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[simantics/3d.git] / org.simantics.plant3d / src / org / simantics / plant3d / scenegraph / controlpoint / PipeControlPoint.java
1 package org.simantics.plant3d.scenegraph.controlpoint;
2
3 import java.util.ArrayList;
4 import java.util.Arrays;
5 import java.util.Collection;
6 import java.util.List;
7 import java.util.Objects;
8
9 import javax.vecmath.AxisAngle4d;
10 import javax.vecmath.Matrix3d;
11 import javax.vecmath.Point3d;
12 import javax.vecmath.Quat4d;
13 import javax.vecmath.Tuple3d;
14 import javax.vecmath.Vector3d;
15
16 import org.simantics.g3d.math.MathTools;
17 import org.simantics.g3d.property.annotations.GetPropertyValue;
18 import org.simantics.g3d.scenegraph.G3DNode;
19 import org.simantics.g3d.scenegraph.base.INode;
20 import org.simantics.plant3d.scenegraph.IP3DNode;
21 import org.simantics.plant3d.scenegraph.Nozzle;
22 import org.simantics.plant3d.scenegraph.P3DRootNode;
23 import org.simantics.plant3d.scenegraph.PipeRun;
24 import org.simantics.plant3d.scenegraph.PipelineComponent;
25
26 import vtk.vtkRenderer;
27
28
29 public class PipeControlPoint extends G3DNode implements IP3DNode {
30
31         private static boolean DEBUG = false;
32
33         public enum PointType{INLINE,TURN,END};
34         public enum Direction{NEXT,PREVIOUS};
35         public enum PositionType {SPLIT,NEXT,PREVIOUS,PORT}
36
37         private PipelineComponent component;
38
39         private PointType type;
40         private boolean isFixed = true;        // In-line: fixed-length Turn: fixed-angle
41         private boolean isMod = false;         // Can user modify fixed value manually 
42         private boolean isRotate = false;      // rotates around path leg axis.
43         private boolean isReverse = false;     // definition direction can be swapped
44         private boolean isDeletable = true;    // can be removed by rules
45         private boolean isSizeChange = false;  // changes size of the pipe. The next control point / component is on different PipeRun
46         private boolean isSub = false;         // child point for offset / size change
47
48         private boolean disposed = false;
49         
50         public PipeControlPoint(PipelineComponent component) {
51                 this.component = component;
52                 if (component.getPipeRun() != null)
53                         component.getPipeRun().addChild(this);
54
55         }
56
57         public PipeControlPoint(PipelineComponent component, PipeRun piperun) {
58                 this.component = component;
59                 piperun.addChild(this);
60         }
61
62         @Override
63         public void update(vtkRenderer ren) {
64                 try {
65                         PipingRules.requestUpdate(this);
66                 } catch (Exception e) {
67                         e.printStackTrace();
68                 }
69
70         }
71
72         public PipeRun getPipeRun() {
73                 return (PipeRun)getParent();
74         }
75
76         public PipelineComponent getPipelineComponent() {
77                 return component;
78         }
79
80         public PointType getType() {
81                 return type;
82         }
83
84         public void setType(PointType type) {
85                 this.type = type;
86         }
87
88         @GetPropertyValue(name="Fixed",tabId="Debug",value="fixed")
89         public boolean isFixed() {
90                 return isFixed;
91         }
92
93         public void setFixed(boolean fixed) {
94                 this.isFixed = fixed;
95         }
96         
97         @GetPropertyValue(name="Mod",tabId="Debug",value="mod")
98         public boolean isMod() {
99         return isMod;
100     }
101     
102     public void setMod(boolean isMod) {
103         this.isMod = isMod;
104     }
105
106         @GetPropertyValue(name="Rotate",tabId="Debug",value="rotate")
107         public boolean isRotate() {
108                 return isRotate;
109         }
110
111         public void setRotate(boolean rotate) {
112                 this.isRotate = rotate;
113         }
114
115         @GetPropertyValue(name="Reverse",tabId="Debug",value="reverse")
116         public boolean isReverse() {
117                 return isReverse;
118         }
119
120         public void setReverse(boolean reverse) {
121                 this.isReverse = reverse;
122         }
123
124         public void setSub(boolean sub) {
125                 this.isSub = sub;
126         }
127
128         @GetPropertyValue(name="Deletable",tabId="Debug",value="deletable")
129         public boolean isDeletable() {
130                 return isDeletable;
131         }
132
133         public void setDeletable(boolean deletable) {
134                 this.isDeletable = deletable;
135         }
136
137         public boolean isPathLegEnd() {
138                 return type != PointType.INLINE;
139         }
140
141         public boolean isEnd() {
142                 return type == PointType.END;
143         }
144
145         public boolean isTurn() {
146                 return type == PointType.TURN;
147         }
148
149         public boolean isInline() {
150                 return type == PointType.INLINE;
151         }
152         
153         public boolean asPathLegEnd() {
154             // Ends and Turns are path leg ends by default, but also unconnected inline are path leg ends.
155             return isPathLegEnd() || getNext() == null || getPrevious() == null;
156         }
157
158         /**
159          * True for end components, if control point defines absolute position direction, which rules cannot modify. 
160          * This is typical for nozzles.
161          * @return
162          */
163         public boolean isDirected() {
164                 return isFixed && isEnd();
165         }
166
167         /**
168      * True for end components, if control is opposite to directed, and rules can modify position and orientation.
169      * This is typical for caps, and other end components.
170      * @return
171      */
172         public boolean isNonDirected() {
173                 return !isFixed && isEnd();
174         }
175
176         public boolean isVariableLength() {
177                 return !isFixed && isInline();
178         }
179         
180         /**
181          * Fixed length in-line component is such that piping rules cannot modify the length.
182          * @return
183          */
184         public boolean isFixedLength() {
185         return isFixed && isInline();
186     }
187
188         public boolean isVariableAngle() {
189                 return !isFixed && isTurn();
190         }
191         
192         /**
193          * Fixed angle turn component is such that piping rules cannot modify the angle.
194          * @return
195          */
196         public boolean isFixedAngle() {
197         return isFixed && isTurn();
198     }
199         
200         /**
201          * Does the turn behave like fixed angle?
202          * For variable angle turns, the turn angle is defined by connected components, and without them, we must handle the component as fixed angle. 
203          * @return
204          */
205         public boolean asFixedAngle() {
206         return isTurn() && (isFixed || next == null || previous == null);
207     }
208
209         public boolean isBranchEnd() {
210                 return isDeletable && isEnd();
211         }
212
213         public boolean isOffset() {
214                 return offset != null;
215         }
216
217         public boolean isDualSub() {
218                 return parent != null && isSub;
219         }
220
221         public boolean isDualInline() {
222                 return children.size() == 1 && children.get(0).isDualSub();
223         }
224
225         public boolean isAxial() {
226                 return isInline() && !isDualInline();
227         }
228
229         public boolean isSizeChange() {
230                 return isSizeChange;
231                 //              if (children.size() == 0)
232                 //                      return false;
233                 //              if (!isDualInline())
234                 //                      return false;
235                 //              return getPipeRun() != children.get(0).getPipeRun();
236         }
237
238         public void setSizeChange(boolean isSizeChange) {
239                 this.isSizeChange = isSizeChange;
240         }
241
242
243         private PipeControlPoint next;
244         private PipeControlPoint previous;
245
246         public PipeControlPoint getNext() {
247                 return next;
248         }
249
250         public PipeControlPoint getPrevious() {
251                 return previous;
252         }
253
254         public void setNext(PipeControlPoint next) {
255             if (isSub) {
256                 getParentPoint().setNext(next);
257                 return;
258             }
259             if (next != null && next.isDualSub())
260                 next = next.parent;
261             if (_setNext(next)) {
262                 for (PipeControlPoint pcp : children) {
263                 if (pcp.isSub)
264                     pcp._setNext(next);
265             }
266                 updateSubPoint();
267             }
268         }
269         
270         public void setPrevious(PipeControlPoint prev) {
271         if (isSub) {
272             getParentPoint().setPrevious(prev);
273             return;
274         }
275         if (prev != null && prev.isDualInline())
276             prev = prev.children.get(0);
277         if (_setPrevious(prev)) {
278             for (PipeControlPoint pcp : children) {
279                 if (pcp.isSub)
280                     pcp._setPrevious(prev);
281             }
282             updateSubPoint();
283         }
284     }
285         
286         protected boolean _setNext(PipeControlPoint next) {
287                 if (isEnd() && previous != null && next != null)
288                         throw new RuntimeException("End control points are allowed to have only one connection");
289                 if (next == this)
290                         throw new RuntimeException("Cannot connect to self");
291                 if (this.next == next)
292                         return false;
293                 if (DEBUG) System.out.println(this + " next " + next);
294                 if (next == null && isVariableAngle() && previous != null && !isRemoved()) {
295                     convertVariableAngleToFixed(Direction.NEXT);
296                 }
297                 this.next = next;
298                 if (component != null) {
299                         if (parent == null || isSub)
300                                 component.setNext(next != null ? next.component : null);
301                         else
302                                 component.setBranch0(next != null ? next.component : null);
303                         
304                 }
305                 return true;
306         }
307
308         protected boolean _setPrevious(PipeControlPoint previous) {
309                 if (isEnd() && next != null && previous != null)
310                         throw new RuntimeException("End control points are allowed to have only one connection");
311                 if (previous == this)
312                         throw new RuntimeException("Cannot connect to self");
313                 if (this.previous == previous)
314                         return false;
315                 if (DEBUG) System.out.println(this + " previous " + previous);
316                 if (previous == null && isVariableAngle() && next != null && !isRemoved()) {
317             convertVariableAngleToFixed(Direction.PREVIOUS);
318         }
319                 this.previous = previous;
320                 if (component != null) {
321                         if (parent == null || isSub)
322                                 component.setPrevious(previous != null ? previous.component : null);
323                         else
324                                 component.setBranch0(previous != null ? previous.component : null);
325                         updateSubPoint();
326                 }
327                 return true;
328         }
329         
330         private void convertVariableAngleToFixed(Direction direction) {
331             // We are removing reference, which transforms variable angle to fixed angle.
332         // Since fixed angle is defined differently, we need to calculate fixed angle parameters based on current data
333         // We need to calculate turnAngle and rotationAngle
334             Vector3d dirOut = getPathLegDirection(direction == Direction.NEXT ? Direction.NEXT : Direction.PREVIOUS);
335         Vector3d dir = getPathLegDirection(direction == Direction.NEXT ? Direction.PREVIOUS : Direction.NEXT);
336         if (dir == null || dirOut == null)
337             return;
338         dir.negate();
339         double angle = dir.angle(dirOut);
340         //super._setNext(null);
341         if (direction == Direction.NEXT)
342             next = null;
343         else
344             previous = null;
345         setRotationAngle(0.0);
346         setReversed(direction == Direction.NEXT ? false : true);
347         Vector3d dirOutN = getPathLegDirection(direction == Direction.NEXT ? Direction.NEXT : Direction.PREVIOUS);
348         dirOutN.normalize();
349         AxisAngle4d aa = new AxisAngle4d();
350         if (MathTools.createRotation(dirOutN, dirOut, dir, aa)) {
351             setRotationAngle(aa.angle);
352             setTurnAngle(angle);
353             if (DEBUG) System.out.println("convertToFixed " + dir + " " + dirOut + " " +dirOutN + " " +angle + " "+ aa.angle);
354         }
355         }
356
357         public PipeControlPoint parent;
358         public List<PipeControlPoint> children = new ArrayList<PipeControlPoint>();
359
360         public List<PipeControlPoint> getChildPoints() {
361                 return children;
362         }
363
364         public PipeControlPoint getParentPoint() {
365                 return parent;
366         }
367
368
369         private double length;
370         private Double turnAngle;
371         private Vector3d turnAxis;
372
373         private Double offset;
374         private Double rotationAngle;
375         private Boolean reversed;
376
377         @GetPropertyValue(name="Length",tabId="Debug",value="length")
378         public double getLength() {
379                 return length;
380         }
381
382         public void setLength(double l) {
383                 if (this.length == l)
384                         return;
385                 if (Double.isInfinite(l) || Double.isNaN(l))
386                         return;
387                 if (Math.abs(this.length-l) < MathTools.NEAR_ZERO)
388                         return;
389                 this.length = l;
390                 firePropertyChanged("length");
391                 if (isDualInline())
392                     getDualSub().setLength(l);
393         }
394
395         @GetPropertyValue(name="Turn Angle",tabId="Debug",value="turnAngle")
396         public Double getTurnAngle() {
397                 return turnAngle;
398         }
399
400         @GetPropertyValue(name="Turn Axis",tabId="Debug",value="turnAxis")
401         public Vector3d getTurnAxis() {
402                 return turnAxis;
403         }
404
405         @GetPropertyValue(name="Offset",tabId="Debug",value="offset")
406         public Double getOffset() {
407                 return offset;
408         }
409
410         @GetPropertyValue(name="Rotation Angle",tabId="Debug",value="rotationAngle")
411         public Double getRotationAngle() {
412             if (isRotate || asFixedAngle())
413                 return rotationAngle;
414             return null;
415         }
416
417         @GetPropertyValue(name="Reversed",tabId="Debug",value="reversed")
418         public Boolean getReversed() {
419                 return reversed;
420         }
421
422         public boolean _getReversed() {
423                 if (reversed == null)
424                         return false;
425                 return reversed;
426         }
427
428         public void setTurnAngle(Double turnAngle) {
429                 if (turnAngle == null || Double.isInfinite(turnAngle) || Double.isNaN(turnAngle)) {
430                         return;
431                 }
432                 if (this.turnAngle != null && Math.abs(this.turnAngle-turnAngle) < MathTools.NEAR_ZERO)
433                         return;
434                 if (Objects.equals(this.turnAngle, turnAngle))
435                         return;
436                 this.turnAngle = turnAngle;
437                 firePropertyChanged("turnAngle");
438         }
439
440         public void setTurnAxis(Vector3d turnAxis) {
441                 if (this.turnAxis != null && MathTools.equals(turnAxis, this.turnAxis))
442                         return;
443                 this.turnAxis = turnAxis;
444                 firePropertyChanged("turnAxis");
445         }
446
447         public void setOffset(Double offset) {
448                 if (Double.isInfinite(offset) || Double.isNaN(offset)) {
449                         return;
450                 }
451                 if (this.offset != null && Math.abs(this.offset-offset) < MathTools.NEAR_ZERO)
452                         return;
453                 if (Objects.equals(this.offset, offset))
454                         return;
455                 this.offset = offset;
456                 firePropertyChanged("offset");
457         }
458
459         public void setRotationAngle(Double rotationAngle) {
460                 if (Double.isInfinite(rotationAngle) || Double.isNaN(rotationAngle)) {
461                         return;
462                 }
463                 if (this.rotationAngle != null && Math.abs(this.rotationAngle-rotationAngle) < MathTools.NEAR_ZERO)
464                         return;
465                 if (Objects.equals(this.rotationAngle, rotationAngle))
466                         return;
467                 this.rotationAngle = rotationAngle;
468                 firePropertyChanged("rotationAngle");
469         }
470
471         public void setReversed(Boolean reversed) {
472                 if (this.reversed == reversed)
473                         return;
474                 this.reversed = reversed;
475                 firePropertyChanged("reversed");
476         }
477
478         public Vector3d getSizeChangeOffsetVector(Vector3d dir) {
479                 Quat4d q;
480                 if (rotationAngle == null)
481                         q = getControlPointOrientationQuat(dir, 0.0);
482                 else
483                         q = getControlPointOrientationQuat(dir, rotationAngle);
484                 Vector3d v = new Vector3d(0.0,offset,0.0);
485                 Vector3d offset = new Vector3d();
486                 MathTools.rotate(q, v, offset);
487                 return offset;
488         }
489
490         public Vector3d getSizeChangeOffsetVector() {
491                 Quat4d q;
492                 if (rotationAngle == null)
493                         q = getControlPointOrientationQuat(0.0);
494                 else
495                         q = getControlPointOrientationQuat(rotationAngle);
496                 Vector3d v = new Vector3d(0.0,offset,0.0);
497                 Vector3d offset = new Vector3d();
498                 MathTools.rotate(q, v, offset);
499                 return offset;
500         }
501
502         @GetPropertyValue(name="Next",tabId="Debug",value="next")
503         private String getNextString() {
504                 if (next == null)
505                         return null;
506                 return next.toString();
507         }
508
509         @GetPropertyValue(name="Previous",tabId="Debug",value="previous")
510         private String getPrevString() {
511                 if (previous == null)
512                         return null;
513                 return previous.toString();
514         }
515
516         @GetPropertyValue(name="Sub",tabId="Debug",value="sub")
517         private String getSubString() {
518                 if (children.size() == 0)
519                         return "";
520                 return Arrays.toString(children.toArray());
521         }
522
523         @GetPropertyValue(name="Type",tabId="Debug",value="type")
524         public String getTypeString() {
525                 return type.name();
526         }
527
528         public Vector3d getPathLegEndpointVector() {
529                 PipeControlPoint a = findPreviousEnd();
530                 PipeControlPoint b = findNextEnd();
531                 
532                 if (a == null || b == null) {
533                         return getPathLegDirection();
534                 }
535                 
536                 Vector3d p1 = a.getWorldPosition();
537                 Vector3d p2 = b.getWorldPosition();
538                 p2.sub(p1);
539                 double l = p2.length();
540                 if (l != 0.0) {
541                         p2.scale(1.0 / l);
542                         return p2;
543                 }
544                 else {
545                         return getPathLegDirection();
546                 }
547         }
548
549         public Vector3d getPathLegDirection() {
550                 if (turnAxis == null) {
551                         return getPathLegDirection(Direction.NEXT);
552                 } else {
553                         Vector3d dir = getPathLegDirection(Direction.PREVIOUS);
554                         if (dir != null) dir.negate();
555                         return dir;
556                 }
557         }
558         
559         public Quat4d getControlPointOrientationQuat(double angle) {
560                 Vector3d dir = getPathLegDirection();
561                 if (turnAxis == null) {
562                         return getControlPointOrientationQuat(dir, angle);
563                 } else {
564                         return getControlPointOrientationQuat(dir, turnAxis, angle);
565                 }
566         }
567         
568         public Quat4d getControlPointOrientationQuat(Vector3d dir, double angle, boolean reversed) {
569             if (turnAxis == null) {
570             if (dir.lengthSquared() > MathTools.NEAR_ZERO)
571                 dir.normalize();
572             Quat4d q =  getControlPointOrientationQuat(dir, angle);
573             if (reversed) {
574                 Quat4d q2 = new Quat4d();
575                 q2.set(new AxisAngle4d(MathTools.Y_AXIS, Math.PI));
576                 q.mulInverse(q2);
577             }
578             return q;
579         } else {
580             if (dir.lengthSquared() > MathTools.NEAR_ZERO)
581                 dir.normalize();
582             return getControlPointOrientationQuat(dir, turnAxis, angle);
583         }
584         }
585
586         public Quat4d getControlPointOrientationQuat(double angle, boolean reversed) {
587                 Vector3d dir = getPathLegDirection();
588                 return getControlPointOrientationQuat(dir, angle, reversed);
589         }
590
591         public Quat4d getControlPointOrientationQuat(Vector3d dir, double angle) {
592                 if (dir == null || dir.lengthSquared() < MathTools.NEAR_ZERO)
593                         return MathTools.getIdentityQuat();
594
595                 final P3DRootNode root = getRoot();
596                 Vector3d up = root != null ? new Vector3d(root.getUpVector()) : new Vector3d(0.0, 1.0, 0.0);
597                 final Vector3d legDir = getPathLegEndpointVector();
598                 double a = up.angle(legDir);
599                 if (a < 0.1 || (Math.PI - a) < 0.1) {
600                         // Rotate components
601                         up.set(up.getY(), up.getZ(), up.getX());
602                 }
603                 
604                 // Project up vector into a normal of the leg direction before applying to 'dir'
605                 MathTools.mad(up, legDir, -legDir.dot(up)/legDir.lengthSquared());
606                 up.normalize();
607
608                 return getControlPointOrientationQuat(dir, up, angle);
609         }
610
611         public P3DRootNode getRoot() {
612                 INode n = getParent();
613                 while (n != null && !(n instanceof P3DRootNode))
614                         n = n.getParent();
615                 return (P3DRootNode) n;
616         }
617
618         public static Quat4d getControlPointOrientationQuat(Vector3d dir, Vector3d up,  double angle) {
619                 if (dir == null || dir.lengthSquared() < MathTools.NEAR_ZERO)
620                         return MathTools.getIdentityQuat();
621
622                 final Vector3d front = new Vector3d(1.0,0.0,0.0);
623
624                 Quat4d q1 = new Quat4d();
625
626
627                 Vector3d right = new Vector3d();
628                 
629                 up = new Vector3d(up);
630                 right.cross(dir, up);
631                 up.cross(right, dir);
632                 right.normalize();
633                 up.normalize();
634
635                 Matrix3d m = new Matrix3d();
636                 m.m00 = dir.x;
637                 m.m10 = dir.y;
638                 m.m20 = dir.z;
639                 m.m01 = up.x;
640                 m.m11 = up.y;
641                 m.m21 = up.z;
642                 m.m02 = right.x;
643                 m.m12 = right.y;
644                 m.m22 = right.z;
645
646                 //q1.set(m); MathTools contains more stable conversion
647                 MathTools.getQuat(m, q1);
648
649                 //                      if (DEBUG) System.out.println("PipingTools.getPipeComponentOrientationQuat() " + dir+ " " + up + " " + right);
650
651                 Quat4d q2 = new Quat4d();
652                 q2.set(new AxisAngle4d(front, angle));
653                 q1.mul(q2);
654                 return q1;
655         }
656
657         public void insert(PipeControlPoint previous, PipeControlPoint next) {
658                 // inserting an offsetpoint is error, 
659                 if (isDualSub())
660                         throw new RuntimeException("Dual sub points cannot be inserted.");
661                 // size change control point cannot be inserted this way, because it ends PipeRun
662 //              if (isSizeChange())
663 //                      throw new RuntimeException("Size change points cannot be inserted.");
664                 PipeRun piperun = previous.getPipeRun();
665                 // and just to make sure that control point structure is not corrupted
666                 if (getPipeRun() != null) {
667                         if (piperun != getPipeRun() || piperun != next.getPipeRun())
668                                 throw new RuntimeException("All controls points must be located on the same pipe run");
669                 } else {
670                         piperun.addChild(this);
671                 }
672
673                 // insert new BranchControlPoint between straight's control points
674                 PipeControlPoint previousNext = previous.getNext();
675                 PipeControlPoint previousPrevious = previous.getPrevious();
676
677                 PipeControlPoint offsetCP = null;
678                 if (isOffset()) {
679                         offsetCP = getDualSub();
680                 }
681                 if (previousNext != null && previousNext == next) {
682                         if (previous.isDualInline()) {
683                                 throw new RuntimeException();
684                         }
685                         if (next.isDualSub()) {
686                                 throw new RuntimeException();
687                         }
688                         previous.setNext(this);
689                         this.setPrevious(previous);
690                         if (previous.isDualSub()) {
691                                 previous.getParentPoint().setNext(this);
692                         }
693                         this.setNext(next);
694
695                         if (offsetCP == null) {
696                                 next.setPrevious(this);
697                         } else {
698                                 next.setPrevious(offsetCP);
699                                 offsetCP.setNext(next);
700                                 offsetCP.setPrevious(previous);
701                         }
702
703                         if (next.isDualInline()) {
704                                 next.getDualSub().setPrevious(this);
705                         }
706                 } else if (previousPrevious != null && previousPrevious == next) {
707                         // control point were given in reverse order 
708                         if (next.isDualInline())
709                                 throw new RuntimeException();
710                         if (previous.isDualSub())
711                                 throw new RuntimeException();
712
713                         this.setNext(previous);
714                         if (offsetCP == null) {
715                                 previous.setNext(this);
716                         } else {
717                                 previous.setPrevious(offsetCP);
718                                 offsetCP.setNext(previous);
719                                 offsetCP.setPrevious(next);
720                         }
721                         if (previous.isDualInline()) {
722                                 previous.getDualSub().setPrevious(this);
723                         }
724                         this.setPrevious(next);
725                         next.setNext(this);
726                         if (next.isDualSub()) {
727                                 next.getParentPoint().setNext(this);
728                         }
729
730                 } else {
731                         throw new RuntimeException();
732                 }       
733
734                 PipingRules.validate(piperun);
735         }
736
737
738
739         public void insert(PipeControlPoint pcp, Direction direction) {
740                 if (isDualSub())
741                         throw new RuntimeException();
742                 if (direction == Direction.NEXT) {
743                         // if direction is next, user must have given OffsetPoint
744                         if (pcp.isDualInline())
745                                 throw new RuntimeException();
746                         // basic next/prev links
747                         pcp.setNext(this);
748                         this.setPrevious(pcp);
749                         // and last take care of sizechange / offset points
750                         if (pcp.isDualSub()) {
751                                 pcp.getParentPoint().setNext(this);
752                         }
753                         if (isDualInline()) {
754                             getDualSub().setPrevious(this);
755                         }
756                 } else {
757                         // if direction is previous, user must have given sizechange
758                         if (pcp.isDualSub())
759                                 throw new RuntimeException();
760                         // previous direction is more complicated, since if newCP is SizeChangeControlPoint,
761                         // we must link pcp to newCP's OffsetPoint
762                         PipeControlPoint nocp = null;
763                         if (isDualInline()) {
764                                 nocp = getDualSub();
765                                 nocp.setNext(pcp);
766                         }
767                         if (nocp == null) {
768                                 pcp.setPrevious(this);
769                         } else {
770                                 pcp.setPrevious(nocp);
771                         }
772                         this.setNext(pcp);
773                         if (pcp.isDualInline()) {
774                                 PipeControlPoint ocp = pcp.getDualSub();
775                                 if (nocp == null)
776                                         ocp.setPrevious(this);
777                                 else
778                                         ocp.setPrevious(nocp);
779                         }
780
781                 }
782                 PipingRules.validate(getPipeRun());
783         }
784
785         public Vector3d getDirectedControlPointDirection() {
786                 assert (isDirected());
787                 Vector3d dir = new Vector3d();
788                 MathTools.rotate(getWorldOrientation(), new Vector3d(1.0, 0.0, 0.0), dir);
789                 dir.normalize();
790                 return dir;
791         }
792         
793         /**
794          * Returns direction vector. 
795          * 
796          * For directed control points, always returns outwards pointing vector.
797          * 
798          * @param direction
799          * @return normalized vector, or null
800          */
801         public Vector3d getDirection(Direction direction) {
802         if (isDirected())
803             return getDirectedControlPointDirection();
804         if (isTurn() && asFixedAngle()) {
805             if (direction == Direction.NEXT) {
806                 if (previous != null) {
807                     PipeControlPoint pcp = this;
808                     Vector3d dir = new Vector3d();
809                     dir.sub(pcp.getWorldPosition(),previous.getWorldPosition());
810                     if (dir.lengthSquared() > MathTools.NEAR_ZERO)
811                         dir.normalize();
812                     else
813                         return null;
814                     Quat4d q = getControlPointOrientationQuat(dir, pcp.getRotationAngle() != null ? pcp.getRotationAngle() : 0.0);
815                     AxisAngle4d aa = new AxisAngle4d(MathTools.Y_AXIS,pcp.getTurnAngle() == null ? 0.0 : pcp.getTurnAngle());
816                     Quat4d q2 = MathTools.getQuat(aa);
817                     Vector3d v = new Vector3d(1.,0.,0.);
818                     Vector3d offset = new Vector3d();
819                     MathTools.rotate(q2, v, offset);
820                     MathTools.rotate(q, offset, dir);
821                     dir.normalize();
822                     return dir;
823                 }
824             } else {
825                 if (next != null) {
826                     PipeControlPoint pcp = this;
827                     Vector3d dir = new Vector3d();
828                     dir.sub(next.getWorldPosition(),pcp.getWorldPosition());
829                     if (dir.lengthSquared() > MathTools.NEAR_ZERO)
830                         dir.normalize();
831                     else
832                         return null;
833                     Quat4d q = getControlPointOrientationQuat(dir, pcp.getRotationAngle() != null ? pcp.getRotationAngle() : 0.0);
834                     AxisAngle4d aa = new AxisAngle4d(MathTools.Y_AXIS,pcp.getTurnAngle() == null ? 0.0 : pcp.getTurnAngle());
835                     Quat4d q2 = MathTools.getQuat(aa);
836                     Vector3d v = new Vector3d(1.,0.,0.);
837                     Vector3d offset = new Vector3d();
838                     MathTools.rotate(q2, v, offset);
839                     MathTools.rotate(q, offset, dir);
840                     dir.normalize();
841                     return dir;
842                 }
843             }
844         }
845         return null;
846     }
847
848         /**
849          * Returns path leg direction of the control point.
850          * 
851          * This method differs from getDirection by also returning inward pointing vectors for directed control points.
852          * 
853          * @param direction
854          * @return
855          */
856         public Vector3d getPathLegDirection(Direction direction) {
857                 if (direction == Direction.NEXT) {
858                         return getPathLegDirectionNext();
859                 } else {
860                         return getPathLegDirectionPrevious();
861                 }
862         }
863
864         public Vector3d getPathLegDirectionPrevious() {
865                 if (previous != null) {
866                         PipeControlPoint pcp = this;
867                         if (isDualSub()) 
868                                 pcp = getParentPoint();
869                         Vector3d v = new Vector3d();
870                         v.sub(previous.getWorldPosition(),pcp.getWorldPosition());
871                         if (v.lengthSquared() > MathTools.NEAR_ZERO)
872                         v.normalize();
873                     else
874                         return null;
875                         return v;
876                 } else if (isDirected()) {
877                         Vector3d v = getDirectedControlPointDirection();
878                         v.negate();
879                         return v;
880                 } else if (next == null)  {
881                         throw new RuntimeException("Cannot calculate path leg direction for unconnected control point " + this);
882                 } else if (isVariableAngle() && !asFixedAngle()) {
883                         throw new RuntimeException("Cannot calculate path leg direction for unconnected variable angle control point " + this);
884                 } else if (isInline() || isEnd()) {
885                         Vector3d v = getPathLegDirectionNext();
886                         if (v != null) v.negate();
887                         return v;
888                 } else if (isTurn() && asFixedAngle() && _getReversed()) {
889                         return getDirection(Direction.PREVIOUS);
890                 } else {
891                         throw new RuntimeException("Missing implementation " + this);
892                 }
893         }
894
895         public Vector3d getPathLegDirectionNext() {
896                 if (next != null) {
897                         PipeControlPoint pcp = this;
898                         if (pcp.isDualInline()) {
899                                 pcp = pcp.getDualSub();
900                         }
901                         Vector3d v = new Vector3d();
902                         v.sub(next.getWorldPosition(),pcp.getWorldPosition());
903                         if (v.lengthSquared() > MathTools.NEAR_ZERO)
904                         v.normalize();
905                     else
906                         return null;
907                         return v;
908                 } else if (isDirected()) {
909                         return getDirectedControlPointDirection();
910                 } else if (previous == null) {
911                         throw new RuntimeException("Cannot calculate path leg direction for unconnected control point " + this);
912                 } else if (isVariableAngle() && !asFixedAngle()) {
913                         throw new RuntimeException("Cannot calculate path leg direction for unconnected variable angle control point " + this);
914                 } else if (isInline() || isEnd()) {
915                         Vector3d v = getPathLegDirectionPrevious();
916                         if (v != null) v.negate();
917                         return v;
918                 } else if (isTurn() && asFixedAngle() && !_getReversed()) {
919                         return getDirection(Direction.NEXT);
920                 } else {
921                         throw new RuntimeException("Missing implementation " + this);
922                 }
923         }
924
925         public void getInlineControlPointEnds(Tuple3d p1, Tuple3d p2) {
926                 assert (isInline());
927
928                 PipeControlPoint sub = isAxial() ? this : getDualSub();
929                 Vector3d pos = getWorldPosition(), pos2 = sub == this ? pos : sub.getWorldPosition();
930                 Vector3d dir = sub.getInlineDir();
931                 
932                 dir.scale(length * 0.5);
933                 p1.set(pos);
934                 p2.set(pos2);
935                 p1.sub(dir);
936                 p2.add(dir);
937         }
938
939         public void getControlPointEnds(Tuple3d p1, Tuple3d p2) {
940                 PipeControlPoint sub = isAxial() || isDirected() || isTurn() ? this : getChildPoints().get(0);
941                 Vector3d pos = getWorldPosition(), pos2 = sub == this ? pos : sub.getWorldPosition();
942                 
943                 Vector3d dir1;
944                 Vector3d dir2;
945                 if (isInline()) {
946                         dir2 = getInlineDir();
947                         dir2.scale(length * 0.5);
948                         dir1 = new Vector3d(dir2);
949                         dir1.negate();
950                 } else {
951                         dir1 = getPathLegDirection(Direction.PREVIOUS);
952                         dir2 = sub.getPathLegDirection(Direction.NEXT);
953                         dir1.scale(length);
954                         dir2.scale(length);
955                 }
956                 p1.set(pos);
957                 p2.set(pos2);
958                 p1.add(dir1);
959                 p2.add(dir2);
960         }
961
962         /**
963          * Get both path leg directions, with (0,0,0) if no connection exists. The returned vectors are not normalized.
964          * 
965          * @param v1  Set to the direction towards the previous control point on output
966          * @param v2  Set to the direction towards the next control point on output
967          */
968         public void getEndDirections(Tuple3d v1, Tuple3d v2) {
969                 PipeControlPoint sub = isAxial() ? this : getDualSub();
970                 
971                 Vector3d dir1 = getPathLegDirection(Direction.PREVIOUS);
972                 Vector3d dir2 = sub.getPathLegDirection(Direction.NEXT);
973                 
974                 if (dir1 != null)
975                         v1.set(dir1);
976                 else
977                         v1.set(0,0,0);
978                 
979                 if (dir2 != null)
980                         v2.set(dir2);
981                 else
982                         v2.set(0,0,0);
983         }
984
985         public void getInlineControlPointEnds(Tuple3d p1, Tuple3d p2, Vector3d dir) {
986                 assert (isInline());
987
988                 Vector3d pos = getWorldPosition();
989                 dir.set(getInlineDir());
990                 dir.normalize();
991                 dir.scale(length * 0.5);
992                 p1.set(pos);
993                 p2.set(pos);
994                 p1.sub(dir);
995                 p2.add(dir);
996         }
997
998         public void getInlineControlPointEnds(Tuple3d center, Tuple3d p1, Tuple3d p2, Vector3d dir) {
999                 assert (isInline());
1000
1001                 Vector3d pos = getWorldPosition();
1002                 center.set(pos);
1003                 dir.set(getInlineDir());
1004                 dir.normalize();
1005                 dir.scale(length * 0.5);
1006                 p1.set(pos);
1007                 p2.set(pos);
1008                 p1.sub(dir);
1009                 p2.add(dir);
1010         }
1011
1012         public Vector3d getInlineDir() {
1013                 Vector3d dir = getPathLegDirection(Direction.NEXT);
1014                 if (dir == null) {
1015                         dir = getPathLegDirection(Direction.PREVIOUS);
1016                         if (dir != null) {
1017                                 // Use reverse direction
1018                                 dir.scale(-1.0);
1019                         } else {
1020                                 // Control point is not connected at all, use current orientation
1021                                 dir = new Vector3d(1,0,0);
1022                                 MathTools.rotate(getWorldOrientation(), dir, dir);
1023                         }
1024                 }
1025                 return dir;
1026         }
1027
1028         public double getInlineLength() {
1029                 if (type == PointType.TURN)
1030                         return length;
1031                 else if (type == PointType.INLINE)
1032                         return length * 0.5;
1033                 return 0;
1034         }
1035
1036         /**
1037          * Return the position indicated by the argument. If the indicated direction is not connected, the
1038          * control point's wolrd position is returned instead.
1039          * 
1040          * @param type  A selector for the position to be returned
1041          * @return  The selected position
1042          */
1043         public Vector3d getRealPosition(PositionType type) {
1044                 Vector3d pos = getWorldPosition();
1045                 switch (type) {
1046                 case NEXT: {
1047                         double length = getInlineLength();
1048                         Vector3d dir;
1049                         if (isInline()) {
1050                                 dir = getInlineDir();
1051                         } else {
1052                                 dir = getPathLegDirection(Direction.NEXT);
1053                         }
1054                         dir.scale(length);
1055                         pos.add(dir);
1056                         break;
1057                 }
1058                 case PREVIOUS: {
1059                         double length = getInlineLength();
1060                         Vector3d dir;
1061                         if (isInline()) {
1062                                 dir = getInlineDir();
1063                                 dir.negate();
1064                         } else {
1065                                 dir = getPathLegDirection(Direction.PREVIOUS);
1066                         }
1067                         dir.scale(length);
1068                         pos.add(dir);
1069                         break;
1070                 }
1071                 case PORT:
1072                         // IEntity portDir = pcp.getSingleRelatedObject(ProcessResource.plant3Dresource.HasDirection);
1073                         // TODO : how we calculated needed space for a port; does it has an offset from control point's position or not?
1074                         break;
1075                 case SPLIT:
1076                         // do nothing
1077                         break;
1078
1079                 }
1080                 return pos;
1081         }
1082
1083         public void getInlineMovement(Tuple3d start, Tuple3d end) {
1084                 // FIXME : check type of neighbor components and allow movement on top of variable length components,
1085                 //         find proper range for movement (pcp's position is not)
1086                 PipeControlPoint p = previous.getPrevious();
1087                 PipeControlPoint n = next.getNext();
1088                 start.set(p.getWorldPosition());
1089                 end.set(n.getWorldPosition());
1090         }
1091
1092         public PipeControlPoint findNextEnd() {
1093                 ArrayList<PipeControlPoint> t = new ArrayList<PipeControlPoint>();
1094                 return findNextEnd( t);
1095         }
1096
1097         public PipeControlPoint findPreviousEnd() {
1098                 ArrayList<PipeControlPoint> t = new ArrayList<PipeControlPoint>();
1099                 return findPreviousEnd(t);
1100         }
1101
1102         public PipeControlPoint findNextEnd(List<PipeControlPoint> nextList) {
1103                 while (true) {
1104                         PipeControlPoint pcp = null;
1105                         PipeControlPoint p = null;
1106                         if (nextList.size() == 0)
1107                                 p = this;
1108
1109                         else
1110                                 p = nextList.get(nextList.size() - 1);
1111
1112                         pcp = p.getNext();
1113                         if (pcp == null) {
1114                                 pcp = p;
1115                                 if (nextList.size() > 0)
1116                                         nextList.remove(nextList.size() - 1);
1117                                 //              if (DEBUG) System.out.println(" " + pcp.getResource() + " not full");
1118                                 return pcp;
1119                                 //break;
1120                         }
1121                         if (pcp.isPathLegEnd()) {
1122                                 //if (DEBUG) System.out.println(" " + pcp.getResource());
1123                                 return pcp;
1124                         } else {
1125                                 nextList.add(pcp);
1126                                 // if (DEBUG) System.out.print(" " + pcp.getResource());
1127                         }
1128                 }
1129         }
1130
1131         public PipeControlPoint findPreviousEnd(List<PipeControlPoint> prevList) {
1132                 while (true) {
1133                         PipeControlPoint pcp = null;
1134                         PipeControlPoint p = null;
1135                         if (prevList.size() == 0)
1136                                 p = this;
1137
1138                         else
1139                                 p = prevList.get(prevList.size() - 1);
1140
1141                         pcp = p.getPrevious();
1142                         if (pcp == null) {
1143                                 pcp = p;
1144                                 if (prevList.size() > 0)
1145                                         prevList.remove(prevList.size() - 1);
1146                                 //                              if (DEBUG) System.out.println(" " + pcp.getResource() + " not full");
1147                                 return pcp;
1148                         }
1149                         if (pcp.isPathLegEnd()) {
1150                                 //                              if (DEBUG)      System.out.println(" " + pcp.getResource());
1151                                 return pcp;
1152                         } else {
1153                                 prevList.add(pcp);
1154                                 //                              if (DEBUG)System.out.print(" " + pcp.getResource());
1155                         }
1156                 }
1157         }
1158         
1159         public void _remove() {
1160             _remove(true);
1161         }
1162         
1163         
1164         public PipeControlPoint getDualSub() {
1165             if (isDualInline())
1166                 return getChildPoints().get(0);
1167             else
1168                 throw new IllegalStateException("Current control point is not dual inline");
1169         }
1170         
1171
1172         public void _remove(boolean renconnect) {
1173             if (disposed)
1174                 return;
1175                 
1176             if (DEBUG) System.out.println(this + " Remove " + renconnect);
1177
1178                 if (getParentPoint() != null) {
1179                     getParentPoint()._remove(renconnect);
1180                     return;
1181                 }
1182                 PipeRun pipeRun = getPipeRun();
1183 //              PipeRUn removal has been changed, so pipeRun may be null.
1184 //              if (pipeRun == null)
1185 //                      return;
1186
1187                 PipeControlPoint additionalRemove = null;
1188                 if (!PipingRules.isEnabled()) {
1189                     component = null;
1190                         setPrevious(null);
1191                         setNext(null);
1192                 } else {
1193
1194                         PipeControlPoint currentPrev = previous;
1195                         PipeControlPoint currentNext = next;
1196                         if (currentNext == null && currentPrev == null) {
1197                                 removeComponent();
1198                                 if (pipeRun != null) {
1199                                     pipeRun.remChild(this);
1200                                     checkRemove(pipeRun);
1201                                 }
1202                                 return;
1203                         }
1204                         if (currentNext != null && currentPrev != null) {
1205                                 boolean link = renconnect;
1206                                 if (currentNext.isBranchEnd()) {
1207                                         link = false;
1208                                         currentNext.remove();
1209                                         currentNext = null;
1210                                         setNext(null);
1211                                 }
1212                                 if (currentPrev.isBranchEnd()) {
1213                                         link = false;
1214                                         currentPrev.remove();
1215                                         currentPrev = null;
1216                                         setPrevious(null);
1217                                 }
1218                                 if (link) {
1219                                     if (currentPrev.isDirected() && currentNext.isDirected())
1220                                         link = false;
1221                                     else if (this.isDualSub()) {
1222                                         throw new RuntimeException("_remove() is called for parent point, somehow got to child point. " + this);
1223                                     }
1224                                 }
1225                                 if (currentNext == null) {
1226                                         // Nothing to do
1227                                 } else if (currentNext.isDualInline()) {
1228                                         PipeControlPoint sccp = currentNext;
1229                                         PipeControlPoint ocp = currentNext.getDualSub();
1230                                         if (ocp == null) {
1231                                                 throw new RuntimeException("Removing PipeControlPoint " + this+ " structure damaged, no offset control point");
1232                                         }
1233                                         if (link) {
1234                                                 sccp.setPrevious(currentPrev);
1235                                                 //ocp.setPrevious(currentPrev);
1236                                                 assert(ocp.getPrevious() == currentPrev);
1237                                         } else {
1238                                                 sccp.setPrevious(null);
1239                                                 //ocp.setPrevious(null);
1240                                                 assert(ocp.getPrevious() == null);
1241                                         }
1242                                         setNext(null);
1243                                 } else if (currentNext.isDualSub()) {
1244                                         throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, next control point is offset control point");
1245                                 } else if (currentNext.previous == this) {
1246                                         if (link) {
1247                                                 currentNext.setPrevious(currentPrev);
1248                                         } else {
1249                                                 currentNext.setPrevious(null);
1250                                         }
1251                                         setNext(null);
1252                                 } else if (isDualInline()) {
1253                                     if (currentNext.previous != getDualSub()) {
1254                                         throw new RuntimeException("Removing PipeControlPoint "+ this+ " structure damaged");
1255                                     }
1256                                     if (link) {
1257                         currentNext.setPrevious(currentPrev);
1258                     } else {
1259                         currentNext.setPrevious(null);
1260                     }
1261                     setNext(null);
1262                                 } else {
1263                                         throw new RuntimeException("Removing PipeControlPoint "+ this+ " structure damaged");
1264                                 }
1265                                 if (currentPrev == null) {
1266                                         // Nothing to do
1267                                 } else if (currentPrev.isDualInline()) {
1268                                         throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, previous control point is size change control point");
1269                                 } else if (currentPrev.isDualSub()) {
1270                                         PipeControlPoint ocp = currentPrev;
1271                                         PipeControlPoint sccp = currentPrev.getParentPoint();
1272                                         if (sccp == null)
1273                                                 throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, no size change control point");
1274                                         if (link) {
1275                                                 //ocp.setNext(currentNext);
1276                                                 sccp.setNext(currentNext);
1277                                                 assert(ocp.getNext() == currentNext);
1278                                         } else {
1279                                                 //ocp.setNext(null);
1280                                                 sccp.setNext(null);
1281                                                 assert(ocp.getNext() == null);
1282                                         }
1283                                         setPrevious(null);
1284                                 } else if (currentPrev.next == this) {
1285                                         if (link)
1286                                                 currentPrev.setNext(currentNext);
1287                                         else
1288                                                 currentPrev.setNext(null);
1289
1290                                         setPrevious(null);
1291                                 } else {
1292                                         throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged");
1293                                 }
1294                                 if (link) {
1295                                         if (currentNext.isVariableLength() && currentPrev.isVariableLength()) {
1296                                                 // we have to join them into single variable length component.
1297                                                 additionalRemove = currentPrev;
1298                                                 // combine lengths and set the location of remaining control point to the center.
1299                                                 Point3d ps = new Point3d();
1300                                                 Point3d pe = new Point3d();
1301                                                 Point3d ns = new Point3d();
1302                                                 Point3d ne = new Point3d();
1303                                                 currentPrev.getInlineControlPointEnds(ps, pe);
1304                                                 currentNext.getInlineControlPointEnds(ns, ne);
1305                                                 double l = currentPrev.getLength() + currentNext.getLength();
1306                                                 Vector3d cp = new Vector3d();
1307                                                 cp.add(ps, ne);
1308                                                 cp.scale(0.5);
1309                                                 currentNext.setLength(l);
1310                                                 currentNext.setWorldPosition(cp);
1311                                         }
1312                                 } else {
1313                                         // FIXME : pipe run must be split into two parts, since the control point structure is no more continuous. 
1314                                 }
1315                         } else if (currentNext != null) {
1316                                 if (currentNext.isDualInline()) {
1317                                         PipeControlPoint sccp = currentNext;
1318                                         PipeControlPoint ocp = currentNext.getDualSub();
1319                                         if (ocp == null) {
1320                                                 throw new RuntimeException("Removing PipeControlPoint " + this+ " structure damaged, no offset control point");
1321                                         }
1322                                         sccp.setPrevious(null);
1323                                         assert(ocp.getPrevious() == null);
1324                                         //ocp.setPrevious(null);
1325                                 } else if (currentNext.isDualSub()) {
1326                                         throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, next control point is offset control point");
1327                                 } else if (currentNext.previous == this) {
1328                                     currentNext.setPrevious(null);
1329                                 }  else if (isDualInline()) {
1330                     if (currentNext.previous != getDualSub()) {
1331                         throw new RuntimeException("Removing PipeControlPoint "+ this+ " structure damaged");
1332                     }
1333                     currentNext.setPrevious(null);
1334                                 } else {
1335                                         throw new RuntimeException("Removing PipeControlPoint "+ this+ " structure damaged");
1336                                 }
1337                                 setNext(null);
1338                         } else {  //(previous != null)
1339                                 if(currentPrev.isDualInline()) {
1340                                         throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, previous control point is size change control point");
1341                                 } else if (currentPrev.isDualSub()) {
1342                                         PipeControlPoint ocp = currentPrev;
1343                                         PipeControlPoint sccp = currentPrev.getParentPoint();
1344                                         if (sccp == null) {
1345                                                 throw new RuntimeException("Removing PipeControlPoint " + this + " structure damaged, no size change control point");
1346                                         }
1347                                         sccp.setNext(null);
1348                                         assert(ocp.getNext() == null);
1349                                 } else if (currentPrev.next == this) {
1350                                     currentPrev.setNext(null);
1351                                 } else {
1352                                         throw new RuntimeException("Removing PipeControlPoint "+ this+ " structure damaged");
1353                                 }
1354                                 setPrevious(null);
1355                         }
1356                         if (children.size() > 0 ) {
1357                                 removeSubPoints();
1358                         } else if (parent!= null) {
1359                                 removeParentPoint();
1360                         }
1361
1362                 }
1363
1364                 removeComponent();
1365                 if (pipeRun != null) {
1366                 pipeRun.remChild(this);
1367                 checkRemove(pipeRun);
1368                 if (PipingRules.isEnabled() && pipeRun.getParent() != null && pipeRun.getControlPoints().size() > 0)
1369                         PipingRules.validate(pipeRun);
1370                 }
1371                 if (additionalRemove != null)
1372                         additionalRemove.remove();
1373                 disposed = true;
1374         }
1375
1376         /**
1377          * Removes control point and attempts to reconnect next/prev
1378          * 
1379          * If this point is size change (PipeRuns are different on both sides), then reconnection cannot be made.
1380          */
1381         public void remove() {
1382                 PipeControlPoint currentPrev = previous;
1383                 PipeControlPoint currentNext = next;
1384                 _remove();
1385                 try {
1386                         if (currentNext != null)
1387                             if (!currentNext.checkRemove())
1388                                 PipingRules.requestUpdate(currentNext);
1389                         if (currentPrev != null)
1390                             if (!currentPrev.checkRemove())
1391                                 PipingRules.requestUpdate(currentPrev);
1392                 } catch (Exception e) {
1393                         e.printStackTrace();
1394                 }
1395         }
1396         
1397         
1398         /**
1399          * Removes control point without attempting to reconnect next/prev.
1400          * This usually leads to creation of another PipeRun for the control points after this point. 
1401          */
1402         public void removeAndSplit() {
1403         PipeControlPoint currentPrev = previous;
1404         PipeControlPoint currentNext = next;
1405         
1406         if (next != null && previous != null) {
1407             P3DRootNode root = (P3DRootNode)getPipelineComponent().getRootNode();
1408             PipeRun nextPipeRun = new PipeRun();
1409             nextPipeRun.setName(root.getUniqueName("PipeRun"));
1410             root.addChild(nextPipeRun);
1411             
1412             PipeRun previousRun = previous.getPipeRun();
1413             nextPipeRun.setPipeDiameter(previousRun.getPipeDiameter());
1414             nextPipeRun.setPipeThickness(previousRun.getPipeThickness());
1415             nextPipeRun.setTurnRadiusArray(previousRun.getTurnRadiusArray());
1416             
1417             PipelineComponent n = next.getPipelineComponent();
1418             while (n != null) {
1419                 if (n.getPipeRun() != previousRun)
1420                     break;
1421                 if (! (n instanceof Nozzle)) {
1422                     n.deattach();
1423                     nextPipeRun.addChild(n);
1424                 } else
1425                     n.setPipeRun(nextPipeRun);
1426                 n = n.getNext();
1427             }
1428         }
1429         _remove(false);
1430         try {
1431             if (currentNext != null)
1432                 if (!currentNext.checkRemove())
1433                     PipingRules.requestUpdate(currentNext);
1434             if (currentPrev != null)
1435                 if (!currentPrev.checkRemove())
1436                     PipingRules.requestUpdate(currentPrev);
1437         } catch (Exception e) {
1438             e.printStackTrace();
1439         }
1440     }
1441         
1442         /**
1443          * This is called when adjacent control point is removed.
1444          * 
1445          * This call should remove the give point, if the point cannot exist alone. 
1446          * At the moment there is one such case: branch.
1447          * 
1448          * @return
1449          */
1450         protected boolean checkRemove() {
1451             if (getParentPoint() != null) {
1452                 return getParentPoint().checkRemove();
1453             } else {
1454                 if (getPipelineComponent() == null)
1455                     return true; // already removed
1456             if (getPipelineComponent().getType().equals("Plant3D.URIs.Builtin_BranchSplitComponent")) {
1457                 if (getChildPoints().get(0).getNext() == null && getChildPoints().get(0).getPrevious() == null) {
1458                         remove();
1459                         return true;
1460                 }
1461             }
1462             return checkRemove(getPipeRun());
1463             }
1464     }
1465
1466         private boolean checkRemove(PipeRun pipeRun) {
1467             if (pipeRun == null)
1468                 return false;
1469                 Collection<PipeControlPoint> points = pipeRun.getControlPoints();
1470                 if (points.size() == 0) {
1471                         pipeRun.remove();
1472                         return true;
1473                 } else if (points.size() == 1) {
1474                         PipeControlPoint pcp = points.iterator().next();
1475                         if (pcp.isDeletable() && pcp.getNext() == null && pcp.getPrevious() == null) {
1476                                 pcp._remove(); // This call will recursively call also this method...
1477                                 return true;
1478                         }
1479                 } else if (points.size() == 2) {
1480                     
1481                 }
1482                 return false;
1483         }
1484
1485         private void removeSubPoints() {
1486                 for (PipeControlPoint p : children) {
1487                         p.parent = null;
1488                         p.component = null;
1489                         //p._remove();
1490                         PipeControlPoint currentNext = p.getNext();
1491                         PipeControlPoint currentPrev = p.getPrevious();
1492                         p._setNext(null);
1493                         p._setPrevious(null);
1494                         PipeRun run = p.getPipeRun();
1495                         if (run != null) {
1496                             run.remChild(p);
1497                             checkRemove(run);
1498                         }
1499                         if (currentNext != null)
1500                 if (!currentNext.checkRemove())
1501                     PipingRules.requestUpdate(currentNext);
1502             if (currentPrev != null)
1503                 if (!currentPrev.checkRemove())
1504                     PipingRules.requestUpdate(currentPrev);
1505             
1506                 }
1507                 children.clear();
1508         }
1509
1510         private void removeParentPoint() {
1511                 throw new RuntimeException("Child points cannot be removed directly");
1512         }
1513         
1514         public boolean isRemoved() {
1515             return component == null;
1516         }
1517
1518         private void removeComponent() {
1519                 if (component == null)
1520                         return;
1521                 PipelineComponent next = component.getNext();
1522                 PipelineComponent prev = component.getPrevious();
1523                 PipelineComponent br0 = component.getBranch0();
1524                 component.setNext(null);
1525                 component.setPrevious(null);
1526                 component.setBranch0(null);
1527                 if (next != null) {
1528                         if (next.getNext() == component)
1529                                 next.setNext(null);
1530                         else if (next.getPrevious() == component)
1531                                 next.setPrevious(null);
1532                         else if (next.getBranch0() == component)
1533                                 next.setBranch0(null);
1534                 }
1535                 if (prev != null) {
1536                         if (prev.getNext() == component)
1537                                 prev.setNext(null);
1538                         else if (prev.getPrevious() == component)
1539                                 prev.setPrevious(null);
1540                         else if (prev.getBranch0() == component)
1541                                 prev.setBranch0(null);
1542                 }
1543                 if (br0 != null) {
1544                         if (br0.getNext() == component)
1545                                 br0.setNext(null);
1546                         else if (br0.getPrevious() == component)
1547                                 br0.setPrevious(null);
1548                         else if (br0.getBranch0() == component)
1549                                 br0.setBranch0(null);
1550                 }
1551                 PipelineComponent comp = component;
1552                 component = null;
1553
1554                 comp.remove();
1555         }
1556
1557         @Override
1558         public void setOrientation(Quat4d orientation) {
1559                 if (MathTools.equals(orientation, getOrientation()))
1560                         return;
1561                 if (getPipelineComponent() != null && (getPipelineComponent() instanceof Nozzle))
1562                     System.out.println();
1563                 super.setOrientation(orientation);
1564                 if (getParentPoint() == null && component != null)
1565                         component._setWorldOrientation(getWorldOrientation());
1566                 updateSubPoint();
1567         }
1568
1569         @Override
1570         public void setPosition(Vector3d position) {
1571                 if (MathTools.equals(position, getPosition()))
1572                         return;
1573                 if (Double.isNaN(position.x) || Double.isNaN(position.y) || Double.isNaN(position.z))
1574                         throw new IllegalArgumentException("NaN is not supported");
1575                 super.setPosition(position);
1576                 if (getParentPoint() == null && component != null)
1577                         component._setWorldPosition(getWorldPosition());
1578                 updateSubPoint();
1579         }
1580         
1581         private void updateSubPoint() {
1582                 if (isOffset()) {
1583                         if (next == null && previous == null) {
1584                                 for (PipeControlPoint sub : getChildPoints()) {
1585                                         sub.setWorldPosition(getWorldPosition());
1586                                         sub.setWorldOrientation(getWorldOrientation());
1587                                 }
1588                                 return;
1589                         }
1590                         for (PipeControlPoint sub : getChildPoints()) {
1591                                 Vector3d wp = getWorldPosition();
1592                                 wp.add(getSizeChangeOffsetVector());
1593                                 sub.setWorldPosition(wp);
1594                                 sub.setWorldOrientation(getWorldOrientation());
1595                         }
1596                 } else {
1597                         for (PipeControlPoint sub : getChildPoints()) {
1598                                 sub.setWorldPosition(getWorldPosition());
1599                                 sub.setWorldOrientation(getWorldOrientation());
1600                         }
1601                 }
1602         }
1603
1604
1605         public void _setWorldPosition(Vector3d position) {
1606                 Vector3d localPos = getLocalPosition(position);
1607                 super.setPosition(localPos);
1608                 updateSubPoint();
1609         }
1610
1611         public void _setWorldOrientation(Quat4d orientation) {
1612                 Quat4d localOr = getLocalOrientation(orientation);
1613                 super.setOrientation(localOr);
1614                 updateSubPoint();
1615         }
1616
1617         @Override
1618         public String toString() {
1619                 return getClass().getName() + "@" + Integer.toHexString(hashCode());
1620         }
1621
1622 }