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import pydiffvg |
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import torch |
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import skimage |
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import numpy as np |
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pydiffvg.set_use_gpu(torch.cuda.is_available()) |
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canvas_width, canvas_height = 256, 256 |
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ellipse = pydiffvg.Ellipse(radius = torch.tensor([60.0, 30.0]), |
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center = torch.tensor([128.0, 128.0])) |
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shapes = [ellipse] |
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ellipse_group = pydiffvg.ShapeGroup(shape_ids = torch.tensor([0]), |
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fill_color = torch.tensor([0.3, 0.6, 0.3, 1.0])) |
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shape_groups = [ellipse_group] |
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scene_args = pydiffvg.RenderFunction.serialize_scene(\ |
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canvas_width, canvas_height, shapes, shape_groups) |
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render = pydiffvg.RenderFunction.apply |
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img = render(256, |
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256, |
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2, |
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2, |
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0, |
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None, |
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*scene_args) |
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pydiffvg.imwrite(img.cpu(), 'results/single_ellipse/target.png', gamma=2.2) |
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target = img.clone() |
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radius_n = torch.tensor([20.0 / 256.0, 40.0 / 256.0], requires_grad=True) |
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center_n = torch.tensor([108.0 / 256.0, 138.0 / 256.0], requires_grad=True) |
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color = torch.tensor([0.3, 0.2, 0.8, 1.0], requires_grad=True) |
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ellipse.radius = radius_n * 256 |
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ellipse.center = center_n * 256 |
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ellipse_group.fill_color = color |
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scene_args = pydiffvg.RenderFunction.serialize_scene(\ |
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canvas_width, canvas_height, shapes, shape_groups) |
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img = render(256, |
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256, |
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2, |
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2, |
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1, |
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None, |
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*scene_args) |
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pydiffvg.imwrite(img.cpu(), 'results/single_ellipse/init.png', gamma=2.2) |
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optimizer = torch.optim.Adam([radius_n, center_n, color], lr=1e-2) |
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for t in range(50): |
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print('iteration:', t) |
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optimizer.zero_grad() |
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ellipse.radius = radius_n * 256 |
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ellipse.center = center_n * 256 |
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ellipse_group.fill_color = color |
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scene_args = pydiffvg.RenderFunction.serialize_scene(\ |
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canvas_width, canvas_height, shapes, shape_groups) |
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img = render(256, |
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256, |
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2, |
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2, |
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t+1, |
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None, |
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*scene_args) |
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pydiffvg.imwrite(img.cpu(), 'results/single_ellipse/iter_{}.png'.format(t), gamma=2.2) |
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loss = (img - target).pow(2).sum() |
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print('loss:', loss.item()) |
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loss.backward() |
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print('radius.grad:', radius_n.grad) |
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print('center.grad:', center_n.grad) |
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print('color.grad:', color.grad) |
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optimizer.step() |
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print('radius:', ellipse.radius) |
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print('center:', ellipse.center) |
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print('color:', ellipse_group.fill_color) |
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ellipse.radius = radius_n * 256 |
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ellipse.center = center_n * 256 |
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ellipse_group.fill_color = color |
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scene_args = pydiffvg.RenderFunction.serialize_scene(\ |
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canvas_width, canvas_height, shapes, shape_groups) |
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img = render(256, |
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256, |
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2, |
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2, |
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52, |
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None, |
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*scene_args) |
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pydiffvg.imwrite(img.cpu(), 'results/single_ellipse/final.png') |
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from subprocess import call |
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call(["ffmpeg", "-framerate", "24", "-i", |
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"results/single_ellipse/iter_%d.png", "-vb", "20M", |
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"results/single_ellipse/out.mp4"]) |
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