/* Reduce to case where z.real >= 0., using atanh(z) = -atanh(-z). */
if (z.real < 0.) {
- return c_neg(c_atanh(c_neg(z)));
+ return _Py_c_neg(c_atanh(_Py_c_neg(z)));
}
ay = fabs(z.imag);
x = c_log(x);
if (PyTuple_GET_SIZE(args) == 2) {
y = c_log(y);
- x = c_quot(x, y);
+ x = _Py_c_quot(x, y);
}
PyFPE_END_PROTECT(x)
if (errno != 0)
return NULL;
PyFPE_START_PROTECT("polar function", return 0)
phi = c_atan2(z); /* should not cause any exception */
- r = c_abs(z); /* sets errno to ERANGE on overflow; otherwise 0 */
+ r = _Py_c_abs(z); /* sets errno to ERANGE on overflow; otherwise 0 */
PyFPE_END_PROTECT(r)
if (errno != 0)
return math_error();