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/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
 * This file is part of the LibreOffice project.
 *
 * This Source Code Form is subject to the terms of the Mozilla Public
 * License, v. 2.0. If a copy of the MPL was not distributed with this
 * file, You can obtain one at http://mozilla.org/MPL/2.0/.
 *
 * This file incorporates work covered by the following license notice:
 *
 *   Licensed to the Apache Software Foundation (ASF) under one or more
 *   contributor license agreements. See the NOTICE file distributed
 *   with this work for additional information regarding copyright
 *   ownership. The ASF licenses this file to you under the Apache
 *   License, Version 2.0 (the "License"); you may not use this file
 *   except in compliance with the License. You may obtain a copy of
 *   the License at http://www.apache.org/licenses/LICENSE-2.0 .
 */

#ifndef _VIEWPT3D_HXX
#define _VIEWPT3D_HXX

#include "svx/svxdllapi.h"
#include <basegfx/matrix/b3dhommatrix.hxx>
#include <basegfx/point/b3dpoint.hxx>
#include <basegfx/vector/b3dvector.hxx>
#include <tools/gen.hxx>

// predefines
namespace basegfx { class B3DRange; } // end of namespace basegfx

/*************************************************************************
|*
|* enums fuer Projektion und Seitenverhaeltnis
|*
\************************************************************************/

enum ProjectionType { PR_PARALLEL, PR_PERSPECTIVE };
enum AspectMapType  { AS_NO_MAPPING, AS_HOLD_SIZE, AS_HOLD_X, AS_HOLD_Y };


/*************************************************************************
|*
|* 3D-Viewport nach PHIGS
|*
\************************************************************************/

class SVX_DLLPUBLIC Viewport3D
{
 protected:
    basegfx::B3DHomMatrix       aViewTf;        // die eigentliche Transformationsmatrix
    basegfx::B3DPoint           aVRP;           // View Reference Point
    basegfx::B3DVector          aVPN;           // View Plane Normal
    basegfx::B3DVector          aVUV;           // View Up Vector
    basegfx::B3DPoint           aPRP;           // Projection Reference Point(View-Koordinaten)
                                    // bisher wird nur die Z-Koordinate beachtet
    double          fVPD;           // View Plane Distance
    double          fNearClipDist;  // Abstand der vorderen Clippingebene
    double          fFarClipDist;   // Abstand der hinteren Clippingebene

    ProjectionType  eProjection;    // Art der Projektion
    AspectMapType   eAspectMapping; // Flag fuer Seitenverhaeltnis-Anpassung
                                    // bei Ausgabe auf das Geraet
    Rectangle aDeviceRect;          // Position und Groesse des Ausgabebereichs

    struct
    {
        double X, Y, W, H;          // Position und Groesse des View-Windows
    } aViewWin;                     // in View-Koordinaten

    basegfx::B3DPoint       aViewPoint;     // Beobachterstandpunkt in Weltkoordinaten;
                                    // wird mit der Transformation berechnet
    sal_Bool            bTfValid;       // Flag, ob Transformation gueltig ist

    double fWRatio;                 // Device/View-Seitenverhaeltnisse
    double fHRatio;

    void MakeTransform(void);

 public:
    Viewport3D();

    void SetVRP(const basegfx::B3DPoint& rNewVRP);
    void SetVPN(const basegfx::B3DVector& rNewVPN);
    void SetVUV(const basegfx::B3DVector& rNewVUV);
    void SetPRP(const basegfx::B3DPoint& rNewPRP);
    void SetVPD(double fNewVPD);

    const basegfx::B3DPoint&    GetVRP() const  { return aVRP; }
    const basegfx::B3DVector&   GetVPN() const  { return aVPN; }
    const basegfx::B3DVector&   GetVUV() const  { return aVUV; }
    const basegfx::B3DPoint&    GetPRP() const  { return aPRP; }
    double  GetVPD() const          { return fVPD; }
    double  GetNearClipDist() const { return fNearClipDist; }
    double  GetFarClipDist() const  { return fFarClipDist; }

    void SetProjection(ProjectionType ePrj)
        { eProjection = ePrj; bTfValid = sal_False; }
    ProjectionType GetProjection() const { return(eProjection); }

    void SetAspectMapping(AspectMapType eAsp)
        { eAspectMapping = eAsp; bTfValid = sal_False; }
    AspectMapType GetAspectMapping() { return eAspectMapping; }

    void SetViewWindow(double fX, double fY, double fW, double fH);

    void SetDeviceWindow(const Rectangle& rRect);
    const Rectangle& GetDeviceWindow() const { return aDeviceRect; }

    // Beobachterstandpunkt in Weltkoordinaten zurueckgeben
    const basegfx::B3DPoint&    GetViewPoint();
};

#endif      // _VIEWPT3D_HXX

/* vim:set shiftwidth=4 softtabstop=4 expandtab: */