зеркало из https://github.com/microsoft/cocos2d-x.git
491 строка
16 KiB
C++
491 строка
16 KiB
C++
/****************************************************************************
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Copyright (c) 2013 Zynga Inc.
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Copyright (c) 2013-2017 Chukong Technologies Inc.
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http://www.cocos2d-x.org
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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****************************************************************************/
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#include "2d/CCFontAtlas.h"
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#if CC_TARGET_PLATFORM != CC_PLATFORM_WIN32 && CC_TARGET_PLATFORM != CC_PLATFORM_WINRT && CC_TARGET_PLATFORM != CC_PLATFORM_ANDROID
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#include <iconv.h>
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#elif CC_TARGET_PLATFORM == CC_PLATFORM_ANDROID
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#include "platform/android/jni/Java_org_cocos2dx_lib_Cocos2dxHelper.h"
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#endif
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#include "2d/CCFontFreeType.h"
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#include "base/ccUTF8.h"
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#include "base/CCDirector.h"
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#include "base/CCEventListenerCustom.h"
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#include "base/CCEventDispatcher.h"
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#include "base/CCEventType.h"
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NS_CC_BEGIN
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const int FontAtlas::CacheTextureWidth = 512;
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const int FontAtlas::CacheTextureHeight = 512;
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const char* FontAtlas::CMD_PURGE_FONTATLAS = "__cc_PURGE_FONTATLAS";
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const char* FontAtlas::CMD_RESET_FONTATLAS = "__cc_RESET_FONTATLAS";
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FontAtlas::FontAtlas(Font &theFont)
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: _font(&theFont)
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, _fontFreeType(nullptr)
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, _iconv(nullptr)
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, _currentPageData(nullptr)
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, _fontAscender(0)
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, _rendererRecreatedListener(nullptr)
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, _antialiasEnabled(true)
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, _currLineHeight(0)
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{
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_font->retain();
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_fontFreeType = dynamic_cast<FontFreeType*>(_font);
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if (_fontFreeType)
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{
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_lineHeight = _font->getFontMaxHeight();
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_fontAscender = _fontFreeType->getFontAscender();
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auto texture = new (std::nothrow) Texture2D;
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_currentPage = 0;
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_currentPageOrigX = 0;
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_currentPageOrigY = 0;
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_letterEdgeExtend = 2;
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_letterPadding = 0;
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if (_fontFreeType->isDistanceFieldEnabled())
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{
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_letterPadding += 2 * FontFreeType::DistanceMapSpread;
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}
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_currentPageDataSize = CacheTextureWidth * CacheTextureHeight;
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auto outlineSize = _fontFreeType->getOutlineSize();
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if(outlineSize > 0)
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{
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_lineHeight += 2 * outlineSize;
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_currentPageDataSize *= 2;
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}
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_currentPageData = new (std::nothrow) unsigned char[_currentPageDataSize];
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memset(_currentPageData, 0, _currentPageDataSize);
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auto pixelFormat = outlineSize > 0 ? Texture2D::PixelFormat::AI88 : Texture2D::PixelFormat::A8;
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texture->initWithData(_currentPageData, _currentPageDataSize,
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pixelFormat, CacheTextureWidth, CacheTextureHeight, Size(CacheTextureWidth,CacheTextureHeight) );
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addTexture(texture,0);
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texture->release();
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#if CC_ENABLE_CACHE_TEXTURE_DATA
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auto eventDispatcher = Director::getInstance()->getEventDispatcher();
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_rendererRecreatedListener = EventListenerCustom::create(EVENT_RENDERER_RECREATED, CC_CALLBACK_1(FontAtlas::listenRendererRecreated, this));
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eventDispatcher->addEventListenerWithFixedPriority(_rendererRecreatedListener, 1);
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#endif
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}
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}
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FontAtlas::~FontAtlas()
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{
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#if CC_ENABLE_CACHE_TEXTURE_DATA
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if (_fontFreeType && _rendererRecreatedListener)
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{
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auto eventDispatcher = Director::getInstance()->getEventDispatcher();
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eventDispatcher->removeEventListener(_rendererRecreatedListener);
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_rendererRecreatedListener = nullptr;
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}
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#endif
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_font->release();
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releaseTextures();
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delete []_currentPageData;
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#if CC_TARGET_PLATFORM != CC_PLATFORM_WIN32 && CC_TARGET_PLATFORM != CC_PLATFORM_WINRT && CC_TARGET_PLATFORM != CC_PLATFORM_ANDROID
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if (_iconv)
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{
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iconv_close(_iconv);
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_iconv = nullptr;
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}
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#endif
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}
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void FontAtlas::reset()
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{
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releaseTextures();
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_currLineHeight = 0;
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_currentPage = 0;
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_currentPageOrigX = 0;
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_currentPageOrigY = 0;
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_letterDefinitions.clear();
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}
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void FontAtlas::releaseTextures()
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{
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for( auto &item: _atlasTextures)
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{
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item.second->release();
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}
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_atlasTextures.clear();
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}
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void FontAtlas::purgeTexturesAtlas()
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{
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if (_fontFreeType)
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{
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reset();
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auto eventDispatcher = Director::getInstance()->getEventDispatcher();
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eventDispatcher->dispatchCustomEvent(CMD_PURGE_FONTATLAS,this);
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eventDispatcher->dispatchCustomEvent(CMD_RESET_FONTATLAS,this);
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}
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}
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void FontAtlas::listenRendererRecreated(EventCustom * /*event*/)
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{
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purgeTexturesAtlas();
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}
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void FontAtlas::addLetterDefinition(char32_t utf32Char, const FontLetterDefinition &letterDefinition)
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{
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_letterDefinitions[utf32Char] = letterDefinition;
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}
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void FontAtlas::scaleFontLetterDefinition(float scaleFactor)
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{
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for (auto&& fontDefinition : _letterDefinitions) {
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auto& letterDefinition = fontDefinition.second;
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letterDefinition.width *= scaleFactor;
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letterDefinition.height *= scaleFactor;
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letterDefinition.offsetX *= scaleFactor;
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letterDefinition.offsetY *= scaleFactor;
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letterDefinition.xAdvance *= scaleFactor;
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}
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}
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bool FontAtlas::getLetterDefinitionForChar(char32_t utf32Char, FontLetterDefinition &letterDefinition)
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{
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auto outIterator = _letterDefinitions.find(utf32Char);
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if (outIterator != _letterDefinitions.end())
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{
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letterDefinition = (*outIterator).second;
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return letterDefinition.validDefinition;
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}
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else
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{
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return false;
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}
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}
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void FontAtlas::conversionU32TOGB2312(const std::u32string& u32Text, std::unordered_map<unsigned int, unsigned int>& charCodeMap)
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{
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size_t strLen = u32Text.length();
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auto gb2312StrSize = strLen * 2;
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auto gb2312Text = new (std::nothrow) char[gb2312StrSize];
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memset(gb2312Text, 0, gb2312StrSize);
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switch (_fontFreeType->getEncoding())
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{
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case FT_ENCODING_GB2312:
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{
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#if CC_TARGET_PLATFORM == CC_PLATFORM_WIN32 || CC_TARGET_PLATFORM == CC_PLATFORM_WINRT
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std::u16string u16Text;
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cocos2d::StringUtils::UTF32ToUTF16(u32Text, u16Text);
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WideCharToMultiByte(936, NULL, (LPCWCH)u16Text.c_str(), strLen, (LPSTR)gb2312Text, gb2312StrSize, NULL, NULL);
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#elif CC_TARGET_PLATFORM == CC_PLATFORM_ANDROID
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conversionEncodingJNI((char*)u32Text.c_str(), gb2312StrSize, "UTF-32LE", gb2312Text, "GB2312");
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#else
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if (_iconv == nullptr)
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{
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_iconv = iconv_open("GBK//TRANSLIT", "UTF-32LE");
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}
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if (_iconv == (iconv_t)-1)
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{
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CCLOG("conversion from utf32 to gb2312 not available");
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}
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else
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{
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char* pin = (char*)u32Text.c_str();
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char* pout = gb2312Text;
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size_t inLen = strLen * 2;
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size_t outLen = gb2312StrSize;
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iconv(_iconv, (char**)&pin, &inLen, &pout, &outLen);
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}
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#endif
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}
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break;
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default:
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CCLOG("Unsupported encoding:%d", _fontFreeType->getEncoding());
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break;
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}
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unsigned short gb2312Code = 0;
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unsigned char* dst = (unsigned char*)&gb2312Code;
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char32_t u32Code;
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for (size_t index = 0, gbIndex = 0; index < strLen; ++index)
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{
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u32Code = u32Text[index];
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if (u32Code < 256)
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{
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charCodeMap[u32Code] = u32Code;
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gbIndex += 1;
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}
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else
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{
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dst[0] = gb2312Text[gbIndex + 1];
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dst[1] = gb2312Text[gbIndex];
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charCodeMap[u32Code] = gb2312Code;
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gbIndex += 2;
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}
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}
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delete[] gb2312Text;
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}
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void FontAtlas::findNewCharacters(const std::u32string& u32Text, std::unordered_map<unsigned int, unsigned int>& charCodeMap)
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{
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std::u32string newChars;
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FT_Encoding charEncoding = _fontFreeType->getEncoding();
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//find new characters
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if (_letterDefinitions.empty())
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{
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// fixed #16169: new android project crash in android 5.0.2 device (Nexus 7) when use 3.12.
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// While using clang compiler with gnustl_static on android, the copy assignment operator of `std::u32string`
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// will affect the memory validity, it means after `newChars` is destroyed, the memory of `u32Text` holds
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// will be a dead region. `u32text` represents the variable in `Label::_utf32Text`, when somewhere
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// allocates memory by `malloc, realloc, new, new[]`, the generated memory address may be the same
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// as `Label::_utf32Text` holds. If doing a `memset` or other memory operations, the orignal `Label::_utf32Text`
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// will be in an unknown state. Meanwhile, a bunch lots of logic which depends on `Label::_utf32Text`
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// will be broken.
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// newChars = u32Text;
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// Using `append` method is a workaround for this issue. So please be carefuly while using the assignment operator
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// of `std::u32string`.
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newChars.append(u32Text);
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}
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else
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{
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auto length = u32Text.length();
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newChars.reserve(length);
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for (size_t i = 0; i < length; ++i)
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{
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auto outIterator = _letterDefinitions.find(u32Text[i]);
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if (outIterator == _letterDefinitions.end())
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{
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newChars.push_back(u32Text[i]);
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}
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}
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}
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if (!newChars.empty())
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{
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switch (charEncoding)
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{
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case FT_ENCODING_UNICODE:
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{
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for (auto u32Code : newChars)
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{
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charCodeMap[u32Code] = u32Code;
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}
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break;
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}
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case FT_ENCODING_GB2312:
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{
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conversionU32TOGB2312(newChars, charCodeMap);
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break;
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}
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default:
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CCLOG("FontAtlas::findNewCharacters: Unsupported encoding:%d", charEncoding);
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break;
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}
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}
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}
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bool FontAtlas::prepareLetterDefinitions(const std::u32string& utf32Text)
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{
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if (_fontFreeType == nullptr)
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{
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return false;
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}
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std::unordered_map<unsigned int, unsigned int> codeMapOfNewChar;
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findNewCharacters(utf32Text, codeMapOfNewChar);
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if (codeMapOfNewChar.empty())
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{
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return false;
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}
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int adjustForDistanceMap = _letterPadding / 2;
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int adjustForExtend = _letterEdgeExtend / 2;
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long bitmapWidth;
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long bitmapHeight;
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int glyphHeight;
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Rect tempRect;
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FontLetterDefinition tempDef;
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auto scaleFactor = CC_CONTENT_SCALE_FACTOR();
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auto pixelFormat = _fontFreeType->getOutlineSize() > 0 ? Texture2D::PixelFormat::AI88 : Texture2D::PixelFormat::A8;
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float startY = _currentPageOrigY;
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for (auto&& it : codeMapOfNewChar)
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{
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auto bitmap = _fontFreeType->getGlyphBitmap(it.second, bitmapWidth, bitmapHeight, tempRect, tempDef.xAdvance);
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if (bitmap && bitmapWidth > 0 && bitmapHeight > 0)
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{
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tempDef.validDefinition = true;
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tempDef.width = tempRect.size.width + _letterPadding + _letterEdgeExtend;
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tempDef.height = tempRect.size.height + _letterPadding + _letterEdgeExtend;
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tempDef.offsetX = tempRect.origin.x - adjustForDistanceMap - adjustForExtend;
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tempDef.offsetY = _fontAscender + tempRect.origin.y - adjustForDistanceMap - adjustForExtend;
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if (_currentPageOrigX + tempDef.width > CacheTextureWidth)
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{
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_currentPageOrigY += _currLineHeight;
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_currLineHeight = 0;
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_currentPageOrigX = 0;
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if (_currentPageOrigY + _lineHeight + _letterPadding + _letterEdgeExtend >= CacheTextureHeight)
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{
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unsigned char *data = nullptr;
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if (pixelFormat == Texture2D::PixelFormat::AI88)
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{
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data = _currentPageData + CacheTextureWidth * (int)startY * 2;
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}
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else
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{
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data = _currentPageData + CacheTextureWidth * (int)startY;
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}
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_atlasTextures[_currentPage]->updateWithData(data, 0, startY,
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CacheTextureWidth, CacheTextureHeight - startY);
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startY = 0.0f;
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_currentPageOrigY = 0;
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memset(_currentPageData, 0, _currentPageDataSize);
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_currentPage++;
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auto tex = new (std::nothrow) Texture2D;
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if (_antialiasEnabled)
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{
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tex->setAntiAliasTexParameters();
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}
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else
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{
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tex->setAliasTexParameters();
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}
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tex->initWithData(_currentPageData, _currentPageDataSize,
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pixelFormat, CacheTextureWidth, CacheTextureHeight, Size(CacheTextureWidth, CacheTextureHeight));
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addTexture(tex, _currentPage);
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tex->release();
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}
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}
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glyphHeight = static_cast<int>(bitmapHeight) + _letterPadding + _letterEdgeExtend;
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if (glyphHeight > _currLineHeight)
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{
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_currLineHeight = glyphHeight;
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}
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_fontFreeType->renderCharAt(_currentPageData, _currentPageOrigX + adjustForExtend, _currentPageOrigY + adjustForExtend, bitmap, bitmapWidth, bitmapHeight);
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tempDef.U = _currentPageOrigX;
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tempDef.V = _currentPageOrigY;
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tempDef.textureID = _currentPage;
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_currentPageOrigX += tempDef.width + 1;
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// take from pixels to points
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tempDef.width = tempDef.width / scaleFactor;
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tempDef.height = tempDef.height / scaleFactor;
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tempDef.U = tempDef.U / scaleFactor;
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tempDef.V = tempDef.V / scaleFactor;
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}
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else{
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if (tempDef.xAdvance)
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tempDef.validDefinition = true;
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else
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tempDef.validDefinition = false;
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tempDef.width = 0;
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tempDef.height = 0;
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tempDef.U = 0;
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tempDef.V = 0;
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tempDef.offsetX = 0;
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tempDef.offsetY = 0;
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tempDef.textureID = 0;
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_currentPageOrigX += 1;
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}
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_letterDefinitions[it.first] = tempDef;
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}
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unsigned char *data = nullptr;
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if (pixelFormat == Texture2D::PixelFormat::AI88)
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{
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data = _currentPageData + CacheTextureWidth * (int)startY * 2;
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}
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else
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{
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data = _currentPageData + CacheTextureWidth * (int)startY;
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}
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_atlasTextures[_currentPage]->updateWithData(data, 0, startY, CacheTextureWidth, _currentPageOrigY - startY + _currLineHeight);
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return true;
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}
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void FontAtlas::addTexture(Texture2D *texture, int slot)
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{
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texture->retain();
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_atlasTextures[slot] = texture;
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}
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Texture2D* FontAtlas::getTexture(int slot)
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{
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return _atlasTextures[slot];
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}
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void FontAtlas::setLineHeight(float newHeight)
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{
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_lineHeight = newHeight;
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}
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void FontAtlas::setAliasTexParameters()
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{
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if (_antialiasEnabled)
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{
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_antialiasEnabled = false;
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for (const auto & tex : _atlasTextures)
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{
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tex.second->setAliasTexParameters();
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}
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}
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}
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void FontAtlas::setAntiAliasTexParameters()
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{
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if (! _antialiasEnabled)
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{
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_antialiasEnabled = true;
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for (const auto & tex : _atlasTextures)
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{
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tex.second->setAntiAliasTexParameters();
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}
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}
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}
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NS_CC_END
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