def is_right_of(self, other_entity): if not isinstance(other_entity, AbstractEntity): raise TypeError("is_right_of() parameter other_entity={0} is not a subclass of AbstractEntity".format(other_entity)) origin = Point() other = self.translation_to(other_entity) return GeomMath.is_right_of(other, origin)
def distance_to(self, other_entity): if not isinstance(other_entity, AbstractEntity): raise TypeError("distance_to() parameter other_entity={0} is not a subclass of AbstractEntity".format(other_entity)) origin = Point() other = self.translation_to(other_entity) return GeomMath.distance_between(origin, other)
def is_left_of(self, other_entity): if not isinstance(other_entity, AbstractEntity): raise TypeError( "is_behind() parameter other_entity={0} is not a subclass of AbstractEntity" .format(other_entity)) origin = Point() other = self.translation_to(other_entity) return GeomMath.is_left_of(other, origin)
def distance_to(self, other_entity): if not isinstance(other_entity, AbstractEntity): raise TypeError( "distance_to() parameter other_entity={0} is not a subclass of AbstractEntity" .format(other_entity)) origin = Point() other = self.translation_to(other_entity) return GeomMath.distance_between(origin, other)
def test_is_right_of(self): self.assertTrue(GeomMath.is_right_of(self.right, self.center)) self.assertFalse(GeomMath.is_right_of(self.left, self.center))
def test_is_behind(self): self.assertTrue(GeomMath.is_behind(self.behind, self.center)) self.assertFalse(GeomMath.is_behind(self.infront, self.center))
def test_distance_to(self): distance = GeomMath.distance_between(self.center, self.infront) self.assertEqual(distance, math.sqrt(3))