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Execute a Seed specification through the workflow engine
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
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Execute a Seed specification through the workflow engine
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
SOC 직업 분류 기준
Guided onboarding wizard for Ouroboros setup
Socratic interview to crystallize vague requirements
Socratic interview to crystallize vague requirements
Scan and manage brownfield repository/worktree defaults for interviews
Guided onboarding wizard for Ouroboros setup
Scan and manage brownfield repository/worktree defaults for interviews
| name | run |
| description | Execute a Seed specification through the workflow engine |
| aliases | ["execute"] |
| mcp_tool | ouroboros_execute_seed |
| mcp_args | {"seed_path":"$1","cwd":"$CWD"} |
Execute a Seed specification through the Ouroboros workflow engine.
/ouroboros:run [seed_file_or_content]
Trigger keywords: "ouroboros run", "execute seed"
.yaml fileWhen the user invokes this skill:
The Ouroboros MCP tools are often registered as deferred tools that must be explicitly loaded before use. You MUST perform this step before proceeding.
tool discovery query: "+ouroboros execute"
mcp__plugin_ouroboros_ouroboros__ (e.g., ouroboros_execute_seed, ouroboros_session_status). After runtime tool discovery returns, the tools become callable.IMPORTANT: Do NOT skip this step. Do NOT assume MCP tools are unavailable just because they don't appear in your immediate tool list. They are almost always available as deferred tools that need to be loaded first.
CRITICAL — deferred-schema guard (prevents "Invalid tool parameters"):
This skill makes execution MCP calls across multiple turns, and each turn runs
in a fresh tool context. A deferred tool's schema loaded on one turn is NOT
guaranteed to still be loaded on the next. If you call any execution ouroboros_*
MCP tool while its schema is not loaded in the current turn, the runtime
rejects the call with "Invalid tool parameters" before it reaches the server.
Therefore: immediately before EVERY execution MCP call in this skill, re-run
tool discovery query: "+ouroboros execute" to reload the execution tool family,
including ouroboros_start_execute_seed, ouroboros_job_wait,
ouroboros_ac_tree_hud, and ouroboros_job_result (idempotent — a no-op when
already loaded). If the load returns no matching tool (and the tool is not already callable — an empty load for an already-exposed tool is an expected no-op, not absence), switch to the documented
fallback instead of retrying the failing call.
Detect git workflow (before any code changes):
CLAUDE.md for git workflow preferencesmain/master:
ooo/run/<session_id>Check if the user provided seed content or a file path:
Before a fresh start, when no efficiency choice is already known, ask in
user-outcome language: Efficient execution maps to
efficiency_mode="adaptive" plus frugality_assurance="observe";
Quality-first execution maps to efficiency_mode="quality_first" plus
frugality_assurance="off". strict assurance is a separate explicit
opt-in because proof may cost extra. Do not ask or override these values on
resume; the server restores the persisted contract.
Start background execution with ouroboros_start_execute_seed:
Tool: ouroboros_start_execute_seed
Arguments:
seed_content: <the seed YAML>
model_tier: "medium" (or as specified by user)
efficiency_mode: <adaptive or quality_first>
frugality_assurance: <observe, off, or explicit strict>
max_iterations: 10 (or as specified by user)
This returns immediately with a job_id, session_id, and execution_id.
If resuming an existing session, include session_id:
Tool: ouroboros_start_execute_seed
Arguments:
seed_content: <the seed YAML>
session_id: <existing session ID>
Recommended monitoring stance: delegate one exclusive observer.
After IDs are returned, print only this short handoff:
Execution started in background.
Job ID: <job_id>
Session ID: <session_id>
Execution ID: <execution_id>
Live view: <response.meta.dashboard_url, or `ouroboros tui open`>
Runtime/harness: <response.meta.runtime_backend>
LLM backend: <response.meta.llm_backend>
Efficiency: <response.meta.efficiency_mode>
Frugality assurance: <response.meta.frugality_assurance>
A read-only observer will report meaningful progress, attention, and terminal
events here. This conversation remains available for requirement refinement,
read-only review, explicit control, or unrelated work in an isolated worktree.
For full details later: `ouroboros_ac_tree_hud(session_id=<session_id>)`
When response.meta.job_observer is present and an independent Task/Agent
child is available, spawn exactly one read-only observer and pass the contract
unchanged. It exclusively owns job wait/result and the cursor. The main
session must not poll the same job. Before writing to the active workspace,
check worker overlap or use an isolated worktree.
Do not claim an observer exists until Task/Agent returns a live child handle.
On Codex, once spawn_agent returns that handle, keep the parent turn open
with wait_agent calls of at most 60 seconds until the observer returns its
terminal summary. Child send_message calls only queue mailbox events and
cannot revive an ended parent turn. Relay meaningful updates, handle user
input if it interrupts the wait, and resume waiting while the observer is
active unless the user asks to stop live observation or replaces the active
request. Then end only the relay loop, keep the durable job running, and
offer next-turn or explicit-status catch-up. If the observer child fails, is
cancelled, or exits before a terminal summary, use that same fallback instead
of waiting indefinitely. This relay loop must not poll the job or take cursor
ownership.
If creation fails, do not promise live proactive relays. The detached worker
survives the stdio turn; catch up from durable events on the next parent turn
or explicit status request. Keep the fallback polling loop open only for
explicit live watching.
Fallback low-token relay loop with ouroboros_job_wait.
Use this only when no independent observer session exists and the user asked for live watching in this turn; otherwise catch up on the next parent turn. Never run both.
Use ouroboros_job_wait, not repeated ouroboros_ac_tree_hud, for routine
monitoring. Keep the latest cursor and previous progress counters from the
tool meta payload.
This loop is intentionally harness/model friendly:
response.meta as the source of truth.response.text for counts, status, or cursor.response.text only as a human-readable current-message hint.ouroboros_job_result after a terminal status.cursor = <cursor from start/status response, or 0>
prev_status = "running"
prev_phase = null
prev_ac_completed = 0
prev_sub_ac_completed = 0
prev_message = null
loop:
Tool: ouroboros_job_wait
Arguments:
job_id: <job_id from step 3>
cursor: <cursor>
timeout_seconds: 180
view: "summary"
stream: "linked"
wait_for: "attention_or_ac_change"
cursor = response.meta.cursor
if response.meta.changed is false:
# Do not narrate unless the user explicitly asked for heartbeat updates.
continue
status = response.meta.status
phase = response.meta.current_phase
ac_completed = response.meta.ac_completed
ac_total = response.meta.ac_total
sub_ac_completed = response.meta.sub_ac_completed
sub_ac_total = response.meta.sub_ac_total
# The metadata field names remain legacy-compatible; relay them to users as Task/Subtask progress.
message_hint = first non-empty non-metadata line from response.text, or null
# Build one short relay update from structured fields.
if status in ["completed", "failed", "cancelled", "interrupted"]:
print terminal_relay(status, phase, ac_completed, ac_total, sub_ac_completed, sub_ac_total)
break
if ac_completed > prev_ac_completed:
print task_progress_relay(phase, ac_completed, ac_total, sub_ac_completed, sub_ac_total, message_hint)
elif sub_ac_completed > prev_sub_ac_completed:
print subtask_progress_relay(phase, ac_completed, ac_total, sub_ac_completed, sub_ac_total, message_hint)
elif phase != prev_phase or status != prev_status:
print phase_or_status_relay(status, phase, ac_completed, ac_total, sub_ac_completed, sub_ac_total)
elif message_hint != prev_message:
print current_work_relay(phase, ac_completed, ac_total, sub_ac_completed, sub_ac_total, message_hint)
prev_status = status
prev_phase = phase
prev_ac_completed = ac_completed or prev_ac_completed
prev_sub_ac_completed = sub_ac_completed or prev_sub_ac_completed
prev_message = message_hint or prev_message
Notes:
timeout_seconds: 180 means the MCP call can block for up to 3 minutes.
This keeps the main session available often enough for a live relay while
still avoiding noisy polling.view: "compact" for very long jobs or when the user only wants a
heartbeat. The raw tool may still return legacy text such as
job_x | running | AC 3/17; relay that to users as Task progress.view: "summary" for normal monitoring. It includes the job message
plus Task/Subtask counts derived from legacy ac_completed/sub_ac_completed
metadata fields.view: "full" only when the user asks for detailed job status.Relay style examples:
In progress: Deliver is at Task 1/3 and Subtask 12/16. Current work is the Subtask 3 regression test.Level update: parallel level 1/1 has finished, and Task progress advanced to 3/3.Completed: execution finished. Fetching the final job result now.Relay output contract for other harnesses/models:
phase, Task completed/total and Subtask completed/total when present.Interpret meta.relay_events as structured user-facing facts:
run_configuration: current runtime/harness, starting model or tier when
known, efficiency mode, and frugality assurance.execution_plan: total ACs and dependency/parallel levels, whether work is
parallelizable, and the first scheduled AC summaries.discovery_summary: bounded targets and purpose, never raw commands or
reasoning.level_started / level_completed, ac_routing, harness_changed, and
ac_verified: report only meaningful transitions. Say "currently running
with" because routes can escalate.attention_required: surface immediately and follow the verified menu.queued/delivering is not application;
applied/completed is runtime-proven and may contain a bounded AC reply.Phrase the English canonical guidance naturally in the user's current conversation language.
Do not paste the full raw tool output unless the user asks for raw status. Do not add speculative ETA unless the tool provides one.
Synapse intent refinement: For additive user intent during a live run,
reload deferred schemas with
tool discovery query: "+ouroboros session signal", call
ouroboros_session_signal_targets with the observed execution_id, and
semantically match the user's meaning to ac_content and current activity.
Never ask the user for internal IDs. Use the selected exact target with
ouroboros_session_signal(mode="redirect", fallback_mode="after_turn", contract_effect="additive", source="user"), copying the exact execution,
scope, attempt, and contract-version guards plus a stable idempotency key.
Use mode="inform" for a read-only AC question or assurance request, omit
fallback_mode entirely in that mode, and relay the bounded completed reply.
Ask only when multiple candidates remain genuinely tied. Distinguish durable
queued from runtime-proven applied/completed, never change the approved
Seed contract, and render delivery state in the user's conversation language.
For attention_required, use at most one short-lived read-only verifier.
Without a verifier primitive, surface the evidence and do not ACT. Otherwise
VERIFY → DECIDE from recommended_host_actions → LOG selected with
ouroboros_record_conductor_decision → ACT only a menu-listed registered tool
→ LOG completed, failed, or declined. Run-mode specification changes
require explicit user approval and a shared successor contract; never inject
them into one live AC.
Use ouroboros_ac_tree_hud only for manual drill-down or anomaly checks.
Do not call full tree HUD in the normal polling loop.
Use these targeted calls:
# Explicit short HUD, useful for a one-off check
Tool: ouroboros_ac_tree_hud
Arguments:
session_id: <session_id>
cursor: <cursor>
view: "summary"
# Lowest-token one-line HUD
Tool: ouroboros_ac_tree_hud
Arguments:
session_id: <session_id>
cursor: <cursor>
view: "compact"
# Full tree only when user asks "show details", progress looks stuck,
# or debugging requires seeing the task/subtask structure.
Tool: ouroboros_ac_tree_hud
Arguments:
session_id: <session_id>
cursor: <cursor>
view: "tree"
max_nodes: 30
Treat unchanged cursor=<cursor> from explicit compact/summary views as a
no-op. Do not explain it to the user unless they explicitly asked for
heartbeat messages.
Fetch final result with ouroboros_job_result:
Tool: ouroboros_job_result
Arguments:
job_id: <job_id>
Present the execution results to the user:
Post-execution QA (automatic):
ouroboros_start_execute_seed automatically runs QA after successful execution.
The QA verdict is included in the final job result text.
To skip: pass skip_qa: true to the tool.
Present QA verdict with next step:
Next: ooo evaluate <session_id> for formal 3-stage verificationNext: Fix the issues above, then ooo run to retry -- or ooo unstuck if blockedNext: Review failures above, then ooo run to retry -- or ooo unstuck if blockedIf the MCP server is not available, inform the user:
Ouroboros MCP server is not configured.
To enable full execution mode, run: /ouroboros:setup
Without MCP, you can still:
- Use /ouroboros:interview for requirement clarification
- Use /ouroboros:seed to generate specifications
- Manually implement the seed specification
User: /ouroboros:run seed.yaml
[Reads seed.yaml, validates, starts background execution]
Background execution started.
Job ID: job_a1b2c3d4e5f6
Session ID: orch_x1y2z3
Execution ID: exec_m1n2o3
[Relay]
In progress: Deliver is at Task 1/3 and Subtask 12/16.
Current work is finishing the workflow routing Subtask.
[Relay]
Level update: parallel level 1/1 has finished, and Task progress advanced to 3/3.
Execution is complete. Fetching the final job result now.
[Fetching final result...]
Result:
Seed Execution SUCCESS
========================
Session ID: orch_x1y2z3
Goal: Build a CLI task manager
Duration: 45.2s
Messages Processed: 12
Next: `ooo evaluate orch_x1y2z3` for formal 3-stage verification