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682 lines
26 KiB
682 lines
26 KiB
""" MLP-Mixer, ResMLP, and gMLP in PyTorch
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This impl originally based on MLP-Mixer paper.
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Official JAX impl: https://github.com/google-research/vision_transformer/blob/linen/vit_jax/models_mixer.py
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Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
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@article{tolstikhin2021,
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title={MLP-Mixer: An all-MLP Architecture for Vision},
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author={Tolstikhin, Ilya and Houlsby, Neil and Kolesnikov, Alexander and Beyer, Lucas and Zhai, Xiaohua and Unterthiner,
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Thomas and Yung, Jessica and Keysers, Daniel and Uszkoreit, Jakob and Lucic, Mario and Dosovitskiy, Alexey},
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journal={arXiv preprint arXiv:2105.01601},
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year={2021}
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}
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Also supporting ResMlp, and a preliminary (not verified) implementations of gMLP
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Code: https://github.com/facebookresearch/deit
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Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
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@misc{touvron2021resmlp,
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title={ResMLP: Feedforward networks for image classification with data-efficient training},
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author={Hugo Touvron and Piotr Bojanowski and Mathilde Caron and Matthieu Cord and Alaaeldin El-Nouby and
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Edouard Grave and Armand Joulin and Gabriel Synnaeve and Jakob Verbeek and Hervé Jégou},
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year={2021},
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eprint={2105.03404},
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}
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Paper: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
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@misc{liu2021pay,
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title={Pay Attention to MLPs},
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author={Hanxiao Liu and Zihang Dai and David R. So and Quoc V. Le},
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year={2021},
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eprint={2105.08050},
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}
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A thank you to paper authors for releasing code and weights.
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Hacked together by / Copyright 2021 Ross Wightman
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"""
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import math
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from copy import deepcopy
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from functools import partial
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import torch
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import torch.nn as nn
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from timm.data import IMAGENET_DEFAULT_MEAN, IMAGENET_DEFAULT_STD
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from .helpers import build_model_with_cfg, named_apply, checkpoint_seq
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from .layers import PatchEmbed, Mlp, GluMlp, GatedMlp, DropPath, lecun_normal_, to_2tuple
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from .registry import register_model
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def _cfg(url='', **kwargs):
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return {
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'url': url,
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'num_classes': 1000, 'input_size': (3, 224, 224), 'pool_size': None,
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'crop_pct': 0.875, 'interpolation': 'bicubic', 'fixed_input_size': True,
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'mean': (0.5, 0.5, 0.5), 'std': (0.5, 0.5, 0.5),
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'first_conv': 'stem.proj', 'classifier': 'head',
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**kwargs
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}
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default_cfgs = dict(
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mixer_s32_224=_cfg(),
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mixer_s16_224=_cfg(),
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mixer_b32_224=_cfg(),
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mixer_b16_224=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-vitjx/jx_mixer_b16_224-76587d61.pth',
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),
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mixer_b16_224_in21k=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-vitjx/jx_mixer_b16_224_in21k-617b3de2.pth',
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num_classes=21843
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),
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mixer_l32_224=_cfg(),
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mixer_l16_224=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-vitjx/jx_mixer_l16_224-92f9adc4.pth',
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),
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mixer_l16_224_in21k=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-vitjx/jx_mixer_l16_224_in21k-846aa33c.pth',
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num_classes=21843
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),
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# Mixer ImageNet-21K-P pretraining
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mixer_b16_224_miil_in21k=_cfg(
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url='https://miil-public-eu.oss-eu-central-1.aliyuncs.com/model-zoo/ImageNet_21K_P/models/timm/mixer_b16_224_miil_in21k.pth',
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mean=(0, 0, 0), std=(1, 1, 1), crop_pct=0.875, interpolation='bilinear', num_classes=11221,
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),
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mixer_b16_224_miil=_cfg(
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url='https://miil-public-eu.oss-eu-central-1.aliyuncs.com/model-zoo/ImageNet_21K_P/models/timm/mixer_b16_224_miil.pth',
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mean=(0, 0, 0), std=(1, 1, 1), crop_pct=0.875, interpolation='bilinear',
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),
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gmixer_12_224=_cfg(mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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gmixer_24_224=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-weights/gmixer_24_224_raa-7daf7ae6.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_12_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_12_no_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_24_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_24_no_dist.pth',
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#url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-weights/resmlp_24_224_raa-a8256759.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_36_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_36_no_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_big_24_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlpB_24_no_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_12_distilled_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_12_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_24_distilled_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_24_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_36_distilled_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_36_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_big_24_distilled_224=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlpB_24_dist.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_big_24_224_in22ft1k=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlpB_24_22k.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_12_224_dino=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_12_dino.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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resmlp_24_224_dino=_cfg(
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url='https://dl.fbaipublicfiles.com/deit/resmlp_24_dino.pth',
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mean=IMAGENET_DEFAULT_MEAN, std=IMAGENET_DEFAULT_STD),
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gmlp_ti16_224=_cfg(),
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gmlp_s16_224=_cfg(
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url='https://github.com/rwightman/pytorch-image-models/releases/download/v0.1-weights/gmlp_s16_224_raa-10536d42.pth',
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),
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gmlp_b16_224=_cfg(),
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)
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class MixerBlock(nn.Module):
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""" Residual Block w/ token mixing and channel MLPs
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Based on: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
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"""
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def __init__(
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self, dim, seq_len, mlp_ratio=(0.5, 4.0), mlp_layer=Mlp,
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norm_layer=partial(nn.LayerNorm, eps=1e-6), act_layer=nn.GELU, drop=0., drop_path=0.):
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super().__init__()
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tokens_dim, channels_dim = [int(x * dim) for x in to_2tuple(mlp_ratio)]
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self.norm1 = norm_layer(dim)
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self.mlp_tokens = mlp_layer(seq_len, tokens_dim, act_layer=act_layer, drop=drop)
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self.drop_path = DropPath(drop_path) if drop_path > 0. else nn.Identity()
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self.norm2 = norm_layer(dim)
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self.mlp_channels = mlp_layer(dim, channels_dim, act_layer=act_layer, drop=drop)
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def forward(self, x):
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x = x + self.drop_path(self.mlp_tokens(self.norm1(x).transpose(1, 2)).transpose(1, 2))
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x = x + self.drop_path(self.mlp_channels(self.norm2(x)))
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return x
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class Affine(nn.Module):
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def __init__(self, dim):
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super().__init__()
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self.alpha = nn.Parameter(torch.ones((1, 1, dim)))
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self.beta = nn.Parameter(torch.zeros((1, 1, dim)))
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def forward(self, x):
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return torch.addcmul(self.beta, self.alpha, x)
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class ResBlock(nn.Module):
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""" Residual MLP block w/ LayerScale and Affine 'norm'
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Based on: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
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"""
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def __init__(
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self, dim, seq_len, mlp_ratio=4, mlp_layer=Mlp, norm_layer=Affine,
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act_layer=nn.GELU, init_values=1e-4, drop=0., drop_path=0.):
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super().__init__()
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channel_dim = int(dim * mlp_ratio)
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self.norm1 = norm_layer(dim)
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self.linear_tokens = nn.Linear(seq_len, seq_len)
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self.drop_path = DropPath(drop_path) if drop_path > 0. else nn.Identity()
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self.norm2 = norm_layer(dim)
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self.mlp_channels = mlp_layer(dim, channel_dim, act_layer=act_layer, drop=drop)
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self.ls1 = nn.Parameter(init_values * torch.ones(dim))
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self.ls2 = nn.Parameter(init_values * torch.ones(dim))
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def forward(self, x):
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x = x + self.drop_path(self.ls1 * self.linear_tokens(self.norm1(x).transpose(1, 2)).transpose(1, 2))
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x = x + self.drop_path(self.ls2 * self.mlp_channels(self.norm2(x)))
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return x
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class SpatialGatingUnit(nn.Module):
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""" Spatial Gating Unit
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Based on: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
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"""
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def __init__(self, dim, seq_len, norm_layer=nn.LayerNorm):
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super().__init__()
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gate_dim = dim // 2
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self.norm = norm_layer(gate_dim)
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self.proj = nn.Linear(seq_len, seq_len)
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def init_weights(self):
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# special init for the projection gate, called as override by base model init
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nn.init.normal_(self.proj.weight, std=1e-6)
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nn.init.ones_(self.proj.bias)
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def forward(self, x):
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u, v = x.chunk(2, dim=-1)
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v = self.norm(v)
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v = self.proj(v.transpose(-1, -2))
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return u * v.transpose(-1, -2)
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class SpatialGatingBlock(nn.Module):
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""" Residual Block w/ Spatial Gating
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Based on: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
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"""
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def __init__(
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self, dim, seq_len, mlp_ratio=4, mlp_layer=GatedMlp,
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norm_layer=partial(nn.LayerNorm, eps=1e-6), act_layer=nn.GELU, drop=0., drop_path=0.):
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super().__init__()
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channel_dim = int(dim * mlp_ratio)
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self.norm = norm_layer(dim)
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sgu = partial(SpatialGatingUnit, seq_len=seq_len)
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self.mlp_channels = mlp_layer(dim, channel_dim, act_layer=act_layer, gate_layer=sgu, drop=drop)
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self.drop_path = DropPath(drop_path) if drop_path > 0. else nn.Identity()
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def forward(self, x):
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x = x + self.drop_path(self.mlp_channels(self.norm(x)))
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return x
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class MlpMixer(nn.Module):
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def __init__(
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self,
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num_classes=1000,
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img_size=224,
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in_chans=3,
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patch_size=16,
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num_blocks=8,
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embed_dim=512,
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mlp_ratio=(0.5, 4.0),
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block_layer=MixerBlock,
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mlp_layer=Mlp,
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norm_layer=partial(nn.LayerNorm, eps=1e-6),
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act_layer=nn.GELU,
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drop_rate=0.,
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drop_path_rate=0.,
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nlhb=False,
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stem_norm=False,
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global_pool='avg',
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):
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super().__init__()
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self.num_classes = num_classes
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self.global_pool = global_pool
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self.num_features = self.embed_dim = embed_dim # num_features for consistency with other models
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self.grad_checkpointing = False
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self.stem = PatchEmbed(
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img_size=img_size, patch_size=patch_size, in_chans=in_chans,
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embed_dim=embed_dim, norm_layer=norm_layer if stem_norm else None)
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# FIXME drop_path (stochastic depth scaling rule or all the same?)
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self.blocks = nn.Sequential(*[
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block_layer(
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embed_dim, self.stem.num_patches, mlp_ratio, mlp_layer=mlp_layer, norm_layer=norm_layer,
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act_layer=act_layer, drop=drop_rate, drop_path=drop_path_rate)
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for _ in range(num_blocks)])
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self.norm = norm_layer(embed_dim)
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self.head = nn.Linear(embed_dim, self.num_classes) if num_classes > 0 else nn.Identity()
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self.init_weights(nlhb=nlhb)
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@torch.jit.ignore
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def init_weights(self, nlhb=False):
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head_bias = -math.log(self.num_classes) if nlhb else 0.
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named_apply(partial(_init_weights, head_bias=head_bias), module=self) # depth-first
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@torch.jit.ignore
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def group_matcher(self, coarse=False):
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return dict(
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stem=r'^stem', # stem and embed
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blocks=[(r'^blocks.(\d+)', None), (r'^norm', (99999,))]
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)
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@torch.jit.ignore
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def set_grad_checkpointing(self, enable=True):
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self.grad_checkpointing = enable
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@torch.jit.ignore
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def get_classifier(self):
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return self.head
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def reset_classifier(self, num_classes, global_pool=None):
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self.num_classes = num_classes
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if global_pool is not None:
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assert global_pool in ('', 'avg')
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self.global_pool = global_pool
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self.head = nn.Linear(self.embed_dim, num_classes) if num_classes > 0 else nn.Identity()
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def forward_features(self, x):
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x = self.stem(x)
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if self.grad_checkpointing and not torch.jit.is_scripting():
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x = checkpoint_seq(self.blocks, x)
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else:
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x = self.blocks(x)
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x = self.norm(x)
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return x
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def forward(self, x):
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x = self.forward_features(x)
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if self.global_pool == 'avg':
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x = x.mean(dim=1)
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x = self.head(x)
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return x
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def _init_weights(module: nn.Module, name: str, head_bias: float = 0., flax=False):
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""" Mixer weight initialization (trying to match Flax defaults)
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"""
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if isinstance(module, nn.Linear):
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if name.startswith('head'):
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nn.init.zeros_(module.weight)
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nn.init.constant_(module.bias, head_bias)
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else:
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if flax:
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# Flax defaults
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lecun_normal_(module.weight)
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if module.bias is not None:
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nn.init.zeros_(module.bias)
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else:
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# like MLP init in vit (my original init)
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nn.init.xavier_uniform_(module.weight)
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if module.bias is not None:
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if 'mlp' in name:
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nn.init.normal_(module.bias, std=1e-6)
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else:
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nn.init.zeros_(module.bias)
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elif isinstance(module, nn.Conv2d):
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lecun_normal_(module.weight)
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if module.bias is not None:
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nn.init.zeros_(module.bias)
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elif isinstance(module, (nn.LayerNorm, nn.BatchNorm2d, nn.GroupNorm)):
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nn.init.ones_(module.weight)
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nn.init.zeros_(module.bias)
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elif hasattr(module, 'init_weights'):
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# NOTE if a parent module contains init_weights method, it can override the init of the
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# child modules as this will be called in depth-first order.
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module.init_weights()
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def checkpoint_filter_fn(state_dict, model):
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""" Remap checkpoints if needed """
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if 'patch_embed.proj.weight' in state_dict:
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# Remap FB ResMlp models -> timm
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out_dict = {}
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for k, v in state_dict.items():
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k = k.replace('patch_embed.', 'stem.')
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k = k.replace('attn.', 'linear_tokens.')
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k = k.replace('mlp.', 'mlp_channels.')
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k = k.replace('gamma_', 'ls')
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if k.endswith('.alpha') or k.endswith('.beta'):
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v = v.reshape(1, 1, -1)
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out_dict[k] = v
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return out_dict
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return state_dict
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def _create_mixer(variant, pretrained=False, **kwargs):
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if kwargs.get('features_only', None):
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raise RuntimeError('features_only not implemented for MLP-Mixer models.')
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model = build_model_with_cfg(
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MlpMixer, variant, pretrained,
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pretrained_filter_fn=checkpoint_filter_fn,
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**kwargs)
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return model
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@register_model
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def mixer_s32_224(pretrained=False, **kwargs):
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""" Mixer-S/32 224x224
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Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
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"""
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model_args = dict(patch_size=32, num_blocks=8, embed_dim=512, **kwargs)
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model = _create_mixer('mixer_s32_224', pretrained=pretrained, **model_args)
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return model
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@register_model
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def mixer_s16_224(pretrained=False, **kwargs):
|
|
""" Mixer-S/16 224x224
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=8, embed_dim=512, **kwargs)
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model = _create_mixer('mixer_s16_224', pretrained=pretrained, **model_args)
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return model
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|
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@register_model
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|
def mixer_b32_224(pretrained=False, **kwargs):
|
|
""" Mixer-B/32 224x224
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=32, num_blocks=12, embed_dim=768, **kwargs)
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|
model = _create_mixer('mixer_b32_224', pretrained=pretrained, **model_args)
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return model
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|
|
|
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@register_model
|
|
def mixer_b16_224(pretrained=False, **kwargs):
|
|
""" Mixer-B/16 224x224. ImageNet-1k pretrained weights.
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=12, embed_dim=768, **kwargs)
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|
model = _create_mixer('mixer_b16_224', pretrained=pretrained, **model_args)
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|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_b16_224_in21k(pretrained=False, **kwargs):
|
|
""" Mixer-B/16 224x224. ImageNet-21k pretrained weights.
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=12, embed_dim=768, **kwargs)
|
|
model = _create_mixer('mixer_b16_224_in21k', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_l32_224(pretrained=False, **kwargs):
|
|
""" Mixer-L/32 224x224.
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=32, num_blocks=24, embed_dim=1024, **kwargs)
|
|
model = _create_mixer('mixer_l32_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_l16_224(pretrained=False, **kwargs):
|
|
""" Mixer-L/16 224x224. ImageNet-1k pretrained weights.
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=24, embed_dim=1024, **kwargs)
|
|
model = _create_mixer('mixer_l16_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_l16_224_in21k(pretrained=False, **kwargs):
|
|
""" Mixer-L/16 224x224. ImageNet-21k pretrained weights.
|
|
Paper: 'MLP-Mixer: An all-MLP Architecture for Vision' - https://arxiv.org/abs/2105.01601
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=24, embed_dim=1024, **kwargs)
|
|
model = _create_mixer('mixer_l16_224_in21k', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_b16_224_miil(pretrained=False, **kwargs):
|
|
""" Mixer-B/16 224x224. ImageNet-21k pretrained weights.
|
|
Weights taken from: https://github.com/Alibaba-MIIL/ImageNet21K
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=12, embed_dim=768, **kwargs)
|
|
model = _create_mixer('mixer_b16_224_miil', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def mixer_b16_224_miil_in21k(pretrained=False, **kwargs):
|
|
""" Mixer-B/16 224x224. ImageNet-1k pretrained weights.
|
|
Weights taken from: https://github.com/Alibaba-MIIL/ImageNet21K
|
|
"""
|
|
model_args = dict(patch_size=16, num_blocks=12, embed_dim=768, **kwargs)
|
|
model = _create_mixer('mixer_b16_224_miil_in21k', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def gmixer_12_224(pretrained=False, **kwargs):
|
|
""" Glu-Mixer-12 224x224
|
|
Experiment by Ross Wightman, adding (Si)GLU to MLP-Mixer
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=12, embed_dim=384, mlp_ratio=(1.0, 4.0),
|
|
mlp_layer=GluMlp, act_layer=nn.SiLU, **kwargs)
|
|
model = _create_mixer('gmixer_12_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def gmixer_24_224(pretrained=False, **kwargs):
|
|
""" Glu-Mixer-24 224x224
|
|
Experiment by Ross Wightman, adding (Si)GLU to MLP-Mixer
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=24, embed_dim=384, mlp_ratio=(1.0, 4.0),
|
|
mlp_layer=GluMlp, act_layer=nn.SiLU, **kwargs)
|
|
model = _create_mixer('gmixer_24_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_12_224(pretrained=False, **kwargs):
|
|
""" ResMLP-12
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=12, embed_dim=384, mlp_ratio=4, block_layer=ResBlock, norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_12_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_24_224(pretrained=False, **kwargs):
|
|
""" ResMLP-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=24, embed_dim=384, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-5), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_24_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_36_224(pretrained=False, **kwargs):
|
|
""" ResMLP-36
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=36, embed_dim=384, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-6), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_36_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_big_24_224(pretrained=False, **kwargs):
|
|
""" ResMLP-B-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=8, num_blocks=24, embed_dim=768, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-6), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_big_24_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_12_distilled_224(pretrained=False, **kwargs):
|
|
""" ResMLP-12
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=12, embed_dim=384, mlp_ratio=4, block_layer=ResBlock, norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_12_distilled_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_24_distilled_224(pretrained=False, **kwargs):
|
|
""" ResMLP-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=24, embed_dim=384, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-5), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_24_distilled_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_36_distilled_224(pretrained=False, **kwargs):
|
|
""" ResMLP-36
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=36, embed_dim=384, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-6), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_36_distilled_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_big_24_distilled_224(pretrained=False, **kwargs):
|
|
""" ResMLP-B-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=8, num_blocks=24, embed_dim=768, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-6), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_big_24_distilled_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_big_24_224_in22ft1k(pretrained=False, **kwargs):
|
|
""" ResMLP-B-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
"""
|
|
model_args = dict(
|
|
patch_size=8, num_blocks=24, embed_dim=768, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-6), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_big_24_224_in22ft1k', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_12_224_dino(pretrained=False, **kwargs):
|
|
""" ResMLP-12
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
|
|
Model pretrained via DINO (self-supervised) - https://arxiv.org/abs/2104.14294
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=12, embed_dim=384, mlp_ratio=4, block_layer=ResBlock, norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_12_224_dino', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def resmlp_24_224_dino(pretrained=False, **kwargs):
|
|
""" ResMLP-24
|
|
Paper: `ResMLP: Feedforward networks for image classification...` - https://arxiv.org/abs/2105.03404
|
|
|
|
Model pretrained via DINO (self-supervised) - https://arxiv.org/abs/2104.14294
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=24, embed_dim=384, mlp_ratio=4,
|
|
block_layer=partial(ResBlock, init_values=1e-5), norm_layer=Affine, **kwargs)
|
|
model = _create_mixer('resmlp_24_224_dino', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def gmlp_ti16_224(pretrained=False, **kwargs):
|
|
""" gMLP-Tiny
|
|
Paper: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=30, embed_dim=128, mlp_ratio=6, block_layer=SpatialGatingBlock,
|
|
mlp_layer=GatedMlp, **kwargs)
|
|
model = _create_mixer('gmlp_ti16_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def gmlp_s16_224(pretrained=False, **kwargs):
|
|
""" gMLP-Small
|
|
Paper: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=30, embed_dim=256, mlp_ratio=6, block_layer=SpatialGatingBlock,
|
|
mlp_layer=GatedMlp, **kwargs)
|
|
model = _create_mixer('gmlp_s16_224', pretrained=pretrained, **model_args)
|
|
return model
|
|
|
|
|
|
@register_model
|
|
def gmlp_b16_224(pretrained=False, **kwargs):
|
|
""" gMLP-Base
|
|
Paper: `Pay Attention to MLPs` - https://arxiv.org/abs/2105.08050
|
|
"""
|
|
model_args = dict(
|
|
patch_size=16, num_blocks=30, embed_dim=512, mlp_ratio=6, block_layer=SpatialGatingBlock,
|
|
mlp_layer=GatedMlp, **kwargs)
|
|
model = _create_mixer('gmlp_b16_224', pretrained=pretrained, **model_args)
|
|
return model
|