Files
Duriin-API/test/autonomy.test.js
T
ImBenjiandClaude Opus 5 ca69ad0e73 fix: stop three loops that retry forever, and let budget dead letters recover
The event outcome worker re-requested PSTG and GROQ on every poll for as long as
the process lived, because a fetch failure only logged and continued while the
prediction stayed pending. Ten requests every five minutes, indefinitely. Per
ticker backoff now doubles to an hour, so a symbol with no market data costs one
request an hour instead of one a minute. It also translates dotted tickers the
same way the autonomy worker does, which is why that helper moved into the
shared price module rather than being copied.

The gdelt loop had no pause on its error path at all, so once the api started
refusing connections it spun through failures continuously, burning cpu and
filling the log with the same stack. It has been doing that for days. Backs off
to half an hour now and resets on success.

isTransientCoordinatorFailure matched 408, 429 and 5xx but not a budget 402/403,
so the 380 jobs that dead-lettered during the exhausted quota window could never
come back on their own, including 55 live events. Budget failures are transient
in a way an ordinary auth failure is not, and a wrong key still dies permanently
because it says invalid or unauthorized rather than naming credits.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01WnNxwxfXSbeNtjvtz5gayb
2026-09-03 16:42:28 +01:00

357 lines
19 KiB
JavaScript

const test = require('node:test');
const assert = require('node:assert/strict');
const Database = require('better-sqlite3');
const { initAutonomySchema } = require('../src/autonomy/schema');
const { enqueueJob, leaseNextJob, completeJob } = require('../src/autonomy/jobs');
const { normalizeProposal, acceptProposal } = require('../src/autonomy/coordinator');
const { calibrateOutcomes, cohortKey } = require('../src/autonomy/calibration');
const { decide } = require('../src/autonomy/policy');
const { validatePaperIntent, createSimulator } = require('../src/autonomy/execution');
const { calculateOutcome, addTradingDays } = require('../src/autonomy/outcomes');
const { yahooSymbol } = require('../workers/outcomeAutonomyWorker');
const { createOrderIntent } = require('../src/autonomy/orderIntents');
const { enqueueCoordinatorEvent, reconcileArchiveBatch, reconcileLiveBatch, isTransientCoordinatorFailure } = require('../workers/autonomyWorker');
const { scheduleNext } = require('../workers/replayWorker');
const { refreshHistoricalCalibration, createDecisions, ensureCalibrationColumns } = require('../workers/calibrationWorker');
test('autonomy schema and leased jobs are restart-safe', () => {
const db = new Database(':memory:');
initAutonomySchema(db);
assert.equal(enqueueJob(db, {
jobType: 'enrich', lane: 'live', priority: 10, entityType: 'article', entityId: 42,
idempotencyKey: 'enrich:42',
}).inserted, true);
assert.equal(enqueueJob(db, {
jobType: 'enrich', lane: 'live', priority: 10, entityType: 'article', entityId: 42,
idempotencyKey: 'enrich:42',
}).inserted, false);
const job = leaseNextJob(db, 'test-worker');
assert.equal(job.lane, 'live');
assert.equal(completeJob(db, job.id, 'test-worker'), true);
assert.equal(db.prepare("SELECT status FROM autonomy_jobs WHERE id = ?").get(job.id).status, 'complete');
});
test('coordinator proposals require evidence and contain no arbitrary numeric confidence', () => {
const normalized = normalizeProposal({ predictions: [{
instrument: 'nvda', direction: 'positive', event_type: 'supply_constraint',
horizon_days: 10, evidence_article_ids: [7],
}] }, { informationCutoff: '2026-01-01T00:00:00Z', model: 'test-model' });
assert.equal(normalized.predictions[0].instrument, 'NVDA');
assert.equal('probability' in normalized.predictions[0], false);
assert.throws(() => normalizeProposal({ predictions: [{ instrument: 'NVDA', direction: 'positive', horizon_days: 10 }] }));
});
test('accepted proposal preserves evidence and creates immutable prediction', () => {
const archive = new Database(':memory:');
archive.exec('CREATE TABLE articles (id INTEGER PRIMARY KEY)');
archive.prepare('INSERT INTO articles (id) VALUES (?)').run(7);
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
intelligence.prepare("INSERT INTO autonomy_instruments(symbol, broker, active, tradable) VALUES ('NVDA', 'test', 1, 1)").run();
const result = acceptProposal(intelligence, archive, {
predictions: [{ instrument: 'NVDA', direction: 'positive', event_type: 'earnings', horizon_days: 10, evidence_article_ids: [7] }],
}, { informationCutoff: '2026-01-01T00:00:00Z', strategyVersion: 'test' });
assert.equal(result.predictionCount, 1);
assert.deepEqual(JSON.parse(intelligence.prepare('SELECT evidence_article_ids FROM autonomy_predictions').get().evidence_article_ids), [7]);
});
test('replay evidence cannot look beyond its information cutoff and remains non-executable', () => {
const archive = new Database(':memory:');
archive.exec('CREATE TABLE articles (id INTEGER PRIMARY KEY, pub_date_effective TEXT, pub_date TEXT, ingested_at TEXT)');
archive.prepare("INSERT INTO articles VALUES (7, '2020-01-01T00:00:00Z', NULL, '2020-01-01T00:00:00Z')").run();
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
intelligence.prepare("INSERT INTO autonomy_instruments(symbol, broker, active, tradable) VALUES ('NVDA', 'test', 1, 1)").run();
assert.throws(() => acceptProposal(intelligence, archive, {
predictions: [{ instrument: 'NVDA', direction: 'positive', event_type: 'earnings', horizon_days: 10, evidence_article_ids: [7] }],
}, { informationCutoff: '2019-12-31T00:00:00Z', origin: 'replay', replayRunId: 1 }), /missing evidence/);
const proposal = intelligence.prepare("INSERT INTO autonomy_proposals(payload, information_cutoff, status) VALUES ('{}', datetime('now'), 'accepted')").run();
const prediction = intelligence.prepare(`INSERT INTO autonomy_predictions
(proposal_id, instrument, direction, event_type, horizon_days, information_cutoff, evidence_article_ids, strategy_version, origin)
VALUES (?, 'NVDA', 'positive', 'test', 10, datetime('now'), '[7]', 'test', 'replay')`).run(proposal.lastInsertRowid);
intelligence.prepare("INSERT INTO autonomy_decisions(prediction_id, action, rationale, strategy_version) VALUES (?, 'BUY', 'test', 'test')").run(prediction.lastInsertRowid);
const executable = intelligence.prepare(`SELECT d.id FROM autonomy_decisions d JOIN autonomy_predictions p ON p.id=d.prediction_id
WHERE d.action IN ('BUY','SELL') AND p.origin='live'`).all();
assert.equal(executable.length, 0);
});
test('replay scheduler skips terminal replay jobs instead of pinning the cursor', () => {
const archive = new Database(':memory:');
archive.exec(`
CREATE TABLE articles (
id INTEGER PRIMARY KEY,
title TEXT,
description TEXT,
content TEXT,
pub_date_effective TEXT,
is_index_page INTEGER
)
`);
archive.prepare("INSERT INTO articles VALUES (1, 'bad', '', 'content', '2020-01-01T00:00:00Z', 0)").run();
archive.prepare("INSERT INTO articles VALUES (2, 'next', '', 'content', '2020-01-02T00:00:00Z', 0)").run();
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
const runId = intelligence.prepare(`
INSERT INTO autonomy_replay_runs (watermark_at, strategy_version, prompt_version, coordinator_model)
VALUES ('2020-01-03T00:00:00Z', 'test', 'test', 'test')
`).run().lastInsertRowid;
enqueueJob(intelligence, {
jobType: 'replay_article', lane: 'historical', priority: 1, entityType: 'article', entityId: 1,
idempotencyKey: `replay:${runId}:article:1`,
});
intelligence.prepare("UPDATE autonomy_jobs SET status='dead_letter', attempts=5, last_error='fetch failed'").run();
const run = intelligence.prepare('SELECT * FROM autonomy_replay_runs WHERE id=?').get(runId);
const next = scheduleNext(intelligence, archive, run);
assert.equal(next.id, 2);
assert.equal(intelligence.prepare('SELECT cursor_article_id FROM autonomy_replay_runs WHERE id=?').get(runId).cursor_article_id, 1);
assert.equal(intelligence.prepare("SELECT COUNT(*) count FROM autonomy_jobs WHERE status='pending' AND entity_id='2'").get().count, 1);
});
test('calibration and policy abstain on insufficient evidence', () => {
const calibration = calibrateOutcomes([
{ excess_return: 0.02, direction_correct: 1 },
{ excess_return: -0.01, direction_correct: 0 },
]);
assert.equal(calibration.sampleSize, 2);
const result = decide({ ...calibration }, { minSampleSize: 30 });
assert.equal(result.action, 'ABSTAIN');
assert.equal(cohortKey({ sector: 'tech', eventType: 'earnings', horizonDays: 10, direction: 'positive' }), 'v2|tech|earnings|medium|positive');
assert.equal(decide({
direction: 'negative', probability: 0.8, expectedExcessReturn: -0.02, lowerReturn: -0.04,
sampleSize: 40, distinctInstruments: 9, topInstrumentShare: 0.25,
}).action, 'SELL');
});
test('historical replay outcomes create replay calibration snapshots', () => {
const db = new Database(':memory:');
initAutonomySchema(db);
const proposal = db.prepare("INSERT INTO autonomy_proposals(payload, information_cutoff, status) VALUES ('{}', '2020-01-01T00:00:00Z', 'accepted')").run();
const prediction = db.prepare(`
INSERT INTO autonomy_predictions
(proposal_id, instrument, direction, event_type, horizon_days, information_cutoff, evidence_article_ids,
learning_eligible, strategy_version, origin, replay_run_id, status)
VALUES (?, 'NVDA', 'positive', 'earnings', 10, '2020-01-01T00:00:00Z', '[1]', 0, 'test', 'replay', 7, 'resolved')
`).run(proposal.lastInsertRowid);
db.prepare(`
INSERT INTO autonomy_outcomes(prediction_id, excess_return, direction_correct)
VALUES (?, 0.04, 1)
`).run(prediction.lastInsertRowid);
// one per-run replay snapshot plus the pooled historical/replay snapshot
assert.equal(refreshHistoricalCalibration(db, 'test-cal'), 2);
const snapshot = db.prepare("SELECT source, replay_run_id, sample_size, directional_probability FROM autonomy_calibration_snapshots WHERE source='replay'").get();
assert.equal(snapshot.source, 'replay');
assert.equal(snapshot.replay_run_id, 7);
assert.equal(snapshot.sample_size, 1);
assert(snapshot.directional_probability > 0.5);
});
test('live decisions map calibration snapshot fields into policy inputs', () => {
const db = new Database(':memory:');
initAutonomySchema(db);
const proposal = db.prepare("INSERT INTO autonomy_proposals(payload, information_cutoff, status) VALUES ('{}', datetime('now'), 'accepted')").run();
const prediction = db.prepare(`
INSERT INTO autonomy_predictions
(proposal_id, instrument, direction, event_type, horizon_days, information_cutoff, evidence_article_ids,
learning_eligible, strategy_version, origin, status)
VALUES (?, 'NVDA', 'positive', 'earnings', 10, datetime('now'), '[1]', 1, 'test', 'live', 'open')
`).run(proposal.lastInsertRowid);
ensureCalibrationColumns(db);
db.prepare(`
INSERT INTO autonomy_calibration_snapshots
(cohort_key, sample_size, effective_sample_size, directional_probability, expected_excess_return,
lower_return, upper_return, parent_cohort_key, version, source)
VALUES ('v2|unknown|earnings|medium|positive', 40, 42, 0.7, 0.02, -0.01, 0.06, NULL, 'test-cal', 'live')
`).run();
db.prepare("UPDATE autonomy_calibration_snapshots SET distinct_instruments = 11, top_instrument_share = 0.2").run();
assert.equal(createDecisions(db), 1);
const decision = db.prepare('SELECT * FROM autonomy_decisions WHERE prediction_id=?').get(prediction.lastInsertRowid);
assert.equal(decision.action, 'BUY');
assert.equal(decision.calibrated_probability, 0.7);
assert.equal(decision.expected_excess_return, 0.02);
});
test('paper execution is allowlisted, bounded and idempotent', () => {
const intent = validatePaperIntent({ decisionId: 12, instrument: 'NVDA', action: 'BUY', notional: 100 }, { tradable: true, maxNotional: 500 });
const broker = createSimulator();
assert.deepEqual(broker.submit(intent), broker.submit(intent));
assert.throws(() => validatePaperIntent({ decisionId: 13, instrument: 'PRIVATE', action: 'BUY', notional: 100 }, { tradable: false }));
assert.throws(() => validatePaperIntent({ decisionId: 14, instrument: 'NVDA', action: 'BUY', notional: 501 }, { tradable: true, maxNotional: 500 }));
});
test('archive reconciliation prioritizes recent usable events and is bounded', () => {
const archive = new Database(':memory:');
archive.exec('CREATE TABLE articles (id INTEGER PRIMARY KEY, event_id INTEGER, ingested_at TEXT, content TEXT, has_embedding INTEGER)');
archive.prepare('INSERT INTO articles VALUES (1, 99, ?, ?, 1)').run(new Date().toISOString(), 'content');
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
const result = reconcileArchiveBatch(archive, intelligence, 1);
assert.equal(result.scanned, 1);
const job = intelligence.prepare("SELECT lane, priority FROM autonomy_jobs WHERE job_type='coordinator_event'").get();
assert.equal(job.lane, 'live');
assert.equal(job.priority, 100);
const live = reconcileLiveBatch(archive, intelligence, 1);
assert.equal(live.scanned, 1);
});
test('archive reconciliation recovers transient dead-lettered coordinator jobs', () => {
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
enqueueJob(intelligence, {
jobType: 'coordinator_event', lane: 'historical', priority: 10, entityType: 'event', entityId: 99,
idempotencyKey: 'coordinator_event:99',
});
intelligence.prepare(`
UPDATE autonomy_jobs
SET status='dead_letter', attempts=5, last_error='TypeError: fetch failed'
WHERE idempotency_key='coordinator_event:99'
`).run();
const result = enqueueCoordinatorEvent(intelligence, {
event_id: 99,
ingested_at: new Date().toISOString(),
content: 'content',
has_embedding: 1,
});
assert.equal(result.recovered, true);
const job = intelligence.prepare("SELECT status, lane, priority, attempts, last_error FROM autonomy_jobs WHERE idempotency_key='coordinator_event:99'").get();
assert.equal(job.status, 'pending');
assert.equal(job.lane, 'live');
assert.equal(job.priority, 100);
assert.equal(job.attempts, 0);
assert.match(job.last_error, /Recovered transient coordinator failure/);
});
test('archive reconciliation leaves non-transient coordinator dead letters alone', () => {
const intelligence = new Database(':memory:');
initAutonomySchema(intelligence);
enqueueJob(intelligence, {
jobType: 'coordinator_event', lane: 'historical', priority: 10, entityType: 'event', entityId: 100,
idempotencyKey: 'coordinator_event:100',
});
intelligence.prepare(`
UPDATE autonomy_jobs
SET status='dead_letter', attempts=5, last_error='no tradable instruments are allowlisted'
WHERE idempotency_key='coordinator_event:100'
`).run();
const result = enqueueCoordinatorEvent(intelligence, {
event_id: 100,
ingested_at: new Date().toISOString(),
content: 'content',
has_embedding: 1,
});
assert.equal(result.recovered, false);
const job = intelligence.prepare("SELECT status, attempts, last_error FROM autonomy_jobs WHERE idempotency_key='coordinator_event:100'").get();
assert.equal(job.status, 'dead_letter');
assert.equal(job.attempts, 5);
assert.equal(job.last_error, 'no tradable instruments are allowlisted');
});
test('outcome calculation uses benchmark-relative return', () => {
const outcome = calculateOutcome(
{ information_cutoff: '2026-01-02T00:00:00Z', horizon_days: 5, direction: 'positive' },
[{ date: '2026-01-02', close: 100 }, { date: '2026-01-09', close: 110 }],
[{ date: '2026-01-02', close: 100 }, { date: '2026-01-09', close: 105 }]
);
assert.equal(outcome.directionCorrect, 1);
assert.equal(outcome.excessReturn, 0.05);
});
test('order intents require the explicit instrument allowlist', () => {
const db = new Database(':memory:');
initAutonomySchema(db);
db.prepare("INSERT INTO autonomy_instruments(symbol, broker, active, tradable) VALUES ('NVDA', 'sim', 1, 1)").run();
const proposal = db.prepare(`INSERT INTO autonomy_proposals(payload, information_cutoff, status) VALUES ('{}', datetime('now'), 'accepted')`).run();
const prediction = db.prepare(`INSERT INTO autonomy_predictions(proposal_id, instrument, direction, event_type, horizon_days, information_cutoff, evidence_article_ids, learning_eligible, strategy_version) VALUES (?, 'NVDA', 'positive', 'test', 10, datetime('now'), '[1]', 1, 'test')`).run(proposal.lastInsertRowid);
const decision = db.prepare(`INSERT INTO autonomy_decisions(prediction_id, action, rationale, strategy_version) VALUES (?, 'BUY', 'test', 'test')`).run(prediction.lastInsertRowid);
const intent = createOrderIntent(db, decision.lastInsertRowid, 100, { maxNotional: 100 });
assert.equal(intent.side, 'buy');
assert.equal(db.prepare('SELECT status FROM autonomy_order_intents').get().status, 'shadow');
});
test('event_type is held to the closed family enum', () => {
const base = { instrument: 'NVDA', direction: 'positive', horizon_days: 10, evidence_article_ids: [1] };
const typeOf = (eventType) => normalizeProposal({ predictions: [{ ...base, event_type: eventType }] }).predictions[0].eventType;
// the enum itself, in the shapes a model actually emits
assert.equal(typeOf('earnings'), 'earnings');
assert.equal(typeOf('Supply Chain'), 'supply_chain');
assert.equal(typeOf('M_AND_A'), 'm_and_a');
// "none of these fit" is a legitimate answer and has to survive
assert.equal(typeOf('other'), 'other');
// off-enum but placeable: salvaged onto the family calibration would have
// picked anyway, so we dont throw away a usable prediction over a label
assert.equal(typeOf('earnings_beat_q3'), 'earnings');
assert.equal(typeOf('ceo resignation'), 'leadership');
// unplaceable free text is the 201-distinct-values failure, and is rejected
assert.throws(() => typeOf('vibes_shifted'), /event_type must be one of/);
assert.throws(() => typeOf(''), /event_type must be one of/);
});
test('dotted tickers are translated to the format the price feed expects', () => {
// BRK.B 404d forever and the outcome worker retried it in a hot loop
assert.equal(yahooSymbol('BRK.B'), 'BRK-B');
assert.equal(yahooSymbol('ABR.PRD'), 'ABR-PRD');
assert.equal(yahooSymbol('aac.u'), 'AAC-U');
// ordinary symbols must pass through untouched
assert.equal(yahooSymbol('NVDA'), 'NVDA');
assert.equal(yahooSymbol(' spy '), 'SPY');
});
test('an outcome whose horizon has not actually elapsed is not a result', () => {
// ITW and WMT both scored exactly 0.00% excess in production because at
// horizon 1 the entry and exit lookups landed on the same bar. Zero is not a
// measurement, and it was being recorded as a directional miss.
const sameBar = calculateOutcome(
{ information_cutoff: '2026-01-02T00:00:00Z', horizon_days: 1, direction: 'positive' },
[{ date: '2026-01-05', close: 100 }],
[{ date: '2026-01-05', close: 100 }]
);
assert.equal(sameBar, null);
// the exit bar genuinely existing still scores normally
const real = calculateOutcome(
{ information_cutoff: '2026-01-02T00:00:00Z', horizon_days: 1, direction: 'positive' },
[{ date: '2026-01-02', close: 100 }, { date: '2026-01-05', close: 104 }],
[{ date: '2026-01-02', close: 100 }, { date: '2026-01-05', close: 102 }]
);
assert.equal(real.directionCorrect, 1);
assert.ok(Math.abs(real.excessReturn - 0.02) < 1e-9);
});
test('trading day arithmetic steps over weekends', () => {
// friday + 1 trading day is monday, not saturday. the old due-check counted
// calendar days and so called a friday horizon-1 prediction due on saturday,
// when monday's close cannot exist yet.
assert.equal(addTradingDays('2026-01-02', 1), '2026-01-05');
assert.equal(addTradingDays('2026-01-02', 5), '2026-01-09');
assert.equal(addTradingDays('2026-01-02', 0), '2026-01-02');
});
test('a budget failure is transient but a bad key is not', () => {
const quota = 'Error: coordinator request failed with 403: {"error":{"message":"Key limit exceeded (monthly limit)."}}';
const credits = 'LLM 402: {"error":{"message":"Insufficient credits. Add more using ..."}}';
const afford = 'coordinator request failed with 402: can only afford 3921 tokens';
assert.equal(isTransientCoordinatorFailure(quota), true);
assert.equal(isTransientCoordinatorFailure(credits), true);
assert.equal(isTransientCoordinatorFailure(afford), true);
// these must stay dead, retrying them forever helps nobody
assert.equal(isTransientCoordinatorFailure('request failed with 403: invalid api key'), false);
assert.equal(isTransientCoordinatorFailure('request failed with 401: unauthorized'), false);
assert.equal(isTransientCoordinatorFailure('proposal references missing evidence'), false);
// and the pre-existing transient cases still are
assert.equal(isTransientCoordinatorFailure('TypeError: fetch failed'), true);
assert.equal(isTransientCoordinatorFailure('request failed with 503'), true);
});