197 lines
9.1 KiB
Python
197 lines
9.1 KiB
Python
# (c) Juergen Riegel (FreeCAD@juergen-riegel.net) 2011 LGPL *
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# *
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# This file is part of the FreeCAD CAx development system. *
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# *
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# This program is free software; you can redistribute it and/or modify *
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# it under the terms of the GNU Lesser General Public License (LGPL) *
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# as published by the Free Software Foundation; either version 2 of *
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# the License, or (at your option) any later version. *
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# for detail see the LICENCE text file. *
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# *
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# FreeCAD is distributed in the hope that it will be useful, *
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# but WITHOUT ANY WARRANTY; without even the implied warranty of *
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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# GNU Library General Public License for more details. *
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# *
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# You should have received a copy of the GNU Library General Public *
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# License along with FreeCAD; if not, write to the Free Software *
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 *
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# USA *
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#**************************************************************************
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import os
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import sys
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import unittest
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import FreeCAD
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import Part
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import Sketcher
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import PartDesign
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import TestSketcherApp
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App = FreeCAD
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#---------------------------------------------------------------------------
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# define the test cases to test the FreeCAD PartDesign module
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#---------------------------------------------------------------------------
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class PartDesignPadTestCases(unittest.TestCase):
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def setUp(self):
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self.Doc = FreeCAD.newDocument("PartDesignTestPad")
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def testBoxCase(self):
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self.PadSketch = self.Doc.addObject('Sketcher::SketchObject','SketchPad')
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TestSketcherApp.CreateSlotPlateSet(self.PadSketch)
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self.Doc.recompute()
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self.Pad = self.Doc.addObject("PartDesign::Pad","Pad")
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self.Pad.Profile = self.PadSketch
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self.Doc.recompute()
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self.failUnless(len(self.Pad.Shape.Faces) == 6)
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def tearDown(self):
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#closing doc
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FreeCAD.closeDocument("PartDesignTestPad")
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# print ("omit closing document for debugging")
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class PartDesignRevolveTestCases(unittest.TestCase):
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def setUp(self):
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self.Doc = FreeCAD.newDocument("PartDesignTestRevolve")
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def testRevolveFace(self):
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self.Body = self.Doc.addObject('PartDesign::Body','Body')
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self.Box = self.Doc.addObject('PartDesign::AdditiveBox','Box')
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self.Body.addObject(self.Box)
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self.Box.Length=10.00
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self.Box.Width=10.00
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self.Box.Height=10.00
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self.Doc.recompute()
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self.Revolution = self.Doc.addObject("PartDesign::Revolution","Revolution")
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self.Revolution.Profile = (self.Box, ["Face6"])
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self.Revolution.ReferenceAxis = (self.Doc.Y_Axis,[""])
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self.Revolution.Angle = 180.0
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self.Revolution.Reversed = 1
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self.Body.addObject(self.Revolution)
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self.Doc.recompute()
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self.failUnless(len(self.Revolution.Shape.Faces) == 10)
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def testGrooveFace(self):
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self.Body = self.Doc.addObject('PartDesign::Body','Body')
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self.Box = self.Doc.addObject('PartDesign::AdditiveBox','Box')
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self.Body.addObject(self.Box)
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self.Box.Length=10.00
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self.Box.Width=10.00
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self.Box.Height=10.00
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self.Doc.recompute()
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self.Groove = self.Doc.addObject("PartDesign::Groove","Groove")
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self.Groove.Profile = (self.Box, ["Face6"])
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self.Groove.ReferenceAxis = (self.Doc.X_Axis,[""])
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self.Groove.Angle = 180.0
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self.Groove.Reversed = 1
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self.Body.addObject(self.Groove)
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self.Doc.recompute()
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self.failUnless(len(self.Groove.Shape.Faces) == 5)
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def tearDown(self):
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#closing doc
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FreeCAD.closeDocument("PartDesignTestRevolve")
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# print ("omit closing document for debugging")
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class PartDesignMirroredTestCases(unittest.TestCase):
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def setUp(self):
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self.Doc = FreeCAD.newDocument("PartDesignTestMirrored")
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def testMirroredSketchCase(self):
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"""
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Creates a unit cube cornered at the origin and mirrors it about the Y axis.
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This operation should create a rectangular prism with volume 2.0.
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The precision is currently broken and the volume created
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is 1.9999999999999993. so this test will fail if code is
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introduced to change it. If you've submitted code which fixes
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the precision and causes this bug to fail, please remove this
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message and update this test as well as testMirroredPrimitiveCase.
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"""
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self.Body = self.Doc.addObject('PartDesign::Body','Body')
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self.Rect = self.Doc.addObject('Sketcher::SketchObject','Rect')
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self.Body.addObject(self.Rect)
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geoList = []
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geoList.append(Part.LineSegment(App.Vector(0, 0, 0), App.Vector(1, 0, 0)))
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geoList.append(Part.LineSegment(App.Vector(1, 0, 0), App.Vector(1, 1, 0)))
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geoList.append(Part.LineSegment(App.Vector(1, 1, 0), App.Vector(0, 1, 0)))
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geoList.append(Part.LineSegment(App.Vector(0, 1, 0), App.Vector(0, 0, 0)))
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self.Rect.addGeometry(geoList,False)
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conList = []
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conList.append(Sketcher.Constraint('Coincident',0,2,1,1))
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conList.append(Sketcher.Constraint('Coincident',1,2,2,1))
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conList.append(Sketcher.Constraint('Coincident',2,2,3,1))
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conList.append(Sketcher.Constraint('Coincident',3,2,0,1))
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conList.append(Sketcher.Constraint('Horizontal',0))
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conList.append(Sketcher.Constraint('Horizontal',2))
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conList.append(Sketcher.Constraint('Vertical',1))
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conList.append(Sketcher.Constraint('Vertical',3))
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self.Rect.addConstraint(conList)
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self.Rect.addConstraint(Sketcher.Constraint('Coincident',0,1,-1,1))
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self.Rect.addConstraint(Sketcher.Constraint('DistanceX',0,1,0,2,1))
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self.Rect.setDatum(9,App.Units.Quantity('1.0 mm'))
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self.Rect.addConstraint(Sketcher.Constraint('DistanceY',3,2,3,1,1))
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self.Rect.setDatum(10,App.Units.Quantity('1.0 mm'))
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self.Doc.recompute()
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self.Pad = self.Doc.addObject("PartDesign::Pad","Pad")
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self.Pad.Profile = self.Rect
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self.Pad.Length = 1
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self.Body.addObject(self.Pad)
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self.Doc.recompute()
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self.Mirrored = self.Doc.addObject("PartDesign::Mirrored","Mirrored")
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self.Mirrored.Originals = [self.Pad]
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self.Mirrored.MirrorPlane = (self.Rect, ["V_Axis"])
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self.Body.addObject(self.Mirrored)
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self.Doc.recompute()
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self.failUnless(self.Mirrored.Shape.Volume == 1.9999999999999993)
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def testMirroredOffsetFailureCase(self):
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self.Body = self.Doc.addObject('PartDesign::Body','Body')
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self.Rect = self.Doc.addObject('Sketcher::SketchObject','Rect')
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self.Body.addObject(self.Rect)
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geoList = []
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geoList.append(Part.LineSegment(App.Vector(0, 0, 0), App.Vector(1, 0, 0)))
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geoList.append(Part.LineSegment(App.Vector(1, 0, 0), App.Vector(1, 1, 0)))
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geoList.append(Part.LineSegment(App.Vector(1, 1, 0), App.Vector(0, 1, 0)))
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geoList.append(Part.LineSegment(App.Vector(0, 1, 0), App.Vector(0, 0, 0)))
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self.Rect.addGeometry(geoList,False)
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conList = []
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conList.append(Sketcher.Constraint('Coincident',0,2,1,1))
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conList.append(Sketcher.Constraint('Coincident',1,2,2,1))
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conList.append(Sketcher.Constraint('Coincident',2,2,3,1))
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conList.append(Sketcher.Constraint('Coincident',3,2,0,1))
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conList.append(Sketcher.Constraint('Horizontal',0))
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conList.append(Sketcher.Constraint('Horizontal',2))
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conList.append(Sketcher.Constraint('Vertical',1))
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conList.append(Sketcher.Constraint('Vertical',3))
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self.Rect.addConstraint(conList)
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self.Rect.addConstraint(Sketcher.Constraint('PointOnObject',0,1,-2))
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self.Rect.addConstraint(Sketcher.Constraint('Equal',3,0))
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self.Rect.addConstraint(Sketcher.Constraint('DistanceX',0,1,0,2,1))
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self.Rect.setDatum(10,App.Units.Quantity('1.0 mm'))
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self.Rect.addConstraint(Sketcher.Constraint('DistanceY',-1,1,0,1,1))
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self.Rect.setDatum(11,App.Units.Quantity('1.0 mm'))
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self.Doc.recompute()
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self.Pad = self.Doc.addObject("PartDesign::Pad","Pad")
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self.Pad.Profile = self.Rect
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self.Pad.Length = 1
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self.Body.addObject(self.Pad)
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self.Doc.recompute()
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self.Mirrored = self.Doc.addObject("PartDesign::Mirrored","Mirrored")
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self.Mirrored.Originals = [self.Pad]
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self.Mirrored.MirrorPlane = (self.Rect, ["H_Axis"])
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self.Body.addObject(self.Mirrored)
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self.Doc.recompute()
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self.failUnless(self.Mirrored.State == ["Invalid"])
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def tearDown(self):
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#closing doc
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FreeCAD.closeDocument("PartDesignTestMirrored")
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#print ("omit closing document for debugging")
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