Two cures from the pair's first production adoption, both measured live.
THE READ GATE IS PER-FAMILY. The report-driven gate refused on ANY
provider's not-ready verdict at every read choke point — so a pure
metadata find({ where }) was refused because the VECTOR leg was not
serving, and a deployment's badge reads returned errors for a verdict that
had nothing to do with them. A read may only be refused by the family it
actually consults: metadata reads by the metadata leg (plus graph for a
`connected` filter), vector search by the vector leg, traversal by the
graph leg. Callers name what they need; the existing narration-once-per-
generation and typed-refusal laws are unchanged within a family.
NO RE-EMBED ON UNCHANGED DATA. update() — and its transact() planner —
treated any write that carried `data` as a data change: with
deferEmbedding it queued a landing, and the worker re-embedded and re-landed
a vector for content that had not changed. A host heartbeat re-writing an
unchanged row every few seconds therefore fed a live index-row loop on a
production store. A write carrying the row's current data (structural
compare, key order normalized) is now not a data change: no re-embed, no
deferred landing, no vector rewrite; the metadata write itself still
commits. A real change re-embeds exactly as before.
Pinned in tests/integration/read-gate-scope-and-no-reembed.test.ts — both
pins red-proved against the unfixed code with the production shapes
verbatim. Two health-gate pins that encoded the old brain-global scope are
re-pointed to the family their reads consult.
355 lines
13 KiB
TypeScript
355 lines
13 KiB
TypeScript
/**
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* @module tests/integration/health-gate
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* @description Pins for the health-by-accounting read gate: the read gate stops
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* consulting an unnamed `isReady()` boolean and reads a NAMED, sync, O(1)
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* {@link HealthReport}; no read path may ever start a store walk; the open path
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* brings every provider to serving before it returns; an explicit operator door
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* (`repairIndex({ rebuild: [...] })`) rebuilds a named leg unconditionally.
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*
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* Providers here are white-box test doubles: a `healthReport()` (or, for the
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* interim-path pins, an `isReady()`) function assigned directly onto the LIVE
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* JS provider object, the same pattern `tests/unit/validate-invariants-delegation.test.ts`
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* uses for `validateInvariants`. This exercises brainy's real gate/verify code
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* against a controlled provider self-report — no engine mocks.
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*/
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import { describe, it, expect, afterEach, vi } from 'vitest'
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import { mkdtempSync, rmSync } from 'node:fs'
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import { tmpdir } from 'node:os'
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import { join } from 'node:path'
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import {
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Brainy,
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NounType,
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VerbType,
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GraphIndexNotReadyError,
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MetadataIndexNotReadyError,
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VectorIndexNotReadyError
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} from '../../src/index.js'
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import type { HealthReport, LedgerInvariantResult } from '../../src/plugin.js'
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import { prodLog } from '../../src/utils/logger.js'
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import { createTestConfig } from '../helpers/test-factory.js'
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/** The white-box surface these pins drive on a live brain instance. */
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interface BrainInternals {
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storage: {
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getNoun(id: string): Promise<unknown>
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getNounMetadata(id: string): Promise<unknown>
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getNouns(options?: unknown): Promise<unknown>
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getVerbs(options?: unknown): Promise<unknown>
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}
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index: { healthReport?: () => HealthReport; isReady?: () => boolean; rebuild(): Promise<void> }
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metadataIndex: {
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healthReport?: () => HealthReport
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isReady?: () => boolean
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rebuild(): Promise<void>
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validateInvariants?: () => Promise<unknown>
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}
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graphIndex: {
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healthReport?: () => HealthReport
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isReady?: () => boolean
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rebuild(): Promise<void>
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validateInvariants?: () => Promise<unknown>
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}
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rebuildIndexesIfNeeded(force?: boolean): Promise<void>
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}
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function internalsOf(brain: Brainy): BrainInternals {
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return brain as unknown as BrainInternals
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}
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function invariant(overrides: Partial<LedgerInvariantResult> = {}): LedgerInvariantResult {
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return {
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name: 'manifest-residency',
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holds: true,
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detail: 'ok',
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heal: 'none',
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source: 'ledger',
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...overrides
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}
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}
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function healthReport(overrides: Partial<HealthReport> = {}): HealthReport {
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return {
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provider: 'vector',
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healthy: true,
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serving: true,
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invariants: [],
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checkedAt: Date.now(),
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durationMs: 1,
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generation: 1,
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unledgered: [],
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...overrides
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}
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}
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const brains: Brainy[] = []
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const dirs: string[] = []
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afterEach(async () => {
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for (const b of brains.splice(0)) await b.close().catch(() => {})
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for (const d of dirs.splice(0)) rmSync(d, { recursive: true, force: true })
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vi.restoreAllMocks()
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})
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describe('health gate (a) — not-serving refuses loudly, ZERO canonical reads during the refusal', () => {
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it('metadata not-serving: find() throws MetadataIndexNotReadyError naming the failing invariant', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'row', type: NounType.Document, metadata: { team: 'atlas' } })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.metadataIndex.healthReport = () =>
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healthReport({
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provider: 'metadata',
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serving: false,
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healthy: false,
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invariants: [invariant({ name: 'posted-count-floor', holds: false, heal: 'rebuild', detail: 'posted 2 < canonical 5' })]
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})
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const getNounSpy = vi.spyOn(internals.storage, 'getNoun')
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const getNounMetadataSpy = vi.spyOn(internals.storage, 'getNounMetadata')
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const getNounsSpy = vi.spyOn(internals.storage, 'getNouns')
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await expect(brain.find({ where: { team: 'atlas' } })).rejects.toBeInstanceOf(MetadataIndexNotReadyError)
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await expect(brain.find({ where: { team: 'atlas' } })).rejects.toThrow(/posted-count-floor/)
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expect(getNounSpy).not.toHaveBeenCalled()
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expect(getNounMetadataSpy).not.toHaveBeenCalled()
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expect(getNounsSpy).not.toHaveBeenCalled()
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delete internals.metadataIndex.healthReport
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})
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it('graph not-serving: related() throws GraphIndexNotReadyError naming the failing invariant, no canonical reads', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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const a = await brain.add({ data: 'a', type: NounType.Person })
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const b = await brain.add({ data: 'b', type: NounType.Person })
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await brain.relate({ from: a, to: b, type: VerbType.Knows })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.graphIndex.healthReport = () =>
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healthReport({
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provider: 'graph',
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serving: false,
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healthy: false,
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invariants: [invariant({ name: 'adjacency-residency', holds: false, heal: 'rebuild', detail: 'edges not loaded' })]
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})
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const getNounSpy = vi.spyOn(internals.storage, 'getNoun')
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const getVerbsSpy = vi.spyOn(internals.storage, 'getVerbs')
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await expect(brain.related({ from: a })).rejects.toBeInstanceOf(GraphIndexNotReadyError)
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await expect(brain.related({ from: a })).rejects.toThrow(/adjacency-residency/)
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expect(getNounSpy).not.toHaveBeenCalled()
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expect(getVerbsSpy).not.toHaveBeenCalled()
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delete internals.graphIndex.healthReport
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})
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})
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describe('health gate (b) — unledgered is unknown: never blocks a serving provider', () => {
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it('serving:true with an unledgered family and no failing invariant serves normally; at most one narration', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'row', type: NounType.Document, metadata: { team: 'atlas' } })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.metadataIndex.healthReport = () =>
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healthReport({
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provider: 'metadata',
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serving: true,
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healthy: true,
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invariants: [],
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unledgered: ['canonical-verb-coverage']
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})
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const warnSpy = vi.spyOn(prodLog, 'warn')
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const r1 = await brain.find({ where: { team: 'atlas' } })
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const r2 = await brain.find({ where: { team: 'atlas' } })
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expect(r1.length).toBe(1)
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expect(r2.length).toBe(1)
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const narrations = warnSpy.mock.calls.filter(
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([msg]) => typeof msg === 'string' && msg.includes('canonical-verb-coverage')
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)
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expect(narrations.length).toBe(1) // one narration at most across both reads (same generation)
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delete internals.metadataIndex.healthReport
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})
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})
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describe('health gate (c) — degraded-but-serving narrates once per generation', () => {
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// PER-FAMILY LAW (10.4.1): a metadata find() consults the METADATA leg only — the
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// degraded report lives on the family the read actually consults.
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it('a heal:"repair" failure serves; narrates once per generation, twice across a generation bump', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'row', type: NounType.Document, metadata: { team: 'atlas' } })
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await brain.flush()
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const internals = internalsOf(brain)
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let generation = 1
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internals.metadataIndex.healthReport = () =>
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healthReport({
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provider: 'vector',
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serving: true,
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healthy: false,
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invariants: [invariant({ name: 'stale-vector-counter', holds: false, heal: 'repair', detail: 'counter drift' })],
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generation
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})
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const warnSpy = vi.spyOn(prodLog, 'warn')
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const countNarrations = () =>
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warnSpy.mock.calls.filter(([msg]) => typeof msg === 'string' && msg.includes('stale-vector-counter')).length
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await expect(brain.find({ where: { team: 'atlas' } })).resolves.toHaveLength(1)
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await expect(brain.find({ where: { team: 'atlas' } })).resolves.toHaveLength(1)
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expect(countNarrations()).toBe(1) // same generation both times — one narration
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generation = 2
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await expect(brain.find({ where: { team: 'atlas' } })).resolves.toHaveLength(1)
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expect(countNarrations()).toBe(2) // generation bumped — a second narration
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delete internals.metadataIndex.healthReport
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})
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})
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describe('health gate (d) — interim isReady()-only path (no healthReport) is unchanged', () => {
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it('isReady() === true serves; isReady() === false refuses via the typed NotReady error', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'row', type: NounType.Document, metadata: { team: 'atlas' } })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.metadataIndex.isReady = () => true
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await expect(brain.find({ where: { team: 'atlas' } })).resolves.toHaveLength(1)
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internals.metadataIndex.isReady = () => false
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await expect(brain.find({ where: { team: 'atlas' } })).rejects.toBeInstanceOf(MetadataIndexNotReadyError)
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delete internals.metadataIndex.isReady
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})
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})
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describe('health gate (e) — open builds; the first read never does', () => {
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it('disableAutoRebuild:true on a populated store: open narrates + builds; the first find() triggers zero rebuilds', async () => {
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const dir = mkdtempSync(join(tmpdir(), 'brainy-healthgate-open-'))
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dirs.push(dir)
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const writer = new Brainy({
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storage: { type: 'filesystem', path: dir },
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requireSubtype: false,
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silent: true,
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disableAutoRebuild: true
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})
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await writer.init()
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brains.push(writer)
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await writer.add({ data: 'row one', type: NounType.Document, metadata: { team: 'atlas' } })
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await writer.flush()
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await brains.pop()!.close()
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const warnSpy = vi.spyOn(prodLog, 'warn')
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const reader = new Brainy({
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storage: { type: 'filesystem', path: dir },
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requireSubtype: false,
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silent: true,
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disableAutoRebuild: true
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})
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const internals = internalsOf(reader)
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const rebuildSpy = vi.spyOn(internals, 'rebuildIndexesIfNeeded')
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await reader.init()
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brains.push(reader)
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expect(rebuildSpy).toHaveBeenCalledTimes(1) // open() built it, exactly once
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expect(
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warnSpy.mock.calls.some(
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([msg]) => typeof msg === 'string' && msg.includes('open() is building')
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)
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).toBe(true)
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rebuildSpy.mockClear()
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const rows = await reader.find({ where: { team: 'atlas' } })
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expect(rebuildSpy).toHaveBeenCalledTimes(0) // the read never builds
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expect(rows.length).toBe(1)
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}, 30000)
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})
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describe('health gate (f) — the ceremony door: explicit rebuild bypasses invariant consultation', () => {
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it("repairIndex({ rebuild: ['graph'] }) rebuilds unconditionally without consulting validateInvariants", async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'x', type: NounType.Concept })
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await brain.flush()
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const internals = internalsOf(brain)
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let validateCalls = 0
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internals.graphIndex.validateInvariants = async () => {
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validateCalls++
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return healthReport({ provider: 'graph' })
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}
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const rebuildSpy = vi.spyOn(internals.graphIndex, 'rebuild')
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const report = await brain.repairIndex({ rebuild: ['graph'] })
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expect(rebuildSpy).toHaveBeenCalledTimes(1)
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expect(validateCalls).toBe(0) // the door never consults validateInvariants to decide
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const graphFamily = report.families.find((f) => f.family === 'provider:graph')
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expect(graphFamily?.rebuilt).toBe(true)
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expect(graphFamily?.checked).toBe(true)
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expect(graphFamily?.reason).toBe('explicit rebuild requested')
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delete internals.graphIndex.validateInvariants
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})
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it('bare repairIndex() on a healthy provider calls no rebuild()', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'x', type: NounType.Concept })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.graphIndex.validateInvariants = async () => healthReport({ provider: 'graph', healthy: true, serving: true })
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const rebuildSpy = vi.spyOn(internals.graphIndex, 'rebuild')
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await brain.repairIndex()
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expect(rebuildSpy).not.toHaveBeenCalled()
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delete internals.graphIndex.validateInvariants
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})
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})
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describe('health gate (g) — a throwing healthReport() is a contract violation, never read as healthy', () => {
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// PER-FAMILY LAW (10.4.1): the throwing report sits on the family the read consults.
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it('healthReport() that throws refuses loudly with the typed NotReady error naming the throw', async () => {
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const brain = new Brainy(createTestConfig({ silent: true }))
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await brain.init()
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brains.push(brain)
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await brain.add({ data: 'row', type: NounType.Document, metadata: { team: 'atlas' } })
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await brain.flush()
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const internals = internalsOf(brain)
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internals.metadataIndex.healthReport = () => {
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throw new Error('accelerator: mmap window busy')
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}
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await expect(brain.find({ where: { team: 'atlas' } })).rejects.toBeInstanceOf(MetadataIndexNotReadyError)
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await expect(brain.find({ where: { team: 'atlas' } })).rejects.toThrow(/mmap window busy/)
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delete internals.metadataIndex.healthReport
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})
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})
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