return _PyUnicodeWriter_Finish(&writer);
}
-#if 0
-static PyObject *
-complex_is_finite(PyObject *self)
-{
- Py_complex c;
- c = ((PyComplexObject *)self)->cval;
- return PyBool_FromLong((long)(Py_IS_FINITE(c.real) &&
- Py_IS_FINITE(c.imag)));
-}
-
-PyDoc_STRVAR(complex_is_finite_doc,
-"complex.is_finite() -> bool\n"
-"\n"
-"Returns True if the real and the imaginary part is finite.");
-#endif
-
static PyMethodDef complex_methods[] = {
{"conjugate", (PyCFunction)complex_conjugate, METH_NOARGS,
complex_conjugate_doc},
-#if 0
- {"is_finite", (PyCFunction)complex_is_finite, METH_NOARGS,
- complex_is_finite_doc},
-#endif
{"__getnewargs__", (PyCFunction)complex_getnewargs, METH_NOARGS},
{"__format__", (PyCFunction)complex__format__,
METH_VARARGS, complex__format__doc},
return o;
}
-#if 0
-static PyObject *
-float_is_inf(PyObject *v)
-{
- double x = PyFloat_AsDouble(v);
- if (x == -1.0 && PyErr_Occurred())
- return NULL;
- return PyBool_FromLong((long)Py_IS_INFINITY(x));
-}
-
-static PyObject *
-float_is_nan(PyObject *v)
-{
- double x = PyFloat_AsDouble(v);
- if (x == -1.0 && PyErr_Occurred())
- return NULL;
- return PyBool_FromLong((long)Py_IS_NAN(x));
-}
-
-static PyObject *
-float_is_finite(PyObject *v)
-{
- double x = PyFloat_AsDouble(v);
- if (x == -1.0 && PyErr_Occurred())
- return NULL;
- return PyBool_FromLong((long)Py_IS_FINITE(x));
-}
-#endif
-
/*[clinic input]
float.__trunc__
FLOAT_FROMHEX_METHODDEF
FLOAT_HEX_METHODDEF
FLOAT_IS_INTEGER_METHODDEF
-#if 0
- {"is_inf", (PyCFunction)float_is_inf, METH_NOARGS,
- "Return True if the float is positive or negative infinite."},
- {"is_finite", (PyCFunction)float_is_finite, METH_NOARGS,
- "Return True if the float is finite, neither infinite nor NaN."},
- {"is_nan", (PyCFunction)float_is_nan, METH_NOARGS,
- "Return True if the float is not a number (NaN)."},
-#endif
FLOAT___GETNEWARGS___METHODDEF
FLOAT___GETFORMAT___METHODDEF
FLOAT___SET_FORMAT___METHODDEF
return NULL;
}
-#if 0
-static PyObject *
-long_is_finite(PyObject *v)
-{
- Py_RETURN_TRUE;
-}
-#endif
/*[clinic input]
int.as_integer_ratio
{"conjugate", long_long_meth, METH_NOARGS,
"Returns self, the complex conjugate of any int."},
INT_BIT_LENGTH_METHODDEF
-#if 0
- {"is_finite", (PyCFunction)long_is_finite, METH_NOARGS,
- "Returns always True."},
-#endif
INT_TO_BYTES_METHODDEF
INT_FROM_BYTES_METHODDEF
INT_AS_INTEGER_RATIO_METHODDEF