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 */ 44fa20c234SSam Leffler #include "opt_inet.h" 45fa20c234SSam Leffler 46fa20c234SSam Leffler #include <sys/param.h> 47fa20c234SSam Leffler #include <sys/systm.h> 48fa20c234SSam Leffler #include <sys/sysctl.h> 49fa20c234SSam Leffler #include <sys/module.h> 50fa20c234SSam Leffler #include <sys/kernel.h> 51fa20c234SSam Leffler #include <sys/lock.h> 52fa20c234SSam Leffler #include <sys/mutex.h> 53fa20c234SSam Leffler #include <sys/errno.h> 54fa20c234SSam Leffler 55fa20c234SSam Leffler #include <machine/bus.h> 56fa20c234SSam Leffler #include <machine/resource.h> 57fa20c234SSam Leffler #include <sys/bus.h> 58fa20c234SSam Leffler 59fa20c234SSam Leffler #include <sys/socket.h> 60fa20c234SSam Leffler 61fa20c234SSam Leffler #include <net/if.h> 62fa20c234SSam Leffler #include <net/if_media.h> 63fa20c234SSam Leffler #include <net/if_arp.h> 64fa20c234SSam Leffler #include <net/ethernet.h> /* XXX for ether_sprintf */ 65fa20c234SSam Leffler 66fa20c234SSam Leffler #include <net80211/ieee80211_var.h> 67fa20c234SSam Leffler 68fa20c234SSam Leffler #include <net/bpf.h> 69fa20c234SSam Leffler 70fa20c234SSam Leffler #ifdef INET 71fa20c234SSam Leffler #include <netinet/in.h> 72fa20c234SSam Leffler #include <netinet/if_ether.h> 73fa20c234SSam Leffler #endif 74fa20c234SSam Leffler 75fa20c234SSam Leffler #include <dev/ath/if_athvar.h> 76fa20c234SSam Leffler #include <dev/ath/ath_rate/sample/sample.h> 77fa20c234SSam Leffler #include <contrib/dev/ath/ah_desc.h> 78fa20c234SSam Leffler 79fa20c234SSam Leffler #define SAMPLE_DEBUG 80fa20c234SSam Leffler #ifdef SAMPLE_DEBUG 81fa20c234SSam Leffler enum { 8265f9edeeSSam Leffler ATH_DEBUG_NODE = 0x00080000, /* node management */ 8365f9edeeSSam Leffler ATH_DEBUG_RATE = 0x00000010, /* rate control */ 8465f9edeeSSam Leffler ATH_DEBUG_ANY = 0xffffffff 85fa20c234SSam Leffler }; 8665f9edeeSSam Leffler #define DPRINTF(sc, m, fmt, ...) do { \ 8765f9edeeSSam Leffler if (sc->sc_debug & (m)) \ 8865f9edeeSSam Leffler printf(fmt, __VA_ARGS__); \ 89fa20c234SSam Leffler } while (0) 90fa20c234SSam Leffler #else 9165f9edeeSSam Leffler #define DPRINTF(sc, m, fmt, ...) do { \ 9265f9edeeSSam Leffler (void) sc; \ 9365f9edeeSSam Leffler } while (0) 94fa20c234SSam Leffler #endif 95fa20c234SSam Leffler 96fa20c234SSam Leffler /* 97fa20c234SSam Leffler * This file is an implementation of the SampleRate algorithm 98fa20c234SSam Leffler * in "Bit-rate Selection in Wireless Networks" 99fa20c234SSam Leffler * (http://www.pdos.lcs.mit.edu/papers/jbicket-ms.ps) 100fa20c234SSam Leffler * 101fa20c234SSam Leffler * SampleRate chooses the bit-rate it predicts will provide the most 102fa20c234SSam Leffler * throughput based on estimates of the expected per-packet 103fa20c234SSam Leffler * transmission time for each bit-rate. SampleRate periodically sends 104fa20c234SSam Leffler * packets at bit-rates other than the current one to estimate when 105fa20c234SSam Leffler * another bit-rate will provide better performance. SampleRate 106fa20c234SSam Leffler * switches to another bit-rate when its estimated per-packet 107fa20c234SSam Leffler * transmission time becomes smaller than the current bit-rate's. 108fa20c234SSam Leffler * SampleRate reduces the number of bit-rates it must sample by 109fa20c234SSam Leffler * eliminating those that could not perform better than the one 110fa20c234SSam Leffler * currently being used. SampleRate also stops probing at a bit-rate 111fa20c234SSam Leffler * if it experiences several successive losses. 112fa20c234SSam Leffler * 113fa20c234SSam Leffler * The difference between the algorithm in the thesis and the one in this 114fa20c234SSam Leffler * file is that the one in this file uses a ewma instead of a window. 115fa20c234SSam Leffler * 116b91bf513SSam Leffler * Also, this implementation tracks the average transmission time for 117b91bf513SSam Leffler * a few different packet sizes independently for each link. 118fa20c234SSam Leffler */ 119fa20c234SSam Leffler 120b2763056SSam Leffler #define STALE_FAILURE_TIMEOUT_MS 10000 121b91bf513SSam Leffler #define MIN_SWITCH_MS 1000 122b2763056SSam Leffler 123b2763056SSam Leffler static void ath_rate_ctl_reset(struct ath_softc *, struct ieee80211_node *); 124fa20c234SSam Leffler 125b91bf513SSam Leffler static __inline int 126b91bf513SSam Leffler size_to_bin(int size) 127fa20c234SSam Leffler { 128fa20c234SSam Leffler int x = 0; 129fa20c234SSam Leffler for (x = 0; x < NUM_PACKET_SIZE_BINS; x++) { 13015f13975SSam Leffler if (size <= packet_size_bins[x]) { 131fa20c234SSam Leffler return x; 132fa20c234SSam Leffler } 133fa20c234SSam Leffler } 134fa20c234SSam Leffler return NUM_PACKET_SIZE_BINS-1; 135fa20c234SSam Leffler } 136b91bf513SSam Leffler static __inline int 137b91bf513SSam Leffler bin_to_size(int index) { 138fa20c234SSam Leffler return packet_size_bins[index]; 139fa20c234SSam Leffler } 140fa20c234SSam Leffler 141b91bf513SSam Leffler static __inline int 142b91bf513SSam Leffler rate_to_ndx(struct sample_node *sn, int rate) { 143b2763056SSam Leffler int x = 0; 144b2763056SSam Leffler for (x = 0; x < sn->num_rates; x++) { 145b2763056SSam Leffler if (sn->rates[x].rate == rate) { 146b2763056SSam Leffler return x; 147b2763056SSam Leffler } 148b2763056SSam Leffler } 149b2763056SSam Leffler return -1; 150b2763056SSam Leffler } 151b2763056SSam Leffler 152fa20c234SSam Leffler void 153fa20c234SSam Leffler ath_rate_node_init(struct ath_softc *sc, struct ath_node *an) 154fa20c234SSam Leffler { 15565f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_NODE, "%s:\n", __func__); 156fa20c234SSam Leffler /* NB: assumed to be zero'd by caller */ 157fa20c234SSam Leffler } 158fa20c234SSam Leffler 159fa20c234SSam Leffler void 160fa20c234SSam Leffler ath_rate_node_cleanup(struct ath_softc *sc, struct ath_node *an) 161fa20c234SSam Leffler { 16265f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_NODE, "%s:\n", __func__); 163fa20c234SSam Leffler } 164fa20c234SSam Leffler 165fa20c234SSam Leffler 166fa20c234SSam Leffler /* 167fa20c234SSam Leffler * returns the ndx with the lowest average_tx_time, 168fa20c234SSam Leffler * or -1 if all the average_tx_times are 0. 169fa20c234SSam Leffler */ 170b2763056SSam Leffler static __inline int best_rate_ndx(struct sample_node *sn, int size_bin, 171b2763056SSam Leffler int require_acked_before) 172fa20c234SSam Leffler { 173fa20c234SSam Leffler int x = 0; 174fa20c234SSam Leffler int best_rate_ndx = 0; 175fa20c234SSam Leffler int best_rate_tt = 0; 176fa20c234SSam Leffler for (x = 0; x < sn->num_rates; x++) { 177fa20c234SSam Leffler int tt = sn->stats[size_bin][x].average_tx_time; 178b2763056SSam Leffler if (tt <= 0 || (require_acked_before && 179b2763056SSam Leffler !sn->stats[size_bin][x].packets_acked)) { 180b2763056SSam Leffler continue; 181b2763056SSam Leffler } 182b91bf513SSam Leffler 183b91bf513SSam Leffler /* 9 megabits never works better than 12 */ 184b91bf513SSam Leffler if (sn->rates[x].rate == 18) 185b91bf513SSam Leffler continue; 186b91bf513SSam Leffler 187b91bf513SSam Leffler /* don't use a bit-rate that has been failing */ 188b91bf513SSam Leffler if (sn->stats[size_bin][x].successive_failures > 3) 189b91bf513SSam Leffler continue; 190b91bf513SSam Leffler 191fa20c234SSam Leffler if (!best_rate_tt || best_rate_tt > tt) { 192fa20c234SSam Leffler best_rate_tt = tt; 193fa20c234SSam Leffler best_rate_ndx = x; 194fa20c234SSam Leffler } 195fa20c234SSam Leffler } 196fa20c234SSam Leffler return (best_rate_tt) ? best_rate_ndx : -1; 197fa20c234SSam Leffler } 198fa20c234SSam Leffler 199fa20c234SSam Leffler /* 200b91bf513SSam Leffler * pick a good "random" bit-rate to sample other than the current one 201fa20c234SSam Leffler */ 202b91bf513SSam Leffler static __inline int 203b91bf513SSam Leffler pick_sample_ndx(struct sample_node *sn, int size_bin) 204fa20c234SSam Leffler { 205fa20c234SSam Leffler int x = 0; 206b2763056SSam Leffler int current_ndx = 0; 207b2763056SSam Leffler unsigned current_tt = 0; 208fa20c234SSam Leffler 209b2763056SSam Leffler current_ndx = sn->current_rate[size_bin]; 210b2763056SSam Leffler if (current_ndx < 0) { 211fa20c234SSam Leffler /* no successes yet, send at the lowest bit-rate */ 212fa20c234SSam Leffler return 0; 213fa20c234SSam Leffler } 214fa20c234SSam Leffler 215b2763056SSam Leffler current_tt = sn->stats[size_bin][current_ndx].average_tx_time; 216fa20c234SSam Leffler 217b2763056SSam Leffler for (x = 0; x < sn->num_rates; x++) { 218b2763056SSam Leffler int ndx = (sn->last_sample_ndx[size_bin]+1+x) % sn->num_rates; 219fa20c234SSam Leffler 220b91bf513SSam Leffler /* don't sample the current bit-rate */ 221b91bf513SSam Leffler if (ndx == current_ndx) 222b91bf513SSam Leffler continue; 223b91bf513SSam Leffler 224b91bf513SSam Leffler /* this bit-rate is always worse than the current one */ 225b91bf513SSam Leffler if (sn->stats[size_bin][ndx].perfect_tx_time > current_tt) 226b91bf513SSam Leffler continue; 227b91bf513SSam Leffler 228b91bf513SSam Leffler /* rarely sample bit-rates that fail a lot */ 229b91bf513SSam Leffler if (ticks - sn->stats[size_bin][ndx].last_tx < ((hz * STALE_FAILURE_TIMEOUT_MS)/1000) && 230b91bf513SSam Leffler sn->stats[size_bin][ndx].successive_failures > 3) 231b91bf513SSam Leffler continue; 232b91bf513SSam Leffler 233b91bf513SSam Leffler /* don't sample more than 2 indexes higher 234b91bf513SSam Leffler * for rates higher than 11 megabits 235b91bf513SSam Leffler */ 236b91bf513SSam Leffler if (sn->rates[ndx].rate > 22 && ndx > current_ndx + 2) 237b91bf513SSam Leffler continue; 238b91bf513SSam Leffler 239b91bf513SSam Leffler /* 9 megabits never works better than 12 */ 240b91bf513SSam Leffler if (sn->rates[ndx].rate == 18) 241b91bf513SSam Leffler continue; 242b91bf513SSam Leffler 243b91bf513SSam Leffler /* if we're using 11 megabits, only sample up to 12 megabits 244b91bf513SSam Leffler */ 245b91bf513SSam Leffler if (sn->rates[current_ndx].rate == 22 && ndx > current_ndx + 1) 246b91bf513SSam Leffler continue; 247b91bf513SSam Leffler 248b2763056SSam Leffler sn->last_sample_ndx[size_bin] = ndx; 249b2763056SSam Leffler return ndx; 250fa20c234SSam Leffler } 251b2763056SSam Leffler return current_ndx; 252fa20c234SSam Leffler } 253fa20c234SSam Leffler 254fa20c234SSam Leffler void 255fa20c234SSam Leffler ath_rate_findrate(struct ath_softc *sc, struct ath_node *an, 256a4d8dd10SSam Leffler int shortPreamble, size_t frameLen, 257fa20c234SSam Leffler u_int8_t *rix, int *try0, u_int8_t *txrate) 258fa20c234SSam Leffler { 259fa20c234SSam Leffler struct sample_node *sn = ATH_NODE_SAMPLE(an); 260fa20c234SSam Leffler struct sample_softc *ssc = ATH_SOFTC_SAMPLE(sc); 261b2763056SSam Leffler struct ieee80211com *ic = &sc->sc_ic; 262b91bf513SSam Leffler int ndx, size_bin, mrr, best_ndx, change_rates; 263b2763056SSam Leffler unsigned average_tx_time; 264fa20c234SSam Leffler 265b91bf513SSam Leffler mrr = sc->sc_mrretry && !(ic->ic_flags & IEEE80211_F_USEPROT); 266b2763056SSam Leffler size_bin = size_to_bin(frameLen); 267b2763056SSam Leffler best_ndx = best_rate_ndx(sn, size_bin, !mrr); 268fa20c234SSam Leffler 26943e9cf7cSSam Leffler if (best_ndx >= 0) { 270b2763056SSam Leffler average_tx_time = sn->stats[size_bin][best_ndx].average_tx_time; 271fa20c234SSam Leffler } else { 272b2763056SSam Leffler average_tx_time = 0; 273b2763056SSam Leffler } 274b91bf513SSam Leffler 275b2763056SSam Leffler if (sn->static_rate_ndx != -1) { 276b2763056SSam Leffler ndx = sn->static_rate_ndx; 277b2763056SSam Leffler *try0 = ATH_TXMAXTRY; 278b2763056SSam Leffler } else { 279b2763056SSam Leffler *try0 = mrr ? 2 : ATH_TXMAXTRY; 280b2763056SSam Leffler 281b91bf513SSam Leffler if (sn->sample_tt[size_bin] < average_tx_time * (sn->packets_since_sample[size_bin]*ssc->ath_sample_rate/100)) { 282fa20c234SSam Leffler /* 283b2763056SSam Leffler * we want to limit the time measuring the performance 284b2763056SSam Leffler * of other bit-rates to ath_sample_rate% of the 285b2763056SSam Leffler * total transmission time. 286fa20c234SSam Leffler */ 287fa20c234SSam Leffler ndx = pick_sample_ndx(sn, size_bin); 288b2763056SSam Leffler if (ndx != sn->current_rate[size_bin]) { 289b2763056SSam Leffler sn->current_sample_ndx[size_bin] = ndx; 290b2763056SSam Leffler } else { 291b2763056SSam Leffler sn->current_sample_ndx[size_bin] = -1; 292b2763056SSam Leffler } 293b2763056SSam Leffler sn->packets_since_sample[size_bin] = 0; 294b2763056SSam Leffler 295b2763056SSam Leffler } else { 296b91bf513SSam Leffler change_rates = 0; 297b91bf513SSam Leffler if (!sn->packets_sent[size_bin] || best_ndx == -1) { 298b91bf513SSam Leffler /* no packet has been sent successfully yet */ 299b91bf513SSam Leffler for (ndx = sn->num_rates-1; ndx > 0; ndx--) { 300b2763056SSam Leffler /* 301b91bf513SSam Leffler * pick the highest rate <= 36 Mbps 302b91bf513SSam Leffler * that hasn't failed. 303b2763056SSam Leffler */ 304b91bf513SSam Leffler if (sn->rates[ndx].rate <= 72 && 305b91bf513SSam Leffler sn->stats[size_bin][ndx].successive_failures == 0) { 306b91bf513SSam Leffler break; 307b91bf513SSam Leffler } 308b91bf513SSam Leffler } 309b91bf513SSam Leffler change_rates = 1; 310b91bf513SSam Leffler best_ndx = ndx; 311b91bf513SSam Leffler } else if (sn->packets_sent[size_bin] < 20) { 312b91bf513SSam Leffler /* let the bit-rate switch quickly during the first few packets */ 313b91bf513SSam Leffler change_rates = 1; 314b91bf513SSam Leffler } else if (ticks - ((hz*MIN_SWITCH_MS)/1000) > sn->ticks_since_switch[size_bin]) { 315b91bf513SSam Leffler /* 2 seconds have gone by */ 316b91bf513SSam Leffler change_rates = 1; 317b91bf513SSam Leffler } else if (average_tx_time * 2 < sn->stats[size_bin][sn->current_rate[size_bin]].average_tx_time) { 318b91bf513SSam Leffler /* the current bit-rate is twice as slow as the best one */ 319b91bf513SSam Leffler change_rates = 1; 320b91bf513SSam Leffler } 321b91bf513SSam Leffler 322b91bf513SSam Leffler sn->packets_since_sample[size_bin]++; 323b91bf513SSam Leffler 324b91bf513SSam Leffler if (change_rates) { 325b91bf513SSam Leffler if (best_ndx != sn->current_rate[size_bin]) { 32665f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 32765f9edeeSSam Leffler "%s: %s size %d switch rate %d (%d/%d) -> %d (%d/%d) after %d packets mrr %d\n", 328b2763056SSam Leffler __func__, 329b2763056SSam Leffler ether_sprintf(an->an_node.ni_macaddr), 330b2763056SSam Leffler packet_size_bins[size_bin], 331b2763056SSam Leffler sn->rates[sn->current_rate[size_bin]].rate, 332b2763056SSam Leffler sn->stats[size_bin][sn->current_rate[size_bin]].average_tx_time, 333b2763056SSam Leffler sn->stats[size_bin][sn->current_rate[size_bin]].perfect_tx_time, 334b2763056SSam Leffler sn->rates[best_ndx].rate, 335b2763056SSam Leffler sn->stats[size_bin][best_ndx].average_tx_time, 336b2763056SSam Leffler sn->stats[size_bin][best_ndx].perfect_tx_time, 337b2763056SSam Leffler sn->packets_since_switch[size_bin], 338b2763056SSam Leffler mrr); 339b2763056SSam Leffler } 340b2763056SSam Leffler sn->packets_since_switch[size_bin] = 0; 341b2763056SSam Leffler sn->current_rate[size_bin] = best_ndx; 342b91bf513SSam Leffler sn->ticks_since_switch[size_bin] = ticks; 343b2763056SSam Leffler } 344b2763056SSam Leffler ndx = sn->current_rate[size_bin]; 345b2763056SSam Leffler sn->packets_since_switch[size_bin]++; 346b91bf513SSam Leffler if (size_bin == 0) { 347b91bf513SSam Leffler /* 348b91bf513SSam Leffler * set the visible txrate for this node 349b91bf513SSam Leffler * to the rate of small packets 350b91bf513SSam Leffler */ 351b91bf513SSam Leffler an->an_node.ni_txrate = ndx; 352b91bf513SSam Leffler } 353b91bf513SSam Leffler } 354fa20c234SSam Leffler } 355fa20c234SSam Leffler 356b91bf513SSam Leffler KASSERT(ndx >= 0 && ndx < sn->num_rates, ("ndx is %d", ndx)); 357fa20c234SSam Leffler 358fa20c234SSam Leffler *rix = sn->rates[ndx].rix; 359fa20c234SSam Leffler if (shortPreamble) { 360fa20c234SSam Leffler *txrate = sn->rates[ndx].shortPreambleRateCode; 361fa20c234SSam Leffler } else { 362fa20c234SSam Leffler *txrate = sn->rates[ndx].rateCode; 363fa20c234SSam Leffler } 364fa20c234SSam Leffler sn->packets_sent[size_bin]++; 365fa20c234SSam Leffler } 366fa20c234SSam Leffler 367fa20c234SSam Leffler void 368fa20c234SSam Leffler ath_rate_setupxtxdesc(struct ath_softc *sc, struct ath_node *an, 369a4d8dd10SSam Leffler struct ath_desc *ds, int shortPreamble, u_int8_t rix) 370fa20c234SSam Leffler { 371fa20c234SSam Leffler struct sample_node *sn = ATH_NODE_SAMPLE(an); 372fa20c234SSam Leffler int rateCode = -1; 373b91bf513SSam Leffler int frame_size = 0; 374b91bf513SSam Leffler int size_bin = 0; 375b91bf513SSam Leffler int ndx = 0; 376fa20c234SSam Leffler 377b91bf513SSam Leffler size_bin = size_to_bin(frame_size); // TODO: it's correct that frame_size alway 0 ? 378b91bf513SSam Leffler ndx = sn->current_rate[size_bin]; /* retry at the current bit-rate */ 379fa20c234SSam Leffler 380b91bf513SSam Leffler if (!sn->stats[size_bin][ndx].packets_acked) { 381b91bf513SSam Leffler ndx = 0; /* use the lowest bit-rate */ 382b2763056SSam Leffler } 383b91bf513SSam Leffler 384fa20c234SSam Leffler if (shortPreamble) { 385b2763056SSam Leffler rateCode = sn->rates[ndx].shortPreambleRateCode; 386fa20c234SSam Leffler } else { 387b2763056SSam Leffler rateCode = sn->rates[ndx].rateCode; 388fa20c234SSam Leffler } 389fa20c234SSam Leffler ath_hal_setupxtxdesc(sc->sc_ah, ds 390b2763056SSam Leffler , rateCode, 3 /* series 1 */ 391b2763056SSam Leffler , sn->rates[0].rateCode, 3 /* series 2 */ 392b2763056SSam Leffler , 0, 0 /* series 3 */ 393fa20c234SSam Leffler ); 394fa20c234SSam Leffler } 395fa20c234SSam Leffler 396b2763056SSam Leffler static void 397b2763056SSam Leffler update_stats(struct ath_softc *sc, struct ath_node *an, 398b2763056SSam Leffler int frame_size, 399b2763056SSam Leffler int ndx0, int tries0, 400b2763056SSam Leffler int ndx1, int tries1, 401b2763056SSam Leffler int ndx2, int tries2, 402b2763056SSam Leffler int ndx3, int tries3, 403b2763056SSam Leffler int short_tries, int tries, int status) 404fa20c234SSam Leffler { 405fa20c234SSam Leffler struct sample_node *sn = ATH_NODE_SAMPLE(an); 406fa20c234SSam Leffler struct sample_softc *ssc = ATH_SOFTC_SAMPLE(sc); 407fa20c234SSam Leffler int tt = 0; 408b2763056SSam Leffler int tries_so_far = 0; 409b2763056SSam Leffler int size_bin = 0; 410b2763056SSam Leffler int size = 0; 411b2763056SSam Leffler int rate = 0; 412fa20c234SSam Leffler 413fa20c234SSam Leffler size_bin = size_to_bin(frame_size); 414fa20c234SSam Leffler size = bin_to_size(size_bin); 41565f9edeeSSam Leffler 41665f9edeeSSam Leffler if (!(0 <= ndx0 && ndx0 < sn->num_rates)) { 41765f9edeeSSam Leffler printf("%s: bogus ndx0 %d, max %u, mode %u\n", 41865f9edeeSSam Leffler __func__, ndx0, sn->num_rates, sc->sc_curmode); 41965f9edeeSSam Leffler return; 42065f9edeeSSam Leffler } 421b2763056SSam Leffler rate = sn->rates[ndx0].rate; 422fa20c234SSam Leffler 423b2763056SSam Leffler tt += calc_usecs_unicast_packet(sc, size, sn->rates[ndx0].rix, 42465f9edeeSSam Leffler short_tries, 425b2763056SSam Leffler MIN(tries0, tries) - 1); 426b2763056SSam Leffler tries_so_far += tries0; 427b2763056SSam Leffler if (tries1 && tries0 < tries) { 42865f9edeeSSam Leffler if (!(0 <= ndx1 && ndx1 < sn->num_rates)) { 42965f9edeeSSam Leffler printf("%s: bogus ndx1 %d, max %u, mode %u\n", 43065f9edeeSSam Leffler __func__, ndx1, sn->num_rates, sc->sc_curmode); 43165f9edeeSSam Leffler return; 43265f9edeeSSam Leffler } 433b2763056SSam Leffler tt += calc_usecs_unicast_packet(sc, size, sn->rates[ndx1].rix, 43465f9edeeSSam Leffler short_tries, 435b2763056SSam Leffler MIN(tries1 + tries_so_far, tries) - tries_so_far - 1); 436b2763056SSam Leffler } 437b2763056SSam Leffler tries_so_far += tries1; 438fa20c234SSam Leffler 439b2763056SSam Leffler if (tries2 && tries0 + tries1 < tries) { 44065f9edeeSSam Leffler if (!(0 <= ndx2 && ndx2 < sn->num_rates)) { 44165f9edeeSSam Leffler printf("%s: bogus ndx2 %d, max %u, mode %u\n", 44265f9edeeSSam Leffler __func__, ndx2, sn->num_rates, sc->sc_curmode); 44365f9edeeSSam Leffler return; 44465f9edeeSSam Leffler } 445b2763056SSam Leffler tt += calc_usecs_unicast_packet(sc, size, sn->rates[ndx2].rix, 44665f9edeeSSam Leffler short_tries, 447b2763056SSam Leffler MIN(tries2 + tries_so_far, tries) - tries_so_far - 1); 448b2763056SSam Leffler } 449b2763056SSam Leffler 450b2763056SSam Leffler tries_so_far += tries2; 451b2763056SSam Leffler 452b2763056SSam Leffler if (tries3 && tries0 + tries1 + tries2 < tries) { 45365f9edeeSSam Leffler if (!(0 <= ndx3 && ndx3 < sn->num_rates)) { 45465f9edeeSSam Leffler printf("%s: bogus ndx3 %d, max %u, mode %u\n", 45565f9edeeSSam Leffler __func__, ndx3, sn->num_rates, sc->sc_curmode); 45665f9edeeSSam Leffler return; 45765f9edeeSSam Leffler } 458b2763056SSam Leffler tt += calc_usecs_unicast_packet(sc, size, sn->rates[ndx3].rix, 45965f9edeeSSam Leffler short_tries, 460b2763056SSam Leffler MIN(tries3 + tries_so_far, tries) - tries_so_far - 1); 461b2763056SSam Leffler } 462b2763056SSam Leffler if (sn->stats[size_bin][ndx0].total_packets < (100 / (100 - ssc->ath_smoothing_rate))) { 463fa20c234SSam Leffler /* just average the first few packets */ 464b2763056SSam Leffler int avg_tx = sn->stats[size_bin][ndx0].average_tx_time; 465b2763056SSam Leffler int packets = sn->stats[size_bin][ndx0].total_packets; 466b2763056SSam Leffler sn->stats[size_bin][ndx0].average_tx_time = (tt+(avg_tx*packets))/(packets+1); 467fa20c234SSam Leffler } else { 468fa20c234SSam Leffler /* use a ewma */ 469b2763056SSam Leffler sn->stats[size_bin][ndx0].average_tx_time = 470b2763056SSam Leffler ((sn->stats[size_bin][ndx0].average_tx_time * ssc->ath_smoothing_rate) + 471fa20c234SSam Leffler (tt * (100 - ssc->ath_smoothing_rate))) / 100; 472fa20c234SSam Leffler } 473fa20c234SSam Leffler 474b2763056SSam Leffler if (status) { 475fa20c234SSam Leffler int y; 476b91bf513SSam Leffler sn->stats[size_bin][ndx0].successive_failures++; 477b91bf513SSam Leffler for (y = size_bin+1; y < NUM_PACKET_SIZE_BINS; y++) { 478b91bf513SSam Leffler /* also say larger packets failed since we 479b91bf513SSam Leffler * assume if a small packet fails at a lower 480b91bf513SSam Leffler * bit-rate then a larger one will also. 481b91bf513SSam Leffler */ 482b2763056SSam Leffler sn->stats[y][ndx0].successive_failures++; 483b2763056SSam Leffler sn->stats[y][ndx0].last_tx = ticks; 484b91bf513SSam Leffler sn->stats[y][ndx0].tries += tries; 485b91bf513SSam Leffler sn->stats[y][ndx0].total_packets++; 486fa20c234SSam Leffler } 487fa20c234SSam Leffler } else { 488b2763056SSam Leffler sn->stats[size_bin][ndx0].packets_acked++; 489b2763056SSam Leffler sn->stats[size_bin][ndx0].successive_failures = 0; 490fa20c234SSam Leffler } 491b2763056SSam Leffler sn->stats[size_bin][ndx0].tries += tries; 492b2763056SSam Leffler sn->stats[size_bin][ndx0].last_tx = ticks; 493b2763056SSam Leffler sn->stats[size_bin][ndx0].total_packets++; 494b2763056SSam Leffler 495b2763056SSam Leffler 496b2763056SSam Leffler if (ndx0 == sn->current_sample_ndx[size_bin]) { 49765f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 49865f9edeeSSam Leffler "%s: %s size %d %s sample rate %d tries (%d/%d) tt %d avg_tt (%d/%d)\n", 499b2763056SSam Leffler __func__, ether_sprintf(an->an_node.ni_macaddr), 50065f9edeeSSam Leffler size, 50165f9edeeSSam Leffler status ? "FAIL" : "OK", 50265f9edeeSSam Leffler rate, short_tries, tries, tt, 503b2763056SSam Leffler sn->stats[size_bin][ndx0].average_tx_time, 50465f9edeeSSam Leffler sn->stats[size_bin][ndx0].perfect_tx_time); 505b2763056SSam Leffler sn->sample_tt[size_bin] = tt; 506b2763056SSam Leffler sn->current_sample_ndx[size_bin] = -1; 507b2763056SSam Leffler } 508b2763056SSam Leffler } 509b2763056SSam Leffler 510b2763056SSam Leffler void 51143e9cf7cSSam Leffler ath_rate_tx_complete(struct ath_softc *sc, struct ath_node *an, 51265f9edeeSSam Leffler const struct ath_buf *bf) 513b2763056SSam Leffler { 514b91bf513SSam Leffler struct ieee80211com *ic = &sc->sc_ic; 515b2763056SSam Leffler struct sample_node *sn = ATH_NODE_SAMPLE(an); 51665f9edeeSSam Leffler const struct ath_tx_status *ts = &bf->bf_status.ds_txstat; 51765f9edeeSSam Leffler const struct ath_desc *ds0 = &bf->bf_desc[0]; 518b2763056SSam Leffler int final_rate, short_tries, long_tries, frame_size; 519b91bf513SSam Leffler int mrr; 520b2763056SSam Leffler 52165f9edeeSSam Leffler final_rate = sc->sc_hwmap[ts->ts_rate &~ HAL_TXSTAT_ALTRATE].ieeerate; 52265f9edeeSSam Leffler short_tries = ts->ts_shortretry; 52365f9edeeSSam Leffler long_tries = ts->ts_longretry + 1; 52443e9cf7cSSam Leffler frame_size = ds0->ds_ctl0 & 0x0fff; /* low-order 12 bits of ds_ctl0 */ 52543e9cf7cSSam Leffler if (frame_size == 0) /* NB: should not happen */ 526b2763056SSam Leffler frame_size = 1500; 527b2763056SSam Leffler 528b2763056SSam Leffler if (sn->num_rates <= 0) { 52965f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 53065f9edeeSSam Leffler "%s: %s size %d %s rate/try %d/%d no rates yet\n", 53143e9cf7cSSam Leffler __func__, ether_sprintf(an->an_node.ni_macaddr), 53243e9cf7cSSam Leffler bin_to_size(size_to_bin(frame_size)), 53365f9edeeSSam Leffler ts->ts_status ? "FAIL" : "OK", 53443e9cf7cSSam Leffler short_tries, long_tries); 535b2763056SSam Leffler return; 536b2763056SSam Leffler } 53765f9edeeSSam Leffler mrr = sc->sc_mrretry && !(ic->ic_flags & IEEE80211_F_USEPROT); 53865f9edeeSSam Leffler if (!mrr || !(ts->ts_rate & HAL_TXSTAT_ALTRATE)) { 53965f9edeeSSam Leffler int ndx = rate_to_ndx(sn, final_rate); 54065f9edeeSSam Leffler 54165f9edeeSSam Leffler /* 54265f9edeeSSam Leffler * Only one rate was used; optimize work. 54365f9edeeSSam Leffler */ 54465f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 54565f9edeeSSam Leffler "%s: %s size %d %s rate/try %d/%d/%d\n", 54643e9cf7cSSam Leffler __func__, ether_sprintf(an->an_node.ni_macaddr), 54743e9cf7cSSam Leffler bin_to_size(size_to_bin(frame_size)), 54865f9edeeSSam Leffler ts->ts_status ? "FAIL" : "OK", 54965f9edeeSSam Leffler final_rate, short_tries, long_tries); 550b2763056SSam Leffler update_stats(sc, an, frame_size, 551b2763056SSam Leffler ndx, long_tries, 552b2763056SSam Leffler 0, 0, 553b2763056SSam Leffler 0, 0, 554b2763056SSam Leffler 0, 0, 55565f9edeeSSam Leffler short_tries, long_tries, ts->ts_status); 556b2763056SSam Leffler } else { 557517eabc6SSam Leffler int hwrate0, rate0, tries0, ndx0; 558517eabc6SSam Leffler int hwrate1, rate1, tries1, ndx1; 559517eabc6SSam Leffler int hwrate2, rate2, tries2, ndx2; 560517eabc6SSam Leffler int hwrate3, rate3, tries3, ndx3; 56165f9edeeSSam Leffler int finalTSIdx = ts->ts_finaltsi; 562b2763056SSam Leffler 563b2763056SSam Leffler /* 564b2763056SSam Leffler * Process intermediate rates that failed. 565b2763056SSam Leffler */ 566517eabc6SSam Leffler if (sc->sc_ah->ah_magic != 0x20065416) { 567517eabc6SSam Leffler hwrate0 = MS(ds0->ds_ctl3, AR_XmitRate0); 568517eabc6SSam Leffler hwrate1 = MS(ds0->ds_ctl3, AR_XmitRate1); 569517eabc6SSam Leffler hwrate2 = MS(ds0->ds_ctl3, AR_XmitRate2); 570517eabc6SSam Leffler hwrate3 = MS(ds0->ds_ctl3, AR_XmitRate3); 571517eabc6SSam Leffler } else { 572517eabc6SSam Leffler hwrate0 = MS(ds0->ds_ctl3, AR5416_XmitRate0); 573517eabc6SSam Leffler hwrate1 = MS(ds0->ds_ctl3, AR5416_XmitRate1); 574517eabc6SSam Leffler hwrate2 = MS(ds0->ds_ctl3, AR5416_XmitRate2); 575517eabc6SSam Leffler hwrate3 = MS(ds0->ds_ctl3, AR5416_XmitRate3); 576517eabc6SSam Leffler } 577517eabc6SSam Leffler 578517eabc6SSam Leffler rate0 = sc->sc_hwmap[hwrate0].ieeerate; 57965f9edeeSSam Leffler tries0 = MS(ds0->ds_ctl2, AR_XmitDataTries0); 580b2763056SSam Leffler ndx0 = rate_to_ndx(sn, rate0); 581b2763056SSam Leffler 582517eabc6SSam Leffler rate1 = sc->sc_hwmap[hwrate1].ieeerate; 58365f9edeeSSam Leffler tries1 = MS(ds0->ds_ctl2, AR_XmitDataTries1); 584b2763056SSam Leffler ndx1 = rate_to_ndx(sn, rate1); 585b2763056SSam Leffler 586517eabc6SSam Leffler rate2 = sc->sc_hwmap[hwrate2].ieeerate; 58765f9edeeSSam Leffler tries2 = MS(ds0->ds_ctl2, AR_XmitDataTries2); 588b2763056SSam Leffler ndx2 = rate_to_ndx(sn, rate2); 589b2763056SSam Leffler 590517eabc6SSam Leffler rate3 = sc->sc_hwmap[hwrate3].ieeerate; 59165f9edeeSSam Leffler tries3 = MS(ds0->ds_ctl2, AR_XmitDataTries3); 592b2763056SSam Leffler ndx3 = rate_to_ndx(sn, rate3); 593b2763056SSam Leffler 59465f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 59565f9edeeSSam Leffler "%s: %s size %d finaltsidx %d tries %d %s rate/try [%d/%d %d/%d %d/%d %d/%d]\n", 596b2763056SSam Leffler __func__, ether_sprintf(an->an_node.ni_macaddr), 597b2763056SSam Leffler bin_to_size(size_to_bin(frame_size)), 598b2763056SSam Leffler finalTSIdx, 599b2763056SSam Leffler long_tries, 60065f9edeeSSam Leffler ts->ts_status ? "FAIL" : "OK", 601b2763056SSam Leffler rate0, tries0, 602b2763056SSam Leffler rate1, tries1, 603b2763056SSam Leffler rate2, tries2, 604b2763056SSam Leffler rate3, tries3); 605b2763056SSam Leffler 60665f9edeeSSam Leffler /* 60765f9edeeSSam Leffler * NB: series > 0 are not penalized for failure 60865f9edeeSSam Leffler * based on the try counts under the assumption 60965f9edeeSSam Leffler * that losses are often bursty and since we 61065f9edeeSSam Leffler * sample higher rates 1 try at a time doing so 61165f9edeeSSam Leffler * may unfairly penalize them. 61265f9edeeSSam Leffler */ 613b2763056SSam Leffler if (tries0) { 614b2763056SSam Leffler update_stats(sc, an, frame_size, 615b2763056SSam Leffler ndx0, tries0, 616b2763056SSam Leffler ndx1, tries1, 617b2763056SSam Leffler ndx2, tries2, 618b2763056SSam Leffler ndx3, tries3, 61965f9edeeSSam Leffler short_tries, long_tries, 620b91bf513SSam Leffler long_tries > tries0); 62165f9edeeSSam Leffler long_tries -= tries0; 622b2763056SSam Leffler } 623b2763056SSam Leffler 624b2763056SSam Leffler if (tries1 && finalTSIdx > 0) { 625b2763056SSam Leffler update_stats(sc, an, frame_size, 626b2763056SSam Leffler ndx1, tries1, 627b2763056SSam Leffler ndx2, tries2, 628b2763056SSam Leffler ndx3, tries3, 629b2763056SSam Leffler 0, 0, 63065f9edeeSSam Leffler short_tries, long_tries, 63165f9edeeSSam Leffler ts->ts_status); 63265f9edeeSSam Leffler long_tries -= tries1; 633b2763056SSam Leffler } 634b2763056SSam Leffler 635b2763056SSam Leffler if (tries2 && finalTSIdx > 1) { 636b2763056SSam Leffler update_stats(sc, an, frame_size, 637b2763056SSam Leffler ndx2, tries2, 638b2763056SSam Leffler ndx3, tries3, 639b2763056SSam Leffler 0, 0, 640b2763056SSam Leffler 0, 0, 64165f9edeeSSam Leffler short_tries, long_tries, 64265f9edeeSSam Leffler ts->ts_status); 64365f9edeeSSam Leffler long_tries -= tries2; 644b2763056SSam Leffler } 645b2763056SSam Leffler 646b2763056SSam Leffler if (tries3 && finalTSIdx > 2) { 647b2763056SSam Leffler update_stats(sc, an, frame_size, 648b2763056SSam Leffler ndx3, tries3, 649b2763056SSam Leffler 0, 0, 650b2763056SSam Leffler 0, 0, 651b2763056SSam Leffler 0, 0, 65265f9edeeSSam Leffler short_tries, long_tries, 65365f9edeeSSam Leffler ts->ts_status); 654b2763056SSam Leffler } 655b2763056SSam Leffler } 656fa20c234SSam Leffler } 657fa20c234SSam Leffler 658fa20c234SSam Leffler void 659fa20c234SSam Leffler ath_rate_newassoc(struct ath_softc *sc, struct ath_node *an, int isnew) 660fa20c234SSam Leffler { 66165f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_NODE, "%s: %s isnew %d\n", __func__, 66243e9cf7cSSam Leffler ether_sprintf(an->an_node.ni_macaddr), isnew); 663fa20c234SSam Leffler if (isnew) 664b2763056SSam Leffler ath_rate_ctl_reset(sc, &an->an_node); 665fa20c234SSam Leffler } 666fa20c234SSam Leffler 667fa20c234SSam Leffler /* 668fa20c234SSam Leffler * Initialize the tables for a node. 669fa20c234SSam Leffler */ 670fa20c234SSam Leffler static void 671b2763056SSam Leffler ath_rate_ctl_reset(struct ath_softc *sc, struct ieee80211_node *ni) 672fa20c234SSam Leffler { 673fa20c234SSam Leffler #define RATE(_ix) (ni->ni_rates.rs_rates[(_ix)] & IEEE80211_RATE_VAL) 674fa20c234SSam Leffler struct ieee80211com *ic = &sc->sc_ic; 675fa20c234SSam Leffler struct ath_node *an = ATH_NODE(ni); 676fa20c234SSam Leffler struct sample_node *sn = ATH_NODE_SAMPLE(an); 677fa20c234SSam Leffler const HAL_RATE_TABLE *rt = sc->sc_currates; 678b2763056SSam Leffler int x, y, srate; 679fa20c234SSam Leffler 680fa20c234SSam Leffler KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode)); 681fa20c234SSam Leffler sn->static_rate_ndx = -1; 6822c39b32cSSam Leffler if (ic->ic_fixed_rate != IEEE80211_FIXED_RATE_NONE) { 683fa20c234SSam Leffler /* 68468e8e04eSSam Leffler * A fixed rate is to be used; ic_fixed_rate is the 68568e8e04eSSam Leffler * IEEE code for this rate (sans basic bit). Convert this 686fa20c234SSam Leffler * to the index into the negotiated rate set for 687aaba14d7SSam Leffler * the node. 688fa20c234SSam Leffler */ 689fa20c234SSam Leffler /* NB: the rate set is assumed sorted */ 690fa20c234SSam Leffler srate = ni->ni_rates.rs_nrates - 1; 69168e8e04eSSam Leffler for (; srate >= 0 && RATE(srate) != ic->ic_fixed_rate; srate--) 692fa20c234SSam Leffler ; 69368e8e04eSSam Leffler /* 69468e8e04eSSam Leffler * The fixed rate may not be available due to races 69568e8e04eSSam Leffler * and mode settings. Also orphaned nodes created in 69668e8e04eSSam Leffler * adhoc mode may not have any rate set so this lookup 69768e8e04eSSam Leffler * can fail. 69868e8e04eSSam Leffler */ 69968e8e04eSSam Leffler if (srate >= 0) 700fa20c234SSam Leffler sn->static_rate_ndx = srate; 701fa20c234SSam Leffler } 702b2763056SSam Leffler 70365f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, "%s: %s size 1600 rate/tt", 70465f9edeeSSam Leffler __func__, ether_sprintf(ni->ni_macaddr)); 705b2763056SSam Leffler 706fa20c234SSam Leffler sn->num_rates = ni->ni_rates.rs_nrates; 707fa20c234SSam Leffler for (x = 0; x < ni->ni_rates.rs_nrates; x++) { 708fa20c234SSam Leffler sn->rates[x].rate = ni->ni_rates.rs_rates[x] & IEEE80211_RATE_VAL; 709fa20c234SSam Leffler sn->rates[x].rix = sc->sc_rixmap[sn->rates[x].rate]; 7100ae09ec5SSam Leffler if (sn->rates[x].rix == 0xff) { 71165f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 71265f9edeeSSam Leffler "%s: ignore bogus rix at %d\n", __func__, x); 7130ae09ec5SSam Leffler continue; 7140ae09ec5SSam Leffler } 715fa20c234SSam Leffler sn->rates[x].rateCode = rt->info[sn->rates[x].rix].rateCode; 716fa20c234SSam Leffler sn->rates[x].shortPreambleRateCode = 717fa20c234SSam Leffler rt->info[sn->rates[x].rix].rateCode | 718fa20c234SSam Leffler rt->info[sn->rates[x].rix].shortPreamble; 719fa20c234SSam Leffler 72065f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, " %d/%d", sn->rates[x].rate, 72165f9edeeSSam Leffler calc_usecs_unicast_packet(sc, 1600, sn->rates[x].rix, 0,0)); 722b2763056SSam Leffler } 72365f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, "%s\n", ""); 724b2763056SSam Leffler 725b2763056SSam Leffler /* set the visible bit-rate to the lowest one available */ 726b2763056SSam Leffler ni->ni_txrate = 0; 727b2763056SSam Leffler sn->num_rates = ni->ni_rates.rs_nrates; 728b2763056SSam Leffler 729b2763056SSam Leffler for (y = 0; y < NUM_PACKET_SIZE_BINS; y++) { 730b2763056SSam Leffler int size = bin_to_size(y); 731b91bf513SSam Leffler int ndx = 0; 732b2763056SSam Leffler sn->packets_sent[y] = 0; 733b2763056SSam Leffler sn->current_sample_ndx[y] = -1; 734b2763056SSam Leffler sn->last_sample_ndx[y] = 0; 735b2763056SSam Leffler 736b2763056SSam Leffler for (x = 0; x < ni->ni_rates.rs_nrates; x++) { 737b2763056SSam Leffler sn->stats[y][x].successive_failures = 0; 738b2763056SSam Leffler sn->stats[y][x].tries = 0; 739b2763056SSam Leffler sn->stats[y][x].total_packets = 0; 740b2763056SSam Leffler sn->stats[y][x].packets_acked = 0; 741b2763056SSam Leffler sn->stats[y][x].last_tx = 0; 742b2763056SSam Leffler 743b2763056SSam Leffler sn->stats[y][x].perfect_tx_time = 744b2763056SSam Leffler calc_usecs_unicast_packet(sc, size, 745b2763056SSam Leffler sn->rates[x].rix, 746b2763056SSam Leffler 0, 0); 747b2763056SSam Leffler sn->stats[y][x].average_tx_time = sn->stats[y][x].perfect_tx_time; 748b2763056SSam Leffler } 749b91bf513SSam Leffler 750b91bf513SSam Leffler /* set the initial rate */ 751b91bf513SSam Leffler for (ndx = sn->num_rates-1; ndx > 0; ndx--) { 752b91bf513SSam Leffler if (sn->rates[ndx].rate <= 72) { 753b91bf513SSam Leffler break; 754b2763056SSam Leffler } 755b91bf513SSam Leffler } 756b91bf513SSam Leffler sn->current_rate[y] = ndx; 757b91bf513SSam Leffler } 758b91bf513SSam Leffler 75965f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_RATE, 76065f9edeeSSam Leffler "%s: %s %d rates %d%sMbps (%dus)- %d%sMbps (%dus)\n", 761b91bf513SSam Leffler __func__, ether_sprintf(ni->ni_macaddr), 762b91bf513SSam Leffler sn->num_rates, 763b91bf513SSam Leffler sn->rates[0].rate/2, sn->rates[0].rate % 0x1 ? ".5" : "", 764b91bf513SSam Leffler sn->stats[1][0].perfect_tx_time, 765b91bf513SSam Leffler sn->rates[sn->num_rates-1].rate/2, 766b91bf513SSam Leffler sn->rates[sn->num_rates-1].rate % 0x1 ? ".5" : "", 767b91bf513SSam Leffler sn->stats[1][sn->num_rates-1].perfect_tx_time 768b91bf513SSam Leffler ); 769b91bf513SSam Leffler 770d0d425bfSSam Leffler if (sn->static_rate_ndx != -1) 771d0d425bfSSam Leffler ni->ni_txrate = sn->static_rate_ndx; 772d0d425bfSSam Leffler else 773b91bf513SSam Leffler ni->ni_txrate = sn->current_rate[0]; 774fa20c234SSam Leffler #undef RATE 775fa20c234SSam Leffler } 776fa20c234SSam Leffler 777f0fd5e07SSam Leffler static void 778f0fd5e07SSam Leffler rate_cb(void *arg, struct ieee80211_node *ni) 779f0fd5e07SSam Leffler { 780f0fd5e07SSam Leffler struct ath_softc *sc = arg; 781f0fd5e07SSam Leffler 782f0fd5e07SSam Leffler ath_rate_newassoc(sc, ATH_NODE(ni), 1); 783f0fd5e07SSam Leffler } 784f0fd5e07SSam Leffler 785fa20c234SSam Leffler /* 786fa20c234SSam Leffler * Reset the rate control state for each 802.11 state transition. 787fa20c234SSam Leffler */ 788fa20c234SSam Leffler void 789fa20c234SSam Leffler ath_rate_newstate(struct ath_softc *sc, enum ieee80211_state state) 790fa20c234SSam Leffler { 791fa20c234SSam Leffler struct ieee80211com *ic = &sc->sc_ic; 792fa20c234SSam Leffler 793f0fd5e07SSam Leffler if (state == IEEE80211_S_RUN) { 794f0fd5e07SSam Leffler if (ic->ic_opmode != IEEE80211_M_STA) { 795f0fd5e07SSam Leffler /* 796f0fd5e07SSam Leffler * Sync rates for associated stations and neighbors. 797f0fd5e07SSam Leffler */ 798f0fd5e07SSam Leffler ieee80211_iterate_nodes(&ic->ic_sta, rate_cb, sc); 799f0fd5e07SSam Leffler } 800fa20c234SSam Leffler ath_rate_newassoc(sc, ATH_NODE(ic->ic_bss), 1); 801fa20c234SSam Leffler } 802f0fd5e07SSam Leffler } 803fa20c234SSam Leffler 804fa20c234SSam Leffler static void 805fa20c234SSam Leffler ath_rate_sysctlattach(struct ath_softc *sc, struct sample_softc *osc) 806fa20c234SSam Leffler { 807fa20c234SSam Leffler struct sysctl_ctx_list *ctx = device_get_sysctl_ctx(sc->sc_dev); 808fa20c234SSam Leffler struct sysctl_oid *tree = device_get_sysctl_tree(sc->sc_dev); 809fa20c234SSam Leffler 810fa20c234SSam Leffler /* XXX bounds check [0..100] */ 811fa20c234SSam Leffler SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO, 812fa20c234SSam Leffler "smoothing_rate", CTLFLAG_RW, &osc->ath_smoothing_rate, 0, 813fa20c234SSam Leffler "rate control: retry threshold to credit rate raise (%%)"); 814fa20c234SSam Leffler /* XXX bounds check [2..100] */ 815fa20c234SSam Leffler SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO, 816fa20c234SSam Leffler "sample_rate", CTLFLAG_RW, &osc->ath_sample_rate,0, 817fa20c234SSam Leffler "rate control: # good periods before raising rate"); 818fa20c234SSam Leffler } 819fa20c234SSam Leffler 820fa20c234SSam Leffler struct ath_ratectrl * 821fa20c234SSam Leffler ath_rate_attach(struct ath_softc *sc) 822fa20c234SSam Leffler { 823fa20c234SSam Leffler struct sample_softc *osc; 824fa20c234SSam Leffler 82565f9edeeSSam Leffler DPRINTF(sc, ATH_DEBUG_ANY, "%s:\n", __func__); 826fa20c234SSam Leffler osc = malloc(sizeof(struct sample_softc), M_DEVBUF, M_NOWAIT|M_ZERO); 827fa20c234SSam Leffler if (osc == NULL) 828fa20c234SSam Leffler return NULL; 829fa20c234SSam Leffler osc->arc.arc_space = sizeof(struct sample_node); 830fa20c234SSam Leffler osc->ath_smoothing_rate = 95; /* ewma percentage (out of 100) */ 831fa20c234SSam Leffler osc->ath_sample_rate = 10; /* send a different bit-rate 1/X packets */ 832fa20c234SSam Leffler ath_rate_sysctlattach(sc, osc); 833fa20c234SSam Leffler return &osc->arc; 834fa20c234SSam Leffler } 835fa20c234SSam Leffler 836fa20c234SSam Leffler void 837fa20c234SSam Leffler ath_rate_detach(struct ath_ratectrl *arc) 838fa20c234SSam Leffler { 839fa20c234SSam Leffler struct sample_softc *osc = (struct sample_softc *) arc; 840fa20c234SSam Leffler 841fa20c234SSam Leffler free(osc, M_DEVBUF); 842fa20c234SSam Leffler } 843fa20c234SSam Leffler 844fa20c234SSam Leffler /* 845fa20c234SSam Leffler * Module glue. 846fa20c234SSam Leffler */ 847fa20c234SSam Leffler static int 848fa20c234SSam Leffler sample_modevent(module_t mod, int type, void *unused) 849fa20c234SSam Leffler { 850fa20c234SSam Leffler switch (type) { 851fa20c234SSam Leffler case MOD_LOAD: 852fa20c234SSam Leffler if (bootverbose) 85343e9cf7cSSam Leffler printf("ath_rate: version 1.2 <SampleRate bit-rate selection algorithm>\n"); 854fa20c234SSam Leffler return 0; 855fa20c234SSam Leffler case MOD_UNLOAD: 856fa20c234SSam Leffler return 0; 857fa20c234SSam Leffler } 858fa20c234SSam Leffler return EINVAL; 859fa20c234SSam Leffler } 860fa20c234SSam Leffler 861fa20c234SSam Leffler static moduledata_t sample_mod = { 862fa20c234SSam Leffler "ath_rate", 863fa20c234SSam Leffler sample_modevent, 864fa20c234SSam Leffler 0 865fa20c234SSam Leffler }; 866fa20c234SSam Leffler DECLARE_MODULE(ath_rate, sample_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST); 867fa20c234SSam Leffler MODULE_VERSION(ath_rate, 1); 8684e860beeSTai-hwa Liang MODULE_DEPEND(ath_rate, ath_hal, 1, 1, 1); /* Atheros HAL */ 869fa20c234SSam Leffler MODULE_DEPEND(ath_rate, wlan, 1, 1, 1); 870