/* -*- 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 . */ #include "svx/svdstr.hrc" #include "svx/svdglob.hxx" #include #include #include "svx/globl3d.hxx" #include #include #include #include #include #include #include #include #include #include #include ////////////////////////////////////////////////////////////////////////////// // DrawContact section sdr::contact::ViewContact* E3dLatheObj::CreateObjectSpecificViewContact() { return new sdr::contact::ViewContactOfE3dLathe(*this); } ////////////////////////////////////////////////////////////////////////////// sdr::properties::BaseProperties* E3dLatheObj::CreateObjectSpecificProperties() { return new sdr::properties::E3dLatheProperties(*this); } ////////////////////////////////////////////////////////////////////////////// TYPEINIT1(E3dLatheObj, E3dCompoundObject); // Constructor from 3D polygon, scale is the conversion factor for the coordinates E3dLatheObj::E3dLatheObj(E3dDefaultAttributes& rDefault, const basegfx::B2DPolyPolygon rPoly2D) : E3dCompoundObject(rDefault), maPolyPoly2D(rPoly2D) { // since the old class PolyPolygon3D did mirror the given PolyPolygons in Y, do the same here basegfx::B2DHomMatrix aMirrorY; aMirrorY.scale(1.0, -1.0); maPolyPoly2D.transform(aMirrorY); // Set Defaults SetDefaultAttributes(rDefault); // Superfluous items removed, in particular to prevent duplicate // start and end points maPolyPoly2D.removeDoublePoints(); if(maPolyPoly2D.count()) { const basegfx::B2DPolygon rPoly(maPolyPoly2D.getB2DPolygon(0L)); sal_uInt32 nSegCnt(rPoly.count()); if(nSegCnt && !rPoly.isClosed()) { nSegCnt -= 1; } GetProperties().SetObjectItemDirect(Svx3DVerticalSegmentsItem(nSegCnt)); } } E3dLatheObj::E3dLatheObj() : E3dCompoundObject() { // Set Defaults E3dDefaultAttributes aDefault; SetDefaultAttributes(aDefault); } void E3dLatheObj::SetDefaultAttributes(E3dDefaultAttributes& rDefault) { GetProperties().SetObjectItemDirect(Svx3DSmoothNormalsItem(rDefault.GetDefaultLatheSmoothed())); GetProperties().SetObjectItemDirect(Svx3DSmoothLidsItem(rDefault.GetDefaultLatheSmoothFrontBack())); GetProperties().SetObjectItemDirect(Svx3DCharacterModeItem(rDefault.GetDefaultLatheCharacterMode())); GetProperties().SetObjectItemDirect(Svx3DCloseFrontItem(rDefault.GetDefaultLatheCloseFront())); GetProperties().SetObjectItemDirect(Svx3DCloseBackItem(rDefault.GetDefaultLatheCloseBack())); } sal_uInt16 E3dLatheObj::GetObjIdentifier() const { return E3D_LATHEOBJ_ID; } E3dLatheObj* E3dLatheObj::Clone() const { return CloneHelper< E3dLatheObj >(); } // Convert the object to group object consisting of n polygons SdrObject *E3dLatheObj::DoConvertToPolyObj(sal_Bool /*bBezier*/, bool /*bAddText*/) const { return NULL; } // Set Local parameters set to re-create geometry void E3dLatheObj::SetPolyPoly2D(const basegfx::B2DPolyPolygon& rNew) { if(maPolyPoly2D != rNew) { maPolyPoly2D = rNew; maPolyPoly2D.removeDoublePoints(); if(maPolyPoly2D.count()) { const basegfx::B2DPolygon rPoly(maPolyPoly2D.getB2DPolygon(0L)); sal_uInt32 nSegCnt(rPoly.count()); if(nSegCnt && !rPoly.isClosed()) { nSegCnt -= 1; } GetProperties().SetObjectItemDirect(Svx3DVerticalSegmentsItem(nSegCnt)); } ActionChanged(); } } // Get the name of the object (singular) void E3dLatheObj::TakeObjNameSingul(XubString& rName) const { rName=ImpGetResStr(STR_ObjNameSingulLathe3d); String aName( GetName() ); if(aName.Len()) { rName += sal_Unicode(' '); rName += sal_Unicode('\''); rName += aName; rName += sal_Unicode('\''); } } // Get the name of the object (plural) void E3dLatheObj::TakeObjNamePlural(XubString& rName) const { rName=ImpGetResStr(STR_ObjNamePluralLathe3d); } sal_Bool E3dLatheObj::IsBreakObjPossible() { return sal_True; } SdrAttrObj* E3dLatheObj::GetBreakObj() { // create PathObj basegfx::B3DPolyPolygon aLathePoly3D(basegfx::tools::createB3DPolyPolygonFromB2DPolyPolygon(maPolyPoly2D)); basegfx::B2DPolyPolygon aTransPoly(TransformToScreenCoor(aLathePoly3D)); SdrPathObj* pPathObj = new SdrPathObj(OBJ_PLIN, aTransPoly); if(pPathObj) { // Set Attribute SfxItemSet aSet(GetObjectItemSet()); // Enable lines to guarantee that the object becomes visible aSet.Put(XLineStyleItem(XLINE_SOLID)); pPathObj->SetMergedItemSet(aSet); } return pPathObj; } /* vim:set shiftwidth=4 softtabstop=4 expandtab: */