kimi-code/packages/klient
Haozhe 23e68eee8b
refactor(agent-core-v2): remove the agent RPC aggregation layer (#2871)
* refactor(agent-core-v2): remove the agent RPC aggregation layer

- delete src/agent/rpc/ (AgentRPCService, IAgentRPCService, core-api,
  prompt-metadata, types) and sink each method's orchestration into its
  owning domain service
- prompt: new submit/submitSteer composing disabledTools gating,
  MAIN-only session metadata, and engine-side {turn_id} settlement
- skill: activate now returns PromptLaunchResult and writes session
  metadata internally (MAIN-only, unified across prompt/steer/skill/
  pluginCommand); node-sdk and kap-server drop their edge-side writes
- pluginCommand: new agent-scope domain owning command activation and
  the plugin_command.activated domain event
- permissionMode/loop/fullCompaction: new setModeAndBroadcast /
  cancelFromUser / cancel; setMode and loop.cancel stay pure for
  internal callers
- klient: agentRpcContract split into per-domain contracts; facade
  re-routes to domain channels with its public API unchanged
- node-sdk, kap-server, kimi-inspect and the v2 test harness now call
  domain services directly; ctx.rpc keeps its name as a composed
  adapter
- externally visible: the agentRPCService debug channel is gone and
  session metadata writes are now MAIN-agent-only (see changeset)

* refactor(agent-core-v2): move disabledTools gating out of the prompt domain

Prompt should not own session tool policy: submit no longer accepts or
applies disabledTools. The klient facade keeps its prompt({ disabledTools })
API and composes it edge-side — applying agentToolPolicyService
setSessionDisabledTools before calling agentPromptService.submit, the same
way kap-server's prompt route already does. Over klient, a profile-less
engine now surfaces the raw profile error instead of request.invalid.

Also restores the RPC-removal changeset, which did not make it into the
previous commit.

* chore(agent-core-v2): drop the RPC-removal changeset

* refactor(klient): drop disabledTools from the prompt entry entirely

The prompt path no longer carries session tool gating on any surface:
the klient facade prompt() loses the disabledTools field and calls
agentPromptService.submit directly, and the node-sdk
SessionPromptRpcInput stops accepting or forwarding it (v1 always
ignored the field). Session tool gating remains available through
IAgentToolPolicyService.setSessionDisabledTools, composed at the edge
the way kap-server's prompt route does; the klient toolPolicy contract
added for facade-side composition is removed as unused.
2026-08-13 10:57:01 +08:00
..
examples feat: unify the host identity across OAuth, telemetry, and kap-server (#2382) 2026-07-30 13:45:41 +08:00
scripts feat(klient): contract-driven facade with http/ipc/memory transports (#1768) 2026-07-16 16:43:09 +08:00
src refactor(agent-core-v2): remove the agent RPC aggregation layer (#2871) 2026-08-13 10:57:01 +08:00
test refactor(agent-core-v2): remove the agent RPC aggregation layer (#2871) 2026-08-13 10:57:01 +08:00
AGENTS.md refactor(agent-core-v2): rebuild the model wire layer on the kosong architecture (#1970) 2026-07-21 13:03:54 +08:00
CHANGELOG.md ci: release packages (#2342) 2026-07-30 14:56:30 +08:00
Dockerfile feat(klient): contract-driven facade with http/ipc/memory transports (#1768) 2026-07-16 16:43:09 +08:00
package.json ci: release packages (#2342) 2026-07-30 14:56:30 +08:00
README.md feat: agent-core-v2 permission/workspace refactors and transcript durability (#2021) 2026-07-22 19:21:56 +08:00
tsconfig.examples.json test(klient): add real-server smoke coverage (#1713) 2026-07-15 15:24:36 +08:00
tsconfig.json feat(klient): contract-driven facade with http/ipc/memory transports (#1768) 2026-07-16 16:43:09 +08:00
tsdown.config.ts feat(transcript): add unified transcript layer, drop the /api/v2 RPC surface (#1888) 2026-07-20 15:33:05 +08:00
vitest.config.ts feat(klient): contract-driven facade with http/ipc/memory transports (#1768) 2026-07-16 16:43:09 +08:00

@moonshot-ai/klient

Contract-driven client SDK for the agent-core-v2 engine. One facade, two transports — you pick the transport once at creation; everything after that is byte-identical:

import { bootstrap, logSeed, resolveLoggingConfig } from '@moonshot-ai/agent-core-v2';
import { createKlient } from '@moonshot-ai/klient/memory';   // or '/ipc'

const { app } = bootstrap({ homeDir }, [
  ...logSeed(resolveLoggingConfig({ homeDir, env: process.env })),
]);
const klient = createKlient({ scope: app });

const env = await klient.global.env();
const sessions = await klient.global.sessions.list({ limit: 20 });

const session = await klient.global.sessions.create({ workDir: process.cwd() });
const agent = klient.session(session.id).agent('main');
agent.events.on('assistant.delta', (e) => process.stdout.write(e.delta));
agent.events.on('prompt.completed', () => console.log('\ndone'));
await agent.prompt({ input: [{ type: 'text', text: 'Say OK.' }] });

await klient.close();

Architecture

facade (klient.global.*, klient.session(id).*, session.agent(id).*, *.events.*)
   ↓ single-object params, zod-validated
contract (procedure schemas, shared by all transports)
   ↓
KlientChannel { call, listen }   ← the only transport SPI
   ↓
ipc │ memory
  • Facade — aggregated methods, no engine service tokens, no onDid*/onWill* event names. There is no escape hatch to raw services: the facade is the public contract.
    • klient.global.*sessions.* (incl. create), workspaces.*, config.*, providers.*, models.*, catalog.*, auth.*, flags.*, plugins.*, hostFs.*, env().
    • klient.session(id).*get/setTitle/update/status/close/archive/ restore/fork/createChild, approvals.*, questions.*, interactions.*, agents().
    • session.agent(id).*prompt/steer/cancel/runShellCommand/ cancelShellCommand/getModel/setModel/setPermission/getUsage/getContext/ getPlan*/getTasks*/stopTask/getTaskOutput.
  • Contract — every method has a zod input tuple + output schema, validated on the client before send / after receive (default on; validate: false to disable). Validation is sub-µs for typical payloads — cheaper than the JSON serialization the wire already pays.
  • Eventsklient.events.on(...) for the global bus (config.changed, kosong.models.changed, session.archived, …), session(id).events.on('metadata.changed' | 'interactions.changed' | 'interactions.resolved'), and agent(id).events.on('turn.started' | 'assistant.delta' | 'tool.call.started' | 'prompt.completed' | …). Underlying subscriptions are shared and ref-counted; payloads are validated; bad payloads drop to events.onError.

Transports

entry options events
@moonshot-ai/klient/ipc { socketPath, token? } same socket
@moonshot-ai/klient/memory { scope } (a bootstrapped engine app scope) direct emitter/bus subscription

ipc and memory share one in-process dispatcher, so they behave identically by construction; memory additionally JSON round-trips every value so results cross the same JSON boundary a socket transport would impose. The IPC host ships with the transport: serveKlientIpc({ scope, socketPath }).

The same conformance suite runs against both transports in this package's tests (test/helpers/conformance.ts — one test file per transport).

This package also hosts the e2e suites (the retired server-e2e package was folded in here):

  • test/e2e/legacy/ + test/e2e/harness/ — the legacy /api/v1 live suites and their client harness (skip unless KIMI_SERVER_URL is set; the v1 surface has no in-memory equivalent, so these stay live-server-only).

The docker e2e runner (pnpm docker:e2e) runs this whole vitest suite inside a container against a container-local server. See AGENTS.md for the testing rules.

Scope

The facade covers the global (app), session, and agent surfaces shown above. What it deliberately leaves out (for now): onWill/hook-style interception (engine hooks are in-process OrderedHookSlots and not wire-exposable), file upload (v1 multipart REST only), and the terminal surface (v1 REST + WS only).

Smoke check

pnpm -C packages/klient smoke

examples/smoke.ts boots an in-process engine (memory transport) and asserts the global facade end-to-end — no server needed. examples/basic.ts is a shorter narrated tour; examples/context-usage.ts traces context-size readings through a real prompt (requires KIMI_EXAMPLE_MODEL + KIMI_EXAMPLE_API_KEY).