10 #ifndef EIGEN_UMFPACKSUPPORT_H
11 #define EIGEN_UMFPACKSUPPORT_H
21 { umfpack_di_defaults(control); }
24 { umfpack_zi_defaults(control); }
27 { umfpack_di_report_info(control,
info);}
30 { umfpack_zi_report_info(control,
info);}
33 { umfpack_di_report_status(control, status);}
36 { umfpack_zi_report_status(control, status);}
39 { umfpack_di_report_control(control);}
42 { umfpack_zi_report_control(control);}
45 { umfpack_di_free_numeric(Numeric); *Numeric = 0; }
48 { umfpack_zi_free_numeric(Numeric); *Numeric = 0; }
51 { umfpack_di_free_symbolic(Symbolic); *Symbolic = 0; }
54 { umfpack_zi_free_symbolic(Symbolic); *Symbolic = 0; }
57 const int Ap[],
const int Ai[],
const double Ax[],
void **Symbolic,
58 const double Control [UMFPACK_CONTROL],
double Info [UMFPACK_INFO])
60 return umfpack_di_symbolic(n_row,n_col,Ap,Ai,Ax,Symbolic,Control,Info);
64 const int Ap[],
const int Ai[],
const std::complex<double> Ax[],
void **Symbolic,
65 const double Control [UMFPACK_CONTROL],
double Info [UMFPACK_INFO])
67 return umfpack_zi_symbolic(n_row,n_col,Ap,Ai,&
numext::real_ref(Ax[0]),0,Symbolic,Control,Info);
71 void *Symbolic,
void **Numeric,
72 const double Control[UMFPACK_CONTROL],
double Info [UMFPACK_INFO])
74 return umfpack_di_numeric(Ap,Ai,Ax,Symbolic,Numeric,Control,Info);
77 inline int umfpack_numeric(
const int Ap[],
const int Ai[],
const std::complex<double> Ax[],
78 void *Symbolic,
void **Numeric,
79 const double Control[UMFPACK_CONTROL],
double Info [UMFPACK_INFO])
81 return umfpack_zi_numeric(Ap,Ai,&
numext::real_ref(Ax[0]),0,Symbolic,Numeric,Control,Info);
84 inline int umfpack_solve(
int sys,
const int Ap[],
const int Ai[],
const double Ax[],
85 double X[],
const double B[],
void *Numeric,
86 const double Control[UMFPACK_CONTROL],
double Info[UMFPACK_INFO])
88 return umfpack_di_solve(sys,Ap,Ai,Ax,
X,
B,Numeric,Control,Info);
91 inline int umfpack_solve(
int sys,
const int Ap[],
const int Ai[],
const std::complex<double> Ax[],
92 std::complex<double>
X[],
const std::complex<double>
B[],
void *Numeric,
93 const double Control[UMFPACK_CONTROL],
double Info[UMFPACK_INFO])
95 return umfpack_zi_solve(sys,Ap,Ai,&
numext::real_ref(Ax[0]),0,&
numext::real_ref(
X[0]),0,&
numext::real_ref(
B[0]),0,Numeric,Control,Info);
98 inline int umfpack_get_lunz(
int *lnz,
int *unz,
int *n_row,
int *n_col,
int *nz_udiag,
void *Numeric,
double)
100 return umfpack_di_get_lunz(lnz,unz,n_row,n_col,nz_udiag,Numeric);
103 inline int umfpack_get_lunz(
int *lnz,
int *unz,
int *n_row,
int *n_col,
int *nz_udiag,
void *Numeric, std::complex<double>)
105 return umfpack_zi_get_lunz(lnz,unz,n_row,n_col,nz_udiag,Numeric);
109 int P[],
int Q[],
double Dx[],
int *do_recip,
double Rs[],
void *Numeric)
111 return umfpack_di_get_numeric(Lp,Lj,Lx,Up,Ui,Ux,P,Q,Dx,do_recip,Rs,Numeric);
114 inline int umfpack_get_numeric(
int Lp[],
int Lj[], std::complex<double> Lx[],
int Up[],
int Ui[], std::complex<double> Ux[],
115 int P[],
int Q[], std::complex<double> Dx[],
int *do_recip,
double Rs[],
void *Numeric)
120 return umfpack_zi_get_numeric(Lp,Lj,Lx?&lx0_real:0,0,Up,Ui,Ux?&ux0_real:0,0,P,Q,
121 Dx?&dx0_real:0,0,do_recip,Rs,Numeric);
126 return umfpack_di_get_determinant(Mx,Ex,NumericHandle,User_Info);
129 inline int umfpack_get_determinant(std::complex<double> *Mx,
double *Ex,
void *NumericHandle,
double User_Info [UMFPACK_INFO])
132 return umfpack_zi_get_determinant(&mx_real,0,Ex,NumericHandle,User_Info);
151 template<
typename _MatrixType>
185 template<
typename InputMatrixType>
241 template<
typename InputMatrixType>
257 template<
typename InputMatrixType>
307 template<
typename InputMatrixType>
348 template<
typename BDerived,
typename XDerived>
371 internal::convert_index<int>(
mp_matrix.cols()),
393 template<
typename MatrixDerived>
435 template<
typename MatrixType>
438 if (m_extractedDataAreDirty)
441 int lnz, unz, rows, cols, nz_udiag;
445 m_l.resize(rows,(
std::min)(rows,cols));
446 m_l.resizeNonZeros(lnz);
448 m_u.resize((
std::min)(rows,cols),cols);
449 m_u.resizeNonZeros(unz);
456 m_u.outerIndexPtr(), m_u.innerIndexPtr(), m_u.valuePtr(),
457 m_p.data(), m_q.data(), 0, 0, 0, m_numeric);
459 m_extractedDataAreDirty =
false;
463 template<
typename MatrixType>
471 template<
typename MatrixType>
472 template<
typename BDerived,
typename XDerived>
477 eigen_assert((XDerived::Flags&
RowMajorBit)==0 &&
"UmfPackLU backend does not support non col-major result yet");
478 eigen_assert(
b.derived().data() !=
x.derived().data() &&
" Umfpack does not support inplace solve");
483 if(
x.innerStride()!=1)
486 x_ptr = x_tmp.
data();
488 for (
int j=0; j<rhsCols; ++j)
490 if(
x.innerStride()==1)
491 x_ptr = &
x.col(j).coeffRef(0);
493 mp_matrix.outerIndexPtr(), mp_matrix.innerIndexPtr(), mp_matrix.valuePtr(),
494 x_ptr, &
b.const_cast_derived().col(j).coeffRef(0), m_numeric, m_control.data(), m_umfpackInfo.data());
495 if(
x.innerStride()!=1)
506 #endif // EIGEN_UMFPACKSUPPORT_H