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import types,itertools,time |
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| 7 |
from select import select |
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from config import conf |
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from utils import do_graph |
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from error import log_interactive |
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from plist import PacketList |
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from data import MTU |
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class ATMT: |
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STATE = "State" |
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ACTION = "Action" |
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CONDITION = "Condition" |
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RECV = "Receive condition" |
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TIMEOUT = "Timeout condition" |
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class NewStateRequested(Exception): |
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def __init__(self, state_func, automaton, *args, **kargs): |
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self.func = state_func |
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self.state = state_func.atmt_state |
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self.initial = state_func.atmt_initial |
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self.error = state_func.atmt_error |
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self.final = state_func.atmt_final |
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Exception.__init__(self, "Request state [%s]" % self.state) |
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self.automaton = automaton |
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self.args = args |
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self.kargs = kargs |
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self.action_parameters() |
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def action_parameters(self, *args, **kargs): |
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self.action_args = args |
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self.action_kargs = kargs |
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return self |
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def run(self): |
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return self.func(self.automaton, *self.args, **self.kargs) |
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@staticmethod |
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def state(initial=0,final=0,error=0): |
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def deco(f,initial=initial, final=final): |
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f.atmt_type = ATMT.STATE |
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f.atmt_state = f.func_name |
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f.atmt_initial = initial |
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f.atmt_final = final |
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f.atmt_error = error |
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def state_wrapper(self, *args, **kargs): |
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return ATMT.NewStateRequested(f, self, *args, **kargs) |
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state_wrapper.func_name = "%s_wrapper" % f.func_name |
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state_wrapper.atmt_type = ATMT.STATE |
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state_wrapper.atmt_state = f.func_name |
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state_wrapper.atmt_initial = initial |
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state_wrapper.atmt_final = final |
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state_wrapper.atmt_error = error |
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state_wrapper.atmt_origfunc = f |
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return state_wrapper |
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return deco |
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@staticmethod |
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def action(cond, prio=0): |
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def deco(f,cond=cond): |
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if not hasattr(f,"atmt_type"): |
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f.atmt_cond = {} |
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f.atmt_type = ATMT.ACTION |
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f.atmt_cond[cond.atmt_condname] = prio |
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return f |
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return deco |
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@staticmethod |
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def condition(state, prio=0): |
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def deco(f, state=state): |
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f.atmt_type = ATMT.CONDITION |
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f.atmt_state = state.atmt_state |
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f.atmt_condname = f.func_name |
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f.atmt_prio = prio |
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return f |
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return deco |
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@staticmethod |
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def receive_condition(state, prio=0): |
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def deco(f, state=state): |
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f.atmt_type = ATMT.RECV |
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f.atmt_state = state.atmt_state |
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f.atmt_condname = f.func_name |
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f.atmt_prio = prio |
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return f |
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return deco |
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@staticmethod |
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def timeout(state, timeout): |
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def deco(f, state=state, timeout=timeout): |
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f.atmt_type = ATMT.TIMEOUT |
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f.atmt_state = state.atmt_state |
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f.atmt_timeout = timeout |
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f.atmt_condname = f.func_name |
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return f |
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return deco |
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class Automaton_metaclass(type): |
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def __new__(cls, name, bases, dct): |
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cls = super(Automaton_metaclass, cls).__new__(cls, name, bases, dct) |
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cls.states={} |
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cls.state = None |
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cls.recv_conditions={} |
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cls.conditions={} |
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cls.timeout={} |
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cls.actions={} |
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cls.initial_states=[] |
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members = {} |
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classes = [cls] |
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while classes: |
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c = classes.pop(0) |
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classes += list(c.__bases__) |
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for k,v in c.__dict__.iteritems(): |
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if k not in members: |
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members[k] = v |
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decorated = [v for v in members.itervalues() |
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if type(v) is types.FunctionType and hasattr(v, "atmt_type")] |
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for m in decorated: |
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if m.atmt_type == ATMT.STATE: |
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s = m.atmt_state |
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cls.states[s] = m |
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cls.recv_conditions[s]=[] |
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cls.conditions[s]=[] |
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cls.timeout[s]=[] |
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if m.atmt_initial: |
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cls.initial_states.append(m) |
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elif m.atmt_type in [ATMT.CONDITION, ATMT.RECV, ATMT.TIMEOUT]: |
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cls.actions[m.atmt_condname] = [] |
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for m in decorated: |
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if m.atmt_type == ATMT.CONDITION: |
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cls.conditions[m.atmt_state].append(m) |
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elif m.atmt_type == ATMT.RECV: |
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cls.recv_conditions[m.atmt_state].append(m) |
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elif m.atmt_type == ATMT.TIMEOUT: |
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cls.timeout[m.atmt_state].append((m.atmt_timeout, m)) |
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elif m.atmt_type == ATMT.ACTION: |
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for c in m.atmt_cond: |
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cls.actions[c].append(m) |
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for v in cls.timeout.itervalues(): |
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v.sort(lambda (t1,f1),(t2,f2): cmp(t1,t2)) |
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v.append((None, None)) |
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for v in itertools.chain(cls.conditions.itervalues(), |
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cls.recv_conditions.itervalues()): |
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v.sort(lambda c1,c2: cmp(c1.atmt_prio,c2.atmt_prio)) |
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for condname,actlst in cls.actions.iteritems(): |
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actlst.sort(lambda c1,c2: cmp(c1.atmt_cond[condname], c2.atmt_cond[condname])) |
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return cls |
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def graph(self, **kargs): |
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s = 'digraph "%s" {\n' % self.__class__.__name__ |
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se = "" |
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for st in self.states.itervalues(): |
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if st.atmt_initial: |
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se = ('\t"%s" [ style=filled, fillcolor=blue, shape=box, root=true];\n' % st.atmt_state)+se |
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elif st.atmt_final: |
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se += '\t"%s" [ style=filled, fillcolor=green, shape=octagon ];\n' % st.atmt_state |
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elif st.atmt_error: |
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se += '\t"%s" [ style=filled, fillcolor=red, shape=octagon ];\n' % st.atmt_state |
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s += se |
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for st in self.states.values(): |
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for n in st.atmt_origfunc.func_code.co_names+st.atmt_origfunc.func_code.co_consts: |
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if n in self.states: |
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s += '\t"%s" -> "%s" [ color=green ];\n' % (st.atmt_state,n) |
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for c,k,v in [("purple",k,v) for k,v in self.conditions.items()]+[("red",k,v) for k,v in self.recv_conditions.items()]: |
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for f in v: |
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for n in f.func_code.co_names+f.func_code.co_consts: |
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if n in self.states: |
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l = f.atmt_condname |
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for x in self.actions[f.atmt_condname]: |
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l += "\\l>[%s]" % x.func_name |
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s += '\t"%s" -> "%s" [label="%s", color=%s];\n' % (k,n,l,c) |
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for k,v in self.timeout.iteritems(): |
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for t,f in v: |
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if f is None: |
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continue |
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for n in f.func_code.co_names+f.func_code.co_consts: |
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if n in self.states: |
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l = "%s/%.1fs" % (f.atmt_condname,t) |
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for x in self.actions[f.atmt_condname]: |
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l += "\\l>[%s]" % x.func_name |
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s += '\t"%s" -> "%s" [label="%s",color=blue];\n' % (k,n,l) |
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s += "}\n" |
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return do_graph(s, **kargs) |
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class Automaton: |
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__metaclass__ = Automaton_metaclass |
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def __init__(self, *args, **kargs): |
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self.debug_level=0 |
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self.init_args=args |
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self.init_kargs=kargs |
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self.parse_args(*args, **kargs) |
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def debug(self, lvl, msg): |
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if self.debug_level >= lvl: |
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log_interactive.debug(msg) |
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class ErrorState(Exception): |
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def __init__(self, msg, result=None): |
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Exception.__init__(self, msg) |
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self.result = result |
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class Stuck(ErrorState): |
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pass |
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def parse_args(self, debug=0, store=1, **kargs): |
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self.debug_level=debug |
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self.socket_kargs = kargs |
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| 229 |
self.store_packets = store |
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def master_filter(self, pkt): |
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return True |
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def run_condition(self, cond, *args, **kargs): |
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try: |
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cond(self,*args, **kargs) |
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except ATMT.NewStateRequested, state_req: |
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self.debug(2, "%s [%s] taken to state [%s]" % (cond.atmt_type, cond.atmt_condname, state_req.state)) |
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| 240 |
if cond.atmt_type == ATMT.RECV: |
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self.packets.append(args[0]) |
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| 242 |
for action in self.actions[cond.atmt_condname]: |
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self.debug(2, " + Running action [%s]" % action.func_name) |
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action(self, *state_req.action_args, **state_req.action_kargs) |
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raise |
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else: |
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self.debug(2, "%s [%s] not taken" % (cond.atmt_type, cond.atmt_condname)) |
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def run(self, *args, **kargs): |
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a = args+self.init_args[len(args):] |
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k = self.init_kargs |
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k.update(kargs) |
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self.parse_args(*a,**k) |
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self.state=self.initial_states[0](self) |
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self.send_sock = conf.L3socket() |
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l = conf.L2listen(**self.socket_kargs) |
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self.packets = PacketList(name="session[%s]"%self.__class__.__name__) |
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| 262 |
while 1: |
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try: |
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self.debug(1, "## state=[%s]" % self.state.state) |
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| 265 |
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state_output = self.state.run() |
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| 268 |
if self.state.error: |
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raise self.ErrorState("Reached %s: [%r]" % (self.state.state, state_output), result=state_output) |
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| 270 |
if self.state.final: |
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return state_output |
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| 272 |
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| 273 |
if state_output is None: |
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| 274 |
state_output = () |
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| 275 |
elif type(state_output) is not list: |
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| 276 |
state_output = state_output, |
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| 277 |
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for cond in self.conditions[self.state.state]: |
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self.run_condition(cond, *state_output) |
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if ( len(self.recv_conditions[self.state.state]) == 0 |
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| 284 |
and len(self.timeout[self.state.state]) == 1 ): |
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raise self.Stuck("stuck in [%s]" % self.state.state,result=state_output) |
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| 287 |
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expirations = iter(self.timeout[self.state.state]) |
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| 289 |
next_timeout,timeout_func = expirations.next() |
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| 290 |
t0 = time.time() |
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| 291 |
|
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| 292 |
while 1: |
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| 293 |
t = time.time()-t0 |
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| 294 |
if next_timeout is not None: |
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| 295 |
if next_timeout <= t: |
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| 296 |
self.run_condition(timeout_func, *state_output) |
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| 297 |
next_timeout,timeout_func = expirations.next() |
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| 298 |
if next_timeout is None: |
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| 299 |
remain = None |
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| 300 |
else: |
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| 301 |
remain = next_timeout-t |
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| 302 |
|
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| 303 |
r,_,_ = select([l],[],[],remain) |
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| 304 |
if l in r: |
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| 305 |
pkt = l.recv(MTU) |
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| 306 |
if pkt is not None: |
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| 307 |
if self.master_filter(pkt): |
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| 308 |
self.debug(3, "RECVD: %s" % pkt.summary()) |
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| 309 |
for rcvcond in self.recv_conditions[self.state.state]: |
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| 310 |
self.run_condition(rcvcond, pkt, *state_output) |
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| 311 |
else: |
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| 312 |
self.debug(4, "FILTR: %s" % pkt.summary()) |
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| 313 |
|
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| 314 |
except ATMT.NewStateRequested,state_req: |
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| 315 |
self.debug(2, "switching from [%s] to [%s]" % (self.state.state,state_req.state)) |
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| 316 |
self.state = state_req |
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| 317 |
except KeyboardInterrupt: |
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| 318 |
self.debug(1,"Interrupted by user") |
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| 319 |
break |
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| 320 |
|
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| 321 |
def my_send(self, pkt): |
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| 322 |
self.send_sock.send(pkt) |
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| 323 |
|
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| 324 |
def send(self, pkt): |
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| 325 |
self.my_send(pkt) |
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| 326 |
self.debug(3,"SENT : %s" % pkt.summary()) |
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| 327 |
self.packets.append(pkt.copy()) |
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| 328 |
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| 329 |
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| 330 |
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