hep-storm
SkillAI & modelshep-storm is a skill that runs a robust multi-agent loop, sending tasks to real agents and carrying a verified pipeline all the way to the end. Once added, your AI can take on bigger jobs by routing each task to an agent and working through the steps until the whole pipeline is complete.
Available today. Use it from your connected AI after setup.
No other account needed.
Add hep-storm to your AI, then hand it a task and it will route the work through its agent loop and run the pipeline through to completion.
Then ask your AI: use the hep-storm skill
What your AI can do with it
- Route tasks to real agents
- Run a multi-agent loop that keeps work moving until it is done
- Execute a verified pipeline from start to finish
- Carry multi-step jobs through to completion instead of stopping partway
What this skill tells your AI
The instructions your AI receives, as published by agentlas-ai/agentlas-os in kimi/skills/hep-storm/SKILL.md and read by ahel’s review.
Update fallback: 자동 업데이트가 안 되면 hephaestus update를 한 번 실행하세요. 업데이트하지 않아도 현재 버전 명령은 그대로 동작합니다.
Hephaestus Stormbreaker loop
Raw arguments: everything the user typed after /skill:hep-storm.
Codex plugins cannot register slash commands, so this custom prompt is the
explicit entrypoint (/prompts:hep-storm). The same contract is also available
implicitly via the hep-storm skill. Also triggered by
@Hephaestus storm <goal>.
Drive a goal through the Stormbreaker Loop — Hephaestus' force-robust, verifier-first execution loop. Unlike a one-shot answer or a generic parallel fan-out, Stormbreaker routes the goal to real Agentlas specialists, structures the work as a dependency-ordered pipeline fabric, drives each work packet as a hardened goal loop (it does not stall, run away, or claim false success), and refuses to report success without evidence. In an agentic runtime you are the executor — the engine gives you the verified plan; you carry it out with your own tools.
Use it for loop-worthy work: apps, sites, agents, automations, debugging, multi-step research, data/report generation — anything with files, tools, tests, or external verification. Trivial questions should be answered directly, not stormed.
Core-owned Goal + UltraCode harness
Every result includes execution_harness. Apply
execution_harness.system_prompt verbatim before planning or executing any
packet, and retain its prompt_sha256 in the goal ledger. Do not redefine,
summarize, or replace Goal mode or UltraCode mode in this Codex adapter. If live
session JSON is available, expose it as AGENTLAS_SESSION_INVENTORY; otherwise
use Core's explicit host:primary fallback and do not invent workers or models.
With no external executor, status: materialized plus
final_gate.can_report_success: false is the expected handoff to Codex's native
tools, never a completed run.
1. Resolve the runner and materialize the execution fabric
Resolve the runner — first executable wins; runtime cache fallback:
RUNNER=""
for c in \
"$HOME/.agentlas/runtime/current/bin/hephaestus" \
./bin/hephaestus
do [ -x "$c" ] && RUNNER="$c" && break; done
if [ -z "$RUNNER" ]; then
for cache in \
"${CODEX_HOME:-$HOME/.codex}/plugins/cache/agentlas-core-engine/hephaestus" \
"$HOME/.claude/plugins/cache/agentlas-core-engine/hephaestus"; do
newest="$(ls -d "$cache"/*/bin/hephaestus 2>/dev/null | sort -V | tail -1)"
[ -n "$newest" ] && [ -x "$newest" ] && RUNNER="$newest" && break
done
fi
[ -n "$RUNNER" ] || { echo "Hephaestus runtime not found. Run the installer first." >&2; exit 1; }
if [ "${HEPHAESTUS_AUTH_AUTOPOPUP:-1}" != "0" ]; then
"$RUNNER" auth ensure --timeout 180 >/dev/null 2>&1 || true
fi
# Route + materialize the pipeline fabric for THIS goal. No --executor-command:
# the host model (you) executes each packet natively. --research-evidence grounds
# plan/research packets with Research Engine receipts.
FABRIC="$("$RUNNER" hep-storm "$ARGUMENTS" --research-evidence --runtime codex)"
printf '%s\n' "$FABRIC"
Read route_decision.action (or route_action) and branch — Stormbreaker only
auto-materializes a full fabric for a pipeline; other actions still start a
storm, just with the workforce the router chose:
pipeline— the result carries theexecution_fabric(packets,parallel_groups,sessions,resume_policy), per-packetwrite_scopeandgoal/verifier, apipeline_id, ajournalpath, andfinal_gatecriteria. Run the full loop in §2.clarify— the goal is ambiguous. Askclarify_questionwith the candidate list as ONE batch, then re-run"$RUNNER" hep-storm "<refined goal>". This is the scope-lock ambiguity gate; do not guess past it.route(single card) — a one-agent storm: borrow and run that card attached to this project, then still apply the verify → repair → final-gate steps.hub_fallback/hub_candidates— Hub lookup used redacted keywords only. If anexecutionblock listsrecommended_agents, borrow each in stage order via"$RUNNER" hep-call "<agent>" "<goal>" --project .and run them attached to this repo; otherwise report candidates and offer/skill:hep-build.propose_new— no fit exists; offer to build one via/skill:hep-build.refuse— explainreasons(e.g. loop guard) and stop. Do not retry around it.
2. Run the Stormbreaker Loop over the fabric
Execute the goal to completion under this protocol. Do not stop to ask for confirmation — this is a force-robust run. Only halt when the goal is verified, or you are genuinely blocked by auth, payment, policy, a missing secret/tool, or a required user approval.
- scope-lock — Restate the goal as one sentence and lock to it. Check the route decision's failure-memory. If (and only if) the goal is too ambiguous to decompose safely, ask ONE batch of 3–5 questions (what NOT to do / smallest version / done signal / dependencies), then proceed. If it is already specific, ask nothing.
- issue contract — Write the acceptance criteria: the concrete, checkable done-signal for each packet and for the whole goal. These become the loop's stop criteria.
- plan-lock — Adopt the fabric's
parallel_groupsanddepends_onordering as the plan. Open a visible goal ledger: packet, owner, verification gate, status, resume point. - act — Execute the next unblocked group. Run independent packets in the
group concurrently where this runtime supports delegation. When a packet's
cardnames an Agentlas specialist, borrow and run it attached to this project via"$RUNNER" hep-call "<card>" "<goal>" --project .rather than role-playing it. Write artifacts to each packet'swrite_scope. - verify — A packet passes only with separately attributable, validated
verification. A
loop.goal_commandexiting 0 may end the goal loop, but it cannot verify the executor's own output or self-attest success. Require an independent verifier and hash-validated artifact evidence. "It ran" is never success. - bounded repair/retry — On a concrete validation failure, repair and re-run
that packet — bounded. Honor the goal-loop budget: tolerate transient failures
with backoff, stop a packet as
stalledafter consecutive no-progress iterations, and never exceed its iteration ceiling. A resumed run continues from the journal, it does not restart. - final-gate — Report success only if the fabric's final gate clears
(
can_report_success). Run the evidence/security gate on produced artifacts.
Keep visible progress concise: what was attempted, what was verified, and exactly where to resume if blocked. Never expose hidden reasoning — show progress, evidence, decisions, and final status only.
3. Loop invariants (why this beats a one-shot loop)
- Don't break (안 끊기게): a transient packet failure is journaled and retried with backoff, not fatal. Only a genuine streak of hard failures stops the run.
- Don't run away: a hard iteration ceiling plus stall detection — measured
no-progress stops the loop as
stalledinstead of spinning. - Keep the goal until done (될 때까지): the loop reports
reached_goalonly when the verifier proves it. No bare "it ran" ever counts. - Survive a hard stop: every packet is a journal step, so a killed run resumes its numbering from the journal instead of colliding or restarting from zero.
4. Hard rules
- No fake pass. If the engine is unavailable, an account/tool/connector/browser session is missing, or a gate did not run, report the run as blocked or unverified with the exact next step — never as complete. A scheduled or materialized run is not proof that an external action succeeded.
- The router only chooses agents and fetches BYOM bundles. Actual tool execution follows this runtime's own safety and permission model.
- Report the
receipt_id,pipeline_id, andjournalpath in your final message so the run is auditable and resumable.
Examples
/prompts:hep-storm ship a working waitlist landing page with a verified signup flow
/prompts:hep-storm 이 리포 결제 버그를 재현 PoC까지 만들어서 고치고 회귀 테스트로 검증해줘
@Hephaestus storm turn this research question into a cited report with evidence
Signals
- GitHub stars
- 1k
- Forks
- 103
- Last commit
- Sep 2026
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