mirror of https://github.com/axmolengine/axmol.git
359 lines
9.1 KiB
C++
359 lines
9.1 KiB
C++
#include "CCEGLViewProtocol.h"
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#include "touch_dispatcher/CCTouchDispatcher.h"
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#include "touch_dispatcher/CCTouch.h"
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#include "CCDirector.h"
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#include "cocoa/CCSet.h"
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#include "cocoa/CCDictionary.h"
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#include "cocoa/CCInteger.h"
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NS_CC_BEGIN
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static Touch* s_pTouches[CC_MAX_TOUCHES] = { NULL };
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static unsigned int s_indexBitsUsed = 0;
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static Dictionary s_TouchesIntergerDict;
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static int getUnUsedIndex()
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{
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int i;
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int temp = s_indexBitsUsed;
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for (i = 0; i < CC_MAX_TOUCHES; i++) {
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if (! (temp & 0x00000001)) {
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s_indexBitsUsed |= (1 << i);
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return i;
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}
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temp >>= 1;
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}
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// all bits are used
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return -1;
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}
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static void removeUsedIndexBit(int index)
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{
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if (index < 0 || index >= CC_MAX_TOUCHES)
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{
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return;
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}
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unsigned int temp = 1 << index;
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temp = ~temp;
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s_indexBitsUsed &= temp;
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}
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EGLViewProtocol::EGLViewProtocol()
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: _delegate(NULL)
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, _scaleX(1.0f)
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, _scaleY(1.0f)
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, _resolutionPolicy(kResolutionUnKnown)
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{
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}
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EGLViewProtocol::~EGLViewProtocol()
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{
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}
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void EGLViewProtocol::setDesignResolutionSize(float width, float height, ResolutionPolicy resolutionPolicy)
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{
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CCAssert(resolutionPolicy != kResolutionUnKnown, "should set resolutionPolicy");
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if (width == 0.0f || height == 0.0f)
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{
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return;
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}
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_designResolutionSize.setSize(width, height);
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_scaleX = (float)_screenSize.width / _designResolutionSize.width;
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_scaleY = (float)_screenSize.height / _designResolutionSize.height;
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if (resolutionPolicy == kResolutionNoBorder)
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{
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_scaleX = _scaleY = MAX(_scaleX, _scaleY);
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}
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if (resolutionPolicy == kResolutionShowAll)
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{
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_scaleX = _scaleY = MIN(_scaleX, _scaleY);
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}
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if ( resolutionPolicy == kResolutionFixedHeight) {
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_scaleX = _scaleY;
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_designResolutionSize.width = ceilf(_screenSize.width/_scaleX);
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}
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if ( resolutionPolicy == kResolutionFixedWidth) {
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_scaleY = _scaleX;
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_designResolutionSize.height = ceilf(_screenSize.height/_scaleY);
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}
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// calculate the rect of viewport
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float viewPortW = _designResolutionSize.width * _scaleX;
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float viewPortH = _designResolutionSize.height * _scaleY;
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_viewPortRect.setRect((_screenSize.width - viewPortW) / 2, (_screenSize.height - viewPortH) / 2, viewPortW, viewPortH);
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_resolutionPolicy = resolutionPolicy;
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// reset director's member variables to fit visible rect
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Director::sharedDirector()->_winSizeInPoints = getDesignResolutionSize();
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Director::sharedDirector()->createStatsLabel();
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Director::sharedDirector()->setGLDefaultValues();
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}
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const Size& EGLViewProtocol::getDesignResolutionSize() const
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{
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return _designResolutionSize;
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}
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const Size& EGLViewProtocol::getFrameSize() const
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{
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return _screenSize;
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}
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void EGLViewProtocol::setFrameSize(float width, float height)
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{
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_designResolutionSize = _screenSize = CCSizeMake(width, height);
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}
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Size EGLViewProtocol::getVisibleSize() const
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{
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if (_resolutionPolicy == kResolutionNoBorder)
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{
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return CCSizeMake(_screenSize.width/_scaleX, _screenSize.height/_scaleY);
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}
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else
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{
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return _designResolutionSize;
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}
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}
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Point EGLViewProtocol::getVisibleOrigin() const
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{
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if (_resolutionPolicy == kResolutionNoBorder)
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{
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return CCPointMake((_designResolutionSize.width - _screenSize.width/_scaleX)/2,
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(_designResolutionSize.height - _screenSize.height/_scaleY)/2);
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}
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else
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{
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return PointZero;
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}
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}
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void EGLViewProtocol::setTouchDelegate(EGLTouchDelegate * pDelegate)
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{
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_delegate = pDelegate;
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}
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void EGLViewProtocol::setViewPortInPoints(float x , float y , float w , float h)
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{
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glViewport((GLint)(x * _scaleX + _viewPortRect.origin.x),
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(GLint)(y * _scaleY + _viewPortRect.origin.y),
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(GLsizei)(w * _scaleX),
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(GLsizei)(h * _scaleY));
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}
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void EGLViewProtocol::setScissorInPoints(float x , float y , float w , float h)
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{
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glScissor((GLint)(x * _scaleX + _viewPortRect.origin.x),
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(GLint)(y * _scaleY + _viewPortRect.origin.y),
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(GLsizei)(w * _scaleX),
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(GLsizei)(h * _scaleY));
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}
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bool EGLViewProtocol::isScissorEnabled()
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{
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return (GL_FALSE == glIsEnabled(GL_SCISSOR_TEST)) ? false : true;
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}
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Rect EGLViewProtocol::getScissorRect()
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{
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GLfloat params[4];
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glGetFloatv(GL_SCISSOR_BOX, params);
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float x = (params[0] - _viewPortRect.origin.x) / _scaleX;
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float y = (params[1] - _viewPortRect.origin.y) / _scaleY;
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float w = params[2] / _scaleX;
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float h = params[3] / _scaleY;
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return CCRectMake(x, y, w, h);
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}
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void EGLViewProtocol::setViewName(const char* pszViewName)
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{
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if (pszViewName != NULL && strlen(pszViewName) > 0)
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{
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strncpy(_viewName, pszViewName, sizeof(_viewName));
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}
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}
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const char* EGLViewProtocol::getViewName()
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{
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return _viewName;
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}
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void EGLViewProtocol::handleTouchesBegin(int num, int ids[], float xs[], float ys[])
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{
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Set set;
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for (int i = 0; i < num; ++i)
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{
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int id = ids[i];
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float x = xs[i];
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float y = ys[i];
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Integer* pIndex = (Integer*)s_TouchesIntergerDict.objectForKey(id);
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int nUnusedIndex = 0;
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// it is a new touch
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if (pIndex == NULL)
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{
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nUnusedIndex = getUnUsedIndex();
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// The touches is more than MAX_TOUCHES ?
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if (nUnusedIndex == -1) {
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CCLOG("The touches is more than MAX_TOUCHES, nUnusedIndex = %d", nUnusedIndex);
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continue;
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}
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Touch* pTouch = s_pTouches[nUnusedIndex] = new Touch();
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pTouch->setTouchInfo(nUnusedIndex, (x - _viewPortRect.origin.x) / _scaleX,
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(y - _viewPortRect.origin.y) / _scaleY);
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//CCLOG("x = %f y = %f", pTouch->getLocationInView().x, pTouch->getLocationInView().y);
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Integer* pInterObj = new Integer(nUnusedIndex);
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s_TouchesIntergerDict.setObject(pInterObj, id);
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set.addObject(pTouch);
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pInterObj->release();
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}
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}
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if (set.count() == 0)
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{
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CCLOG("touchesBegan: count = 0");
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return;
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}
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_delegate->touchesBegan(&set, NULL);
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}
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void EGLViewProtocol::handleTouchesMove(int num, int ids[], float xs[], float ys[])
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{
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Set set;
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for (int i = 0; i < num; ++i)
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{
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int id = ids[i];
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float x = xs[i];
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float y = ys[i];
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Integer* pIndex = (Integer*)s_TouchesIntergerDict.objectForKey(id);
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if (pIndex == NULL) {
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CCLOG("if the index doesn't exist, it is an error");
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continue;
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}
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CCLOGINFO("Moving touches with id: %d, x=%f, y=%f", id, x, y);
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Touch* pTouch = s_pTouches[pIndex->getValue()];
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if (pTouch)
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{
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pTouch->setTouchInfo(pIndex->getValue(), (x - _viewPortRect.origin.x) / _scaleX,
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(y - _viewPortRect.origin.y) / _scaleY);
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set.addObject(pTouch);
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}
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else
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{
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// It is error, should return.
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CCLOG("Moving touches with id: %d error", id);
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return;
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}
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}
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if (set.count() == 0)
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{
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CCLOG("touchesMoved: count = 0");
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return;
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}
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_delegate->touchesMoved(&set, NULL);
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}
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void EGLViewProtocol::getSetOfTouchesEndOrCancel(Set& set, int num, int ids[], float xs[], float ys[])
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{
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for (int i = 0; i < num; ++i)
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{
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int id = ids[i];
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float x = xs[i];
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float y = ys[i];
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Integer* pIndex = (Integer*)s_TouchesIntergerDict.objectForKey(id);
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if (pIndex == NULL)
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{
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CCLOG("if the index doesn't exist, it is an error");
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continue;
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}
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/* Add to the set to send to the director */
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Touch* pTouch = s_pTouches[pIndex->getValue()];
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if (pTouch)
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{
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CCLOGINFO("Ending touches with id: %d, x=%f, y=%f", id, x, y);
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pTouch->setTouchInfo(pIndex->getValue(), (x - _viewPortRect.origin.x) / _scaleX,
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(y - _viewPortRect.origin.y) / _scaleY);
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set.addObject(pTouch);
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// release the object
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pTouch->release();
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s_pTouches[pIndex->getValue()] = NULL;
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removeUsedIndexBit(pIndex->getValue());
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s_TouchesIntergerDict.removeObjectForKey(id);
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}
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else
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{
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CCLOG("Ending touches with id: %d error", id);
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return;
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}
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}
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if (set.count() == 0)
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{
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CCLOG("touchesEnded or touchesCancel: count = 0");
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return;
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}
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}
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void EGLViewProtocol::handleTouchesEnd(int num, int ids[], float xs[], float ys[])
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{
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Set set;
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getSetOfTouchesEndOrCancel(set, num, ids, xs, ys);
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_delegate->touchesEnded(&set, NULL);
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}
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void EGLViewProtocol::handleTouchesCancel(int num, int ids[], float xs[], float ys[])
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{
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Set set;
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getSetOfTouchesEndOrCancel(set, num, ids, xs, ys);
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_delegate->touchesCancelled(&set, NULL);
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}
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const Rect& EGLViewProtocol::getViewPortRect() const
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{
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return _viewPortRect;
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}
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float EGLViewProtocol::getScaleX() const
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{
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return _scaleX;
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}
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float EGLViewProtocol::getScaleY() const
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{
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return _scaleY;
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}
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NS_CC_END
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