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GsfMatrixTools.h
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1 #ifndef GsfMatrixTools_h_
2 #define GsfMatrixTools_h_
3 
4 #define SMATRIX_USE_CONSTEXPR
5 
6 #include "Math/SVector.h"
7 #include "Math/SMatrix.h"
8 
9 namespace GsfMatrixTools {
10 
11 // template <unsigned int N>
12 // double similarity (ROOT::Math::SMatrix<double, N, N, ROOT::Math::MatRepSym<double, N> >,
13 // ROOT::Math::SVector<double, N> vector) {
14 // return vector*matrix*vector;
15 // }
16 
17  template <typename T, unsigned int N>
18  T trace (ROOT::Math::SMatrix<T, N, N> const & matrix) {
19  T result = 0;
20  for ( unsigned int i=0; i<N; ++i ) result += matrix(i,i);
21  return result;
22  }
23 
24 
25  /* compute the trace of a product of two sym matrices
26  * a(i,j)*b(j,i) = a(i,j)*b(i,j) sum over i and j
27  */
28  template<typename T, unsigned int N>
29  T trace(ROOT::Math::SMatrix<T,N,N,ROOT::Math::MatRepSym<T,N> > const & a,
30  ROOT::Math::SMatrix<T,N,N,ROOT::Math::MatRepSym<T,N> > const & b) {
31  auto i1 = a.begin();
32  auto e1 = a.end();
33  auto i2 = b.begin();
34 
35  T res =0;
36  // sum of the lower triangle;
37  for (;i1!=e1; i1++, i2++)
38  res += (*i1)*(*i2);
39  res *= T(2.);
40  // remove the duplicated diagonal...
41  for (unsigned int i=0;i<N;++i)
42  res -= a(i,i)*b(i,i);
43  return res;
44  }
45 
46 }
47 #endif
48 
int i
Definition: DBlmapReader.cc:9
T trace(ROOT::Math::SMatrix< T, N, N > const &matrix)
Definition: Electron.h:4
Float e1
Definition: deltaR.h:20
#define N
Definition: blowfish.cc:9
double b
Definition: hdecay.h:120
double a
Definition: hdecay.h:121
long double T