2020-08-28 20:28:35 +05:00
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from netgen.geom2d import *
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import pytest
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import math
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from pytest import approx
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def test_two_circles():
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c1 = Circle(center=(0,0), radius=1)
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2020-11-06 15:51:15 +05:00
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c2 = c1.Rotate(45)
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2020-08-28 20:28:35 +05:00
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s = c1*c2
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geo = CSG2d()
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geo.Add(s)
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m = geo.GenerateMesh()
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2020-08-28 21:35:35 +05:00
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assert len(m.Elements2D()) > 0
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2020-08-28 20:28:35 +05:00
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ngs = pytest.importorskip("ngsolve")
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mesh = ngs.Mesh(m)
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mesh.Curve(5)
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assert ngs.Integrate(1.0, mesh) == approx(math.pi)
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2020-08-28 21:35:35 +05:00
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ngs.Draw(mesh)
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2020-08-28 20:28:35 +05:00
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def test_two_edge():
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s = Solid2d( [(-1,0), cp(0,1), (1,0), cp(0,2)] )
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geo = CSG2d()
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geo.Add(s)
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m = geo.GenerateMesh()
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2020-08-28 21:35:35 +05:00
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assert len(m.Elements2D()) > 0
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2020-08-28 20:28:35 +05:00
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ngs = pytest.importorskip("ngsolve")
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g = geo.GenerateSplineGeometry()
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ngs.Draw(g)
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2020-08-28 21:35:35 +05:00
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mesh = ngs.Mesh(m)
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mesh.Curve(5)
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ngs.Draw(mesh)
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def test_trig_and_circle():
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g = CSG2d()
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trig = Solid2d( [(0,0), (1,1), (-1,1) ] ).BC("diamond")
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circle = Circle( center=(0,0.101), radius=0.1).BC("circle") # TODO: Failing with center=(0,0.1)
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d = trig-circle
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g.Add(d)
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g.Add(circle)
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m = g.GenerateMesh(maxh=0.1)
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assert len(m.Elements2D()) > 0
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ngs = pytest.importorskip("ngsolve")
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geo = g.GenerateSplineGeometry()
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ngs.Draw(geo)
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mesh = ngs.Mesh(m)
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mesh.Curve(3)
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ngs.Draw(mesh)
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2020-08-28 20:28:35 +05:00
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if __name__ == "__main__":
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test_two_circles()
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test_two_edge()
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2020-08-28 21:35:35 +05:00
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test_trig_and_circle()
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