symbian-qemu-0.9.1-12/python-2.6.1/Demo/newmetaclasses/Eiffel.py
author Gareth Stockwell <gareth.stockwell@accenture.com>
Wed, 22 Sep 2010 15:40:40 +0100
branchgraphics-phase-3
changeset 111 345f1c88c950
parent 1 2fb8b9db1c86
permissions -rw-r--r--
Fixes to syborg-graphicswrapper.vcproj These changes allow syborg-graphicswrapper to link against the hostthreadadapter and khronosapiwrapper libraries built by the graphics.simulator component. The .vcproj file uses relative paths, which requires that the following three packages are laid out as follows: os/ graphics adapt/ graphics.simulator qemu

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

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.iteritems():
            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[k] = 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)
            x = func(self, *args, **kwargs)
            if post:
                post(self, x, *args, **kwargs)
            return x

        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(object):

    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):
        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

def _test(metaclass):
    class Eiffel:
        __metaclass__ = metaclass

    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()
    t.m(1)
    t.m2(1)
    try:
        t.m2(0)
    except AssertionError:
        pass
    else:
        assert False

    s = Sub()
    try:
        s.m2(1)
    except AssertionError:
        pass # result == arg
    else:
        assert False
    try:
        s.m2(10)
    except AssertionError:
        pass # result ==  100
    else:
        assert False
    s.m2(5)

if __name__ == "__main__":
    _test(EiffelMetaClass1)
    _test(EiffelMetaClass2)