import { afterEach, describe, expect, it } from 'vitest' import { Context } from 'cordis' import { mkdtemp, rm } from 'node:fs/promises' import { tmpdir } from 'node:os' import { join } from 'node:path' import LlmService from '@deepseek-ai/dsh-llm' import SessionStore, { Session, SessionId } from '@deepseek-ai/dsh-session' import type { SessionEvent } from '@deepseek-ai/dsh-session' import SystemPrompt from '@deepseek-ai/dsh-system-prompt' import ToolRegistry from '@deepseek-ai/dsh-tools' import AgentRegistry, { type Agent } from '@deepseek-ai/dsh-agent' import SessionPersistenceJsonl from '@deepseek-ai/dsh-session-persistence-jsonl' import AgentLoop from '@deepseek-ai/dsh-agent-loop' import { MockAdapter, textResponse } from './mock-adapter.ts' const dirs: string[] = [] afterEach(async () => { for (const d of dirs.splice(0)) await rm(d, { recursive: true, force: true }) }) async function persistentHarness(adapter: MockAdapter): Promise<{ ctx: Context; root: string }> { const root = await mkdtemp(join(tmpdir(), 'dsh-resume-')) dirs.push(root) return { ctx: await mountPersistentHarness(root, adapter), root } } async function mountPersistentHarness(root: string, adapter: MockAdapter): Promise { const ctx = new Context() await ctx.plugin(LlmService) await ctx.plugin(SessionStore) await ctx.plugin(SystemPrompt) await ctx.plugin(ToolRegistry) await ctx.plugin(AgentRegistry) await ctx.plugin(AgentLoop, { agents: [] }) await ctx.plugin(SessionPersistenceJsonl, { root }) ctx.llm.registerAdapter(['mock'], adapter) return ctx } async function persistSession(sessionId: SessionId): Promise { const { ctx, root } = await persistentHarness(new MockAdapter([textResponse('seed')])) // Persistence deliberately has no artifact for a truly empty session. A // balanced completed turn is the smallest resumable log and avoids running // the model merely to construct this lifecycle fixture. const seed: SessionEvent[] = [ { type: 'turn/start', seq: 0, time: 1, data: { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } } }, { type: 'turn/end', seq: 1, time: 2, data: { turn: 1, reason: { kind: 'completed' } } }, ] const session = ctx.sessions.create(sessionId, { seed }) await ctx.sessions.flush(session) await ctx.fiber.dispose() return root } function waitForIdle(ctx: Context, agent: Agent): Promise { return new Promise((resolve) => { const dispose = ctx.on('agent/status', (subject, status) => { if (subject === agent && status === 'idle') { dispose(); resolve() } }) }) } /** Fail a lifecycle regression promptly instead of waiting for Vitest's suite timeout. */ async function promptly(task: Promise): Promise { const timeout = Promise.withResolvers() const timer = setTimeout(() => { timeout.reject(new Error('lifecycle task did not settle promptly')) }, 1000) try { return await Promise.race([task, timeout.promise]) } finally { clearTimeout(timer) } } /** Throw an arbitrary callback value to exercise the public unknown-error boundary. */ function throwUnknown(value: unknown): never { throw value } describe('the session-persistence Agent Note: AgentLoop factory create/resume', () => { it('normalizes a non-Error resume publication failure for rollback and rethrows it', async () => { const sessionId = SessionId('unknown-resume-failure-s') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const failure = { source: 'resume' } ctx.on('session/created', () => throwUnknown(failure)) await expect(ctx.agents.resume({ resumeSessionId: sessionId, })).rejects.toBe(failure) expect(ctx.agents.get(SessionId('unknown-resume-failure'))).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() await ctx.fiber.dispose() }) it('createAgent uses the caller-supplied sessionId (not ${id}-session)', async () => { const adapter = new MockAdapter([textResponse('hi')]) const { ctx } = await persistentHarness(adapter) const { agent } = await ctx.agents.create({ sessionId: SessionId('custom-session'), meta: { cwd: '/w' } }) expect(agent.session.id).toBe('custom-session') expect(agent.session.header.cwd).toBe('/w') await ctx.fiber.dispose() }) it('createAgent rejects a duplicate identity without orphaning a session', async () => { const adapter = new MockAdapter([textResponse('hi')]) const { ctx } = await persistentHarness(adapter) const sessionId = SessionId('sess-a') await ctx.agents.create({ sessionId }) await expect(ctx.agents.create({ sessionId })).rejects.toThrow(/already exists/) expect(ctx.sessions.list()).toHaveLength(1) await ctx.fiber.dispose() }) it('resume cannot crash-repair a turn owned by a live agent', async () => { const { ctx } = await persistentHarness(new MockAdapter([textResponse('unused')])) const sessionId = SessionId('live-resume-race') const first = (await ctx.agents.create({ sessionId })).agent first.session.append('turn/start', { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } }) await ctx.sessions.flush(first.session) await expect(ctx.agents.resume({ resumeSessionId: sessionId })) .rejects.toThrow(/live turn is open/) first.session.append('turn/end', { turn: 1, reason: { kind: 'completed' } }) await ctx.sessions.flush(first.session) const loaded = await ctx.sessionPersistence.load(sessionId) expect(loaded.events.map(event => event.type)).toEqual(['turn/start', 'turn/end']) expect(loaded.events.at(-1)).toMatchObject({ type: 'turn/end', data: { reason: { kind: 'completed' } }, }) await ctx.fiber.dispose() }) it('createAgent works without meta (no cwd)', async () => { const adapter = new MockAdapter([textResponse('hi')]) const { ctx } = await persistentHarness(adapter) const { agent } = await ctx.agents.create({ sessionId: SessionId('nometa-session') }) expect(agent.session.id).toBe('nometa-session') expect(agent.session.header.cwd).toBeUndefined() await ctx.fiber.dispose() }) it('resume of a session with no cwd carries an undefined cwd header', async () => { // Lifecycle 1: create a no-cwd session and run a turn. const adapter1 = new MockAdapter([textResponse('a')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const a1 = (await ctx1.agents.create({ sessionId: SessionId('nocwd-sess') })).agent a1.followup([{ type: 'text', text: 'q' }], { source: { kind: 'user' } }) await waitForIdle(ctx1, a1) await ctx1.fiber.dispose() // Lifecycle 2: resume it; the header cwd stays undefined (no-cwd branch). const adapter2 = new MockAdapter([textResponse('b')]) const ctx2 = new Context() await ctx2.plugin(LlmService) await ctx2.plugin(SessionStore) await ctx2.plugin(SystemPrompt) await ctx2.plugin(ToolRegistry) await ctx2.plugin(AgentRegistry) await ctx2.plugin(AgentLoop, { agents: [] }) await ctx2.plugin(SessionPersistenceJsonl, { root }) ctx2.llm.registerAdapter(['mock'], adapter2) const a2 = (await ctx2.agents.resume({ resumeSessionId: SessionId('nocwd-sess') })).agent expect(a2.session.header.cwd).toBeUndefined() await ctx2.fiber.dispose() }) it('agent/session-start fires "startup" for createAgent and "resume" for resume()', async () => { // Lifecycle 1: a fresh createAgent emits session-start with source 'startup'. const adapter1 = new MockAdapter([textResponse('a')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const sources1: string[] = [] ctx1.on('agent/session-start', (_agent, source) => void sources1.push(source)) const a1 = (await ctx1.agents.create({ sessionId: SessionId('start-sess') })).agent expect(sources1).toEqual(['startup']) a1.followup([{ type: 'text', text: 'q' }], { source: { kind: 'user' } }) await waitForIdle(ctx1, a1) await ctx1.fiber.dispose() // Lifecycle 2: resuming the persisted session emits session-start 'resume'. const adapter2 = new MockAdapter([textResponse('b')]) const ctx2 = new Context() await ctx2.plugin(LlmService) await ctx2.plugin(SessionStore) await ctx2.plugin(SystemPrompt) await ctx2.plugin(ToolRegistry) await ctx2.plugin(AgentRegistry) await ctx2.plugin(AgentLoop, { agents: [] }) await ctx2.plugin(SessionPersistenceJsonl, { root }) ctx2.llm.registerAdapter(['mock'], adapter2) const sources2: string[] = [] ctx2.on('agent/session-start', (_agent, source) => void sources2.push(source)) await ctx2.agents.resume({ resumeSessionId: SessionId('start-sess') }) expect(sources2).toEqual(['resume']) await ctx2.fiber.dispose() }) it('resume awaits setup while unpublished, then publishes a fully composed world in order', async () => { const sessionId = SessionId('resume-setup-success') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const gate = Promise.withResolvers() const setupStarted = Promise.withResolvers() const order: string[] = [] ctx.on('session/created', (session) => { expect(ctx.sessions.get(session.id)).toBe(session) expect(ctx.agents.get(sessionId)?.session).toBe(session) order.push('session/created') }) ctx.on('agent/created', (agent) => { expect(agent.status).toBe('idle') order.push('agent/created') }) ctx.on('agent/session-start', (agent) => { expect(() => { agent.cancel({ kind: 'user' }) }).not.toThrow() order.push('agent/session-start') }) const resuming = ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' }, setup: async (agentCtx) => { expect(agentCtx.agent?.id).toBe(sessionId) expect(agentCtx.agent?.session.events).toHaveLength(2) agentCtx.on('session/created', () => void order.push('setup-listener:session/created')) agentCtx.on('agent/created', () => void order.push('setup-listener:agent/created')) order.push('setup:start') setupStarted.resolve(undefined) await gate.promise order.push('setup:end') }, }) await setupStarted.promise expect(ctx.agents.get(sessionId)).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() expect(order).toEqual(['setup:start']) gate.resolve(undefined) const handle = await resuming expect(order).toEqual([ 'setup:start', 'setup:end', 'session/created', 'setup-listener:session/created', 'agent/created', 'setup-listener:agent/created', 'agent/session-start', ]) await handle.dispose() await ctx.fiber.dispose() }) it('successful resume disposal retires its caller-owned transaction effects', async () => { const sessionId = SessionId('resume-retired-effects-s') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const handle = await ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' }, }) const transactionLabels = [ `agentLoop.owner(${sessionId})`, `agentLoop.lifecycle(${sessionId})`, ] expect(ctx.fiber.getEffects().map(effect => effect.label)).toEqual(expect.arrayContaining(transactionLabels)) await handle.dispose() expect(ctx.fiber.getEffects().filter(effect => transactionLabels.includes(effect.label))).toEqual([]) await ctx.fiber.dispose() }) it('resume setup rejection publishes nothing, unwinds, and releases the identity', async () => { const sessionId = SessionId('resume-setup-reject') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const published: string[] = [] ctx.on('session/created', () => void published.push('session/created')) ctx.on('agent/created', () => void published.push('agent/created')) ctx.on('agent/session-start', () => void published.push('agent/session-start')) await expect(ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' }, setup: async () => { await Promise.resolve() throw new Error('resume setup failed') }, })).rejects.toThrow('resume setup failed') expect(published).toEqual([]) expect(ctx.agents.get(sessionId)).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() const retry = await ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' }, }) await retry.dispose() await ctx.fiber.dispose() }) it('owner unload aborts resume setup and cannot publish after the callback settles', async () => { const sessionId = SessionId('resume-setup-owner-unload') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const gate = Promise.withResolvers() const setupStarted = Promise.withResolvers() const published: string[] = [] ctx.on('session/created', () => void published.push('session/created')) ctx.on('agent/created', () => void published.push('agent/created')) let resuming!: ReturnType const owner = await ctx.plugin(Object.assign((inner: Context) => { resuming = inner.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' }, setup: async () => { setupStarted.resolve(undefined) await gate.promise }, }) }, { inject: ['agents'] })) await setupStarted.promise await owner.dispose() await expect(resuming).rejects.toThrow(/owner disposed during setup/) expect(published).toEqual([]) expect(ctx.agents.get(sessionId)).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() gate.resolve(undefined) await Promise.resolve() expect(published).toEqual([]) await ctx.fiber.dispose() }) it('owner unload aborts a never-settling persistence load, releases the identity, and blocks late publication', async () => { const sessionId = SessionId('resume-load-owner-unload') const root = await persistSession(sessionId) const ctx = await mountPersistentHarness(root, new MockAdapter([textResponse('next')])) const snapshot = await ctx.sessionPersistence.load(sessionId) const lateLoad = Promise.withResolvers() const loadStarted = Promise.withResolvers() let loads = 0 ctx.sessionPersistence.load = (id) => { expect(id).toBe(sessionId) loads += 1 if (loads === 1) { loadStarted.resolve(undefined) return lateLoad.promise } return Promise.resolve(structuredClone(snapshot)) } const published: string[] = [] ctx.on('session/created', () => void published.push('session/created')) ctx.on('agent/created', () => void published.push('agent/created')) ctx.on('agent/session-start', () => void published.push('agent/session-start')) let resuming!: ReturnType const owner = await ctx.plugin(Object.assign((inner: Context) => { resuming = inner.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' } }) }, { inject: ['agents'] })) await loadStarted.promise const rejection = expect(promptly(resuming)).rejects.toThrow(/owner disposed during setup/) await promptly(owner.dispose()) expect(published).toEqual([]) expect(ctx.agents.get(sessionId)).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() // owner.dispose() awaited transaction settlement, so the same identities // can be reused before awaiting the public rejection. const retry = await promptly(ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' } })) await rejection expect(loads).toBe(2) expect(published).toEqual(['session/created', 'agent/created', 'agent/session-start']) // Settlement of the abandoned backend promise cannot resume the old // transaction or emit a second publication after the retry owns the ids. lateLoad.resolve(structuredClone(snapshot)) await Promise.resolve() await Promise.resolve() expect(ctx.agents.get(sessionId)).toBe(retry.agent) expect(ctx.sessions.get(sessionId)).toBe(retry.agent.session) expect(published).toEqual(['session/created', 'agent/created', 'agent/session-start']) await retry.dispose() await ctx.fiber.dispose() }) it('AgentLoop unload aborts persistence load and awaits wrapper settlement', async () => { const sessionId = SessionId('resume-load-factory-unload') const root = await persistSession(sessionId) const ctx = new Context() await ctx.plugin(LlmService) await ctx.plugin(SessionStore) await ctx.plugin(SystemPrompt) await ctx.plugin(ToolRegistry) await ctx.plugin(AgentRegistry) const loopFiber = await ctx.plugin(AgentLoop, { agents: [] }) await ctx.plugin(SessionPersistenceJsonl, { root }) ctx.llm.registerAdapter(['mock'], new MockAdapter([textResponse('next')])) const snapshot = await ctx.sessionPersistence.load(sessionId) const lateLoad = Promise.withResolvers() const loadStarted = Promise.withResolvers() ctx.sessionPersistence.load = (id) => { expect(id).toBe(sessionId) loadStarted.resolve(undefined) return lateLoad.promise } const published: string[] = [] ctx.on('session/created', () => void published.push('session/created')) ctx.on('agent/created', () => void published.push('agent/created')) const resuming = ctx.agents.resume({ resumeSessionId: sessionId, agentOptions: { provider: 'mock', model: 'mock' } }) await loadStarted.promise const rejection = expect(promptly(resuming)).rejects.toThrow(/agent loop is not active/) await promptly(loopFiber.dispose()) await rejection expect(published).toEqual([]) expect(ctx.agents.get(sessionId)).toBeUndefined() expect(ctx.sessions.get(sessionId)).toBeUndefined() lateLoad.resolve(structuredClone(snapshot)) await Promise.resolve() await Promise.resolve() expect(published).toEqual([]) await ctx.fiber.dispose() }) it('resume of a forked session preserves the lineage, seed boundary, and delegation depth in the header', async () => { // Lifecycle 1: persist a FORKED session (carries parentSession + seedLength // in its header) by creating it with a complete-turn seed — the write path // materializes the fork (header + seed) on disk. const seed: SessionEvent[] = [ { type: 'turn/start', seq: 0, time: 1, data: { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } } }, { type: 'turn/end', seq: 1, time: 2, data: { turn: 1, reason: { kind: 'completed' } } }, ] const adapter1 = new MockAdapter([textResponse('a')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const forked = ctx1.sessions.create(SessionId('forked-sess'), { seed, meta: { cwd: '/w', parentSession: SessionId('parent-sess'), seedLength: seed.length, delegationDepth: 1 }, }) await ctx1.sessions.flush(forked) await ctx1.fiber.dispose() // Lifecycle 2: resume it; the parentSession + seedLength header survives the // round-trip (exercises resume's parentSession- and seedLength-present // branches). seedLength must come from the PERSISTED header, not from the // resume seed length (which is the whole stored log, not the original // boundary). const adapter2 = new MockAdapter([textResponse('b')]) const ctx2 = new Context() await ctx2.plugin(LlmService) await ctx2.plugin(SessionStore) await ctx2.plugin(SystemPrompt) await ctx2.plugin(ToolRegistry) await ctx2.plugin(AgentRegistry) await ctx2.plugin(AgentLoop, { agents: [] }) await ctx2.plugin(SessionPersistenceJsonl, { root }) ctx2.llm.registerAdapter(['mock'], adapter2) const a2 = (await ctx2.agents.resume({ resumeSessionId: SessionId('forked-sess') })).agent expect(a2.session.header.parentSession).toBe('parent-sess') expect(a2.session.header.cwd).toBe('/w') expect(a2.session.header.seedLength).toBe(seed.length) // The recursion budget survives resume — a dropped depth would let a // resumed child delegate as if it were top-level. expect(a2.session.header.delegationDepth).toBe(1) await ctx2.fiber.dispose() }) it('an idle inject() is flushed durably on its own (survives without explicit flush/dispose)', async () => { // Idle injection creates and flushes a one-shot turn. No explicit flush or // clean disposal follows, so disk presence proves its own checkpoint ran. const adapter1 = new MockAdapter([textResponse('answer')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const a1 = (await ctx1.agents.create({ sessionId: SessionId('inject-sess'), meta: { cwd: '/w' } })).agent a1.followup([{ type: 'text', text: 'q' }], { source: { kind: 'user' } }) await waitForIdle(ctx1, a1) a1.inject([{ type: 'text', text: 'background task 42 finished' }], { source: { kind: 'plugin', plugin: 'tool-bash' } }) // Let inject()'s fire-and-forget flush settle (NO explicit flush/dispose). await new Promise(r => setTimeout(r, 30)) // A SEPARATE backend reads the on-disk log — proving the inject persisted // itself, not a later dispose drain. const probe = new Context() await probe.plugin(SessionStore) await probe.plugin(SessionPersistenceJsonl, { root }) const loaded = await probe.sessionPersistence.load(SessionId('inject-sess')) expect(JSON.stringify(loaded.events)).toContain('background task 42 finished') await probe.fiber.dispose() await ctx1.fiber.dispose() }) it('an idle inject() survives persist + resume (turn-enclosed, not dropped as crash tail)', async () => { // Turn enclosure keeps idle context out of crash-tail repair, so it must // survive persistence and resume. const adapter1 = new MockAdapter([textResponse('answer')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const a1 = (await ctx1.agents.create({ sessionId: SessionId('inject-sess'), meta: { cwd: '/w' } })).agent a1.followup([{ type: 'text', text: 'q' }], { source: { kind: 'user' } }) await waitForIdle(ctx1, a1) a1.inject([{ type: 'text', text: 'background task 42 finished' }], { source: { kind: 'plugin', plugin: 'tool-bash' } }) await ctx1.sessions.flush(a1.session) await ctx1.fiber.dispose() // Lifecycle 2: resume; the injected context is still in the derived history. const adapter2 = new MockAdapter([textResponse('next')]) const ctx2 = new Context() await ctx2.plugin(LlmService) await ctx2.plugin(SessionStore) await ctx2.plugin(SystemPrompt) await ctx2.plugin(ToolRegistry) await ctx2.plugin(AgentRegistry) await ctx2.plugin(AgentLoop, { agents: [] }) await ctx2.plugin(SessionPersistenceJsonl, { root }) ctx2.llm.registerAdapter(['mock'], adapter2) const a2 = (await ctx2.agents.resume({ resumeSessionId: SessionId('inject-sess') })).agent const flat = JSON.stringify(a2.session.deriveMessages()) expect(flat).toContain('background task 42 finished') await ctx2.fiber.dispose() }) it('resume reloads a persisted session: history + turn numbering continue, no duplicate seqs', async () => { // Lifecycle 1: run one full turn, persisting it. const adapter1 = new MockAdapter([textResponse('first answer')]) const { ctx: ctx1, root } = await persistentHarness(adapter1) const a1 = (await ctx1.agents.create({ sessionId: SessionId('sess-resume'), meta: { cwd: '/w' } })).agent a1.followup([{ type: 'text', text: 'first question' }], { source: { kind: 'user' } }) await waitForIdle(ctx1, a1) const events1 = [...a1.session.events] const seqs1 = events1.map(e => e.seq) expect(seqs1).toEqual([...seqs1].sort((x, y) => x - y)) // contiguous await ctx1.fiber.dispose() // Lifecycle 2: a brand-new context over the SAME root; resume the session. const adapter2 = new MockAdapter([textResponse('second answer')]) const ctx2 = new Context() await ctx2.plugin(LlmService) await ctx2.plugin(SessionStore) await ctx2.plugin(SystemPrompt) await ctx2.plugin(ToolRegistry) await ctx2.plugin(AgentRegistry) await ctx2.plugin(AgentLoop, { agents: [] }) await ctx2.plugin(SessionPersistenceJsonl, { root }) ctx2.llm.registerAdapter(['mock'], adapter2) const a2 = (await ctx2.agents.resume({ resumeSessionId: SessionId('sess-resume') })).agent // The resumed session carries the prior history… expect(a2.session.id).toBe('sess-resume') expect(a2.session.events.length).toBe(events1.length) const replay = new Session(SessionId('replay'), events1) expect(a2.session.deriveMessages()).toEqual(replay.deriveMessages()) // …and a new turn continues numbering (turn 2) with contiguous seqs. a2.followup([{ type: 'text', text: 'second question' }], { source: { kind: 'user' } }) await waitForIdle(ctx2, a2) const allSeqs = a2.session.events.map(e => e.seq) expect(allSeqs).toEqual(allSeqs.map((_, i) => i)) // 0..N contiguous, no duplicates const turnStarts = a2.session.events.filter(e => e.type === 'turn/start') expect(turnStarts.map(e => e.type === 'turn/start' && e.data.turn)).toEqual([1, 2]) await ctx2.fiber.dispose() }) it('resume rejects when session persistence is not configured', async () => { // A harness WITHOUT the persistence plugin. const adapter = new MockAdapter([textResponse('x')]) const ctx = new Context() await ctx.plugin(LlmService) await ctx.plugin(SessionStore) await ctx.plugin(SystemPrompt) await ctx.plugin(ToolRegistry) await ctx.plugin(AgentRegistry) await ctx.plugin(AgentLoop, { agents: [] }) ctx.llm.registerAdapter(['mock'], adapter) await expect(ctx.agents.resume({ resumeSessionId: SessionId('nope') })) .rejects.toThrow(/session persistence is not configured/) await ctx.fiber.dispose() }) })