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>
275 lines
11 KiB
Python
275 lines
11 KiB
Python
"""Offline tests for the operator bridge (no server, no real websocket).
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Each test builds the bridge *inside* its own ``asyncio.run`` so the bridge's
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``asyncio.Condition`` binds to that test's loop (it is loop-bound on first use).
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"""
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import sys
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import asyncio
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import json
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from pathlib import Path
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sys.path.insert(0, str(Path(__file__).parent.parent))
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from cryptography.fernet import Fernet
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from cmd_chat.operator.bridge import OperatorBridge
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from cmd_chat.operator import sandbox as sbx
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def _bridge(name="oracle", trigger=None):
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b = OperatorBridge("h", 1, name=name, password="pw", no_tls=True, trigger=trigger)
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b.room_fernet = Fernet(Fernet.generate_key())
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return b
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def _enc(b, text):
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return b.room_fernet.encrypt(text.encode()).decode()
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def _msg_frame(b, sender, text):
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"""A server 'message' envelope carrying an encrypted line from `sender`."""
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return json.dumps({"type": "message",
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"data": {"username": sender, "text": _enc(b, text)}})
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class FakeWS:
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def __init__(self):
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self.sent = []
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async def send(self, data):
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self.sent.append(data)
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async def close(self):
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pass
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# ── addressing ────────────────────────────────────────────────────────────
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def test_is_addressed():
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b = _bridge("oracle", trigger="@bot")
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assert b._is_addressed("hey oracle you there")
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assert b._is_addressed("@oracle ping")
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assert b._is_addressed("ORACLE up?") # case-insensitive
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assert b._is_addressed("ask @bot to help") # custom trigger
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assert not b._is_addressed("oracleX is a var") # word boundary
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assert not b._is_addressed("just chatting")
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# ── inbox: seq + long-poll wake ───────────────────────────────────────────
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def test_emit_seq_monotonic_and_ring():
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async def go():
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b = _bridge()
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for i in range(5):
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await b._emit("message", **{"from": "a"}, text=f"m{i}", addressed=False)
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seqs = [e["seq"] for e in b.events]
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assert seqs == [1, 2, 3, 4, 5]
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assert b.seq == 5
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asyncio.run(go())
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def test_read_long_poll_wakes_on_emit():
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async def go():
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b = _bridge()
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async def reader():
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return await b._op_read({"since": 0, "wait": True, "timeout": 5})
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async def writer():
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await asyncio.sleep(0.05)
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await b._emit("message", **{"from": "alice"}, text="hi oracle", addressed=True)
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rd, _ = await asyncio.gather(reader(), writer())
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assert rd["ok"] and len(rd["events"]) == 1
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assert rd["events"][0]["text"] == "hi oracle"
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assert rd["events"][0]["addressed"] is True
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asyncio.run(go())
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def test_read_since_filters():
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async def go():
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b = _bridge()
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for i in range(3):
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await b._emit("message", **{"from": "a"}, text=str(i), addressed=False)
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rd = await b._op_read({"since": 2, "wait": False})
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assert [e["seq"] for e in rd["events"]] == [3]
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asyncio.run(go())
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# ── frame routing ─────────────────────────────────────────────────────────
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def test_message_frame_emits_addressed():
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async def go():
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b = _bridge("oracle")
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await b._handle_frame(None, _msg_frame(b, "alice", "hey oracle help"))
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msgs = [e for e in b.events if e["kind"] == "message"]
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assert len(msgs) == 1
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assert msgs[0]["from"] == "alice" and msgs[0]["addressed"] is True
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asyncio.run(go())
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def test_own_message_ignored():
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async def go():
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b = _bridge("oracle")
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await b._handle_frame(None, _msg_frame(b, "oracle", "/say echo"))
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assert [e for e in b.events if e["kind"] == "message"] == []
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asyncio.run(go())
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def test_control_acl_recorded():
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async def go():
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b = _bridge("oracle")
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ctrl = json.dumps({"_perm": "acl", "owner": "alice",
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"drivers": ["alice", "oracle"], "sudoers": ["alice"]})
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await b._handle_frame(None, _msg_frame(b, "alice", ctrl))
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assert b.granted is True
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acl = [e for e in b.events if e["kind"] == "acl"]
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assert acl and acl[0]["granted"] is True
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# an ACL control frame must NOT surface as a chat 'message'
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assert [e for e in b.events if e["kind"] == "message"] == []
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asyncio.run(go())
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def test_control_sandbox_status_recorded():
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async def go():
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b = _bridge("oracle")
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ctrl = json.dumps({"_sbx": "status", "state": "ready",
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"engine": "podman", "name": "hack-house", "backend": "podman"})
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await b._handle_frame(None, _msg_frame(b, "alice", ctrl))
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assert b.sbx_engine == "podman" and b.sbx_name == "hack-house"
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assert any(e["kind"] == "sandbox" for e in b.events)
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asyncio.run(go())
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def test_init_backfill_once():
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async def go():
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b = _bridge("oracle")
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init = json.dumps({
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"type": "init",
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"users": [{"username": "alice"}, {"username": "oracle"}],
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"messages": [
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{"username": "alice", "text": _enc(b, "older line")},
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{"username": "oracle", "text": _enc(b, "my own old line")}, # skipped
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],
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})
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await b._handle_frame(None, init)
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backfilled = [e for e in b.events if e.get("backfill")]
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assert len(backfilled) == 1 and backfilled[0]["from"] == "alice"
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assert backfilled[0]["addressed"] is False
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# a reconnect re-sends init; we must not duplicate history
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await b._handle_frame(None, init)
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assert len([e for e in b.events if e.get("backfill")]) == 1
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asyncio.run(go())
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# ── control ops ───────────────────────────────────────────────────────────
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def test_say_requires_connection():
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async def go():
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b = _bridge()
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resp = await b._op_say({"text": "hello"})
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assert resp["ok"] is False and "not connected" in resp["error"]
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asyncio.run(go())
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def test_say_sends_and_records():
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async def go():
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b = _bridge()
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ws = FakeWS()
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b._ws = ws
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resp = await b._op_say({"text": "yes operator online"})
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assert resp["ok"] is True
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assert len(ws.sent) == 1
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# round-trips through the room key
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assert b.room_fernet.decrypt(ws.sent[0].encode()).decode() == "yes operator online"
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sent = [e for e in b.events if e["kind"] == "sent"]
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assert sent and sent[0]["text"] == "yes operator online"
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asyncio.run(go())
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def test_dispatch_status_and_roster():
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async def go():
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b = _bridge("oracle")
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b.users = [{"username": "oracle"}, {"username": "alice"}]
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st = await b._dispatch({"op": "status"})
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assert st["ok"] and st["name"] == "oracle" and st["connected"] is False
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assert set(st["users"]) == {"oracle", "alice"}
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ping = await b._dispatch({"op": "ping"})
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assert ping["pong"] is True
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unknown = await b._dispatch({"op": "frobnicate"})
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assert unknown["ok"] is False
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asyncio.run(go())
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# ── sandbox: keystroke encoding (the stop-vocabulary) ─────────────────────
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def test_encode_keys_named_and_literal():
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assert sbx.encode_keys(["ls -la", "enter"]) == b"ls -la\r"
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assert sbx.encode_keys("ctrl-c") == b"\x03" # SIGINT
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assert sbx.encode_keys("ctrl-d") == b"\x04" # EOF
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assert sbx.encode_keys(["CTRL-C"]) == b"\x03" # case-insensitive
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assert sbx.encode_keys("up") == b"\x1b[A" # ANSI arrow
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# 'text:' forces verbatim so a literal word like "enter" can be typed
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assert sbx.encode_keys(["text:enter"]) == b"enter"
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assert sbx.encode_keys("hex:1b5b41") == b"\x1b[A"
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# a bare unknown string is typed as-is
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assert sbx.encode_keys("q") == b"q"
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def test_exec_prefix_shapes():
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assert sbx.exec_prefix("podman", "box") == ["podman", "exec", "-i", "box"]
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assert sbx.exec_prefix("docker", "box") == ["docker", "exec", "-i", "box"]
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assert sbx.exec_prefix("multipass", "vm") == ["multipass", "exec", "vm", "--"]
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assert sbx.exec_prefix("local", "x") == []
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assert sbx.exec_prefix("podman", "") is None # unaddressable
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assert sbx.exec_prefix("qemu", "x") is None
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# ── sandbox: target gating ────────────────────────────────────────────────
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def test_target_prefers_own_then_granted_room():
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async def go():
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b = _bridge("oracle")
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# nothing yet → a clear error, no target
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eng, name, err = b._target()
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assert eng is None and err and "no sandbox" in err
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# room has a sandbox but we're not granted → refused
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b.sbx_engine, b.sbx_name = "podman", "hack-house"
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eng, name, err = b._target()
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assert eng is None and "granted" in err
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# granted → drive the room's container directly (co-located exec)
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b.granted = True
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eng, name, err = b._target()
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assert (eng, name, err) == ("podman", "hack-house", None)
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# our own container always wins
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b._own_engine, b._own_name = "podman", "hh-op-oracle"
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eng, name, err = b._target()
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assert (eng, name, err) == ("podman", "hh-op-oracle", None)
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asyncio.run(go())
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def test_keys_requires_connection_and_grant():
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async def go():
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b = _bridge("oracle")
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# not connected
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r = await b._op_keys({"keys": ["enter"]})
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assert r["ok"] is False and "not connected" in r["error"]
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# connected but not granted → inert
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b._ws = FakeWS()
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r = await b._op_keys({"keys": ["enter"]})
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assert r["ok"] is False and "granted" in r["error"]
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# granted → injects an encrypted _sbx:input frame
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b.granted = True
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r = await b._op_keys({"keys": ["ls", "enter"]})
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assert r["ok"] is True and r["bytes"] == 3
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frame = json.loads(b.room_fernet.decrypt(b._ws.sent[0].encode()).decode())
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assert frame["_sbx"] == "input"
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import base64 as _b64
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assert _b64.b64decode(frame["b64"]) == b"ls\r"
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asyncio.run(go())
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def test_exec_requires_target():
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async def go():
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b = _bridge("oracle")
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r = await b._op_exec({"cmd": "echo hi"})
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assert r["ok"] is False and "no sandbox" in r["error"]
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r = await b._op_exec({"cmd": ""})
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assert r["ok"] is False and "empty" in r["error"]
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asyncio.run(go())
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