remove python2.x support
[blender.git] / source / gameengine / GameLogic / SCA_ISensor.cpp
index 8a40c0c35f3a99ecbfc10a73630df5c347f4a485..b018124dccac27096d170f57d64a2d8acf7c499a 100644 (file)
@@ -45,26 +45,27 @@ void        SCA_ISensor::ReParent(SCA_IObject* parent)
        SCA_ILogicBrick::ReParent(parent);
        // will be done when the sensor is activated
        //m_eventmgr->RegisterSensor(this);
-       this->SetActive(false);
+       //this->SetActive(false);
 }
 
 
 SCA_ISensor::SCA_ISensor(SCA_IObject* gameobj,
-                                                class SCA_EventManager* eventmgr,
-                                                PyTypeObject* T ) :
-       SCA_ILogicBrick(gameobj,T),
-       m_triggered(false)
+                                                class SCA_EventManager* eventmgr) :
+       SCA_ILogicBrick(gameobj)
 {
        m_links = 0;
        m_suspended = false;
        m_invert = false;
        m_level = false;
+       m_tap = false;
        m_reset = false;
        m_pos_ticks = 0;
        m_neg_ticks = 0;
        m_pos_pulsemode = false;
        m_neg_pulsemode = false;
        m_pulse_frequency = 0;
+       m_state = false;
+       m_prev_state = false;
        
        m_eventmgr = eventmgr;
 }
@@ -75,6 +76,12 @@ SCA_ISensor::~SCA_ISensor()
        // intentionally empty
 }
 
+void SCA_ISensor::ProcessReplica()
+{
+       SCA_ILogicBrick::ProcessReplica();
+       m_linkedcontrollers.clear();
+}
+
 bool SCA_ISensor::IsPositiveTrigger() { 
        bool result = false;
        
@@ -104,9 +111,13 @@ void SCA_ISensor::SetLevel(bool lvl) {
        m_level = lvl;
 }
 
+void SCA_ISensor::SetTap(bool tap) {
+       m_tap = tap;
+}
 
-float SCA_ISensor::GetNumber() {
-       return IsPositiveTrigger();
+
+double SCA_ISensor::GetNumber() {
+       return GetState();
 }
 
 void SCA_ISensor::Suspend() {
@@ -143,27 +154,80 @@ void SCA_ISensor::RegisterToManager()
 {
        // sensor is just activated, initialize it
        Init();
-       m_newControllers.erase(m_newControllers.begin(), m_newControllers.end());
+       m_state = false;
        m_eventmgr->RegisterSensor(this);
 }
 
+void SCA_ISensor::LinkToController(SCA_IController* controller)
+{
+       m_linkedcontrollers.push_back(controller);
+}
+
+void SCA_ISensor::UnlinkController(SCA_IController* controller)
+{
+       std::vector<class SCA_IController*>::iterator contit;
+       for (contit = m_linkedcontrollers.begin();!(contit==m_linkedcontrollers.end());++contit)
+       {
+               if ((*contit) == controller)
+               {
+                       *contit = m_linkedcontrollers.back();
+                       m_linkedcontrollers.pop_back();
+                       return;
+               }
+       }
+       printf("Missing link from sensor %s:%s to controller %s:%s\n", 
+               m_gameobj->GetName().ReadPtr(), GetName().ReadPtr(), 
+               controller->GetParent()->GetName().ReadPtr(), controller->GetName().ReadPtr());
+}
+
+void SCA_ISensor::UnlinkAllControllers()
+{
+       std::vector<class SCA_IController*>::iterator contit;
+       for (contit = m_linkedcontrollers.begin();!(contit==m_linkedcontrollers.end());++contit)
+       {
+               (*contit)->UnlinkSensor(this);
+       }
+       m_linkedcontrollers.clear();
+}
+
 void SCA_ISensor::UnregisterToManager()
 {
        m_eventmgr->RemoveSensor(this);
+       m_links = 0;
 }
 
-void SCA_ISensor::Activate(class SCA_LogicManager* logicmgr,     CValue* event)
+void SCA_ISensor::ActivateControllers(class SCA_LogicManager* logicmgr)
+{
+    for(vector<SCA_IController*>::const_iterator c= m_linkedcontrollers.begin();
+               c!=m_linkedcontrollers.end();++c)
+       {
+               SCA_IController* contr = *c;
+               if (contr->IsActive())
+                       logicmgr->AddTriggeredController(contr, this);
+       }
+}
+
+void SCA_ISensor::Activate(class SCA_LogicManager* logicmgr)
 {
        
        // calculate if a __triggering__ is wanted
        // don't evaluate a sensor that is not connected to any controller
        if (m_links && !m_suspended) {
-               bool result = this->Evaluate(event);
+               bool result = this->Evaluate();
+               // store the state for the rest of the logic system
+               m_prev_state = m_state;
+               m_state = this->IsPositiveTrigger();
                if (result) {
-                       logicmgr->AddActivatedSensor(this);     
-                       // reset these counters so that pulse are synchronized with transition
-                       m_pos_ticks = 0;
-                       m_neg_ticks = 0;
+                       // the sensor triggered this frame
+                       if (m_state || !m_tap) {
+                               ActivateControllers(logicmgr);  
+                               // reset these counters so that pulse are synchronized with transition
+                               m_pos_ticks = 0;
+                               m_neg_ticks = 0;
+                       } else
+                       {
+                               result = false;
+                       }
                } else
                {
                        /* First, the pulsing behaviour, if pulse mode is
@@ -172,41 +236,55 @@ void SCA_ISensor::Activate(class SCA_LogicManager* logicmgr,        CValue* event)
                        if (m_pos_pulsemode) {
                                m_pos_ticks++;
                                if (m_pos_ticks > m_pulse_frequency) {
-                                       if ( this->IsPositiveTrigger() )
+                                       if ( m_state )
                                        {
-                                               logicmgr->AddActivatedSensor(this);
+                                               ActivateControllers(logicmgr);
+                                               result = true;
                                        }
                                        m_pos_ticks = 0;
                                } 
                        }
-                       
-                       if (m_neg_pulsemode)
+                       // negative pulse doesn't make sense in tap mode, skip
+                       if (m_neg_pulsemode && !m_tap)
                        {
                                m_neg_ticks++;
                                if (m_neg_ticks > m_pulse_frequency) {
-                                       if (!this->IsPositiveTrigger() )
+                                       if (!m_state )
                                        {
-                                               logicmgr->AddActivatedSensor(this);
+                                               ActivateControllers(logicmgr);
+                                               result = true;
                                        }
                                        m_neg_ticks = 0;
                                }
                        }
                }
-               if (!m_newControllers.empty())
+               if (m_tap)
                {
-                       if (!IsActive() && m_level)
+                       // in tap mode: we send always a negative pulse immediately after a positive pulse
+                       if (!result)
                        {
-                               // This level sensor is connected to at least one controller that was just made 
-                               // active but it did not generate an event yet, do it now to those controllers only 
-                               for (std::vector<SCA_IController*>::iterator ci=m_newControllers.begin();
-                                        ci != m_newControllers.end(); ci++)
+                               // the sensor did not trigger on this frame
+                               if (m_prev_state)
                                {
-                                       logicmgr->AddTriggeredController(*ci, this);
+                                       // but it triggered on previous frame => send a negative pulse
+                                       ActivateControllers(logicmgr);
+                                       result = true;
                                }
+                               // in any case, absence of trigger means sensor off
+                               m_state = false;
+                       }
+               }
+               if (!result && m_level)
+               {
+                       // This level sensor is connected to at least one controller that was just made 
+                       // active but it did not generate an event yet, do it now to those controllers only 
+                       for(vector<SCA_IController*>::const_iterator c= m_linkedcontrollers.begin();
+                               c!=m_linkedcontrollers.end();++c)
+                       {
+                               SCA_IController* contr = *c;
+                               if (contr->IsJustActivated())
+                                       logicmgr->AddTriggeredController(contr, this);
                        }
-                       // clear the list. Instead of using clear, which also release the memory,
-                       // use erase, which keeps the memory available for next time.
-                       m_newControllers.erase(m_newControllers.begin(), m_newControllers.end());
                }
        } 
 }
@@ -218,24 +296,24 @@ void SCA_ISensor::Activate(class SCA_LogicManager* logicmgr,        CValue* event)
 const char SCA_ISensor::IsPositive_doc[] = 
 "isPositive()\n"
 "\tReturns whether the sensor is in an active state.\n";
-PyObject* SCA_ISensor::PyIsPositive(PyObject* self)
+PyObject* SCA_ISensor::PyIsPositive()
 {
        ShowDeprecationWarning("isPositive()", "the read-only positive property");
-       int retval = IsPositiveTrigger();
-       return PyInt_FromLong(retval);
+       int retval = GetState();
+       return PyLong_FromSsize_t(retval);
 }
 
 const char SCA_ISensor::IsTriggered_doc[] = 
 "isTriggered()\n"
 "\tReturns whether the sensor has triggered the current controller.\n";
-PyObject* SCA_ISensor::PyIsTriggered(PyObject* self)
+PyObject* SCA_ISensor::PyIsTriggered()
 {
        ShowDeprecationWarning("isTriggered()", "the read-only triggered property");
        // check with the current controller
        int retval = 0;
        if (SCA_PythonController::m_sCurrentController)
                retval = SCA_PythonController::m_sCurrentController->IsTriggered(this);
-       return PyInt_FromLong(retval);
+       return PyLong_FromSsize_t(retval);
 }
 
 /**
@@ -244,7 +322,7 @@ PyObject* SCA_ISensor::PyIsTriggered(PyObject* self)
 const char SCA_ISensor::GetUsePosPulseMode_doc[] = 
 "getUsePosPulseMode()\n"
 "\tReturns whether positive pulse mode is active.\n";
-PyObject* SCA_ISensor::PyGetUsePosPulseMode(PyObject* self)
+PyObject* SCA_ISensor::PyGetUsePosPulseMode()
 {
        ShowDeprecationWarning("getUsePosPulseMode()", "the usePosPulseMode property");
        return BoolToPyArg(m_pos_pulsemode);
@@ -258,11 +336,11 @@ const char SCA_ISensor::SetUsePosPulseMode_doc[] =
 "\t - pulse? : Pulse when a positive event occurs?\n"
 "\t            (KX_TRUE, KX_FALSE)\n"
 "\tSet whether to do pulsing when positive pulses occur.\n";
-PyObject* SCA_ISensor::PySetUsePosPulseMode(PyObject* self, PyObject* args, PyObject* kwds)
+PyObject* SCA_ISensor::PySetUsePosPulseMode(PyObject* args)
 {
        ShowDeprecationWarning("setUsePosPulseMode()", "the usePosPulseMode property");
        int pyarg = 0;
-       if(!PyArg_ParseTuple(args, "i", &pyarg)) { return NULL; }
+       if(!PyArg_ParseTuple(args, "i:setUsePosPulseMode", &pyarg)) { return NULL; }
        m_pos_pulsemode = PyArgToBool(pyarg);
        Py_RETURN_NONE;
 }
@@ -273,10 +351,10 @@ PyObject* SCA_ISensor::PySetUsePosPulseMode(PyObject* self, PyObject* args, PyOb
 const char SCA_ISensor::GetFrequency_doc[] = 
 "getFrequency()\n"
 "\tReturns the frequency of the updates in pulse mode.\n" ;
-PyObject* SCA_ISensor::PyGetFrequency(PyObject* self)
+PyObject* SCA_ISensor::PyGetFrequency()
 {
        ShowDeprecationWarning("getFrequency()", "the frequency property");
-       return PyInt_FromLong(m_pulse_frequency);
+       return PyLong_FromSsize_t(m_pulse_frequency);
 }
 
 /**
@@ -287,12 +365,12 @@ const char SCA_ISensor::SetFrequency_doc[] =
 "\t- pulse_frequency: The frequency of the updates in pulse mode (integer)"
 "\tSet the frequency of the updates in pulse mode.\n"
 "\tIf the frequency is negative, it is set to 0.\n" ;
-PyObject* SCA_ISensor::PySetFrequency(PyObject* self, PyObject* args, PyObject* kwds)
+PyObject* SCA_ISensor::PySetFrequency(PyObject* args)
 {
        ShowDeprecationWarning("setFrequency()", "the frequency property");
        int pulse_frequencyArg = 0;
 
-       if(!PyArg_ParseTuple(args, "i", &pulse_frequencyArg)) {
+       if(!PyArg_ParseTuple(args, "i:setFrequency", &pulse_frequencyArg)) {
                return NULL;
        }
        
@@ -310,7 +388,7 @@ PyObject* SCA_ISensor::PySetFrequency(PyObject* self, PyObject* args, PyObject*
 const char SCA_ISensor::GetInvert_doc[] = 
 "getInvert()\n"
 "\tReturns whether or not pulses from this sensor are inverted.\n" ;
-PyObject* SCA_ISensor::PyGetInvert(PyObject* self)
+PyObject* SCA_ISensor::PyGetInvert()
 {
        ShowDeprecationWarning("getInvert()", "the invert property");
        return BoolToPyArg(m_invert);
@@ -320,11 +398,11 @@ const char SCA_ISensor::SetInvert_doc[] =
 "setInvert(invert?)\n"
 "\t- invert?: Invert the event-values? (KX_TRUE, KX_FALSE)\n"
 "\tSet whether to invert pulses.\n";
-PyObject* SCA_ISensor::PySetInvert(PyObject* self, PyObject* args, PyObject* kwds)
+PyObject* SCA_ISensor::PySetInvert(PyObject* args)
 {
        ShowDeprecationWarning("setInvert()", "the invert property");
        int pyarg = 0;
-       if(!PyArg_ParseTuple(args, "i", &pyarg)) { return NULL; }
+       if(!PyArg_ParseTuple(args, "i:setInvert", &pyarg)) { return NULL; }
        m_invert = PyArgToBool(pyarg);
        Py_RETURN_NONE;
 }
@@ -336,7 +414,7 @@ const char SCA_ISensor::GetLevel_doc[] =
 "\tA level detector will immediately generate a pulse, negative or positive\n"
 "\tdepending on the sensor condition, as soon as the state is activated.\n"
 "\tA edge detector will wait for a state change before generating a pulse.\n";
-PyObject* SCA_ISensor::PyGetLevel(PyObject* self)
+PyObject* SCA_ISensor::PyGetLevel()
 {
        ShowDeprecationWarning("getLevel()", "the level property");
        return BoolToPyArg(m_level);
@@ -346,11 +424,11 @@ const char SCA_ISensor::SetLevel_doc[] =
 "setLevel(level?)\n"
 "\t- level?: Detect level instead of edge? (KX_TRUE, KX_FALSE)\n"
 "\tSet whether to detect level or edge transition when entering a state.\n";
-PyObject* SCA_ISensor::PySetLevel(PyObject* self, PyObject* args, PyObject* kwds)
+PyObject* SCA_ISensor::PySetLevel(PyObject* args)
 {
        ShowDeprecationWarning("setLevel()", "the level property");
        int pyarg = 0;
-       if(!PyArg_ParseTuple(args, "i", &pyarg)) { return NULL; }
+       if(!PyArg_ParseTuple(args, "i:setLevel", &pyarg)) { return NULL; }
        m_level = PyArgToBool(pyarg);
        Py_RETURN_NONE;
 }
@@ -358,7 +436,7 @@ PyObject* SCA_ISensor::PySetLevel(PyObject* self, PyObject* args, PyObject* kwds
 const char SCA_ISensor::GetUseNegPulseMode_doc[] = 
 "getUseNegPulseMode()\n"
 "\tReturns whether negative pulse mode is active.\n";
-PyObject* SCA_ISensor::PyGetUseNegPulseMode(PyObject* self)
+PyObject* SCA_ISensor::PyGetUseNegPulseMode()
 {
        ShowDeprecationWarning("getUseNegPulseMode()", "the useNegPulseMode property");
        return BoolToPyArg(m_neg_pulsemode);
@@ -369,11 +447,11 @@ const char SCA_ISensor::SetUseNegPulseMode_doc[] =
 "\t - pulse? : Pulse when a negative event occurs?\n"
 "\t            (KX_TRUE, KX_FALSE)\n"
 "\tSet whether to do pulsing when negative pulses occur.\n";
-PyObject* SCA_ISensor::PySetUseNegPulseMode(PyObject* self, PyObject* args, PyObject* kwds)
+PyObject* SCA_ISensor::PySetUseNegPulseMode(PyObject* args)
 {
        ShowDeprecationWarning("setUseNegPulseMode()", "the useNegPulseMode property");
        int pyarg = 0;
-       if(!PyArg_ParseTuple(args, "i", &pyarg)) { return NULL; }
+       if(!PyArg_ParseTuple(args, "i:setUseNegPulseMode", &pyarg)) { return NULL; }
        m_neg_pulsemode = PyArgToBool(pyarg);
        Py_RETURN_NONE;
 }
@@ -385,6 +463,7 @@ KX_PYMETHODDEF_DOC_NOARGS(SCA_ISensor, reset,
 "\tThe sensor is put in its initial state as if it was just activated.\n")
 {
        Init();
+       m_prev_state = false;
        Py_RETURN_NONE;
 }
 
@@ -393,56 +472,53 @@ KX_PYMETHODDEF_DOC_NOARGS(SCA_ISensor, reset,
 /* ----------------------------------------------- */
 
 PyTypeObject SCA_ISensor::Type = {
-       PyObject_HEAD_INIT(NULL)
-       0,
+       PyVarObject_HEAD_INIT(NULL, 0)
        "SCA_ISensor",
-       sizeof(SCA_ISensor),
+       sizeof(PyObjectPlus_Proxy),
        0,
-       PyDestructor,
+       py_base_dealloc,
        0,
        0,
        0,
        0,
        py_base_repr,
-       0,0,0,0,0,0,
-       py_base_getattro,
-       py_base_setattro,
        0,0,0,0,0,0,0,0,0,
-       Methods
-};
-
-PyParentObject SCA_ISensor::Parents[] = {
-       &SCA_ISensor::Type,
+       Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
+       0,0,0,0,0,0,0,
+       Methods,
+       0,
+       0,
        &SCA_ILogicBrick::Type,
-       &CValue::Type,
-       NULL
+       0,0,0,0,0,0,
+       py_base_new
 };
+
 PyMethodDef SCA_ISensor::Methods[] = {
        //Deprecated functions ----->
        {"isPositive", (PyCFunction) SCA_ISensor::sPyIsPositive, 
-        METH_NOARGS, (PY_METHODCHAR)IsPositive_doc},
+        METH_NOARGS, (const char *)IsPositive_doc},
        {"isTriggered", (PyCFunction) SCA_ISensor::sPyIsTriggered, 
-        METH_VARARGS, (PY_METHODCHAR)IsTriggered_doc},
+        METH_VARARGS, (const char *)IsTriggered_doc},
        {"getUsePosPulseMode", (PyCFunction) SCA_ISensor::sPyGetUsePosPulseMode, 
-        METH_NOARGS, (PY_METHODCHAR)GetUsePosPulseMode_doc},
+        METH_NOARGS, (const char *)GetUsePosPulseMode_doc},
        {"setUsePosPulseMode", (PyCFunction) SCA_ISensor::sPySetUsePosPulseMode, 
-        METH_VARARGS, (PY_METHODCHAR)SetUsePosPulseMode_doc},
+        METH_VARARGS, (const char *)SetUsePosPulseMode_doc},
        {"getFrequency", (PyCFunction) SCA_ISensor::sPyGetFrequency, 
-        METH_NOARGS, (PY_METHODCHAR)GetFrequency_doc},
+        METH_NOARGS, (const char *)GetFrequency_doc},
        {"setFrequency", (PyCFunction) SCA_ISensor::sPySetFrequency, 
-        METH_VARARGS, (PY_METHODCHAR)SetFrequency_doc},
+        METH_VARARGS, (const char *)SetFrequency_doc},
        {"getUseNegPulseMode", (PyCFunction) SCA_ISensor::sPyGetUseNegPulseMode, 
-        METH_NOARGS, (PY_METHODCHAR)GetUseNegPulseMode_doc},
+        METH_NOARGS, (const char *)GetUseNegPulseMode_doc},
        {"setUseNegPulseMode", (PyCFunction) SCA_ISensor::sPySetUseNegPulseMode, 
-        METH_VARARGS, (PY_METHODCHAR)SetUseNegPulseMode_doc},
+        METH_VARARGS, (const char *)SetUseNegPulseMode_doc},
        {"getInvert", (PyCFunction) SCA_ISensor::sPyGetInvert, 
-        METH_NOARGS, (PY_METHODCHAR)GetInvert_doc},
+        METH_NOARGS, (const char *)GetInvert_doc},
        {"setInvert", (PyCFunction) SCA_ISensor::sPySetInvert, 
-        METH_VARARGS, (PY_METHODCHAR)SetInvert_doc},
+        METH_VARARGS, (const char *)SetInvert_doc},
        {"getLevel", (PyCFunction) SCA_ISensor::sPyGetLevel, 
-        METH_NOARGS, (PY_METHODCHAR)GetLevel_doc},
+        METH_NOARGS, (const char *)GetLevel_doc},
        {"setLevel", (PyCFunction) SCA_ISensor::sPySetLevel, 
-        METH_VARARGS, (PY_METHODCHAR)SetLevel_doc},
+        METH_VARARGS, (const char *)SetLevel_doc},
         //<----- Deprecated
        KX_PYMETHODTABLE_NOARGS(SCA_ISensor, reset),
        {NULL,NULL} //Sentinel
@@ -453,41 +529,46 @@ PyAttributeDef SCA_ISensor::Attributes[] = {
        KX_PYATTRIBUTE_BOOL_RW("useNegPulseMode",SCA_ISensor,m_neg_pulsemode),
        KX_PYATTRIBUTE_INT_RW("frequency",0,100000,true,SCA_ISensor,m_pulse_frequency),
        KX_PYATTRIBUTE_BOOL_RW("invert",SCA_ISensor,m_invert),
-       KX_PYATTRIBUTE_BOOL_RW("level",SCA_ISensor,m_level),
-       // make these properties read-only in _setaddr, must still implement them in py_getattro
-       KX_PYATTRIBUTE_DUMMY("triggered"),
-       KX_PYATTRIBUTE_DUMMY("positive"),
+       KX_PYATTRIBUTE_BOOL_RW_CHECK("level",SCA_ISensor,m_level,pyattr_check_level),
+       KX_PYATTRIBUTE_BOOL_RW_CHECK("tap",SCA_ISensor,m_tap,pyattr_check_tap),
+       KX_PYATTRIBUTE_RO_FUNCTION("triggered", SCA_ISensor, pyattr_get_triggered),
+       KX_PYATTRIBUTE_RO_FUNCTION("positive", SCA_ISensor, pyattr_get_positive),
+       //KX_PYATTRIBUTE_TODO("links"),
+       //KX_PYATTRIBUTE_TODO("posTicks"),
+       //KX_PYATTRIBUTE_TODO("negTicks"),
        { NULL }        //Sentinel
 };
 
-PyObject*
-SCA_ISensor::py_getattro(PyObject *attr)
+
+PyObject* SCA_ISensor::pyattr_get_triggered(void *self_v, const KX_PYATTRIBUTE_DEF *attrdef)
 {
-       PyObject* object = py_getattro_self(Attributes, this, attr);
-       if (object != NULL)
-               return object;
-       
-       char *attr_str= PyString_AsString(attr);
-       if (!strcmp(attr_str, "triggered"))
-       {
-               int retval = 0;
-               if (SCA_PythonController::m_sCurrentController)
-                       retval = SCA_PythonController::m_sCurrentController->IsTriggered(this);
-               return PyInt_FromLong(retval);
-       }
-       if (!strcmp(attr_str, "positive"))
-       {       
-               int retval = IsPositiveTrigger();
-               return PyInt_FromLong(retval);
-       }
-       py_getattro_up(SCA_ILogicBrick);
+       SCA_ISensor* self= static_cast<SCA_ISensor*>(self_v);
+       int retval = 0;
+       if (SCA_PythonController::m_sCurrentController)
+               retval = SCA_PythonController::m_sCurrentController->IsTriggered(self);
+       return PyLong_FromSsize_t(retval);
 }
 
-int SCA_ISensor::py_setattro(PyObject *attr, PyObject *value)
+PyObject* SCA_ISensor::pyattr_get_positive(void *self_v, const KX_PYATTRIBUTE_DEF *attrdef)
 {
-       int ret = py_setattro_self(Attributes, this, attr, value);
-       if (ret >= 0)
-               return ret;
-       return SCA_ILogicBrick::py_setattro(attr, value);
+       SCA_ISensor* self= static_cast<SCA_ISensor*>(self_v);
+       return PyLong_FromSsize_t(self->GetState());
 }
+
+int SCA_ISensor::pyattr_check_level(void *self_v, const KX_PYATTRIBUTE_DEF *attrdef)
+{
+       SCA_ISensor* self= static_cast<SCA_ISensor*>(self_v);
+       if (self->m_level)
+               self->m_tap = false;
+       return 0;
+}
+
+int SCA_ISensor::pyattr_check_tap(void *self_v, const KX_PYATTRIBUTE_DEF *attrdef)
+{
+       SCA_ISensor* self= static_cast<SCA_ISensor*>(self_v);
+       if (self->m_tap)
+               self->m_level = false;
+       return 0;
+}
+
 /* eof */