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@ -1311,7 +1311,7 @@ static const int wfm_modulation[5] = { 0, 190, 118, -118, -190 }; // 5 step wi
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deviceRSSI_t age[POINTS_COUNT];
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static float old_a = -150;
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static float old_a = -150; // cached value to reduce writes to level registers
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static float correct_RSSI;
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systime_t start_of_sweep_timestamp;
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@ -1432,6 +1432,15 @@ float perform(bool break_on_operation, int i, uint32_t f, int tracking) // M
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// chThdSleepMicroseconds(200);
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}
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}
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// Calculate the RSSI correction for later use
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if (MODE_INPUT(setting.mode) && (i == 0 || setting.frequency_step != 0) ){ // only cases where the value can change on 0 point of sweep
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correct_RSSI = getSI4432_RSSI_correction()
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+ get_level_offset()
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+ get_attenuation()
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- get_signal_path_loss()
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- setting.offset
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+ get_frequency_correction(f);
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}
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// -------------------------------- Acquisition loop for one requested frequency covering spur avoidance and vbwsteps ------------------------
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pureRSSI_t RSSI = float_TO_PURE_RSSI(-150.0);
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@ -1452,16 +1461,6 @@ float perform(bool break_on_operation, int i, uint32_t f, int tracking) // M
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offs = (int)(offs * actual_rbw_x10/10.0);
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lf = (uint32_t)(f + offs);
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}
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// Calculate the RSSI correction for later use
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if (i == 0){ // only cases where the value can change on 0 point of sweep
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correct_RSSI = getSI4432_RSSI_correction();
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if (setting.frequency_step != 0 )
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correct_RSSI+= get_level_offset()
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+ get_attenuation()
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- get_signal_path_loss()
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- setting.offset
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+ get_frequency_correction(f);
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}
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// --------------- Set all the LO's ------------------------
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if (/* MODE_INPUT(setting.mode) && */ i > 0 && FREQ_IS_CW()) // In input mode in zero span mode after first setting of the LO's
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