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https://github.com/IfcOpenShell/IfcOpenShell.git
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shape_builder - np utils
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@@ -20,13 +20,23 @@ import pytest
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import test.bootstrap
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import ifcopenshell.api
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import numpy as np
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from ifcopenshell.util.shape_builder import ShapeBuilder, is_x, np_rotation_matrix, np_to_3d, np_angle, V
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from ifcopenshell.util.shape_builder import (
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ShapeBuilder,
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is_x,
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np_rotation_matrix,
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np_to_3d,
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np_angle,
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V,
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np_angle_signed,
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np_normal,
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np_intersect_line_line,
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)
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from math import degrees, radians
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from typing import Any, Union
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class TestNumpyRotationMatrix(test.bootstrap.IFC4):
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def test_run(self):
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class TestMathutilsCompatibleMethods(test.bootstrap.IFC4):
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def test_np_rotation_matrix(self):
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from mathutils import Matrix, Vector
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# 2D.
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@@ -47,6 +57,51 @@ class TestNumpyRotationMatrix(test.bootstrap.IFC4):
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rotation_vector_args = radians(45), 4, Vector((1, 1, 1)).normalized()
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assert np.allclose(Matrix.Rotation(*rotation_vector_args), np_rotation_matrix(*rotation_vector_args))
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def test_np_angle(self):
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from mathutils import Vector
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v1, v2 = (1, 0, 0), (0, 1, 0)
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angle = np_angle(v1, v2)
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assert is_x(angle, Vector(v1).angle(Vector(v2)))
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assert is_x(angle, radians(90))
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v1, v2 = v1[:2], v2[:2]
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angle = np_angle_signed(v1, v2)
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assert is_x(angle, Vector(v1).angle_signed(Vector(v2)))
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assert is_x(angle, -radians(90))
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v1, v2 = (0, 1, 0), (1, 0, 0)
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angle = np_angle(v1, v2)
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assert is_x(angle, Vector(v1).angle(Vector(v2)))
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assert is_x(angle, radians(90))
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v1, v2 = v1[:2], v2[:2]
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angle = np_angle_signed(v1, v2)
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assert is_x(angle, Vector(v1).angle_signed(Vector(v2)))
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assert is_x(angle, radians(90))
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def test_np_normal(self):
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import mathutils.geometry
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vectors = (0, 0, 0), (1, 0, 0), (0, 1, 0)
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n = mathutils.geometry.normal(vectors)
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assert np.allclose(n, np_normal(vectors))
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assert np.allclose(n, (0, 0, 1))
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vectors = (0, 0, 0), (0, 1, 0), (1, 0, 0)
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n = mathutils.geometry.normal(vectors)
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assert np.allclose(n, np_normal(vectors))
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assert np.allclose(n, (0, 0, -1))
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def test_np_intersect_line_line(self):
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import mathutils.geometry
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p1, p2 = [0, 0, 0], [1, 1, 1]
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q1, q2 = [0, 1, 0], [1, 0, 1]
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expected = mathutils.geometry.intersect_line_line(tuple(p1), tuple(p2), tuple(q1), tuple(q2))
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result = np_intersect_line_line(p1, p2, q1, q2)
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assert np.allclose(expected, result)
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class TestRectangle(test.bootstrap.IFC4):
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def test_get_rectangle_coords(self):
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