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loopx-self-repair

Diagnose and repair LoopX control-plane drift or agent behavior drift. Use when a LoopX task makes unexpectedly small progress, follows a stale or contradictory recommended_action, ignores a higher-priority blocked item while doing fallback work, reports vague owner/user gates, loses todo projection, misaligns benchmark treatment with the real product path, mixes temporary artifacts into commits, or when the user asks for root-cause analysis, self-repair, or why the harness/agent behaved unexpectedly.

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2026년 9월 21일 07:07
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SKILL.md
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name
loopx-self-repair
description
Diagnose and repair LoopX control-plane drift or agent behavior drift. Use when a LoopX task makes unexpectedly small progress, follows a stale or contradictory recommended_action, ignores a higher-priority blocked item while doing fallback work, reports vague owner/user gates, loses todo projection, misaligns benchmark treatment with the real product path, mixes temporary artifacts into commits, or when the user asks for root-cause analysis, self-repair, or why the harness/agent behaved unexpectedly.
# LoopX Self Repair Use this skill to turn a surprising LoopX behavior into a durable fix, not only an apology or a one-off explanation. ## Repair Loop 1. **Pause delivery selection.** Do not spend quota or continue adapter work until the control-plane facts explain why that work is valid. 2. **Build a compact evidence packet.** Prefer structured surfaces: ```bash git status --short --branch loopx --format json diagnose --goal-id <goal-id> loopx --format json status --goal-id <goal-id> --limit 20 loopx --format json quota should-run --goal-id <goal-id> [--agent-id <agent-id>] loopx --format json history --goal-id <goal-id> --limit 5 ``` `status` defaults to the registry/dashboard view, but accepts `--goal-id` when the repair needs one goal-focused projection. Use `diagnose --goal-id` for the richer goal-specific agent reasoning packet. Also inspect the project-local registry and the registry-declared active state file when relevant. Use the shared global registry for heartbeat/quota truth. 3. **Classify the failure.** Read `references/repair-patterns.md` and match the symptoms to a known pattern. If no pattern fits, add one after the fix. 4. **Assign the responsible layer.** Separate: - agent behavior mistake; - state projection or quota payload bug; - active-state authoring gap; - benchmark harness mismatch; - docs/process hygiene gap. 5. **Repair at the lowest durable layer.** - If it is a one-off agent mistake, write back the correct state/todo and size the next scoped effort to its verifiable result, evidence and risk. - If the machine projection misled the agent, fix CLI/status/quota projection and add a focused smoke. - If the user correction changes the goal acceptance, says the agent missed the intended loop, or exposes a product bottleneck that is not visible in quota/status, write a bounded `goal_vision_replan_contract_v0` packet with `replan_trigger_summary` through normal `loopx refresh-state --vision-*` fields, using the same `--agent-id` as the current lane, or `--agent-vision-json` for generated multi-field patches, before returning to delivery. If the next executable step is already known, also add or link the concrete successor todo; do not leave the correction only in chat or an incident note. - If a design rule is missing, update the interaction model or todo list before implementing broad behavior. - If benchmark evidence is not attributable, add posthoc trace/parity checks before claiming uplift or regression. 6. **Validate before resuming.** Run the smallest smoke or CLI check that would have caught the issue, plus `loopx check` on changed public surfaces when docs/contracts changed. 7. **Write back the lesson.** Update active goal state, docs, contributor tasks, or this skill so the same failure mode is visible next time. ## Upstream Issue Escalation A public GitHub issue is an optional final escalation, not a default side effect of self-repair. Consider it only when the responsible layer is a reusable LoopX product, CLI, skill, installer, or control-plane gap and durable upstream tracking adds value beyond the local repair or PR. Read `references/upstream-issue-escalation.md` before publishing anything. Invoking this skill never grants publication permission. The guarded path must: 1. reject private, project-specific, support-only, and security-sensitive reports; 2. reduce the evidence to a minimal public-safe reproduction and scan the draft with `loopx check`; 3. search open and closed issues by a stable fingerprint before creating one; 4. auto-submit only under explicit current-turn approval or durable owner opt-in; otherwise show the exact draft and ask once for confirmation; 5. create at most one issue per repair turn, then record the existing or new issue URL in the relevant LoopX todo/evidence writeback. If qualification, authority, authentication, boundary scanning, or duplicate search is uncertain, preserve the draft and stop before publication. Prefer a direct fix or PR when no separate issue is needed for coordination. ## Vision / Replan Writeback Use the bounded vision contract when self-repair discovers that LoopX did not notice a missing outcome, route, or acceptance condition by itself. The packet is the bridge from human or agent insight to quota-visible replan state: ```json { "schema_version": "goal_vision_replan_contract_v0", "state": "vision_drift_detected", "vision_patch": { "vision_summary": "Name the corrected route or acceptance target.", "acceptance_summary": "Name the machine-visible condition that must hold.", "replan_trigger_summary": "Name why the current frontier is insufficient." }, "todo_delta": ["create_successor"] } ``` Record it with normal inline `refresh-state --vision-summary --vision-acceptance --vision-replan-trigger` fields using the same `--agent-id` that ran the repair. Use `--agent-vision-json` when a generated patch is clearer than a command line. Replan closes only through a typed semantic observation or an atomic Todo transition bound with `--replan-obligation-id`, a typed `--action-kind`, and a stable `--target-key` or Explore node ref; do not append a second `--autonomous-replan-recorded` repair ACK. A vision patch without a runnable Todo is still useful: `quota should-run` can promote its `replan_trigger_summary` into `goal_frontier_projection.acceptance_gaps[]` when the advancement frontier is empty. If the repair concludes that the existing per-agent vision is still correct, close the required checkpoint with `--vision-unchanged-reason` instead of writing a fake patch. If a material `refresh-state` lacks both a patch and an unchanged/no-follow-up decision, LoopX should preserve a per-agent `vision_checkpoint_v0` with `decision=missing_required` so the same agent's next quota check can enter replan. A scheduler wake alone is not a material vision boundary: when quota explicitly projects a normally admitted open advancement Todo as `delivery_boundary=in_flight_continuation`, use the projected settlement command and do not invent a vision patch. The next heartbeat keeps that same Todo selected only after accountable `outcome_progress`; Todo completion, blocker/gap, durable Next Action change, replan, or terminal closeout must return to the strict semantic checkpoint. ## Evidence Discipline - Do not read or commit raw private logs, trajectories, verifier output, credentials, internal links, or production material. - Do not solve contradictory payloads by guessing. If `recommended_action`, `goal_boundary.write_scope`, todos, and interaction contract disagree, treat that as a projection bug or state authoring bug first. - Do not let fallback work hide the primary blocker. When a higher-priority path is gated but safe fallback is valid, report both the concrete gate and the fallback progress. - Do not equate bounded work with a small operation. If turns repeatedly stop after setup or surface-only edits, check whether a verifiable result could have been reached within scope and budget. Repair the premature stop, not by imposing a minimum number of calls/files or ignoring explicit stop conditions. ## Reference Routes - For known symptom-to-repair mappings, read `references/repair-patterns.md`. - For guarded public GitHub issue escalation, read `references/upstream-issue-escalation.md`. - For user/agent/state channel semantics, read `../../docs/state-interaction-model.md` and `../../docs/concepts/interaction-pattern-catalog.md`. - For quota and heartbeat decisions, read `../../docs/quota-allocation.md` and `../../docs/heartbeat-automation-prompt.md`. - For commit/PR hygiene failures, read `../../AGENTS.md`.
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