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\section{\module{test} ---
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Regression tests package for Python}
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\declaremodule{standard}{test}
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\sectionauthor{Brett Cannon}{brett@python.org}
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\modulesynopsis{Regression tests package containing the testing suite
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for Python.}
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The \module{test} package contains all regression tests for Python as
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well as the modules \module{test.test_support} and
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\module{test.regrtest}. \module{test.test_support} is used to enhance
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your tests while \module{test.regrtest} drives the testing suite.
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Each module in the \module{test} package whose name starts with
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\samp{test_} is a testing suite for a specific module or feature.
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All new tests should be written using the \refmodule{unittest} module;
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using \refmodule{unittest} is not required but makes the tests more
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flexible and maintenance of the tests easier. Some older tests are
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written to use \refmodule{doctest} and a ``traditional'' testing
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style; these styles of tests will not be covered.
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\begin{seealso}
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\seemodule{unittest}{Writing PyUnit regression tests.}
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\seemodule{doctest}{Tests embedded in documentation strings.}
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\end{seealso}
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\subsection{Writing Unit Tests for the \module{test} package%
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\label{writing-tests}}
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It is preferred that tests for the \module{test} package use the
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\refmodule{unittest} module and follow a few guidelines.
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One is to have the name of all the test methods start with \samp{test_} as
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well as the module's name.
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This is needed so that the methods are recognized by the test driver as
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test methods.
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Also, no documentation string for the method should be included.
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A comment (such as
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\samp{\# Tests function returns only True or False}) should be used to provide
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documentation for test methods.
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This is done because documentation strings get printed out if they exist and
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thus what test is being run is not stated.
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A basic boilerplate is often used:
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\begin{verbatim}
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import unittest
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from test import test_support
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class MyTestCase1(unittest.TestCase):
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# Only use setUp() and tearDown() if necessary
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def setUp(self):
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... code to execute in preparation for tests ...
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def tearDown(self):
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... code to execute to clean up after tests ...
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def test_feature_one(self):
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# Test feature one.
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... testing code ...
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def test_feature_two(self):
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# Test feature two.
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... testing code ...
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... more test methods ...
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class MyTestCase2(unittest.TestCase):
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... same structure as MyTestCase1 ...
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... more test classes ...
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def test_main():
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test_support.run_unittest(MyTestCase1,
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MyTestCase2,
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... list other tests ...
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)
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if __name__ == '__main__':
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test_main()
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\end{verbatim}
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This boilerplate code allows the testing suite to be run by
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\module{test.regrtest} as well as on its own as a script.
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The goal for regression testing is to try to break code.
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This leads to a few guidelines to be followed:
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\begin{itemize}
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\item The testing suite should exercise all classes, functions, and
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constants.
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This includes not just the external API that is to be presented to the
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outside world but also "private" code.
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\item Whitebox testing (examining the code being tested when the tests are
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being written) is preferred.
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Blackbox testing (testing only the published user interface) is not
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complete enough to make sure all boundary and edge cases are tested.
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\item Make sure all possible values are tested including invalid ones.
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This makes sure that not only all valid values are acceptable but also
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that improper values are handled correctly.
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\item Exhaust as many code paths as possible.
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Test where branching occurs and thus tailor input to make sure as many
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different paths through the code are taken.
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\item Add an explicit test for any bugs discovered for the tested code.
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This will make sure that the error does not crop up again if the code is
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changed in the future.
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\item Make sure to clean up after your tests (such as close and remove all
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temporary files).
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\item Import as few modules as possible and do it as soon as possible.
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This minimizes external dependencies of tests and also minimizes possible
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anomalous behavior from side-effects of importing a module.
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\item Try to maximize code reuse.
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On occasion, tests will vary by something as small as what type
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of input is used.
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Minimize code duplication by subclassing a basic test class with a class
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that specifies the input:
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\begin{verbatim}
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class TestFuncAcceptsSequences(unittest.TestCase):
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func = mySuperWhammyFunction
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def test_func(self):
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self.func(self.arg)
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class AcceptLists(TestFuncAcceptsSequences):
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arg = [1,2,3]
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class AcceptStrings(TestFuncAcceptsSequences):
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arg = 'abc'
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class AcceptTuples(TestFuncAcceptsSequences):
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arg = (1,2,3)
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\end{verbatim}
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\end{itemize}
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\begin{seealso}
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\seetitle{Test Driven Development}
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{A book by Kent Beck on writing tests before code.}
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\end{seealso}
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\subsection{Running tests using \module{test.regrtest} \label{regrtest}}
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\module{test.regrtest} can be used as a script to drive Python's
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regression test suite.
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Running the script by itself automatically starts running all
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regression tests in the \module{test} package.
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It does this by finding all modules in the package whose name starts with
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\samp{test_}, importing them, and executing the function
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\function{test_main()} if present.
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The names of tests to execute may also be passed to the script.
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Specifying a single regression test (\program{python regrtest.py}
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\programopt{test_spam.py}) will minimize output and only print whether
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the test passed or failed and thus minimize output.
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Running \module{test.regrtest} directly allows what resources are
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available for tests to use to be set.
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You do this by using the \programopt{-u} command-line option.
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Run \program{python regrtest.py} \programopt{-uall} to turn on all
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resources; specifying \programopt{all} as an option for
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\programopt{-u} enables all possible resources.
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If all but one resource is desired (a more common case), a
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comma-separated list of resources that are not desired may be listed after
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\programopt{all}.
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The command \program{python regrtest.py}
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\programopt{-uall,-audio,-largefile} will run \module{test.regrtest}
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with all resources except the \programopt{audio} and
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\programopt{largefile} resources.
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For a list of all resources and more command-line options, run
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\program{python regrtest.py} \programopt{-h}.
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Some other ways to execute the regression tests depend on what platform the
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tests are being executed on.
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On \UNIX{}, you can run \program{make} \programopt{test} at the
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top-level directory where Python was built.
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On Windows, executing \program{rt.bat} from your \file{PCBuild}
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directory will run all regression tests.
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\section{\module{test.test_support} ---
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Utility functions for tests}
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\declaremodule[test.testsupport]{standard}{test.test_support}
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\modulesynopsis{Support for Python regression tests.}
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The \module{test.test_support} module provides support for Python's
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regression tests.
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This module defines the following exceptions:
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\begin{excdesc}{TestFailed}
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Exception to be raised when a test fails.
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\end{excdesc}
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\begin{excdesc}{TestSkipped}
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Subclass of \exception{TestFailed}.
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Raised when a test is skipped.
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This occurs when a needed resource (such as a network connection) is not
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available at the time of testing.
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\end{excdesc}
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\begin{excdesc}{ResourceDenied}
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Subclass of \exception{TestSkipped}.
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Raised when a resource (such as a network connection) is not available.
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Raised by the \function{requires()} function.
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\end{excdesc}
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The \module{test.test_support} module defines the following constants:
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\begin{datadesc}{verbose}
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\constant{True} when verbose output is enabled.
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Should be checked when more detailed information is desired about a running
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test.
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\var{verbose} is set by \module{test.regrtest}.
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\end{datadesc}
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\begin{datadesc}{have_unicode}
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\constant{True} when Unicode support is available.
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\end{datadesc}
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\begin{datadesc}{is_jython}
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\constant{True} if the running interpreter is Jython.
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\end{datadesc}
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\begin{datadesc}{TESTFN}
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Set to the path that a temporary file may be created at.
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Any temporary that is created should be closed and unlinked (removed).
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\end{datadesc}
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The \module{test.test_support} module defines the following functions:
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\begin{funcdesc}{forget}{module_name}
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Removes the module named \var{module_name} from \code{sys.modules} and deletes
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any byte-compiled files of the module.
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\end{funcdesc}
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\begin{funcdesc}{is_resource_enabled}{resource}
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Returns \constant{True} if \var{resource} is enabled and available.
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The list of available resources is only set when \module{test.regrtest}
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is executing the tests.
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\end{funcdesc}
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\begin{funcdesc}{requires}{resource\optional{, msg}}
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Raises \exception{ResourceDenied} if \var{resource} is not available.
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\var{msg} is the argument to \exception{ResourceDenied} if it is raised.
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Always returns true if called by a function whose \code{__name__} is
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\code{'__main__'}.
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Used when tests are executed by \module{test.regrtest}.
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\end{funcdesc}
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\begin{funcdesc}{findfile}{filename}
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Return the path to the file named \var{filename}.
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If no match is found \var{filename} is returned.
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This does not equal a failure since it could be the path to the file.
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\end{funcdesc}
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\begin{funcdesc}{run_unittest}{*classes}
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Execute \class{unittest.TestCase} subclasses passed to the function.
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The function scans the classes for methods starting with the prefix
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\samp{test_} and executes the tests individually.
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This is the preferred way to execute tests.
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\end{funcdesc}
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\begin{funcdesc}{run_suite}{suite\optional{, testclass}}
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Execute the \class{unittest.TestSuite} instance \var{suite}.
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The optional argument \var{testclass} accepts one of the test classes in the
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suite so as to print out more detailed information on where the testing suite
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originated from.
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\end{funcdesc}
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