
Dockerizing a project helps to simplify setting up new developer workstations, and on-boarding new team members. All the pieces of infrastructure necessary to get started are all in the Compose file. Yet, it's not as easy as it could be.
We still need to create a settings.local.php file with all the necessary database connection information and any setting overrides. In this tutorial, we'll move those out of the local settings file and into a Docker specific settings file that ships with all that information pre-configured out of the box.
In this tutorial, we'll:
- Explain the motivation behind having a Docker-specific settings file.
- Describe how to modify settings.php to detect when it's in a Docker environment.
- Create a Docker-specific settings file with everything preconfigured.
One of the problems with Dockerizing an existing project is that configuration information tends to proliferate everywhere. Not only do we have settings in docker-compose.yml, but also in our Docker-specific settings file settings.docker.php. If we change a setting in one place we need to copy and paste it everywhere else. This can make things difficult if we suddenly have the need to change a setting.
Fortunately, there's a way to centralize Docker configuration for our project by using an environment file.
In this tutorial, we'll:
- Review what an environment file is and its format.
- List the advantages of moving Docker configuration to an environment file.
- Describe the .env file, and how it provides us further advantages.
Throughout this series we've been focused on working with a single set of containers and a single site. For most Drupal developers, however, we're expected to work with multiple client sites, sometimes several different ones in the same day.
When we add Docker into the mix, it can seem overwhelmingly complicated when you're used to working with other tools. Fortunately, there are several simple practices that not only work well with Docker, but also support your workflow.
In this tutorial, we'll:
- Outline the best practices when building a local development environment in Docker.
- Compare the differences in workflow when using Docker compared to other local development environments.
- Discuss various strategies to reduce resource use on team workstations.
Today's Drupal sites often rely upon external services in order to serve their visitors. When hosting such a site in Docker, we need to take special consideration in order to allow the site to access these essential components.
In this tutorial, we'll:
- Outline the steps necessary for troubleshooting connectivity issues
- Discuss steps to protect API keys and other sensitive pieces of information
- Touch upon your options if you require external libraries or utilities
One of the key advantages of Docker is that it makes it much easier to share your containers with your team members. For most of this series, we've been relying on containers hosted on Docker Hub. When we need to create a custom container for our team, we want to leverage that same sharing infrastructure.
In this tutorial, we'll:
- Describe the various methods of sharing containers.
- Outline the advantages of using Docker Hub.
- Briefly describe why and when you should use a private container image registry.
For many container images on Docker Hub, the preferred approach is to create an automatic build. An automatic build integrates Hub with a public Git repository, providing you an effective, open, and best-practice approach to sharing your containers with your team, and with the world.
In this tutorial, we'll:
- List the advantages of creating an automatic build compared to other approaches on Docker Hub.
- Describe the process of creating an automatic build.
- Outline how to organize your git repository for your images.
- Learn how to configure and trigger the build on Hub.
Often it's useful for a container image to provide several variants of itself under the same name on Docker Hub. Docker uses tags to identify these variants. You can configure your own tags as part of your automatic build on Docker Hub.
In this tutorial, we'll:
- Outline the uses for tags
- Discuss the best practices for tag names
- Learn how to add tags to your automatic build on Docker Hub
Docker Hub provides a free, easy to use way of distributing your container images. However, there are situations where sharing your container images is either not ideal, bad practice, or against legal requirements. In those cases, you will want to use a private registry instead.
In this tutorial, we'll:
- Describe what a private registry is.
- Learn how to run Docker's own
registry
image. - Learn how to push and pull images from the self-hosted registry.
- Outline the production concerns for the
registry
image. - List other options for self-hosting your own images.
Docker provides numerous advantages for us as Drupal developers. It simplifies the management of infrastructure for our projects while allowing customization to suit each project's needs. Running Docker in production also brings a number of advantages, but it also creates new concerns.
In this tutorial, we'll:
- Outline the advantages Docker brings to the production environment.
- Highlight the concerns when planning a production deployment of Docker.
- Describe container orchestration and list several container orchestration platforms to choose from.
Often, there's an existing Drush command that does most of what you want, but needs just a few tweaks or enhancements to make it meet your project requirements. Maybe the existing core Drush command has the functionality but lacks some additional validation. Or maybe you need to add an option to perform some application-specific debugging logic for all commands in a group.
Drush hooks can be used to alter, extend, and enhance existing Drush commands.
In this tutorial we'll:
- Learn how to alter a Drush command with code in a custom module
- Declare a validation hook that alters the
user:password
command with additional password validation logic
By the end of this tutorial you should be able to alter a Drush command provided by Drush core or a contributed module with your own custom code.
Back-end developers, and Drupal site builders, often find themselves having to perform the same UI steps over and over again, like exporting configuration, importing configuration changes, running cron, processing a large queue of jobs, indexing items for Search API, and more. Performing these tasks with Drush saves time and reduces the number of clicks required.
Drush core contains commands to execute all the most common tasks. Many contributed modules provide their own Drush commands to make interaction with the module's features, easier, faster, and scriptable.
In this tutorial we'll:
- Learn about the Drush core commands for common tasks like interacting with queues, performing database backups, and importing/exporting configuration
- Demonstrate how to find the Drush commands provided by contributed modules in your project
By the end of this tutorial you'll learn some popular commands for common tasks that'll speed up your daily work.
Every Drupal site consists of many Drupal projects like modules and themes. Drush comes with a group of commands that aid in managing projects from the command line. These commands can check which modules are present in a site's codebase, report their security status, enable modules, and display metadata for modules and themes. All of these commands start with the pm
prefix, and are part of the project manager group.
Common use cases for the project manager commands include: quickly enabling/disabling modules via the CLI rather than performing numerous clicks in the UI, and as part of CI/CD process that lists (or maybe even automates) security updates.
In this tutorial we'll:
- List the available
pm
commands - Enable a module with Drush
- Uninstall a module with Drush
- Use Drush to check for security updates for modules, themes and PHP packages
By the end of this tutorial you'll have an understanding of the project manager commands that come with Drush, how to use them, and how to speed up common workflows and maintenance tasks.
Administration and maintenance of Drupal websites consists of many tasks that can both be performed via the command line, and automated, with Drush. Using Drush's site and environment administration commands you can run database updates, check an environment's status, clear (rebuild) the cache, perform Cron-related operations, and manage users. These tasks are repetitive, often require many steps in the UI, and may be tedious in the long run. Learning to execute them with Drush can save you time and allows for more automation of common tasks.
In this tutorial we'll:
- Use Drush to check a site's status
- Learn how to perform database updates with Drush
- Clear the Drupal cache with Drush
- Use Drush to execute Cron tasks for a Drupal site
- Learn how to use Drush to login to a site as any user, and manage existing users
By the end of this tutorial you'll be able to perform many common Drupal environment and administration tasks from the command line with Drush. We're not going to cover all of the environment management commands in this tutorial, just some of the more popular ones. We encourage you to explore further on your own.
What Is Drush?
FreeDrush, aka The Drupal Shell, is a command line utility and UNIX scripting interface for Drupal. It allows access to common Drupal features and tasks via the command line. It can help speed up common tasks for Drupal site builders, developers, and DevOps teams. Among other things, it makes it easier to integrate Drupal into CI/CD workflows.
In this tutorial we'll:
- Learn what Drush is and what can be done with Drush
- Install Drush
- Find a list of Drush commands
- Learn how to execute commands
By the end of this tutorial, you'll understand how to install and use Drush with your Drupal projects, navigate the list of its commands and run them. This is intended as an overview. Other tutorials will provide more detail about common commands and use-cases.
Make your custom Drush command more flexible by allowing users to pass command line arguments into it. For example, rather than hard-coding that the command lists users with a specific status, allow the desired status to be specified at run-time. This allows the command's logic to be more generic, and to return different results, or operate on different data, based on the provided parameters.
Parameters are variables that are passed from user input at the command line into the Drush command method. Typically, they are either single string values, or comma-delimited strings of values. Parameters are typically used to provide input for the command related to what the command should work on, in contrast to options, which are typically used to configure how the command works.
In this tutorial we'll:
- Declare parameters for a custom Drush command in its attributes
- Use the parameter input inside the custom Drush command method
By the end of this tutorial you should understand how to work with parameters inside custom Drush commands.
When you create a custom Drush command it might be useful to allow users to pass options (predefined values) that change the way a command works. You can think of options as being flags, or variables, that affect the command's internal logic. As an example, consider the Drush core user:login
command which by default returns a one-time login link for the root account. The command also accepts an optional --name
option which allows the internal logic to create a link for a specified user instead of only being able to create links for the root user. This makes the command useful in a wider variety of situations. Another common option is the --format
option which allows a user to specify that they want the command to return its output in a format (CSV, JSON, Table, etc.) other than the default.
Options are defined in the Drush command's attributes. Their values are passed as part of an associative array to the command method. Unlike parameters, options are not ordered, so you can specify them in any order, and they are called with two dashes like --my-option
. Options are always optional, not required, and can be set up to accept a value --name=John
or as a boolean flag without a value --translate
.
In this tutorial we'll:
- Declare options for a custom Drush command in its attributes
- Learn how to use these options inside the custom Drush command method
By the end of this tutorial, you should be able to add options to your own custom Drush commands.
Drush commands are commonly run in the Drupal docroot, the directory where Drupal's files live. This is a relatively simple task on your local development environment. But if you're working on multiple sites and each of those sites has one or more remote environments that you connect to via SSH, workflows quickly become complicated. Creating and using Drush site aliases allows you to run Drush commands on any site, local or remote, that you have credentials to access, from any location on your computer that has access to a Drush executable.
Imagine you've got a Drupal project with dev, test, and live environments in the cloud somewhere. And you need to clear the cache on the dev environment. You could SSH to that environment, and execute drush cr
there. Or, after configuring a site alias you could do something like:
drush @provider.dev cr -y
And Drush will connect to the remote environment and clear the cache.
Site aliases allow bundling the configuration options (--uri
, --root
, etc.) for a specific remote server under an alias. This reduces the amount of typing required. Even more importantly, it helps teams agree on a common definition for environments like @dev
, @test
, and @live
by committing their configurations to version control.
In this tutorial we'll:
- Define what a Drush site alias is
- Understand the use case for aliases
- Learn how to configure and use Drush site aliases
By the end of this tutorial, you should understand how Drush site aliases work, how to create Drush site aliases, and how to use them in a Drush command.
The Drush executable can be configured through the use of YAML configuration files and environment variables. This configuration can help cut down on typing lengthy frequently-used commands. You can tell Drush to look for command files in project-specific locations. Configuration can also set the value(s) of a specific command's options, instead of having to type them at the command line every time.
In this tutorial we'll:
- Explore different Drush configuration options
- Learn how to configure Drush for your project
By the end of this tutorial, you'll know how to provide project specific, and global, configuration that helps customize Drush and improve your own efficiency.
Creating a custom Drush command requires creating a PHP class that Drush can find with methods that have PHP attributes that provide metadata about each custom command. You'll use an autowire trait to inject any services into it. You'll also optionally modify the project's composer.json to tell Drush what versions of Drush the command is compatible with.
Custom Drush commands are a great way to expose your custom module's features to help automate these tasks and allow users to perform them as background processes. They can also provide a more efficient way to execute PHP code that takes a long time and is prone to timing out when run via the web server.
Depending on your use-case it can also be more efficient to create a custom Drush command to execute your logic instead of coding a complete UI. For example, if all the command needs to do is generate a CSV list it might take less effort to write a Drush command and pipe the output to a file than to create a UI that generates a file and prompts the user to download it.
In this tutorial we'll:
- Declare a new custom Drush command inside a custom module
- Make our custom Drush command output a list of all the blocked users on the site
- Verify our new command is working
By the end of this tutorial you should understand how to create a custom Drush command that returns a list of blocked users.
Developers can implement the Drush Command API to write their own custom Drush commands. This allows you to include Drush commands with your modules to allow the module's features to be used via the CLI. You can also create project-specific Drush commands that help with the development, deployment, and maintenance of your particular application.
We've written Drush commands to help generate reports, make it easier for new team members to get up and running, compile custom theme assets, and more. Any time we need to write PHP code that interacts with our Drupal site where we're worried the code might time out because it takes too long to execute we'll reach for Drush. Custom Drush commands are also useful to combine background processes that can be executed on cron, such as nightly imports, data synchronization, bulk database manipulation, custom queues processing, and so much more.
In this tutorial we'll:
- Learn about different types of custom Drush commands
- Review the anatomy of a Drush command
- See how the Drush bootstrap process relates to commands
By the end of this tutorial, you'll be able to identify the parts of a custom Drush command and start writing your own.