69b5f0b657
Change-Id: I5f184f93dbdb414514855c85c9dc1624e7ec8636 Reviewed-on: https://gerrit.libreoffice.org/c/core/+/131337 Tested-by: Jenkins Reviewed-by: Noel Grandin <noel.grandin@collabora.co.uk>
411 lines
19 KiB
C++
411 lines
19 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#pragma once
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#include <memory>
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#include <optional>
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#include <svx/svdotext.hxx>
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#include <svx/svdglue.hxx>
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#include <svx/svxdllapi.h>
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#include <svx/xpoly.hxx>
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class SdrDragMethod;
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class SdrPageView;
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namespace sdr::properties {
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class ConnectorProperties;
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}
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/// Utility class SdrObjConnection
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class SdrObjConnection final
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{
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friend class SdrEdgeObj;
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friend class ImpEdgeHdl;
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friend class SdrCreateView;
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Point aObjOfs; // set during dragging of a node
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SdrObject* pObj; // referenced object
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sal_uInt16 nConId; // connector number
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bool bBestConn : 1; // true -> the best-matching connector is searched for
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bool bBestVertex : 1; // true -> the best-matching vertex to connect is searched for
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bool bAutoVertex : 1; // autoConnector at apex nCon
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bool bAutoCorner : 1; // autoConnector at corner nCon
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public:
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SdrObjConnection() { ResetVars(); }
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void ResetVars();
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bool TakeGluePoint(SdrGluePoint& rGP) const;
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void SetBestConnection( bool rB ) { bBestConn = rB; };
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void SetBestVertex( bool rB ) { bBestVertex = rB; };
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void SetAutoVertex( bool rB ) { bAutoVertex = rB; };
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void SetConnectorId( sal_uInt16 nId ) { nConId = nId; };
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bool IsBestConnection() const { return bBestConn; };
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bool IsAutoVertex() const { return bAutoVertex; };
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sal_uInt16 GetConnectorId() const { return nConId; };
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SdrObject* GetObject() const { return pObj; }
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};
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enum class SdrEdgeLineCode { Obj1Line2, Obj1Line3, Obj2Line2, Obj2Line3, MiddleLine };
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/// Utility class SdrEdgeInfoRec
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class SdrEdgeInfoRec
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{
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public:
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// The 5 distances are set on dragging or via SetAttr and are
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// evaluated by ImpCalcEdgeTrack. Only 0-3 longs are transported
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// via Get/SetAttr/Get/SetStyleSh though.
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Point aObj1Line2;
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Point aObj1Line3;
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Point aObj2Line2;
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Point aObj2Line3;
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Point aMiddleLine;
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// Following values are set by ImpCalcEdgeTrack
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tools::Long nAngle1; // exit angle at Obj1
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tools::Long nAngle2; // exit angle at Obj2
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sal_uInt16 nObj1Lines; // 1..3
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sal_uInt16 nObj2Lines; // 1..3
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sal_uInt16 nMiddleLine; // 0xFFFF=none, otherwise point number of the beginning of the line
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public:
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SdrEdgeInfoRec()
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: nAngle1(0),
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nAngle2(0),
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nObj1Lines(0),
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nObj2Lines(0),
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nMiddleLine(0xFFFF)
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{}
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Point& ImpGetLineOffsetPoint(SdrEdgeLineCode eLineCode);
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sal_uInt16 ImpGetPolyIdx(SdrEdgeLineCode eLineCode, const XPolygon& rXP) const;
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bool ImpIsHorzLine(SdrEdgeLineCode eLineCode, const XPolygon& rXP) const;
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void ImpSetLineOffset(SdrEdgeLineCode eLineCode, const XPolygon& rXP, tools::Long nVal);
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tools::Long ImpGetLineOffset(SdrEdgeLineCode eLineCode, const XPolygon& rXP) const;
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};
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/// Utility class SdrEdgeObjGeoData
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class SdrEdgeObjGeoData final : public SdrTextObjGeoData
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{
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public:
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SdrObjConnection aCon1; // connection status of the beginning of the line
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SdrObjConnection aCon2; // connection status of the end of the line
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std::optional<XPolygon> pEdgeTrack;
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bool bEdgeTrackDirty; // true -> connector track needs to be recalculated
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bool bEdgeTrackUserDefined;
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SdrEdgeInfoRec aEdgeInfo;
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public:
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SdrEdgeObjGeoData();
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virtual ~SdrEdgeObjGeoData() override;
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};
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/// Utility class SdrEdgeObj
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class SVXCORE_DLLPUBLIC SdrEdgeObj final : public SdrTextObj
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{
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private:
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// to allow sdr::properties::ConnectorProperties access to ImpSetAttrToEdgeInfo()
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friend class sdr::properties::ConnectorProperties;
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friend class SdrCreateView;
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friend class ImpEdgeHdl;
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virtual std::unique_ptr<sdr::contact::ViewContact> CreateObjectSpecificViewContact() override;
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virtual std::unique_ptr<sdr::properties::BaseProperties> CreateObjectSpecificProperties() override;
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SdrObjConnection aCon1; // Connection status of the beginning of the line
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SdrObjConnection aCon2; // Connection status of the end of the line
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std::optional<XPolygon> pEdgeTrack;
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sal_uInt16 nNotifyingCount; // Locking
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SdrEdgeInfoRec aEdgeInfo;
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bool bEdgeTrackDirty : 1; // true -> Connection track needs to be recalculated
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bool bEdgeTrackUserDefined : 1;
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// Bool to allow suppression of default connects at object
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// inside test (HitTest) and object center test (see ImpFindConnector())
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bool mbSuppressDefaultConnect : 1;
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// Flag value for avoiding infinite loops when calculating
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// BoundRects from ring-connected connectors. A coloring algorithm
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// is used here. When the GetCurrentBoundRect() calculation of a
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// SdrEdgeObj is running, the flag is set, else it is always
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// false.
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bool mbBoundRectCalculationRunning : 1;
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// #i123048# need to remember if layouting was suppressed before to get
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// to a correct state for first real layouting
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bool mbSuppressed : 1;
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public:
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// Interface to default connect suppression
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void SetSuppressDefaultConnect(bool bNew) { mbSuppressDefaultConnect = bNew; }
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bool GetSuppressDefaultConnect() const { return mbSuppressDefaultConnect; }
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private:
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virtual void Notify(SfxBroadcaster& rBC, const SfxHint& rHint) override;
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static XPolygon ImpCalcObjToCenter(const Point& rStPt, tools::Long nEscAngle, const tools::Rectangle& rRect, const Point& rCenter);
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void ImpRecalcEdgeTrack(); // recalculation of the connection track
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XPolygon ImpCalcEdgeTrack(const XPolygon& rTrack0, SdrObjConnection& rCon1, SdrObjConnection& rCon2, SdrEdgeInfoRec* pInfo) const;
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XPolygon ImpCalcEdgeTrack(const Point& rPt1, tools::Long nAngle1, const tools::Rectangle& rBoundRect1, const tools::Rectangle& rBewareRect1,
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const Point& rPt2, tools::Long nAngle2, const tools::Rectangle& rBoundRect2, const tools::Rectangle& rBewareRect2,
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sal_uIntPtr* pnQuality, SdrEdgeInfoRec* pInfo) const;
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static bool ImpFindConnector(const Point& rPt, const SdrPageView& rPV, SdrObjConnection& rCon, const SdrEdgeObj* pThis, OutputDevice* pOut=nullptr, SdrDragStat* pDragStat = nullptr);
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static SdrEscapeDirection ImpCalcEscAngle(SdrObject const * pObj, const Point& aPt2);
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void ImpSetTailPoint(bool bTail1, const Point& rPt);
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void ImpUndirtyEdgeTrack(); // potential recalculation of the connection track
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void ImpDirtyEdgeTrack(); // invalidate connector path, so it will be recalculated next time
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void ImpSetAttrToEdgeInfo(); // copying values from the pool to aEdgeInfo
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void ImpSetEdgeInfoToAttr(); // copying values from the aEdgeInfo to the pool
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// protected destructor
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virtual ~SdrEdgeObj() override;
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public:
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SdrEdgeObj(SdrModel& rSdrModel);
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// Copy constructor
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SdrEdgeObj(SdrModel& rSdrModel, SdrEdgeObj const & rSource);
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// react on model/page change
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virtual void handlePageChange(SdrPage* pOldPage, SdrPage* pNewPage) override;
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SdrObjConnection& GetConnection(bool bTail1) { return *(bTail1 ? &aCon1 : &aCon2); }
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virtual void TakeObjInfo(SdrObjTransformInfoRec& rInfo) const override;
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virtual SdrObjKind GetObjIdentifier() const override;
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virtual const tools::Rectangle& GetCurrentBoundRect() const override;
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virtual const tools::Rectangle& GetSnapRect() const override;
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virtual SdrGluePoint GetVertexGluePoint(sal_uInt16 nNum) const override;
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virtual SdrGluePoint GetCornerGluePoint(sal_uInt16 nNum) const override;
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virtual const SdrGluePointList* GetGluePointList() const override;
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virtual SdrGluePointList* ForceGluePointList() override;
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// * for all of the below: bTail1=true: beginning of the line,
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// otherwise end of the line
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// * pObj=NULL: disconnect connector
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void SetEdgeTrackDirty() { bEdgeTrackDirty=true; }
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void ConnectToNode(bool bTail1, SdrObject* pObj) override;
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void DisconnectFromNode(bool bTail1) override;
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SdrObject* GetConnectedNode(bool bTail1) const override;
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const SdrObjConnection& GetConnection(bool bTail1) const { return *(bTail1 ? &aCon1 : &aCon2); }
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bool CheckNodeConnection(bool bTail1) const;
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virtual void RecalcSnapRect() override;
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virtual void TakeUnrotatedSnapRect(tools::Rectangle& rRect) const override;
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virtual SdrEdgeObj* CloneSdrObject(SdrModel& rTargetModel) const override;
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virtual OUString TakeObjNameSingul() const override;
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virtual OUString TakeObjNamePlural() const override;
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void SetEdgeTrackPath( const basegfx::B2DPolyPolygon& rPoly );
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basegfx::B2DPolyPolygon GetEdgeTrackPath() const;
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virtual basegfx::B2DPolyPolygon TakeXorPoly() const override;
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virtual sal_uInt32 GetHdlCount() const override;
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virtual void AddToHdlList(SdrHdlList& rHdlList) const override;
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// special drag methods
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virtual bool hasSpecialDrag() const override;
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virtual bool beginSpecialDrag(SdrDragStat& rDrag) const override;
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virtual bool applySpecialDrag(SdrDragStat& rDrag) override;
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virtual OUString getSpecialDragComment(const SdrDragStat& rDrag) const override;
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// FullDrag support
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virtual SdrObjectUniquePtr getFullDragClone() const override;
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virtual void NbcSetSnapRect(const tools::Rectangle& rRect) override;
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virtual void NbcMove(const Size& aSize) override;
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virtual void NbcResize(const Point& rRefPnt, const Fraction& aXFact, const Fraction& aYFact) override;
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// #i54102# added rotate, mirror and shear support
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virtual void NbcRotate(const Point& rRef, Degree100 nAngle, double sn, double cs) override;
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virtual void NbcMirror(const Point& rRef1, const Point& rRef2) override;
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virtual void NbcShear(const Point& rRef, Degree100 nAngle, double tn, bool bVShear) override;
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// #102344# Added missing implementation
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virtual void NbcSetAnchorPos(const Point& rPnt) override;
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virtual bool BegCreate(SdrDragStat& rStat) override;
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virtual bool MovCreate(SdrDragStat& rStat) override;
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virtual bool EndCreate(SdrDragStat& rStat, SdrCreateCmd eCmd) override;
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virtual bool BckCreate(SdrDragStat& rStat) override;
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virtual void BrkCreate(SdrDragStat& rStat) override;
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virtual basegfx::B2DPolyPolygon TakeCreatePoly(const SdrDragStat& rDrag) const override;
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virtual PointerStyle GetCreatePointer() const override;
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virtual SdrObjectUniquePtr DoConvertToPolyObj(bool bBezier, bool bAddText) const override;
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virtual sal_uInt32 GetSnapPointCount() const override;
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virtual Point GetSnapPoint(sal_uInt32 i) const override;
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virtual bool IsPolyObj() const override;
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virtual sal_uInt32 GetPointCount() const override;
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virtual Point GetPoint(sal_uInt32 i) const override;
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virtual void NbcSetPoint(const Point& rPnt, sal_uInt32 i) override;
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virtual std::unique_ptr<SdrObjGeoData> NewGeoData() const override;
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virtual void SaveGeoData(SdrObjGeoData& rGeo) const override;
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virtual void RestoreGeoData(const SdrObjGeoData& rGeo) override;
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/** updates edges that are connected to the edges of this object
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as if the connected objects send a repaint broadcast
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#103122#
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*/
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void Reformat();
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// helper methods for the StarOffice api
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Point GetTailPoint( bool bTail ) const;
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void SetTailPoint( bool bTail, const Point& rPt );
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void setGluePointIndex( bool bTail, sal_Int32 nId = -1 );
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sal_Int32 getGluePointIndex( bool bTail );
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virtual bool TRGetBaseGeometry(basegfx::B2DHomMatrix& rMatrix, basegfx::B2DPolyPolygon& rPolyPolygon) const override;
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virtual void TRSetBaseGeometry(const basegfx::B2DHomMatrix& rMatrix, const basegfx::B2DPolyPolygon& rPolyPolygon) override;
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// for geometry access
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::basegfx::B2DPolygon getEdgeTrack() const;
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// helper method for SdrDragMethod::AddConnectorOverlays. Adds an overlay polygon for
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// this connector to rResult.
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basegfx::B2DPolygon ImplAddConnectorOverlay(const SdrDragMethod& rDragMethod, bool bTail1, bool bTail2, bool bDetail) const;
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};
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// The following item parameters of the SdrItemPool are used to
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// determine the actual connector line routing:
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//
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// sal_uInt16 EdgeFlowAngle default 9000 (= 90.00 deg), min 0, max 9000
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// Clearance angle.
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// The angle at which the connecting line may run.
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//
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// sal_uInt16 EdgeEscAngle default 9000 (= 90.00 Deg), min 0, max 9000
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// Object exit angle.
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// The angle at which the connection line may exit from the object.
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//
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// bool EdgeEscAsRay default false
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// true -> the connecting line emerges from the object radially.
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// Thus, angle specification by the line ObjCenter / connector.
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//
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// bool EdgeEscUseObjAngle default false
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// Object rotation angle is considered
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// true -> when determining the connector exit angle, angle for
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// object rotation is taken as an offset.
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//
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// sal_uIntPtr EdgeFlowDefDist default 0, min 0, max ?
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// This is the default minimum distance on calculation of the
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// connection Line to the docked objects is in logical units.
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// This distance is overridden within the object, as soon as the
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// user drags on the lines. When docking onto a new object,
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// however, this default is used again.
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//
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//
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// General Information About Connectors:
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//
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// There are nodes and edge objects. Two nodes can be joined by an
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// edge. If a connector is connected to a node only at one end, the
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// other end is fixed to an absolute position in the document. It is
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// of course also possible for a connector to be "free" at both ends,
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// i.e. not connected to a node object on each side.
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//
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// A connector object can also theoretically be a node object at the
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// same time. In the first version, however, this will not yet be
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// realized.
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//
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// A connection between node and connector edge can be established by:
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// - Interactive creation of a new edge object at the SdrView where
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// the beginning or end point of the edge is placed on a connector
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// (glueing point) of an already existing node object.
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// - Interactive dragging of the beginning or end point of an
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// existing connector edge object on the SdrView to a connector
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// (glueing point) of an already existing node object.
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// - Undo/Redo
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// Moving node objects does not make any connections. Also not the
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// direct shifting of edge endpoints on the SdrModel... Connections
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// can also be established, if the connectors are not configured to
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// be visible in the view.
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//
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// An existing connection between node and edge is retained for:
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// - Dragging (Move/Resize/Rotate/...) of the node object
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// - Moving a connector position in the node object
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// - Simultaneous dragging (Move/Resize/Rotate/...) of the node and the
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// edge
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//
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// A connection between node and edge can be removed by:
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// - Deleting one of the objects
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// - Dragging the edge object without simultaneously dragging the node
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// - Deleting the connector at the node object
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// - Undo/Redo/Repeat
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// When dragging, the request to remove the connection must be
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// requested from outside of the model (for example, from the
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// SdrView). SdrEdgeObj::Move() itself does not remove the
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// connection.
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//
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// Each node object can have connectors, so-called gluepoints. These
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// are the geometric points at which the connecting edge object ends
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// when the connection is established. By default, each object has no
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// connectors. Nevertheless, one can dock an edge in certain view
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// settings since then, e.g., connectors can be automatically
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// generated at the 4 vertices of the node object when needed. Each
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// object provides 2x4 so-called default connector positions, 4 at
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// the vertices and 4 at the corner positions. In the normal case,
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// these are located at the 8 handle positions; exceptions here are
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// ellipses, parallelograms, ... . In addition, user-specific
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// connectors can be set for each node object.
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//
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// Then there is also the possibility to dock an edge on an object
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// with the attribute "bUseBestConnector". The best-matching
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// connector position for the routing of the connection line is then
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// used from the offering of connectors of the object or/and of the
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// vertices. The user assigns this attribute by docking the node in
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// its center (see, e.g., Visio).
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// 09-06-1996: bUseBestConnector uses vertex gluepoints only.
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//
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// And here is some terminology:
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// Connector : The connector object (edge object)
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// Node : Any object to which a connector can be glued to, e.g., a rectangle,
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// etc.
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// Gluepoint: The point at which the connector is glued to the node object.
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// There are:
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// Vertex gluepoints: Each node object presents these glue
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// points inherently. Perhaps there is already the option
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// "automatically glue to object vertex" in Draw (default is
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// on).
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// Corner gluepoints: These gluepoints, too, are already
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// auto-enabled on objects. Similar to the ones above,
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// there may already be an option for them in Draw (default is
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// off).
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// In contrast to Visio, vertex gluepoints and corner glue
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// points are not displayed in the UI; they are simply there (if
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// the option is activated).
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// Custom gluepoints: Any number of them are present on each
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// node object. They can be made visible using the option
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// (always visible when editing). At the moment, however, they
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// are not yet fully implemented.
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// Automatic gluepoint selection: If the connector is docked
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// to the node object so that the black frame encompasses the
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// entire object, then the connector tries to find the most
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// convenient of the 4 vertex gluepoints (and only of those).
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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