Defi

Tools for use in DeFi. Impermanent Loss calculations, staking and farming strategies, coingecko and pancakeswap API queries, liquidity pools and more

Blockchain & Cloud ComputingPythonMIT

Abstract

Defi is an open-source Blockchain & Cloud Computing project. Tools for use in DeFi. Impermanent Loss calculations, staking and farming strategies, coingecko and pancakeswap API queries, liquidity pools and more. It is built using Python. The complete source code is publicly available on GitHub under the MIT License, making it a useful reference for students building a Blockchain & Cloud Computing mini project or final-year project.

1. Introduction

Tools for use in DeFi. Impermanent Loss calculations, staking and farming strategies, coingecko and pancakeswap API queries, liquidity pools and more

2. Objective

Tools for use in DeFi. Impermanent Loss calculations, staking and farming strategies, coingecko and pancakeswap API queries, liquidity pools and more

This project demonstrates how Python can be applied to a real-world Blockchain & Cloud Computing problem.

4. Technology Stack

Python
  • Impermanent Loss, simple calculation
  • Compare Buy & Hold with Staking and Farming
  • Complete list for DeFi protocols TVL, volume and more
  • Example listing top20 DeFi dapps by TVL
  • Example show historical TVL for one or more protocols

5. System Requirements

General requirements for this technology stack — check the README for exact versions.

  • Python 3.8 or later
  • pip / virtualenv for dependencies
  • VS Code, PyCharm or Jupyter Notebook
  • Git (to clone the repository)

6. Installation & Setup

git clone https://github.com/gauss314/defi.git
cd defi

Full setup instructions are in the project README.

7. Future Enhancements

Suggested extensions you can add to make this your own project.

  • Add a CI/CD pipeline with GitHub Actions
  • Deploy to a public test network or cloud free tier
  • Add monitoring and cost alerts

8. Viva / Review Questions

Common questions examiners ask for projects in this domain.

  1. Why does this problem need a blockchain or cloud-native design?
  2. Explain the smart contract / infrastructure components and how they interact.
  3. How are gas costs or cloud costs kept under control?
  4. How is the system secured (keys, IAM, access control)?
  5. How would the solution scale to many more users?

9. Source Code & License

This project is developed by gauss314 and published on GitHub under the MIT License. Please follow the license terms and credit the original author when you use or modify this code.

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