brainy/tests/unit/storage/binaryBlob.test.ts

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feat(storage): add raw binary-blob primitive to every storage adapter Introduce a first-class binary-blob storage primitive on the StorageAdapter contract and implement it across all storage backends. This stores opaque byte payloads verbatim instead of base64-in-JSON, eliminating the ~33% inflation and full-materialization cost of the JSON envelope. It unblocks zero-copy, mmap-able column-store segments and batch vector I/O at billion scale. New methods (declared abstract on BaseStorageAdapter, the class that implements StorageAdapter, and added to the StorageAdapter interface): saveBinaryBlob(key, data) raw write, atomic on real filesystems loadBinaryBlob(key) exact bytes, or null if absent deleteBinaryBlob(key) idempotent (missing is ignored) getBinaryBlobPath(key) real local fs path where one exists, else null Shared key -> location convention across every adapter: the key's "/"-separated segments nest under a `_blobs/` prefix and are suffixed with `.bin`, e.g. "graph-lsm/source/sstable-123" -> "<root>/_blobs/graph-lsm/source/sstable-123.bin". Blobs are not branch-scoped (COW): they are immutable producer-managed segments. Per-adapter behavior: - FileSystemStorage: writes under <rootDir>/_blobs via tmp+rename; returns the real on-disk path so native code can mmap it directly. Path convention matches the existing MmapFileSystemStorage subclass byte-for-byte. - S3CompatibleStorage / R2Storage / GcsStorage / AzureBlobStorage: put/get/delete raw octet-stream objects; getBinaryBlobPath returns null (remote stores have no local path). - MemoryStorage: defensive-copied Map<string, Buffer>; null path; cleared on clear(). - OPFSStorage: stores raw bytes in the OPFS tree; null path. - HistoricalStorageAdapter: read-only — save/delete throw; load resolves the blob from the historical commit tree; null path. Tests: tests/unit/storage/binaryBlob.test.ts exercises save/load round-trip (byte-identical, incl. non-UTF8 bytes), overwrite, delete-then-load, load-missing, and getBinaryBlobPath behavior for all eight adapters. Cloud adapters run against in-memory client fakes that drive the real adapter code; OPFS runs against an in-memory FileSystem Access API mock; the historical adapter commits a blob into a real COW tree. 59 new tests; full unit suite (1398 tests) green.
2026-05-27 11:49:49 -07:00
/**
* Binary Blob Primitive Unit Tests
*
* Verifies the raw binary-blob storage primitive
* (saveBinaryBlob/loadBinaryBlob/deleteBinaryBlob/getBinaryBlobPath) across
* EVERY storage adapter:
* - FileSystemStorage (local, real fs path)
* - MemoryStorage (in-memory)
* - OPFSStorage (browser, exercised via an in-memory OPFS mock)
* - S3CompatibleStorage / R2Storage (AWS SDK, exercised via a fake S3 client)
* - GcsStorage (exercised via a fake GCS bucket)
* - AzureBlobStorage (exercised via a fake container client)
* - HistoricalStorageAdapter (read-only)
*
* Each adapter is checked for: saveload round-trip (byte identical), overwrite,
* delete-then-loadnull, load-missingnull, and getBinaryBlobPath behavior (a
* usable on-disk path for FileSystem, null everywhere else).
*
* Cloud adapters are exercised against in-memory fakes that implement only the
* narrow client surface the blob methods touch. The fakes drive the REAL adapter
* code (keyobject-key mapping, command construction, byte handling), so these
* are genuine round-trips, not mocked assertions.
*/
import { describe, it, expect, beforeEach, afterEach } from 'vitest'
import * as os from 'node:os'
import * as fsp from 'node:fs/promises'
import * as nodePath from 'node:path'
import { FileSystemStorage } from '../../../src/storage/adapters/fileSystemStorage.js'
import { MemoryStorage } from '../../../src/storage/adapters/memoryStorage.js'
import { OPFSStorage } from '../../../src/storage/adapters/opfsStorage.js'
import { S3CompatibleStorage } from '../../../src/storage/adapters/s3CompatibleStorage.js'
import { R2Storage } from '../../../src/storage/adapters/r2Storage.js'
import { GcsStorage } from '../../../src/storage/adapters/gcsStorage.js'
import { AzureBlobStorage } from '../../../src/storage/adapters/azureBlobStorage.js'
import { HistoricalStorageAdapter } from '../../../src/storage/adapters/historicalStorageAdapter.js'
// Sample payloads. Include non-UTF8 bytes to prove there is no JSON/text
// round-tripping anywhere in the path.
const PAYLOAD = Buffer.from([0x00, 0x01, 0xff, 0xfe, 0x42, 0x7a, 0x00, 0x80])
const PAYLOAD_2 = Buffer.from([0xde, 0xad, 0xbe, 0xef, 0x00, 0x11])
const KEY = 'graph-lsm/source/sstable-123'
const KEY_FLAT = 'segment-7'
/**
* Shared behavioral contract every adapter must satisfy. `expectsLocalPath`
* distinguishes the filesystem adapter (real path) from everyone else (null).
*/
function runBlobContract(
name: string,
makeStorage: () => Promise<any>,
expectsLocalPath: boolean
) {
describe(`${name} — binary blob contract`, () => {
let storage: any
beforeEach(async () => {
storage = await makeStorage()
})
afterEach(async () => {
try {
await storage?.clear?.()
} catch {
/* best-effort cleanup */
}
})
it('round-trips bytes identically (save → load)', async () => {
await storage.saveBinaryBlob(KEY, PAYLOAD)
const loaded = await storage.loadBinaryBlob(KEY)
expect(loaded).not.toBeNull()
expect(Buffer.isBuffer(loaded)).toBe(true)
expect(loaded!.equals(PAYLOAD)).toBe(true)
})
it('overwrites an existing blob', async () => {
await storage.saveBinaryBlob(KEY, PAYLOAD)
await storage.saveBinaryBlob(KEY, PAYLOAD_2)
const loaded = await storage.loadBinaryBlob(KEY)
expect(loaded!.equals(PAYLOAD_2)).toBe(true)
expect(loaded!.length).toBe(PAYLOAD_2.length)
})
it('returns null after delete', async () => {
await storage.saveBinaryBlob(KEY, PAYLOAD)
await storage.deleteBinaryBlob(KEY)
const loaded = await storage.loadBinaryBlob(KEY)
expect(loaded).toBeNull()
})
it('delete is idempotent for a missing blob', async () => {
// Should not throw even though nothing exists at this key.
await expect(storage.deleteBinaryBlob('does/not/exist')).resolves.toBeUndefined()
})
it('returns null when loading a missing blob', async () => {
const loaded = await storage.loadBinaryBlob('never/written')
expect(loaded).toBeNull()
})
it('supports flat (non-nested) keys', async () => {
await storage.saveBinaryBlob(KEY_FLAT, PAYLOAD)
const loaded = await storage.loadBinaryBlob(KEY_FLAT)
expect(loaded!.equals(PAYLOAD)).toBe(true)
})
it('getBinaryBlobPath honors the backend contract', () => {
const p = storage.getBinaryBlobPath(KEY)
if (expectsLocalPath) {
expect(typeof p).toBe('string')
expect(p).toContain('_blobs')
expect(p!.endsWith('.bin')).toBe(true)
} else {
expect(p).toBeNull()
}
})
})
}
// =============================================================================
// FileSystemStorage
// =============================================================================
describe('FileSystemStorage', () => {
let rootDir: string
runBlobContract(
'FileSystemStorage',
async () => {
rootDir = await fsp.mkdtemp(nodePath.join(os.tmpdir(), 'brainy-blob-fs-'))
const storage = new FileSystemStorage(rootDir)
await storage.init()
return storage
},
true
)
it('getBinaryBlobPath returns the real on-disk path and the file lands there', async () => {
const dir = await fsp.mkdtemp(nodePath.join(os.tmpdir(), 'brainy-blob-fspath-'))
const storage = new FileSystemStorage(dir)
await storage.init()
const key = 'graph-lsm/source/sstable-9'
const expectedPath = nodePath.join(dir, '_blobs', 'graph-lsm', 'source', 'sstable-9.bin')
// Path convention matches cortex byte-for-byte: _blobs/<parts>.bin
expect(storage.getBinaryBlobPath(key)).toBe(expectedPath)
await storage.saveBinaryBlob(key, PAYLOAD)
// The file must physically exist at exactly the advertised path so native
// code can mmap it directly.
const onDisk = await fsp.readFile(expectedPath)
expect(onDisk.equals(PAYLOAD)).toBe(true)
await fsp.rm(dir, { recursive: true, force: true })
})
it('writes atomically (no leftover .tmp file)', async () => {
const dir = await fsp.mkdtemp(nodePath.join(os.tmpdir(), 'brainy-blob-atomic-'))
const storage = new FileSystemStorage(dir)
await storage.init()
const key = 'atomic/seg'
await storage.saveBinaryBlob(key, PAYLOAD)
const blobDir = nodePath.join(dir, '_blobs', 'atomic')
const entries = await fsp.readdir(blobDir)
expect(entries).toContain('seg.bin')
expect(entries.some((e) => e.endsWith('.tmp'))).toBe(false)
await fsp.rm(dir, { recursive: true, force: true })
})
})
// =============================================================================
// MemoryStorage
// =============================================================================
describe('MemoryStorage', () => {
runBlobContract(
'MemoryStorage',
async () => {
const storage = new MemoryStorage()
await storage.init()
return storage
},
false
)
it('stores a defensive copy (mutating the input does not corrupt the blob)', async () => {
const storage = new MemoryStorage()
await storage.init()
const input = Buffer.from([1, 2, 3, 4])
await storage.saveBinaryBlob('k', input)
// Mutate the caller's buffer after saving.
input[0] = 99
const loaded = await storage.loadBinaryBlob('k')
expect(loaded!.equals(Buffer.from([1, 2, 3, 4]))).toBe(true)
// And the returned buffer is also a copy — mutating it must not affect storage.
loaded![1] = 88
const reloaded = await storage.loadBinaryBlob('k')
expect(reloaded!.equals(Buffer.from([1, 2, 3, 4]))).toBe(true)
})
it('clear() also drops blobs', async () => {
const storage = new MemoryStorage()
await storage.init()
await storage.saveBinaryBlob('k', PAYLOAD)
await storage.clear()
expect(await storage.loadBinaryBlob('k')).toBeNull()
})
})
// =============================================================================
// OPFSStorage (browser) — exercised via an in-memory OPFS mock
// =============================================================================
/**
* Minimal in-memory implementation of the FileSystem Access API surface that
* OPFSStorage uses (getDirectoryHandle / getFileHandle / createWritable /
* getFile / arrayBuffer / text / removeEntry / entries). Sufficient to drive the
* adapter's real code paths in Node, where OPFS does not exist.
*/
function createOPFSMock() {
class MockFile {
constructor(public bytes: Uint8Array) {}
async arrayBuffer(): Promise<ArrayBuffer> {
// Return a standalone ArrayBuffer copy.
return this.bytes.slice().buffer
}
async text(): Promise<string> {
return Buffer.from(this.bytes).toString('utf-8')
}
get size(): number {
return this.bytes.length
}
}
class MockWritable {
private chunks: Uint8Array[] = []
constructor(private fileHandle: MockFileHandle) {}
async write(data: any): Promise<void> {
if (typeof data === 'string') {
this.chunks.push(new Uint8Array(Buffer.from(data, 'utf-8')))
} else if (data instanceof Uint8Array) {
this.chunks.push(new Uint8Array(data))
} else if (data instanceof ArrayBuffer) {
this.chunks.push(new Uint8Array(data))
} else if (data && data.buffer) {
this.chunks.push(new Uint8Array(data.buffer))
} else {
this.chunks.push(new Uint8Array(Buffer.from(String(data), 'utf-8')))
}
}
async close(): Promise<void> {
const total = this.chunks.reduce((n, c) => n + c.length, 0)
const merged = new Uint8Array(total)
let off = 0
for (const c of this.chunks) {
merged.set(c, off)
off += c.length
}
this.fileHandle.bytes = merged
}
}
class MockFileHandle {
kind = 'file' as const
constructor(public name: string, public bytes: Uint8Array = new Uint8Array(0)) {}
async createWritable(): Promise<MockWritable> {
return new MockWritable(this)
}
async getFile(): Promise<MockFile> {
return new MockFile(this.bytes)
}
}
class MockDirHandle {
kind = 'directory' as const
files = new Map<string, MockFileHandle>()
dirs = new Map<string, MockDirHandle>()
constructor(public name: string) {}
async getDirectoryHandle(name: string, opts?: { create?: boolean }): Promise<MockDirHandle> {
let d = this.dirs.get(name)
if (!d) {
if (!opts?.create) {
const err: any = new Error(`Directory not found: ${name}`)
err.name = 'NotFoundError'
throw err
}
d = new MockDirHandle(name)
this.dirs.set(name, d)
}
return d
}
async getFileHandle(name: string, opts?: { create?: boolean }): Promise<MockFileHandle> {
let f = this.files.get(name)
if (!f) {
if (!opts?.create) {
const err: any = new Error(`File not found: ${name}`)
err.name = 'NotFoundError'
throw err
}
f = new MockFileHandle(name)
this.files.set(name, f)
}
return f
}
async removeEntry(name: string, opts?: { recursive?: boolean }): Promise<void> {
if (this.files.has(name)) {
this.files.delete(name)
return
}
if (this.dirs.has(name)) {
this.dirs.delete(name)
return
}
const err: any = new Error(`Entry not found: ${name}`)
err.name = 'NotFoundError'
throw err
}
async *entries(): AsyncIterableIterator<[string, MockFileHandle | MockDirHandle]> {
for (const [n, f] of this.files) yield [n, f]
for (const [n, d] of this.dirs) yield [n, d]
}
}
const root = new MockDirHandle('<root>')
const navigatorMock = {
storage: {
getDirectory: async () => root,
persisted: async () => true,
persist: async () => true,
estimate: async () => ({ usage: 0, quota: 1_000_000 })
}
}
return { navigatorMock }
}
describe('OPFSStorage', () => {
let hadNavigator = false
let originalNavigatorDescriptor: PropertyDescriptor | undefined
const installMock = () => {
const { navigatorMock } = createOPFSMock()
// In Node, globalThis.navigator is a read-only getter, so we must redefine
// it rather than assign. Capture the original descriptor to restore later.
originalNavigatorDescriptor = Object.getOwnPropertyDescriptor(globalThis, 'navigator')
hadNavigator = originalNavigatorDescriptor !== undefined
Object.defineProperty(globalThis, 'navigator', {
value: navigatorMock,
configurable: true,
writable: true
})
}
const restoreMock = () => {
if (hadNavigator && originalNavigatorDescriptor) {
Object.defineProperty(globalThis, 'navigator', originalNavigatorDescriptor)
} else {
delete (globalThis as any).navigator
}
}
runBlobContract(
'OPFSStorage',
async () => {
installMock()
const storage = new OPFSStorage()
await storage.init()
return storage
},
false
)
afterEach(() => {
restoreMock()
})
})
// =============================================================================
// Cloud adapter fakes
// =============================================================================
/**
* In-memory fake of the AWS S3 v3 client surface used by the blob methods.
* Dispatches on the command class name and reads the command's `.input`.
* Used by both S3CompatibleStorage and R2Storage (both speak the AWS SDK).
*/
function createFakeS3Client() {
const store = new Map<string, Buffer>()
return {
store,
async send(command: any): Promise<any> {
const type = command?.constructor?.name
const input = command?.input ?? {}
const key = input.Key as string
if (type === 'PutObjectCommand') {
store.set(key, Buffer.from(input.Body))
return {}
}
if (type === 'GetObjectCommand') {
const data = store.get(key)
if (!data) {
const err: any = new Error('NoSuchKey')
err.name = 'NoSuchKey'
err.$metadata = { httpStatusCode: 404 }
throw err
}
return {
Body: {
transformToByteArray: async () => new Uint8Array(data),
transformToString: async () => data.toString('utf-8')
}
}
}
if (type === 'DeleteObjectCommand') {
store.delete(key)
return {}
}
throw new Error(`FakeS3Client: unhandled command ${type}`)
}
}
}
/** In-memory fake of the GCS Bucket surface used by the blob methods. */
function createFakeGcsBucket() {
const store = new Map<string, Buffer>()
return {
store,
file(name: string) {
return {
async save(data: Buffer): Promise<void> {
store.set(name, Buffer.from(data))
},
async download(): Promise<[Buffer]> {
const data = store.get(name)
if (!data) {
const err: any = new Error('Not Found')
err.code = 404
throw err
}
return [Buffer.from(data)]
},
async delete(): Promise<void> {
if (!store.has(name)) {
const err: any = new Error('Not Found')
err.code = 404
throw err
}
store.delete(name)
}
}
}
}
}
/** In-memory fake of the Azure ContainerClient surface used by the blob methods. */
function createFakeAzureContainerClient() {
const store = new Map<string, Buffer>()
return {
store,
getBlockBlobClient(name: string) {
return {
async upload(data: Buffer, _length: number): Promise<void> {
store.set(name, Buffer.from(data))
},
async download(_offset: number): Promise<any> {
const data = store.get(name)
if (!data) {
const err: any = new Error('BlobNotFound')
err.statusCode = 404
err.code = 'BlobNotFound'
throw err
}
// Provide a Node Readable stream of the bytes; streamToBuffer consumes it.
const { Readable } = require('node:stream')
return { readableStreamBody: Readable.from([data]) }
},
async delete(): Promise<void> {
if (!store.has(name)) {
const err: any = new Error('BlobNotFound')
err.statusCode = 404
err.code = 'BlobNotFound'
throw err
}
store.delete(name)
}
}
}
}
}
// =============================================================================
// S3CompatibleStorage (fake client)
// =============================================================================
describe('S3CompatibleStorage', () => {
runBlobContract(
'S3CompatibleStorage',
async () => {
const storage = new S3CompatibleStorage({
bucketName: 'test-bucket',
region: 'us-east-1',
accessKeyId: 'test',
secretAccessKey: 'test'
})
// Bypass real network init; inject in-memory fake client.
;(storage as any).isInitialized = true
;(storage as any).bucketValidated = true
;(storage as any).s3Client = createFakeS3Client()
return storage
},
false
)
it('maps the blob key to the _blobs/<key>.bin object key', async () => {
const storage = new S3CompatibleStorage({
bucketName: 'test-bucket',
region: 'us-east-1',
accessKeyId: 'test',
secretAccessKey: 'test'
})
const fake = createFakeS3Client()
;(storage as any).isInitialized = true
;(storage as any).bucketValidated = true
;(storage as any).s3Client = fake
await storage.saveBinaryBlob('graph-lsm/source/sstable-1', PAYLOAD)
expect([...fake.store.keys()]).toEqual(['_blobs/graph-lsm/source/sstable-1.bin'])
})
})
// =============================================================================
// R2Storage (fake client)
// =============================================================================
describe('R2Storage', () => {
runBlobContract(
'R2Storage',
async () => {
const storage = new R2Storage({
bucketName: 'test-bucket',
accountId: 'acct123',
accessKeyId: 'test',
secretAccessKey: 'test'
})
;(storage as any).isInitialized = true
;(storage as any).bucketValidated = true
;(storage as any).s3Client = createFakeS3Client()
return storage
},
false
)
})
// =============================================================================
// GcsStorage (fake bucket)
// =============================================================================
describe('GcsStorage', () => {
runBlobContract(
'GcsStorage',
async () => {
const storage = new GcsStorage({ bucketName: 'test-bucket' })
;(storage as any).isInitialized = true
;(storage as any).bucketValidated = true
;(storage as any).bucket = createFakeGcsBucket()
return storage
},
false
)
})
// =============================================================================
// AzureBlobStorage (fake container client)
// =============================================================================
describe('AzureBlobStorage', () => {
runBlobContract(
'AzureBlobStorage',
async () => {
const storage = new AzureBlobStorage({
containerName: 'test-container',
connectionString:
'DefaultEndpointsProtocol=https;AccountName=test;AccountKey=dGVzdA==;EndpointSuffix=core.windows.net'
})
;(storage as any).isInitialized = true
;(storage as any).bucketValidated = true
;(storage as any).containerClient = createFakeAzureContainerClient()
return storage
},
false
)
})
// =============================================================================
// HistoricalStorageAdapter (read-only)
// =============================================================================
describe('HistoricalStorageAdapter — binary blob (read-only)', () => {
/**
* Build a HistoricalStorageAdapter over a real COW-enabled MemoryStorage, then
* commit a binary blob into the tree so loadBinaryBlob can resolve it from the
* historical commit state.
*/
async function makeHistorical(withBlob: boolean) {
const underlying = new MemoryStorage()
await underlying.init()
await underlying.initializeCOW({ branch: 'main' })
const blobStorage = underlying.blobStorage!
const refManager = underlying.refManager!
const { TreeBuilder } = await import('../../../src/storage/cow/TreeObject.js')
const { CommitBuilder } = await import('../../../src/storage/cow/CommitObject.js')
// Build a tree; optionally include a _blobs/<key>.bin entry holding raw bytes.
const treeBuilder = TreeBuilder.create(blobStorage)
if (withBlob) {
const blobHash = await blobStorage.write(PAYLOAD)
treeBuilder.addBlob('_blobs/graph-lsm/source/sstable-123.bin', blobHash, PAYLOAD.length)
}
const treeHash = await treeBuilder.build()
const commitHash = await CommitBuilder.create(blobStorage)
.tree(treeHash)
.parent(null)
.message('blob commit')
.author('test')
.timestamp(Date.now())
.build()
await refManager.createBranch('snapshot', commitHash, {
description: 'snapshot',
author: 'test'
})
const historical = new HistoricalStorageAdapter({
underlyingStorage: underlying,
commitId: commitHash,
branch: 'main'
})
await historical.init()
return historical
}
it('loads a blob committed into the historical state (bytes identical)', async () => {
const historical = await makeHistorical(true)
const loaded = await historical.loadBinaryBlob('graph-lsm/source/sstable-123')
expect(loaded).not.toBeNull()
expect(loaded!.equals(PAYLOAD)).toBe(true)
})
it('returns null for a blob absent from the historical state', async () => {
const historical = await makeHistorical(false)
const loaded = await historical.loadBinaryBlob('graph-lsm/source/sstable-123')
expect(loaded).toBeNull()
})
it('saveBinaryBlob throws (read-only)', async () => {
const historical = await makeHistorical(false)
await expect(historical.saveBinaryBlob('k', PAYLOAD)).rejects.toThrow(/read-only/i)
})
it('deleteBinaryBlob throws (read-only)', async () => {
const historical = await makeHistorical(false)
await expect(historical.deleteBinaryBlob('k')).rejects.toThrow(/read-only/i)
})
it('getBinaryBlobPath returns null', async () => {
const historical = await makeHistorical(false)
expect(historical.getBinaryBlobPath('k')).toBeNull()
})
})