xref: /freebsd/sys/dev/ath/ath_rate/sample/sample.c (revision 38fda92679e6b688e18d12435e82b97f699a8549)
1fa20c234SSam Leffler /*-
2fa20c234SSam Leffler  * Copyright (c) 2005 John Bicket
3fa20c234SSam Leffler  * All rights reserved.
4fa20c234SSam Leffler  *
5fa20c234SSam Leffler  * Redistribution and use in source and binary forms, with or without
6fa20c234SSam Leffler  * modification, are permitted provided that the following conditions
7fa20c234SSam Leffler  * are met:
8fa20c234SSam Leffler  * 1. Redistributions of source code must retain the above copyright
9fa20c234SSam Leffler  *    notice, this list of conditions and the following disclaimer,
10fa20c234SSam Leffler  *    without modification.
11fa20c234SSam Leffler  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
12fa20c234SSam Leffler  *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
13fa20c234SSam Leffler  *    redistribution must be conditioned upon including a substantially
14fa20c234SSam Leffler  *    similar Disclaimer requirement for further binary redistribution.
15fa20c234SSam Leffler  * 3. Neither the names of the above-listed copyright holders nor the names
16fa20c234SSam Leffler  *    of any contributors may be used to endorse or promote products derived
17fa20c234SSam Leffler  *    from this software without specific prior written permission.
18fa20c234SSam Leffler  *
19fa20c234SSam Leffler  * Alternatively, this software may be distributed under the terms of the
20fa20c234SSam Leffler  * GNU General Public License ("GPL") version 2 as published by the Free
21fa20c234SSam Leffler  * Software Foundation.
22fa20c234SSam Leffler  *
23fa20c234SSam Leffler  * NO WARRANTY
24fa20c234SSam Leffler  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
25fa20c234SSam Leffler  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
26fa20c234SSam Leffler  * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
27fa20c234SSam Leffler  * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
28fa20c234SSam Leffler  * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
29fa20c234SSam Leffler  * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
30fa20c234SSam Leffler  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
31fa20c234SSam Leffler  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
32fa20c234SSam Leffler  * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
33fa20c234SSam Leffler  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
34fa20c234SSam Leffler  * THE POSSIBILITY OF SUCH DAMAGES.
3568e8e04eSSam Leffler  *
36fa20c234SSam Leffler  */
37fa20c234SSam Leffler 
38fa20c234SSam Leffler #include <sys/cdefs.h>
39fa20c234SSam Leffler __FBSDID("$FreeBSD$");
40fa20c234SSam Leffler 
41fa20c234SSam Leffler /*
42fa20c234SSam Leffler  * John Bicket's SampleRate control algorithm.
43fa20c234SSam Leffler  */
44c312fb4aSAdrian Chadd #include "opt_ath.h"
45fa20c234SSam Leffler #include "opt_inet.h"
46b032f27cSSam Leffler #include "opt_wlan.h"
4787acb7d5SAdrian Chadd #include "opt_ah.h"
48fa20c234SSam Leffler 
49fa20c234SSam Leffler #include <sys/param.h>
50fa20c234SSam Leffler #include <sys/systm.h>
51fa20c234SSam Leffler #include <sys/sysctl.h>
52fa20c234SSam Leffler #include <sys/kernel.h>
53fa20c234SSam Leffler #include <sys/lock.h>
54fa20c234SSam Leffler #include <sys/mutex.h>
55fa20c234SSam Leffler #include <sys/errno.h>
56fa20c234SSam Leffler 
57fa20c234SSam Leffler #include <machine/bus.h>
58fa20c234SSam Leffler #include <machine/resource.h>
59fa20c234SSam Leffler #include <sys/bus.h>
60fa20c234SSam Leffler 
61fa20c234SSam Leffler #include <sys/socket.h>
62fa20c234SSam Leffler 
63fa20c234SSam Leffler #include <net/if.h>
64fa20c234SSam Leffler #include <net/if_media.h>
65fa20c234SSam Leffler #include <net/if_arp.h>
66c1565b61SSam Leffler #include <net/ethernet.h>		/* XXX for ether_sprintf */
67fa20c234SSam Leffler 
68fa20c234SSam Leffler #include <net80211/ieee80211_var.h>
69fa20c234SSam Leffler 
70fa20c234SSam Leffler #include <net/bpf.h>
71fa20c234SSam Leffler 
72fa20c234SSam Leffler #ifdef INET
73fa20c234SSam Leffler #include <netinet/in.h>
74fa20c234SSam Leffler #include <netinet/if_ether.h>
75fa20c234SSam Leffler #endif
76fa20c234SSam Leffler 
77fa20c234SSam Leffler #include <dev/ath/if_athvar.h>
78fa20c234SSam Leffler #include <dev/ath/ath_rate/sample/sample.h>
7933644623SSam Leffler #include <dev/ath/ath_hal/ah_desc.h>
80a6a308a4SAdrian Chadd #include <dev/ath/ath_rate/sample/tx_schedules.h>
81fa20c234SSam Leffler 
82fa20c234SSam Leffler /*
83fa20c234SSam Leffler  * This file is an implementation of the SampleRate algorithm
84fa20c234SSam Leffler  * in "Bit-rate Selection in Wireless Networks"
85fa20c234SSam Leffler  * (http://www.pdos.lcs.mit.edu/papers/jbicket-ms.ps)
86fa20c234SSam Leffler  *
87fa20c234SSam Leffler  * SampleRate chooses the bit-rate it predicts will provide the most
88fa20c234SSam Leffler  * throughput based on estimates of the expected per-packet
89fa20c234SSam Leffler  * transmission time for each bit-rate.  SampleRate periodically sends
90fa20c234SSam Leffler  * packets at bit-rates other than the current one to estimate when
91fa20c234SSam Leffler  * another bit-rate will provide better performance. SampleRate
92fa20c234SSam Leffler  * switches to another bit-rate when its estimated per-packet
93fa20c234SSam Leffler  * transmission time becomes smaller than the current bit-rate's.
94fa20c234SSam Leffler  * SampleRate reduces the number of bit-rates it must sample by
95fa20c234SSam Leffler  * eliminating those that could not perform better than the one
96fa20c234SSam Leffler  * currently being used.  SampleRate also stops probing at a bit-rate
97fa20c234SSam Leffler  * if it experiences several successive losses.
98fa20c234SSam Leffler  *
99fa20c234SSam Leffler  * The difference between the algorithm in the thesis and the one in this
100fa20c234SSam Leffler  * file is that the one in this file uses a ewma instead of a window.
101fa20c234SSam Leffler  *
102b91bf513SSam Leffler  * Also, this implementation tracks the average transmission time for
103b91bf513SSam Leffler  * a few different packet sizes independently for each link.
104fa20c234SSam Leffler  */
105fa20c234SSam Leffler 
106b2763056SSam Leffler static void	ath_rate_ctl_reset(struct ath_softc *, struct ieee80211_node *);
107fa20c234SSam Leffler 
108b91bf513SSam Leffler static __inline int
109b91bf513SSam Leffler size_to_bin(int size)
110fa20c234SSam Leffler {
111c1565b61SSam Leffler #if NUM_PACKET_SIZE_BINS > 1
112c1565b61SSam Leffler 	if (size <= packet_size_bins[0])
113c1565b61SSam Leffler 		return 0;
114c1565b61SSam Leffler #endif
115c1565b61SSam Leffler #if NUM_PACKET_SIZE_BINS > 2
116c1565b61SSam Leffler 	if (size <= packet_size_bins[1])
117c1565b61SSam Leffler 		return 1;
118c1565b61SSam Leffler #endif
119c1565b61SSam Leffler #if NUM_PACKET_SIZE_BINS > 3
120c1565b61SSam Leffler 	if (size <= packet_size_bins[2])
121c1565b61SSam Leffler 		return 2;
122c1565b61SSam Leffler #endif
123c1565b61SSam Leffler #if NUM_PACKET_SIZE_BINS > 4
124c1565b61SSam Leffler #error "add support for more packet sizes"
125c1565b61SSam Leffler #endif
126fa20c234SSam Leffler 	return NUM_PACKET_SIZE_BINS-1;
127fa20c234SSam Leffler }
128fa20c234SSam Leffler 
129fa20c234SSam Leffler void
130fa20c234SSam Leffler ath_rate_node_init(struct ath_softc *sc, struct ath_node *an)
131fa20c234SSam Leffler {
132fa20c234SSam Leffler 	/* NB: assumed to be zero'd by caller */
133fa20c234SSam Leffler }
134fa20c234SSam Leffler 
135fa20c234SSam Leffler void
136fa20c234SSam Leffler ath_rate_node_cleanup(struct ath_softc *sc, struct ath_node *an)
137fa20c234SSam Leffler {
138fa20c234SSam Leffler }
139fa20c234SSam Leffler 
140a6a308a4SAdrian Chadd static int
141a6a308a4SAdrian Chadd dot11rate(const HAL_RATE_TABLE *rt, int rix)
142a6a308a4SAdrian Chadd {
14387acb7d5SAdrian Chadd 	if (rix < 0)
14487acb7d5SAdrian Chadd 		return -1;
145a6a308a4SAdrian Chadd 	return rt->info[rix].phy == IEEE80211_T_HT ?
146a6a308a4SAdrian Chadd 	    rt->info[rix].dot11Rate : (rt->info[rix].dot11Rate & IEEE80211_RATE_VAL) / 2;
147a6a308a4SAdrian Chadd }
148a6a308a4SAdrian Chadd 
149ae0944b8SAdrian Chadd static const char *
150ae0944b8SAdrian Chadd dot11rate_label(const HAL_RATE_TABLE *rt, int rix)
151ae0944b8SAdrian Chadd {
15287acb7d5SAdrian Chadd 	if (rix < 0)
15387acb7d5SAdrian Chadd 		return "";
154ae0944b8SAdrian Chadd 	return rt->info[rix].phy == IEEE80211_T_HT ? "MCS" : "Mb ";
155ae0944b8SAdrian Chadd }
156ae0944b8SAdrian Chadd 
157fa20c234SSam Leffler /*
158c1565b61SSam Leffler  * Return the rix with the lowest average_tx_time,
159fa20c234SSam Leffler  * or -1 if all the average_tx_times are 0.
160fa20c234SSam Leffler  */
161c1565b61SSam Leffler static __inline int
16236958948SAdrian Chadd pick_best_rate(struct ath_node *an, const HAL_RATE_TABLE *rt,
163c1565b61SSam Leffler     int size_bin, int require_acked_before)
164fa20c234SSam Leffler {
16536958948SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
166eb6f0de0SAdrian Chadd         int best_rate_rix, best_rate_tt, best_rate_pct;
167193bfa21SAdrian Chadd 	uint64_t mask;
168eb6f0de0SAdrian Chadd 	int rix, tt, pct;
169b91bf513SSam Leffler 
170c1565b61SSam Leffler         best_rate_rix = 0;
171c1565b61SSam Leffler         best_rate_tt = 0;
172eb6f0de0SAdrian Chadd 	best_rate_pct = 0;
173c1565b61SSam Leffler 	for (mask = sn->ratemask, rix = 0; mask != 0; mask >>= 1, rix++) {
174c1565b61SSam Leffler 		if ((mask & 1) == 0)		/* not a supported rate */
175c1565b61SSam Leffler 			continue;
176c1565b61SSam Leffler 
17736958948SAdrian Chadd 		/* Don't pick a non-HT rate for a HT node */
17836958948SAdrian Chadd 		if ((an->an_node.ni_flags & IEEE80211_NODE_HT) &&
17936958948SAdrian Chadd 		    (rt->info[rix].phy != IEEE80211_T_HT)) {
18036958948SAdrian Chadd 			continue;
18136958948SAdrian Chadd 		}
18236958948SAdrian Chadd 
183c1565b61SSam Leffler 		tt = sn->stats[size_bin][rix].average_tx_time;
184c1565b61SSam Leffler 		if (tt <= 0 ||
185c1565b61SSam Leffler 		    (require_acked_before &&
186c1565b61SSam Leffler 		     !sn->stats[size_bin][rix].packets_acked))
187b91bf513SSam Leffler 			continue;
188b91bf513SSam Leffler 
189eb6f0de0SAdrian Chadd 		/* Calculate percentage if possible */
190eb6f0de0SAdrian Chadd 		if (sn->stats[size_bin][rix].total_packets > 0) {
191eb6f0de0SAdrian Chadd 			pct = sn->stats[size_bin][rix].ewma_pct;
192eb6f0de0SAdrian Chadd 		} else {
193eb6f0de0SAdrian Chadd 			/* XXX for now, assume 95% ok */
194eb6f0de0SAdrian Chadd 			pct = 95;
195eb6f0de0SAdrian Chadd 		}
196eb6f0de0SAdrian Chadd 
197b91bf513SSam Leffler 		/* don't use a bit-rate that has been failing */
198c1565b61SSam Leffler 		if (sn->stats[size_bin][rix].successive_failures > 3)
199b91bf513SSam Leffler 			continue;
200b91bf513SSam Leffler 
201eb6f0de0SAdrian Chadd 		/*
202eb6f0de0SAdrian Chadd 		 * For HT, Don't use a bit rate that is much more
203eb6f0de0SAdrian Chadd 		 * lossy than the best.
204eb6f0de0SAdrian Chadd 		 *
205eb6f0de0SAdrian Chadd 		 * XXX this isn't optimal; it's just designed to
206eb6f0de0SAdrian Chadd 		 * eliminate rates that are going to be obviously
207eb6f0de0SAdrian Chadd 		 * worse.
208eb6f0de0SAdrian Chadd 		 */
209eb6f0de0SAdrian Chadd 		if (an->an_node.ni_flags & IEEE80211_NODE_HT) {
210eb6f0de0SAdrian Chadd 			if (best_rate_pct > (pct + 50))
211eb6f0de0SAdrian Chadd 				continue;
212eb6f0de0SAdrian Chadd 		}
213eb6f0de0SAdrian Chadd 
214eb6f0de0SAdrian Chadd 		/*
215eb6f0de0SAdrian Chadd 		 * For non-MCS rates, use the current average txtime for
216eb6f0de0SAdrian Chadd 		 * comparison.
217eb6f0de0SAdrian Chadd 		 */
218eb6f0de0SAdrian Chadd 		if (! (an->an_node.ni_flags & IEEE80211_NODE_HT)) {
219eb6f0de0SAdrian Chadd 			if (best_rate_tt == 0 || tt <= best_rate_tt) {
220fa20c234SSam Leffler 				best_rate_tt = tt;
221c1565b61SSam Leffler 				best_rate_rix = rix;
222eb6f0de0SAdrian Chadd 				best_rate_pct = pct;
223eb6f0de0SAdrian Chadd 			}
224eb6f0de0SAdrian Chadd 		}
225eb6f0de0SAdrian Chadd 
226eb6f0de0SAdrian Chadd 		/*
227eb6f0de0SAdrian Chadd 		 * Since 2 stream rates have slightly higher TX times,
228eb6f0de0SAdrian Chadd 		 * allow a little bit of leeway. This should later
229eb6f0de0SAdrian Chadd 		 * be abstracted out and properly handled.
230eb6f0de0SAdrian Chadd 		 */
231eb6f0de0SAdrian Chadd 		if (an->an_node.ni_flags & IEEE80211_NODE_HT) {
232eb6f0de0SAdrian Chadd 			if (best_rate_tt == 0 || (tt * 8 <= best_rate_tt * 10)) {
233eb6f0de0SAdrian Chadd 				best_rate_tt = tt;
234eb6f0de0SAdrian Chadd 				best_rate_rix = rix;
235eb6f0de0SAdrian Chadd 				best_rate_pct = pct;
236eb6f0de0SAdrian Chadd 			}
237fa20c234SSam Leffler 		}
238fa20c234SSam Leffler         }
239c1565b61SSam Leffler         return (best_rate_tt ? best_rate_rix : -1);
240fa20c234SSam Leffler }
241fa20c234SSam Leffler 
242fa20c234SSam Leffler /*
243c1565b61SSam Leffler  * Pick a good "random" bit-rate to sample other than the current one.
244fa20c234SSam Leffler  */
245b91bf513SSam Leffler static __inline int
24636958948SAdrian Chadd pick_sample_rate(struct sample_softc *ssc , struct ath_node *an,
247c1565b61SSam Leffler     const HAL_RATE_TABLE *rt, int size_bin)
248fa20c234SSam Leffler {
249c1565b61SSam Leffler #define	DOT11RATE(ix)	(rt->info[ix].dot11Rate & IEEE80211_RATE_VAL)
250a6a308a4SAdrian Chadd #define	MCS(ix)		(rt->info[ix].dot11Rate | IEEE80211_RATE_MCS)
25136958948SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
252c1565b61SSam Leffler 	int current_rix, rix;
253c1565b61SSam Leffler 	unsigned current_tt;
254193bfa21SAdrian Chadd 	uint64_t mask;
255fa20c234SSam Leffler 
256c1565b61SSam Leffler 	current_rix = sn->current_rix[size_bin];
257c1565b61SSam Leffler 	if (current_rix < 0) {
258fa20c234SSam Leffler 		/* no successes yet, send at the lowest bit-rate */
25936958948SAdrian Chadd 		/* XXX should return MCS0 if HT */
260fa20c234SSam Leffler 		return 0;
261fa20c234SSam Leffler 	}
262fa20c234SSam Leffler 
263c1565b61SSam Leffler 	current_tt = sn->stats[size_bin][current_rix].average_tx_time;
264fa20c234SSam Leffler 
265c1565b61SSam Leffler 	rix = sn->last_sample_rix[size_bin]+1;	/* next sample rate */
266193bfa21SAdrian Chadd 	mask = sn->ratemask &~ ((uint64_t) 1<<current_rix);/* don't sample current rate */
267c1565b61SSam Leffler 	while (mask != 0) {
268193bfa21SAdrian Chadd 		if ((mask & ((uint64_t) 1<<rix)) == 0) {	/* not a supported rate */
269c1565b61SSam Leffler 	nextrate:
270c1565b61SSam Leffler 			if (++rix >= rt->rateCount)
271c1565b61SSam Leffler 				rix = 0;
272b91bf513SSam Leffler 			continue;
273c1565b61SSam Leffler 		}
274b91bf513SSam Leffler 
275bf57b7b2SAdrian Chadd 		/*
276bf57b7b2SAdrian Chadd 		 * The following code stops trying to sample
277bf57b7b2SAdrian Chadd 		 * non-MCS rates when speaking to an MCS node.
278bf57b7b2SAdrian Chadd 		 * However, at least for CCK rates in 2.4GHz mode,
279bf57b7b2SAdrian Chadd 		 * the non-MCS rates MAY actually provide better
280bf57b7b2SAdrian Chadd 		 * PER at the very far edge of reception.
281bf57b7b2SAdrian Chadd 		 *
282bf57b7b2SAdrian Chadd 		 * However! Until ath_rate_form_aggr() grows
283bf57b7b2SAdrian Chadd 		 * some logic to not form aggregates if the
284bf57b7b2SAdrian Chadd 		 * selected rate is non-MCS, this won't work.
285bf57b7b2SAdrian Chadd 		 *
286bf57b7b2SAdrian Chadd 		 * So don't disable this code until you've taught
287bf57b7b2SAdrian Chadd 		 * ath_rate_form_aggr() to drop out if any of
288bf57b7b2SAdrian Chadd 		 * the selected rates are non-MCS.
289bf57b7b2SAdrian Chadd 		 */
290bf57b7b2SAdrian Chadd #if 1
29136958948SAdrian Chadd 		/* if the node is HT and the rate isn't HT, don't bother sample */
29236958948SAdrian Chadd 		if ((an->an_node.ni_flags & IEEE80211_NODE_HT) &&
29336958948SAdrian Chadd 		    (rt->info[rix].phy != IEEE80211_T_HT)) {
294193bfa21SAdrian Chadd 			mask &= ~((uint64_t) 1<<rix);
29536958948SAdrian Chadd 			goto nextrate;
29636958948SAdrian Chadd 		}
297bf57b7b2SAdrian Chadd #endif
29836958948SAdrian Chadd 
299b91bf513SSam Leffler 		/* this bit-rate is always worse than the current one */
300c1565b61SSam Leffler 		if (sn->stats[size_bin][rix].perfect_tx_time > current_tt) {
301193bfa21SAdrian Chadd 			mask &= ~((uint64_t) 1<<rix);
302c1565b61SSam Leffler 			goto nextrate;
303c1565b61SSam Leffler 		}
304b91bf513SSam Leffler 
305b91bf513SSam Leffler 		/* rarely sample bit-rates that fail a lot */
306c1565b61SSam Leffler 		if (sn->stats[size_bin][rix].successive_failures > ssc->max_successive_failures &&
307c1565b61SSam Leffler 		    ticks - sn->stats[size_bin][rix].last_tx < ssc->stale_failure_timeout) {
308193bfa21SAdrian Chadd 			mask &= ~((uint64_t) 1<<rix);
309c1565b61SSam Leffler 			goto nextrate;
310fa20c234SSam Leffler 		}
311c1565b61SSam Leffler 
312eb6f0de0SAdrian Chadd 		/*
313e69db8dfSAdrian Chadd 		 * For HT, only sample a few rates on either side of the
314e69db8dfSAdrian Chadd 		 * current rix; there's quite likely a lot of them.
315eb6f0de0SAdrian Chadd 		 */
316eb6f0de0SAdrian Chadd 		if (an->an_node.ni_flags & IEEE80211_NODE_HT) {
317e69db8dfSAdrian Chadd 			if (rix < (current_rix - 3) ||
318e69db8dfSAdrian Chadd 			    rix > (current_rix + 3)) {
319193bfa21SAdrian Chadd 				mask &= ~((uint64_t) 1<<rix);
320eb6f0de0SAdrian Chadd 				goto nextrate;
321eb6f0de0SAdrian Chadd 			}
322eb6f0de0SAdrian Chadd 		}
323eb6f0de0SAdrian Chadd 
32436958948SAdrian Chadd 		/* Don't sample more than 2 rates higher for rates > 11M for non-HT rates */
32536958948SAdrian Chadd 		if (! (an->an_node.ni_flags & IEEE80211_NODE_HT)) {
326c1565b61SSam Leffler 			if (DOT11RATE(rix) > 2*11 && rix > current_rix + 2) {
327193bfa21SAdrian Chadd 				mask &= ~((uint64_t) 1<<rix);
328c1565b61SSam Leffler 				goto nextrate;
329c1565b61SSam Leffler 			}
33036958948SAdrian Chadd 		}
331c1565b61SSam Leffler 
332c1565b61SSam Leffler 		sn->last_sample_rix[size_bin] = rix;
333c1565b61SSam Leffler 		return rix;
334c1565b61SSam Leffler 	}
335c1565b61SSam Leffler 	return current_rix;
336c1565b61SSam Leffler #undef DOT11RATE
337a6a308a4SAdrian Chadd #undef	MCS
338fa20c234SSam Leffler }
339fa20c234SSam Leffler 
340c4ac32a8SAdrian Chadd static int
341c4ac32a8SAdrian Chadd ath_rate_get_static_rix(struct ath_softc *sc, const struct ieee80211_node *ni)
342c4ac32a8SAdrian Chadd {
343c4ac32a8SAdrian Chadd #define	RATE(_ix)	(ni->ni_rates.rs_rates[(_ix)] & IEEE80211_RATE_VAL)
344c4ac32a8SAdrian Chadd #define	DOT11RATE(_ix)	(rt->info[(_ix)].dot11Rate & IEEE80211_RATE_VAL)
345c4ac32a8SAdrian Chadd #define	MCS(_ix)	(ni->ni_htrates.rs_rates[_ix] | IEEE80211_RATE_MCS)
346c4ac32a8SAdrian Chadd 	const struct ieee80211_txparam *tp = ni->ni_txparms;
347c4ac32a8SAdrian Chadd 	int srate;
348c4ac32a8SAdrian Chadd 
349c4ac32a8SAdrian Chadd 	/* Check MCS rates */
350c4ac32a8SAdrian Chadd 	for (srate = ni->ni_htrates.rs_nrates - 1; srate >= 0; srate--) {
351c4ac32a8SAdrian Chadd 		if (MCS(srate) == tp->ucastrate)
352c4ac32a8SAdrian Chadd 			return sc->sc_rixmap[tp->ucastrate];
353c4ac32a8SAdrian Chadd 	}
354c4ac32a8SAdrian Chadd 
355c4ac32a8SAdrian Chadd 	/* Check legacy rates */
356c4ac32a8SAdrian Chadd 	for (srate = ni->ni_rates.rs_nrates - 1; srate >= 0; srate--) {
357c4ac32a8SAdrian Chadd 		if (RATE(srate) == tp->ucastrate)
358c4ac32a8SAdrian Chadd 			return sc->sc_rixmap[tp->ucastrate];
359c4ac32a8SAdrian Chadd 	}
360c4ac32a8SAdrian Chadd 	return -1;
361c4ac32a8SAdrian Chadd #undef	RATE
362c4ac32a8SAdrian Chadd #undef	DOT11RATE
363c4ac32a8SAdrian Chadd #undef	MCS
364c4ac32a8SAdrian Chadd }
365c4ac32a8SAdrian Chadd 
366c4ac32a8SAdrian Chadd static void
367c4ac32a8SAdrian Chadd ath_rate_update_static_rix(struct ath_softc *sc, struct ieee80211_node *ni)
368c4ac32a8SAdrian Chadd {
369c4ac32a8SAdrian Chadd 	struct ath_node *an = ATH_NODE(ni);
370c4ac32a8SAdrian Chadd 	const struct ieee80211_txparam *tp = ni->ni_txparms;
371c4ac32a8SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
372c4ac32a8SAdrian Chadd 
373c4ac32a8SAdrian Chadd 	if (tp != NULL && tp->ucastrate != IEEE80211_FIXED_RATE_NONE) {
374c4ac32a8SAdrian Chadd 		/*
375c4ac32a8SAdrian Chadd 		 * A fixed rate is to be used; ucastrate is the IEEE code
376c4ac32a8SAdrian Chadd 		 * for this rate (sans basic bit).  Check this against the
377c4ac32a8SAdrian Chadd 		 * negotiated rate set for the node.  Note the fixed rate
378c4ac32a8SAdrian Chadd 		 * may not be available for various reasons so we only
379c4ac32a8SAdrian Chadd 		 * setup the static rate index if the lookup is successful.
380c4ac32a8SAdrian Chadd 		 */
381c4ac32a8SAdrian Chadd 		sn->static_rix = ath_rate_get_static_rix(sc, ni);
382c4ac32a8SAdrian Chadd 	} else {
383c4ac32a8SAdrian Chadd 		sn->static_rix = -1;
384c4ac32a8SAdrian Chadd 	}
385c4ac32a8SAdrian Chadd }
386c4ac32a8SAdrian Chadd 
387eb6f0de0SAdrian Chadd /*
388eb6f0de0SAdrian Chadd  * Pick a non-HT rate to begin using.
389eb6f0de0SAdrian Chadd  */
390eb6f0de0SAdrian Chadd static int
391eb6f0de0SAdrian Chadd ath_rate_pick_seed_rate_legacy(struct ath_softc *sc, struct ath_node *an,
392eb6f0de0SAdrian Chadd     int frameLen)
393eb6f0de0SAdrian Chadd {
394eb6f0de0SAdrian Chadd #define	DOT11RATE(ix)	(rt->info[ix].dot11Rate & IEEE80211_RATE_VAL)
395eb6f0de0SAdrian Chadd #define	MCS(ix)		(rt->info[ix].dot11Rate | IEEE80211_RATE_MCS)
396eb6f0de0SAdrian Chadd #define	RATE(ix)	(DOT11RATE(ix) / 2)
397eb6f0de0SAdrian Chadd 	int rix = -1;
398eb6f0de0SAdrian Chadd 	const HAL_RATE_TABLE *rt = sc->sc_currates;
399eb6f0de0SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
400eb6f0de0SAdrian Chadd 	const int size_bin = size_to_bin(frameLen);
401eb6f0de0SAdrian Chadd 
402eb6f0de0SAdrian Chadd 	/* no packet has been sent successfully yet */
403eb6f0de0SAdrian Chadd 	for (rix = rt->rateCount-1; rix > 0; rix--) {
404193bfa21SAdrian Chadd 		if ((sn->ratemask & ((uint64_t) 1<<rix)) == 0)
405eb6f0de0SAdrian Chadd 			continue;
406eb6f0de0SAdrian Chadd 
407eb6f0de0SAdrian Chadd 		/* Skip HT rates */
408eb6f0de0SAdrian Chadd 		if (rt->info[rix].phy == IEEE80211_T_HT)
409eb6f0de0SAdrian Chadd 			continue;
410eb6f0de0SAdrian Chadd 
411eb6f0de0SAdrian Chadd 		/*
412eb6f0de0SAdrian Chadd 		 * Pick the highest rate <= 36 Mbps
413eb6f0de0SAdrian Chadd 		 * that hasn't failed.
414eb6f0de0SAdrian Chadd 		 */
415eb6f0de0SAdrian Chadd 		if (DOT11RATE(rix) <= 72 &&
416eb6f0de0SAdrian Chadd 		    sn->stats[size_bin][rix].successive_failures == 0) {
417eb6f0de0SAdrian Chadd 			break;
418eb6f0de0SAdrian Chadd 		}
419eb6f0de0SAdrian Chadd 	}
420eb6f0de0SAdrian Chadd 	return rix;
421eb6f0de0SAdrian Chadd #undef	RATE
422eb6f0de0SAdrian Chadd #undef	MCS
423eb6f0de0SAdrian Chadd #undef	DOT11RATE
424eb6f0de0SAdrian Chadd }
425eb6f0de0SAdrian Chadd 
426eb6f0de0SAdrian Chadd /*
427eb6f0de0SAdrian Chadd  * Pick a HT rate to begin using.
428eb6f0de0SAdrian Chadd  *
429eb6f0de0SAdrian Chadd  * Don't use any non-HT rates; only consider HT rates.
430eb6f0de0SAdrian Chadd  */
431eb6f0de0SAdrian Chadd static int
432eb6f0de0SAdrian Chadd ath_rate_pick_seed_rate_ht(struct ath_softc *sc, struct ath_node *an,
433eb6f0de0SAdrian Chadd     int frameLen)
434eb6f0de0SAdrian Chadd {
435eb6f0de0SAdrian Chadd #define	DOT11RATE(ix)	(rt->info[ix].dot11Rate & IEEE80211_RATE_VAL)
436eb6f0de0SAdrian Chadd #define	MCS(ix)		(rt->info[ix].dot11Rate | IEEE80211_RATE_MCS)
437eb6f0de0SAdrian Chadd #define	RATE(ix)	(DOT11RATE(ix) / 2)
438eb6f0de0SAdrian Chadd 	int rix = -1, ht_rix = -1;
439eb6f0de0SAdrian Chadd 	const HAL_RATE_TABLE *rt = sc->sc_currates;
440eb6f0de0SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
441eb6f0de0SAdrian Chadd 	const int size_bin = size_to_bin(frameLen);
442eb6f0de0SAdrian Chadd 
443eb6f0de0SAdrian Chadd 	/* no packet has been sent successfully yet */
444eb6f0de0SAdrian Chadd 	for (rix = rt->rateCount-1; rix > 0; rix--) {
445eb6f0de0SAdrian Chadd 		/* Skip rates we can't use */
446193bfa21SAdrian Chadd 		if ((sn->ratemask & ((uint64_t) 1<<rix)) == 0)
447eb6f0de0SAdrian Chadd 			continue;
448eb6f0de0SAdrian Chadd 
449eb6f0de0SAdrian Chadd 		/* Keep a copy of the last seen HT rate index */
450eb6f0de0SAdrian Chadd 		if (rt->info[rix].phy == IEEE80211_T_HT)
451eb6f0de0SAdrian Chadd 			ht_rix = rix;
452eb6f0de0SAdrian Chadd 
453eb6f0de0SAdrian Chadd 		/* Skip non-HT rates */
454eb6f0de0SAdrian Chadd 		if (rt->info[rix].phy != IEEE80211_T_HT)
455eb6f0de0SAdrian Chadd 			continue;
456eb6f0de0SAdrian Chadd 
457eb6f0de0SAdrian Chadd 		/*
458eb6f0de0SAdrian Chadd 		 * Pick a medium-speed rate regardless of stream count
459eb6f0de0SAdrian Chadd 		 * which has not seen any failures. Higher rates may fail;
460eb6f0de0SAdrian Chadd 		 * we'll try them later.
461eb6f0de0SAdrian Chadd 		 */
462eb6f0de0SAdrian Chadd 		if (((MCS(rix) & 0x7) <= 4) &&
463eb6f0de0SAdrian Chadd 		    sn->stats[size_bin][rix].successive_failures == 0) {
464eb6f0de0SAdrian Chadd 			break;
465eb6f0de0SAdrian Chadd 		}
466eb6f0de0SAdrian Chadd 	}
467eb6f0de0SAdrian Chadd 
468eb6f0de0SAdrian Chadd 	/*
469eb6f0de0SAdrian Chadd 	 * If all the MCS rates have successive failures, rix should be
470eb6f0de0SAdrian Chadd 	 * > 0; otherwise use the lowest MCS rix (hopefully MCS 0.)
471eb6f0de0SAdrian Chadd 	 */
472eb6f0de0SAdrian Chadd 	return MAX(rix, ht_rix);
473eb6f0de0SAdrian Chadd #undef	RATE
474eb6f0de0SAdrian Chadd #undef	MCS
475eb6f0de0SAdrian Chadd #undef	DOT11RATE
476eb6f0de0SAdrian Chadd }
477c4ac32a8SAdrian Chadd 
478c4ac32a8SAdrian Chadd 
479fa20c234SSam Leffler void
480fa20c234SSam Leffler ath_rate_findrate(struct ath_softc *sc, struct ath_node *an,
481a4d8dd10SSam Leffler 		  int shortPreamble, size_t frameLen,
482c1565b61SSam Leffler 		  u_int8_t *rix0, int *try0, u_int8_t *txrate)
483fa20c234SSam Leffler {
484c1565b61SSam Leffler #define	DOT11RATE(ix)	(rt->info[ix].dot11Rate & IEEE80211_RATE_VAL)
485a6a308a4SAdrian Chadd #define	MCS(ix)		(rt->info[ix].dot11Rate | IEEE80211_RATE_MCS)
486c1565b61SSam Leffler #define	RATE(ix)	(DOT11RATE(ix) / 2)
487fa20c234SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
488fa20c234SSam Leffler 	struct sample_softc *ssc = ATH_SOFTC_SAMPLE(sc);
489b032f27cSSam Leffler 	struct ifnet *ifp = sc->sc_ifp;
490b032f27cSSam Leffler 	struct ieee80211com *ic = ifp->if_l2com;
491c1565b61SSam Leffler 	const HAL_RATE_TABLE *rt = sc->sc_currates;
492c1565b61SSam Leffler 	const int size_bin = size_to_bin(frameLen);
493c1565b61SSam Leffler 	int rix, mrr, best_rix, change_rates;
494b2763056SSam Leffler 	unsigned average_tx_time;
495fa20c234SSam Leffler 
496c4ac32a8SAdrian Chadd 	ath_rate_update_static_rix(sc, &an->an_node);
497c4ac32a8SAdrian Chadd 
498cc86f1eaSAdrian Chadd 	if (sn->currates != sc->sc_currates) {
499cc86f1eaSAdrian Chadd 		device_printf(sc->sc_dev, "%s: currates != sc_currates!\n",
500cc86f1eaSAdrian Chadd 		    __func__);
501cc86f1eaSAdrian Chadd 		rix = 0;
502cc86f1eaSAdrian Chadd 		*try0 = ATH_TXMAXTRY;
503cc86f1eaSAdrian Chadd 		goto done;
504cc86f1eaSAdrian Chadd 	}
505cc86f1eaSAdrian Chadd 
506c1565b61SSam Leffler 	if (sn->static_rix != -1) {
507c1565b61SSam Leffler 		rix = sn->static_rix;
508c1565b61SSam Leffler 		*try0 = ATH_TXMAXTRY;
509c1565b61SSam Leffler 		goto done;
510c1565b61SSam Leffler 	}
511fa20c234SSam Leffler 
512af017101SAdrian Chadd 	mrr = sc->sc_mrretry;
513af017101SAdrian Chadd 	/* XXX check HT protmode too */
5149f579ef8SAdrian Chadd 	if (mrr && (ic->ic_flags & IEEE80211_F_USEPROT && !sc->sc_mrrprot))
515af017101SAdrian Chadd 		mrr = 0;
516c1565b61SSam Leffler 
51736958948SAdrian Chadd 	best_rix = pick_best_rate(an, rt, size_bin, !mrr);
518c1565b61SSam Leffler 	if (best_rix >= 0) {
519c1565b61SSam Leffler 		average_tx_time = sn->stats[size_bin][best_rix].average_tx_time;
520fa20c234SSam Leffler 	} else {
521b2763056SSam Leffler 		average_tx_time = 0;
522b2763056SSam Leffler 	}
523fa20c234SSam Leffler 	/*
524c1565b61SSam Leffler 	 * Limit the time measuring the performance of other tx
525c1565b61SSam Leffler 	 * rates to sample_rate% of the total transmission time.
526fa20c234SSam Leffler 	 */
527c1565b61SSam Leffler 	if (sn->sample_tt[size_bin] < average_tx_time * (sn->packets_since_sample[size_bin]*ssc->sample_rate/100)) {
52836958948SAdrian Chadd 		rix = pick_sample_rate(ssc, an, rt, size_bin);
529c1565b61SSam Leffler 		IEEE80211_NOTE(an->an_node.ni_vap, IEEE80211_MSG_RATECTL,
530eb6f0de0SAdrian Chadd 		     &an->an_node, "att %d sample_tt %d size %u sample rate %d %s current rate %d %s",
531eb6f0de0SAdrian Chadd 		     average_tx_time,
532eb6f0de0SAdrian Chadd 		     sn->sample_tt[size_bin],
533eb6f0de0SAdrian Chadd 		     bin_to_size(size_bin),
534eb6f0de0SAdrian Chadd 		     dot11rate(rt, rix),
535eb6f0de0SAdrian Chadd 		     dot11rate_label(rt, rix),
536eb6f0de0SAdrian Chadd 		     dot11rate(rt, sn->current_rix[size_bin]),
537eb6f0de0SAdrian Chadd 		     dot11rate_label(rt, sn->current_rix[size_bin]));
538c1565b61SSam Leffler 		if (rix != sn->current_rix[size_bin]) {
539c1565b61SSam Leffler 			sn->current_sample_rix[size_bin] = rix;
540b2763056SSam Leffler 		} else {
541c1565b61SSam Leffler 			sn->current_sample_rix[size_bin] = -1;
542b2763056SSam Leffler 		}
543b2763056SSam Leffler 		sn->packets_since_sample[size_bin] = 0;
544b2763056SSam Leffler 	} else {
545b91bf513SSam Leffler 		change_rates = 0;
546c1565b61SSam Leffler 		if (!sn->packets_sent[size_bin] || best_rix == -1) {
547b91bf513SSam Leffler 			/* no packet has been sent successfully yet */
548b91bf513SSam Leffler 			change_rates = 1;
549eb6f0de0SAdrian Chadd 			if (an->an_node.ni_flags & IEEE80211_NODE_HT)
550eb6f0de0SAdrian Chadd 				best_rix =
551eb6f0de0SAdrian Chadd 				    ath_rate_pick_seed_rate_ht(sc, an, frameLen);
552eb6f0de0SAdrian Chadd 			else
553eb6f0de0SAdrian Chadd 				best_rix =
554eb6f0de0SAdrian Chadd 				    ath_rate_pick_seed_rate_legacy(sc, an, frameLen);
555b91bf513SSam Leffler 		} else if (sn->packets_sent[size_bin] < 20) {
556b91bf513SSam Leffler 			/* let the bit-rate switch quickly during the first few packets */
557eb6f0de0SAdrian Chadd 			IEEE80211_NOTE(an->an_node.ni_vap,
558eb6f0de0SAdrian Chadd 			    IEEE80211_MSG_RATECTL, &an->an_node,
559eb6f0de0SAdrian Chadd 			    "%s: switching quickly..", __func__);
560b91bf513SSam Leffler 			change_rates = 1;
561c1565b61SSam Leffler 		} else if (ticks - ssc->min_switch > sn->ticks_since_switch[size_bin]) {
562c1565b61SSam Leffler 			/* min_switch seconds have gone by */
563eb6f0de0SAdrian Chadd 			IEEE80211_NOTE(an->an_node.ni_vap,
564eb6f0de0SAdrian Chadd 			    IEEE80211_MSG_RATECTL, &an->an_node,
565eb6f0de0SAdrian Chadd 			    "%s: min_switch %d > ticks_since_switch %d..",
566eb6f0de0SAdrian Chadd 			    __func__, ticks - ssc->min_switch, sn->ticks_since_switch[size_bin]);
567b91bf513SSam Leffler 			change_rates = 1;
568eb6f0de0SAdrian Chadd 		} else if ((! (an->an_node.ni_flags & IEEE80211_NODE_HT)) &&
569eb6f0de0SAdrian Chadd 		    (2*average_tx_time < sn->stats[size_bin][sn->current_rix[size_bin]].average_tx_time)) {
570b91bf513SSam Leffler 			/* the current bit-rate is twice as slow as the best one */
571eb6f0de0SAdrian Chadd 			IEEE80211_NOTE(an->an_node.ni_vap,
572eb6f0de0SAdrian Chadd 			    IEEE80211_MSG_RATECTL, &an->an_node,
573eb6f0de0SAdrian Chadd 			    "%s: 2x att (= %d) < cur_rix att %d",
574eb6f0de0SAdrian Chadd 			    __func__,
575eb6f0de0SAdrian Chadd 			    2 * average_tx_time, sn->stats[size_bin][sn->current_rix[size_bin]].average_tx_time);
576b91bf513SSam Leffler 			change_rates = 1;
577eb6f0de0SAdrian Chadd 		} else if ((an->an_node.ni_flags & IEEE80211_NODE_HT)) {
578eb6f0de0SAdrian Chadd 			int cur_rix = sn->current_rix[size_bin];
579eb6f0de0SAdrian Chadd 			int cur_att = sn->stats[size_bin][cur_rix].average_tx_time;
580eb6f0de0SAdrian Chadd 			/*
581eb6f0de0SAdrian Chadd 			 * If the node is HT, upgrade it if the MCS rate is
582eb6f0de0SAdrian Chadd 			 * higher and the average tx time is within 20% of
583eb6f0de0SAdrian Chadd 			 * the current rate. It can fail a little.
584eb6f0de0SAdrian Chadd 			 *
585eb6f0de0SAdrian Chadd 			 * This is likely not optimal!
586eb6f0de0SAdrian Chadd 			 */
587eb6f0de0SAdrian Chadd #if 0
588eb6f0de0SAdrian Chadd 			printf("cur rix/att %x/%d, best rix/att %x/%d\n",
589eb6f0de0SAdrian Chadd 			    MCS(cur_rix), cur_att, MCS(best_rix), average_tx_time);
590eb6f0de0SAdrian Chadd #endif
591eb6f0de0SAdrian Chadd 			if ((MCS(best_rix) > MCS(cur_rix)) &&
592eb6f0de0SAdrian Chadd 			    (average_tx_time * 8) <= (cur_att * 10)) {
593eb6f0de0SAdrian Chadd 				IEEE80211_NOTE(an->an_node.ni_vap,
594eb6f0de0SAdrian Chadd 				    IEEE80211_MSG_RATECTL, &an->an_node,
595eb6f0de0SAdrian Chadd 				    "%s: HT: best_rix 0x%d > cur_rix 0x%x, average_tx_time %d, cur_att %d",
596eb6f0de0SAdrian Chadd 				    __func__,
597eb6f0de0SAdrian Chadd 				    MCS(best_rix), MCS(cur_rix), average_tx_time, cur_att);
598eb6f0de0SAdrian Chadd 				change_rates = 1;
599eb6f0de0SAdrian Chadd 			}
600b91bf513SSam Leffler 		}
601b91bf513SSam Leffler 
602b91bf513SSam Leffler 		sn->packets_since_sample[size_bin]++;
603b91bf513SSam Leffler 
604b91bf513SSam Leffler 		if (change_rates) {
605c1565b61SSam Leffler 			if (best_rix != sn->current_rix[size_bin]) {
606b032f27cSSam Leffler 				IEEE80211_NOTE(an->an_node.ni_vap,
607b032f27cSSam Leffler 				    IEEE80211_MSG_RATECTL,
608b032f27cSSam Leffler 				    &an->an_node,
609b032f27cSSam Leffler "%s: size %d switch rate %d (%d/%d) -> %d (%d/%d) after %d packets mrr %d",
610b2763056SSam Leffler 				    __func__,
611c1565b61SSam Leffler 				    bin_to_size(size_bin),
612c1565b61SSam Leffler 				    RATE(sn->current_rix[size_bin]),
613c1565b61SSam Leffler 				    sn->stats[size_bin][sn->current_rix[size_bin]].average_tx_time,
614c1565b61SSam Leffler 				    sn->stats[size_bin][sn->current_rix[size_bin]].perfect_tx_time,
615c1565b61SSam Leffler 				    RATE(best_rix),
616c1565b61SSam Leffler 				    sn->stats[size_bin][best_rix].average_tx_time,
617c1565b61SSam Leffler 				    sn->stats[size_bin][best_rix].perfect_tx_time,
618b2763056SSam Leffler 				    sn->packets_since_switch[size_bin],
619b2763056SSam Leffler 				    mrr);
620b2763056SSam Leffler 			}
621b2763056SSam Leffler 			sn->packets_since_switch[size_bin] = 0;
622c1565b61SSam Leffler 			sn->current_rix[size_bin] = best_rix;
623b91bf513SSam Leffler 			sn->ticks_since_switch[size_bin] = ticks;
624b032f27cSSam Leffler 			/*
625b032f27cSSam Leffler 			 * Set the visible txrate for this node.
626b032f27cSSam Leffler 			 */
627a6a308a4SAdrian Chadd 			an->an_node.ni_txrate = (rt->info[best_rix].phy == IEEE80211_T_HT) ?  MCS(best_rix) : DOT11RATE(best_rix);
628b2763056SSam Leffler 		}
629c1565b61SSam Leffler 		rix = sn->current_rix[size_bin];
630b2763056SSam Leffler 		sn->packets_since_switch[size_bin]++;
631b91bf513SSam Leffler 	}
632c1565b61SSam Leffler 	*try0 = mrr ? sn->sched[rix].t0 : ATH_TXMAXTRY;
633c1565b61SSam Leffler done:
634cc86f1eaSAdrian Chadd 
635cc86f1eaSAdrian Chadd 	/*
636cc86f1eaSAdrian Chadd 	 * This bug totally sucks and should be fixed.
637cc86f1eaSAdrian Chadd 	 *
638cc86f1eaSAdrian Chadd 	 * For now though, let's not panic, so we can start to figure
639cc86f1eaSAdrian Chadd 	 * out how to better reproduce it.
640cc86f1eaSAdrian Chadd 	 */
641cc86f1eaSAdrian Chadd 	if (rix < 0 || rix >= rt->rateCount) {
642cc86f1eaSAdrian Chadd 		printf("%s: ERROR: rix %d out of bounds (rateCount=%d)\n",
643cc86f1eaSAdrian Chadd 		    __func__,
644cc86f1eaSAdrian Chadd 		    rix,
645cc86f1eaSAdrian Chadd 		    rt->rateCount);
646cc86f1eaSAdrian Chadd 		    rix = 0;	/* XXX just default for now */
647cc86f1eaSAdrian Chadd 	}
648c1565b61SSam Leffler 	KASSERT(rix >= 0 && rix < rt->rateCount, ("rix is %d", rix));
649fa20c234SSam Leffler 
650c1565b61SSam Leffler 	*rix0 = rix;
651c1565b61SSam Leffler 	*txrate = rt->info[rix].rateCode
652c1565b61SSam Leffler 		| (shortPreamble ? rt->info[rix].shortPreamble : 0);
653fa20c234SSam Leffler 	sn->packets_sent[size_bin]++;
654c1565b61SSam Leffler #undef DOT11RATE
655a6a308a4SAdrian Chadd #undef MCS
656c1565b61SSam Leffler #undef RATE
657fa20c234SSam Leffler }
658fa20c234SSam Leffler 
659710c3778SAdrian Chadd /*
660710c3778SAdrian Chadd  * Get the TX rates. Don't fiddle with short preamble flags for them;
661710c3778SAdrian Chadd  * the caller can do that.
662710c3778SAdrian Chadd  */
663710c3778SAdrian Chadd void
664710c3778SAdrian Chadd ath_rate_getxtxrates(struct ath_softc *sc, struct ath_node *an,
665eb6f0de0SAdrian Chadd     uint8_t rix0, struct ath_rc_series *rc)
666710c3778SAdrian Chadd {
667710c3778SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
668710c3778SAdrian Chadd 	const struct txschedule *sched = &sn->sched[rix0];
669710c3778SAdrian Chadd 
670193bfa21SAdrian Chadd 	KASSERT(rix0 == sched->r0, ("rix0 (%x) != sched->r0 (%x)!\n",
671193bfa21SAdrian Chadd 	    rix0, sched->r0));
672710c3778SAdrian Chadd 
673eb6f0de0SAdrian Chadd 	rc[0].flags = rc[1].flags = rc[2].flags = rc[3].flags = 0;
674710c3778SAdrian Chadd 
675eb6f0de0SAdrian Chadd 	rc[0].rix = sched->r0;
676eb6f0de0SAdrian Chadd 	rc[1].rix = sched->r1;
677eb6f0de0SAdrian Chadd 	rc[2].rix = sched->r2;
678eb6f0de0SAdrian Chadd 	rc[3].rix = sched->r3;
679eb6f0de0SAdrian Chadd 
680eb6f0de0SAdrian Chadd 	rc[0].tries = sched->t0;
681eb6f0de0SAdrian Chadd 	rc[1].tries = sched->t1;
682eb6f0de0SAdrian Chadd 	rc[2].tries = sched->t2;
683eb6f0de0SAdrian Chadd 	rc[3].tries = sched->t3;
684710c3778SAdrian Chadd }
685710c3778SAdrian Chadd 
686fa20c234SSam Leffler void
687fa20c234SSam Leffler ath_rate_setupxtxdesc(struct ath_softc *sc, struct ath_node *an,
688a4d8dd10SSam Leffler 		      struct ath_desc *ds, int shortPreamble, u_int8_t rix)
689fa20c234SSam Leffler {
690fa20c234SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
691c1565b61SSam Leffler 	const struct txschedule *sched = &sn->sched[rix];
692c1565b61SSam Leffler 	const HAL_RATE_TABLE *rt = sc->sc_currates;
693c1565b61SSam Leffler 	uint8_t rix1, s1code, rix2, s2code, rix3, s3code;
694fa20c234SSam Leffler 
695c1565b61SSam Leffler 	/* XXX precalculate short preamble tables */
696c1565b61SSam Leffler 	rix1 = sched->r1;
697c1565b61SSam Leffler 	s1code = rt->info[rix1].rateCode
698c1565b61SSam Leffler 	       | (shortPreamble ? rt->info[rix1].shortPreamble : 0);
699c1565b61SSam Leffler 	rix2 = sched->r2;
700c1565b61SSam Leffler 	s2code = rt->info[rix2].rateCode
701c1565b61SSam Leffler 	       | (shortPreamble ? rt->info[rix2].shortPreamble : 0);
702c1565b61SSam Leffler 	rix3 = sched->r3;
703c1565b61SSam Leffler 	s3code = rt->info[rix3].rateCode
704c1565b61SSam Leffler 	       | (shortPreamble ? rt->info[rix3].shortPreamble : 0);
705c1565b61SSam Leffler 	ath_hal_setupxtxdesc(sc->sc_ah, ds,
706c1565b61SSam Leffler 	    s1code, sched->t1,		/* series 1 */
707c1565b61SSam Leffler 	    s2code, sched->t2,		/* series 2 */
708c1565b61SSam Leffler 	    s3code, sched->t3);		/* series 3 */
709fa20c234SSam Leffler }
710fa20c234SSam Leffler 
711eb6f0de0SAdrian Chadd /*
712eb6f0de0SAdrian Chadd  * Update the EWMA percentage.
713eb6f0de0SAdrian Chadd  *
714eb6f0de0SAdrian Chadd  * This is a simple hack to track an EWMA based on the current
715eb6f0de0SAdrian Chadd  * rate scenario. For the rate codes which failed, this will
716eb6f0de0SAdrian Chadd  * record a 0% against it. For the rate code which succeeded,
717eb6f0de0SAdrian Chadd  * EWMA will record the nbad*100/nframes percentage against it.
718eb6f0de0SAdrian Chadd  */
719eb6f0de0SAdrian Chadd static void
720eb6f0de0SAdrian Chadd update_ewma_stats(struct ath_softc *sc, struct ath_node *an,
721eb6f0de0SAdrian Chadd     int frame_size,
722eb6f0de0SAdrian Chadd     int rix0, int tries0,
723eb6f0de0SAdrian Chadd     int rix1, int tries1,
724eb6f0de0SAdrian Chadd     int rix2, int tries2,
725eb6f0de0SAdrian Chadd     int rix3, int tries3,
726eb6f0de0SAdrian Chadd     int short_tries, int tries, int status,
727eb6f0de0SAdrian Chadd     int nframes, int nbad)
728eb6f0de0SAdrian Chadd {
729eb6f0de0SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
730eb6f0de0SAdrian Chadd 	struct sample_softc *ssc = ATH_SOFTC_SAMPLE(sc);
731eb6f0de0SAdrian Chadd 	const int size_bin = size_to_bin(frame_size);
732eb6f0de0SAdrian Chadd 	int tries_so_far;
733eb6f0de0SAdrian Chadd 	int pct;
734eb6f0de0SAdrian Chadd 	int rix = rix0;
735eb6f0de0SAdrian Chadd 
736eb6f0de0SAdrian Chadd 	/* Calculate percentage based on current rate */
737eb6f0de0SAdrian Chadd 	if (nframes == 0)
738eb6f0de0SAdrian Chadd 		nframes = nbad = 1;
739eb6f0de0SAdrian Chadd 	pct = ((nframes - nbad) * 1000) / nframes;
740eb6f0de0SAdrian Chadd 
741eb6f0de0SAdrian Chadd 	/* Figure out which rate index succeeded */
742eb6f0de0SAdrian Chadd 	tries_so_far = tries0;
743eb6f0de0SAdrian Chadd 
744eb6f0de0SAdrian Chadd 	if (tries1 && tries_so_far < tries) {
745eb6f0de0SAdrian Chadd 		tries_so_far += tries1;
746eb6f0de0SAdrian Chadd 		rix = rix1;
747eb6f0de0SAdrian Chadd 		/* XXX bump ewma pct */
748eb6f0de0SAdrian Chadd 	}
749eb6f0de0SAdrian Chadd 
750eb6f0de0SAdrian Chadd 	if (tries2 && tries_so_far < tries) {
751eb6f0de0SAdrian Chadd 		tries_so_far += tries2;
752eb6f0de0SAdrian Chadd 		rix = rix2;
753eb6f0de0SAdrian Chadd 		/* XXX bump ewma pct */
754eb6f0de0SAdrian Chadd 	}
755eb6f0de0SAdrian Chadd 
756eb6f0de0SAdrian Chadd 	if (tries3 && tries_so_far < tries) {
757eb6f0de0SAdrian Chadd 		rix = rix3;
758eb6f0de0SAdrian Chadd 		/* XXX bump ewma pct */
759eb6f0de0SAdrian Chadd 	}
760eb6f0de0SAdrian Chadd 
761eb6f0de0SAdrian Chadd 	/* rix is the successful rate, update EWMA for final rix */
762eb6f0de0SAdrian Chadd 	if (sn->stats[size_bin][rix].total_packets <
763eb6f0de0SAdrian Chadd 	    ssc->smoothing_minpackets) {
764eb6f0de0SAdrian Chadd 		/* just average the first few packets */
765eb6f0de0SAdrian Chadd 		int a_pct = (sn->stats[size_bin][rix].packets_acked * 1000) /
766eb6f0de0SAdrian Chadd 		    (sn->stats[size_bin][rix].total_packets);
767eb6f0de0SAdrian Chadd 		sn->stats[size_bin][rix].ewma_pct = a_pct;
768eb6f0de0SAdrian Chadd 	} else {
769eb6f0de0SAdrian Chadd 		/* use a ewma */
770eb6f0de0SAdrian Chadd 		sn->stats[size_bin][rix].ewma_pct =
771eb6f0de0SAdrian Chadd 			((sn->stats[size_bin][rix].ewma_pct * ssc->smoothing_rate) +
772eb6f0de0SAdrian Chadd 			 (pct * (100 - ssc->smoothing_rate))) / 100;
773eb6f0de0SAdrian Chadd 	}
774eb6f0de0SAdrian Chadd }
775eb6f0de0SAdrian Chadd 
776b2763056SSam Leffler static void
777b2763056SSam Leffler update_stats(struct ath_softc *sc, struct ath_node *an,
778b2763056SSam Leffler 		  int frame_size,
779c1565b61SSam Leffler 		  int rix0, int tries0,
780c1565b61SSam Leffler 		  int rix1, int tries1,
781c1565b61SSam Leffler 		  int rix2, int tries2,
782c1565b61SSam Leffler 		  int rix3, int tries3,
783eb6f0de0SAdrian Chadd 		  int short_tries, int tries, int status,
784eb6f0de0SAdrian Chadd 		  int nframes, int nbad)
785fa20c234SSam Leffler {
786fa20c234SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
787fa20c234SSam Leffler 	struct sample_softc *ssc = ATH_SOFTC_SAMPLE(sc);
788ec3dec2fSAdrian Chadd #ifdef IEEE80211_DEBUG
789eb6f0de0SAdrian Chadd 	const HAL_RATE_TABLE *rt = sc->sc_currates;
790ec3dec2fSAdrian Chadd #endif
791c1565b61SSam Leffler 	const int size_bin = size_to_bin(frame_size);
792c1565b61SSam Leffler 	const int size = bin_to_size(size_bin);
793c1565b61SSam Leffler 	int tt, tries_so_far;
794532f2442SAdrian Chadd 	int is_ht40 = (an->an_node.ni_chw == 40);
795fa20c234SSam Leffler 
796c1565b61SSam Leffler 	if (!IS_RATE_DEFINED(sn, rix0))
79765f9edeeSSam Leffler 		return;
798c1565b61SSam Leffler 	tt = calc_usecs_unicast_packet(sc, size, rix0, short_tries,
799e09c8c4cSAdrian Chadd 		MIN(tries0, tries) - 1, is_ht40);
800c1565b61SSam Leffler 	tries_so_far = tries0;
801c1565b61SSam Leffler 
802c1565b61SSam Leffler 	if (tries1 && tries_so_far < tries) {
803c1565b61SSam Leffler 		if (!IS_RATE_DEFINED(sn, rix1))
80465f9edeeSSam Leffler 			return;
805c1565b61SSam Leffler 		tt += calc_usecs_unicast_packet(sc, size, rix1, short_tries,
806e09c8c4cSAdrian Chadd 			MIN(tries1 + tries_so_far, tries) - tries_so_far - 1, is_ht40);
807b2763056SSam Leffler 		tries_so_far += tries1;
808b2763056SSam Leffler 	}
809b2763056SSam Leffler 
810c1565b61SSam Leffler 	if (tries2 && tries_so_far < tries) {
811c1565b61SSam Leffler 		if (!IS_RATE_DEFINED(sn, rix2))
81265f9edeeSSam Leffler 			return;
813c1565b61SSam Leffler 		tt += calc_usecs_unicast_packet(sc, size, rix2, short_tries,
814e09c8c4cSAdrian Chadd 			MIN(tries2 + tries_so_far, tries) - tries_so_far - 1, is_ht40);
815c1565b61SSam Leffler 		tries_so_far += tries2;
816c1565b61SSam Leffler 	}
817c1565b61SSam Leffler 
818c1565b61SSam Leffler 	if (tries3 && tries_so_far < tries) {
819c1565b61SSam Leffler 		if (!IS_RATE_DEFINED(sn, rix3))
820c1565b61SSam Leffler 			return;
821c1565b61SSam Leffler 		tt += calc_usecs_unicast_packet(sc, size, rix3, short_tries,
822e09c8c4cSAdrian Chadd 			MIN(tries3 + tries_so_far, tries) - tries_so_far - 1, is_ht40);
823b2763056SSam Leffler 	}
824c1565b61SSam Leffler 
825c1565b61SSam Leffler 	if (sn->stats[size_bin][rix0].total_packets < ssc->smoothing_minpackets) {
826fa20c234SSam Leffler 		/* just average the first few packets */
827c1565b61SSam Leffler 		int avg_tx = sn->stats[size_bin][rix0].average_tx_time;
828c1565b61SSam Leffler 		int packets = sn->stats[size_bin][rix0].total_packets;
829eb6f0de0SAdrian Chadd 		sn->stats[size_bin][rix0].average_tx_time = (tt+(avg_tx*packets))/(packets+nframes);
830fa20c234SSam Leffler 	} else {
831fa20c234SSam Leffler 		/* use a ewma */
832c1565b61SSam Leffler 		sn->stats[size_bin][rix0].average_tx_time =
833c1565b61SSam Leffler 			((sn->stats[size_bin][rix0].average_tx_time * ssc->smoothing_rate) +
834c1565b61SSam Leffler 			 (tt * (100 - ssc->smoothing_rate))) / 100;
835fa20c234SSam Leffler 	}
836fa20c234SSam Leffler 
837eb6f0de0SAdrian Chadd 	/*
838eb6f0de0SAdrian Chadd 	 * XXX Don't mark the higher bit rates as also having failed; as this
839eb6f0de0SAdrian Chadd 	 * unfortunately stops those rates from being tasted when trying to
840eb6f0de0SAdrian Chadd 	 * TX. This happens with 11n aggregation.
841eb6f0de0SAdrian Chadd 	 */
842eb6f0de0SAdrian Chadd 	if (nframes == nbad) {
843eb6f0de0SAdrian Chadd #if 0
844fa20c234SSam Leffler 		int y;
845eb6f0de0SAdrian Chadd #endif
846eb6f0de0SAdrian Chadd 		sn->stats[size_bin][rix0].successive_failures += nbad;
847eb6f0de0SAdrian Chadd #if 0
848b91bf513SSam Leffler 		for (y = size_bin+1; y < NUM_PACKET_SIZE_BINS; y++) {
849c1565b61SSam Leffler 			/*
850c1565b61SSam Leffler 			 * Also say larger packets failed since we
851c1565b61SSam Leffler 			 * assume if a small packet fails at a
852b91bf513SSam Leffler 			 * bit-rate then a larger one will also.
853b91bf513SSam Leffler 			 */
854eb6f0de0SAdrian Chadd 			sn->stats[y][rix0].successive_failures += nbad;
855c1565b61SSam Leffler 			sn->stats[y][rix0].last_tx = ticks;
856c1565b61SSam Leffler 			sn->stats[y][rix0].tries += tries;
857eb6f0de0SAdrian Chadd 			sn->stats[y][rix0].total_packets += nframes;
858fa20c234SSam Leffler 		}
859eb6f0de0SAdrian Chadd #endif
860fa20c234SSam Leffler 	} else {
861eb6f0de0SAdrian Chadd 		sn->stats[size_bin][rix0].packets_acked += (nframes - nbad);
862c1565b61SSam Leffler 		sn->stats[size_bin][rix0].successive_failures = 0;
863fa20c234SSam Leffler 	}
864c1565b61SSam Leffler 	sn->stats[size_bin][rix0].tries += tries;
865c1565b61SSam Leffler 	sn->stats[size_bin][rix0].last_tx = ticks;
866eb6f0de0SAdrian Chadd 	sn->stats[size_bin][rix0].total_packets += nframes;
867b2763056SSam Leffler 
868c1565b61SSam Leffler 	if (rix0 == sn->current_sample_rix[size_bin]) {
869b032f27cSSam Leffler 		IEEE80211_NOTE(an->an_node.ni_vap, IEEE80211_MSG_RATECTL,
870b032f27cSSam Leffler 		   &an->an_node,
871eb6f0de0SAdrian Chadd "%s: size %d %s sample rate %d %s tries (%d/%d) tt %d avg_tt (%d/%d) nfrm %d nbad %d",
872b032f27cSSam Leffler 		    __func__,
87365f9edeeSSam Leffler 		    size,
87465f9edeeSSam Leffler 		    status ? "FAIL" : "OK",
875eb6f0de0SAdrian Chadd 		    dot11rate(rt, rix0),
876eb6f0de0SAdrian Chadd 		    dot11rate_label(rt, rix0),
877eb6f0de0SAdrian Chadd 		    short_tries, tries, tt,
878c1565b61SSam Leffler 		    sn->stats[size_bin][rix0].average_tx_time,
879eb6f0de0SAdrian Chadd 		    sn->stats[size_bin][rix0].perfect_tx_time,
880eb6f0de0SAdrian Chadd 		    nframes, nbad);
881b2763056SSam Leffler 		sn->sample_tt[size_bin] = tt;
882c1565b61SSam Leffler 		sn->current_sample_rix[size_bin] = -1;
883b2763056SSam Leffler 	}
884b2763056SSam Leffler }
885b2763056SSam Leffler 
886ec9ee5e7SSam Leffler static void
887ec9ee5e7SSam Leffler badrate(struct ifnet *ifp, int series, int hwrate, int tries, int status)
888ec9ee5e7SSam Leffler {
889ec9ee5e7SSam Leffler 	if_printf(ifp, "bad series%d hwrate 0x%x, tries %u ts_status 0x%x\n",
890ec9ee5e7SSam Leffler 	    series, hwrate, tries, status);
891ec9ee5e7SSam Leffler }
892ec9ee5e7SSam Leffler 
893b2763056SSam Leffler void
89443e9cf7cSSam Leffler ath_rate_tx_complete(struct ath_softc *sc, struct ath_node *an,
895eb6f0de0SAdrian Chadd 	const struct ath_rc_series *rc, const struct ath_tx_status *ts,
896eb6f0de0SAdrian Chadd 	int frame_size, int nframes, int nbad)
897b2763056SSam Leffler {
898b032f27cSSam Leffler 	struct ifnet *ifp = sc->sc_ifp;
899b032f27cSSam Leffler 	struct ieee80211com *ic = ifp->if_l2com;
900b2763056SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
901eb6f0de0SAdrian Chadd 	int final_rix, short_tries, long_tries;
90246d4d74cSSam Leffler 	const HAL_RATE_TABLE *rt = sc->sc_currates;
903eb6f0de0SAdrian Chadd 	int status = ts->ts_status;
9041bb9a085SSam Leffler 	int mrr;
905b2763056SSam Leffler 
906f6cbf16aSSam Leffler 	final_rix = rt->rateCodeToIndex[ts->ts_rate];
90765f9edeeSSam Leffler 	short_tries = ts->ts_shortretry;
90865f9edeeSSam Leffler 	long_tries = ts->ts_longretry + 1;
909eb6f0de0SAdrian Chadd 
91043e9cf7cSSam Leffler 	if (frame_size == 0)		    /* NB: should not happen */
911b2763056SSam Leffler 		frame_size = 1500;
912b2763056SSam Leffler 
913c1565b61SSam Leffler 	if (sn->ratemask == 0) {
914b032f27cSSam Leffler 		IEEE80211_NOTE(an->an_node.ni_vap, IEEE80211_MSG_RATECTL,
915b032f27cSSam Leffler 		    &an->an_node,
916b032f27cSSam Leffler 		    "%s: size %d %s rate/try %d/%d no rates yet",
917b032f27cSSam Leffler 		    __func__,
91843e9cf7cSSam Leffler 		    bin_to_size(size_to_bin(frame_size)),
919eb6f0de0SAdrian Chadd 		    status ? "FAIL" : "OK",
92043e9cf7cSSam Leffler 		    short_tries, long_tries);
921b2763056SSam Leffler 		return;
922b2763056SSam Leffler 	}
923af017101SAdrian Chadd 	mrr = sc->sc_mrretry;
924af017101SAdrian Chadd 	/* XXX check HT protmode too */
9259f579ef8SAdrian Chadd 	if (mrr && (ic->ic_flags & IEEE80211_F_USEPROT && !sc->sc_mrrprot))
926af017101SAdrian Chadd 		mrr = 0;
927af017101SAdrian Chadd 
928f6cbf16aSSam Leffler 	if (!mrr || ts->ts_finaltsi == 0) {
929c1565b61SSam Leffler 		if (!IS_RATE_DEFINED(sn, final_rix)) {
930193bfa21SAdrian Chadd 			device_printf(sc->sc_dev, "%s: ts_rate=%d ts_finaltsi=%d\n",
931193bfa21SAdrian Chadd 			    __func__, ts->ts_rate, ts->ts_finaltsi);
932eb6f0de0SAdrian Chadd 			badrate(ifp, 0, ts->ts_rate, long_tries, status);
933ec9ee5e7SSam Leffler 			return;
934ec9ee5e7SSam Leffler 		}
93565f9edeeSSam Leffler 		/*
93665f9edeeSSam Leffler 		 * Only one rate was used; optimize work.
93765f9edeeSSam Leffler 		 */
938b032f27cSSam Leffler 		IEEE80211_NOTE(an->an_node.ni_vap, IEEE80211_MSG_RATECTL,
939f6fd8c7aSAdrian Chadd 		     &an->an_node, "%s: size %d (%d bytes) %s rate/short/long %d %s/%d/%d nframes/nbad [%d/%d]",
940b032f27cSSam Leffler 		     __func__,
94143e9cf7cSSam Leffler 		     bin_to_size(size_to_bin(frame_size)),
942c4ac32a8SAdrian Chadd 		     frame_size,
943eb6f0de0SAdrian Chadd 		     status ? "FAIL" : "OK",
944eb6f0de0SAdrian Chadd 		     dot11rate(rt, final_rix), dot11rate_label(rt, final_rix),
945eb6f0de0SAdrian Chadd 		     short_tries, long_tries, nframes, nbad);
946b2763056SSam Leffler 		update_stats(sc, an, frame_size,
947c1565b61SSam Leffler 			     final_rix, long_tries,
948b2763056SSam Leffler 			     0, 0,
949b2763056SSam Leffler 			     0, 0,
950b2763056SSam Leffler 			     0, 0,
951eb6f0de0SAdrian Chadd 			     short_tries, long_tries, status,
952eb6f0de0SAdrian Chadd 			     nframes, nbad);
953eb6f0de0SAdrian Chadd 		update_ewma_stats(sc, an, frame_size,
954eb6f0de0SAdrian Chadd 			     final_rix, long_tries,
955eb6f0de0SAdrian Chadd 			     0, 0,
956eb6f0de0SAdrian Chadd 			     0, 0,
957eb6f0de0SAdrian Chadd 			     0, 0,
958eb6f0de0SAdrian Chadd 			     short_tries, long_tries, status,
959eb6f0de0SAdrian Chadd 			     nframes, nbad);
960eb6f0de0SAdrian Chadd 
961b2763056SSam Leffler 	} else {
96265f9edeeSSam Leffler 		int finalTSIdx = ts->ts_finaltsi;
963bd97c52aSAdrian Chadd 		int i;
964b2763056SSam Leffler 
965b2763056SSam Leffler 		/*
966b2763056SSam Leffler 		 * Process intermediate rates that failed.
967b2763056SSam Leffler 		 */
968ec9ee5e7SSam Leffler 
969b032f27cSSam Leffler 		IEEE80211_NOTE(an->an_node.ni_vap, IEEE80211_MSG_RATECTL,
970b032f27cSSam Leffler 		    &an->an_node,
971f6fd8c7aSAdrian Chadd "%s: size %d (%d bytes) finaltsidx %d short %d long %d %s rate/try [%d %s/%d %d %s/%d %d %s/%d %d %s/%d] nframes/nbad [%d/%d]",
972b032f27cSSam Leffler 		     __func__,
973b2763056SSam Leffler 		     bin_to_size(size_to_bin(frame_size)),
974c4ac32a8SAdrian Chadd 		     frame_size,
975b2763056SSam Leffler 		     finalTSIdx,
976f6fd8c7aSAdrian Chadd 		     short_tries,
977b2763056SSam Leffler 		     long_tries,
978eb6f0de0SAdrian Chadd 		     status ? "FAIL" : "OK",
979eb6f0de0SAdrian Chadd 		     dot11rate(rt, rc[0].rix),
980eb6f0de0SAdrian Chadd 		      dot11rate_label(rt, rc[0].rix), rc[0].tries,
981eb6f0de0SAdrian Chadd 		     dot11rate(rt, rc[1].rix),
982eb6f0de0SAdrian Chadd 		      dot11rate_label(rt, rc[1].rix), rc[1].tries,
983eb6f0de0SAdrian Chadd 		     dot11rate(rt, rc[2].rix),
984eb6f0de0SAdrian Chadd 		      dot11rate_label(rt, rc[2].rix), rc[2].tries,
985eb6f0de0SAdrian Chadd 		     dot11rate(rt, rc[3].rix),
986eb6f0de0SAdrian Chadd 		      dot11rate_label(rt, rc[3].rix), rc[3].tries,
987eb6f0de0SAdrian Chadd 		     nframes, nbad);
988c1565b61SSam Leffler 
989a6a308a4SAdrian Chadd 		for (i = 0; i < 4; i++) {
990eb6f0de0SAdrian Chadd 			if (rc[i].tries && !IS_RATE_DEFINED(sn, rc[i].rix))
991eb6f0de0SAdrian Chadd 				badrate(ifp, 0, rc[i].ratecode, rc[i].tries,
992eb6f0de0SAdrian Chadd 				    status);
993a6a308a4SAdrian Chadd 		}
994b2763056SSam Leffler 
99565f9edeeSSam Leffler 		/*
99665f9edeeSSam Leffler 		 * NB: series > 0 are not penalized for failure
99765f9edeeSSam Leffler 		 * based on the try counts under the assumption
99865f9edeeSSam Leffler 		 * that losses are often bursty and since we
99965f9edeeSSam Leffler 		 * sample higher rates 1 try at a time doing so
100065f9edeeSSam Leffler 		 * may unfairly penalize them.
100165f9edeeSSam Leffler 		 */
1002eb6f0de0SAdrian Chadd 		if (rc[0].tries) {
1003b2763056SSam Leffler 			update_stats(sc, an, frame_size,
1004eb6f0de0SAdrian Chadd 				     rc[0].rix, rc[0].tries,
1005eb6f0de0SAdrian Chadd 				     rc[1].rix, rc[1].tries,
1006eb6f0de0SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1007eb6f0de0SAdrian Chadd 				     rc[3].rix, rc[3].tries,
100865f9edeeSSam Leffler 				     short_tries, long_tries,
1009eb6f0de0SAdrian Chadd 				     long_tries > rc[0].tries,
1010eb6f0de0SAdrian Chadd 				     nframes, nbad);
1011*38fda926SAdrian Chadd 			update_ewma_stats(sc, an, frame_size,
1012*38fda926SAdrian Chadd 				     rc[0].rix, rc[0].tries,
1013*38fda926SAdrian Chadd 				     rc[1].rix, rc[1].tries,
1014*38fda926SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1015*38fda926SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1016*38fda926SAdrian Chadd 				     short_tries, long_tries,
1017*38fda926SAdrian Chadd 				     long_tries > rc[0].tries,
1018*38fda926SAdrian Chadd 				     nframes, nbad);
1019*38fda926SAdrian Chadd 
1020eb6f0de0SAdrian Chadd 			long_tries -= rc[0].tries;
1021b2763056SSam Leffler 		}
1022b2763056SSam Leffler 
1023eb6f0de0SAdrian Chadd 		if (rc[1].tries && finalTSIdx > 0) {
1024b2763056SSam Leffler 			update_stats(sc, an, frame_size,
1025eb6f0de0SAdrian Chadd 				     rc[1].rix, rc[1].tries,
1026eb6f0de0SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1027eb6f0de0SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1028b2763056SSam Leffler 				     0, 0,
102965f9edeeSSam Leffler 				     short_tries, long_tries,
1030eb6f0de0SAdrian Chadd 				     status,
1031eb6f0de0SAdrian Chadd 				     nframes, nbad);
1032*38fda926SAdrian Chadd 			update_ewma_stats(sc, an, frame_size,
1033*38fda926SAdrian Chadd 				     rc[1].rix, rc[1].tries,
1034*38fda926SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1035*38fda926SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1036*38fda926SAdrian Chadd 				     0, 0,
1037*38fda926SAdrian Chadd 				     short_tries, long_tries,
1038*38fda926SAdrian Chadd 				     status,
1039*38fda926SAdrian Chadd 				     nframes, nbad);
1040eb6f0de0SAdrian Chadd 			long_tries -= rc[1].tries;
1041b2763056SSam Leffler 		}
1042b2763056SSam Leffler 
1043eb6f0de0SAdrian Chadd 		if (rc[2].tries && finalTSIdx > 1) {
1044b2763056SSam Leffler 			update_stats(sc, an, frame_size,
1045eb6f0de0SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1046eb6f0de0SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1047b2763056SSam Leffler 				     0, 0,
1048b2763056SSam Leffler 				     0, 0,
104965f9edeeSSam Leffler 				     short_tries, long_tries,
1050eb6f0de0SAdrian Chadd 				     status,
1051eb6f0de0SAdrian Chadd 				     nframes, nbad);
1052*38fda926SAdrian Chadd 			update_ewma_stats(sc, an, frame_size,
1053*38fda926SAdrian Chadd 				     rc[2].rix, rc[2].tries,
1054*38fda926SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1055*38fda926SAdrian Chadd 				     0, 0,
1056*38fda926SAdrian Chadd 				     0, 0,
1057*38fda926SAdrian Chadd 				     short_tries, long_tries,
1058*38fda926SAdrian Chadd 				     status,
1059*38fda926SAdrian Chadd 				     nframes, nbad);
1060eb6f0de0SAdrian Chadd 			long_tries -= rc[2].tries;
1061b2763056SSam Leffler 		}
1062b2763056SSam Leffler 
1063eb6f0de0SAdrian Chadd 		if (rc[3].tries && finalTSIdx > 2) {
1064b2763056SSam Leffler 			update_stats(sc, an, frame_size,
1065eb6f0de0SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1066b2763056SSam Leffler 				     0, 0,
1067b2763056SSam Leffler 				     0, 0,
1068b2763056SSam Leffler 				     0, 0,
106965f9edeeSSam Leffler 				     short_tries, long_tries,
1070eb6f0de0SAdrian Chadd 				     status,
1071eb6f0de0SAdrian Chadd 				     nframes, nbad);
1072eb6f0de0SAdrian Chadd 			update_ewma_stats(sc, an, frame_size,
1073eb6f0de0SAdrian Chadd 				     rc[3].rix, rc[3].tries,
1074*38fda926SAdrian Chadd 				     0, 0,
1075*38fda926SAdrian Chadd 				     0, 0,
1076*38fda926SAdrian Chadd 				     0, 0,
1077eb6f0de0SAdrian Chadd 				     short_tries, long_tries,
1078*38fda926SAdrian Chadd 				     status,
1079eb6f0de0SAdrian Chadd 				     nframes, nbad);
1080*38fda926SAdrian Chadd 		}
1081b2763056SSam Leffler 	}
1082fa20c234SSam Leffler }
1083fa20c234SSam Leffler 
1084fa20c234SSam Leffler void
1085fa20c234SSam Leffler ath_rate_newassoc(struct ath_softc *sc, struct ath_node *an, int isnew)
1086fa20c234SSam Leffler {
1087fa20c234SSam Leffler 	if (isnew)
1088b2763056SSam Leffler 		ath_rate_ctl_reset(sc, &an->an_node);
1089fa20c234SSam Leffler }
1090fa20c234SSam Leffler 
1091c1565b61SSam Leffler static const struct txschedule *mrr_schedules[IEEE80211_MODE_MAX+2] = {
1092c1565b61SSam Leffler 	NULL,		/* IEEE80211_MODE_AUTO */
1093c1565b61SSam Leffler 	series_11a,	/* IEEE80211_MODE_11A */
1094c1565b61SSam Leffler 	series_11g,	/* IEEE80211_MODE_11B */
1095c1565b61SSam Leffler 	series_11g,	/* IEEE80211_MODE_11G */
1096c1565b61SSam Leffler 	NULL,		/* IEEE80211_MODE_FH */
1097c1565b61SSam Leffler 	series_11a,	/* IEEE80211_MODE_TURBO_A */
1098c1565b61SSam Leffler 	series_11g,	/* IEEE80211_MODE_TURBO_G */
1099c1565b61SSam Leffler 	series_11a,	/* IEEE80211_MODE_STURBO_A */
1100a6a308a4SAdrian Chadd 	series_11na,	/* IEEE80211_MODE_11NA */
1101a6a308a4SAdrian Chadd 	series_11ng,	/* IEEE80211_MODE_11NG */
1102c1565b61SSam Leffler 	series_half,	/* IEEE80211_MODE_HALF */
1103c1565b61SSam Leffler 	series_quarter,	/* IEEE80211_MODE_QUARTER */
1104c1565b61SSam Leffler };
1105c1565b61SSam Leffler 
1106fa20c234SSam Leffler /*
1107fa20c234SSam Leffler  * Initialize the tables for a node.
1108fa20c234SSam Leffler  */
1109fa20c234SSam Leffler static void
1110b2763056SSam Leffler ath_rate_ctl_reset(struct ath_softc *sc, struct ieee80211_node *ni)
1111fa20c234SSam Leffler {
1112fa20c234SSam Leffler #define	RATE(_ix)	(ni->ni_rates.rs_rates[(_ix)] & IEEE80211_RATE_VAL)
1113c1565b61SSam Leffler #define	DOT11RATE(_ix)	(rt->info[(_ix)].dot11Rate & IEEE80211_RATE_VAL)
1114a6a308a4SAdrian Chadd #define	MCS(_ix)	(ni->ni_htrates.rs_rates[_ix] | IEEE80211_RATE_MCS)
1115fa20c234SSam Leffler 	struct ath_node *an = ATH_NODE(ni);
1116fa20c234SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
1117fa20c234SSam Leffler 	const HAL_RATE_TABLE *rt = sc->sc_currates;
1118c4ac32a8SAdrian Chadd 	int x, y, rix;
1119fa20c234SSam Leffler 
1120fa20c234SSam Leffler 	KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode));
1121c1565b61SSam Leffler 
1122c1565b61SSam Leffler 	KASSERT(sc->sc_curmode < IEEE80211_MODE_MAX+2,
1123c1565b61SSam Leffler 	    ("curmode %u", sc->sc_curmode));
1124193bfa21SAdrian Chadd 
1125c1565b61SSam Leffler 	sn->sched = mrr_schedules[sc->sc_curmode];
1126c1565b61SSam Leffler 	KASSERT(sn->sched != NULL,
1127c1565b61SSam Leffler 	    ("no mrr schedule for mode %u", sc->sc_curmode));
1128c1565b61SSam Leffler 
1129c1565b61SSam Leffler         sn->static_rix = -1;
1130c4ac32a8SAdrian Chadd 	ath_rate_update_static_rix(sc, ni);
1131b2763056SSam Leffler 
1132cc86f1eaSAdrian Chadd 	sn->currates = sc->sc_currates;
1133cc86f1eaSAdrian Chadd 
1134c1565b61SSam Leffler 	/*
1135c1565b61SSam Leffler 	 * Construct a bitmask of usable rates.  This has all
1136c1565b61SSam Leffler 	 * negotiated rates minus those marked by the hal as
1137c1565b61SSam Leffler 	 * to be ignored for doing rate control.
1138c1565b61SSam Leffler 	 */
1139c1565b61SSam Leffler 	sn->ratemask = 0;
1140a6a308a4SAdrian Chadd 	/* MCS rates */
1141a6a308a4SAdrian Chadd 	if (ni->ni_flags & IEEE80211_NODE_HT) {
1142a6a308a4SAdrian Chadd 		for (x = 0; x < ni->ni_htrates.rs_nrates; x++) {
1143a6a308a4SAdrian Chadd 			rix = sc->sc_rixmap[MCS(x)];
1144a6a308a4SAdrian Chadd 			if (rix == 0xff)
1145a6a308a4SAdrian Chadd 				continue;
1146a6a308a4SAdrian Chadd 			/* skip rates marked broken by hal */
1147a6a308a4SAdrian Chadd 			if (!rt->info[rix].valid)
1148a6a308a4SAdrian Chadd 				continue;
1149a6a308a4SAdrian Chadd 			KASSERT(rix < SAMPLE_MAXRATES,
1150a6a308a4SAdrian Chadd 			    ("mcs %u has rix %d", MCS(x), rix));
1151193bfa21SAdrian Chadd 			sn->ratemask |= (uint64_t) 1<<rix;
1152a6a308a4SAdrian Chadd 		}
1153a6a308a4SAdrian Chadd 	}
1154a6a308a4SAdrian Chadd 
1155a6a308a4SAdrian Chadd 	/* Legacy rates */
1156fa20c234SSam Leffler 	for (x = 0; x < ni->ni_rates.rs_nrates; x++) {
1157c1565b61SSam Leffler 		rix = sc->sc_rixmap[RATE(x)];
1158c1565b61SSam Leffler 		if (rix == 0xff)
11590ae09ec5SSam Leffler 			continue;
1160c1565b61SSam Leffler 		/* skip rates marked broken by hal */
1161c1565b61SSam Leffler 		if (!rt->info[rix].valid)
1162c1565b61SSam Leffler 			continue;
1163c1565b61SSam Leffler 		KASSERT(rix < SAMPLE_MAXRATES,
1164c1565b61SSam Leffler 		    ("rate %u has rix %d", RATE(x), rix));
1165193bfa21SAdrian Chadd 		sn->ratemask |= (uint64_t) 1<<rix;
1166b2763056SSam Leffler 	}
1167b032f27cSSam Leffler #ifdef IEEE80211_DEBUG
1168b032f27cSSam Leffler 	if (ieee80211_msg(ni->ni_vap, IEEE80211_MSG_RATECTL)) {
1169193bfa21SAdrian Chadd 		uint64_t mask;
1170c1565b61SSam Leffler 
1171b032f27cSSam Leffler 		ieee80211_note(ni->ni_vap, "[%6D] %s: size 1600 rate/tt",
1172c1565b61SSam Leffler 		    ni->ni_macaddr, ":", __func__);
1173c1565b61SSam Leffler 		for (mask = sn->ratemask, rix = 0; mask != 0; mask >>= 1, rix++) {
1174c1565b61SSam Leffler 			if ((mask & 1) == 0)
1175b032f27cSSam Leffler 				continue;
1176ae0944b8SAdrian Chadd 			printf(" %d %s/%d", dot11rate(rt, rix), dot11rate_label(rt, rix),
1177e09c8c4cSAdrian Chadd 			    calc_usecs_unicast_packet(sc, 1600, rix, 0,0,
1178532f2442SAdrian Chadd 			        (ni->ni_chw == 40)));
1179b032f27cSSam Leffler 		}
1180b032f27cSSam Leffler 		printf("\n");
1181b032f27cSSam Leffler 	}
1182b032f27cSSam Leffler #endif
1183b2763056SSam Leffler 	for (y = 0; y < NUM_PACKET_SIZE_BINS; y++) {
1184b2763056SSam Leffler 		int size = bin_to_size(y);
1185193bfa21SAdrian Chadd 		uint64_t mask;
1186c1565b61SSam Leffler 
1187b2763056SSam Leffler 		sn->packets_sent[y] = 0;
1188c1565b61SSam Leffler 		sn->current_sample_rix[y] = -1;
1189c1565b61SSam Leffler 		sn->last_sample_rix[y] = 0;
1190c1565b61SSam Leffler 		/* XXX start with first valid rate */
1191c1565b61SSam Leffler 		sn->current_rix[y] = ffs(sn->ratemask)-1;
1192b2763056SSam Leffler 
1193c1565b61SSam Leffler 		/*
1194c1565b61SSam Leffler 		 * Initialize the statistics buckets; these are
1195c1565b61SSam Leffler 		 * indexed by the rate code index.
1196c1565b61SSam Leffler 		 */
1197c1565b61SSam Leffler 		for (rix = 0, mask = sn->ratemask; mask != 0; rix++, mask >>= 1) {
1198c1565b61SSam Leffler 			if ((mask & 1) == 0)		/* not a valid rate */
1199c1565b61SSam Leffler 				continue;
1200c1565b61SSam Leffler 			sn->stats[y][rix].successive_failures = 0;
1201c1565b61SSam Leffler 			sn->stats[y][rix].tries = 0;
1202c1565b61SSam Leffler 			sn->stats[y][rix].total_packets = 0;
1203c1565b61SSam Leffler 			sn->stats[y][rix].packets_acked = 0;
1204c1565b61SSam Leffler 			sn->stats[y][rix].last_tx = 0;
1205eb6f0de0SAdrian Chadd 			sn->stats[y][rix].ewma_pct = 0;
1206b2763056SSam Leffler 
1207c1565b61SSam Leffler 			sn->stats[y][rix].perfect_tx_time =
1208e09c8c4cSAdrian Chadd 			    calc_usecs_unicast_packet(sc, size, rix, 0, 0,
1209532f2442SAdrian Chadd 			    (ni->ni_chw == 40));
1210c1565b61SSam Leffler 			sn->stats[y][rix].average_tx_time =
1211c1565b61SSam Leffler 			    sn->stats[y][rix].perfect_tx_time;
1212b2763056SSam Leffler 		}
1213b91bf513SSam Leffler 	}
1214c1565b61SSam Leffler #if 0
1215c1565b61SSam Leffler 	/* XXX 0, num_rates-1 are wrong */
1216b032f27cSSam Leffler 	IEEE80211_NOTE(ni->ni_vap, IEEE80211_MSG_RATECTL, ni,
1217b032f27cSSam Leffler 	    "%s: %d rates %d%sMbps (%dus)- %d%sMbps (%dus)", __func__,
1218b91bf513SSam Leffler 	    sn->num_rates,
1219c1565b61SSam Leffler 	    DOT11RATE(0)/2, DOT11RATE(0) % 1 ? ".5" : "",
1220b91bf513SSam Leffler 	    sn->stats[1][0].perfect_tx_time,
1221c1565b61SSam Leffler 	    DOT11RATE(sn->num_rates-1)/2, DOT11RATE(sn->num_rates-1) % 1 ? ".5" : "",
1222b91bf513SSam Leffler 	    sn->stats[1][sn->num_rates-1].perfect_tx_time
1223b91bf513SSam Leffler 	);
1224c1565b61SSam Leffler #endif
1225b032f27cSSam Leffler 	/* set the visible bit-rate */
1226c1565b61SSam Leffler 	if (sn->static_rix != -1)
1227c1565b61SSam Leffler 		ni->ni_txrate = DOT11RATE(sn->static_rix);
1228d0d425bfSSam Leffler 	else
1229c1565b61SSam Leffler 		ni->ni_txrate = RATE(0);
1230fa20c234SSam Leffler #undef RATE
1231c1565b61SSam Leffler #undef DOT11RATE
1232fa20c234SSam Leffler }
1233fa20c234SSam Leffler 
12342d20d655SAdrian Chadd /*
12352d20d655SAdrian Chadd  * Fetch the statistics for the given node.
12362d20d655SAdrian Chadd  *
12372d20d655SAdrian Chadd  * The ieee80211 node must be referenced and unlocked, however the ath_node
12382d20d655SAdrian Chadd  * must be locked.
12392d20d655SAdrian Chadd  *
12402d20d655SAdrian Chadd  * The main difference here is that we convert the rate indexes
12412d20d655SAdrian Chadd  * to 802.11 rates, or the userland output won't make much sense
12422d20d655SAdrian Chadd  * as it has no access to the rix table.
12432d20d655SAdrian Chadd  */
12442d20d655SAdrian Chadd int
12452d20d655SAdrian Chadd ath_rate_fetch_node_stats(struct ath_softc *sc, struct ath_node *an,
12462d20d655SAdrian Chadd     struct ath_rateioctl *rs)
12472d20d655SAdrian Chadd {
12482d20d655SAdrian Chadd 	struct sample_node *sn = ATH_NODE_SAMPLE(an);
12492d20d655SAdrian Chadd 	const HAL_RATE_TABLE *rt = sc->sc_currates;
12502d20d655SAdrian Chadd 	struct ath_rateioctl_tlv av;
1251be4f96a6SAdrian Chadd 	struct ath_rateioctl_rt *tv;
12522d20d655SAdrian Chadd 	int y;
1253be4f96a6SAdrian Chadd 	int o = 0;
12542d20d655SAdrian Chadd 
12552d20d655SAdrian Chadd 	ATH_NODE_LOCK_ASSERT(an);
12562d20d655SAdrian Chadd 
12572d20d655SAdrian Chadd 	/*
12582d20d655SAdrian Chadd 	 * Ensure there's enough space for the statistics.
12592d20d655SAdrian Chadd 	 */
12602d20d655SAdrian Chadd 	if (rs->len <
12612d20d655SAdrian Chadd 	    sizeof(struct ath_rateioctl_tlv) +
1262be4f96a6SAdrian Chadd 	    sizeof(struct ath_rateioctl_rt) +
1263be4f96a6SAdrian Chadd 	    sizeof(struct ath_rateioctl_tlv) +
1264be4f96a6SAdrian Chadd 	    sizeof(struct sample_node)) {
1265be4f96a6SAdrian Chadd 		device_printf(sc->sc_dev, "%s: len=%d, too short\n",
1266be4f96a6SAdrian Chadd 		    __func__,
1267be4f96a6SAdrian Chadd 		    rs->len);
12682d20d655SAdrian Chadd 		return (EINVAL);
1269be4f96a6SAdrian Chadd 	}
12702d20d655SAdrian Chadd 
12712d20d655SAdrian Chadd 	/*
12722d20d655SAdrian Chadd 	 * Take a temporary copy of the sample node state so we can
12732d20d655SAdrian Chadd 	 * modify it before we copy it.
12742d20d655SAdrian Chadd 	 */
1275be4f96a6SAdrian Chadd 	tv = malloc(sizeof(struct ath_rateioctl_rt), M_TEMP,
1276be4f96a6SAdrian Chadd 	    M_NOWAIT | M_ZERO);
1277be4f96a6SAdrian Chadd 	if (tv == NULL) {
12782d20d655SAdrian Chadd 		return (ENOMEM);
12792d20d655SAdrian Chadd 	}
12802d20d655SAdrian Chadd 
12812d20d655SAdrian Chadd 	/*
1282be4f96a6SAdrian Chadd 	 * Populate the rate table mapping TLV.
1283be4f96a6SAdrian Chadd 	 */
1284be4f96a6SAdrian Chadd 	tv->nentries = rt->rateCount;
1285be4f96a6SAdrian Chadd 	for (y = 0; y < rt->rateCount; y++) {
1286be4f96a6SAdrian Chadd 		tv->ratecode[y] = rt->info[y].dot11Rate & IEEE80211_RATE_VAL;
1287be4f96a6SAdrian Chadd 		if (rt->info[y].phy == IEEE80211_T_HT)
1288be4f96a6SAdrian Chadd 			tv->ratecode[y] |= IEEE80211_RATE_MCS;
1289be4f96a6SAdrian Chadd 	}
1290be4f96a6SAdrian Chadd 
1291be4f96a6SAdrian Chadd 	o = 0;
1292be4f96a6SAdrian Chadd 	/*
1293be4f96a6SAdrian Chadd 	 * First TLV - rate code mapping
1294be4f96a6SAdrian Chadd 	 */
1295be4f96a6SAdrian Chadd 	av.tlv_id = ATH_RATE_TLV_RATETABLE;
1296be4f96a6SAdrian Chadd 	av.tlv_len = sizeof(struct ath_rateioctl_rt);
1297be4f96a6SAdrian Chadd 	copyout(&av, rs->buf + o, sizeof(struct ath_rateioctl_tlv));
1298be4f96a6SAdrian Chadd 	o += sizeof(struct ath_rateioctl_tlv);
1299be4f96a6SAdrian Chadd 	copyout(tv, rs->buf + o, sizeof(struct ath_rateioctl_rt));
1300be4f96a6SAdrian Chadd 	o += sizeof(struct ath_rateioctl_rt);
1301be4f96a6SAdrian Chadd 
1302be4f96a6SAdrian Chadd 	/*
1303be4f96a6SAdrian Chadd 	 * Second TLV - sample node statistics
13042d20d655SAdrian Chadd 	 */
13052d20d655SAdrian Chadd 	av.tlv_id = ATH_RATE_TLV_SAMPLENODE;
13062d20d655SAdrian Chadd 	av.tlv_len = sizeof(struct sample_node);
1307be4f96a6SAdrian Chadd 	copyout(&av, rs->buf + o, sizeof(struct ath_rateioctl_tlv));
1308be4f96a6SAdrian Chadd 	o += sizeof(struct ath_rateioctl_tlv);
13092d20d655SAdrian Chadd 
13102d20d655SAdrian Chadd 	/*
13112d20d655SAdrian Chadd 	 * Copy the statistics over to the provided buffer.
13122d20d655SAdrian Chadd 	 */
1313be4f96a6SAdrian Chadd 	copyout(sn, rs->buf + o, sizeof(struct sample_node));
1314be4f96a6SAdrian Chadd 	o += sizeof(struct sample_node);
13152d20d655SAdrian Chadd 
1316be4f96a6SAdrian Chadd 	free(tv, M_TEMP);
13172d20d655SAdrian Chadd 
13182d20d655SAdrian Chadd 	return (0);
13192d20d655SAdrian Chadd }
13202d20d655SAdrian Chadd 
1321f0fd5e07SSam Leffler static void
1322c1565b61SSam Leffler sample_stats(void *arg, struct ieee80211_node *ni)
1323c1565b61SSam Leffler {
1324c1565b61SSam Leffler 	struct ath_softc *sc = arg;
1325c1565b61SSam Leffler 	const HAL_RATE_TABLE *rt = sc->sc_currates;
1326c1565b61SSam Leffler 	struct sample_node *sn = ATH_NODE_SAMPLE(ATH_NODE(ni));
1327193bfa21SAdrian Chadd 	uint64_t mask;
1328c1565b61SSam Leffler 	int rix, y;
1329c1565b61SSam Leffler 
1330a055e7ceSKonstantin Belousov 	printf("\n[%s] refcnt %d static_rix (%d %s) ratemask 0x%jx\n",
1331c1565b61SSam Leffler 	    ether_sprintf(ni->ni_macaddr), ieee80211_node_refcnt(ni),
1332eb6f0de0SAdrian Chadd 	    dot11rate(rt, sn->static_rix),
1333eb6f0de0SAdrian Chadd 	    dot11rate_label(rt, sn->static_rix),
1334a055e7ceSKonstantin Belousov 	    (uintmax_t)sn->ratemask);
1335c1565b61SSam Leffler 	for (y = 0; y < NUM_PACKET_SIZE_BINS; y++) {
1336ae0944b8SAdrian Chadd 		printf("[%4u] cur rix %d (%d %s) since switch: packets %d ticks %u\n",
1337c1565b61SSam Leffler 		    bin_to_size(y), sn->current_rix[y],
1338ae0944b8SAdrian Chadd 		    dot11rate(rt, sn->current_rix[y]),
1339ae0944b8SAdrian Chadd 		    dot11rate_label(rt, sn->current_rix[y]),
1340c1565b61SSam Leffler 		    sn->packets_since_switch[y], sn->ticks_since_switch[y]);
1341eb6f0de0SAdrian Chadd 		printf("[%4u] last sample (%d %s) cur sample (%d %s) packets sent %d\n",
1342eb6f0de0SAdrian Chadd 		    bin_to_size(y),
1343eb6f0de0SAdrian Chadd 		    dot11rate(rt, sn->last_sample_rix[y]),
1344eb6f0de0SAdrian Chadd 		    dot11rate_label(rt, sn->last_sample_rix[y]),
1345eb6f0de0SAdrian Chadd 		    dot11rate(rt, sn->current_sample_rix[y]),
1346eb6f0de0SAdrian Chadd 		    dot11rate_label(rt, sn->current_sample_rix[y]),
1347eb6f0de0SAdrian Chadd 		    sn->packets_sent[y]);
1348c1565b61SSam Leffler 		printf("[%4u] packets since sample %d sample tt %u\n",
1349c1565b61SSam Leffler 		    bin_to_size(y), sn->packets_since_sample[y],
1350c1565b61SSam Leffler 		    sn->sample_tt[y]);
1351c1565b61SSam Leffler 	}
1352c1565b61SSam Leffler 	for (mask = sn->ratemask, rix = 0; mask != 0; mask >>= 1, rix++) {
1353c1565b61SSam Leffler 		if ((mask & 1) == 0)
1354c1565b61SSam Leffler 				continue;
1355c1565b61SSam Leffler 		for (y = 0; y < NUM_PACKET_SIZE_BINS; y++) {
1356c1565b61SSam Leffler 			if (sn->stats[y][rix].total_packets == 0)
1357c1565b61SSam Leffler 				continue;
1358eb6f0de0SAdrian Chadd 			printf("[%2u %s:%4u] %8ju:%-8ju (%3d%%) (EWMA %3d.%1d%%) T %8ju F %4d avg %5u last %u\n",
1359ae0944b8SAdrian Chadd 			    dot11rate(rt, rix), dot11rate_label(rt, rix),
1360c1565b61SSam Leffler 			    bin_to_size(y),
136187acb7d5SAdrian Chadd 			    (uintmax_t) sn->stats[y][rix].total_packets,
136287acb7d5SAdrian Chadd 			    (uintmax_t) sn->stats[y][rix].packets_acked,
136387acb7d5SAdrian Chadd 			    (int) ((sn->stats[y][rix].packets_acked * 100ULL) /
136487acb7d5SAdrian Chadd 			     sn->stats[y][rix].total_packets),
1365eb6f0de0SAdrian Chadd 			    sn->stats[y][rix].ewma_pct / 10,
1366eb6f0de0SAdrian Chadd 			    sn->stats[y][rix].ewma_pct % 10,
136787acb7d5SAdrian Chadd 			    (uintmax_t) sn->stats[y][rix].tries,
1368c1565b61SSam Leffler 			    sn->stats[y][rix].successive_failures,
1369c1565b61SSam Leffler 			    sn->stats[y][rix].average_tx_time,
1370c1565b61SSam Leffler 			    ticks - sn->stats[y][rix].last_tx);
1371c1565b61SSam Leffler 		}
1372c1565b61SSam Leffler 	}
1373c1565b61SSam Leffler }
1374c1565b61SSam Leffler 
1375c1565b61SSam Leffler static int
1376c1565b61SSam Leffler ath_rate_sysctl_stats(SYSCTL_HANDLER_ARGS)
1377c1565b61SSam Leffler {
1378c1565b61SSam Leffler 	struct ath_softc *sc = arg1;
1379c1565b61SSam Leffler 	struct ifnet *ifp = sc->sc_ifp;
1380c1565b61SSam Leffler 	struct ieee80211com *ic = ifp->if_l2com;
1381c1565b61SSam Leffler 	int error, v;
1382c1565b61SSam Leffler 
1383c1565b61SSam Leffler 	v = 0;
1384c1565b61SSam Leffler 	error = sysctl_handle_int(oidp, &v, 0, req);
1385c1565b61SSam Leffler 	if (error || !req->newptr)
1386c1565b61SSam Leffler 		return error;
1387c1565b61SSam Leffler 	ieee80211_iterate_nodes(&ic->ic_sta, sample_stats, sc);
1388c1565b61SSam Leffler 	return 0;
1389c1565b61SSam Leffler }
1390c1565b61SSam Leffler 
1391c1565b61SSam Leffler static int
1392c1565b61SSam Leffler ath_rate_sysctl_smoothing_rate(SYSCTL_HANDLER_ARGS)
1393c1565b61SSam Leffler {
1394c1565b61SSam Leffler 	struct sample_softc *ssc = arg1;
1395c1565b61SSam Leffler 	int rate, error;
1396c1565b61SSam Leffler 
1397c1565b61SSam Leffler 	rate = ssc->smoothing_rate;
1398c1565b61SSam Leffler 	error = sysctl_handle_int(oidp, &rate, 0, req);
1399c1565b61SSam Leffler 	if (error || !req->newptr)
1400c1565b61SSam Leffler 		return error;
1401c1565b61SSam Leffler 	if (!(0 <= rate && rate < 100))
1402c1565b61SSam Leffler 		return EINVAL;
1403c1565b61SSam Leffler 	ssc->smoothing_rate = rate;
1404c1565b61SSam Leffler 	ssc->smoothing_minpackets = 100 / (100 - rate);
1405c1565b61SSam Leffler 	return 0;
1406c1565b61SSam Leffler }
1407c1565b61SSam Leffler 
1408c1565b61SSam Leffler static int
1409c1565b61SSam Leffler ath_rate_sysctl_sample_rate(SYSCTL_HANDLER_ARGS)
1410c1565b61SSam Leffler {
1411c1565b61SSam Leffler 	struct sample_softc *ssc = arg1;
1412c1565b61SSam Leffler 	int rate, error;
1413c1565b61SSam Leffler 
1414c1565b61SSam Leffler 	rate = ssc->sample_rate;
1415c1565b61SSam Leffler 	error = sysctl_handle_int(oidp, &rate, 0, req);
1416c1565b61SSam Leffler 	if (error || !req->newptr)
1417c1565b61SSam Leffler 		return error;
1418c1565b61SSam Leffler 	if (!(2 <= rate && rate <= 100))
1419c1565b61SSam Leffler 		return EINVAL;
1420c1565b61SSam Leffler 	ssc->sample_rate = rate;
1421c1565b61SSam Leffler 	return 0;
1422c1565b61SSam Leffler }
1423c1565b61SSam Leffler 
1424c1565b61SSam Leffler static void
1425c1565b61SSam Leffler ath_rate_sysctlattach(struct ath_softc *sc, struct sample_softc *ssc)
1426fa20c234SSam Leffler {
1427fa20c234SSam Leffler 	struct sysctl_ctx_list *ctx = device_get_sysctl_ctx(sc->sc_dev);
1428fa20c234SSam Leffler 	struct sysctl_oid *tree = device_get_sysctl_tree(sc->sc_dev);
1429fa20c234SSam Leffler 
1430c1565b61SSam Leffler 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
1431c1565b61SSam Leffler 	    "smoothing_rate", CTLTYPE_INT | CTLFLAG_RW, ssc, 0,
1432c1565b61SSam Leffler 	    ath_rate_sysctl_smoothing_rate, "I",
1433c1565b61SSam Leffler 	    "sample: smoothing rate for avg tx time (%%)");
1434c1565b61SSam Leffler 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
1435c1565b61SSam Leffler 	    "sample_rate", CTLTYPE_INT | CTLFLAG_RW, ssc, 0,
1436c1565b61SSam Leffler 	    ath_rate_sysctl_sample_rate, "I",
1437c1565b61SSam Leffler 	    "sample: percent air time devoted to sampling new rates (%%)");
1438c1565b61SSam Leffler 	/* XXX max_successive_failures, stale_failure_timeout, min_switch */
1439c1565b61SSam Leffler 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
1440c1565b61SSam Leffler 	    "sample_stats", CTLTYPE_INT | CTLFLAG_RW, sc, 0,
1441c1565b61SSam Leffler 	    ath_rate_sysctl_stats, "I", "sample: print statistics");
1442fa20c234SSam Leffler }
1443fa20c234SSam Leffler 
1444fa20c234SSam Leffler struct ath_ratectrl *
1445fa20c234SSam Leffler ath_rate_attach(struct ath_softc *sc)
1446fa20c234SSam Leffler {
1447c1565b61SSam Leffler 	struct sample_softc *ssc;
1448fa20c234SSam Leffler 
1449c1565b61SSam Leffler 	ssc = malloc(sizeof(struct sample_softc), M_DEVBUF, M_NOWAIT|M_ZERO);
1450c1565b61SSam Leffler 	if (ssc == NULL)
1451fa20c234SSam Leffler 		return NULL;
1452c1565b61SSam Leffler 	ssc->arc.arc_space = sizeof(struct sample_node);
1453e69db8dfSAdrian Chadd 	ssc->smoothing_rate = 75;		/* ewma percentage ([0..99]) */
1454c1565b61SSam Leffler 	ssc->smoothing_minpackets = 100 / (100 - ssc->smoothing_rate);
1455c1565b61SSam Leffler 	ssc->sample_rate = 10;			/* %time to try diff tx rates */
1456c1565b61SSam Leffler 	ssc->max_successive_failures = 3;	/* threshold for rate sampling*/
1457c1565b61SSam Leffler 	ssc->stale_failure_timeout = 10 * hz;	/* 10 seconds */
1458c1565b61SSam Leffler 	ssc->min_switch = hz;			/* 1 second */
1459c1565b61SSam Leffler 	ath_rate_sysctlattach(sc, ssc);
1460c1565b61SSam Leffler 	return &ssc->arc;
1461fa20c234SSam Leffler }
1462fa20c234SSam Leffler 
1463fa20c234SSam Leffler void
1464fa20c234SSam Leffler ath_rate_detach(struct ath_ratectrl *arc)
1465fa20c234SSam Leffler {
1466c1565b61SSam Leffler 	struct sample_softc *ssc = (struct sample_softc *) arc;
1467fa20c234SSam Leffler 
1468c1565b61SSam Leffler 	free(ssc, M_DEVBUF);
1469fa20c234SSam Leffler }
1470