mirror of
https://github.com/finegrain-ai/refiners.git
synced 2024-11-21 21:58:47 +00:00
177 lines
6.6 KiB
Python
177 lines
6.6 KiB
Python
import argparse
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from pathlib import Path
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import torch
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from refiners.fluxion.utils import load_tensors, save_to_safetensors
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def convert_dinov2_facebook(weights: dict[str, torch.Tensor]) -> None:
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"""Convert a DINOv2 weights from facebook to refiners."""
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# get depth from "blocks" keys
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depth = max([int(k.split(".")[1]) for k in weights.keys() if k.startswith("blocks.")]) + 1
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# only needed when pre-training
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del weights["mask_token"]
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# squeeze cls_token and position_embeddings
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weights["cls_token"] = weights["cls_token"].squeeze(0)
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weights["pos_embed"] = weights["pos_embed"].squeeze(0)
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# rename "w12" to "fc1" and "w3" to "fc2", only for giant model
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for key in list(weights.keys()):
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if "w3" in key:
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new_key = key.replace("w3", "fc2")
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weights[new_key] = weights.pop(key)
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elif "w12" in key:
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# we swap w1 and w2 because of the difference between our GLU implementation and theirs
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# see https://github.com/facebookresearch/dinov2/blob/e1277af2ba9496fbadf7aec6eba56e8d882d1e35/dinov2/layers/swiglu_ffn.py#L31-L34
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# and https://github.com/finegrain-ai/refiners/blob/a2ee70578361e4d84a65a8708564480a9b0ec67e/src/refiners/fluxion/layers/activations.py#L158-L160
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weight = weights.pop(key)
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w1, w2 = weight.chunk(2, dim=0)
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w21 = torch.cat([w2, w1], dim=0)
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new_key = key.replace("w12", "fc1")
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weights[new_key] = w21
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rename_keys: list[tuple[str, str]] = [
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("cls_token", "Concatenate.ClassToken.Parameter.weight"),
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("pos_embed", "PositionalEncoder.PositionalEmbedding.Parameter.weight"),
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("patch_embed.proj.weight", "Concatenate.PatchEncoder.Conv2d.weight"),
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("patch_embed.proj.bias", "Concatenate.PatchEncoder.Conv2d.bias"),
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("norm.weight", "LayerNorm.weight"),
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("norm.bias", "LayerNorm.bias"),
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]
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for i in range(depth):
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rename_keys.append(
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(
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f"blocks.{i}.norm1.weight",
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f"Transformer.TransformerLayer_{i+1}.Residual_1.LayerNorm.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.norm1.bias",
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f"Transformer.TransformerLayer_{i+1}.Residual_1.LayerNorm.bias",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.attn.proj.weight",
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f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Linear.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.attn.proj.bias",
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f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Linear.bias",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.ls1.gamma",
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f"Transformer.TransformerLayer_{i+1}.Residual_1.LayerScale.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.norm2.weight",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.LayerNorm.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.norm2.bias",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.LayerNorm.bias",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.mlp.fc1.weight",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.FeedForward.Linear_1.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.mlp.fc1.bias",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.FeedForward.Linear_1.bias",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.mlp.fc2.weight",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.FeedForward.Linear_2.weight",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.mlp.fc2.bias",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.FeedForward.Linear_2.bias",
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),
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)
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rename_keys.append(
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(
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f"blocks.{i}.ls2.gamma",
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f"Transformer.TransformerLayer_{i+1}.Residual_2.LayerScale.weight",
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),
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)
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if "register_tokens" in weights:
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weights["register_tokens"] = weights["register_tokens"].squeeze(0)
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rename_keys.append(("register_tokens", "Registers.Parameter.weight"))
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# rename keys
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for old_key, new_key in rename_keys:
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weights[new_key] = weights.pop(old_key)
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# split the qkv weights and biases
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for i in range(depth):
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qkv_weight = weights.pop(f"blocks.{i}.attn.qkv.weight")
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q_weight, k_weight, v_weight = qkv_weight.chunk(3, dim=0)
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_1.weight"] = q_weight
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_2.weight"] = k_weight
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_3.weight"] = v_weight
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qkv_bias = weights.pop(f"blocks.{i}.attn.qkv.bias")
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q_bias, k_bias, v_bias = qkv_bias.chunk(3, dim=0)
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_1.bias"] = q_bias
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_2.bias"] = k_bias
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weights[f"Transformer.TransformerLayer_{i+1}.Residual_1.SelfAttention.Distribute.Linear_3.bias"] = v_bias
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def main() -> None:
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parser = argparse.ArgumentParser()
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parser.add_argument(
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"--from",
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type=str,
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required=True,
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dest="source_path",
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help=(
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"Official checkpoint from https://github.com/facebookresearch/dinov2"
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" e.g. /path/to/dinov2_vits14_pretrain.pth"
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),
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)
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parser.add_argument(
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"--to",
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type=str,
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dest="output_path",
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default=None,
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help=(
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"Path to save the converted model. If not specified, the output path will be the source path with the"
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" extension changed to .safetensors."
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),
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)
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parser.add_argument("--half", action="store_true", dest="half")
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args = parser.parse_args()
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weights = load_tensors(args.source_path)
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convert_dinov2_facebook(weights)
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if args.half:
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weights = {key: value.half() for key, value in weights.items()}
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if args.output_path is None:
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args.output_path = f"{Path(args.source_path).stem}.safetensors"
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save_to_safetensors(path=args.output_path, tensors=weights)
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if __name__ == "__main__":
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main()
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