2021-10-13 10:00:23 +00:00
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# Copyright (c) 2021, NVIDIA CORPORATION & AFFILIATES. All rights reserved.
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2021-10-07 09:55:26 +00:00
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#
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# NVIDIA CORPORATION and its licensors retain all intellectual property
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# and proprietary rights in and to this software, related documentation
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# and any modifications thereto. Any use, reproduction, disclosure or
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# distribution of this software and related documentation without an express
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# license agreement from NVIDIA CORPORATION is strictly prohibited.
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"""Generate images using pretrained network pickle."""
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import os
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import re
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from typing import List, Optional, Tuple, Union
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import click
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import dnnlib
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import numpy as np
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import PIL.Image
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import torch
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import legacy
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#----------------------------------------------------------------------------
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def parse_range(s: Union[str, List]) -> List[int]:
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'''Parse a comma separated list of numbers or ranges and return a list of ints.
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Example: '1,2,5-10' returns [1, 2, 5, 6, 7]
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'''
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if isinstance(s, list): return s
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ranges = []
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range_re = re.compile(r'^(\d+)-(\d+)$')
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for p in s.split(','):
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m = range_re.match(p)
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if m:
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ranges.extend(range(int(m.group(1)), int(m.group(2))+1))
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else:
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ranges.append(int(p))
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return ranges
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#----------------------------------------------------------------------------
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def parse_vec2(s: Union[str, Tuple[float, float]]) -> Tuple[float, float]:
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'''Parse a floating point 2-vector of syntax 'a,b'.
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Example:
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'0,1' returns (0,1)
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'''
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if isinstance(s, tuple): return s
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parts = s.split(',')
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if len(parts) == 2:
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return (float(parts[0]), float(parts[1]))
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raise ValueError(f'cannot parse 2-vector {s}')
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#----------------------------------------------------------------------------
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def make_transform(translate: Tuple[float,float], angle: float):
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m = np.eye(3)
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s = np.sin(angle/360.0*np.pi*2)
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c = np.cos(angle/360.0*np.pi*2)
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m[0][0] = c
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m[0][1] = s
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m[0][2] = translate[0]
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m[1][0] = -s
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m[1][1] = c
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m[1][2] = translate[1]
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return m
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#----------------------------------------------------------------------------
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@click.command()
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@click.option('--network', 'network_pkl', help='Network pickle filename', required=True)
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@click.option('--seeds', type=parse_range, help='List of random seeds (e.g., \'0,1,4-6\')', required=True)
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@click.option('--trunc', 'truncation_psi', type=float, help='Truncation psi', default=1, show_default=True)
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@click.option('--class', 'class_idx', type=int, help='Class label (unconditional if not specified)')
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@click.option('--noise-mode', help='Noise mode', type=click.Choice(['const', 'random', 'none']), default='const', show_default=True)
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@click.option('--translate', help='Translate XY-coordinate (e.g. \'0.3,1\')', type=parse_vec2, default='0,0', show_default=True, metavar='VEC2')
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@click.option('--rotate', help='Rotation angle in degrees', type=float, default=0, show_default=True, metavar='ANGLE')
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@click.option('--outdir', help='Where to save the output images', type=str, required=True, metavar='DIR')
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def generate_images_cmd(
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network_pkl: str,
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seeds: List[int],
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truncation_psi: float,
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noise_mode: str,
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outdir: str,
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translate: Tuple[float,float],
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rotate: float,
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class_idx: Optional[int]
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):
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"""Generate images using pretrained network pickle.
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Examples:
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\b
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# Generate an image using pre-trained AFHQv2 model ("Ours" in Figure 1, left).
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python gen_images.py --outdir=out --trunc=1 --seeds=2 \\
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--network=https://api.ngc.nvidia.com/v2/models/nvidia/research/stylegan3/versions/1/files/stylegan3-r-afhqv2-512x512.pkl
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\b
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# Generate uncurated images with truncation using the MetFaces-U dataset
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python gen_images.py --outdir=out --trunc=0.7 --seeds=600-605 \\
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--network=https://api.ngc.nvidia.com/v2/models/nvidia/research/stylegan3/versions/1/files/stylegan3-t-metfacesu-1024x1024.pkl
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"""
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for z, img, filename in generate_images(network_pkl,
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seeds,
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outdir,
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truncation_psi,
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noise_mode,
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translate,
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rotate,
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class_idx):
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img.save(filename)
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def generate_images(
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network_pkl: str,
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seeds: List[int],
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outdir: str,
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truncation_psi: float = 1.0,
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noise_mode: str = 'const',
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translate: Tuple[float,float] = (0,0),
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rotate: float = 0,
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class_idx: Optional[int] = None
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):
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print('Loading networks from "%s"...' % network_pkl)
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device = torch.device('cuda')
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with dnnlib.util.open_url(network_pkl) as f:
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G = legacy.load_network_pkl(f)['G_ema'].to(device) # type: ignore
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network_name = os.path.split(os.path.dirname(network_pkl))[1]
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network_iteration_nr = re.findall(r'\d+', os.path.basename(network_pkl))[0]
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os.makedirs(os.path.join(outdir,network_name), exist_ok=True)
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# Labels.
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label = torch.zeros([1, G.c_dim], device=device)
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if G.c_dim != 0:
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if class_idx is None:
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raise click.ClickException('Must specify class label with --class when using a conditional network')
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label[:, class_idx] = 1
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filename_class = f"class{class_idx}"
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else:
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if class_idx is not None:
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print ('warn: --class=lbl ignored when running on an unconditional network')
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filename_class = ""
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# Generate images.
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for seed_idx, seed in enumerate(seeds):
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print('Generating image for seed %d (%d/%d) ...' % (seed, seed_idx, len(seeds)))
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z = torch.from_numpy(np.random.RandomState(seed).randn(1, G.z_dim)).to(device)
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# Construct an inverse rotation/translation matrix and pass to the generator. The
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# generator expects this matrix as an inverse to avoid potentially failing numerical
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# operations in the network.
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if hasattr(G.synthesis, 'input'):
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m = make_transform(translate, rotate)
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m = np.linalg.inv(m)
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G.synthesis.input.transform.copy_(torch.from_numpy(m))
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img = G(z, label, truncation_psi=truncation_psi, noise_mode=noise_mode)
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img = (img.permute(0, 2, 3, 1) * 127.5 + 128).clamp(0, 255).to(torch.uint8)
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yield z, PIL.Image.fromarray(img[0].cpu().numpy(), 'RGB'), f'{outdir}/{network_name}/{network_iteration_nr}-{filename_class}-seed{seed:04d}-trunc{truncation_psi}.png'
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#----------------------------------------------------------------------------
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if __name__ == "__main__":
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generate_images_cmd() # pylint: disable=no-value-for-parameter
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#----------------------------------------------------------------------------
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