130 lines
7.2 KiB
TypeScript
130 lines
7.2 KiB
TypeScript
import { afterEach, beforeEach, describe, expect, it } from 'vitest'
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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 { PROTOCOL_VERSION } from '@agentclientprotocol/sdk'
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import { makeBridgeHarness, textResponse, type BridgeHarness, type CapturedUpdate } from './harness.ts'
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import { SessionId } from '@deepseek-ai/dsh-session'
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/** Text of the agent_message_chunk updates scoped to one session id. */
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function messageTextFor(updates: { sessionId?: string; update: CapturedUpdate }[], sessionId: string): string {
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return updates
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.filter(u => u.sessionId === sessionId && u.update.sessionUpdate === 'agent_message_chunk')
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.map(u => (u.update.sessionUpdate === 'agent_message_chunk' && u.update.content.type === 'text' ? u.update.content.text : ''))
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.join('')
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}
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describe('acp bridge — RFC 011 multi-session isolation', () => {
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let storageDir: string
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let harness: BridgeHarness | undefined
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beforeEach(async () => { storageDir = await mkdtemp(join(tmpdir(), 'acp-multi-')) })
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afterEach(async () => {
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if (harness) await harness.dispose()
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harness = undefined
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await rm(storageDir, { recursive: true, force: true })
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})
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it('two sessions stream concurrently without interleaving their updates', async () => {
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// Each session's prompt answer must arrive only on its own sessionId. The
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// scripted adapter answers in send order; both prompts run, and the bridge
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// demuxes every chunk by session id.
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harness = await makeBridgeHarness({ storageDir, script: [textResponse('answer-A'), textResponse('answer-B')] })
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await harness.client.initialize({ protocolVersion: PROTOCOL_VERSION, clientCapabilities: {} })
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const a = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const b = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const [ra, rb] = await Promise.all([
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harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'go A' }] }),
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harness.client.prompt({ sessionId: b, prompt: [{ type: 'text', text: 'go B' }] }),
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])
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expect(ra.stopReason).toBe('end_turn')
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expect(rb.stopReason).toBe('end_turn')
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// A's text landed only on A; B's only on B (strict id demux, no interleave).
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expect(messageTextFor(harness.sessionUpdates, a)).toContain('answer-A')
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expect(messageTextFor(harness.sessionUpdates, a)).not.toContain('answer-B')
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expect(messageTextFor(harness.sessionUpdates, b)).toContain('answer-B')
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expect(messageTextFor(harness.sessionUpdates, b)).not.toContain('answer-A')
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})
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it('cancel in one session leaves the other session untouched', async () => {
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// Session A hangs; session B completes normally. Cancelling A settles ONLY
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// A as cancelled and never disturbs B's stream or result.
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harness = await makeBridgeHarness({ storageDir, script: ['hang', textResponse('B done')] })
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await harness.client.initialize({ protocolVersion: PROTOCOL_VERSION, clientCapabilities: {} })
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const a = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const b = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const aPromise = harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'hang A' }] })
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await new Promise(r => setTimeout(r, 30))
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await harness.client.cancel({ sessionId: a })
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expect((await aPromise).stopReason).toBe('cancelled')
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// B runs to completion, unaffected by A's cancel.
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const rb = await harness.client.prompt({ sessionId: b, prompt: [{ type: 'text', text: 'go B' }] })
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expect(rb.stopReason).toBe('end_turn')
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expect(messageTextFor(harness.sessionUpdates, b)).toContain('B done')
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})
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it('enforces one in-flight prompt PER session independently', async () => {
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harness = await makeBridgeHarness({ storageDir, script: ['hang', 'hang'] })
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await harness.client.initialize({ protocolVersion: PROTOCOL_VERSION, clientCapabilities: {} })
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const a = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const b = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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// One in-flight prompt in EACH session is allowed (independent limits).
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const aPromise = harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'one A' }] })
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const bPromise = harness.client.prompt({ sessionId: b, prompt: [{ type: 'text', text: 'one B' }] })
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await new Promise(r => setTimeout(r, 30))
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// A second prompt in A is rejected, but B's in-flight prompt is unaffected.
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await expect(harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'two A' }] }))
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.rejects.toThrow(/already in flight/)
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await harness.client.cancel({ sessionId: a })
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await harness.client.cancel({ sessionId: b })
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expect((await aPromise).stopReason).toBe('cancelled')
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expect((await bPromise).stopReason).toBe('cancelled')
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})
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it('a cancel for a non-existent session id is a silent no-op (does not touch others)', async () => {
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harness = await makeBridgeHarness({ storageDir, script: [textResponse('A done')] })
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await harness.client.initialize({ protocolVersion: PROTOCOL_VERSION, clientCapabilities: {} })
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const a = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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await expect(harness.client.cancel({ sessionId: 'ghost' })).resolves.toBeUndefined()
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// A still works after a cancel for an unknown id.
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const ra = await harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'go A' }] })
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expect(ra.stopReason).toBe('end_turn')
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})
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it('disposing the whole bridge drains all live sessions to quiescence', async () => {
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harness = await makeBridgeHarness({ storageDir, script: ['hang', 'hang'] })
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await harness.client.initialize({ protocolVersion: PROTOCOL_VERSION, clientCapabilities: {} })
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const a = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const b = (await harness.client.newSession({ cwd: process.cwd(), mcpServers: [] })).sessionId
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const agentA = harness.ctx.agents.get(SessionId(a))!
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const agentB = harness.ctx.agents.get(SessionId(b))!
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// Wait deterministically for BOTH agents to enter `running` (not a fixed
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// sleep — agent startup latency is unbounded on a loaded worker).
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const running = (agent: typeof agentA) => agent.status === 'running'
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? Promise.resolve()
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: new Promise<void>((resolve) => {
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const dispose = harness!.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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void harness.client.prompt({ sessionId: a, prompt: [{ type: 'text', text: 'go A' }] }).catch(() => {})
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void harness.client.prompt({ sessionId: b, prompt: [{ type: 'text', text: 'go B' }] }).catch(() => {})
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await Promise.all([running(agentA), running(agentB)])
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expect(agentA.status).toBe('running')
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expect(agentB.status).toBe('running')
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await harness.ctx.fiber.dispose()
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// BOTH agents drained (not still running) — teardown reached quiescence
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// across all sessions, not just one.
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expect(agentA.status).not.toBe('running')
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expect(agentB.status).not.toBe('running')
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})
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})
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