diff options
Diffstat (limited to 'maximilian_examples/16.Replicant.cpp')
| -rw-r--r-- | maximilian_examples/16.Replicant.cpp | 70 |
1 files changed, 35 insertions, 35 deletions
diff --git a/maximilian_examples/16.Replicant.cpp b/maximilian_examples/16.Replicant.cpp index ae166bd..7684902 100644 --- a/maximilian_examples/16.Replicant.cpp +++ b/maximilian_examples/16.Replicant.cpp @@ -1,6 +1,6 @@ #include "maximilian.h" -//Bizarelly, this sounds a little bit like Kraftwerk's 'Metropolis', although it isn't. Funny that. +//Bizarelly, this sounds a little bit like Kraftwerk's 'Metropolis', although it isn't. Funny that. maxiOsc sound,bass,timer,mod,lead,lead2,leadmod;//here are the synth bits maxiEnv envelope, leadenvelope;//some envelopes @@ -21,41 +21,41 @@ int leadLinePitch[15]={69,67,65,64,67,66,64,62,65,64,62,57,55,60,57}; void setup() {//some inits - + } void play(double *output) {//this is where the magic happens. Very slow magic. - - currentCount=(int)timer.phasor(9);//this sets up a metronome that ticks every so often - - if (lastCount!=currentCount) {//if we have a new timer int this sample, play the sound - trigger=1;//play the arpeggiator line - trigger2=leadLineTrigger[playHead%256];//play the lead line - if (trigger2==1) {//if we are going to play a note - leadPitch=mtof.mtof(leadLinePitch[newnote]);//get the next pitch val - newnote++;//and iterate - if (newnote>14) { - newnote=0;//make sure we don't go over the edge of the array - } - } - currentPitch=mtof.mtof(pitch[(playHead%4)]+chord[currentChord%8]);//write the frequency val into currentPitch - playHead++;//iterate the playhead - if (playHead%32==0) {//wrap every 4 bars - currentChord++;//change the chord - } - //cout << "tick\n";//the clock ticks - lastCount=0;//set lastCount to 0 - } - - bassout=filter2.lores(envelope.adsr(bass.saw(currentPitch*0.5)+sound.pulse(currentPitch*0.5,mod.phasor(1)),1,0.9995, 0.25, 0.9995, 1, trigger),9250,2);//new, simple ADSR. - leadout=filter.lores(leadenvelope.ar(lead2.saw(leadPitch*4)+lead.pulse(leadPitch+(leadmod.sinebuf(1.9)*1.5), 0.6), 0.00005, 0.999975, 50000, trigger2),5900,10);//leadline - - delayout=(leadout+(delay.dl(leadout, 14000, 0.8)*0.5))/2;//add some delay - - if(trigger!=0)trigger=0;//set the trigger to off if you want it to trigger immediately next time. - - - output[0]=(bassout+delayout)/2;//sum output - output[1]=(bassout+delayout)/2; - + + currentCount=(int)timer.phasor(9);//this sets up a metronome that ticks every so often + + if (lastCount!=currentCount) {//if we have a new timer int this sample, play the sound + trigger=1;//play the arpeggiator line + trigger2=leadLineTrigger[playHead%256];//play the lead line + if (trigger2==1) {//if we are going to play a note + leadPitch=mtof.mtof(leadLinePitch[newnote]);//get the next pitch val + newnote++;//and iterate + if (newnote>14) { + newnote=0;//make sure we don't go over the edge of the array + } + } + currentPitch=mtof.mtof(pitch[(playHead%4)]+chord[currentChord%8]);//write the frequency val into currentPitch + playHead++;//iterate the playhead + if (playHead%32==0) {//wrap every 4 bars + currentChord++;//change the chord + } + //cout << "tick\n";//the clock ticks + lastCount=0;//set lastCount to 0 + } + + bassout=filter2.lores(envelope.adsr(bass.saw(currentPitch*0.5)+sound.pulse(currentPitch*0.5,mod.phasor(1)),1,0.9995, 0.25, 0.9995, 1, trigger),9250,2);//new, simple ADSR. + leadout=filter.lores(leadenvelope.ar(lead2.saw(leadPitch*4)+lead.pulse(leadPitch+(leadmod.sinebuf(1.9)*1.5), 0.6), 0.00005, 0.999975, 50000, trigger2),5900,10);//leadline + + delayout=(leadout+(delay.dl(leadout, 14000, 0.8)*0.5))/2;//add some delay + + if(trigger!=0)trigger=0;//set the trigger to off if you want it to trigger immediately next time. + + + output[0]=(bassout)/2;//sum output + output[1]=(bassout)/2; + }
\ No newline at end of file |
