mirror of https://github.com/python/cpython
160 lines
5.8 KiB
Python
160 lines
5.8 KiB
Python
import os
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import sys
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import unittest
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import collections
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import email
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from email.message import Message
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from email._policybase import compat32
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from test.support import load_package_tests
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from test.test_email import __file__ as landmark
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# Load all tests in package
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def load_tests(*args):
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return load_package_tests(os.path.dirname(__file__), *args)
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# helper code used by a number of test modules.
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def openfile(filename, *args, **kws):
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path = os.path.join(os.path.dirname(landmark), 'data', filename)
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return open(path, *args, **kws)
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# Base test class
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class TestEmailBase(unittest.TestCase):
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maxDiff = None
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# Currently the default policy is compat32. By setting that as the default
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# here we make minimal changes in the test_email tests compared to their
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# pre-3.3 state.
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policy = compat32
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# Likewise, the default message object is Message.
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message = Message
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def __init__(self, *args, **kw):
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super().__init__(*args, **kw)
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self.addTypeEqualityFunc(bytes, self.assertBytesEqual)
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# Backward compatibility to minimize test_email test changes.
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ndiffAssertEqual = unittest.TestCase.assertEqual
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def _msgobj(self, filename):
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with openfile(filename) as fp:
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return email.message_from_file(fp, policy=self.policy)
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def _str_msg(self, string, message=None, policy=None):
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if policy is None:
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policy = self.policy
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if message is None:
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message = self.message
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return email.message_from_string(string, message, policy=policy)
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def _bytes_msg(self, bytestring, message=None, policy=None):
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if policy is None:
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policy = self.policy
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if message is None:
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message = self.message
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return email.message_from_bytes(bytestring, message, policy=policy)
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def _make_message(self):
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return self.message(policy=self.policy)
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def _bytes_repr(self, b):
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return [repr(x) for x in b.splitlines(keepends=True)]
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def assertBytesEqual(self, first, second, msg):
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"""Our byte strings are really encoded strings; improve diff output"""
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self.assertEqual(self._bytes_repr(first), self._bytes_repr(second))
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def assertDefectsEqual(self, actual, expected):
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self.assertEqual(len(actual), len(expected), actual)
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for i in range(len(actual)):
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self.assertIsInstance(actual[i], expected[i],
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'item {}'.format(i))
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def parameterize(cls):
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"""A test method parameterization class decorator.
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Parameters are specified as the value of a class attribute that ends with
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the string '_params'. Call the portion before '_params' the prefix. Then
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a method to be parameterized must have the same prefix, the string
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'_as_', and an arbitrary suffix.
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The value of the _params attribute may be either a dictionary or a list.
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The values in the dictionary and the elements of the list may either be
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single values, or a list. If single values, they are turned into single
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element tuples. However derived, the resulting sequence is passed via
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*args to the parameterized test function.
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In a _params dictionary, the keys become part of the name of the generated
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tests. In a _params list, the values in the list are converted into a
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string by joining the string values of the elements of the tuple by '_' and
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converting any blanks into '_'s, and this become part of the name.
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The full name of a generated test is a 'test_' prefix, the portion of the
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test function name after the '_as_' separator, plus an '_', plus the name
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derived as explained above.
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For example, if we have:
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count_params = range(2)
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def count_as_foo_arg(self, foo):
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self.assertEqual(foo+1, myfunc(foo))
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we will get parameterized test methods named:
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test_foo_arg_0
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test_foo_arg_1
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test_foo_arg_2
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Or we could have:
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example_params = {'foo': ('bar', 1), 'bing': ('bang', 2)}
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def example_as_myfunc_input(self, name, count):
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self.assertEqual(name+str(count), myfunc(name, count))
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and get:
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test_myfunc_input_foo
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test_myfunc_input_bing
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Note: if and only if the generated test name is a valid identifier can it
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be used to select the test individually from the unittest command line.
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"""
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paramdicts = {}
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testers = collections.defaultdict(list)
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for name, attr in cls.__dict__.items():
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if name.endswith('_params'):
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if not hasattr(attr, 'keys'):
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d = {}
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for x in attr:
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if not hasattr(x, '__iter__'):
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x = (x,)
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n = '_'.join(str(v) for v in x).replace(' ', '_')
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d[n] = x
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attr = d
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paramdicts[name[:-7] + '_as_'] = attr
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if '_as_' in name:
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testers[name.split('_as_')[0] + '_as_'].append(name)
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testfuncs = {}
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for name in paramdicts:
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if name not in testers:
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raise ValueError("No tester found for {}".format(name))
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for name in testers:
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if name not in paramdicts:
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raise ValueError("No params found for {}".format(name))
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for name, attr in cls.__dict__.items():
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for paramsname, paramsdict in paramdicts.items():
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if name.startswith(paramsname):
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testnameroot = 'test_' + name[len(paramsname):]
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for paramname, params in paramsdict.items():
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test = (lambda self, name=name, params=params:
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getattr(self, name)(*params))
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testname = testnameroot + '_' + paramname
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test.__name__ = testname
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testfuncs[testname] = test
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for key, value in testfuncs.items():
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setattr(cls, key, value)
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return cls
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