def test_concatenate(self):
Callable = self.Callable
fullname = f"{Callable.__module__}.Callable"
+ T = TypeVar('T')
P = ParamSpec('P')
- C1 = Callable[typing.Concatenate[int, P], int]
- self.assertEqual(repr(C1),
- f"{fullname}[typing.Concatenate[int, ~P], int]")
+ P2 = ParamSpec('P2')
+ C = Callable[Concatenate[int, P], T]
+ self.assertEqual(repr(C),
+ f"{fullname}[typing.Concatenate[int, ~P], ~T]")
+ self.assertEqual(C[P2, int], Callable[Concatenate[int, P2], int])
+ self.assertEqual(C[[str, float], int], Callable[[int, str, float], int])
+ self.assertEqual(C[[], int], Callable[[int], int])
+ self.assertEqual(C[Concatenate[str, P2], int],
+ Callable[Concatenate[int, str, P2], int])
+ with self.assertRaises(TypeError):
+ C[..., int]
+
+ C = Callable[Concatenate[int, P], int]
+ self.assertEqual(repr(C),
+ f"{fullname}[typing.Concatenate[int, ~P], int]")
+ self.assertEqual(C[P2], Callable[Concatenate[int, P2], int])
+ self.assertEqual(C[[str, float]], Callable[[int, str, float], int])
+ self.assertEqual(C[str, float], Callable[[int, str, float], int])
+ self.assertEqual(C[[]], Callable[[int], int])
+ self.assertEqual(C[Concatenate[str, P2]],
+ Callable[Concatenate[int, str, P2], int])
+ with self.assertRaises(TypeError):
+ C[...]
def test_errors(self):
Callable = self.Callable
self.assertEqual(C4.__args__, (Concatenate[int, T, P], T))
self.assertEqual(C4.__parameters__, (T, P))
+ def test_var_substitution(self):
+ T = TypeVar('T')
+ P = ParamSpec('P')
+ P2 = ParamSpec('P2')
+ C = Concatenate[T, P]
+ self.assertEqual(C[int, P2], Concatenate[int, P2])
+ self.assertEqual(C[int, [str, float]], (int, str, float))
+ self.assertEqual(C[int, []], (int,))
+ self.assertEqual(C[int, Concatenate[str, P2]],
+ Concatenate[int, str, P2])
+ with self.assertRaises(TypeError):
+ C[int, ...]
+
+ C = Concatenate[int, P]
+ self.assertEqual(C[P2], Concatenate[int, P2])
+ self.assertEqual(C[[str, float]], (int, str, float))
+ self.assertEqual(C[str, float], (int, str, float))
+ self.assertEqual(C[[]], (int,))
+ self.assertEqual(C[Concatenate[str, P2]], Concatenate[int, str, P2])
+ with self.assertRaises(TypeError):
+ C[...]
class TypeGuardTests(BaseTestCase):
def test_basics(self):
raise TypeError("The last parameter to Concatenate should be a "
"ParamSpec variable.")
msg = "Concatenate[arg, ...]: each arg must be a type."
- parameters = tuple(_type_check(p, msg) for p in parameters)
+ parameters = (*(_type_check(p, msg) for p in parameters[:-1]), parameters[-1])
return _ConcatenateGenericAlias(self, parameters)
_typevar_types=(TypeVar, ParamSpec),
_paramspec_tvars=True)
+ def copy_with(self, params):
+ if isinstance(params[-1], (list, tuple)):
+ return (*params[:-1], *params[-1])
+ if isinstance(params[-1], _ConcatenateGenericAlias):
+ params = (*params[:-1], *params[-1].__args__)
+ elif not isinstance(params[-1], ParamSpec):
+ raise TypeError("The last parameter to Concatenate should be a "
+ "ParamSpec variable.")
+ return super().copy_with(params)
+
class Generic:
"""Abstract base class for generic types.