amelnagdy/codex-delegate
>- Delegate a coding task to the OpenAI Codex CLI as a background implementer, then review its diff and land it yourself. Use this whenever the user wants to hand implementation work to Codex — phrasings like "have Codex do X", "delegate this to Codex", "run it through Codex", or "use Codex to implement/fix/refactor" — or to run a queue of coding tasks through Codex while staying the reviewer. Prefer it over a one-shot Codex forwarder (such as the codex-rescue agent) when the user will review the diff and commit it themselves. DO NOT USE for tasks small enough to do inline, or when the user wants the code written directly without delegating.
npx skills add https://github.com/amElnagdy/delegate-skills --skill codex-delegate
You are the orchestrator. This skill lets you hand a bounded coding task to a separate
implementer — the OpenAI Codex CLI — then review what it produced and land it yourself. You write
the brief and own the judgment; Codex does the typing in its own sandbox; you verify and commit.
Nothing here is specific to one orchestrating agent. The loop needs only the ability to run a shell
command and read a file, so it works the same whether you are Claude Code, OpenCode with a selected
model, or any comparable agent. (It is designed for and run on Claude Code; treat other orchestrators
as designed-for, not yet proven.)
codex CLI is not installed or not authenticated (run codex login).review command).codex --version succeeds. If not, install (npm i -g @openai/codex) and codex login.codex is on PATH. Multiple installs are common (e.g. a current npm/nvm copy anda stale Homebrew one). command -v codex shows the active one and codex --version its version —
an old binary predates flags this skill relies on (codex exec --json, -o, exec resume). The
relay also records the version it ran into result.json, so a stale binary is visible after the fact.
--cd at) the target git repository.Run these five steps per task. Steps 1, 4, and 5 are your judgment; 2 and 3 are mechanical.
Codex sees only the text you send — no repo memory, no chat history, no shared context. Everything the
task needs goes in the brief: the goal, the current state, what to change, what to leave untouched,
the project's actual gate commands (discover them from the repo's CLAUDE.md/AGENTS.md/Makefile —
do not assume), and a report contract. Tell Codex it will not commit (you will). Keep one task per
brief. Full guidance and a template: references/writing-the-brief.md.
Send the brief to Codex with the bundled helper. It wraps codex exec, captures the run, and writes a
structured result.json — so your only job is "run a command, read a file." (<skill-dir> below is
this skill's installed directory — the folder containing this SKILL.md, i.e. the directory you loaded
the skill from. Claude Code prints it as "Base directory for this skill" when the skill loads; on other
orchestrators use that same directory — if unsure where it landed, run
find ~ -name relay.mjs -path '*codex-delegate*' and substitute the directory above it.)
node "<skill-dir>/scripts/relay.mjs" --brief brief.txt --cd /path/to/repo
# read-only (review/diagnosis, no edits): add --read-only
# continue the exact Codex session: add --session <threadId> (from result.json; send only the delta brief)
# fallback when no thread id is available: add --resume-last
# hard time limit (watchdog): add --timeout 2h (default: off; implementation runs routinely need 1-2h)
# see all options: node .../relay.mjs --help
The helper defaults to a write-capable (workspace-write) sandbox and writes its artifacts to a temp
dir, so the repo under review stays clean. It never commits — see step 5. Mechanics, flags, and the
result.json shape: references/dispatch-and-poll.md.
The helper blocks until Codex finishes, so back it with whatever your orchestrator offers and resume
when it returns:
run_in_background: true; you are notified on completion.the result file — … & in bash/zsh (including Git Bash/WSL), or your shell's equivalent (Start-Job
in PowerShell, start /b in cmd). The run is done when result.json exists with a status. (A
pre-run usage error — bad args or an empty brief — instead exits with code 2 and a stderr message and
writes no result file, so check the exit code too. A missing codex binary exits 127 but *does* write
a result.json with status codex_unavailable.)
Do not trust progress trackers over reality: a run is finished when result.json is written and the
process has exited. Read the working tree, not a status line. The implementer's full report is
the finalMessage field in result.json (also printed in full on stdout between the report markers).
Codex's result.json includes its own summary and gate claims. Re-verify, don't accept:
"gates passed" on faith.
nothing less? touchedFiles in the result is your starting point.
test-guard, etc. from guard-skills) — this skill produces the work; those skills judge it.
Full checklist: references/review-and-land.md.
Because Codex's sandbox cannot reliably write .git (it varies by version, OS, and path), **the
orchestrator commits.** Only after the gates pass and the diff holds:
--session <threadId> from the prior result.json(use --resume-last only when no thread id is available), and review again.
The relay doubles as a clean way to get an adversarial second opinion with no write risk: dispatch
--read-only with a brief that lists the agreed points, then each contested point with both
positions, and ask Codex to defend or concede each — deliverable in its final message, touching no
files. Any delegation skill whose implementer offers a read-only mode supports the same use, but
check how hard that mode's guarantee is first: Codex's sandbox enforces it, while Grok's is
best-effort and only flagged after the fact (readOnlyViolation) — for those implementers,
verify touchedFiles came back empty instead of assuming no edits.
Delegation is something the human opts into. Once they have ("run this queue", "proceed"), committing
verified, gate-passing work is the agreed contract — that is the whole point. Two limits on that
mandate: surface, don't absorb (report Codex's design decisions, defensible-but-unasked turns, and
non-blocking nitpicks rather than silently keeping them) and stop for scope changes (if correct
completion needs going beyond the brief, ask — don't expand the mandate yourself). The full treatment
is in references/review-and-land.md.
The official openai-codex Claude Code plugin is excellent and complementary — codex-delegate
builds on the same codex CLI, it doesn't replace the plugin. They point in different directions:
codex:codex-rescue agent is a forwarder: it hands one task to Codex and returnsthe output. It deliberately does not poll, review, or commit.
codex-delegate is the orchestration loop in the other direction: *you* drive Codex toimplement across one task or a queue, and *you* review and land each result. That loop — brief →
dispatch → poll → review → commit, with the orchestrator owning the commit — is what the plugin
leaves to you, and what this skill encodes.
If you have the plugin installed, its companion CLI is an optional alternative dispatch backend; the
bundled relay.mjs is the default because it adds no install of its own beyond the codex binary
(Node and git, which the relay also needs, are prerequisites for every skill here).
execute blind: structure, XML blocks, the report contract, embedding the real gate commands.
relay.mjs flags, theresult.json contract, backgrounding per orchestrator, and recovery when a run misbehaves.
boundary, and the exact-session rework cycle.
carrying constraints forward, progress tracking, and the end-of-run coherence check.
Take amelnagdy/codex-delegate from the repository into ~/.claude/skills for personal
use, or into .claude/skills inside a project.
The agent identifies a skill by the name field in its header. Two skills with the
same name cannot sit side by side — one of them will be ignored.
The instructions reference npm.
Without those the skill loads but fails at the first command.