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gh-114071: [Enum] update docs and code for tuples/subclasses (GH-114871)
Update documentation with `__new__` and `__init__` entries. Support use of `auto()` in tuple subclasses on member assignment lines. Previously, auto() was only supported on the member definition line either solo or as part of a tuple: RED = auto() BLUE = auto(), 'azul' However, since Python itself supports using tuple subclasses where tuples are expected, e.g.: from collections import namedtuple T = namedtuple('T', 'first second third') def test(one, two, three): print(one, two, three) test(*T(4, 5, 6)) # 4 5 6 it made sense to also support tuple subclasses in enum definitions.
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4 changed files with 69 additions and 5 deletions
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@ -337,6 +337,17 @@ Data Types
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>>> PowersOfThree.SECOND.value
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9
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.. method:: Enum.__init__(self, \*args, \**kwds)
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By default, does nothing. If multiple values are given in the member
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assignment, those values become separate arguments to ``__init__``; e.g.
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>>> from enum import Enum
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>>> class Weekday(Enum):
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... MONDAY = 1, 'Mon'
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``Weekday.__init__()`` would be called as ``Weekday.__init__(self, 1, 'Mon')``
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.. method:: Enum.__init_subclass__(cls, \**kwds)
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A *classmethod* that is used to further configure subsequent subclasses.
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@ -364,6 +375,18 @@ Data Types
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>>> Build('deBUG')
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<Build.DEBUG: 'debug'>
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.. method:: Enum.__new__(cls, \*args, \**kwds)
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By default, doesn't exist. If specified, either in the enum class
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definition or in a mixin class (such as ``int``), all values given
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in the member assignment will be passed; e.g.
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>>> from enum import Enum
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>>> class MyIntEnum(Enum):
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... SEVENTEEN = '1a', 16
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results in the call ``int('1a', 16)`` and a value of ``17`` for the member.
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.. method:: Enum.__repr__(self)
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Returns the string used for *repr()* calls. By default, returns the
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@ -477,9 +500,9 @@ Data Types
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.. class:: Flag
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*Flag* members support the bitwise operators ``&`` (*AND*), ``|`` (*OR*),
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``^`` (*XOR*), and ``~`` (*INVERT*); the results of those operators are members
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of the enumeration.
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``Flag`` is the same as :class:`Enum`, but its members support the bitwise
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operators ``&`` (*AND*), ``|`` (*OR*), ``^`` (*XOR*), and ``~`` (*INVERT*);
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the results of those operators are members of the enumeration.
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.. method:: __contains__(self, value)
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10
Lib/enum.py
10
Lib/enum.py
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@ -409,10 +409,11 @@ class EnumDict(dict):
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if isinstance(value, auto):
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single = True
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value = (value, )
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if type(value) is tuple and any(isinstance(v, auto) for v in value):
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if isinstance(value, tuple) and any(isinstance(v, auto) for v in value):
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# insist on an actual tuple, no subclasses, in keeping with only supporting
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# top-level auto() usage (not contained in any other data structure)
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auto_valued = []
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t = type(value)
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for v in value:
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if isinstance(v, auto):
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non_auto_store = False
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@ -427,7 +428,12 @@ class EnumDict(dict):
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if single:
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value = auto_valued[0]
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else:
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value = tuple(auto_valued)
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try:
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# accepts iterable as multiple arguments?
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value = t(auto_valued)
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except TypeError:
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# then pass them in singlely
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value = t(*auto_valued)
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self._member_names[key] = None
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if non_auto_store:
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self._last_values.append(value)
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@ -2344,6 +2344,40 @@ class TestSpecial(unittest.TestCase):
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globals()['SomeTuple'] = SomeTuple
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test_pickle_dump_load(self.assertIs, SomeTuple.first)
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def test_tuple_subclass_with_auto_1(self):
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from collections import namedtuple
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T = namedtuple('T', 'index desc')
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class SomeEnum(T, Enum):
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__qualname__ = 'SomeEnum' # needed for pickle protocol 4
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first = auto(), 'for the money'
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second = auto(), 'for the show'
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third = auto(), 'for the music'
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self.assertIs(type(SomeEnum.first), SomeEnum)
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self.assertEqual(SomeEnum.third.value, (3, 'for the music'))
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self.assertIsInstance(SomeEnum.third.value, T)
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self.assertEqual(SomeEnum.first.index, 1)
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self.assertEqual(SomeEnum.second.desc, 'for the show')
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globals()['SomeEnum'] = SomeEnum
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globals()['T'] = T
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test_pickle_dump_load(self.assertIs, SomeEnum.first)
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def test_tuple_subclass_with_auto_2(self):
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from collections import namedtuple
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T = namedtuple('T', 'index desc')
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class SomeEnum(Enum):
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__qualname__ = 'SomeEnum' # needed for pickle protocol 4
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first = T(auto(), 'for the money')
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second = T(auto(), 'for the show')
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third = T(auto(), 'for the music')
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self.assertIs(type(SomeEnum.first), SomeEnum)
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self.assertEqual(SomeEnum.third.value, (3, 'for the music'))
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self.assertIsInstance(SomeEnum.third.value, T)
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self.assertEqual(SomeEnum.first.value.index, 1)
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self.assertEqual(SomeEnum.second.value.desc, 'for the show')
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globals()['SomeEnum'] = SomeEnum
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globals()['T'] = T
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test_pickle_dump_load(self.assertIs, SomeEnum.first)
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def test_duplicate_values_give_unique_enum_items(self):
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class AutoNumber(Enum):
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first = ()
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@ -0,0 +1 @@
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Support tuple subclasses using auto() for enum member value.
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