THE DEFAULT FLIP (ruled on proven evidence — at-ack survived 301/301 acked-writes-through-power-cut in block-layer fault injection; deferred tree authority demonstrably loses flush-covered acks): a brain with NO stored authority artifact now ADOPTS LOG AUTHORITY AT OPEN. The oracle gates the flip exactly as the guarded adoption path always did — curable divergences baseline-backfilled, the flip lands ONLY on a green verdict — and a brain that cannot verify STAYS tree-authoritative loudly, with the refusal recorded on the switch artifact so subsequent opens are cheap. config logAuthority: 'defer' is the explicit documented opt-out (no automatic adoption; declared flush-window loss; adoptLogAuthority() flips later). A stored artifact always wins. RELEASES.md carries the posture. Two standing .fails debt pins FLIP TO HOLDING under the default: the at-ack crash-survival gap and the ack-at-log durability target — both now permanent asserted truths, not aspirations. POWER-CUT THROW SITES (fault-injection findings, brainy-alone config): - A manifest-listed-but-unloadable column segment QUARANTINES at discovery (loud once, counted always, quarantinedSegments() exposed for the heal) and the field serves its remaining segments DEGRADED — never a raw throw killing every query on the field. Real storage faults still propagate untouched. - Torn generation artifacts (NaN/garbage in manifest or counter) DISCARD with narration at the store's open and recovery re-derives — plus a defensive finite-integer guard at the init consumer. Never a RangeError killing an open. THE LOUD TORN-RECORD CONTRACT: an existing-but-unparseable stored record now surfaces as a typed, counted TornRecordError on every entity-read surface (including fifteen previously-blind per-item batch catches); ENOENT stays clean-absent; artifact readers with designed absent-recovery keep null-tolerance behind the loud floor. Disk corruption can no longer read as silent data invisibility. Suite migration: the default's pins inverted deliberately, generation baselines made relative, quarantine-contract pins rewritten to the ruled behavior. Gates: tsc 0 · unit 2065/2065 (159 files) · integration 826 (93 files) · conformance 31/31 · kill-matrix 15/15 · torn-open guards 2/2.
399 lines
19 KiB
TypeScript
399 lines
19 KiB
TypeScript
/**
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* @module tests/integration/log-authority
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* @description The guarded log-authority core, end-to-end: the per-brain
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* authority switch (stored artifact, checked at open only), the
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* verification oracle (replay the fact log, diff latest per-id state
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* against the canonical tree, NAME every divergence by class), the guarded
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* flip (refuses on red with the cure in the message; lands on green and
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* engages durable-at-ack immediately), and the switch surviving reopen.
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*
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* THE 10.0.0 FLEET DEFAULT is ADOPT-AT-OPEN (`logAuthority: 'adopt'`): a
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* fresh brain with no stored artifact runs the oracle at open, backfills
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* curable divergences, and flips to log authority on green — so a
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* default-config brain opens ALREADY log-authoritative and durable-at-ack.
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* The first two pins hold that default and its explicit opt-out
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* (`logAuthority: 'defer'`, the pre-10 tree behavior). Every test below
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* them that exercises the ORACLE or the EXPLICIT flip opens its brain with
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* `'defer'` — otherwise the open-time adoption would have pre-flipped the
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* brain and pre-cured the very divergences under test.
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*
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* KNOWN GAPS PINNED WITH `.fails` (real findings, not test bugs — see the
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* comments on each): a fresh brain is NOT log-complete by construction
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* today, because the VFS root is written at init as a baseline
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* (generation-less) write that never gets a fact, so the oracle reports it
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* as a `pre-log-record`. The open-time adoption (and adoptLogAuthority())
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* CURES this by baseline backfill — a re-commit, not construction — so the
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* by-construction pin stays `.fails` on a deferred brain. Tests that need
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* a green oracle on a deferred brain perform that backfill explicitly (an
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* identity update of the root as the FINAL write — final, because
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* derived-index maintenance rewrites canonical noun records outside
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* generations, so an earlier fact's after-image goes stale; see the module
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* tail comment on `backfillBaseline`).
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*/
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import { describe, it, expect, afterEach } 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 { Brainy } from '../../src/index.js'
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import type { OracleReport } from '../../src/db/logAuthority.js'
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/** The VFS root — created at init by a baseline (generation-less) write. */
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const VFS_ROOT = '00000000-0000-0000-0000-000000000000'
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const AUTHORITY_ARTIFACT = '_system/log-authority.json'
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/** White-box view of the internals this suite instruments (read-only spies
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* plus the sanctioned direct-storage writes for aging/drifting a brain). */
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type BrainInternals = {
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generationStore: {
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getFactLog(): { ensureSynced(): Promise<void> } | null
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logDurability: 'deferred' | 'at-ack'
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}
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storage: {
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readRawObject(path: string): Promise<unknown | null>
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saveNoun(n: unknown): Promise<void>
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saveNounMetadata(id: string, m: Record<string, unknown>): Promise<void>
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getNounMetadata(id: string): Promise<Record<string, unknown> | null>
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writeNounRaw(id: string, r: { metadata: null; vector: null }): Promise<void>
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}
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}
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const internals = (brain: Brainy): BrainInternals =>
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brain as unknown as BrainInternals
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/** Count calls to the fact log's ensureSynced without changing behavior. */
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function spyEnsureSynced(brain: Brainy): { calls: () => number } {
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const factLog = internals(brain).generationStore.getFactLog()
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expect(factLog, 'filesystem storage hosts a fact log').not.toBeNull()
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let calls = 0
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const original = factLog!.ensureSynced.bind(factLog)
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factLog!.ensureSynced = async () => {
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calls++
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return original()
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}
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return { calls: () => calls }
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}
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/**
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* The minimal baseline backfill: an identity update of the VFS root, so the
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* one canonical record the log never saw (the init-time baseline write) gets
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* a fact carrying its current state. MUST be the final write of the setup —
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* derived-index maintenance (HNSW/enumeration denormalization) rewrites the
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* root's canonical noun record outside any generation, so a root fact taken
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* before later writes digests stale and reports `state-differs`.
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*/
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async function backfillBaseline(brain: Brainy): Promise<void> {
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const root = await brain.get(VFS_ROOT)
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expect(root, 'the VFS root exists on a fresh brain').toBeTruthy()
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await brain.update({ id: VFS_ROOT, metadata: root!.metadata })
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}
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/** Seed a brain with the standard write mix: 2 adds, an update, a remove. */
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async function seedWrites(brain: Brainy): Promise<{ kept: string; removed: string }> {
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const kept = await brain.add({ data: 'alpha document', type: 'document', metadata: { n: 1 } })
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const removed = await brain.add({ data: 'beta document', type: 'document', metadata: { n: 2 } })
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await brain.update({ id: kept, metadata: { n: 10 } })
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await brain.remove(removed)
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return { kept, removed }
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}
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describe('log authority — the switch, the oracle, the guarded flip', () => {
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const dirs: string[] = []
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const brains: Brainy[] = []
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/**
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* Open a brain over `dir`. Omit `logAuthority` to exercise the FLEET
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* DEFAULT (adopt-at-open); pass `'defer'` for the tests that need a
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* tree-authoritative brain so the oracle/explicit-flip path is actually
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* the thing under test (the default would pre-flip and pre-backfill).
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*/
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const openBrain = async (
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dir?: string,
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logAuthority?: 'adopt' | 'defer'
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): Promise<{ brain: Brainy; dir: string }> => {
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const d = dir ?? mkdtempSync(join(tmpdir(), 'brainy-log-authority-'))
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if (!dir) dirs.push(d)
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const brain = new Brainy({
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storage: { type: 'filesystem', path: d },
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requireSubtype: false,
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silent: true,
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dimensions: 384,
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...(logAuthority ? { logAuthority } : {})
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})
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brains.push(brain)
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await brain.init()
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return { brain, dir: d }
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}
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afterEach(async () => {
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for (const b of brains.splice(0)) {
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await (b as unknown as { close?: () => Promise<void> }).close?.().catch(() => {})
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}
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for (const d of dirs.splice(0)) rmSync(d, { recursive: true, force: true })
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})
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// THE RULED DEFAULT (10.0.0): with no config and no stored artifact, a
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// fresh brain ADOPTS log authority at open — oracle green (the open-time
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// baseline backfill cures the generation-0 VFS root), artifact on disk,
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// durable-at-ack live from the first write.
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it('DEFAULT IS ADOPT-AT-OPEN: a fresh brain opens already log-authoritative — artifact stored, plain acks await the covering log fsync', async () => {
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const { brain } = await openBrain() // no logAuthority config = the fleet default
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const authority = brain.logAuthority()
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expect(authority.authority).toBe('log')
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expect(typeof authority.flippedAt).toBe('number')
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expect(authority.oracle, 'the open-time flip records its green oracle summary').toBeDefined()
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const artifact = (await internals(brain)
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.storage.readRawObject(AUTHORITY_ARTIFACT)
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.catch(() => null)) as { authority?: string } | null
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expect(artifact, 'the adoption wrote the switch artifact').not.toBeNull()
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expect(artifact!.authority).toBe('log')
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// The MODE assertion (not a timing one): in log authority a single-op
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// ack awaits the log's covering-fsync path.
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expect(internals(brain).generationStore.logDurability).toBe('at-ack')
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const spy = spyEnsureSynced(brain)
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await brain.add({ data: 'log mode write', type: 'document', metadata: { n: 1 } })
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expect(spy.calls(), 'adopted default: add() awaits the covering fsync').toBeGreaterThanOrEqual(1)
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})
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// THE EXPLICIT OPT-OUT: `logAuthority: 'defer'` is the pre-10 behavior —
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// tree authority, NO artifact written (a deferred posture is config, not
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// stored state), and single-op acks never await a log fsync.
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it("OPT-OUT ('defer'): the brain stays tree-authoritative, stores no artifact, and plain acks never await a log fsync", async () => {
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const { brain } = await openBrain(undefined, 'defer')
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expect(brain.logAuthority().authority).toBe('tree')
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expect(brain.logAuthority().flippedAt).toBeUndefined()
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const artifact = await internals(brain)
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.storage.readRawObject(AUTHORITY_ARTIFACT)
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.catch(() => null)
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expect(artifact, "'defer' writes no switch artifact").toBeNull()
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// The MODE assertion (not a timing one): in tree authority a single-op
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// ack must never call the log's covering-fsync path.
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const spy = spyEnsureSynced(brain)
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await brain.add({ data: 'tree mode write', type: 'document', metadata: { n: 1 } })
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expect(spy.calls(), 'tree mode: add() does not call ensureSynced').toBe(0)
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expect(internals(brain).generationStore.logDurability).toBe('deferred')
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})
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// KNOWN GAP (marked .fails — remove the marker when fixed in src): the
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// intended contract is that a fresh brain is log-complete by construction,
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// because every write dual-writes a fact. Today the VFS root
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// (00000000-0000-0000-0000-000000000000) is created at init by a baseline
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// write with NO generation and NO fact, yet it is enumerated by the
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// canonical walk — so the oracle on a fresh brain is red with exactly one
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// `pre-log-record` mismatch on the root. The adopt-at-open default (and
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// adoptLogAuthority()) CURES this by baseline backfill — a re-commit,
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// which is why this pin opens with 'defer': it holds the BY-CONSTRUCTION
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// intent, which the backfill masks but does not deliver.
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it.fails('ORACLE INTENT: a fresh brain is log-complete by construction — verdict green with zero mismatches', async () => {
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const { brain } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await brain.flush()
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const report = await brain.verifyLogAuthority()
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expect(report.verdict).toBe('green')
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expect(report.mismatches).toEqual([])
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})
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it('a fresh, un-backfilled brain diverges ONLY on the init-time baseline record — every user write is exactly reproduced', async () => {
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// 'defer': the adopt-at-open default would have backfilled the baseline
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// already — this pin needs the brain genuinely un-backfilled.
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const { brain } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await brain.flush()
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const report = await brain.verifyLogAuthority()
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// Tolerant pin (stays true after the baseline gap is fixed in src):
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// whatever the verdict, no USER record may ever diverge — the only
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// admissible mismatch is the init-time baseline root, as pre-log-record.
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expect(
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report.mismatches.every(
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(m) => m.id === VFS_ROOT && m.reason === 'pre-log-record' && m.kind === 'noun'
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),
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'the only divergence on a fresh brain is the baseline root record'
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).toBe(true)
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expect(report.matched).toBe(report.nounsChecked - report.mismatches.length)
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expect(report.mismatchListTruncated).toBe(false)
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})
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it('THE ORACLE GOES GREEN on a log-complete brain: adds + update + remove, every canonical row exactly reproduced', async () => {
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// 'defer' + manual backfill: the exact-count pins below (5 generations)
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// depend on the log holding ONLY this test's writes — the adopt-at-open
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// default would inject its own backfill generation at init.
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const { brain } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await backfillBaseline(brain) // final write — see the helper's contract
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await brain.flush()
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const report = await brain.verifyLogAuthority()
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expect(report.verdict).toBe('green')
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expect(report.mismatches).toEqual([])
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expect(report.mismatchListTruncated).toBe(false)
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// Live count: the kept document + the VFS root (the removed one is a
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// tombstone in the log and absent from canonical — checked, not counted).
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expect(report.nounsChecked).toBe(2)
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expect(report.matched).toBe(2)
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// 5 committed generations: add, add, update, remove, root backfill.
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expect(report.generationsScanned).toBe(5)
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})
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it('THE ORACLE NAMES pre-log records: a canonical row no fact ever recorded reports pre-log-record, by id', async () => {
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const { brain } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await backfillBaseline(brain)
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await brain.flush()
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expect((await brain.verifyLogAuthority()).verdict, 'sanity: green before aging').toBe('green')
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// Simulate an aged brain: write one canonical record DIRECTLY at the
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// storage layer (the write path never sees it, so no fact exists) —
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// the pre-log shape: flat metadata, no _fmt stamp, 384-dim vector.
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const legacyId = '00000000-0000-4000-8000-00000000a6ed'
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const storage = internals(brain).storage
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await storage.saveNoun({
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id: legacyId,
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vector: new Array(384).fill(0.01),
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connections: new Map(),
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level: 0
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})
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await storage.saveNounMetadata(legacyId, {
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noun: 'document',
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confidence: 0.75,
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createdAt: 1700000000000,
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updatedAt: 1700000000000,
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_rev: 1,
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legacyField: 'legacy-value'
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})
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const report = await brain.verifyLogAuthority()
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expect(report.verdict).toBe('red')
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expect(report.mismatches).toHaveLength(1)
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expect(report.mismatches[0]).toEqual({
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id: legacyId,
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kind: 'noun',
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reason: 'pre-log-record'
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})
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})
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it('THE FLIP REFUSES ON A LOG-AHEAD DIVERGENCE: the witness denies what the log claims — nothing written, nothing changed', async () => {
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// Contract update (adoptLogAuthority's baseline backfill): curable
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// divergences — pre-log records and witness drift — are re-committed
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// and the flip proceeds; ONLY log-AHEAD divergences (the log claims
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// state canonical denies) refuse, because no backfill can make the log
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// un-claim a live row. This test stages exactly that incurable shape.
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// 'defer': the brain must still be tree-authoritative (no artifact) so
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// the refusal's nothing-written pins below have meaning.
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const { brain } = await openBrain(undefined, 'defer')
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const { kept } = await seedWrites(brain)
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await backfillBaseline(brain)
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await brain.flush()
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// The log says `kept` is live; its canonical record vanishes behind the
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// write path's back (log-live-canonical-absent — the witness wins).
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const storage = internals(brain).storage
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await storage.writeNounRaw(kept, { metadata: null, vector: null })
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let error: Error | null = null
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try {
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await brain.adoptLogAuthority()
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} catch (err) {
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error = err as Error
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}
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expect(error, 'the flip rejects on a log-ahead divergence').not.toBeNull()
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expect(error!.message).toMatch(/witness denies/)
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expect(error!.message).toMatch(/log-live-canonical-absent/)
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// Nothing changed: authority still tree, no artifact, deferred durability.
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expect(brain.logAuthority().authority).toBe('tree')
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const artifact = await storage.readRawObject(AUTHORITY_ARTIFACT).catch(() => null)
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expect(artifact, 'a refused flip writes no artifact').toBeNull()
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expect(internals(brain).generationStore.logDurability).toBe('deferred')
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})
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it('THE FLIP LANDS ON GREEN: the report is the receipt, the artifact is on disk, and durable-at-ack engages immediately', async () => {
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// 'defer': this pin exercises the EXPLICIT flip — the adopt-at-open
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// default would have landed it before the test began.
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const { brain } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await backfillBaseline(brain)
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await brain.flush()
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const report: OracleReport = await brain.adoptLogAuthority()
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expect(report.verdict).toBe('green')
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const authority = brain.logAuthority()
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expect(authority.authority).toBe('log')
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expect(typeof authority.flippedAt).toBe('number')
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expect(authority.oracle).toBeDefined()
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expect(authority.oracle!.nounsChecked).toBe(report.nounsChecked)
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expect(authority.oracle!.generationsScanned).toBe(report.generationsScanned)
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const artifact = (await internals(brain)
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.storage.readRawObject(AUTHORITY_ARTIFACT)
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.catch(() => null)) as { authority?: string } | null
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expect(artifact, 'the switch artifact exists on disk').not.toBeNull()
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expect(artifact!.authority).toBe('log')
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// Durable-at-ack engaged in THIS session: the next single-op ack awaits
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// a covering log fsync.
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expect(internals(brain).generationStore.logDurability).toBe('at-ack')
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const spy = spyEnsureSynced(brain)
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await brain.add({ data: 'post-flip write', type: 'document', metadata: { n: 3 } })
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expect(spy.calls(), 'log mode: add() awaits the covering fsync').toBeGreaterThanOrEqual(1)
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})
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it('THE SWITCH SURVIVES REOPEN: authority restored at open with no re-verification, durable-at-ack active in the new session', async () => {
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const { brain, dir } = await openBrain(undefined, 'defer')
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await seedWrites(brain)
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await backfillBaseline(brain)
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await brain.flush()
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await brain.adoptLogAuthority()
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const flipReceipt = brain.logAuthority()
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await (brain as unknown as { close: () => Promise<void> }).close()
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// Reopen with 'defer' too: the restored authority below can then ONLY
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// come from the stored artifact (a stored artifact always wins; had the
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// default re-adopted, flippedAt/oracle would differ from the receipt).
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const { brain: reopened } = await openBrain(dir, 'defer')
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const restored = reopened.logAuthority()
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expect(restored.authority).toBe('log')
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// No re-verification happened at open: the restored record IS the stored
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// flip receipt, oracle summary and timestamp intact.
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expect(restored.flippedAt).toBe(flipReceipt.flippedAt)
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expect(restored.oracle).toEqual(flipReceipt.oracle)
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// Mode restored at open: an ack in the new session awaits the log fsync.
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expect(internals(reopened).generationStore.logDurability).toBe('at-ack')
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const spy = spyEnsureSynced(reopened)
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await reopened.add({ data: 'new session write', type: 'document', metadata: { n: 4 } })
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expect(spy.calls(), 'reopened log mode: add() awaits the covering fsync').toBeGreaterThanOrEqual(1)
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})
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it('STATE-DIFFERS: canonical drift the write path never saw is named, by id', async () => {
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const { brain } = await openBrain(undefined, 'defer')
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const { kept } = await seedWrites(brain)
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await backfillBaseline(brain)
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await brain.flush()
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expect((await brain.verifyLogAuthority()).verdict, 'sanity: green before drift').toBe('green')
|
|
|
|
// Drift one canonical metadata record DIRECTLY at the storage layer —
|
|
// the log never hears about it. This is the witness-drift case the
|
|
// oracle exists to catch.
|
|
const storage = internals(brain).storage
|
|
const current = await storage.getNounMetadata(kept)
|
|
expect(current, 'the seeded record has stored metadata').toBeTruthy()
|
|
await storage.saveNounMetadata(kept, { ...current!, driftedByTest: true })
|
|
|
|
const report = await brain.verifyLogAuthority()
|
|
expect(report.verdict).toBe('red')
|
|
expect(report.mismatches).toHaveLength(1)
|
|
expect(report.mismatches[0]).toEqual({
|
|
id: kept,
|
|
kind: 'noun',
|
|
reason: 'state-differs'
|
|
})
|
|
})
|
|
})
|