Salome HOME
Task 3.2. To keep compounds’ sub-shapes for all operations (issue #3139)
[modules/shaper.git] / src / FeaturesPlugin / Test / TestPlacement_MultiLevelCompound_v0_3.py
diff --git a/src/FeaturesPlugin/Test/TestPlacement_MultiLevelCompound_v0_3.py b/src/FeaturesPlugin/Test/TestPlacement_MultiLevelCompound_v0_3.py
new file mode 100644 (file)
index 0000000..a52ff74
--- /dev/null
@@ -0,0 +1,84 @@
+# Copyright (C) 2020  CEA/DEN, EDF R&D
+#
+# This library is free software; you can redistribute it and/or
+# modify it under the terms of the GNU Lesser General Public
+# License as published by the Free Software Foundation; either
+# version 2.1 of the License, or (at your option) any later version.
+#
+# This library is distributed in the hope that it will be useful,
+# but WITHOUT ANY WARRANTY; without even the implied warranty of
+# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
+# Lesser General Public License for more details.
+#
+# You should have received a copy of the GNU Lesser General Public
+# License along with this library; if not, write to the Free Software
+# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
+#
+# See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
+#
+
+from SketchAPI import *
+
+from salome.shaper import model
+
+model.begin()
+partSet = model.moduleDocument()
+Part_1 = model.addPart(partSet)
+Part_1_doc = Part_1.document()
+Cylinder_1 = model.addCylinder(Part_1_doc, model.selection("VERTEX", "PartSet/Origin"), model.selection("EDGE", "PartSet/OZ"), 5, 10)
+LinearCopy_1 = model.addMultiTranslation(Part_1_doc, [model.selection("SOLID", "Cylinder_1_1")], model.selection("EDGE", "PartSet/OX"), 20, 2)
+LinearCopy_2 = model.addMultiTranslation(Part_1_doc, [model.selection("COMPOUND", "LinearCopy_1_1")], model.selection("EDGE", "PartSet/OY"), 20, 2)
+Sketch_1 = model.addSketch(Part_1_doc, model.standardPlane("XOY"))
+SketchEllipse_1 = Sketch_1.addEllipse(11.18033988749894, -50, 22.36067977499789, -50, 10)
+[SketchPoint_1, SketchPoint_2, SketchPoint_3, SketchPoint_4, SketchPoint_5, SketchPoint_6, SketchPoint_7, SketchLine_1, SketchLine_2] = SketchEllipse_1.construction(center = "aux", firstFocus = "aux", secondFocus = "aux", majorAxisStart = "aux", majorAxisEnd = "aux", minorAxisStart = "aux", minorAxisEnd = "aux", majorAxis = "aux", minorAxis = "aux")
+SketchConstraintHorizontal_1 = Sketch_1.setHorizontal(SketchLine_1.result())
+SketchConstraintLength_1 = Sketch_1.setLength(SketchLine_1.result(), 30)
+SketchConstraintLength_2 = Sketch_1.setLength(SketchLine_2.result(), 20)
+SketchProjection_1 = Sketch_1.addProjection(model.selection("EDGE", "PartSet/OY"), False)
+SketchLine_3 = SketchProjection_1.createdFeature()
+SketchConstraintCoincidence_1 = Sketch_1.setCoincident(SketchAPI_Point(SketchPoint_3).coordinates(), SketchLine_3.result())
+SketchConstraintDistance_1 = Sketch_1.setDistance(SketchAPI_Line(SketchLine_3).startPoint(), SketchAPI_Point(SketchPoint_3).coordinates(), 50, True)
+SketchCircle_1 = Sketch_1.addCircle(41.18033988749897, -50, 5)
+SketchConstraintCoincidence_2 = Sketch_1.setCoincident(SketchCircle_1.center(), SketchLine_1.result())
+SketchConstraintDistance_2 = Sketch_1.setDistance(SketchEllipse_1.majorAxisPositive(), SketchCircle_1.center(), 15, True)
+SketchConstraintRadius_1 = Sketch_1.setRadius(SketchCircle_1.results()[1], 5)
+SketchMultiRotation_1 = Sketch_1.addRotation([SketchEllipse_1.result(), SketchCircle_1.results()[1]], SketchAPI_Point(SketchPoint_3).coordinates(), 360, 3, True)
+[SketchEllipse_2, SketchEllipse_3, SketchCircle_2, SketchCircle_3] = SketchMultiRotation_1.rotated()
+model.do()
+Sketch_1.changeFacesOrder([[SketchEllipse_1.result(), SketchEllipse_1.result(), SketchEllipse_2.result(), SketchEllipse_3.result()],
+                           [SketchCircle_1.results()[1]],
+                           [SketchEllipse_2.result(), SketchEllipse_2.result(), SketchEllipse_3.result(), SketchEllipse_1.result()],
+                           [SketchEllipse_1.result(), SketchEllipse_3.result(), SketchEllipse_2.result()],
+                           [SketchEllipse_3.result(), SketchEllipse_2.result(), SketchEllipse_1.result()],
+                           [SketchEllipse_1.result(), SketchEllipse_2.result(), SketchEllipse_3.result()],
+                           [SketchEllipse_1.result(), SketchEllipse_3.result(), SketchEllipse_2.result()],
+                           [SketchEllipse_2.result(), SketchEllipse_3.result(), SketchEllipse_3.result(), SketchEllipse_1.result()],
+                           [SketchCircle_2.results()[1]],
+                           [SketchCircle_3.results()[1]]
+                          ])
+model.do()
+Extrusion_1 = model.addExtrusion(Part_1_doc, [model.selection("COMPOUND", "Sketch_1")], model.selection(), 10, 0)
+Compound_1 = model.addCompound(Part_1_doc, [model.selection("SOLID", "Extrusion_1_2"), model.selection("SOLID", "Extrusion_1_3")])
+Compound_2_objects = [model.selection("COMPSOLID", "Extrusion_1_1"), model.selection("COMPOUND", "Compound_1_1"), model.selection("SOLID", "Extrusion_1_4")]
+Compound_2 = model.addCompound(Part_1_doc, Compound_2_objects)
+Placement_1 = model.addPlacement(Part_1_doc, [model.selection("SOLID", "Compound_2_1_1_5"), model.selection("SOLID", "Compound_2_1_2_1")], model.selection("FACE", "Compound_2_1_2_1/Modified_Face&Extrusion_1_2/From_Face"), model.selection("FACE", "LinearCopy_2_1_1_1/MF:Translated&Cylinder_1_1/Face_2"), False, False)
+
+model.end()
+
+from GeomAPI import *
+
+model.testNbResults(Placement_1, 2)
+model.testNbSubResults(Placement_1, [0, 0])
+model.testNbSubShapes(Placement_1, GeomAPI_Shape.SOLID, [1, 1])
+model.testNbSubShapes(Placement_1, GeomAPI_Shape.FACE, [5, 3])
+model.testNbSubShapes(Placement_1, GeomAPI_Shape.EDGE, [18, 6])
+model.testNbSubShapes(Placement_1, GeomAPI_Shape.VERTEX, [36, 12])
+model.testResultsVolumes(Placement_1, [542.746463956, 785.39816339745])
+
+TOLERANCE = 1.e-7
+REFERENCE = [GeomAPI_Pnt(0, -50, 15), GeomAPI_Pnt(41.18033988749897, -50, 15)]
+for res, ref in zip(Placement_1.results(), REFERENCE):
+    midPoint = res.resultSubShapePair()[0].shape().middlePoint()
+    assert(midPoint.distance(ref) < TOLERANCE)
+
+assert(model.checkPythonDump())