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import json |
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import numpy as np |
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from numpy.linalg import inv |
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from pathlib import Path |
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import imageio |
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import open3d as o3d |
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from hc3d.vis import CameraCone |
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from hc3d.render import compute_intrinsics, unproject |
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from hc3d.utils import batch_img_resize |
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from fabric.utils.seed import seed_everything |
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def get_K(H=500, W=500, fov=60): |
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K = compute_intrinsics(W / H, fov, H) |
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return K |
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def shoot_rays(K, pose): |
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h = 200 |
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pixs = np.array([ |
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[10, h], |
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[200, h], |
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[400, h] |
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]) |
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pts = unproject(K, pixs, depth=1.0) |
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pts = np.concatenate([ |
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pts, |
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np.array([0, 0, 0, 1]).reshape(1, -1), |
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], axis=0) |
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pts = pts @ pose.T |
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pts = pts[:, :3] |
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pts = pts.astype(np.float32) |
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n = len(pixs) |
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lines = np.array([ |
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[i, n] for i in range(n) |
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], dtype=np.int32) |
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color = [1, 1, 0] |
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colors = np.array([color] * len(lines), dtype=np.float32) |
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lset = o3d.t.geometry.LineSet() |
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lset.point['positions'] = pts |
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lset.line['indices'] = lines |
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lset.line['colors'] = colors |
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return lset |
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def test_rays(H, W, K): |
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xs, ys = np.meshgrid( |
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np.arange(W, dtype=np.float32), |
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np.arange(H, dtype=np.float32), indexing='xy' |
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) |
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xys = np.stack([xs, ys], axis=-1) |
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my_rays = unproject(K, xys.reshape(-1, 2)) |
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my_rays = my_rays.reshape(int(H), int(W), 4)[:, :, :3] |
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return |
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def plot_inward_facing_views(): |
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from math import pi |
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from pose import Poser |
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H, W = 64, 64 |
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poser = Poser(H, W, FoV=60, R=4) |
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K, poses, _ = poser.sample_train(1000) |
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K = K[0] |
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cam_locs = poses[:, :3, -1] |
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def generate_cam(po, color, im=None): |
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cone = CameraCone(K, po, W, H, scale=0.1, |
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top_left_corner=(0, 0), color=color) |
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lset = cone.as_line_set() |
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if im is None: |
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return [lset] |
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else: |
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im = np.ascontiguousarray(im) |
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view_plane = cone.as_view_plane(im) |
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return [lset, view_plane] |
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cones = [] |
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for i in range(len(poses)): |
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po = poses[i] |
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geom = generate_cam(po, [1, 0, 0]) |
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cones.extend(geom) |
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o3d.visualization.draw(cones, show_skybox=False) |
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def blend_rgba(img): |
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img = img[..., :3] * img[..., -1:] + (1. - img[..., -1:]) |
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return img |
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def compare(): |
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import math |
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import matplotlib.pyplot as plt |
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vs = np.linspace(1e-5, math.pi - 1e-5, 500) |
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phi = np.arccos(1 - 2 * (vs / math.pi)) |
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plt.plot(vs, phi) |
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plt.show() |
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if __name__ == "__main__": |
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seed_everything(0) |
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plot_inward_facing_views() |
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