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Revision e41bfd15dd148627b4f39c2a5837bddd8894d345 authored by Terry Jan Reedy on 30 November 2020, 17:09:43 UTC, committed by GitHub on 30 November 2020, 17:09:43 UTC
restart_subprocess is a method of self, the pyshell.InteractiveInterpreter instance. The latter does not have an interp attribute redundantly referring to itself. (The PyShell instance does have an interp attribute, referring to the InteractiveInterpreter instance.)
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Tip revision: e41bfd15dd148627b4f39c2a5837bddd8894d345 authored by Terry Jan Reedy on 30 November 2020, 17:09:43 UTC
bpo-42508: Remove bogus idlelib.pyshell.ModifiedInterpreter attribute (GH-23570)
Tip revision: e41bfd1
eiffel.py
#!/usr/bin/env python3

"""
Support Eiffel-style preconditions and postconditions for functions.

An example for Python metaclasses.
"""

import unittest
from types import FunctionType as function

class EiffelBaseMetaClass(type):

    def __new__(meta, name, bases, dict):
        meta.convert_methods(dict)
        return super(EiffelBaseMetaClass, meta).__new__(
            meta, name, bases, dict)

    @classmethod
    def convert_methods(cls, dict):
        """Replace functions in dict with EiffelMethod wrappers.

        The dict is modified in place.

        If a method ends in _pre or _post, it is removed from the dict
        regardless of whether there is a corresponding method.
        """
        # find methods with pre or post conditions
        methods = []
        for k, v in dict.items():
            if k.endswith('_pre') or k.endswith('_post'):
                assert isinstance(v, function)
            elif isinstance(v, function):
                methods.append(k)
        for m in methods:
            pre = dict.get("%s_pre" % m)
            post = dict.get("%s_post" % m)
            if pre or post:
                dict[m] = cls.make_eiffel_method(dict[m], pre, post)


class EiffelMetaClass1(EiffelBaseMetaClass):
    # an implementation of the "eiffel" meta class that uses nested functions

    @staticmethod
    def make_eiffel_method(func, pre, post):
        def method(self, *args, **kwargs):
            if pre:
                pre(self, *args, **kwargs)
            rv = func(self, *args, **kwargs)
            if post:
                post(self, rv, *args, **kwargs)
            return rv

        if func.__doc__:
            method.__doc__ = func.__doc__

        return method


class EiffelMethodWrapper:

    def __init__(self, inst, descr):
        self._inst = inst
        self._descr = descr

    def __call__(self, *args, **kwargs):
        return self._descr.callmethod(self._inst, args, kwargs)


class EiffelDescriptor:

    def __init__(self, func, pre, post):
        self._func = func
        self._pre = pre
        self._post = post

        self.__name__ = func.__name__
        self.__doc__ = func.__doc__

    def __get__(self, obj, cls=None):
        return EiffelMethodWrapper(obj, self)

    def callmethod(self, inst, args, kwargs):
        if self._pre:
            self._pre(inst, *args, **kwargs)
        x = self._func(inst, *args, **kwargs)
        if self._post:
            self._post(inst, x, *args, **kwargs)
        return x


class EiffelMetaClass2(EiffelBaseMetaClass):
    # an implementation of the "eiffel" meta class that uses descriptors

    make_eiffel_method = EiffelDescriptor


class Tests(unittest.TestCase):

    def testEiffelMetaClass1(self):
        self._test(EiffelMetaClass1)

    def testEiffelMetaClass2(self):
        self._test(EiffelMetaClass2)

    def _test(self, metaclass):
        class Eiffel(metaclass=metaclass):
            pass

        class Test(Eiffel):
            def m(self, arg):
                """Make it a little larger"""
                return arg + 1

            def m2(self, arg):
                """Make it a little larger"""
                return arg + 1

            def m2_pre(self, arg):
                assert arg > 0

            def m2_post(self, result, arg):
                assert result > arg

        class Sub(Test):
            def m2(self, arg):
                return arg**2

            def m2_post(self, Result, arg):
                super(Sub, self).m2_post(Result, arg)
                assert Result < 100

        t = Test()
        self.assertEqual(t.m(1), 2)
        self.assertEqual(t.m2(1), 2)
        self.assertRaises(AssertionError, t.m2, 0)

        s = Sub()
        self.assertRaises(AssertionError, s.m2, 1)
        self.assertRaises(AssertionError, s.m2, 10)
        self.assertEqual(s.m2(5), 25)


if __name__ == "__main__":
    unittest.main()
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