channel.c 42.0 KB
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/*
 * Copyright (c) 2014 Qualcomm Atheros, Inc.
 *
 * 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.
 */

#include "ath9k.h"

/* Set/change channels.  If the channel is really being changed, it's done
 * by reseting the chip.  To accomplish this we must first cleanup any pending
 * DMA, then restart stuff.
 */
static int ath_set_channel(struct ath_softc *sc)
{
	struct ath_hw *ah = sc->sc_ah;
	struct ath_common *common = ath9k_hw_common(ah);
	struct ieee80211_hw *hw = sc->hw;
	struct ath9k_channel *hchan;
	struct cfg80211_chan_def *chandef = &sc->cur_chan->chandef;
	struct ieee80211_channel *chan = chandef->chan;
	int pos = chan->hw_value;
	int old_pos = -1;
	int r;

	if (test_bit(ATH_OP_INVALID, &common->op_flags))
		return -EIO;

	if (ah->curchan)
		old_pos = ah->curchan - &ah->channels[0];

	ath_dbg(common, CONFIG, "Set channel: %d MHz width: %d\n",
		chan->center_freq, chandef->width);

	/* update survey stats for the old channel before switching */
	spin_lock_bh(&common->cc_lock);
	ath_update_survey_stats(sc);
	spin_unlock_bh(&common->cc_lock);

	ath9k_cmn_get_channel(hw, ah, chandef);

	/* If the operating channel changes, change the survey in-use flags
	 * along with it.
	 * Reset the survey data for the new channel, unless we're switching
	 * back to the operating channel from an off-channel operation.
	 */
	if (!sc->cur_chan->offchannel && sc->cur_survey != &sc->survey[pos]) {
		if (sc->cur_survey)
			sc->cur_survey->filled &= ~SURVEY_INFO_IN_USE;

		sc->cur_survey = &sc->survey[pos];

		memset(sc->cur_survey, 0, sizeof(struct survey_info));
		sc->cur_survey->filled |= SURVEY_INFO_IN_USE;
	} else if (!(sc->survey[pos].filled & SURVEY_INFO_IN_USE)) {
		memset(&sc->survey[pos], 0, sizeof(struct survey_info));
	}

	hchan = &sc->sc_ah->channels[pos];
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	r = ath_reset(sc, hchan);
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	if (r)
		return r;

	/* The most recent snapshot of channel->noisefloor for the old
	 * channel is only available after the hardware reset. Copy it to
	 * the survey stats now.
	 */
	if (old_pos >= 0)
		ath_update_survey_nf(sc, old_pos);

	/* Enable radar pulse detection if on a DFS channel. Spectral
	 * scanning and radar detection can not be used concurrently.
	 */
	if (hw->conf.radar_enabled) {
		u32 rxfilter;

		rxfilter = ath9k_hw_getrxfilter(ah);
		rxfilter |= ATH9K_RX_FILTER_PHYRADAR |
				ATH9K_RX_FILTER_PHYERR;
		ath9k_hw_setrxfilter(ah, rxfilter);
		ath_dbg(common, DFS, "DFS enabled at freq %d\n",
			chan->center_freq);
	} else {
		/* perform spectral scan if requested. */
		if (test_bit(ATH_OP_SCANNING, &common->op_flags) &&
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			sc->spec_priv.spectral_mode == SPECTRAL_CHANSCAN)
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			ath9k_cmn_spectral_scan_trigger(common, &sc->spec_priv);
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	}

	return 0;
}

void ath_chanctx_init(struct ath_softc *sc)
{
	struct ath_chanctx *ctx;
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
	struct ieee80211_supported_band *sband;
	struct ieee80211_channel *chan;
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	int i, j;
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	sband = &common->sbands[NL80211_BAND_2GHZ];
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	if (!sband->n_channels)
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		sband = &common->sbands[NL80211_BAND_5GHZ];
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	chan = &sband->channels[0];
	for (i = 0; i < ATH9K_NUM_CHANCTX; i++) {
		ctx = &sc->chanctx[i];
		cfg80211_chandef_create(&ctx->chandef, chan, NL80211_CHAN_HT20);
		INIT_LIST_HEAD(&ctx->vifs);
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		ctx->txpower = ATH_TXPOWER_MAX;
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		ctx->flush_timeout = HZ / 5; /* 200ms */
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		for (j = 0; j < ARRAY_SIZE(ctx->acq); j++)
			INIT_LIST_HEAD(&ctx->acq[j]);
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	}
}

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void ath_chanctx_set_channel(struct ath_softc *sc, struct ath_chanctx *ctx,
			     struct cfg80211_chan_def *chandef)
{
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	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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	bool cur_chan;

	spin_lock_bh(&sc->chan_lock);
	if (chandef)
		memcpy(&ctx->chandef, chandef, sizeof(*chandef));
	cur_chan = sc->cur_chan == ctx;
	spin_unlock_bh(&sc->chan_lock);

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	if (!cur_chan) {
		ath_dbg(common, CHAN_CTX,
			"Current context differs from the new context\n");
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		return;
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	}
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	ath_set_channel(sc);
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}
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#ifdef CONFIG_ATH9K_CHANNEL_CONTEXT

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/*************/
/* Utilities */
/*************/

struct ath_chanctx* ath_is_go_chanctx_present(struct ath_softc *sc)
{
	struct ath_chanctx *ctx;
	struct ath_vif *avp;
	struct ieee80211_vif *vif;

	spin_lock_bh(&sc->chan_lock);

	ath_for_each_chanctx(sc, ctx) {
		if (!ctx->active)
			continue;

		list_for_each_entry(avp, &ctx->vifs, list) {
			vif = avp->vif;

			if (ieee80211_vif_type_p2p(vif) == NL80211_IFTYPE_P2P_GO) {
				spin_unlock_bh(&sc->chan_lock);
				return ctx;
			}
		}
	}

	spin_unlock_bh(&sc->chan_lock);
	return NULL;
}

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/**********************************************************/
/* Functions to handle the channel context state machine. */
/**********************************************************/

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static const char *offchannel_state_string(enum ath_offchannel_state state)
{
	switch (state) {
		case_rtn_string(ATH_OFFCHANNEL_IDLE);
		case_rtn_string(ATH_OFFCHANNEL_PROBE_SEND);
		case_rtn_string(ATH_OFFCHANNEL_PROBE_WAIT);
		case_rtn_string(ATH_OFFCHANNEL_SUSPEND);
		case_rtn_string(ATH_OFFCHANNEL_ROC_START);
		case_rtn_string(ATH_OFFCHANNEL_ROC_WAIT);
		case_rtn_string(ATH_OFFCHANNEL_ROC_DONE);
	default:
		return "unknown";
	}
}

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static const char *chanctx_event_string(enum ath_chanctx_event ev)
{
	switch (ev) {
		case_rtn_string(ATH_CHANCTX_EVENT_BEACON_PREPARE);
		case_rtn_string(ATH_CHANCTX_EVENT_BEACON_SENT);
		case_rtn_string(ATH_CHANCTX_EVENT_TSF_TIMER);
		case_rtn_string(ATH_CHANCTX_EVENT_BEACON_RECEIVED);
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		case_rtn_string(ATH_CHANCTX_EVENT_AUTHORIZED);
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		case_rtn_string(ATH_CHANCTX_EVENT_SWITCH);
		case_rtn_string(ATH_CHANCTX_EVENT_ASSIGN);
		case_rtn_string(ATH_CHANCTX_EVENT_UNASSIGN);
		case_rtn_string(ATH_CHANCTX_EVENT_CHANGE);
		case_rtn_string(ATH_CHANCTX_EVENT_ENABLE_MULTICHANNEL);
	default:
		return "unknown";
	}
}

static const char *chanctx_state_string(enum ath_chanctx_state state)
{
	switch (state) {
		case_rtn_string(ATH_CHANCTX_STATE_IDLE);
		case_rtn_string(ATH_CHANCTX_STATE_WAIT_FOR_BEACON);
		case_rtn_string(ATH_CHANCTX_STATE_WAIT_FOR_TIMER);
		case_rtn_string(ATH_CHANCTX_STATE_SWITCH);
		case_rtn_string(ATH_CHANCTX_STATE_FORCE_ACTIVE);
	default:
		return "unknown";
	}
}

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static u32 chanctx_event_delta(struct ath_softc *sc)
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{
	u64 ms;
	struct timespec ts, *old;

	getrawmonotonic(&ts);
	old = &sc->last_event_time;
	ms = ts.tv_sec * 1000 + ts.tv_nsec / 1000000;
	ms -= old->tv_sec * 1000 + old->tv_nsec / 1000000;
	sc->last_event_time = ts;

	return (u32)ms;
}

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void ath_chanctx_check_active(struct ath_softc *sc, struct ath_chanctx *ctx)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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	struct ath_chanctx *ictx;
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	struct ath_vif *avp;
	bool active = false;
	u8 n_active = 0;

	if (!ctx)
		return;

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	if (ctx == &sc->offchannel.chan) {
		spin_lock_bh(&sc->chan_lock);

		if (likely(sc->sched.channel_switch_time))
			ctx->flush_timeout =
				usecs_to_jiffies(sc->sched.channel_switch_time);
		else
			ctx->flush_timeout =
				msecs_to_jiffies(10);

		spin_unlock_bh(&sc->chan_lock);

		/*
		 * There is no need to iterate over the
		 * active/assigned channel contexts if
		 * the current context is offchannel.
		 */
		return;
	}

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	ictx = ctx;

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	list_for_each_entry(avp, &ctx->vifs, list) {
		struct ieee80211_vif *vif = avp->vif;

		switch (vif->type) {
		case NL80211_IFTYPE_P2P_CLIENT:
		case NL80211_IFTYPE_STATION:
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			if (avp->assoc)
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				active = true;
			break;
		default:
			active = true;
			break;
		}
	}
	ctx->active = active;

	ath_for_each_chanctx(sc, ctx) {
		if (!ctx->assigned || list_empty(&ctx->vifs))
			continue;
		n_active++;
	}

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	spin_lock_bh(&sc->chan_lock);

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	if (n_active <= 1) {
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		ictx->flush_timeout = HZ / 5;
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		clear_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags);
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		spin_unlock_bh(&sc->chan_lock);
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		return;
	}
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	ictx->flush_timeout = usecs_to_jiffies(sc->sched.channel_switch_time);

	if (test_and_set_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags)) {
		spin_unlock_bh(&sc->chan_lock);
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		return;
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	}

	spin_unlock_bh(&sc->chan_lock);
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	if (ath9k_is_chanctx_enabled()) {
		ath_chanctx_event(sc, NULL,
				  ATH_CHANCTX_EVENT_ENABLE_MULTICHANNEL);
	}
}

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static struct ath_chanctx *
ath_chanctx_get_next(struct ath_softc *sc, struct ath_chanctx *ctx)
{
	int idx = ctx - &sc->chanctx[0];

	return &sc->chanctx[!idx];
}

static void ath_chanctx_adjust_tbtt_delta(struct ath_softc *sc)
{
	struct ath_chanctx *prev, *cur;
	struct timespec ts;
	u32 cur_tsf, prev_tsf, beacon_int;
	s32 offset;

	beacon_int = TU_TO_USEC(sc->cur_chan->beacon.beacon_interval);

	cur = sc->cur_chan;
	prev = ath_chanctx_get_next(sc, cur);

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	if (!prev->switch_after_beacon)
		return;

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	getrawmonotonic(&ts);
	cur_tsf = (u32) cur->tsf_val +
		  ath9k_hw_get_tsf_offset(&cur->tsf_ts, &ts);

	prev_tsf = prev->last_beacon - (u32) prev->tsf_val + cur_tsf;
	prev_tsf -= ath9k_hw_get_tsf_offset(&prev->tsf_ts, &ts);

	/* Adjust the TSF time of the AP chanctx to keep its beacons
	 * at half beacon interval offset relative to the STA chanctx.
	 */
	offset = cur_tsf - prev_tsf;

	/* Ignore stale data or spurious timestamps */
	if (offset < 0 || offset > 3 * beacon_int)
		return;

	offset = beacon_int / 2 - (offset % beacon_int);
	prev->tsf_val += offset;
}

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/* Configure the TSF based hardware timer for a channel switch.
 * Also set up backup software timer, in case the gen timer fails.
 * This could be caused by a hardware reset.
 */
static void ath_chanctx_setup_timer(struct ath_softc *sc, u32 tsf_time)
{
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	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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	struct ath_hw *ah = sc->sc_ah;
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	unsigned long timeout;
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	ath9k_hw_gen_timer_start(ah, sc->p2p_ps_timer, tsf_time, 1000000);
	tsf_time -= ath9k_hw_gettsf32(ah);
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	timeout = msecs_to_jiffies(tsf_time / 1000) + 1;
	mod_timer(&sc->sched.timer, jiffies + timeout);
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	ath_dbg(common, CHAN_CTX,
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		"Setup chanctx timer with timeout: %d (%d) ms\n",
		tsf_time / 1000, jiffies_to_msecs(timeout));
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}

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static void ath_chanctx_handle_bmiss(struct ath_softc *sc,
				     struct ath_chanctx *ctx,
				     struct ath_vif *avp)
{
	/*
	 * Clear the extend_absence flag if it had been
	 * set during the previous beacon transmission,
	 * since we need to revert to the normal NoA
	 * schedule.
	 */
	if (ctx->active && sc->sched.extend_absence) {
		avp->noa_duration = 0;
		sc->sched.extend_absence = false;
	}

	/* If at least two consecutive beacons were missed on the STA
	 * chanctx, stay on the STA channel for one extra beacon period,
	 * to resync the timer properly.
	 */
	if (ctx->active && sc->sched.beacon_miss >= 2) {
		avp->noa_duration = 0;
		sc->sched.extend_absence = true;
	}
}

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static void ath_chanctx_offchannel_noa(struct ath_softc *sc,
				       struct ath_chanctx *ctx,
				       struct ath_vif *avp,
				       u32 tsf_time)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

	avp->noa_index++;
	avp->offchannel_start = tsf_time;
	avp->offchannel_duration = sc->sched.offchannel_duration;

	ath_dbg(common, CHAN_CTX,
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		"offchannel noa_duration: %d, noa_start: %u, noa_index: %d\n",
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		avp->offchannel_duration,
		avp->offchannel_start,
		avp->noa_index);

	/*
	 * When multiple contexts are active, the NoA
	 * has to be recalculated and advertised after
	 * an offchannel operation.
	 */
	if (ctx->active && avp->noa_duration)
		avp->noa_duration = 0;
}

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static void ath_chanctx_set_periodic_noa(struct ath_softc *sc,
					 struct ath_vif *avp,
					 struct ath_beacon_config *cur_conf,
					 u32 tsf_time,
					 u32 beacon_int)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

	avp->noa_index++;
	avp->noa_start = tsf_time;

	if (sc->sched.extend_absence)
		avp->noa_duration = (3 * beacon_int / 2) +
			sc->sched.channel_switch_time;
	else
		avp->noa_duration =
			TU_TO_USEC(cur_conf->beacon_interval) / 2 +
			sc->sched.channel_switch_time;

	if (test_bit(ATH_OP_SCANNING, &common->op_flags) ||
	    sc->sched.extend_absence)
		avp->periodic_noa = false;
	else
		avp->periodic_noa = true;

	ath_dbg(common, CHAN_CTX,
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		"noa_duration: %d, noa_start: %u, noa_index: %d, periodic: %d\n",
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		avp->noa_duration,
		avp->noa_start,
		avp->noa_index,
		avp->periodic_noa);
}

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static void ath_chanctx_set_oneshot_noa(struct ath_softc *sc,
					struct ath_vif *avp,
					u32 tsf_time,
					u32 duration)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

	avp->noa_index++;
	avp->noa_start = tsf_time;
	avp->periodic_noa = false;
	avp->oneshot_noa = true;
	avp->noa_duration = duration + sc->sched.channel_switch_time;

	ath_dbg(common, CHAN_CTX,
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		"oneshot noa_duration: %d, noa_start: %u, noa_index: %d, periodic: %d\n",
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		avp->noa_duration,
		avp->noa_start,
		avp->noa_index,
		avp->periodic_noa);
}

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void ath_chanctx_event(struct ath_softc *sc, struct ieee80211_vif *vif,
		       enum ath_chanctx_event ev)
{
	struct ath_hw *ah = sc->sc_ah;
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	struct ath_common *common = ath9k_hw_common(ah);
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	struct ath_beacon_config *cur_conf;
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	struct ath_vif *avp = NULL;
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	struct ath_chanctx *ctx;
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	u32 tsf_time;
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	u32 beacon_int;
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	if (vif)
		avp = (struct ath_vif *) vif->drv_priv;
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	spin_lock_bh(&sc->chan_lock);

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	ath_dbg(common, CHAN_CTX, "cur_chan: %d MHz, event: %s, state: %s, delta: %u ms\n",
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		sc->cur_chan->chandef.center_freq1,
		chanctx_event_string(ev),
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		chanctx_state_string(sc->sched.state),
		chanctx_event_delta(sc));
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	switch (ev) {
	case ATH_CHANCTX_EVENT_BEACON_PREPARE:
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		if (avp->offchannel_duration)
			avp->offchannel_duration = 0;

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		if (avp->oneshot_noa) {
			avp->noa_duration = 0;
			avp->oneshot_noa = false;

			ath_dbg(common, CHAN_CTX,
				"Clearing oneshot NoA\n");
		}

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		if (avp->chanctx != sc->cur_chan) {
			ath_dbg(common, CHAN_CTX,
				"Contexts differ, not preparing beacon\n");
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			break;
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		}
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		if (sc->sched.offchannel_pending && !sc->sched.wait_switch) {
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			sc->sched.offchannel_pending = false;
			sc->next_chan = &sc->offchannel.chan;
			sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_BEACON;
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			ath_dbg(common, CHAN_CTX,
				"Setting offchannel_pending to false\n");
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		}

		ctx = ath_chanctx_get_next(sc, sc->cur_chan);
		if (ctx->active && sc->sched.state == ATH_CHANCTX_STATE_IDLE) {
			sc->next_chan = ctx;
			sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_BEACON;
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			ath_dbg(common, CHAN_CTX,
				"Set next context, move chanctx state to WAIT_FOR_BEACON\n");
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		}

		/* if the timer missed its window, use the next interval */
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		if (sc->sched.state == ATH_CHANCTX_STATE_WAIT_FOR_TIMER) {
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			sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_BEACON;
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			ath_dbg(common, CHAN_CTX,
				"Move chanctx state from WAIT_FOR_TIMER to WAIT_FOR_BEACON\n");
		}
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		if (sc->sched.mgd_prepare_tx)
			sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_BEACON;

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		/*
		 * When a context becomes inactive, for example,
		 * disassociation of a station context, the NoA
		 * attribute needs to be removed from subsequent
		 * beacons.
		 */
		if (!ctx->active && avp->noa_duration &&
		    sc->sched.state != ATH_CHANCTX_STATE_WAIT_FOR_BEACON) {
			avp->noa_duration = 0;
			avp->periodic_noa = false;

			ath_dbg(common, CHAN_CTX,
				"Clearing NoA schedule\n");
		}

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		if (sc->sched.state != ATH_CHANCTX_STATE_WAIT_FOR_BEACON)
			break;

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		ath_dbg(common, CHAN_CTX, "Preparing beacon for vif: %pM\n", vif->addr);

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		sc->sched.beacon_pending = true;
		sc->sched.next_tbtt = REG_READ(ah, AR_NEXT_TBTT_TIMER);
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		cur_conf = &sc->cur_chan->beacon;
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		beacon_int = TU_TO_USEC(cur_conf->beacon_interval);

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		/* defer channel switch by a quarter beacon interval */
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		tsf_time = sc->sched.next_tbtt + beacon_int / 4;
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		sc->sched.switch_start_time = tsf_time;
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		sc->cur_chan->last_beacon = sc->sched.next_tbtt;
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587

588 589 590 591 592 593
		/*
		 * If an offchannel switch is scheduled to happen after
		 * a beacon transmission, update the NoA with one-shot
		 * values and increment the index.
		 */
		if (sc->next_chan == &sc->offchannel.chan) {
594
			ath_chanctx_offchannel_noa(sc, ctx, avp, tsf_time);
595
			break;
F
Felix Fietkau 已提交
596 597
		}

598
		ath_chanctx_handle_bmiss(sc, ctx, avp);
599

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600 601 602 603 604 605 606 607 608 609 610 611
		/*
		 * If a mgd_prepare_tx() has been called by mac80211,
		 * a one-shot NoA needs to be sent. This can happen
		 * with one or more active channel contexts - in both
		 * cases, a new NoA schedule has to be advertised.
		 */
		if (sc->sched.mgd_prepare_tx) {
			ath_chanctx_set_oneshot_noa(sc, avp, tsf_time,
						    jiffies_to_usecs(HZ / 5));
			break;
		}

612 613 614 615 616 617 618 619 620 621
		/* Prevent wrap-around issues */
		if (avp->noa_duration && tsf_time - avp->noa_start > BIT(30))
			avp->noa_duration = 0;

		/*
		 * If multiple contexts are active, start periodic
		 * NoA and increment the index for the first
		 * announcement.
		 */
		if (ctx->active &&
622 623 624
		    (!avp->noa_duration || sc->sched.force_noa_update))
			ath_chanctx_set_periodic_noa(sc, avp, cur_conf,
						     tsf_time, beacon_int);
625 626 627

		if (ctx->active && sc->sched.force_noa_update)
			sc->sched.force_noa_update = false;
628

629 630
		break;
	case ATH_CHANCTX_EVENT_BEACON_SENT:
631 632 633
		if (!sc->sched.beacon_pending) {
			ath_dbg(common, CHAN_CTX,
				"No pending beacon\n");
634
			break;
635
		}
636 637

		sc->sched.beacon_pending = false;
638 639 640 641 642 643 644 645 646

		if (sc->sched.mgd_prepare_tx) {
			sc->sched.mgd_prepare_tx = false;
			complete(&sc->go_beacon);
			ath_dbg(common, CHAN_CTX,
				"Beacon sent, complete go_beacon\n");
			break;
		}

647 648 649
		if (sc->sched.state != ATH_CHANCTX_STATE_WAIT_FOR_BEACON)
			break;

650 651 652
		ath_dbg(common, CHAN_CTX,
			"Move chanctx state to WAIT_FOR_TIMER\n");

653
		sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_TIMER;
654
		ath_chanctx_setup_timer(sc, sc->sched.switch_start_time);
655 656 657 658 659
		break;
	case ATH_CHANCTX_EVENT_TSF_TIMER:
		if (sc->sched.state != ATH_CHANCTX_STATE_WAIT_FOR_TIMER)
			break;

660 661 662 663
		if (!sc->cur_chan->switch_after_beacon &&
		    sc->sched.beacon_pending)
			sc->sched.beacon_miss++;

664 665 666
		ath_dbg(common, CHAN_CTX,
			"Move chanctx state to SWITCH\n");

667 668 669
		sc->sched.state = ATH_CHANCTX_STATE_SWITCH;
		ieee80211_queue_work(sc->hw, &sc->chanctx_work);
		break;
670
	case ATH_CHANCTX_EVENT_BEACON_RECEIVED:
671 672
		if (!test_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags) ||
		    sc->cur_chan == &sc->offchannel.chan)
673 674
			break;

675 676
		sc->sched.beacon_pending = false;
		sc->sched.beacon_miss = 0;
677

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		if (sc->sched.state == ATH_CHANCTX_STATE_FORCE_ACTIVE ||
679
		    !sc->sched.beacon_adjust ||
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680 681 682 683 684
		    !sc->cur_chan->tsf_val)
			break;

		ath_chanctx_adjust_tbtt_delta(sc);

685 686 687 688 689 690 691 692
		/* TSF time might have been updated by the incoming beacon,
		 * need update the channel switch timer to reflect the change.
		 */
		tsf_time = sc->sched.switch_start_time;
		tsf_time -= (u32) sc->cur_chan->tsf_val +
			ath9k_hw_get_tsf_offset(&sc->cur_chan->tsf_ts, NULL);
		tsf_time += ath9k_hw_gettsf32(ah);

693
		sc->sched.beacon_adjust = false;
694
		ath_chanctx_setup_timer(sc, tsf_time);
695
		break;
696
	case ATH_CHANCTX_EVENT_AUTHORIZED:
697 698 699 700
		if (sc->sched.state != ATH_CHANCTX_STATE_FORCE_ACTIVE ||
		    avp->chanctx != sc->cur_chan)
			break;

701 702 703
		ath_dbg(common, CHAN_CTX,
			"Move chanctx state from FORCE_ACTIVE to IDLE\n");

704 705 706 707 708 709 710 711 712 713 714 715 716
		sc->sched.state = ATH_CHANCTX_STATE_IDLE;
		/* fall through */
	case ATH_CHANCTX_EVENT_SWITCH:
		if (!test_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags) ||
		    sc->sched.state == ATH_CHANCTX_STATE_FORCE_ACTIVE ||
		    sc->cur_chan->switch_after_beacon ||
		    sc->cur_chan == &sc->offchannel.chan)
			break;

		/* If this is a station chanctx, stay active for a half
		 * beacon period (minus channel switch time)
		 */
		sc->next_chan = ath_chanctx_get_next(sc, sc->cur_chan);
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		cur_conf = &sc->cur_chan->beacon;
718

719 720 721
		ath_dbg(common, CHAN_CTX,
			"Move chanctx state to WAIT_FOR_TIMER (event SWITCH)\n");

722
		sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_TIMER;
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		sc->sched.wait_switch = false;
724 725

		tsf_time = TU_TO_USEC(cur_conf->beacon_interval) / 2;
726 727

		if (sc->sched.extend_absence) {
728 729 730 731
			sc->sched.beacon_miss = 0;
			tsf_time *= 3;
		}

732
		tsf_time -= sc->sched.channel_switch_time;
733
		tsf_time += ath9k_hw_gettsf32(sc->sc_ah);
734 735
		sc->sched.switch_start_time = tsf_time;

736
		ath_chanctx_setup_timer(sc, tsf_time);
737
		sc->sched.beacon_pending = true;
738
		sc->sched.beacon_adjust = true;
739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763
		break;
	case ATH_CHANCTX_EVENT_ENABLE_MULTICHANNEL:
		if (sc->cur_chan == &sc->offchannel.chan ||
		    sc->cur_chan->switch_after_beacon)
			break;

		sc->next_chan = ath_chanctx_get_next(sc, sc->cur_chan);
		ieee80211_queue_work(sc->hw, &sc->chanctx_work);
		break;
	case ATH_CHANCTX_EVENT_UNASSIGN:
		if (sc->cur_chan->assigned) {
			if (sc->next_chan && !sc->next_chan->assigned &&
			    sc->next_chan != &sc->offchannel.chan)
				sc->sched.state = ATH_CHANCTX_STATE_IDLE;
			break;
		}

		ctx = ath_chanctx_get_next(sc, sc->cur_chan);
		sc->sched.state = ATH_CHANCTX_STATE_IDLE;
		if (!ctx->assigned)
			break;

		sc->next_chan = ctx;
		ieee80211_queue_work(sc->hw, &sc->chanctx_work);
		break;
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	case ATH_CHANCTX_EVENT_ASSIGN:
		break;
	case ATH_CHANCTX_EVENT_CHANGE:
		break;
768 769 770 771
	}

	spin_unlock_bh(&sc->chan_lock);
}
772

773 774 775 776 777 778 779
void ath_chanctx_beacon_sent_ev(struct ath_softc *sc,
				enum ath_chanctx_event ev)
{
	if (sc->sched.beacon_pending)
		ath_chanctx_event(sc, NULL, ev);
}

780
void ath_chanctx_beacon_recv_ev(struct ath_softc *sc,
781 782 783 784 785
				enum ath_chanctx_event ev)
{
	ath_chanctx_event(sc, NULL, ev);
}

786 787 788 789 790 791 792 793 794 795 796
static int ath_scan_channel_duration(struct ath_softc *sc,
				     struct ieee80211_channel *chan)
{
	struct cfg80211_scan_request *req = sc->offchannel.scan_req;

	if (!req->n_ssids || (chan->flags & IEEE80211_CHAN_NO_IR))
		return (HZ / 9); /* ~110 ms */

	return (HZ / 16); /* ~60 ms */
}

797 798 799 800 801 802 803 804 805
static void ath_chanctx_switch(struct ath_softc *sc, struct ath_chanctx *ctx,
			       struct cfg80211_chan_def *chandef)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

	spin_lock_bh(&sc->chan_lock);

	if (test_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags) &&
	    (sc->cur_chan != ctx) && (ctx == &sc->offchannel.chan)) {
806 807
		if (chandef)
			ctx->chandef = *chandef;
808 809 810 811 812 813 814

		sc->sched.offchannel_pending = true;
		sc->sched.wait_switch = true;
		sc->sched.offchannel_duration =
			jiffies_to_usecs(sc->offchannel.duration) +
			sc->sched.channel_switch_time;

815
		spin_unlock_bh(&sc->chan_lock);
816 817
		ath_dbg(common, CHAN_CTX,
			"Set offchannel_pending to true\n");
818 819 820 821 822 823 824 825 826 827 828 829
		return;
	}

	sc->next_chan = ctx;
	if (chandef) {
		ctx->chandef = *chandef;
		ath_dbg(common, CHAN_CTX,
			"Assigned next_chan to %d MHz\n", chandef->center_freq1);
	}

	if (sc->next_chan == &sc->offchannel.chan) {
		sc->sched.offchannel_duration =
830
			jiffies_to_usecs(sc->offchannel.duration) +
831 832 833 834 835 836 837 838 839 840 841 842 843
			sc->sched.channel_switch_time;

		if (chandef) {
			ath_dbg(common, CHAN_CTX,
				"Offchannel duration for chan %d MHz : %u\n",
				chandef->center_freq1,
				sc->sched.offchannel_duration);
		}
	}
	spin_unlock_bh(&sc->chan_lock);
	ieee80211_queue_work(sc->hw, &sc->chanctx_work);
}

844 845 846 847 848 849 850 851 852 853 854 855 856
static void ath_chanctx_offchan_switch(struct ath_softc *sc,
				       struct ieee80211_channel *chan)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
	struct cfg80211_chan_def chandef;

	cfg80211_chandef_create(&chandef, chan, NL80211_CHAN_NO_HT);
	ath_dbg(common, CHAN_CTX,
		"Channel definition created: %d MHz\n", chandef.center_freq1);

	ath_chanctx_switch(sc, &sc->offchannel.chan, &chandef);
}

857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874
static struct ath_chanctx *ath_chanctx_get_oper_chan(struct ath_softc *sc,
						     bool active)
{
	struct ath_chanctx *ctx;

	ath_for_each_chanctx(sc, ctx) {
		if (!ctx->assigned || list_empty(&ctx->vifs))
			continue;
		if (active && !ctx->active)
			continue;

		if (ctx->switch_after_beacon)
			return ctx;
	}

	return &sc->chanctx[0];
}

875 876 877
static void
ath_scan_next_channel(struct ath_softc *sc)
{
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878
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
879 880 881 882
	struct cfg80211_scan_request *req = sc->offchannel.scan_req;
	struct ieee80211_channel *chan;

	if (sc->offchannel.scan_idx >= req->n_channels) {
S
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883
		ath_dbg(common, CHAN_CTX,
884 885
			"Moving offchannel state to ATH_OFFCHANNEL_IDLE, "
			"scan_idx: %d, n_channels: %d\n",
S
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886 887 888
			sc->offchannel.scan_idx,
			req->n_channels);

889 890 891 892 893 894
		sc->offchannel.state = ATH_OFFCHANNEL_IDLE;
		ath_chanctx_switch(sc, ath_chanctx_get_oper_chan(sc, false),
				   NULL);
		return;
	}

S
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895
	ath_dbg(common, CHAN_CTX,
896
		"Moving offchannel state to ATH_OFFCHANNEL_PROBE_SEND, scan_idx: %d\n",
S
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897 898
		sc->offchannel.scan_idx);

899 900 901
	chan = req->channels[sc->offchannel.scan_idx++];
	sc->offchannel.duration = ath_scan_channel_duration(sc, chan);
	sc->offchannel.state = ATH_OFFCHANNEL_PROBE_SEND;
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902

903 904 905 906 907 908 909 910 911 912 913 914 915 916
	ath_chanctx_offchan_switch(sc, chan);
}

void ath_offchannel_next(struct ath_softc *sc)
{
	struct ieee80211_vif *vif;

	if (sc->offchannel.scan_req) {
		vif = sc->offchannel.scan_vif;
		sc->offchannel.chan.txpower = vif->bss_conf.txpower;
		ath_scan_next_channel(sc);
	} else if (sc->offchannel.roc_vif) {
		vif = sc->offchannel.roc_vif;
		sc->offchannel.chan.txpower = vif->bss_conf.txpower;
917 918
		sc->offchannel.duration =
			msecs_to_jiffies(sc->offchannel.roc_duration);
919 920 921
		sc->offchannel.state = ATH_OFFCHANNEL_ROC_START;
		ath_chanctx_offchan_switch(sc, sc->offchannel.roc_chan);
	} else {
922 923 924 925 926
		spin_lock_bh(&sc->chan_lock);
		sc->sched.offchannel_pending = false;
		sc->sched.wait_switch = false;
		spin_unlock_bh(&sc->chan_lock);

927 928 929 930 931 932 933 934
		ath_chanctx_switch(sc, ath_chanctx_get_oper_chan(sc, false),
				   NULL);
		sc->offchannel.state = ATH_OFFCHANNEL_IDLE;
		if (sc->ps_idle)
			ath_cancel_work(sc);
	}
}

935
void ath_roc_complete(struct ath_softc *sc, enum ath_roc_complete_reason reason)
936
{
S
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937 938
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

939 940 941 942 943
	sc->offchannel.roc_vif = NULL;
	sc->offchannel.roc_chan = NULL;

	switch (reason) {
	case ATH_ROC_COMPLETE_ABORT:
S
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944
		ath_dbg(common, CHAN_CTX, "RoC aborted\n");
945 946 947
		ieee80211_remain_on_channel_expired(sc->hw);
		break;
	case ATH_ROC_COMPLETE_EXPIRE:
S
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948
		ath_dbg(common, CHAN_CTX, "RoC expired\n");
949 950 951 952 953 954
		ieee80211_remain_on_channel_expired(sc->hw);
		break;
	case ATH_ROC_COMPLETE_CANCEL:
		ath_dbg(common, CHAN_CTX, "RoC canceled\n");
		break;
	}
S
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955

956 957 958 959 960 961 962
	ath_offchannel_next(sc);
	ath9k_ps_restore(sc);
}

void ath_scan_complete(struct ath_softc *sc, bool abort)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
963 964 965
	struct cfg80211_scan_info info = {
		.aborted = abort,
	};
966

S
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967 968 969 970 971
	if (abort)
		ath_dbg(common, CHAN_CTX, "HW scan aborted\n");
	else
		ath_dbg(common, CHAN_CTX, "HW scan complete\n");

972 973 974
	sc->offchannel.scan_req = NULL;
	sc->offchannel.scan_vif = NULL;
	sc->offchannel.state = ATH_OFFCHANNEL_IDLE;
975
	ieee80211_scan_completed(sc->hw, &info);
976
	clear_bit(ATH_OP_SCANNING, &common->op_flags);
977 978 979 980
	spin_lock_bh(&sc->chan_lock);
	if (test_bit(ATH_OP_MULTI_CHANNEL, &common->op_flags))
		sc->sched.force_noa_update = true;
	spin_unlock_bh(&sc->chan_lock);
981 982 983 984 985 986 987 988 989 990 991 992 993 994
	ath_offchannel_next(sc);
	ath9k_ps_restore(sc);
}

static void ath_scan_send_probe(struct ath_softc *sc,
				struct cfg80211_ssid *ssid)
{
	struct cfg80211_scan_request *req = sc->offchannel.scan_req;
	struct ieee80211_vif *vif = sc->offchannel.scan_vif;
	struct ath_tx_control txctl = {};
	struct sk_buff *skb;
	struct ieee80211_tx_info *info;
	int band = sc->offchannel.chan.chandef.chan->band;

995
	skb = ieee80211_probereq_get(sc->hw, vif->addr,
996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023
			ssid->ssid, ssid->ssid_len, req->ie_len);
	if (!skb)
		return;

	info = IEEE80211_SKB_CB(skb);
	if (req->no_cck)
		info->flags |= IEEE80211_TX_CTL_NO_CCK_RATE;

	if (req->ie_len)
		memcpy(skb_put(skb, req->ie_len), req->ie, req->ie_len);

	skb_set_queue_mapping(skb, IEEE80211_AC_VO);

	if (!ieee80211_tx_prepare_skb(sc->hw, vif, skb, band, NULL))
		goto error;

	txctl.txq = sc->tx.txq_map[IEEE80211_AC_VO];
	if (ath_tx_start(sc->hw, skb, &txctl))
		goto error;

	return;

error:
	ieee80211_free_txskb(sc->hw, skb);
}

static void ath_scan_channel_start(struct ath_softc *sc)
{
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1024
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
1025 1026 1027 1028 1029 1030 1031 1032 1033 1034
	struct cfg80211_scan_request *req = sc->offchannel.scan_req;
	int i;

	if (!(sc->cur_chan->chandef.chan->flags & IEEE80211_CHAN_NO_IR) &&
	    req->n_ssids) {
		for (i = 0; i < req->n_ssids; i++)
			ath_scan_send_probe(sc, &req->ssids[i]);

	}

S
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1035
	ath_dbg(common, CHAN_CTX,
1036
		"Moving offchannel state to ATH_OFFCHANNEL_PROBE_WAIT\n");
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1038 1039 1040 1041
	sc->offchannel.state = ATH_OFFCHANNEL_PROBE_WAIT;
	mod_timer(&sc->offchannel.timer, jiffies + sc->offchannel.duration);
}

1042 1043 1044
static void ath_chanctx_timer(unsigned long data)
{
	struct ath_softc *sc = (struct ath_softc *) data;
1045 1046 1047 1048
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

	ath_dbg(common, CHAN_CTX,
		"Channel context timer invoked\n");
1049 1050 1051 1052 1053

	ath_chanctx_event(sc, NULL, ATH_CHANCTX_EVENT_TSF_TIMER);
}

static void ath_offchannel_timer(unsigned long data)
1054 1055 1056
{
	struct ath_softc *sc = (struct ath_softc *)data;
	struct ath_chanctx *ctx;
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1057 1058
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

1059
	ath_dbg(common, CHAN_CTX, "%s: offchannel state: %s\n",
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1060
		__func__, offchannel_state_string(sc->offchannel.state));
1061 1062 1063 1064 1065 1066 1067 1068 1069

	switch (sc->offchannel.state) {
	case ATH_OFFCHANNEL_PROBE_WAIT:
		if (!sc->offchannel.scan_req)
			return;

		/* get first active channel context */
		ctx = ath_chanctx_get_oper_chan(sc, true);
		if (ctx->active) {
1070 1071 1072 1073
			ath_dbg(common, CHAN_CTX,
				"Switch to oper/active context, "
				"move offchannel state to ATH_OFFCHANNEL_SUSPEND\n");

1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
			sc->offchannel.state = ATH_OFFCHANNEL_SUSPEND;
			ath_chanctx_switch(sc, ctx, NULL);
			mod_timer(&sc->offchannel.timer, jiffies + HZ / 10);
			break;
		}
		/* fall through */
	case ATH_OFFCHANNEL_SUSPEND:
		if (!sc->offchannel.scan_req)
			return;

		ath_scan_next_channel(sc);
		break;
	case ATH_OFFCHANNEL_ROC_START:
	case ATH_OFFCHANNEL_ROC_WAIT:
		sc->offchannel.state = ATH_OFFCHANNEL_ROC_DONE;
1089
		ath_roc_complete(sc, ATH_ROC_COMPLETE_EXPIRE);
1090 1091 1092 1093 1094
		break;
	default:
		break;
	}
}
1095

1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108
static bool
ath_chanctx_send_vif_ps_frame(struct ath_softc *sc, struct ath_vif *avp,
			      bool powersave)
{
	struct ieee80211_vif *vif = avp->vif;
	struct ieee80211_sta *sta = NULL;
	struct ieee80211_hdr_3addr *nullfunc;
	struct ath_tx_control txctl;
	struct sk_buff *skb;
	int band = sc->cur_chan->chandef.chan->band;

	switch (vif->type) {
	case NL80211_IFTYPE_STATION:
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Sujith Manoharan 已提交
1109
		if (!avp->assoc)
1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120
			return false;

		skb = ieee80211_nullfunc_get(sc->hw, vif);
		if (!skb)
			return false;

		nullfunc = (struct ieee80211_hdr_3addr *) skb->data;
		if (powersave)
			nullfunc->frame_control |=
				cpu_to_le16(IEEE80211_FCTL_PM);

1121
		skb->priority = 7;
1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160
		skb_set_queue_mapping(skb, IEEE80211_AC_VO);
		if (!ieee80211_tx_prepare_skb(sc->hw, vif, skb, band, &sta)) {
			dev_kfree_skb_any(skb);
			return false;
		}
		break;
	default:
		return false;
	}

	memset(&txctl, 0, sizeof(txctl));
	txctl.txq = sc->tx.txq_map[IEEE80211_AC_VO];
	txctl.sta = sta;
	if (ath_tx_start(sc->hw, skb, &txctl)) {
		ieee80211_free_txskb(sc->hw, skb);
		return false;
	}

	return true;
}

static bool
ath_chanctx_send_ps_frame(struct ath_softc *sc, bool powersave)
{
	struct ath_vif *avp;
	bool sent = false;

	rcu_read_lock();
	list_for_each_entry(avp, &sc->cur_chan->vifs, list) {
		if (ath_chanctx_send_vif_ps_frame(sc, avp, powersave))
			sent = true;
	}
	rcu_read_unlock();

	return sent;
}

static bool ath_chanctx_defer_switch(struct ath_softc *sc)
{
1161 1162
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
	if (sc->cur_chan == &sc->offchannel.chan)
		return false;

	switch (sc->sched.state) {
	case ATH_CHANCTX_STATE_SWITCH:
		return false;
	case ATH_CHANCTX_STATE_IDLE:
		if (!sc->cur_chan->switch_after_beacon)
			return false;

1173 1174 1175
		ath_dbg(common, CHAN_CTX,
			"Defer switch, set chanctx state to WAIT_FOR_BEACON\n");

1176 1177 1178 1179 1180 1181 1182 1183 1184
		sc->sched.state = ATH_CHANCTX_STATE_WAIT_FOR_BEACON;
		break;
	default:
		break;
	}

	return true;
}

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static void ath_offchannel_channel_change(struct ath_softc *sc)
{
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);

1189
	ath_dbg(common, CHAN_CTX, "%s: offchannel state: %s\n",
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1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213
		__func__, offchannel_state_string(sc->offchannel.state));

	switch (sc->offchannel.state) {
	case ATH_OFFCHANNEL_PROBE_SEND:
		if (!sc->offchannel.scan_req)
			return;

		if (sc->cur_chan->chandef.chan !=
		    sc->offchannel.chan.chandef.chan)
			return;

		ath_scan_channel_start(sc);
		break;
	case ATH_OFFCHANNEL_IDLE:
		if (!sc->offchannel.scan_req)
			return;

		ath_scan_complete(sc, false);
		break;
	case ATH_OFFCHANNEL_ROC_START:
		if (sc->cur_chan != &sc->offchannel.chan)
			break;

		sc->offchannel.state = ATH_OFFCHANNEL_ROC_WAIT;
1214 1215
		mod_timer(&sc->offchannel.timer,
			  jiffies + sc->offchannel.duration);
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		ieee80211_ready_on_channel(sc->hw);
		break;
	case ATH_OFFCHANNEL_ROC_DONE:
		break;
	default:
		break;
	}
}

1225 1226
void ath_chanctx_set_next(struct ath_softc *sc, bool force)
{
1227
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
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1228
	struct ath_chanctx *old_ctx;
1229 1230 1231
	struct timespec ts;
	bool measure_time = false;
	bool send_ps = false;
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1232
	bool queues_stopped = false;
1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244

	spin_lock_bh(&sc->chan_lock);
	if (!sc->next_chan) {
		spin_unlock_bh(&sc->chan_lock);
		return;
	}

	if (!force && ath_chanctx_defer_switch(sc)) {
		spin_unlock_bh(&sc->chan_lock);
		return;
	}

1245 1246 1247 1248 1249 1250
	ath_dbg(common, CHAN_CTX,
		"%s: current: %d MHz, next: %d MHz\n",
		__func__,
		sc->cur_chan->chandef.center_freq1,
		sc->next_chan->chandef.center_freq1);

1251
	if (sc->cur_chan != sc->next_chan) {
1252 1253 1254
		ath_dbg(common, CHAN_CTX,
			"Stopping current chanctx: %d\n",
			sc->cur_chan->chandef.center_freq1);
1255 1256 1257 1258 1259 1260 1261
		sc->cur_chan->stopped = true;
		spin_unlock_bh(&sc->chan_lock);

		if (sc->next_chan == &sc->offchannel.chan) {
			getrawmonotonic(&ts);
			measure_time = true;
		}
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1262 1263 1264 1265

		ath9k_chanctx_stop_queues(sc, sc->cur_chan);
		queues_stopped = true;

1266
		__ath9k_flush(sc->hw, ~0, true, false, false);
1267 1268

		if (ath_chanctx_send_ps_frame(sc, true))
1269
			__ath9k_flush(sc->hw, BIT(IEEE80211_AC_VO),
1270
				      false, false, false);
1271 1272 1273 1274 1275 1276 1277 1278 1279

		send_ps = true;
		spin_lock_bh(&sc->chan_lock);

		if (sc->cur_chan != &sc->offchannel.chan) {
			getrawmonotonic(&sc->cur_chan->tsf_ts);
			sc->cur_chan->tsf_val = ath9k_hw_gettsf64(sc->sc_ah);
		}
	}
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	old_ctx = sc->cur_chan;
1281 1282 1283
	sc->cur_chan = sc->next_chan;
	sc->cur_chan->stopped = false;
	sc->next_chan = NULL;
1284 1285 1286 1287

	if (!sc->sched.offchannel_pending)
		sc->sched.offchannel_duration = 0;

1288 1289 1290 1291 1292 1293 1294 1295
	if (sc->sched.state != ATH_CHANCTX_STATE_FORCE_ACTIVE)
		sc->sched.state = ATH_CHANCTX_STATE_IDLE;

	spin_unlock_bh(&sc->chan_lock);

	if (sc->sc_ah->chip_fullsleep ||
	    memcmp(&sc->cur_chandef, &sc->cur_chan->chandef,
		   sizeof(sc->cur_chandef))) {
1296 1297 1298
		ath_dbg(common, CHAN_CTX,
			"%s: Set channel %d MHz\n",
			__func__, sc->cur_chan->chandef.center_freq1);
1299 1300 1301 1302
		ath_set_channel(sc);
		if (measure_time)
			sc->sched.channel_switch_time =
				ath9k_hw_get_tsf_offset(&ts, NULL);
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		/*
		 * A reset will ensure that all queues are woken up,
		 * so there is no need to awaken them again.
		 */
		goto out;
1308
	}
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1309 1310 1311 1312

	if (queues_stopped)
		ath9k_chanctx_wake_queues(sc, old_ctx);
out:
1313 1314 1315 1316 1317 1318 1319
	if (send_ps)
		ath_chanctx_send_ps_frame(sc, false);

	ath_offchannel_channel_change(sc);
	ath_chanctx_event(sc, NULL, ATH_CHANCTX_EVENT_SWITCH);
}

1320 1321 1322 1323 1324 1325 1326 1327 1328
static void ath_chanctx_work(struct work_struct *work)
{
	struct ath_softc *sc = container_of(work, struct ath_softc,
					    chanctx_work);
	mutex_lock(&sc->mutex);
	ath_chanctx_set_next(sc, false);
	mutex_unlock(&sc->mutex);
}

1329 1330 1331 1332 1333 1334 1335 1336
void ath9k_offchannel_init(struct ath_softc *sc)
{
	struct ath_chanctx *ctx;
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
	struct ieee80211_supported_band *sband;
	struct ieee80211_channel *chan;
	int i;

1337
	sband = &common->sbands[NL80211_BAND_2GHZ];
1338
	if (!sband->n_channels)
1339
		sband = &common->sbands[NL80211_BAND_5GHZ];
1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353

	chan = &sband->channels[0];

	ctx = &sc->offchannel.chan;
	INIT_LIST_HEAD(&ctx->vifs);
	ctx->txpower = ATH_TXPOWER_MAX;
	cfg80211_chandef_create(&ctx->chandef, chan, NL80211_CHAN_HT20);

	for (i = 0; i < ARRAY_SIZE(ctx->acq); i++)
		INIT_LIST_HEAD(&ctx->acq[i]);

	sc->offchannel.chan.offchannel = true;
}

1354 1355 1356 1357 1358 1359 1360 1361
void ath9k_init_channel_context(struct ath_softc *sc)
{
	INIT_WORK(&sc->chanctx_work, ath_chanctx_work);

	setup_timer(&sc->offchannel.timer, ath_offchannel_timer,
		    (unsigned long)sc);
	setup_timer(&sc->sched.timer, ath_chanctx_timer,
		    (unsigned long)sc);
1362 1363

	init_completion(&sc->go_beacon);
1364
}
1365

1366 1367 1368 1369 1370
void ath9k_deinit_channel_context(struct ath_softc *sc)
{
	cancel_work_sync(&sc->chanctx_work);
}

1371 1372 1373 1374 1375
bool ath9k_is_chanctx_enabled(void)
{
	return (ath9k_use_chanctx == 1);
}

1376 1377 1378 1379
/********************/
/* Queue management */
/********************/

1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398
void ath9k_chanctx_stop_queues(struct ath_softc *sc, struct ath_chanctx *ctx)
{
	struct ath_hw *ah = sc->sc_ah;
	int i;

	if (ctx == &sc->offchannel.chan) {
		ieee80211_stop_queue(sc->hw,
				     sc->hw->offchannel_tx_hw_queue);
	} else {
		for (i = 0; i < IEEE80211_NUM_ACS; i++)
			ieee80211_stop_queue(sc->hw,
					     ctx->hw_queue_base + i);
	}

	if (ah->opmode == NL80211_IFTYPE_AP)
		ieee80211_stop_queue(sc->hw, sc->hw->queues - 2);
}


1399
void ath9k_chanctx_wake_queues(struct ath_softc *sc, struct ath_chanctx *ctx)
1400 1401 1402 1403
{
	struct ath_hw *ah = sc->sc_ah;
	int i;

1404
	if (ctx == &sc->offchannel.chan) {
1405 1406 1407 1408 1409
		ieee80211_wake_queue(sc->hw,
				     sc->hw->offchannel_tx_hw_queue);
	} else {
		for (i = 0; i < IEEE80211_NUM_ACS; i++)
			ieee80211_wake_queue(sc->hw,
1410
					     ctx->hw_queue_base + i);
1411 1412 1413 1414 1415 1416
	}

	if (ah->opmode == NL80211_IFTYPE_AP)
		ieee80211_wake_queue(sc->hw, sc->hw->queues - 2);
}

1417 1418 1419 1420 1421
/*****************/
/* P2P Powersave */
/*****************/

static void ath9k_update_p2p_ps_timer(struct ath_softc *sc, struct ath_vif *avp)
1422
{
1423
	struct ath_common *common = ath9k_hw_common(sc->sc_ah);
1424
	struct ath_hw *ah = sc->sc_ah;
1425
	u32 tsf, target_tsf;
1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436

	if (!avp || !avp->noa.has_next_tsf)
		return;

	ath9k_hw_gen_timer_stop(ah, sc->p2p_ps_timer);

	tsf = ath9k_hw_gettsf32(sc->sc_ah);

	target_tsf = avp->noa.next_tsf;
	if (!avp->noa.absent)
		target_tsf -= ATH_P2P_PS_STOP_TIME;
1437 1438
	else
		target_tsf += ATH_P2P_PS_STOP_TIME;
1439 1440 1441 1442

	if (target_tsf - tsf < ATH_P2P_PS_STOP_TIME)
		target_tsf = tsf + ATH_P2P_PS_STOP_TIME;

1443 1444 1445 1446
	ath_dbg(common, CHAN_CTX, "%s absent %d tsf 0x%08X next_tsf 0x%08X (%dms)\n",
		__func__, avp->noa.absent, tsf, target_tsf,
		(target_tsf - tsf) / 1000);

1447
	ath9k_hw_gen_timer_start(ah, sc->p2p_ps_timer, target_tsf, 1000000);
1448 1449
}

1450 1451 1452 1453 1454 1455 1456 1457
static void ath9k_update_p2p_ps(struct ath_softc *sc, struct ieee80211_vif *vif)
{
	struct ath_vif *avp = (void *)vif->drv_priv;
	u32 tsf;

	if (!sc->p2p_ps_timer)
		return;

1458
	if (vif->type != NL80211_IFTYPE_STATION)
1459 1460 1461
		return;

	sc->p2p_ps_vif = avp;
1462 1463 1464 1465

	if (sc->ps_flags & PS_BEACON_SYNC)
		return;

1466 1467 1468 1469 1470
	tsf = ath9k_hw_gettsf32(sc->sc_ah);
	ieee80211_parse_p2p_noa(&vif->bss_conf.p2p_noa_attr, &avp->noa, tsf);
	ath9k_update_p2p_ps_timer(sc, avp);
}

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1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494
static u8 ath9k_get_ctwin(struct ath_softc *sc, struct ath_vif *avp)
{
	struct ath_beacon_config *cur_conf = &sc->cur_chan->beacon;
	u8 switch_time, ctwin;

	/*
	 * Channel switch in multi-channel mode is deferred
	 * by a quarter beacon interval when handling
	 * ATH_CHANCTX_EVENT_BEACON_PREPARE, so the P2P-GO
	 * interface is guaranteed to be discoverable
	 * for that duration after a TBTT.
	 */
	switch_time = cur_conf->beacon_interval / 4;

	ctwin = avp->vif->bss_conf.p2p_noa_attr.oppps_ctwindow;
	if (ctwin && (ctwin < switch_time))
		return ctwin;

	if (switch_time < P2P_DEFAULT_CTWIN)
		return 0;

	return P2P_DEFAULT_CTWIN;
}

1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511
void ath9k_beacon_add_noa(struct ath_softc *sc, struct ath_vif *avp,
			  struct sk_buff *skb)
{
	static const u8 noa_ie_hdr[] = {
		WLAN_EID_VENDOR_SPECIFIC,	/* type */
		0,				/* length */
		0x50, 0x6f, 0x9a,		/* WFA OUI */
		0x09,				/* P2P subtype */
		0x0c,				/* Notice of Absence */
		0x00,				/* LSB of little-endian len */
		0x00,				/* MSB of little-endian len */
	};

	struct ieee80211_p2p_noa_attr *noa;
	int noa_len, noa_desc, i = 0;
	u8 *hdr;

1512
	if (!avp->offchannel_duration && !avp->noa_duration)
1513 1514
		return;

1515
	noa_desc = !!avp->offchannel_duration + !!avp->noa_duration;
1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526
	noa_len = 2 + sizeof(struct ieee80211_p2p_noa_desc) * noa_desc;

	hdr = skb_put(skb, sizeof(noa_ie_hdr));
	memcpy(hdr, noa_ie_hdr, sizeof(noa_ie_hdr));
	hdr[1] = sizeof(noa_ie_hdr) + noa_len - 2;
	hdr[7] = noa_len;

	noa = (void *) skb_put(skb, noa_len);
	memset(noa, 0, noa_len);

	noa->index = avp->noa_index;
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1527
	noa->oppps_ctwindow = ath9k_get_ctwin(sc, avp);
1528 1529
	if (noa->oppps_ctwindow)
		noa->oppps_ctwindow |= BIT(7);
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1530

1531 1532 1533 1534 1535 1536 1537 1538
	if (avp->noa_duration) {
		if (avp->periodic_noa) {
			u32 interval = TU_TO_USEC(sc->cur_chan->beacon.beacon_interval);
			noa->desc[i].count = 255;
			noa->desc[i].interval = cpu_to_le32(interval);
		} else {
			noa->desc[i].count = 1;
		}
1539

1540 1541
		noa->desc[i].start_time = cpu_to_le32(avp->noa_start);
		noa->desc[i].duration = cpu_to_le32(avp->noa_duration);
1542 1543 1544 1545 1546 1547 1548 1549 1550 1551
		i++;
	}

	if (avp->offchannel_duration) {
		noa->desc[i].count = 1;
		noa->desc[i].start_time = cpu_to_le32(avp->offchannel_start);
		noa->desc[i].duration = cpu_to_le32(avp->offchannel_duration);
	}
}

1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570
void ath9k_p2p_ps_timer(void *priv)
{
	struct ath_softc *sc = priv;
	struct ath_vif *avp = sc->p2p_ps_vif;
	struct ieee80211_vif *vif;
	struct ieee80211_sta *sta;
	struct ath_node *an;
	u32 tsf;

	del_timer_sync(&sc->sched.timer);
	ath9k_hw_gen_timer_stop(sc->sc_ah, sc->p2p_ps_timer);
	ath_chanctx_event(sc, NULL, ATH_CHANCTX_EVENT_TSF_TIMER);

	if (!avp || avp->chanctx != sc->cur_chan)
		return;

	tsf = ath9k_hw_gettsf32(sc->sc_ah);
	if (!avp->noa.absent)
		tsf += ATH_P2P_PS_STOP_TIME;
1571 1572
	else
		tsf -= ATH_P2P_PS_STOP_TIME;
1573 1574 1575 1576 1577 1578 1579 1580 1581 1582

	if (!avp->noa.has_next_tsf ||
	    avp->noa.next_tsf - tsf > BIT(31))
		ieee80211_update_p2p_noa(&avp->noa, tsf);

	ath9k_update_p2p_ps_timer(sc, avp);

	rcu_read_lock();

	vif = avp->vif;
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1583
	sta = ieee80211_find_sta(vif, avp->bssid);
1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
	if (!sta)
		goto out;

	an = (void *) sta->drv_priv;
	if (an->sleeping == !!avp->noa.absent)
		goto out;

	an->sleeping = avp->noa.absent;
	if (an->sleeping)
		ath_tx_aggr_sleep(sta, sc, an);
	else
		ath_tx_aggr_wakeup(sc, an);

out:
	rcu_read_unlock();
}

1601 1602 1603 1604 1605 1606 1607
void ath9k_p2p_bss_info_changed(struct ath_softc *sc,
				struct ieee80211_vif *vif)
{
	unsigned long flags;

	spin_lock_bh(&sc->sc_pcu_lock);
	spin_lock_irqsave(&sc->sc_pm_lock, flags);
1608
	ath9k_update_p2p_ps(sc, vif);
1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620
	spin_unlock_irqrestore(&sc->sc_pm_lock, flags);
	spin_unlock_bh(&sc->sc_pcu_lock);
}

void ath9k_p2p_beacon_sync(struct ath_softc *sc)
{
	if (sc->p2p_ps_vif)
		ath9k_update_p2p_ps(sc, sc->p2p_ps_vif->vif);
}

void ath9k_p2p_remove_vif(struct ath_softc *sc,
			  struct ieee80211_vif *vif)
1621 1622 1623
{
	struct ath_vif *avp = (void *)vif->drv_priv;

1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635
	spin_lock_bh(&sc->sc_pcu_lock);
	if (avp == sc->p2p_ps_vif) {
		sc->p2p_ps_vif = NULL;
		ath9k_update_p2p_ps_timer(sc, NULL);
	}
	spin_unlock_bh(&sc->sc_pcu_lock);
}

int ath9k_init_p2p(struct ath_softc *sc)
{
	sc->p2p_ps_timer = ath_gen_timer_alloc(sc->sc_ah, ath9k_p2p_ps_timer,
					       NULL, sc, AR_FIRST_NDP_TIMER);
1636
	if (!sc->p2p_ps_timer)
1637
		return -ENOMEM;
1638

1639 1640
	return 0;
}
1641

1642 1643 1644 1645
void ath9k_deinit_p2p(struct ath_softc *sc)
{
	if (sc->p2p_ps_timer)
		ath_gen_timer_free(sc->sc_ah, sc->p2p_ps_timer);
1646
}
1647 1648

#endif /* CONFIG_ATH9K_CHANNEL_CONTEXT */