open-brainy/tests/integration/all-apis-comprehensive.test.ts
David Snelling 24bf6cdbc5
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feat(namespace): NO SPECIAL NAMES + storage fidelity — the ruled completion of the field-addressing law
The write side of the law, ruled 2026-08-03: data is either in main space
where developers can use anything, or it is in system.*.

- The reserved-name write door DIES: add/update/relate/updateRelation
  metadata bags accept EVERY name (confidence, type, id, data, level,
  content, ...) as ordinary user fields — indexed, filterable, sortable,
  aggregatable, identical to any other field. The remap/enforce/warn
  machinery, the reservedFieldPolicy config (now a typed init refusal),
  and the compile-time metadata key bans are all removed. The one write
  refusal left: keys spelled 'system.*' (namespace forgery), now enforced
  on all four write doors.
- STORED RECORDS GO NESTED (v2): engine fields top-level, the user bag
  nested verbatim under 'metadata', sealed by a format stamp — by-name
  storage discrimination is unsound once colliders are admitted. Legacy
  flat records stay readable forever through the shape-aware splitters
  (sound for them: the old door refused colliders). Time travel rides the
  same split (generation store snapshots whole records).
- Name-based index exclusions DIE: user frame indexes every name; the
  excludeFields/indexedFields knobs and their silent-[] holes are gone;
  bulk-payload protection is value-shape only, uniform across names.
- Consumer-sweep findings fixed in the same wave: per-type counts read
  the frozen 'system.type' column (addToIndex sort, affinity tracking,
  cold-count rehydration, VFS type bitmaps — legacy 'noun' fallback for
  pre-rebuild reads); resolveHiddenIds addresses 'system.visibility'
  (bare 'visibility' was a silent no-op under the law — VFS/system
  entities leaked into default reads).
- Fidelity fallout fixed in the owning layers: readEntityFieldAddress
  reads the bag first (colliders were absent-shadowed by its own guard)
  and never serves system addresses from the bag; blob history refs read
  the bag shape-aware; migration transforms now receive ONE normalized
  view (engine fields + nested bag) regardless of stored era, and stray
  flat-habit keys refuse with the fix in the message.
- THE REOPEN-COLLIDER CONFORMANCE CASE (required before any RC counts as
  gates-green): all ten collider names + plumbing names written as user
  fields, verified verbatim + queryable across live reads, flush+reopen,
  a forced epoch rebuild, and asOf time travel; relation mirror; forgery
  refusals; legacy flat-record compat. 8/8 green.

Gates: unit 1901/1901 (exit 0) · integration 758 (exit 0) · conformance
27/27 (exit 0) · consumer test sweep migrated (10 files).
2026-08-03 16:59:32 -07:00

348 lines
11 KiB
TypeScript

/**
* Comprehensive All-APIs Test (v4.4.0)
*
* Systematically tests EVERY public API to verify:
* 1. Code is actually wired up
* 2. VFS filtering works correctly
* 3. Production quality (no errors, proper returns)
*
* APIs tested:
* - brain.add(), brain.get(), brain.update(), brain.remove()
* - brain.find(), brain.similar()
* - brain.relate(), brain.related(), brain.unrelate()
* - brain.addMany(), brain.updateMany(), brain.removeMany(), brain.relateMany()
* - vfs.* (init, mkdir, writeFile, readdir, readFile, stat, exists)
* - neural.* (similar, neighbors, outliers)
* - import.* (would test if CSV/Excel/PDF available)
*/
import { describe, it, expect, beforeAll, afterAll } from 'vitest'
import { Brainy } from '../../src/brainy.js'
import { NounType, VerbType } from '../../src/types/graphTypes.js'
import * as fs from 'fs'
import * as path from 'path'
describe('Comprehensive All-APIs Test', () => {
const testDir = path.join(process.cwd(), 'test-all-apis')
let brain: Brainy
beforeAll(async () => {
if (fs.existsSync(testDir)) {
fs.rmSync(testDir, { recursive: true, force: true })
}
fs.mkdirSync(testDir, { recursive: true })
brain = new Brainy({ requireSubtype: false,
storage: {
type: 'filesystem',
path: testDir
}
})
await brain.init()
})
afterAll(async () => {
// Close the brain so the writer lock is released and the background flush /
// heartbeat does not bleed into other suites (also avoids ~8s teardown hangs).
await brain.close()
if (fs.existsSync(testDir)) {
fs.rmSync(testDir, { recursive: true, force: true })
}
})
describe('Core Entity APIs', () => {
let entityId: string
it('brain.add() - should create entity', async () => {
entityId = await brain.add({
data: 'Test entity content',
type: NounType.Document,
metadata: { title: 'Test Doc', category: 'test' }
})
expect(typeof entityId).toBe('string')
expect(entityId.length).toBeGreaterThan(0)
console.log(`✅ brain.add() created: ${entityId}`)
})
it('brain.get() - should retrieve entity', async () => {
const entity = await brain.get(entityId)
expect(entity).not.toBeNull()
expect(entity?.id).toBe(entityId)
expect(entity?.type).toBe(NounType.Document)
expect(entity?.metadata?.title).toBe('Test Doc')
console.log(`✅ brain.get() retrieved entity`)
})
it('brain.update() - should update entity', async () => {
await brain.update({
id: entityId,
metadata: { updated: true }
})
const updated = await brain.get(entityId)
expect(updated?.metadata?.updated).toBe(true)
console.log(`✅ brain.update() updated metadata`)
})
it('brain.find() - should find entities (excludes VFS)', async () => {
const results = await brain.find({
where: { category: 'test' },
limit: 10
})
expect(results.length).toBeGreaterThan(0)
expect(results.some(r => r.id === entityId)).toBe(true)
expect(results.every(r => r.metadata?.isVFS !== true)).toBe(true) // No VFS
console.log(`✅ brain.find() found ${results.length} entities (no VFS)`)
})
it('brain.similar() - should find similar entities (excludes VFS)', async () => {
// Create another similar entity
await brain.add({
data: 'Another test document',
type: NounType.Document,
metadata: { category: 'test' }
})
const similar = await brain.similar({
to: entityId,
limit: 10
})
expect(Array.isArray(similar)).toBe(true)
expect(similar.every(r => r.metadata?.isVFS !== true)).toBe(true) // No VFS
console.log(`✅ brain.similar() found ${similar.length} similar entities (no VFS)`)
})
it('brain.remove() - should delete entity', async () => {
await brain.remove(entityId)
const deleted = await brain.get(entityId)
expect(deleted).toBeNull()
console.log(`✅ brain.remove() deleted entity`)
})
})
describe('Relationship APIs', () => {
let entity1Id: string
let entity2Id: string
let relationId: string
it('brain.relate() - should create relationship', async () => {
entity1Id = await brain.add({
data: 'Entity 1',
type: NounType.Concept
})
entity2Id = await brain.add({
data: 'Entity 2',
type: NounType.Concept
})
relationId = await brain.relate({
from: entity1Id,
to: entity2Id,
type: VerbType.RelatedTo
})
expect(typeof relationId).toBe('string')
console.log(`✅ brain.relate() created relation: ${relationId}`)
})
it('brain.related() - should retrieve relationships', async () => {
const relations = await brain.related({
from: entity1Id
})
expect(relations.length).toBeGreaterThan(0)
expect(relations.some(r => r.id === relationId)).toBe(true)
console.log(`✅ brain.related() found ${relations.length} relations`)
})
it('brain.unrelate() - should delete relationship', async () => {
await brain.unrelate(relationId)
const relations = await brain.related({
from: entity1Id
})
expect(relations.every(r => r.id !== relationId)).toBe(true)
console.log(`✅ brain.unrelate() deleted relation`)
})
})
describe('Batch APIs', () => {
it('brain.addMany() - should create multiple entities', async () => {
const result = await brain.addMany({
items: [
{ data: 'Batch 1', type: NounType.Document },
{ data: 'Batch 2', type: NounType.Document },
{ data: 'Batch 3', type: NounType.Document }
]
})
expect(result.successful.length).toBe(3)
expect(result.failed.length).toBe(0)
console.log(`✅ brain.addMany() created ${result.successful.length} entities`)
})
it('brain.relateMany() - should create multiple relationships', async () => {
const ids = await brain.addMany({
items: [
{ data: 'A', type: NounType.Concept },
{ data: 'B', type: NounType.Concept }
]
})
const relationIds = await brain.relateMany({
items: [
{ from: ids.successful[0], to: ids.successful[1], type: VerbType.References }
]
})
expect(relationIds.length).toBe(1)
console.log(`✅ brain.relateMany() created ${relationIds.length} relations`)
})
it('brain.removeMany() - should delete multiple entities', async () => {
const ids = await brain.addMany({
items: [
{ data: 'Delete 1', type: NounType.Document },
{ data: 'Delete 2', type: NounType.Document }
]
})
const result = await brain.removeMany({
ids: ids.successful
})
expect(result.successful.length).toBe(2)
console.log(`✅ brain.removeMany() deleted ${result.successful.length} entities`)
})
})
describe('VFS APIs', () => {
let vfs: any
it('vfs.init() - should initialize VFS', async () => {
vfs = brain.vfs
await vfs.init()
expect(vfs).toBeDefined()
console.log(`✅ vfs.init() initialized`)
})
it('vfs.mkdir() - should create directory', async () => {
await vfs.mkdir('/test-dir', { recursive: true })
const exists = await vfs.exists('/test-dir')
expect(exists).toBe(true)
console.log(`✅ vfs.mkdir() created directory`)
})
it('vfs.writeFile() - should create file', async () => {
await vfs.writeFile('/test-dir/file.txt', 'Hello World')
const exists = await vfs.exists('/test-dir/file.txt')
expect(exists).toBe(true)
console.log(`✅ vfs.writeFile() created file`)
})
it('vfs.readFile() - should read file content', async () => {
const content = await vfs.readFile('/test-dir/file.txt')
expect(content.toString()).toBe('Hello World')
console.log(`✅ vfs.readFile() read content`)
})
it('vfs.readdir() - should list directory', async () => {
// 8.0: readdir() returns string[] by default; pass { withFileTypes: true }
// to get VFSDirent objects (each with .name / .type / .path / .entityId).
const entries = await vfs.readdir('/test-dir', { withFileTypes: true })
expect(entries.length).toBeGreaterThan(0)
expect(entries.some((e: any) => e.name === 'file.txt')).toBe(true)
console.log(`✅ vfs.readdir() listed ${entries.length} entries`)
})
it('vfs.stat() - should get file stats', async () => {
const stats = await vfs.stat('/test-dir/file.txt')
// 8.0: VFSStats mirrors Node's fs.Stats — type is exposed via isFile() /
// isDirectory() / isSymbolicLink() predicates, not a `type` string field.
expect(stats.size).toBeGreaterThan(0)
expect(stats.isFile()).toBe(true)
expect(stats.isDirectory()).toBe(false)
console.log(`✅ vfs.stat() got stats: ${stats.size} bytes`)
})
it('VFS entities have isVFS flag', async () => {
const vfsEntities = await brain.find({
where: { path: '/test-dir/file.txt' },
includeVFS: true,
limit: 1
})
expect(vfsEntities.length).toBe(1)
expect(vfsEntities[0].metadata?.isVFS).toBe(true)
expect(vfsEntities[0].metadata?.path).toBe('/test-dir/file.txt')
console.log(`✅ VFS entities properly flagged with isVFS`)
})
it('VFS entities excluded from knowledge graph via excludeVFS', async () => {
// 8.0: find() INCLUDES VFS entities by default (one unified store). Pass
// excludeVFS:true to get a clean knowledge-graph view — this asserts that
// opt-in exclusion actually strips every VFS-flagged entity.
const knowledge = await brain.find({
type: NounType.Document,
excludeVFS: true,
limit: 100
})
const vfsCount = knowledge.filter(
r => r.metadata?.isVFS === true || r.metadata?.isVFSEntity === true
).length
expect(vfsCount).toBe(0)
console.log(`✅ Knowledge graph clean: 0 VFS entities leaked`)
})
})
describe('Production Quality Checks', () => {
it('should handle large batch operations', async () => {
const start = Date.now()
const result = await brain.addMany({
items: Array(100).fill(null).map((_, i) => ({
data: `Batch entity ${i}`,
type: NounType.Document
}))
})
const time = Date.now() - start
expect(result.successful.length).toBe(100)
expect(result.failed.length).toBe(0)
expect(time).toBeLessThan(30000) // < 30 seconds for 100 entities
console.log(`✅ Created 100 entities in ${time}ms`)
})
it('should handle metadata queries efficiently', async () => {
const start = Date.now()
// system.type — the legacy where.type→noun alias is dead; bare 'type'
// in where now addresses the user's own metadata field.
const results = await brain.find({
where: { 'system.type': NounType.Document },
limit: 100
})
const time = Date.now() - start
expect(results.length).toBeGreaterThan(0)
expect(time).toBeLessThan(1000) // < 1 second
console.log(`✅ Metadata query in ${time}ms`)
})
})
})