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class Cud():
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def __init__(self):
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#print("__init__ called")
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pass
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def __repr__(self):
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print("__repr__ called")
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return ""
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def __lt__(self, other):
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print("__lt__ called")
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def __le__(self, other):
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print("__le__ called")
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def __eq__(self, other):
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print("__eq__ called")
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def __ne__(self, other):
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print("__ne__ called")
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def __ge__(self, other):
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print("__ge__ called")
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def __gt__(self, other):
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print("__gt__ called")
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def __abs__(self):
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print("__abs__ called")
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def __add__(self, other):
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print("__add__ called")
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def __and__(self, other):
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print("__and__ called")
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def __floordiv__(self, other):
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print("__floordiv__ called")
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def __index__(self, other):
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print("__index__ called")
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def __inv__(self):
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print("__inv__ called")
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def __invert__(self):
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print("__invert__ called")
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def __lshift__(self, val):
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print("__lshift__ called")
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def __mod__(self, val):
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print("__mod__ called")
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def __mul__(self, other):
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print("__mul__ called")
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def __matmul__(self, other):
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print("__matmul__ called")
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def __neg__(self):
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print("__neg__ called")
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def __or__(self, other):
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print("__or__ called")
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def __pos__(self):
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print("__pos__ called")
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def __pow__(self, val):
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print("__pow__ called")
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def __rshift__(self, val):
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print("__rshift__ called")
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def __sub__(self, other):
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print("__sub__ called")
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def __truediv__(self, other):
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print("__truediv__ called")
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def __div__(self, other):
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print("__div__ called")
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def __xor__(self, other):
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print("__xor__ called")
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def __iadd__(self, other):
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print("__iadd__ called")
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return self
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def __isub__(self, other):
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print("__isub__ called")
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return self
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cud1 = Cud()
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cud2 = Cud()
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try:
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+cud1
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except TypeError:
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print("SKIP")
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raise SystemExit
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# the following require MICROPY_PY_ALL_SPECIAL_METHODS
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+cud1
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-cud1
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~cud1
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cud1 * cud2
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cud1 / cud2
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cud2 // cud1
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cud1 += cud2
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cud1 -= cud2
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# TODO: the following operations are not supported on every ports
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#
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# ne is not supported, !(eq) is called instead
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#cud1 != cud2
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#
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# binary and is not supported
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# cud1 & cud2
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#
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# binary lshift is not supported
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# cud1<<1
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#
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# modulus is not supported
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# cud1 % 2
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#
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# binary or is not supported
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# cud1 | cud2
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#
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# pow is not supported
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# cud1**2
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#
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# rshift is not suported
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# cud1>>1
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#
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# xor is not supported
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# cud1^cud2
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#
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# in the followin test, cpython still calls __eq__
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# cud3=cud1
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# cud3==cud1
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