##// END OF EJS Templates
Make comm manager (mostly) independent of InteractiveShell...
Make comm manager (mostly) independent of InteractiveShell This makes it possible to use comms from wrapper kernels, without instantiating the full IPython shell machinery. The one remaining place where we need a reference to shell is to fire pre_execute and post_execute hooks (which are needed to get mpl figures right). This is a pure IPythonism, that it should be safe to ignore if shell is not set.

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test_kernel.py
95 lines | 3.2 KiB | text/x-python | PythonLexer
#-------------------------------------------------------------------------------
# Copyright (C) 2012 The IPython Development Team
#
# Distributed under the terms of the BSD License. The full license is in
# the file COPYING, distributed as part of this software.
#-------------------------------------------------------------------------------
#-----------------------------------------------------------------------------
# Imports
#-----------------------------------------------------------------------------
from __future__ import print_function
# Standard library imports
import sys
import unittest
# Local imports
from IPython.kernel.inprocess.blocking import BlockingInProcessKernelClient
from IPython.kernel.inprocess.manager import InProcessKernelManager
from IPython.kernel.inprocess.ipkernel import InProcessKernel
from IPython.testing.decorators import skipif_not_matplotlib
from IPython.utils.io import capture_output
from IPython.utils import py3compat
if py3compat.PY3:
from io import StringIO
else:
from StringIO import StringIO
#-----------------------------------------------------------------------------
# Test case
#-----------------------------------------------------------------------------
class InProcessKernelTestCase(unittest.TestCase):
def setUp(self):
self.km = InProcessKernelManager()
self.km.start_kernel()
self.kc = BlockingInProcessKernelClient(kernel=self.km.kernel)
self.kc.start_channels()
@skipif_not_matplotlib
def test_pylab(self):
""" Does pylab work in the in-process kernel?
"""
kc = self.kc
kc.execute('%pylab')
msg = get_stream_message(kc)
self.assert_('matplotlib' in msg['content']['data'])
def test_raw_input(self):
""" Does the in-process kernel handle raw_input correctly?
"""
io = StringIO('foobar\n')
sys_stdin = sys.stdin
sys.stdin = io
try:
if py3compat.PY3:
self.kc.execute('x = input()')
else:
self.kc.execute('x = raw_input()')
finally:
sys.stdin = sys_stdin
self.assertEqual(self.km.kernel.shell.user_ns.get('x'), 'foobar')
def test_stdout(self):
""" Does the in-process kernel correctly capture IO?
"""
kernel = InProcessKernel()
with capture_output() as io:
kernel.shell.run_cell('print("foo")')
self.assertEqual(io.stdout, 'foo\n')
kc = BlockingInProcessKernelClient(kernel=kernel)
kernel.frontends.append(kc)
kc.shell_channel.execute('print("bar")')
msg = get_stream_message(kc)
self.assertEqual(msg['content']['data'], 'bar\n')
#-----------------------------------------------------------------------------
# Utility functions
#-----------------------------------------------------------------------------
def get_stream_message(kernel_client, timeout=5):
""" Gets a single stream message synchronously from the sub channel.
"""
while True:
msg = kernel_client.get_iopub_msg(timeout=timeout)
if msg['header']['msg_type'] == 'stream':
return msg
if __name__ == '__main__':
unittest.main()