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Jellyfin Jellyfin

Container

Media ServersMusicAudiobooks

Jellyfin is a Free Software Media System that puts you in control of managing and streaming your media. It is an alternative to the proprietary Emby and Plex, to provide media from a dedicated server to end-user devices via multiple apps. Jellyfin is descended from Emby's 3.5.2 release and ported to the .NET Core framework to enable full cross-platform support. There are no strings attached, no premium licenses or features, and no hidden agendas: just a team who want to build something better and work together to achieve it.

Image details

Pulls: 151.3M
Architecture: amd64, arm64
Image size: 331 MB
Latest: 10.11.11
User: linuxserver
Created: Jun 11, 2019
Updated: 4 days ago
Status: active

Source details

Stars: 55.8k
Forks: 5k
Language: C#
License: GPL-2.0
Updated: 25 minutes ago
Website: jellyfin.org/

Configuration

Type
Container
Platform
linux
Image
linuxserver/jellyfin:latest
Ports
8096:8096/tcp8920:8920/tcp7359:7359/udp1900:1900/udp
Volumes
/config : /srv/lsio/jellyfin/config/data/tvshows : /srv/lsio/jellyfin/data/tvshows/data/movies : /srv/lsio/jellyfin/data/movies
Env vars
PUID=1000PGID=1000TZ=Etc/UTCJELLYFIN_PublishedServerUrl=http://192.168.0.5
Restart
unless-stopped

Template by technorabilia

Notes

Portainer App Templates by Technorabilia, based on data provided by LinuxServer.io.

Ensure to create the following volume directories on the host file system, or modify the paths in the volume mapping section under the advanced options below, as needed.

mkdir -p /srv/lsio/jellyfin/config
mkdir -p /srv/lsio/jellyfin/data/tvshows
mkdir -p /srv/lsio/jellyfin/data/movies

Standalone Install

Select an install method, to see config/commands for deploying Jellyfin

Installation method

Install on Portainer

Import all app templates into your Portainer instance, for easy 1-click deploys

  1. Ensure both Docker and Portainer are installed, and up-to-date
  2. Log into your Portainer web UI
  3. Under Settings → App Templates, paste the below URL
  4. Head to Home → App Templates, and the list of apps will show up
  5. Select Jellyfin, fill in any config options, and hit Deploy

Template Import URL

https://raw.githubusercontent.com/Lissy93/portainer-templates/main/templates.json
Show Me demo

More install options in our documentation, or see jellyfin/jellyfin for app-specific guidance.

linuxserver.io
Blog Discord Discourse GitHub Open Collective
The LinuxServer.io team brings you another container release featuring:
  • regular and timely application updates
  • easy user mappings (PGID, PUID)
  • custom base image with s6 overlay
  • weekly base OS updates with common layers across the entire LinuxServer.io ecosystem to minimise space usage, down time and bandwidth
  • regular security updates

Find us at:
  • Blog - all the things you can do with our containers including How-To guides, opinions and much more!
  • Discord - realtime support / chat with the community and the team.
  • Discourse - post on our community forum.
  • GitHub - view the source for all of our repositories.
  • Open Collective - please consider helping us by either donating or contributing to our budget

linuxserver/jellyfin

Scarf.io pulls GitHub Stars GitHub Release GitHub Package Repository GitLab Container Registry Quay.io Docker Pulls Docker Stars Jenkins Build LSIO CI
Jellyfin is a Free Software Media System that puts you in control of managing and streaming your media. It is an alternative to the proprietary Emby and Plex, to provide media from a dedicated server to end-user devices via multiple apps. Jellyfin is descended from Emby's 3.5.2 release and ported to the .NET Core framework to enable full cross-platform support. There are no strings attached, no premium licenses or features, and no hidden agendas: just a team who want to build something better and work together to achieve it.
jellyfin

Supported Architectures

We utilise the docker manifest for multi-platform awareness. More information is available from docker here and our announcement here.
Simply pulling lscr.io/linuxserver/jellyfin:latest should retrieve the correct image for your arch, but you can also pull specific arch images via tags.
The architectures supported by this image are:
ArchitectureAvailableTag
x86-64amd64-\
arm64arm64v8-\

Version Tags

This image provides various versions that are available via tags. Please read the descriptions carefully and exercise caution when using unstable or development tags.
TagAvailableDescription
latestStable Jellyfin releases
nightlyNightly Jellyfin releases

Application Setup

Webui can be found at http://<your-ip>:8096
More information can be found on the official documentation here.

Hardware Acceleration Enhancements

This section lists the enhancements we have made for hardware acceleration in this image specifically.

Intel

To enable the OpenCL based DV, HDR10 and HLG tone-mapping, please refer to the OpenCL-Intel mod from here:
https://mods.linuxserver.io/?mod=jellyfin
And follow this guide even if you are using iGPU: https://jellyfin.org/docs/general/administration/hardware-acceleration/intel/#configure-and-verify-lp-mode-on-linux

Hardware Acceleration

Many desktop applications need access to a GPU to function properly and even some Desktop Environments have compositor effects that will not function without a GPU. However this is not a hard requirement and all base images will function without a video device mounted into the container.

Intel/ATI/AMD

To leverage hardware acceleration you will need to mount /dev/dri video device inside of the container.
--device=/dev/dri:/dev/dri

We will automatically ensure the abc user inside of the container has the proper permissions to access this device.

Nvidia

Hardware acceleration users for Nvidia will need to install the container runtime provided by Nvidia on their host, instructions can be found here: https://github.com/NVIDIA/nvidia-container-toolkit
We automatically add the necessary environment variable that will utilise all the features available on a GPU on the host. Once nvidia-container-toolkit is installed on your host you will need to re/create the docker container with the nvidia container runtime --runtime=nvidia and add an environment variable -e NVIDIA_VISIBLE_DEVICES=all (can also be set to a specific gpu's UUID, this can be discovered by running nvidia-smi --query-gpu=gpu_name,gpu_uuid --format=csv ). NVIDIA automatically mounts the GPU and drivers from your host into the container.

Arm Devices

Best effort is made to install tools to allow mounting in /dev/dri on Arm devices. In most cases if /dev/dri exists on the host it should just work. If running a Raspberry Pi 4 be sure to enable dtoverlay=vc4-fkms-v3d in your usercfg.txt.

Usage

To help you get started creating a container from this image you can either use docker-compose or the docker cli.
>!NOTE >Unless a parameter is flagged as 'optional', it is mandatory and a value must be provided.

docker-compose (recommended, click here for more info)

---
services:
  jellyfin:
    image: lscr.io/linuxserver/jellyfin:latest
    container_name: jellyfin
    environment:
      - PUID=1000
      - PGID=1000
      - TZ=Etc/UTC
      - JELLYFIN_PublishedServerUrl=http://192.168.0.5 #optional
    volumes:
      - /path/to/jellyfin/library:/config
      - /path/to/tvseries:/data/tvshows
      - /path/to/movies:/data/movies
    ports:
      - 8096:8096
      - 8920:8920 #optional
      - 7359:7359/udp #optional
      - 1900:1900/udp #optional
    restart: unless-stopped

docker cli (click here for more info)

docker run -d \
  --name=jellyfin \
  -e PUID=1000 \
  -e PGID=1000 \
  -e TZ=Etc/UTC \
  -e JELLYFIN_PublishedServerUrl=http://192.168.0.5 `#optional` \
  -p 8096:8096 \
  -p 8920:8920 `#optional` \
  -p 7359:7359/udp `#optional` \
  -p 1900:1900/udp `#optional` \
  -v /path/to/jellyfin/library:/config \
  -v /path/to/tvseries:/data/tvshows \
  -v /path/to/movies:/data/movies \
  --restart unless-stopped \
  lscr.io/linuxserver/jellyfin:latest

Parameters

Containers are configured using parameters passed at runtime (such as those above). These parameters are separated by a colon and indicate <external>:<internal> respectively. For example, -p 8080:80 would expose port 80 from inside the container to be accessible from the host's IP on port 8080 outside the container.
ParameterFunction
-p 8096:8096Http webUI.
-p 8920Optional - Https webUI (you need to set up your own certificate).
-p 7359/udpOptional - Allows clients to discover Jellyfin on the local network.
-p 1900/udpOptional - Service discovery used by DNLA and clients.
-e PUID=1000for UserID - see below for explanation
-e PGID=1000for GroupID - see below for explanation
-e TZ=Etc/UTCspecify a timezone to use, see this list.
-e JELLYFINPublishedServerUrl=http://192.168.0.5Set the autodiscovery response domain or IP address, include http(s)://.
-v /configJellyfin data storage location. This can grow very large, 50gb+ is likely for a large collection.
-v /data/tvshowsMedia goes here. Add as many as needed e.g. /data/movies, /data/tv, etc.
-v /data/moviesMedia goes here. Add as many as needed e.g. /data/movies, /data/tv, etc.

Environment variables from files (Docker secrets)

You can set any environment variable from a file by using a special prepend FILE__.
As an example:
-e FILE__MYVAR=/run/secrets/mysecretvariable

Will set the environment variable MYVAR based on the contents of the /run/secrets/mysecretvariable file.

Umask for running applications

For all of our images we provide the ability to override the default umask settings for services started within the containers using the optional -e UMASK=022 setting. Keep in mind umask is not chmod it subtracts from permissions based on it's value it does not add. Please read up here before asking for support.

Optional Parameters

The official documentation for ports has additional ports that can provide auto discovery.
Service Discovery (1900/udp) - Since client auto-discover would break if this option were configurable, you cannot change this in the settings at this time. DLNA also uses this port and is required to be in the local subnet.
Client Discovery (7359/udp) - Allows clients to discover Jellyfin on the local network. A broadcast message to this port with "Who is Jellyfin Server?" will get a JSON response that includes the server address, ID, and name.
-p 7359:7359/udp \
-p 1900:1900/udp \

The official documentation for environmentals has additional environmentals that can provide additional configurability such as migrating to the native Jellyfin image.

User / Group Identifiers

When using volumes (-v flags), permissions issues can arise between the host OS and the container, we avoid this issue by allowing you to specify the user PUID and group PGID.
Ensure any volume directories on the host are owned by the same user you specify and any permissions issues will vanish like magic.
In this instance PUID=1000 and PGID=1000, to find yours use id your_user as below:
id your_user

Example output:
uid=1000(your_user) gid=1000(your_user) groups=1000(your_user)

Docker Mods

Docker Mods Docker Universal Mods
We publish various Docker Mods to enable additional functionality within the containers. The list of Mods available for this image (if any) as well as universal mods that can be applied to any one of our images can be accessed via the dynamic badges above.

Support Info

  • Shell access whilst the container is running:
```bash
docker exec -it jellyfin /bin/bash
```
  • To monitor the logs of the container in realtime:
```bash
docker logs -f jellyfin
```
  • Container version number:
```bash
docker inspect -f '{{ index .Config.Labels "build_version" }}' jellyfin
```
  • Image version number:
```bash
docker inspect -f '{{ index .Config.Labels "build_version" }}' lscr.io/linuxserver/jellyfin:latest
```

Updating Info

Most of our images are static, versioned, and require an image update and container recreation to update the app inside. With some exceptions (noted in the relevant readme.md), we do not recommend or support updating apps inside the container. Please consult the Application Setup section above to see if it is recommended for the image.
Below are the instructions for updating containers:

Via Docker Compose

  • Update images:
* All images:

    ```bash
    docker-compose pull
    ```

* Single image:

    ```bash
    docker-compose pull jellyfin
    ```
  • Update containers:
* All containers:

    ```bash
    docker-compose up -d
    ```

* Single container:

    ```bash
    docker-compose up -d jellyfin
    ```
  • You can also remove the old dangling images:
```bash
docker image prune
```

Via Docker Run

  • Update the image:
```bash
docker pull lscr.io/linuxserver/jellyfin:latest
```
  • Stop the running container:
```bash
docker stop jellyfin
```
  • Delete the container:
```bash
docker rm jellyfin
```
  • Recreate a new container with the same docker run parameters as instructed above (if mapped correctly to a host folder, your /config folder and settings will be preserved)
  • You can also remove the old dangling images:
```bash
docker image prune
```

Image Update Notifications - Diun (Docker Image Update Notifier)

>!TIP >We recommend Diun for update notifications. Other tools that automatically update containers unattended are not recommended or supported.

Building locally

If you want to make local modifications to these images for development purposes or just to customize the logic:
git clone https://github.com/linuxserver/docker-jellyfin.git
cd docker-jellyfin
docker build \
  --no-cache \
  --pull \
  -t lscr.io/linuxserver/jellyfin:latest .

The ARM variants can be built on x8664 hardware and vice versa using lscr.io/linuxserver/qemu-static
docker run --rm --privileged lscr.io/linuxserver/qemu-static --reset

Once registered you can define the dockerfile to use with -f Dockerfile.aarch64.

Versions

  • 14.07.26: - Rebase to Ubuntu Resolute.
  • 02.03.26: - Add support for IPv6 OOTB.
  • 20.10.25: - Add libjemalloc2 as runtime dep.
  • 06.10.24: - Fix fontconfig cache path.
  • 13.08.24: - Rebase to Ubuntu Noble.
  • 01.05.24: - Increase verbosity of device permissions fixing.
  • 12.02.24: - Use universal hardware acceleration blurb.
  • 12.09.23: - Take ownership of plugin directories.
  • 04.07.23: - Deprecate armhf. As announced here
  • 07.12.22: - Rebase master to Jammy, migrate to s6v3.
  • 11.06.22: - Switch to upstream repo's ffmpeg5 build.
  • 05.01.22: - Specify Intel iHD driver versions to avoid mismatched libva errors.
  • 25.12.21: - Fix video device group perms error message.
  • 10.12.21: - Rework readme, disable template sync.
  • 22.09.21: - Pull only the server, web and ffmpeg packages instead of the wrapper.
  • 23.06.21: - Add log message if device permissions are incorrect. Pin jellyfin dependency versions to prevent upstream apt repo issues. Deprecate the bionic tag.
  • 21.05.21: - Add nvidia.icd file to fix missing tonemapping using Nvidia HW.
  • 20.01.21: - Add Jellyfin Binary Environmentals
  • 20.01.21: - Deprecate UMASK_SET in favor of UMASK in baseimage, see above for more information.
  • 23.11.20: - Rebase to Focal, branch off Bionic.
  • 22.07.20: - Ingest releases from Jellyfin repo.
  • 28.04.20: - Replace MMAL/OMX dependency device /dev/vc-mem with /dev/vcsm as the former was not sufficient for raspbian.
  • 11.04.20: - Enable hw decode (mmal) on Raspberry Pi, update readme instructions, add donation info, create missing default transcodes folder.
  • 11.03.20: - Add Pi V4L2 support, remove optional transcode mapping (location is selected in the gui, defaults to path under /config).
  • 30.01.20: - Add nightly tag.
  • 09.01.20: - Add Pi OpenMax support.
  • 02.10.19: - Improve permission fixing for render & dvb devices.
  • 31.07.19: - Add AMD drivers for vaapi support on x86.
  • 13.06.19: - Add Intel drivers for vaapi support on x86.
  • 07.06.19: - Initial release.

Serve Jellyfin on your own domain behind Caddy, Nginx or Traefik. Fill in your domain and copy the result. It's a starting point, some apps need their own base URL or extra headers set too.

Proxying jellyfin.example.com to http://Jellyfin:8096

Add this to your Caddyfile

jellyfin.example.com {
	reverse_proxy http://Jellyfin:8096
}

Check the logs first

Nine times out of ten the logs tell you exactly what went wrong.

  • In Portainer, go to Containers, click the container, then Logs. Or run docker logs Jellyfin
  • Exit codes help too: 137 means killed, usually out of memory. 126 or 127 means the command inside the image is broken.

Port already in use

If deployment fails with "Bind for 0.0.0.0:8096 failed: port is already allocated", something else on your server is using that port.

  • Find what's using it: sudo ss -tlnp | grep :8096
  • Stop the other service, or pick a different host port. In 8096:8096 only the left number is yours to change, the right one belongs to the app.

Running but the page won't load

The container is up but nothing appears in your browser.

  • Use your server's real IP: http://your-server-ip:8096. The 0.0.0.0 link Portainer shows isn't a real address.
  • Give it a minute after first deploy, Jellyfin can take a while to initialise.
  • Make sure your firewall allows the port, e.g. sudo ufw allow 8096

Permission denied on volumes

If the logs show "permission denied", the app can't write to its data folder on the host.

  • Fix the ownership: sudo chown -R 1000:1000 /srv/lsio/jellyfin/config (and the same for the other mapped folders)
  • Or set the PUID and PGID variables (defaults 1000:1000) to match your own user, found with id $USER

Image won't pull

Test the pull directly on the host: docker pull linuxserver/jellyfin:latest

  • "manifest unknown" means the tag no longer exists. This template uses latest, so try pinning a specific version instead.
  • "toomanyrequests" is the Docker Hub rate limit. Log in with docker login to raise it.
  • "no space left on device" means a full disk. Reclaim space with docker system prune

"exec format error"

This means the image was built for a different CPU architecture than your server.

  • This image supports: amd64, arm64
  • Check yours with uname -m: x86_64 is amd64, aarch64 is arm64. Raspberry Pi and other ARM boards are the usual culprits.

Container keeps restarting

The unless-stopped restart policy relaunches the app after every crash, so the real error can scroll past.

  • Check the logs right after a restart, the last few lines before it died are the useful ones.
  • Get the exit code with docker inspect Jellyfin --format '{{.State.ExitCode}}'
  • Still stuck? Redeploy once with the restart policy set to no so the failure stays visible.

Raise an issue

Found something which isn't working as it should? Here's how to report it.

A single container

Jellyfin runs as one container, the simplest kind of app here. Just the one image to pull and nothing else wired up alongside it.

The app image

An image is the app packed up ready to go, everything Jellyfin needs bundled into one download. This template pulls linuxserver/jellyfin:latest, which Docker fetches once (about 331 MB) and then starts your own copy from.

Where the image comes from

Docker pulls its images from registries, public libraries of ready-built apps. Jellyfin's comes from Docker Hub, published by linuxserver.

Version tags

The bit after the colon in the image name is the version tag. Here it's latest, which always points at the newest build, so a redeploy can bump you to a newer release without you asking. Newest right now is 10.11.11. Pin a specific tag if you would rather stay on one version.

Which machines it runs on

Every image is built for particular CPU types. This one ships for amd64, arm64, so it runs on both regular x86 servers and ARM boards like a Raspberry Pi.

Ports

A port is the door the app answers on. A mapping like 8096:8096 means it's reachable on port 8096 of your server, where the left number is yours to change and the right one belongs to the app. Once it's running, open http://your-server-ip:8096 in a browser. It opens:

  • 8096:8096, likely the web interface
  • 8920:8920
  • 7359:7359 over UDP
  • 1900:1900 over UDP

Volumes

A volume is where Jellyfin keeps its files so they survive an update or a restart. Without one, anything it saves would sit inside the container and vanish the moment it's recreated. This template mounts:

  • /config from /srv/lsio/jellyfin/config on the host
  • /data/tvshows from /srv/lsio/jellyfin/data/tvshows on the host
  • /data/movies from /srv/lsio/jellyfin/data/movies on the host

Environment variables

Environment variables are the settings you hand over when you deploy, things like a password or a timezone. Jellyfin takes 4 of them, all with defaults you can leave alone or tweak:

  • PUID, defaults to 1000. Run 'id [USER]' for the owner of the host volume directories to get the UID to use here.
  • PGID, defaults to 1000. Run 'id [USER]' for the owner of the host volume directories to get the GID to use here.
  • TZ, defaults to Etc/UTC. Specify a timezone to use, see this list.
  • JELLYFIN_PublishedServerUrl, defaults to http://192.168.0.5. Set the autodiscovery response domain or IP address, include http(s)://. [OPTIONAL]

Restart policy

The restart policy here is unless-stopped, so Docker restarts Jellyfin after a crash or reboot, but leaves it off when you stop it on purpose. You can change this on the deploy screen. The choices are no (never restart), on-failure (only after a crash), unless-stopped (restart unless you stop it), and always (bring it back no matter what).

Users and permissions

The PUID and PGID settings tell it which user and group to act as on your host. Point them at your own account (find yours with id $USER) so the files it writes into your mounted folders come out owned by you rather than root.

Networking

Nothing custom is set, so Jellyfin sits on Docker's default bridge network: its own private space that reaches the outside world only through the ports it publishes.

Container name

Once it's deployed, Portainer names the container Jellyfin. That's what you'll spot in the containers list and use in commands like docker logs Jellyfin.

Platform

The platform is linux, the kind of system the container is built to run on. Docker and Portainer handle this on a normal Linux server.

Open source license

Jellyfin is open source, released under the GPL-2.0 license. In plain terms the code is out in the open, so you're free to run it and change it to fit what you need.

Portainer app templates

Zooming out, this whole page comes from a Portainer app template: a short recipe telling Portainer how to set Jellyfin up. Add the template list to Portainer once, then deploying Jellyfin is a click rather than a wall of config.