glytch/fktry/data/validate.test.ts
type-two dbb3615a64 [data] the composite seam + a tech tree that can actually be bought
Round 4 orders, all five.

The headline is a bug I authored: the v4 gating rule (any id in a
TechDef.unlocks is locked until that tech completes) turned three rounds of
tech authoring into a total bootstrap deadlock. Measured: melt not producible
at tick 0 (first-taste impossible), 0 of 24 techs reachable — every pack chain
gated behind packs you cannot make. disc-artifact-bottling cost 10 analog packs
and unlocked the only machine that bottles analog packs.

Fixed as a shape, not a patch, and both rules are now tests:
- the M1 melt chain is starting equipment (so first-taste is possible, and
  RENDER's era derivation correctly reads it as starting equipment)
- one pack is craftable at tick 0 — SPATIAL, made from the quantizer's own
  sins, so your first research is a study of your own damage
23/23 nodes now reachable; six emptied disc nodes deleted (no lane references
tech ids).

Also:
- §10 THE COMPOSITE SEAM transcribed: alpha/hard-matte/blue-hole/fringe-lace/
  green-spill/mixed-pixel/roto-chatter/ghost-feather/sodium-light (forward
  canon), matte bath, optical printer, chroma keyer, roto bench, neural keyer
  (powerDraw 240 — the codex's "appetite that dwarfs everything").
- ARCHAEOLOGY LAB canonized (kind: lab), ungated — a lab behind research is a
  lab you can never build.
- ASIC cooler live: the round-3 spec of 0.02 would have meant "never heats,
  free 100/s". Retuned to 0.0018, sane under both readings of the contract.
- accents where output-derivation can't work; CODEX_REF regex widened for §10.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-17 20:04:00 +10:00

549 lines
23 KiB
TypeScript

/**
* LANE-DATA territory. Lives beside the JSON it guards (round 3: moved out of
* src/sim/, which returns fully to LANE-SIM).
*
* Validates data/*.json against the contracts. It is the handshake that keeps five
* parallel lanes from drowning in dangling ids: if a lane references a machine,
* recipe, item or tech that data doesn't define, this test names it.
*/
import { describe, expect, it } from 'vitest';
import type { CommissionDef, ItemDef, MachineDef, MachineKind, RecipeDef, TechDef } from '../src/contracts';
import itemsJson from './items.json';
import machinesJson from './machines.json';
import recipesJson from './recipes.json';
import techJson from './tech.json';
import commissionsJson from './commissions.json';
const items = itemsJson as unknown as ItemDef[];
const machines = machinesJson as unknown as MachineDef[];
const recipes = recipesJson as unknown as RecipeDef[];
const tech = techJson as unknown as TechDef[];
const commissions = commissionsJson as unknown as CommissionDef[];
const KEBAB = /^[a-z0-9]+(-[a-z0-9]+)*$/;
// Multi-digit section numbers: the codex grew a §10 (THE COMPOSITE SEAM) and the old
// single-digit form silently rejected every reference into it.
const CODEX_REF = /^[1-9][0-9]*:[a-z0-9]+(-[a-z0-9]+)*$/;
const HEX = /^#[0-9a-f]{6}$/;
const KINDS: MachineKind[] = [
'extractor', 'crafter', 'belt', 'splitter', 'power', 'buffer', 'shipper',
'lab', // v4
];
const ERAS: TechDef['era'][] = ['reel', 'broadcast', 'disc', 'stream', 'fortress'];
const itemIds = new Set(items.map((i) => i.id));
const machineIds = new Set(machines.map((m) => m.id));
const recipeIds = new Set(recipes.map((r) => r.id));
/** Collect ids that appear more than once. */
function duplicates(ids: string[]): string[] {
const seen = new Set<string>();
const dupes = new Set<string>();
for (const id of ids) (seen.has(id) ? dupes : seen).add(id);
return [...dupes];
}
/** Item ids referenced by a count map that no item defines. */
function unknownItems(counts: Record<string, number>): string[] {
return Object.keys(counts).filter((id) => !itemIds.has(id));
}
/** Everything an extractor can pull, closed over every recipe that can then run. */
function producible(): Set<string> {
const have = new Set<string>();
for (;;) {
const before = have.size;
for (const r of recipes) {
if (Object.keys(r.inputs).every((i) => have.has(i))) {
for (const o of Object.keys(r.outputs)) have.add(o);
}
}
if (have.size === before) return have;
}
}
describe('ids and formatting', () => {
it('every collection has unique ids', () => {
expect(duplicates(items.map((i) => i.id))).toEqual([]);
expect(duplicates(machines.map((m) => m.id))).toEqual([]);
expect(duplicates(recipes.map((r) => r.id))).toEqual([]);
expect(duplicates(tech.map((t) => t.id))).toEqual([]);
expect(duplicates(commissions.map((c) => c.id))).toEqual([]);
});
it('every id is kebab-case', () => {
const bad = [...items, ...machines, ...recipes, ...tech, ...commissions]
.map((d) => d.id)
.filter((id) => !KEBAB.test(id));
expect(bad).toEqual([]);
});
it('every item and machine points at a codex section', () => {
const bad = [...items, ...machines]
.filter((d) => !CODEX_REF.test(d.codex))
.map((d) => `${d.id} -> "${d.codex}"`);
expect(bad).toEqual([]);
});
});
describe('items', () => {
it('every colour is a 6-digit lowercase hex', () => {
const bad = items.filter((i) => !HEX.test(i.color)).map((i) => `${i.id} -> "${i.color}"`);
expect(bad).toEqual([]);
});
it('every tier is 0..3', () => {
const bad = items.filter((i) => !Number.isInteger(i.tier) || i.tier < 0 || i.tier > 3)
.map((i) => `${i.id} -> ${i.tier}`);
expect(bad).toEqual([]);
});
it('every item has a display name', () => {
expect(items.filter((i) => !i.name.trim()).map((i) => i.id)).toEqual([]);
});
});
describe('machines', () => {
it('every kind is a known MachineKind', () => {
const bad = machines.filter((m) => !KINDS.includes(m.kind)).map((m) => `${m.id} -> "${m.kind}"`);
expect(bad).toEqual([]);
});
it('every footprint is at least 1x1 in whole tiles', () => {
const bad = machines.filter((m) => {
const { x, y } = m.footprint ?? { x: 0, y: 0 };
return !Number.isInteger(x) || !Number.isInteger(y) || x < 1 || y < 1;
}).map((m) => m.id);
expect(bad).toEqual([]);
});
it('every listed recipe exists and points back at the machine', () => {
const missing: string[] = [];
const mismatched: string[] = [];
for (const m of machines) {
for (const rid of m.recipes) {
const r = recipes.find((x) => x.id === rid);
if (!r) missing.push(`${m.id} lists unknown recipe "${rid}"`);
else if (r.machine !== m.id) mismatched.push(`${m.id} lists "${rid}" but that recipe runs on "${r.machine}"`);
}
}
expect(missing).toEqual([]);
expect(mismatched).toEqual([]);
});
it('belts declare a belt speed and power machines declare generation', () => {
const bad = [
...machines.filter((m) => m.kind === 'belt' && !(m.beltSpeed! > 0)).map((m) => `${m.id} has no beltSpeed`),
...machines.filter((m) => m.kind === 'power' && !(m.powerGen! > 0)).map((m) => `${m.id} has no powerGen`),
];
expect(bad).toEqual([]);
});
it('every machine declares a non-negative idle draw and an asset key', () => {
const bad = machines
.filter((m) => !(m.powerDraw >= 0) || !KEBAB.test(m.asset))
.map((m) => `${m.id} -> draw ${m.powerDraw}, asset "${m.asset}"`);
expect(bad).toEqual([]);
});
// v2 art direction: RENDER prefers our colour over one derived from outputs, and UI's
// inspector prints our flavor instead of a hardcoded lookup. Both need full coverage
// or a machine goes black-on-black / voiceless.
it('every machine is art-directed: a hex colour and a line of flavor', () => {
const bad = machines
.filter((m) => !m.color || !HEX.test(m.color) || !m.flavor?.trim())
.map((m) => `${m.id} -> color ${m.color ?? 'MISSING'}, flavor ${m.flavor ? 'ok' : 'MISSING'}`);
expect(bad).toEqual([]);
});
// v4: the emissive accent falls back to a colour derived from the first output item.
// A machine with no recipes has no first output, so the fallback has nothing to
// derive from — those must carry an explicit accent or they render unlit.
it('every machine with no output to derive from carries an explicit accent', () => {
const bad = machines
.filter((m) => m.recipes.length === 0 && !m.accent)
.map((m) => `${m.id} (${m.kind}) has no recipes and no accent — nothing to derive an accent from`);
expect(bad).toEqual([]);
});
it('every accent is a hex colour, and differs from the chassis it sits on', () => {
const bad = machines
.filter((m) => m.accent !== undefined)
.filter((m) => !HEX.test(m.accent!) || m.accent === m.color)
.map((m) => `${m.id} -> accent ${m.accent} on chassis ${m.color}`);
expect(bad).toEqual([]);
});
it('a cooling aura belongs only to a machine that actually cools', () => {
const bad = machines
.filter((m) => m.coolRadius !== undefined)
.filter((m) => !(m.coolRadius! >= 1) || !Number.isInteger(m.coolRadius) || !(m.coolPerTick! > 0))
.map((m) => `${m.id} -> coolRadius ${m.coolRadius}, coolPerTick ${m.coolPerTick}`);
expect(bad).toEqual([]);
});
it('exactly one lab exists, and research is impossible without it', () => {
const labs = machines.filter((m) => m.kind === 'lab');
expect(labs.map((m) => m.id)).toEqual(['archaeology-lab']);
});
it('only buffers declare a capacity, and they all do', () => {
const bad = [
...machines.filter((m) => m.kind === 'buffer' && !(m.bufferCap! > 0))
.map((m) => `${m.id} is a buffer with no bufferCap`),
...machines.filter((m) => m.kind !== 'buffer' && m.bufferCap !== undefined)
.map((m) => `${m.id} is not a buffer but declares bufferCap`),
];
expect(bad).toEqual([]);
});
it('machine heat is a sane 0..1 per-tick trickle, never an instant scram', () => {
const bad = machines.filter((m) => m.heatPerTick !== undefined)
.filter((m) => !(m.heatPerTick! > 0 && m.heatPerTick! <= 0.05))
.map((m) => `${m.id} -> heatPerTick ${m.heatPerTick}`);
expect(bad).toEqual([]);
});
it('the ASIC stays cool and the software decoder does not', () => {
// The codex's whole point (§4): cool-and-inflexible vs hot-and-mighty. If this
// flips, the power choice has stopped being a choice.
const asic = machines.find((m) => m.id === 'decode-asic')!;
const soft = machines.find((m) => m.id === 'software-decoder')!;
expect(asic.heatPerTick).toBeUndefined();
expect(soft.heatPerTick).toBeGreaterThan(0);
expect(soft.powerGen!).toBeGreaterThan(asic.powerGen!);
});
});
// Round 2 shipped heat numbers that could never fire: every heatPerTick sat below the
// sim's always-on cooling, so heat was decorative. These lock the arithmetic down so a
// well-meaning tweak can't quietly make it decorative again.
describe('the heat curve actually fires', () => {
// MIRRORED from src/sim/index.ts (LANE-SIM owns the curve; these are not exported).
// If SIM changes them, these numbers go stale silently — re-check on any heat round.
const TPS = 30;
const THROTTLE_START = 0.7; // heat above this throttles
const RESTART = 0.5; // a scrammed machine restarts once it cools below this
const SIM_DEFAULT_COOL = 0.004;
const soft = machines.find((m) => m.id === 'software-decoder')!;
const cool = (m: MachineDef) => m.coolPerTick ?? SIM_DEFAULT_COOL;
/** Net heat per tick while the machine is working. Negative = can never overheat. */
const net = (m: MachineDef) => (m.heatPerTick ?? 0) - cool(m);
it('every heat source out-heats its own cooling — or it is just decoration', () => {
const decorative = machines
.filter((m) => m.heatPerTick !== undefined)
.filter((m) => net(m) <= 0)
.map((m) => `${m.id}: heats ${m.heatPerTick}/tick but cools ${cool(m)}/tick — never warms up`);
expect(decorative).toEqual([]);
});
it('every heated recipe banks more than its machine sheds during the craft', () => {
// A recipe's heat lands once per craft, but the machine cools every tick of it.
// heat <= ticks * coolPerTick means the number is a comment, not a mechanic.
const decorative = recipes
.filter((r) => r.heat !== undefined)
.map((r) => ({ r, m: machines.find((x) => x.id === r.machine)! }))
.filter(({ r, m }) => r.heat! <= r.ticks * cool(m))
.map(({ r, m }) =>
`${r.id}: banks ${r.heat} per craft but ${m.id} sheds ${(r.ticks * cool(m)).toFixed(3)} over its ${r.ticks} ticks`);
expect(decorative).toEqual([]);
});
it('the software decoder throttles at ~10s and scrams at 13-15s of continuous load', () => {
const secondsTo = (heat: number) => heat / net(soft) / TPS;
expect(secondsTo(THROTTLE_START)).toBeGreaterThan(8);
expect(secondsTo(THROTTLE_START)).toBeLessThan(12);
expect(secondsTo(1)).toBeGreaterThan(13);
expect(secondsTo(1)).toBeLessThan(15);
});
it('the software decoder duty-cycles at ~25s, and is still worth its footprint', () => {
// Steady state after the first scram: heat swings RESTART -> 1 -> RESTART.
const upTicks = (1 - RESTART) / net(soft);
const downTicks = (1 - RESTART) / cool(soft);
const periodS = (upTicks + downTicks) / TPS;
expect(periodS).toBeGreaterThan(20);
expect(periodS).toBeLessThan(30);
// Generation is throttled linearly from 1.0 down to 0.5 across the throttle window,
// and is zero while scrammed. Average it over the whole cycle.
const fullTicks = (THROTTLE_START - RESTART) / net(soft); // un-throttled
const throttledTicks = (1 - THROTTLE_START) / net(soft); // 1.0 -> 0.5 output
const energy = soft.powerGen! * (fullTicks + throttledTicks * 0.75);
const average = energy / (upTicks + downTicks);
const asic = machines.find((m) => m.id === 'decode-asic')!;
// Same 2x2 footprint, so if the hot one doesn't beat the cool one on average,
// nobody would ever build it and the codex's "burst gen" is a lie.
expect(average).toBeGreaterThan(asic.powerGen! * 1.2);
});
it('the hex splicer runs a lesser fever than the decoder', () => {
const splicer = machines.find((m) => m.id === 'hex-splicer')!;
const secondsToScram = Math.min(
...recipes.filter((r) => r.machine === 'hex-splicer' && r.heat)
.map((r) => (1 / (r.heat! - r.ticks * cool(splicer))) * r.ticks / TPS),
);
expect(secondsToScram).toBeGreaterThan(30); // lesser...
expect(secondsToScram).toBeLessThan(90); // ...but a fever
expect(secondsToScram).toBeGreaterThan(1 / net(soft) / TPS); // slower than the decoder
});
});
describe('recipes', () => {
it('every recipe runs on a machine that exists', () => {
const bad = recipes.filter((r) => !machineIds.has(r.machine)).map((r) => `${r.id} -> "${r.machine}"`);
expect(bad).toEqual([]);
});
it('every recipe is listed by the machine it runs on', () => {
const orphans = recipes.filter((r) => {
const m = machines.find((x) => x.id === r.machine);
return m && !m.recipes.includes(r.id);
}).map((r) => `${r.id} is not listed by ${r.machine}`);
expect(orphans).toEqual([]);
});
it('every input and output item exists', () => {
const bad: string[] = [];
for (const r of recipes) {
for (const id of unknownItems(r.inputs)) bad.push(`${r.id} consumes unknown item "${id}"`);
for (const id of unknownItems(r.outputs)) bad.push(`${r.id} produces unknown item "${id}"`);
}
expect(bad).toEqual([]);
});
it('every recipe produces something in whole positive counts', () => {
const bad: string[] = [];
for (const r of recipes) {
if (Object.keys(r.outputs).length === 0) bad.push(`${r.id} has no outputs`);
for (const [id, n] of [...Object.entries(r.inputs), ...Object.entries(r.outputs)]) {
if (!Number.isInteger(n) || n < 1) bad.push(`${r.id} -> "${id}" count ${n}`);
}
}
expect(bad).toEqual([]);
});
it('every recipe takes a whole positive number of ticks', () => {
const bad = recipes.filter((r) => !Number.isInteger(r.ticks) || r.ticks < 1)
.map((r) => `${r.id} -> ${r.ticks} ticks`);
expect(bad).toEqual([]);
});
it('only extractors run input-free recipes', () => {
const bad = recipes.filter((r) => Object.keys(r.inputs).length === 0)
.filter((r) => machines.find((m) => m.id === r.machine)?.kind !== 'extractor')
.map((r) => `${r.id} conjures items on non-extractor ${r.machine}`);
expect(bad).toEqual([]);
});
it('every heat value is a 0..1 fraction per craft', () => {
const bad = recipes.filter((r) => r.heat !== undefined && !(r.heat >= 0 && r.heat <= 1))
.map((r) => `${r.id} -> heat ${r.heat}`);
expect(bad).toEqual([]);
});
});
describe('tech', () => {
it('every era is a known era', () => {
const bad = tech.filter((t) => !ERAS.includes(t.era)).map((t) => `${t.id} -> "${t.era}"`);
expect(bad).toEqual([]);
});
it('every cost is paid in items that exist, in whole positive counts', () => {
const bad: string[] = [];
for (const t of tech) {
for (const id of unknownItems(t.cost)) bad.push(`${t.id} costs unknown item "${id}"`);
for (const [id, n] of Object.entries(t.cost)) {
if (!Number.isInteger(n) || n < 1) bad.push(`${t.id} -> "${id}" count ${n}`);
}
if (Object.keys(t.cost).length === 0) bad.push(`${t.id} is free`);
}
expect(bad).toEqual([]);
});
it('every unlock names a machine or a recipe that exists', () => {
const bad: string[] = [];
for (const t of tech) {
if (t.unlocks.length === 0) bad.push(`${t.id} unlocks nothing`);
for (const u of t.unlocks) {
if (!machineIds.has(u) && !recipeIds.has(u)) bad.push(`${t.id} unlocks unknown "${u}"`);
}
}
expect(bad).toEqual([]);
});
it('no two techs unlock the same thing', () => {
expect(duplicates(tech.flatMap((t) => t.unlocks))).toEqual([]);
});
});
describe('commissions', () => {
it('every want names an item that exists', () => {
const bad: string[] = [];
for (const c of commissions) {
for (const id of unknownItems(c.wants)) bad.push(`${c.id} wants unknown item "${id}"`);
}
expect(bad).toEqual([]);
});
it('every commission wants a whole positive quantity of something', () => {
const bad: string[] = [];
for (const c of commissions) {
if (Object.keys(c.wants).length === 0) bad.push(`${c.id} wants nothing`);
for (const [id, n] of Object.entries(c.wants)) {
if (!Number.isInteger(n) || n < 1) bad.push(`${c.id} -> "${id}" count ${n}`);
}
}
expect(bad).toEqual([]);
});
it('every commission has fax text and a positive reward', () => {
const bad = commissions
.filter((c) => !c.flavor.trim() || !(c.rewardBandwidth > 0))
.map((c) => `${c.id} -> reward ${c.rewardBandwidth}`);
expect(bad).toEqual([]);
});
it('opens on first-taste — the queue order is the difficulty ramp', () => {
// SIM's M1 chain test asserts activeCommission === 'first-taste' on a fresh sim,
// so the head of this list is load-bearing, not decorative.
expect(commissions[0].id).toBe('first-taste');
});
it('rewards climb monotonically down the queue', () => {
const slips = commissions
.map((c, i) => ({ c, prev: commissions[i - 1] }))
.filter(({ c, prev }) => prev && c.rewardBandwidth < prev.rewardBandwidth)
.map(({ c, prev }) => `${c.id} (${c.rewardBandwidth}) pays less than ${prev.id} (${prev.rewardBandwidth})`);
expect(slips).toEqual([]);
});
it('has standing orders, and they are the ones that can actually repeat', () => {
const standing = commissions.filter((c) => c.repeat);
expect(standing.length).toBeGreaterThanOrEqual(2);
// A repeating order must be re-fillable forever: nothing it wants may be
// forward canon, or the factory jams on a standing order it can never clear.
const bad = standing
.flatMap((c) => Object.keys(c.wants).map((w) => ({ c, w })))
.filter(({ w }) => !producible().has(w))
.map(({ c, w }) => `standing order ${c.id} wants unproducible "${w}"`);
expect(bad).toEqual([]);
});
});
// The v4 gating rule ("a machine/recipe id in ANY TechDef.unlocks is locked until that
// tech completes") turned the tech tree from decoration into a lock on the whole game.
// It also turned three rounds of tech authoring into a bootstrap deadlock: every pack
// chain was gated behind packs you could not yet make, so 0 of 24 nodes were reachable
// and first-taste was impossible. These tests are why that can't come back.
describe('the bootstrap: what the player can do before researching anything', () => {
const gated = new Set(tech.flatMap((t) => t.unlocks));
/** Under the v4 rule a recipe is runnable only if neither it nor its machine is gated. */
const ungated = recipes.filter((r) => !gated.has(r.id) && !gated.has(r.machine));
/** Items reachable from a given set of runnable recipes. */
function reachableFrom(rs: RecipeDef[]): Set<string> {
const have = new Set<string>();
for (;;) {
const before = have.size;
for (const r of rs) {
if (Object.keys(r.inputs).every((i) => have.has(i))) {
for (const o of Object.keys(r.outputs)) have.add(o);
}
}
if (have.size === before) return have;
}
}
it('MELT is craftable at tick 0 — the opening commission must be possible', () => {
// first-taste wants 1 melt and is the head of the queue. If the melt chain is gated,
// the game opens on a commission the player cannot fill and research they cannot start.
expect([...reachableFrom(ungated)]).toContain('melt');
});
it('at least one science pack is craftable at tick 0, or research can never start', () => {
const day0 = reachableFrom(ungated);
const packs = items.filter((i) => i.id.endsWith('-pack')).map((i) => i.id);
const bootstrap = packs.filter((p) => day0.has(p));
expect(bootstrap.length).toBeGreaterThan(0);
});
it('every tech is eventually affordable — no node is stranded behind its own output', () => {
// Walk the real loop: research what you can afford, which unlocks recipes, which makes
// more packs, which affords more research. Anything left over can never be bought.
const open = new Set(ungated.map((r) => r.id));
let have = reachableFrom(recipes.filter((r) => open.has(r.id)));
const unlocked = new Set<string>();
for (;;) {
let moved = false;
for (const t of tech) {
if (unlocked.has(t.id)) continue;
if (Object.keys(t.cost).every((c) => have.has(c))) {
unlocked.add(t.id);
for (const u of t.unlocks) {
for (const r of recipes) if (r.id === u || r.machine === u) open.add(r.id);
}
moved = true;
}
}
if (!moved) break;
have = reachableFrom(recipes.filter((r) => open.has(r.id)));
}
const stranded = tech
.filter((t) => !unlocked.has(t.id))
.map((t) => `${t.id} costs ${JSON.stringify(t.cost)} — unaffordable no matter what you build`);
expect(stranded).toEqual([]);
});
it('the lab is starting equipment', () => {
const labs = machines.filter((m) => m.kind === 'lab').map((m) => m.id);
const lockedLabs = labs.filter((id) => gated.has(id));
expect(lockedLabs).toEqual([]); // a lab behind research is a lab you can never build
});
});
describe('economy reachability', () => {
it('the M1 flow reaches MELT from raw ore', () => {
expect([...producible()]).toContain('melt');
});
it('every item is either producible or declared forward canon', () => {
// Forward canon: named in the codex and shippable one day, but nothing makes them yet.
// Keep this list short and delete entries as recipes land. Round 2 retired
// container-pack (the moov line exists now); wildlife needs traps, cinema needs
// the Fortress.
const FORWARD_CANON = new Set([
'mosquito-swarm', 'gibbs-wraith', 'cinema-pack',
// §10: The Correction hoards the prisms. Nothing in the factory makes 589nm.
'sodium-light',
]);
const have = producible();
const orphans = items
.map((i) => i.id)
.filter((id) => !have.has(id) && !FORWARD_CANON.has(id));
expect(orphans).toEqual([]);
});
it('the forward-canon allowlist has no stowaways', () => {
// The allowlist is a licence to be unreachable. The moment a recipe makes one of
// these, it must leave the list, or it stops proving anything.
const have = producible();
const retired = ['container-pack'].filter((id) => !have.has(id));
expect(retired).toEqual([]);
});
it('no recipe is a free lunch: every craft that only recycles its own output loses something', () => {
const bad = recipes.filter((r) => {
const ids = Object.keys(r.outputs).filter((o) => r.inputs[o] !== undefined);
return ids.length > 0 && ids.every((o) => r.outputs[o] > r.inputs[o]) &&
Object.keys(r.inputs).every((i) => r.outputs[i] !== undefined);
}).map((r) => `${r.id} multiplies its own inputs`);
expect(bad).toEqual([]);
});
});