38bc555dbf
The firecracker supervise MCP daemon 500'd (-32603) on egress-allow/block: it ran with no BOT_BOTTLE_ROOT/SUPERVISE_DB_PATH, so it targeted a stray, unmigrated SQLite file and `write_proposal` hit "no such table: supervise_proposals". Meanwhile the in-VM control plane migrated only the registry table (orchestrator_bottles) into its own DB, and the host operator reads a third, disconnected DB — three files, none shared. Consolidate to one DB per host, owned by the control plane on the persisted registry volume (/var/lib/bot-bottle/db/bot-bottle.db): - orchestrator startup now migrates the supervise queue + audit tables into the same file it migrates the registry into (StoreManager), so the control-plane DB carries every table. - the in-VM supervise daemon is pointed at that same file via SUPERVISE_DB_PATH, so daemon and control plane share one queue. `list-egress-routes` already worked (no DB); egress-allow now queues + waits on the single persisted DB instead of erroring. Validated against a live infra VM: migrate + write_proposal succeeds and the proposal is queued. The host-operator HTTP bridge (so approvals complete from the host, unifying docker onto the same path) is the follow-up. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01WBMWTEtQdJ4W5UrWuLHCck
92 lines
3.7 KiB
Python
92 lines
3.7 KiB
Python
"""Run the orchestrator control plane as a plain process (PRD 0070 dev-harness).
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python -m bot_bottle.orchestrator [--host H] [--port P] [--db PATH]
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The PRD sequences the orchestrator as a plain-process dev-harness first, so
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the consolidation core (registry + attribution + HTTP control plane + live
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reload) can be exercised with fast iteration, decoupled from any VM /
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container packaging. Wrapping this exact service in a backend-native unit
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(docker container, then Firecracker VM) comes later.
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"""
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from __future__ import annotations
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import argparse
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import secrets
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from pathlib import Path
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from .. import log
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from ..store_manager import StoreManager
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from .broker import LaunchBroker, StubBroker
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from .control_plane import make_server
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from .docker_broker import DockerBroker
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from .registry import RegistryStore, default_db_path
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from .service import Orchestrator
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from .gateway import DockerGateway, Gateway
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def main(argv: list[str] | None = None) -> int:
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"""Parse args, migrate the registry, and serve the control plane."""
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parser = argparse.ArgumentParser(prog="bot_bottle.orchestrator")
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parser.add_argument("--host", default="127.0.0.1", help="bind address")
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parser.add_argument("--port", type=int, default=8080, help="bind port (0 = ephemeral)")
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parser.add_argument(
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"--db", type=Path, default=None,
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help=f"registry DB path (default: {default_db_path()})",
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)
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parser.add_argument(
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"--broker", choices=("stub", "docker"), default="stub",
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help="launch broker: 'stub' records requests; 'docker' runs containers",
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)
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parser.add_argument(
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"--gateway", action="store_true",
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help="run one consolidated per-host gateway (build-if-missing)",
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)
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args = parser.parse_args(argv)
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registry = RegistryStore(args.db)
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registry.migrate()
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# One DB per host: the supervise queue + audit tables live in the SAME
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# SQLite file the registry owns, so the control plane is the single
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# source of truth. The in-VM supervise daemon writes here; the host
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# operator reaches it over HTTP (never a second, disconnected DB).
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StoreManager(registry.db_path).migrate()
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# An ephemeral signing secret ties the orchestrator (signer) to its
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# broker (verifier). 'stub' records launches instead of starting
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# anything; 'docker' runs real containers (firecracker drops in later).
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secret = secrets.token_bytes(32)
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broker: LaunchBroker = DockerBroker(secret) if args.broker == "docker" else StubBroker(secret)
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# Standalone `--gateway` (not the consolidated flow, where the host
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# lifecycle runs the gateway). The gateway resolves against this same
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# process; the URL is only reachable when they share a docker network.
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gateway: Gateway | None = (
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DockerGateway(orchestrator_url=f"http://{args.host}:{args.port}")
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if args.gateway else None
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)
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orchestrator = Orchestrator(registry, broker, secret, gateway)
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# One persistent per-host gateway, shared by every bottle: build the
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# bundle image if missing, then bring the singleton up (idempotent).
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if gateway is not None:
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orchestrator.ensure_gateway()
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log.info("consolidated gateway ensured", context={"name": gateway.name})
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server = make_server(orchestrator, host=args.host, port=args.port)
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bound_host, bound_port = server.server_address[0], server.server_address[1]
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log.info(
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"orchestrator control plane listening",
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context={"host": bound_host, "port": bound_port, "db": str(registry.db_path)},
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)
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try:
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server.serve_forever()
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except KeyboardInterrupt:
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log.info("orchestrator shutting down")
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finally:
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server.server_close()
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return 0
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if __name__ == "__main__":
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raise SystemExit(main())
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