scv-server 0.3.0

Authoritative session and tool server for SCV
Documentation

SCV

SCV is a small, fast, extensible agent runtime for the terminal. It keeps the agent loop simple, puts model and tool authority in a separate server process, and provides a responsive Rust TUI for coding work.

Project status: SCV is an early implementation. Its protocol and configuration may change before 1.0. Run it in version-controlled workspaces and review every approval.

What works

  • Streaming OpenAI-compatible model calls and function tools
  • Built-in workspace-scoped read, atomic write, and bash tools
  • Native tool adapters for installed claude, codex, and pi agents
  • Progressive-disclosure Markdown skills from user and project directories
  • Configurable, bounded context selection and deterministic compaction
  • Server-enforced approvals, timeouts, output caps, and cancellation
  • A Unix-socket daemon with a Ratatui client, plus a stdio server for one-shot clients
  • Daemon-supervised chat channels (WeChat, Feishu/Lark) with persistent enablement and live health
  • Interactive TUI plus a headless scv exec mode
  • Linux and macOS support on ARM64 and x86-64

Install

SCV requires Rust 1.88 or newer and /bin/bash.

cargo install --locked --git https://github.com/PeiyuanQi/scv

Until release archives are published, build from source:

git clone https://github.com/PeiyuanQi/scv.git
cd scv
cargo build --release --locked

The package installs two binaries: scv and the standalone protocol entry point scv-server.

Update an installed SCV binary from crates.io with:

scv update

The registry index can be selected in ~/.scv/config.toml:

[update]
index_url = "https://mirrors.ustc.edu.cn/crates.io-index"

SCV_CARGO_INDEX_URL or scv update --index-url URL can override that value. SCV passes the URL to Cargo and does not handle registry credentials itself. When the systemd user daemon is active, the update command restarts it after the published binary is installed. A foreground scv run daemon requires an explicit restart. Connected TUI clients automatically reconnect and create a fresh session, without restoring server history or replaying submitted work.

To publish from a clean checkout, authenticate with cargo login and publish the workspace in dependency order (Cargo will refuse a package whose local dependencies are not already on crates.io):

All packages use version 0.3.0, with exact =0.3.0 pins for dependencies between workspace packages.

cargo publish --locked -p scv-core
cargo publish --locked -p scv-protocol
cargo publish --locked -p scv-client
cargo publish --locked -p scv-provider-openai
cargo publish --locked -p scv-tools
cargo publish --locked -p scv-channels
cargo publish --locked -p scv-server
cargo publish --locked -p scv-tui
cargo publish --locked -p scv-cli

The Unix-socket daemon is the normal JSONL backend for the TUI. Embedding clients and headless scv exec can use the separate stdio entry point:

scv server --stdio

The stdio protocol is intentionally local and one-session-per-connection.

Daemon and channels (WeChat, Feishu)

SCV has one long-running daemon. Run it attached to the terminal with scv run --workspace /path/to/workspace, or let the user service supervise the same process:

scv start --workspace /path/to/workspace
scv status
scv reload
scv restart --workspace /path/to/workspace
scv restart --when-idle   # into a newly installed release, once owner work is done
scv confirm "Publish the release?"   # ask the owner yes or no in chat; 0 only on yes
scv stop

scv restart --when-idle lets a chat-driven update finish its report before the daemon restarts, checks the new release, and rolls back to the previous binary if it does not come up; the new daemon announces the outcome in chat (see configuration). scv confirm [--timeout SECS] QUESTION asks the owner in the chat that started the work (or the [notify] owner chat) and waits; it exits 0 on yes, 1 on no or no answer in time (30 minutes by default), and 2 when it could not ask or the question never reached the owner (see channels).

Each SCV instance owns an explicit profile root. Use --scv-home PATH (or SCV_HOME) to run independent daemons with separate provider/model settings, sockets, credentials, skills, channel state, and systemd units:

scv --scv-home ~/.scv-work --model gpt-4.1-mini start --workspace /path/to/workspace
scv --scv-home ~/.scv-review --model o4-mini start --workspace /path/to/workspace
scv --scv-home ~/.scv-work status

--config PATH (or SCV_CONFIG) selects an additional explicit configuration file for that instance. The selected home and config are persisted into the instance's service unit, so a restart does not fall back to the default ~/.scv configuration. scv update restarts only the selected instance.

Daemon starts use the server's on-risk approval policy by default. Pass --approval-policy always or --approval-policy never before start or restart when that invocation needs a different explicit policy. SCV runs the daemon as the current user. If the user has no currently valid sudo authorization, an interactive start asks whether to continue with reduced capability; --allow-sudo asks sudo to authenticate the current user's existing policy first. This flag cannot grant sudoers membership or turn the daemon into a root service, and non-interactive starts without verified sudo authorization fail with an actionable error.

With no subcommand, scv starts the TUI and connects to the local server socket. It does not start a private server child. If the daemon is unavailable, SCV reports the socket path and suggests scv start or scv run. Model and provider overrides are sent when the TUI creates its session, so a running daemon can serve sessions using different models or providers without a daemon restart:

scv --model gpt-4.1-mini
scv --provider local --model llama3.1 --base-url http://localhost:11434/v1

Chat channels connect chat accounts to the daemon, all through scv channels <command> <channel>. Authenticate the WeChat ClawBot bridge once with scv channels login wechat. The QR login stores the bearer token at $SCV_HOME/credentials/wechat/<account>.json (normally under ~/.scv) with mode 0600; the token is never printed. Saved accounts are enabled by default and start under the daemon automatically. Login remains explicit and honors an account's saved opt-out.

Delivery state is bound to the account identity and API origin. Token rotation for the same known identity preserves state; changing identity or origin requires explicit logout first, including replacement of legacy credentials without known identity. Stop any old 0.1.9 standalone ClawBot process before enabling the supervised account; those processes do not honor the new locks.

scv channels run wechat --account NAME --workspace /path/to/workspace persistently enables the account in the running daemon and returns. The bot answers only its own WeChat account (the owner) by default and silently drops everyone else's messages; --senders anyone answers every sender, tool-free, and --senders owner restores the default. WeChat sessions are tool-free by default; add --remote-tools owner to give the bot's own WeChat account every SCV tool, including delegated Claude Code and Codex, with approvals granted automatically. That equals shell access from that WeChat account; --remote-tools none revokes it. scv channels stop wechat --account NAME persistently disables it while retaining credentials. scv channels status queries live daemon health of every channel account, including identity and last successful contact; saved credentials alone do not mean connected. scv channels logout wechat --account NAME requires a live daemon and joins the component before deleting credentials, delivery state, and the account's settings table.

Feishu (and Lark, its international edition) works the same way: scv channels login feishu shows a QR code; scanning it with the Feishu app creates a bot app in your own account, with no developer console or public URL, and records you as its owner. scv channels login feishu --app-id cli_... --owner-open-id ou_... instead adds an app you already have, reading its secret from a hidden prompt or stdin. The bot connects over Feishu's event long connection and, after any disconnection, catches up on messages sent in the meantime from chat history. In groups it answers only messages that mention it. scv channels run feishu --workspace PATH --remote-tools owner then grants the owner's direct chats every SCV tool, exactly as for WeChat.

Both channels take pictures, voice messages, videos, files, quoted messages, and (on Feishu) forwarded bundles. SCV downloads them privately under $SCV_HOME/state/media, shows images to the model when it accepts image input, and hands the owner's agent the file paths; on an account that answers anyone, other senders' files are limited to pictures. The model cannot listen to audio, so it gets a voice message's transcript when WeChat supplies one; without one (always on Feishu) the sender is asked to type instead. In the owner's chat the agent can send files and pictures back with its chat_attach tool. See channel media.

Account settings are [channels.<channel>.<account>] tables in config.toml, with enabled defaulting to true, remote_tools defaulting to "none", senders defaulting to "owner" ("anyone" answers every sender), and an optional workspace defaulting to the daemon workspace. scv channels run and stop edit only that table and keep your comments. The daemon reconciles accounts and settings every two seconds or immediately on scv reload, so a hand edit takes effect without a restart. To opt out while offline, set enabled = false before daemon startup. See the channels contract for permissions and recovery behavior.

Quick start

SCV's first provider speaks the OpenAI-compatible Responses API.

export OPENAI_API_KEY="your-key"
cd /path/to/your/project
# In a separate terminal, start `scv run --workspace /path/to/your/project`.
scv

Use another compatible model or endpoint:

scv --model gpt-4.1-mini --base-url https://api.openai.com/v1

Run one non-interactive prompt. Risky tools are denied unless --yes is present:

scv exec "Explain this repository"
scv exec --yes "Run the tests and fix the failure"

In the TUI, Enter sends, Ctrl+J inserts a newline, Esc cancels, Ctrl+O toggles the latest tool result, and /help lists the compact command set.

Configuration

Everything an SCV instance keeps is under ~/.scv (or $SCV_HOME), and the one file you edit is config.toml:

~/.scv/config.toml     settings: provider and key, limits, agents, chat accounts
~/.scv/credentials/    channel sign-ins SCV writes
~/.scv/agents/<name>/  private homes of delegated agents, with their sign-ins
~/.scv/skills/         your skills
~/.scv/state/          runtime state: socket, delegated runs, delivery state

scv config show lists every path, the settings in effect with where each came from, and whether each credential is in place, without showing any secret; scv config path prints the file's path. Copy config.example.toml there to get started. A workspace may add .scv/config.toml, but project configuration cannot redirect provider credentials or replace native-agent executables.

[provider]
model = "gpt-4.1-mini"
base_url = "https://api.openai.com/v1"
api_key = "sk-your-key"
api_key_env = "OPENAI_API_KEY" # optional fallback

[context]
max_tokens = 128000
reserve_output_tokens = 8192

[tools]
approval_policy = "on-risk"
command_timeout_seconds = 600

[agents.codex]
command = "codex"
args = ["exec"]

Precedence is CLI, environment, explicit SCV_CONFIG, project configuration, user configuration, then defaults. Unknown keys fail startup. See docs/configuration.md for the complete schema and trust rules.

Extending SCV

The built-in provider uses the OpenAI Responses API at /responses, with streaming text and function-call events. The core exposes small Rust traits for providers, tools, context policies, approval gates, and event sinks. Registering a new Tool does not require a change to the agent loop or TUI.

Skills use .scv/skills/<name>/SKILL.md in a project or ~/.scv/skills/<name>/SKILL.md for the user. Set SCV_HOME to relocate the whole instance. Only skill metadata enters the initial prompt; the model loads full instructions through the contained read_skill tool when needed. Tool-enabled sessions also list the Codex and Claude Code skills (.agents/skills, .claude/skills) of the workspace and its child projects as <project>:<name>, so SCV knows to delegate that work to an agent running in the project.

web_fetch reads public web pages and APIs as text, without approval for HTTPS documentation hosts in web.auto_approve_domains and with approval for anything else, and never reaches loopback or private addresses by default. Web search comes from the provider's hosted Responses tool (web.search = "provider") or a SearXNG or Brave Search backend; see configuration.

The built-in agent_claude, agent_codex, agent_grok, agent_dsh, and agent_pi tools launch Claude Code, Codex, Grok Build, DeepSeek Harness, and pi directly, without shell interpolation; a session offers only those installed. They are optional, approval-gated, cancellable subprocess adapters and share the same output and timeout limits as other process tools. A call may set cwd to a project directory inside the workspace, where the agent loads that project's AGENTS.md/CLAUDE.md and skills, and may raise timeout_seconds up to tools.max_timeout_seconds (default 14400) for long work such as landing a change. Each adapter receives an instance-private HOME, SCV_HOME, XDG directories, and the agent's own state directory (CODEX_HOME, GROK_HOME, DSH_HOME, PI_CODING_AGENT_DIR) under $SCV_HOME/agents/<name>, and inherits no API-key variables. SCV never reuses or modifies the user's normal ~/.claude, ~/.codex, ~/.grok, ~/.dsh, or ~/.pi configuration. Sign the agents in for SCV once with scv agents login <name>, copy a custom-provider Codex setup with scv agents import codex, point pi at SCV's own provider with scv agents import pi --from-scv-provider (or any OpenAI-compatible endpoint with scv agents login pi --openai-compatible), and check with scv agents status. agent_scv delegates to a nested SCV in its own private home, kept running for the conversation and driven over the SCV protocol; its tool approvals come back to the calling session. Give it SCV's own provider with scv agents import scv. A delegated run returns only its final reply, usage, and status, not the agent's event log. SCV records each run while it lasts: list them with scv agents ps, stop one with scv agents kill <handle>, and the daemon stops runs left behind by a killed SCV process within a minute. Claude Code, Codex, and pi keep multi-turn conversations: a result's session handle continues the same conversation, and scv agents gc clears old transcripts. Any agent call may set background: true to return a job handle at once while the agent keeps working; agent_wait and agent_status observe jobs, agent_cancel stops one, and when one finishes SCV reports it in a turn of its own (over WeChat or Feishu, as an unprompted message to the owner). The main agent is told to work this way by default: it answers quick questions itself and hands real work to background agents, so it stays available to chat. A session runs at most agent.max_background (default 4) jobs, and closing it cancels them. agent.prefer and [agents.<name>] use_for, model, and effort steer which agent it picks and which model and effort to pass. Claude Code, Codex, Grok Build, and DeepSeek Harness run over the Agent Client Protocol when its server is installed (claude-agent-acp and codex-acp from npm @agentclientprotocol/*, or the built-in grok agent stdio and dsh --profile acp): one server per conversation whose permission requests come back to the calling session for approval and whose progress streams as it works. [agents.<name>] transport = "resume" keeps one process per turn.

Architecture

SCV is a Cargo workspace with deliberately narrow packages:

  • scv-core: loop and extension traits;
  • scv-protocol: versioned wire types with no runtime policy;
  • scv-client: the instance layout (every path under the SCV home, the daemon socket, and the service unit name) and the daemon control helper;
  • scv-provider-openai: streaming provider transport;
  • scv-tools: filesystem, process, skill, and nested-agent tools, and the credential files of the agent CLIs SCV delegates to;
  • scv-channels: the chat channels: the bridge they share (durable claims, delivery state, and remote sessions), WeChat's iLink login, polling, and sending (feature wechat), and Feishu/Lark's QR app registration, event long connection with catch-up, and sending (feature feishu);
  • scv-server: configuration, sessions, permissions, component supervision, and protocol dispatch;
  • scv-tui: terminal client and headless protocol client.

The TUI connects to the local Unix-socket daemon; scv-server --stdio exposes the same server library to one-shot local clients. Dependencies flow from server to the channels (scv-channels) to client to protocol; the TUI depends on client, not server. All long-running components must be supervised by the server. Start with the architecture, then see the protocol, context, tools, TUI, and security model.

Security

SCV is not an OS sandbox. bash and nested agents run with your user permissions and inherited environment after approval. File tools reject absolute paths, parent traversal, and symlink escapes, but an approved process can access anything your account can access. Use a container or operating-system sandbox for untrusted repositories. See SECURITY.md and the full security model.

Development

Read AGENTS.md before using a coding agent in this repository. Use a sibling git worktree for parallel or unrelated work. Keep final-state design documents in docs/ aligned with behavior changes, including cross-cutting agent-loop, protocol, security, or architecture work. Reasonable redesign and cleanup are part of feature work when they leave the project clearer, smaller, safer, or more efficient. Prefer one complete end-to-end implementation of the requested outcome, including tests and documentation, over artificial vertical slices. Commit or push only at an explicit delivery boundary.

cargo fmt --check
cargo clippy --workspace --all-targets --locked -- -D warnings
cargo test --workspace --locked
cargo deny check advisories bans licenses sources
cargo build --release --locked
git diff --check

Tests use scripted providers and fake executables; they do not require a live API key. The test and performance contract is in docs/quality.md, with measured results and an honest feature comparison in the v0.1 evaluation. Contributions are welcome—read CONTRIBUTING.md first.

License

Licensed under the Apache License 2.0.