9c1e2921e9
Co-located mode: the operator launches its own podman/docker container and execs into it out-of-band (argv-identical to the native harness), exposed as `sbx launch|status|down`, `exec`, `write`, `get`. When granted, it can also drive the room's broker-owned container directly on the same host. Relay mode primitive: `keys` injects raw bytes into the shared PTY via the same `_sbx:input` frame a human driver emits — full keyboard control incl. the stop-vocabulary (ctrl-c/ctrl-d/ctrl-z/ctrl-\, esc, arrows, pager q). A compact per-session cheat-sheet (`sandbox.KEYS_HELP`, `keys --help-keys`) documents what each inject does and how to end a stuck program, token-efficiently. Gating: exec/write/get refuse a host (`local`) inherited from the room; the room sandbox is only driven when `granted`. Keystrokes are inert until granted. 17 offline tests green; e2e verified against real podman (launch→exec→write→ get round-trip→teardown) and through the CLI socket. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
477 lines
22 KiB
Python
477 lines
22 KiB
Python
"""OperatorBridge — a headless room client a Claude Code session drives.
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Inverts the `cmd_chat/agent` model: instead of the room calling a model per
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message, this daemon owns the websocket and exposes the room as a local API.
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A Claude Code session pumps it through the `hh-bridge` CLI (`read`/`say`/…),
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which talks to a unix control socket served in this same event loop.
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Phase 1 scope: join + roster + read (with long-poll) + say. Sandbox drive,
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delegation and nesting are later phases — `_perm:acl`/`_sbx:status` frames are
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*recorded* into the inbox for awareness but not acted on yet.
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Reuses the protocol wholesale from `Client` (SRP, room key, encrypt/decrypt)
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and mirrors `AgentBridge`'s reconnect/serve shape (cmd_chat/agent/bridge.py).
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"""
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from __future__ import annotations
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import asyncio
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import base64
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import json
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import os
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import re
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import time
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import websockets
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from ..client.client import Client
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from . import sandbox as sbx
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from .session import Session
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class OperatorBridge(Client):
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_PING_INTERVAL = 20.0
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_PING_TIMEOUT = 60.0
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_RECONNECT_MAX_BACKOFF = 30.0
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_RECONNECT_STABLE_SECS = 30.0
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MAX_EVENTS = 2000 # in-RAM inbox ring; full history lives in inbox.jsonl
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def __init__(self, server: str, port: int, name: str,
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password: str | None = None, insecure: bool = False,
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no_tls: bool = False, session: str | None = None,
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trigger: str | None = None):
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super().__init__(server, port, username=name, password=password,
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insecure=insecure, no_tls=no_tls)
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self.name = name
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self.trigger = (trigger or "").strip()
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self.session = Session(session or name)
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# Inbox: monotonically-seq'd events + an async condition to wake waiters.
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self.events: list[dict] = []
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self.seq = 0
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self.cond = asyncio.Condition()
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# Mirrored room awareness (recorded only in Phase 1).
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self.granted = False
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self.can_sudo = False
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self.sbx_engine: str | None = None
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self.sbx_name: str = ""
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# Co-located sandbox the operator launched itself (Phase 2). When set we
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# exec straight into it (out-of-band); independent of the room's broker
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# sandbox, which we can also drive when co-located + granted.
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self._own_engine: str | None = None
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self._own_name: str = ""
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# Live websocket (None while reconnecting); set in _connect_and_serve.
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self._ws = None
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self._stop = asyncio.Event()
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self._seeded = False # backfill room history only on first init
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self._inbox_fp = None # append handle to inbox.jsonl
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self._addr_re = self._build_addr_re()
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# ── addressing ───────────────────────────────────────────────────────
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def _build_addr_re(self) -> re.Pattern:
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toks = [re.escape(self.name), re.escape("@" + self.name)]
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if self.trigger:
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toks.append(re.escape(self.trigger))
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return re.compile(r"(?<!\w)(" + "|".join(toks) + r")(?!\w)", re.IGNORECASE)
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def _is_addressed(self, text: str) -> bool:
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return bool(self._addr_re.search(text or ""))
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# ── inbox ────────────────────────────────────────────────────────────
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async def _emit(self, kind: str, **fields) -> None:
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async with self.cond:
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self.seq += 1
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ev = {"seq": self.seq, "ts": round(time.time(), 3), "kind": kind, **fields}
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self.events.append(ev)
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if len(self.events) > self.MAX_EVENTS:
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self.events = self.events[-self.MAX_EVENTS:]
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if self._inbox_fp is not None:
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try:
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self._inbox_fp.write(json.dumps(ev) + "\n")
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self._inbox_fp.flush()
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except OSError:
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pass
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self.cond.notify_all()
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# ── frame handling ───────────────────────────────────────────────────
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async def _handle_frame(self, ws, raw) -> None:
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try:
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data = json.loads(raw)
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except json.JSONDecodeError:
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return
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mtype = data.get("type")
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if mtype == "init":
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self.users = data.get("users", [])
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await self._emit("roster", users=self._roster())
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if not self._seeded:
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for m in data.get("messages", []):
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dec = self.decrypt_message(dict(m))
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text = dec.get("text", "")
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sender = dec.get("username", "?")
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if (not text or text == "[decrypt failed]"
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or text.startswith('{"_') or sender == self.name):
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continue
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await self._emit("message", **{"from": sender}, text=text,
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addressed=False, backfill=True)
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self._seeded = True
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return
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if mtype == "roster":
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self.users = data.get("users", [])
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await self._emit("roster", users=self._roster())
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return
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if mtype == "user_left":
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left = data.get("user_id")
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self.users = [u for u in self.users if u.get("user_id") != left]
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await self._emit("roster", users=self._roster())
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return
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if mtype != "message":
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return
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msg = self.decrypt_message(data.get("data", {}))
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text = msg.get("text", "")
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sender = msg.get("username", "?")
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if sender == self.name:
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return
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if text.startswith('{"_'):
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await self._record_control(text)
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return
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await self._emit("message", **{"from": sender}, text=text,
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addressed=self._is_addressed(text))
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async def _record_control(self, text: str) -> None:
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"""Surface ACL + sandbox-status changes into the inbox (awareness only).
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Ignore high-volume / irrelevant control frames (_sbx:data, _ai, _ft)."""
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try:
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frame = json.loads(text)
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except json.JSONDecodeError:
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return
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if frame.get("_sbx") == "status":
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ready = frame.get("state") == "ready"
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self.sbx_engine = frame.get("engine") if ready else None
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self.sbx_name = (frame.get("name") or "") if ready else ""
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await self._emit("sandbox", state=frame.get("state"),
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engine=self.sbx_engine, name=self.sbx_name,
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backend=frame.get("backend"))
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elif frame.get("_perm") == "acl":
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self.granted = self.name in frame.get("drivers", [])
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self.can_sudo = self.name in frame.get("sudoers", [])
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await self._emit("acl", owner=frame.get("owner"),
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granted=self.granted, can_sudo=self.can_sudo,
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drivers=frame.get("drivers", []))
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def _roster(self) -> list[str]:
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return [u.get("username", "?") for u in self.users]
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# ── connection lifecycle (mirrors AgentBridge) ───────────────────────
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async def run_async(self) -> None:
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self.session.ensure_dir()
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self.session.cleanup() # drop a stale socket from a prior run
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self._inbox_fp = open(self.session.inbox_path, "a") # noqa: SIM115
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server = await asyncio.start_unix_server(
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self._serve_control, path=str(self.session.sock_path))
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try:
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os.chmod(self.session.sock_path, 0o600)
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except OSError:
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pass
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await self._emit("system", event="starting",
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host=self.server, port=self.port, user=self.name)
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try:
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await self._reconnect_loop()
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finally:
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server.close()
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try:
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await server.wait_closed()
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except Exception: # noqa: BLE001
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pass
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if self._inbox_fp is not None:
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self._inbox_fp.close()
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self.session.cleanup()
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async def _reconnect_loop(self) -> None:
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backoff = 1.0
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first = True
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while not self._stop.is_set():
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loop = asyncio.get_running_loop()
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started = loop.time()
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try:
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await self._connect_and_serve(reconnect=not first)
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except (KeyboardInterrupt, asyncio.CancelledError):
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raise
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except (websockets.ConnectionClosed, OSError) as e:
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await self._emit("system", event="reconnecting",
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reason=type(e).__name__)
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except Exception as e: # noqa: BLE001 — auth/transient: report + retry
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await self._emit("system", event="error",
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reason=f"{type(e).__name__}: {e}")
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else:
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if not self._stop.is_set():
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await self._emit("system", event="reconnecting",
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reason="closed")
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if self._stop.is_set():
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break
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if loop.time() - started >= self._RECONNECT_STABLE_SECS:
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backoff = 1.0
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first = False
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try:
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await asyncio.wait_for(self._stop.wait(), timeout=backoff)
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except asyncio.TimeoutError:
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pass
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backoff = min(backoff * 2, self._RECONNECT_MAX_BACKOFF)
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async def _connect_and_serve(self, reconnect: bool) -> None:
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self.srp_authenticate() # fresh token each attempt; old one died on drop
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url = f"{self.ws_url}/ws/chat?user_id={self.user_id}&ws_token={self.ws_token}"
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async with websockets.connect(
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url, ssl=self._ws_ssl_context(),
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ping_interval=self._PING_INTERVAL, ping_timeout=self._PING_TIMEOUT,
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) as ws:
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self._ws = ws
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self.running = True
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announce = (f"{self.name} (operator) "
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f"{'back online' if reconnect else 'online'} — Claude Code bridge")
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await ws.send(self.room_fernet.encrypt(announce.encode()).decode())
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await self._emit("system", event="connected", reconnect=reconnect)
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try:
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await self._serve(ws)
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finally:
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self._ws = None
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self.running = False
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async def _serve(self, ws) -> None:
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async for raw in ws:
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if not self.running:
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break
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try:
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await self._handle_frame(ws, raw)
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except (websockets.ConnectionClosed, asyncio.CancelledError):
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raise
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except Exception as e: # noqa: BLE001 — one bad frame mustn't drop us
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await self._emit("system", event="frame_error",
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reason=f"{type(e).__name__}: {e}")
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# ── control socket (the CLI talks here) ──────────────────────────────
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async def _serve_control(self, reader: asyncio.StreamReader,
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writer: asyncio.StreamWriter) -> None:
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try:
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line = await reader.readline()
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if not line:
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return
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try:
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req = json.loads(line.decode())
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except json.JSONDecodeError:
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resp = {"ok": False, "error": "bad json"}
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else:
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resp = await self._dispatch(req)
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writer.write((json.dumps(resp) + "\n").encode())
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await writer.drain()
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except (ConnectionResetError, BrokenPipeError):
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pass
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finally:
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try:
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writer.close()
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except Exception: # noqa: BLE001
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pass
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async def _dispatch(self, req: dict) -> dict:
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op = req.get("op")
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if op == "ping":
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return {"ok": True, "pong": True, "name": self.name,
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"connected": self._ws is not None}
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if op == "status":
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return {"ok": True, "name": self.name,
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"connected": self._ws is not None,
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"granted": self.granted, "can_sudo": self.can_sudo,
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"sbx_engine": self.sbx_engine, "sbx_name": self.sbx_name,
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"users": self._roster(), "seq": self.seq,
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"host": self.server, "port": self.port}
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if op == "roster":
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return {"ok": True, "users": self._roster()}
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if op == "read":
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return await self._op_read(req)
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if op == "say":
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return await self._op_say(req)
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if op == "sbx":
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return await self._op_sbx(req)
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if op == "exec":
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return await self._op_exec(req)
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if op == "write":
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return await self._op_write(req)
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if op == "get":
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return await self._op_get(req)
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if op == "keys":
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return await self._op_keys(req)
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if op == "down":
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asyncio.get_running_loop().call_soon(self._begin_shutdown)
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return {"ok": True, "stopping": True}
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return {"ok": False, "error": f"unknown op {op!r}"}
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async def _op_read(self, req: dict) -> dict:
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since = int(req.get("since", 0))
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wait = bool(req.get("wait", False))
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timeout = float(req.get("timeout", 30.0))
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async with self.cond:
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new = [e for e in self.events if e["seq"] > since]
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if not new and wait:
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try:
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await asyncio.wait_for(self.cond.wait(), timeout)
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except asyncio.TimeoutError:
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pass
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new = [e for e in self.events if e["seq"] > since]
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return {"ok": True, "events": new, "seq": self.seq}
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async def _op_say(self, req: dict) -> dict:
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text = str(req.get("text", ""))
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if not text:
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return {"ok": False, "error": "empty text"}
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if self._ws is None:
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return {"ok": False, "error": "not connected to room"}
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try:
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await self._ws.send(self.room_fernet.encrypt(text.encode()).decode())
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except Exception as e: # noqa: BLE001
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return {"ok": False, "error": f"send failed: {type(e).__name__}: {e}"}
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await self._emit("sent", **{"from": self.name}, text=text, addressed=False)
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return {"ok": True}
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# ── sandbox drive (Phase 2) ──────────────────────────────────────────
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def _target(self) -> tuple[str | None, str, str | None]:
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"""Pick the sandbox to exec into and report why.
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Returns ``(engine, name, error)``. Prefer the operator's *own* container
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(always ours to drive). Else, if the room granted us drive AND its broker
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sandbox is a kind we can exec directly (we're co-located on this host),
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target that. ``local`` is refused here — execing on the host is opt-in
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only via our own `local` launch, never inherited from the room."""
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if self._own_engine:
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return self._own_engine, self._own_name, None
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if self.granted and self.sbx_engine in ("docker", "podman", "multipass") \
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and self.sbx_name:
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return self.sbx_engine, self.sbx_name, None
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if self.sbx_engine and not self.granted:
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return None, "", "not a granted driver (owner must `/grant`)"
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return None, "", "no sandbox — `sbx launch` one or join a room with one"
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async def _op_sbx(self, req: dict) -> dict:
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"""Manage the operator's own co-located container: launch / status / down."""
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action = req.get("action", "status")
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if action == "launch":
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engine = req.get("engine") or sbx.pick_engine()
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if not engine:
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return {"ok": False, "error": "no container engine (need podman or docker)"}
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image = req.get("image") or sbx.default_image(engine)
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name = req.get("name") or f"hh-op-{self.name}"
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ok, msg = await sbx.launch_container(engine, name, image)
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if ok:
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self._own_engine, self._own_name = engine, name
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await self._emit("sandbox", state="own-ready", engine=engine,
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name=name, image=image)
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return {"ok": ok, "engine": engine, "name": name, "image": image,
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"message": msg}
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if action == "down":
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if not self._own_engine:
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return {"ok": False, "error": "no own sandbox to tear down"}
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ok, msg = await sbx.teardown_container(self._own_engine, self._own_name)
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if ok:
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await self._emit("sandbox", state="own-down",
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engine=self._own_engine, name=self._own_name)
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self._own_engine, self._own_name = None, ""
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return {"ok": ok, "message": msg}
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# status
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engine, name, err = self._target()
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return {"ok": True, "target_engine": engine, "target_name": name,
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"reason": err, "own_engine": self._own_engine,
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"own_name": self._own_name, "room_engine": self.sbx_engine,
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"room_name": self.sbx_name, "granted": self.granted}
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async def _op_exec(self, req: dict) -> dict:
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"""Run a shell command in the target sandbox, capture combined output +
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exit code. The command runs under `sh -c` (a real shell, intended) inside
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the container — the container is the blast radius."""
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cmd = str(req.get("cmd", ""))
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if not cmd:
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return {"ok": False, "error": "empty cmd"}
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engine, name, err = self._target()
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if err:
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return {"ok": False, "error": err}
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prefix = sbx.exec_prefix(engine, name)
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if prefix is None:
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return {"ok": False, "error": f"can't address {engine}/{name}"}
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out, rc = await sbx.exec_capture(prefix + ["sh", "-c", cmd])
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await self._emit("exec", engine=engine, name=name, cmd=cmd, rc=rc)
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return {"ok": rc == 0, "rc": rc, "output": out, "engine": engine, "name": name}
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async def _op_write(self, req: dict) -> dict:
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"""Write a file in the target sandbox. Content arrives on stdin (never
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shell-parsed); the path is a positional arg. `mkdir -p` the parent first
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so an absolute path into a new dir works. Mirrors the native harness."""
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path = str(req.get("path", "")).strip()
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if not path:
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return {"ok": False, "error": "missing path"}
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content = req.get("content", "")
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data = content.encode() if isinstance(content, str) else bytes(content)
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engine, name, err = self._target()
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if err:
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return {"ok": False, "error": err}
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prefix = sbx.exec_prefix(engine, name)
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if prefix is None:
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return {"ok": False, "error": f"can't address {engine}/{name}"}
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out, rc = await sbx.exec_capture(
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prefix + ["sh", "-c", 'mkdir -p "$(dirname "$1")" && cat > "$1"',
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"hh-write", path],
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stdin=data)
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await self._emit("write", engine=engine, name=name, path=path, rc=rc)
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return {"ok": rc == 0, "rc": rc, "path": path, "bytes": len(data),
|
|
"output": out if (out or "").strip() else ""}
|
|
|
|
async def _op_get(self, req: dict) -> dict:
|
|
"""Read a file out of the target sandbox. Returns base64 (binary-safe);
|
|
the content is plumbing, so it's uncapped (unlike exec output)."""
|
|
path = str(req.get("path", "")).strip()
|
|
if not path:
|
|
return {"ok": False, "error": "missing path"}
|
|
engine, name, err = self._target()
|
|
if err:
|
|
return {"ok": False, "error": err}
|
|
prefix = sbx.exec_prefix(engine, name)
|
|
if prefix is None:
|
|
return {"ok": False, "error": f"can't address {engine}/{name}"}
|
|
raw, rc = await sbx.exec_capture(prefix + ["cat", "--", path], text=False)
|
|
if rc != 0:
|
|
return {"ok": False, "rc": rc,
|
|
"error": f"read failed (exit={rc}): {raw.decode(errors='replace')[:200]}"}
|
|
return {"ok": True, "rc": 0, "path": path,
|
|
"b64": base64.b64encode(raw).decode(), "bytes": len(raw)}
|
|
|
|
async def _op_keys(self, req: dict) -> dict:
|
|
"""Relay raw keystrokes into the room's *shared* PTY — the same
|
|
`_sbx:input` frame a human driver's terminal emits. The broker writes our
|
|
bytes to the shared shell iff we're a granted driver, so this is how the
|
|
operator drives a broker-owned sandbox (and tests interactive programs:
|
|
ctrl-c to stop, q to quit a pager, esc to leave vim). See
|
|
`sandbox.KEYS_HELP` for the byte vocabulary."""
|
|
if self._ws is None:
|
|
return {"ok": False, "error": "not connected to room"}
|
|
if not self.granted:
|
|
return {"ok": False, "error": "not a granted driver — keystrokes inert until `/grant`"}
|
|
spec = req.get("keys")
|
|
if spec in (None, "", []):
|
|
return {"ok": False, "error": "no keys", "help": sbx.KEYS_HELP}
|
|
try:
|
|
data = sbx.encode_keys(spec)
|
|
except ValueError as e:
|
|
return {"ok": False, "error": f"bad key spec: {e}"}
|
|
frame = json.dumps({"_sbx": "input", "b64": base64.b64encode(data).decode()})
|
|
try:
|
|
await self._ws.send(self.room_fernet.encrypt(frame.encode()).decode())
|
|
except Exception as e: # noqa: BLE001
|
|
return {"ok": False, "error": f"send failed: {type(e).__name__}: {e}"}
|
|
await self._emit("keys", bytes=len(data))
|
|
return {"ok": True, "bytes": len(data)}
|
|
|
|
def _begin_shutdown(self) -> None:
|
|
self._stop.set()
|
|
self.running = False
|
|
if self._ws is not None:
|
|
asyncio.create_task(self._ws.close())
|