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shaderobotics/convnext

By shaderobotics

•Updated about 4 years ago

This is a ROS2 wrapper for the (A ConvNet for the 2020s) with an Image Classification

Image
2

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shaderobotics/convnext repository overview

⁠ConvNext-ROS2 Wrapper

This is a ROS2 wrapper for the (A ConvNet for the 2020s) Convolutional Neural Network inspired from Vision Transformers, ConvNext⁠. We utilize huggingface and the transformers for the source of the algorithm⁠. The main idea is for this container to act as a standalone interface and node, removing the necessity to integrate separate packages and solve numerous dependency issues. We have built all different versions of the algorithm (i.e. base-patch16-224, large-patch16-224, etc.) for each ROS2 distribution.

The ConvNet paper gradually "modernizes" a standard ResNet toward the design of a Vision Transformer, and discovers several key components that contribute to the performance difference along the way. More can be found in the paper⁠

⁠Installation Guide

⁠Using Docker Pull

  1. Install Docker⁠ and ensure the Docker daemon is running in the background.
  2. Run docker pull shaderobotics/swin:${ROS2_DISTRO}-${MODEL_VERSION} we support all ROS2 distributions along with all model versions found in the model version section below.
  3. Follow the run commands in the usage section below

⁠Build Docker Image Natively

  1. Install Docker⁠ and ensure the Docker daemon is running in the background.
  2. Clone this repo with git pull https://github.com/open-shade/swin.git
  3. Enter the repo with cd swin
  4. To pick a specific model version, edit the ALGO_VERSION constant in /swin/swin.py
  5. Build the container with docker build . -t [name]. This will take a while. We have also provided associated cloudbuild.sh scripts to build on GCP all of the associated versions.
  6. Follow the run commands in the usage section below.

⁠Model Versions

  • base-224
  • tiny-224
  • small-224
  • large-224
  • base-384
  • large-384

More information about these versions can be found in the paper⁠. base, large, represent the number of weights stored (i.e. the size of the model). 384 is the resolution size of the image.

⁠Example Docker Command

docker pull shaderobotics/convnext:foxy-base-224

⁠Usage

⁠Run the SWIN Node

Run docker run --net=host shaderobotics/convnext:${ROS_DISTRO}-${MODEL_VERSION}. Your node should be running now. Then, by running ros2 topic list, you should see all the possible pub and sub routes.

For more details explaining how to run Docker images, visit the official Docker documentation here⁠. Also, additional information as to how ROS2 communicates between external environment or multiple docker containers, visit the official ROS2 (foxy) docs here⁠.

⁠Topics

NameIOTypeUse
convnext/image_rawsubsensor_msgs.msg.Image⁠Takes the raw camera output to be processed
convnext/resultpubStringOutputs the classification label from ImageNet 100 Classes as a string

⁠Testing / Demo

To test and ensure that this package is properly installed, replace the Dockerfile in the root of this repo with what exists in the demo folder. Installed in the demo image contains a camera stream emulator⁠ by klintan⁠ which directly pubs images to the ConvNext node and processes it for you to observe the outputs.

To run this, run docker build . -t [name], then docker run --net=host -t [name]. Observing the logs for this will show you what is occurring within the container. If you wish to enter the running container and preform other activities, run docker ps, find the id of the running container, then run docker exec -it [containerId] /bin/bash

Tag summary

Content type

Image

Digest

sha256:5bc5b3b54…

Size

4.8 GB

Last updated

about 4 years ago

docker pull shaderobotics/convnext:galactic-base-384