mirror of https://github.com/gfvalvo/ToneShift.git
commit
e9f52fb210
@ -0,0 +1,207 @@ |
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#include <Audio.h> |
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#include "mod-delay-gain.h" |
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#include "NewEncoder.h" |
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|
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void configureShift(void), setOutputMix(void); |
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|
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const int8_t minToneShift = -50; |
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const int8_t maxToneShift = 50; |
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const uint8_t shiftEncoderPinA = 2; |
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const uint8_t shiftEncoderPinB = 3; |
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const int8_t minOutputMix = 0; |
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const int8_t maxOutputMix = 25; |
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const uint8_t mixEncoderPinA = 4; |
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const uint8_t mixEncoderPinB = 5; |
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const uint16_t overlap = 16; // Overlap between complementry delay ramps
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const uint16_t rampLength = 128 + overlap; |
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const uint16_t waveformSize = 256; |
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const int32_t delayBufferLength = 4500; |
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int16_t rampDown[waveformSize], rampUp[waveformSize], window[waveformSize]; |
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int16_t delayBuf1[delayBufferLength]; |
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int16_t delayBuf2[delayBufferLength]; |
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int16_t *currentRamp = rampDown; |
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float modFreq = 0.0, outputMix = 0.0; |
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NewEncoder toneShiftEncoder(shiftEncoderPinA, shiftEncoderPinB, minToneShift, maxToneShift, 0); |
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NewEncoder mixingEncoder(mixEncoderPinA, mixEncoderPinB, minOutputMix, maxOutputMix, 0); |
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AudioInputI2S i2sIn; //xy=82,429
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AudioMixer4 inputGain; //xy=282,475
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AudioSynthWaveform delaySweep1; //xy=261,323
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AudioSynthWaveform envelope1; //xy=268,375
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AudioSynthWaveform delaySweep2; //xy=289,539
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AudioSynthWaveform envelope2; //xy=301,590
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AudioEffectModDelayGain modulatedDelay1; //xy=511,329
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AudioEffectModDelayGain modulatedDelay2; //xy=515,547
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AudioMixer4 outputMixer; //xy=752,420
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AudioOutputI2S i2sOut; //xy=973,422
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AudioAnalyzeRMS outputLevel; //xy=989,475
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AudioConnection patchCord1(i2sIn, 0, inputGain, 0); |
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AudioConnection patchCord2(inputGain, 0, outputMixer, 2); |
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AudioConnection patchCord5(inputGain, 0, modulatedDelay1, 0); |
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AudioConnection patchCord3(delaySweep1, 0, modulatedDelay1, 1); |
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AudioConnection patchCord4(envelope1, 0, modulatedDelay1, 2); |
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|
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AudioConnection patchCord6(inputGain, 0, modulatedDelay2, 0); |
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AudioConnection patchCord7(delaySweep2, 0, modulatedDelay2, 1); |
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AudioConnection patchCord8(envelope2, 0, modulatedDelay2, 2); |
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AudioConnection patchCord9(modulatedDelay1, 0, outputMixer, 0); |
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AudioConnection patchCord10(modulatedDelay2, 0, outputMixer, 1); |
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AudioConnection patchCord11(outputMixer, 0, i2sOut, 0); |
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AudioConnection patchCord12(outputMixer, 0, i2sOut, 1); |
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AudioConnection patchCord13(outputMixer, outputLevel); |
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void setup() { |
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double decrement, increment, delayValue, windowValue; |
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uint16_t index1, temp1; |
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Serial.begin(115200); |
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delay(2000); |
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Serial.println("Starting"); |
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if (!toneShiftEncoder.begin()) { |
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Serial.println( |
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F("Tone Shift Encoder failed to initialize. Check pin assignments and available interrupts. Aborting")); |
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while (1) { |
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} |
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} |
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if (!mixingEncoder.begin()) { |
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Serial.println( |
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F("Mixing Encoder failed to initialize. Check pin assignments and available interrupts. Aborting")); |
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while (1) { |
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} |
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} |
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AudioNoInterrupts(); |
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AudioMemory(20); |
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// create the arrays to ramp delay value
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decrement = (double) 32767.0 / (double) (rampLength - 1); |
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delayValue = 32767.0; |
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for (index1 = 0; index1 < rampLength; index1++) { |
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rampDown[index1] = (delayValue + 0.5 > 0) ? delayValue + 0.5 : 0; |
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rampUp[index1] = 32767 - rampDown[index1]; |
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delayValue -= decrement; |
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} |
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//for (; index1 < 256; index1++) {
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for (; index1 < waveformSize; index1++) { |
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rampDown[index1] = 0; |
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rampUp[index1] = 32767; |
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} |
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// create the amplitude window array
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increment = 1.0 / (double) (overlap - 1); |
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windowValue = 0.0; |
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//for (index1 = 127; index1 < 256; index1++) {
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for (index1 = 0; index1 < waveformSize; index1++) { |
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window[index1] = 0; |
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} |
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for (index1 = 0; index1 < overlap; index1++) { |
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temp1 = sqrt(windowValue) * 32767 + 0.5; |
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temp1 = (temp1 < 32768) ? temp1 : 32767; |
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window[index1] = temp1; |
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//window[127 + overlap - index1] = temp1;
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window[waveformSize / 2 - 1 + overlap - index1] = temp1; |
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windowValue += increment; |
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} |
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//for (; index1 <= 127; index1++) {
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for (; index1 < waveformSize / 2; index1++) { |
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window[index1] = 32767; |
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} |
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modulatedDelay1.setbuf(delayBufferLength, delayBuf1); |
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modulatedDelay2.setbuf(delayBufferLength, delayBuf2); |
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//outputMixer.gain(0, 1.0);
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//outputMixer.gain(1, 1.0);
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//outputMixer.gain(2, 0.0);
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outputMixer.gain(3, 0.0); |
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setOutputMix(); |
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inputGain.gain(0, 5.0); |
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inputGain.gain(1, 0.0); |
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inputGain.gain(2, 0.0); |
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inputGain.gain(3, 0.0); |
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configureShift(); |
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} |
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void loop() { |
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static elapsedMillis fps; |
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static int16_t lastToneShiftDecoderPosition = -5000; |
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static int16_t lastMixDecoderPosition = -5000; |
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int16_t currentDecoderPosition; |
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if (fps > 24) { |
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if (outputLevel.available()) { |
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fps = 0; |
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int monoPeak = outputLevel.read() * 30.0; |
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Serial.print("|"); |
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for (int cnt = 0; cnt < monoPeak; cnt++) { |
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Serial.print(">"); |
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} |
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Serial.println(); |
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} |
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} |
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currentDecoderPosition = toneShiftEncoder; |
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if (currentDecoderPosition != lastToneShiftDecoderPosition) { |
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lastToneShiftDecoderPosition = currentDecoderPosition; |
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Serial.print("New Tone Shift Position = "); |
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Serial.println(currentDecoderPosition); |
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if (currentDecoderPosition >= 0) { |
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modFreq = 5.0 * currentDecoderPosition / maxToneShift; |
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currentRamp = rampDown; |
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} else { |
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modFreq = 2.5 * currentDecoderPosition / minToneShift; |
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currentRamp = rampUp; |
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} |
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configureShift(); |
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} |
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currentDecoderPosition = mixingEncoder; |
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if (currentDecoderPosition != lastMixDecoderPosition) { |
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lastMixDecoderPosition = currentDecoderPosition; |
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Serial.print("New Mix Position = "); |
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Serial.print(currentDecoderPosition); |
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outputMix = (float) currentDecoderPosition / (maxOutputMix - minOutputMix) + minOutputMix; |
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Serial.print(" ----> "); |
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Serial.println(outputMix); |
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setOutputMix(); |
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} |
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} |
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void configureShift() { |
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AudioNoInterrupts(); |
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delaySweep1.begin(1, modFreq, WAVEFORM_ARBITRARY); |
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delaySweep1.arbitraryWaveform(currentRamp, 100); |
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delaySweep2.begin(1, modFreq, WAVEFORM_ARBITRARY); |
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delaySweep2.arbitraryWaveform(currentRamp, 100); |
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delaySweep2.phase(180.0); |
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envelope1.begin(1, modFreq, WAVEFORM_ARBITRARY); |
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envelope1.arbitraryWaveform(window, 100); |
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envelope2.begin(1, modFreq, WAVEFORM_ARBITRARY); |
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envelope2.arbitraryWaveform(window, 100); |
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envelope2.phase(180.0); |
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AudioInterrupts(); |
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} |
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void setOutputMix() { |
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outputMixer.gain(0, (1.0 - outputMix) / 2.0); |
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outputMixer.gain(1, (1.0 - outputMix) / 2.0); |
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outputMixer.gain(2, outputMix); |
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} |
@ -0,0 +1,141 @@ |
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/* Modulated delay line
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|
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Inspired by; |
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http://musicdsp.org/showArchiveComment.php?ArchiveID=154
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|
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But details changed for Teensy Audio. |
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No feedback within the class, just done externally |
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so we can add filters and stuff to the loop. |
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|
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Delay time is a signal input to the block, and functions from 0 to 0x7fff, |
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scaling the delay time accordingly. |
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*/ |
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/*
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Copyright (c) 2016, Byron Jacquot, SparkFun Electronics |
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SparkFun code, firmware, and software is released under |
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the MIT License(http://opensource.org/licenses/MIT).
|
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|
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Permission is hereby granted, free of charge, to any person obtaining a copy |
||||
of this software and associated documentation files (the "Software"), to deal |
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in the Software without restriction, including without limitation the rights |
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell |
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copies of the Software, and to permit persons to whom the Software is |
||||
furnished to do so, subject to the following conditions: |
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|
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The above copyright notice, development funding notice, and this permission |
||||
notice shall be included in all copies or substantial portions of the Software. |
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|
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR |
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE |
||||
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER |
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, |
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN |
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THE SOFTWARE. |
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|
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|
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*/ |
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#include "mod-delay-gain.h" |
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#define INTERPOLATE (1) |
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void AudioEffectModDelayGain::update(void) |
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{ |
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audio_block_t *audioblock, *controlblockDelay, *controlblockGain; |
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int16_t *data, *end, *ctrlDelay, *ctrlGain; |
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int32_t extract_index; |
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int32_t temp; |
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#ifdef INTERPOLATE |
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int32_t interp_delta; |
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int32_t next; |
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int16_t calc; |
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#endif |
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if (buffer_length == 0) |
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return; |
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audioblock = receiveWritable(0); |
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if (!audioblock) return; |
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controlblockDelay = receiveReadOnly(1); |
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if (!controlblockDelay) { |
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release(audioblock); |
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return; |
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} |
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controlblockGain = receiveReadOnly(2); |
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if (!controlblockGain) { |
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release(audioblock); |
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release(controlblockDelay); |
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return; |
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} |
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data = audioblock->data; |
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end = audioblock->data + AUDIO_BLOCK_SAMPLES; |
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ctrlDelay = controlblockDelay->data; |
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ctrlGain = controlblockGain->data; |
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do |
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{ |
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delayline_p[insert_index] = *data; |
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insert_index++; |
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if (insert_index >= buffer_length) |
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{ |
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insert_index = 0; |
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} |
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#ifdef INTERPOLATE |
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//
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interp_delta = (buffer_length * (*ctrlDelay)); |
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delay_delta = interp_delta >> 15; // MSB's for delay len
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interp_delta &= 0x7fff; //LSBs for interp distance
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#else |
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delay_delta = (buffer_length * (*ctrlDelay)) >> 15; |
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#endif |
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extract_index = insert_index - delay_delta; |
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if (extract_index < 0) |
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{ |
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extract_index = buffer_length + extract_index; |
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} |
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#ifdef INTERPOLATE |
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// Use the fractional part to interpolate between samples
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next = extract_index + 1; |
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if (next >= buffer_length) |
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{ |
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next = 0; |
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} |
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calc = delayline_p[next] - delayline_p[extract_index]; |
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calc = (calc * interp_delta ) >> 15; |
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calc += delayline_p[extract_index]; |
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//*data = calc;
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temp = (int32_t)calc * (*ctrlGain); |
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*data = temp >> 15; |
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#else |
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//data = delayline_p[extract_index];
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temp = (int32_t)delayline_p[extract_index] * (*ctrlGain); |
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*data = temp >> 15; |
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#endif |
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data++; |
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ctrlDelay++; |
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ctrlGain++; |
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} while (data < end); |
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transmit(audioblock); |
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release(audioblock); |
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release(controlblockDelay); |
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release(controlblockGain); |
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} |
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@ -0,0 +1,91 @@ |
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/* Modulated delay line
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|
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Inspired by; |
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http://musicdsp.org/showArchiveComment.php?ArchiveID=154
|
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|
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But details changed for Teensy Audio. |
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No feedback within the class, just done externally |
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so we can add filters and stuff to the loop. |
||||
|
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Delay time is a signal input to the block, and functions from 0 to 0x7fff, |
||||
scaling the delay time accordingly. |
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*/ |
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/*
|
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Copyright (c) 2016, Byron Jacquot, SparkFun Electronics |
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SparkFun code, firmware, and software is released under |
||||
the MIT License(http://opensource.org/licenses/MIT).
|
||||
|
||||
Permission is hereby granted, free of charge, to any person obtaining a copy |
||||
of this software and associated documentation files (the "Software"), to deal |
||||
in the Software without restriction, including without limitation the rights |
||||
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell |
||||
copies of the Software, and to permit persons to whom the Software is |
||||
furnished to do so, subject to the following conditions: |
||||
|
||||
The above copyright notice, development funding notice, and this permission |
||||
notice shall be included in all copies or substantial portions of the Software. |
||||
|
||||
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR |
||||
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
||||
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE |
||||
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER |
||||
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, |
||||
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN |
||||
THE SOFTWARE. |
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|
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|
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*/ |
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|
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#pragma once |
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|
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#ifndef _mod_delay_h_ |
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#define _mod_delay_h_ |
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#include "AudioStream.h" |
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#include <Arduino.h> |
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class AudioEffectModDelayGain: public AudioStream |
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{ |
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public: |
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AudioEffectModDelayGain (void) : AudioStream(3, inputQueueArray) |
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{ |
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buffer_length = 0; |
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} |
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virtual void update(void); |
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// Set the parameters
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void setbuf(int32_t delay_len, int16_t* delay_buf ) |
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{ |
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delayline_p = delay_buf; |
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insert_index = 0; |
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buffer_length = delay_len; |
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for (int32_t i = 0; i < buffer_length; i++) |
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{ |
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delayline_p[i] = 0; |
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} |
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}; |
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|
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void inspect(void) |
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{ |
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Serial.print(insert_index, HEX); |
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Serial.print(' '); |
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Serial.print(delay_delta, HEX); |
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Serial.print(' '); |
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Serial.println(buffer_length, HEX); |
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}; |
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private: |
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audio_block_t *inputQueueArray[3]; |
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int16_t *delayline_p; |
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int32_t insert_index; |
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int32_t buffer_length; |
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int32_t delay_delta; |
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}; |
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|
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#endif |
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