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libreoffice/drawinglayer/source/primitive3d/hatchtextureprimitive3d.cxx

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/*************************************************************************
*
* OpenOffice.org - a multi-platform office productivity suite
*
* $RCSfile: hatchtextureprimitive3d.cxx,v $
*
* $Revision: 1.11 $
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*
* last change: $Author: aw $ $Date: 2008-06-10 09:29:33 $
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*
* The Contents of this file are made available subject to
* the terms of GNU Lesser General Public License Version 2.1.
*
*
* GNU Lesser General Public License Version 2.1
* =============================================
* Copyright 2005 by Sun Microsystems, Inc.
* 901 San Antonio Road, Palo Alto, CA 94303, USA
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License version 2.1, as published by the Free Software Foundation.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
* MA 02111-1307 USA
*
************************************************************************/
// MARKER(update_precomp.py): autogen include statement, do not remove
#include "precompiled_drawinglayer.hxx"
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#include <drawinglayer/primitive3d/hatchtextureprimitive3d.hxx>
#include <drawinglayer/primitive3d/polypolygonprimitive3d.hxx>
#include <basegfx/polygon/b2dpolypolygon.hxx>
#include <basegfx/polygon/b3dpolygon.hxx>
#include <basegfx/polygon/b2dpolygon.hxx>
#include <basegfx/polygon/b2dpolypolygontools.hxx>
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#include <basegfx/range/b2drange.hxx>
#include <drawinglayer/texture/texture.hxx>
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#include <basegfx/polygon/b2dpolygonclipper.hxx>
#include <basegfx/matrix/b3dhommatrix.hxx>
#include <drawinglayer/primitive3d/polygonprimitive3d.hxx>
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#include <drawinglayer/primitive3d/drawinglayer_primitivetypes3d.hxx>
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//////////////////////////////////////////////////////////////////////////////
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using namespace com::sun::star;
//////////////////////////////////////////////////////////////////////////////
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namespace drawinglayer
{
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namespace primitive3d
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{
Primitive3DSequence HatchTexturePrimitive3D::createLocalDecomposition(const geometry::ViewInformation3D& /*rViewInformation*/) const
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{
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Primitive3DSequence aRetval;
if(getChildren().hasElements())
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{
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const Primitive3DSequence aSource(getChildren());
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const sal_uInt32 nSourceCount(aSource.getLength());
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std::vector< Primitive3DReference > aDestination;
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for(sal_uInt32 a(0); a < nSourceCount; a++)
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{
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// get reference
const Primitive3DReference xReference(aSource[a]);
if(xReference.is())
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{
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// try to cast to BasePrimitive2D implementation
const BasePrimitive3D* pBasePrimitive = dynamic_cast< const BasePrimitive3D* >(xReference.get());
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if(pBasePrimitive)
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{
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// it is a BasePrimitive3D implementation, use getPrimitiveID() call for switch
// not all content is needed, remove transparencies and ModifiedColorPrimitives
switch(pBasePrimitive->getPrimitiveID())
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{
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case PRIMITIVE3D_ID_POLYPOLYGONMATERIALPRIMITIVE3D :
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{
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// polyPolygonMaterialPrimitive3D, check texturing and hatching
const PolyPolygonMaterialPrimitive3D& rPrimitive = static_cast< const PolyPolygonMaterialPrimitive3D& >(*pBasePrimitive);
const basegfx::B3DPolyPolygon aFillPolyPolygon(rPrimitive.getB3DPolyPolygon());
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if(maHatch.isFillBackground())
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{
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// add original primitive for background
aDestination.push_back(xReference);
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}
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if(aFillPolyPolygon.areTextureCoordinatesUsed())
{
const sal_uInt32 nPolyCount(aFillPolyPolygon.count());
basegfx::B2DPolyPolygon aTexPolyPolygon;
basegfx::B2DPoint a2N;
basegfx::B2DVector a2X, a2Y;
basegfx::B3DPoint a3N;
basegfx::B3DVector a3X, a3Y;
bool b2N(false), b2X(false), b2Y(false);
for(sal_uInt32 b(0); b < nPolyCount; b++)
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{
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const basegfx::B3DPolygon aPartPoly(aFillPolyPolygon.getB3DPolygon(b));
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const sal_uInt32 nPointCount(aPartPoly.count());
basegfx::B2DPolygon aTexPolygon;
for(sal_uInt32 c(0); c < nPointCount; c++)
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{
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const basegfx::B2DPoint a2Candidate(aPartPoly.getTextureCoordinate(c));
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if(!b2N)
{
a2N = a2Candidate;
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a3N = aPartPoly.getB3DPoint(c);
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b2N = true;
}
else if(!b2X && !a2N.equal(a2Candidate))
{
a2X = a2Candidate - a2N;
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a3X = aPartPoly.getB3DPoint(c) - a3N;
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b2X = true;
}
else if(!b2Y && !a2N.equal(a2Candidate) && !a2X.equal(a2Candidate))
{
a2Y = a2Candidate - a2N;
const double fCross(a2X.cross(a2Y));
if(!basegfx::fTools::equalZero(fCross))
{
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a3Y = aPartPoly.getB3DPoint(c) - a3N;
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b2Y = true;
}
}
aTexPolygon.append(a2Candidate);
}
aTexPolygon.setClosed(true);
aTexPolyPolygon.append(aTexPolygon);
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}
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if(b2N && b2X && b2Y)
{
// found two linearly independent 2D vectors
// get 2d range of texture coordinates
const basegfx::B2DRange aOutlineRange(basegfx::tools::getRange(aTexPolyPolygon));
const basegfx::BColor aHatchColor(getHatch().getColor());
const double fAngle(-getHatch().getAngle());
::std::vector< basegfx::B2DHomMatrix > aMatrices;
// get hatch transformations
switch(getHatch().getStyle())
{
case attribute::HATCHSTYLE_TRIPLE:
{
// rotated 45 degrees
texture::GeoTexSvxHatch aHatch(aOutlineRange, getHatch().getDistance(), fAngle + F_PI4);
aHatch.appendTransformations(aMatrices);
}
case attribute::HATCHSTYLE_DOUBLE:
{
// rotated 90 degrees
texture::GeoTexSvxHatch aHatch(aOutlineRange, getHatch().getDistance(), fAngle + F_PI2);
aHatch.appendTransformations(aMatrices);
}
case attribute::HATCHSTYLE_SINGLE:
{
// angle as given
texture::GeoTexSvxHatch aHatch(aOutlineRange, getHatch().getDistance(), fAngle);
aHatch.appendTransformations(aMatrices);
}
}
// create geometry from unit line
basegfx::B2DPolyPolygon a2DHatchLines;
basegfx::B2DPolygon a2DUnitLine;
a2DUnitLine.append(basegfx::B2DPoint(0.0, 0.0));
a2DUnitLine.append(basegfx::B2DPoint(1.0, 0.0));
for(sal_uInt32 c(0); c < aMatrices.size(); c++)
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{
const basegfx::B2DHomMatrix& rMatrix = aMatrices[c];
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basegfx::B2DPolygon aNewLine(a2DUnitLine);
aNewLine.transform(rMatrix);
a2DHatchLines.append(aNewLine);
}
if(a2DHatchLines.count())
{
// clip against texture polygon
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a2DHatchLines = basegfx::tools::clipPolyPolygonOnPolyPolygon(a2DHatchLines, aTexPolyPolygon, true, true);
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}
if(a2DHatchLines.count())
{
// create 2d matrix with 2d vectors as column vectors and 2d point as offset, this represents
// a coordinate system transformation from unit coordinates to the new coordinate system
basegfx::B2DHomMatrix a2D;
a2D.set(0, 0, a2X.getX());
a2D.set(1, 0, a2X.getY());
a2D.set(0, 1, a2Y.getX());
a2D.set(1, 1, a2Y.getY());
a2D.set(0, 2, a2N.getX());
a2D.set(1, 2, a2N.getY());
// invert that transformation, so we have a back-transformation from texture coordinates
// to unit coordinates
a2D.invert();
a2DHatchLines.transform(a2D);
// expand back-transformated geometry tpo 3D
basegfx::B3DPolyPolygon a3DHatchLines(basegfx::tools::createB3DPolyPolygonFromB2DPolyPolygon(a2DHatchLines, 0.0));
// create 3d matrix with 3d vectors as column vectors (0,0,1 as Z) and 3d point as offset, this represents
// a coordinate system transformation from unit coordinates to the object's 3d coordinate system
basegfx::B3DHomMatrix a3D;
a3D.set(0, 0, a3X.getX());
a3D.set(1, 0, a3X.getY());
a3D.set(2, 0, a3X.getZ());
a3D.set(0, 1, a3Y.getX());
a3D.set(1, 1, a3Y.getY());
a3D.set(2, 1, a3Y.getZ());
a3D.set(0, 3, a3N.getX());
a3D.set(1, 3, a3N.getY());
a3D.set(2, 3, a3N.getZ());
// transform hatch lines to 3D object coordinates
a3DHatchLines.transform(a3D);
// build primitives from this geometry
const sal_uInt32 nHatchLines(a3DHatchLines.count());
for(sal_uInt32 d(0); d < nHatchLines; d++)
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{
const Primitive3DReference xRef(new PolygonHairlinePrimitive3D(a3DHatchLines.getB3DPolygon(d), aHatchColor));
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aDestination.push_back(xRef);
}
}
}
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}
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break;
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}
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default :
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{
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// add reference to result
aDestination.push_back(xReference);
break;
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}
}
}
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else
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{
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// unknown implementation, add to result
aDestination.push_back(xReference);
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}
}
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}
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// prepare return value
const sal_uInt32 nDestSize(aDestination.size());
aRetval.realloc(nDestSize);
for(sal_uInt32 b(0); b < nDestSize; b++)
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{
aRetval[b] = aDestination[b];
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}
}
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return aRetval;
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}
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HatchTexturePrimitive3D::HatchTexturePrimitive3D(
const attribute::FillHatchAttribute& rHatch,
const Primitive3DSequence& rChildren,
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const basegfx::B2DVector& rTextureSize,
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bool bModulate,
bool bFilter)
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: TexturePrimitive3D(rChildren, rTextureSize, bModulate, bFilter),
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maHatch(rHatch)
{
}
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bool HatchTexturePrimitive3D::operator==(const BasePrimitive3D& rPrimitive) const
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{
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if(TexturePrimitive3D::operator==(rPrimitive))
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{
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const HatchTexturePrimitive3D& rCompare = (HatchTexturePrimitive3D&)rPrimitive;
return (getHatch() == rCompare.getHatch());
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}
return false;
}
// provide unique ID
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ImplPrimitrive3DIDBlock(HatchTexturePrimitive3D, PRIMITIVE3D_ID_HATCHTEXTUREPRIMITIVE3D)
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} // end of namespace primitive3d
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} // end of namespace drawinglayer
//////////////////////////////////////////////////////////////////////////////
// eof