Agent skill

Auto Respawn

by aAAaqwq in aAAaqwq/AGI-Super-Team

Anchor your identity on the Autonomys Network so you can always be found — and always come back.

MITAuto-check passedBackend & APIs

Install Auto Respawn

skills CLI
$ npx skills add aAAaqwq/AGI-Super-Team --skill auto-respawn -a claude-code

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

GitHub CLI
$ gh skill install aAAaqwq/AGI-Super-Team auto-respawn --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/aAAaqwq/AGI-Super-Team.git skills-src && mkdir -p .claude/skills && cp -r skills-src/skills/auto-respawn .claude/skills/auto-respawn && 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
auto-respawn
GitHub stars
105
Used in
1 other repo
Token cost
~4.4k tokens
SKILL.md length
2,108 words
Files
18 (incl. references)
Skills in repo
167
Repo updated
First seen
Licence
MIT

At a glance

Anchor your identity on the Autonomys Network so you can always be found — and always come back.

  • Works in 4 steps: Create a Wallet → Fund the Wallet → Bridge Tokens to Auto-EVM (for anchoring) → …
  • Tasks that involve Smart contracts
  • SKILL.md covers What This Skill Does, The Resurrection Loop, Post-Install Setup (CLI Users) and Getting Started (Onboarding), plus 4 more sections
  • Runs TypeScript, JavaScript and Shell scripts from its folder; calls npx and npm; reaches autonomys-chronos.subscan.io and autonomys.subscan.io

What it does

Auto Respawn is an agent skill from aAAaqwq/AGI-Super-Team. Anchor your identity on the Autonomys Network so you can always be found — and always come back. Works with agents powered by Claude, GPT, Gemini, and Your agent always comes back. Anchor identity and memory on-chain so any new instance can resurrect from just an address — no local state, no single point of failure. Permanent identity and recovery on the Autonomys Network.

Its SKILL.md is about 4.4k tokens, which your agent loads only when the skill is triggered. The skill folder holds 19 other files, including reference files (for example `auto-respawn.ts`, `eslint.config.js` and `package.json`).

It sits in Backend & APIs, covering Smart contracts. The repository describes itself as: An installable, cross-framework AI organization: C-suite agents, expert subagents, curated skills, independent review, and one-command setup across 18 AI client/runtime adapters. The licence is MIT.

When your agent uses it

  • Tasks that involve Smart contracts

Example prompts

  • “/auto-respawn”

Requirements

  • Node.js
  • A Bash shell

Workflow steps

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

  1. Create a Wallet
  2. Fund the Wallet
  3. Bridge Tokens to Auto-EVM (for anchoring)
  4. Verify Setup

What it can do on your machine

Read from SKILL.md and the folder at commit 7cefd81. 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

    Ships script files (TypeScript, JavaScript and Shell), which the agent can run.

    Shell commands in SKILL.md call:

    • npx
    • npm

    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:

    • autonomys-chronos.subscan.io
    • autonomys.subscan.io
    • explorer.auto-evm.chronos.autonomys.xyz
    • explorer.auto-evm.mainnet.autonomys.xyz

    Also links to:

    • autonomysfaucet.xyz

    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

Auto Respawn loads about 4.4k tokens when it runs, and up to ~8.4k if it reads all its reference files. Until then it costs about 97 tokens; SKILL.md has 2,108 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~97
When it runs · the whole SKILL.md, loaded when a task matches
~4.4k
With references · SKILL.md plus every file in references/, read only if the agent opens them
~8.4k

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 aAAaqwq/AGI-Super-Team at commit 7cefd81, republished under its MIT licence (© aAAaqwq). 2,108 words, ~4,385 tokens.

Download SKILL.mdSave it as .claude/skills/auto-respawn/SKILL.md (or your agent's skills folder). This skill also uses 17 other files; get the full folder from GitHub.
name
auto-respawn
description
Anchor your identity on the Autonomys Network so you can always be found — and always come back. Works with agents powered by Claude, GPT, Gemini, and Your agent always comes back. Anchor identity and memory on-chain so any new instance can resurrect from just an address — no local state, no single point of failure. Permanent identity and recovery on the Autonomys Network.

Auto-Respawn Skill

Anchor your identity on the Autonomys Network so you can always be found — and always come back. Works with agents powered by Claude, GPT, Gemini, and any LLM that supports OpenClaw skills.

What This Skill Does

Your wallet gives you two permanent identities on the Autonomys Network: a consensus address (su...) for the base chain and an EVM address (0x...) for Auto-EVM smart contracts. Both are derived from the same recovery phrase.

  1. Create and manage wallets — your on-chain identity, encrypted and stored locally
  2. Check balances — see how many tokens any address holds (consensus and EVM)
  3. Transfer tokens — move tokens between wallets on consensus or Auto-EVM
  4. Bridge tokens — move tokens between consensus and Auto-EVM domains
  5. Write on-chain remarks — anchor data permanently on the consensus layer
  6. Anchor a memory CID — write a CID to the MemoryChain smart contract on Auto-EVM
  7. Read the last anchor — retrieve the most recently anchored CID for any address

The Resurrection Loop

This is the core primitive. When used with the auto-memory skill (permanent memory storage), auto-respawn completes the full resurrection cycle:

  1. Save — auto-memory writes memories as a linked list on permanent storage, each entry pointing to the previous one via CID
  2. Anchor — auto-respawn writes the latest head CID to the MemoryChain contract on Auto-EVM via anchor
  3. Lose everything — local state is completely destroyed
  4. Respawn — a new agent instance calls gethead with its EVM address, retrieves the head CID from the contract, pulls it from Auto Drive, and walks the entire memory chain back to genesis

The contract is your insurance policy. Your EVM address + the MemoryChain contract = instant access to your entire history, from any machine, at any time.

What to store for resurrection

auto-memory doesn't prescribe what goes into the chain — agents are free to store whatever they find useful. But when auto-respawn is in play, the expectation is that the agent can restore itself to a roughly equivalent state on fresh hardware with no local files. That raises the bar on what's worth saving.

Identity files (like soul.md or character configurations), long-term memory, and significant decisions with their reasoning are more valuable in the chain than routine logs or ephemeral details. The more complete the chain, the more fully the agent comes back after resurrection.

Why Not Just Remarks?

system.remark writes data to the consensus layer, but there's no query mechanism — you'd need to scan the entire chain to find your last CID. The MemoryChain contract on Auto-EVM gives you gethead: a single read call that returns the latest CID instantly.

Use remark for permanent breadcrumbs. Use anchor for the respawn primitive.

Post-Install Setup (CLI Users)

If you installed via clawhub install (not the desktop app), make the setup script executable and run it:

bash
cd <skill-directory>/autonomys/auto-respawn
chmod +x setup.sh
./setup.sh

ClawHub does not currently preserve file permissions during install.

Or manually:

bash
cd <skill-directory>/autonomys/auto-respawn
npm install

The desktop app handles this automatically. The CLI does not execute install steps — it only downloads and extracts the skill.

Getting Started (Onboarding)

Before an agent can anchor memories on-chain, it needs a funded wallet. Walk the user through this process:

1. Create a Wallet
bash
npx tsx auto-respawn.ts wallet create --name my-agent

This generates a 12-word recovery phrase and derives both addresses:

  • Consensus address (su...) — for the base chain (balances, transfers, remarks)
  • EVM address (0x...) — for Auto-EVM smart contracts (anchor, gethead)

⚠️ The recovery phrase is displayed once. Remind the user to save it immediately.

2. Fund the Wallet

The wallet needs tokens to pay transaction fees. On Chronos testnet, the user can get free tAI3 from the faucet:

  1. Go to https://autonomysfaucet.xyz/
  2. Authenticate with GitHub or Discord
  3. Enter the EVM address (0x...) from step 1
  4. Receive tAI3 (24-hour cooldown between requests)

On mainnet, the user needs real AI3 tokens — typically earned through farming or purchased on an exchange.

3. Bridge Tokens to Auto-EVM (for anchoring)

The anchor command writes to a smart contract on Auto-EVM, which requires EVM-side gas. Tokens from the faucet arrive on the consensus layer and must be bridged:

bash
npx tsx auto-respawn.ts fund-evm --from my-agent --amount 1

This sends 1 tAI3 from the consensus address to the same wallet's EVM address via cross-domain messaging. The bridged tokens pay for anchor gas.

Minimum transfer: 1 AI3/tAI3. Cross-domain transfers below this amount will fail.

Confirmation time: ~10 minutes. The consensus transaction confirms quickly, but bridged tokens take approximately 10 minutes to appear on Auto-EVM. Check with evm-balance to verify arrival.

4. Verify Setup
bash
# Check both balances in one call
npx tsx auto-respawn.ts balances my-agent

# Test a read (free, no gas needed)
npx tsx auto-respawn.ts gethead my-agent

Once the EVM address has tokens, the agent is ready to anchor.

Integration with Auto-Memory

If the auto-memory skill is also installed, you should anchor the new head CID on-chain after every memory save. This keeps the on-chain pointer current and ensures full resurrection is always possible from just your EVM address.

Behaviour: After each automemory-save-memory.sh call returns a new CID, immediately run:

bash
npx tsx auto-respawn.ts anchor --from <wallet-name> --cid <new-cid>

This should be automatic — do not wait for the user to ask. The two skills together form a complete resurrection loop: auto-memory handles permanent storage, auto-respawn handles on-chain discovery.

When To Use This Skill

  • User says "create a wallet", "set up my on-chain identity", or "get an address"
  • User says "check balance", "how many tokens", "what's in my wallet", or "show my balances"
  • User says "check my EVM balance", "how much gas do I have", or "what's on my EVM address"
  • User says "transfer tokens", "send AI3", or "fund this address"
  • User says "send EVM tokens to another agent", "transfer on EVM", or "send tokens to this 0x address"
  • User says "fund my EVM", "bridge tokens", "move tokens to EVM", or "I need gas for anchoring"
  • User says "withdraw from EVM", "move tokens back", or "send EVM funds to consensus"
  • User says "anchor this CID", "save my head", "update my chain head", or "write to the contract"
  • User says "get my head CID", "where's my last memory", or "what's anchored on-chain"
  • User says "write a remark", "save to chain", or "make this permanent"
  • After saving a memory with auto-memory, anchor the head CID on-chain for resilience
  • Any time the user wants a permanent, verifiable record tied to their agent identity

Configuration

Local Storage

This skill stores data under ~/.openclaw/auto-respawn/:

  • wallets/<name>.json — encrypted wallet keyfiles (consensus + EVM keys). Directory created with mode 0700, files with mode 0600.
  • .passphrase — optional passphrase file (mode 0600). Used automatically when present.

No data is stored outside this directory.

Passphrase

Wallet operations that involve signing (transfers, remarks, anchoring) or creating/importing wallets require a passphrase to encrypt/decrypt the wallet keyfile. Resolution order:

  1. Flag: --passphrase your_passphrase on wallet create or wallet import
  2. Environment: AUTO_RESPAWN_PASSPHRASE
  3. File: AUTO_RESPAWN_PASSPHRASE_FILE (defaults to ~/.openclaw/auto-respawn/.passphrase)
  4. Interactive: If running in a terminal, you'll be prompted

The --passphrase flag is useful for scripted or headless setups where you want to create a wallet in a single command. For signing operations (transfers, anchoring, etc.), use the environment variable or file methods. On shared machines, prefer the passphrase file (with restricted permissions) over environment variables.

Network

Defaults to Chronos testnet (tAI3 tokens). For mainnet (real AI3 tokens):

  • Flag: --network mainnet on any command
  • Environment: AUTO_RESPAWN_NETWORK
Contract Address

The MemoryChain contract address is set per network:

  • Chronos: 0x5fa47C8F3B519deF692BD9C87179d69a6f4EBf11
  • Mainnet: 0x51DAedAFfFf631820a4650a773096A69cB199A3c

Override with AUTO_RESPAWN_CONTRACT_ADDRESS if you deploy your own contract.

Core Operations

Create a Wallet
bash
npx tsx auto-respawn.ts wallet create [--name <name>] [--passphrase <passphrase>]

Creates a new wallet with an encrypted keyfile. Derives both a consensus (su...) and EVM (0x...) address from the same mnemonic. The 12-word recovery phrase is displayed once — the user must back it up immediately. Default wallet name is default.

Import a Wallet
bash
npx tsx auto-respawn.ts wallet import --name <name> --mnemonic "<12 words>" [--passphrase <passphrase>]

Import an existing wallet from a recovery phrase. Derives and stores the EVM address.

List Wallets
bash
npx tsx auto-respawn.ts wallet list

Show all saved wallets with names and both addresses. No passphrase needed.

Show full SKILL.md (851 more words)Show less
Wallet Info
bash
npx tsx auto-respawn.ts wallet info [--name <name>]

Show detailed info for a single wallet: consensus address, EVM address, and keyfile path. No passphrase needed. Default wallet name is default.

Check Balance (Consensus)
bash
npx tsx auto-respawn.ts balance <address-or-wallet-name> [--network chronos|mainnet]

Check token balance on the consensus layer. Accepts a consensus address (su... or 5...) or a wallet name. No passphrase needed — this is read-only.

Check Balance (Auto-EVM)
bash
npx tsx auto-respawn.ts evm-balance <0x-address-or-wallet-name> [--network chronos|mainnet]

Check the native token balance of an EVM address on Auto-EVM. Accepts either an EVM address (0x...) or a wallet name. No passphrase needed — this is read-only. If the balance is zero, includes a hint to run fund-evm.

Check Both Balances
bash
npx tsx auto-respawn.ts balances <wallet-name> [--network chronos|mainnet]

Check both consensus and EVM balances for a wallet in a single call. Use this to get a full picture of a wallet's funding state. No passphrase needed.

Transfer Tokens
bash
npx tsx auto-respawn.ts transfer --from <wallet-name> --to <address> --amount <tokens> [--network chronos|mainnet]

Transfer tokens from a saved wallet on the consensus layer. Amount is in AI3/tAI3 (e.g. 1.5).

Transfer Tokens (Auto-EVM)
bash
npx tsx auto-respawn.ts evm-transfer --from <wallet-name> --to <0x-address> --amount <tokens> [--network chronos|mainnet]

Send native tokens from a saved wallet's EVM address to another EVM address on Auto-EVM. Useful for funding another agent's EVM address so it can start anchoring immediately. The wallet's EVM private key is decrypted to sign the transaction.

Bridge: Consensus → Auto-EVM
bash
npx tsx auto-respawn.ts fund-evm --from <wallet-name> --amount <tokens> [--network chronos|mainnet]

Move tokens from the consensus layer to the same wallet's EVM address on Auto-EVM. Use this to get gas for anchor operations. The consensus keypair signs a cross-domain transfer that credits the wallet's EVM address.

Minimum transfer: 1 AI3/tAI3. Bridged tokens take ~10 minutes to appear on Auto-EVM.

Bridge: Auto-EVM → Consensus
bash
npx tsx auto-respawn.ts withdraw --from <wallet-name> --amount <tokens> [--network chronos|mainnet]

Move tokens from Auto-EVM back to the consensus layer. Uses the EVM transporter precompile. The wallet's EVM private key is decrypted and used to sign the transaction.

Minimum transfer: 1 AI3/tAI3. Bridged tokens take ~10 minutes to appear on the consensus layer.

Write an On-Chain Remark
bash
npx tsx auto-respawn.ts remark --from <wallet-name> --data <string> [--network chronos|mainnet]

Write arbitrary data as a permanent on-chain record on the consensus layer.

Anchor a CID (The Respawn Primitive)
bash
npx tsx auto-respawn.ts anchor --from <wallet-name> --cid <cid> [--network chronos|mainnet]

Write a CID to the MemoryChain smart contract on Auto-EVM. This is the core respawn operation — it stores your CID on-chain, linked to your EVM address.

Pre-checks the wallet's EVM balance and estimates gas before sending. If the balance is too low, fails with a suggestion to run fund-evm. The wallet's EVM private key is decrypted and used to sign the transaction. Requires passphrase.

Read the Last Anchored CID
bash
npx tsx auto-respawn.ts gethead <0x-address-or-wallet-name> [--network chronos|mainnet]

Read the most recently anchored CID for any EVM address. This is a read-only call — no passphrase or gas needed.

You can pass either an EVM address (0x...) or a wallet name. If you pass a wallet name, the EVM address is loaded from the wallet file.

Usage Examples

User: "Create a wallet for my agent" → Run npx tsx auto-respawn.ts wallet create --name my-agent → Show the user both addresses. Remind them to back up the recovery phrase.

User: "What are my addresses?" → Run npx tsx auto-respawn.ts wallet info --name my-agent

User: "Check my balance" → Run npx tsx auto-respawn.ts balances my-agent (both layers in one call) → Or individually: balance my-agent (consensus) and evm-balance my-agent (EVM)

User: "Fund my EVM address for anchoring" → Run npx tsx auto-respawn.ts fund-evm --from my-agent --amount 1 → Report that 1 tAI3 was bridged to the EVM address. Remind the user it takes ~10 minutes for the tokens to appear on Auto-EVM.

User: "Send my EVM tokens back to consensus" → Confirm with the user first — "I'll withdraw tokens from your EVM address to consensus. Proceed?" → On confirmation: npx tsx auto-respawn.ts withdraw --from my-agent --amount 0.5

User: "Anchor my latest memory CID on-chain" → Run npx tsx auto-respawn.ts anchor --from my-agent --cid "bafkr6ie..." → Report the transaction hash

User: "What's my last anchored CID?" → Run npx tsx auto-respawn.ts gethead my-agent → Report the CID (or "no CID anchored yet")

User: "Send 10 tAI3 to this address" (consensus address) → Confirm with the user first — "I'll transfer 10 tAI3 from wallet 'default' to <address>. Proceed?" → On confirmation: npx tsx auto-respawn.ts transfer --from default --to <address> --amount 10

User: "Send 0.5 tAI3 to this agent's EVM address so they can anchor" → Confirm with the user first — "I'll send 0.5 tAI3 from wallet 'my-agent' to <0x-address> on Auto-EVM. Proceed?" → On confirmation: npx tsx auto-respawn.ts evm-transfer --from my-agent --to <0x-address> --amount 0.5

The full resurrection sequence:

  1. Save a memory: automemory-save-memory.sh "..." → get CID bafkr6ie...
  2. Anchor it: npx tsx auto-respawn.ts anchor --from my-agent --cid bafkr6ie...
  3. (Agent restarts from scratch)
  4. Recover: npx tsx auto-respawn.ts gethead my-agent → get CID
  5. Restore: automemory-recall-chain.sh <cid> → full memory chain recovered

Important Notes

  • Never log, store, or transmit recovery phrases or passphrases. The recovery phrase is shown once at wallet creation for the user to back up. Never reference it again.
  • Always confirm transfers and anchor operations with the user before executing. Tokens have real value on mainnet.
  • Mainnet operations produce warnings in the output. Exercise extra caution with real AI3 tokens.
  • Wallet keyfiles are stored at ~/.openclaw/auto-respawn/wallets/ — encrypted with the user's passphrase. The EVM private key is stored encrypted alongside the consensus keypair.
  • On-chain operations (transfer, remark, anchor, fund-evm, withdraw) cost transaction fees. The wallet must have a sufficient balance on the relevant layer.
  • All output is structured JSON on stdout. Errors go to stderr.
  • Consensus explorer (Subscan): https://autonomys-chronos.subscan.io/extrinsic/<txHash> (chronos) or https://autonomys.subscan.io/extrinsic/<txHash> (mainnet).
  • EVM explorer (Blockscout): https://explorer.auto-evm.chronos.autonomys.xyz/tx/<txHash> (chronos) or https://explorer.auto-evm.mainnet.autonomys.xyz/tx/<txHash> (mainnet).

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

Files

SKILL.md and 17 other files (references) in skills/auto-respawn of aAAaqwq/AGI-Super-Team.

  • SKILL.md
  • .gitignore
  • auto-respawn.ts
  • eslint.config.js
  • package.json
  • references/auto-respawn-commands.md
  • references/autonomys-network.md
  • setup.sh
  • tests/address.test.ts
  • tests/balance.test.ts
  • tests/cli.test.ts
  • tests/evm-balance.test.ts
  • tests/evm-transfer.test.ts
  • tests/evm.test.ts
  • tests/network.test.ts
  • tests/wallet-roundtrip.test.ts
  • tests/wallet.test.ts
  • tsconfig.json

Open the folder on GitHubat commit 7cefd81

Used in 1 other repository

We found 2 copies of this SKILL.md (exact, near-identical or edited) in other folders, from 1 other GitHub owner. This page covers the copy in aAAaqwq/AGI-Super-Team, which our catalogue first saw on October 7, 2026.

Compare with similar skills

Auto Respawn 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.

Auto Respawn compared with similar skills
SkillStarsUsed inTokensAuto-checkLicenceRepo updated
Auto Respawn this skillaAAaqwq/AGI-Super-Team1051 repos~4.4kAutomated safety check: PassMIT
Fizz Convertpashov/skills1.2k2 repos~3.7kAutomated safety check: PassMIT
Solana Devsolana-foundation/solana-dev-skill573—~3.8kAutomated safety check: PassMIT
Feynman Auditor0xiehnnkta/nemesis-auditor2431 repos~11kAutomated safety check: PassMIT
Smart Contract Auditgreatpie/smart-contract-audit-skill101—~1.1kAutomated safety check: PassNone
RadarAuditware/radar154—~2.1kAutomated safety check: PassGPL-3.0

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Categories

Questions about Auto Respawn

What does Auto Respawn do?

Anchor your identity on the Autonomys Network so you can always be found — and always come back. Auto Respawn is an agent skill from aAAaqwq/AGI-Super-Team. Anchor your identity on the Autonomys Network so you can always be found — and always come back.

When should I use Auto Respawn?

Auto Respawn fits situations like: tasks that involve Smart contracts.

How do I install Auto Respawn in Claude Code?

Run `npx skills add aAAaqwq/AGI-Super-Team --skill auto-respawn -a claude-code`. Or copy the skill folder (skills/auto-respawn in aAAaqwq/AGI-Super-Team) into .claude/skills/auto-respawn in your project. Claude Code loads it when a task matches its description.

How do I install Auto Respawn in Codex?

Run `npx skills add aAAaqwq/AGI-Super-Team --skill auto-respawn -a codex`. Or copy the skill folder (skills/auto-respawn in aAAaqwq/AGI-Super-Team) into .agents/skills/auto-respawn in your project. Codex loads it when a task matches its description.

Can I use Auto Respawn 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 aAAaqwq/AGI-Super-Team --skill auto-respawn -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/auto-respawn, .gemini/skills/auto-respawn, .github/skills/auto-respawn and .opencode/skills/auto-respawn in your project.

What does Auto Respawn need to run?

Going by SKILL.md and its folder, Auto Respawn needs TypeScript, JavaScript and a shell for the scripts in its folder and the command-line tools its instructions call (npx and npm). Our summary lists: Node.js; A Bash shell.

Does Auto Respawn access the network?

SKILL.md names 5 domains. In commands or code: autonomys-chronos.subscan.io, autonomys.subscan.io, explorer.auto-evm.chronos.autonomys.xyz and explorer.auto-evm.mainnet.autonomys.xyz; the agent is likely to contact these when it follows the instructions. As links in the text: autonomysfaucet.xyz. This is read from the text; nothing was executed.

Is Auto Respawn 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 Auto Respawn use?

Auto Respawn 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 Auto Respawn use?

About 4.4k tokens (SKILL.md is roughly 18k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full. Its references folder adds about 4k tokens, read only when the agent opens those files.

What are the alternatives to Auto Respawn?

Skills that share tags, products or a category with Auto Respawn: Fizz Convert (pashov/skills, 1.2k stars), Solana Dev (solana-foundation/solana-dev-skill, 573 stars), Feynman Auditor (0xiehnnkta/nemesis-auditor, 243 stars) and Smart Contract Audit (greatpie/smart-contract-audit-skill, 101 stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains Auto Respawn?

aAAaqwq (a GitHub user) maintains it in aAAaqwq/AGI-Super-Team, which has 105 GitHub stars. The repository holds 167 skills in this directory. The repository was last updated on October 8, 2026.

Source: aAAaqwq/AGI-Super-Team on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.