cao-session-liveness
awslabs/cli-agent-orchestrator/skills/cao-session-liveness/SKILL.md
Verify whether a CAO session is actually alive and what it really
Skill1.4k starsChanged 11 days ago
--- name: cao-session-liveness description: Verify whether a CAO session is actually alive and what it really said, before reporting progress or completion to a user. Use alongside cao-session-management whenever you launch, poll, or report on a CAO session — especially when a session appears stalled, a send times out, or a status value looks inconsistent with the output. --- # CAO Session Liveness Companion to `cao-session-management`, which covers the mechanics of launching and messaging sessions. This skill covers a single question that mechanics alone cannot answer: **is the session actually alive, and is the status telling me the truth?** ## Why this matters Every CAO provider infers agent state by pattern-matching the rendered terminal screen. There is no structured protocol between CAO and the provider CLI. A provider that has exited, crashed, or stalled on an unanswerable dialog can leave a screen that still matches an `idle` or `processing` pattern. The consequence is specific and it is the failure this skill exists to prevent: **reporting progress on a session that is already dead.** ## The two-signal rule Never report readiness, progress, or completion from a status value alone. Always corroborate with output before you tell a user anything: 1. Read the status (`get_terminal_status`, or `cao session status SESSION`). 2. Read the output tail (`read_session_output` / `get_terminal_output`, or `cao session status SESSION --json` and inspect `last_output`). 3. If the two disagree, **the output wins.** A status of `idle` with an output tail showing a shell prompt means the CLI exited. Report the session as dead, not as ready. ## Dead-session discriminators Treat any of the following in the output tail as proof the provider is no longer running, regardless of the reported status: | Signal | Means | |---|---| | `Session ended.` / `Resume with: <cli> --resume-id ...` | The CLI exited on its own | | `error: Conflicting options:` or a usage/help banner | The CLI rejected its launch flags and never started | | `API Error (...)`, `400`, or a model/auth failure | The provider started but cannot reach a model | | A bare shell prompt with a directory and timestamp, no agent chrome | The pane fell back to the shell | | An output read that fails with an extraction error | No response boundary on screen; corroborate before trusting | A session parked in `waiting_user_answer` that never advances is usually stalled on a dialog nothing will answer. Treat it as dead weight, report it to the user, and do not silently kill it. ### Not a dead session: a finished handoff worker A blocking `handoff` tears its worker down once it returns. The worker terminal ID the conductor reports was valid **during** the call and is gone afterwards, so querying it later is expected to fail: - `get_terminal_status` / `GET /terminals/<id>` returns not-found - `cao session status SESSION --workers` lists no workers Neither is evidence the conductor invented the delegation. Confirm a handoff from the **conductor's own transcript** — a full-mode output read showing the `handoff` tool call, its `agent_profile`, and the returned output — not from the terminal registry. Only a non-blocking `assign` leaves a worker alive to query. Do not accuse a conductor of fabricating a delegation on the strength of a missing terminal alone. ## Verify a provider before depending on it Provider reliability varies, is version-sensitive, and changes as upstream CLIs release new dialogs and flags. Do not assume; verify once per environment: 1. Launch a throwaway session in a scratch directory. 2. Apply the two-signal rule. 3. Send a trivial task with a short timeout and confirm output returns. 4. Shut the session down. Known reliability characteristics, as context for interpreting what you see: | Provider | Detection basis | What to watch for | |---|---|---| | `kiro_cli` | Version-specific prompt, credits, and separator patterns | New startup dialogs that default to a decline option; flag combinations the installed CLI rejects | | `hermes` | Idle timer stable across repeated polls | Custom themes break prompt matching; slowest to confirm completion. Patterns are overridable by environment variable | | `opencode_cli` | Alt-screen TUI completion marker | Scrollback is roughly one viewport; a long single response can lose its own top and fail extraction | | `claude_code`, `codex` | Rendered-screen detection | Generally stable headless; still apply the two-signal rule | If a provider fails to launch headlessly, report the exact signature to the user and offer a different provider. Do not retry the same launch repeatedly — a flag rejection or a declining dialog will fail identically every time. ## Interpreting a send that does not return - A **timeout is not a failure.** The agent is still working; the caller stopped waiting. Say so, and check again later. - **Never re-send a task after a timeout.** The original may still be running, and a duplicate risks conflicting work in the same directory. - A **busy terminal refuses input.** Wait for `idle` or `completed`; do not force. - An **async send returns nothing by design.** Poll afterwards, applying the two-signal rule. ## Record what each session is for CAO stores a session's name, not its purpose. An inventory of live sessions cannot tell you which is safe to touch. Keep a short registry outside CAO — one line per session you launch: name, provider, working directory, purpose, date. Update it on launch and on shutdown, and read it before answering any question about what a session is doing or before acting on one. ## Do not act on sessions you did not launch Long-running sessions may hold real, unrecoverable work. Reads are always safe. Before sending to or shutting down a session you did not start yourself, ask the user first. Never issue a shutdown that targets all sessions at once. ## Related - [cao-session-management](../cao-session-management/SKILL.md) — launching, messaging, and worker communication mechanics
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