mirror of
https://github.com/deepseek-ai/deepseek-harness
synced 2026-08-15 21:04:50 +00:00
484 lines
21 KiB
TypeScript
484 lines
21 KiB
TypeScript
import { describe, expect, it, vi } from 'vitest'
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import { Context } from 'cordis'
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import LlmService from '@deepseek-ai/dsh-llm'
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import SessionStore, { SessionId } from '@deepseek-ai/dsh-session'
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import SystemPrompt from '@deepseek-ai/dsh-system-prompt'
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import ToolRegistry from '@deepseek-ai/dsh-tools'
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import AgentRegistry, { type Agent } from '@deepseek-ai/dsh-agent'
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import AgentLoop from '@deepseek-ai/dsh-agent-loop'
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import { bindReactLoopAgentContext, prepareReactLoopAgent, type ReactLoopAgent } from '../src/agent.ts'
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import { MockAdapter, textResponse } from './mock-adapter.ts'
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function driverDone(agent: Agent): Promise<void> {
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return (agent as Agent & { done: Promise<void> }).done
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}
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async function harness(adapter: MockAdapter) {
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const ctx = new Context()
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await ctx.plugin(LlmService)
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await ctx.plugin(SessionStore)
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await ctx.plugin(SystemPrompt)
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await ctx.plugin(ToolRegistry)
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await ctx.plugin(AgentRegistry)
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await ctx.plugin(AgentLoop, { agents: [] })
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ctx.llm.registerAdapter(['mock'], adapter)
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return ctx
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}
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function waitForIdle(ctx: Context, agent: Agent): Promise<void> {
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return new Promise((resolve) => {
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const dispose = ctx.on('agent/status', (subject, status) => {
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if (subject === agent && status === 'idle') {
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dispose()
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resolve()
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}
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})
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})
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}
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function waitForStatus(ctx: Context, agent: Agent, expected: Agent['status']): Promise<void> {
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return new Promise((resolve) => {
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const dispose = ctx.on('agent/status', (subject, status) => {
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if (subject === agent && status === expected) {
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dispose()
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resolve()
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}
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})
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})
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}
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function send(agent: Agent, text: string) {
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agent.send([{ type: 'text', text }])
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}
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describe('Agent', () => {
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it('rejects access before context binding and a second driver for one session', async () => {
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const session = ctx.sessions.create(SessionId('exclusive-driver'))
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const prepared = prepareReactLoopAgent(ctx, SessionId('first-driver'), { model: 'mock' }, session)
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expect(() => prepared.agent.ctx).toThrow('context is not bound')
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expect(() => prepareReactLoopAgent(ctx, SessionId('second-driver'), { model: 'mock' }, session))
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.toThrow('already has a concrete agent driver')
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await prepared.dispose()
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await ctx.fiber.dispose()
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})
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it('borrows caller options and binds its scoped context exactly once', async () => {
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const ctx = await harness(new MockAdapter([textResponse('unused')]))
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const options = { model: 'mock' }
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const agent = ctx.agentLoop.create(SessionId('owned-bindings'), options)
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expect(agent.options).toBe(options)
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expect(agent.id).toBe('owned-bindings')
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expect(agent.session.id).toBe(agent.id)
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expect(() => { bindReactLoopAgentContext(agent as ReactLoopAgent, new Context()) }).toThrow(/context is already bound/)
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await ctx.fiber.dispose()
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})
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it('send() throws after disposal', async () => {
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const adapter = new MockAdapter(['hang'])
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const ctx = await harness(adapter)
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let agent!: Agent
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const fiber = await ctx.plugin(Object.assign((inner: Context) => {
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agent = inner.agentLoop.create(SessionId('scoped'), { model: 'mock' })
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}, { inject: ['agentLoop'] }))
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send(agent, 'go')
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await new Promise(r => setTimeout(r, 30))
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await fiber.dispose()
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await driverDone(agent)
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expect(() => { agent.send([{ type: 'text', text: 'too late' }]) }).toThrow('disposed')
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})
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it('steer() throws after disposal', async () => {
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const adapter = new MockAdapter(['hang'])
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const ctx = await harness(adapter)
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let agent!: Agent
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const fiber = await ctx.plugin(Object.assign((inner: Context) => {
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agent = inner.agentLoop.create(SessionId('scoped'), { model: 'mock' })
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}, { inject: ['agentLoop'] }))
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send(agent, 'go')
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await new Promise(r => setTimeout(r, 30))
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await fiber.dispose()
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await driverDone(agent)
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expect(() => { agent.steer([{ type: 'text', text: 'too late' }]) }).toThrow('disposed')
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})
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it('inject() throws after disposal', async () => {
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const adapter = new MockAdapter(['hang'])
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const ctx = await harness(adapter)
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let agent!: Agent
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const fiber = await ctx.plugin(Object.assign((inner: Context) => {
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agent = inner.agentLoop.create(SessionId('scoped'), { model: 'mock' })
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}, { inject: ['agentLoop'] }))
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send(agent, 'go')
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await new Promise(r => setTimeout(r, 30))
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await fiber.dispose()
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await driverDone(agent)
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expect(() => { agent.inject([{ type: 'text', text: 'too late' }]) }).toThrow('disposed')
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})
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it('inject() decides enclosure from the LOG (open turn), not agent status', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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// Simulate an OPEN turn in the log while the agent is idle (status is not a
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// reliable open-turn signal). inject must append into that open turn, NOT
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// wrap a new one.
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agent.session.append('turn/start', { turn: 1, trigger: { kind: 'message', source: { kind: 'user' } } })
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agent.inject([{ type: 'text', text: 'mid' }], { source: { kind: 'plugin', plugin: 'p' } })
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expect(agent.session.events.filter(e => e.type === 'turn/start')).toHaveLength(1)
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expect(agent.session.events.at(-1)!.type).toBe('context/message')
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// Close the turn; now inject must wrap its own one-shot injection turn.
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agent.session.append('turn/end', { turn: 1, reason: { kind: 'completed' } })
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agent.inject([{ type: 'text', text: 'after' }], { source: { kind: 'plugin', plugin: 'p' } })
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const starts = agent.session.events.filter(e => e.type === 'turn/start')
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expect(starts).toHaveLength(2)
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const last = starts[1]!
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expect(last.type === 'turn/start' && last.data.trigger.kind).toBe('injection')
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expect(agent.session.events.at(-1)!.type).toBe('turn/end') // turn-enclosed
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})
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it('idle inject() contains a failing flush (logs, does not throw into the caller)', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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// A persistence-like listener whose flush rejects.
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ctx.on('session/flush', () => { throw new Error('disk gone') })
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const warn = vi.spyOn(ctx.logger, 'warn').mockImplementation(() => undefined)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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// inject() is synchronous and fires a fire-and-forget flush; a rejecting
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// flush must be contained (logged), never thrown into the caller.
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expect(() => { agent.inject([{ type: 'text', text: 'notice' }], { source: { kind: 'plugin', plugin: 'p' } }) }).not.toThrow()
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await new Promise(r => setTimeout(r, 20)) // let the contained flush settle
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expect(warn).toHaveBeenCalledWith(expect.stringContaining('flush after idle injection failed'))
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warn.mockRestore()
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})
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it('idle inject() closes its one-shot turn AND still checkpoints even if the append throws', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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let flushes = 0
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ctx.on('session/flush', () => { flushes += 1 })
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// Non-serializable injected content makes Session.append throw AFTER
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// turn/start was recorded. The turn/end must still be appended (finally),
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// AND the durability checkpoint must still fire — the balanced turn is in
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// memory and a crash before the next turn/dispose would otherwise lose it.
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expect(() => {
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agent.inject([{ type: 'text', text: 'x', bad: 1n } as never], { source: { kind: 'plugin', plugin: 'p' } })
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}).toThrow(/non-JSON-serializable/)
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const types = agent.session.events.map(e => e.type)
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expect(types).toEqual(['turn/start', 'turn/end']) // balanced, no open turn
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await new Promise(r => setTimeout(r, 10)) // let the fire-and-forget flush run
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expect(flushes).toBe(1) // checkpoint fired despite the throw
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})
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it('idle inject() still checkpoints when a listener throws on the synthetic turn/end', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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let flushes = 0
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ctx.on('session/flush', () => { flushes += 1 })
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// Session contains a throwing post-commit turn/end observer. The accepted
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// boundary still triggers the idle injection's durability checkpoint.
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let threw = false
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ctx.on('session/event', (_s, event) => {
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if (!threw && event.type === 'turn/end') { threw = true; throw new Error('boom turn/end') }
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})
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expect(() => { agent.inject([{ type: 'text', text: 'notice' }], { source: { kind: 'plugin', plugin: 'p' } }) }).not.toThrow()
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const types = agent.session.events.map(e => e.type)
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expect(types).toEqual(['turn/start', 'context/message', 'turn/end']) // balanced
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await new Promise(r => setTimeout(r, 10))
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expect(flushes).toBe(1) // checkpoint fired despite the throwing turn/end listener
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})
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it('idle inject() reports a failing flush via agent/error (step 0) AND the logger', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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// A non-Error rejection exercises the String() normalization branch.
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ctx.on('session/flush', () => { throw 'disk gone' })
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const warn = vi.spyOn(ctx.logger, 'warn').mockImplementation(() => undefined)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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const errors: { turn: number; step: number; message: string }[] = []
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ctx.on('agent/error', (_a, turn, step, error) => void errors.push({ turn, step, message: error.message }))
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agent.inject([{ type: 'text', text: 'notice' }], { source: { kind: 'plugin', plugin: 'p' } })
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await new Promise(r => setTimeout(r, 20)) // let the contained flush settle
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// Reported via agent/error (step 0 — the idle-injection convention) so
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// plugins monitoring agent/error see idle-injection persistence failures,
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// mirroring the loop's post-turn/end flush path. A non-Error throw is
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// normalized to an Error.
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expect(errors).toEqual([{ turn: 1, step: 0, message: 'disk gone' }])
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expect(warn).toHaveBeenCalledWith(expect.stringContaining('flush after idle injection failed'))
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warn.mockRestore()
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})
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it('idle inject() with a non-serializable source opens no turn (nothing to close)', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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// A non-serializable source makes the turn/start append throw BEFORE the
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// event is pushed (Session.append validates before push), so NO turn opens.
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// The finally's isTurnOpen() guard sees no open turn and appends nothing —
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// the log stays empty, not left with a dangling turn/start.
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expect(() => {
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agent.inject([{ type: 'text', text: 'x' }], { source: { kind: 'plugin', plugin: 'p', bad: 1n } as never })
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}).toThrow(/non-JSON-serializable/)
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expect(agent.session.events).toHaveLength(0)
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})
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it('steer() when idle falls through to send() and starts a turn', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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// steer while idle delegates to send
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agent.steer([{ type: 'text', text: 'steer idle' }], { source: { kind: 'plugin', plugin: 'test' } })
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await waitForIdle(ctx, agent)
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// The message was recorded as a user-level message (send path)
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expect(agent.session.events.some(e => e.type === 'user/message')).toBe(true)
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expect(adapter.requests).toHaveLength(1)
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})
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it('disposer is idempotent (double-stop)', async () => {
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// Create a bare Agent and start it through the package-internal
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// test seam. Then call its disposer twice — the second call hits the
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// early-return branch.
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const session = ctx.sessions.create(SessionId('test'))
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const prepared = prepareReactLoopAgent(ctx, SessionId('bare'), { model: 'mock' }, session)
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const { agent } = prepared
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// Start the loop to get the disposer; the agent waits for messages
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// (idle, never-resolving cancel), so it will stay idle.
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prepared.markPublished()
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const dispose = prepared.startDriver()
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// First dispose
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const firstDisposal = dispose()
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expect(agent.status).toBe('disposed')
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await firstDisposal
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// Second dispose — idempotent, no throw
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await expect(dispose()).resolves.toBeUndefined()
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expect(agent.status).toBe('disposed')
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})
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it('a pre-start disposal makes a later driver-start attempt inert', async () => {
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const ctx = new Context()
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await ctx.plugin(SessionStore)
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const session = ctx.sessions.create(SessionId('pre-start-dispose'))
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const prepared = prepareReactLoopAgent(ctx, SessionId('pre-start-dispose'), { model: 'mock' }, session)
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await prepared.dispose()
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expect(prepared.agent.status).toBe('disposed')
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const dispose = prepared.startDriver()
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await dispose()
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await expect(prepared.agent.done).resolves.toBeUndefined()
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expect(prepared.agent.session.events).toEqual([])
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await ctx.fiber.dispose()
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})
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it('setting the same status does not emit agent/status again', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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const statuses: string[] = []
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ctx.on('agent/status', (subject, status) => {
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if (subject === agent) statuses.push(status)
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})
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send(agent, 'hi')
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await waitForIdle(ctx, agent)
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// After the turn, agent is idle. Send again to trigger another attempt
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// to go idle — but it's already idle, so no emission.
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const idleTransitionCount = statuses.filter(s => s === 'idle').length
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expect(idleTransitionCount).toBe(1) // only the final transition from running
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})
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it('whenIdle() resolves immediately when the agent is not running', async () => {
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const adapter = new MockAdapter([textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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// Fresh agent is idle — whenIdle() takes the not-running fast path and
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// resolves without subscribing. await must not hang.
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await agent.whenIdle()
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expect(agent.status).not.toBe('running')
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})
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it('whenIdle() waits for queued work that has not flipped status yet', async () => {
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const adapter = new MockAdapter(['hang'])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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send(agent, 'queued')
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let settled = false
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const idle = agent.whenIdle().then(() => { settled = true })
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await Promise.resolve()
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expect(settled).toBe(false)
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await waitForStatus(ctx, agent, 'running')
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agent.cancel('done')
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await idle
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expect(settled).toBe(true)
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expect(agent.status).toBe('idle')
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})
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it('whenIdle() awaits the running→idle transition, ignoring other subjects/running events', async () => {
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const adapter = new MockAdapter([textResponse('ok'), textResponse('ok')])
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const ctx = await harness(adapter)
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const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
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const other = ctx.agentLoop.create(SessionId('a2'), { model: 'mock' })
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// Drive `agent` into `running`, then await whenIdle() — it subscribes to
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// agent/status and resolves on the first transition out of running.
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const running = new Promise<void>((resolve) => {
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const dispose = ctx.on('agent/status', (subject, status) => {
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if (subject === agent && status === 'running') { dispose(); resolve() }
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})
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})
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send(agent, 'go')
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await running
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expect(agent.status).toBe('running')
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// While `agent`'s whenIdle is pending, churn `other` through running→idle:
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// every status event it emits hits whenIdle's guard with `subject !== this`,
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// so the wait must ignore them and only resolve on `agent`'s own idle.
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send(other, 'go')
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await agent.whenIdle()
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expect(agent.status).toBe('idle')
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})
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it('whenIdle() subscribed while running resolves via done when the agent is then disposed', async () => {
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// Covers the waiter's disposed arm: whenIdle() queues an internal waiter
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// while running (not the fast path), then the disposer settles it and chains
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// `done` (loop exit), not an eager resolve. A bare Agent + direct
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// internal driver disposer keeps the emit synchronous.
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const ctx = new Context()
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await ctx.plugin(LlmService)
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await ctx.plugin(SessionStore)
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await ctx.plugin(SystemPrompt)
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await ctx.plugin(ToolRegistry)
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await ctx.plugin(AgentRegistry)
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const adapter = new MockAdapter(['hang'])
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ctx.llm.registerAdapter(['mock'], adapter)
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const session = ctx.sessions.create(SessionId('bare'))
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const prepared = prepareReactLoopAgent(ctx, SessionId('bare'), { model: 'mock' }, session)
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const { agent } = prepared
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prepared.markPublished()
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const dispose = prepared.startDriver()
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agent.send([{ type: 'text', text: 'go' }])
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await new Promise(r => setTimeout(r, 30))
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expect(agent.status).toBe('running')
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const idle = agent.whenIdle() // queues an internal waiter (running)
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const disposal = dispose() // settles the waiter synchronously; whenIdle chains done
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await idle
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expect(agent.status).toBe('disposed')
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await disposal
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})
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it('whenIdle() subscribed while running survives a FIBER dispose (no hung promise)', async () => {
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// The waiter is internal agent state, NOT an effect-scoped ctx.on listener:
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// disposing the OWNING fiber runs the agent's listener disposers, which would
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// have dropped a ctx.on-based waiter before the 'disposed' transition and
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// hung the promise. With internal waiters, the fiber disposer still settles
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// it. Regression for the round-3 whenIdle finding.
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const adapter = new MockAdapter(['hang'])
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const ctx = await harness(adapter)
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let agent!: Agent
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const fiber = await ctx.plugin(Object.assign((inner: Context) => {
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agent = inner.agentLoop.create(SessionId('scoped'), { model: 'mock' })
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}, { inject: ['agentLoop'] }))
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send(agent, 'go')
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await new Promise(r => setTimeout(r, 30))
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expect(agent.status).toBe('running')
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const idle = agent.whenIdle() // queued while running
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await fiber.dispose() // tears the fiber down (drops agent listeners)
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await idle // must resolve, not hang
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expect(agent.status).toBe('disposed')
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})
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it('whenIdle() on a disposed agent awaits the loop exit (done), not just the status flip', async () => {
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// The disposer emits agent/status('disposed') BEFORE the driver loop
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|
// unwinds, so whenIdle() must chain `done` (true quiescence) on the
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|
// disposed path. Dispose a running agent, then assert whenIdle() resolves
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|
// only after `done` — i.e. the loop has actually exited.
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|
const adapter = new MockAdapter(['hang'])
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|
const ctx = await harness(adapter)
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|
let agent!: Agent
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|
const fiber = await ctx.plugin(Object.assign((inner: Context) => {
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|
agent = inner.agentLoop.create(SessionId('scoped'), { model: 'mock' })
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|
}, { inject: ['agentLoop'] }))
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|
send(agent, 'go')
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|
await new Promise(r => setTimeout(r, 30))
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|
|
|
let doneResolved = false
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|
void driverDone(agent).then(() => { doneResolved = true })
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|
await fiber.dispose() // sets status disposed, aborts, drains the loop
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|
expect(agent.status).toBe('disposed')
|
|
|
|
// whenIdle() must not resolve before `done` has — chaining `done` is the
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|
// quiescence guarantee. By here dispose() awaited the loop, so done is
|
|
// settled; whenIdle resolves and done is observed resolved.
|
|
await agent.whenIdle()
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|
expect(doneResolved).toBe(true)
|
|
})
|
|
|
|
it('contains a throwing agent/status listener on the running transition', async () => {
|
|
const adapter = new MockAdapter([textResponse('ok')])
|
|
const ctx = await harness(adapter)
|
|
const warn = vi.spyOn(ctx.logger, 'warn').mockImplementation(() => undefined)
|
|
const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
|
|
ctx.on('agent/status', (_subject, status) => {
|
|
if (status === 'running') throw new Error('bad running listener')
|
|
})
|
|
|
|
send(agent, 'go')
|
|
await agent.whenIdle()
|
|
|
|
expect(adapter.requests).toHaveLength(1)
|
|
expect(agent.status).toBe('idle')
|
|
expect(warn).toHaveBeenCalledWith(expect.stringContaining('agent event "agent/status" listener threw'))
|
|
warn.mockRestore()
|
|
})
|
|
|
|
it('contains a throwing agent/status listener on the idle transition', async () => {
|
|
const adapter = new MockAdapter([textResponse('ok')])
|
|
const ctx = await harness(adapter)
|
|
const warn = vi.spyOn(ctx.logger, 'warn').mockImplementation(() => undefined)
|
|
const agent = ctx.agentLoop.create(SessionId('a1'), { model: 'mock' })
|
|
ctx.on('agent/status', (_subject, status) => {
|
|
if (status === 'idle') throw new Error('bad idle listener')
|
|
})
|
|
|
|
send(agent, 'go')
|
|
await agent.whenIdle()
|
|
|
|
expect(adapter.requests).toHaveLength(1)
|
|
expect(agent.status).toBe('idle')
|
|
expect(warn).toHaveBeenCalledWith(expect.stringContaining('agent event "agent/status" listener threw'))
|
|
warn.mockRestore()
|
|
})
|
|
})
|