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EDF 2281 : Dump correction
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@ -216,6 +216,7 @@ TopoDS_Shell GEOMImpl_DividedDiskDriver::MakeDiskHexagon(double R, double Ratio)
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for (int i=1;i<=6;i++)
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for (int i=1;i<=6;i++)
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{
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{
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// Edges
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// Edges
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// for Face1
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// for Face1
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E2 = BRepBuilderAPI_MakeEdge(aCircle, V2, TopoDS::Vertex(V3.Reversed()));
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E2 = BRepBuilderAPI_MakeEdge(aCircle, V2, TopoDS::Vertex(V3.Reversed()));
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E3 = BRepBuilderAPI_MakeEdge(V3,TopoDS::Vertex(V4.Reversed()));
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E3 = BRepBuilderAPI_MakeEdge(V3,TopoDS::Vertex(V4.Reversed()));
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@ -239,6 +240,7 @@ TopoDS_Shell GEOMImpl_DividedDiskDriver::MakeDiskHexagon(double R, double Ratio)
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// Wires
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// Wires
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//Wire1
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//Wire1
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aBuilder.MakeWire(W1);
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aBuilder.MakeWire(W1);
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if (i==1)
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if (i==1)
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@ -2285,9 +2285,21 @@ Handle(GEOM_Object) GEOMImpl_IAdvancedOperations::MakeDividedDisk (double theR,
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SetErrorCode(aFail->GetMessageString());
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SetErrorCode(aFail->GetMessageString());
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return NULL;
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return NULL;
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}
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}
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std::string aPatternStr;
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switch(thePattern)
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{
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case 0:
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aPatternStr = "GEOM.SQUARE";
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break;
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case 1:
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aPatternStr = "GEOM.HEXAGON";
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break;
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}
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//Make a Python command
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//Make a Python command
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedDisk(" << theR << ", " << theOrientation << ")";
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedDisk(" << theR << ", " << theOrientation << ", " << aPatternStr.c_str() << ")";
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SetErrorCode(OK);
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SetErrorCode(OK);
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@ -2350,9 +2362,22 @@ Handle(GEOM_Object) GEOMImpl_IAdvancedOperations::MakeDividedDiskPntVecR (Handle
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SetErrorCode(aFail->GetMessageString());
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SetErrorCode(aFail->GetMessageString());
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return NULL;
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return NULL;
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}
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}
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std::string aPatternStr;
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switch(thePattern)
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{
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case 0:
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aPatternStr = "GEOM.SQUARE";
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break;
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case 1:
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aPatternStr = "GEOM.HEXAGON";
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break;
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}
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//Make a Python command
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//Make a Python command
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedDiskPntVecR(" << thePnt << ", " << theVec << ", " << theR << ")";
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedDiskPntVecR(" << thePnt << ", " << theVec << ", " << theR << ", " << aPatternStr.c_str() << ")";
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SetErrorCode(OK);
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SetErrorCode(OK);
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@ -2385,8 +2410,20 @@ Handle(GEOM_Object) GEOMImpl_IAdvancedOperations::MakeDividedCylinder (double th
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aFunction->SetDescription(""); // Erase dump of MakePrismDXDYDZ
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aFunction->SetDescription(""); // Erase dump of MakePrismDXDYDZ
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aShape->SetType(GEOM_DIVIDEDCYLINDER);
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aShape->SetType(GEOM_DIVIDEDCYLINDER);
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std::string aPatternStr;
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switch(thePattern)
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{
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case 0:
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aPatternStr = "GEOM.SQUARE";
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break;
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case 1:
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aPatternStr = "GEOM.HEXAGON";
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break;
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}
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//Make a Python command
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//Make a Python command
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedCylinder(" << theR << ", " << theH << ")";
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GEOM::TPythonDump(aFunction) << aShape << " = geompy.MakeDividedCylinder(" << theR << ", " << theH << ", " << aPatternStr.c_str() << ")";
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SetErrorCode(OK);
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SetErrorCode(OK);
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@ -8553,12 +8553,13 @@ class geompyDC(GEOM._objref_GEOM_Gen):
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# @param theR Radius of the disk
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# @param theR Radius of the disk
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# @param theOrientation Orientation of the plane on which the disk will be built
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# @param theOrientation Orientation of the plane on which the disk will be built
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# 1 = XOY, 2 = OYZ, 3 = OZX
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# 1 = XOY, 2 = OYZ, 3 = OZX
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# @param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
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# @return New GEOM_Object, containing the created shape.
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# @return New GEOM_Object, containing the created shape.
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#
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#
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# @ref tui_creation_divideddisk "Example"
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# @ref tui_creation_divideddisk "Example"
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def MakeDividedDisk(self, theR, theOrientation):
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def MakeDividedDisk(self, theR, theOrientation, thePattern ):
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theR, theOrientation, Parameters = ParseParameters(theR, theOrientation)
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theR, Parameters = ParseParameters(theR)
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anObj = self.AdvOp.MakeDividedDisk(theR, 50.0, theOrientation)
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anObj = self.AdvOp.MakeDividedDisk(theR, 67.0, theOrientation, thePattern)
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RaiseIfFailed("MakeDividedDisk", self.AdvOp)
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RaiseIfFailed("MakeDividedDisk", self.AdvOp)
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if Parameters: anObj.SetParameters(Parameters)
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if Parameters: anObj.SetParameters(Parameters)
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return anObj
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return anObj
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@ -8568,12 +8569,13 @@ class geompyDC(GEOM._objref_GEOM_Gen):
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# @param theCenter Center of the disk
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# @param theCenter Center of the disk
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# @param theVector Normal vector to the plane of the created disk
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# @param theVector Normal vector to the plane of the created disk
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# @param theRadius Radius of the disk
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# @param theRadius Radius of the disk
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# @param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
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# @return New GEOM_Object, containing the created shape.
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# @return New GEOM_Object, containing the created shape.
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#
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#
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# @ref tui_creation_divideddisk "Example"
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# @ref tui_creation_divideddisk "Example"
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def MakeDividedDiskPntVecR(self, theCenter, theVector, theRadius):
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def MakeDividedDiskPntVecR(self, theCenter, theVector, theRadius, thePattern):
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theRadius, Parameters = ParseParameters(theRadius)
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theRadius, Parameters = ParseParameters(theRadius)
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anObj = self.AdvOp.MakeDividedDiskPntVecR(theCenter, theVector, theRadius, 50.0)
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anObj = self.AdvOp.MakeDividedDiskPntVecR(theCenter, theVector, theRadius, 67.0, thePattern)
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RaiseIfFailed("MakeDividedDiskPntVecR", self.AdvOp)
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RaiseIfFailed("MakeDividedDiskPntVecR", self.AdvOp)
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if Parameters: anObj.SetParameters(Parameters)
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if Parameters: anObj.SetParameters(Parameters)
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return anObj
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return anObj
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@ -8581,12 +8583,13 @@ class geompyDC(GEOM._objref_GEOM_Gen):
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## Builds a cylinder prepared for hexa meshes
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## Builds a cylinder prepared for hexa meshes
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# @param theR Radius of the cylinder
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# @param theR Radius of the cylinder
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# @param theH Height of the cylinder
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# @param theH Height of the cylinder
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# @param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
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# @return New GEOM_Object, containing the created shape.
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# @return New GEOM_Object, containing the created shape.
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#
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#
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# @ref tui_creation_dividedcylinder "Example"
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# @ref tui_creation_dividedcylinder "Example"
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def MakeDividedCylinder(self, theR, theH):
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def MakeDividedCylinder(self, theR, theH, thePattern):
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theR, theH, Parameters = ParseParameters(theR, theH)
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theR, theH, Parameters = ParseParameters(theR, theH)
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anObj = self.AdvOp.MakeDividedCylinder(theR, theH)
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anObj = self.AdvOp.MakeDividedCylinder(theR, theH, thePattern)
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RaiseIfFailed("MakeDividedCylinder", self.AdvOp)
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RaiseIfFailed("MakeDividedCylinder", self.AdvOp)
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if Parameters: anObj.SetParameters(Parameters)
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if Parameters: anObj.SetParameters(Parameters)
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return anObj
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return anObj
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