feat(8.0): Model-B per-write generation-stamping + adaptive retention knob
Every write — transact() AND single-op add/update/remove/relate — is now its
own immutable generation (Model-B), so a now() pin always freezes and
asOf/since/diff/history/transactionLog reflect single-ops exactly like
transacts. Closes the Model-A hole where pins did not freeze against single-op
writes.
Generation-stamping:
- GenerationStore.commitSingleOp: a one-operation commitTransaction with
deferred durability. Wired into add/update/remove/relate/updateRelation/
unrelate + removeMany (the *Many and VFS paths delegate to these).
- Async group-commit (flushPendingSingleOps): the live write is acknowledged
immediately; its before-image is buffered in an in-memory pending tier that
resolveAt/chains/changedBetween/tx-log read like on-disk generations, so the
synchronous now() freezes with no forced flush. One fsync per window
(triggers: size / 50ms timer / flush / close / transact / compactHistory).
- Crash recovery is drop-without-restore for group-commit generations (marked
groupCommit:true): a crash mid-flush discards the partial generation and
never restores its before-images, which would otherwise revert the
already-acknowledged live write.
- Init-time infrastructure (the VFS root) is the un-versioned generation-0
baseline: a fresh brain reports generation()===0 and an empty
transactionLog(); the first user write is generation 1.
- Historical find()/related() overlay bound is the full reserved watermark
(generation()), so un-flushed single-op writes are overlaid too.
Retention knob:
- config `history` -> `retention`: 'all' | 'adaptive' |
{ maxGenerations?, maxAge?, maxBytes?, budgetBytes?, autoCompact? }; unset ->
adaptive (disk/RAM pressure, zero-config). CompactHistoryOptions floors ->
caps (retainGenerations->maxGenerations, retainMs->maxAge, +maxBytes):
reclaim oldest-unpinned while ANY cap is exceeded; pins always exempt.
- brain.setRetentionBudget(bytes) drives the adaptive byte budget at runtime
(a coordinator's fair-share input). Per-generation bytes recorded in each
delta enable historyBytes() introspection without a storage size API.
Tests: per-write generation resolution, pin freeze vs add/update/remove,
drop-without-restore corruption-trap (fault injector), clean-reopen replay,
maxBytes/maxAge/no-cap reclamation, retention-then-reopen. 107 db/generation/
temporal tests green, tsc clean. Docs (ADR-001, consistency-model, snapshots
guide, api reference, RELEASES) updated to per-write granularity + retention.
This commit is contained in:
parent
afac7f9662
commit
5c3bb2c864
15 changed files with 1207 additions and 218 deletions
|
|
@ -135,10 +135,12 @@ await after.release()
|
|||
|
||||
Three things to remember:
|
||||
|
||||
- History granularity is `transact()` commits — single-operation writes
|
||||
advance the clock but do not produce historical records (see the
|
||||
[consistency model](../concepts/consistency-model.md)). Use `transact()`
|
||||
for writes you want to travel back through.
|
||||
- History granularity is per-write: EVERY write — `transact()` AND a
|
||||
single-operation `add`/`update`/`remove`/`relate` — is its own immutable
|
||||
generation, so a pin always freezes against later writes and every write is
|
||||
individually addressable via `asOf()` (see the
|
||||
[consistency model](../concepts/consistency-model.md)). Use `transact()` when
|
||||
you want several operations to share ONE atomic generation.
|
||||
- The first index-accelerated query (semantic search, traversal, cursors,
|
||||
aggregation) at a historical generation builds an in-memory index
|
||||
materialization — O(n at that generation), once per `Db`, freed on
|
||||
|
|
@ -336,20 +338,33 @@ For per-entity write coordination (rather than whole-store history), the
|
|||
|
||||
## Keeping history bounded
|
||||
|
||||
Historical records cost disk space. Reclaim what no live pin protects:
|
||||
Under Model-B every write is a generation, so history can grow quickly —
|
||||
Brainy auto-compacts on every `flush()`/`close()` under the **`retention`**
|
||||
knob (configured on the constructor):
|
||||
|
||||
```typescript
|
||||
await brain.compactHistory({
|
||||
retainGenerations: 100, // keep the 100 most recent commits
|
||||
retainMs: 7 * 24 * 60 * 60 * 1000 // and everything from the last 7 days
|
||||
})
|
||||
// Zero-config: ADAPTIVE — keep as much history as free disk/RAM allows,
|
||||
// reclaiming oldest-first under pressure. (This is the default.)
|
||||
new Brainy({ /* retention unset */ })
|
||||
|
||||
// Unbounded — never reclaim history (opt in explicitly):
|
||||
new Brainy({ retention: 'all' })
|
||||
|
||||
// Explicit CAPS — reclaim oldest-unpinned generations while ANY cap is exceeded:
|
||||
new Brainy({ retention: { maxGenerations: 1000, maxAge: 7 * 86_400_000, maxBytes: 512 * 1024 ** 2 } })
|
||||
```
|
||||
|
||||
Reclaim manually at any time (the same caps):
|
||||
|
||||
```typescript
|
||||
await brain.compactHistory({ maxGenerations: 100, maxAge: 7 * 24 * 60 * 60 * 1000 })
|
||||
```
|
||||
|
||||
Compaction never breaks a pinned read — record-sets are reclaimed only when
|
||||
no live `Db` could need them. Release views you are done with (including the
|
||||
ones `transact()` returns), and `persist()` any generation you want to keep
|
||||
beyond the retention window: snapshots are self-contained and unaffected by
|
||||
compaction.
|
||||
no live `Db` could need them (live pins are ALWAYS exempt). Release views you
|
||||
are done with (including the ones `transact()` returns), and `persist()` any
|
||||
generation you want to keep beyond the retention window: snapshots are
|
||||
self-contained and unaffected by compaction.
|
||||
|
||||
## From branches to values
|
||||
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue