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628  * For RF5111 we have an XPD -eXternal Power Detector- curve
629 * for each calibrated channel. Each curve has 0,5dB Power steps
631 * exponential function. To recreate the curve we read 11 points
639 * 10% of the pcdac curve -until the curve reaches its maximum-
642 * the pcdac steps based on eeprom version and curve min/max so that we
737 /* Only one curve for RF5111 in ath5k_eeprom_convert_pcal_info_5111()
755 /* Allocate pd points for this curve */ in ath5k_eeprom_convert_pcal_info_5111()
889 * use the higher (3) and the lower (0) curves. Each curve has 0.5dB
891 * linear function. To recreate the curve and pass the power values
931 /* Lowest gain curve (max power) */ in ath5k_eeprom_convert_pcal_info_5112()
936 /* Allocate pd points for this curve */ in ath5k_eeprom_convert_pcal_info_5112()
969 /* Highest gain curve (min power) */ in ath5k_eeprom_convert_pcal_info_5112()
974 /* Allocate pd points for this curve */ in ath5k_eeprom_convert_pcal_info_5112()
1000 /* Since we have a higher gain curve in ath5k_eeprom_convert_pcal_info_5112()
1079 * for the lower xpd gain curve in ath5k_eeprom_read_pcal_info_5112()
1096 * for the higher xpd gain curve in ath5k_eeprom_read_pcal_info_5112()
1133 * Each curve has power on x axis in 0.5 db steps and PDDADC steps on y
1134 * axis and looks like an exponential function like the RF5111 curve.
1139 * 4 curves on eeprom. The final curve (higher power) has an extra
1224 * curve (lowest gain) */ in ath5k_eeprom_convert_pcal_info_2413()
1230 /* Allocate pd points for this curve */ in ath5k_eeprom_convert_pcal_info_2413()
1259 /* Highest gain curve -> min power */ in ath5k_eeprom_convert_pcal_info_2413()
1263 /* Lowest gain curve -> max power */ in ath5k_eeprom_convert_pcal_info_2413()
1554 * that for each channel there is a power curve that's hw specific
1555 * (depends on amplifier etc) and we try to "correct" this curve using