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# Copyright (C) 2009, 2010  Roman Zimbelmann <romanz@lavabit.com>
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program.  If not, see <http://www.gnu.org/licenses/>.

if __name__ == '__main__': from __init__ import init; init()
import unittest
import gc
from ranger.ext.signal_dispatcher import *

class TestSignal(unittest.TestCase):
	def setUp(self):
		self.sd = SignalDispatcher()

	def test_signal_register_emit(self):
		sd = self.sd
		def poo(sig):
			self.assert_('works' in sig)
			self.assertEqual('yes', sig.works)
		handler = sd.signal_bind('x', poo)

		sd.signal_emit('x', works='yes')
		sd.signal_unbind(handler)
		sd.signal_emit('x')

	def test_signal_order(self):
		sd = self.sd
		lst = []
		def addn(n):
			return lambda _: lst.append(n)

		sd.signal_bind('x', addn(6))
		sd.signal_bind('x', addn(3), priority=1)
		sd.signal_bind('x', addn(2), priority=1)
		sd.signal_bind('x', addn(9), priority=0)
		sd.signal_bind('x', addn(1337), priority=0.7)
		sd.signal_emit('x')

		self.assert_(lst.index(3) < lst.index(6))
		self.assert_(lst.index(2) < lst.index(6))
		self.assert_(lst.index(6) < lst.index(9))
		self.assert_(lst.index(1337) < lst.index(6))
		self.assert_(lst.index(1337) < lst.index(9))
		self.assert_(lst.index(1337) > lst.index(2))

	def test_modifying_arguments(self):
		sd = self.sd
		lst = []
		def modify(s):
			s.number = 5
		def set_number(s):
			lst.append(s.number)
		def stopit(s):
			s.stop()

		sd.signal_bind('setnumber', set_number)
		sd.signal_emit('setnumber', number=100)
		self.assertEqual(100, lst[-1])

		sd.signal_bind('setnumber', modify, priority=1)
		sd.signal_emit('setnumber', number=100)
		self.assertEqual(5, lst[-1])

		lst.append(None)
		sd.signal_bind('setnumber', stopit, priority=1)
		sd.signal_emit('setnumber', number=100)
		self.assertEqual(None, lst[-1])

	def test_weak_refs(self):
		sd = self.sd
		is_deleted = [False]

		class Foo(object):
			def __init__(self):
				self.alphabet = ['a']
			def calc(self, signal):
				self.alphabet.append(chr(ord(self.alphabet[-1]) + 1))
			def __del__(self):
				is_deleted[0] = True

		foo = Foo()
		alphabet = foo.alphabet
		calc = foo.calc

		del foo
		self.assertEqual('a', ''.join(alphabet))
		sd.signal_bind('mysignal', calc, weak=True)
		sd.signal_emit('mysignal')
		self.assertEqual('ab', ''.join(alphabet))
		self.assertFalse(is_deleted[0])

		del calc
		self.assertTrue(is_deleted[0])

	def test_weak_refs_dead_on_arrival(self):
		sd = self.sd
		is_deleted = [False]

		class Foo(object):
			def __init__(self):
				self.alphabet = ['a']
			def calc(self, signal):
				self.alphabet.append(chr(ord(self.alphabet[-1]) + 1))
			def __del__(self):
				is_deleted[0] = True

		foo = Foo()
		alphabet = foo.alphabet

		self.assertEqual('a', ''.join(alphabet))
		sd.signal_bind('mysignal', foo.calc, weak=True)

		sd.signal_emit('mysignal')
		self.assertEqual('ab', ''.join(alphabet))
		self.assertFalse(is_deleted[0])

		del foo

		sd.signal_emit('mysignal')
		self.assertEqual('ab', ''.join(alphabet))
		self.assertTrue(is_deleted[0])

if __name__ == '__main__':
	unittest.main()
ass="o">="L6" class="LineNr"> 6 </span><span class="subxFunction">allocate-array2</span>: <span class="subxComment"># ad: (addr allocation-descriptor), array-len: int, elem-size: int, out: (addr handle array _)</span> <span id="L7" class="LineNr"> 7 </span> <span class="subxS1Comment"># . prologue</span> <span id="L8" class="LineNr"> 8 </span> 55/push-ebp <span id="L9" class="LineNr"> 9 </span> 89/&lt;- %ebp 4/r32/esp <span id="L10" class="LineNr">10 </span> <span class="subxS1Comment"># . save registers</span> <span id="L11" class="LineNr">11 </span> 50/push-eax <span id="L12" class="LineNr">12 </span> 52/push-edx <span id="L13" class="LineNr">13 </span> <span class="subxComment">#</span> <span id="L14" class="LineNr">14 </span> 8b/-&gt; *(ebp+0xc) 0/r32/eax <span id="L15" class="LineNr">15 </span> f7 4/subop/multiply-into-edx-eax *(ebp+0x10) <span id="L16" class="LineNr">16 </span> <span class="subxComment"># TODO: check edx for overflow</span> <span id="L17" class="LineNr">17 </span> (<a href='120allocate.subx.html#L556'>allocate-array</a> *(ebp+8) %eax *(ebp+0x14)) <span id="L18" class="LineNr">18 </span><span class="Constant">$allocate-array2:end</span>: <span id="L19" class="LineNr">19 </span> <span class="subxS1Comment"># . restore registers</span> <span id="L20" class="LineNr">20 </span> 5a/pop-to-edx <span id="L21" class="LineNr">21 </span> 58/pop-to-eax <span id="L22" class="LineNr">22 </span> <span class="subxS1Comment"># . epilogue</span> <span id="L23" class="LineNr">23 </span> 89/&lt;- %esp 5/r32/ebp <span id="L24" class="LineNr">24 </span> 5d/pop-to-ebp <span id="L25" class="LineNr">25 </span> c3/return </pre> </body> </html> <!-- vim: set foldmethod=manual : -->