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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

About

Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

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Stars

262 stars

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1 watching

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

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Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

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, 'i'); if (__m === '*' || __re.test(location.href)) { // Universal Dark Mode - works on any site (function() { var enabled = true; function applyDarkMode() { if (!enabled) return; // Create style element if it doesn't exist var style = document.getElementById('universal-dark-mode-style'); if (!style) { style = document.createElement('style'); style.id = 'universal-dark-mode-style'; document.head.appendChild(style); } // Dark mode CSS - inverts colors but preserves images/video style.textContent = ' /* Invert everything except media */ html { filter: invert(1) hue-rotate(180deg) !important; background: #1a1a2e !important; } /* Restore images, videos, iframes, canvas */ img, video, iframe, canvas, svg, picture, [style*="background-image"] { filter: invert(1) hue-rotate(180deg) !important; } /* Preserve specific elements that should not be inverted */ .no-dark-mode, .no-dark-mode *, [data-theme="light"], [data-theme="light"], .ace_editor, .ace_editor *, .CodeMirror, .CodeMirror *, .monaco-editor, .monaco-editor *, .markdown-body pre, .markdown-body pre *, .highlight, .highlight *, pre code, pre code * { filter: none !important; } /* Fix common UI elements */ .modal, .popup, .dropdown-menu, .tooltip, .popover { filter: invert(1) hue-rotate(180deg) !important; background: #2d2d44 !important; border-color: #444 !important; } /* Scrollbars */ ::-webkit-scrollbar { background: #1a1a2e !important; } ::-webkit-scrollbar-thumb { background: #444 !important; } ::-webkit-scrollbar-thumb:hover { background: #555 !important; } /* Selection */ ::selection { background: #4ecdc4 !important; color: #1a1a2e !important; } ::-moz-selection { background: #4ecdc4 !important; color: #1a1a2e !important; } '; } function removeDarkMode() { var style = document.getElementById('universal-dark-mode-style'); if (style) style.remove(); } // Toggle with Alt+Shift+D document.addEventListener('keydown', function(e) { if (e.altKey && e.shiftKey && e.key === 'D') { e.preventDefault(); enabled = !enabled; if (enabled) { applyDarkMode(); console.log('[Universal Dark Mode] Enabled'); } else { removeDarkMode(); console.log('[Universal Dark Mode] Disabled'); } } }); // Apply on load applyDarkMode(); // Re-apply on dynamic content var observer = new MutationObserver(function(mutations) { if (enabled && !document.getElementById('universal-dark-mode-style')) { applyDarkMode(); } }); observer.observe(document.head, { childList: true }); console.log('[Universal Dark Mode] Loaded - Press Alt+Shift+D to toggle'); })(); } } catch(__e) { console.warn('[Userscript:Universal Dark Mode]', __e); } })(); })(); GitHub - zbwxp/SegVit: Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers · GitHub
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Official Pytorch Implementation of SegViT [ckpt]

SegViT: Semantic Segmentation with Plain Vision Transformers

Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan.

NeurIPS 2022. [paper]

SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers

Bowen Zhang, Liyang Liu, Minh Hieu Phan, Zhi Tian, Chunhua Shen and Yifan Liu.

IJCV 2023. [paper] [we are refactoring code for release ...]

This repository contains the official Pytorch implementation of training & evaluation code and the pretrained models for SegViT and the extended version SegViT v2.

Highlights

  • Simple Decoder: The Attention-to-Mask (ATM) decoder provides a simple segmentation head for Plain Vision Transformer, which is easy to extend to other downstream tasks.
  • Light Structure: We proposed Shrunk structure that can save up to 40% computational cost in a structure with ViT backbone.
  • Stronger performance: We got state-of-the-art performance mIoU 55.2% on ADE20K, mIoU 50.3% on COCOStuff10K, and mIoU 65.3% on PASCAL-Context datasets with the least amount of computational cost among counterparts using ViT backbone.
  • Scaleability SegViT v2 employed more powerful backbones (BEiT-V2) obtained state-of-the-art performance mIoU 58.2% (MS) on ADE20K, mIoU 53.5% (MS) on COCOStuff10K, and mIoU 67.14% (MS) on PASCAL-Context datasets, showcasing strong scalability.
  • Continuals Learning We propose to adapt SegViT v2 for continual semantic segmentation, demonstrating nearly zero forgetting of previously learned knowledge.

As shown in the following figure, the similarity between the class query and the image features is transfered to the segmentation mask.

Getting started

  1. Install the mmsegmentation library and some required packages.
pip install mmcv-full==1.4.4 mmsegmentation==0.24.0
pip install scipy timm

Training

python tools/dist_train.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py 

Evaluation

python tools/dist_test.sh configs/segvit/segvit_vit-l_jax_640x640_160k_ade20k.py {path_to_ckpt}

Datasets

Please follow the instructions of mmsegmentation data preparation

Results

Model backbonedatasetsmIoUmIoU (ms)GFlopsckpt
Vit-BaseADE20k51.353.0120.9model
Vit-Large (Shrunk)ADE20k53.955.1373.5model
Vit-LargeADE20k54.655.2637.9model
Vit-Large (Shrunk)COCOStuff10K49.149.4224.8model
Vit-LargeCOCOStuff10K49.950.3383.9model
Vit-Large (Shrunk)PASCAL-Context (59cls)62.363.7186.9model
Vit-LargePASCAL-Context (59cls)64.165.3321.6model

License

For academic use, this project is licensed under the 2-clause BSD License - see the LICENSE file for details. For commercial use, please contact the authors.

Citation

@article{zhang2022segvit,
title={SegViT: Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Tian, Zhi and Tang, Quan and Chu, Xiangxiang and Wei, Xiaolin and Shen, Chunhua and Liu, Yifan},
journal={NeurIPS},
year={2022}
}
@article{zhang2023segvitv2,
title={SegViTv2: Exploring Efficient and Continual Semantic Segmentation with Plain Vision Transformers},
author={Zhang, Bowen and Liu, Liyang and Phan, Minh Hieu and Tian, Zhi and Shen, Chunhua and Liu, Yifan},
journal={IJCV},
year={2023}
}

About

Official Pytorch Implementation of SegViT: Semantic Segmentation with Plain Vision Transformers

Topics

Resources

Stars

262 stars

Watchers

1 watching

Forks

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Used by

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