brainy/src/db/generationStore.ts
David Snelling 2c84f86815 feat(8.0): temporal range verbs — diff, history, since(gen|Date), asOf{exclusive}, transactionLog window
asOf() answers "state AT a point"; these answer "what happened BETWEEN two
points" and "one entity's whole history", all on the existing generation records.

- Extract resolveAsOfGeneration() as the shared gen|Date→{generation,timestamp}
  chokepoint (reachability + Date semantics identical everywhere). asOf()'s
  inclusive path is byte-identical — db-mvcc still 25/25.
- asOf(target, { exclusive }) — strict-before (resolved−1, clamped at gen 0,
  never a RangeError).
- db.since(Db | generation | Date) — overload; number/Date resolve via the shared
  resolver (new DbHost.resolveGeneration); EXCLUSIVE lower bound;
  since(db) === since(db.generation). Same-store guard via Db.belongsToStore.
- brain.diff(a, b) → { added, removed, modified } split by nouns/verbs. EARNS its
  name: candidate set is ONLY changedBetween(gLow,gHigh), each classified by
  existence at both endpoints + a key-order-insensitive value compare
  (new src/db/stableEqual.ts) — a touched-but-reverted / born-and-died id is in
  no bucket.
- brain.history(id, { from, to }) → every distinct version oldest→newest, each
  value === asOf(version.generation).get(id); null = removal; kind auto-detected
  (throws on UUID-space collision). New store helper generationsTouching().
- brain.transactionLog({ from, to, limit }) — INCLUSIVE generation/Date window
  (contrast since's exclusive lower bound); limit applied last.
- Compaction policy locked: diff/since THROW GenerationCompactedError below the
  horizon; history TRUNCATES to it.

Types DiffResult/HistoryVersion/EntityHistory exported from the package root.
Tests: tests/integration/db-temporal.test.ts (8 proofs incl. diff-earns-its-name,
history↔asOf cross-check, the composition proof, granularity, compaction contrast)
+ tests/unit/db/stableEqual.test.ts (6). docs/guides/snapshots-and-time-travel.md
+ RELEASES updated. 1477 unit + db-temporal 8 + db-mvcc 25 green.
2026-06-19 13:21:02 -07:00

881 lines
34 KiB
TypeScript

/**
* @module db/generationStore
* @description The generational record layer behind Brainy 8.0's MVCC Db API.
*
* One `GenerationStore` is attached to every writable `Brainy` instance. It
* owns:
*
* - the **monotonic generation counter** (`_system/generation.json`),
* reserved per `transact()` commit and bumped per single-operation write
* batch via the storage-layer hook;
* - the **commit protocol** for `brain.transact()`: capture before-images →
* write the generation delta → fsync → execute the operation batch →
* atomically rename `_system/manifest.json` (the rename IS the commit
* point) → append the tx-log line;
* - **crash recovery**: on open, any `_generations/<N>` directory with
* `N > manifest.generation` is an uncommitted transaction — its
* before-images are restored to the canonical entity paths and the
* directory is removed, so a crash anywhere before the manifest rename
* leaves the store byte-identical to its pre-transaction state;
* - **pin/release refcounting** for live `Db` values, which is what makes
* `compactHistory()` safe: a generation record-set is reclaimed only when
* no live pin could ever need it;
* - **point-in-time resolution**: the state of id X at pinned generation G
* is the before-image stored by the *first* committed generation after G
* that touched X — or the live storage state when nothing after G touched
* it (so current-generation reads stay on the existing fast paths,
* untouched).
*
* Durability and atomicity guarantees, failure modes, and the intellectual
* lineage (Datomic database-as-value, LMDB reader pins, LSM immutable
* segments) are specified in `docs/ADR-001-generational-mvcc.md`.
*/
import { prodLog } from '../utils/logger.js'
import { GenerationCompactedError, GenerationConflictError } from './errors.js'
import type {
ChangedIds,
CompactHistoryOptions,
CompactHistoryResult,
GenerationDelta,
GenerationManifest,
GenerationRecord,
GenerationStorage,
TxLogEntry
} from './types.js'
/** Storage-root-relative path of the persisted generation counter. */
export const GENERATION_COUNTER_PATH = '_system/generation.json'
/** Storage-root-relative path of the commit manifest. */
export const MANIFEST_PATH = '_system/manifest.json'
/** Storage-root-relative prefix of the per-generation record directories. */
export const GENERATIONS_PREFIX = '_generations'
/**
* @description Phases of the {@link GenerationStore.commitTransaction} commit
* protocol at which a test-only fault injector can simulate a process crash.
* The phases map 1:1 onto the protocol steps documented on
* `commitTransaction`:
*
* - `'after-staging'` — before-images + the `tx.json` delta are written and
* fsynced; the operation batch has NOT executed yet.
* - `'after-execute'` — the operation batch has been applied to canonical
* storage and indexes; the manifest still points at the prior generation.
* - `'before-manifest-rename'` — the batch has executed and the counter is
* persisted; the atomic manifest rename — the commit point — has NOT
* happened. A crash here is the canonical "fully staged, never committed"
* case that recovery must roll back byte-identically.
* - `'after-manifest-rename'` — the manifest rename landed (the transaction
* IS committed); the tx-log append has NOT happened yet. A crash here must
* keep the transaction (the tx-log is advisory metadata, not the source of
* commit truth).
*/
export type CommitFaultPhase =
| 'after-staging'
| 'after-execute'
| 'before-manifest-rename'
| 'after-manifest-rename'
/**
* @description Identifies which ids a transaction touches, split by kind.
*/
export interface TouchedIds {
/** Entity ids the transaction writes or deletes. */
nouns: string[]
/** Relationship ids the transaction writes or deletes. */
verbs: string[]
}
/**
* @description Result of {@link GenerationStore.open} — how many uncommitted
* generations crash recovery rolled back (a non-zero value tells `Brainy` to
* force an index reconciliation, since derived index state may reference the
* rolled-back writes).
*/
export interface GenerationStoreOpenResult {
/** Count of uncommitted generation directories rolled back and removed. */
rolledBackGenerations: number
}
/**
* @description The generational MVCC record layer. See the module
* documentation for the full protocol; every public method documents its
* own contract.
*/
export class GenerationStore {
private readonly storage: GenerationStorage
/** Latest reserved/observed generation (≥ {@link committed}). */
private counter = 0
/** Committed-transaction watermark (manifest generation). */
private committed = 0
/** Compaction horizon — record-sets ≤ this are reclaimed. */
private horizonGen = 0
/** Sorted list of committed generations whose record dirs exist. */
private committedGens: number[] = []
/** Delta cache, keyed by generation (lazily loaded from `tx.json`). */
private readonly deltaCache = new Map<
number,
{ nouns: Set<string>; verbs: Set<string>; timestamp: number }
>()
/** Live pin refcounts, keyed by pinned generation. */
private readonly pins = new Map<number, number>()
/** Serializes transact commits, compaction, and counter persistence. */
private mutexTail: Promise<unknown> = Promise.resolve()
/** True while a transact batch is executing (suppresses the bump hook). */
private inTransact = false
/** Coalescing state for lazy persistence of single-op counter bumps. */
private counterPersistScheduled = false
/**
* Test-only fault injector for the commit protocol (see
* {@link GenerationStore.setCommitFaultInjector}). `undefined` in production.
*/
private commitFaultInjector?: (phase: CommitFaultPhase) => void
private opened = false
/**
* @param storage - The storage adapter, narrowed to the
* {@link GenerationStorage} contract (`BaseStorage` implements it).
*/
constructor(storage: GenerationStorage) {
this.storage = storage
}
// ==========================================================================
// Lifecycle
// ==========================================================================
/**
* @description Load the persisted counter + manifest and run crash
* recovery. Must be called once, before indexes are built, because
* recovery may rewrite canonical entity files (restoring before-images of
* an uncommitted transaction).
*
* @param options.readOnly - When true (reader-mode brains), recovery is
* skipped: readers never write. An un-repaired crashed directory is
* repaired by the next *writer* open.
* @returns How many uncommitted generations were rolled back.
*/
async open(options?: { readOnly?: boolean }): Promise<GenerationStoreOpenResult> {
const counterFile = (await this.storage.readRawObject(GENERATION_COUNTER_PATH)) as
| { generation?: number }
| null
const manifest = (await this.storage.readRawObject(MANIFEST_PATH)) as GenerationManifest | null
this.committed = manifest?.generation ?? 0
this.horizonGen = manifest?.horizon ?? 0
this.counter = Math.max(counterFile?.generation ?? 0, this.committed)
// Discover existing generation record directories.
const recordPaths = await this.storage.listRawObjects(GENERATIONS_PREFIX)
const seenGens = new Set<number>()
for (const p of recordPaths) {
const gen = parseGenerationFromPath(p)
if (gen !== null) seenGens.add(gen)
}
let rolledBack = 0
const committedGens: number[] = []
for (const gen of [...seenGens].sort((a, b) => a - b)) {
if (gen <= this.committed) {
committedGens.push(gen)
} else if (!options?.readOnly) {
// Uncommitted (crashed) transaction: restore before-images, drop the dir.
await this.rollBackUncommittedGeneration(gen)
rolledBack++
}
// Reader mode: leave orphan dirs alone; resolution ignores them because
// committedGens only includes generations ≤ the manifest watermark.
this.counter = Math.max(this.counter, gen)
}
this.committedGens = committedGens
if (rolledBack > 0) {
prodLog.warn(
`[GenerationStore] Crash recovery rolled back ${rolledBack} uncommitted ` +
`transaction(s); store restored to generation ${this.committed}.`
)
}
this.opened = true
// Hook single-op write batches so generation() is always meaningful.
// Suppressed while a transact batch executes (the batch is ONE generation).
if (!options?.readOnly) {
this.storage.setGenerationBumpHook(() => this.noteSingleOpWrite())
}
return { rolledBackGenerations: rolledBack }
}
/**
* @description Detach the storage hook and persist the counter. Called
* from `brain.close()`.
*/
async close(): Promise<void> {
this.storage.setGenerationBumpHook(undefined)
await this.persistCounterNow()
}
/**
* @description TEST-ONLY: install (or clear, with `undefined`) a fault
* injector that is invoked at each {@link CommitFaultPhase} of the commit
* protocol. A **throwing** injector simulates a process crash at that
* phase: the abort cleanup (staging-directory removal, generation-counter
* reservation return) is deliberately skipped — exactly as if the process
* had died — so crash-consistency tests exercise the REAL recovery path
* ({@link GenerationStore.open} rolling back the uncommitted generation on
* the next open). Never installed in production code; the injector exists
* solely so the durability protocol can be proven, not trusted.
*
* @param injector - Callback invoked synchronously at each phase, or
* `undefined` to detach.
*/
setCommitFaultInjector(injector: ((phase: CommitFaultPhase) => void) | undefined): void {
this.commitFaultInjector = injector
}
// ==========================================================================
// Generation counter
// ==========================================================================
/** @returns The store's current generation (latest write watermark). */
generation(): number {
return this.counter
}
/** @returns The committed-transaction watermark (manifest generation). */
committedGeneration(): number {
return this.committed
}
/** @returns The compaction horizon (generations ≤ horizon are reclaimed). */
horizon(): number {
return this.horizonGen
}
/**
* @description Single-operation write hook (registered with the storage
* layer in {@link open}). Bumps the in-memory counter and schedules a
* coalesced persist of `_system/generation.json` — durable artifacts
* (records, manifests, snapshots) always persist the counter
* synchronously at their own commit points, so a crash inside the
* coalescing window can never move the counter backwards relative to
* anything durable.
*/
private noteSingleOpWrite(): void {
if (this.inTransact) return
this.counter++
this.schedulePersistCounter()
}
/** Schedule one coalesced counter persist for the current write burst. */
private schedulePersistCounter(): void {
if (this.counterPersistScheduled) return
this.counterPersistScheduled = true
setImmediate(() => {
this.counterPersistScheduled = false
void this.withMutex(() => this.persistCounterUnlocked()).catch((err) => {
prodLog.warn(`[GenerationStore] generation counter persist failed: ${(err as Error).message}`)
})
})
}
/**
* @description Persist the generation counter now (atomic tmp+rename).
* Called from `flush()`, `close()`, snapshotting, and the commit protocol.
*/
async persistCounterNow(): Promise<void> {
if (!this.opened) return
await this.withMutex(() => this.persistCounterUnlocked())
}
private async persistCounterUnlocked(): Promise<void> {
await this.storage.writeRawObject(GENERATION_COUNTER_PATH, {
generation: this.counter,
updatedAt: new Date().toISOString()
})
}
// ==========================================================================
// Pins
// ==========================================================================
/**
* @description Pin a generation (refcounted). Compaction never reclaims a
* record-set a live pin could need (i.e. any generation directory `N`
* with `N > G` for some pinned `G`).
* @param gen - The generation to pin.
*/
pin(gen: number): void {
this.pins.set(gen, (this.pins.get(gen) ?? 0) + 1)
}
/**
* @description Release one pin on a generation. Safe to call for a
* generation with no live pins (no-op with a warning).
* @param gen - The generation to release.
*/
release(gen: number): void {
const count = this.pins.get(gen)
if (count === undefined) {
prodLog.warn(`[GenerationStore] release(${gen}) called with no live pin at that generation`)
return
}
if (count <= 1) this.pins.delete(gen)
else this.pins.set(gen, count - 1)
}
/** @returns Total number of live pins across all generations. */
activePinCount(): number {
let total = 0
for (const count of this.pins.values()) total += count
return total
}
/** @returns The smallest pinned generation, or `Infinity` with no pins. */
private minPinnedGeneration(): number {
let min = Infinity
for (const gen of this.pins.keys()) min = Math.min(min, gen)
return min
}
// ==========================================================================
// Commit protocol
// ==========================================================================
/**
* @description Commit one transaction. The caller (Brainy.transact) plans
* the batch up front — resolving every touched id, including generated
* entity/relationship ids and delete cascades — and hands this method the
* touched-id sets plus an `execute` closure that runs the already-built
* operation batch through the TransactionManager.
*
* Protocol (under the commit mutex):
* 1. `ifAtGeneration` CAS check (rejects before anything is staged).
* 2. Reserve generation `N` (counter increment).
* 3. Capture before-images of every touched id and write them, plus the
* `tx.json` delta, under `_generations/N/`; fsync. From this point a
* crash anywhere is recoverable to the exact pre-transaction bytes.
* 4. Run `execute()`. On failure the TransactionManager has already
* rolled back its applied operations; the staging directory is removed
* and the reservation is returned (when no concurrent bump consumed a
* later number), so a failed transaction leaves the generation
* unchanged.
* 5. Persist the counter, then atomically rename the manifest to
* generation `N` — **the rename is the commit point** — and fsync it.
* 6. Append the tx-log line and update in-memory bookkeeping.
*
* @param args.touched - Every id the batch writes or deletes.
* @param args.meta - Transaction metadata for the tx-log.
* @param args.ifAtGeneration - Whole-store CAS expectation.
* @param args.execute - Runs the planned operation batch atomically.
* @returns The committed generation and its commit timestamp.
* @throws GenerationConflictError when the CAS expectation fails.
*/
async commitTransaction(args: {
touched: TouchedIds
meta?: Record<string, unknown>
ifAtGeneration?: number
execute: () => Promise<void>
}): Promise<{ generation: number; timestamp: number }> {
return this.withMutex(async () => {
if (args.ifAtGeneration !== undefined && args.ifAtGeneration !== this.counter) {
throw new GenerationConflictError(args.ifAtGeneration, this.counter)
}
const nouns = [...new Set(args.touched.nouns)]
const verbs = [...new Set(args.touched.verbs)]
const gen = ++this.counter
const dir = `${GENERATIONS_PREFIX}/${gen}`
const timestamp = Date.now()
// Test-only crash simulation (see setCommitFaultInjector): a throwing
// injector must bypass the abort cleanup below, exactly as a real
// process death would, so recovery-on-open is what restores the store.
let crashSimulated = false
const faultPoint = (phase: CommitFaultPhase): void => {
if (!this.commitFaultInjector) return
try {
this.commitFaultInjector(phase)
} catch (err) {
crashSimulated = true
throw err
}
}
try {
// -- 3. Before-images + delta (the durable undo log) ------------------
const stagedPaths: string[] = []
for (const id of nouns) {
const prev = await this.storage.readNounRaw(id)
const recordPath = `${dir}/prev/${id}.json`
const record: GenerationRecord = { kind: 'noun', metadata: prev.metadata, vector: prev.vector }
await this.storage.writeRawObject(recordPath, record)
stagedPaths.push(recordPath)
}
for (const id of verbs) {
const prev = await this.storage.readVerbRaw(id)
const recordPath = `${dir}/prev/${id}.json`
const record: GenerationRecord = { kind: 'verb', metadata: prev.metadata, vector: prev.vector }
await this.storage.writeRawObject(recordPath, record)
stagedPaths.push(recordPath)
}
const delta: GenerationDelta = {
generation: gen,
timestamp,
...(args.meta && { meta: args.meta }),
nouns,
verbs
}
const deltaPath = `${dir}/tx.json`
await this.storage.writeRawObject(deltaPath, delta)
stagedPaths.push(deltaPath)
await this.storage.syncRawObjects(stagedPaths)
faultPoint('after-staging')
// -- 4. Execute the planned batch -------------------------------------
this.inTransact = true
try {
await args.execute()
} finally {
this.inTransact = false
}
faultPoint('after-execute')
// -- 5. Counter + manifest rename (COMMIT POINT) ----------------------
await this.persistCounterUnlocked()
faultPoint('before-manifest-rename')
const manifest: GenerationManifest = {
version: 1,
generation: gen,
committedAt: new Date(timestamp).toISOString(),
horizon: this.horizonGen
}
await this.storage.writeRawObject(MANIFEST_PATH, manifest)
await this.storage.syncRawObjects([MANIFEST_PATH])
faultPoint('after-manifest-rename')
// -- 6. Post-commit bookkeeping ---------------------------------------
this.committed = gen
this.committedGens.push(gen)
this.deltaCache.set(gen, { nouns: new Set(nouns), verbs: new Set(verbs), timestamp })
const logEntry: TxLogEntry = { generation: gen, timestamp, ...(args.meta && { meta: args.meta }) }
await this.storage.appendTxLogLine(JSON.stringify(logEntry))
return { generation: gen, timestamp }
} catch (err) {
// Simulated crash (test-only fault injector): skip the abort cleanup
// entirely — a dead process cannot clean up. Recovery on the next
// open() is what must (and does) restore the store.
if (crashSimulated) {
throw err
}
// Failed before the manifest rename: nothing is committed. Remove the
// staging directory; the TransactionManager already restored any
// applied operation byte-identically.
try {
await this.storage.removeRawPrefix(dir)
} catch (cleanupErr) {
prodLog.warn(
`[GenerationStore] failed to remove staging dir ${dir} after aborted transaction: ` +
`${(cleanupErr as Error).message} (recovery will remove it on next open)`
)
}
// Return the reservation when no concurrent bump consumed a later
// number, so a failed transaction leaves generation() unchanged.
if (this.counter === gen) this.counter = gen - 1
throw err
}
})
}
// ==========================================================================
// Point-in-time resolution
// ==========================================================================
/**
* @description Whether any transaction committed after generation `gen`.
* O(1) — this is the fast-path check that lets a `Db` pinned at the
* current generation delegate every read to the live brain untouched.
* @param gen - The pinned generation.
*/
hasCommittedAfter(gen: number): boolean {
const last = this.committedGens[this.committedGens.length - 1]
return last !== undefined && last > gen
}
/**
* @description Resolve the state of an entity or relationship at pinned
* generation `gen`: the before-image stored by the first committed
* generation after `gen` that touched the id — or `{ source: 'current' }`
* when nothing after `gen` touched it (the live storage state *is* the
* state at `gen`).
*
* @param kind - `'noun'` for entities, `'verb'` for relationships.
* @param id - The id to resolve.
* @param gen - The pinned generation.
* @returns `{ source: 'current' }`, `{ source: 'absent' }` (did not exist
* at `gen`), or `{ source: 'record', metadata, vector }` with the raw
* stored objects as of `gen`.
*/
async resolveAt(
kind: 'noun' | 'verb',
id: string,
gen: number
): Promise<
| { source: 'current' }
| { source: 'absent' }
| { source: 'record'; metadata: any; vector: any | null }
> {
for (const candidate of this.committedGens) {
if (candidate <= gen) continue
const delta = await this.getDelta(candidate)
const touched = kind === 'noun' ? delta.nouns : delta.verbs
if (!touched.has(id)) continue
const record = (await this.storage.readRawObject(
`${GENERATIONS_PREFIX}/${candidate}/prev/${id}.json`
)) as GenerationRecord | null
if (record === null) {
// The record-set exists (candidate is committed) but the id's
// before-image is missing — only possible through external tampering.
throw new Error(
`Generation record missing: ${GENERATIONS_PREFIX}/${candidate}/prev/${id}.json ` +
`(store corrupted or records removed outside compactHistory())`
)
}
if (record.metadata === null && record.vector === null) {
return { source: 'absent' }
}
return { source: 'record', metadata: record.metadata, vector: record.vector }
}
return { source: 'current' }
}
/**
* @description The ids touched by committed transactions in the interval
* `(fromGen, toGen]`. Used by `db.since()` and by historical `find()` to
* build its overlay of changed entities.
* @param fromGen - Exclusive lower bound.
* @param toGen - Inclusive upper bound.
*/
async changedBetween(fromGen: number, toGen: number): Promise<ChangedIds> {
const nouns = new Set<string>()
const verbs = new Set<string>()
for (const gen of this.committedGens) {
if (gen <= fromGen || gen > toGen) continue
const delta = await this.getDelta(gen)
for (const id of delta.nouns) nouns.add(id)
for (const id of delta.verbs) verbs.add(id)
}
return {
nouns: [...nouns].sort(),
verbs: [...verbs].sort(),
fromGeneration: fromGen,
toGeneration: toGen
}
}
/**
* @description The committed generations in `(fromGen, toGen]` that touched a
* single id, ascending. The per-id companion to {@link changedBetween} — used
* by `history()` to walk one entity's change-points without scanning every id.
* No all-ids index: it consults the same cached per-generation deltas.
* @param kind - `'noun'` for entities, `'verb'` for relationships.
* @param id - The id to track.
* @param fromGen - Exclusive lower bound.
* @param toGen - Inclusive upper bound.
*/
async generationsTouching(
kind: 'noun' | 'verb',
id: string,
fromGen: number,
toGen: number
): Promise<number[]> {
const result: number[] = []
for (const gen of this.committedGens) {
if (gen <= fromGen || gen > toGen) continue
const delta = await this.getDelta(gen)
const touched = kind === 'noun' ? delta.nouns : delta.verbs
if (touched.has(id)) result.push(gen)
}
return result
}
/**
* @description Assert that generation `gen` is reachable (not compacted
* away) and within the committed range, then return it. Used by `asOf()`.
* Reachability boundary: reclaiming record-set `N` removes the
* before-images that reads at generations BELOW `N` depend on, so
* generations `< horizon` are unreachable while the horizon itself remains
* servable from the record-sets above it.
* @param gen - The requested generation.
* @throws GenerationCompactedError when `gen` is below the horizon.
* @throws RangeError when `gen` is negative or beyond the current counter.
*/
assertReachable(gen: number): number {
if (!Number.isInteger(gen) || gen < 0) {
throw new RangeError(`asOf(): generation must be a non-negative integer (got ${gen})`)
}
if (gen > this.counter) {
throw new RangeError(
`asOf(): generation ${gen} is in the future (store is at generation ${this.counter})`
)
}
if (gen < this.horizonGen) {
throw new GenerationCompactedError(gen, this.horizonGen)
}
return gen
}
/**
* @description Resolve a wall-clock timestamp to the generation that was
* committed at-or-before it, via the tx-log. Resolution granularity is
* transact commits — single-operation writes between commits are not
* individually addressable (documented 8.0 history granularity).
* @param timestampMs - Milliseconds since epoch.
* @returns The resolved generation (`0` when `timestampMs` predates the
* first commit) and the matched tx-log entry when one exists.
*/
async resolveTimestamp(
timestampMs: number
): Promise<{ generation: number; entry: TxLogEntry | null }> {
let best: TxLogEntry | null = null
for (const entry of await this.txLog()) {
if (entry.timestamp <= timestampMs) {
if (best === null || entry.generation > best.generation) best = entry
}
}
return { generation: best?.generation ?? 0, entry: best }
}
/**
* @description Read all committed tx-log entries, oldest first. Torn
* trailing lines from a crashed append are tolerated and skipped, and
* entries beyond the committed watermark are excluded — the tx-log is
* advisory metadata; the manifest rename is the source of commit truth.
* Compaction never rewrites the log, so entries may reference generations
* whose record-sets were already reclaimed.
* @returns Every committed {@link TxLogEntry}, in commit order.
*/
async txLog(): Promise<TxLogEntry[]> {
const lines = await this.storage.readTxLogLines()
const entries: TxLogEntry[] = []
for (const line of lines) {
let entry: TxLogEntry
try {
entry = JSON.parse(line) as TxLogEntry
} catch {
continue // tolerate a torn trailing line from a crashed append
}
if (entry.generation <= this.committed) entries.push(entry)
}
return entries
}
/**
* @description The commit timestamp of the newest committed generation at
* or below `gen`, when its record-set is still resident. Used to populate
* `Db.timestamp` for `asOf()` values.
* @param gen - The pinned generation.
*/
async commitTimestampAtOrBefore(gen: number): Promise<number | null> {
for (let i = this.committedGens.length - 1; i >= 0; i--) {
const candidate = this.committedGens[i]
if (candidate > gen) continue
const delta = await this.getDelta(candidate)
return delta.timestamp
}
return null
}
private async getDelta(
gen: number
): Promise<{ nouns: Set<string>; verbs: Set<string>; timestamp: number }> {
const cached = this.deltaCache.get(gen)
if (cached) return cached
const delta = (await this.storage.readRawObject(
`${GENERATIONS_PREFIX}/${gen}/tx.json`
)) as GenerationDelta | null
if (delta === null) {
throw new Error(
`Generation delta missing: ${GENERATIONS_PREFIX}/${gen}/tx.json ` +
`(store corrupted or records removed outside compactHistory())`
)
}
const entry = {
nouns: new Set(delta.nouns),
verbs: new Set(delta.verbs),
timestamp: delta.timestamp
}
this.deltaCache.set(gen, entry)
return entry
}
// ==========================================================================
// Compaction
// ==========================================================================
/**
* @description Reclaim generation record-sets past the retention policy.
* A generation directory `N` may be removed only when `N` is at or below
* **every** live pin (deleting `N` can only break readers pinned *below*
* `N`, because resolution reads before-images from generations strictly
* greater than the pin). With both retention options supplied, a
* generation must satisfy both to be eligible.
*
* @param options - Retention policy (see {@link CompactHistoryOptions}).
* @returns Count of removed record-sets and the new horizon.
*/
async compact(options?: CompactHistoryOptions): Promise<CompactHistoryResult> {
return this.withMutex(async () => {
const minPinned = this.minPinnedGeneration()
const retainGenerations = options?.retainGenerations ?? 0
const countWatermark = this.committed - retainGenerations
const timeCutoff =
options?.retainMs !== undefined ? Date.now() - options.retainMs : Infinity
const removed: number[] = []
for (const gen of [...this.committedGens]) {
if (gen > countWatermark) continue
if (gen > minPinned) continue
if (timeCutoff !== Infinity) {
const delta = await this.getDelta(gen)
if (delta.timestamp >= timeCutoff) continue
}
await this.storage.removeRawPrefix(`${GENERATIONS_PREFIX}/${gen}`)
this.deltaCache.delete(gen)
removed.push(gen)
}
if (removed.length > 0) {
const removedSet = new Set(removed)
this.committedGens = this.committedGens.filter((gen) => !removedSet.has(gen))
this.horizonGen = Math.max(this.horizonGen, ...removed)
const manifest: GenerationManifest = {
version: 1,
generation: this.committed,
committedAt: new Date().toISOString(),
horizon: this.horizonGen
}
await this.storage.writeRawObject(MANIFEST_PATH, manifest)
await this.storage.syncRawObjects([MANIFEST_PATH])
}
return { removedGenerations: removed.length, horizon: this.horizonGen }
})
}
// ==========================================================================
// Restore support
// ==========================================================================
/**
* @description Re-read all persisted state after `brain.restore()`
* replaced the store's contents from a snapshot, enforcing counter
* monotonicity: the counter never moves below `floorGeneration` (the
* pre-restore counter), so generation numbers observed before a restore
* are never reissued.
* @param floorGeneration - The counter value before the restore.
*/
async reopenAfterRestore(floorGeneration: number): Promise<void> {
await this.withMutex(async () => {
this.deltaCache.clear()
this.opened = false
// open() re-reads counter/manifest and re-registers the bump hook.
await this.open()
if (this.counter < floorGeneration) {
this.counter = floorGeneration
await this.persistCounterUnlocked()
}
})
}
// ==========================================================================
// Internals
// ==========================================================================
/**
* Restore the before-images of an uncommitted generation to the canonical
* entity paths, then remove its record directory. Restores are idempotent
* (writing identical bytes / deleting already-absent files), so recovery
* is safe at every crash point of the commit protocol.
*/
private async rollBackUncommittedGeneration(gen: number): Promise<void> {
const dir = `${GENERATIONS_PREFIX}/${gen}`
const prevPaths = await this.storage.listRawObjects(`${dir}/prev`)
for (const recordPath of prevPaths) {
const id = recordIdFromPath(recordPath)
if (id === null) continue
const record = (await this.storage.readRawObject(recordPath)) as GenerationRecord | null
if (record === null) continue
const image = { metadata: record.metadata, vector: record.vector }
if (record.kind === 'verb') {
await this.storage.writeVerbRaw(id, image)
} else {
await this.storage.writeNounRaw(id, image)
}
}
await this.storage.removeRawPrefix(dir)
prodLog.warn(
`[GenerationStore] rolled back uncommitted generation ${gen} ` +
`(${prevPaths.length} record(s) restored)`
)
}
/**
* @description Run a snapshot section serialized against transact commits,
* compaction, and counter persistence (the store's single commit mutex),
* with the generation counter durably persisted first. Used by
* `db.persist()`: the lock guarantees a snapshot can never interleave with
* a commit's record-write/manifest-rename sequence, and the up-front
* counter persist guarantees the snapshot's `_system/generation.json`
* reflects every single-operation bump (whose persistence is otherwise
* coalesced and may still be scheduled).
* @param fn - The exclusive snapshot section.
* @returns `fn`'s result.
*/
snapshotWith<R>(fn: () => Promise<R>): Promise<R> {
return this.withMutex(async () => {
await this.persistCounterUnlocked()
return fn()
})
}
/** Run `fn` exclusively, chained behind every prior exclusive section. */
private withMutex<R>(fn: () => Promise<R>): Promise<R> {
const run = this.mutexTail.then(fn, fn)
// Keep the chain alive regardless of fn's outcome.
this.mutexTail = run.catch(() => {})
return run
}
}
/**
* @description Extract the generation number from a record path of the form
* `_generations/<N>/...`. Returns `null` for paths that don't match.
* @param path - A storage-root-relative object path.
*/
function parseGenerationFromPath(path: string): number | null {
const match = /^_generations[/\\](\d+)[/\\]/.exec(path)
if (!match) return null
const gen = Number(match[1])
return Number.isSafeInteger(gen) ? gen : null
}
/**
* @description Extract the record id (file basename without `.json`) from a
* `prev/` before-image record path. Returns `null` for non-record paths.
* @param path - A storage-root-relative object path.
*/
function recordIdFromPath(path: string): string | null {
const match = /[/\\]prev[/\\]([^/\\]+)\.json$/.exec(path)
return match ? match[1] : null
}