include ; side_leng = 100; min_len = 5; thickness = 2.5; sierpinski_pyramid(side_leng, min_len, thickness, $fn = 4); module sierpinski_pyramid(side_leng, min_len, thickness) { pyramid_frame(side_leng, thickness); if(side_leng > min_len){ half_len = side_leng / 2; h = half_len * 0.707107; pt = [side_leng / 4, side_leng / 4, 0]; for(i=[0:3]) { rotate([0, 0, i * 90]) translate(pt) sierpinski_pyramid(half_len, min_len, thickness); } translate([0, 0, h]) sierpinski_pyramid(half_len, min_len, thickness); } } module pyramid_frame(side_leng, thickness) { half_len = side_leng / 2; h = half_len * 1.414214; tri_pts = [[0, 0, h], [half_len, half_len, 0], [half_len, -half_len, 0], [0, 0, h]]; line_pts = [[half_len, half_len, 0], [-half_len, half_len, 0]]; hull_polyline3d(tri_pts, thickness); mirror([1, 0, 0]) hull_polyline3d(tri_pts, thickness); hull_polyline3d(line_pts, thickness); mirror([0, 1, 0]) hull_polyline3d(line_pts, thickness); }