plugins/lisa/skills/queue-status/SKILL.md
Read-only operator surface for the current project's PRD and build backlog health. Resolves the configured PRD source and build tracker from the same Lisa contract used by intake and repair, summarizes lifecycle-role counts, distinguishes idle queues from setup problems, and highlights actionable blocked, in-review, claimed, or shipped work.
npx skillsauth add codyswanngt/lisa queue-statusInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
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/lisa:queue-status is the operator-facing inspection surface for Lisa's live backlog state. It answers, for the current repo only, what Lisa's configured PRD queue and build queue currently look like, whether the queues appear healthy or stuck, and which items are most actionable next.
This command is read-only in v1. It does not create, claim, relabel, repair, transition, comment on, or otherwise mutate queue items. It complements /lisa:intake, /lisa:repair-intake, /lisa:verify-prd, /lisa:automation-status, and the underlying vendor trackers; it does not replace them.
Do not ask for confirmation once invoked. This skill inspects queue state and reports what it finds. There are no write-side effects in the v1 surface.
Inspect only the Lisa queues for the current project:
Resolve queue source, tracker, lifecycle roles, and queue arguments from the same contract Lisa already uses for /lisa:intake and /lisa:repair-intake. Do not invent a second source of truth for queue detection, lifecycle naming, or stack support.
Support a repo-scoped queue selector when requested:
queue=prd: inspect only the PRD queuequeue=build: inspect only the build queueTypical entrypoints:
/lisa:queue-status
/lisa:queue-status queue=prd
/lisa:queue-status queue=build
Use this command when an operator needs to answer one of these questions for the current repo:
/lisa:intake, /lisa:repair-intake, /lisa:automation-status, or /lisa:verify-prd next?"Keep the report terminal-first and immediately actionable: observable queue facts first, then the smallest useful next command.
Render the report in grouped sections so operators can scan it top-down without reading raw tracker dumps:
For each inspected queue, report:
IDLE, HEALTHY, ATTENTION_NEEDED, or MISCONFIGURED.The report should stay terminal-first and immediately actionable: observable queue facts first, then the smallest useful next step.
Each queue section may include one or more highlighted items. A highlight is not a raw dump of every issue in that role; it is the single oldest or otherwise most actionable item Lisa can justify surfacing without mutating work.
Interpret highlights by role:
ready: work is waiting to be claimed. The usual next step is /lisa:intake <queue>.blocked: work is stuck behind an explicit blocker or failed pre-flight. The usual next step is /lisa:repair-intake <queue> after validating the blocker context.claimed or in-review/review states: work is in motion but may be aging. The usual next step is to inspect the active implementation or review path before escalating to /lisa:repair-intake <queue>.shipped: PRD work looks ready for initiative-level acceptance. The usual next step is /lisa:verify-prd <prd-ref>.If both queues look unexpectedly quiet or stale, mention /lisa:automation-status as the scheduler-health follow-up before implying the queues themselves are empty or broken.
Use a stable terminal-friendly shape:
Overall verdict line when both queues are shown.PRD queue heading with resolved source, verdict, lifecycle counts, actionable highlights, and remediation.Build queue heading with resolved tracker, verdict, lifecycle counts, actionable highlights, and remediation.Queue sections should stay visually grouped. Do not interleave PRD and build facts item-by-item.
intake and repair-intake use..lisa.config.json instead of hardcoding one vendor's lifecycle names.MISCONFIGURED rather than pretending the queue is empty.IDLE: the queue resolved successfully and no actionable ready or stuck work is present.HEALTHY: the queue resolved successfully and the current backlog/state appears normal.ATTENTION_NEEDED: the queue resolved, but blocked, stalled, or accumulating work needs operator follow-up.MISCONFIGURED: Lisa could not resolve the queue, could not find the expected lifecycle namespace, or detected another setup/adoption problem.When both queues are in scope, derive the overall verdict from the queue sections:
MISCONFIGURED if any inspected queue is misconfigured.ATTENTION_NEEDED if any inspected queue needs operator follow-up.HEALTHY if any inspected queue has normal actionable work in motion.IDLE.Status-specific remediation guidance:
IDLE: explain that the queue is currently quiet and no immediate operator action is required.HEALTHY: point operators to /lisa:intake or /lisa:repair-intake when they want Lisa to act on the reported state.ATTENTION_NEEDED: identify the most actionable blocked or stalled items and suggest the next Lisa or tracker-native command to investigate.MISCONFIGURED: show which queue contract is missing or unresolved and recommend fixing .lisa.config.json, adopting the lifecycle namespace, or rerunning the relevant setup flow.Command handoff expectations:
/lisa:intake <queue> when the actionable highlight is ready work./lisa:repair-intake <queue> when the actionable highlight is blocked, stalled, or suspiciously old claimed/review work./lisa:verify-prd <prd-ref> when the PRD side surfaces shipped work that appears ready for initiative-level verification./lisa:automation-status when queue output suggests scheduler drift, stale unattended execution, or a mismatch between expected and observed queue activity.intake and repair-intake contract semantics so queue health reporting does not drift from execution behavior.development
Prepare a machine — a fresh laptop or a throwaway container — to run coding agents, before any repository exists. Detects which of Lisa's supported agents (Claude Code, Codex, Cursor, OpenCode, Antigravity, Copilot) are already installed, asks which credential manager the machine uses (Bitwarden, 1Password, Doppler, Vault, AWS, or none), and installs only what is missing, each by its vendor's own preferred method. Idempotent, headless by default, and emits a Dockerfile for a spin-up/spin-down environment. Run it on a new machine, in a container, or before cloning anything.
tools
Provision and verify a remote execution environment for a host project — Codex Cloud today, other remote surfaces as they are added. Generates a repository-owned setup script that installs the declared toolchain, materializes secrets through lisa-secrets-access, and runs the project's own hook. Provisions by API where one exists, by driving the vendor console where one does not, and by emitting exact config otherwise — then proves the result with the same read-back regardless of which tier did the work. Use before dispatching any work with executionEnv.
tools
Bring a developer's machine in line with the toolchain the project declares. Reports every tool in remoteEnv.tools that is missing, outdated, or unpinned for this platform, and installs the missing ones into ~/.local/bin from the same pinned, checksummed entries the remote surfaces use — but only when asked. Same manifest, same pins, same installers as lisa-setup-remote-env; what differs is consent and that the pin is a floor rather than an equality. Run it on a fresh checkout, after a manifest change, or when a tool fails at the moment of use.
tools
Route one unit of work to a remote execution surface. Reads the executionEnv parameter (local by default, codex-cloud or claude-web today), verifies the environment is provisioned and bound to this repository, submits a thin skill invocation, records the task identifier to .lisa/remote-dispatch.json, and exits without polling. Routing only — the remote runs the identical skill from the identical repository. Composable and inline: other skills invoke it via the Skill tool rather than users calling it directly.