Files
ita-ito-horaires/app/api/log/route.ts
T
vliaudatandClaude Opus 5 eae3f89aca fix: let the panel reach the API over plain HTTP, deliberately
The e-ink firmware carries a certificate-authority bundle fixed when it
was built, so it cannot validate a chain rooted in an authority created
afterwards. Let's Encrypt's ISRG Root YR was issued in May 2026 and is
not even in an up-to-date Ubuntu CA bundle yet; the kit's firmware
predates it. The handshake fails before a request is ever sent, which is
why neither Traefik nor the application saw anything at all while the
device reported "API connection cannot be established".

Ruled out first, with evidence: TLS 1.2 and the ECDHE-RSA-AES-GCM suites
an ESP32 needs are both offered, and the intermediate is not
cross-signed by an older root, so no alternate path exists in what is
served.

A Traefik router now serves four device paths over :80, ahead of the
entrypoint-wide redirect. The administration stays on TLS. The device
token travels in clear; it is used for nothing else and is revocable
from the settings page, and the image URL is an unguessable content hash.

DEVICE_ALLOW_HTTP existed but was never read — a setting that does
nothing misrepresents what it protects. The device routes now refuse an
unencrypted request unless it is set, so opening this door is a written
decision rather than the silent consequence of a proxy change.

DEPLOY.md records the whole diagnosis, including the commands that
distinguish a TLS failure from an application one, and what to do the
day the firmware learns the new roots.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012cSY9pVhZmJUKNN7wf1Myd
2026-09-21 22:17:16 +02:00

71 lines
2.1 KiB
TypeScript

import { NextResponse } from 'next/server';
import { authenticateDevice } from '@/lib/device/session';
import { clientIp } from '@/lib/device/headers';
import { checkTransport } from '@/lib/device/transport';
import { prisma } from '@/lib/db';
import { rateLimit } from '@/lib/ratelimit';
export const dynamic = 'force-dynamic';
/** Never let a firmware in a retry loop fill the table in one request. */
const MAX_ENTRIES_PER_CALL = 50;
type IncomingLog = {
message?: unknown;
level?: unknown;
created_at?: unknown;
};
/**
* Firmware-side logs. Answered with 204 whatever happens to the contents: a
* device that cannot file a log must not conclude the server is down and
* start retrying, and these records are diagnostics, not data.
*/
export async function POST(request: Request) {
const transport = checkTransport(request);
if (!transport.ok) {
return transport.response;
}
const limit = rateLimit(`log:${clientIp(request)}`, 30, 60_000);
if (!limit.allowed) {
return new NextResponse(null, { status: 429 });
}
const device = await authenticateDevice(request);
if (!device) {
return NextResponse.json({ error: 'Jeton invalide' }, { status: 401 });
}
let entries: IncomingLog[] = [];
try {
const body: unknown = await request.json();
const logs = (body as { logs?: unknown } | null)?.logs;
if (Array.isArray(logs)) {
entries = logs.slice(0, MAX_ENTRIES_PER_CALL) as IncomingLog[];
}
} catch {
// A malformed body is a diagnostic in itself; 204 keeps the device calm.
return new NextResponse(null, { status: 204 });
}
if (entries.length > 0) {
await prisma.deviceLog.createMany({
data: entries.map((entry) => ({
deviceId: device.id,
level: levelOf(entry.level),
message: String(entry.message ?? '').slice(0, 2000) || '(vide)',
payload: entry as object,
})),
});
}
return new NextResponse(null, { status: 204 });
}
function levelOf(value: unknown): 'DEBUG' | 'INFO' | 'WARN' | 'ERROR' {
const level = String(value ?? '').toUpperCase();
return level === 'DEBUG' || level === 'WARN' || level === 'ERROR' ? level : 'INFO';
}