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0052604: [TC7.5.1] GetInPlace failure
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@ -126,93 +126,75 @@ Standard_Integer GEOMAlgo_GetInPlaceAPI::GetInPlaceOld
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return 1;
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return 1;
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}
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}
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TopoDS_Shape aPntShape;
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// Check shape type.
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TopoDS_Vertex aVertex;
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TopAbs_ShapeEnum iType = GEOMUtils::GetTypeOfSimplePart(theWhat);
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bool isFound = false;
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TopAbs_ShapeEnum iType = TopAbs_SOLID;
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//Standard_Real aWhat_Mass = 0., aWhere_Mass = 0.;
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Standard_Real tab_aWhat[4], tab_aWhere[4];
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Standard_Real dl_l = 1e-3;
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Standard_Real min_l, Tol_0D, Tol_1D, Tol_2D, Tol_3D, Tol_Mass;
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Standard_Real aXmin, aYmin, aZmin, aXmax, aYmax, aZmax;
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Bnd_Box BoundingBox;
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gp_Pnt aPnt, aPnt_aWhat, tab_Pnt[2];
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GProp_GProps aProps;
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iType = GEOMUtils::GetTypeOfSimplePart(theWhat);
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if (iType == TopAbs_SHAPE) {
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if (iType == TopAbs_SHAPE) {
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// Error: An attempt to extract a shape of not supported type.
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// Error: An attempt to extract a shape of not supported type.
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return 2;
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return 2;
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}
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}
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TopExp_Explorer Exp_aWhat ( theWhat, iType );
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// Compute confusion tolerance.
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TopExp_Explorer Exp_aWhere ( theWhere, iType );
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Standard_Real aTolConf = Precision::Confusion();
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TopExp_Explorer Exp_Edge ( theWhere, TopAbs_EDGE );
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Standard_Integer i;
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// Find the shortest edge in theShapeWhere shape
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for (i = 0; i < 2; ++i) {
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BRepBndLib::Add(theWhere, BoundingBox);
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TopExp_Explorer anExp(i == 0 ? theWhere : theWhat, TopAbs_VERTEX);
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BoundingBox.Get(aXmin, aYmin, aZmin, aXmax, aYmax, aZmax);
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min_l = fabs(aXmax - aXmin);
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for (; anExp.More(); anExp.Next()) {
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if( min_l < fabs(aYmax - aYmin) ) min_l = fabs(aYmax - aYmin);
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const TopoDS_Vertex aVtx = TopoDS::Vertex(anExp.Current());
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if( min_l < fabs(aZmax - aZmin) ) min_l = fabs(aZmax - aZmin);
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const Standard_Real aTolVtx = BRep_Tool::Tolerance(aVtx);
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min_l /= dl_l;
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// Mantis issue 0020908 BEGIN
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if (aTolVtx > aTolConf) {
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if (!Exp_Edge.More()) {
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aTolConf = aTolVtx;
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min_l = Precision::Confusion();
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}
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}
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// Mantis issue 0020908 END
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for ( Standard_Integer nbEdge = 0; Exp_Edge.More(); Exp_Edge.Next(), nbEdge++ ) {
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TopExp_Explorer Exp_Vertex( Exp_Edge.Current(), TopAbs_VERTEX);
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for ( Standard_Integer nbVertex = 0; Exp_Vertex.More(); Exp_Vertex.Next(), nbVertex++ ) {
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aPnt = BRep_Tool::Pnt( TopoDS::Vertex( Exp_Vertex.Current() ) );
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tab_Pnt[nbVertex] = aPnt;
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}
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if ( ! tab_Pnt[0].IsEqual(tab_Pnt[1], dl_l) ) {
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BRepGProp::LinearProperties(Exp_Edge.Current(), aProps);
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if ( aProps.Mass() < min_l ) min_l = aProps.Mass();
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}
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}
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}
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}
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// Compute tolerances
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// Compute mass tolerance.
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Tol_0D = dl_l;
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Bnd_Box aBoundingBox;
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Tol_1D = dl_l * min_l;
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Standard_Real aXmin, aYmin, aZmin, aXmax, aYmax, aZmax;
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Tol_2D = dl_l * ( min_l * min_l) * ( 2. + dl_l);
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Standard_Real aMassTol;
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Tol_3D = dl_l * ( min_l * min_l * min_l ) * ( 3. + (3 * dl_l) + (dl_l * dl_l) );
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if (Tol_0D < Precision::Confusion()) Tol_0D = Precision::Confusion();
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BRepBndLib::Add(theWhere, aBoundingBox);
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if (Tol_1D < Precision::Confusion()) Tol_1D = Precision::Confusion();
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BRepBndLib::Add(theWhat, aBoundingBox);
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if (Tol_2D < Precision::Confusion()) Tol_2D = Precision::Confusion();
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aBoundingBox.Get(aXmin, aYmin, aZmin, aXmax, aYmax, aZmax);
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if (Tol_3D < Precision::Confusion()) Tol_3D = Precision::Confusion();
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aMassTol = Max(aXmax - aXmin, aYmax - aYmin);
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aMassTol = Max(aMassTol, aZmax - aZmin);
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aMassTol *= aTolConf;
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Tol_Mass = Tol_3D;
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// Compute the result.
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if ( iType == TopAbs_VERTEX ) Tol_Mass = Tol_0D;
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TopExp_Explorer Exp_aWhat (theWhat, iType);
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else if ( iType == TopAbs_EDGE ) Tol_Mass = Tol_1D;
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TopExp_Explorer Exp_aWhere (theWhere, iType);
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else if ( iType == TopAbs_FACE ) Tol_Mass = Tol_2D;
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Standard_Real tab_aWhat[4], tab_aWhere[4];
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gp_Pnt aPnt, aPnt_aWhat;
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// Searching for the sub-shapes inside the ShapeWhere shape
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TopoDS_Shape aPntShape;
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TopoDS_Vertex aVertex;
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bool isFound = false;
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TopTools_MapOfShape map_aWhere;
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TopTools_MapOfShape map_aWhere;
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for ( Exp_aWhere.ReInit(); Exp_aWhere.More(); Exp_aWhere.Next() ) {
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for (; Exp_aWhere.More(); Exp_aWhere.Next()) {
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if (!map_aWhere.Add(Exp_aWhere.Current()))
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if (!map_aWhere.Add(Exp_aWhere.Current()))
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continue; // skip repeated shape to avoid mass addition
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continue; // skip repeated shape to avoid mass addition
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GetShapeProperties( Exp_aWhere.Current(), tab_aWhere, aPnt );
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GetShapeProperties( Exp_aWhere.Current(), tab_aWhere, aPnt );
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for ( Exp_aWhat.ReInit(); Exp_aWhat.More(); Exp_aWhat.Next() ) {
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for ( Exp_aWhat.ReInit(); Exp_aWhat.More(); Exp_aWhat.Next() ) {
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GetShapeProperties( Exp_aWhat.Current(), tab_aWhat, aPnt_aWhat );
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GetShapeProperties( Exp_aWhat.Current(), tab_aWhat, aPnt_aWhat );
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if ( fabs(tab_aWhat[3] - tab_aWhere[3]) <= Tol_Mass && aPnt_aWhat.Distance(aPnt) <= Tol_1D )
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if (fabs(tab_aWhat[3] - tab_aWhere[3]) <= aMassTol && aPnt_aWhat.Distance(aPnt) <= aTolConf)
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isFound = true;
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isFound = true;
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else {
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else {
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if ( (tab_aWhat[3] - tab_aWhere[3]) > Tol_Mass ) {
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if ((tab_aWhat[3] - tab_aWhere[3]) > aMassTol) {
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aPntShape = BRepBuilderAPI_MakeVertex( aPnt ).Shape();
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aPntShape = BRepBuilderAPI_MakeVertex( aPnt ).Shape();
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aVertex = TopoDS::Vertex( aPntShape );
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aVertex = TopoDS::Vertex( aPntShape );
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BRepExtrema_DistShapeShape aWhereDistance ( aVertex, Exp_aWhere.Current() );
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BRepExtrema_DistShapeShape aWhereDistance ( aVertex, Exp_aWhere.Current() );
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BRepExtrema_DistShapeShape aWhatDistance ( aVertex, Exp_aWhat.Current() );
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BRepExtrema_DistShapeShape aWhatDistance ( aVertex, Exp_aWhat.Current() );
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if ( aWhereDistance.IsDone() && aWhatDistance.IsDone() &&
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if (aWhereDistance.IsDone() && aWhatDistance.IsDone() &&
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fabs(aWhereDistance.Value() - aWhatDistance.Value()) <= Tol_1D )
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fabs(aWhereDistance.Value() - aWhatDistance.Value()) <= aTolConf)
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{
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{
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// 0020162: "EDF 961 GEOM : Getinplace is getting additionnal orthogonal faces"
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// 0020162: "EDF 961 GEOM : Getinplace is getting additionnal orthogonal faces"
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// aVertex must be projected to the same point on Where and on What
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// aVertex must be projected to the same point on Where and on What
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gp_Pnt pOnWhat = aWhatDistance.PointOnShape2(1);
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gp_Pnt pOnWhat = aWhatDistance.PointOnShape2(1);
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gp_Pnt pOnWhere = aWhereDistance.PointOnShape2(1);
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gp_Pnt pOnWhere = aWhereDistance.PointOnShape2(1);
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isFound = ( pOnWhat.Distance(pOnWhere) <= Tol_1D );
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isFound = (pOnWhat.Distance(pOnWhere) <= aTolConf);
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if ( isFound && iType == TopAbs_FACE )
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if ( isFound && iType == TopAbs_FACE )
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{
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{
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// check normals at pOnWhat and pOnWhere
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// check normals at pOnWhat and pOnWhere
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