Added ChatGPT suggested fixed for frequency calculation.
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a11a75a2c5
1 changed files with 150 additions and 151 deletions
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@ -78,20 +78,15 @@ void trigger_freq_analog(uint16_t *i2s_buffer,
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uint32_t trigger_index = 0;
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// get initial signal relative to the mean
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if (to_voltage(i2s_buffer[0]) > mean)
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{
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signal_side = true;
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}
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bool previous_signal_side = (to_voltage(i2s_buffer[0]) > mean);
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// waveform repetitions calculation + get triggers time
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uint32_t wave_center = (max_v + min_v) / 2;
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for (uint32_t i = 1; i < BUFF_SIZE; i++)
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{
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if (signal_side && i2s_buffer[i] < wave_center - (wave_center - min_v) * 0.2)
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{
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signal_side = false;
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}
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else if (!signal_side && i2s_buffer[i] > wave_center + (max_v - wave_center) * 0.2)
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bool current_signal_side = (to_voltage(i2s_buffer[i]) > mean);
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if (previous_signal_side && !current_signal_side)
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{
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freq++;
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if (trigger_count < trigger_num)
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@ -99,10 +94,19 @@ void trigger_freq_analog(uint16_t *i2s_buffer,
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trigger_temp[trigger_count] = i;
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trigger_count++;
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}
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signal_side = true;
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} else if (!previous_signal_side && current_signal_side)
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{
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freq++;
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if (trigger_count < trigger_num)
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{
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trigger_temp[trigger_count] = i;
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trigger_count++;
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}
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}
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previous_signal_side = current_signal_side;
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}
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// frequency calculation
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if (trigger_count < 2)
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{
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@ -172,7 +176,6 @@ void trigger_freq_digital(uint16_t *i2s_buffer,
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float *pt_period,
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uint32_t *pt_trigger0)
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{
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float freq = 0;
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float period = 0;
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bool signal_side = false;
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@ -182,10 +185,7 @@ void trigger_freq_digital(uint16_t *i2s_buffer,
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uint32_t trigger_index = 0;
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// get initial signal relative to the mean
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if (to_voltage(i2s_buffer[0]) > mean)
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{
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signal_side = true;
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}
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bool previous_signal_side = (to_voltage(i2s_buffer[0]) > mean);
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// waveform repetitions calculation + get triggers time
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uint32_t wave_center = (max_v + min_v) / 2;
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@ -194,38 +194,37 @@ void trigger_freq_digital(uint16_t *i2s_buffer,
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{
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for (uint32_t i = 1; i < BUFF_SIZE; i++)
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{
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if (signal_side && i2s_buffer[i] < wave_center - (wave_center - min_v) * 0.2)
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{
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bool current_signal_side = (to_voltage(i2s_buffer[i]) > mean);
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if (previous_signal_side && !current_signal_side)
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{
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// signal was high, fell -> trigger if normal high
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if (trigger_count < trigger_num && normal_high)
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{
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trigger_temp[trigger_count] = i;
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trigger_count++;
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}
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signal_side = false;
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}
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else if (!signal_side && i2s_buffer[i] > wave_center + (max_v - wave_center) * 0.2)
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else if (!previous_signal_side && current_signal_side)
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{
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freq++;
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// signal was low, rose -> trigger if normal low
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if (trigger_count < trigger_num && !normal_high)
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{
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trigger_temp[trigger_count] = i;
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trigger_count++;
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}
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signal_side = true;
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}
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}
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previous_signal_side = current_signal_side;
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}
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// frequency calculation
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if (trigger_count > 1)
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{
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// simple frequency calculation fair enough for frequencies over 2khz (20hz resolution)
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freq = freq * 1000 / 50;
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period = (float)(sample_rate * 1000.0) / freq; // us
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if (trigger_count > 1)
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{
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// from 2000 to 80 hz -> uses mean of the periods for precision
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if (freq < 2000 && freq > 80)
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{
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