X-Git-Url: http://git.salome-platform.org/gitweb/?a=blobdiff_plain;f=src%2FFeaturesPlugin%2FTest%2FTestMultiTranslation_MultiLevelCompound_v0_3.py;fp=src%2FFeaturesPlugin%2FTest%2FTestMultiTranslation_MultiLevelCompound_v0_3.py;h=199af9d667b0352c848b4386c6ab133cbe09ee01;hb=6501b9ab5d3c4d76af5e7628582a7716f8354cd7;hp=0000000000000000000000000000000000000000;hpb=68cdca74771f85658ce633f1e2504f0c741ab078;p=modules%2Fshaper.git diff --git a/src/FeaturesPlugin/Test/TestMultiTranslation_MultiLevelCompound_v0_3.py b/src/FeaturesPlugin/Test/TestMultiTranslation_MultiLevelCompound_v0_3.py new file mode 100644 index 000000000..199af9d66 --- /dev/null +++ b/src/FeaturesPlugin/Test/TestMultiTranslation_MultiLevelCompound_v0_3.py @@ -0,0 +1,192 @@ +# 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 salome.shaper import model +from GeomAPI import * +from GeomAlgoAPI import * + +model.begin() +partSet = model.moduleDocument() +Part_1 = model.addPart(partSet) +Part_1_doc = Part_1.document() +Sketch_1 = model.addSketch(Part_1_doc, model.defaultPlane("XOY")) +SketchPoint_1 = Sketch_1.addPoint(44.29784155360136, 17.09942588468031) +SketchArc_1 = Sketch_1.addArc(44.29784155360136, 17.09942588468031, 47.1668727423061, 12.27945348765633, 45.38299232715926, 22.60269052200972, False) +SketchConstraintCoincidence_1 = Sketch_1.setCoincident(SketchPoint_1.coordinates(), SketchArc_1.center()) +SketchLine_1 = Sketch_1.addLine(42.5764228403785, 22.14892077680068, 39.70739165167375, 16.41085839939117) +SketchLine_2 = Sketch_1.addLine(39.70739165167375, 16.41085839939117, 43.03546783057126, 12.04993099255995) +SketchConstraintCoincidence_2 = Sketch_1.setCoincident(SketchLine_1.endPoint(), SketchLine_2.startPoint()) +SketchLine_3 = Sketch_1.addLine(28.57555063949931, 12.96802097294547, 15.72229091410204, 12.96802097294547) +SketchLine_4 = Sketch_1.addLine(15.72229091410204, 12.96802097294547, 15.72229091410204, 21.46035329151154) +SketchLine_5 = Sketch_1.addLine(15.72229091410204, 21.46035329151154, 28.57555063949931, 21.46035329151154) +SketchLine_6 = Sketch_1.addLine(28.57555063949931, 21.46035329151154, 28.57555063949931, 12.96802097294547) +SketchConstraintCoincidence_3 = Sketch_1.setCoincident(SketchLine_6.endPoint(), SketchLine_3.startPoint()) +SketchConstraintCoincidence_4 = Sketch_1.setCoincident(SketchLine_3.endPoint(), SketchLine_4.startPoint()) +SketchConstraintCoincidence_5 = Sketch_1.setCoincident(SketchLine_4.endPoint(), SketchLine_5.startPoint()) +SketchConstraintCoincidence_6 = Sketch_1.setCoincident(SketchLine_5.endPoint(), SketchLine_6.startPoint()) +SketchConstraintHorizontal_1 = Sketch_1.setHorizontal(SketchLine_3.result()) +SketchConstraintVertical_1 = Sketch_1.setVertical(SketchLine_4.result()) +SketchConstraintHorizontal_2 = Sketch_1.setHorizontal(SketchLine_5.result()) +SketchConstraintVertical_2 = Sketch_1.setVertical(SketchLine_6.result()) +SketchLine_7 = Sketch_1.addLine(-10.67279602198167, 14.78814178154371, -28.34602814440294, 14.78814178154371) +SketchLine_8 = Sketch_1.addLine(-28.34602814440294, 14.78814178154371, -28.34602814440294, 25.13271321305362) +SketchLine_9 = Sketch_1.addLine(-28.34602814440294, 25.13271321305362, -10.67279602198167, 25.13271321305362) +SketchLine_10 = Sketch_1.addLine(-10.67279602198167, 25.13271321305362, -10.67279602198167, 14.78814178154371) +SketchConstraintCoincidence_7 = Sketch_1.setCoincident(SketchLine_10.endPoint(), SketchLine_7.startPoint()) +SketchConstraintCoincidence_8 = Sketch_1.setCoincident(SketchLine_7.endPoint(), SketchLine_8.startPoint()) +SketchConstraintCoincidence_9 = Sketch_1.setCoincident(SketchLine_8.endPoint(), SketchLine_9.startPoint()) +SketchConstraintCoincidence_10 = Sketch_1.setCoincident(SketchLine_9.endPoint(), SketchLine_10.startPoint()) +SketchConstraintHorizontal_3 = Sketch_1.setHorizontal(SketchLine_7.result()) +SketchConstraintVertical_3 = Sketch_1.setVertical(SketchLine_8.result()) +SketchConstraintHorizontal_4 = Sketch_1.setHorizontal(SketchLine_9.result()) +SketchConstraintVertical_4 = Sketch_1.setVertical(SketchLine_10.result()) +SketchLine_11 = Sketch_1.addLine(-17.67323212242127, 25.13271321305362, -21.80463703415611, 14.78814178154371) +SketchConstraintCoincidence_11 = Sketch_1.setCoincident(SketchLine_11.startPoint(), SketchLine_9.result()) +SketchConstraintCoincidence_12 = Sketch_1.setCoincident(SketchLine_11.endPoint(), SketchLine_7.result()) +model.do() +Vertex_1 = model.addVertex(Part_1_doc, [model.selection("VERTEX", "Sketch_1/SketchArc_1")], False) +Edge_1 = model.addEdge(Part_1_doc, [model.selection("EDGE", "Sketch_1/SketchArc_1_2")], False) +Wire_1 = model.addWire(Part_1_doc, [model.selection("EDGE", "Sketch_1/SketchLine_1"), model.selection("EDGE", "Sketch_1/SketchLine_2")], False) +Face_1 = model.addFace(Part_1_doc, [model.selection("FACE", "Sketch_1/Face-SketchLine_6r-SketchLine_5r-SketchLine_4r-SketchLine_3r")]) +Shell_1 = model.addShell(Part_1_doc, [model.selection("FACE", "Sketch_1/Face-SketchLine_10r-SketchLine_9r-SketchLine_11f-SketchLine_7r"), model.selection("FACE", "Sketch_1/Face-SketchLine_11r-SketchLine_9r-SketchLine_8r-SketchLine_7r")]) +Box_1 = model.addBox(Part_1_doc, 10, 10, 10) +Translation_1 = model.addTranslation(Part_1_doc, [model.selection("SOLID", "Box_1_1")], model.selection("EDGE", "PartSet/OX"), 50) +Box_2 = model.addBox(Part_1_doc, 10, 10, 10) +Cylinder_1 = model.addCylinder(Part_1_doc, model.selection("VERTEX", "PartSet/Origin"), model.selection("EDGE", "PartSet/OZ"), 5, 10) +Partition_1 = model.addPartition(Part_1_doc, [model.selection("SOLID", "Box_2_1"), model.selection("SOLID", "Cylinder_1_1")]) +Box_3 = model.addBox(Part_1_doc, 10, 10, 10) +Translation_2 = model.addTranslation(Part_1_doc, [model.selection("SOLID", "Box_3_1")], model.selection("EDGE", "PartSet/OY"), 50) +AngularCopy_1 = model.addMultiRotation(Part_1_doc, [model.selection("SOLID", "Translation_2_1")], model.selection("EDGE", "PartSet/OZ"), 30, 3) +model.end() + +TOLERANCE = 1.e-7 +DISTANCE = 20 +COPIES = 2 + + +model.begin() +MultiTranslation_1 = model.addMultiTranslation(Part_1_doc, [model.selection("VERTEX", "Vertex_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_1, 1) +model.testNbSubResults(MultiTranslation_1, [COPIES]) +model.testNbSubShapes(MultiTranslation_1, GeomAPI_Shape.SOLID, [0]) +model.testNbSubShapes(MultiTranslation_1, GeomAPI_Shape.FACE, [0]) +model.testNbSubShapes(MultiTranslation_1, GeomAPI_Shape.EDGE, [0]) +model.testNbSubShapes(MultiTranslation_1, GeomAPI_Shape.VERTEX, [COPIES]) +model.testResultsVolumes(MultiTranslation_1, [0]) +refPoint = Vertex_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_1.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_2 = model.addMultiTranslation(Part_1_doc, [model.selection("EDGE", "Edge_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_2, 1) +model.testNbSubResults(MultiTranslation_2, [COPIES]) +model.testNbSubShapes(MultiTranslation_2, GeomAPI_Shape.SOLID, [0]) +model.testNbSubShapes(MultiTranslation_2, GeomAPI_Shape.FACE, [0]) +model.testNbSubShapes(MultiTranslation_2, GeomAPI_Shape.EDGE, [COPIES]) +model.testNbSubShapes(MultiTranslation_2, GeomAPI_Shape.VERTEX, [2 * COPIES]) +model.testResultsVolumes(MultiTranslation_2, [0]) +comp = GeomAlgoAPI_CompoundBuilder.compound([Edge_1.defaultResult().shape()]) +refPoint = comp.middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_2.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_3 = model.addMultiTranslation(Part_1_doc, [model.selection("WIRE", "Wire_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_3, 1) +model.testNbSubResults(MultiTranslation_3, [COPIES]) +model.testNbSubShapes(MultiTranslation_3, GeomAPI_Shape.SOLID, [0]) +model.testNbSubShapes(MultiTranslation_3, GeomAPI_Shape.FACE, [0]) +model.testNbSubShapes(MultiTranslation_3, GeomAPI_Shape.EDGE, [2 * COPIES]) +model.testNbSubShapes(MultiTranslation_3, GeomAPI_Shape.VERTEX, [4 * COPIES]) +model.testResultsVolumes(MultiTranslation_3, [0]) +comp = GeomAlgoAPI_CompoundBuilder.compound([Wire_1.defaultResult().shape()]) +refPoint = comp.middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_3.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_4 = model.addMultiTranslation(Part_1_doc, [model.selection("FACE", "Face_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_4, 1) +model.testNbSubResults(MultiTranslation_4, [COPIES]) +model.testNbSubShapes(MultiTranslation_4, GeomAPI_Shape.SOLID, [0]) +model.testNbSubShapes(MultiTranslation_4, GeomAPI_Shape.FACE, [COPIES]) +model.testNbSubShapes(MultiTranslation_4, GeomAPI_Shape.EDGE, [4 * COPIES]) +model.testNbSubShapes(MultiTranslation_4, GeomAPI_Shape.VERTEX, [8 * COPIES]) +model.testResultsVolumes(MultiTranslation_4, [109.154152964914914 * COPIES]) +refPoint = Face_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_4.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_5 = model.addMultiTranslation(Part_1_doc, [model.selection("SHELL", "Shell_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_5, 1) +model.testNbSubResults(MultiTranslation_5, [COPIES]) +model.testNbSubShapes(MultiTranslation_5, GeomAPI_Shape.SOLID, [0]) +model.testNbSubShapes(MultiTranslation_5, GeomAPI_Shape.FACE, [2 * COPIES]) +model.testNbSubShapes(MultiTranslation_5, GeomAPI_Shape.EDGE, [8 * COPIES]) +model.testNbSubShapes(MultiTranslation_5, GeomAPI_Shape.VERTEX, [16 * COPIES]) +model.testResultsVolumes(MultiTranslation_5, [182.822012116 * COPIES]) +refPoint = Shell_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_5.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_6 = model.addMultiTranslation(Part_1_doc, [model.selection("SOLID", "Translation_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_6, 1) +model.testNbSubResults(MultiTranslation_6, [COPIES]) +model.testNbSubShapes(MultiTranslation_6, GeomAPI_Shape.SOLID, [COPIES]) +model.testNbSubShapes(MultiTranslation_6, GeomAPI_Shape.FACE, [6 * COPIES]) +model.testNbSubShapes(MultiTranslation_6, GeomAPI_Shape.EDGE, [24 * COPIES]) +model.testNbSubShapes(MultiTranslation_6, GeomAPI_Shape.VERTEX, [48 * COPIES]) +model.testResultsVolumes(MultiTranslation_6, [1000 * COPIES]) +refPoint = Translation_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_6.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_7 = model.addMultiTranslation(Part_1_doc, [model.selection("COMPSOLID", "Partition_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_7, 1) +model.testNbSubResults(MultiTranslation_7, [COPIES]) +model.testNbSubShapes(MultiTranslation_7, GeomAPI_Shape.SOLID, [3 * COPIES]) +model.testNbSubShapes(MultiTranslation_7, GeomAPI_Shape.FACE, [17 * COPIES]) +model.testNbSubShapes(MultiTranslation_7, GeomAPI_Shape.EDGE, [66 * COPIES]) +model.testNbSubShapes(MultiTranslation_7, GeomAPI_Shape.VERTEX, [132 * COPIES]) +model.testResultsVolumes(MultiTranslation_7, [1589.0486226 * COPIES]) +refPoint = Partition_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_7.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +MultiTranslation_8 = model.addMultiTranslation(Part_1_doc, [model.selection("COMPOUND", "AngularCopy_1_1")], model.selection("EDGE", "PartSet/OZ"), DISTANCE, COPIES) +model.testNbResults(MultiTranslation_8, 1) +model.testNbSubResults(MultiTranslation_8, [COPIES]) +model.testNbSubShapes(MultiTranslation_8, GeomAPI_Shape.SOLID, [3 * COPIES]) +model.testNbSubShapes(MultiTranslation_8, GeomAPI_Shape.FACE, [18 * COPIES]) +model.testNbSubShapes(MultiTranslation_8, GeomAPI_Shape.EDGE, [72 * COPIES]) +model.testNbSubShapes(MultiTranslation_8, GeomAPI_Shape.VERTEX, [144 * COPIES]) +model.testResultsVolumes(MultiTranslation_8, [3000 * COPIES]) +refPoint = AngularCopy_1.defaultResult().shape().middlePoint() +refPoint.setZ(refPoint.z() + DISTANCE / 2 * (COPIES - 1)) +midPoint = MultiTranslation_8.defaultResult().shape().middlePoint() +assert(midPoint.distance(refPoint) < TOLERANCE) + +model.end() + +assert(model.checkPythonDump())