forked from Minki/linux
ath9k: update to DFS pattern detector interface
Follow updates in DFS pattern detector interface: a) use given pulse event structure b) adapt to boolean return value of add_pulse() Signed-off-by: Zefir Kurtisi <zefir.kurtisi@neratec.com> Signed-off-by: John W. Linville <linville@tuxdriver.com>
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@ -21,17 +21,6 @@
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#include "dfs.h"
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#include "dfs_debug.h"
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/*
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* TODO: move into or synchronize this with generic header
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* as soon as IF is defined
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*/
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struct dfs_radar_pulse {
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u16 freq;
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u64 ts;
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u32 width;
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u8 rssi;
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};
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/* internal struct to pass radar data */
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struct ath_radar_data {
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u8 pulse_bw_info;
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@ -60,44 +49,44 @@ static u32 dur_to_usecs(struct ath_hw *ah, u32 dur)
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#define EXT_CH_RADAR_FOUND 0x02
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static bool
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ath9k_postprocess_radar_event(struct ath_softc *sc,
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struct ath_radar_data *are,
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struct dfs_radar_pulse *drp)
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struct ath_radar_data *ard,
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struct pulse_event *pe)
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{
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u8 rssi;
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u16 dur;
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ath_dbg(ath9k_hw_common(sc->sc_ah), DFS,
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"pulse_bw_info=0x%x, pri,ext len/rssi=(%u/%u, %u/%u)\n",
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are->pulse_bw_info,
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are->pulse_length_pri, are->rssi,
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are->pulse_length_ext, are->ext_rssi);
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ard->pulse_bw_info,
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ard->pulse_length_pri, ard->rssi,
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ard->pulse_length_ext, ard->ext_rssi);
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/*
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* Only the last 2 bits of the BW info are relevant, they indicate
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* which channel the radar was detected in.
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*/
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are->pulse_bw_info &= 0x03;
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ard->pulse_bw_info &= 0x03;
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switch (are->pulse_bw_info) {
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switch (ard->pulse_bw_info) {
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case PRI_CH_RADAR_FOUND:
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/* radar in ctrl channel */
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dur = are->pulse_length_pri;
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dur = ard->pulse_length_pri;
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DFS_STAT_INC(sc, pri_phy_errors);
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/*
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* cannot use ctrl channel RSSI
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* if extension channel is stronger
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*/
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rssi = (are->ext_rssi >= (are->rssi + 3)) ? 0 : are->rssi;
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rssi = (ard->ext_rssi >= (ard->rssi + 3)) ? 0 : ard->rssi;
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break;
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case EXT_CH_RADAR_FOUND:
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/* radar in extension channel */
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dur = are->pulse_length_ext;
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dur = ard->pulse_length_ext;
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DFS_STAT_INC(sc, ext_phy_errors);
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/*
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* cannot use extension channel RSSI
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* if control channel is stronger
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*/
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rssi = (are->rssi >= (are->ext_rssi + 12)) ? 0 : are->ext_rssi;
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rssi = (ard->rssi >= (ard->ext_rssi + 12)) ? 0 : ard->ext_rssi;
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break;
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case (PRI_CH_RADAR_FOUND | EXT_CH_RADAR_FOUND):
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/*
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@ -107,14 +96,14 @@ ath9k_postprocess_radar_event(struct ath_softc *sc,
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* Radiated testing, when pulse is on DC, different pri and
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* ext durations are reported, so take the larger of the two
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*/
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if (are->pulse_length_ext >= are->pulse_length_pri)
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dur = are->pulse_length_ext;
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if (ard->pulse_length_ext >= ard->pulse_length_pri)
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dur = ard->pulse_length_ext;
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else
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dur = are->pulse_length_pri;
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dur = ard->pulse_length_pri;
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DFS_STAT_INC(sc, dc_phy_errors);
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/* when both are present use stronger one */
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rssi = (are->rssi < are->ext_rssi) ? are->ext_rssi : are->rssi;
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rssi = (ard->rssi < ard->ext_rssi) ? ard->ext_rssi : ard->rssi;
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break;
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default:
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/*
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@ -137,8 +126,8 @@ ath9k_postprocess_radar_event(struct ath_softc *sc,
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*/
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/* convert duration to usecs */
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drp->width = dur_to_usecs(sc->sc_ah, dur);
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drp->rssi = rssi;
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pe->width = dur_to_usecs(sc->sc_ah, dur);
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pe->rssi = rssi;
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DFS_STAT_INC(sc, pulses_detected);
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return true;
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@ -155,12 +144,12 @@ void ath9k_dfs_process_phyerr(struct ath_softc *sc, void *data,
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struct ath_radar_data ard;
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u16 datalen;
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char *vdata_end;
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struct dfs_radar_pulse drp;
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struct pulse_event pe;
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struct ath_hw *ah = sc->sc_ah;
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struct ath_common *common = ath9k_hw_common(ah);
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if ((!(rs->rs_phyerr != ATH9K_PHYERR_RADAR)) &&
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(!(rs->rs_phyerr != ATH9K_PHYERR_FALSE_RADAR_EXT))) {
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if ((rs->rs_phyerr != ATH9K_PHYERR_RADAR) &&
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(rs->rs_phyerr != ATH9K_PHYERR_FALSE_RADAR_EXT)) {
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ath_dbg(common, DFS,
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"Error: rs_phyer=0x%x not a radar error\n",
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rs->rs_phyerr);
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@ -189,27 +178,20 @@ void ath9k_dfs_process_phyerr(struct ath_softc *sc, void *data,
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ard.pulse_bw_info = vdata_end[-1];
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ard.pulse_length_ext = vdata_end[-2];
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ard.pulse_length_pri = vdata_end[-3];
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ath_dbg(common, DFS,
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"bw_info=%d, length_pri=%d, length_ext=%d, "
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"rssi_pri=%d, rssi_ext=%d\n",
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ard.pulse_bw_info, ard.pulse_length_pri, ard.pulse_length_ext,
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ard.rssi, ard.ext_rssi);
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drp.freq = ah->curchan->channel;
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drp.ts = mactime;
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if (ath9k_postprocess_radar_event(sc, &ard, &drp)) {
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pe.freq = ah->curchan->channel;
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pe.ts = mactime;
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if (ath9k_postprocess_radar_event(sc, &ard, &pe)) {
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struct dfs_pattern_detector *pd = sc->dfs_detector;
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static u64 last_ts;
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ath_dbg(common, DFS,
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"ath9k_dfs_process_phyerr: channel=%d, ts=%llu, "
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"width=%d, rssi=%d, delta_ts=%llu\n",
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drp.freq, drp.ts, drp.width, drp.rssi, drp.ts-last_ts);
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last_ts = drp.ts;
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/*
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* TODO: forward pulse to pattern detector
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*
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* ieee80211_add_radar_pulse(drp.freq, drp.ts,
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* drp.width, drp.rssi);
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*/
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pe.freq, pe.ts, pe.width, pe.rssi, pe.ts-last_ts);
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last_ts = pe.ts;
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if (pd != NULL && pd->add_pulse(pd, &pe)) {
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/*
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* TODO: forward radar event to DFS management layer
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*/
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}
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}
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}
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@ -17,6 +17,7 @@
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#ifndef ATH9K_DFS_H
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#define ATH9K_DFS_H
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#include "dfs_pattern_detector.h"
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#if defined(CONFIG_ATH9K_DFS_CERTIFIED)
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/**
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@ -31,13 +32,14 @@
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*
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* The radar information provided as raw payload data is validated and
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* filtered for false pulses. Events passing all tests are forwarded to
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* the upper layer for pattern detection.
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* the DFS detector for pattern detection.
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*/
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void ath9k_dfs_process_phyerr(struct ath_softc *sc, void *data,
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struct ath_rx_status *rs, u64 mactime);
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#else
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static inline void ath9k_dfs_process_phyerr(struct ath_softc *sc, void *data,
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struct ath_rx_status *rs, u64 mactime) { }
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static inline void
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ath9k_dfs_process_phyerr(struct ath_softc *sc, void *data,
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struct ath_rx_status *rs, u64 mactime) { }
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#endif
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#endif /* ATH9K_DFS_H */
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