698 lines
15 KiB
C++
698 lines
15 KiB
C++
#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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cuddMgr = srs->getCuddMgr();
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initStates = srs->getEncInitStates();
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totalStateVars = srs->getTotalStateVars();
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pv = srs->getEncPV();
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pv_succ = srs->getEncPVsucc();
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pv_E = srs->getEncPV_E();
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pv_succ_E = srs->getEncPVsucc_E();
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pv_ctx_E = srs->getEncPVctx_E();
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pv_proc_enab_E = srs->getEncPVproc_enab_E();
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pv_drs_E = srs->getEncPVdrs_E();
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assert(pv != nullptr);
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assert(pv_succ != nullptr);
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assert(pv_E != nullptr);
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assert(pv_succ_E != nullptr);
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assert(pv_ctx_E != nullptr);
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assert(pv_proc_enab_E != nullptr);
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assert(pv_drs_E != nullptr);
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//
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// Transition relations
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//
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// trp -- partitioned TR
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// trm -- monolithic TR
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//
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// If we use trp, then trm is nullptr (same for trm)
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//
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trp = srs->getEncPartTrans();
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if (trp == nullptr) {
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trp_size = 0;
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}
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else {
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trp_size = trp->size();
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}
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trm = srs->getEncMonoTrans();
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if (srs->usingContextAutomaton()) {
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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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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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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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reach = nullptr;
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}
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inline BDD ModelChecker::getSucc(const BDD &states)
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{
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BDD q = BDD_TRUE;
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VERB_L2("Computing successors");
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if (opts->part_tr_rel) {
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for (const auto &trans : *trp) {
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q *= states * trans;
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reorder();
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}
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}
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else {
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q *= states * *trm;
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}
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q = (q.ExistAbstract(*pv_E)).SwapVariables(*pv_succ, *pv);
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// we should have one BDD for cleaning up
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// it should be calculated at the very beginning
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q = q.ExistAbstract(*pv_ctx_E);
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q = q.ExistAbstract(*pv_proc_enab_E);
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return q;
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}
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inline BDD ModelChecker::getPreE(const BDD &states)
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{
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BDD q = BDD_TRUE;
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VERB_L2("Computing preE");
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BDD x = states.SwapVariables(*pv, *pv_succ);
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if (opts->part_tr_rel) {
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for (const auto &trans : *trp) {
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q *= x * trans;
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reorder();
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}
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}
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else {
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q *= x * *trm;
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}
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q = q.ExistAbstract(*pv_succ_E);
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q = q.ExistAbstract(*pv_ctx_E);
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q = q.ExistAbstract(*pv_proc_enab_E);
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return q;
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}
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inline BDD ModelChecker::getPreEctx(const BDD &states, const BDD *contexts)
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{
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BDD q = BDD_TRUE;
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VERB_L2("Computing (context-restricted) preE");
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BDD x = states.SwapVariables(*pv, *pv_succ);
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if (opts->part_tr_rel) {
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for (const auto &trans : *trp) {
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q *= x * trans;
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reorder();
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}
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q *= *contexts;
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}
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else {
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q *= x * *trm * *contexts;
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}
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q = q.ExistAbstract(*pv_succ_E);
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q = q.ExistAbstract(*pv_ctx_E);
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q = q.ExistAbstract(*pv_proc_enab_E);
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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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if (opts->measure) {
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opts->ver_time = cpuTime();
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}
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assert(initStates != nullptr);
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BDD *reach = new BDD(*initStates);
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BDD reach_p = BDD_FALSE;
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unsigned int k = 0;
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while (*reach != reach_p) {
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if (opts->show_progress) {
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cout << "\rIteration " << ++k << flush;
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}
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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->printDecodedRctSysStates(*reach);
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cleanup();
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if (opts->measure) {
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opts->ver_time = cpuTime() - opts->ver_time;
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opts->ver_mem = memUsed();
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}
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}
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void ModelChecker::printReachWithSucc(void)
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{
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VERB_LN(2, "Printing/generating reachable states (with successors)");
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BDD *reach = new BDD(*initStates);
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BDD reach_p = cuddMgr->bddZero();
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while (*reach != reach_p) {
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reach_p = *reach;
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BDD newStates = getSucc(*reach) - *reach;
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*reach += newStates;
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}
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BDD unproc = *reach;
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while (!unproc.IsZero()) {
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BDD t;
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t = unproc.PickOneMinterm(*pv);
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if (opts->backend_mode)
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{
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cout << "G " << srs->decodedRctSysStateWithCtxAutToStr(t) << endl;
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}
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else
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{
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cout << "Successors of " << srs->decodedRctSysStateWithCtxAutToStr(t) << ":" << endl;
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}
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srs->printDecodedRctSysWithCtxAutStates(getSucc(t));
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unproc -= t;
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}
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cleanup();
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}
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bool ModelChecker::checkReach(const Entities testState)
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{
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if (opts->measure) {
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opts->ver_time = cpuTime();
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}
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// BDD st = srs->getEncState(testState);
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BDD st = BDD_FALSE;
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assert(0);
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BDD reach = *initStates;
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BDD reach_p = cuddMgr->bddZero();
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while (reach != reach_p) {
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if (reach * st != cuddMgr->bddZero()) {
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cleanup();
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return true;
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}
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reach_p = reach;
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reach += getSucc(reach);
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}
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cleanup();
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if (opts->measure) {
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opts->ver_time = cpuTime() - opts->ver_time;
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opts->ver_mem = memUsed();
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}
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return false;
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}
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BDD ModelChecker::getStatesRSCTLK(const FormRSCTLK *form)
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{
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assert(reach != nullptr);
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Oper oper = form->getOper();
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if (oper == RSCTLK_PV) {
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return *form->getBDD() * *reach;
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}
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else if (oper == RSCTLK_TF) {
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if (form->getTF() == true) {
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return *reach;
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}
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else {
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return cuddMgr->bddZero();
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}
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}
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else if (oper == RSCTLK_AND) {
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return getStatesRSCTLK(form->getLeftSF()) * getStatesRSCTLK(form->getRightSF());
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}
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else if (oper == RSCTLK_OR) {
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return getStatesRSCTLK(form->getLeftSF()) + getStatesRSCTLK(form->getRightSF());
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}
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else if (oper == RSCTLK_XOR) {
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return getStatesRSCTLK(form->getLeftSF()) ^ getStatesRSCTLK(form->getRightSF());
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}
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else if (oper == RSCTLK_IMPL) {
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return (!getStatesRSCTLK(form->getLeftSF()) * *reach) + getStatesRSCTLK(
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form->getRightSF());
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}
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else if (oper == RSCTLK_NOT) {
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return !getStatesRSCTLK(form->getLeftSF()) * *reach;
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}
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else if (oper == RSCTLK_EX) {
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return getPreE(getStatesRSCTLK(form->getLeftSF())) * *reach;
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}
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else if (oper == RSCTLK_EG) {
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return statesEG(getStatesRSCTLK(form->getLeftSF()));
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}
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else if (oper == RSCTLK_EU) {
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return statesEU(
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getStatesRSCTLK(form->getLeftSF()),
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getStatesRSCTLK(form->getRightSF())
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);
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}
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else if (oper == RSCTLK_EF) {
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return statesEF(getStatesRSCTLK(form->getLeftSF()));
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}
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else if (oper == RSCTLK_AX) {
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return !getPreE(!getStatesRSCTLK(form->getLeftSF()) * *reach) * *reach;
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}
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else if (oper == RSCTLK_AG) {
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return !statesEF(
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!getStatesRSCTLK(form->getLeftSF()) * *reach) * *reach;
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}
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else if (oper == RSCTLK_AU) {
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BDD ng = !getStatesRSCTLK(form->getRightSF()) * *reach;
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BDD nf = !getStatesRSCTLK(form->getLeftSF()) * *reach;
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BDD x = !statesEU(ng, ng * nf) * *reach;
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if (!x.IsZero()) {
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x = x * !statesEG(ng) * *reach;
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}
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return x;
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}
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else if (oper == RSCTLK_AF) {
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return !statesEG(
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!getStatesRSCTLK(form->getLeftSF()) * *reach) * *reach;
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}
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/***** CONTEXT RESTRICTIONS: ******/
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else if (oper == RSCTLK_EX_ACT) {
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return getPreEctx(getStatesRSCTLK(form->getLeftSF()),
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form->getActionsBDD()) * *reach;
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}
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else if (oper == RSCTLK_EG_ACT) {
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return statesEGctx(form->getActionsBDD(),
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getStatesRSCTLK(form->getLeftSF())); /***** EG? *****/
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}
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else if (oper == RSCTLK_EU_ACT) {
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return statesEUctx(
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form->getActionsBDD(),
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getStatesRSCTLK(form->getLeftSF()),
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getStatesRSCTLK(form->getRightSF())
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);
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}
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else if (oper == RSCTLK_EF_ACT) {
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return statesEFctx(form->getActionsBDD(), getStatesRSCTLK(form->getLeftSF()));
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}
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else if (oper == RSCTLK_AX_ACT) {
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return !getPreEctx(!getStatesRSCTLK(form->getLeftSF()) * *reach,
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form->getActionsBDD()) * *reach;
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}
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else if (oper == RSCTLK_AG_ACT) {
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return !statesEFctx(form->getActionsBDD(),
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!getStatesRSCTLK(form->getLeftSF()) * *reach) * *reach;
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}
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else if (oper == RSCTLK_AU_ACT) {
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BDD ng = !getStatesRSCTLK(form->getRightSF()) * *reach;
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BDD nf = !getStatesRSCTLK(form->getLeftSF()) * *reach;
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BDD x = !statesEUctx(form->getActionsBDD(), ng, ng * nf) * *reach;
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if (!x.IsZero()) {
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x = x * !statesEGctx(form->getActionsBDD(), ng) * *reach;
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}
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return x;
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}
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else if (oper == RSCTLK_AF_ACT) {
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return !statesEGctx(form->getActionsBDD(),
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!getStatesRSCTLK(form->getLeftSF()) * *reach) * *reach;
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}
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else if (oper == RSCTLK_NK) {
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auto proc_id = srs->rs->getProcessID(form->getSingleAgent());
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return statesNK(getStatesRSCTLK(form->getLeftSF()) * *reach, proc_id) * *reach;
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}
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else if (oper == RSCTLK_UK) {
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auto proc_id = srs->rs->getProcessID(form->getSingleAgent());
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return *reach - (statesNK(*reach - getStatesRSCTLK(form->getLeftSF()), proc_id) * *reach);
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}
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else if (oper == RSCTLK_NE) {
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auto proc_set = form->getAgentsAsProcSet(srs->rs);
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return statesNE(getStatesRSCTLK(form->getLeftSF()) * *reach, proc_set) * *reach;
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}
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else if (oper == RSCTLK_UE) {
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auto proc_set = form->getAgentsAsProcSet(srs->rs);
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return *reach - (statesNE(*reach - getStatesRSCTLK(form->getLeftSF()), proc_set) * *reach);
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}
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else if (oper == RSCTLK_NC) {
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auto proc_set = form->getAgentsAsProcSet(srs->rs);
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return statesNC(getStatesRSCTLK(form->getLeftSF()) * *reach, proc_set) * *reach;
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}
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else if (oper == RSCTLK_UC) {
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auto proc_set = form->getAgentsAsProcSet(srs->rs);
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return *reach - (statesNC(*reach - getStatesRSCTLK(form->getLeftSF()), proc_set) * *reach);
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}
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assert(0); // Should never happen
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return BDD_FALSE;
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}
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BDD ModelChecker::statesEG(const BDD &states)
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{
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BDD x = states;
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BDD x_p = cuddMgr->bddZero();
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while (x != x_p) {
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x_p = x;
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x = x * getPreE(x);
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}
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return x;
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}
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BDD ModelChecker::statesEU(const BDD &statesA, const BDD &statesB)
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{
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BDD x = statesA;
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BDD x_p = *reach;
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while (x != x_p) {
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x_p = x;
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x = x + (statesA * getPreE(x));
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}
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return x;
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}
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BDD ModelChecker::statesEF(const BDD &states)
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{
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BDD x = states;
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BDD x_p = *reach;
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while (x != x_p) {
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x_p = x;
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x = x + (*reach * getPreE(x));
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}
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return x;
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}
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BDD ModelChecker::statesEGctx(const BDD *contexts, const BDD &states)
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{
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BDD x = states;
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BDD x_p = cuddMgr->bddZero();
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while (x != x_p) {
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x_p = x;
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x = x * getPreEctx(x, contexts);
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}
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return x;
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}
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BDD ModelChecker::statesEUctx(const BDD *contexts, const BDD &statesA,
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const BDD &statesB)
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{
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BDD x = statesA;
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BDD x_p = *reach;
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while (x != x_p) {
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x_p = x;
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x = x + (statesA * getPreEctx(x, contexts));
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}
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return x;
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}
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BDD ModelChecker::statesEFctx(const BDD *contexts, const BDD &states)
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{
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BDD x = states;
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BDD x_p = *reach;
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while (x != x_p) {
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x_p = x;
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x = x + (*reach * getPreEctx(x, contexts));
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}
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return x;
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}
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BDD ModelChecker::statesNK(const BDD &states, Process proc_id)
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{
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// bdd = new BDD((arg[0]->satStates(reach) * reach).ExistAbstract(bddOnlyIth(getAgent())) * reach);
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BDD x = states;
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x = x.ExistAbstract(getIthOnly(proc_id));
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return x;
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}
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BDD ModelChecker::statesNE(const BDD &states, ProcSet processes)
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{
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BDD x = BDD_FALSE;
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for (auto const &proc_id : processes) {
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x += states.ExistAbstract(getIthOnly(proc_id));
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}
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return x;
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}
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BDD ModelChecker::statesNC(const BDD &states, ProcSet processes)
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{
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BDD x = BDD_FALSE;
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BDD x_p = *reach;
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while (x != x_p) {
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x_p = x;
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BDD t = BDD_FALSE;
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for (auto const &proc_id : processes) {
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t += x.ExistAbstract(getIthOnly(proc_id));
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}
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x = t;
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}
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return x;
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}
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BDD ModelChecker::getIthOnly(Process proc_id)
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{
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/* if possible, we return the BDD from cache */
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if (ith_only_E.count(proc_id) == 1) {
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return ith_only_E[proc_id];
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}
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/* nothing has been found in the cache */
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BDD bdd = BDD_TRUE;
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for (size_t i = 0; i < pv_drs_E->size(); ++i) {
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if (i == static_cast<size_t>(proc_id)) {
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continue;
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}
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bdd *= (*pv_drs_E)[i];
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}
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ith_only_E[proc_id] = bdd;
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return bdd;
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}
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bool ModelChecker::checkRSCTLK(FormRSCTLK *form)
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{
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if (form->isERSCTLK()) {
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return checkRSCTLKbmc(form);
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}
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else {
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return checkRSCTLKfull(form);
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}
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}
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bool ModelChecker::checkRSCTLKfull(FormRSCTLK *form)
|
|
{
|
|
if (opts->measure) {
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|
opts->ver_time = cpuTime();
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|
}
|
|
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|
assert(form != nullptr);
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|
|
|
bool result = false;
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|
|
|
VERB("Model checking for RSCTLK formula: " << form->toStr());
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|
|
|
VERB("Processing the formula: encoding entities");
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|
form->encodeEntities(srs);
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|
VERB("Entities encoded");
|
|
|
|
VERB("Processing the formula: encoding actions/contexts");
|
|
form->encodeActions(srs);
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|
VERB("Contexts encoded");
|
|
|
|
assert(reach == nullptr);
|
|
|
|
reach = new BDD(*initStates);
|
|
BDD reach_p = cuddMgr->bddZero();
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|
|
|
VERB("Generating state space");
|
|
|
|
unsigned int k = 0;
|
|
|
|
while (*reach != reach_p) {
|
|
|
|
if (opts->show_progress) {
|
|
cout << "\rIteration " << ++k << flush;
|
|
}
|
|
|
|
if (opts->reorder_reach) {
|
|
VERB_L2("Reordering")
|
|
Cudd_ReduceHeap(cuddMgr->getManager(), CUDD_REORDER_SIFT, 10000);
|
|
}
|
|
|
|
reach_p = *reach;
|
|
*reach += getSucc(*reach);
|
|
}
|
|
|
|
if (opts->show_progress) {
|
|
cout << endl;
|
|
}
|
|
|
|
VERB("Checking the formula");
|
|
|
|
result = (*initStates * getStatesRSCTLK(form) == *initStates);
|
|
|
|
cleanup();
|
|
|
|
if (opts->backend_mode) {
|
|
cout << "Result:" << result << endl;
|
|
} else {
|
|
cout << "Formula " << form->toStr() << (result ? " holds" : " does not hold")
|
|
<< endl;
|
|
}
|
|
|
|
if (opts->measure) {
|
|
opts->ver_time = cpuTime() - opts->ver_time;
|
|
opts->ver_mem = memUsed();
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
bool ModelChecker::checkRSCTLKbmc(FormRSCTLK *form)
|
|
{
|
|
if (opts->measure) {
|
|
opts->ver_time = cpuTime();
|
|
}
|
|
|
|
assert(form != nullptr);
|
|
|
|
if (!form->isERSCTLK()) {
|
|
FERROR("Formula " << form->toStr() <<
|
|
" is not syntactically an ERSCTLK formula");
|
|
}
|
|
|
|
bool result = false;
|
|
|
|
VERB("Bounded model checking for RSCTLK formula: " << form->toStr());
|
|
|
|
VERB("Processing the formula: encoding entities");
|
|
form->encodeEntities(srs);
|
|
VERB("Entities encoded");
|
|
|
|
VERB("Processing the formula: encoding actions/contexts");
|
|
form->encodeActions(srs);
|
|
VERB("Contexts encoded");
|
|
|
|
assert(reach == nullptr);
|
|
|
|
reach = new BDD(*initStates);
|
|
BDD reach_p = cuddMgr->bddZero();
|
|
|
|
unsigned int k = 0;
|
|
|
|
while (*reach != reach_p) {
|
|
if (opts->show_progress) {
|
|
cout << "\rIteration " << ++k << flush;
|
|
}
|
|
|
|
//if (*initStates * getStatesRSCTLK(form) != cuddMgr->bddZero())
|
|
if (*initStates * getStatesRSCTLK(form) == *initStates) {
|
|
result = true;
|
|
break;
|
|
}
|
|
|
|
reach_p = *reach;
|
|
*reach += getSucc(*reach);
|
|
}
|
|
|
|
if (opts->show_progress) {
|
|
cout << endl;
|
|
}
|
|
|
|
cleanup();
|
|
|
|
if (opts->backend_mode) {
|
|
cout << "result:" << result << endl;
|
|
} else {
|
|
cout << "Formula " << form->toStr() << " " << (result ? "holds" :
|
|
"does not hold") << endl;
|
|
}
|
|
|
|
if (opts->measure) {
|
|
opts->ver_time = cpuTime() - opts->ver_time;
|
|
opts->ver_mem = memUsed();
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
void ModelChecker::reorder(void)
|
|
{
|
|
if (opts->reorder_trans) {
|
|
VERB_L2("Reordering START");
|
|
// Cudd_ReduceHeap(cuddMgr->getManager(), CUDD_REORDER_SIFT, 100000);
|
|
cuddMgr->ReduceHeap(CUDD_REORDER_GROUP_SIFT);
|
|
VERB_L2("Reordering DONE");
|
|
}
|
|
}
|
|
|
|
void ModelChecker::cleanup(void)
|
|
{
|
|
delete reach;
|
|
reach = nullptr;
|
|
}
|
|
|
|
/** EOF **/
|