The audit swept every packages/*/* plugin for the new AGENTS.md
convention (no hardcoded tunables in plugins) and exposes each finding
as a defaulted, validated Config field. Defaults are the previously
hardcoded values throughout, so no deployment or golden changes.
- tool-fs (had NO Config): readLimit, readMaxLineLength, readMaxBytes,
readStreamMinSize. The caps thread through ReadToolCaps/ReadWindow —
read-render already documented that the consumer applies the caps, so
they become explicit per-request fields.
- tool-web: searchMaxResults (WEB_SEARCH_MAX_RESULTS stays as the
schemastery default). Also fixes the stale GREP_LIMIT references in
search.ts and the web-capability-seam RFC (no such constant exists).
- bash-local: graceMs (SIGTERM->SIGKILL escalation grace). The
RunInternals.graceMs test seam is gone: graceMs is now a required
SpawnSpec field filled from config, so tests exercise the real
config path and the defaults live in exactly one place.
- subagent-acp: disposeEofGraceMs / disposeGraceMs. The AcpRunSpec
fields become required for the same one-defaulting-layer reason.
- session-persistence-sqlite: journalMode ('wal' default; the
rollback-journal modes serve filesystems where WAL's shared-memory
files do not work, e.g. network mounts).
- hooks-claude + hooks-codex: stderrSummaryMaxChars for the persisted
hook/result stderr summary. The duplicated summarize() helpers merge
into hook-protocol's summarizeStderr(stderr, maxChars), beside the
HookResultRecord field it feeds, with the bound parameterized the
same way runHook's defaultTimeoutMs already is.
- compact-basic: charsPerToken for the token estimator (default 4, the
English-text heuristic; CJK-heavy deployments need ~1-2 or compaction
fires far too late). Also corrects the BasicCompactService class doc,
which claimed defaults the required-field config never had.
- fs-local: deletes the dead STREAM_MIN_SIZE constant and the dead
FsIoInternals.streamMinSize seam — the read-routing bound lives in
the consumer (tool-fs), where it is now config. This is item 1 of
the proposed prune-write-only-fs-surface RFC, annotated accordingly.
Every new field gets range validation (following the existing
assertPositiveFinite pattern), a README row, and tests covering the
configured behavior, the schema default, and load-time rejection.
498 lines
25 KiB
TypeScript
498 lines
25 KiB
TypeScript
import { afterEach, describe, expect, it } from 'vitest'
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import { Context } from 'cordis'
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import { existsSync } from 'node:fs'
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import { mkdtemp, rm } from 'node:fs/promises'
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import { tmpdir } from 'node:os'
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import { join } from 'node:path'
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import SessionStore, { SessionId } from '@deepseek-ai/dsh-session'
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import type { Session, SessionEvent, SurfaceEvent, SurfaceEventType } from '@deepseek-ai/dsh-session'
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import SessionPersistenceSqlite, { SCHEMA_VERSION } from '@deepseek-ai/dsh-session-persistence-sqlite'
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import { openDatabase, rowToEvent, scanRows, type EventRow } from '../src/schema.ts'
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import { runPersistenceContract, meta, oneTurnLog, appendLog } from '../../session-persistence/tests/contract.ts'
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import { runCoordinatorContract, type CoordinatorFixture } from '../../session-persistence/tests/coordinator-contract.ts'
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const dirs: string[] = []
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afterEach(async () => { for (const d of dirs.splice(0)) await rm(d, { recursive: true, force: true }) })
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async function freshDbPath(): Promise<string> {
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const dir = await mkdtemp(join(tmpdir(), 'dsh-sqlite-'))
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dirs.push(dir)
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return join(dir, 'sessions.db')
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}
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/** A context with the session store + SQLite backend, plus a teardown. */
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async function backend(path = ':memory:'): Promise<{ ctx: Context; dispose: () => Promise<void> }> {
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const fiber = await ctx.plugin(SessionPersistenceSqlite, { path })
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return { ctx, dispose: () => fiber.dispose() }
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}
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// The payoff: the SAME backend-agnostic contract the JSONL backend runs, now
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// proving the SQLite backend satisfies identical semantics.
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runPersistenceContract('sqlite', async () => {
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const fiber = await ctx.plugin(SessionPersistenceSqlite, { path: ':memory:' })
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return {
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persistence: ctx.sessionPersistence,
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dispose: async () => { await fiber.dispose() },
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}
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})
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// Run the shared coordinator orchestration suite against the real SQLite backend.
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// A FILE-backed db (not :memory:) is the shared storage scope so two mounted
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// instances see the same rows (HMR/reload). `corruptTail` INSERTs a row past the
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// committed seq whose `data` is invalid JSON — a never-committed torn tail that
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// drives the coordinator's commitRepair-with-tornMarker branch over real db rows.
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runCoordinatorContract('sqlite', async (): Promise<CoordinatorFixture> => {
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const dir = await mkdtemp(join(tmpdir(), 'dsh-sqlite-coord-'))
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const path = join(dir, 'sessions.db')
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return {
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mount: async ctx => ctx.plugin(SessionPersistenceSqlite, { path }),
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corruptTail: async (id) => {
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// A row past the committed region whose `data` does not parse: scanRows
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// bounds the preserved prefix at it and returns its seq as tornFrom, which
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// the backend surfaces to the coordinator as the tornMarker to delete from.
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const db = openDatabase(path, 'wal')
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const next = (db.prepare('SELECT COALESCE(MAX(seq), -1) + 1 AS n FROM events WHERE session_id = ?')
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.get(id) as { n: number }).n
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db.prepare('INSERT INTO events (session_id, seq, type, time, data) VALUES (?, ?, ?, ?, ?)')
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.run(id, next, 'assistant/chunk', 99, '{not valid json')
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db.close()
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},
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cleanup: async () => { await rm(dir, { recursive: true, force: true }) },
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}
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})
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describe('scanRows', () => {
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// scanRows works off EventRows (data is a JSON string column); build them from
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// SessionEvents so the unit tests read in terms of the event vocabulary. Surface
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// fields are serialized to their nullable columns so a round trip is faithful.
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const rows = (events: SessionEvent[]): EventRow[] =>
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events.map((e) => {
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const se = e as SessionEvent<SurfaceEventType>
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return {
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seq: e.seq, type: e.type, time: e.time, data: JSON.stringify(e.data),
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source_event_seqs: se.sourceEventSeqs !== undefined ? JSON.stringify(se.sourceEventSeqs) : null,
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surface_op: se.surfaceOp !== undefined ? JSON.stringify(se.surfaceOp) : null,
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}
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})
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it('preserves the full log when it ends exactly on a turn/end (no torn tail)', () => {
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const { preserved, tornFrom } = scanRows(rows(oneTurnLog()))
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expect(preserved).toEqual(oneTurnLog())
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expect(tornFrom).toBeUndefined()
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})
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it('PRESERVES the real events of an interrupted turn after the last turn/end', () => {
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// turn 1 committed (0..5) + a crashed turn 2 (turn/start 6, step/start 7, no
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// close): all 8 rows are intact, so the whole prefix is preserved and there
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// is no torn fragment to delete. (load() then synthesizes the closers.)
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const withOpenTurn: SessionEvent[] = [
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...oneTurnLog(),
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{ type: 'turn/start', seq: 6, time: 7, data: { turn: 2, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'step/start', seq: 7, time: 8, data: { turn: 2, step: 1 } },
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]
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const { preserved, tornFrom } = scanRows(rows(withOpenTurn))
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expect(preserved.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7])
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expect(tornFrom).toBeUndefined()
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})
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it('preserves the contiguous prefix and flags a torn tail at a seq gap', () => {
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// A gap after seq 0 (no committed turn/end): seq 0 is the preserved
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// interrupted-turn event; the gap bounds it and marks the torn fragment.
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const gapped: SessionEvent[] = [
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{ type: 'turn/start', seq: 0, time: 1, data: { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'step/start', seq: 2, time: 2, data: { turn: 1, step: 1 } }, // seq 1 missing
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]
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const { preserved, tornFrom } = scanRows(rows(gapped))
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expect(preserved.map(e => e.seq)).toEqual([0])
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expect(tornFrom).toBe(1)
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})
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it('an empty log preserves nothing and has no torn tail', () => {
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expect(scanRows([])).toEqual({ preserved: [] })
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})
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it('throws on a seq gap inside the committed region (before the last turn/end)', () => {
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const gapped: SessionEvent[] = [
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{ type: 'turn/start', seq: 0, time: 1, data: { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'step/start', seq: 2, time: 2, data: { turn: 1, step: 1 } }, // seq 1 missing
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{ type: 'turn/end', seq: 3, time: 3, data: { turn: 1, reason: { kind: 'completed' } } },
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]
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expect(() => scanRows(rows(gapped))).toThrow(/seq gap in committed region/)
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})
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it('throws on an unparsable row inside the committed region', () => {
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const withCorruptCommitted: EventRow[] = [
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{ seq: 0, type: 'turn/start', time: 1, data: '{not json', source_event_seqs: null, surface_op: null }, // corrupt, sits before a turn/end
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{ seq: 1, type: 'turn/end', time: 2, data: JSON.stringify({ turn: 1, reason: { kind: 'completed' } }), source_event_seqs: null, surface_op: null },
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]
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expect(() => scanRows(withCorruptCommitted)).toThrow(/unparsable committed event/)
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})
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it('tolerates an unparsable torn-tail row after the last turn/end', () => {
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const withCorruptTail: EventRow[] = [
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...rows(oneTurnLog()),
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{ seq: 6, type: 'turn/start', time: 7, data: '{not json', source_event_seqs: null, surface_op: null }, // torn fragment, no committed turn/end after
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]
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const { preserved, tornFrom } = scanRows(withCorruptTail)
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expect(preserved).toEqual(oneTurnLog())
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expect(tornFrom).toBe(6)
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})
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})
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describe('SessionPersistenceSqlite: durability and crash semantics', () => {
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it('an interrupted turn (rows after the last turn/end) is PRESERVED and closed during load', async () => {
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const path = await freshDbPath()
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const m = meta('crash')
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// Run 1: persist a complete turn, then a half-written second turn (no turn/end).
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const ctx1 = new Context()
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await ctx1.plugin(SessionStore)
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const fiber1 = await ctx1.plugin(SessionPersistenceSqlite, { path })
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await ctx1.sessionPersistence.create(m)
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await ctx1.sessionPersistence.append(m.id, oneTurnLog())
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await ctx1.sessionPersistence.append(m.id, [
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{ type: 'turn/start', seq: 6, time: 7, data: { turn: 2, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'step/start', seq: 7, time: 8, data: { turn: 2, step: 1 } },
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])
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await fiber1.dispose()
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// Run 2: load PRESERVES the interrupted turn's real events (a turn can be huge
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// — never truncated) and closes the orphaned turn with synthetic boundary
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// events: step/end (the step was open) then turn/end {interrupted}.
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const ctx2 = new Context()
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await ctx2.plugin(SessionStore)
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const fiber2 = await ctx2.plugin(SessionPersistenceSqlite, { path })
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const loaded = await ctx2.sessionPersistence.load(m.id)
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expect(loaded.events.map(e => e.type)).toEqual([
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'turn/start', 'user/message', 'step/start', 'assistant/message', 'step/end', 'turn/end', // turn 1
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'turn/start', 'step/start', 'step/end', 'turn/end', // turn 2: real events + synthetic closers
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])
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expect(loaded.events.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7, 8, 9])
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const last = loaded.events.at(-1)!
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expect(last.type === 'turn/end' && last.data.reason).toEqual({ kind: 'interrupted' })
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// load durably closed the turn, so the next append continues at the balanced
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// length (seq 10) and a reload round-trips identically.
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await ctx2.sessionPersistence.append(m.id, [
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{ type: 'turn/start', seq: 10, time: 9, data: { turn: 3, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'turn/end', seq: 11, time: 10, data: { turn: 3, reason: { kind: 'completed' } } },
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])
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const reloaded = await ctx2.sessionPersistence.load(m.id)
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expect(reloaded.events.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11])
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await fiber2.dispose()
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})
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it('load() durably closes the interrupted turn: the synthetic closers are on disk after load', async () => {
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const path = await freshDbPath()
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const m = meta('load-closes')
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const b1 = await backend(path)
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await b1.ctx.sessionPersistence.create(m)
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await b1.ctx.sessionPersistence.append(m.id, oneTurnLog()) // seqs 0..5
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await b1.dispose()
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// Hand-write an interrupted turn (turn/start seq 6, no turn/end).
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const db = openDatabase(path, 'wal')
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db.prepare('INSERT INTO events (session_id, seq, type, time, data) VALUES (?, 6, ?, 7, ?)')
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.run(m.id, 'turn/start', JSON.stringify({ turn: 2, trigger: { kind: 'message', source: { kind: 'user' } } }))
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db.close()
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const b2 = await backend(path)
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const loaded = await b2.ctx.sessionPersistence.load(m.id)
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// turn 2's real turn/start (seq 6) is preserved + a synthetic turn/end (seq 7).
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expect(loaded.events.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7])
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expect(loaded.events.at(-1)!.type).toBe('turn/end')
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// load() is mutating: the synthetic turn/end MUST be on disk so the stored log
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// is balanced and the cursor is truthful (contract: load closes, not defers).
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const probe = openDatabase(path, 'wal')
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const stored = probe.prepare('SELECT seq, type FROM events WHERE session_id = ? ORDER BY seq').all(m.id) as { seq: number; type: string }[]
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probe.close()
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expect(stored.map(r => r.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7])
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expect(stored.at(-1)!.type).toBe('turn/end')
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await b2.dispose()
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})
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it('all-tail load: a session whose only turn never closed is preserved and closed on load', async () => {
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const path = await freshDbPath()
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const m = meta('all-tail')
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const b1 = await backend(path)
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await b1.ctx.sessionPersistence.create(m)
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// A first turn that NEVER completed: turn/start + user/message, no turn/end.
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await b1.ctx.sessionPersistence.append(m.id, [
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{ type: 'turn/start', seq: 0, time: 1, data: { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'user/message', seq: 1, time: 2, data: { content: [{ type: 'text', text: 'hi' }], source: { kind: 'user' } } },
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])
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await b1.dispose()
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// A fresh backend loads it: the interrupted (only) turn's real events are
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// preserved and closed with a synthetic turn/end {interrupted} — NOT
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// truncated. The session was materialized, so list() reports it present.
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const b2 = await backend(path)
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const loaded = await b2.ctx.sessionPersistence.load(m.id)
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expect(loaded.events.map(e => e.type)).toEqual(['turn/start', 'user/message', 'turn/end'])
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expect(loaded.events.at(-1)!.type === 'turn/end' && loaded.events.at(-1)!.data).toMatchObject({ reason: { kind: 'interrupted' } })
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expect((await b2.ctx.sessionPersistence.list()).map(x => x.id)).toContain(m.id)
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await b2.dispose()
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})
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it('rejects opening a database whose schema version is not the current build (newer OR older)', async () => {
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const path = await freshDbPath()
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openDatabase(path, 'wal').close() // stamp user_version = SCHEMA_VERSION
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// Bump user_version past what this build supports.
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const dbNewer = openDatabase(path, 'wal')
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dbNewer.exec(`PRAGMA user_version = ${SCHEMA_VERSION + 1}`)
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dbNewer.close()
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expect(() => openDatabase(path, 'wal')).toThrow(/incompatible with this build/)
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// A stale OLDER version (e.g. a pre-summary-drop v1 DB) is also rejected —
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// we do not migrate (unreleased software, no backward-compat).
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const olderPath = await freshDbPath()
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openDatabase(olderPath, 'wal').close()
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const dbOlder = openDatabase(olderPath, 'wal')
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dbOlder.exec('PRAGMA user_version = 1')
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dbOlder.close()
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expect(() => openDatabase(olderPath, 'wal')).toThrow(/incompatible with this build/)
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})
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it('rejects a sibling v3 database (the merge-collided version) rather than opening it against missing columns', async () => {
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// Two unmerged branches each shipped a DISTINCT layout under user_version 3
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// (one added only `seed_length`, the other only the surface columns). The
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// merged build is v4; an on-disk v3 is ambiguous and is missing at least one
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// of this build's columns, so it MUST be rejected, not opened. Stamp a v3
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// database and confirm the version check refuses it.
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const path = await freshDbPath()
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openDatabase(path, 'wal').close() // creates + stamps user_version = SCHEMA_VERSION (4)
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const db = openDatabase(path, 'wal')
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db.exec('PRAGMA user_version = 3')
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db.close()
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expect(() => openDatabase(path, 'wal')).toThrow(/schema version 3, incompatible with this build/)
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})
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it('a corrupt-JSON row in the uncommitted tail is discarded on load, not unloadable', async () => {
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const path = await freshDbPath()
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const m = meta('corrupt-tail')
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const b1 = await backend(path)
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await b1.ctx.sessionPersistence.create(m)
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await b1.ctx.sessionPersistence.append(m.id, oneTurnLog()) // committed: seqs 0..5
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await b1.dispose()
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// Hand-insert a torn tail row (seq 6, no closing turn/end) whose `data` is
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// invalid JSON. The contract: only a parse error in the COMMITTED region is
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// unloadable; a torn tail must be discarded. scanRows finds the last
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// turn/end on the seq+type columns (never parsing tail `data`), so the
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// unparsable row after it bounds the preserved prefix and is deleted by load.
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const db = openDatabase(path, 'wal')
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db.prepare('INSERT INTO events (session_id, seq, type, time, data) VALUES (?, 6, ?, 7, ?)')
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.run(m.id, 'turn/start', '{not valid json')
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db.close()
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const b2 = await backend(path)
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const loaded = await b2.ctx.sessionPersistence.load(m.id)
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expect(loaded.events).toEqual(oneTurnLog()) // torn tail discarded, committed intact (turn 1 already balanced → no closers)
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// load physically deleted the corrupt tail row, so a fresh append continues.
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await b2.ctx.sessionPersistence.append(m.id, [
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{ type: 'turn/start', seq: 6, time: 8, data: { turn: 2, trigger: { kind: 'message', source: { kind: 'user' } } } },
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{ type: 'turn/end', seq: 7, time: 9, data: { turn: 2, reason: { kind: 'completed' } } },
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])
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const reloaded = await b2.ctx.sessionPersistence.load(m.id)
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expect(reloaded.events.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7])
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await b2.dispose()
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})
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it('append rolls back the whole batch on a mid-batch seq collision (transaction)', async () => {
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const fiber = await ctx.plugin(SessionPersistenceSqlite, { path: ':memory:' })
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const m = meta('rollback')
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await ctx.sessionPersistence.create(m)
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await ctx.sessionPersistence.append(m.id, oneTurnLog()) // seqs 0..5
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// A batch that re-states an already-stored seq must be rejected and leave
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// the stored log unchanged (the UNIQUE (session_id, seq) constraint fires
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// inside the transaction → ROLLBACK).
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await expect(ctx.sessionPersistence.append(m.id, oneTurnLog())).rejects.toThrow()
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const loaded = await ctx.sessionPersistence.load(m.id)
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expect(loaded.events).toEqual(oneTurnLog()) // unchanged
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await fiber.dispose()
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})
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it('persists across separate backend instances over the same file', async () => {
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const path = await freshDbPath()
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const m = meta('persist', '/proj')
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const ctx1 = new Context()
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await ctx1.plugin(SessionStore)
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const fiber1 = await ctx1.plugin(SessionPersistenceSqlite, { path })
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await ctx1.sessionPersistence.create(m)
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await ctx1.sessionPersistence.append(m.id, oneTurnLog())
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await fiber1.dispose()
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const ctx2 = new Context()
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await ctx2.plugin(SessionStore)
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const fiber2 = await ctx2.plugin(SessionPersistenceSqlite, { path })
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expect((await ctx2.sessionPersistence.list()).map(x => x.id)).toContain(m.id)
|
|
const loaded = await ctx2.sessionPersistence.load(m.id)
|
|
expect(loaded.meta).toMatchObject({ id: m.id, cwd: '/proj' })
|
|
expect(loaded.events).toEqual(oneTurnLog())
|
|
await fiber2.dispose()
|
|
})
|
|
|
|
it('exposes the schema version constant', () => {
|
|
expect(SCHEMA_VERSION).toBe(4)
|
|
})
|
|
})
|
|
|
|
describe('SessionPersistenceSqlite: edge cases', () => {
|
|
it('append rolls back and rethrows when an event INSERT fails inside the transaction', async () => {
|
|
const path = await freshDbPath()
|
|
const m = meta('rollback-insert')
|
|
const b1 = await backend(path)
|
|
await b1.ctx.sessionPersistence.create(m)
|
|
await b1.ctx.sessionPersistence.append(m.id, oneTurnLog())
|
|
|
|
// A SECOND backend over the same file loads the session first, so it adopts
|
|
// cursor 6 (the committed length) into its OWN in-memory state.
|
|
const b2 = await backend(path)
|
|
await b2.ctx.sessionPersistence.load(m.id) // cursor 6 in b2
|
|
const turn2: SessionEvent[] = [
|
|
{ type: 'turn/start', seq: 6, time: 7, data: { turn: 2, trigger: { kind: 'message', source: { kind: 'user' } } } },
|
|
{ type: 'turn/end', seq: 7, time: 8, data: { turn: 2, reason: { kind: 'completed' } } },
|
|
]
|
|
// b1 commits seq 6..7 first.
|
|
await b1.ctx.sessionPersistence.append(m.id, turn2)
|
|
// b2 still thinks its cursor is 6, so this batch passes the contiguity check
|
|
// but its INSERT of seq 6 hits the UNIQUE (session_id, seq) constraint
|
|
// mid-transaction → ROLLBACK + rethrow.
|
|
await expect(b2.ctx.sessionPersistence.append(m.id, turn2)).rejects.toThrow(/UNIQUE/)
|
|
// b1's turn is intact; b2's rolled-back attempt left nothing extra.
|
|
const loaded = await b1.ctx.sessionPersistence.load(m.id)
|
|
expect(loaded.events.map(e => e.seq)).toEqual([0, 1, 2, 3, 4, 5, 6, 7])
|
|
await b1.dispose()
|
|
await b2.dispose()
|
|
})
|
|
|
|
it('journalMode config reaches the database (default wal, rollback modes selectable)', async () => {
|
|
// :memory: databases always report journal_mode=memory, so probe file DBs.
|
|
const walPath = await freshDbPath()
|
|
const bWal = await backend(walPath)
|
|
await bWal.ctx.sessionPersistence.create(meta('jm-wal'))
|
|
expect((openDatabase(walPath, 'wal').prepare('PRAGMA journal_mode').get() as { journal_mode: string }).journal_mode).toBe('wal')
|
|
await bWal.dispose()
|
|
|
|
const deletePath = await freshDbPath()
|
|
const ctx = new Context()
|
|
await ctx.plugin(SessionStore)
|
|
const fiber = await ctx.plugin(SessionPersistenceSqlite, { path: deletePath, journalMode: 'delete' })
|
|
await ctx.sessionPersistence.create(meta('jm-delete'))
|
|
// Probe through a second connection: journal_mode=delete is a per-database
|
|
// property only insofar as no WAL files exist — assert the world, not the
|
|
// backend's self-report (no -wal sidecar after writes in delete mode).
|
|
const db = openDatabase(deletePath, 'delete')
|
|
expect((db.prepare('PRAGMA journal_mode').get() as { journal_mode: string }).journal_mode).toBe('delete')
|
|
db.close()
|
|
expect(existsSync(`${deletePath}-wal`)).toBe(false)
|
|
await fiber.dispose()
|
|
})
|
|
|
|
it('HMR: a DIFFERENT session colliding with a materialized on-disk id is rejected', async () => {
|
|
const path = await freshDbPath()
|
|
// Instance 1 materializes a session and disposes.
|
|
const b1 = await backend(path)
|
|
const s1 = b1.ctx.sessions.create(SessionId('hmr-collide'))
|
|
appendLog(s1, oneTurnLog())
|
|
await b1.ctx.parallel('session/flush', s1)
|
|
await b1.dispose()
|
|
|
|
// A fresh context with an UNRELATED live session reusing the id meets a
|
|
// materialized row that is NOT a prefix of its events → reject.
|
|
const ctx = new Context()
|
|
await ctx.plugin(SessionStore)
|
|
let session!: Session
|
|
await ctx.plugin(Object.assign((inner: Context) => {
|
|
session = inner.sessions.create(SessionId('hmr-collide'))
|
|
}, { inject: ['sessions'] }))
|
|
session.append('turn/start', { turn: 9, trigger: { kind: 'message', source: { kind: 'user' } } })
|
|
await ctx.plugin(SessionPersistenceSqlite, { path })
|
|
await expect(ctx.parallel('session/flush', session)).rejects.toThrow(/id collision/)
|
|
await ctx.fiber.dispose()
|
|
})
|
|
})
|
|
|
|
describe('surface field round-trip', () => {
|
|
it('rowToEvent parses surface fields from EventRow columns', () => {
|
|
const row: EventRow = {
|
|
seq: 0, type: 'assistant/message', time: 1,
|
|
data: JSON.stringify({ turn: 1, step: 1, content: [] }),
|
|
source_event_seqs: JSON.stringify([3, 5]),
|
|
surface_op: JSON.stringify('append'),
|
|
}
|
|
const event = rowToEvent(row)
|
|
expect((event as SurfaceEvent).sourceEventSeqs).toEqual([3, 5])
|
|
expect((event as SurfaceEvent).surfaceOp).toBe('append')
|
|
})
|
|
|
|
it('rowToEvent handles replace surfaceOp object', () => {
|
|
const row: EventRow = {
|
|
seq: 0, type: 'assistant/message', time: 1,
|
|
data: JSON.stringify({ turn: 1, step: 1, content: [] }),
|
|
source_event_seqs: JSON.stringify([0, 1]),
|
|
surface_op: JSON.stringify({ op: 'replace', start: 0, end: 1 }),
|
|
}
|
|
const event = rowToEvent(row)
|
|
expect((event as SurfaceEvent).sourceEventSeqs).toEqual([0, 1])
|
|
expect((event as SurfaceEvent).surfaceOp).toEqual({ op: 'replace', start: 0, end: 1 })
|
|
})
|
|
|
|
it('scanRows with surface columns reconstructs events with surface fields', () => {
|
|
const rows: EventRow[] = [
|
|
{ seq: 0, type: 'user/message', time: 1,
|
|
data: JSON.stringify({ content: [{ type: 'text', text: 'hi' }], source: { kind: 'user' } }),
|
|
source_event_seqs: null, surface_op: '{"op":"replace","start":0,"end":0}' },
|
|
{ seq: 1, type: 'turn/end', time: 2,
|
|
data: JSON.stringify({ turn: 1, reason: { kind: 'completed' } }),
|
|
source_event_seqs: null, surface_op: null },
|
|
]
|
|
const { preserved } = scanRows(rows)
|
|
expect(preserved).toHaveLength(2)
|
|
expect((preserved[0]! as SurfaceEvent).surfaceOp).toEqual({ op: 'replace', start: 0, end: 0 })
|
|
expect((preserved[0]! as SurfaceEvent).sourceEventSeqs).toBeUndefined()
|
|
expect((preserved[1] as SessionEvent<SurfaceEventType>).surfaceOp).toBeUndefined()
|
|
})
|
|
|
|
it('append and load round-trips surface fields through SQLite', async () => {
|
|
const ctx = new Context()
|
|
await ctx.plugin(SessionStore)
|
|
const fiber = await ctx.plugin(SessionPersistenceSqlite, { path: ':memory:' })
|
|
const session = ctx.sessions.create(SessionId('roundtrip-surface'))
|
|
session.append('turn/start', { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } })
|
|
session.append('user/message', { content: [{ type: 'text', text: 'hi' }], source: { kind: 'user' } }, { surfaceOp: 'append' })
|
|
session.append('assistant/message', { turn: 1, step: 1, content: [] }, { surfaceOp: 'append', sourceEventSeqs: [0] })
|
|
session.append('turn/end', { turn: 1, reason: { kind: 'completed' } })
|
|
await ctx.parallel('session/flush', session)
|
|
const loaded = await ctx.sessionPersistence.load(SessionId('roundtrip-surface'))
|
|
expect(loaded.events).toHaveLength(4)
|
|
const um = loaded.events[1]!
|
|
expect((um as SurfaceEvent).surfaceOp).toBe('append')
|
|
expect((um as SurfaceEvent).sourceEventSeqs).toBeUndefined()
|
|
const am = loaded.events[2]!
|
|
expect((am as SurfaceEvent).surfaceOp).toBe('append')
|
|
expect((am as SurfaceEvent).sourceEventSeqs).toEqual([0])
|
|
await fiber.dispose()
|
|
})
|
|
|
|
it('persists events with surfaceOp but no sourceEventSeqs (covers null branch in surfaceBindings)', async () => {
|
|
const ctx = new Context()
|
|
await ctx.plugin(SessionStore)
|
|
const fiber = await ctx.plugin(SessionPersistenceSqlite, { path: ':memory:' })
|
|
const session = ctx.sessions.create(SessionId('surface-noseq'))
|
|
session.append('turn/start', { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } })
|
|
session.append('steering/message', { turn: 1, content: [], source: { kind: 'user' } }, { surfaceOp: 'append' })
|
|
session.append('turn/end', { turn: 1, reason: { kind: 'completed' } })
|
|
await ctx.parallel('session/flush', session)
|
|
const loaded = await ctx.sessionPersistence.load(SessionId('surface-noseq'))
|
|
expect((loaded.events[1]! as SurfaceEvent).surfaceOp).toBe('append')
|
|
expect((loaded.events[1]! as SurfaceEvent).sourceEventSeqs).toBeUndefined()
|
|
await fiber.dispose()
|
|
})
|
|
})
|