mirror of
https://github.com/airwindows/airwindows.git
synced 2026-05-21 06:46:21 -06:00
376 lines
No EOL
14 KiB
C++
Executable file
376 lines
No EOL
14 KiB
C++
Executable file
/* ========================================
|
|
* Aura - Aura.h
|
|
* Copyright (c) 2016 airwindows, Airwindows uses the MIT license
|
|
* ======================================== */
|
|
|
|
#ifndef __Aura_H
|
|
#include "Aura.h"
|
|
#endif
|
|
|
|
void Aura::processReplacing(float **inputs, float **outputs, VstInt32 sampleFrames)
|
|
{
|
|
float* in1 = inputs[0];
|
|
float* in2 = inputs[1];
|
|
float* out1 = outputs[0];
|
|
float* out2 = outputs[1];
|
|
|
|
|
|
double correctionL;
|
|
double correctionR;
|
|
double accumulatorSampleL;
|
|
double accumulatorSampleR;
|
|
double velocityL;
|
|
double velocityR;
|
|
double trim = A;
|
|
double wet = B;
|
|
//removed extra dry variable
|
|
double overallscale = trim * 10.0;
|
|
double gain = overallscale + (pow(wet,3) * 0.187859642462067);
|
|
trim *= (1.0 - (pow(wet,3) * 0.187859642462067));
|
|
double inputSampleL;
|
|
double inputSampleR;
|
|
double drySampleL;
|
|
double drySampleR;
|
|
|
|
if (gain < 1.0) gain = 1.0;
|
|
if (gain > 1.0) {f[0] = 1.0; gain -= 1.0;} else {f[0] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[1] = 1.0; gain -= 1.0;} else {f[1] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[2] = 1.0; gain -= 1.0;} else {f[2] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[3] = 1.0; gain -= 1.0;} else {f[3] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[4] = 1.0; gain -= 1.0;} else {f[4] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[5] = 1.0; gain -= 1.0;} else {f[5] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[6] = 1.0; gain -= 1.0;} else {f[6] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[7] = 1.0; gain -= 1.0;} else {f[7] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[8] = 1.0; gain -= 1.0;} else {f[8] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[9] = 1.0; gain -= 1.0;} else {f[9] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[10] = 1.0; gain -= 1.0;} else {f[10] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[11] = 1.0; gain -= 1.0;} else {f[11] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[12] = 1.0; gain -= 1.0;} else {f[12] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[13] = 1.0; gain -= 1.0;} else {f[13] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[14] = 1.0; gain -= 1.0;} else {f[14] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[15] = 1.0; gain -= 1.0;} else {f[15] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[16] = 1.0; gain -= 1.0;} else {f[16] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[17] = 1.0; gain -= 1.0;} else {f[17] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[18] = 1.0; gain -= 1.0;} else {f[18] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[19] = 1.0; gain -= 1.0;} else {f[19] = gain; gain = 0.0;}
|
|
|
|
//there, now we have a neat little moving average with remainders
|
|
|
|
if (overallscale < 1.0) overallscale = 1.0;
|
|
f[0] /= overallscale;
|
|
f[1] /= overallscale;
|
|
f[2] /= overallscale;
|
|
f[3] /= overallscale;
|
|
f[4] /= overallscale;
|
|
f[5] /= overallscale;
|
|
f[6] /= overallscale;
|
|
f[7] /= overallscale;
|
|
f[8] /= overallscale;
|
|
f[9] /= overallscale;
|
|
f[10] /= overallscale;
|
|
f[11] /= overallscale;
|
|
f[12] /= overallscale;
|
|
f[13] /= overallscale;
|
|
f[14] /= overallscale;
|
|
f[15] /= overallscale;
|
|
f[16] /= overallscale;
|
|
f[17] /= overallscale;
|
|
f[18] /= overallscale;
|
|
f[19] /= overallscale;
|
|
//and now it's neatly scaled, too
|
|
|
|
while (--sampleFrames >= 0)
|
|
{
|
|
inputSampleL = *in1;
|
|
inputSampleR = *in2;
|
|
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
|
|
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
|
|
drySampleL = inputSampleL;
|
|
drySampleR = inputSampleR;
|
|
|
|
velocityL = lastSampleL - inputSampleL;
|
|
correctionL = previousVelocityL - velocityL;
|
|
|
|
bL[19] = bL[18]; bL[18] = bL[17]; bL[17] = bL[16]; bL[16] = bL[15];
|
|
bL[15] = bL[14]; bL[14] = bL[13]; bL[13] = bL[12]; bL[12] = bL[11];
|
|
bL[11] = bL[10]; bL[10] = bL[9];
|
|
bL[9] = bL[8]; bL[8] = bL[7]; bL[7] = bL[6]; bL[6] = bL[5];
|
|
bL[5] = bL[4]; bL[4] = bL[3]; bL[3] = bL[2]; bL[2] = bL[1];
|
|
bL[1] = bL[0]; bL[0] = accumulatorSampleL = correctionL;
|
|
|
|
//we are accumulating rates of change of the rate of change
|
|
|
|
accumulatorSampleL *= f[0];
|
|
accumulatorSampleL += (bL[1] * f[1]);
|
|
accumulatorSampleL += (bL[2] * f[2]);
|
|
accumulatorSampleL += (bL[3] * f[3]);
|
|
accumulatorSampleL += (bL[4] * f[4]);
|
|
accumulatorSampleL += (bL[5] * f[5]);
|
|
accumulatorSampleL += (bL[6] * f[6]);
|
|
accumulatorSampleL += (bL[7] * f[7]);
|
|
accumulatorSampleL += (bL[8] * f[8]);
|
|
accumulatorSampleL += (bL[9] * f[9]);
|
|
accumulatorSampleL += (bL[10] * f[10]);
|
|
accumulatorSampleL += (bL[11] * f[11]);
|
|
accumulatorSampleL += (bL[12] * f[12]);
|
|
accumulatorSampleL += (bL[13] * f[13]);
|
|
accumulatorSampleL += (bL[14] * f[14]);
|
|
accumulatorSampleL += (bL[15] * f[15]);
|
|
accumulatorSampleL += (bL[16] * f[16]);
|
|
accumulatorSampleL += (bL[17] * f[17]);
|
|
accumulatorSampleL += (bL[18] * f[18]);
|
|
accumulatorSampleL += (bL[19] * f[19]);
|
|
|
|
velocityL = previousVelocityL + accumulatorSampleL;
|
|
inputSampleL = lastSampleL + velocityL;
|
|
lastSampleL = inputSampleL;
|
|
previousVelocityL = -velocityL * pow(trim,2);
|
|
//left channel done
|
|
|
|
velocityR = lastSampleR - inputSampleR;
|
|
correctionR = previousVelocityR - velocityR;
|
|
|
|
bR[19] = bR[18]; bR[18] = bR[17]; bR[17] = bR[16]; bR[16] = bR[15];
|
|
bR[15] = bR[14]; bR[14] = bR[13]; bR[13] = bR[12]; bR[12] = bR[11];
|
|
bR[11] = bR[10]; bR[10] = bR[9];
|
|
bR[9] = bR[8]; bR[8] = bR[7]; bR[7] = bR[6]; bR[6] = bR[5];
|
|
bR[5] = bR[4]; bR[4] = bR[3]; bR[3] = bR[2]; bR[2] = bR[1];
|
|
bR[1] = bR[0]; bR[0] = accumulatorSampleR = correctionR;
|
|
|
|
//we are accumulating rates of change of the rate of change
|
|
|
|
accumulatorSampleR *= f[0];
|
|
accumulatorSampleR += (bR[1] * f[1]);
|
|
accumulatorSampleR += (bR[2] * f[2]);
|
|
accumulatorSampleR += (bR[3] * f[3]);
|
|
accumulatorSampleR += (bR[4] * f[4]);
|
|
accumulatorSampleR += (bR[5] * f[5]);
|
|
accumulatorSampleR += (bR[6] * f[6]);
|
|
accumulatorSampleR += (bR[7] * f[7]);
|
|
accumulatorSampleR += (bR[8] * f[8]);
|
|
accumulatorSampleR += (bR[9] * f[9]);
|
|
accumulatorSampleR += (bR[10] * f[10]);
|
|
accumulatorSampleR += (bR[11] * f[11]);
|
|
accumulatorSampleR += (bR[12] * f[12]);
|
|
accumulatorSampleR += (bR[13] * f[13]);
|
|
accumulatorSampleR += (bR[14] * f[14]);
|
|
accumulatorSampleR += (bR[15] * f[15]);
|
|
accumulatorSampleR += (bR[16] * f[16]);
|
|
accumulatorSampleR += (bR[17] * f[17]);
|
|
accumulatorSampleR += (bR[18] * f[18]);
|
|
accumulatorSampleR += (bR[19] * f[19]);
|
|
//we are doing our repetitive calculations on a separate value
|
|
|
|
velocityR = previousVelocityR + accumulatorSampleR;
|
|
inputSampleR = lastSampleR + velocityR;
|
|
lastSampleR = inputSampleR;
|
|
previousVelocityR = -velocityR * pow(trim,2);
|
|
//right channel done
|
|
|
|
if (wet !=1.0) {
|
|
inputSampleL = (inputSampleL * wet) + (drySampleL * (1.0-wet));
|
|
inputSampleR = (inputSampleR * wet) + (drySampleR * (1.0-wet));
|
|
}
|
|
|
|
//begin 32 bit stereo floating point dither
|
|
int expon; frexpf((float)inputSampleL, &expon);
|
|
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
|
|
inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
|
|
frexpf((float)inputSampleR, &expon);
|
|
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
|
|
inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
|
|
//end 32 bit stereo floating point dither
|
|
|
|
*out1 = inputSampleL;
|
|
*out2 = inputSampleR;
|
|
|
|
*in1++;
|
|
*in2++;
|
|
*out1++;
|
|
*out2++;
|
|
}
|
|
}
|
|
|
|
void Aura::processDoubleReplacing(double **inputs, double **outputs, VstInt32 sampleFrames)
|
|
{
|
|
double* in1 = inputs[0];
|
|
double* in2 = inputs[1];
|
|
double* out1 = outputs[0];
|
|
double* out2 = outputs[1];
|
|
|
|
|
|
double correctionL;
|
|
double correctionR;
|
|
double accumulatorSampleL;
|
|
double accumulatorSampleR;
|
|
double velocityL;
|
|
double velocityR;
|
|
double trim = A;
|
|
double wet = B;
|
|
//removed extra dry variable
|
|
double overallscale = trim * 10.0;
|
|
double gain = overallscale + (pow(wet,3) * 0.187859642462067);
|
|
trim *= (1.0 - (pow(wet,3) * 0.187859642462067));
|
|
double inputSampleL;
|
|
double inputSampleR;
|
|
double drySampleL;
|
|
double drySampleR;
|
|
|
|
if (gain < 1.0) gain = 1.0;
|
|
if (gain > 1.0) {f[0] = 1.0; gain -= 1.0;} else {f[0] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[1] = 1.0; gain -= 1.0;} else {f[1] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[2] = 1.0; gain -= 1.0;} else {f[2] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[3] = 1.0; gain -= 1.0;} else {f[3] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[4] = 1.0; gain -= 1.0;} else {f[4] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[5] = 1.0; gain -= 1.0;} else {f[5] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[6] = 1.0; gain -= 1.0;} else {f[6] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[7] = 1.0; gain -= 1.0;} else {f[7] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[8] = 1.0; gain -= 1.0;} else {f[8] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[9] = 1.0; gain -= 1.0;} else {f[9] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[10] = 1.0; gain -= 1.0;} else {f[10] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[11] = 1.0; gain -= 1.0;} else {f[11] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[12] = 1.0; gain -= 1.0;} else {f[12] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[13] = 1.0; gain -= 1.0;} else {f[13] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[14] = 1.0; gain -= 1.0;} else {f[14] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[15] = 1.0; gain -= 1.0;} else {f[15] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[16] = 1.0; gain -= 1.0;} else {f[16] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[17] = 1.0; gain -= 1.0;} else {f[17] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[18] = 1.0; gain -= 1.0;} else {f[18] = gain; gain = 0.0;}
|
|
if (gain > 1.0) {f[19] = 1.0; gain -= 1.0;} else {f[19] = gain; gain = 0.0;}
|
|
|
|
//there, now we have a neat little moving average with remainders
|
|
|
|
if (overallscale < 1.0) overallscale = 1.0;
|
|
f[0] /= overallscale;
|
|
f[1] /= overallscale;
|
|
f[2] /= overallscale;
|
|
f[3] /= overallscale;
|
|
f[4] /= overallscale;
|
|
f[5] /= overallscale;
|
|
f[6] /= overallscale;
|
|
f[7] /= overallscale;
|
|
f[8] /= overallscale;
|
|
f[9] /= overallscale;
|
|
f[10] /= overallscale;
|
|
f[11] /= overallscale;
|
|
f[12] /= overallscale;
|
|
f[13] /= overallscale;
|
|
f[14] /= overallscale;
|
|
f[15] /= overallscale;
|
|
f[16] /= overallscale;
|
|
f[17] /= overallscale;
|
|
f[18] /= overallscale;
|
|
f[19] /= overallscale;
|
|
//and now it's neatly scaled, too
|
|
|
|
while (--sampleFrames >= 0)
|
|
{
|
|
inputSampleL = *in1;
|
|
inputSampleR = *in2;
|
|
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
|
|
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
|
|
drySampleL = inputSampleL;
|
|
drySampleR = inputSampleR;
|
|
|
|
velocityL = lastSampleL - inputSampleL;
|
|
correctionL = previousVelocityL - velocityL;
|
|
|
|
bL[19] = bL[18]; bL[18] = bL[17]; bL[17] = bL[16]; bL[16] = bL[15];
|
|
bL[15] = bL[14]; bL[14] = bL[13]; bL[13] = bL[12]; bL[12] = bL[11];
|
|
bL[11] = bL[10]; bL[10] = bL[9];
|
|
bL[9] = bL[8]; bL[8] = bL[7]; bL[7] = bL[6]; bL[6] = bL[5];
|
|
bL[5] = bL[4]; bL[4] = bL[3]; bL[3] = bL[2]; bL[2] = bL[1];
|
|
bL[1] = bL[0]; bL[0] = accumulatorSampleL = correctionL;
|
|
|
|
//we are accumulating rates of change of the rate of change
|
|
|
|
accumulatorSampleL *= f[0];
|
|
accumulatorSampleL += (bL[1] * f[1]);
|
|
accumulatorSampleL += (bL[2] * f[2]);
|
|
accumulatorSampleL += (bL[3] * f[3]);
|
|
accumulatorSampleL += (bL[4] * f[4]);
|
|
accumulatorSampleL += (bL[5] * f[5]);
|
|
accumulatorSampleL += (bL[6] * f[6]);
|
|
accumulatorSampleL += (bL[7] * f[7]);
|
|
accumulatorSampleL += (bL[8] * f[8]);
|
|
accumulatorSampleL += (bL[9] * f[9]);
|
|
accumulatorSampleL += (bL[10] * f[10]);
|
|
accumulatorSampleL += (bL[11] * f[11]);
|
|
accumulatorSampleL += (bL[12] * f[12]);
|
|
accumulatorSampleL += (bL[13] * f[13]);
|
|
accumulatorSampleL += (bL[14] * f[14]);
|
|
accumulatorSampleL += (bL[15] * f[15]);
|
|
accumulatorSampleL += (bL[16] * f[16]);
|
|
accumulatorSampleL += (bL[17] * f[17]);
|
|
accumulatorSampleL += (bL[18] * f[18]);
|
|
accumulatorSampleL += (bL[19] * f[19]);
|
|
|
|
velocityL = previousVelocityL + accumulatorSampleL;
|
|
inputSampleL = lastSampleL + velocityL;
|
|
lastSampleL = inputSampleL;
|
|
previousVelocityL = -velocityL * pow(trim,2);
|
|
//left channel done
|
|
|
|
velocityR = lastSampleR - inputSampleR;
|
|
correctionR = previousVelocityR - velocityR;
|
|
|
|
bR[19] = bR[18]; bR[18] = bR[17]; bR[17] = bR[16]; bR[16] = bR[15];
|
|
bR[15] = bR[14]; bR[14] = bR[13]; bR[13] = bR[12]; bR[12] = bR[11];
|
|
bR[11] = bR[10]; bR[10] = bR[9];
|
|
bR[9] = bR[8]; bR[8] = bR[7]; bR[7] = bR[6]; bR[6] = bR[5];
|
|
bR[5] = bR[4]; bR[4] = bR[3]; bR[3] = bR[2]; bR[2] = bR[1];
|
|
bR[1] = bR[0]; bR[0] = accumulatorSampleR = correctionR;
|
|
|
|
//we are accumulating rates of change of the rate of change
|
|
|
|
accumulatorSampleR *= f[0];
|
|
accumulatorSampleR += (bR[1] * f[1]);
|
|
accumulatorSampleR += (bR[2] * f[2]);
|
|
accumulatorSampleR += (bR[3] * f[3]);
|
|
accumulatorSampleR += (bR[4] * f[4]);
|
|
accumulatorSampleR += (bR[5] * f[5]);
|
|
accumulatorSampleR += (bR[6] * f[6]);
|
|
accumulatorSampleR += (bR[7] * f[7]);
|
|
accumulatorSampleR += (bR[8] * f[8]);
|
|
accumulatorSampleR += (bR[9] * f[9]);
|
|
accumulatorSampleR += (bR[10] * f[10]);
|
|
accumulatorSampleR += (bR[11] * f[11]);
|
|
accumulatorSampleR += (bR[12] * f[12]);
|
|
accumulatorSampleR += (bR[13] * f[13]);
|
|
accumulatorSampleR += (bR[14] * f[14]);
|
|
accumulatorSampleR += (bR[15] * f[15]);
|
|
accumulatorSampleR += (bR[16] * f[16]);
|
|
accumulatorSampleR += (bR[17] * f[17]);
|
|
accumulatorSampleR += (bR[18] * f[18]);
|
|
accumulatorSampleR += (bR[19] * f[19]);
|
|
//we are doing our repetitive calculations on a separate value
|
|
|
|
velocityR = previousVelocityR + accumulatorSampleR;
|
|
inputSampleR = lastSampleR + velocityR;
|
|
lastSampleR = inputSampleR;
|
|
previousVelocityR = -velocityR * pow(trim,2);
|
|
//right channel done
|
|
|
|
if (wet !=1.0) {
|
|
inputSampleL = (inputSampleL * wet) + (drySampleL * (1.0-wet));
|
|
inputSampleR = (inputSampleR * wet) + (drySampleR * (1.0-wet));
|
|
}
|
|
|
|
//begin 64 bit stereo floating point dither
|
|
//int expon; frexp((double)inputSampleL, &expon);
|
|
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
|
|
//inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
|
|
//frexp((double)inputSampleR, &expon);
|
|
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
|
|
//inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
|
|
//end 64 bit stereo floating point dither
|
|
|
|
*out1 = inputSampleL;
|
|
*out2 = inputSampleR;
|
|
|
|
*in1++;
|
|
*in2++;
|
|
*out1++;
|
|
*out2++;
|
|
}
|
|
} |