template int ei_fdjac1(minpack_func_nn fcn, void *p, int n, Scalar *x, const Scalar * fvec, Scalar *fjac, int ldfjac, int ml, int mu, Scalar epsfcn, Scalar *wa1, Scalar *wa2) { /* System generated locals */ int fjac_dim1, fjac_offset; /* Local variables */ Scalar h__; int i, j, k; Scalar eps, temp; int msum; Scalar epsmch; int iflag = 0; /* Parameter adjustments */ --wa2; --wa1; --fvec; --x; fjac_dim1 = ldfjac; fjac_offset = 1 + fjac_dim1 * 1; fjac -= fjac_offset; /* Function Body */ /* epsmch is the machine precision. */ epsmch = epsilon(); eps = ei_sqrt((std::max(epsfcn,epsmch))); msum = ml + mu + 1; if (msum < n) { goto L40; } /* computation of dense approximate jacobian. */ for (j = 1; j <= n; ++j) { temp = x[j]; h__ = eps * ei_abs(temp); if (h__ == 0.) { h__ = eps; } x[j] = temp + h__; iflag = (*fcn)(p, n, &x[1], &wa1[1], 1); if (iflag < 0) { goto L30; } x[j] = temp; for (i = 1; i <= n; ++i) { fjac[i + j * fjac_dim1] = (wa1[i] - fvec[i]) / h__; /* L10: */ } /* L20: */ } L30: /* goto L110; */ return iflag; L40: /* computation of banded approximate jacobian. */ for (k = 1; k <= msum; ++k) { for (j = k; msum< 0 ? j >= n: j <= n; j += msum) { wa2[j] = x[j]; h__ = eps * ei_abs(wa2[j]); if (h__ == 0.) { h__ = eps; } x[j] = wa2[j] + h__; /* L60: */ } iflag = (*fcn)(p, n, &x[1], &wa1[1], 1); if (iflag < 0) { /* goto L100; */ return iflag; } for (j = k; msum< 0 ? j >= n: j <= n; j += msum) { x[j] = wa2[j]; h__ = eps * ei_abs(wa2[j]); if (h__ == 0.) { h__ = eps; } for (i = 1; i <= n; ++i) { fjac[i + j * fjac_dim1] = 0.; if (i >= j - mu && i <= j + ml) { fjac[i + j * fjac_dim1] = (wa1[i] - fvec[i]) / h__; } /* L70: */ } /* L80: */ } /* L90: */ } /* L100: */ /* L110: */ return iflag; /* last card of subroutine fdjac1. */ } /* fdjac1_ */