The gateway asked the user questions (approval, clarify, sudo, secret,
vault, MCP setup, the desktop read/act bridges) by emitting a
`<x>.request` EVENT carrying a hand-minted request_id, blocking the
agent thread on a module dict keyed by that id, and exposing a paired
`<x>.respond` METHOD per kind — thirteen pairs, four registries
(`_pending`, `_answers`, `_batch_clarify`, `_EXPIRING_REQUESTS`) and a
per-kind reconnect snapshot (`pending_clarify` / `pending_approval`)
that only two of the thirteen kinds ever got. JSON-RPC already has the
primitive: the server sends a request frame with an id and the client
answers with a response frame bearing the same id.
`tui_gateway/server_requests.py` owns the one mechanism:
send() block the agent thread until the response frame
(`srq-<n>` ids; ints belong to the client)
send_async() fire-and-callback variant (bot relay)
cancel*() withdraw with ONE `request.cancel {id, method, reason}`
event (timeout / interrupt / process exit /
answered elsewhere) instead of per-kind *.expire
open_requests() the still-open frames, replayed by session.resume,
session.activate and session.events.since so a
reconnecting client re-renders every kind, not two
clarify.lock stays a real client→server RPC (locks one batch
answer early); locked answers merge into the final
set even when the closing response carries only the
tail the user answered last
A client that does not implement a method answers -32601 and the agent
fails fast (the old fixed-timeout "unavailable" probes for tour/preview
still work — a wire error IS an answer). Approval: the queue entry's
settle hook withdraws the request when `/approve` from another surface,
a timeout or an interrupt resolves it first, so no window keeps a dead
card. Compute-host children own their waits; the parent mirrors their
open frames for replay and relays `clarify.lock` + response frames.
Clients: `JsonRpcRequestChannel` gains `onRequest` (unhandled → -32601,
dedup by id) and `JsonRpcGatewayClient` re-delivers `open_requests`
from the replay result. Desktop gets `gateway-event/server-requests.ts`
(one handler per method, replacing the request branches of
`input-requests.ts` / `desktop-bridge.ts`) and a `store/server-requests`
registry so every answer site calls `respondToServerRequest(id, result)`
synchronously; the TUI gets `createServerRequestHandler.ts` +
`serverRequestStore.ts`. `gateway-events.json` now pins both halves
(events + server request methods); the two contract tests check both.
Live (real stdio gateway, real `clarify_callback` on the agent thread):
before, `clarify.request` event + `clarify.respond` RPC, batch final
answers lost ('' returned); after, `{"id":"srq-…","method":"clarify"}`
frame, `session.events.since.open_requests` replays it, response frame
`{"answer":"yes"}` reaches the agent, batch lock + final response
merge to `{"q0":"1","q1":"free text"}`.
Website
This website is built using Docusaurus, a modern static website generator.
Installation
yarn
Local Development
yarn start
This command starts a local development server and opens up a browser window. Most changes are reflected live without having to restart the server.
Build
yarn build
This command generates static content into the build directory and can be served using any static contents hosting service.
Deployment
Using SSH:
USE_SSH=true yarn deploy
Not using SSH:
GIT_USER=<Your GitHub username> yarn deploy
If you are using GitHub pages for hosting, this command is a convenient way to build the website and push to the gh-pages branch.
Diagram Linting
CI runs ascii-guard to lint docs for ASCII box diagrams. Use Mermaid (````mermaid`) or plain lists/tables instead of ASCII boxes to avoid CI failures.