//=============================================================================
/*! dssmatrix+_dsymatrix operator */
/*
inline _dgematrix operator+(const dssmatrix& matA, const _dsymatrix& matB)
{VERBOSE_REPORT;
#ifdef CPPL_DEBUG
if(matA.m!=matB.n || matA.n!=matB.n){
ERROR_REPORT;
std::cerr << "These two matrises can not make a summation." << std::endl
<< "Your input was (" << matA.m << "x" << matA.n << ") + (" << matB.n << "x" << matB.n << ")." << std::endl;
exit(1);
}
#endif//CPPL_DEBUG
dgematrix newmat(matB);
for(long c=0; c<matA.vol; c++){
newmat(matA.indx[c],matA.jndx[c]) += matA.array[c];
}
matB.destroy();
return _(newmat);
}
*/
//=============================================================================
/*! dssmatrix-_dsymatrix operator */
/*
inline _dgematrix operator-(const dssmatrix& matA, const _dsymatrix& matB)
{VERBOSE_REPORT;
#ifdef CPPL_DEBUG
if(matA.m!=matB.n || matA.n!=matB.n){
ERROR_REPORT;
std::cerr << "These two matrises can not make a subtraction." << std::endl
<< "Your input was (" << matA.m << "x" << matA.n << ") - (" << matB.n << "x" << matB.n << ")." << std::endl;
exit(1);
}
#endif//CPPL_DEBUG
dgematrix newmat(-matB);
for(long c=0; c<matA.vol; c++){
newmat(matA.indx[c],matA.jndx[c]) += matA.array[c];
}
matB.destroy();
return _(newmat);
}
*/
//=============================================================================
/*! dssmatrix*_dsymatrix operator */
/*
inline _dgematrix operator*(const dssmatrix& matA, const _dsymatrix& matB)
{VERBOSE_REPORT;
#ifdef CPPL_DEBUG
if(matA.n!=matB.n){
ERROR_REPORT;
std::cerr << "These two matrises can not make a product." << std::endl
<< "Your input was (" << matA.m << "x" << matA.n << ") * (" << matB.n << "x" << matB.n << ")." << std::endl;
exit(1);
}
#endif//CPPL_DEBUG
dgematrix newmat(matA.m, matB.n);
newmat.zero();
for(long c=0; c<matA.vol; c++){
for(long i=0; i<matB.n; i++){
newmat(matA.indx[c],i) += matA.array[c]*matB(matA.jndx[c],i);
}
}
matB.destroy();
return _(newmat);
}
*/