mirror of
https://github.com/moparisthebest/SickRage
synced 2024-10-31 23:45:02 -04:00
201 lines
7.0 KiB
Python
201 lines
7.0 KiB
Python
from __future__ import absolute_import, division, print_function, with_statement
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import os
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import signal
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import socket
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from subprocess import Popen
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import sys
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import time
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from tornado.netutil import BlockingResolver, ThreadedResolver, is_valid_ip, bind_sockets
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from tornado.stack_context import ExceptionStackContext
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from tornado.testing import AsyncTestCase, gen_test
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from tornado.test.util import unittest, skipIfNoNetwork
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try:
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from concurrent import futures
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except ImportError:
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futures = None
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try:
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import pycares
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except ImportError:
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pycares = None
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else:
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from tornado.platform.caresresolver import CaresResolver
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try:
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import twisted
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import twisted.names
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except ImportError:
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twisted = None
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else:
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from tornado.platform.twisted import TwistedResolver
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class _ResolverTestMixin(object):
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def test_localhost(self):
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self.resolver.resolve('localhost', 80, callback=self.stop)
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result = self.wait()
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self.assertIn((socket.AF_INET, ('127.0.0.1', 80)), result)
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@gen_test
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def test_future_interface(self):
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addrinfo = yield self.resolver.resolve('localhost', 80,
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socket.AF_UNSPEC)
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self.assertIn((socket.AF_INET, ('127.0.0.1', 80)),
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addrinfo)
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# It is impossible to quickly and consistently generate an error in name
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# resolution, so test this case separately, using mocks as needed.
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class _ResolverErrorTestMixin(object):
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def test_bad_host(self):
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def handler(exc_typ, exc_val, exc_tb):
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self.stop(exc_val)
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return True # Halt propagation.
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with ExceptionStackContext(handler):
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self.resolver.resolve('an invalid domain', 80, callback=self.stop)
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result = self.wait()
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self.assertIsInstance(result, Exception)
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@gen_test
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def test_future_interface_bad_host(self):
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with self.assertRaises(Exception):
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yield self.resolver.resolve('an invalid domain', 80,
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socket.AF_UNSPEC)
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def _failing_getaddrinfo(*args):
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"""Dummy implementation of getaddrinfo for use in mocks"""
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raise socket.gaierror("mock: lookup failed")
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@skipIfNoNetwork
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class BlockingResolverTest(AsyncTestCase, _ResolverTestMixin):
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def setUp(self):
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super(BlockingResolverTest, self).setUp()
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self.resolver = BlockingResolver(io_loop=self.io_loop)
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# getaddrinfo-based tests need mocking to reliably generate errors;
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# some configurations are slow to produce errors and take longer than
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# our default timeout.
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class BlockingResolverErrorTest(AsyncTestCase, _ResolverErrorTestMixin):
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def setUp(self):
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super(BlockingResolverErrorTest, self).setUp()
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self.resolver = BlockingResolver(io_loop=self.io_loop)
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self.real_getaddrinfo = socket.getaddrinfo
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socket.getaddrinfo = _failing_getaddrinfo
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def tearDown(self):
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socket.getaddrinfo = self.real_getaddrinfo
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super(BlockingResolverErrorTest, self).tearDown()
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@skipIfNoNetwork
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@unittest.skipIf(futures is None, "futures module not present")
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class ThreadedResolverTest(AsyncTestCase, _ResolverTestMixin):
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def setUp(self):
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super(ThreadedResolverTest, self).setUp()
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self.resolver = ThreadedResolver(io_loop=self.io_loop)
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def tearDown(self):
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self.resolver.close()
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super(ThreadedResolverTest, self).tearDown()
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class ThreadedResolverErrorTest(AsyncTestCase, _ResolverErrorTestMixin):
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def setUp(self):
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super(ThreadedResolverErrorTest, self).setUp()
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self.resolver = BlockingResolver(io_loop=self.io_loop)
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self.real_getaddrinfo = socket.getaddrinfo
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socket.getaddrinfo = _failing_getaddrinfo
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def tearDown(self):
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socket.getaddrinfo = self.real_getaddrinfo
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super(ThreadedResolverErrorTest, self).tearDown()
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@skipIfNoNetwork
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@unittest.skipIf(futures is None, "futures module not present")
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@unittest.skipIf(sys.platform == 'win32', "preexec_fn not available on win32")
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class ThreadedResolverImportTest(unittest.TestCase):
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def test_import(self):
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TIMEOUT = 5
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# Test for a deadlock when importing a module that runs the
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# ThreadedResolver at import-time. See resolve_test.py for
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# full explanation.
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command = [
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sys.executable,
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'-c',
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'import tornado.test.resolve_test_helper']
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start = time.time()
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popen = Popen(command, preexec_fn=lambda: signal.alarm(TIMEOUT))
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while time.time() - start < TIMEOUT:
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return_code = popen.poll()
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if return_code is not None:
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self.assertEqual(0, return_code)
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return # Success.
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time.sleep(0.05)
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self.fail("import timed out")
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# We do not test errors with CaresResolver:
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# Some DNS-hijacking ISPs (e.g. Time Warner) return non-empty results
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# with an NXDOMAIN status code. Most resolvers treat this as an error;
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# C-ares returns the results, making the "bad_host" tests unreliable.
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# C-ares will try to resolve even malformed names, such as the
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# name with spaces used in this test.
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@skipIfNoNetwork
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@unittest.skipIf(pycares is None, "pycares module not present")
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class CaresResolverTest(AsyncTestCase, _ResolverTestMixin):
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def setUp(self):
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super(CaresResolverTest, self).setUp()
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self.resolver = CaresResolver(io_loop=self.io_loop)
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# TwistedResolver produces consistent errors in our test cases so we
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# can test the regular and error cases in the same class.
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@skipIfNoNetwork
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@unittest.skipIf(twisted is None, "twisted module not present")
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@unittest.skipIf(getattr(twisted, '__version__', '0.0') < "12.1", "old version of twisted")
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class TwistedResolverTest(AsyncTestCase, _ResolverTestMixin,
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_ResolverErrorTestMixin):
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def setUp(self):
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super(TwistedResolverTest, self).setUp()
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self.resolver = TwistedResolver(io_loop=self.io_loop)
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class IsValidIPTest(unittest.TestCase):
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def test_is_valid_ip(self):
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self.assertTrue(is_valid_ip('127.0.0.1'))
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self.assertTrue(is_valid_ip('4.4.4.4'))
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self.assertTrue(is_valid_ip('::1'))
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self.assertTrue(is_valid_ip('2620:0:1cfe:face:b00c::3'))
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self.assertTrue(not is_valid_ip('www.google.com'))
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self.assertTrue(not is_valid_ip('localhost'))
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self.assertTrue(not is_valid_ip('4.4.4.4<'))
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self.assertTrue(not is_valid_ip(' 127.0.0.1'))
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self.assertTrue(not is_valid_ip(''))
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self.assertTrue(not is_valid_ip(' '))
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self.assertTrue(not is_valid_ip('\n'))
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self.assertTrue(not is_valid_ip('\x00'))
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class TestPortAllocation(unittest.TestCase):
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def test_same_port_allocation(self):
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if 'TRAVIS' in os.environ:
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self.skipTest("dual-stack servers often have port conflicts on travis")
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sockets = bind_sockets(None, 'localhost')
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try:
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port = sockets[0].getsockname()[1]
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self.assertTrue(all(s.getsockname()[1] == port
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for s in sockets[1:]))
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finally:
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for sock in sockets:
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sock.close()
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