Formulae for Scalable Chain; some fixes and improvements
This commit is contained in:
@@ -3,8 +3,7 @@ from enum import Enum
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from logics.bags import *
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from logics.bags import *
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rsLTL_form_type = Enum('rsLTL_form_type', 'bag l_and l_or l_not t_globally t_finally t_next t_until t_release')
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rsLTL_form_type = Enum('rsLTL_form_type', 'bag l_and l_or l_not l_implies t_globally t_finally t_next t_until t_release')
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class Formula_rsLTL(object):
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class Formula_rsLTL(object):
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@@ -35,6 +34,8 @@ class Formula_rsLTL(object):
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return "( " + repr(self.left_operand) + " & " + repr(self.right_operand) + " )"
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return "( " + repr(self.left_operand) + " & " + repr(self.right_operand) + " )"
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if self.f_type == rsLTL_form_type.l_or:
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if self.f_type == rsLTL_form_type.l_or:
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return "( " + repr(self.left_operand) + " | " + repr(self.right_operand) + " )"
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return "( " + repr(self.left_operand) + " | " + repr(self.right_operand) + " )"
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if self.f_type == rsLTL_form_type.l_implies:
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return "( " + repr(self.left_operand) + " => " + repr(self.right_operand) + " )"
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if self.f_type == rsLTL_form_type.t_until:
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if self.f_type == rsLTL_form_type.t_until:
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return "( " + repr(self.left_operand) + " U[" + repr(self.sub_operand) + "]" + repr(self.right_operand) + " )"
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return "( " + repr(self.left_operand) + " U[" + repr(self.sub_operand) + "]" + repr(self.right_operand) + " )"
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if self.f_type == rsLTL_form_type.t_release:
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if self.f_type == rsLTL_form_type.t_release:
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@@ -68,6 +69,10 @@ class Formula_rsLTL(object):
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def f_R(cls, sub, arg_L, arg_R):
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def f_R(cls, sub, arg_L, arg_R):
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return cls(rsLTL_form_type.t_release, L_oper = arg_L, R_oper = arg_R, sub_oper = sub)
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return cls(rsLTL_form_type.t_release, L_oper = arg_L, R_oper = arg_R, sub_oper = sub)
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@classmethod
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def f_Implies(cls, arg_L, arg_R):
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return cls(rsLTL_form_type.l_implies, L_oper = arg_L, R_oper = arg_R)
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def __and__(self, other):
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def __and__(self, other):
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return Formula_rsLTL(rsLTL_form_type.l_and, L_oper = self, R_oper = other)
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return Formula_rsLTL(rsLTL_form_type.l_and, L_oper = self, R_oper = other)
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@@ -1,5 +1,8 @@
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from logics.rsltl import *
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from logics.rsltl import *
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def simplify(x):
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return x
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class rsLTL_Encoder(object):
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class rsLTL_Encoder(object):
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"""Class for encoding rsLTL formulae for a given smt_checker instance"""
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"""Class for encoding rsLTL formulae for a given smt_checker instance"""
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@@ -10,8 +13,20 @@ class rsLTL_Encoder(object):
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self.rs = smt_checker.rs
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self.rs = smt_checker.rs
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self.loop_position = smt_checker.loop_position
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self.loop_position = smt_checker.loop_position
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self.init_ncalls()
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def init_ncalls(self):
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self.ncalls_encode = 0
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self.ncalls_encode_approx = 0
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def get_ncalls(self):
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return (self.ncalls_encode, self.ncalls_encode_approx)
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def encode_bag(self, bag_formula, level, context=False):
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def encode_bag(self, bag_formula, level, context=False):
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if not bag_formula:
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raise RuntimeError("bag_formula is None")
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if bag_formula.f_type == BagDesc_oper.entity:
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if bag_formula.f_type == BagDesc_oper.entity:
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entity_id = self.rs.get_entity_id(bag_formula.entity)
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entity_id = self.rs.get_entity_id(bag_formula.entity)
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if context:
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if context:
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@@ -56,6 +71,8 @@ class rsLTL_Encoder(object):
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def encode(self, formula, level, bound):
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def encode(self, formula, level, bound):
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self.ncalls_encode += 1
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if not isinstance(formula, Formula_rsLTL):
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if not isinstance(formula, Formula_rsLTL):
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raise NotImplementedError("Unsupported formula type: " + str(type(formula)))
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raise NotImplementedError("Unsupported formula type: " + str(type(formula)))
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@@ -84,6 +101,12 @@ class rsLTL_Encoder(object):
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self.encode(formula.right_operand, level, bound)
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self.encode(formula.right_operand, level, bound)
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)
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)
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elif formula.f_type == rsLTL_form_type.l_implies:
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return Implies(
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self.encode(formula.left_operand, level, bound),
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self.encode(formula.right_operand, level, bound)
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)
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elif formula.f_type == rsLTL_form_type.t_next:
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elif formula.f_type == rsLTL_form_type.t_next:
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if level < bound:
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if level < bound:
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enc = And(
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enc = And(
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@@ -218,6 +241,9 @@ class rsLTL_Encoder(object):
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Used by encode()
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Used by encode()
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"""
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"""
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self.ncalls_encode_approx += 1
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if formula.f_type == rsLTL_form_type.t_until:
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if formula.f_type == rsLTL_form_type.t_until:
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if level < bound:
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if level < bound:
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enc = Or(
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enc = Or(
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@@ -9,7 +9,8 @@ def run_tests():
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# test_extended_automaton()
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# test_extended_automaton()
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# process()
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# process()
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heat_shock_response()
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# heat_shock_response()
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scalable_chain(print_system=True)
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def heat_shock_response(print_system=True):
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def heat_shock_response(print_system=True):
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@@ -97,6 +98,96 @@ def heat_shock_response(print_system=True):
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def state_translate_rsc2rs(p):
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def state_translate_rsc2rs(p):
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return [e[0] + "#" + str(e[1]) for e in p]
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return [e[0] + "#" + str(e[1]) for e in p]
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def scalable_chain(print_system=False):
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if len(sys.argv) < 1+2:
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print("provide <chainLen> <maxConc>")
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exit(1)
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chainLen=int(sys.argv[1]) # chain length
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maxConc=int(sys.argv[2]) # depth (max concentration)
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if chainLen < 1 or maxConc < 1:
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print("be reasonable")
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exit(1)
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r = ReactionSystemWithConcentrations()
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r.add_bg_set_entity(("inc",1))
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r.add_bg_set_entity(("dec",1))
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for i in range(1,chainLen+1):
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r.add_bg_set_entity(("e_" + str(i),maxConc))
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for i in range(1,chainLen+1):
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ent = "e_" + str(i)
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r.add_reaction_inc(ent, "inc", [(ent, 1)],[(ent,maxConc)])
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r.add_reaction_dec(ent, "dec", [(ent, 1)],[])
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if i < chainLen:
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r.add_reaction([(ent,maxConc)],[],[("e_"+str(i+1),1)])
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r.add_reaction([("e_" + str(chainLen),maxConc)],[("dec",1)],[("e_" + str(chainLen),maxConc)])
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c = ContextAutomatonWithConcentrations(r)
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c.add_init_state("init")
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c.add_state("working")
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c.add_transition("init", [("e_1",1),("inc",1)], "working")
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c.add_transition("working", [("inc",1)], "working")
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rc = ReactionSystemWithAutomaton(r,c)
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if print_system:
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rc.show()
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smt_rsc = SmtCheckerRSC(rc)
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prop = [('e_'+str(chainLen),maxConc)]
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# smt_rsc.check_reachability((prop,[]),max_level=maxConc*chainLen+10)
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# smt_rsc.show_encoding(prop,print_time=True,max_level=maxConc*chainLen+10)
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# (1)
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f_1 = Formula_rsLTL.f_F( BagDescription.f_entity("inc") > 0, (BagDescription.f_entity('e_'+str(chainLen)) >= maxConc) )
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smt_rsc.check_rsltl(formula=f_1)
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# (2)
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# f_tmp = Formula_rsLTL.f_F( BagDescription.f_entity("inc") > 0, (BagDescription.f_entity('e_'+str(chainLen)) == maxConc) )
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# for i in range(chainLen-1,0,-1):
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# f_tmp = Formula_rsLTL.f_F( BagDescription.f_entity("inc") > 0, f_tmp & (BagDescription.f_entity('e_'+str(i)) == maxConc) )
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# f_2 = f_tmp
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# smt_rsc.check_rsltl(formula=f_2)
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# (3)
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# f_3 = Formula_rsLTL.f_G( BagDescription.f_TRUE(),
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# Formula_rsLTL.f_Implies(
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# (BagDescription.f_entity('e_1') == 1),
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# Formula_rsLTL.f_F(
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# BagDescription.f_entity("inc") > 0,
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# (BagDescription.f_entity('e_'+str(i)) == maxConc)
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# )
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# )
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# )
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# smt_rsc.check_rsltl(formula=f_3)
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###########################################################################
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time=0
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mem_usage=resource.getrusage(resource.RUSAGE_SELF).ru_maxrss/(1024*1024)
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filename_t="bench_rsc_time.log"
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filename_m="bench_rsc_mem.log"
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time=smt_rsc.get_verification_time()
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f=open(filename_t, 'a')
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log_str="(" + str(chainLen) + "," + str(maxConc) + "," + str(time) + ")\n"
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f.write(log_str)
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f.close()
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f=open(filename_m, 'a')
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log_str="(" + str(chainLen) + "," + str(maxConc) + "," + str(mem_usage) + ")\n"
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f.write(log_str)
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f.close()
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def test_rsLTL():
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def test_rsLTL():
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r = ReactionSystemWithConcentrations()
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r = ReactionSystemWithConcentrations()
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@@ -383,6 +383,7 @@ class SmtCheckerRSC(object):
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self.reset()
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self.reset()
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print("[" + colour_str(C_BOLD, "i") + "] Running rsLTL bounded model checking")
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print("[" + colour_str(C_BOLD, "i") + "] Running rsLTL bounded model checking")
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print("[" + colour_str(C_BOLD, "i") + "] Formula: " + str(formula))
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if print_time:
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if print_time:
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# start = time()
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# start = time()
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@@ -407,8 +408,11 @@ class SmtCheckerRSC(object):
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# reachability test:
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# reachability test:
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self.solver.push()
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self.solver.push()
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print("[" + colour_str(C_BOLD, "i") + "] Adding the formula encoding...")
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print("[" + colour_str(C_BOLD, "i") + "] Generating the formula encoding...")
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encoder.init_ncalls()
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f = encoder.encode(formula, 0, self.current_level)
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f = encoder.encode(formula, 0, self.current_level)
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print("[" + colour_str(C_BOLD, "i") + "] Encode calls: " + str(encoder.get_ncalls()))
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print("[" + colour_str(C_BOLD, "i") + "] Adding the formula to the solver...")
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self.solver.add(f)
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self.solver.add(f)
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print("[" + colour_str(C_BOLD, "i") + "] Adding the loops encoding...")
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print("[" + colour_str(C_BOLD, "i") + "] Adding the loops encoding...")
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