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https://github.com/gsi-upm/soil
synced 2024-11-22 11:12:29 +00:00
Fix state and networkx dynamic attributes
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5d89827ccf
commit
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@ -1 +1 @@
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0.11.1
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0.11.3
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@ -53,7 +53,7 @@ class BaseAgent(nxsim.BaseAgent, metaclass=MetaAgent):
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self.alive = True
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self.alive = True
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real_state = deepcopy(self.defaults)
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real_state = deepcopy(self.defaults)
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real_state.update(state or {})
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real_state.update(state or {})
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self._state = real_state
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self.state = real_state
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self.interval = interval
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self.interval = interval
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if not hasattr(self, 'level'):
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if not hasattr(self, 'level'):
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@ -67,10 +67,17 @@ class BaseAgent(nxsim.BaseAgent, metaclass=MetaAgent):
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@property
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@property
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def state(self):
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def state(self):
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return self._state
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'''
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Return the agent itself, which behaves as a dictionary.
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Changes made to `agent.state` will be reflected in the history.
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This method shouldn't be used, but is kept here for backwards compatibility.
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'''
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return self
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@state.setter
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@state.setter
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def state(self, value):
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def state(self, value):
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self._state = {}
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for k, v in value.items():
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for k, v in value.items():
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self[k] = v
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self[k] = v
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@ -79,21 +86,24 @@ class BaseAgent(nxsim.BaseAgent, metaclass=MetaAgent):
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key, t_step = key
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key, t_step = key
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k = history.Key(key=key, t_step=t_step, agent_id=self.id)
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k = history.Key(key=key, t_step=t_step, agent_id=self.id)
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return self.env[k]
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return self.env[k]
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return self.state.get(key, None)
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return self._state.get(key, None)
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def __delitem__(self, key):
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def __delitem__(self, key):
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self.state[key] = None
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self._state[key] = None
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def __contains__(self, key):
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def __contains__(self, key):
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return key in self.state
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return key in self._state
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def __setitem__(self, key, value):
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def __setitem__(self, key, value):
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self.state[key] = value
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self._state[key] = value
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k = history.Key(t_step=self.now,
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k = history.Key(t_step=self.now,
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agent_id=self.id,
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agent_id=self.id,
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key=key)
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key=key)
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self.env[k] = value
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self.env[k] = value
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def items(self):
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return self._state.items()
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def get(self, key, default=None):
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def get(self, key, default=None):
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return self[key] if key in self else default
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return self[key] if key in self else default
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@ -263,31 +263,30 @@ class SoilEnvironment(nxsim.NetworkEnvironment):
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history = self[agent.id, None, None]
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history = self[agent.id, None, None]
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if not history:
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if not history:
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continue
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continue
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for t_step, state in reversed(sorted(list(history.items()))):
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for t_step, attribute, value in sorted(list(history)):
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for attribute, value in state.items():
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if attribute == 'visible':
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if attribute == 'visible':
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nowvisible = state[attribute]
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nowvisible = value
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if nowvisible and not lastvisible:
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if nowvisible and not lastvisible:
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laststep = t_step
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laststep = t_step
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if not nowvisible and lastvisible:
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if not nowvisible and lastvisible:
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spells.append((laststep, t_step))
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spells.append((laststep, t_step))
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lastvisible = nowvisible
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lastvisible = nowvisible
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else:
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continue
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key = 'attr_' + attribute
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key = 'attr_' + attribute
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if key not in attributes:
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if key not in attributes:
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attributes[key] = list()
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attributes[key] = list()
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if key not in lastattributes:
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if key not in lastattributes:
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lastattributes[key] = (state[attribute], t_step)
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lastattributes[key] = (value, t_step)
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elif lastattributes[key][0] != value:
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elif lastattributes[key][0] != value:
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last_value, laststep = lastattributes[key]
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last_value, laststep = lastattributes[key]
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value = (last_value, t_step, laststep)
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commit_value = (last_value, laststep, t_step)
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if key not in attributes:
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if key not in attributes:
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attributes[key] = list()
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attributes[key] = list()
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attributes[key].append(value)
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attributes[key].append(commit_value)
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lastattributes[key] = (state[attribute], t_step)
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lastattributes[key] = (value, t_step)
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for k, v in lastattributes.items():
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for k, v in lastattributes.items():
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attributes[k].append((v[0], 0, v[1]))
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attributes[k].append((v[0], v[1], None))
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if lastvisible:
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if lastvisible:
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spells.append((laststep, None))
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spells.append((laststep, None))
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if spells:
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if spells:
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@ -102,7 +102,9 @@ class History:
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t_steps=t_steps,
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t_steps=t_steps,
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keys=keys)
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keys=keys)
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r = Records(df, filter=key, dtypes=self._dtypes)
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r = Records(df, filter=key, dtypes=self._dtypes)
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if r.resolved:
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return r.value()
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return r.value()
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return r
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@ -216,16 +218,23 @@ class Records():
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return i.iloc[ix]
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return i.iloc[ix]
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except KeyError:
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except KeyError:
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return self.dtypes[f.key][2]()
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return self.dtypes[f.key][2]()
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return self
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return list(self)
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def __getitem__(self, k):
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def __getitem__(self, k):
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n = copy.copy(self)
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n = copy.copy(self)
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n.filter(k)
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n.filter(k)
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if n.resolved:
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return n.value()
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return n.value()
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return n
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def __len__(self):
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def __len__(self):
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return len(self._df)
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return len(self._df)
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def __str__(self):
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if self.resolved:
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return str(self.value())
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return '<Records for [{}]>'.format(self._filter)
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Key = namedtuple('Key', ['agent_id', 't_step', 'key'])
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Key = namedtuple('Key', ['agent_id', 't_step', 'key'])
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Record = namedtuple('Record', 'agent_id t_step key value')
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Record = namedtuple('Record', 'agent_id t_step key value')
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@ -237,6 +237,22 @@ class TestMain(TestCase):
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env = environment.SoilEnvironment(topology=G, dry_run=True)
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env = environment.SoilEnvironment(topology=G, dry_run=True)
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env.dump_gexf('/tmp/dump-gexf')
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env.dump_gexf('/tmp/dump-gexf')
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def test_save_graph(self):
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'''
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The history_to_graph method should return a valid networkx graph.
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The state of the agent should be encoded as intervals in the nx graph.
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'''
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G = nx.cycle_graph(5)
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distribution = agents.calculate_distribution(None, agents.BaseAgent)
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env = environment.SoilEnvironment(topology=G, network_agents=distribution, dry_run=True)
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env[0, 0, 'testvalue'] = 'start'
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env[0, 10, 'testvalue'] = 'finish'
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nG = env.history_to_graph()
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values = nG.node[0]['attr_testvalue']
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assert ('start', 0, 10) in values
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assert ('finish', 10, None) in values
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def make_example_test(path, config):
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def make_example_test(path, config):
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def wrapped(self):
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def wrapped(self):
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