feat(cert-manager): alle Ausgabeformate, Konvertieren, Bundle und PFX

- build liefert jeden Inhalt in jedem Format: Einzelzertifikat (PEM, DER, PKCS#7 .p7b/.p7c), Fullchain und Nur Kette auch als PKCS#7, Zertifikat und Schlüssel in einer PEM-Datei, PFX, Schlüssel (PKCS#8, klassisch, DER, optional mit Passwort) und CSR (PEM, DER)
- PKCS#7 von Hand aus ASN.1 gebaut, jedes Zertifikat mit seinen eigenen Bytes (RSA und EC)
- PFX schreiben für RSA und EC über einen begrenzten, im finally zurückgesetzten forge-Austausch; Kompatibel (3DES/SHA-1, Vorgabe) oder Modern (AES-256)
- Schlüssel und Passwörter nur in der Anfrage, nie in Antwort, Fehlertext oder Log; falscher Schlüssel: keyMismatch, kein Schlüssel: keyMissing, ohne Passwort: passwordRequired
- Reiter Konvertieren für Zertifikat, Schlüssel und Anfrage; Zusammenführen mit Kettenformat, Zertifikat und Schlüssel sowie PFX (Passwort doppelt, Verschlüsselung wählbar)

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
This commit is contained in:
2026-10-09 15:46:43 +02:00
parent fcac0a3bfd
commit 65a1dca80f
18 changed files with 1877 additions and 47 deletions
+74 -2
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@@ -1,8 +1,8 @@
import { createPrivateKey, createPublicKey } from 'node:crypto'; import { createPrivateKey, createPublicKey, generateKeyPairSync } from 'node:crypto';
import { readFileSync } from 'node:fs'; import { readFileSync } from 'node:fs';
import { join } from 'node:path'; import { join } from 'node:path';
import { describe, expect, it } from 'vitest'; import { describe, expect, it } from 'vitest';
import { candidatePasswords, keyIdOf, MAX_PASSWORDS } from './cert-keys'; import { candidatePasswords, exportKey, keyIdOf, MAX_PASSWORDS } from './cert-keys';
import { detectBlob } from './cert-model'; import { detectBlob } from './cert-model';
import type { KeyItem } from './cert-types'; import type { KeyItem } from './cert-types';
@@ -167,3 +167,75 @@ describe('candidatePasswords', () => {
expect(out[0]).toBe('eigen'); expect(out[0]).toBe('eigen');
}); });
}); });
describe('exportKey', () => {
const rsa = () => createPrivateKey(fx('rsa-leaf-key.pem'));
const ec = () => createPrivateKey(fx('ec-leaf-key.pem'));
const text = (b: Buffer) => b.toString('utf8');
const sameKey = (a: ReturnType<typeof rsa>, b: ReturnType<typeof rsa>) =>
a.export({ type: 'pkcs8', format: 'der' }).equals(b.export({ type: 'pkcs8', format: 'der' }));
it('PKCS#8 ohne Passwort: PRIVATE KEY, gleicher Schluessel', () => {
const out = text(exportKey(rsa(), 'pkcs8'));
expect(out).toContain('-----BEGIN PRIVATE KEY-----');
expect(sameKey(createPrivateKey(out), rsa())).toBe(true);
expect(text(exportKey(ec(), 'pkcs8'))).toContain('-----BEGIN PRIVATE KEY-----');
});
it('PKCS#8 mit Passwort: ENCRYPTED PRIVATE KEY, nur mit dem Passwort zu oeffnen', () => {
for (const key of [rsa(), ec()]) {
const out = text(exportKey(key, 'pkcs8', PASSWORD));
expect(out).toContain('-----BEGIN ENCRYPTED PRIVATE KEY-----');
expect(sameKey(createPrivateKey({ key: out, passphrase: PASSWORD }), key)).toBe(true);
expect(() => createPrivateKey({ key: out, passphrase: 'falsch' })).toThrow();
}
});
it('klassisch: RSA als RSA PRIVATE KEY, EC als EC PRIVATE KEY', () => {
expect(text(exportKey(rsa(), 'traditional'))).toContain('-----BEGIN RSA PRIVATE KEY-----');
expect(text(exportKey(ec(), 'traditional'))).toContain('-----BEGIN EC PRIVATE KEY-----');
});
it('klassisch mit Passwort: Proc-Type 4,ENCRYPTED, mit dem Passwort zu oeffnen', () => {
for (const key of [rsa(), ec()]) {
const out = text(exportKey(key, 'traditional', PASSWORD));
expect(out).toContain('Proc-Type: 4,ENCRYPTED');
expect(sameKey(createPrivateKey({ key: out, passphrase: PASSWORD }), key)).toBe(true);
}
});
it('PKCS#8 als DER; mit Passwort verschluesselt und nur damit zu oeffnen', () => {
const plain = exportKey(ec(), 'pkcs8-der');
expect(sameKey(createPrivateKey({ key: plain, format: 'der', type: 'pkcs8' }), ec())).toBe(
true,
);
const enc = exportKey(ec(), 'pkcs8-der', PASSWORD);
expect(
sameKey(
createPrivateKey({ key: enc, format: 'der', type: 'pkcs8', passphrase: PASSWORD }),
ec(),
),
).toBe(true);
expect(() =>
createPrivateKey({ key: enc, format: 'der', type: 'pkcs8', passphrase: 'falsch' }),
).toThrow();
});
it('klassisch fuer einen Ed25519-Schluessel: formatNotPossible', () => {
const { privateKey } = generateKeyPairSync('ed25519');
expect(text(exportKey(privateKey, 'pkcs8'))).toContain('PRIVATE KEY');
try {
exportKey(privateKey, 'traditional');
throw new Error('expected a throw');
} catch (error) {
const e = error as { getStatus(): number; getResponse(): { code: string } };
expect(e.getStatus()).toBe(400);
expect(e.getResponse().code).toBe('formatNotPossible');
}
});
it('das Passwort steht nie in der Ausgabe', () => {
expect(text(exportKey(rsa(), 'pkcs8', PASSWORD))).not.toContain(PASSWORD);
expect(text(exportKey(rsa(), 'traditional', PASSWORD))).not.toContain(PASSWORD);
});
});
+44 -1
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@@ -1,6 +1,12 @@
import { createHash, createPrivateKey, createPublicKey, type KeyObject } from 'node:crypto'; import { createHash, createPrivateKey, createPublicKey, type KeyObject } from 'node:crypto';
import * as forge from 'node-forge'; import * as forge from 'node-forge';
import type { IgnoredEntry, ItemSource, KeyItem, LockedEntry } from './cert-types'; import {
certError,
type IgnoredEntry,
type ItemSource,
type KeyItem,
type LockedEntry,
} from './cert-types';
/** /**
* Private Schluessel des Zertifikat-Managers (quick-261009-ikt, D-05, D-11, D-16). * Private Schluessel des Zertifikat-Managers (quick-261009-ikt, D-05, D-11, D-16).
@@ -224,3 +230,40 @@ export function keyFromDer(der: Buffer, ctx: KeyContext): KeyDetectResult | null
} }
return null; return null;
} }
export type KeyExportFormat = 'pkcs8' | 'traditional' | 'pkcs8-der';
const EXPORT_CIPHER = 'aes-256-cbc';
/**
* Gibt einen privaten Schluessel in dem gewuenschten Format aus (D-19): PKCS#8 als PEM, klassisch
* (PKCS#1 fuer RSA, SEC1 fuer EC) als PEM oder PKCS#8 als DER. Mit Passwort wird mit AES-256-CBC
* verschluesselt (PKCS#8: ENCRYPTED PRIVATE KEY, klassisch: Proc-Type 4,ENCRYPTED). Die Ausgabe ist
* PEM-Text (UTF-8) oder DER. Klassisch gibt es nur fuer RSA und EC: sonst formatNotPossible.
* Weder der Schluessel noch das Passwort erscheinen in einem Fehlertext.
*/
export function exportKey(key: KeyObject, format: KeyExportFormat, password?: string): Buffer {
const cipher = password ? { cipher: EXPORT_CIPHER, passphrase: password } : {};
try {
if (format === 'pkcs8') {
return Buffer.from(key.export({ type: 'pkcs8', format: 'pem', ...cipher }) as string, 'utf8');
}
if (format === 'pkcs8-der') {
return key.export({ type: 'pkcs8', format: 'der', ...cipher }) as Buffer;
}
} catch {
return certError('formatNotPossible', 400, 'Key cannot be exported in this format');
}
const type = key.asymmetricKeyType;
if (type !== 'rsa' && type !== 'ec') {
return certError('formatNotPossible', 400, 'Traditional format needs an RSA or EC key');
}
try {
return Buffer.from(
key.export({ type: type === 'rsa' ? 'pkcs1' : 'sec1', format: 'pem', ...cipher }) as string,
'utf8',
);
} catch {
return certError('formatNotPossible', 400, 'Key cannot be exported in this format');
}
}
@@ -1,10 +1,11 @@
import 'reflect-metadata'; import 'reflect-metadata';
import { readFileSync } from 'node:fs'; import { readFileSync } from 'node:fs';
import { join } from 'node:path'; import { join } from 'node:path';
import { RequestMethod } from '@nestjs/common'; import { RequestMethod, ValidationPipe } from '@nestjs/common';
import { describe, expect, it } from 'vitest'; import { describe, expect, it } from 'vitest';
import { MODULE_SLUG_KEY } from '../module-registry/module.guard'; import { MODULE_SLUG_KEY } from '../module-registry/module.guard';
import { CertManagerController, parsePasswords, repairFileName } from './cert-manager.controller'; import { CertManagerController, parsePasswords, repairFileName } from './cert-manager.controller';
import { BuildOutputDto, CERT_PEM_MAX } from './dto/cert-build.dto';
const fx = (name: string) => readFileSync(join(__dirname, '__fixtures__', name)); const fx = (name: string) => readFileSync(join(__dirname, '__fixtures__', name));
const upload = (name: string, buffer: Buffer = fx(name)) => ({ const upload = (name: string, buffer: Buffer = fx(name)) => ({
@@ -140,3 +141,55 @@ describe('repairFileName', () => {
expect(repairFileName('M\xfcller.pem')).toBe('M\xfcller.pem'); expect(repairFileName('M\xfcller.pem')).toBe('M\xfcller.pem');
}); });
}); });
describe('build: Anfrage und Pruefung', () => {
const controller = new CertManagerController();
const pipe = new ValidationPipe({ whitelist: true, transform: true });
const validate = (body: object) =>
pipe.transform(body, { type: 'body', metatype: BuildOutputDto }) as Promise<BuildOutputDto>;
const text = (n: string) => fx(n).toString('utf8');
it('PFX mit Schluessel, Passwort und Verschluesselung geht durch die Pruefung und liefert eine Datei', async () => {
const dto = await validate({
content: 'pfx',
certPem: text('ec-leaf.pem'),
poolPems: [text('ec-inter.pem')],
keyPem: text('ec-leaf-key.pem'),
password: 'Neu-Pass-2026',
pfxEncryption: 'modern',
includeChain: true,
baseName: 'server',
});
const result = controller.build(dto);
expect(result.files[0].filename).toBe('server.pfx');
expect(JSON.stringify(result)).not.toContain('Neu-Pass-2026');
});
it('Schluessel- und Anfrage-Ausgabe brauchen kein Zertifikat', async () => {
const key = controller.build(
await validate({ content: 'key', format: 'traditional', keyPem: text('rsa-leaf-key.pem') }),
);
expect(key.files[0].filename).toBe('schluessel.rsa.key');
const csr = controller.build(
await validate({ content: 'csr', format: 'der', csrPem: text('rsa-leaf.csr') }),
);
expect(csr.files[0].filename.endsWith('.csr.der')).toBe(true);
});
it.each([
['unbekannter Inhalt', { content: 'zip' }],
['unbekanntes Format', { content: 'leaf', format: 'p12' }],
['unbekannte Verschluesselung', { content: 'pfx', pfxEncryption: 'rc2' }],
['includeChain keine Wahrheitsangabe', { content: 'leaf', includeChain: 'ja' }],
['zu langer Schluessel', { content: 'key', keyPem: 'k'.repeat(CERT_PEM_MAX + 1) }],
['zu lange Anfrage', { content: 'csr', csrPem: 'r'.repeat(CERT_PEM_MAX + 1) }],
['zu langes Passwort', { content: 'pfx', password: 'p'.repeat(257) }],
])('%s wird von der Pruefung abgewiesen', async (_name, body) => {
await expect(validate(body)).rejects.toMatchObject({ status: 400 });
});
it('unbekannte Felder (etwa eine Adresse) werden entfernt', async () => {
const dto = await validate({ content: 'leaf', url: 'http://10.0.0.1/', certPem: 'x' });
expect((dto as unknown as Record<string, unknown>).url).toBeUndefined();
});
});
+391 -1
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@@ -1,8 +1,11 @@
import { X509Certificate } from 'node:crypto'; import { createPrivateKey, generateKeyPairSync, X509Certificate } from 'node:crypto';
import { readFileSync } from 'node:fs'; import { readFileSync } from 'node:fs';
import { join } from 'node:path'; import { join } from 'node:path';
import { describe, expect, it } from 'vitest'; import { describe, expect, it } from 'vitest';
import { detectBlob } from './cert-model';
import { buildOutput, safeBaseName } from './cert-output'; import { buildOutput, safeBaseName } from './cert-output';
import { readPkcs12 } from './cert-pkcs12';
import type { CertItem, CsrItem } from './cert-types';
const fxText = (name: string) => readFileSync(join(__dirname, '__fixtures__', name), 'utf8'); const fxText = (name: string) => readFileSync(join(__dirname, '__fixtures__', name), 'utf8');
@@ -140,3 +143,390 @@ describe('buildOutput fullchain und chain', () => {
expect(r.files[0].filename).toBe('mein_Server-fullchain.pem'); expect(r.files[0].filename).toBe('mein_Server-fullchain.pem');
}); });
}); });
const bytes = (file: { content: string }) => Buffer.from(file.content, 'base64');
const NEW_PASSWORD = 'Neu-Pass-2026';
const PASSWORD = 'Test-Pass-123';
/** Zertifikate aus PKCS#7-Bytes (ueber den Parser der Anwendung, also derselbe Weg wie beim Hochladen). */
function p7Subjects(data: Buffer): string[] {
const r = detectBlob(data, { file: 0, path: 'x.p7', passwords: [] });
return r.items.filter((i): i is CertItem => i.kind === 'certificate').map((c) => c.cn);
}
describe('buildOutput: einzelnes Zertifikat', () => {
const rsaLeaf = fxText('rsa-leaf.pem');
it('PEM: <base>.crt mit genau dem Zertifikat', () => {
const r = buildOutput({ content: 'leaf', format: 'pem', certPem: rsaLeaf });
expect(r.files[0].filename).toBe('www.example.test.crt');
expect(r.files[0].mimeType).toBe('application/x-pem-file');
expect(subjects(decode(r.files[0]))).toEqual(['www.example.test']);
});
it('DER: <base>.cer, von X509Certificate gelesen gleich dem Eingang', () => {
const r = buildOutput({ content: 'leaf', format: 'der', certPem: rsaLeaf });
expect(r.files[0].filename).toBe('www.example.test.cer');
expect(r.files[0].mimeType).toBe('application/pkix-cert');
expect(new X509Certificate(bytes(r.files[0])).fingerprint256).toBe(
new X509Certificate(rsaLeaf).fingerprint256,
);
});
it.each([
['p7b', 'www.example.test.p7b', '-----BEGIN PKCS7-----'],
['p7c', 'www.example.test.p7c', null],
])('PKCS#7 %s: nur das Serverzertifikat', (format, filename, header) => {
const r = buildOutput({ content: 'leaf', format, certPem: rsaLeaf });
expect(r.files[0].filename).toBe(filename);
expect(r.files[0].mimeType).toBe('application/x-pkcs7-certificates');
if (header) expect(decode(r.files[0])).toContain(header);
else expect(bytes(r.files[0])[0]).toBe(0x30);
expect(p7Subjects(bytes(r.files[0]))).toEqual(['www.example.test']);
});
it('ohne format gilt PEM', () => {
expect(buildOutput({ content: 'leaf', certPem: rsaLeaf }).files[0].filename).toBe(
'www.example.test.crt',
);
});
});
describe('buildOutput: Fullchain und Kette als PKCS#7', () => {
const cases = [
[
'EC',
'ec-leaf.pem',
['ec-root.pem', 'ec-inter.pem'],
['Tessera Test Inter EC', 'Tessera Test Root EC'],
'ec.example.test',
],
[
'RSA',
'rsa-leaf.pem',
['rsa-root.pem', 'rsa-inter.pem'],
['Tessera Test Inter RSA', 'Tessera Test Root RSA'],
'www.example.test',
],
] as const;
it.each(
cases,
)('%s: Fullchain p7b/p7c in Kettenreihenfolge, Wurzel nur mit includeRoot', (_t, leaf, pool, issuers, cn) => {
const common = { certPem: fxText(leaf), poolPems: pool.map(fxText) };
for (const format of ['p7b', 'p7c']) {
const without = buildOutput({ content: 'fullchain', format, ...common });
expect(without.files[0].filename).toBe(`${cn}-fullchain.${format}`);
expect(p7Subjects(bytes(without.files[0]))).toEqual([cn, issuers[0]]);
const withRoot = buildOutput({ content: 'fullchain', format, includeRoot: true, ...common });
expect(p7Subjects(bytes(withRoot.files[0]))).toEqual([cn, ...issuers]);
}
});
it.each(cases)('%s: Nur Kette p7b/p7c ohne Serverzertifikat', (_t, leaf, pool, issuers, cn) => {
const common = { certPem: fxText(leaf), poolPems: pool.map(fxText) };
for (const format of ['p7b', 'p7c']) {
const only = buildOutput({ content: 'chain', format, ...common });
expect(only.files[0].filename).toBe(`${cn}-chain.${format}`);
expect(p7Subjects(bytes(only.files[0]))).toEqual([issuers[0]]);
const withRoot = buildOutput({ content: 'chain', format, includeRoot: true, ...common });
expect(p7Subjects(bytes(withRoot.files[0]))).toEqual(issuers);
}
});
it('die Zertifikate im PKCS#7 sind byte-genau die Originale', () => {
const r = buildOutput({
content: 'fullchain',
format: 'p7c',
certPem: fxText('ec-leaf.pem'),
poolPems: [fxText('ec-inter.pem')],
});
const found = detectBlob(bytes(r.files[0]), { file: 0, path: 'x', passwords: [] }).items.map(
(i) => (i as CertItem).sha256,
);
expect(found).toEqual([
new X509Certificate(fxText('ec-leaf.pem')).fingerprint256,
new X509Certificate(fxText('ec-inter.pem')).fingerprint256,
]);
});
});
describe('buildOutput: Zertifikat und Schluessel (leafKey)', () => {
const chain = {
certPem: fxText('ec-leaf.pem'),
poolPems: [fxText('ec-inter.pem'), fxText('ec-root.pem')],
keyPem: fxText('ec-leaf-key.pem'),
};
it('Server, Zwischenzertifikat, Schluessel zuletzt; ohne Wurzel', () => {
const r = buildOutput({ content: 'leafKey', ...chain });
expect(r.files[0].filename).toBe('ec.example.test-bundle.pem');
const text = decode(r.files[0]);
expect(subjects(text)).toEqual(['ec.example.test', 'Tessera Test Inter EC']);
expect(text.trimEnd().endsWith('-----END PRIVATE KEY-----')).toBe(true);
expect(text.indexOf('BEGIN PRIVATE KEY')).toBeGreaterThan(text.lastIndexOf('END CERTIFICATE'));
expect(
new X509Certificate(fxText('ec-leaf.pem')).checkPrivateKey(
createPrivateKey(text.slice(text.indexOf('-----BEGIN PRIVATE KEY'))),
),
).toBe(true);
});
it('mit includeRoot kommt die Wurzel vor dem Schluessel', () => {
const r = buildOutput({ content: 'leafKey', includeRoot: true, ...chain });
expect(subjects(decode(r.files[0]))).toEqual([
'ec.example.test',
'Tessera Test Inter EC',
'Tessera Test Root EC',
]);
});
it('includeChain false: nur Serverzertifikat und Schluessel', () => {
const r = buildOutput({ content: 'leafKey', includeChain: false, ...chain });
expect(subjects(decode(r.files[0]))).toEqual(['ec.example.test']);
});
it('Schluessel eines anderen Zertifikats: 400 keyMismatch', () => {
expect(
codeOf(() =>
buildOutput({ content: 'leafKey', ...chain, keyPem: fxText('rsa-leaf-key.pem') }),
),
).toEqual({ status: 400, code: 'keyMismatch' });
});
it('ohne Schluessel: 400 keyMissing', () => {
expect(codeOf(() => buildOutput({ content: 'leafKey', certPem: chain.certPem }))).toEqual({
status: 400,
code: 'keyMissing',
});
});
it('kein lesbarer Schluessel: 400 invalidInput, ohne Schluesseltext in der Meldung', () => {
try {
buildOutput({ content: 'leafKey', certPem: chain.certPem, keyPem: 'GEHEIM-KEIN-SCHLUESSEL' });
throw new Error('expected a throw');
} catch (error) {
const e = error as { getStatus(): number; getResponse(): { code: string; message: string } };
expect(e.getStatus()).toBe(400);
expect(e.getResponse().code).toBe('invalidInput');
expect(JSON.stringify(e.getResponse())).not.toContain('GEHEIM');
}
});
});
describe('buildOutput: PFX', () => {
const rsa = {
certPem: fxText('rsa-leaf.pem'),
poolPems: [fxText('rsa-inter.pem'), fxText('rsa-root.pem')],
keyPem: fxText('rsa-leaf-key.pem'),
};
const ec = {
certPem: fxText('ec-leaf.pem'),
poolPems: [fxText('ec-inter.pem'), fxText('ec-root.pem')],
keyPem: fxText('ec-leaf-key.pem'),
};
it('ohne Passwort: 400 passwordRequired', () => {
expect(codeOf(() => buildOutput({ content: 'pfx', ...rsa }))).toEqual({
status: 400,
code: 'passwordRequired',
});
expect(codeOf(() => buildOutput({ content: 'pfx', password: '', ...rsa }))).toEqual({
status: 400,
code: 'passwordRequired',
});
});
it.each([
['RSA', rsa, 'www.example.test'],
['EC', ec, 'ec.example.test'],
])('%s: modern, <base>.pfx, mit dem Passwort wieder lesbar (Server, Zwischen, Schluessel)', (_t, set, cn) => {
const r = buildOutput({
content: 'pfx',
password: NEW_PASSWORD,
pfxEncryption: 'modern',
...set,
});
expect(r.files[0].filename).toBe(`${cn}.pfx`);
expect(r.files[0].mimeType).toBe('application/x-pkcs12');
const read = readPkcs12(bytes(r.files[0]), [], NEW_PASSWORD);
expect(read.ok).toBe(true);
if (!read.ok) return;
const cns = read.contents.certDers.map((d) =>
String(new X509Certificate(d).toLegacyObject().subject.CN),
);
expect(cns).toHaveLength(2); // ohne Wurzel
expect(cns[0]).toBe(cn);
expect(new X509Certificate(set.certPem).checkPrivateKey(read.contents.keys[0].key)).toBe(true);
});
it('mit includeRoot kommt die Wurzel dazu; Vorgabe ist kompatibel', () => {
const r = buildOutput({ content: 'pfx', password: NEW_PASSWORD, includeRoot: true, ...rsa });
const read = readPkcs12(bytes(r.files[0]), [], NEW_PASSWORD);
expect(read.ok && read.contents.certDers).toHaveLength(3);
// 3DES-OID im Container (Kennung als DER-Bytes)
const oid3des = Buffer.from('2a864886f70d010c0103', 'hex');
expect(bytes(r.files[0]).includes(oid3des)).toBe(true);
});
it('ohne Schluessel: nur Zertifikate', () => {
const r = buildOutput({
content: 'pfx',
password: NEW_PASSWORD,
certPem: rsa.certPem,
poolPems: rsa.poolPems,
});
const read = readPkcs12(bytes(r.files[0]), [], NEW_PASSWORD);
expect(read.ok && read.contents.keys).toHaveLength(0);
expect(read.ok && read.contents.certDers).toHaveLength(2);
});
it('Schluessel eines anderen Zertifikats: 400 keyMismatch', () => {
expect(
codeOf(() =>
buildOutput({ content: 'pfx', password: NEW_PASSWORD, ...rsa, keyPem: ec.keyPem }),
),
).toEqual({ status: 400, code: 'keyMismatch' });
});
it('das Passwort steht nirgends in der Antwort', () => {
const r = buildOutput({ content: 'pfx', password: NEW_PASSWORD, ...rsa });
expect(JSON.stringify(r)).not.toContain(NEW_PASSWORD);
});
});
describe('buildOutput: Schluessel und Anfrage exportieren', () => {
const rsaKey = fxText('rsa-leaf-key.pem');
const ecKey = fxText('ec-leaf-key.pem');
it('PKCS#8: <base>.key, mit Passwort ENCRYPTED PRIVATE KEY', () => {
const plain = buildOutput({ content: 'key', format: 'pkcs8', keyPem: rsaKey });
expect(plain.files[0].filename).toBe('schluessel.key');
expect(decode(plain.files[0])).toContain('-----BEGIN PRIVATE KEY-----');
const enc = buildOutput({
content: 'key',
format: 'pkcs8',
keyPem: rsaKey,
password: PASSWORD,
});
expect(decode(enc.files[0])).toContain('-----BEGIN ENCRYPTED PRIVATE KEY-----');
expect(createPrivateKey({ key: decode(enc.files[0]), passphrase: PASSWORD })).toBeTruthy();
expect(JSON.stringify(enc)).not.toContain(PASSWORD);
});
it('klassisch: <base>.rsa.key und <base>.ec.key', () => {
const rsa = buildOutput({
content: 'key',
format: 'traditional',
keyPem: rsaKey,
baseName: 'srv',
});
expect(rsa.files[0].filename).toBe('srv.rsa.key');
expect(decode(rsa.files[0])).toContain('BEGIN RSA PRIVATE KEY');
const ec = buildOutput({
content: 'key',
format: 'traditional',
keyPem: ecKey,
baseName: 'srv',
});
expect(ec.files[0].filename).toBe('srv.ec.key');
expect(decode(ec.files[0])).toContain('BEGIN EC PRIVATE KEY');
const enc = buildOutput({
content: 'key',
format: 'traditional',
keyPem: ecKey,
password: PASSWORD,
});
expect(decode(enc.files[0])).toContain('Proc-Type: 4,ENCRYPTED');
});
it('DER: <base>.key.der, mit Passwort verschluesselt', () => {
const plain = buildOutput({ content: 'key', format: 'pkcs8-der', keyPem: ecKey });
expect(plain.files[0].filename).toBe('schluessel.key.der');
expect(plain.files[0].mimeType).toBe('application/octet-stream');
expect(
createPrivateKey({ key: bytes(plain.files[0]), format: 'der', type: 'pkcs8' }),
).toBeTruthy();
const enc = buildOutput({
content: 'key',
format: 'pkcs8-der',
keyPem: ecKey,
password: PASSWORD,
});
expect(() =>
createPrivateKey({ key: bytes(enc.files[0]), format: 'der', type: 'pkcs8' }),
).toThrow();
expect(
createPrivateKey({
key: bytes(enc.files[0]),
format: 'der',
type: 'pkcs8',
passphrase: PASSWORD,
}),
).toBeTruthy();
});
it('ohne Schluessel: 400 keyMissing; klassisch fuer Ed25519: formatNotPossible', () => {
expect(codeOf(() => buildOutput({ content: 'key', format: 'pkcs8' }))).toEqual({
status: 400,
code: 'keyMissing',
});
const ed = generateKeyPairSync('ed25519').privateKey.export({
type: 'pkcs8',
format: 'pem',
}) as string;
expect(
codeOf(() => buildOutput({ content: 'key', format: 'traditional', keyPem: ed })),
).toEqual({
status: 400,
code: 'formatNotPossible',
});
});
it('CSR: PEM <base>.csr und DER <base>.csr.der', () => {
const csrPem = fxText('ec-leaf.csr');
const pem = buildOutput({ content: 'csr', format: 'pem', csrPem });
expect(pem.files[0].filename).toBe('ec.example.test.csr');
expect(pem.files[0].mimeType).toBe('application/pkcs10');
expect(decode(pem.files[0])).toContain('-----BEGIN CERTIFICATE REQUEST-----');
const der = buildOutput({ content: 'csr', format: 'der', csrPem, baseName: 'srv' });
expect(der.files[0].filename).toBe('srv.csr.der');
const read = detectBlob(bytes(der.files[0]), { file: 0, path: 'x', passwords: [] });
expect(read.items[0].kind).toBe('csr');
expect((read.items[0] as CsrItem).keyType).toBe('EC');
});
it('CSR ohne csrPem: 400 invalidInput; Text, der keine Anfrage ist: 400 invalidInput', () => {
expect(codeOf(() => buildOutput({ content: 'csr', format: 'pem' }))).toEqual({
status: 400,
code: 'invalidInput',
});
expect(codeOf(() => buildOutput({ content: 'csr', format: 'pem', csrPem: 'x' }))).toEqual({
status: 400,
code: 'invalidInput',
});
});
});
describe('buildOutput: ungueltige Paare', () => {
it.each([
['leaf', 'p12'],
['fullchain', 'der'],
['key', 'pem'],
['csr', 'p7b'],
['leafKey', 'der'],
['unbekannt', 'pem'],
])('%s mit Format %s: 400 invalidInput', (content, format) => {
expect(
codeOf(() =>
buildOutput({
content: content as never,
format,
certPem: fxText('rsa-leaf.pem'),
keyPem: fxText('rsa-leaf-key.pem'),
csrPem: fxText('rsa-leaf.csr'),
}),
),
).toEqual({ status: 400, code: 'invalidInput' });
});
});
+192 -19
View File
@@ -1,25 +1,50 @@
import { X509Certificate } from 'node:crypto'; import { createPrivateKey, type KeyObject, X509Certificate } from 'node:crypto';
import * as forge from 'node-forge';
import { buildChains } from './cert-chain'; import { buildChains } from './cert-chain';
import { csrItemFromDer } from './cert-csr';
import { exportKey, type KeyExportFormat } from './cert-keys';
import { certItemFromDer } from './cert-model'; import { certItemFromDer } from './cert-model';
import { safeBaseName } from './cert-names'; import { safeBaseName } from './cert-names';
import { writePkcs12 } from './cert-pkcs12';
import { import {
type BuildContent,
type BuildFile, type BuildFile,
type BuildInput, type BuildInput,
type BuildResult, type BuildResult,
type CertItem, type CertItem,
type CsrItem,
certError, certError,
} from './cert-types'; } from './cert-types';
/** /**
* Ausgabe-Bausteine des Zertifikat-Managers (quick-261009-ikt, D-19). * Ausgabe-Bausteine des Zertifikat-Managers (quick-261009-ikt, D-19).
* Task 2: Fullchain und Nur Kette als PEM. Die weiteren Inhalte und Formate (Task 5) kommen in * Jeder Inhalt in jedem Format laeuft durch die eine Funktion buildOutput. Die Reihenfolge baut die API
* dieselbe Funktion. Die Reihenfolge baut die API immer selbst aus den gesendeten Zertifikaten * immer selbst aus den gesendeten Zertifikaten (buildChains); eine vom Browser mitgeschickte Reihenfolge
* (buildChains); eine vom Browser mitgeschickte Reihenfolge wird nie uebernommen. * wird nie uebernommen. Schluessel und Passwoerter werden nur verarbeitet, nie gespeichert oder
* protokolliert, und erscheinen in keiner Fehlermeldung.
*/ */
export { safeBaseName }; export { safeBaseName };
const PEM_MIME = 'application/x-pem-file'; const MIME = {
pem: 'application/x-pem-file',
der: 'application/pkix-cert',
pkcs7: 'application/x-pkcs7-certificates',
pfx: 'application/x-pkcs12',
binary: 'application/octet-stream',
csr: 'application/pkcs10',
} as const;
/** Erlaubte Formate je Inhalt; das erste ist die Vorgabe. */
const FORMATS: Record<BuildContent, readonly string[]> = {
leaf: ['pem', 'der', 'p7b', 'p7c'],
fullchain: ['pem', 'p7b', 'p7c'],
chain: ['pem', 'p7b', 'p7c'],
leafKey: ['pem'],
pfx: ['pfx'],
key: ['pkcs8', 'traditional', 'pkcs8-der'],
csr: ['pem', 'der'],
};
function parseCertificate(pem: unknown): CertItem { function parseCertificate(pem: unknown): CertItem {
if (typeof pem !== 'string' || pem.trim() === '') { if (typeof pem !== 'string' || pem.trim() === '') {
@@ -32,21 +57,104 @@ function parseCertificate(pem: unknown): CertItem {
} }
} }
function parseKey(pem: string | undefined): KeyObject {
if (typeof pem !== 'string' || pem.trim() === '') {
certError('keyMissing', 400, 'A private key is required');
}
try {
return createPrivateKey(pem);
} catch {
return certError('invalidInput', 400, 'keyPem is not a readable private key');
}
}
const CSR_BLOCK =
/-----BEGIN (?:NEW )?CERTIFICATE REQUEST-----([\s\S]*?)-----END (?:NEW )?CERTIFICATE REQUEST-----/;
function parseCsr(pem: string | undefined): { der: Buffer; item: CsrItem } {
const body = typeof pem === 'string' ? CSR_BLOCK.exec(pem)?.[1] : undefined;
if (!body) certError('invalidInput', 400, 'csrPem is not a certificate request');
try {
const der = Buffer.from(body.replace(/\s+/g, ''), 'base64');
return { der, item: csrItemFromDer(der, { file: 0, path: '' }) };
} catch {
return certError('invalidInput', 400, 'csrPem is not a certificate request');
}
}
function pemBlock(label: string, der: Buffer): string {
const lines = der.toString('base64').match(/.{1,64}/g) ?? [];
return `-----BEGIN ${label}-----\n${lines.join('\n')}\n-----END ${label}-----\n`;
}
/** PEM-Bloecke in Kettenreihenfolge, jeder genau einmal mit abschliessendem Zeilenumbruch. */ /** PEM-Bloecke in Kettenreihenfolge, jeder genau einmal mit abschliessendem Zeilenumbruch. */
function joinPem(certs: CertItem[]): string { function joinPem(certs: CertItem[]): string {
return certs.map((c) => `${c.pem.trim()}\n`).join(''); return certs.map((c) => `${c.pem.trim()}\n`).join('');
} }
function pemFile(filename: string, certs: CertItem[]): BuildFile { function derOf(cert: CertItem): Buffer {
return { return new X509Certificate(cert.pem).raw;
filename, }
content: Buffer.from(joinPem(certs), 'utf8').toString('base64'),
mimeType: PEM_MIME, const { asn1 } = forge;
};
function sequence(value: forge.asn1.Asn1[]): forge.asn1.Asn1 {
return asn1.create(asn1.Class.UNIVERSAL, asn1.Type.SEQUENCE, true, value);
}
function oid(value: string): forge.asn1.Asn1 {
return asn1.create(asn1.Class.UNIVERSAL, asn1.Type.OID, false, asn1.oidToDer(value).getBytes());
}
/**
* PKCS#7 „certs only“ (signedData ohne Inhalt und ohne Unterschriften, wie .p7b/.p7c von CAs), von Hand
* aus ASN.1 gebaut: ContentInfo { signedData, [0] { version 1, leere Verfahrensliste, data, [0] Zertifikate,
* leere Unterschriftenliste } }. Jedes Zertifikat geht mit seinen eigenen Bytes hinein; forges
* Zertifikatobjekte (nur RSA) kommen nie vor.
*/
function pkcs7Der(certs: CertItem[]): Buffer {
const options = { decodeBitStrings: false } as unknown as boolean;
const certAsn1 = certs.map((c) =>
asn1.fromDer(forge.util.createBuffer(derOf(c).toString('binary')), options),
);
const signedData = sequence([
asn1.create(asn1.Class.UNIVERSAL, asn1.Type.INTEGER, false, asn1.integerToDer(1).getBytes()),
asn1.create(asn1.Class.UNIVERSAL, asn1.Type.SET, true, []),
sequence([oid('1.2.840.113549.1.7.1')]),
asn1.create(asn1.Class.CONTEXT_SPECIFIC, 0, true, certAsn1),
asn1.create(asn1.Class.UNIVERSAL, asn1.Type.SET, true, []),
]);
const contentInfo = sequence([
oid('1.2.840.113549.1.7.2'),
asn1.create(asn1.Class.CONTEXT_SPECIFIC, 0, true, [signedData]),
]);
return Buffer.from(asn1.toDer(contentInfo).getBytes(), 'binary');
}
function file(filename: string, data: Buffer | string, mimeType: string): BuildFile {
const bytes = typeof data === 'string' ? Buffer.from(data, 'utf8') : data;
return { filename, content: bytes.toString('base64'), mimeType };
}
/** Zertifikatsliste als PEM, PKCS#7 PEM (.p7b) oder PKCS#7 DER (.p7c) unter dem Namen `<stem>.<endung>`. */
function certListFile(stem: string, pemName: string, format: string, certs: CertItem[]): BuildFile {
if (format === 'p7b') {
return file(`${stem}.p7b`, pemBlock('PKCS7', pkcs7Der(certs)), MIME.pkcs7);
}
if (format === 'p7c') return file(`${stem}.p7c`, pkcs7Der(certs), MIME.pkcs7);
return file(pemName, joinPem(certs), MIME.pem);
} }
/** Baut die gewuenschte Ausgabe. Wirft Nest-Ausnahmen mit Code (D-24); nie mit Passwort oder Schluessel im Text. */ /** Baut die gewuenschte Ausgabe. Wirft Nest-Ausnahmen mit Code (D-24); nie mit Passwort oder Schluessel im Text. */
export function buildOutput(input: BuildInput): BuildResult { export function buildOutput(input: BuildInput): BuildResult {
const allowed = FORMATS[input.content];
if (!allowed) certError('invalidInput', 400, 'Unknown content');
const format = input.format ?? allowed[0];
if (!allowed.includes(format)) certError('invalidInput', 400, 'Format is not available here');
if (input.content === 'key') return buildKey(input, format as KeyExportFormat);
if (input.content === 'csr') return buildCsr(input, format);
if (!input.certPem) certError('invalidInput', 400, 'certPem is required'); if (!input.certPem) certError('invalidInput', 400, 'certPem is required');
const head = parseCertificate(input.certPem); const head = parseCertificate(input.certPem);
const pool = (input.poolPems ?? []).map(parseCertificate); const pool = (input.poolPems ?? []).map(parseCertificate);
@@ -60,18 +168,48 @@ export function buildOutput(input: BuildInput): BuildResult {
const path = chain.path.map((id) => byId.get(id) as CertItem); const path = chain.path.map((id) => byId.get(id) as CertItem);
const includeRoot = input.includeRoot === true; const includeRoot = input.includeRoot === true;
const withoutRoot = path.filter((c) => !(c.role === 'root' && c.id !== head.id)); const withoutRoot = path.filter((c) => !(c.role === 'root' && c.id !== head.id));
const shown = includeRoot ? path : withoutRoot;
const base = safeBaseName(input.baseName ?? '', head.baseName); const base = safeBaseName(input.baseName ?? '', head.baseName);
let files: BuildFile[]; let files: BuildFile[];
if (input.content === 'fullchain') { switch (input.content) {
files = [pemFile(`${base}-fullchain.pem`, includeRoot ? path : withoutRoot)]; case 'leaf':
} else if (input.content === 'chain') { if (format === 'der') files = [file(`${base}.cer`, derOf(head), MIME.der)];
const issuers = (includeRoot ? path : withoutRoot).filter((c) => c.id !== head.id); else files = [certListFile(base, `${base}.crt`, format, [head])];
if (issuers.length === 0) break;
case 'fullchain':
files = [certListFile(`${base}-fullchain`, `${base}-fullchain.pem`, format, shown)];
break;
case 'chain': {
const issuers = shown.filter((c) => c.id !== head.id);
if (issuers.length === 0) {
certError('noChain', 400, 'No intermediate or root certificate available'); certError('noChain', 400, 'No intermediate or root certificate available');
files = [pemFile(`${base}-chain.pem`, issuers)]; }
} else { files = [certListFile(`${base}-chain`, `${base}-chain.pem`, format, issuers)];
return certError('formatNotPossible', 400, 'Output not available'); break;
}
case 'leafKey': {
const key = matchingKey(head, input.keyPem);
const certs = input.includeChain === false ? [head] : shown;
const keyPem = key.export({ type: 'pkcs8', format: 'pem' }) as string;
files = [file(`${base}-bundle.pem`, joinPem(certs) + keyPem, MIME.pem)];
break;
}
case 'pfx': {
if (!input.password) certError('passwordRequired', 400, 'A password is required');
const key = input.keyPem ? matchingKey(head, input.keyPem) : null;
const der = writePkcs12({
keyObject: key,
certDers: shown.map(derOf),
password: input.password,
profile: input.pfxEncryption === 'modern' ? 'modern' : 'compat',
friendlyName: base,
});
files = [file(`${base}.pfx`, der, MIME.pfx)];
break;
}
default:
return certError('invalidInput', 400, 'Unknown content');
} }
return { return {
@@ -80,3 +218,38 @@ export function buildOutput(input: BuildInput): BuildResult {
missingIssuerCn: chain.gap?.missingIssuerCn ?? null, missingIssuerCn: chain.gap?.missingIssuerCn ?? null,
}; };
} }
/** Liest den Schluessel und prueft, dass er zum Serverzertifikat gehoert (sonst keyMismatch). */
function matchingKey(head: CertItem, keyPem: string | undefined): KeyObject {
const key = parseKey(keyPem);
if (!new X509Certificate(head.pem).checkPrivateKey(key)) {
certError('keyMismatch', 400, 'The key does not belong to the certificate');
}
return key;
}
function buildKey(input: BuildInput, format: KeyExportFormat): BuildResult {
const key = parseKey(input.keyPem);
const base = safeBaseName(input.baseName ?? '', 'schluessel');
const data = exportKey(key, format, input.password || undefined);
let filename: string;
let mime: string = MIME.pem;
if (format === 'pkcs8') filename = `${base}.key`;
else if (format === 'traditional') {
filename = key.asymmetricKeyType === 'rsa' ? `${base}.rsa.key` : `${base}.ec.key`;
} else {
filename = `${base}.key.der`;
mime = MIME.binary;
}
return { files: [file(filename, data, mime)], chainComplete: true, missingIssuerCn: null };
}
function buildCsr(input: BuildInput, format: string): BuildResult {
const { der, item } = parseCsr(input.csrPem);
const base = safeBaseName(input.baseName ?? '', item.baseName);
const out =
format === 'der'
? file(`${base}.csr.der`, der, MIME.csr)
: file(`${base}.csr`, item.pem, MIME.csr);
return { files: [out], chainComplete: true, missingIssuerCn: null };
}
+185 -3
View File
@@ -1,10 +1,11 @@
import { X509Certificate } from 'node:crypto'; import { createPrivateKey, X509Certificate } from 'node:crypto';
import { readFileSync } from 'node:fs'; import { readFileSync } from 'node:fs';
import { join } from 'node:path'; import { join } from 'node:path';
import { describe, expect, it } from 'vitest'; import * as forge from 'node-forge';
import { describe, expect, it, vi } from 'vitest';
import { candidatePasswords, keyIdOf } from './cert-keys'; import { candidatePasswords, keyIdOf } from './cert-keys';
import { detectBlob } from './cert-model'; import { detectBlob } from './cert-model';
import { isPkcs12Der, readPkcs12 } from './cert-pkcs12'; import { isPkcs12Der, readPkcs12, writePkcs12 } from './cert-pkcs12';
import type { CertItem, KeyItem } from './cert-types'; import type { CertItem, KeyItem } from './cert-types';
const fx = (name: string) => readFileSync(join(__dirname, '__fixtures__', name)); const fx = (name: string) => readFileSync(join(__dirname, '__fixtures__', name));
@@ -110,3 +111,184 @@ describe('detectBlob: PKCS#12', () => {
expect(JSON.stringify(detect('rsa-modern.pfx', PASSWORD))).not.toContain(PASSWORD); expect(JSON.stringify(detect('rsa-modern.pfx', PASSWORD))).not.toContain(PASSWORD);
}); });
}); });
describe('writePkcs12', () => {
const NEW_PASSWORD = 'Neu-Pass-2026';
const OID_3DES = '1.2.840.113549.1.12.1.3';
const OID_PBES2 = '1.2.840.113549.1.5.13';
const OID_AES256 = '2.16.840.1.101.3.4.1.42';
const OID_LOCAL_KEY_ID = '1.2.840.113549.1.9.21';
const asn1Of = (der: Buffer) =>
forge.asn1.fromDer(forge.util.createBuffer(der.toString('binary')), {
strict: false,
} as unknown as boolean);
const kids = (n: forge.asn1.Asn1) => n.value as forge.asn1.Asn1[];
const oidOf = (n: forge.asn1.Asn1) => forge.asn1.derToOid(n.value as string);
/** Alle SafeBags im Container (Zertifikate unverschluesselt, Schluessel im selben Aufbau). */
function safeBags(der: Buffer): forge.asn1.Asn1[] {
const authSafe = kids(kids(asn1Of(der))[1])[1]; // ContentInfo -> [0] explicit
const inner = kids(authSafe)[0]; // OCTET STRING mit AuthenticatedSafe
const contentInfos = kids(forge.asn1.fromDer(forge.util.createBuffer(inner.value as string)));
const bags: forge.asn1.Asn1[] = [];
for (const ci of contentInfos) {
const octets = kids(kids(ci)[1])[0].value as string;
bags.push(...kids(forge.asn1.fromDer(forge.util.createBuffer(octets))));
}
return bags;
}
const keyBagOf = (der: Buffer) =>
safeBags(der).find(
(b) => oidOf(kids(b)[0]) === forge.pki.oids.pkcs8ShroudedKeyBag,
) as forge.asn1.Asn1;
function localKeyId(bag: forge.asn1.Asn1): string {
const attrs = kids(bag)[2];
for (const attr of kids(attrs)) {
if (oidOf(kids(attr)[0]) === OID_LOCAL_KEY_ID) {
return Buffer.from(kids(kids(attr)[1])[0].value as string, 'binary').toString('hex');
}
}
return '';
}
const certDers = (names: string[]) => names.map((n) => new X509Certificate(fx(n)).raw);
it.each([
['rsa', 'rsa-leaf-key.pem', ['rsa-leaf.pem', 'rsa-inter.pem']],
['ec', 'ec-leaf-key.pem', ['ec-leaf.pem', 'ec-inter.pem']],
] as const)('%s: Round-Trip ueber readPkcs12 in beiden Profilen', (_type, keyFile, certFiles) => {
for (const profile of ['compat', 'modern'] as const) {
const der = writePkcs12({
keyObject: createPrivateKey(fx(keyFile)),
certDers: certDers([...certFiles]),
password: NEW_PASSWORD,
profile,
friendlyName: 'server',
});
expect(isPkcs12Der(der)).toBe(true);
const read = readPkcs12(der, [], NEW_PASSWORD);
expect(read.ok).toBe(true);
if (!read.ok) return;
const fingerprints = read.contents.certDers.map((d) => new X509Certificate(d).fingerprint256);
expect(fingerprints).toEqual(certFiles.map(sha)); // Serverzertifikat zuerst
expect(read.contents.keys).toHaveLength(1);
expect(new X509Certificate(fx(certFiles[0])).checkPrivateKey(read.contents.keys[0].key)).toBe(
true,
);
// falsches Passwort oeffnet nicht
expect(readPkcs12(der, [], 'falsch')).toMatchObject({ ok: false, reason: 'passwordWrong' });
}
});
it('kompatibel: Schluesselbeutel mit pbeWithSHA1And3-KeyTripleDES-CBC', () => {
const der = writePkcs12({
keyObject: createPrivateKey(fx('ec-leaf-key.pem')),
certDers: certDers(['ec-leaf.pem']),
password: NEW_PASSWORD,
profile: 'compat',
friendlyName: 'server',
});
const algorithm = kids(kids(kids(keyBagOf(der))[1])[0])[0];
expect(oidOf(kids(algorithm)[0])).toBe(OID_3DES);
});
it('modern: Schluesselbeutel mit PBES2 und AES-256-CBC', () => {
const der = writePkcs12({
keyObject: createPrivateKey(fx('rsa-leaf-key.pem')),
certDers: certDers(['rsa-leaf.pem']),
password: NEW_PASSWORD,
profile: 'modern',
friendlyName: 'server',
});
const algorithm = kids(kids(kids(keyBagOf(der))[1])[0])[0];
expect(oidOf(kids(algorithm)[0])).toBe(OID_PBES2);
// PBES2-Parameter: { keyDerivation, encryptionScheme { AES-256-CBC, iv } }
const encryptionScheme = kids(kids(algorithm)[1])[1];
expect(oidOf(kids(encryptionScheme)[0])).toBe(OID_AES256);
});
it('Schluesselbeutel und Serverzertifikat tragen dieselbe localKeyId', () => {
const der = writePkcs12({
keyObject: createPrivateKey(fx('ec-leaf-key.pem')),
certDers: certDers(['ec-leaf.pem', 'ec-inter.pem']),
password: NEW_PASSWORD,
profile: 'compat',
friendlyName: 'server',
});
const bags = safeBags(der);
const certBags = bags.filter((b) => oidOf(kids(b)[0]) === forge.pki.oids.certBag);
expect(certBags).toHaveLength(2);
const keyId = localKeyId(keyBagOf(der));
expect(keyId).toMatch(/^[0-9a-f]{40}$/);
expect(localKeyId(certBags[0])).toBe(keyId);
});
it('ohne Schluessel: nur Zertifikate', () => {
const der = writePkcs12({
keyObject: null,
certDers: certDers(['rsa-leaf.pem', 'rsa-inter.pem']),
password: NEW_PASSWORD,
profile: 'compat',
friendlyName: 'server',
});
const read = readPkcs12(der, [], NEW_PASSWORD);
expect(read.ok && read.contents.certDers).toHaveLength(2);
expect(read.ok && read.contents.keys).toHaveLength(0);
});
it('forge ist danach unveraendert (nach Erfolg und nach einem Fehler mittendrin)', () => {
const pki = forge.pki as unknown as Record<string, unknown>;
const before = {
privateKeyToAsn1: pki.privateKeyToAsn1,
wrapRsaPrivateKey: pki.wrapRsaPrivateKey,
certificateToAsn1: pki.certificateToAsn1,
};
writePkcs12({
keyObject: createPrivateKey(fx('rsa-leaf-key.pem')),
certDers: certDers(['rsa-leaf.pem']),
password: NEW_PASSWORD,
profile: 'compat',
friendlyName: 'server',
});
expect(pki.privateKeyToAsn1).toBe(before.privateKeyToAsn1);
expect(pki.wrapRsaPrivateKey).toBe(before.wrapRsaPrivateKey);
expect(pki.certificateToAsn1).toBe(before.certificateToAsn1);
// forge scheitert mitten im Schreiben, waehrend die Durchreicher eingesetzt sind
let seenDuring: unknown;
const spy = vi.spyOn(forge.pkcs12, 'toPkcs12Asn1').mockImplementation(() => {
seenDuring = pki.certificateToAsn1;
throw new Error('boom');
});
try {
expect(() =>
writePkcs12({
keyObject: null,
certDers: certDers(['rsa-leaf.pem']),
password: NEW_PASSWORD,
profile: 'compat',
friendlyName: 'server',
}),
).toThrow('boom');
} finally {
spy.mockRestore();
}
expect(seenDuring).not.toBe(before.certificateToAsn1); // der Durchreicher war wirklich eingesetzt
expect(pki.privateKeyToAsn1).toBe(before.privateKeyToAsn1);
expect(pki.wrapRsaPrivateKey).toBe(before.wrapRsaPrivateKey);
expect(pki.certificateToAsn1).toBe(before.certificateToAsn1);
});
it('das Passwort steht nicht im Container', () => {
const der = writePkcs12({
keyObject: createPrivateKey(fx('rsa-leaf-key.pem')),
certDers: certDers(['rsa-leaf.pem']),
password: NEW_PASSWORD,
profile: 'modern',
friendlyName: 'server',
});
expect(der.includes(Buffer.from(NEW_PASSWORD))).toBe(false);
});
});
+72
View File
@@ -122,3 +122,75 @@ export function readPkcs12(der: Buffer, passwords: string[], ownPassword = ''):
if (!passwordProblem) throw lastError; if (!passwordProblem) throw lastError;
return { ok: false, reason: ownPassword ? 'passwordWrong' : 'passwordNeeded' }; return { ok: false, reason: ownPassword ? 'passwordWrong' : 'passwordNeeded' };
} }
export type Pkcs12Profile = 'compat' | 'modern';
export interface WritePkcs12Options {
/** Schluessel zum Serverzertifikat; ohne Schluessel entsteht ein Container nur mit Zertifikaten */
keyObject: KeyObject | null;
/** Zertifikate als DER, Serverzertifikat zuerst */
certDers: Buffer[];
password: string;
/** compat = 3DES/SHA-1 (auch aeltere Windows-Server), modern = AES-256 */
profile: Pkcs12Profile;
friendlyName: string;
}
/** Fuer BMPString (UTF-16, big endian) als forge-Bytefolge. */
function bmpString(text: string): string {
return Buffer.from(text, 'utf16le').swap16().toString('binary');
}
/**
* Schreibt einen PKCS#12-Container (D-07, D-20).
*
* forge schreibt von sich aus nur RSA: `toPkcs12Asn1` ruft `pki.privateKeyToAsn1`,
* `pki.wrapRsaPrivateKey` und `pki.certificateToAsn1` auf RSA-Objekten auf. Damit auch EC-Zertifikate
* und -Schluessel hinein koennen, werden diese drei Funktionen fuer die Dauer EINES synchronen
* Aufrufs durch Durchreicher ersetzt: sie geben das vorbereitete ASN.1 (Zertifikat aus dem DER,
* Schluessel als PKCS#8 aus node:crypto) unveraendert zurueck. Die Verschluesselung (PBE, MAC)
* macht weiterhin forge selbst. Die Originale stehen im `finally` wieder an ihrem Platz; weil Node
* einfaedig ist und der Aufruf synchron laeuft, kann kein anderer Aufrufer den Austausch sehen.
*
* compat = `3des` (pbeWithSHA1And3-KeyTripleDES-CBC, HMAC-SHA1), Windows Server 2016 und aelter lesen es.
* modern = `aes256` (PBES2/PBKDF2/AES-256-CBC fuer den Schluessel; forge bleibt beim SHA-1-MAC).
*/
export function writePkcs12(options: WritePkcs12Options): Buffer {
if (!options.password) throw new Error('A password is required');
const parse = (der: Buffer) =>
forge.asn1.fromDer(forge.util.createBuffer(der.toString('binary')), {
decodeBitStrings: false,
} as unknown as boolean);
const keyAsn1 = options.keyObject
? parse(options.keyObject.export({ type: 'pkcs8', format: 'der' }))
: null;
const certs = options.certDers.map((der) => ({ asn1: parse(der) }));
// `forge.pki` ist ein gewoehnliches, beschreibbares Objekt; die Typen kennen die Zuweisung nicht.
const pki = forge.pki as unknown as Record<string, unknown>;
const original = {
privateKeyToAsn1: pki.privateKeyToAsn1,
wrapRsaPrivateKey: pki.wrapRsaPrivateKey,
certificateToAsn1: pki.certificateToAsn1,
};
try {
pki.privateKeyToAsn1 = (wrapped: { asn1: forge.asn1.Asn1 }) => wrapped.asn1;
pki.wrapRsaPrivateKey = (asn1: forge.asn1.Asn1) => asn1;
pki.certificateToAsn1 = (wrapped: { asn1: forge.asn1.Asn1 }) => wrapped.asn1;
const p12 = forge.pkcs12.toPkcs12Asn1(
(keyAsn1 ? { asn1: keyAsn1 } : null) as unknown as forge.pki.rsa.PrivateKey | null,
certs as unknown as forge.pki.Certificate[],
options.password,
{
algorithm: options.profile === 'modern' ? 'aes256' : '3des',
friendlyName: bmpString(options.friendlyName),
generateLocalKeyId: true,
},
);
return toBuffer(p12);
} finally {
pki.privateKeyToAsn1 = original.privateKeyToAsn1;
pki.wrapRsaPrivateKey = original.wrapRsaPrivateKey;
pki.certificateToAsn1 = original.certificateToAsn1;
}
}
@@ -16,16 +16,33 @@ import {
* + password 256 + baseName 120 + JSON-Maskierung der Zeilenumbrueche (etwa +1,6 %) * + password 256 + baseName 120 + JSON-Maskierung der Zeilenumbrueche (etwa +1,6 %)
* = rund 384 kB, also deutlich unter dem Grenzwert von 512 KiB. * = rund 384 kB, also deutlich unter dem Grenzwert von 512 KiB.
* *
* Task 2 kennt nur Fullchain und Nur Kette als PEM; weitere Inhalte, Formate und Felder * Stand Task 5: alle Inhalte und Formate aus D-19; die Vorlage (template) folgt in Task 6.
* (Schluessel, Passwort, Vorlage) folgen in Task 5 und 6.
*/ */
export const CERT_PEM_MAX = 16_384; export const CERT_PEM_MAX = 16_384;
export const CERT_POOL_MAX = 20; export const CERT_POOL_MAX = 20;
export const CERT_PASSWORD_MAX = 256; export const CERT_PASSWORD_MAX = 256;
export const CERT_BASENAME_MAX = 120; export const CERT_BASENAME_MAX = 120;
export const BUILD_CONTENTS = ['fullchain', 'chain'] as const; export const BUILD_CONTENTS = [
export const BUILD_FORMATS = ['pem'] as const; 'leaf',
'fullchain',
'chain',
'leafKey',
'pfx',
'key',
'csr',
] as const;
export const BUILD_FORMATS = [
'pem',
'der',
'p7b',
'p7c',
'pfx',
'pkcs8',
'traditional',
'pkcs8-der',
] as const;
export const BUILD_PFX_ENCRYPTIONS = ['compat', 'modern'] as const;
export class BuildOutputDto { export class BuildOutputDto {
@IsIn(BUILD_CONTENTS) @IsIn(BUILD_CONTENTS)
@@ -47,10 +64,33 @@ export class BuildOutputDto {
@MaxLength(CERT_PEM_MAX, { each: true }) @MaxLength(CERT_PEM_MAX, { each: true })
poolPems?: string[]; poolPems?: string[];
@IsOptional()
@IsString()
@MaxLength(CERT_PEM_MAX)
keyPem?: string;
@IsOptional()
@IsString()
@MaxLength(CERT_PEM_MAX)
csrPem?: string;
@IsOptional() @IsOptional()
@IsBoolean() @IsBoolean()
includeRoot?: boolean; includeRoot?: boolean;
@IsOptional()
@IsBoolean()
includeChain?: boolean;
@IsOptional()
@IsString()
@MaxLength(CERT_PASSWORD_MAX)
password?: string;
@IsOptional()
@IsIn(BUILD_PFX_ENCRYPTIONS)
pfxEncryption?: (typeof BUILD_PFX_ENCRYPTIONS)[number];
@IsOptional() @IsOptional()
@IsString() @IsString()
@MaxLength(CERT_BASENAME_MAX) @MaxLength(CERT_BASENAME_MAX)
@@ -43,7 +43,7 @@ beforeEach(() => {
afterEach(cleanup); afterEach(cleanup);
describe('CertManagerPage', () => { describe('CertManagerPage', () => {
it('zeigt Titel und die Reiter in der Reihenfolge Dateien, Analysieren, Aufteilen, Zusammenführen', () => { it('zeigt Titel und die Reiter in der Reihenfolge Dateien, Analysieren, Aufteilen, Zusammenführen, Konvertieren', () => {
render(<CertManagerPage />); render(<CertManagerPage />);
expect(screen.getByRole('heading', { name: 'Zertifikat-Manager' })).toBeInTheDocument(); expect(screen.getByRole('heading', { name: 'Zertifikat-Manager' })).toBeInTheDocument();
const nav = screen.getByRole('navigation'); const nav = screen.getByRole('navigation');
@@ -53,6 +53,7 @@ describe('CertManagerPage', () => {
'Analysieren', 'Analysieren',
'Aufteilen', 'Aufteilen',
'Zusammenführen', 'Zusammenführen',
'Konvertieren',
]); ]);
expect(tabs[0]).toHaveAttribute('aria-current', 'page'); expect(tabs[0]).toHaveAttribute('aria-current', 'page');
for (const tab of tabs.slice(1)) expect(tab).not.toHaveAttribute('aria-current'); for (const tab of tabs.slice(1)) expect(tab).not.toHaveAttribute('aria-current');
@@ -92,6 +93,7 @@ describe('CertManagerPage', () => {
it.each([ it.each([
'Analysieren', 'Analysieren',
'Aufteilen', 'Aufteilen',
'Konvertieren',
])('%s mit leerem Arbeitsbereich: Hinweis auf den Reiter „Dateien“', (tab) => { ])('%s mit leerem Arbeitsbereich: Hinweis auf den Reiter „Dateien“', (tab) => {
render(<CertManagerPage />); render(<CertManagerPage />);
fireEvent.click(screen.getByRole('button', { name: tab })); fireEvent.click(screen.getByRole('button', { name: tab }));
@@ -0,0 +1,212 @@
import { cleanup, fireEvent, render as rtlRender, screen, waitFor } from '@testing-library/react';
import { NextIntlClientProvider } from 'next-intl';
import type { ReactElement } from 'react';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import de from '@/messages/de.json';
import type { AnalysisResult, AnyItem, CertItem, CsrItem, KeyItem } from '../actions';
import { CertManagerRequestError } from '../actions';
import type { CertWorkspace } from '../use-cert-workspace';
import { ConvertTab } from './ConvertTab';
const mockBuild = vi.fn();
const mockDownload = vi.fn();
vi.mock('../actions', async (importOriginal) => {
const actual = await importOriginal<typeof import('../actions')>();
return {
...actual,
buildOutput: (...args: unknown[]) => mockBuild(...args),
downloadBase64: (...args: unknown[]) => mockDownload(...args),
};
});
function render(ui: ReactElement) {
return rtlRender(
<NextIntlClientProvider locale="de" messages={de} timeZone="Europe/Berlin">
{ui}
</NextIntlClientProvider>,
);
}
const leaf: CertItem = {
id: 'c-leaf',
kind: 'certificate',
role: 'end-entity',
sources: [{ file: 0, path: 'leaf.pem' }],
pem: 'PEM-LEAF',
baseName: 'www.example.test',
cn: 'www.example.test',
organization: '',
issuerCn: 'Test Inter',
issuerOrganization: '',
notBefore: '2026-01-01T00:00:00.000Z',
notAfter: '2126-01-01T00:00:00.000Z',
isExpired: false,
daysLeft: 36000,
san: [],
keyType: 'RSA',
keyBits: 2048,
curve: null,
serialNumber: '01',
sha256: '',
sha1: '',
isCa: false,
selfSigned: false,
aiaIssuerUrls: [],
keyId: 'k-1',
csrIds: [],
};
const key: KeyItem = {
id: 'k-1',
kind: 'privateKey',
sources: [{ file: 1, path: 'leaf-key.pem' }],
pem: 'PEM-KEY',
baseName: 'schluessel',
keyType: 'RSA',
keyBits: 2048,
curve: null,
wasEncrypted: false,
certIds: ['c-leaf'],
};
const csr: CsrItem = {
id: 'r-1',
kind: 'csr',
sources: [{ file: 2, path: 'leaf.csr' }],
pem: 'PEM-CSR',
baseName: 'anfrage-www',
cn: 'www.example.test',
organization: '',
san: [],
keyType: 'RSA',
keyBits: 2048,
curve: null,
keyId: 'k-1',
certIds: ['c-leaf'],
};
function workspace(items: AnyItem[]): CertWorkspace {
const analysis: AnalysisResult = { items, chains: [], locked: [], ignored: [] };
return {
entries: [],
analysis,
analysisIds: [],
status: 'idle',
errorKey: null,
addFiles: () => [],
addText: () => null,
setPassword: () => {},
remove: () => {},
clear: () => {},
retry: () => {},
};
}
beforeEach(() => {
mockBuild.mockReset();
mockDownload.mockReset();
mockBuild.mockResolvedValue({
files: [{ filename: 'out.cer', content: 'QQ==', mimeType: 'application/pkix-cert' }],
chainComplete: true,
missingIssuerCn: null,
});
});
afterEach(cleanup);
const select = (name: string) => screen.getByRole('combobox', { name });
const optionNames = (name: string) =>
Array.from(select(name).querySelectorAll('option')).map((o) => o.textContent);
describe('ConvertTab', () => {
it('fasst die Teile nach Art zusammen: Zertifikate, Schluessel, Anfragen', () => {
render(<ConvertTab workspace={workspace([leaf, key, csr])} />);
const groups = Array.from(
select('Was soll umgewandelt werden?').querySelectorAll('optgroup'),
).map((g) => g.label);
expect(groups).toEqual(['Zertifikate', 'Private Schlüssel', 'Zertifikatsanfragen']);
});
it('Zertifikat: vier Formate, Download mit genau Inhalt, Format und PEM', async () => {
render(<ConvertTab workspace={workspace([leaf, key, csr])} />);
expect(optionNames('Zielformat')).toEqual([
'PEM (.crt)',
'DER (.cer)',
'PKCS#7 (.p7b)',
'PKCS#7, binär (.p7c)',
]);
fireEvent.change(select('Zielformat'), { target: { value: 'der' } });
fireEvent.click(screen.getByRole('button', { name: 'Herunterladen' }));
await waitFor(() => expect(mockDownload).toHaveBeenCalledTimes(1));
expect(mockBuild).toHaveBeenCalledWith({ content: 'leaf', format: 'der', certPem: 'PEM-LEAF' });
expect(mockDownload).toHaveBeenCalledWith('out.cer', 'QQ==', 'application/pkix-cert');
});
it('Schluessel: drei Formate, kein Passwort ohne Haken, Dateiname nach dem Zertifikat', async () => {
render(<ConvertTab workspace={workspace([leaf, key])} />);
fireEvent.change(select('Was soll umgewandelt werden?'), { target: { value: 'k-1' } });
expect(optionNames('Zielformat')).toEqual([
'PKCS#8 (.key)',
'Traditionell (PKCS#1 für RSA, SEC1 für EC)',
'PKCS#8, binär (.key.der)',
]);
fireEvent.change(select('Zielformat'), { target: { value: 'traditional' } });
fireEvent.click(screen.getByRole('button', { name: 'Herunterladen' }));
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild).toHaveBeenCalledWith({
content: 'key',
format: 'traditional',
keyPem: 'PEM-KEY',
baseName: 'www.example.test',
});
expect(mockBuild.mock.calls[0][0]).not.toHaveProperty('password');
});
it('Schluessel mit Passwort schuetzen: ohne Passwort gesperrt, mit Passwort gesendet', async () => {
render(<ConvertTab workspace={workspace([key])} />);
fireEvent.click(screen.getByRole('checkbox', { name: 'Schlüssel mit Passwort schützen' }));
const button = screen.getByRole('button', { name: 'Herunterladen' });
expect(button).toBeDisabled();
fireEvent.change(screen.getByLabelText('Passwort für den Schlüssel'), {
target: { value: 'Neu-Pass-2026' },
});
expect(button).toBeEnabled();
fireEvent.click(button);
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild).toHaveBeenCalledWith({
content: 'key',
format: 'pkcs8',
keyPem: 'PEM-KEY',
baseName: undefined,
password: 'Neu-Pass-2026',
});
});
it('Anfrage: PEM und DER, die Anfrage geht in csrPem', async () => {
render(<ConvertTab workspace={workspace([csr])} />);
expect(optionNames('Zielformat')).toEqual(['PEM (.csr)', 'DER (.csr.der)']);
fireEvent.change(select('Zielformat'), { target: { value: 'der' } });
fireEvent.click(screen.getByRole('button', { name: 'Herunterladen' }));
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild).toHaveBeenCalledWith({
content: 'csr',
format: 'der',
csrPem: 'PEM-CSR',
baseName: 'anfrage-www',
});
});
it('ein Fehlercode der API zeigt den deutschen Text und laedt nichts herunter', async () => {
mockBuild.mockRejectedValueOnce(new CertManagerRequestError(400, 'formatNotPossible'));
render(<ConvertTab workspace={workspace([key])} />);
fireEvent.click(screen.getByRole('button', { name: 'Herunterladen' }));
expect(await screen.findByRole('alert')).toHaveTextContent(
'Dieses Format ist für den Schlüsseltyp nicht möglich',
);
expect(mockDownload).not.toHaveBeenCalled();
});
it('ohne erkannte Teile steht ein Hinweis', () => {
render(<ConvertTab workspace={workspace([])} />);
expect(screen.getByText(/noch nichts erkannt/)).toBeInTheDocument();
expect(screen.queryByRole('button', { name: 'Herunterladen' })).toBeNull();
});
});
@@ -0,0 +1,218 @@
'use client';
import { useTranslations } from 'next-intl';
import { useState } from 'react';
import {
type AnyItem,
buildOutput,
type CertItem,
type CsrItem,
certErrorKey,
downloadBase64,
type KeyItem,
} from '../actions';
import type { CertWorkspace } from '../use-cert-workspace';
import { PasswordInput } from './PasswordInput';
interface ConvertTabProps {
workspace: CertWorkspace;
}
/** Formate je Art; die Kennung geht unveraendert an die API, der Text steht unter convert.formats.<labelKey>. */
const FORMATS = {
certificate: [
{ id: 'pem', labelKey: 'certPem' },
{ id: 'der', labelKey: 'certDer' },
{ id: 'p7b', labelKey: 'p7b' },
{ id: 'p7c', labelKey: 'p7c' },
],
privateKey: [
{ id: 'pkcs8', labelKey: 'pkcs8' },
{ id: 'traditional', labelKey: 'traditional' },
{ id: 'pkcs8-der', labelKey: 'pkcs8Der' },
],
csr: [
{ id: 'pem', labelKey: 'csrPem' },
{ id: 'der', labelKey: 'csrDer' },
],
} as const;
function nameOf(item: AnyItem): string {
return item.kind === 'privateKey' ? item.baseName : item.cn || item.baseName;
}
/**
* Reiter „Konvertieren“: ein einzelnes Teil des Arbeitsbereichs (Zertifikat, privater Schluessel oder
* Zertifikatsanfrage) in ein anderes Format umwandeln. Die API baut die Datei; der Schluessel wird nur
* fuer diese Anfrage gesendet und nirgends gespeichert. Das Passwort wird nur gesendet, wenn der
* Schluessel damit geschuetzt werden soll.
*/
export function ConvertTab({ workspace }: ConvertTabProps) {
const t = useTranslations('certManager');
const [selectedId, setSelectedId] = useState<string | null>(null);
const [formats, setFormats] = useState<Record<string, string>>({});
const [protect, setProtect] = useState(false);
const [keyPassword, setKeyPassword] = useState('');
const [busy, setBusy] = useState(false);
const [errorKey, setErrorKey] = useState<string | null>(null);
const items = workspace.analysis?.items ?? [];
const certs = items.filter((i): i is CertItem => i.kind === 'certificate');
const keys = items.filter((i): i is KeyItem => i.kind === 'privateKey');
const csrs = items.filter((i): i is CsrItem => i.kind === 'csr');
if (!workspace.analysis) {
return workspace.status === 'analyzing' ? (
<p role="status" className="text-sm text-muted-foreground">
{t('files.analyzing')}
</p>
) : null;
}
if (items.length === 0) {
return <p className="text-sm text-muted-foreground">{t('convert.nothingFound')}</p>;
}
const item = items.find((i) => i.id === selectedId) ?? items[0];
const options = FORMATS[item.kind];
const format = options.find((o) => o.id === formats[item.id])?.id ?? options[0].id;
const isKey = item.kind === 'privateKey';
const needsPassword = isKey && protect;
const ready = !needsPassword || keyPassword !== '';
const keyDescription = (key: KeyItem) =>
key.keyType === 'RSA'
? t('analyze.keyRsa', { bits: key.keyBits ?? 0 })
: key.keyType === 'EC'
? t('analyze.keyEc', { curve: key.curve ?? '' })
: key.keyType;
const convert = async () => {
setBusy(true);
setErrorKey(null);
try {
let request: Parameters<typeof buildOutput>[0];
if (item.kind === 'certificate') {
request = { content: 'leaf', format, certPem: item.pem };
} else if (item.kind === 'csr') {
request = { content: 'csr', format, csrPem: item.pem, baseName: item.baseName };
} else {
// Dateiname nach dem zugehoerigen Zertifikat, wenn es eines gibt
const owner = certs.find((c) => item.certIds.includes(c.id));
request = {
content: 'key',
format,
keyPem: item.pem,
...(owner ? { baseName: owner.baseName } : {}),
...(protect ? { password: keyPassword } : {}),
};
}
const result = await buildOutput(request);
for (const file of result.files) downloadBase64(file.filename, file.content, file.mimeType);
} catch (error) {
setErrorKey(certErrorKey(error));
} finally {
setBusy(false);
}
};
return (
<div className="space-y-5">
<p className="text-sm text-muted-foreground">{t('convert.intro')}</p>
<div className="flex flex-wrap items-center gap-2">
<label htmlFor="cert-convert-item" className="text-sm text-foreground">
{t('convert.item')}
</label>
<select
id="cert-convert-item"
value={item.id}
onChange={(e) => setSelectedId(e.target.value)}
className="min-w-64 max-w-full rounded border border-border bg-background px-3 py-1.5 text-sm text-foreground focus-visible:outline-none focus-visible:ring-2 focus-visible:ring-ring"
>
{certs.length > 0 && (
<optgroup label={t('convert.groupCertificates')}>
{certs.map((c) => (
<option key={c.id} value={c.id}>
{`${nameOf(c)} (${t(`roles.${c.role}`)})`}
</option>
))}
</optgroup>
)}
{keys.length > 0 && (
<optgroup label={t('convert.groupKeys')}>
{keys.map((k) => (
<option key={k.id} value={k.id}>
{`${t('roles.privateKey')} (${keyDescription(k)})`}
</option>
))}
</optgroup>
)}
{csrs.length > 0 && (
<optgroup label={t('convert.groupCsrs')}>
{csrs.map((r) => (
<option key={r.id} value={r.id}>
{`${nameOf(r)} (${t('roles.csr')})`}
</option>
))}
</optgroup>
)}
</select>
</div>
<div className="flex flex-wrap items-center gap-2">
<label htmlFor="cert-convert-format" className="text-sm text-foreground">
{t('convert.format')}
</label>
<select
id="cert-convert-format"
value={format}
onChange={(e) => setFormats((f) => ({ ...f, [item.id]: e.target.value }))}
className="rounded border border-border bg-background px-3 py-1.5 text-sm text-foreground focus-visible:outline-none focus-visible:ring-2 focus-visible:ring-ring"
>
{options.map((o) => (
<option key={o.id} value={o.id}>
{t(`convert.formats.${o.labelKey}`)}
</option>
))}
</select>
</div>
{isKey && (
<div className="space-y-3">
<p className="text-xs text-muted-foreground">{t('convert.keyNote')}</p>
<label className="flex items-center gap-2 text-sm text-foreground">
<input
type="checkbox"
checked={protect}
onChange={(e) => {
setProtect(e.target.checked);
if (!e.target.checked) setKeyPassword('');
}}
/>
{t('convert.protectKey')}
</label>
{protect && (
<PasswordInput
label={t('convert.keyPassword')}
value={keyPassword}
onChange={setKeyPassword}
/>
)}
</div>
)}
<button type="button" disabled={busy || !ready} onClick={convert} className="btn btn-primary">
{busy ? t('convert.busy') : t('convert.download')}
</button>
{errorKey && (
<p
role="alert"
className="rounded-lg border border-border bg-muted p-3 text-sm text-foreground"
>
{t(`errors.${errorKey}`)}
</p>
)}
</div>
);
}
@@ -3,7 +3,7 @@ import { NextIntlClientProvider } from 'next-intl';
import type { ReactElement } from 'react'; import type { ReactElement } from 'react';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest'; import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import de from '@/messages/de.json'; import de from '@/messages/de.json';
import type { AnalysisResult, CertItem, ChainInfo } from '../actions'; import type { AnalysisResult, CertItem, ChainInfo, KeyItem } from '../actions';
import { CertManagerRequestError } from '../actions'; import { CertManagerRequestError } from '../actions';
import type { CertWorkspace } from '../use-cert-workspace'; import type { CertWorkspace } from '../use-cert-workspace';
import { MergeTab } from './MergeTab'; import { MergeTab } from './MergeTab';
@@ -68,7 +68,7 @@ function chain(over: Partial<ChainInfo> & Pick<ChainInfo, 'headId' | 'path'>): C
return { rootId: null, complete: false, gap: null, alternatives: 0, ...over }; return { rootId: null, complete: false, gap: null, alternatives: 0, ...over };
} }
function workspace(items: CertItem[], chains: ChainInfo[]): CertWorkspace { function workspace(items: (CertItem | KeyItem)[], chains: ChainInfo[]): CertWorkspace {
const analysis: AnalysisResult = { items, chains, locked: [], ignored: [] }; const analysis: AnalysisResult = { items, chains, locked: [], ignored: [] };
return { return {
entries: [], entries: [],
@@ -218,4 +218,127 @@ describe('MergeTab', () => {
expect(screen.getByText(/noch kein Zertifikat erkannt/)).toBeInTheDocument(); expect(screen.getByText(/noch kein Zertifikat erkannt/)).toBeInTheDocument();
expect(screen.queryByRole('button', { name: 'Fullchain herunterladen' })).toBeNull(); expect(screen.queryByRole('button', { name: 'Fullchain herunterladen' })).toBeNull();
}); });
it('Format der Kette: PEM, PKCS#7 (.p7b) und PKCS#7 binaer (.p7c)', async () => {
render(<MergeTab workspace={workspace([leaf, inter, root], [completeChain])} />);
const select = screen.getByRole('combobox', { name: 'Format der Kette' });
expect(Array.from(select.querySelectorAll('option')).map((o) => o.textContent)).toEqual([
'PEM (.pem)',
'PKCS#7 (.p7b)',
'PKCS#7, binär (.p7c)',
]);
fireEvent.change(select, { target: { value: 'p7c' } });
fireEvent.click(screen.getByRole('button', { name: 'Nur Kette herunterladen' }));
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild.mock.calls[0][0]).toMatchObject({ content: 'chain', format: 'p7c' });
});
});
describe('MergeTab: Zertifikat und Schluessel, PFX', () => {
const key: KeyItem = {
id: 'k-leaf',
kind: 'privateKey',
sources: [{ file: 1, path: 'key.pem' }],
pem: 'PEM-KEY',
baseName: 'schluessel',
keyType: 'RSA',
keyBits: 2048,
curve: null,
wasEncrypted: false,
certIds: ['c-leaf'],
};
const keyed = { ...leaf, keyId: 'k-leaf' };
it('ohne passenden Schluessel ist der Bundle-Knopf gesperrt und der Grund steht da', () => {
render(<MergeTab workspace={workspace([leaf, inter, root], [completeChain])} />);
expect(
screen.getByRole('button', { name: 'Zertifikat und Schlüssel (eine PEM-Datei)' }),
).toBeDisabled();
expect(screen.getByText(/kein passender privater Schlüssel/)).toBeInTheDocument();
});
it('mit Schluessel: ein Aufruf mit leafKey und dem Schluessel', async () => {
render(<MergeTab workspace={workspace([keyed, inter, root, key], [completeChain])} />);
const button = screen.getByRole('button', {
name: 'Zertifikat und Schlüssel (eine PEM-Datei)',
});
expect(button).toBeEnabled();
fireEvent.click(button);
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild).toHaveBeenCalledWith({
content: 'leafKey',
format: 'pem',
certPem: 'PEM-c-leaf',
poolPems: ['PEM-c-inter', 'PEM-c-root'],
includeRoot: false,
baseName: 'www.example.test',
keyPem: 'PEM-KEY',
});
});
it('PFX: Standard ist Kompatibel, ohne Passwort gesperrt, bei ungleicher Wiederholung gesperrt', () => {
render(<MergeTab workspace={workspace([keyed, inter, root, key], [completeChain])} />);
const encryption = screen.getByRole('combobox', { name: 'Verschlüsselung' });
expect((encryption as HTMLSelectElement).value).toBe('compat');
expect(Array.from(encryption.querySelectorAll('option')).map((o) => o.textContent)).toEqual([
'Kompatibel (auch ältere Windows-Server)',
'Modern (AES-256)',
]);
expect(screen.getByText(/Windows Server 2016/)).toBeInTheDocument();
const download = screen.getByRole('button', { name: 'PFX-Datei herunterladen' });
expect(download).toBeDisabled();
fireEvent.change(screen.getByLabelText('PFX-Passwort'), { target: { value: 'Neu-Pass-2026' } });
fireEvent.change(screen.getByLabelText('Passwort wiederholen'), {
target: { value: 'anders' },
});
expect(screen.getByText('Die beiden Passwörter stimmen nicht überein.')).toBeInTheDocument();
expect(download).toBeDisabled();
fireEvent.change(screen.getByLabelText('Passwort wiederholen'), {
target: { value: 'Neu-Pass-2026' },
});
expect(download).toBeEnabled();
});
it('PFX herunterladen: Inhalt pfx mit Schluessel, Passwort und gewaehlter Verschluesselung', async () => {
render(<MergeTab workspace={workspace([keyed, inter, root, key], [completeChain])} />);
fireEvent.change(screen.getByRole('combobox', { name: 'Verschlüsselung' }), {
target: { value: 'modern' },
});
fireEvent.change(screen.getByLabelText('PFX-Passwort'), { target: { value: 'Neu-Pass-2026' } });
fireEvent.change(screen.getByLabelText('Passwort wiederholen'), {
target: { value: 'Neu-Pass-2026' },
});
fireEvent.click(screen.getByRole('button', { name: 'PFX-Datei herunterladen' }));
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild).toHaveBeenCalledWith({
content: 'pfx',
certPem: 'PEM-c-leaf',
poolPems: ['PEM-c-inter', 'PEM-c-root'],
includeRoot: false,
baseName: 'www.example.test',
keyPem: 'PEM-KEY',
password: 'Neu-Pass-2026',
pfxEncryption: 'modern',
});
expect(mockDownload).toHaveBeenCalledTimes(1);
});
it('PFX ohne Schluessel: der Hinweis steht da und keyPem fehlt in der Anfrage', async () => {
render(<MergeTab workspace={workspace([leaf, inter, root], [completeChain])} />);
expect(screen.getByText(/enthält die PFX-Datei nur die Zertifikate/)).toBeInTheDocument();
fireEvent.change(screen.getByLabelText('PFX-Passwort'), { target: { value: 'pw' } });
fireEvent.change(screen.getByLabelText('Passwort wiederholen'), { target: { value: 'pw' } });
fireEvent.click(screen.getByRole('button', { name: 'PFX-Datei herunterladen' }));
await waitFor(() => expect(mockBuild).toHaveBeenCalled());
expect(mockBuild.mock.calls[0][0]).not.toHaveProperty('keyPem');
expect(mockBuild.mock.calls[0][0]).toMatchObject({ content: 'pfx', pfxEncryption: 'compat' });
});
it('das Passwort erscheint nirgends im dargestellten Text', () => {
const { container } = render(
<MergeTab workspace={workspace([keyed, inter, root, key], [completeChain])} />,
);
fireEvent.change(screen.getByLabelText('PFX-Passwort'), { target: { value: 'Neu-Pass-2026' } });
expect(container.textContent).not.toContain('Neu-Pass-2026');
});
}); });
@@ -8,9 +8,14 @@ import {
type CertItem, type CertItem,
certErrorKey, certErrorKey,
downloadBase64, downloadBase64,
type KeyItem,
} from '../actions'; } from '../actions';
import type { CertWorkspace } from '../use-cert-workspace'; import type { CertWorkspace } from '../use-cert-workspace';
import { ChainView } from './ChainView'; import { ChainView } from './ChainView';
import { type PfxEncryption, PfxOptions, pfxPasswordReady } from './PfxOptions';
const CHAIN_FORMATS = ['pem', 'p7b', 'p7c'] as const;
type ChainFormat = (typeof CHAIN_FORMATS)[number];
interface MergeTabProps { interface MergeTabProps {
workspace: CertWorkspace; workspace: CertWorkspace;
@@ -18,19 +23,28 @@ interface MergeTabProps {
/** /**
* Reiter „Zusammenführen“: Tessera ordnet Serverzertifikat, Zwischenzertifikate und Wurzel selbst * Reiter „Zusammenführen“: Tessera ordnet Serverzertifikat, Zwischenzertifikate und Wurzel selbst
* (die API prueft Aussteller und Signatur) und liefert Fullchain oder Nur Kette. Das * (die API prueft Aussteller und Signatur) und liefert Fullchain oder Nur Kette (PEM, .p7b, .p7c),
* Stammzertifikat kommt nur mit, wenn es angehakt ist (D-02, Vorgabe aus). * Zertifikat und Schluessel in einer PEM-Datei oder eine PFX-Datei. Das Stammzertifikat kommt nur
* mit, wenn es angehakt ist (D-02, Vorgabe aus). Die PFX-Passwoerter bleiben im Zustand dieses
* Reiters und gehen nur in die Anfrage.
*/ */
export function MergeTab({ workspace }: MergeTabProps) { export function MergeTab({ workspace }: MergeTabProps) {
const t = useTranslations('certManager'); const t = useTranslations('certManager');
const [selectedHead, setSelectedHead] = useState<string | null>(null); const [selectedHead, setSelectedHead] = useState<string | null>(null);
const [includeRoot, setIncludeRoot] = useState(false); const [includeRoot, setIncludeRoot] = useState(false);
const [format, setFormat] = useState<ChainFormat>('pem');
const [pfxPassword, setPfxPassword] = useState('');
const [pfxRepeat, setPfxRepeat] = useState('');
const [pfxEncryption, setPfxEncryption] = useState<PfxEncryption>('compat');
const [busy, setBusy] = useState<BuildContent | null>(null); const [busy, setBusy] = useState<BuildContent | null>(null);
const [errorKey, setErrorKey] = useState<string | null>(null); const [errorKey, setErrorKey] = useState<string | null>(null);
const certs = (workspace.analysis?.items ?? []).filter( const certs = (workspace.analysis?.items ?? []).filter(
(i): i is CertItem => i.kind === 'certificate', (i): i is CertItem => i.kind === 'certificate',
); );
const keys = (workspace.analysis?.items ?? []).filter(
(i): i is KeyItem => i.kind === 'privateKey',
);
const chains = workspace.analysis?.chains ?? []; const chains = workspace.analysis?.chains ?? [];
if (workspace.status === 'analyzing' && !workspace.analysis) { if (workspace.status === 'analyzing' && !workspace.analysis) {
@@ -54,19 +68,32 @@ export function MergeTab({ workspace }: MergeTabProps) {
(c) => c.id !== chain.headId && (includeRoot || c.id !== chain.rootId), (c) => c.id !== chain.headId && (includeRoot || c.id !== chain.rootId),
); );
const download = async (content: 'fullchain' | 'chain') => { const key = head?.keyId ? keys.find((k) => k.id === head.keyId) : undefined;
const download = async (content: BuildContent) => {
if (!head) return; if (!head) return;
setBusy(content); setBusy(content);
setErrorKey(null); setErrorKey(null);
try { try {
const result = await buildOutput({ const base = {
content,
format: 'pem',
certPem: head.pem, certPem: head.pem,
poolPems: members.filter((c) => c.id !== head.id).map((c) => c.pem), poolPems: members.filter((c) => c.id !== head.id).map((c) => c.pem),
includeRoot, includeRoot,
baseName: head.baseName, baseName: head.baseName,
}); };
const result = await buildOutput(
content === 'leafKey'
? { content, format: 'pem', ...base, keyPem: key?.pem }
: content === 'pfx'
? {
content,
...base,
...(key ? { keyPem: key.pem } : {}),
password: pfxPassword,
pfxEncryption,
}
: { content, format, ...base },
);
for (const file of result.files) downloadBase64(file.filename, file.content, file.mimeType); for (const file of result.files) downloadBase64(file.filename, file.content, file.mimeType);
} catch (error) { } catch (error) {
setErrorKey(certErrorKey(error)); setErrorKey(certErrorKey(error));
@@ -116,6 +143,24 @@ export function MergeTab({ workspace }: MergeTabProps) {
)} )}
</div> </div>
<div className="flex flex-wrap items-center gap-2">
<label htmlFor="cert-merge-format" className="text-sm text-foreground">
{t('merge.formatLabel')}
</label>
<select
id="cert-merge-format"
value={format}
onChange={(e) => setFormat(e.target.value as ChainFormat)}
className="rounded border border-border bg-background px-3 py-1.5 text-sm text-foreground focus-visible:outline-none focus-visible:ring-2 focus-visible:ring-ring"
>
{CHAIN_FORMATS.map((f) => (
<option key={f} value={f}>
{t(`merge.formats.${f}`)}
</option>
))}
</select>
</div>
<div className="flex flex-wrap gap-3"> <div className="flex flex-wrap gap-3">
<button <button
type="button" type="button"
@@ -138,6 +183,42 @@ export function MergeTab({ workspace }: MergeTabProps) {
<p className="text-xs text-muted-foreground">{t('merge.chainNeedsIssuer')}</p> <p className="text-xs text-muted-foreground">{t('merge.chainNeedsIssuer')}</p>
)} )}
<section className="space-y-2 border-t border-border pt-4">
<h3 className="text-sm font-semibold text-foreground">{t('merge.bundleTitle')}</h3>
<p className="text-xs text-muted-foreground">{t('merge.bundleHint')}</p>
<button
type="button"
disabled={busy !== null || !key}
onClick={() => download('leafKey')}
className="btn btn-secondary"
>
{busy === 'leafKey' ? t('merge.busy') : t('merge.downloadBundle')}
</button>
{!key && <p className="text-xs text-muted-foreground">{t('merge.bundleNeedsKey')}</p>}
</section>
<section className="space-y-3 border-t border-border pt-4">
<h3 className="text-sm font-semibold text-foreground">{t('merge.pfxTitle')}</h3>
<p className="text-xs text-muted-foreground">{t('merge.pfxIntro')}</p>
<PfxOptions
password={pfxPassword}
repeat={pfxRepeat}
encryption={pfxEncryption}
onPassword={setPfxPassword}
onRepeat={setPfxRepeat}
onEncryption={setPfxEncryption}
/>
{!key && <p className="text-xs text-muted-foreground">{t('merge.pfxNoKey')}</p>}
<button
type="button"
disabled={busy !== null || !pfxPasswordReady(pfxPassword, pfxRepeat)}
onClick={() => download('pfx')}
className="btn btn-secondary"
>
{busy === 'pfx' ? t('merge.busy') : t('merge.downloadPfx')}
</button>
</section>
{errorKey && ( {errorKey && (
<p <p
role="alert" role="alert"
@@ -0,0 +1,65 @@
'use client';
import { useTranslations } from 'next-intl';
import { useId } from 'react';
import { PasswordInput } from './PasswordInput';
export type PfxEncryption = 'compat' | 'modern';
interface PfxOptionsProps {
password: string;
repeat: string;
encryption: PfxEncryption;
onPassword: (value: string) => void;
onRepeat: (value: string) => void;
onEncryption: (value: PfxEncryption) => void;
}
/** Die PFX-Datei darf erst erzeugt werden, wenn ein Passwort gesetzt ist und beide Eingaben gleich sind. */
export function pfxPasswordReady(password: string, repeat: string): boolean {
return password !== '' && password === repeat;
}
/**
* Passwort (zweimal) und Verschluesselung fuer PFX-Dateien (D-07). Vorgabe ist „Kompatibel“
* (3DES/SHA-1): Windows Server 2016 und aeltere koennen AES-256 oft nicht oeffnen.
* Das Passwort bleibt im Zustand des Reiters, wird nirgends gespeichert und nur in der Anfrage gesendet.
*/
export function PfxOptions({
password,
repeat,
encryption,
onPassword,
onRepeat,
onEncryption,
}: PfxOptionsProps) {
const t = useTranslations('certManager');
const selectId = useId();
const mismatch = repeat !== '' && password !== repeat;
return (
<div className="space-y-3">
<PasswordInput label={t('pfx.password')} value={password} onChange={onPassword} />
<PasswordInput label={t('pfx.repeat')} value={repeat} onChange={onRepeat} />
{mismatch && (
<p role="alert" className="text-sm text-foreground">
{t('pfx.mismatch')}
</p>
)}
<div className="flex flex-wrap items-center gap-2">
<label htmlFor={selectId} className="text-sm text-foreground">
{t('pfx.encryption')}
</label>
<select
id={selectId}
value={encryption}
onChange={(e) => onEncryption(e.target.value as PfxEncryption)}
className="rounded border border-border bg-background px-3 py-1.5 text-sm text-foreground focus-visible:outline-none focus-visible:ring-2 focus-visible:ring-ring"
>
<option value="compat">{t('pfx.compat')}</option>
<option value="modern">{t('pfx.modern')}</option>
</select>
</div>
<p className="text-xs text-muted-foreground">{t('pfx.modernHint')}</p>
</div>
);
}
@@ -5,13 +5,14 @@ import { useState } from 'react';
import { TabBar } from '@/components/accounting/tab-bar'; import { TabBar } from '@/components/accounting/tab-bar';
import { PageHeader } from '@/components/layout/page-header'; import { PageHeader } from '@/components/layout/page-header';
import { AnalyzeTab } from './components/AnalyzeTab'; import { AnalyzeTab } from './components/AnalyzeTab';
import { ConvertTab } from './components/ConvertTab';
import { EmptyWorkspace } from './components/EmptyWorkspace'; import { EmptyWorkspace } from './components/EmptyWorkspace';
import { FilesTab } from './components/FilesTab'; import { FilesTab } from './components/FilesTab';
import { MergeTab } from './components/MergeTab'; import { MergeTab } from './components/MergeTab';
import { SplitTab } from './components/SplitTab'; import { SplitTab } from './components/SplitTab';
import { useCertWorkspace } from './use-cert-workspace'; import { useCertWorkspace } from './use-cert-workspace';
type TabId = 'files' | 'analyze' | 'split' | 'merge'; type TabId = 'files' | 'analyze' | 'split' | 'merge' | 'convert';
/** /**
* CertManagerPage: Zertifikat-Manager rund um einen gemeinsamen Arbeitsbereich (quick-261009-ikt). * CertManagerPage: Zertifikat-Manager rund um einen gemeinsamen Arbeitsbereich (quick-261009-ikt).
@@ -32,6 +33,7 @@ export default function CertManagerPage() {
{ id: 'analyze', label: t('tabs.analyze') }, { id: 'analyze', label: t('tabs.analyze') },
{ id: 'split', label: t('tabs.split') }, { id: 'split', label: t('tabs.split') },
{ id: 'merge', label: t('tabs.merge') }, { id: 'merge', label: t('tabs.merge') },
{ id: 'convert', label: t('tabs.convert') },
]; ];
return ( return (
@@ -49,6 +51,7 @@ export default function CertManagerPage() {
{activeTab === 'analyze' && <AnalyzeTab workspace={workspace} />} {activeTab === 'analyze' && <AnalyzeTab workspace={workspace} />}
{activeTab === 'split' && <SplitTab workspace={workspace} />} {activeTab === 'split' && <SplitTab workspace={workspace} />}
{activeTab === 'merge' && <MergeTab workspace={workspace} />} {activeTab === 'merge' && <MergeTab workspace={workspace} />}
{activeTab === 'convert' && <ConvertTab workspace={workspace} />}
</div> </div>
)} )}
</div> </div>
+51 -2
View File
@@ -1256,7 +1256,8 @@
"filesWithCount": "Dateien ({count})", "filesWithCount": "Dateien ({count})",
"analyze": "Analysieren", "analyze": "Analysieren",
"split": "Aufteilen", "split": "Aufteilen",
"merge": "Zusammenführen" "merge": "Zusammenführen",
"convert": "Konvertieren"
}, },
"roles": { "roles": {
"end-entity": "Serverzertifikat", "end-entity": "Serverzertifikat",
@@ -1398,7 +1399,21 @@
"downloadFullchain": "Fullchain herunterladen", "downloadFullchain": "Fullchain herunterladen",
"downloadChain": "Nur Kette herunterladen", "downloadChain": "Nur Kette herunterladen",
"busy": "Wird erstellt …", "busy": "Wird erstellt …",
"chainNeedsIssuer": "Für „Nur Kette“ fehlt ein Zwischenzertifikat. Fügen Sie es im Reiter „Dateien“ hinzu." "chainNeedsIssuer": "Für „Nur Kette“ fehlt ein Zwischenzertifikat. Fügen Sie es im Reiter „Dateien“ hinzu.",
"formatLabel": "Format der Kette",
"formats": {
"pem": "PEM (.pem)",
"p7b": "PKCS#7 (.p7b)",
"p7c": "PKCS#7, binär (.p7c)"
},
"bundleTitle": "Zertifikat und Schlüssel",
"bundleHint": "Eine einzige PEM-Datei mit Serverzertifikat, Zwischenzertifikaten und dem privaten Schlüssel. Bewahren Sie sie sicher auf.",
"downloadBundle": "Zertifikat und Schlüssel (eine PEM-Datei)",
"bundleNeedsKey": "Dazu liegt noch kein passender privater Schlüssel vor. Fügen Sie ihn im Reiter „Dateien“ hinzu.",
"pfxTitle": "PFX-Datei",
"pfxIntro": "Eine passwortgeschützte Datei mit Zertifikaten und Schlüssel, wie sie Windows, IIS und viele Geräte erwarten.",
"pfxNoKey": "Ohne passenden Schlüssel enthält die PFX-Datei nur die Zertifikate.",
"downloadPfx": "PFX-Datei herunterladen"
}, },
"chain": { "chain": {
"issuedBy": "Ausgestellt von {name}", "issuedBy": "Ausgestellt von {name}",
@@ -1411,6 +1426,40 @@
"passwordInput": { "passwordInput": {
"show": "Passwort anzeigen", "show": "Passwort anzeigen",
"hide": "Passwort verbergen" "hide": "Passwort verbergen"
},
"pfx": {
"password": "PFX-Passwort",
"repeat": "Passwort wiederholen",
"mismatch": "Die beiden Passwörter stimmen nicht überein.",
"encryption": "Verschlüsselung",
"compat": "Kompatibel (auch ältere Windows-Server)",
"modern": "Modern (AES-256)",
"modernHint": "Ältere Windows-Server, etwa Windows Server 2016, können die moderne Verschlüsselung oft nicht öffnen. Im Zweifel wählen Sie „Kompatibel“."
},
"convert": {
"intro": "Wandeln Sie ein einzelnes Teil Ihrer Dateien in ein anderes Format um.",
"nothingFound": "Es wurde noch nichts erkannt, das sich umwandeln ließe.",
"item": "Was soll umgewandelt werden?",
"format": "Zielformat",
"groupCertificates": "Zertifikate",
"groupKeys": "Private Schlüssel",
"groupCsrs": "Zertifikatsanfragen",
"formats": {
"certPem": "PEM (.crt)",
"certDer": "DER (.cer)",
"p7b": "PKCS#7 (.p7b)",
"p7c": "PKCS#7, binär (.p7c)",
"pkcs8": "PKCS#8 (.key)",
"traditional": "Traditionell (PKCS#1 für RSA, SEC1 für EC)",
"pkcs8Der": "PKCS#8, binär (.key.der)",
"csrPem": "PEM (.csr)",
"csrDer": "DER (.csr.der)"
},
"keyNote": "Der Schlüssel wird nur für die Umwandlung an Tessera gesendet und nirgends gespeichert.",
"protectKey": "Schlüssel mit Passwort schützen",
"keyPassword": "Passwort für den Schlüssel",
"download": "Herunterladen",
"busy": "Wird erstellt …"
} }
}, },
"tenderRadar": { "tenderRadar": {
+51 -2
View File
@@ -1256,7 +1256,8 @@
"filesWithCount": "Files ({count})", "filesWithCount": "Files ({count})",
"analyze": "Analyze", "analyze": "Analyze",
"split": "Split", "split": "Split",
"merge": "Merge" "merge": "Merge",
"convert": "Convert"
}, },
"roles": { "roles": {
"end-entity": "Server certificate", "end-entity": "Server certificate",
@@ -1398,7 +1399,21 @@
"downloadFullchain": "Download fullchain", "downloadFullchain": "Download fullchain",
"downloadChain": "Download chain only", "downloadChain": "Download chain only",
"busy": "Creating …", "busy": "Creating …",
"chainNeedsIssuer": "An intermediate certificate is missing for “chain only”. Add it in the “Files” tab." "chainNeedsIssuer": "An intermediate certificate is missing for “chain only”. Add it in the “Files” tab.",
"formatLabel": "Chain format",
"formats": {
"pem": "PEM (.pem)",
"p7b": "PKCS#7 (.p7b)",
"p7c": "PKCS#7, binary (.p7c)"
},
"bundleTitle": "Certificate and key",
"bundleHint": "A single PEM file with the server certificate, the intermediate certificates and the private key. Keep it safe.",
"downloadBundle": "Certificate and key (one PEM file)",
"bundleNeedsKey": "There is no matching private key yet. Add it in the “Files” tab.",
"pfxTitle": "PFX file",
"pfxIntro": "A password-protected file with certificates and key, as Windows, IIS and many devices expect it.",
"pfxNoKey": "Without a matching key the PFX file contains only the certificates.",
"downloadPfx": "Download PFX file"
}, },
"chain": { "chain": {
"issuedBy": "Issued by {name}", "issuedBy": "Issued by {name}",
@@ -1411,6 +1426,40 @@
"passwordInput": { "passwordInput": {
"show": "Show password", "show": "Show password",
"hide": "Hide password" "hide": "Hide password"
},
"pfx": {
"password": "PFX password",
"repeat": "Repeat password",
"mismatch": "The two passwords do not match.",
"encryption": "Encryption",
"compat": "Compatible (also older Windows servers)",
"modern": "Modern (AES-256)",
"modernHint": "Older Windows servers, such as Windows Server 2016, often cannot open the modern encryption. When in doubt, choose “Compatible”."
},
"convert": {
"intro": "Convert a single item of your files into another format.",
"nothingFound": "Nothing has been recognised yet that could be converted.",
"item": "What should be converted?",
"format": "Target format",
"groupCertificates": "Certificates",
"groupKeys": "Private keys",
"groupCsrs": "Certificate requests",
"formats": {
"certPem": "PEM (.crt)",
"certDer": "DER (.cer)",
"p7b": "PKCS#7 (.p7b)",
"p7c": "PKCS#7, binary (.p7c)",
"pkcs8": "PKCS#8 (.key)",
"traditional": "Traditional (PKCS#1 for RSA, SEC1 for EC)",
"pkcs8Der": "PKCS#8, binary (.key.der)",
"csrPem": "PEM (.csr)",
"csrDer": "DER (.csr.der)"
},
"keyNote": "The key is sent to Tessera only for the conversion and is not stored anywhere.",
"protectKey": "Protect the key with a password",
"keyPassword": "Password for the key",
"download": "Download",
"busy": "Creating …"
} }
}, },
"tenderRadar": { "tenderRadar": {
@@ -254,4 +254,7 @@ export const UMLAUT_ALLOWLIST: readonly string[] = [
'Passender', 'Passender',
'Passendes', 'Passendes',
'Passende', 'Passende',
// quick-261009-ikt Task 5: PFX und Konvertieren
'passwortgeschützte',
'AES',
]; ];