// SPDX-License-Identifier: ISC
/*
* Copyright (C) 2018 Lorenzo Bianconi <lorenzo.bianconi83@gmail.com>
*/
#include "mt76x2u.h"
#include "eeprom.h"
#include "../mt76x02_phy.h"
static void
mt76x2u_phy_channel_calibrate(struct mt76x02_dev *dev, bool mac_stopped)
{
struct ieee80211_channel *chan = dev->mphy.chandef.chan;
bool is_5ghz = chan->band == NL80211_BAND_5GHZ;
if (dev->cal.channel_cal_done)
return ;
if (mt76x2_channel_silent(dev))
return ;
if (!mac_stopped)
mt76x2u_mac_stop(dev);
if (is_5ghz)
mt76x02_mcu_calibrate(dev, MCU_CAL_LC, 0 );
mt76x02_mcu_calibrate(dev, MCU_CAL_TX_LOFT, is_5ghz);
mt76x02_mcu_calibrate(dev, MCU_CAL_TXIQ, is_5ghz);
mt76x02_mcu_calibrate(dev, MCU_CAL_RXIQC_FI, is_5ghz);
mt76x02_mcu_calibrate(dev, MCU_CAL_TEMP_SENSOR, 0 );
mt76x02_mcu_calibrate(dev, MCU_CAL_TX_SHAPING, 0 );
if (!mac_stopped)
mt76x2_mac_resume(dev);
mt76x2_apply_gain_adj(dev);
mt76x02_edcca_init(dev);
dev->cal.channel_cal_done = true ;
}
void mt76x2u_phy_calibrate(struct work_struct *work)
{
struct mt76x02_dev *dev;
dev = container_of(work, struct mt76x02_dev, cal_work.work);
mutex_lock(&dev->mt76.mutex);
mt76x2u_phy_channel_calibrate(dev, false );
mt76x2_phy_tssi_compensate(dev);
mt76x2_phy_update_channel_gain(dev);
mutex_unlock(&dev->mt76.mutex);
ieee80211_queue_delayed_work(mt76_hw(dev), &dev->cal_work,
MT_CALIBRATE_INTERVAL);
}
int mt76x2u_phy_set_channel(struct mt76x02_dev *dev,
struct cfg80211_chan_def *chandef)
{
u32 ext_cca_chan[4 ] = {
[0 ] = FIELD_PREP(MT_EXT_CCA_CFG_CCA0, 0 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA1, 1 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA2, 2 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA3, 3 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA_MASK, BIT(0 )),
[1 ] = FIELD_PREP(MT_EXT_CCA_CFG_CCA0, 1 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA1, 0 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA2, 2 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA3, 3 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA_MASK, BIT(1 )),
[2 ] = FIELD_PREP(MT_EXT_CCA_CFG_CCA0, 2 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA1, 3 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA2, 1 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA3, 0 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA_MASK, BIT(2 )),
[3 ] = FIELD_PREP(MT_EXT_CCA_CFG_CCA0, 3 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA1, 2 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA2, 1 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA3, 0 ) |
FIELD_PREP(MT_EXT_CCA_CFG_CCA_MASK, BIT(3 )),
};
bool scan = test_bit(MT76_SCANNING, &dev->mphy.state);
struct ieee80211_channel *chan = chandef->chan;
u8 channel = chan->hw_value, bw, bw_index;
int ch_group_index, freq, freq1, ret;
dev->cal.channel_cal_done = false ;
freq = chandef->chan->center_freq;
freq1 = chandef->center_freq1;
switch (chandef->width) {
case NL80211_CHAN_WIDTH_40:
bw = 1 ;
if (freq1 > freq) {
bw_index = 1 ;
ch_group_index = 0 ;
} else {
bw_index = 3 ;
ch_group_index = 1 ;
}
channel += 2 - ch_group_index * 4 ;
break ;
case NL80211_CHAN_WIDTH_80:
ch_group_index = (freq - freq1 + 30 ) / 20 ;
if (WARN_ON(ch_group_index < 0 || ch_group_index > 3 ))
ch_group_index = 0 ;
bw = 2 ;
bw_index = ch_group_index;
channel += 6 - ch_group_index * 4 ;
break ;
default :
bw = 0 ;
bw_index = 0 ;
ch_group_index = 0 ;
break ;
}
mt76x2_read_rx_gain(dev);
mt76x2_phy_set_txpower_regs(dev, chan->band);
mt76x2_configure_tx_delay(dev, chan->band, bw);
mt76x2_phy_set_txpower(dev);
mt76x02_phy_set_band(dev, chan->band, ch_group_index & 1 );
mt76x02_phy_set_bw(dev, chandef->width, ch_group_index);
mt76_rmw(dev, MT_EXT_CCA_CFG,
(MT_EXT_CCA_CFG_CCA0 |
MT_EXT_CCA_CFG_CCA1 |
MT_EXT_CCA_CFG_CCA2 |
MT_EXT_CCA_CFG_CCA3 |
MT_EXT_CCA_CFG_CCA_MASK),
ext_cca_chan[ch_group_index]);
ret = mt76x2_mcu_set_channel(dev, channel, bw, bw_index, scan);
if (ret)
return ret;
mt76x2_mcu_init_gain(dev, channel, dev->cal.rx.mcu_gain, true );
/* Enable LDPC Rx */
if (mt76xx_rev(dev) >= MT76XX_REV_E3)
mt76_set(dev, MT_BBP(RXO, 13 ), BIT(10 ));
if (!dev->cal.init_cal_done) {
u8 val = mt76x02_eeprom_get(dev, MT_EE_BT_RCAL_RESULT);
if (val != 0 xff)
mt76x02_mcu_calibrate(dev, MCU_CAL_R, 0 );
}
mt76x02_mcu_calibrate(dev, MCU_CAL_RXDCOC, channel);
/* Rx LPF calibration */
if (!dev->cal.init_cal_done)
mt76x02_mcu_calibrate(dev, MCU_CAL_RC, 0 );
dev->cal.init_cal_done = true ;
mt76_wr(dev, MT_BBP(AGC, 61 ), 0 xff64a4e2);
mt76_wr(dev, MT_BBP(AGC, 7 ), 0 x08081010);
mt76_wr(dev, MT_BBP(AGC, 11 ), 0 x00000404);
mt76_wr(dev, MT_BBP(AGC, 2 ), 0 x00007070);
mt76_wr(dev, MT_TXOP_CTRL_CFG, 0 X04101b3f);
mt76_set(dev, MT_BBP(TXO, 4 ), BIT(25 ));
mt76_set(dev, MT_BBP(RXO, 13 ), BIT(8 ));
if (scan)
return 0 ;
mt76x2u_phy_channel_calibrate(dev, true );
mt76x02_init_agc_gain(dev);
if (mt76x2_tssi_enabled(dev)) {
/* init default values for temp compensation */
mt76_rmw_field(dev, MT_TX_ALC_CFG_1, MT_TX_ALC_CFG_1_TEMP_COMP,
0 x38);
mt76_rmw_field(dev, MT_TX_ALC_CFG_2, MT_TX_ALC_CFG_2_TEMP_COMP,
0 x38);
/* init tssi calibration */
if (!mt76x2_channel_silent(dev)) {
struct ieee80211_channel *chan;
u32 flag = 0 ;
chan = dev->mphy.chandef.chan;
if (chan->band == NL80211_BAND_5GHZ)
flag |= BIT(0 );
if (mt76x02_ext_pa_enabled(dev, chan->band))
flag |= BIT(8 );
mt76x02_mcu_calibrate(dev, MCU_CAL_TSSI, flag);
dev->cal.tssi_cal_done = true ;
}
}
ieee80211_queue_delayed_work(mt76_hw(dev), &dev->cal_work,
MT_CALIBRATE_INTERVAL);
return 0 ;
}
Messung V0.5 in Prozent C=98 H=93 G=95
¤ Dauer der Verarbeitung: 0.8 Sekunden
(vorverarbeitet am 2026-06-07)
¤
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