2016-04-13 06:07:23 +00:00
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#ifndef __URDE_CAREAOCTTREE_HPP__
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#define __URDE_CAREAOCTTREE_HPP__
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2015-08-21 00:06:39 +00:00
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2016-07-26 22:45:01 +00:00
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#include "RetroTypes.hpp"
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#include "zeus/CAABox.hpp"
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#include "Collision/CCollisionEdge.hpp"
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2016-03-04 23:04:53 +00:00
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namespace urde
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{
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class CCollisionEdge;
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class CMaterialFilter;
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class CAreaOctTree
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{
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friend class CBooRenderer;
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public:
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struct SRayResult
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{
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};
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class TriListReference
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{
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u16 m_count;
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std::unique_ptr<u16[]> m_refs;
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public:
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TriListReference(const u16* ptr)
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: m_count(ptr[0])
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{
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m_refs.reset(new u16[m_count]);
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for (u16 i=0 ; i<m_count ; ++i)
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m_refs[i] = ptr[i+1];
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}
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u16 GetAt(int idx) const { return m_refs[idx]; }
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u16 GetSize() const { return m_count; }
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};
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class Node
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{
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public:
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enum class ETreeType
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{
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Invalid,
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Branch,
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Leaf
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};
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private:
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const u8* m_ptr;
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zeus::CAABox m_aabb;
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const CAreaOctTree& m_owner;
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ETreeType m_nodeType;
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public:
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Node(const void* ptr, const zeus::CAABox& aabb,
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const CAreaOctTree& owner, ETreeType type)
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: m_ptr(reinterpret_cast<const u8*>(ptr)), m_aabb(aabb), m_owner(owner), m_nodeType(type)
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{
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}
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#if 0
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void LineTestEx(const zeus::CLine&, const CMaterialFilter&, SRayResult&, float) const;
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void LineTestExInternal(const zeus::CLine&, const CMaterialFilter&, SRayResult&, float, float, float,
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const zeus::CVector3f&) const;
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#endif
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const CAreaOctTree& GetOwner() const
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{
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return m_owner;
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}
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const zeus::CAABox& GetBoundingBox() const
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{
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return m_aabb;
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}
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u16 GetChildFlags() const
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{
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return *reinterpret_cast<const u16*>(m_ptr);
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}
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Node GetChild(int idx) const;
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TriListReference GetTriangleArray() const
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{
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return TriListReference(reinterpret_cast<const u16*>(m_ptr + 24));
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}
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ETreeType GetChildType(int idx) const
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{
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u16 flags = *reinterpret_cast<const u16*>(m_ptr);
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return ETreeType((flags << (2 * idx)) & 0x3);
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}
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ETreeType GetTreeType() const { return m_nodeType; }
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};
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zeus::CAABox x0_aabb;
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Node::ETreeType x18_treeType;
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const u8* x1c_buf;
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const u8* x20_treeBuf;
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u32 x24_matCount;
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const u32* x28_materials;
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const u8* x2c_vertMats;
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const u8* x30_edgeMats;
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const u8* x34_polyMats;
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u32 x38_edgeCount;
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const CCollisionEdge* x3c_edges;
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u32 x40_polyCount;
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const u16* x44_polyEdges;
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u32 x48_vertCount;
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const float* x4c_verts;
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void SwapTreeNode(u8* ptr, Node::ETreeType type);
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public:
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CAreaOctTree(const zeus::CAABox& aabb, Node::ETreeType treeType, const u8* buf, const u8* treeBuf,
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u32 matCount, const u32* materials, const u8* vertMats, const u8* edgeMats, const u8* polyMats,
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u32 edgeCount, const CCollisionEdge* edges, u32 polyCount, const u16* polyEdges,
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u32 vertCount, const float* verts);
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Node GetRootNode() const { return Node(x20_treeBuf, x0_aabb, *this, x18_treeType); }
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const u8* GetTreeMemory() const { return x20_treeBuf; }
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zeus::CVector3f GetVert(int idx) const
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{
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const float* vert = &x4c_verts[idx * 3];
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return zeus::CVector3f(vert[0], vert[1], vert[2]);
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}
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const CCollisionEdge& GetEdge(int idx) const { return x3c_edges[idx]; }
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u32 GetEdgeMaterial(int idx) const { return x28_materials[x30_edgeMats[idx]]; }
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u32 GetTriangleMaterial(int idx) const { return x28_materials[x34_polyMats[idx]]; }
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u32 GetNumEdges() const { return x38_edgeCount; }
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u32 GetNumVerts() const { return x48_vertCount; }
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u32 GetNumTriangles() const { return x40_polyCount; }
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const u16* GetMasterListTriangle(u16 idx) const;
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const u16* GetTriangleVertexIndices(u16 idx) const;
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const u16* GetTriangleEdgeIndices(u16 idx) const;
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static std::unique_ptr<CAreaOctTree> MakeFromMemory(const u8* buf, unsigned int size);
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};
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}
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2016-04-13 06:07:23 +00:00
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#endif // __URDE_CAREAOCTTREE_HPP__
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