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			337 lines
		
	
	
	
		
			14 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			337 lines
		
	
	
	
		
			14 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
import unittest, doctest
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from test import test_support
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from collections import namedtuple
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import pickle, cPickle, copy
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from collections import Hashable, Iterable, Iterator
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from collections import Sized, Container, Callable
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from collections import Set, MutableSet
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from collections import Mapping, MutableMapping
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from collections import Sequence, MutableSequence
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TestNT = namedtuple('TestNT', 'x y z')    # type used for pickle tests
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class TestNamedTuple(unittest.TestCase):
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    def test_factory(self):
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        Point = namedtuple('Point', 'x y')
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        self.assertEqual(Point.__name__, 'Point')
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        self.assertEqual(Point.__doc__, 'Point(x, y)')
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        self.assertEqual(Point.__slots__, ())
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        self.assertEqual(Point.__module__, __name__)
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        self.assertEqual(Point.__getitem__, tuple.__getitem__)
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        self.assertEqual(Point._fields, ('x', 'y'))
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        self.assertRaises(ValueError, namedtuple, 'abc%', 'efg ghi')       # type has non-alpha char
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        self.assertRaises(ValueError, namedtuple, 'class', 'efg ghi')      # type has keyword
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        self.assertRaises(ValueError, namedtuple, '9abc', 'efg ghi')       # type starts with digit
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        self.assertRaises(ValueError, namedtuple, 'abc', 'efg g%hi')       # field with non-alpha char
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        self.assertRaises(ValueError, namedtuple, 'abc', 'abc class')      # field has keyword
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        self.assertRaises(ValueError, namedtuple, 'abc', '8efg 9ghi')      # field starts with digit
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        self.assertRaises(ValueError, namedtuple, 'abc', '_efg ghi')       # field with leading underscore
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        self.assertRaises(ValueError, namedtuple, 'abc', 'efg efg ghi')    # duplicate field
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        namedtuple('Point0', 'x1 y2')   # Verify that numbers are allowed in names
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        namedtuple('_', 'a b c')        # Test leading underscores in a typename
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        self.assertRaises(TypeError, Point._make, [11])                     # catch too few args
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        self.assertRaises(TypeError, Point._make, [11, 22, 33])             # catch too many args
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    def test_instance(self):
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        Point = namedtuple('Point', 'x y')
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        p = Point(11, 22)
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        self.assertEqual(p, Point(x=11, y=22))
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        self.assertEqual(p, Point(11, y=22))
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        self.assertEqual(p, Point(y=22, x=11))
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        self.assertEqual(p, Point(*(11, 22)))
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        self.assertEqual(p, Point(**dict(x=11, y=22)))
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        self.assertRaises(TypeError, Point, 1)                              # too few args
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        self.assertRaises(TypeError, Point, 1, 2, 3)                        # too many args
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        self.assertRaises(TypeError, eval, 'Point(XXX=1, y=2)', locals())   # wrong keyword argument
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        self.assertRaises(TypeError, eval, 'Point(x=1)', locals())          # missing keyword argument
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        self.assertEqual(repr(p), 'Point(x=11, y=22)')
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        self.assert_('__dict__' not in dir(p))                              # verify instance has no dict
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        self.assert_('__weakref__' not in dir(p))
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        self.assertEqual(p, Point._make([11, 22]))                          # test _make classmethod
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        self.assertEqual(p._fields, ('x', 'y'))                             # test _fields attribute
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        self.assertEqual(p._replace(x=1), (1, 22))                          # test _replace method
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        self.assertEqual(p._asdict(), dict(x=11, y=22))                     # test _asdict method
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        try:
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            p._replace(x=1, error=2)
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        except ValueError:
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            pass
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        else:
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            self._fail('Did not detect an incorrect fieldname')
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        # verify that field string can have commas
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        Point = namedtuple('Point', 'x, y')
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        p = Point(x=11, y=22)
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        self.assertEqual(repr(p), 'Point(x=11, y=22)')
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        # verify that fieldspec can be a non-string sequence
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        Point = namedtuple('Point', ('x', 'y'))
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        p = Point(x=11, y=22)
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        self.assertEqual(repr(p), 'Point(x=11, y=22)')
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    def test_tupleness(self):
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        Point = namedtuple('Point', 'x y')
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        p = Point(11, 22)
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        self.assert_(isinstance(p, tuple))
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        self.assertEqual(p, (11, 22))                                       # matches a real tuple
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        self.assertEqual(tuple(p), (11, 22))                                # coercable to a real tuple
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        self.assertEqual(list(p), [11, 22])                                 # coercable to a list
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        self.assertEqual(max(p), 22)                                        # iterable
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        self.assertEqual(max(*p), 22)                                       # star-able
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        x, y = p
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        self.assertEqual(p, (x, y))                                         # unpacks like a tuple
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        self.assertEqual((p[0], p[1]), (11, 22))                            # indexable like a tuple
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        self.assertRaises(IndexError, p.__getitem__, 3)
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        self.assertEqual(p.x, x)
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        self.assertEqual(p.y, y)
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        self.assertRaises(AttributeError, eval, 'p.z', locals())
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    def test_odd_sizes(self):
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        Zero = namedtuple('Zero', '')
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        self.assertEqual(Zero(), ())
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        self.assertEqual(Zero._make([]), ())
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        self.assertEqual(repr(Zero()), 'Zero()')
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        self.assertEqual(Zero()._asdict(), {})
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        self.assertEqual(Zero()._fields, ())
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        Dot = namedtuple('Dot', 'd')
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        self.assertEqual(Dot(1), (1,))
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        self.assertEqual(Dot._make([1]), (1,))
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        self.assertEqual(Dot(1).d, 1)
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        self.assertEqual(repr(Dot(1)), 'Dot(d=1)')
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        self.assertEqual(Dot(1)._asdict(), {'d':1})
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        self.assertEqual(Dot(1)._replace(d=999), (999,))
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        self.assertEqual(Dot(1)._fields, ('d',))
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        n = 5000
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        import string, random
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        names = list(set(''.join([random.choice(string.ascii_letters)
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                                  for j in range(10)]) for i in range(n)))
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        n = len(names)
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        Big = namedtuple('Big', names)
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        b = Big(*range(n))
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        self.assertEqual(b, tuple(range(n)))
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        self.assertEqual(Big._make(range(n)), tuple(range(n)))
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        for pos, name in enumerate(names):
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            self.assertEqual(getattr(b, name), pos)
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        repr(b)                                 # make sure repr() doesn't blow-up
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        d = b._asdict()
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        d_expected = dict(zip(names, range(n)))
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        self.assertEqual(d, d_expected)
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        b2 = b._replace(**dict([(names[1], 999),(names[-5], 42)]))
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        b2_expected = range(n)
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        b2_expected[1] = 999
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        b2_expected[-5] = 42
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        self.assertEqual(b2, tuple(b2_expected))
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        self.assertEqual(b._fields, tuple(names))
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    def test_pickle(self):
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        p = TestNT(x=10, y=20, z=30)
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        for module in pickle, cPickle:
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            loads = getattr(module, 'loads')
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            dumps = getattr(module, 'dumps')
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            for protocol in -1, 0, 1, 2:
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                q = loads(dumps(p, protocol))
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                self.assertEqual(p, q)
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                self.assertEqual(p._fields, q._fields)
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    def test_copy(self):
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        p = TestNT(x=10, y=20, z=30)
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        for copier in copy.copy, copy.deepcopy:
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            q = copier(p)
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            self.assertEqual(p, q)
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            self.assertEqual(p._fields, q._fields)
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class TestOneTrickPonyABCs(unittest.TestCase):
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    def test_Hashable(self):
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        # Check some non-hashables
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        non_samples = [list(), set(), dict()]
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        for x in non_samples:
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            self.failIf(isinstance(x, Hashable), repr(x))
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            self.failIf(issubclass(type(x), Hashable), repr(type(x)))
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        # Check some hashables
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        samples = [None,
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                   int(), float(), complex(),
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                   str(),
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                   tuple(), frozenset(),
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                   int, list, object, type,
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Hashable), repr(x))
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            self.failUnless(issubclass(type(x), Hashable), repr(type(x)))
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        self.assertRaises(TypeError, Hashable)
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        # Check direct subclassing
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        class H(Hashable):
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            def __hash__(self):
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                return super(H, self).__hash__()
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        self.assertEqual(hash(H()), 0)
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        self.failIf(issubclass(int, H))
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    def test_Iterable(self):
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        # Check some non-iterables
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        non_samples = [None, 42, 3.14, 1j]
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        for x in non_samples:
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            self.failIf(isinstance(x, Iterable), repr(x))
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            self.failIf(issubclass(type(x), Iterable), repr(type(x)))
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        # Check some iterables
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        samples = [str(),
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                   tuple(), list(), set(), frozenset(), dict(),
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                   dict().keys(), dict().items(), dict().values(),
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                   (lambda: (yield))(),
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                   (x for x in []),
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Iterable), repr(x))
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            self.failUnless(issubclass(type(x), Iterable), repr(type(x)))
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        # Check direct subclassing
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        class I(Iterable):
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            def __iter__(self):
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                return super(I, self).__iter__()
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        self.assertEqual(list(I()), [])
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        self.failIf(issubclass(str, I))
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    def test_Iterator(self):
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        non_samples = [None, 42, 3.14, 1j, "".encode('ascii'), "", (), [],
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            {}, set()]
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        for x in non_samples:
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            self.failIf(isinstance(x, Iterator), repr(x))
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            self.failIf(issubclass(type(x), Iterator), repr(type(x)))
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        samples = [iter(str()),
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                   iter(tuple()), iter(list()), iter(dict()),
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                   iter(set()), iter(frozenset()),
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                   iter(dict().keys()), iter(dict().items()),
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                   iter(dict().values()),
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                   (lambda: (yield))(),
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                   (x for x in []),
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Iterator), repr(x))
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            self.failUnless(issubclass(type(x), Iterator), repr(type(x)))
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    def test_Sized(self):
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        non_samples = [None, 42, 3.14, 1j,
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                       (lambda: (yield))(),
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                       (x for x in []),
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                       ]
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        for x in non_samples:
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            self.failIf(isinstance(x, Sized), repr(x))
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            self.failIf(issubclass(type(x), Sized), repr(type(x)))
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        samples = [str(),
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                   tuple(), list(), set(), frozenset(), dict(),
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                   dict().keys(), dict().items(), dict().values(),
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Sized), repr(x))
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            self.failUnless(issubclass(type(x), Sized), repr(type(x)))
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    def test_Container(self):
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        non_samples = [None, 42, 3.14, 1j,
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                       (lambda: (yield))(),
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                       (x for x in []),
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                       ]
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        for x in non_samples:
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            self.failIf(isinstance(x, Container), repr(x))
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            self.failIf(issubclass(type(x), Container), repr(type(x)))
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        samples = [str(),
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                   tuple(), list(), set(), frozenset(), dict(),
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                   dict().keys(), dict().items(),
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Container), repr(x))
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            self.failUnless(issubclass(type(x), Container), repr(type(x)))
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    def test_Callable(self):
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        non_samples = [None, 42, 3.14, 1j,
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                       "", "".encode('ascii'), (), [], {}, set(),
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                       (lambda: (yield))(),
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                       (x for x in []),
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                       ]
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        for x in non_samples:
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            self.failIf(isinstance(x, Callable), repr(x))
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            self.failIf(issubclass(type(x), Callable), repr(type(x)))
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        samples = [lambda: None,
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                   type, int, object,
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                   len,
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                   list.append, [].append,
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                   ]
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        for x in samples:
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            self.failUnless(isinstance(x, Callable), repr(x))
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            self.failUnless(issubclass(type(x), Callable), repr(type(x)))
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    def test_direct_subclassing(self):
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        for B in Hashable, Iterable, Iterator, Sized, Container, Callable:
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            class C(B):
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                pass
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            self.failUnless(issubclass(C, B))
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            self.failIf(issubclass(int, C))
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    def test_registration(self):
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        for B in Hashable, Iterable, Iterator, Sized, Container, Callable:
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            class C:
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                __metaclass__ = type
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                __hash__ = None  # Make sure it isn't hashable by default
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            self.failIf(issubclass(C, B), B.__name__)
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            B.register(C)
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            self.failUnless(issubclass(C, B))
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class TestCollectionABCs(unittest.TestCase):
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    # XXX For now, we only test some virtual inheritance properties.
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    # We should also test the proper behavior of the collection ABCs
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    # as real base classes or mix-in classes.
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    def test_Set(self):
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        for sample in [set, frozenset]:
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            self.failUnless(isinstance(sample(), Set))
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            self.failUnless(issubclass(sample, Set))
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    def test_MutableSet(self):
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        self.failUnless(isinstance(set(), MutableSet))
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        self.failUnless(issubclass(set, MutableSet))
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        self.failIf(isinstance(frozenset(), MutableSet))
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        self.failIf(issubclass(frozenset, MutableSet))
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    def test_Mapping(self):
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        for sample in [dict]:
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            self.failUnless(isinstance(sample(), Mapping))
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            self.failUnless(issubclass(sample, Mapping))
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    def test_MutableMapping(self):
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        for sample in [dict]:
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            self.failUnless(isinstance(sample(), MutableMapping))
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            self.failUnless(issubclass(sample, MutableMapping))
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    def test_Sequence(self):
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        for sample in [tuple, list, str]:
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            self.failUnless(isinstance(sample(), Sequence))
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            self.failUnless(issubclass(sample, Sequence))
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        self.failUnless(issubclass(basestring, Sequence))
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    def test_MutableSequence(self):
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        for sample in [tuple, str]:
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            self.failIf(isinstance(sample(), MutableSequence))
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            self.failIf(issubclass(sample, MutableSequence))
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        for sample in [list]:
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            self.failUnless(isinstance(sample(), MutableSequence))
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            self.failUnless(issubclass(sample, MutableSequence))
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        self.failIf(issubclass(basestring, MutableSequence))
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import doctest, collections
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def test_main(verbose=None):
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    NamedTupleDocs = doctest.DocTestSuite(module=collections)
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    test_classes = [TestNamedTuple, NamedTupleDocs, TestOneTrickPonyABCs, TestCollectionABCs]
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    test_support.run_unittest(*test_classes)
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    test_support.run_doctest(collections, verbose)
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if __name__ == "__main__":
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    test_main(verbose=True)
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