UI Overlays — TriadicFrameworks Prompts
This page is the front door for all overlay documentation.
Purpose#
Overlays are used to:
- visualize RTT operator grammar
- show drift‑tensor behavior across layers
- highlight coherence anchors
- reveal substrate‑tensor transitions
- display dimensional rails and transitions
- map domain behavior across the six canonical domains
- expose dependencies between templates, stacks, engines, and modules
- support teaching bundles and diagnostic flows
Overlays are the visual intelligence layer of the Prompts UI.
Overlay Types#
The UI supports several canonical overlay types:
1. Structural Overlays#
Show identity, boundary, commitment, and topology.
Used in:
- structural-stack
- RTT/1
- module identity sections
2. Drift Overlays#
Visualize geometric, operational, temporal, conceptual, and domain drift.
Used in:
- drift-stack
- RTT/2
- drift templates
- diagnostic flows
3. Coherence Overlays#
Highlight purpose, constraint, goal, and continuity coherence.
Used in:
- coherence-stack
- RTT/3
- coherence templates
- teaching bundles
4. Regime‑Point Overlays#
Show presence, absence, tension, basin behavior, and attractors.
Used in:
- diagnostic-stack
- RTT/12
- regime‑point modules
- advanced teaching flows
5. Substrate Overlays#
Visualize substrate behavior across physical, cultural, cognitive, civic, biological, and computational media.
Used in:
- substrate-stack
- RTT∞
- substrate templates
- cross‑substrate modules
6. Dimensional Overlays#
Show dimensional rails, drift, coherence, prime‑state transitions, collapse, and integration.
Used in:
- dimensional-stack
- RTT∞
- dimensional templates
- teaching bundles
7. Domain Overlays#
Visualize domain behavior across psychology, physics, economics, governance, AI/agents, and biology.
Used in:
- domain-stack
- domain templates
- cross‑domain modules
- research bundles
8. Dependency Overlays#
Show relationships between templates, stacks, engines, modules, and UI flows.
Used in:
- dependency-graph.md
- unlock-logic.md
- flows.md
Overlay Behavior#
Overlays follow these rules:
- overlays activate only when prerequisites are met
- overlays stack visually in canonical RTT order
- overlays may be toggled individually or in groups
- overlays never override core UI content
- overlays always reflect the current engine, stack, or module
- overlays integrate directly with the S3 Spine Visualizer
Overlay Activation Rules#
Overlays activate based on:
1. Template Usage#
Using a template unlocks its corresponding overlay.
2. Stack Traversal#
Traversing a stack unlocks overlays for that stack.
3. Engine Selection#
Selecting an RTT engine activates engine‑specific overlays.
4. Module Viewing#
Viewing a module activates overlays relevant to that module’s layer.
5. UI Interaction#
Viewing dependency graphs or wireframes unlocks dependency overlays.
S3 Spine Integration#
Overlays map directly onto the S3 Spine Visualizer:
- structural overlays map to the spine’s identity layer
- drift overlays map to the drift‑tensor rails
- coherence overlays map to the coherence anchors
- regime‑point overlays map to attractor basins
- substrate overlays map to substrate‑tensor transitions
- dimensional overlays map to dimensional rails
- domain overlays map to domain nodes
- dependency overlays map to cross‑layer edges
The spine becomes a multi‑layer RTT visualization when overlays are active.
Overlay Wireframe#
All overlays follow a shared wireframe:
# Overlay Title
## Overview
Block…
## Layer Mapping
Block…
## Activation Rules
Block…
## UI Behavior
Block…
## Spine Integration
Block…
## Examples
Block…
## Manifest
Block…
Cross‑Links#
index.md— UI front‑doorunlock-logic.md— unlock rulesdependency-graph.md— dependency graphflows.md— UI flowswireframe.md— wireframe layoutoutput-format.md— output formatting
Manifest#
See module.json for the full registry of UI modules, templates, stacks, engines,
examples, and navigation structure.
