Make sure linspace gets an integer number of points
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@ -212,8 +212,9 @@ class Arc(Shape):
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n += [poly_num_points]
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if poly_max_arclen is not None:
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n += [perimeter / poly_max_arclen]
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thetas_inner = numpy.linspace(a_ranges[0][1], a_ranges[0][0], max(n), endpoint=True)
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thetas_outer = numpy.linspace(a_ranges[1][0], a_ranges[1][1], max(n), endpoint=True)
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num_points = int(round(max(n)))
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thetas_inner = numpy.linspace(a_ranges[0][1], a_ranges[0][0], num_points, endpoint=True)
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thetas_outer = numpy.linspace(a_ranges[1][0], a_ranges[1][1], num_points, endpoint=True)
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sin_th_i, cos_th_i = (numpy.sin(thetas_inner), numpy.cos(thetas_inner))
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sin_th_o, cos_th_o = (numpy.sin(thetas_outer), numpy.cos(thetas_outer))
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@ -81,7 +81,8 @@ class Circle(Shape):
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n += [poly_num_points]
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if poly_max_arclen is not None:
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n += [2 * pi * self.radius / poly_max_arclen]
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thetas = numpy.linspace(2 * pi, 0, max(n), endpoint=False)
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num_points = int(round(max(n)))
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thetas = numpy.linspace(2 * pi, 0, num_points, endpoint=False)
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xs = numpy.cos(thetas) * self.radius
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ys = numpy.sin(thetas) * self.radius
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xys = numpy.vstack((xs, ys)).T
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@ -139,7 +139,8 @@ class Ellipse(Shape):
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n += [poly_num_points]
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if poly_max_arclen is not None:
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n += [perimeter / poly_max_arclen]
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thetas = numpy.linspace(2 * pi, 0, max(n), endpoint=False)
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num_points = int(round(max(n)))
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thetas = numpy.linspace(2 * pi, 0, num_points, endpoint=False)
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sin_th, cos_th = (numpy.sin(thetas), numpy.cos(thetas))
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xs = r0 * cos_th
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