225 lines
8.6 KiB
Markdown
225 lines
8.6 KiB
Markdown
---
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stage: none
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group: unassigned
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info: To determine the technical writer assigned to the Stage/Group associated with this page, see https://about.gitlab.com/handbook/engineering/ux/technical-writing/#assignments
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---
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# Guidelines for reusing abstractions
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As GitLab has grown, different patterns emerged across the codebase. Service
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classes, serializers, and presenters are just a few. These patterns made it easy
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to reuse code, but at the same time make it easy to accidentally reuse the wrong
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abstraction in a particular place.
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## Why these guidelines are necessary
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Code reuse is good, but sometimes this can lead to shoehorning the wrong
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abstraction into a particular use case. This in turn can have a negative impact
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on maintainability, the ability to easily debug problems, or even performance.
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An example would be to use `ProjectsFinder` in `IssuesFinder` to limit issues to
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those belonging to a set of projects. While initially this may seem like a good
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idea, both classes provide a very high level interface with very little control.
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This means that `IssuesFinder` may not be able to produce a better optimized
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database query, as a large portion of the query is controlled by the internals
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of `ProjectsFinder`.
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To work around this problem, you would use the same code used by
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`ProjectsFinder`, instead of using `ProjectsFinder` itself directly. This allows
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you to compose your behavior better, giving you more control over the behavior
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of the code.
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To illustrate, consider the following code from `IssuableFinder#projects`:
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```ruby
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return @projects = project if project?
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projects =
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if current_user && params[:authorized_only].presence && !current_user_related?
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current_user.authorized_projects
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elsif group
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finder_options = { include_subgroups: params[:include_subgroups], only_owned: true }
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GroupProjectsFinder.new(group: group, current_user: current_user, options: finder_options).execute
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else
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ProjectsFinder.new(current_user: current_user).execute
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end
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@projects = projects.with_feature_available_for_user(klass, current_user).reorder(nil)
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```
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Here we determine what projects to scope our data to, using three different
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approaches. When a group is specified, we use `GroupProjectsFinder` to retrieve
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all the projects of that group. On the surface this seems harmless: it is easy
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to use, and we only need two lines of code.
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In reality, things can get hairy very quickly. For example, the query produced
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by `GroupProjectsFinder` may start out simple. Over time more and more
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functionality is added to this (high level) interface. Instead of _only_
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affecting the cases where this is necessary, it may also start affecting
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`IssuableFinder` in a negative way. For example, the query produced by
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`GroupProjectsFinder` may include unnecessary conditions. Since we're using a
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finder here, we can't easily opt-out of that behavior. We could add options to
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do so, but then we'd need as many options as we have features. Every option adds
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two code paths, which means that for four features we have to cover 8 different
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code paths.
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A much more reliable (and pleasant) way of dealing with this, is to simply use
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the underlying bits that make up `GroupProjectsFinder` directly. This means we
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may need a little bit more code in `IssuableFinder`, but it also gives us much
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more control and certainty. This means we might end up with something like this:
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```ruby
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return @projects = project if project?
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projects =
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if current_user && params[:authorized_only].presence && !current_user_related?
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current_user.authorized_projects
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elsif group
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current_user
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.owned_groups(subgroups: params[:include_subgroups])
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.projects
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.any_additional_method_calls
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.that_might_be_necessary
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else
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current_user
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.projects_visible_to_user
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.any_additional_method_calls
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.that_might_be_necessary
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end
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@projects = projects.with_feature_available_for_user(klass, current_user).reorder(nil)
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```
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This is just a sketch, but it shows the general idea: we would use whatever the
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`GroupProjectsFinder` and `ProjectsFinder` finders use under the hoods.
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## End goal
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The guidelines in this document are meant to foster _better_ code reuse, by
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clearly defining what can be reused where, and what to do when you can not reuse
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something. Clearly separating abstractions makes it harder to use the wrong one,
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makes it easier to debug the code, and (hopefully) results in fewer performance
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problems.
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## Abstractions
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Now let's take a look at the various abstraction levels available, and what they
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can (or cannot) reuse. For this we can use the following table, which defines
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the various abstractions and what they can (not) reuse:
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| Abstraction | Service classes | Finders | Presenters | Serializers | Model instance method | Model class methods | Active Record | Worker
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|:-----------------------|:-----------------|:---------|:------------|:--------------|:------------------------|:----------------------|:----------------|:--------
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| Controller | Yes | Yes | Yes | Yes | Yes | No | No | No
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| Service class | Yes | Yes | No | No | Yes | No | No | Yes
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| Finder | No | No | No | No | Yes | Yes | No | No
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| Presenter | No | Yes | No | No | Yes | Yes | No | No
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| Serializer | No | Yes | No | No | Yes | Yes | No | No
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| Model class method | No | No | No | No | Yes | Yes | Yes | No
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| Model instance method | No | Yes | No | No | Yes | Yes | Yes | Yes
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| Worker | Yes | Yes | No | No | Yes | No | No | Yes
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### Controllers
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Everything in `app/controllers`.
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Controllers should not do much work on their own, instead they simply pass input
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to other classes and present the results.
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### Grape endpoint
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Everything in `lib/api`.
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### Service classes
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Everything that resides in `app/services`.
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In Service classes the use of `execute` and `#execute` is preferred over `call` and `#call`.
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#### ServiceResponse
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Service classes usually have an `execute` method, which can return a
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`ServiceResponse`. You can use `ServiceResponse.success` and
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`ServiceResponse.error` to return a response in `execute` method.
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In a successful case:
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```ruby
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response = ServiceResponse.success(message: 'Branch was deleted')
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response.success? # => true
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response.error? # => false
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response.status # => :success
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response.message # => 'Branch was deleted'
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```
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In a failed case:
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```ruby
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response = ServiceResponse.error(message: 'Unsupported operation')
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response.success? # => false
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response.error? # => true
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response.status # => :error
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response.message # => 'Unsupported operation'
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```
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An additional payload can also be attached:
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```ruby
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response = ServiceResponse.success(payload: { issue: issue })
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response.payload[:issue] # => issue
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```
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### Finders
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Everything in `app/finders`, typically used for retrieving data from a database.
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Finders can not reuse other finders in an attempt to better control the SQL
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queries they produce.
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### Presenters
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Everything in `app/presenters`, used for exposing complex data to a Rails view,
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without having to create many instance variables.
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### Serializers
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Everything in `app/serializers`, used for presenting the response to a request,
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typically in JSON.
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### Model class methods
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These are class methods defined by _GitLab itself_, including the following
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methods provided by Active Record:
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- `find`
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- `find_by_id`
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- `delete_all`
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- `destroy`
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- `destroy_all`
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Any other methods such as `find_by(some_column: X)` are not included, and
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instead fall under the "Active Record" abstraction.
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### Model instance methods
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Instance methods defined on Active Record models by _GitLab itself_. Methods
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provided by Active Record are not included, except for the following methods:
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- `save`
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- `update`
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- `destroy`
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- `delete`
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### Active Record
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The API provided by Active Record itself, such as the `where` method, `save`,
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`delete_all`, and so on.
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### Worker
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Everything in `app/workers`.
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Use `SomeWorker.perform_async` or `SomeWorker.perform_in` to schedule Sidekiq
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jobs. Never directly invoke a worker using `SomeWorker.new.perform`.
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