766   1.47    dyoung  */
   1767   1.47    dyoung static int
   1768   1.61     skrll ath_key_alloc(struct ieee80211com *ic, const struct ieee80211_key *k,
   1769   1.61     skrll 	ieee80211_keyix *keyix, ieee80211_keyix *rxkeyix)
   1770    1.2    dyoung {
   1771   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   1772   1.47    dyoung 
   1773   1.47    dyoung 	/*
   1774   1.47    dyoung 	 * Group key allocation must be handled specially for
   1775   1.47    dyoung 	 * parts that do not support multicast key cache search
   1776   1.47    dyoung 	 * functionality.  For those parts the key id must match
   1777   1.47    dyoung 	 * the h/w key index so lookups find the right key.  On
   1778   1.47    dyoung 	 * parts w/ the key search facility we install the sender's
   1779   1.47    dyoung 	 * mac address (with the high bit set) and let the hardware
   1780   1.47    dyoung 	 * find the key w/o using the key id.  This is preferred as
   1781   1.47    dyoung 	 * it permits us to support multiple users for adhoc and/or
   1782   1.47    dyoung 	 * multi-station operation.
   1783   1.47    dyoung 	 */
   1784   1.47    dyoung 	if ((k->wk_flags & IEEE80211_KEY_GROUP) && !sc->sc_mcastkey) {
   1785   1.47    dyoung 		if (!(&ic->ic_nw_keys[0] <= k &&
   1786   1.47    dyoung 		      k < &ic->ic_nw_keys[IEEE80211_WEP_NKID])) {
   1787   1.47    dyoung 			/* should not happen */
   1788   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_KEYCACHE,
   1789   1.47    dyoung 				"%s: bogus group key\n", __func__);
   1790   1.61     skrll 			return 0;
   1791   1.47    dyoung 		}
   1792   1.47    dyoung 		/*
   1793   1.47    dyoung 		 * XXX we pre-allocate the global keys so
   1794   1.47    dyoung 		 * have no way to check if they've already been allocated.
   1795   1.47    dyoung 		 */
   1796   1.61     skrll 		*keyix = *rxkeyix = k - ic->ic_nw_keys;
   1797   1.61     skrll 		return 1;
   1798   1.47    dyoung 	}
   1799    1.2    dyoung 
   1800   1.47    dyoung 	/*
   1801   1.47    dyoung 	 * We allocate two pair for TKIP when using the h/w to do
   1802   1.47    dyoung 	 * the MIC.  For everything else, including software crypto,
   1803   1.47    dyoung 	 * we allocate a single entry.  Note that s/w crypto requires
   1804   1.47    dyoung 	 * a pass-through slot on the 5211 and 5212.  The 5210 does
   1805   1.47    dyoung 	 * not support pass-through cache entries and we map all
   1806   1.47    dyoung 	 * those requests to slot 0.
   1807   1.47    dyoung 	 */
   1808   1.47    dyoung 	if (k->wk_flags & IEEE80211_KEY_SWCRYPT) {
   1809   1.61     skrll 		return key_alloc_single(sc, keyix, rxkeyix);
   1810   1.47    dyoung 	} else if (k->wk_cipher->ic_cipher == IEEE80211_CIPHER_TKIP &&
   1811  1.106  jmcneill 	    (k->wk_flags & IEEE80211_KEY_SWMIC) == 0) {
   1812  1.106  jmcneill 		if (sc->sc_splitmic)
   1813  1.106  jmcneill 			return key_alloc_2pair(sc, keyix, rxkeyix);
   1814  1.106  jmcneill 		else
   1815  1.106  jmcneill 			return key_alloc_pair(sc, keyix, rxkeyix);
   1816   1.47    dyoung 	} else {
   1817   1.61     skrll 		return key_alloc_single(sc, keyix, rxkeyix);
   1818    1.2    dyoung 	}
   1819    1.2    dyoung }
   1820   1.47    dyoung 
   1821   1.47    dyoung /*
   1822   1.47    dyoung  * Delete an entry in the key cache allocated by ath_key_alloc.
   1823   1.47    dyoung  */
   1824   1.47    dyoung static int
   1825   1.47    dyoung ath_key_delete(struct ieee80211com *ic, const struct ieee80211_key *k)
   1826    1.2    dyoung {
   1827   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   1828   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1829   1.47    dyoung 	const struct ieee80211_cipher *cip = k->wk_cipher;
   1830   1.47    dyoung 	u_int keyix = k->wk_keyix;
   1831   1.47    dyoung 
   1832   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s: delete key %u\n", __func__, keyix);
   1833    1.2    dyoung 
   1834  1.102     joerg 	if (!device_has_power(sc->sc_dev)) {
   1835  1.102     joerg 		aprint_error_dev(sc->sc_dev, "deleting keyix %d w/o power\n",
   1836   1.99    dyoung 		    k->wk_keyix);
   1837   1.99    dyoung 	}
   1838   1.99    dyoung 
   1839   1.47    dyoung 	ath_hal_keyreset(ah, keyix);
   1840   1.47    dyoung 	/*
   1841   1.47    dyoung 	 * Handle split tx/rx keying required for TKIP with h/w MIC.
   1842   1.47    dyoung 	 */
   1843   1.47    dyoung 	if (cip->ic_cipher == IEEE80211_CIPHER_TKIP &&
   1844   1.61     skrll 	    (k->wk_flags & IEEE80211_KEY_SWMIC) == 0 && sc->sc_splitmic)
   1845   1.47    dyoung 		ath_hal_keyreset(ah, keyix+32);		/* RX key */
   1846   1.47    dyoung 	if (keyix >= IEEE80211_WEP_NKID) {
   1847   1.47    dyoung 		/*
   1848   1.47    dyoung 		 * Don't touch keymap entries for global keys so
   1849   1.47    dyoung 		 * they are never considered for dynamic allocation.
   1850   1.47    dyoung 		 */
   1851   1.47    dyoung 		clrbit(sc->sc_keymap, keyix);
   1852   1.47    dyoung 		if (cip->ic_cipher == IEEE80211_CIPHER_TKIP &&
   1853  1.106  jmcneill 		    (k->wk_flags & IEEE80211_KEY_SWMIC) == 0) {
   1854   1.47    dyoung 			clrbit(sc->sc_keymap, keyix+64);	/* TX key MIC */
   1855  1.106  jmcneill 			if (sc->sc_splitmic) {
   1856  1.106  jmcneill 				/* +32 for RX key, +32+64 for RX key MIC */
   1857  1.106  jmcneill 				clrbit(sc->sc_keymap, keyix+32);
   1858  1.106  jmcneill 				clrbit(sc->sc_keymap, keyix+32+64);
   1859  1.106  jmcneill 			}
   1860    1.2    dyoung 		}
   1861    1.2    dyoung 	}
   1862   1.47    dyoung 	return 1;
   1863   1.47    dyoung }
   1864   1.47    dyoung 
   1865   1.47    dyoung /*
   1866   1.47    dyoung  * Set the key cache contents for the specified key.  Key cache
   1867   1.47    dyoung  * slot(s) must already have been allocated by ath_key_alloc.
   1868   1.47    dyoung  */
   1869   1.47    dyoung static int
   1870   1.47    dyoung ath_key_set(struct ieee80211com *ic, const struct ieee80211_key *k,
   1871   1.47    dyoung 	const u_int8_t mac[IEEE80211_ADDR_LEN])
   1872   1.47    dyoung {
   1873   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   1874   1.47    dyoung 
   1875  1.102     joerg 	if (!device_has_power(sc->sc_dev)) {
   1876  1.102     joerg 		aprint_error_dev(sc->sc_dev, "setting keyix %d w/o power\n",
   1877   1.99    dyoung 		    k->wk_keyix);
   1878   1.99    dyoung 	}
   1879   1.55    dyoung 	return ath_keyset(sc, k, mac, ic->ic_bss);
   1880   1.47    dyoung }
   1881   1.47    dyoung 
   1882   1.47    dyoung /*
   1883   1.47    dyoung  * Block/unblock tx+rx processing while a key change is done.
   1884   1.47    dyoung  * We assume the caller serializes key management operations
   1885   1.47    dyoung  * so we only need to worry about synchronization with other
   1886   1.47    dyoung  * uses that originate in the driver.
   1887   1.47    dyoung  */
   1888   1.47    dyoung static void
   1889   1.47    dyoung ath_key_update_begin(struct ieee80211com *ic)
   1890   1.47    dyoung {
   1891   1.47    dyoung 	struct ifnet *ifp = ic->ic_ifp;
   1892   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1893   1.47    dyoung 
   1894   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s:\n", __func__);
   1895   1.47    dyoung #if 0
   1896   1.47    dyoung 	tasklet_disable(&sc->sc_rxtq);
   1897   1.47    dyoung #endif
   1898   1.47    dyoung 	IF_LOCK(&ifp->if_snd);		/* NB: doesn't block mgmt frames */
   1899    1.2    dyoung }
   1900   1.47    dyoung 
   1901   1.47    dyoung static void
   1902   1.47    dyoung ath_key_update_end(struct ieee80211com *ic)
   1903   1.47    dyoung {
   1904   1.47    dyoung 	struct ifnet *ifp = ic->ic_ifp;
   1905   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   1906   1.47    dyoung 
   1907   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_KEYCACHE, "%s:\n", __func__);
   1908   1.47    dyoung 	IF_UNLOCK(&ifp->if_snd);
   1909   1.47    dyoung #if 0
   1910   1.47    dyoung 	tasklet_enable(&sc->sc_rxtq);
   1911    1.2    dyoung #endif
   1912   1.47    dyoung }
   1913    1.2    dyoung 
   1914   1.18    dyoung /*
   1915   1.18    dyoung  * Calculate the receive filter according to the
   1916   1.18    dyoung  * operating mode and state:
   1917   1.18    dyoung  *
   1918   1.18    dyoung  * o always accept unicast, broadcast, and multicast traffic
   1919   1.47    dyoung  * o maintain current state of phy error reception (the hal
   1920   1.47    dyoung  *   may enable phy error frames for noise immunity work)
   1921   1.18    dyoung  * o probe request frames are accepted only when operating in
   1922   1.18    dyoung  *   hostap, adhoc, or monitor modes
   1923   1.18    dyoung  * o enable promiscuous mode according to the interface state
   1924   1.18    dyoung  * o accept beacons:
   1925   1.18    dyoung  *   - when operating in adhoc mode so the 802.11 layer creates
   1926   1.18    dyoung  *     node table entries for peers,
   1927   1.18    dyoung  *   - when operating in station mode for collecting rssi data when
   1928   1.18    dyoung  *     the station is otherwise quiet, or
   1929   1.18    dyoung  *   - when scanning
   1930   1.18    dyoung  */
   1931   1.18    dyoung static u_int32_t
   1932   1.47    dyoung ath_calcrxfilter(struct ath_softc *sc, enum ieee80211_state state)
   1933    1.1    dyoung {
   1934    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1935    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1936   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   1937   1.18    dyoung 	u_int32_t rfilt;
   1938    1.1    dyoung 
   1939    1.1    dyoung 	rfilt = (ath_hal_getrxfilter(ah) & HAL_RX_FILTER_PHYERR)
   1940    1.1    dyoung 	      | HAL_RX_FILTER_UCAST | HAL_RX_FILTER_BCAST | HAL_RX_FILTER_MCAST;
   1941    1.1    dyoung 	if (ic->ic_opmode != IEEE80211_M_STA)
   1942    1.1    dyoung 		rfilt |= HAL_RX_FILTER_PROBEREQ;
   1943   1.47    dyoung 	if (ic->ic_opmode != IEEE80211_M_HOSTAP &&
   1944   1.47    dyoung 	    (ifp->if_flags & IFF_PROMISC))
   1945   1.47    dyoung 		rfilt |= HAL_RX_FILTER_PROM;
   1946  1.104       alc 	if (ifp->if_flags & IFF_PROMISC)
   1947  1.104       alc 		rfilt |= HAL_RX_FILTER_CONTROL | HAL_RX_FILTER_PROBEREQ;
   1948   1.47    dyoung 	if (ic->ic_opmode == IEEE80211_M_STA ||
   1949   1.47    dyoung 	    ic->ic_opmode == IEEE80211_M_IBSS ||
   1950   1.47    dyoung 	    state == IEEE80211_S_SCAN)
   1951    1.1    dyoung 		rfilt |= HAL_RX_FILTER_BEACON;
   1952   1.18    dyoung 	return rfilt;
   1953   1.18    dyoung }
   1954   1.18    dyoung 
   1955   1.18    dyoung static void
   1956   1.99    dyoung ath_mode_init(struct ath_softc *sc)
   1957   1.47    dyoung {
   1958   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   1959   1.99    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   1960   1.99    dyoung 	struct ath_hal *ah = sc->sc_ah;
   1961   1.47    dyoung 	struct ether_multi *enm;
   1962   1.47    dyoung 	struct ether_multistep estep;
   1963   1.99    dyoung 	u_int32_t rfilt, mfilt[2], val;
   1964   1.60       gdt 	int i;
   1965   1.99    dyoung 	uint8_t pos;
   1966   1.18    dyoung 
   1967   1.18    dyoung 	/* configure rx filter */
   1968   1.47    dyoung 	rfilt = ath_calcrxfilter(sc, ic->ic_state);
   1969    1.1    dyoung 	ath_hal_setrxfilter(ah, rfilt);
   1970    1.1    dyoung 
   1971   1.18    dyoung 	/* configure operational mode */
   1972   1.19    dyoung 	ath_hal_setopmode(ah);
   1973   1.18    dyoung 
   1974   1.60       gdt 	/* Write keys to hardware; it may have been powered down. */
   1975   1.60       gdt 	ath_key_update_begin(ic);
   1976   1.60       gdt 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
   1977   1.60       gdt 		ath_key_set(ic,
   1978   1.60       gdt 			    &ic->ic_crypto.cs_nw_keys[i],
   1979   1.60       gdt 			    ic->ic_myaddr);
   1980   1.60       gdt 	}
   1981   1.60       gdt 	ath_key_update_end(ic);
   1982   1.60       gdt 
   1983   1.47    dyoung 	/*
   1984   1.47    dyoung 	 * Handle any link-level address change.  Note that we only
   1985   1.47    dyoung 	 * need to force ic_myaddr; any other addresses are handled
   1986   1.47    dyoung 	 * as a byproduct of the ifnet code marking the interface
   1987   1.47    dyoung 	 * down then up.
   1988   1.47    dyoung 	 *
   1989   1.47    dyoung 	 * XXX should get from lladdr instead of arpcom but that's more work
   1990   1.47    dyoung 	 */
   1991   1.85    dyoung 	IEEE80211_ADDR_COPY(ic->ic_myaddr, CLLADDR(sc->sc_if.if_sadl));
   1992   1.47    dyoung 	ath_hal_setmac(ah, ic->ic_myaddr);
   1993   1.47    dyoung 
   1994    1.1    dyoung 	/* calculate and install multicast filter */
   1995   1.99    dyoung 	ifp->if_flags &= ~IFF_ALLMULTI;
   1996   1.99    dyoung 	mfilt[0] = mfilt[1] = 0;
   1997   1.99    dyoung 	ETHER_FIRST_MULTI(estep, &sc->sc_ec, enm);
   1998   1.99    dyoung 	while (enm != NULL) {
   1999   1.99    dyoung 		void *dl;
   2000   1.99    dyoung 		/* XXX Punt on ranges. */
   2001   1.99    dyoung 		if (!IEEE80211_ADDR_EQ(enm->enm_addrlo, enm->enm_addrhi)) {
   2002   1.99    dyoung 			mfilt[0] = mfilt[1] = 0xffffffff;
   2003   1.99    dyoung 			ifp->if_flags |= IFF_ALLMULTI;
   2004   1.99    dyoung 			break;
   2005   1.61     skrll 		}
   2006   1.99    dyoung 		dl = enm->enm_addrlo;
   2007   1.99    dyoung 		val = LE_READ_4((char *)dl + 0);
   2008   1.99    dyoung 		pos = (val >> 18) ^ (val >> 12) ^ (val >> 6) ^ val;
   2009   1.99    dyoung 		val = LE_READ_4((char *)dl + 3);
   2010   1.99    dyoung 		pos ^= (val >> 18) ^ (val >> 12) ^ (val >> 6) ^ val;
   2011   1.99    dyoung 		pos &= 0x3f;
   2012   1.99    dyoung 		mfilt[pos / 32] |= (1 << (pos % 32));
   2013   1.99    dyoung 
   2014   1.99    dyoung 		ETHER_NEXT_MULTI(estep, enm);
   2015   1.62    dyoung 	}
   2016   1.99    dyoung 
   2017    1.1    dyoung 	ath_hal_setmcastfilter(ah, mfilt[0], mfilt[1]);
   2018   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_MODE, "%s: RX filter 0x%x, MC filter %08x:%08x\n",
   2019   1.47    dyoung 		__func__, rfilt, mfilt[0], mfilt[1]);
   2020    1.1    dyoung }
   2021    1.1    dyoung 
   2022   1.47    dyoung /*
   2023   1.47    dyoung  * Set the slot time based on the current setting.
   2024   1.47    dyoung  */
   2025    1.1    dyoung static void
   2026   1.47    dyoung ath_setslottime(struct ath_softc *sc)
   2027    1.1    dyoung {
   2028   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   2029   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2030    1.1    dyoung 
   2031   1.47    dyoung 	if (ic->ic_flags & IEEE80211_F_SHSLOT)
   2032   1.47    dyoung 		ath_hal_setslottime(ah, HAL_SLOT_TIME_9);
   2033   1.47    dyoung 	else
   2034   1.47    dyoung 		ath_hal_setslottime(ah, HAL_SLOT_TIME_20);
   2035   1.47    dyoung 	sc->sc_updateslot = OK;
   2036    1.1    dyoung }
   2037    1.2    dyoung 
   2038   1.47    dyoung /*
   2039   1.47    dyoung  * Callback from the 802.11 layer to update the
   2040   1.47    dyoung  * slot time based on the current setting.
   2041   1.47    dyoung  */
   2042   1.47    dyoung static void
   2043   1.47    dyoung ath_updateslot(struct ifnet *ifp)
   2044    1.2    dyoung {
   2045   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   2046   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   2047    1.2    dyoung 
   2048   1.47    dyoung 	/*
   2049   1.47    dyoung 	 * When not coordinating the BSS, change the hardware
   2050   1.47    dyoung 	 * immediately.  For other operation we defer the change
   2051   1.47    dyoung 	 * until beacon updates have propagated to the stations.
   2052   1.47    dyoung 	 */
   2053   1.47    dyoung 	if (ic->ic_opmode == IEEE80211_M_HOSTAP)
   2054   1.47    dyoung 		sc->sc_updateslot = UPDATE;
   2055    1.2    dyoung 	else
   2056   1.47    dyoung 		ath_setslottime(sc);
   2057   1.47    dyoung }
   2058   1.47    dyoung 
   2059   1.47    dyoung /*
   2060   1.47    dyoung  * Setup a h/w transmit queue for beacons.
   2061   1.47    dyoung  */
   2062   1.47    dyoung static int
   2063   1.47    dyoung ath_beaconq_setup(struct ath_hal *ah)
   2064   1.47    dyoung {
   2065   1.47    dyoung 	HAL_TXQ_INFO qi;
   2066   1.47    dyoung 
   2067   1.47    dyoung 	memset(&qi, 0, sizeof(qi));
   2068   1.47    dyoung 	qi.tqi_aifs = HAL_TXQ_USEDEFAULT;
   2069   1.47    dyoung 	qi.tqi_cwmin = HAL_TXQ_USEDEFAULT;
   2070   1.47    dyoung 	qi.tqi_cwmax = HAL_TXQ_USEDEFAULT;
   2071   1.55    dyoung 	/* NB: for dynamic turbo, don't enable any other interrupts */
   2072   1.70   gdamore 	qi.tqi_qflags = HAL_TXQ_TXDESCINT_ENABLE;
   2073   1.47    dyoung 	return ath_hal_setuptxqueue(ah, HAL_TX_QUEUE_BEACON, &qi);
   2074    1.2    dyoung }
   2075    1.1    dyoung 
   2076   1.47    dyoung /*
   2077   1.55    dyoung  * Setup the transmit queue parameters for the beacon queue.
   2078   1.55    dyoung  */
   2079   1.55    dyoung static int
   2080   1.55    dyoung ath_beaconq_config(struct ath_softc *sc)
   2081   1.55    dyoung {
   2082   1.55    dyoung #define	ATH_EXPONENT_TO_VALUE(v)	((1<<(v))-1)
   2083   1.55    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   2084   1.55    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2085   1.55    dyoung 	HAL_TXQ_INFO qi;
   2086   1.55    dyoung 
   2087   1.55    dyoung 	ath_hal_gettxqueueprops(ah, sc->sc_bhalq, &qi);
   2088   1.55    dyoung 	if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
   2089   1.55    dyoung 		/*
   2090   1.55    dyoung 		 * Always burst out beacon and CAB traffic.
   2091   1.55    dyoung 		 */
   2092   1.55    dyoung 		qi.tqi_aifs = ATH_BEACON_AIFS_DEFAULT;
   2093   1.55    dyoung 		qi.tqi_cwmin = ATH_BEACON_CWMIN_DEFAULT;
   2094   1.55    dyoung 		qi.tqi_cwmax = ATH_BEACON_CWMAX_DEFAULT;
   2095   1.55    dyoung 	} else {
   2096   1.55    dyoung 		struct wmeParams *wmep =
   2097   1.55    dyoung 			&ic->ic_wme.wme_chanParams.cap_wmeParams[WME_AC_BE];
   2098   1.55    dyoung 		/*
   2099   1.55    dyoung 		 * Adhoc mode; important thing is to use 2x cwmin.
   2100   1.55    dyoung 		 */
   2101   1.55    dyoung 		qi.tqi_aifs = wmep->wmep_aifsn;
   2102   1.55    dyoung 		qi.tqi_cwmin = 2*ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmin);
   2103   1.55    dyoung 		qi.tqi_cwmax = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmax);
   2104   1.55    dyoung 	}
   2105   1.55    dyoung 
   2106   1.55    dyoung 	if (!ath_hal_settxqueueprops(ah, sc->sc_bhalq, &qi)) {
   2107  1.102     joerg 		device_printf(sc->sc_dev, "unable to update parameters for "
   2108   1.55    dyoung 			"beacon hardware queue!\n");
   2109   1.55    dyoung 		return 0;
   2110   1.55    dyoung 	} else {
   2111   1.55    dyoung 		ath_hal_resettxqueue(ah, sc->sc_bhalq); /* push to h/w */
   2112   1.55    dyoung 		return 1;
   2113   1.55    dyoung 	}
   2114   1.55    dyoung #undef ATH_EXPONENT_TO_VALUE
   2115   1.55    dyoung }
   2116   1.55    dyoung 
   2117   1.55    dyoung /*
   2118   1.47    dyoung  * Allocate and setup an initial beacon frame.
   2119   1.47    dyoung  */
   2120    1.1    dyoung static int
   2121    1.1    dyoung ath_beacon_alloc(struct ath_softc *sc, struct ieee80211_node *ni)
   2122    1.1    dyoung {
   2123   1.47    dyoung 	struct ieee80211com *ic = ni->ni_ic;
   2124    1.1    dyoung 	struct ath_buf *bf;
   2125    1.1    dyoung 	struct mbuf *m;
   2126   1.47    dyoung 	int error;
   2127    1.1    dyoung 
   2128   1.47    dyoung 	bf = STAILQ_FIRST(&sc->sc_bbuf);
   2129   1.47    dyoung 	if (bf == NULL) {
   2130   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_BEACON, "%s: no dma buffers\n", __func__);
   2131   1.47    dyoung 		sc->sc_stats.ast_be_nombuf++;	/* XXX */
   2132   1.47    dyoung 		return ENOMEM;			/* XXX */
   2133    1.1    dyoung 	}
   2134    1.1    dyoung 	/*
   2135    1.1    dyoung 	 * NB: the beacon data buffer must be 32-bit aligned;
   2136    1.1    dyoung 	 * we assume the mbuf routines will return us something
   2137    1.1    dyoung 	 * with this alignment (perhaps should assert).
   2138    1.1    dyoung 	 */
   2139   1.47    dyoung 	m = ieee80211_beacon_alloc(ic, ni, &sc->sc_boff);
   2140    1.1    dyoung 	if (m == NULL) {
   2141   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_BEACON, "%s: cannot get mbuf\n",
   2142   1.47    dyoung 			__func__);
   2143    1.1    dyoung 		sc->sc_stats.ast_be_nombuf++;
   2144    1.1    dyoung 		return ENOMEM;
   2145    1.1    dyoung 	}
   2146   1.47    dyoung 	error = bus_dmamap_load_mbuf(sc->sc_dmat, bf->bf_dmamap, m,
   2147   1.47    dyoung 				     BUS_DMA_NOWAIT);
   2148   1.47    dyoung 	if (error == 0) {
   2149   1.47    dyoung 		bf->bf_m = m;
   2150   1.47    dyoung 		bf->bf_node = ieee80211_ref_node(ni);
   2151    1.1    dyoung 	} else {
   2152    1.1    dyoung 		m_freem(m);
   2153    1.1    dyoung 	}
   2154   1.47    dyoung 	return error;
   2155   1.47    dyoung }
   2156   1.47    dyoung 
   2157   1.47    dyoung /*
   2158   1.47    dyoung  * Setup the beacon frame for transmit.
   2159   1.47    dyoung  */
   2160   1.47    dyoung static void
   2161   1.47    dyoung ath_beacon_setup(struct ath_softc *sc, struct ath_buf *bf)
   2162   1.47    dyoung {
   2163   1.47    dyoung #define	USE_SHPREAMBLE(_ic) \
   2164   1.47    dyoung 	(((_ic)->ic_flags & (IEEE80211_F_SHPREAMBLE | IEEE80211_F_USEBARKER))\
   2165   1.47    dyoung 		== IEEE80211_F_SHPREAMBLE)
   2166   1.47    dyoung 	struct ieee80211_node *ni = bf->bf_node;
   2167   1.47    dyoung 	struct ieee80211com *ic = ni->ni_ic;
   2168   1.47    dyoung 	struct mbuf *m = bf->bf_m;
   2169   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2170   1.47    dyoung 	struct ath_desc *ds;
   2171   1.47    dyoung 	int flags, antenna;
   2172   1.68    dyoung 	const HAL_RATE_TABLE *rt;
   2173   1.68    dyoung 	u_int8_t rix, rate;
   2174   1.47    dyoung 
   2175   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_BEACON, "%s: m %p len %u\n",
   2176   1.47    dyoung 		__func__, m, m->m_len);
   2177    1.1    dyoung 
   2178    1.1    dyoung 	/* setup descriptors */
   2179    1.1    dyoung 	ds = bf->bf_desc;
   2180    1.1    dyoung 
   2181   1.47    dyoung 	flags = HAL_TXDESC_NOACK;
   2182   1.47    dyoung 	if (ic->ic_opmode == IEEE80211_M_IBSS && sc->sc_hasveol) {
   2183   1.74   gdamore 		ds->ds_link = HTOAH32(bf->bf_daddr);	/* self-linked */
   2184   1.47    dyoung 		flags |= HAL_TXDESC_VEOL;
   2185   1.47    dyoung 		/*
   2186   1.57    dyoung 		 * Let hardware handle antenna switching unless
   2187   1.57    dyoung 		 * the user has selected a transmit antenna
   2188   1.57    dyoung 		 * (sc_txantenna is not 0).
   2189   1.47    dyoung 		 */
   2190   1.57    dyoung 		antenna = sc->sc_txantenna;
   2191   1.47    dyoung 	} else {
   2192   1.36    dyoung 		ds->ds_link = 0;
   2193   1.47    dyoung 		/*
   2194   1.57    dyoung 		 * Switch antenna every 4 beacons, unless the user
   2195   1.57    dyoung 		 * has selected a transmit antenna (sc_txantenna
   2196   1.57    dyoung 		 * is not 0).
   2197   1.57    dyoung 		 *
   2198   1.47    dyoung 		 * XXX assumes two antenna
   2199   1.47    dyoung 		 */
   2200   1.57    dyoung 		if (sc->sc_txantenna == 0)
   2201   1.57    dyoung 			antenna = (sc->sc_stats.ast_be_xmit & 4 ? 2 : 1);
   2202   1.57    dyoung 		else
   2203   1.57    dyoung 			antenna = sc->sc_txantenna;
   2204   1.47    dyoung 	}
   2205   1.47    dyoung 
   2206   1.47    dyoung 	KASSERT(bf->bf_nseg == 1,
   2207   1.47    dyoung 		("multi-segment beacon frame; nseg %u", bf->bf_nseg));
   2208    1.1    dyoung 	ds->ds_data = bf->bf_segs[0].ds_addr;
   2209    1.1    dyoung 	/*
   2210    1.1    dyoung 	 * Calculate rate code.
   2211    1.1    dyoung 	 * XXX everything at min xmit rate
   2212    1.1    dyoung 	 */
   2213   1.68    dyoung 	rix = sc->sc_minrateix;
   2214   1.68    dyoung 	rt = sc->sc_currates;
   2215   1.68    dyoung 	rate = rt->info[rix].rateCode;
   2216   1.47    dyoung 	if (USE_SHPREAMBLE(ic))
   2217   1.68    dyoung 		rate |= rt->info[rix].shortPreamble;
   2218   1.47    dyoung 	ath_hal_setuptxdesc(ah, ds
   2219   1.47    dyoung 		, m->m_len + IEEE80211_CRC_LEN	/* frame length */
   2220   1.47    dyoung 		, sizeof(struct ieee80211_frame)/* header length */
   2221    1.1    dyoung 		, HAL_PKT_TYPE_BEACON		/* Atheros packet type */
   2222   1.47    dyoung 		, ni->ni_txpower		/* txpower XXX */
   2223    1.1    dyoung 		, rate, 1			/* series 0 rate/tries */
   2224    1.1    dyoung 		, HAL_TXKEYIX_INVALID		/* no encryption */
   2225   1.47    dyoung 		, antenna			/* antenna mode */
   2226   1.47    dyoung 		, flags				/* no ack, veol for beacons */
   2227    1.1    dyoung 		, 0				/* rts/cts rate */
   2228    1.1    dyoung 		, 0				/* rts/cts duration */
   2229   1.47    dyoung 	);
   2230    1.1    dyoung 	/* NB: beacon's BufLen must be a multiple of 4 bytes */
   2231   1.47    dyoung 	ath_hal_filltxdesc(ah, ds
   2232   1.47    dyoung 		, roundup(m->m_len, 4)		/* buffer length */
   2233   1.47    dyoung 		, AH_TRUE			/* first segment */
   2234   1.47    dyoung 		, AH_TRUE			/* last segment */
   2235   1.47    dyoung 		, ds				/* first descriptor */
   2236   1.47    dyoung 	);
   2237   1.74   gdamore 
   2238  1.104       alc 	/* NB: The desc swap function becomes void, if descriptor swapping
   2239  1.104       alc 	 * is not enabled
   2240   1.74   gdamore 	 */
   2241   1.74   gdamore 	ath_desc_swap(ds);
   2242   1.74   gdamore 
   2243   1.47    dyoung #undef USE_SHPREAMBLE
   2244    1.1    dyoung }
   2245    1.1    dyoung 
   2246   1.47    dyoung /*
   2247   1.47    dyoung  * Transmit a beacon frame at SWBA.  Dynamic updates to the
   2248   1.47    dyoung  * frame contents are done as needed and the slot time is
   2249   1.47    dyoung  * also adjusted based on current state.
   2250   1.47    dyoung  */
   2251    1.1    dyoung static void
   2252   1.47    dyoung ath_beacon_proc(void *arg, int pending)
   2253    1.1    dyoung {
   2254   1.47    dyoung 	struct ath_softc *sc = arg;
   2255   1.47    dyoung 	struct ath_buf *bf = STAILQ_FIRST(&sc->sc_bbuf);
   2256   1.47    dyoung 	struct ieee80211_node *ni = bf->bf_node;
   2257   1.47    dyoung 	struct ieee80211com *ic = ni->ni_ic;
   2258    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2259   1.47    dyoung 	struct mbuf *m;
   2260   1.47    dyoung 	int ncabq, error, otherant;
   2261   1.47    dyoung 
   2262   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_BEACON_PROC, "%s: pending %u\n",
   2263   1.47    dyoung 		__func__, pending);
   2264    1.1    dyoung 
   2265    1.1    dyoung 	if (ic->ic_opmode == IEEE80211_M_STA ||
   2266   1.47    dyoung 	    ic->ic_opmode == IEEE80211_M_MONITOR ||
   2267    1.1    dyoung 	    bf == NULL || bf->bf_m == NULL) {
   2268   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY, "%s: ic_flags=%x bf=%p bf_m=%p\n",
   2269   1.47    dyoung 			__func__, ic->ic_flags, bf, bf ? bf->bf_m : NULL);
   2270   1.47    dyoung 		return;
   2271   1.47    dyoung 	}
   2272   1.47    dyoung 	/*
   2273   1.47    dyoung 	 * Check if the previous beacon has gone out.  If
   2274   1.68    dyoung 	 * not don't try to post another, skip this period
   2275   1.68    dyoung 	 * and wait for the next.  Missed beacons indicate
   2276   1.68    dyoung 	 * a problem and should not occur.  If we miss too
   2277   1.68    dyoung 	 * many consecutive beacons reset the device.
   2278   1.47    dyoung 	 */
   2279   1.47    dyoung 	if (ath_hal_numtxpending(ah, sc->sc_bhalq) != 0) {
   2280   1.47    dyoung 		sc->sc_bmisscount++;
   2281   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_BEACON_PROC,
   2282   1.47    dyoung 			"%s: missed %u consecutive beacons\n",
   2283   1.47    dyoung 			__func__, sc->sc_bmisscount);
   2284   1.47    dyoung 		if (sc->sc_bmisscount > 3)		/* NB: 3 is a guess */
   2285   1.47    dyoung 			TASK_RUN_OR_ENQUEUE(&sc->sc_bstucktask);
   2286    1.1    dyoung 		return;
   2287    1.1    dyoung 	}
   2288   1.47    dyoung 	if (sc->sc_bmisscount != 0) {
   2289   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_BEACON,
   2290   1.47    dyoung 			"%s: resume beacon xmit after %u misses\n",
   2291   1.47    dyoung 			__func__, sc->sc_bmisscount);
   2292   1.47    dyoung 		sc->sc_bmisscount = 0;
   2293   1.47    dyoung 	}
   2294   1.47    dyoung 
   2295   1.47    dyoung 	/*
   2296   1.47    dyoung 	 * Update dynamic beacon contents.  If this returns
   2297   1.47    dyoung 	 * non-zero then we need to remap the memory because
   2298   1.47    dyoung 	 * the beacon frame changed size (probably because
   2299   1.47    dyoung 	 * of the TIM bitmap).
   2300   1.47    dyoung 	 */
   2301   1.47    dyoung 	m = bf->bf_m;
   2302   1.47    dyoung 	ncabq = ath_hal_numtxpending(ah, sc->sc_cabq->axq_qnum);
   2303   1.47    dyoung 	if (ieee80211_beacon_update(ic, bf->bf_node, &sc->sc_boff, m, ncabq)) {
   2304   1.47    dyoung 		/* XXX too conservative? */
   2305   1.47    dyoung 		bus_dmamap_unload(sc->sc_dmat, bf->bf_dmamap);
   2306   1.47    dyoung 		error = bus_dmamap_load_mbuf(sc->sc_dmat, bf->bf_dmamap, m,
   2307   1.47    dyoung 					     BUS_DMA_NOWAIT);
   2308   1.47    dyoung 		if (error != 0) {
   2309   1.47    dyoung 			if_printf(&sc->sc_if,
   2310   1.47    dyoung 			    "%s: bus_dmamap_load_mbuf failed, error %u\n",
   2311   1.47    dyoung 			    __func__, error);
   2312   1.47    dyoung 			return;
   2313   1.47    dyoung 		}
   2314   1.47    dyoung 	}
   2315   1.47    dyoung 
   2316   1.47    dyoung 	/*
   2317   1.47    dyoung 	 * Handle slot time change when a non-ERP station joins/leaves
   2318   1.47    dyoung 	 * an 11g network.  The 802.11 layer notifies us via callback,
   2319   1.47    dyoung 	 * we mark updateslot, then wait one beacon before effecting
   2320   1.47    dyoung 	 * the change.  This gives associated stations at least one
   2321   1.47    dyoung 	 * beacon interval to note the state change.
   2322   1.47    dyoung 	 */
   2323   1.47    dyoung 	/* XXX locking */
   2324   1.47    dyoung 	if (sc->sc_updateslot == UPDATE)
   2325   1.47    dyoung 		sc->sc_updateslot = COMMIT;	/* commit next beacon */
   2326   1.47    dyoung 	else if (sc->sc_updateslot == COMMIT)
   2327   1.47    dyoung 		ath_setslottime(sc);		/* commit change to h/w */
   2328   1.47    dyoung 
   2329   1.47    dyoung 	/*
   2330   1.47    dyoung 	 * Check recent per-antenna transmit statistics and flip
   2331   1.47    dyoung 	 * the default antenna if noticeably more frames went out
   2332   1.47    dyoung 	 * on the non-default antenna.
   2333   1.47    dyoung 	 * XXX assumes 2 anntenae
   2334   1.47    dyoung 	 */
   2335   1.47    dyoung 	otherant = sc->sc_defant & 1 ? 2 : 1;
   2336   1.47    dyoung 	if (sc->sc_ant_tx[otherant] > sc->sc_ant_tx[sc->sc_defant] + 2)
   2337   1.47    dyoung 		ath_setdefantenna(sc, otherant);
   2338   1.47    dyoung 	sc->sc_ant_tx[1] = sc->sc_ant_tx[2] = 0;
   2339   1.47    dyoung 
   2340   1.47    dyoung 	/*
   2341   1.47    dyoung 	 * Construct tx descriptor.
   2342   1.47    dyoung 	 */
   2343   1.47    dyoung 	ath_beacon_setup(sc, bf);
   2344   1.47    dyoung 
   2345   1.47    dyoung 	/*
   2346   1.47    dyoung 	 * Stop any current dma and put the new frame on the queue.
   2347   1.47    dyoung 	 * This should never fail since we check above that no frames
   2348   1.47    dyoung 	 * are still pending on the queue.
   2349   1.47    dyoung 	 */
   2350    1.1    dyoung 	if (!ath_hal_stoptxdma(ah, sc->sc_bhalq)) {
   2351   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY,
   2352   1.47    dyoung 			"%s: beacon queue %u did not stop?\n",
   2353   1.47    dyoung 			__func__, sc->sc_bhalq);
   2354    1.1    dyoung 	}
   2355   1.47    dyoung 	bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, 0,
   2356   1.47    dyoung 	    bf->bf_dmamap->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2357    1.1    dyoung 
   2358   1.47    dyoung 	/*
   2359   1.47    dyoung 	 * Enable the CAB queue before the beacon queue to
   2360   1.47    dyoung 	 * insure cab frames are triggered by this beacon.
   2361   1.47    dyoung 	 */
   2362   1.68    dyoung 	if (ncabq != 0 && (sc->sc_boff.bo_tim[4] & 1))	/* NB: only at DTIM */
   2363   1.47    dyoung 		ath_hal_txstart(ah, sc->sc_cabq->axq_qnum);
   2364    1.1    dyoung 	ath_hal_puttxbuf(ah, sc->sc_bhalq, bf->bf_daddr);
   2365    1.1    dyoung 	ath_hal_txstart(ah, sc->sc_bhalq);
   2366   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_BEACON_PROC,
   2367   1.75   gdamore 	    "%s: TXDP[%u] = %" PRIx64 " (%p)\n", __func__,
   2368   1.75   gdamore 	    sc->sc_bhalq, (uint64_t)bf->bf_daddr, bf->bf_desc);
   2369   1.47    dyoung 
   2370   1.47    dyoung 	sc->sc_stats.ast_be_xmit++;
   2371   1.47    dyoung }
   2372   1.47    dyoung 
   2373   1.47    dyoung /*
   2374   1.47    dyoung  * Reset the hardware after detecting beacons have stopped.
   2375   1.47    dyoung  */
   2376   1.47    dyoung static void
   2377   1.79  christos ath_bstuck_proc(void *arg, int pending)
   2378   1.47    dyoung {
   2379   1.47    dyoung 	struct ath_softc *sc = arg;
   2380   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   2381   1.47    dyoung 
   2382   1.47    dyoung 	if_printf(ifp, "stuck beacon; resetting (bmiss count %u)\n",
   2383   1.47    dyoung 		sc->sc_bmisscount);
   2384   1.47    dyoung 	ath_reset(ifp);
   2385    1.1    dyoung }
   2386    1.1    dyoung 
   2387   1.47    dyoung /*
   2388   1.47    dyoung  * Reclaim beacon resources.
   2389   1.47    dyoung  */
   2390    1.1    dyoung static void
   2391    1.1    dyoung ath_beacon_free(struct ath_softc *sc)
   2392    1.1    dyoung {
   2393   1.47    dyoung 	struct ath_buf *bf;
   2394    1.1    dyoung 
   2395   1.47    dyoung 	STAILQ_FOREACH(bf, &sc->sc_bbuf, bf_list) {
   2396   1.47    dyoung 		if (bf->bf_m != NULL) {
   2397   1.47    dyoung 			bus_dmamap_unload(sc->sc_dmat, bf->bf_dmamap);
   2398   1.47    dyoung 			m_freem(bf->bf_m);
   2399   1.47    dyoung 			bf->bf_m = NULL;
   2400   1.47    dyoung 		}
   2401   1.47    dyoung 		if (bf->bf_node != NULL) {
   2402   1.47    dyoung 			ieee80211_free_node(bf->bf_node);
   2403   1.47    dyoung 			bf->bf_node = NULL;
   2404   1.47    dyoung 		}
   2405    1.1    dyoung 	}
   2406    1.1    dyoung }
   2407    1.1    dyoung 
   2408    1.1    dyoung /*
   2409    1.1    dyoung  * Configure the beacon and sleep timers.
   2410    1.1    dyoung  *
   2411    1.1    dyoung  * When operating as an AP this resets the TSF and sets
   2412    1.1    dyoung  * up the hardware to notify us when we need to issue beacons.
   2413    1.1    dyoung  *
   2414    1.1    dyoung  * When operating in station mode this sets up the beacon
   2415    1.1    dyoung  * timers according to the timestamp of the last received
   2416    1.1    dyoung  * beacon and the current TSF, configures PCF and DTIM
   2417    1.1    dyoung  * handling, programs the sleep registers so the hardware
   2418    1.1    dyoung  * will wakeup in time to receive beacons, and configures
   2419    1.1    dyoung  * the beacon miss handling so we'll receive a BMISS
   2420    1.1    dyoung  * interrupt when we stop seeing beacons from the AP
   2421    1.1    dyoung  * we've associated with.
   2422    1.1    dyoung  */
   2423    1.1    dyoung static void
   2424    1.1    dyoung ath_beacon_config(struct ath_softc *sc)
   2425    1.1    dyoung {
   2426   1.68    dyoung #define	TSF_TO_TU(_h,_l) \
   2427   1.68    dyoung 	((((u_int32_t)(_h)) << 22) | (((u_int32_t)(_l)) >> 10))
   2428   1.68    dyoung #define	FUDGE	2
   2429    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2430    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   2431    1.1    dyoung 	struct ieee80211_node *ni = ic->ic_bss;
   2432   1.68    dyoung 	u_int32_t nexttbtt, intval, tsftu;
   2433   1.68    dyoung 	u_int64_t tsf;
   2434    1.1    dyoung 
   2435   1.55    dyoung 	/* extract tstamp from last beacon and convert to TU */
   2436   1.55    dyoung 	nexttbtt = TSF_TO_TU(LE_READ_4(ni->ni_tstamp.data + 4),
   2437   1.55    dyoung 			     LE_READ_4(ni->ni_tstamp.data));
   2438   1.55    dyoung 	/* NB: the beacon interval is kept internally in TU's */
   2439   1.31    dyoung 	intval = ni->ni_intval & HAL_BEACON_PERIOD;
   2440   1.47    dyoung 	if (nexttbtt == 0)		/* e.g. for ap mode */
   2441   1.47    dyoung 		nexttbtt = intval;
   2442   1.47    dyoung 	else if (intval)		/* NB: can be 0 for monitor mode */
   2443   1.47    dyoung 		nexttbtt = roundup(nexttbtt, intval);
   2444   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_BEACON, "%s: nexttbtt %u intval %u (%u)\n",
   2445   1.47    dyoung 		__func__, nexttbtt, intval, ni->ni_intval);
   2446    1.1    dyoung 	if (ic->ic_opmode == IEEE80211_M_STA) {
   2447    1.1    dyoung 		HAL_BEACON_STATE bs;
   2448   1.55    dyoung 		int dtimperiod, dtimcount;
   2449   1.55    dyoung 		int cfpperiod, cfpcount;
   2450   1.55    dyoung 
   2451   1.55    dyoung 		/*
   2452   1.55    dyoung 		 * Setup dtim and cfp parameters according to
   2453   1.55    dyoung 		 * last beacon we received (which may be none).
   2454   1.55    dyoung 		 */
   2455   1.55    dyoung 		dtimperiod = ni->ni_dtim_period;
   2456   1.55    dyoung 		if (dtimperiod <= 0)		/* NB: 0 if not known */
   2457   1.55    dyoung 			dtimperiod = 1;
   2458   1.55    dyoung 		dtimcount = ni->ni_dtim_count;
   2459   1.55    dyoung 		if (dtimcount >= dtimperiod)	/* NB: sanity check */
   2460   1.55    dyoung 			dtimcount = 0;		/* XXX? */
   2461   1.55    dyoung 		cfpperiod = 1;			/* NB: no PCF support yet */
   2462   1.55    dyoung 		cfpcount = 0;
   2463   1.55    dyoung 		/*
   2464   1.55    dyoung 		 * Pull nexttbtt forward to reflect the current
   2465   1.55    dyoung 		 * TSF and calculate dtim+cfp state for the result.
   2466   1.55    dyoung 		 */
   2467   1.55    dyoung 		tsf = ath_hal_gettsf64(ah);
   2468   1.68    dyoung 		tsftu = TSF_TO_TU(tsf>>32, tsf) + FUDGE;
   2469   1.55    dyoung 		do {
   2470   1.55    dyoung 			nexttbtt += intval;
   2471   1.55    dyoung 			if (--dtimcount < 0) {
   2472   1.55    dyoung 				dtimcount = dtimperiod - 1;
   2473   1.55    dyoung 				if (--cfpcount < 0)
   2474   1.55    dyoung 					cfpcount = cfpperiod - 1;
   2475   1.55    dyoung 			}
   2476   1.55    dyoung 		} while (nexttbtt < tsftu);
   2477    1.1    dyoung 		memset(&bs, 0, sizeof(bs));
   2478   1.47    dyoung 		bs.bs_intval = intval;
   2479    1.1    dyoung 		bs.bs_nexttbtt = nexttbtt;
   2480   1.55    dyoung 		bs.bs_dtimperiod = dtimperiod*intval;
   2481   1.55    dyoung 		bs.bs_nextdtim = bs.bs_nexttbtt + dtimcount*intval;
   2482   1.55    dyoung 		bs.bs_cfpperiod = cfpperiod*bs.bs_dtimperiod;
   2483   1.55    dyoung 		bs.bs_cfpnext = bs.bs_nextdtim + cfpcount*bs.bs_dtimperiod;
   2484   1.55    dyoung 		bs.bs_cfpmaxduration = 0;
   2485   1.55    dyoung #if 0
   2486    1.1    dyoung 		/*
   2487   1.47    dyoung 		 * The 802.11 layer records the offset to the DTIM
   2488   1.47    dyoung 		 * bitmap while receiving beacons; use it here to
   2489   1.47    dyoung 		 * enable h/w detection of our AID being marked in
   2490   1.47    dyoung 		 * the bitmap vector (to indicate frames for us are
   2491   1.47    dyoung 		 * pending at the AP).
   2492   1.55    dyoung 		 * XXX do DTIM handling in s/w to WAR old h/w bugs
   2493   1.55    dyoung 		 * XXX enable based on h/w rev for newer chips
   2494   1.47    dyoung 		 */
   2495   1.47    dyoung 		bs.bs_timoffset = ni->ni_timoff;
   2496   1.55    dyoung #endif
   2497   1.47    dyoung 		/*
   2498    1.1    dyoung 		 * Calculate the number of consecutive beacons to miss
   2499    1.1    dyoung 		 * before taking a BMISS interrupt.  The configuration
   2500    1.1    dyoung 		 * is specified in ms, so we need to convert that to
   2501    1.1    dyoung 		 * TU's and then calculate based on the beacon interval.
   2502    1.1    dyoung 		 * Note that we clamp the result to at most 10 beacons.
   2503    1.1    dyoung 		 */
   2504   1.47    dyoung 		bs.bs_bmissthreshold = howmany(ic->ic_bmisstimeout, intval);
   2505    1.1    dyoung 		if (bs.bs_bmissthreshold > 10)
   2506    1.1    dyoung 			bs.bs_bmissthreshold = 10;
   2507    1.1    dyoung 		else if (bs.bs_bmissthreshold <= 0)
   2508    1.1    dyoung 			bs.bs_bmissthreshold = 1;
   2509    1.1    dyoung 
   2510    1.1    dyoung 		/*
   2511    1.1    dyoung 		 * Calculate sleep duration.  The configuration is
   2512    1.1    dyoung 		 * given in ms.  We insure a multiple of the beacon
   2513    1.1    dyoung 		 * period is used.  Also, if the sleep duration is
   2514    1.1    dyoung 		 * greater than the DTIM period then it makes senses
   2515    1.1    dyoung 		 * to make it a multiple of that.
   2516    1.1    dyoung 		 *
   2517    1.1    dyoung 		 * XXX fixed at 100ms
   2518    1.1    dyoung 		 */
   2519    1.1    dyoung 		bs.bs_sleepduration =
   2520   1.47    dyoung 			roundup(IEEE80211_MS_TO_TU(100), bs.bs_intval);
   2521    1.1    dyoung 		if (bs.bs_sleepduration > bs.bs_dtimperiod)
   2522    1.1    dyoung 			bs.bs_sleepduration = roundup(bs.bs_sleepduration, bs.bs_dtimperiod);
   2523    1.1    dyoung 
   2524   1.73     blymn 		DPRINTF(sc, ATH_DEBUG_BEACON,
   2525   1.55    dyoung 			"%s: tsf %ju tsf:tu %u intval %u nexttbtt %u dtim %u nextdtim %u bmiss %u sleep %u cfp:period %u maxdur %u next %u timoffset %u\n"
   2526    1.1    dyoung 			, __func__
   2527   1.55    dyoung 			, tsf, tsftu
   2528    1.1    dyoung 			, bs.bs_intval
   2529    1.1    dyoung 			, bs.bs_nexttbtt
   2530    1.1    dyoung 			, bs.bs_dtimperiod
   2531    1.1    dyoung 			, bs.bs_nextdtim
   2532    1.1    dyoung 			, bs.bs_bmissthreshold
   2533    1.1    dyoung 			, bs.bs_sleepduration
   2534   1.47    dyoung 			, bs.bs_cfpperiod
   2535   1.47    dyoung 			, bs.bs_cfpmaxduration
   2536   1.47    dyoung 			, bs.bs_cfpnext
   2537   1.47    dyoung 			, bs.bs_timoffset
   2538   1.47    dyoung 		);
   2539    1.1    dyoung 		ath_hal_intrset(ah, 0);
   2540   1.47    dyoung 		ath_hal_beacontimers(ah, &bs);
   2541    1.1    dyoung 		sc->sc_imask |= HAL_INT_BMISS;
   2542    1.1    dyoung 		ath_hal_intrset(ah, sc->sc_imask);
   2543    1.1    dyoung 	} else {
   2544   1.36    dyoung 		ath_hal_intrset(ah, 0);
   2545   1.47    dyoung 		if (nexttbtt == intval)
   2546   1.47    dyoung 			intval |= HAL_BEACON_RESET_TSF;
   2547   1.47    dyoung 		if (ic->ic_opmode == IEEE80211_M_IBSS) {
   2548   1.47    dyoung 			/*
   2549   1.47    dyoung 			 * In IBSS mode enable the beacon timers but only
   2550   1.47    dyoung 			 * enable SWBA interrupts if we need to manually
   2551   1.47    dyoung 			 * prepare beacon frames.  Otherwise we use a
   2552   1.47    dyoung 			 * self-linked tx descriptor and let the hardware
   2553   1.47    dyoung 			 * deal with things.
   2554   1.47    dyoung 			 */
   2555   1.47    dyoung 			intval |= HAL_BEACON_ENA;
   2556   1.47    dyoung 			if (!sc->sc_hasveol)
   2557   1.47    dyoung 				sc->sc_imask |= HAL_INT_SWBA;
   2558   1.68    dyoung 			if ((intval & HAL_BEACON_RESET_TSF) == 0) {
   2559   1.68    dyoung 				/*
   2560   1.68    dyoung 				 * Pull nexttbtt forward to reflect
   2561   1.68    dyoung 				 * the current TSF.
   2562   1.68    dyoung 				 */
   2563   1.68    dyoung 				tsf = ath_hal_gettsf64(ah);
   2564   1.68    dyoung 				tsftu = TSF_TO_TU(tsf>>32, tsf) + FUDGE;
   2565   1.68    dyoung 				do {
   2566   1.68    dyoung 					nexttbtt += intval;
   2567   1.68    dyoung 				} while (nexttbtt < tsftu);
   2568   1.68    dyoung 			}
   2569   1.55    dyoung 			ath_beaconq_config(sc);
   2570   1.47    dyoung 		} else if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
   2571   1.47    dyoung 			/*
   2572   1.47    dyoung 			 * In AP mode we enable the beacon timers and
   2573   1.47    dyoung 			 * SWBA interrupts to prepare beacon frames.
   2574   1.47    dyoung 			 */
   2575   1.47    dyoung 			intval |= HAL_BEACON_ENA;
   2576   1.47    dyoung 			sc->sc_imask |= HAL_INT_SWBA;	/* beacon prepare */
   2577   1.55    dyoung 			ath_beaconq_config(sc);
   2578   1.36    dyoung 		}
   2579   1.36    dyoung 		ath_hal_beaconinit(ah, nexttbtt, intval);
   2580   1.47    dyoung 		sc->sc_bmisscount = 0;
   2581    1.1    dyoung 		ath_hal_intrset(ah, sc->sc_imask);
   2582   1.47    dyoung 		/*
   2583   1.47    dyoung 		 * When using a self-linked beacon descriptor in
   2584   1.47    dyoung 		 * ibss mode load it once here.
   2585   1.47    dyoung 		 */
   2586   1.47    dyoung 		if (ic->ic_opmode == IEEE80211_M_IBSS && sc->sc_hasveol)
   2587   1.36    dyoung 			ath_beacon_proc(sc, 0);
   2588    1.1    dyoung 	}
   2589   1.68    dyoung 	sc->sc_syncbeacon = 0;
   2590   1.68    dyoung #undef UNDEF
   2591   1.55    dyoung #undef TSF_TO_TU
   2592    1.1    dyoung }
   2593    1.1    dyoung 
   2594    1.1    dyoung static int
   2595   1.47    dyoung ath_descdma_setup(struct ath_softc *sc,
   2596   1.47    dyoung 	struct ath_descdma *dd, ath_bufhead *head,
   2597   1.47    dyoung 	const char *name, int nbuf, int ndesc)
   2598   1.47    dyoung {
   2599   1.47    dyoung #define	DS2PHYS(_dd, _ds) \
   2600   1.82  christos 	((_dd)->dd_desc_paddr + ((char *)(_ds) - (char *)(_dd)->dd_desc))
   2601   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   2602    1.1    dyoung 	struct ath_desc *ds;
   2603    1.1    dyoung 	struct ath_buf *bf;
   2604   1.47    dyoung 	int i, bsize, error;
   2605   1.47    dyoung 
   2606   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_RESET, "%s: %s DMA: %u buffers %u desc/buf\n",
   2607   1.47    dyoung 	    __func__, name, nbuf, ndesc);
   2608   1.47    dyoung 
   2609   1.47    dyoung 	dd->dd_name = name;
   2610   1.47    dyoung 	dd->dd_desc_len = sizeof(struct ath_desc) * nbuf * ndesc;
   2611    1.1    dyoung 
   2612   1.47    dyoung 	/*
   2613   1.47    dyoung 	 * Setup DMA descriptor area.
   2614   1.47    dyoung 	 */
   2615   1.47    dyoung 	dd->dd_dmat = sc->sc_dmat;
   2616    1.1    dyoung 
   2617   1.47    dyoung 	error = bus_dmamem_alloc(dd->dd_dmat, dd->dd_desc_len, PAGE_SIZE,
   2618   1.47    dyoung 	    0, &dd->dd_dseg, 1, &dd->dd_dnseg, 0);
   2619    1.2    dyoung 
   2620   1.47    dyoung 	if (error != 0) {
   2621   1.47    dyoung 		if_printf(ifp, "unable to alloc memory for %u %s descriptors, "
   2622   1.47    dyoung 			"error %u\n", nbuf * ndesc, dd->dd_name, error);
   2623    1.1    dyoung 		goto fail0;
   2624   1.47    dyoung 	}
   2625    1.1    dyoung 
   2626   1.47    dyoung 	error = bus_dmamem_map(dd->dd_dmat, &dd->dd_dseg, dd->dd_dnseg,
   2627   1.82  christos 	    dd->dd_desc_len, (void **)&dd->dd_desc, BUS_DMA_COHERENT);
   2628   1.47    dyoung 	if (error != 0) {
   2629   1.47    dyoung 		if_printf(ifp, "unable to map %u %s descriptors, error = %u\n",
   2630   1.47    dyoung 		    nbuf * ndesc, dd->dd_name, error);
   2631    1.1    dyoung 		goto fail1;
   2632   1.47    dyoung 	}
   2633    1.1    dyoung 
   2634   1.47    dyoung 	/* allocate descriptors */
   2635   1.47    dyoung 	error = bus_dmamap_create(dd->dd_dmat, dd->dd_desc_len, 1,
   2636   1.47    dyoung 	    dd->dd_desc_len, 0, BUS_DMA_NOWAIT, &dd->dd_dmamap);
   2637   1.47    dyoung 	if (error != 0) {
   2638   1.47    dyoung 		if_printf(ifp, "unable to create dmamap for %s descriptors, "
   2639   1.47    dyoung 			"error %u\n", dd->dd_name, error);
   2640    1.1    dyoung 		goto fail2;
   2641    1.2    dyoung 	}
   2642    1.1    dyoung 
   2643   1.47    dyoung 	error = bus_dmamap_load(dd->dd_dmat, dd->dd_dmamap, dd->dd_desc,
   2644   1.47    dyoung 	    dd->dd_desc_len, NULL, BUS_DMA_NOWAIT);
   2645   1.47    dyoung 	if (error != 0) {
   2646   1.47    dyoung 		if_printf(ifp, "unable to map %s descriptors, error %u\n",
   2647   1.47    dyoung 			dd->dd_name, error);
   2648   1.47    dyoung 		goto fail3;
   2649   1.47    dyoung 	}
   2650   1.47    dyoung 
   2651   1.47    dyoung 	ds = dd->dd_desc;
   2652   1.47    dyoung 	dd->dd_desc_paddr = dd->dd_dmamap->dm_segs[0].ds_addr;
   2653   1.75   gdamore 	DPRINTF(sc, ATH_DEBUG_RESET,
   2654   1.75   gdamore 	    "%s: %s DMA map: %p (%lu) -> %" PRIx64 " (%lu)\n",
   2655   1.47    dyoung 	    __func__, dd->dd_name, ds, (u_long) dd->dd_desc_len,
   2656   1.75   gdamore 	    (uint64_t) dd->dd_desc_paddr, /*XXX*/ (u_long) dd->dd_desc_len);
   2657   1.47    dyoung 
   2658   1.47    dyoung 	/* allocate rx buffers */
   2659   1.47    dyoung 	bsize = sizeof(struct ath_buf) * nbuf;
   2660   1.47    dyoung 	bf = malloc(bsize, M_ATHDEV, M_NOWAIT | M_ZERO);
   2661   1.47    dyoung 	if (bf == NULL) {
   2662   1.47    dyoung 		if_printf(ifp, "malloc of %s buffers failed, size %u\n",
   2663   1.47    dyoung 			dd->dd_name, bsize);
   2664   1.47    dyoung 		goto fail4;
   2665    1.1    dyoung 	}
   2666   1.47    dyoung 	dd->dd_bufptr = bf;
   2667    1.1    dyoung 
   2668   1.47    dyoung 	STAILQ_INIT(head);
   2669   1.47    dyoung 	for (i = 0; i < nbuf; i++, bf++, ds += ndesc) {
   2670    1.1    dyoung 		bf->bf_desc = ds;
   2671   1.47    dyoung 		bf->bf_daddr = DS2PHYS(dd, ds);
   2672   1.47    dyoung 		error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, ndesc,
   2673   1.47    dyoung 				MCLBYTES, 0, BUS_DMA_NOWAIT, &bf->bf_dmamap);
   2674   1.47    dyoung 		if (error != 0) {
   2675   1.47    dyoung 			if_printf(ifp, "unable to create dmamap for %s "
   2676   1.47    dyoung 				"buffer %u, error %u\n", dd->dd_name, i, error);
   2677   1.47    dyoung 			ath_descdma_cleanup(sc, dd, head);
   2678   1.47    dyoung 			return error;
   2679   1.47    dyoung 		}
   2680   1.47    dyoung 		STAILQ_INSERT_TAIL(head, bf, bf_list);
   2681    1.1    dyoung 	}
   2682    1.1    dyoung 	return 0;
   2683   1.47    dyoung fail4:
   2684   1.47    dyoung 	bus_dmamap_unload(dd->dd_dmat, dd->dd_dmamap);
   2685   1.47    dyoung fail3:
   2686   1.47    dyoung 	bus_dmamap_destroy(dd->dd_dmat, dd->dd_dmamap);
   2687    1.1    dyoung fail2:
   2688   1.82  christos 	bus_dmamem_unmap(dd->dd_dmat, (void *)dd->dd_desc, dd->dd_desc_len);
   2689    1.1    dyoung fail1:
   2690   1.47    dyoung 	bus_dmamem_free(dd->dd_dmat, &dd->dd_dseg, dd->dd_dnseg);
   2691    1.1    dyoung fail0:
   2692   1.47    dyoung 	memset(dd, 0, sizeof(*dd));
   2693    1.1    dyoung 	return error;
   2694   1.47    dyoung #undef DS2PHYS
   2695    1.1    dyoung }
   2696   1.47    dyoung 
   2697   1.47    dyoung static void
   2698   1.47    dyoung ath_descdma_cleanup(struct ath_softc *sc,
   2699   1.47    dyoung 	struct ath_descdma *dd, ath_bufhead *head)
   2700    1.2    dyoung {
   2701    1.2    dyoung 	struct ath_buf *bf;
   2702   1.47    dyoung 	struct ieee80211_node *ni;
   2703    1.2    dyoung 
   2704   1.47    dyoung 	bus_dmamap_unload(dd->dd_dmat, dd->dd_dmamap);
   2705   1.47    dyoung 	bus_dmamap_destroy(dd->dd_dmat, dd->dd_dmamap);
   2706   1.82  christos 	bus_dmamem_unmap(dd->dd_dmat, (void *)dd->dd_desc, dd->dd_desc_len);
   2707   1.47    dyoung 	bus_dmamem_free(dd->dd_dmat, &dd->dd_dseg, dd->dd_dnseg);
   2708    1.2    dyoung 
   2709   1.47    dyoung 	STAILQ_FOREACH(bf, head, bf_list) {
   2710   1.47    dyoung 		if (bf->bf_m) {
   2711   1.47    dyoung 			m_freem(bf->bf_m);
   2712   1.47    dyoung 			bf->bf_m = NULL;
   2713   1.47    dyoung 		}
   2714   1.47    dyoung 		if (bf->bf_dmamap != NULL) {
   2715   1.47    dyoung 			bus_dmamap_destroy(sc->sc_dmat, bf->bf_dmamap);
   2716   1.47    dyoung 			bf->bf_dmamap = NULL;
   2717   1.47    dyoung 		}
   2718   1.47    dyoung 		ni = bf->bf_node;
   2719   1.47    dyoung 		bf->bf_node = NULL;
   2720   1.47    dyoung 		if (ni != NULL) {
   2721   1.47    dyoung 			/*
   2722   1.47    dyoung 			 * Reclaim node reference.
   2723   1.47    dyoung 			 */
   2724   1.47    dyoung 			ieee80211_free_node(ni);
   2725   1.47    dyoung 		}
   2726    1.2    dyoung 	}
   2727    1.2    dyoung 
   2728   1.47    dyoung 	STAILQ_INIT(head);
   2729   1.47    dyoung 	free(dd->dd_bufptr, M_ATHDEV);
   2730   1.47    dyoung 	memset(dd, 0, sizeof(*dd));
   2731   1.47    dyoung }
   2732    1.2    dyoung 
   2733   1.47    dyoung static int
   2734   1.47    dyoung ath_desc_alloc(struct ath_softc *sc)
   2735   1.47    dyoung {
   2736   1.47    dyoung 	int error;
   2737    1.2    dyoung 
   2738   1.47    dyoung 	error = ath_descdma_setup(sc, &sc->sc_rxdma, &sc->sc_rxbuf,
   2739   1.68    dyoung 			"rx", ath_rxbuf, 1);
   2740   1.47    dyoung 	if (error != 0)
   2741   1.47    dyoung 		return error;
   2742    1.2    dyoung 
   2743   1.47    dyoung 	error = ath_descdma_setup(sc, &sc->sc_txdma, &sc->sc_txbuf,
   2744   1.68    dyoung 			"tx", ath_txbuf, ATH_TXDESC);
   2745   1.47    dyoung 	if (error != 0) {
   2746   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_rxdma, &sc->sc_rxbuf);
   2747   1.47    dyoung 		return error;
   2748    1.2    dyoung 	}
   2749    1.2    dyoung 
   2750   1.47    dyoung 	error = ath_descdma_setup(sc, &sc->sc_bdma, &sc->sc_bbuf,
   2751   1.47    dyoung 			"beacon", 1, 1);
   2752   1.47    dyoung 	if (error != 0) {
   2753   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_txdma, &sc->sc_txbuf);
   2754   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_rxdma, &sc->sc_rxbuf);
   2755   1.47    dyoung 		return error;
   2756    1.2    dyoung 	}
   2757    1.2    dyoung 	return 0;
   2758    1.2    dyoung }
   2759    1.1    dyoung 
   2760    1.1    dyoung static void
   2761    1.1    dyoung ath_desc_free(struct ath_softc *sc)
   2762    1.1    dyoung {
   2763    1.1    dyoung 
   2764   1.47    dyoung 	if (sc->sc_bdma.dd_desc_len != 0)
   2765   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_bdma, &sc->sc_bbuf);
   2766   1.47    dyoung 	if (sc->sc_txdma.dd_desc_len != 0)
   2767   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_txdma, &sc->sc_txbuf);
   2768   1.47    dyoung 	if (sc->sc_rxdma.dd_desc_len != 0)
   2769   1.47    dyoung 		ath_descdma_cleanup(sc, &sc->sc_rxdma, &sc->sc_rxbuf);
   2770    1.1    dyoung }
   2771    1.1    dyoung 
   2772    1.1    dyoung static struct ieee80211_node *
   2773   1.47    dyoung ath_node_alloc(struct ieee80211_node_table *nt)
   2774    1.1    dyoung {
   2775   1.47    dyoung 	struct ieee80211com *ic = nt->nt_ic;
   2776   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   2777   1.47    dyoung 	const size_t space = sizeof(struct ath_node) + sc->sc_rc->arc_space;
   2778   1.47    dyoung 	struct ath_node *an;
   2779   1.47    dyoung 
   2780   1.47    dyoung 	an = malloc(space, M_80211_NODE, M_NOWAIT|M_ZERO);
   2781   1.47    dyoung 	if (an == NULL) {
   2782   1.47    dyoung 		/* XXX stat+msg */
   2783   1.18    dyoung 		return NULL;
   2784   1.47    dyoung 	}
   2785   1.47    dyoung 	an->an_avgrssi = ATH_RSSI_DUMMY_MARKER;
   2786   1.47    dyoung 	ath_rate_node_init(sc, an);
   2787   1.47    dyoung 
   2788   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_NODE, "%s: an %p\n", __func__, an);
   2789   1.47    dyoung 	return &an->an_node;
   2790    1.1    dyoung }
   2791    1.1    dyoung 
   2792    1.1    dyoung static void
   2793   1.47    dyoung ath_node_free(struct ieee80211_node *ni)
   2794    1.1    dyoung {
   2795   1.47    dyoung 	struct ieee80211com *ic = ni->ni_ic;
   2796   1.47    dyoung         struct ath_softc *sc = ic->ic_ifp->if_softc;
   2797    1.1    dyoung 
   2798   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_NODE, "%s: ni %p\n", __func__, ni);
   2799   1.25    dyoung 
   2800   1.47    dyoung 	ath_rate_node_cleanup(sc, ATH_NODE(ni));
   2801   1.47    dyoung 	sc->sc_node_free(ni);
   2802    1.1    dyoung }
   2803    1.1    dyoung 
   2804   1.18    dyoung static u_int8_t
   2805   1.47    dyoung ath_node_getrssi(const struct ieee80211_node *ni)
   2806   1.18    dyoung {
   2807   1.47    dyoung #define	HAL_EP_RND(x, mul) \
   2808   1.47    dyoung 	((((x)%(mul)) >= ((mul)/2)) ? ((x) + ((mul) - 1)) / (mul) : (x)/(mul))
   2809   1.47    dyoung 	u_int32_t avgrssi = ATH_NODE_CONST(ni)->an_avgrssi;
   2810   1.47    dyoung 	int32_t rssi;
   2811   1.18    dyoung 
   2812   1.18    dyoung 	/*
   2813   1.47    dyoung 	 * When only one frame is received there will be no state in
   2814   1.47    dyoung 	 * avgrssi so fallback on the value recorded by the 802.11 layer.
   2815   1.18    dyoung 	 */
   2816   1.47    dyoung 	if (avgrssi != ATH_RSSI_DUMMY_MARKER)
   2817   1.47    dyoung 		rssi = HAL_EP_RND(avgrssi, HAL_RSSI_EP_MULTIPLIER);
   2818   1.47    dyoung 	else
   2819   1.47    dyoung 		rssi = ni->ni_rssi;
   2820   1.47    dyoung 	return rssi < 0 ? 0 : rssi > 127 ? 127 : rssi;
   2821   1.47    dyoung #undef HAL_EP_RND
   2822   1.18    dyoung }
   2823   1.18    dyoung 
   2824    1.1    dyoung static int
   2825    1.1    dyoung ath_rxbuf_init(struct ath_softc *sc, struct ath_buf *bf)
   2826    1.1    dyoung {
   2827    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2828    1.1    dyoung 	int error;
   2829    1.1    dyoung 	struct mbuf *m;
   2830    1.1    dyoung 	struct ath_desc *ds;
   2831    1.1    dyoung 
   2832    1.1    dyoung 	m = bf->bf_m;
   2833    1.1    dyoung 	if (m == NULL) {
   2834    1.1    dyoung 		/*
   2835    1.1    dyoung 		 * NB: by assigning a page to the rx dma buffer we
   2836    1.1    dyoung 		 * implicitly satisfy the Atheros requirement that
   2837    1.1    dyoung 		 * this buffer be cache-line-aligned and sized to be
   2838    1.1    dyoung 		 * multiple of the cache line size.  Not doing this
   2839    1.1    dyoung 		 * causes weird stuff to happen (for the 5210 at least).
   2840    1.1    dyoung 		 */
   2841   1.47    dyoung 		m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
   2842    1.1    dyoung 		if (m == NULL) {
   2843   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_ANY,
   2844   1.47    dyoung 				"%s: no mbuf/cluster\n", __func__);
   2845    1.1    dyoung 			sc->sc_stats.ast_rx_nombuf++;
   2846    1.1    dyoung 			return ENOMEM;
   2847    1.1    dyoung 		}
   2848    1.1    dyoung 		bf->bf_m = m;
   2849    1.1    dyoung 		m->m_pkthdr.len = m->m_len = m->m_ext.ext_size;
   2850    1.1    dyoung 
   2851   1.47    dyoung 		error = bus_dmamap_load_mbuf(sc->sc_dmat,
   2852   1.47    dyoung 					     bf->bf_dmamap, m,
   2853   1.47    dyoung 					     BUS_DMA_NOWAIT);
   2854    1.1    dyoung 		if (error != 0) {
   2855   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_ANY,
   2856   1.47    dyoung 			    "%s: bus_dmamap_load_mbuf failed; error %d\n",
   2857   1.47    dyoung 			    __func__, error);
   2858    1.1    dyoung 			sc->sc_stats.ast_rx_busdma++;
   2859    1.1    dyoung 			return error;
   2860    1.1    dyoung 		}
   2861    1.1    dyoung 		KASSERT(bf->bf_nseg == 1,
   2862   1.47    dyoung 			("multi-segment packet; nseg %u", bf->bf_nseg));
   2863    1.1    dyoung 	}
   2864   1.47    dyoung 	bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, 0,
   2865   1.47    dyoung 	    bf->bf_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
   2866    1.1    dyoung 
   2867   1.18    dyoung 	/*
   2868   1.18    dyoung 	 * Setup descriptors.  For receive we always terminate
   2869   1.18    dyoung 	 * the descriptor list with a self-linked entry so we'll
   2870   1.18    dyoung 	 * not get overrun under high load (as can happen with a
   2871   1.47    dyoung 	 * 5212 when ANI processing enables PHY error frames).
   2872   1.18    dyoung 	 *
   2873   1.18    dyoung 	 * To insure the last descriptor is self-linked we create
   2874   1.18    dyoung 	 * each descriptor as self-linked and add it to the end.  As
   2875   1.18    dyoung 	 * each additional descriptor is added the previous self-linked
   2876   1.18    dyoung 	 * entry is ``fixed'' naturally.  This should be safe even
   2877   1.18    dyoung 	 * if DMA is happening.  When processing RX interrupts we
   2878   1.18    dyoung 	 * never remove/process the last, self-linked, entry on the
   2879   1.18    dyoung 	 * descriptor list.  This insures the hardware always has
   2880   1.18    dyoung 	 * someplace to write a new frame.
   2881   1.18    dyoung 	 */
   2882    1.1    dyoung 	ds = bf->bf_desc;
   2883   1.74   gdamore 	ds->ds_link = HTOAH32(bf->bf_daddr);	/* link to self */
   2884    1.1    dyoung 	ds->ds_data = bf->bf_segs[0].ds_addr;
   2885  1.104       alc 	/* ds->ds_vdata = mtod(m, void *);	for radar */
   2886    1.1    dyoung 	ath_hal_setuprxdesc(ah, ds
   2887    1.1    dyoung 		, m->m_len		/* buffer size */
   2888    1.1    dyoung 		, 0
   2889    1.1    dyoung 	);
   2890    1.1    dyoung 
   2891    1.1    dyoung 	if (sc->sc_rxlink != NULL)
   2892    1.1    dyoung 		*sc->sc_rxlink = bf->bf_daddr;
   2893    1.1    dyoung 	sc->sc_rxlink = &ds->ds_link;
   2894    1.1    dyoung 	return 0;
   2895    1.1    dyoung }
   2896    1.1    dyoung 
   2897   1.47    dyoung /*
   2898   1.47    dyoung  * Extend 15-bit time stamp from rx descriptor to
   2899   1.68    dyoung  * a full 64-bit TSF using the specified TSF.
   2900   1.47    dyoung  */
   2901   1.66     perry static inline u_int64_t
   2902   1.68    dyoung ath_extend_tsf(u_int32_t rstamp, u_int64_t tsf)
   2903   1.47    dyoung {
   2904   1.47    dyoung 	if ((tsf & 0x7fff) < rstamp)
   2905   1.47    dyoung 		tsf -= 0x8000;
   2906   1.47    dyoung 	return ((tsf &~ 0x7fff) | rstamp);
   2907   1.47    dyoung }
   2908   1.47    dyoung 
   2909   1.47    dyoung /*
   2910   1.47    dyoung  * Intercept management frames to collect beacon rssi data
   2911   1.47    dyoung  * and to do ibss merges.
   2912   1.47    dyoung  */
   2913   1.47    dyoung static void
   2914   1.47    dyoung ath_recv_mgmt(struct ieee80211com *ic, struct mbuf *m,
   2915   1.47    dyoung 	struct ieee80211_node *ni,
   2916   1.47    dyoung 	int subtype, int rssi, u_int32_t rstamp)
   2917   1.47    dyoung {
   2918   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   2919   1.47    dyoung 
   2920   1.47    dyoung 	/*
   2921   1.47    dyoung 	 * Call up first so subsequent work can use information
   2922   1.47    dyoung 	 * potentially stored in the node (e.g. for ibss merge).
   2923   1.47    dyoung 	 */
   2924   1.47    dyoung 	sc->sc_recv_mgmt(ic, m, ni, subtype, rssi, rstamp);
   2925   1.47    dyoung 	switch (subtype) {
   2926   1.47    dyoung 	case IEEE80211_FC0_SUBTYPE_BEACON:
   2927   1.47    dyoung 		/* update rssi statistics for use by the hal */
   2928   1.68    dyoung 		ATH_RSSI_LPF(sc->sc_halstats.ns_avgbrssi, rssi);
   2929   1.68    dyoung 		if (sc->sc_syncbeacon &&
   2930   1.68    dyoung 		    ni == ic->ic_bss && ic->ic_state == IEEE80211_S_RUN) {
   2931   1.68    dyoung 			/*
   2932   1.68    dyoung 			 * Resync beacon timers using the tsf of the beacon
   2933   1.68    dyoung 			 * frame we just received.
   2934   1.68    dyoung 			 */
   2935   1.68    dyoung 			ath_beacon_config(sc);
   2936   1.68    dyoung 		}
   2937   1.47    dyoung 		/* fall thru... */
   2938   1.47    dyoung 	case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
   2939   1.47    dyoung 		if (ic->ic_opmode == IEEE80211_M_IBSS &&
   2940   1.47    dyoung 		    ic->ic_state == IEEE80211_S_RUN) {
   2941   1.68    dyoung 			u_int64_t tsf = ath_extend_tsf(rstamp,
   2942   1.68    dyoung 				ath_hal_gettsf64(sc->sc_ah));
   2943   1.47    dyoung 
   2944   1.47    dyoung 			/*
   2945   1.47    dyoung 			 * Handle ibss merge as needed; check the tsf on the
   2946   1.47    dyoung 			 * frame before attempting the merge.  The 802.11 spec
   2947   1.47    dyoung 			 * says the station should change it's bssid to match
   2948   1.47    dyoung 			 * the oldest station with the same ssid, where oldest
   2949   1.47    dyoung 			 * is determined by the tsf.  Note that hardware
   2950   1.47    dyoung 			 * reconfiguration happens through callback to
   2951   1.47    dyoung 			 * ath_newstate as the state machine will go from
   2952   1.47    dyoung 			 * RUN -> RUN when this happens.
   2953   1.47    dyoung 			 */
   2954   1.47    dyoung 			if (le64toh(ni->ni_tstamp.tsf) >= tsf) {
   2955   1.47    dyoung 				DPRINTF(sc, ATH_DEBUG_STATE,
   2956   1.47    dyoung 				    "ibss merge, rstamp %u tsf %ju "
   2957   1.47    dyoung 				    "tstamp %ju\n", rstamp, (uintmax_t)tsf,
   2958   1.47    dyoung 				    (uintmax_t)ni->ni_tstamp.tsf);
   2959   1.61     skrll 				(void) ieee80211_ibss_merge(ni);
   2960   1.50    dyoung 			}
   2961   1.47    dyoung 		}
   2962   1.47    dyoung 		break;
   2963   1.47    dyoung 	}
   2964   1.47    dyoung }
   2965   1.47    dyoung 
   2966   1.47    dyoung /*
   2967   1.47    dyoung  * Set the default antenna.
   2968   1.47    dyoung  */
   2969   1.47    dyoung static void
   2970   1.47    dyoung ath_setdefantenna(struct ath_softc *sc, u_int antenna)
   2971   1.47    dyoung {
   2972   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   2973   1.47    dyoung 
   2974   1.47    dyoung 	/* XXX block beacon interrupts */
   2975   1.47    dyoung 	ath_hal_setdefantenna(ah, antenna);
   2976   1.47    dyoung 	if (sc->sc_defant != antenna)
   2977   1.47    dyoung 		sc->sc_stats.ast_ant_defswitch++;
   2978   1.47    dyoung 	sc->sc_defant = antenna;
   2979   1.47    dyoung 	sc->sc_rxotherant = 0;
   2980   1.47    dyoung }
   2981   1.47    dyoung 
   2982    1.1    dyoung static void
   2983  1.104       alc ath_handle_micerror(struct ieee80211com *ic,
   2984  1.104       alc 	struct ieee80211_frame *wh, int keyix)
   2985  1.104       alc {
   2986  1.104       alc 	struct ieee80211_node *ni;
   2987  1.104       alc 
   2988  1.104       alc 	/* XXX recheck MIC to deal w/ chips that lie */
   2989  1.104       alc 	/* XXX discard MIC errors on !data frames */
   2990  1.104       alc 	ni = ieee80211_find_rxnode_withkey(ic, (const struct ieee80211_frame_min *) wh, keyix);
   2991  1.104       alc 	if (ni != NULL) {
   2992  1.104       alc 		ieee80211_notify_michael_failure(ic, wh, keyix);
   2993  1.104       alc 		ieee80211_free_node(ni);
   2994  1.104       alc 	}
   2995  1.104       alc }
   2996  1.104       alc 
   2997  1.104       alc static void
   2998    1.1    dyoung ath_rx_proc(void *arg, int npending)
   2999    1.1    dyoung {
   3000   1.18    dyoung #define	PA2DESC(_sc, _pa) \
   3001   1.82  christos 	((struct ath_desc *)((char *)(_sc)->sc_rxdma.dd_desc + \
   3002   1.47    dyoung 		((_pa) - (_sc)->sc_rxdma.dd_desc_paddr)))
   3003    1.1    dyoung 	struct ath_softc *sc = arg;
   3004    1.1    dyoung 	struct ath_buf *bf;
   3005    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   3006   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   3007    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   3008    1.1    dyoung 	struct ath_desc *ds;
   3009    1.1    dyoung 	struct mbuf *m;
   3010    1.1    dyoung 	struct ieee80211_node *ni;
   3011   1.18    dyoung 	struct ath_node *an;
   3012  1.104       alc 	int len, ngood, type;
   3013    1.1    dyoung 	u_int phyerr;
   3014    1.1    dyoung 	HAL_STATUS status;
   3015   1.68    dyoung 	int16_t nf;
   3016   1.68    dyoung 	u_int64_t tsf;
   3017  1.104       alc 	uint8_t rxerr_tap, rxerr_mon;
   3018    1.1    dyoung 
   3019   1.47    dyoung 	NET_LOCK_GIANT();		/* XXX */
   3020   1.47    dyoung 
   3021  1.104       alc 	rxerr_tap =
   3022  1.104       alc 	    (ifp->if_flags & IFF_PROMISC) ? HAL_RXERR_CRC|HAL_RXERR_PHY : 0;
   3023  1.104       alc 
   3024  1.104       alc 	if (sc->sc_ic.ic_opmode == IEEE80211_M_MONITOR)
   3025  1.104       alc 		rxerr_mon = HAL_RXERR_DECRYPT|HAL_RXERR_MIC;
   3026  1.104       alc 	else if (ifp->if_flags & IFF_PROMISC)
   3027  1.104       alc 		rxerr_tap |= HAL_RXERR_DECRYPT|HAL_RXERR_MIC;
   3028  1.104       alc 
   3029   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_RX_PROC, "%s: pending %u\n", __func__, npending);
   3030   1.68    dyoung 	ngood = 0;
   3031   1.68    dyoung 	nf = ath_hal_getchannoise(ah, &sc->sc_curchan);
   3032   1.68    dyoung 	tsf = ath_hal_gettsf64(ah);
   3033    1.1    dyoung 	do {
   3034   1.47    dyoung 		bf = STAILQ_FIRST(&sc->sc_rxbuf);
   3035    1.1    dyoung 		if (bf == NULL) {		/* NB: shouldn't happen */
   3036   1.47    dyoung 			if_printf(ifp, "%s: no buffer!\n", __func__);
   3037    1.1    dyoung 			break;
   3038    1.1    dyoung 		}
   3039   1.18    dyoung 		ds = bf->bf_desc;
   3040   1.18    dyoung 		if (ds->ds_link == bf->bf_daddr) {
   3041   1.18    dyoung 			/* NB: never process the self-linked entry at the end */
   3042   1.18    dyoung 			break;
   3043   1.18    dyoung 		}
   3044    1.1    dyoung 		m = bf->bf_m;
   3045    1.1    dyoung 		if (m == NULL) {		/* NB: shouldn't happen */
   3046   1.47    dyoung 			if_printf(ifp, "%s: no mbuf!\n", __func__);
   3047   1.68    dyoung 			break;
   3048    1.1    dyoung 		}
   3049   1.18    dyoung 		/* XXX sync descriptor memory */
   3050   1.18    dyoung 		/*
   3051   1.18    dyoung 		 * Must provide the virtual address of the current
   3052   1.18    dyoung 		 * descriptor, the physical address, and the virtual
   3053   1.18    dyoung 		 * address of the next descriptor in the h/w chain.
   3054   1.18    dyoung 		 * This allows the HAL to look ahead to see if the
   3055   1.18    dyoung 		 * hardware is done with a descriptor by checking the
   3056   1.18    dyoung 		 * done bit in the following descriptor and the address
   3057   1.18    dyoung 		 * of the current descriptor the DMA engine is working
   3058   1.18    dyoung 		 * on.  All this is necessary because of our use of
   3059   1.18    dyoung 		 * a self-linked list to avoid rx overruns.
   3060   1.18    dyoung 		 */
   3061   1.18    dyoung 		status = ath_hal_rxprocdesc(ah, ds,
   3062  1.104       alc 				bf->bf_daddr, PA2DESC(sc, ds->ds_link),
   3063  1.106  jmcneill 				&ds->ds_rxstat);
   3064    1.1    dyoung #ifdef AR_DEBUG
   3065   1.47    dyoung 		if (sc->sc_debug & ATH_DEBUG_RECV_DESC)
   3066   1.73     blymn 			ath_printrxbuf(bf, status == HAL_OK);
   3067    1.1    dyoung #endif
   3068    1.1    dyoung 		if (status == HAL_EINPROGRESS)
   3069    1.1    dyoung 			break;
   3070   1.47    dyoung 		STAILQ_REMOVE_HEAD(&sc->sc_rxbuf, bf_list);
   3071   1.33    dyoung 		if (ds->ds_rxstat.rs_more) {
   3072   1.33    dyoung 			/*
   3073   1.33    dyoung 			 * Frame spans multiple descriptors; this
   3074   1.33    dyoung 			 * cannot happen yet as we don't support
   3075   1.33    dyoung 			 * jumbograms.  If not in monitor mode,
   3076   1.33    dyoung 			 * discard the frame.
   3077   1.33    dyoung 			 */
   3078   1.33    dyoung 			if (ic->ic_opmode != IEEE80211_M_MONITOR) {
   3079   1.47    dyoung 				sc->sc_stats.ast_rx_toobig++;
   3080   1.33    dyoung 				goto rx_next;
   3081   1.33    dyoung 			}
   3082   1.33    dyoung 			/* fall thru for monitor mode handling... */
   3083   1.33    dyoung 		} else if (ds->ds_rxstat.rs_status != 0) {
   3084    1.1    dyoung 			if (ds->ds_rxstat.rs_status & HAL_RXERR_CRC)
   3085    1.1    dyoung 				sc->sc_stats.ast_rx_crcerr++;
   3086    1.1    dyoung 			if (ds->ds_rxstat.rs_status & HAL_RXERR_FIFO)
   3087    1.1    dyoung 				sc->sc_stats.ast_rx_fifoerr++;
   3088    1.1    dyoung 			if (ds->ds_rxstat.rs_status & HAL_RXERR_PHY) {
   3089    1.1    dyoung 				sc->sc_stats.ast_rx_phyerr++;
   3090    1.1    dyoung 				phyerr = ds->ds_rxstat.rs_phyerr & 0x1f;
   3091    1.1    dyoung 				sc->sc_stats.ast_rx_phy[phyerr]++;
   3092   1.47    dyoung 				goto rx_next;
   3093   1.47    dyoung 			}
   3094   1.47    dyoung 			if (ds->ds_rxstat.rs_status & HAL_RXERR_DECRYPT) {
   3095   1.47    dyoung 				/*
   3096   1.47    dyoung 				 * Decrypt error.  If the error occurred
   3097   1.47    dyoung 				 * because there was no hardware key, then
   3098   1.47    dyoung 				 * let the frame through so the upper layers
   3099   1.47    dyoung 				 * can process it.  This is necessary for 5210
   3100   1.47    dyoung 				 * parts which have no way to setup a ``clear''
   3101   1.47    dyoung 				 * key cache entry.
   3102   1.47    dyoung 				 *
   3103   1.47    dyoung 				 * XXX do key cache faulting
   3104   1.47    dyoung 				 */
   3105   1.47    dyoung 				if (ds->ds_rxstat.rs_keyix == HAL_RXKEYIX_INVALID)
   3106   1.47    dyoung 					goto rx_accept;
   3107   1.47    dyoung 				sc->sc_stats.ast_rx_badcrypt++;
   3108   1.47    dyoung 			}
   3109   1.47    dyoung 			if (ds->ds_rxstat.rs_status & HAL_RXERR_MIC) {
   3110   1.47    dyoung 				sc->sc_stats.ast_rx_badmic++;
   3111   1.47    dyoung 				/*
   3112   1.47    dyoung 				 * Do minimal work required to hand off
   3113   1.47    dyoung 				 * the 802.11 header for notifcation.
   3114   1.47    dyoung 				 */
   3115   1.47    dyoung 				/* XXX frag's and qos frames */
   3116   1.47    dyoung 				len = ds->ds_rxstat.rs_datalen;
   3117   1.47    dyoung 				if (len >= sizeof (struct ieee80211_frame)) {
   3118   1.47    dyoung 					bus_dmamap_sync(sc->sc_dmat,
   3119   1.47    dyoung 					    bf->bf_dmamap,
   3120   1.47    dyoung 					    0, bf->bf_dmamap->dm_mapsize,
   3121   1.47    dyoung 					    BUS_DMASYNC_POSTREAD);
   3122  1.104       alc 					ath_handle_micerror(ic,
   3123   1.47    dyoung 					    mtod(m, struct ieee80211_frame *),
   3124   1.47    dyoung 					    sc->sc_splitmic ?
   3125  1.104       alc 						ds->ds_rxstat.rs_keyix-32 : ds->ds_rxstat.rs_keyix);
   3126   1.47    dyoung 				}
   3127    1.1    dyoung 			}
   3128   1.47    dyoung 			ifp->if_ierrors++;
   3129   1.33    dyoung 			/*
   3130   1.47    dyoung 			 * Reject error frames, we normally don't want
   3131   1.47    dyoung 			 * to see them in monitor mode (in monitor mode
   3132   1.47    dyoung 			 * allow through packets that have crypto problems).
   3133   1.33    dyoung 			 */
   3134  1.104       alc 
   3135  1.104       alc 			if (ds->ds_rxstat.rs_status &~ (rxerr_tap|rxerr_mon))
   3136   1.33    dyoung 				goto rx_next;
   3137    1.1    dyoung 		}
   3138   1.47    dyoung rx_accept:
   3139   1.47    dyoung 		/*
   3140   1.47    dyoung 		 * Sync and unmap the frame.  At this point we're
   3141   1.47    dyoung 		 * committed to passing the mbuf somewhere so clear
   3142   1.47    dyoung 		 * bf_m; this means a new sk_buff must be allocated
   3143   1.47    dyoung 		 * when the rx descriptor is setup again to receive
   3144   1.47    dyoung 		 * another frame.
   3145   1.47    dyoung 		 */
   3146   1.47    dyoung 		bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap,
   3147   1.47    dyoung 		    0, bf->bf_dmamap->dm_mapsize,
   3148   1.47    dyoung 		    BUS_DMASYNC_POSTREAD);
   3149    1.1    dyoung 		bus_dmamap_unload(sc->sc_dmat, bf->bf_dmamap);
   3150    1.1    dyoung 		bf->bf_m = NULL;
   3151   1.47    dyoung 
   3152    1.1    dyoung 		m->m_pkthdr.rcvif = ifp;
   3153   1.47    dyoung 		len = ds->ds_rxstat.rs_datalen;
   3154    1.1    dyoung 		m->m_pkthdr.len = m->m_len = len;
   3155    1.1    dyoung 
   3156   1.47    dyoung 		sc->sc_stats.ast_ant_rx[ds->ds_rxstat.rs_antenna]++;
   3157   1.47    dyoung 
   3158    1.2    dyoung #if NBPFILTER > 0
   3159    1.1    dyoung 		if (sc->sc_drvbpf) {
   3160   1.47    dyoung 			u_int8_t rix;
   3161   1.47    dyoung 
   3162   1.47    dyoung 			/*
   3163   1.47    dyoung 			 * Discard anything shorter than an ack or cts.
   3164   1.47    dyoung 			 */
   3165   1.47    dyoung 			if (len < IEEE80211_ACK_LEN) {
   3166   1.47    dyoung 				DPRINTF(sc, ATH_DEBUG_RECV,
   3167   1.47    dyoung 					"%s: runt packet %d\n",
   3168   1.47    dyoung 					__func__, len);
   3169   1.47    dyoung 				sc->sc_stats.ast_rx_tooshort++;
   3170   1.47    dyoung 				m_freem(m);
   3171   1.47    dyoung 				goto rx_next;
   3172   1.47    dyoung 			}
   3173   1.47    dyoung 			rix = ds->ds_rxstat.rs_rate;
   3174   1.68    dyoung 			sc->sc_rx_th.wr_tsf = htole64(
   3175   1.68    dyoung 				ath_extend_tsf(ds->ds_rxstat.rs_tstamp, tsf));
   3176   1.47    dyoung 			sc->sc_rx_th.wr_flags = sc->sc_hwmap[rix].rxflags;
   3177  1.104       alc 			if (ds->ds_rxstat.rs_status &
   3178  1.104       alc 			    (HAL_RXERR_CRC|HAL_RXERR_PHY)) {
   3179  1.104       alc 				sc->sc_rx_th.wr_flags |=
   3180  1.104       alc 				    IEEE80211_RADIOTAP_F_BADFCS;
   3181  1.104       alc 			}
   3182   1.47    dyoung 			sc->sc_rx_th.wr_rate = sc->sc_hwmap[rix].ieeerate;
   3183   1.68    dyoung 			sc->sc_rx_th.wr_antsignal = ds->ds_rxstat.rs_rssi + nf;
   3184   1.68    dyoung 			sc->sc_rx_th.wr_antnoise = nf;
   3185   1.25    dyoung 			sc->sc_rx_th.wr_antenna = ds->ds_rxstat.rs_antenna;
   3186   1.47    dyoung 
   3187   1.25    dyoung 			bpf_mtap2(sc->sc_drvbpf,
   3188   1.25    dyoung 				&sc->sc_rx_th, sc->sc_rx_th_len, m);
   3189    1.1    dyoung 		}
   3190    1.2    dyoung #endif
   3191    1.1    dyoung 
   3192  1.104       alc 		if (ds->ds_rxstat.rs_status & rxerr_tap) {
   3193  1.104       alc 			m_freem(m);
   3194  1.104       alc 			goto rx_next;
   3195  1.104       alc 		}
   3196   1.47    dyoung 		/*
   3197   1.47    dyoung 		 * From this point on we assume the frame is at least
   3198   1.47    dyoung 		 * as large as ieee80211_frame_min; verify that.
   3199   1.47    dyoung 		 */
   3200   1.47    dyoung 		if (len < IEEE80211_MIN_LEN) {
   3201   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_RECV, "%s: short packet %d\n",
   3202   1.47    dyoung 				__func__, len);
   3203   1.47    dyoung 			sc->sc_stats.ast_rx_tooshort++;
   3204   1.47    dyoung 			m_freem(m);
   3205   1.47    dyoung 			goto rx_next;
   3206   1.47    dyoung 		}
   3207   1.47    dyoung 
   3208   1.47    dyoung 		if (IFF_DUMPPKTS(sc, ATH_DEBUG_RECV)) {
   3209   1.82  christos 			ieee80211_dump_pkt(mtod(m, void *), len,
   3210   1.47    dyoung 				   sc->sc_hwmap[ds->ds_rxstat.rs_rate].ieeerate,
   3211   1.47    dyoung 				   ds->ds_rxstat.rs_rssi);
   3212   1.47    dyoung 		}
   3213   1.47    dyoung 
   3214    1.1    dyoung 		m_adj(m, -IEEE80211_CRC_LEN);
   3215    1.1    dyoung 
   3216    1.1    dyoung 		/*
   3217   1.47    dyoung 		 * Locate the node for sender, track state, and then
   3218   1.47    dyoung 		 * pass the (referenced) node up to the 802.11 layer
   3219   1.61     skrll 		 * for its use.
   3220   1.61     skrll 		 */
   3221   1.61     skrll 		ni = ieee80211_find_rxnode_withkey(ic,
   3222   1.61     skrll 			mtod(m, const struct ieee80211_frame_min *),
   3223   1.61     skrll 			ds->ds_rxstat.rs_keyix == HAL_RXKEYIX_INVALID ?
   3224   1.61     skrll 				IEEE80211_KEYIX_NONE : ds->ds_rxstat.rs_keyix);
   3225   1.61     skrll 		/*
   3226   1.61     skrll 		 * Track rx rssi and do any rx antenna management.
   3227    1.1    dyoung 		 */
   3228   1.61     skrll 		an = ATH_NODE(ni);
   3229   1.61     skrll 		ATH_RSSI_LPF(an->an_avgrssi, ds->ds_rxstat.rs_rssi);
   3230   1.68    dyoung 		ATH_RSSI_LPF(sc->sc_halstats.ns_avgrssi, ds->ds_rxstat.rs_rssi);
   3231   1.61     skrll 		/*
   3232   1.61     skrll 		 * Send frame up for processing.
   3233   1.61     skrll 		 */
   3234   1.61     skrll 		type = ieee80211_input(ic, m, ni,
   3235   1.61     skrll 			ds->ds_rxstat.rs_rssi, ds->ds_rxstat.rs_tstamp);
   3236   1.55    dyoung 		ieee80211_free_node(ni);
   3237   1.47    dyoung 		if (sc->sc_diversity) {
   3238   1.47    dyoung 			/*
   3239   1.47    dyoung 			 * When using fast diversity, change the default rx
   3240   1.47    dyoung 			 * antenna if diversity chooses the other antenna 3
   3241   1.47    dyoung 			 * times in a row.
   3242   1.47    dyoung 			 */
   3243   1.47    dyoung 			if (sc->sc_defant != ds->ds_rxstat.rs_antenna) {
   3244   1.47    dyoung 				if (++sc->sc_rxotherant >= 3)
   3245   1.47    dyoung 					ath_setdefantenna(sc,
   3246   1.47    dyoung 						ds->ds_rxstat.rs_antenna);
   3247   1.47    dyoung 			} else
   3248   1.47    dyoung 				sc->sc_rxotherant = 0;
   3249   1.47    dyoung 		}
   3250   1.47    dyoung 		if (sc->sc_softled) {
   3251   1.47    dyoung 			/*
   3252   1.47    dyoung 			 * Blink for any data frame.  Otherwise do a
   3253   1.47    dyoung 			 * heartbeat-style blink when idle.  The latter
   3254   1.47    dyoung 			 * is mainly for station mode where we depend on
   3255   1.47    dyoung 			 * periodic beacon frames to trigger the poll event.
   3256   1.47    dyoung 			 */
   3257   1.47    dyoung 			if (type == IEEE80211_FC0_TYPE_DATA) {
   3258   1.47    dyoung 				sc->sc_rxrate = ds->ds_rxstat.rs_rate;
   3259   1.47    dyoung 				ath_led_event(sc, ATH_LED_RX);
   3260   1.47    dyoung 			} else if (ticks - sc->sc_ledevent >= sc->sc_ledidle)
   3261   1.47    dyoung 				ath_led_event(sc, ATH_LED_POLL);
   3262   1.47    dyoung 		}
   3263   1.68    dyoung 		/*
   3264   1.68    dyoung 		 * Arrange to update the last rx timestamp only for
   3265   1.68    dyoung 		 * frames from our ap when operating in station mode.
   3266   1.68    dyoung 		 * This assumes the rx key is always setup when associated.
   3267   1.68    dyoung 		 */
   3268   1.68    dyoung 		if (ic->ic_opmode == IEEE80211_M_STA &&
   3269   1.68    dyoung 		    ds->ds_rxstat.rs_keyix != HAL_RXKEYIX_INVALID)
   3270   1.68    dyoung 			ngood++;
   3271   1.47    dyoung rx_next:
   3272   1.47    dyoung 		STAILQ_INSERT_TAIL(&sc->sc_rxbuf, bf, bf_list);
   3273    1.1    dyoung 	} while (ath_rxbuf_init(sc, bf) == 0);
   3274    1.1    dyoung 
   3275   1.47    dyoung 	/* rx signal state monitoring */
   3276   1.68    dyoung 	ath_hal_rxmonitor(ah, &sc->sc_halstats, &sc->sc_curchan);
   3277  1.104       alc #if 0
   3278   1.68    dyoung 	if (ath_hal_radar_event(ah))
   3279   1.68    dyoung 		TASK_RUN_OR_ENQUEUE(&sc->sc_radartask);
   3280  1.104       alc #endif
   3281   1.68    dyoung 	if (ngood)
   3282   1.68    dyoung 		sc->sc_lastrx = tsf;
   3283   1.16    dyoung 
   3284   1.18    dyoung #ifdef __NetBSD__
   3285   1.47    dyoung 	/* XXX Why isn't this necessary in FreeBSD? */
   3286   1.16    dyoung 	if ((ifp->if_flags & IFF_OACTIVE) == 0 && !IFQ_IS_EMPTY(&ifp->if_snd))
   3287   1.16    dyoung 		ath_start(ifp);
   3288   1.18    dyoung #endif /* __NetBSD__ */
   3289   1.47    dyoung 
   3290   1.47    dyoung 	NET_UNLOCK_GIANT();		/* XXX */
   3291   1.18    dyoung #undef PA2DESC
   3292    1.1    dyoung }
   3293    1.1    dyoung 
   3294    1.1    dyoung /*
   3295   1.47    dyoung  * Setup a h/w transmit queue.
   3296   1.47    dyoung  */
   3297   1.47    dyoung static struct ath_txq *
   3298   1.47    dyoung ath_txq_setup(struct ath_softc *sc, int qtype, int subtype)
   3299   1.47    dyoung {
   3300   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   3301   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   3302   1.47    dyoung 	HAL_TXQ_INFO qi;
   3303   1.47    dyoung 	int qnum;
   3304   1.47    dyoung 
   3305   1.47    dyoung 	memset(&qi, 0, sizeof(qi));
   3306   1.47    dyoung 	qi.tqi_subtype = subtype;
   3307   1.47    dyoung 	qi.tqi_aifs = HAL_TXQ_USEDEFAULT;
   3308   1.47    dyoung 	qi.tqi_cwmin = HAL_TXQ_USEDEFAULT;
   3309   1.47    dyoung 	qi.tqi_cwmax = HAL_TXQ_USEDEFAULT;
   3310   1.47    dyoung 	/*
   3311   1.47    dyoung 	 * Enable interrupts only for EOL and DESC conditions.
   3312   1.47    dyoung 	 * We mark tx descriptors to receive a DESC interrupt
   3313   1.47    dyoung 	 * when a tx queue gets deep; otherwise waiting for the
   3314   1.47    dyoung 	 * EOL to reap descriptors.  Note that this is done to
   3315   1.47    dyoung 	 * reduce interrupt load and this only defers reaping
   3316   1.47    dyoung 	 * descriptors, never transmitting frames.  Aside from
   3317   1.47    dyoung 	 * reducing interrupts this also permits more concurrency.
   3318   1.47    dyoung 	 * The only potential downside is if the tx queue backs
   3319   1.47    dyoung 	 * up in which case the top half of the kernel may backup
   3320   1.47    dyoung 	 * due to a lack of tx descriptors.
   3321   1.47    dyoung 	 */
   3322   1.70   gdamore 	qi.tqi_qflags = HAL_TXQ_TXEOLINT_ENABLE | HAL_TXQ_TXDESCINT_ENABLE;
   3323   1.47    dyoung 	qnum = ath_hal_setuptxqueue(ah, qtype, &qi);
   3324   1.47    dyoung 	if (qnum == -1) {
   3325   1.47    dyoung 		/*
   3326   1.55    dyoung 		 * NB: don't print a message, this happens
   3327   1.47    dyoung 		 * normally on parts with too few tx queues
   3328   1.47    dyoung 		 */
   3329   1.47    dyoung 		return NULL;
   3330   1.47    dyoung 	}
   3331   1.47    dyoung 	if (qnum >= N(sc->sc_txq)) {
   3332  1.102     joerg 		device_printf(sc->sc_dev,
   3333   1.47    dyoung 			"hal qnum %u out of range, max %zu!\n",
   3334   1.47    dyoung 			qnum, N(sc->sc_txq));
   3335   1.47    dyoung 		ath_hal_releasetxqueue(ah, qnum);
   3336   1.47    dyoung 		return NULL;
   3337   1.47    dyoung 	}
   3338   1.47    dyoung 	if (!ATH_TXQ_SETUP(sc, qnum)) {
   3339   1.47    dyoung 		struct ath_txq *txq = &sc->sc_txq[qnum];
   3340   1.47    dyoung 
   3341   1.47    dyoung 		txq->axq_qnum = qnum;
   3342   1.47    dyoung 		txq->axq_depth = 0;
   3343   1.47    dyoung 		txq->axq_intrcnt = 0;
   3344   1.47    dyoung 		txq->axq_link = NULL;
   3345   1.47    dyoung 		STAILQ_INIT(&txq->axq_q);
   3346   1.47    dyoung 		ATH_TXQ_LOCK_INIT(sc, txq);
   3347   1.47    dyoung 		sc->sc_txqsetup |= 1<<qnum;
   3348   1.47    dyoung 	}
   3349   1.47    dyoung 	return &sc->sc_txq[qnum];
   3350   1.47    dyoung #undef N
   3351   1.47    dyoung }
   3352   1.47    dyoung 
   3353   1.47    dyoung /*
   3354   1.47    dyoung  * Setup a hardware data transmit queue for the specified
   3355   1.47    dyoung  * access control.  The hal may not support all requested
   3356   1.47    dyoung  * queues in which case it will return a reference to a
   3357   1.47    dyoung  * previously setup queue.  We record the mapping from ac's
   3358   1.47    dyoung  * to h/w queues for use by ath_tx_start and also track
   3359   1.47    dyoung  * the set of h/w queues being used to optimize work in the
   3360   1.47    dyoung  * transmit interrupt handler and related routines.
   3361    1.1    dyoung  */
   3362   1.47    dyoung static int
   3363   1.47    dyoung ath_tx_setup(struct ath_softc *sc, int ac, int haltype)
   3364   1.47    dyoung {
   3365   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   3366   1.47    dyoung 	struct ath_txq *txq;
   3367   1.47    dyoung 
   3368   1.47    dyoung 	if (ac >= N(sc->sc_ac2q)) {
   3369  1.102     joerg 		device_printf(sc->sc_dev, "AC %u out of range, max %zu!\n",
   3370   1.47    dyoung 			ac, N(sc->sc_ac2q));
   3371   1.47    dyoung 		return 0;
   3372   1.47    dyoung 	}
   3373   1.47    dyoung 	txq = ath_txq_setup(sc, HAL_TX_QUEUE_DATA, haltype);
   3374   1.47    dyoung 	if (txq != NULL) {
   3375   1.47    dyoung 		sc->sc_ac2q[ac] = txq;
   3376   1.47    dyoung 		return 1;
   3377   1.47    dyoung 	} else
   3378   1.47    dyoung 		return 0;
   3379   1.47    dyoung #undef N
   3380   1.47    dyoung }
   3381    1.1    dyoung 
   3382   1.47    dyoung /*
   3383   1.47    dyoung  * Update WME parameters for a transmit queue.
   3384   1.47    dyoung  */
   3385    1.1    dyoung static int
   3386   1.47    dyoung ath_txq_update(struct ath_softc *sc, int ac)
   3387    1.1    dyoung {
   3388   1.47    dyoung #define	ATH_EXPONENT_TO_VALUE(v)	((1<<v)-1)
   3389   1.47    dyoung #define	ATH_TXOP_TO_US(v)		(v<<5)
   3390    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   3391   1.47    dyoung 	struct ath_txq *txq = sc->sc_ac2q[ac];
   3392   1.47    dyoung 	struct wmeParams *wmep = &ic->ic_wme.wme_chanParams.cap_wmeParams[ac];
   3393    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   3394   1.47    dyoung 	HAL_TXQ_INFO qi;
   3395   1.47    dyoung 
   3396   1.47    dyoung 	ath_hal_gettxqueueprops(ah, txq->axq_qnum, &qi);
   3397   1.47    dyoung 	qi.tqi_aifs = wmep->wmep_aifsn;
   3398   1.47    dyoung 	qi.tqi_cwmin = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmin);
   3399   1.73     blymn 	qi.tqi_cwmax = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmax);
   3400   1.47    dyoung 	qi.tqi_burstTime = ATH_TXOP_TO_US(wmep->wmep_txopLimit);
   3401   1.47    dyoung 
   3402   1.47    dyoung 	if (!ath_hal_settxqueueprops(ah, txq->axq_qnum, &qi)) {
   3403  1.102     joerg 		device_printf(sc->sc_dev, "unable to update hardware queue "
   3404   1.47    dyoung 			"parameters for %s traffic!\n",
   3405   1.47    dyoung 			ieee80211_wme_acnames[ac]);
   3406   1.47    dyoung 		return 0;
   3407   1.47    dyoung 	} else {
   3408   1.47    dyoung 		ath_hal_resettxqueue(ah, txq->axq_qnum); /* push to h/w */
   3409   1.47    dyoung 		return 1;
   3410   1.47    dyoung 	}
   3411   1.47    dyoung #undef ATH_TXOP_TO_US
   3412   1.47    dyoung #undef ATH_EXPONENT_TO_VALUE
   3413   1.47    dyoung }
   3414    1.1    dyoung 
   3415   1.47    dyoung /*
   3416   1.47    dyoung  * Callback from the 802.11 layer to update WME parameters.
   3417   1.47    dyoung  */
   3418   1.55    dyoung static int
   3419   1.47    dyoung ath_wme_update(struct ieee80211com *ic)
   3420   1.47    dyoung {
   3421   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   3422    1.1    dyoung 
   3423   1.47    dyoung 	return !ath_txq_update(sc, WME_AC_BE) ||
   3424   1.47    dyoung 	    !ath_txq_update(sc, WME_AC_BK) ||
   3425   1.47    dyoung 	    !ath_txq_update(sc, WME_AC_VI) ||
   3426   1.47    dyoung 	    !ath_txq_update(sc, WME_AC_VO) ? EIO : 0;
   3427   1.47    dyoung }
   3428   1.33    dyoung 
   3429   1.47    dyoung /*
   3430   1.47    dyoung  * Reclaim resources for a setup queue.
   3431   1.47    dyoung  */
   3432   1.47    dyoung static void
   3433   1.47    dyoung ath_tx_cleanupq(struct ath_softc *sc, struct ath_txq *txq)
   3434   1.47    dyoung {
   3435   1.47    dyoung 
   3436   1.47    dyoung 	ath_hal_releasetxqueue(sc->sc_ah, txq->axq_qnum);
   3437   1.47    dyoung 	ATH_TXQ_LOCK_DESTROY(txq);
   3438   1.47    dyoung 	sc->sc_txqsetup &= ~(1<<txq->axq_qnum);
   3439   1.47    dyoung }
   3440   1.47    dyoung 
   3441   1.47    dyoung /*
   3442   1.47    dyoung  * Reclaim all tx queue resources.
   3443   1.47    dyoung  */
   3444   1.47    dyoung static void
   3445   1.47    dyoung ath_tx_cleanup(struct ath_softc *sc)
   3446   1.47    dyoung {
   3447   1.47    dyoung 	int i;
   3448   1.47    dyoung 
   3449   1.47    dyoung 	ATH_TXBUF_LOCK_DESTROY(sc);
   3450   1.47    dyoung 	for (i = 0; i < HAL_NUM_TX_QUEUES; i++)
   3451   1.47    dyoung 		if (ATH_TXQ_SETUP(sc, i))
   3452   1.47    dyoung 			ath_tx_cleanupq(sc, &sc->sc_txq[i]);
   3453   1.47    dyoung }
   3454   1.47    dyoung 
   3455   1.47    dyoung /*
   3456   1.47    dyoung  * Defragment an mbuf chain, returning at most maxfrags separate
   3457   1.47    dyoung  * mbufs+clusters.  If this is not possible NULL is returned and
   3458   1.47    dyoung  * the original mbuf chain is left in it's present (potentially
   3459   1.47    dyoung  * modified) state.  We use two techniques: collapsing consecutive
   3460   1.47    dyoung  * mbufs and replacing consecutive mbufs by a cluster.
   3461   1.47    dyoung  */
   3462   1.47    dyoung static struct mbuf *
   3463   1.47    dyoung ath_defrag(struct mbuf *m0, int how, int maxfrags)
   3464   1.47    dyoung {
   3465   1.47    dyoung 	struct mbuf *m, *n, *n2, **prev;
   3466   1.47    dyoung 	u_int curfrags;
   3467   1.47    dyoung 
   3468   1.47    dyoung 	/*
   3469   1.47    dyoung 	 * Calculate the current number of frags.
   3470   1.47    dyoung 	 */
   3471   1.47    dyoung 	curfrags = 0;
   3472   1.47    dyoung 	for (m = m0; m != NULL; m = m->m_next)
   3473   1.47    dyoung 		curfrags++;
   3474   1.47    dyoung 	/*
   3475   1.47    dyoung 	 * First, try to collapse mbufs.  Note that we always collapse
   3476   1.47    dyoung 	 * towards the front so we don't need to deal with moving the
   3477   1.47    dyoung 	 * pkthdr.  This may be suboptimal if the first mbuf has much
   3478   1.47    dyoung 	 * less data than the following.
   3479   1.47    dyoung 	 */
   3480   1.47    dyoung 	m = m0;
   3481   1.47    dyoung again:
   3482   1.47    dyoung 	for (;;) {
   3483   1.47    dyoung 		n = m->m_next;
   3484   1.47    dyoung 		if (n == NULL)
   3485   1.47    dyoung 			break;
   3486   1.90    dyoung 		if (n->m_len < M_TRAILINGSPACE(m)) {
   3487   1.90    dyoung 			memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
   3488   1.47    dyoung 				n->m_len);
   3489   1.47    dyoung 			m->m_len += n->m_len;
   3490   1.47    dyoung 			m->m_next = n->m_next;
   3491   1.47    dyoung 			m_free(n);
   3492   1.47    dyoung 			if (--curfrags <= maxfrags)
   3493   1.47    dyoung 				return m0;
   3494   1.47    dyoung 		} else
   3495   1.47    dyoung 			m = n;
   3496   1.47    dyoung 	}
   3497   1.47    dyoung 	KASSERT(maxfrags > 1,
   3498   1.47    dyoung 		("maxfrags %u, but normal collapse failed", maxfrags));
   3499   1.47    dyoung 	/*
   3500   1.47    dyoung 	 * Collapse consecutive mbufs to a cluster.
   3501   1.47    dyoung 	 */
   3502   1.47    dyoung 	prev = &m0->m_next;		/* NB: not the first mbuf */
   3503   1.47    dyoung 	while ((n = *prev) != NULL) {
   3504   1.47    dyoung 		if ((n2 = n->m_next) != NULL &&
   3505   1.47    dyoung 		    n->m_len + n2->m_len < MCLBYTES) {
   3506   1.47    dyoung 			m = m_getcl(how, MT_DATA, 0);
   3507   1.47    dyoung 			if (m == NULL)
   3508   1.47    dyoung 				goto bad;
   3509   1.47    dyoung 			bcopy(mtod(n, void *), mtod(m, void *), n->m_len);
   3510   1.47    dyoung 			bcopy(mtod(n2, void *), mtod(m, char *) + n->m_len,
   3511   1.47    dyoung 				n2->m_len);
   3512   1.47    dyoung 			m->m_len = n->m_len + n2->m_len;
   3513   1.47    dyoung 			m->m_next = n2->m_next;
   3514   1.47    dyoung 			*prev = m;
   3515   1.47    dyoung 			m_free(n);
   3516   1.47    dyoung 			m_free(n2);
   3517   1.47    dyoung 			if (--curfrags <= maxfrags)	/* +1 cl -2 mbufs */
   3518   1.47    dyoung 				return m0;
   3519   1.47    dyoung 			/*
   3520   1.47    dyoung 			 * Still not there, try the normal collapse
   3521   1.47    dyoung 			 * again before we allocate another cluster.
   3522   1.47    dyoung 			 */
   3523   1.47    dyoung 			goto again;
   3524   1.47    dyoung 		}
   3525   1.47    dyoung 		prev = &n->m_next;
   3526   1.47    dyoung 	}
   3527   1.47    dyoung 	/*
   3528   1.47    dyoung 	 * No place where we can collapse to a cluster; punt.
   3529   1.47    dyoung 	 * This can occur if, for example, you request 2 frags
   3530   1.47    dyoung 	 * but the packet requires that both be clusters (we
   3531   1.47    dyoung 	 * never reallocate the first mbuf to avoid moving the
   3532   1.47    dyoung 	 * packet header).
   3533   1.47    dyoung 	 */
   3534   1.47    dyoung bad:
   3535   1.47    dyoung 	return NULL;
   3536   1.47    dyoung }
   3537   1.47    dyoung 
   3538   1.68    dyoung /*
   3539   1.68    dyoung  * Return h/w rate index for an IEEE rate (w/o basic rate bit).
   3540   1.68    dyoung  */
   3541   1.68    dyoung static int
   3542   1.68    dyoung ath_tx_findrix(const HAL_RATE_TABLE *rt, int rate)
   3543   1.68    dyoung {
   3544   1.68    dyoung 	int i;
   3545   1.68    dyoung 
   3546   1.68    dyoung 	for (i = 0; i < rt->rateCount; i++)
   3547   1.68    dyoung 		if ((rt->info[i].dot11Rate & IEEE80211_RATE_VAL) == rate)
   3548   1.68    dyoung 			return i;
   3549   1.68    dyoung 	return 0;		/* NB: lowest rate */
   3550   1.68    dyoung }
   3551   1.68    dyoung 
   3552   1.80    dyoung static void
   3553   1.80    dyoung ath_freetx(struct mbuf *m)
   3554   1.80    dyoung {
   3555   1.80    dyoung 	struct mbuf *next;
   3556   1.80    dyoung 
   3557   1.80    dyoung 	do {
   3558   1.80    dyoung 		next = m->m_nextpkt;
   3559   1.80    dyoung 		m->m_nextpkt = NULL;
   3560   1.80    dyoung 		m_freem(m);
   3561   1.80    dyoung 	} while ((m = next) != NULL);
   3562   1.80    dyoung }
   3563   1.80    dyoung 
   3564   1.47    dyoung static int
   3565  1.101    dyoung deduct_pad_bytes(int len, int hdrlen)
   3566  1.101    dyoung {
   3567  1.101    dyoung 	/* XXX I am suspicious that this code, which I extracted
   3568  1.101    dyoung 	 * XXX from ath_tx_start() for reuse, does the right thing.
   3569  1.101    dyoung 	 */
   3570  1.101    dyoung 	return len - (hdrlen & 3);
   3571  1.101    dyoung }
   3572  1.101    dyoung 
   3573  1.101    dyoung static int
   3574   1.47    dyoung ath_tx_start(struct ath_softc *sc, struct ieee80211_node *ni, struct ath_buf *bf,
   3575   1.47    dyoung     struct mbuf *m0)
   3576   1.47    dyoung {
   3577   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   3578   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   3579   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   3580   1.47    dyoung 	const struct chanAccParams *cap = &ic->ic_wme.wme_chanParams;
   3581   1.80    dyoung 	int i, error, iswep, ismcast, isfrag, ismrr;
   3582   1.68    dyoung 	int keyix, hdrlen, pktlen, try0;
   3583   1.47    dyoung 	u_int8_t rix, txrate, ctsrate;
   3584   1.47    dyoung 	u_int8_t cix = 0xff;		/* NB: silence compiler */
   3585   1.47    dyoung 	struct ath_desc *ds, *ds0;
   3586   1.47    dyoung 	struct ath_txq *txq;
   3587   1.47    dyoung 	struct ieee80211_frame *wh;
   3588   1.47    dyoung 	u_int subtype, flags, ctsduration;
   3589   1.47    dyoung 	HAL_PKT_TYPE atype;
   3590   1.47    dyoung 	const HAL_RATE_TABLE *rt;
   3591   1.47    dyoung 	HAL_BOOL shortPreamble;
   3592   1.47    dyoung 	struct ath_node *an;
   3593   1.47    dyoung 	struct mbuf *m;
   3594   1.47    dyoung 	u_int pri;
   3595   1.47    dyoung 
   3596   1.47    dyoung 	wh = mtod(m0, struct ieee80211_frame *);
   3597   1.47    dyoung 	iswep = wh->i_fc[1] & IEEE80211_FC1_WEP;
   3598   1.47    dyoung 	ismcast = IEEE80211_IS_MULTICAST(wh->i_addr1);
   3599   1.80    dyoung 	isfrag = m0->m_flags & M_FRAG;
   3600   1.47    dyoung 	hdrlen = ieee80211_anyhdrsize(wh);
   3601   1.47    dyoung 	/*
   3602   1.47    dyoung 	 * Packet length must not include any
   3603   1.47    dyoung 	 * pad bytes; deduct them here.
   3604   1.47    dyoung 	 */
   3605  1.101    dyoung 	pktlen = deduct_pad_bytes(m0->m_pkthdr.len, hdrlen);
   3606   1.47    dyoung 
   3607   1.47    dyoung 	if (iswep) {
   3608   1.47    dyoung 		const struct ieee80211_cipher *cip;
   3609   1.47    dyoung 		struct ieee80211_key *k;
   3610   1.33    dyoung 
   3611   1.33    dyoung 		/*
   3612   1.47    dyoung 		 * Construct the 802.11 header+trailer for an encrypted
   3613   1.47    dyoung 		 * frame. The only reason this can fail is because of an
   3614   1.47    dyoung 		 * unknown or unsupported cipher/key type.
   3615   1.33    dyoung 		 */
   3616   1.47    dyoung 		k = ieee80211_crypto_encap(ic, ni, m0);
   3617   1.47    dyoung 		if (k == NULL) {
   3618   1.47    dyoung 			/*
   3619   1.47    dyoung 			 * This can happen when the key is yanked after the
   3620   1.47    dyoung 			 * frame was queued.  Just discard the frame; the
   3621   1.47    dyoung 			 * 802.11 layer counts failures and provides
   3622   1.47    dyoung 			 * debugging/diagnostics.
   3623   1.47    dyoung 			 */
   3624   1.80    dyoung 			ath_freetx(m0);
   3625   1.47    dyoung 			return EIO;
   3626   1.47    dyoung 		}
   3627    1.1    dyoung 		/*
   3628   1.47    dyoung 		 * Adjust the packet + header lengths for the crypto
   3629   1.47    dyoung 		 * additions and calculate the h/w key index.  When
   3630   1.47    dyoung 		 * a s/w mic is done the frame will have had any mic
   3631   1.80    dyoung 		 * added to it prior to entry so m0->m_pkthdr.len above will
   3632   1.47    dyoung 		 * account for it. Otherwise we need to add it to the
   3633   1.47    dyoung 		 * packet length.
   3634    1.1    dyoung 		 */
   3635   1.47    dyoung 		cip = k->wk_cipher;
   3636   1.47    dyoung 		hdrlen += cip->ic_header;
   3637   1.47    dyoung 		pktlen += cip->ic_header + cip->ic_trailer;
   3638   1.80    dyoung 		/* NB: frags always have any TKIP MIC done in s/w */
   3639   1.80    dyoung 		if ((k->wk_flags & IEEE80211_KEY_SWMIC) == 0 && !isfrag)
   3640   1.47    dyoung 			pktlen += cip->ic_miclen;
   3641   1.47    dyoung 		keyix = k->wk_keyix;
   3642   1.47    dyoung 
   3643   1.47    dyoung 		/* packet header may have moved, reset our local pointer */
   3644   1.47    dyoung 		wh = mtod(m0, struct ieee80211_frame *);
   3645   1.55    dyoung 	} else if (ni->ni_ucastkey.wk_cipher == &ieee80211_cipher_none) {
   3646   1.55    dyoung 		/*
   3647   1.55    dyoung 		 * Use station key cache slot, if assigned.
   3648   1.55    dyoung 		 */
   3649   1.55    dyoung 		keyix = ni->ni_ucastkey.wk_keyix;
   3650   1.55    dyoung 		if (keyix == IEEE80211_KEYIX_NONE)
   3651   1.55    dyoung 			keyix = HAL_TXKEYIX_INVALID;
   3652   1.47    dyoung 	} else
   3653   1.47    dyoung 		keyix = HAL_TXKEYIX_INVALID;
   3654   1.47    dyoung 
   3655    1.1    dyoung 	pktlen += IEEE80211_CRC_LEN;
   3656    1.1    dyoung 
   3657    1.1    dyoung 	/*
   3658    1.1    dyoung 	 * Load the DMA map so any coalescing is done.  This
   3659    1.1    dyoung 	 * also calculates the number of descriptors we need.
   3660    1.1    dyoung 	 */
   3661   1.47    dyoung 	error = bus_dmamap_load_mbuf(sc->sc_dmat, bf->bf_dmamap, m0,
   3662   1.47    dyoung 				     BUS_DMA_NOWAIT);
   3663   1.47    dyoung 	if (error == EFBIG) {
   3664   1.47    dyoung 		/* XXX packet requires too many descriptors */
   3665   1.47    dyoung 		bf->bf_nseg = ATH_TXDESC+1;
   3666   1.47    dyoung 	} else if (error != 0) {
   3667   1.47    dyoung 		sc->sc_stats.ast_tx_busdma++;
   3668   1.80    dyoung 		ath_freetx(m0);
   3669   1.47    dyoung 		return error;
   3670   1.47    dyoung 	}
   3671    1.1    dyoung 	/*
   3672    1.1    dyoung 	 * Discard null packets and check for packets that
   3673    1.1    dyoung 	 * require too many TX descriptors.  We try to convert
   3674    1.1    dyoung 	 * the latter to a cluster.
   3675    1.1    dyoung 	 */
   3676   1.11    dyoung 	if (error == EFBIG) {		/* too many desc's, linearize */
   3677    1.1    dyoung 		sc->sc_stats.ast_tx_linear++;
   3678   1.47    dyoung 		m = ath_defrag(m0, M_DONTWAIT, ATH_TXDESC);
   3679    1.1    dyoung 		if (m == NULL) {
   3680   1.80    dyoung 			ath_freetx(m0);
   3681    1.1    dyoung 			sc->sc_stats.ast_tx_nombuf++;
   3682    1.1    dyoung 			return ENOMEM;
   3683    1.1    dyoung 		}
   3684    1.1    dyoung 		m0 = m;
   3685   1.47    dyoung 		error = bus_dmamap_load_mbuf(sc->sc_dmat, bf->bf_dmamap, m0,
   3686   1.47    dyoung 					     BUS_DMA_NOWAIT);
   3687    1.1    dyoung 		if (error != 0) {
   3688    1.1    dyoung 			sc->sc_stats.ast_tx_busdma++;
   3689   1.80    dyoung 			ath_freetx(m0);
   3690    1.1    dyoung 			return error;
   3691    1.1    dyoung 		}
   3692   1.47    dyoung 		KASSERT(bf->bf_nseg <= ATH_TXDESC,
   3693   1.47    dyoung 		    ("too many segments after defrag; nseg %u", bf->bf_nseg));
   3694    1.1    dyoung 	} else if (bf->bf_nseg == 0) {		/* null packet, discard */
   3695    1.1    dyoung 		sc->sc_stats.ast_tx_nodata++;
   3696   1.80    dyoung 		ath_freetx(m0);
   3697    1.1    dyoung 		return EIO;
   3698    1.1    dyoung 	}
   3699   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_XMIT, "%s: m %p len %u\n", __func__, m0, pktlen);
   3700   1.47    dyoung 	bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, 0,
   3701   1.47    dyoung             bf->bf_dmamap->dm_mapsize, BUS_DMASYNC_PREWRITE);
   3702    1.1    dyoung 	bf->bf_m = m0;
   3703    1.1    dyoung 	bf->bf_node = ni;			/* NB: held reference */
   3704    1.1    dyoung 
   3705    1.1    dyoung 	/* setup descriptors */
   3706    1.1    dyoung 	ds = bf->bf_desc;
   3707    1.1    dyoung 	rt = sc->sc_currates;
   3708    1.1    dyoung 	KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode));
   3709    1.1    dyoung 
   3710    1.1    dyoung 	/*
   3711   1.47    dyoung 	 * NB: the 802.11 layer marks whether or not we should
   3712   1.47    dyoung 	 * use short preamble based on the current mode and
   3713   1.47    dyoung 	 * negotiated parameters.
   3714   1.47    dyoung 	 */
   3715   1.47    dyoung 	if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
   3716   1.51    dyoung 	    (ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE) && !ismcast) {
   3717   1.47    dyoung 		shortPreamble = AH_TRUE;
   3718   1.47    dyoung 		sc->sc_stats.ast_tx_shortpre++;
   3719   1.47    dyoung 	} else {
   3720   1.47    dyoung 		shortPreamble = AH_FALSE;
   3721   1.47    dyoung 	}
   3722   1.47    dyoung 
   3723   1.47    dyoung 	an = ATH_NODE(ni);
   3724   1.47    dyoung 	flags = HAL_TXDESC_CLRDMASK;		/* XXX needed for crypto errs */
   3725   1.68    dyoung 	ismrr = 0;				/* default no multi-rate retry*/
   3726   1.47    dyoung 	/*
   3727   1.47    dyoung 	 * Calculate Atheros packet type from IEEE80211 packet header,
   3728   1.47    dyoung 	 * setup for rate calculations, and select h/w transmit queue.
   3729    1.1    dyoung 	 */
   3730    1.1    dyoung 	switch (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) {
   3731    1.1    dyoung 	case IEEE80211_FC0_TYPE_MGT:
   3732    1.1    dyoung 		subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK;
   3733    1.1    dyoung 		if (subtype == IEEE80211_FC0_SUBTYPE_BEACON)
   3734    1.1    dyoung 			atype = HAL_PKT_TYPE_BEACON;
   3735    1.1    dyoung 		else if (subtype == IEEE80211_FC0_SUBTYPE_PROBE_RESP)
   3736    1.1    dyoung 			atype = HAL_PKT_TYPE_PROBE_RESP;
   3737    1.1    dyoung 		else if (subtype == IEEE80211_FC0_SUBTYPE_ATIM)
   3738    1.1    dyoung 			atype = HAL_PKT_TYPE_ATIM;
   3739   1.47    dyoung 		else
   3740   1.47    dyoung 			atype = HAL_PKT_TYPE_NORMAL;	/* XXX */
   3741   1.68    dyoung 		rix = sc->sc_minrateix;
   3742   1.68    dyoung 		txrate = rt->info[rix].rateCode;
   3743   1.47    dyoung 		if (shortPreamble)
   3744   1.68    dyoung 			txrate |= rt->info[rix].shortPreamble;
   3745   1.68    dyoung 		try0 = ATH_TXMGTTRY;
   3746   1.47    dyoung 		/* NB: force all management frames to highest queue */
   3747   1.47    dyoung 		if (ni->ni_flags & IEEE80211_NODE_QOS) {
   3748   1.47    dyoung 			/* NB: force all management frames to highest queue */
   3749   1.47    dyoung 			pri = WME_AC_VO;
   3750   1.47    dyoung 		} else
   3751   1.47    dyoung 			pri = WME_AC_BE;
   3752   1.47    dyoung 		flags |= HAL_TXDESC_INTREQ;	/* force interrupt */
   3753    1.1    dyoung 		break;
   3754    1.1    dyoung 	case IEEE80211_FC0_TYPE_CTL:
   3755   1.47    dyoung 		atype = HAL_PKT_TYPE_PSPOLL;	/* stop setting of duration */
   3756   1.68    dyoung 		rix = sc->sc_minrateix;
   3757   1.68    dyoung 		txrate = rt->info[rix].rateCode;
   3758   1.47    dyoung 		if (shortPreamble)
   3759   1.68    dyoung 			txrate |= rt->info[rix].shortPreamble;
   3760   1.68    dyoung 		try0 = ATH_TXMGTTRY;
   3761   1.47    dyoung 		/* NB: force all ctl frames to highest queue */
   3762   1.47    dyoung 		if (ni->ni_flags & IEEE80211_NODE_QOS) {
   3763   1.47    dyoung 			/* NB: force all ctl frames to highest queue */
   3764   1.47    dyoung 			pri = WME_AC_VO;
   3765   1.47    dyoung 		} else
   3766   1.47    dyoung 			pri = WME_AC_BE;
   3767   1.47    dyoung 		flags |= HAL_TXDESC_INTREQ;	/* force interrupt */
   3768   1.47    dyoung 		break;
   3769   1.47    dyoung 	case IEEE80211_FC0_TYPE_DATA:
   3770   1.47    dyoung 		atype = HAL_PKT_TYPE_NORMAL;		/* default */
   3771   1.47    dyoung 		/*
   3772   1.68    dyoung 		 * Data frames: multicast frames go out at a fixed rate,
   3773   1.68    dyoung 		 * otherwise consult the rate control module for the
   3774   1.68    dyoung 		 * rate to use.
   3775   1.51    dyoung 		 */
   3776   1.68    dyoung 		if (ismcast) {
   3777   1.68    dyoung 			/*
   3778   1.68    dyoung 			 * Check mcast rate setting in case it's changed.
   3779   1.68    dyoung 			 * XXX move out of fastpath
   3780   1.68    dyoung 			 */
   3781   1.68    dyoung 			if (ic->ic_mcast_rate != sc->sc_mcastrate) {
   3782   1.68    dyoung 				sc->sc_mcastrix =
   3783   1.68    dyoung 					ath_tx_findrix(rt, ic->ic_mcast_rate);
   3784   1.68    dyoung 				sc->sc_mcastrate = ic->ic_mcast_rate;
   3785   1.68    dyoung 			}
   3786   1.68    dyoung 			rix = sc->sc_mcastrix;
   3787   1.68    dyoung 			txrate = rt->info[rix].rateCode;
   3788   1.68    dyoung 			try0 = 1;
   3789   1.68    dyoung 		} else {
   3790   1.51    dyoung 			ath_rate_findrate(sc, an, shortPreamble, pktlen,
   3791   1.51    dyoung 				&rix, &try0, &txrate);
   3792   1.68    dyoung 			sc->sc_txrate = txrate;		/* for LED blinking */
   3793   1.68    dyoung 			if (try0 != ATH_TXMAXTRY)
   3794   1.68    dyoung 				ismrr = 1;
   3795   1.68    dyoung 		}
   3796   1.68    dyoung 		pri = M_WME_GETAC(m0);
   3797   1.68    dyoung 		if (cap->cap_wmeParams[pri].wmep_noackPolicy)
   3798   1.68    dyoung 			flags |= HAL_TXDESC_NOACK;
   3799    1.1    dyoung 		break;
   3800    1.1    dyoung 	default:
   3801   1.47    dyoung 		if_printf(ifp, "bogus frame type 0x%x (%s)\n",
   3802   1.47    dyoung 			wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK, __func__);
   3803   1.47    dyoung 		/* XXX statistic */
   3804   1.80    dyoung 		ath_freetx(m0);
   3805   1.47    dyoung 		return EIO;
   3806    1.1    dyoung 	}
   3807   1.47    dyoung 	txq = sc->sc_ac2q[pri];
   3808   1.47    dyoung 
   3809    1.1    dyoung 	/*
   3810   1.47    dyoung 	 * When servicing one or more stations in power-save mode
   3811   1.47    dyoung 	 * multicast frames must be buffered until after the beacon.
   3812   1.47    dyoung 	 * We use the CAB queue for that.
   3813    1.1    dyoung 	 */
   3814   1.47    dyoung 	if (ismcast && ic->ic_ps_sta) {
   3815   1.47    dyoung 		txq = sc->sc_cabq;
   3816   1.47    dyoung 		/* XXX? more bit in 802.11 frame header */
   3817    1.1    dyoung 	}
   3818    1.1    dyoung 
   3819    1.1    dyoung 	/*
   3820    1.1    dyoung 	 * Calculate miscellaneous flags.
   3821    1.1    dyoung 	 */
   3822   1.47    dyoung 	if (ismcast) {
   3823    1.1    dyoung 		flags |= HAL_TXDESC_NOACK;	/* no ack on broad/multicast */
   3824    1.1    dyoung 	} else if (pktlen > ic->ic_rtsthreshold) {
   3825    1.1    dyoung 		flags |= HAL_TXDESC_RTSENA;	/* RTS based on frame length */
   3826   1.47    dyoung 		cix = rt->info[rix].controlRate;
   3827    1.1    dyoung 		sc->sc_stats.ast_tx_rts++;
   3828    1.1    dyoung 	}
   3829   1.68    dyoung 	if (flags & HAL_TXDESC_NOACK)		/* NB: avoid double counting */
   3830   1.68    dyoung 		sc->sc_stats.ast_tx_noack++;
   3831    1.1    dyoung 
   3832    1.1    dyoung 	/*
   3833   1.47    dyoung 	 * If 802.11g protection is enabled, determine whether
   3834   1.47    dyoung 	 * to use RTS/CTS or just CTS.  Note that this is only
   3835   1.47    dyoung 	 * done for OFDM unicast frames.
   3836   1.47    dyoung 	 */
   3837   1.47    dyoung 	if ((ic->ic_flags & IEEE80211_F_USEPROT) &&
   3838   1.47    dyoung 	    rt->info[rix].phy == IEEE80211_T_OFDM &&
   3839   1.47    dyoung 	    (flags & HAL_TXDESC_NOACK) == 0) {
   3840   1.47    dyoung 		/* XXX fragments must use CCK rates w/ protection */
   3841   1.47    dyoung 		if (ic->ic_protmode == IEEE80211_PROT_RTSCTS)
   3842   1.47    dyoung 			flags |= HAL_TXDESC_RTSENA;
   3843   1.47    dyoung 		else if (ic->ic_protmode == IEEE80211_PROT_CTSONLY)
   3844   1.47    dyoung 			flags |= HAL_TXDESC_CTSENA;
   3845   1.80    dyoung 		if (isfrag) {
   3846   1.80    dyoung 			/*
   3847   1.80    dyoung 			 * For frags it would be desirable to use the
   3848   1.80    dyoung 			 * highest CCK rate for RTS/CTS.  But stations
   3849   1.80    dyoung 			 * farther away may detect it at a lower CCK rate
   3850   1.80    dyoung 			 * so use the configured protection rate instead
   3851   1.80    dyoung 			 * (for now).
   3852   1.80    dyoung 			 */
   3853   1.80    dyoung 			cix = rt->info[sc->sc_protrix].controlRate;
   3854   1.80    dyoung 		} else
   3855   1.80    dyoung 			cix = rt->info[sc->sc_protrix].controlRate;
   3856   1.47    dyoung 		sc->sc_stats.ast_tx_protect++;
   3857   1.47    dyoung 	}
   3858   1.47    dyoung 
   3859   1.47    dyoung 	/*
   3860   1.18    dyoung 	 * Calculate duration.  This logically belongs in the 802.11
   3861   1.18    dyoung 	 * layer but it lacks sufficient information to calculate it.
   3862   1.18    dyoung 	 */
   3863   1.18    dyoung 	if ((flags & HAL_TXDESC_NOACK) == 0 &&
   3864   1.18    dyoung 	    (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_CTL) {
   3865   1.18    dyoung 		u_int16_t dur;
   3866   1.18    dyoung 		/*
   3867   1.18    dyoung 		 * XXX not right with fragmentation.
   3868   1.18    dyoung 		 */
   3869   1.47    dyoung 		if (shortPreamble)
   3870   1.47    dyoung 			dur = rt->info[rix].spAckDuration;
   3871   1.47    dyoung 		else
   3872   1.47    dyoung 			dur = rt->info[rix].lpAckDuration;
   3873   1.80    dyoung 		if (wh->i_fc[1] & IEEE80211_FC1_MORE_FRAG) {
   3874   1.80    dyoung 			dur += dur;             /* additional SIFS+ACK */
   3875   1.80    dyoung 			KASSERT(m0->m_nextpkt != NULL, ("no fragment"));
   3876   1.80    dyoung 			/*
   3877   1.80    dyoung 			 * Include the size of next fragment so NAV is
   3878   1.80    dyoung 			 * updated properly.  The last fragment uses only
   3879   1.80    dyoung 			 * the ACK duration
   3880   1.80    dyoung 			 */
   3881   1.80    dyoung 			dur += ath_hal_computetxtime(ah, rt,
   3882  1.101    dyoung 			    deduct_pad_bytes(m0->m_nextpkt->m_pkthdr.len,
   3883  1.104       alc 			        hdrlen) -
   3884  1.101    dyoung 			    deduct_pad_bytes(m0->m_pkthdr.len, hdrlen) + pktlen,
   3885  1.101    dyoung 			    rix, shortPreamble);
   3886   1.80    dyoung 		}
   3887   1.80    dyoung 		if (isfrag) {
   3888   1.80    dyoung 			/*
   3889   1.80    dyoung 			 * Force hardware to use computed duration for next
   3890   1.80    dyoung 			 * fragment by disabling multi-rate retry which updates
   3891   1.80    dyoung 			 * duration based on the multi-rate duration table.
   3892   1.80    dyoung 			 */
   3893   1.80    dyoung 			try0 = ATH_TXMAXTRY;
   3894   1.80    dyoung 		}
   3895   1.47    dyoung 		*(u_int16_t *)wh->i_dur = htole16(dur);
   3896   1.18    dyoung 	}
   3897   1.18    dyoung 
   3898   1.18    dyoung 	/*
   3899    1.1    dyoung 	 * Calculate RTS/CTS rate and duration if needed.
   3900    1.1    dyoung 	 */
   3901    1.1    dyoung 	ctsduration = 0;
   3902    1.1    dyoung 	if (flags & (HAL_TXDESC_RTSENA|HAL_TXDESC_CTSENA)) {
   3903    1.1    dyoung 		/*
   3904    1.1    dyoung 		 * CTS transmit rate is derived from the transmit rate
   3905    1.1    dyoung 		 * by looking in the h/w rate table.  We must also factor
   3906    1.1    dyoung 		 * in whether or not a short preamble is to be used.
   3907    1.1    dyoung 		 */
   3908   1.47    dyoung 		/* NB: cix is set above where RTS/CTS is enabled */
   3909   1.47    dyoung 		KASSERT(cix != 0xff, ("cix not setup"));
   3910    1.1    dyoung 		ctsrate = rt->info[cix].rateCode;
   3911    1.1    dyoung 		/*
   3912   1.47    dyoung 		 * Compute the transmit duration based on the frame
   3913   1.47    dyoung 		 * size and the size of an ACK frame.  We call into the
   3914   1.47    dyoung 		 * HAL to do the computation since it depends on the
   3915   1.47    dyoung 		 * characteristics of the actual PHY being used.
   3916   1.47    dyoung 		 *
   3917   1.47    dyoung 		 * NB: CTS is assumed the same size as an ACK so we can
   3918   1.47    dyoung 		 *     use the precalculated ACK durations.
   3919    1.1    dyoung 		 */
   3920   1.47    dyoung 		if (shortPreamble) {
   3921   1.47    dyoung 			ctsrate |= rt->info[cix].shortPreamble;
   3922   1.47    dyoung 			if (flags & HAL_TXDESC_RTSENA)		/* SIFS + CTS */
   3923   1.47    dyoung 				ctsduration += rt->info[cix].spAckDuration;
   3924    1.1    dyoung 			ctsduration += ath_hal_computetxtime(ah,
   3925   1.47    dyoung 				rt, pktlen, rix, AH_TRUE);
   3926   1.47    dyoung 			if ((flags & HAL_TXDESC_NOACK) == 0)	/* SIFS + ACK */
   3927   1.61     skrll 				ctsduration += rt->info[rix].spAckDuration;
   3928   1.47    dyoung 		} else {
   3929   1.47    dyoung 			if (flags & HAL_TXDESC_RTSENA)		/* SIFS + CTS */
   3930   1.47    dyoung 				ctsduration += rt->info[cix].lpAckDuration;
   3931    1.1    dyoung 			ctsduration += ath_hal_computetxtime(ah,
   3932   1.47    dyoung 				rt, pktlen, rix, AH_FALSE);
   3933   1.47    dyoung 			if ((flags & HAL_TXDESC_NOACK) == 0)	/* SIFS + ACK */
   3934   1.61     skrll 				ctsduration += rt->info[rix].lpAckDuration;
   3935    1.1    dyoung 		}
   3936   1.47    dyoung 		/*
   3937   1.47    dyoung 		 * Must disable multi-rate retry when using RTS/CTS.
   3938   1.47    dyoung 		 */
   3939   1.68    dyoung 		ismrr = 0;
   3940   1.68    dyoung 		try0 = ATH_TXMGTTRY;		/* XXX */
   3941    1.1    dyoung 	} else
   3942    1.1    dyoung 		ctsrate = 0;
   3943    1.1    dyoung 
   3944   1.47    dyoung 	if (IFF_DUMPPKTS(sc, ATH_DEBUG_XMIT))
   3945   1.82  christos 		ieee80211_dump_pkt(mtod(m0, void *), m0->m_len,
   3946   1.47    dyoung 			sc->sc_hwmap[txrate].ieeerate, -1);
   3947   1.64    rpaulo #if NBPFILTER > 0
   3948   1.25    dyoung 	if (ic->ic_rawbpf)
   3949   1.25    dyoung 		bpf_mtap(ic->ic_rawbpf, m0);
   3950   1.25    dyoung 	if (sc->sc_drvbpf) {
   3951   1.68    dyoung 		u_int64_t tsf = ath_hal_gettsf64(ah);
   3952   1.68    dyoung 
   3953   1.68    dyoung 		sc->sc_tx_th.wt_tsf = htole64(tsf);
   3954   1.47    dyoung 		sc->sc_tx_th.wt_flags = sc->sc_hwmap[txrate].txflags;
   3955   1.25    dyoung 		if (iswep)
   3956   1.25    dyoung 			sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_WEP;
   3957   1.80    dyoung 		if (isfrag)
   3958   1.80    dyoung 			sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_FRAG;
   3959   1.47    dyoung 		sc->sc_tx_th.wt_rate = sc->sc_hwmap[txrate].ieeerate;
   3960   1.47    dyoung 		sc->sc_tx_th.wt_txpower = ni->ni_txpower;
   3961   1.47    dyoung 		sc->sc_tx_th.wt_antenna = sc->sc_txantenna;
   3962   1.25    dyoung 
   3963   1.25    dyoung 		bpf_mtap2(sc->sc_drvbpf,
   3964   1.25    dyoung 			&sc->sc_tx_th, sc->sc_tx_th_len, m0);
   3965   1.25    dyoung 	}
   3966   1.64    rpaulo #endif
   3967   1.25    dyoung 
   3968   1.73     blymn 	/*
   3969   1.47    dyoung 	 * Determine if a tx interrupt should be generated for
   3970   1.47    dyoung 	 * this descriptor.  We take a tx interrupt to reap
   3971   1.47    dyoung 	 * descriptors when the h/w hits an EOL condition or
   3972   1.47    dyoung 	 * when the descriptor is specifically marked to generate
   3973   1.47    dyoung 	 * an interrupt.  We periodically mark descriptors in this
   3974   1.47    dyoung 	 * way to insure timely replenishing of the supply needed
   3975   1.47    dyoung 	 * for sending frames.  Defering interrupts reduces system
   3976   1.47    dyoung 	 * load and potentially allows more concurrent work to be
   3977   1.47    dyoung 	 * done but if done to aggressively can cause senders to
   3978   1.47    dyoung 	 * backup.
   3979   1.47    dyoung 	 *
   3980   1.47    dyoung 	 * NB: use >= to deal with sc_txintrperiod changing
   3981   1.47    dyoung 	 *     dynamically through sysctl.
   3982   1.47    dyoung 	 */
   3983   1.47    dyoung 	if (flags & HAL_TXDESC_INTREQ) {
   3984   1.47    dyoung 		txq->axq_intrcnt = 0;
   3985   1.47    dyoung 	} else if (++txq->axq_intrcnt >= sc->sc_txintrperiod) {
   3986   1.47    dyoung 		flags |= HAL_TXDESC_INTREQ;
   3987   1.47    dyoung 		txq->axq_intrcnt = 0;
   3988   1.47    dyoung 	}
   3989   1.47    dyoung 
   3990    1.1    dyoung 	/*
   3991    1.1    dyoung 	 * Formulate first tx descriptor with tx controls.
   3992    1.1    dyoung 	 */
   3993    1.1    dyoung 	/* XXX check return value? */
   3994    1.1    dyoung 	ath_hal_setuptxdesc(ah, ds
   3995    1.1    dyoung 		, pktlen		/* packet length */
   3996    1.1    dyoung 		, hdrlen		/* header length */
   3997    1.1    dyoung 		, atype			/* Atheros packet type */
   3998   1.47    dyoung 		, ni->ni_txpower	/* txpower */
   3999   1.47    dyoung 		, txrate, try0		/* series 0 rate/tries */
   4000   1.47    dyoung 		, keyix			/* key cache index */
   4001   1.47    dyoung 		, sc->sc_txantenna	/* antenna mode */
   4002    1.1    dyoung 		, flags			/* flags */
   4003    1.1    dyoung 		, ctsrate		/* rts/cts rate */
   4004    1.1    dyoung 		, ctsduration		/* rts/cts duration */
   4005    1.1    dyoung 	);
   4006   1.55    dyoung 	bf->bf_flags = flags;
   4007   1.47    dyoung 	/*
   4008   1.47    dyoung 	 * Setup the multi-rate retry state only when we're
   4009   1.47    dyoung 	 * going to use it.  This assumes ath_hal_setuptxdesc
   4010   1.47    dyoung 	 * initializes the descriptors (so we don't have to)
   4011   1.47    dyoung 	 * when the hardware supports multi-rate retry and
   4012   1.47    dyoung 	 * we don't use it.
   4013   1.47    dyoung 	 */
   4014   1.68    dyoung 	if (ismrr)
   4015   1.47    dyoung 		ath_rate_setupxtxdesc(sc, an, ds, shortPreamble, rix);
   4016   1.47    dyoung 
   4017    1.1    dyoung 	/*
   4018    1.1    dyoung 	 * Fillin the remainder of the descriptor info.
   4019    1.1    dyoung 	 */
   4020   1.47    dyoung 	ds0 = ds;
   4021    1.1    dyoung 	for (i = 0; i < bf->bf_nseg; i++, ds++) {
   4022    1.1    dyoung 		ds->ds_data = bf->bf_segs[i].ds_addr;
   4023    1.1    dyoung 		if (i == bf->bf_nseg - 1)
   4024    1.1    dyoung 			ds->ds_link = 0;
   4025    1.1    dyoung 		else
   4026    1.1    dyoung 			ds->ds_link = bf->bf_daddr + sizeof(*ds) * (i + 1);
   4027    1.1    dyoung 		ath_hal_filltxdesc(ah, ds
   4028    1.1    dyoung 			, bf->bf_segs[i].ds_len	/* segment length */
   4029    1.1    dyoung 			, i == 0		/* first segment */
   4030    1.1    dyoung 			, i == bf->bf_nseg - 1	/* last segment */
   4031   1.47    dyoung 			, ds0			/* first descriptor */
   4032    1.1    dyoung 		);
   4033   1.74   gdamore 
   4034  1.104       alc 		/* NB: The desc swap function becomes void,
   4035   1.74   gdamore 		 * if descriptor swapping is not enabled
   4036   1.74   gdamore 		 */
   4037   1.74   gdamore 		ath_desc_swap(ds);
   4038   1.74   gdamore 
   4039   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_XMIT,
   4040   1.47    dyoung 			"%s: %d: %08x %08x %08x %08x %08x %08x\n",
   4041   1.25    dyoung 			__func__, i, ds->ds_link, ds->ds_data,
   4042   1.47    dyoung 			ds->ds_ctl0, ds->ds_ctl1, ds->ds_hw[0], ds->ds_hw[1]);
   4043    1.1    dyoung 	}
   4044    1.1    dyoung 	/*
   4045    1.1    dyoung 	 * Insert the frame on the outbound list and
   4046    1.1    dyoung 	 * pass it on to the hardware.
   4047    1.1    dyoung 	 */
   4048   1.47    dyoung 	ATH_TXQ_LOCK(txq);
   4049   1.47    dyoung 	ATH_TXQ_INSERT_TAIL(txq, bf, bf_list);
   4050   1.47    dyoung 	if (txq->axq_link == NULL) {
   4051   1.47    dyoung 		ath_hal_puttxbuf(ah, txq->axq_qnum, bf->bf_daddr);
   4052   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_XMIT,
   4053   1.75   gdamore 		    "%s: TXDP[%u] = %" PRIx64 " (%p) depth %d\n", __func__,
   4054   1.75   gdamore 		    txq->axq_qnum, (uint64_t)bf->bf_daddr, bf->bf_desc,
   4055   1.75   gdamore 		    txq->axq_depth);
   4056    1.1    dyoung 	} else {
   4057   1.74   gdamore 		*txq->axq_link = HTOAH32(bf->bf_daddr);
   4058   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_XMIT,
   4059   1.75   gdamore 		    "%s: link[%u](%p)=%" PRIx64 " (%p) depth %d\n",
   4060   1.75   gdamore 		    __func__, txq->axq_qnum, txq->axq_link,
   4061   1.75   gdamore 		    (uint64_t)bf->bf_daddr, bf->bf_desc, txq->axq_depth);
   4062    1.1    dyoung 	}
   4063   1.47    dyoung 	txq->axq_link = &bf->bf_desc[bf->bf_nseg - 1].ds_link;
   4064   1.47    dyoung 	/*
   4065   1.47    dyoung 	 * The CAB queue is started from the SWBA handler since
   4066   1.47    dyoung 	 * frames only go out on DTIM and to avoid possible races.
   4067   1.47    dyoung 	 */
   4068   1.47    dyoung 	if (txq != sc->sc_cabq)
   4069   1.47    dyoung 		ath_hal_txstart(ah, txq->axq_qnum);
   4070   1.47    dyoung 	ATH_TXQ_UNLOCK(txq);
   4071    1.1    dyoung 
   4072    1.1    dyoung 	return 0;
   4073    1.1    dyoung }
   4074    1.1    dyoung 
   4075   1.47    dyoung /*
   4076   1.47    dyoung  * Process completed xmit descriptors from the specified queue.
   4077   1.47    dyoung  */
   4078   1.68    dyoung static int
   4079   1.47    dyoung ath_tx_processq(struct ath_softc *sc, struct ath_txq *txq)
   4080    1.1    dyoung {
   4081    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4082   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   4083    1.1    dyoung 	struct ath_buf *bf;
   4084   1.47    dyoung 	struct ath_desc *ds, *ds0;
   4085    1.1    dyoung 	struct ieee80211_node *ni;
   4086    1.1    dyoung 	struct ath_node *an;
   4087   1.68    dyoung 	int sr, lr, pri, nacked;
   4088    1.1    dyoung 	HAL_STATUS status;
   4089    1.1    dyoung 
   4090   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_TX_PROC, "%s: tx queue %u head %p link %p\n",
   4091   1.47    dyoung 		__func__, txq->axq_qnum,
   4092   1.82  christos 		(void *)(uintptr_t) ath_hal_gettxbuf(sc->sc_ah, txq->axq_qnum),
   4093   1.47    dyoung 		txq->axq_link);
   4094   1.68    dyoung 	nacked = 0;
   4095    1.1    dyoung 	for (;;) {
   4096   1.47    dyoung 		ATH_TXQ_LOCK(txq);
   4097   1.47    dyoung 		txq->axq_intrcnt = 0;	/* reset periodic desc intr count */
   4098   1.47    dyoung 		bf = STAILQ_FIRST(&txq->axq_q);
   4099    1.1    dyoung 		if (bf == NULL) {
   4100   1.47    dyoung 			txq->axq_link = NULL;
   4101   1.47    dyoung 			ATH_TXQ_UNLOCK(txq);
   4102    1.1    dyoung 			break;
   4103    1.1    dyoung 		}
   4104   1.47    dyoung 		ds0 = &bf->bf_desc[0];
   4105    1.1    dyoung 		ds = &bf->bf_desc[bf->bf_nseg - 1];
   4106  1.104       alc 		status = ath_hal_txprocdesc(ah, ds, &ds->ds_txstat);
   4107   1.47    dyoung 		if (sc->sc_debug & ATH_DEBUG_XMIT_DESC)
   4108    1.1    dyoung 			ath_printtxbuf(bf, status == HAL_OK);
   4109    1.1    dyoung 		if (status == HAL_EINPROGRESS) {
   4110   1.47    dyoung 			ATH_TXQ_UNLOCK(txq);
   4111    1.1    dyoung 			break;
   4112    1.1    dyoung 		}
   4113   1.47    dyoung 		ATH_TXQ_REMOVE_HEAD(txq, bf_list);
   4114   1.47    dyoung 		ATH_TXQ_UNLOCK(txq);
   4115    1.1    dyoung 
   4116    1.1    dyoung 		ni = bf->bf_node;
   4117    1.1    dyoung 		if (ni != NULL) {
   4118   1.47    dyoung 			an = ATH_NODE(ni);
   4119    1.1    dyoung 			if (ds->ds_txstat.ts_status == 0) {
   4120   1.47    dyoung 				u_int8_t txant = ds->ds_txstat.ts_antenna;
   4121   1.47    dyoung 				sc->sc_stats.ast_ant_tx[txant]++;
   4122   1.47    dyoung 				sc->sc_ant_tx[txant]++;
   4123   1.47    dyoung 				if (ds->ds_txstat.ts_rate & HAL_TXSTAT_ALTRATE)
   4124   1.47    dyoung 					sc->sc_stats.ast_tx_altrate++;
   4125   1.47    dyoung 				sc->sc_stats.ast_tx_rssi =
   4126   1.47    dyoung 					ds->ds_txstat.ts_rssi;
   4127   1.68    dyoung 				ATH_RSSI_LPF(sc->sc_halstats.ns_avgtxrssi,
   4128   1.47    dyoung 					ds->ds_txstat.ts_rssi);
   4129   1.47    dyoung 				pri = M_WME_GETAC(bf->bf_m);
   4130   1.47    dyoung 				if (pri >= WME_AC_VO)
   4131   1.47    dyoung 					ic->ic_wme.wme_hipri_traffic++;
   4132   1.47    dyoung 				ni->ni_inact = ni->ni_inact_reload;
   4133    1.1    dyoung 			} else {
   4134    1.1    dyoung 				if (ds->ds_txstat.ts_status & HAL_TXERR_XRETRY)
   4135    1.1    dyoung 					sc->sc_stats.ast_tx_xretries++;
   4136    1.1    dyoung 				if (ds->ds_txstat.ts_status & HAL_TXERR_FIFO)
   4137    1.1    dyoung 					sc->sc_stats.ast_tx_fifoerr++;
   4138    1.1    dyoung 				if (ds->ds_txstat.ts_status & HAL_TXERR_FILT)
   4139    1.1    dyoung 					sc->sc_stats.ast_tx_filtered++;
   4140    1.1    dyoung 			}
   4141    1.1    dyoung 			sr = ds->ds_txstat.ts_shortretry;
   4142    1.1    dyoung 			lr = ds->ds_txstat.ts_longretry;
   4143    1.1    dyoung 			sc->sc_stats.ast_tx_shortretry += sr;
   4144    1.1    dyoung 			sc->sc_stats.ast_tx_longretry += lr;
   4145   1.47    dyoung 			/*
   4146   1.47    dyoung 			 * Hand the descriptor to the rate control algorithm.
   4147   1.47    dyoung 			 */
   4148   1.55    dyoung 			if ((ds->ds_txstat.ts_status & HAL_TXERR_FILT) == 0 &&
   4149   1.68    dyoung 			    (bf->bf_flags & HAL_TXDESC_NOACK) == 0) {
   4150   1.68    dyoung 				/*
   4151   1.68    dyoung 				 * If frame was ack'd update the last rx time
   4152   1.68    dyoung 				 * used to workaround phantom bmiss interrupts.
   4153   1.68    dyoung 				 */
   4154   1.68    dyoung 				if (ds->ds_txstat.ts_status == 0)
   4155   1.68    dyoung 					nacked++;
   4156   1.55    dyoung 				ath_rate_tx_complete(sc, an, ds, ds0);
   4157   1.68    dyoung 			}
   4158    1.1    dyoung 			/*
   4159    1.1    dyoung 			 * Reclaim reference to node.
   4160    1.1    dyoung 			 *
   4161    1.1    dyoung 			 * NB: the node may be reclaimed here if, for example
   4162    1.1    dyoung 			 *     this is a DEAUTH message that was sent and the
   4163    1.1    dyoung 			 *     node was timed out due to inactivity.
   4164    1.1    dyoung 			 */
   4165   1.47    dyoung 			ieee80211_free_node(ni);
   4166    1.1    dyoung 		}
   4167   1.47    dyoung 		bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, 0,
   4168   1.47    dyoung 		    bf->bf_dmamap->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   4169    1.1    dyoung 		bus_dmamap_unload(sc->sc_dmat, bf->bf_dmamap);
   4170    1.1    dyoung 		m_freem(bf->bf_m);
   4171    1.1    dyoung 		bf->bf_m = NULL;
   4172    1.1    dyoung 		bf->bf_node = NULL;
   4173    1.1    dyoung 
   4174   1.47    dyoung 		ATH_TXBUF_LOCK(sc);
   4175   1.47    dyoung 		STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   4176   1.84    dyoung 		sc->sc_if.if_flags &= ~IFF_OACTIVE;
   4177   1.47    dyoung 		ATH_TXBUF_UNLOCK(sc);
   4178    1.1    dyoung 	}
   4179   1.68    dyoung 	return nacked;
   4180   1.68    dyoung }
   4181   1.68    dyoung 
   4182   1.68    dyoung static inline int
   4183   1.68    dyoung txqactive(struct ath_hal *ah, int qnum)
   4184   1.68    dyoung {
   4185   1.68    dyoung 	u_int32_t txqs = 1<<qnum;
   4186   1.68    dyoung 	ath_hal_gettxintrtxqs(ah, &txqs);
   4187   1.68    dyoung 	return (txqs & (1<<qnum));
   4188   1.47    dyoung }
   4189   1.47    dyoung 
   4190   1.47    dyoung /*
   4191   1.47    dyoung  * Deferred processing of transmit interrupt; special-cased
   4192   1.47    dyoung  * for a single hardware transmit queue (e.g. 5210 and 5211).
   4193   1.47    dyoung  */
   4194   1.47    dyoung static void
   4195   1.79  christos ath_tx_proc_q0(void *arg, int npending)
   4196   1.47    dyoung {
   4197   1.47    dyoung 	struct ath_softc *sc = arg;
   4198   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   4199   1.47    dyoung 
   4200   1.83    dyoung 	if (txqactive(sc->sc_ah, 0) && ath_tx_processq(sc, &sc->sc_txq[0]) > 0){
   4201   1.68    dyoung 		sc->sc_lastrx = ath_hal_gettsf64(sc->sc_ah);
   4202   1.83    dyoung 	}
   4203   1.68    dyoung 	if (txqactive(sc->sc_ah, sc->sc_cabq->axq_qnum))
   4204   1.68    dyoung 		ath_tx_processq(sc, sc->sc_cabq);
   4205   1.47    dyoung 
   4206   1.47    dyoung 	if (sc->sc_softled)
   4207   1.47    dyoung 		ath_led_event(sc, ATH_LED_TX);
   4208   1.47    dyoung 
   4209   1.47    dyoung 	ath_start(ifp);
   4210   1.47    dyoung }
   4211   1.47    dyoung 
   4212   1.47    dyoung /*
   4213   1.47    dyoung  * Deferred processing of transmit interrupt; special-cased
   4214   1.47    dyoung  * for four hardware queues, 0-3 (e.g. 5212 w/ WME support).
   4215   1.47    dyoung  */
   4216   1.47    dyoung static void
   4217   1.79  christos ath_tx_proc_q0123(void *arg, int npending)
   4218   1.47    dyoung {
   4219   1.47    dyoung 	struct ath_softc *sc = arg;
   4220   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   4221   1.68    dyoung 	int nacked;
   4222   1.47    dyoung 
   4223   1.47    dyoung 	/*
   4224   1.47    dyoung 	 * Process each active queue.
   4225   1.47    dyoung 	 */
   4226   1.68    dyoung 	nacked = 0;
   4227   1.68    dyoung 	if (txqactive(sc->sc_ah, 0))
   4228   1.68    dyoung 		nacked += ath_tx_processq(sc, &sc->sc_txq[0]);
   4229   1.68    dyoung 	if (txqactive(sc->sc_ah, 1))
   4230   1.68    dyoung 		nacked += ath_tx_processq(sc, &sc->sc_txq[1]);
   4231   1.68    dyoung 	if (txqactive(sc->sc_ah, 2))
   4232   1.68    dyoung 		nacked += ath_tx_processq(sc, &sc->sc_txq[2]);
   4233   1.68    dyoung 	if (txqactive(sc->sc_ah, 3))
   4234   1.68    dyoung 		nacked += ath_tx_processq(sc, &sc->sc_txq[3]);
   4235   1.68    dyoung 	if (txqactive(sc->sc_ah, sc->sc_cabq->axq_qnum))
   4236   1.68    dyoung 		ath_tx_processq(sc, sc->sc_cabq);
   4237   1.83    dyoung 	if (nacked) {
   4238   1.68    dyoung 		sc->sc_lastrx = ath_hal_gettsf64(sc->sc_ah);
   4239   1.83    dyoung 	}
   4240   1.47    dyoung 
   4241   1.47    dyoung 	if (sc->sc_softled)
   4242   1.47    dyoung 		ath_led_event(sc, ATH_LED_TX);
   4243   1.47    dyoung 
   4244    1.1    dyoung 	ath_start(ifp);
   4245    1.1    dyoung }
   4246    1.1    dyoung 
   4247    1.1    dyoung /*
   4248   1.47    dyoung  * Deferred processing of transmit interrupt.
   4249    1.1    dyoung  */
   4250    1.1    dyoung static void
   4251   1.79  christos ath_tx_proc(void *arg, int npending)
   4252   1.47    dyoung {
   4253   1.47    dyoung 	struct ath_softc *sc = arg;
   4254   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   4255   1.68    dyoung 	int i, nacked;
   4256   1.47    dyoung 
   4257   1.47    dyoung 	/*
   4258   1.47    dyoung 	 * Process each active queue.
   4259   1.47    dyoung 	 */
   4260   1.68    dyoung 	nacked = 0;
   4261   1.47    dyoung 	for (i = 0; i < HAL_NUM_TX_QUEUES; i++)
   4262   1.68    dyoung 		if (ATH_TXQ_SETUP(sc, i) && txqactive(sc->sc_ah, i))
   4263   1.68    dyoung 			nacked += ath_tx_processq(sc, &sc->sc_txq[i]);
   4264   1.83    dyoung 	if (nacked) {
   4265   1.68    dyoung 		sc->sc_lastrx = ath_hal_gettsf64(sc->sc_ah);
   4266   1.83    dyoung 	}
   4267   1.47    dyoung 
   4268   1.47    dyoung 	if (sc->sc_softled)
   4269   1.47    dyoung 		ath_led_event(sc, ATH_LED_TX);
   4270   1.47    dyoung 
   4271   1.47    dyoung 	ath_start(ifp);
   4272   1.47    dyoung }
   4273   1.47    dyoung 
   4274   1.47    dyoung static void
   4275   1.47    dyoung ath_tx_draintxq(struct ath_softc *sc, struct ath_txq *txq)
   4276    1.1    dyoung {
   4277    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4278   1.25    dyoung 	struct ieee80211_node *ni;
   4279    1.1    dyoung 	struct ath_buf *bf;
   4280  1.104       alc 	struct ath_desc *ds;
   4281    1.1    dyoung 
   4282   1.47    dyoung 	/*
   4283   1.47    dyoung 	 * NB: this assumes output has been stopped and
   4284   1.47    dyoung 	 *     we do not need to block ath_tx_tasklet
   4285   1.47    dyoung 	 */
   4286    1.1    dyoung 	for (;;) {
   4287   1.47    dyoung 		ATH_TXQ_LOCK(txq);
   4288   1.47    dyoung 		bf = STAILQ_FIRST(&txq->axq_q);
   4289    1.1    dyoung 		if (bf == NULL) {
   4290   1.47    dyoung 			txq->axq_link = NULL;
   4291   1.47    dyoung 			ATH_TXQ_UNLOCK(txq);
   4292    1.1    dyoung 			break;
   4293    1.1    dyoung 		}
   4294   1.47    dyoung 		ATH_TXQ_REMOVE_HEAD(txq, bf_list);
   4295   1.47    dyoung 		ATH_TXQ_UNLOCK(txq);
   4296  1.104       alc 		ds = &bf->bf_desc[bf->bf_nseg - 1];
   4297   1.47    dyoung 		if (sc->sc_debug & ATH_DEBUG_RESET)
   4298    1.1    dyoung 			ath_printtxbuf(bf,
   4299  1.104       alc 				ath_hal_txprocdesc(ah, bf->bf_desc,
   4300  1.104       alc 					&ds->ds_txstat) == HAL_OK);
   4301    1.1    dyoung 		bus_dmamap_unload(sc->sc_dmat, bf->bf_dmamap);
   4302    1.1    dyoung 		m_freem(bf->bf_m);
   4303    1.1    dyoung 		bf->bf_m = NULL;
   4304   1.25    dyoung 		ni = bf->bf_node;
   4305    1.1    dyoung 		bf->bf_node = NULL;
   4306   1.35    dyoung 		if (ni != NULL) {
   4307   1.25    dyoung 			/*
   4308   1.25    dyoung 			 * Reclaim node reference.
   4309   1.25    dyoung 			 */
   4310   1.47    dyoung 			ieee80211_free_node(ni);
   4311   1.25    dyoung 		}
   4312   1.47    dyoung 		ATH_TXBUF_LOCK(sc);
   4313   1.47    dyoung 		STAILQ_INSERT_TAIL(&sc->sc_txbuf, bf, bf_list);
   4314   1.84    dyoung 		sc->sc_if.if_flags &= ~IFF_OACTIVE;
   4315   1.47    dyoung 		ATH_TXBUF_UNLOCK(sc);
   4316    1.1    dyoung 	}
   4317   1.47    dyoung }
   4318   1.47    dyoung 
   4319   1.47    dyoung static void
   4320   1.47    dyoung ath_tx_stopdma(struct ath_softc *sc, struct ath_txq *txq)
   4321   1.47    dyoung {
   4322   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4323   1.47    dyoung 
   4324   1.47    dyoung 	(void) ath_hal_stoptxdma(ah, txq->axq_qnum);
   4325   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_RESET, "%s: tx queue [%u] %p, link %p\n",
   4326   1.47    dyoung 	    __func__, txq->axq_qnum,
   4327   1.82  christos 	    (void *)(uintptr_t) ath_hal_gettxbuf(ah, txq->axq_qnum),
   4328   1.47    dyoung 	    txq->axq_link);
   4329   1.47    dyoung }
   4330   1.47    dyoung 
   4331   1.47    dyoung /*
   4332   1.47    dyoung  * Drain the transmit queues and reclaim resources.
   4333   1.47    dyoung  */
   4334   1.47    dyoung static void
   4335   1.47    dyoung ath_draintxq(struct ath_softc *sc)
   4336   1.47    dyoung {
   4337   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4338   1.47    dyoung 	int i;
   4339   1.47    dyoung 
   4340   1.47    dyoung 	/* XXX return value */
   4341  1.102     joerg 	if (device_is_active(sc->sc_dev)) {
   4342   1.47    dyoung 		/* don't touch the hardware if marked invalid */
   4343   1.47    dyoung 		(void) ath_hal_stoptxdma(ah, sc->sc_bhalq);
   4344   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_RESET,
   4345   1.47    dyoung 		    "%s: beacon queue %p\n", __func__,
   4346   1.82  christos 		    (void *)(uintptr_t) ath_hal_gettxbuf(ah, sc->sc_bhalq));
   4347   1.47    dyoung 		for (i = 0; i < HAL_NUM_TX_QUEUES; i++)
   4348   1.47    dyoung 			if (ATH_TXQ_SETUP(sc, i))
   4349   1.47    dyoung 				ath_tx_stopdma(sc, &sc->sc_txq[i]);
   4350   1.47    dyoung 	}
   4351   1.47    dyoung 	for (i = 0; i < HAL_NUM_TX_QUEUES; i++)
   4352   1.47    dyoung 		if (ATH_TXQ_SETUP(sc, i))
   4353   1.47    dyoung 			ath_tx_draintxq(sc, &sc->sc_txq[i]);
   4354    1.1    dyoung }
   4355    1.1    dyoung 
   4356    1.1    dyoung /*
   4357    1.1    dyoung  * Disable the receive h/w in preparation for a reset.
   4358    1.1    dyoung  */
   4359    1.1    dyoung static void
   4360    1.1    dyoung ath_stoprecv(struct ath_softc *sc)
   4361    1.1    dyoung {
   4362   1.18    dyoung #define	PA2DESC(_sc, _pa) \
   4363   1.82  christos 	((struct ath_desc *)((char *)(_sc)->sc_rxdma.dd_desc + \
   4364   1.47    dyoung 		((_pa) - (_sc)->sc_rxdma.dd_desc_paddr)))
   4365    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4366  1.104       alc 	u_int64_t tsf;
   4367    1.1    dyoung 
   4368    1.1    dyoung 	ath_hal_stoppcurecv(ah);	/* disable PCU */
   4369    1.1    dyoung 	ath_hal_setrxfilter(ah, 0);	/* clear recv filter */
   4370    1.1    dyoung 	ath_hal_stopdmarecv(ah);	/* disable DMA engine */
   4371   1.47    dyoung 	DELAY(3000);			/* 3ms is long enough for 1 frame */
   4372   1.47    dyoung 	if (sc->sc_debug & (ATH_DEBUG_RESET | ATH_DEBUG_FATAL)) {
   4373    1.1    dyoung 		struct ath_buf *bf;
   4374    1.1    dyoung 
   4375   1.25    dyoung 		printf("%s: rx queue %p, link %p\n", __func__,
   4376   1.82  christos 			(void *)(uintptr_t) ath_hal_getrxbuf(ah), sc->sc_rxlink);
   4377   1.47    dyoung 		STAILQ_FOREACH(bf, &sc->sc_rxbuf, bf_list) {
   4378   1.18    dyoung 			struct ath_desc *ds = bf->bf_desc;
   4379  1.104       alc 			tsf = ath_hal_gettsf64(sc->sc_ah);
   4380   1.47    dyoung 			HAL_STATUS status = ath_hal_rxprocdesc(ah, ds,
   4381  1.104       alc 				bf->bf_daddr, PA2DESC(sc, ds->ds_link),
   4382  1.106  jmcneill 				&ds->ds_rxstat);
   4383   1.47    dyoung 			if (status == HAL_OK || (sc->sc_debug & ATH_DEBUG_FATAL))
   4384   1.47    dyoung 				ath_printrxbuf(bf, status == HAL_OK);
   4385    1.1    dyoung 		}
   4386    1.1    dyoung 	}
   4387    1.1    dyoung 	sc->sc_rxlink = NULL;		/* just in case */
   4388   1.18    dyoung #undef PA2DESC
   4389    1.1    dyoung }
   4390    1.1    dyoung 
   4391    1.1    dyoung /*
   4392    1.1    dyoung  * Enable the receive h/w following a reset.
   4393    1.1    dyoung  */
   4394    1.1    dyoung static int
   4395    1.1    dyoung ath_startrecv(struct ath_softc *sc)
   4396    1.1    dyoung {
   4397    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4398    1.1    dyoung 	struct ath_buf *bf;
   4399    1.1    dyoung 
   4400    1.1    dyoung 	sc->sc_rxlink = NULL;
   4401   1.47    dyoung 	STAILQ_FOREACH(bf, &sc->sc_rxbuf, bf_list) {
   4402    1.1    dyoung 		int error = ath_rxbuf_init(sc, bf);
   4403    1.1    dyoung 		if (error != 0) {
   4404   1.47    dyoung 			DPRINTF(sc, ATH_DEBUG_RECV,
   4405   1.47    dyoung 				"%s: ath_rxbuf_init failed %d\n",
   4406   1.47    dyoung 				__func__, error);
   4407    1.1    dyoung 			return error;
   4408    1.1    dyoung 		}
   4409    1.1    dyoung 	}
   4410    1.1    dyoung 
   4411   1.47    dyoung 	bf = STAILQ_FIRST(&sc->sc_rxbuf);
   4412    1.1    dyoung 	ath_hal_putrxbuf(ah, bf->bf_daddr);
   4413    1.1    dyoung 	ath_hal_rxena(ah);		/* enable recv descriptors */
   4414    1.1    dyoung 	ath_mode_init(sc);		/* set filters, etc. */
   4415    1.1    dyoung 	ath_hal_startpcurecv(ah);	/* re-enable PCU/DMA engine */
   4416    1.1    dyoung 	return 0;
   4417    1.1    dyoung }
   4418    1.1    dyoung 
   4419   1.73     blymn /*
   4420   1.47    dyoung  * Update internal state after a channel change.
   4421    1.1    dyoung  */
   4422   1.47    dyoung static void
   4423   1.47    dyoung ath_chan_change(struct ath_softc *sc, struct ieee80211_channel *chan)
   4424    1.1    dyoung {
   4425    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   4426   1.47    dyoung 	enum ieee80211_phymode mode;
   4427   1.47    dyoung 	u_int16_t flags;
   4428   1.47    dyoung 
   4429   1.47    dyoung 	/*
   4430   1.47    dyoung 	 * Change channels and update the h/w rate map
   4431   1.47    dyoung 	 * if we're switching; e.g. 11a to 11b/g.
   4432   1.47    dyoung 	 */
   4433   1.47    dyoung 	mode = ieee80211_chan2mode(ic, chan);
   4434   1.47    dyoung 	if (mode != sc->sc_curmode)
   4435   1.47    dyoung 		ath_setcurmode(sc, mode);
   4436   1.47    dyoung 	/*
   4437   1.47    dyoung 	 * Update BPF state.  NB: ethereal et. al. don't handle
   4438   1.47    dyoung 	 * merged flags well so pick a unique mode for their use.
   4439   1.47    dyoung 	 */
   4440   1.47    dyoung 	if (IEEE80211_IS_CHAN_A(chan))
   4441   1.47    dyoung 		flags = IEEE80211_CHAN_A;
   4442   1.47    dyoung 	/* XXX 11g schizophrenia */
   4443   1.47    dyoung 	else if (IEEE80211_IS_CHAN_G(chan) ||
   4444   1.47    dyoung 	    IEEE80211_IS_CHAN_PUREG(chan))
   4445   1.47    dyoung 		flags = IEEE80211_CHAN_G;
   4446   1.47    dyoung 	else
   4447   1.47    dyoung 		flags = IEEE80211_CHAN_B;
   4448   1.47    dyoung 	if (IEEE80211_IS_CHAN_T(chan))
   4449   1.47    dyoung 		flags |= IEEE80211_CHAN_TURBO;
   4450   1.47    dyoung 	sc->sc_tx_th.wt_chan_freq = sc->sc_rx_th.wr_chan_freq =
   4451   1.47    dyoung 		htole16(chan->ic_freq);
   4452   1.47    dyoung 	sc->sc_tx_th.wt_chan_flags = sc->sc_rx_th.wr_chan_flags =
   4453   1.47    dyoung 		htole16(flags);
   4454   1.47    dyoung }
   4455   1.47    dyoung 
   4456  1.104       alc #if 0
   4457   1.47    dyoung /*
   4458   1.68    dyoung  * Poll for a channel clear indication; this is required
   4459   1.68    dyoung  * for channels requiring DFS and not previously visited
   4460   1.68    dyoung  * and/or with a recent radar detection.
   4461   1.68    dyoung  */
   4462   1.68    dyoung static void
   4463   1.68    dyoung ath_dfswait(void *arg)
   4464   1.68    dyoung {
   4465   1.68    dyoung 	struct ath_softc *sc = arg;
   4466   1.68    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4467   1.68    dyoung 	HAL_CHANNEL hchan;
   4468   1.68    dyoung 
   4469   1.68    dyoung 	ath_hal_radar_wait(ah, &hchan);
   4470   1.68    dyoung 	if (hchan.privFlags & CHANNEL_INTERFERENCE) {
   4471   1.68    dyoung 		if_printf(&sc->sc_if,
   4472   1.68    dyoung 		    "channel %u/0x%x/0x%x has interference\n",
   4473   1.68    dyoung 		    hchan.channel, hchan.channelFlags, hchan.privFlags);
   4474   1.68    dyoung 		return;
   4475   1.68    dyoung 	}
   4476   1.68    dyoung 	if ((hchan.privFlags & CHANNEL_DFS) == 0) {
   4477   1.68    dyoung 		/* XXX should not happen */
   4478   1.68    dyoung 		return;
   4479   1.68    dyoung 	}
   4480   1.68    dyoung 	if (hchan.privFlags & CHANNEL_DFS_CLEAR) {
   4481   1.68    dyoung 		sc->sc_curchan.privFlags |= CHANNEL_DFS_CLEAR;
   4482   1.68    dyoung 		sc->sc_if.if_flags &= ~IFF_OACTIVE;
   4483   1.68    dyoung 		if_printf(&sc->sc_if,
   4484   1.68    dyoung 		    "channel %u/0x%x/0x%x marked clear\n",
   4485   1.68    dyoung 		    hchan.channel, hchan.channelFlags, hchan.privFlags);
   4486   1.68    dyoung 	} else
   4487   1.68    dyoung 		callout_reset(&sc->sc_dfs_ch, 2 * hz, ath_dfswait, sc);
   4488   1.68    dyoung }
   4489  1.104       alc #endif
   4490   1.68    dyoung 
   4491   1.68    dyoung /*
   4492   1.47    dyoung  * Set/change channels.  If the channel is really being changed,
   4493   1.47    dyoung  * it's done by reseting the chip.  To accomplish this we must
   4494   1.47    dyoung  * first cleanup any pending DMA, then restart stuff after a la
   4495   1.47    dyoung  * ath_init.
   4496   1.47    dyoung  */
   4497   1.47    dyoung static int
   4498   1.47    dyoung ath_chan_set(struct ath_softc *sc, struct ieee80211_channel *chan)
   4499   1.47    dyoung {
   4500   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4501   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   4502   1.47    dyoung 	HAL_CHANNEL hchan;
   4503    1.1    dyoung 
   4504   1.47    dyoung 	/*
   4505   1.47    dyoung 	 * Convert to a HAL channel description with
   4506   1.47    dyoung 	 * the flags constrained to reflect the current
   4507   1.47    dyoung 	 * operating mode.
   4508   1.47    dyoung 	 */
   4509   1.47    dyoung 	hchan.channel = chan->ic_freq;
   4510   1.47    dyoung 	hchan.channelFlags = ath_chan2flags(ic, chan);
   4511   1.47    dyoung 
   4512   1.68    dyoung 	DPRINTF(sc, ATH_DEBUG_RESET,
   4513   1.68    dyoung 	    "%s: %u (%u MHz, hal flags 0x%x) -> %u (%u MHz, hal flags 0x%x)\n",
   4514   1.47    dyoung 	    __func__,
   4515   1.68    dyoung 	    ath_hal_mhz2ieee(ah, sc->sc_curchan.channel,
   4516   1.47    dyoung 		sc->sc_curchan.channelFlags),
   4517   1.68    dyoung 	    	sc->sc_curchan.channel, sc->sc_curchan.channelFlags,
   4518   1.68    dyoung 	    ath_hal_mhz2ieee(ah, hchan.channel, hchan.channelFlags),
   4519   1.68    dyoung 	        hchan.channel, hchan.channelFlags);
   4520   1.47    dyoung 	if (hchan.channel != sc->sc_curchan.channel ||
   4521   1.47    dyoung 	    hchan.channelFlags != sc->sc_curchan.channelFlags) {
   4522    1.1    dyoung 		HAL_STATUS status;
   4523    1.1    dyoung 
   4524    1.1    dyoung 		/*
   4525    1.1    dyoung 		 * To switch channels clear any pending DMA operations;
   4526    1.1    dyoung 		 * wait long enough for the RX fifo to drain, reset the
   4527    1.1    dyoung 		 * hardware at the new frequency, and then re-enable
   4528    1.1    dyoung 		 * the relevant bits of the h/w.
   4529    1.1    dyoung 		 */
   4530    1.1    dyoung 		ath_hal_intrset(ah, 0);		/* disable interrupts */
   4531    1.1    dyoung 		ath_draintxq(sc);		/* clear pending tx frames */
   4532    1.1    dyoung 		ath_stoprecv(sc);		/* turn off frame recv */
   4533    1.1    dyoung 		if (!ath_hal_reset(ah, ic->ic_opmode, &hchan, AH_TRUE, &status)) {
   4534   1.68    dyoung 			if_printf(ic->ic_ifp, "%s: unable to reset "
   4535   1.69     lukem 			    "channel %u (%u MHz, flags 0x%x hal flags 0x%x)\n",
   4536   1.68    dyoung 			    __func__, ieee80211_chan2ieee(ic, chan),
   4537   1.68    dyoung 			    chan->ic_freq, chan->ic_flags, hchan.channelFlags);
   4538    1.1    dyoung 			return EIO;
   4539    1.1    dyoung 		}
   4540   1.47    dyoung 		sc->sc_curchan = hchan;
   4541   1.47    dyoung 		ath_update_txpow(sc);		/* update tx power state */
   4542   1.89    dyoung 		ath_restore_diversity(sc);
   4543   1.68    dyoung 		sc->sc_calinterval = 1;
   4544   1.68    dyoung 		sc->sc_caltries = 0;
   4545   1.47    dyoung 
   4546    1.1    dyoung 		/*
   4547    1.1    dyoung 		 * Re-enable rx framework.
   4548    1.1    dyoung 		 */
   4549    1.1    dyoung 		if (ath_startrecv(sc) != 0) {
   4550   1.47    dyoung 			if_printf(&sc->sc_if,
   4551   1.68    dyoung 				"%s: unable to restart recv logic\n", __func__);
   4552    1.1    dyoung 			return EIO;
   4553    1.1    dyoung 		}
   4554    1.1    dyoung 
   4555    1.1    dyoung 		/*
   4556    1.1    dyoung 		 * Change channels and update the h/w rate map
   4557    1.1    dyoung 		 * if we're switching; e.g. 11a to 11b/g.
   4558    1.1    dyoung 		 */
   4559    1.1    dyoung 		ic->ic_ibss_chan = chan;
   4560   1.47    dyoung 		ath_chan_change(sc, chan);
   4561    1.1    dyoung 
   4562  1.104       alc #if 0
   4563    1.1    dyoung 		/*
   4564   1.68    dyoung 		 * Handle DFS required waiting period to determine
   4565   1.68    dyoung 		 * if channel is clear of radar traffic.
   4566   1.68    dyoung 		 */
   4567   1.68    dyoung 		if (ic->ic_opmode == IEEE80211_M_HOSTAP) {
   4568   1.68    dyoung #define	DFS_AND_NOT_CLEAR(_c) \
   4569   1.68    dyoung 	(((_c)->privFlags & (CHANNEL_DFS | CHANNEL_DFS_CLEAR)) == CHANNEL_DFS)
   4570   1.68    dyoung 			if (DFS_AND_NOT_CLEAR(&sc->sc_curchan)) {
   4571   1.68    dyoung 				if_printf(&sc->sc_if,
   4572   1.68    dyoung 					"wait for DFS clear channel signal\n");
   4573   1.68    dyoung 				/* XXX stop sndq */
   4574   1.68    dyoung 				sc->sc_if.if_flags |= IFF_OACTIVE;
   4575   1.68    dyoung 				callout_reset(&sc->sc_dfs_ch,
   4576   1.68    dyoung 					2 * hz, ath_dfswait, sc);
   4577   1.68    dyoung 			} else
   4578   1.68    dyoung 				callout_stop(&sc->sc_dfs_ch);
   4579   1.68    dyoung #undef DFS_NOT_CLEAR
   4580   1.68    dyoung 		}
   4581  1.104       alc #endif
   4582   1.68    dyoung 
   4583   1.68    dyoung 		/*
   4584    1.1    dyoung 		 * Re-enable interrupts.
   4585    1.1    dyoung 		 */
   4586    1.1    dyoung 		ath_hal_intrset(ah, sc->sc_imask);
   4587    1.1    dyoung 	}
   4588    1.1    dyoung 	return 0;
   4589    1.1    dyoung }
   4590    1.1    dyoung 
   4591    1.1    dyoung static void
   4592    1.1    dyoung ath_next_scan(void *arg)
   4593    1.1    dyoung {
   4594    1.1    dyoung 	struct ath_softc *sc = arg;
   4595    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   4596    1.2    dyoung 	int s;
   4597    1.2    dyoung 
   4598    1.2    dyoung 	/* don't call ath_start w/o network interrupts blocked */
   4599    1.2    dyoung 	s = splnet();
   4600    1.1    dyoung 
   4601    1.1    dyoung 	if (ic->ic_state == IEEE80211_S_SCAN)
   4602   1.30   mycroft 		ieee80211_next_scan(ic);
   4603    1.2    dyoung 	splx(s);
   4604    1.1    dyoung }
   4605    1.1    dyoung 
   4606    1.1    dyoung /*
   4607    1.1    dyoung  * Periodically recalibrate the PHY to account
   4608    1.1    dyoung  * for temperature/environment changes.
   4609    1.1    dyoung  */
   4610    1.1    dyoung static void
   4611    1.1    dyoung ath_calibrate(void *arg)
   4612    1.1    dyoung {
   4613    1.1    dyoung 	struct ath_softc *sc = arg;
   4614    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4615   1.68    dyoung 	HAL_BOOL iqCalDone;
   4616    1.1    dyoung 
   4617    1.1    dyoung 	sc->sc_stats.ast_per_cal++;
   4618    1.1    dyoung 
   4619   1.53    dyoung 	ATH_LOCK(sc);
   4620    1.1    dyoung 
   4621    1.1    dyoung 	if (ath_hal_getrfgain(ah) == HAL_RFGAIN_NEED_CHANGE) {
   4622    1.1    dyoung 		/*
   4623    1.1    dyoung 		 * Rfgain is out of bounds, reset the chip
   4624    1.1    dyoung 		 * to load new gain values.
   4625    1.1    dyoung 		 */
   4626   1.68    dyoung 		DPRINTF(sc, ATH_DEBUG_CALIBRATE,
   4627   1.68    dyoung 			"%s: rfgain change\n", __func__);
   4628    1.1    dyoung 		sc->sc_stats.ast_per_rfgain++;
   4629   1.47    dyoung 		ath_reset(&sc->sc_if);
   4630    1.1    dyoung 	}
   4631   1.68    dyoung 	if (!ath_hal_calibrate(ah, &sc->sc_curchan, &iqCalDone)) {
   4632   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY,
   4633   1.47    dyoung 			"%s: calibration of channel %u failed\n",
   4634   1.47    dyoung 			__func__, sc->sc_curchan.channel);
   4635    1.1    dyoung 		sc->sc_stats.ast_per_calfail++;
   4636    1.1    dyoung 	}
   4637   1.68    dyoung 	/*
   4638   1.68    dyoung 	 * Calibrate noise floor data again in case of change.
   4639   1.68    dyoung 	 */
   4640   1.68    dyoung 	ath_hal_process_noisefloor(ah);
   4641   1.68    dyoung 	/*
   4642   1.68    dyoung 	 * Poll more frequently when the IQ calibration is in
   4643   1.73     blymn 	 * progress to speedup loading the final settings.
   4644   1.68    dyoung 	 * We temper this aggressive polling with an exponential
   4645   1.68    dyoung 	 * back off after 4 tries up to ath_calinterval.
   4646   1.68    dyoung 	 */
   4647   1.68    dyoung 	if (iqCalDone || sc->sc_calinterval >= ath_calinterval) {
   4648   1.68    dyoung 		sc->sc_caltries = 0;
   4649   1.68    dyoung 		sc->sc_calinterval = ath_calinterval;
   4650   1.68    dyoung 	} else if (sc->sc_caltries > 4) {
   4651   1.68    dyoung 		sc->sc_caltries = 0;
   4652   1.68    dyoung 		sc->sc_calinterval <<= 1;
   4653   1.68    dyoung 		if (sc->sc_calinterval > ath_calinterval)
   4654   1.68    dyoung 			sc->sc_calinterval = ath_calinterval;
   4655   1.68    dyoung 	}
   4656   1.68    dyoung 	KASSERT(0 < sc->sc_calinterval && sc->sc_calinterval <= ath_calinterval,
   4657   1.68    dyoung 		("bad calibration interval %u", sc->sc_calinterval));
   4658   1.68    dyoung 
   4659   1.68    dyoung 	DPRINTF(sc, ATH_DEBUG_CALIBRATE,
   4660   1.68    dyoung 		"%s: next +%u (%siqCalDone tries %u)\n", __func__,
   4661   1.68    dyoung 		sc->sc_calinterval, iqCalDone ? "" : "!", sc->sc_caltries);
   4662   1.68    dyoung 	sc->sc_caltries++;
   4663   1.68    dyoung 	callout_reset(&sc->sc_cal_ch, sc->sc_calinterval * hz,
   4664   1.68    dyoung 		ath_calibrate, sc);
   4665   1.53    dyoung 	ATH_UNLOCK(sc);
   4666    1.4    dyoung }
   4667    1.4    dyoung 
   4668    1.1    dyoung static int
   4669    1.1    dyoung ath_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
   4670    1.1    dyoung {
   4671   1.47    dyoung 	struct ifnet *ifp = ic->ic_ifp;
   4672    1.1    dyoung 	struct ath_softc *sc = ifp->if_softc;
   4673    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4674    1.1    dyoung 	struct ieee80211_node *ni;
   4675    1.1    dyoung 	int i, error;
   4676   1.18    dyoung 	const u_int8_t *bssid;
   4677    1.1    dyoung 	u_int32_t rfilt;
   4678   1.47    dyoung 	static const HAL_LED_STATE leds[] = {
   4679   1.47    dyoung 	    HAL_LED_INIT,	/* IEEE80211_S_INIT */
   4680   1.47    dyoung 	    HAL_LED_SCAN,	/* IEEE80211_S_SCAN */
   4681   1.47    dyoung 	    HAL_LED_AUTH,	/* IEEE80211_S_AUTH */
   4682   1.47    dyoung 	    HAL_LED_ASSOC, 	/* IEEE80211_S_ASSOC */
   4683   1.47    dyoung 	    HAL_LED_RUN, 	/* IEEE80211_S_RUN */
   4684   1.47    dyoung 	};
   4685    1.1    dyoung 
   4686   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_STATE, "%s: %s -> %s\n", __func__,
   4687    1.1    dyoung 		ieee80211_state_name[ic->ic_state],
   4688   1.47    dyoung 		ieee80211_state_name[nstate]);
   4689    1.1    dyoung 
   4690   1.47    dyoung 	callout_stop(&sc->sc_scan_ch);
   4691   1.47    dyoung 	callout_stop(&sc->sc_cal_ch);
   4692  1.104       alc #if 0
   4693   1.68    dyoung 	callout_stop(&sc->sc_dfs_ch);
   4694  1.104       alc #endif
   4695   1.47    dyoung 	ath_hal_setledstate(ah, leds[nstate]);	/* set LED */
   4696    1.1    dyoung 
   4697    1.1    dyoung 	if (nstate == IEEE80211_S_INIT) {
   4698    1.1    dyoung 		sc->sc_imask &= ~(HAL_INT_SWBA | HAL_INT_BMISS);
   4699   1.47    dyoung 		/*
   4700   1.47    dyoung 		 * NB: disable interrupts so we don't rx frames.
   4701   1.47    dyoung 		 */
   4702   1.55    dyoung 		ath_hal_intrset(ah, sc->sc_imask &~ HAL_INT_GLOBAL);
   4703   1.47    dyoung 		/*
   4704   1.47    dyoung 		 * Notify the rate control algorithm.
   4705   1.47    dyoung 		 */
   4706   1.47    dyoung 		ath_rate_newstate(sc, nstate);
   4707   1.47    dyoung 		goto done;
   4708    1.1    dyoung 	}
   4709    1.1    dyoung 	ni = ic->ic_bss;
   4710   1.61     skrll 	error = ath_chan_set(sc, ic->ic_curchan);
   4711    1.1    dyoung 	if (error != 0)
   4712    1.1    dyoung 		goto bad;
   4713   1.47    dyoung 	rfilt = ath_calcrxfilter(sc, nstate);
   4714   1.47    dyoung 	if (nstate == IEEE80211_S_SCAN)
   4715    1.1    dyoung 		bssid = ifp->if_broadcastaddr;
   4716   1.47    dyoung 	else
   4717    1.1    dyoung 		bssid = ni->ni_bssid;
   4718    1.1    dyoung 	ath_hal_setrxfilter(ah, rfilt);
   4719   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_STATE, "%s: RX filter 0x%x bssid %s\n",
   4720   1.47    dyoung 		 __func__, rfilt, ether_sprintf(bssid));
   4721    1.1    dyoung 
   4722    1.1    dyoung 	if (nstate == IEEE80211_S_RUN && ic->ic_opmode == IEEE80211_M_STA)
   4723    1.1    dyoung 		ath_hal_setassocid(ah, bssid, ni->ni_associd);
   4724    1.1    dyoung 	else
   4725    1.1    dyoung 		ath_hal_setassocid(ah, bssid, 0);
   4726   1.29   mycroft 	if (ic->ic_flags & IEEE80211_F_PRIVACY) {
   4727    1.1    dyoung 		for (i = 0; i < IEEE80211_WEP_NKID; i++)
   4728    1.1    dyoung 			if (ath_hal_keyisvalid(ah, i))
   4729    1.1    dyoung 				ath_hal_keysetmac(ah, i, bssid);
   4730    1.1    dyoung 	}
   4731    1.1    dyoung 
   4732   1.47    dyoung 	/*
   4733   1.47    dyoung 	 * Notify the rate control algorithm so rates
   4734   1.47    dyoung 	 * are setup should ath_beacon_alloc be called.
   4735   1.47    dyoung 	 */
   4736   1.47    dyoung 	ath_rate_newstate(sc, nstate);
   4737   1.47    dyoung 
   4738   1.47    dyoung 	if (ic->ic_opmode == IEEE80211_M_MONITOR) {
   4739   1.47    dyoung 		/* nothing to do */;
   4740   1.47    dyoung 	} else if (nstate == IEEE80211_S_RUN) {
   4741   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_STATE,
   4742   1.47    dyoung 			"%s(RUN): ic_flags=0x%08x iv=%d bssid=%s "
   4743    1.1    dyoung 			"capinfo=0x%04x chan=%d\n"
   4744    1.1    dyoung 			 , __func__
   4745    1.1    dyoung 			 , ic->ic_flags
   4746    1.1    dyoung 			 , ni->ni_intval
   4747    1.1    dyoung 			 , ether_sprintf(ni->ni_bssid)
   4748    1.1    dyoung 			 , ni->ni_capinfo
   4749   1.61     skrll 			 , ieee80211_chan2ieee(ic, ic->ic_curchan));
   4750    1.1    dyoung 
   4751   1.55    dyoung 		switch (ic->ic_opmode) {
   4752   1.55    dyoung 		case IEEE80211_M_HOSTAP:
   4753   1.55    dyoung 		case IEEE80211_M_IBSS:
   4754   1.47    dyoung 			/*
   4755   1.55    dyoung 			 * Allocate and setup the beacon frame.
   4756   1.55    dyoung 			 *
   4757   1.47    dyoung 			 * Stop any previous beacon DMA.  This may be
   4758   1.47    dyoung 			 * necessary, for example, when an ibss merge
   4759   1.47    dyoung 			 * causes reconfiguration; there will be a state
   4760   1.47    dyoung 			 * transition from RUN->RUN that means we may
   4761   1.47    dyoung 			 * be called with beacon transmission active.
   4762   1.47    dyoung 			 */
   4763   1.47    dyoung 			ath_hal_stoptxdma(ah, sc->sc_bhalq);
   4764   1.47    dyoung 			ath_beacon_free(sc);
   4765    1.1    dyoung 			error = ath_beacon_alloc(sc, ni);
   4766    1.1    dyoung 			if (error != 0)
   4767    1.1    dyoung 				goto bad;
   4768   1.68    dyoung 			/*
   4769   1.68    dyoung 			 * If joining an adhoc network defer beacon timer
   4770   1.68    dyoung 			 * configuration to the next beacon frame so we
   4771   1.68    dyoung 			 * have a current TSF to use.  Otherwise we're
   4772   1.68    dyoung 			 * starting an ibss/bss so there's no need to delay.
   4773   1.68    dyoung 			 */
   4774   1.68    dyoung 			if (ic->ic_opmode == IEEE80211_M_IBSS &&
   4775   1.68    dyoung 			    ic->ic_bss->ni_tstamp.tsf != 0)
   4776   1.68    dyoung 				sc->sc_syncbeacon = 1;
   4777   1.68    dyoung 			else
   4778   1.68    dyoung 				ath_beacon_config(sc);
   4779   1.55    dyoung 			break;
   4780   1.55    dyoung 		case IEEE80211_M_STA:
   4781   1.55    dyoung 			/*
   4782   1.55    dyoung 			 * Allocate a key cache slot to the station.
   4783   1.55    dyoung 			 */
   4784   1.55    dyoung 			if ((ic->ic_flags & IEEE80211_F_PRIVACY) == 0 &&
   4785   1.55    dyoung 			    sc->sc_hasclrkey &&
   4786   1.55    dyoung 			    ni->ni_ucastkey.wk_keyix == IEEE80211_KEYIX_NONE)
   4787   1.55    dyoung 				ath_setup_stationkey(ni);
   4788   1.68    dyoung 			/*
   4789   1.68    dyoung 			 * Defer beacon timer configuration to the next
   4790   1.68    dyoung 			 * beacon frame so we have a current TSF to use
   4791   1.68    dyoung 			 * (any TSF collected when scanning is likely old).
   4792   1.68    dyoung 			 */
   4793   1.68    dyoung 			sc->sc_syncbeacon = 1;
   4794   1.55    dyoung 			break;
   4795   1.55    dyoung 		default:
   4796   1.55    dyoung 			break;
   4797    1.1    dyoung 		}
   4798    1.1    dyoung 		/*
   4799   1.68    dyoung 		 * Let the hal process statistics collected during a
   4800   1.68    dyoung 		 * scan so it can provide calibrated noise floor data.
   4801   1.68    dyoung 		 */
   4802   1.68    dyoung 		ath_hal_process_noisefloor(ah);
   4803   1.68    dyoung 		/*
   4804   1.68    dyoung 		 * Reset rssi stats; maybe not the best place...
   4805    1.1    dyoung 		 */
   4806   1.68    dyoung 		sc->sc_halstats.ns_avgbrssi = ATH_RSSI_DUMMY_MARKER;
   4807   1.68    dyoung 		sc->sc_halstats.ns_avgrssi = ATH_RSSI_DUMMY_MARKER;
   4808   1.68    dyoung 		sc->sc_halstats.ns_avgtxrssi = ATH_RSSI_DUMMY_MARKER;
   4809    1.1    dyoung 	} else {
   4810   1.47    dyoung 		ath_hal_intrset(ah,
   4811   1.47    dyoung 			sc->sc_imask &~ (HAL_INT_SWBA | HAL_INT_BMISS));
   4812    1.1    dyoung 		sc->sc_imask &= ~(HAL_INT_SWBA | HAL_INT_BMISS);
   4813    1.1    dyoung 	}
   4814   1.47    dyoung done:
   4815    1.1    dyoung 	/*
   4816   1.47    dyoung 	 * Invoke the parent method to complete the work.
   4817    1.1    dyoung 	 */
   4818   1.47    dyoung 	error = sc->sc_newstate(ic, nstate, arg);
   4819    1.1    dyoung 	/*
   4820   1.47    dyoung 	 * Finally, start any timers.
   4821    1.1    dyoung 	 */
   4822   1.47    dyoung 	if (nstate == IEEE80211_S_RUN) {
   4823   1.47    dyoung 		/* start periodic recalibration timer */
   4824   1.68    dyoung 		callout_reset(&sc->sc_cal_ch, sc->sc_calinterval * hz,
   4825   1.47    dyoung 			ath_calibrate, sc);
   4826   1.47    dyoung 	} else if (nstate == IEEE80211_S_SCAN) {
   4827   1.47    dyoung 		/* start ap/neighbor scan timer */
   4828   1.47    dyoung 		callout_reset(&sc->sc_scan_ch, (ath_dwelltime * hz) / 1000,
   4829   1.47    dyoung 			ath_next_scan, sc);
   4830   1.47    dyoung 	}
   4831    1.1    dyoung bad:
   4832    1.1    dyoung 	return error;
   4833    1.1    dyoung }
   4834    1.1    dyoung 
   4835    1.1    dyoung /*
   4836   1.55    dyoung  * Allocate a key cache slot to the station so we can
   4837   1.55    dyoung  * setup a mapping from key index to node. The key cache
   4838   1.55    dyoung  * slot is needed for managing antenna state and for
   4839   1.55    dyoung  * compression when stations do not use crypto.  We do
   4840   1.55    dyoung  * it uniliaterally here; if crypto is employed this slot
   4841   1.55    dyoung  * will be reassigned.
   4842   1.55    dyoung  */
   4843   1.55    dyoung static void
   4844   1.55    dyoung ath_setup_stationkey(struct ieee80211_node *ni)
   4845   1.55    dyoung {
   4846   1.55    dyoung 	struct ieee80211com *ic = ni->ni_ic;
   4847   1.55    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   4848   1.61     skrll 	ieee80211_keyix keyix, rxkeyix;
   4849   1.55    dyoung 
   4850   1.61     skrll 	if (!ath_key_alloc(ic, &ni->ni_ucastkey, &keyix, &rxkeyix)) {
   4851   1.55    dyoung 		/*
   4852   1.55    dyoung 		 * Key cache is full; we'll fall back to doing
   4853   1.55    dyoung 		 * the more expensive lookup in software.  Note
   4854   1.55    dyoung 		 * this also means no h/w compression.
   4855   1.55    dyoung 		 */
   4856   1.55    dyoung 		/* XXX msg+statistic */
   4857   1.55    dyoung 	} else {
   4858   1.61     skrll 		/* XXX locking? */
   4859   1.55    dyoung 		ni->ni_ucastkey.wk_keyix = keyix;
   4860   1.61     skrll 		ni->ni_ucastkey.wk_rxkeyix = rxkeyix;
   4861   1.55    dyoung 		/* NB: this will create a pass-thru key entry */
   4862   1.55    dyoung 		ath_keyset(sc, &ni->ni_ucastkey, ni->ni_macaddr, ic->ic_bss);
   4863   1.55    dyoung 	}
   4864   1.55    dyoung }
   4865   1.55    dyoung 
   4866   1.55    dyoung /*
   4867    1.1    dyoung  * Setup driver-specific state for a newly associated node.
   4868    1.1    dyoung  * Note that we're called also on a re-associate, the isnew
   4869    1.1    dyoung  * param tells us if this is the first time or not.
   4870    1.1    dyoung  */
   4871    1.1    dyoung static void
   4872   1.61     skrll ath_newassoc(struct ieee80211_node *ni, int isnew)
   4873    1.1    dyoung {
   4874   1.61     skrll 	struct ieee80211com *ic = ni->ni_ic;
   4875   1.47    dyoung 	struct ath_softc *sc = ic->ic_ifp->if_softc;
   4876    1.1    dyoung 
   4877   1.47    dyoung 	ath_rate_newassoc(sc, ATH_NODE(ni), isnew);
   4878   1.55    dyoung 	if (isnew &&
   4879   1.55    dyoung 	    (ic->ic_flags & IEEE80211_F_PRIVACY) == 0 && sc->sc_hasclrkey) {
   4880   1.55    dyoung 		KASSERT(ni->ni_ucastkey.wk_keyix == IEEE80211_KEYIX_NONE,
   4881   1.55    dyoung 		    ("new assoc with a unicast key already setup (keyix %u)",
   4882   1.55    dyoung 		    ni->ni_ucastkey.wk_keyix));
   4883   1.55    dyoung 		ath_setup_stationkey(ni);
   4884   1.55    dyoung 	}
   4885    1.1    dyoung }
   4886    1.1    dyoung 
   4887    1.1    dyoung static int
   4888   1.47    dyoung ath_getchannels(struct ath_softc *sc, u_int cc,
   4889   1.47    dyoung 	HAL_BOOL outdoor, HAL_BOOL xchanmode)
   4890    1.1    dyoung {
   4891   1.68    dyoung #define	COMPAT	(CHANNEL_ALL_NOTURBO|CHANNEL_PASSIVE)
   4892    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   4893   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   4894    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   4895    1.1    dyoung 	HAL_CHANNEL *chans;
   4896    1.1    dyoung 	int i, ix, nchan;
   4897    1.1    dyoung 
   4898    1.1    dyoung 	chans = malloc(IEEE80211_CHAN_MAX * sizeof(HAL_CHANNEL),
   4899    1.1    dyoung 			M_TEMP, M_NOWAIT);
   4900    1.1    dyoung 	if (chans == NULL) {
   4901    1.1    dyoung 		if_printf(ifp, "unable to allocate channel table\n");
   4902    1.1    dyoung 		return ENOMEM;
   4903    1.1    dyoung 	}
   4904    1.1    dyoung 	if (!ath_hal_init_channels(ah, chans, IEEE80211_CHAN_MAX, &nchan,
   4905   1.68    dyoung 	    NULL, 0, NULL,
   4906   1.21    dyoung 	    cc, HAL_MODE_ALL, outdoor, xchanmode)) {
   4907   1.47    dyoung 		u_int32_t rd;
   4908   1.47    dyoung 
   4909   1.72       mrg 		(void)ath_hal_getregdomain(ah, &rd);
   4910   1.47    dyoung 		if_printf(ifp, "unable to collect channel list from hal; "
   4911   1.47    dyoung 			"regdomain likely %u country code %u\n", rd, cc);
   4912    1.1    dyoung 		free(chans, M_TEMP);
   4913    1.1    dyoung 		return EINVAL;
   4914    1.1    dyoung 	}
   4915    1.1    dyoung 
   4916    1.1    dyoung 	/*
   4917    1.1    dyoung 	 * Convert HAL channels to ieee80211 ones and insert
   4918    1.1    dyoung 	 * them in the table according to their channel number.
   4919    1.1    dyoung 	 */
   4920    1.1    dyoung 	for (i = 0; i < nchan; i++) {
   4921    1.1    dyoung 		HAL_CHANNEL *c = &chans[i];
   4922   1.68    dyoung 		u_int16_t flags;
   4923   1.68    dyoung 
   4924   1.68    dyoung 		ix = ath_hal_mhz2ieee(ah, c->channel, c->channelFlags);
   4925    1.1    dyoung 		if (ix > IEEE80211_CHAN_MAX) {
   4926   1.68    dyoung 			if_printf(ifp, "bad hal channel %d (%u/%x) ignored\n",
   4927    1.1    dyoung 				ix, c->channel, c->channelFlags);
   4928    1.1    dyoung 			continue;
   4929    1.1    dyoung 		}
   4930   1.68    dyoung 		if (ix < 0) {
   4931   1.68    dyoung 			/* XXX can't handle stuff <2400 right now */
   4932   1.68    dyoung 			if (bootverbose)
   4933   1.68    dyoung 				if_printf(ifp, "hal channel %d (%u/%x) "
   4934   1.68    dyoung 				    "cannot be handled; ignored\n",
   4935   1.68    dyoung 				    ix, c->channel, c->channelFlags);
   4936   1.68    dyoung 			continue;
   4937   1.68    dyoung 		}
   4938   1.68    dyoung 		/*
   4939   1.68    dyoung 		 * Calculate net80211 flags; most are compatible
   4940   1.68    dyoung 		 * but some need massaging.  Note the static turbo
   4941   1.68    dyoung 		 * conversion can be removed once net80211 is updated
   4942   1.68    dyoung 		 * to understand static vs. dynamic turbo.
   4943   1.68    dyoung 		 */
   4944   1.68    dyoung 		flags = c->channelFlags & COMPAT;
   4945   1.68    dyoung 		if (c->channelFlags & CHANNEL_STURBO)
   4946   1.68    dyoung 			flags |= IEEE80211_CHAN_TURBO;
   4947    1.1    dyoung 		if (ic->ic_channels[ix].ic_freq == 0) {
   4948    1.1    dyoung 			ic->ic_channels[ix].ic_freq = c->channel;
   4949   1.68    dyoung 			ic->ic_channels[ix].ic_flags = flags;
   4950    1.1    dyoung 		} else {
   4951    1.1    dyoung 			/* channels overlap; e.g. 11g and 11b */
   4952   1.68    dyoung 			ic->ic_channels[ix].ic_flags |= flags;
   4953    1.1    dyoung 		}
   4954    1.1    dyoung 	}
   4955    1.1    dyoung 	free(chans, M_TEMP);
   4956    1.1    dyoung 	return 0;
   4957   1.68    dyoung #undef COMPAT
   4958    1.1    dyoung }
   4959    1.1    dyoung 
   4960   1.47    dyoung static void
   4961   1.47    dyoung ath_led_done(void *arg)
   4962   1.47    dyoung {
   4963   1.47    dyoung 	struct ath_softc *sc = arg;
   4964   1.47    dyoung 
   4965   1.47    dyoung 	sc->sc_blinking = 0;
   4966   1.47    dyoung }
   4967   1.47    dyoung 
   4968   1.47    dyoung /*
   4969   1.47    dyoung  * Turn the LED off: flip the pin and then set a timer so no
   4970   1.47    dyoung  * update will happen for the specified duration.
   4971   1.47    dyoung  */
   4972   1.47    dyoung static void
   4973   1.47    dyoung ath_led_off(void *arg)
   4974   1.47    dyoung {
   4975   1.47    dyoung 	struct ath_softc *sc = arg;
   4976   1.47    dyoung 
   4977   1.47    dyoung 	ath_hal_gpioset(sc->sc_ah, sc->sc_ledpin, !sc->sc_ledon);
   4978   1.47    dyoung 	callout_reset(&sc->sc_ledtimer, sc->sc_ledoff, ath_led_done, sc);
   4979   1.47    dyoung }
   4980   1.47    dyoung 
   4981   1.47    dyoung /*
   4982   1.47    dyoung  * Blink the LED according to the specified on/off times.
   4983   1.47    dyoung  */
   4984   1.47    dyoung static void
   4985   1.47    dyoung ath_led_blink(struct ath_softc *sc, int on, int off)
   4986   1.47    dyoung {
   4987   1.47    dyoung 	DPRINTF(sc, ATH_DEBUG_LED, "%s: on %u off %u\n", __func__, on, off);
   4988   1.47    dyoung 	ath_hal_gpioset(sc->sc_ah, sc->sc_ledpin, sc->sc_ledon);
   4989   1.47    dyoung 	sc->sc_blinking = 1;
   4990   1.47    dyoung 	sc->sc_ledoff = off;
   4991   1.47    dyoung 	callout_reset(&sc->sc_ledtimer, on, ath_led_off, sc);
   4992   1.47    dyoung }
   4993   1.47    dyoung 
   4994   1.47    dyoung static void
   4995   1.47    dyoung ath_led_event(struct ath_softc *sc, int event)
   4996   1.47    dyoung {
   4997   1.47    dyoung 
   4998   1.47    dyoung 	sc->sc_ledevent = ticks;	/* time of last event */
   4999   1.47    dyoung 	if (sc->sc_blinking)		/* don't interrupt active blink */
   5000   1.47    dyoung 		return;
   5001   1.47    dyoung 	switch (event) {
   5002   1.47    dyoung 	case ATH_LED_POLL:
   5003   1.47    dyoung 		ath_led_blink(sc, sc->sc_hwmap[0].ledon,
   5004   1.47    dyoung 			sc->sc_hwmap[0].ledoff);
   5005   1.47    dyoung 		break;
   5006   1.47    dyoung 	case ATH_LED_TX:
   5007   1.47    dyoung 		ath_led_blink(sc, sc->sc_hwmap[sc->sc_txrate].ledon,
   5008   1.47    dyoung 			sc->sc_hwmap[sc->sc_txrate].ledoff);
   5009   1.47    dyoung 		break;
   5010   1.47    dyoung 	case ATH_LED_RX:
   5011   1.47    dyoung 		ath_led_blink(sc, sc->sc_hwmap[sc->sc_rxrate].ledon,
   5012   1.47    dyoung 			sc->sc_hwmap[sc->sc_rxrate].ledoff);
   5013   1.47    dyoung 		break;
   5014   1.47    dyoung 	}
   5015   1.47    dyoung }
   5016   1.47    dyoung 
   5017   1.47    dyoung static void
   5018   1.47    dyoung ath_update_txpow(struct ath_softc *sc)
   5019   1.47    dyoung {
   5020   1.68    dyoung #define	COMPAT	(CHANNEL_ALL_NOTURBO|CHANNEL_PASSIVE)
   5021   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   5022   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   5023   1.47    dyoung 	u_int32_t txpow;
   5024   1.47    dyoung 
   5025   1.47    dyoung 	if (sc->sc_curtxpow != ic->ic_txpowlimit) {
   5026   1.47    dyoung 		ath_hal_settxpowlimit(ah, ic->ic_txpowlimit);
   5027   1.47    dyoung 		/* read back in case value is clamped */
   5028   1.72       mrg 		(void)ath_hal_gettxpowlimit(ah, &txpow);
   5029   1.47    dyoung 		ic->ic_txpowlimit = sc->sc_curtxpow = txpow;
   5030   1.47    dyoung 	}
   5031   1.73     blymn 	/*
   5032   1.47    dyoung 	 * Fetch max tx power level for status requests.
   5033   1.47    dyoung 	 */
   5034   1.72       mrg 	(void)ath_hal_getmaxtxpow(sc->sc_ah, &txpow);
   5035   1.47    dyoung 	ic->ic_bss->ni_txpower = txpow;
   5036   1.47    dyoung }
   5037   1.47    dyoung 
   5038   1.68    dyoung static void
   5039   1.68    dyoung rate_setup(struct ath_softc *sc,
   5040   1.68    dyoung 	const HAL_RATE_TABLE *rt, struct ieee80211_rateset *rs)
   5041   1.68    dyoung {
   5042   1.68    dyoung 	int i, maxrates;
   5043   1.68    dyoung 
   5044   1.68    dyoung 	if (rt->rateCount > IEEE80211_RATE_MAXSIZE) {
   5045   1.68    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY,
   5046   1.68    dyoung 			"%s: rate table too small (%u > %u)\n",
   5047   1.68    dyoung 		       __func__, rt->rateCount, IEEE80211_RATE_MAXSIZE);
   5048   1.68    dyoung 		maxrates = IEEE80211_RATE_MAXSIZE;
   5049   1.68    dyoung 	} else
   5050   1.68    dyoung 		maxrates = rt->rateCount;
   5051   1.68    dyoung 	for (i = 0; i < maxrates; i++)
   5052   1.68    dyoung 		rs->rs_rates[i] = rt->info[i].dot11Rate;
   5053   1.68    dyoung 	rs->rs_nrates = maxrates;
   5054   1.68    dyoung }
   5055   1.68    dyoung 
   5056    1.1    dyoung static int
   5057    1.1    dyoung ath_rate_setup(struct ath_softc *sc, u_int mode)
   5058    1.1    dyoung {
   5059    1.1    dyoung 	struct ath_hal *ah = sc->sc_ah;
   5060    1.1    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   5061    1.1    dyoung 	const HAL_RATE_TABLE *rt;
   5062    1.1    dyoung 
   5063    1.1    dyoung 	switch (mode) {
   5064    1.1    dyoung 	case IEEE80211_MODE_11A:
   5065   1.68    dyoung 		rt = ath_hal_getratetable(ah, HAL_MODE_11A);
   5066    1.1    dyoung 		break;
   5067    1.1    dyoung 	case IEEE80211_MODE_11B:
   5068   1.68    dyoung 		rt = ath_hal_getratetable(ah, HAL_MODE_11B);
   5069    1.1    dyoung 		break;
   5070    1.1    dyoung 	case IEEE80211_MODE_11G:
   5071   1.68    dyoung 		rt = ath_hal_getratetable(ah, HAL_MODE_11G);
   5072    1.1    dyoung 		break;
   5073   1.47    dyoung 	case IEEE80211_MODE_TURBO_A:
   5074   1.68    dyoung 		/* XXX until static/dynamic turbo is fixed */
   5075   1.68    dyoung 		rt = ath_hal_getratetable(ah, HAL_MODE_TURBO);
   5076    1.1    dyoung 		break;
   5077   1.47    dyoung 	case IEEE80211_MODE_TURBO_G:
   5078   1.68    dyoung 		rt = ath_hal_getratetable(ah, HAL_MODE_108G);
   5079   1.47    dyoung 		break;
   5080    1.1    dyoung 	default:
   5081   1.47    dyoung 		DPRINTF(sc, ATH_DEBUG_ANY, "%s: invalid mode %u\n",
   5082   1.47    dyoung 			__func__, mode);
   5083    1.1    dyoung 		return 0;
   5084    1.1    dyoung 	}
   5085   1.68    dyoung 	sc->sc_rates[mode] = rt;
   5086   1.68    dyoung 	if (rt != NULL) {
   5087   1.68    dyoung 		rate_setup(sc, rt, &ic->ic_sup_rates[mode]);
   5088   1.68    dyoung 		return 1;
   5089   1.68    dyoung 	} else
   5090    1.1    dyoung 		return 0;
   5091    1.1    dyoung }
   5092    1.1    dyoung 
   5093    1.1    dyoung static void
   5094    1.1    dyoung ath_setcurmode(struct ath_softc *sc, enum ieee80211_phymode mode)
   5095    1.1    dyoung {
   5096   1.47    dyoung #define	N(a)	(sizeof(a)/sizeof(a[0]))
   5097   1.47    dyoung 	/* NB: on/off times from the Atheros NDIS driver, w/ permission */
   5098   1.47    dyoung 	static const struct {
   5099   1.47    dyoung 		u_int		rate;		/* tx/rx 802.11 rate */
   5100   1.47    dyoung 		u_int16_t	timeOn;		/* LED on time (ms) */
   5101   1.47    dyoung 		u_int16_t	timeOff;	/* LED off time (ms) */
   5102   1.47    dyoung 	} blinkrates[] = {
   5103   1.47    dyoung 		{ 108,  40,  10 },
   5104   1.47    dyoung 		{  96,  44,  11 },
   5105   1.47    dyoung 		{  72,  50,  13 },
   5106   1.47    dyoung 		{  48,  57,  14 },
   5107   1.47    dyoung 		{  36,  67,  16 },
   5108   1.47    dyoung 		{  24,  80,  20 },
   5109   1.47    dyoung 		{  22, 100,  25 },
   5110   1.47    dyoung 		{  18, 133,  34 },
   5111   1.47    dyoung 		{  12, 160,  40 },
   5112   1.47    dyoung 		{  10, 200,  50 },
   5113   1.47    dyoung 		{   6, 240,  58 },
   5114   1.47    dyoung 		{   4, 267,  66 },
   5115   1.47    dyoung 		{   2, 400, 100 },
   5116   1.47    dyoung 		{   0, 500, 130 },
   5117   1.47    dyoung 	};
   5118    1.1    dyoung 	const HAL_RATE_TABLE *rt;
   5119   1.47    dyoung 	int i, j;
   5120    1.1    dyoung 
   5121    1.1    dyoung 	memset(sc->sc_rixmap, 0xff, sizeof(sc->sc_rixmap));
   5122    1.1    dyoung 	rt = sc->sc_rates[mode];
   5123    1.1    dyoung 	KASSERT(rt != NULL, ("no h/w rate set for phy mode %u", mode));
   5124    1.1    dyoung 	for (i = 0; i < rt->rateCount; i++)
   5125    1.1    dyoung 		sc->sc_rixmap[rt->info[i].dot11Rate & IEEE80211_RATE_VAL] = i;
   5126    1.1    dyoung 	memset(sc->sc_hwmap, 0, sizeof(sc->sc_hwmap));
   5127   1.47    dyoung 	for (i = 0; i < 32; i++) {
   5128   1.47    dyoung 		u_int8_t ix = rt->rateCodeToIndex[i];
   5129   1.47    dyoung 		if (ix == 0xff) {
   5130   1.47    dyoung 			sc->sc_hwmap[i].ledon = (500 * hz) / 1000;
   5131   1.47    dyoung 			sc->sc_hwmap[i].ledoff = (130 * hz) / 1000;
   5132   1.47    dyoung 			continue;
   5133   1.47    dyoung 		}
   5134   1.47    dyoung 		sc->sc_hwmap[i].ieeerate =
   5135   1.47    dyoung 			rt->info[ix].dot11Rate & IEEE80211_RATE_VAL;
   5136   1.47    dyoung 		sc->sc_hwmap[i].txflags = IEEE80211_RADIOTAP_F_DATAPAD;
   5137   1.47    dyoung 		if (rt->info[ix].shortPreamble ||
   5138   1.47    dyoung 		    rt->info[ix].phy == IEEE80211_T_OFDM)
   5139   1.47    dyoung 			sc->sc_hwmap[i].txflags |= IEEE80211_RADIOTAP_F_SHORTPRE;
   5140   1.47    dyoung 		/* NB: receive frames include FCS */
   5141   1.47    dyoung 		sc->sc_hwmap[i].rxflags = sc->sc_hwmap[i].txflags |
   5142   1.47    dyoung 			IEEE80211_RADIOTAP_F_FCS;
   5143   1.47    dyoung 		/* setup blink rate table to avoid per-packet lookup */
   5144   1.47    dyoung 		for (j = 0; j < N(blinkrates)-1; j++)
   5145   1.47    dyoung 			if (blinkrates[j].rate == sc->sc_hwmap[i].ieeerate)
   5146   1.47    dyoung 				break;
   5147   1.47    dyoung 		/* NB: this uses the last entry if the rate isn't found */
   5148   1.47    dyoung 		/* XXX beware of overlow */
   5149   1.47    dyoung 		sc->sc_hwmap[i].ledon = (blinkrates[j].timeOn * hz) / 1000;
   5150   1.47    dyoung 		sc->sc_hwmap[i].ledoff = (blinkrates[j].timeOff * hz) / 1000;
   5151   1.47    dyoung 	}
   5152    1.1    dyoung 	sc->sc_currates = rt;
   5153    1.1    dyoung 	sc->sc_curmode = mode;
   5154   1.47    dyoung 	/*
   5155   1.47    dyoung 	 * All protection frames are transmited at 2Mb/s for
   5156   1.47    dyoung 	 * 11g, otherwise at 1Mb/s.
   5157   1.47    dyoung 	 */
   5158   1.68    dyoung 	if (mode == IEEE80211_MODE_11G)
   5159   1.68    dyoung 		sc->sc_protrix = ath_tx_findrix(rt, 2*2);
   5160   1.68    dyoung 	else
   5161   1.68    dyoung 		sc->sc_protrix = ath_tx_findrix(rt, 2*1);
   5162   1.68    dyoung 	/* rate index used to send management frames */
   5163   1.68    dyoung 	sc->sc_minrateix = 0;
   5164   1.68    dyoung 	/*
   5165   1.68    dyoung 	 * Setup multicast rate state.
   5166   1.68    dyoung 	 */
   5167   1.68    dyoung 	/* XXX layering violation */
   5168   1.68    dyoung 	sc->sc_mcastrix = ath_tx_findrix(rt, sc->sc_ic.ic_mcast_rate);
   5169   1.68    dyoung 	sc->sc_mcastrate = sc->sc_ic.ic_mcast_rate;
   5170   1.47    dyoung 	/* NB: caller is responsible for reseting rate control state */
   5171   1.47    dyoung #undef N
   5172    1.1    dyoung }
   5173    1.1    dyoung 
   5174   1.47    dyoung #ifdef AR_DEBUG
   5175    1.1    dyoung static void
   5176   1.47    dyoung ath_printrxbuf(struct ath_buf *bf, int done)
   5177    1.1    dyoung {
   5178   1.47    dyoung 	struct ath_desc *ds;
   5179   1.47    dyoung 	int i;
   5180    1.1    dyoung 
   5181   1.47    dyoung 	for (i = 0, ds = bf->bf_desc; i < bf->bf_nseg; i++, ds++) {
   5182   1.75   gdamore 		printf("R%d (%p %" PRIx64
   5183   1.99    dyoung 		    ") %08x %08x %08x %08x %08x %08x %02x %02x %c\n", i, ds,
   5184   1.75   gdamore 		    (uint64_t)bf->bf_daddr + sizeof (struct ath_desc) * i,
   5185   1.47    dyoung 		    ds->ds_link, ds->ds_data,
   5186   1.47    dyoung 		    ds->ds_ctl0, ds->ds_ctl1,
   5187   1.47    dyoung 		    ds->ds_hw[0], ds->ds_hw[1],
   5188   1.99    dyoung 		    ds->ds_rxstat.rs_status, ds->ds_rxstat.rs_keyix,
   5189   1.47    dyoung 		    !done ? ' ' : (ds->ds_rxstat.rs_status == 0) ? '*' : '!');
   5190   1.18    dyoung 	}
   5191    1.1    dyoung }
   5192    1.1    dyoung 
   5193    1.1    dyoung static void
   5194   1.47    dyoung ath_printtxbuf(struct ath_buf *bf, int done)
   5195    1.1    dyoung {
   5196   1.47    dyoung 	struct ath_desc *ds;
   5197   1.47    dyoung 	int i;
   5198    1.1    dyoung 
   5199   1.47    dyoung 	for (i = 0, ds = bf->bf_desc; i < bf->bf_nseg; i++, ds++) {
   5200   1.75   gdamore 		printf("T%d (%p %" PRIx64
   5201   1.75   gdamore 		    ") %08x %08x %08x %08x %08x %08x %08x %08x %c\n",
   5202   1.75   gdamore 		    i, ds,
   5203   1.75   gdamore 		    (uint64_t)bf->bf_daddr + sizeof (struct ath_desc) * i,
   5204   1.47    dyoung 		    ds->ds_link, ds->ds_data,
   5205   1.47    dyoung 		    ds->ds_ctl0, ds->ds_ctl1,
   5206   1.47    dyoung 		    ds->ds_hw[0], ds->ds_hw[1], ds->ds_hw[2], ds->ds_hw[3],
   5207   1.47    dyoung 		    !done ? ' ' : (ds->ds_txstat.ts_status == 0) ? '*' : '!');
   5208   1.47    dyoung 	}
   5209   1.47    dyoung }
   5210  1.104       alc #endif	/* AR_DEBUG */
   5211    1.1    dyoung 
   5212   1.47    dyoung static void
   5213   1.47    dyoung ath_watchdog(struct ifnet *ifp)
   5214   1.47    dyoung {
   5215   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   5216   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   5217   1.84    dyoung 	struct ath_txq *axq;
   5218   1.84    dyoung 	int i;
   5219    1.1    dyoung 
   5220   1.47    dyoung 	ifp->if_timer = 0;
   5221   1.99    dyoung 	if ((ifp->if_flags & IFF_RUNNING) == 0 ||
   5222  1.102     joerg 	    !device_is_active(sc->sc_dev))
   5223   1.47    dyoung 		return;
   5224   1.84    dyoung 	for (i = 0; i < HAL_NUM_TX_QUEUES; i++) {
   5225   1.84    dyoung 		if (!ATH_TXQ_SETUP(sc, i))
   5226   1.84    dyoung 			continue;
   5227   1.84    dyoung 		axq = &sc->sc_txq[i];
   5228   1.84    dyoung 		ATH_TXQ_LOCK(axq);
   5229   1.84    dyoung 		if (axq->axq_timer == 0)
   5230   1.84    dyoung 			;
   5231   1.84    dyoung 		else if (--axq->axq_timer == 0) {
   5232   1.84    dyoung 			ATH_TXQ_UNLOCK(axq);
   5233  1.100    rumble 			if_printf(ifp, "device timeout (txq %d, "
   5234  1.100    rumble 			    "txintrperiod %d)\n", i, sc->sc_txintrperiod);
   5235  1.100    rumble 			if (sc->sc_txintrperiod > 1)
   5236  1.100    rumble 				sc->sc_txintrperiod--;
   5237   1.47    dyoung 			ath_reset(ifp);
   5238   1.47    dyoung 			ifp->if_oerrors++;
   5239   1.47    dyoung 			sc->sc_stats.ast_watchdog++;
   5240   1.84    dyoung 			break;
   5241   1.47    dyoung 		} else
   5242   1.47    dyoung 			ifp->if_timer = 1;
   5243   1.84    dyoung 		ATH_TXQ_UNLOCK(axq);
   5244    1.1    dyoung 	}
   5245   1.47    dyoung 	ieee80211_watchdog(ic);
   5246    1.1    dyoung }
   5247    1.1    dyoung 
   5248   1.47    dyoung /*
   5249   1.47    dyoung  * Diagnostic interface to the HAL.  This is used by various
   5250   1.47    dyoung  * tools to do things like retrieve register contents for
   5251   1.47    dyoung  * debugging.  The mechanism is intentionally opaque so that
   5252   1.47    dyoung  * it can change frequently w/o concern for compatiblity.
   5253   1.47    dyoung  */
   5254    1.1    dyoung static int
   5255   1.47    dyoung ath_ioctl_diag(struct ath_softc *sc, struct ath_diag *ad)
   5256    1.1    dyoung {
   5257   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   5258   1.47    dyoung 	u_int id = ad->ad_id & ATH_DIAG_ID;
   5259   1.47    dyoung 	void *indata = NULL;
   5260   1.47    dyoung 	void *outdata = NULL;
   5261   1.47    dyoung 	u_int32_t insize = ad->ad_in_size;
   5262   1.47    dyoung 	u_int32_t outsize = ad->ad_out_size;
   5263   1.47    dyoung 	int error = 0;
   5264    1.1    dyoung 
   5265   1.47    dyoung 	if (ad->ad_id & ATH_DIAG_IN) {
   5266   1.47    dyoung 		/*
   5267   1.47    dyoung 		 * Copy in data.
   5268   1.47    dyoung 		 */
   5269   1.47    dyoung 		indata = malloc(insize, M_TEMP, M_NOWAIT);
   5270   1.47    dyoung 		if (indata == NULL) {
   5271   1.47    dyoung 			error = ENOMEM;
   5272   1.47    dyoung 			goto bad;
   5273   1.47    dyoung 		}
   5274   1.47    dyoung 		error = copyin(ad->ad_in_data, indata, insize);
   5275   1.47    dyoung 		if (error)
   5276   1.47    dyoung 			goto bad;
   5277   1.47    dyoung 	}
   5278   1.47    dyoung 	if (ad->ad_id & ATH_DIAG_DYN) {
   5279   1.47    dyoung 		/*
   5280   1.47    dyoung 		 * Allocate a buffer for the results (otherwise the HAL
   5281   1.47    dyoung 		 * returns a pointer to a buffer where we can read the
   5282   1.47    dyoung 		 * results).  Note that we depend on the HAL leaving this
   5283   1.47    dyoung 		 * pointer for us to use below in reclaiming the buffer;
   5284   1.47    dyoung 		 * may want to be more defensive.
   5285   1.47    dyoung 		 */
   5286   1.47    dyoung 		outdata = malloc(outsize, M_TEMP, M_NOWAIT);
   5287   1.47    dyoung 		if (outdata == NULL) {
   5288   1.47    dyoung 			error = ENOMEM;
   5289   1.47    dyoung 			goto bad;
   5290   1.47    dyoung 		}
   5291   1.47    dyoung 	}
   5292   1.47    dyoung 	if (ath_hal_getdiagstate(ah, id, indata, insize, &outdata, &outsize)) {
   5293   1.47    dyoung 		if (outsize < ad->ad_out_size)
   5294   1.47    dyoung 			ad->ad_out_size = outsize;
   5295   1.47    dyoung 		if (outdata != NULL)
   5296   1.47    dyoung 			error = copyout(outdata, ad->ad_out_data,
   5297   1.47    dyoung 					ad->ad_out_size);
   5298   1.47    dyoung 	} else {
   5299   1.47    dyoung 		error = EINVAL;
   5300    1.1    dyoung 	}
   5301   1.47    dyoung bad:
   5302   1.47    dyoung 	if ((ad->ad_id & ATH_DIAG_IN) && indata != NULL)
   5303   1.47    dyoung 		free(indata, M_TEMP);
   5304   1.47    dyoung 	if ((ad->ad_id & ATH_DIAG_DYN) && outdata != NULL)
   5305   1.47    dyoung 		free(outdata, M_TEMP);
   5306    1.1    dyoung 	return error;
   5307    1.1    dyoung }
   5308    1.1    dyoung 
   5309   1.20    dyoung static int
   5310   1.82  christos ath_ioctl(struct ifnet *ifp, u_long cmd, void *data)
   5311   1.20    dyoung {
   5312   1.47    dyoung #define	IS_RUNNING(ifp) \
   5313   1.61     skrll 	((ifp->if_flags & IFF_UP) && (ifp->if_flags & IFF_RUNNING))
   5314   1.47    dyoung 	struct ath_softc *sc = ifp->if_softc;
   5315   1.47    dyoung 	struct ieee80211com *ic = &sc->sc_ic;
   5316   1.47    dyoung 	struct ifreq *ifr = (struct ifreq *)data;
   5317   1.47    dyoung 	int error = 0;
   5318   1.20    dyoung 
   5319   1.47    dyoung 	ATH_LOCK(sc);
   5320   1.47    dyoung 	switch (cmd) {
   5321   1.47    dyoung 	case SIOCSIFFLAGS:
   5322  1.103    dyoung 		if ((error = ifioctl_common(ifp, cmd, data)) != 0)
   5323  1.103    dyoung 			break;
   5324   1.47    dyoung 		if (IS_RUNNING(ifp)) {
   5325   1.47    dyoung 			/*
   5326   1.47    dyoung 			 * To avoid rescanning another access point,
   5327   1.47    dyoung 			 * do not call ath_init() here.  Instead,
   5328   1.47    dyoung 			 * only reflect promisc mode settings.
   5329   1.47    dyoung 			 */
   5330   1.47    dyoung 			ath_mode_init(sc);
   5331   1.47    dyoung 		} else if (ifp->if_flags & IFF_UP) {
   5332   1.47    dyoung 			/*
   5333   1.47    dyoung 			 * Beware of being called during attach/detach
   5334   1.47    dyoung 			 * to reset promiscuous mode.  In that case we
   5335   1.47    dyoung 			 * will still be marked UP but not RUNNING.
   5336   1.47    dyoung 			 * However trying to re-init the interface
   5337   1.47    dyoung 			 * is the wrong thing to do as we've already
   5338   1.47    dyoung 			 * torn down much of our state.  There's
   5339   1.47    dyoung 			 * probably a better way to deal with this.
   5340   1.47    dyoung 			 */
   5341   1.99    dyoung 			error = ath_init(sc);
   5342  1.102     joerg 		} else if (device_is_active(sc->sc_dev))
   5343   1.47    dyoung 			ath_stop_locked(ifp, 1);
   5344   1.47    dyoung 		break;
   5345   1.47    dyoung 	case SIOCADDMULTI:
   5346   1.47    dyoung 	case SIOCDELMULTI:
   5347   1.86    dyoung 		if ((error = ether_ioctl(ifp, cmd, data)) == ENETRESET) {
   5348   1.47    dyoung 			if (ifp->if_flags & IFF_RUNNING)
   5349   1.47    dyoung 				ath_mode_init(sc);
   5350   1.47    dyoung 			error = 0;
   5351   1.47    dyoung 		}
   5352   1.47    dyoung 		break;
   5353   1.47    dyoung 	case SIOCGATHSTATS:
   5354   1.47    dyoung 		/* NB: embed these numbers to get a consistent view */
   5355   1.47    dyoung 		sc->sc_stats.ast_tx_packets = ifp->if_opackets;
   5356   1.47    dyoung 		sc->sc_stats.ast_rx_packets = ifp->if_ipackets;
   5357   1.47    dyoung 		sc->sc_stats.ast_rx_rssi = ieee80211_getrssi(ic);
   5358   1.47    dyoung 		ATH_UNLOCK(sc);
   5359   1.47    dyoung 		/*
   5360   1.47    dyoung 		 * NB: Drop the softc lock in case of a page fault;
   5361   1.47    dyoung 		 * we'll accept any potential inconsisentcy in the
   5362   1.47    dyoung 		 * statistics.  The alternative is to copy the data
   5363   1.47    dyoung 		 * to a local structure.
   5364   1.47    dyoung 		 */
   5365   1.47    dyoung 		return copyout(&sc->sc_stats,
   5366   1.47    dyoung 				ifr->ifr_data, sizeof (sc->sc_stats));
   5367   1.47    dyoung 	case SIOCGATHDIAG:
   5368   1.47    dyoung 		error = ath_ioctl_diag(sc, (struct ath_diag *) ifr);
   5369   1.47    dyoung 		break;
   5370   1.47    dyoung 	default:
   5371   1.47    dyoung 		error = ieee80211_ioctl(ic, cmd, data);
   5372   1.99    dyoung 		if (error != ENETRESET)
   5373   1.99    dyoung 			;
   5374   1.99    dyoung 		else if (IS_RUNNING(ifp) &&
   5375   1.99    dyoung 		         ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
   5376   1.99    dyoung 			error = ath_init(sc);
   5377   1.99    dyoung 		else
   5378   1.47    dyoung 			error = 0;
   5379   1.47    dyoung 		break;
   5380   1.20    dyoung 	}
   5381   1.47    dyoung 	ATH_UNLOCK(sc);
   5382   1.20    dyoung 	return error;
   5383   1.47    dyoung #undef IS_RUNNING
   5384   1.20    dyoung }
   5385   1.20    dyoung 
   5386   1.65    rpaulo #if NBPFILTER > 0
   5387    1.1    dyoung static void
   5388   1.47    dyoung ath_bpfattach(struct ath_softc *sc)
   5389    1.1    dyoung {
   5390   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   5391   1.47    dyoung 
   5392   1.47    dyoung 	bpfattach2(ifp, DLT_IEEE802_11_RADIO,
   5393   1.47    dyoung 		sizeof(struct ieee80211_frame) + sizeof(sc->sc_tx_th),
   5394   1.47    dyoung 		&sc->sc_drvbpf);
   5395   1.47    dyoung 	/*
   5396   1.47    dyoung 	 * Initialize constant fields.
   5397   1.47    dyoung 	 * XXX make header lengths a multiple of 32-bits so subsequent
   5398   1.47    dyoung 	 *     headers are properly aligned; this is a kludge to keep
   5399   1.47    dyoung 	 *     certain applications happy.
   5400   1.47    dyoung 	 *
   5401   1.47    dyoung 	 * NB: the channel is setup each time we transition to the
   5402   1.47    dyoung 	 *     RUN state to avoid filling it in for each frame.
   5403   1.47    dyoung 	 */
   5404   1.47    dyoung 	sc->sc_tx_th_len = roundup(sizeof(sc->sc_tx_th), sizeof(u_int32_t));
   5405   1.47    dyoung 	sc->sc_tx_th.wt_ihdr.it_len = htole16(sc->sc_tx_th_len);
   5406   1.47    dyoung 	sc->sc_tx_th.wt_ihdr.it_present = htole32(ATH_TX_RADIOTAP_PRESENT);
   5407    1.1    dyoung 
   5408   1.47    dyoung 	sc->sc_rx_th_len = roundup(sizeof(sc->sc_rx_th), sizeof(u_int32_t));
   5409   1.47    dyoung 	sc->sc_rx_th.wr_ihdr.it_len = htole16(sc->sc_rx_th_len);
   5410   1.47    dyoung 	sc->sc_rx_th.wr_ihdr.it_present = htole32(ATH_RX_RADIOTAP_PRESENT);
   5411    1.1    dyoung }
   5412   1.64    rpaulo #endif
   5413    1.1    dyoung 
   5414   1.47    dyoung /*
   5415   1.47    dyoung  * Announce various information on device/driver attach.
   5416   1.47    dyoung  */
   5417    1.1    dyoung static void
   5418   1.47    dyoung ath_announce(struct ath_softc *sc)
   5419    1.1    dyoung {
   5420   1.47    dyoung #define	HAL_MODE_DUALBAND	(HAL_MODE_11A|HAL_MODE_11B)
   5421   1.47    dyoung 	struct ifnet *ifp = &sc->sc_if;
   5422   1.47    dyoung 	struct ath_hal *ah = sc->sc_ah;
   5423   1.47    dyoung 	u_int modes, cc;
   5424    1.1    dyoung 
   5425   1.47    dyoung 	if_printf(ifp, "mac %d.%d phy %d.%d",
   5426   1.47    dyoung 		ah->ah_macVersion, ah->ah_macRev,
   5427   1.47    dyoung 		ah->ah_phyRev >> 4, ah->ah_phyRev & 0xf);
   5428   1.47    dyoung 	/*
   5429   1.47    dyoung 	 * Print radio revision(s).  We check the wireless modes
   5430   1.47    dyoung 	 * to avoid falsely printing revs for inoperable parts.
   5431   1.69     lukem 	 * Dual-band radio revs are returned in the 5 GHz rev number.
   5432   1.47    dyoung 	 */
   5433   1.47    dyoung 	ath_hal_getcountrycode(ah, &cc);
   5434   1.47    dyoung 	modes = ath_hal_getwirelessmodes(ah, cc);
   5435   1.47    dyoung 	if ((modes & HAL_MODE_DUALBAND) == HAL_MODE_DUALBAND) {
   5436   1.47    dyoung 		if (ah->ah_analog5GhzRev && ah->ah_analog2GhzRev)
   5437   1.69     lukem 			printf(" 5 GHz radio %d.%d 2 GHz radio %d.%d",
   5438   1.47    dyoung 				ah->ah_analog5GhzRev >> 4,
   5439   1.47    dyoung 				ah->ah_analog5GhzRev & 0xf,
   5440   1.47    dyoung 				ah->ah_analog2GhzRev >> 4,
   5441   1.47    dyoung 				ah->ah_analog2GhzRev & 0xf);
   5442   1.47    dyoung 		else
   5443   1.47    dyoung 			printf(" radio %d.%d", ah->ah_analog5GhzRev >> 4,
   5444   1.47    dyoung 				ah->ah_analog5GhzRev & 0xf);
   5445   1.47    dyoung 	} else
   5446   1.47    dyoung 		printf(" radio %d.%d", ah->ah_analog5GhzRev >> 4,
   5447   1.47    dyoung 			ah->ah_analog5GhzRev & 0xf);
   5448   1.47    dyoung 	printf("\n");
   5449   1.47    dyoung 	if (bootverbose) {
   5450   1.47    dyoung 		int i;
   5451   1.47    dyoung 		for (i = 0; i <= WME_AC_VO; i++) {
   5452   1.47    dyoung 			struct ath_txq *txq = sc->sc_ac2q[i];
   5453   1.47    dyoung 			if_printf(ifp, "Use hw queue %u for %s traffic\n",
   5454   1.47    dyoung 				txq->axq_qnum, ieee80211_wme_acnames[i]);
   5455   1.47    dyoung 		}
   5456   1.47    dyoung 		if_printf(ifp, "Use hw queue %u for CAB traffic\n",
   5457   1.47    dyoung 			sc->sc_cabq->axq_qnum);
   5458   1.47    dyoung 		if_printf(ifp, "Use hw queue %u for beacons\n", sc->sc_bhalq);
   5459    1.1    dyoung 	}
   5460   1.68    dyoung 	if (ath_rxbuf != ATH_RXBUF)
   5461   1.68    dyoung 		if_printf(ifp, "using %u rx buffers\n", ath_rxbuf);
   5462   1.68    dyoung 	if (ath_txbuf != ATH_TXBUF)
   5463   1.68    dyoung 		if_printf(ifp, "using %u tx buffers\n", ath_txbuf);
   5464   1.47    dyoung #undef HAL_MODE_DUALBAND
   5465    1.1    dyoung }
   5466