* fix(skills): move version into metadata and normalize to semver 29 skills declared `version` at the top level of their frontmatter. The schema reads it from `metadata`, so tooling that follows the schema either misses it or has to special-case the top level. Three motion skills also declared `version: 1.0`, which is not a valid semantic version; normalized to `1.0.0`. No behavioral change — frontmatter metadata only. * fix(skills): state activation triggers in skill descriptions 148 skills described what they cover but never named the situation that should trigger them. Since the description is what Claude matches against to decide whether to load a skill, a description without a trigger makes activation guesswork — the skill is either missed or loaded at the wrong time. Added a "Use when ..." clause to each, derived from the skill's own body (most already stated the trigger under "## When to Use" or in the opening line; that intent is now reflected in the frontmatter where it is actually read from). Descriptions were only appended to; no existing wording was removed. * fix(skills): sync activation triggers into the Codex skill mirror 10 of the skills whose descriptions changed are also mirrored under `.agents/skills/`, where the description was previously a verbatim copy. Left alone, the two surfaces would disagree about when the skill applies. Only the description line is synced; the Codex copies keep their reduced frontmatter, since that validator accepts only name, description, metadata, license, and allowed-tools. * fix(skills): correct three activation clauses from review - autonomous-loops: the clause pulled new loop work into a skill that its own body marks as a compatibility shim retained for one release. It now points at the canonical continuous-agent-loop instead. - continuous-learning: the description carried the v1 routing directive twice; collapsed to one. - homelab-pihole-dns: the clause fired on any broken home DNS. Narrowed to tasks that actually involve Pi-hole. * chore: retain current main lockfile --------- Co-authored-by: Çağrı Solakoğlu <cagri.solakoglu@vtcenerji.com> Co-authored-by: haelyra <49814733+haelyra@users.noreply.github.com>
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name, description, metadata
| name | description | metadata | ||
|---|---|---|---|---|
| claude-devfleet | Orchestrate multi-agent coding tasks via Claude DevFleet — plan projects, dispatch parallel agents in isolated worktrees, monitor progress, and read structured reports. Use when dispatching parallel coding agents across isolated worktrees and tracking their reports. |
|
Claude DevFleet Multi-Agent Orchestration
When to Use
Use this skill when you need to dispatch multiple Claude Code agents to work on coding tasks in parallel. Each agent runs in an isolated git worktree with full tooling.
Setup
The DevFleet server is a separate project, not bundled with ECC. Install and run it from its repository first: https://github.com/LEC-AI/claude-devfleet
Then connect the running instance via MCP:
claude mcp add devfleet --transport http http://localhost:18801/mcp
Before first use, verify the process listening on port 18801 is the DevFleet binary you installed (see SECURITY.md on localhost MCP servers).
How It Works
User → "Build a REST API with auth and tests"
↓
plan_project(prompt) → project_id + mission DAG
↓
Show plan to user → get approval
↓
dispatch_mission(M1) → Agent 1 spawns in worktree
↓
M1 completes → auto-merge → auto-dispatch M2 (depends_on M1)
↓
M2 completes → auto-merge
↓
get_report(M2) → files_changed, what_done, errors, next_steps
↓
Report back to user
Tools
| Tool | Purpose |
|---|---|
plan_project(prompt) |
AI breaks a description into a project with chained missions |
create_project(name, path?, description?) |
Create a project manually, returns project_id |
create_mission(project_id, title, prompt, depends_on?, auto_dispatch?) |
Add a mission. depends_on is a list of mission ID strings (e.g., ["abc-123"]). Set auto_dispatch=true to auto-start when deps are met. |
dispatch_mission(mission_id, model?, max_turns?) |
Start an agent on a mission |
cancel_mission(mission_id) |
Stop a running agent |
wait_for_mission(mission_id, timeout_seconds?) |
Block until a mission completes (see note below) |
get_mission_status(mission_id) |
Check mission progress without blocking |
get_report(mission_id) |
Read structured report (files changed, tested, errors, next steps) |
get_dashboard() |
System overview: running agents, stats, recent activity |
list_projects() |
Browse all projects |
list_missions(project_id, status?) |
List missions in a project |
Note on
wait_for_mission: This blocks the conversation for up totimeout_seconds(default 600). For long-running missions, prefer polling withget_mission_statusevery 30–60 seconds instead, so the user sees progress updates.
Workflow: Plan → Dispatch → Monitor → Report
- Plan: Call
plan_project(prompt="...")→ returnsproject_id+ list of missions withdepends_onchains andauto_dispatch=true. - Show plan: Present mission titles, types, and dependency chain to the user.
- Dispatch: Call
dispatch_mission(mission_id=<first_mission_id>)on the root mission (emptydepends_on). Remaining missions auto-dispatch as their dependencies complete (becauseplan_projectsetsauto_dispatch=trueon them). - Monitor: Call
get_mission_status(mission_id=...)orget_dashboard()to check progress. - Report: Call
get_report(mission_id=...)when missions complete. Share highlights with the user.
Concurrency
DevFleet runs up to 3 concurrent agents by default (configurable via DEVFLEET_MAX_AGENTS). When all slots are full, missions with auto_dispatch=true queue in the mission watcher and dispatch automatically as slots free up. Check get_dashboard() for current slot usage.
Examples
Full auto: plan and launch
plan_project(prompt="...")→ shows plan with missions and dependencies.- Dispatch the first mission (the one with empty
depends_on). - Remaining missions auto-dispatch as dependencies resolve (they have
auto_dispatch=true). - Report back with project ID and mission count so the user knows what was launched.
- Poll with
get_mission_statusorget_dashboard()periodically until all missions reach a terminal state (completed,failed, orcancelled). get_report(mission_id=...)for each terminal mission — summarize successes and call out failures with errors and next steps.
Manual: step-by-step control
create_project(name="My Project")→ returnsproject_id.create_mission(project_id=project_id, title="...", prompt="...", auto_dispatch=true)for the first (root) mission → captureroot_mission_id.create_mission(project_id=project_id, title="...", prompt="...", auto_dispatch=true, depends_on=["<root_mission_id>"])for each subsequent task.dispatch_mission(mission_id=...)on the first mission to start the chain.get_report(mission_id=...)when done.
Sequential with review
create_project(name="...")→ getproject_id.create_mission(project_id=project_id, title="Implement feature", prompt="...")→ getimpl_mission_id.dispatch_mission(mission_id=impl_mission_id), then poll withget_mission_statusuntil complete.get_report(mission_id=impl_mission_id)to review results.create_mission(project_id=project_id, title="Review", prompt="...", depends_on=[impl_mission_id], auto_dispatch=true)— auto-starts since the dependency is already met.
Guidelines
- Always confirm the plan with the user before dispatching, unless they said to go ahead.
- Include mission titles and IDs when reporting status.
- If a mission fails, read its report before retrying.
- Check
get_dashboard()for agent slot availability before bulk dispatching. - Mission dependencies form a DAG — do not create circular dependencies.
- Each agent runs in an isolated git worktree and auto-merges on completion. If a merge conflict occurs, the changes remain on the agent's worktree branch for manual resolution.
- When manually creating missions, always set
auto_dispatch=trueif you want them to trigger automatically when dependencies complete. Without this flag, missions stay indraftstatus.