axmol/extensions/cocostudio/CCDataReaderHelper.cpp

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/****************************************************************************
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Copyright (c) 2013-2017 Chukong Technologies Inc.
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2022-02-24 18:51:36 +08:00
https://adxeproject.github.io/
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Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
****************************************************************************/
#include "platform/CCFileUtils.h"
#include "base/CCDirector.h"
#include "base/CCScheduler.h"
#include "base/ccUtils.h"
#include "pugixml/pugixml.hpp"
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#include "CCDataReaderHelper.h"
#include "CCArmatureDataManager.h"
#include "CCTransformHelp.h"
#include "CCArmatureDefine.h"
#include "CCDatas.h"
#include "CocoLoader.h"
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using namespace cocos2d;
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static const char* VERSION = "version";
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static const float VERSION_2_0 = 2.0f;
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static const char* ARMATURES = "armatures";
static const char* ARMATURE = "armature";
static const char* BONE = "b";
static const char* DISPLAY = "d";
static const char* ANIMATIONS = "animations";
static const char* ANIMATION = "animation";
static const char* MOVEMENT = "mov";
static const char* FRAME = "f";
static const char* TEXTURE_ATLAS = "TextureAtlas";
static const char* SUB_TEXTURE = "SubTexture";
static const char* A_NAME = "name";
static const char* A_DURATION = "dr";
static const char* A_FRAME_INDEX = "fi";
static const char* A_DURATION_TO = "to";
static const char* A_DURATION_TWEEN = "drTW";
static const char* A_LOOP = "lp";
static const char* A_MOVEMENT_SCALE = "sc";
static const char* A_MOVEMENT_DELAY = "dl";
static const char* A_DISPLAY_INDEX = "dI";
static const char* A_PLIST = "plist";
static const char* A_PARENT = "parent";
static const char* A_SKEW_X = "kX";
static const char* A_SKEW_Y = "kY";
static const char* A_SCALE_X = "cX";
static const char* A_SCALE_Y = "cY";
static const char* A_Z = "z";
static const char* A_EVENT = "evt";
static const char* A_SOUND = "sd";
static const char* A_SOUND_EFFECT = "sdE";
static const char* A_TWEEN_EASING = "twE";
static const char* A_EASING_PARAM = "twEP";
static const char* A_TWEEN_ROTATE = "twR";
static const char* A_IS_ARMATURE = "isArmature";
static const char* A_DISPLAY_TYPE = "displayType";
static const char* A_MOVEMENT = "mov";
static const char* A_X = "x";
static const char* A_Y = "y";
static const char* A_COCOS2DX_X = "cocos2d_x";
static const char* A_COCOS2DX_Y = "cocos2d_y";
static const char* A_WIDTH = "width";
static const char* A_HEIGHT = "height";
static const char* A_PIVOT_X = "pX";
static const char* A_PIVOT_Y = "pY";
static const char* A_COCOS2D_PIVOT_X = "cocos2d_pX";
static const char* A_COCOS2D_PIVOT_Y = "cocos2d_pY";
static const char* A_BLEND_TYPE = "bd";
static const char* A_BLEND_SRC = "bd_src";
static const char* A_BLEND_DST = "bd_dst";
static const char* A_ALPHA = "a";
static const char* A_RED = "r";
static const char* A_GREEN = "g";
static const char* A_BLUE = "b";
static const char* A_ALPHA_OFFSET = "aM";
static const char* A_RED_OFFSET = "rM";
static const char* A_GREEN_OFFSET = "gM";
static const char* A_BLUE_OFFSET = "bM";
static const char* A_COLOR_TRANSFORM = "colorTransform";
static const char* A_TWEEN_FRAME = "tweenFrame";
static const char* CONTOUR = "con";
static const char* CONTOUR_VERTEX = "con_vt";
static const char* FL_NAN = "NaN";
static const char* FRAME_DATA = "frame_data";
static const char* MOVEMENT_BONE_DATA = "mov_bone_data";
static const char* MOVEMENT_DATA = "mov_data";
static const char* ANIMATION_DATA = "animation_data";
static const char* DISPLAY_DATA = "display_data";
static const char* SKIN_DATA = "skin_data";
static const char* BONE_DATA = "bone_data";
static const char* ARMATURE_DATA = "armature_data";
static const char* CONTOUR_DATA = "contour_data";
static const char* TEXTURE_DATA = "texture_data";
static const char* VERTEX_POINT = "vertex";
static const char* COLOR_INFO = "color";
static const char* CONFIG_FILE_PATH = "config_file_path";
static const char* CONTENT_SCALE = "content_scale";
static std::string readFileContent(std::string_view filename, bool binary)
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{
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auto fs = FileUtils::getInstance();
std::string s;
if (binary)
fs->getContents(filename, &s);
else
s = fs->getStringFromFile(filename);
return s;
};
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namespace cocostudio
{
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float s_PositionReadScale = 1;
std::vector<std::string> DataReaderHelper::_configFileList;
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DataReaderHelper* DataReaderHelper::_dataReaderHelper = nullptr;
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//! Async load
void DataReaderHelper::loadData()
{
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AsyncStruct* pAsyncStruct = nullptr;
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while (true)
{
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std::queue<AsyncStruct*>* pQueue = _asyncStructQueue;
_asyncStructQueueMutex.lock(); // get async struct from queue
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if (pQueue->empty())
{
_asyncStructQueueMutex.unlock();
if (need_quit)
{
break;
}
else
{
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std::unique_lock<std::mutex> lk(_sleepMutex);
_sleepCondition.wait(lk);
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continue;
}
}
else
{
pAsyncStruct = pQueue->front();
pQueue->pop();
_asyncStructQueueMutex.unlock();
}
// generate data info
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DataInfo* pDataInfo = new DataInfo();
pDataInfo->asyncStruct = pAsyncStruct;
pDataInfo->filename = pAsyncStruct->filename;
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pDataInfo->baseFilePath = pAsyncStruct->baseFilePath;
if (pAsyncStruct->configType == DragonBone_XML)
{
DataReaderHelper::addDataFromCache(pAsyncStruct->fileContent, pDataInfo);
}
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else if (pAsyncStruct->configType == CocoStudio_JSON)
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{
DataReaderHelper::addDataFromJsonCache(pAsyncStruct->fileContent, pDataInfo);
}
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else if (pAsyncStruct->configType == CocoStudio_Binary)
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{
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DataReaderHelper::addDataFromBinaryCache(pAsyncStruct->fileContent.c_str(), pDataInfo);
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}
// put the image info into the queue
_dataInfoMutex.lock();
_dataQueue->push(pDataInfo);
_dataInfoMutex.unlock();
}
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if (_asyncStructQueue != nullptr)
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{
delete _asyncStructQueue;
_asyncStructQueue = nullptr;
delete _dataQueue;
_dataQueue = nullptr;
}
}
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DataReaderHelper* DataReaderHelper::getInstance()
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{
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if (!_dataReaderHelper)
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{
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_dataReaderHelper = new DataReaderHelper();
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}
return _dataReaderHelper;
}
void DataReaderHelper::setPositionReadScale(float scale)
{
s_PositionReadScale = scale;
}
float DataReaderHelper::getPositionReadScale()
{
return s_PositionReadScale;
}
void DataReaderHelper::purge()
{
_configFileList.clear();
CC_SAFE_RELEASE_NULL(_dataReaderHelper);
}
DataReaderHelper::DataReaderHelper()
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: _loadingThread(nullptr)
, _asyncRefCount(0)
, _asyncRefTotalCount(0)
, need_quit(false)
, _asyncStructQueue(nullptr)
, _dataQueue(nullptr)
{}
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DataReaderHelper::~DataReaderHelper()
{
need_quit = true;
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_sleepCondition.notify_one();
if (_loadingThread)
_loadingThread->join();
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CC_SAFE_DELETE(_loadingThread);
_dataReaderHelper = nullptr;
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}
void DataReaderHelper::addDataFromFile(std::string_view filePath)
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{
/*
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* Check if file is already added to ArmatureDataManager, if then return.
*/
for (unsigned int i = 0; i < _configFileList.size(); i++)
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{
if (_configFileList[i] == filePath)
{
return;
}
}
_configFileList.push_back(std::string{filePath});
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//! find the base file path
std::string basefilePath;
size_t pos = filePath.find_last_of('/');
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if (pos != std::string::npos)
{
basefilePath = filePath.substr(0, pos + 1);
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}
std::string fileExtension = cocos2d::FileUtils::getInstance()->getFileExtension(filePath);
// Read content from file
std::string fullPath = FileUtils::getInstance()->fullPathForFilename(filePath);
bool isbinaryfilesrc = fileExtension == ".csb";
_dataReaderHelper->_getFileMutex.lock();
std::string contentStr(readFileContent(fullPath, isbinaryfilesrc));
_dataReaderHelper->_getFileMutex.unlock();
DataInfo dataInfo;
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dataInfo.filename = filePath;
dataInfo.asyncStruct = nullptr;
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dataInfo.baseFilePath = basefilePath;
if (fileExtension == ".xml")
{
DataReaderHelper::addDataFromCache(contentStr, &dataInfo);
}
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else if (fileExtension == ".json" || fileExtension == ".exportjson")
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{
DataReaderHelper::addDataFromJsonCache(contentStr, &dataInfo);
}
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else if (isbinaryfilesrc)
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{
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DataReaderHelper::addDataFromBinaryCache(contentStr.c_str(), &dataInfo);
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}
}
void DataReaderHelper::addDataFromFileAsync(std::string_view imagePath,
std::string_view plistPath,
std::string_view filePath,
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Ref* target,
SEL_SCHEDULE selector)
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{
/*
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* Check if file is already added to ArmatureDataManager, if then return.
*/
for (unsigned int i = 0; i < _configFileList.size(); i++)
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{
if (_configFileList[i] == filePath)
{
if (target && selector)
{
if (_asyncRefTotalCount == 0 && _asyncRefCount == 0)
{
(target->*selector)(1);
}
else
{
(target->*selector)((_asyncRefTotalCount - _asyncRefCount) / (float)_asyncRefTotalCount);
}
}
return;
}
}
_configFileList.push_back(std::string{filePath});
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//! find the base file path
std::string basefilePath;
size_t pos = filePath.find_last_of('/');
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if (pos != std::string::npos)
{
basefilePath = filePath.substr(0, pos + 1);
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}
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// lazy init
if (_asyncStructQueue == nullptr)
{
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_asyncStructQueue = new std::queue<AsyncStruct*>();
_dataQueue = new std::queue<DataInfo*>();
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// create a new thread to load images
_loadingThread = new std::thread(&DataReaderHelper::loadData, this);
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need_quit = false;
}
if (0 == _asyncRefCount)
{
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Director::getInstance()->getScheduler()->schedule(CC_SCHEDULE_SELECTOR(DataReaderHelper::addDataAsyncCallBack),
this, 0, false);
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}
++_asyncRefCount;
++_asyncRefTotalCount;
if (target)
{
target->retain();
}
// generate async struct
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AsyncStruct* data = new AsyncStruct();
data->filename = filePath;
data->baseFilePath = basefilePath;
data->target = target;
data->selector = selector;
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data->autoLoadSpriteFile = ArmatureDataManager::getInstance()->isAutoLoadSpriteFile();
data->imagePath = imagePath;
data->plistPath = plistPath;
std::string fileExtension = cocos2d::FileUtils::getInstance()->getFileExtension(filePath);
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std::string fullPath = FileUtils::getInstance()->fullPathForFilename(filePath);
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bool isbinaryfilesrc = fileExtension == ".csb";
// This only read exportJson file, it takes only a little time.
// Large image files are loaded in DataReaderHelper::addDataFromJsonCache(dataInfo) asynchronously.
_dataReaderHelper->_getFileMutex.lock();
data->fileContent.assign(readFileContent(fullPath, isbinaryfilesrc));
_dataReaderHelper->_getFileMutex.unlock();
if (fileExtension == ".xml")
{
data->configType = DragonBone_XML;
}
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else if (fileExtension == ".json" || fileExtension == ".exportjson")
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{
data->configType = CocoStudio_JSON;
}
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else if (isbinaryfilesrc)
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{
data->configType = CocoStudio_Binary;
}
// add async struct into queue
_asyncStructQueueMutex.lock();
_asyncStructQueue->push(data);
_asyncStructQueueMutex.unlock();
_sleepCondition.notify_one();
}
void DataReaderHelper::addDataAsyncCallBack(float /*dt*/)
{
// the data is generated in loading thread
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std::queue<DataInfo*>* dataQueue = _dataQueue;
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_dataInfoMutex.lock();
if (dataQueue->empty())
{
_dataInfoMutex.unlock();
}
else
{
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DataInfo* pDataInfo = dataQueue->front();
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dataQueue->pop();
_dataInfoMutex.unlock();
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AsyncStruct* pAsyncStruct = pDataInfo->asyncStruct;
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if (pAsyncStruct->imagePath != "" && pAsyncStruct->plistPath != "")
{
_getFileMutex.lock();
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ArmatureDataManager::getInstance()->addSpriteFrameFromFile(pAsyncStruct->plistPath, pAsyncStruct->imagePath,
pDataInfo->filename);
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_getFileMutex.unlock();
}
while (!pDataInfo->configFileQueue.empty())
{
std::string configPath = pDataInfo->configFileQueue.front();
_getFileMutex.lock();
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ArmatureDataManager::getInstance()->addSpriteFrameFromFile(
(pAsyncStruct->baseFilePath + configPath + ".plist"),
(pAsyncStruct->baseFilePath + configPath + ".png"), pDataInfo->filename);
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_getFileMutex.unlock();
pDataInfo->configFileQueue.pop();
}
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Ref* target = pAsyncStruct->target;
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SEL_SCHEDULE selector = pAsyncStruct->selector;
--_asyncRefCount;
if (target && selector)
{
(target->*selector)((_asyncRefTotalCount - _asyncRefCount) / (float)_asyncRefTotalCount);
target->release();
}
delete pAsyncStruct;
delete pDataInfo;
if (0 == _asyncRefCount)
{
_asyncRefTotalCount = 0;
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Director::getInstance()->getScheduler()->unschedule(
CC_SCHEDULE_SELECTOR(DataReaderHelper::addDataAsyncCallBack), this);
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}
}
}
void DataReaderHelper::removeConfigFile(std::string_view configFile)
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{
auto it_end = _configFileList.end();
for (auto it = _configFileList.begin(); it != it_end; ++it)
{
if (*it == configFile)
{
_configFileList.erase(it);
break;
}
}
}
void DataReaderHelper::addDataFromCache(std::string_view pFileContent, DataInfo* dataInfo)
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{
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pugi::xml_document document;
pugi::xml_parse_result ret = document.load_buffer(pFileContent.data(), pFileContent.length());
if (!ret)
return;
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auto root = document.document_element();
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dataInfo->flashToolVersion = root.attribute(VERSION).as_float();
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/*
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* Begin decode armature data from xml
*/
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auto armaturesXML = root.child(ARMATURES);
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auto armatureXML = armaturesXML.child(ARMATURE);
while (armatureXML)
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{
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ArmatureData* armatureData = DataReaderHelper::decodeArmature(armatureXML, dataInfo);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addArmatureData(armatureData->name, armatureData, dataInfo->filename);
armatureData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
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armatureXML = armatureXML.next_sibling(ARMATURE);
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}
/*
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* Begin decode animation data from xml
*/
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auto animationsXML = root.child(ANIMATIONS);
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auto animationXML = animationsXML.child(ANIMATION);
while (animationXML)
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{
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AnimationData* animationData = DataReaderHelper::decodeAnimation(animationXML, dataInfo);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addAnimationData(animationData->name, animationData, dataInfo->filename);
animationData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
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animationXML = animationXML.next_sibling(ANIMATION);
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}
/*
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* Begin decode texture data from xml
*/
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auto texturesXML = root.child(TEXTURE_ATLAS);
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auto textureXML = texturesXML.child(SUB_TEXTURE);
while (textureXML)
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{
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TextureData* textureData = DataReaderHelper::decodeTexture(textureXML, dataInfo);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addTextureData(textureData->name, textureData, dataInfo->filename);
textureData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
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textureXML = textureXML.next_sibling(SUB_TEXTURE);
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}
}
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ArmatureData* DataReaderHelper::decodeArmature(pugi::xml_node& armatureXML, DataInfo* dataInfo)
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{
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ArmatureData* armatureData = new ArmatureData();
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armatureData->init();
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armatureData->name = armatureXML.attribute(A_NAME).as_string();
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pugi::xml_node boneXML = armatureXML.child(BONE);
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while (boneXML)
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{
/*
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* If this bone have parent, then get the parent bone xml
*/
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auto parentName = boneXML.attribute(A_PARENT).as_string();
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pugi::xml_node parentXML;
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if (!parentName.empty())
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{
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parentXML = armatureXML.child(BONE);
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auto parentNameStr = parentName;
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while (parentXML)
{
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if (parentNameStr == parentXML.attribute(A_NAME).as_string())
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{
break;
}
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parentXML = parentXML.next_sibling(BONE);
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}
}
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BoneData* boneData = decodeBone(boneXML, parentXML, dataInfo);
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armatureData->addBoneData(boneData);
boneData->release();
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boneXML = boneXML.next_sibling(BONE);
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}
return armatureData;
}
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BoneData* DataReaderHelper::decodeBone(pugi::xml_node& boneXML, pugi::xml_node& /*parentXml*/, DataInfo* dataInfo)
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{
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BoneData* boneData = new BoneData();
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boneData->init();
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boneData->name = boneXML.attribute(A_NAME).as_string();
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auto aparent = boneXML.attribute(A_PARENT);
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if (aparent)
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{
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boneData->parentName = aparent.as_string();
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}
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boneData->zOrder = boneXML.attribute(A_Z).as_int();
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pugi::xml_node displayXML = boneXML.child(DISPLAY);
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while (displayXML)
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{
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DisplayData* displayData = decodeBoneDisplay(displayXML, dataInfo);
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boneData->addDisplayData(displayData);
displayData->release();
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displayXML = displayXML.next_sibling(DISPLAY);
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}
return boneData;
}
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DisplayData* DataReaderHelper::decodeBoneDisplay(pugi::xml_node& displayXML, DataInfo* /*dataInfo*/)
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{
int _isArmature = 0;
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DisplayData* displayData;
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auto isArmatureDS = displayXML.attribute(A_IS_ARMATURE);
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if (isArmatureDS)
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{
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_isArmature = isArmatureDS.as_int();
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if (!_isArmature)
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{
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displayData = new SpriteDisplayData();
displayData->displayType = CS_DISPLAY_SPRITE;
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}
else
{
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displayData = new ArmatureDisplayData();
displayData->displayType = CS_DISPLAY_ARMATURE;
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}
}
else
{
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displayData = new SpriteDisplayData();
displayData->displayType = CS_DISPLAY_SPRITE;
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}
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auto nameDS = displayXML.attribute(A_NAME);
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if (nameDS)
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{
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if (!_isArmature)
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{
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((SpriteDisplayData*)displayData)->displayName = nameDS.as_string();
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}
else
{
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((ArmatureDisplayData*)displayData)->displayName = nameDS.as_string();
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}
}
return displayData;
}
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AnimationData* DataReaderHelper::decodeAnimation(pugi::xml_node& animationXML, DataInfo* dataInfo)
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{
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AnimationData* aniData = new AnimationData();
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auto name = animationXML.attribute(A_NAME).as_string();
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ArmatureData* armatureData = ArmatureDataManager::getInstance()->getArmatureData(name);
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aniData->name = name;
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pugi::xml_node movementXML = animationXML.child(MOVEMENT);
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while (movementXML)
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{
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MovementData* movementData = decodeMovement(movementXML, armatureData, dataInfo);
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aniData->addMovement(movementData);
movementData->release();
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movementXML = movementXML.next_sibling(MOVEMENT);
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}
return aniData;
}
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MovementData* DataReaderHelper::decodeMovement(pugi::xml_node& movementXML,
ArmatureData* armatureData,
DataInfo* dataInfo)
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{
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MovementData* movementData = new MovementData();
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auto movName = movementXML.attribute(A_NAME).as_string();
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movementData->name = movName;
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pugiext::query_attribute(movementXML, A_DURATION, &movementData->duration);
pugiext::query_attribute(movementXML, A_DURATION_TO, &movementData->durationTo);
pugiext::query_attribute(movementXML, A_DURATION_TWEEN, &movementData->durationTween);
pugiext::query_attribute(movementXML, A_LOOP, &movementData->loop);
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auto _easing = movementXML.attribute(A_TWEEN_EASING).as_string();
if (!_easing.empty())
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{
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if (_easing != FL_NAN)
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{
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int tweenEasing = atoi(_easing.data());
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movementData->tweenEasing = tweenEasing == 2 ? cocos2d::tweenfunc::Sine_EaseInOut : (TweenType)tweenEasing;
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}
else
{
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movementData->tweenEasing = cocos2d::tweenfunc::Linear;
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}
}
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pugi::xml_node movBoneXml = movementXML.child(BONE);
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while (movBoneXml)
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{
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auto boneName = movBoneXml.attribute(A_NAME).as_string();
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if (movementData->getMovementBoneData(boneName))
{
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movBoneXml = movBoneXml.next_sibling();
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continue;
}
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BoneData* boneData = (BoneData*)armatureData->getBoneData(boneName);
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std::string parentName = boneData->parentName;
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pugi::xml_node parentXml;
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if (!parentName.empty())
{
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parentXml = movementXML.child(BONE);
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while (parentXml)
{
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if (parentName == parentXml.attribute(A_NAME).as_string())
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{
break;
}
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parentXml = parentXml.next_sibling(BONE);
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}
}
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MovementBoneData* moveBoneData = decodeMovementBone(movBoneXml, parentXml, boneData, dataInfo);
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movementData->addMovementBoneData(moveBoneData);
moveBoneData->release();
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movBoneXml = movBoneXml.next_sibling(BONE);
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}
return movementData;
}
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MovementBoneData* DataReaderHelper::decodeMovementBone(pugi::xml_node& movBoneXml,
pugi::xml_node& parentXml,
BoneData* boneData,
DataInfo* dataInfo)
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{
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MovementBoneData* movBoneData = new MovementBoneData();
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movBoneData->init();
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if (movBoneXml)
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{
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pugiext::query_attribute(movBoneXml, A_MOVEMENT_SCALE, &movBoneData->scale);
float delay;
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if (pugiext::query_attribute(movBoneXml, A_MOVEMENT_DELAY, &delay))
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{
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if (delay > 0)
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{
delay -= 1;
}
movBoneData->delay = delay;
}
}
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unsigned long length = 0;
unsigned long index = 0;
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int parentTotalDuration = 0;
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int currentDuration = 0;
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pugi::xml_node parentFrameXML;
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std::vector<pugi::xml_node> parentXmlList;
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/*
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* get the parent frame xml list, we need get the origin data
*/
if (parentXml != nullptr)
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{
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parentFrameXML = parentXml.child(FRAME);
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while (parentFrameXML)
{
parentXmlList.push_back(parentFrameXML);
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parentFrameXML = parentFrameXML.next_sibling(FRAME);
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}
length = parentXmlList.size();
}
int totalDuration = 0;
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movBoneData->name = movBoneXml.attribute(A_NAME).as_string();
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pugi::xml_node frameXML = movBoneXml.child(FRAME);
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while (frameXML)
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{
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if (parentXml)
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{
/*
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* in this loop we get the corresponding parent frame xml
*/
while (index < length && (parentFrameXML ? (totalDuration < parentTotalDuration ||
totalDuration >= parentTotalDuration + currentDuration)
: true))
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{
parentFrameXML = parentXmlList[index];
parentTotalDuration += currentDuration;
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pugiext::query_attribute(parentFrameXML, A_DURATION, &currentDuration);
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index++;
}
}
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FrameData* frameData = decodeFrame(frameXML, parentFrameXML, boneData, dataInfo);
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movBoneData->addFrameData(frameData);
frameData->release();
frameData->frameID = totalDuration;
totalDuration += frameData->duration;
movBoneData->duration = totalDuration;
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frameXML = frameXML.next_sibling(FRAME);
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}
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//! Change rotation range from (-180 -- 180) to (-infinity -- infinity)
auto frames = movBoneData->frameList;
for (long j = movBoneData->frameList.size() - 1; j >= 0; j--)
{
if (j > 0)
{
float difSkewX = frames.at(j)->skewX - frames.at(j - 1)->skewX;
float difSkewY = frames.at(j)->skewY - frames.at(j - 1)->skewY;
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if (difSkewX < -M_PI || difSkewX > M_PI)
{
frames.at(j - 1)->skewX =
difSkewX < 0 ? frames.at(j - 1)->skewX - 2 * M_PI : frames.at(j - 1)->skewX + 2 * M_PI;
}
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if (difSkewY < -M_PI || difSkewY > M_PI)
{
frames.at(j - 1)->skewY =
difSkewY < 0 ? frames.at(j - 1)->skewY - 2 * M_PI : frames.at(j - 1)->skewY + 2 * M_PI;
}
}
}
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//
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FrameData* frameData = new FrameData();
frameData->copy((FrameData*)movBoneData->frameList.back());
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frameData->frameID = movBoneData->duration;
movBoneData->addFrameData(frameData);
frameData->release();
return movBoneData;
}
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FrameData* DataReaderHelper::decodeFrame(pugi::xml_node& frameXML,
pugi::xml_node& parentFrameXml,
BoneData* /*boneData*/,
DataInfo* dataInfo)
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{
float x = 0, y = 0, scale_x = 0, scale_y = 0, skew_x = 0, skew_y = 0, tweenRotate = 0;
int duration = 0, displayIndex = 0, zOrder = 0, tweenEasing = 0, blendType = 0;
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FrameData* frameData = new FrameData();
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pugiext::query_attribute(frameXML, A_MOVEMENT, &frameData->strMovement);
pugiext::query_attribute(frameXML, A_SOUND, &frameData->strSound);
pugiext::query_attribute(frameXML, A_SOUND_EFFECT, &frameData->strSoundEffect);
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pugiext::query_attribute(frameXML, A_SOUND_EFFECT, &frameData->isTween);
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if (dataInfo->flashToolVersion >= VERSION_2_0)
{
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if (pugiext::query_attribute(frameXML, A_COCOS2DX_X, &frameData->x))
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{
frameData->x *= s_PositionReadScale;
}
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if (pugiext::query_attribute(frameXML, A_COCOS2DX_Y, &frameData->y))
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{
frameData->y *= s_PositionReadScale;
}
}
else
{
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if (pugiext::query_attribute(frameXML, A_X, &frameData->x))
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{
frameData->x *= s_PositionReadScale;
}
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if (pugiext::query_attribute(frameXML, A_Y, &frameData->y))
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{
frameData->y *= s_PositionReadScale;
}
}
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auto degrees2radius = [](float v) { return CC_DEGREES_TO_RADIANS(v); };
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pugiext::query_attribute(frameXML, A_SCALE_X, &frameData->scaleX);
pugiext::query_attribute(frameXML, A_SCALE_Y, &frameData->scaleY);
pugiext::query_attribute(frameXML, A_SKEW_X, &frameData->skewX, degrees2radius);
pugiext::query_attribute(frameXML, A_SKEW_Y, &frameData->skewY, degrees2radius);
pugiext::query_attribute(frameXML, A_DURATION, &frameData->duration);
pugiext::query_attribute(frameXML, A_DISPLAY_INDEX, &frameData->displayIndex);
pugiext::query_attribute(frameXML, A_Z, &frameData->zOrder);
pugiext::query_attribute(frameXML, A_TWEEN_ROTATE, &frameData->tweenRotate);
if (pugiext::query_attribute(frameXML, A_BLEND_TYPE, &blendType))
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{
switch (blendType)
{
case BLEND_NORMAL:
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{
frameData->blendFunc = BlendFunc::ALPHA_PREMULTIPLIED;
}
break;
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case BLEND_ADD:
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{
frameData->blendFunc.src = backend::BlendFactor::SRC_ALPHA;
frameData->blendFunc.dst = backend::BlendFactor::ONE;
}
break;
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case BLEND_MULTIPLY:
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{
frameData->blendFunc.src = backend::BlendFactor::DST_COLOR;
frameData->blendFunc.dst = backend::BlendFactor::ONE_MINUS_SRC_ALPHA;
}
break;
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case BLEND_SCREEN:
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{
frameData->blendFunc.src = backend::BlendFactor::ONE;
frameData->blendFunc.dst = backend::BlendFactor::ONE_MINUS_SRC_COLOR;
}
break;
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default:
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{
frameData->blendFunc.src = CC_BLEND_SRC;
frameData->blendFunc.dst = CC_BLEND_DST;
}
break;
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}
}
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pugi::xml_node colorTransformXML = frameXML.child(A_COLOR_TRANSFORM);
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if (colorTransformXML)
{
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int alpha, red, green, blue = 100;
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int alphaOffset, redOffset, greenOffset, blueOffset = 0;
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pugiext::query_attribute(colorTransformXML, A_ALPHA, &alpha);
pugiext::query_attribute(colorTransformXML, A_RED, &red);
pugiext::query_attribute(colorTransformXML, A_GREEN, &green);
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pugiext::query_attribute(colorTransformXML, A_BLUE, &blue);
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pugiext::query_attribute(colorTransformXML, A_ALPHA_OFFSET, &alphaOffset);
pugiext::query_attribute(colorTransformXML, A_RED_OFFSET, &redOffset);
pugiext::query_attribute(colorTransformXML, A_GREEN_OFFSET, &greenOffset);
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pugiext::query_attribute(colorTransformXML, A_BLUE_OFFSET, &blueOffset);
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frameData->a = 2.55 * alphaOffset + alpha;
frameData->r = 2.55 * redOffset + red;
frameData->g = 2.55 * greenOffset + green;
frameData->b = 2.55 * blueOffset + blue;
frameData->isUseColorInfo = true;
}
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const char* _easing = nullptr;
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if (pugiext::query_attribute(frameXML, A_TWEEN_EASING, &_easing))
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{
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if (strcmp(_easing, FL_NAN) != 0)
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{
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tweenEasing = atoi(_easing);
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frameData->tweenEasing =
tweenEasing == 2 ? cocos2d::tweenfunc::Sine_EaseInOut : (cocos2d::tweenfunc::TweenType)tweenEasing;
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}
else
{
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frameData->tweenEasing = cocos2d::tweenfunc::Linear;
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}
}
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if (parentFrameXml)
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{
/*
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* recalculate frame data from parent frame data, use for translate matrix
*/
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BaseData helpNode;
if (dataInfo->flashToolVersion >= VERSION_2_0)
{
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pugiext::query_attribute(parentFrameXml, A_COCOS2DX_X, &helpNode.x);
pugiext::query_attribute(parentFrameXml, A_COCOS2DX_Y, &helpNode.y);
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}
else
{
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pugiext::query_attribute(parentFrameXml, A_X, &helpNode.x);
pugiext::query_attribute(parentFrameXml, A_Y, &helpNode.y);
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}
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pugiext::query_attribute(parentFrameXml, A_SKEW_X, &helpNode.skewX);
pugiext::query_attribute(parentFrameXml, A_SKEW_Y, &helpNode.skewY);
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helpNode.y = -helpNode.y;
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helpNode.skewX = CC_DEGREES_TO_RADIANS(helpNode.skewX);
helpNode.skewY = CC_DEGREES_TO_RADIANS(-helpNode.skewY);
TransformHelp::transformFromParent(*frameData, helpNode);
}
return frameData;
}
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TextureData* DataReaderHelper::decodeTexture(pugi::xml_node& textureXML, DataInfo* dataInfo)
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{
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TextureData* textureData = new TextureData();
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textureData->init();
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pugiext::query_attribute(textureXML, A_NAME, &textureData->name);
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float px, py, width, height = 0;
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if (dataInfo->flashToolVersion >= VERSION_2_0)
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{
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pugiext::query_attribute(textureXML, A_COCOS2D_PIVOT_X, &px);
pugiext::query_attribute(textureXML, A_COCOS2D_PIVOT_Y, &py);
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}
else
{
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pugiext::query_attribute(textureXML, A_PIVOT_X, &px);
pugiext::query_attribute(textureXML, A_PIVOT_Y, &py);
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}
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pugiext::query_attribute(textureXML, A_WIDTH, &width);
pugiext::query_attribute(textureXML, A_HEIGHT, &height);
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float anchorPointX = px / width;
float anchorPointY = (height - py) / height;
textureData->pivotX = anchorPointX;
textureData->pivotY = anchorPointY;
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pugi::xml_node contourXML = textureXML.child(CONTOUR);
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while (contourXML)
{
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ContourData* contourData = decodeContour(contourXML, dataInfo);
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textureData->addContourData(contourData);
contourData->release();
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contourXML = contourXML.next_sibling(CONTOUR);
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}
return textureData;
}
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ContourData* DataReaderHelper::decodeContour(pugi::xml_node& contourXML, DataInfo* /*dataInfo*/)
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{
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ContourData* contourData = new ContourData();
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contourData->init();
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pugi::xml_node vertexDataXML = contourXML.child(CONTOUR_VERTEX);
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while (vertexDataXML)
{
Vec2 vertex;
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pugiext::query_attribute(vertexDataXML, A_X, &vertex.x);
pugiext::query_attribute(vertexDataXML, A_Y, &vertex.y);
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vertex.y = -vertex.y;
contourData->vertexList.push_back(vertex);
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vertexDataXML = vertexDataXML.next_sibling(CONTOUR_VERTEX);
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}
return contourData;
}
void DataReaderHelper::addDataFromJsonCache(std::string_view fileContent, DataInfo* dataInfo)
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{
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rapidjson::Document json;
rapidjson::StringStream stream(fileContent.data());
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if (fileContent.size() >= 3)
{
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// Skip BOM if exists
const unsigned char* c = (const unsigned char*)fileContent.data();
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unsigned bom = c[0] | (c[1] << 8) | (c[2] << 16);
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if (bom == 0xBFBBEF) // UTF8 BOM
{
stream.Take();
stream.Take();
stream.Take();
}
}
json.ParseStream<0>(stream);
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if (json.HasParseError())
{
CCLOG("GetParseError %d\n", json.GetParseError());
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}
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dataInfo->contentScale = DICTOOL->getFloatValue_json(json, CONTENT_SCALE, 1.0f);
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// Decode armatures
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int length = DICTOOL->getArrayCount_json(json, ARMATURE_DATA);
for (int i = 0; i < length; i++)
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{
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const rapidjson::Value& armatureDic = DICTOOL->getSubDictionary_json(json, ARMATURE_DATA, i);
ArmatureData* armatureData = decodeArmature(armatureDic, dataInfo);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addArmatureData(armatureData->name, armatureData, dataInfo->filename);
armatureData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
}
// Decode animations
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length = DICTOOL->getArrayCount_json(
json, ANIMATION_DATA); // json[ANIMATION_DATA].IsNull() ? 0 : json[ANIMATION_DATA].Size();
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& animationDic = DICTOOL->getSubDictionary_json(json, ANIMATION_DATA, i);
AnimationData* animationData = decodeAnimation(animationDic, dataInfo);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addAnimationData(animationData->name, animationData, dataInfo->filename);
animationData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
}
// Decode textures
length = DICTOOL->getArrayCount_json(json, TEXTURE_DATA);
for (int i = 0; i < length; i++)
{
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const rapidjson::Value& textureDic = DICTOOL->getSubDictionary_json(json, TEXTURE_DATA, i);
TextureData* textureData = decodeTexture(textureDic);
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if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addTextureData(textureData->name, textureData, dataInfo->filename);
textureData->release();
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.unlock();
}
}
// Auto load sprite file
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bool autoLoad = dataInfo->asyncStruct == nullptr ? ArmatureDataManager::getInstance()->isAutoLoadSpriteFile()
: dataInfo->asyncStruct->autoLoadSpriteFile;
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if (autoLoad)
{
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length = DICTOOL->getArrayCount_json(
json, CONFIG_FILE_PATH); // json[CONFIG_FILE_PATH].IsNull() ? 0 : json[CONFIG_FILE_PATH].Size();
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for (int i = 0; i < length; i++)
{
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const char* path = DICTOOL->getStringValueFromArray_json(
json, CONFIG_FILE_PATH,
i); // json[CONFIG_FILE_PATH][i].IsNull() ? nullptr : json[CONFIG_FILE_PATH][i].GetString();
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if (path == nullptr)
{
CCLOG("load CONFIG_FILE_PATH error.");
return;
}
std::string filePath = path;
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filePath = filePath.erase(filePath.find_last_of('.'));
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if (dataInfo->asyncStruct)
{
dataInfo->configFileQueue.push(filePath);
}
else
{
std::string plistPath = filePath + ".plist";
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std::string pngPath = filePath + ".png";
if (FileUtils::getInstance()->isFileExist(dataInfo->baseFilePath + plistPath) &&
FileUtils::getInstance()->isFileExist(dataInfo->baseFilePath + pngPath))
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{
ValueMap dict = FileUtils::getInstance()->getValueMapFromFile(dataInfo->baseFilePath + plistPath);
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if (dict.find("particleLifespan") != dict.end())
continue;
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ArmatureDataManager::getInstance()->addSpriteFrameFromFile(
(dataInfo->baseFilePath + plistPath), (dataInfo->baseFilePath + pngPath), dataInfo->filename);
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}
}
}
}
}
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ArmatureData* DataReaderHelper::decodeArmature(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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ArmatureData* armatureData = new ArmatureData();
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armatureData->init();
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
armatureData->name = name;
}
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dataInfo->cocoStudioVersion = armatureData->dataVersion = DICTOOL->getFloatValue_json(json, VERSION, 0.1f);
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int length = DICTOOL->getArrayCount_json(json, BONE_DATA, 0);
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, BONE_DATA, i); // json[BONE_DATA][i];
BoneData* boneData = decodeBone(dic, dataInfo);
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armatureData->addBoneData(boneData);
boneData->release();
}
return armatureData;
}
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BoneData* DataReaderHelper::decodeBone(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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BoneData* boneData = new BoneData();
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boneData->init();
decodeNode(boneData, json, dataInfo);
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const char* str = DICTOOL->getStringValue_json(json, A_NAME);
if (str != nullptr)
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{
boneData->name = str;
}
str = DICTOOL->getStringValue_json(json, A_PARENT);
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if (str != nullptr)
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{
boneData->parentName = str;
}
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int length = DICTOOL->getArrayCount_json(json, DISPLAY_DATA);
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, DISPLAY_DATA, i);
DisplayData* displayData = decodeBoneDisplay(dic, dataInfo);
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boneData->addDisplayData(displayData);
displayData->release();
}
return boneData;
}
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DisplayData* DataReaderHelper::decodeBoneDisplay(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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DisplayType displayType = (DisplayType)(DICTOOL->getIntValue_json(json, A_DISPLAY_TYPE, CS_DISPLAY_SPRITE));
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DisplayData* displayData = nullptr;
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switch (displayType)
{
case CS_DISPLAY_SPRITE:
{
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displayData = new SpriteDisplayData();
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
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((SpriteDisplayData*)displayData)->displayName = name;
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}
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if (json.HasMember(SKIN_DATA))
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{
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const rapidjson::Value& dicArray = DICTOOL->getSubDictionary_json(json, SKIN_DATA);
if (!dicArray.IsNull())
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{
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rapidjson::SizeType index = 0;
const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(dicArray, index);
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if (!dic.IsNull())
{
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SpriteDisplayData* sdd = (SpriteDisplayData*)displayData;
sdd->skinData.x = DICTOOL->getFloatValue_json(dic, A_X) * s_PositionReadScale;
sdd->skinData.y = DICTOOL->getFloatValue_json(dic, A_Y) * s_PositionReadScale;
sdd->skinData.scaleX = DICTOOL->getFloatValue_json(dic, A_SCALE_X, 1.0f);
sdd->skinData.scaleY = DICTOOL->getFloatValue_json(dic, A_SCALE_Y, 1.0f);
sdd->skinData.skewX = DICTOOL->getFloatValue_json(dic, A_SKEW_X, 1.0f);
sdd->skinData.skewY = DICTOOL->getFloatValue_json(dic, A_SKEW_Y, 1.0f);
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sdd->skinData.x *= dataInfo->contentScale;
sdd->skinData.y *= dataInfo->contentScale;
}
}
}
}
break;
case CS_DISPLAY_ARMATURE:
{
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displayData = new ArmatureDisplayData();
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
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((ArmatureDisplayData*)displayData)->displayName = name;
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}
}
break;
case CS_DISPLAY_PARTICLE:
{
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displayData = new ParticleDisplayData();
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const char* plist = DICTOOL->getStringValue_json(json, A_PLIST);
if (plist != nullptr)
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{
if (dataInfo->asyncStruct)
{
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static_cast<ParticleDisplayData*>(displayData)->displayName =
dataInfo->asyncStruct->baseFilePath + plist;
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}
else
{
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static_cast<ParticleDisplayData*>(displayData)->displayName = dataInfo->baseFilePath + plist;
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}
}
}
break;
default:
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displayData = new SpriteDisplayData();
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break;
}
displayData->displayType = displayType;
return displayData;
}
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AnimationData* DataReaderHelper::decodeAnimation(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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AnimationData* aniData = new AnimationData();
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
aniData->name = name;
}
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int length = DICTOOL->getArrayCount_json(json, MOVEMENT_DATA);
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, MOVEMENT_DATA, i);
MovementData* movementData = decodeMovement(dic, dataInfo);
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aniData->addMovement(movementData);
movementData->release();
}
return aniData;
}
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MovementData* DataReaderHelper::decodeMovement(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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MovementData* movementData = new MovementData();
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movementData->loop = DICTOOL->getBooleanValue_json(json, A_LOOP, true);
movementData->durationTween = DICTOOL->getIntValue_json(json, A_DURATION_TWEEN, 0);
movementData->durationTo = DICTOOL->getIntValue_json(json, A_DURATION_TO, 0);
movementData->duration = DICTOOL->getIntValue_json(json, A_DURATION, 0);
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if (!DICTOOL->checkObjectExist_json(json, A_DURATION))
{
movementData->scale = 1.0f;
}
else
{
movementData->scale = DICTOOL->getFloatValue_json(json, A_MOVEMENT_SCALE, 1.0f);
}
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movementData->tweenEasing =
(TweenType)(DICTOOL->getIntValue_json(json, A_TWEEN_EASING, cocos2d::tweenfunc::Linear));
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
movementData->name = name;
}
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int length = DICTOOL->getArrayCount_json(json, MOVEMENT_BONE_DATA);
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, MOVEMENT_BONE_DATA, i);
MovementBoneData* movementBoneData = decodeMovementBone(dic, dataInfo);
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movementData->addMovementBoneData(movementBoneData);
movementBoneData->release();
}
return movementData;
}
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MovementBoneData* DataReaderHelper::decodeMovementBone(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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MovementBoneData* movementBoneData = new MovementBoneData();
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movementBoneData->init();
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movementBoneData->delay = DICTOOL->getFloatValue_json(json, A_MOVEMENT_DELAY);
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
movementBoneData->name = name;
}
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rapidjson::SizeType length = DICTOOL->getArrayCount_json(json, FRAME_DATA);
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for (rapidjson::SizeType i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, FRAME_DATA, i);
FrameData* frameData = decodeFrame(dic, dataInfo);
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movementBoneData->addFrameData(frameData);
frameData->release();
if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
{
frameData->frameID = movementBoneData->duration;
movementBoneData->duration += frameData->duration;
}
}
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if (dataInfo->cocoStudioVersion < VERSION_CHANGE_ROTATION_RANGE)
{
//! Change rotation range from (-180 -- 180) to (-infinity -- infinity)
auto frames = movementBoneData->frameList;
for (long i = frames.size() - 1; i >= 0; i--)
{
if (i > 0)
{
float difSkewX = frames.at(i)->skewX - frames.at(i - 1)->skewX;
float difSkewY = frames.at(i)->skewY - frames.at(i - 1)->skewY;
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if (difSkewX < -M_PI || difSkewX > M_PI)
{
frames.at(i - 1)->skewX =
difSkewX < 0 ? frames.at(i - 1)->skewX - 2 * M_PI : frames.at(i - 1)->skewX + 2 * M_PI;
}
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if (difSkewY < -M_PI || difSkewY > M_PI)
{
frames.at(i - 1)->skewY =
difSkewY < 0 ? frames.at(i - 1)->skewY - 2 * M_PI : frames.at(i - 1)->skewY + 2 * M_PI;
}
}
}
}
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if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
{
if (movementBoneData->frameList.size() > 0)
{
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FrameData* frameData = new FrameData();
frameData->copy((FrameData*)movementBoneData->frameList.back());
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movementBoneData->addFrameData(frameData);
frameData->release();
frameData->frameID = movementBoneData->duration;
}
}
return movementBoneData;
}
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FrameData* DataReaderHelper::decodeFrame(const rapidjson::Value& json, DataInfo* dataInfo)
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{
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FrameData* frameData = new FrameData();
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decodeNode(frameData, json, dataInfo);
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frameData->tweenEasing = (TweenType)(DICTOOL->getIntValue_json(json, A_TWEEN_EASING, cocos2d::tweenfunc::Linear));
frameData->displayIndex = DICTOOL->getIntValue_json(json, A_DISPLAY_INDEX);
frameData->blendFunc.src = utils::toBackendBlendFactor(
DICTOOL->getIntValue_json(json, A_BLEND_SRC, utils::toGLBlendFactor(BlendFunc::ALPHA_PREMULTIPLIED.src)));
frameData->blendFunc.dst = utils::toBackendBlendFactor(
DICTOOL->getIntValue_json(json, A_BLEND_DST, utils::toGLBlendFactor(BlendFunc::ALPHA_PREMULTIPLIED.dst)));
frameData->isTween = DICTOOL->getBooleanValue_json(json, A_TWEEN_FRAME, true);
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const char* event = DICTOOL->getStringValue_json(json, A_EVENT);
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if (event != nullptr)
{
frameData->strEvent = event;
}
if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
{
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frameData->duration = DICTOOL->getIntValue_json(json, A_DURATION, 1);
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}
else
{
frameData->frameID = DICTOOL->getIntValue_json(json, A_FRAME_INDEX);
}
int length = DICTOOL->getArrayCount_json(json, A_EASING_PARAM);
if (length != 0)
{
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frameData->easingParams = new float[length];
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frameData->easingParamNumber = length;
for (int i = 0; i < length; i++)
{
frameData->easingParams[i] = DICTOOL->getFloatValueFromArray_json(json, A_EASING_PARAM, i);
}
}
return frameData;
}
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TextureData* DataReaderHelper::decodeTexture(const rapidjson::Value& json)
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{
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TextureData* textureData = new TextureData();
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textureData->init();
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const char* name = DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
textureData->name = name;
}
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textureData->width = DICTOOL->getFloatValue_json(json, A_WIDTH);
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textureData->height = DICTOOL->getFloatValue_json(json, A_HEIGHT);
textureData->pivotX = DICTOOL->getFloatValue_json(json, A_PIVOT_X);
textureData->pivotY = DICTOOL->getFloatValue_json(json, A_PIVOT_Y);
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int length = DICTOOL->getArrayCount_json(json, CONTOUR_DATA);
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for (int i = 0; i < length; i++)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, CONTOUR_DATA, i);
ContourData* contourData = decodeContour(dic);
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textureData->contourDataList.pushBack(contourData);
contourData->release();
}
return textureData;
}
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ContourData* DataReaderHelper::decodeContour(const rapidjson::Value& json)
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{
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ContourData* contourData = new ContourData();
contourData->init();
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int length = DICTOOL->getArrayCount_json(json, VERTEX_POINT);
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for (int i = length - 1; i >= 0; i--)
{
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const rapidjson::Value& dic = DICTOOL->getSubDictionary_json(json, VERTEX_POINT, i);
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Vec2 vertex;
vertex.x = DICTOOL->getFloatValue_json(dic, A_X);
vertex.y = DICTOOL->getFloatValue_json(dic, A_Y);
contourData->vertexList.push_back(vertex);
}
return contourData;
}
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void DataReaderHelper::decodeNode(BaseData* node, const rapidjson::Value& json, DataInfo* dataInfo)
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{
node->x = DICTOOL->getFloatValue_json(json, A_X) * s_PositionReadScale;
node->y = DICTOOL->getFloatValue_json(json, A_Y) * s_PositionReadScale;
node->x *= dataInfo->contentScale;
node->y *= dataInfo->contentScale;
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node->zOrder = DICTOOL->getIntValue_json(json, A_Z);
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node->skewX = DICTOOL->getFloatValue_json(json, A_SKEW_X);
node->skewY = DICTOOL->getFloatValue_json(json, A_SKEW_Y);
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node->scaleX = DICTOOL->getFloatValue_json(json, A_SCALE_X, 1.0f);
node->scaleY = DICTOOL->getFloatValue_json(json, A_SCALE_Y, 1.0f);
if (dataInfo->cocoStudioVersion < VERSION_COLOR_READING)
{
if (DICTOOL->checkObjectExist_json(json, 0))
{
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const rapidjson::Value& colorDic = DICTOOL->getSubDictionary_json(json, 0);
node->a = DICTOOL->getIntValue_json(colorDic, A_ALPHA, 255);
node->r = DICTOOL->getIntValue_json(colorDic, A_RED, 255);
node->g = DICTOOL->getIntValue_json(colorDic, A_GREEN, 255);
node->b = DICTOOL->getIntValue_json(colorDic, A_BLUE, 255);
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node->isUseColorInfo = true;
}
}
else
{
if (DICTOOL->checkObjectExist_json(json, COLOR_INFO))
{
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const rapidjson::Value& colorDic =
DICTOOL->getSubDictionary_json(json, COLOR_INFO); // json.getSubDictionary(COLOR_INFO);
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node->a = DICTOOL->getIntValue_json(colorDic, A_ALPHA, 255);
node->r = DICTOOL->getIntValue_json(colorDic, A_RED, 255);
node->g = DICTOOL->getIntValue_json(colorDic, A_GREEN, 255);
node->b = DICTOOL->getIntValue_json(colorDic, A_BLUE, 255);
node->isUseColorInfo = true;
}
}
}
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void DataReaderHelper::addDataFromBinaryCache(const char* fileContent, DataInfo* dataInfo)
{
CocoLoader tCocoLoader;
if (tCocoLoader.ReadCocoBinBuff((char*)fileContent))
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{
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stExpCocoNode* tpRootCocoNode = tCocoLoader.GetRootCocoNode();
rapidjson::Type tType = tpRootCocoNode->GetType(&tCocoLoader);
if (rapidjson::kObjectType == tType)
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{
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stExpCocoNode* tpChildArray = tpRootCocoNode->GetChildArray(&tCocoLoader);
int nCount = tpRootCocoNode->GetChildNum();
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dataInfo->contentScale = 1.0f;
int length = 0;
std::string key;
stExpCocoNode* pDataArray;
for (int i = 0; i < nCount; ++i)
{
key = tpChildArray[i].GetName(&tCocoLoader);
if (key.compare(CONTENT_SCALE) == 0)
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{
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std::string value = tpChildArray[i].GetValue(&tCocoLoader);
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dataInfo->contentScale = utils::atof(value.data());
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}
else if (0 == key.compare(ARMATURE_DATA))
{
pDataArray = tpChildArray[i].GetChildArray(&tCocoLoader);
length = tpChildArray[i].GetChildNum();
ArmatureData* armatureData;
for (int ii = 0; ii < length; ++ii)
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{
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armatureData = decodeArmature(&tCocoLoader, &pDataArray[ii], dataInfo);
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addArmatureData(armatureData->name, armatureData,
dataInfo->filename);
armatureData->release();
if (dataInfo->asyncStruct)
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{
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_dataReaderHelper->_addDataMutex.unlock();
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}
}
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}
else if (0 == key.compare(ANIMATION_DATA))
{
pDataArray = tpChildArray[i].GetChildArray(&tCocoLoader);
length = tpChildArray[i].GetChildNum();
AnimationData* animationData;
for (int ii = 0; ii < length; ++ii)
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{
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animationData = decodeAnimation(&tCocoLoader, &pDataArray[ii], dataInfo);
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addAnimationData(animationData->name, animationData,
dataInfo->filename);
animationData->release();
if (dataInfo->asyncStruct)
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{
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_dataReaderHelper->_addDataMutex.unlock();
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}
}
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}
else if (key.compare(TEXTURE_DATA) == 0)
{
pDataArray = tpChildArray[i].GetChildArray(&tCocoLoader);
length = tpChildArray[i].GetChildNum();
for (int ii = 0; ii < length; ++ii)
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{
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TextureData* textureData = decodeTexture(&tCocoLoader, &pDataArray[ii]);
if (dataInfo->asyncStruct)
{
_dataReaderHelper->_addDataMutex.lock();
}
ArmatureDataManager::getInstance()->addTextureData(textureData->name, textureData,
dataInfo->filename);
textureData->release();
if (dataInfo->asyncStruct)
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{
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_dataReaderHelper->_addDataMutex.unlock();
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}
}
}
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}
// Auto losprite file
bool autoLoad = dataInfo->asyncStruct == nullptr
? ArmatureDataManager::getInstance()->isAutoLoadSpriteFile()
: dataInfo->asyncStruct->autoLoadSpriteFile;
if (autoLoad)
{
for (int i = 0; i < nCount; ++i)
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{
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key = tpChildArray[i].GetName(&tCocoLoader);
if (0 != key.compare(CONFIG_FILE_PATH))
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{
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continue;
}
length = tpChildArray[i].GetChildNum();
stExpCocoNode* pConfigFilePath = tpChildArray[i].GetChildArray(&tCocoLoader);
for (int ii = 0; ii < length; ii++)
{
const char* path = pConfigFilePath[ii].GetValue(&tCocoLoader);
if (path == nullptr)
{
CCLOG("load CONFIG_FILE_PATH error.");
return;
}
std::string filePath = path;
filePath = filePath.erase(filePath.find_last_of('.'));
if (dataInfo->asyncStruct)
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{
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dataInfo->configFileQueue.push(filePath);
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}
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else
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{
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std::string plistPath = filePath + ".plist";
std::string pngPath = filePath + ".png";
ArmatureDataManager::getInstance()->addSpriteFrameFromFile(
(dataInfo->baseFilePath + plistPath), (dataInfo->baseFilePath + pngPath),
dataInfo->filename);
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}
}
}
}
}
}
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}
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ArmatureData* DataReaderHelper::decodeArmature(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
ArmatureData* armatureData = new ArmatureData();
armatureData->init();
stExpCocoNode* pAramtureDataArray = cocoNode->GetChildArray(cocoLoader);
const char* name = pAramtureDataArray[2].GetValue(cocoLoader); // DICTOOL->getStringValue_json(json, A_NAME);
if (name != nullptr)
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{
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armatureData->name = name;
}
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float version = utils::atof(pAramtureDataArray[1].GetValue(cocoLoader));
dataInfo->cocoStudioVersion = armatureData->dataVersion =
version; // DICTOOL->getFloatValue_json(json, VERSION, 0.1f);
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int length = pAramtureDataArray[3].GetChildNum(); // DICTOOL->getArrayCount_json(json, BONE_DATA, 0);
stExpCocoNode* pBoneChildren = pAramtureDataArray[3].GetChildArray(cocoLoader);
stExpCocoNode* child;
for (int i = 0; i < length; i++)
{
// const rapidjson::Value &dic = DICTOOL->getSubDictionary_json(json, BONE_DATA, i); //json[BONE_DATA][i];
child = &pBoneChildren[i];
BoneData* boneData = decodeBone(cocoLoader, child, dataInfo);
armatureData->addBoneData(boneData);
boneData->release();
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}
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return armatureData;
}
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BoneData* DataReaderHelper::decodeBone(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
BoneData* boneData = new BoneData();
boneData->init();
decodeNode(boneData, cocoLoader, cocoNode, dataInfo);
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int length = cocoNode->GetChildNum();
stExpCocoNode* pBoneChildren = cocoNode->GetChildArray(cocoLoader);
stExpCocoNode* child;
const char* str = nullptr;
std::string key;
for (int i = 0; i < length; ++i)
{
child = &pBoneChildren[i];
key = child->GetName(cocoLoader);
str = child->GetValue(cocoLoader);
if (key.compare(A_NAME) == 0)
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{
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// DICTOOL->getStringValue_json(json, A_NAME);
if (str != nullptr)
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{
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boneData->name = str;
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}
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}
else if (key.compare(A_PARENT) == 0)
{
// DICTOOL->getStringValue_json(json, A_PARENT);
if (str != nullptr)
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{
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boneData->parentName = str;
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}
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}
else if (key.compare(DISPLAY_DATA) == 0)
{
int count = child->GetChildNum();
stExpCocoNode* pDisplayData = child->GetChildArray(cocoLoader);
for (int ii = 0; ii < count; ++ii)
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{
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DisplayData* displayData = decodeBoneDisplay(cocoLoader, &pDisplayData[ii], dataInfo);
if (displayData == nullptr)
continue;
boneData->addDisplayData(displayData);
displayData->release();
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}
}
}
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return boneData;
}
DisplayData* DataReaderHelper::decodeBoneDisplay(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
stExpCocoNode* children = cocoNode->GetChildArray(cocoLoader);
stExpCocoNode* child = &children[1];
std::string key = child->GetName(cocoLoader);
const char* str = child->GetValue(cocoLoader);
DisplayData* displayData = nullptr;
if (key.compare(A_DISPLAY_TYPE) == 0)
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{
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str = child->GetValue(cocoLoader);
DisplayType displayType = (DisplayType)(atoi(str));
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int length = 0;
switch (displayType)
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{
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case CS_DISPLAY_SPRITE:
{
displayData = new SpriteDisplayData();
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const char* name = children[0].GetValue(cocoLoader);
if (name != nullptr)
{
((SpriteDisplayData*)displayData)->displayName = name;
}
stExpCocoNode* pSkinDataArray = children[2].GetChildArray(cocoLoader);
if (pSkinDataArray != nullptr)
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{
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stExpCocoNode* pSkinData = &pSkinDataArray[0];
if (pSkinData != nullptr)
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{
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SpriteDisplayData* sdd = (SpriteDisplayData*)displayData;
length = pSkinData->GetChildNum();
stExpCocoNode* SkinDataValue = pSkinData->GetChildArray(cocoLoader);
for (int i = 0; i < length; ++i)
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{
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key = SkinDataValue[i].GetName(cocoLoader);
str = SkinDataValue[i].GetValue(cocoLoader);
if (key.compare(A_X) == 0)
{
sdd->skinData.x = utils::atof(str) * s_PositionReadScale;
}
else if (key.compare(A_Y) == 0)
{
sdd->skinData.y = utils::atof(str) * s_PositionReadScale;
}
else if (key.compare(A_SCALE_X) == 0)
{
sdd->skinData.scaleX = utils::atof(str);
}
else if (key.compare(A_SCALE_Y) == 0)
{
sdd->skinData.scaleY = utils::atof(str);
}
else if (key.compare(A_SKEW_X) == 0)
{
sdd->skinData.skewX = utils::atof(str);
}
else if (key.compare(A_SKEW_Y) == 0)
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{
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sdd->skinData.skewY = utils::atof(str);
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}
}
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sdd->skinData.x *= dataInfo->contentScale;
sdd->skinData.y *= dataInfo->contentScale;
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}
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}
}
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break;
case CS_DISPLAY_ARMATURE:
{
displayData = new ArmatureDisplayData();
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const char* name = cocoNode[0].GetValue(cocoLoader);
if (name != nullptr)
{
((ArmatureDisplayData*)displayData)->displayName = name;
}
}
break;
case CS_DISPLAY_PARTICLE:
{
displayData = new ParticleDisplayData();
length = cocoNode->GetChildNum();
stExpCocoNode* pDisplayData = cocoNode->GetChildArray(cocoLoader);
for (int i = 0; i < length; ++i)
{
key = pDisplayData[i].GetName(cocoLoader);
str = pDisplayData[i].GetValue(cocoLoader);
if (key.compare(A_PLIST) == 0)
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{
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const char* plist = str;
if (plist != nullptr)
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{
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if (dataInfo->asyncStruct)
{
((ParticleDisplayData*)displayData)->displayName =
dataInfo->asyncStruct->baseFilePath + plist;
}
else
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{
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((ParticleDisplayData*)displayData)->displayName = dataInfo->baseFilePath + plist;
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}
}
}
}
}
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break;
default:
displayData = new SpriteDisplayData();
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break;
}
displayData->displayType = displayType;
}
return displayData;
}
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AnimationData* DataReaderHelper::decodeAnimation(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
AnimationData* aniData = new AnimationData();
int length = cocoNode->GetChildNum();
stExpCocoNode* pAnimationData = cocoNode->GetChildArray(cocoLoader);
const char* str = nullptr;
std::string key;
stExpCocoNode* child;
MovementData* movementData;
for (int i = 0; i < length; ++i)
{
child = &pAnimationData[i];
key = child->GetName(cocoLoader);
str = child->GetValue(cocoLoader);
if (key.compare(A_NAME) == 0)
{
if (str != nullptr)
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{
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aniData->name = str;
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}
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}
else if (key.compare(MOVEMENT_DATA) == 0)
{
int movcount = child->GetChildNum();
stExpCocoNode* movArray = child->GetChildArray(cocoLoader);
for (int movnum = 0; movnum < movcount; movnum++)
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{
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movementData = decodeMovement(cocoLoader, &movArray[movnum], dataInfo);
aniData->addMovement(movementData);
movementData->release();
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}
}
}
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return aniData;
}
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MovementData* DataReaderHelper::decodeMovement(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
MovementData* movementData = new MovementData();
movementData->scale = 1.0f;
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int length = cocoNode->GetChildNum();
stExpCocoNode* pMoveDataArray = cocoNode->GetChildArray(cocoLoader);
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const char* str = nullptr;
std::string key;
stExpCocoNode* child;
for (int i = 0; i < length; ++i)
{
child = &pMoveDataArray[i];
key = child->GetName(cocoLoader);
str = child->GetValue(cocoLoader);
if (key.compare(A_NAME) == 0)
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{
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if (str != nullptr)
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{
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movementData->name = str;
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}
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}
else if (key.compare(A_LOOP) == 0)
{
movementData->loop = true;
if (str != nullptr)
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{
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if (strcmp("1", str) != 0)
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{
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movementData->loop = false;
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}
}
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}
else if (key.compare(A_DURATION_TWEEN) == 0)
{
movementData->durationTween = 0;
if (str != nullptr)
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{
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movementData->durationTween = atoi(str);
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}
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}
else if (key.compare(A_DURATION_TO) == 0)
{
movementData->durationTo = 0;
if (str != nullptr)
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{
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movementData->durationTo = atoi(str);
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}
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}
else if (key.compare(A_DURATION) == 0)
{
movementData->duration = 0;
if (str != nullptr)
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{
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movementData->duration = atoi(str);
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}
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}
else if (key.compare(A_MOVEMENT_SCALE) == 0)
{
movementData->scale = 1.0;
if (str != nullptr)
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{
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movementData->scale = utils::atof(str);
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}
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}
else if (key.compare(A_TWEEN_EASING) == 0)
{
movementData->tweenEasing = cocos2d::tweenfunc::Linear;
if (str != nullptr)
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{
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movementData->tweenEasing = (TweenType)(atoi(str));
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}
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}
else if (key.compare(MOVEMENT_BONE_DATA) == 0)
{
int count = child->GetChildNum();
stExpCocoNode* pMoveBoneData = child->GetChildArray(cocoLoader);
MovementBoneData* movementBoneData;
for (int ii = 0; ii < count; ++ii)
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{
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movementBoneData = decodeMovementBone(cocoLoader, &pMoveBoneData[ii], dataInfo);
movementData->addMovementBoneData(movementBoneData);
movementBoneData->release();
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}
}
}
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return movementData;
}
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MovementBoneData* DataReaderHelper::decodeMovementBone(CocoLoader* cocoLoader,
stExpCocoNode* cocoNode,
DataInfo* dataInfo)
{
MovementBoneData* movementBoneData = new MovementBoneData();
movementBoneData->init();
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int length = cocoNode->GetChildNum();
stExpCocoNode* pMovementBoneDataArray = cocoNode->GetChildArray(cocoLoader);
stExpCocoNode* movebonechild;
const char* str = nullptr;
for (int i = 0; i < length; ++i)
{
movebonechild = &pMovementBoneDataArray[i];
std::string key = movebonechild->GetName(cocoLoader);
str = movebonechild->GetValue(cocoLoader);
if (key.compare(A_NAME) == 0)
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{
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if (str != nullptr)
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{
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movementBoneData->name = str;
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}
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}
else if (key.compare(A_MOVEMENT_DELAY) == 0)
{
if (str != nullptr)
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{
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movementBoneData->delay = utils::atof(str);
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}
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}
else if (key.compare(FRAME_DATA) == 0)
{
int count = movebonechild->GetChildNum();
stExpCocoNode* pFrameDataArray = movebonechild->GetChildArray(cocoLoader);
for (int ii = 0; ii < count; ++ii)
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{
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FrameData* frameData = decodeFrame(cocoLoader, &pFrameDataArray[ii], dataInfo);
movementBoneData->addFrameData(frameData);
frameData->release();
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if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
{
frameData->frameID = movementBoneData->duration;
movementBoneData->duration += frameData->duration;
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}
}
}
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}
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const ssize_t framesizemusone = movementBoneData->frameList.size() - 1;
if (dataInfo->cocoStudioVersion < VERSION_CHANGE_ROTATION_RANGE)
{
//! Change rotation range from (-180 -- 180) to (-infinity -- infinity)
cocos2d::Vector<FrameData*> frames = movementBoneData->frameList;
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ssize_t imusone = 0;
ssize_t i = 0;
for (i = framesizemusone; i >= 0; i--)
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{
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if (i > 0)
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{
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imusone = i - 1;
float difSkewX = frames.at(i)->skewX - frames.at(imusone)->skewX;
float difSkewY = frames.at(i)->skewY - frames.at(imusone)->skewY;
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if (difSkewX < -M_PI || difSkewX > M_PI)
{
frames.at(imusone)->skewX =
difSkewX < 0 ? frames.at(imusone)->skewX - 2 * M_PI : frames.at(imusone)->skewX + 2 * M_PI;
}
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if (difSkewY < -M_PI || difSkewY > M_PI)
{
frames.at(imusone)->skewY =
difSkewY < 0 ? frames.at(imusone)->skewY - 2 * M_PI : frames.at(imusone)->skewY + 2 * M_PI;
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}
}
}
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}
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if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
{
if (movementBoneData->frameList.size() > 0)
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{
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auto frameData = movementBoneData->frameList.at(framesizemusone);
movementBoneData->addFrameData(frameData);
frameData->release();
frameData->frameID = movementBoneData->duration;
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}
}
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return movementBoneData;
}
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FrameData* DataReaderHelper::decodeFrame(CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
FrameData* frameData = new FrameData();
decodeNode(frameData, cocoLoader, cocoNode, dataInfo);
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int length = cocoNode->GetChildNum();
stExpCocoNode* pFrameDataArray = cocoNode->GetChildArray(cocoLoader);
const char* str = nullptr;
for (int i = 0; i < length; ++i)
{
std::string key = pFrameDataArray[i].GetName(cocoLoader);
str = pFrameDataArray[i].GetValue(cocoLoader);
if (key.compare(A_TWEEN_EASING) == 0)
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{
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frameData->tweenEasing = cocos2d::tweenfunc::Linear;
if (str != nullptr)
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{
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frameData->tweenEasing = (TweenType)(atoi(str));
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}
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}
else if (key.compare(A_DISPLAY_INDEX) == 0)
{
if (str != nullptr)
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{
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frameData->displayIndex = atoi(str);
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}
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}
else if (key.compare(A_BLEND_SRC) == 0)
{
if (str != nullptr)
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{
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frameData->blendFunc.src = utils::toBackendBlendFactor(atoi(str));
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}
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}
else if (key.compare(A_BLEND_DST) == 0)
{
if (str != nullptr)
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{
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frameData->blendFunc.dst = utils::toBackendBlendFactor(atoi(str));
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}
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}
else if (key.compare(A_TWEEN_FRAME) == 0)
{
frameData->isTween = true;
if (str != nullptr)
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{
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if (strcmp("1", str) != 0)
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{
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frameData->isTween = false;
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}
}
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}
else if (key.compare(A_EVENT) == 0)
{
if (str != nullptr)
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{
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frameData->strEvent = str;
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}
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}
else if (key.compare(A_DURATION) == 0)
{
if (dataInfo->cocoStudioVersion < VERSION_COMBINED)
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{
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frameData->duration = 1;
if (str != nullptr)
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{
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frameData->duration = atoi(str);
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}
}
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}
else if (key.compare(A_FRAME_INDEX) == 0)
{
if (dataInfo->cocoStudioVersion >= VERSION_COMBINED)
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{
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if (str != nullptr)
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{
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frameData->frameID = atoi(str);
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}
}
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}
else if (key.compare(A_EASING_PARAM) == 0)
{
int count = pFrameDataArray[i].GetChildNum();
if (count != 0)
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{
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frameData->easingParams = new float[count];
stExpCocoNode* pFrameData = pFrameDataArray[i].GetChildArray(cocoLoader);
for (int ii = 0; ii < count; ++ii)
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{
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str = pFrameData[ii].GetValue(cocoLoader);
if (str != nullptr)
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{
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frameData->easingParams[ii] = utils::atof(str);
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}
}
}
}
}
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return frameData;
}
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TextureData* DataReaderHelper::decodeTexture(CocoLoader* cocoLoader, stExpCocoNode* cocoNode)
{
TextureData* textureData = new TextureData();
textureData->init();
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if (cocoNode == nullptr)
{
return textureData;
}
int length = cocoNode->GetChildNum();
stExpCocoNode* pTextureDataArray = cocoNode->GetChildArray(cocoLoader);
const char* str = nullptr;
for (int i = 0; i < length; ++i)
{
std::string key = pTextureDataArray[i].GetName(cocoLoader);
str = pTextureDataArray[i].GetValue(cocoLoader);
if (key.compare(A_NAME) == 0)
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{
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if (str != nullptr)
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{
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textureData->name = str;
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}
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}
else if (key.compare(A_WIDTH) == 0)
{
if (str != nullptr)
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{
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textureData->width = utils::atof(str);
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}
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}
else if (key.compare(A_HEIGHT) == 0)
{
if (str != nullptr)
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{
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textureData->height = utils::atof(str);
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}
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}
else if (key.compare(A_PIVOT_X) == 0)
{
if (str != nullptr)
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{
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textureData->pivotX = utils::atof(str);
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}
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}
else if (key.compare(A_PIVOT_Y) == 0)
{
if (str != nullptr)
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{
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textureData->pivotY = utils::atof(str);
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}
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}
else if (key.compare(CONTOUR_DATA) == 0)
{
int count = pTextureDataArray[i].GetChildNum();
stExpCocoNode* pContourArray = pTextureDataArray[i].GetChildArray(cocoLoader);
for (int ii = 0; ii < count; ++ii)
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{
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ContourData* contourData = decodeContour(cocoLoader, &pContourArray[ii]);
textureData->contourDataList.pushBack(contourData);
contourData->release();
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}
}
}
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return textureData;
}
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ContourData* DataReaderHelper::decodeContour(CocoLoader* cocoLoader, stExpCocoNode* cocoNode)
{
ContourData* contourData = new ContourData();
contourData->init();
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int length = cocoNode->GetChildNum();
stExpCocoNode* verTexPointArray = cocoNode->GetChildArray(cocoLoader);
const char* str = nullptr;
for (int i = 0; i < length; ++i)
{
std::string key = verTexPointArray[i].GetName(cocoLoader);
str = verTexPointArray[i].GetValue(cocoLoader);
if (key.compare(VERTEX_POINT) == 0)
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{
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int count = verTexPointArray[i].GetChildNum();
stExpCocoNode* pVerTexPointArray = verTexPointArray[i].GetChildArray(cocoLoader);
stExpCocoNode* pVerTexPoint;
for (int ii = count - 1; ii >= 0; --ii)
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{
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pVerTexPoint = pVerTexPointArray[ii].GetChildArray(cocoLoader);
Vec2 vertex;
vertex.x = utils::atof(pVerTexPoint[0].GetValue(cocoLoader));
vertex.y = utils::atof(pVerTexPoint[1].GetValue(cocoLoader));
contourData->vertexList.push_back(vertex);
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}
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break;
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}
}
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return contourData;
}
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void DataReaderHelper::decodeNode(BaseData* node, CocoLoader* cocoLoader, stExpCocoNode* cocoNode, DataInfo* dataInfo)
{
int length = cocoNode->GetChildNum();
stExpCocoNode* NodeArray = cocoNode->GetChildArray(cocoLoader);
const char* str = nullptr;
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bool isVersionL = dataInfo->cocoStudioVersion < VERSION_COLOR_READING;
stExpCocoNode* child;
for (int i = 0; i < length; ++i)
{
child = &NodeArray[i];
std::string key = child->GetName(cocoLoader);
str = child->GetValue(cocoLoader);
if (key.compare(A_X) == 0)
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{
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node->x = utils::atof(str) * dataInfo->contentScale;
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}
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else if (key.compare(A_Y) == 0)
{
node->y = utils::atof(str) * dataInfo->contentScale;
}
else if (key.compare(A_Z) == 0)
{
node->zOrder = atoi(str);
}
else if (key.compare(A_SKEW_X) == 0)
{
node->skewX = utils::atof(str);
}
else if (key.compare(A_SKEW_Y) == 0)
{
node->skewY = utils::atof(str);
}
else if (key.compare(A_SCALE_X) == 0)
{
node->scaleX = utils::atof(str);
}
else if (key.compare(A_SCALE_Y) == 0)
{
node->scaleY = utils::atof(str);
}
else if (key.compare(COLOR_INFO) == 0)
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{
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if (!isVersionL)
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{
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if (child->GetType(cocoLoader) == rapidjson::kObjectType)
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{
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if (child->GetChildNum() == 4)
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{
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stExpCocoNode* ChildArray = child->GetChildArray(cocoLoader);
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node->a = atoi(ChildArray[0].GetValue(cocoLoader));
node->r = atoi(ChildArray[1].GetValue(cocoLoader));
node->g = atoi(ChildArray[2].GetValue(cocoLoader));
node->b = atoi(ChildArray[3].GetValue(cocoLoader));
}
}
node->isUseColorInfo = true;
}
}
}
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if (isVersionL)
{
int colorcoount = NodeArray[0].GetChildNum();
if (colorcoount > 0)
{
if (NodeArray[0].GetType(cocoLoader) == rapidjson::kObjectType)
{
if (NodeArray[0].GetChildNum() == 4)
{
stExpCocoNode* ChildArray = NodeArray[0].GetChildArray(cocoLoader);
node->a = atoi(ChildArray[0].GetValue(cocoLoader));
node->r = atoi(ChildArray[1].GetValue(cocoLoader));
node->g = atoi(ChildArray[2].GetValue(cocoLoader));
node->b = atoi(ChildArray[3].GetValue(cocoLoader));
}
}
node->isUseColorInfo = true;
}
}
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}
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} // namespace cocostudio