mirror of https://github.com/axmolengine/axmol.git
463 lines
16 KiB
C++
463 lines
16 KiB
C++
/****************************************************************************
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Copyright (c) 2015-2016 Chukong Technologies Inc.
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Copyright (c) 2017-2018 Xiamen Yaji Software Co., Ltd.
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https://axmolengine.github.io/
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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/CCCameraBackgroundBrush.h"
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#include <stddef.h> // offsetof
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#include "base/ccTypes.h"
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#include "2d/CCCamera.h"
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#include "base/ccMacros.h"
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#include "base/ccUtils.h"
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#include "base/CCConfiguration.h"
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#include "base/CCDirector.h"
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#include "renderer/CCRenderer.h"
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#include "renderer/CCRenderState.h"
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#include "renderer/CCTextureCube.h"
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#include "renderer/ccShaders.h"
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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# include "base/CCEventCustom.h"
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# include "base/CCEventListenerCustom.h"
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# include "base/CCEventType.h"
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# include "base/CCEventDispatcher.h"
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#endif
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NS_AX_BEGIN
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CameraBackgroundBrush::CameraBackgroundBrush() {}
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CameraBackgroundBrush::~CameraBackgroundBrush()
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{
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AX_SAFE_RELEASE_NULL(_programState);
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}
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CameraBackgroundBrush* CameraBackgroundBrush::createNoneBrush()
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{
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auto ret = new CameraBackgroundBrush();
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ret->init();
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ret->autorelease();
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return ret;
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}
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CameraBackgroundColorBrush* CameraBackgroundBrush::createColorBrush(const Color4F& color, float depth)
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{
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return CameraBackgroundColorBrush::create(color, depth);
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}
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CameraBackgroundDepthBrush* CameraBackgroundBrush::createDepthBrush(float depth)
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{
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return CameraBackgroundDepthBrush::create(depth);
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}
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CameraBackgroundSkyBoxBrush* CameraBackgroundBrush::createSkyboxBrush(std::string_view positive_x,
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std::string_view negative_x,
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std::string_view positive_y,
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std::string_view negative_y,
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std::string_view positive_z,
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std::string_view negative_z)
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{
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return CameraBackgroundSkyBoxBrush::create(positive_x, negative_x, positive_y, negative_y, positive_z, negative_z);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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CameraBackgroundDepthBrush::CameraBackgroundDepthBrush()
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: _depth(0.f)
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, _clearColor(false)
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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, _backToForegroundListener(nullptr)
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#endif
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{
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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_backToForegroundListener =
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EventListenerCustom::create(EVENT_RENDERER_RECREATED, [this](EventCustom*) { initBuffer(); });
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Director::getInstance()->getEventDispatcher()->addEventListenerWithFixedPriority(_backToForegroundListener, -1);
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#endif
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}
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CameraBackgroundDepthBrush::~CameraBackgroundDepthBrush()
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{
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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Director::getInstance()->getEventDispatcher()->removeEventListener(_backToForegroundListener);
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#endif
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}
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CameraBackgroundDepthBrush* CameraBackgroundDepthBrush::create(float depth)
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{
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auto ret = new CameraBackgroundDepthBrush();
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if (ret->init())
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{
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ret->_depth = depth;
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ret->autorelease();
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}
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else
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{
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AX_SAFE_DELETE(ret);
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}
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return ret;
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}
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bool CameraBackgroundDepthBrush::init()
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{
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AX_SAFE_RELEASE_NULL(_programState);
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auto* program = backend::Program::getBuiltinProgram(backend::ProgramType::CAMERA_CLEAR);
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_programState = new backend::ProgramState(program);
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_locDepth = _programState->getUniformLocation("dpeth");
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auto& pipelineDescriptor = _customCommand.getPipelineDescriptor();
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pipelineDescriptor.programState = _programState;
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_vertices.resize(4);
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_vertices[0].vertices = Vec3(-1, -1, 0);
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_vertices[1].vertices = Vec3(1, -1, 0);
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_vertices[2].vertices = Vec3(1, 1, 0);
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_vertices[3].vertices = Vec3(-1, 1, 0);
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_vertices[0].colors = _vertices[1].colors = _vertices[2].colors = _vertices[3].colors = Color4B(0, 0, 0, 1);
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_vertices[0].texCoords = Tex2F(0, 0);
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_vertices[1].texCoords = Tex2F(1, 0);
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_vertices[2].texCoords = Tex2F(1, 1);
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_vertices[3].texCoords = Tex2F(0, 1);
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_customCommand.setBeforeCallback(AX_CALLBACK_0(CameraBackgroundDepthBrush::onBeforeDraw, this));
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_customCommand.setAfterCallback(AX_CALLBACK_0(CameraBackgroundDepthBrush::onAfterDraw, this));
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initBuffer();
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return true;
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}
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void CameraBackgroundDepthBrush::initBuffer()
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{
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uint16_t indices[6] = {0, 1, 2, 2, 3, 0};
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_customCommand.createVertexBuffer(sizeof(_vertices[0]), _vertices.size(), CustomCommand::BufferUsage::STATIC);
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_customCommand.createIndexBuffer(CustomCommand::IndexFormat::U_SHORT, sizeof(indices) / sizeof(indices[0]),
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CustomCommand::BufferUsage::STATIC);
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_customCommand.updateVertexBuffer(_vertices.data(), sizeof(_vertices[0]) * _vertices.size());
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_customCommand.updateIndexBuffer(indices, sizeof(indices));
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}
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void CameraBackgroundDepthBrush::drawBackground(Camera* /*camera*/)
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{
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// `clear screen` should be executed before other commands
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_groupCommand.init(-1.0f);
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_customCommand.init(0.0f);
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auto* renderer = Director::getInstance()->getRenderer();
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renderer->addCommand(&_groupCommand);
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renderer->pushGroup(_groupCommand.getRenderQueueID());
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auto& pipelineDescriptor = _customCommand.getPipelineDescriptor();
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auto& blend = pipelineDescriptor.blendDescriptor;
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blend.writeMask = _clearColor ? backend::ColorWriteMask::ALL : backend::ColorWriteMask::NONE;
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// draw
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_programState->setUniform(_locDepth, &_depth, sizeof(_depth));
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renderer->addCommand(&_customCommand);
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renderer->popGroup();
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}
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void CameraBackgroundDepthBrush::onBeforeDraw()
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{
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auto* renderer = Director::getInstance()->getRenderer();
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_stateBlock.stencilWriteMask = renderer->getStencilWriteMask();
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_stateBlock.depthTest = renderer->getDepthTest();
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_stateBlock.compareFunc = renderer->getDepthCompareFunction();
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renderer->setStencilWriteMask(0);
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renderer->setDepthTest(true);
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renderer->setDepthCompareFunction(backend::CompareFunction::ALWAYS);
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}
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void CameraBackgroundDepthBrush::onAfterDraw()
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{
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auto* renderer = Director::getInstance()->getRenderer();
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renderer->setStencilWriteMask(_stateBlock.stencilWriteMask);
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renderer->setDepthTest(_stateBlock.depthTest);
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renderer->setDepthCompareFunction(_stateBlock.compareFunc);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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CameraBackgroundColorBrush::CameraBackgroundColorBrush() : _color(0.f, 0.f, 0.f, 0.f) {}
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CameraBackgroundColorBrush::~CameraBackgroundColorBrush() {}
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bool CameraBackgroundColorBrush::init()
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{
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CameraBackgroundDepthBrush::init();
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this->_clearColor = true;
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return true;
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}
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void CameraBackgroundColorBrush::drawBackground(Camera* camera)
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{
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BlendFunc op = {BlendFunc::ALPHA_NON_PREMULTIPLIED.src, BlendFunc::ALPHA_NON_PREMULTIPLIED.dst};
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auto& blend = _customCommand.getPipelineDescriptor().blendDescriptor;
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blend.sourceRGBBlendFactor = blend.sourceAlphaBlendFactor = op.src;
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blend.destinationRGBBlendFactor = blend.destinationAlphaBlendFactor = op.dst;
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blend.blendEnabled = true;
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CameraBackgroundDepthBrush::drawBackground(camera);
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}
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void CameraBackgroundColorBrush::setColor(const Color4F& color)
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{
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for (auto&& vert : _vertices)
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{
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vert.colors = Color4B(color);
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}
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_customCommand.updateVertexBuffer(_vertices.data(), sizeof(_vertices[0]) * _vertices.size());
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}
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CameraBackgroundColorBrush* CameraBackgroundColorBrush::create(const Color4F& color, float depth)
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{
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auto ret = new CameraBackgroundColorBrush();
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if (ret->init())
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{
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ret->setColor(color);
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ret->setDepth(depth);
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ret->autorelease();
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}
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else
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{
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AX_SAFE_DELETE(ret);
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}
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return ret;
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}
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/////////////////////////////////////////////////////////////////////////////////////////////
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CameraBackgroundSkyBoxBrush::CameraBackgroundSkyBoxBrush()
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: _texture(nullptr)
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, _actived(true)
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, _textureValid(true)
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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, _backToForegroundListener(nullptr)
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#endif
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{
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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_backToForegroundListener =
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EventListenerCustom::create(EVENT_RENDERER_RECREATED, [this](EventCustom*) { initBuffer(); });
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Director::getInstance()->getEventDispatcher()->addEventListenerWithFixedPriority(_backToForegroundListener, -1);
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#endif
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}
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CameraBackgroundSkyBoxBrush::~CameraBackgroundSkyBoxBrush()
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{
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AX_SAFE_RELEASE(_texture);
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#if AX_ENABLE_CACHE_TEXTURE_DATA
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Director::getInstance()->getEventDispatcher()->removeEventListener(_backToForegroundListener);
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#endif
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}
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CameraBackgroundSkyBoxBrush* CameraBackgroundSkyBoxBrush::create(std::string_view positive_x,
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std::string_view negative_x,
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std::string_view positive_y,
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std::string_view negative_y,
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std::string_view positive_z,
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std::string_view negative_z)
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{
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CameraBackgroundSkyBoxBrush* ret = nullptr;
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auto texture = TextureCube::create(positive_x, negative_x, positive_y, negative_y, positive_z, negative_z);
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if (texture != nullptr)
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{
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Texture2D::TexParams tRepeatParams;
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tRepeatParams.magFilter = backend::SamplerFilter::LINEAR;
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tRepeatParams.minFilter = backend::SamplerFilter::LINEAR;
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tRepeatParams.sAddressMode = backend::SamplerAddressMode::CLAMP_TO_EDGE;
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tRepeatParams.tAddressMode = backend::SamplerAddressMode::CLAMP_TO_EDGE;
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texture->setTexParameters(tRepeatParams);
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ret = new CameraBackgroundSkyBoxBrush;
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if (ret->init())
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{
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ret->setTexture(texture);
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ret->autorelease();
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}
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else
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{
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AX_SAFE_DELETE(texture);
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AX_SAFE_DELETE(ret);
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}
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}
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return ret;
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}
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CameraBackgroundSkyBoxBrush* CameraBackgroundSkyBoxBrush::create()
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{
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auto ret = new CameraBackgroundSkyBoxBrush();
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if (ret->init())
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{
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ret->autorelease();
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}
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else
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{
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AX_SAFE_DELETE(ret);
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}
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return ret;
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}
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void CameraBackgroundSkyBoxBrush::drawBackground(Camera* camera)
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{
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// `clear screen` should be executed before other commands
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_groupCommand.init(-1.0f);
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_customCommand.init(0.0f);
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if (!_actived)
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return;
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Mat4 cameraModelMat = camera->getNodeToWorldTransform();
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auto& pipelineDescriptor = _customCommand.getPipelineDescriptor();
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pipelineDescriptor.blendDescriptor.blendEnabled = false;
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Vec4 color(1.f, 1.f, 1.f, 1.f);
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cameraModelMat.m[12] = cameraModelMat.m[13] = cameraModelMat.m[14] = 0;
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_programState->setUniform(_uniformColorLoc, &color, sizeof(color));
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_programState->setUniform(_uniformCameraRotLoc, cameraModelMat.m, sizeof(cameraModelMat.m));
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auto* renderer = Director::getInstance()->getRenderer();
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renderer->addCommand(&_groupCommand);
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renderer->pushGroup(_groupCommand.getRenderQueueID());
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renderer->addCommand(&_customCommand);
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renderer->popGroup();
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AX_INCREMENT_GL_DRAWN_BATCHES_AND_VERTICES(1, 8);
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}
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bool CameraBackgroundSkyBoxBrush::init()
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{
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_customCommand.setBeforeCallback(AX_CALLBACK_0(CameraBackgroundSkyBoxBrush::onBeforeDraw, this));
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_customCommand.setAfterCallback(AX_CALLBACK_0(CameraBackgroundSkyBoxBrush::onAfterDraw, this));
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AX_SAFE_RELEASE_NULL(_programState);
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auto* program = backend::Program::getBuiltinProgram(backend::ProgramType::SKYBOX_3D);
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_programState = new backend::ProgramState(program);
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_uniformColorLoc = _programState->getUniformLocation("u_color");
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_uniformCameraRotLoc = _programState->getUniformLocation("u_cameraRot");
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_uniformEnvLoc = _programState->getUniformLocation("u_Env");
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auto& pipelineDescriptor = _customCommand.getPipelineDescriptor();
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pipelineDescriptor.programState = _programState;
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// disable blend
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pipelineDescriptor.blendDescriptor.blendEnabled = false;
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initBuffer();
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return true;
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}
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void CameraBackgroundSkyBoxBrush::initBuffer()
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{
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// init vertex buffer object
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Vec3 vexBuf[] = {Vec3(1, -1, 1), Vec3(1, 1, 1), Vec3(-1, 1, 1), Vec3(-1, -1, 1),
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Vec3(1, -1, -1), Vec3(1, 1, -1), Vec3(-1, 1, -1), Vec3(-1, -1, -1)};
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_customCommand.createVertexBuffer(sizeof(vexBuf[0]), sizeof(vexBuf) / sizeof(vexBuf[0]),
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CustomCommand::BufferUsage::STATIC);
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_customCommand.updateVertexBuffer(vexBuf, sizeof(vexBuf));
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// init index buffer object
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uint16_t idxBuf[] = {
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2, 1, 0, 3, 2, 0, // font
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1, 5, 4, 1, 4, 0, // right
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4, 5, 6, 4, 6, 7, // back
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7, 6, 2, 7, 2, 3, // left
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2, 6, 5, 2, 5, 1, // up
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3, 0, 4, 3, 4, 7 // down
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};
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_customCommand.createIndexBuffer(CustomCommand::IndexFormat::U_SHORT, sizeof(idxBuf) / sizeof(idxBuf[0]),
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CustomCommand::BufferUsage::STATIC);
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_customCommand.updateIndexBuffer(idxBuf, sizeof(idxBuf));
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}
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void CameraBackgroundSkyBoxBrush::setTexture(TextureCube* texture)
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{
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AX_SAFE_RETAIN(texture);
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AX_SAFE_RELEASE(_texture);
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_texture = texture;
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_programState->setTexture(_uniformEnvLoc, 0, _texture->getBackendTexture());
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}
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bool CameraBackgroundSkyBoxBrush::isActived() const
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{
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return _actived;
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}
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void CameraBackgroundSkyBoxBrush::setActived(bool actived)
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{
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_actived = actived;
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}
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void CameraBackgroundSkyBoxBrush::setTextureValid(bool valid)
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{
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_textureValid = valid;
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}
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bool CameraBackgroundSkyBoxBrush::isValid()
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{
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return _actived;
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}
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void CameraBackgroundSkyBoxBrush::onBeforeDraw()
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{
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auto* renderer = Director::getInstance()->getRenderer();
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_stateBlock.depthTest = renderer->getDepthTest();
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_stateBlock.depthWrite = renderer->getDepthWrite();
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_stateBlock.depthFunc = renderer->getDepthCompareFunction();
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_stateBlock.cullMode = renderer->getCullMode();
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}
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void CameraBackgroundSkyBoxBrush::onAfterDraw()
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{
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auto* renderer = Director::getInstance()->getRenderer();
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renderer->setDepthTest(_stateBlock.depthTest);
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renderer->setDepthWrite(_stateBlock.depthWrite);
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renderer->setDepthCompareFunction(_stateBlock.depthFunc);
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renderer->setCullMode(_stateBlock.cullMode);
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}
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NS_AX_END
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