litellm already supports Google, Microsoft and generic OIDC SSO through fastapi-sso, which has no SAML support; AuthMethod.SAML existed only as an unused enum value. This adds real SAML 2.0 single sign-on for the admin UI. A new SAMLAuthHandler validates signed assertions with the OneLogin python3-saml toolkit and maps them onto a CustomOpenID, then reuses the shared post-login path every other provider goes through, so provisioning, role/team mapping and the UI session JWT are unchanged. Both SP-initiated and IdP-initiated HTTP-POST flows are supported. SP-initiated logins are bound to the browser that started them via an HttpOnly state cookie plus a cached AuthnRequest id, and the ACS rejects any response whose InResponseTo doesn't match; unsolicited (IdP-initiated) responses cannot be browser-bound so they are rejected unless SAML_ALLOW_UNSOLICITED=true. Replays are rejected by a consumed-assertion guard whose lifetime tracks each assertion's NotOnOrAfter, and both the replay guard and the login-state binding go through the proxy's shared in-memory + Redis cache for multi-instance deployments. The ACS honors DISABLE_ADMIN_UI and re-applies the free-SSO-user Enterprise gate after the assertion is validated, so an unvalidated POST can no longer drive the billable-user count query. SAML is configurable from the admin UI SSO settings (IdP metadata URL or inline XML, SP entity ID, and an allow-unsolicited toggle), which persists the SAML_* environment variables the handler reads, exactly like the Google, Microsoft and generic OIDC providers. python3-saml is kept as an optional saml extra; its xmlsec and lxml wheels bundle the native libraries so no system packages are required, and the import is guarded so the proxy still starts without the package with the SAML routes returning a clear 501. Resolves LIT-4016 |
||
|---|---|---|
| .. | ||
| build_from_pip | ||
| tests | ||
| .env.example | ||
| build_admin_ui.sh | ||
| Dockerfile.database | ||
| Dockerfile.non_root | ||
| entrypoint.sh | ||
| install_auto_router.sh | ||
| prod_entrypoint.sh | ||
| README.md | ||
Docker Development Guide
This guide provides instructions for building and running the LiteLLM application using Docker and Docker Compose.
Prerequisites
- Docker
- Docker Compose
Building and Running the Application
To build and run the application, you will use the docker-compose.yml file located in the root of the project. This file is configured to use the Dockerfile.non_root for a secure, non-root container environment.
1. Set the Master Key
The application requires a LITELLM_MASTER_KEY for signing and validating tokens. You must set this key as an environment variable before running the application.
Create a .env file in the root of the project and add the following line:
LITELLM_MASTER_KEY=your-secret-key
Replace your-secret-key with a strong, randomly generated secret.
2. Build and Run the Containers
Once you have set the LITELLM_MASTER_KEY, you can build and run the containers using the following command:
docker compose up -d --build
This command will:
- Build the Docker image using
Dockerfile.non_root. - Start the
litellm,litellm_db, andprometheusservices in detached mode (-d). - The
--buildflag ensures that the image is rebuilt if there are any changes to the Dockerfile or the application code.
3. Verifying the Application is Running
You can check the status of the running containers with the following command:
docker compose ps
To view the logs of the litellm container, run:
docker compose logs -f litellm
4. Stopping the Application
To stop the running containers, use the following command:
docker compose down
Hardened / Offline Testing
To ensure changes are safe for non-root, read-only root filesystems and restricted egress, always validate with the hardened compose file:
docker compose -f docker-compose.yml -f docker-compose.hardened.yml build --no-cache
docker compose -f docker-compose.yml -f docker-compose.hardened.yml up -d
This setup:
- Builds from
docker/Dockerfile.non_rootwith Prisma engines and Node toolchain baked into the image. - Runs the proxy as a non-root user with a read-only rootfs and only writable tmpfs mounts:
/app/cache(Prisma/NPM cache; backingPRISMA_BINARY_CACHE_DIR,NPM_CONFIG_CACHE,XDG_CACHE_HOME)/app/migrations(Prisma migration workspace; backingLITELLM_MIGRATION_DIR)
- Pre-builds and serves the admin UI from read-only paths:
/var/lib/litellm/ui(pre-restructured Next.js UI with.litellm_ui_readymarker)/var/lib/litellm/assets(UI logos and assets)
- Routes all outbound traffic through a local Squid proxy that denies egress, so Prisma migrations must use the cached CLI and engines.
You should also verify offline Prisma behaviour with:
docker run --rm --network none --entrypoint prisma ghcr.io/berriai/litellm:main-stable --version
This command should succeed (showing engine versions) even with --network none, confirming that Prisma binaries are available without network access.
Troubleshooting
build_admin_ui.sh: not found: This error can occur if the Docker build context is not set correctly. Ensure that you are running thedocker-composecommand from the root of the project.Master key is not initialized: This error means theLITELLM_MASTER_KEYenvironment variable is not set. Make sure you have created a.envfile in the project root with theLITELLM_MASTER_KEYdefined.