xmit.c 63.3 KB
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/*
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 * Copyright (c) 2008-2009 Atheros Communications Inc.
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 *
 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 */

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#include "ath9k.h"
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#include "ar9003_mac.h"
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#define BITS_PER_BYTE           8
#define OFDM_PLCP_BITS          22
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#define HT_RC_2_MCS(_rc)        ((_rc) & 0x1f)
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#define HT_RC_2_STREAMS(_rc)    ((((_rc) & 0x78) >> 3) + 1)
#define L_STF                   8
#define L_LTF                   8
#define L_SIG                   4
#define HT_SIG                  8
#define HT_STF                  4
#define HT_LTF(_ns)             (4 * (_ns))
#define SYMBOL_TIME(_ns)        ((_ns) << 2) /* ns * 4 us */
#define SYMBOL_TIME_HALFGI(_ns) (((_ns) * 18 + 4) / 5)  /* ns * 3.6 us */
#define NUM_SYMBOLS_PER_USEC(_usec) (_usec >> 2)
#define NUM_SYMBOLS_PER_USEC_HALFGI(_usec) (((_usec*5)-4)/18)

#define OFDM_SIFS_TIME    	    16

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static u16 bits_per_symbol[][2] = {
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	/* 20MHz 40MHz */
	{    26,   54 },     /*  0: BPSK */
	{    52,  108 },     /*  1: QPSK 1/2 */
	{    78,  162 },     /*  2: QPSK 3/4 */
	{   104,  216 },     /*  3: 16-QAM 1/2 */
	{   156,  324 },     /*  4: 16-QAM 3/4 */
	{   208,  432 },     /*  5: 64-QAM 2/3 */
	{   234,  486 },     /*  6: 64-QAM 3/4 */
	{   260,  540 },     /*  7: 64-QAM 5/6 */
};

#define IS_HT_RATE(_rate)     ((_rate) & 0x80)

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static void ath_tx_send_ht_normal(struct ath_softc *sc, struct ath_txq *txq,
				  struct ath_atx_tid *tid,
				  struct list_head *bf_head);
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static void ath_tx_complete_buf(struct ath_softc *sc, struct ath_buf *bf,
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				struct ath_txq *txq, struct list_head *bf_q,
				struct ath_tx_status *ts, int txok, int sendbar);
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static void ath_tx_txqaddbuf(struct ath_softc *sc, struct ath_txq *txq,
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			     struct list_head *head);
static void ath_buf_set_rate(struct ath_softc *sc, struct ath_buf *bf);
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static int ath_tx_num_badfrms(struct ath_softc *sc, struct ath_buf *bf,
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			      struct ath_tx_status *ts, int txok);
static void ath_tx_rc_status(struct ath_buf *bf, struct ath_tx_status *ts,
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			     int nbad, int txok, bool update_rc);
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enum {
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	MCS_HT20,
	MCS_HT20_SGI,
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	MCS_HT40,
	MCS_HT40_SGI,
};

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static int ath_max_4ms_framelen[4][32] = {
	[MCS_HT20] = {
		3212,  6432,  9648,  12864,  19300,  25736,  28952,  32172,
		6424,  12852, 19280, 25708,  38568,  51424,  57852,  64280,
		9628,  19260, 28896, 38528,  57792,  65532,  65532,  65532,
		12828, 25656, 38488, 51320,  65532,  65532,  65532,  65532,
	},
	[MCS_HT20_SGI] = {
		3572,  7144,  10720,  14296,  21444,  28596,  32172,  35744,
		7140,  14284, 21428,  28568,  42856,  57144,  64288,  65532,
		10700, 21408, 32112,  42816,  64228,  65532,  65532,  65532,
		14256, 28516, 42780,  57040,  65532,  65532,  65532,  65532,
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	},
	[MCS_HT40] = {
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		6680,  13360,  20044,  26724,  40092,  53456,  60140,  65532,
		13348, 26700,  40052,  53400,  65532,  65532,  65532,  65532,
		20004, 40008,  60016,  65532,  65532,  65532,  65532,  65532,
		26644, 53292,  65532,  65532,  65532,  65532,  65532,  65532,
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	},
	[MCS_HT40_SGI] = {
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		7420,  14844,  22272,  29696,  44544,  59396,  65532,  65532,
		14832, 29668,  44504,  59340,  65532,  65532,  65532,  65532,
		22232, 44464,  65532,  65532,  65532,  65532,  65532,  65532,
		29616, 59232,  65532,  65532,  65532,  65532,  65532,  65532,
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	}
};

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/*********************/
/* Aggregation logic */
/*********************/
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static void ath_tx_queue_tid(struct ath_txq *txq, struct ath_atx_tid *tid)
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{
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	struct ath_atx_ac *ac = tid->ac;
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	if (tid->paused)
		return;
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	if (tid->sched)
		return;
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	tid->sched = true;
	list_add_tail(&tid->list, &ac->tid_q);
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	if (ac->sched)
		return;
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	ac->sched = true;
	list_add_tail(&ac->list, &txq->axq_acq);
}
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static void ath_tx_pause_tid(struct ath_softc *sc, struct ath_atx_tid *tid)
{
	struct ath_txq *txq = &sc->tx.txq[tid->ac->qnum];
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	spin_lock_bh(&txq->axq_lock);
	tid->paused++;
	spin_unlock_bh(&txq->axq_lock);
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}

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static void ath_tx_resume_tid(struct ath_softc *sc, struct ath_atx_tid *tid)
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{
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	struct ath_txq *txq = &sc->tx.txq[tid->ac->qnum];
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	BUG_ON(tid->paused <= 0);
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	spin_lock_bh(&txq->axq_lock);
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	tid->paused--;
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	if (tid->paused > 0)
		goto unlock;
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	if (list_empty(&tid->buf_q))
		goto unlock;
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	ath_tx_queue_tid(txq, tid);
	ath_txq_schedule(sc, txq);
unlock:
	spin_unlock_bh(&txq->axq_lock);
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}
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static void ath_tx_flush_tid(struct ath_softc *sc, struct ath_atx_tid *tid)
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{
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	struct ath_txq *txq = &sc->tx.txq[tid->ac->qnum];
	struct ath_buf *bf;
	struct list_head bf_head;
	INIT_LIST_HEAD(&bf_head);
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	BUG_ON(tid->paused <= 0);
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	spin_lock_bh(&txq->axq_lock);
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	tid->paused--;
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	if (tid->paused > 0) {
		spin_unlock_bh(&txq->axq_lock);
		return;
	}
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	while (!list_empty(&tid->buf_q)) {
		bf = list_first_entry(&tid->buf_q, struct ath_buf, list);
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		BUG_ON(bf_isretried(bf));
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		list_move_tail(&bf->list, &bf_head);
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		ath_tx_send_ht_normal(sc, txq, tid, &bf_head);
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	}
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	spin_unlock_bh(&txq->axq_lock);
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}
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static void ath_tx_update_baw(struct ath_softc *sc, struct ath_atx_tid *tid,
			      int seqno)
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{
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	int index, cindex;
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	index  = ATH_BA_INDEX(tid->seq_start, seqno);
	cindex = (tid->baw_head + index) & (ATH_TID_MAX_BUFS - 1);
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	tid->tx_buf[cindex] = NULL;
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	while (tid->baw_head != tid->baw_tail && !tid->tx_buf[tid->baw_head]) {
		INCR(tid->seq_start, IEEE80211_SEQ_MAX);
		INCR(tid->baw_head, ATH_TID_MAX_BUFS);
	}
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}
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static void ath_tx_addto_baw(struct ath_softc *sc, struct ath_atx_tid *tid,
			     struct ath_buf *bf)
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{
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	int index, cindex;
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	if (bf_isretried(bf))
		return;
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	index  = ATH_BA_INDEX(tid->seq_start, bf->bf_seqno);
	cindex = (tid->baw_head + index) & (ATH_TID_MAX_BUFS - 1);
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	BUG_ON(tid->tx_buf[cindex] != NULL);
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	tid->tx_buf[cindex] = bf;
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	if (index >= ((tid->baw_tail - tid->baw_head) &
		(ATH_TID_MAX_BUFS - 1))) {
		tid->baw_tail = cindex;
		INCR(tid->baw_tail, ATH_TID_MAX_BUFS);
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	}
}

/*
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 * TODO: For frame(s) that are in the retry state, we will reuse the
 * sequence number(s) without setting the retry bit. The
 * alternative is to give up on these and BAR the receiver's window
 * forward.
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 */
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static void ath_tid_drain(struct ath_softc *sc, struct ath_txq *txq,
			  struct ath_atx_tid *tid)
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{
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	struct ath_buf *bf;
	struct list_head bf_head;
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	struct ath_tx_status ts;

	memset(&ts, 0, sizeof(ts));
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	INIT_LIST_HEAD(&bf_head);
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	for (;;) {
		if (list_empty(&tid->buf_q))
			break;
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		bf = list_first_entry(&tid->buf_q, struct ath_buf, list);
		list_move_tail(&bf->list, &bf_head);
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		if (bf_isretried(bf))
			ath_tx_update_baw(sc, tid, bf->bf_seqno);
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		spin_unlock(&txq->axq_lock);
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		ath_tx_complete_buf(sc, bf, txq, &bf_head, &ts, 0, 0);
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		spin_lock(&txq->axq_lock);
	}
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	tid->seq_next = tid->seq_start;
	tid->baw_tail = tid->baw_head;
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}

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static void ath_tx_set_retry(struct ath_softc *sc, struct ath_txq *txq,
			     struct ath_buf *bf)
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{
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	struct sk_buff *skb;
	struct ieee80211_hdr *hdr;
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	bf->bf_state.bf_type |= BUF_RETRY;
	bf->bf_retries++;
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	TX_STAT_INC(txq->axq_qnum, a_retries);
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	skb = bf->bf_mpdu;
	hdr = (struct ieee80211_hdr *)skb->data;
	hdr->frame_control |= cpu_to_le16(IEEE80211_FCTL_RETRY);
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}

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static struct ath_buf *ath_tx_get_buffer(struct ath_softc *sc)
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{
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	struct ath_buf *bf = NULL;
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	spin_lock_bh(&sc->tx.txbuflock);
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	if (unlikely(list_empty(&sc->tx.txbuf))) {
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		spin_unlock_bh(&sc->tx.txbuflock);
		return NULL;
	}
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	bf = list_first_entry(&sc->tx.txbuf, struct ath_buf, list);
	list_del(&bf->list);

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	spin_unlock_bh(&sc->tx.txbuflock);

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	return bf;
}

static void ath_tx_return_buffer(struct ath_softc *sc, struct ath_buf *bf)
{
	spin_lock_bh(&sc->tx.txbuflock);
	list_add_tail(&bf->list, &sc->tx.txbuf);
	spin_unlock_bh(&sc->tx.txbuflock);
}

static struct ath_buf* ath_clone_txbuf(struct ath_softc *sc, struct ath_buf *bf)
{
	struct ath_buf *tbf;

	tbf = ath_tx_get_buffer(sc);
	if (WARN_ON(!tbf))
		return NULL;

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	ATH_TXBUF_RESET(tbf);

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	tbf->aphy = bf->aphy;
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	tbf->bf_mpdu = bf->bf_mpdu;
	tbf->bf_buf_addr = bf->bf_buf_addr;
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	memcpy(tbf->bf_desc, bf->bf_desc, sc->sc_ah->caps.tx_desc_len);
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	tbf->bf_state = bf->bf_state;
	tbf->bf_dmacontext = bf->bf_dmacontext;

	return tbf;
}

static void ath_tx_complete_aggr(struct ath_softc *sc, struct ath_txq *txq,
				 struct ath_buf *bf, struct list_head *bf_q,
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				 struct ath_tx_status *ts, int txok)
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{
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	struct ath_node *an = NULL;
	struct sk_buff *skb;
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	struct ieee80211_sta *sta;
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	struct ieee80211_hw *hw;
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	struct ieee80211_hdr *hdr;
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	struct ieee80211_tx_info *tx_info;
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	struct ath_atx_tid *tid = NULL;
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	struct ath_buf *bf_next, *bf_last = bf->bf_lastbf;
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	struct list_head bf_head, bf_pending;
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	u16 seq_st = 0, acked_cnt = 0, txfail_cnt = 0;
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	u32 ba[WME_BA_BMP_SIZE >> 5];
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	int isaggr, txfail, txpending, sendbar = 0, needreset = 0, nbad = 0;
	bool rc_update = true;
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	struct ieee80211_tx_rate rates[4];
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	unsigned long flags;
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	skb = bf->bf_mpdu;
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	hdr = (struct ieee80211_hdr *)skb->data;

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	tx_info = IEEE80211_SKB_CB(skb);
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	hw = bf->aphy->hw;
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	memcpy(rates, tx_info->control.rates, sizeof(rates));

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	rcu_read_lock();
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	/* XXX: use ieee80211_find_sta! */
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	sta = ieee80211_find_sta_by_hw(hw, hdr->addr1);
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	if (!sta) {
		rcu_read_unlock();
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		spin_lock_irqsave(&sc->tx.txbuflock, flags);
		list_splice_tail_init(bf_q, &sc->tx.txbuf);
		spin_unlock_irqrestore(&sc->tx.txbuflock, flags);
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		return;
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	}

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	an = (struct ath_node *)sta->drv_priv;
	tid = ATH_AN_2_TID(an, bf->bf_tidno);

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	/*
	 * The hardware occasionally sends a tx status for the wrong TID.
	 * In this case, the BA status cannot be considered valid and all
	 * subframes need to be retransmitted
	 */
	if (bf->bf_tidno != ts->tid)
		txok = false;

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	isaggr = bf_isaggr(bf);
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	memset(ba, 0, WME_BA_BMP_SIZE >> 3);
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	if (isaggr && txok) {
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		if (ts->ts_flags & ATH9K_TX_BA) {
			seq_st = ts->ts_seqnum;
			memcpy(ba, &ts->ba_low, WME_BA_BMP_SIZE >> 3);
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		} else {
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			/*
			 * AR5416 can become deaf/mute when BA
			 * issue happens. Chip needs to be reset.
			 * But AP code may have sychronization issues
			 * when perform internal reset in this routine.
			 * Only enable reset in STA mode for now.
			 */
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			if (sc->sc_ah->opmode == NL80211_IFTYPE_STATION)
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				needreset = 1;
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		}
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	}

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	INIT_LIST_HEAD(&bf_pending);
	INIT_LIST_HEAD(&bf_head);
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	nbad = ath_tx_num_badfrms(sc, bf, ts, txok);
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	while (bf) {
		txfail = txpending = 0;
		bf_next = bf->bf_next;
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		skb = bf->bf_mpdu;
		tx_info = IEEE80211_SKB_CB(skb);

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		if (ATH_BA_ISSET(ba, ATH_BA_INDEX(seq_st, bf->bf_seqno))) {
			/* transmit completion, subframe is
			 * acked by block ack */
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			acked_cnt++;
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		} else if (!isaggr && txok) {
			/* transmit completion */
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			acked_cnt++;
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		} else {
			if (!(tid->state & AGGR_CLEANUP) &&
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			    !bf_last->bf_tx_aborted) {
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				if (bf->bf_retries < ATH_MAX_SW_RETRIES) {
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					ath_tx_set_retry(sc, txq, bf);
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					txpending = 1;
				} else {
					bf->bf_state.bf_type |= BUF_XRETRY;
					txfail = 1;
					sendbar = 1;
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					txfail_cnt++;
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				}
			} else {
				/*
				 * cleanup in progress, just fail
				 * the un-acked sub-frames
				 */
				txfail = 1;
			}
		}
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		if (!(sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) &&
		    bf_next == NULL) {
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			/*
			 * Make sure the last desc is reclaimed if it
			 * not a holding desc.
			 */
			if (!bf_last->bf_stale)
				list_move_tail(&bf->list, &bf_head);
			else
				INIT_LIST_HEAD(&bf_head);
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		} else {
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			BUG_ON(list_empty(bf_q));
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			list_move_tail(&bf->list, &bf_head);
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		}
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		if (!txpending) {
			/*
			 * complete the acked-ones/xretried ones; update
			 * block-ack window
			 */
			spin_lock_bh(&txq->axq_lock);
			ath_tx_update_baw(sc, tid, bf->bf_seqno);
			spin_unlock_bh(&txq->axq_lock);
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			if (rc_update && (acked_cnt == 1 || txfail_cnt == 1)) {
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				memcpy(tx_info->control.rates, rates, sizeof(rates));
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				ath_tx_rc_status(bf, ts, nbad, txok, true);
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				rc_update = false;
			} else {
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				ath_tx_rc_status(bf, ts, nbad, txok, false);
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			}

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			ath_tx_complete_buf(sc, bf, txq, &bf_head, ts,
				!txfail, sendbar);
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		} else {
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			/* retry the un-acked ones */
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			if (!(sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA)) {
				if (bf->bf_next == NULL && bf_last->bf_stale) {
					struct ath_buf *tbf;

					tbf = ath_clone_txbuf(sc, bf_last);
					/*
					 * Update tx baw and complete the
					 * frame with failed status if we
					 * run out of tx buf.
					 */
					if (!tbf) {
						spin_lock_bh(&txq->axq_lock);
						ath_tx_update_baw(sc, tid,
								bf->bf_seqno);
						spin_unlock_bh(&txq->axq_lock);

						bf->bf_state.bf_type |=
							BUF_XRETRY;
						ath_tx_rc_status(bf, ts, nbad,
								0, false);
						ath_tx_complete_buf(sc, bf, txq,
								    &bf_head,
								    ts, 0, 0);
						break;
					}

					ath9k_hw_cleartxdesc(sc->sc_ah,
							     tbf->bf_desc);
					list_add_tail(&tbf->list, &bf_head);
				} else {
					/*
					 * Clear descriptor status words for
					 * software retry
					 */
					ath9k_hw_cleartxdesc(sc->sc_ah,
							     bf->bf_desc);
497
				}
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			}

			/*
			 * Put this buffer to the temporary pending
			 * queue to retain ordering
			 */
			list_splice_tail_init(&bf_head, &bf_pending);
		}

		bf = bf_next;
508 509
	}

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	if (tid->state & AGGR_CLEANUP) {
		if (tid->baw_head == tid->baw_tail) {
			tid->state &= ~AGGR_ADDBA_COMPLETE;
			tid->state &= ~AGGR_CLEANUP;
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			/* send buffered frames as singles */
			ath_tx_flush_tid(sc, tid);
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		}
518
		rcu_read_unlock();
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		return;
	}
521

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522
	/* prepend un-acked frames to the beginning of the pending frame queue */
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	if (!list_empty(&bf_pending)) {
		spin_lock_bh(&txq->axq_lock);
		list_splice(&bf_pending, &tid->buf_q);
		ath_tx_queue_tid(txq, tid);
		spin_unlock_bh(&txq->axq_lock);
	}
529

530 531
	rcu_read_unlock();

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	if (needreset)
		ath_reset(sc, false);
}
535

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static u32 ath_lookup_rate(struct ath_softc *sc, struct ath_buf *bf,
			   struct ath_atx_tid *tid)
538
{
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	struct sk_buff *skb;
	struct ieee80211_tx_info *tx_info;
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541
	struct ieee80211_tx_rate *rates;
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	u32 max_4ms_framelen, frmlen;
543
	u16 aggr_limit, legacy = 0;
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	int i;
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545

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	skb = bf->bf_mpdu;
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	tx_info = IEEE80211_SKB_CB(skb);
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	rates = tx_info->control.rates;
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549

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	/*
	 * Find the lowest frame length among the rate series that will have a
	 * 4ms transmit duration.
	 * TODO - TXOP limit needs to be considered.
	 */
	max_4ms_framelen = ATH_AMPDU_LIMIT_MAX;
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	for (i = 0; i < 4; i++) {
		if (rates[i].count) {
559 560
			int modeidx;
			if (!(rates[i].flags & IEEE80211_TX_RC_MCS)) {
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				legacy = 1;
				break;
			}

565
			if (rates[i].flags & IEEE80211_TX_RC_40_MHZ_WIDTH)
566 567
				modeidx = MCS_HT40;
			else
568 569 570 571
				modeidx = MCS_HT20;

			if (rates[i].flags & IEEE80211_TX_RC_SHORT_GI)
				modeidx++;
572 573

			frmlen = ath_max_4ms_framelen[modeidx][rates[i].idx];
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			max_4ms_framelen = min(max_4ms_framelen, frmlen);
575 576
		}
	}
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578
	/*
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	 * limit aggregate size by the minimum rate if rate selected is
	 * not a probe rate, if rate selected is a probe rate then
	 * avoid aggregation of this packet.
582
	 */
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	if (tx_info->flags & IEEE80211_TX_CTL_RATE_CTRL_PROBE || legacy)
		return 0;
585

586 587 588 589 590 591
	if (sc->sc_flags & SC_OP_BT_PRIORITY_DETECTED)
		aggr_limit = min((max_4ms_framelen * 3) / 8,
				 (u32)ATH_AMPDU_LIMIT_MAX);
	else
		aggr_limit = min(max_4ms_framelen,
				 (u32)ATH_AMPDU_LIMIT_MAX);
592

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	/*
	 * h/w can accept aggregates upto 16 bit lengths (65535).
	 * The IE, however can hold upto 65536, which shows up here
	 * as zero. Ignore 65536 since we  are constrained by hw.
597
	 */
598 599
	if (tid->an->maxampdu)
		aggr_limit = min(aggr_limit, tid->an->maxampdu);
600

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	return aggr_limit;
}
603

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/*
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 * Returns the number of delimiters to be added to
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 * meet the minimum required mpdudensity.
 */
static int ath_compute_num_delims(struct ath_softc *sc, struct ath_atx_tid *tid,
				  struct ath_buf *bf, u16 frmlen)
{
	struct sk_buff *skb = bf->bf_mpdu;
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
613
	u32 nsymbits, nsymbols;
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	u16 minlen;
615
	u8 flags, rix;
616
	int width, streams, half_gi, ndelim, mindelim;
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	/* Select standard number of delimiters based on frame length alone */
	ndelim = ATH_AGGR_GET_NDELIM(frmlen);
620 621

	/*
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622 623 624 625
	 * If encryption enabled, hardware requires some more padding between
	 * subframes.
	 * TODO - this could be improved to be dependent on the rate.
	 *      The hardware can keep up at lower rates, but not higher rates
626
	 */
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	if (bf->bf_keytype != ATH9K_KEY_TYPE_CLEAR)
		ndelim += ATH_AGGR_ENCRYPTDELIM;
629

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630 631 632 633 634
	/*
	 * Convert desired mpdu density from microeconds to bytes based
	 * on highest rate in rate series (i.e. first rate) to determine
	 * required minimum length for subframe. Take into account
	 * whether high rate is 20 or 40Mhz and half or full GI.
635
	 *
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636 637 638
	 * If there is no mpdu density restriction, no further calculation
	 * is needed.
	 */
639 640

	if (tid->an->mpdudensity == 0)
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		return ndelim;
642

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643 644 645 646
	rix = tx_info->control.rates[0].idx;
	flags = tx_info->control.rates[0].flags;
	width = (flags & IEEE80211_TX_RC_40_MHZ_WIDTH) ? 1 : 0;
	half_gi = (flags & IEEE80211_TX_RC_SHORT_GI) ? 1 : 0;
647

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	if (half_gi)
649
		nsymbols = NUM_SYMBOLS_PER_USEC_HALFGI(tid->an->mpdudensity);
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650
	else
651
		nsymbols = NUM_SYMBOLS_PER_USEC(tid->an->mpdudensity);
652

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653 654
	if (nsymbols == 0)
		nsymbols = 1;
655

656 657
	streams = HT_RC_2_STREAMS(rix);
	nsymbits = bits_per_symbol[rix % 8][width] * streams;
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	minlen = (nsymbols * nsymbits) / BITS_PER_BYTE;
659

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	if (frmlen < minlen) {
		mindelim = (minlen - frmlen) / ATH_AGGR_DELIM_SZ;
		ndelim = max(mindelim, ndelim);
663 664
	}

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	return ndelim;
666 667
}

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static enum ATH_AGGR_STATUS ath_tx_form_aggr(struct ath_softc *sc,
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					     struct ath_txq *txq,
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					     struct ath_atx_tid *tid,
					     struct list_head *bf_q)
672
{
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#define PADBYTES(_len) ((4 - ((_len) % 4)) % 4)
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	struct ath_buf *bf, *bf_first, *bf_prev = NULL;
	int rl = 0, nframes = 0, ndelim, prev_al = 0;
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	u16 aggr_limit = 0, al = 0, bpad = 0,
		al_delta, h_baw = tid->baw_size / 2;
	enum ATH_AGGR_STATUS status = ATH_AGGR_DONE;
679

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	bf_first = list_first_entry(&tid->buf_q, struct ath_buf, list);
681

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	do {
		bf = list_first_entry(&tid->buf_q, struct ath_buf, list);
684

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		/* do not step over block-ack window */
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		if (!BAW_WITHIN(tid->seq_start, tid->baw_size, bf->bf_seqno)) {
			status = ATH_AGGR_BAW_CLOSED;
			break;
		}
690

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		if (!rl) {
			aggr_limit = ath_lookup_rate(sc, bf, tid);
			rl = 1;
		}
695

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		/* do not exceed aggregation limit */
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		al_delta = ATH_AGGR_DELIM_SZ + bf->bf_frmlen;
698

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		if (nframes &&
		    (aggr_limit < (al + bpad + al_delta + prev_al))) {
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			status = ATH_AGGR_LIMITED;
			break;
		}
704

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		/* do not exceed subframe limit */
		if (nframes >= min((int)h_baw, ATH_AMPDU_SUBFRAME_DEFAULT)) {
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707 708 709
			status = ATH_AGGR_LIMITED;
			break;
		}
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710
		nframes++;
711

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712
		/* add padding for previous frame to aggregation length */
S
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713
		al += bpad + al_delta;
714

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715 716 717 718 719 720
		/*
		 * Get the delimiters needed to meet the MPDU
		 * density for this node.
		 */
		ndelim = ath_compute_num_delims(sc, tid, bf_first, bf->bf_frmlen);
		bpad = PADBYTES(al_delta) + (ndelim << 2);
721

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		bf->bf_next = NULL;
723
		ath9k_hw_set_desc_link(sc->sc_ah, bf->bf_desc, 0);
724

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		/* link buffers of this frame to the aggregate */
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726
		ath_tx_addto_baw(sc, tid, bf);
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		ath9k_hw_set11n_aggr_middle(sc->sc_ah, bf->bf_desc, ndelim);
		list_move_tail(&bf->list, bf_q);
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		if (bf_prev) {
			bf_prev->bf_next = bf;
731 732
			ath9k_hw_set_desc_link(sc->sc_ah, bf_prev->bf_desc,
					       bf->bf_daddr);
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733 734
		}
		bf_prev = bf;
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735

S
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736
	} while (!list_empty(&tid->buf_q));
737

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738 739
	bf_first->bf_al = al;
	bf_first->bf_nframes = nframes;
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740

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741 742 743
	return status;
#undef PADBYTES
}
744

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static void ath_tx_sched_aggr(struct ath_softc *sc, struct ath_txq *txq,
			      struct ath_atx_tid *tid)
{
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748
	struct ath_buf *bf;
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749 750
	enum ATH_AGGR_STATUS status;
	struct list_head bf_q;
751

S
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752 753 754
	do {
		if (list_empty(&tid->buf_q))
			return;
755

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756 757
		INIT_LIST_HEAD(&bf_q);

S
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758
		status = ath_tx_form_aggr(sc, txq, tid, &bf_q);
759 760

		/*
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761 762
		 * no frames picked up to be aggregated;
		 * block-ack window is not open.
763
		 */
S
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764 765
		if (list_empty(&bf_q))
			break;
766

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767
		bf = list_first_entry(&bf_q, struct ath_buf, list);
S
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768
		bf->bf_lastbf = list_entry(bf_q.prev, struct ath_buf, list);
769

S
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770
		/* if only one frame, send as non-aggregate */
S
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771 772
		if (bf->bf_nframes == 1) {
			bf->bf_state.bf_type &= ~BUF_AGGR;
S
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773
			ath9k_hw_clr11n_aggr(sc->sc_ah, bf->bf_desc);
S
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774 775 776 777
			ath_buf_set_rate(sc, bf);
			ath_tx_txqaddbuf(sc, txq, &bf_q);
			continue;
		}
778

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779
		/* setup first desc of aggregate */
S
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780 781 782
		bf->bf_state.bf_type |= BUF_AGGR;
		ath_buf_set_rate(sc, bf);
		ath9k_hw_set11n_aggr_first(sc->sc_ah, bf->bf_desc, bf->bf_al);
783

S
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784 785
		/* anchor last desc of aggregate */
		ath9k_hw_set11n_aggr_last(sc->sc_ah, bf->bf_lastbf->bf_desc);
786

S
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787
		ath_tx_txqaddbuf(sc, txq, &bf_q);
S
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788
		TX_STAT_INC(txq->axq_qnum, a_aggr);
789

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790 791 792 793
	} while (txq->axq_depth < ATH_AGGR_MIN_QDEPTH &&
		 status != ATH_AGGR_BAW_CLOSED);
}

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794 795
void ath_tx_aggr_start(struct ath_softc *sc, struct ieee80211_sta *sta,
		       u16 tid, u16 *ssn)
S
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796 797 798 799 800
{
	struct ath_atx_tid *txtid;
	struct ath_node *an;

	an = (struct ath_node *)sta->drv_priv;
S
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801 802 803 804
	txtid = ATH_AN_2_TID(an, tid);
	txtid->state |= AGGR_ADDBA_PROGRESS;
	ath_tx_pause_tid(sc, txtid);
	*ssn = txtid->seq_start;
S
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805
}
806

S
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807
void ath_tx_aggr_stop(struct ath_softc *sc, struct ieee80211_sta *sta, u16 tid)
S
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808 809 810 811
{
	struct ath_node *an = (struct ath_node *)sta->drv_priv;
	struct ath_atx_tid *txtid = ATH_AN_2_TID(an, tid);
	struct ath_txq *txq = &sc->tx.txq[txtid->ac->qnum];
812
	struct ath_tx_status ts;
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813 814
	struct ath_buf *bf;
	struct list_head bf_head;
815 816

	memset(&ts, 0, sizeof(ts));
S
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817
	INIT_LIST_HEAD(&bf_head);
818

S
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819
	if (txtid->state & AGGR_CLEANUP)
S
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820
		return;
821

S
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822
	if (!(txtid->state & AGGR_ADDBA_COMPLETE)) {
823
		txtid->state &= ~AGGR_ADDBA_PROGRESS;
S
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824
		return;
S
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825
	}
826

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827 828 829 830 831 832 833 834 835 836 837 838 839 840
	ath_tx_pause_tid(sc, txtid);

	/* drop all software retried frames and mark this TID */
	spin_lock_bh(&txq->axq_lock);
	while (!list_empty(&txtid->buf_q)) {
		bf = list_first_entry(&txtid->buf_q, struct ath_buf, list);
		if (!bf_isretried(bf)) {
			/*
			 * NB: it's based on the assumption that
			 * software retried frame will always stay
			 * at the head of software queue.
			 */
			break;
		}
S
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841
		list_move_tail(&bf->list, &bf_head);
S
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842
		ath_tx_update_baw(sc, txtid, bf->bf_seqno);
843
		ath_tx_complete_buf(sc, bf, txq, &bf_head, &ts, 0, 0);
844
	}
S
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845
	spin_unlock_bh(&txq->axq_lock);
846

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847 848 849 850 851
	if (txtid->baw_head != txtid->baw_tail) {
		txtid->state |= AGGR_CLEANUP;
	} else {
		txtid->state &= ~AGGR_ADDBA_COMPLETE;
		ath_tx_flush_tid(sc, txtid);
852
	}
S
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853
}
854

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855 856 857 858 859 860 861 862 863 864 865 866 867 868 869
void ath_tx_aggr_resume(struct ath_softc *sc, struct ieee80211_sta *sta, u16 tid)
{
	struct ath_atx_tid *txtid;
	struct ath_node *an;

	an = (struct ath_node *)sta->drv_priv;

	if (sc->sc_flags & SC_OP_TXAGGR) {
		txtid = ATH_AN_2_TID(an, tid);
		txtid->baw_size =
			IEEE80211_MIN_AMPDU_BUF << sta->ht_cap.ampdu_factor;
		txtid->state |= AGGR_ADDBA_COMPLETE;
		txtid->state &= ~AGGR_ADDBA_PROGRESS;
		ath_tx_resume_tid(sc, txtid);
	}
870 871
}

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872
bool ath_tx_aggr_check(struct ath_softc *sc, struct ath_node *an, u8 tidno)
873
{
S
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874
	struct ath_atx_tid *txtid;
875

S
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876 877
	if (!(sc->sc_flags & SC_OP_TXAGGR))
		return false;
878

S
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879 880
	txtid = ATH_AN_2_TID(an, tidno);

881
	if (!(txtid->state & (AGGR_ADDBA_COMPLETE | AGGR_ADDBA_PROGRESS)))
S
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882 883
			return true;
	return false;
884 885
}

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886 887 888
/********************/
/* Queue Management */
/********************/
889

S
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890 891
static void ath_txq_drain_pending_buffers(struct ath_softc *sc,
					  struct ath_txq *txq)
892
{
S
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893 894
	struct ath_atx_ac *ac, *ac_tmp;
	struct ath_atx_tid *tid, *tid_tmp;
895

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896 897 898 899 900 901 902 903
	list_for_each_entry_safe(ac, ac_tmp, &txq->axq_acq, list) {
		list_del(&ac->list);
		ac->sched = false;
		list_for_each_entry_safe(tid, tid_tmp, &ac->tid_q, list) {
			list_del(&tid->list);
			tid->sched = false;
			ath_tid_drain(sc, txq, tid);
		}
904 905 906
	}
}

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907
struct ath_txq *ath_txq_setup(struct ath_softc *sc, int qtype, int subtype)
908
{
909
	struct ath_hw *ah = sc->sc_ah;
910
	struct ath_common *common = ath9k_hw_common(ah);
S
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911
	struct ath9k_tx_queue_info qi;
912
	int qnum, i;
913

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914 915 916 917 918 919
	memset(&qi, 0, sizeof(qi));
	qi.tqi_subtype = subtype;
	qi.tqi_aifs = ATH9K_TXQ_USEDEFAULT;
	qi.tqi_cwmin = ATH9K_TXQ_USEDEFAULT;
	qi.tqi_cwmax = ATH9K_TXQ_USEDEFAULT;
	qi.tqi_physCompBuf = 0;
920 921

	/*
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922 923 924 925 926 927 928 929 930 931 932 933 934
	 * Enable interrupts only for EOL and DESC conditions.
	 * We mark tx descriptors to receive a DESC interrupt
	 * when a tx queue gets deep; otherwise waiting for the
	 * EOL to reap descriptors.  Note that this is done to
	 * reduce interrupt load and this only defers reaping
	 * descriptors, never transmitting frames.  Aside from
	 * reducing interrupts this also permits more concurrency.
	 * The only potential downside is if the tx queue backs
	 * up in which case the top half of the kernel may backup
	 * due to a lack of tx descriptors.
	 *
	 * The UAPSD queue is an exception, since we take a desc-
	 * based intr on the EOSP frames.
935
	 */
936 937 938 939 940 941 942 943 944 945
	if (ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
		qi.tqi_qflags = TXQ_FLAG_TXOKINT_ENABLE |
				TXQ_FLAG_TXERRINT_ENABLE;
	} else {
		if (qtype == ATH9K_TX_QUEUE_UAPSD)
			qi.tqi_qflags = TXQ_FLAG_TXDESCINT_ENABLE;
		else
			qi.tqi_qflags = TXQ_FLAG_TXEOLINT_ENABLE |
					TXQ_FLAG_TXDESCINT_ENABLE;
	}
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	qnum = ath9k_hw_setuptxqueue(ah, qtype, &qi);
	if (qnum == -1) {
948
		/*
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949 950
		 * NB: don't print a message, this happens
		 * normally on parts with too few tx queues
951
		 */
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		return NULL;
953
	}
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954
	if (qnum >= ARRAY_SIZE(sc->tx.txq)) {
955 956 957
		ath_print(common, ATH_DBG_FATAL,
			  "qnum %u out of range, max %u!\n",
			  qnum, (unsigned int)ARRAY_SIZE(sc->tx.txq));
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958 959 960 961 962
		ath9k_hw_releasetxqueue(ah, qnum);
		return NULL;
	}
	if (!ATH_TXQ_SETUP(sc, qnum)) {
		struct ath_txq *txq = &sc->tx.txq[qnum];
963

964
		txq->axq_class = subtype;
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		txq->axq_qnum = qnum;
		txq->axq_link = NULL;
		INIT_LIST_HEAD(&txq->axq_q);
		INIT_LIST_HEAD(&txq->axq_acq);
		spin_lock_init(&txq->axq_lock);
		txq->axq_depth = 0;
971
		txq->axq_tx_inprogress = false;
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		sc->tx.txqsetup |= 1<<qnum;
973 974 975 976 977

		txq->txq_headidx = txq->txq_tailidx = 0;
		for (i = 0; i < ATH_TXFIFO_DEPTH; i++)
			INIT_LIST_HEAD(&txq->txq_fifo[i]);
		INIT_LIST_HEAD(&txq->txq_fifo_pending);
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	}
	return &sc->tx.txq[qnum];
980 981
}

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int ath_txq_update(struct ath_softc *sc, int qnum,
		   struct ath9k_tx_queue_info *qinfo)
{
985
	struct ath_hw *ah = sc->sc_ah;
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	int error = 0;
	struct ath9k_tx_queue_info qi;

	if (qnum == sc->beacon.beaconq) {
		/*
		 * XXX: for beacon queue, we just save the parameter.
		 * It will be picked up by ath_beaconq_config when
		 * it's necessary.
		 */
		sc->beacon.beacon_qi = *qinfo;
996
		return 0;
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	}
998

999
	BUG_ON(sc->tx.txq[qnum].axq_qnum != qnum);
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	ath9k_hw_get_txq_props(ah, qnum, &qi);
	qi.tqi_aifs = qinfo->tqi_aifs;
	qi.tqi_cwmin = qinfo->tqi_cwmin;
	qi.tqi_cwmax = qinfo->tqi_cwmax;
	qi.tqi_burstTime = qinfo->tqi_burstTime;
	qi.tqi_readyTime = qinfo->tqi_readyTime;

	if (!ath9k_hw_set_txq_props(ah, qnum, &qi)) {
1009 1010
		ath_print(ath9k_hw_common(sc->sc_ah), ATH_DBG_FATAL,
			  "Unable to update hardware queue %u!\n", qnum);
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1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
		error = -EIO;
	} else {
		ath9k_hw_resettxqueue(ah, qnum);
	}

	return error;
}

int ath_cabq_update(struct ath_softc *sc)
{
	struct ath9k_tx_queue_info qi;
	int qnum = sc->beacon.cabq->axq_qnum;
1023

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1024
	ath9k_hw_get_txq_props(sc->sc_ah, qnum, &qi);
1025
	/*
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	 * Ensure the readytime % is within the bounds.
1027
	 */
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	if (sc->config.cabqReadytime < ATH9K_READY_TIME_LO_BOUND)
		sc->config.cabqReadytime = ATH9K_READY_TIME_LO_BOUND;
	else if (sc->config.cabqReadytime > ATH9K_READY_TIME_HI_BOUND)
		sc->config.cabqReadytime = ATH9K_READY_TIME_HI_BOUND;
1032

1033
	qi.tqi_readyTime = (sc->beacon_interval *
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			    sc->config.cabqReadytime) / 100;
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1035 1036 1037
	ath_txq_update(sc, qnum, &qi);

	return 0;
1038 1039
}

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/*
 * Drain a given TX queue (could be Beacon or Data)
 *
 * This assumes output has been stopped and
 * we do not need to block ath_tx_tasklet.
 */
void ath_draintxq(struct ath_softc *sc, struct ath_txq *txq, bool retry_tx)
1047
{
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1048 1049
	struct ath_buf *bf, *lastbf;
	struct list_head bf_head;
1050 1051 1052
	struct ath_tx_status ts;

	memset(&ts, 0, sizeof(ts));
S
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1053
	INIT_LIST_HEAD(&bf_head);
1054

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1055 1056
	for (;;) {
		spin_lock_bh(&txq->axq_lock);
1057

1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074
		if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
			if (list_empty(&txq->txq_fifo[txq->txq_tailidx])) {
				txq->txq_headidx = txq->txq_tailidx = 0;
				spin_unlock_bh(&txq->axq_lock);
				break;
			} else {
				bf = list_first_entry(&txq->txq_fifo[txq->txq_tailidx],
						      struct ath_buf, list);
			}
		} else {
			if (list_empty(&txq->axq_q)) {
				txq->axq_link = NULL;
				spin_unlock_bh(&txq->axq_lock);
				break;
			}
			bf = list_first_entry(&txq->axq_q, struct ath_buf,
					      list);
1075

1076 1077 1078
			if (bf->bf_stale) {
				list_del(&bf->list);
				spin_unlock_bh(&txq->axq_lock);
1079

1080
				ath_tx_return_buffer(sc, bf);
1081 1082
				continue;
			}
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		}
1084

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1085
		lastbf = bf->bf_lastbf;
1086 1087
		if (!retry_tx)
			lastbf->bf_tx_aborted = true;
1088

1089 1090 1091 1092 1093 1094 1095 1096 1097 1098
		if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
			list_cut_position(&bf_head,
					  &txq->txq_fifo[txq->txq_tailidx],
					  &lastbf->list);
			INCR(txq->txq_tailidx, ATH_TXFIFO_DEPTH);
		} else {
			/* remove ath_buf's of the same mpdu from txq */
			list_cut_position(&bf_head, &txq->axq_q, &lastbf->list);
		}

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		txq->axq_depth--;
1100

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1101 1102 1103
		spin_unlock_bh(&txq->axq_lock);

		if (bf_isampdu(bf))
1104
			ath_tx_complete_aggr(sc, txq, bf, &bf_head, &ts, 0);
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		else
1106
			ath_tx_complete_buf(sc, bf, txq, &bf_head, &ts, 0, 0);
1107 1108
	}

1109 1110 1111 1112
	spin_lock_bh(&txq->axq_lock);
	txq->axq_tx_inprogress = false;
	spin_unlock_bh(&txq->axq_lock);

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1113 1114 1115 1116 1117 1118 1119 1120
	/* flush any pending frames if aggregation is enabled */
	if (sc->sc_flags & SC_OP_TXAGGR) {
		if (!retry_tx) {
			spin_lock_bh(&txq->axq_lock);
			ath_txq_drain_pending_buffers(sc, txq);
			spin_unlock_bh(&txq->axq_lock);
		}
	}
1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141

	if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
		spin_lock_bh(&txq->axq_lock);
		while (!list_empty(&txq->txq_fifo_pending)) {
			bf = list_first_entry(&txq->txq_fifo_pending,
					      struct ath_buf, list);
			list_cut_position(&bf_head,
					  &txq->txq_fifo_pending,
					  &bf->bf_lastbf->list);
			spin_unlock_bh(&txq->axq_lock);

			if (bf_isampdu(bf))
				ath_tx_complete_aggr(sc, txq, bf, &bf_head,
						     &ts, 0);
			else
				ath_tx_complete_buf(sc, bf, txq, &bf_head,
						    &ts, 0, 0);
			spin_lock_bh(&txq->axq_lock);
		}
		spin_unlock_bh(&txq->axq_lock);
	}
1142 1143
}

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void ath_drain_all_txq(struct ath_softc *sc, bool retry_tx)
1145
{
1146
	struct ath_hw *ah = sc->sc_ah;
1147
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168
	struct ath_txq *txq;
	int i, npend = 0;

	if (sc->sc_flags & SC_OP_INVALID)
		return;

	/* Stop beacon queue */
	ath9k_hw_stoptxdma(sc->sc_ah, sc->beacon.beaconq);

	/* Stop data queues */
	for (i = 0; i < ATH9K_NUM_TX_QUEUES; i++) {
		if (ATH_TXQ_SETUP(sc, i)) {
			txq = &sc->tx.txq[i];
			ath9k_hw_stoptxdma(ah, txq->axq_qnum);
			npend += ath9k_hw_numtxpending(ah, txq->axq_qnum);
		}
	}

	if (npend) {
		int r;

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1169
		ath_print(common, ATH_DBG_FATAL,
1170
			  "Failed to stop TX DMA. Resetting hardware!\n");
S
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1171 1172

		spin_lock_bh(&sc->sc_resetlock);
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1173
		r = ath9k_hw_reset(ah, sc->sc_ah->curchan, false);
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1174
		if (r)
1175 1176 1177
			ath_print(common, ATH_DBG_FATAL,
				  "Unable to reset hardware; reset status %d\n",
				  r);
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1178 1179 1180 1181 1182 1183 1184
		spin_unlock_bh(&sc->sc_resetlock);
	}

	for (i = 0; i < ATH9K_NUM_TX_QUEUES; i++) {
		if (ATH_TXQ_SETUP(sc, i))
			ath_draintxq(sc, &sc->tx.txq[i], retry_tx);
	}
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}
1186

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1187
void ath_tx_cleanupq(struct ath_softc *sc, struct ath_txq *txq)
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1188
{
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1189 1190
	ath9k_hw_releasetxqueue(sc->sc_ah, txq->axq_qnum);
	sc->tx.txqsetup &= ~(1<<txq->axq_qnum);
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1191
}
1192

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void ath_txq_schedule(struct ath_softc *sc, struct ath_txq *txq)
{
	struct ath_atx_ac *ac;
	struct ath_atx_tid *tid;
1197

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1198 1199
	if (list_empty(&txq->axq_acq))
		return;
1200

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1201 1202 1203
	ac = list_first_entry(&txq->axq_acq, struct ath_atx_ac, list);
	list_del(&ac->list);
	ac->sched = false;
1204

S
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1205 1206 1207
	do {
		if (list_empty(&ac->tid_q))
			return;
1208

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1209 1210 1211
		tid = list_first_entry(&ac->tid_q, struct ath_atx_tid, list);
		list_del(&tid->list);
		tid->sched = false;
1212

S
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1213 1214
		if (tid->paused)
			continue;
1215

1216
		ath_tx_sched_aggr(sc, txq, tid);
1217 1218

		/*
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1219 1220
		 * add tid to round-robin queue if more frames
		 * are pending for the tid
1221
		 */
S
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1222 1223
		if (!list_empty(&tid->buf_q))
			ath_tx_queue_tid(txq, tid);
1224

S
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1225 1226
		break;
	} while (!list_empty(&ac->tid_q));
1227

S
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1228 1229 1230 1231
	if (!list_empty(&ac->tid_q)) {
		if (!ac->sched) {
			ac->sched = true;
			list_add_tail(&ac->list, &txq->axq_acq);
1232
		}
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1233 1234
	}
}
1235

S
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1236 1237 1238
int ath_tx_setup(struct ath_softc *sc, int haltype)
{
	struct ath_txq *txq;
1239

S
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1240
	if (haltype >= ARRAY_SIZE(sc->tx.hwq_map)) {
1241 1242
		ath_print(ath9k_hw_common(sc->sc_ah), ATH_DBG_FATAL,
			  "HAL AC %u out of range, max %zu!\n",
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1243 1244 1245 1246 1247 1248 1249 1250 1251
			 haltype, ARRAY_SIZE(sc->tx.hwq_map));
		return 0;
	}
	txq = ath_txq_setup(sc, ATH9K_TX_QUEUE_DATA, haltype);
	if (txq != NULL) {
		sc->tx.hwq_map[haltype] = txq->axq_qnum;
		return 1;
	} else
		return 0;
1252 1253
}

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1254 1255 1256 1257
/***********/
/* TX, DMA */
/***********/

1258
/*
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1259 1260
 * Insert a chain of ath_buf (descriptors) on a txq and
 * assume the descriptors are already chained together by caller.
1261
 */
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1262 1263
static void ath_tx_txqaddbuf(struct ath_softc *sc, struct ath_txq *txq,
			     struct list_head *head)
1264
{
1265
	struct ath_hw *ah = sc->sc_ah;
1266
	struct ath_common *common = ath9k_hw_common(ah);
S
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1267
	struct ath_buf *bf;
1268

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1269 1270 1271 1272
	/*
	 * Insert the frame on the outbound list and
	 * pass it on to the hardware.
	 */
1273

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1274 1275
	if (list_empty(head))
		return;
1276

S
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1277
	bf = list_first_entry(head, struct ath_buf, list);
1278

1279 1280
	ath_print(common, ATH_DBG_QUEUE,
		  "qnum: %d, txq depth: %d\n", txq->axq_qnum, txq->axq_depth);
1281

1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294
	if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
		if (txq->axq_depth >= ATH_TXFIFO_DEPTH) {
			list_splice_tail_init(head, &txq->txq_fifo_pending);
			return;
		}
		if (!list_empty(&txq->txq_fifo[txq->txq_headidx]))
			ath_print(common, ATH_DBG_XMIT,
				  "Initializing tx fifo %d which "
				  "is non-empty\n",
				  txq->txq_headidx);
		INIT_LIST_HEAD(&txq->txq_fifo[txq->txq_headidx]);
		list_splice_init(head, &txq->txq_fifo[txq->txq_headidx]);
		INCR(txq->txq_headidx, ATH_TXFIFO_DEPTH);
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1295
		ath9k_hw_puttxbuf(ah, txq->axq_qnum, bf->bf_daddr);
1296 1297 1298
		ath_print(common, ATH_DBG_XMIT,
			  "TXDP[%u] = %llx (%p)\n",
			  txq->axq_qnum, ito64(bf->bf_daddr), bf->bf_desc);
S
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1299
	} else {
1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317
		list_splice_tail_init(head, &txq->axq_q);

		if (txq->axq_link == NULL) {
			ath9k_hw_puttxbuf(ah, txq->axq_qnum, bf->bf_daddr);
			ath_print(common, ATH_DBG_XMIT,
					"TXDP[%u] = %llx (%p)\n",
					txq->axq_qnum, ito64(bf->bf_daddr),
					bf->bf_desc);
		} else {
			*txq->axq_link = bf->bf_daddr;
			ath_print(common, ATH_DBG_XMIT,
					"link[%u] (%p)=%llx (%p)\n",
					txq->axq_qnum, txq->axq_link,
					ito64(bf->bf_daddr), bf->bf_desc);
		}
		ath9k_hw_get_desc_link(ah, bf->bf_lastbf->bf_desc,
				       &txq->axq_link);
		ath9k_hw_txstart(ah, txq->axq_qnum);
S
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1318
	}
1319
	txq->axq_depth++;
S
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1320
}
1321

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1322 1323 1324
static void ath_tx_send_ampdu(struct ath_softc *sc, struct ath_atx_tid *tid,
			      struct list_head *bf_head,
			      struct ath_tx_control *txctl)
1325 1326 1327
{
	struct ath_buf *bf;

S
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1328 1329
	bf = list_first_entry(bf_head, struct ath_buf, list);
	bf->bf_state.bf_type |= BUF_AMPDU;
S
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1330
	TX_STAT_INC(txctl->txq->axq_qnum, a_queued);
1331

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1332 1333 1334 1335 1336 1337 1338 1339 1340 1341
	/*
	 * Do not queue to h/w when any of the following conditions is true:
	 * - there are pending frames in software queue
	 * - the TID is currently paused for ADDBA/BAR request
	 * - seqno is not within block-ack window
	 * - h/w queue depth exceeds low water mark
	 */
	if (!list_empty(&tid->buf_q) || tid->paused ||
	    !BAW_WITHIN(tid->seq_start, tid->baw_size, bf->bf_seqno) ||
	    txctl->txq->axq_depth >= ATH_AGGR_MIN_QDEPTH) {
1342
		/*
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1343 1344
		 * Add this frame to software queue for scheduling later
		 * for aggregation.
1345
		 */
S
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1346
		list_move_tail(&bf->list, &tid->buf_q);
S
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1347 1348 1349 1350 1351 1352 1353 1354 1355
		ath_tx_queue_tid(txctl->txq, tid);
		return;
	}

	/* Add sub-frame to BAW */
	ath_tx_addto_baw(sc, tid, bf);

	/* Queue to h/w without aggregation */
	bf->bf_nframes = 1;
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1356
	bf->bf_lastbf = bf;
S
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1357 1358 1359 1360
	ath_buf_set_rate(sc, bf);
	ath_tx_txqaddbuf(sc, txctl->txq, bf_head);
}

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1361 1362 1363
static void ath_tx_send_ht_normal(struct ath_softc *sc, struct ath_txq *txq,
				  struct ath_atx_tid *tid,
				  struct list_head *bf_head)
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1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
{
	struct ath_buf *bf;

	bf = list_first_entry(bf_head, struct ath_buf, list);
	bf->bf_state.bf_type &= ~BUF_AMPDU;

	/* update starting sequence number for subsequent ADDBA request */
	INCR(tid->seq_start, IEEE80211_SEQ_MAX);

	bf->bf_nframes = 1;
S
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1374
	bf->bf_lastbf = bf;
S
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1375 1376
	ath_buf_set_rate(sc, bf);
	ath_tx_txqaddbuf(sc, txq, bf_head);
S
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1377
	TX_STAT_INC(txq->axq_qnum, queued);
S
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1378 1379
}

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1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390
static void ath_tx_send_normal(struct ath_softc *sc, struct ath_txq *txq,
			       struct list_head *bf_head)
{
	struct ath_buf *bf;

	bf = list_first_entry(bf_head, struct ath_buf, list);

	bf->bf_lastbf = bf;
	bf->bf_nframes = 1;
	ath_buf_set_rate(sc, bf);
	ath_tx_txqaddbuf(sc, txq, bf_head);
S
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1391
	TX_STAT_INC(txq->axq_qnum, queued);
S
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1392 1393
}

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static enum ath9k_pkt_type get_hw_packet_type(struct sk_buff *skb)
{
	struct ieee80211_hdr *hdr;
	enum ath9k_pkt_type htype;
	__le16 fc;

	hdr = (struct ieee80211_hdr *)skb->data;
	fc = hdr->frame_control;

	if (ieee80211_is_beacon(fc))
		htype = ATH9K_PKT_TYPE_BEACON;
	else if (ieee80211_is_probe_resp(fc))
		htype = ATH9K_PKT_TYPE_PROBE_RESP;
	else if (ieee80211_is_atim(fc))
		htype = ATH9K_PKT_TYPE_ATIM;
	else if (ieee80211_is_pspoll(fc))
		htype = ATH9K_PKT_TYPE_PSPOLL;
	else
		htype = ATH9K_PKT_TYPE_NORMAL;

	return htype;
}

static int get_hw_crypto_keytype(struct sk_buff *skb)
{
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);

	if (tx_info->control.hw_key) {
		if (tx_info->control.hw_key->alg == ALG_WEP)
			return ATH9K_KEY_TYPE_WEP;
		else if (tx_info->control.hw_key->alg == ALG_TKIP)
			return ATH9K_KEY_TYPE_TKIP;
		else if (tx_info->control.hw_key->alg == ALG_CCMP)
			return ATH9K_KEY_TYPE_AES;
	}

	return ATH9K_KEY_TYPE_CLEAR;
}

static void assign_aggr_tid_seqno(struct sk_buff *skb,
				  struct ath_buf *bf)
{
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
	struct ieee80211_hdr *hdr;
	struct ath_node *an;
	struct ath_atx_tid *tid;
	__le16 fc;
	u8 *qc;

	if (!tx_info->control.sta)
		return;

	an = (struct ath_node *)tx_info->control.sta->drv_priv;
	hdr = (struct ieee80211_hdr *)skb->data;
	fc = hdr->frame_control;

	if (ieee80211_is_data_qos(fc)) {
		qc = ieee80211_get_qos_ctl(hdr);
		bf->bf_tidno = qc[0] & 0xf;
	}

	/*
	 * For HT capable stations, we save tidno for later use.
	 * We also override seqno set by upper layer with the one
	 * in tx aggregation state.
	 */
	tid = ATH_AN_2_TID(an, bf->bf_tidno);
1461
	hdr->seq_ctrl = cpu_to_le16(tid->seq_next << IEEE80211_SEQ_SEQ_SHIFT);
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	bf->bf_seqno = tid->seq_next;
	INCR(tid->seq_next, IEEE80211_SEQ_MAX);
}

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static int setup_tx_flags(struct sk_buff *skb, bool use_ldpc)
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{
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
	int flags = 0;

	flags |= ATH9K_TXDESC_CLRDMASK; /* needed for crypto errors */
	flags |= ATH9K_TXDESC_INTREQ;

	if (tx_info->flags & IEEE80211_TX_CTL_NO_ACK)
		flags |= ATH9K_TXDESC_NOACK;

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	if (use_ldpc)
		flags |= ATH9K_TXDESC_LDPC;

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	return flags;
}

/*
 * rix - rate index
 * pktlen - total bytes (delims + data + fcs + pads + pad delims)
 * width  - 0 for 20 MHz, 1 for 40 MHz
 * half_gi - to use 4us v/s 3.6 us for symbol time
 */
static u32 ath_pkt_duration(struct ath_softc *sc, u8 rix, struct ath_buf *bf,
			    int width, int half_gi, bool shortPreamble)
{
	u32 nbits, nsymbits, duration, nsymbols;
	int streams, pktlen;

	pktlen = bf_isaggr(bf) ? bf->bf_al : bf->bf_frmlen;

	/* find number of symbols: PLCP + data */
1498
	streams = HT_RC_2_STREAMS(rix);
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	nbits = (pktlen << 3) + OFDM_PLCP_BITS;
1500
	nsymbits = bits_per_symbol[rix % 8][width] * streams;
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	nsymbols = (nbits + nsymbits - 1) / nsymbits;

	if (!half_gi)
		duration = SYMBOL_TIME(nsymbols);
	else
		duration = SYMBOL_TIME_HALFGI(nsymbols);

	/* addup duration for legacy/ht training and signal fields */
	duration += L_STF + L_LTF + L_SIG + HT_SIG + HT_STF + HT_LTF(streams);

	return duration;
}

static void ath_buf_set_rate(struct ath_softc *sc, struct ath_buf *bf)
{
1516
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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	struct ath9k_11n_rate_series series[4];
	struct sk_buff *skb;
	struct ieee80211_tx_info *tx_info;
	struct ieee80211_tx_rate *rates;
1521
	const struct ieee80211_rate *rate;
1522
	struct ieee80211_hdr *hdr;
1523 1524
	int i, flags = 0;
	u8 rix = 0, ctsrate = 0;
1525
	bool is_pspoll;
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	memset(series, 0, sizeof(struct ath9k_11n_rate_series) * 4);

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	skb = bf->bf_mpdu;
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	tx_info = IEEE80211_SKB_CB(skb);
	rates = tx_info->control.rates;
1532 1533
	hdr = (struct ieee80211_hdr *)skb->data;
	is_pspoll = ieee80211_is_pspoll(hdr->frame_control);
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	/*
1536 1537 1538
	 * We check if Short Preamble is needed for the CTS rate by
	 * checking the BSS's global flag.
	 * But for the rate series, IEEE80211_TX_RC_USE_SHORT_PREAMBLE is used.
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	 */
1540 1541
	rate = ieee80211_get_rts_cts_rate(sc->hw, tx_info);
	ctsrate = rate->hw_value;
1542
	if (sc->sc_flags & SC_OP_PREAMBLE_SHORT)
1543
		ctsrate |= rate->hw_value_short;
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	for (i = 0; i < 4; i++) {
1546 1547 1548
		bool is_40, is_sgi, is_sp;
		int phy;

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		if (!rates[i].count || (rates[i].idx < 0))
			continue;

		rix = rates[i].idx;
		series[i].Tries = rates[i].count;
1554
		series[i].ChSel = common->tx_chainmask;
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		if ((sc->config.ath_aggr_prot && bf_isaggr(bf)) ||
		    (rates[i].flags & IEEE80211_TX_RC_USE_RTS_CTS)) {
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			series[i].RateFlags |= ATH9K_RATESERIES_RTS_CTS;
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			flags |= ATH9K_TXDESC_RTSENA;
		} else if (rates[i].flags & IEEE80211_TX_RC_USE_CTS_PROTECT) {
			series[i].RateFlags |= ATH9K_RATESERIES_RTS_CTS;
			flags |= ATH9K_TXDESC_CTSENA;
		}

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		if (rates[i].flags & IEEE80211_TX_RC_40_MHZ_WIDTH)
			series[i].RateFlags |= ATH9K_RATESERIES_2040;
		if (rates[i].flags & IEEE80211_TX_RC_SHORT_GI)
			series[i].RateFlags |= ATH9K_RATESERIES_HALFGI;
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		is_sgi = !!(rates[i].flags & IEEE80211_TX_RC_SHORT_GI);
		is_40 = !!(rates[i].flags & IEEE80211_TX_RC_40_MHZ_WIDTH);
		is_sp = !!(rates[i].flags & IEEE80211_TX_RC_USE_SHORT_PREAMBLE);

		if (rates[i].flags & IEEE80211_TX_RC_MCS) {
			/* MCS rates */
			series[i].Rate = rix | 0x80;
			series[i].PktDuration = ath_pkt_duration(sc, rix, bf,
				 is_40, is_sgi, is_sp);
1579 1580
			if (rix < 8 && (tx_info->flags & IEEE80211_TX_CTL_STBC))
				series[i].RateFlags |= ATH9K_RATESERIES_STBC;
1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601
			continue;
		}

		/* legcay rates */
		if ((tx_info->band == IEEE80211_BAND_2GHZ) &&
		    !(rate->flags & IEEE80211_RATE_ERP_G))
			phy = WLAN_RC_PHY_CCK;
		else
			phy = WLAN_RC_PHY_OFDM;

		rate = &sc->sbands[tx_info->band].bitrates[rates[i].idx];
		series[i].Rate = rate->hw_value;
		if (rate->hw_value_short) {
			if (rates[i].flags & IEEE80211_TX_RC_USE_SHORT_PREAMBLE)
				series[i].Rate |= rate->hw_value_short;
		} else {
			is_sp = false;
		}

		series[i].PktDuration = ath9k_hw_computetxtime(sc->sc_ah,
			phy, rate->bitrate * 100, bf->bf_frmlen, rix, is_sp);
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	}

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	/* For AR5416 - RTS cannot be followed by a frame larger than 8K */
	if (bf_isaggr(bf) && (bf->bf_al > sc->sc_ah->caps.rts_aggr_limit))
		flags &= ~ATH9K_TXDESC_RTSENA;

	/* ATH9K_TXDESC_RTSENA and ATH9K_TXDESC_CTSENA are mutually exclusive. */
	if (flags & ATH9K_TXDESC_RTSENA)
		flags &= ~ATH9K_TXDESC_CTSENA;

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	/* set dur_update_en for l-sig computation except for PS-Poll frames */
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	ath9k_hw_set11n_ratescenario(sc->sc_ah, bf->bf_desc,
				     bf->bf_lastbf->bf_desc,
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				     !is_pspoll, ctsrate,
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				     0, series, 4, flags);
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	if (sc->config.ath_aggr_prot && flags)
1619
		ath9k_hw_set11n_burstduration(sc->sc_ah, bf->bf_desc, 8192);
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}

1622
static int ath_tx_setup_buffer(struct ieee80211_hw *hw, struct ath_buf *bf,
1623
				struct sk_buff *skb,
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				struct ath_tx_control *txctl)
1625
{
1626 1627
	struct ath_wiphy *aphy = hw->priv;
	struct ath_softc *sc = aphy->sc;
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	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
	int hdrlen;
	__le16 fc;
1632
	int padpos, padsize;
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	bool use_ldpc = false;
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	tx_info->pad[0] = 0;
	switch (txctl->frame_type) {
1637
	case ATH9K_IFT_NOT_INTERNAL:
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		break;
1639
	case ATH9K_IFT_PAUSE:
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		tx_info->pad[0] |= ATH_TX_INFO_FRAME_TYPE_PAUSE;
		/* fall through */
1642
	case ATH9K_IFT_UNPAUSE:
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		tx_info->pad[0] |= ATH_TX_INFO_FRAME_TYPE_INTERNAL;
		break;
	}
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	hdrlen = ieee80211_get_hdrlen_from_skb(skb);
	fc = hdr->frame_control;
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	ATH_TXBUF_RESET(bf);
1650

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	bf->aphy = aphy;
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	bf->bf_frmlen = skb->len + FCS_LEN;
	/* Remove the padding size from bf_frmlen, if any */
	padpos = ath9k_cmn_padpos(hdr->frame_control);
	padsize = padpos & 3;
	if (padsize && skb->len>padpos+padsize) {
		bf->bf_frmlen -= padsize;
	}
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1660
	if (!txctl->paprd && conf_is_ht(&hw->conf)) {
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		bf->bf_state.bf_type |= BUF_HT;
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		if (tx_info->flags & IEEE80211_TX_CTL_LDPC)
			use_ldpc = true;
	}
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1666
	bf->bf_state.bfs_paprd = txctl->paprd;
1667 1668
	if (txctl->paprd)
		bf->bf_state.bfs_paprd_timestamp = jiffies;
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	bf->bf_flags = setup_tx_flags(skb, use_ldpc);
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	bf->bf_keytype = get_hw_crypto_keytype(skb);
	if (bf->bf_keytype != ATH9K_KEY_TYPE_CLEAR) {
		bf->bf_frmlen += tx_info->control.hw_key->icv_len;
		bf->bf_keyix = tx_info->control.hw_key->hw_key_idx;
	} else {
		bf->bf_keyix = ATH9K_TXKEYIX_INVALID;
	}

1679 1680
	if (ieee80211_is_data_qos(fc) && bf_isht(bf) &&
	    (sc->sc_flags & SC_OP_TXAGGR))
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		assign_aggr_tid_seqno(skb, bf);

1683
	bf->bf_mpdu = skb;
1684

1685 1686 1687
	bf->bf_dmacontext = dma_map_single(sc->dev, skb->data,
					   skb->len, DMA_TO_DEVICE);
	if (unlikely(dma_mapping_error(sc->dev, bf->bf_dmacontext))) {
1688
		bf->bf_mpdu = NULL;
1689 1690
		ath_print(ath9k_hw_common(sc->sc_ah), ATH_DBG_FATAL,
			  "dma_mapping_error() on TX\n");
1691 1692 1693
		return -ENOMEM;
	}

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	bf->bf_buf_addr = bf->bf_dmacontext;
1695 1696 1697 1698

	/* tag if this is a nullfunc frame to enable PS when AP acks it */
	if (ieee80211_is_nullfunc(fc) && ieee80211_has_pm(fc)) {
		bf->bf_isnullfunc = true;
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		sc->ps_flags &= ~PS_NULLFUNC_COMPLETED;
1700 1701 1702
	} else
		bf->bf_isnullfunc = false;

1703 1704
	bf->bf_tx_aborted = false;

1705
	return 0;
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}

/* FIXME: tx power */
static void ath_tx_start_dma(struct ath_softc *sc, struct ath_buf *bf,
			     struct ath_tx_control *txctl)
{
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	struct sk_buff *skb = bf->bf_mpdu;
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	struct ieee80211_tx_info *tx_info =  IEEE80211_SKB_CB(skb);
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	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
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	struct ath_node *an = NULL;
	struct list_head bf_head;
	struct ath_desc *ds;
	struct ath_atx_tid *tid;
1719
	struct ath_hw *ah = sc->sc_ah;
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	int frm_type;
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	__le16 fc;
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	frm_type = get_hw_packet_type(skb);
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	fc = hdr->frame_control;
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	INIT_LIST_HEAD(&bf_head);
	list_add_tail(&bf->list, &bf_head);
1728 1729

	ds = bf->bf_desc;
1730
	ath9k_hw_set_desc_link(ah, ds, 0);
1731

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	ath9k_hw_set11n_txdesc(ah, ds, bf->bf_frmlen, frm_type, MAX_RATE_POWER,
			       bf->bf_keyix, bf->bf_keytype, bf->bf_flags);

	ath9k_hw_filltxdesc(ah, ds,
1736 1737 1738
			    skb->len,	/* segment length */
			    true,	/* first segment */
			    true,	/* last segment */
1739
			    ds,		/* first descriptor */
1740 1741
			    bf->bf_buf_addr,
			    txctl->txq->axq_qnum);
1742

1743 1744 1745
	if (bf->bf_state.bfs_paprd)
		ar9003_hw_set_paprd_txdesc(ah, ds, bf->bf_state.bfs_paprd);

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	spin_lock_bh(&txctl->txq->axq_lock);
1747

1748 1749 1750 1751 1752
	if (bf_isht(bf) && (sc->sc_flags & SC_OP_TXAGGR) &&
	    tx_info->control.sta) {
		an = (struct ath_node *)tx_info->control.sta->drv_priv;
		tid = ATH_AN_2_TID(an, bf->bf_tidno);

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		if (!ieee80211_is_data_qos(fc)) {
			ath_tx_send_normal(sc, txctl->txq, &bf_head);
			goto tx_done;
		}

1758
		if (tx_info->flags & IEEE80211_TX_CTL_AMPDU) {
1759 1760 1761 1762
			/*
			 * Try aggregation if it's a unicast data frame
			 * and the destination is HT capable.
			 */
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			ath_tx_send_ampdu(sc, tid, &bf_head, txctl);
1764 1765
		} else {
			/*
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			 * Send this frame as regular when ADDBA
			 * exchange is neither complete nor pending.
1768
			 */
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			ath_tx_send_ht_normal(sc, txctl->txq,
					      tid, &bf_head);
1771 1772
		}
	} else {
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		ath_tx_send_normal(sc, txctl->txq, &bf_head);
1774
	}
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tx_done:
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	spin_unlock_bh(&txctl->txq->axq_lock);
1778 1779
}

1780
/* Upon failure caller should free skb */
1781
int ath_tx_start(struct ieee80211_hw *hw, struct sk_buff *skb,
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		 struct ath_tx_control *txctl)
1783
{
1784 1785
	struct ath_wiphy *aphy = hw->priv;
	struct ath_softc *sc = aphy->sc;
1786
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
1787
	struct ath_txq *txq = txctl->txq;
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	struct ath_buf *bf;
1789
	int q, r;
1790

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	bf = ath_tx_get_buffer(sc);
	if (!bf) {
1793
		ath_print(common, ATH_DBG_XMIT, "TX buffers are full\n");
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		return -1;
	}

1797
	r = ath_tx_setup_buffer(hw, bf, skb, txctl);
1798
	if (unlikely(r)) {
1799
		ath_print(common, ATH_DBG_FATAL, "TX mem alloc failure\n");
1800 1801 1802 1803 1804 1805

		/* upon ath_tx_processq() this TX queue will be resumed, we
		 * guarantee this will happen by knowing beforehand that
		 * we will at least have to run TX completionon one buffer
		 * on the queue */
		spin_lock_bh(&txq->axq_lock);
1806
		if (!txq->stopped && txq->axq_depth > 1) {
1807
			ath_mac80211_stop_queue(sc, skb_get_queue_mapping(skb));
1808 1809 1810 1811
			txq->stopped = 1;
		}
		spin_unlock_bh(&txq->axq_lock);

1812
		ath_tx_return_buffer(sc, bf);
1813

1814 1815 1816
		return r;
	}

1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827
	q = skb_get_queue_mapping(skb);
	if (q >= 4)
		q = 0;

	spin_lock_bh(&txq->axq_lock);
	if (++sc->tx.pending_frames[q] > ATH_MAX_QDEPTH && !txq->stopped) {
		ath_mac80211_stop_queue(sc, skb_get_queue_mapping(skb));
		txq->stopped = 1;
	}
	spin_unlock_bh(&txq->axq_lock);

1828
	ath_tx_start_dma(sc, bf, txctl);
1829

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	return 0;
1831 1832
}

1833
void ath_tx_cabq(struct ieee80211_hw *hw, struct sk_buff *skb)
1834
{
1835 1836
	struct ath_wiphy *aphy = hw->priv;
	struct ath_softc *sc = aphy->sc;
1837
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
1838 1839
	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
	int padpos, padsize;
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1840 1841
	struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
	struct ath_tx_control txctl;
1842

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1843
	memset(&txctl, 0, sizeof(struct ath_tx_control));
1844 1845

	/*
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1846 1847 1848
	 * As a temporary workaround, assign seq# here; this will likely need
	 * to be cleaned up to work better with Beacon transmission and virtual
	 * BSSes.
1849
	 */
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1850 1851 1852 1853 1854
	if (info->flags & IEEE80211_TX_CTL_ASSIGN_SEQ) {
		if (info->flags & IEEE80211_TX_CTL_FIRST_FRAGMENT)
			sc->tx.seq_no += 0x10;
		hdr->seq_ctrl &= cpu_to_le16(IEEE80211_SCTL_FRAG);
		hdr->seq_ctrl |= cpu_to_le16(sc->tx.seq_no);
1855 1856
	}

S
Sujith 已提交
1857
	/* Add the padding after the header if this is not already done */
1858 1859 1860
	padpos = ath9k_cmn_padpos(hdr->frame_control);
	padsize = padpos & 3;
	if (padsize && skb->len>padpos) {
S
Sujith 已提交
1861
		if (skb_headroom(skb) < padsize) {
1862 1863
			ath_print(common, ATH_DBG_XMIT,
				  "TX CABQ padding failed\n");
S
Sujith 已提交
1864 1865 1866 1867
			dev_kfree_skb_any(skb);
			return;
		}
		skb_push(skb, padsize);
1868
		memmove(skb->data, skb->data + padsize, padpos);
1869 1870
	}

S
Sujith 已提交
1871
	txctl.txq = sc->beacon.cabq;
1872

1873 1874
	ath_print(common, ATH_DBG_XMIT,
		  "transmitting CABQ packet, skb: %p\n", skb);
1875

1876
	if (ath_tx_start(hw, skb, &txctl) != 0) {
1877
		ath_print(common, ATH_DBG_XMIT, "CABQ TX failed\n");
S
Sujith 已提交
1878
		goto exit;
1879 1880
	}

S
Sujith 已提交
1881 1882 1883
	return;
exit:
	dev_kfree_skb_any(skb);
1884 1885
}

S
Sujith 已提交
1886 1887 1888
/*****************/
/* TX Completion */
/*****************/
S
Sujith 已提交
1889

S
Sujith 已提交
1890
static void ath_tx_complete(struct ath_softc *sc, struct sk_buff *skb,
F
Felix Fietkau 已提交
1891
			    struct ath_wiphy *aphy, int tx_flags)
S
Sujith 已提交
1892
{
S
Sujith 已提交
1893 1894
	struct ieee80211_hw *hw = sc->hw;
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
1895
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
1896
	struct ieee80211_hdr * hdr = (struct ieee80211_hdr *)skb->data;
1897
	int q, padpos, padsize;
S
Sujith 已提交
1898

1899
	ath_print(common, ATH_DBG_XMIT, "TX complete: skb: %p\n", skb);
S
Sujith 已提交
1900

F
Felix Fietkau 已提交
1901 1902
	if (aphy)
		hw = aphy->hw;
S
Sujith 已提交
1903

1904
	if (tx_flags & ATH_TX_BAR)
S
Sujith 已提交
1905 1906
		tx_info->flags |= IEEE80211_TX_STAT_AMPDU_NO_BACK;

1907
	if (!(tx_flags & (ATH_TX_ERROR | ATH_TX_XRETRY))) {
S
Sujith 已提交
1908 1909
		/* Frame was ACKed */
		tx_info->flags |= IEEE80211_TX_STAT_ACK;
S
Sujith 已提交
1910 1911
	}

1912 1913 1914
	padpos = ath9k_cmn_padpos(hdr->frame_control);
	padsize = padpos & 3;
	if (padsize && skb->len>padpos+padsize) {
S
Sujith 已提交
1915 1916 1917 1918
		/*
		 * Remove MAC header padding before giving the frame back to
		 * mac80211.
		 */
1919
		memmove(skb->data + padsize, skb->data, padpos);
S
Sujith 已提交
1920 1921
		skb_pull(skb, padsize);
	}
S
Sujith 已提交
1922

S
Sujith 已提交
1923 1924
	if (sc->ps_flags & PS_WAIT_FOR_TX_ACK) {
		sc->ps_flags &= ~PS_WAIT_FOR_TX_ACK;
1925 1926
		ath_print(common, ATH_DBG_PS,
			  "Going back to sleep after having "
1927
			  "received TX status (0x%lx)\n",
S
Sujith 已提交
1928 1929 1930 1931
			sc->ps_flags & (PS_WAIT_FOR_BEACON |
					PS_WAIT_FOR_CAB |
					PS_WAIT_FOR_PSPOLL_DATA |
					PS_WAIT_FOR_TX_ACK));
1932 1933
	}

F
Felix Fietkau 已提交
1934
	if (unlikely(tx_info->pad[0] & ATH_TX_INFO_FRAME_TYPE_INTERNAL))
1935
		ath9k_tx_status(hw, skb);
1936 1937 1938 1939 1940 1941 1942 1943
	else {
		q = skb_get_queue_mapping(skb);
		if (q >= 4)
			q = 0;

		if (--sc->tx.pending_frames[q] < 0)
			sc->tx.pending_frames[q] = 0;

F
Felix Fietkau 已提交
1944
		ieee80211_tx_status(hw, skb);
1945
	}
S
Sujith 已提交
1946
}
1947

S
Sujith 已提交
1948
static void ath_tx_complete_buf(struct ath_softc *sc, struct ath_buf *bf,
1949 1950
				struct ath_txq *txq, struct list_head *bf_q,
				struct ath_tx_status *ts, int txok, int sendbar)
1951
{
S
Sujith 已提交
1952 1953
	struct sk_buff *skb = bf->bf_mpdu;
	unsigned long flags;
1954
	int tx_flags = 0;
1955

S
Sujith 已提交
1956
	if (sendbar)
1957
		tx_flags = ATH_TX_BAR;
1958

S
Sujith 已提交
1959
	if (!txok) {
1960
		tx_flags |= ATH_TX_ERROR;
1961

S
Sujith 已提交
1962
		if (bf_isxretried(bf))
1963
			tx_flags |= ATH_TX_XRETRY;
1964 1965
	}

S
Sujith 已提交
1966
	dma_unmap_single(sc->dev, bf->bf_dmacontext, skb->len, DMA_TO_DEVICE);
1967 1968

	if (bf->bf_state.bfs_paprd) {
1969 1970
		if (time_after(jiffies,
			       bf->bf_state.bfs_paprd_timestamp +
1971
			       msecs_to_jiffies(ATH_PAPRD_TIMEOUT)))
1972
			dev_kfree_skb_any(skb);
1973
		else
1974
			complete(&sc->paprd_complete);
1975 1976 1977 1978
	} else {
		ath_tx_complete(sc, skb, bf->aphy, tx_flags);
		ath_debug_stat_tx(sc, txq, bf, ts);
	}
S
Sujith 已提交
1979 1980 1981 1982 1983 1984 1985

	/*
	 * Return the list of ath_buf of this mpdu to free queue
	 */
	spin_lock_irqsave(&sc->tx.txbuflock, flags);
	list_splice_tail_init(bf_q, &sc->tx.txbuf);
	spin_unlock_irqrestore(&sc->tx.txbuflock, flags);
1986 1987
}

S
Sujith 已提交
1988
static int ath_tx_num_badfrms(struct ath_softc *sc, struct ath_buf *bf,
1989
			      struct ath_tx_status *ts, int txok)
1990
{
S
Sujith 已提交
1991 1992 1993 1994 1995
	u16 seq_st = 0;
	u32 ba[WME_BA_BMP_SIZE >> 5];
	int ba_index;
	int nbad = 0;
	int isaggr = 0;
1996

1997
	if (bf->bf_lastbf->bf_tx_aborted)
S
Sujith 已提交
1998
		return 0;
1999

S
Sujith 已提交
2000 2001
	isaggr = bf_isaggr(bf);
	if (isaggr) {
2002 2003
		seq_st = ts->ts_seqnum;
		memcpy(ba, &ts->ba_low, WME_BA_BMP_SIZE >> 3);
S
Sujith 已提交
2004
	}
2005

S
Sujith 已提交
2006 2007 2008 2009 2010 2011 2012
	while (bf) {
		ba_index = ATH_BA_INDEX(seq_st, bf->bf_seqno);
		if (!txok || (isaggr && !ATH_BA_ISSET(ba, ba_index)))
			nbad++;

		bf = bf->bf_next;
	}
2013

S
Sujith 已提交
2014 2015
	return nbad;
}
2016

2017
static void ath_tx_rc_status(struct ath_buf *bf, struct ath_tx_status *ts,
2018
			     int nbad, int txok, bool update_rc)
2019
{
S
Sujith 已提交
2020
	struct sk_buff *skb = bf->bf_mpdu;
2021
	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
S
Sujith 已提交
2022
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
F
Felix Fietkau 已提交
2023
	struct ieee80211_hw *hw = bf->aphy->hw;
2024
	u8 i, tx_rateindex;
2025

S
Sujith 已提交
2026
	if (txok)
2027
		tx_info->status.ack_signal = ts->ts_rssi;
S
Sujith 已提交
2028

2029
	tx_rateindex = ts->ts_rateindex;
2030 2031
	WARN_ON(tx_rateindex >= hw->max_rates);

2032
	if (ts->ts_status & ATH9K_TXERR_FILT)
S
Sujith 已提交
2033
		tx_info->flags |= IEEE80211_TX_STAT_TX_FILTERED;
2034 2035
	if ((tx_info->flags & IEEE80211_TX_CTL_AMPDU) && update_rc)
		tx_info->flags |= IEEE80211_TX_STAT_AMPDU;
2036

2037
	if ((ts->ts_status & ATH9K_TXERR_FILT) == 0 &&
2038
	    (bf->bf_flags & ATH9K_TXDESC_NOACK) == 0 && update_rc) {
2039
		if (ieee80211_is_data(hdr->frame_control)) {
2040
			if (ts->ts_flags &
F
Felix Fietkau 已提交
2041 2042
			    (ATH9K_TX_DATA_UNDERRUN | ATH9K_TX_DELIM_UNDERRUN))
				tx_info->pad[0] |= ATH_TX_INFO_UNDERRUN;
2043 2044
			if ((ts->ts_status & ATH9K_TXERR_XRETRY) ||
			    (ts->ts_status & ATH9K_TXERR_FIFO))
F
Felix Fietkau 已提交
2045 2046 2047
				tx_info->pad[0] |= ATH_TX_INFO_XRETRY;
			tx_info->status.ampdu_len = bf->bf_nframes;
			tx_info->status.ampdu_ack_len = bf->bf_nframes - nbad;
S
Sujith 已提交
2048
		}
2049
	}
2050

2051
	for (i = tx_rateindex + 1; i < hw->max_rates; i++) {
2052
		tx_info->status.rates[i].count = 0;
2053 2054
		tx_info->status.rates[i].idx = -1;
	}
2055

2056
	tx_info->status.rates[tx_rateindex].count = ts->ts_longretry + 1;
2057 2058
}

2059 2060 2061 2062
static void ath_wake_mac80211_queue(struct ath_softc *sc, struct ath_txq *txq)
{
	int qnum;

2063 2064 2065 2066
	qnum = ath_get_mac80211_qnum(txq->axq_class, sc);
	if (qnum == -1)
		return;

2067
	spin_lock_bh(&txq->axq_lock);
2068 2069 2070
	if (txq->stopped && sc->tx.pending_frames[qnum] < ATH_MAX_QDEPTH) {
		ath_mac80211_start_queue(sc, qnum);
		txq->stopped = 0;
2071 2072 2073 2074
	}
	spin_unlock_bh(&txq->axq_lock);
}

S
Sujith 已提交
2075
static void ath_tx_processq(struct ath_softc *sc, struct ath_txq *txq)
2076
{
2077
	struct ath_hw *ah = sc->sc_ah;
2078
	struct ath_common *common = ath9k_hw_common(ah);
S
Sujith 已提交
2079
	struct ath_buf *bf, *lastbf, *bf_held = NULL;
2080
	struct list_head bf_head;
S
Sujith 已提交
2081
	struct ath_desc *ds;
2082
	struct ath_tx_status ts;
2083
	int txok;
S
Sujith 已提交
2084
	int status;
2085

2086 2087 2088
	ath_print(common, ATH_DBG_QUEUE, "tx queue %d (%x), link %p\n",
		  txq->axq_qnum, ath9k_hw_gettxbuf(sc->sc_ah, txq->axq_qnum),
		  txq->axq_link);
2089 2090 2091 2092 2093 2094 2095 2096 2097 2098

	for (;;) {
		spin_lock_bh(&txq->axq_lock);
		if (list_empty(&txq->axq_q)) {
			txq->axq_link = NULL;
			spin_unlock_bh(&txq->axq_lock);
			break;
		}
		bf = list_first_entry(&txq->axq_q, struct ath_buf, list);

S
Sujith 已提交
2099 2100 2101 2102 2103 2104 2105 2106 2107
		/*
		 * There is a race condition that a BH gets scheduled
		 * after sw writes TxE and before hw re-load the last
		 * descriptor to get the newly chained one.
		 * Software must keep the last DONE descriptor as a
		 * holding descriptor - software does so by marking
		 * it with the STALE flag.
		 */
		bf_held = NULL;
S
Sujith 已提交
2108
		if (bf->bf_stale) {
S
Sujith 已提交
2109 2110
			bf_held = bf;
			if (list_is_last(&bf_held->list, &txq->axq_q)) {
2111
				spin_unlock_bh(&txq->axq_lock);
S
Sujith 已提交
2112 2113 2114
				break;
			} else {
				bf = list_entry(bf_held->list.next,
2115
						struct ath_buf, list);
S
Sujith 已提交
2116
			}
2117 2118 2119
		}

		lastbf = bf->bf_lastbf;
S
Sujith 已提交
2120
		ds = lastbf->bf_desc;
2121

2122 2123
		memset(&ts, 0, sizeof(ts));
		status = ath9k_hw_txprocdesc(ah, ds, &ts);
S
Sujith 已提交
2124
		if (status == -EINPROGRESS) {
2125
			spin_unlock_bh(&txq->axq_lock);
S
Sujith 已提交
2126
			break;
2127 2128
		}

2129 2130 2131 2132 2133
		/*
		 * We now know the nullfunc frame has been ACKed so we
		 * can disable RX.
		 */
		if (bf->bf_isnullfunc &&
2134
		    (ts.ts_status & ATH9K_TX_ACKED)) {
2135 2136 2137
			if ((sc->ps_flags & PS_ENABLED))
				ath9k_enable_ps(sc);
			else
S
Sujith 已提交
2138
				sc->ps_flags |= PS_NULLFUNC_COMPLETED;
2139 2140
		}

S
Sujith 已提交
2141 2142 2143 2144 2145
		/*
		 * Remove ath_buf's of the same transmit unit from txq,
		 * however leave the last descriptor back as the holding
		 * descriptor for hw.
		 */
S
Sujith 已提交
2146
		lastbf->bf_stale = true;
S
Sujith 已提交
2147 2148 2149 2150
		INIT_LIST_HEAD(&bf_head);
		if (!list_is_singular(&lastbf->list))
			list_cut_position(&bf_head,
				&txq->axq_q, lastbf->list.prev);
2151

S
Sujith 已提交
2152
		txq->axq_depth--;
2153
		txok = !(ts.ts_status & ATH9K_TXERR_MASK);
2154
		txq->axq_tx_inprogress = false;
2155 2156
		if (bf_held)
			list_del(&bf_held->list);
S
Sujith 已提交
2157
		spin_unlock_bh(&txq->axq_lock);
2158

2159 2160
		if (bf_held)
			ath_tx_return_buffer(sc, bf_held);
2161

S
Sujith 已提交
2162 2163 2164 2165 2166
		if (!bf_isampdu(bf)) {
			/*
			 * This frame is sent out as a single frame.
			 * Use hardware retry status for this frame.
			 */
2167
			if (ts.ts_status & ATH9K_TXERR_XRETRY)
S
Sujith 已提交
2168
				bf->bf_state.bf_type |= BUF_XRETRY;
2169
			ath_tx_rc_status(bf, &ts, 0, txok, true);
S
Sujith 已提交
2170
		}
2171

S
Sujith 已提交
2172
		if (bf_isampdu(bf))
2173
			ath_tx_complete_aggr(sc, txq, bf, &bf_head, &ts, txok);
S
Sujith 已提交
2174
		else
2175
			ath_tx_complete_buf(sc, bf, txq, &bf_head, &ts, txok, 0);
2176

2177
		ath_wake_mac80211_queue(sc, txq);
2178

2179
		spin_lock_bh(&txq->axq_lock);
S
Sujith 已提交
2180 2181 2182
		if (sc->sc_flags & SC_OP_TXAGGR)
			ath_txq_schedule(sc, txq);
		spin_unlock_bh(&txq->axq_lock);
2183 2184 2185
	}
}

S
Sujith 已提交
2186
static void ath_tx_complete_poll_work(struct work_struct *work)
2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210
{
	struct ath_softc *sc = container_of(work, struct ath_softc,
			tx_complete_work.work);
	struct ath_txq *txq;
	int i;
	bool needreset = false;

	for (i = 0; i < ATH9K_NUM_TX_QUEUES; i++)
		if (ATH_TXQ_SETUP(sc, i)) {
			txq = &sc->tx.txq[i];
			spin_lock_bh(&txq->axq_lock);
			if (txq->axq_depth) {
				if (txq->axq_tx_inprogress) {
					needreset = true;
					spin_unlock_bh(&txq->axq_lock);
					break;
				} else {
					txq->axq_tx_inprogress = true;
				}
			}
			spin_unlock_bh(&txq->axq_lock);
		}

	if (needreset) {
2211 2212
		ath_print(ath9k_hw_common(sc->sc_ah), ATH_DBG_RESET,
			  "tx hung, resetting the chip\n");
S
Sujith 已提交
2213
		ath9k_ps_wakeup(sc);
2214
		ath_reset(sc, false);
S
Sujith 已提交
2215
		ath9k_ps_restore(sc);
2216 2217
	}

2218
	ieee80211_queue_delayed_work(sc->hw, &sc->tx_complete_work,
2219 2220 2221 2222
			msecs_to_jiffies(ATH_TX_COMPLETE_POLL_INT));
}


2223

S
Sujith 已提交
2224
void ath_tx_tasklet(struct ath_softc *sc)
2225
{
S
Sujith 已提交
2226 2227
	int i;
	u32 qcumask = ((1 << ATH9K_NUM_TX_QUEUES) - 1);
2228

S
Sujith 已提交
2229
	ath9k_hw_gettxintrtxqs(sc->sc_ah, &qcumask);
2230

S
Sujith 已提交
2231 2232 2233
	for (i = 0; i < ATH9K_NUM_TX_QUEUES; i++) {
		if (ATH_TXQ_SETUP(sc, i) && (qcumask & (1 << i)))
			ath_tx_processq(sc, &sc->tx.txq[i]);
2234 2235 2236
	}
}

2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283
void ath_tx_edma_tasklet(struct ath_softc *sc)
{
	struct ath_tx_status txs;
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
	struct ath_hw *ah = sc->sc_ah;
	struct ath_txq *txq;
	struct ath_buf *bf, *lastbf;
	struct list_head bf_head;
	int status;
	int txok;

	for (;;) {
		status = ath9k_hw_txprocdesc(ah, NULL, (void *)&txs);
		if (status == -EINPROGRESS)
			break;
		if (status == -EIO) {
			ath_print(common, ATH_DBG_XMIT,
				  "Error processing tx status\n");
			break;
		}

		/* Skip beacon completions */
		if (txs.qid == sc->beacon.beaconq)
			continue;

		txq = &sc->tx.txq[txs.qid];

		spin_lock_bh(&txq->axq_lock);
		if (list_empty(&txq->txq_fifo[txq->txq_tailidx])) {
			spin_unlock_bh(&txq->axq_lock);
			return;
		}

		bf = list_first_entry(&txq->txq_fifo[txq->txq_tailidx],
				      struct ath_buf, list);
		lastbf = bf->bf_lastbf;

		INIT_LIST_HEAD(&bf_head);
		list_cut_position(&bf_head, &txq->txq_fifo[txq->txq_tailidx],
				  &lastbf->list);
		INCR(txq->txq_tailidx, ATH_TXFIFO_DEPTH);
		txq->axq_depth--;
		txq->axq_tx_inprogress = false;
		spin_unlock_bh(&txq->axq_lock);

		txok = !(txs.ts_status & ATH9K_TXERR_MASK);

2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294
		/*
		 * Make sure null func frame is acked before configuring
		 * hw into ps mode.
		 */
		if (bf->bf_isnullfunc && txok) {
			if ((sc->ps_flags & PS_ENABLED))
				ath9k_enable_ps(sc);
			else
				sc->ps_flags |= PS_NULLFUNC_COMPLETED;
		}

2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306
		if (!bf_isampdu(bf)) {
			if (txs.ts_status & ATH9K_TXERR_XRETRY)
				bf->bf_state.bf_type |= BUF_XRETRY;
			ath_tx_rc_status(bf, &txs, 0, txok, true);
		}

		if (bf_isampdu(bf))
			ath_tx_complete_aggr(sc, txq, bf, &bf_head, &txs, txok);
		else
			ath_tx_complete_buf(sc, bf, txq, &bf_head,
					    &txs, txok, 0);

2307 2308
		ath_wake_mac80211_queue(sc, txq);

2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322
		spin_lock_bh(&txq->axq_lock);
		if (!list_empty(&txq->txq_fifo_pending)) {
			INIT_LIST_HEAD(&bf_head);
			bf = list_first_entry(&txq->txq_fifo_pending,
				struct ath_buf, list);
			list_cut_position(&bf_head, &txq->txq_fifo_pending,
				&bf->bf_lastbf->list);
			ath_tx_txqaddbuf(sc, txq, &bf_head);
		} else if (sc->sc_flags & SC_OP_TXAGGR)
			ath_txq_schedule(sc, txq);
		spin_unlock_bh(&txq->axq_lock);
	}
}

S
Sujith 已提交
2323 2324 2325
/*****************/
/* Init, Cleanup */
/*****************/
2326

2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361
static int ath_txstatus_setup(struct ath_softc *sc, int size)
{
	struct ath_descdma *dd = &sc->txsdma;
	u8 txs_len = sc->sc_ah->caps.txs_len;

	dd->dd_desc_len = size * txs_len;
	dd->dd_desc = dma_alloc_coherent(sc->dev, dd->dd_desc_len,
					 &dd->dd_desc_paddr, GFP_KERNEL);
	if (!dd->dd_desc)
		return -ENOMEM;

	return 0;
}

static int ath_tx_edma_init(struct ath_softc *sc)
{
	int err;

	err = ath_txstatus_setup(sc, ATH_TXSTATUS_RING_SIZE);
	if (!err)
		ath9k_hw_setup_statusring(sc->sc_ah, sc->txsdma.dd_desc,
					  sc->txsdma.dd_desc_paddr,
					  ATH_TXSTATUS_RING_SIZE);

	return err;
}

static void ath_tx_edma_cleanup(struct ath_softc *sc)
{
	struct ath_descdma *dd = &sc->txsdma;

	dma_free_coherent(sc->dev, dd->dd_desc_len, dd->dd_desc,
			  dd->dd_desc_paddr);
}

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2362
int ath_tx_init(struct ath_softc *sc, int nbufs)
2363
{
2364
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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2365
	int error = 0;
2366

2367
	spin_lock_init(&sc->tx.txbuflock);
2368

2369
	error = ath_descdma_setup(sc, &sc->tx.txdma, &sc->tx.txbuf,
2370
				  "tx", nbufs, 1, 1);
2371
	if (error != 0) {
2372 2373
		ath_print(common, ATH_DBG_FATAL,
			  "Failed to allocate tx descriptors: %d\n", error);
2374 2375
		goto err;
	}
2376

2377
	error = ath_descdma_setup(sc, &sc->beacon.bdma, &sc->beacon.bbuf,
2378
				  "beacon", ATH_BCBUF, 1, 1);
2379
	if (error != 0) {
2380 2381
		ath_print(common, ATH_DBG_FATAL,
			  "Failed to allocate beacon descriptors: %d\n", error);
2382 2383
		goto err;
	}
2384

2385 2386
	INIT_DELAYED_WORK(&sc->tx_complete_work, ath_tx_complete_poll_work);

2387 2388 2389 2390 2391 2392
	if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA) {
		error = ath_tx_edma_init(sc);
		if (error)
			goto err;
	}

2393
err:
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2394 2395
	if (error != 0)
		ath_tx_cleanup(sc);
2396

S
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2397
	return error;
2398 2399
}

2400
void ath_tx_cleanup(struct ath_softc *sc)
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2401 2402 2403 2404 2405 2406
{
	if (sc->beacon.bdma.dd_desc_len != 0)
		ath_descdma_cleanup(sc, &sc->beacon.bdma, &sc->beacon.bbuf);

	if (sc->tx.txdma.dd_desc_len != 0)
		ath_descdma_cleanup(sc, &sc->tx.txdma, &sc->tx.txbuf);
2407 2408 2409

	if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_EDMA)
		ath_tx_edma_cleanup(sc);
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2410
}
2411 2412 2413

void ath_tx_node_init(struct ath_softc *sc, struct ath_node *an)
{
2414 2415 2416
	struct ath_atx_tid *tid;
	struct ath_atx_ac *ac;
	int tidno, acno;
2417

2418
	for (tidno = 0, tid = &an->tid[tidno];
2419 2420 2421 2422 2423 2424 2425 2426
	     tidno < WME_NUM_TID;
	     tidno++, tid++) {
		tid->an        = an;
		tid->tidno     = tidno;
		tid->seq_start = tid->seq_next = 0;
		tid->baw_size  = WME_MAX_BA;
		tid->baw_head  = tid->baw_tail = 0;
		tid->sched     = false;
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2427
		tid->paused    = false;
2428
		tid->state &= ~AGGR_CLEANUP;
2429 2430
		INIT_LIST_HEAD(&tid->buf_q);
		acno = TID_TO_WME_AC(tidno);
2431
		tid->ac = &an->ac[acno];
2432 2433
		tid->state &= ~AGGR_ADDBA_COMPLETE;
		tid->state &= ~AGGR_ADDBA_PROGRESS;
2434
	}
2435

2436
	for (acno = 0, ac = &an->ac[acno];
2437 2438
	     acno < WME_NUM_AC; acno++, ac++) {
		ac->sched    = false;
2439
		ac->qnum = sc->tx.hwq_map[acno];
2440
		INIT_LIST_HEAD(&ac->tid_q);
2441 2442 2443
	}
}

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2444
void ath_tx_node_cleanup(struct ath_softc *sc, struct ath_node *an)
2445
{
2446 2447
	struct ath_atx_ac *ac;
	struct ath_atx_tid *tid;
2448
	struct ath_txq *txq;
2449
	int i, tidno;
S
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2450

2451 2452 2453
	for (tidno = 0, tid = &an->tid[tidno];
	     tidno < WME_NUM_TID; tidno++, tid++) {
		i = tid->ac->qnum;
2454

2455 2456
		if (!ATH_TXQ_SETUP(sc, i))
			continue;
2457

2458 2459
		txq = &sc->tx.txq[i];
		ac = tid->ac;
2460

2461 2462 2463 2464 2465 2466 2467 2468 2469 2470
		spin_lock_bh(&txq->axq_lock);

		if (tid->sched) {
			list_del(&tid->list);
			tid->sched = false;
		}

		if (ac->sched) {
			list_del(&ac->list);
			tid->ac->sched = false;
2471
		}
2472 2473 2474 2475 2476 2477

		ath_tid_drain(sc, txq, tid);
		tid->state &= ~AGGR_ADDBA_COMPLETE;
		tid->state &= ~AGGR_CLEANUP;

		spin_unlock_bh(&txq->axq_lock);
2478 2479
	}
}