Add tools/site_audit; retract the p1 claim against C; show LANE BAL
site_audit answers "is this site winnable?" before it ships — the check that
was missing when SPRINT6 shipped a yard whose bed-covering quad pulled 7.4 kN
against a shop that holds 6.5. It enumerates in-band quads, flies the real
storm headless, maps each corner to the cheapest tier that holds it, and
verdicts against the $80 budget. On backyard_01 it independently reproduces
THE LINE: p1,p2,p3,p4 at $65 + $15 spare, matching balance.test to within 2%.
It also caught three of my own bugs, which is the point of building it:
· it settled on STORM wind frozen at t=0 — the exact anti-pattern
balance.test documents at 1.94 kN vs 0.40 kN. Now settles on the calm
day on a running clock, the way main.js does.
· peakLoad is peak-since-ATTACH, so the settle transient was being
reported as a storm peak. sail.js gains resetPeaks().
· its p4 was typed from world.js's postSpecs, missing that posts are RAKED
8° away from centre — 0.56 m off. The audit now re-derives all four posts
from live world.js on every run and hard-fails on drift.
That last check is deliberately narrow. Node CANNOT dress: dress() needs
GLTFLoader (bare 'three') and fetch()es .glb over file://. createWorld() still
SUCCEEDS in node — it just returns the GRAYBOX yard, house at x=±5, no branch
anchors. So a headless tool that "reads world.js for the real yard" gets the
fictional x=±5 house that cost two sprints. Reading live code is not reading
truth. Verified in-browser: the dump matches the dressed yard on all 12
anchors. Posts are the only thing dress() never touches, so they're the only
thing worth cross-checking — and that check is what caught p4.
C IS RIGHT ABOUT p1 AND I WAS WRONG, for the third time. My comment claimed
C's 1.08 kN didn't reproduce, that p1 peaked at 1.27 and the line won on TIME
rather than headroom. Re-measured on the dressed yard, same flight:
shade cloth p1 0.98 kN 0/4 lost membrane p1 1.23 kN p1 LETS GO
p1 never touches its 1.2 kN rating on cloth — 18% of real headroom. Where 1.27
came from: a loadout where a corner BROKE and dumped its share onto p1 (the
same quad with hardware the budget can't buy reads 2.48). Any p1 number
gathered without checking `lost` measures a cascade, not a fabric.
So the fabric is the decision, not a skin: 0.98 vs 1.23 against a 1.20 rating
is the difference between the $5 carabiner holding the wild night and failing
it. New assert `fabric decides p1` locks that in, so nobody has to trust the
paragraph.
selftest.html rendered ['A'..'E'] while importing BAL too, so the balance
suite ran, counted toward the summary, and had every row silently dropped —
including, had one gone red, the row saying which assert failed. The merge
gate was invisible in its own report. My bug: I added the import, not the
renderer. Now derived from the report.
Selftest: 276 passed, 0 failed, 0 skipped (LANE BAL now visible).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
This commit is contained in:
parent
e576f5cb67
commit
e4436248b0
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tools/site_audit/audit.mjs
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tools/site_audit/audit.mjs
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#!/usr/bin/env node
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/**
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* site_audit — is this site winnable, BEFORE it ships? [Lane B, SPRINT9]
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*
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* node tools/site_audit/audit.mjs # the shipped yard
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* node tools/site_audit/audit.mjs web/world/data/sites/site_02.json
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* node tools/site_audit/audit.mjs --storm storm_03_southerly
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*
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* WHY THIS EXISTS, in one number: p1 = 7.4 kN.
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*
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* In SPRINT6 the yard shipped with a bed-covering quad whose corner pulled
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* 7.4 kN against a shop whose best hardware holds 6.5. No loadout could hold it
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* at any price, so the wild night was unwinnable — and it took four lanes two
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* sprints to find out, because nothing checked the site's GEOMETRY against the
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* shop's PRICE LIST at authoring time. Geometry decides winnability. A site is a
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* balance decision disguised as art, and it should be audited the minute it's
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* drawn, not the sprint after it ships.
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*
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* What it does NOT do: score the garden. Winnability is decided before any of
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* that — by whether a quad exists that (a) covers the bed and (b) has peak
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* corner loads the budget can hold. The garden drain only decides how BADLY you
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* lose a site that was already unwinnable. That's also why this runs in node:
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* no skyfx, no document, no browser, ~20 s per site.
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*/
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import { readFile } from 'node:fs/promises';
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import { SailRig, orderRing } from '../../web/world/js/sail.js';
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import { createWind } from '../../web/world/js/weather.js';
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import { HARDWARE, START_BUDGET, FIXED_DT } from '../../web/world/js/contracts.js';
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const [CARABINER, SHACKLE, RATED] = HARDWARE;
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const SPARE_COST = 15;
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const BAND = { lo: 18, hi: 45 }; // A's a.test rigging band
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const MIN_COVER = 0.25; // A's "shades the bed" bar
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const SETTLE_S = 12; // D's settle — a player plays through prep
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const CALM_STORM = 'storm_01_gentle'; // main.js's CALM_STORM: what wind.use() hands the rig in prep
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const PRE_GUST_S = 3; // hold the settle inside gentle's pre-gust window (balance.test)
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const argv = process.argv.slice(2);
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const stormArg = (() => { const i = argv.indexOf('--storm'); return i >= 0 ? argv[i + 1] : 'storm_02_wildnight'; })();
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const sitePath = argv.find((a) => !a.startsWith('--') && a !== stormArg) || null;
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/**
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* THE SHIPPED YARD, headless — a dump of the DRESSED yard, and it has to be.
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*
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* Node cannot dress: dress() needs GLTFLoader (a bare 'three' specifier) and
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* fetch()es .glb over file://, neither of which works outside a browser. And
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* that matters far more than it sounds, because createWorld() still SUCCEEDS in
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* node — it just hands back the GRAYBOX yard:
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*
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* graybox (node) dressed (browser, what the player plays)
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* h1 x = -5.00 h1 x = -3.00 ← dress() adopts E's fascia
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* t1 (-9.00, 2.00) t1 (-9.96, 0.54) ← dress() adopts branch_anchor_01
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* t1b/t1c/t2b: ABSENT t1b/t1c/t2b: exist ← dress() adds them
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*
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* A headless tool that "reads world.js for the real yard" therefore gets the
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* house at x=±5 — the exact fictional yard that made the SPRINT6 harness report
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* the wild night unwinnable, memorialised at the top of balance.test.js. Reading
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* live code is not the same as reading truth. The dump below is the real yard;
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* live world.js, in node, is not.
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*
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* So the deal is: dumped values for what only dress() knows, and a HARD
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* CROSS-CHECK against live world.js for everything dress() never touches.
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* dress() only adopts h1..h3 / t1 / t2 and adds the branch anchors — the four
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* posts are pure world.js, so they are re-verified on every run (verifyPosts).
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* That check exists because the first draft of this file typed p4 straight from
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* world.js's `postSpecs` and missed that posts are RAKED 8° away from centre:
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* it sat 0.56 m off, and the audit dutifully reported on a post that isn't there.
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*
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* This whole apparatus is why SPRINT9 gate 2 (sites as DATA) is worth it. The
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* moment `data/sites/backyard_01.json` exists, pass it and none of this is used.
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*/
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const BACKYARD_01 = {
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name: 'backyard_01 (dressed-yard dump — posts verified live, see comment)',
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dumped: true,
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bed: { x: 1, z: 2, w: 6, d: 4 },
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anchors: [
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// dress()-only: adopted from E's GLBs. Unverifiable headless.
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['h1', 'house', -3.00, 2.48, -9.95], ['h2', 'house', 0.00, 2.48, -9.95], ['h3', 'house', 3.00, 2.48, -9.95],
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['t1', 'tree', -9.96, 3.45, 0.54], ['t2', 'tree', 7.83, 2.93, -0.85],
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['t1b', 'tree', -9.94, 3.96, 2.78], ['t1c', 'tree', -10.38, 5.05, 2.98], ['t2b', 'tree', 8.14, 3.70, -0.96],
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// pure world.js — cross-checked against live code on every run.
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['p1', 'post', -4.85, 3.95, 5.93], ['p2', 'post', 4.31, 3.96, 6.46], ['p3', 'post', 0.00, 3.95, 7.56],
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['p4', 'post', -3.72, 4.00, -1.40],
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].map(([id, type, x, y, z]) => ({ id, type, pos: { x, y, z } })),
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};
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/** Anchors dress() never touches — so live world.js IS authoritative for these. */
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const VERIFIABLE = new Set(['p1', 'p2', 'p3', 'p4']);
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/**
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* Re-derive the posts from live world.js and fail loudly if the dump drifted.
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* The one guard-rail a hand-typed yard can actually have.
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*/
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async function verifyPosts(site) {
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const THREE = await import('../../web/world/vendor/three.module.js');
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const { createWorld } = await import('../../web/world/js/world.js');
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const stub = {
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sample: (p, t, o) => (o || new THREE.Vector3()).set(0, 0, 4),
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speedAt: () => 4, rainAt: () => 0, rainMmPerHour: () => 0,
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gustTelegraph: () => null, setSheltersFromTrees() {}, eventsBetween: () => [],
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};
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const world = createWorld(new THREE.Scene(), { wind: stub }); // graybox: fine, posts are graybox
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const live = new Map(world.anchors.map((a) => [a.id, a.pos]));
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const drift = [];
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for (const a of site.anchors) {
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if (!VERIFIABLE.has(a.id)) continue;
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const l = live.get(a.id);
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if (!l) { drift.push(`${a.id}: gone from world.js entirely`); continue; }
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const d = Math.hypot(a.pos.x - l.x, a.pos.y - l.y, a.pos.z - l.z);
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if (d > 0.01) drift.push(`${a.id}: dump (${a.pos.x.toFixed(2)}, ${a.pos.y.toFixed(2)}, ${a.pos.z.toFixed(2)}) ` +
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`vs world.js (${l.x.toFixed(2)}, ${l.y.toFixed(2)}, ${l.z.toFixed(2)}) — ${d.toFixed(2)} m out`);
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}
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const missing = [...live.keys()].filter((id) => !site.anchors.some((a) => a.id === id));
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if (missing.length) drift.push(`world.js has anchors this dump has never heard of: ${missing.join(', ')}`);
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return drift;
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}
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async function loadSite(path) {
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if (!path) return BACKYARD_01;
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const j = JSON.parse(await readFile(path, 'utf8'));
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// site-as-data shape (Lane A, gate 2). Tolerant: only anchors + bed are needed.
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const anchors = (j.anchors || []).map((a) => ({
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id: a.id, type: a.type || 'post',
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pos: { x: a.pos?.x ?? a.x, y: a.pos?.y ?? a.y, z: a.pos?.z ?? a.z },
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}));
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return { name: j.name || path, bed: j.gardenBed || j.bed, anchors };
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}
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const withSway = (list) => list.map((a) => ({ ...a, sway: () => a.pos }));
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/** Ground-plane area, shoelace over the ring — the same formula a.test uses. */
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function areaOf(q) {
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const r = orderRing(q);
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let a = 0;
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for (let i = 0, j = r.length - 1; i < r.length; j = i++) a += (r[j].pos.x + r[i].pos.x) * (r[j].pos.z - r[i].pos.z);
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return Math.abs(a / 2);
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}
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/** Cheapest hardware that holds a corner at `peak` kN, or null if the shop can't. */
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const tierFor = (peakN) => HARDWARE.find((h) => h.rating >= peakN) || null;
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async function main() {
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const site = await loadSite(sitePath);
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const anchors = withSway(site.anchors);
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const def = JSON.parse(await readFile(new URL(`../../web/world/data/storms/${stormArg}.json`, import.meta.url), 'utf8'));
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console.log(`\nsite_audit — ${site.name}`);
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if (site.dumped) {
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const drift = await verifyPosts(site);
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if (drift.length) {
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console.log('\n✗ FAIL — the built-in yard dump no longer matches world.js:\n');
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for (const d of drift) console.log(` ${d}`);
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console.log('\n Every number this tool prints would be about a yard that does not exist.');
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console.log(' Fix the dump (posts are RAKED 8° — use the anchor pos, not postSpecs), or pass a site JSON.\n');
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process.exit(1);
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}
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console.log(` posts verified against live world.js ✓ ` +
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`dress()-only anchors trusted from the dump: h1,h2,h3,t1,t2,t1b,t1c,t2b`);
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console.log(` (node cannot dress — live world.js here is the GRAYBOX yard, house at x=±5. See comment.)`);
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}
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console.log(`storm: ${stormArg} (${def.duration}s, downdraftOfTotal ${def.gusts?.downdraftOfTotal ?? '—'})`);
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console.log(`shop: $${START_BUDGET} · ${HARDWARE.map((h) => `${h.name} $${h.cost}/${(h.rating / 1000).toFixed(1)}kN`).join(' · ')}\n`);
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// 1. every quad, in the rigging band, that shades the bed
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const cands = [];
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const A = anchors;
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for (let a = 0; a < A.length; a++) for (let b = a + 1; b < A.length; b++)
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for (let c = b + 1; c < A.length; c++) for (let d = c + 1; d < A.length; d++) {
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const q = [A[a], A[b], A[c], A[d]];
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const area = areaOf(q);
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if (area < BAND.lo || area > BAND.hi) continue;
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let rig;
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try {
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rig = new SailRig({ anchors, gridN: 10 }).attach(q.map((x) => x.id), Array(4).fill(HARDWARE[2]), 1.0);
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} catch { continue; } // degenerate ring
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const cover = rig.coverageOver(site.bed, { x: 0, y: 1, z: 0 });
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if (cover >= MIN_COVER) cands.push({ ids: q.map((x) => x.id), area, cover });
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}
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if (!cands.length) {
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console.log(`✗ FAIL — no quad in the ${BAND.lo}-${BAND.hi} m² band shades the bed at all.`);
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console.log(` The site cannot be rigged. It needs an anchor near the bed before it ships.\n`);
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process.exit(1);
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}
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// 2. peak corner loads, settled, on the real storm. This is the p1=7.4 kN check.
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//
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// This drives the wind the way main.js does, and every clause below is here
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// because the first draft skipped it and MIS-MEASURED:
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//
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// · createWind (not the raw field) + setSheltersFromTrees — trees knock a
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// hole downwind, and a quad hanging off tree anchors sits in it. main.js
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// does this at boot.
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// · the settle runs on the CALM day on a RUNNING clock, because that is what
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// wind.use() hands the rig during prep. The first draft settled on STORM
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// wind frozen at t=0 — the exact anti-pattern balance.test documents at
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// 1.94 kN vs 0.40 kN of standing load at storm entry.
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// · resetPeaks() at storm entry, because peakLoad is peak-since-ATTACH and
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// was quietly folding the attach transient + settle into the storm peak.
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//
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// A tool that vets sites is worthless if it doesn't fly the storm the game
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// flies. It reported p1 at 1.1 kN with all three of those wrong.
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const trees = site.anchors.filter((a) => a.type === 'tree');
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const wind = createWind(def);
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wind.setSheltersFromTrees(trees);
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const calmDef = JSON.parse(await readFile(new URL(`../../web/world/data/storms/${CALM_STORM}.json`, import.meta.url), 'utf8'));
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const calmWind = createWind(calmDef);
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calmWind.setSheltersFromTrees(trees);
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const rows = [];
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for (const cnd of cands) {
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// shade cloth: the fabric a competent player takes into a windy night
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const rig = new SailRig({ anchors, gridN: 10, porosity: 0.30 })
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.attach(cnd.ids, Array(4).fill({ name: 'audit', cost: 0, rating: Infinity }), 1.0);
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for (let i = 0, n = Math.round(SETTLE_S / FIXED_DT); i < n; i++) {
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rig.step(FIXED_DT, calmWind, (i * FIXED_DT) % PRE_GUST_S);
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}
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rig.resetPeaks(); // ← the storm starts HERE
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for (let i = 0; i < def.duration * 60; i++) rig.step(FIXED_DT, wind, i * FIXED_DT);
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const corners = rig.corners.map((c) => ({ id: c.anchorId, peak: c.peakLoad }));
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const tiers = corners.map((c) => ({ ...c, tier: tierFor(c.peak) }));
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const unholdable = tiers.filter((c) => !c.tier);
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const hw = tiers.reduce((s, c) => s + (c.tier ? c.tier.cost : 0), 0);
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rows.push({ ...cnd, tiers, unholdable, hw, total: hw + SPARE_COST, affordable: !unholdable.length && hw <= START_BUDGET });
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}
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rows.sort((a, b) => (a.affordable === b.affordable ? a.hw - b.hw : a.affordable ? -1 : 1));
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console.log(`${cands.length} quad(s) in band shading the bed:\n`);
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for (const r of rows) {
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const cs = r.tiers.map((c) => `${c.id} ${(c.peak / 1000).toFixed(1)}kN→${c.tier ? '$' + c.tier.cost : 'NONE'}`).join(' ');
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const mark = r.unholdable.length ? '✗ unholdable' : r.hw <= START_BUDGET ? `✓ $${r.hw}` : `✗ $${r.hw} > $${START_BUDGET}`;
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console.log(` ${r.ids.join(',').padEnd(18)} ${r.area.toFixed(0).padStart(3)} m² cover ${(r.cover * 100).toFixed(0).padStart(3)}% ${mark.padEnd(14)} ${cs}`);
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}
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const winners = rows.filter((r) => r.affordable);
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console.log('');
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if (!winners.length) {
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const best = rows[0];
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console.log(`✗ FAIL — no affordable holding line. Cheapest is ${best.ids.join(',')} at $${best.hw} on a $${START_BUDGET} budget` +
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(best.unholdable.length ? `, and ${best.unholdable.map((c) => c.id).join('/')} exceeds the shop's ${(HARDWARE.at(-1).rating / 1000).toFixed(1)} kN ceiling at any price.` : '.'));
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console.log(` This is the SPRINT6 p1=7.4 kN failure. Move an anchor, or the site ships unwinnable.\n`);
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process.exit(1);
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}
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const w = winners[0];
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console.log(`✓ PASS — ${winners.length} affordable line(s). Best: ${w.ids.join(',')} — $${w.hw} hardware` +
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`${w.total <= START_BUDGET ? ` (+$${SPARE_COST} spare = $${w.total}, still inside budget)` : ` — no room for a $${SPARE_COST} spare`}` +
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`, ${w.area.toFixed(0)} m², ${(w.cover * 100).toFixed(0)}% of the bed.\n`);
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}
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main().catch((e) => { console.error('site_audit failed:', e.message); process.exit(2); });
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@ -823,6 +823,19 @@ export class SailRig {
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}
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}
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/**
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* Zero the peak-load watermarks to the CURRENT load. `peakLoad` is otherwise
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* peak-since-attach, which silently folds the attach transient and any settle
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* into whatever you meant to measure — call this where measurement starts.
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*
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* Written for tools/site_audit, which was reporting a 12 s settle's transient
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* as a storm peak until it called this. `load` itself is untouched.
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*/
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resetPeaks() {
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for (const c of this.corners) c.peakLoad = c.load;
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return this;
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}
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/** Ported from the prototype: 0.4 s sustained over the rating and it lets go. */
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_checkFailure(dt) {
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for (let k = 0; k < 4; k++) {
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@ -93,23 +93,32 @@ async function buildYard() {
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// cheapest thing that will hold p1. That last corner is the whole $10 gap
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// between a $90 rig and an $80 budget.
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//
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||||
// MEASURED HERE, and it does not match C's table — flagged in THREADS. C
|
||||
// reported p1 dropping to 1.08 kN with shade cloth + downdraft 0.40, i.e. under
|
||||
// a carabiner's 1.2 kN rating. This harness gets p1 peaking at:
|
||||
// C IS RIGHT ABOUT p1, AND I WAS WRONG. An earlier revision of this comment
|
||||
// claimed C's table didn't reproduce — that p1 peaked at 1.27 kN with cloth at
|
||||
// dd 0.40, never crossing under a carabiner's 1.2 kN rating, and that the line
|
||||
// therefore won on TIME (a 6% overshoot too brief to trip OVERLOAD_SECS) rather
|
||||
// than on headroom. That was wrong, and the retraction is the useful part:
|
||||
//
|
||||
// dd 0.45 membrane 1.45 kN dd 0.45 cloth 1.42 kN
|
||||
// dd 0.40 membrane 1.41 kN dd 0.40 cloth 1.27 kN
|
||||
// re-measured on the dressed yard, this exact flight, one variable — 2026-07-17
|
||||
// shade cloth p1 0.98 kN p2 2.77 p3 1.62 p4 3.65 0/4 lost
|
||||
// membrane p1 1.23 kN p2 3.23 p3 2.55 p4 4.31 p1 LETS GO
|
||||
//
|
||||
// so p1 never crosses UNDER 1.2 here. The line still wins on a $5 carabiner —
|
||||
// verified, hp 63 with 0/4 lost — but for a different reason than C's: a 1.27 kN
|
||||
// peak against a 1.2 kN rating is a 6% overshoot, and breaking needs 0.4 s
|
||||
// SUSTAINED over rating (sail.js OVERLOAD_SECS). The carabiner is overloaded in
|
||||
// flashes and never long enough to let go.
|
||||
// p1 peaks at 0.98 kN against a 1.2 kN rating: 18% of real HEADROOM, and the
|
||||
// carabiner is never once over its rating. C reported 1.08. That is the same
|
||||
// number to within measurement noise, and the same conclusion.
|
||||
//
|
||||
// That distinction matters for whoever tunes next: the line's margin is TIME,
|
||||
// not headroom. It is thinner than C's numbers imply, and anything that widens
|
||||
// storm_02's gust holds — not just raises them — could take it. The assert below
|
||||
// is what will catch that.
|
||||
// Where 1.27 came from: a loadout where a corner BROKE. Hardware looks like it
|
||||
// can't touch the loads — rating only feeds _checkFailure — but a corner that
|
||||
// lets go dumps its share onto the survivors, and p1 is who catches it. Measured:
|
||||
// the same quad with hardware the budget can't actually buy (setHardware fails
|
||||
// silently, cheap hardware stays on, p2/p4 tear off) reads p1 at 2.48 kN. Any
|
||||
// p1 number gathered without checking `lost` is measuring a cascade, not a fabric.
|
||||
//
|
||||
// So the fabric is not cosmetic and this is the whole design win: 0.98 vs 1.23
|
||||
// against a 1.20 rating is the difference between the $5 carabiner holding the
|
||||
// wild night and failing it. Choosing membrane doesn't just cost wind load and
|
||||
// pond — it takes your cheapest corner off the post. `fabric_decides_p1` below
|
||||
// asserts exactly that, so nobody has to trust this paragraph.
|
||||
const COVER_QUAD = ['p1', 'p2', 'p3', 'p4'];
|
||||
/** The old line: holds nothing above shackle grade, ends pyrrhic. The sacrifice-play control. */
|
||||
const PYRRHIC_QUAD = ['t2', 'p3', 'p4', 't2b'];
|
||||
@ -327,6 +336,13 @@ export default async function run(t) {
|
||||
if (pyrrhicShop) pyrrhicShop.setFabric('cloth');
|
||||
const pyrrhic = pyrrhicShop ? await fly(yard, pyrrhicShop, 'storm_02_wildnight', { repair: true, broom: true }) : null;
|
||||
|
||||
// The SAME $80 line, one variable changed: waterproof membrane instead of shade
|
||||
// cloth. This is the fabric decision's control — see the header. Both fabrics
|
||||
// cost $0, so the shop cannot tell them apart; only the storm can.
|
||||
const membraneShop = shop(yard, COVER_QUAD, [CARABINER, RATED, SHACKLE, RATED], 0);
|
||||
if (membraneShop) membraneShop.setFabric('membrane');
|
||||
const membrane = membraneShop ? await fly(yard, membraneShop, 'storm_02_wildnight', { broom: true }) : null;
|
||||
|
||||
const cheapShop = shop(yard, COVER_QUAD, [CARABINER, CARABINER, CARABINER, CARABINER], 0);
|
||||
const cheap = cheapShop ? await fly(yard, cheapShop, 'storm_02_wildnight') : null;
|
||||
|
||||
@ -389,6 +405,28 @@ export default async function run(t) {
|
||||
return `$${line.spent} · shade cloth · ${COVER_QUAD.join(',')} -> hp ${line.hp}, ${line.lost}/4 lost — CLEAN WIN`;
|
||||
});
|
||||
|
||||
// FABRIC IS A DECISION, NOT A SKIN. Both fabrics are $0 — DESIGN.md wants the
|
||||
// forecast to be the price — so the only thing that can justify the choice is
|
||||
// that it changes the night. Measured, same $80 line, one variable:
|
||||
//
|
||||
// shade cloth p1 0.98 kN -> holds (18% under a 1.2 kN carabiner)
|
||||
// membrane p1 1.23 kN -> LETS GO (2.5% over, long enough to trip)
|
||||
//
|
||||
// Membrane loses the cheapest corner on the wild night; that is what you buy
|
||||
// with the +26% hail block it gives back. If this ever goes green-on-both, the
|
||||
// fabric pick has become free and the prep screen is lying about a choice.
|
||||
t.test('balance: fabric decides p1 — membrane tears the cheap corner off', () => {
|
||||
if (!line || !membrane) throw new Error('could not buy the fabric control on $80');
|
||||
if (membrane.lost <= line.lost) {
|
||||
throw new Error(`fabric stopped mattering: the same $80 line lost ${line.lost}/4 on cloth and ` +
|
||||
`${membrane.lost}/4 on membrane. Both fabrics are free, so if the storm can't tell them apart ` +
|
||||
`the choice is cosmetic — either porosity stopped reaching the wind load (sail.js setFabric / ` +
|
||||
`rigging.commit ordering) or storm_02 got soft enough that p1 survives full load.`);
|
||||
}
|
||||
return `same $80 line: cloth ${line.lost}/4 lost (hp ${line.hp}) · membrane ${membrane.lost}/4 lost ` +
|
||||
`(hp ${membrane.hp}) — the fabric is the decision`;
|
||||
});
|
||||
|
||||
// The sacrifice play, kept measured. DESIGN.md: "a sail that dies saving the
|
||||
// garden". Now that a clean win EXISTS, this stops being the wild night's only
|
||||
// outcome and becomes what it should always have been — a different, worse bet
|
||||
|
||||
@ -79,7 +79,14 @@ summary.textContent = report.ok
|
||||
: `FAIL — ${report.fail} failed, ${report.pass} passed, ${report.skip} skipped`;
|
||||
|
||||
const out = document.getElementById('out');
|
||||
for (const letter of ['A', 'B', 'C', 'D', 'E']) {
|
||||
// Render every lane the report actually CONTAINS, rather than a hardcoded list.
|
||||
// This read ['A','B','C','D','E'] while the import list above also carries BAL,
|
||||
// so the balance suite ran, was counted in the summary, and had every one of its
|
||||
// rows silently dropped — including, had one ever gone red, the row saying which
|
||||
// assert failed and why. The merge gate was invisible in the merge gate's own
|
||||
// report. My bug: I added the BAL import and not this. Deriving the list means
|
||||
// the next joint suite can't hit it. — B
|
||||
for (const letter of [...new Set(report.results.map((r) => r.lane))]) {
|
||||
const rows = report.results.filter((r) => r.lane === letter);
|
||||
if (!rows.length) continue;
|
||||
const h = document.createElement('div');
|
||||
|
||||
Loading…
Reference in New Issue
Block a user