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oikos/web/node_modules/https-proxy-agent/dist/index.d.ts
dtoro d4d99a7473
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feat: Phase 1 — extract the client (web SPA + desktop) to dtoro/oikos-web
Problem: the hexagonal refactor churns the backend tree for nine more
phases; the UI delivery stack (web/ SPA, cmd/desktop Wails wrapper,
compose/web image) must move to its own repo first so doc/layout
rewrites land once on a backend-only tree.

Change:
- New repo git.hubris.network/dtoro/oikos-web (v0.33.0): web/, desktop/
  (updateURL repointed to oikos-web releases), compose/, own CI (web +
  desktop jobs), own deploy script (CI-green gate, TOCTOU guard,
  version-tagged images, prune-to-3), own webhook receiver on :9798 +
  launchd unit, own compose project publishing the same 8091:80.
- Cutover executed on mac-mini in order: oikos stack's web service
  stopped+removed, oikos-web project brought up on 8091; outer Caddy
  untouched (targets the published port) — serving + Authentik flow +
  /wails 404 quirk verified post-cutover.
- Stripped from oikos: web/, cmd/desktop/, compose/web/, desktop CI
  workflow, ci.yml web job, Makefile ui/desktop/desktop-package/install
  targets, the compose web service, oikos-web from deploy.sh's fallback
  prune list; wails + go-keyring dropped from go.mod, vendor synced.
- README / CONTRIBUTING / AGENTS.md / .agents dev+operations docs now
  point at the new repo; mbse + mascot design docs carry a path note.

Risk: production SPA serving depends on the new pipeline now; rollback
is versioned-image re-up of the old web service from a pre-split
checkout (port 8091). Desktop builds installed before the split still
check dtoro/oikos releases — one manual reinstall, noted in the
oikos-web release notes.

Verification: go vet, make test (race), make generate-check, golangci
(no new findings; baseline down 400→365); post-cutover curls —
localhost:8091 200, /wails/runtime.js 404, outer Caddy 302 Authentik.
2026-08-15 22:27:52 +02:00

47 lines
2.0 KiB
TypeScript

/// <reference types="node" />
/// <reference types="node" />
/// <reference types="node" />
/// <reference types="node" />
import * as net from 'net';
import * as tls from 'tls';
import * as http from 'http';
import { Agent, AgentConnectOpts } from 'agent-base';
import { URL } from 'url';
import type { OutgoingHttpHeaders } from 'http';
type Protocol<T> = T extends `${infer Protocol}:${infer _}` ? Protocol : never;
type ConnectOptsMap = {
http: Omit<net.TcpNetConnectOpts, 'host' | 'port'>;
https: Omit<tls.ConnectionOptions, 'host' | 'port'>;
};
type ConnectOpts<T> = {
[P in keyof ConnectOptsMap]: Protocol<T> extends P ? ConnectOptsMap[P] : never;
}[keyof ConnectOptsMap];
export type HttpsProxyAgentOptions<T> = ConnectOpts<T> & http.AgentOptions & {
headers?: OutgoingHttpHeaders | (() => OutgoingHttpHeaders);
};
/**
* The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to
* the specified "HTTP(s) proxy server" in order to proxy HTTPS requests.
*
* Outgoing HTTP requests are first tunneled through the proxy server using the
* `CONNECT` HTTP request method to establish a connection to the proxy server,
* and then the proxy server connects to the destination target and issues the
* HTTP request from the proxy server.
*
* `https:` requests have their socket connection upgraded to TLS once
* the connection to the proxy server has been established.
*/
export declare class HttpsProxyAgent<Uri extends string> extends Agent {
static protocols: readonly ["http", "https"];
readonly proxy: URL;
proxyHeaders: OutgoingHttpHeaders | (() => OutgoingHttpHeaders);
connectOpts: net.TcpNetConnectOpts & tls.ConnectionOptions;
constructor(proxy: Uri | URL, opts?: HttpsProxyAgentOptions<Uri>);
/**
* Called when the node-core HTTP client library is creating a
* new HTTP request.
*/
connect(req: http.ClientRequest, opts: AgentConnectOpts): Promise<net.Socket>;
}
export {};
//# sourceMappingURL=index.d.ts.map