Two production-reported spine fixes: - Canonical delete is a FULL removal: remove()/removeMany() deleted the metadata leg but never the canonical vectors.json leg or the <id>/ directory, leaving ghost rows that inflated enumerated counts forever, read as damage scars, and caused duplicate readdir entries for re-created VFS paths (the stale-unpost path). The delete operation now routes through storage.deleteNoun — both legs + the entity container — with a full two-leg before-image rollback; deleteVerb symmetric; the blind 'no metadata file' catch that masked real faults is gone. The generation log still holds the delete's before-image, so asOf() history is unchanged. repairIndex() gains a conservative, loud orphan-prune sweep (containers with no metadata content leg) + count recompute for stores damaged by earlier versions. - Family-scoped migration gate: every read blocked on the whole-brain migration lock even when the migrating index was irrelevant. The gate now scopes to the index families a read actually consults — canonical reads never wait; find() waits only on its query shape's families; graph traversals wait only on the graph family. Writes keep the conservative whole-brain wait. A read that needs the migrating family still blocks (bounded) with the retryable MigrationInProgressError.
179 lines
7.3 KiB
TypeScript
179 lines
7.3 KiB
TypeScript
/**
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* Migration LOCK (#18) — coordinated, automatic 7.x → 8.0 auto-upgrade.
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*
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* Exercises the real block-and-queue behavior of `awaitMigrationLock` at the
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* `ensureInitialized` choke point. The gate is FAMILY-SCOPED: a write (which
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* touches every index) WAITS while ANY provider reports `isMigrating() === true`,
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* and a read WAITS only when the migrating provider is one of the index families
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* that read consults (so a read served from canonical storage or a healthy family
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* is never blocked by an unrelated family's migration — see
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* `tests/unit/brainy/migration-gate-family-scoped.test.ts`). Observability
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* (`getIndexStatus`, `health`) and the lock-clearing `stampBrainFormat` stay
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* exempt; a lock that outlives the configured window surfaces a retryable
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* `MigrationInProgressError`. Here the graph provider holds the lock, so the
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* read cases use a graph traversal (`related`) — the family that actually waits.
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*
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* A native (cortex) provider owns the real migration; here we simulate the lock
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* by feature-detect-injecting `isMigrating()` onto a live provider, exactly as
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* the production feature-detection reads it.
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*/
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import { describe, it, expect, beforeEach } from 'vitest'
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import { Brainy, NounType, MigrationInProgressError } from '../../src/index.js'
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import { GraphAdjacencyIndex } from '../../src/graph/graphAdjacencyIndex.js'
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/** Force the graph provider to hold (or release) the migration lock. */
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function setMigrating(brain: any, migrating: boolean): void {
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brain.graphIndex.isMigrating = () => migrating
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}
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describe('Migration LOCK (#18) — coordinated 7.x→8.0 auto-upgrade', () => {
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let brain: any
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beforeEach(async () => {
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brain = new Brainy({
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requireSubtype: false,
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storage: { type: 'memory' },
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migrationWaitTimeoutMs: 5000 // generous; timing tests clear well within it
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})
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await brain.init()
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})
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it('does not gate operations when no provider is migrating (fast path)', async () => {
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const id = await brain.add({ data: 'hello', type: NounType.Concept })
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expect(id).toBeTruthy()
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const status = await brain.getIndexStatus()
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expect(status.migrating).toBe(false)
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expect(status.migration).toBeUndefined()
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})
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it('getIndexStatus() reports migrating WITHOUT blocking (lock-exempt observability)', async () => {
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setMigrating(brain, true)
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const status = await brain.getIndexStatus() // must resolve, never hang
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expect(status.migrating).toBe(true)
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expect(status.migration).toBeDefined()
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expect(typeof status.migration.elapsedMs).toBe('number')
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})
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it('health() surfaces the migration as a warn check without blocking', async () => {
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setMigrating(brain, true)
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const h = await brain.health() // lock-exempt
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expect(h.overall).toBe('warn')
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expect(h.checks.some((c: any) => c.name === 'migration')).toBe(true)
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})
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it('checkHealth() answers during a migration (lock-exempt diagnostics)', async () => {
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setMigrating(brain, true)
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const r = await brain.checkHealth()
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expect(r).toHaveProperty('healthy')
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})
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it('blocks a write while migrating (poll path), then completes when the lock clears', async () => {
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setMigrating(brain, true)
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let resolved = false
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const p = brain
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.add({ data: 'queued write', type: NounType.Concept })
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.then((id: string) => {
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resolved = true
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return id
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})
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// Still blocked shortly after issue.
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await new Promise((r) => setTimeout(r, 40))
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expect(resolved).toBe(false)
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// Clearing the lock releases the queued write against the good indexes.
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setMigrating(brain, false)
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const id = await p
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expect(resolved).toBe(true)
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expect(id).toBeTruthy()
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})
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it('blocks a graph read while the graph provider migrates, then releases when the flag clears (poll path)', async () => {
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const anchor = await brain.add({ data: 'anchor', type: NounType.Concept })
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let migrating = true
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brain.graphIndex.isMigrating = () => migrating
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const p = brain.related({ from: anchor }) // a GRAPH read → gated on the graph migration
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let resolved = false
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p.then(() => {
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resolved = true
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})
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await new Promise((r) => setTimeout(r, 40))
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expect(resolved).toBe(false)
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// Clearing the flag lets the next poll release the read against good indexes.
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migrating = false
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await expect(p).resolves.toEqual([])
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})
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it('throws a retryable MigrationInProgressError when the lock outlives the timeout', async () => {
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const shortBrain: any = new Brainy({
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requireSubtype: false,
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storage: { type: 'memory' },
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migrationWaitTimeoutMs: 120
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})
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await shortBrain.init()
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const anchor = await shortBrain.add({ data: 'anchor', type: NounType.Concept })
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setMigrating(shortBrain, true) // graph lock never clears
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// A graph read needs the migrating family → it waits out the window and
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// surfaces the retryable error rather than serving a half-built traversal.
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await expect(shortBrain.related({ from: anchor })).rejects.toBeInstanceOf(
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MigrationInProgressError
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)
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try {
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await shortBrain.add({ data: 'x', type: NounType.Concept })
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throw new Error('expected MigrationInProgressError')
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} catch (e: any) {
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expect(e).toBeInstanceOf(MigrationInProgressError)
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expect(e.retryable).toBe(true)
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expect(typeof e.elapsedMs).toBe('number')
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}
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})
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it('stampBrainFormat() is NOT gated — cor clears the lock through it (no deadlock)', async () => {
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setMigrating(brain, true)
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// Must resolve, not hang, even while a migration is "in progress".
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await expect(brain.stampBrainFormat()).resolves.toBeUndefined()
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})
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it('close() is NOT gated — an instance can shut down mid-migration', async () => {
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setMigrating(brain, true)
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await expect(brain.close()).resolves.toBeUndefined()
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})
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it('C1: init() waits out a migration BEFORE VFS bootstrap (no deadlock, no failure)', async () => {
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// The critical regression: init()'s own VFS bootstrap (get/add/find on the
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// root) routes through the gated ensureInitialized. If a provider migrates
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// during init, init must WAIT for the lock to clear BEFORE bootstrapping VFS —
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// otherwise it deadlocks (< timeout) or throws MigrationInProgressError past
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// the timeout. We make the graph provider report migrating for a short window
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// spanning init, then clear it, and assert init completes and the brain works.
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const orig = (GraphAdjacencyIndex.prototype as any).isMigrating
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let migrating = true
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;(GraphAdjacencyIndex.prototype as any).isMigrating = () => migrating
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const clearMigration = setTimeout(() => {
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migrating = false
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}, 60)
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try {
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const b: any = new Brainy({
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requireSubtype: false,
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storage: { type: 'memory' },
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migrationWaitTimeoutMs: 5000
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})
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await b.init() // must resolve once the migration clears — not hang, not throw
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expect(b.isInitialized).toBe(true)
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// VFS bootstrapped post-migration → normal write/read work end-to-end.
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const id = await b.add({ data: 'after upgrade', type: NounType.Concept })
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expect(id).toBeTruthy()
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expect(await b.get(id)).not.toBeNull()
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await b.close()
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} finally {
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clearTimeout(clearMigration)
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if (orig) (GraphAdjacencyIndex.prototype as any).isMigrating = orig
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else delete (GraphAdjacencyIndex.prototype as any).isMigrating
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}
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})
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})
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