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authormick grierson <mickgrierson@gmail.com>2015-07-27 01:07:41 +0100
committermick grierson <mickgrierson@gmail.com>2015-07-27 01:07:41 +0100
commit1100fc8c462d9a17731340596e7d9c07adb3fe54 (patch)
tree91ed36c7a767f2819289409899ef305b358cf0f4 /main.cpp
parent68ee8eba9c3834604d220f4bf56e7e9d506a77a7 (diff)
More major repair work. New OS X 10.10 SDK example project. New project structure. New Tutorials / Examples.
Diffstat (limited to 'main.cpp')
-rwxr-xr-xmain.cpp115
1 files changed, 98 insertions, 17 deletions
diff --git a/main.cpp b/main.cpp
index 119fddf..07795df 100755
--- a/main.cpp
+++ b/main.cpp
@@ -1,32 +1,113 @@
#include "maximilian.h"
+#include "libs/maxim.h"
+
+//This shows how to use maximilian to build a polyphonic synth.
+
+//These are the synthesiser bits
+maxiOsc VCO1[6],VCO2[6],LFO1[6],LFO2[6];
+maxiFilter VCF[6];
+maxiEnv ADSR[6];
+
+//This is a bunch of control signals so that we can hear something
+
+maxiOsc timer;//this is the metronome
+int currentCount,lastCount,voice=0;//these values are used to check if we have a new beat this sample
+
+//and these are some variables we can use to pass stuff around
+
+double VCO1out[6],VCO2out[6],LFO1out[6],LFO2out[6],VCFout[6],ADSRout[6],mix,pitch[6];
+
+maxiFFTOctaveAnalyzer octo;
+int nAverages;
+float *ifftOutput;
+int ifftSize;
+
+maxiIFFT ifft;
+maxiFFT mfft;
+int fftSize;
+int bins, dataSize;
-maxiSample beats; //We give our sample a name. It's called beats this time. We could have loads of them, but they have to have different names.
-maxiDyn compressor; //this is a compressor
-double out;
void setup() {//some inits
- beats.load("/Users/michaelgrierson/Documents/workspace/Maximilian/ofxMaxim/examples/OSX/ofMaximExample007OSX_Granular/bin/data/beat2.wav");//load in your samples. Provide the full path to a wav file.
- printf("Summary:\n%s", beats.getSummary());//get info on samples if you like.
+ fftSize = 1024;
+ mfft.setup(fftSize, 1024, 256);
+ ifft.setup(fftSize, 1024, 256);
- compressor.setAttack(300);
- compressor.setRelease(300);
- compressor.setThreshold(0.25);
- compressor.setRatio(5);
+
+ nAverages = 12;
+ octo.setup(44100, fftSize/2, nAverages);
- //you can set these any time you like.
+ for (int i=0;i<6;i++) {
+ ADSR[i].setAttack(0);
+ ADSR[i].setDecay(200);
+ ADSR[i].setSustain(0.2);
+ ADSR[i].setRelease(2000);
+
+ }
}
-void play(double *output) {//this is where the magic happens. Very slow magic.
+void play(double *output) {
+
+ mix=0;//we're adding up the samples each update and it makes sense to clear them each time first.
+
+ //so this first bit is just a basic metronome so we can hear what we're doing.
+
+ currentCount=(int)timer.phasor(8);//this sets up a metronome that ticks 8 times a second
+ if (lastCount!=currentCount) {//if we have a new timer int this sample, play the sound
+
+ if (voice==6) {
+ voice=0;
+ }
+
+ ADSR[voice].trigger=1;//trigger the envelope from the start
+ pitch[voice]=voice+1;
+ voice++;
+
+ lastCount=0;
+ cout << mfft.spectralFlatness() << ", " << mfft.spectralCentroid() << endl;
+
+ for (int i=0; i<octo.nAverages; i++) {
+ cout << octo.averages[i] << " ,";
+ } cout << endl;
+
+ }
- //here, we're just compressing the file in real-time
- //arguments are input,ratio,threshold,attack,release
- out=compressor.compress(beats.play());
+ //and this is where we build the synth
- output[0]=out;
- output[1]=out;
+ for (int i=0; i<6; i++) {
+
+
+ ADSRout[i]=ADSR[i].adsr(1.,ADSR[i].trigger);//our ADSR env is passed a constant signal of 1 to generate the transient.
+
+ LFO1out[i]=LFO1[i].sinebuf(0.2);//this lfo is a sinewave at 0.2 hz
+
+ VCO1out[i]=VCO1[i].pulse(55*pitch[i],0.6);//here's VCO1. it's a pulse wave at 55 hz, with a pulse width of 0.6
+ VCO2out[i]=VCO2[i].pulse((110*pitch[i])+LFO1out[i],0.2);//here's VCO2. it's a pulse wave at 110hz with LFO modulation on the frequency, and width of 0.2
+
+
+ VCFout[i]=VCF[i].lores((VCO1out[i]+VCO2out[i])*0.5, 250+((pitch[i]+LFO1out[i])*1000), 10);//now we stick the VCO's into the VCF, using the ADSR as the filter cutoff
+
+ mix+=VCFout[i]*ADSRout[i]/6;//finally we add the ADSR as an amplitude modulator
+
+
+ }
+
+ output[0]=mix*0.5;//left channel
+ output[1]=mix*0.5;//right channel
+
+ if (mfft.process(mix)) {
+ //do some manipulation
+ mfft.magsToDB();
+ octo.calculate(mfft.magnitudesDB);
+ }
+ //inverse fft
+
+ // This just sends note-off messages.
+ for (int i=0; i<6; i++) {
+ ADSR[i].trigger=0;
+ }
}
-