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atwvar.h revision 1.4
      1 /*	$NetBSD: atwvar.h,v 1.4 2003/12/07 04:19:27 dyoung Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2003, 2004 The NetBSD Foundation, Inc.  All rights reserved.
      5  *
      6  * This code is derived from software contributed to The NetBSD Foundation
      7  * by David Young.
      8  *
      9  * Redistribution and use in source and binary forms, with or without
     10  * modification, are permitted provided that the following conditions
     11  * are met:
     12  * 1. Redistributions of source code must retain the above copyright
     13  *    notice, this list of conditions and the following disclaimer.
     14  * 2. Redistributions in binary form must reproduce the above copyright
     15  *    notice, this list of conditions and the following disclaimer in the
     16  *    documentation and/or other materials provided with the distribution.
     17  * 3. All advertising materials mentioning features or use of this software
     18  *    must display the following acknowledgement:
     19  *	This product includes software developed by the NetBSD
     20  *	Foundation, Inc. and its contributors.
     21  * 4. Neither the name of the author nor the names of any co-contributors
     22  *    may be used to endorse or promote products derived from this software
     23  *    without specific prior written permission.
     24  *
     25  * THIS SOFTWARE IS PROVIDED BY David Young AND CONTRIBUTORS ``AS IS'' AND
     26  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     27  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     28  * ARE DISCLAIMED.  IN NO EVENT SHALL David Young
     29  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     35  * THE POSSIBILITY OF SUCH DAMAGE.
     36  */
     37 
     38 #ifndef _DEV_IC_ATWVAR_H_
     39 #define	_DEV_IC_ATWVAR_H_
     40 
     41 #include <sys/queue.h>
     42 #include <sys/callout.h>
     43 #include <sys/time.h>
     44 #if 0
     45 #endif
     46 
     47 /*
     48  * Some misc. statics, useful for debugging.
     49  */
     50 struct atw_stats {
     51 	u_long		ts_tx_tuf;	/* transmit underflow errors */
     52 	u_long		ts_tx_tro;	/* transmit jabber timeouts */
     53 	u_long		ts_tx_trt;	/* retry count exceeded */
     54 	u_long		ts_tx_tlt;	/* lifetime exceeded */
     55 	u_long		ts_tx_sofbr;	/* packet size mismatch */
     56 };
     57 
     58 /*
     59  * Transmit descriptor list size.  This is arbitrary, but allocate
     60  * enough descriptors for 64 pending transmissions and 16 segments
     61  * per packet.  Since a descriptor holds 2 buffer addresses, that's
     62  * 8 descriptors per packet.  This MUST work out to a power of 2.
     63  */
     64 #define	ATW_NTXSEGS		16
     65 
     66 #define	ATW_TXQUEUELEN	64
     67 #define	ATW_NTXDESC		(ATW_TXQUEUELEN * ATW_NTXSEGS)
     68 #define	ATW_NTXDESC_MASK	(ATW_NTXDESC - 1)
     69 #define	ATW_NEXTTX(x)		((x + 1) & ATW_NTXDESC_MASK)
     70 
     71 /*
     72  * Receive descriptor list size.  We have one Rx buffer per incoming
     73  * packet, so this logic is a little simpler.
     74  */
     75 #define	ATW_NRXDESC		64
     76 #define	ATW_NRXDESC_MASK	(ATW_NRXDESC - 1)
     77 #define	ATW_NEXTRX(x)		((x + 1) & ATW_NRXDESC_MASK)
     78 
     79 /*
     80  * Control structures are DMA'd to the ADM8211 chip.  We allocate them in
     81  * a single clump that maps to a single DMA segment to make several things
     82  * easier.
     83  */
     84 struct atw_control_data {
     85 	/*
     86 	 * The transmit descriptors.
     87 	 */
     88 	struct atw_txdesc acd_txdescs[ATW_NTXDESC];
     89 
     90 	/*
     91 	 * The receive descriptors.
     92 	 */
     93 	struct atw_rxdesc acd_rxdescs[ATW_NRXDESC];
     94 };
     95 
     96 #define	ATW_CDOFF(x)		offsetof(struct atw_control_data, x)
     97 #define	ATW_CDTXOFF(x)	ATW_CDOFF(acd_txdescs[(x)])
     98 #define	ATW_CDRXOFF(x)	ATW_CDOFF(acd_rxdescs[(x)])
     99 /*
    100  * Software state for transmit jobs.
    101  */
    102 struct atw_txsoft {
    103 	struct mbuf *txs_mbuf;		/* head of our mbuf chain */
    104 	bus_dmamap_t txs_dmamap;	/* our DMA map */
    105 	int txs_firstdesc;		/* first descriptor in packet */
    106 	int txs_lastdesc;		/* last descriptor in packet */
    107 	int txs_ndescs;			/* number of descriptors */
    108 	SIMPLEQ_ENTRY(atw_txsoft) txs_q;
    109 };
    110 
    111 SIMPLEQ_HEAD(atw_txsq, atw_txsoft);
    112 
    113 /*
    114  * Software state for receive jobs.
    115  */
    116 struct atw_rxsoft {
    117 	struct mbuf *rxs_mbuf;		/* head of our mbuf chain */
    118 	bus_dmamap_t rxs_dmamap;	/* our DMA map */
    119 };
    120 
    121 /*
    122  * Table which describes the transmit threshold mode.  We generally
    123  * start at index 0.  Whenever we get a transmit underrun, we increment
    124  * our index, falling back if we encounter the NULL terminator.
    125  */
    126 struct atw_txthresh_tab {
    127 	u_int32_t txth_opmode;		/* OPMODE bits */
    128 	const char *txth_name;		/* name of mode */
    129 };
    130 
    131 #define	ATW_TXTHRESH_TAB_LO_RATE {					\
    132 	{ ATW_NAR_TR_L64,	"64 bytes" },				\
    133 	{ ATW_NAR_TR_L160,	"160 bytes" },				\
    134 	{ ATW_NAR_TR_L192,	"192 bytes" },				\
    135 	{ ATW_NAR_SF,		"store and forward" },			\
    136 	{ 0,			NULL },					\
    137 }
    138 
    139 #define	ATW_TXTHRESH_TAB_HI_RATE {					\
    140 	{ ATW_NAR_TR_H96,	"96 bytes" },				\
    141 	{ ATW_NAR_TR_H288,	"288 bytes" },				\
    142 	{ ATW_NAR_TR_H544,	"544 bytes" },				\
    143 	{ ATW_NAR_SF,		"store and forward" },			\
    144 	{ 0,			NULL },					\
    145 }
    146 
    147 enum atw_rftype { ATW_RFTYPE_INTERSIL = 0, ATW_RFTYPE_RFMD  = 1,
    148        ATW_RFTYPE_MARVEL = 2 };
    149 
    150 enum atw_bbptype { ATW_BBPTYPE_INTERSIL = 0, ATW_BBPTYPE_RFMD  = 1,
    151        ATW_BBPTYPE_MARVEL = 2 };
    152 
    153 /* Radio capture format for ADMtek. */
    154 
    155 #define ATW_RX_RADIOTAP_PRESENT	\
    156 	((1 << IEEE80211_RADIOTAP_FLAGS) | (1 << IEEE80211_RADIOTAP_RATE) | \
    157 	 (1 << IEEE80211_RADIOTAP_CHANNEL) | \
    158 	 (1 << IEEE80211_RADIOTAP_DB_ANTSIGNAL))
    159 
    160 struct atw_rx_radiotap_header {
    161 	struct ieee80211_radiotap_header	ar_ihdr;
    162 	u_int8_t				ar_flags;
    163 	u_int8_t				ar_rate;
    164 	u_int16_t				ar_chan_freq;
    165 	u_int16_t				ar_chan_flags;
    166 	int8_t					ar_antsignal;
    167 } __attribute__((__packed__));
    168 
    169 #define ATW_TX_RADIOTAP_PRESENT	((1 << IEEE80211_RADIOTAP_FLAGS) | \
    170 				 (1 << IEEE80211_RADIOTAP_RATE) | \
    171 				 (1 << IEEE80211_RADIOTAP_CHANNEL))
    172 
    173 struct atw_tx_radiotap_header {
    174 	struct ieee80211_radiotap_header	at_ihdr;
    175 	u_int8_t				at_flags;
    176 	u_int8_t				at_rate;
    177 	u_int16_t				at_chan_freq;
    178 	u_int16_t				at_chan_flags;
    179 } __attribute__((__packed__));
    180 
    181 struct atw_softc {
    182 	struct device		sc_dev;
    183 	struct ieee80211com	sc_ic;
    184 	void			*sc_ih;		/* interrupt handler */
    185 	int			(*sc_enable)(struct atw_softc *);
    186 	void			(*sc_disable)(struct atw_softc *);
    187 	void			(*sc_power)(struct atw_softc *, int);
    188 	int			(*sc_newstate)(struct ieee80211com *,
    189 					enum ieee80211_state, int);
    190 	void			(*sc_recv_mgmt)(struct ieee80211com *,
    191 				    struct mbuf *, struct ieee80211_node *,
    192 				    int, int, u_int32_t);
    193 	struct ieee80211_node	*(*sc_node_alloc)(struct ieee80211com *);
    194 	void			(*sc_node_free)(struct ieee80211com *,
    195 					struct ieee80211_node *);
    196 
    197 	int			sc_pci;			/* attach to PCI-Bus */
    198 
    199 	struct atw_stats sc_stats;	/* debugging stats */
    200 
    201 	int			sc_tx_timer;
    202 	int			sc_rescan_timer;
    203 
    204 	bus_space_tag_t		sc_st;		/* bus space tag */
    205 	bus_space_handle_t	sc_sh;		/* bus space handle */
    206 	bus_dma_tag_t		sc_dmat;	/* bus dma tag */
    207 	void			*sc_sdhook;	/* shutdown hook */
    208 	void			*sc_powerhook;	/* power management hook */
    209 	u_int32_t		sc_cacheline;	/* cache line size */
    210 	u_int32_t		sc_maxburst;	/* maximum burst length */
    211 
    212 	const struct atw_txthresh_tab	*sc_txth;
    213 	int				sc_txthresh; /* current tx threshold */
    214 
    215 	u_int			sc_cur_chan;	/* current channel */
    216 
    217 	int			sc_flags;
    218 
    219 	u_int16_t		*sc_srom;
    220 	u_int16_t		sc_sromsz;
    221 
    222 	caddr_t			sc_radiobpf;
    223 
    224 	bus_dma_segment_t	sc_cdseg;	/* control data memory */
    225 	int			sc_cdnseg;	/* number of segments */
    226 	bus_dmamap_t		sc_cddmamap;	/* control data DMA map */
    227 #define	sc_cddma	sc_cddmamap->dm_segs[0].ds_addr
    228 
    229 	/*
    230 	 * Software state for transmit and receive descriptors.
    231 	 */
    232 	struct atw_txsoft sc_txsoft[ATW_TXQUEUELEN];
    233 	struct atw_rxsoft sc_rxsoft[ATW_NRXDESC];
    234 
    235 	/*
    236 	 * Control data structures.
    237 	 */
    238 	struct atw_control_data *sc_control_data;
    239 #define	sc_txdescs	sc_control_data->acd_txdescs
    240 #define	sc_rxdescs	sc_control_data->acd_rxdescs
    241 #define	sc_setup_desc	sc_control_data->acd_setup_desc
    242 
    243 	int	sc_txfree;		/* number of free Tx descriptors */
    244 	int	sc_txnext;		/* next ready Tx descriptor */
    245 	int	sc_ntxsegs;		/* number of transmit segs per pkt */
    246 
    247 	struct atw_txsq sc_txfreeq;	/* free Tx descsofts */
    248 	struct atw_txsq sc_txdirtyq;	/* dirty Tx descsofts */
    249 
    250 	int	sc_rxptr;		/* next ready RX descriptor/descsoft */
    251 
    252 	u_int32_t	sc_busmode;	/* copy of ATW_PAR */
    253 	u_int32_t	sc_opmode;	/* copy of ATW_NAR */
    254 	u_int32_t	sc_inten;	/* copy of ATW_IER */
    255 	u_int32_t	sc_wepctl;	/* copy of ATW_WEPCTL */
    256 
    257 	u_int32_t	sc_rxint_mask;	/* mask of Rx interrupts we want */
    258 	u_int32_t	sc_txint_mask;	/* mask of Tx interrupts we want */
    259 	u_int32_t	sc_linkint_mask;/* link-state interrupts mask */
    260 
    261 	/* interrupt acknowledge hook */
    262 	void (*sc_intr_ack) __P((struct atw_softc *));
    263 
    264 	enum atw_rftype		sc_rftype;
    265 	enum atw_bbptype	sc_bbptype;
    266 	u_int32_t	sc_synctl_rd;
    267 	u_int32_t	sc_synctl_wr;
    268 	u_int32_t	sc_bbpctl_rd;
    269 	u_int32_t	sc_bbpctl_wr;
    270 
    271 	void		(*sc_recv_beacon)(struct ieee80211com *, struct mbuf *,
    272 			    int, u_int32_t);
    273 	void		(*sc_recv_prresp)(struct ieee80211com *, struct mbuf *,
    274 			    int, u_int32_t);
    275 
    276 	/* ADM8211 state variables. */
    277 	u_int8_t	sc_sram[ATW_SRAM_SIZE];
    278 	u_int8_t	sc_bssid[IEEE80211_ADDR_LEN];
    279 	u_int8_t	sc_lost_bcn_thresh;
    280 
    281 	struct timeval	sc_last_beacon;
    282 	struct callout	sc_scan_ch;
    283 	union {
    284 		struct atw_rx_radiotap_header	tap;
    285 		u_int8_t			pad[64];
    286 	} sc_rxtapu;
    287 	union {
    288 		struct atw_tx_radiotap_header	tap;
    289 		u_int8_t			pad[64];
    290 	} sc_txtapu;
    291 };
    292 
    293 #define sc_rxtap	sc_rxtapu.tap
    294 #define sc_txtap	sc_txtapu.tap
    295 
    296 #define	sc_if			sc_ic.ic_if
    297 
    298 /* XXX this is fragile. try not to introduce any u_int32_t's. */
    299 struct atw_frame {
    300 /*00*/	u_int8_t			atw_dst[IEEE80211_ADDR_LEN];
    301 /*06*/	u_int8_t			atw_rate;	/* TX rate in 100Kbps */
    302 /*07*/	u_int8_t			atw_service;	/* 0 */
    303 /*08*/	u_int16_t			atw_paylen;	/* payload length */
    304 /*0a*/	u_int8_t			atw_fc[2];	/* 802.11 Frame
    305 							 * Control
    306 							 */
    307 	/* 802.11 PLCP Length for first & last fragment */
    308 /*0c*/	u_int16_t			atw_tail_plcplen;
    309 /*0e*/	u_int16_t			atw_head_plcplen;
    310 	/* 802.11 Duration for first & last fragment */
    311 /*10*/	u_int16_t			atw_tail_dur;
    312 /*12*/	u_int16_t			atw_head_dur;
    313 /*14*/	u_int8_t			atw_addr4[IEEE80211_ADDR_LEN];
    314 	union {
    315 		struct {
    316 /*1a*/			u_int16_t	hdrctl;	/*transmission control*/
    317 /*1c*/			u_int16_t	fragthr;/* fragmentation threshold
    318 						 * [0:11], zero [12:15].
    319 						 */
    320 /*1e*/			u_int8_t	fragnum;/* fragment number [4:7],
    321 						 * zero [0:3].
    322 						 */
    323 /*1f*/			u_int8_t	rtylmt;	/* retry limit */
    324 /*20*/			u_int8_t	wepkey0[4];/* ??? */
    325 /*24*/			u_int8_t	wepkey1[4];/* ??? */
    326 /*28*/			u_int8_t	wepkey2[4];/* ??? */
    327 /*2c*/			u_int8_t	wepkey3[4];/* ??? */
    328 /*30*/			u_int8_t	keyid;
    329 /*31*/			u_int8_t	reserved0[7];
    330 		} s1;
    331 		struct {
    332 			u_int8_t		pad[6];
    333 			struct ieee80211_frame	ihdr;
    334 		} s2;
    335 	} u;
    336 } __attribute__((__packed__));
    337 
    338 #define atw_hdrctl	u.s1.hdrctl
    339 #define atw_fragthr	u.s1.fragthr
    340 #define atw_fragnum	u.s1.fragnum
    341 #define atw_rtylmt	u.s1.rtylmt
    342 #define atw_keyid	u.s1.keyid
    343 #define atw_ihdr	u.s2.ihdr
    344 
    345 #define ATW_HDRCTL_SHORT_PREAMBLE	BIT(0)	/* use short preamble */
    346 #define ATW_HDRCTL_RTSCTS		BIT(4)	/* send RTS */
    347 #define ATW_HDRCTL_WEP			BIT(5)
    348 #define ATW_HDRCTL_UNKNOWN1		BIT(15) /* MAC adds FCS? */
    349 #define ATW_HDRCTL_UNKNOWN2		BIT(8)
    350 
    351 #define ATW_FRAGTHR_FRAGTHR_MASK	BITS(0, 11)
    352 #define ATW_FRAGNUM_FRAGNUM_MASK	BITS(4, 7)
    353 
    354 /* Values for sc_flags. */
    355 #define	ATWF_MRL		0x00000010	/* memory read line okay */
    356 #define	ATWF_MRM		0x00000020	/* memory read multi okay */
    357 #define	ATWF_MWI		0x00000040	/* memory write inval okay */
    358 #define	ATWF_SHORT_PREAMBLE	0x00000080	/* short preamble enabled */
    359 #define	ATWF_RTSCTS		0x00000100	/* RTS/CTS enabled */
    360 #define	ATWF_ATTACHED		0x00000800	/* attach has succeeded */
    361 #define	ATWF_ENABLED		0x00001000	/* chip is enabled */
    362 
    363 #define	ATW_IS_ENABLED(sc)	((sc)->sc_flags & ATWF_ENABLED)
    364 
    365 #define	ATW_CDTXADDR(sc, x)	((sc)->sc_cddma + ATW_CDTXOFF((x)))
    366 #define	ATW_CDRXADDR(sc, x)	((sc)->sc_cddma + ATW_CDRXOFF((x)))
    367 
    368 #define	ATW_CDTXSYNC(sc, x, n, ops)					\
    369 do {									\
    370 	int __x, __n;							\
    371 									\
    372 	__x = (x);							\
    373 	__n = (n);							\
    374 									\
    375 	/* If it will wrap around, sync to the end of the ring. */	\
    376 	if ((__x + __n) > ATW_NTXDESC) {				\
    377 		bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,	\
    378 		    ATW_CDTXOFF(__x), sizeof(struct atw_txdesc) *	\
    379 		    (ATW_NTXDESC - __x), (ops));			\
    380 		__n -= (ATW_NTXDESC - __x);				\
    381 		__x = 0;						\
    382 	}								\
    383 									\
    384 	/* Now sync whatever is left. */				\
    385 	bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,		\
    386 	    ATW_CDTXOFF(__x), sizeof(struct atw_txdesc) * __n, (ops)); \
    387 } while (0)
    388 
    389 #define	ATW_CDRXSYNC(sc, x, ops)					\
    390 	bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,		\
    391 	    ATW_CDRXOFF((x)), sizeof(struct atw_rxdesc), (ops))
    392 
    393 /*
    394  * Note we rely on MCLBYTES being a power of two.  Because the `length'
    395  * field is only 11 bits, we must subtract 1 from the length to avoid
    396  * having it truncated to 0!
    397  *
    398  * Apparently we have to set ATW_RXSTAT_SQL to make the ADM8211 tell
    399  * us RSSI.
    400  */
    401 #define	ATW_INIT_RXDESC(sc, x)						\
    402 do {									\
    403 	struct atw_rxsoft *__rxs = &sc->sc_rxsoft[(x)];			\
    404 	struct atw_rxdesc *__rxd = &sc->sc_rxdescs[(x)];		\
    405 	struct mbuf *__m = __rxs->rxs_mbuf;				\
    406 									\
    407 	__m->m_data = __m->m_ext.ext_buf;				\
    408 	__rxd->ar_buf1 =						\
    409 	    htole32(__rxs->rxs_dmamap->dm_segs[0].ds_addr);		\
    410 	__rxd->ar_buf2 =	/* for descriptor chaining */		\
    411 	    htole32(ATW_CDRXADDR((sc), ATW_NEXTRX((x))));		\
    412 	__rxd->ar_ctl =							\
    413 	    htole32(LSHIFT(((__m->m_ext.ext_size - 1) & ~0x3U),		\
    414 	                   ATW_RXCTL_RBS1_MASK) |			\
    415 		    0 /* ATW_RXCTL_RCH */ |				\
    416 	    ((x) == (ATW_NRXDESC - 1) ? ATW_RXCTL_RER : 0));		\
    417 	__rxd->ar_stat =						\
    418 	    htole32(ATW_RXSTAT_OWN|ATW_RXSTAT_SQL|ATW_RXSTAT_FS|	\
    419 	            ATW_RXSTAT_LS);					\
    420 	ATW_CDRXSYNC((sc), (x),						\
    421 	    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);			\
    422 } while (0)
    423 
    424 /* country codes from ADM8211 SROM */
    425 #define	ATW_COUNTRY_FCC 0		/* USA 1-11 */
    426 #define	ATW_COUNTRY_IC 1		/* Canada 1-11 */
    427 #define	ATW_COUNTRY_ETSI 2		/* European Union (?) 1-13 */
    428 #define	ATW_COUNTRY_SPAIN 3		/* 10-11 */
    429 #define	ATW_COUNTRY_FRANCE 4		/* 10-13 */
    430 #define	ATW_COUNTRY_MKK 5		/* Japan: 14 */
    431 #define	ATW_COUNTRY_MKK2 6		/* Japan: 1-14 */
    432 
    433 /* One Time Unit (TU) is 1Kus = 1024 microseconds. */
    434 #define IEEE80211_DUR_TU		1024
    435 
    436 /* IEEE 802.11b durations for DSSS PHY in microseconds */
    437 #define IEEE80211_DUR_DS_LONG_PREAMBLE	144
    438 #define IEEE80211_DUR_DS_SHORT_PREAMBLE	72
    439 #define IEEE80211_DUR_DS_FAST_PLCPHDR	24
    440 #define IEEE80211_DUR_DS_SLOW_PLCPHDR	48
    441 #define IEEE80211_DUR_DS_SLOW_ACK	112
    442 #define IEEE80211_DUR_DS_FAST_ACK	56
    443 #define IEEE80211_DUR_DS_SLOW_CTS	112
    444 #define IEEE80211_DUR_DS_FAST_CTS	56
    445 #define IEEE80211_DUR_DS_SLOT		20
    446 #define IEEE80211_DUR_DS_SIFS		10
    447 #define IEEE80211_DUR_DS_PIFS	(IEEE80211_DUR_DS_SIFS + IEEE80211_DUR_DS_SLOT)
    448 #define IEEE80211_DUR_DS_DIFS	(IEEE80211_DUR_DS_SIFS + \
    449 				 2 * IEEE80211_DUR_DS_SLOT)
    450 #define IEEE80211_DUR_DS_EIFS	(IEEE80211_DUR_DS_SIFS + \
    451 				 IEEE80211_DUR_DS_SLOW_ACK + \
    452 				 IEEE80211_DUR_DS_LONG_PREAMBLE + \
    453 				 IEEE80211_DUR_DS_SLOW_PLCPHDR + \
    454 				 IEEE80211_DUR_DIFS)
    455 
    456 /*
    457  * register space access macros
    458  */
    459 #define	ATW_READ(sc, reg)						\
    460 	bus_space_read_4((sc)->sc_st, (sc)->sc_sh, (reg))
    461 
    462 #define	ATW_WRITE(sc, reg, val)					\
    463 	bus_space_write_4((sc)->sc_st, (sc)->sc_sh, (reg), (val))
    464 
    465 #define	ATW_SET(sc, reg, mask)					\
    466 	ATW_WRITE((sc), (reg), ATW_READ((sc), (reg)) | (mask))
    467 
    468 #define	ATW_CLR(sc, reg, mask)					\
    469 	ATW_WRITE((sc), (reg), ATW_READ((sc), (reg)) & ~(mask))
    470 
    471 #define	ATW_ISSET(sc, reg, mask)					\
    472 	(ATW_READ((sc), (reg)) & (mask))
    473 
    474 void	atw_attach __P((struct atw_softc *));
    475 int	atw_detach __P((struct atw_softc *));
    476 int	atw_activate __P((struct device *, enum devact));
    477 int	atw_intr __P((void *arg));
    478 void	atw_power __P((int, void *));
    479 void	atw_shutdown __P((void *));
    480 
    481 #endif /* _DEV_IC_ATWVAR_H_ */
    482