Patch release. Two changes to cmd/server, both motivated by running the service behind a unix socket on a reverse-proxied host: the binary now inherits a systemd-passed listener when present, and the healthz handler moves under the same path prefix as the MCP endpoint so a single proxy location forwards both. Bundled with two repository-hygiene changes. cmd/server: - chooseListener (new) — picks a listener at startup. When systemd has passed a LISTEN_FDS fd via github.com/coreos/go-systemd/v22/activation, the binary uses the inherited listener; otherwise it binds TCP at -addr as before. The startup log records "mode":"socket-activated" or "mode":"tcp" so operators can confirm which path is live. Same binary works for local dev and for systemd-managed deployment with no flags or env vars to toggle. - Health probe path is now derived from -path. With the default -path /mcp the probe is served at /mcp/healthz; the legacy /healthz route is no longer registered. A reverse proxy can now route the whole MCP service through a single "/mcp" location prefix instead of maintaining a second forward for /healthz. Consumers of v0.1.0 that hit /healthz directly must switch to /mcp/healthz. Dependencies: - github.com/coreos/go-systemd/v22 v22.7.0 — listener inheritance via LISTEN_FDS. Loaded only by cmd/server. Docs: - README.md "Deployment" section rewritten to be hosting-agnostic. The v0.1.0 draft prescribed a specific systemd-on-HestiaCP layout; the new text points at the Dockerfile and at systemd socket activation as a supported binary mode without dictating one operator's setup. Adds an explicit note that any reverse proxy must disable response buffering on the /mcp location — streamable MCP delivers tool results via Server-Sent Events and default proxy buffering breaks the stream. Repository hygiene: - /deploy/ is now .gitignored. Local deployment artefacts (systemd units, reverse-proxy templates, per-release scripts) are operator-specific by design and live outside the public repository. The Dockerfile at the module root remains the only portable, public-facing build artefact. No tool surface, no validation rules, no index schema, and no behaviour of the indexer changed. Operators upgrading from v0.1.0 must update their health-probe URL to /mcp/healthz (or whichever path matches their -path flag); MCP-protocol clients (Claude, Cursor, Zed, etc.) need no changes.
203 lines
8.1 KiB
Markdown
203 lines
8.1 KiB
Markdown
# einherjar/mcp
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[](https://code.nochebuena.dev/einherjar/mcp)
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[](LICENSE)
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[](https://go.dev)
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> Every warrior who knew the sagas had a skald nearby. This is yours.
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`code.nochebuena.dev/einherjar/mcp` is the Einherjar **Model Context Protocol** server.
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It is a remote, streamable-HTTP service that teaches AI assistants about every other
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module of the framework: which package exposes which type, what each module promises
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via its compliance tests, the canonical wiring shape for a service, and whether a
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snippet of Go follows the conventions. Anyone who works in an Einherjar codebase can
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point their AI tools at one URL and get answers grounded in the actual source.
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---
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## What Is Einherjar?
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In Norse mythology, the Einherjar are the chosen warriors of Valhalla — selected not
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for glory, but to be ready for what comes after. They train. They prepare. They build
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the capability that others will rely on.
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This framework is named for that purpose. Every module is a piece of that preparation:
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built carefully, documented for those who were never in the room, and designed to hold
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under pressure.
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---
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## Commands
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| Command | Purpose |
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| `cmd/server` | Streamable-HTTP MCP server. Embeds the framework index at build time and serves it over a single HTTP endpoint. |
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| `cmd/indexer` | Walks an Einherjar repository checkout and writes the framework index to `data/index.json`. |
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---
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## Tools
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The server exposes **ten** tools to MCP-aware clients (Claude desktop, Claude Code,
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Cursor, Zed, and anything else that speaks MCP):
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| Tool | Purpose |
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| `list_modules` | Enumerate every Einherjar module with its purpose and sub-packages |
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| `get_module` | Package doc, dependencies, sub-packages, key types, compliance counts; optional README |
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| `search_symbols` | Find a type, function, or interface by name, doc text, sub-package, or module |
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| `get_symbol` | Full signature, doc comment, and source location for one symbol |
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| `list_adrs` | List architectural decision records, optionally restricted to one module |
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| `get_adr` | Fetch a single ADR's markdown body |
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| `get_example` | Canonical usage snippet — pulled from module READMEs and from the synthetic `wire` conventions |
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| `get_compliance` | Interface assertions and structural test names from a module's `compliance_test.go` |
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| `get_changelog` | Full `CHANGELOG.md` markdown for one module |
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| `validate_snippet` | Pattern-match a Go snippet against framework conventions; returns findings with severity, hint, and line |
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`validate_snippet` ships **eight** wiring-convention rules at v0.1.0:
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`launcher.missing-run`, `launcher.no-components`, `launcher.run-error-discarded`,
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`logz.direct-env-read`, `web.server-not-appended`, `wire.hook-bad-signature`,
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`wire.hook-outside-beforestart`, and `wire.route-specific-after-param`.
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---
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## Build Flow
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```
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build time runtime
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┌──────────────────────────────┐ ┌──────────────────────────┐
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│ cmd/indexer ../ │ │ cmd/server │
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│ walks every Einherjar │ │ streamable-HTTP MCP │
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│ module, parses Go pkgs, │ ──▶ │ tools served from the │
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│ reads READMEs + ADRs │ │ embedded index.json │
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│ ⇒ data/index.json (embed) │ │ │
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└──────────────────────────────┘ └──────────────────────────┘
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```
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The indexer is a separate command. It produces `data/index.json` which the server
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embeds via `//go:embed`, so the deployed binary is self-contained and reads nothing
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from disk at runtime.
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---
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## Usage
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### Local run
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```bash
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# 1. Build the framework index from the sibling Einherjar modules
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go run ./cmd/indexer ..
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# 2. Build and run the server
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go build -o bin/einherjar-mcp ./cmd/server
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./bin/einherjar-mcp -addr :8080 -path /mcp
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```
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### Container
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```bash
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# Build the image from the einherjar repo root so the indexer can walk every
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# sibling module at image-build time.
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docker build -f mcp/Dockerfile -t einherjar-mcp:0.1.0 .
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docker run --rm -p 8080:8080 einherjar-mcp:0.1.0
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```
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### Environment variables
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| Variable | Default | Effect |
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| `EINHERJAR_MCP_ADDR` | `:8080` | Listen address for the MCP server |
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| `EINHERJAR_MCP_PATH` | `/mcp` | HTTP path served by the streamable-HTTP endpoint |
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---
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## Wiring Conventions (the synthetic `wire` module)
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The MCP server ships a 15th, **synthetic** module called `wire`. It is not an
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Einherjar module — it documents the canonical *application* shape that uses Einherjar
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modules. The content lives at `internal/index/builtins/README.md` and is embedded at
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build time. AI assistants discover it via `list_modules` and read it via `get_module`
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and `get_example` the same way they read any real module.
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The conventions captured: project layout (`cmd/<app>/main.go`, `internal/wire/*.go`,
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domain layout per feature), the fixed shape of `Run()`, the fixed shape of a
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`with<Feature>` hook (one `lc.BeforeStart` containing all construction and route
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registration), route-ordering rules for chi, the `authz` middleware helper, when to
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use `skipPublicPaths` vs `skipMethodPath`, and adapter patterns at the wire boundary.
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---
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## Dependency Rules
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```
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contracts (zero dependencies)
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↑
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core, web, auth, … (every framework module)
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↑
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mcp (reads framework source at index-time only)
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```
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`mcp` imports **nothing** from other Einherjar modules at compile time. The indexer
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parses the framework source on disk and writes a JSON blob; the server embeds that
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blob. This keeps `mcp` outside the framework dependency graph: it can index any
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version of einherjar without versioning itself in lock-step.
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---
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## Verification
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```bash
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cd mcp/
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go build ./... # must compile clean
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go vet ./... # no warnings
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go test ./... # all tests pass
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gofmt -l . # no output
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```
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All four commands must produce clean output before a PR will be reviewed.
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---
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## Deployment
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The server is a single self-contained static binary. There is no canonical
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hosting shape — pick whichever matches the rest of your infrastructure. Two
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patterns cover most cases:
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- **Container.** The [`Dockerfile`](Dockerfile) at the module root produces a
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distroless runtime image. Build from the einherjar repository root so the
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indexer can reach every sibling module at image-build time:
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```bash
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docker build -f mcp/Dockerfile -t einherjar-mcp:0.1.0 .
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docker run --rm -p 8080:8080 einherjar-mcp:0.1.0
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```
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- **Systemd / socket-activated binary.** The server detects an inherited
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listener via `github.com/coreos/go-systemd/v22/activation` and uses it when
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present, falling back to `-addr` TCP binding otherwise. Same binary works in
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both modes — no flag, no env var. Drop the binary into `/opt/<somewhere>/`
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and write a `.socket` + `.service` pair that matches your conventions.
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Whatever shape you pick, the public-facing reverse proxy must keep response
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buffering **off** on the `/mcp` location. Streamable MCP delivers tool results
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via Server-Sent Events; default nginx, Envoy, or Caddy buffering batches the
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stream and breaks Claude's session before the first event arrives. For nginx
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that means `proxy_buffering off; proxy_cache off; proxy_request_buffering off;
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chunked_transfer_encoding on;` plus an extended `proxy_read_timeout` for
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long-lived sessions.
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---
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## Architecture Decisions
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No ADRs at `v0.1.0`. The structural decisions in this release (synthetic `wire`
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module, `go:embed` of the index, build-time-not-runtime knowledge model, primitives
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not response shapes) are captured in the framework-wide memory and in this README.
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---
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> *A blade is sharper when the warrior knows its name.*
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> *This is what tells them.*
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