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60 lines
1.7 KiB
Python

FluidKNNRegressor : FluidModelObject {
var <>numNeighbours, <>weight;
*new {|server, numNeighbours = 3, weight = 1|
^super.new(server,[numNeighbours,weight])
.numNeighbours_(numNeighbours)
.weight_(weight);
}
prGetParams{^[this.id,this.numNeighbours,this.weight,-1,-1];}
fitMsg{|sourceDataSet, targetDataSet|
^this.prMakeMsg(\fit,this.id,sourceDataSet.id,targetDataSet.id)
}
fit{|sourceDataSet, targetDataSet, action|
actions[\fit] = [nil,action];
this.prSendMsg(this.fitMsg(sourceDataSet, targetDataSet));
}
predictMsg{ |sourceDataSet, targetDataSet|
^this.prMakeMsg(\predict,this.id,sourceDataSet.id,targetDataSet.id)
}
predict{ |sourceDataSet, targetDataSet,action|
actions[\predict] = [nil, action];
this.prSendMsg(this.predictMsg(sourceDataSet, targetDataSet));
}
predictPointMsg { |buffer|
^this.prMakeMsg(\predictPoint,id, this.prEncodeBuffer(buffer));
}
predictPoint { |buffer, action|
actions[\predictPoint] = [number(FluidMessageResponse,_,_),action];
this.prSendMsg(this.predictPointMsg(buffer));
}
kr{|trig, inputBuffer,outputBuffer|
^FluidKNNRegressorQuery.kr(K2A.ar(trig),
this, this.numNeighbours, this.weight,
this.prEncodeBuffer(inputBuffer),
this.prEncodeBuffer(outputBuffer));
}
}
FluidKNNRegressorQuery : FluidRTMultiOutUGen {
*kr{ |trig, model,numNeighbours = 3, weight = 1,inputBuffer, outputBuffer |
^this.multiNew('control',trig, model.asUGenInput,
numNeighbours,weight,
inputBuffer.asUGenInput, outputBuffer.asUGenInput)
}
init { arg ... theInputs;
inputs = theInputs;
^this.initOutputs(1, rate);
}
}