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import sys |
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from typing import List, Tuple, Union, Optional, Iterable, Any |
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from unittest import TestCase |
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from typish import Literal, subclass_of, Unknown, NoneType |
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class A: pass |
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class B(A): pass |
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class C(B): pass |
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class D(C): pass |
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class E(D): pass |
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class F(E, str): pass |
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class TestSubclassOf(TestCase): |
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def test_subclass_of(self): |
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self.assertTrue(not subclass_of(int, str)) |
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self.assertTrue(subclass_of(E, A)) |
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self.assertTrue(subclass_of(str, object)) |
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self.assertTrue(subclass_of(list, List)) |
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self.assertTrue(subclass_of(List[int], List[int])) |
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self.assertTrue(not subclass_of(List[int], List[str])) |
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self.assertTrue(subclass_of(List[List[List[int]]], List[List[List[int]]])) |
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self.assertTrue(subclass_of(List[int], List[object])) |
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self.assertTrue(not subclass_of(List[object], List[int])) |
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self.assertTrue(subclass_of(List[Unknown], List[int])) |
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self.assertTrue(not subclass_of('test', str)) |
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def test_subclass_of_tuple(self): |
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self.assertTrue(subclass_of(Tuple[int, int], Tuple[int, ...])) |
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self.assertTrue(subclass_of(Tuple[int, ...], Tuple[int, ...])) |
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self.assertTrue(subclass_of(Tuple[int, int], Tuple[object, ...])) |
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self.assertTrue(subclass_of(Tuple[int, ...], Tuple[object, ...])) |
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self.assertTrue(subclass_of(Tuple[A, B], Tuple[A, ...])) |
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self.assertTrue(subclass_of(Tuple[int, int], Tuple[int, int])) |
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self.assertTrue(subclass_of(Tuple[int, int], Tuple[object, int])) |
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self.assertTrue(not subclass_of(Tuple[int, int], Tuple[str, int])) |
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self.assertTrue(not subclass_of(Tuple[int, int], Tuple[int, int, int])) |
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self.assertTrue(not subclass_of(Tuple[int, int, int], Tuple[int, int])) |
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self.assertTrue(not subclass_of(Tuple[int, str], Tuple[int, ...])) |
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def test_list_subclass_of_tuple(self): |
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self.assertTrue(not subclass_of(List[int], Tuple[int, ...])) |
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self.assertTrue(not subclass_of(List[int], Tuple[int, int])) |
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def test_tuple_subclass_of_list(self): |
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self.assertTrue(not subclass_of(Tuple[int, ...], List[int])) |
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def test_subclass_of_iterable(self): |
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self.assertTrue(subclass_of(List[int], Iterable[int])) |
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self.assertTrue(subclass_of(Tuple[int, int, int], Iterable[int])) |
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self.assertTrue(subclass_of(Tuple[int, ...], Iterable[int])) |
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self.assertTrue(subclass_of(Tuple[B, C, D], Iterable[B])) |
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self.assertTrue(subclass_of(Tuple[B, C, D], Iterable[A])) |
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self.assertTrue(subclass_of(List[Tuple[int, str]], Iterable[Tuple[int, str]])) |
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self.assertTrue(subclass_of(Tuple[Tuple[int, str]], Iterable[Tuple[int, str]])) |
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def test_subclass_of_multiple(self): |
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self.assertTrue(subclass_of(F, A)) |
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self.assertTrue(subclass_of(F, str)) |
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self.assertTrue(subclass_of(F, A, str)) |
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self.assertTrue(not subclass_of(F, A, str, int)) |
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def test_subclass_of_union(self): |
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self.assertTrue(subclass_of(F, Union[int, str])) |
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self.assertTrue(subclass_of(F, Union[A, int])) |
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self.assertTrue(subclass_of(F, Union[A, B])) |
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self.assertTrue(not subclass_of(int, Union[A, B])) |
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self.assertTrue(subclass_of(F, Optional[A])) |
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self.assertTrue(subclass_of(NoneType, Optional[A])) |
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def test_union_subclass_of_union(self): |
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# Subclass holds if all elements of the first enum subclass any of |
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# the right enum. |
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self.assertTrue(subclass_of(Union[C, D], Union[A, B])) |
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# int is no subclass of any of Union[A, B]. |
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self.assertTrue(not subclass_of(Union[C, D, int], Union[A, B])) |
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def test_union_subclass_of(self): |
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if sys.version_info[1] in (5,): |
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self.assertTrue(not subclass_of(Union[int, A, B, F], Union[C, D])) |
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else: |
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self.assertTrue(subclass_of(Union[B, F], A)) |
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self.assertTrue(not subclass_of(Union[A, B], C)) |
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self.assertTrue(not subclass_of(Union[A, B], Union[C, D])) |
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def test_subclass_of_literal(self): |
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self.assertTrue(subclass_of(int, Literal[int])) |
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self.assertTrue(subclass_of(Any, Literal[Any])) |
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self.assertTrue(not subclass_of(int, Literal[Any])) |
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self.assertTrue(not subclass_of(int, Literal)) |
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