brainy/tests/unit/storage/blobStorage.test.ts
David Snelling 8f93add705 feat(8.0)!: delete fork/branch/commit/history/versions — superseded by the Db API
The COW version-control surface (fork, branches, checkout, commit,
getHistory/streamHistory, asOfCommit, brain.versions) is gone, along with
its subsystems: src/versioning/, the COW object store (CommitLog,
CommitObject, RefManager, TreeObject), HistoricalStorageAdapter, and the
TypeAwareHNSWIndex path it kept alive. The Db API (now/transact/asOf/
with/persist/restore) is the one versioning model in 8.0.

Survivors and replacements:
- BlobStorage survives (the VFS stores file content through it), relocated
  to src/storage/blobStorage.ts with binaryDataCodec.ts; its adapter
  interface is now BlobStoreAdapter, slimmed to the consumed surface
  (write/read/has/delete/getMetadata + MIME-aware compression policy).
- brain.migrate() backup branches are replaced by persist-before-migrate:
  MigrateOptions.backupTo persists a hard-link snapshot of the current
  generation before any transform runs; MigrationResult.backupPath reports
  it, and brain.restore(path) brings it back wholesale.
- CLI: cow.ts (fork/branch/checkout/history/migrate) is replaced by
  snapshot.ts — snapshot <path>, restore <path>, history (tx-log),
  generation.
- New public read API: brain.transactionLog({limit}) exposes the reified
  tx-log (generation/timestamp/meta, newest first) that backs the CLI
  history command; TxLogEntry is exported.

Tests: superseded suites deleted; fork/commit blocks excised from shared
suites; BlobStorage tests relocated + reworked against the slimmed store;
migration tests now prove the backupTo snapshot/restore round trip; new
transactionLog coverage in db-mvcc.
2026-06-10 15:22:47 -07:00

516 lines
18 KiB
TypeScript

/**
* Comprehensive tests for BlobStorage (src/storage/blobStorage.ts)
*
* Tests:
* - Content-addressable storage (SHA-256, integrity verification)
* - Deduplication via reference counting
* - Compression (zstd, MIME-aware auto mode)
* - LRU caching (bounded cache still serves correct bytes)
* - Reference counting + delete-at-zero
* - Error handling
* - Performance characteristics
* - Wrapped-binary-data regressions (key-based dispatch)
*
* Cache-bypass pattern: the store has no cache-introspection API (the LRU is
* an internal optimization), so tests that must force a storage read create a
* FRESH BlobStorage over the same adapter — a cold cache by construction.
*/
import { describe, it, expect, beforeEach } from 'vitest'
import { BlobStorage, BlobStoreAdapter } from '../../../src/storage/blobStorage.js'
/**
* Simple in-memory blob store adapter for testing
*/
class InMemoryBlobAdapter implements BlobStoreAdapter {
private store = new Map<string, Buffer>()
async get(key: string): Promise<Buffer | undefined> {
return this.store.get(key)
}
async put(key: string, data: Buffer): Promise<void> {
this.store.set(key, data)
}
async delete(key: string): Promise<void> {
this.store.delete(key)
}
async list(prefix: string): Promise<string[]> {
const keys: string[] = []
for (const key of this.store.keys()) {
if (key.startsWith(prefix)) {
keys.push(key)
}
}
return keys.sort()
}
}
describe('BlobStorage', () => {
let adapter: BlobStoreAdapter
let blobStorage: BlobStorage
beforeEach(() => {
adapter = new InMemoryBlobAdapter()
blobStorage = new BlobStorage(adapter)
})
describe('Content-Addressable Storage', () => {
it('should compute SHA-256 hash of data', () => {
const data = Buffer.from('hello world')
const hash = BlobStorage.hash(data)
expect(hash).toBe('b94d27b9934d3e08a52e52d7da7dabfac484efe37a5380ee9088f7ace2efcde9')
expect(hash).toHaveLength(64)
})
it('should write blob and return hash', async () => {
const data = Buffer.from('test data')
const hash = await blobStorage.write(data)
expect(hash).toBeTruthy()
expect(hash).toHaveLength(64)
})
it('should read blob by hash', async () => {
const data = Buffer.from('test data')
const hash = await blobStorage.write(data)
const retrieved = await blobStorage.read(hash)
expect(retrieved.toString()).toBe('test data')
})
it('should verify data integrity on read', async () => {
const data = Buffer.from('test data')
const hash = await blobStorage.write(data)
// Corrupt the blob data behind the store's back
await adapter.put(`blob:${hash}`, Buffer.from('corrupted'))
// A fresh instance has a cold cache, so read() must hit storage and
// detect the corruption via hash verification.
const coldStore = new BlobStorage(adapter)
await expect(coldStore.read(hash)).rejects.toThrow('integrity check failed')
})
it('should check if blob exists', async () => {
const data = Buffer.from('test data')
const hash = await blobStorage.write(data)
expect(await blobStorage.has(hash)).toBe(true)
expect(await blobStorage.has('0'.repeat(64))).toBe(false)
})
})
describe('Deduplication', () => {
it('should deduplicate identical blobs', async () => {
const data = Buffer.from('duplicate data')
const hash1 = await blobStorage.write(data)
const hash2 = await blobStorage.write(data)
expect(hash1).toBe(hash2)
// Exactly one stored blob + one metadata record
expect(await adapter.list('blob:')).toHaveLength(1)
expect(await adapter.list('blob-meta:')).toHaveLength(1)
})
it('should increment ref count on duplicate write', async () => {
const data = Buffer.from('test data')
await blobStorage.write(data)
const hash = await blobStorage.write(data)
const metadata = await blobStorage.getMetadata(hash)
expect(metadata?.refCount).toBe(2)
})
it('should track every duplicate write in the reference count', async () => {
const data = Buffer.from('x'.repeat(1000))
const hash1 = await blobStorage.write(data)
const hash2 = await blobStorage.write(data)
const hash3 = await blobStorage.write(data)
expect(hash2).toBe(hash1)
expect(hash3).toBe(hash1)
const metadata = await blobStorage.getMetadata(hash1)
expect(metadata?.refCount).toBe(3)
})
})
describe('Compression', () => {
it('should compress large text data with zstd', async () => {
const data = Buffer.from('a'.repeat(10000))
const hash = await blobStorage.write(data, { compression: 'zstd' })
const metadata = await blobStorage.getMetadata(hash)
// zstd may not be available in test environment - falls back to 'none'
// This is expected behavior (see BlobStorage.ensureCompressionReady fallback)
if (metadata?.compression === 'zstd') {
expect(metadata.compressedSize).toBeLessThan(metadata.size)
} else {
// Fallback to 'none' is acceptable when zstd unavailable
expect(metadata?.compression).toBe('none')
}
})
it('should decompress zstd data on read', async () => {
const originalData = Buffer.from('test data '.repeat(100))
const hash = await blobStorage.write(originalData, { compression: 'zstd' })
const retrieved = await blobStorage.read(hash)
expect(retrieved.toString()).toBe(originalData.toString())
})
it('should not compress small blobs', async () => {
const data = Buffer.from('small')
const hash = await blobStorage.write(data, { compression: 'auto' })
const metadata = await blobStorage.getMetadata(hash)
expect(metadata?.compression).toBe('none')
})
it('should skip compression for already-compressed MIME types in auto mode', async () => {
const data = Buffer.from('x'.repeat(5000))
const hash = await blobStorage.write(data, {
compression: 'auto',
mimeType: 'image/jpeg'
})
const metadata = await blobStorage.getMetadata(hash)
expect(metadata?.compression).toBe('none')
})
it('should auto-compress large compressible payloads', async () => {
const data = Buffer.from('x'.repeat(5000))
const hash = await blobStorage.write(data, { compression: 'auto' })
const metadata = await blobStorage.getMetadata(hash)
// Should compress if zstd is available
if (metadata?.compression === 'zstd') {
expect(metadata.compressedSize).toBeLessThan(metadata.size)
}
})
})
describe('LRU Caching', () => {
it('should serve identical bytes from cache and from storage', async () => {
const data = Buffer.from('cached data')
const hash = await blobStorage.write(data)
// Warm read (write-through cache) and cold read (fresh instance)
const warm = await blobStorage.read(hash)
const cold = await new BlobStorage(adapter).read(hash)
expect(warm.equals(data)).toBe(true)
expect(cold.equals(data)).toBe(true)
})
it('should keep serving correct bytes when the cache evicts under pressure', async () => {
const smallCache = new BlobStorage(adapter, { cacheMaxSize: 100 })
// Write blobs that exceed cache size (forces LRU eviction)
const blobs = [
Buffer.from('x'.repeat(50)),
Buffer.from('y'.repeat(50)),
Buffer.from('z'.repeat(50))
]
const hashes: string[] = []
for (const blob of blobs) {
hashes.push(await smallCache.write(blob))
}
// Every blob still reads back correctly, evicted or not
for (let i = 0; i < blobs.length; i++) {
const retrieved = await smallCache.read(hashes[i])
expect(retrieved.equals(blobs[i])).toBe(true)
}
})
})
describe('Reference Counting', () => {
it('should track reference count', async () => {
const data = Buffer.from('test')
const hash = await blobStorage.write(data)
let metadata = await blobStorage.getMetadata(hash)
expect(metadata?.refCount).toBe(1)
// Write duplicate (increments ref count)
await blobStorage.write(data)
metadata = await blobStorage.getMetadata(hash)
expect(metadata?.refCount).toBe(2)
})
it('should only delete when refCount reaches 0', async () => {
const data = Buffer.from('test')
// Write twice (refCount = 2)
const hash = await blobStorage.write(data)
await blobStorage.write(data)
// Delete once (refCount = 1, blob still exists)
await blobStorage.delete(hash)
expect(await blobStorage.has(hash)).toBe(true)
// Delete again (refCount = 0, blob deleted)
await blobStorage.delete(hash)
expect(await blobStorage.has(hash)).toBe(false)
})
})
describe('Metadata', () => {
it('should store blob metadata', async () => {
const data = Buffer.from('test')
const hash = await blobStorage.write(data, { compression: 'none' })
const metadata = await blobStorage.getMetadata(hash)
expect(metadata?.hash).toBe(hash)
expect(metadata?.size).toBe(data.length)
expect(metadata?.compression).toBe('none')
expect(metadata?.createdAt).toBeGreaterThan(0)
expect(metadata?.refCount).toBe(1)
})
it('should return undefined metadata for unknown hashes', async () => {
expect(await blobStorage.getMetadata('f'.repeat(64))).toBeUndefined()
})
})
describe('Error Handling', () => {
it('should throw on reading non-existent blob', async () => {
await expect(
blobStorage.read('f'.repeat(64))
).rejects.toThrow('Blob metadata not found')
})
it('should throw on reading blob with missing metadata', async () => {
const data = Buffer.from('test')
const hash = await blobStorage.write(data)
// Delete metadata but keep blob bytes
await adapter.delete(`blob-meta:${hash}`)
// A fresh instance has a cold cache, so read() must consult metadata
const coldStore = new BlobStorage(adapter)
await expect(coldStore.read(hash)).rejects.toThrow('metadata not found')
})
})
describe('Performance', () => {
it('should write 1000 small blobs quickly', async () => {
const start = Date.now()
for (let i = 0; i < 1000; i++) {
await blobStorage.write(Buffer.from(`blob${i}`))
}
const elapsed = Date.now() - start
expect(elapsed).toBeLessThan(5000) // Should complete in < 5s
})
it('should read 1000 cached blobs very quickly', async () => {
// Write and cache blobs
const hashes: string[] = []
for (let i = 0; i < 1000; i++) {
const hash = await blobStorage.write(Buffer.from(`blob${i}`))
hashes.push(hash)
}
// First read (populate cache)
for (const hash of hashes) {
await blobStorage.read(hash)
}
// Second read (from cache)
const start = Date.now()
for (const hash of hashes) {
await blobStorage.read(hash)
}
const elapsed = Date.now() - start
expect(elapsed).toBeLessThan(1000) // Should be very fast from cache
})
})
describe('Wrapped-binary regression (v5.10.0) - hash verification on unwrapped bytes', () => {
it('should handle wrapped binary data without hash mismatch', async () => {
// Import TestWrappingAdapter that actually wraps data like production
const { TestWrappingAdapter } = await import('../../helpers/TestWrappingAdapter.js')
const wrappingAdapter = new TestWrappingAdapter()
const testBlobStorage = new BlobStorage(wrappingAdapter)
const originalData = Buffer.from('test content for v5.10.0 regression test')
// Write blob (TestWrappingAdapter wraps as {_binary: true, data: "base64..."})
const hash = await testBlobStorage.write(originalData)
// Fresh instance = cold cache: read() must fetch + unwrap from storage.
// v5.10.0 bug: read() hashed the wrapped bytes instead of the unwrapped
// content; the fix runs unwrapBinaryData() before hash verification.
const retrieved = await new BlobStorage(wrappingAdapter).read(hash)
expect(retrieved.equals(originalData)).toBe(true)
expect(retrieved.toString()).toBe('test content for v5.10.0 regression test')
})
it('should handle multiple wrapped blobs without integrity errors', async () => {
const { TestWrappingAdapter } = await import('../../helpers/TestWrappingAdapter.js')
const wrappingAdapter = new TestWrappingAdapter()
const testBlobStorage = new BlobStorage(wrappingAdapter)
const testData = [
Buffer.from('first blob'),
Buffer.from('second blob'),
Buffer.from('third blob with more content'),
Buffer.from(JSON.stringify({ test: 'json data' })),
]
const hashes: string[] = []
// Write all blobs
for (const data of testData) {
const hash = await testBlobStorage.write(data)
hashes.push(hash)
}
// Cold-cache instance forces storage reads
const coldStore = new BlobStorage(wrappingAdapter)
for (let i = 0; i < hashes.length; i++) {
const retrieved = await coldStore.read(hashes[i])
expect(retrieved.equals(testData[i])).toBe(true)
}
})
it('should work even if adapter fails to unwrap (defense-in-depth)', async () => {
// Create a buggy adapter that doesn't unwrap properly
class BuggyAdapter implements BlobStoreAdapter {
private storage = new Map<string, any>()
async get(key: string): Promise<any | undefined> {
// Simulate a bug where adapter returns wrapped data instead of Buffer
const data = this.storage.get(key)
if (!data) return undefined
// Return wrapped object (bug) instead of unwrapped Buffer
return data // {_binary: true, data: "base64..."}
}
async put(key: string, data: Buffer): Promise<void> {
// Store as wrapped object (like real storage)
this.storage.set(key, {
_binary: true,
data: data.toString('base64')
})
}
async delete(key: string): Promise<void> {
this.storage.delete(key)
}
async list(prefix: string): Promise<string[]> {
return Array.from(this.storage.keys()).filter(k => k.startsWith(prefix))
}
}
const buggyAdapter = new BuggyAdapter()
const testBlobStorage = new BlobStorage(buggyAdapter)
const originalData = Buffer.from('test defense-in-depth')
const hash = await testBlobStorage.write(originalData)
// Even with buggy adapter (and a cold cache), read() should unwrap and
// verify correctly
const retrieved = await new BlobStorage(buggyAdapter).read(hash)
expect(retrieved.equals(originalData)).toBe(true)
})
})
describe('Key-based dispatch regression (v6.2.0)', () => {
it('should handle JSON-like compressed data without integrity failures', async () => {
// THE KILLER TEST CASE: Data that looks like JSON when compressed
// This would fail with v5.10.1 wrapBinaryData() guessing approach
const { TestWrappingAdapter } = await import('../../helpers/TestWrappingAdapter.js')
const wrappingAdapter = new TestWrappingAdapter()
const testBlobStorage = new BlobStorage(wrappingAdapter)
// Create JSON data that will be compressed
const jsonData = { nested: { key: 'value', array: [1, 2, 3] }, repeated: 'x'.repeat(1000) }
const originalData = Buffer.from(JSON.stringify(jsonData))
// Write blob (compression happens, might create JSON-parseable bytes)
const hash = await testBlobStorage.write(originalData)
// v5.10.1 bug: If compressed bytes accidentally parse as JSON,
// wrapBinaryData() would store parsed object instead of wrapped binary
// On read: JSON.stringify(object) !== original compressed bytes → hash mismatch
//
// v6.2.0 fix: Key-based dispatch eliminates guessing
// 'blob:hash' → Always wrapped as binary, never parsed
const retrieved = await new BlobStorage(wrappingAdapter).read(hash)
// Hash MUST match
expect(BlobStorage.hash(retrieved)).toBe(hash)
expect(retrieved.equals(originalData)).toBe(true)
})
it('should handle metadata keys correctly', async () => {
// Verify that key-based dispatch correctly handles metadata keys
// This test verifies the dispatch logic, not the full read/write cycle
const { TestWrappingAdapter } = await import('../../helpers/TestWrappingAdapter.js')
const wrappingAdapter = new TestWrappingAdapter()
// Test metadata key dispatch: should parse as JSON
const metadataObj = { hash: 'test123', size: 42, compression: 'none' as const }
const metadataBuffer = Buffer.from(JSON.stringify(metadataObj))
await wrappingAdapter.put('blob-meta:test123', metadataBuffer)
const retrieved = await wrappingAdapter.get('blob-meta:test123')
// Should be parsed as JSON object (not wrapped as binary)
expect(retrieved).toBeDefined()
expect(typeof retrieved).toBe('object')
expect(retrieved.hash).toBe('test123')
expect(retrieved.size).toBe(42)
})
it('should never parse blob bytes as JSON on the write path', async () => {
// Verify that the blob bridge uses key-based dispatch,
// NOT wrapBinaryData() guessing
const { TestWrappingAdapter } = await import('../../helpers/TestWrappingAdapter.js')
const wrappingAdapter = new TestWrappingAdapter()
const testBlobStorage = new BlobStorage(wrappingAdapter)
// Create data that would trigger wrapBinaryData() bug if used
const problematicData = Buffer.from('[{"looks":"like","valid":"json"}]')
const hash = await testBlobStorage.write(problematicData)
const retrieved = await new BlobStorage(wrappingAdapter).read(hash)
// Should retrieve exact same bytes (no JSON parsing occurred)
expect(retrieved.equals(problematicData)).toBe(true)
expect(BlobStorage.hash(retrieved)).toBe(hash)
})
})
})