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@@ -394,94 +394,85 @@ Standard_Boolean IsDistanceIn3DTolerance (const gp_Pnt& thePnt_f,
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}
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//=======================================================================
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//function : IsDistanceIn3DTolerance
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//function : IsDistanceIn2DTolerance
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//purpose :
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//=======================================================================
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static
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Standard_Boolean IsDistanceIn2DTolerance (const BRepAdaptor_Surface& aFaceSurface,
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const gp_Pnt2d& thePnt,
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const gp_Pnt2d& thePntRef,
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const Standard_Real aTol3d,
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#ifdef OCCT_DEBUG
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const Standard_Boolean PrintWarnings = Standard_True)
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#else
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const Standard_Boolean = Standard_True)
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#endif
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const Standard_Real aTol3d)
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{
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Standard_Real dumax = 0.01 * (aFaceSurface.LastUParameter() - aFaceSurface.FirstUParameter());
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Standard_Real dvmax = 0.01 * (aFaceSurface.LastVParameter() - aFaceSurface.FirstVParameter());
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Standard_Real dumin = Abs(thePnt.X() - thePntRef.X());
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Standard_Real dvmin = Abs(thePnt.Y() - thePntRef.Y());
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const Standard_Real aFactor = 0.01;
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const Standard_Real aDeltaUPar = (aFaceSurface.LastUParameter() -
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aFaceSurface.FirstUParameter());
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const Standard_Real aDeltaVPar = (aFaceSurface.LastVParameter() -
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aFaceSurface.FirstVParameter());
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const Standard_Real aDist2dU = Abs(thePnt.X() - thePntRef.X());
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const Standard_Real aDist2dV = Abs(thePnt.Y() - thePntRef.Y());
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if((dumin < dumax) && (dvmin < dvmax))
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if((aDist2dU < (aFactor*aDeltaUPar)) && (aDist2dV < (aFactor*aDeltaVPar)))
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return Standard_True;
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Standard_Real aUTol = aFaceSurface.UResolution(aTol3d);
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Standard_Real aVTol = aFaceSurface.VResolution(aTol3d);
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#ifdef OCCT_DEBUG
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if(PrintWarnings)
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{
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cout << endl;
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cout << "--------Function IsDistanceIn2DTolerance(...)----------" << endl;
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cout << "--- BRepCheck Wire: Not closed in 2D" << endl;
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cout << "*****************************************************" << endl;
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cout << "*dumin = " << dumin << "; dumax = " << dumax << endl;
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cout << "* dvmin = " << dvmin << "; dvmax = " << dvmax << endl;
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cout << "* (dumin > dumax) or (dvmin > dvmax)." << endl;
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cout << "*****************************************************" << endl;
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cout << endl;
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cout << "UFirst = " << aFaceSurface.FirstUParameter();
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cout << "; ULast = " << aFaceSurface.LastUParameter() << endl;
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cout << "VFirst = " << aFaceSurface.FirstVParameter();
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cout << "; VLast = " << aFaceSurface.LastVParameter() << endl;
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}
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dumax = aFaceSurface.UResolution(aTol3d);
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dvmax = aFaceSurface.VResolution(aTol3d);
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if(PrintWarnings)
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{
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cout << "aTol3d = " << aTol3d <<"; URes = " << dumax << "; VRes = " << dvmax << endl;
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cout << "thePnt(" << thePnt.X() << "; " << thePnt.Y() << ")" << endl;
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cout << "thePntRef(" << thePntRef.X() << "; " << thePntRef.Y() << ")" << endl;
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}
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#else
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dumax = aFaceSurface.UResolution(aTol3d);
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dvmax = aFaceSurface.VResolution(aTol3d);
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cout << endl;
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cout << "--------Function IsDistanceIn2DTolerance(...)----------" << endl;
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cout << "--- BRepCheck Wire: Not closed in 2D" << endl;
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cout << "*****************************************************" << endl;
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cout << "*aDist2dU = " << aDist2dU << "; aDeltaUPar = " << aFactor*aDeltaUPar << endl;
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cout << "* aDist2dV = " << aDist2dV << "; aDeltaVPar = " << aFactor*aDeltaVPar << endl;
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cout << "* (aDist2dU > aDeltaUPar) or (aDist2dV > aDeltaVPar)." << endl;
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cout << "*****************************************************" << endl;
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cout << endl;
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cout << "UFirst = " << aFaceSurface.FirstUParameter();
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cout << "; ULast = " << aFaceSurface.LastUParameter() << endl;
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cout << "VFirst = " << aFaceSurface.FirstVParameter();
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cout << "; VLast = " << aFaceSurface.LastVParameter() << endl;
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cout << "thePnt(" << thePnt.X() << "; " << thePnt.Y() << ")" << endl;
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cout << "thePntRef(" << thePntRef.X() << "; " << thePntRef.Y() << ")" << endl;
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#endif
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Standard_Real aTol2d = 2*Max( dumax, dvmax);
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if(aUTol >= aDeltaUPar)
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{//Singular case
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aUTol = 0.0;
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}
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if(aVTol >= aDeltaVPar)
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{//Singular case
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aVTol = 0.0;
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}
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Standard_Real aTol2d = 2*Max(aUTol, aVTol);
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#ifdef OCCT_DEBUG
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if((aTol2d <= 0.0) && (PrintWarnings))
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{
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if(aTol2d <= 0.0)
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{
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cout<<"BRepCheck_Wire : UResolution and VResolution = 0.0 (Face too small ?)"<<endl;
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cout.flush();
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}
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}
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#endif
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//Standard_Real Dist = thePntRef.Distance(thePnt);
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Standard_Real Dist = Max(dumin, dvmin);
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//Standard_Real aDist = thePntRef.Distance(thePnt);
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Standard_Real aDist = Max(aDist2dU, aDist2dV);
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if (Dist < aTol2d)
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if (aDist < aTol2d)
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return Standard_True;
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#ifdef OCCT_DEBUG
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if(PrintWarnings)
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{
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cout << endl;
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cout << "--------Function IsDistanceIn2DTolerance(...)----------" << endl;
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cout << "--- BRepCheck Wire: Not closed in 2d" << endl;
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cout << "*****************************************************" << endl;
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cout << "* Dist = " << Dist << " > Tol2d = " << aTol2d << endl;
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cout << "*****************************************************" << endl;
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cout << "aTol3d = " << aTol3d <<"; URes = " << dumax << "; VRes = " << dvmax << endl;
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cout << "thePnt(" << thePnt.X() << "; " << thePnt.Y() << ")" << endl;
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cout << "thePntRef(" << thePntRef.X() << "; " << thePntRef.Y() << ")" << endl;
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}
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cout << endl;
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cout << "--------Function IsDistanceIn2DTolerance(...)----------" << endl;
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cout << "--- BRepCheck Wire: Not closed in 2d" << endl;
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cout << "*****************************************************" << endl;
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cout << "* Dist = " << aDist << " > Tol2d = " << aTol2d << endl;
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cout << "*****************************************************" << endl;
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cout << "aTol3d = " << aTol3d <<"; URes = " << aUTol << "; VRes = " << aVTol << endl;
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#endif
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return Standard_False;
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}
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}
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//=======================================================================
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//function : Closed2d
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@@ -606,7 +597,22 @@ BRepCheck_Status BRepCheck_Wire::Closed2d(const TopoDS_Face& theFace,
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// aUResol = 2*aFaceSurface.UResolution(aTol);
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// aVResol = 2*aFaceSurface.VResolution(aTol);
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Standard_Real aTol3d = Max(BRep_Tool::Tolerance(aFirstVertex),BRep_Tool::Tolerance(aWireExp.CurrentVertex()));
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// get first point
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if(aNbFoundEdges == 1)
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{
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BRep_Tool::UVPoints(aFirstEdge, theFace, aP_first, aP_last);
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if(!IsDistanceIn2DTolerance(aFaceSurface, aP_first, aP_last, aTol3d))
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{
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aClosedStat = BRepCheck_NotClosed;
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if (Update)
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BRepCheck::Add(myMap(myShape),aClosedStat);
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return aClosedStat;
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}
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}
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if (aFirstEdge.Orientation() == TopAbs_REVERSED)
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BRep_Tool::UVPoints(aFirstEdge, theFace, aP_temp, aP_first);
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else
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@@ -630,8 +636,6 @@ BRepCheck_Status BRepCheck_Wire::Closed2d(const TopoDS_Face& theFace,
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// if (dfUDist > aUResol || dfVDist > aVResol)
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// {
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Standard_Real aTol3d = Max(BRep_Tool::Tolerance(aFirstVertex),BRep_Tool::Tolerance(aWireExp.CurrentVertex()));
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gp_Pnt aPntRef = BRep_Tool::Pnt(aFirstVertex);
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gp_Pnt aPnt = BRep_Tool::Pnt(aWireExp.CurrentVertex());
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@@ -1653,7 +1657,7 @@ void ChoixUV(const TopoDS_Vertex& theVertex,
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aParam =(aVOrientation != anE.Orientation()) ? aFirstParam : aLastParam;
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aPnt = C2d->Value(aParam);
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if(!IsDistanceIn2DTolerance(aFaceSurface, aPnt, aPntRef, aTol3d, Standard_False))
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if(!IsDistanceIn2DTolerance(aFaceSurface, aPnt, aPntRef, aTol3d))
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continue;
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CurveDirForParameter(C2d, aParam, aPnt, aDer);
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