initial commit with .py files

This commit is contained in:
Artur Meski
2015-12-07 23:09:37 +00:00
parent edea811ad8
commit 167284eb85
12 changed files with 2248 additions and 0 deletions

9
bftype.py Normal file
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#from enum import Enum
class opertype:
"""Boolean Formulae Types"""
unspec = 0
o_and = 1
o_or = 2
o_not = 3
o_var = 10

69
boolform.py Executable file
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#!/usr/bin/env python
import bftype
class BoolForm:
def __init__(self, a=None):
self.initAll()
if a != None and isinstance(a, int):
self.setupVarNode(a)
def initAll(self):
self.oper = bftype.opertype.unspec
def setupConjunction(self, lhs, rhs):
self.oper = bftype.opertype.o_and
self.sfLeft = lhs
self.sfRight = rhs
def setupDisjunction(self, lhs, rhs):
self.oper = bftype.opertype.o_or
self.sfLeft = lhs
self.sfRight = rhs
def setupNegation(self, form):
self.oper = bftype.opertype.o_not
self.subForm = form
def setupVarNode(self, var_id):
if not isinstance(var_id, int):
print("var_id must be an integer")
raise
self.oper = bftype.opertype.o_var
self.varid = var_id
def __add__(self, x):
r = BoolForm()
r.setupDisjunction(self,x)
return r
def __mul__(self, x):
r = BoolForm()
r.setupConjunction(self,x)
return r
def __neg__(self):
r = BoolForm()
r.setupNegation(self)
return r
def __str__(self):
if self.oper == bftype.opertype.o_or:
return "(" + str(self.sfLeft) + " or " + str(self.sfRight) + ")"
elif self.oper == bftype.opertype.o_and:
return "(" + str(self.sfLeft) + " and " + str(self.sfRight) + ")"
elif self.oper == bftype.opertype.o_not:
return "-" + str(self.subForm)
elif self.oper == bftype.opertype.o_var:
return str(self.varid)
else:
print("This should not happen. Unknown operator?")
raise
if __name__ == "__main__":
y = (BoolForm(1) + -BoolForm(2) * BoolForm(3)) + BoolForm(2)
print(y)

305
distrib_rctsys.py Normal file
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#!/usr/bin/env python
"""
--- Distributed Reaction Systems Manipulation
"""
from sys import exit
class DistributedReactionSystem(object):
def __init__(self):
self.__reactions = []
self.__background_set = []
self.__reactions_by_prod = []
self.__states = []
self.__transitions = []
self.__init_state = None
self.__context_sets_size = None
@property
def background_set(self):
return self.__background_set
@property
def set_of_background_ids(self):
return set(range(len(self.__background_set)))
@property
def components_count(self):
return len(self.__reactions)
def add_bg_set_entity(self, name):
if not self.is_in_background_set(name):
self.__background_set.append(name)
else:
print("The entity \"" + str(name) + "\" is already on the list")
exit(1)
def add_bg_set_entities(self, names):
for name in names:
self.add_bg_set_entity(name)
def is_in_background_set(self, entity):
"""Checks if the given name is valid wrt the background set="""
if entity in self.__background_set:
return True
else:
return False
def get_entity_id(self, name):
try:
return self.__background_set.index(name)
except ValueError:
print("Undefined background set entity: " + repr(name))
exit(1)
def get_state_ids(self, state):
ids = []
for entity in state:
ids.append(self.get_entity_id(entity))
return ids
def get_entity_name(self, entity_id):
"""Returns the string corresponding to the entity"""
return self.__background_set[entity_id]
def ensure_reactions(self, k):
while len(self.__reactions) <= k:
self.__reactions.append([])
def add_reaction(self, k, R, I, P):
"""Adds a reaction"""
if R == [] or P == []:
print("No reactants of products defined")
raise
reactants = []
for entity in R:
reactants.append(self.get_entity_id(entity))
inhibitors = []
for entity in I:
inhibitors.append(self.get_entity_id(entity))
products = []
for entity in P:
products.append(self.get_entity_id(entity))
self.ensure_reactions(k)
self.__reactions[k].append((reactants, inhibitors, products))
def entities_names_set_to_str(self, entities):
s = ""
for entity in entities:
s += entity + ", "
s = s[:-2]
return s
def entities_ids_set_to_str(self, entities):
s = ""
for entity in entities:
s += self.get_entity_name(entity) + ", "
s = s[:-2]
return s
def show_reactions(self):
print("[*] Reactions:")
for i in range(len(self.__reactions)):
local_reactions = self.__reactions[i]
print(" agent = " + str(i))
for rcts,inhib,prods in local_reactions:
print("\t - ( R={" + self.entities_ids_set_to_str(rcts) + "}, \tI={" + self.entities_ids_set_to_str(inhib) + "}, \tP={" + self.entities_ids_set_to_str(prods) + "} )")
def show_background_set(self):
print("[*] Background set: {" + self.entities_names_set_to_str(self.__background_set) + "}")
def show(self):
self.show_background_set()
self.show_reactions()
self.show_states()
self.show_transitions()
print()
def reactions_by_product_are_cached(self, component_id):
if len(self.__reactions_by_prod) > component_id:
if self.__reactions_by_prod[component_id] != None:
return True
return False
def get_reactions_by_product(self, component_id):
"""Sorts reactions for the component given by component_id by their products and returns a dictionary of products"""
if self.reactions_by_product_are_cached(component_id):
return self.__reactions_by_prod[component_id]
producible_entities = set()
for reactants,inhibitors,products in self.__reactions[component_id]:
producible_entities = producible_entities.union(set(products))
reactions_by_prod = dict()
for prod_entity in producible_entities:
reactions_by_prod[prod_entity] = []
for reactants,inhibitors,products in self.__reactions[component_id]:
if prod_entity in products:
reactions_by_prod[prod_entity].append([reactants,inhibitors])
# save in cache
while len(self.__reactions_by_prod) <= component_id: # ensure that the size of cache is right
self.__reactions_by_prod.append(None)
self.__reactions_by_prod[component_id] = reactions_by_prod
return reactions_by_prod
@property
def states(self):
return self.__states
@property
def transitions(self):
return self.__transitions
def add_state(self, name):
if name not in self.__states:
self.__states.append(name)
else:
print("\'%s\' already added. skipping..." % (name,))
def add_init_state(self, name):
self.add_state(name)
self.__init_state = self.__states.index(name)
def get_init_state_name(self):
if self.__init_state == None:
return None
return self.__states[self.__init_state]
def is_state(self, name):
if name in self.__states:
return True
else:
return False
def get_state_id(self, name):
try:
return self.__states.index(name)
except ValueError:
print("Undefined context automaton state: " + repr(name))
exit(1)
def get_init_state_id(self):
return self.__init_state
def print_states(self):
for state in self.__states:
print(state)
def is_valid_context_sets(self, context_sets):
for c in context_sets:
if not self.is_valid_context(c):
return False
return True
def is_valid_context(self, context):
if set(context).issubset(self.__background_set):
return True
else:
return False
def add_transition(self, src, label, dst):
recipients = label[0]
context_sets = label[1]
if not type(context_sets) is list:
print("Context sets must be of type list")
exit(1)
for s in context_sets:
if not type(s) is set and not type(s) is list:
print("Each context set must be of type set or list")
exit(1)
if self.__context_sets_size == None:
self.__context_sets_size = len(context_sets)
else:
if len(context_sets) != self.__context_sets_size:
print("Inconsistent size of the context sets: " + str(len(context_sets)) + " != " + str(self.__context_sets_size))
exit(1)
if not self.is_valid_context_sets(context_sets):
raise RuntimeError("one of the entities in the context set is unknown (undefined)!")
if not self.is_state(src):
raise RuntimeError("\"" + src + "\" is an unknown (undefined) state")
if not self.is_state(dst):
raise RuntimeError("\"" + dst + "\" is an unknown (undefined) state")
new_context_sets = []
for c in context_sets:
new_c_set = set()
for e in set(c):
new_c_set.add(self.get_entity_id(e))
new_context_sets.append(new_c_set)
recipients = set(recipients)
self.__transitions.append((self.get_state_id(src),(recipients,new_context_sets),self.get_state_id(dst)))
def context2str(self, context_sets):
"""Converts the set of entities ids into the string with their names"""
s = "["
for ctx in context_sets:
if len(ctx) == 0:
s += " 0"
else:
s += " {"
for c in ctx:
s += " " + self.get_entity_name(c)
s += " }"
s += " ]"
return s
def show_transitions(self):
print("[*] Context automaton transitions:")
for transition in self.__transitions:
str_transition = str(transition[0]) + " --( "
str_transition += str(list(transition[1][0])) + "<=" + self.context2str(transition[1][1])
str_transition += " )--> " + str(transition[2])
print("\t- " + str_transition)
def show_states(self):
init_state_name = self.get_init_state_name()
print("[*] Context automaton states:")
for state in self.__states:
print("\t- " + state, end="")
if state == init_state_name:
print(" [init]")
else:
print()
def sanity_check(self):
"""Performs a sanity check of the defined distributed reaction system"""
print("[i] Performing sanity check of the DRS")
if self.__reactions == []:
print("No reactions defined")
exit(1)
if self.__background_set == []:
print("Empty background set")
exit(1)
if self.__init_state == None:
print("Initial state not specified")
exit(1)
if self.__context_sets_size != len(self.__reactions):
print("Inconsistent sizes of the context sets with respect to the number of components/agents/processes: " + str(self.__context_sets_size) + " != " + str(len(self.__reactions)))
exit(1)

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example.py Normal file
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from z3 import *
p0 = Bool('p0')
p1 = Bool('p1')
p2 = Bool('p2')
p3 = Bool('p3')
p4 = Bool('p4')
p0e = Bool('p0e')
p1e = Bool('p1e')
p2e = Bool('p2e')
p3e = Bool('p3e')
p4e = Bool('p4e')
p0p = Bool('p0p')
p1p = Bool('p1p')
p2p = Bool('p2p')
p3p = Bool('p3p')
p4p = Bool('p4p')
Cd_a1 = And( Or(p1,p1e), Or(p4,p4e), Not( Or(p2,p2e) ) )
Cd_a2 = And( Or(p2,p2e), Not( Or(p3,p3e) ) )
Cd_a3 = And( Or(p1,p1e), Or(p3,p3e), Not( Or(p2,p2e) ) )
Cd_a4 = And( Or(p3,p3e), Not( Or(p2,p2e) ) )
En1 = Or(Cd_a1,Cd_a2,Cd_a3,Cd_a4)
En2 = Or(Cd_a1,Cd_a3)
En3 = Cd_a2
En4 = Cd_a2
Pr1 = Or( And(En1,p1p) , And( Not(En1), Not(p1p)) )
Pr2 = Or( And(En2,p2p) , And( Not(En2), Not(p2p)) )
Pr3 = Or( And(En3,p3p) , And( Not(En3), Not(p3p)) )
Pr4 = Or( And(En4,p4p) , And( Not(En4), Not(p4p)) )
PrConjunction = And( Pr1, Pr2, Pr3, Pr4 )
print PrConjunction

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rctsys.py Normal file
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#!/usr/bin/env python
"""
--- Reaction Systems Manipulation
"""
#
# TODO:
#
# * zamiast zbiorów - listy
# * index pobieramy za pomoca .index()
# * nie dopuszczamy modyfikacji listy stanow/background_set, itp.
# * uzywamy setterow i getterow
#
from sys import exit
class ContextAutomaton(object):
def __init__(self, reaction_system):
self.__states = []
self.__transitions = []
self.__init_state = None
self.__reaction_system = reaction_system
@property
def states(self):
return self.__states
@property
def transitions(self):
return self.__transitions
def add_state(self, name):
if name not in self.__states:
self.__states.append(name)
else:
print("\'%s\' already added. skipping..." % (name,))
def add_init_state(self, name):
self.add_state(name)
self.__init_state = self.__states.index(name)
def get_init_state_name(self):
if self.__init_state == None:
return None
return self.__states[self.__init_state]
def is_state(self, name):
if name in self.__states:
return True
else:
return False
def get_state_id(self, name):
try:
return self.__states.index(name)
except ValueError:
print("Undefined context automaton state: " + repr(name))
exit(1)
def get_init_state_id(self):
return self.__init_state
def print_states(self):
for state in self.__states:
print(state)
def is_valid_context(self, context):
if set(context).issubset(self.__reaction_system.background_set):
return True
else:
return False
def add_transition(self, src, context_set, dst):
if not type(context_set) is set and not type(context_set) is list:
print("Contexts set must be of type set or list")
if not self.is_valid_context(context_set):
raise RuntimeError("one of the entities in the context set is unknown (undefined)!")
if not self.is_state(src):
raise RuntimeError("\"" + src + "\" is an unknown (undefined) state")
if not self.is_state(dst):
raise RuntimeError("\"" + dst + "\" is an unknown (undefined) state")
new_context_set = set()
for e in set(context_set):
new_context_set.add(self.__reaction_system.get_entity_id(e))
self.__transitions.append((self.get_state_id(src),new_context_set,self.get_state_id(dst)))
def context2str(self, ctx):
"""Converts the set of entities ids into the string with their names"""
if len(ctx) == 0:
return "0"
s = "{"
for c in ctx:
s += " " + self.__reaction_system.get_entity_name(c)
s += " }"
return s
def show_transitions(self):
print("[*] Context automaton transitions:")
for transition in self.__transitions:
str_transition = str(transition[0]) + " --( "
str_transition += self.context2str(transition[1])
str_transition += " )--> " + str(transition[2])
print("\t- " + str_transition)
def show_states(self):
init_state_name = self.get_init_state_name()
print("[*] Context automaton states:")
for state in self.__states:
print("\t- " + state, end="")
if state == init_state_name:
print(" [init]")
else:
print()
def show(self):
self.show_states()
self.show_transitions()
class ReactionSystem(object):
def __init__(self):
self.reactions = []
self.background_set = []
self.init_contexts = []
self.context_entities = []
self.reactions_by_agents = [] # each element is 'reactions_by_prod'
self.reactions_by_prod = None
def add_bg_set_entity(self, name):
if not self.is_in_background_set(name):
self.background_set.append(name)
else:
print("The entity", name, "is already on the list")
raise
def add_bg_set_entities(self, names):
for name in names:
self.add_bg_set_entity(name)
def is_in_background_set(self, entity):
"""Checks if the given name is valid wrt the background set="""
if entity in self.background_set:
return True
else:
return False
def get_entity_id(self, name):
try:
return self.background_set.index(name)
except ValueError:
print("Undefined background set entity: " + repr(name))
exit(1)
def get_state_ids(self, state):
ids = []
for entity in state:
ids.append(self.get_entity_id(entity))
return ids
def get_entity_name(self, entity_id):
"""Returns the string corresponding to the entity"""
return self.background_set[entity_id]
def add_reaction(self, R, I, P):
"""Adds a reaction"""
if R == [] or P == []:
print("No reactants of products defined")
raise
reactants = []
for entity in R:
reactants.append(self.get_entity_id(entity))
inhibitors = []
for entity in I:
inhibitors.append(self.get_entity_id(entity))
products = []
for entity in P:
products.append(self.get_entity_id(entity))
self.reactions.append((reactants, inhibitors, products))
def add_initial_context_set(self, context_set):
if context_set == []:
print("Empty context set is not allowed")
raise
integers = []
for entity in context_set:
if not entity in self.background_set:
print("The entity", entity, "is not in the background set")
raise
else:
integers.append(self.get_entity_id(entity))
self.init_contexts.append(integers)
def set_context_entities(self, entities):
for entity in entities:
entity_id = self.get_entity_id(entity)
self.context_entities.append(entity_id)
def entities_names_set_to_str(self, entities):
s = ""
for entity in entities:
s += entity + ", "
s = s[:-2]
return s
def entities_ids_set_to_str(self, entities):
s = ""
for entity in entities:
s += self.get_entity_name(entity) + ", "
s = s[:-2]
return s
def show_reactions(self):
print("[*] Reactions:")
for reaction in self.reactions:
print("\t - ( R={" + self.entities_ids_set_to_str(reaction[0]) + "}, \tI={" + self.entities_ids_set_to_str(reaction[1]) + "}, \tP={" + self.entities_ids_set_to_str(reaction[2]) + "} )")
def show_background_set(self):
print("[*] Background set: {" + self.entities_names_set_to_str(self.background_set) + "}")
def show_initial_contexts(self):
if len(self.init_contexts) > 0:
print("[*] Initial context sets:")
for ctx in self.init_contexts:
print("\t - {" + self.entities_ids_set_to_str(ctx) + "}")
def show_context_entities(self):
if len(self.context_entities) > 0:
print("[*] Context entities: " + self.entities_ids_set_to_str(self.context_entities))
def show(self):
self.show_background_set()
self.show_initial_contexts()
self.show_reactions()
self.show_context_entities()
def get_reactions_by_product(self):
"""Sorts reactions by their products and returns a dictionary of products"""
if self.reactions_by_prod != None:
return self.reactions_by_prod
producible_entities = set()
for reaction in self.reactions:
producible_entities = producible_entities.union(set(reaction[2]))
reactions_by_prod = {}
for prod_entity in producible_entities:
reactions_by_prod[prod_entity] = []
for reaction in self.reactions:
if prod_entity in reaction[2]:
reactions_by_prod[prod_entity].append([reaction[0],reaction[1]])
# save in cache
self.reactions_by_prod = reactions_by_prod
return reactions_by_prod
def sanity_check(self):
"""Performs a sanity check on the defined reaction system"""
if self.reactions == []:
print("No reactions defined")
exit(1)
if self.background_set == []:
print("Empty background set")
exit(1)
if self.init_contexts == []:
print("No initial context defined")
exit(1)
if self.context_entities == []:
print("WARNING: no context entities!")
class ReactionSystemWithAutomaton(object):
def __init__(self, reaction_system, context_automaton):
self.rs = reaction_system
self.ca = context_automaton
def show(self):
self.rs.show()
self.ca.show()
def sanity_check(self):
if self.rs.context_entities != []:
raise RuntimeError("Context entities should not be defined within RS!")
if self.rs.init_contexts != []:
raise RuntimeError("Initial context should not be defined!")
# rs should have no initial context, no context entities, etc.

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rs_examples.py Executable file
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#!/usr/bin/env python
from rctsys import ReactionSystem
from rctsys import ReactionSystemWithAutomaton,ContextAutomaton
from distrib_rctsys import DistributedReactionSystem
def toy_ex1():
rs = ReactionSystem()
#rs.add_bg_set_entities(["a","b","x","c"])
#rs.add_reaction(["a","b"],["x"],["c"])
#rs.add_reaction(["c"],["a"],["a"])
#rs.add_reaction(["a"],["x"],["c"])
#rs.set_context_entities(["b"])
#rs.add_initial_context_set(["a","b"])
#rs.add_bg_set_entities(["a", "b", "c", "d", "e", "f", "x", "y","1","2","3","4","5","6"])
rs.add_bg_set_entities(list("qwertyuiopasdfghjklzxcvbnm"))
rs.add_reaction(["a"], ["x"], ["b"])
rs.add_reaction(["b"], ["x"], ["c"])
rs.add_reaction(["c","f"], ["x"], ["d"])
rs.add_reaction(["d"], ["x"], ["e"])
rs.set_context_entities(["f","g","h"])
rs.add_initial_context_set(["a"])
return rs
def toy_ex2():
rs = ReactionSystem()
rs.add_bg_set_entities(["a","b","c","d","d_comp","e","f","x"])
rs.add_reaction(["a"],["x"],["b"])
rs.add_reaction(["b"],["a"],["c"])
rs.add_reaction(["c"],["x"],["d"])
rs.add_reaction(["d","d_comp"],["e"],["f"])
rs.add_reaction(["f"],["a"],["e"])
rs.set_context_entities(["d_comp", "e", "x"])
rs.add_initial_context_set(["a"])
return rs
def toy_ex3():
rs = ReactionSystem()
rs.add_bg_set_entities(["1","2","3","4"])
rs.add_reaction(["1","4"],["2"],["1","2"])
rs.add_reaction(["2"],["3"],["1","3","4"])
rs.add_reaction(["1","3"],["2"],["1","2"])
rs.add_reaction(["3"],["2"],["1"])
rs.add_initial_context_set(["1","4"])
rs.set_context_entities(["4"])
return rs
def bitctr(bits):
rs = ReactionSystem()
n = bits
for i in range(0,bits):
rs.addBgSetEntity("p" + str(i))
rs.addBgSetEntity("dec")
rs.addBgSetEntity("inc")
# (1) no dec, no inc
for j in range(0,bits):
rs.add_reaction(["p"+str(j)], ["dec","inc"], ["p"+str(j)])
# (2) increment
rs.add_reaction(["inc"],["dec","p0"],["p0"])
for j in range(1,bits):
R = ["inc"]
for k in range(0,j):
R.append("p"+str(k))
I = ["dec","p"+str(j)]
P = ["p"+str(j)]
rs.add_reaction(R, I, P)
for j in range(0,bits):
for k in range(j+1,bits):
rs.add_reaction(["inc","p"+str(k)], ["dec","p"+str(j)], ["p"+str(k)])
# (3) decrement
for j in range(0,bits):
R=["dec"]
I=["inc"]
for k in range(0,j+1):
I.append("p"+str(k))
P=["p"+str(j)]
rs.add_reaction(R, I, P)
for j in range(0,bits):
for k in range(j+1,bits):
rs.add_reaction(["dec","p"+str(j),"p"+str(k)], ["inc"], ["p"+str(k)])
rs.set_context_entities(["dec","inc"])
rs.add_initial_context_set(["inc"])
return rs
def ca_toy_ex1():
rs = ReactionSystem()
rs.add_bg_set_entities(list("axbcdfegh"))
rs.add_reaction(["a"], ["x"], ["b"])
rs.add_reaction(["b"], ["x"], ["c"])
rs.add_reaction(["c","f"], ["x"], ["d"])
rs.add_reaction(["d"], ["x"], ["e"])
#rs.set_context_entities(["f","g","h"])
#rs.add_initial_context_set(["a"])
ca = ContextAutomaton(rs)
ca.add_init_state("1")
ca.add_state("2")
ca.add_transition("1", ["a"], "2")
ca.add_transition("2", [], "2")
ca.add_transition("2", ["f"], "2")
ca.add_transition("2", ["x"], "2")
rsca = ReactionSystemWithAutomaton(rs,ca)
return rsca
def ca_toy_ex1_property1():
return ["e"]
def drs_toy_ex1():
drs = DistributedReactionSystem()
drs.add_bg_set_entities(list("axbcd"))
drs.add_reaction(0, ["a"], ["x"], ["b"])
drs.add_reaction(0, ["b"], ["c"], ["d"])
drs.add_reaction(1, ["a"], [], ["b"])
drs.add_init_state("init")
drs.add_state("working")
drs.add_transition("init", ([0],[ ["a"], ["a"] ]), "working")
drs.add_transition("working", ([1],[ ["b"], ["a"] ]), "working")
return drs
def drs_toy_ex1_property1():
return [["b"],["b"]]
def drs_mutex(k):
drs = DistributedReactionSystem()
ctrl = k
# agents = 0 ... (k-1)
drs.add_bg_set_entities(["lock", "busy", "release", "req", "out", "in"])
drs.add_reaction(ctrl, ["lock"], ["release"], ["lock"])
drs.add_reaction(ctrl, ["req"], [], ["lock"])
for i in range(k):
#drs.add_reaction(i, ["out"], [], ["req"])
drs.add_reaction(i, ["out","busy"], [], ["out"])
drs.add_reaction(i, ["out"], [], ["req"])
drs.add_reaction(i, ["req"], ["lock"], ["in"])
drs.add_reaction(i, ["in"], ["busy"], ["out","release"])
drs.add_reaction(i, ["in","busy"], [], ["in"])
drs.add_reaction(i, ["req", "lock"], [], ["req"])
drs.add_init_state("0")
drs.add_state("1")
all_out = [["out"] for i in range(k)]
all_out.append([]) # empty context for the controller
all_empty = [[] for i in range(k+1)]
drs.add_transition("0", ([i for i in range(k+1)], all_out), "1")
for i in range(k):
drs.add_transition("1", ([i,ctrl], all_empty), "1")
one_busy = [[] for x in range(k+1)]
one_busy[i] = ["busy"]
drs.add_transition("1", ([i,ctrl], one_busy), "1")
return drs
def drs_mutex_property1(k):
state = [["in"]]
state.extend([[] for i in range(k)])
return state

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#!/usr/bin/env python
# -*- coding: utf-8 -*-
"""
Reaction Systems SMT-Based Model Checking Module
"""
from rctsys import ReactionSystem
from smtchecker import SmtChecker
from smtcheckerpgrs import SmtCheckerPGRS
from smtcheckerdistribrs import SmtCheckerDistribRS
import sys
import rs_examples
import resource
profiling = False
version = "0.002"
rsmc_banner = """
*** Reaction Systems SMT-Based Model Checking
*** Version: """ + version + """
*** Author: Artur Męski <meski@ipipan.waw.pl> / <artur.meski@ncl.ac.uk>
"""
def main():
if len(sys.argv) < 1+1:
print("provide N")
exit(1)
N=int(sys.argv[1])
print(rsmc_banner)
#rs = rs_examples.toy_ex3()
#rs = rs_examples.bitctr(16)
#smt = SmtChecker(rs)
#smt.check_reachability(["p0","p1","p2","p3","p4","p5","p6","p7","p8","p9","p10","p11","p12","p13","p14","p15"], print_time=True)
#smt.check_reachability(["1","3","4"], print_time=True)
# PGRS:
# rsca = rs_examples.ca_toy_ex1()
# rsca.show()
# smt = SmtCheckerPGRS(rsca)
# smt.check_reachability(rs_examples.ca_toy_ex1_property1(), print_time=True)
# Distributed RS:
drs = rs_examples.drs_mutex(N)
#drs.show()
smt = SmtCheckerDistribRS(drs,debug_level=0)
smt.check_reachability(rs_examples.drs_mutex_property1(N),
exclusive_state=False,
max_level=10,
print_time=True,
print_mem=True)
# drs = rs_examples.drs_toy_ex1()
# drs.show()
#
# smt = SmtCheckerDistribRS(drs,debug_level=3)
# smt.check_reachability(rs_examples.drs_toy_ex1_property1(),max_level=10,print_time=True)
if __name__ == "__main__":
try:
if profiling:
import profile
profile.run('main()')
else:
main()
except KeyboardInterrupt:
print("\nQuitting...")
sys.exit(99)

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#!/bin/sh
for i in 2 3 4 5 6 7 8 9 10 15 20 25 30 35 40 45 50 55 60 65 70 75 80 85 90 95 100;
do
./rssmt.py $i | tee "out/result_$i.out"
echo "$i: $(tail -1 out/result_$i.out)" >> out/all.out
done

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"""
SMT-based Model Checking Module for RS
"""
from z3 import *
from time import time
from sys import stdout
class SmtChecker(object):
def __init__(self, rs):
##############################################################
# Encoded RS
##############################################################
rs.sanity_check()
self.reaction_system = rs
##############################################################
# SMT variables
##############################################################
self.v = []
self.v_init = []
#self.vSucc = []
#self.vSuccInit = []
self.v_ctx = []
self.next_level_to_encode = 0
##############################################################
# SMT solver instance
##############################################################
self.solver = Solver()
#def smtVar(self, level, entityID, primed=False):
# return "?"
def prepare_context_variables(self):
"""Encodes all the context variables"""
level = self.next_level_to_encode
variables = []
for entity in self.reaction_system.background_set:
variables.append(Bool("C"+str(level)+"_"+entity))
self.v_ctx.append(variables)
def prepare_state_variables(self):
"""Encodes all the state variables (including successors)"""
level = self.next_level_to_encode
variables = []
#variablesSucc = []
for entity in self.reaction_system.background_set:
variables.append(Bool("L"+str(level)+"_"+entity))
#variablesSucc.append(Bool("R"+str(level)+"_"+entity))
self.v.append(variables)
#self.vSucc.append(variablesSucc)
self.v_init.append(Bool("L"+str(level)+"_Init"))
#self.vSuccInit.append(Bool("R"+str(level)+"_Init"))
def prepare_all_variables(self):
"""Encodes all the variables"""
self.prepare_state_variables()
self.prepare_context_variables()
self.next_level_to_encode += 1
def enc_init_state(self, level):
"""Encodes the initial state at the given level"""
init_state_enc = self.v_init[level]
for v in self.v[level]:
init_state_enc = simplify(And(init_state_enc, Not(v)))
return init_state_enc
def enc_init_contexts(self, level):
"""Encodes the initial contexts set at the given level"""
init_contexts_set_enc = False # Or
for ctx in self.reaction_system.init_contexts:
single_ctx_enc = True # And
not_ctx_entities = list(range(0, len(self.reaction_system.background_set)))
for entity in ctx:
single_ctx_enc = simplify(And(single_ctx_enc, self.v_ctx[level][entity]))
not_ctx_entities.remove(entity)
for entity in not_ctx_entities:
single_ctx_enc = simplify(And(single_ctx_enc, Not(self.v_ctx[level][entity])))
init_contexts_set_enc = simplify(Or(init_contexts_set_enc, single_ctx_enc))
#print("initContextSetEnc: " + repr(initContextsSetEnc))
return init_contexts_set_enc
def enc_not_allowed_contexts(self, level):
"""Encodes all the context entities that are not allowed in the context sets"""
bg_set = set(range(0,len(self.reaction_system.background_set)))
ctx_ent_set = set(self.reaction_system.context_entities)
not_ctx_ent_set = bg_set.difference(ctx_ent_set)
enc = True
for entity in not_ctx_ent_set:
enc = simplify(And(enc, Not(self.v_ctx[level][entity])))
return enc
def enc_enabledness(self, level, prod_entity):
"""Encodes the enabledness condition for a given level and a given entity"""
rcts_for_prod_entity = self.reaction_system.get_reactions_by_product()[prod_entity]
if rcts_for_prod_entity == []:
return False
#encInitEnab = simplify(Or(And(self.vInit[level], self.encInitContexts(level)),
# And(Not(self.vInit[level]), self.encNotAllowedContexts(level))))
enc_rct_prod = False
for ri_pair in rcts_for_prod_entity: # reactants-inhibitors pair
enc_reactants = True
enc_inhibitors = True
for reactant in ri_pair[0]:
enc_reactants = simplify(And(enc_reactants,
Or(self.v[level][reactant], self.v_ctx[level][reactant])))
for inhibitor in ri_pair[1]:
enc_inhibitors = simplify(And(enc_inhibitors,
Not(Or(self.v[level][inhibitor], self.v_ctx[level][inhibitor]))))
enc_rct_prod = simplify(Or(enc_rct_prod, And(enc_reactants, enc_inhibitors)))
#print("encEnabledness(" + repr(prodEntity) + "): " + repr(simplify(And(encInitEnab, encRctProd))))
#return simplify(And(encInitEnab, encRctProd))
return enc_rct_prod
def enc_entity_production(self, level, prod_entity):
"""Encodes the production of a given entity from a given level at level+1"""
enc_enab_cond = self.enc_enabledness(level, prod_entity)
enc_ent_prod = Or(And(enc_enab_cond, self.v[level+1][prod_entity]),
And(Not(enc_enab_cond), Not(self.v[level+1][prod_entity])))
return enc_ent_prod
def enc_transition_relation(self, level):
"""Encodes the transition relation"""
unused_entities = list(range(0,len(self.reaction_system.background_set)))
enc_trans = True
for prod_entity in self.reaction_system.get_reactions_by_product():
unused_entities.remove(prod_entity)
enc_trans = simplify(And(enc_trans, self.enc_entity_production(level, prod_entity)))
enc_trans = simplify(And(enc_trans, Not(self.v_init[level+1])))
for prod_entity in unused_entities:
enc_trans = simplify(And(enc_trans, Not(self.v[level+1][prod_entity])))
if level == 0:
enc_init_enab = self.enc_init_contexts(level)
else: # level > 0:
enc_init_enab = self.enc_not_allowed_contexts(level)
#encInitEnab = simplify(Or(And(self.vInit[level], self.encInitContexts(level)),
# And(Not(self.vInit[level]), self.encNotAllowedContexts(level))))
enc_trans = simplify(And(enc_trans, enc_init_enab))
return enc_trans
def enc_state(self, level, state):
"""Encodes the state at the given level"""
enc = Not(self.v_init[level])
state_ids = self.reaction_system.get_state_ids(state)
for entity in state_ids:
enc = And(enc, self.v[level][entity])
not_in_state = set(range(0, len(self.reaction_system.background_set)))
not_in_state = not_in_state.difference(set(state_ids))
for entity in not_in_state:
enc = And(enc, Not(self.v[level][entity]))
return enc
def decode_witness(self, max_level):
m = self.solver.model()
for level in range(0,max_level+1):
print("\n[Level=" + repr(level) + "]")
if repr(m[self.v_init[level]]) == "True":
print("** Initial state")
print("State:\n{"),
for var_id in range(0, len(self.v[level])):
if repr(m[self.v[level][var_id]]) == "True":
print("\t" + self.reaction_system.get_entity_name(var_id)),
print("}")
if level != max_level:
print("Context set:"),
print("{"),
for var_id in range(0, len(self.v[level])):
if repr(m[self.v_ctx[level][var_id]]) == "True":
print("\t" + self.reaction_system.get_entity_name(var_id)),
print("}")
def check_reachability(self, state, print_witness=True, print_time=False):
"""Main testing function"""
if print_time:
start = time()
self.prepare_all_variables()
self.solver.add(self.enc_init_state(0))
current_level = 0
while True:
#print("Level: " + str(current_level))
print("\rLevel: " + str(current_level)),
stdout.flush()
self.prepare_all_variables()
# reachability test:
self.solver.push()
self.solver.add(self.enc_state(current_level,state))
result = self.solver.check()
print(result)
if result == sat:
print("\nSAT")
if print_witness:
self.decode_witness(current_level)
break
else:
self.solver.pop()
self.solver.add(self.enc_transition_relation(current_level))
current_level += 1
if print_time:
stop = time()
print("Time: " + repr(stop-start))
class SmtCheckerPGRS(object):
def __init__(self, rs):
##############################################################
# Encoded RS
##############################################################
rs.sanity_check()
self.reaction_system = rs
##############################################################
# SMT variables
##############################################################
self.v = []
self.v_init = []
#self.vSucc = []
#self.vSuccInit = []
self.v_ctx = []
self.next_level_to_encode = 0
##############################################################
# SMT solver instance
##############################################################
self.solver = Solver()
#def smtVar(self, level, entityID, primed=False):
# return "?"
def prepare_context_variables(self):
"""Encodes all the context variables"""
level = self.next_level_to_encode
variables = []
for entity in self.reaction_system.background_set:
variables.append(Bool("C"+str(level)+"_"+entity))
self.v_ctx.append(variables)
def prepare_state_variables(self):
"""Encodes all the state variables (including successors)"""
level = self.next_level_to_encode
variables = []
#variablesSucc = []
for entity in self.reaction_system.background_set:
variables.append(Bool("L"+str(level)+"_"+entity))
#variablesSucc.append(Bool("R"+str(level)+"_"+entity))
self.v.append(variables)
#self.vSucc.append(variablesSucc)
self.v_init.append(Bool("L"+str(level)+"_Init"))
#self.vSuccInit.append(Bool("R"+str(level)+"_Init"))
def prepare_all_variables(self):
"""Encodes all the variables"""
self.prepare_state_variables()
self.prepare_context_variables()
self.next_level_to_encode += 1
def enc_init_state(self, level):
"""Encodes the initial state at the given level"""
init_state_enc = self.v_init[level]
for v in self.v[level]:
init_state_enc = simplify(And(init_state_enc, Not(v)))
return init_state_enc
def enc_init_contexts(self, level):
"""Encodes the initial contexts set at the given level"""
init_contexts_set_enc = False # Or
for ctx in self.reaction_system.init_contexts:
single_ctx_enc = True # And
not_ctx_entities = list(range(0, len(self.reaction_system.background_set)))
for entity in ctx:
single_ctx_enc = simplify(And(single_ctx_enc, self.v_ctx[level][entity]))
not_ctx_entities.remove(entity)
for entity in not_ctx_entities:
single_ctx_enc = simplify(And(single_ctx_enc, Not(self.v_ctx[level][entity])))
init_contexts_set_enc = simplify(Or(init_contexts_set_enc, single_ctx_enc))
#print("initContextSetEnc: " + repr(initContextsSetEnc))
return init_contexts_set_enc
def enc_not_allowed_contexts(self, level):
"""Encodes all the context entities that are not allowed in the context sets"""
bg_set = set(range(0,len(self.reaction_system.background_set)))
ctx_ent_set = set(self.reaction_system.context_entities)
not_ctx_ent_set = bg_set.difference(ctx_ent_set)
enc = True
for entity in not_ctx_ent_set:
enc = simplify(And(enc, Not(self.v_ctx[level][entity])))
return enc
def enc_enabledness(self, level, prod_entity):
"""Encodes the enabledness condition for a given level and a given entity"""
rcts_for_prod_entity = self.reaction_system.get_reactions_by_product()[prod_entity]
if rcts_for_prod_entity == []:
return False
#encInitEnab = simplify(Or(And(self.vInit[level], self.encInitContexts(level)),
# And(Not(self.vInit[level]), self.encNotAllowedContexts(level))))
enc_rct_prod = False
for ri_pair in rcts_for_prod_entity: # reactants-inhibitors pair
enc_reactants = True
enc_inhibitors = True
for reactant in ri_pair[0]:
enc_reactants = simplify(And(enc_reactants,
Or(self.v[level][reactant], self.v_ctx[level][reactant])))
for inhibitor in ri_pair[1]:
enc_inhibitors = simplify(And(enc_inhibitors,
Not(Or(self.v[level][inhibitor], self.v_ctx[level][inhibitor]))))
enc_rct_prod = simplify(Or(enc_rct_prod, And(enc_reactants, enc_inhibitors)))
#print("encEnabledness(" + repr(prodEntity) + "): " + repr(simplify(And(encInitEnab, encRctProd))))
#return simplify(And(encInitEnab, encRctProd))
return enc_rct_prod
def enc_entity_production(self, level, prod_entity):
"""Encodes the production of a given entity from a given level at level+1"""
enc_enab_cond = self.enc_enabledness(level, prod_entity)
enc_ent_prod = Or(And(enc_enab_cond, self.v[level+1][prod_entity]),
And(Not(enc_enab_cond), Not(self.v[level+1][prod_entity])))
return enc_ent_prod
def enc_transition_relation(self, level):
"""Encodes the transition relation"""
unused_entities = list(range(0,len(self.reaction_system.background_set)))
enc_trans = True
for prod_entity in self.reaction_system.get_reactions_by_product():
unused_entities.remove(prod_entity)
enc_trans = simplify(And(enc_trans, self.enc_entity_production(level, prod_entity)))
enc_trans = simplify(And(enc_trans, Not(self.v_init[level+1])))
for prod_entity in unused_entities:
enc_trans = simplify(And(enc_trans, Not(self.v[level+1][prod_entity])))
if level == 0:
enc_init_enab = self.enc_init_contexts(level)
else: # level > 0:
enc_init_enab = self.enc_not_allowed_contexts(level)
#encInitEnab = simplify(Or(And(self.vInit[level], self.encInitContexts(level)),
# And(Not(self.vInit[level]), self.encNotAllowedContexts(level))))
enc_trans = simplify(And(enc_trans, enc_init_enab))
return enc_trans
def enc_state(self, level, state):
"""Encodes the state at the given level"""
enc = Not(self.v_init[level])
state_ids = self.reaction_system.get_state_ids(state)
for entity in state_ids:
enc = And(enc, self.v[level][entity])
not_in_state = set(range(0, len(self.reaction_system.background_set)))
not_in_state = not_in_state.difference(set(state_ids))
for entity in not_in_state:
enc = And(enc, Not(self.v[level][entity]))
return enc
def decode_witness(self, max_level):
m = self.solver.model()
for level in range(0,max_level+1):
print("\n[Level=" + repr(level) + "]")
if repr(m[self.v_init[level]]) == "True":
print("** Initial state")
print("State:\n{"),
for var_id in range(0, len(self.v[level])):
if repr(m[self.v[level][var_id]]) == "True":
print("\t" + self.reaction_system.get_entity_name(var_id)),
print("}")
if level != max_level:
print("Context set:"),
print("{"),
for var_id in range(0, len(self.v[level])):
if repr(m[self.v_ctx[level][var_id]]) == "True":
print("\t" + self.reaction_system.get_entity_name(var_id)),
print("}")
def check_reachability(self, state, print_witness=True, print_time=False):
"""Main testing function"""
if print_time:
start = time()
self.prepare_all_variables()
self.solver.add(self.enc_init_state(0))
current_level = 0
while True:
#print("Level: " + str(current_level))
print("\rLevel: " + str(current_level)),
stdout.flush()
self.prepare_all_variables()
# reachability test:
self.solver.push()
self.solver.add(self.enc_state(current_level,state))
result = self.solver.check()
print(result)
if result == sat:
print("\nSAT")
if print_witness:
self.decode_witness(current_level)
break
else:
self.solver.pop()
self.solver.add(self.enc_transition_relation(current_level))
current_level += 1
if print_time:
stop = time()
print("Time: " + repr(stop-start))

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"""
SMT-based Model Checking Module for RS with Context Automaton
"""
from z3 import *
from time import time,sleep
from sys import stdout
import resource
# def simplify(x):
# return x
class SmtCheckerDistribRS(object):
def __init__(self, drs, debug_level=1):
print("[i] Initialising the SMT module")
drs.sanity_check()
self.solver = Solver()
self.debug_level = debug_level
self.drs = drs
self.n_components = self.drs.components_count
# encoding variables
self.v = [] # level -> component -> variables
self.v_ctx = []
self.v_act = [] # indicators of which component is active
self.ca_state = []
self.level_to_encode = 0
def prepare_all_variables(self):
"""Encodes the required variables"""
self.prepare_state_variables()
self.prepare_context_variables()
self.prepare_activity_variables()
self.level_to_encode += 1 # prepare for the next invocation
def prepare_context_variables(self):
"""Encodes the context variables"""
level = self.level_to_encode
if self.debug_level > 1:
print("[ii] Preparing context variables for level=" + str(level))
level_variables = []
for i in range(self.n_components):
comp_variables = []
for entity in self.drs.background_set:
comp_variables.append(Bool("Ctx"+str(level)+"V"+str(i)+"_"+entity))
level_variables.append(comp_variables)
self.v_ctx.append(level_variables)
def prepare_activity_variables(self):
"""Encodes the activity variables"""
level = self.level_to_encode
if self.debug_level > 1:
print("[ii] Preparing activity variables for level=" + str(level))
level_variables = []
for i in range(self.n_components):
# L - level, A - activity indicator
level_variables.append(Bool("L"+str(level)+"A"+str(i)))
self.v_act.append(level_variables)
def prepare_state_variables(self):
"""Encodes all the state variables"""
level = self.level_to_encode
if self.debug_level > 1:
print("[ii] Preparing state variables for level=" + str(level))
level_variables = [] # level vars
for i in range(self.n_components):
comp_variables = []
for entity in self.drs.background_set:
# L - level, V - component
comp_variables.append(Bool("L"+str(level)+"V"+str(i)+"_"+entity))
level_variables.append(comp_variables)
self.v.append(level_variables)
# single state variable for CA
self.ca_state.append(Int("CA"+str(level)+"_state"))
def enc_init_state(self, level):
"""Encodes the initial state at the given level"""
if self.debug_level > 1:
print("[ii] Encoding the initial state for level=" + str(level))
rs_init_state_enc = True
for i in range(self.n_components):
for v in self.v[level][i]:
rs_init_state_enc = simplify(And(rs_init_state_enc, Not(v))) # the initial state is empty
ca_init_state_enc = self.ca_state[level] == self.drs.get_init_state_id()
init_state_enc = simplify(And(rs_init_state_enc, ca_init_state_enc))
# print ("init_state_enc:\n", init_state_enc)
return init_state_enc
def enc_enabledness(self, level, prod_entity, component_id):
"""Encodes the enabledness condition for a given level and a given entity"""
rcts_for_prod_entity = self.drs.get_reactions_by_product(component_id)[prod_entity]
if rcts_for_prod_entity == []:
return False
enc_rct_prod = False
for reactants,inhibitors in rcts_for_prod_entity:
enc_reactants = True
for reactant in reactants:
enc_active_reactants = False
for i in range(self.n_components):
enc_active_reactants = simplify(Or(enc_active_reactants,
And( Or(self.v[level][i][reactant], self.v_ctx[level][i][reactant]), self.v_act[level][i] )))
enc_reactants = And(enc_reactants, enc_active_reactants)
enc_inhibitors = True
for inhibitor in inhibitors:
enc_active_inhibitors = True
for i in range(self.n_components):
enc_active_inhibitors = simplify(And(enc_active_inhibitors,
And(
Or( And(Not(self.v[level][i][inhibitor]), Not(self.v_ctx[level][i][inhibitor])), Not(self.v_act[level][i]) )
)))
enc_inhibitors = simplify(And(enc_inhibitors, enc_active_inhibitors))
# print("--> enc_inhibitors\n", enc_inhibitors)
enc_rct_prod = Or(enc_rct_prod, And(enc_reactants, enc_inhibitors))
# print("enc_rct_prod:\n", enc_rct_prod)
enc_rct_prod = simplify(enc_rct_prod)
return enc_rct_prod
def enc_entity_production(self, level, prod_entity, component_id):
"""Encodes the production of a given entity at level+1 from a given level"""
enc_enab_cond = self.enc_enabledness(level, prod_entity, component_id)
enc_base_ent_prod = simplify(Or(And(enc_enab_cond, self.v[level+1][component_id][prod_entity]),
And(Not(enc_enab_cond), Not(self.v[level+1][component_id][prod_entity]))))
enc_active_ent_prod = simplify(And(self.v_act[level][component_id], enc_base_ent_prod))
enc_inactive_ent_prod = simplify(And(
Not(self.v_act[level][component_id]),
self.v[level][component_id][prod_entity] == self.v[level+1][component_id][prod_entity]))
enc_ent_prod = Or(enc_active_ent_prod, enc_inactive_ent_prod)
# print("enc_ent_prod:\n", enc_ent_prod)
return simplify(enc_ent_prod)
def enc_rs_trans(self, level):
"""Encodes the transition relation"""
enc_trans = True
for component_id in range(self.n_components):
print("\rEncoding for reactions: %d/%d" % (component_id,self.n_components-1), flush=True, end="")
unused_entities = list(range(len(self.drs.background_set)))
for prod_entity in self.drs.get_reactions_by_product(component_id):
unused_entities.remove(prod_entity)
enc_trans = simplify(And(enc_trans, self.enc_entity_production(level, prod_entity, component_id)))
for prod_entity in unused_entities:
enc_trans = simplify(And(enc_trans, Not(self.v[level+1][component_id][prod_entity])))
print()
# print("enc_rs_trans:\n", enc_trans)
enc_trans = simplify(enc_trans)
return enc_trans
def enc_automaton_trans(self, level):
"""Encodes the transition relation for the context automaton"""
enc_trans = False
i = 0
for src,(components,ctx_set),dst in self.drs.transitions:
src_enc = self.ca_state[level] == src
dst_enc = self.ca_state[level+1] == dst
print("\rEncoding for context automaton: %d/%d" % (i,len(self.drs.transitions)-1), flush=True, end="")
i = i + 1
# contexts {
ctx_set_enc = True
for comp_id in range(self.n_components):
all_ent = set(range(len(self.drs.background_set)))
incl_ctx = ctx_set[comp_id]
excl_ctx = all_ent - incl_ctx
ctx_enc = True
for c in incl_ctx:
ctx_enc = And(ctx_enc, self.v_ctx[level][comp_id][c])
for c in excl_ctx:
ctx_enc = And(ctx_enc, Not(self.v_ctx[level][comp_id][c]))
ctx_set_enc = And(ctx_set_enc, ctx_enc)
# } contexts
# active components {
all_active = set(range(self.n_components))
incl_comp = components
excl_comp = all_active - incl_comp
active_components_enc = True
for comp_id in incl_comp:
active_components_enc = And(active_components_enc, self.v_act[level][comp_id])
for comp_id in excl_comp:
active_components_enc = And(active_components_enc, Not(self.v_act[level][comp_id]))
# } active components
cur_trans = And(src_enc, ctx_set_enc, active_components_enc, dst_enc)
enc_trans = Or(enc_trans, cur_trans)
print()
enc_trans = simplify(enc_trans)
# print("enc_automaton_trans:\n", enc_trans)
return enc_trans
def enc_transition_relation(self, level):
rs_enc = self.enc_rs_trans(level)
aut_enc = self.enc_automaton_trans(level)
print("Conjunction...", flush=True, end="")
c = simplify(And(rs_enc, aut_enc))
print("done.")
return c
def enc_state(self, level, global_state):
"""Encodes the state at the given level"""
if len(global_state) != self.n_components:
print("EEE: Wrong size of the global state! " + "(is " + str(len(global_state)) + ", should be " + str(self.n_components) + ")")
exit(1)
enc = True
if self.debug_level > 2:
print("[iii] Encoding exclusive/exact global state " + str(global_state) + " for level=" + str(level))
for i in range(self.n_components):
local_state = global_state[i]
local_state_ids = self.drs.get_state_ids(local_state)
for entity in local_state_ids:
enc = And(enc, self.v[level][i][entity])
not_in_state = self.drs.set_of_background_ids - set(local_state_ids)
for e_id in not_in_state:
enc = simplify(And(enc, Not(self.v[level][i][e_id])))
simplify(enc)
# print("state:\n", enc)
return enc
def enc_inclusive_state(self, level, global_state):
"""Encodes the state at the given level"""
if len(global_state) != self.n_components:
print("EEE: Wrong size of the global state! " + "(is " + str(len(global_state)) + ", should be " + str(self.n_components) + ")")
exit(1)
enc = True
if self.debug_level > 2:
print("[iii] Encoding inclusive/general global state " + str(global_state) + " for level=" + str(level))
for i in range(self.n_components):
local_state = global_state[i]
local_state_ids = self.drs.get_state_ids(local_state)
for entity in local_state_ids:
enc = And(enc, self.v[level][i][entity])
simplify(enc)
return enc
def decode_witness(self, max_level, print_model=False):
m = self.solver.model()
print("\nWitness:")
if print_model:
print(m)
for level in range(max_level+1):
print("\n[Level=" + repr(level) + "]")
#print(m)
#print(self.v[level][0][2])
#print(m[self.v[level][0][2]])
print(" State: {", end=""),
for c in range(self.n_components):
print(" <", end="")
for var_id in range(len(self.v[level][c])):
if repr(m[self.v[level][c][var_id]]) == "True":
print(" " + self.drs.get_entity_name(var_id), end="")
print(" >", end="")
print(" }")
if level != max_level:
print(" Context set: ", end="")
print("{", end="")
for c in range(self.n_components):
print(" <", end="")
for var_id in range(len(self.v[level][c])):
if repr(m[self.v_ctx[level][c][var_id]]) == "True":
print(" " + self.drs.get_entity_name(var_id), end="")
print(" >", end="")
print(" }")
print(" Active components:", end="")
for c in range(self.n_components):
if repr(m[self.v_act[level][c]]) == "True":
print(" " + str(c), end="")
print()
def check_reachability(self, state, exclusive_state=False, print_witness=True, print_time=False, print_mem=False, max_level=100):
"""Reachability checking"""
print("[i] Checking reachability...")
if print_time:
start = time()
self.prepare_all_variables()
self.solver.add(self.enc_init_state(0))
current_level = 0
while True:
self.prepare_all_variables()
print("-----[ Working at level=" + str(current_level) + " ]-----")
stdout.flush()
# reachability test:
self.solver.push()
print("[i] Adding the reachability test...")
if exclusive_state == False:
self.solver.add(self.enc_inclusive_state(current_level,state))
else:
self.solver.add(self.enc_state(current_level,state))
result = self.solver.check()
if result == sat:
print("\n[+] SAT at level=" + str(current_level))
if print_witness:
self.decode_witness(current_level)
break
else:
self.solver.pop()
print("[i] Unrolling the transition relation")
self.solver.add(self.enc_transition_relation(current_level))
print("-----[ level=" + str(current_level) + " done ]")
current_level += 1
if current_level > max_level:
print("Stopping at level=" + str(max_level))
break
if print_time:
stop = time()
print()
print("==== Time: " + repr(stop-start))
if print_mem:
usage=resource.getrusage(resource.RUSAGE_SELF)
print("MEM: usertime=%s systime=%s mem=%sMB" % (usage[0],usage[1], (resource.getrusage(resource.RUSAGE_SELF).ru_maxrss / 1024**2)))

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smtcheckerpgrs.py Normal file
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"""
SMT-based Model Checking Module for RS with Context Automaton
"""
from z3 import *
from time import time
from sys import stdout
class SmtCheckerPGRS(object):
def __init__(self, rsca):
rsca.sanity_check()
self.rs = rsca.rs
self.ca = rsca.ca
self.v = []
self.v_ctx = []
self.ca_state = []
self.next_level_to_encode = 0
self.solver = Solver()
def prepare_all_variables(self):
"""Encodes all the variables"""
self.prepare_state_variables()
self.prepare_context_variables()
self.next_level_to_encode += 1
def prepare_context_variables(self):
"""Encodes all the context variables"""
level = self.next_level_to_encode
variables = []
for entity in self.rs.background_set:
variables.append(Bool("C"+str(level)+"_"+entity))
self.v_ctx.append(variables)
def prepare_state_variables(self):
"""Encodes all the state variables"""
level = self.next_level_to_encode
variables = []
for entity in self.rs.background_set:
variables.append(Bool("L"+str(level)+"_"+entity))
self.v.append(variables)
self.ca_state.append(Int("CA"+str(level)+"_state"))
def enc_init_state(self, level):
"""Encodes the initial state at the given level"""
rs_init_state_enc = True
for v in self.v[level]:
rs_init_state_enc = simplify(And(rs_init_state_enc, Not(v))) # the initial state is empty
ca_init_state_enc = self.ca_state[level] == self.ca.get_init_state_id()
init_state_enc = simplify(And(rs_init_state_enc, ca_init_state_enc))
return init_state_enc
def enc_enabledness(self, level, prod_entity):
"""Encodes the enabledness condition for a given level and a given entity"""
rcts_for_prod_entity = self.rs.get_reactions_by_product()[prod_entity]
if rcts_for_prod_entity == []:
return False
enc_rct_prod = False
for reactants,inhibitors in rcts_for_prod_entity:
enc_reactants = True
enc_inhibitors = True
for reactant in reactants:
enc_reactants = simplify(And(enc_reactants,
Or(self.v[level][reactant], self.v_ctx[level][reactant])))
for inhibitor in inhibitors:
enc_inhibitors = simplify(And(enc_inhibitors,
Not(Or(self.v[level][inhibitor], self.v_ctx[level][inhibitor]))))
enc_rct_prod = simplify(Or(enc_rct_prod, And(enc_reactants, enc_inhibitors)))
return enc_rct_prod
def enc_entity_production(self, level, prod_entity):
"""Encodes the production of a given entity from a given level at level+1"""
enc_enab_cond = self.enc_enabledness(level, prod_entity)
enc_ent_prod = Or(And(enc_enab_cond, self.v[level+1][prod_entity]),
And(Not(enc_enab_cond), Not(self.v[level+1][prod_entity])))
return simplify(enc_ent_prod)
def enc_transition_relation(self, level):
return simplify(And(self.enc_rs_trans(level), self.enc_automaton_trans(level)))
def enc_rs_trans(self, level):
"""Encodes the transition relation"""
unused_entities = list(range(len(self.rs.background_set)))
enc_trans = True
for prod_entity in self.rs.get_reactions_by_product():
unused_entities.remove(prod_entity)
enc_trans = simplify(And(enc_trans, self.enc_entity_production(level, prod_entity)))
for prod_entity in unused_entities:
enc_trans = simplify(And(enc_trans, Not(self.v[level+1][prod_entity])))
return enc_trans
def enc_automaton_trans(self, level):
"""Encodes the transition relation for the context automaton"""
enc_trans = False
for src,ctx,dst in self.ca.transitions:
src_enc = self.ca_state[level] == src
dst_enc = self.ca_state[level+1] == dst
all_ent = set(range(len(self.rs.background_set)))
incl_ctx = ctx
excl_ctx = all_ent - incl_ctx
ctx_enc = True
for c in incl_ctx:
ctx_enc = simplify(And(ctx_enc, self.v_ctx[level][c]))
for c in excl_ctx:
ctx_enc = simplify(And(ctx_enc, Not(self.v_ctx[level][c])))
cur_trans = simplify(And(src_enc, ctx_enc, dst_enc))
enc_trans = simplify(Or(enc_trans, cur_trans))
return enc_trans
def enc_state(self, level, state):
"""Encodes the state at the given level"""
enc = True
state_ids = self.rs.get_state_ids(state)
for entity in state_ids:
enc = And(enc, self.v[level][entity])
not_in_state = set(range(len(self.rs.background_set)))
not_in_state = not_in_state.difference(set(state_ids))
for entity in not_in_state:
enc = And(enc, Not(self.v[level][entity]))
return enc
def enc_non_exclusive_state(self, level, state):
"""Encodes the state at the given level"""
enc = True
state_ids = self.rs.get_state_ids(state)
for entity in state_ids:
enc = And(enc, self.v[level][entity])
return enc
def decode_witness(self, max_level, print_model=False):
m = self.solver.model()
if print_model:
print(m)
for level in range(max_level+1):
print("\n[Level=" + repr(level) + "]")
print(" State: {", end=""),
for var_id in range(len(self.v[level])):
if repr(m[self.v[level][var_id]]) == "True":
print(" " + self.rs.get_entity_name(var_id), end="")
print(" }")
if level != max_level:
print(" Context set: ", end="")
print("{", end="")
for var_id in range(len(self.v[level])):
if repr(m[self.v_ctx[level][var_id]]) == "True":
print(" " + self.rs.get_entity_name(var_id), end="")
print(" }")
def check_reachability(self, state, print_witness=True, print_time=False):
"""Main testing function"""
if print_time:
start = time()
self.prepare_all_variables()
self.solver.add(self.enc_init_state(0))
current_level = 0
while True:
print("\r[i] Level: " + str(current_level), end="")
stdout.flush()
self.prepare_all_variables()
# reachability test:
self.solver.push()
self.solver.add(self.enc_state(current_level,state))
result = self.solver.check()
if result == sat:
print("\n[+] SAT at level=" + str(current_level))
if print_witness:
self.decode_witness(current_level)
break
else:
self.solver.pop()
self.solver.add(self.enc_transition_relation(current_level))
current_level += 1
if print_time:
stop = time()
print()
print("[i] Time: " + repr(stop-start))

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#!/usr/bin/env python
from rctsys import *
import rs_examples
rs = rs_examples.toy_ex3()
ca = ContextAutomaton(rs)
ca.add_state("st1")
ca.add_init_state("in")
ca.add_transition("st1", {"1","2"}, "in")
ca.show()