mirror of https://github.com/python/cpython
gh-120080: Accept ``None`` as a valid argument for direct call of the ``int.__round__`` (#120088)
Co-authored-by: Nikita Sobolev <mail@sobolevn.me>
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@ -949,6 +949,12 @@ class RoundTestCase(unittest.TestCase):
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self.assertEqual(x, 2)
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self.assertIsInstance(x, int)
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def test_round_with_none_arg_direct_call(self):
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for val in [(1.0).__round__(None),
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round(1.0),
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round(1.0, None)]:
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self.assertEqual(val, 1)
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self.assertIs(type(val), int)
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# Beginning with Python 2.6 float has cross platform compatible
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# ways to create and represent inf and nan
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@ -5412,7 +5412,6 @@ class TestSignatureDefinitions(unittest.TestCase):
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'bytearray': {'count', 'endswith', 'find', 'hex', 'index', 'rfind', 'rindex', 'startswith'},
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'bytes': {'count', 'endswith', 'find', 'hex', 'index', 'rfind', 'rindex', 'startswith'},
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'dict': {'pop'},
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'int': {'__round__'},
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'memoryview': {'cast', 'hex'},
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'str': {'count', 'endswith', 'find', 'index', 'maketrans', 'rfind', 'rindex', 'startswith'},
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}
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@ -517,6 +517,12 @@ class IntTestCases(unittest.TestCase):
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self.assertEqual(int('1_2_3_4_5_6_7_8_9', 16), 0x123456789)
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self.assertEqual(int('1_2_3_4_5_6_7', 32), 1144132807)
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def test_round_with_none_arg_direct_call(self):
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for val in [(1).__round__(None),
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round(1),
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round(1, None)]:
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self.assertEqual(val, 1)
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self.assertIs(type(val), int)
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class IntStrDigitLimitsTests(unittest.TestCase):
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@ -0,0 +1,2 @@
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Direct call to the :meth:`!int.__round__` now accepts ``None``
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as a valid argument.
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@ -116,7 +116,7 @@ exit:
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}
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PyDoc_STRVAR(int___round____doc__,
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"__round__($self, ndigits=<unrepresentable>, /)\n"
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"__round__($self, ndigits=None, /)\n"
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"--\n"
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"\n"
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"Rounding an Integral returns itself.\n"
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@ -133,7 +133,7 @@ static PyObject *
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int___round__(PyObject *self, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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PyObject *o_ndigits = NULL;
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PyObject *o_ndigits = Py_None;
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if (!_PyArg_CheckPositional("__round__", nargs, 0, 1)) {
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goto exit;
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@ -476,4 +476,4 @@ int_is_integer(PyObject *self, PyObject *Py_UNUSED(ignored))
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{
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return int_is_integer_impl(self);
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}
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/*[clinic end generated code: output=2ba2d8dcda9b99da input=a9049054013a1b77]*/
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/*[clinic end generated code: output=a53f5ba9a6c16737 input=a9049054013a1b77]*/
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@ -6045,7 +6045,7 @@ _PyLong_DivmodNear(PyObject *a, PyObject *b)
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/*[clinic input]
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int.__round__
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ndigits as o_ndigits: object = NULL
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ndigits as o_ndigits: object = None
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/
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Rounding an Integral returns itself.
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@ -6055,7 +6055,7 @@ Rounding with an ndigits argument also returns an integer.
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static PyObject *
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int___round___impl(PyObject *self, PyObject *o_ndigits)
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/*[clinic end generated code: output=954fda6b18875998 input=1614cf23ec9e18c3]*/
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/*[clinic end generated code: output=954fda6b18875998 input=30c2aec788263144]*/
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{
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PyObject *temp, *result, *ndigits;
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@ -6073,7 +6073,7 @@ int___round___impl(PyObject *self, PyObject *o_ndigits)
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*
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* m - divmod_near(m, 10**n)[1].
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*/
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if (o_ndigits == NULL)
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if (o_ndigits == Py_None)
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return long_long(self);
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ndigits = _PyNumber_Index(o_ndigits);
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