The image is based on https://hub.docker.com/r/arm64v8/postgres
$ docker run --name some-postgres -e POSTGRES_PASSWORD=mysecretpassword -d postgres
The default postgres
user and database are created in the entrypoint with initdb
.
The postgres database is a default database meant for use by users, utilities and third party applications.
$ docker run -it --rm --network some-network postgres psql -h some-postgres -U postgres
psql (9.5.0)
Type "help" for help.
postgres=# SELECT 1;
?column?
----------
1
(1 row)
... via docker stack deploy
or docker-compose
Example stack.yml
for postgres
:
# Use postgres/example user/password credentials
version: '3.1'
services:
db:
image: mtizima/arm64v8_postgis:10-2.5
restart: always
environment:
POSTGRES_PASSWORD: example
adminer:
image: adminer
restart: always
ports:
- 8080:8080
Run docker stack deploy -c stack.yml postgres
(or docker-compose -f stack.yml up
), wait for it to initialize completely, and visit http://swarm-ip:8080
, http://localhost:8080
, or http://host-ip:8080
(as appropriate).
There are many ways to extend the postgres
image. Without trying to support every possible use case, here are just a few that we have found useful.
The PostgreSQL image uses several environment variables which are easy to miss. The only variable required is POSTGRES_PASSWORD
, the rest are optional.
Warning: the Docker specific variables will only have an effect if you start the container with a data directory that is empty; any pre-existing database will be left untouched on container startup.
This environment variable is required for you to use the PostgreSQL image. It must not be empty or undefined. This environment variable sets the superuser password for PostgreSQL. The default superuser is defined by the POSTGRES_USER
environment variable.
Note 1: The PostgreSQL image sets up trust
authentication locally so you may notice a password is not required when connecting from localhost
(inside the same container). However, a password will be required if connecting from a different host/container.
Note 2: This variable defines the superuser password in the PostgreSQL instance, as set by the initdb
script during initial container startup. It has no effect on the PGPASSWORD
environment variable that may be used by the psql
client at runtime, as described at https://www.postgresql.org/docs/current/libpq-envars.html. PGPASSWORD
, if used, will be specified as a separate environment variable.
This optional environment variable is used in conjunction with POSTGRES_PASSWORD
to set a user and its password. This variable will create the specified user with superuser power and a database with the same name. If it is not specified, then the default user of postgres
will be used.
Be aware that if this parameter is specified, PostgreSQL will still show The files belonging to this database system will be owned by user "postgres"
during initialization. This refers to the Linux system user (from /etc/passwd
in the image) that the postgres
daemon runs as, and as such is unrelated to the POSTGRES_USER
option. See the section titled "Arbitrary --user
Notes" for more details.
This optional environment variable can be used to define a different name for the default database that is created when the image is first started. If it is not specified, then the value of POSTGRES_USER
will be used.
This optional environment variable can be used to send arguments to postgres initdb
. The value is a space separated string of arguments as postgres initdb
would expect them. This is useful for adding functionality like data page checksums: -e POSTGRES_INITDB_ARGS="--data-checksums"
.
This optional environment variable can be used to define another location for the Postgres transaction log. By default the transaction log is stored in a subdirectory of the main Postgres data folder (PGDATA
). Sometimes it can be desireable to store the transaction log in a different directory which may be backed by storage with different performance or reliability characteristics.
Note: on PostgreSQL 9.x, this variable is POSTGRES_INITDB_XLOGDIR
(reflecting the changed name of the --xlogdir
flag to --waldir
in PostgreSQL 10+).
This optional variable can be used to control the auth-method
for host
connections for all
databases, all
users, and all
addresses. If unspecified then md5
password authentication is used. On an uninitialized database, this will populate pg_hba.conf
via this approximate line:
echo "host all all all $POSTGRES_HOST_AUTH_METHOD" >> pg_hba.conf
See the PostgreSQL documentation on pg_hba.conf
for more information about possible values and their meanings.
Note 1: It is not recommended to use trust
since it allows anyone to connect without a password, even if one is set (like via POSTGRES_PASSWORD
). For more information see the PostgreSQL documentation on Trust Authentication.
Note 2: If you set POSTGRES_HOST_AUTH_METHOD
to trust
, then POSTGRES_PASSWORD
is not required.
Note 3: If you set this to an alternative value (such as scram-sha-256
), you might need additional POSTGRES_INITDB_ARGS
for the database to initialize correctly (such as POSTGRES_INITDB_ARGS=--auth-host=scram-sha-256
).
This optional variable can be used to define another location - like a subdirectory - for the database files. The default is /var/lib/postgresql/data
. If the data volume you're using is a filesystem mountpoint (like with GCE persistent disks) or remote folder that cannot be chowned to the postgres
user (like some NFS mounts), Postgres initdb
recommends a subdirectory be created to contain the data.
For example:
$ docker run -d \
--name some-postgres \
-e POSTGRES_PASSWORD=mysecretpassword \
-e PGDATA=/var/lib/postgresql/data/pgdata \
-v /custom/mount:/var/lib/postgresql/data \
postgres
This is an environment variable that is not Docker specific. Because the variable is used by the postgres
server binary (see the PostgreSQL docs), the entrypoint script takes it into account.
As an alternative to passing sensitive information via environment variables, _FILE
may be appended to some of the previously listed environment variables, causing the initialization script to load the values for those variables from files present in the container. In particular, this can be used to load passwords from Docker secrets stored in /run/secrets/<secret_name>
files. For example:
$ docker run --name some-postgres -e POSTGRES_PASSWORD_FILE=/run/secrets/postgres-passwd -d postgres
Currently, this is only supported for POSTGRES_INITDB_ARGS
, POSTGRES_PASSWORD
, POSTGRES_USER
, and POSTGRES_DB
.
If you would like to do additional initialization in an image derived from this one, add one or more *.sql
, *.sql.gz
, or *.sh
scripts under /docker-entrypoint-initdb.d
(creating the directory if necessary). After the entrypoint calls initdb
to create the default postgres
user and database, it will run any *.sql
files, run any executable *.sh
scripts, and source any non-executable *.sh
scripts found in that directory to do further initialization before starting the service.
Warning: scripts in /docker-entrypoint-initdb.d
are only run if you start the container with a data directory that is empty; any pre-existing database will be left untouched on container startup. One common problem is that if one of your /docker-entrypoint-initdb.d
scripts fails (which will cause the entrypoint script to exit) and your orchestrator restarts the container with the already initialized data directory, it will not continue on with your scripts.
For example, to add an additional user and database, add the following to /docker-entrypoint-initdb.d/init-user-db.sh
:
#!/bin/bash
set -e
psql -v ON_ERROR_STOP=1 --username "$POSTGRES_USER" --dbname "$POSTGRES_DB" <<-EOSQL
CREATE USER docker;
CREATE DATABASE docker;
GRANT ALL PRIVILEGES ON DATABASE docker TO docker;
EOSQL
These initialization files will be executed in sorted name order as defined by the current locale, which defaults to en_US.utf8
. Any *.sql
files will be executed by POSTGRES_USER
, which defaults to the postgres
superuser. It is recommended that any psql
commands that are run inside of a *.sh
script be executed as POSTGRES_USER
by using the --username "$POSTGRES_USER"
flag. This user will be able to connect without a password due to the presence of trust
authentication for Unix socket connections made inside the container.
Additionally, as of docker-library/postgres#253, these initialization scripts are run as the postgres
user (or as the "semi-arbitrary user" specified with the --user
flag to docker run
; see the section titled "Arbitrary --user
Notes" for more details). Also, as of docker-library/postgres#440, the temporary daemon started for these initialization scripts listens only on the Unix socket, so any psql
usage should drop the hostname portion (see docker-library/postgres#474 (comment) for example).
There are many ways to set PostgreSQL server configuration. For information on what is available to configure, see the postgresql.org docs for the specific version of PostgreSQL that you are running. Here are a few options for setting configuration:
-
Use a custom config file. Create a config file and get it into the container. If you need a starting place for your config file you can use the sample provided by PostgreSQL which is available in the container at
/usr/share/postgresql/postgresql.conf.sample
(/usr/local/share/postgresql/postgresql.conf.sample
in Alpine variants).- Important note: you must set
listen_addresses = '*'
so that other containers will be able to access postgres.
$ # get the default config $ docker run -i --rm postgres cat /usr/share/postgresql/postgresql.conf.sample > my-postgres.conf $ # customize the config $ # run postgres with custom config $ docker run -d --name some-postgres -v "$PWD/my-postgres.conf":/etc/postgresql/postgresql.conf -e POSTGRES_PASSWORD=mysecretpassword postgres -c 'config_file=/etc/postgresql/postgresql.conf'
- Important note: you must set
-
Set options directly on the run line. The entrypoint script is made so that any options passed to the docker command will be passed along to the
postgres
server daemon. From the docs we see that any option available in a.conf
file can be set via-c
.$ docker run -d --name some-postgres -e POSTGRES_PASSWORD=mysecretpassword postgres -c shared_buffers=256MB -c max_connections=200
You can extend the Debian-based images with a simple Dockerfile
to set a different locale. The following example will set the default locale to de_DE.utf8
:
FROM mtizima/arm64v8_postgis:10-2.5
RUN localedef -i de_DE -c -f UTF-8 -A /usr/share/locale/locale.alias de_DE.UTF-8
ENV LANG de_DE.utf8
Since database initialization only happens on container startup, this allows us to set the language before it is created.
Also of note, Alpine-based variants do not support locales; see "Character sets and locale" in the musl documentation for more details.
If there is no database when postgres
starts in a container, then postgres
will create the default database for you. While this is the expected behavior of postgres
, this means that it will not accept incoming connections during that time. This may cause issues when using automation tools, such as docker-compose
, that start several containers simultaneously.
Also note that the default /dev/shm
size for containers is 64MB. If the shared memory is exhausted you will encounter ERROR: could not resize shared memory segment . . . : No space left on device
. You will want to pass --shm-size=256MB
for example to docker run
, or alternatively in docker-compose
See "IPVS connection timeout issue" in the Docker Success Center for details about IPVS connection timeouts which will affect long-running idle connections to PostgreSQL in Swarm Mode using overlay networks.
Important note: There are several ways to store data used by applications that run in Docker containers. We encourage users of the postgres
images to familiarize themselves with the options available, including:
- Let Docker manage the storage of your database data by writing the database files to disk on the host system using its own internal volume management. This is the default and is easy and fairly transparent to the user. The downside is that the files may be hard to locate for tools and applications that run directly on the host system, i.e. outside containers.
- Create a data directory on the host system (outside the container) and mount this to a directory visible from inside the container. This places the database files in a known location on the host system, and makes it easy for tools and applications on the host system to access the files. The downside is that the user needs to make sure that the directory exists, and that e.g. directory permissions and other security mechanisms on the host system are set up correctly.
The Docker documentation is a good starting point for understanding the different storage options and variations, and there are multiple blogs and forum postings that discuss and give advice in this area. We will simply show the basic procedure here for the latter option above:
-
Create a data directory on a suitable volume on your host system, e.g.
/my/own/datadir
. -
Start your
postgres
container like this:$ docker run --name some-postgres -v /my/own/datadir:/var/lib/postgresql/data -e POSTGRES_PASSWORD=mysecretpassword -d postgres:tag
The -v /my/own/datadir:/var/lib/postgresql/data
part of the command mounts the /my/own/datadir
directory from the underlying host system as /var/lib/postgresql/data
inside the container, where PostgreSQL by default will write its data files.