An MCP (Model Context Protocol) server exposing
documents.js's document-conversion,.odb, metadata, and font tooling as MCP tools, so an MCP-speaking agent can convert, inspect, and edit docx/pptx/odt/odp/ods/odg/odf/pdf/odb/xlsx/markdown documents without writing TypeScript againstdocuments.jsdirectly.
document-mcp adds no conversion or editing logic of its own — it is a dispatch layer over documents.js's existing conversion functions, DocumentConverter port, and .odb/PDF readers, wired up as MCP tools served over stdio. document-cli is the sibling frontend over the identical documents.js library — a terminal CLI/TUI rather than an MCP server — so the two are independent consumers of one shared implementation and can expose different subsets of it. A convert_document call's fidelity — which (source, targetFormat) pairs round-trip losslessly, which are a best-effort reconstruction, and why — is exactly what documents.js's own Fidelity section documents, table included; it is not restated here.
graph TD
schema("document-schema.js")
ooxml("ooxml.js")
odf("odf.js")
pdfcodec("pdf-codec")
mdcodec("markdown-codec")
bytecodec("byte-codec")
documents("documents.js")
mcp("document-mcp")
cli("document-cli")
schema --> ooxml
schema --> odf
schema --> pdfcodec
schema --> mdcodec
schema --> documents
ooxml --> documents
odf --> documents
pdfcodec --> documents
mdcodec --> documents
bytecodec --> pdfcodec
bytecodec --> documents
documents --> mcp
pdfcodec --> mcp
documents --> cli
odf --> cli
pdfcodec --> cli
click schema "https://github.com/ExaDev/document-schema.js" "document-schema.js"
click ooxml "https://github.com/ExaDev/ooxml.js" "ooxml.js"
click odf "https://github.com/ExaDev/odf.js" "odf.js"
click pdfcodec "https://github.com/ExaDev/pdf-codec" "pdf-codec"
click mdcodec "https://github.com/ExaDev/markdown-codec" "markdown-codec"
click bytecodec "https://github.com/ExaDev/byte-codec" "byte-codec"
click documents "https://github.com/ExaDev/documents.js" "documents.js"
click mcp "https://github.com/ExaDev/document-mcp" "document-mcp"
click cli "https://github.com/ExaDev/document-cli" "document-cli"
style mcp fill:#f9a825,stroke:#333,stroke-width:3px
Run the server directly — no install step needed:
npx document-mcpThe server uses stdio transport (runs as a local process). This is supported by Claude Code, Claude Desktop, Codex CLI, Codex Desktop, and OpenCode directly. Claude Web (claude.ai), Claude Mobile, and ChatGPT require a remote HTTP MCP server — see Remote transport below.
| Client | Transport | Direct support |
|---|---|---|
| Claude Code (CLI) | stdio | ✅ |
| Claude Code (plugin) | stdio | ✅ |
| Claude Desktop | stdio | ✅ |
| Codex CLI | stdio | ✅ |
| Codex Desktop | stdio | ✅ |
| OpenCode | stdio | ✅ |
| Claude Team/Enterprise (org) | stdio (per-machine) | ✅ via managed settings |
| Claude Web (claude.ai) | HTTP/SSE only | ❌ needs remote transport |
| Claude Mobile (iOS/Android) | HTTP/SSE only | ❌ needs remote transport |
| ChatGPT (web/desktop) | HTTP only | ❌ needs remote transport |
One-liner (adds the MCP server directly):
claude mcp add --transport stdio document-mcp -- npx -y document-mcpOr install as a Claude Code plugin (this repo is a plugin marketplace — includes auto-update on new releases):
From the terminal:
claude plugin marketplace add ExaDev/document-mcp
claude plugin install document-mcp@exadevOr from within a running Claude Code session:
/plugin marketplace add ExaDev/document-mcp
/plugin install document-mcp@exadev
Run /reload-plugins to activate in an already-running session. In Claude Desktop or on claude.ai: Customize → Plugins → Browse plugins, search for document-mcp, and install.
codex mcp add document-mcp -- npx -y document-mcpOr via the Codex Desktop app: Settings → MCP Servers → + Add.
Or add to ~/.codex/config.toml manually:
[mcp_servers.document-mcp]
command = "npx"
args = ["-y", "document-mcp"]Add to opencode.json:
{
"mcp": {
"document-mcp": {
"type": "local",
"command": ["npx", "-y", "document-mcp"]
}
}
}Add to the mcpServers block in Claude Desktop's config file (~/Library/Application Support/Claude/claude_desktop_config.json on macOS):
{
"mcpServers": {
"document-mcp": {
"command": "npx",
"args": ["-y", "document-mcp"]
}
}
}Or, for local development against a checkout of this repository rather than the published package, point command at the built binary directly:
{
"mcpServers": {
"document-mcp": {
"command": "node",
"args": ["/absolute/path/to/document-mcp/dist/bin.js"]
}
}
}Organization admins can deploy MCP server configurations centrally via server-managed settings (Admin Settings → Claude Code → Managed settings in the claude.ai console). A managed-settings.json entry for document-mcp enforces the connection across all Claude Code users in the org — no per-user setup needed. Admins can also allow/block specific MCP servers via allowedMcpServers/blockedMcpServers in the same file.
Claude Web, Claude Mobile, and ChatGPT only accept remote (HTTP/SSE) MCP servers — a local stdio process is not reachable from a browser or phone. To use document-mcp on those platforms, run it behind an HTTP transport:
npx document-mcp --transport http --port 3000Then add the server URL (e.g., https://your-host:3000/mcp) as a connector in Claude Web (claude.ai/customize/connectors) or ChatGPT (Settings → Connectors → Advanced → Enable Developer Mode → Create). Use a tunnel (Cloudflare Tunnel, ngrok) or deploy to a server with TLS — both platforms require HTTPS.
Note: the
--transport httpflag is not yet implemented. The server currently only supports stdio. Track this as a future capability — the MCP SDK supports SSE/streamable-http transports, so adding it is a matter of wiring the existing server to an HTTP listener.
Requires Node.js >=20 and pnpm 11.6.0 (pinned via packageManager in package.json).
pnpm install
pnpm build # turbo -> tsdown -> dist/ (ESM + CJS + .d.ts)
pnpm typecheck # turbo -> tsc --noEmit
pnpm lint # turbo -> eslint . --fix --cache --max-warnings 0
pnpm test # turbo -> vitest run --project unit
pnpm test:workers # turbo -> vitest under the real Cloudflare Workers runtime (workerd) via @cloudflare/vitest-pool-workers, driving createServer() through an in-memory JSON-RPC pair
pnpm test:smoke # turbo -> tsdown then vitest --project smoke -- spawns dist/bin.js as a real subprocess driven over genuine MCP stdioEvery tool that takes or produces document bytes goes through the same two hybrid shapes, documented once here rather than repeated per tool below.
Input (DocumentInput) is a union: either a filesystem path (the format is inferred from the file extension — docx, pptx, xlsx, odt, odp, ods, odg, odf, md/markdown, pdf), or inline bytesBase64 plus an explicit format (required, since inline bytes carry no filename to infer one from). Each ODF/OOXML template and macro-enabled variant also reads as its base format: .ott/.ots/.otp/.otg/.otf as odt/ods/odp/odg/odf, and .dotx/.potx/.xltx (templates) or .docm/.xlsm/.pptm (macro-enabled) as their OOXML base — a template is the same package with a -template mimetype, and a macro-enabled file carries a vbaProject part this library reads past without executing or re-emitting. .odb tools are the one exception: a .odb has no single DocumentFormat of its own (it is a database front end, not a document — tables, saved queries, and reports are three unrelated output shapes), so their source.path/source.bytesBase64 bytes are read directly with no format inference at all.
Output (DocumentOutput), on every tool that produces a document, is a single optional outputPath: supply it to have the tool write the result to that filesystem path (the response then reports { path, byteLength }); omit it to receive the bytes inline instead ({ bytesBase64, byteLength }, flagged large: true above 5 MB — advisory only, the bytes are never truncated or refused).
| Tool | Description |
|---|---|
convert_document |
Converts a document from one supported format to another via documents.js's DocumentConverter port — docx, pptx, xlsx, odt, odp, ods, odg, odf, markdown, and pdf. Not every (source, targetFormat) pair is direct; call list_document_conversions first. |
list_document_conversions |
Lists every (source, target) format pair convert_document actually supports. |
metadata_read |
Reads a document's title/author/subject/keywords/creator/producer/created-and-modified timestamps. Works across every supported format, including xlsx and odf. |
metadata_write |
Patches a document's title/author/subject/keywords in place. Does not convert format — source and target format must match (or both be pdf); odf (a standalone formula document) is rejected as either, since it has no write path back out at all. |
fonts |
Lists every source-embedded font face a docx/pptx/odt/odp/ods/odg document carries (family, weight/style, byte length). |
describe_font_file |
Reads a standalone .ttf/.otf font file and reports the family/bold/italic triple it declares about itself. |
docx_extras |
Reads a docx's own comments, footnotes, headers, footers, and numbering definitions — data the ContentDocument pivot cannot carry, so no other tool sees it. |
pdf_inspect |
Parses a PDF and reports a summary (page count, per-page size and item-kind histogram, metadata, embedded image formats), or the entire parsed LayoutDocument with full: true. |
odm_to_pdf |
Converts a .odm (ODF master document) to PDF. A .odm never carries its chapters' content inline, so each chapter resolves via a caller-supplied chapters href-to-document map and/or a chaptersDir searched by basename. |
from_package |
Rebuilds real document bytes in a target format from a DocumentPackage previously serialised to JSON (e.g. by a conversion tool's own onDocument/package-dump step). |
odb_tables |
Lists every table an embedded .odb database declares — column names, types, and row data — across every storage tier documents.js supports (HSQLDB TEXT/CACHED/BINARY, Firebird gbak backups). |
odb_forms |
Lists every form an .odb database declares, with each form's own data source and field-bound controls. |
odb_reports |
Lists every report an .odb database declares, with each report's own data-source command, band/group structure, and rpt: formula expressions. |
odb_query |
Runs a bounded single-table SELECT over an embedded .odb database's extracted tables — given directly as SQL or by naming a saved query. No database engine involved; an unsupported construct is reported as a tool error naming it, never silently ignored. |
odb_to_csv |
Extracts exactly one named table from an embedded .odb database as CSV bytes. The table name is required whenever the database declares more than one table. |
odb_to_xlsx |
Extracts every table an embedded .odb database declares into one xlsx workbook, one sheet per table. |
odb_render_report |
Resolves one of an .odb database's own reports — its data-bound command run through the bounded SQL engine, its rpt: formulas evaluated, its bands laid out — and renders the result to docx, odt, or pdf. |
- documents.js — the library this server exposes.
- document-cli — the sibling CLI/TUI over the same library, whose toolchain this repository's scaffold mirrors.
- Model Context Protocol — the protocol this server implements, via
@modelcontextprotocol/server.
- Runtime dependencies are
documents.js+@modelcontextprotocol/server+zodonly;pdf-codecandodf.jsare devDependencies (test-support only). Every runtime reach into either —ProvidedFont/FontSubstitution/describeFontFace/theWinAnsisubstitution shape — goes throughdocuments.js's own re-exports, so a published install pulls in no directpdf-codec/odf.jsdependency.odf.jssurvives indevDependenciessolely becausesrc/test-support/odm-fixture.tsandsrc/test-support/embedded-font-fixture.tsbuild real ODF package fixtures from its low-level XML primitives (zipPackage/el/rootElement), andsrc/test-support/is excluded from thetsdownbuild — onlysrc/index.tsandsrc/bin.tsare entry points — so neither fixture module ever ships indist/.
MIT