feat(ldap): encrypt the bind password at rest

The LDAP bind password was the only credential still stored in clear text.
CalendarSource, SmtpConfig, DkvModuleConfig and TenderEmailConfig have been
AES-256-GCM encrypted for a while; LDAP simply predated the encryption service
and was never brought along.

Hashing is not an option here: Tessera has to replay this password to bind
against the directory, so it must stay recoverable. Encryption at rest covers
the case a hash cannot help with either way -- a database dump or backup
leaving the host without the key, which lives in the application environment.
It does not protect against a compromised host, and does not pretend to.

Reuses CalendarCryptoService, the same provider SettingsModule, DkvModule and
TendersModule already inject, rather than introducing a second crypto path.
The name is a historical accident and is noted as such in LdapModule; renaming
it touches five modules and belongs in its own change.

Decryption sits in getConfig()/getAllActiveConfigs(), the two methods every
consumer already goes through, so callers keep reading a plain `bindPassword`
and the controller keeps masking it to '********' in responses.

The migration only renames the column -- SQL cannot encrypt, since the key is
not in the database. An idempotent bootstrap backfill encrypts rows written
before this change, and until it has run the read path passes a legacy
plaintext value through unchanged so the sync does not break in that window.
A failed decrypt throws rather than returning null: a wrong key must not read
as "no password configured" and silently turn an authenticated bind into an
anonymous one.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
This commit is contained in:
2026-08-11 14:10:52 +02:00
parent 149b5aa810
commit 4f687eaea9
5 changed files with 330 additions and 11 deletions
@@ -0,0 +1,22 @@
-- Das LDAP-Bind-Passwort lag als einziges Zugangsdatum im Klartext in der
-- Datenbank. CalendarSource, SmtpConfig, DkvModuleConfig und TenderEmailConfig
-- speichern ihre Zugangsdaten laengst AES-256-GCM-verschluesselt; LDAP war
-- schlicht frueher da als der Verschluesselungsdienst und wurde nie nachgezogen.
--
-- Hashen scheidet hier aus: Tessera muss sich mit genau diesem Passwort am
-- Domain Controller anmelden, braucht es also im Original. Deshalb symmetrische
-- Verschluesselung mit einem Schluessel ausserhalb der Datenbank.
--
-- Diese Migration benennt nur die Spalte um, damit am Schema ablesbar ist, was
-- drinsteht -- gleiche Namensform wie bei den vier anderen Feldern. Die
-- eigentliche Verschluesselung des vorhandenen Werts kann SQL nicht leisten
-- (der Schluessel liegt in der Anwendungsumgebung, nicht in der Datenbank):
-- die uebernimmt ein einmaliger, idempotenter Backfill beim naechsten Start
-- der API (LdapConfigService.encryptLegacyBindPasswordsOnBootstrap).
--
-- Bis dieser Backfill gelaufen ist, steht in der umbenannten Spalte weiterhin
-- Klartext. Der Lesepfad erkennt das an der fehlenden iv:authTag:ciphertext-Form
-- und reicht den Wert unveraendert durch, damit der LDAP-Sync in dem Zeitfenster
-- nicht bricht.
ALTER TABLE "LdapConfig" RENAME COLUMN "bindPassword" TO "encryptedBindPassword";
+1 -1
View File
@@ -69,7 +69,7 @@ model LdapConfig {
serverUrl String
baseDn String
bindDn String?
bindPassword String?
encryptedBindPassword String? // AES-256-GCM ciphertext (iv:authTag:ciphertext hex), wie CalendarSource/SmtpConfig
searchFilter String @default("(objectClass=person)")
syncIntervalMin Int @default(0)
isActive Boolean @default(true)
@@ -0,0 +1,178 @@
import { beforeEach, describe, expect, it, vi } from 'vitest';
import { LdapConfigService } from './ldap-config.service';
/**
* Das Bind-Passwort ist das einzige Zugangsdatum, das nicht gehasht werden
* kann — Tessera muss sich damit am Domain Controller anmelden, braucht es
* also im Original. Deshalb Verschluesselung, und deshalb diese Tests: sie
* halten fest, dass der Klartext nie in die Datenbank geschrieben wird, dass
* Aufrufer trotzdem weiterhin ein entschluesseltes `bindPassword` sehen, und
* dass ein Wert aus der Zeit vor der Verschluesselung den Sync nicht bricht.
*/
// Ein durchschaubarer Ersatz fuer AES-256-GCM, der die gespeicherte Form
// iv:authTag:ciphertext nachbildet — die Tests pruefen das Zusammenspiel,
// nicht die Krypto-Bibliothek.
const crypto = {
encrypt: vi.fn((plaintext: string) =>
['aa11', 'bb22', Buffer.from(plaintext, 'utf8').toString('hex')].join(':'),
),
decrypt: vi.fn((stored: string) => {
const [, , ciphertext] = stored.split(':');
return Buffer.from(ciphertext, 'hex').toString('utf8');
}),
};
const CONFIG_ROW = {
id: 'cfg1',
tenantId: 't1',
serverUrl: 'ldap://example',
baseDn: 'dc=example,dc=com',
bindDn: 'svc@example',
encryptedBindPassword: null as string | null,
searchFilter: '(objectClass=person)',
syncIntervalMin: 0,
isActive: true,
tlsRejectUnauthorized: true,
groupFilterDns: [] as string[],
userExcludeList: [] as string[],
fieldMappings: [],
};
describe('LdapConfigService — Bind-Passwort verschluesselt at rest', () => {
let prisma: any;
let service: LdapConfigService;
beforeEach(() => {
vi.clearAllMocks();
prisma = {
ldapConfig: {
findUnique: vi.fn(),
findMany: vi.fn().mockResolvedValue([]),
create: vi.fn((args: any) =>
Promise.resolve({ ...CONFIG_ROW, ...args.data }),
),
update: vi.fn((args: any) =>
Promise.resolve({ ...CONFIG_ROW, ...args.data }),
),
},
};
service = new LdapConfigService(prisma, crypto as any);
});
it('schreibt beim Anlegen den Chiffretext, nie den Klartext', async () => {
await service.createConfig('t1', {
serverUrl: 'ldap://example',
baseDn: 'dc=example,dc=com',
bindDn: 'svc@example',
bindPassword: 'geheim',
} as any);
const written = prisma.ldapConfig.create.mock.calls[0][0].data;
expect(written.encryptedBindPassword).toBe(
'aa11:bb22:' + Buffer.from('geheim').toString('hex'),
);
expect(JSON.stringify(written)).not.toContain('geheim');
// Die alte Klartext-Spalte darf nicht wieder auftauchen.
expect(written).not.toHaveProperty('bindPassword');
});
it('verschluesselt auch beim Aktualisieren und laesst das Feld sonst unberuehrt', async () => {
await service.updateConfig('t1', { bindPassword: 'neu' } as any);
const first = prisma.ldapConfig.update.mock.calls[0][0].data;
expect(first.encryptedBindPassword).toBe(
'aa11:bb22:' + Buffer.from('neu').toString('hex'),
);
await service.updateConfig('t1', { serverUrl: 'ldap://anders' } as any);
const second = prisma.ldapConfig.update.mock.calls[1][0].data;
expect(second).not.toHaveProperty('encryptedBindPassword');
});
it('leeres Passwort loescht den Wert, statt Leerstring zu verschluesseln', async () => {
await service.updateConfig('t1', { bindPassword: '' } as any);
const written = prisma.ldapConfig.update.mock.calls[0][0].data;
expect(written.encryptedBindPassword).toBeNull();
expect(crypto.encrypt).not.toHaveBeenCalled();
});
it('gibt Aufrufern weiterhin ein entschluesseltes bindPassword', async () => {
prisma.ldapConfig.findUnique.mockResolvedValue({
...CONFIG_ROW,
encryptedBindPassword: 'aa11:bb22:' + Buffer.from('geheim').toString('hex'),
});
const config: any = await service.getConfig('t1');
expect(config.bindPassword).toBe('geheim');
expect(config).not.toHaveProperty('encryptedBindPassword');
});
it('reicht einen Altbestand-Klartext unveraendert durch, statt den Sync zu brechen', async () => {
// Zeitfenster zwischen Spalten-Umbenennung und Bootstrap-Backfill.
prisma.ldapConfig.findUnique.mockResolvedValue({
...CONFIG_ROW,
encryptedBindPassword: 'nochKlartext',
});
const config: any = await service.getConfig('t1');
expect(config.bindPassword).toBe('nochKlartext');
expect(crypto.decrypt).not.toHaveBeenCalled();
});
it('meldet einen fehlgeschlagenen Entschluesselungsversuch, statt still kein Passwort zu liefern', async () => {
// Ein falscher Schluessel darf nicht wie "kein Passwort konfiguriert"
// aussehen — das wuerde einen authentifizierten Bind unbemerkt in einen
// anonymen verwandeln.
crypto.decrypt.mockImplementationOnce(() => {
throw new Error('Unsupported state or unable to authenticate data');
});
prisma.ldapConfig.findUnique.mockResolvedValue({
...CONFIG_ROW,
encryptedBindPassword: 'aa11:bb22:ffff',
});
await expect(service.getConfig('t1')).rejects.toThrow();
});
it('verschluesselt beim Start genau die Zeilen, die noch Klartext tragen', async () => {
prisma.ldapConfig.findMany.mockResolvedValue([
{ id: 'a', tenantId: 't1', encryptedBindPassword: 'klartext' },
{
id: 'b',
tenantId: 't2',
encryptedBindPassword: 'aa11:bb22:' + Buffer.from('schon').toString('hex'),
},
{ id: 'c', tenantId: 't3', encryptedBindPassword: null },
]);
await service.onApplicationBootstrap();
expect(prisma.ldapConfig.update).toHaveBeenCalledTimes(1);
const call = prisma.ldapConfig.update.mock.calls[0][0];
expect(call.where).toEqual({ id: 'a' });
expect(call.data.encryptedBindPassword).toBe(
'aa11:bb22:' + Buffer.from('klartext').toString('hex'),
);
});
it('ist beim zweiten Start ein No-Op', async () => {
prisma.ldapConfig.findMany.mockResolvedValue([
{
id: 'a',
tenantId: 't1',
encryptedBindPassword: 'aa11:bb22:' + Buffer.from('x').toString('hex'),
},
]);
await service.onApplicationBootstrap();
expect(prisma.ldapConfig.update).not.toHaveBeenCalled();
});
it('laesst einen fehlgeschlagenen Backfill den Start nicht verhindern', async () => {
prisma.ldapConfig.findMany.mockRejectedValue(new Error('db weg'));
await expect(service.onApplicationBootstrap()).resolves.toBeUndefined();
});
});
+121 -9
View File
@@ -1,4 +1,5 @@
import { Injectable } from '@nestjs/common';
import { Injectable, Logger, OnApplicationBootstrap } from '@nestjs/common';
import { CalendarCryptoService } from '../calendar/crypto.service';
import { PrismaService } from '../prisma/prisma.service';
import {
CreateFieldMappingDto,
@@ -6,22 +7,125 @@ import {
UpdateLdapConfigDto,
} from './dto/ldap-config.dto';
/**
* Shape of a stored AES-256-GCM value as CalendarCryptoService writes it:
* `iv:authTag:ciphertext`, all hex. Used to tell an encrypted value apart from
* a legacy plaintext one that predates the encryption of this column.
*/
const ENCRYPTED_VALUE_SHAPE = /^[0-9a-f]+:[0-9a-f]+:[0-9a-f]*$/i;
/**
* Per-tenant LDAP configuration CRUD (D-18).
* Manages LDAP connection settings and field mappings.
*
* The bind password is stored AES-256-GCM-encrypted in
* `LdapConfig.encryptedBindPassword`, the same way CalendarSource, SmtpConfig,
* DkvModuleConfig and TenderEmailConfig store theirs. It cannot be hashed:
* Tessera has to replay this password to bind against the directory, so it
* needs to be recoverable. Encryption at rest protects the one case a hash
* cannot help with anyway — a database dump or backup leaving the host without
* the key that lives in the application environment.
*
* Every consumer reads the config through `getConfig()` or
* `getAllActiveConfigs()`, so decryption happens in exactly those two places
* and callers keep seeing a plain `bindPassword` field. The controller still
* masks it to '********' in API responses (T-02-17).
*/
@Injectable()
export class LdapConfigService {
constructor(private prisma: PrismaService) {}
export class LdapConfigService implements OnApplicationBootstrap {
private readonly logger = new Logger(LdapConfigService.name);
constructor(
private prisma: PrismaService,
private readonly crypto: CalendarCryptoService,
) {}
/**
* One-time, idempotent backfill of rows written before this column was
* encrypted. SQL cannot do this — the key lives in the application
* environment, not in the database — so the migration only renames the
* column and the actual encryption happens here on the next start.
*
* Runs on every boot and is a no-op once every row is encrypted. A failure
* is logged and swallowed: a tenant whose bind password could not be
* re-encrypted still authenticates, because the read path below tolerates a
* legacy plaintext value.
*/
async onApplicationBootstrap(): Promise<void> {
try {
const configs = await this.prisma.ldapConfig.findMany({
select: { id: true, tenantId: true, encryptedBindPassword: true },
});
const legacy = configs.filter(
(config) =>
config.encryptedBindPassword &&
!ENCRYPTED_VALUE_SHAPE.test(config.encryptedBindPassword),
);
if (legacy.length === 0) return;
for (const config of legacy) {
await this.prisma.ldapConfig.update({
where: { id: config.id },
data: {
encryptedBindPassword: this.crypto.encrypt(
config.encryptedBindPassword as string,
),
},
});
}
this.logger.log(
`LDAP-Bind-Passwort verschluesselt: ${legacy.length} Konfiguration(en) nachgezogen`,
);
} catch (err) {
this.logger.error(
`Backfill der LDAP-Bind-Passwoerter fehlgeschlagen: ${(err as Error).message}`,
);
}
}
/**
* Decrypt for internal use. A value that is not in `iv:authTag:ciphertext`
* form predates the encryption and is returned unchanged — that window
* exists between the column rename and the bootstrap backfill above, and
* must not break the sync.
*/
private decryptBindPassword(stored: string | null): string | null {
if (!stored) return null;
if (!ENCRYPTED_VALUE_SHAPE.test(stored)) return stored;
try {
return this.crypto.decrypt(stored);
} catch (err) {
// A wrong or rotated key must not read as "no password configured" —
// that would silently turn an authenticated bind into an anonymous one.
this.logger.error(
`LDAP-Bind-Passwort konnte nicht entschluesselt werden (falscher CALENDAR_ENCRYPTION_KEY?): ${(err as Error).message}`,
);
throw err;
}
}
/** Map a stored row to what callers expect: a plain `bindPassword` field. */
private withDecryptedPassword<
T extends { encryptedBindPassword: string | null },
>(config: T): Omit<T, 'encryptedBindPassword'> & { bindPassword: string | null } {
const { encryptedBindPassword, ...rest } = config;
return {
...rest,
bindPassword: this.decryptBindPassword(encryptedBindPassword),
};
}
/**
* Get LDAP config for a tenant, including field mappings.
*/
async getConfig(tenantId: string) {
return this.prisma.ldapConfig.findUnique({
const config = await this.prisma.ldapConfig.findUnique({
where: { tenantId },
include: { fieldMappings: true },
});
return config ? this.withDecryptedPassword(config) : null;
}
/**
@@ -29,13 +133,15 @@ export class LdapConfigService {
* Defaults: displayName -> displayName, mail -> email, sAMAccountName -> username
*/
async createConfig(tenantId: string, dto: CreateLdapConfigDto) {
return this.prisma.ldapConfig.create({
const created = await this.prisma.ldapConfig.create({
data: {
tenantId,
serverUrl: dto.serverUrl,
baseDn: dto.baseDn,
bindDn: dto.bindDn,
bindPassword: dto.bindPassword,
encryptedBindPassword: dto.bindPassword
? this.crypto.encrypt(dto.bindPassword)
: null,
searchFilter: dto.searchFilter ?? '(objectClass=person)',
syncIntervalMin: dto.syncIntervalMin ?? 60,
isActive: dto.isActive ?? true,
@@ -60,20 +166,24 @@ export class LdapConfigService {
},
include: { fieldMappings: true },
});
return this.withDecryptedPassword(created);
}
/**
* Update LDAP config for a tenant.
*/
async updateConfig(tenantId: string, dto: UpdateLdapConfigDto) {
return this.prisma.ldapConfig.update({
const updated = await this.prisma.ldapConfig.update({
where: { tenantId },
data: {
...(dto.serverUrl !== undefined && { serverUrl: dto.serverUrl }),
...(dto.baseDn !== undefined && { baseDn: dto.baseDn }),
...(dto.bindDn !== undefined && { bindDn: dto.bindDn }),
// An empty string means "clear the password", not "encrypt nothing".
...(dto.bindPassword !== undefined && {
bindPassword: dto.bindPassword,
encryptedBindPassword: dto.bindPassword
? this.crypto.encrypt(dto.bindPassword)
: null,
}),
...(dto.searchFilter !== undefined && {
searchFilter: dto.searchFilter,
@@ -94,6 +204,7 @@ export class LdapConfigService {
},
include: { fieldMappings: true },
});
return this.withDecryptedPassword(updated);
}
/**
@@ -137,9 +248,10 @@ export class LdapConfigService {
* tenants need auto-sync.
*/
async getAllActiveConfigs() {
return this.prisma.ldapConfig.findMany({
const configs = await this.prisma.ldapConfig.findMany({
where: { isActive: true },
include: { tenant: true, fieldMappings: true },
});
return configs.map((config) => this.withDecryptedPassword(config));
}
}
+8 -1
View File
@@ -1,5 +1,6 @@
import { Module } from '@nestjs/common';
import { ScheduleModule } from '@nestjs/schedule';
import { CalendarModule } from '../calendar/calendar.module';
import { GroupsModule } from '../groups/groups.module';
import { UserModule } from '../user/user.module';
import { LdapConfigService } from './ldap-config.service';
@@ -17,9 +18,15 @@ import { LdapService } from './ldap.service';
* GroupsService.reassignDefaultBeforeDelete()/ensureDefaultGroup() from
* syncBoundGroupsForTenant() (Plan 16-03, D-06) — no cycle: GroupsModule
* imports neither LdapModule nor UserModule.
*
* CalendarModule is imported for CalendarCryptoService, which encrypts the
* bind password at rest — the same provider SettingsModule, DkvModule and
* TendersModule already use for their own credentials. The name is a
* historical accident (the calendar module happened to need encryption
* first), not a statement about ownership.
*/
@Module({
imports: [ScheduleModule.forRoot(), UserModule, GroupsModule],
imports: [ScheduleModule.forRoot(), UserModule, GroupsModule, CalendarModule],
controllers: [LdapController],
providers: [LdapService, LdapConfigService, LdapSyncScheduler],
exports: [LdapService, LdapConfigService],