126 lines
5.3 KiB
Python
126 lines
5.3 KiB
Python
# -*- coding: utf-8 -*-
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# ***************************************************************************
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# * *
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# * Copyright (c) 2019 sliptonic <shopinthewoods@gmail.com> *
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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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# * This program 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 this program; 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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# ***************************************************************************
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import Draft
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import FreeCAD
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import PathScripts.PathHelix as PathHelix
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import PathScripts.PathJob as PathJob
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import PathScripts.PathLog as PathLog
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import PathTests.PathTestUtils as PathTestUtils
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PathLog.setLevel(PathLog.Level.INFO, PathLog.thisModule())
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#PathLog.trackModule(PathLog.thisModule())
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class TestPathHelix(PathTestUtils.PathTestBase):
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RotateBy = 45
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def setUp(self):
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self.clone = None
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self.doc = FreeCAD.open(FreeCAD.getHomePath() + 'Mod/Path/PathTests/test_holes00.fcstd')
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self.job = PathJob.Create('Job', [self.doc.Body])
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def tearDown(self):
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FreeCAD.closeDocument(self.doc.Name)
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def test00(self):
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'''Verify Helix does not throw an exception.'''
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op = PathHelix.Create('Helix')
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op.Proxy.execute(op)
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def test01(self):
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'''Verify Helix generates proper holes from model'''
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op = PathHelix.Create('Helix')
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proxy = op.Proxy
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for base in op.Base:
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model = base[0]
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for sub in base[1]:
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pos = proxy.holePosition(op, model, sub)
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self.assertRoughly(round(pos.Length / 10, 0), proxy.holeDiameter(op, model, sub))
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def test02(self):
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'''Verify Helix generates proper holes for rotated model'''
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self.job.ToolController[0].Tool.Diameter = 0.5
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op = PathHelix.Create('Helix')
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proxy = op.Proxy
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model = self.job.Model.Group[0]
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for deg in range(self.RotateBy, 360, self.RotateBy):
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model.Placement.Rotation = FreeCAD.Rotation(deg, 0, 0)
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for base in op.Base:
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model = base[0]
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for sub in base[1]:
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pos = proxy.holePosition(op, model, sub)
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#PathLog.track(deg, pos, pos.Length)
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self.assertRoughly(round(pos.Length / 10, 0), proxy.holeDiameter(op, model, sub))
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def test03(self):
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'''Verify Helix generates proper holes for rotated base model'''
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for deg in range(self.RotateBy, 360, self.RotateBy):
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self.tearDown()
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self.doc = FreeCAD.open(FreeCAD.getHomePath() + 'Mod/Path/PathTests/test_holes00.fcstd')
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self.doc.Body.Placement.Rotation = FreeCAD.Rotation(deg, 0, 0)
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self.job = PathJob.Create('Job', [self.doc.Body])
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self.job.ToolController[0].Tool.Diameter = 0.5
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op = PathHelix.Create('Helix')
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proxy = op.Proxy
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model = self.job.Model.Group[0]
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for base in op.Base:
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model = base[0]
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for sub in base[1]:
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pos = proxy.holePosition(op, model, sub)
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#PathLog.track(deg, pos, pos.Length)
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self.assertRoughly(round(pos.Length / 10, 0), proxy.holeDiameter(op, model, sub))
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def test04(self):
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'''Verify Helix generates proper holes for rotated clone base model'''
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for deg in range(self.RotateBy, 360, self.RotateBy):
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self.tearDown()
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self.doc = FreeCAD.open(FreeCAD.getHomePath() + 'Mod/Path/PathTests/test_holes00.fcstd')
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self.clone = Draft.clone(self.doc.Body)
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self.clone.Placement.Rotation = FreeCAD.Rotation(deg, 0, 0)
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self.job = PathJob.Create('Job', [self.clone])
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self.job.ToolController[0].Tool.Diameter = 0.5
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op = PathHelix.Create('Helix')
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proxy = op.Proxy
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model = self.job.Model.Group[0]
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for base in op.Base:
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model = base[0]
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for sub in base[1]:
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pos = proxy.holePosition(op, model, sub)
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#PathLog.track(deg, pos, pos.Length)
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self.assertRoughly(round(pos.Length / 10, 0), proxy.holeDiameter(op, model, sub))
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