CipherFlow is a logic puzzle game where you rearrange reactor nodes to transform elements into target matter states.
Each puzzle presents a network of connected nodes. Source nodes emit elements in solid, liquid, or gas form. Your task is to configure modifier nodes — heat, cool, split, and pass — along the path so that the final output matches the target state at the sink node.
Heat transforms solids into liquids and liquids into gases. Cooling reverses the process. Split nodes duplicate the flow into multiple branches, and pass nodes let the element travel unchanged. You must deduce the correct combination to complete each reaction.
Three chapters introduce progressively more complex mechanics:
- Chapter 1: Foundation — Learn the basic transformation rules with straightforward linear paths.
- Chapter 2: Divergence — Branches, splits, and merging paths require careful planning.
- Chapter 3: Synchrony — Multi-branch timing puzzles demand precise configuration across the entire network.
A Sandbox mode lets you freely place and connect any unlocked node type. Create your own reaction networks, test transformations, and experiment without constraints. This mode is ideal for learning the mechanics or designing custom challenges.
The game delivers clear feedback on every attempt. When the flow reaches the sink with the wrong state, an error message identifies the mismatch. Success triggers a celebratory particle burst matching the element's chemical color. Each completed level unlocks the next, and progress is saved automatically.
Clean dark glass visuals with vibrant flowing particles create a modern laboratory atmosphere. Every node type has a distinct icon and color coding for quick recognition. Controls are simple — tap a modifier node to cycle through its available behaviors, then press Run Flow to test your configuration.
CipherFlow exercises logical deduction, causal reasoning, and systematic problem solving. No timers, no scores, no accounts — just pure puzzle logic.
Guide elements through reactors to unlock the correct matter state.