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ROperator_EyeLike.hxx
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1#ifndef TMVA_SOFIE_ROPERATOR_EyeLike
2#define TMVA_SOFIE_ROPERATOR_EyeLike
3
5#include "TMVA/ROperator.hxx"
6#include "TMVA/RModel.hxx"
7
8#include <sstream>
9
10namespace TMVA{
11namespace Experimental{
12namespace SOFIE{
13
15{
16
17private:
18
19 int fdtype = static_cast<int>(ETensorType::FLOAT); //Default value
20 int fk = 0;
21 std::string fNX;
22 std::string fNY;
23 std::vector<size_t> fShape;
24
25public:
27 ROperator_EyeLike(int dtype, int k, std::string nameX, std::string nameY):
28 fdtype(dtype), fk(k), fNX(UTILITY::Clean_name(nameX)), fNY(UTILITY::Clean_name(nameY)){
31 }
32
33 void Initialize(RModel& model) override {
34 if (model.CheckIfTensorAlreadyExist(fNX) == false){ //input must be a graph input, or already initialized intermediate tensor
35 throw std::runtime_error("TMVA SOFIE EyeLike Op Input Tensor is not found in model");
36 }
37 fShape = model.GetTensorShape(fNX);
38 if (fShape.size() != 2)
39 throw std::runtime_error("TMVA SOFIE EyeLike Op Input Tensor is not of rank 2");
40
41 if(fdtype){
43 model.AddIntermediateTensor(fNY, extractedType, fShape);
44 }
45 else{
46 model.AddIntermediateTensor(fNY, model.GetTensorType(fNX), fShape);
47 }
48 }
49
50
51 std::string Generate(std::string OpName) override {
52 OpName = "op_" + OpName;
53 if (fShape.empty()){
54 throw std::runtime_error("TMVA SOFIE Operator EyeLike called to Generate without being initialized first");
55 }
58 std::stringstream out;
59 out << SP << "///--------EyeLike operator\n" << std::endl;
60 // add a dummy statement to avoid warning for unused input
61 out << SP << "(void) tensor_" << fNX << ";\n";
62
63 out << SP << "std::fill(tensor_" << fNY << ", tensor_" << fNY << " + " << length << ","
64 << 0 << ");\n";
65 out << SP << "for (int i = 0; i < " << fShape[0] << "; i++) {\n";
66 out << SP << SP << "int j = i +" << fk << ";\n";
67 out << SP << SP << "if (j >= 0 && j < " << fShape[1] << ")\n";
68 out << SP << SP << SP << "tensor_" << fNY << "[i * " << fShape[1] << "+ j] = 1;\n";
69 out << SP << "}\n";
70 return out.str();
71 }
72
73};
74
75}//SOFIE
76}//Experimental
77}//TMVA
78
79
80#endif //TMVA_SOFIE_ROPERATOR_EyeLike
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h length
std::string Generate(std::string OpName) override
ROperator_EyeLike(int dtype, int k, std::string nameX, std::string nameY)
std::vector< std::string_view > fInputTensorNames
Definition ROperator.hxx:44
const std::string SP
space used to correctly indent the generated C++ code
Definition ROperator.hxx:40
std::vector< std::string_view > fOutputTensorNames
Definition ROperator.hxx:45
std::vector< size_t > ComputeStrideFromShape(const std::vector< size_t > &shape)
compute stride of a tensor given its shape (assume layout is row-major)
std::size_t ConvertShapeToLength(const std::vector< size_t > &shape)
create variable transformations