forked from bartvdbraak/blender
2e6d576182
Armatures are back Split screen Double sided lightning Ambient lighting Alpha test Material IPO support (one per object atm) Blender materials GLSL shaders - Python access Up to three texture samplers from the material panel ( 2D & Cube map ) Python access to a second set of uv coordinates See http://www.elysiun.com/forum/viewtopic.php?t=58057
434 lines
11 KiB
C++
434 lines
11 KiB
C++
/**
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* Execute Python scripts
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*
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* $Id$
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*
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* ***** BEGIN GPL/BL DUAL LICENSE BLOCK *****
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version. The Blender
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* Foundation also sells licenses for use in proprietary software under
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* the Blender License. See http://www.blender.org/BL/ for information
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* about this.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
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* All rights reserved.
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*
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* The Original Code is: all of this file.
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*
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* Contributor(s): none yet.
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*
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* ***** END GPL/BL DUAL LICENSE BLOCK *****
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*/
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#include "SCA_PythonController.h"
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#include "SCA_LogicManager.h"
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#include "SCA_ISensor.h"
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#include "SCA_IActuator.h"
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#include "compile.h"
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#include "eval.h"
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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// initialize static member variables
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SCA_PythonController* SCA_PythonController::m_sCurrentController = NULL;
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SCA_PythonController::SCA_PythonController(SCA_IObject* gameobj,
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PyTypeObject* T)
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: SCA_IController(gameobj, T),
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m_bytecode(NULL),
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m_bModified(true),
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m_pythondictionary(NULL)
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{
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}
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SCA_PythonController::~SCA_PythonController()
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{
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if (m_bytecode)
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{
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//
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//printf("released python byte script\n");
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Py_DECREF(m_bytecode);
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}
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if (m_pythondictionary)
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{
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// break any circular references in the dictionary
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PyDict_Clear(m_pythondictionary);
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Py_DECREF(m_pythondictionary);
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}
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}
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CValue* SCA_PythonController::GetReplica()
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{
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SCA_PythonController* replica = new SCA_PythonController(*this);
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// Copy the compiled bytecode if possible.
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Py_XINCREF(replica->m_bytecode);
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replica->m_bModified = replica->m_bytecode == NULL;
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// The replica->m_pythondictionary is stolen - replace with a copy.
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if (m_pythondictionary)
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replica->m_pythondictionary = PyDict_Copy(m_pythondictionary);
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/*
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// The other option is to incref the replica->m_pythondictionary -
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// the replica objects can then share data.
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if (m_pythondictionary)
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Py_INCREF(replica->m_pythondictionary);
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*/
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// this will copy properties and so on...
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CValue::AddDataToReplica(replica);
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return replica;
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}
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void SCA_PythonController::SetScriptText(const STR_String& text)
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{
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m_scriptText = "import GameLogic\n" + text;
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m_bModified = true;
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}
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void SCA_PythonController::SetScriptName(const STR_String& name)
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{
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m_scriptName = name;
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}
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void SCA_PythonController::SetDictionary(PyObject* pythondictionary)
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{
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if (m_pythondictionary)
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{
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PyDict_Clear(m_pythondictionary);
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Py_DECREF(m_pythondictionary);
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}
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m_pythondictionary = PyDict_Copy(pythondictionary); /* new reference */
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}
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#if 0
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static char* sPyGetCurrentController__doc__;
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#endif
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PyObject* SCA_PythonController::sPyGetCurrentController(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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m_sCurrentController->AddRef();
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return m_sCurrentController;
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}
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#if 0
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static char* sPyAddActiveActuator__doc__;
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#endif
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PyObject* SCA_PythonController::sPyAddActiveActuator(
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PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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PyObject* ob1;
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int activate;
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if (!PyArg_ParseTuple(args, "Oi", &ob1,&activate))
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return NULL;
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// for safety, todo: only allow for registered actuators (pointertable)
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// we don't want to crash gameengine/blender by python scripts
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std::vector<SCA_IActuator*> lacts = m_sCurrentController->GetLinkedActuators();
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std::vector<SCA_IActuator*>::iterator it;
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bool found = false;
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CValue* act = (CValue*)ob1;
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for(it = lacts.begin(); it!= lacts.end(); it++) {
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if( static_cast<SCA_IActuator*>(act) == (*it) ) {
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found=true;
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break;
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}
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}
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if(found){
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CValue* boolval = new CBoolValue(activate!=0);
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m_sCurrentLogicManager->AddActiveActuator((SCA_IActuator*)act,boolval);
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boolval->Release();
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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char* SCA_PythonController::sPyGetCurrentController__doc__ = "getCurrentController()";
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char* SCA_PythonController::sPyAddActiveActuator__doc__= "addActiveActuator(actuator,bool)";
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char SCA_PythonController::GetActuators_doc[] = "getActuator";
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PyTypeObject SCA_PythonController::Type = {
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PyObject_HEAD_INIT(&PyType_Type)
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0,
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"SCA_PythonController",
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sizeof(SCA_PythonController),
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0,
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PyDestructor,
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0,
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__getattr,
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__setattr,
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0, //&MyPyCompare,
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__repr,
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0, //&cvalue_as_number,
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0,
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0,
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0,
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0
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};
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PyParentObject SCA_PythonController::Parents[] = {
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&SCA_PythonController::Type,
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&SCA_IController::Type,
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&CValue::Type,
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NULL
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};
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PyMethodDef SCA_PythonController::Methods[] = {
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{"getActuators", (PyCFunction) SCA_PythonController::sPyGetActuators,
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METH_VARARGS, SCA_PythonController::GetActuators_doc},
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{"getActuator", (PyCFunction) SCA_PythonController::sPyGetActuator,
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METH_VARARGS, SCA_PythonController::GetActuator_doc},
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{"getSensors", (PyCFunction) SCA_PythonController::sPyGetSensors,
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METH_VARARGS, SCA_PythonController::GetSensors_doc},
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{"getSensor", (PyCFunction) SCA_PythonController::sPyGetSensor,
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METH_VARARGS, SCA_PythonController::GetSensor_doc},
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{"getScript", (PyCFunction) SCA_PythonController::sPyGetScript, METH_VARARGS},
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{"setScript", (PyCFunction) SCA_PythonController::sPySetScript, METH_VARARGS},
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{NULL,NULL} //Sentinel
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};
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void SCA_PythonController::Trigger(SCA_LogicManager* logicmgr)
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{
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m_sCurrentController = this;
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m_sCurrentLogicManager = logicmgr;
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if (m_bModified)
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{
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// if a script already exists, decref it before replace the pointer to a new script
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if (m_bytecode)
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{
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Py_DECREF(m_bytecode);
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m_bytecode=NULL;
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}
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// recompile the scripttext into bytecode
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m_bytecode = Py_CompileString(m_scriptText.Ptr(), m_scriptName.Ptr(), Py_file_input);
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if (!m_bytecode)
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{
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// didn't compile, so instead of compile, complain
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// something is wrong, tell the user what went wrong
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printf("PYTHON SCRIPT ERROR:\n");
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//PyRun_SimpleString(m_scriptText.Ptr());
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PyErr_Print();
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return;
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}
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m_bModified=false;
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}
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/*
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* This part here with excdict is a temporary patch
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* to avoid python/gameengine crashes when python
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* inadvertently holds references to game objects
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* in global variables.
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*
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* The idea is always make a fresh dictionary, and
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* destroy it right after it is used to make sure
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* python won't hold any gameobject references.
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*
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* Note that the PyDict_Clear _is_ necessary before
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* the Py_DECREF() because it is possible for the
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* variables inside the dictionary to hold references
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* to the dictionary (ie. generate a cycle), so we
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* break it by hand, then DECREF (which in this case
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* should always ensure excdict is cleared).
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*/
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/* PyObject *excdict= myPyDict_Copy(m_pythondictionary);
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struct _object* resultobj = PyEval_EvalCode((PyCodeObject*)m_bytecode,
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excdict,
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excdict
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);
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PyDict_Clear(excdict);
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Py_DECREF(excdict);*/
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// FIXME:: still happining, will try to fix. snailrose...
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PyObject *excdict= PyDict_Copy(m_pythondictionary);
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PyObject* resultobj = PyEval_EvalCode((PyCodeObject*)m_bytecode,
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excdict,
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excdict
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);
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PyDict_Clear(excdict);
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Py_DECREF(excdict);
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#if 0
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PyObject* resultobj = PyEval_EvalCode((PyCodeObject*)m_bytecode,
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m_pythondictionary,
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m_pythondictionary
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);
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#endif
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if (resultobj)
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{
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Py_DECREF(resultobj);
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} else
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{
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// something is wrong, tell the user what went wrong
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printf("PYTHON SCRIPT ERROR:\n");
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PyErr_Print();
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//PyRun_SimpleString(m_scriptText.Ptr());
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}
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m_sCurrentController = NULL;
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}
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PyObject* SCA_PythonController::_getattr(const STR_String& attr)
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{
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_getattr_up(SCA_IController);
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}
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PyObject* SCA_PythonController::PyGetActuators(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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PyObject* resultlist = PyList_New(m_linkedactuators.size());
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for (unsigned int index=0;index<m_linkedactuators.size();index++)
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{
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PyList_SetItem(resultlist,index,m_linkedactuators[index]->AddRef());
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}
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return resultlist;
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}
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char SCA_PythonController::GetSensor_doc[] =
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"GetSensor (char sensorname) return linked sensor that is named [sensorname]\n";
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PyObject*
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SCA_PythonController::PyGetSensor(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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char *scriptArg;
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if (!PyArg_ParseTuple(args, "s", &scriptArg)) {
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return NULL;
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}
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for (unsigned int index=0;index<m_linkedsensors.size();index++)
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{
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SCA_ISensor* sensor = m_linkedsensors[index];
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STR_String realname = sensor->GetName();
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if (realname == scriptArg)
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{
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return sensor->AddRef();
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}
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}
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PyErr_SetString(PyExc_AttributeError, "Unable to find requested sensor");
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return NULL;
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}
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char SCA_PythonController::GetActuator_doc[] =
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"GetActuator (char sensorname) return linked actuator that is named [actuatorname]\n";
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PyObject*
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SCA_PythonController::PyGetActuator(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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char *scriptArg;
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if (!PyArg_ParseTuple(args, "s", &scriptArg)) {
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return NULL;
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}
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for (unsigned int index=0;index<m_linkedactuators.size();index++)
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{
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SCA_IActuator* actua = m_linkedactuators[index];
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STR_String realname = actua->GetName();
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if (realname == scriptArg)
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{
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return actua->AddRef();
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}
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}
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PyErr_SetString(PyExc_AttributeError, "Unable to find requested actuator");
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return NULL;
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}
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char SCA_PythonController::GetSensors_doc[] = "getSensors returns a list of all attached sensors";
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PyObject*
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SCA_PythonController::PyGetSensors(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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PyObject* resultlist = PyList_New(m_linkedsensors.size());
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for (unsigned int index=0;index<m_linkedsensors.size();index++)
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{
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PyList_SetItem(resultlist,index,m_linkedsensors[index]->AddRef());
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}
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return resultlist;
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}
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/* 1. getScript */
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PyObject* SCA_PythonController::PyGetScript(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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return PyString_FromString(m_scriptText);
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}
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/* 2. setScript */
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PyObject* SCA_PythonController::PySetScript(PyObject* self,
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PyObject* args,
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PyObject* kwds)
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{
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char *scriptArg;
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if (!PyArg_ParseTuple(args, "s", &scriptArg)) {
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return NULL;
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}
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/* set scripttext sets m_bModified to true,
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so next time the script is needed, a reparse into byte code is done */
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this->SetScriptText(scriptArg);
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Py_Return;
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}
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/* eof */
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