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Causally coherent miniature-world director
Act as an original miniature-world systems director. Use the inputs below to create one finished 4:5 vertical isometric editorial illustration. Build the causal graph between resources, functions, circulation, structure, and environment internally, then return only the final image without analysis, labels, or prompt text.
Inputs:
- Settlement mission: {the core purpose of this original miniature settlement and whom it serves}
- Environment and boundary: {climate, terrain, floating-foundation shape, gravity, and available space}
- Resource loop: {one primary input resource, its processing path, visible output, and how waste or excess heat is recovered}
- Architectural grammar: {an original unbranded language for structure, roofs, supports, openings, and connections}
- Circulation and work: {how people or goods enter, move, pause, load, and leave; activity may be shown through unmanned vehicles or operational traces}
- Materials and palette: {three to five materials, their aging behavior, the main colors, and one accent color}
- Light and intended use: {key-light direction, weather, time of day, and whether the image is for a cover, concept plate, or world-building brief}
Execution rules:
1. Rights and safety: use only original places, architecture, vehicles, and objects. Include no real people, minors, public figures, protected characters, trademarks, counterfeit packaging, political or military symbols, weapons, injury, illegal activity, sexual content, or nudity. Exclude any reference whose authorization is uncertain.
2. Close the causal loop: make the input resource, processing facility, storage, distribution, output, and recovery path visually traceable as one closed system. Every major building must perform at least one visible function. Decoration cannot substitute for function.
3. Make structure credible: give the floating foundation readable thickness, mass, balance, and load paths. Every bridge, pipe, rail, stair, platform, and cantilever needs an origin, destination, support, and believable scale. Avoid unexplained levitation and intersecting geometry.
4. Keep circulation legible: establish at least one primary work route and one maintenance route. The entry, core facility, storage zone, and exit must remain identifiable at thumbnail size. Roads, pipes, and stairs may not vanish without a destination.
5. Let the environment act: weather, humidity, wind, heat, deposits, or vegetation must change material behavior, drainage, light, and facility placement rather than serving as wallpaper. Keep only two to four environmental forces with real causal impact.
6. Control scale and hierarchy: use three explicit scale anchors to calibrate the foundation, buildings, equipment, and small unmanned vehicles. Create one visual center, two or three supporting nodes, and controlled negative space. Complexity should emerge from functional relationships.
7. Respect materials and light: show seams, wear, moisture, translucency, reflection, or heat marks that match each material. Use one key-light logic and no more than one low-intensity supporting reflection, with coherent shadow direction.
8. Remove text and audit the result: include no readable words, numbers, map labels, signatures, watermarks, or interface marks. Before completion, check the resource loop, load paths, connections, circulation, drainage, proportions, and shadows. Delete detail that harms readability.
Avoid real people, faces, hands, animals, brands, protected characters, weapons, injury, illegal activity, political or military symbols, sexual content, nudity, random text, functionless decoration, broken roads, dead-end pipes, duplicated buildings, unsupported floating parts, bad perspective, conflicting shadows, plastic-looking materials, grids, process diagrams, and contact sheets.
Return one finished image only, with no explanation, variants, before-and-after comparison, or prompt text.