//=============================================================================
void dsygv_check_value()
{
cout << "############ check dsygv value ############" << endl;
srand(time(NULL));
int N(3);
//// make dsymatrix A ////
CPPL::dsymatrix A(N);
for(int i=0; i<A.n; i++){ for(int j=0; j<=i; j++){
A(i,j) =double( rand() /(RAND_MAX/10) );
}}
//// make definite dsymatrix B ////
CPPL::dsymatrix B(N);
CPPL::dgematrix pd, ut(N,N);
ut.zero();
for(int i=0; i<ut.n; i++){ for(int j=0; j<=i; j++){
ut(i,j) =double( rand() /(RAND_MAX/10) );
}}
pd=t(ut)*ut;
for(int i=0; i<B.n; i++){ for(int j=0; j<=i; j++){
B(i,j) =pd(i,j);
}}
//// make w ////
vector<double> w;
//// make A_original and B_original ////
CPPL::dsymatrix A_original(A), B_original(B);
//// dsygv ////
A.dsygv(B, w);
//// print ////
cout << "A_original=\n" << A_original << endl;
cout << "B_original=\n" << B_original << endl;
for(int i=0; i<A.n; i++){
cout << "#### " << i << "th eigen ####" << endl;
cout << "w=" << w[i] <<endl;
}
}
//=============================================================================
void dsygv_check_both()
{
cout << "############ check dsygv value ############" << endl;
srand(time(NULL));
int N(3);
//// make dsymatrix A ////
CPPL::dsymatrix A(N);
for(int i=0; i<A.n; i++){ for(int j=0; j<=i; j++){
A(i,j) =double( rand() /(RAND_MAX/10) );
}}
//// make definite dsymatrix B ////
CPPL::dsymatrix B(N);
CPPL::dgematrix pd, ut(N,N);
ut.zero();
for(int i=0; i<ut.n; i++){ for(int j=0; j<=i; j++){
ut(i,j) =double( rand() /(RAND_MAX/10) );
}}
pd=t(ut)*ut;
for(int i=0; i<B.n; i++){ for(int j=0; j<=i; j++){
B(i,j) =pd(i,j);
}}
//// make w ////
vector<double> w;
vector<CPPL::dcovector> v;
//// make A_original and B_original ////
CPPL::dsymatrix A_original(A), B_original(B);
//// dsygv ////
A.dsygv(B, w, v);
//// print ////
cout << "A_original=\n" << A_original << endl;
cout << "B_original=\n" << B_original << endl;
for(int i=0; i<A.n; i++){
cout << "#### " << i << "th eigen ####" << endl;
cout << "w=" << w[i] <<endl;
cout << "v=\n" << v[i] <<endl;
cout << "(A_original-w*B_original)*v=\n" << (A_original-w[i]*B_original)*v[i] << "<- Should be zeros" << endl;
}
}