// Copyright (C) 1999 Jean-Marc Valin #include "BufferedNode.h" #include "Buffer.h" #include "Vector.h" #include "NNetSet.h" using namespace std; namespace FD { class NNetSetCalc; DECLARE_NODE(NNetSetCalc) /*Node * * @name NNetSetCalc * @category NNet * @description No description available * * @input_name INPUT * @input_description No description available * * @input_name ID * @input_description No description available * * @input_name NNET * @input_description No description available * * @output_name OUTPUT * @output_description No description available * * @parameter_name OUTPUTLENGTH * @parameter_description No description available * END*/ class NNetSetCalc : public BufferedNode { int inputID; int netInputID; int IDInputID; int outputID; int outputLength; public: NNetSetCalc(string nodeName, ParameterSet params) : BufferedNode(nodeName, params) { inputID = addInput("INPUT"); netInputID = addInput("NNET"); IDInputID = addInput("ID"); outputID = addOutput("OUTPUT"); outputLength = dereference_cast (parameters.get("OUTPUTLENGTH")); } void calculate(int output_id, int count, Buffer &out) { ObjectRef inputValue = getInput(inputID, count); const Vector &in = object_cast > (inputValue); int inputLength = in.size(); ObjectRef netValue = getInput(netInputID, count); NNetSet &net = object_cast (netValue); ObjectRef idValue = getInput(IDInputID, count); const Vector &id = object_cast > (idValue); Vector &output = *Vector::alloc(outputLength); out[count] = &output; float *netOut = net.calc(int(floor(id[0])), &in[0]); for (int i=0;i