Build for synology Crashplan SMB
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This is a Docker container for CrashPlan SMB.
The GUI of the application is accessed through a modern web browser (no installation or configuration needed on client side) or via any VNC client.
CrashPlan offers the most comprehensive online backup solution to tens of thousands of businesses around the world. The highly secure, automatic and continuous service provides customers the peace of mind that their digital life is protected and easily accessible.
NOTE: The Docker command provided in this quick start is given as an example and parameters should be adjusted to your need.
Launch the CrashPlan SMB docker container with the following command:
docker run -d \
--name=crashplan-pro \
-p 5800:5800 \
-v /docker/appdata/crashplan-pro:/config:rw \
-v $HOME:/storage:ro \
fjacquet/crashplan-pro
or if synology history is present :
docker run -d \
--name=crashplan-pro \
-p 5800:5800 \
-v /docker/appdata/crashplan-pro:/config:rw \
-v $HOME:/volume1:ro \
fjacquet/crashplan-pro
Where:
/docker/appdata/crashplan-pro: This is where the application stores its configuration, log and any files needing persistency.$HOME: This location contains files from your host that need to be accessible by the application.Browse to http://your-host-ip:5800 to access the CrashPlan PRO GUI. Files from
the host appear under the /storage folder in the container.
docker run [-d] \
--name=crashplan-pro \
[-e <VARIABLE_NAME>=<VALUE>]... \
[-v <HOST_DIR>:<CONTAINER_DIR>[:PERMISSIONS]]... \
[-p <HOST_PORT>:<CONTAINER_PORT>]... \
fjacquet/crashplan-pro
| Parameter | Description |
|---|---|
| -d | Run the container in background. If not set, the container runs in foreground. |
| -e | Pass an environment variable to the container. See the Environment Variables section for more details. |
| -v | Set a volume mapping (allows to share a folder/file between the host and the container). See the Data Volumes section for more details. |
| -p | Set a network port mapping (exposes an internal container port to the host). See the Ports section for more details. |
To customize some properties of the container, the following environment
variables can be passed via the -e parameter (one for each variable). Value
of this parameter has the format <VARIABLE_NAME>=<VALUE>.
| Variable | Description | Default |
|---|---|---|
USER_ID | ID of the user the application runs as. See User/Group IDs to better understand when this should be set. | 1000 |
GROUP_ID | ID of the group the application runs as. See User/Group IDs to better understand when this should be set. | 1000 |
SUP_GROUP_IDS | Comma-separated list of supplementary group IDs of the application. | (unset) |
UMASK | Mask that controls how file permissions are set for newly created files. The value of the mask is in octal notation. By default, this variable is not set and the default umask of 022 is used, meaning that newly created files are readable by everyone, but only writable by the owner. See the following online umask calculator: http://wintelguy.com/umask-calc.pl | (unset) |
TZ | TimeZone of the container. Timezone can also be set by mapping /etc/localtime between the host and the container. | Etc/UTC |
KEEP_APP_RUNNING | When set to 1, the application will be automatically restarted if it crashes or if user quits it. | 0 |
APP_NICENESS | Priority at which the application should run. A niceness value of -20 is the highest priority and 19 is the lowest priority. By default, niceness is not set, meaning that the default niceness of 0 is used. NOTE: A negative niceness (priority increase) requires additional permissions. In this case, the container should be run with the docker option --cap-add=SYS_NICE. | (unset) |
CLEAN_TMP_DIR | When set to 1, all files in the /tmp directory are delete during the container startup. | 1 |
DISPLAY_WIDTH | Width (in pixels) of the application's window. | 1280 |
DISPLAY_HEIGHT | Height (in pixels) of the application's window. | 768 |
SECURE_CONNECTION | When set to 1, an encrypted connection is used to access the application's GUI (either via web browser or VNC client). See the Security section for more details. | 0 |
VNC_PASSWORD | Password needed to connect to the application's GUI. See the VNC Password section for more details. | (unset) |
X11VNC_EXTRA_OPTS | Extra options to pass to the x11vnc server running in the Docker container. WARNING: For advanced users. Do not use unless you know what you are doing. | (unset) |
ENABLE_CJK_FONT | When set to 1, open source computer font WenQuanYi Zen Hei is installed. This font contains a large range of Chinese/Japanese/Korean characters. | 0 |
CRASHPLAN_SRV_MAX_MEM | Maximum amount of memory the CrashPlan Engine is allowed to use. One of the following memory unit (case insensitive) should be added as a suffix to the size: G, M or K. By default, when this variable is not set, a maximum of 1024MB (1024M) of memory is allowed. Crashplan says 1TB of protected needs 1G of RAM | (unset) |
The following table describes data volumes used by the container. The mappings
are set via the -v parameter. Each mapping is specified with the following
format: <HOST_DIR>:<CONTAINER_DIR>[:PERMISSIONS].
| Container path | Permissions | Description |
|---|---|---|
/config | rw | This is where the application stores its configuration, log and any files needing persistency. |
/storage | ro | This location contains files from your host that need to be accessible by the application. |
Here is the list of ports used by the container. They can be mapped to the host
via the -p parameter (one per port mapping). Each mapping is defined in the
following format: <HOST_PORT>:<CONTAINER_PORT>. The port number inside the
container cannot be changed, but you are free to use any port on the host side.
| Port | Mapping to host | Description |
|---|---|---|
| 5800 | Mandatory | Port used to access the application's GUI via the web interface. |
| 5900 | Optional | Port used to access the application's GUI via the VNC protocol. Optional if no VNC client is used. |
As seen, environment variables, volume mappings and port mappings are specified while creating the container.
The following steps describe the method used to add, remove or update parameter(s) of an existing container. The generic idea is to destroy and re-create the container:
docker stop crashplan-pro
docker rm crashplan-pro
docker run command, by adjusting
parameters as needed.NOTE: Since all application's data is saved under the /config container
folder, destroying and re-creating a container is not a problem: nothing is lost
and the application comes back with the same state (as long as the mapping of
the /config folder remains the same).
Here is an example of a docker-compose.yml file that can be used with
Docker Compose.
Make sure to adjust according to your needs. Note that only mandatory network ports are part of the example.
version: '3'
services:
crashplan-pro:
build: .
ports:
- "5800:5800"
volumes:
- "/docker/appdata/crashplan-pro:/config:rw"
- "$HOME:/storage:ro"
If the system on which the container runs doesn't provide a way to easily update the Docker image, the following steps can be followed:
docker pull fjacquet/crashplan-pro
docker stop crashplan-pro
docker rm crashplan-pro
docker run command.When using data volumes (-v flags), permissions issues can occur between the
host and the container. For example, the user within the container may not
exists on the host. This could prevent the host from properly accessing files
and folders on the shared volume.
To avoid any problem, you can specify the user the application should run as.
This is done by passing the user ID and group ID to the container via the
USER_ID and GROUP_ID environment variables.
To find the right IDs to use, issue the following command on the host, with the user owning the data volume on the host:
id <username>
Which gives an output like this one:
uid=1000(myuser) gid=1000(myuser) groups=1000(myuser),4(adm),24(cdrom),27(sudo),46(plugdev),113(lpadmin)
The value of uid (user ID) and gid (group ID) are the ones that you should
be given the container.
Assuming that container's ports are mapped to the same host's ports, the graphical interface of the application can be accessed via:
http://<HOST IP ADDR>:5800
<HOST IP ADDR>:5900
By default, access to the application's GUI is done over an unencrypted connection (HTTP or VNC).
Secure connection can be enabled via the SECURE_CONNECTION environment
variable. See the Environment Variables section for
more details on how to set an environment variable.
When enabled, application's GUI is performed over an HTTPs connection when accessed with a browser. All HTTP accesses are automatically redirected to HTTPs.
When using a VNC client, the VNC connection is performed over SSL. Note that few VNC clients support this method. [SSVNC] is one of them.
Here are the certificate files needed by the container. By default, when they are missing, self-signed certificates are generated and used. All files have PEM encoded, x509 certificates.
| Container Path | Purpose | Content |
|---|---|---|
/config/certs/vnc-server.pem | VNC connection encryption. | VNC server's private key and certificate, bundled with any root and intermediate certificates. |
/config/certs/web-privkey.pem | HTTPs connection encryption. | Web server's private key. |
/config/certs/web-fullchain.pem | HTTPs connection encryption. | Web server's certificate, bundled with any root and intermediate certificates. |
NOTE: To prevent any certificate validity warnings/errors from the browser or VNC client, make sure to supply your own valid certificates.
NOTE: Certificate files are monitored and relevant daemons are automatically restarted when changes are detected.
To restrict access to your application, a password can be specified. This can be done via two methods:
VNC_PASSWORD environment variable..vncpass_clear file at the root of the /config volume.
This file should contains the password in clear-text. During the container
startup, content of the file is obfuscated and moved to .vncpass.The level of security provided by the VNC password depends on two things:
When using a VNC password, it is highly desirable to enable the secure connection to prevent sending the password in clear over an unencrypted channel.
ATTENTION: Password is limited to 8 characters. This limitation comes from the Remote Framebuffer Protocol RFC (see section 7.2.2). Any characters beyhond the limit are ignored.
If this container is replacing a CrashPlan installation (from Linux, Windows, MAC or another Docker container), your existing backup can be taken over to avoid re-uploading all your data.
To proceed, make sure to carefully read the official documentation.
Here is a summary of what needs to be done:
CrashPlan for Home being decommissioned, users using this version have the choice to migrate their account to CrashPlan PRO (aka CrashPlan for Small Business). Thus, using this container becomes a great choice for these users.
To perform the transition, you need to:
fjacquet/crashplan
Docker container:
fjacquet/crashplan container
(i.e. the host directory mapped to /config)./config folder to the same host directory used by the
fjacquet/crashplan container.If CrashPlan crashes unexpectedly with large backups, try to increase the maximum amount of memory CrashPlan is allowed to use. This can be done by:
CRASHPLAN_SRV_MAX_MEM environment variable. See the
Environment Variables section for more details.If CrashPlan exceeds inotify's max watch limit, real-time file watching cannot work properly and the inotify watch limit needs to be increased on the host.
For more details, see the CrashPlan's Linux real-time file watching errors article.
/storageIf the /storage folder inside the container is empty:
-v parameter of the docker run command. See the Usage
section.USER_ID and GROUP_ID environment variables). See the
User/Group IDs section.NOTE: If running the application as root (USER_ID=0 and GROUP_ID=0) makes
the files visible, it confirms that there is a permission issue.
If the status of your device is stuck on Waiting for connection, clearing the the cache of CrashPlan can help resolve the issue:
cache directory found under the container's
configuration directory. For example, if the /config folder of the
container is mapped to /docker/appdata/crashplan-pro on the host, the
following command (ran on the host) would clear the cache:
rm -rf /docker/appdata/crashplan-pro/cache/*
If CrashPlan fails to restore files, make sure the location where files are restored have write permission.
A typical installation has the data to be backup under the /storage folder.
This folder is usually mapped to the host with read-only permission. Thus,
restoring files to /storage won't be allowed. The solution is to temporarily
change the permission of the volume to read-write.
For example, if /storage is mapped to $HOME on the host, the container would
need to be deleted and then re-created with the same arguments, with the exception
of -v $HOME:/storage:ro that is replaced with -v $HOME:/storage:rw.
The following sections contains NGINX configuration that need to be added in order to reverse proxy to this container.
A reverse proxy server can route HTTP requests based on the hostname or the URL path.
In this scenario, each hostname is routed to a different application/container.
For example, let's say the reverse proxy server is running on the same machine
as this container. The server would proxy all HTTP requests sent to
crashplan-pro.domain.tld to the container at 127.0.0.1:5800.
Here are the relevant configuration elements that would be added to the NGINX configuration:
map $http_upgrade $connection_upgrade {
default upgrade;
'' close;
}
upstream docker-crashplan-pro {
# If the reverse proxy server is not running on the same machine as the
# Docker container, use the IP of the Docker host here.
# Make sure to adjust the port according to how port 5800 of the
# container has been mapped on the host.
server 127.0.0.1:5800;
}
server {
[...]
server_name crashplan-pro.domain.tld;
location / {
proxy_pass http://crashplan-pro;
}
location /websockify {
proxy_pass http://crashplan-pro;
proxy_http_version 1.1;
proxy_set_header Upgrade $http_upgrade;
proxy_set_header Connection $connection_upgrade;
proxy_read_timeout 86400;
}
}
In this scenario, the hostname is the same, but different URL paths are used to route to different applications/containers.
For example, let's say the reverse proxy server is running on the same machine
as this container. The server would proxy all HTTP requests for
server.domain.tld/crashplan-pro to the container at 127.0.0.1:5800.
Here are the relevant configuration elements that would be added to the NGINX configuration:
map $http_upgrade $connection_upgrade {
default upgrade;
'' close;
}
upstream docker-crashplan-pro {
# If the reverse proxy server is not running on the same machine as the
# Docker container, use the IP of the Docker host here.
# Make sure to adjust the port according to how port 5800 of the
# container has been mapped on the host.
server 127.0.0.1:5800;
}
server {
[...]
location = /crashplan-pro {return 301 $scheme://$http_host/crashplan-pro/;}
location /crashplan-pro/ {
proxy_pass http://crashplan-pro/;
location /crashplan-pro/websockify {
proxy_pass http://crashplan-pro/websockify/;
proxy_http_version 1.1;
proxy_set_header Upgrade $http_upgrade;
proxy_set_header Connection $connection_upgrade;
proxy_read_timeout 86400;
}
}
}
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Content type
Image
Digest
Size
239.8 MB
Last updated
almost 8 years ago
docker pull fjacquet/crashplan-pro