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athrate-amrr.c revision 1.10.16.1
      1  1.10.16.1     haad /*	$NetBSD: athrate-amrr.c,v 1.10.16.1 2008/12/13 01:14:13 haad Exp $ */
      2        1.6  xtraeme 
      3        1.1   dyoung /*-
      4        1.1   dyoung  * Copyright (c) 2004 INRIA
      5        1.1   dyoung  * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
      6        1.1   dyoung  * All rights reserved.
      7        1.1   dyoung  *
      8        1.1   dyoung  * Redistribution and use in source and binary forms, with or without
      9        1.1   dyoung  * modification, are permitted provided that the following conditions
     10        1.1   dyoung  * are met:
     11        1.1   dyoung  * 1. Redistributions of source code must retain the above copyright
     12        1.1   dyoung  *    notice, this list of conditions and the following disclaimer,
     13        1.1   dyoung  *    without modification.
     14        1.1   dyoung  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
     15        1.1   dyoung  *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
     16        1.1   dyoung  *    redistribution must be conditioned upon including a substantially
     17        1.1   dyoung  *    similar Disclaimer requirement for further binary redistribution.
     18        1.1   dyoung  * 3. Neither the names of the above-listed copyright holders nor the names
     19        1.1   dyoung  *    of any contributors may be used to endorse or promote products derived
     20        1.1   dyoung  *    from this software without specific prior written permission.
     21        1.1   dyoung  *
     22        1.1   dyoung  * Alternatively, this software may be distributed under the terms of the
     23        1.1   dyoung  * GNU General Public License ("GPL") version 2 as published by the Free
     24        1.1   dyoung  * Software Foundation.
     25        1.1   dyoung  *
     26        1.1   dyoung  * NO WARRANTY
     27        1.1   dyoung  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     28        1.1   dyoung  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     29        1.1   dyoung  * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
     30        1.1   dyoung  * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
     31        1.1   dyoung  * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
     32        1.1   dyoung  * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33        1.1   dyoung  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34        1.1   dyoung  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
     35        1.1   dyoung  * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36        1.1   dyoung  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     37        1.1   dyoung  * THE POSSIBILITY OF SUCH DAMAGES.
     38        1.1   dyoung  *
     39        1.1   dyoung  */
     40        1.1   dyoung 
     41        1.1   dyoung #include <sys/cdefs.h>
     42        1.6  xtraeme #ifdef __FreeBSD__
     43        1.5    skrll __FBSDID("$FreeBSD: src/sys/dev/ath/ath_rate/amrr/amrr.c,v 1.10 2005/08/09 10:19:43 rwatson Exp $");
     44        1.6  xtraeme #endif
     45        1.6  xtraeme #ifdef __NetBSD__
     46  1.10.16.1     haad __KERNEL_RCSID(0, "$NetBSD: athrate-amrr.c,v 1.10.16.1 2008/12/13 01:14:13 haad Exp $");
     47        1.6  xtraeme #endif
     48        1.1   dyoung 
     49        1.1   dyoung /*
     50        1.1   dyoung  * AMRR rate control. See:
     51        1.1   dyoung  * http://www-sop.inria.fr/rapports/sophia/RR-5208.html
     52        1.1   dyoung  * "IEEE 802.11 Rate Adaptation: A Practical Approach" by
     53        1.1   dyoung  *    Mathieu Lacage, Hossein Manshaei, Thierry Turletti
     54        1.1   dyoung  */
     55        1.1   dyoung #include "opt_inet.h"
     56        1.1   dyoung 
     57        1.1   dyoung #include <sys/param.h>
     58        1.1   dyoung #include <sys/systm.h>
     59        1.1   dyoung #include <sys/sysctl.h>
     60        1.1   dyoung #include <sys/kernel.h>
     61        1.1   dyoung #include <sys/errno.h>
     62        1.9       ad #include <sys/bus.h>
     63        1.1   dyoung #include <sys/socket.h>
     64        1.1   dyoung 
     65        1.1   dyoung #include <net/if.h>
     66        1.1   dyoung #include <net/if_media.h>
     67        1.1   dyoung #include <net/if_arp.h>
     68        1.2   dyoung #include <net/if_ether.h>		/* XXX for ether_sprintf */
     69        1.1   dyoung 
     70        1.1   dyoung #include <net80211/ieee80211_var.h>
     71        1.1   dyoung 
     72        1.1   dyoung #include <net/bpf.h>
     73        1.1   dyoung 
     74        1.1   dyoung #ifdef INET
     75        1.1   dyoung #include <netinet/in.h>
     76        1.1   dyoung #endif
     77        1.1   dyoung 
     78        1.2   dyoung #include <dev/ic/athvar.h>
     79        1.2   dyoung #include <dev/ic/athrate-amrr.h>
     80  1.10.16.1     haad 
     81  1.10.16.1     haad #include <external/isc/atheros_hal/dist/ah.h>
     82        1.1   dyoung 
     83        1.1   dyoung #define	AMRR_DEBUG
     84        1.1   dyoung #ifdef AMRR_DEBUG
     85        1.1   dyoung #define	DPRINTF(sc, _fmt, ...) do {					\
     86        1.1   dyoung 	if (sc->sc_debug & 0x10)					\
     87        1.1   dyoung 		printf(_fmt, __VA_ARGS__);				\
     88        1.1   dyoung } while (0)
     89        1.1   dyoung #else
     90        1.1   dyoung #define	DPRINTF(sc, _fmt, ...)
     91        1.1   dyoung #endif
     92        1.1   dyoung 
     93        1.1   dyoung static	int ath_rateinterval = 1000;		/* rate ctl interval (ms)  */
     94        1.1   dyoung static	int ath_rate_max_success_threshold = 10;
     95        1.1   dyoung static	int ath_rate_min_success_threshold = 1;
     96        1.1   dyoung 
     97        1.1   dyoung static void	ath_ratectl(void *);
     98        1.1   dyoung static void	ath_rate_update(struct ath_softc *, struct ieee80211_node *,
     99        1.1   dyoung 			int rate);
    100        1.1   dyoung static void	ath_rate_ctl_start(struct ath_softc *, struct ieee80211_node *);
    101        1.1   dyoung static void	ath_rate_ctl(void *, struct ieee80211_node *);
    102        1.1   dyoung 
    103        1.1   dyoung void
    104        1.1   dyoung ath_rate_node_init(struct ath_softc *sc, struct ath_node *an)
    105        1.1   dyoung {
    106        1.1   dyoung 	/* NB: assumed to be zero'd by caller */
    107        1.1   dyoung 	ath_rate_update(sc, &an->an_node, 0);
    108        1.1   dyoung }
    109        1.1   dyoung 
    110        1.1   dyoung void
    111        1.1   dyoung ath_rate_node_cleanup(struct ath_softc *sc, struct ath_node *an)
    112        1.1   dyoung {
    113        1.1   dyoung }
    114        1.1   dyoung 
    115        1.1   dyoung void
    116        1.1   dyoung ath_rate_findrate(struct ath_softc *sc, struct ath_node *an,
    117        1.1   dyoung 	int shortPreamble, size_t frameLen,
    118        1.1   dyoung 	u_int8_t *rix, int *try0, u_int8_t *txrate)
    119        1.1   dyoung {
    120        1.1   dyoung 	struct amrr_node *amn = ATH_NODE_AMRR(an);
    121        1.1   dyoung 
    122        1.1   dyoung 	*rix = amn->amn_tx_rix0;
    123        1.1   dyoung 	*try0 = amn->amn_tx_try0;
    124        1.1   dyoung 	if (shortPreamble)
    125        1.1   dyoung 		*txrate = amn->amn_tx_rate0sp;
    126        1.1   dyoung 	else
    127        1.1   dyoung 		*txrate = amn->amn_tx_rate0;
    128        1.1   dyoung }
    129        1.1   dyoung 
    130        1.1   dyoung void
    131        1.1   dyoung ath_rate_setupxtxdesc(struct ath_softc *sc, struct ath_node *an,
    132        1.1   dyoung 	struct ath_desc *ds, int shortPreamble, u_int8_t rix)
    133        1.1   dyoung {
    134        1.1   dyoung 	struct amrr_node *amn = ATH_NODE_AMRR(an);
    135        1.1   dyoung 
    136        1.1   dyoung 	ath_hal_setupxtxdesc(sc->sc_ah, ds
    137        1.1   dyoung 		, amn->amn_tx_rate1sp, amn->amn_tx_try1	/* series 1 */
    138        1.1   dyoung 		, amn->amn_tx_rate2sp, amn->amn_tx_try2	/* series 2 */
    139        1.1   dyoung 		, amn->amn_tx_rate3sp, amn->amn_tx_try3	/* series 3 */
    140        1.1   dyoung 	);
    141        1.1   dyoung }
    142        1.1   dyoung 
    143        1.1   dyoung void
    144        1.1   dyoung ath_rate_tx_complete(struct ath_softc *sc, struct ath_node *an,
    145        1.1   dyoung 	const struct ath_desc *ds, const struct ath_desc *ds0)
    146        1.1   dyoung {
    147        1.1   dyoung 	struct amrr_node *amn = ATH_NODE_AMRR(an);
    148        1.1   dyoung 	int sr = ds->ds_txstat.ts_shortretry;
    149        1.1   dyoung 	int lr = ds->ds_txstat.ts_longretry;
    150        1.1   dyoung 	int retry_count = sr + lr;
    151        1.1   dyoung 
    152        1.1   dyoung 	amn->amn_tx_try0_cnt++;
    153        1.1   dyoung 	if (retry_count == 1) {
    154        1.1   dyoung 		amn->amn_tx_try1_cnt++;
    155        1.1   dyoung 	} else if (retry_count == 2) {
    156        1.1   dyoung 		amn->amn_tx_try1_cnt++;
    157        1.1   dyoung 		amn->amn_tx_try2_cnt++;
    158        1.1   dyoung 	} else if (retry_count == 3) {
    159        1.1   dyoung 		amn->amn_tx_try1_cnt++;
    160        1.1   dyoung 		amn->amn_tx_try2_cnt++;
    161        1.1   dyoung 		amn->amn_tx_try3_cnt++;
    162        1.1   dyoung 	} else if (retry_count > 3) {
    163        1.1   dyoung 		amn->amn_tx_try1_cnt++;
    164        1.1   dyoung 		amn->amn_tx_try2_cnt++;
    165        1.1   dyoung 		amn->amn_tx_try3_cnt++;
    166        1.1   dyoung 		amn->amn_tx_failure_cnt++;
    167        1.1   dyoung 	}
    168        1.1   dyoung }
    169        1.1   dyoung 
    170        1.1   dyoung void
    171        1.1   dyoung ath_rate_newassoc(struct ath_softc *sc, struct ath_node *an, int isnew)
    172        1.1   dyoung {
    173        1.1   dyoung 	if (isnew)
    174        1.1   dyoung 		ath_rate_ctl_start(sc, &an->an_node);
    175        1.1   dyoung }
    176        1.1   dyoung 
    177        1.1   dyoung static void
    178        1.1   dyoung node_reset (struct amrr_node *amn)
    179        1.1   dyoung {
    180        1.1   dyoung 	amn->amn_tx_try0_cnt = 0;
    181        1.1   dyoung 	amn->amn_tx_try1_cnt = 0;
    182        1.1   dyoung 	amn->amn_tx_try2_cnt = 0;
    183        1.1   dyoung 	amn->amn_tx_try3_cnt = 0;
    184        1.1   dyoung 	amn->amn_tx_failure_cnt = 0;
    185        1.1   dyoung   	amn->amn_success = 0;
    186        1.1   dyoung   	amn->amn_recovery = 0;
    187        1.1   dyoung   	amn->amn_success_threshold = ath_rate_min_success_threshold;
    188        1.1   dyoung }
    189        1.1   dyoung 
    190        1.1   dyoung 
    191        1.1   dyoung /**
    192        1.1   dyoung  * The code below assumes that we are dealing with hardware multi rate retry
    193        1.1   dyoung  * I have no idea what will happen if you try to use this module with another
    194        1.1   dyoung  * type of hardware. Your machine might catch fire or it might work with
    195        1.1   dyoung  * horrible performance...
    196        1.1   dyoung  */
    197        1.1   dyoung static void
    198        1.1   dyoung ath_rate_update(struct ath_softc *sc, struct ieee80211_node *ni, int rate)
    199        1.1   dyoung {
    200        1.1   dyoung 	struct ath_node *an = ATH_NODE(ni);
    201        1.1   dyoung 	struct amrr_node *amn = ATH_NODE_AMRR(an);
    202        1.1   dyoung 	const HAL_RATE_TABLE *rt = sc->sc_currates;
    203        1.1   dyoung 	u_int8_t rix;
    204        1.1   dyoung 
    205        1.1   dyoung 	KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode));
    206        1.1   dyoung 
    207        1.1   dyoung 	DPRINTF(sc, "%s: set xmit rate for %s to %dM\n",
    208        1.1   dyoung 	    __func__, ether_sprintf(ni->ni_macaddr),
    209        1.1   dyoung 	    ni->ni_rates.rs_nrates > 0 ?
    210        1.1   dyoung 		(ni->ni_rates.rs_rates[rate] & IEEE80211_RATE_VAL) / 2 : 0);
    211        1.1   dyoung 
    212        1.1   dyoung 	ni->ni_txrate = rate;
    213        1.1   dyoung 	/*
    214        1.1   dyoung 	 * Before associating a node has no rate set setup
    215        1.1   dyoung 	 * so we can't calculate any transmit codes to use.
    216        1.1   dyoung 	 * This is ok since we should never be sending anything
    217        1.1   dyoung 	 * but management frames and those always go at the
    218        1.1   dyoung 	 * lowest hardware rate.
    219        1.1   dyoung 	 */
    220        1.1   dyoung 	if (ni->ni_rates.rs_nrates > 0) {
    221        1.1   dyoung 		amn->amn_tx_rix0 = sc->sc_rixmap[
    222        1.1   dyoung 					       ni->ni_rates.rs_rates[rate] & IEEE80211_RATE_VAL];
    223        1.1   dyoung 		amn->amn_tx_rate0 = rt->info[amn->amn_tx_rix0].rateCode;
    224        1.1   dyoung 		amn->amn_tx_rate0sp = amn->amn_tx_rate0 |
    225        1.1   dyoung 			rt->info[amn->amn_tx_rix0].shortPreamble;
    226        1.1   dyoung 		if (sc->sc_mrretry) {
    227        1.1   dyoung 			amn->amn_tx_try0 = 1;
    228        1.1   dyoung 			amn->amn_tx_try1 = 1;
    229        1.1   dyoung 			amn->amn_tx_try2 = 1;
    230        1.1   dyoung 			amn->amn_tx_try3 = 1;
    231        1.1   dyoung 			if (--rate >= 0) {
    232        1.1   dyoung 				rix = sc->sc_rixmap[
    233        1.1   dyoung 						    ni->ni_rates.rs_rates[rate]&IEEE80211_RATE_VAL];
    234        1.1   dyoung 				amn->amn_tx_rate1 = rt->info[rix].rateCode;
    235        1.1   dyoung 				amn->amn_tx_rate1sp = amn->amn_tx_rate1 |
    236        1.1   dyoung 					rt->info[rix].shortPreamble;
    237        1.1   dyoung 			} else {
    238        1.1   dyoung 				amn->amn_tx_rate1 = amn->amn_tx_rate1sp = 0;
    239        1.1   dyoung 			}
    240        1.1   dyoung 			if (--rate >= 0) {
    241        1.1   dyoung 				rix = sc->sc_rixmap[
    242        1.1   dyoung 						    ni->ni_rates.rs_rates[rate]&IEEE80211_RATE_VAL];
    243        1.1   dyoung 				amn->amn_tx_rate2 = rt->info[rix].rateCode;
    244        1.1   dyoung 				amn->amn_tx_rate2sp = amn->amn_tx_rate2 |
    245        1.1   dyoung 					rt->info[rix].shortPreamble;
    246        1.1   dyoung 			} else {
    247        1.1   dyoung 				amn->amn_tx_rate2 = amn->amn_tx_rate2sp = 0;
    248        1.1   dyoung 			}
    249        1.1   dyoung 			if (rate > 0) {
    250        1.1   dyoung 				/* NB: only do this if we didn't already do it above */
    251        1.1   dyoung 				amn->amn_tx_rate3 = rt->info[0].rateCode;
    252        1.1   dyoung 				amn->amn_tx_rate3sp =
    253        1.7   dyoung 					an->an_tx_rate3 | rt->info[0].shortPreamble;
    254        1.1   dyoung 			} else {
    255        1.1   dyoung 				amn->amn_tx_rate3 = amn->amn_tx_rate3sp = 0;
    256        1.1   dyoung 			}
    257        1.1   dyoung 		} else {
    258        1.1   dyoung 			amn->amn_tx_try0 = ATH_TXMAXTRY;
    259        1.1   dyoung 			/* theorically, these statements are useless because
    260        1.1   dyoung 			 *  the code which uses them tests for an_tx_try0 == ATH_TXMAXTRY
    261        1.1   dyoung 			 */
    262        1.1   dyoung 			amn->amn_tx_try1 = 0;
    263        1.1   dyoung 			amn->amn_tx_try2 = 0;
    264        1.1   dyoung 			amn->amn_tx_try3 = 0;
    265        1.1   dyoung 			amn->amn_tx_rate1 = amn->amn_tx_rate1sp = 0;
    266        1.1   dyoung 			amn->amn_tx_rate2 = amn->amn_tx_rate2sp = 0;
    267        1.1   dyoung 			amn->amn_tx_rate3 = amn->amn_tx_rate3sp = 0;
    268        1.1   dyoung 		}
    269        1.1   dyoung 	}
    270        1.1   dyoung 	node_reset (amn);
    271        1.1   dyoung }
    272        1.1   dyoung 
    273        1.1   dyoung /*
    274        1.1   dyoung  * Set the starting transmit rate for a node.
    275        1.1   dyoung  */
    276        1.1   dyoung static void
    277        1.1   dyoung ath_rate_ctl_start(struct ath_softc *sc, struct ieee80211_node *ni)
    278        1.1   dyoung {
    279        1.1   dyoung #define	RATE(_ix)	(ni->ni_rates.rs_rates[(_ix)] & IEEE80211_RATE_VAL)
    280        1.1   dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    281        1.1   dyoung 	int srate;
    282        1.1   dyoung 
    283        1.1   dyoung 	KASSERT(ni->ni_rates.rs_nrates > 0, ("no rates"));
    284        1.5    skrll 	if (ic->ic_fixed_rate == IEEE80211_FIXED_RATE_NONE) {
    285        1.1   dyoung 		/*
    286        1.1   dyoung 		 * No fixed rate is requested. For 11b start with
    287        1.1   dyoung 		 * the highest negotiated rate; otherwise, for 11g
    288        1.1   dyoung 		 * and 11a, we start "in the middle" at 24Mb or 36Mb.
    289        1.1   dyoung 		 */
    290        1.1   dyoung 		srate = ni->ni_rates.rs_nrates - 1;
    291        1.1   dyoung 		if (sc->sc_curmode != IEEE80211_MODE_11B) {
    292        1.1   dyoung 			/*
    293        1.1   dyoung 			 * Scan the negotiated rate set to find the
    294        1.1   dyoung 			 * closest rate.
    295        1.1   dyoung 			 */
    296        1.1   dyoung 			/* NB: the rate set is assumed sorted */
    297        1.1   dyoung 			for (; srate >= 0 && RATE(srate) > 72; srate--)
    298        1.1   dyoung 				;
    299        1.1   dyoung 			KASSERT(srate >= 0, ("bogus rate set"));
    300        1.1   dyoung 		}
    301        1.1   dyoung 	} else {
    302        1.1   dyoung 		/*
    303        1.1   dyoung 		 * A fixed rate is to be used; ic_fixed_rate is an
    304        1.1   dyoung 		 * index into the supported rate set.  Convert this
    305        1.1   dyoung 		 * to the index into the negotiated rate set for
    306        1.1   dyoung 		 * the node.  We know the rate is there because the
    307        1.1   dyoung 		 * rate set is checked when the station associates.
    308        1.1   dyoung 		 */
    309        1.1   dyoung 		const struct ieee80211_rateset *rs =
    310        1.1   dyoung 			&ic->ic_sup_rates[ic->ic_curmode];
    311        1.1   dyoung 		int r = rs->rs_rates[ic->ic_fixed_rate] & IEEE80211_RATE_VAL;
    312        1.1   dyoung 		/* NB: the rate set is assumed sorted */
    313        1.1   dyoung 		srate = ni->ni_rates.rs_nrates - 1;
    314        1.1   dyoung 		for (; srate >= 0 && RATE(srate) != r; srate--)
    315        1.1   dyoung 			;
    316        1.1   dyoung 		KASSERT(srate >= 0,
    317        1.1   dyoung 			("fixed rate %d not in rate set", ic->ic_fixed_rate));
    318        1.1   dyoung 	}
    319        1.1   dyoung 	ath_rate_update(sc, ni, srate);
    320        1.1   dyoung #undef RATE
    321        1.1   dyoung }
    322        1.1   dyoung 
    323        1.1   dyoung static void
    324        1.1   dyoung ath_rate_cb(void *arg, struct ieee80211_node *ni)
    325        1.1   dyoung {
    326        1.1   dyoung 	struct ath_softc *sc = arg;
    327        1.1   dyoung 
    328        1.1   dyoung 	ath_rate_update(sc, ni, 0);
    329        1.1   dyoung }
    330        1.1   dyoung 
    331        1.1   dyoung /*
    332        1.1   dyoung  * Reset the rate control state for each 802.11 state transition.
    333        1.1   dyoung  */
    334        1.1   dyoung void
    335        1.1   dyoung ath_rate_newstate(struct ath_softc *sc, enum ieee80211_state state)
    336        1.1   dyoung {
    337        1.1   dyoung 	struct amrr_softc *asc = (struct amrr_softc *) sc->sc_rc;
    338        1.1   dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    339        1.1   dyoung 	struct ieee80211_node *ni;
    340        1.1   dyoung 
    341        1.1   dyoung 	if (state == IEEE80211_S_INIT) {
    342        1.1   dyoung 		callout_stop(&asc->timer);
    343        1.1   dyoung 		return;
    344        1.1   dyoung 	}
    345        1.1   dyoung 	if (ic->ic_opmode == IEEE80211_M_STA) {
    346        1.1   dyoung 		/*
    347        1.1   dyoung 		 * Reset local xmit state; this is really only
    348        1.1   dyoung 		 * meaningful when operating in station mode.
    349        1.1   dyoung 		 */
    350        1.1   dyoung 		ni = ic->ic_bss;
    351        1.1   dyoung 		if (state == IEEE80211_S_RUN) {
    352        1.1   dyoung 			ath_rate_ctl_start(sc, ni);
    353        1.1   dyoung 		} else {
    354        1.1   dyoung 			ath_rate_update(sc, ni, 0);
    355        1.1   dyoung 		}
    356        1.1   dyoung 	} else {
    357        1.1   dyoung 		/*
    358        1.1   dyoung 		 * When operating as a station the node table holds
    359        1.1   dyoung 		 * the AP's that were discovered during scanning.
    360        1.1   dyoung 		 * For any other operating mode we want to reset the
    361        1.1   dyoung 		 * tx rate state of each node.
    362        1.1   dyoung 		 */
    363        1.1   dyoung 		ieee80211_iterate_nodes(&ic->ic_sta, ath_rate_cb, sc);
    364        1.1   dyoung 		ath_rate_update(sc, ic->ic_bss, 0);
    365        1.1   dyoung 	}
    366        1.5    skrll 	if (ic->ic_fixed_rate == IEEE80211_FIXED_RATE_NONE &&
    367        1.5    skrll 	    state == IEEE80211_S_RUN) {
    368        1.1   dyoung 		int interval;
    369        1.1   dyoung 		/*
    370        1.1   dyoung 		 * Start the background rate control thread if we
    371        1.1   dyoung 		 * are not configured to use a fixed xmit rate.
    372        1.1   dyoung 		 */
    373        1.1   dyoung 		interval = ath_rateinterval;
    374        1.1   dyoung 		if (ic->ic_opmode == IEEE80211_M_STA)
    375        1.1   dyoung 			interval /= 2;
    376        1.1   dyoung 		callout_reset(&asc->timer, (interval * hz) / 1000,
    377        1.1   dyoung 			ath_ratectl, &sc->sc_if);
    378        1.1   dyoung 	}
    379        1.1   dyoung }
    380        1.1   dyoung 
    381        1.1   dyoung /*
    382        1.1   dyoung  * Examine and potentially adjust the transmit rate.
    383        1.1   dyoung  */
    384        1.1   dyoung static void
    385        1.1   dyoung ath_rate_ctl(void *arg, struct ieee80211_node *ni)
    386        1.1   dyoung {
    387        1.1   dyoung 	struct ath_softc *sc = arg;
    388        1.1   dyoung 	struct amrr_node *amn = ATH_NODE_AMRR(ATH_NODE (ni));
    389        1.1   dyoung 	int old_rate;
    390        1.1   dyoung 
    391        1.1   dyoung #define is_success(amn) \
    392        1.1   dyoung (amn->amn_tx_try1_cnt  < (amn->amn_tx_try0_cnt/10))
    393        1.1   dyoung #define is_enough(amn) \
    394        1.1   dyoung (amn->amn_tx_try0_cnt > 10)
    395        1.1   dyoung #define is_failure(amn) \
    396        1.1   dyoung (amn->amn_tx_try1_cnt > (amn->amn_tx_try0_cnt/3))
    397        1.1   dyoung #define is_max_rate(ni) \
    398        1.1   dyoung ((ni->ni_txrate + 1) >= ni->ni_rates.rs_nrates)
    399        1.1   dyoung #define is_min_rate(ni) \
    400        1.1   dyoung (ni->ni_txrate == 0)
    401        1.1   dyoung 
    402        1.1   dyoung 	old_rate = ni->ni_txrate;
    403        1.1   dyoung 
    404        1.1   dyoung   	DPRINTF (sc, "cnt0: %d cnt1: %d cnt2: %d cnt3: %d -- threshold: %d\n",
    405        1.1   dyoung 		 amn->amn_tx_try0_cnt,
    406        1.1   dyoung 		 amn->amn_tx_try1_cnt,
    407        1.1   dyoung 		 amn->amn_tx_try2_cnt,
    408        1.1   dyoung 		 amn->amn_tx_try3_cnt,
    409        1.1   dyoung 		 amn->amn_success_threshold);
    410        1.1   dyoung   	if (is_success (amn) && is_enough (amn)) {
    411        1.1   dyoung 		amn->amn_success++;
    412        1.1   dyoung 		if (amn->amn_success == amn->amn_success_threshold &&
    413        1.1   dyoung   		    !is_max_rate (ni)) {
    414        1.1   dyoung   			amn->amn_recovery = 1;
    415        1.1   dyoung   			amn->amn_success = 0;
    416        1.1   dyoung   			ni->ni_txrate++;
    417        1.1   dyoung 			DPRINTF (sc, "increase rate to %d\n", ni->ni_txrate);
    418        1.1   dyoung   		} else {
    419        1.1   dyoung 			amn->amn_recovery = 0;
    420        1.1   dyoung 		}
    421        1.1   dyoung   	} else if (is_failure (amn)) {
    422        1.1   dyoung   		amn->amn_success = 0;
    423        1.1   dyoung   		if (!is_min_rate (ni)) {
    424        1.1   dyoung   			if (amn->amn_recovery) {
    425        1.1   dyoung   				/* recovery failure. */
    426        1.1   dyoung   				amn->amn_success_threshold *= 2;
    427        1.1   dyoung   				amn->amn_success_threshold = min (amn->amn_success_threshold,
    428        1.1   dyoung 								  (u_int)ath_rate_max_success_threshold);
    429        1.1   dyoung  				DPRINTF (sc, "decrease rate recovery thr: %d\n", amn->amn_success_threshold);
    430        1.1   dyoung   			} else {
    431        1.1   dyoung   				/* simple failure. */
    432        1.1   dyoung  				amn->amn_success_threshold = ath_rate_min_success_threshold;
    433        1.1   dyoung  				DPRINTF (sc, "decrease rate normal thr: %d\n", amn->amn_success_threshold);
    434        1.1   dyoung   			}
    435        1.1   dyoung 			amn->amn_recovery = 0;
    436        1.1   dyoung   			ni->ni_txrate--;
    437        1.1   dyoung    		} else {
    438        1.1   dyoung 			amn->amn_recovery = 0;
    439        1.1   dyoung 		}
    440        1.1   dyoung 
    441        1.1   dyoung    	}
    442        1.1   dyoung 	if (is_enough (amn) || old_rate != ni->ni_txrate) {
    443        1.1   dyoung 		/* reset counters. */
    444        1.1   dyoung 		amn->amn_tx_try0_cnt = 0;
    445        1.1   dyoung 		amn->amn_tx_try1_cnt = 0;
    446        1.1   dyoung 		amn->amn_tx_try2_cnt = 0;
    447        1.1   dyoung 		amn->amn_tx_try3_cnt = 0;
    448        1.1   dyoung 		amn->amn_tx_failure_cnt = 0;
    449        1.1   dyoung 	}
    450        1.1   dyoung 	if (old_rate != ni->ni_txrate) {
    451        1.1   dyoung 		ath_rate_update(sc, ni, ni->ni_txrate);
    452        1.1   dyoung 	}
    453        1.1   dyoung }
    454        1.1   dyoung 
    455        1.1   dyoung static void
    456        1.1   dyoung ath_ratectl(void *arg)
    457        1.1   dyoung {
    458        1.1   dyoung 	struct ifnet *ifp = arg;
    459        1.1   dyoung 	struct ath_softc *sc = ifp->if_softc;
    460        1.1   dyoung 	struct amrr_softc *asc = (struct amrr_softc *) sc->sc_rc;
    461        1.1   dyoung 	struct ieee80211com *ic = &sc->sc_ic;
    462        1.1   dyoung 	int interval;
    463        1.1   dyoung 
    464        1.5    skrll 	if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
    465        1.1   dyoung 		sc->sc_stats.ast_rate_calls++;
    466        1.1   dyoung 
    467        1.1   dyoung 		if (ic->ic_opmode == IEEE80211_M_STA)
    468        1.1   dyoung 			ath_rate_ctl(sc, ic->ic_bss);	/* NB: no reference */
    469        1.1   dyoung 		else
    470        1.1   dyoung 			ieee80211_iterate_nodes(&ic->ic_sta, ath_rate_ctl, sc);
    471        1.1   dyoung 	}
    472        1.1   dyoung 	interval = ath_rateinterval;
    473        1.1   dyoung 	if (ic->ic_opmode == IEEE80211_M_STA)
    474        1.1   dyoung 		interval /= 2;
    475        1.1   dyoung 	callout_reset(&asc->timer, (interval * hz) / 1000,
    476        1.1   dyoung 		ath_ratectl, &sc->sc_if);
    477        1.1   dyoung }
    478        1.1   dyoung 
    479        1.1   dyoung static void
    480        1.1   dyoung ath_rate_sysctlattach(struct ath_softc *sc)
    481        1.1   dyoung {
    482        1.1   dyoung 	struct sysctl_ctx_list *ctx = device_get_sysctl_ctx(sc->sc_dev);
    483        1.1   dyoung 	struct sysctl_oid *tree = device_get_sysctl_tree(sc->sc_dev);
    484        1.1   dyoung 
    485        1.1   dyoung 	SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
    486        1.1   dyoung 		"rate_interval", CTLFLAG_RW, &ath_rateinterval, 0,
    487        1.1   dyoung 		"rate control: operation interval (ms)");
    488        1.1   dyoung 	/* XXX bounds check values */
    489        1.1   dyoung 	SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
    490        1.1   dyoung 		"max_sucess_threshold", CTLFLAG_RW,
    491        1.1   dyoung 		&ath_rate_max_success_threshold, 0, "");
    492        1.1   dyoung 	SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
    493        1.1   dyoung 		"min_sucess_threshold", CTLFLAG_RW,
    494        1.1   dyoung 		&ath_rate_min_success_threshold, 0, "");
    495        1.1   dyoung }
    496        1.1   dyoung 
    497        1.1   dyoung struct ath_ratectrl *
    498        1.1   dyoung ath_rate_attach(struct ath_softc *sc)
    499        1.1   dyoung {
    500        1.1   dyoung 	struct amrr_softc *asc;
    501        1.1   dyoung 
    502        1.1   dyoung 	asc = malloc(sizeof(struct amrr_softc), M_DEVBUF, M_NOWAIT|M_ZERO);
    503        1.1   dyoung 	if (asc == NULL)
    504        1.1   dyoung 		return NULL;
    505        1.1   dyoung 	asc->arc.arc_space = sizeof(struct amrr_node);
    506        1.1   dyoung 	callout_init(&asc->timer, debug_mpsafenet ? CALLOUT_MPSAFE : 0);
    507        1.1   dyoung 	ath_rate_sysctlattach(sc);
    508        1.1   dyoung 
    509        1.1   dyoung 	return &asc->arc;
    510        1.1   dyoung }
    511        1.1   dyoung 
    512        1.1   dyoung void
    513        1.1   dyoung ath_rate_detach(struct ath_ratectrl *arc)
    514        1.1   dyoung {
    515        1.1   dyoung 	struct amrr_softc *asc = (struct amrr_softc *) arc;
    516        1.1   dyoung 
    517        1.1   dyoung 	callout_drain(&asc->timer);
    518        1.1   dyoung 	free(asc, M_DEVBUF);
    519        1.1   dyoung }
    520