supported new Comparator<> and ItemComparator<>
This commit is contained in:
parent
dd5a78cbaa
commit
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2
CMCore
2
CMCore
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Subproject commit ae1be856b96aa3d26da8937cca416e8fe4360678
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Subproject commit 7295d68a5e6f2b9bc9ad08dc397375850af50bf7
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2
CMUtil
2
CMUtil
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Subproject commit a7f4afab8029f52dff43840062c8b6cb2008bd67
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Subproject commit 6582b635c9b93284c29dd7e1bc6dc5ecf59a8705
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@ -8,14 +8,14 @@ class RenderAssignBuffer;
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class SceneNode;
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class SceneNode;
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struct CameraInfo;
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struct CameraInfo;
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struct RenderPipelineIndex
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struct RenderPipelineIndex:public Comparator<RenderPipelineIndex>
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{
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{
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Material *material;
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Material *material;
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Pipeline *pipeline;
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Pipeline *pipeline;
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public:
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public:
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const int Comp(const RenderPipelineIndex &rli)const
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const int compare(const RenderPipelineIndex &rli)const override
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{
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{
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if(material<rli.material)return(-1);
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if(material<rli.material)return(-1);
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if(material>rli.material)return(1);
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if(material>rli.material)return(1);
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@ -26,8 +26,6 @@ public:
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return(0);
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return(0);
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}
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}
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CompOperator(const RenderPipelineIndex &,Comp)
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public:
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public:
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RenderPipelineIndex()
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RenderPipelineIndex()
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@ -11,7 +11,7 @@ namespace hgl
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class MaterialInstance;
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class MaterialInstance;
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class SceneNode;
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class SceneNode;
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struct RenderNode
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struct RenderNode:public Comparator<RenderNode>
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{
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{
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uint index; ///<在MaterialRenderList中的索引
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uint index; ///<在MaterialRenderList中的索引
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@ -22,6 +22,11 @@ namespace hgl
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Vector3f world_position;
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Vector3f world_position;
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float to_camera_distance;
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float to_camera_distance;
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public:
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//该函数位于MaterialRenderList.cpp
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const int compare(const RenderNode &)const override;
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};
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};
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using RenderNodeList=List<RenderNode>;
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using RenderNodeList=List<RenderNode>;
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@ -12,7 +12,7 @@ VK_NAMESPACE_BEGIN
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* 原始图元数据缓冲区<Br>
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* 原始图元数据缓冲区<Br>
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* 提供在渲染之前的数据绑定信息
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* 提供在渲染之前的数据绑定信息
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*/
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*/
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struct PrimitiveDataBuffer
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struct PrimitiveDataBuffer:public Comparator<PrimitiveDataBuffer>
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{
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{
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uint32_t vab_count;
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uint32_t vab_count;
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VkBuffer * vab_list;
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VkBuffer * vab_list;
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@ -32,14 +32,14 @@ public:
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PrimitiveDataBuffer(const uint32_t,IndexBuffer *,VertexDataManager *_v=nullptr);
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PrimitiveDataBuffer(const uint32_t,IndexBuffer *,VertexDataManager *_v=nullptr);
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~PrimitiveDataBuffer();
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~PrimitiveDataBuffer();
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const bool Comp(const PrimitiveDataBuffer *pdb)const;
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const int compare(const PrimitiveDataBuffer &pdb)const override;
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};//struct PrimitiveDataBuffer
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};//struct PrimitiveDataBuffer
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/**
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/**
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* 原始图元渲染数据<Br>
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* 原始图元渲染数据<Br>
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* 提供在渲染时的数据
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* 提供在渲染时的数据
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*/
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*/
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struct PrimitiveRenderData
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struct PrimitiveRenderData:public ComparatorData<PrimitiveRenderData>
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{
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{
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//因为要VAB是流式访问,所以我们这个结构会被用做排序依据
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//因为要VAB是流式访问,所以我们这个结构会被用做排序依据
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//也因此,把vertex_offset放在最前面
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//也因此,把vertex_offset放在最前面
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@ -59,9 +59,6 @@ public:
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vertex_offset =vo;
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vertex_offset =vo;
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first_index =fi;
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first_index =fi;
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}
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}
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CompOperatorMemcmp(const PrimitiveRenderData &);
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CompOperatorMemcmpPointer(PrimitiveRenderData);
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};
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};
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/**
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/**
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@ -12,7 +12,7 @@ namespace hgl
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/**
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/**
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* 字体信息
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* 字体信息
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*/
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*/
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struct Font
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struct Font:public ComparatorData<Font>
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{
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{
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os_char name[MAX_FONT_NAME_LENGTH]; ///<字体名称
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os_char name[MAX_FONT_NAME_LENGTH]; ///<字体名称
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@ -28,8 +28,6 @@ namespace hgl
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Font();
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Font();
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Font(const os_char *,int,int,bool b=false,bool i=false,bool=true);
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Font(const os_char *,int,int,bool b=false,bool i=false,bool=true);
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CompOperatorMemcmp(const Font &); ///<比较操作符重载
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};//struct Font
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};//struct Font
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}//namespace graph
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}//namespace graph
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}//namespace hgl
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}//namespace hgl
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@ -26,13 +26,13 @@
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这样就可以保证所有的渲染操作就算要切VBO,也不需要切换INDIRECT缓冲区,定位指令也很方便。
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这样就可以保证所有的渲染操作就算要切VBO,也不需要切换INDIRECT缓冲区,定位指令也很方便。
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*/
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*/
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template<>
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VK_NAMESPACE_BEGIN
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int Comparator<hgl::graph::RenderNode>::compare(const hgl::graph::RenderNode &obj_one,const hgl::graph::RenderNode &obj_two) const
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const int RenderNode::compare(const RenderNode &other)const
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{
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{
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hgl::int64 off;
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hgl::int64 off;
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hgl::graph::Renderable *ri_one=obj_one.scene_node->GetRenderable();
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hgl::graph::Renderable *ri_one=other.scene_node->GetRenderable();
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hgl::graph::Renderable *ri_two=obj_two.scene_node->GetRenderable();
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hgl::graph::Renderable *ri_two=scene_node->GetRenderable();
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auto *prim_one=ri_one->GetPrimitive();
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auto *prim_one=ri_one->GetPrimitive();
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auto *prim_two=ri_two->GetPrimitive();
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auto *prim_two=ri_two->GetPrimitive();
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@ -63,8 +63,8 @@ int Comparator<hgl::graph::RenderNode>::compare(const hgl::graph::RenderNode &ob
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//比较距离。。。。。。。。。。。。。。。。。。。。。还不知道这个是正了还是反了,等测出来确认后修改下面的返回值和这里的注释
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//比较距离。。。。。。。。。。。。。。。。。。。。。还不知道这个是正了还是反了,等测出来确认后修改下面的返回值和这里的注释
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float foff=obj_one.to_camera_distance
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float foff=other.to_camera_distance
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-obj_two.to_camera_distance;
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-to_camera_distance;
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if(foff>0)
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if(foff>0)
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return 1;
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return 1;
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@ -72,7 +72,6 @@ int Comparator<hgl::graph::RenderNode>::compare(const hgl::graph::RenderNode &ob
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return -1;
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return -1;
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}
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}
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VK_NAMESPACE_BEGIN
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MaterialRenderList::MaterialRenderList(GPUDevice *d,bool l2w,const RenderPipelineIndex &rpi)
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MaterialRenderList::MaterialRenderList(GPUDevice *d,bool l2w,const RenderPipelineIndex &rpi)
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{
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{
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device=d;
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device=d;
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@ -280,8 +279,8 @@ void MaterialRenderList::Stat()
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{
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{
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ro=rn->scene_node->GetRenderable();
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ro=rn->scene_node->GetRenderable();
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if(last_data_buffer->Comp(ro->GetDataBuffer()))
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if(*last_data_buffer!=*ro->GetDataBuffer())
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if(last_render_data->_Comp(ro->GetRenderData())==0)
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if(*last_render_data==*ro->GetRenderData())
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{
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{
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++ri->instance_count;
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++ri->instance_count;
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++rn;
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++rn;
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@ -399,7 +398,7 @@ void MaterialRenderList::ProcIndirectRender()
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void MaterialRenderList::Render(RenderItem *ri)
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void MaterialRenderList::Render(RenderItem *ri)
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{
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{
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if(!ri->pdb->Comp(last_data_buffer)) //换buf了
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if(*(ri->pdb)!=*last_data_buffer) //换buf了
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{
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{
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if(indirect_draw_count) //如果有间接绘制的数据,赶紧给画了
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if(indirect_draw_count) //如果有间接绘制的数据,赶紧给画了
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ProcIndirectRender();
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ProcIndirectRender();
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@ -24,25 +24,29 @@ PrimitiveDataBuffer::~PrimitiveDataBuffer()
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delete[] vab_list;
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delete[] vab_list;
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}
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}
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const bool PrimitiveDataBuffer::Comp(const PrimitiveDataBuffer *pdb)const
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const int PrimitiveDataBuffer::compare(const PrimitiveDataBuffer &pdb)const
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{
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{
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if(!pdb)return(false);
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ptrdiff_t off;
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if(vdm&&pdb->vdm)
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off=&vdm-&pdb.vdm;
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return (vdm==pdb->vdm);
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if(off)
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return off;
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if(vab_count!=pdb->vab_count)return(false);
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off=vab_count-pdb.vab_count;
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if(off)
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return off;
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for(uint32_t i=0;i<vab_count;i++)
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off=hgl_cmp(vab_list,pdb.vab_list,vab_count);
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{
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if(off)
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if(vab_list[i]!=pdb->vab_list[i])return(false);
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return off;
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if(vab_offset[i]!=pdb->vab_offset[i])return(false);
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}
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if(ibo!=pdb->ibo)
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off=hgl_cmp(vab_offset,pdb.vab_offset,vab_count);
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return(false);
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if(off)
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return off;
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return(true);
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off=ibo-pdb.ibo;
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return off;
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}
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}
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Renderable::Renderable(Primitive *r,MaterialInstance *mi,Pipeline *p,PrimitiveDataBuffer *pdb,PrimitiveRenderData *prd)
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Renderable::Renderable(Primitive *r,MaterialInstance *mi,Pipeline *p,PrimitiveDataBuffer *pdb,PrimitiveRenderData *prd)
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@ -61,7 +65,7 @@ Renderable *CreateRenderable(Primitive *prim,MaterialInstance *mi,Pipeline *p)
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const VIL *vil=mi->GetVIL();
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const VIL *vil=mi->GetVIL();
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if(vil->Comp(p->GetVIL()))
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if(*vil!=*p->GetVIL())
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return(nullptr);
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return(nullptr);
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const uint32_t input_count=vil->GetVertexAttribCount(VertexInputGroup::Basic); //不统计Bone/LocalToWorld组的
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const uint32_t input_count=vil->GetVertexAttribCount(VertexInputGroup::Basic); //不统计Bone/LocalToWorld组的
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