1b8e788a5SAdrian Chadd /*- 2b8e788a5SAdrian Chadd * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting 3b8e788a5SAdrian Chadd * All rights reserved. 4b8e788a5SAdrian Chadd * 5b8e788a5SAdrian Chadd * Redistribution and use in source and binary forms, with or without 6b8e788a5SAdrian Chadd * modification, are permitted provided that the following conditions 7b8e788a5SAdrian Chadd * are met: 8b8e788a5SAdrian Chadd * 1. Redistributions of source code must retain the above copyright 9b8e788a5SAdrian Chadd * notice, this list of conditions and the following disclaimer, 10b8e788a5SAdrian Chadd * without modification. 11b8e788a5SAdrian Chadd * 2. Redistributions in binary form must reproduce at minimum a disclaimer 12b8e788a5SAdrian Chadd * similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any 13b8e788a5SAdrian Chadd * redistribution must be conditioned upon including a substantially 14b8e788a5SAdrian Chadd * similar Disclaimer requirement for further binary redistribution. 15b8e788a5SAdrian Chadd * 16b8e788a5SAdrian Chadd * NO WARRANTY 17b8e788a5SAdrian Chadd * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 18b8e788a5SAdrian Chadd * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 19b8e788a5SAdrian Chadd * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY 20b8e788a5SAdrian Chadd * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL 21b8e788a5SAdrian Chadd * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, 22b8e788a5SAdrian Chadd * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 23b8e788a5SAdrian Chadd * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 24b8e788a5SAdrian Chadd * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER 25b8e788a5SAdrian Chadd * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 26b8e788a5SAdrian Chadd * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 27b8e788a5SAdrian Chadd * THE POSSIBILITY OF SUCH DAMAGES. 28b8e788a5SAdrian Chadd */ 29b8e788a5SAdrian Chadd 30b8e788a5SAdrian Chadd #include <sys/cdefs.h> 31b8e788a5SAdrian Chadd __FBSDID("$FreeBSD$"); 32b8e788a5SAdrian Chadd 33b8e788a5SAdrian Chadd /* 34b8e788a5SAdrian Chadd * Driver for the Atheros Wireless LAN controller. 35b8e788a5SAdrian Chadd * 36b8e788a5SAdrian Chadd * This software is derived from work of Atsushi Onoe; his contribution 37b8e788a5SAdrian Chadd * is greatly appreciated. 38b8e788a5SAdrian Chadd */ 39b8e788a5SAdrian Chadd 40b8e788a5SAdrian Chadd #include "opt_inet.h" 41b8e788a5SAdrian Chadd #include "opt_ath.h" 42b8e788a5SAdrian Chadd #include "opt_wlan.h" 43b8e788a5SAdrian Chadd 44b8e788a5SAdrian Chadd #include <sys/param.h> 45b8e788a5SAdrian Chadd #include <sys/systm.h> 46b8e788a5SAdrian Chadd #include <sys/sysctl.h> 47b8e788a5SAdrian Chadd #include <sys/mbuf.h> 48b8e788a5SAdrian Chadd #include <sys/malloc.h> 49b8e788a5SAdrian Chadd #include <sys/lock.h> 50b8e788a5SAdrian Chadd #include <sys/mutex.h> 51b8e788a5SAdrian Chadd #include <sys/kernel.h> 52b8e788a5SAdrian Chadd #include <sys/socket.h> 53b8e788a5SAdrian Chadd #include <sys/sockio.h> 54b8e788a5SAdrian Chadd #include <sys/errno.h> 55b8e788a5SAdrian Chadd #include <sys/callout.h> 56b8e788a5SAdrian Chadd #include <sys/bus.h> 57b8e788a5SAdrian Chadd #include <sys/endian.h> 58b8e788a5SAdrian Chadd #include <sys/kthread.h> 59b8e788a5SAdrian Chadd #include <sys/taskqueue.h> 60b8e788a5SAdrian Chadd #include <sys/priv.h> 61b8e788a5SAdrian Chadd 62b8e788a5SAdrian Chadd #include <machine/bus.h> 63b8e788a5SAdrian Chadd 64b8e788a5SAdrian Chadd #include <net/if.h> 65b8e788a5SAdrian Chadd #include <net/if_dl.h> 66b8e788a5SAdrian Chadd #include <net/if_media.h> 67b8e788a5SAdrian Chadd #include <net/if_types.h> 68b8e788a5SAdrian Chadd #include <net/if_arp.h> 69b8e788a5SAdrian Chadd #include <net/ethernet.h> 70b8e788a5SAdrian Chadd #include <net/if_llc.h> 71b8e788a5SAdrian Chadd 72b8e788a5SAdrian Chadd #include <net80211/ieee80211_var.h> 73b8e788a5SAdrian Chadd #include <net80211/ieee80211_regdomain.h> 74b8e788a5SAdrian Chadd #ifdef IEEE80211_SUPPORT_SUPERG 75b8e788a5SAdrian Chadd #include <net80211/ieee80211_superg.h> 76b8e788a5SAdrian Chadd #endif 77b8e788a5SAdrian Chadd #ifdef IEEE80211_SUPPORT_TDMA 78b8e788a5SAdrian Chadd #include <net80211/ieee80211_tdma.h> 79b8e788a5SAdrian Chadd #endif 80eb6f0de0SAdrian Chadd #include <net80211/ieee80211_ht.h> 81b8e788a5SAdrian Chadd 82b8e788a5SAdrian Chadd #include <net/bpf.h> 83b8e788a5SAdrian Chadd 84b8e788a5SAdrian Chadd #ifdef INET 85b8e788a5SAdrian Chadd #include <netinet/in.h> 86b8e788a5SAdrian Chadd #include <netinet/if_ether.h> 87b8e788a5SAdrian Chadd #endif 88b8e788a5SAdrian Chadd 89b8e788a5SAdrian Chadd #include <dev/ath/if_athvar.h> 90b8e788a5SAdrian Chadd #include <dev/ath/ath_hal/ah_devid.h> /* XXX for softled */ 91b8e788a5SAdrian Chadd #include <dev/ath/ath_hal/ah_diagcodes.h> 92b8e788a5SAdrian Chadd 93b8e788a5SAdrian Chadd #include <dev/ath/if_ath_debug.h> 94b8e788a5SAdrian Chadd 95b8e788a5SAdrian Chadd #ifdef ATH_TX99_DIAG 96b8e788a5SAdrian Chadd #include <dev/ath/ath_tx99/ath_tx99.h> 97b8e788a5SAdrian Chadd #endif 98b8e788a5SAdrian Chadd 99b8e788a5SAdrian Chadd #include <dev/ath/if_ath_misc.h> 100b8e788a5SAdrian Chadd #include <dev/ath/if_ath_tx.h> 101c1782ce0SAdrian Chadd #include <dev/ath/if_ath_tx_ht.h> 102b8e788a5SAdrian Chadd 10381a82688SAdrian Chadd /* 104eb6f0de0SAdrian Chadd * How many retries to perform in software 105eb6f0de0SAdrian Chadd */ 106eb6f0de0SAdrian Chadd #define SWMAX_RETRIES 10 107eb6f0de0SAdrian Chadd 108eb6f0de0SAdrian Chadd static int ath_tx_ampdu_pending(struct ath_softc *sc, struct ath_node *an, 109eb6f0de0SAdrian Chadd int tid); 110eb6f0de0SAdrian Chadd static int ath_tx_ampdu_running(struct ath_softc *sc, struct ath_node *an, 111eb6f0de0SAdrian Chadd int tid); 112eb6f0de0SAdrian Chadd static ieee80211_seq ath_tx_tid_seqno_assign(struct ath_softc *sc, 113eb6f0de0SAdrian Chadd struct ieee80211_node *ni, struct ath_buf *bf, struct mbuf *m0); 114eb6f0de0SAdrian Chadd static int ath_tx_action_frame_override_queue(struct ath_softc *sc, 115eb6f0de0SAdrian Chadd struct ieee80211_node *ni, struct mbuf *m0, int *tid); 116eb6f0de0SAdrian Chadd 117eb6f0de0SAdrian Chadd /* 11881a82688SAdrian Chadd * Whether to use the 11n rate scenario functions or not 11981a82688SAdrian Chadd */ 12081a82688SAdrian Chadd static inline int 12181a82688SAdrian Chadd ath_tx_is_11n(struct ath_softc *sc) 12281a82688SAdrian Chadd { 12381a82688SAdrian Chadd return (sc->sc_ah->ah_magic == 0x20065416); 12481a82688SAdrian Chadd } 12581a82688SAdrian Chadd 126eb6f0de0SAdrian Chadd /* 127eb6f0de0SAdrian Chadd * Obtain the current TID from the given frame. 128eb6f0de0SAdrian Chadd * 129eb6f0de0SAdrian Chadd * Non-QoS frames need to go into TID 16 (IEEE80211_NONQOS_TID.) 130eb6f0de0SAdrian Chadd * This has implications for which AC/priority the packet is placed 131eb6f0de0SAdrian Chadd * in. 132eb6f0de0SAdrian Chadd */ 133eb6f0de0SAdrian Chadd static int 134eb6f0de0SAdrian Chadd ath_tx_gettid(struct ath_softc *sc, const struct mbuf *m0) 135eb6f0de0SAdrian Chadd { 136eb6f0de0SAdrian Chadd const struct ieee80211_frame *wh; 137eb6f0de0SAdrian Chadd int pri = M_WME_GETAC(m0); 138eb6f0de0SAdrian Chadd 139eb6f0de0SAdrian Chadd wh = mtod(m0, const struct ieee80211_frame *); 140eb6f0de0SAdrian Chadd if (! IEEE80211_QOS_HAS_SEQ(wh)) 141eb6f0de0SAdrian Chadd return IEEE80211_NONQOS_TID; 142eb6f0de0SAdrian Chadd else 143eb6f0de0SAdrian Chadd return WME_AC_TO_TID(pri); 144eb6f0de0SAdrian Chadd } 145eb6f0de0SAdrian Chadd 146eb6f0de0SAdrian Chadd /* 147eb6f0de0SAdrian Chadd * Determine what the correct AC queue for the given frame 148eb6f0de0SAdrian Chadd * should be. 149eb6f0de0SAdrian Chadd * 150eb6f0de0SAdrian Chadd * This code assumes that the TIDs map consistently to 151eb6f0de0SAdrian Chadd * the underlying hardware (or software) ath_txq. 152eb6f0de0SAdrian Chadd * Since the sender may try to set an AC which is 153eb6f0de0SAdrian Chadd * arbitrary, non-QoS TIDs may end up being put on 154eb6f0de0SAdrian Chadd * completely different ACs. There's no way to put a 155eb6f0de0SAdrian Chadd * TID into multiple ath_txq's for scheduling, so 156eb6f0de0SAdrian Chadd * for now we override the AC/TXQ selection and set 157eb6f0de0SAdrian Chadd * non-QOS TID frames into the BE queue. 158eb6f0de0SAdrian Chadd * 159eb6f0de0SAdrian Chadd * This may be completely incorrect - specifically, 160eb6f0de0SAdrian Chadd * some management frames may end up out of order 161eb6f0de0SAdrian Chadd * compared to the QoS traffic they're controlling. 162eb6f0de0SAdrian Chadd * I'll look into this later. 163eb6f0de0SAdrian Chadd */ 164eb6f0de0SAdrian Chadd static int 165eb6f0de0SAdrian Chadd ath_tx_getac(struct ath_softc *sc, const struct mbuf *m0) 166eb6f0de0SAdrian Chadd { 167eb6f0de0SAdrian Chadd const struct ieee80211_frame *wh; 168eb6f0de0SAdrian Chadd int pri = M_WME_GETAC(m0); 169eb6f0de0SAdrian Chadd wh = mtod(m0, const struct ieee80211_frame *); 170eb6f0de0SAdrian Chadd if (IEEE80211_QOS_HAS_SEQ(wh)) 171eb6f0de0SAdrian Chadd return pri; 172eb6f0de0SAdrian Chadd 173eb6f0de0SAdrian Chadd return WME_AC_BE; 174eb6f0de0SAdrian Chadd } 175eb6f0de0SAdrian Chadd 176b8e788a5SAdrian Chadd void 177b8e788a5SAdrian Chadd ath_txfrag_cleanup(struct ath_softc *sc, 178b8e788a5SAdrian Chadd ath_bufhead *frags, struct ieee80211_node *ni) 179b8e788a5SAdrian Chadd { 180b8e788a5SAdrian Chadd struct ath_buf *bf, *next; 181b8e788a5SAdrian Chadd 182b8e788a5SAdrian Chadd ATH_TXBUF_LOCK_ASSERT(sc); 183b8e788a5SAdrian Chadd 1846b349e5aSAdrian Chadd TAILQ_FOREACH_SAFE(bf, frags, bf_list, next) { 185b8e788a5SAdrian Chadd /* NB: bf assumed clean */ 1866b349e5aSAdrian Chadd TAILQ_REMOVE(frags, bf, bf_list); 1876b349e5aSAdrian Chadd TAILQ_INSERT_HEAD(&sc->sc_txbuf, bf, bf_list); 188b8e788a5SAdrian Chadd ieee80211_node_decref(ni); 189b8e788a5SAdrian Chadd } 190b8e788a5SAdrian Chadd } 191b8e788a5SAdrian Chadd 192b8e788a5SAdrian Chadd /* 193b8e788a5SAdrian Chadd * Setup xmit of a fragmented frame. Allocate a buffer 194b8e788a5SAdrian Chadd * for each frag and bump the node reference count to 195b8e788a5SAdrian Chadd * reflect the held reference to be setup by ath_tx_start. 196b8e788a5SAdrian Chadd */ 197b8e788a5SAdrian Chadd int 198b8e788a5SAdrian Chadd ath_txfrag_setup(struct ath_softc *sc, ath_bufhead *frags, 199b8e788a5SAdrian Chadd struct mbuf *m0, struct ieee80211_node *ni) 200b8e788a5SAdrian Chadd { 201b8e788a5SAdrian Chadd struct mbuf *m; 202b8e788a5SAdrian Chadd struct ath_buf *bf; 203b8e788a5SAdrian Chadd 204b8e788a5SAdrian Chadd ATH_TXBUF_LOCK(sc); 205b8e788a5SAdrian Chadd for (m = m0->m_nextpkt; m != NULL; m = m->m_nextpkt) { 206b8e788a5SAdrian Chadd bf = _ath_getbuf_locked(sc); 207b8e788a5SAdrian Chadd if (bf == NULL) { /* out of buffers, cleanup */ 208b8e788a5SAdrian Chadd ath_txfrag_cleanup(sc, frags, ni); 209b8e788a5SAdrian Chadd break; 210b8e788a5SAdrian Chadd } 211b8e788a5SAdrian Chadd ieee80211_node_incref(ni); 2126b349e5aSAdrian Chadd TAILQ_INSERT_TAIL(frags, bf, bf_list); 213b8e788a5SAdrian Chadd } 214b8e788a5SAdrian Chadd ATH_TXBUF_UNLOCK(sc); 215b8e788a5SAdrian Chadd 2166b349e5aSAdrian Chadd return !TAILQ_EMPTY(frags); 217b8e788a5SAdrian Chadd } 218b8e788a5SAdrian Chadd 219b8e788a5SAdrian Chadd /* 220b8e788a5SAdrian Chadd * Reclaim mbuf resources. For fragmented frames we 221b8e788a5SAdrian Chadd * need to claim each frag chained with m_nextpkt. 222b8e788a5SAdrian Chadd */ 223b8e788a5SAdrian Chadd void 224b8e788a5SAdrian Chadd ath_freetx(struct mbuf *m) 225b8e788a5SAdrian Chadd { 226b8e788a5SAdrian Chadd struct mbuf *next; 227b8e788a5SAdrian Chadd 228b8e788a5SAdrian Chadd do { 229b8e788a5SAdrian Chadd next = m->m_nextpkt; 230b8e788a5SAdrian Chadd m->m_nextpkt = NULL; 231b8e788a5SAdrian Chadd m_freem(m); 232b8e788a5SAdrian Chadd } while ((m = next) != NULL); 233b8e788a5SAdrian Chadd } 234b8e788a5SAdrian Chadd 235b8e788a5SAdrian Chadd static int 236b8e788a5SAdrian Chadd ath_tx_dmasetup(struct ath_softc *sc, struct ath_buf *bf, struct mbuf *m0) 237b8e788a5SAdrian Chadd { 238b8e788a5SAdrian Chadd struct mbuf *m; 239b8e788a5SAdrian Chadd int error; 240b8e788a5SAdrian Chadd 241b8e788a5SAdrian Chadd /* 242b8e788a5SAdrian Chadd * Load the DMA map so any coalescing is done. This 243b8e788a5SAdrian Chadd * also calculates the number of descriptors we need. 244b8e788a5SAdrian Chadd */ 245b8e788a5SAdrian Chadd error = bus_dmamap_load_mbuf_sg(sc->sc_dmat, bf->bf_dmamap, m0, 246b8e788a5SAdrian Chadd bf->bf_segs, &bf->bf_nseg, 247b8e788a5SAdrian Chadd BUS_DMA_NOWAIT); 248b8e788a5SAdrian Chadd if (error == EFBIG) { 249b8e788a5SAdrian Chadd /* XXX packet requires too many descriptors */ 250b8e788a5SAdrian Chadd bf->bf_nseg = ATH_TXDESC+1; 251b8e788a5SAdrian Chadd } else if (error != 0) { 252b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_busdma++; 253b8e788a5SAdrian Chadd ath_freetx(m0); 254b8e788a5SAdrian Chadd return error; 255b8e788a5SAdrian Chadd } 256b8e788a5SAdrian Chadd /* 257b8e788a5SAdrian Chadd * Discard null packets and check for packets that 258b8e788a5SAdrian Chadd * require too many TX descriptors. We try to convert 259b8e788a5SAdrian Chadd * the latter to a cluster. 260b8e788a5SAdrian Chadd */ 261b8e788a5SAdrian Chadd if (bf->bf_nseg > ATH_TXDESC) { /* too many desc's, linearize */ 262b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_linear++; 263b8e788a5SAdrian Chadd m = m_collapse(m0, M_DONTWAIT, ATH_TXDESC); 264b8e788a5SAdrian Chadd if (m == NULL) { 265b8e788a5SAdrian Chadd ath_freetx(m0); 266b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_nombuf++; 267b8e788a5SAdrian Chadd return ENOMEM; 268b8e788a5SAdrian Chadd } 269b8e788a5SAdrian Chadd m0 = m; 270b8e788a5SAdrian Chadd error = bus_dmamap_load_mbuf_sg(sc->sc_dmat, bf->bf_dmamap, m0, 271b8e788a5SAdrian Chadd bf->bf_segs, &bf->bf_nseg, 272b8e788a5SAdrian Chadd BUS_DMA_NOWAIT); 273b8e788a5SAdrian Chadd if (error != 0) { 274b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_busdma++; 275b8e788a5SAdrian Chadd ath_freetx(m0); 276b8e788a5SAdrian Chadd return error; 277b8e788a5SAdrian Chadd } 278b8e788a5SAdrian Chadd KASSERT(bf->bf_nseg <= ATH_TXDESC, 279b8e788a5SAdrian Chadd ("too many segments after defrag; nseg %u", bf->bf_nseg)); 280b8e788a5SAdrian Chadd } else if (bf->bf_nseg == 0) { /* null packet, discard */ 281b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_nodata++; 282b8e788a5SAdrian Chadd ath_freetx(m0); 283b8e788a5SAdrian Chadd return EIO; 284b8e788a5SAdrian Chadd } 285b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, "%s: m %p len %u\n", 286b8e788a5SAdrian Chadd __func__, m0, m0->m_pkthdr.len); 287b8e788a5SAdrian Chadd bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, BUS_DMASYNC_PREWRITE); 288b8e788a5SAdrian Chadd bf->bf_m = m0; 289b8e788a5SAdrian Chadd 290b8e788a5SAdrian Chadd return 0; 291b8e788a5SAdrian Chadd } 292b8e788a5SAdrian Chadd 2936edf1dc7SAdrian Chadd /* 2946edf1dc7SAdrian Chadd * Chain together segments+descriptors for a non-11n frame. 2956edf1dc7SAdrian Chadd */ 296b8e788a5SAdrian Chadd static void 297eb6f0de0SAdrian Chadd ath_tx_chaindesclist(struct ath_softc *sc, struct ath_buf *bf) 298b8e788a5SAdrian Chadd { 299b8e788a5SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 300b8e788a5SAdrian Chadd struct ath_desc *ds, *ds0; 301b8e788a5SAdrian Chadd int i; 302b8e788a5SAdrian Chadd 303b8e788a5SAdrian Chadd /* 304b8e788a5SAdrian Chadd * Fillin the remainder of the descriptor info. 305b8e788a5SAdrian Chadd */ 306b8e788a5SAdrian Chadd ds0 = ds = bf->bf_desc; 307b8e788a5SAdrian Chadd for (i = 0; i < bf->bf_nseg; i++, ds++) { 308b8e788a5SAdrian Chadd ds->ds_data = bf->bf_segs[i].ds_addr; 309b8e788a5SAdrian Chadd if (i == bf->bf_nseg - 1) 310b8e788a5SAdrian Chadd ds->ds_link = 0; 311b8e788a5SAdrian Chadd else 312b8e788a5SAdrian Chadd ds->ds_link = bf->bf_daddr + sizeof(*ds) * (i + 1); 313b8e788a5SAdrian Chadd ath_hal_filltxdesc(ah, ds 314b8e788a5SAdrian Chadd , bf->bf_segs[i].ds_len /* segment length */ 315b8e788a5SAdrian Chadd , i == 0 /* first segment */ 316b8e788a5SAdrian Chadd , i == bf->bf_nseg - 1 /* last segment */ 317b8e788a5SAdrian Chadd , ds0 /* first descriptor */ 318b8e788a5SAdrian Chadd ); 319b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 320b8e788a5SAdrian Chadd "%s: %d: %08x %08x %08x %08x %08x %08x\n", 321b8e788a5SAdrian Chadd __func__, i, ds->ds_link, ds->ds_data, 322b8e788a5SAdrian Chadd ds->ds_ctl0, ds->ds_ctl1, ds->ds_hw[0], ds->ds_hw[1]); 3236edf1dc7SAdrian Chadd bf->bf_lastds = ds; 324b8e788a5SAdrian Chadd } 32581a82688SAdrian Chadd } 32681a82688SAdrian Chadd 327eb6f0de0SAdrian Chadd /* 328eb6f0de0SAdrian Chadd * Fill in the descriptor list for a aggregate subframe. 329eb6f0de0SAdrian Chadd * 330eb6f0de0SAdrian Chadd * The subframe is returned with the ds_link field in the last subframe 331eb6f0de0SAdrian Chadd * pointing to 0. 332eb6f0de0SAdrian Chadd */ 33381a82688SAdrian Chadd static void 334eb6f0de0SAdrian Chadd ath_tx_chaindesclist_subframe(struct ath_softc *sc, struct ath_buf *bf) 33581a82688SAdrian Chadd { 33681a82688SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 337eb6f0de0SAdrian Chadd struct ath_desc *ds, *ds0; 338eb6f0de0SAdrian Chadd int i; 33981a82688SAdrian Chadd 340eb6f0de0SAdrian Chadd ds0 = ds = bf->bf_desc; 341eb6f0de0SAdrian Chadd 342eb6f0de0SAdrian Chadd /* 343eb6f0de0SAdrian Chadd * There's no need to call ath_hal_setupfirsttxdesc here; 344eb6f0de0SAdrian Chadd * That's only going to occur for the first frame in an aggregate. 345eb6f0de0SAdrian Chadd */ 346eb6f0de0SAdrian Chadd for (i = 0; i < bf->bf_nseg; i++, ds++) { 347eb6f0de0SAdrian Chadd ds->ds_data = bf->bf_segs[i].ds_addr; 348eb6f0de0SAdrian Chadd if (i == bf->bf_nseg - 1) 349eb6f0de0SAdrian Chadd ds->ds_link = 0; 350eb6f0de0SAdrian Chadd else 351eb6f0de0SAdrian Chadd ds->ds_link = bf->bf_daddr + sizeof(*ds) * (i + 1); 352eb6f0de0SAdrian Chadd 353eb6f0de0SAdrian Chadd /* 354eb6f0de0SAdrian Chadd * This performs the setup for an aggregate frame. 355eb6f0de0SAdrian Chadd * This includes enabling the aggregate flags if needed. 356eb6f0de0SAdrian Chadd */ 357eb6f0de0SAdrian Chadd ath_hal_chaintxdesc(ah, ds, 358eb6f0de0SAdrian Chadd bf->bf_state.bfs_pktlen, 359eb6f0de0SAdrian Chadd bf->bf_state.bfs_hdrlen, 360eb6f0de0SAdrian Chadd HAL_PKT_TYPE_AMPDU, /* forces aggregate bits to be set */ 361eb6f0de0SAdrian Chadd bf->bf_state.bfs_keyix, 362eb6f0de0SAdrian Chadd 0, /* cipher, calculated from keyix */ 363eb6f0de0SAdrian Chadd bf->bf_state.bfs_ndelim, 364eb6f0de0SAdrian Chadd bf->bf_segs[i].ds_len, /* segment length */ 365eb6f0de0SAdrian Chadd i == 0, /* first segment */ 366eb6f0de0SAdrian Chadd i == bf->bf_nseg - 1 /* last segment */ 367eb6f0de0SAdrian Chadd ); 368eb6f0de0SAdrian Chadd 369eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 370eb6f0de0SAdrian Chadd "%s: %d: %08x %08x %08x %08x %08x %08x\n", 371eb6f0de0SAdrian Chadd __func__, i, ds->ds_link, ds->ds_data, 372eb6f0de0SAdrian Chadd ds->ds_ctl0, ds->ds_ctl1, ds->ds_hw[0], ds->ds_hw[1]); 373eb6f0de0SAdrian Chadd bf->bf_lastds = ds; 374eb6f0de0SAdrian Chadd } 375eb6f0de0SAdrian Chadd } 376eb6f0de0SAdrian Chadd 377eb6f0de0SAdrian Chadd /* 378eb6f0de0SAdrian Chadd * Setup segments+descriptors for an 11n aggregate. 379eb6f0de0SAdrian Chadd * bf_first is the first buffer in the aggregate. 380eb6f0de0SAdrian Chadd * The descriptor list must already been linked together using 381eb6f0de0SAdrian Chadd * bf->bf_next. 382eb6f0de0SAdrian Chadd */ 383eb6f0de0SAdrian Chadd static void 384eb6f0de0SAdrian Chadd ath_tx_setds_11n(struct ath_softc *sc, struct ath_buf *bf_first) 385eb6f0de0SAdrian Chadd { 386eb6f0de0SAdrian Chadd struct ath_buf *bf, *bf_prev = NULL; 387eb6f0de0SAdrian Chadd 388eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, "%s: nframes=%d, al=%d\n", 389eb6f0de0SAdrian Chadd __func__, bf_first->bf_state.bfs_nframes, 390eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_al); 391eb6f0de0SAdrian Chadd 392eb6f0de0SAdrian Chadd /* 393eb6f0de0SAdrian Chadd * Setup all descriptors of all subframes. 394eb6f0de0SAdrian Chadd */ 395eb6f0de0SAdrian Chadd bf = bf_first; 396eb6f0de0SAdrian Chadd while (bf != NULL) { 397eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 398eb6f0de0SAdrian Chadd "%s: bf=%p, nseg=%d, pktlen=%d, seqno=%d\n", 399eb6f0de0SAdrian Chadd __func__, bf, bf->bf_nseg, bf->bf_state.bfs_pktlen, 400eb6f0de0SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno)); 401eb6f0de0SAdrian Chadd 402eb6f0de0SAdrian Chadd /* Sub-frame setup */ 403eb6f0de0SAdrian Chadd ath_tx_chaindesclist_subframe(sc, bf); 404eb6f0de0SAdrian Chadd 405eb6f0de0SAdrian Chadd /* 406eb6f0de0SAdrian Chadd * Link the last descriptor of the previous frame 407eb6f0de0SAdrian Chadd * to the beginning descriptor of this frame. 408eb6f0de0SAdrian Chadd */ 409eb6f0de0SAdrian Chadd if (bf_prev != NULL) 410eb6f0de0SAdrian Chadd bf_prev->bf_lastds->ds_link = bf->bf_daddr; 411eb6f0de0SAdrian Chadd 412eb6f0de0SAdrian Chadd /* Save a copy so we can link the next descriptor in */ 413eb6f0de0SAdrian Chadd bf_prev = bf; 414eb6f0de0SAdrian Chadd bf = bf->bf_next; 415eb6f0de0SAdrian Chadd } 416eb6f0de0SAdrian Chadd 417eb6f0de0SAdrian Chadd /* 418eb6f0de0SAdrian Chadd * Setup first descriptor of first frame. 419eb6f0de0SAdrian Chadd * chaintxdesc() overwrites the descriptor entries; 420eb6f0de0SAdrian Chadd * setupfirsttxdesc() merges in things. 421eb6f0de0SAdrian Chadd * Otherwise various fields aren't set correctly (eg flags). 422eb6f0de0SAdrian Chadd */ 423eb6f0de0SAdrian Chadd ath_hal_setupfirsttxdesc(sc->sc_ah, 424eb6f0de0SAdrian Chadd bf_first->bf_desc, 425eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_al, 426eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_flags | HAL_TXDESC_INTREQ, 427eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_txpower, 428eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_txrate0, 429eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_try0, 430eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_txantenna, 431eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_ctsrate, 432eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_ctsduration); 433eb6f0de0SAdrian Chadd 434eb6f0de0SAdrian Chadd /* 435eb6f0de0SAdrian Chadd * Setup the last descriptor in the list. 436eb6f0de0SAdrian Chadd * bf_prev points to the last; bf is NULL here. 437eb6f0de0SAdrian Chadd */ 438*d4365d16SAdrian Chadd ath_hal_setuplasttxdesc(sc->sc_ah, bf_prev->bf_desc, 439*d4365d16SAdrian Chadd bf_first->bf_desc); 440eb6f0de0SAdrian Chadd 441eb6f0de0SAdrian Chadd /* 442eb6f0de0SAdrian Chadd * Set the first descriptor bf_lastds field to point to 443eb6f0de0SAdrian Chadd * the last descriptor in the last subframe, that's where 444eb6f0de0SAdrian Chadd * the status update will occur. 445eb6f0de0SAdrian Chadd */ 446eb6f0de0SAdrian Chadd bf_first->bf_lastds = bf_prev->bf_lastds; 447eb6f0de0SAdrian Chadd 448eb6f0de0SAdrian Chadd /* 449eb6f0de0SAdrian Chadd * And bf_last in the first descriptor points to the end of 450eb6f0de0SAdrian Chadd * the aggregate list. 451eb6f0de0SAdrian Chadd */ 452eb6f0de0SAdrian Chadd bf_first->bf_last = bf_prev; 453eb6f0de0SAdrian Chadd 454eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, "%s: end\n", __func__); 455eb6f0de0SAdrian Chadd } 456eb6f0de0SAdrian Chadd 457eb6f0de0SAdrian Chadd static void 458eb6f0de0SAdrian Chadd ath_tx_handoff_mcast(struct ath_softc *sc, struct ath_txq *txq, 459eb6f0de0SAdrian Chadd struct ath_buf *bf) 460eb6f0de0SAdrian Chadd { 461eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 462eb6f0de0SAdrian Chadd KASSERT((bf->bf_flags & ATH_BUF_BUSY) == 0, 463eb6f0de0SAdrian Chadd ("%s: busy status 0x%x", __func__, bf->bf_flags)); 464eb6f0de0SAdrian Chadd if (txq->axq_link != NULL) { 465eb6f0de0SAdrian Chadd struct ath_buf *last = ATH_TXQ_LAST(txq, axq_q_s); 466eb6f0de0SAdrian Chadd struct ieee80211_frame *wh; 467eb6f0de0SAdrian Chadd 468eb6f0de0SAdrian Chadd /* mark previous frame */ 469eb6f0de0SAdrian Chadd wh = mtod(last->bf_m, struct ieee80211_frame *); 470eb6f0de0SAdrian Chadd wh->i_fc[1] |= IEEE80211_FC1_MORE_DATA; 471eb6f0de0SAdrian Chadd bus_dmamap_sync(sc->sc_dmat, last->bf_dmamap, 472eb6f0de0SAdrian Chadd BUS_DMASYNC_PREWRITE); 473eb6f0de0SAdrian Chadd 474eb6f0de0SAdrian Chadd /* link descriptor */ 475eb6f0de0SAdrian Chadd *txq->axq_link = bf->bf_daddr; 476eb6f0de0SAdrian Chadd } 477eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(txq, bf, bf_list); 478eb6f0de0SAdrian Chadd txq->axq_link = &bf->bf_lastds->ds_link; 479eb6f0de0SAdrian Chadd } 480eb6f0de0SAdrian Chadd 481eb6f0de0SAdrian Chadd /* 482eb6f0de0SAdrian Chadd * Hand-off packet to a hardware queue. 483eb6f0de0SAdrian Chadd */ 484eb6f0de0SAdrian Chadd static void 485*d4365d16SAdrian Chadd ath_tx_handoff_hw(struct ath_softc *sc, struct ath_txq *txq, 486*d4365d16SAdrian Chadd struct ath_buf *bf) 487eb6f0de0SAdrian Chadd { 488eb6f0de0SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 48981a82688SAdrian Chadd 490b8e788a5SAdrian Chadd /* 491b8e788a5SAdrian Chadd * Insert the frame on the outbound list and pass it on 492b8e788a5SAdrian Chadd * to the hardware. Multicast frames buffered for power 493b8e788a5SAdrian Chadd * save stations and transmit from the CAB queue are stored 494b8e788a5SAdrian Chadd * on a s/w only queue and loaded on to the CAB queue in 495b8e788a5SAdrian Chadd * the SWBA handler since frames only go out on DTIM and 496b8e788a5SAdrian Chadd * to avoid possible races. 497b8e788a5SAdrian Chadd */ 498eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 499b8e788a5SAdrian Chadd KASSERT((bf->bf_flags & ATH_BUF_BUSY) == 0, 500eb6f0de0SAdrian Chadd ("%s: busy status 0x%x", __func__, bf->bf_flags)); 501eb6f0de0SAdrian Chadd KASSERT(txq->axq_qnum != ATH_TXQ_SWQ, 502eb6f0de0SAdrian Chadd ("ath_tx_handoff_hw called for mcast queue")); 503eb6f0de0SAdrian Chadd 504ef27340cSAdrian Chadd #if 0 505ef27340cSAdrian Chadd /* 506ef27340cSAdrian Chadd * This causes a LOR. Find out where the PCU lock is being 507ef27340cSAdrian Chadd * held whilst the TXQ lock is grabbed - that shouldn't 508ef27340cSAdrian Chadd * be occuring. 509ef27340cSAdrian Chadd */ 510ef27340cSAdrian Chadd ATH_PCU_LOCK(sc); 511ef27340cSAdrian Chadd if (sc->sc_inreset_cnt) { 512ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 513ef27340cSAdrian Chadd DPRINTF(sc, ATH_DEBUG_RESET, 514ef27340cSAdrian Chadd "%s: called with sc_in_reset != 0\n", 515ef27340cSAdrian Chadd __func__); 516ef27340cSAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 517ef27340cSAdrian Chadd "%s: queued: TXDP[%u] = %p (%p) depth %d\n", 518ef27340cSAdrian Chadd __func__, txq->axq_qnum, 519ef27340cSAdrian Chadd (caddr_t)bf->bf_daddr, bf->bf_desc, 520ef27340cSAdrian Chadd txq->axq_depth); 521ef27340cSAdrian Chadd ATH_TXQ_INSERT_TAIL(txq, bf, bf_list); 522ef27340cSAdrian Chadd if (bf->bf_state.bfs_aggr) 523ef27340cSAdrian Chadd txq->axq_aggr_depth++; 524ef27340cSAdrian Chadd /* 525ef27340cSAdrian Chadd * There's no need to update axq_link; the hardware 526ef27340cSAdrian Chadd * is in reset and once the reset is complete, any 527ef27340cSAdrian Chadd * non-empty queues will simply have DMA restarted. 528ef27340cSAdrian Chadd */ 529ef27340cSAdrian Chadd return; 530ef27340cSAdrian Chadd } 531ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 532ef27340cSAdrian Chadd #endif 533ef27340cSAdrian Chadd 534eb6f0de0SAdrian Chadd /* For now, so not to generate whitespace diffs */ 535eb6f0de0SAdrian Chadd if (1) { 536b8e788a5SAdrian Chadd #ifdef IEEE80211_SUPPORT_TDMA 537b8e788a5SAdrian Chadd int qbusy; 538b8e788a5SAdrian Chadd 539b8e788a5SAdrian Chadd ATH_TXQ_INSERT_TAIL(txq, bf, bf_list); 540b8e788a5SAdrian Chadd qbusy = ath_hal_txqenabled(ah, txq->axq_qnum); 541b8e788a5SAdrian Chadd if (txq->axq_link == NULL) { 542b8e788a5SAdrian Chadd /* 543b8e788a5SAdrian Chadd * Be careful writing the address to TXDP. If 544b8e788a5SAdrian Chadd * the tx q is enabled then this write will be 545b8e788a5SAdrian Chadd * ignored. Normally this is not an issue but 546b8e788a5SAdrian Chadd * when tdma is in use and the q is beacon gated 547b8e788a5SAdrian Chadd * this race can occur. If the q is busy then 548b8e788a5SAdrian Chadd * defer the work to later--either when another 549b8e788a5SAdrian Chadd * packet comes along or when we prepare a beacon 550b8e788a5SAdrian Chadd * frame at SWBA. 551b8e788a5SAdrian Chadd */ 552b8e788a5SAdrian Chadd if (!qbusy) { 553*d4365d16SAdrian Chadd ath_hal_puttxbuf(ah, txq->axq_qnum, 554*d4365d16SAdrian Chadd bf->bf_daddr); 555b8e788a5SAdrian Chadd txq->axq_flags &= ~ATH_TXQ_PUTPENDING; 556b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 557b8e788a5SAdrian Chadd "%s: TXDP[%u] = %p (%p) depth %d\n", 558b8e788a5SAdrian Chadd __func__, txq->axq_qnum, 559b8e788a5SAdrian Chadd (caddr_t)bf->bf_daddr, bf->bf_desc, 560b8e788a5SAdrian Chadd txq->axq_depth); 561b8e788a5SAdrian Chadd } else { 562b8e788a5SAdrian Chadd txq->axq_flags |= ATH_TXQ_PUTPENDING; 563b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_TDMA | ATH_DEBUG_XMIT, 564b8e788a5SAdrian Chadd "%s: Q%u busy, defer enable\n", __func__, 565b8e788a5SAdrian Chadd txq->axq_qnum); 566b8e788a5SAdrian Chadd } 567b8e788a5SAdrian Chadd } else { 568b8e788a5SAdrian Chadd *txq->axq_link = bf->bf_daddr; 569b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 570b8e788a5SAdrian Chadd "%s: link[%u](%p)=%p (%p) depth %d\n", __func__, 571b8e788a5SAdrian Chadd txq->axq_qnum, txq->axq_link, 572*d4365d16SAdrian Chadd (caddr_t)bf->bf_daddr, bf->bf_desc, 573*d4365d16SAdrian Chadd txq->axq_depth); 574b8e788a5SAdrian Chadd if ((txq->axq_flags & ATH_TXQ_PUTPENDING) && !qbusy) { 575b8e788a5SAdrian Chadd /* 576b8e788a5SAdrian Chadd * The q was busy when we previously tried 577b8e788a5SAdrian Chadd * to write the address of the first buffer 578b8e788a5SAdrian Chadd * in the chain. Since it's not busy now 579b8e788a5SAdrian Chadd * handle this chore. We are certain the 580b8e788a5SAdrian Chadd * buffer at the front is the right one since 581b8e788a5SAdrian Chadd * axq_link is NULL only when the buffer list 582b8e788a5SAdrian Chadd * is/was empty. 583b8e788a5SAdrian Chadd */ 584b8e788a5SAdrian Chadd ath_hal_puttxbuf(ah, txq->axq_qnum, 5856b349e5aSAdrian Chadd TAILQ_FIRST(&txq->axq_q)->bf_daddr); 586b8e788a5SAdrian Chadd txq->axq_flags &= ~ATH_TXQ_PUTPENDING; 587b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_TDMA | ATH_DEBUG_XMIT, 588b8e788a5SAdrian Chadd "%s: Q%u restarted\n", __func__, 589b8e788a5SAdrian Chadd txq->axq_qnum); 590b8e788a5SAdrian Chadd } 591b8e788a5SAdrian Chadd } 592b8e788a5SAdrian Chadd #else 593b8e788a5SAdrian Chadd ATH_TXQ_INSERT_TAIL(txq, bf, bf_list); 594b8e788a5SAdrian Chadd if (txq->axq_link == NULL) { 595b8e788a5SAdrian Chadd ath_hal_puttxbuf(ah, txq->axq_qnum, bf->bf_daddr); 596b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 597b8e788a5SAdrian Chadd "%s: TXDP[%u] = %p (%p) depth %d\n", 598b8e788a5SAdrian Chadd __func__, txq->axq_qnum, 599b8e788a5SAdrian Chadd (caddr_t)bf->bf_daddr, bf->bf_desc, 600b8e788a5SAdrian Chadd txq->axq_depth); 601b8e788a5SAdrian Chadd } else { 602b8e788a5SAdrian Chadd *txq->axq_link = bf->bf_daddr; 603b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, 604b8e788a5SAdrian Chadd "%s: link[%u](%p)=%p (%p) depth %d\n", __func__, 605b8e788a5SAdrian Chadd txq->axq_qnum, txq->axq_link, 606*d4365d16SAdrian Chadd (caddr_t)bf->bf_daddr, bf->bf_desc, 607*d4365d16SAdrian Chadd txq->axq_depth); 608b8e788a5SAdrian Chadd } 609b8e788a5SAdrian Chadd #endif /* IEEE80211_SUPPORT_TDMA */ 6106edf1dc7SAdrian Chadd if (bf->bf_state.bfs_aggr) 6116edf1dc7SAdrian Chadd txq->axq_aggr_depth++; 6126edf1dc7SAdrian Chadd txq->axq_link = &bf->bf_lastds->ds_link; 613b8e788a5SAdrian Chadd ath_hal_txstart(ah, txq->axq_qnum); 614b8e788a5SAdrian Chadd } 615b8e788a5SAdrian Chadd } 616eb6f0de0SAdrian Chadd 617eb6f0de0SAdrian Chadd /* 618eb6f0de0SAdrian Chadd * Restart TX DMA for the given TXQ. 619eb6f0de0SAdrian Chadd * 620eb6f0de0SAdrian Chadd * This must be called whether the queue is empty or not. 621eb6f0de0SAdrian Chadd */ 622eb6f0de0SAdrian Chadd void 623eb6f0de0SAdrian Chadd ath_txq_restart_dma(struct ath_softc *sc, struct ath_txq *txq) 624eb6f0de0SAdrian Chadd { 625eb6f0de0SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 626eb6f0de0SAdrian Chadd struct ath_buf *bf; 627eb6f0de0SAdrian Chadd 628eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 629eb6f0de0SAdrian Chadd 630eb6f0de0SAdrian Chadd /* This is always going to be cleared, empty or not */ 631eb6f0de0SAdrian Chadd txq->axq_flags &= ~ATH_TXQ_PUTPENDING; 632eb6f0de0SAdrian Chadd 633eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&txq->axq_q); 634eb6f0de0SAdrian Chadd if (bf == NULL) 635eb6f0de0SAdrian Chadd return; 636eb6f0de0SAdrian Chadd 637eb6f0de0SAdrian Chadd ath_hal_puttxbuf(ah, txq->axq_qnum, bf->bf_daddr); 638eb6f0de0SAdrian Chadd txq->axq_link = &bf->bf_lastds->ds_link; 639eb6f0de0SAdrian Chadd ath_hal_txstart(ah, txq->axq_qnum); 640eb6f0de0SAdrian Chadd } 641eb6f0de0SAdrian Chadd 642eb6f0de0SAdrian Chadd /* 643eb6f0de0SAdrian Chadd * Hand off a packet to the hardware (or mcast queue.) 644eb6f0de0SAdrian Chadd * 645eb6f0de0SAdrian Chadd * The relevant hardware txq should be locked. 646eb6f0de0SAdrian Chadd */ 647eb6f0de0SAdrian Chadd static void 648eb6f0de0SAdrian Chadd ath_tx_handoff(struct ath_softc *sc, struct ath_txq *txq, struct ath_buf *bf) 649eb6f0de0SAdrian Chadd { 650eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 651eb6f0de0SAdrian Chadd 652eb6f0de0SAdrian Chadd if (txq->axq_qnum == ATH_TXQ_SWQ) 653eb6f0de0SAdrian Chadd ath_tx_handoff_mcast(sc, txq, bf); 654eb6f0de0SAdrian Chadd else 655eb6f0de0SAdrian Chadd ath_tx_handoff_hw(sc, txq, bf); 656b8e788a5SAdrian Chadd } 657b8e788a5SAdrian Chadd 65881a82688SAdrian Chadd static int 65981a82688SAdrian Chadd ath_tx_tag_crypto(struct ath_softc *sc, struct ieee80211_node *ni, 660*d4365d16SAdrian Chadd struct mbuf *m0, int iswep, int isfrag, int *hdrlen, int *pktlen, 661*d4365d16SAdrian Chadd int *keyix) 66281a82688SAdrian Chadd { 66381a82688SAdrian Chadd if (iswep) { 66481a82688SAdrian Chadd const struct ieee80211_cipher *cip; 66581a82688SAdrian Chadd struct ieee80211_key *k; 66681a82688SAdrian Chadd 66781a82688SAdrian Chadd /* 66881a82688SAdrian Chadd * Construct the 802.11 header+trailer for an encrypted 66981a82688SAdrian Chadd * frame. The only reason this can fail is because of an 67081a82688SAdrian Chadd * unknown or unsupported cipher/key type. 67181a82688SAdrian Chadd */ 67281a82688SAdrian Chadd k = ieee80211_crypto_encap(ni, m0); 67381a82688SAdrian Chadd if (k == NULL) { 67481a82688SAdrian Chadd /* 67581a82688SAdrian Chadd * This can happen when the key is yanked after the 67681a82688SAdrian Chadd * frame was queued. Just discard the frame; the 67781a82688SAdrian Chadd * 802.11 layer counts failures and provides 67881a82688SAdrian Chadd * debugging/diagnostics. 67981a82688SAdrian Chadd */ 680*d4365d16SAdrian Chadd return (0); 68181a82688SAdrian Chadd } 68281a82688SAdrian Chadd /* 68381a82688SAdrian Chadd * Adjust the packet + header lengths for the crypto 68481a82688SAdrian Chadd * additions and calculate the h/w key index. When 68581a82688SAdrian Chadd * a s/w mic is done the frame will have had any mic 68681a82688SAdrian Chadd * added to it prior to entry so m0->m_pkthdr.len will 68781a82688SAdrian Chadd * account for it. Otherwise we need to add it to the 68881a82688SAdrian Chadd * packet length. 68981a82688SAdrian Chadd */ 69081a82688SAdrian Chadd cip = k->wk_cipher; 69181a82688SAdrian Chadd (*hdrlen) += cip->ic_header; 69281a82688SAdrian Chadd (*pktlen) += cip->ic_header + cip->ic_trailer; 69381a82688SAdrian Chadd /* NB: frags always have any TKIP MIC done in s/w */ 69481a82688SAdrian Chadd if ((k->wk_flags & IEEE80211_KEY_SWMIC) == 0 && !isfrag) 69581a82688SAdrian Chadd (*pktlen) += cip->ic_miclen; 69681a82688SAdrian Chadd (*keyix) = k->wk_keyix; 69781a82688SAdrian Chadd } else if (ni->ni_ucastkey.wk_cipher == &ieee80211_cipher_none) { 69881a82688SAdrian Chadd /* 69981a82688SAdrian Chadd * Use station key cache slot, if assigned. 70081a82688SAdrian Chadd */ 70181a82688SAdrian Chadd (*keyix) = ni->ni_ucastkey.wk_keyix; 70281a82688SAdrian Chadd if ((*keyix) == IEEE80211_KEYIX_NONE) 70381a82688SAdrian Chadd (*keyix) = HAL_TXKEYIX_INVALID; 70481a82688SAdrian Chadd } else 70581a82688SAdrian Chadd (*keyix) = HAL_TXKEYIX_INVALID; 70681a82688SAdrian Chadd 707*d4365d16SAdrian Chadd return (1); 70881a82688SAdrian Chadd } 70981a82688SAdrian Chadd 710e42b5dbaSAdrian Chadd static uint8_t 711e42b5dbaSAdrian Chadd ath_tx_get_rtscts_rate(struct ath_hal *ah, const HAL_RATE_TABLE *rt, 712eb6f0de0SAdrian Chadd int cix, int shortPreamble) 71379f02dbfSAdrian Chadd { 714e42b5dbaSAdrian Chadd uint8_t ctsrate; 715e42b5dbaSAdrian Chadd 71679f02dbfSAdrian Chadd /* 71779f02dbfSAdrian Chadd * CTS transmit rate is derived from the transmit rate 71879f02dbfSAdrian Chadd * by looking in the h/w rate table. We must also factor 71979f02dbfSAdrian Chadd * in whether or not a short preamble is to be used. 72079f02dbfSAdrian Chadd */ 72179f02dbfSAdrian Chadd /* NB: cix is set above where RTS/CTS is enabled */ 72279f02dbfSAdrian Chadd KASSERT(cix != 0xff, ("cix not setup")); 723e42b5dbaSAdrian Chadd ctsrate = rt->info[cix].rateCode; 724e42b5dbaSAdrian Chadd 725e42b5dbaSAdrian Chadd /* XXX this should only matter for legacy rates */ 726e42b5dbaSAdrian Chadd if (shortPreamble) 727e42b5dbaSAdrian Chadd ctsrate |= rt->info[cix].shortPreamble; 728e42b5dbaSAdrian Chadd 729*d4365d16SAdrian Chadd return (ctsrate); 730e42b5dbaSAdrian Chadd } 731e42b5dbaSAdrian Chadd 732e42b5dbaSAdrian Chadd /* 733e42b5dbaSAdrian Chadd * Calculate the RTS/CTS duration for legacy frames. 734e42b5dbaSAdrian Chadd */ 735e42b5dbaSAdrian Chadd static int 736e42b5dbaSAdrian Chadd ath_tx_calc_ctsduration(struct ath_hal *ah, int rix, int cix, 737e42b5dbaSAdrian Chadd int shortPreamble, int pktlen, const HAL_RATE_TABLE *rt, 738e42b5dbaSAdrian Chadd int flags) 739e42b5dbaSAdrian Chadd { 740e42b5dbaSAdrian Chadd int ctsduration = 0; 741e42b5dbaSAdrian Chadd 742e42b5dbaSAdrian Chadd /* This mustn't be called for HT modes */ 743e42b5dbaSAdrian Chadd if (rt->info[cix].phy == IEEE80211_T_HT) { 744e42b5dbaSAdrian Chadd printf("%s: HT rate where it shouldn't be (0x%x)\n", 745e42b5dbaSAdrian Chadd __func__, rt->info[cix].rateCode); 746*d4365d16SAdrian Chadd return (-1); 747e42b5dbaSAdrian Chadd } 748e42b5dbaSAdrian Chadd 74979f02dbfSAdrian Chadd /* 75079f02dbfSAdrian Chadd * Compute the transmit duration based on the frame 75179f02dbfSAdrian Chadd * size and the size of an ACK frame. We call into the 75279f02dbfSAdrian Chadd * HAL to do the computation since it depends on the 75379f02dbfSAdrian Chadd * characteristics of the actual PHY being used. 75479f02dbfSAdrian Chadd * 75579f02dbfSAdrian Chadd * NB: CTS is assumed the same size as an ACK so we can 75679f02dbfSAdrian Chadd * use the precalculated ACK durations. 75779f02dbfSAdrian Chadd */ 75879f02dbfSAdrian Chadd if (shortPreamble) { 75979f02dbfSAdrian Chadd if (flags & HAL_TXDESC_RTSENA) /* SIFS + CTS */ 760e42b5dbaSAdrian Chadd ctsduration += rt->info[cix].spAckDuration; 761e42b5dbaSAdrian Chadd ctsduration += ath_hal_computetxtime(ah, 76279f02dbfSAdrian Chadd rt, pktlen, rix, AH_TRUE); 76379f02dbfSAdrian Chadd if ((flags & HAL_TXDESC_NOACK) == 0) /* SIFS + ACK */ 764e42b5dbaSAdrian Chadd ctsduration += rt->info[rix].spAckDuration; 76579f02dbfSAdrian Chadd } else { 76679f02dbfSAdrian Chadd if (flags & HAL_TXDESC_RTSENA) /* SIFS + CTS */ 767e42b5dbaSAdrian Chadd ctsduration += rt->info[cix].lpAckDuration; 768e42b5dbaSAdrian Chadd ctsduration += ath_hal_computetxtime(ah, 76979f02dbfSAdrian Chadd rt, pktlen, rix, AH_FALSE); 77079f02dbfSAdrian Chadd if ((flags & HAL_TXDESC_NOACK) == 0) /* SIFS + ACK */ 771e42b5dbaSAdrian Chadd ctsduration += rt->info[rix].lpAckDuration; 77279f02dbfSAdrian Chadd } 773e42b5dbaSAdrian Chadd 774*d4365d16SAdrian Chadd return (ctsduration); 77579f02dbfSAdrian Chadd } 77679f02dbfSAdrian Chadd 777eb6f0de0SAdrian Chadd /* 778eb6f0de0SAdrian Chadd * Update the given ath_buf with updated rts/cts setup and duration 779eb6f0de0SAdrian Chadd * values. 780eb6f0de0SAdrian Chadd * 781eb6f0de0SAdrian Chadd * To support rate lookups for each software retry, the rts/cts rate 782eb6f0de0SAdrian Chadd * and cts duration must be re-calculated. 783eb6f0de0SAdrian Chadd * 784eb6f0de0SAdrian Chadd * This function assumes the RTS/CTS flags have been set as needed; 785eb6f0de0SAdrian Chadd * mrr has been disabled; and the rate control lookup has been done. 786eb6f0de0SAdrian Chadd * 787eb6f0de0SAdrian Chadd * XXX TODO: MRR need only be disabled for the pre-11n NICs. 788eb6f0de0SAdrian Chadd * XXX The 11n NICs support per-rate RTS/CTS configuration. 789eb6f0de0SAdrian Chadd */ 790eb6f0de0SAdrian Chadd static void 791eb6f0de0SAdrian Chadd ath_tx_set_rtscts(struct ath_softc *sc, struct ath_buf *bf) 792eb6f0de0SAdrian Chadd { 793eb6f0de0SAdrian Chadd uint16_t ctsduration = 0; 794eb6f0de0SAdrian Chadd uint8_t ctsrate = 0; 795eb6f0de0SAdrian Chadd uint8_t rix = bf->bf_state.bfs_rc[0].rix; 796eb6f0de0SAdrian Chadd uint8_t cix = 0; 797eb6f0de0SAdrian Chadd const HAL_RATE_TABLE *rt = sc->sc_currates; 798eb6f0de0SAdrian Chadd 799eb6f0de0SAdrian Chadd /* 800eb6f0de0SAdrian Chadd * No RTS/CTS enabled? Don't bother. 801eb6f0de0SAdrian Chadd */ 802eb6f0de0SAdrian Chadd if ((bf->bf_state.bfs_flags & 803eb6f0de0SAdrian Chadd (HAL_TXDESC_RTSENA | HAL_TXDESC_CTSENA)) == 0) { 804eb6f0de0SAdrian Chadd /* XXX is this really needed? */ 805eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate = 0; 806eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsduration = 0; 807eb6f0de0SAdrian Chadd return; 808eb6f0de0SAdrian Chadd } 809eb6f0de0SAdrian Chadd 810eb6f0de0SAdrian Chadd /* 811eb6f0de0SAdrian Chadd * If protection is enabled, use the protection rix control 812eb6f0de0SAdrian Chadd * rate. Otherwise use the rate0 control rate. 813eb6f0de0SAdrian Chadd */ 814eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_doprot) 815eb6f0de0SAdrian Chadd rix = sc->sc_protrix; 816eb6f0de0SAdrian Chadd else 817eb6f0de0SAdrian Chadd rix = bf->bf_state.bfs_rc[0].rix; 818eb6f0de0SAdrian Chadd 819eb6f0de0SAdrian Chadd /* 820eb6f0de0SAdrian Chadd * If the raw path has hard-coded ctsrate0 to something, 821eb6f0de0SAdrian Chadd * use it. 822eb6f0de0SAdrian Chadd */ 823eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_ctsrate0 != 0) 824eb6f0de0SAdrian Chadd cix = ath_tx_findrix(sc, bf->bf_state.bfs_ctsrate0); 825eb6f0de0SAdrian Chadd else 826eb6f0de0SAdrian Chadd /* Control rate from above */ 827eb6f0de0SAdrian Chadd cix = rt->info[rix].controlRate; 828eb6f0de0SAdrian Chadd 829eb6f0de0SAdrian Chadd /* Calculate the rtscts rate for the given cix */ 830eb6f0de0SAdrian Chadd ctsrate = ath_tx_get_rtscts_rate(sc->sc_ah, rt, cix, 831eb6f0de0SAdrian Chadd bf->bf_state.bfs_shpream); 832eb6f0de0SAdrian Chadd 833eb6f0de0SAdrian Chadd /* The 11n chipsets do ctsduration calculations for you */ 834eb6f0de0SAdrian Chadd if (! ath_tx_is_11n(sc)) 835eb6f0de0SAdrian Chadd ctsduration = ath_tx_calc_ctsduration(sc->sc_ah, rix, cix, 836eb6f0de0SAdrian Chadd bf->bf_state.bfs_shpream, bf->bf_state.bfs_pktlen, 837eb6f0de0SAdrian Chadd rt, bf->bf_state.bfs_flags); 838eb6f0de0SAdrian Chadd 839eb6f0de0SAdrian Chadd /* Squirrel away in ath_buf */ 840eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate = ctsrate; 841eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsduration = ctsduration; 842eb6f0de0SAdrian Chadd 843eb6f0de0SAdrian Chadd /* 844eb6f0de0SAdrian Chadd * Must disable multi-rate retry when using RTS/CTS. 845eb6f0de0SAdrian Chadd * XXX TODO: only for pre-11n NICs. 846eb6f0de0SAdrian Chadd */ 847eb6f0de0SAdrian Chadd bf->bf_state.bfs_ismrr = 0; 848eb6f0de0SAdrian Chadd bf->bf_state.bfs_try0 = 849eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].tries = ATH_TXMGTTRY; /* XXX ew */ 850eb6f0de0SAdrian Chadd } 851eb6f0de0SAdrian Chadd 852eb6f0de0SAdrian Chadd /* 853eb6f0de0SAdrian Chadd * Setup the descriptor chain for a normal or fast-frame 854eb6f0de0SAdrian Chadd * frame. 855eb6f0de0SAdrian Chadd */ 856eb6f0de0SAdrian Chadd static void 857eb6f0de0SAdrian Chadd ath_tx_setds(struct ath_softc *sc, struct ath_buf *bf) 858eb6f0de0SAdrian Chadd { 859eb6f0de0SAdrian Chadd struct ath_desc *ds = bf->bf_desc; 860eb6f0de0SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 861eb6f0de0SAdrian Chadd 862eb6f0de0SAdrian Chadd ath_hal_setuptxdesc(ah, ds 863eb6f0de0SAdrian Chadd , bf->bf_state.bfs_pktlen /* packet length */ 864eb6f0de0SAdrian Chadd , bf->bf_state.bfs_hdrlen /* header length */ 865eb6f0de0SAdrian Chadd , bf->bf_state.bfs_atype /* Atheros packet type */ 866eb6f0de0SAdrian Chadd , bf->bf_state.bfs_txpower /* txpower */ 867eb6f0de0SAdrian Chadd , bf->bf_state.bfs_txrate0 868eb6f0de0SAdrian Chadd , bf->bf_state.bfs_try0 /* series 0 rate/tries */ 869eb6f0de0SAdrian Chadd , bf->bf_state.bfs_keyix /* key cache index */ 870eb6f0de0SAdrian Chadd , bf->bf_state.bfs_txantenna /* antenna mode */ 871eb6f0de0SAdrian Chadd , bf->bf_state.bfs_flags /* flags */ 872eb6f0de0SAdrian Chadd , bf->bf_state.bfs_ctsrate /* rts/cts rate */ 873eb6f0de0SAdrian Chadd , bf->bf_state.bfs_ctsduration /* rts/cts duration */ 874eb6f0de0SAdrian Chadd ); 875eb6f0de0SAdrian Chadd 876eb6f0de0SAdrian Chadd /* 877eb6f0de0SAdrian Chadd * This will be overriden when the descriptor chain is written. 878eb6f0de0SAdrian Chadd */ 879eb6f0de0SAdrian Chadd bf->bf_lastds = ds; 880eb6f0de0SAdrian Chadd bf->bf_last = bf; 881eb6f0de0SAdrian Chadd 882eb6f0de0SAdrian Chadd /* XXX TODO: Setup descriptor chain */ 883eb6f0de0SAdrian Chadd } 884eb6f0de0SAdrian Chadd 885eb6f0de0SAdrian Chadd /* 886eb6f0de0SAdrian Chadd * Do a rate lookup. 887eb6f0de0SAdrian Chadd * 888eb6f0de0SAdrian Chadd * This performs a rate lookup for the given ath_buf only if it's required. 889eb6f0de0SAdrian Chadd * Non-data frames and raw frames don't require it. 890eb6f0de0SAdrian Chadd * 891eb6f0de0SAdrian Chadd * This populates the primary and MRR entries; MRR values are 892eb6f0de0SAdrian Chadd * then disabled later on if something requires it (eg RTS/CTS on 893eb6f0de0SAdrian Chadd * pre-11n chipsets. 894eb6f0de0SAdrian Chadd * 895eb6f0de0SAdrian Chadd * This needs to be done before the RTS/CTS fields are calculated 896eb6f0de0SAdrian Chadd * as they may depend upon the rate chosen. 897eb6f0de0SAdrian Chadd */ 898eb6f0de0SAdrian Chadd static void 899eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(struct ath_softc *sc, struct ath_buf *bf) 900eb6f0de0SAdrian Chadd { 901eb6f0de0SAdrian Chadd uint8_t rate, rix; 902eb6f0de0SAdrian Chadd int try0; 903eb6f0de0SAdrian Chadd 904eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_doratelookup) 905eb6f0de0SAdrian Chadd return; 906eb6f0de0SAdrian Chadd 907eb6f0de0SAdrian Chadd /* Get rid of any previous state */ 908eb6f0de0SAdrian Chadd bzero(bf->bf_state.bfs_rc, sizeof(bf->bf_state.bfs_rc)); 909eb6f0de0SAdrian Chadd 910eb6f0de0SAdrian Chadd ATH_NODE_LOCK(ATH_NODE(bf->bf_node)); 911eb6f0de0SAdrian Chadd ath_rate_findrate(sc, ATH_NODE(bf->bf_node), bf->bf_state.bfs_shpream, 912eb6f0de0SAdrian Chadd bf->bf_state.bfs_pktlen, &rix, &try0, &rate); 913eb6f0de0SAdrian Chadd 914eb6f0de0SAdrian Chadd /* In case MRR is disabled, make sure rc[0] is setup correctly */ 915eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].rix = rix; 916eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].ratecode = rate; 917eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].tries = try0; 918eb6f0de0SAdrian Chadd 919eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_ismrr && try0 != ATH_TXMAXTRY) 920eb6f0de0SAdrian Chadd ath_rate_getxtxrates(sc, ATH_NODE(bf->bf_node), rix, 921eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc); 922eb6f0de0SAdrian Chadd ATH_NODE_UNLOCK(ATH_NODE(bf->bf_node)); 923eb6f0de0SAdrian Chadd 924eb6f0de0SAdrian Chadd sc->sc_txrix = rix; /* for LED blinking */ 925eb6f0de0SAdrian Chadd sc->sc_lastdatarix = rix; /* for fast frames */ 926eb6f0de0SAdrian Chadd bf->bf_state.bfs_try0 = try0; 927eb6f0de0SAdrian Chadd bf->bf_state.bfs_txrate0 = rate; 928eb6f0de0SAdrian Chadd } 929eb6f0de0SAdrian Chadd 930eb6f0de0SAdrian Chadd /* 931eb6f0de0SAdrian Chadd * Set the rate control fields in the given descriptor based on 932eb6f0de0SAdrian Chadd * the bf_state fields and node state. 933eb6f0de0SAdrian Chadd * 934eb6f0de0SAdrian Chadd * The bfs fields should already be set with the relevant rate 935eb6f0de0SAdrian Chadd * control information, including whether MRR is to be enabled. 936eb6f0de0SAdrian Chadd * 937eb6f0de0SAdrian Chadd * Since the FreeBSD HAL currently sets up the first TX rate 938eb6f0de0SAdrian Chadd * in ath_hal_setuptxdesc(), this will setup the MRR 939eb6f0de0SAdrian Chadd * conditionally for the pre-11n chips, and call ath_buf_set_rate 940eb6f0de0SAdrian Chadd * unconditionally for 11n chips. These require the 11n rate 941eb6f0de0SAdrian Chadd * scenario to be set if MCS rates are enabled, so it's easier 942eb6f0de0SAdrian Chadd * to just always call it. The caller can then only set rates 2, 3 943eb6f0de0SAdrian Chadd * and 4 if multi-rate retry is needed. 944eb6f0de0SAdrian Chadd */ 945eb6f0de0SAdrian Chadd static void 946eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(struct ath_softc *sc, struct ieee80211_node *ni, 947eb6f0de0SAdrian Chadd struct ath_buf *bf) 948eb6f0de0SAdrian Chadd { 949eb6f0de0SAdrian Chadd struct ath_rc_series *rc = bf->bf_state.bfs_rc; 950eb6f0de0SAdrian Chadd 951eb6f0de0SAdrian Chadd /* If mrr is disabled, blank tries 1, 2, 3 */ 952eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_ismrr) 953eb6f0de0SAdrian Chadd rc[1].tries = rc[2].tries = rc[3].tries = 0; 954eb6f0de0SAdrian Chadd 955eb6f0de0SAdrian Chadd /* 956eb6f0de0SAdrian Chadd * Always call - that way a retried descriptor will 957eb6f0de0SAdrian Chadd * have the MRR fields overwritten. 958eb6f0de0SAdrian Chadd * 959eb6f0de0SAdrian Chadd * XXX TODO: see if this is really needed - setting up 960eb6f0de0SAdrian Chadd * the first descriptor should set the MRR fields to 0 961eb6f0de0SAdrian Chadd * for us anyway. 962eb6f0de0SAdrian Chadd */ 963eb6f0de0SAdrian Chadd if (ath_tx_is_11n(sc)) { 964eb6f0de0SAdrian Chadd ath_buf_set_rate(sc, ni, bf); 965eb6f0de0SAdrian Chadd } else { 966eb6f0de0SAdrian Chadd ath_hal_setupxtxdesc(sc->sc_ah, bf->bf_desc 967eb6f0de0SAdrian Chadd , rc[1].ratecode, rc[1].tries 968eb6f0de0SAdrian Chadd , rc[2].ratecode, rc[2].tries 969eb6f0de0SAdrian Chadd , rc[3].ratecode, rc[3].tries 970eb6f0de0SAdrian Chadd ); 971eb6f0de0SAdrian Chadd } 972eb6f0de0SAdrian Chadd } 973eb6f0de0SAdrian Chadd 974eb6f0de0SAdrian Chadd /* 975eb6f0de0SAdrian Chadd * Transmit the given frame to the hardware. 976eb6f0de0SAdrian Chadd * 977eb6f0de0SAdrian Chadd * The frame must already be setup; rate control must already have 978eb6f0de0SAdrian Chadd * been done. 979eb6f0de0SAdrian Chadd * 980eb6f0de0SAdrian Chadd * XXX since the TXQ lock is being held here (and I dislike holding 981eb6f0de0SAdrian Chadd * it for this long when not doing software aggregation), later on 982eb6f0de0SAdrian Chadd * break this function into "setup_normal" and "xmit_normal". The 983eb6f0de0SAdrian Chadd * lock only needs to be held for the ath_tx_handoff call. 984eb6f0de0SAdrian Chadd */ 985eb6f0de0SAdrian Chadd static void 986eb6f0de0SAdrian Chadd ath_tx_xmit_normal(struct ath_softc *sc, struct ath_txq *txq, 987eb6f0de0SAdrian Chadd struct ath_buf *bf) 988eb6f0de0SAdrian Chadd { 989eb6f0de0SAdrian Chadd 990eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 991eb6f0de0SAdrian Chadd 992eb6f0de0SAdrian Chadd /* Setup the descriptor before handoff */ 993eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(sc, bf); 994eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 995eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 996eb6f0de0SAdrian Chadd ath_tx_setds(sc, bf); 997eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, bf->bf_node, bf); 998eb6f0de0SAdrian Chadd ath_tx_chaindesclist(sc, bf); 999eb6f0de0SAdrian Chadd 1000eb6f0de0SAdrian Chadd /* Hand off to hardware */ 1001eb6f0de0SAdrian Chadd ath_tx_handoff(sc, txq, bf); 1002eb6f0de0SAdrian Chadd } 1003eb6f0de0SAdrian Chadd 1004eb6f0de0SAdrian Chadd 1005eb6f0de0SAdrian Chadd 1006eb6f0de0SAdrian Chadd static int 1007eb6f0de0SAdrian Chadd ath_tx_normal_setup(struct ath_softc *sc, struct ieee80211_node *ni, 1008eb6f0de0SAdrian Chadd struct ath_buf *bf, struct mbuf *m0) 1009b8e788a5SAdrian Chadd { 1010b8e788a5SAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 1011b8e788a5SAdrian Chadd struct ath_vap *avp = ATH_VAP(vap); 1012b8e788a5SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 1013b8e788a5SAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1014b8e788a5SAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 1015b8e788a5SAdrian Chadd const struct chanAccParams *cap = &ic->ic_wme.wme_chanParams; 1016b8e788a5SAdrian Chadd int error, iswep, ismcast, isfrag, ismrr; 1017eb6f0de0SAdrian Chadd int keyix, hdrlen, pktlen, try0 = 0; 1018eb6f0de0SAdrian Chadd u_int8_t rix = 0, txrate = 0; 1019b8e788a5SAdrian Chadd struct ath_desc *ds; 1020b8e788a5SAdrian Chadd struct ath_txq *txq; 1021b8e788a5SAdrian Chadd struct ieee80211_frame *wh; 1022eb6f0de0SAdrian Chadd u_int subtype, flags; 1023b8e788a5SAdrian Chadd HAL_PKT_TYPE atype; 1024b8e788a5SAdrian Chadd const HAL_RATE_TABLE *rt; 1025b8e788a5SAdrian Chadd HAL_BOOL shortPreamble; 1026b8e788a5SAdrian Chadd struct ath_node *an; 1027b8e788a5SAdrian Chadd u_int pri; 1028b8e788a5SAdrian Chadd 1029b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1030b8e788a5SAdrian Chadd iswep = wh->i_fc[1] & IEEE80211_FC1_WEP; 1031b8e788a5SAdrian Chadd ismcast = IEEE80211_IS_MULTICAST(wh->i_addr1); 1032b8e788a5SAdrian Chadd isfrag = m0->m_flags & M_FRAG; 1033b8e788a5SAdrian Chadd hdrlen = ieee80211_anyhdrsize(wh); 1034b8e788a5SAdrian Chadd /* 1035b8e788a5SAdrian Chadd * Packet length must not include any 1036b8e788a5SAdrian Chadd * pad bytes; deduct them here. 1037b8e788a5SAdrian Chadd */ 1038b8e788a5SAdrian Chadd pktlen = m0->m_pkthdr.len - (hdrlen & 3); 1039b8e788a5SAdrian Chadd 104081a82688SAdrian Chadd /* Handle encryption twiddling if needed */ 1041eb6f0de0SAdrian Chadd if (! ath_tx_tag_crypto(sc, ni, m0, iswep, isfrag, &hdrlen, 1042eb6f0de0SAdrian Chadd &pktlen, &keyix)) { 1043b8e788a5SAdrian Chadd ath_freetx(m0); 1044b8e788a5SAdrian Chadd return EIO; 1045b8e788a5SAdrian Chadd } 1046b8e788a5SAdrian Chadd 1047b8e788a5SAdrian Chadd /* packet header may have moved, reset our local pointer */ 1048b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1049b8e788a5SAdrian Chadd 1050b8e788a5SAdrian Chadd pktlen += IEEE80211_CRC_LEN; 1051b8e788a5SAdrian Chadd 1052b8e788a5SAdrian Chadd /* 1053b8e788a5SAdrian Chadd * Load the DMA map so any coalescing is done. This 1054b8e788a5SAdrian Chadd * also calculates the number of descriptors we need. 1055b8e788a5SAdrian Chadd */ 1056b8e788a5SAdrian Chadd error = ath_tx_dmasetup(sc, bf, m0); 1057b8e788a5SAdrian Chadd if (error != 0) 1058b8e788a5SAdrian Chadd return error; 1059b8e788a5SAdrian Chadd bf->bf_node = ni; /* NB: held reference */ 1060b8e788a5SAdrian Chadd m0 = bf->bf_m; /* NB: may have changed */ 1061b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1062b8e788a5SAdrian Chadd 1063b8e788a5SAdrian Chadd /* setup descriptors */ 1064b8e788a5SAdrian Chadd ds = bf->bf_desc; 1065b8e788a5SAdrian Chadd rt = sc->sc_currates; 1066b8e788a5SAdrian Chadd KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode)); 1067b8e788a5SAdrian Chadd 1068b8e788a5SAdrian Chadd /* 1069b8e788a5SAdrian Chadd * NB: the 802.11 layer marks whether or not we should 1070b8e788a5SAdrian Chadd * use short preamble based on the current mode and 1071b8e788a5SAdrian Chadd * negotiated parameters. 1072b8e788a5SAdrian Chadd */ 1073b8e788a5SAdrian Chadd if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) && 1074b8e788a5SAdrian Chadd (ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE)) { 1075b8e788a5SAdrian Chadd shortPreamble = AH_TRUE; 1076b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_shortpre++; 1077b8e788a5SAdrian Chadd } else { 1078b8e788a5SAdrian Chadd shortPreamble = AH_FALSE; 1079b8e788a5SAdrian Chadd } 1080b8e788a5SAdrian Chadd 1081b8e788a5SAdrian Chadd an = ATH_NODE(ni); 1082b8e788a5SAdrian Chadd flags = HAL_TXDESC_CLRDMASK; /* XXX needed for crypto errs */ 1083b8e788a5SAdrian Chadd ismrr = 0; /* default no multi-rate retry*/ 1084b8e788a5SAdrian Chadd pri = M_WME_GETAC(m0); /* honor classification */ 1085b8e788a5SAdrian Chadd /* XXX use txparams instead of fixed values */ 1086b8e788a5SAdrian Chadd /* 1087b8e788a5SAdrian Chadd * Calculate Atheros packet type from IEEE80211 packet header, 1088b8e788a5SAdrian Chadd * setup for rate calculations, and select h/w transmit queue. 1089b8e788a5SAdrian Chadd */ 1090b8e788a5SAdrian Chadd switch (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) { 1091b8e788a5SAdrian Chadd case IEEE80211_FC0_TYPE_MGT: 1092b8e788a5SAdrian Chadd subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK; 1093b8e788a5SAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_BEACON) 1094b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_BEACON; 1095b8e788a5SAdrian Chadd else if (subtype == IEEE80211_FC0_SUBTYPE_PROBE_RESP) 1096b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_PROBE_RESP; 1097b8e788a5SAdrian Chadd else if (subtype == IEEE80211_FC0_SUBTYPE_ATIM) 1098b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_ATIM; 1099b8e788a5SAdrian Chadd else 1100b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_NORMAL; /* XXX */ 1101b8e788a5SAdrian Chadd rix = an->an_mgmtrix; 1102b8e788a5SAdrian Chadd txrate = rt->info[rix].rateCode; 1103b8e788a5SAdrian Chadd if (shortPreamble) 1104b8e788a5SAdrian Chadd txrate |= rt->info[rix].shortPreamble; 1105b8e788a5SAdrian Chadd try0 = ATH_TXMGTTRY; 1106b8e788a5SAdrian Chadd flags |= HAL_TXDESC_INTREQ; /* force interrupt */ 1107b8e788a5SAdrian Chadd break; 1108b8e788a5SAdrian Chadd case IEEE80211_FC0_TYPE_CTL: 1109b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_PSPOLL; /* stop setting of duration */ 1110b8e788a5SAdrian Chadd rix = an->an_mgmtrix; 1111b8e788a5SAdrian Chadd txrate = rt->info[rix].rateCode; 1112b8e788a5SAdrian Chadd if (shortPreamble) 1113b8e788a5SAdrian Chadd txrate |= rt->info[rix].shortPreamble; 1114b8e788a5SAdrian Chadd try0 = ATH_TXMGTTRY; 1115b8e788a5SAdrian Chadd flags |= HAL_TXDESC_INTREQ; /* force interrupt */ 1116b8e788a5SAdrian Chadd break; 1117b8e788a5SAdrian Chadd case IEEE80211_FC0_TYPE_DATA: 1118b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_NORMAL; /* default */ 1119b8e788a5SAdrian Chadd /* 1120b8e788a5SAdrian Chadd * Data frames: multicast frames go out at a fixed rate, 1121b8e788a5SAdrian Chadd * EAPOL frames use the mgmt frame rate; otherwise consult 1122b8e788a5SAdrian Chadd * the rate control module for the rate to use. 1123b8e788a5SAdrian Chadd */ 1124b8e788a5SAdrian Chadd if (ismcast) { 1125b8e788a5SAdrian Chadd rix = an->an_mcastrix; 1126b8e788a5SAdrian Chadd txrate = rt->info[rix].rateCode; 1127b8e788a5SAdrian Chadd if (shortPreamble) 1128b8e788a5SAdrian Chadd txrate |= rt->info[rix].shortPreamble; 1129b8e788a5SAdrian Chadd try0 = 1; 1130b8e788a5SAdrian Chadd } else if (m0->m_flags & M_EAPOL) { 1131b8e788a5SAdrian Chadd /* XXX? maybe always use long preamble? */ 1132b8e788a5SAdrian Chadd rix = an->an_mgmtrix; 1133b8e788a5SAdrian Chadd txrate = rt->info[rix].rateCode; 1134b8e788a5SAdrian Chadd if (shortPreamble) 1135b8e788a5SAdrian Chadd txrate |= rt->info[rix].shortPreamble; 1136b8e788a5SAdrian Chadd try0 = ATH_TXMAXTRY; /* XXX?too many? */ 1137b8e788a5SAdrian Chadd } else { 1138eb6f0de0SAdrian Chadd /* 1139eb6f0de0SAdrian Chadd * Do rate lookup on each TX, rather than using 1140eb6f0de0SAdrian Chadd * the hard-coded TX information decided here. 1141eb6f0de0SAdrian Chadd */ 1142b8e788a5SAdrian Chadd ismrr = 1; 1143eb6f0de0SAdrian Chadd bf->bf_state.bfs_doratelookup = 1; 1144b8e788a5SAdrian Chadd } 1145b8e788a5SAdrian Chadd if (cap->cap_wmeParams[pri].wmep_noackPolicy) 1146b8e788a5SAdrian Chadd flags |= HAL_TXDESC_NOACK; 1147b8e788a5SAdrian Chadd break; 1148b8e788a5SAdrian Chadd default: 1149b8e788a5SAdrian Chadd if_printf(ifp, "bogus frame type 0x%x (%s)\n", 1150b8e788a5SAdrian Chadd wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK, __func__); 1151b8e788a5SAdrian Chadd /* XXX statistic */ 1152b8e788a5SAdrian Chadd ath_freetx(m0); 1153b8e788a5SAdrian Chadd return EIO; 1154b8e788a5SAdrian Chadd } 1155b8e788a5SAdrian Chadd txq = sc->sc_ac2q[pri]; 1156b8e788a5SAdrian Chadd 1157b8e788a5SAdrian Chadd /* 1158b8e788a5SAdrian Chadd * When servicing one or more stations in power-save mode 1159b8e788a5SAdrian Chadd * (or) if there is some mcast data waiting on the mcast 1160b8e788a5SAdrian Chadd * queue (to prevent out of order delivery) multicast 1161b8e788a5SAdrian Chadd * frames must be buffered until after the beacon. 1162b8e788a5SAdrian Chadd */ 1163b8e788a5SAdrian Chadd if (ismcast && (vap->iv_ps_sta || avp->av_mcastq.axq_depth)) 1164b8e788a5SAdrian Chadd txq = &avp->av_mcastq; 1165b8e788a5SAdrian Chadd 1166b8e788a5SAdrian Chadd /* 1167b8e788a5SAdrian Chadd * Calculate miscellaneous flags. 1168b8e788a5SAdrian Chadd */ 1169b8e788a5SAdrian Chadd if (ismcast) { 1170b8e788a5SAdrian Chadd flags |= HAL_TXDESC_NOACK; /* no ack on broad/multicast */ 1171b8e788a5SAdrian Chadd } else if (pktlen > vap->iv_rtsthreshold && 1172b8e788a5SAdrian Chadd (ni->ni_ath_flags & IEEE80211_NODE_FF) == 0) { 1173b8e788a5SAdrian Chadd flags |= HAL_TXDESC_RTSENA; /* RTS based on frame length */ 1174b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_rts++; 1175b8e788a5SAdrian Chadd } 1176b8e788a5SAdrian Chadd if (flags & HAL_TXDESC_NOACK) /* NB: avoid double counting */ 1177b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_noack++; 1178b8e788a5SAdrian Chadd #ifdef IEEE80211_SUPPORT_TDMA 1179b8e788a5SAdrian Chadd if (sc->sc_tdma && (flags & HAL_TXDESC_NOACK) == 0) { 1180b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_TDMA, 1181b8e788a5SAdrian Chadd "%s: discard frame, ACK required w/ TDMA\n", __func__); 1182b8e788a5SAdrian Chadd sc->sc_stats.ast_tdma_ack++; 1183b8e788a5SAdrian Chadd ath_freetx(m0); 1184b8e788a5SAdrian Chadd return EIO; 1185b8e788a5SAdrian Chadd } 1186b8e788a5SAdrian Chadd #endif 1187b8e788a5SAdrian Chadd 1188b8e788a5SAdrian Chadd /* 1189b8e788a5SAdrian Chadd * If 802.11g protection is enabled, determine whether 1190b8e788a5SAdrian Chadd * to use RTS/CTS or just CTS. Note that this is only 1191b8e788a5SAdrian Chadd * done for OFDM unicast frames. 1192b8e788a5SAdrian Chadd */ 1193b8e788a5SAdrian Chadd if ((ic->ic_flags & IEEE80211_F_USEPROT) && 1194b8e788a5SAdrian Chadd rt->info[rix].phy == IEEE80211_T_OFDM && 1195b8e788a5SAdrian Chadd (flags & HAL_TXDESC_NOACK) == 0) { 1196eb6f0de0SAdrian Chadd bf->bf_state.bfs_doprot = 1; 1197b8e788a5SAdrian Chadd /* XXX fragments must use CCK rates w/ protection */ 1198eb6f0de0SAdrian Chadd if (ic->ic_protmode == IEEE80211_PROT_RTSCTS) { 1199b8e788a5SAdrian Chadd flags |= HAL_TXDESC_RTSENA; 1200eb6f0de0SAdrian Chadd } else if (ic->ic_protmode == IEEE80211_PROT_CTSONLY) { 1201b8e788a5SAdrian Chadd flags |= HAL_TXDESC_CTSENA; 1202eb6f0de0SAdrian Chadd } 1203b8e788a5SAdrian Chadd /* 1204b8e788a5SAdrian Chadd * For frags it would be desirable to use the 1205b8e788a5SAdrian Chadd * highest CCK rate for RTS/CTS. But stations 1206b8e788a5SAdrian Chadd * farther away may detect it at a lower CCK rate 1207b8e788a5SAdrian Chadd * so use the configured protection rate instead 1208b8e788a5SAdrian Chadd * (for now). 1209b8e788a5SAdrian Chadd */ 1210b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_protect++; 1211b8e788a5SAdrian Chadd } 1212b8e788a5SAdrian Chadd 12134f545a2cSAdrian Chadd #if 0 12144f545a2cSAdrian Chadd /* 12154f545a2cSAdrian Chadd * If 11n protection is enabled and it's a HT frame, 12164f545a2cSAdrian Chadd * enable RTS. 12174f545a2cSAdrian Chadd * 12184f545a2cSAdrian Chadd * XXX ic_htprotmode or ic_curhtprotmode? 12194f545a2cSAdrian Chadd * XXX should it_htprotmode only matter if ic_curhtprotmode 12204f545a2cSAdrian Chadd * XXX indicates it's not a HT pure environment? 12214f545a2cSAdrian Chadd */ 12224f545a2cSAdrian Chadd if ((ic->ic_htprotmode == IEEE80211_PROT_RTSCTS) && 12234f545a2cSAdrian Chadd rt->info[rix].phy == IEEE80211_T_HT && 12244f545a2cSAdrian Chadd (flags & HAL_TXDESC_NOACK) == 0) { 12254f545a2cSAdrian Chadd cix = rt->info[sc->sc_protrix].controlRate; 12264f545a2cSAdrian Chadd flags |= HAL_TXDESC_RTSENA; 12274f545a2cSAdrian Chadd sc->sc_stats.ast_tx_htprotect++; 12284f545a2cSAdrian Chadd } 12294f545a2cSAdrian Chadd #endif 12304f545a2cSAdrian Chadd 1231b8e788a5SAdrian Chadd /* 1232b8e788a5SAdrian Chadd * Calculate duration. This logically belongs in the 802.11 1233b8e788a5SAdrian Chadd * layer but it lacks sufficient information to calculate it. 1234b8e788a5SAdrian Chadd */ 1235b8e788a5SAdrian Chadd if ((flags & HAL_TXDESC_NOACK) == 0 && 1236b8e788a5SAdrian Chadd (wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_CTL) { 1237b8e788a5SAdrian Chadd u_int16_t dur; 1238b8e788a5SAdrian Chadd if (shortPreamble) 1239b8e788a5SAdrian Chadd dur = rt->info[rix].spAckDuration; 1240b8e788a5SAdrian Chadd else 1241b8e788a5SAdrian Chadd dur = rt->info[rix].lpAckDuration; 1242b8e788a5SAdrian Chadd if (wh->i_fc[1] & IEEE80211_FC1_MORE_FRAG) { 1243b8e788a5SAdrian Chadd dur += dur; /* additional SIFS+ACK */ 1244b8e788a5SAdrian Chadd KASSERT(m0->m_nextpkt != NULL, ("no fragment")); 1245b8e788a5SAdrian Chadd /* 1246b8e788a5SAdrian Chadd * Include the size of next fragment so NAV is 1247b8e788a5SAdrian Chadd * updated properly. The last fragment uses only 1248b8e788a5SAdrian Chadd * the ACK duration 1249b8e788a5SAdrian Chadd */ 1250b8e788a5SAdrian Chadd dur += ath_hal_computetxtime(ah, rt, 1251b8e788a5SAdrian Chadd m0->m_nextpkt->m_pkthdr.len, 1252b8e788a5SAdrian Chadd rix, shortPreamble); 1253b8e788a5SAdrian Chadd } 1254b8e788a5SAdrian Chadd if (isfrag) { 1255b8e788a5SAdrian Chadd /* 1256b8e788a5SAdrian Chadd * Force hardware to use computed duration for next 1257b8e788a5SAdrian Chadd * fragment by disabling multi-rate retry which updates 1258b8e788a5SAdrian Chadd * duration based on the multi-rate duration table. 1259b8e788a5SAdrian Chadd */ 1260b8e788a5SAdrian Chadd ismrr = 0; 1261b8e788a5SAdrian Chadd try0 = ATH_TXMGTTRY; /* XXX? */ 1262b8e788a5SAdrian Chadd } 1263b8e788a5SAdrian Chadd *(u_int16_t *)wh->i_dur = htole16(dur); 1264b8e788a5SAdrian Chadd } 1265b8e788a5SAdrian Chadd 1266b8e788a5SAdrian Chadd /* 1267eb6f0de0SAdrian Chadd * Determine if a tx interrupt should be generated for 1268eb6f0de0SAdrian Chadd * this descriptor. We take a tx interrupt to reap 1269eb6f0de0SAdrian Chadd * descriptors when the h/w hits an EOL condition or 1270eb6f0de0SAdrian Chadd * when the descriptor is specifically marked to generate 1271eb6f0de0SAdrian Chadd * an interrupt. We periodically mark descriptors in this 1272eb6f0de0SAdrian Chadd * way to insure timely replenishing of the supply needed 1273eb6f0de0SAdrian Chadd * for sending frames. Defering interrupts reduces system 1274eb6f0de0SAdrian Chadd * load and potentially allows more concurrent work to be 1275eb6f0de0SAdrian Chadd * done but if done to aggressively can cause senders to 1276eb6f0de0SAdrian Chadd * backup. 1277eb6f0de0SAdrian Chadd * 1278eb6f0de0SAdrian Chadd * NB: use >= to deal with sc_txintrperiod changing 1279eb6f0de0SAdrian Chadd * dynamically through sysctl. 1280b8e788a5SAdrian Chadd */ 1281eb6f0de0SAdrian Chadd if (flags & HAL_TXDESC_INTREQ) { 1282eb6f0de0SAdrian Chadd txq->axq_intrcnt = 0; 1283eb6f0de0SAdrian Chadd } else if (++txq->axq_intrcnt >= sc->sc_txintrperiod) { 1284eb6f0de0SAdrian Chadd flags |= HAL_TXDESC_INTREQ; 1285eb6f0de0SAdrian Chadd txq->axq_intrcnt = 0; 1286eb6f0de0SAdrian Chadd } 1287e42b5dbaSAdrian Chadd 1288eb6f0de0SAdrian Chadd /* This point forward is actual TX bits */ 1289b8e788a5SAdrian Chadd 1290b8e788a5SAdrian Chadd /* 1291b8e788a5SAdrian Chadd * At this point we are committed to sending the frame 1292b8e788a5SAdrian Chadd * and we don't need to look at m_nextpkt; clear it in 1293b8e788a5SAdrian Chadd * case this frame is part of frag chain. 1294b8e788a5SAdrian Chadd */ 1295b8e788a5SAdrian Chadd m0->m_nextpkt = NULL; 1296b8e788a5SAdrian Chadd 1297b8e788a5SAdrian Chadd if (IFF_DUMPPKTS(sc, ATH_DEBUG_XMIT)) 1298b8e788a5SAdrian Chadd ieee80211_dump_pkt(ic, mtod(m0, const uint8_t *), m0->m_len, 1299b8e788a5SAdrian Chadd sc->sc_hwmap[rix].ieeerate, -1); 1300b8e788a5SAdrian Chadd 1301b8e788a5SAdrian Chadd if (ieee80211_radiotap_active_vap(vap)) { 1302b8e788a5SAdrian Chadd u_int64_t tsf = ath_hal_gettsf64(ah); 1303b8e788a5SAdrian Chadd 1304b8e788a5SAdrian Chadd sc->sc_tx_th.wt_tsf = htole64(tsf); 1305b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags = sc->sc_hwmap[rix].txflags; 1306b8e788a5SAdrian Chadd if (iswep) 1307b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_WEP; 1308b8e788a5SAdrian Chadd if (isfrag) 1309b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_FRAG; 1310b8e788a5SAdrian Chadd sc->sc_tx_th.wt_rate = sc->sc_hwmap[rix].ieeerate; 1311b8e788a5SAdrian Chadd sc->sc_tx_th.wt_txpower = ni->ni_txpower; 1312b8e788a5SAdrian Chadd sc->sc_tx_th.wt_antenna = sc->sc_txantenna; 1313b8e788a5SAdrian Chadd 1314b8e788a5SAdrian Chadd ieee80211_radiotap_tx(vap, m0); 1315b8e788a5SAdrian Chadd } 1316b8e788a5SAdrian Chadd 1317eb6f0de0SAdrian Chadd /* Blank the legacy rate array */ 1318eb6f0de0SAdrian Chadd bzero(&bf->bf_state.bfs_rc, sizeof(bf->bf_state.bfs_rc)); 1319c1782ce0SAdrian Chadd 1320b8e788a5SAdrian Chadd /* 1321eb6f0de0SAdrian Chadd * ath_buf_set_rate needs at least one rate/try to setup 1322eb6f0de0SAdrian Chadd * the rate scenario. 1323b8e788a5SAdrian Chadd */ 1324eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].rix = rix; 1325eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].tries = try0; 1326eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].ratecode = txrate; 1327eb6f0de0SAdrian Chadd 1328eb6f0de0SAdrian Chadd /* Store the decided rate index values away */ 1329eb6f0de0SAdrian Chadd bf->bf_state.bfs_pktlen = pktlen; 1330eb6f0de0SAdrian Chadd bf->bf_state.bfs_hdrlen = hdrlen; 1331eb6f0de0SAdrian Chadd bf->bf_state.bfs_atype = atype; 1332eb6f0de0SAdrian Chadd bf->bf_state.bfs_txpower = ni->ni_txpower; 1333eb6f0de0SAdrian Chadd bf->bf_state.bfs_txrate0 = txrate; 1334eb6f0de0SAdrian Chadd bf->bf_state.bfs_try0 = try0; 1335eb6f0de0SAdrian Chadd bf->bf_state.bfs_keyix = keyix; 1336eb6f0de0SAdrian Chadd bf->bf_state.bfs_txantenna = sc->sc_txantenna; 1337eb6f0de0SAdrian Chadd bf->bf_state.bfs_flags = flags; 1338b8e788a5SAdrian Chadd bf->bf_txflags = flags; 1339eb6f0de0SAdrian Chadd bf->bf_state.bfs_shpream = shortPreamble; 1340eb6f0de0SAdrian Chadd 1341eb6f0de0SAdrian Chadd /* XXX this should be done in ath_tx_setrate() */ 1342eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate0 = 0; /* ie, no hard-coded ctsrate */ 1343eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate = 0; /* calculated later */ 1344eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsduration = 0; 1345eb6f0de0SAdrian Chadd bf->bf_state.bfs_ismrr = ismrr; 1346eb6f0de0SAdrian Chadd 1347eb6f0de0SAdrian Chadd return 0; 1348eb6f0de0SAdrian Chadd } 1349eb6f0de0SAdrian Chadd 1350b8e788a5SAdrian Chadd /* 1351eb6f0de0SAdrian Chadd * Direct-dispatch the current frame to the hardware. 1352eb6f0de0SAdrian Chadd * 1353eb6f0de0SAdrian Chadd * This can be called by the net80211 code. 1354eb6f0de0SAdrian Chadd * 1355eb6f0de0SAdrian Chadd * XXX what about locking? Or, push the seqno assign into the 1356eb6f0de0SAdrian Chadd * XXX aggregate scheduler so its serialised? 1357b8e788a5SAdrian Chadd */ 1358eb6f0de0SAdrian Chadd int 1359eb6f0de0SAdrian Chadd ath_tx_start(struct ath_softc *sc, struct ieee80211_node *ni, 1360eb6f0de0SAdrian Chadd struct ath_buf *bf, struct mbuf *m0) 1361eb6f0de0SAdrian Chadd { 1362eb6f0de0SAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 1363eb6f0de0SAdrian Chadd struct ath_vap *avp = ATH_VAP(vap); 1364eb6f0de0SAdrian Chadd int r; 1365eb6f0de0SAdrian Chadd u_int pri; 1366eb6f0de0SAdrian Chadd int tid; 1367eb6f0de0SAdrian Chadd struct ath_txq *txq; 1368eb6f0de0SAdrian Chadd int ismcast; 1369eb6f0de0SAdrian Chadd const struct ieee80211_frame *wh; 1370eb6f0de0SAdrian Chadd int is_ampdu, is_ampdu_tx, is_ampdu_pending; 1371eb6f0de0SAdrian Chadd ieee80211_seq seqno; 1372eb6f0de0SAdrian Chadd uint8_t type, subtype; 1373eb6f0de0SAdrian Chadd 1374eb6f0de0SAdrian Chadd /* 1375eb6f0de0SAdrian Chadd * Determine the target hardware queue. 1376eb6f0de0SAdrian Chadd * 1377eb6f0de0SAdrian Chadd * For multicast frames, the txq gets overridden to be the 1378eb6f0de0SAdrian Chadd * software TXQ and it's done via direct-dispatch. 1379eb6f0de0SAdrian Chadd * 1380eb6f0de0SAdrian Chadd * For any other frame, we do a TID/QoS lookup inside the frame 1381eb6f0de0SAdrian Chadd * to see what the TID should be. If it's a non-QoS frame, the 1382eb6f0de0SAdrian Chadd * AC and TID are overridden. The TID/TXQ code assumes the 1383eb6f0de0SAdrian Chadd * TID is on a predictable hardware TXQ, so we don't support 1384eb6f0de0SAdrian Chadd * having a node TID queued to multiple hardware TXQs. 1385eb6f0de0SAdrian Chadd * This may change in the future but would require some locking 1386eb6f0de0SAdrian Chadd * fudgery. 1387eb6f0de0SAdrian Chadd */ 1388eb6f0de0SAdrian Chadd pri = ath_tx_getac(sc, m0); 1389eb6f0de0SAdrian Chadd tid = ath_tx_gettid(sc, m0); 1390eb6f0de0SAdrian Chadd 1391eb6f0de0SAdrian Chadd txq = sc->sc_ac2q[pri]; 1392eb6f0de0SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1393eb6f0de0SAdrian Chadd ismcast = IEEE80211_IS_MULTICAST(wh->i_addr1); 1394eb6f0de0SAdrian Chadd type = wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK; 1395eb6f0de0SAdrian Chadd subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK; 1396eb6f0de0SAdrian Chadd 1397eb6f0de0SAdrian Chadd /* A-MPDU TX */ 1398eb6f0de0SAdrian Chadd is_ampdu_tx = ath_tx_ampdu_running(sc, ATH_NODE(ni), tid); 1399eb6f0de0SAdrian Chadd is_ampdu_pending = ath_tx_ampdu_pending(sc, ATH_NODE(ni), tid); 1400eb6f0de0SAdrian Chadd is_ampdu = is_ampdu_tx | is_ampdu_pending; 1401eb6f0de0SAdrian Chadd 1402eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: tid=%d, ac=%d, is_ampdu=%d\n", 1403eb6f0de0SAdrian Chadd __func__, tid, pri, is_ampdu); 1404eb6f0de0SAdrian Chadd 1405eb6f0de0SAdrian Chadd /* Multicast frames go onto the software multicast queue */ 1406eb6f0de0SAdrian Chadd if (ismcast) 1407eb6f0de0SAdrian Chadd txq = &avp->av_mcastq; 1408eb6f0de0SAdrian Chadd 1409eb6f0de0SAdrian Chadd if ((! is_ampdu) && (vap->iv_ps_sta || avp->av_mcastq.axq_depth)) 1410eb6f0de0SAdrian Chadd txq = &avp->av_mcastq; 1411eb6f0de0SAdrian Chadd 1412eb6f0de0SAdrian Chadd /* Do the generic frame setup */ 1413eb6f0de0SAdrian Chadd /* XXX should just bzero the bf_state? */ 1414eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 1415eb6f0de0SAdrian Chadd 1416eb6f0de0SAdrian Chadd /* A-MPDU TX? Manually set sequence number */ 1417eb6f0de0SAdrian Chadd /* Don't do it whilst pending; the net80211 layer still assigns them */ 1418eb6f0de0SAdrian Chadd /* XXX do we need locking here? */ 1419eb6f0de0SAdrian Chadd if (is_ampdu_tx) { 1420eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 1421eb6f0de0SAdrian Chadd /* 1422eb6f0de0SAdrian Chadd * Always call; this function will 1423eb6f0de0SAdrian Chadd * handle making sure that null data frames 1424eb6f0de0SAdrian Chadd * don't get a sequence number from the current 1425eb6f0de0SAdrian Chadd * TID and thus mess with the BAW. 1426eb6f0de0SAdrian Chadd */ 1427eb6f0de0SAdrian Chadd seqno = ath_tx_tid_seqno_assign(sc, ni, bf, m0); 1428eb6f0de0SAdrian Chadd if (IEEE80211_QOS_HAS_SEQ(wh) && 1429eb6f0de0SAdrian Chadd subtype != IEEE80211_FC0_SUBTYPE_QOS_NULL) { 1430eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 1; 1431eb6f0de0SAdrian Chadd } 1432eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 1433c1782ce0SAdrian Chadd } 1434c1782ce0SAdrian Chadd 1435eb6f0de0SAdrian Chadd /* 1436eb6f0de0SAdrian Chadd * If needed, the sequence number has been assigned. 1437eb6f0de0SAdrian Chadd * Squirrel it away somewhere easy to get to. 1438eb6f0de0SAdrian Chadd */ 1439eb6f0de0SAdrian Chadd bf->bf_state.bfs_seqno = M_SEQNO_GET(m0) << IEEE80211_SEQ_SEQ_SHIFT; 1440b8e788a5SAdrian Chadd 1441eb6f0de0SAdrian Chadd /* Is ampdu pending? fetch the seqno and print it out */ 1442eb6f0de0SAdrian Chadd if (is_ampdu_pending) 1443eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, 1444eb6f0de0SAdrian Chadd "%s: tid %d: ampdu pending, seqno %d\n", 1445eb6f0de0SAdrian Chadd __func__, tid, M_SEQNO_GET(m0)); 1446eb6f0de0SAdrian Chadd 1447eb6f0de0SAdrian Chadd /* This also sets up the DMA map */ 1448eb6f0de0SAdrian Chadd r = ath_tx_normal_setup(sc, ni, bf, m0); 1449eb6f0de0SAdrian Chadd 1450eb6f0de0SAdrian Chadd if (r != 0) 1451eb6f0de0SAdrian Chadd return r; 1452eb6f0de0SAdrian Chadd 1453eb6f0de0SAdrian Chadd /* At this point m0 could have changed! */ 1454eb6f0de0SAdrian Chadd m0 = bf->bf_m; 1455eb6f0de0SAdrian Chadd 1456eb6f0de0SAdrian Chadd #if 1 1457eb6f0de0SAdrian Chadd /* 1458eb6f0de0SAdrian Chadd * If it's a multicast frame, do a direct-dispatch to the 1459eb6f0de0SAdrian Chadd * destination hardware queue. Don't bother software 1460eb6f0de0SAdrian Chadd * queuing it. 1461eb6f0de0SAdrian Chadd */ 1462eb6f0de0SAdrian Chadd /* 1463eb6f0de0SAdrian Chadd * If it's a BAR frame, do a direct dispatch to the 1464eb6f0de0SAdrian Chadd * destination hardware queue. Don't bother software 1465eb6f0de0SAdrian Chadd * queuing it, as the TID will now be paused. 1466eb6f0de0SAdrian Chadd * Sending a BAR frame can occur from the net80211 txa timer 1467eb6f0de0SAdrian Chadd * (ie, retries) or from the ath txtask (completion call.) 1468eb6f0de0SAdrian Chadd * It queues directly to hardware because the TID is paused 1469eb6f0de0SAdrian Chadd * at this point (and won't be unpaused until the BAR has 1470eb6f0de0SAdrian Chadd * either been TXed successfully or max retries has been 1471eb6f0de0SAdrian Chadd * reached.) 1472eb6f0de0SAdrian Chadd */ 1473eb6f0de0SAdrian Chadd if (txq == &avp->av_mcastq) { 1474eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 1475eb6f0de0SAdrian Chadd ath_tx_xmit_normal(sc, txq, bf); 1476eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 1477eb6f0de0SAdrian Chadd } else if (type == IEEE80211_FC0_TYPE_CTL && 1478eb6f0de0SAdrian Chadd subtype == IEEE80211_FC0_SUBTYPE_BAR) { 1479eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 1480eb6f0de0SAdrian Chadd "%s: BAR: TX'ing direct\n", __func__); 1481eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 1482eb6f0de0SAdrian Chadd ath_tx_xmit_normal(sc, txq, bf); 1483eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 1484eb6f0de0SAdrian Chadd } else { 1485eb6f0de0SAdrian Chadd /* add to software queue */ 1486eb6f0de0SAdrian Chadd ath_tx_swq(sc, ni, txq, bf); 1487eb6f0de0SAdrian Chadd } 1488eb6f0de0SAdrian Chadd #else 1489eb6f0de0SAdrian Chadd /* 1490eb6f0de0SAdrian Chadd * For now, since there's no software queue, 1491eb6f0de0SAdrian Chadd * direct-dispatch to the hardware. 1492eb6f0de0SAdrian Chadd */ 1493eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 1494eb6f0de0SAdrian Chadd ath_tx_xmit_normal(sc, txq, bf); 1495eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 1496eb6f0de0SAdrian Chadd #endif 1497eb6f0de0SAdrian Chadd 1498b8e788a5SAdrian Chadd return 0; 1499b8e788a5SAdrian Chadd } 1500b8e788a5SAdrian Chadd 1501b8e788a5SAdrian Chadd static int 1502b8e788a5SAdrian Chadd ath_tx_raw_start(struct ath_softc *sc, struct ieee80211_node *ni, 1503b8e788a5SAdrian Chadd struct ath_buf *bf, struct mbuf *m0, 1504b8e788a5SAdrian Chadd const struct ieee80211_bpf_params *params) 1505b8e788a5SAdrian Chadd { 1506b8e788a5SAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1507b8e788a5SAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 1508b8e788a5SAdrian Chadd struct ath_hal *ah = sc->sc_ah; 1509b8e788a5SAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 1510b8e788a5SAdrian Chadd int error, ismcast, ismrr; 1511b8e788a5SAdrian Chadd int keyix, hdrlen, pktlen, try0, txantenna; 1512eb6f0de0SAdrian Chadd u_int8_t rix, txrate; 1513b8e788a5SAdrian Chadd struct ieee80211_frame *wh; 1514eb6f0de0SAdrian Chadd u_int flags; 1515b8e788a5SAdrian Chadd HAL_PKT_TYPE atype; 1516b8e788a5SAdrian Chadd const HAL_RATE_TABLE *rt; 1517b8e788a5SAdrian Chadd struct ath_desc *ds; 1518b8e788a5SAdrian Chadd u_int pri; 1519eb6f0de0SAdrian Chadd int o_tid = -1; 1520eb6f0de0SAdrian Chadd int do_override; 1521b8e788a5SAdrian Chadd 1522b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1523b8e788a5SAdrian Chadd ismcast = IEEE80211_IS_MULTICAST(wh->i_addr1); 1524b8e788a5SAdrian Chadd hdrlen = ieee80211_anyhdrsize(wh); 1525b8e788a5SAdrian Chadd /* 1526b8e788a5SAdrian Chadd * Packet length must not include any 1527b8e788a5SAdrian Chadd * pad bytes; deduct them here. 1528b8e788a5SAdrian Chadd */ 1529b8e788a5SAdrian Chadd /* XXX honor IEEE80211_BPF_DATAPAD */ 1530b8e788a5SAdrian Chadd pktlen = m0->m_pkthdr.len - (hdrlen & 3) + IEEE80211_CRC_LEN; 1531b8e788a5SAdrian Chadd 1532eb6f0de0SAdrian Chadd 1533eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: ismcast=%d\n", 1534eb6f0de0SAdrian Chadd __func__, ismcast); 1535eb6f0de0SAdrian Chadd 153681a82688SAdrian Chadd /* Handle encryption twiddling if needed */ 1537eb6f0de0SAdrian Chadd if (! ath_tx_tag_crypto(sc, ni, 1538eb6f0de0SAdrian Chadd m0, params->ibp_flags & IEEE80211_BPF_CRYPTO, 0, 1539eb6f0de0SAdrian Chadd &hdrlen, &pktlen, &keyix)) { 1540b8e788a5SAdrian Chadd ath_freetx(m0); 1541b8e788a5SAdrian Chadd return EIO; 1542b8e788a5SAdrian Chadd } 1543b8e788a5SAdrian Chadd /* packet header may have moved, reset our local pointer */ 1544b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1545b8e788a5SAdrian Chadd 1546eb6f0de0SAdrian Chadd /* Do the generic frame setup */ 1547eb6f0de0SAdrian Chadd /* XXX should just bzero the bf_state? */ 1548eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 1549eb6f0de0SAdrian Chadd 1550b8e788a5SAdrian Chadd error = ath_tx_dmasetup(sc, bf, m0); 1551b8e788a5SAdrian Chadd if (error != 0) 1552b8e788a5SAdrian Chadd return error; 1553b8e788a5SAdrian Chadd m0 = bf->bf_m; /* NB: may have changed */ 1554b8e788a5SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 1555b8e788a5SAdrian Chadd bf->bf_node = ni; /* NB: held reference */ 1556b8e788a5SAdrian Chadd 1557b8e788a5SAdrian Chadd flags = HAL_TXDESC_CLRDMASK; /* XXX needed for crypto errs */ 1558b8e788a5SAdrian Chadd flags |= HAL_TXDESC_INTREQ; /* force interrupt */ 1559b8e788a5SAdrian Chadd if (params->ibp_flags & IEEE80211_BPF_RTS) 1560b8e788a5SAdrian Chadd flags |= HAL_TXDESC_RTSENA; 1561eb6f0de0SAdrian Chadd else if (params->ibp_flags & IEEE80211_BPF_CTS) { 1562eb6f0de0SAdrian Chadd /* XXX assume 11g/11n protection? */ 1563eb6f0de0SAdrian Chadd bf->bf_state.bfs_doprot = 1; 1564b8e788a5SAdrian Chadd flags |= HAL_TXDESC_CTSENA; 1565eb6f0de0SAdrian Chadd } 1566b8e788a5SAdrian Chadd /* XXX leave ismcast to injector? */ 1567b8e788a5SAdrian Chadd if ((params->ibp_flags & IEEE80211_BPF_NOACK) || ismcast) 1568b8e788a5SAdrian Chadd flags |= HAL_TXDESC_NOACK; 1569b8e788a5SAdrian Chadd 1570b8e788a5SAdrian Chadd rt = sc->sc_currates; 1571b8e788a5SAdrian Chadd KASSERT(rt != NULL, ("no rate table, mode %u", sc->sc_curmode)); 1572b8e788a5SAdrian Chadd rix = ath_tx_findrix(sc, params->ibp_rate0); 1573b8e788a5SAdrian Chadd txrate = rt->info[rix].rateCode; 1574b8e788a5SAdrian Chadd if (params->ibp_flags & IEEE80211_BPF_SHORTPRE) 1575b8e788a5SAdrian Chadd txrate |= rt->info[rix].shortPreamble; 1576b8e788a5SAdrian Chadd sc->sc_txrix = rix; 1577b8e788a5SAdrian Chadd try0 = params->ibp_try0; 1578b8e788a5SAdrian Chadd ismrr = (params->ibp_try1 != 0); 1579b8e788a5SAdrian Chadd txantenna = params->ibp_pri >> 2; 1580b8e788a5SAdrian Chadd if (txantenna == 0) /* XXX? */ 1581b8e788a5SAdrian Chadd txantenna = sc->sc_txantenna; 158279f02dbfSAdrian Chadd 158379f02dbfSAdrian Chadd /* 1584eb6f0de0SAdrian Chadd * Since ctsrate is fixed, store it away for later 1585eb6f0de0SAdrian Chadd * use when the descriptor fields are being set. 158679f02dbfSAdrian Chadd */ 1587eb6f0de0SAdrian Chadd if (flags & (HAL_TXDESC_RTSENA|HAL_TXDESC_CTSENA)) 1588eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate0 = params->ibp_ctsrate; 158979f02dbfSAdrian Chadd 1590b8e788a5SAdrian Chadd pri = params->ibp_pri & 3; 1591eb6f0de0SAdrian Chadd /* Override pri if the frame isn't a QoS one */ 1592eb6f0de0SAdrian Chadd if (! IEEE80211_QOS_HAS_SEQ(wh)) 1593eb6f0de0SAdrian Chadd pri = ath_tx_getac(sc, m0); 1594eb6f0de0SAdrian Chadd 1595b8e788a5SAdrian Chadd /* 1596b8e788a5SAdrian Chadd * NB: we mark all packets as type PSPOLL so the h/w won't 1597b8e788a5SAdrian Chadd * set the sequence number, duration, etc. 1598b8e788a5SAdrian Chadd */ 1599b8e788a5SAdrian Chadd atype = HAL_PKT_TYPE_PSPOLL; 1600b8e788a5SAdrian Chadd 1601b8e788a5SAdrian Chadd if (IFF_DUMPPKTS(sc, ATH_DEBUG_XMIT)) 1602b8e788a5SAdrian Chadd ieee80211_dump_pkt(ic, mtod(m0, caddr_t), m0->m_len, 1603b8e788a5SAdrian Chadd sc->sc_hwmap[rix].ieeerate, -1); 1604b8e788a5SAdrian Chadd 1605b8e788a5SAdrian Chadd if (ieee80211_radiotap_active_vap(vap)) { 1606b8e788a5SAdrian Chadd u_int64_t tsf = ath_hal_gettsf64(ah); 1607b8e788a5SAdrian Chadd 1608b8e788a5SAdrian Chadd sc->sc_tx_th.wt_tsf = htole64(tsf); 1609b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags = sc->sc_hwmap[rix].txflags; 1610b8e788a5SAdrian Chadd if (wh->i_fc[1] & IEEE80211_FC1_WEP) 1611b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_WEP; 1612b8e788a5SAdrian Chadd if (m0->m_flags & M_FRAG) 1613b8e788a5SAdrian Chadd sc->sc_tx_th.wt_flags |= IEEE80211_RADIOTAP_F_FRAG; 1614b8e788a5SAdrian Chadd sc->sc_tx_th.wt_rate = sc->sc_hwmap[rix].ieeerate; 1615b8e788a5SAdrian Chadd sc->sc_tx_th.wt_txpower = ni->ni_txpower; 1616b8e788a5SAdrian Chadd sc->sc_tx_th.wt_antenna = sc->sc_txantenna; 1617b8e788a5SAdrian Chadd 1618b8e788a5SAdrian Chadd ieee80211_radiotap_tx(vap, m0); 1619b8e788a5SAdrian Chadd } 1620b8e788a5SAdrian Chadd 1621b8e788a5SAdrian Chadd /* 1622b8e788a5SAdrian Chadd * Formulate first tx descriptor with tx controls. 1623b8e788a5SAdrian Chadd */ 1624b8e788a5SAdrian Chadd ds = bf->bf_desc; 1625b8e788a5SAdrian Chadd /* XXX check return value? */ 1626eb6f0de0SAdrian Chadd 1627eb6f0de0SAdrian Chadd /* Store the decided rate index values away */ 1628eb6f0de0SAdrian Chadd bf->bf_state.bfs_pktlen = pktlen; 1629eb6f0de0SAdrian Chadd bf->bf_state.bfs_hdrlen = hdrlen; 1630eb6f0de0SAdrian Chadd bf->bf_state.bfs_atype = atype; 1631eb6f0de0SAdrian Chadd bf->bf_state.bfs_txpower = params->ibp_power; 1632eb6f0de0SAdrian Chadd bf->bf_state.bfs_txrate0 = txrate; 1633eb6f0de0SAdrian Chadd bf->bf_state.bfs_try0 = try0; 1634eb6f0de0SAdrian Chadd bf->bf_state.bfs_keyix = keyix; 1635eb6f0de0SAdrian Chadd bf->bf_state.bfs_txantenna = txantenna; 1636eb6f0de0SAdrian Chadd bf->bf_state.bfs_flags = flags; 1637b8e788a5SAdrian Chadd bf->bf_txflags = flags; 1638eb6f0de0SAdrian Chadd bf->bf_state.bfs_shpream = 1639eb6f0de0SAdrian Chadd !! (params->ibp_flags & IEEE80211_BPF_SHORTPRE); 1640b8e788a5SAdrian Chadd 1641eb6f0de0SAdrian Chadd /* XXX this should be done in ath_tx_setrate() */ 1642eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsrate = 0; 1643eb6f0de0SAdrian Chadd bf->bf_state.bfs_ctsduration = 0; 1644eb6f0de0SAdrian Chadd bf->bf_state.bfs_ismrr = ismrr; 1645eb6f0de0SAdrian Chadd 1646eb6f0de0SAdrian Chadd /* Blank the legacy rate array */ 1647eb6f0de0SAdrian Chadd bzero(&bf->bf_state.bfs_rc, sizeof(bf->bf_state.bfs_rc)); 1648eb6f0de0SAdrian Chadd 1649eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].rix = 1650eb6f0de0SAdrian Chadd ath_tx_findrix(sc, params->ibp_rate0); 1651eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].tries = try0; 1652eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[0].ratecode = txrate; 1653c1782ce0SAdrian Chadd 1654c1782ce0SAdrian Chadd if (ismrr) { 1655eb6f0de0SAdrian Chadd int rix; 1656c1782ce0SAdrian Chadd 1657b8e788a5SAdrian Chadd rix = ath_tx_findrix(sc, params->ibp_rate1); 1658eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[1].rix = rix; 1659eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[1].tries = params->ibp_try1; 1660c1782ce0SAdrian Chadd 1661eb6f0de0SAdrian Chadd rix = ath_tx_findrix(sc, params->ibp_rate2); 1662eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[2].rix = rix; 1663eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[2].tries = params->ibp_try2; 1664eb6f0de0SAdrian Chadd 1665eb6f0de0SAdrian Chadd rix = ath_tx_findrix(sc, params->ibp_rate3); 1666eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[3].rix = rix; 1667eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[3].tries = params->ibp_try3; 1668c1782ce0SAdrian Chadd } 1669eb6f0de0SAdrian Chadd /* 1670eb6f0de0SAdrian Chadd * All the required rate control decisions have been made; 1671eb6f0de0SAdrian Chadd * fill in the rc flags. 1672eb6f0de0SAdrian Chadd */ 1673eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 1674b8e788a5SAdrian Chadd 1675b8e788a5SAdrian Chadd /* NB: no buffered multicast in power save support */ 1676eb6f0de0SAdrian Chadd 1677eb6f0de0SAdrian Chadd /* XXX If it's an ADDBA, override the correct queue */ 1678eb6f0de0SAdrian Chadd do_override = ath_tx_action_frame_override_queue(sc, ni, m0, &o_tid); 1679eb6f0de0SAdrian Chadd 1680eb6f0de0SAdrian Chadd /* Map ADDBA to the correct priority */ 1681eb6f0de0SAdrian Chadd if (do_override) { 1682eb6f0de0SAdrian Chadd #if 0 1683eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 1684eb6f0de0SAdrian Chadd "%s: overriding tid %d pri %d -> %d\n", 1685eb6f0de0SAdrian Chadd __func__, o_tid, pri, TID_TO_WME_AC(o_tid)); 1686eb6f0de0SAdrian Chadd #endif 1687eb6f0de0SAdrian Chadd pri = TID_TO_WME_AC(o_tid); 1688eb6f0de0SAdrian Chadd } 1689eb6f0de0SAdrian Chadd 1690eb6f0de0SAdrian Chadd /* 1691eb6f0de0SAdrian Chadd * If we're overiding the ADDBA destination, dump directly 1692eb6f0de0SAdrian Chadd * into the hardware queue, right after any pending 1693eb6f0de0SAdrian Chadd * frames to that node are. 1694eb6f0de0SAdrian Chadd */ 1695eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: dooverride=%d\n", 1696eb6f0de0SAdrian Chadd __func__, do_override); 1697eb6f0de0SAdrian Chadd 1698eb6f0de0SAdrian Chadd if (do_override) { 1699eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[pri]); 1700eb6f0de0SAdrian Chadd ath_tx_xmit_normal(sc, sc->sc_ac2q[pri], bf); 1701eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[pri]); 1702eb6f0de0SAdrian Chadd } else { 1703eb6f0de0SAdrian Chadd /* Queue to software queue */ 1704eb6f0de0SAdrian Chadd ath_tx_swq(sc, ni, sc->sc_ac2q[pri], bf); 1705eb6f0de0SAdrian Chadd } 1706eb6f0de0SAdrian Chadd 1707b8e788a5SAdrian Chadd return 0; 1708b8e788a5SAdrian Chadd } 1709b8e788a5SAdrian Chadd 1710eb6f0de0SAdrian Chadd /* 1711eb6f0de0SAdrian Chadd * Send a raw frame. 1712eb6f0de0SAdrian Chadd * 1713eb6f0de0SAdrian Chadd * This can be called by net80211. 1714eb6f0de0SAdrian Chadd */ 1715b8e788a5SAdrian Chadd int 1716b8e788a5SAdrian Chadd ath_raw_xmit(struct ieee80211_node *ni, struct mbuf *m, 1717b8e788a5SAdrian Chadd const struct ieee80211_bpf_params *params) 1718b8e788a5SAdrian Chadd { 1719b8e788a5SAdrian Chadd struct ieee80211com *ic = ni->ni_ic; 1720b8e788a5SAdrian Chadd struct ifnet *ifp = ic->ic_ifp; 1721b8e788a5SAdrian Chadd struct ath_softc *sc = ifp->if_softc; 1722b8e788a5SAdrian Chadd struct ath_buf *bf; 1723b8e788a5SAdrian Chadd int error; 1724b8e788a5SAdrian Chadd 1725ef27340cSAdrian Chadd ATH_PCU_LOCK(sc); 1726ef27340cSAdrian Chadd if (sc->sc_inreset_cnt > 0) { 1727ef27340cSAdrian Chadd device_printf(sc->sc_dev, "%s: sc_inreset_cnt > 0; bailing\n", 1728ef27340cSAdrian Chadd __func__); 1729ef27340cSAdrian Chadd error = EIO; 1730ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 1731ef27340cSAdrian Chadd goto bad0; 1732ef27340cSAdrian Chadd } 1733ef27340cSAdrian Chadd sc->sc_txstart_cnt++; 1734ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 1735ef27340cSAdrian Chadd 1736b8e788a5SAdrian Chadd if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0 || sc->sc_invalid) { 1737b8e788a5SAdrian Chadd DPRINTF(sc, ATH_DEBUG_XMIT, "%s: discard frame, %s", __func__, 1738b8e788a5SAdrian Chadd (ifp->if_drv_flags & IFF_DRV_RUNNING) == 0 ? 1739b8e788a5SAdrian Chadd "!running" : "invalid"); 1740b8e788a5SAdrian Chadd m_freem(m); 1741b8e788a5SAdrian Chadd error = ENETDOWN; 1742b8e788a5SAdrian Chadd goto bad; 1743b8e788a5SAdrian Chadd } 1744b8e788a5SAdrian Chadd /* 1745b8e788a5SAdrian Chadd * Grab a TX buffer and associated resources. 1746b8e788a5SAdrian Chadd */ 1747b8e788a5SAdrian Chadd bf = ath_getbuf(sc); 1748b8e788a5SAdrian Chadd if (bf == NULL) { 1749b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_nobuf++; 1750b8e788a5SAdrian Chadd m_freem(m); 1751b8e788a5SAdrian Chadd error = ENOBUFS; 1752b8e788a5SAdrian Chadd goto bad; 1753b8e788a5SAdrian Chadd } 1754b8e788a5SAdrian Chadd 1755b8e788a5SAdrian Chadd if (params == NULL) { 1756b8e788a5SAdrian Chadd /* 1757b8e788a5SAdrian Chadd * Legacy path; interpret frame contents to decide 1758b8e788a5SAdrian Chadd * precisely how to send the frame. 1759b8e788a5SAdrian Chadd */ 1760b8e788a5SAdrian Chadd if (ath_tx_start(sc, ni, bf, m)) { 1761b8e788a5SAdrian Chadd error = EIO; /* XXX */ 1762b8e788a5SAdrian Chadd goto bad2; 1763b8e788a5SAdrian Chadd } 1764b8e788a5SAdrian Chadd } else { 1765b8e788a5SAdrian Chadd /* 1766b8e788a5SAdrian Chadd * Caller supplied explicit parameters to use in 1767b8e788a5SAdrian Chadd * sending the frame. 1768b8e788a5SAdrian Chadd */ 1769b8e788a5SAdrian Chadd if (ath_tx_raw_start(sc, ni, bf, m, params)) { 1770b8e788a5SAdrian Chadd error = EIO; /* XXX */ 1771b8e788a5SAdrian Chadd goto bad2; 1772b8e788a5SAdrian Chadd } 1773b8e788a5SAdrian Chadd } 1774b8e788a5SAdrian Chadd sc->sc_wd_timer = 5; 1775b8e788a5SAdrian Chadd ifp->if_opackets++; 1776b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_raw++; 1777b8e788a5SAdrian Chadd 1778ef27340cSAdrian Chadd ATH_PCU_LOCK(sc); 1779ef27340cSAdrian Chadd sc->sc_txstart_cnt--; 1780ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 1781ef27340cSAdrian Chadd 1782b8e788a5SAdrian Chadd return 0; 1783b8e788a5SAdrian Chadd bad2: 1784b8e788a5SAdrian Chadd ATH_TXBUF_LOCK(sc); 17856b349e5aSAdrian Chadd TAILQ_INSERT_HEAD(&sc->sc_txbuf, bf, bf_list); 1786b8e788a5SAdrian Chadd ATH_TXBUF_UNLOCK(sc); 1787b8e788a5SAdrian Chadd bad: 1788ef27340cSAdrian Chadd ATH_PCU_LOCK(sc); 1789ef27340cSAdrian Chadd sc->sc_txstart_cnt--; 1790ef27340cSAdrian Chadd ATH_PCU_UNLOCK(sc); 1791ef27340cSAdrian Chadd bad0: 1792b8e788a5SAdrian Chadd ifp->if_oerrors++; 1793b8e788a5SAdrian Chadd sc->sc_stats.ast_tx_raw_fail++; 1794b8e788a5SAdrian Chadd ieee80211_free_node(ni); 1795ef27340cSAdrian Chadd 1796b8e788a5SAdrian Chadd return error; 1797b8e788a5SAdrian Chadd } 1798eb6f0de0SAdrian Chadd 1799eb6f0de0SAdrian Chadd /* Some helper functions */ 1800eb6f0de0SAdrian Chadd 1801eb6f0de0SAdrian Chadd /* 1802eb6f0de0SAdrian Chadd * ADDBA (and potentially others) need to be placed in the same 1803eb6f0de0SAdrian Chadd * hardware queue as the TID/node it's relating to. This is so 1804eb6f0de0SAdrian Chadd * it goes out after any pending non-aggregate frames to the 1805eb6f0de0SAdrian Chadd * same node/TID. 1806eb6f0de0SAdrian Chadd * 1807eb6f0de0SAdrian Chadd * If this isn't done, the ADDBA can go out before the frames 1808eb6f0de0SAdrian Chadd * queued in hardware. Even though these frames have a sequence 1809eb6f0de0SAdrian Chadd * number -earlier- than the ADDBA can be transmitted (but 1810eb6f0de0SAdrian Chadd * no frames whose sequence numbers are after the ADDBA should 1811eb6f0de0SAdrian Chadd * be!) they'll arrive after the ADDBA - and the receiving end 1812eb6f0de0SAdrian Chadd * will simply drop them as being out of the BAW. 1813eb6f0de0SAdrian Chadd * 1814eb6f0de0SAdrian Chadd * The frames can't be appended to the TID software queue - it'll 1815eb6f0de0SAdrian Chadd * never be sent out. So these frames have to be directly 1816eb6f0de0SAdrian Chadd * dispatched to the hardware, rather than queued in software. 1817eb6f0de0SAdrian Chadd * So if this function returns true, the TXQ has to be 1818eb6f0de0SAdrian Chadd * overridden and it has to be directly dispatched. 1819eb6f0de0SAdrian Chadd * 1820eb6f0de0SAdrian Chadd * It's a dirty hack, but someone's gotta do it. 1821eb6f0de0SAdrian Chadd */ 1822eb6f0de0SAdrian Chadd 1823eb6f0de0SAdrian Chadd /* 1824eb6f0de0SAdrian Chadd * XXX doesn't belong here! 1825eb6f0de0SAdrian Chadd */ 1826eb6f0de0SAdrian Chadd static int 1827eb6f0de0SAdrian Chadd ieee80211_is_action(struct ieee80211_frame *wh) 1828eb6f0de0SAdrian Chadd { 1829eb6f0de0SAdrian Chadd /* Type: Management frame? */ 1830eb6f0de0SAdrian Chadd if ((wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) != 1831eb6f0de0SAdrian Chadd IEEE80211_FC0_TYPE_MGT) 1832eb6f0de0SAdrian Chadd return 0; 1833eb6f0de0SAdrian Chadd 1834eb6f0de0SAdrian Chadd /* Subtype: Action frame? */ 1835eb6f0de0SAdrian Chadd if ((wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK) != 1836eb6f0de0SAdrian Chadd IEEE80211_FC0_SUBTYPE_ACTION) 1837eb6f0de0SAdrian Chadd return 0; 1838eb6f0de0SAdrian Chadd 1839eb6f0de0SAdrian Chadd return 1; 1840eb6f0de0SAdrian Chadd } 1841eb6f0de0SAdrian Chadd 1842eb6f0de0SAdrian Chadd #define MS(_v, _f) (((_v) & _f) >> _f##_S) 1843eb6f0de0SAdrian Chadd /* 1844eb6f0de0SAdrian Chadd * Return an alternate TID for ADDBA request frames. 1845eb6f0de0SAdrian Chadd * 1846eb6f0de0SAdrian Chadd * Yes, this likely should be done in the net80211 layer. 1847eb6f0de0SAdrian Chadd */ 1848eb6f0de0SAdrian Chadd static int 1849eb6f0de0SAdrian Chadd ath_tx_action_frame_override_queue(struct ath_softc *sc, 1850eb6f0de0SAdrian Chadd struct ieee80211_node *ni, 1851eb6f0de0SAdrian Chadd struct mbuf *m0, int *tid) 1852eb6f0de0SAdrian Chadd { 1853eb6f0de0SAdrian Chadd struct ieee80211_frame *wh = mtod(m0, struct ieee80211_frame *); 1854eb6f0de0SAdrian Chadd struct ieee80211_action_ba_addbarequest *ia; 1855eb6f0de0SAdrian Chadd uint8_t *frm; 1856eb6f0de0SAdrian Chadd uint16_t baparamset; 1857eb6f0de0SAdrian Chadd 1858eb6f0de0SAdrian Chadd /* Not action frame? Bail */ 1859eb6f0de0SAdrian Chadd if (! ieee80211_is_action(wh)) 1860eb6f0de0SAdrian Chadd return 0; 1861eb6f0de0SAdrian Chadd 1862eb6f0de0SAdrian Chadd /* XXX Not needed for frames we send? */ 1863eb6f0de0SAdrian Chadd #if 0 1864eb6f0de0SAdrian Chadd /* Correct length? */ 1865eb6f0de0SAdrian Chadd if (! ieee80211_parse_action(ni, m)) 1866eb6f0de0SAdrian Chadd return 0; 1867eb6f0de0SAdrian Chadd #endif 1868eb6f0de0SAdrian Chadd 1869eb6f0de0SAdrian Chadd /* Extract out action frame */ 1870eb6f0de0SAdrian Chadd frm = (u_int8_t *)&wh[1]; 1871eb6f0de0SAdrian Chadd ia = (struct ieee80211_action_ba_addbarequest *) frm; 1872eb6f0de0SAdrian Chadd 1873eb6f0de0SAdrian Chadd /* Not ADDBA? Bail */ 1874eb6f0de0SAdrian Chadd if (ia->rq_header.ia_category != IEEE80211_ACTION_CAT_BA) 1875eb6f0de0SAdrian Chadd return 0; 1876eb6f0de0SAdrian Chadd if (ia->rq_header.ia_action != IEEE80211_ACTION_BA_ADDBA_REQUEST) 1877eb6f0de0SAdrian Chadd return 0; 1878eb6f0de0SAdrian Chadd 1879eb6f0de0SAdrian Chadd /* Extract TID, return it */ 1880eb6f0de0SAdrian Chadd baparamset = le16toh(ia->rq_baparamset); 1881eb6f0de0SAdrian Chadd *tid = (int) MS(baparamset, IEEE80211_BAPS_TID); 1882eb6f0de0SAdrian Chadd 1883eb6f0de0SAdrian Chadd return 1; 1884eb6f0de0SAdrian Chadd } 1885eb6f0de0SAdrian Chadd #undef MS 1886eb6f0de0SAdrian Chadd 1887eb6f0de0SAdrian Chadd /* Per-node software queue operations */ 1888eb6f0de0SAdrian Chadd 1889eb6f0de0SAdrian Chadd /* 1890eb6f0de0SAdrian Chadd * Add the current packet to the given BAW. 1891eb6f0de0SAdrian Chadd * It is assumed that the current packet 1892eb6f0de0SAdrian Chadd * 1893eb6f0de0SAdrian Chadd * + fits inside the BAW; 1894eb6f0de0SAdrian Chadd * + already has had a sequence number allocated. 1895eb6f0de0SAdrian Chadd * 1896eb6f0de0SAdrian Chadd * Since the BAW status may be modified by both the ath task and 1897eb6f0de0SAdrian Chadd * the net80211/ifnet contexts, the TID must be locked. 1898eb6f0de0SAdrian Chadd */ 1899eb6f0de0SAdrian Chadd void 1900eb6f0de0SAdrian Chadd ath_tx_addto_baw(struct ath_softc *sc, struct ath_node *an, 1901eb6f0de0SAdrian Chadd struct ath_tid *tid, struct ath_buf *bf) 1902eb6f0de0SAdrian Chadd { 1903eb6f0de0SAdrian Chadd int index, cindex; 1904eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 1905eb6f0de0SAdrian Chadd 1906eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[tid->ac]); 1907eb6f0de0SAdrian Chadd 1908eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_isretried) 1909eb6f0de0SAdrian Chadd return; 1910eb6f0de0SAdrian Chadd 1911eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 1912eb6f0de0SAdrian Chadd 1913eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_addedbaw) 1914eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 1915*d4365d16SAdrian Chadd "%s: re-added? tid=%d, seqno %d; window %d:%d; " 1916*d4365d16SAdrian Chadd "baw head=%d tail=%d\n", 1917eb6f0de0SAdrian Chadd __func__, tid->tid, SEQNO(bf->bf_state.bfs_seqno), 1918*d4365d16SAdrian Chadd tap->txa_start, tap->txa_wnd, tid->baw_head, 1919*d4365d16SAdrian Chadd tid->baw_tail); 1920eb6f0de0SAdrian Chadd 1921eb6f0de0SAdrian Chadd /* 1922eb6f0de0SAdrian Chadd * ni->ni_txseqs[] is the currently allocated seqno. 1923eb6f0de0SAdrian Chadd * the txa state contains the current baw start. 1924eb6f0de0SAdrian Chadd */ 1925eb6f0de0SAdrian Chadd index = ATH_BA_INDEX(tap->txa_start, SEQNO(bf->bf_state.bfs_seqno)); 1926eb6f0de0SAdrian Chadd cindex = (tid->baw_head + index) & (ATH_TID_MAX_BUFS - 1); 1927eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_BAW, 1928*d4365d16SAdrian Chadd "%s: tid=%d, seqno %d; window %d:%d; index=%d cindex=%d " 1929*d4365d16SAdrian Chadd "baw head=%d tail=%d\n", 1930eb6f0de0SAdrian Chadd __func__, tid->tid, SEQNO(bf->bf_state.bfs_seqno), 1931*d4365d16SAdrian Chadd tap->txa_start, tap->txa_wnd, index, cindex, tid->baw_head, 1932*d4365d16SAdrian Chadd tid->baw_tail); 1933eb6f0de0SAdrian Chadd 1934eb6f0de0SAdrian Chadd 1935eb6f0de0SAdrian Chadd #if 0 1936eb6f0de0SAdrian Chadd assert(tid->tx_buf[cindex] == NULL); 1937eb6f0de0SAdrian Chadd #endif 1938eb6f0de0SAdrian Chadd if (tid->tx_buf[cindex] != NULL) { 1939eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 1940eb6f0de0SAdrian Chadd "%s: ba packet dup (index=%d, cindex=%d, " 1941eb6f0de0SAdrian Chadd "head=%d, tail=%d)\n", 1942eb6f0de0SAdrian Chadd __func__, index, cindex, tid->baw_head, tid->baw_tail); 1943eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 1944eb6f0de0SAdrian Chadd "%s: BA bf: %p; seqno=%d ; new bf: %p; seqno=%d\n", 1945eb6f0de0SAdrian Chadd __func__, 1946eb6f0de0SAdrian Chadd tid->tx_buf[cindex], 1947eb6f0de0SAdrian Chadd SEQNO(tid->tx_buf[cindex]->bf_state.bfs_seqno), 1948eb6f0de0SAdrian Chadd bf, 1949eb6f0de0SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno) 1950eb6f0de0SAdrian Chadd ); 1951eb6f0de0SAdrian Chadd } 1952eb6f0de0SAdrian Chadd tid->tx_buf[cindex] = bf; 1953eb6f0de0SAdrian Chadd 1954*d4365d16SAdrian Chadd if (index >= ((tid->baw_tail - tid->baw_head) & 1955*d4365d16SAdrian Chadd (ATH_TID_MAX_BUFS - 1))) { 1956eb6f0de0SAdrian Chadd tid->baw_tail = cindex; 1957eb6f0de0SAdrian Chadd INCR(tid->baw_tail, ATH_TID_MAX_BUFS); 1958eb6f0de0SAdrian Chadd } 1959eb6f0de0SAdrian Chadd } 1960eb6f0de0SAdrian Chadd 1961eb6f0de0SAdrian Chadd /* 196238962489SAdrian Chadd * Flip the BAW buffer entry over from the existing one to the new one. 196338962489SAdrian Chadd * 196438962489SAdrian Chadd * When software retransmitting a (sub-)frame, it is entirely possible that 196538962489SAdrian Chadd * the frame ath_buf is marked as BUSY and can't be immediately reused. 196638962489SAdrian Chadd * In that instance the buffer is cloned and the new buffer is used for 196738962489SAdrian Chadd * retransmit. We thus need to update the ath_buf slot in the BAW buf 196838962489SAdrian Chadd * tracking array to maintain consistency. 196938962489SAdrian Chadd */ 197038962489SAdrian Chadd static void 197138962489SAdrian Chadd ath_tx_switch_baw_buf(struct ath_softc *sc, struct ath_node *an, 197238962489SAdrian Chadd struct ath_tid *tid, struct ath_buf *old_bf, struct ath_buf *new_bf) 197338962489SAdrian Chadd { 197438962489SAdrian Chadd int index, cindex; 197538962489SAdrian Chadd struct ieee80211_tx_ampdu *tap; 197638962489SAdrian Chadd int seqno = SEQNO(old_bf->bf_state.bfs_seqno); 197738962489SAdrian Chadd 197838962489SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[tid->ac]); 197938962489SAdrian Chadd 198038962489SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 198138962489SAdrian Chadd index = ATH_BA_INDEX(tap->txa_start, seqno); 198238962489SAdrian Chadd cindex = (tid->baw_head + index) & (ATH_TID_MAX_BUFS - 1); 198338962489SAdrian Chadd 198438962489SAdrian Chadd /* 198538962489SAdrian Chadd * Just warn for now; if it happens then we should find out 198638962489SAdrian Chadd * about it. It's highly likely the aggregation session will 198738962489SAdrian Chadd * soon hang. 198838962489SAdrian Chadd */ 198938962489SAdrian Chadd if (old_bf->bf_state.bfs_seqno != new_bf->bf_state.bfs_seqno) { 199038962489SAdrian Chadd device_printf(sc->sc_dev, "%s: retransmitted buffer" 199138962489SAdrian Chadd " has mismatching seqno's, BA session may hang.\n", 199238962489SAdrian Chadd __func__); 199338962489SAdrian Chadd device_printf(sc->sc_dev, "%s: old seqno=%d, new_seqno=%d\n", 199438962489SAdrian Chadd __func__, 199538962489SAdrian Chadd old_bf->bf_state.bfs_seqno, 199638962489SAdrian Chadd new_bf->bf_state.bfs_seqno); 199738962489SAdrian Chadd } 199838962489SAdrian Chadd 199938962489SAdrian Chadd if (tid->tx_buf[cindex] != old_bf) { 200038962489SAdrian Chadd device_printf(sc->sc_dev, "%s: ath_buf pointer incorrect; " 200138962489SAdrian Chadd " has m BA session may hang.\n", 200238962489SAdrian Chadd __func__); 200338962489SAdrian Chadd device_printf(sc->sc_dev, "%s: old bf=%p, new bf=%p\n", 200438962489SAdrian Chadd __func__, 200538962489SAdrian Chadd old_bf, new_bf); 200638962489SAdrian Chadd } 200738962489SAdrian Chadd 200838962489SAdrian Chadd tid->tx_buf[cindex] = new_bf; 200938962489SAdrian Chadd } 201038962489SAdrian Chadd 201138962489SAdrian Chadd /* 2012eb6f0de0SAdrian Chadd * seq_start - left edge of BAW 2013eb6f0de0SAdrian Chadd * seq_next - current/next sequence number to allocate 2014eb6f0de0SAdrian Chadd * 2015eb6f0de0SAdrian Chadd * Since the BAW status may be modified by both the ath task and 2016eb6f0de0SAdrian Chadd * the net80211/ifnet contexts, the TID must be locked. 2017eb6f0de0SAdrian Chadd */ 2018eb6f0de0SAdrian Chadd static void 2019eb6f0de0SAdrian Chadd ath_tx_update_baw(struct ath_softc *sc, struct ath_node *an, 2020eb6f0de0SAdrian Chadd struct ath_tid *tid, const struct ath_buf *bf) 2021eb6f0de0SAdrian Chadd { 2022eb6f0de0SAdrian Chadd int index, cindex; 2023eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2024eb6f0de0SAdrian Chadd int seqno = SEQNO(bf->bf_state.bfs_seqno); 2025eb6f0de0SAdrian Chadd 2026eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[tid->ac]); 2027eb6f0de0SAdrian Chadd 2028eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 2029eb6f0de0SAdrian Chadd index = ATH_BA_INDEX(tap->txa_start, seqno); 2030eb6f0de0SAdrian Chadd cindex = (tid->baw_head + index) & (ATH_TID_MAX_BUFS - 1); 2031eb6f0de0SAdrian Chadd 2032eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_BAW, 2033*d4365d16SAdrian Chadd "%s: tid=%d, baw=%d:%d, seqno=%d, index=%d, cindex=%d, " 2034*d4365d16SAdrian Chadd "baw head=%d, tail=%d\n", 2035eb6f0de0SAdrian Chadd __func__, tid->tid, tap->txa_start, tap->txa_wnd, seqno, index, 2036eb6f0de0SAdrian Chadd cindex, tid->baw_head, tid->baw_tail); 2037eb6f0de0SAdrian Chadd 2038eb6f0de0SAdrian Chadd /* 2039eb6f0de0SAdrian Chadd * If this occurs then we have a big problem - something else 2040eb6f0de0SAdrian Chadd * has slid tap->txa_start along without updating the BAW 2041eb6f0de0SAdrian Chadd * tracking start/end pointers. Thus the TX BAW state is now 2042eb6f0de0SAdrian Chadd * completely busted. 2043eb6f0de0SAdrian Chadd * 2044eb6f0de0SAdrian Chadd * But for now, since I haven't yet fixed TDMA and buffer cloning, 2045eb6f0de0SAdrian Chadd * it's quite possible that a cloned buffer is making its way 2046eb6f0de0SAdrian Chadd * here and causing it to fire off. Disable TDMA for now. 2047eb6f0de0SAdrian Chadd */ 2048eb6f0de0SAdrian Chadd if (tid->tx_buf[cindex] != bf) { 2049eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2050eb6f0de0SAdrian Chadd "%s: comp bf=%p, seq=%d; slot bf=%p, seqno=%d\n", 2051eb6f0de0SAdrian Chadd __func__, 2052eb6f0de0SAdrian Chadd bf, SEQNO(bf->bf_state.bfs_seqno), 2053eb6f0de0SAdrian Chadd tid->tx_buf[cindex], 2054eb6f0de0SAdrian Chadd SEQNO(tid->tx_buf[cindex]->bf_state.bfs_seqno)); 2055eb6f0de0SAdrian Chadd } 2056eb6f0de0SAdrian Chadd 2057eb6f0de0SAdrian Chadd tid->tx_buf[cindex] = NULL; 2058eb6f0de0SAdrian Chadd 2059*d4365d16SAdrian Chadd while (tid->baw_head != tid->baw_tail && 2060*d4365d16SAdrian Chadd !tid->tx_buf[tid->baw_head]) { 2061eb6f0de0SAdrian Chadd INCR(tap->txa_start, IEEE80211_SEQ_RANGE); 2062eb6f0de0SAdrian Chadd INCR(tid->baw_head, ATH_TID_MAX_BUFS); 2063eb6f0de0SAdrian Chadd } 2064*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_BAW, 2065*d4365d16SAdrian Chadd "%s: baw is now %d:%d, baw head=%d\n", 2066eb6f0de0SAdrian Chadd __func__, tap->txa_start, tap->txa_wnd, tid->baw_head); 2067eb6f0de0SAdrian Chadd } 2068eb6f0de0SAdrian Chadd 2069eb6f0de0SAdrian Chadd /* 2070eb6f0de0SAdrian Chadd * Mark the current node/TID as ready to TX. 2071eb6f0de0SAdrian Chadd * 2072eb6f0de0SAdrian Chadd * This is done to make it easy for the software scheduler to 2073eb6f0de0SAdrian Chadd * find which nodes have data to send. 2074eb6f0de0SAdrian Chadd * 2075eb6f0de0SAdrian Chadd * The TXQ lock must be held. 2076eb6f0de0SAdrian Chadd */ 2077eb6f0de0SAdrian Chadd static void 2078eb6f0de0SAdrian Chadd ath_tx_tid_sched(struct ath_softc *sc, struct ath_tid *tid) 2079eb6f0de0SAdrian Chadd { 2080eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[tid->ac]; 2081eb6f0de0SAdrian Chadd 2082eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 2083eb6f0de0SAdrian Chadd 2084eb6f0de0SAdrian Chadd if (tid->paused) 2085eb6f0de0SAdrian Chadd return; /* paused, can't schedule yet */ 2086eb6f0de0SAdrian Chadd 2087eb6f0de0SAdrian Chadd if (tid->sched) 2088eb6f0de0SAdrian Chadd return; /* already scheduled */ 2089eb6f0de0SAdrian Chadd 2090eb6f0de0SAdrian Chadd tid->sched = 1; 2091eb6f0de0SAdrian Chadd 2092eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(&txq->axq_tidq, tid, axq_qelem); 2093eb6f0de0SAdrian Chadd } 2094eb6f0de0SAdrian Chadd 2095eb6f0de0SAdrian Chadd /* 2096eb6f0de0SAdrian Chadd * Mark the current node as no longer needing to be polled for 2097eb6f0de0SAdrian Chadd * TX packets. 2098eb6f0de0SAdrian Chadd * 2099eb6f0de0SAdrian Chadd * The TXQ lock must be held. 2100eb6f0de0SAdrian Chadd */ 2101eb6f0de0SAdrian Chadd static void 2102eb6f0de0SAdrian Chadd ath_tx_tid_unsched(struct ath_softc *sc, struct ath_tid *tid) 2103eb6f0de0SAdrian Chadd { 2104eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[tid->ac]; 2105eb6f0de0SAdrian Chadd 2106eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 2107eb6f0de0SAdrian Chadd 2108eb6f0de0SAdrian Chadd if (tid->sched == 0) 2109eb6f0de0SAdrian Chadd return; 2110eb6f0de0SAdrian Chadd 2111eb6f0de0SAdrian Chadd tid->sched = 0; 2112eb6f0de0SAdrian Chadd TAILQ_REMOVE(&txq->axq_tidq, tid, axq_qelem); 2113eb6f0de0SAdrian Chadd } 2114eb6f0de0SAdrian Chadd 2115eb6f0de0SAdrian Chadd /* 2116eb6f0de0SAdrian Chadd * Assign a sequence number manually to the given frame. 2117eb6f0de0SAdrian Chadd * 2118eb6f0de0SAdrian Chadd * This should only be called for A-MPDU TX frames. 2119eb6f0de0SAdrian Chadd */ 2120eb6f0de0SAdrian Chadd static ieee80211_seq 2121eb6f0de0SAdrian Chadd ath_tx_tid_seqno_assign(struct ath_softc *sc, struct ieee80211_node *ni, 2122eb6f0de0SAdrian Chadd struct ath_buf *bf, struct mbuf *m0) 2123eb6f0de0SAdrian Chadd { 2124eb6f0de0SAdrian Chadd struct ieee80211_frame *wh; 2125eb6f0de0SAdrian Chadd int tid, pri; 2126eb6f0de0SAdrian Chadd ieee80211_seq seqno; 2127eb6f0de0SAdrian Chadd uint8_t subtype; 2128eb6f0de0SAdrian Chadd 2129eb6f0de0SAdrian Chadd /* TID lookup */ 2130eb6f0de0SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 2131eb6f0de0SAdrian Chadd pri = M_WME_GETAC(m0); /* honor classification */ 2132eb6f0de0SAdrian Chadd tid = WME_AC_TO_TID(pri); 2133eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: pri=%d, tid=%d, qos has seq=%d\n", 2134eb6f0de0SAdrian Chadd __func__, pri, tid, IEEE80211_QOS_HAS_SEQ(wh)); 2135eb6f0de0SAdrian Chadd 2136eb6f0de0SAdrian Chadd /* XXX Is it a control frame? Ignore */ 2137eb6f0de0SAdrian Chadd 2138eb6f0de0SAdrian Chadd /* Does the packet require a sequence number? */ 2139eb6f0de0SAdrian Chadd if (! IEEE80211_QOS_HAS_SEQ(wh)) 2140eb6f0de0SAdrian Chadd return -1; 2141eb6f0de0SAdrian Chadd 2142eb6f0de0SAdrian Chadd /* 2143eb6f0de0SAdrian Chadd * Is it a QOS NULL Data frame? Give it a sequence number from 2144eb6f0de0SAdrian Chadd * the default TID (IEEE80211_NONQOS_TID.) 2145eb6f0de0SAdrian Chadd * 2146eb6f0de0SAdrian Chadd * The RX path of everything I've looked at doesn't include the NULL 2147eb6f0de0SAdrian Chadd * data frame sequence number in the aggregation state updates, so 2148eb6f0de0SAdrian Chadd * assigning it a sequence number there will cause a BAW hole on the 2149eb6f0de0SAdrian Chadd * RX side. 2150eb6f0de0SAdrian Chadd */ 2151eb6f0de0SAdrian Chadd subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK; 2152eb6f0de0SAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_QOS_NULL) { 2153eb6f0de0SAdrian Chadd seqno = ni->ni_txseqs[IEEE80211_NONQOS_TID]; 2154eb6f0de0SAdrian Chadd INCR(ni->ni_txseqs[IEEE80211_NONQOS_TID], IEEE80211_SEQ_RANGE); 2155eb6f0de0SAdrian Chadd } else { 2156eb6f0de0SAdrian Chadd /* Manually assign sequence number */ 2157eb6f0de0SAdrian Chadd seqno = ni->ni_txseqs[tid]; 2158eb6f0de0SAdrian Chadd INCR(ni->ni_txseqs[tid], IEEE80211_SEQ_RANGE); 2159eb6f0de0SAdrian Chadd } 2160eb6f0de0SAdrian Chadd *(uint16_t *)&wh->i_seq[0] = htole16(seqno << IEEE80211_SEQ_SEQ_SHIFT); 2161eb6f0de0SAdrian Chadd M_SEQNO_SET(m0, seqno); 2162eb6f0de0SAdrian Chadd 2163eb6f0de0SAdrian Chadd /* Return so caller can do something with it if needed */ 2164eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: -> seqno=%d\n", __func__, seqno); 2165eb6f0de0SAdrian Chadd return seqno; 2166eb6f0de0SAdrian Chadd } 2167eb6f0de0SAdrian Chadd 2168eb6f0de0SAdrian Chadd /* 2169eb6f0de0SAdrian Chadd * Attempt to direct dispatch an aggregate frame to hardware. 2170eb6f0de0SAdrian Chadd * If the frame is out of BAW, queue. 2171eb6f0de0SAdrian Chadd * Otherwise, schedule it as a single frame. 2172eb6f0de0SAdrian Chadd */ 2173eb6f0de0SAdrian Chadd static void 2174eb6f0de0SAdrian Chadd ath_tx_xmit_aggr(struct ath_softc *sc, struct ath_node *an, struct ath_buf *bf) 2175eb6f0de0SAdrian Chadd { 2176eb6f0de0SAdrian Chadd struct ath_tid *tid = &an->an_tid[bf->bf_state.bfs_tid]; 2177eb6f0de0SAdrian Chadd struct ath_txq *txq = bf->bf_state.bfs_txq; 2178eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2179eb6f0de0SAdrian Chadd 2180eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 2181eb6f0de0SAdrian Chadd 2182eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 2183eb6f0de0SAdrian Chadd 2184eb6f0de0SAdrian Chadd /* paused? queue */ 2185eb6f0de0SAdrian Chadd if (tid->paused) { 2186eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(tid, bf, bf_list); 2187eb6f0de0SAdrian Chadd return; 2188eb6f0de0SAdrian Chadd } 2189eb6f0de0SAdrian Chadd 2190eb6f0de0SAdrian Chadd /* outside baw? queue */ 2191eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_dobaw && 2192eb6f0de0SAdrian Chadd (! BAW_WITHIN(tap->txa_start, tap->txa_wnd, 2193eb6f0de0SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno)))) { 2194eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(tid, bf, bf_list); 2195eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, tid); 2196eb6f0de0SAdrian Chadd return; 2197eb6f0de0SAdrian Chadd } 2198eb6f0de0SAdrian Chadd 2199eb6f0de0SAdrian Chadd /* Direct dispatch to hardware */ 2200eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(sc, bf); 2201eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 2202eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 2203eb6f0de0SAdrian Chadd ath_tx_setds(sc, bf); 2204eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, bf->bf_node, bf); 2205eb6f0de0SAdrian Chadd ath_tx_chaindesclist(sc, bf); 2206eb6f0de0SAdrian Chadd 2207eb6f0de0SAdrian Chadd /* Statistics */ 2208eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_low_hwq_single_pkt++; 2209eb6f0de0SAdrian Chadd 2210eb6f0de0SAdrian Chadd /* Track per-TID hardware queue depth correctly */ 2211eb6f0de0SAdrian Chadd tid->hwq_depth++; 2212eb6f0de0SAdrian Chadd 2213eb6f0de0SAdrian Chadd /* Add to BAW */ 2214eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_dobaw) { 2215eb6f0de0SAdrian Chadd ath_tx_addto_baw(sc, an, tid, bf); 2216eb6f0de0SAdrian Chadd bf->bf_state.bfs_addedbaw = 1; 2217eb6f0de0SAdrian Chadd } 2218eb6f0de0SAdrian Chadd 2219eb6f0de0SAdrian Chadd /* Set completion handler, multi-frame aggregate or not */ 2220eb6f0de0SAdrian Chadd bf->bf_comp = ath_tx_aggr_comp; 2221eb6f0de0SAdrian Chadd 2222eb6f0de0SAdrian Chadd /* Hand off to hardware */ 2223eb6f0de0SAdrian Chadd ath_tx_handoff(sc, txq, bf); 2224eb6f0de0SAdrian Chadd } 2225eb6f0de0SAdrian Chadd 2226eb6f0de0SAdrian Chadd /* 2227eb6f0de0SAdrian Chadd * Attempt to send the packet. 2228eb6f0de0SAdrian Chadd * If the queue isn't busy, direct-dispatch. 2229eb6f0de0SAdrian Chadd * If the queue is busy enough, queue the given packet on the 2230eb6f0de0SAdrian Chadd * relevant software queue. 2231eb6f0de0SAdrian Chadd */ 2232eb6f0de0SAdrian Chadd void 2233eb6f0de0SAdrian Chadd ath_tx_swq(struct ath_softc *sc, struct ieee80211_node *ni, struct ath_txq *txq, 2234eb6f0de0SAdrian Chadd struct ath_buf *bf) 2235eb6f0de0SAdrian Chadd { 2236eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2237eb6f0de0SAdrian Chadd struct ieee80211_frame *wh; 2238eb6f0de0SAdrian Chadd struct ath_tid *atid; 2239eb6f0de0SAdrian Chadd int pri, tid; 2240eb6f0de0SAdrian Chadd struct mbuf *m0 = bf->bf_m; 2241eb6f0de0SAdrian Chadd 2242eb6f0de0SAdrian Chadd /* Fetch the TID - non-QoS frames get assigned to TID 16 */ 2243eb6f0de0SAdrian Chadd wh = mtod(m0, struct ieee80211_frame *); 2244eb6f0de0SAdrian Chadd pri = ath_tx_getac(sc, m0); 2245eb6f0de0SAdrian Chadd tid = ath_tx_gettid(sc, m0); 2246eb6f0de0SAdrian Chadd atid = &an->an_tid[tid]; 2247eb6f0de0SAdrian Chadd 2248eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: bf=%p, pri=%d, tid=%d, qos=%d\n", 2249eb6f0de0SAdrian Chadd __func__, bf, pri, tid, IEEE80211_QOS_HAS_SEQ(wh)); 2250eb6f0de0SAdrian Chadd 2251eb6f0de0SAdrian Chadd /* Set local packet state, used to queue packets to hardware */ 2252eb6f0de0SAdrian Chadd bf->bf_state.bfs_tid = tid; 2253eb6f0de0SAdrian Chadd bf->bf_state.bfs_txq = txq; 2254eb6f0de0SAdrian Chadd bf->bf_state.bfs_pri = pri; 2255eb6f0de0SAdrian Chadd 2256eb6f0de0SAdrian Chadd /* 2257eb6f0de0SAdrian Chadd * If the hardware queue isn't busy, queue it directly. 2258eb6f0de0SAdrian Chadd * If the hardware queue is busy, queue it. 2259eb6f0de0SAdrian Chadd * If the TID is paused or the traffic it outside BAW, software 2260eb6f0de0SAdrian Chadd * queue it. 2261eb6f0de0SAdrian Chadd */ 2262eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 2263eb6f0de0SAdrian Chadd if (atid->paused) { 2264eb6f0de0SAdrian Chadd /* TID is paused, queue */ 2265*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: paused\n", __func__); 2266eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(atid, bf, bf_list); 2267eb6f0de0SAdrian Chadd } else if (ath_tx_ampdu_pending(sc, an, tid)) { 2268eb6f0de0SAdrian Chadd /* AMPDU pending; queue */ 2269*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: pending\n", __func__); 2270eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(atid, bf, bf_list); 2271eb6f0de0SAdrian Chadd /* XXX sched? */ 2272eb6f0de0SAdrian Chadd } else if (ath_tx_ampdu_running(sc, an, tid)) { 2273eb6f0de0SAdrian Chadd /* AMPDU running, attempt direct dispatch if possible */ 2274*d4365d16SAdrian Chadd if (txq->axq_depth < sc->sc_hwq_limit) { 2275eb6f0de0SAdrian Chadd ath_tx_xmit_aggr(sc, an, bf); 2276*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, 2277*d4365d16SAdrian Chadd "%s: xmit_aggr\n", 2278*d4365d16SAdrian Chadd __func__); 2279*d4365d16SAdrian Chadd } else { 2280*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, 2281*d4365d16SAdrian Chadd "%s: ampdu; swq'ing\n", 2282*d4365d16SAdrian Chadd __func__); 2283eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(atid, bf, bf_list); 2284eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, atid); 2285eb6f0de0SAdrian Chadd } 2286eb6f0de0SAdrian Chadd } else if (txq->axq_depth < sc->sc_hwq_limit) { 2287eb6f0de0SAdrian Chadd /* AMPDU not running, attempt direct dispatch */ 2288*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: xmit_normal\n", __func__); 2289eb6f0de0SAdrian Chadd ath_tx_xmit_normal(sc, txq, bf); 2290eb6f0de0SAdrian Chadd } else { 2291eb6f0de0SAdrian Chadd /* Busy; queue */ 2292*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: swq'ing\n", __func__); 2293eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_TAIL(atid, bf, bf_list); 2294eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, atid); 2295eb6f0de0SAdrian Chadd } 2296eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 2297eb6f0de0SAdrian Chadd } 2298eb6f0de0SAdrian Chadd 2299eb6f0de0SAdrian Chadd /* 2300eb6f0de0SAdrian Chadd * Do the basic frame setup stuff that's required before the frame 2301eb6f0de0SAdrian Chadd * is added to a software queue. 2302eb6f0de0SAdrian Chadd * 2303eb6f0de0SAdrian Chadd * All frames get mostly the same treatment and it's done once. 2304eb6f0de0SAdrian Chadd * Retransmits fiddle with things like the rate control setup, 2305eb6f0de0SAdrian Chadd * setting the retransmit bit in the packet; doing relevant DMA/bus 2306eb6f0de0SAdrian Chadd * syncing and relinking it (back) into the hardware TX queue. 2307eb6f0de0SAdrian Chadd * 2308eb6f0de0SAdrian Chadd * Note that this may cause the mbuf to be reallocated, so 2309eb6f0de0SAdrian Chadd * m0 may not be valid. 2310eb6f0de0SAdrian Chadd */ 2311eb6f0de0SAdrian Chadd 2312eb6f0de0SAdrian Chadd 2313eb6f0de0SAdrian Chadd /* 2314eb6f0de0SAdrian Chadd * Configure the per-TID node state. 2315eb6f0de0SAdrian Chadd * 2316eb6f0de0SAdrian Chadd * This likely belongs in if_ath_node.c but I can't think of anywhere 2317eb6f0de0SAdrian Chadd * else to put it just yet. 2318eb6f0de0SAdrian Chadd * 2319eb6f0de0SAdrian Chadd * This sets up the SLISTs and the mutex as appropriate. 2320eb6f0de0SAdrian Chadd */ 2321eb6f0de0SAdrian Chadd void 2322eb6f0de0SAdrian Chadd ath_tx_tid_init(struct ath_softc *sc, struct ath_node *an) 2323eb6f0de0SAdrian Chadd { 2324eb6f0de0SAdrian Chadd int i, j; 2325eb6f0de0SAdrian Chadd struct ath_tid *atid; 2326eb6f0de0SAdrian Chadd 2327eb6f0de0SAdrian Chadd for (i = 0; i < IEEE80211_TID_SIZE; i++) { 2328eb6f0de0SAdrian Chadd atid = &an->an_tid[i]; 2329eb6f0de0SAdrian Chadd TAILQ_INIT(&atid->axq_q); 2330eb6f0de0SAdrian Chadd atid->tid = i; 2331eb6f0de0SAdrian Chadd atid->an = an; 2332eb6f0de0SAdrian Chadd for (j = 0; j < ATH_TID_MAX_BUFS; j++) 2333eb6f0de0SAdrian Chadd atid->tx_buf[j] = NULL; 2334eb6f0de0SAdrian Chadd atid->baw_head = atid->baw_tail = 0; 2335eb6f0de0SAdrian Chadd atid->paused = 0; 2336eb6f0de0SAdrian Chadd atid->sched = 0; 2337eb6f0de0SAdrian Chadd atid->hwq_depth = 0; 2338eb6f0de0SAdrian Chadd atid->cleanup_inprogress = 0; 2339eb6f0de0SAdrian Chadd if (i == IEEE80211_NONQOS_TID) 2340eb6f0de0SAdrian Chadd atid->ac = WME_AC_BE; 2341eb6f0de0SAdrian Chadd else 2342eb6f0de0SAdrian Chadd atid->ac = TID_TO_WME_AC(i); 2343eb6f0de0SAdrian Chadd } 2344eb6f0de0SAdrian Chadd } 2345eb6f0de0SAdrian Chadd 2346eb6f0de0SAdrian Chadd /* 2347eb6f0de0SAdrian Chadd * Pause the current TID. This stops packets from being transmitted 2348eb6f0de0SAdrian Chadd * on it. 2349eb6f0de0SAdrian Chadd * 2350eb6f0de0SAdrian Chadd * Since this is also called from upper layers as well as the driver, 2351eb6f0de0SAdrian Chadd * it will get the TID lock. 2352eb6f0de0SAdrian Chadd */ 2353eb6f0de0SAdrian Chadd static void 2354eb6f0de0SAdrian Chadd ath_tx_tid_pause(struct ath_softc *sc, struct ath_tid *tid) 2355eb6f0de0SAdrian Chadd { 2356eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[tid->ac]); 2357eb6f0de0SAdrian Chadd tid->paused++; 2358eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, "%s: paused = %d\n", 2359eb6f0de0SAdrian Chadd __func__, tid->paused); 2360eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[tid->ac]); 2361eb6f0de0SAdrian Chadd } 2362eb6f0de0SAdrian Chadd 2363eb6f0de0SAdrian Chadd /* 2364eb6f0de0SAdrian Chadd * Unpause the current TID, and schedule it if needed. 2365eb6f0de0SAdrian Chadd */ 2366eb6f0de0SAdrian Chadd static void 2367eb6f0de0SAdrian Chadd ath_tx_tid_resume(struct ath_softc *sc, struct ath_tid *tid) 2368eb6f0de0SAdrian Chadd { 2369eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[tid->ac]); 2370eb6f0de0SAdrian Chadd 2371eb6f0de0SAdrian Chadd tid->paused--; 2372eb6f0de0SAdrian Chadd 2373eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, "%s: unpaused = %d\n", 2374eb6f0de0SAdrian Chadd __func__, tid->paused); 2375eb6f0de0SAdrian Chadd 2376eb6f0de0SAdrian Chadd if (tid->paused || tid->axq_depth == 0) { 2377eb6f0de0SAdrian Chadd return; 2378eb6f0de0SAdrian Chadd } 2379eb6f0de0SAdrian Chadd 2380eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, tid); 2381eb6f0de0SAdrian Chadd /* Punt some frames to the hardware if needed */ 2382eb6f0de0SAdrian Chadd ath_txq_sched(sc, sc->sc_ac2q[tid->ac]); 2383eb6f0de0SAdrian Chadd } 2384eb6f0de0SAdrian Chadd 2385eb6f0de0SAdrian Chadd /* 2386eb6f0de0SAdrian Chadd * Free any packets currently pending in the software TX queue. 2387eb6f0de0SAdrian Chadd * 2388eb6f0de0SAdrian Chadd * This will be called when a node is being deleted. 2389eb6f0de0SAdrian Chadd * 2390eb6f0de0SAdrian Chadd * It can also be called on an active node during an interface 2391eb6f0de0SAdrian Chadd * reset or state transition. 2392eb6f0de0SAdrian Chadd * 2393eb6f0de0SAdrian Chadd * (From Linux/reference): 2394eb6f0de0SAdrian Chadd * 2395eb6f0de0SAdrian Chadd * TODO: For frame(s) that are in the retry state, we will reuse the 2396eb6f0de0SAdrian Chadd * sequence number(s) without setting the retry bit. The 2397eb6f0de0SAdrian Chadd * alternative is to give up on these and BAR the receiver's window 2398eb6f0de0SAdrian Chadd * forward. 2399eb6f0de0SAdrian Chadd */ 2400eb6f0de0SAdrian Chadd static void 2401*d4365d16SAdrian Chadd ath_tx_tid_drain(struct ath_softc *sc, struct ath_node *an, 2402*d4365d16SAdrian Chadd struct ath_tid *tid, ath_bufhead *bf_cq) 2403eb6f0de0SAdrian Chadd { 2404eb6f0de0SAdrian Chadd struct ath_buf *bf; 2405eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2406eb6f0de0SAdrian Chadd struct ieee80211_node *ni = &an->an_node; 2407eb6f0de0SAdrian Chadd int t = 0; 2408eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[tid->ac]; 2409eb6f0de0SAdrian Chadd 2410eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 2411eb6f0de0SAdrian Chadd 2412eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[tid->ac]); 2413eb6f0de0SAdrian Chadd 2414eb6f0de0SAdrian Chadd /* Walk the queue, free frames */ 2415eb6f0de0SAdrian Chadd for (;;) { 2416eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&tid->axq_q); 2417eb6f0de0SAdrian Chadd if (bf == NULL) { 2418eb6f0de0SAdrian Chadd break; 2419eb6f0de0SAdrian Chadd } 2420eb6f0de0SAdrian Chadd 2421eb6f0de0SAdrian Chadd if (t == 0) { 2422eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2423eb6f0de0SAdrian Chadd "%s: node %p: tid %d: txq_depth=%d, " 2424eb6f0de0SAdrian Chadd "txq_aggr_depth=%d, sched=%d, paused=%d, " 2425*d4365d16SAdrian Chadd "hwq_depth=%d, incomp=%d, baw_head=%d, " 2426*d4365d16SAdrian Chadd "baw_tail=%d txa_start=%d, ni_txseqs=%d\n", 2427eb6f0de0SAdrian Chadd __func__, ni, tid->tid, txq->axq_depth, 2428eb6f0de0SAdrian Chadd txq->axq_aggr_depth, tid->sched, tid->paused, 2429eb6f0de0SAdrian Chadd tid->hwq_depth, tid->incomp, tid->baw_head, 2430eb6f0de0SAdrian Chadd tid->baw_tail, tap == NULL ? -1 : tap->txa_start, 2431eb6f0de0SAdrian Chadd ni->ni_txseqs[tid->tid]); 2432c0711b97SAdrian Chadd 2433c0711b97SAdrian Chadd /* XXX Dump the frame, see what it is? */ 2434c0711b97SAdrian Chadd ieee80211_dump_pkt(ni->ni_ic, 2435c0711b97SAdrian Chadd mtod(bf->bf_m, const uint8_t *), 2436c0711b97SAdrian Chadd bf->bf_m->m_len, 0, -1); 2437c0711b97SAdrian Chadd 2438eb6f0de0SAdrian Chadd t = 1; 2439eb6f0de0SAdrian Chadd } 2440eb6f0de0SAdrian Chadd 2441eb6f0de0SAdrian Chadd 2442eb6f0de0SAdrian Chadd /* 2443eb6f0de0SAdrian Chadd * If the current TID is running AMPDU, update 2444eb6f0de0SAdrian Chadd * the BAW. 2445eb6f0de0SAdrian Chadd */ 2446eb6f0de0SAdrian Chadd if (ath_tx_ampdu_running(sc, an, tid->tid) && 2447eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw) { 2448eb6f0de0SAdrian Chadd /* 2449eb6f0de0SAdrian Chadd * Only remove the frame from the BAW if it's 2450eb6f0de0SAdrian Chadd * been transmitted at least once; this means 2451eb6f0de0SAdrian Chadd * the frame was in the BAW to begin with. 2452eb6f0de0SAdrian Chadd */ 2453eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_retries > 0) { 2454eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, tid, bf); 2455eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 2456eb6f0de0SAdrian Chadd } 2457eb6f0de0SAdrian Chadd /* 2458eb6f0de0SAdrian Chadd * This has become a non-fatal error now 2459eb6f0de0SAdrian Chadd */ 2460eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 2461eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2462eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 2463eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 2464eb6f0de0SAdrian Chadd } 2465eb6f0de0SAdrian Chadd ATH_TXQ_REMOVE(tid, bf, bf_list); 2466eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(bf_cq, bf, bf_list); 2467eb6f0de0SAdrian Chadd } 2468eb6f0de0SAdrian Chadd 2469eb6f0de0SAdrian Chadd /* 2470eb6f0de0SAdrian Chadd * Now that it's completed, grab the TID lock and update 2471eb6f0de0SAdrian Chadd * the sequence number and BAW window. 2472eb6f0de0SAdrian Chadd * Because sequence numbers have been assigned to frames 2473eb6f0de0SAdrian Chadd * that haven't been sent yet, it's entirely possible 2474eb6f0de0SAdrian Chadd * we'll be called with some pending frames that have not 2475eb6f0de0SAdrian Chadd * been transmitted. 2476eb6f0de0SAdrian Chadd * 2477eb6f0de0SAdrian Chadd * The cleaner solution is to do the sequence number allocation 2478eb6f0de0SAdrian Chadd * when the packet is first transmitted - and thus the "retries" 2479eb6f0de0SAdrian Chadd * check above would be enough to update the BAW/seqno. 2480eb6f0de0SAdrian Chadd */ 2481eb6f0de0SAdrian Chadd 2482eb6f0de0SAdrian Chadd /* But don't do it for non-QoS TIDs */ 2483eb6f0de0SAdrian Chadd if (tap) { 2484eb6f0de0SAdrian Chadd #if 0 2485eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 2486eb6f0de0SAdrian Chadd "%s: node %p: TID %d: sliding BAW left edge to %d\n", 2487eb6f0de0SAdrian Chadd __func__, an, tid->tid, tap->txa_start); 2488eb6f0de0SAdrian Chadd #endif 2489eb6f0de0SAdrian Chadd ni->ni_txseqs[tid->tid] = tap->txa_start; 2490eb6f0de0SAdrian Chadd tid->baw_tail = tid->baw_head; 2491eb6f0de0SAdrian Chadd } 2492eb6f0de0SAdrian Chadd } 2493eb6f0de0SAdrian Chadd 2494eb6f0de0SAdrian Chadd /* 2495eb6f0de0SAdrian Chadd * Flush all software queued packets for the given node. 2496eb6f0de0SAdrian Chadd * 2497eb6f0de0SAdrian Chadd * This occurs when a completion handler frees the last buffer 2498eb6f0de0SAdrian Chadd * for a node, and the node is thus freed. This causes the node 2499eb6f0de0SAdrian Chadd * to be cleaned up, which ends up calling ath_tx_node_flush. 2500eb6f0de0SAdrian Chadd */ 2501eb6f0de0SAdrian Chadd void 2502eb6f0de0SAdrian Chadd ath_tx_node_flush(struct ath_softc *sc, struct ath_node *an) 2503eb6f0de0SAdrian Chadd { 2504eb6f0de0SAdrian Chadd int tid; 2505eb6f0de0SAdrian Chadd ath_bufhead bf_cq; 2506eb6f0de0SAdrian Chadd struct ath_buf *bf; 2507eb6f0de0SAdrian Chadd 2508eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_cq); 2509eb6f0de0SAdrian Chadd 2510eb6f0de0SAdrian Chadd for (tid = 0; tid < IEEE80211_TID_SIZE; tid++) { 2511eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2512eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[atid->ac]; 2513eb6f0de0SAdrian Chadd 2514eb6f0de0SAdrian Chadd /* Remove this tid from the list of active tids */ 2515eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 2516eb6f0de0SAdrian Chadd ath_tx_tid_unsched(sc, atid); 2517eb6f0de0SAdrian Chadd 2518eb6f0de0SAdrian Chadd /* Free packets */ 2519eb6f0de0SAdrian Chadd ath_tx_tid_drain(sc, an, atid, &bf_cq); 2520eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 2521eb6f0de0SAdrian Chadd } 2522eb6f0de0SAdrian Chadd 2523eb6f0de0SAdrian Chadd /* Handle completed frames */ 2524eb6f0de0SAdrian Chadd while ((bf = TAILQ_FIRST(&bf_cq)) != NULL) { 2525eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_cq, bf, bf_list); 2526eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 2527eb6f0de0SAdrian Chadd } 2528eb6f0de0SAdrian Chadd } 2529eb6f0de0SAdrian Chadd 2530eb6f0de0SAdrian Chadd /* 2531eb6f0de0SAdrian Chadd * Drain all the software TXQs currently with traffic queued. 2532eb6f0de0SAdrian Chadd */ 2533eb6f0de0SAdrian Chadd void 2534eb6f0de0SAdrian Chadd ath_tx_txq_drain(struct ath_softc *sc, struct ath_txq *txq) 2535eb6f0de0SAdrian Chadd { 2536eb6f0de0SAdrian Chadd struct ath_tid *tid; 2537eb6f0de0SAdrian Chadd ath_bufhead bf_cq; 2538eb6f0de0SAdrian Chadd struct ath_buf *bf; 2539eb6f0de0SAdrian Chadd 2540eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_cq); 2541eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(txq); 2542eb6f0de0SAdrian Chadd 2543eb6f0de0SAdrian Chadd /* 2544eb6f0de0SAdrian Chadd * Iterate over all active tids for the given txq, 2545eb6f0de0SAdrian Chadd * flushing and unsched'ing them 2546eb6f0de0SAdrian Chadd */ 2547eb6f0de0SAdrian Chadd while (! TAILQ_EMPTY(&txq->axq_tidq)) { 2548eb6f0de0SAdrian Chadd tid = TAILQ_FIRST(&txq->axq_tidq); 2549eb6f0de0SAdrian Chadd ath_tx_tid_drain(sc, tid->an, tid, &bf_cq); 2550eb6f0de0SAdrian Chadd ath_tx_tid_unsched(sc, tid); 2551eb6f0de0SAdrian Chadd } 2552eb6f0de0SAdrian Chadd 2553eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(txq); 2554eb6f0de0SAdrian Chadd 2555eb6f0de0SAdrian Chadd while ((bf = TAILQ_FIRST(&bf_cq)) != NULL) { 2556eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_cq, bf, bf_list); 2557eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 2558eb6f0de0SAdrian Chadd } 2559eb6f0de0SAdrian Chadd } 2560eb6f0de0SAdrian Chadd 2561eb6f0de0SAdrian Chadd /* 2562eb6f0de0SAdrian Chadd * Handle completion of non-aggregate session frames. 2563eb6f0de0SAdrian Chadd */ 2564eb6f0de0SAdrian Chadd void 2565eb6f0de0SAdrian Chadd ath_tx_normal_comp(struct ath_softc *sc, struct ath_buf *bf, int fail) 2566eb6f0de0SAdrian Chadd { 2567eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf->bf_node; 2568eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2569eb6f0de0SAdrian Chadd int tid = bf->bf_state.bfs_tid; 2570eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2571eb6f0de0SAdrian Chadd struct ath_tx_status *ts = &bf->bf_status.ds_txstat; 2572eb6f0de0SAdrian Chadd 2573eb6f0de0SAdrian Chadd /* The TID state is protected behind the TXQ lock */ 2574eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 2575eb6f0de0SAdrian Chadd 2576eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: bf=%p: fail=%d, hwq_depth now %d\n", 2577eb6f0de0SAdrian Chadd __func__, bf, fail, atid->hwq_depth - 1); 2578eb6f0de0SAdrian Chadd 2579eb6f0de0SAdrian Chadd atid->hwq_depth--; 2580eb6f0de0SAdrian Chadd if (atid->hwq_depth < 0) 2581eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: hwq_depth < 0: %d\n", 2582eb6f0de0SAdrian Chadd __func__, atid->hwq_depth); 2583eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 2584eb6f0de0SAdrian Chadd 2585eb6f0de0SAdrian Chadd /* 2586eb6f0de0SAdrian Chadd * punt to rate control if we're not being cleaned up 2587eb6f0de0SAdrian Chadd * during a hw queue drain and the frame wanted an ACK. 2588eb6f0de0SAdrian Chadd */ 2589eb6f0de0SAdrian Chadd if (fail == 0 && ((bf->bf_txflags & HAL_TXDESC_NOACK) == 0)) 2590eb6f0de0SAdrian Chadd ath_tx_update_ratectrl(sc, ni, bf->bf_state.bfs_rc, 2591eb6f0de0SAdrian Chadd ts, bf->bf_state.bfs_pktlen, 2592eb6f0de0SAdrian Chadd 1, (ts->ts_status == 0) ? 0 : 1); 2593eb6f0de0SAdrian Chadd 2594eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, fail); 2595eb6f0de0SAdrian Chadd } 2596eb6f0de0SAdrian Chadd 2597eb6f0de0SAdrian Chadd /* 2598eb6f0de0SAdrian Chadd * Handle cleanup of aggregate session packets that aren't 2599eb6f0de0SAdrian Chadd * an A-MPDU. 2600eb6f0de0SAdrian Chadd * 2601eb6f0de0SAdrian Chadd * There's no need to update the BAW here - the session is being 2602eb6f0de0SAdrian Chadd * torn down. 2603eb6f0de0SAdrian Chadd */ 2604eb6f0de0SAdrian Chadd static void 2605eb6f0de0SAdrian Chadd ath_tx_comp_cleanup_unaggr(struct ath_softc *sc, struct ath_buf *bf) 2606eb6f0de0SAdrian Chadd { 2607eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf->bf_node; 2608eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2609eb6f0de0SAdrian Chadd int tid = bf->bf_state.bfs_tid; 2610eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2611eb6f0de0SAdrian Chadd 2612eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, "%s: TID %d: incomp=%d\n", 2613eb6f0de0SAdrian Chadd __func__, tid, atid->incomp); 2614eb6f0de0SAdrian Chadd 2615eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 2616eb6f0de0SAdrian Chadd atid->incomp--; 2617eb6f0de0SAdrian Chadd if (atid->incomp == 0) { 2618eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 2619eb6f0de0SAdrian Chadd "%s: TID %d: cleaned up! resume!\n", 2620eb6f0de0SAdrian Chadd __func__, tid); 2621eb6f0de0SAdrian Chadd atid->cleanup_inprogress = 0; 2622eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 2623eb6f0de0SAdrian Chadd } 2624eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 2625eb6f0de0SAdrian Chadd 2626eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 2627eb6f0de0SAdrian Chadd } 2628eb6f0de0SAdrian Chadd 2629eb6f0de0SAdrian Chadd /* 2630eb6f0de0SAdrian Chadd * Performs transmit side cleanup when TID changes from aggregated to 2631eb6f0de0SAdrian Chadd * unaggregated. 2632eb6f0de0SAdrian Chadd * 2633eb6f0de0SAdrian Chadd * - Discard all retry frames from the s/w queue. 2634eb6f0de0SAdrian Chadd * - Fix the tx completion function for all buffers in s/w queue. 2635eb6f0de0SAdrian Chadd * - Count the number of unacked frames, and let transmit completion 2636eb6f0de0SAdrian Chadd * handle it later. 2637eb6f0de0SAdrian Chadd * 2638eb6f0de0SAdrian Chadd * The caller is responsible for pausing the TID. 2639eb6f0de0SAdrian Chadd */ 2640eb6f0de0SAdrian Chadd static void 2641eb6f0de0SAdrian Chadd ath_tx_cleanup(struct ath_softc *sc, struct ath_node *an, int tid) 2642eb6f0de0SAdrian Chadd { 2643eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2644eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2645eb6f0de0SAdrian Chadd struct ath_buf *bf, *bf_next; 2646eb6f0de0SAdrian Chadd ath_bufhead bf_cq; 2647eb6f0de0SAdrian Chadd 2648eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 2649eb6f0de0SAdrian Chadd "%s: TID %d: called\n", __func__, tid); 2650eb6f0de0SAdrian Chadd 2651eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_cq); 2652eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 2653eb6f0de0SAdrian Chadd 2654eb6f0de0SAdrian Chadd /* 2655eb6f0de0SAdrian Chadd * Update the frames in the software TX queue: 2656eb6f0de0SAdrian Chadd * 2657eb6f0de0SAdrian Chadd * + Discard retry frames in the queue 2658eb6f0de0SAdrian Chadd * + Fix the completion function to be non-aggregate 2659eb6f0de0SAdrian Chadd */ 2660eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&atid->axq_q); 2661eb6f0de0SAdrian Chadd while (bf) { 2662eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_isretried) { 2663eb6f0de0SAdrian Chadd bf_next = TAILQ_NEXT(bf, bf_list); 2664eb6f0de0SAdrian Chadd TAILQ_REMOVE(&atid->axq_q, bf, bf_list); 2665eb6f0de0SAdrian Chadd atid->axq_depth--; 2666eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_dobaw) { 2667eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, atid, bf); 2668eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 2669eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2670eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 2671*d4365d16SAdrian Chadd __func__, 2672*d4365d16SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno)); 2673eb6f0de0SAdrian Chadd } 2674eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 2675eb6f0de0SAdrian Chadd /* 2676eb6f0de0SAdrian Chadd * Call the default completion handler with "fail" just 2677eb6f0de0SAdrian Chadd * so upper levels are suitably notified about this. 2678eb6f0de0SAdrian Chadd */ 2679eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(&bf_cq, bf, bf_list); 2680eb6f0de0SAdrian Chadd bf = bf_next; 2681eb6f0de0SAdrian Chadd continue; 2682eb6f0de0SAdrian Chadd } 2683eb6f0de0SAdrian Chadd /* Give these the default completion handler */ 2684eb6f0de0SAdrian Chadd bf->bf_comp = ath_tx_normal_comp; 2685eb6f0de0SAdrian Chadd bf = TAILQ_NEXT(bf, bf_list); 2686eb6f0de0SAdrian Chadd } 2687eb6f0de0SAdrian Chadd 2688eb6f0de0SAdrian Chadd /* The caller is required to pause the TID */ 2689eb6f0de0SAdrian Chadd #if 0 2690eb6f0de0SAdrian Chadd /* Pause the TID */ 2691eb6f0de0SAdrian Chadd ath_tx_tid_pause(sc, atid); 2692eb6f0de0SAdrian Chadd #endif 2693eb6f0de0SAdrian Chadd 2694eb6f0de0SAdrian Chadd /* 2695eb6f0de0SAdrian Chadd * Calculate what hardware-queued frames exist based 2696eb6f0de0SAdrian Chadd * on the current BAW size. Ie, what frames have been 2697eb6f0de0SAdrian Chadd * added to the TX hardware queue for this TID but 2698eb6f0de0SAdrian Chadd * not yet ACKed. 2699eb6f0de0SAdrian Chadd */ 2700eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid); 2701eb6f0de0SAdrian Chadd /* Need the lock - fiddling with BAW */ 2702eb6f0de0SAdrian Chadd while (atid->baw_head != atid->baw_tail) { 2703eb6f0de0SAdrian Chadd if (atid->tx_buf[atid->baw_head]) { 2704eb6f0de0SAdrian Chadd atid->incomp++; 2705eb6f0de0SAdrian Chadd atid->cleanup_inprogress = 1; 2706eb6f0de0SAdrian Chadd atid->tx_buf[atid->baw_head] = NULL; 2707eb6f0de0SAdrian Chadd } 2708eb6f0de0SAdrian Chadd INCR(atid->baw_head, ATH_TID_MAX_BUFS); 2709eb6f0de0SAdrian Chadd INCR(tap->txa_start, IEEE80211_SEQ_RANGE); 2710eb6f0de0SAdrian Chadd } 2711eb6f0de0SAdrian Chadd 2712eb6f0de0SAdrian Chadd /* 2713eb6f0de0SAdrian Chadd * If cleanup is required, defer TID scheduling 2714eb6f0de0SAdrian Chadd * until all the HW queued packets have been 2715eb6f0de0SAdrian Chadd * sent. 2716eb6f0de0SAdrian Chadd */ 2717eb6f0de0SAdrian Chadd if (! atid->cleanup_inprogress) 2718eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 2719eb6f0de0SAdrian Chadd 2720eb6f0de0SAdrian Chadd if (atid->cleanup_inprogress) 2721eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 2722eb6f0de0SAdrian Chadd "%s: TID %d: cleanup needed: %d packets\n", 2723eb6f0de0SAdrian Chadd __func__, tid, atid->incomp); 2724eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 2725eb6f0de0SAdrian Chadd 2726eb6f0de0SAdrian Chadd /* Handle completing frames and fail them */ 2727eb6f0de0SAdrian Chadd while ((bf = TAILQ_FIRST(&bf_cq)) != NULL) { 2728eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_cq, bf, bf_list); 2729eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 1); 2730eb6f0de0SAdrian Chadd } 2731eb6f0de0SAdrian Chadd } 2732eb6f0de0SAdrian Chadd 2733eb6f0de0SAdrian Chadd static void 2734eb6f0de0SAdrian Chadd ath_tx_set_retry(struct ath_softc *sc, struct ath_buf *bf) 2735eb6f0de0SAdrian Chadd { 2736eb6f0de0SAdrian Chadd struct ieee80211_frame *wh; 2737eb6f0de0SAdrian Chadd 2738eb6f0de0SAdrian Chadd wh = mtod(bf->bf_m, struct ieee80211_frame *); 2739eb6f0de0SAdrian Chadd /* Only update/resync if needed */ 2740eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_isretried == 0) { 2741eb6f0de0SAdrian Chadd wh->i_fc[1] |= IEEE80211_FC1_RETRY; 2742eb6f0de0SAdrian Chadd bus_dmamap_sync(sc->sc_dmat, bf->bf_dmamap, 2743eb6f0de0SAdrian Chadd BUS_DMASYNC_PREWRITE); 2744eb6f0de0SAdrian Chadd } 2745eb6f0de0SAdrian Chadd sc->sc_stats.ast_tx_swretries++; 2746eb6f0de0SAdrian Chadd bf->bf_state.bfs_isretried = 1; 2747eb6f0de0SAdrian Chadd bf->bf_state.bfs_retries ++; 2748eb6f0de0SAdrian Chadd } 2749eb6f0de0SAdrian Chadd 2750eb6f0de0SAdrian Chadd static struct ath_buf * 275138962489SAdrian Chadd ath_tx_retry_clone(struct ath_softc *sc, struct ath_node *an, 275238962489SAdrian Chadd struct ath_tid *tid, struct ath_buf *bf) 2753eb6f0de0SAdrian Chadd { 2754eb6f0de0SAdrian Chadd struct ath_buf *nbf; 2755eb6f0de0SAdrian Chadd int error; 2756eb6f0de0SAdrian Chadd 2757eb6f0de0SAdrian Chadd nbf = ath_buf_clone(sc, bf); 2758eb6f0de0SAdrian Chadd 2759eb6f0de0SAdrian Chadd #if 0 2760eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: ATH_BUF_BUSY; cloning\n", 2761eb6f0de0SAdrian Chadd __func__); 2762eb6f0de0SAdrian Chadd #endif 2763eb6f0de0SAdrian Chadd 2764eb6f0de0SAdrian Chadd if (nbf == NULL) { 2765eb6f0de0SAdrian Chadd /* Failed to clone */ 2766eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2767eb6f0de0SAdrian Chadd "%s: failed to clone a busy buffer\n", 2768eb6f0de0SAdrian Chadd __func__); 2769eb6f0de0SAdrian Chadd return NULL; 2770eb6f0de0SAdrian Chadd } 2771eb6f0de0SAdrian Chadd 2772eb6f0de0SAdrian Chadd /* Setup the dma for the new buffer */ 2773eb6f0de0SAdrian Chadd error = ath_tx_dmasetup(sc, nbf, nbf->bf_m); 2774eb6f0de0SAdrian Chadd if (error != 0) { 2775eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2776eb6f0de0SAdrian Chadd "%s: failed to setup dma for clone\n", 2777eb6f0de0SAdrian Chadd __func__); 2778eb6f0de0SAdrian Chadd /* 2779eb6f0de0SAdrian Chadd * Put this at the head of the list, not tail; 2780eb6f0de0SAdrian Chadd * that way it doesn't interfere with the 2781eb6f0de0SAdrian Chadd * busy buffer logic (which uses the tail of 2782eb6f0de0SAdrian Chadd * the list.) 2783eb6f0de0SAdrian Chadd */ 2784eb6f0de0SAdrian Chadd ATH_TXBUF_LOCK(sc); 2785eb6f0de0SAdrian Chadd TAILQ_INSERT_HEAD(&sc->sc_txbuf, nbf, bf_list); 2786eb6f0de0SAdrian Chadd ATH_TXBUF_UNLOCK(sc); 2787eb6f0de0SAdrian Chadd return NULL; 2788eb6f0de0SAdrian Chadd } 2789eb6f0de0SAdrian Chadd 279038962489SAdrian Chadd /* Update BAW if required, before we free the original buf */ 279138962489SAdrian Chadd if (bf->bf_state.bfs_dobaw) 279238962489SAdrian Chadd ath_tx_switch_baw_buf(sc, an, tid, bf, nbf); 279338962489SAdrian Chadd 2794eb6f0de0SAdrian Chadd /* Free current buffer; return the older buffer */ 2795eb6f0de0SAdrian Chadd bf->bf_m = NULL; 2796eb6f0de0SAdrian Chadd bf->bf_node = NULL; 2797eb6f0de0SAdrian Chadd ath_freebuf(sc, bf); 2798eb6f0de0SAdrian Chadd return nbf; 2799eb6f0de0SAdrian Chadd } 2800eb6f0de0SAdrian Chadd 2801eb6f0de0SAdrian Chadd /* 2802eb6f0de0SAdrian Chadd * Handle retrying an unaggregate frame in an aggregate 2803eb6f0de0SAdrian Chadd * session. 2804eb6f0de0SAdrian Chadd * 2805eb6f0de0SAdrian Chadd * If too many retries occur, pause the TID, wait for 2806eb6f0de0SAdrian Chadd * any further retransmits (as there's no reason why 2807eb6f0de0SAdrian Chadd * non-aggregate frames in an aggregate session are 2808eb6f0de0SAdrian Chadd * transmitted in-order; they just have to be in-BAW) 2809eb6f0de0SAdrian Chadd * and then queue a BAR. 2810eb6f0de0SAdrian Chadd */ 2811eb6f0de0SAdrian Chadd static void 2812eb6f0de0SAdrian Chadd ath_tx_aggr_retry_unaggr(struct ath_softc *sc, struct ath_buf *bf) 2813eb6f0de0SAdrian Chadd { 2814eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf->bf_node; 2815eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2816eb6f0de0SAdrian Chadd int tid = bf->bf_state.bfs_tid; 2817eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2818eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2819eb6f0de0SAdrian Chadd int txseq; 2820eb6f0de0SAdrian Chadd 2821eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 2822eb6f0de0SAdrian Chadd 2823eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid); 2824eb6f0de0SAdrian Chadd 2825eb6f0de0SAdrian Chadd /* 2826eb6f0de0SAdrian Chadd * If the buffer is marked as busy, we can't directly 2827eb6f0de0SAdrian Chadd * reuse it. Instead, try to clone the buffer. 2828eb6f0de0SAdrian Chadd * If the clone is successful, recycle the old buffer. 2829eb6f0de0SAdrian Chadd * If the clone is unsuccessful, set bfs_retries to max 2830eb6f0de0SAdrian Chadd * to force the next bit of code to free the buffer 2831eb6f0de0SAdrian Chadd * for us. 2832eb6f0de0SAdrian Chadd */ 2833eb6f0de0SAdrian Chadd if ((bf->bf_state.bfs_retries < SWMAX_RETRIES) && 2834eb6f0de0SAdrian Chadd (bf->bf_flags & ATH_BUF_BUSY)) { 2835eb6f0de0SAdrian Chadd struct ath_buf *nbf; 283638962489SAdrian Chadd nbf = ath_tx_retry_clone(sc, an, atid, bf); 2837eb6f0de0SAdrian Chadd if (nbf) 2838eb6f0de0SAdrian Chadd /* bf has been freed at this point */ 2839eb6f0de0SAdrian Chadd bf = nbf; 2840eb6f0de0SAdrian Chadd else 2841eb6f0de0SAdrian Chadd bf->bf_state.bfs_retries = SWMAX_RETRIES + 1; 2842eb6f0de0SAdrian Chadd } 2843eb6f0de0SAdrian Chadd 2844eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_retries >= SWMAX_RETRIES) { 2845eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_RETRIES, 2846eb6f0de0SAdrian Chadd "%s: exceeded retries; seqno %d\n", 2847eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 2848eb6f0de0SAdrian Chadd sc->sc_stats.ast_tx_swretrymax++; 2849eb6f0de0SAdrian Chadd 2850eb6f0de0SAdrian Chadd /* Update BAW anyway */ 2851eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_dobaw) { 2852eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, atid, bf); 2853eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 2854eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2855eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 2856eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 2857eb6f0de0SAdrian Chadd } 2858eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 2859eb6f0de0SAdrian Chadd 2860eb6f0de0SAdrian Chadd /* Send BAR frame */ 2861eb6f0de0SAdrian Chadd /* 2862eb6f0de0SAdrian Chadd * This'll end up going into net80211 and back out 2863eb6f0de0SAdrian Chadd * again, via ic->ic_raw_xmit(). 2864eb6f0de0SAdrian Chadd */ 2865eb6f0de0SAdrian Chadd txseq = tap->txa_start; 2866eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 2867eb6f0de0SAdrian Chadd 2868eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2869eb6f0de0SAdrian Chadd "%s: TID %d: send BAR; seq %d\n", __func__, tid, txseq); 2870eb6f0de0SAdrian Chadd 2871eb6f0de0SAdrian Chadd /* XXX TODO: send BAR */ 2872eb6f0de0SAdrian Chadd 2873eb6f0de0SAdrian Chadd /* Free buffer, bf is free after this call */ 2874eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 2875eb6f0de0SAdrian Chadd return; 2876eb6f0de0SAdrian Chadd } 2877eb6f0de0SAdrian Chadd 2878eb6f0de0SAdrian Chadd /* 2879eb6f0de0SAdrian Chadd * This increments the retry counter as well as 2880eb6f0de0SAdrian Chadd * sets the retry flag in the ath_buf and packet 2881eb6f0de0SAdrian Chadd * body. 2882eb6f0de0SAdrian Chadd */ 2883eb6f0de0SAdrian Chadd ath_tx_set_retry(sc, bf); 2884eb6f0de0SAdrian Chadd 2885eb6f0de0SAdrian Chadd /* 2886eb6f0de0SAdrian Chadd * Insert this at the head of the queue, so it's 2887eb6f0de0SAdrian Chadd * retried before any current/subsequent frames. 2888eb6f0de0SAdrian Chadd */ 2889eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_HEAD(atid, bf, bf_list); 2890eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, atid); 2891eb6f0de0SAdrian Chadd 2892eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 2893eb6f0de0SAdrian Chadd } 2894eb6f0de0SAdrian Chadd 2895eb6f0de0SAdrian Chadd /* 2896eb6f0de0SAdrian Chadd * Common code for aggregate excessive retry/subframe retry. 2897eb6f0de0SAdrian Chadd * If retrying, queues buffers to bf_q. If not, frees the 2898eb6f0de0SAdrian Chadd * buffers. 2899eb6f0de0SAdrian Chadd * 2900eb6f0de0SAdrian Chadd * XXX should unify this with ath_tx_aggr_retry_unaggr() 2901eb6f0de0SAdrian Chadd */ 2902eb6f0de0SAdrian Chadd static int 2903eb6f0de0SAdrian Chadd ath_tx_retry_subframe(struct ath_softc *sc, struct ath_buf *bf, 2904eb6f0de0SAdrian Chadd ath_bufhead *bf_q) 2905eb6f0de0SAdrian Chadd { 2906eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf->bf_node; 2907eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2908eb6f0de0SAdrian Chadd int tid = bf->bf_state.bfs_tid; 2909eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 2910eb6f0de0SAdrian Chadd 2911eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(sc->sc_ac2q[atid->ac]); 2912eb6f0de0SAdrian Chadd 2913eb6f0de0SAdrian Chadd ath_hal_clr11n_aggr(sc->sc_ah, bf->bf_desc); 2914eb6f0de0SAdrian Chadd ath_hal_set11nburstduration(sc->sc_ah, bf->bf_desc, 0); 2915eb6f0de0SAdrian Chadd /* ath_hal_set11n_virtualmorefrag(sc->sc_ah, bf->bf_desc, 0); */ 2916eb6f0de0SAdrian Chadd 2917eb6f0de0SAdrian Chadd /* 2918eb6f0de0SAdrian Chadd * If the buffer is marked as busy, we can't directly 2919eb6f0de0SAdrian Chadd * reuse it. Instead, try to clone the buffer. 2920eb6f0de0SAdrian Chadd * If the clone is successful, recycle the old buffer. 2921eb6f0de0SAdrian Chadd * If the clone is unsuccessful, set bfs_retries to max 2922eb6f0de0SAdrian Chadd * to force the next bit of code to free the buffer 2923eb6f0de0SAdrian Chadd * for us. 2924eb6f0de0SAdrian Chadd */ 2925eb6f0de0SAdrian Chadd if ((bf->bf_state.bfs_retries < SWMAX_RETRIES) && 2926eb6f0de0SAdrian Chadd (bf->bf_flags & ATH_BUF_BUSY)) { 2927eb6f0de0SAdrian Chadd struct ath_buf *nbf; 292838962489SAdrian Chadd nbf = ath_tx_retry_clone(sc, an, atid, bf); 2929eb6f0de0SAdrian Chadd if (nbf) 2930eb6f0de0SAdrian Chadd /* bf has been freed at this point */ 2931eb6f0de0SAdrian Chadd bf = nbf; 2932eb6f0de0SAdrian Chadd else 2933eb6f0de0SAdrian Chadd bf->bf_state.bfs_retries = SWMAX_RETRIES + 1; 2934eb6f0de0SAdrian Chadd } 2935eb6f0de0SAdrian Chadd 2936eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_retries >= SWMAX_RETRIES) { 2937eb6f0de0SAdrian Chadd sc->sc_stats.ast_tx_swretrymax++; 2938eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_RETRIES, 2939eb6f0de0SAdrian Chadd "%s: max retries: seqno %d\n", 2940eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 2941eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, atid, bf); 2942eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 2943eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 2944eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 2945eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 2946eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 2947eb6f0de0SAdrian Chadd return 1; 2948eb6f0de0SAdrian Chadd } 2949eb6f0de0SAdrian Chadd 2950eb6f0de0SAdrian Chadd ath_tx_set_retry(sc, bf); 2951eb6f0de0SAdrian Chadd bf->bf_next = NULL; /* Just to make sure */ 2952eb6f0de0SAdrian Chadd 2953eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(bf_q, bf, bf_list); 2954eb6f0de0SAdrian Chadd return 0; 2955eb6f0de0SAdrian Chadd } 2956eb6f0de0SAdrian Chadd 2957eb6f0de0SAdrian Chadd /* 2958eb6f0de0SAdrian Chadd * error pkt completion for an aggregate destination 2959eb6f0de0SAdrian Chadd */ 2960eb6f0de0SAdrian Chadd static void 2961eb6f0de0SAdrian Chadd ath_tx_comp_aggr_error(struct ath_softc *sc, struct ath_buf *bf_first, 2962eb6f0de0SAdrian Chadd struct ath_tid *tid) 2963eb6f0de0SAdrian Chadd { 2964eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf_first->bf_node; 2965eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 2966eb6f0de0SAdrian Chadd struct ath_buf *bf_next, *bf; 2967eb6f0de0SAdrian Chadd ath_bufhead bf_q; 2968eb6f0de0SAdrian Chadd int drops = 0; 2969eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 2970eb6f0de0SAdrian Chadd ath_bufhead bf_cq; 2971eb6f0de0SAdrian Chadd 2972eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_q); 2973eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_cq); 2974eb6f0de0SAdrian Chadd 2975eb6f0de0SAdrian Chadd /* 2976eb6f0de0SAdrian Chadd * Update rate control - all frames have failed. 2977eb6f0de0SAdrian Chadd * 2978eb6f0de0SAdrian Chadd * XXX use the length in the first frame in the series; 2979eb6f0de0SAdrian Chadd * XXX just so things are consistent for now. 2980eb6f0de0SAdrian Chadd */ 2981eb6f0de0SAdrian Chadd ath_tx_update_ratectrl(sc, ni, bf_first->bf_state.bfs_rc, 2982eb6f0de0SAdrian Chadd &bf_first->bf_status.ds_txstat, 2983eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_pktlen, 2984eb6f0de0SAdrian Chadd bf_first->bf_state.bfs_nframes, bf_first->bf_state.bfs_nframes); 2985eb6f0de0SAdrian Chadd 2986eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[tid->ac]); 2987eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 29882d3d4776SAdrian Chadd sc->sc_stats.ast_tx_aggr_failall++; 2989eb6f0de0SAdrian Chadd 2990eb6f0de0SAdrian Chadd /* Retry all subframes */ 2991eb6f0de0SAdrian Chadd bf = bf_first; 2992eb6f0de0SAdrian Chadd while (bf) { 2993eb6f0de0SAdrian Chadd bf_next = bf->bf_next; 2994eb6f0de0SAdrian Chadd bf->bf_next = NULL; /* Remove it from the aggr list */ 29952d3d4776SAdrian Chadd sc->sc_stats.ast_tx_aggr_fail++; 2996eb6f0de0SAdrian Chadd if (ath_tx_retry_subframe(sc, bf, &bf_q)) { 2997eb6f0de0SAdrian Chadd drops++; 2998eb6f0de0SAdrian Chadd bf->bf_next = NULL; 2999eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(&bf_cq, bf, bf_list); 3000eb6f0de0SAdrian Chadd } 3001eb6f0de0SAdrian Chadd bf = bf_next; 3002eb6f0de0SAdrian Chadd } 3003eb6f0de0SAdrian Chadd 3004eb6f0de0SAdrian Chadd /* Prepend all frames to the beginning of the queue */ 3005eb6f0de0SAdrian Chadd while ((bf = TAILQ_LAST(&bf_q, ath_bufhead_s)) != NULL) { 3006eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_q, bf, bf_list); 3007eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_HEAD(tid, bf, bf_list); 3008eb6f0de0SAdrian Chadd } 3009eb6f0de0SAdrian Chadd 3010eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, tid); 3011eb6f0de0SAdrian Chadd 3012eb6f0de0SAdrian Chadd /* 3013eb6f0de0SAdrian Chadd * send bar if we dropped any frames 3014eb6f0de0SAdrian Chadd * 3015eb6f0de0SAdrian Chadd * Keep the txq lock held for now, as we need to ensure 3016eb6f0de0SAdrian Chadd * that ni_txseqs[] is consistent (as it's being updated 3017eb6f0de0SAdrian Chadd * in the ifnet TX context or raw TX context.) 3018eb6f0de0SAdrian Chadd */ 3019eb6f0de0SAdrian Chadd if (drops) { 3020eb6f0de0SAdrian Chadd int txseq = tap->txa_start; 3021eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[tid->ac]); 3022eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3023eb6f0de0SAdrian Chadd "%s: TID %d: send BAR; seq %d\n", 3024eb6f0de0SAdrian Chadd __func__, tid->tid, txseq); 3025eb6f0de0SAdrian Chadd 3026eb6f0de0SAdrian Chadd /* XXX TODO: send BAR */ 3027eb6f0de0SAdrian Chadd } else { 3028eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[tid->ac]); 3029eb6f0de0SAdrian Chadd } 3030eb6f0de0SAdrian Chadd 3031eb6f0de0SAdrian Chadd /* Complete frames which errored out */ 3032eb6f0de0SAdrian Chadd while ((bf = TAILQ_FIRST(&bf_cq)) != NULL) { 3033eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_cq, bf, bf_list); 3034eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 3035eb6f0de0SAdrian Chadd } 3036eb6f0de0SAdrian Chadd } 3037eb6f0de0SAdrian Chadd 3038eb6f0de0SAdrian Chadd /* 3039eb6f0de0SAdrian Chadd * Handle clean-up of packets from an aggregate list. 3040eb6f0de0SAdrian Chadd * 3041eb6f0de0SAdrian Chadd * There's no need to update the BAW here - the session is being 3042eb6f0de0SAdrian Chadd * torn down. 3043eb6f0de0SAdrian Chadd */ 3044eb6f0de0SAdrian Chadd static void 3045eb6f0de0SAdrian Chadd ath_tx_comp_cleanup_aggr(struct ath_softc *sc, struct ath_buf *bf_first) 3046eb6f0de0SAdrian Chadd { 3047eb6f0de0SAdrian Chadd struct ath_buf *bf, *bf_next; 3048eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf_first->bf_node; 3049eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3050eb6f0de0SAdrian Chadd int tid = bf_first->bf_state.bfs_tid; 3051eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3052eb6f0de0SAdrian Chadd 3053eb6f0de0SAdrian Chadd bf = bf_first; 3054eb6f0de0SAdrian Chadd 3055eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3056eb6f0de0SAdrian Chadd 3057eb6f0de0SAdrian Chadd /* update incomp */ 3058eb6f0de0SAdrian Chadd while (bf) { 3059eb6f0de0SAdrian Chadd atid->incomp--; 3060eb6f0de0SAdrian Chadd bf = bf->bf_next; 3061eb6f0de0SAdrian Chadd } 3062eb6f0de0SAdrian Chadd 3063eb6f0de0SAdrian Chadd if (atid->incomp == 0) { 3064eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3065eb6f0de0SAdrian Chadd "%s: TID %d: cleaned up! resume!\n", 3066eb6f0de0SAdrian Chadd __func__, tid); 3067eb6f0de0SAdrian Chadd atid->cleanup_inprogress = 0; 3068eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 3069eb6f0de0SAdrian Chadd } 3070eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3071eb6f0de0SAdrian Chadd 3072eb6f0de0SAdrian Chadd /* Handle frame completion */ 3073eb6f0de0SAdrian Chadd while (bf) { 3074eb6f0de0SAdrian Chadd bf_next = bf->bf_next; 3075eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 1); 3076eb6f0de0SAdrian Chadd bf = bf_next; 3077eb6f0de0SAdrian Chadd } 3078eb6f0de0SAdrian Chadd } 3079eb6f0de0SAdrian Chadd 3080eb6f0de0SAdrian Chadd /* 3081eb6f0de0SAdrian Chadd * Handle completion of an set of aggregate frames. 3082eb6f0de0SAdrian Chadd * 3083eb6f0de0SAdrian Chadd * XXX for now, simply complete each sub-frame. 3084eb6f0de0SAdrian Chadd * 3085eb6f0de0SAdrian Chadd * Note: the completion handler is the last descriptor in the aggregate, 3086eb6f0de0SAdrian Chadd * not the last descriptor in the first frame. 3087eb6f0de0SAdrian Chadd */ 3088eb6f0de0SAdrian Chadd static void 3089*d4365d16SAdrian Chadd ath_tx_aggr_comp_aggr(struct ath_softc *sc, struct ath_buf *bf_first, 3090*d4365d16SAdrian Chadd int fail) 3091eb6f0de0SAdrian Chadd { 3092eb6f0de0SAdrian Chadd //struct ath_desc *ds = bf->bf_lastds; 3093eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf_first->bf_node; 3094eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3095eb6f0de0SAdrian Chadd int tid = bf_first->bf_state.bfs_tid; 3096eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3097eb6f0de0SAdrian Chadd struct ath_tx_status ts; 3098eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 3099eb6f0de0SAdrian Chadd ath_bufhead bf_q; 3100eb6f0de0SAdrian Chadd ath_bufhead bf_cq; 3101eb6f0de0SAdrian Chadd int seq_st, tx_ok; 3102eb6f0de0SAdrian Chadd int hasba, isaggr; 3103eb6f0de0SAdrian Chadd uint32_t ba[2]; 3104eb6f0de0SAdrian Chadd struct ath_buf *bf, *bf_next; 3105eb6f0de0SAdrian Chadd int ba_index; 3106eb6f0de0SAdrian Chadd int drops = 0; 3107eb6f0de0SAdrian Chadd int nframes = 0, nbad = 0, nf; 3108eb6f0de0SAdrian Chadd int pktlen; 3109eb6f0de0SAdrian Chadd /* XXX there's too much on the stack? */ 3110eb6f0de0SAdrian Chadd struct ath_rc_series rc[4]; 3111eb6f0de0SAdrian Chadd int txseq; 3112eb6f0de0SAdrian Chadd 3113eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, "%s: called; hwq_depth=%d\n", 3114eb6f0de0SAdrian Chadd __func__, atid->hwq_depth); 3115eb6f0de0SAdrian Chadd 3116eb6f0de0SAdrian Chadd /* The TID state is kept behind the TXQ lock */ 3117eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3118eb6f0de0SAdrian Chadd 3119eb6f0de0SAdrian Chadd atid->hwq_depth--; 3120eb6f0de0SAdrian Chadd if (atid->hwq_depth < 0) 3121eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: hwq_depth < 0: %d\n", 3122eb6f0de0SAdrian Chadd __func__, atid->hwq_depth); 3123eb6f0de0SAdrian Chadd 3124eb6f0de0SAdrian Chadd /* 3125eb6f0de0SAdrian Chadd * Punt cleanup to the relevant function, not our problem now 3126eb6f0de0SAdrian Chadd */ 3127eb6f0de0SAdrian Chadd if (atid->cleanup_inprogress) { 3128eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3129eb6f0de0SAdrian Chadd ath_tx_comp_cleanup_aggr(sc, bf_first); 3130eb6f0de0SAdrian Chadd return; 3131eb6f0de0SAdrian Chadd } 3132eb6f0de0SAdrian Chadd 3133eb6f0de0SAdrian Chadd /* 3134eb6f0de0SAdrian Chadd * Take a copy; this may be needed -after- bf_first 3135eb6f0de0SAdrian Chadd * has been completed and freed. 3136eb6f0de0SAdrian Chadd */ 3137eb6f0de0SAdrian Chadd ts = bf_first->bf_status.ds_txstat; 3138eb6f0de0SAdrian Chadd /* 3139eb6f0de0SAdrian Chadd * XXX for now, use the first frame in the aggregate for 3140eb6f0de0SAdrian Chadd * XXX rate control completion; it's at least consistent. 3141eb6f0de0SAdrian Chadd */ 3142eb6f0de0SAdrian Chadd pktlen = bf_first->bf_state.bfs_pktlen; 3143eb6f0de0SAdrian Chadd 3144eb6f0de0SAdrian Chadd /* 3145eb6f0de0SAdrian Chadd * handle errors first 3146eb6f0de0SAdrian Chadd */ 3147eb6f0de0SAdrian Chadd if (ts.ts_status & HAL_TXERR_XRETRY) { 3148eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3149eb6f0de0SAdrian Chadd ath_tx_comp_aggr_error(sc, bf_first, atid); 3150eb6f0de0SAdrian Chadd return; 3151eb6f0de0SAdrian Chadd } 3152eb6f0de0SAdrian Chadd 3153eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_q); 3154eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_cq); 3155eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid); 3156eb6f0de0SAdrian Chadd 3157eb6f0de0SAdrian Chadd /* 3158eb6f0de0SAdrian Chadd * extract starting sequence and block-ack bitmap 3159eb6f0de0SAdrian Chadd */ 3160eb6f0de0SAdrian Chadd /* XXX endian-ness of seq_st, ba? */ 3161eb6f0de0SAdrian Chadd seq_st = ts.ts_seqnum; 3162eb6f0de0SAdrian Chadd hasba = !! (ts.ts_flags & HAL_TX_BA); 3163eb6f0de0SAdrian Chadd tx_ok = (ts.ts_status == 0); 3164eb6f0de0SAdrian Chadd isaggr = bf_first->bf_state.bfs_aggr; 3165eb6f0de0SAdrian Chadd ba[0] = ts.ts_ba_low; 3166eb6f0de0SAdrian Chadd ba[1] = ts.ts_ba_high; 3167eb6f0de0SAdrian Chadd 3168eb6f0de0SAdrian Chadd /* 3169eb6f0de0SAdrian Chadd * Copy the TX completion status and the rate control 3170eb6f0de0SAdrian Chadd * series from the first descriptor, as it may be freed 3171eb6f0de0SAdrian Chadd * before the rate control code can get its grubby fingers 3172eb6f0de0SAdrian Chadd * into things. 3173eb6f0de0SAdrian Chadd */ 3174eb6f0de0SAdrian Chadd memcpy(rc, bf_first->bf_state.bfs_rc, sizeof(rc)); 3175eb6f0de0SAdrian Chadd 3176eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3177*d4365d16SAdrian Chadd "%s: txa_start=%d, tx_ok=%d, status=%.8x, flags=%.8x, " 3178*d4365d16SAdrian Chadd "isaggr=%d, seq_st=%d, hasba=%d, ba=%.8x, %.8x\n", 3179eb6f0de0SAdrian Chadd __func__, tap->txa_start, tx_ok, ts.ts_status, ts.ts_flags, 3180eb6f0de0SAdrian Chadd isaggr, seq_st, hasba, ba[0], ba[1]); 3181eb6f0de0SAdrian Chadd 3182eb6f0de0SAdrian Chadd /* Occasionally, the MAC sends a tx status for the wrong TID. */ 3183eb6f0de0SAdrian Chadd if (tid != ts.ts_tid) { 3184eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: tid %d != hw tid %d\n", 3185eb6f0de0SAdrian Chadd __func__, tid, ts.ts_tid); 3186eb6f0de0SAdrian Chadd tx_ok = 0; 3187eb6f0de0SAdrian Chadd } 3188eb6f0de0SAdrian Chadd 3189eb6f0de0SAdrian Chadd /* AR5416 BA bug; this requires an interface reset */ 3190eb6f0de0SAdrian Chadd if (isaggr && tx_ok && (! hasba)) { 3191eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3192*d4365d16SAdrian Chadd "%s: AR5416 bug: hasba=%d; txok=%d, isaggr=%d, " 3193*d4365d16SAdrian Chadd "seq_st=%d\n", 3194eb6f0de0SAdrian Chadd __func__, hasba, tx_ok, isaggr, seq_st); 3195eb6f0de0SAdrian Chadd /* XXX TODO: schedule an interface reset */ 3196eb6f0de0SAdrian Chadd } 3197eb6f0de0SAdrian Chadd 3198eb6f0de0SAdrian Chadd /* 3199eb6f0de0SAdrian Chadd * Walk the list of frames, figure out which ones were correctly 3200eb6f0de0SAdrian Chadd * sent and which weren't. 3201eb6f0de0SAdrian Chadd */ 3202eb6f0de0SAdrian Chadd bf = bf_first; 3203eb6f0de0SAdrian Chadd nf = bf_first->bf_state.bfs_nframes; 3204eb6f0de0SAdrian Chadd 3205eb6f0de0SAdrian Chadd /* bf_first is going to be invalid once this list is walked */ 3206eb6f0de0SAdrian Chadd bf_first = NULL; 3207eb6f0de0SAdrian Chadd 3208eb6f0de0SAdrian Chadd /* 3209eb6f0de0SAdrian Chadd * Walk the list of completed frames and determine 3210eb6f0de0SAdrian Chadd * which need to be completed and which need to be 3211eb6f0de0SAdrian Chadd * retransmitted. 3212eb6f0de0SAdrian Chadd * 3213eb6f0de0SAdrian Chadd * For completed frames, the completion functions need 3214eb6f0de0SAdrian Chadd * to be called at the end of this function as the last 3215eb6f0de0SAdrian Chadd * node reference may free the node. 3216eb6f0de0SAdrian Chadd * 3217eb6f0de0SAdrian Chadd * Finally, since the TXQ lock can't be held during the 3218eb6f0de0SAdrian Chadd * completion callback (to avoid lock recursion), 3219eb6f0de0SAdrian Chadd * the completion calls have to be done outside of the 3220eb6f0de0SAdrian Chadd * lock. 3221eb6f0de0SAdrian Chadd */ 3222eb6f0de0SAdrian Chadd while (bf) { 3223eb6f0de0SAdrian Chadd nframes++; 3224*d4365d16SAdrian Chadd ba_index = ATH_BA_INDEX(seq_st, 3225*d4365d16SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno)); 3226eb6f0de0SAdrian Chadd bf_next = bf->bf_next; 3227eb6f0de0SAdrian Chadd bf->bf_next = NULL; /* Remove it from the aggr list */ 3228eb6f0de0SAdrian Chadd 3229eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3230eb6f0de0SAdrian Chadd "%s: checking bf=%p seqno=%d; ack=%d\n", 3231eb6f0de0SAdrian Chadd __func__, bf, SEQNO(bf->bf_state.bfs_seqno), 3232eb6f0de0SAdrian Chadd ATH_BA_ISSET(ba, ba_index)); 3233eb6f0de0SAdrian Chadd 3234eb6f0de0SAdrian Chadd if (tx_ok && ATH_BA_ISSET(ba, ba_index)) { 32352d3d4776SAdrian Chadd sc->sc_stats.ast_tx_aggr_ok++; 3236eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, atid, bf); 3237eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 3238eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 3239eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3240eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 3241eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 3242eb6f0de0SAdrian Chadd bf->bf_next = NULL; 3243eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(&bf_cq, bf, bf_list); 3244eb6f0de0SAdrian Chadd } else { 32452d3d4776SAdrian Chadd sc->sc_stats.ast_tx_aggr_fail++; 3246eb6f0de0SAdrian Chadd if (ath_tx_retry_subframe(sc, bf, &bf_q)) { 3247eb6f0de0SAdrian Chadd drops++; 3248eb6f0de0SAdrian Chadd bf->bf_next = NULL; 3249eb6f0de0SAdrian Chadd TAILQ_INSERT_TAIL(&bf_cq, bf, bf_list); 3250eb6f0de0SAdrian Chadd } 3251eb6f0de0SAdrian Chadd nbad++; 3252eb6f0de0SAdrian Chadd } 3253eb6f0de0SAdrian Chadd bf = bf_next; 3254eb6f0de0SAdrian Chadd } 3255eb6f0de0SAdrian Chadd 3256eb6f0de0SAdrian Chadd /* 3257eb6f0de0SAdrian Chadd * Now that the BAW updates have been done, unlock 3258eb6f0de0SAdrian Chadd * 3259eb6f0de0SAdrian Chadd * txseq is grabbed before the lock is released so we 3260eb6f0de0SAdrian Chadd * have a consistent view of what -was- in the BAW. 3261eb6f0de0SAdrian Chadd * Anything after this point will not yet have been 3262eb6f0de0SAdrian Chadd * TXed. 3263eb6f0de0SAdrian Chadd */ 3264eb6f0de0SAdrian Chadd txseq = tap->txa_start; 3265eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3266eb6f0de0SAdrian Chadd 3267eb6f0de0SAdrian Chadd if (nframes != nf) 3268eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3269eb6f0de0SAdrian Chadd "%s: num frames seen=%d; bf nframes=%d\n", 3270eb6f0de0SAdrian Chadd __func__, nframes, nf); 3271eb6f0de0SAdrian Chadd 3272eb6f0de0SAdrian Chadd /* 3273eb6f0de0SAdrian Chadd * Now we know how many frames were bad, call the rate 3274eb6f0de0SAdrian Chadd * control code. 3275eb6f0de0SAdrian Chadd */ 3276eb6f0de0SAdrian Chadd if (fail == 0) 3277*d4365d16SAdrian Chadd ath_tx_update_ratectrl(sc, ni, rc, &ts, pktlen, nframes, 3278*d4365d16SAdrian Chadd nbad); 3279eb6f0de0SAdrian Chadd 3280eb6f0de0SAdrian Chadd /* 3281eb6f0de0SAdrian Chadd * send bar if we dropped any frames 3282eb6f0de0SAdrian Chadd */ 3283eb6f0de0SAdrian Chadd if (drops) { 3284eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3285eb6f0de0SAdrian Chadd "%s: TID %d: send BAR; seq %d\n", __func__, tid, txseq); 3286eb6f0de0SAdrian Chadd /* XXX TODO: send BAR */ 3287eb6f0de0SAdrian Chadd } 3288eb6f0de0SAdrian Chadd 3289eb6f0de0SAdrian Chadd /* Prepend all frames to the beginning of the queue */ 3290eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3291eb6f0de0SAdrian Chadd while ((bf = TAILQ_LAST(&bf_q, ath_bufhead_s)) != NULL) { 3292eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_q, bf, bf_list); 3293eb6f0de0SAdrian Chadd ATH_TXQ_INSERT_HEAD(atid, bf, bf_list); 3294eb6f0de0SAdrian Chadd } 3295eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, atid); 3296eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3297eb6f0de0SAdrian Chadd 3298eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3299eb6f0de0SAdrian Chadd "%s: txa_start now %d\n", __func__, tap->txa_start); 3300eb6f0de0SAdrian Chadd 3301eb6f0de0SAdrian Chadd /* Do deferred completion */ 3302eb6f0de0SAdrian Chadd while ((bf = TAILQ_FIRST(&bf_cq)) != NULL) { 3303eb6f0de0SAdrian Chadd TAILQ_REMOVE(&bf_cq, bf, bf_list); 3304eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, 0); 3305eb6f0de0SAdrian Chadd } 3306eb6f0de0SAdrian Chadd } 3307eb6f0de0SAdrian Chadd 3308eb6f0de0SAdrian Chadd /* 3309eb6f0de0SAdrian Chadd * Handle completion of unaggregated frames in an ADDBA 3310eb6f0de0SAdrian Chadd * session. 3311eb6f0de0SAdrian Chadd * 3312eb6f0de0SAdrian Chadd * Fail is set to 1 if the entry is being freed via a call to 3313eb6f0de0SAdrian Chadd * ath_tx_draintxq(). 3314eb6f0de0SAdrian Chadd */ 3315eb6f0de0SAdrian Chadd static void 3316eb6f0de0SAdrian Chadd ath_tx_aggr_comp_unaggr(struct ath_softc *sc, struct ath_buf *bf, int fail) 3317eb6f0de0SAdrian Chadd { 3318eb6f0de0SAdrian Chadd struct ieee80211_node *ni = bf->bf_node; 3319eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3320eb6f0de0SAdrian Chadd int tid = bf->bf_state.bfs_tid; 3321eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3322eb6f0de0SAdrian Chadd struct ath_tx_status *ts = &bf->bf_status.ds_txstat; 3323eb6f0de0SAdrian Chadd 3324eb6f0de0SAdrian Chadd /* 3325eb6f0de0SAdrian Chadd * Update rate control status here, before we possibly 3326eb6f0de0SAdrian Chadd * punt to retry or cleanup. 3327eb6f0de0SAdrian Chadd * 3328eb6f0de0SAdrian Chadd * Do it outside of the TXQ lock. 3329eb6f0de0SAdrian Chadd */ 3330eb6f0de0SAdrian Chadd if (fail == 0 && ((bf->bf_txflags & HAL_TXDESC_NOACK) == 0)) 3331eb6f0de0SAdrian Chadd ath_tx_update_ratectrl(sc, ni, bf->bf_state.bfs_rc, 3332eb6f0de0SAdrian Chadd &bf->bf_status.ds_txstat, 3333eb6f0de0SAdrian Chadd bf->bf_state.bfs_pktlen, 3334eb6f0de0SAdrian Chadd 1, (ts->ts_status == 0) ? 0 : 1); 3335eb6f0de0SAdrian Chadd 3336eb6f0de0SAdrian Chadd /* 3337eb6f0de0SAdrian Chadd * This is called early so atid->hwq_depth can be tracked. 3338eb6f0de0SAdrian Chadd * This unfortunately means that it's released and regrabbed 3339eb6f0de0SAdrian Chadd * during retry and cleanup. That's rather inefficient. 3340eb6f0de0SAdrian Chadd */ 3341eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3342eb6f0de0SAdrian Chadd 3343eb6f0de0SAdrian Chadd if (tid == IEEE80211_NONQOS_TID) 3344eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: TID=16!\n", __func__); 3345eb6f0de0SAdrian Chadd 3346*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, 3347*d4365d16SAdrian Chadd "%s: bf=%p: tid=%d, hwq_depth=%d, seqno=%d\n", 3348*d4365d16SAdrian Chadd __func__, bf, bf->bf_state.bfs_tid, atid->hwq_depth, 3349*d4365d16SAdrian Chadd SEQNO(bf->bf_state.bfs_seqno)); 3350eb6f0de0SAdrian Chadd 3351eb6f0de0SAdrian Chadd atid->hwq_depth--; 3352eb6f0de0SAdrian Chadd if (atid->hwq_depth < 0) 3353eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: hwq_depth < 0: %d\n", 3354eb6f0de0SAdrian Chadd __func__, atid->hwq_depth); 3355eb6f0de0SAdrian Chadd 3356eb6f0de0SAdrian Chadd /* 3357eb6f0de0SAdrian Chadd * If a cleanup is in progress, punt to comp_cleanup; 3358eb6f0de0SAdrian Chadd * rather than handling it here. It's thus their 3359eb6f0de0SAdrian Chadd * responsibility to clean up, call the completion 3360eb6f0de0SAdrian Chadd * function in net80211, etc. 3361eb6f0de0SAdrian Chadd */ 3362eb6f0de0SAdrian Chadd if (atid->cleanup_inprogress) { 3363eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3364*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: cleanup_unaggr\n", 3365*d4365d16SAdrian Chadd __func__); 3366eb6f0de0SAdrian Chadd ath_tx_comp_cleanup_unaggr(sc, bf); 3367eb6f0de0SAdrian Chadd return; 3368eb6f0de0SAdrian Chadd } 3369eb6f0de0SAdrian Chadd 3370eb6f0de0SAdrian Chadd /* 3371eb6f0de0SAdrian Chadd * Don't bother with the retry check if all frames 3372eb6f0de0SAdrian Chadd * are being failed (eg during queue deletion.) 3373eb6f0de0SAdrian Chadd */ 3374eb6f0de0SAdrian Chadd if (fail == 0 && ts->ts_status & HAL_TXERR_XRETRY) { 3375eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3376*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: retry_unaggr\n", 3377*d4365d16SAdrian Chadd __func__); 3378eb6f0de0SAdrian Chadd ath_tx_aggr_retry_unaggr(sc, bf); 3379eb6f0de0SAdrian Chadd return; 3380eb6f0de0SAdrian Chadd } 3381eb6f0de0SAdrian Chadd 3382eb6f0de0SAdrian Chadd /* Success? Complete */ 3383eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: TID=%d, seqno %d\n", 3384eb6f0de0SAdrian Chadd __func__, tid, SEQNO(bf->bf_state.bfs_seqno)); 3385eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_dobaw) { 3386eb6f0de0SAdrian Chadd ath_tx_update_baw(sc, an, atid, bf); 3387eb6f0de0SAdrian Chadd bf->bf_state.bfs_dobaw = 0; 3388eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_addedbaw) 3389eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, 3390eb6f0de0SAdrian Chadd "%s: wasn't added: seqno %d\n", 3391eb6f0de0SAdrian Chadd __func__, SEQNO(bf->bf_state.bfs_seqno)); 3392eb6f0de0SAdrian Chadd } 3393eb6f0de0SAdrian Chadd 3394eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3395eb6f0de0SAdrian Chadd 3396eb6f0de0SAdrian Chadd ath_tx_default_comp(sc, bf, fail); 3397eb6f0de0SAdrian Chadd /* bf is freed at this point */ 3398eb6f0de0SAdrian Chadd } 3399eb6f0de0SAdrian Chadd 3400eb6f0de0SAdrian Chadd void 3401eb6f0de0SAdrian Chadd ath_tx_aggr_comp(struct ath_softc *sc, struct ath_buf *bf, int fail) 3402eb6f0de0SAdrian Chadd { 3403eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_aggr) 3404eb6f0de0SAdrian Chadd ath_tx_aggr_comp_aggr(sc, bf, fail); 3405eb6f0de0SAdrian Chadd else 3406eb6f0de0SAdrian Chadd ath_tx_aggr_comp_unaggr(sc, bf, fail); 3407eb6f0de0SAdrian Chadd } 3408eb6f0de0SAdrian Chadd 3409eb6f0de0SAdrian Chadd /* 3410eb6f0de0SAdrian Chadd * Schedule some packets from the given node/TID to the hardware. 3411eb6f0de0SAdrian Chadd * 3412eb6f0de0SAdrian Chadd * This is the aggregate version. 3413eb6f0de0SAdrian Chadd */ 3414eb6f0de0SAdrian Chadd void 3415eb6f0de0SAdrian Chadd ath_tx_tid_hw_queue_aggr(struct ath_softc *sc, struct ath_node *an, 3416eb6f0de0SAdrian Chadd struct ath_tid *tid) 3417eb6f0de0SAdrian Chadd { 3418eb6f0de0SAdrian Chadd struct ath_buf *bf; 3419eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[tid->ac]; 3420eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 3421eb6f0de0SAdrian Chadd struct ieee80211_node *ni = &an->an_node; 3422eb6f0de0SAdrian Chadd ATH_AGGR_STATUS status; 3423eb6f0de0SAdrian Chadd ath_bufhead bf_q; 3424eb6f0de0SAdrian Chadd 3425eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: tid=%d\n", __func__, tid->tid); 3426eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 3427eb6f0de0SAdrian Chadd 3428eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid->tid); 3429eb6f0de0SAdrian Chadd 3430eb6f0de0SAdrian Chadd if (tid->tid == IEEE80211_NONQOS_TID) 3431eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: called for TID=NONQOS_TID?\n", 3432eb6f0de0SAdrian Chadd __func__); 3433eb6f0de0SAdrian Chadd 3434eb6f0de0SAdrian Chadd for (;;) { 3435eb6f0de0SAdrian Chadd status = ATH_AGGR_DONE; 3436eb6f0de0SAdrian Chadd 3437eb6f0de0SAdrian Chadd /* 3438eb6f0de0SAdrian Chadd * If the upper layer has paused the TID, don't 3439eb6f0de0SAdrian Chadd * queue any further packets. 3440eb6f0de0SAdrian Chadd * 3441eb6f0de0SAdrian Chadd * This can also occur from the completion task because 3442eb6f0de0SAdrian Chadd * of packet loss; but as its serialised with this code, 3443eb6f0de0SAdrian Chadd * it won't "appear" half way through queuing packets. 3444eb6f0de0SAdrian Chadd */ 3445eb6f0de0SAdrian Chadd if (tid->paused) 3446eb6f0de0SAdrian Chadd break; 3447eb6f0de0SAdrian Chadd 3448eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&tid->axq_q); 3449eb6f0de0SAdrian Chadd if (bf == NULL) { 3450eb6f0de0SAdrian Chadd break; 3451eb6f0de0SAdrian Chadd } 3452eb6f0de0SAdrian Chadd 3453eb6f0de0SAdrian Chadd /* 3454eb6f0de0SAdrian Chadd * If the packet doesn't fall within the BAW (eg a NULL 3455eb6f0de0SAdrian Chadd * data frame), schedule it directly; continue. 3456eb6f0de0SAdrian Chadd */ 3457eb6f0de0SAdrian Chadd if (! bf->bf_state.bfs_dobaw) { 3458*d4365d16SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3459*d4365d16SAdrian Chadd "%s: non-baw packet\n", 3460eb6f0de0SAdrian Chadd __func__); 3461eb6f0de0SAdrian Chadd ATH_TXQ_REMOVE(tid, bf, bf_list); 3462eb6f0de0SAdrian Chadd bf->bf_state.bfs_aggr = 0; 3463eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(sc, bf); 3464eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 3465eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 3466eb6f0de0SAdrian Chadd ath_tx_setds(sc, bf); 3467eb6f0de0SAdrian Chadd ath_tx_chaindesclist(sc, bf); 3468eb6f0de0SAdrian Chadd ath_hal_clr11n_aggr(sc->sc_ah, bf->bf_desc); 3469eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, ni, bf); 3470eb6f0de0SAdrian Chadd 3471eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_nonbaw_pkt++; 3472eb6f0de0SAdrian Chadd 3473eb6f0de0SAdrian Chadd /* Queue the packet; continue */ 3474eb6f0de0SAdrian Chadd goto queuepkt; 3475eb6f0de0SAdrian Chadd } 3476eb6f0de0SAdrian Chadd 3477eb6f0de0SAdrian Chadd TAILQ_INIT(&bf_q); 3478eb6f0de0SAdrian Chadd 3479eb6f0de0SAdrian Chadd /* 3480eb6f0de0SAdrian Chadd * Do a rate control lookup on the first frame in the 3481eb6f0de0SAdrian Chadd * list. The rate control code needs that to occur 3482eb6f0de0SAdrian Chadd * before it can determine whether to TX. 3483eb6f0de0SAdrian Chadd * It's inaccurate because the rate control code doesn't 3484eb6f0de0SAdrian Chadd * really "do" aggregate lookups, so it only considers 3485eb6f0de0SAdrian Chadd * the size of the first frame. 3486eb6f0de0SAdrian Chadd */ 3487eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(sc, bf); 3488eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[3].rix = 0; 3489eb6f0de0SAdrian Chadd bf->bf_state.bfs_rc[3].tries = 0; 3490eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 3491eb6f0de0SAdrian Chadd 3492eb6f0de0SAdrian Chadd status = ath_tx_form_aggr(sc, an, tid, &bf_q); 3493eb6f0de0SAdrian Chadd 3494eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3495eb6f0de0SAdrian Chadd "%s: ath_tx_form_aggr() status=%d\n", __func__, status); 3496eb6f0de0SAdrian Chadd 3497eb6f0de0SAdrian Chadd /* 3498eb6f0de0SAdrian Chadd * No frames to be picked up - out of BAW 3499eb6f0de0SAdrian Chadd */ 3500eb6f0de0SAdrian Chadd if (TAILQ_EMPTY(&bf_q)) 3501eb6f0de0SAdrian Chadd break; 3502eb6f0de0SAdrian Chadd 3503eb6f0de0SAdrian Chadd /* 3504eb6f0de0SAdrian Chadd * This assumes that the descriptor list in the ath_bufhead 3505eb6f0de0SAdrian Chadd * are already linked together via bf_next pointers. 3506eb6f0de0SAdrian Chadd */ 3507eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&bf_q); 3508eb6f0de0SAdrian Chadd 3509eb6f0de0SAdrian Chadd /* 3510eb6f0de0SAdrian Chadd * If it's the only frame send as non-aggregate 3511eb6f0de0SAdrian Chadd * assume that ath_tx_form_aggr() has checked 3512eb6f0de0SAdrian Chadd * whether it's in the BAW and added it appropriately. 3513eb6f0de0SAdrian Chadd */ 3514eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_nframes == 1) { 3515eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3516eb6f0de0SAdrian Chadd "%s: single-frame aggregate\n", __func__); 3517eb6f0de0SAdrian Chadd bf->bf_state.bfs_aggr = 0; 3518eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 3519eb6f0de0SAdrian Chadd ath_tx_setds(sc, bf); 3520eb6f0de0SAdrian Chadd ath_tx_chaindesclist(sc, bf); 3521eb6f0de0SAdrian Chadd ath_hal_clr11n_aggr(sc->sc_ah, bf->bf_desc); 3522eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, ni, bf); 3523eb6f0de0SAdrian Chadd if (status == ATH_AGGR_BAW_CLOSED) 3524eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_baw_closed_single_pkt++; 3525eb6f0de0SAdrian Chadd else 3526eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_single_pkt++; 3527eb6f0de0SAdrian Chadd } else { 3528eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_AGGR, 3529*d4365d16SAdrian Chadd "%s: multi-frame aggregate: %d frames, " 3530*d4365d16SAdrian Chadd "length %d\n", 3531eb6f0de0SAdrian Chadd __func__, bf->bf_state.bfs_nframes, 3532eb6f0de0SAdrian Chadd bf->bf_state.bfs_al); 3533eb6f0de0SAdrian Chadd bf->bf_state.bfs_aggr = 1; 3534eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_pkts[bf->bf_state.bfs_nframes]++; 3535eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_aggr_pkt++; 3536eb6f0de0SAdrian Chadd 3537eb6f0de0SAdrian Chadd /* 3538eb6f0de0SAdrian Chadd * Update the rate and rtscts information based on the 3539eb6f0de0SAdrian Chadd * rate decision made by the rate control code; 3540eb6f0de0SAdrian Chadd * the first frame in the aggregate needs it. 3541eb6f0de0SAdrian Chadd */ 3542eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 3543eb6f0de0SAdrian Chadd 3544eb6f0de0SAdrian Chadd /* 3545eb6f0de0SAdrian Chadd * Setup the relevant descriptor fields 3546eb6f0de0SAdrian Chadd * for aggregation. The first descriptor 3547eb6f0de0SAdrian Chadd * already points to the rest in the chain. 3548eb6f0de0SAdrian Chadd */ 3549eb6f0de0SAdrian Chadd ath_tx_setds_11n(sc, bf); 3550eb6f0de0SAdrian Chadd 3551eb6f0de0SAdrian Chadd /* 3552eb6f0de0SAdrian Chadd * setup first desc with rate and aggr info 3553eb6f0de0SAdrian Chadd */ 3554eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, ni, bf); 3555eb6f0de0SAdrian Chadd } 3556eb6f0de0SAdrian Chadd queuepkt: 3557eb6f0de0SAdrian Chadd //txq = bf->bf_state.bfs_txq; 3558eb6f0de0SAdrian Chadd 3559eb6f0de0SAdrian Chadd /* Set completion handler, multi-frame aggregate or not */ 3560eb6f0de0SAdrian Chadd bf->bf_comp = ath_tx_aggr_comp; 3561eb6f0de0SAdrian Chadd 3562eb6f0de0SAdrian Chadd if (bf->bf_state.bfs_tid == IEEE80211_NONQOS_TID) 3563eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: TID=16?\n", __func__); 3564eb6f0de0SAdrian Chadd 3565eb6f0de0SAdrian Chadd /* Punt to txq */ 3566eb6f0de0SAdrian Chadd ath_tx_handoff(sc, txq, bf); 3567eb6f0de0SAdrian Chadd 3568eb6f0de0SAdrian Chadd /* Track outstanding buffer count to hardware */ 3569eb6f0de0SAdrian Chadd /* aggregates are "one" buffer */ 3570eb6f0de0SAdrian Chadd tid->hwq_depth++; 3571eb6f0de0SAdrian Chadd 3572eb6f0de0SAdrian Chadd /* 3573eb6f0de0SAdrian Chadd * Break out if ath_tx_form_aggr() indicated 3574eb6f0de0SAdrian Chadd * there can't be any further progress (eg BAW is full.) 3575eb6f0de0SAdrian Chadd * Checking for an empty txq is done above. 3576eb6f0de0SAdrian Chadd * 3577eb6f0de0SAdrian Chadd * XXX locking on txq here? 3578eb6f0de0SAdrian Chadd */ 3579eb6f0de0SAdrian Chadd if (txq->axq_aggr_depth >= sc->sc_hwq_limit || 3580eb6f0de0SAdrian Chadd status == ATH_AGGR_BAW_CLOSED) 3581eb6f0de0SAdrian Chadd break; 3582eb6f0de0SAdrian Chadd } 3583eb6f0de0SAdrian Chadd } 3584eb6f0de0SAdrian Chadd 3585eb6f0de0SAdrian Chadd /* 3586eb6f0de0SAdrian Chadd * Schedule some packets from the given node/TID to the hardware. 3587eb6f0de0SAdrian Chadd */ 3588eb6f0de0SAdrian Chadd void 3589eb6f0de0SAdrian Chadd ath_tx_tid_hw_queue_norm(struct ath_softc *sc, struct ath_node *an, 3590eb6f0de0SAdrian Chadd struct ath_tid *tid) 3591eb6f0de0SAdrian Chadd { 3592eb6f0de0SAdrian Chadd struct ath_buf *bf; 3593eb6f0de0SAdrian Chadd struct ath_txq *txq = sc->sc_ac2q[tid->ac]; 3594eb6f0de0SAdrian Chadd struct ieee80211_node *ni = &an->an_node; 3595eb6f0de0SAdrian Chadd 3596eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: node %p: TID %d: called\n", 3597eb6f0de0SAdrian Chadd __func__, an, tid->tid); 3598eb6f0de0SAdrian Chadd 3599eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 3600eb6f0de0SAdrian Chadd 3601eb6f0de0SAdrian Chadd /* Check - is AMPDU pending or running? then print out something */ 3602eb6f0de0SAdrian Chadd if (ath_tx_ampdu_pending(sc, an, tid->tid)) 3603eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: tid=%d, ampdu pending?\n", 3604eb6f0de0SAdrian Chadd __func__, tid->tid); 3605eb6f0de0SAdrian Chadd if (ath_tx_ampdu_running(sc, an, tid->tid)) 3606eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: tid=%d, ampdu running?\n", 3607eb6f0de0SAdrian Chadd __func__, tid->tid); 3608eb6f0de0SAdrian Chadd 3609eb6f0de0SAdrian Chadd for (;;) { 3610eb6f0de0SAdrian Chadd 3611eb6f0de0SAdrian Chadd /* 3612eb6f0de0SAdrian Chadd * If the upper layers have paused the TID, don't 3613eb6f0de0SAdrian Chadd * queue any further packets. 3614eb6f0de0SAdrian Chadd */ 3615eb6f0de0SAdrian Chadd if (tid->paused) 3616eb6f0de0SAdrian Chadd break; 3617eb6f0de0SAdrian Chadd 3618eb6f0de0SAdrian Chadd bf = TAILQ_FIRST(&tid->axq_q); 3619eb6f0de0SAdrian Chadd if (bf == NULL) { 3620eb6f0de0SAdrian Chadd break; 3621eb6f0de0SAdrian Chadd } 3622eb6f0de0SAdrian Chadd 3623eb6f0de0SAdrian Chadd ATH_TXQ_REMOVE(tid, bf, bf_list); 3624eb6f0de0SAdrian Chadd 3625eb6f0de0SAdrian Chadd KASSERT(txq == bf->bf_state.bfs_txq, ("txqs not equal!\n")); 3626eb6f0de0SAdrian Chadd 3627eb6f0de0SAdrian Chadd /* Sanity check! */ 3628eb6f0de0SAdrian Chadd if (tid->tid != bf->bf_state.bfs_tid) { 3629eb6f0de0SAdrian Chadd device_printf(sc->sc_dev, "%s: bfs_tid %d !=" 3630eb6f0de0SAdrian Chadd " tid %d\n", 3631eb6f0de0SAdrian Chadd __func__, bf->bf_state.bfs_tid, tid->tid); 3632eb6f0de0SAdrian Chadd } 3633eb6f0de0SAdrian Chadd /* Normal completion handler */ 3634eb6f0de0SAdrian Chadd bf->bf_comp = ath_tx_normal_comp; 3635eb6f0de0SAdrian Chadd 3636eb6f0de0SAdrian Chadd /* Program descriptors + rate control */ 3637eb6f0de0SAdrian Chadd ath_tx_do_ratelookup(sc, bf); 3638eb6f0de0SAdrian Chadd ath_tx_rate_fill_rcflags(sc, bf); 3639eb6f0de0SAdrian Chadd ath_tx_set_rtscts(sc, bf); 3640eb6f0de0SAdrian Chadd ath_tx_setds(sc, bf); 3641eb6f0de0SAdrian Chadd ath_tx_chaindesclist(sc, bf); 3642eb6f0de0SAdrian Chadd ath_tx_set_ratectrl(sc, ni, bf); 3643eb6f0de0SAdrian Chadd 3644eb6f0de0SAdrian Chadd /* Track outstanding buffer count to hardware */ 3645eb6f0de0SAdrian Chadd /* aggregates are "one" buffer */ 3646eb6f0de0SAdrian Chadd tid->hwq_depth++; 3647eb6f0de0SAdrian Chadd 3648eb6f0de0SAdrian Chadd /* Punt to hardware or software txq */ 3649eb6f0de0SAdrian Chadd ath_tx_handoff(sc, txq, bf); 3650eb6f0de0SAdrian Chadd } 3651eb6f0de0SAdrian Chadd } 3652eb6f0de0SAdrian Chadd 3653eb6f0de0SAdrian Chadd /* 3654eb6f0de0SAdrian Chadd * Schedule some packets to the given hardware queue. 3655eb6f0de0SAdrian Chadd * 3656eb6f0de0SAdrian Chadd * This function walks the list of TIDs (ie, ath_node TIDs 3657eb6f0de0SAdrian Chadd * with queued traffic) and attempts to schedule traffic 3658eb6f0de0SAdrian Chadd * from them. 3659eb6f0de0SAdrian Chadd * 3660eb6f0de0SAdrian Chadd * TID scheduling is implemented as a FIFO, with TIDs being 3661eb6f0de0SAdrian Chadd * added to the end of the queue after some frames have been 3662eb6f0de0SAdrian Chadd * scheduled. 3663eb6f0de0SAdrian Chadd */ 3664eb6f0de0SAdrian Chadd void 3665eb6f0de0SAdrian Chadd ath_txq_sched(struct ath_softc *sc, struct ath_txq *txq) 3666eb6f0de0SAdrian Chadd { 3667eb6f0de0SAdrian Chadd struct ath_tid *tid, *next, *last; 3668eb6f0de0SAdrian Chadd 3669eb6f0de0SAdrian Chadd ATH_TXQ_LOCK_ASSERT(txq); 3670eb6f0de0SAdrian Chadd 3671eb6f0de0SAdrian Chadd /* 3672eb6f0de0SAdrian Chadd * Don't schedule if the hardware queue is busy. 3673eb6f0de0SAdrian Chadd * This (hopefully) gives some more time to aggregate 3674eb6f0de0SAdrian Chadd * some packets in the aggregation queue. 3675eb6f0de0SAdrian Chadd */ 3676eb6f0de0SAdrian Chadd if (txq->axq_aggr_depth >= sc->sc_hwq_limit) { 3677eb6f0de0SAdrian Chadd sc->sc_aggr_stats.aggr_sched_nopkt++; 3678eb6f0de0SAdrian Chadd return; 3679eb6f0de0SAdrian Chadd } 3680eb6f0de0SAdrian Chadd 3681eb6f0de0SAdrian Chadd last = TAILQ_LAST(&txq->axq_tidq, axq_t_s); 3682eb6f0de0SAdrian Chadd 3683eb6f0de0SAdrian Chadd TAILQ_FOREACH_SAFE(tid, &txq->axq_tidq, axq_qelem, next) { 3684eb6f0de0SAdrian Chadd /* 3685eb6f0de0SAdrian Chadd * Suspend paused queues here; they'll be resumed 3686eb6f0de0SAdrian Chadd * once the addba completes or times out. 3687eb6f0de0SAdrian Chadd */ 3688eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX, "%s: tid=%d, paused=%d\n", 3689eb6f0de0SAdrian Chadd __func__, tid->tid, tid->paused); 3690eb6f0de0SAdrian Chadd ath_tx_tid_unsched(sc, tid); 3691eb6f0de0SAdrian Chadd if (tid->paused) { 3692eb6f0de0SAdrian Chadd continue; 3693eb6f0de0SAdrian Chadd } 3694eb6f0de0SAdrian Chadd if (ath_tx_ampdu_running(sc, tid->an, tid->tid)) 3695eb6f0de0SAdrian Chadd ath_tx_tid_hw_queue_aggr(sc, tid->an, tid); 3696eb6f0de0SAdrian Chadd else 3697eb6f0de0SAdrian Chadd ath_tx_tid_hw_queue_norm(sc, tid->an, tid); 3698eb6f0de0SAdrian Chadd 3699eb6f0de0SAdrian Chadd /* Not empty? Re-schedule */ 3700eb6f0de0SAdrian Chadd if (tid->axq_depth != 0) 3701eb6f0de0SAdrian Chadd ath_tx_tid_sched(sc, tid); 3702eb6f0de0SAdrian Chadd 3703eb6f0de0SAdrian Chadd /* Give the software queue time to aggregate more packets */ 3704eb6f0de0SAdrian Chadd if (txq->axq_aggr_depth >= sc->sc_hwq_limit) { 3705eb6f0de0SAdrian Chadd break; 3706eb6f0de0SAdrian Chadd } 3707eb6f0de0SAdrian Chadd 3708eb6f0de0SAdrian Chadd /* 3709eb6f0de0SAdrian Chadd * If this was the last entry on the original list, stop. 3710eb6f0de0SAdrian Chadd * Otherwise nodes that have been rescheduled onto the end 3711eb6f0de0SAdrian Chadd * of the TID FIFO list will just keep being rescheduled. 3712eb6f0de0SAdrian Chadd */ 3713eb6f0de0SAdrian Chadd if (tid == last) 3714eb6f0de0SAdrian Chadd break; 3715eb6f0de0SAdrian Chadd } 3716eb6f0de0SAdrian Chadd } 3717eb6f0de0SAdrian Chadd 3718eb6f0de0SAdrian Chadd /* 3719eb6f0de0SAdrian Chadd * TX addba handling 3720eb6f0de0SAdrian Chadd */ 3721eb6f0de0SAdrian Chadd 3722eb6f0de0SAdrian Chadd /* 3723eb6f0de0SAdrian Chadd * Return net80211 TID struct pointer, or NULL for none 3724eb6f0de0SAdrian Chadd */ 3725eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu * 3726eb6f0de0SAdrian Chadd ath_tx_get_tx_tid(struct ath_node *an, int tid) 3727eb6f0de0SAdrian Chadd { 3728eb6f0de0SAdrian Chadd struct ieee80211_node *ni = &an->an_node; 3729eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 3730eb6f0de0SAdrian Chadd int ac; 3731eb6f0de0SAdrian Chadd 3732eb6f0de0SAdrian Chadd if (tid == IEEE80211_NONQOS_TID) 3733eb6f0de0SAdrian Chadd return NULL; 3734eb6f0de0SAdrian Chadd 3735eb6f0de0SAdrian Chadd ac = TID_TO_WME_AC(tid); 3736eb6f0de0SAdrian Chadd 3737eb6f0de0SAdrian Chadd tap = &ni->ni_tx_ampdu[ac]; 3738eb6f0de0SAdrian Chadd return tap; 3739eb6f0de0SAdrian Chadd } 3740eb6f0de0SAdrian Chadd 3741eb6f0de0SAdrian Chadd /* 3742eb6f0de0SAdrian Chadd * Is AMPDU-TX running? 3743eb6f0de0SAdrian Chadd */ 3744eb6f0de0SAdrian Chadd static int 3745eb6f0de0SAdrian Chadd ath_tx_ampdu_running(struct ath_softc *sc, struct ath_node *an, int tid) 3746eb6f0de0SAdrian Chadd { 3747eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 3748eb6f0de0SAdrian Chadd 3749eb6f0de0SAdrian Chadd if (tid == IEEE80211_NONQOS_TID) 3750eb6f0de0SAdrian Chadd return 0; 3751eb6f0de0SAdrian Chadd 3752eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid); 3753eb6f0de0SAdrian Chadd if (tap == NULL) 3754eb6f0de0SAdrian Chadd return 0; /* Not valid; default to not running */ 3755eb6f0de0SAdrian Chadd 3756eb6f0de0SAdrian Chadd return !! (tap->txa_flags & IEEE80211_AGGR_RUNNING); 3757eb6f0de0SAdrian Chadd } 3758eb6f0de0SAdrian Chadd 3759eb6f0de0SAdrian Chadd /* 3760eb6f0de0SAdrian Chadd * Is AMPDU-TX negotiation pending? 3761eb6f0de0SAdrian Chadd */ 3762eb6f0de0SAdrian Chadd static int 3763eb6f0de0SAdrian Chadd ath_tx_ampdu_pending(struct ath_softc *sc, struct ath_node *an, int tid) 3764eb6f0de0SAdrian Chadd { 3765eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap; 3766eb6f0de0SAdrian Chadd 3767eb6f0de0SAdrian Chadd if (tid == IEEE80211_NONQOS_TID) 3768eb6f0de0SAdrian Chadd return 0; 3769eb6f0de0SAdrian Chadd 3770eb6f0de0SAdrian Chadd tap = ath_tx_get_tx_tid(an, tid); 3771eb6f0de0SAdrian Chadd if (tap == NULL) 3772eb6f0de0SAdrian Chadd return 0; /* Not valid; default to not pending */ 3773eb6f0de0SAdrian Chadd 3774eb6f0de0SAdrian Chadd return !! (tap->txa_flags & IEEE80211_AGGR_XCHGPEND); 3775eb6f0de0SAdrian Chadd } 3776eb6f0de0SAdrian Chadd 3777eb6f0de0SAdrian Chadd /* 3778eb6f0de0SAdrian Chadd * Is AMPDU-TX pending for the given TID? 3779eb6f0de0SAdrian Chadd */ 3780eb6f0de0SAdrian Chadd 3781eb6f0de0SAdrian Chadd 3782eb6f0de0SAdrian Chadd /* 3783eb6f0de0SAdrian Chadd * Method to handle sending an ADDBA request. 3784eb6f0de0SAdrian Chadd * 3785eb6f0de0SAdrian Chadd * We tap this so the relevant flags can be set to pause the TID 3786eb6f0de0SAdrian Chadd * whilst waiting for the response. 3787eb6f0de0SAdrian Chadd * 3788eb6f0de0SAdrian Chadd * XXX there's no timeout handler we can override? 3789eb6f0de0SAdrian Chadd */ 3790eb6f0de0SAdrian Chadd int 3791eb6f0de0SAdrian Chadd ath_addba_request(struct ieee80211_node *ni, struct ieee80211_tx_ampdu *tap, 3792eb6f0de0SAdrian Chadd int dialogtoken, int baparamset, int batimeout) 3793eb6f0de0SAdrian Chadd { 3794eb6f0de0SAdrian Chadd struct ath_softc *sc = ni->ni_ic->ic_ifp->if_softc; 3795eb6f0de0SAdrian Chadd int tid = WME_AC_TO_TID(tap->txa_ac); 3796eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3797eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3798eb6f0de0SAdrian Chadd 3799eb6f0de0SAdrian Chadd /* 3800eb6f0de0SAdrian Chadd * XXX danger Will Robinson! 3801eb6f0de0SAdrian Chadd * 3802eb6f0de0SAdrian Chadd * Although the taskqueue may be running and scheduling some more 3803eb6f0de0SAdrian Chadd * packets, these should all be _before_ the addba sequence number. 3804eb6f0de0SAdrian Chadd * However, net80211 will keep self-assigning sequence numbers 3805eb6f0de0SAdrian Chadd * until addba has been negotiated. 3806eb6f0de0SAdrian Chadd * 3807eb6f0de0SAdrian Chadd * In the past, these packets would be "paused" (which still works 3808eb6f0de0SAdrian Chadd * fine, as they're being scheduled to the driver in the same 3809eb6f0de0SAdrian Chadd * serialised method which is calling the addba request routine) 3810eb6f0de0SAdrian Chadd * and when the aggregation session begins, they'll be dequeued 3811eb6f0de0SAdrian Chadd * as aggregate packets and added to the BAW. However, now there's 3812eb6f0de0SAdrian Chadd * a "bf->bf_state.bfs_dobaw" flag, and this isn't set for these 3813eb6f0de0SAdrian Chadd * packets. Thus they never get included in the BAW tracking and 3814eb6f0de0SAdrian Chadd * this can cause the initial burst of packets after the addba 3815eb6f0de0SAdrian Chadd * negotiation to "hang", as they quickly fall outside the BAW. 3816eb6f0de0SAdrian Chadd * 3817eb6f0de0SAdrian Chadd * The "eventual" solution should be to tag these packets with 3818eb6f0de0SAdrian Chadd * dobaw. Although net80211 has given us a sequence number, 3819eb6f0de0SAdrian Chadd * it'll be "after" the left edge of the BAW and thus it'll 3820eb6f0de0SAdrian Chadd * fall within it. 3821eb6f0de0SAdrian Chadd */ 3822eb6f0de0SAdrian Chadd ath_tx_tid_pause(sc, atid); 3823eb6f0de0SAdrian Chadd 3824eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3825eb6f0de0SAdrian Chadd "%s: called; dialogtoken=%d, baparamset=%d, batimeout=%d\n", 3826eb6f0de0SAdrian Chadd __func__, dialogtoken, baparamset, batimeout); 3827eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3828eb6f0de0SAdrian Chadd "%s: txa_start=%d, ni_txseqs=%d\n", 3829eb6f0de0SAdrian Chadd __func__, tap->txa_start, ni->ni_txseqs[tid]); 3830eb6f0de0SAdrian Chadd 3831eb6f0de0SAdrian Chadd return sc->sc_addba_request(ni, tap, dialogtoken, baparamset, 3832eb6f0de0SAdrian Chadd batimeout); 3833eb6f0de0SAdrian Chadd } 3834eb6f0de0SAdrian Chadd 3835eb6f0de0SAdrian Chadd /* 3836eb6f0de0SAdrian Chadd * Handle an ADDBA response. 3837eb6f0de0SAdrian Chadd * 3838eb6f0de0SAdrian Chadd * We unpause the queue so TX'ing can resume. 3839eb6f0de0SAdrian Chadd * 3840eb6f0de0SAdrian Chadd * Any packets TX'ed from this point should be "aggregate" (whether 3841eb6f0de0SAdrian Chadd * aggregate or not) so the BAW is updated. 3842eb6f0de0SAdrian Chadd * 3843eb6f0de0SAdrian Chadd * Note! net80211 keeps self-assigning sequence numbers until 3844eb6f0de0SAdrian Chadd * ampdu is negotiated. This means the initially-negotiated BAW left 3845eb6f0de0SAdrian Chadd * edge won't match the ni->ni_txseq. 3846eb6f0de0SAdrian Chadd * 3847eb6f0de0SAdrian Chadd * So, being very dirty, the BAW left edge is "slid" here to match 3848eb6f0de0SAdrian Chadd * ni->ni_txseq. 3849eb6f0de0SAdrian Chadd * 3850eb6f0de0SAdrian Chadd * What likely SHOULD happen is that all packets subsequent to the 3851eb6f0de0SAdrian Chadd * addba request should be tagged as aggregate and queued as non-aggregate 3852eb6f0de0SAdrian Chadd * frames; thus updating the BAW. For now though, I'll just slide the 3853eb6f0de0SAdrian Chadd * window. 3854eb6f0de0SAdrian Chadd */ 3855eb6f0de0SAdrian Chadd int 3856eb6f0de0SAdrian Chadd ath_addba_response(struct ieee80211_node *ni, struct ieee80211_tx_ampdu *tap, 3857eb6f0de0SAdrian Chadd int status, int code, int batimeout) 3858eb6f0de0SAdrian Chadd { 3859eb6f0de0SAdrian Chadd struct ath_softc *sc = ni->ni_ic->ic_ifp->if_softc; 3860eb6f0de0SAdrian Chadd int tid = WME_AC_TO_TID(tap->txa_ac); 3861eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3862eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3863eb6f0de0SAdrian Chadd int r; 3864eb6f0de0SAdrian Chadd 3865eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3866eb6f0de0SAdrian Chadd "%s: called; status=%d, code=%d, batimeout=%d\n", __func__, 3867eb6f0de0SAdrian Chadd status, code, batimeout); 3868eb6f0de0SAdrian Chadd 3869eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3870eb6f0de0SAdrian Chadd "%s: txa_start=%d, ni_txseqs=%d\n", 3871eb6f0de0SAdrian Chadd __func__, tap->txa_start, ni->ni_txseqs[tid]); 3872eb6f0de0SAdrian Chadd 3873eb6f0de0SAdrian Chadd /* 3874eb6f0de0SAdrian Chadd * Call this first, so the interface flags get updated 3875eb6f0de0SAdrian Chadd * before the TID is unpaused. Otherwise a race condition 3876eb6f0de0SAdrian Chadd * exists where the unpaused TID still doesn't yet have 3877eb6f0de0SAdrian Chadd * IEEE80211_AGGR_RUNNING set. 3878eb6f0de0SAdrian Chadd */ 3879eb6f0de0SAdrian Chadd r = sc->sc_addba_response(ni, tap, status, code, batimeout); 3880eb6f0de0SAdrian Chadd 3881eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3882eb6f0de0SAdrian Chadd /* 3883eb6f0de0SAdrian Chadd * XXX dirty! 3884eb6f0de0SAdrian Chadd * Slide the BAW left edge to wherever net80211 left it for us. 3885eb6f0de0SAdrian Chadd * Read above for more information. 3886eb6f0de0SAdrian Chadd */ 3887eb6f0de0SAdrian Chadd tap->txa_start = ni->ni_txseqs[tid]; 3888eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 3889eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3890eb6f0de0SAdrian Chadd return r; 3891eb6f0de0SAdrian Chadd } 3892eb6f0de0SAdrian Chadd 3893eb6f0de0SAdrian Chadd 3894eb6f0de0SAdrian Chadd /* 3895eb6f0de0SAdrian Chadd * Stop ADDBA on a queue. 3896eb6f0de0SAdrian Chadd */ 3897eb6f0de0SAdrian Chadd void 3898eb6f0de0SAdrian Chadd ath_addba_stop(struct ieee80211_node *ni, struct ieee80211_tx_ampdu *tap) 3899eb6f0de0SAdrian Chadd { 3900eb6f0de0SAdrian Chadd struct ath_softc *sc = ni->ni_ic->ic_ifp->if_softc; 3901eb6f0de0SAdrian Chadd int tid = WME_AC_TO_TID(tap->txa_ac); 3902eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3903eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3904eb6f0de0SAdrian Chadd 3905eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, "%s: called\n", __func__); 3906eb6f0de0SAdrian Chadd 3907eb6f0de0SAdrian Chadd /* Pause TID traffic early, so there aren't any races */ 3908eb6f0de0SAdrian Chadd ath_tx_tid_pause(sc, atid); 3909eb6f0de0SAdrian Chadd 3910eb6f0de0SAdrian Chadd /* There's no need to hold the TXQ lock here */ 3911eb6f0de0SAdrian Chadd sc->sc_addba_stop(ni, tap); 3912eb6f0de0SAdrian Chadd 3913eb6f0de0SAdrian Chadd /* 3914eb6f0de0SAdrian Chadd * ath_tx_cleanup will resume the TID if possible, otherwise 3915eb6f0de0SAdrian Chadd * it'll set the cleanup flag, and it'll be unpaused once 3916eb6f0de0SAdrian Chadd * things have been cleaned up. 3917eb6f0de0SAdrian Chadd */ 3918eb6f0de0SAdrian Chadd ath_tx_cleanup(sc, an, tid); 3919eb6f0de0SAdrian Chadd } 3920eb6f0de0SAdrian Chadd 3921eb6f0de0SAdrian Chadd /* 3922eb6f0de0SAdrian Chadd * Note: net80211 bar_timeout() doesn't call this function on BAR failure; 3923eb6f0de0SAdrian Chadd * it simply tears down the aggregation session. Ew. 3924eb6f0de0SAdrian Chadd * 3925eb6f0de0SAdrian Chadd * It however will call ieee80211_ampdu_stop() which will call 3926eb6f0de0SAdrian Chadd * ic->ic_addba_stop(). 3927eb6f0de0SAdrian Chadd * 3928eb6f0de0SAdrian Chadd * XXX This uses a hard-coded max BAR count value; the whole 3929eb6f0de0SAdrian Chadd * XXX BAR TX success or failure should be better handled! 3930eb6f0de0SAdrian Chadd */ 3931eb6f0de0SAdrian Chadd void 3932eb6f0de0SAdrian Chadd ath_bar_response(struct ieee80211_node *ni, struct ieee80211_tx_ampdu *tap, 3933eb6f0de0SAdrian Chadd int status) 3934eb6f0de0SAdrian Chadd { 3935eb6f0de0SAdrian Chadd struct ath_softc *sc = ni->ni_ic->ic_ifp->if_softc; 3936eb6f0de0SAdrian Chadd int tid = WME_AC_TO_TID(tap->txa_ac); 3937eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3938eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3939eb6f0de0SAdrian Chadd int attempts = tap->txa_attempts; 3940eb6f0de0SAdrian Chadd 3941eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3942eb6f0de0SAdrian Chadd "%s: called; status=%d\n", __func__, status); 3943eb6f0de0SAdrian Chadd 3944eb6f0de0SAdrian Chadd /* Note: This may update the BAW details */ 3945eb6f0de0SAdrian Chadd sc->sc_bar_response(ni, tap, status); 3946eb6f0de0SAdrian Chadd 3947eb6f0de0SAdrian Chadd /* Unpause the TID */ 3948eb6f0de0SAdrian Chadd /* 3949eb6f0de0SAdrian Chadd * XXX if this is attempt=50, the TID will be downgraded 3950eb6f0de0SAdrian Chadd * XXX to a non-aggregate session. So we must unpause the 3951eb6f0de0SAdrian Chadd * XXX TID here or it'll never be done. 3952eb6f0de0SAdrian Chadd */ 3953eb6f0de0SAdrian Chadd if (status == 0 || attempts == 50) { 3954eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3955eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 3956eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3957eb6f0de0SAdrian Chadd } 3958eb6f0de0SAdrian Chadd } 3959eb6f0de0SAdrian Chadd 3960eb6f0de0SAdrian Chadd /* 3961eb6f0de0SAdrian Chadd * This is called whenever the pending ADDBA request times out. 3962eb6f0de0SAdrian Chadd * Unpause and reschedule the TID. 3963eb6f0de0SAdrian Chadd */ 3964eb6f0de0SAdrian Chadd void 3965eb6f0de0SAdrian Chadd ath_addba_response_timeout(struct ieee80211_node *ni, 3966eb6f0de0SAdrian Chadd struct ieee80211_tx_ampdu *tap) 3967eb6f0de0SAdrian Chadd { 3968eb6f0de0SAdrian Chadd struct ath_softc *sc = ni->ni_ic->ic_ifp->if_softc; 3969eb6f0de0SAdrian Chadd int tid = WME_AC_TO_TID(tap->txa_ac); 3970eb6f0de0SAdrian Chadd struct ath_node *an = ATH_NODE(ni); 3971eb6f0de0SAdrian Chadd struct ath_tid *atid = &an->an_tid[tid]; 3972eb6f0de0SAdrian Chadd 3973eb6f0de0SAdrian Chadd DPRINTF(sc, ATH_DEBUG_SW_TX_CTRL, 3974eb6f0de0SAdrian Chadd "%s: called; resuming\n", __func__); 3975eb6f0de0SAdrian Chadd 3976eb6f0de0SAdrian Chadd /* Note: This updates the aggregate state to (again) pending */ 3977eb6f0de0SAdrian Chadd sc->sc_addba_response_timeout(ni, tap); 3978eb6f0de0SAdrian Chadd 3979eb6f0de0SAdrian Chadd /* Unpause the TID; which reschedules it */ 3980eb6f0de0SAdrian Chadd ATH_TXQ_LOCK(sc->sc_ac2q[atid->ac]); 3981eb6f0de0SAdrian Chadd ath_tx_tid_resume(sc, atid); 3982eb6f0de0SAdrian Chadd ATH_TXQ_UNLOCK(sc->sc_ac2q[atid->ac]); 3983eb6f0de0SAdrian Chadd } 3984