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"""Supporting definitions for the Python regression tests."""
if__name__!='test_support27':
raiseImportError('test_support must be imported from the test package')
importcontextlib
importerrno
importfunctools
importgc
importsocket
importsys
importos
importplatform
importshutil
importwarnings
importunittest
importimportlib
importUserDict
importre
importtime
try:
importthread
exceptImportError:
thread=None
__all__= ["Error", "TestFailed", "ResourceDenied", "import_module",
"verbose", "use_resources", "max_memuse", "record_original_stdout",
"get_original_stdout", "unload", "unlink", "rmtree", "forget",
"is_resource_enabled", "requires", "find_unused_port", "bind_port",
"fcmp", "have_unicode", "is_jython", "TESTFN", "HOST", "FUZZ",
"SAVEDCWD", "temp_cwd", "findfile", "sortdict", "check_syntax_error",
"open_urlresource", "check_warnings", "check_py3k_warnings",
"CleanImport", "EnvironmentVarGuard", "captured_output",
"captured_stdout", "TransientResource", "transient_internet",
"run_with_locale", "set_memlimit", "bigmemtest", "bigaddrspacetest",
"BasicTestRunner", "run_unittest", "run_doctest", "threading_setup",
"threading_cleanup", "reap_children", "cpython_only",
"check_impl_detail", "get_attribute", "py3k_bytes",
"import_fresh_module"]
classError(Exception):
"""Base class for regression test exceptions."""
classTestFailed(Error):
"""Test failed."""
classResourceDenied(unittest.SkipTest):
"""Test skipped because it requested a disallowed resource.
This is raised when a test calls requires() for a resource that
has not been enabled. It is used to distinguish between expected
and unexpected skips.
"""
@contextlib.contextmanager
def_ignore_deprecated_imports(ignore=True):
"""Context manager to suppress package and module deprecation
warnings when importing them.
If ignore is False, this context manager has no effect."""
ifignore:
withwarnings.catch_warnings():
warnings.filterwarnings("ignore", ".+ (module|package)",
DeprecationWarning)
yield
else:
yield
defimport_module(name, deprecated=False):
"""Import and return the module to be tested, raising SkipTest if
it is not available.
If deprecated is True, any module or package deprecation messages
will be suppressed."""
with_ignore_deprecated_imports(deprecated):
try:
returnimportlib.import_module(name)
exceptImportError, msg:
raiseunittest.SkipTest(str(msg))
def_save_and_remove_module(name, orig_modules):
"""Helper function to save and remove a module from sys.modules
Raise ImportError if the module can't be imported."""
# try to import the module and raise an error if it can't be imported
ifnamenotinsys.modules:
__import__(name)
delsys.modules[name]
formodnameinlist(sys.modules):
ifmodname==nameormodname.startswith(name+'.'):
orig_modules[modname] =sys.modules[modname]
delsys.modules[modname]
def_save_and_block_module(name, orig_modules):
"""Helper function to save and block a module in sys.modules
Return True if the module was in sys.modules, False otherwise."""
saved=True
try:
orig_modules[name] =sys.modules[name]
exceptKeyError:
saved=False
sys.modules[name] =None
returnsaved
defimport_fresh_module(name, fresh=(), blocked=(), deprecated=False):
"""Imports and returns a module, deliberately bypassing the sys.modules cache
and importing a fresh copy of the module. Once the import is complete,
the sys.modules cache is restored to its original state.
Modules named in fresh are also imported anew if needed by the import.
If one of these modules can't be imported, None is returned.
Importing of modules named in blocked is prevented while the fresh import
takes place.
If deprecated is True, any module or package deprecation messages
will be suppressed."""
# NOTE: test_heapq, test_json, and test_warnings include extra sanity
# checks to make sure that this utility function is working as expected
with_ignore_deprecated_imports(deprecated):
# Keep track of modules saved for later restoration as well
# as those which just need a blocking entry removed
orig_modules= {}
names_to_remove= []
_save_and_remove_module(name, orig_modules)
try:
forfresh_nameinfresh:
_save_and_remove_module(fresh_name, orig_modules)
forblocked_nameinblocked:
ifnot_save_and_block_module(blocked_name, orig_modules):
names_to_remove.append(blocked_name)
fresh_module=importlib.import_module(name)
exceptImportError:
fresh_module=None
finally:
fororig_name, moduleinorig_modules.items():
sys.modules[orig_name] =module
forname_to_removeinnames_to_remove:
delsys.modules[name_to_remove]
returnfresh_module
defget_attribute(obj, name):
"""Get an attribute, raising SkipTest if AttributeError is raised."""
try:
attribute=getattr(obj, name)
exceptAttributeError:
raiseunittest.SkipTest("module %s has no attribute %s"% (
obj.__name__, name))
else:
returnattribute
verbose=1# Flag set to 0 by regrtest.py
use_resources=None# Flag set to [] by regrtest.py
max_memuse=0# Disable bigmem tests (they will still be run with
# small sizes, to make sure they work.)
real_max_memuse=0
# _original_stdout is meant to hold stdout at the time regrtest began.
# This may be "the real" stdout, or IDLE's emulation of stdout, or whatever.
# The point is to have some flavor of stdout the user can actually see.
_original_stdout=None
defrecord_original_stdout(stdout):
global_original_stdout
_original_stdout=stdout
defget_original_stdout():
return_original_stdoutorsys.stdout
defunload(name):
try:
delsys.modules[name]
exceptKeyError:
pass
defunlink(filename):
try:
os.unlink(filename)
exceptOSError:
pass
defrmtree(path):
try:
shutil.rmtree(path)
exceptOSError, e:
# Unix returns ENOENT, Windows returns ESRCH.
ife.errnonotin (errno.ENOENT, errno.ESRCH):
raise
defforget(modname):
'''"Forget" a module was ever imported by removing it from sys.modules and
deleting any .pyc and .pyo files.'''
unload(modname)
fordirnameinsys.path:
unlink(os.path.join(dirname, modname+os.extsep+'pyc'))
# Deleting the .pyo file cannot be within the 'try' for the .pyc since
# the chance exists that there is no .pyc (and thus the 'try' statement
# is exited) but there is a .pyo file.
unlink(os.path.join(dirname, modname+os.extsep+'pyo'))
defis_resource_enabled(resource):
"""Test whether a resource is enabled. Known resources are set by
regrtest.py."""
returnuse_resourcesisnotNoneandresourceinuse_resources
defrequires(resource, msg=None):
"""Raise ResourceDenied if the specified resource is not available.
If the caller's module is __main__ then automatically return True. The
possibility of False being returned occurs when regrtest.py is executing."""
# see if the caller's module is __main__ - if so, treat as if
# the resource was set
ifsys._getframe(1).f_globals.get("__name__") =="__main__":
return
ifnotis_resource_enabled(resource):
ifmsgisNone:
msg="Use of the `%s' resource not enabled"%resource
raiseResourceDenied(msg)
HOST='localhost'
deffind_unused_port(family=socket.AF_INET, socktype=socket.SOCK_STREAM):
"""Returns an unused port that should be suitable for binding. This is
achieved by creating a temporary socket with the same family and type as
the 'sock' parameter (default is AF_INET, SOCK_STREAM), and binding it to
the specified host address (defaults to 0.0.0.0) with the port set to 0,
eliciting an unused ephemeral port from the OS. The temporary socket is
then closed and deleted, and the ephemeral port is returned.
Either this method or bind_port() should be used for any tests where a
server socket needs to be bound to a particular port for the duration of
the test. Which one to use depends on whether the calling code is creating
a python socket, or if an unused port needs to be provided in a constructor
or passed to an external program (i.e. the -accept argument to openssl's
s_server mode). Always prefer bind_port() over find_unused_port() where
possible. Hard coded ports should *NEVER* be used. As soon as a server
socket is bound to a hard coded port, the ability to run multiple instances
of the test simultaneously on the same host is compromised, which makes the
test a ticking time bomb in a buildbot environment. On Unix buildbots, this
may simply manifest as a failed test, which can be recovered from without
intervention in most cases, but on Windows, the entire python process can
completely and utterly wedge, requiring someone to log in to the buildbot
and manually kill the affected process.
(This is easy to reproduce on Windows, unfortunately, and can be traced to
the SO_REUSEADDR socket option having different semantics on Windows versus
Unix/Linux. On Unix, you can't have two AF_INET SOCK_STREAM sockets bind,
listen and then accept connections on identical host/ports. An EADDRINUSE
socket.error will be raised at some point (depending on the platform and
the order bind and listen were called on each socket).
However, on Windows, if SO_REUSEADDR is set on the sockets, no EADDRINUSE
will ever be raised when attempting to bind two identical host/ports. When
accept() is called on each socket, the second caller's process will steal
the port from the first caller, leaving them both in an awkwardly wedged
state where they'll no longer respond to any signals or graceful kills, and
must be forcibly killed via OpenProcess()/TerminateProcess().
The solution on Windows is to use the SO_EXCLUSIVEADDRUSE socket option
instead of SO_REUSEADDR, which effectively affords the same semantics as
SO_REUSEADDR on Unix. Given the propensity of Unix developers in the Open
Source world compared to Windows ones, this is a common mistake. A quick
look over OpenSSL's 0.9.8g source shows that they use SO_REUSEADDR when
openssl.exe is called with the 's_server' option, for example. See
http://bugs.python.org/issue2550 for more info. The following site also
has a very thorough description about the implications of both REUSEADDR
and EXCLUSIVEADDRUSE on Windows:
http://msdn2.microsoft.com/en-us/library/ms740621(VS.85).aspx)
XXX: although this approach is a vast improvement on previous attempts to
elicit unused ports, it rests heavily on the assumption that the ephemeral
port returned to us by the OS won't immediately be dished back out to some
other process when we close and delete our temporary socket but before our
calling code has a chance to bind the returned port. We can deal with this
issue if/when we come across it."""
tempsock=socket.socket(family, socktype)
port=bind_port(tempsock)
tempsock.close()
deltempsock
returnport
defbind_port(sock, host=HOST):
"""Bind the socket to a free port and return the port number. Relies on
ephemeral ports in order to ensure we are using an unbound port. This is
important as many tests may be running simultaneously, especially in a
buildbot environment. This method raises an exception if the sock.family
is AF_INET and sock.type is SOCK_STREAM, *and* the socket has SO_REUSEADDR
or SO_REUSEPORT set on it. Tests should *never* set these socket options
for TCP/IP sockets. The only case for setting these options is testing
multicasting via multiple UDP sockets.
Additionally, if the SO_EXCLUSIVEADDRUSE socket option is available (i.e.
on Windows), it will be set on the socket. This will prevent anyone else
from bind()'ing to our host/port for the duration of the test.
"""
ifsock.family==socket.AF_INETandsock.type==socket.SOCK_STREAM:
ifhasattr(socket, 'SO_REUSEADDR'):
ifsock.getsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR) ==1:
raiseTestFailed("tests should never set the SO_REUSEADDR " \
"socket option on TCP/IP sockets!")
ifhasattr(socket, 'SO_REUSEPORT'):
ifsock.getsockopt(socket.SOL_SOCKET, socket.SO_REUSEPORT) ==1:
raiseTestFailed("tests should never set the SO_REUSEPORT " \
"socket option on TCP/IP sockets!")
ifhasattr(socket, 'SO_EXCLUSIVEADDRUSE'):
sock.setsockopt(socket.SOL_SOCKET, socket.SO_EXCLUSIVEADDRUSE, 1)
sock.bind((host, 0))
port=sock.getsockname()[1]
returnport
FUZZ=1e-6
deffcmp(x, y): # fuzzy comparison function
ifisinstance(x, float) orisinstance(y, float):
try:
fuzz= (abs(x) +abs(y)) *FUZZ
ifabs(x-y) <=fuzz:
return0
except:
pass
eliftype(x) ==type(y) andisinstance(x, (tuple, list)):
foriinrange(min(len(x), len(y))):
outcome=fcmp(x[i], y[i])
ifoutcome!=0:
returnoutcome
return (len(x) >len(y)) - (len(x) <len(y))
return (x>y) - (x<y)
try:
unicode
have_unicode=True
exceptNameError:
have_unicode=False
is_jython=sys.platform.startswith('java')
# Filename used for testing
ifos.name=='java':
# Jython disallows @ in module names
TESTFN='$test'
elifos.name=='riscos':
TESTFN='testfile'
else:
TESTFN='@test'
# Unicode name only used if TEST_FN_ENCODING exists for the platform.
ifhave_unicode:
# Assuming sys.getfilesystemencoding()!=sys.getdefaultencoding()
# TESTFN_UNICODE is a filename that can be encoded using the
# file system encoding, but *not* with the default (ascii) encoding
ifisinstance('', unicode):
# python -U
# XXX perhaps unicode() should accept Unicode strings?
TESTFN_UNICODE="@test-\xe0\xf2"
else:
# 2 latin characters.
TESTFN_UNICODE=unicode("@test-\xe0\xf2", "latin-1")
TESTFN_ENCODING=sys.getfilesystemencoding()
# TESTFN_UNENCODABLE is a filename that should *not* be
# able to be encoded by *either* the default or filesystem encoding.
# This test really only makes sense on Windows NT platforms
# which have special Unicode support in posixmodule.
if (nothasattr(sys, "getwindowsversion") or
sys.getwindowsversion()[3] <2): # 0=win32s or 1=9x/ME
TESTFN_UNENCODABLE=None
else:
# Japanese characters (I think - from bug 846133)
TESTFN_UNENCODABLE=eval('u"@test-\u5171\u6709\u3055\u308c\u308b"')
try:
# XXX - Note - should be using TESTFN_ENCODING here - but for
# Windows, "mbcs" currently always operates as if in
# errors=ignore' mode - hence we get '?' characters rather than
# the exception. 'Latin1' operates as we expect - ie, fails.
# See [ 850997 ] mbcs encoding ignores errors
TESTFN_UNENCODABLE.encode("Latin1")
exceptUnicodeEncodeError:
pass
else:
print \
'WARNING: The filename %r CAN be encoded by the filesystem. ' \
'Unicode filename tests may not be effective' \
%TESTFN_UNENCODABLE
# Disambiguate TESTFN for parallel testing, while letting it remain a valid
# module name.
TESTFN="{}_{}_tmp".format(TESTFN, os.getpid())
# Save the initial cwd
SAVEDCWD=os.getcwd()
@contextlib.contextmanager
deftemp_cwd(name='tempcwd', quiet=False):
"""
Context manager that creates a temporary directory and set it as CWD.
The new CWD is created in the current directory and it's named *name*.
If *quiet* is False (default) and it's not possible to create or change
the CWD, an error is raised. If it's True, only a warning is raised
and the original CWD is used.
"""
ifisinstance(name, unicode):
try:
name=name.encode(sys.getfilesystemencoding() or'ascii')
exceptUnicodeEncodeError:
ifnotquiet:
raiseunittest.SkipTest('unable to encode the cwd name with '
'the filesystem encoding.')
saved_dir=os.getcwd()
is_temporary=False
try:
os.mkdir(name)
os.chdir(name)
is_temporary=True
exceptOSError:
ifnotquiet:
raise
warnings.warn('tests may fail, unable to change the CWD to '+name,
RuntimeWarning, stacklevel=3)
try:
yieldos.getcwd()
finally:
os.chdir(saved_dir)
ifis_temporary:
rmtree(name)
deffindfile(file, here=__file__, subdir=None):
"""Try to find a file on sys.path and the working directory. If it is not
found the argument passed to the function is returned (this does not
necessarily signal failure; could still be the legitimate path)."""
ifos.path.isabs(file):
returnfile
ifsubdirisnotNone:
file=os.path.join(subdir, file)
path=sys.path
path= [os.path.dirname(here)] +path
fordninpath:
fn=os.path.join(dn, file)
ifos.path.exists(fn): returnfn
returnfile
defsortdict(dict):
"Like repr(dict), but in sorted order."
items=dict.items()
items.sort()
reprpairs= ["%r: %r"%pairforpairinitems]
withcommas=", ".join(reprpairs)
return"{%s}"%withcommas
defmake_bad_fd():
"""
Create an invalid file descriptor by opening and closing a file and return
its fd.
"""
file=open(TESTFN, "wb")
try:
returnfile.fileno()
finally:
file.close()
unlink(TESTFN)
defcheck_syntax_error(testcase, statement):
testcase.assertRaises(SyntaxError, compile, statement,
'<test string>', 'exec')
defopen_urlresource(url, check=None):
importurlparse, urllib2
filename=urlparse.urlparse(url)[2].split('/')[-1] # '/': it's URL!
fn=os.path.join(os.path.dirname(__file__), "data", filename)
defcheck_valid_file(fn):
f=open(fn)
ifcheckisNone:
returnf
elifcheck(f):
f.seek(0)
returnf
f.close()
ifos.path.exists(fn):
f=check_valid_file(fn)
iffisnotNone:
returnf
unlink(fn)
# Verify the requirement before downloading the file
requires('urlfetch')
print>>get_original_stdout(), '\tfetching %s ...'%url
f=urllib2.urlopen(url, timeout=15)
try:
withopen(fn, "wb") asout:
s=f.read()
whiles:
out.write(s)
s=f.read()
finally:
f.close()
f=check_valid_file(fn)
iffisnotNone:
returnf
raiseTestFailed('invalid resource "%s"'%fn)
classWarningsRecorder(object):
"""Convenience wrapper for the warnings list returned on
entry to the warnings.catch_warnings() context manager.
"""
def__init__(self, warnings_list):
self._warnings=warnings_list
self._last=0
def__getattr__(self, attr):
iflen(self._warnings) >self._last:
returngetattr(self._warnings[-1], attr)
elifattrinwarnings.WarningMessage._WARNING_DETAILS:
returnNone
raiseAttributeError("%r has no attribute %r"% (self, attr))
@property
defwarnings(self):
returnself._warnings[self._last:]
defreset(self):
self._last=len(self._warnings)
def_filterwarnings(filters, quiet=False):
"""Catch the warnings, then check if all the expected
warnings have been raised and re-raise unexpected warnings.
If 'quiet' is True, only re-raise the unexpected warnings.
"""
# Clear the warning registry of the calling module
# in order to re-raise the warnings.
frame=sys._getframe(2)
registry=frame.f_globals.get('__warningregistry__')
ifregistry:
registry.clear()
withwarnings.catch_warnings(record=True) asw:
# Set filter "always" to record all warnings. Because
# test_warnings swap the module, we need to look up in
# the sys.modules dictionary.
sys.modules['warnings'].simplefilter("always")
yieldWarningsRecorder(w)
# Filter the recorded warnings
reraise= [warning.messageforwarninginw]
missing= []
formsg, catinfilters:
seen=False
forexcinreraise[:]:
message=str(exc)
# Filter out the matching messages
if (re.match(msg, message, re.I) and
issubclass(exc.__class__, cat)):
seen=True
reraise.remove(exc)
ifnotseenandnotquiet:
# This filter caught nothing
missing.append((msg, cat.__name__))
ifreraise:
raiseAssertionError("unhandled warning %r"%reraise[0])
ifmissing:
raiseAssertionError("filter (%r, %s) did not catch any warning"%
missing[0])
@contextlib.contextmanager
defcheck_warnings(*filters, **kwargs):
"""Context manager to silence warnings.
Accept 2-tuples as positional arguments:
("message regexp", WarningCategory)
Optional argument:
- if 'quiet' is True, it does not fail if a filter catches nothing
(default True without argument,
default False if some filters are defined)
Without argument, it defaults to:
check_warnings(("", Warning), quiet=True)
"""
quiet=kwargs.get('quiet')
ifnotfilters:
filters= (("", Warning),)
# Preserve backward compatibility
ifquietisNone:
quiet=True
return_filterwarnings(filters, quiet)
@contextlib.contextmanager
defcheck_py3k_warnings(*filters, **kwargs):
"""Context manager to silence py3k warnings.
Accept 2-tuples as positional arguments:
("message regexp", WarningCategory)
Optional argument:
- if 'quiet' is True, it does not fail if a filter catches nothing
(default False)
Without argument, it defaults to:
check_py3k_warnings(("", DeprecationWarning), quiet=False)
"""
ifsys.py3kwarning:
ifnotfilters:
filters= (("", DeprecationWarning),)
else:
# It should not raise any py3k warning
filters= ()
return_filterwarnings(filters, kwargs.get('quiet'))
classCleanImport(object):
"""Context manager to force import to return a new module reference.
This is useful for testing module-level behaviours, such as
the emission of a DeprecationWarning on import.
Use like this:
with CleanImport("foo"):
importlib.import_module("foo") # new reference
"""
def__init__(self, *module_names):
self.original_modules=sys.modules.copy()
formodule_nameinmodule_names:
ifmodule_nameinsys.modules:
module=sys.modules[module_name]
# It is possible that module_name is just an alias for
# another module (e.g. stub for modules renamed in 3.x).
# In that case, we also need delete the real module to clear
# the import cache.
ifmodule.__name__!=module_name:
delsys.modules[module.__name__]
delsys.modules[module_name]
def__enter__(self):
returnself
def__exit__(self, *ignore_exc):
sys.modules.update(self.original_modules)
classEnvironmentVarGuard(UserDict.DictMixin):
"""Class to help protect the environment variable properly. Can be used as
a context manager."""
def__init__(self):
self._environ=os.environ
self._changed= {}
def__getitem__(self, envvar):
returnself._environ[envvar]
def__setitem__(self, envvar, value):
# Remember the initial value on the first access
ifenvvarnotinself._changed:
self._changed[envvar] =self._environ.get(envvar)
self._environ[envvar] =value
def__delitem__(self, envvar):
# Remember the initial value on the first access
ifenvvarnotinself._changed:
self._changed[envvar] =self._environ.get(envvar)
ifenvvarinself._environ:
delself._environ[envvar]
defkeys(self):
returnself._environ.keys()
defset(self, envvar, value):
self[envvar] =value
defunset(self, envvar):
delself[envvar]
def__enter__(self):
returnself
def__exit__(self, *ignore_exc):
for (k, v) inself._changed.items():
ifvisNone:
ifkinself._environ:
delself._environ[k]
else:
self._environ[k] =v
os.environ=self._environ
classDirsOnSysPath(object):
"""Context manager to temporarily add directories to sys.path.
This makes a copy of sys.path, appends any directories given
as positional arguments, then reverts sys.path to the copied
settings when the context ends.
Note that *all* sys.path modifications in the body of the
context manager, including replacement of the object,
will be reverted at the end of the block.
"""
def__init__(self, *paths):
self.original_value=sys.path[:]
self.original_object=sys.path
sys.path.extend(paths)
def__enter__(self):
returnself
def__exit__(self, *ignore_exc):
sys.path=self.original_object
sys.path[:] =self.original_value
classTransientResource(object):
"""Raise ResourceDenied if an exception is raised while the context manager
is in effect that matches the specified exception and attributes."""
def__init__(self, exc, **kwargs):
self.exc=exc
self.attrs=kwargs
def__enter__(self):
returnself
def__exit__(self, type_=None, value=None, traceback=None):
"""If type_ is a subclass of self.exc and value has attributes matching
self.attrs, raise ResourceDenied. Otherwise let the exception
propagate (if any)."""
iftype_isnotNoneandissubclass(self.exc, type_):
forattr, attr_valueinself.attrs.iteritems():
ifnothasattr(value, attr):
break
ifgetattr(value, attr) !=attr_value:
break
else:
raiseResourceDenied("an optional resource is not available")
@contextlib.contextmanager
deftransient_internet(resource_name, timeout=30.0, errnos=()):
"""Return a context manager that raises ResourceDenied when various issues
with the Internet connection manifest themselves as exceptions."""
default_errnos= [
('ECONNREFUSED', 111),
('ECONNRESET', 104),
('EHOSTUNREACH', 113),
('ENETUNREACH', 101),
('ETIMEDOUT', 110),
]
default_gai_errnos= [
('EAI_NONAME', -2),
('EAI_NODATA', -5),
]
denied=ResourceDenied("Resource '%s' is not available"%resource_name)
captured_errnos=errnos
gai_errnos= []
ifnotcaptured_errnos:
captured_errnos= [getattr(errno, name, num)
for (name, num) indefault_errnos]
gai_errnos= [getattr(socket, name, num)
for (name, num) indefault_gai_errnos]
deffilter_error(err):
n=getattr(err, 'errno', None)
if (isinstance(err, socket.timeout) or
(isinstance(err, socket.gaierror) andningai_errnos) or
nincaptured_errnos):
ifnotverbose:
sys.stderr.write(denied.args[0] +"\n")
raisedenied
old_timeout=socket.getdefaulttimeout()
try:
iftimeoutisnotNone:
socket.setdefaulttimeout(timeout)
yield
exceptIOErroraserr:
# urllib can wrap original socket errors multiple times (!), we must
# unwrap to get at the original error.
whileTrue:
a=err.args
iflen(a) >=1andisinstance(a[0], IOError):
err=a[0]
# The error can also be wrapped as args[1]:
# except socket.error as msg:
# raise IOError('socket error', msg).with_traceback(sys.exc_info()[2])
eliflen(a) >=2andisinstance(a[1], IOError):
err=a[1]
else:
break
filter_error(err)
raise
# XXX should we catch generic exceptions and look for their
# __cause__ or __context__?
finally:
socket.setdefaulttimeout(old_timeout)
@contextlib.contextmanager
defcaptured_output(stream_name):
"""Return a context manager used by captured_stdout and captured_stdin
that temporarily replaces the sys stream *stream_name* with a StringIO."""
importStringIO
orig_stdout=getattr(sys, stream_name)
setattr(sys, stream_name, StringIO.StringIO())
try:
yieldgetattr(sys, stream_name)
finally:
setattr(sys, stream_name, orig_stdout)
defcaptured_stdout():
"""Capture the output of sys.stdout:
with captured_stdout() as s:
print "hello"
self.assertEqual(s.getvalue(), "hello")
"""
returncaptured_output("stdout")
defcaptured_stdin():
returncaptured_output("stdin")
defgc_collect():
"""Force as many objects as possible to be collected.
In non-CPython implementations of Python, this is needed because timely
deallocation is not guaranteed by the garbage collector. (Even in CPython
this can be the case in case of reference cycles.) This means that __del__
methods may be called later than expected and weakrefs may remain alive for
longer than expected. This function tries its best to force all garbage
objects to disappear.
"""
gc.collect()
ifis_jython:
time.sleep(0.1)
gc.collect()
gc.collect()
#=======================================================================
# Decorator for running a function in a different locale, correctly resetting
# it afterwards.
defrun_with_locale(catstr, *locales):
defdecorator(func):
definner(*args, **kwds):
try:
importlocale
category=getattr(locale, catstr)
orig_locale=locale.setlocale(category)
exceptAttributeError:
# if the test author gives us an invalid category string
raise
except:
# cannot retrieve original locale, so do nothing
locale=orig_locale=None
else:
forlocinlocales:
try:
locale.setlocale(category, loc)
break
except:
pass
# now run the function, resetting the locale on exceptions
try:
returnfunc(*args, **kwds)
finally:
iflocaleandorig_locale:
locale.setlocale(category, orig_locale)
inner.func_name=func.func_name
inner.__doc__=func.__doc__
returninner
returndecorator
#=======================================================================
# Big-memory-test support. Separate from 'resources' because memory use should be configurable.
# Some handy shorthands. Note that these are used for byte-limits as well
# as size-limits, in the various bigmem tests
_1M=1024*1024
_1G=1024*_1M
_2G=2*_1G
_4G=4*_1G
MAX_Py_ssize_t=sys.maxsize
defset_memlimit(limit):
globalmax_memuse
globalreal_max_memuse
sizes= {
'k': 1024,
'm': _1M,
'g': _1G,
't': 1024*_1G,
}
m=re.match(r'(\d+(\.\d+)?) (K|M|G|T)b?$', limit,
re.IGNORECASE|re.VERBOSE)
ifmisNone:
raiseValueError('Invalid memory limit %r'% (limit,))
memlimit=int(float(m.group(1)) *sizes[m.group(3).lower()])
real_max_memuse=memlimit
ifmemlimit>MAX_Py_ssize_t:
memlimit=MAX_Py_ssize_t
ifmemlimit<_2G-1:
raiseValueError('Memory limit %r too low to be useful'% (limit,))
max_memuse=memlimit
defbigmemtest(minsize, memuse, overhead=5*_1M):
"""Decorator for bigmem tests.
'minsize' is the minimum useful size for the test (in arbitrary,
test-interpreted units.) 'memuse' is the number of 'bytes per size' for
the test, or a good estimate of it. 'overhead' specifies fixed overhead,
independent of the testsize, and defaults to 5Mb.
The decorator tries to guess a good value for 'size' and passes it to
the decorated test function. If minsize * memuse is more than the
allowed memory use (as defined by max_memuse), the test is skipped.
Otherwise, minsize is adjusted upward to use up to max_memuse.
"""
defdecorator(f):
defwrapper(self):
ifnotmax_memuse:
# If max_memuse is 0 (the default),
# we still want to run the tests with size set to a few kb,
# to make sure they work. We still want to avoid using
# too much memory, though, but we do that noisily.
maxsize=5147
self.assertFalse(maxsize*memuse+overhead>20*_1M)
else:
maxsize=int((max_memuse-overhead) /memuse)
ifmaxsize<minsize:
# Really ought to print 'test skipped' or something
ifverbose:
sys.stderr.write("Skipping %s because of memory "
"constraint\n"% (f.__name__,))
return
# Try to keep some breathing room in memory use
maxsize=max(maxsize-50*_1M, minsize)
returnf(self, maxsize)
wrapper.minsize=minsize
wrapper.memuse=memuse
wrapper.overhead=overhead
returnwrapper
returndecorator
defprecisionbigmemtest(size, memuse, overhead=5*_1M):
defdecorator(f):
defwrapper(self):
ifnotreal_max_memuse:
maxsize=5147
else:
maxsize=size
ifreal_max_memuseandreal_max_memuse<maxsize*memuse:
ifverbose:
sys.stderr.write("Skipping %s because of memory "
"constraint\n"% (f.__name__,))
return
returnf(self, maxsize)
wrapper.size=size
wrapper.memuse=memuse
wrapper.overhead=overhead
returnwrapper
returndecorator
defbigaddrspacetest(f):
"""Decorator for tests that fill the address space."""
defwrapper(self):
ifmax_memuse<MAX_Py_ssize_t:
ifverbose:
sys.stderr.write("Skipping %s because of memory "
"constraint\n"% (f.__name__,))
else:
returnf(self)
returnwrapper
#=======================================================================
# unittest integration.
classBasicTestRunner:
defrun(self, test):