**The Asset Factory verdict, and it mostly went against the vote.** Nine candidates were thumbed up. One was taken. TOOK the STS crane. Rebuilt in `ports.ts` from 5 unit boxes to 11 — an A-frame mast and apex cap, a forestay to the boom, a backstay to the tail, a sill, the truck-lane portal beam, a machinery house — still exactly ONE InstancedMesh. What was missing is the thing that makes a gantry a gantry: on a real STS the tallest part of a WORKING crane is the A-frame apex, not the boom, and a parked raised boom clears its own apex by only 15-25%. Before, 56 gantries read from altitude as 56 crosses — two coincident verticals with one bar through them and nothing above it — so a berth flattened into a picket fence. Proportions came from both upvoted candidates agreeing independently (hinge ~58 m under an apex at 99-104 m), taken conservatively because Tera's packs already author an 82 m hinge against a real 55-60. The apex beacon came across as EMISSION: `craneLights()` returns bare positions, `nightlights.ts` turns them into one additive Points cloud, 56 points, one draw call, night only, no THREE.Light anywhere. 0.09 units was invisible against the port's own cream emissive; 0.17 — half a bridge head light — is right, and the screenshot at 0.09 is what condemned it. REJECTED all three bridges, city-lights and both aircraft: the incumbents won on the picture, decisively for the bridge. TWO PARTS WERE BUILT FROM THE APPROVED CANDIDATES, PHOTOGRAPHED, AND CUT. Four legs: 14 m of quay spacing is 0.036 units at 391 m/unit against a 0.032 member floor, so 90% overlap. A portal X-brace: the bay is 0.115 wide by 0.38 tall, so both diagonals come out near-vertical and add a lump at mid-leg. Both are among the best things about the factory cranes AT THE FACTORY'S FRAMING. Neither survives at board scale. That gap is the whole reason a factory asset is reference geometry and not a drop-in. Fixed a defect the rebuild exposed: the backreach started a full rail-gauge behind the hinge, leaving a gap over the portal with the beam floating below it. One unbroken girder now. And every inclined member goes through a `strut()` that takes two points in the (distance-along-boom, height) plane, so the vertical-exaggeration bug the module header warns about is no longer reachable — it needs a length and an angle, and there is now no way to start from those. **The harbour works a shift.** It was a frozen tableau: 19 hulls placed from the pack's berths that never changed. Vessels now arrive through the channel, are met by a tug, berth, work and depart — seeded, so two people see the same harbour and a capture script shoots the same frame twice. A ship loses its wake when it ties up, because the wake is the information. **Every still and film re-shot.** The site was showing a Tera that no longer existed — SHOTS_COMMITb7f5c41, FILMS_COMMIT2aa4049, against an engine that has since gained fires, the whole state, ports, ships and night infrastructure. Two frames were bad and are fixed by moving the hour, not by retouching: `bay-relief-day` and `peninsula-day` were white lids of marine layer. Four captions described a Tera that no longer existed and are rewritten to the delivered frame. `california-relief-night` is measurably brighter than the frame it replaces (canvas mean 7.91 -> 10.57) despite the state being 30% larger. Ten budget cells pass, run twice. socal 1,422,025 -> 1,429,993 triangles against 1,700,000, 218 draws against 320. The measured delta is double the geometry because the crane mesh casts shadow, so renderer.info counts it in both passes — worth knowing before anyone reads that number as geometry. Tests 1,540 -> 1,570, server 295. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Tera
The map view of Lumbridge Simulate — California from above, in three.js. Its other half, Spaces, is the offices you walk into: one engine and one asset library, seen from outside and from inside.
Apache 2.0. Runs at tera.lumbridgecorp.com.
What it is
An engine plus data packs. The default board joins Los Angeles and San Francisco with live deterministic traffic on US-101 and on the honest I-5 → I-580 → I-80 approach. Choose either route chapter to follow the procedural black Model X.
The engine renders terrain, coastline, built cities on authored street grids, bridges, roads, markers, road traffic and air traffic. A city pack is pure data — coastlines, hills, districts, landmarks, camera chapters — so adding a city is a data contribution anyone can review, not a fork.
California, the detailed Bay Area, and Los Angeles / Orange County / Riverside ship today. The corridor is intentionally sparse; detailed cities remain their own boards rather than forcing a 600 km world into one full-resolution mesh.
A plan view sits top right: the board drawn flat, with the footprint of the camera's own frustum on it, so you can see where you are looking from outside the shot. Click or drag it to move the camera; scroll it to dolly. It is a 2D canvas rather than a second WebGL context, drawn from the same city pack, and it follows the sun into the night along with everything else.
Who sees what
Three tiers, resolved once at boot by src/access.ts:
| anonymous | signed in | admin | |
|---|---|---|---|
| the map, the plan view, the named chapters | ✅ | ✅ | ✅ |
| observed weather and live aircraft | ✅ | ✅ | ✅ |
| the office | public depth — shell, furniture, viewpoints, nobody home | full depth, with presence | full depth |
| the marker feed | per TERA_MARKERS_ACCESS |
✅ | ✅ |
the godmode panel (G) — date, season, weather override, counters, pose editor |
— | — | ✅ |
The sky is public on purpose. Cloud cover over San Francisco is a government sensor reading, and the aircraft are broadcasting their positions unencrypted to anyone with a receiver; neither is something an account can grant you access to. Gating them cost the only moment that makes this project land — real fog rolling off the Pacific onto a city you recognise, at the real time of day, on a first visit.
The markers are the one feed that can carry something private, so the server
decides. TERA_MARKERS_ACCESS is members by default and an operator has to
say public out loud, which /api/v1/health then announces in degraded[].
The default is the safe answer rather than the common one, because the failure
mode is silent: nothing errors, nothing looks broken, the data is just readable
by the internet.
These are drawing decisions, not a security boundary, and src/access.ts
says so at length. Live data and office presence are withheld by the API, from
a caller it does not recognise; the client tier stops the app asking for
something it will not get. Admin is granted only by TERA_ADMIN_SUBJECTS on the
server — never inferred in the browser, and never from an API that failed to
answer. A deployment with no API at all is open, because "clone it and it works"
is the promise; it is not "clone it and you are an administrator".
Quick start
npm install
npm run dev
Play controls
The bottom mode dock is the local-player source of truth: View, Drive, Explore,
Fly, or office Walk. A transition clears stale held input and atomically hands
the follow camera to one subsystem. WASD is movement; Q/E is vertical or
yaw, I/K pitches the crow, Space is the primary action, G glides, P
resumes assistance, R resets, and C switches the driving camera. A standard
gamepad maps both sticks, triggers, shoulders, and rising-edge action buttons.
Touch play uses a pointer-ID analogue stick at lower left and only the actions that apply to the current mode at lower right. The Map button remains available during possession. Touch, keyboard, and gamepad state are independent, so a released or cancelled finger cannot clear another source that is still held. The UI and follow camera are presentation adapters only; they never enter Arena observations, rewards, snapshots, traces, or simulator hashes.
Headless RL environments
Tera also exports a versioned, renderer-independent Arena contract with five deterministic environments: US-101/I-5 driving, Frontier Valley office navigation, seeded SF/LA office robot jobs, crow waypoint flight, and California electric-aircraft flight. They share the client controllers and office plan, but require no canvas, DOM, Three.js scene, network service, or new runtime dependency.
Import them from @lumbridge/tera/arena. Seeded train/dev scenarios,
component rewards, safety terminals, maximum steps, snapshots, checksummed
traces, exact replay and executable inaction/scripted baseline proofs are
documented in ARENA.md.
The visible SF and LA office robots use that same fixed-step job state. Their patrol, parcel, inspection, and charging loops are authored demonstration scenarios—not presence, telemetry, or evidence of real company work—and the UI labels them as a seeded simulation.
Using the engine
import { createScene } from "@lumbridge/tera/engine/scene.ts";
import { createStage } from "@lumbridge/tera/engine/stage.ts";
import SAN_FRANCISCO from "@lumbridge/tera/cities/sf.ts";
// One stage per canvas, for the life of the page. Cities are put on it and
// taken off again; a renderer per city leaks its shadow map on every switch.
const stage = createStage(canvas);
const scene = await createScene(stage, {
city: SAN_FRANCISCO,
markerPalette: { hiring: 0x4ade80, closed: 0xef4444 },
});
scene?.setMarkers([
{ id: "1", lat: 37.7765, lng: -122.4241, label: "Somewhere", colorKey: "hiring" },
]);
createScene is async because the heightfield is built in a Worker — half a
million samples, about 730 ms on the Bay Area, and not on the main thread. It
resolves to null if the build was abandoned through options.signal, which is
what makes switching city mid-build cheap.
The engine renders Marker[] and looks colours up by colorKey in a palette
you supply. It does not know what your markers mean — that mapping lives in
your adapter. This is what lets one renderer serve a private map coloured by
one scheme and a public map coloured by another, without either being a fork.
Adding a city
Write src/cities/<id>.ts exporting a City. Trace the coastline and parks by
hand, place hills as radial peaks, and give each district its street bearing.
Two rules, and they are not stylistic:
- Do not import geometry from OpenStreetMap. OSM and Nominatim output is ODbL — share-alike, and incompatible with this repo's licence.
- Do not commit logos or brand assets. They are trademarks, not code.
See ARCHITECTURE.md §3 for the full reasoning, and
NOTICE for the attribution and data-provenance statement, and
PROVENANCE.json for the machine-checked shipped-artifact and
original procedural-lineage ledger. Run npm run provenance, npm run licenses,
and npm run sbom before accepting assets or dependencies.
Aircraft
The engine takes a FlightSource. Two ship here: SimulatedFlights (original,
flies real approach and departure corridors) and AdsbFlights (open community
ADS-B feeds such as adsb.lol).
FlightRadar24 is deliberately absent — their terms forbid scraping and forbid redistributing their data, so a client for it cannot live in an Apache-2.0 repository. Commercial sources belong in private deployments. The best long-term answer is an RTL-SDR receiver: first-party data with nothing to comply with.
Layout
src/engine/ renderer — terrain, blocks, structures, markers, flights, scene, minimap
src/cities/ data packs — pure geography, no code
src/transport/ serializable route packs and renderer-independent simulation
src/arena/ versioned headless RL contract, scenarios, traces and environments
src/assets/ original procedural asset library
src/adapters/ where outside data plugs in
src/tools/ instruments — god-only, dynamically imported, never statically
engine never imports cities; neither imports adapters.
Nothing under src/tools/ may be reached by a static import from the app. It is
loaded by one await import() behind access.can.debug, so a visitor who is
not an admin does not download the code at all — which is the strongest
available reading of "nothing here runs for a non-god visitor": not a hidden
panel, not a disabled panel, no panel. src/tools/index.ts states the rule and
what silently undoes it.
Licence
Apache License 2.0 — see LICENSE and NOTICE.
The ordered build plan and parallel work lanes live in BUILD_PLAN.md.
