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🎲 The truth external PyPI random package, have true_rand, virt_rand, hash_rand, ...

Project description

MultiRandom 🎲

A comprehensive library for exploring and generating randomness across the spectrum—from true physical entropy to mathematical pseudo-randomness and everything in between.

🌟 Overview

MultiRandom is designed for developers, researchers, and hobbyists who want to understand high-quality randomness. It provides tools to fetch random data from quantum sources, physical human interaction, and modern mathematical algorithms.

[!WARNING] Security Note: This library contains both "True" and "Pseudo" random sources. While some sources (like QRNG) are highly secure, others (like LCGs) are provided for educational purposes and include reverse logic to demonstrate their insecurity. Always use the appropriate generator for your use case.


🏗 Project Structure

multirandom/
└── src/
    └── multirandom/
        ├── true_rand/          # Physical & Hardware Entropy
        │   ├── rand_via_clicks.py       # Human-in-the-loop entropy
        │   ├── rand_using_online_api.py # Quantum & Hardware APIs (ANU QRNG, Roll-API)
        │   └── weather_rand.py          # [Coming Soon] Weather-based entropy
        ├── virt_rand/          # Mathematical Randomness (PRNGs)
        │   ├── xor_shift.py             # XorShift & Xoshiro Family
        │   ├── rand_using_virt_lcg.py   # Linear Congruential Generators (LCGs)
        │   └── flash_rand_and_reverse.py # [Coming Soon] Specialized PRNGs
        └── hash_rand/          # Hash-based Generators
            ├── sha_rand.py              # SHA-1, SHA-256, SHA-512 based PRNGs
            └── original_random.py       # Wrapper for Python's built-in random

🛠 Features & Usage

1. Human-in-the-loop Entropy (true_rand)

Uses pyautogui and Windows API to capture sub-microsecond timing jitter and spatial coordinates from physical mouse clicks.

from multirandom.true_rand.rand_via_clicks import RealRandomUsingBetweenMixedClicks

# Requires a sequence of Left -> Right -> Middle clicks to seed
gen = RealRandomUsingBetweenMixedClicks()
print(gen.random())

2. Physical & Hardware APIs (true_rand)

Fetch "True" randomness from remote physical processes.

  • Australian National University (ANU): Quantum vacuum noise via QRNG.
  • Random.org: Atmospheric noise.
  • Roll-API: Physical dice rolling hardware.
  • Weather Entropy: (In development) Fetching randomness from real-time weather stations.

3. Bit-Shift Generators (virt_rand)

Implementations of the most popular mathematical generators used in modern systems.

  • Original XorShift: Includes reverse_roll() to demonstrate mathematical reversibility.
  • Scrambled Variants: Xorwow (CUDA), Xorshift+ (V8/Webkit).
  • Modern Xoshiro: Xoshiro256**, Xoroshiro128++ (Minecraft Java 1.18+).

4. Mathematical LCGs (virt_rand)

Classic Linear Congruential Generators with customizable shift parameters. Includes reverse_roll() methods to demonstrate the insecurity of simple modular arithmetic.


🚀 Installation & Setup

Requirements

  • Python 3.9+
  • Dependencies listed in requirements.txt (e.g., pyautogui, aiohttp)

Installation

pip install -r requirements.txt

Usage

from multirandom.virt_rand.xor_shift import Xorshift32

# Create a 32-bit XorShift generator
gen = Xorshift32(seed=12345)
print(gen.roll())

📺 Educational Resources

This project focuses on the limits of computer-generated randomness. For more context, check out:


📜 License

Provided for educational and research purposes under the GNU General Public License v3 (G GPLv3).

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