Exir MCP Server

Exir MCP Server

A multi-tenant MCP gateway that connects AI agents to the Exir CRM API, enabling secure, permissioned access to customers, leads, tasks, invoices, and more through natural language.

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Exir MCP Server

A multi-tenant Model Context Protocol gateway that sits between MCP hosts (Claude, ChatGPT, or any other MCP-compatible agent) and the Exir CRM API (Perfex CRM under the hood).

                    ┌──────────────────────┐
                    │   ChatGPT / Agent     │
                    │ Claude / Other Host   │
                    └──────────┬────────────┘
                               │
                         MCP / HTTPS
                               │
                               ▼
              ┌────────────────────────────────┐
              │        Exir MCP Server          │
              │                                 │
              │ OAuth 2.1 / OIDC                │
              │ Tenant Resolver                 │
              │ Permission Engine               │
              │ Tool Registry                   │
              │ Audit Logger                    │
              │ Rate Limiter                    │
              │ Input Validation                │
              └───────────────┬─────────────────┘
                               │
                        Internal API
                               │
                               ▼
              ┌────────────────────────────────┐
              │          Exir CRM API           │
              │                                 │
              │ Customers / Leads / Sales       │
              │ Tasks / Projects / Tickets      │
              │ Invoices / Contracts / ...      │
              └───────────────┬─────────────────┘
                               │
                               ▼
                    ┌──────────────────┐
                    │ Customer Tenant   │
                    │ Data / Database   │
                    └──────────────────┘

How a request flows

  1. Transport — an MCP host sends a POST /mcp (Streamable HTTP) request with a Bearer access token.
  2. OAuth 2.1 / OIDC (src/auth/oidc.ts) — the token's signature, issuer, audience and expiry are verified against the identity provider's JWKS. Unverified tokens never reach anything below this layer.
  3. Tenant Resolver (src/tenant/tenantResolver.ts) — the tenant id is read from a claim on the verified token and mapped to that tenant's Exir CRM connection (base URL + API key). Requests can never cross tenant boundaries.
  4. Rate Limiter (src/middleware/rateLimiter.ts) — requests are throttled per tenant so one noisy caller cannot starve another on a shared deployment.
  5. Tool Registry (src/tools/) — the MCP server for this request is built by wrapping every registered tool (src/mcp/server.ts) with:
    • Permission Engine (src/permissions/permissionEngine.ts) — checks the token's OAuth scopes against the tool's required scope.
    • Input Validation — every tool declares a zod schema; invalid input is rejected before it reaches the CRM.
    • Audit Logger (src/audit/auditLogger.ts) — every call (allowed, denied, success, or error) is recorded with tenant, subject, tool name, and outcome.
  6. Internal API (src/crm/perfexClient.ts) — a tenant-scoped HTTP client calls the real Exir CRM API (Perfex CRM's REST API, authtoken header auth) and returns the result back up the chain as the tool's output.

Project layout

src/
  auth/oidc.ts            OAuth 2.1 / OIDC bearer-token verification
  tenant/tenantResolver.ts Tenant lookup + per-tenant CRM connection details
  permissions/permissionEngine.ts  Scope-based authorization
  audit/auditLogger.ts     Structured audit trail for every tool call
  middleware/rateLimiter.ts Per-tenant rate limiting
  crm/perfexClient.ts      Internal API client to the Exir CRM API
  tools/                   Tool Registry + one file per CRM domain
    customers.ts leads.ts tasks.ts invoices.ts
  mcp/server.ts            Wires tools -> permissions -> validation -> audit -> CRM
  http/app.ts              Express app: /healthz, POST /mcp
  index.ts                 Process entrypoint
tests/                     Vitest unit tests (permission engine, tool registry)

Getting started

npm install
cp .env.example .env   # fill in OIDC_ISSUER, CRM_API_BASE_URL, CRM_API_KEY, ...
npm run dev             # ts-node/tsx dev server on :3333

Build & run for production:

npm run build
npm start

Or via Docker:

docker compose up --build

Run tests:

npm test

Adding a new tool

  1. Add a registry.register({...}) call in the relevant file under src/tools/ (or a new file for a new CRM domain), with a name, description, requiredScope, a zod inputSchema, and a handler(crm, input) that calls the PerfexClient.
  2. If it's a new file, wire it into buildToolRegistry() in src/tools/index.ts.
  3. Add a test in tests/tools.test.ts asserting the tool is registered and its schema rejects bad input.

No changes are needed anywhere else — permissioning, validation, and auditing are applied generically to every registered tool by src/mcp/server.ts.

Multi-tenancy

src/tenant/tenantResolver.ts ships with an EnvTenantStore dev fallback that resolves every tenant id to the single CRM connection in .env. For real multi-tenant deployments, implement the TenantStore interface against your tenant directory (Postgres, a config service, etc.) mapping tenant id -> { baseUrl, apiKey }, and pass it into tenantResolver(myStore) in src/http/app.ts.

Security notes

  • The tenant id is only ever trusted from a claim on a cryptographically verified access token, never from a client-supplied header, unless TENANT_HEADER_FALLBACK=true is explicitly set for trusted internal-network callers (e.g. local development).
  • Per-tenant CRM API keys are never logged (src/logger.ts redacts Authorization, *.apiKey, *.token).
  • Every tool call is validated twice: once by the MCP SDK against the tool's JSON schema, and again by zod.safeParse inside the handler, before any CRM API call is made.
  • The server runs statelessly (sessionIdGenerator: undefined): a new MCP server instance is created per HTTP request, scoped to that request's verified tenant and permissions, so there is no shared session state that could leak across tenants.

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