464 lines
17 KiB
Markdown
464 lines
17 KiB
Markdown
---
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stage: Enablement
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group: Distribution
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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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# Run multiple Sidekiq processes **(FREE SELF)**
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GitLab allows you to start multiple Sidekiq processes.
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These processes can be used to consume a dedicated set
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of queues. This can be used to ensure certain queues always have dedicated
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workers, no matter the number of jobs that need to be processed.
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NOTE:
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The information in this page applies only to Omnibus GitLab.
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## Available Sidekiq queues
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For a list of the existing Sidekiq queues, check the following files:
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- [Queues for both GitLab Community and Enterprise Editions](https://gitlab.com/gitlab-org/gitlab/blob/master/app/workers/all_queues.yml)
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- [Queues for GitLab Enterprise Editions only](https://gitlab.com/gitlab-org/gitlab/blob/master/ee/app/workers/all_queues.yml)
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Each entry in the above files represents a queue on which Sidekiq processes
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can be started.
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## Start multiple processes
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> - [Introduced](https://gitlab.com/gitlab-org/omnibus-gitlab/-/merge_requests/4006) in GitLab 12.10, starting multiple processes with Sidekiq cluster.
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> - [Sidekiq cluster moved](https://gitlab.com/groups/gitlab-com/gl-infra/-/epics/181) to GitLab Free in 12.10.
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> - [Sidekiq cluster became default](https://gitlab.com/gitlab-org/omnibus-gitlab/-/merge_requests/4140) in GitLab 13.0.
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To start multiple processes:
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1. Using the `sidekiq['queue_groups']` array setting, specify how many processes to
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create using `sidekiq-cluster` and which queue they should handle.
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Each item in the array equates to one additional Sidekiq
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process, and values in each item determine the queues it works on.
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For example, the following setting creates three Sidekiq processes, one to run on
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`elastic_indexer`, one to run on `mailers`, and one process running on all queues:
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```ruby
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sidekiq['queue_groups'] = [
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"elastic_indexer",
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"mailers",
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"*"
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]
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```
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To have an additional Sidekiq process handle multiple queues, add multiple
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queue names to its item delimited by commas. For example:
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```ruby
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sidekiq['queue_groups'] = [
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"elastic_indexer, elastic_commit_indexer",
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"mailers",
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"*"
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]
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```
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[In GitLab 12.9](https://gitlab.com/gitlab-org/gitlab/-/merge_requests/26594) and
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later, the special queue name `*` means all queues. This starts two
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processes, each handling all queues:
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```ruby
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sidekiq['queue_groups'] = [
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"*",
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"*"
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]
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```
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`*` cannot be combined with concrete queue names - `*, mailers` will
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just handle the `mailers` queue.
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When `sidekiq-cluster` is only running on a single node, make sure that at least
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one process is running on all queues using `*`. This means a process will
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automatically pick up jobs in queues created in the future.
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If `sidekiq-cluster` is running on more than one node, you can also use
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[`--negate`](#negate-settings) and list all the queues that are already being
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processed.
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1. Save the file and reconfigure GitLab for the changes to take effect:
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```shell
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sudo gitlab-ctl reconfigure
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```
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After the extra Sidekiq processes are added, navigate to
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**Admin Area > Monitoring > Background Jobs** (`/admin/background_jobs`) in GitLab.
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![Multiple Sidekiq processes](img/sidekiq-cluster.png)
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## Negate settings
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To have the additional Sidekiq processes work on every queue **except** the ones
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you list:
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1. After you follow the steps for [starting extra processes](#start-multiple-processes),
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edit `/etc/gitlab/gitlab.rb` and add:
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```ruby
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sidekiq['negate'] = true
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```
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1. Save the file and reconfigure GitLab for the changes to take effect:
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```shell
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sudo gitlab-ctl reconfigure
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```
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## Queue selector
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> - [Introduced](https://gitlab.com/gitlab-com/gl-infra/scalability/-/issues/45) in GitLab 12.8.
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> - [Sidekiq cluster, including queue selector, moved](https://gitlab.com/groups/gitlab-com/gl-infra/-/epics/181) to GitLab Free in 12.10.
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> - [Renamed from `experimental_queue_selector` to `queue_selector`](https://gitlab.com/gitlab-com/gl-infra/scalability/-/issues/147) in GitLab 13.6.
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In addition to selecting queues by name, as above, the `queue_selector`
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option allows queue groups to be selected in a more general way using
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the following components:
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- Attributes that can be selected.
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- Operators used to construct a query.
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When `queue_selector` is set, all `queue_groups` must be in the queue
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selector syntax.
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### Available attributes
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- [Introduced](https://gitlab.com/gitlab-com/gl-infra/scalability/-/issues/261) in GitLab 13.1, `tags`.
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From the [list of all available
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attributes](https://gitlab.com/gitlab-org/gitlab/-/blob/master/app/workers/all_queues.yml),
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`queue_selector` allows selecting of queues by the following attributes:
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- `feature_category` - the [GitLab feature
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category](https://about.gitlab.com/direction/maturity/#category-maturity) the
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queue belongs to. For example, the `merge` queue belongs to the
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`source_code_management` category.
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- `has_external_dependencies` - whether or not the queue connects to external
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services. For example, all importers have this set to `true`.
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- `urgency` - how important it is that this queue's jobs run
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quickly. Can be `high`, `low`, or `throttled`. For example, the
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`authorized_projects` queue is used to refresh user permissions, and
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is high urgency.
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- `name` - the queue name. The other attributes are typically more useful as
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they are more general, but this is available in case a particular queue needs
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to be selected.
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- `resource_boundary` - if the queue is bound by `cpu`, `memory`, or
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`unknown`. For example, the `project_export` queue is memory bound as it has
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to load data in memory before saving it for export.
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- `tags` - short-lived annotations for queues. These are expected to frequently
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change from release to release, and may be removed entirely.
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`has_external_dependencies` is a boolean attribute: only the exact
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string `true` is considered true, and everything else is considered
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false.
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`tags` is a set, which means that `=` checks for intersecting sets, and
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`!=` checks for disjoint sets. For example, `tags=a,b` selects queues
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that have tags `a`, `b`, or both. `tags!=a,b` selects queues that have
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neither of those tags.
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### Available operators
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`queue_selector` supports the following operators, listed from highest
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to lowest precedence:
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- `|` - the logical OR operator. For example, `query_a|query_b` (where `query_a`
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and `query_b` are queries made up of the other operators here) will include
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queues that match either query.
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- `&` - the logical AND operator. For example, `query_a&query_b` (where
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`query_a` and `query_b` are queries made up of the other operators here) will
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only include queues that match both queries.
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- `!=` - the NOT IN operator. For example, `feature_category!=issue_tracking`
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excludes all queues from the `issue_tracking` feature category.
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- `=` - the IN operator. For example, `resource_boundary=cpu` includes all
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queues that are CPU bound.
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- `,` - the concatenate set operator. For example,
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`feature_category=continuous_integration,pages` includes all queues from
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either the `continuous_integration` category or the `pages` category. This
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example is also possible using the OR operator, but allows greater brevity, as
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well as being lower precedence.
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The operator precedence for this syntax is fixed: it's not possible to make AND
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have higher precedence than OR.
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[In GitLab 12.9](https://gitlab.com/gitlab-org/gitlab/-/merge_requests/26594) and
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later, as with the standard queue group syntax above, a single `*` as the
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entire queue group selects all queues.
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### Example queries
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In `/etc/gitlab/gitlab.rb`:
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```ruby
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sidekiq['enable'] = true
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sidekiq['queue_selector'] = true
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sidekiq['queue_groups'] = [
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# Run all non-CPU-bound queues that are high urgency
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'resource_boundary!=cpu&urgency=high',
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# Run all continuous integration and pages queues that are not high urgency
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'feature_category=continuous_integration,pages&urgency!=high',
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# Run all queues
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'*'
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]
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```
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### Disable Sidekiq cluster
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WARNING:
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Sidekiq cluster is [scheduled](https://gitlab.com/gitlab-com/gl-infra/scalability/-/issues/240)
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to be the only way to start Sidekiq in GitLab 14.0.
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By default, the Sidekiq service will run `sidekiq-cluster`. To disable this behavior,
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add the following to the Sidekiq configuration:
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```ruby
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sidekiq['enable'] = true
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sidekiq['cluster'] = false
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```
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All of the aforementioned configuration options for `sidekiq`
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are available. By default, they will be configured as follows:
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```ruby
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sidekiq['queue_selector'] = false
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sidekiq['interval'] = nil
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sidekiq['max_concurrency'] = 50
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sidekiq['min_concurrency'] = nil
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sidekiq['negate'] = false
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sidekiq['queue_groups'] = ['*']
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sidekiq['shutdown_timeout'] = 25
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```
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`sidekiq_cluster` must be disabled if you decide to configure the
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cluster as above.
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When disabling `sidekiq_cluster`, you must copy your configuration for
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`sidekiq_cluster`over to `sidekiq`. Anything configured for
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`sidekiq_cluster` will be overridden by the options for `sidekiq` when
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setting `sidekiq['cluster'] = true`.
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When using this feature, the service called `sidekiq` will now be
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running `sidekiq-cluster`.
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The [concurrency](#manage-concurrency) and other options configured
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for Sidekiq will be respected.
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By default, logs for `sidekiq-cluster` go to `/var/log/gitlab/sidekiq`
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like regular Sidekiq logs.
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## Ignore all GitHub import queues
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When [importing from GitHub](../../user/project/import/github.md), Sidekiq might
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use all of its resources to perform those operations. To set up a separate
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`sidekiq-cluster` process to ignore all GitHub import-related queues:
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1. Edit `/etc/gitlab/gitlab.rb` and add:
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```ruby
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sidekiq['enable'] = true
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sidekiq['negate'] = true
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sidekiq['queue_groups'] = [
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"github_import_advance_stage",
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"github_importer:github_import_import_diff_note",
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"github_importer:github_import_import_issue",
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"github_importer:github_import_import_note",
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"github_importer:github_import_import_lfs_object",
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"github_importer:github_import_import_pull_request",
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"github_importer:github_import_refresh_import_jid",
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"github_importer:github_import_stage_finish_import",
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"github_importer:github_import_stage_import_base_data",
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"github_importer:github_import_stage_import_issues_and_diff_notes",
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"github_importer:github_import_stage_import_notes",
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"github_importer:github_import_stage_import_lfs_objects",
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"github_importer:github_import_stage_import_pull_requests",
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"github_importer:github_import_stage_import_repository"
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]
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```
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1. Save the file and reconfigure GitLab for the changes to take effect:
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```shell
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sudo gitlab-ctl reconfigure
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```
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## Number of threads
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Each process defined under `sidekiq` starts with a
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number of threads that equals the number of queues, plus one spare thread.
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For example, a process that handles the `process_commit` and `post_receive`
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queues will use three threads in total.
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## Manage concurrency
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When setting the maximum concurrency, keep in mind this normally should
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not exceed the number of CPU cores available. The values in the examples
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below are arbitrary and not particular recommendations.
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Each thread requires a Redis connection, so adding threads may increase Redis
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latency and potentially cause client timeouts. See the [Sidekiq documentation
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about Redis](https://github.com/mperham/sidekiq/wiki/Using-Redis) for more
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details.
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### When running Sidekiq cluster (default)
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Running Sidekiq cluster is the default in GitLab 13.0 and later.
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1. Edit `/etc/gitlab/gitlab.rb` and add:
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```ruby
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sidekiq['min_concurrency'] = 15
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sidekiq['max_concurrency'] = 25
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```
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1. Save the file and reconfigure GitLab for the changes to take effect:
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```shell
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sudo gitlab-ctl reconfigure
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```
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`min_concurrency` and `max_concurrency` are independent; one can be set without
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the other. Setting `min_concurrency` to `0` will disable the limit.
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For each queue group, let `N` be one more than the number of queues. The
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concurrency factor will be set to:
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1. `N`, if it's between `min_concurrency` and `max_concurrency`.
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1. `max_concurrency`, if `N` exceeds this value.
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1. `min_concurrency`, if `N` is less than this value.
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If `min_concurrency` is equal to `max_concurrency`, then this value will be used
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regardless of the number of queues.
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When `min_concurrency` is greater than `max_concurrency`, it is treated as
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being equal to `max_concurrency`.
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### When running a single Sidekiq process
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Running a single Sidekiq process is the default in GitLab 12.10 and earlier.
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WARNING:
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Running Sidekiq directly is scheduled to be removed in GitLab
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[14.0](https://gitlab.com/gitlab-com/gl-infra/scalability/-/issues/240).
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1. Edit `/etc/gitlab/gitlab.rb` and add:
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```ruby
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sidekiq['cluster'] = false
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sidekiq['concurrency'] = 25
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```
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1. Save the file and reconfigure GitLab for the changes to take effect:
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```shell
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sudo gitlab-ctl reconfigure
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```
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This will set the concurrency (number of threads) for the Sidekiq process.
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## Modify the check interval
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To modify the check interval for the additional Sidekiq processes:
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1. Edit `/etc/gitlab/gitlab.rb` and add:
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```ruby
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sidekiq['interval'] = 5
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```
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1. Save the file and [reconfigure GitLab](../restart_gitlab.md#omnibus-gitlab-reconfigure) for the changes to take effect.
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This tells the additional processes how often to check for enqueued jobs.
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## Troubleshoot using the CLI
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WARNING:
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It's recommended to use `/etc/gitlab/gitlab.rb` to configure the Sidekiq processes.
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If you experience a problem, you should contact GitLab support. Use the command
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line at your own risk.
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For debugging purposes, you can start extra Sidekiq processes by using the command
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`/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster`. This command
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takes arguments using the following syntax:
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```shell
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/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster [QUEUE,QUEUE,...] [QUEUE, ...]
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```
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Each separate argument denotes a group of queues that have to be processed by a
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Sidekiq process. Multiple queues can be processed by the same process by
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separating them with a comma instead of a space.
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Instead of a queue, a queue namespace can also be provided, to have the process
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automatically listen on all queues in that namespace without needing to
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explicitly list all the queue names. For more information about queue namespaces,
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see the relevant section in the
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[Sidekiq style guide](../../development/sidekiq_style_guide.md#queue-namespaces).
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For example, say you want to start 2 extra processes: one to process the
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`process_commit` queue, and one to process the `post_receive` queue. This can be
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done as follows:
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```shell
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/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster process_commit post_receive
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```
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If you instead want to start one process processing both queues, you'd use the
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following syntax:
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```shell
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/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster process_commit,post_receive
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```
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If you want to have one Sidekiq process dealing with the `process_commit` and
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`post_receive` queues, and one process to process the `gitlab_shell` queue,
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you'd use the following:
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```shell
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/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster process_commit,post_receive gitlab_shell
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```
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### Monitor the `sidekiq-cluster` command
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The `sidekiq-cluster` command will not terminate once it has started the desired
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amount of Sidekiq processes. Instead, the process will continue running and
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forward any signals to the child processes. This makes it easy to stop all
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Sidekiq processes as you simply send a signal to the `sidekiq-cluster` process,
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instead of having to send it to the individual processes.
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If the `sidekiq-cluster` process crashes or receives a `SIGKILL`, the child
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processes will terminate themselves after a few seconds. This ensures you don't
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end up with zombie Sidekiq processes.
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All of this makes monitoring the processes fairly easy. Simply hook up
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`sidekiq-cluster` to your supervisor of choice (for example, runit) and you're good to
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go.
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If a child process died the `sidekiq-cluster` command will signal all remaining
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process to terminate, then terminate itself. This removes the need for
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`sidekiq-cluster` to re-implement complex process monitoring/restarting code.
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Instead you should make sure your supervisor restarts the `sidekiq-cluster`
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process whenever necessary.
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### PID files
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The `sidekiq-cluster` command can store its PID in a file. By default no PID
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file is written, but this can be changed by passing the `--pidfile` option to
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`sidekiq-cluster`. For example:
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```shell
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/opt/gitlab/embedded/service/gitlab-rails/bin/sidekiq-cluster --pidfile /var/run/gitlab/sidekiq_cluster.pid process_commit
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```
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Keep in mind that the PID file will contain the PID of the `sidekiq-cluster`
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command and not the PID(s) of the started Sidekiq processes.
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### Environment
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The Rails environment can be set by passing the `--environment` flag to the
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`sidekiq-cluster` command, or by setting `RAILS_ENV` to a non-empty value. The
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default value can be found in `/opt/gitlab/etc/gitlab-rails/env/RAILS_ENV`.
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