Fusion FPS

Github

A first-of-its-kind 3D FPS game built on Starknet, leveraging a hybrid server-authoritative and peer-to-peer architecture, this game utilizes blockchain technology for secure transactions, achieving an 80% reduction in transaction fees compared to traditional blockchain-based FPS games, ensuring cost efficiency without compromising performance.

Hybrid Multiplayer Architecture

The game employs a hybrid multiplayer architecture, combining server-authoritative mechanisms with peer-to-peer elements for low-latency gameplay. This ensures a balance between security and performance, reducing the need for proof generation on servers while maintaining fair and competitive matches.

Utilizing Starknet’s Layer 2 scaling solutions, the game achieves an 80% reduction in transaction fees compared to traditional blockchain-based FPS games. This cost efficiency allows players to engage in blockchain transactions, such as crafting and trading NFT skins, without excessive fees that typically plague blockchain-based games.

Example of Nanite & Virtual Shadow Maps

Transaction & Inference Optimization

The in-game economy is entirely decentralized, with tokens serving as rewards for victories. Players can utilize their earnings to craft skins, which are verifiably unique NFTs. The game ensures a balanced economic model, preventing pay-to-win mechanics while promoting fair gameplay.

In addition to the standard Unity Netcode version, an ECS-based implementation has been developed for improved scalability and performance. This architecture allows the game to handle large-scale multiplayer interactions efficiently, optimizing CPU and memory usage.

Example of Nanite & Virtual Shadow Maps

Advanced Multiplayer FPS Mechanics

This fast-paced multiplayer FPS is built with Unity Netcode, ensuring smooth and responsive online gameplay. The game utilizes an optimized object pooling system to efficiently manage projectiles, effects, and player interactions, significantly reducing network latency and performance overhead. Advanced inverse kinematics (IK) solutions provide realistic weapon handling, allowing for precise aiming, dynamic gun positioning, and natural player movement while holding weapons. Whether sprinting, aiming down sights, or switching weapons, the system ensures fluid and immersive animations. Combined with responsive controls and a robust networking architecture, the game delivers a high-performance multiplayer experience.