+ UpdatePrs();
+}
+
+bool HYDROData_Stream::IsHas2dPrs() const
+{
+ return true;
+}
+
+bool HYDROData_Stream::CreatePresentations( const Handle(HYDROData_PolylineXY)& theHydAxis,
+ const HYDROData_SequenceOfObjects& theProfiles,
+ PrsDefinition& thePrs )
+{
+ if ( theHydAxis.IsNull() || theProfiles.Length() < 2 )
+ return false;
+
+ gp_Pnt aPrevFirstPoint, aPrevLastPoint;
+ Handle(TColgp_HArray1OfPnt) anArrayOfFPnt = new TColgp_HArray1OfPnt(1, theProfiles.Length());
+ Handle(TColgp_HArray1OfPnt) anArrayOfLPnt = new TColgp_HArray1OfPnt(1, theProfiles.Length());
+ TopTools_Array1OfShape anArrOfProfiles(1, theProfiles.Length());
+ TopTools_Array1OfShape anArrOf2DProfiles(1, theProfiles.Length());
+
+ // Pre-processing
+ HYDROData_SequenceOfObjects::Iterator anIter( theProfiles );
+ for (int i=1 ; anIter.More(); anIter.Next(),i++ )
+ {
+ Handle(HYDROData_Profile) aProfile =
+ Handle(HYDROData_Profile)::DownCast( anIter.Value() );
+ if ( aProfile.IsNull() )
+ continue;
+
+ const TopoDS_Shape& aProf3d = aProfile->GetShape3D();
+ gp_XY aPnt1, aPnt2;
+ if ( !aProfile->GetLeftPoint( aPnt1, false ) || !aProfile->GetRightPoint( aPnt2, false ) )
+ continue;
+
+ anArrOfProfiles.SetValue(i,aProfile->GetShape3D());//aProfile->GetTopShape();
+ anArrOf2DProfiles.SetValue(i,aProfile->GetTopShape());
+
+ gp_Pnt aCurFirstPoint( aPnt1.X(), aPnt1.Y(), 0 ), aCurFP;
+ gp_Pnt aCurLastPoint( aPnt2.X(), aPnt2.Y(), 0 ), aCurLP;
+ TopoDS_Vertex aV1, aV2;
+ TopExp::Vertices(TopoDS::Wire(aProf3d), aV1, aV2);
+ gp_Pnt aP1 = BRep_Tool::Pnt(aV1);
+ if(aP1.X() == aPnt1.X() && aP1.Y() == aPnt1.Y())
+ aCurFP = aP1;
+ else
+ aCurLP = aP1;
+ aP1 = BRep_Tool::Pnt(aV2);
+ if(aP1.X() == aPnt2.X() && aP1.Y() == aPnt2.Y())
+ aCurLP = aP1;
+ else
+ aCurFP = aP1;
+ anArrayOfFPnt->SetValue(i,aCurFP);
+ anArrayOfLPnt->SetValue(i,aCurLP);
+ }
+
+ // Construct of the 3D presentation
+ Handle(Geom_BSplineCurve) aBSpline = buildInterpolationCurve (anArrayOfFPnt);
+ if(aBSpline.IsNull())
+ return false;
+
+ TopoDS_Edge anEdgLeft, anEdgRight;
+
+ BRepBuilderAPI_MakeEdge aMakeEdge(aBSpline);
+ if(aMakeEdge.IsDone())
+ anEdgLeft = aMakeEdge.Edge();
+
+ if(anEdgLeft.IsNull())
+ return false;
+
+ aBSpline.Nullify();
+ aBSpline = buildInterpolationCurve (anArrayOfLPnt);
+ if(aBSpline.IsNull())
+ return false;
+
+ aMakeEdge.Init(aBSpline);
+ if(aMakeEdge.IsDone())
+ anEdgRight = aMakeEdge.Edge();
+
+ if(anEdgRight.IsNull())
+ return false;
+
+ BRep_Builder aBB;
+ TopoDS_Compound aCmp;
+ aBB.MakeCompound(aCmp);
+ anIter.Init( theProfiles );
+ for (int i=1 ; i < anArrOfProfiles.Length() +1; i++ )
+ aBB.Add(aCmp, anArrOfProfiles.Value(i));
+
+ aBB.Add(aCmp,anEdgLeft);
+ aBB.Add(aCmp,anEdgRight);
+ BRepCheck_Analyzer aCh(aCmp);
+ if(aCh.IsValid())
+ thePrs.myPrs3D = aCmp;
+#ifdef DEB_UPDATE
+ else {
+ BRepTools::Write(aCmp, "str3d.brep");
+ thePrs.myPrs3D = aCmp;
+ }
+#endif
+
+ // Construct the top presentation
+ for(int i=1;i<= anArrayOfLPnt->Length();i++) {
+ gp_Pnt aPnt = anArrayOfFPnt->Value(i);
+ aPnt.SetZ(.0); // make 2d
+ anArrayOfFPnt->SetValue(i, aPnt);
+ aPnt = anArrayOfLPnt->Value(i);
+ aPnt.SetZ(.0);
+ anArrayOfLPnt->SetValue(i, aPnt);
+ }
+
+ aBSpline.Nullify();
+ aBSpline = buildInterpolationCurve (anArrayOfFPnt);
+ if(aBSpline.IsNull())
+ return false;
+
+ aMakeEdge.Init(aBSpline);
+ if(aMakeEdge.IsDone())
+ anEdgLeft = aMakeEdge.Edge();
+
+ aBSpline.Nullify();
+ aBSpline = buildInterpolationCurve (anArrayOfLPnt);
+ if(aBSpline.IsNull())
+ return false;
+
+ aMakeEdge.Init(aBSpline);
+ if(aMakeEdge.IsDone())
+ anEdgRight = aMakeEdge.Edge();
+ if(anEdgRight.IsNull())
+ return false;
+
+ BRepBuilderAPI_MakeEdge aMakeEdge2(anArrayOfFPnt->Value(1),anArrayOfLPnt->Value(1));
+ TopoDS_Edge aBotEdge, aTopEdge;
+ if(aMakeEdge2.IsDone())
+ aBotEdge = aMakeEdge2.Edge();
+
+ BRepBuilderAPI_MakeEdge aMakeEdge3(anArrayOfFPnt->Value(anArrayOfFPnt->Length()),anArrayOfLPnt->Value(anArrayOfLPnt->Length()));
+ if(aMakeEdge3.IsDone())
+ aTopEdge = aMakeEdge3.Edge();
+
+ // Make wire for 2D presentation with updating of corresponding edges
+ BRepBuilderAPI_MakeWire aMakeWire;
+
+ aMakeWire.Add( aBotEdge );
+ thePrs.myInlet = aMakeWire.Edge();
+
+ aMakeWire.Add( anEdgLeft );
+ thePrs.myLeftBank = aMakeWire.Edge();
+
+ aMakeWire.Add( aTopEdge );
+ thePrs.myOutlet = aMakeWire.Edge();
+
+ aMakeWire.Add( anEdgRight );
+ thePrs.myRightBank = aMakeWire.Edge();
+
+ TopoDS_Wire aSectProfileWire;
+ if(aMakeWire.IsDone())
+ aSectProfileWire = aMakeWire.Wire();
+
+ BRepBuilderAPI_MakeFace aMakeFace( aSectProfileWire, Standard_True );
+ TopoDS_Face aFace;
+ aMakeFace.Build();
+ if( aMakeFace.IsDone() )
+ aFace = aMakeFace.Face();
+
+ aCmp.Nullify();
+ aBB.MakeCompound(aCmp);
+ aBB.Add(aCmp,aFace);
+ for(int i=1;i <= anArrOf2DProfiles.Length(); i++)
+ aBB.Add(aCmp,anArrOf2DProfiles.Value(i));
+
+ aCh.Init(aCmp);
+ if(aCh.IsValid())
+ thePrs.myPrs2D = aCmp;
+#ifdef DEB_UPDATE
+ else {
+ BRepTools::Write(aCmp, "str2d.brep");
+ thePrs.myPrs2D = aCmp;
+ }
+#endif
+
+ return true;
+}
+
+void HYDROData_Stream::UpdatePrs()
+{
+ HYDROData_NaturalObject::Update();
+
+ Handle(HYDROData_PolylineXY) aHydAxis = GetHydraulicAxis();
+ HYDROData_SequenceOfObjects aRefProfiles = GetProfiles();
+
+ PrsDefinition aResultPrs;
+ if ( !CreatePresentations( aHydAxis, aRefProfiles, aResultPrs ) )
+ return;
+
+ SetShape3D( aResultPrs.myPrs3D );
+ SetTopShape( aResultPrs.myPrs2D );
+
+ // Create the stream groups
+ QString aLeftGroupName = GetName() + "_Left_Bank";
+
+ Handle(HYDROData_ShapesGroup) aLeftGroup = createGroupObject();
+ aLeftGroup->SetName( aLeftGroupName );
+ aLeftGroup->AddShape( aResultPrs.myLeftBank );
+
+ QString aRightGroupName = GetName() + "_Right_Bank";
+
+ Handle(HYDROData_ShapesGroup) aRightGroup = createGroupObject();
+ aRightGroup->SetName( aRightGroupName );
+ aRightGroup->AddShape( aResultPrs.myRightBank );
+
+ QString anInGroupName = GetName() + "_Inlet";
+
+ Handle(HYDROData_ShapesGroup) anInGroup = createGroupObject();
+ anInGroup->SetName( anInGroupName );
+ anInGroup->AddShape( aResultPrs.myInlet );
+
+ QString anOutGroupName = GetName() + "_Outlet";
+
+ Handle(HYDROData_ShapesGroup) anOutGroup = createGroupObject();
+ anOutGroup->SetName( anOutGroupName );
+ anOutGroup->AddShape( aResultPrs.myOutlet );