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import numpy as np |
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import pytest |
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from pyrender import PerspectiveCamera, OrthographicCamera |
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def test_perspective_camera(): |
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znear = 0.05 |
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zfar = 100 |
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yfov = np.pi / 3.0 |
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width = 1000.0 |
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height = 500.0 |
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aspectRatio = 640.0 / 480.0 |
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with pytest.raises(TypeError): |
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p = PerspectiveCamera() |
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p = PerspectiveCamera(yfov=yfov) |
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assert p.yfov == yfov |
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assert p.znear == 0.05 |
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assert p.zfar is None |
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assert p.aspectRatio is None |
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p.name = 'asdf' |
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p.name = None |
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with pytest.raises(ValueError): |
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p.yfov = 0.0 |
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with pytest.raises(ValueError): |
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p.yfov = -1.0 |
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with pytest.raises(ValueError): |
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p.znear = -1.0 |
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p.znear = 0.0 |
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p.znear = 0.05 |
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p.zfar = 100.0 |
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assert p.zfar == 100.0 |
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with pytest.raises(ValueError): |
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p.zfar = 0.03 |
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with pytest.raises(ValueError): |
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p.zfar = 0.05 |
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p.aspectRatio = 10.0 |
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assert p.aspectRatio == 10.0 |
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with pytest.raises(ValueError): |
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p.aspectRatio = 0.0 |
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with pytest.raises(ValueError): |
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p.aspectRatio = -1.0 |
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p.znear = 0.05 |
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p.zfar = 100 |
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p.aspectRatio = None |
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with pytest.raises(ValueError): |
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p.get_projection_matrix() |
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assert np.allclose( |
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p.get_projection_matrix(width, height), |
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np.array([ |
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[1.0 / (width / height * np.tan(yfov / 2.0)), 0.0, 0.0, 0.0], |
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[0.0, 1.0 / np.tan(yfov / 2.0), 0.0, 0.0], |
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[0.0, 0.0, (zfar + znear) / (znear - zfar), |
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(2 * zfar * znear) / (znear - zfar)], |
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[0.0, 0.0, -1.0, 0.0] |
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]) |
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) |
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p.aspectRatio = aspectRatio |
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assert np.allclose( |
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p.get_projection_matrix(width, height), |
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np.array([ |
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[1.0 / (aspectRatio * np.tan(yfov / 2.0)), 0.0, 0.0, 0.0], |
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[0.0, 1.0 / np.tan(yfov / 2.0), 0.0, 0.0], |
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[0.0, 0.0, (zfar + znear) / (znear - zfar), |
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(2 * zfar * znear) / (znear - zfar)], |
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[0.0, 0.0, -1.0, 0.0] |
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]) |
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) |
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assert np.allclose( |
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p.get_projection_matrix(), p.get_projection_matrix(width, height) |
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) |
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p.zfar = None |
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p.aspectRatio = None |
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assert np.allclose( |
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p.get_projection_matrix(width, height), |
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np.array([ |
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[1.0 / (width / height * np.tan(yfov / 2.0)), 0.0, 0.0, 0.0], |
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[0.0, 1.0 / np.tan(yfov / 2.0), 0.0, 0.0], |
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[0.0, 0.0, -1.0, -2.0 * znear], |
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[0.0, 0.0, -1.0, 0.0] |
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]) |
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) |
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def test_orthographic_camera(): |
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xm = 1.0 |
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ym = 2.0 |
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n = 0.05 |
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f = 100.0 |
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with pytest.raises(TypeError): |
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c = OrthographicCamera() |
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c = OrthographicCamera(xmag=xm, ymag=ym) |
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assert c.xmag == xm |
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assert c.ymag == ym |
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assert c.znear == 0.05 |
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assert c.zfar == 100.0 |
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assert c.name is None |
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with pytest.raises(TypeError): |
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c.ymag = None |
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with pytest.raises(ValueError): |
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c.ymag = 0.0 |
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with pytest.raises(ValueError): |
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c.ymag = -1.0 |
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with pytest.raises(TypeError): |
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c.xmag = None |
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with pytest.raises(ValueError): |
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c.xmag = 0.0 |
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with pytest.raises(ValueError): |
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c.xmag = -1.0 |
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with pytest.raises(TypeError): |
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c.znear = None |
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with pytest.raises(ValueError): |
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c.znear = 0.0 |
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with pytest.raises(ValueError): |
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c.znear = -1.0 |
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with pytest.raises(ValueError): |
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c.zfar = 0.01 |
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assert np.allclose( |
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c.get_projection_matrix(), |
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np.array([ |
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[1.0 / xm, 0, 0, 0], |
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[0, 1.0 / ym, 0, 0], |
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[0, 0, 2.0 / (n - f), (f + n) / (n - f)], |
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[0, 0, 0, 1.0] |
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]) |
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) |
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