Ledger #2 (E's half), built to C's LANE_C_PUB §6 table under John's SUBTLE directive. - Widened fetch: C's tasteful staple list (shop=* + amenity=cafe per C's dagger note), mapped through C's copy-paste table onto EXISTING registry types (no new archetypes). Guardrails honoured: no vehicle/fuel/funeral/storage/industrial, no pure services. New raw snapshot per town (the fetcher auto-refetches when the class list changes -- query recorded in each snapshot), committed like the first. - SUBTLE by construction: secondhand HEROES never subsampled; texture capped at 3x heroes (top of C's ~2-3x band), over-cap towns seed-subsampled deterministically (sha256(townKey:osmId)) with every drop counted in counts.textureDropped. Result 3.0x in all five: katoomba 20+60 (-4), newtown 18+54 (-156), fremantle 20+60 (-81), bendigo 9+27 (-81), castlemaine 6+18 (-43). Density 6-21 -> 24-80 shops (3-4x). - web/assets/towns/index.json (new, E-owned): {schema, generated, license, attribution, towns[{key, town, state, shops, roads}]} -- B's selector can drop the REAL_TOWNS hardcode (hud.js:11). - Deterministic (byte-identical re-run, 0 re-fetch). ODbL: SOURCES.md + per-cache license/attribution. -> Lane A (absorb pass): (1) 10 expected golden re-pins -- the widening moves every real town's base+gig golden (designed E->A handoff); synthetic 0x3fa36874 UNMOVED, fixtures frozen. (2) SEAM: index.json trips selfcheck's town glob (selfcheck.js:467 takes every top-level towns/*.json as a cache) -- one-line fix in your file: .filter(f => f.endsWith('.json') && f !== 'index.json'). Didn't touch selfcheck.js (yours, you're mid-round in it); Fable spec'd the index at this path so the path stays. -> Lane C: kept video_games -> video (absent from your §6 table; was already shipping as video pre-widening, so the fallback would have regressed it to opshop). Same family, same target -- flagging for your table. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> |
||
|---|---|---|
| .. | ||
| _raw | ||
| bendigo_real.json | ||
| castlemaine_real.json | ||
| fremantle_real.json | ||
| index.json | ||
| katoomba_real.json | ||
| newtown_real.json | ||
| README.md | ||
| SOURCES.md | ||
Real town caches — the home (web/assets/towns/)
Lane A owns the contract; Lane E fills this directory (ROUND17 ledger #6, the real-map scout).
Each real Australian town is one file, <key>.json, in the town-cache contract shape — the processed
output of pipeline/build_towns.py (Overpass → dedupe/suburb/parody-name/seeded-hours). plan_osm.js
marches it exactly like the checked-in fixtures in web/js/citygen/osm_fixture.js; the scout proves the
existing CityPlan contract eats real data — no new plan fields, no new geometry.
The contract (authoritative: validateTownCache() in web/js/citygen/plan_osm.js)
{
"schema": "procity-town-cache/1",
"key": "katoomba_real", // matches the filename; distinct from the hand-made fixture key
"town": "Katoomba", // display name
"source": "osm",
"license": "ODbL 1.0", // REQUIRED — OSM is ODbL
"attribution": "© OpenStreetMap contributors",
"generator": "pipeline/build_towns.py", // optional provenance
"fetchedAt": "2026-07-16", // optional
"center": { "lat": -33.71, "lon": 150.31 },// REQUIRED — the equirectangular projection origin
"bbox": { "minLat": …, "minLon": …, "maxLat": …, "maxLon": … }, // optional metadata
"counts": { "raw": 512, "shops": 96 }, // optional metadata
"shops": [
{ "id": 318855426, "name": "Canty's Bookshop", "type": "book", "lat": -35.32, "lon": 149.18, "suburb": "Fyshwick" }
// …
]
}
Hard requirements (else the cache is rejected and does not boot):
center.{lat,lon}finite numbers.shopsan array of ≥MIN_TOWN_SHOPS(6) entries (up to 4 venues + the one openLate landmark + a spare).- every shop has finite
lat/lon.
Absorbed as warnings (still boots): a blank name defaults to the type label; an unknown type remaps
to opshop; duplicate ids; and — importantly — a cache spanning > 5 km warns "likely more than one
town". A cache MUST be ONE compact town: an over-broad Overpass bbox marches into an unusable multi-km
strip (the R17 mega-strip risk — a whole region of 2,918 shops became an 11.6 km avenue). Bound the query.
type should be a registry SHOP_TYPE (record/opshop/toy/book/video/pawn/milkbar/dept/stall);
build_towns.py maps OSM shop=* tags to these (unknowns land on opshop).
Schema v2 — roads[] (ROUND18, v4.0-alpha REAL ROADS)
A v2 cache adds an optional roads[] — the town's real OSM street geometry. When present, plan_osm
builds the CityPlan street graph from the real roads and seats each shop on its nearest real edge (its
real street, real order, real side) instead of marching shops onto synthetic parallel avenues. roads
absent (or schema procity-town-cache/1) ⇒ the marched fallback — every shipped v1 cache stays valid.
{
"schema": "procity-town-cache/2",
// … all v1 fields (center, shops, license, …) …
"roads": [
{ "id": 12345678, // optional (OSM way id)
"kind": "primary", // REQUIRED — the OSM highway=* class (see the map below)
"name": "Katoomba Street", // optional
"pts": [ [-33.7175, 150.3110], [-33.7140, 150.3112], [-33.7100, 150.3115] ] } // REQUIRED — ≥2 [lat,lon]
// …
]
}
Road validity (a bad road is a hard error; a soft one is absorbed):
- each road is
{ kind: string, pts: [[lat,lon], …] }with ≥ 2 finite[lat,lon]points — else rejected. < 2points → the road is dropped (warning); an unmappedkindfalls toside(warning).
kind → CityPlan edge kind (ROAD_KIND in plan_osm.js; the lift then promotes a shop-dense side
road to the main spine): motorway/trunk/primary/secondary → main; tertiary/unclassified/
residential/living_street/road → side; service/track → lane; pedestrian/footway/path/
steps/cycleway → arcade. Fidelity (charter risk #4, A's knob): ship the geometry roughly as OSM
has it; plan_osm simplifies (Douglas–Peucker) — don't pre-decimate below ~1 point per 5 m.
Bound the roads to the town (the bbox law): fetch highway=* within the same per-town bbox as the shops
so the graph is the town's streets, not a region's.
Provenance (Lane E)
OSM data is ODbL. Ship attribution with the data: this README, a SOURCES.md (E's licence table),
and the license/attribution fields on every cache. Cache the raw Overpass responses too so re-runs
never re-fetch.
Wiring
plan_osm.generatePlanOSM(seed, key, { cache })marches a cache directly;registerTownCache(key, cache)adds it to the runtime registry soosmTownKeys()andgeneratePlanFor(seed, 'osm', { town: key })see it.web/js/citygen/selfcheck.jsauto-loads every*.jsonhere: validates it, runs the full structural + gig suites across the hero seeds, and pins a per-town golden (unpinned → prints the value to paste).