ath9k_hw: merge the ar9287 version of ath9k_hw_get_gain_boundaries_pdadcs
Also add a comment about a potential array overrun that needs to be reviewed. Signed-off-by: Felix Fietkau <nbd@openwrt.org> Signed-off-by: John W. Linville <linville@tuxdriver.com>
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@ -309,7 +309,14 @@ void ath9k_hw_get_gain_boundaries_pdadcs(struct ath_hw *ah,
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int pdgain_boundary_default;
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struct cal_data_per_freq *data_def = pRawDataSet;
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struct cal_data_per_freq_4k *data_4k = pRawDataSet;
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struct cal_data_per_freq_ar9287 *data_9287 = pRawDataSet;
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bool eeprom_4k = AR_SREV_9285(ah) || AR_SREV_9271(ah);
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int intercepts;
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if (AR_SREV_9287(ah))
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intercepts = AR9287_PD_GAIN_ICEPTS;
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else
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intercepts = AR5416_PD_GAIN_ICEPTS;
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memset(&minPwrT4, 0, AR5416_NUM_PD_GAINS);
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ath9k_hw_get_channel_centers(ah, chan, ¢ers);
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@ -324,14 +331,25 @@ void ath9k_hw_get_gain_boundaries_pdadcs(struct ath_hw *ah,
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bChans, numPiers, &idxL, &idxR);
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if (match) {
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if (eeprom_4k) {
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if (AR_SREV_9287(ah)) {
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/* FIXME: array overrun? */
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for (i = 0; i < numXpdGains; i++) {
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minPwrT4[i] = data_9287[idxL].pwrPdg[i][0];
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maxPwrT4[i] = data_9287[idxL].pwrPdg[i][4];
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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data_9287[idxL].pwrPdg[i],
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data_9287[idxL].vpdPdg[i],
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intercepts,
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vpdTableI[i]);
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}
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} else if (eeprom_4k) {
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for (i = 0; i < numXpdGains; i++) {
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minPwrT4[i] = data_4k[idxL].pwrPdg[i][0];
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maxPwrT4[i] = data_4k[idxL].pwrPdg[i][4];
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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data_4k[idxL].pwrPdg[i],
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data_4k[idxL].vpdPdg[i],
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AR5416_PD_GAIN_ICEPTS,
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intercepts,
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vpdTableI[i]);
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}
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} else {
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@ -341,13 +359,18 @@ void ath9k_hw_get_gain_boundaries_pdadcs(struct ath_hw *ah,
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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data_def[idxL].pwrPdg[i],
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data_def[idxL].vpdPdg[i],
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AR5416_PD_GAIN_ICEPTS,
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intercepts,
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vpdTableI[i]);
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}
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}
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} else {
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for (i = 0; i < numXpdGains; i++) {
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if (eeprom_4k) {
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if (AR_SREV_9287(ah)) {
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pVpdL = data_9287[idxL].vpdPdg[i];
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pPwrL = data_9287[idxL].pwrPdg[i];
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pVpdR = data_9287[idxR].vpdPdg[i];
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pPwrR = data_9287[idxR].pwrPdg[i];
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} else if (eeprom_4k) {
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pVpdL = data_4k[idxL].vpdPdg[i];
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pPwrL = data_4k[idxL].pwrPdg[i];
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pVpdR = data_4k[idxR].vpdPdg[i];
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@ -362,17 +385,17 @@ void ath9k_hw_get_gain_boundaries_pdadcs(struct ath_hw *ah,
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minPwrT4[i] = max(pPwrL[0], pPwrR[0]);
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maxPwrT4[i] =
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min(pPwrL[AR5416_PD_GAIN_ICEPTS - 1],
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pPwrR[AR5416_PD_GAIN_ICEPTS - 1]);
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min(pPwrL[intercepts - 1],
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pPwrR[intercepts - 1]);
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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pPwrL, pVpdL,
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AR5416_PD_GAIN_ICEPTS,
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intercepts,
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vpdTableL[i]);
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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pPwrR, pVpdR,
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AR5416_PD_GAIN_ICEPTS,
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intercepts,
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vpdTableR[i]);
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for (j = 0; j <= (maxPwrT4[i] - minPwrT4[i]) / 2; j++) {
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@ -220,163 +220,6 @@ static u32 ath9k_hw_ar9287_get_eeprom(struct ath_hw *ah,
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}
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}
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static void ath9k_hw_get_ar9287_gain_boundaries_pdadcs(struct ath_hw *ah,
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struct ath9k_channel *chan,
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struct cal_data_per_freq_ar9287 *pRawDataSet,
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u8 *bChans, u16 availPiers,
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u16 tPdGainOverlap,
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u16 *pPdGainBoundaries,
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u8 *pPDADCValues,
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u16 numXpdGains)
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{
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#define TMP_VAL_VPD_TABLE \
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((vpdTableI[i][sizeCurrVpdTable - 1] + (ss - maxIndex + 1) * vpdStep));
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int i, j, k;
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int16_t ss;
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u16 idxL = 0, idxR = 0, numPiers;
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u8 *pVpdL, *pVpdR, *pPwrL, *pPwrR;
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u8 minPwrT4[AR5416_NUM_PD_GAINS];
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u8 maxPwrT4[AR5416_NUM_PD_GAINS];
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int16_t vpdStep;
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int16_t tmpVal;
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u16 sizeCurrVpdTable, maxIndex, tgtIndex;
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bool match;
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int16_t minDelta = 0;
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struct chan_centers centers;
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static u8 vpdTableL[AR5416_EEP4K_NUM_PD_GAINS]
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[AR5416_MAX_PWR_RANGE_IN_HALF_DB];
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static u8 vpdTableR[AR5416_EEP4K_NUM_PD_GAINS]
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[AR5416_MAX_PWR_RANGE_IN_HALF_DB];
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static u8 vpdTableI[AR5416_EEP4K_NUM_PD_GAINS]
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[AR5416_MAX_PWR_RANGE_IN_HALF_DB];
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memset(&minPwrT4, 0, AR5416_NUM_PD_GAINS);
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ath9k_hw_get_channel_centers(ah, chan, ¢ers);
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for (numPiers = 0; numPiers < availPiers; numPiers++) {
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if (bChans[numPiers] == AR5416_BCHAN_UNUSED)
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break;
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}
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match = ath9k_hw_get_lower_upper_index(
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(u8)FREQ2FBIN(centers.synth_center, IS_CHAN_2GHZ(chan)),
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bChans, numPiers, &idxL, &idxR);
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if (match) {
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for (i = 0; i < numXpdGains; i++) {
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minPwrT4[i] = pRawDataSet[idxL].pwrPdg[i][0];
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maxPwrT4[i] = pRawDataSet[idxL].pwrPdg[i][4];
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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pRawDataSet[idxL].pwrPdg[i],
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pRawDataSet[idxL].vpdPdg[i],
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AR9287_PD_GAIN_ICEPTS,
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vpdTableI[i]);
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}
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} else {
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for (i = 0; i < numXpdGains; i++) {
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pVpdL = pRawDataSet[idxL].vpdPdg[i];
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pPwrL = pRawDataSet[idxL].pwrPdg[i];
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pVpdR = pRawDataSet[idxR].vpdPdg[i];
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pPwrR = pRawDataSet[idxR].pwrPdg[i];
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minPwrT4[i] = max(pPwrL[0], pPwrR[0]);
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maxPwrT4[i] = min(pPwrL[AR9287_PD_GAIN_ICEPTS - 1],
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pPwrR[AR9287_PD_GAIN_ICEPTS - 1]);
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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pPwrL, pVpdL,
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AR9287_PD_GAIN_ICEPTS,
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vpdTableL[i]);
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ath9k_hw_fill_vpd_table(minPwrT4[i], maxPwrT4[i],
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pPwrR, pVpdR,
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AR9287_PD_GAIN_ICEPTS,
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vpdTableR[i]);
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for (j = 0; j <= (maxPwrT4[i] - minPwrT4[i]) / 2; j++) {
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vpdTableI[i][j] = (u8)(ath9k_hw_interpolate(
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(u16)FREQ2FBIN(centers. synth_center,
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IS_CHAN_2GHZ(chan)),
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bChans[idxL], bChans[idxR],
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vpdTableL[i][j], vpdTableR[i][j]));
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}
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}
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}
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k = 0;
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for (i = 0; i < numXpdGains; i++) {
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if (i == (numXpdGains - 1))
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pPdGainBoundaries[i] =
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(u16)(maxPwrT4[i] / 2);
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else
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pPdGainBoundaries[i] =
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(u16)((maxPwrT4[i] + minPwrT4[i+1]) / 4);
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pPdGainBoundaries[i] = min((u16)MAX_RATE_POWER,
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pPdGainBoundaries[i]);
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minDelta = 0;
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if (i == 0) {
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if (AR_SREV_9280_20_OR_LATER(ah))
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ss = (int16_t)(0 - (minPwrT4[i] / 2));
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else
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ss = 0;
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} else {
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ss = (int16_t)((pPdGainBoundaries[i-1] -
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(minPwrT4[i] / 2)) -
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tPdGainOverlap + 1 + minDelta);
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}
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vpdStep = (int16_t)(vpdTableI[i][1] - vpdTableI[i][0]);
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vpdStep = (int16_t)((vpdStep < 1) ? 1 : vpdStep);
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while ((ss < 0) && (k < (AR5416_NUM_PDADC_VALUES - 1))) {
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tmpVal = (int16_t)(vpdTableI[i][0] + ss * vpdStep);
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pPDADCValues[k++] = (u8)((tmpVal < 0) ? 0 : tmpVal);
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ss++;
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}
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sizeCurrVpdTable = (u8)((maxPwrT4[i] - minPwrT4[i]) / 2 + 1);
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tgtIndex = (u8)(pPdGainBoundaries[i] +
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tPdGainOverlap - (minPwrT4[i] / 2));
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maxIndex = (tgtIndex < sizeCurrVpdTable) ?
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tgtIndex : sizeCurrVpdTable;
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while ((ss < maxIndex) && (k < (AR5416_NUM_PDADC_VALUES - 1)))
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pPDADCValues[k++] = vpdTableI[i][ss++];
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vpdStep = (int16_t)(vpdTableI[i][sizeCurrVpdTable - 1] -
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vpdTableI[i][sizeCurrVpdTable - 2]);
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vpdStep = (int16_t)((vpdStep < 1) ? 1 : vpdStep);
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if (tgtIndex > maxIndex) {
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while ((ss <= tgtIndex) &&
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(k < (AR5416_NUM_PDADC_VALUES - 1))) {
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tmpVal = (int16_t) TMP_VAL_VPD_TABLE;
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pPDADCValues[k++] =
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(u8)((tmpVal > 255) ? 255 : tmpVal);
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ss++;
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}
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}
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}
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while (i < AR5416_PD_GAINS_IN_MASK) {
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pPdGainBoundaries[i] = pPdGainBoundaries[i-1];
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i++;
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}
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while (k < AR5416_NUM_PDADC_VALUES) {
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pPDADCValues[k] = pPDADCValues[k-1];
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k++;
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}
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#undef TMP_VAL_VPD_TABLE
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}
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static void ar9287_eeprom_get_tx_gain_index(struct ath_hw *ah,
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struct ath9k_channel *chan,
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struct cal_data_op_loop_ar9287 *pRawDatasetOpLoop,
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@ -525,7 +368,7 @@ static void ath9k_hw_set_ar9287_power_cal_table(struct ath_hw *ah,
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(struct cal_data_per_freq_ar9287 *)
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pEepData->calPierData2G[i];
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ath9k_hw_get_ar9287_gain_boundaries_pdadcs(ah, chan,
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ath9k_hw_get_gain_boundaries_pdadcs(ah, chan,
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pRawDataset,
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pCalBChans, numPiers,
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pdGainOverlap_t2,
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