Files

191 lines
6.7 KiB
JavaScript
Raw Permalink Normal View History

/**
* rigor/dsl-mutation-parity.test.js — js-rigor property tests that a
* DSL-compiled arbiter and an equivalent hand-written arbiter stay in
* lock-step through identical MUTATION SEQUENCES.
*
* Properties verified:
*
* - SEQUENCE PARITY: starting from the same graph, apply the same random
* add/remove sequence to both the DSL-compiled and the hand-written
* arbiter; after EVERY mutation the check() answers agree exactly.
* This exercises compiled configs (dependency indexes, caches,
* invalidation) under mutation, not just static evaluation.
* - GRANT/REVOKE CYCLES: interleaved add/remove of the same tuple keeps
* both arbiters consistent (no stale compiled state).
*/
import { describe, it } from 'node:test';
import assert from 'node:assert/strict';
import { rigor } from '@rigor/core';
import { Arbiter } from '../../src/index.js';
import { DSLCompiler } from '@arbiter/evidence-dsl/DSLCompiler';
const EPS = 1e-9;
const POS = [0, 0.25, 0.5, 0.75, 1];
function fail(message) {
throw new Error(message);
}
const DSL = `
definition Doc { id: string }
definition Dept { id: string }
fact owns(user: User, doc: Doc)
fact works_in(user: User, dept: Dept)
fact has_access(dept: Dept, doc: Doc)
evidence can_read(user: User, doc: Doc) { owns(user, doc) }
evidence can_access(user: User, doc: Doc) { works_in(user, *d) { has_access(d, doc) } }
`;
function buildCompiledArbiter() {
const arbiter = new Arbiter();
arbiter.addNode('user:alice', 'user');
arbiter.addNode('dept:eng', 'group');
arbiter.addNode('doc:1', 'doc');
const compiler = new DSLCompiler(arbiter);
const result = compiler.compile(DSL, 'mutation-parity');
if (!result.success) {
throw new Error(`DSL compile failed: ${result.errors.join('; ')}`);
}
return arbiter;
}
function buildManualArbiter() {
const arbiter = new Arbiter();
arbiter.addNode('user:alice', 'user');
arbiter.addNode('dept:eng', 'group');
arbiter.addNode('doc:1', 'doc');
arbiter.setRelationConfig('can_read', { type: 'direct', relation: 'owns' });
arbiter.setRelationConfig('can_access', {
type: 'chain',
steps: [
{ relation: 'works_in', direction: 'out' },
{ relation: 'has_access', direction: 'out' }
]
});
return arbiter;
}
const RELATIONS = ['owns', 'works_in', 'has_access'];
const SUBJECTS = ['user:alice', 'dept:eng'];
function applyMutation(arbiter, op) {
const [kind, src, rel, dst, p] = op;
if (kind === 'add') {
arbiter.addRelation(src, rel, dst, { possibility: p });
} else {
arbiter.removeRelation(src, rel, dst);
}
}
describe('DSL-compiled vs hand-written parity under mutation (rigor)', () => {
it('SEQUENCE PARITY: identical mutation sequences keep compiled and manual arbiters in lock-step', async () => {
async function check(operations) {
const compiled = buildCompiledArbiter();
const manual = buildManualArbiter();
// Same starting graph on both
for (const arb of [compiled, manual]) {
arb.addRelation('user:alice', 'owns', 'doc:1', { possibility: 0.5 });
arb.addRelation('user:alice', 'works_in', 'dept:eng', { possibility: 1 });
arb.addRelation('dept:eng', 'has_access', 'doc:1', { possibility: 0.75 });
}
for (const op of operations) {
applyMutation(compiled, op);
applyMutation(manual, op);
for (const rel of ['can_read', 'can_access']) {
const c = compiled.check('user:alice', rel, 'doc:1');
const m = manual.check('user:alice', rel, 'doc:1');
if (Math.abs(c.possibility - m.possibility) > EPS) {
fail(`parity ${rel} after ${JSON.stringify(op)}: compiled=${c.possibility}, manual=${m.possibility}`);
}
}
}
return { ops: operations.length };
}
const mutationGen = rigor.gen.oneOf([
rigor.gen.tuple(
rigor.gen.constant('add'),
rigor.gen.oneOf(SUBJECTS),
rigor.gen.oneOf(RELATIONS),
rigor.gen.oneOf(SUBJECTS),
rigor.gen.oneOf(POS)
),
rigor.gen.tuple(
rigor.gen.constant('remove'),
rigor.gen.oneOf(SUBJECTS),
rigor.gen.oneOf(RELATIONS),
rigor.gen.oneOf(SUBJECTS),
rigor.gen.constant(0)
)
]);
const report = await rigor.campaign(
[
rigor.fn('check', check, rigor.args(
rigor.gen.array(mutationGen, 1, 10)
))
],
rigor.crucible([
rigor.invariant('sequence-parity', ({ actual }) => actual !== undefined)
])
).run({ effort: 400, seed: 'dsl-mutation-parity' , artifacts: { dir: '', persist: 'never' }});
const inv = report.crucibleVerdict?.invariants?.find(i => i.name === 'sequence-parity');
assert.ok(inv);
assert.equal(inv.passed, true, `SEQUENCE PARITY violated in ${inv.failureCount} cases`);
});
it('GRANT/REVOKE CYCLES: repeated add/remove of the same tuple never desyncs', async () => {
async function check({ cycles, p }) {
const compiled = buildCompiledArbiter();
const manual = buildManualArbiter();
for (let i = 0; i < cycles; i++) {
for (const arb of [compiled, manual]) {
arb.addRelation('user:alice', 'owns', 'doc:1', { possibility: p });
}
for (const rel of ['can_read', 'can_access']) {
const c = compiled.check('user:alice', rel, 'doc:1');
const m = manual.check('user:alice', rel, 'doc:1');
if (Math.abs(c.possibility - m.possibility) > EPS) {
fail(`grant cycle ${i} ${rel}: compiled=${c.possibility}, manual=${m.possibility}`);
}
}
for (const arb of [compiled, manual]) {
arb.removeRelation('user:alice', 'owns', 'doc:1');
}
const c = compiled.check('user:alice', 'can_read', 'doc:1');
const m = manual.check('user:alice', 'can_read', 'doc:1');
if (Math.abs(c.possibility - m.possibility) > EPS) {
fail(`revoke cycle ${i}: compiled=${c.possibility}, manual=${m.possibility}`);
}
if (c.possibility !== 0) {
fail(`revoke cycle ${i}: grant survived removal (${c.possibility})`);
}
}
return { cycles };
}
const report = await rigor.campaign(
[
rigor.fn('check', check, rigor.args(
rigor.gen.object({
cycles: rigor.gen.int(2, 8),
p: rigor.gen.oneOf([0.25, 0.5, 1])
})
))
],
rigor.crucible([
rigor.invariant('grant-revoke-cycles', ({ actual }) => actual !== undefined)
])
).run({ effort: 300, seed: 'dsl-grant-revoke-cycles' , artifacts: { dir: '', persist: 'never' }});
const inv = report.crucibleVerdict?.invariants?.find(i => i.name === 'grant-revoke-cycles');
assert.ok(inv);
assert.equal(inv.passed, true, `GRANT/REVOKE CYCLES violated in ${inv.failureCount} cases`);
});
});