Brainy 8.0 makes subtype required by default on every public write path
(`add`, `addMany`, `update`, `relate`, `relateMany`, `updateRelation`,
import). Per the locked C-1 contract, every entity and relation gets a
non-empty subtype string by the time the storage layer sees it.
OPT-OUT REMAINS FULLY SUPPORTED
The runtime flag is still consumer-controlled. Three opt-out paths
cover migration / legacy fixtures / typed escape:
- `new Brainy({ requireSubtype: false })` — last-resort: turn off the
contract entirely. Recommended only for migration windows or test
fixtures that legitimately can't supply a subtype.
- `new Brainy({ requireSubtype: { except: [NounType.Thing, ...] } })` —
per-type allowlist: strict everywhere except the listed types.
- `brain.requireSubtype(type, options)` — per-type registration with
optional vocabulary. Composes with the brain-wide flag.
Default is now `true`. Opt-out is explicit and documented; nothing
silently degrades.
TEST SWEEP
Bulk-applied `requireSubtype: false` to every `new Brainy({...})` call
site across 120 test files. Three sed patterns covered the shapes:
- `new Brainy({` → `new Brainy({ requireSubtype: false,`
- `new Brainy<T>({` → `new Brainy<T>({ requireSubtype: false,`
- `new Brainy()` → `new Brainy({ requireSubtype: false })`
tests/helpers/test-factory.ts → createTestConfig() defaults
`requireSubtype: false` so test files using the helper inherit the
opt-out without per-site edits.
The test sites that DO exercise subtype semantics (the
subtype-and-facets suite, the strict-mode-self-test suite, the verb-
subtype-and-enforcement suite, etc.) already pass real subtypes — they
were the 7.30.x acceptance tests for this contract. Those tests
continue to pass unchanged.
CHANGES
src/brainy.ts
- normalizeConfig() — `requireSubtype` default `false` → `true`.
Comment refreshed to document the three opt-out paths.
tests/* (120 files)
- Bulk-edited brain construction sites. No functional test changes; the
opt-out preserves the test author's original intent.
tests/helpers/test-factory.ts
- createTestConfig() base config gains `requireSubtype: false`.
NO-OP for consumers who were already passing subtype on every write.
For consumers who weren't, the upgrade path is one of the three opt-out
forms above. Migration recipe documented in 8.0 release notes (next
commit).
VERIFICATION
- npx tsc --noEmit: clean
- npm test: 1408 / 1409 (same pre-existing race-condition outstanding;
no other regressions from the flip)
317 lines
8.8 KiB
TypeScript
317 lines
8.8 KiB
TypeScript
import { describe, it, expect, beforeEach } from 'vitest'
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import { Brainy } from '../../../src/brainy.js'
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import { InstancePool, createInstancePool } from '../../../src/import/InstancePool.js'
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describe('InstancePool', () => {
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let brain: Brainy
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let pool: InstancePool
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beforeEach(async () => {
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brain = new Brainy({ requireSubtype: false, storage: { type: 'memory' } })
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await brain.init()
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pool = new InstancePool(brain)
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})
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describe('lazy initialization', () => {
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it('should not create instances until requested', () => {
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(false)
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expect(stats.extractorCreated).toBe(false)
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})
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it('should create NLP instance on first access', async () => {
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const nlp = await pool.getNLP()
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expect(nlp).toBeDefined()
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(true)
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expect(stats.nlpReuses).toBe(1)
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})
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it('should create extractor instance on first access', () => {
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const extractor = pool.getExtractor()
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expect(extractor).toBeDefined()
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const stats = pool.getStats()
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expect(stats.extractorCreated).toBe(true)
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expect(stats.extractorReuses).toBe(1)
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})
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})
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describe('instance reuse', () => {
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it('should return same NLP instance on multiple calls', async () => {
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const nlp1 = await pool.getNLP()
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const nlp2 = await pool.getNLP()
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const nlp3 = await pool.getNLP()
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expect(nlp1).toBe(nlp2)
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expect(nlp2).toBe(nlp3)
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const stats = pool.getStats()
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expect(stats.nlpReuses).toBe(3)
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})
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it('should return same extractor instance on multiple calls', () => {
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const extractor1 = pool.getExtractor()
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const extractor2 = pool.getExtractor()
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const extractor3 = pool.getExtractor()
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expect(extractor1).toBe(extractor2)
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expect(extractor2).toBe(extractor3)
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const stats = pool.getStats()
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expect(stats.extractorReuses).toBe(3)
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})
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it('should track reuse counts correctly', async () => {
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await pool.getNLP()
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await pool.getNLP()
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pool.getExtractor()
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pool.getExtractor()
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pool.getExtractor()
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const stats = pool.getStats()
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expect(stats.nlpReuses).toBe(2)
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expect(stats.extractorReuses).toBe(3)
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})
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})
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describe('initialization', () => {
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it('should initialize all instances with init()', async () => {
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await pool.init()
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expect(pool.isInitialized()).toBe(true)
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(true)
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expect(stats.extractorCreated).toBe(true)
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expect(stats.initialized).toBe(true)
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})
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it('should handle concurrent init calls safely', async () => {
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// Call init multiple times concurrently
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const promises = [
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pool.init(),
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pool.init(),
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pool.init()
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]
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await Promise.all(promises)
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// Should only initialize once
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expect(pool.isInitialized()).toBe(true)
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})
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it('should auto-initialize NLP when accessed', async () => {
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const nlp = await pool.getNLP()
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// NLP is lazy-initialized but extractor might not be
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(true)
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expect(stats.initialized).toBe(true)
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})
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it('should provide sync access to NLP', () => {
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const nlp = pool.getNLPSync()
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expect(nlp).toBeDefined()
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(true)
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})
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})
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describe('statistics', () => {
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it('should track creation time', async () => {
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await pool.init()
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const stats = pool.getStats()
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expect(stats.creationTime).toBeGreaterThanOrEqual(0)
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})
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it('should calculate memory saved', async () => {
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// Use instances multiple times
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await pool.getNLP()
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await pool.getNLP()
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await pool.getNLP()
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pool.getExtractor()
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pool.getExtractor()
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const stats = pool.getStats()
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expect(stats.memorySaved).toBeGreaterThan(0)
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})
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it('should reset statistics', async () => {
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await pool.getNLP()
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pool.getExtractor()
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pool.resetStats()
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const stats = pool.getStats()
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expect(stats.nlpReuses).toBe(0)
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expect(stats.extractorReuses).toBe(0)
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expect(stats.creationTime).toBe(0)
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})
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it('should provide string representation', async () => {
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await pool.init()
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const str = pool.toString()
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expect(str).toContain('InstancePool')
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expect(str).toContain('nlp=true')
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expect(str).toContain('extractor=true')
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})
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})
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describe('memory efficiency', () => {
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it('should reuse instances in loop (no memory leak)', async () => {
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const initialStats = pool.getStats()
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// Simulate import loop
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for (let i = 0; i < 1000; i++) {
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const nlp = await pool.getNLP()
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const extractor = pool.getExtractor()
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// All iterations should get same instances
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expect(nlp).toBeDefined()
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expect(extractor).toBeDefined()
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}
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const finalStats = pool.getStats()
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expect(finalStats.nlpReuses).toBe(1000)
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expect(finalStats.extractorReuses).toBe(1000)
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// Should have saved ~60GB of memory (1000 iterations × ~60MB)
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expect(finalStats.memorySaved).toBeGreaterThan(50 * 1024 * 1024 * 1000) // > 50GB
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})
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it('should handle rapid concurrent access', async () => {
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// Simulate concurrent row processing
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const promises = []
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for (let i = 0; i < 100; i++) {
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promises.push(pool.getNLP())
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promises.push(Promise.resolve(pool.getExtractor()))
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}
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await Promise.all(promises)
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const stats = pool.getStats()
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expect(stats.nlpReuses).toBe(100)
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expect(stats.extractorReuses).toBe(100)
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})
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})
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describe('cleanup', () => {
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it('should cleanup instances', async () => {
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await pool.init()
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expect(pool.isInitialized()).toBe(true)
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pool.cleanup()
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expect(pool.isInitialized()).toBe(false)
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const stats = pool.getStats()
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expect(stats.nlpCreated).toBe(false)
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expect(stats.extractorCreated).toBe(false)
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})
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it('should allow reinitialization after cleanup', async () => {
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await pool.init()
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pool.cleanup()
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await pool.init()
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expect(pool.isInitialized()).toBe(true)
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})
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})
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describe('factory function', () => {
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it('should create pool with auto-init', async () => {
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const newPool = await createInstancePool(brain, true)
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expect(newPool.isInitialized()).toBe(true)
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})
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it('should create pool without auto-init', async () => {
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const newPool = await createInstancePool(brain, false)
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expect(newPool.isInitialized()).toBe(false)
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})
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it('should default to auto-init', async () => {
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const newPool = await createInstancePool(brain)
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expect(newPool.isInitialized()).toBe(true)
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})
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})
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describe('error handling', () => {
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it('should handle missing NLP instance gracefully', async () => {
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const emptyPool = new InstancePool(brain)
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// Should create NLP on first access
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const nlp = await emptyPool.getNLP()
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expect(nlp).toBeDefined()
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})
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it('should handle missing extractor instance gracefully', () => {
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const emptyPool = new InstancePool(brain)
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// Should create extractor on first access
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const extractor = emptyPool.getExtractor()
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expect(extractor).toBeDefined()
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})
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})
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describe('real-world usage', () => {
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it('should work with actual NLP operations', async () => {
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const nlp = await pool.getNLP()
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// Should be initialized and ready to use
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expect(nlp).toBeDefined()
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// NLP should have init method
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expect(typeof nlp.init).toBe('function')
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})
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it('should work with actual entity extraction', async () => {
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const extractor = pool.getExtractor()
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// Should be ready to use
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expect(extractor).toBeDefined()
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// Can call extractor methods
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const entities = await extractor.extract('Paris is a beautiful city', {
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confidence: 0.5
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})
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expect(Array.isArray(entities)).toBe(true)
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})
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it('should handle full import workflow', async () => {
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// Initialize pool
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await pool.init()
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// Simulate processing multiple rows
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const rows = [
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{ text: 'Paris is beautiful' },
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{ text: 'London is historic' },
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{ text: 'Tokyo is modern' }
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]
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for (const row of rows) {
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const nlp = await pool.getNLP()
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const extractor = pool.getExtractor()
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// Process row - extract entities
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const entities = await extractor.extract(row.text, { confidence: 0.5 })
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expect(nlp).toBeDefined()
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expect(extractor).toBeDefined()
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expect(entities).toBeDefined()
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}
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// Verify instances were reused
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const stats = pool.getStats()
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expect(stats.nlpReuses).toBe(3)
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expect(stats.extractorReuses).toBe(3)
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})
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})
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})
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