Follow-up to the crypto-secret mirror: Forgejo's [security] SECRET_KEY was EMPTY because the bootstrap skips the web installer (INSTALL_LOCK), which is what normally generates it. An empty SECRET_KEY weakens at-rest encryption of 2FA secrets, push-mirror/migration passwords, and OAuth app secrets. Generate it with @pulumi/random (it is a plain high-entropy string, not a format-constrained JWT — so unlike INTERNAL_TOKEN/JWT_SECRET it CAN be random-generated, matching CONTRACT_002 §2.3) and inject via FORGEJO__security__SECRET_KEY; env-to-ini overwrites it in the volume's app.ini while leaving Forgejo's own INTERNAL_TOKEN + JWT secrets untouched. The GATE-B mirror then captures the real value into Vault. Done now while the egg is fresh (no encrypted data yet) → no re-encryption. Validated live: app.ini + Vault forgejoSecretKey = 40 chars; forge healthz pass + https 200; scp-form clone works; idempotent at 44 unchanged. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
113 lines
5.2 KiB
TypeScript
113 lines
5.2 KiB
TypeScript
// index.ts — foundation bootstrap entrypoint (the egg, PLAN-002 §0, Layer 0).
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//
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// Phase orchestration (PLAN-002 §2, §5). Components are created against the shared
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// provider + foundation-net (ADR-006); GATES between phases are Pulumi dependsOn
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// edges, NOT imperative sequencing, so `pulumi up` derives the order. Wave-2+ tasks
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// fill the marked slots — this file is the single composition point; components stay
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// pure factories in components/*.
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import * as pulumi from "@pulumi/pulumi";
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import { loadConfig, loadBackupSecrets } from "./config";
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import { buildBaseContext, DeployCtx } from "./lib/context";
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import { deployNetwork } from "./components/network";
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import { deployDns } from "./components/dns";
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import {
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generateCredentials,
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writeCredentialsToVault,
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writeBackupCredentialsToVault,
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writeForgejoCredentialsToVault,
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} from "./components/credentials";
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import { deployPostgres } from "./components/postgres";
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import { deployRustfs } from "./components/rustfs";
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import { deployVault } from "./components/vault";
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import { deployProxy } from "./components/proxy";
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import { deployForgejo, bootstrapForgejo } from "./components/forgejo";
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import { deployRunner } from "./components/runner";
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import * as fs from "fs";
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const cfg = loadConfig();
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// --- shared substrate: provider + network (always first) ---
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const base = buildBaseContext(cfg);
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const network = deployNetwork(base);
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const ctx: DeployCtx = { ...base, network };
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// --- public DNS records → the VM (independent of the container plane) ---
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const dnsRecords = deployDns(ctx);
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export const dnsHosts = dnsRecords.map((r) => r.name);
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// --- credentials: generation is pure (no deps); Vault distribution is T06 ---
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const credentials = generateCredentials(ctx);
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// =============================================================================
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// PHASE 3 — DATA PLANE (depends on: network)
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// T03 postgres ✓ · T04 rustfs ✓ · T05 vault ✓
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// -----------------------------------------------------------------------------
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const postgres = deployPostgres(ctx, credentials.postgres);
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const rustfs = deployRustfs(ctx, credentials.rustfs);
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const vault = deployVault(ctx);
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// --- GATE A: Vault init + unseal (T05). T06 writes the generated data-plane creds
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// into Vault (CONTRACT_002), dependsOn vault.init so it runs only once unsealed.
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const vaultCreds = writeCredentialsToVault(ctx, credentials, vault);
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// Mirror the config-seeded backup creds + age key into Vault (CONTRACT_002 §2.3).
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const backupCreds = writeBackupCredentialsToVault(ctx, vault, loadBackupSecrets());
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// =============================================================================
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// PHASE 6 — FORGE (depends on: credentials, GATE A)
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// T07 caddy ✓ · T08 forgejo · T10 runner
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// -----------------------------------------------------------------------------
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const proxy = deployProxy(ctx);
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const forgejo = deployForgejo(ctx, {
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postgres,
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rustfs,
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pgCreds: credentials.postgres,
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rustfsCreds: credentials.rustfs,
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forgejoCreds: credentials.forgejo,
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});
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// --- GATE B: Forgejo healthy → headless admin + org + repo + operator SSH key
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// (T09) so `git clone git@git.olsitec.net:olsitec/...` works. The operator
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// public key is the .pub beside SSH_PRIVATE_KEY_PATH (CONTRACT_001 §1).
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const sshPublicKey = fs.readFileSync(`${base.sshKeyPath}.pub`, "utf8").trim();
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const forgejoBootstrap = bootstrapForgejo(ctx, {
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forgejo,
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adminCreds: credentials.forgejo,
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acmeEmail: cfg.tls.acmeEmail,
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orgName: cfg.forgejo.orgName,
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repoName: "foundation",
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sshPublicKey,
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});
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const runner = cfg.features.runner ? deployRunner(ctx, forgejo) : undefined;
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// Mirror Forgejo's admin + app.ini crypto secrets into Vault (CONTRACT_002 §2.3);
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// GATE B — needs app.ini, which exists only once Forgejo has started.
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const forgejoCreds = writeForgejoCredentialsToVault(
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ctx,
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vault,
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credentials.forgejo,
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forgejo.ready,
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);
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// =============================================================================
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// Stack outputs (extended as phases land).
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// vaultCreds (T06) is a gate for Forgejo (T08) — it has no output to export yet.
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void vaultCreds;
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void backupCreds; // CONTRACT_002 backup/backup-credentials mirror; no secret output
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void forgejoCreds; // CONTRACT_002 forgejo/service-credentials mirror; no secret output
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export const phase = "T10-runner"; // forge + CI runner live
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export const caddyImageId = proxy.imageId;
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export const forgejoEndpoint = forgejo.endpoint;
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export const cloneUrl = pulumi.interpolate`git@${cfg.hosts.git}:${cfg.forgejo.orgName}/foundation.git`;
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void forgejoBootstrap; // GATE B consumer; no secret output to export
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void runner; // CI runner (feature-flagged)
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export const networkName = network.name;
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export const vmTarget = `${cfg.vm.user}@${cfg.vm.host}`;
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export const postgresEndpoint = postgres.endpoint;
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export const rustfsEndpoint = rustfs.endpoint;
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export const vaultEndpoint = vault.endpoint;
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// Captured by run.sh into vaultCredentials:* (passphrase-encrypted config) after
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// `up` — the one bootstrap secret that cannot live in Vault (CONTRACT_002 §2.4).
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export const vaultUnsealKeys = vault.unsealKeys;
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export const vaultRootToken = vault.rootToken;
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export const enabledFeatures = Object.entries(cfg.features)
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.filter(([, on]) => on)
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.map(([name]) => name);
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