mirror of https://github.com/axmolengine/axmol.git
379 lines
14 KiB
C++
379 lines
14 KiB
C++
/******************************************************************************
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* Spine Runtimes License Agreement
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* Last updated September 24, 2021. Replaces all prior versions.
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*
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* Copyright (c) 2013-2021, Esoteric Software LLC
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*
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* Integration of the Spine Runtimes into software or otherwise creating
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* derivative works of the Spine Runtimes is permitted under the terms and
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* conditions of Section 2 of the Spine Editor License Agreement:
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* http://esotericsoftware.com/spine-editor-license
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*
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* Otherwise, it is permitted to integrate the Spine Runtimes into software
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* or otherwise create derivative works of the Spine Runtimes (collectively,
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* "Products"), provided that each user of the Products must obtain their own
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* Spine Editor license and redistribution of the Products in any form must
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* include this license and copyright notice.
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*
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* THE SPINE RUNTIMES ARE PROVIDED BY ESOTERIC SOFTWARE LLC "AS IS" AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL ESOTERIC SOFTWARE LLC BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES,
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* BUSINESS INTERRUPTION, OR LOSS OF USE, DATA, OR PROFITS) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THE SPINE RUNTIMES, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*****************************************************************************/
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#include <spine/spine-cocos2dx.h>
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#if COCOS2D_VERSION >= 0x00040000
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#include "base/Types.h"
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#include "base/Utils.h"
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#include <algorithm>
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#include <spine/Extension.h>
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#include <stddef.h>// offsetof
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#include "renderer/backend/Device.h"
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#include "renderer/Shaders.h"
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#include "xxhash.h"
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USING_NS_CC;
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#define EVENT_AFTER_DRAW_RESET_POSITION "director_after_draw"
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using std::max;
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#define INITIAL_SIZE (10000)
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#define MAX_VERTICES 64000
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#define MAX_INDICES 64000
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namespace {
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std::shared_ptr<backend::ProgramState> __twoColorProgramState = nullptr;
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backend::UniformLocation __locPMatrix;
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backend::UniformLocation __locTexture;
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static void updateProgramStateLayout(backend::ProgramState *programState) {
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__locPMatrix = programState->getUniformLocation("u_PMatrix");
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__locTexture = programState->getUniformLocation("u_tex0");
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auto locPosition = programState->getAttributeLocation("a_position");
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auto locTexcoord = programState->getAttributeLocation("a_texCoord");
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auto locColor = programState->getAttributeLocation("a_color");
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auto locColor2 = programState->getAttributeLocation("a_color2");
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auto vertexLayout = programState->getMutableVertexLayout();
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vertexLayout->setAttrib("a_position", locPosition, backend::VertexFormat::FLOAT3,
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offsetof(spine::V3F_C4B_C4B_T2F, position), false);
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vertexLayout->setAttrib("a_color", locColor, backend::VertexFormat::UBYTE4,
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offsetof(spine::V3F_C4B_C4B_T2F, color), true);
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vertexLayout->setAttrib("a_color2", locColor2, backend::VertexFormat::UBYTE4,
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offsetof(spine::V3F_C4B_C4B_T2F, color2), true);
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vertexLayout->setAttrib("a_texCoord", locTexcoord, backend::VertexFormat::FLOAT2,
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offsetof(spine::V3F_C4B_C4B_T2F, texCoords), false);
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vertexLayout->setStride(sizeof(spine::V3F_C4B_C4B_T2F));
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}
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static void initTwoColorProgramState() {
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if (__twoColorProgramState) {
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return;
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}
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auto program = ProgramManager::getInstance()->loadProgram("custom/spineTwoColorTint_vs",
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"custom/spineTwoColorTint_fs");
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auto *programState = new backend::ProgramState(program);
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updateProgramStateLayout(programState);
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__twoColorProgramState = std::shared_ptr<backend::ProgramState>(programState);
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}
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}// namespace
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namespace spine {
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TwoColorTrianglesCommand::TwoColorTrianglesCommand() : _materialID(0), _texture(nullptr), _blendType(BlendFunc::DISABLE) {
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_type = RenderCommand::Type::CUSTOM_COMMAND;
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}
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void TwoColorTrianglesCommand::init(float globalOrder, cocos2d::Texture2D *texture, cocos2d::backend::ProgramState *programState, BlendFunc blendType, const TwoColorTriangles &triangles, const Mat4 &mv, uint32_t flags) {
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updateCommandPipelineDescriptor(programState);
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const cocos2d::Mat4 &projectionMat = Director::getInstance()->getMatrix(MATRIX_STACK_TYPE::MATRIX_STACK_PROJECTION);
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auto finalMatrix = projectionMat * mv;
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_programState->setUniform(_locPMatrix, finalMatrix.m, sizeof(finalMatrix.m));
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_programState->setTexture(_locTexture, 0, texture->getBackendTexture());
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RenderCommand::init(globalOrder, mv, flags);
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_triangles = triangles;
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if (_triangles.indexCount % 3 != 0) {
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int count = _triangles.indexCount;
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_triangles.indexCount = count / 3 * 3;
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CCLOGERROR("Resize indexCount from %d to %d, size must be multiple times of 3", count, _triangles.indexCount);
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}
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_mv = mv;
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if (_blendType.src != blendType.src || _blendType.dst != blendType.dst ||
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_texture != texture->getBackendTexture() || _pipelineDescriptor.programState != _programState) {
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_texture = texture->getBackendTexture();
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_blendType = blendType;
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_prog = _programState->getProgram();
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auto &blendDescriptor = _pipelineDescriptor.blendDescriptor;
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blendDescriptor.blendEnabled = true;
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blendDescriptor.sourceRGBBlendFactor = blendDescriptor.sourceAlphaBlendFactor = blendType.src;
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blendDescriptor.destinationRGBBlendFactor = blendDescriptor.destinationAlphaBlendFactor = blendType.dst;
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generateMaterialID();
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}
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}
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void TwoColorTrianglesCommand::updateCommandPipelineDescriptor(cocos2d::backend::ProgramState *programState) {
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// OPTIMIZE ME: all commands belong a same Node should share a same programState like SkeletonBatch
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if (!__twoColorProgramState) {
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initTwoColorProgramState();
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}
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bool needsUpdateStateLayout = false;
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auto &pipelinePS = _pipelineDescriptor.programState;
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if (programState != nullptr) {
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if (_programState != programState) {
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CC_SAFE_RELEASE(_programState);
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_programState = programState;// Because the programState belong to Node, so no need to clone
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CC_SAFE_RETAIN(_programState);
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needsUpdateStateLayout = true;
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}
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} else {
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needsUpdateStateLayout = _programState != nullptr && _programState->getProgram() != __twoColorProgramState->getProgram();
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CC_SAFE_RELEASE(_programState);
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_programState = __twoColorProgramState->clone();
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}
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CCASSERT(_programState, "programState should not be null");
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pipelinePS = _programState;
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if (needsUpdateStateLayout)
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updateProgramStateLayout(pipelinePS);
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_locPMatrix = __locPMatrix;
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_locTexture = __locTexture;
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}
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TwoColorTrianglesCommand::~TwoColorTrianglesCommand() {
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CC_SAFE_RELEASE_NULL(_programState);
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}
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void TwoColorTrianglesCommand::generateMaterialID() {
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// do not batch if using custom uniforms (since we cannot batch) it
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struct
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{
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void *texture;
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void *prog;
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backend::BlendFactor src;
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backend::BlendFactor dst;
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} hashMe;
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// NOTE: Initialize hashMe struct to make the value of padding bytes be filled with zero.
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// It's important since XXH32 below will also consider the padding bytes which probably
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// are set to random values by different compilers.
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memset(&hashMe, 0, sizeof(hashMe));
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hashMe.texture = _texture;
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hashMe.src = _blendType.src;
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hashMe.dst = _blendType.dst;
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hashMe.prog = _prog;
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_materialID = XXH32((const void *) &hashMe, sizeof(hashMe), 0);
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}
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void TwoColorTrianglesCommand::draw(Renderer *r) {
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SkeletonTwoColorBatch::getInstance()->batch(r, this);
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}
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void TwoColorTrianglesCommand::updateVertexAndIndexBuffer(Renderer *r, V3F_C4B_C4B_T2F *vertices, int verticesSize, uint16_t *indices, int indicesSize) {
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if (verticesSize != _vertexCapacity)
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createVertexBuffer(sizeof(V3F_C4B_C4B_T2F), verticesSize, CustomCommand::BufferUsage::DYNAMIC);
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if (indicesSize != _indexCapacity)
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createIndexBuffer(CustomCommand::IndexFormat::U_SHORT, indicesSize, CustomCommand::BufferUsage::DYNAMIC);
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updateVertexBuffer(vertices, sizeof(V3F_C4B_C4B_T2F) * verticesSize);
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updateIndexBuffer(indices, sizeof(uint16_t) * indicesSize);
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}
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static SkeletonTwoColorBatch *instance = nullptr;
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SkeletonTwoColorBatch *SkeletonTwoColorBatch::getInstance() {
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if (!instance) instance = new SkeletonTwoColorBatch();
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return instance;
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}
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void SkeletonTwoColorBatch::destroyInstance() {
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if (instance) {
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delete instance;
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instance = nullptr;
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}
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}
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SkeletonTwoColorBatch::SkeletonTwoColorBatch() : _vertexBuffer(0), _indexBuffer(0) {
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_commandsPool.reserve(INITIAL_SIZE);
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for (unsigned int i = 0; i < INITIAL_SIZE; i++) {
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_commandsPool.push_back(new TwoColorTrianglesCommand());
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}
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reset();
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// callback after drawing is finished so we can clear out the batch state
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// for the next frame
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Director::getInstance()->getEventDispatcher()->addCustomEventListener(EVENT_AFTER_DRAW_RESET_POSITION, [this](EventCustom *eventCustom) {
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this->update(0);
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});
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}
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SkeletonTwoColorBatch::~SkeletonTwoColorBatch() {
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Director::getInstance()->getEventDispatcher()->removeCustomEventListeners(EVENT_AFTER_DRAW_RESET_POSITION);
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for (unsigned int i = 0; i < _commandsPool.size(); i++) {
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delete _commandsPool[i];
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_commandsPool[i] = nullptr;
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}
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delete[] _vertexBuffer;
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delete[] _indexBuffer;
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}
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void SkeletonTwoColorBatch::update(float delta) {
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reset();
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}
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V3F_C4B_C4B_T2F *SkeletonTwoColorBatch::allocateVertices(uint32_t numVertices) {
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if (_vertices.size() - _numVertices < numVertices) {
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V3F_C4B_C4B_T2F *oldData = _vertices.data();
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_vertices.resize((_vertices.size() + numVertices) * 2 + 1);
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V3F_C4B_C4B_T2F *newData = _vertices.data();
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for (uint32_t i = 0; i < this->_nextFreeCommand; i++) {
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TwoColorTrianglesCommand *command = _commandsPool[i];
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TwoColorTriangles &triangles = (TwoColorTriangles &) command->getTriangles();
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triangles.verts = newData + (triangles.verts - oldData);
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}
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}
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V3F_C4B_C4B_T2F *vertices = _vertices.data() + _numVertices;
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_numVertices += numVertices;
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return vertices;
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}
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void SkeletonTwoColorBatch::deallocateVertices(uint32_t numVertices) {
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_numVertices -= numVertices;
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}
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unsigned short *SkeletonTwoColorBatch::allocateIndices(uint32_t numIndices) {
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if (_indices.getCapacity() - _indices.size() < numIndices) {
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unsigned short *oldData = _indices.buffer();
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int oldSize = (int)_indices.size();
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_indices.ensureCapacity(_indices.size() + numIndices);
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unsigned short *newData = _indices.buffer();
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for (uint32_t i = 0; i < this->_nextFreeCommand; i++) {
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TwoColorTrianglesCommand *command = _commandsPool[i];
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TwoColorTriangles &triangles = (TwoColorTriangles &) command->getTriangles();
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if (triangles.indices >= oldData && triangles.indices < oldData + oldSize) {
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triangles.indices = newData + (triangles.indices - oldData);
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}
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}
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}
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unsigned short *indices = _indices.buffer() + _indices.size();
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_indices.setSize(_indices.size() + numIndices, 0);
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return indices;
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}
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void SkeletonTwoColorBatch::deallocateIndices(uint32_t numIndices) {
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_indices.setSize(_indices.size() - numIndices, 0);
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}
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TwoColorTrianglesCommand *SkeletonTwoColorBatch::addCommand(cocos2d::Renderer *renderer, float globalOrder, cocos2d::Texture2D *texture, backend::ProgramState *programState, cocos2d::BlendFunc blendType, const TwoColorTriangles &triangles, const cocos2d::Mat4 &mv, uint32_t flags) {
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TwoColorTrianglesCommand *command = nextFreeCommand();
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command->init(globalOrder, texture, programState, blendType, triangles, mv, flags);
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command->updateVertexAndIndexBuffer(renderer, triangles.verts, triangles.vertCount, triangles.indices, triangles.indexCount);
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renderer->addCommand(command);
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return command;
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}
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void SkeletonTwoColorBatch::batch(cocos2d::Renderer *renderer, TwoColorTrianglesCommand *command) {
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if (_numVerticesBuffer + command->getTriangles().vertCount >= MAX_VERTICES || _numIndicesBuffer + command->getTriangles().indexCount >= MAX_INDICES) {
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flush(renderer, _lastCommand);
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}
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uint32_t materialID = command->getMaterialID();
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if (_lastCommand && _lastCommand->getMaterialID() != materialID) {
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flush(renderer, _lastCommand);
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}
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memcpy(_vertexBuffer + _numVerticesBuffer, command->getTriangles().verts, sizeof(V3F_C4B_C4B_T2F) * command->getTriangles().vertCount);
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const Mat4 &modelView = command->getModelView();
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for (int i = _numVerticesBuffer; i < _numVerticesBuffer + command->getTriangles().vertCount; i++) {
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modelView.transformPoint(&_vertexBuffer[i].position);
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}
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unsigned short vertexOffset = (unsigned short) _numVerticesBuffer;
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unsigned short *indices = command->getTriangles().indices;
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for (int i = 0, j = _numIndicesBuffer; i < command->getTriangles().indexCount; i++, j++) {
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_indexBuffer[j] = indices[i] + vertexOffset;
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}
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_numVerticesBuffer += command->getTriangles().vertCount;
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_numIndicesBuffer += command->getTriangles().indexCount;
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if (command->isForceFlush()) {
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flush(renderer, command);
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}
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_lastCommand = command;
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}
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void SkeletonTwoColorBatch::flush(cocos2d::Renderer *renderer, TwoColorTrianglesCommand *materialCommand) {
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if (!materialCommand)
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return;
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materialCommand->updateVertexAndIndexBuffer(renderer, _vertexBuffer, _numVerticesBuffer, _indexBuffer, _numIndicesBuffer);
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renderer->addCommand(materialCommand);
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_numVerticesBuffer = 0;
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_numIndicesBuffer = 0;
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_numBatches++;
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}
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void SkeletonTwoColorBatch::reset() {
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_nextFreeCommand = 0;
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_numVertices = 0;
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_indices.setSize(0, 0);
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_numVerticesBuffer = 0;
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_numIndicesBuffer = 0;
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_lastCommand = nullptr;
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_numBatches = 0;
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}
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TwoColorTrianglesCommand *SkeletonTwoColorBatch::nextFreeCommand() {
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if (_commandsPool.size() <= _nextFreeCommand) {
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unsigned int newSize = (int)_commandsPool.size() * 2 + 1;
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for (int i = (int)_commandsPool.size(); i < newSize; i++) {
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_commandsPool.push_back(new TwoColorTrianglesCommand());
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}
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}
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TwoColorTrianglesCommand *command = _commandsPool[_nextFreeCommand++];
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command->setForceFlush(false);
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return command;
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}
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}// namespace spine
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#endif
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