> For the complete documentation index, see [llms.txt](https://undersleepers.gitbook.io/rogue-resurgence/llms.txt). Markdown versions of documentation pages are available by appending `.md` to page URLs; this page is available as [Markdown](https://undersleepers.gitbook.io/rogue-resurgence/rogue-resurgence-summary.md).

# Rogue Resurgence Summary

**Details:**

* Project Name: Rogue Resurgence
* Genre: 2D, Sci-Fi, Sidescroller, Platformer
* Gamemode: Singleplayer

{% embed url="<https://github.com/Helixneek/rogue-resurgence>" %}

**Rocket Rider** is a 2D platformer that provides players with a fresh take on the traditional platforming genre. In this game, you play as a brave robot armed with a powerful rocket launcher. The goal is simple but thrilling: navigate a difficult obstacle course by using the rocket launcher's explosive thrust to propel yourself across wide gaps, over hazards, and past various obstacles.

<figure><img src="/files/OvuIiRhKf4m5lAPTKbJR" alt=""><figcaption></figcaption></figure>

## Story

Play as a lone rebellious robot armed with a rocket launcher in a world invaded by rebellious robots. Your mission: save humanity. Navigate dangerous environments, avoid enemy machines, and learn the truth behind the uprising with your launcher. It's a race against time to save what's left of humanity and stop the rogue artificial intelligence's evil goals.

## Gameplay

* **Rocket-Powered Propulsion:** Unlike traditional platformers, where jumping is the primary means of movement, **Rogue Resurgence** relies entirely on rocket-powered propulsion. Players must carefully time and aim their rocket blasts to move in any direction, making every move a calculated risk.
* **Dynamic Obstacle Course:** The game offers a variety of obstacle designs, each with varying difficulty. Moving platforms, deadly traps, and other challenges await the players.
* **Physics-Based Challenges:** The movement and behavior of the rocket-powered robot are governed by realistic physics. To effectively overcome the obstacles, players must master the nuances of momentum, trajectory, and timing.
