def test_bounded_cylinder_bounding_box(self):
     shape = Cylinder()
     shape.minimum = -5
     shape.maximum = 3
     box = shape.bounds_of()
     self.assertEqual(box.min, Point(-1, -5, -1))
     self.assertEqual(box.max, Point(1, 3, 1))
Ejemplo n.º 2
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 def test_group_bounding_box_contains_children(self):
     s = Sphere()
     s.transform = Transformations.translation(2, 5, -3).dot(
         Transformations.scaling(2, 2, 2))
     c = Cylinder()
     c.minimum = -2
     c.maximum = 2
     c.transform = Transformations.translation(-4, -1, 4).dot(
         Transformations.scaling(0.5, 1, 0.5))
     shape = Group()
     shape.add_child(s)
     shape.add_child(c)
     box = shape.bounds_of()
     self.assertEqual(box.min, Point(-4.5, -3, -5))
     self.assertEqual(box.max, Point(4, 7, 4.5))
 def test_normal_vector_cylinder_end_caps(self):
     cyl = Cylinder()
     cyl.minimum = 1
     cyl.maximum = 2
     cyl.closed = True
     PointNormal = namedtuple("PointNormal", ["point", "normal"])
     point_normals = [
         PointNormal(Point(0, 1, 0), Vector(0, -1, 0)),
         PointNormal(Point(0.5, 1, 0), Vector(0, -1, 0)),
         PointNormal(Point(0, 1, 0.5), Vector(0, -1, 0)),
         PointNormal(Point(0, 2, 0), Vector(0, 1, 0)),
         PointNormal(Point(0.5, 2, 0), Vector(0, 1, 0)),
         PointNormal(Point(0, 2, 0.5), Vector(0, 1, 0))
     ]
     for point_normal in point_normals:
         n = cyl.local_normal_at(point_normal.point)
         self.assertEqual(n, point_normal.normal)
 def test_intersect_constrained_cylinder(self):
     cyl = Cylinder()
     cyl.minimum = 1
     cyl.maximum = 2
     CylinderIntersection = namedtuple("CyliderIntersection",
                                       ["point", "direction", "count"])
     cylinder_intersections = [
         CylinderIntersection(Point(0, 1.5, 0), Vector(0.1, 1, 0), 0),
         CylinderIntersection(Point(0, 3, -5), Vector(0, 0, 1), 0),
         CylinderIntersection(Point(0, 0, -5), Vector(0, 0, 1), 0),
         CylinderIntersection(Point(0, 2, -5), Vector(0, 0, 1), 0),
         CylinderIntersection(Point(0, 1, -5), Vector(0, 0, 1), 0),
         CylinderIntersection(Point(0, 1.5, -2), Vector(0, 0, 1), 2)
     ]
     for cylinder_intersection in cylinder_intersections:
         direction = Vector.normalize(cylinder_intersection.direction)
         r = Ray(cylinder_intersection.point, direction)
         xs = cyl.local_intersect(r)
         self.assertEqual(len(xs), cylinder_intersection.count)
 def test_interserct_caps_of_closed_cylinder(self):
     cyl = Cylinder()
     cyl.minimum = 1
     cyl.maximum = 2
     cyl.closed = True
     cyl.maximum = 2
     CylinderIntersection = namedtuple("CyliderIntersection",
                                       ["point", "direction", "count"])
     cylinder_intersections = [
         CylinderIntersection(Point(0, 3, 0), Vector(0, -1, 0), 2),
         CylinderIntersection(Point(0, 3, -2), Vector(0, -1, 2), 2),
         CylinderIntersection(Point(0, 4, -2), Vector(0, -1, 1),
                              2),  # corner case
         CylinderIntersection(Point(0, 0, -2), Vector(0, 1, 2), 2),
         CylinderIntersection(Point(0, -1, -2), Vector(0, 1, 1),
                              2)  # corner case
     ]
     for cylinder_intersection in cylinder_intersections:
         direction = Vector.normalize(cylinder_intersection.direction)
         r = Ray(cylinder_intersection.point, direction)
         xs = cyl.local_intersect(r)
         self.assertEqual(len(xs), cylinder_intersection.count)