* configure.ac: Call AX_CHECK_GSPNLIB. * Makefile.am (EXTRA_DIST): Add m4/gspnlib.m4. * iface/gspn/Makefile.am (AM_CPPFLAGS): Add $(LIBGSPN_CPPFLAGS). (libspotgspn_la_LIBADD, check_PROGRAMS, dottygspn_SOURCES, dottygspn_LDADD): New variables. * iface/gspn/gspn.hh (gspn_interface): New class. (gspn_exeption): Take a string argument and adjust all callers. (operator<<): Define for gspn_exeption. * iface/gspn/gspn.cc (gspn_interface::gspn_interface, gspn_interface::~gspn_interface): New. * iface/gspn/gspnlib.h: Delete, it belongs to GSPN. * iface/gspn/dottygspn.cc: New file.
355 lines
7.6 KiB
C++
355 lines
7.6 KiB
C++
#include <sstream>
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#include <map>
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#include <cassert>
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#include "gspnlib.h"
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#include "gspn.hh"
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#include "ltlvisit/destroy.hh"
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namespace spot
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{
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gspn_interface::gspn_interface(int argc, char **argv)
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{
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int res = initialize(argc, argv);
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if (res)
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throw gspn_exeption("initialize()", res);
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}
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gspn_interface::~gspn_interface()
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{
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int res = finalize();
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if (res)
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throw gspn_exeption("finalize()", res);
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}
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// tgba_gspn_private_
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//////////////////////////////////////////////////////////////////////
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struct tgba_gspn_private_
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{
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int refs; // reference count
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bdd_dict* dict;
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typedef std::pair<AtomicPropKind, bdd> ab_pair;
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typedef std::map<AtomicProp, ab_pair> prop_map;
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prop_map prop_dict;
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AtomicProp *all_indexes;
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size_t index_count;
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tgba_gspn_private_(bdd_dict* dict, const gspn_environment& env)
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: refs(0), dict(dict)
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{
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const gspn_environment::prop_map& p = env.get_prop_map();
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try
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{
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for (gspn_environment::prop_map::const_iterator i = p.begin();
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i != p.end(); ++i)
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{
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int var = dict->register_proposition(i->second, this);
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AtomicProp index;
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int err = prop_index(i->first.c_str(), &index);
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if (err)
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throw gspn_exeption("prop_index()", err);
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AtomicPropKind kind;
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err = prop_kind(index, &kind);
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if (err)
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throw gspn_exeption("prop_kind()", err);
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prop_dict[index] = ab_pair(kind, bdd_ithvar(var));
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}
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index_count = prop_dict.size();
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all_indexes = new AtomicProp[index_count];
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unsigned idx = 0;
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for (prop_map::const_iterator i = prop_dict.begin();
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i != prop_dict.end(); ++i)
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all_indexes[idx++] = i->first;
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}
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catch (...)
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{
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// If an exception occurs during the loop, we need to clean
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// all BDD variables which have been registered so far.
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dict->unregister_all_my_variables(this);
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}
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}
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tgba_gspn_private_::~tgba_gspn_private_()
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{
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dict->unregister_all_my_variables(this);
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}
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bdd index_to_bdd(AtomicProp index) const
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{
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if (index == EVENT_TRUE)
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return bddtrue;
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prop_map::const_iterator i = prop_dict.find(index);
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assert(i != prop_dict.end());
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return i->second.second;
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}
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};
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// state_gspn
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//////////////////////////////////////////////////////////////////////
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class state_gspn: public state
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{
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public:
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state_gspn(State s)
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: state_(s)
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{
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}
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virtual
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~state_gspn()
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{
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}
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virtual int
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compare(const state* other) const
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{
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const state_gspn* o = dynamic_cast<const state_gspn*>(other);
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assert(o);
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return reinterpret_cast<char*>(o->get_state())
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- reinterpret_cast<char*>(get_state());
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}
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virtual state_gspn* clone() const
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{
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return new state_gspn(get_state());
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}
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State
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get_state() const
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{
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return state_;
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}
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private:
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State state_;
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}; // state_gspn
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// tgba_succ_iterator_gspn
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//////////////////////////////////////////////////////////////////////
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class tgba_succ_iterator_gspn: public tgba_succ_iterator
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{
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public:
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tgba_succ_iterator_gspn(bdd state_conds, State state,
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tgba_gspn_private_* data)
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: state_conds_(state_conds),
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successors_(0),
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size_(0),
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current_(0),
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data_(data)
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{
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int res = succ(state, &successors_, &size_);
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if (res)
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throw gspn_exeption("succ()", res);
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assert(successors_);
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// GSPN is expected to return a looping "dead" transition where
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// there is no successor,
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assert(size_> 0);
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}
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virtual
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~tgba_succ_iterator_gspn()
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{
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succ_free(successors_);
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}
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virtual void
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first()
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{
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current_ = 0;
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}
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virtual void
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next()
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{
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assert(!done());
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++current_;
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}
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virtual bool
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done() const
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{
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return current_ >= size_;
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}
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virtual state*
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current_state() const
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{
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return new state_gspn(successors_[current_].s);
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}
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virtual bdd
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current_condition() const
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{
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bdd p = data_->index_to_bdd(successors_[current_].p);
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return state_conds_ & p;
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}
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virtual bdd
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current_accepting_conditions() const
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{
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// There is no accepting conditions in GSPN systems.
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return bddfalse;
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}
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private:
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bdd state_conds_; /// All conditions known on STATE.
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EventPropSucc* successors_; /// array of successors
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size_t size_; /// size of successors_
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size_t current_; /// current position in successors_
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tgba_gspn_private_* data_;
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}; // tgba_succ_iterator_gspn
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// gspn_environment
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//////////////////////////////////////////////////////////////////////
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gspn_environment::gspn_environment()
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{
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}
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gspn_environment::~gspn_environment()
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{
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for (prop_map::iterator i = props_.begin(); i != props_.end(); ++i)
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ltl::destroy(i->second);
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}
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bool
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gspn_environment::declare(const std::string& prop_str)
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{
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if (props_.find(prop_str) != props_.end())
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return false;
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props_[prop_str] = ltl::atomic_prop::instance(prop_str, *this);
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return true;
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}
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ltl::formula*
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gspn_environment::require(const std::string& prop_str)
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{
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prop_map::iterator i = props_.find(prop_str);
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if (i == props_.end())
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return 0;
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// It's an atomic_prop, so we do not have to use the clone() visitor.
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return i->second->ref();
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}
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/// Get the name of the environment.
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const std::string&
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gspn_environment::name()
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{
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static std::string name("gspn environment");
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return name;
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}
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const gspn_environment::prop_map&
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gspn_environment::get_prop_map() const
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{
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return props_;
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}
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// tgba_gspn
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//////////////////////////////////////////////////////////////////////
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tgba_gspn::tgba_gspn(bdd_dict* dict, const gspn_environment& env)
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{
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data_ = new tgba_gspn_private_(dict, env);
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}
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tgba_gspn::tgba_gspn(const tgba_gspn& other)
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: tgba()
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{
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data_ = other.data_;
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++data_->refs;
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}
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tgba_gspn::~tgba_gspn()
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{
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if (--data_->refs == 0)
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delete data_;
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}
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tgba_gspn&
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tgba_gspn::operator=(const tgba_gspn& other)
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{
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if (&other == this)
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return *this;
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this->~tgba_gspn();
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new (this) tgba_gspn(other);
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return *this;
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}
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state* tgba_gspn::get_init_state() const
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{
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State s;
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int err = initial_state(&s);
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if (err)
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throw gspn_exeption("initial_state()", err);
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return new state_gspn(s);
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}
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tgba_succ_iterator*
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tgba_gspn::succ_iter(const state* state) const
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{
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const state_gspn* s = dynamic_cast<const state_gspn*>(state);
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assert(s);
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// Build the BDD of the conditions available on this state.
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unsigned char* cube = 0;
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int res = satisfy(s->get_state(),
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data_->all_indexes, &cube, data_->index_count);
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if (res)
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throw gspn_exeption("satisfy()", res);
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assert(cube);
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bdd state_conds = bddtrue;
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for (size_t i = 0; i < data_->index_count; ++i)
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{
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state_conds &= data_->index_to_bdd(cube[i]);
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}
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satisfy_free(cube);
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return new tgba_succ_iterator_gspn(state_conds, s->get_state(), data_);
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}
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bdd_dict*
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tgba_gspn::get_dict() const
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{
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return data_->dict;
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}
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std::string
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tgba_gspn::format_state(const state* state) const
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{
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const state_gspn* s = dynamic_cast<const state_gspn*>(state);
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assert(s);
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// FIXME: We ought to ask GSPN to format the state.
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std::ostringstream os;
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os << s->get_state();
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return os.str();
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}
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bdd
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tgba_gspn::all_accepting_conditions() const
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{
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// There is no accepting conditions in GSPN systems.
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return bddfalse;
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}
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bdd
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tgba_gspn::neg_accepting_conditions() const
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{
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// There is no accepting conditions in GSPN systems.
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return bddtrue;
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}
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}
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