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dsh-project-mcp-bridge

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Per-project MCP loading for DeepSeek Harness: drop a .dsh/mcp.json into a project and its sessions get the MCP servers' tools automatically — with live config reload. Client bridge, not an MCP server.

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READMESource: main@c565d1f6

dsh-project-mcp-bridge

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TL;DR — Let each project declare its own MCP servers. Drop a .dsh/mcp.json into a project root; every session of that project then has those servers' tools (mcp__<serverName>__<toolName>), and editing the file takes effect live — no new session, no restart.

It is a client bridge (consumes MCP servers). Not an MCP server, not an official DeepSeek package.

30-second demo

// MyProject/.dsh/mcp.json
{
  "mcpServers": {
    "github": {
      "command": "npx",
      "args": ["-y", "@modelcontextprotocol/server-github"],
      "env": { "GITHUB_TOKEN": "${GITHUB_TOKEN}" }
    }
  }
}

Then, in any session opened in MyProject, the model can directly call mcp__github__create_issue etc. — the same mcpServers JSON shape used by Claude Code, Cursor and VS Code. Save the file again later and running sessions pick the change up within ~1 s.

Install once: dsh plugin --profile web add dsh-project-mcp-bridge (one restart), or see Installation for the restart-free dev path.


How it works

agent created (agent/created)
  -> read <session cwd>/.dsh/mcp.json
  -> for each server entry:
       - if a preset/host MCP row already provides the same serverName
         and the entry has no "override": true  -> skip (log explains why)
       - else one-shot SCHEMA SYNC: connect (stdio spawn or
         streamable-http) + list tools + register each as
         mcp__<serverName>__<rawName> into the AGENT scope layer only
         (project > preset > host) + close again
  -> no connection is kept: an idle session holds no child process

first call to a server's tool (execute)
  -> the agent's controller checks its per-server connection
  -> absent -> LAZY CONNECT ("connecting..." is logged; this is the
     first-call latency) -> call
  -> every call re-arms a per-connection idle timer (default 5 min);
     on fire the connection closes and the child process is released;
     the next call reconnects transparently
  -> if the connection dies (onclose), this agent drops it and the next
     call reconnects — no broadcast, no shared state

Connections are per agent, never pooled: N sessions calling the same server run N independent processes (isolation over sharing). Sessions that never call a server hold no process at all.

Installation

The package is a profile bundle: install with the dsh CLI, no manual patching.

dsh plugin --profile web add dsh-project-mcp-bridge

dsh plugin runs pnpm in the profile directory, then reconciles dsh.profile.bundles: the package declares dsh.bundle.patch, so it joins the profile's bundle layers automatically. The bundle's own cordis.patch.yml supplies the plugin row — nothing to add by hand.

Restart dsh web once after installing: bundle layers are composed at startup (only the user patch layer and settings.yaml are hot-reloaded). After that, .dsh/mcp.json changes are hot (see Config hot-reload).

Restart-free dev path (hot install)

If you iterate on this plugin itself and want changes live without restarts, install it as a user patch row instead of a bundle. The row references the package by name (resolved from the profile's node_modules), so it is portable and hot:

cd ~/.dsh/profiles/web
pnpm add dsh-project-mcp-bridge          # package into node_modules (no reconcile)

Then append to ~/.dsh/profiles/web/cordis.patch.yml:

- insert:
    - id: dsh-project-mcp-bridge
      name: 'dsh-project-mcp-bridge'     # package name, NOT a file:// path

The user patch layer is hot-reloaded (~4 s), so the row activates without a restart. Note: do NOT use dsh plugin add for this path — it would also register the bundle and duplicate the row after the next restart. Prefer the bundle install for normal use; this path is for local iteration.

Project config

Create .dsh/mcp.json at the project root (the file's presence is the opt-in; sessions of projects without it are untouched):

{
  "mcpServers": {
    "github": {
      "command": "npx",
      "args": ["-y", "@modelcontextprotocol/server-github"],
      "env": { "GITHUB_TOKEN": "${GITHUB_TOKEN}" },
      "idleTimeoutMs": 300000
    },
    "local-api": {
      "url": "http://localhost:3000/mcp",
      "headers": { "Authorization": "Bearer ${MCP_TOKEN}" },
      "override": true
    }
  }
}

Fields (same names as dsh-mcp-client)

Field Transport Required Meaning
transport both inferred: command present → stdio; url present → streamable-http; exactly one of the two
serverName both yes tool namespace (the JSON key); [A-Za-z0-9_-]{1,32}
command stdio yes executable to spawn
args stdio no arguments
env stdio no extra environment, merged over the scrubbed parent env
cwd stdio no child working directory (relative paths resolve against the project root)
url http yes MCP server URL
headers http no extra headers
toolCallTimeoutMs both no per-call timeout (default 60000)
idleTimeoutMs both no idle disconnect after this many ms without a call (default 300000 = 5 min; 0 = never disconnect)
override both no force this project connection even if a preset/host row already provides the same serverName (default false)

${NAME} placeholders in env/headers values are expanded from the host process environment.

Conflict semantics (project vs. preset/host MCP)

  • Tools register into the agent scope layer; the layered registry shadows same-named tools from the preset layer and the global layer — visibility priority is project > preset > host.
  • A serverName already provided by a preset/host row is skipped by default (one live connection per server). Set "override": true to force the project connection instead (double connection accepted, project tools win).
  • Override does not disable the upper layers. The project connection is added on top: the upper (host/preset) connections stay alive, and the agent-layer copy shadows same-named tools (layered registry), so the model actually calls the project connection. The tool names carry no origin marker — the plugin logs ... shadows upper-layer registration(s); upper connections stay alive when an override registers over existing upper registrations; process count is the other way to verify.
  • Different serverNames or different tool names coexist freely.
  • Note — two bridges, two philosophies: between official dsh-mcp-client instances (host rows, preset rows), a duplicate serverName is process-wide unique and fails the mount ("pick a unique serverName") — that bridge prefers fail-loud over silent shadowing. This plugin, when its project config collides with an upper layer, skips instead, so the project session still starts. In practice: project vs host/preset duplicates → skipped (this plugin); preset vs host duplicates among dsh-mcp-client rows → rename one.

Config hot-reload

Saving .dsh/mcp.json re-resolves the config for every running session of that project and fully rebuilds each session's project MCP surface:

  • added server → schema sync + register tools (running sessions gain them)
  • removed server → unregister tools + close its connection
  • changed server → full rebuild — unregister everything, close all connections, re-read, re-register. No fingerprint diffing: a change simply rebuilds. Same serverName keeps the same public tool names, so recorded tool calls stay replayable
  • deleted config → all project MCP tools unload

No new session needed. The file is polled (fs.watchFile, ~500 ms) with a 300 ms debounce, fanned out to every live session of the project. An in-flight tool call on a server being reconfigured may be interrupted by the rebuild.

Connection death (v4): if a server's process dies, the SDK's onclose fires and that agent drops its dead connection; the next call reconnects automatically (lazy) — no restart, no new session, no config change. Each agent is self-managed: nothing is broadcast, so a death in one session never disturbs another. A reconnect that fails surfaces as a tool error; the next call retries. Note: after a reconnect, the server's internal dependencies (e.g. a browser connection) may take a few more seconds to become ready — calls in that window can fail with the server's own error; this is server behavior, not a bridge defect.

Idle disconnect: connections close after idleTimeoutMs without a call (default 5 min; per-server configurable, 0 = never). An idle session holds no child process; the next call reconnects transparently (only latency).

Lazy connect caveat: tool schemas only exist on the server, so session creation performs a brief one-shot schema sync per accepted server (connect

  • list tools + register + close). Sessions that never call a server pay only this brief spawn; no connection is kept afterwards. If the schema sync fails (server down at creation), that server's tools are not registered until the next config change or a new session.

Environment scrubbing (privilege reduction)

MCP children are spawned with the official scrubbedParentEnv(): the ambient environment minus credential-shaped names (anything matching KEY|PASSWORD|SECRET|TOKEN) and minus stale DSH_* names. PATH, HOME and locale survive, so children run normally; secrets that merely happen to be in the host environment are NOT inherited. Only the entry's explicit env is added back. This is not a sandbox: a malicious config can still execute code as your user and read your files (see Trust model).

Trust model ⚠️

.dsh/mcp.json contains executable content — the same trust model as package.json scripts. A git clone can bring its own .dsh/mcp.json (just as it can bring a malicious postinstall), and opening the project will run it when a session is created. Only open projects from sources you trust. The plugin reduces blast radius (scrubbed env, auditable logs) but does not and cannot make untrusted projects safe.

Logging

  • ctx.logger (host stdout — not persisted by this deployment)
  • ~/.dsh/logs/dsh-project-mcp-bridge/dsh-project-mcp-bridge.log (append-only; every step — config read, skip reason, connect, tool registration, close — is recorded with a timestamp and the project path)

Limitations

  • Resources and prompts from MCP servers are not bridged (tools only).
  • Connections are per agent, never pooled: N sessions calling the same server = N processes. Heavy servers (e.g. chrome-devtools) cost one process per active session — the idle timeout keeps unused ones short- lived. Session creation also pays one brief schema-sync spawn per server.
  • Streaming/task-based MCP execution is not supported (call only).

Further reading

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