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https://github.com/airwindows/airwindows.git
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214 lines
No EOL
5.4 KiB
C++
Executable file
214 lines
No EOL
5.4 KiB
C++
Executable file
/* ========================================
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* Point - Point.h
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* Copyright (c) 2016 airwindows, Airwindows uses the MIT license
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* ======================================== */
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#ifndef __Point_H
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#include "Point.h"
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#endif
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void Point::processReplacing(float **inputs, float **outputs, VstInt32 sampleFrames)
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{
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float* in1 = inputs[0];
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float* in2 = inputs[1];
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float* out1 = outputs[0];
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float* out2 = outputs[1];
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double overallscale = 1.0;
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overallscale /= 44100.0;
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overallscale *= getSampleRate();
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double gaintrim = pow(10.0,((A*24.0)-12.0)/20);
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double nibDiv = 1 / pow(C+0.2,7);
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nibDiv /= overallscale;
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double nobDiv;
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if (((B*2.0)-1.0) > 0) nobDiv = nibDiv / (1.001-((B*2.0)-1.0));
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else nobDiv = nibDiv * (1.001-pow(((B*2.0)-1.0)*0.75,2));
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double nibnobFactor = 0.0; //start with the fallthrough value, why not
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double absolute;
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double inputSampleL;
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double inputSampleR;
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while (--sampleFrames >= 0)
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{
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inputSampleL = *in1;
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inputSampleR = *in2;
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if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
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if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
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inputSampleL *= gaintrim;
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absolute = fabs(inputSampleL);
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if (fpFlip)
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{
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nibAL = nibAL + (absolute / nibDiv);
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nibAL = nibAL / (1 + (1/nibDiv));
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nobAL = nobAL + (absolute / nobDiv);
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nobAL = nobAL / (1 + (1/nobDiv));
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if (nobAL > 0)
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{
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nibnobFactor = nibAL / nobAL;
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}
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}
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else
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{
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nibBL = nibBL + (absolute / nibDiv);
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nibBL = nibBL / (1 + (1/nibDiv));
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nobBL = nobBL + (absolute / nobDiv);
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nobBL = nobBL / (1 + (1/nobDiv));
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if (nobBL > 0)
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{
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nibnobFactor = nibBL / nobBL;
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}
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}
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inputSampleL *= nibnobFactor;
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inputSampleR *= gaintrim;
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absolute = fabs(inputSampleR);
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if (fpFlip)
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{
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nibAR = nibAR + (absolute / nibDiv);
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nibAR = nibAR / (1 + (1/nibDiv));
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nobAR = nobAR + (absolute / nobDiv);
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nobAR = nobAR / (1 + (1/nobDiv));
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if (nobAR > 0)
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{
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nibnobFactor = nibAR / nobAR;
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}
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}
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else
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{
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nibBR = nibBR + (absolute / nibDiv);
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nibBR = nibBR / (1 + (1/nibDiv));
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nobBR = nobBR + (absolute / nobDiv);
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nobBR = nobBR / (1 + (1/nobDiv));
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if (nobBR > 0)
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{
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nibnobFactor = nibBR / nobBR;
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}
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}
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inputSampleR *= nibnobFactor;
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fpFlip = !fpFlip;
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//begin 32 bit stereo floating point dither
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int expon; frexpf((float)inputSampleL, &expon);
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fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
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inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
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frexpf((float)inputSampleR, &expon);
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fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
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inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
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//end 32 bit stereo floating point dither
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*out1 = inputSampleL;
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*out2 = inputSampleR;
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*in1++;
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*in2++;
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*out1++;
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*out2++;
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}
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}
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void Point::processDoubleReplacing(double **inputs, double **outputs, VstInt32 sampleFrames)
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{
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double* in1 = inputs[0];
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double* in2 = inputs[1];
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double* out1 = outputs[0];
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double* out2 = outputs[1];
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double overallscale = 1.0;
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overallscale /= 44100.0;
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overallscale *= getSampleRate();
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double gaintrim = pow(10.0,((A*24.0)-12.0)/20);
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double nibDiv = 1 / pow(C+0.2,7);
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nibDiv /= overallscale;
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double nobDiv;
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if (((B*2.0)-1.0) > 0) nobDiv = nibDiv / (1.001-((B*2.0)-1.0));
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else nobDiv = nibDiv * (1.001-pow(((B*2.0)-1.0)*0.75,2));
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double nibnobFactor = 0.0; //start with the fallthrough value, why not
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double absolute;
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double inputSampleL;
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double inputSampleR;
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while (--sampleFrames >= 0)
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{
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inputSampleL = *in1;
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inputSampleR = *in2;
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if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
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if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
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inputSampleL *= gaintrim;
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absolute = fabs(inputSampleL);
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if (fpFlip)
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{
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nibAL = nibAL + (absolute / nibDiv);
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nibAL = nibAL / (1 + (1/nibDiv));
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nobAL = nobAL + (absolute / nobDiv);
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nobAL = nobAL / (1 + (1/nobDiv));
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if (nobAL > 0)
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{
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nibnobFactor = nibAL / nobAL;
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}
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}
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else
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{
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nibBL = nibBL + (absolute / nibDiv);
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nibBL = nibBL / (1 + (1/nibDiv));
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nobBL = nobBL + (absolute / nobDiv);
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nobBL = nobBL / (1 + (1/nobDiv));
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if (nobBL > 0)
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{
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nibnobFactor = nibBL / nobBL;
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}
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}
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inputSampleL *= nibnobFactor;
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inputSampleR *= gaintrim;
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absolute = fabs(inputSampleR);
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if (fpFlip)
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{
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nibAR = nibAR + (absolute / nibDiv);
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nibAR = nibAR / (1 + (1/nibDiv));
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nobAR = nobAR + (absolute / nobDiv);
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nobAR = nobAR / (1 + (1/nobDiv));
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if (nobAR > 0)
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{
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nibnobFactor = nibAR / nobAR;
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}
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}
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else
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{
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nibBR = nibBR + (absolute / nibDiv);
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nibBR = nibBR / (1 + (1/nibDiv));
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nobBR = nobBR + (absolute / nobDiv);
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nobBR = nobBR / (1 + (1/nobDiv));
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if (nobBR > 0)
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{
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nibnobFactor = nibBR / nobBR;
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}
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}
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inputSampleR *= nibnobFactor;
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fpFlip = !fpFlip;
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//begin 64 bit stereo floating point dither
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//int expon; frexp((double)inputSampleL, &expon);
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fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
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//inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
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//frexp((double)inputSampleR, &expon);
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fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
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//inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
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//end 64 bit stereo floating point dither
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*out1 = inputSampleL;
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*out2 = inputSampleR;
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*in1++;
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*in2++;
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*out1++;
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*out2++;
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}
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} |