/** if a state defines a entry action then the execution state must have a entryAction. */
  @Test
  public void testStateEntryAction() {
    Statechart sc = _createStatechart("test");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("main", sc);
    Entry e = _createEntry(EntryKind.INITIAL, null, r);
    State s1 = _createState("s1", r);
    State s2 = _createState("s2", r);
    _createTransition(e, s1);
    _createTransition(s1, s2);
    LocalReaction entryAction = _createEntryAction(s2);
    _createVariableAssignment(
        v1, AssignmentOperator.ASSIGN, _createValue(42), (ReactionEffect) entryAction.getEffect());

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    ExecutionState _s2 = flow.getStates().get(1);
    assertEquals(s1.getName(), _s1.getSimpleName());
    assertEquals(s2.getName(), _s2.getSimpleName());

    assertNotNull(_s2.getEntryAction());
    assertNull(_s1.getEntryAction());
  }
  /**
   * A leaf state must have a enter sequence. This enter sequence consists of an entry action call
   * and a state enter step.
   */
  @SuppressWarnings("unused")
  @Test
  public void testLeafStateEnterSequence() {
    Statechart sc = _createStatechart("cs");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("r", sc);
    State s1 = _createState("s1", r);
    LocalReaction entryAction = _createEntryAction(s1);
    _createVariableAssignment(
        v1, AssignmentOperator.ASSIGN, _createValue(42), (ReactionEffect) entryAction.getEffect());

    Entry e = _createEntry(EntryKind.INITIAL, null, r);
    Transition t = _createTransition(e, s1);

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    assertEquals(s1.getName(), _s1.getSimpleName());

    assertNotNull(_s1.getEntryAction());
    assertNotNull(_s1.getEnterSequences().get(0));
    assertEquals(2, _s1.getEnterSequences().get(0).getSteps().size());

    assertCall(_s1.getEnterSequences().get(0), 0, _s1.getEntryAction());

    assertClass(EnterState.class, _s1.getEnterSequences().get(0).getSteps().get(1));
  }
  /**
   * A composite state must have a enter sequence. This enter sequence consists of an entry action
   * call and a enter sequence call for each sub region.
   */
  @Test
  public void testCompositeStateEnterSequence() {
    Statechart sc = _createStatechart("cs");
    {
      Scope scope = _createInterfaceScope("interface", sc);
      VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);

      Region r = _createRegion("r", sc);
      {
        State s1 = _createState("s1", r);
        {
          _createEntryAssignment(v1, s1, 1);
          Region r1_s1 = _createRegion("r1", s1);
          {
            Entry e = _createEntry(EntryKind.INITIAL, null, r1_s1);
            State s2 = _createState("s2", r1_s1);
            _createTransition(e, s2);
          }
          Region r2_s1 = _createRegion("r2", s1);
          {
            Entry e = _createEntry(EntryKind.INITIAL, null, r2_s1);
            State s3 = _createState("s3", r2_s1);
            _createTransition(e, s3);
          }
        }

        Entry e = _createEntry(EntryKind.INITIAL, null, r);
        _createTransition(e, s1);
      }
    }

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    assertEquals("s1", _s1.getSimpleName());

    ExecutionState _s2 = flow.getStates().get(1);
    assertEquals("s2", _s2.getSimpleName());

    ExecutionState _s3 = flow.getStates().get(2);
    assertEquals("s3", _s3.getSimpleName());

    assertNotNull(_s1.getEntryAction());
    assertNotNull(_s1.getEnterSequences().get(0));
    assertEquals(3, _s1.getEnterSequences().get(0).getSteps().size());

    assertCall(_s1.getEnterSequences().get(0), 0, _s1.getEntryAction());
    assertCall(_s1.getEnterSequences().get(0), 1, _s2.getSuperScope().getEnterSequences().get(0));
    Sequence r1EntryReactSequence = flow.getNodes().get(0).getReactSequence();
    assertCall(_s2.getSuperScope().getEnterSequences().get(0), 0, r1EntryReactSequence);
    assertCall(
        ((Sequence) r1EntryReactSequence.getSteps().get(0)), 0, _s2.getEnterSequences().get(0));

    assertCall(_s1.getEnterSequences().get(0), 2, _s3.getSuperScope().getEnterSequences().get(0));
    Sequence r2EntryReactSequence = flow.getNodes().get(1).getReactSequence();
    assertCall(_s3.getSuperScope().getEnterSequences().get(0), 0, r2EntryReactSequence);
    assertCall(
        ((Sequence) r2EntryReactSequence.getSteps().get(0)), 0, _s3.getEnterSequences().get(0));
  }
  /**
   * If a time trigger is defined for a transition then an event must be introduced into the
   * execution flow.
   */
  @Test
  public void testSingleTransitionTimeTrigger() {

    Statechart sc = _createStatechart("test");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("main", sc);
    State s = _createState("s", r);

    Transition t = _createTransition(s, s);
    ReactionTrigger tr1 = _createReactionTrigger(t);
    _createTimeEventSpec(TimeEventType.AFTER, _createValue(1), TimeUnit.SECOND, tr1);

    AssignmentExpression assign =
        _createVariableAssignment(
            v1, AssignmentOperator.ASSIGN, _createValue(42), (ReactionEffect) t.getEffect());

    ExecutionFlow flow = sequencer.transform(sc);

    // assert definition of time event
    Scope timerScope = flow.getScopes().get(1);
    assertTrue(timerScope.getDeclarations().get(0) instanceof TimeEvent);

    TimeEvent te = (TimeEvent) timerScope.getDeclarations().get(0);

    // assert that the reaction check checks the time event
    assertEquals(1, flow.getStates().size());
    ExecutionState _s = flow.getStates().get(0);
    assertEquals(s.getName(), _s.getSimpleName());
    If _if =
        (If)
            SCTTestUtil.flattenSequenceStepsAsList(flow.getStates().get(0).getReactSequence())
                .get(0);

    ElementReferenceExpression _ere = (ElementReferenceExpression) _if.getCheck().getCondition();
    assertSame(te, _ere.getReference());

    // assert the scheduling of the time event during state entry
    assertNotNull(_s.getEntryAction());
    Sequence entryAction = (Sequence) _s.getEntryAction();
    ScheduleTimeEvent ste = (ScheduleTimeEvent) entryAction.getSteps().get(0);
    assertSame(te, ste.getTimeEvent());
    NumericalMultiplyDivideExpression multiply =
        (NumericalMultiplyDivideExpression) ste.getTimeValue();
    assertIntLiteral(1, ((PrimitiveValueExpression) multiply.getLeftOperand()).getValue());
    assertIntLiteral(1000, ((PrimitiveValueExpression) multiply.getRightOperand()).getValue());
    assertEquals(MultiplicativeOperator.MUL, multiply.getOperator());

    // assert the unscheduling of the time events during state exit
    assertNotNull(_s.getExitAction());
    Sequence exitAction = (Sequence) _s.getExitAction();
    UnscheduleTimeEvent ute = (UnscheduleTimeEvent) exitAction.getSteps().get(0);
    assertSame(te, ute.getTimeEvent());
  }
  /**
   * If a entry trigger is combined with a guard condition then the entry action is executed
   * conditionally with this trigger.
   */
  @Test
  public void testEntryActionWithoutGuard() {

    Statechart sc = _createStatechart("test");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("main", sc);
    Entry e = _createEntry(EntryKind.INITIAL, null, r);
    State s1 = _createState("s1", r);
    State s2 = _createState("s2", r);
    _createTransition(e, s1);
    _createTransition(s1, s2);
    LocalReaction entryAction = _createEntryAction(s2);
    _createVariableAssignment(
        v1, AssignmentOperator.ASSIGN, _createValue(42), (ReactionEffect) entryAction.getEffect());
    // ((ReactionTrigger)entryAction.getTrigger()).setGuardExpression(_createValue(true));

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    ExecutionState _s2 = flow.getStates().get(1);
    assertEquals(s1.getName(), _s1.getSimpleName());
    assertEquals(s2.getName(), _s2.getSimpleName());

    Sequence _entrySeq = (Sequence) _s2.getEntryAction();

    assertClass(Sequence.class, _entrySeq.getSteps().get(0));
    assertAssignment(
        ((Sequence) _entrySeq.getSteps().get(0)).getSteps().get(0),
        "v1",
        AssignmentOperator.ASSIGN,
        "42");
  }
  /** The exit action must be part of the reaction effect sequence */
  @SuppressWarnings("unused")
  @Test
  public void testStateReaction_WithEntryAction() {
    SimpleFlatTSC tsc = new SimpleFlatTSC();

    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, tsc.s_scope);
    LocalReaction entryAction = _createEntryAction(tsc.s2);
    AssignmentExpression assign =
        _createVariableAssignment(
            v1,
            AssignmentOperator.ASSIGN,
            _createValue(21),
            (ReactionEffect) entryAction.getEffect());

    ExecutionFlow flow = sequencer.transform(tsc.sc);

    // test state with one outgoing transition
    ExecutionState _s1 = flow.getStates().get(0);
    ExecutionState _s2 = flow.getStates().get(1);
    assertEquals(tsc.s1.getName(), _s1.getSimpleName());
    assertEquals(tsc.s2.getName(), _s2.getSimpleName());

    assertEquals(1, _s1.getReactions().size());
    Reaction reaction = _s1.getReactions().get(0);

    assertNotNull(reaction.getCheck());

    assertNotNull(reaction.getEffect());
    Sequence seq = (Sequence) reaction.getEffect();
    assertEquals(2, seq.getSteps().size());

    assertCall(seq, 0, _s1.getExitSequence());
    assertCall(seq, 1, _s2.getEnterSequences().get(0));
    assertCall(_s2.getEnterSequences().get(0), 0, _s2.getEntryAction());
  }
  @Test
  public void testSingleLocalTimeTrigger() {

    Statechart sc = _createStatechart("test");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("main", sc);
    State s = _createState("s", r);

    LocalReaction timeTriggeredReaction =
        _createTimeTriggeredReaction(s, TimeEventType.AFTER, _createValue(2), TimeUnit.MILLISECOND);
    AssignmentExpression assign =
        _createVariableAssignment(
            v1,
            AssignmentOperator.ASSIGN,
            _createValue(42),
            (ReactionEffect) timeTriggeredReaction.getEffect());

    ExecutionFlow flow = sequencer.transform(sc);

    Scope timerScope = flow.getScopes().get(1);
    assertTrue(timerScope.getDeclarations().get(0) instanceof TimeEvent);

    TimeEvent te = (TimeEvent) timerScope.getDeclarations().get(0);

    // assert that the reaction check checks the time event
    ExecutionState _s = flow.getStates().get(0);

    // assert the scheduling of the time event during state entry
    assertNotNull(_s.getEntryAction());
    Sequence entryAction = (Sequence) _s.getEntryAction();
    ScheduleTimeEvent ste = (ScheduleTimeEvent) entryAction.getSteps().get(0);
    assertSame(te, ste.getTimeEvent());
    PrimitiveValueExpression value = (PrimitiveValueExpression) ste.getTimeValue();
    assertIntLiteral(2, value.getValue());
    assertNotNull(_s.getExitAction());
    Sequence exitAction = (Sequence) _s.getExitAction();
    UnscheduleTimeEvent ute = (UnscheduleTimeEvent) exitAction.getSteps().get(0);
    assertSame(te, ute.getTimeEvent());
  }
  /** The enter sequence must be called withnin incoming transitions. */
  @SuppressWarnings("unused")
  @Test
  public void testFinalStateEnterSequenceCall() {

    Statechart sc = _createStatechart("sc");
    {
      InterfaceScope s_scope = _createInterfaceScope("Interface", sc);
      VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, s_scope);
      EventDefinition e1 = _createEventDefinition("e1", s_scope);

      Region r = _createRegion("r", sc);
      {
        State s1 = _createState("s1", r);

        FinalState fs = _createFinalState(r);

        Transition t_s1_fs = _createTransition(s1, fs);
        _createReactionTrigger(t_s1_fs);
        _createRegularEventSpec(e1, (ReactionTrigger) t_s1_fs.getTrigger());
      }
    }

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    assertEquals("sc.r.s1", _s1.getName());

    ExecutionState _fs = flow.getStates().get(1);
    assertEquals("sc.r._final_", _fs.getName());

    assertNull(_fs.getEntryAction());
    assertNull(_fs.getExitAction());

    // the transition s1 -> fs must includes the fs exit sequence call
    Sequence cycle = _s1.getReactSequence();
    If _if = (If) SCTTestUtil.flattenSequenceStepsAsList(cycle).get(0);
    assertCall(_if.getThenStep(), _s1.getReactions().get(0).getEffect());

    Sequence _seq = (Sequence) _s1.getReactions().get(0).getEffect();
    assertCall(_seq, 1, _fs.getEnterSequences().get(0));
  }
  /**
   * A leaf state must have a enter sequence. This enter sequence consists of an entry action call
   * and a state enter step.
   */
  @SuppressWarnings("unused")
  @Test
  public void testFinalStateEnterSequence() {
    Statechart sc = _createStatechart("cs");
    Scope scope = _createInterfaceScope("interface", sc);
    VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, scope);
    Region r = _createRegion("r", sc);
    FinalState fs = _createFinalState(r);

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _fs = flow.getStates().get(0);
    assertEquals("_final_0", _fs.getSimpleName());
    assertSame(fs, _fs.getSourceElement());

    assertNull(_fs.getEntryAction());
    assertNotNull(_fs.getEnterSequences().get(0));

    assertEquals(1, _fs.getEnterSequences().get(0).getSteps().size());
    assertClass(EnterState.class, _fs.getEnterSequences().get(0).getSteps().get(0));
  }
  /**
   * A composite state must have a exit sequence. This exit sequence consists of an exit action call
   * and a state switch for all leaf states.
   */
  @SuppressWarnings("unused")
  @Test
  public void testCompositeStateExitSequence_Deep() {

    Statechart sc = _createStatechart("sc");
    {
      InterfaceScope s_scope = _createInterfaceScope("Interface", sc);
      VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, s_scope);
      EventDefinition e1 = _createEventDefinition("e1", s_scope);

      Region r = _createRegion("r", sc);
      {
        State s1 = _createState("s1", r);
        {
          _createExitAssignment(v1, s1, 1);

          Region r_s1 = _createRegion("r", s1);
          {
            State s3 = _createState("s3", r_s1);
            {
              _createExitAssignment(v1, s3, 2);

              Region r_s3 = _createRegion("r", s3);
              {
                State s4 = _createState("s4", r_s3);
                _createExitAssignment(v1, s4, 3);

                FinalState fs = _createFinalState(r_s3);
              }
            }
          }
        }
        State s2 = _createState("s2", r);
        {
          Region r_s1 = _createRegion("r", s2);
          {
            _createState("s6", r_s1);
          }
        }
      }
    }

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    assertEquals("sc.r.s1", _s1.getName());

    ExecutionState _s3 = flow.getStates().get(1);
    assertEquals("sc.r.s1.r.s3", _s3.getName());

    ExecutionState _s4 = flow.getStates().get(2);
    assertEquals("sc.r.s1.r.s3.r.s4", _s4.getName());

    ExecutionState _fs = flow.getStates().get(3);
    assertEquals("sc.r.s1.r.s3.r._final_", _fs.getName());

    ExecutionState _s6 = flow.getStates().get(5);
    assertEquals("sc.r.s2.r.s6", _s6.getName());

    assertNull(_fs.getEntryAction());
    assertNull(_fs.getExitAction());
    assertNotNull(_fs.getExitSequence());
    assertEquals(2, _s1.getExitSequence().getSteps().size());

    ExecutionScope _r_s1 = _s1.getSubScopes().get(0);

    assertCall(_s1.getExitSequence(), 0, _r_s1.getExitSequence());
    Step _switch = _r_s1.getExitSequence().getSteps().get(0);
    assertStateSwitch(_switch, _s4, _fs);
    assertCall(
        assertedSequence(assertedStateCase(_switch, _s4).getStep()), 0, _s4.getExitSequence());
    assertCall(assertedSequence(assertedStateCase(_switch, _s4).getStep()), 1, _s3.getExitAction());
    assertCall(
        assertedSequence(assertedStateCase(_switch, _fs).getStep()), 0, _fs.getExitSequence());
    assertCall(assertedSequence(assertedStateCase(_switch, _fs).getStep()), 1, _s3.getExitAction());

    assertCall(_s1.getExitSequence(), 1, _s1.getExitAction());
  }
  /**
   * A final state must be transformed into a execution state with name '_final_'. and must include
   * parent reactions.
   */
  @SuppressWarnings("unused")
  @Test
  public void testFinalState() {

    Statechart sc = _createStatechart("sc");
    {
      InterfaceScope s_scope = _createInterfaceScope("Interface", sc);
      VariableDefinition v1 = _createVariableDefinition("v1", TYPE_INTEGER, s_scope);
      EventDefinition e1 = _createEventDefinition("e1", s_scope);

      Region r = _createRegion("r", sc);
      {
        State s1 = _createState("s1", r);
        {
          // a local reaction: "e1 / x=42;"
          LocalReaction lr1 = _createLocalReaction(s1, null);
          _createRegularEventSpec(e1, (ReactionTrigger) lr1.getTrigger());
          ReactionEffect lr1_eff = _createReactionEffect(lr1);
          AssignmentExpression assign1 =
              _createVariableAssignment(v1, AssignmentOperator.ASSIGN, _createValue(42), lr1_eff);

          Region r_s1 = _createRegion("r", s1);
          {
            State s3 = _createState("s3", r_s1);
            {
              _createEntryAssignment(v1, s3, 2);

              Region r_s3 = _createRegion("r", s3);
              {
                State s4 = _createState("s4", r_s3);
                // _createEntryAssignment(v1, s4, 3);

                FinalState fs = _createFinalState(r_s3);

                Transition t_s4_fs = _createTransition(findState(sc, "s4"), fs);
                _createReactionTrigger(t_s4_fs);
                _createRegularEventSpec(e1, (ReactionTrigger) t_s4_fs.getTrigger());
              }
            }
          }
        }
        State s2 = _createState("s2", r);
        {
          Region r_s1 = _createRegion("r", s2);
          {
            _createState("s6", r_s1);
          }
        }
      }

      Transition t_s3_s6 = _createTransition(findState(sc, "s3"), findState(sc, "s6"));
      _createReactionTrigger(t_s3_s6);
      _createRegularEventSpec(e1, (ReactionTrigger) t_s3_s6.getTrigger());
    }

    ExecutionFlow flow = sequencer.transform(sc);

    ExecutionState _s1 = flow.getStates().get(0);
    assertEquals("sc.r.s1", _s1.getName());

    ExecutionState _s3 = flow.getStates().get(1);
    assertEquals("sc.r.s1.r.s3", _s3.getName());

    ExecutionState _s4 = flow.getStates().get(2);
    assertEquals("sc.r.s1.r.s3.r.s4", _s4.getName());

    ExecutionState _fs = flow.getStates().get(3);
    assertEquals("sc.r.s1.r.s3.r._final_", _fs.getName());

    ExecutionState _s6 = flow.getStates().get(5);
    assertEquals("sc.r.s2.r.s6", _s6.getName());

    assertNull(_fs.getEntryAction());
    assertNull(_fs.getExitAction());

    Sequence cycle = _fs.getReactSequence();

    Sequence _seq = (Sequence) cycle.getSteps().get(0);

    // first entry is the s1 local reaction
    List<Step> steps = SCTTestUtil.flattenSequenceStepsAsList(_seq);
    If _if = (If) steps.get(0);
    assertCall(_if.getThenStep(), _s1.getReactions().get(0).getEffect());

    // second entry is the s3 cycle with the transition reaction
    _if = (If) steps.get(1);
    assertCall(_if.getThenStep(), _s3.getReactions().get(0).getEffect());
    assertTrue(_s3.getReactions().get(0).isTransition());
    assertNotNull(_if.getElseStep());
  }