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Author SHA1 Message Date
Garry TanandClaude Fable 5 921048827a fix(remediation): pass LINK_EXTRACTOR_VERSION_TS to the extraction-lag gate
countExtractionLag omitted versionTs, so its predicate diverged from the
counter it claims to share with doctor's links_extraction_lag check and
the extract --stale walk: pages stamped before an extractor version bump
(links_extracted_at < LINK_EXTRACTOR_VERSION_TS) lagged for doctor and
extract but never tripped the sync.repo/extract.all gate. Pass the stamp;
pin the version-bump arm with a backdated-page test (fails without it).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-22 10:53:55 -07:00
0dff84b16a fix(remediation): gate sync/extract recs on real extraction lag, refresh at D7 recheck
Takeover of #2363. The sync.repo/extract.all recommendations gated on
health.stale_pages — a proxy (updated_at predates newest timeline entry)
that stopped meaning anything after migration v10 dropped the trigger
behind it. Gate them on the honest counter instead:
engine.countStalePagesForExtraction, the same staleness `gbrain extract
--stale` and doctor's links_extraction_lag use.

On top of the original PR, two repairs:

- runRemediation loads RecommendationContext once, but the D7 per-step
  recheck reused the frozen extractionLagPages — a completed sync/extract
  step could never clear the gate, so the pipeline re-fired every recheck
  until maxJobs. The recheck now refreshes the gate alongside getHealth
  via the shared countExtractionLag() helper (extracted into
  remediation/context.ts). Pinned by
  test/remediation-run-d7-refresh.serial.test.ts (serial: mock.module).
- autopilot builds its own RecommendationContext by hand; without wiring,
  it would silently never fire sync.repo/extract.all again. It now
  populates extractionLagPages from the same helper.

Co-authored-by: DarkNightForge <DarkNightForge@users.noreply.github.com>
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-21 15:06:34 -07:00
11 changed files with 227 additions and 184 deletions
+1 -4
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@@ -935,10 +935,7 @@ export function formatResult(opName: string, result: unknown): string {
lines.push(`Link coverage (entities): ${(h.link_coverage * 100).toFixed(1)}%`);
}
if (h.timeline_coverage !== undefined) {
lines.push(`Timeline coverage (entity pages): ${(h.timeline_coverage * 100).toFixed(1)}%`);
}
if (h.timeline_coverage_score !== undefined) {
lines.push(`Timeline density (all pages): ${h.timeline_coverage_score}/15 (whole-brain brain-score component)`);
lines.push(`Timeline coverage (entities): ${(h.timeline_coverage * 100).toFixed(1)}%`);
}
if (Array.isArray(h.most_connected) && h.most_connected.length > 0) {
lines.push('Most connected entities:');
+4
View File
@@ -686,6 +686,7 @@ export async function runAutopilot(engine: BrainEngine, args: string[]) {
try {
const { MinionQueue } = await import('../core/minions/queue.ts');
const { computeRecommendations, embeddingProviderConfigured, HOSTED_EMBED_KEY_CONFIG } = await import('../core/brain-score-recommendations.ts');
const { countExtractionLag } = await import('../core/remediation/context.ts');
const queue = new MinionQueue(engine);
const slotMs = Math.floor(Date.now() / (baseInterval * 1000)) * baseInterval * 1000;
const slot = new Date(slotMs).toISOString();
@@ -877,6 +878,9 @@ export async function runAutopilot(engine: BrainEngine, args: string[]) {
return !!(process.env[envVar] || (cfgField ? embedKeyCfg[cfgField] : undefined));
}),
hasChatApiKey: !!(process.env.ANTHROPIC_API_KEY || await engine.getConfig('anthropic_api_key')),
// Real extraction-lag gate for sync.repo/extract.all — same counter
// loadRecommendationContext uses (replaces the health.stale_pages proxy).
extractionLagPages: await countExtractionLag(engine),
};
// v0.41.18.0 (A5 + A19 + A22, T15): consult onboard recommendations
// ALONGSIDE doctor's brain-score recommendations. Onboard's 4 new
+3 -3
View File
@@ -5868,12 +5868,12 @@ export async function buildChecks(
message: `Only code/test fixture entity pages found (${entityCount}); graph_coverage not applicable`,
});
} else if (linkCoverage >= 0.5 && timelineCoverage >= 0.5) {
checks.push({ name: 'graph_coverage', status: 'ok', message: `Entity link coverage ${linkPct}%, entity timeline coverage ${timelinePct}%` });
checks.push({ name: 'graph_coverage', status: 'ok', message: `Entity link coverage ${linkPct}%, timeline ${timelinePct}%` });
} else {
checks.push({
name: 'graph_coverage',
status: 'warn',
message: `Entity link coverage ${linkPct}%, entity timeline coverage ${timelinePct}% (${eligibleEntityCount} entity pages). Run: gbrain extract all`,
message: `Entity link coverage ${linkPct}%, timeline ${timelinePct}% (${eligibleEntityCount} entity pages). Run: gbrain extract all`,
});
}
@@ -5885,7 +5885,7 @@ export async function buildChecks(
const parts = [
`embed ${health.embed_coverage_score}/35`,
`links ${health.link_density_score}/25`,
`timeline density (all pages) ${health.timeline_coverage_score}/15`,
`timeline ${health.timeline_coverage_score}/15`,
`orphans ${health.no_orphans_score}/15`,
`dead-links ${health.no_dead_links_score}/10`,
];
+26 -8
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@@ -146,6 +146,16 @@ export interface RecommendationContext {
chatModel?: string;
/** Whether the chat provider has a usable API key. */
hasChatApiKey?: boolean;
/**
* Count of pages needing link/timeline extraction — the SAME staleness the
* `gbrain extract --stale` walk and doctor's `links_extraction_lag` check use
* (`engine.countStalePagesForExtraction`). Gates the sync→extract pipeline
* (sync.repo / extract.all). Replaces the old `health.stale_pages` gate, which
* counted "pages whose updated_at predates their newest timeline entry" — a
* proxy that broke when the updated_at-on-timeline-insert trigger was dropped
* (migration v10) and never reflected real extraction work.
*/
extractionLagPages?: number;
}
/** Triage result for one check. */
@@ -192,20 +202,28 @@ export function computeRecommendations(
const source = ctx.sourceId ?? 'default';
// ---------------------------------------------------------------------
// sync.repo — fires when sync hasn't run recently OR pages are stale
// sync.repo + extract.all — the materialization pipeline, gated on the REAL
// extraction lag (pages whose link/timeline edges are stale), NOT on the
// legacy `health.stale_pages` proxy. `extractionLagPages` comes from the same
// counter the `extract --stale` walk + doctor's `links_extraction_lag` use, so
// the recommendation can only fire when running extract will actually reduce
// it (and clear the rec). See RecommendationContext.extractionLagPages.
// sync.repo is the prerequisite: re-sync so pages are current before extract
// materializes their edges.
// ---------------------------------------------------------------------
if (ctx.repoPath && health.stale_pages > 0) {
const extractionLag = ctx.extractionLagPages ?? 0;
if (ctx.repoPath && extractionLag > 0) {
const params = { repoPath: ctx.repoPath, sourceId: ctx.sourceId, noEmbed: true };
out.push({
id: 'sync.repo',
job: 'sync',
params,
idempotency_key: idemKey(source, 'sync', params),
severity: health.stale_pages > 50 ? 'high' : 'medium',
est_seconds: Math.min(600, 30 + health.stale_pages * 0.5),
severity: extractionLag > 50 ? 'high' : 'medium',
est_seconds: Math.min(600, 30 + extractionLag * 0.5),
est_usd_cost: 0, // sync is fs+DB only
depends_on: [],
rationale: `${health.stale_pages} stale page${health.stale_pages === 1 ? '' : 's'} on disk`,
rationale: `Sync before extracting ${extractionLag} page${extractionLag === 1 ? '' : 's'} with stale link/timeline edges`,
status: 'remediable',
});
}
@@ -237,7 +255,7 @@ export function computeRecommendations(
est_seconds: Math.min(3600, 5 + health.missing_embeddings * 0.05),
est_usd_cost,
// sync should run first so embed sees fresh pages.
depends_on: ctx.repoPath && health.stale_pages > 0 ? ['sync.repo'] : [],
depends_on: ctx.repoPath && extractionLag > 0 ? ['sync.repo'] : [],
rationale: `${health.missing_embeddings} chunk${health.missing_embeddings === 1 ? '' : 's'} invisible to vector search`,
status: 'remediable',
});
@@ -267,7 +285,7 @@ export function computeRecommendations(
// Triggered when sync.repo fires (because sync was set to noEmbed:true,
// and noExtract:true after T5 lands → extract job is the materializer).
// ---------------------------------------------------------------------
if (ctx.repoPath && health.stale_pages > 0) {
if (ctx.repoPath && extractionLag > 0) {
const params = { mode: 'all', dir: ctx.repoPath };
out.push({
id: 'extract.all',
@@ -278,7 +296,7 @@ export function computeRecommendations(
est_seconds: Math.min(600, 30 + health.page_count * 0.01),
est_usd_cost: 0,
depends_on: ['sync.repo'],
rationale: 'Materialize link + timeline edges from fresh pages',
rationale: `Materialize link + timeline edges for ${extractionLag} page${extractionLag === 1 ? '' : 's'} with stale extraction`,
status: 'remediable',
});
}
+25
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@@ -8,6 +8,7 @@
import type { BrainEngine } from '../engine.ts';
import type { RecommendationContext } from '../brain-score-recommendations.ts';
import { LINK_EXTRACTOR_VERSION_TS } from '../link-extraction.ts';
// Re-export so consumers can `import { RecommendationContext } from '../remediation'`
// — the canonical RecommendationContext type still lives in
@@ -68,5 +69,29 @@ export async function loadRecommendationContext(
embeddingDimensions,
embeddingProviderConfigured: embeddingConfigured,
hasChatApiKey: !!(process.env.ANTHROPIC_API_KEY || fileCfg?.anthropic_api_key),
extractionLagPages: await countExtractionLag(engine),
};
}
/**
* Real extraction-lag count — the SAME staleness `gbrain extract --stale`
* processes (engine.countStalePagesForExtraction with
* versionTs=LINK_EXTRACTOR_VERSION_TS, matching doctor's links_extraction_lag
* check — without versionTs, pages stamped before an extractor version bump
* would lag for doctor/extract but never trip this gate). Drives the
* sync→extract recommendation pipeline; replaces the legacy
* `health.stale_pages` proxy that no longer reflected real extraction work
* after the v10 trigger drop.
*
* Shared by loadRecommendationContext AND the D7 per-step recheck in
* runRemediation — the recheck MUST refresh this gate alongside getHealth,
* or a completed extract step keeps re-firing off the frozen initial count.
*/
export async function countExtractionLag(engine: BrainEngine): Promise<number> {
try {
return await engine.countStalePagesForExtraction({ versionTs: LINK_EXTRACTOR_VERSION_TS });
} catch {
/* counter unavailable (very old brain / mid-migration) — treat as 0 */
return 0;
}
}
+7 -2
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@@ -16,7 +16,7 @@ import {
computeRecommendations,
} from '../brain-score-recommendations.ts';
import type { RemediationStep } from '../remediation-step.ts';
import { loadRecommendationContext } from './context.ts';
import { countExtractionLag, loadRecommendationContext } from './context.ts';
import { computeRemediationPlan } from './plan.ts';
import type {
RemediationHooks,
@@ -65,7 +65,7 @@ export async function runRemediation(
clearRemediationCheckpoint,
} = await import('../remediation-checkpoint.ts');
const ctx = await loadRecommendationContext(engine);
let ctx = await loadRecommendationContext(engine);
// Pre-flight ceiling check via the shared plan computation.
const initialPlan = await computeRemediationPlan(engine, { targetScore });
@@ -305,6 +305,11 @@ export async function runRemediation(
// steps with bumped retry suffix (D1).
if (recs.length === 0 || stepCount >= maxJobs) break;
const freshHealth = await engine.getHealth();
// Refresh the extraction-lag gate alongside health: ctx was loaded once
// before the loop, and a completed sync/extract step is exactly what
// drives the count down. Reusing the frozen initial count would re-fire
// sync.repo/extract.all every recheck until maxJobs.
ctx = { ...ctx, extractionLagPages: await countExtractionLag(engine) };
recs = computeRecommendations(freshHealth, ctx).filter((r) => r.status === 'remediable');
}
};
+9
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@@ -1423,6 +1423,15 @@ export interface BrainStats {
export interface BrainHealth {
page_count: number;
embed_coverage: number;
/**
* LEGACY proxy: count of pages whose `updated_at` predates their newest
* timeline entry. This bumped meaningfully only while a trigger updated
* `pages.updated_at` on timeline insert; that trigger was dropped in
* migration v10, so the metric no longer reflects real "needs work" state.
* NO LONGER gates remediations — the sync→extract pipeline now gates on
* `RecommendationContext.extractionLagPages` (the real extraction-lag from
* `countStalePagesForExtraction`). Retained for the CLI health line + back-compat.
*/
stale_pages: number;
/**
* Islanded pages — zero inbound AND zero outbound links. A hub page
+9 -12
View File
@@ -119,13 +119,12 @@ describe('computeRecommendations', () => {
expect(recs.find((r) => r.id === 'embed.stale')).toBeUndefined();
});
test('stale pages + dead links produce sync + backlinks + extract', () => {
test('extraction lag + dead links produce sync + backlinks + extract', () => {
const health = makeHealth({
stale_pages: 25,
dead_links: 8,
brain_score: 70,
});
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true });
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true, extractionLagPages: 25 });
const ids = recs.map((r) => r.id);
expect(ids).toContain('sync.repo');
expect(ids).toContain('backlinks.fix');
@@ -133,18 +132,17 @@ describe('computeRecommendations', () => {
});
test('extract.all depends on sync.repo (D14: stable ids)', () => {
const health = makeHealth({ stale_pages: 10 });
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true });
const health = makeHealth();
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true, extractionLagPages: 10 });
const extract = recs.find((r) => r.id === 'extract.all');
expect(extract?.depends_on).toContain('sync.repo');
});
test('embed.stale depends on sync.repo when sync also needed', () => {
test('embed.stale depends on sync.repo when extraction also needed', () => {
const health = makeHealth({
stale_pages: 10,
missing_embeddings: 100,
});
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true });
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true, extractionLagPages: 10 });
const embed = recs.find((r) => r.id === 'embed.stale');
expect(embed?.depends_on).toContain('sync.repo');
});
@@ -159,9 +157,9 @@ describe('computeRecommendations', () => {
test('severity ordering: critical before high before medium', () => {
const health = makeHealth({
missing_embeddings: 100, // critical
stale_pages: 80, // high
});
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true });
// extractionLagPages > 50 → sync.repo fires at 'high' severity.
const recs = computeRecommendations(health, { repoPath: '/brain', embeddingProviderConfigured: true, extractionLagPages: 80 });
const critIdx = recs.findIndex((r) => r.severity === 'critical');
const highIdx = recs.findIndex((r) => r.severity === 'high');
expect(critIdx).toBeLessThan(highIdx);
@@ -170,11 +168,10 @@ describe('computeRecommendations', () => {
// D6 #5 — THE critical regression test for the agent contract.
test('D6 #5: determinism — same input twice produces identical output', () => {
const health = makeHealth({
stale_pages: 10,
missing_embeddings: 50,
dead_links: 3,
});
const ctx = { repoPath: '/brain', embeddingProviderConfigured: true, sourceId: 'default' };
const ctx = { repoPath: '/brain', embeddingProviderConfigured: true, sourceId: 'default', extractionLagPages: 10 };
const run1 = computeRecommendations(health, ctx);
const run2 = computeRecommendations(health, ctx);
expect(JSON.stringify(run1)).toBe(JSON.stringify(run2));
@@ -1,155 +0,0 @@
/**
* Issue #2298 — timeline metric presentation contract.
*
* Authoritative upstream semantics (src/core/types.ts):
* - Metric A `timeline_coverage` (entity-scoped, fraction 01):
* eligible entity pages WITH a timeline entry / eligible entity pages
* -> surfaced by `graph_coverage` check AND `get_health` CLI entity line.
* - Metric B `timeline_coverage_score` (whole-brain, 015 brain-score component):
* all pages WITH a timeline entry / all pages
* -> surfaced by `brain_score` component breakdown AND (separately) CLI.
*
* The two have DIFFERENT numerators/denominators. This PR labels each
* explicitly and keeps BOTH the entity CLI line and the whole-brain line.
*
* Tests (no private EriadorMu data, no production/home DB, no network):
* - numeric denominator assertions (Metric A = 50%, Metric B = 4/15)
* - doctor rendered-message assertions (exact labels, no ambiguous old label)
* - CLI rendered-output assertions (exact lines, guard matrix)
* - red/green: same assertions FAIL on origin/master, PASS on this branch
*
* Scoring formula UNCHANGED. Canonical PGLite fixture via resetPgliteState.
*/
import { describe, expect, test, beforeAll, afterAll, beforeEach } from 'bun:test';
import { PGLiteEngine } from '../src/core/pglite-engine.ts';
import { sqlQueryForEngine } from '../src/core/sql-query.ts';
import { resetPgliteState } from './helpers/reset-pglite.ts';
import { buildChecks } from '../src/commands/doctor.ts';
import { formatResult } from '../src/cli.ts';
let engine: PGLiteEngine;
async function seedFourPages(eng: PGLiteEngine): Promise<void> {
const sql = sqlQueryForEngine(eng);
// 2 eligible entity pages, 2 technical/non-entity pages.
// Only ONE entity page has a timeline entry; only ONE total page does.
await sql`
INSERT INTO pages (slug, source_id, type, title, compiled_truth, frontmatter, content_hash, created_at, updated_at)
VALUES
('acme-example', 'default', 'company', 'Acme', '', '{}', 'h1', now(), now()),
('alice-example', 'default', 'person', 'Alice', '', '{}', 'h2', now(), now()),
('technical-a', 'default', 'note', 'Tech A', '', '{}', 'h3', now(), now()),
('technical-b', 'default', 'note', 'Tech B', '', '{}', 'h4', now(), now())
`;
const companyId = (await sql`SELECT id FROM pages WHERE slug='acme-example'`)[0].id as number;
await sql`INSERT INTO timeline_entries (page_id, date, source, summary, detail)
VALUES (${companyId}, CURRENT_DATE, 'test', 'milestone', '{}')`;
}
beforeAll(async () => {
engine = new PGLiteEngine();
await engine.connect({});
await engine.initSchema();
});
afterAll(async () => {
await engine.disconnect();
});
beforeEach(async () => {
await resetPgliteState(engine);
});
describe('issue #2298 — numeric denominator semantics', () => {
test('entity timeline coverage = 1/2 = 50% (2 eligible entities, 1 with timeline)', async () => {
await seedFourPages(engine);
const health = await engine.getHealth();
expect(health.timeline_coverage).toBeDefined();
expect(Math.round((health.timeline_coverage ?? 0) * 100)).toBe(50);
});
test('whole-brain timeline density = 1/4 -> score 4/15 (4 total pages, 1 with timeline)', async () => {
await seedFourPages(engine);
const health = await engine.getHealth();
expect(health.timeline_coverage_score).toBeDefined();
expect(health.timeline_coverage_score).toBe(4);
});
test('the two metrics use independent denominators', async () => {
await seedFourPages(engine);
const health = await engine.getHealth();
expect(Math.round((health.timeline_coverage ?? 0) * 100)).toBe(50);
expect(health.timeline_coverage_score ?? 0).toBe(4);
// 50% (entity, /2) != 26.7% (whole-brain, /4). Provably distinct.
expect(Math.round(((health.timeline_coverage_score ?? 0) / 15) * 100)).not.toBe(50);
});
});
describe('issue #2298 — doctor rendered-message contract', () => {
test('graph_coverage renders entity-scoped label with 50%', async () => {
await seedFourPages(engine);
const checks = await buildChecks(engine, [], null);
const graph = checks.find((c) => c.name === 'graph_coverage');
expect(graph, 'graph_coverage check must be present').toBeDefined();
expect(graph!.message).toContain('entity timeline coverage 50%');
// ambiguous old label must NOT be present
expect(graph!.message).not.toMatch(/timeline 50%/);
expect(graph!.message).not.toMatch(/timeline \(entity, brain score\)/);
});
test('brain_score renders whole-brain density label 4/15', async () => {
await seedFourPages(engine);
const checks = await buildChecks(engine, [], null);
const brain = checks.find((c) => c.name === 'brain_score');
expect(brain, 'brain_score check must be present').toBeDefined();
expect(brain!.message).toContain('timeline density (all pages) 4/15');
// wrong labels must NOT be present
expect(brain!.message).not.toMatch(/timeline 4\/15/);
expect(brain!.message).not.toMatch(/timeline \(entity, brain score\)/);
// brain-score component must NOT carry the word "entity" (it is whole-brain)
const timelinePart = brain!.message.split('timeline density (all pages) 4/15')[0] + 'timeline density (all pages) 4/15';
expect(timelinePart).not.toMatch(/entity/);
});
});
describe('issue #2298 — CLI get_health rendered-output contract', () => {
function fakeHealth(overrides: Record<string, unknown>): any {
return {
embed_coverage: 1, missing_embeddings: 0, stale_pages: 0, orphan_pages: 0,
link_coverage: 1, timeline_coverage: 0.5, timeline_coverage_score: 4,
most_connected: [], ...overrides,
};
}
test('both entity and whole-brain lines render, no undefined/15', () => {
const out = formatResult('get_health', fakeHealth({}));
expect(out).toContain('Timeline coverage (entity pages): 50.0%');
expect(out).toContain('Timeline density (all pages): 4/15');
expect(out).not.toContain('undefined/15');
expect(out).not.toContain('Timeline coverage (entities)');
expect(out).not.toMatch(/timeline \(entity, brain score\)/);
expect(out).not.toMatch(/bare "timeline 4\/15"/);
});
test('guard matrix: entity present, whole-brain absent -> only entity line', () => {
const out = formatResult('get_health', fakeHealth({ timeline_coverage_score: undefined }));
expect(out).toContain('Timeline coverage (entity pages): 50.0%');
expect(out).not.toContain('Timeline density (all pages)');
expect(out).not.toContain('undefined/15');
});
test('guard matrix: whole-brain present, entity absent -> only whole-brain line', () => {
const out = formatResult('get_health', fakeHealth({ timeline_coverage: undefined }));
expect(out).toContain('Timeline density (all pages): 4/15');
expect(out).not.toContain('Timeline coverage (entity pages)');
expect(out).not.toContain('undefined/15');
});
test('guard matrix: both absent -> neither timeline line, never undefined/15', () => {
const out = formatResult('get_health', fakeHealth({ timeline_coverage: undefined, timeline_coverage_score: undefined }));
expect(out).not.toContain('Timeline coverage (entity pages)');
expect(out).not.toContain('Timeline density (all pages)');
expect(out).not.toContain('undefined/15');
});
});
@@ -0,0 +1,62 @@
// test/remediation-context-extraction-lag.test.ts
//
// Pins the v-next fix: the sync→extract remediation pipeline gates on REAL
// extraction lag, not the legacy `health.stale_pages` proxy (which counted
// "updated_at predates newest timeline entry" — meaningless after the v10
// trigger drop). loadRecommendationContext now populates `extractionLagPages`
// from `engine.countStalePagesForExtraction` — the SAME counter the
// `gbrain extract --stale` walk and doctor's `links_extraction_lag` use — so a
// recommendation can only fire when running extract will actually reduce it.
import { afterAll, beforeAll, describe, expect, it } from 'bun:test';
import { PGLiteEngine } from '../src/core/pglite-engine.ts';
import { loadRecommendationContext } from '../src/core/remediation/context.ts';
let engine: PGLiteEngine;
beforeAll(async () => {
engine = new PGLiteEngine();
await engine.connect({});
await engine.initSchema();
});
afterAll(async () => {
await engine.disconnect();
});
describe('loadRecommendationContext — extractionLagPages wiring', () => {
it('is 0 on an empty brain (nothing to extract)', async () => {
const ctx = await loadRecommendationContext(engine);
expect(ctx.extractionLagPages).toBe(0);
});
it('reflects the real extraction-lag count once a page needs extraction', async () => {
// A freshly-imported page has links_extracted_at = NULL, which the canonical
// countStalePagesForExtraction predicate counts as stale-for-extraction.
await engine.putPage('p0', {
title: 'p0',
type: 'note' as never,
compiled_truth: 'body that is long enough to pass any minimum-length guards in the codebase',
timeline: '',
frontmatter: {},
source_path: 'p0.md',
});
const ctx = await loadRecommendationContext(engine);
expect(ctx.extractionLagPages).toBeGreaterThan(0);
});
it('counts pages stamped before LINK_EXTRACTOR_VERSION_TS (version-bump arm)', async () => {
// Backdate p0 so BOTH the NULL arm and the updated_at arm are quiet:
// updated_at < links_extracted_at, but links_extracted_at predates the
// extractor version stamp. doctor's links_extraction_lag and
// `extract --stale` both count this page; the remediation gate must too.
await engine.executeRaw(
`UPDATE pages SET updated_at = '2020-01-01T00:00:00Z'::timestamptz,
links_extracted_at = '2020-01-02T00:00:00Z'::timestamptz
WHERE slug = 'p0'`,
[],
);
const ctx = await loadRecommendationContext(engine);
expect(ctx.extractionLagPages).toBeGreaterThan(0);
});
});
@@ -0,0 +1,81 @@
// test/remediation-run-d7-refresh.serial.test.ts
//
// Pins the D7-recheck half of the extraction-lag gate fix: runRemediation
// loads RecommendationContext ONCE before the step loop, and the per-step
// recheck (D7) must REFRESH ctx.extractionLagPages alongside getHealth.
// Without the refresh, a completed sync/extract step keeps re-firing off
// the frozen initial count — the plan never converges and the loop burns
// steps until maxJobs.
//
// SERIAL (R2): uses top-level mock.module for the minion queue +
// wait-for-completion so no real worker is needed — mocks leak across
// files in a shard process, so this file must run in its own process.
import { describe, expect, mock, test } from 'bun:test';
// The fake brain: sync.repo clears the extraction lag when it "runs"
// (today's sync materializes link/timeline edges; extract.all is the
// explicit re-materializer). The frozen-ctx bug makes runRemediation
// ignore that and resubmit sync.repo on every D7 recheck.
let extractionLag = 25;
const submittedJobs: string[] = [];
mock.module('../src/core/minions/queue.ts', () => ({
MinionQueue: class {
constructor(_engine: unknown) {}
async add(job: string): Promise<{ id: number }> {
submittedJobs.push(job);
if (job === 'sync' || job === 'extract') extractionLag = 0;
return { id: submittedJobs.length };
}
},
}));
mock.module('../src/core/minions/wait-for-completion.ts', () => ({
waitForCompletion: async () => ({ status: 'completed' }),
}));
const health = () => ({
page_count: 100,
embed_coverage: 1.0,
stale_pages: 0, // legacy proxy stays 0 — the real counter drives the gate
orphan_pages: 0,
missing_embeddings: 0,
brain_score: 70,
dead_links: 0,
link_coverage: 1.0,
timeline_coverage: 1.0,
most_connected: [],
embed_coverage_score: 35,
link_density_score: 25,
timeline_coverage_score: 15,
no_orphans_score: 15,
no_dead_links_score: 10,
});
const fakeEngine = {
kind: 'pglite' as const,
getHealth: async () => health(),
getConfig: async (key: string) =>
key === 'sync.repo_path' ? '/tmp/brain-example' : null,
countStalePagesForExtraction: async () => extractionLag,
};
describe('runRemediation D7 recheck — extraction-lag gate refresh', () => {
test('a completed materializer step clears the gate; the pipeline is not resubmitted', async () => {
const { runRemediation } = await import('../src/core/remediation/run.ts');
const result = await runRemediation(
// Only the methods the orchestrator touches are needed.
fakeEngine as never,
{ targetScore: 0, maxJobs: 6 },
);
// Frozen-ctx bug: extractionLagPages stays 25 forever, so every D7
// recheck re-introduces the sync/extract pipeline and the loop burns
// all 6 maxJobs. With the refresh, the plan converges after the first
// completed step: no step id is ever submitted twice.
const ids = result.submitted.map((s) => s.id);
expect(new Set(ids).size).toBe(ids.length);
expect(submittedJobs.length).toBeLessThan(3);
expect(extractionLag).toBe(0);
});
});