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244 lines
5.3 KiB
C++
244 lines
5.3 KiB
C++
//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// Purpose: Structured Solid Class definition
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//
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// $Workfile: $
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// $Date: $
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// $NoKeywords: $
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//=============================================================================//
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#ifndef SSOLID_H
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#define SSOLID_H
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#ifdef _WIN32
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#pragma once
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#endif
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#include "MapFace.h"
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#define MAX_FACES 120
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#define MAX_EDGES 512
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class Morph3D;
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class CSSolid;
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class CSSEdge;
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typedef DWORD SSHANDLE;
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class C2DHandle
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{
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public:
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C2DHandle(void) { m_bVisible = FALSE; m_bSelected = FALSE; m_bUse = TRUE; }
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BOOL m_bVisible; // visible?
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BOOL m_bSelected; // selected?
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BOOL m_bUse; // use this?
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// only valid if (m_bVisible):
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short m_x, m_y; // 2d position in 3d view
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RECT m_r; // 2d bound box in 3d view
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};
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// for GetHandleInfo():
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typedef enum
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{
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shtNothing = -1,
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shtVertex,
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shtEdge,
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shtFace
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} SSHANDLETYPE;
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typedef struct
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{
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SSHANDLETYPE Type;
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int iIndex;
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PVOID pData;
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C2DHandle *p2DHandle;
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Vector pos; // 3d position of handle
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} SSHANDLEINFO;
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// define a face:
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class CSSFace : public C2DHandle
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{
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public:
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CSSFace();
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~CSSFace();
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void Init(void);
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inline int GetEdgeCount(void) { return(nEdges); }
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inline SSHANDLE GetEdgeHandle(int nEdge) { Assert(nEdge < GetEdgeCount()); return(Edges[nEdge]); }
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// edge IDs:
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SSHANDLE Edges[MAX_FACES];
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int nEdges;
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BOOL bModified;
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Vector PlanePts[3];
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Vector normal;
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TEXTURE texture; // Original face's texture info.
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int m_nFaceID; // Original face's unique ID.
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EditDispHandle_t m_hDisp; // Copy of the original faces displacement.
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Vector ptCenter;
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DWORD id;
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};
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class CSSEdge : public C2DHandle
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{
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public:
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CSSEdge();
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~CSSEdge();
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void GetCenterPoint(Vector& Point);
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// vertex IDs:
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SSHANDLE hvStart;
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SSHANDLE hvEnd;
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Vector ptCenter;
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// faces this edge belongs to.
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SSHANDLE Faces[2];
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DWORD id;
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};
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class CSSVertex : public C2DHandle
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{
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public:
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CSSVertex();
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~CSSVertex();
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void GetPosition(Vector& Position);
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Vector pos; // Position.
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DWORD id;
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};
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class CSSolid
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{
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friend Morph3D;
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public:
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// construction/destruction:
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CSSolid();
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~CSSolid();
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// attach/detach mapsolid:
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void Attach(CMapSolid *pMapSolid);
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CMapSolid* Detach();
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// Verify that the solid (with displaced surfaces) is valid to convert back into a map solid.
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bool IsValidWithDisps( void );
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bool HasDisps( void );
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void DestroyDisps( void );
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// conversion to/from editing format:
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void Convert(BOOL bFromMapSolid = TRUE, bool bSkipDisplacementFaces = false);
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// move selected handles by a delta:
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void MoveSelectedHandles(const Vector &Delta);
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// attached map solid:
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CMapSolid *m_pMapSolid;
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inline int GetFaceCount(void) { return(m_nFaces); }
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inline CSSFace *GetFace(int nFace) { Assert(nFace < m_nFaces); return(&m_Faces[nFace]); }
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BOOL GetHandleInfo(SSHANDLEINFO * pInfo, SSHANDLE id);
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PVOID GetHandleData(SSHANDLE id);
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BOOL SplitFace(SSHANDLE h1, SSHANDLE h2);
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BOOL SplitFaceByVertices(CSSVertex *pVertex1, CSSVertex *pVertex2);
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BOOL SplitFaceByEdges(CSSEdge *pEdge1, CSSEdge *pEdge2);
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inline BOOL ShowEdges(void) { return(m_bShowEdges); }
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inline BOOL ShowVertices(void) { return(m_bShowVertices); }
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// check faces and report errors:
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void CheckFaces();
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// save to .dxf:
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void SerializeDXF(FILE* stream, int nObject);
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SSHANDLE GetConnectionVertex(CSSEdge *pEdge1, CSSEdge *pEdge2);
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private:
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// called by Convert():
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void ToMapSolid(CMapSolid* = NULL);
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void FromMapSolid(CMapSolid* = NULL, bool bSkipDisplacementFaces = false);
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void AssignFace(CSSEdge* pEdge, SSHANDLE hFace, BOOL = FALSE);
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// delete face/edge/vertex:
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void DeleteFace(int);
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void DeleteVertex(int);
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void DeleteEdge(int);
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SSHANDLE * MergeSameVertices(int& nDeleted);
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BOOL CanMergeVertices();
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// add face/edge/vertex:
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CSSFace* AddFace(int* = NULL);
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CSSEdge* AddEdge(int* = NULL);
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CSSVertex* AddVertex(int* = NULL);
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// get the index to the vertex at this point -
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// return -1 if no matching vertex.
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int GetVertexIndex(const Vector &Point, float fLeniency = 0.0f);
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// ditto for edge
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int GetEdgeIndex(const Vector &Point, float fLeniency = 0.0f);
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int GetEdgeIndex(SSHANDLE v1, SSHANDLE v2);
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// ditto for face
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int GetFaceIndex(const Vector &Point, float fLeniency = 0.0f);
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SSHANDLE GetNewID();
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void CalcEdgeCenter(CSSEdge *pEdge);
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CSSEdge ** FindAffectedEdges(SSHANDLE *pHandles, int iNumHandles,
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int& iNumEdges);
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Vector * CreatePointList(CSSFace & face);
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PINT CreatePointIndexList(CSSFace & face, PINT piPoints = NULL);
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SSHANDLE* CreatePointHandleList(CSSFace & face, SSHANDLE* phPoints = NULL);
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void SetVertexPosition(int iVertex, float x, float y, float z);
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SSHANDLE* CreateNewVertexList(CSSFace *pFace, CSSEdge *pEdge1,
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CSSEdge *pEdge2, int& nv1index, int& nv2index,
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CSSVertex *pNewVertex1, CSSVertex *pNewVertex2);
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void ShowHandles(BOOL bShowVertices, BOOL bShowEdges);
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int m_nVertices; // number of unique vertices
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BlockArray<CSSVertex, 16, 32> m_Vertices; // vertices
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int m_nEdges; // number of unique edges
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BlockArray<CSSEdge, 16, 32> m_Edges; // edges
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int m_nFaces; // number of faces
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BlockArray<CSSFace, 16, 10> m_Faces; // faces
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SSHANDLE m_curid;
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BOOL m_bShowVertices, m_bShowEdges;
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};
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#endif SSOLID_H
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