feat: stable EntityIdMapper — rebuild() no longer renumbers UUID→int
Previously metadataIndex.rebuild() called idMapper.clear() which reset nextId to 1 and renumbered every UUID by re-insertion order. Any consumer that had persisted int-keyed data against the old map was silently invalidated — and 2.4.0's vector mmap store (#20), graph link compression (#21), and column-store JS↔native interchange all need persisted int indices that survive a rebuild. Remove the unconditional clear() in rebuild(). The rebuild already re-iterates every entity via idMapper.getOrAssign(uuid), which returns the existing int unchanged for known UUIDs. Stale UUID→int entries for entities no longer in storage persist as harmless memory overhead; a dedicated prune step can be added if it ever matters. clearAllIndexData() — the explicit nuclear recovery path — keeps its existing idMapper.clear() call (renumbering is intentional there), and now logs a prodLog.warn making it explicit that any persisted int-keyed data is invalidated and must be rebuilt from canonical sources. Strengthened the EntityIdMapper class JSDoc to document the stability guarantee as a contract — append-only getOrAssign, monotonic nextId, remove() leaves permanent holes, rebuild() never renumbers, only clear() does. Added tests/regression/entity-id-mapper-stability.test.ts pinning down the five-point contract: (1) single-rebuild stability; (2) many-rebuild stability; (3) post-rebuild adds get fresh monotonic ints; (4) removes leave permanent holes — new entities never recycle; (5) clearAllIndexData() explicitly renumbers (the documented destructive path). Foundation for 2.4.0 #2-#4. Full test suite (62 files, 1417 tests) green.
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3 changed files with 209 additions and 10 deletions
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@ -1,14 +1,34 @@
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/**
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* EntityIdMapper - Bidirectional mapping between UUID strings and integer IDs for roaring bitmaps
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* EntityIdMapper - Bidirectional mapping between UUID strings and integer IDs.
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*
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* Roaring bitmaps require 32-bit unsigned integers, but Brainy uses UUID strings as entity IDs.
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* This class provides efficient bidirectional mapping with persistence support.
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* Roaring bitmaps require 32-bit unsigned integers, but Brainy uses UUID strings
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* as canonical entity IDs. This class provides efficient O(1) bidirectional
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* mapping with persistence — and, importantly, a stability guarantee that any
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* persisted int-keyed data can rely on.
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*
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* **Stability guarantee (the foundation 2.4.0 vector-mmap, graph-link-compression,
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* and column-store interchange all key off):**
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*
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* - `getOrAssign(uuid)` is **append-only**: once a UUID is assigned an int, the
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* mapping never changes. Subsequent `getOrAssign` calls for the same UUID
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* return the same int.
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* - `nextId` is **monotonically increasing**. New UUIDs always get an int greater
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* than any previously assigned, so a removed-then-re-added UUID is treated as
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* a fresh entity (and gets a fresh int — there is no automatic "revive").
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* - `remove(uuid)` removes the mapping but does **not** decrement `nextId` or
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* recycle the int. The removed int becomes a permanent hole in `intToUuid` —
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* downstream consumers seeing `getUuid(int) === undefined` know the entity
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* was deleted.
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* - A metadata-index `rebuild()` does **not** clear the mapper (the rebuild path
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* re-iterates entities via `getOrAssign`, which returns existing ints unchanged).
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* Only the explicit `clear()` method renumbers — used by `clearAllIndexData()`
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* as the nuclear recovery path with a documented warning.
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*
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* Features:
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* - O(1) lookup in both directions
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* - Persistent storage via storage adapter
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* - Atomic counter for next ID
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* - Serialization/deserialization support
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* - O(1) lookup in both directions.
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* - Persistent storage via storage adapter.
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* - Atomic, monotonic, append-only int counter.
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* - Serialization/deserialization support.
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*
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* @module utils/entityIdMapper
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*/
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@ -2635,13 +2635,20 @@ export class MetadataIndexManager implements MetadataIndexProvider {
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this.verbCountsByTypeFixed.fill(0)
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this.typeFieldAffinity.clear()
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// Clear EntityIdMapper
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// Clear EntityIdMapper. This is the explicit destructive path: the caller
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// asked for nuclear recovery of a corrupted index, so renumbering UUIDs is
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// intentional. Persisted int-keyed data (vector-mmap slots, graph
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// link-compression encodings) is invalidated by this op — the warning
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// below makes that explicit. Rebuild on its own does NOT clear the mapper.
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await this.idMapper.clear()
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// Clear chunk manager cache
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this.chunkManager.clearCache()
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prodLog.info(`✅ Cleared ${deletedCount} field indexes and all in-memory state`)
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prodLog.warn('⚠️ EntityIdMapper was cleared — any persisted int-keyed data ' +
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'(vector mmap slots, graph link-compression encodings, etc.) is now stale ' +
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'and must be rebuilt from canonical sources.')
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prodLog.info('⚠️ Run brain.index.rebuild() to recreate the index from entity data')
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}
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@ -3032,8 +3039,19 @@ export class MetadataIndexManager implements MetadataIndexProvider {
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prodLog.info(`Cleared ${existingFields.length} field indexes from storage`)
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}
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// Clear EntityIdMapper to start fresh
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await this.idMapper.clear()
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// EntityIdMapper is intentionally NOT cleared here. Rebuild re-iterates
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// every entity in storage and calls idMapper.getOrAssign(uuid), which
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// returns the existing int for known UUIDs (no renumbering). This is the
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// foundational stability guarantee — vector-mmap slot indices, graph
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// link-compression encodings, and any other persisted int-keyed data
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// remain valid across a rebuild. Previously this line reset nextId to 1
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// and renumbered every UUID by re-insertion order, silently breaking
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// any consumer that had persisted int-keyed data against the old map.
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// Stale entries for UUIDs no longer in storage persist (harmless memory
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// overhead); a dedicated prune step can be added if it ever matters.
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// The destructive wipe is still available via clearAllIndexData() →
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// idMapper.clear(), which is the explicit "recovery" path with the
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// appropriate warning about invalidating persisted int-keyed data.
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// Clear chunk manager cache
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this.chunkManager.clearCache()
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161
tests/regression/entity-id-mapper-stability.test.ts
Normal file
161
tests/regression/entity-id-mapper-stability.test.ts
Normal file
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@ -0,0 +1,161 @@
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/**
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* Regression test: EntityIdMapper stability across rebuild.
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*
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* The foundation 2.4.0 (vector mmap store, graph link compression, column-store
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* JS↔native interchange) all key off UUID→int mappings that **must not change**
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* across a metadata-index rebuild. Previously `metadataIndex.rebuild()` called
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* `idMapper.clear()` which reset `nextId` to 1 and renumbered every UUID by
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* re-insertion order, silently invalidating any consumer that had persisted
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* int-keyed data against the old map.
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*
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* This test pins down the stability contract:
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*
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* 1. UUID→int mappings persist across a single rebuild.
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* 2. Mappings persist across many consecutive rebuilds.
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* 3. New entities added after rebuild get fresh ints greater than any prior
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* assignment — no collisions with existing UUIDs' ints.
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* 4. Removed entities leave a permanent hole — new entities don't recycle the
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* gap, even across a rebuild.
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* 5. `clearAllIndexData()` is the explicit, intentional nuclear path — it DOES
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* renumber. This is the only documented way to invalidate the int space, and
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* a warning is logged so consumers know persisted int-keyed data is now stale.
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*/
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import { describe, it, expect, beforeEach, afterEach } from 'vitest'
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import { Brainy } from '../../src/brainy.js'
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const DIM = 384
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const makeVec = (seed = 1) =>
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new Float32Array(DIM).map((_, i) => ((i + seed) % DIM) / DIM)
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describe('EntityIdMapper stability (foundation for 2.4.0)', () => {
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let brain: Brainy
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beforeEach(async () => {
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brain = new Brainy({ storage: { type: 'memory' }, silent: true })
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await brain.init()
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})
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afterEach(async () => {
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await brain.close()
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})
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async function addEntity(name: string, seed: number): Promise<string> {
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return brain.add({
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data: name,
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vector: makeVec(seed),
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type: 'thing' as any,
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metadata: { name }
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})
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}
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function getInt(uuid: string): number | undefined {
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return (brain as any).metadataIndex.idMapper.getInt(uuid)
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}
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async function rebuild(): Promise<void> {
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await (brain as any).metadataIndex.rebuild()
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}
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it('UUID→int mappings persist across a single metadata-index rebuild', async () => {
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const ids = [
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await addEntity('a', 1),
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await addEntity('b', 2),
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await addEntity('c', 3),
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await addEntity('d', 4),
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await addEntity('e', 5)
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]
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const before = ids.map(id => getInt(id))
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expect(before.every(i => typeof i === 'number' && (i as number) > 0)).toBe(true)
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await rebuild()
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const after = ids.map(id => getInt(id))
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expect(after).toEqual(before)
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})
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it('mappings stay byte-for-byte stable across many consecutive rebuilds', async () => {
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const ids = [
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await addEntity('a', 1),
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await addEntity('b', 2),
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await addEntity('c', 3)
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]
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const before = ids.map(id => getInt(id))
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for (let i = 0; i < 5; i++) {
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await rebuild()
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const after = ids.map(id => getInt(id))
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expect(after).toEqual(before)
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}
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})
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it('entities added after rebuild get fresh monotonic ints (no collision with existing)', async () => {
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const priorIds = [
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await addEntity('a', 1),
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await addEntity('b', 2),
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await addEntity('c', 3)
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]
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const priorInts = priorIds.map(id => getInt(id) as number)
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const maxPrior = Math.max(...priorInts)
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await rebuild()
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const newId = await addEntity('d', 4)
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const newInt = getInt(newId) as number
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expect(newInt).toBeGreaterThan(maxPrior)
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// Prior entities' ints didn't drift.
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expect(priorIds.map(id => getInt(id))).toEqual(priorInts)
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})
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it('removed entities leave a permanent hole — new entities never recycle the gap', async () => {
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const ids = [
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await addEntity('a', 1),
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await addEntity('b', 2),
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await addEntity('c', 3),
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await addEntity('d', 4),
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await addEntity('e', 5)
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]
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const beforeInts = ids.map(id => getInt(id) as number)
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const deletedId = ids[2]
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const deletedInt = beforeInts[2]
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const maxBefore = Math.max(...beforeInts)
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await brain.delete(deletedId)
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expect(getInt(deletedId)).toBeUndefined()
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const newId = await addEntity('f', 6)
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const newInt = getInt(newId) as number
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expect(newInt).not.toBe(deletedInt)
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expect(newInt).toBeGreaterThan(maxBefore)
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// Surviving ids keep their ints across the deletion + the add.
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const survivors = ids.filter((_, i) => i !== 2)
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const survivorIntsBefore = beforeInts.filter((_, i) => i !== 2)
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expect(survivors.map(id => getInt(id))).toEqual(survivorIntsBefore)
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// Survivors' ints also survive a rebuild after the delete.
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await rebuild()
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expect(survivors.map(id => getInt(id))).toEqual(survivorIntsBefore)
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// The deleted id is still gone after rebuild (no resurrection).
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expect(getInt(deletedId)).toBeUndefined()
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})
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it('clearAllIndexData() is the explicit nuclear path that DOES renumber', async () => {
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const id1 = await addEntity('a', 1)
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const id2 = await addEntity('b', 2)
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const priorInts = [getInt(id1) as number, getInt(id2) as number]
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expect(priorInts.every(i => i >= 1)).toBe(true)
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// Nuclear recovery: explicit destructive op. The warning logged here is
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// the only documented way to invalidate the canonical int space.
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await (brain as any).metadataIndex.clearAllIndexData()
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// Both UUIDs are gone from the mapper.
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expect(getInt(id1)).toBeUndefined()
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expect(getInt(id2)).toBeUndefined()
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// The int counter restarted from 1: the next add() gets int 1.
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const idAfter = await addEntity('c', 3)
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expect(getInt(idAfter)).toBe(1)
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})
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})
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