we do not need/use the 'void *p' parameter

This commit is contained in:
Thomas Capricelli
2009-08-23 01:59:20 +02:00
parent a3e8a14e3a
commit 1225704753
9 changed files with 56 additions and 59 deletions

View File

@@ -1,6 +1,6 @@
template <typename Scalar>
int ei_fdjac1(minpack_func_nn fcn, void *p, int n, Scalar *x, const Scalar *
int ei_fdjac1(minpack_func_nn fcn, int n, Scalar *x, const Scalar *
fvec, Scalar *fjac, int ldfjac, int ml,
int mu, Scalar epsfcn, Scalar *wa1, Scalar *wa2)
{
@@ -41,7 +41,7 @@ int ei_fdjac1(minpack_func_nn fcn, void *p, int n, Scalar *x, const Scalar *
h__ = eps;
}
x[j] = temp + h__;
iflag = (*fcn)(p, n, &x[1], &wa1[1], 1);
iflag = (*fcn)(n, &x[1], &wa1[1], 1);
if (iflag < 0) {
goto L30;
}
@@ -69,7 +69,7 @@ L40:
x[j] = wa2[j] + h__;
/* L60: */
}
iflag = (*fcn)(p, n, &x[1], &wa1[1], 1);
iflag = (*fcn)(n, &x[1], &wa1[1], 1);
if (iflag < 0) {
/* goto L100; */
return iflag;

View File

@@ -1,6 +1,6 @@
template <typename Scalar>
int ei_fdjac2(minpack_func_mn fcn, void *p, int m, int n, Scalar *x,
int ei_fdjac2(minpack_func_mn fcn, int m, int n, Scalar *x,
const Scalar *fvec, Scalar *fjac, int ldfjac,
Scalar epsfcn, Scalar *wa)
{
@@ -32,7 +32,7 @@ int ei_fdjac2(minpack_func_mn fcn, void *p, int m, int n, Scalar *x,
h__ = eps;
}
x[j] = temp + h__;
iflag = (*fcn)(p, m, n, &x[1], &wa[1], 1);
iflag = (*fcn)(m, n, &x[1], &wa[1], 1);
if (iflag < 0) {
/* goto L30; */
return iflag;

View File

@@ -75,7 +75,7 @@ L20:
/* evaluate the function at the starting point */
/* and calculate its norm. */
iflag = Functor::f(0, n, x.data(), fvec.data(), 1);
iflag = Functor::f(n, x.data(), fvec.data(), 1);
nfev = 1;
if (iflag < 0) {
goto L300;
@@ -103,7 +103,7 @@ L30:
/* calculate the jacobian matrix. */
iflag = ei_fdjac1<Scalar>(Functor::f, 0, n, x.data(), fvec.data(), fjac.data(), ldfjac,
iflag = ei_fdjac1<Scalar>(Functor::f, n, x.data(), fvec.data(), fjac.data(), ldfjac,
nb_of_subdiagonals, nb_of_superdiagonals, epsfcn, wa1.data(), wa2.data());
nfev += msum;
if (iflag < 0) {
@@ -215,7 +215,7 @@ L180:
}
iflag = 0;
if ((iter - 1) % nprint == 0) {
iflag = Functor::f(0, n, x.data(), fvec.data(), 0);
iflag = Functor::f(n, x.data(), fvec.data(), 0);
}
if (iflag < 0) {
goto L300;
@@ -244,7 +244,7 @@ L190:
/* evaluate the function at x + p and calculate its norm. */
iflag = Functor::f(0, n, wa2.data(), wa4.data(), 1);
iflag = Functor::f(n, wa2.data(), wa4.data(), 1);
++nfev;
if (iflag < 0) {
goto L300;
@@ -404,7 +404,7 @@ L300:
info = iflag;
}
if (nprint > 0) {
Functor::f(0, n, x.data(), fvec.data(), 0);
Functor::f(n, x.data(), fvec.data(), 0);
}
return info;

View File

@@ -70,7 +70,7 @@ L20:
/* evaluate the function at the starting point */
/* and calculate its norm. */
iflag = Functor::f(0, n, x.data(), fvec.data(), fjac.data(), ldfjac, 1);
iflag = Functor::f(n, x.data(), fvec.data(), fjac.data(), ldfjac, 1);
nfev = 1;
if (iflag < 0) {
goto L300;
@@ -92,7 +92,7 @@ L30:
/* calculate the jacobian matrix. */
iflag = Functor::f(0, n, x.data(), fvec.data(), fjac.data(), ldfjac, 2);
iflag = Functor::f(n, x.data(), fvec.data(), fjac.data(), ldfjac, 2);
++njev;
if (iflag < 0) {
goto L300;
@@ -203,7 +203,7 @@ L180:
}
iflag = 0;
if ((iter - 1) % nprint == 0) {
iflag = Functor::f(0, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
iflag = Functor::f(n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
}
if (iflag < 0) {
goto L300;
@@ -232,7 +232,7 @@ L190:
/* evaluate the function at x + p and calculate its norm. */
iflag = Functor::f(0, n, wa2.data(), wa4.data(), fjac.data(), ldfjac, 1);
iflag = Functor::f(n, wa2.data(), wa4.data(), fjac.data(), ldfjac, 1);
++nfev;
if (iflag < 0) {
goto L300;
@@ -396,7 +396,7 @@ L300:
info = iflag;
}
if (nprint > 0) {
iflag = Functor::f(0, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
iflag = Functor::f(n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
}
return info;

View File

@@ -64,7 +64,7 @@ L20:
/* evaluate the function at the starting point */
/* and calculate its norm. */
iflag = Functor::f(0, m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 1);
iflag = Functor::f(m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 1);
nfev = 1;
if (iflag < 0) {
goto L300;
@@ -82,7 +82,7 @@ L30:
/* calculate the jacobian matrix. */
iflag = Functor::f(0, m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 2);
iflag = Functor::f(m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 2);
++njev;
if (iflag < 0) {
goto L300;
@@ -95,7 +95,7 @@ L30:
}
iflag = 0;
if ((iter - 1) % nprint == 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
}
if (iflag < 0) {
goto L300;
@@ -237,7 +237,7 @@ L200:
/* evaluate the function at x + p and calculate its norm. */
iflag = Functor::f(0, m, n, wa2.data(), wa4.data(), fjac.data(), ldfjac, 1);
iflag = Functor::f(m, n, wa2.data(), wa4.data(), fjac.data(), ldfjac, 1);
++nfev;
if (iflag < 0) {
goto L300;
@@ -378,7 +378,7 @@ L300:
}
iflag = 0;
if (nprint > 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), fjac.data(), ldfjac, 0);
}
return info;

View File

@@ -66,7 +66,7 @@ L20:
/* evaluate the function at the starting point */
/* and calculate its norm. */
iflag = Functor::f(0, m, n, x.data(), fvec.data(), 1);
iflag = Functor::f(m, n, x.data(), fvec.data(), 1);
nfev = 1;
if (iflag < 0) {
goto L300;
@@ -84,7 +84,7 @@ L30:
/* calculate the jacobian matrix. */
iflag = ei_fdjac2<Scalar>(Functor::f, 0, m, n, x.data(), fvec.data(), fjac.data(), ldfjac,
iflag = ei_fdjac2<Scalar>(Functor::f, m, n, x.data(), fvec.data(), fjac.data(), ldfjac,
epsfcn, wa4.data());
nfev += n;
if (iflag < 0) {
@@ -98,7 +98,7 @@ L30:
}
iflag = 0;
if ((iter - 1) % nprint == 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), 0);
}
if (iflag < 0) {
goto L300;
@@ -240,7 +240,7 @@ L200:
/* evaluate the function at x + p and calculate its norm. */
iflag = Functor::f(0, m, n, wa2.data(), wa4.data(), 1);
iflag = Functor::f(m, n, wa2.data(), wa4.data(), 1);
++nfev;
if (iflag < 0) {
goto L300;
@@ -381,7 +381,7 @@ L300:
}
iflag = 0;
if (nprint > 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), 0);
}
return info;

View File

@@ -66,7 +66,7 @@ L20:
/* evaluate the function at the starting point */
/* and calculate its norm. */
iflag = Functor::f(0, m, n, x.data(), fvec.data(), wa3.data(), 1);
iflag = Functor::f(m, n, x.data(), fvec.data(), wa3.data(), 1);
nfev = 1;
if (iflag < 0) {
goto L340;
@@ -89,7 +89,7 @@ L30:
}
iflag = 0;
if ((iter - 1) % nprint == 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), wa3.data(), 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), wa3.data(), 0);
}
if (iflag < 0) {
goto L340;
@@ -111,7 +111,7 @@ L40:
}
iflag = 2;
for (i = 0; i < m; ++i) {
if (Functor::f(0, m, n, x.data(), fvec.data(), wa3.data(), iflag) < 0) {
if (Functor::f(m, n, x.data(), fvec.data(), wa3.data(), iflag) < 0) {
goto L340;
}
temp = fvec[i];
@@ -264,7 +264,7 @@ L240:
/* evaluate the function at x + p and calculate its norm. */
iflag = Functor::f(0, m, n, wa2.data(), wa4.data(), wa3.data(), 1);
iflag = Functor::f(m, n, wa2.data(), wa4.data(), wa3.data(), 1);
++nfev;
if (iflag < 0) {
goto L340;
@@ -406,7 +406,7 @@ L340:
}
iflag = 0;
if (nprint > 0) {
iflag = Functor::f(0, m, n, x.data(), fvec.data(), wa3.data(), 0);
iflag = Functor::f(m, n, x.data(), fvec.data(), wa3.data(), 0);
}
return info;