xref: /netbsd-src/sys/dev/ic/athvar.h (revision 7fa608457b817eca6e0977b37f758ae064f3c99c)
1 /*	$NetBSD: athvar.h,v 1.21 2007/07/17 01:26:17 dyoung Exp $	*/
2 
3 /*-
4  * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer,
12  *    without modification.
13  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
14  *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
15  *    redistribution must be conditioned upon including a substantially
16  *    similar Disclaimer requirement for further binary redistribution.
17  * 3. Neither the names of the above-listed copyright holders nor the names
18  *    of any contributors may be used to endorse or promote products derived
19  *    from this software without specific prior written permission.
20  *
21  * Alternatively, this software may be distributed under the terms of the
22  * GNU General Public License ("GPL") version 2 as published by the Free
23  * Software Foundation.
24  *
25  * NO WARRANTY
26  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
27  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
28  * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
29  * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
30  * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
31  * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
34  * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
36  * THE POSSIBILITY OF SUCH DAMAGES.
37  *
38  * $FreeBSD: src/sys/dev/ath/if_athvar.h,v 1.29 2005/08/08 18:46:36 sam Exp $
39  */
40 
41 /*
42  * Defintions for the Atheros Wireless LAN controller driver.
43  */
44 #ifndef _DEV_ATH_ATHVAR_H
45 #define _DEV_ATH_ATHVAR_H
46 
47 #include <dev/ic/ath_netbsd.h>
48 #include <contrib/dev/ath/ah.h>
49 #include <net80211/ieee80211_radiotap.h>
50 #include <dev/ic/athioctl.h>
51 #include <dev/ic/athrate.h>
52 
53 #define	ATH_TIMEOUT		1000
54 
55 #ifndef ATH_RXBUF
56 #define	ATH_RXBUF	40		/* number of RX buffers */
57 #endif
58 #ifndef ATH_TXBUF
59 #define	ATH_TXBUF	100		/* number of TX buffers */
60 #endif
61 #define	ATH_TXDESC	10		/* number of descriptors per buffer */
62 #define	ATH_TXMAXTRY	11		/* max number of transmit attempts */
63 #define	ATH_TXMGTTRY	4		/* xmit attempts for mgt/ctl frames */
64 #define	ATH_TXINTR_PERIOD 5		/* max number of batched tx descriptors */
65 
66 #define	ATH_BEACON_AIFS_DEFAULT	 0	/* default aifs for ap beacon q */
67 #define	ATH_BEACON_CWMIN_DEFAULT 0	/* default cwmin for ap beacon q */
68 #define	ATH_BEACON_CWMAX_DEFAULT 0	/* default cwmax for ap beacon q */
69 
70 /*
71  * The key cache is used for h/w cipher state and also for
72  * tracking station state such as the current tx antenna.
73  * We also setup a mapping table between key cache slot indices
74  * and station state to short-circuit node lookups on rx.
75  * Different parts have different size key caches.  We handle
76  * up to ATH_KEYMAX entries (could dynamically allocate state).
77  */
78 #define	ATH_KEYMAX	128		/* max key cache size we handle */
79 #define	ATH_KEYBYTES	(ATH_KEYMAX/NBBY)	/* storage space in bytes */
80 
81 /* driver-specific node state */
82 struct ath_node {
83 	struct ieee80211_node an_node;	/* base class */
84 	u_int32_t	an_avgrssi;	/* average rssi over all rx frames */
85 	/* variable-length rate control state follows */
86 };
87 #define	ATH_NODE(ni)	((struct ath_node *)(ni))
88 #define	ATH_NODE_CONST(ni)	((const struct ath_node *)(ni))
89 
90 #define ATH_RSSI_LPF_LEN	10
91 #define ATH_RSSI_DUMMY_MARKER	0x127
92 #define ATH_EP_MUL(x, mul)	((x) * (mul))
93 #define ATH_RSSI_IN(x)		(ATH_EP_MUL((x), HAL_RSSI_EP_MULTIPLIER))
94 #define ATH_LPF_RSSI(x, y, len) \
95     ((x != ATH_RSSI_DUMMY_MARKER) ? (((x) * ((len) - 1) + (y)) / (len)) : (y))
96 #define ATH_RSSI_LPF(x, y) do {						\
97     if ((y) >= -20)							\
98     	x = ATH_LPF_RSSI((x), ATH_RSSI_IN((y)), ATH_RSSI_LPF_LEN);	\
99 } while (0)
100 
101 struct ath_buf {
102 	STAILQ_ENTRY(ath_buf)	bf_list;
103 #define bf_nseg		bf_dmamap->dm_nsegs
104 	int			bf_flags;	/* tx descriptor flags */
105 	struct ath_desc		*bf_desc;	/* virtual addr of desc */
106 	bus_addr_t		bf_daddr;	/* physical addr of desc */
107 	bus_dmamap_t		bf_dmamap;	/* DMA map for mbuf chain */
108 	struct mbuf		*bf_m;		/* mbuf for buf */
109 	struct ieee80211_node	*bf_node;	/* pointer to the node */
110 #define bf_mapsize	bf_dmamap->dm_mapsize
111 #define	ATH_MAX_SCATTER		ATH_TXDESC	/* max(tx,rx,beacon) desc's */
112 #define bf_segs		bf_dmamap->dm_segs
113 };
114 typedef STAILQ_HEAD(, ath_buf) ath_bufhead;
115 
116 /*
117  * DMA state for tx/rx descriptors.
118  */
119 struct ath_descdma {
120 	const char*		dd_name;
121 	struct ath_desc		*dd_desc;	/* descriptors */
122 	bus_addr_t		dd_desc_paddr;	/* physical addr of dd_desc */
123 	bus_addr_t		dd_desc_len;	/* size of dd_desc */
124 	bus_dma_segment_t	dd_dseg;
125 	int			dd_dnseg;	/* number of segments */
126 	bus_dma_tag_t		dd_dmat;	/* bus DMA tag */
127 	bus_dmamap_t		dd_dmamap;	/* DMA map for descriptors */
128 	struct ath_buf		*dd_bufptr;	/* associated buffers */
129 };
130 
131 /*
132  * Data transmit queue state.  One of these exists for each
133  * hardware transmit queue.  Packets sent to us from above
134  * are assigned to queues based on their priority.  Not all
135  * devices support a complete set of hardware transmit queues.
136  * For those devices the array sc_ac2q will map multiple
137  * priorities to fewer hardware queues (typically all to one
138  * hardware queue).
139  */
140 struct ath_txq {
141 	u_int			axq_qnum;	/* hardware q number */
142 	u_int			axq_depth;	/* queue depth (stat only) */
143 	u_int			axq_intrcnt;	/* interrupt count */
144 	u_int32_t		*axq_link;	/* link ptr in last TX desc */
145 	STAILQ_HEAD(, ath_buf)	axq_q;		/* transmit queue */
146 	ath_txq_lock_t		axq_lock;	/* lock on q and link */
147 	/*
148 	 * State for patching up CTS when bursting.
149 	 */
150 	struct	ath_buf		*axq_linkbuf;	/* va of last buffer */
151 	u_int			axq_timer;	/* transmit timeout */
152 };
153 
154 #define ATH_TXQ_INSERT_TAIL(_tq, _elm, _field) do { \
155 	STAILQ_INSERT_TAIL(&(_tq)->axq_q, (_elm), _field); \
156 	(_tq)->axq_depth++; \
157 	(_tq)->axq_timer = 5; \
158 } while (0)
159 #define ATH_TXQ_REMOVE_HEAD(_tq, _field) do { \
160 	STAILQ_REMOVE_HEAD(&(_tq)->axq_q, _field); \
161 	if (--(_tq)->axq_depth == 0) \
162 		(_tq)->axq_timer = 0; \
163 } while (0)
164 
165 struct taskqueue;
166 struct ath_tx99;
167 
168 struct ath_softc {
169 	struct device		sc_dev;
170 	struct ethercom		sc_ec;		/* interface common */
171 	struct ath_stats	sc_stats;	/* interface statistics */
172 	struct ieee80211com	sc_ic;		/* IEEE 802.11 common */
173 	int			(*sc_enable)(struct ath_softc *);
174 	void			(*sc_disable)(struct ath_softc *);
175 	void			(*sc_power)(struct ath_softc *, int);
176 	int			sc_regdomain;
177 	int			sc_countrycode;
178 	int			sc_debug;
179 	struct sysctllog	*sc_sysctllog;
180 	void			(*sc_recv_mgmt)(struct ieee80211com *,
181 					struct mbuf *,
182 					struct ieee80211_node *,
183 					int, int, u_int32_t);
184 	int			(*sc_newstate)(struct ieee80211com *,
185 					enum ieee80211_state, int);
186 	void 			(*sc_node_free)(struct ieee80211_node *);
187 	HAL_BUS_TAG		sc_st;		/* bus space tag */
188 	HAL_BUS_HANDLE		sc_sh;		/* bus space handle */
189 	bus_dma_tag_t		sc_dmat;	/* bus DMA tag */
190 	ath_lock_t		sc_mtx;		/* master lock (recursive) */
191 	struct ath_hal		*sc_ah;		/* Atheros HAL */
192 	struct ath_ratectrl	*sc_rc;		/* tx rate control support */
193 	struct ath_tx99		*sc_tx99;	/* tx99 adjunct state */
194 	void			(*sc_setdefantenna)(struct ath_softc *, u_int);
195 	unsigned int		sc_invalid : 1,	/* disable hardware accesses */
196 				sc_mrretry : 1,	/* multi-rate retry support */
197 				sc_softled : 1,	/* enable LED gpio status */
198 				sc_splitmic: 1,	/* split TKIP MIC keys */
199 				sc_needmib : 1,	/* enable MIB stats intr */
200 				sc_diversity : 1,/* enable rx diversity */
201 				sc_hasveol : 1,	/* tx VEOL support */
202 				sc_ledstate: 1,	/* LED on/off state */
203 				sc_blinking: 1,	/* LED blink operation active */
204 				sc_mcastkey: 1,	/* mcast key cache search */
205 				sc_syncbeacon:1,/* sync/resync beacon timers */
206 				sc_hasclrkey:1;	/* CLR key supported */
207 						/* rate tables */
208 	const HAL_RATE_TABLE	*sc_rates[IEEE80211_MODE_MAX];
209 	const HAL_RATE_TABLE	*sc_currates;	/* current rate table */
210 	enum ieee80211_phymode	sc_curmode;	/* current phy mode */
211 	u_int16_t		sc_curtxpow;	/* current tx power limit */
212 	HAL_CHANNEL		sc_curchan;	/* current h/w channel */
213 	u_int8_t		sc_rixmap[256];	/* IEEE to h/w rate table ix */
214 	struct {
215 		u_int8_t	ieeerate;	/* IEEE rate */
216 		u_int8_t	rxflags;	/* radiotap rx flags */
217 		u_int8_t	txflags;	/* radiotap tx flags */
218 		u_int16_t	ledon;		/* softled on time */
219 		u_int16_t	ledoff;		/* softled off time */
220 	} sc_hwmap[32];				/* h/w rate ix mappings */
221 	u_int8_t		sc_minrateix;	/* min h/w rate index */
222 	u_int8_t		sc_mcastrix;	/* mcast h/w rate index */
223 	u_int8_t		sc_protrix;	/* protection rate index */
224 	u_int			sc_mcastrate;	/* ieee rate for mcastrateix */
225 	u_int			sc_txantenna;	/* tx antenna (fixed or auto) */
226 	HAL_INT			sc_imask;	/* interrupt mask copy */
227 	u_int			sc_keymax;	/* size of key cache */
228 	u_int8_t		sc_keymap[ATH_KEYBYTES];/* key use bit map */
229 
230 	u_int			sc_ledpin;	/* GPIO pin for driving LED */
231 	u_int			sc_ledon;	/* pin setting for LED on */
232 	u_int			sc_ledidle;	/* idle polling interval */
233 	int			sc_ledevent;	/* time of last LED event */
234 	u_int8_t		sc_rxrate;	/* current rx rate for LED */
235 	u_int8_t		sc_txrate;	/* current tx rate for LED */
236 	u_int16_t		sc_ledoff;	/* off time for current blink */
237 	struct callout		sc_ledtimer;	/* led off timer */
238 
239 	void *			sc_drvbpf;
240 	union {
241 		struct ath_tx_radiotap_header th;
242 		u_int8_t	pad[64];
243 	} u_tx_rt;
244 	int			sc_tx_th_len;
245 	union {
246 		struct ath_rx_radiotap_header th;
247 		u_int8_t	pad[64];
248 	} u_rx_rt;
249 	int			sc_rx_th_len;
250 
251 	ath_task_t		sc_fataltask;	/* fatal int processing */
252 
253 	struct ath_descdma	sc_rxdma;	/* RX descriptos */
254 	ath_bufhead		sc_rxbuf;	/* receive buffer */
255 	u_int32_t		*sc_rxlink;	/* link ptr in last RX desc */
256 	ath_task_t		sc_rxtask;	/* rx int processing */
257 	ath_task_t		sc_rxorntask;	/* rxorn int processing */
258 	ath_task_t		sc_radartask;	/* radar processing */
259 	u_int8_t		sc_defant;	/* current default antenna */
260 	u_int8_t		sc_rxotherant;	/* rx's on non-default antenna*/
261 	u_int64_t		sc_lastrx;	/* tsf of last rx'd frame */
262 
263 	struct ath_descdma	sc_txdma;	/* TX descriptors */
264 	ath_bufhead		sc_txbuf;	/* transmit buffer */
265 	ath_txbuf_lock_t	sc_txbuflock;	/* txbuf lock */
266 	u_int			sc_txqsetup;	/* h/w queues setup */
267 	u_int			sc_txintrperiod;/* tx interrupt batching */
268 	struct ath_txq		sc_txq[HAL_NUM_TX_QUEUES];
269 	struct ath_txq		*sc_ac2q[5];	/* WME AC -> h/w q map */
270 	ath_task_t		sc_txtask;	/* tx int processing */
271 
272 	struct ath_descdma	sc_bdma;	/* beacon descriptors */
273 	ath_bufhead		sc_bbuf;	/* beacon buffers */
274 	u_int			sc_bhalq;	/* HAL q for outgoing beacons */
275 	u_int			sc_bmisscount;	/* missed beacon transmits */
276 	u_int32_t		sc_ant_tx[8];	/* recent tx frames/antenna */
277 	struct ath_txq		*sc_cabq;	/* tx q for cab frames */
278 	struct ieee80211_beacon_offsets sc_boff;/* dynamic update state */
279 	ath_task_t		sc_bmisstask;	/* bmiss int processing */
280 	ath_task_t		sc_bstucktask;	/* stuck beacon processing */
281 	enum {
282 		OK,				/* no change needed */
283 		UPDATE,				/* update pending */
284 		COMMIT				/* beacon sent, commit change */
285 	} sc_updateslot;			/* slot time update fsm */
286 
287 	struct callout		sc_cal_ch;	/* callout handle for cals */
288 	int			sc_calinterval;	/* current polling interval */
289 	int			sc_caltries;	/* cals at current interval */
290 	HAL_NODE_STATS		sc_halstats;	/* station-mode rssi stats */
291 	struct callout		sc_scan_ch;	/* callout handle for scan */
292 	struct callout		sc_dfs_ch;	/* callout handle for dfs */
293 	void			*sc_powerhook;	/* power management hook */
294 	u_int			sc_flags;	/* misc flags */
295 };
296 #define	sc_if			sc_ec.ec_if
297 #define	sc_tx_th		u_tx_rt.th
298 #define	sc_rx_th		u_rx_rt.th
299 
300 #define	ATH_ATTACHED		0x0001		/* attach has succeeded */
301 #define ATH_ENABLED		0x0002		/* chip is enabled */
302 
303 #define	ATH_IS_ENABLED(sc)	((sc)->sc_flags & ATH_ENABLED)
304 
305 #define	ATH_TXQ_SETUP(sc, i)	((sc)->sc_txqsetup & (1<<i))
306 
307 int	ath_attach(u_int16_t, struct ath_softc *);
308 int	ath_detach(struct ath_softc *);
309 void	ath_resume(struct ath_softc *, int);
310 void	ath_suspend(struct ath_softc *, int);
311 int	ath_activate(struct device *, enum devact);
312 void	ath_power(int, void *);
313 void	ath_shutdown(void *);
314 int	ath_intr(void *);
315 int	ath_reset(struct ifnet *);
316 void	ath_sysctlattach(struct ath_softc *);
317 
318 extern int ath_dwelltime;
319 extern int ath_calinterval;
320 extern int ath_outdoor;
321 extern int ath_xchanmode;
322 extern int ath_countrycode;
323 extern int ath_regdomain;
324 extern int ath_debug;
325 extern int ath_rxbuf;
326 extern int ath_txbuf;
327 
328 /*
329  * HAL definitions to comply with local coding convention.
330  */
331 #define	ath_hal_detach(_ah) \
332 	((*(_ah)->ah_detach)((_ah)))
333 #define	ath_hal_reset(_ah, _opmode, _chan, _outdoor, _pstatus) \
334 	((*(_ah)->ah_reset)((_ah), (_opmode), (_chan), (_outdoor), (_pstatus)))
335 #define	ath_hal_getratetable(_ah, _mode) \
336 	((*(_ah)->ah_getRateTable)((_ah), (_mode)))
337 #define	ath_hal_getmac(_ah, _mac) \
338 	((*(_ah)->ah_getMacAddress)((_ah), (_mac)))
339 #define	ath_hal_setmac(_ah, _mac) \
340 	((*(_ah)->ah_setMacAddress)((_ah), (_mac)))
341 #define	ath_hal_intrset(_ah, _mask) \
342 	((*(_ah)->ah_setInterrupts)((_ah), (_mask)))
343 #define	ath_hal_intrget(_ah) \
344 	((*(_ah)->ah_getInterrupts)((_ah)))
345 #define	ath_hal_intrpend(_ah) \
346 	((*(_ah)->ah_isInterruptPending)((_ah)))
347 #define	ath_hal_getisr(_ah, _pmask) \
348 	((*(_ah)->ah_getPendingInterrupts)((_ah), (_pmask)))
349 #define	ath_hal_updatetxtriglevel(_ah, _inc) \
350 	((*(_ah)->ah_updateTxTrigLevel)((_ah), (_inc)))
351 #define	ath_hal_setpower(_ah, _mode) \
352 	((*(_ah)->ah_setPowerMode)((_ah), (_mode), AH_TRUE))
353 #define	ath_hal_keycachesize(_ah) \
354 	((*(_ah)->ah_getKeyCacheSize)((_ah)))
355 #define	ath_hal_keyreset(_ah, _ix) \
356 	((*(_ah)->ah_resetKeyCacheEntry)((_ah), (_ix)))
357 #define	ath_hal_keyset(_ah, _ix, _pk, _mac) \
358 	((*(_ah)->ah_setKeyCacheEntry)((_ah), (_ix), (_pk), (_mac), AH_FALSE))
359 #define	ath_hal_keyisvalid(_ah, _ix) \
360 	(((*(_ah)->ah_isKeyCacheEntryValid)((_ah), (_ix))))
361 #define	ath_hal_keysetmac(_ah, _ix, _mac) \
362 	((*(_ah)->ah_setKeyCacheEntryMac)((_ah), (_ix), (_mac)))
363 #define	ath_hal_getrxfilter(_ah) \
364 	((*(_ah)->ah_getRxFilter)((_ah)))
365 #define	ath_hal_setrxfilter(_ah, _filter) \
366 	((*(_ah)->ah_setRxFilter)((_ah), (_filter)))
367 #define	ath_hal_setmcastfilter(_ah, _mfilt0, _mfilt1) \
368 	((*(_ah)->ah_setMulticastFilter)((_ah), (_mfilt0), (_mfilt1)))
369 #define	ath_hal_waitforbeacon(_ah, _bf) \
370 	((*(_ah)->ah_waitForBeaconDone)((_ah), (_bf)->bf_daddr))
371 #define	ath_hal_putrxbuf(_ah, _bufaddr) \
372 	((*(_ah)->ah_setRxDP)((_ah), (_bufaddr)))
373 #define	ath_hal_gettsf32(_ah) \
374 	((*(_ah)->ah_getTsf32)((_ah)))
375 #define	ath_hal_gettsf64(_ah) \
376 	((*(_ah)->ah_getTsf64)((_ah)))
377 #define	ath_hal_resettsf(_ah) \
378 	((*(_ah)->ah_resetTsf)((_ah)))
379 #define	ath_hal_rxena(_ah) \
380 	((*(_ah)->ah_enableReceive)((_ah)))
381 #define	ath_hal_puttxbuf(_ah, _q, _bufaddr) \
382 	((*(_ah)->ah_setTxDP)((_ah), (_q), (_bufaddr)))
383 #define	ath_hal_gettxbuf(_ah, _q) \
384 	((*(_ah)->ah_getTxDP)((_ah), (_q)))
385 #define	ath_hal_numtxpending(_ah, _q) \
386 	((*(_ah)->ah_numTxPending)((_ah), (_q)))
387 #define	ath_hal_getrxbuf(_ah) \
388 	((*(_ah)->ah_getRxDP)((_ah)))
389 #define	ath_hal_txstart(_ah, _q) \
390 	((*(_ah)->ah_startTxDma)((_ah), (_q)))
391 #define	ath_hal_setchannel(_ah, _chan) \
392 	((*(_ah)->ah_setChannel)((_ah), (_chan)))
393 #define	ath_hal_calibrate(_ah, _chan, _iqcal) \
394 	((*(_ah)->ah_perCalibration)((_ah), (_chan), (_iqcal)))
395 #define	ath_hal_setledstate(_ah, _state) \
396 	((*(_ah)->ah_setLedState)((_ah), (_state)))
397 #define	ath_hal_beaconinit(_ah, _nextb, _bperiod) \
398 	((*(_ah)->ah_beaconInit)((_ah), (_nextb), (_bperiod)))
399 #define	ath_hal_beaconreset(_ah) \
400 	((*(_ah)->ah_resetStationBeaconTimers)((_ah)))
401 #define	ath_hal_beacontimers(_ah, _bs) \
402 	((*(_ah)->ah_setStationBeaconTimers)((_ah), (_bs)))
403 #define	ath_hal_setassocid(_ah, _bss, _associd) \
404 	((*(_ah)->ah_writeAssocid)((_ah), (_bss), (_associd)))
405 #define	ath_hal_phydisable(_ah) \
406 	((*(_ah)->ah_phyDisable)((_ah)))
407 #define	ath_hal_setopmode(_ah) \
408 	((*(_ah)->ah_setPCUConfig)((_ah)))
409 #define	ath_hal_stoptxdma(_ah, _qnum) \
410 	((*(_ah)->ah_stopTxDma)((_ah), (_qnum)))
411 #define	ath_hal_stoppcurecv(_ah) \
412 	((*(_ah)->ah_stopPcuReceive)((_ah)))
413 #define	ath_hal_startpcurecv(_ah) \
414 	((*(_ah)->ah_startPcuReceive)((_ah)))
415 #define	ath_hal_stopdmarecv(_ah) \
416 	((*(_ah)->ah_stopDmaReceive)((_ah)))
417 #define	ath_hal_getdiagstate(_ah, _id, _indata, _insize, _outdata, _outsize) \
418 	((*(_ah)->ah_getDiagState)((_ah), (_id), \
419 		(_indata), (_insize), (_outdata), (_outsize)))
420 #define	ath_hal_setuptxqueue(_ah, _type, _irq) \
421 	((*(_ah)->ah_setupTxQueue)((_ah), (_type), (_irq)))
422 #define	ath_hal_resettxqueue(_ah, _q) \
423 	((*(_ah)->ah_resetTxQueue)((_ah), (_q)))
424 #define	ath_hal_releasetxqueue(_ah, _q) \
425 	((*(_ah)->ah_releaseTxQueue)((_ah), (_q)))
426 #define	ath_hal_gettxqueueprops(_ah, _q, _qi) \
427 	((*(_ah)->ah_getTxQueueProps)((_ah), (_q), (_qi)))
428 #define	ath_hal_settxqueueprops(_ah, _q, _qi) \
429 	((*(_ah)->ah_setTxQueueProps)((_ah), (_q), (_qi)))
430 #define	ath_hal_getrfgain(_ah) \
431 	((*(_ah)->ah_getRfGain)((_ah)))
432 #define	ath_hal_getdefantenna(_ah) \
433 	((*(_ah)->ah_getDefAntenna)((_ah)))
434 #define	ath_hal_setdefantenna(_ah, _ant) \
435 	((*(_ah)->ah_setDefAntenna)((_ah), (_ant)))
436 #define	ath_hal_rxmonitor(_ah, _arg, _chan) \
437 	((*(_ah)->ah_rxMonitor)((_ah), (_arg), (_chan)))
438 #define	ath_hal_mibevent(_ah, _stats) \
439 	((*(_ah)->ah_procMibEvent)((_ah), (_stats)))
440 #define	ath_hal_setslottime(_ah, _us) \
441 	((*(_ah)->ah_setSlotTime)((_ah), (_us)))
442 #define	ath_hal_getslottime(_ah) \
443 	((*(_ah)->ah_getSlotTime)((_ah)))
444 #define	ath_hal_setacktimeout(_ah, _us) \
445 	((*(_ah)->ah_setAckTimeout)((_ah), (_us)))
446 #define	ath_hal_getacktimeout(_ah) \
447 	((*(_ah)->ah_getAckTimeout)((_ah)))
448 #define	ath_hal_setctstimeout(_ah, _us) \
449 	((*(_ah)->ah_setCTSTimeout)((_ah), (_us)))
450 #define	ath_hal_getctstimeout(_ah) \
451 	((*(_ah)->ah_getCTSTimeout)((_ah)))
452 #define	ath_hal_getcapability(_ah, _cap, _param, _result) \
453 	((*(_ah)->ah_getCapability)((_ah), (_cap), (_param), (_result)))
454 #define	ath_hal_setcapability(_ah, _cap, _param, _v, _status) \
455 	((*(_ah)->ah_setCapability)((_ah), (_cap), (_param), (_v), (_status)))
456 #define	ath_hal_ciphersupported(_ah, _cipher) \
457 	(ath_hal_getcapability(_ah, HAL_CAP_CIPHER, _cipher, NULL) == HAL_OK)
458 #define	ath_hal_getregdomain(_ah, _prd) \
459 	(ath_hal_getcapability(_ah, HAL_CAP_REG_DMN, 0, (_prd)) == HAL_OK)
460 #define	ath_hal_setregdomain(_ah, _rd) \
461 	((*(_ah)->ah_setRegulatoryDomain)((_ah), (_rd), NULL))
462 #define	ath_hal_getcountrycode(_ah, _pcc) \
463 	(*(_pcc) = (_ah)->ah_countryCode)
464 #define	ath_hal_tkipsplit(_ah) \
465 	(ath_hal_getcapability(_ah, HAL_CAP_TKIP_SPLIT, 0, NULL) == HAL_OK)
466 #define	ath_hal_hwphycounters(_ah) \
467 	(ath_hal_getcapability(_ah, HAL_CAP_PHYCOUNTERS, 0, NULL) == HAL_OK)
468 #define	ath_hal_hasdiversity(_ah) \
469 	(ath_hal_getcapability(_ah, HAL_CAP_DIVERSITY, 0, NULL) == HAL_OK)
470 #define	ath_hal_getdiversity(_ah) \
471 	(ath_hal_getcapability(_ah, HAL_CAP_DIVERSITY, 1, NULL) == HAL_OK)
472 #define	ath_hal_setdiversity(_ah, _v) \
473 	ath_hal_setcapability(_ah, HAL_CAP_DIVERSITY, 1, _v, NULL)
474 #define	ath_hal_getdiag(_ah, _pv) \
475 	(ath_hal_getcapability(_ah, HAL_CAP_DIAG, 0, _pv) == HAL_OK)
476 #define	ath_hal_setdiag(_ah, _v) \
477 	ath_hal_setcapability(_ah, HAL_CAP_DIAG, 0, _v, NULL)
478 #define	ath_hal_getnumtxqueues(_ah, _pv) \
479 	(ath_hal_getcapability(_ah, HAL_CAP_NUM_TXQUEUES, 0, _pv) == HAL_OK)
480 #define	ath_hal_hasveol(_ah) \
481 	(ath_hal_getcapability(_ah, HAL_CAP_VEOL, 0, NULL) == HAL_OK)
482 #define	ath_hal_hastxpowlimit(_ah) \
483 	(ath_hal_getcapability(_ah, HAL_CAP_TXPOW, 0, NULL) == HAL_OK)
484 #define	ath_hal_settxpowlimit(_ah, _pow) \
485 	((*(_ah)->ah_setTxPowerLimit)((_ah), (_pow)))
486 #define	ath_hal_gettxpowlimit(_ah, _ppow) \
487 	(ath_hal_getcapability(_ah, HAL_CAP_TXPOW, 1, _ppow) == HAL_OK)
488 #define	ath_hal_getmaxtxpow(_ah, _ppow) \
489 	(ath_hal_getcapability(_ah, HAL_CAP_TXPOW, 2, _ppow) == HAL_OK)
490 #define	ath_hal_gettpscale(_ah, _scale) \
491 	(ath_hal_getcapability(_ah, HAL_CAP_TXPOW, 3, _scale) == HAL_OK)
492 #define	ath_hal_settpscale(_ah, _v) \
493 	ath_hal_setcapability(_ah, HAL_CAP_TXPOW, 3, _v, NULL)
494 #define	ath_hal_hastpc(_ah) \
495 	(ath_hal_getcapability(_ah, HAL_CAP_TPC, 0, NULL) == HAL_OK)
496 #define	ath_hal_gettpc(_ah) \
497 	(ath_hal_getcapability(_ah, HAL_CAP_TPC, 1, NULL) == HAL_OK)
498 #define	ath_hal_settpc(_ah, _v) \
499 	ath_hal_setcapability(_ah, HAL_CAP_TPC, 1, _v, NULL)
500 #define	ath_hal_hasbursting(_ah) \
501 	(ath_hal_getcapability(_ah, HAL_CAP_BURST, 0, NULL) == HAL_OK)
502 #ifdef notyet
503 #define	ath_hal_hasmcastkeysearch(_ah) \
504 	(ath_hal_getcapability(_ah, HAL_CAP_MCAST_KEYSRCH, 0, NULL) == HAL_OK)
505 #define	ath_hal_getmcastkeysearch(_ah) \
506 	(ath_hal_getcapability(_ah, HAL_CAP_MCAST_KEYSRCH, 1, NULL) == HAL_OK)
507 #else
508 #define	ath_hal_getmcastkeysearch(_ah)	0
509 #endif
510 #define	ath_hal_hasrfsilent(_ah) \
511 	(ath_hal_getcapability(_ah, HAL_CAP_RFSILENT, 0, NULL) == HAL_OK)
512 #define	ath_hal_getrfkill(_ah) \
513 	(ath_hal_getcapability(_ah, HAL_CAP_RFSILENT, 1, NULL) == HAL_OK)
514 #define	ath_hal_setrfkill(_ah, _onoff) \
515 	ath_hal_setcapability(_ah, HAL_CAP_RFSILENT, 1, _onoff, NULL)
516 #define	ath_hal_getrfsilent(_ah, _prfsilent) \
517 	(ath_hal_getcapability(_ah, HAL_CAP_RFSILENT, 2, _prfsilent) == HAL_OK)
518 #define	ath_hal_setrfsilent(_ah, _rfsilent) \
519 	ath_hal_setcapability(_ah, HAL_CAP_RFSILENT, 2, _rfsilent, NULL)
520 #define	ath_hal_gettpack(_ah, _ptpack) \
521 	(ath_hal_getcapability(_ah, HAL_CAP_TPC_ACK, 0, _ptpack) == HAL_OK)
522 #define	ath_hal_settpack(_ah, _tpack) \
523 	ath_hal_setcapability(_ah, HAL_CAP_TPC_ACK, 0, _tpack, NULL)
524 #define	ath_hal_gettpcts(_ah, _ptpcts) \
525 	(ath_hal_getcapability(_ah, HAL_CAP_TPC_CTS, 0, _ptpcts) == HAL_OK)
526 #define	ath_hal_settpcts(_ah, _tpcts) \
527 	ath_hal_setcapability(_ah, HAL_CAP_TPC_CTS, 0, _tpcts, NULL)
528 #if HAL_ABI_VERSION < 0x05120700
529 #define	ath_hal_process_noisefloor(_ah)
530 #define	ath_hal_getchannoise(_ah, _c)	(-96)
531 #define	HAL_CAP_TPC_ACK	99
532 #define	HAL_CAP_TPC_CTS	100
533 #else
534 #define	ath_hal_getchannoise(_ah, _c) \
535 	((*(_ah)->ah_getChanNoise)((_ah), (_c)))
536 #endif
537 
538 #define	ath_hal_setuprxdesc(_ah, _ds, _size, _intreq) \
539 	((*(_ah)->ah_setupRxDesc)((_ah), (_ds), (_size), (_intreq)))
540 #define	ath_hal_rxprocdesc(_ah, _ds, _dspa, _dsnext) \
541 	((*(_ah)->ah_procRxDesc)((_ah), (_ds), (_dspa), (_dsnext), 0))
542 #define	ath_hal_setuptxdesc(_ah, _ds, _plen, _hlen, _atype, _txpow, \
543 		_txr0, _txtr0, _keyix, _ant, _flags, \
544 		_rtsrate, _rtsdura) \
545 	((*(_ah)->ah_setupTxDesc)((_ah), (_ds), (_plen), (_hlen), (_atype), \
546 		(_txpow), (_txr0), (_txtr0), (_keyix), (_ant), \
547 		(_flags), (_rtsrate), (_rtsdura), 0, 0, 0))
548 #define	ath_hal_setupxtxdesc(_ah, _ds, \
549 		_txr1, _txtr1, _txr2, _txtr2, _txr3, _txtr3) \
550 	((*(_ah)->ah_setupXTxDesc)((_ah), (_ds), \
551 		(_txr1), (_txtr1), (_txr2), (_txtr2), (_txr3), (_txtr3)))
552 #define	ath_hal_filltxdesc(_ah, _ds, _l, _first, _last, _ds0) \
553 	((*(_ah)->ah_fillTxDesc)((_ah), (_ds), (_l), (_first), (_last), (_ds0)))
554 #define	ath_hal_txprocdesc(_ah, _ds) \
555 	((*(_ah)->ah_procTxDesc)((_ah), (_ds)))
556 #define	ath_hal_gettxintrtxqs(_ah, _txqs) \
557 	((*(_ah)->ah_getTxIntrQueue)((_ah), (_txqs)))
558 
559 #define ath_hal_gpioCfgOutput(_ah, _gpio) \
560         ((*(_ah)->ah_gpioCfgOutput)((_ah), (_gpio)))
561 #define ath_hal_gpioset(_ah, _gpio, _b) \
562         ((*(_ah)->ah_gpioSet)((_ah), (_gpio), (_b)))
563 
564 #define ath_hal_radar_event(_ah) \
565 	((*(_ah)->ah_radarHaveEvent)((_ah)))
566 #define ath_hal_procdfs(_ah, _chan) \
567 	((*(_ah)->ah_processDfs)((_ah), (_chan)))
568 #define ath_hal_checknol(_ah, _chan, _nchans) \
569 	((*(_ah)->ah_dfsNolCheck)((_ah), (_chan), (_nchans)))
570 #define ath_hal_radar_wait(_ah, _chan) \
571 	((*(_ah)->ah_radarWait)((_ah), (_chan)))
572 
573 #endif /* _DEV_ATH_ATHVAR_H */
574