mirror of
https://github.com/tahoe-lafs/tahoe-lafs.git
synced 2024-12-24 23:26:43 +00:00
490 lines
17 KiB
Python
490 lines
17 KiB
Python
#! /usr/bin/env python
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'''
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Unit and system tests for tahoe-fuse.
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'''
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# Note: It's always a SetupFailure, not a TestFailure if a webapi
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# operation fails, because this does not indicate a fuse interface
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# failure.
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# TODO: Test mismatches between tahoe and fuse/posix. What about nodes
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# with crazy names ('\0', unicode, '/', '..')? Huuuuge files?
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# Huuuuge directories... As tahoe approaches production quality, it'd
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# be nice if the fuse interface did so also by hardening against such cases.
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# FIXME: This framework might be replaceable with twisted.trial,
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# especially the "layer" design, which is a bit cumbersome when
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# using recursion to manage multiple clients.
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# FIXME: Identify all race conditions (hint: starting clients, versus
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# using the grid fs).
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import sys, os, shutil, unittest, subprocess
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import tempfile, re, time, signal, random, httplib
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import traceback
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import tahoe_fuse
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### Main flow control:
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def main(args = sys.argv[1:]):
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target = 'all'
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if args:
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if len(args) != 1:
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raise SystemExit(Usage)
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target = args[0]
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if target not in ('all', 'unit', 'system'):
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raise SystemExit(Usage)
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if target in ('all', 'unit'):
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run_unit_tests()
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if target in ('all', 'system'):
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run_system_test()
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def run_unit_tests():
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print 'Running Unit Tests.'
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try:
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unittest.main()
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except SystemExit, se:
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pass
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print 'Unit Tests complete.\n'
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def run_system_test():
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SystemTest().run()
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### System Testing:
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class SystemTest (object):
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def __init__(self):
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# These members represent configuration:
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self.fullcleanup = False # FIXME: Make this a commandline option.
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# These members represent test state:
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self.cliexec = None
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self.testroot = None
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# This test state is specific to the first client:
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self.port = None
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self.clientbase = None
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## Top-level flow control:
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# These "*_layer" methods call eachother in a linear fashion, using
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# exception unwinding to do cleanup properly. Each "layer" invokes
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# a deeper layer, and each layer does its own cleanup upon exit.
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def run(self, fullcleanup = False):
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'''
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If full_cleanup, delete all temporary state.
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Else: If there is an error do not delete basedirs.
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Set to False if you wish to analyze a failure.
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'''
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self.fullcleanup = fullcleanup
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print '\n*** Setting up system tests.'
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try:
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failures, total = self.init_cli_layer()
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print '\n*** System Tests complete: %d failed out of %d.' % (failures, total)
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except self.SetupFailure, sfail:
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print
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print sfail
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print '\n*** System Tests were not successfully completed.'
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def init_cli_layer(self):
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'''This layer finds the appropriate tahoe executable.'''
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runtestpath = os.path.abspath(sys.argv[0])
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path = runtestpath
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for expectedname in ('runtests.py', 'fuse', 'contrib'):
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path, name = os.path.split(path)
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if name != expectedname:
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reason = 'Unexpected test script path: %r\n'
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reason += 'The system test script must be run from the source directory.'
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raise self.SetupFailure(reason, runtestpath)
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self.cliexec = os.path.join(path, 'bin', 'tahoe')
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version = self.run_tahoe('--version')
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print 'Using %r with version:\n%s' % (self.cliexec, version.rstrip())
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return self.create_testroot_layer()
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def create_testroot_layer(self):
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print 'Creating test base directory.'
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self.testroot = tempfile.mkdtemp(prefix='tahoe_fuse_test_')
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try:
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return self.launch_introducer_layer()
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finally:
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if self.fullcleanup:
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print 'Cleaning up test root directory.'
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try:
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shutil.rmtree(self.testroot)
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except Exception, e:
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print 'Exception removing test root directory: %r' % (self.testroot, )
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print 'Ignoring cleanup exception: %r' % (e,)
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else:
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print 'Leaving test root directory: %r' % (self.testroot, )
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def launch_introducer_layer(self):
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print 'Launching introducer.'
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introbase = os.path.join(self.testroot, 'introducer')
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# NOTE: We assume if tahoe exits with non-zero status, no separate
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# tahoe child process is still running.
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createoutput = self.run_tahoe('create-introducer', '--basedir', introbase)
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self.check_tahoe_output(createoutput, ExpectedCreationOutput, introbase)
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startoutput = self.run_tahoe('start', '--basedir', introbase)
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try:
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self.check_tahoe_output(startoutput, ExpectedStartOutput, introbase)
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return self.launch_clients_layer(introbase)
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finally:
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print 'Stopping introducer node.'
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self.stop_node(introbase)
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TotalClientsNeeded = 3
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def launch_clients_layer(self, introbase, clientnum = 1):
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if clientnum > self.TotalClientsNeeded:
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return self.create_test_dirnode_layer()
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tmpl = 'Launching client %d of %d.'
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print tmpl % (clientnum,
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self.TotalClientsNeeded)
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base = os.path.join(self.testroot, 'client_%d' % (clientnum,))
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output = self.run_tahoe('create-client', '--basedir', base)
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self.check_tahoe_output(output, ExpectedCreationOutput, base)
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if clientnum == 1:
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# The first client is special:
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self.clientbase = base
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self.port = random.randrange(1024, 2**15)
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f = open(os.path.join(base, 'webport'), 'w')
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f.write('tcp:%d:interface=127.0.0.1\n' % self.port)
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f.close()
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introfurl = os.path.join(introbase, 'introducer.furl')
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self.polling_operation(lambda : os.path.isfile(introfurl))
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shutil.copy(introfurl, base)
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# NOTE: We assume if tahoe exist with non-zero status, no separate
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# tahoe child process is still running.
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startoutput = self.run_tahoe('start', '--basedir', base)
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try:
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self.check_tahoe_output(startoutput, ExpectedStartOutput, base)
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return self.launch_clients_layer(introbase, clientnum+1)
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finally:
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print 'Stopping client node %d.' % (clientnum,)
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self.stop_node(base)
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def create_test_dirnode_layer(self):
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print 'Creating test dirnode.'
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cap = self.create_dirnode()
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f = open(os.path.join(self.clientbase, 'private', 'root_dir.cap'), 'w')
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f.write(cap)
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f.close()
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return self.mount_fuse_layer(cap)
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def mount_fuse_layer(self, fusebasecap, fusepause=2.0):
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print 'Mounting fuse interface.'
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mp = os.path.join(self.testroot, 'mountpoint')
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os.mkdir(mp)
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thispath = os.path.abspath(sys.argv[0])
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thisdir = os.path.dirname(thispath)
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fusescript = os.path.join(thisdir, 'tahoe_fuse.py')
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try:
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proc = subprocess.Popen([fusescript,
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mp,
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'-f',
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'--basedir', self.clientbase])
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# The mount is verified by the test_layer, but we sleep to
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# avoid race conditions against the first few tests.
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time.sleep(fusepause)
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return self.run_test_layer(fusebasecap, mp)
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finally:
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print '\n*** Cleaning up system test'
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if proc.poll() is None:
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print 'Killing fuse interface.'
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os.kill(proc.pid, signal.SIGTERM)
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print 'Waiting for the fuse interface to exit.'
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proc.wait()
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def run_test_layer(self, fbcap, mountpoint):
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total = failures = 0
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for name in sorted(dir(self)):
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if name.startswith('test_'):
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total += 1
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print '\n*** Running test #%d: %s' % (total, name)
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try:
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testcap = self.create_dirnode()
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self.attach_node(fbcap, testcap, name)
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method = getattr(self, name)
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method(testcap, testdir = os.path.join(mountpoint, name))
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print 'Test succeeded.'
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except self.TestFailure, f:
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print f
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failures += 1
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except:
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print 'Error in test code... Cleaning up.'
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raise
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return (failures, total)
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# Tests:
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def test_directory_existence(self, testcap, testdir):
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if not os.path.isdir(testdir):
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raise self.TestFailure('Attached test directory not found: %r', testdir)
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def test_empty_directory_listing(self, testcap, testdir):
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listing = os.listdir(testdir)
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if listing:
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raise self.TestFailure('Expected empty directory, found: %r', listing)
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def test_directory_listing(self, testcap, testdir):
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names = []
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filesizes = {}
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for i in range(3):
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fname = 'file_%d' % (i,)
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names.append(fname)
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body = 'Hello World #%d!' % (i,)
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filesizes[fname] = len(body)
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cap = self.webapi_call('PUT', '/uri', body)
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self.attach_node(testcap, cap, fname)
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dname = 'dir_%d' % (i,)
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names.append(dname)
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cap = self.create_dirnode()
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self.attach_node(testcap, cap, dname)
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names.sort()
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listing = os.listdir(testdir)
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listing.sort()
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if listing != names:
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tmpl = 'Expected directory list containing %r but fuse gave %r'
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raise self.TestFailure(tmpl, names, listing)
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for file, size in filesizes.items():
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st = os.stat(os.path.join(testdir, file))
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if st.st_size != size:
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tmpl = 'Expected %r size of %r but fuse returned %r'
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raise self.TestFailure(tmpl, file, size, st.st_size)
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def test_file_contents(self, testcap, testdir):
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name = 'hw.txt'
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body = 'Hello World!'
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cap = self.webapi_call('PUT', '/uri', body)
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self.attach_node(testcap, cap, name)
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path = os.path.join(testdir, name)
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try:
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found = open(path, 'r').read()
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except Exception, err:
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tmpl = 'Could not read file contents of %r: %r'
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raise self.TestFailure(tmpl, path, err)
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if found != body:
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tmpl = 'Expected file contents %r but found %r'
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raise self.TestFailure(tmpl, body, found)
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# Utilities:
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def run_tahoe(self, *args):
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realargs = ('tahoe',) + args
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status, output = gather_output(realargs, executable=self.cliexec)
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if status != 0:
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tmpl = 'The tahoe cli exited with nonzero status.\n'
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tmpl += 'Executable: %r\n'
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tmpl += 'Command arguments: %r\n'
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tmpl += 'Exit status: %r\n'
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tmpl += 'Output:\n%s\n[End of tahoe output.]\n'
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raise self.SetupFailure(tmpl,
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self.cliexec,
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realargs,
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status,
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output)
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return output
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def check_tahoe_output(self, output, expected, expdir):
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m = re.match(expected, output, re.M)
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if m is None:
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tmpl = 'The output of tahoe did not match the expectation:\n'
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tmpl += 'Expected regex: %s\n'
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tmpl += 'Actual output: %r\n'
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self.warn(tmpl, expected, output)
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elif expdir != m.group('path'):
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tmpl = 'The output of tahoe refers to an unexpected directory:\n'
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tmpl += 'Expected directory: %r\n'
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tmpl += 'Actual directory: %r\n'
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self.warn(tmpl, expdir, m.group(1))
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def stop_node(self, basedir):
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try:
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self.run_tahoe('stop', '--basedir', basedir)
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except Exception, e:
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print 'Failed to stop tahoe node.'
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print 'Ignoring cleanup exception:'
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# Indent the exception description:
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desc = str(e).rstrip()
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print ' ' + desc.replace('\n', '\n ')
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def webapi_call(self, method, path, body=None, **options):
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if options:
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path = path + '?' + ('&'.join(['%s=%s' % kv for kv in options.items()]))
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conn = httplib.HTTPConnection('127.0.0.1', self.port)
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conn.request(method, path, body = body)
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resp = conn.getresponse()
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if resp.status != 200:
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tmpl = 'A webapi operation failed.\n'
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tmpl += 'Request: %r %r\n'
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tmpl += 'Body:\n%s\n'
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tmpl += 'Response:\nStatus %r\nBody:\n%s'
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raise self.SetupFailure(tmpl,
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method, path,
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body or '',
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resp.status, body)
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return resp.read()
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def create_dirnode(self):
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return self.webapi_call('PUT', '/uri', t='mkdir').strip()
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def attach_node(self, dircap, childcap, childname):
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body = self.webapi_call('PUT',
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'/uri/%s/%s' % (dircap, childname),
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body = childcap,
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t = 'uri',
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replace = 'false')
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assert body.strip() == childcap, `status, dircap, childcap, childname`
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def polling_operation(self, operation, timeout = 10.0, pollinterval = 0.2):
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totaltime = timeout # Fudging for edge-case SetupFailure description...
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totalattempts = int(timeout / pollinterval)
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starttime = time.time()
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for attempt in range(totalattempts):
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opstart = time.time()
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try:
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result = operation()
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except KeyboardInterrupt, e:
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raise
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except Exception, e:
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result = False
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totaltime = time.time() - starttime
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if result is not False:
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#tmpl = '(Polling took over %.2f seconds.)'
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#print tmpl % (totaltime,)
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return result
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elif totaltime > timeout:
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break
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else:
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opdelay = time.time() - opstart
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realinterval = max(0., pollinterval - opdelay)
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#tmpl = '(Poll attempt %d failed after %.2f seconds, sleeping %.2f seconds.)'
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#print tmpl % (attempt+1, opdelay, realinterval)
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time.sleep(realinterval)
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tmpl = 'Timeout after waiting for creation of introducer.furl.\n'
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tmpl += 'Waited %.2f seconds (%d polls).'
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raise self.SetupFailure(tmpl, totaltime, attempt+1)
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def warn(self, tmpl, *args):
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print ('Test Warning: ' + tmpl) % args
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# SystemTest Exceptions:
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class Failure (Exception):
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def __init__(self, tmpl, *args):
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msg = self.Prefix + (tmpl % args)
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Exception.__init__(self, msg)
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class SetupFailure (Failure):
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Prefix = 'Setup Failure - The test framework encountered an error:\n'
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class TestFailure (Failure):
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Prefix = 'TestFailure: '
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### Unit Tests:
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class TestUtilFunctions (unittest.TestCase):
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'''Tests small stand-alone functions.'''
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def test_canonicalize_cap(self):
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iopairs = [('http://127.0.0.1:8123/uri/URI:DIR2:yar9nnzsho6czczieeesc65sry:upp1pmypwxits3w9izkszgo1zbdnsyk3nm6h7e19s7os7s6yhh9y',
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'URI:DIR2:yar9nnzsho6czczieeesc65sry:upp1pmypwxits3w9izkszgo1zbdnsyk3nm6h7e19s7os7s6yhh9y'),
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('http://127.0.0.1:8123/uri/URI%3ACHK%3Ak7ktp1qr7szmt98s1y3ha61d9w%3A8tiy8drttp65u79pjn7hs31po83e514zifdejidyeo1ee8nsqfyy%3A3%3A12%3A242?filename=welcome.html',
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'URI:CHK:k7ktp1qr7szmt98s1y3ha61d9w:8tiy8drttp65u79pjn7hs31po83e514zifdejidyeo1ee8nsqfyy:3:12:242?filename=welcome.html')]
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for input, output in iopairs:
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result = tahoe_fuse.canonicalize_cap(input)
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self.failUnlessEqual(output, result, 'input == %r' % (input,))
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### Misc:
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def gather_output(*args, **kwargs):
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'''
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This expects the child does not require input and that it closes
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stdout/err eventually.
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'''
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p = subprocess.Popen(stdout = subprocess.PIPE,
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stderr = subprocess.STDOUT,
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*args,
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**kwargs)
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output = p.stdout.read()
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exitcode = p.wait()
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return (exitcode, output)
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ExpectedCreationOutput = r'(introducer|client) created in (?P<path>.*?)\n'
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ExpectedStartOutput = r'STARTING (?P<path>.*?)\n(introducer|client) node probably started'
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Usage = '''
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Usage: %s [target]
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Run tests for the given target.
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target is one of: unit, system, or all
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''' % (sys.argv[0],)
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if __name__ == '__main__':
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main()
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