Public Access
271 lines
8.0 KiB
JavaScript
271 lines
8.0 KiB
JavaScript
import fs from 'node:fs';
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import path from 'node:path';
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import os from 'node:os';
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import crypto from 'node:crypto';
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import { execFileSync } from 'node:child_process';
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import config from './config.js';
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/**
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* Certificates for an internal-only kiosk.
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*
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* Two certificates, not one. A long lived CA that you install on each kiosk tablet
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* once, and a short lived server certificate signed by it. Renewing the server
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* certificate then never means touching the tablets again — which matters, because
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* Apple and Chrome reject server certificates valid for much more than a year, so a
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* single self-signed certificate would have to be reinstalled everywhere annually.
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*/
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const CA_DAYS = 3650;
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const SERVER_DAYS = 398;
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const RENEW_WITHIN_DAYS = 30;
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function certDir() {
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return path.dirname(config.https.certPath);
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}
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function paths() {
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const dir = certDir();
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return {
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dir,
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caKey: path.join(dir, 'ca.key'),
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caCert: path.join(dir, 'ca.crt'),
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key: config.https.keyPath,
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cert: config.https.certPath,
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// Records which configured names the current certificate was issued for.
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names: path.join(dir, '.hostnames.json'),
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};
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}
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function openssl(args, options = {}) {
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return execFileSync('openssl', args, { stdio: ['ignore', 'pipe', 'pipe'], ...options });
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}
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export function opensslAvailable() {
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try {
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openssl(['version']);
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return true;
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} catch {
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return false;
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}
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}
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/** Every name and address a browser might use to reach this kiosk. */
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export function subjectAltNames() {
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const dns = new Set(['localhost']);
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const ips = new Set(['127.0.0.1']);
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for (const entry of config.https.hostnames) {
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if (/^\d{1,3}(\.\d{1,3}){3}$/.test(entry)) ips.add(entry);
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else dns.add(entry.toLowerCase());
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}
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// The container's own addresses, so hitting it directly still validates.
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for (const list of Object.values(os.networkInterfaces())) {
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for (const iface of list || []) {
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if (iface.family === 'IPv4' && !iface.internal) ips.add(iface.address);
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}
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}
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return [
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...[...dns].map((d) => `DNS:${d}`),
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...[...ips].map((i) => `IP:${i}`),
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];
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}
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function readCert(file) {
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try {
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return new crypto.X509Certificate(fs.readFileSync(file));
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} catch {
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return null;
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}
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}
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function daysUntil(date) {
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return Math.floor((new Date(date).getTime() - Date.now()) / 86400000);
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}
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/** The SANs actually baked into a certificate, normalised for comparison. */
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function certSans(cert) {
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if (!cert?.subjectAltName) return [];
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return cert.subjectAltName
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.split(',')
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.map((s) => s.trim().replace(/^IP Address:/, 'IP:'))
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.sort();
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}
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function createCa(p) {
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fs.mkdirSync(p.dir, { recursive: true });
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openssl([
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'req', '-x509', '-nodes', '-newkey', 'rsa:2048',
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'-days', String(CA_DAYS),
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'-keyout', p.caKey,
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'-out', p.caCert,
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'-subj', `/C=AU/O=${config.siteName}/CN=${config.siteName} Local CA`,
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'-addext', 'basicConstraints=critical,CA:TRUE,pathlen:0',
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'-addext', 'keyUsage=critical,keyCertSign,cRLSign',
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]);
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fs.chmodSync(p.caKey, 0o600);
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console.log(`[tls] created a local certificate authority at ${p.caCert}`);
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}
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function createServerCert(p, sans) {
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const primary = config.https.hostnames[0] || os.hostname() || 'visitors.local';
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const csr = path.join(p.dir, 'server.csr');
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const ext = path.join(p.dir, 'server.ext');
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fs.writeFileSync(
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ext,
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[
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`subjectAltName=${sans.join(',')}`,
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'basicConstraints=CA:FALSE',
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'keyUsage=critical,digitalSignature,keyEncipherment',
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'extendedKeyUsage=serverAuth',
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].join('\n')
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);
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openssl([
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'req', '-nodes', '-newkey', 'rsa:2048',
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'-keyout', p.key,
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'-out', csr,
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'-subj', `/C=AU/O=${config.siteName}/CN=${primary}`,
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]);
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openssl([
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'x509', '-req',
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'-in', csr,
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'-CA', p.caCert,
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'-CAkey', p.caKey,
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'-CAcreateserial',
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'-out', p.cert,
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'-days', String(SERVER_DAYS),
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'-sha256',
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'-extfile', ext,
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]);
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fs.chmodSync(p.key, 0o600);
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fs.rmSync(csr, { force: true });
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fs.rmSync(ext, { force: true });
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console.log(`[tls] issued a server certificate for ${sans.join(', ')}`);
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}
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/**
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* Makes sure a usable certificate is on disk, creating or renewing as needed.
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* Returns the material for https.createServer plus a summary for the admin console.
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*/
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export function ensureCertificates({ force = false } = {}) {
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const p = paths();
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if (!opensslAvailable()) {
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throw new Error(
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'openssl is not available, so a certificate cannot be generated. Supply your own ' +
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'certificate at HTTPS_CERT and HTTPS_KEY, or terminate TLS at a reverse proxy.'
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);
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}
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fs.mkdirSync(p.dir, { recursive: true });
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if (force || !fs.existsSync(p.caCert) || !fs.existsSync(p.caKey)) {
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createCa(p);
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}
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const wanted = subjectAltNames().sort();
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const existing = readCert(p.cert);
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// Compare against the configured names only. The container's own IP is in the
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// certificate too, and Docker hands out a different one on most restarts, so
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// comparing the full SAN list would reissue the certificate on every boot.
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const configuredNow = [...config.https.hostnames].sort().join(',');
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let configuredBefore = null;
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try {
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configuredBefore = JSON.parse(fs.readFileSync(p.names, 'utf8')).sort().join(',');
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} catch {
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configuredBefore = null;
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}
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let reason = null;
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if (force) reason = 'asked to regenerate';
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else if (!existing || !fs.existsSync(p.key)) reason = 'no certificate on disk';
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else if (daysUntil(existing.validTo) < RENEW_WITHIN_DAYS) reason = 'certificate is close to expiry';
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else if (configuredBefore !== configuredNow) reason = 'HTTPS_HOSTNAMES changed';
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if (reason) {
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console.log(`[tls] renewing the server certificate: ${reason}`);
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createServerCert(p, wanted);
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fs.writeFileSync(p.names, JSON.stringify(config.https.hostnames));
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}
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// A very common mistake is editing .env and then using `docker compose restart`,
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// which reuses the old environment. The symptom is a certificate covering only
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// the defaults, so say so rather than letting it fail later in a browser.
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const configured = config.https.hostnames;
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if (configured.length === 1 && configured[0] === 'visitors.local') {
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console.warn(
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'[tls] HTTPS_HOSTNAMES is at its default. If you set it in .env, bring the container\n' +
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' back with "docker compose up -d" rather than "docker compose restart" — restart\n' +
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' keeps the environment the container started with.'
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);
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}
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return {
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key: fs.readFileSync(p.key),
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cert: fs.readFileSync(p.cert),
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caPath: p.caCert,
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info: describe(),
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};
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}
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export function describe() {
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const p = paths();
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const server = readCert(p.cert);
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const ca = readCert(p.caCert);
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return {
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enabled: config.https.enabled,
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server: server && {
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validFrom: server.validFrom,
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validTo: server.validTo,
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daysLeft: daysUntil(server.validTo),
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names: certSans(server),
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fingerprint: server.fingerprint256,
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},
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ca: ca && {
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validTo: ca.validTo,
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daysLeft: daysUntil(ca.validTo),
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fingerprint: ca.fingerprint256,
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subject: ca.subject,
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},
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caPath: fs.existsSync(p.caCert) ? p.caCert : null,
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};
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}
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/**
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* The CA in DER form.
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*
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* The .crt on disk is PEM: base64 text between BEGIN/END lines. Apple's tooling,
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* and therefore Jamf Pro's certificate payload, wants the raw binary DER instead
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* and rejects the file on its extension. Same certificate, different wrapper.
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*/
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export function caCertificateDer() {
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const p = paths();
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if (!fs.existsSync(p.caCert)) return null;
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return openssl(['x509', '-in', p.caCert, '-outform', 'der']);
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}
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export function caCertificate() {
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const p = paths();
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return fs.existsSync(p.caCert) ? fs.readFileSync(p.caCert) : null;
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}
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/** Renewal is cheap, so check daily rather than only at boot. */
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export function scheduleRenewal(onRenewed) {
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setInterval(() => {
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try {
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const before = describe().server?.validTo;
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ensureCertificates();
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const after = describe().server?.validTo;
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if (before !== after) onRenewed?.();
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} catch (err) {
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console.error('[tls] renewal check failed:', err.message);
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}
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}, 24 * 60 * 60 * 1000).unref();
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}
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