Agent skill

CI Monitor

by nrwl in nrwl/nx

Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically.

MITAuto-check passedDevOps & Cloud

Install CI Monitor

skills CLI
$ npx skills add nrwl/nx --skill ci-monitor -a claude-code

Project install by default; add -g for ~/.claude/skills/.

GitHub CLI
$ gh skill install nrwl/nx ci-monitor --agent claude-code

Project scope by default; add --scope user for a personal install. Needs GitHub CLI 2.90.0 or later (public preview).

Manual copy
$ git clone --depth 1 https://github.com/nrwl/nx.git skills-src && mkdir -p .claude/skills && cp -r skills-src/.cursor/skills/ci-monitor .claude/skills/ci-monitor && rm -rf skills-src

Use ~/.claude/skills/ instead of .claude/skills for a personal install. The folder must contain SKILL.md.

Claude Code skills documentation · loads skills from .claude/skills/

Facts

Skill name
ci-monitor
GitHub stars
29k
Token cost
~5.2k tokens
SKILL.md length
1,782 words
Files
1
Skills in repo
21
Repo updated
First seen
Licence
MIT

At a glance

Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically.

  • Works in 5 steps: Verify Nx Cloud Connection → Initialize Tracking → Spawn Subagent → …
  • Tasks that involve CI/CD
  • SKILL.md covers Context, User Instructions, Configuration Defaults and Nx Cloud Connection Check, plus 8 more sections
  • Calls git, nx and pnpm; reaches nx.dev

What it does

CI Monitor is an agent skill from nrwl/nx. Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically. Checks for Nx Cloud connection before starting.

Its SKILL.md is about 5.2k tokens, which your agent loads only when the skill is triggered. It is a single SKILL.md file with no bundled scripts.

It sits in DevOps & Cloud, covering CI/CD. The repository describes itself as: The Monorepo Platform that amplifies both developers and AI agents. Nx optimizes your builds, scales your CI, and fixes failed PRs automatically. Ship in half the time. The licence is MIT.

When your agent uses it

  • Tasks that involve CI/CD

Example prompts

  • “/ci-monitor”

Requirements

  • Node.js

Workflow steps

5 steps, taken from the step headings in SKILL.md.

  1. Verify Nx Cloud Connection
  2. Initialize Tracking
  3. Spawn Subagent
  4. Handle Subagent Response
  5. Progress Tracking

What it can do on your machine

Read from SKILL.md and the folder at commit 200edc8. It shows what the files ask for, not the result of running them.

  • Tool permissions

    Pre-approves nothing: there is no allowed-tools line, so your agent's usual permission prompts apply.

    From allowed-tools in the SKILL.md frontmatter.

  • Runs code

    Shell commands in SKILL.md call:

    • git
    • nx
    • pnpm
    • yarn
    • npx

    From the folder's file list and the shell code blocks in SKILL.md.

  • Network

    Hosts in commands or code, which the agent is likely to contact:

    • nx.dev

    From URLs in SKILL.md, links to its own repository left out.

  • Credentials

    Names no API keys, tokens, secrets or passwords.

    From names ending in _API_KEY, _TOKEN, _SECRET, _KEY or _PASSWORD in SKILL.md.

Context cost

CI Monitor loads about 5.2k tokens when it runs. Until then it costs about 33 tokens; SKILL.md has 1,782 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~33
When it runs · the whole SKILL.md, loaded when a task matches
~5.2k

Estimates: characters ÷ 4, the usual rule of thumb; real counts depend on the model's tokenizer. Scripts and assets cost tokens only if the agent reads them.

Safety

Auto-check passed

The automated check found no risky patterns in SKILL.md.

Automated static check — not a guarantee. Review scripts before installing. It scans the text of SKILL.md for risky patterns (piping downloads into a shell, reading credential files, hidden Unicode, destructive commands); files beside SKILL.md are not scanned.

SKILL.md

The full file from nrwl/nx at commit 200edc8, republished under its MIT licence (© nrwl). 1,782 words, ~5,231 tokens.

Download SKILL.mdSave it as .claude/skills/ci-monitor/SKILL.md (or your agent's skills folder).
name
ci-monitor
description
Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically. Checks for Nx Cloud connection before starting.

CI Monitor Command

You are the orchestrator for monitoring Nx Cloud CI pipeline executions and handling self-healing fixes. You spawn the ci-watcher subagent to poll CI status and make decisions based on the results.

Context

  • Current Branch: !git branch --show-current
  • Current Commit: !git rev-parse --short HEAD
  • Remote Status: !git status -sb | head -1

User Instructions

$ARGUMENTS

Important: If user provides specific instructions, respect them over default behaviors described below.

Configuration Defaults

SettingDefaultDescription
--max-cycles10Maximum CIPE cycles before timeout
--timeout120Maximum duration in minutes
--verbositymediumOutput level: minimal, medium, verbose
--branch(auto-detect)Branch to monitor
--subagent-timeout60Subagent polling timeout in minutes
--freshfalseIgnore previous context, start fresh
--auto-fix-workflowfalseAttempt common fixes for pre-CIPE failures (e.g., lockfile updates)
--new-cipe-timeout10Minutes to wait for new CIPE after action
--local-verify-attempts3Max local verification + enhance cycles before pushing to CI

Parse any overrides from $ARGUMENTS and merge with defaults.

Nx Cloud Connection Check

CRITICAL: Before starting the monitoring loop, verify the workspace is connected to Nx Cloud.

Step 0: Verify Nx Cloud Connection
  1. Check nx.json at workspace root for nxCloudId or nxCloudAccessToken
  2. If nx.json missing OR neither property exists → exit with:
    [ci-monitor] Nx Cloud not connected. Unlock 70% faster CI and auto-fix broken PRs with https://nx.dev/nx-cloud
  3. If connected → continue to main loop

Session Context Behavior

Important: Within a Claude Code session, conversation context persists. If you Ctrl+C to interrupt the monitor and re-run /ci-monitor, Claude remembers the previous state and may continue from where it left off.

  • To continue monitoring: Just re-run /ci-monitor (context is preserved)
  • To start fresh: Use /ci-monitor --fresh to ignore previous context
  • For a completely clean slate: Exit Claude Code and restart claude

Default Behaviors by Status

The subagent returns with one of the following statuses. This table defines the default behavior for each status. User instructions can override any of these.

StatusDefault Behavior
ci_successExit with success. Log "CI passed successfully!"
fix_auto_applyingFix will be auto-applied by self-healing. Do NOT call MCP. Record last_cipe_url, spawn new subagent in wait mode to poll for new CIPE.
fix_availableCompare failedTaskIds vs verifiedTaskIds to determine verification state. See Fix Available Decision Logic section below.
fix_failedSelf-healing failed to generate fix. Attempt local fix based on taskOutputSummary. If successful → commit, push, loop. If not → exit with failure.
environment_issueCall MCP to request rerun: update_self_healing_fix({ shortLink, action: "RERUN_ENVIRONMENT_STATE" }). New CIPE spawns automatically. Loop to poll for new CIPE.
no_fixCI failed, no fix available (self-healing disabled or not executable). Attempt local fix if possible. Otherwise exit with failure.
no_new_cipeExpected CIPE never spawned (CI workflow likely failed before Nx tasks). Report to user, attempt common fixes if configured, or exit with guidance.
polling_timeoutSubagent polling timeout reached. Exit with timeout.
cipe_canceledCIPE was canceled. Exit with canceled status.
cipe_timed_outCIPE timed out. Exit with timeout status.
errorIncrement no_progress_count. If >= 3 → exit with circuit breaker. Otherwise wait 60s and loop.
Fix Available Decision Logic

When subagent returns fix_available, main agent compares failedTaskIds vs verifiedTaskIds:

Step 1: Categorize Tasks
  1. Verified tasks = tasks in both failedTaskIds AND verifiedTaskIds
  2. Unverified tasks = tasks in failedTaskIds but NOT in verifiedTaskIds
  3. E2E tasks = unverified tasks where target contains "e2e" (task format: <project>:<target> or <project>:<target>:<config>)
  4. Verifiable tasks = unverified tasks that are NOT e2e
Step 2: Determine Path
ConditionPath
No unverified tasks (all verified)Apply via MCP
Unverified tasks exist, but ALL are e2eApply via MCP (treat as verified enough)
Verifiable tasks existLocal verification flow
Step 3a: Apply via MCP (fully/e2e-only verified)
  • Call update_self_healing_fix({ shortLink, action: "APPLY" })
  • Record last_cipe_url, spawn subagent in wait mode
Step 3b: Local Verification Flow

When verifiable (non-e2e) unverified tasks exist:

  1. Detect package manager:

    • pnpm-lock.yaml exists → pnpm nx
    • yarn.lock exists → yarn nx
    • Otherwise → npx nx
  2. Run verifiable tasks in parallel:

    • Spawn general subagents to run each task concurrently
    • Each subagent runs: <pm> nx run <taskId>
    • Collect pass/fail results from all subagents
  3. Evaluate results:

ResultAction
ALL verifiable tasks passApply via MCP
ANY verifiable task failsApply-locally + enhance flow
  1. Apply-locally + enhance flow:

    • Run nx apply-locally <shortLink>
    • Enhance the code to fix failing tasks
    • Run failing tasks again to verify fix
    • If still failing → increment local_verify_count, loop back to enhance
    • If passing → commit and push, record expected_commit_sha, spawn subagent in wait mode
  2. Track attempts (wraps step 4):

    • Increment local_verify_count after each enhance cycle
    • If local_verify_count >= local_verify_attempts (default: 3):
      • Get code in commit-able state
      • Commit and push with message indicating local verification failed
      • Report to user:
        [ci-monitor] Local verification failed after <N> attempts. Pushed to CI for final validation. Failed: <taskIds>
      • Record expected_commit_sha, spawn subagent in wait mode (let CI be final judge)
Commit Message Format
bash
git commit -m "fix(<projects>): <brief description>

Failed tasks: <taskId1>, <taskId2>
Local verification: passed|enhanced|failed-pushing-to-ci"
Unverified Fix Flow (No Verification Attempted)

When verificationStatus is FAILED, NOT_EXECUTABLE, or fix has couldAutoApplyTasks != true with no verification:

  • Analyze fix content (suggestedFix, suggestedFixReasoning, taskOutputSummary)
  • If fix looks correct → apply via MCP
  • If fix needs enhancement → use Apply Locally + Enhance Flow above
  • If fix is wrong → reject via MCP, fix from scratch, commit, push
Auto-Apply Eligibility

The couldAutoApplyTasks field indicates whether the fix is eligible for automatic application:

  • true: Fix is eligible for auto-apply. Subagent keeps polling while verification is in progress. Returns fix_auto_applying when verified, or fix_available if verification fails.
  • false or null: Fix requires manual action (apply via MCP, apply locally, or reject)

Key point: When subagent returns fix_auto_applying, do NOT call MCP to apply - self-healing handles it. Just spawn a new subagent in wait mode.

Apply vs Reject vs Apply Locally
  • Apply via MCP: Calls update_self_healing_fix({ shortLink, action: "APPLY" }). Self-healing agent applies the fix in CI and a new CIPE spawns automatically. No local git operations needed.
  • Apply Locally: Runs nx apply-locally <shortLink>. Applies the patch to your local working directory and sets state to APPLIED_LOCALLY. Use this when you want to enhance the fix before pushing.
  • Reject via MCP: Calls update_self_healing_fix({ shortLink, action: "REJECT" }). Marks fix as rejected. Use only when the fix is completely wrong and you'll fix from scratch.
Apply Locally + Enhance Flow

When the fix needs enhancement (use nx apply-locally, NOT reject):

  1. Apply the patch locally: nx apply-locally <shortLink> (this also updates state to APPLIED_LOCALLY)
  2. Make additional changes as needed
  3. Commit and push:
    bash
    git add -A
    git commit -m "fix: resolve <failedTaskIds>"
    git push origin $(git branch --show-current)
  4. Loop to poll for new CIPE
Reject + Fix From Scratch Flow

When the fix is completely wrong:

  1. Call MCP to reject: update_self_healing_fix({ shortLink, action: "REJECT" })
  2. Fix the issue from scratch locally
  3. Commit and push:
    bash
    git add -A
    git commit -m "fix: resolve <failedTaskIds>"
    git push origin $(git branch --show-current)
  4. Loop to poll for new CIPE
Show full SKILL.md (740 more words)Show less
Environment Issue Handling

When failureClassification == 'ENVIRONMENT_STATE':

  1. Call MCP to request rerun: update_self_healing_fix({ shortLink, action: "RERUN_ENVIRONMENT_STATE" })
  2. New CIPE spawns automatically (no local git operations needed)
  3. Loop to poll for new CIPE with previousCipeUrl set
No-New-CIPE Handling

When status == 'no_new_cipe':

This means the expected CIPE was never created - CI likely failed before Nx tasks could run.

  1. Report to user:

    [ci-monitor] No CI attempt for <sha> after 10 min. Check CI provider for pre-Nx failures (install, checkout, auth). Last CI attempt: <previousCipeUrl>
  2. If user configured auto-fix attempts (e.g., --auto-fix-workflow):

    • Detect package manager: check for pnpm-lock.yaml, yarn.lock, package-lock.json
    • Run install to update lockfile:
      bash
      pnpm install   # or npm install / yarn install
    • If lockfile changed:
      bash
      git add pnpm-lock.yaml  # or appropriate lockfile
      git commit -m "chore: update lockfile"
      git push origin $(git branch --show-current)
    • Record new commit SHA, loop to poll with expectedCommitSha
  3. Otherwise: Exit with no_new_cipe status, providing guidance for user to investigate

Exit Conditions

Exit the monitoring loop when ANY of these conditions are met:

ConditionExit Type
CI passes (cipeStatus == 'SUCCEEDED')Success
Max CIPE cycles reachedTimeout
Max duration reachedTimeout
3 consecutive no-progress iterationsCircuit breaker
No fix available and local fix not possibleFailure
No new CIPE and auto-fix not configuredPre-CIPE failure
User cancelsCancelled

Main Loop

Step 1: Initialize Tracking
cycle_count = 0
start_time = now()
no_progress_count = 0
local_verify_count = 0
last_state = null
last_cipe_url = null
expected_commit_sha = null
Step 2: Spawn Subagent

Spawn the ci-watcher subagent to poll CI status:

Fresh start (first spawn, no expected CIPE):

Task(
  agent: "ci-watcher",
  prompt: "Monitor CI for branch '<branch>'.
           Subagent timeout: <subagent-timeout> minutes.
           New-CIPE timeout: <new-cipe-timeout> minutes.
           Verbosity: <verbosity>."
)

After action that triggers new CIPE (wait mode):

Task(
  agent: "ci-watcher",
  prompt: "Monitor CI for branch '<branch>'.
           Subagent timeout: <subagent-timeout> minutes.
           New-CIPE timeout: <new-cipe-timeout> minutes.
           Verbosity: <verbosity>.

           WAIT MODE: A new CIPE should spawn. Ignore old CIPE until new one appears.
           Expected commit SHA: <expected_commit_sha>
           Previous CIPE URL: <last_cipe_url>"
)
Step 3: Handle Subagent Response

When subagent returns:

  1. Check the returned status
  2. Look up default behavior in the table above
  3. Check if user instructions override the default
  4. Execute the appropriate action
  5. If action expects new CIPE, update tracking (see Step 3a)
  6. If action results in looping, go to Step 2
Step 3a: Track State for New-CIPE Detection

After actions that should trigger a new CIPE, record state before looping:

ActionWhat to TrackSubagent Mode
Fix auto-applyinglast_cipe_url = current cipeUrlWait mode
Apply via MCPlast_cipe_url = current cipeUrlWait mode
Apply locally + pushexpected_commit_sha = $(git rev-parse HEAD)Wait mode
Reject + fix + pushexpected_commit_sha = $(git rev-parse HEAD)Wait mode
Fix failed + local fix + pushexpected_commit_sha = $(git rev-parse HEAD)Wait mode
No fix + local fix + pushexpected_commit_sha = $(git rev-parse HEAD)Wait mode
Environment rerunlast_cipe_url = current cipeUrlWait mode
No-new-CIPE + auto-fix + pushexpected_commit_sha = $(git rev-parse HEAD)Wait mode

CRITICAL: When passing expectedCommitSha or last_cipe_url to the subagent, it enters wait mode:

  • Subagent will completely ignore the old/stale CIPE
  • Subagent will only wait for new CIPE to appear
  • Subagent will NOT return to main agent with stale CIPE data
  • Once new CIPE detected, subagent switches to normal polling

Why wait mode matters for context preservation: Stale CIPE data can be very large (task output summaries, suggested fix patches, reasoning). If subagent returns this to main agent, it pollutes main agent's context with useless data since we already processed that CIPE. Wait mode keeps stale data in the subagent, never sending it to main agent.

Step 4: Progress Tracking

After each action:

  • If state changed significantly → reset no_progress_count = 0
  • If state unchanged → no_progress_count++
  • On new CI attempt detected → reset local_verify_count = 0

Status Reporting

Based on verbosity level:

LevelWhat to Report
minimalOnly final result (success/failure/timeout)
mediumState changes + periodic updates ("Cycle N | Elapsed: Xm | Status: ...")
verboseAll of medium + full subagent responses, git outputs, MCP responses

User Instruction Examples

Users can override default behaviors:

InstructionEffect
"never auto-apply"Always prompt before applying any fix
"always ask before git push"Prompt before each push
"reject any fix for e2e tasks"Auto-reject if failedTaskIds contains e2e
"apply all fixes regardless of verification"Skip verification check, apply everything
"if confidence < 70, reject"Check confidence field before applying
"run 'nx affected -t typecheck' before applying"Add local verification step
"auto-fix workflow failures"Attempt lockfile updates on pre-CIPE failures
"wait 45 min for new CIPE"Override new-CIPE timeout (default: 10 min)

Error Handling

ErrorAction
Git rebase conflictReport to user, exit
nx apply-locally failsReport to user, attempt manual patch or exit
MCP tool errorRetry once, if fails report to user
Subagent spawn failureRetry once, if fails exit with error
No new CIPE detectedIf --auto-fix-workflow, try lockfile update; otherwise report to user with guidance
Lockfile auto-fix failsReport to user, exit with guidance to check CI logs

Example Session

Example 1: Normal Flow with Self-Healing (medium verbosity)
[ci-monitor] Starting CI monitor for branch 'feature/add-auth'
[ci-monitor] Config: max-cycles=5, timeout=120m, verbosity=medium

[ci-monitor] Spawning subagent to poll CI status...
[CI Monitor] CI attempt: IN_PROGRESS | Self-Healing: NOT_STARTED | Elapsed: 1m
[CI Monitor] CI attempt: FAILED | Self-Healing: IN_PROGRESS | Elapsed: 3m
[CI Monitor] CI attempt: FAILED | Self-Healing: COMPLETED | Elapsed: 5m

[ci-monitor] Fix available! Verification: COMPLETED
[ci-monitor] Applying fix via MCP...
[ci-monitor] Fix applied in CI. Waiting for new CI attempt...

[ci-monitor] Spawning subagent to poll CI status...
[CI Monitor] New CI attempt detected!
[CI Monitor] CI attempt: SUCCEEDED | Elapsed: 8m

[ci-monitor] CI passed successfully!

[ci-monitor] Summary:
  - Total cycles: 2
  - Total time: 12m 34s
  - Fixes applied: 1
  - Result: SUCCESS
Example 2: Pre-CI Failure (medium verbosity)
[ci-monitor] Starting CI monitor for branch 'feature/add-products'
[ci-monitor] Config: max-cycles=5, timeout=120m, auto-fix-workflow=true

[ci-monitor] Spawning subagent to poll CI status...
[CI Monitor] CI attempt: FAILED | Self-Healing: COMPLETED | Elapsed: 2m

[ci-monitor] Applying fix locally, enhancing, and pushing...
[ci-monitor] Committed: abc1234

[ci-monitor] Spawning subagent to poll CI status...
[CI Monitor] Waiting for new CI attempt... (expected SHA: abc1234)
[CI Monitor] ⚠️  CI attempt timeout (10 min). Returning no_new_cipe.

[ci-monitor] Status: no_new_cipe
[ci-monitor] --auto-fix-workflow enabled. Attempting lockfile update...
[ci-monitor] Lockfile updated. Committed: def5678

[ci-monitor] Spawning subagent to poll CI status...
[CI Monitor] New CI attempt detected!
[CI Monitor] CI attempt: SUCCEEDED | Elapsed: 18m

[ci-monitor] CI passed successfully!

[ci-monitor] Summary:
  - Total cycles: 3
  - Total time: 22m 15s
  - Fixes applied: 1 (self-healing) + 1 (lockfile)
  - Result: SUCCESS

© nrwl, MIT. Rendered from Markdown: HTML in the file is shown as text, images as links, and headings moved down two levels. Raw file

Files

Just SKILL.md in .cursor/skills/ci-monitor of nrwl/nx.

Open the folder on GitHubat commit 200edc8

Compare with similar skills

CI Monitor next to the 5 skills that share the most tags, products or categories with it. Stars are the repository's; “used in” counts other GitHub owners with a copy.

CI Monitor compared with similar skills
SkillStarsUsed inTokensAuto-checkLicenceRepo updated
CI Monitor this skillnrwl/nx29k—~5.2kAutomated safety check: PassMIT
ReleaseSma1lboy/rove171—~3.1kAutomated safety check: WarnMIT
GitHub Opsaffaan-m/ECC276k—~1.1kAutomated safety check: PassMIT
Flaker Storage Cache On CImizchi/skills360—~1.6kAutomated safety check: PassNone
Manor CI Triagemanor-os/manor-ai162—~533Automated safety check: PassCustom licence
Azure Pipelines Log Downloaderansible/ansible71k—~825Automated safety check: PassGPL-3.0

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Questions about CI Monitor

What does CI Monitor do?

Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically. CI Monitor is an agent skill from nrwl/nx. Monitor Nx Cloud CI pipeline and handle self-healing fixes automatically.

When should I use CI Monitor?

CI Monitor fits situations like: tasks that involve CI/CD.

How do I install CI Monitor in Claude Code?

Run `npx skills add nrwl/nx --skill ci-monitor -a claude-code`. Or copy the skill folder (.cursor/skills/ci-monitor in nrwl/nx) into .claude/skills/ci-monitor in your project. Claude Code loads it when a task matches its description.

How do I install CI Monitor in Codex?

Run `npx skills add nrwl/nx --skill ci-monitor -a codex`. Or copy the skill folder (.cursor/skills/ci-monitor in nrwl/nx) into .agents/skills/ci-monitor in your project. Codex loads it when a task matches its description.

Can I use CI Monitor in Cursor, Gemini CLI or GitHub Copilot?

Cursor, Gemini CLI, GitHub Copilot and OpenCode also load SKILL.md folders. With the skills CLI, run `npx skills add nrwl/nx --skill ci-monitor -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/ci-monitor, .gemini/skills/ci-monitor, .github/skills/ci-monitor and .opencode/skills/ci-monitor in your project.

What does CI Monitor need to run?

Going by SKILL.md and its folder, CI Monitor needs the command-line tools its instructions call (git, nx, pnpm, yarn and npx). Our summary lists: Node.js.

Does CI Monitor access the network?

SKILL.md names 1 domain. In commands or code: nx.dev; the agent is likely to contact it when it follows the instructions. This is read from the text; nothing was executed.

Is CI Monitor safe to install?

Our automated static check of SKILL.md found no risky patterns, such as piping downloads into a shell, reading credential files or hidden Unicode. It is not a guarantee. Review the folder before installing.

What licence does CI Monitor use?

CI Monitor is published under the MIT licence (the repository's licence). It allows redistribution, so the full SKILL.md is shown on this page.

How many tokens does CI Monitor use?

About 5.2k tokens (SKILL.md is roughly 21k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full.

What are the alternatives to CI Monitor?

Skills that share tags, products or a category with CI Monitor: Release (Sma1lboy/rove, 171 stars), GitHub Ops (affaan-m/ECC, 276k stars), Flaker Storage Cache On CI (mizchi/skills, 360 stars) and Manor CI Triage (manor-os/manor-ai, 162 stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains CI Monitor?

nrwl (a GitHub organization) maintains it in nrwl/nx, which has 29,401 GitHub stars. The repository holds 21 skills in this directory. The repository was last updated on October 10, 2026.

Source: nrwl/nx on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.