File:Parametric surface illustration (torus).png
Summary
| Description |
English: Self-made with PlotOptiX package for ray tracing in Python. |
| Date | |
| Source | Own work |
| Author | Rob su |
| Other versions | other fields = |
| PNG development |
Licensing
I, the copyright holder of this work, hereby publish it under the following license:
This file is licensed under the Creative Commons Attribution-Share Alike 4.0 International license.
- You are free:
- to share – to copy, distribute and transmit the work
- to remix – to adapt the work
- Under the following conditions:
- attribution – You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
- share alike – If you remix, transform, or build upon the material, you must distribute your contributions under the same or compatible license as the original.
Source code (python)
import numpy as np
# docs, examples: https://plotoptix.rnd.team
from plotoptix import TkOptiX
from plotoptix.utils import make_color
from plotoptix.materials import m_plastic
def torus(u, v, r, R):
x = r * np.sin(v)
y = (R + r * np.cos(v)) * np.sin(u)
z = (R + r * np.cos(v)) * np.cos(u)
return np.array([x, y, z], dtype=np.float32)
r = (0, 2*np.pi)
n = 500
i = np.linspace(r[0], r[1], n)
U, V = np.meshgrid(i, i)
S = np.swapaxes(torus(U, V, 3, 5), 0, 2)
rt = TkOptiX(width=1500, height=1800)
rt.set_param(min_accumulation_step=2,
max_accumulation_frames=500,
light_shading="Hard")
rt.set_uint("path_seg_range", 6, 15)
rt.setup_material("plastic", m_plastic)
exposure = 0.8; gamma = 2.2
rt.set_float("tonemap_exposure", exposure)
rt.set_float("tonemap_gamma", gamma)
rt.add_postproc("Gamma")
rt.set_background(0)
rt.set_ambient(0.15)
rt.set_surface("surface", S, c=0.94, make_normals=True, mat="plastic")
rt.set_data("plane", geom="Parallelograms",
pos=[[-100, -9, -100]], u=[200, 0, 0], v=[0, 0, 200],
c=make_color([0.1, 0.2, 0.3], exposure=exposure, gamma=gamma))
rt.setup_camera("cam1", cam_type="DoF",
eye=[-50, 5, -15], target=[0, 0, -1], up=[0, 1, 0],
aperture_radius=0.4, aperture_fract=0.2,
focal_scale=0.92, fov=32)
rt.setup_light("light1", pos=[-15, 20, 15], color=8, radius=6)
rt.start()