forked from bartvdbraak/blender
42e287af1c
source/blender/blenlib/intern/fileops.c - zero length strings would check for a slash before the strings first char. source/gameengine/GameLogic/SCA_JoystickSensor.cpp - m_istrig_prev was not initialized source/blender/src/editmesh.c - active face pointer was not set to NULL in free_editMesh()
519 lines
14 KiB
C++
519 lines
14 KiB
C++
/*
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* ***** BEGIN GPL 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.
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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 LICENSE BLOCK *****
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*/
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#include "SCA_JoystickManager.h"
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#include "SCA_JoystickSensor.h"
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#include "SCA_EventManager.h"
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#include "SCA_LogicManager.h"
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#include "PyObjectPlus.h"
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#include <iostream>
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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SCA_JoystickSensor::SCA_JoystickSensor(class SCA_JoystickManager* eventmgr,
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SCA_IObject* gameobj,
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short int joyindex,
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short int joymode,
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int axis, int axisf,int prec,
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int button,
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int hat, int hatf, bool allevents,
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PyTypeObject* T )
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:SCA_ISensor(gameobj,eventmgr,T),
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m_pJoystickMgr(eventmgr),
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m_axis(axis),
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m_axisf(axisf),
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m_button(button),
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m_hat(hat),
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m_hatf(hatf),
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m_precision(prec),
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m_joymode(joymode),
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m_joyindex(joyindex),
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m_bAllEvents(allevents)
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{
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/*
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std::cout << " axis " << m_axis << std::endl;
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std::cout << " axis flag " << m_axisf << std::endl;
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std::cout << " precision " << m_precision << std::endl;
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std::cout << " button " << m_button << std::endl;
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std::cout << " hat " << m_hat << std::endl;
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std::cout << " hat flag " << m_hatf << std::endl;
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*/
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Init();
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}
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void SCA_JoystickSensor::Init()
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{
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m_istrig=(m_invert)?1:0;
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m_istrig_prev=0;
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m_reset = true;
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}
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SCA_JoystickSensor::~SCA_JoystickSensor()
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{
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}
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CValue* SCA_JoystickSensor::GetReplica()
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{
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SCA_JoystickSensor* replica = new SCA_JoystickSensor(*this);
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// this will copy properties and so on...
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CValue::AddDataToReplica(replica);
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replica->Init();
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return replica;
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}
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bool SCA_JoystickSensor::IsPositiveTrigger()
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{
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bool result = m_istrig;
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if (m_invert)
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result = !result;
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return result;
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}
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bool SCA_JoystickSensor::Evaluate(CValue* event)
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{
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SCA_Joystick *js = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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bool result = false;
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bool reset = m_reset && m_level;
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if(js==NULL) /* no joystick - dont do anything */
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return false;
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m_reset = false;
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switch(m_joymode)
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{
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case KX_JOYSENSORMODE_AXIS:
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{
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/* what is what!
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m_axisf == 0 == right
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m_axisf == 1 == up
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m_axisf == 2 == left
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m_axisf == 3 == down
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numberof== m_axis -- max 2
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*/
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if (!js->IsTrigAxis() && !reset) /* No events from SDL? - dont bother */
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return false;
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js->cSetPrecision(m_precision);
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if (m_bAllEvents) {
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if(js->aAnyAxisIsPositive(m_axis)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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else if(m_axisf == 1){
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if(js->aUpAxisIsPositive(m_axis)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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else if(m_axisf == 3){
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if(js->aDownAxisIsPositive(m_axis)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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else if(m_axisf == 2){
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if(js->aLeftAxisIsPositive(m_axis)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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else if(m_axisf == 0){
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if(js->aRightAxisIsPositive(m_axis)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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break;
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}
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case KX_JOYSENSORMODE_BUTTON:
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{
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/* what is what!
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m_button = the actual button in question
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*/
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if (!js->IsTrigButton() && !reset) /* No events from SDL? - dont bother */
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return false;
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if(( m_bAllEvents && js->aAnyButtonPressIsPositive()) || (!m_bAllEvents && js->aButtonPressIsPositive(m_button))) {
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m_istrig = 1;
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result = true;
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}else {
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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break;
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}
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case KX_JOYSENSORMODE_HAT:
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{
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/* what is what!
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numberof = m_hat -- max 2
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direction= m_hatf -- max 12
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*/
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if (!js->IsTrigHat() && !reset) /* No events from SDL? - dont bother */
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return false;
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if(m_hat == 1){
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if(js->aHatIsPositive(m_hatf)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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if(m_hat == 2){
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if(js->aHatIsPositive(m_hatf)){
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m_istrig = 1;
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result = true;
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}else{
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if(m_istrig){
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m_istrig = 0;
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result = true;
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}
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}
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}
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break;
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}
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/* test for ball anyone ?*/
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default:
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printf("Error invalid switch statement\n");
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break;
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}
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/* if not all events are enabled, only send a positive pulse when
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* the button state changes */
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if (!m_bAllEvents) {
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if (m_istrig_prev == m_istrig) {
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result = false;
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} else {
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m_istrig_prev = m_istrig;
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}
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}
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if (reset)
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result = true;
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return result;
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}
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bool SCA_JoystickSensor::isValid(SCA_JoystickSensor::KX_JOYSENSORMODE m)
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{
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bool res = false;
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res = ((m > KX_JOYSENSORMODE_NODEF) && (m < KX_JOYSENSORMODE_MAX));
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return res;
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}
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/* ------------------------------------------------------------------------- */
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/* Python functions */
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/* ------------------------------------------------------------------------- */
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/* Integration hooks ------------------------------------------------------- */
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PyTypeObject SCA_JoystickSensor::Type = {
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PyObject_HEAD_INIT(&PyType_Type)
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0,
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"SCA_JoystickSensor",
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sizeof(SCA_JoystickSensor),
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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_JoystickSensor::Parents[] = {
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&SCA_JoystickSensor::Type,
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&SCA_ISensor::Type,
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&SCA_ILogicBrick::Type,
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&CValue::Type,
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NULL
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};
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PyMethodDef SCA_JoystickSensor::Methods[] = {
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{"getIndex", (PyCFunction) SCA_JoystickSensor::sPyGetIndex, METH_NOARGS, (PY_METHODCHAR)GetIndex_doc},
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{"setIndex", (PyCFunction) SCA_JoystickSensor::sPySetIndex, METH_O, (PY_METHODCHAR)SetIndex_doc},
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{"getAxis", (PyCFunction) SCA_JoystickSensor::sPyGetAxis, METH_NOARGS, (PY_METHODCHAR)GetAxis_doc},
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{"setAxis", (PyCFunction) SCA_JoystickSensor::sPySetAxis, METH_VARARGS, (PY_METHODCHAR)SetAxis_doc},
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{"getAxisValue", (PyCFunction) SCA_JoystickSensor::sPyGetAxisValue, METH_NOARGS, (PY_METHODCHAR)GetAxisValue_doc},
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{"getThreshold", (PyCFunction) SCA_JoystickSensor::sPyGetThreshold, METH_NOARGS, (PY_METHODCHAR)GetThreshold_doc},
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{"setThreshold", (PyCFunction) SCA_JoystickSensor::sPySetThreshold, METH_VARARGS, (PY_METHODCHAR)SetThreshold_doc},
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{"getButton", (PyCFunction) SCA_JoystickSensor::sPyGetButton, METH_NOARGS, (PY_METHODCHAR)GetButton_doc},
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{"setButton", (PyCFunction) SCA_JoystickSensor::sPySetButton, METH_O, (PY_METHODCHAR)SetButton_doc},
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{"getButtonValue",(PyCFunction) SCA_JoystickSensor::sPyGetButtonValue, METH_NOARGS,(PY_METHODCHAR)GetButtonValue_doc},
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{"getHat", (PyCFunction) SCA_JoystickSensor::sPyGetHat, METH_NOARGS, (PY_METHODCHAR)GetHat_doc},
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{"setHat", (PyCFunction) SCA_JoystickSensor::sPySetHat, METH_VARARGS, (PY_METHODCHAR)SetHat_doc},
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{"getNumAxes", (PyCFunction) SCA_JoystickSensor::sPyNumberOfAxes, METH_NOARGS, (PY_METHODCHAR)NumberOfAxes_doc},
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{"getNumButtons",(PyCFunction) SCA_JoystickSensor::sPyNumberOfButtons,METH_NOARGS, (PY_METHODCHAR)NumberOfButtons_doc},
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{"getNumHats", (PyCFunction) SCA_JoystickSensor::sPyNumberOfHats, METH_NOARGS, (PY_METHODCHAR)NumberOfHats_doc},
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{"isConnected", (PyCFunction) SCA_JoystickSensor::sPyConnected, METH_NOARGS, (PY_METHODCHAR)Connected_doc},
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{NULL,NULL} //Sentinel
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};
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PyObject* SCA_JoystickSensor::_getattr(const STR_String& attr) {
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_getattr_up(SCA_ISensor);
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}
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/* get index ---------------------------------------------------------- */
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const char SCA_JoystickSensor::GetIndex_doc[] =
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"getIndex\n"
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"\tReturns the joystick index to use.\n";
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PyObject* SCA_JoystickSensor::PyGetIndex( PyObject* self ) {
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return PyInt_FromLong(m_joyindex);
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}
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/* set index ---------------------------------------------------------- */
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const char SCA_JoystickSensor::SetIndex_doc[] =
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"setIndex\n"
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"\tSets the joystick index to use.\n";
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PyObject* SCA_JoystickSensor::PySetIndex( PyObject* self, PyObject* value ) {
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int index = PyInt_AsLong( value ); /* -1 on error, will raise an error in this case */
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if (index < 0 || index >= JOYINDEX_MAX) {
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PyErr_SetString(PyExc_ValueError, "joystick index out of range or not an int");
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return NULL;
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}
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m_joyindex = index;
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Py_RETURN_NONE;
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}
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/* get axis ---------------------------------------------------------- */
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const char SCA_JoystickSensor::GetAxis_doc[] =
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"getAxis\n"
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"\tReturns the current axis this sensor reacts to.\n";
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PyObject* SCA_JoystickSensor::PyGetAxis( PyObject* self) {
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return Py_BuildValue("[ii]",m_axis, m_axisf);
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}
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/* set axis ---------------------------------------------------------- */
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const char SCA_JoystickSensor::SetAxis_doc[] =
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"setAxis\n"
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"\tSets the current axis this sensor reacts to.\n";
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PyObject* SCA_JoystickSensor::PySetAxis( PyObject* self, PyObject* args ) {
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int axis,axisflag;
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if(!PyArg_ParseTuple(args, "ii", &axis, &axisflag)){
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return NULL;
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}
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m_axis = axis;
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m_axisf = axisflag;
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Py_RETURN_NONE;
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}
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/* get axis value ----------------------------------------------------- */
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const char SCA_JoystickSensor::GetAxisValue_doc[] =
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"getAxisValue\n"
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"\tReturns a list of the values for the current state of each axis.\n";
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PyObject* SCA_JoystickSensor::PyGetAxisValue( PyObject* self) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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if(joy)
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return Py_BuildValue("[iiii]", joy->GetAxis10(), joy->GetAxis11(), joy->GetAxis20(), joy->GetAxis21());
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else
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return Py_BuildValue("[iiii]", 0, 0, 0, 0);
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}
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/* get threshold ----------------------------------------------------- */
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const char SCA_JoystickSensor::GetThreshold_doc[] =
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"getThreshold\n"
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"\tReturns the threshold of the axis.\n";
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PyObject* SCA_JoystickSensor::PyGetThreshold( PyObject* self) {
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return PyInt_FromLong(m_precision);
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}
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/* set threshold ----------------------------------------------------- */
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const char SCA_JoystickSensor::SetThreshold_doc[] =
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"setThreshold\n"
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"\tSets the threshold of the axis.\n";
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PyObject* SCA_JoystickSensor::PySetThreshold( PyObject* self, PyObject* args ) {
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int thresh;
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if(!PyArg_ParseTuple(args, "i", &thresh)){
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return NULL;
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}
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m_precision = thresh;
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Py_RETURN_NONE;
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}
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/* get button -------------------------------------------------------- */
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const char SCA_JoystickSensor::GetButton_doc[] =
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"getButton\n"
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"\tReturns the current button this sensor is checking.\n";
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PyObject* SCA_JoystickSensor::PyGetButton( PyObject* self) {
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return PyInt_FromLong(m_button);
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}
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/* set button -------------------------------------------------------- */
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const char SCA_JoystickSensor::SetButton_doc[] =
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"setButton\n"
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"\tSets the button the sensor reacts to.\n";
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PyObject* SCA_JoystickSensor::PySetButton( PyObject* self, PyObject* value ) {
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int button = PyInt_AsLong(value);
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if(button==-1 && PyErr_Occurred()) {
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PyErr_SetString(PyExc_ValueError, "expected an int");
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return NULL;
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}
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m_button = button;
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Py_RETURN_NONE;
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}
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/* get button value -------------------------------------------------- */
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const char SCA_JoystickSensor::GetButtonValue_doc[] =
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"getButtonValue\n"
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"\tReturns a list containing the indicies of the current pressed state of each button.\n";
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PyObject* SCA_JoystickSensor::PyGetButtonValue( PyObject* self) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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PyObject *ls = PyList_New(0);
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PyObject *value;
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int i;
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if(joy) {
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for (i=0; i < joy->GetNumberOfButtons(); i++) {
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if (joy->aButtonPressIsPositive(i)) {
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value = PyInt_FromLong(i);
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PyList_Append(ls, value);
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Py_DECREF(value);
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}
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}
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}
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return ls;
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}
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/* get hat ----------------------------------------------------------- */
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const char SCA_JoystickSensor::GetHat_doc[] =
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"getHat\n"
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"\tReturns the current direction of the hat.\n";
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PyObject* SCA_JoystickSensor::PyGetHat( PyObject* self ) {
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return Py_BuildValue("[ii]",m_hat, m_hatf);
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}
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/* set hat ----------------------------------------------------------- */
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const char SCA_JoystickSensor::SetHat_doc[] =
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"setHat\n"
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"\tSets the hat the sensor reacts to.\n";
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PyObject* SCA_JoystickSensor::PySetHat( PyObject* self, PyObject* args ) {
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int hat,hatflag;
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if(!PyArg_ParseTuple(args, "ii", &hat, &hatflag)){
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return NULL;
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}
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m_hat = hat;
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m_hatf = hatflag;
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Py_RETURN_NONE;
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}
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/* get # of ----------------------------------------------------- */
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const char SCA_JoystickSensor::NumberOfAxes_doc[] =
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"getNumAxes\n"
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"\tReturns the number of axes .\n";
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PyObject* SCA_JoystickSensor::PyNumberOfAxes( PyObject* self ) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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// when the joystick is null their is 0 exis still. dumb but scripters should use isConnected()
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return PyInt_FromLong( joy ? joy->GetNumberOfAxes() : 0 );
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}
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const char SCA_JoystickSensor::NumberOfButtons_doc[] =
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"getNumButtons\n"
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"\tReturns the number of buttons .\n";
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PyObject* SCA_JoystickSensor::PyNumberOfButtons( PyObject* self ) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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return PyInt_FromLong( joy ? joy->GetNumberOfButtons() : 0 );
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}
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const char SCA_JoystickSensor::NumberOfHats_doc[] =
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"getNumHats\n"
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"\tReturns the number of hats .\n";
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PyObject* SCA_JoystickSensor::PyNumberOfHats( PyObject* self ) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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return PyInt_FromLong( joy ? joy->GetNumberOfHats() : 0 );
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}
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const char SCA_JoystickSensor::Connected_doc[] =
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"getConnected\n"
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"\tReturns True if a joystick is connected at this joysticks index.\n";
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PyObject* SCA_JoystickSensor::PyConnected( PyObject* self ) {
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SCA_Joystick *joy = m_pJoystickMgr->GetJoystickDevice(m_joyindex);
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return PyBool_FromLong( joy ? joy->Connected() : 0 );
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}
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