Files
vanity-delve/core/test.mjs
T
slaguru666andClaude Opus 5 316716e001 Bump GENERATOR_VERSION to 0.2.0; let the tests run from anywhere
GENERATOR_VERSION had sat at 0.1.0 while the emitted object gained the
authored layer and the content model moved under it, so a delve file
claimed a generator that no longer existed — both samples say 0.1.0 and
only one of them has an authored layer. Nothing gates on the stamp, so
this is informational only and old files still load. The comment on it
now says what it tracks and when to bump it, which is what stopped it
being bumped before.

test.mjs read ./content/barrow.json relative to the working directory, so
it only ran from inside core/ and crashed from the repo root. It now
resolves from the module file, matching build-index.mjs and
validate-pack.mjs.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-05 22:58:29 +01:00

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import { readFileSync } from 'fs';
import { fileURLToPath } from 'url';
import { dirname, join } from 'path';
import { Rng } from './rng.mjs';
import { generateDelve } from './delve.mjs';
import { renderMarkdown } from './render.mjs';
const dir = join(dirname(fileURLToPath(import.meta.url)), 'content');
const pack = JSON.parse(readFileSync(join(dir, 'barrow.json'), 'utf8'));
let pass = 0, fail = 0;
const t = (name, cond, detail = '') => { cond ? pass++ : fail++; console.log(`${cond ? ' ok ' : 'FAIL'} ${name}${detail ? ' — ' + detail : ''}`); };
// determinism
const a = generateDelve({ pack, seed: 'x-1' }), b = generateDelve({ pack, seed: 'x-1' });
t('determinism: same seed → identical delve', JSON.stringify(a) === JSON.stringify(b));
t('different seeds differ', JSON.stringify(generateDelve({ pack, seed: 'x-2' })) !== JSON.stringify(a));
// invariants across many seeds and parameter combos
let nullCues = 0, missingDecision = 0, missingTrigger = 0, missingFallback = 0, crashes = 0, endingNull = 0;
const kernels = new Set(), places = new Set(), fragmentUse = new Map();
const combos = [];
for (const areas of [3, 6, 9, 12]) for (const depth of [1, 3, 5]) for (const density of ['sparse','standard','infested'])
combos.push({ areas, depth, density });
for (let i = 0; i < 60; i++) {
const p = combos[i % combos.length];
try {
const d = generateDelve({ pack, seed: `seed-${i}`, ...p });
kernels.add(`${d.skeleton.knot.appetiteId}/${d.skeleton.knot.accommodationId}/${d.skeleton.knot.claimant}`);
places.add(d.skeleton.placeName);
for (const ar of d.areas) {
if (!ar.cueFragments.length || ar.cueFragments.some(c => !c)) nullCues++;
if (!ar.decision) missingDecision++;
if (!ar.trigger) missingTrigger++;
if (!ar.fallback?.route) missingFallback++;
for (const c of ar.cueFragments) fragmentUse.set(c, (fragmentUse.get(c) ?? 0) + 1);
}
if (!d.ending.cueFragments.length) endingNull++;
renderMarkdown(d);
} catch (e) { crashes++; console.log(' crash:', e.message.slice(0, 80)); }
}
t('no crashes across 60 delves × param combos', crashes === 0, `${crashes} crashes`);
t('no null/empty cue fragments', nullCues === 0, `${nullCues}`);
t('every area has a decision', missingDecision === 0);
t('every area has an attention trigger', missingTrigger === 0);
t('every area has a fallback route', missingFallback === 0, 'playtest 1 died on a gate with no fallback');
t('every ending has a cue', endingNull === 0, `${endingNull} empty`);
t('kernels are varied', kernels.size >= 40, `${kernels.size} distinct kernels in 60`);
t('place names track the claimant', places.size >= 20, `${places.size} distinct`);
// within-delve repetition — the thing facets exist to prevent
let repeats = 0;
for (let i = 0; i < 30; i++) {
const d = generateDelve({ pack, seed: `rep-${i}`, areas: 6 });
const all = d.areas.flatMap(x => x.cueFragments).concat(d.ending.cueFragments);
if (new Set(all).size !== all.length) repeats++;
}
t('no repeated cue fragment inside one delve', repeats === 0, `${repeats}/30 had repeats`);
// motif-scoping: the furniture must belong to the fiction, not a global pool
let offMotifDecisions = 0, offMotifTemptations = 0, offMotifFeatures = 0, checked = 0;
for (let i = 0; i < 40; i++) {
const d = generateDelve({ pack, seed: `scope-${i}`, areas: 6 });
const m = pack.motifs[d.skeleton.motif.id];
const okD = new Set((m.decisions ?? []).map(x => x.cue));
const okT = new Set((m.temptations ?? []).map(x => x.id));
for (const a of d.areas) {
checked++;
if (a.decision && !okD.has(a.decision.cue)) offMotifDecisions++;
if (a.temptation && !okT.has(a.temptation.id)) offMotifTemptations++;
if (a.cueFragments[1] && !(m.features ?? []).includes(a.cueFragments[1])) offMotifFeatures++;
}
}
t('decisions come from the delve\'s own motif', offMotifDecisions === 0, `${offMotifDecisions}/${checked} off-motif`);
t('features come from the delve\'s own motif', offMotifFeatures === 0, `${offMotifFeatures}/${checked} off-motif`);
t('temptations come from the delve\'s own motif', offMotifTemptations === 0, `${offMotifTemptations} off-motif`);
// no repeated decision or temptation inside one delve
let dupD = 0, dupT = 0;
for (let i = 0; i < 40; i++) {
for (const areas of [6, 9]) {
const d = generateDelve({ pack, seed: `dup-${i}`, areas });
const ds = d.areas.map(a => a.decision?.cue).filter(Boolean);
const ts = d.areas.map(a => a.temptation?.id).filter(Boolean);
if (new Set(ds).size !== ds.length) dupD++;
if (new Set(ts).size !== ts.length) dupT++;
}
}
t('no repeated decision inside one delve', dupD === 0, `${dupD}/80`);
{
let dupNames = 0;
for (let i = 0; i < 60; i++) {
for (const areas of [6, 9, 12]) {
const names = generateDelve({ pack, seed: `nm-${i}`, areas }).areas.map(a => a.name);
if (new Set(names).size !== names.length) dupNames++;
}
}
t('no two areas share a name', dupNames === 0, `${dupNames}/180 delves had a clash`);
}
t('no repeated temptation inside one delve', dupT === 0, `${dupT}/80`);
// every decision must be resolvable, and no decision may gate progress without an escape
let noResolve = 0, noEscape = 0, halfSpecified = 0;
for (const m of Object.values(pack.motifs)) {
for (const dec of m.decisions ?? []) {
const r = dec.resolve;
if (!r) { noResolve++; continue; }
if (!r.orElse) noEscape++;
if (r.roll && (!r.success || !r.failure)) halfSpecified++;
}
}
t('every decision has a resolution', noResolve === 0, `${noResolve} missing`);
t('every decision offers an attempt, not just a pick', (() => { let n = 0; for (const m of Object.values(pack.motifs)) for (const dec of m.decisions ?? []) if (!dec.resolve?.roll) n++; return n === 0; })(), 'a decision with no roll is a menu, not a situation');
t('no decision gates progress without an alternative', noEscape === 0, `${noEscape} gated — playtest 1 died on one`);
t('every rolled decision states success AND failure', halfSpecified === 0, `${halfSpecified} half-specified`);
// {priorCue} must always be substituted — an unresolved token would print a literal placeholder
let unresolvedToken = 0;
for (let i = 0; i < 40; i++) {
const d = generateDelve({ pack, seed: `tok-${i}`, areas: 6 });
for (const a of d.areas) if (a.decision?.resolve?.success?.includes('{')) unresolvedToken++;
}
t('no unresolved {tokens} reach the page', unresolvedToken === 0, `${unresolvedToken}`);
// every area must arrive as a place, and no situation may repeat inside one delve
let noSit = 0, dupSit = 0, offMotifSit = 0;
for (let i = 0; i < 40; i++) {
const d = generateDelve({ pack, seed: `sit-${i}`, areas: 6 });
const m = pack.motifs[d.skeleton.motif.id];
const ids = [];
for (const a of d.areas) {
if (!a.situation?.occupant) { noSit++; continue; }
ids.push(a.situation.occupant + a.situation.doing);
if (!(m.situations ?? []).some(x => x.occupant === a.situation.occupant && x.doing === a.situation.doing)) offMotifSit++;
}
if (new Set(ids).size !== ids.length) dupSit++;
}
t('every area arrives as a situation', noSit === 0, `${noSit} bare areas`);
t('situations come from the delve\'s own motif', offMotifSit === 0, `${offMotifSit} off-motif`);
t('no repeated situation inside one delve', dupSit === 0, `${dupSit}/40`);
// the subtraction pass must remove BLOCKS, not information
let lost = [];
for (let i = 0; i < 20; i++) {
const d = generateDelve({ pack, seed: `keep-${i}`, areas: 6 });
const md = renderMarkdown(d);
for (const a of d.areas) {
const must = [
['situation', a.situation?.occupant], ['onArrival', a.situation?.onArrival],
['because', a.situation?.because], ['offer', a.situation?.offer],
['decision', a.decision?.cue], ['orElse', a.decision?.resolve?.orElse],
['trigger', a.trigger], ['fallback', a.fallback?.route],
['temptation', a.temptation?.cue], ['roster', a.encounter?.roster?.line],
];
for (const [name, v] of must) {
if (!v) continue;
const probe = String(v).replace(/^./, c => c.toUpperCase());
if (!md.includes(String(v)) && !md.includes(probe)) lost.push(`${name}@a${a.index}`);
}
}
}
t('subtraction removed blocks, not information', lost.length === 0, lost.slice(0,4).join(', ') || 'all fields still rendered');
// the opening sentence is built as "<occupant> is <doing> — when you walk in, <onArrival>".
// If occupant carries a verb, or doing is a full clause, that renders as garbage. A live read
// caught exactly that: "Nobody — but the bells are moving is a summons is being rung...".
let badOcc = 0, badDoing = 0;
for (const m of Object.values(pack.motifs)) {
for (const sit of m.situations ?? []) {
if (/\b(is|are|but)\b|—/.test(sit.occupant)) badOcc++;
if (!/^\w+ing\b/.test(sit.doing) || /^(some|no|any|every)thing\b/.test(sit.doing)) badDoing++;
}
}
t('situation occupants are noun phrases', badOcc === 0, `${badOcc} carry a verb`);
t('situation actions are participle phrases', badDoing === 0, `${badDoing} are full clauses`);
// the rendered opener must read as English: no stray copula, no doubled dash
let badOpener = 0;
for (let i = 0; i < 30; i++) {
const md = renderMarkdown(generateDelve({ pack, seed: `open-${i}`, areas: 6 }));
for (const line of md.split('\n').filter(l => l.startsWith('> '))) {
// The real bug was a hardcoded copula colliding with plural occupants:
// "The bells is ringing a summons...". Em-dashes inside cue fragments are legitimate,
// so counting those flagged 191 false positives — the test was wrong, not the output.
if (/\b(is|are) \w+ing\b/.test(line)) badOpener++;
}
}
t('openers read as English', badOpener === 0, `${badOpener} malformed`);
// ---- authoring layer -------------------------------------------------------
import { newWorkingFile, reroll, lock, setAuthored, outstanding, readyToPlay } from './authoring.mjs';
import { renderWorksheet, renderPlay } from './render-authoring.mjs';
{
let changed = 0, lockHeld = 0, proseKept = 0;
for (let i = 0; i < 25; i++) {
const d = newWorkingFile({ pack, seed: `auth-${i}`, areas: 6 });
const before = d.areas[2].decision.cue;
reroll(d, 3, 'decision', pack);
if (d.areas[2].decision.cue !== before) changed++;
setAuthored(d, 3, 'readAloud', 'written by a human');
lock(d, 3, 'situation');
const sit = d.areas[2].situation.occupant;
reroll(d, 3, 'situation', pack);
if (d.areas[2].situation.occupant === sit) lockHeld++;
if (d.authored.areas[3].readAloud === 'written by a human') proseKept++;
}
t('a reroll always returns something different', changed === 25, `${changed}/25`);
t('a lock is respected', lockHeld === 25, `${lockHeld}/25`);
t('rerolling never destroys written prose', proseKept === 25, `${proseKept}/25`);
const d = newWorkingFile({ pack, seed: 'auth-x', areas: 4 });
t('a fresh delve is not ready to play', !readyToPlay(d), `${outstanding(d).length} outstanding`);
const ws = renderWorksheet(d);
t('the worksheet shows what still needs a human', ws.includes('WRITE ▸') && ws.includes('still need you'));
t('the worksheet offers reroll commands', ws.includes('--reroll='));
const play = renderPlay(d);
t('an unfinished play sheet says so', play.includes('unfinished') && play.includes('(unwritten)'));
setAuthored(d, 'ending', 'readAloud', 'x'); setAuthored(d, 'ending', 'notes', 'y');
d.authored.intro = 'z';
for (const a of d.areas) setAuthored(d, a.index, 'readAloud', `prose for ${a.index}`);
t('a finished delve reports ready', readyToPlay(d), `${outstanding(d).length} left`);
const done = renderPlay(d);
t('a finished play sheet uses the GM prose', done.includes('prose for 1') && !done.includes('(unwritten)'));
t('the play sheet is shorter than the worksheet',
done.split('\n').length < renderWorksheet(d).split('\n').length,
`play ${done.split('\n').length} vs worksheet ${renderWorksheet(d).split('\n').length} lines`);
}
console.log(`\n${pass} passed, ${fail} failed`);
process.exit(fail ? 1 : 0);