5#ifndef EIGEN_NONLINEAROPTIMIZATION_FDJAC1_H
6#define EIGEN_NONLINEAROPTIMIZATION_FDJAC1_H
8#include "./InternalHeaderCheck.h"
14template <
typename FunctorType,
typename Scalar>
15DenseIndex fdjac1(
const FunctorType &Functor, Matrix<Scalar, Dynamic, 1> &x, Matrix<Scalar, Dynamic, 1> &fvec,
16 Matrix<Scalar, Dynamic, Dynamic> &fjac, DenseIndex ml, DenseIndex mu, Scalar epsfcn) {
20 typedef DenseIndex Index;
31 const Scalar epsmch = NumTraits<Scalar>::epsilon();
32 const Index n = x.size();
33 eigen_assert(fvec.size() == n);
34 Matrix<Scalar, Dynamic, 1> wa1(n);
35 Matrix<Scalar, Dynamic, 1> wa2(n);
37 eps = sqrt((std::max)(epsfcn, epsmch));
41 for (j = 0; j < n; ++j) {
46 iflag = Functor(x, wa1);
47 if (iflag < 0)
return iflag;
49 fjac.col(j) = (wa1 - fvec) / h;
54 for (k = 0; k < msum; ++k) {
55 for (j = k; (msum < 0) ? (j > n) : (j < n); j += msum) {
57 h = eps * abs(wa2[j]);
61 iflag = Functor(x, wa1);
62 if (iflag < 0)
return iflag;
63 for (j = k; (msum < 0) ? (j > n) : (j < n); j += msum) {
65 h = eps * abs(wa2[j]);
67 fjac.col(j).setZero();
68 start = std::max<Index>(0, j - mu);
69 length = (std::min)(n - 1, j + ml) - start + 1;
70 fjac.col(j).segment(start, length) = (wa1.segment(start, length) - fvec.segment(start, length)) / h;
Namespace containing all symbols from the Eigen library.