3e3abc8672
- README: rewrite config/skills sections for named volume and auto-deploy, add Context7 MCP docs, update all opencode.json→opencode.jsonc refs, add SKILLSET_CONTAINER_PATH to env var table - CHANGELOG: add v1.14.32b entry documenting breaking changes and features - AGENTS.md: update file roles, add skillset and config volume conventions - DOCKER_HUB.md: regenerated (drop Context7 and Shell defaults sections to stay within 25KB Docker Hub limit) - generate-dockerhub-md.py: add Context7 (drop) and Shell defaults (drop) to SECTION_RULES
566 lines
22 KiB
Markdown
566 lines
22 KiB
Markdown
# opencode-devbox — Docker Hub
|
||
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Portable AI developer environment for [opencode](https://opencode.ai). Debian-based, with git, SSH, Node.js, AWS CLI v2, and common dev tools pre-installed.
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## Image Variants
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Two image variants are published for each release:
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| Tag | Description |
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|---|---|
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| `latest` / `vX.Y.Z` | Base image — opencode, Node.js, AWS CLI, dev tools |
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| `latest-omos` / `vX.Y.Z-omos` | Base + [oh-my-opencode-slim](https://github.com/alvinunreal/oh-my-opencode-slim) multi-agent orchestration and Bun |
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Both variants support `linux/amd64` and `linux/arm64`.
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> **NOTE:** This file is auto-generated from `README.md` by `scripts/generate-dockerhub-md.py`. Edit README.md and regenerate rather than editing this file directly.
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## Quick Start
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```bash
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docker run -it --rm \
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-e ANTHROPIC_API_KEY=your-key \
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-e OPENCODE_PROVIDER=anthropic \
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-e GIT_USER_NAME="Your Name" \
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-e GIT_USER_EMAIL="you@example.com" \
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-v ~/projects:/workspace \
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-v ~/.ssh:/home/developer/.ssh:ro \
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joakimp/opencode-devbox:latest
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```
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This drops you straight into opencode with your project mounted at `/workspace`.
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For an interactive shell first (useful for AWS SSO login):
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```bash
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docker run -it --rm \
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-e ANTHROPIC_API_KEY=your-key \
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-e OPENCODE_PROVIDER=anthropic \
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-v ~/projects:/workspace \
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-v ~/.ssh:/home/developer/.ssh:ro \
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joakimp/opencode-devbox:latest bash
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```
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Then run `opencode` when ready.
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For docker-compose users, see the source repo for `docker-compose.yml` and `.env.example` templates.
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## Features
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- **Debian trixie** base — glibc, full PTY/terminal support
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- **Configurable providers** — Anthropic, OpenAI, AWS Bedrock via env vars
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- **Host filesystem access** — bind mount any directory as `/workspace`
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- **SSH key forwarding** — git push/pull to private repos
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- **MCP server support** — Node.js included for `npx`-based MCP servers
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- **Non-root user** — runs as `developer` with UID auto-matched to workspace owner (sudo available)
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- **Python via uv** — `uv` package manager included; install Python on demand with `uv python install`
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- **Rust via rustup** — `rustup-init` included; bootstrap Rust on demand with `rustup-init -y`
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- **Optional runtimes** — Python (apt), Go via build args (Node.js always included — required for opencode v1.x)
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- **Multi-agent orchestration** — optional [oh-my-opencode-slim](https://github.com/alvinunreal/oh-my-opencode-slim) integration via build arg
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- **AWS CLI v2** — built-in SSO/Bedrock authentication with headless device-code flow
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- **Multi-arch** — amd64 and arm64
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## Usage
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### Prerequisites
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Bind-mounted directories must exist on the host before starting the container. Docker creates missing directories as root-owned, which causes permission issues.
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```bash
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# Required: workspace for your projects
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mkdir -p ~/projects
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```
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### Connecting to the container
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From your laptop, SSH into the remote server where Docker is running, then start the container:
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```bash
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# 1. SSH into the remote server
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ssh user@remote-server
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# 2. Navigate to the project
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cd opencode-devbox
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# 3. Start the container with an interactive shell
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docker compose run --rm devbox bash
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# You're now inside the container — run commands here
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aws sso login --sso-session <your-sso-session> --use-device-code
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opencode
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```
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### Running modes
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**Interactive shell** — enter the container, run multiple commands:
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```bash
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docker compose run --rm devbox bash
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```
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**Direct to opencode** — skips the shell, launches opencode immediately:
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```bash
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docker compose run --rm devbox
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```
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**Background container** — keep it running, attach when needed:
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```bash
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# Start in background
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docker compose up -d
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# Attach a shell to the running container
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docker compose exec -u developer devbox bash
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# Or run a single command inside it
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docker compose exec -u developer devbox aws --version
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```
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> `run` creates a new container (cleaned up with `--rm`). `exec` attaches to an already running one.
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## Configuration
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### Environment Variables
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| Variable | Description | Default |
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|---|---|---|
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| `OPENCODE_PROVIDER` | LLM provider (`anthropic`, `openai`, `amazon-bedrock`) | `anthropic` |
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| `OPENCODE_MODEL` | Model override | Provider default |
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| `ANTHROPIC_API_KEY` | Anthropic API key | — |
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| `OPENAI_API_KEY` | OpenAI API key | — |
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| `AWS_REGION` | AWS region for Bedrock | `us-east-1` |
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| `AWS_PROFILE` | AWS SSO profile name | `default` |
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| `GIT_USER_NAME` | Git commit author name | — |
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| `GIT_USER_EMAIL` | Git commit author email | — |
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| `WORKSPACE_PATH` | Host path to mount | `.` |
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| `SSH_KEY_PATH` | Host SSH key directory | `~/.ssh` |
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| `USER_UID` | Override container user UID | Auto-detect from `/workspace` |
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| `USER_GID` | Override container user GID | Auto-detect from `/workspace` |
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| `LANG` | System locale | `en_US.UTF-8` |
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| `LANGUAGE` | Language priority list | `en_US:en` |
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| `LC_ALL` | Override all locale settings | `en_US.UTF-8` |
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| `EDITOR` | Default text editor | `nvim` |
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| `ENABLE_OMOS` | Enable oh-my-opencode-slim multi-agent orchestration | `false` |
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| `OMOS_TMUX` | Enable tmux pane integration for OMOS | `false` |
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| `OMOS_SKILLS` | Install OMOS recommended skills on first run | `true` |
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| `OMOS_RESET` | Force regenerate OMOS config on next start | `false` |
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| `SKILLSET_CONTAINER_PATH` | Path to skillset repo inside container (for auto-deploy when not at /workspace/skillset) | Auto-detect |
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### Custom opencode config
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Opencode configuration is persisted automatically via the named volume `devbox-opencode-config`. This volume is mounted at `/home/developer/.config/opencode` by default — no host directory setup required. All changes to `opencode.jsonc`, skills, and (on the OMOS variant) `oh-my-opencode-slim.json` survive container recreation.
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When an existing `opencode.jsonc` is found in the volume, the `OPENCODE_PROVIDER` auto-config is skipped.
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**Alternative: host bind-mount** — if you specifically want to share config from the host (e.g. to version-control it or sync across machines), replace the named volume with a bind mount:
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```yaml
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volumes:
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- ~/.config/opencode:/home/developer/.config/opencode
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```
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> **Portability note:** The mounted config runs inside a Linux container. Any absolute paths inside `opencode.jsonc` (for example, host-specific `plugin` entries like `file:///usr/local/lib/node_modules/...` or `file:///opt/homebrew/...`) will not resolve inside the container. Prefer bare package specifiers (e.g. `"oh-my-opencode-slim"`) that resolve via `node_modules` lookup, which works on both macOS and Linux hosts.
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### Custom skills
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Skills are deployed automatically from a skillset repo on container start. The entrypoint detects the skillset location in this order:
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1. `SKILLSET_CONTAINER_PATH` env var (explicit path to skillset repo inside container)
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2. `~/skillset` mount (if present)
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3. `/workspace/skillset` fallback (if your workspace contains a `skillset/` directory)
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When a skillset repo is detected, its skills are symlinked into `~/.agents/skills/` automatically. No manual configuration needed.
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> **Warning:** Do not bind-mount a host `~/.agents/skills` directory directly into the container. This conflicts with the symlink-based auto-deploy mechanism and causes broken skill references.
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### Neovim configuration
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The image includes neovim 0.12 with `EDITOR=nvim` set by default. To use your own neovim config (and have plugins auto-install via lazy.nvim on first start), mount it from the host:
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```yaml
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volumes:
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- ~/.config/nvim:/home/developer/.config/nvim:ro
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```
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### Python development with uv
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The image includes Python 3.13 (from Debian Trixie) and [uv](https://docs.astral.sh/uv/), a fast Python package manager that replaces pip, venv, and pyenv:
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```bash
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# Python 3.13 is available out of the box
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python3 --version
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# Use uv for package management
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uv venv
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uv pip install -r requirements.txt
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# Or use uv's project workflow (reads pyproject.toml)
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uv sync
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# Run a Python script
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uv run python script.py
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# Install standalone Python tools
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uvx ruff check .
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# Install a newer Python version (persists with devbox-uv volume)
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uv python install 3.14
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```
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Python installations are stored in `~/.local/share/uv/`. To persist them across container restarts, add the `devbox-uv` named volume to your `docker-compose.yml`:
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```yaml
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volumes:
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- devbox-uv:/home/developer/.local/share/uv
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volumes:
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devbox-uv:
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```
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Project virtual environments (`.venv`) are stored in your workspace directory and persist automatically via the `/workspace` bind mount.
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### Rust development with rustup
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The image includes `rustup-init`, the Rust toolchain installer. Rust is not pre-installed but can be bootstrapped on demand:
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```bash
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# One-time setup: install Rust toolchain (~300MB, persists with volumes)
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rustup-init -y
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source ~/.cargo/env
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# Now use Rust normally
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cargo new my-project
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cargo build
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cargo run
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```
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To persist Rust toolchains and cargo data across container restarts, add named volumes to your `docker-compose.yml`:
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```yaml
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volumes:
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- devbox-rustup:/home/developer/.rustup
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- devbox-cargo:/home/developer/.cargo
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volumes:
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devbox-rustup:
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devbox-cargo:
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```
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### JavaScript and TypeScript
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The base image includes **Node.js 22** and **npm** — sufficient for most JavaScript and TypeScript development:
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```bash
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# Initialize a new project
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npm init -y
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# Install dependencies
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npm install
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# Run TypeScript (via tsx, ts-node, etc.)
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npx tsx src/index.ts
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# Use npx for one-off tools
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npx tsc --init
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```
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The OMOS image variant also includes **Bun**, a faster JavaScript runtime and package manager:
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```bash
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bun init
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bun install
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bun run src/index.ts
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```
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Node modules are stored in your project directory under `/workspace` and persist automatically.
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### VS Code integration
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VS Code can connect directly to a running opencode-devbox container for a full IDE experience with IntelliSense, debugging, and extensions running inside the container.
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**Local Docker (Docker running on your workstation):**
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1. Install the [Dev Containers](https://marketplace.visualstudio.com/items?itemName=ms-vscode-remote.remote-containers) extension
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2. Start the container: `docker compose up -d`
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3. In VS Code: `Ctrl+Shift+P` → "Dev Containers: Attach to Running Container" → select `opencode-devbox`
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**Remote Docker (Docker running on a remote server, e.g. via SSH):**
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1. Install the [Remote - SSH](https://marketplace.visualstudio.com/items?itemName=ms-vscode-remote.remote-ssh) and [Dev Containers](https://marketplace.visualstudio.com/items?itemName=ms-vscode-remote.remote-containers) extensions
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2. Connect to the remote host: `Ctrl+Shift+P` → "Remote-SSH: Connect to Host"
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3. On the remote host, start the container: `docker compose up -d`
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||
4. In VS Code (now connected to the remote): `Ctrl+Shift+P` → "Dev Containers: Attach to Running Container"
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||
VS Code extensions installed inside the container persist as long as the container exists (not removed with `docker compose down`). For persistent extension storage across container recreations, add a named volume:
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||
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||
```yaml
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volumes:
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- devbox-vscode:/home/developer/.vscode-server
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```
|
||
|
||
## oh-my-opencode-slim (Multi-Agent Orchestration)
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||
[oh-my-opencode-slim](https://github.com/alvinunreal/oh-my-opencode-slim) adds a multi-agent layer on top of opencode — an Orchestrator delegates tasks to specialized agents (Explorer, Oracle, Librarian, Designer, Fixer), each configurable with different models and providers.
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### Setup
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||
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A pre-built OMOS image is available on Docker Hub as `joakimp/opencode-devbox:latest-omos`. Alternatively, build from source:
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**1. Build the image with OMOS support:**
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```bash
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docker compose build --build-arg INSTALL_OMOS=true
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```
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This installs Bun and the oh-my-opencode-slim package into the image.
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**2. Enable in `.env`:**
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```bash
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ENABLE_OMOS=true
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```
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||
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**3. Run as normal:**
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||
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```bash
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docker compose run --rm devbox
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```
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On first start, the entrypoint runs the oh-my-opencode-slim installer in non-interactive mode. It generates agent configuration at `~/.config/opencode/oh-my-opencode-slim.json` inside the container. The default preset uses OpenAI models — edit the generated config or mount your own to customize.
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||
|
||
### OMOS Environment Variables
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||
|
||
| Variable | Default | Description |
|
||
|---|---|---|
|
||
| `ENABLE_OMOS` | `false` | Activate oh-my-opencode-slim on container start |
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||
| `OMOS_TMUX` | `false` | Enable tmux pane integration (tmux is included in the base image) |
|
||
| `OMOS_SKILLS` | `true` | Install recommended skills (simplify, agent-browser, cartography) |
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||
| `OMOS_RESET` | `false` | Force regenerate config on next start (backs up existing config) |
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||
|
||
### Custom Configuration
|
||
|
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If you mount the opencode config directory (see Custom opencode config above), the `oh-my-opencode-slim.json` file is included and persists across restarts. Edit it directly to control which models power each agent, fallback chains, council setup, and more.
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||
|
||
See the [oh-my-opencode-slim configuration docs](https://github.com/alvinunreal/oh-my-opencode-slim/blob/master/docs/configuration.md) for the full reference.
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||
|
||
### Verifying Agents
|
||
|
||
After starting opencode with OMOS enabled, run inside the opencode session:
|
||
|
||
```
|
||
ping all agents
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||
```
|
||
|
||
All six agents should respond if your provider authentication is working.
|
||
|
||
## AWS Bedrock Authentication
|
||
|
||
When using AWS Bedrock as your LLM provider, you need:
|
||
|
||
### 1. AWS config on the host
|
||
|
||
The container needs access to your `~/.aws/config` with SSO session configuration. If you already have this on another machine, copy it:
|
||
|
||
```bash
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||
scp -r user@other-machine:~/.aws ~/.aws
|
||
```
|
||
|
||
Or configure from scratch on the host:
|
||
|
||
```bash
|
||
aws configure sso
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||
```
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||
|
||
### 2. Mount `~/.aws` into the container
|
||
|
||
Uncomment the AWS volume mount in `docker-compose.yml`:
|
||
|
||
```yaml
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- ~/.aws:/home/developer/.aws
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||
```
|
||
|
||
Note: do **not** use `:ro` — SSO writes token cache files to this directory.
|
||
|
||
### 3. Authenticate inside the container
|
||
|
||
Since the container runs headless (no browser), use the device-code flow:
|
||
|
||
```bash
|
||
# Start the container
|
||
docker compose up -d
|
||
docker compose exec -u developer devbox bash
|
||
|
||
# Authenticate — prints a URL and code you open in your local browser
|
||
aws sso login --sso-session <your-sso-session> --use-device-code
|
||
|
||
# Once approved in the browser, start opencode
|
||
opencode
|
||
```
|
||
|
||
The `--use-device-code` flag outputs a URL and short code instead of trying to open a browser. Copy the URL into any browser (on your laptop, phone, etc.), enter the code, and complete the 2FA flow. The CLI in the container picks up the session automatically.
|
||
|
||
SSO sessions typically last 8–12 hours before requiring re-authentication. Since `~/.aws` is mounted from the host, tokens persist across container restarts.
|
||
|
||
## MemPalace — persistent AI memory
|
||
|
||
The image includes [MemPalace](https://github.com/MemPalace/mempalace), a local-first AI memory system that stores conversation history verbatim and retrieves it via semantic search. Nothing leaves your machine.
|
||
|
||
> MemPalace adds ~300 MB to the image (chromadb, embedding model deps). If you don't use it, rebuild with `--build-arg INSTALL_MEMPALACE=false` to shrink the image.
|
||
|
||
### Enabling persistence
|
||
|
||
Uncomment the palace volume in `docker-compose.yml`:
|
||
|
||
```yaml
|
||
- devbox-palace:/home/developer/.mempalace
|
||
```
|
||
|
||
Without the volume, palace data lives in the container's writable layer and is lost on `--force-recreate`.
|
||
|
||
### MCP integration with opencode
|
||
|
||
Add mempalace as an MCP server in your `opencode.jsonc` (inside `~/.config/opencode/`):
|
||
|
||
```json
|
||
{
|
||
"mcp": {
|
||
"mempalace": {
|
||
"type": "local",
|
||
"command": ["mempalace-mcp"]
|
||
}
|
||
}
|
||
}
|
||
```
|
||
|
||
> The image installs mempalace into an isolated `uv tool` venv at `/opt/uv-tools/mempalace/`. `uv tool install` places `mempalace-mcp` on `PATH` as a shim whose shebang points at the venv's Python, so MCP clients can invoke it as a normal binary without worrying about the venv. Do **not** use `["python3", "-m", "mempalace.mcp_server"]` — the system Python cannot import from the uv-managed venv and you'll get `ModuleNotFoundError` / `MCP error -32000: connection closed`.
|
||
|
||
This gives opencode access to 29 MCP tools for searching memory, querying the knowledge graph, managing wings/rooms/drawers, and agent diaries.
|
||
|
||
### Basic usage
|
||
|
||
```bash
|
||
# Mine project files into the palace
|
||
mempalace mine /workspace
|
||
|
||
# Mine conversation transcripts
|
||
mempalace mine ~/.local/share/opencode/ --mode convos
|
||
|
||
# Search memory
|
||
mempalace search "why did we switch to eno1"
|
||
|
||
# Load context for a new session
|
||
mempalace wake-up
|
||
```
|
||
|
||
Each workspace gets its own isolated "wing" — memories never leak between projects.
|
||
|
||
### Scheduled mining (mempalace-toolkit)
|
||
|
||
The image bakes in [mempalace-toolkit](https://gitea.jordbo.se/joakimp/mempalace-toolkit), a small set of bash wrappers that pair with mempalace for two common routines:
|
||
|
||
```bash
|
||
# Mine opencode session history (reads ~/.local/share/opencode/opencode.db, stages JSONL, mines into wing_conversations)
|
||
mempalace-session
|
||
|
||
# Mine a project's docs into a dedicated wing
|
||
mempalace-docs /workspace/my-project
|
||
```
|
||
|
||
Both wrappers are idempotent and dedup-aware — re-running them on unchanged input is a cheap no-op.
|
||
|
||
For weekly automated runs, the toolkit ships ready-to-use scheduler templates (systemd user timer, launchd user agent, cron) in its [`contrib/`](https://gitea.jordbo.se/joakimp/mempalace-toolkit/src/branch/main/contrib) directory. The `*-devbox` variants are designed for this container: host-side schedulers that `docker exec` into the running opencode-devbox.
|
||
|
||
Disable the toolkit (keeps mempalace itself) with `--build-arg INSTALL_MEMPALACE_TOOLKIT=false`. Pin to a specific ref with `--build-arg MEMPALACE_TOOLKIT_REF=v0.3.0` once tagged releases exist.
|
||
|
||
### Storage
|
||
|
||
Two separate named volumes keep different data classes apart:
|
||
|
||
- **Palace data** (`~/.mempalace/`): ChromaDB vectors, SQLite knowledge graph, drawers. This is your memory — back it up, treat it as precious. Persists via the `devbox-palace` named volume.
|
||
- **Embedding model cache** (`~/.cache/chroma/`): ONNX model (~79 MB), downloaded automatically on first search. Disposable — blow it away and it re-downloads in ~4 seconds. Persists via the `devbox-chroma-cache` named volume so you don't re-download on every container recreation.
|
||
- **No API keys required** for core functionality (local embeddings via ONNX).
|
||
|
||
Both volumes are commented out by default in `docker-compose.yml` — uncomment to enable:
|
||
|
||
```yaml
|
||
- devbox-palace:/home/developer/.mempalace
|
||
- devbox-chroma-cache:/home/developer/.cache/chroma
|
||
```
|
||
|
||
**Air-gapped environments:** pre-populate the `devbox-chroma-cache` volume with the `all-MiniLM-L6-v2/` model contents. The palace volume needs no pre-population.
|
||
|
||
## Gitea MCP server
|
||
|
||
The image includes the [official Gitea MCP server](https://gitea.com/gitea/gitea-mcp) (`gitea-mcp`), providing 50+ MCP tools for interacting with self-hosted Gitea instances — repositories, issues, pull requests, releases, branches, wiki, and Actions.
|
||
|
||
### Setup
|
||
|
||
1. Create a Personal Access Token on your Gitea instance (Settings → Applications → Generate Token, scopes: `repo`, `read:user`).
|
||
|
||
2. Add to your `.env`:
|
||
```env
|
||
GITEA_HOST=https://your-gitea-instance.example.com
|
||
GITEA_ACCESS_TOKEN=your_token_here
|
||
```
|
||
|
||
3. Enable the gitea MCP server in your `opencode.jsonc`:
|
||
```json
|
||
{
|
||
"mcp": {
|
||
"gitea": {
|
||
"type": "local",
|
||
"command": ["gitea-mcp", "-t", "stdio", "--host", "{env:GITEA_HOST}"],
|
||
"environment": {
|
||
"GITEA_ACCESS_TOKEN": "{env:GITEA_ACCESS_TOKEN}"
|
||
},
|
||
"enabled": true
|
||
}
|
||
}
|
||
}
|
||
```
|
||
|
||
The server is installed but disabled by default — it requires authentication to be useful.
|
||
|
||
## Architecture
|
||
|
||
```
|
||
Host Machine
|
||
├── ~/projects/my-app ──bind mount──▶ /workspace (container)
|
||
├── ~/.ssh ──bind mount──▶ /home/developer/.ssh (ro)
|
||
├── ~/.aws ──bind mount──▶ /home/developer/.aws (Bedrock SSO)
|
||
└── .env ──env vars───▶ provider config + API keys
|
||
|
||
Container (Debian trixie)
|
||
├── opencode binary
|
||
├── oh-my-opencode-slim (optional — multi-agent orchestration plugin, includes Bun)
|
||
├── AWS CLI v2 (SSO + Bedrock auth)
|
||
├── neovim 0.12, tmux, htop, bat, eza, zoxide, uv, rustup, make, gcc, g++, rsync
|
||
├── git, git-crypt, age, ssh, ripgrep, fd, fzf, jq, curl, tree
|
||
├── Node.js (for MCP servers)
|
||
├── Bun (optional — included with oh-my-opencode-slim)
|
||
├── entrypoint.sh (UID adjustment, git config, provider setup)
|
||
└── /workspace ← your code lives here
|
||
```
|
||
|
||
### Data persistence
|
||
|
||
| Path in container | Source | Survives `--rm`? | Contains |
|
||
|---|---|---|---|
|
||
| `/workspace` | Host bind mount | ✅ Yes | Your project files |
|
||
| `/home/developer/.ssh` | Host bind mount (ro) | ✅ Yes | SSH keys |
|
||
| `/home/developer/.aws` | Host bind mount (if configured) | ✅ Yes | AWS credentials/SSO cache |
|
||
| `/home/developer/.local/share/opencode` | Named volume `devbox-data` | ✅ Yes | Session history, memory |
|
||
| `/home/developer/.local/state/opencode` | Named volume `devbox-state` | ✅ Yes | TUI settings (theme, toggles) |
|
||
| `/home/developer/.cache/bash` | Named volume `devbox-shell-history` | ✅ Yes | Bash history (`$HISTFILE`), survives container recreate |
|
||
| `/home/developer/.local/share/zoxide` | Named volume `devbox-zoxide` | ✅ Yes | Zoxide directory history (`z <fragment>` jump targets) |
|
||
| `/home/developer/.local/share/nvim` | Named volume `devbox-nvim-data` | ✅ Yes | Neovim plugins, Mason LSP installs, Lazy plugin cache |
|
||
| `/home/developer/.local/share/uv` | Named volume `devbox-uv` (if configured) | ✅ Yes | Python installs, uv tool installs |
|
||
| `/home/developer/.rustup` | Named volume `devbox-rustup` (if configured) | ✅ Yes | Rust toolchains |
|
||
| `/home/developer/.cargo` | Named volume `devbox-cargo` (if configured) | ✅ Yes | Cargo binaries, registry cache |
|
||
| `/home/developer/.vscode-server` | Named volume `devbox-vscode` (if configured) | ✅ Yes | VS Code server and extensions |
|
||
| `/home/developer/.config/opencode` | Named volume `devbox-opencode-config` | ✅ Yes | `opencode.jsonc`, skills, plus `oh-my-opencode-slim.json` on the OMOS variant |
|
||
|
||
**opencode config** (`opencode.jsonc`) is auto-generated from `OPENCODE_PROVIDER` on each start. It sets provider and model only — no MCP servers. To persist config changes and use custom settings, use the named volume (default) or bind-mount from host (see Custom opencode config above).
|
||
|
||
## Source
|
||
|
||
MIT licensed. Source, issues, and `docker-compose.yml` templates: <https://gitea.jordbo.se/joakimp/opencode-devbox>
|