One repository, two modules (ADR 0069). `node-tools/` holds the runtime — its code, tests, package and the manifest of the module the controller composes a process for on every machine it is assigned to: a bundle of `src/main.js`, the interpreter as a package, a place for the node's credential, the loopback port the console declared, and leave to call every tool. Nothing about how it runs: which bundles to load, where the credential is and whose machine it is are the controller's to compose (WP2). The root module `mesh-tools` keeps the two images TypeScript bundles are compiled in and a module's own service may run in; it is no longer how tools reach a node. As node-tools, `serve` is also the console (ADR 0175 §6): the same process answers MCP on loopback for whoever is on the machine, through which the tools it serves can be called. A module's own runtime in a container keeps serving without a listener. The toolchain image now carries /app/runtime — a package.json saying the compiled files are ES modules and the production node_modules — for the builder to copy into every TypeScript bundle, so a bundle unpacked on a machine starts (ADR 0188 §5; the builder's side is the controller's). Proven here by compiling node-tools with the toolchain's exact flags and starting the result. The AMQP probe script is gone with the bus it probed.
9 lines
399 B
JavaScript
Executable File
9 lines
399 B
JavaScript
Executable File
#!/usr/bin/env node
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// A TypeScript bundle written against the protocol and marked executable: served through the
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// launcher like any other language, with the in-process shortcut off (novox/hq ADR 0188).
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import { serveStdio } from "@novox/mesh-sdk/stdio";
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await serveStdio("epsilon", [
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{ name: "seven", description: "epsilon's", input: {}, run: async () => ({ epsilon: 7, via: "stdio" }) },
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]);
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