import { describe, expect, it } from 'vitest' import { Context } from 'cordis' import LlmService, { CallId, StreamChunk } from '@deepseek-ai/dsh-llm' import SessionStore, { SessionId, TurnEndReason } from '@deepseek-ai/dsh-session' import SystemPrompt from '@deepseek-ai/dsh-system-prompt' import ToolRegistry, { defineTool } from '@deepseek-ai/dsh-tools' import AgentRegistry, { AgentId } from '@deepseek-ai/dsh-agent' import AgentLoop, { ReactLoopAgent } from '@deepseek-ai/dsh-agent-loop' import { MockAdapter, maxTokensResponse, textResponse, toolCallResponse } from './mock-adapter.ts' async function harness(adapter: MockAdapter) { 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) return ctx } /** * Wait for the agent's NEXT transition to idle. Always event-based: callers * invoke this right after send(), when the loop hasn't woken yet (status is * still 'idle' synchronously), so polling the current status would lie. */ function waitForIdle(ctx: Context, agent: ReactLoopAgent): Promise { return new Promise((resolve) => { const dispose = ctx.on('agent/status', (subject, status) => { if (subject === agent && status === 'idle') { dispose() resolve() } }) }) } function send(agent: ReactLoopAgent, text: string) { agent.send([{ type: 'text', text }]) } describe('agent loop', () => { it('runs a simple turn: queued message → model → idle, with ordered events', async () => { const adapter = new MockAdapter([textResponse('hello there')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) // Turn boundaries are live agent/* emits; step boundaries are durable // session events only (no agent/* mirror). Interleave both feeds in fire // order to assert the full boundary nesting. const order: string[] = [] for (const name of ['agent/turn-start', 'agent/turn-end'] as const) { ctx.on(name, () => void order.push(name)) } ctx.on('session/event', (_session, event) => { if (event.type === 'step/start' || event.type === 'step/end') order.push(event.type) }) send(agent, 'hi') await waitForIdle(ctx, agent) expect(order).toEqual(['agent/turn-start', 'step/start', 'step/end', 'agent/turn-end']) const types = agent.session.events.map(e => e.type) // turn/start opens the turn, THEN the queued user message is recorded inside // it (every event is turn-enclosed), then the assembled message (carrying the // step's usage). expect(types[0]).toBe('turn/start') expect(types[1]).toBe('user/message') expect(types).toContain('assistant/message') const assistantMessage = agent.session.events.find(e => e.type === 'assistant/message') expect(assistantMessage?.type === 'assistant/message' && assistantMessage.data.usage).toEqual({ inputTokens: 10, outputTokens: 'hello there'.length }) expect(types.at(-1)).toBe('turn/end') // derived history: user + assistant const messages = agent.session.deriveMessages() expect(messages.map(m => m.role)).toEqual(['user', 'assistant']) expect(messages[1]!.content).toEqual([{ type: 'text', text: 'hello there' }]) }) it('round-trips tool calls: model requests tool → executes → result in next request', async () => { const adapter = new MockAdapter([ toolCallResponse('c1', 'echo', { text: 'ping' }, 'calling echo'), textResponse('done'), ]) const ctx = await harness(adapter) ctx.tools.register(defineTool({ name: 'echo', description: 'echo back', parameters: { text: { type: 'string' } }, async execute(args) { return [{ type: 'text', text: `echo: ${args.text}` }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) send(agent, 'use the tool') await waitForIdle(ctx, agent) // two model calls happened (tool-call step, then final step) expect(adapter.requests).toHaveLength(2) // the second request's derived history contains the tool result const secondMessages = adapter.requests[1]!.messages const toolResultMessage = secondMessages.find(m => m.content.some(b => b.type === 'tool-result')) expect(toolResultMessage).toBeDefined() const block = toolResultMessage!.content.find(b => b.type === 'tool-result')! expect(block).toMatchObject({ toolCallId: 'c1', isError: false }) expect((block).content).toEqual([{ type: 'text', text: 'echo: ping' }]) // session log records call + result const types = agent.session.events.map(e => e.type) expect(types).toContain('tool/call') expect(types).toContain('tool/result') }) it('passes assembled system prompt and tool schemas into the request', async () => { const adapter = new MockAdapter([textResponse('ok')]) const ctx = await harness(adapter) ctx.systemPrompt.section({ name: 'persona', order: 0, text: 'You are a test agent.' }) ctx.tools.register(defineTool({ name: 'noop', description: 'does nothing', parameters: {}, async execute() { return [] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock', systemPrompt: 'Agent-specific suffix.' }) send(agent, 'hi') await waitForIdle(ctx, agent) const request = adapter.requests[0] expect(request!.system).toBe('You are a test agent.\n\nAgent-specific suffix.') expect(request!.tools?.map(t => t.name)).toEqual(['noop']) }) it('records raw chunks for replay and emits agent/stream-chunk', async () => { const adapter = new MockAdapter([textResponse('abc')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const streamed: StreamChunk[] = [] ctx.on('agent/stream-chunk', (_agent, _turn, _step, chunk) => void streamed.push(chunk)) send(agent, 'hi') await waitForIdle(ctx, agent) const chunkEvents = agent.session.events.filter(e => e.type === 'assistant/chunk') // textResponse('abc') = block-start + 3 deltas + block-end + usage + finish = 7 expect(chunkEvents).toHaveLength(7) expect(streamed).toHaveLength(7) // replay: chunk events alone re-assemble to the recorded assistant message const deltaText = chunkEvents .flatMap(e => e.type === 'assistant/chunk' ? [e.data.chunk] : []) .filter((c: StreamChunk): c is Extract => c.type === 'text-delta') .map(c => c.text) .join('') expect(deltaText).toBe('abc') }) it('injects steering between steps and continues the turn', async () => { const adapter = new MockAdapter([ toolCallResponse('c1', 'slow', {}), textResponse('addressed the steering'), ]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) ctx.tools.register(defineTool({ name: 'slow', description: '', parameters: {}, async execute() { // steer while the turn is running (during tool execution) agent.steer([{ type: 'text', text: 'change of plans' }]) return [{ type: 'text', text: 'tool done' }] }, })) send(agent, 'start') await waitForIdle(ctx, agent) const types = agent.session.events.map(e => e.type) expect(types).toContain('steering/message') // steering recorded before the second step's request derived its history const steeringSeq = agent.session.events.find(e => e.type === 'steering/message')!.seq const secondStepStart = agent.session.events.filter(e => e.type === 'step/start')[1] expect(secondStepStart).toBeDefined() expect(steeringSeq).toBeLessThan(secondStepStart!.seq) // the second model request saw the steering content const secondRequest = adapter.requests[1] const flat = JSON.stringify(secondRequest!.messages) expect(flat).toContain('change of plans') }) it('steering while idle behaves like send (starts a turn)', async () => { const adapter = new MockAdapter([textResponse('ok')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) agent.steer([{ type: 'text', text: 'hello' }]) await waitForIdle(ctx, agent) expect(agent.session.events.some(e => e.type === 'user/message')).toBe(true) }) it('inject() while idle wraps context in a one-shot turn, visible to the next request', async () => { const adapter = new MockAdapter([textResponse('ok')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) agent.inject([{ type: 'text', text: 'file changed: a.ts' }], { source: { kind: 'plugin', plugin: 'watcher' } }) // The idle inject records a self-contained turn (turn/start → context/message // → turn/end) so the event stays turn-enclosed, but does NOT run the model. await new Promise(r => setTimeout(r, 20)) expect(agent.status).toBe('idle') expect(adapter.requests).toHaveLength(0) const injectedTurn = agent.session.events.filter(e => e.type === 'turn/start') expect(injectedTurn).toHaveLength(1) const it0 = injectedTurn[0]! expect(it0.type === 'turn/start' && it0.data.trigger.kind).toBe('injection') expect(agent.session.events.at(-1)!.type).toBe('turn/end') // turn-enclosed send(agent, 'go') await waitForIdle(ctx, agent) const flat = JSON.stringify(adapter.requests[0]!.messages) expect(flat).toContain('file changed: a.ts') expect(flat).toContain('') }) it('inject() while running appends into the open turn (no extra synthetic turn)', async () => { const adapter = new MockAdapter([ toolCallResponse('c1', 'noticer', {}, 'calling'), textResponse('done'), ]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) // A tool that injects mid-execution: at this point the agent is running, so // inject must append the context/message into the ALREADY-open turn rather // than wrap it in its own one-shot turn. ctx.tools.register(defineTool({ name: 'noticer', description: 'injects a notice', parameters: {}, async execute() { agent.inject([{ type: 'text', text: 'mid-turn notice' }], { source: { kind: 'plugin', plugin: 'x' } }) return [{ type: 'text', text: 'ok' }] }, })) send(agent, 'go') await waitForIdle(ctx, agent) // Exactly ONE turn ran (no synthetic injection turn), and the mid-turn // context/message sits inside it. const turnStarts = agent.session.events.filter(e => e.type === 'turn/start') expect(turnStarts).toHaveLength(1) const ts0 = turnStarts[0]! expect(ts0.type === 'turn/start' && ts0.data.trigger.kind).toBe('message') expect(agent.session.events.some(e => e.type === 'context/message')).toBe(true) }) it('agent/turn-continuation can force-continue (/loop pattern) and force-stop', async () => { // force-continue: model never calls tools, but a plugin forces 3 steps const adapter = new MockAdapter([ textResponse('step 1'), textResponse('step 2'), textResponse('step 3'), ]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) let steps = 0 ctx.on('session/event', (_session, event) => { if (event.type === 'step/end') steps++ }) ctx.on('agent/turn-continuation', async (_agent, _turn, _defaultDecision, next) => { if (steps < 3) return true return next() }) send(agent, 'go') await waitForIdle(ctx, agent) expect(steps).toBe(3) expect(adapter.requests).toHaveLength(3) }) it('agent/turn-continuation can veto continuation despite tool calls (budget-guard pattern)', async () => { const adapter = new MockAdapter([toolCallResponse('c1', 'echo', { text: 'x' })]) const ctx = await harness(adapter) ctx.tools.register(defineTool({ name: 'echo', description: '', parameters: { text: { type: 'string' } }, async execute(args) { return [{ type: 'text', text: String(args.text) }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) ctx.on('agent/turn-continuation', async () => false as const) send(agent, 'go') await waitForIdle(ctx, agent) // only one model call despite the tool call requesting a follow-up expect(adapter.requests).toHaveLength(1) // tool still executed before the decision expect(agent.session.events.some(e => e.type === 'tool/result')).toBe(true) }) it('agent/request waterfall can rewrite the request (model-switch pattern)', async () => { const adapter = new MockAdapter([textResponse('ok')]) const ctx = await harness(adapter) ctx.llm.registerAdapter(['other-model'], adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) ctx.on('agent/request', async (_agent, _turn, _step, options, next) => { options.model = 'other-model' return next() }) send(agent, 'hi') await waitForIdle(ctx, agent) expect(adapter.requests[0]!.model).toBe('other-model') }) it('cancel() mid-stream ends the turn with reason aborted', async () => { const adapter = new MockAdapter(['hang']) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') // wait until the stream is hanging, then cancel await new Promise(r => setTimeout(r, 30)) expect(agent.status).toBe('running') agent.cancel('user interrupt') await waitForIdle(ctx, agent) expect(reasons).toEqual([{ kind: 'aborted', reason: 'user interrupt' }]) }) it('surfaces max-tokens as the turn-end reason when the last step is cut off', async () => { // A single step that ends with a max-tokens finish (no tool calls): the // turn stops by default and ends max-tokens, not completed. const adapter = new MockAdapter([maxTokensResponse('truncat')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') await waitForIdle(ctx, agent) expect(adapter.requests).toHaveLength(1) expect(reasons).toEqual([{ kind: 'max-tokens' }]) // and the reason is recorded in the log's turn/end event const turnEnd = agent.session.events.findLast(e => e.type === 'turn/end') expect(turnEnd!.data.reason).toEqual({ kind: 'max-tokens' }) }) it('a max-tokens step earlier in a turn still surfaces as max-tokens after a later completed step', async () => { // Step 1 is cut off (max-tokens, no tool calls → would stop by default), so // continuation must be FORCED to reach step 2 which finishes normally // (stop). The rule "any max-tokens step surfaces as max-tokens" means the // turn ends max-tokens even though the LAST step completed cleanly. const adapter = new MockAdapter([ maxTokensResponse('first half'), textResponse('second half'), ]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) let steps = 0 ctx.on('session/event', (_session, event) => { if (event.type === 'step/end') steps++ }) // Force exactly one continuation (step 1 → step 2), then defer to default // (step 2 is a plain stop with no tool calls → stops). ctx.on('agent/turn-continuation', async (_agent, _turn, _defaultDecision, next) => { if (steps < 2) return true return next() }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') await waitForIdle(ctx, agent) expect(steps).toBe(2) expect(adapter.requests).toHaveLength(2) expect(adapter.requests[1]!.messages).toEqual([ { role: 'user', content: [{ type: 'text', text: 'go' }] }, { role: 'assistant', content: [{ type: 'text', text: 'first half' }] }, ]) expect(reasons).toEqual([{ kind: 'max-tokens' }]) }) it('a completed step after no max-tokens keeps the turn completed (max-tokens does not leak across turns)', async () => { // Two consecutive turns: turn 1 is cut off (max-tokens), turn 2 is a clean // stop. The per-turn reason must be independent — turn 2 ends completed. const adapter = new MockAdapter([maxTokensResponse('cut'), textResponse('clean')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'first') await waitForIdle(ctx, agent) send(agent, 'second') await waitForIdle(ctx, agent) expect(reasons).toEqual([{ kind: 'max-tokens' }, { kind: 'completed' }]) }) it('does not dispatch tool calls from a max-tokens-truncated step', async () => { const callId = CallId('c1') const adapter = new MockAdapter([[ { type: 'block-start', index: 0, blockType: 'tool-call' }, { type: 'tool-call-delta', index: 0, id: callId, name: 'echo', argumentsDelta: '{"text":"x"}' }, { type: 'block-end', index: 0, block: { type: 'tool-call', id: callId, name: 'echo', arguments: '{"text":"x"}' } }, { type: 'usage', usage: { inputTokens: 10, outputTokens: 5 } }, { type: 'finish', reason: { kind: 'max-tokens' } }, ]]) const ctx = await harness(adapter) let executions = 0 ctx.tools.register(defineTool({ name: 'echo', description: '', parameters: { text: { type: 'string' } }, async execute() { executions += 1 return [{ type: 'text', text: 'should not run' }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') await waitForIdle(ctx, agent) expect(executions).toBe(0) expect(agent.session.events.some(e => e.type === 'tool/call')).toBe(false) expect(agent.session.deriveMessages()).toEqual([{ role: 'user', content: [{ type: 'text', text: 'go' }] }]) expect(reasons).toEqual([{ kind: 'max-tokens' }]) // No-data-loss: a max-tokens step whose only content was a dropped tool call // has EMPTY assistant content, but its usage must still be represented. It // rides on an (empty-content) assistant/message — there is no standalone // usage event — and that empty message is skipped by deriveMessages(), so // the derived history above is NOT corrupted by a spurious assistant turn. const assistantMessage = agent.session.events.find(e => e.type === 'assistant/message') expect(assistantMessage?.type === 'assistant/message' && assistantMessage.data).toEqual({ turn: 1, step: 1, content: [], usage: { inputTokens: 10, outputTokens: 5 }, }) }) it('appends no assistant/message for a max-tokens step with empty content and no usage', async () => { // A max-tokens step truncated to a dropped tool call AND with no usage chunk // has nothing to record: empty content and no accounting → no assistant/message // (the empty-content host exists only to carry usage). The turn still ends // max-tokens. const callId = CallId('c1') const adapter = new MockAdapter([[ { type: 'block-start', index: 0, blockType: 'tool-call' }, { type: 'tool-call-delta', index: 0, id: callId, name: 'echo', argumentsDelta: '{"text":"x"}' }, { type: 'block-end', index: 0, block: { type: 'tool-call', id: callId, name: 'echo', arguments: '{"text":"x"}' } }, { type: 'finish', reason: { kind: 'max-tokens' } }, ]]) const ctx = await harness(adapter) ctx.tools.register(defineTool({ name: 'echo', description: '', parameters: { text: { type: 'string' } }, async execute() { return [{ type: 'text', text: 'should not run' }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') await waitForIdle(ctx, agent) expect(reasons).toEqual([{ kind: 'max-tokens' }]) expect(agent.session.events.some(e => e.type === 'assistant/message')).toBe(false) expect(agent.session.deriveMessages()).toEqual([{ role: 'user', content: [{ type: 'text', text: 'go' }] }]) }) it('appends no assistant/message for a normal stop finish with empty content and no usage', async () => { // A clean `stop` finish that streamed nothing assembled (no blocks) and // carried no usage chunk has nothing to record: the content-or-usage guard // on the normal step path suppresses a pure trace-only empty assistant/message. const adapter = new MockAdapter([[{ type: 'finish', reason: { kind: 'stop' } }]]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const reasons: TurnEndReason[] = [] ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'go') await waitForIdle(ctx, agent) expect(reasons).toEqual([{ kind: 'completed' }]) expect(agent.session.events.some(e => e.type === 'assistant/message')).toBe(false) expect(agent.session.deriveMessages()).toEqual([{ role: 'user', content: [{ type: 'text', text: 'go' }] }]) }) it('keeps safe max-tokens assistant content while dropping truncated tool calls', async () => { const callId = CallId('c1') const adapter = new MockAdapter([[ { type: 'block-start', index: 0, blockType: 'text' }, { type: 'text-delta', index: 0, text: 'partial text' }, { type: 'block-end', index: 0, block: { type: 'text', text: 'partial text' } }, { type: 'block-start', index: 1, blockType: 'tool-call' }, { type: 'tool-call-delta', index: 1, id: callId, name: 'echo', argumentsDelta: '{"text"' }, { type: 'finish', reason: { kind: 'max-tokens' } }, ]]) const ctx = await harness(adapter) let stepResults = 0 ctx.on('agent/step-result', async (_agent, _turn, _step, message, next) => { stepResults += 1 expect(message.content).toEqual([{ type: 'text', text: 'partial text' }]) return next() }) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) send(agent, 'go') await waitForIdle(ctx, agent) expect(stepResults).toBe(1) expect(agent.session.events.some(e => e.type === 'tool/call')).toBe(false) expect(agent.session.deriveMessages()).toEqual([ { role: 'user', content: [{ type: 'text', text: 'go' }] }, { role: 'assistant', content: [{ type: 'text', text: 'partial text' }] }, ]) }) it('stops the turn when a step/end session-event listener failure has recorded an error', async () => { const adapter = new MockAdapter([ toolCallResponse('c1', 'echo', { text: 'x' }), textResponse('should not run'), ]) const ctx = await harness(adapter) ctx.tools.register(defineTool({ name: 'echo', description: '', parameters: { text: { type: 'string' } }, async execute(args) { return [{ type: 'text', text: String(args.text) }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) let threw = false // A throwing step/end session-event listener is the surviving boundary-listener // failure path (step boundaries have no agent/* mirror): closeStep contains it // and surfaces it as a turn error rather than stranding the turn open. ctx.on('session/event', (_session, event) => { if (event.type === 'step/end' && !threw) { threw = true; throw new Error('bad step/end listener') } }) send(agent, 'go') await waitForIdle(ctx, agent) expect(adapter.requests).toHaveLength(1) const turnEnd = agent.session.events.findLast(e => e.type === 'turn/end') expect(turnEnd?.type === 'turn/end' && turnEnd.data.reason.kind).toBe('error') }) it('chains queued messages into consecutive turns', async () => { const adapter = new MockAdapter([textResponse('first'), textResponse('second')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const turns: number[] = [] ctx.on('agent/turn-start', (_agent, turn) => void turns.push(turn)) // queue two messages while idle — first starts turn 1 immediately; // queue the second during turn 1 via a stream-chunk hook let queued = false ctx.on('agent/stream-chunk', () => { if (!queued) { queued = true send(agent, 'second message') } }) send(agent, 'first message') await waitForIdle(ctx, agent) expect(turns).toEqual([1, 2]) expect(adapter.requests).toHaveLength(2) }) it('awaits session/flush at turn end (persistence checkpoint)', async () => { const adapter = new MockAdapter([textResponse('ok')]) const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) let flushed = 0 let flushedBeforeIdle = false ctx.on('session/flush', async (session) => { await new Promise(r => setTimeout(r, 10)) flushed++ flushedBeforeIdle = agent.status !== 'idle' void session }) send(agent, 'hi') await waitForIdle(ctx, agent) expect(flushed).toBe(1) expect(flushedBeforeIdle).toBe(true) }) it('errors from the model surface as agent/error and end the turn', async () => { const adapter = new MockAdapter([]) // script exhausted → throws const ctx = await harness(adapter) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) const errors: Error[] = [] const reasons: TurnEndReason[] = [] ctx.on('agent/error', (_agent, _turn, _step, error) => void errors.push(error)) ctx.on('agent/turn-end', (_agent, _turn, reason) => void reasons.push(reason)) send(agent, 'hi') await waitForIdle(ctx, agent) expect(errors).toHaveLength(1) expect(errors[0]!.message).toContain('script exhausted') expect(reasons[0]).toMatchObject({ kind: 'error' }) // The durable failure lives entirely on turn/end.reason (with the failing // step), not a standalone error event. const turnEnd = agent.session.events.find(e => e.type === 'turn/end') expect(turnEnd?.type === 'turn/end' && turnEnd.data.reason).toMatchObject({ kind: 'error', step: 1 }) }) it('disposing the loop fiber mid-turn stops the loop (HMR safety)', async () => { const adapter = new MockAdapter(['hang']) const ctx = await harness(adapter) let agent!: ReactLoopAgent const fiber = await ctx.plugin(Object.assign((inner: Context) => { agent = inner.agentLoop.create(AgentId('scoped'), { model: 'mock' }) }, { inject: ['agentLoop'] })) expect(ctx.agents.get(AgentId('scoped'))).toBe(agent) send(agent, 'go') await new Promise(r => setTimeout(r, 30)) expect(agent.status).toBe('running') await fiber.dispose() await agent.done expect(agent.status).toBe('disposed') expect(ctx.agents.get(AgentId('scoped'))).toBeUndefined() expect(() => { send(agent, 'too late') }).toThrow('disposed') }) it('creates agents from config on startup', async () => { const adapter = new MockAdapter([textResponse('from config')]) 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: [{ id: AgentId('config-agent'), model: 'mock', systemPrompt: 'Config prompt' }], }) ctx.llm.registerAdapter(['mock'], adapter) const agent = ctx.agents.get(AgentId('config-agent'))! as ReactLoopAgent expect(agent).toBeDefined() expect(agent.id).toBe('config-agent') expect(agent.options.model).toBe('mock') // the agent is alive: send triggers a turn send(agent, 'hi') await waitForIdle(ctx, agent) expect(adapter.requests).toHaveLength(1) }) it('replays a session log into an identical derived history', async () => { const adapter = new MockAdapter([ toolCallResponse('c1', 'echo', { text: 'x' }), textResponse('done'), ]) const ctx = await harness(adapter) ctx.tools.register(defineTool({ name: 'echo', description: '', parameters: { text: { type: 'string' } }, async execute(args) { return [{ type: 'text', text: String(args.text) }] }, })) const agent = ctx.agentLoop.create(AgentId('a1'), { model: 'mock' }) send(agent, 'run') await waitForIdle(ctx, agent) const replayed = ctx.sessions.create(SessionId('replayed'), { seed: [...agent.session.events] }) expect(replayed.deriveMessages()).toEqual(agent.session.deriveMessages()) // event-by-event identity of types expect(replayed.events.map(e => e.type)).toEqual( agent.session.events.map(e => e.type)) }) })