| name | mise-configurator |
| description | Generate production-ready mise.toml setups for local development, CI/CD pipelines, and toolchain standardization. |
| category | devops |
| risk | safe |
| source | self |
| source_type | self |
| date_added | 2026-04-16 |
| author | community |
| tags | ["mise","devops","ci-cd","toolchain","runtimes","automation"] |
| tools | ["claude","cursor","gemini"] |
Mise Configurator
Overview
This skill generates clean, production-ready mise.toml configurations for local development environments and CI/CD pipelines.
It helps standardize runtime versions, simplify onboarding, replace legacy version managers like asdf, nvm, and pyenv, and create reproducible multi-language environments with minimal setup effort.
When to Use This Skill
- Use when you need to create or update a
mise.toml
- Use when working with Node.js, Python, Go, Rust, Java, Bun, Terraform, or mixed stacks
- Use when the user asks about CI/CD runtime setup using mise
- Use when migrating from
.tool-versions, asdf, nvm, or pyenv
- Use when standardizing tool versions across teams or monorepos
How It Works
Step 1: Detect Project Context
Inspect available repository files such as:
package.json
pnpm-lock.yaml
pyproject.toml
requirements.txt
go.mod
Cargo.toml
.tool-versions
Dockerfile
- GitHub Actions or CI files
Infer languages, package managers, and pinned versions.
Step 2: Generate mise.toml
Create a minimal, valid, copy-paste-ready configuration using:
- existing pinned versions when found
- explicit user-provided target versions when absent
- practical defaults for developer productivity
- concrete pinned versions in shared production configs
Step 3: Add Bootstrap Commands
Provide setup commands such as:
mise trust
mise install
Step 4: Generate CI/CD Integration
If requested, generate pipeline examples using mise with caching and runtime installation.
Examples
Example 1: Node.js + pnpm Project
[tools]
node = "22.11.0"
pnpm = "9.15.0"
Example 2: Python + GitHub Actions
[tools]
python = "3.12.7"
poetry = "1.8.4"
steps:
- uses: actions/checkout@v4
- uses: jdx/mise-action@v2
- run: poetry install
- run: pytest
Best Practices
-
✅ Respect versions already pinned in the repository
-
✅ Keep configs minimal and readable
-
✅ Prefer stable runtime releases
-
✅ Generate CI examples with caching
-
✅ Ask for target versions before pinning when the repository does not already declare them
-
❌ Do not use floating latest or lts aliases in shared production configs unless explicitly requested
-
❌ Do not over-engineer unnecessary tool entries
-
❌ Do not ignore existing lockfiles or version files
Limitations
-
This skill does not replace environment-specific validation, testing, or expert review.
-
Stop and ask for clarification if required inputs, permissions, or safety boundaries are missing.
-
Runtime availability may vary by OS, shell, or CI platform.
-
Some plugins or niche tools may require manual adjustment.
Security & Safety Notes
-
Review generated shell commands before execution.
-
Confirm CI/CD permissions before modifying pipelines.
-
Validate runtime versions against production requirements.
-
Use only in authorized repositories and environments.
Common Pitfalls
-
Problem: Wrong runtime version selected
Solution: Check repository lockfiles and pinned versions first.
-
Problem: CI installs are slow
Solution: Enable cache layers and reuse mise cache directories.
-
Problem: Tool missing from registry
Solution: Verify plugin support or install manually.
Related Skills
-
@docker-expert - Use when building containerized development environments
-
@github-actions-templates - Use for advanced workflow automation
-
@monorepo-architect - Use for large multi-package repositories
Loop Protection & Circuit Breakers (Tier 2 Governance)
- Loop Limit: If a runtime installation, environment path configuration, or
mise command fails consecutively 3 times during toolchain setup, the agent MUST immediately cease execution loops.
- Action: Document the exact terminal outputs/logs, stop compiling, and escalate immediately to the human developer for manual intervention to prevent runaway context and CPU lockups.