kuun993/dsh-loop-engine

项目介绍Project Overview

dsh-loop-engine 是一款 DSH 插件,用于在 dsh web 中切换代理循环引擎。它通过设置页的“Loop engine”下拉菜单,在内置进程内循环、Claude Code CLI、Codex CLI 与 Pi CLI 之间切换,token 流式输出直入会话日志。需要在 dsh 0.1.1-rc.2 上使用,并在主机端分别完成对应 CLI 的登录授权。注意:切换引擎需重启 dsh web 才会生效。

dsh-loop-engine is a DSH plugin that switches the agent loop engine in dsh web. A Settings dropdown picks the driver — in-process, Claude Code CLI, Codex CLI, or Pi CLI — without editing the main repo, streaming token deltas into the session log. Use it when you need to swap runtime engines per profile. Requires dsh 0.1.1-rc.2 and the chosen CLI authenticated on the host; engine changes only apply after restarting dsh web.

或使用命令行安装(适合开发者)Or use CLI install (for developers)

命令行安装CLI Install

dsh plugin --profile web add dsh-loop-engine

kuun993/dsh-loop-engine 加入你的 DSH 配置(web profile)即可启用。

READMEREADME

dsh-loop-engine

npm version

Switch the agent loop engine of dsh web the same way you switch a model: a "Loop engine" dropdown in Settings chooses which driver runs your agents — the built-in in-process loop, the Claude Code CLI, the Codex CLI, or the Pi CLI — without changing anything in the main repository.

What it does

  • Engine chosen from Settings, not from code. Pick in-process (default), claude-code, codex, or pi in the settings page; the choice is stored durably and survives profile edits.
  • Claude Code execution. The Claude Code CLI drives agents, with token streaming forwarded into the session log.
  • Codex execution. The driver spawns codex app-server and streams its token-level deltas into the session log, one turn per step.
  • Pi execution. The driver spawns pi --mode rpc and streams its message_update deltas into the session log, one stateless new_session + prompt per step.
  • Extensible. Adding an engine is one driver module plus one entry in the settings schema.
  • Zero main-repo changes. Installed purely as a profile dependency plus one bundle layer, with no edits to the main repository.

Install

dsh plugin --profile web add dsh-loop-engine

Restart dsh web, then open Settings → Loop engine.

dsh plugin add installs the package into the web profile and registers it as a bundle layer — the package declares dsh.bundle.patch, so no manual edit of cordis.patch.yml is needed. It is published on npm as dsh-loop-engine.

Requirements

  • dsh 0.1.1-rc.2 (or a build whose peer packages match).
  • For the Claude Code engine: the Claude Code CLI installed and logged in on the host.
  • For the Codex engine: authenticated either via codex login on the host or a CODEX_API_KEY environment entry.
  • For the Pi engine: authenticated the way pi expects (its own ~/.pi/agent/auth.json or the provider's API-key environment variable such as ANTHROPIC_API_KEY).
  • When the harness runs from a source checkout (e.g. pnpm dsh inside the deepseek-harness repository), the profile must resolve this plugin's harness peer packages to the monorepo sources via local file: shims (the profile's shims/ directory). A deployed install with one published node_modules needs no shims.

Switching engines rewrites a small managed block in cordis.patch.yml. Everything else you wrote in that file is preserved; only the plugin's own span changes.

Local development

To work against a checkout instead of the published package, add it with a file: reference (build it first — the package has no prepare script, so pnpm will not build it for you):

cd /path/to/dsh-loop-engine && pnpm install && pnpm run build
dsh plugin --profile web add file:/path/to/dsh-loop-engine

Or, from inside the checkout: dsh plugin --profile web add .

Usage

  1. Open Settings → Loop engine.
  2. Choose an engine:
    • In-process (default) — the built-in loop driver;
    • Claude Code CLI — the Claude Code driver;
    • Codex CLI — the OpenAI Codex driver;
    • Pi CLI — the Pi (earendil-works/pi) driver.
  3. Switching between these applies after restarting dsh web. To return to the default, pick In-process and restart again.
  4. To remove the plugin: dsh plugin --profile web remove dsh-loop-engine, then restart dsh web.

Codex engine details

The driver bypasses the @openai/codex-sdk (which only exposes whole-item output) and spawns codex app-server as a child process, speaking JSON-RPC over stdio. The app-server streams token-level deltas via item/agentMessage/delta and item/reasoning/summaryTextDelta, so thinking and replies paint progressively in the session — like the Claude Code engine.

  • Streaming. Reasoning deltas and agent-message deltas are forwarded live as assistant/chunk events; durable messages land at the correct step boundaries with usage attached on turn completion.
  • Skills. The Codex engine registers a skill provider that surfaces AGENTS.md (project root and ~/.codex/AGENTS.md) through the same dsh skill-injection seam as Claude skills.
  • No interactive tool approval. Permissions are the declarative sandboxMode + approvalPolicy pair resolved per query from the session's permission knobs (or pinned via the plugin's sandboxMode/approvalPolicy config). A session ask policy maps to on-request, whose CLI prompt degrades to a denial in the unattended dsh runtime.
  • No dsh subprocess sandbox integration. The driver spawns codex app-server itself; the dsh subprocess service (and its sandbox) does not wrap it.
  • No engine-specific slash commands are registered for Codex in this version.

Pi engine details

The driver spawns pi --mode rpc as a child process and speaks the strict-LF (\n) JSONL protocol over stdio — never a generic line reader, because Pi allows Unicode separators like U+2028 inside JSON strings. It runs one stateless session per dsh step: a fresh new_session, then a single prompt carrying the serialized session history. Like the Codex/Claude drivers, Pi owns its own system prompt natively, so the dsh system-prompt assembly is not run — the durable session log remains the sole source of model context.

  • Streaming. message_update deltas (text_delta / thinking_delta) are forwarded live as assistant/chunk events; tool calls and results land as tool/call + tool/result, and usage is attached on turn_end.
  • Sandboxed by the dsh subprocess seam. Pi has no permission system ("it runs with the permissions of the user"), so the driver routes the whole pi child through the dsh subprocess service and prunes --tools to the resolved sandbox stance — read-only (default), workspace-write, or danger-full-access (no pruning). An ask policy degrades to a read-only denial because Pi has no interactive approval callback.
  • Skills. The Pi engine registers a skill provider that surfaces AGENTS.md (project root and ~/.pi/AGENTS.md) through the same dsh skill-injection seam.
  • Model/provider. Provider and model are passed to the child via --provider / --model (a pinned thinkingLevel is appended as :<level>); when omitted, Pi's native settings own the model.

License

MIT

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