
Crush
ターミナルUIで知られるCharm製の単一バイナリ型エージェント。2年後にMITへ変わるソース公開ライセンス
Crushとは
ほぼどのパッケージマネージャからでも単一のGoバイナリとして入り、Windows PowerShell、WSL、Android、各種BSDを含む幅広い環境で動きます。セッションはプロジェクトごとに保持され、会話の途中で文脈を失わずにモデルを差し替えられ、言語サーバーがエディタと同等のコード情報を供給します。最初に読むべきはライセンスです。OSI承認ではなく、競合製品としての提供を禁じており、各リリースがMITになるのは公開から2年後です。
Crushで何ができますか?
- どこでも1つのバイナリで入る — Homebrew、npm、Winget、Scoop、Nix、Arch用リポジトリ、FreeBSDのパッケージのいずれからも導入できます。macOS、Linux、PowerShellとWSLを含むWindows、Android、各種BSDに対応しています。
- 文脈を保ったままモデルを替える — セッションの途中で別のLLMに切り替えても、それまでの文脈は保持されます。安いモデルに調査させ、強いモデルに編集させたい場面で効いてきます。
- 知らないモデルを持ち込む — OpenAI互換またはAnthropic互換のAPIを備えていれば手動で追加できます。ローカルのollamaのモデルを、独自の名前とコンテキスト長を指定して登録することも可能です。
- プロジェクトごとに複数の作業を並行させる — セッションはプロジェクト単位で個別に保持されます。調査と改修を1つの会話履歴に混ぜず、並べて進められます。
- 3種類のMCP接続方式で拡張する — MCPサーバーはstdio、HTTP、サーバー送信イベントのいずれでも接続できます。設定内の秘密情報は、平文で貼り付ける代わりにコマンドの実行結果から取り込めます。
Crushを選ぶ前に
- Functional Source LicenseはOSI承認ではありません。社内利用、非営利の研究、専門サービスでの利用は認められますが、Crushの代替となる製品として提供することはできません。
- MITへの移行は本当ですが遅れて効きます。各リリースの2年後に発効するため、今日自由に再配布できるのは常に2年前の版です。
スター推移
8月21日〜8月28日 · +203
よくある質問
Crushは商用利用できますか?
CrushのライセンスはFSL-1.1-MITです。OSI承認のオープンソースではなくソース公開型のため、商用利用の前に条項の確認が必要です。
Crushはどの形で使えますか?
Crushはローカル実行の形で利用できます。
ドキュメント
charmbracelet/crush のREADMEより転載(UNKNOWN — read the LICENSE file)。 原文を読む ↗
Crush
Features
- Multi-Model: choose from a wide range of LLMs or add your own via OpenAI- or Anthropic-compatible APIs
- Flexible: switch LLMs mid-session while preserving context
- Session-Based: maintain multiple work sessions and contexts per project
- LSP-Enhanced: Crush uses LSPs for additional context, just like you do
- Extensible: add capabilities via MCPs (
http,stdio, andsse) - Works Everywhere: first-class support in every terminal on macOS, Linux, Windows (PowerShell and WSL), Android, FreeBSD, OpenBSD, and NetBSD
- Industrial Grade: built on the Charm ecosystem, powering 25k+ applications, from leading open source projects to business-critical infrastructure
Installation
Use a package manager:
# Homebrew
brew install charmbracelet/tap/crush
# NPM
npm install -g @charmland/crush
# Arch Linux (btw)
yay -S crush-bin
# Nix
nix run github:numtide/nix-ai-tools#crush
# FreeBSD
pkg install crush
Windows users:
# Winget
winget install charmbracelet.crush
# Scoop
scoop bucket add charm https://github.com/charmbracelet/scoop-bucket.git
scoop install crush
Crush is available via the official Charm NUR in nur.repos.charmbracelet.crush, which is the most up-to-date way to get Crush in Nix.
You can also try out Crush via the NUR with nix-shell:
# Add the NUR channel.
nix-channel --add https://github.com/nix-community/NUR/archive/main.tar.gz nur
nix-channel --update
# Get Crush in a Nix shell.
nix-shell -p '(import <nur> { pkgs = import <nixpkgs> {}; }).repos.charmbracelet.crush'
NixOS & Home Manager Module Usage via NUR
Crush provides NixOS and Home Manager modules via NUR. You can use these modules directly in your flake by importing them from NUR. Since it auto detects whether its a home manager or nixos context you can use the import the exact same way :)
{
inputs = {
nixpkgs.url = "github:NixOS/nixpkgs/nixos-unstable";
nur.url = "github:nix-community/NUR";
};
outputs = { self, nixpkgs, nur, ... }: {
nixosConfigurations.your-hostname = nixpkgs.lib.nixosSystem {
system = "x86_64-linux";
modules = [
nur.modules.nixos.default
nur.repos.charmbracelet.modules.crush
{
programs.crush = {
enable = true;
settings = {
providers = {
openai = {
id = "openai";
name = "OpenAI";
base_url = "https://api.openai.com/v1";
type = "openai";
api_key = "sk-fake123456789abcdef...";
models = [
{
id = "gpt-4";
name = "GPT-4";
}
];
};
};
lsp = {
go = { command = "gopls"; enabled = true; };
nix = { command = "nil"; enabled = true; };
};
options = {
context_paths = [ "/etc/nixos/configuration.nix" ];
tui = { compact_mode = true; };
debug = false;
};
};
};
}
];
};
};
}
sudo mkdir -p /etc/apt/keyrings
curl -fsSL https://repo.charm.sh/apt/gpg.key | sudo gpg --dearmor -o /etc/apt/keyrings/charm.gpg
echo "deb [signed-by=/etc/apt/keyrings/charm.gpg] https://repo.charm.sh/apt/ * *" | sudo tee /etc/apt/sources.list.d/charm.list
sudo apt update && sudo apt install crush
echo '[charm]
name=Charm
baseurl=https://repo.charm.sh/yum/
enabled=1
gpgcheck=1
gpgkey=https://repo.charm.sh/yum/gpg.key' | sudo tee /etc/yum.repos.d/charm.repo
sudo yum install crush
Or, download it:
- Packages are available in Debian and RPM formats
- Binaries are available for Linux, macOS, Windows, FreeBSD, OpenBSD, and NetBSD
Or just install it with Go:
go install github.com/charmbracelet/crush@latest
On illumos (OpenIndiana, OmniOS), the command above works as-is. Only native
OS notifications are unavailable there; terminal-based notifications (OSC) and
the terminal bell still work. On Oracle Solaris, add -tags sqlite3_dotlk so
the local database uses dot-file locking:
go install -tags sqlite3_dotlk github.com/charmbracelet/crush@latest
[!WARNING] Productivity may increase when using Crush and you may find yourself nerd sniped when first using the application. If the symptoms persist, join the [Slack][slack] or [Discord][discord] and nerd snipe the rest of us.
Getting Started
The quickest way to get started is to choose a Hyper model from model picker. Follow the steps to authenticate and you’ll be good to go.
Hyper, from Charm, is the official Crush provider. It’s subscription-based, with a free tier, and optimized for Crush. It’s privacy focused, with zero data retention (ZDR) is and designed to comply with GDPR. More on Hyper.
API Keys
You can also use Crush with many other providers such as Anthopic, OpenAI, Gemini, OpenRouter and so on. Press ctrl+l to open the model picker, choose the provider of your choice, and paste your API key.
That said, you can also set environment variables for preferred providers:
| Environment Variable | Provider |
|---|---|
HYPER_API_KEY | Charm Hyper |
ANTHROPIC_API_KEY | Anthropic |
OPENAI_API_KEY | OpenAI |
VERCEL_API_KEY | Vercel AI Gateway |
GEMINI_API_KEY | Google Gemini |
ZAI_API_KEY | Z.ai |
MINIMAX_API_KEY | MiniMax |
SYNTHETIC_API_KEY | Synthetic |
HF_TOKEN | Hugging Face Inference |
CEREBRAS_API_KEY | Cerebras |
OPENROUTER_API_KEY | OpenRouter |
IONET_API_KEY | io.net |
ALIBABA_SINGAPORE_API_KEY | Alibaba (Singapore) |
ALIBABA_US_API_KEY | Alibaba (United States) |
GROQ_API_KEY | Groq |
AVIAN_API_KEY | Avian |
OPENCODE_API_KEY | OpenCode Zen & Go |
VERTEXAI_PROJECT | Google Cloud VertexAI (Gemini) |
VERTEXAI_LOCATION | Google Cloud VertexAI (Gemini) |
AWS_ACCESS_KEY_ID | Amazon Bedrock (Claude) |
AWS_SECRET_ACCESS_KEY | Amazon Bedrock (Claude) |
AWS_REGION | Amazon Bedrock (Claude) |
AWS_PROFILE | Amazon Bedrock (Custom Profile) |
AWS_BEARER_TOKEN_BEDROCK | Amazon Bedrock |
AZURE_OPENAI_API_ENDPOINT | Azure OpenAI models |
AZURE_OPENAI_API_KEY | Azure OpenAI models (optional when using Entra ID) |
AZURE_OPENAI_API_VERSION | Azure OpenAI models |
MOONSHOT_API_KEY | Moonshot |
Also note that Crush can support nearly any provider, including Local Models. For more info see Custom Providers below.
By the Way
Is there a provider you’d like to see in Crush? Is there an existing model that needs an update?
Crush’s default model listing is managed in Catwalk, a community-supported, open source repository of Crush-compatible models, and you’re welcome to contribute.
Configuration
[!TIP] Crush ships with a builtin skill for configuring itself. Most of the time you can just tell what you want it to configure and it will get the job done.
Crush runs great with no configuration. That said, if you do need or want to
customize Crush, you can, with a crushrc.
A crushrc is just Bash with some Crush-specific builtins. It’s a lot like
a .bashrc, just for your Crush. Because Crush has a native, built-in Bash
interpreter, Bash-based config works identically across all platforms, including
Windows.
For example:
# Add Ollama.
provider add ollama --type ollama --base-url "http://localhost:11434/v1"
# Register a model on Ollama.
model add ollama/llama3.3 --name "Llama 3.3" --context-window 128000
# Auto-approve some tools.
permissions allow view edit
# Include some other file on a specific machine.
if [[ $HOSTNAME == "babysquid" ]]; then
source ~/my-stuff/babysquid.sh
fi
# Add an MCP server, with a GitHub API token stored in 1password.
mcp add github \
--type http \
--url "https://api.githubcopilot.com/mcp/" \
--header Authorization "Bearer $(op read 'op://my-secret-key')"
Configuration can be added either local to the project itself, or globally, with the following priority:
| Priority | Unix-like | Windows |
|---|---|---|
| 1 | ./.crushrc | .\.crushrc |
| 2 | ./crushrc | .\crushrc |
| 3 | ~/.config/crush/crushrc | %USERPROFILE%\.config\crush\crushrc |
(Crush respects the XDG Base Directory Specification, so your paths
may differ depending on your XDG_CONFIG_HOME value. Data directories such as
~/.local/share/crush and %LOCALAPPDATA%\crush contain JSON state only; Crush
does not execute a crushrc from them.)
What about the old JSON format? It’s still supported, but it should be consdiered deprecated. See: the config docs for details.
[!TIP] You can override the user and data config locations by setting:
CRUSH_GLOBAL_CONFIGCRUSH_GLOBAL_DATA
As an additional note, Crush also stores ephemeral data, such as application state, in one additional location. This is state and should not be edited by hand, nor should it be considered configuration.
# Unix
$HOME/.local/share/crush/crush.json
# Windows
%LOCALAPPDATA%\crush\crush.json
A note on security
Both crushrc and crush.json are trusted code; crushrc runs in a full
shell, and any $(...) in crush.json runs at load time. Don’t launch Crush
in a directory whose config you haven’t reviewed, and don’t randomly source
files from the internet into your config.
Environment Variables
The top-level env field sets environment variables at startup, before
providers are configured. This is useful for variables that affect provider
authentication (e.g. the AWS SDK credential chain) without wrapping the
crush command in a shell script or exporting them in your shell profile:
{
"$schema": "https://charm.land/crush.json",
"env": {
"AWS_PROFILE": "my-sso-profile"
}
}
Values support the same $VAR and $(command) expansion as other config
fields, so you can reference existing environment variables or shell out for
a value.
LSPs
Crush can use LSPs for additional context to help inform its decisions, just like you would. LSPs can be added manually like so:
# crushrc
lsp add go --command "gopls" --env "GOTOOLCHAIN go1.24.5"
lsp add typescript --command "typescript-language-server" --args --stdio
lsp add nix --command "nil"
MCPs
Crush also supports Model Context Protocol (MCP) servers through three transport
types: stdio for command-line servers, http for HTTP endpoints, and sse
for Server-Sent Events.
# crushrc
# Add a local MCP server that runs a Node.js script.
mcp add filesystem --command node --args /path/to/mcp-server.js \
--timeout 10 --disabled-tools some-tool-name --env NODE_ENV production
# Add a GitHub MCP server that uses an API token.
mcp add github --type http --url "https://api.githubcopilot.com/mcp/" \
--timeout 10 --header Authorization "Bearer $GH_PAT" \
--disabled-tools create_issue --disabled-tools create_pull_request
# Add a streaming MCP server that uses SSE.
mcp add streaming-service --type sse --url "https://example.com/mcp/sse" \
--timeout 10 --header API-Key "$API_KEY"
MCP OAuth
HTTP and SSE MCP servers that require OAuth can use Crush’s built-in
authorization-code flow instead of a static Authorization header. Set
"oauth": true to enable it:
{
"mcp": {
"linear": {
"type": "http",
"url": "https://mcp.linear.app/mcp",
"oauth": true
}
}
}
Pre-registered clients
Some servers (GitHub, Slack) don’t support dynamic client registration. For those, register an OAuth app with the provider and supply the credentials directly. All values support shell expansion:
{
"mcp": {
"github": {
"type": "http",
"url": "https://api.githubcopilot.com/mcp/",
"oauth": true,
"oauth_client_id": "Iv1.abc123def456",
"oauth_client_secret": "$GITHUB_MCP_SECRET",
"oauth_callback_port": 40704
}
}
}
When oauth_client_id is set, Crush skips dynamic client registration
and authenticates as the specified client. When omitted, Crush attempts
dynamic registration automatically (works with Linear, Notion, and other
servers that support RFC 7591).
Hooks
Crush has preliminary support for hooks. For details, see the hook guide.
Sharing a workspace across clients
When Crush is run against a shared backend (for example two TUIs talking to
the same crush serve), clients are grouped into workspaces keyed by
their resolved --cwd. Two clients with the same --cwd join the same
underlying workspace, so they share the session list, message history,
permission queue, LSP, and MCP state.
Joining is implicit: pointing a second client at the same working directory attaches it to the existing workspace. Each new invocation, however, starts in its own fresh session by default. To pick up the conversation another client already has open, use the session manager (the session picker) and select it. Sessions surface two signals there:
IsBusyis set while an agent turn is in flight for that session.AttachedClientsreports how many clients are currently viewing it.
A non-zero AttachedClients (often combined with IsBusy) is the cue that a
session is “in progress” on another client and joining it will mirror that
view live.
The first client to create a workspace fixes its process-wide flags. In
particular, --yolo and --debug follow a first-wins rule: later
clients that arrive at the same --cwd with different values for those
flags do not change the running workspace. A debug log line is emitted
recording the mismatch, and the workspace keeps the flags it was created
with.
A workspace lives as long as at least one client has an SSE event stream
open against it. When the last stream disconnects, the workspace is torn
down. There is a short grace window right after POST /v1/workspaces so a
client that has created the workspace but not yet opened its event stream
does not get reaped before it can attach.
Global context files
Crush automatically includes two files for cross-project instructions. Think of these are personal additions to the system prompt.
~/.config/crush/CRUSH.md: Crush-specific rules that would confuse other agentic coding tools. If you only use Crush, this is the only one you need to edit.~/.config/AGENTS.md: generic instructions that other coding tools might read. Avoid referring to Crush-specific features or workflows here. You probably only care about this if you use multiple agentic coding tools and want to share instructions between them.
You can customize these paths with option global-context-path. Repeat the
command to add multiple paths:
# Load a single markdown file.
option global-context-path "~/path/to/custom/context/file.md"
# Recursively load all Markdown files in the folder.
option global-context-path "/full/path/to/folder/of/files/"
Ignoring Files
Crush respects .gitignore files by default, but you can also create a
.crushignore file to specify additional files and directories that Crush
should ignore. This is useful for excluding files that you want in version
control but don’t want Crush to consider when providing context.
The .crushignore file uses the same syntax as .gitignore and can be placed
in the root of your project or in subdirectories.
Allowing Tools
By default, Crush will ask you for permission before running tool calls. If you’d like, you can allow tools to be executed without prompting you for permissions. Use this with care.
permissions allow view ls grep edit mcp_context7_get-library-doc
Disabling Built-In Tools
You can also deny tools, hiding then from the agent entirely:
permissions deny bash sourcegraph
To disable tools from MCP servers, see the MCP config section.
You only live once
You can also skip all permission prompts completely by running Crush with the
--yolo flag. Be very, very careful with this feature.
Disabling Skills
You can prevent Crush from using certain skills entirely. Disabled skills are hidden from the agent, including builtin skills and skills discovered from disk.
option disable-skill crush-config
Agent Skills
Crush supports the Agent Skills open standard for
extending agent capabilities with reusable skill packages. Skills are folders
containing a SKILL.md file with instructions that Crush can discover and
activate on demand.
The global paths we looks for skills are:
$CRUSH_SKILLS_DIR$XDG_CONFIG_HOME/agents/skillsor~/.config/agents/skills/$XDG_CONFIG_HOME/crush/skillsor~/.config/crush/skills/~/.agents/skills/~/.claude/skills/- On Windows, we also look at
%LOCALAPPDATA%\agents\skills\or%USERPROFILE%\AppData\Local\agents\skills\%LOCALAPPDATA%\crush\skills\or%USERPROFILE%\AppData\Local\crush\skills\
- Additional paths configured via
options.skills_paths
On top of that, we also load skills in your project from the following relative paths:
.agents/skills.crush/skills.claude/skills.cursor/skills
Or load directories of skills specifically in your config:
option skill-path "$HOME/squid-skills" "./other-skills"
You can get started with example skills from anthropics/skills:
# Unix
mkdir -p ~/.config/crush/skills
cd ~/.config/crush/skills
git clone https://github.com/anthropics/skills.git _temp
mv _temp/skills/* . && rm -rf _temp
# Windows (PowerShell)
mkdir -Force "$env:LOCALAPPDATA\crush\skills"
cd "$env:LOCALAPPDATA\crush\skills"
git clone https://github.com/anthropics/skills.git _temp
mv _temp/skills/* . ; rm -r -force _temp
User-Invocable Skills
Skills can be made invocable as commands from the commands palette
(ctrl+p). Add user-invocable: true to the skill’s YAML
frontmatter:
---
name: my-hot-skill
description: A skill that can be invoked as a command.
user-invocable: true
---
User-invocable skills appear in the commands palette with a user: or project: prefix:
- Skills from global directories show as
user:skill-name - Skills from project directories show as
project:skill-name
When invoked, the skill’s instructions are loaded into the conversation context.
To prevent the model from auto-triggering a skill (while still allowing user invocation), add disable-model-invocation: true:
---
name: my-skill
description: Only invocable by users, not the model.
user-invocable: true
disable-model-invocation: true
---
Skills with disable-model-invocation won’t appear in the model’s available skills list but can still be invoked manually by users.
Desktop notifications
Crush sends desktop notifications when a tool call requires permission and when the agent finishes its turn. They’re only sent when the terminal window isn’t focused and your terminal supports reporting the focus state.
# Choose auto, native, osc, bell, or disabled.
option notifications disabled
auto uses native notifications locally and OSC notifications over SSH when
supported.
Initialization
When you initialize a project, Crush analyzes your codebase and creates
a context file that helps it work more effectively in future sessions. By
default, this file is named AGENTS.md, but you can customize the name and
location with the initialize-as option:
# crushrc
option initialize-as AGENTS.md
This is useful if you prefer a different naming convention or want to place the
file in a specific directory (e.g., CRUSH.md or docs/LLMs.md). Crush will
fill the file with project-specific context like build commands, code patterns,
and conventions it discovered during initialization.
このREADMEは一部を省略しています。全文はGitHubにあります。 原文を読む ↗