PV vectors for global state with CA, states printing (resolved an issue with duplicates)
This commit is contained in:
32
mc.cc
32
mc.cc
@@ -1,6 +1,7 @@
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#include "mc.hh"
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ModelChecker::ModelChecker(SymRS *srs, Options *opts)
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: using_ctx_aut(false)
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{
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this->srs = srs;
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this->opts = opts;
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@@ -34,10 +35,19 @@ ModelChecker::ModelChecker(SymRS *srs, Options *opts)
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if (srs->usingContextAutomaton())
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{
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// ca_init_state = srs->getEncCtxAutInitState();
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using_ctx_aut = true;
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pv_ca = srs->getEncCtxAutPV();
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pv_ca_succ = srs->getEncCtxAutPVsucc();
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// ca_tr = srs->getEncCtxAutTrans();
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pv_ca_E = srs->getEncCtxAutPV_E();
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pv_ca_succ_E = srs->getEncCtxAutPVsucc_E();
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}
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else
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{
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using_ctx_aut = false;
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pv_ca = nullptr;
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pv_ca_succ = nullptr;
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pv_ca_E = nullptr;
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pv_ca_succ_E = nullptr;
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}
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// Initialise the set of reachable states
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@@ -62,7 +72,7 @@ inline BDD ModelChecker::getSucc(const BDD &states)
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}
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q = (q.ExistAbstract(*pv_E)).SwapVariables(*pv_succ, *pv);
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q = q.ExistAbstract(*pv_act_E);
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return q;
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}
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@@ -104,6 +114,11 @@ inline BDD ModelChecker::getPreEctx(const BDD &states, const BDD *contexts)
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return q;
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}
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void ModelChecker::dropCtxAutStatePart(BDD &states)
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{
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states = states.ExistAbstract(*pv_ca_E);
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}
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void ModelChecker::printReach(void)
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{
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VERB_LN(2, "Printing/generating reachable states");
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@@ -127,8 +142,10 @@ void ModelChecker::printReach(void)
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reach_p = *reach;
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*reach += getSucc(*reach);
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}
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dropCtxAutStatePart(*reach);
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srs->printDecodedStates(*reach);
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srs->printDecodedRctSysStates(*reach);
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cleanup();
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@@ -159,11 +176,12 @@ void ModelChecker::printReachWithSucc(void)
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{
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BDD t;
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t = unproc.PickOneMinterm(*pv);
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cout << "Successors of " << srs->decodedStateToStr(t) << ":" << endl;
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srs->printDecodedStates(getSucc(t));
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cout << "Successors of " << srs->decodedRctSysStateToStr(t) << ":" << endl;
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srs->printDecodedRctSysStates(getSucc(t));
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unproc -= t;
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}
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cleanup();
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cleanup();
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}
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bool ModelChecker::checkReach(const Entities testState)
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11
mc.hh
11
mc.hh
@@ -31,15 +31,20 @@ class ModelChecker
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BDD *trm;
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// Context Automaton
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bool using_ctx_aut;
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vector<BDD> *pv_ca;
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vector<BDD> *pv_ca_succ;
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// BDD *ca_tr;
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// BDD *ca_init_state;
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BDD *pv_ca_E;
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BDD *pv_ca_succ_E;
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unsigned int trp_size;
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unsigned int totalStateVars;
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/**
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* @brief Abstracts away (in-place!) the context automaton states
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*/
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void dropCtxAutStatePart(BDD &states);
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BDD zeroFill(const BDD &state);
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BDD getSucc(const BDD &states);
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BDD getPreE(const BDD &states);
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BDD getPreEctx(const BDD &states, const BDD *contexts);
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150
symrs.cc
150
symrs.cc
@@ -10,12 +10,14 @@ SymRS::SymRS(RctSys *rs, Options *opts)
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{
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this->rs = rs;
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this->opts = opts;
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totalStateVars = rs->getEntitiesSize();
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totalRctSysStateVars = rs->getEntitiesSize();
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totalReactions = rs->getReactionsSize();
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totalActions = rs->getActionsSize();
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totalCtxAutStateVars = getCtxAutStateEncodingSize();
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totalStateVars = totalRctSysStateVars + totalCtxAutStateVars;
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partTrans = nullptr;
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monoTrans = nullptr;
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@@ -119,7 +121,7 @@ BDD SymRS::compState(const BDD &state) const
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{
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BDD s = state;
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for (unsigned int i = 0; i < totalStateVars; ++i)
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for (unsigned int i = 0; i < totalRctSysStateVars; ++i)
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{
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if (!(*pv)[i] * state != cuddMgr->bddZero())
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s *= !(*pv)[i];
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@@ -141,10 +143,10 @@ BDD SymRS::compContext(const BDD &context) const
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return c;
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}
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std::string SymRS::decodedStateToStr(const BDD &state)
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std::string SymRS::decodedRctSysStateToStr(const BDD &state)
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{
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std::string s = "{ ";
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for (unsigned int i = 0; i < totalStateVars; ++i)
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for (unsigned int i = 0; i < totalRctSysStateVars; ++i)
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{
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if (!(encEntity(i) * state).IsZero())
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{
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@@ -155,13 +157,13 @@ std::string SymRS::decodedStateToStr(const BDD &state)
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return s;
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}
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void SymRS::printDecodedStates(const BDD &states)
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void SymRS::printDecodedRctSysStates(const BDD &states)
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{
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BDD unproc = states;
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while (!unproc.IsZero())
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{
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BDD t = unproc.PickOneMinterm(*pv);
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cout << decodedStateToStr(t) << endl;
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BDD t = unproc.PickOneMinterm(*pv_rs);
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cout << decodedRctSysStateToStr(t) << endl;
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if (opts->verbose > 9) {
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t.PrintMinterm();
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cout << endl;
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@@ -178,17 +180,37 @@ void SymRS::initBDDvars(void)
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VERB("Preparing BDD variables");
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unsigned int needed_state_vars = totalStateVars;
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if (usingContextAutomaton())
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needed_state_vars += totalCtxAutStateVars;
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// used for bddVar
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unsigned int bdd_var_idx = 0;
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pv = new vector<BDD>(needed_state_vars);
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pv_succ = new vector<BDD>(needed_state_vars);
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pv_act = new vector<BDD>(totalActions);
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// used for pv, pv_succ
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unsigned int global_state_idx = 0;
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// Variables for reaction system with CA (if used)
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pv = new vector<BDD>(totalStateVars);
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pv_succ = new vector<BDD>(totalStateVars);
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pv_E = new BDD(BDD_TRUE);
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pv_succ_E = new BDD(BDD_TRUE);
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pv_act_E = new BDD(BDD_TRUE);
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// Reaction system (no actions, no CA)
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pv_rs = new vector<BDD>(totalRctSysStateVars);
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pv_rs_succ = new vector<BDD>(totalRctSysStateVars);
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pv_rs_E = new BDD(BDD_TRUE);
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pv_rs_succ_E = new BDD(BDD_TRUE);
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for (unsigned int i = 0; i < totalRctSysStateVars; ++i)
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{
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(*pv_rs)[i] = cuddMgr->bddVar(bdd_var_idx++);
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(*pv_rs_succ)[i] = cuddMgr->bddVar(bdd_var_idx++);
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*pv_rs_E *= (*pv_rs)[i];
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*pv_rs_succ_E *= (*pv_rs_succ)[i];
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(*pv)[global_state_idx] = (*pv_rs)[i];
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(*pv_succ)[global_state_idx] = (*pv_rs_succ)[i];
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++global_state_idx;
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}
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// CA
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if (usingContextAutomaton())
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{
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VERB("Context automaton variables");
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@@ -197,73 +219,40 @@ void SymRS::initBDDvars(void)
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pv_ca_succ = new vector<BDD>(totalCtxAutStateVars);
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pv_ca_E = new BDD(BDD_TRUE);
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pv_ca_succ_E = new BDD(BDD_TRUE);
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}
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VERB_LN(3, "Preparing individual variables");
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for (unsigned int i = 0; i < needed_state_vars; ++i)
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{
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(*pv)[i] = cuddMgr->bddVar(i*2);
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(*pv_succ)[i] = cuddMgr->bddVar((i*2)+1);
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*pv_E *= (*pv)[i];
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*pv_succ_E *= (*pv_succ)[i];
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if (i >= totalStateVars)
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for (unsigned int i = 0; i < totalCtxAutStateVars; ++i)
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{
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VERB_LN(3, "Preparing CA variables");
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unsigned int ca_i = i - totalStateVars;
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(*pv_ca)[ca_i] = (*pv)[i];
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(*pv_ca_succ)[ca_i] = (*pv_succ)[i];
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(*pv_ca)[i] = cuddMgr->bddVar(bdd_var_idx++);
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(*pv_ca_succ)[i] = cuddMgr->bddVar(bdd_var_idx++);
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*pv_ca_E *= (*pv_ca)[i];
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*pv_ca_succ_E *= (*pv_ca_succ)[i];
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*pv_ca_E *= (*pv)[i];
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*pv_ca_succ_E *= (*pv_succ)[i];
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(*pv)[global_state_idx] = (*pv_ca)[i];
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(*pv_succ)[global_state_idx] = (*pv_ca_succ)[i];
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++global_state_idx;
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}
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}
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// first index after state vars
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unsigned int offset = needed_state_vars * 2;
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// if (usingContextAutomaton())
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// {
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// VERB("Context automaton variables");
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//
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// pv_ca = new vector<BDD>(totalCtxAutStateVars);
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// pv_ca_succ = new vector<BDD>(totalCtxAutStateVars);
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// pv_ca_E = new BDD(BDD_TRUE);
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// pv_ca_succ_E = new BDD(BDD_TRUE);
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//
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// //
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// // BDD variables for encoding local states of context automaton
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// //
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// unsigned int base_index = offset;
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// for (unsigned int i = 0; i < totalCtxAutStateVars; ++i)
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// {
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// (*pv_ca)[i] = cuddMgr->bddVar(base_index);
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// (*pv_ca_succ)[i] = cuddMgr->bddVar(base_index+1);
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//
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// *pv_ca_E *= (*pv_ca)[i];
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// *pv_ca_succ_E *= (*pv_ca_succ)[i];
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//
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// base_index += 2;
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// }
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//
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// //
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// // We need to extend the quantification to the states of the
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// // context automaton, because they constitute the control part
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// // of the system.
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// //
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// // *pv_E *= *pv_ca_E;
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// // *pv_succ_E *= *pv_ca_succ_E;
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// }
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}
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for (unsigned int i = 0; i < totalActions; ++i)
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// Actions/Contexts
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pv_act = new vector<BDD>(totalActions);
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pv_act_E = new BDD(BDD_TRUE);
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for (unsigned int i = 0; i < totalActions; ++i)
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{
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(*pv_act)[i] = cuddMgr->bddVar(offset+i);
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(*pv_act)[i] = cuddMgr->bddVar(bdd_var_idx++);
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*pv_act_E *= (*pv_act)[i];
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}
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// Quantification BDDs
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*pv_E = *pv_rs_E;
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*pv_succ_E = *pv_rs_succ_E;
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if (usingContextAutomaton())
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{
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*pv_E *= *pv_ca_E;
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*pv_succ_E *= *pv_ca_succ_E;
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}
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VERB("All BDD variables ready");
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}
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@@ -291,7 +280,7 @@ void SymRS::encodeTransitions(void)
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if (opts->part_tr_rel)
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{
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VERB("Using partitioned transition relation encoding");
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partTrans = new vector<BDD>(totalStateVars);
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partTrans = new vector<BDD>(totalRctSysStateVars);
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}
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else
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{
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@@ -299,7 +288,7 @@ void SymRS::encodeTransitions(void)
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monoTrans = new BDD(BDD_TRUE);
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}
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for (unsigned int p = 0; p < totalStateVars; ++p)
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for (unsigned int p = 0; p < totalRctSysStateVars; ++p)
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{
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VERB_L3("Encoding for successor " << p);
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@@ -407,7 +396,7 @@ void SymRS::encodeInitStatesForCtxAut(void)
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{
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initStates = new BDD(BDD_TRUE);
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for (unsigned int i = 0; i < totalStateVars; ++i)
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for (unsigned int i = 0; i < totalRctSysStateVars; ++i)
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{
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*initStates *= !(*pv)[i];
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}
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@@ -454,7 +443,7 @@ void SymRS::mapStateToAct(void)
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{
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VERB("Mapping state variables to action variables");
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unsigned int j = 0;
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for (unsigned int i = 0; i < totalStateVars; ++i)
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for (unsigned int i = 0; i < totalRctSysStateVars; ++i)
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{
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if (rs->isActionEntity(i)) {
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stateToAct.push_back(j++);
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@@ -572,8 +561,6 @@ BDD SymRS::encCtxAutState_raw(State state_id, bool succ) const
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r *= !(*enc_vec)[i];
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}
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cout << "STATE:" << endl;
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BDD_PRINT(r);
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return r;
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}
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@@ -607,12 +594,7 @@ void SymRS::encodeCtxAutTrans(void)
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BDD enc_ctx = compContext(encActEntitiesConj(t.ctx));
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*tr_ca += enc_src * enc_ctx * enc_dst;
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// cout << "tr_ca:" << endl;
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// BDD_PRINT(*tr_ca);
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}
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// cout << "tr_ca:" << endl;
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// BDD_PRINT(*tr_ca);
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}
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/** EOF **/
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42
symrs.hh
42
symrs.hh
@@ -42,14 +42,15 @@ class SymRS
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BDD *initStates;
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vector<BDD> *pv;
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vector<BDD> *pv_act;
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vector<BDD> *pv_succ;
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// BDDs for quantification
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BDD *pv_E;
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BDD *pv_act_E;
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BDD *pv_succ_E;
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vector<BDD> *pv_rs;
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vector<BDD> *pv_rs_succ;
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BDD *pv_rs_E;
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BDD *pv_rs_succ_E;
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vector<BDD> *partTrans;
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BDD *monoTrans;
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@@ -61,8 +62,12 @@ class SymRS
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BDD *pv_ca_succ_E;
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BDD *tr_ca;
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unsigned int totalReactions;
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vector<BDD> *pv_act;
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BDD *pv_act_E;
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unsigned int totalStateVars;
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unsigned int totalReactions;
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unsigned int totalRctSysStateVars;
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unsigned int totalActions;
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unsigned int totalCtxAutStateVars;
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@@ -105,8 +110,8 @@ class SymRS
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BDD compContext(const BDD &context) const;
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std::string decodedStateToStr(const BDD &state);
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void printDecodedStates(const BDD &states);
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std::string decodedRctSysStateToStr(const BDD &state);
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void printDecodedRctSysStates(const BDD &states);
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BDD encNoContext(void);
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@@ -121,7 +126,7 @@ class SymRS
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int getMappedStateToActID(int stateID) const
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{
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assert(stateID < static_cast<int>(totalStateVars));
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assert(stateID < static_cast<int>(totalRctSysStateVars));
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return stateToAct[stateID];
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}
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@@ -141,6 +146,7 @@ public:
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BDD *getEncInitStates(void) { return initStates; }
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Cudd *getCuddMgr(void) { return cuddMgr; }
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unsigned int getTotalStateVars(void) { return totalStateVars; }
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unsigned int getTotalRctSysStateVars(void) { return totalRctSysStateVars; }
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BDD encEntity(std::string name) const {
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return encEntity(rs->getEntityID(name));
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}
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@@ -198,9 +204,23 @@ public:
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*/
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vector<BDD> *getEncCtxAutPVsucc(void) { return pv_ca_succ; }
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/**
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* @brief Encodes the monolithic transition relation
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*/
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/**
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* @brief Getter for context automaton's quantification BDD (for non-primed vars)
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*
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* @return Returns a BDD for quantification
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*/
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BDD *getEncCtxAutPV_E(void) { return pv_ca_E; }
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/**
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* @brief Getter for context automaton's quantification BDD (for primed vars)
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*
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* @return Returns a BDD for quantification
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*/
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BDD *getEncCtxAutPVsucc_E(void) { return pv_ca_succ_E; }
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/**
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* @brief Encodes the monolithic transition relation
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*/
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void encodeCtxAutTrans(void);
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/**
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