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/**
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* @file channel-converter-decimate.ino
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* @author Urs Utzinger
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* @brief Reduce samples by binning; which is summing consecutive samples and optionally dividing by the number of samples summed.
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* @copyright GPLv3
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**/
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#include "AudioTools.h"
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#define FACTOR 4
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AudioInfo info1(44100, 1, 16);
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AudioInfo info2(44100, 2, 16);
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AudioInfo info_out(44100/FACTOR, 2, 16);
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SineWaveGenerator<int16_t> sineWave1(16000); // subclass of SoundGenerator with max amplitude of 16000
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SineWaveGenerator<int16_t> sineWave2(16000); // subclass of SoundGenerator with max amplitude of 16000
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GeneratedSoundStream<int16_t> sound1(sineWave1); // stream generated from sine wave
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GeneratedSoundStream<int16_t> sound2(sineWave2); // stream generated from sine wave
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InputMerge<int16_t> imerge(sound1,sound2);
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Decimate decimater(FACTOR, 2, 16); // decimate by FACTOR on each channel
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ConverterStream<int16_t> decimated_stream(imerge, decimater); // pipe the sounds to the decimater
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CsvOutput<int16_t> serial_out(Serial); // serial output
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StreamCopy copier(serial_out, decimated_stream); // stream the decimater output to serial port
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// Arduino Setup
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void setup(void) {
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// Open Serial
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Serial.begin(115200);
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while(!Serial);
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AudioToolsLogger.begin(Serial, AudioToolsLogLevel::Warning);
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// Setup sine wave
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sineWave1.begin(info1, N_B4);
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sineWave2.begin(info1, N_B5);
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// Merge input to stereo
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imerge.begin(info2);
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// Define CSV Output
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serial_out.begin(info_out);
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}
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// Arduino loop - copy sound to out with conversion
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void loop() {
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copier.copy();
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}
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