> ## Documentation Index
> Fetch the complete documentation index at: https://docs.synq.io/llms.txt
> Use this file to discover all available pages before exploring further.

# BatchGetCheckCategories

> Read the categories of specific checks. Ids that do not exist are omitted
 from the response rather than causing an error, so a partially-stale list
 of ids still returns what it can.



## OpenAPI

````yaml /api-reference/openapi.yaml post /api/entities/v2/checks/categories/batch-get
openapi: 3.1.0
info:
  version: '1.0'
  title: SYNQ
servers:
  - url: https://developer.synq.io
  - url: https://api.us.synq.io
  - url: https://api.au.synq.io
security:
  - bearerAuth: []
tags:
  - name: synq.deliveries.v1.DeliveriesService
    description: >-
      DeliveriesService reports what was sent to your notification integrations
      —
       webhooks, PagerDuty, Opsgenie — and what came back.

       It answers the three questions an integration owner has. "Did this event
       reach my endpoint": list the deliveries for an event id and read the outcome
       of each. "Why did my endpoint reject it": read the attempts, which carry the
       request as it was sent and the response as it came back. "Why did I get
       nothing at all": every delivery that sent nothing records a reason, so a
       silent integration can be explained rather than guessed at.

       Deliveries are kept for 90 days. Credential-bearing header values are never
       returned, on either side of an attempt — see `Header`.
  - name: synq.ingest.cloudwatch.v1.CloudwatchService
  - name: synq.ingest.dwh.v1.DwhService
  - name: synq.ingest.openlineage.v1.OpenlineageService
  - name: synq.ingest.airflow.v1.AirflowLogsService
  - name: synq.alerts.services.v1.AlertsService
    description: |-
      AlertsService provides operations for managing alert configurations.

       Deprecated: use synq.alerts.services.v2.AlertsService. The v2 service selects
       entities with the canonical synq.queries.v1.Query + resolver_ql trigger; this
       v1 service, which uses the bespoke EntityGroupQuery selection, is scheduled for
       removal. Migrate existing integrations to v2.
  - name: synq.alerts.services.v2.AlertsService
    description: |-
      AlertsService provides operations for managing alert configurations.

       It supersedes synq.alerts.services.v1.AlertsService: entities are selected with
       the canonical synq.queries.v1.Query + resolver_ql trigger rather than the bespoke
       EntityGroupQuery.
  - name: synq.entities.folders.v1.FoldersService
    description: >-
      FoldersService discovers and browses the folder / containment hierarchy of
      the
       catalog: the roots data hangs from, the sub-folders under any folder, the
       folders a given entity lives in, and the entities contained in a folder.

       It is a read / navigation surface, not folder management — there are no
       create, move, or delete operations.

       Addressing: every folder has an opaque `folder_entity_id` (round-trip it
       verbatim) and a structured `FolderRef{root_entity_id, folders[]}` (the
       human-friendly form). Entities — both folder members and the ids you pass to
       `GetFolderOf` — are named by their opaque entity id, the same id used across
       the rest of the entities API.

       Depth footgun: membership is SHALLOW by default. `Browse` returns only the
       direct children of a folder, and `ListMembers` returns only the entities
       placed directly in the folder. Set `deep = true` (or raise `Browse.depth`) to
       recurse into sub-folders.
  - name: synq.entities.typedefs.v1.TypeDefsService
    description: >-
      TypeDefsService tells you what the type values in every other endpoint
      mean.

       Responses across the API describe things by enum — an entity is an
       `ENTITY_TYPE_BQ_TABLE`, it belongs to `DATA_PLATFORM_TYPE_BIGQUERY`, a run is an
       `EXECUTION_TYPE_DBT_INVOCATION`. This service turns each of those into a name you
       can display and a set of facts you can act on: is this a transformation model,
       does it live in a warehouse, can it be monitored.

       Read it instead of keeping your own copy of the list. New entity types and new
       platforms are added as Coalesce Quality supports more tools, and a hard-coded
       table in your code will label them with whatever its fallback produces and miss
       that an existing type gained a capability. Everything here comes from the server,
       so you pick both up without changing your code.

       A typical integration calls them once at startup, keeps them in a map, and looks
       types up as responses arrive.

       It also tells you what a selection query can ask for: ListEntityTraitDefs is the
       vocabulary behind `traits`, which selects entities by what they are rather than
       by naming every type.

       Scoping and freshness:

         * ListEntityTypeDefs is per workspace, because the types you defined yourself
           are part of your workspace's vocabulary. It returns the built-in types and
           your own custom types together.
         * ListPlatformDefs, ListExecutionTypeDefs and ListEntityTraitDefs are the same
           for everyone.
         * The built-in half changes only when Coalesce Quality is upgraded, so caching
           it for the life of your process is fine. You can add or edit your own custom
           types at any time, so if a newly created type needs to appear promptly, cache
           the entity types for minutes rather than hours, or re-read after you change
           one.

       The workspace comes from your credentials; there is nothing to pass.

       Each list is small — hundreds of entries — so every call returns the whole set
       and none of them page.
  - name: synq.entities.entities.v1.EntitiesService
    description: EntitiesService is a service for retriving any entity.
  - name: synq.entities.checks.v1.ChecksCategoriesService
    description: |-
      ChecksCategoriesService lets workspace admins set explicit category
       overrides on individual checks. An explicit category is the
       authoritative category for a check — it takes precedence over the
       categories computed by the workspace's categorisation rules.

       It is a public API so customers can manage check categories
       programmatically; the same service is also mounted on the internal
       API. The workspace and the acting identity are always taken from the
       request context, never from the payload.
  - name: synq.entities.checks.v2.ChecksCategorisationRulesService
    description: |-
      ChecksCategorisationRulesService manages the rules that categorise a
       workspace's checks automatically.

       A rule says "checks matching this predicate get this category on this
       dimension". Rules are the scalable way to categorise: they apply to checks
       that already exist and to every check ingested afterwards, so a new dbt
       package or a new warehouse does not mean a fresh round of manual tagging. A
       rule-computed category is the lowest-precedence source — a category set
       explicitly on a check through ChecksCategoriesService, and one the producing
       tool declared, both win over it.

       A typical loop is: ListCategorisationFilters to see what the workspace's
       checks look like, PreviewRule to check the reach of a candidate, UpsertRule
       to save it, then GetRecategorisationStatus to confirm the existing checks
       have caught up.

       Every workspace starts with a set of platform-provided rules covering the
       common cases. They are visible here, they can be superseded by a workspace
       rule of any priority, and they cannot be edited from a workspace.
  - name: synq.entities.checks.v2.ChecksCategoriesService
    description: |-
      ChecksCategoriesService reads and edits the categories of the checks in a
       workspace.

       Categorising checks is what turns a long list of tests into a picture of data
       quality: it lets you ask how much of a data product is covered for
       completeness, or which freshness checks exist across three warehouses that
       each name the same idea differently.

       Every check resolves to at most one category per dimension:

         * technical — what kind of check this is, mechanically ("nullness",
           "uniqueness", "freshness");
         * governance — what the check is for, in data-quality terms
           ("Completeness", "Accuracy", "Timeliness").

       The two are independent, and each resolves from three sources, in descending
       precedence: a category set explicitly on the check through this service, a
       category the producing tool declared, and a category one of the workspace's
       categorisation rules computed. Rules are managed by
       ChecksCategorisationRulesService and are the right tool for anything that
       generalises; set a category explicitly only for the checks that are genuine
       exceptions.

       The workspace and the acting identity always come from the request
       credentials, never from the payload.
  - name: synq.entities.code.v1.CodeService
    description: >-
      CodeService is a service for retrieving code associated with entities in
      the system.
       It provides functionality to access and manage code artifacts such as SQL queries,
       Python scripts, dbt models, and other code configurations that are part of Coalesce Quality entities.
  - name: synq.entities.schemas.v1.SchemaMismatchesService
    description: >-
      SchemaMismatchesService provides access to schema drift information
      between
       data platform tables and their definitions (e.g., dbt models).
  - name: synq.entities.schemas.v1.SchemasService
    description: EntitiesService is a service for retriving any entity.
  - name: synq.entities.constraints.v1.TableConstraintsService
    description: >-
      TableConstraintsService provides access to table constraint and index
      information.
  - name: synq.entities.sql_insights.v1.SqlInsightsService
    description: >-
      SqlInsightsService exposes analytical information about the SQL used
      across a
       workspace's entities. It answers questions such as "which SQL constructs are
       used in my warehouse, and by how many entities" and "what SQL constructs
       does this specific entity use", without requiring the caller to re-parse any
       SQL.
  - name: synq.entities.orchestration.v1.OrchestrationService
    description: >-
      OrchestrationService provides information about orchestration
      relationships between entities.
       This includes relationships between Airflow tasks and transformation models (dbt, SQLMesh),
       as well as task-to-task dependencies.
  - name: synq.entities.resolve.v1.IdentifierResolveService
    description: >-
      IdentifierResolveService resolves identifiers to their Coalesce Quality
      paths and identities.
  - name: synq.entities.status.v1.EntityIssuesService
    description: EntityIssuesService is the service which retrieves entity issues status.
  - name: synq.entities.status.v1.EntityIncidentsService
    description: EntityIncidentsService is the service which retrieves entity status.
  - name: synq.entities.changes.v1.ChangesService
    description: >-
      ChangesService provides functionality to track and retrieve all types of
      changes to data entities.

       This unified service returns ALL change types for an entity:
       - Git commits: Changes to code files (dbt models, SQL files) tracked in version control
       - Schema changes: Database schema modifications (columns added/removed/changed)
       - SQL definition changes: View/materialized view definition updates detected by Coalesce Quality

       Changes are returned with structured metadata including:
       - For git commits: structured statistics (directories, file types, top changes)
       - For schema changes: detailed column-level diffs
       - For SQL changes: before/after SQL definitions

       Use cases:
       - "What changed in the last week for table X?" → Returns git commits, schema changes, SQL changes
       - "Show me all commits affecting this dbt model" → Returns git commits with lineage context
       - "What schema changes happened to this table?" → Returns schema changes detected by Coalesce Quality
  - name: synq.entities.annotations.v1.AnnotationsService
    description: >-
      AnnotationsService provides operations for managing and querying entity
      annotations.
       Annotations are key-value pairs that can be attached to entities for categorization and filtering.
  - name: synq.entities.lineage.v1.LineageService
    description: |-
      LineageService allows you to fetch:
       * Entity level lineage from a starting point of one or more entities.
       * Column Level lineage from a starting point of multiple columns of a single entity.
  - name: synq.entities.custom.v1.EntityExecutionsService
  - name: synq.entities.custom.v1.GroupsService
    description: >-
      It eliminates the need to keep state on client side to remember which
      assets were already created
       and which should be deleted. The server will keep track of the current state of the group and client
       can always send the intended new state. The server will calculate the diff and entities that are
       no longer present in the group will be removed.

       Example:
       1. group has entities A, B, C at time t1
       2. client sends group with entities B, C, D at time t2
       3. server will remove entity A from the system and update the current state of the group to B, C, D

       The service is designed to be idempotent and can be called multiple times with the same state without
       causing any side effects.
  - name: synq.entities.custom.v1.EntitiesService
    description: >-
      custom.EntitiesService is a service for managing custom entities. Entities
      can represent
       various data platform concepts such as services, consumers, applications or data pipelines
       that are not natively available in Coalesce Quality.

       Entities are identified by a unique identifier and can be created, updated, read and deleted.
  - name: synq.entities.custom.v1.TypesService
    description: TypesService is a service for managing custom entity types.
  - name: synq.entities.custom.v1.RelationshipsService
    description: >-
      RelationshipsService allow management of relationships between entities.
      Relationships can
       be created, updated, and deleted between 2 custom entities, or between a custom entity and Coalesce Quality native entity.enum
       There is no option to create relationships between 2 Coalesce Quality native entities (dbt model, BI dashboard, etc.).
  - name: synq.entities.custom.v1.ChecksRelationshipsService
  - name: synq.entities.custom.v1.FeaturesService
  - name: synq.entities.impact.v1.ImpactService
  - name: synq.entities.executions.v1.EntityExecutionsService
    description: 'Deprecated: Use [synq.entities.custom.v1.EntityExecutionsService] instead'
  - name: synq.entities.executions.v2.EntityExecutionsService
    description: >-
      EntityExecutionsService provides read-only access to entity execution
      history.
       This service allows customers to retrieve information about all executions that happened on their entities,
       including execution status, timing, and messages.

       Use cases:
       - Retrieve execution history for specific entities
       - Filter executions by time range, status, or execution type
       - Get aggregated summaries of execution activity
       - Track execution trends and patterns
  - name: synq.entities.coordinates.v1.DatabaseCoordinatesService
    description: >-
      DatabaseCoordinatesService is a service for getting database coordinates
      of Entities.
  - name: synq.overlays.v1.OverlaysService
    description: |-
      OverlaysService answers which organizational overlays claim an entity.

       An overlay is a grouping you lay over your catalog rather than something the
       warehouse itself knows about. Two kinds exist today: a **data product**, which
       groups the assets that make up something your organization delivers, and an
       **owner**, which names the person or team responsible for a set of assets and
       where alerts about them go. Each is defined by a membership rule, not by an
       explicit list, so what belongs to one changes as your warehouse does.

       "Owner" here means stewardship — who is accountable for an asset and who hears
       about it when something breaks. It is not the structural containment sense the
       word carries elsewhere in the API, where an asset can be said to own the checks
       and monitors declared on it. Nothing this service returns describes that
       relationship.

       This service reads that membership backwards. The defining services answer
       "what is in this data product"; this one answers "which data products and
       owners claim this table" — the question you have when you are looking at one
       asset and want to know who cares about it and what it feeds.

       Membership follows identity. Where the same table is represented more than
       once in your catalog — a transformation model and the warehouse table it
       builds — an overlay whose rule matches one of them claims the others too. So
       an alert routed by ownership reaches the responsible party whichever
       representation raised it, and you do not have to know which one a rule was
       written against.

       Two consequences worth planning around. You can ask about whichever
       representation you happen to hold and get the same answer, so there is no need
       to resolve an identity group first. And if you do ask about several members of
       one group in a single call, each comes back with its own entry carrying the
       same overlays — correct, but redundant, so ask about one member per group when
       you are near the request limit.

       Related services:
         - `synq.dataproducts.v2.DataproductsService` and `synq.owners.v1.OwnersService`
           define the overlays read here, and turn an id from a response into a name,
           a description and its contact channels.
         - `synq.entities.resolve.v1.IdentifierResolveService` turns an identifier you
           already hold — a warehouse table name, a dbt model — into the `entity_id`
           these calls take.
  - name: synq.monitors.history.v1.HistoryService
  - name: synq.monitors.info.v1.MonitorInfoService
  - name: synq.monitors.predictions.v1.MonitorPredictionsService
    description: Access to anomaly detection model predictions and raw metric timeseries.
  - name: synq.monitors.automated_monitors.v1.DeploymentRulesService
  - name: synq.monitors.custom_monitors.v1.CustomMonitorsService
  - name: synq.monitors.segments.v1.MonitorSegmentsService
    description: |-
      Reads and names the segments of a segmented custom monitor.

       A monitor configured with a segmentation expression splits the data it
       monitors into one time series per distinct value of that expression, and each
       of those is a segment. The label is what every downstream surface shows for a
       segment: the name of the check it produces, the search result, the alert. A
       segment with no label falls back to its raw value, so a monitor segmented on
       something encoded (an id, a code, a hashed bucket) reads as that raw value
       everywhere until the segment is named.
  - name: synq.queries.v1.NLQueryService
    description: >-
      NLQueryService generates structured Query protos from natural language
      descriptions using an LLM.
  - name: synq.queries.v1.QueriesService
    description: |-
      QueriesService compiles and evaluates ResolverQL — the compact text query
       language used across Coalesce Quality to select entities — over the public
       API.

       ResolverQL is a string DSL (for example `with_type("TABLE")` or
       `in_folder(...)`); a structured `synq.queries.v1.Query` is its parsed,
       machine-readable form. This service is the bridge between the two and the
       read-only execution surface for both:
         - `TranslateResolverQl` compiles a ResolverQL expression into a structured
           `Query` without evaluating it — inspect it, validate it, or reuse it as a
           filter on another API (entity listing, folder browsing, ...).
         - `ResolveQuery` compiles a ResolverQL expression (or takes an
           already-structured `Query`), evaluates it against the catalog, and
           returns the matched entity ids. This is the general author -> resolve
           loop.
         - `DescribeResolverQl` returns the language itself — every function, every
           accepted enum value — so you author against what this deployment compiles
           rather than against a table baked into your client.

       All three authenticate and resolve your workspace from your credentials.
       `DescribeResolverQl` additionally needs no permission of its own, so any
       credential can read it; the other two read the catalog and are scoped.
  - name: synq.datachecks.v1.TriggerService
    description: TriggerService provides synchronous execution of datachecks on entities.
  - name: synq.datachecks.sqltests.v1.SqlTestsService
    description: SqlTestsService is a service for managing SqlTests.
  - name: synq.datachecks.sqltests.v1.SqlTestsDeploymentRulesService
    description: |-
      SqlTestsDeploymentRulesService manages SqlTestDeploymentRules — rules that
       dynamically deploy SQL test templates onto every table or view a query
       matches, resyncing over time as the match set changes.
  - name: synq.datachecks.testsuggestions.v1.TestSuggestionsService
  - name: synq.integrations.v1.IntegrationsService
    description: |-
      IntegrationsService manages connections from Coalesce Quality to your data
       systems (warehouses, databases, and transformation tools).

       Concurrency: every integration carries an opaque `etag`. Read it from
       `GetIntegration` / `ListIntegrations`, then pass it back on
       `UpdateIntegration` / `DeleteIntegration` to ensure you modify the version you
       last saw. A stale etag is rejected with ABORTED (HTTP 409). Omit
       the etag for last-write-wins.

       Quota: each workspace has a limit on the number of integrations. Creating
       beyond the limit is rejected with RESOURCE_EXHAUSTED.

       Secrets: credential fields (passwords, tokens, keys) are write-only. They are
       masked (returned empty) on every read. On update, omit a secret to keep it,
       send a new value to rotate it, or send an explicit empty string to clear it
       (where the field is `optional`).
  - name: synq.issues.issues.v1.IssuesService
    description: IssuesService is a service for managing Issues.
  - name: synq.issues.v2.IssuesService
    description: IssuesService is a service for managing Issues.
  - name: synq.dataproducts.v1.DataproductsService
    description: DataproductsService can be used to manage data products.
  - name: synq.dataproducts.v2.DataproductsService
    description: |-
      DataproductsService manages data products — named, owned groupings of data
       assets with a membership definition, a priority and an optional folder.

       Ids are opaque UUIDs supplied by the caller, which makes writes idempotent
       (a retried create converges instead of duplicating). Mutable fields are
       optional on Upsert: a field that is set is written, a field that is omitted is
       left unchanged. Pass the `etag` you last read to guard against overwriting a
       concurrent edit.

       A data product is a leaf in the reference graph — its definition may not
       reference another data product or domain — so membership resolution always
       terminates.
  - name: synq.schedule.v1.ScheduleService
    description: ScheduleService provides schedule evaluation utilities.
  - name: synq.knowledge.v1alpha.KnowledgeService
    description: >-
      KnowledgeService reads the knowledge a team keeps about its data:
      knowledge
       pages written or imported by the team, and the descriptions people write for
       entities.

       Knowledge pages form a tree, and pages and entities are pinned to each
       other. Nothing here is the description an entity's own source reports, which
       `synq.entities.entities.v1.EntitiesService` reads.

       This API is in alpha: its shape may change without notice.
  - name: synq.owners.v1.OwnersService
    description: |-
      OwnersService manages owners and their ownerships — the "alert routing as
       code" surface. An owner is a named responsible party with notification
       channels (contacts); an ownership assigns a set of assets to an owner and
       configures the alerts routed to it. Owner is the resource, ownership its
       sub-resource: an ownership is meaningless without its owner, and deleting an
       owner deletes its ownerships.

       Ids are opaque UUIDs supplied by the caller, which makes writes idempotent (a
       retried create converges instead of duplicating). Mutable fields are optional
       on the Upsert calls: a set field is written, an omitted field is left
       unchanged. Pass the `etag` you last read to guard against overwriting a
       concurrent edit.

       Related: `synq.dataproducts.v2.DataproductsService` (an ownership can own a
       whole data product), `synq.alerts.services.v2.AlertsService` (how the configured alerts
       are reported), and `synq.users.v1.UsersService` (resolve the users behind
       `UserContact` and Slack/Teams mentions).
  - name: synq.agent.sre.v1.LlmService
    description: Service for evaluating LLM requests and producing structured output.
  - name: synq.agent.sre.v1.TriageService
    description: >-
      Service for managing issue triage operations, allowing LLM agents to
      conclude investigations
       and record evidence during the triage process.
  - name: synq.agent.sre.v1.FeatureRequestService
    description: >-
      FeatureRequestService allows MCP clients to submit feature requests when
      users encounter
       missing capabilities. This is a last-resort service — it should only be used when no
       existing tool can fulfill the user's request.
  - name: synq.agent.recon.v1.YamlService
    description: >-
      YamlService provides stateless conversion between YAML config format and
      proto.
       This is useful for UI editors that need to display/edit suite configs as YAML.
  - name: synq.agent.recon.v1.SuiteDeploymentService
    description: |-
      SuiteDeploymentService is the platform plane of reconciliation.

       SuiteConfigService is the developer/authoring sandbox (edit, version, run
       ad-hoc with your own credentials — preview-only, no Entity, no Run, no
       Issue). A deployment is what SYNQ actually runs on the workspace's behalf:
       a frozen snapshot of a suite config, mapped to workspace-level SYNQ
       integrations, optionally scheduled or triggerable by API.

       Identity: every deployment has a stable deployment_id (UUIDv7) assigned on
       first promote. It survives re-promotes, schedule/mapping changes, and
       pause/resume. Downstream AssetCommand / RunCommand publication keys off
       deployment_id so Entity identity does not fragment on promote churn.
  - name: synq.savedviews.v1.SavedViewsService
    description: >-
      SavedViewsService manages saved views — named, reusable selections over
      your
       entities (and other surfaces) with display configuration, sharing and
       per-user pinning.

       A saved view is owned by the user who created it. It can be kept private,
       shared with the whole workspace, or granted to specific users. Reads return,
       for the calling user, how each view relates to them (mine / shared / granted)
       and what they are allowed to do with it. Workspace administrators can manage
       any view in the workspace.
  - name: synq.recommendations.v1.RecommendationsService
    description: |-
      RecommendationsService lists the changes Coalesce Quality recommends you
       make, and records what you decided about them. See `Recommendation` for
       what a recommendation is.

       Recommendations are created and removed by Coalesce Quality itself: one
       appears when something only you can change is found, and disappears once
       it no longer holds. What you can do is decide whether a recommendation
       stays in front of you:

         - Dismiss hides it until something new is found about it: an object it
           did not list before, or a different remediation.
         - Ignore hides it for good.
         - Restore undoes either.

       Decisions are kept by recommendation id, so they keep applying when a
       recommendation disappears and comes back.

       A recommendation about an integration is also governed by that
       integration's permissions: reading it needs a credential that can read
       integrations, and deciding about it one that can edit them. One that cannot
       does not see it listed.

       Related services: `synq.integrations.v1.IntegrationsService` manages the
       integrations recommendations can be about.
  - name: synq.auth.iam.v1.IamService
  - name: synq.platforms.v1.PlatformsService
    description: PlatformsService is a service for managing Platforms and Integrations.
  - name: synq.incidents.v1.IncidentsService
    description: IncidentsService is a service for managing Incidents.
  - name: synq.git.commits.v1.CommitsService
  - name: synq.domains.v1.DomainsService
    description: DomainsService can be used to manage domains.
  - name: synq.domains.v2.DomainsService
    description: >-
      DomainsService manages data domains — named areas of ownership that group
      the
       assets, data products and sub-domains belonging to one part of the business.

       Ids are opaque UUIDs supplied by the caller, which makes writes idempotent
       (a retried create converges instead of duplicating). Mutable fields are
       optional on Upsert: a field that is set is written, a field that is omitted is
       left unchanged. Pass the `etag` you last read to guard against overwriting a
       concurrent edit.

       A domain may contain other domains and data products, so membership resolution
       is recursive. Every write that adds such a reference — including a change of
       `parent_id` — is rejected if it would close a loop, so a definition can always
       be resolved in finite time.
  - name: synq.domains.members.v1.DomainMembersService
    description: DomainMembersService can be used to manage domain memberships.
  - name: synq.extensions.atlan.integrations.v1.AtlanIntegrationService
  - name: synq.extensions.atlan.workflows.v1.AtlanWorkflowService
  - name: synq.extensions.atlan.provider.v1.AtlanProviderService
paths:
  /api/entities/v2/checks/categories/batch-get:
    post:
      tags:
        - synq.entities.checks.v2.ChecksCategoriesService
      summary: BatchGetCheckCategories
      description: >-
        Read the categories of specific checks. Ids that do not exist are
        omitted
         from the response rather than causing an error, so a partially-stale list
         of ids still returns what it can.
      operationId: synq.entities.checks.v2.ChecksCategoriesService.BatchGetCheckCategories
      requestBody:
        content:
          application/json:
            schema:
              $ref: >-
                #/components/schemas/synq.entities.checks.v2.BatchGetCheckCategoriesRequest
        required: true
      responses:
        '200':
          description: Success
          content:
            application/json:
              schema:
                $ref: >-
                  #/components/schemas/synq.entities.checks.v2.BatchGetCheckCategoriesResponse
components:
  schemas:
    synq.entities.checks.v2.BatchGetCheckCategoriesRequest:
      type: object
      properties:
        entityIds:
          type: array
          items:
            type: string
            maxLength: 1024
            minLength: 1
            maxItems: 500
            minItems: 1
            uniqueItems: true
          maxItems: 500
          minItems: 1
          uniqueItems: true
          description: Checks to read (1–500, unique).
      title: BatchGetCheckCategoriesRequest
      additionalProperties: false
    synq.entities.checks.v2.BatchGetCheckCategoriesResponse:
      type: object
      properties:
        categories:
          type: object
          additionalProperties:
            $ref: '#/components/schemas/synq.entities.checks.v2.CheckCategories'
            title: value
          description: Category state keyed by check id. Ids that do not exist are absent.
      title: BatchGetCheckCategoriesResponse
      additionalProperties: false
    synq.entities.checks.v2.CheckCategories:
      type: object
      properties:
        entityId:
          type: string
          description: >-
            The check this describes. Treat it as opaque: acquire it from a
            listing or
             from IdentifierResolveService and pass it back unchanged.
        technical:
          $ref: '#/components/schemas/synq.entities.checks.v2.ResolvedCategory'
          description: Technical category — what kind of check this is, mechanically.
        governance:
          $ref: '#/components/schemas/synq.entities.checks.v2.ResolvedCategory'
          description: Governance category — what the check is for.
        check:
          $ref: '#/components/schemas/synq.entities.checks.v2.CheckSummary'
          description: >-
            What the check is, so a listing is actionable on its own. Absent for
            a
             check that carries an explicit category but is not (or is no longer)
             present in the catalogue.
        etag:
          type: string
          description: >-
            Optimistic-concurrency token covering the categories set explicitly
            on
             this check. Pass it back on UpsertCheckCategories or DeleteCheckCategories
             to have the write rejected if someone changed them in the meantime. Empty
             when the check carries no explicit category. Form:
             `W/"<entity_id>-<version>"`.
        updatedBy:
          $ref: '#/components/schemas/synq.issues.actor.v1.Actor'
          description: >-
            Who last set the explicit categories: display name, and the account
            or
             channel they acted through. Absent when no explicit categories are set,
             and when the setter could not be resolved to anything a reader would
             recognise.
        updatedAt:
          $ref: '#/components/schemas/google.protobuf.Timestamp'
          description: >-
            When the explicit categories were last changed. Absent when none are
            set.
      title: CheckCategories
      additionalProperties: false
      description: The category state of a single check, on both dimensions.
    synq.entities.checks.v2.ResolvedCategory:
      type: object
      properties:
        category:
          type: string
          description: >-
            The category in effect. Empty when the check is uncategorised on
            this
             dimension.
        source:
          $ref: '#/components/schemas/synq.entities.checks.v2.CategorySource'
          description: Which of the three sources produced `category`.
        override:
          type: string
          description: >-
            The category set explicitly on the check, if any. Populated whatever
            the
             effective value is, so you can tell an explicit category apart from the
             one it replaced. Empty when none is set.
        ruleId:
          type: string
          description: |-
            The rule that computed the category. Populated only when `source` is
             CATEGORY_SOURCE_RULE; pass it to BatchGetRules to read the rule, or to
             ListCheckCategories to list every check the rule categorised.
        ruleTitle:
          type: string
          description: |-
            Title of the rule named by `rule_id`, so "categorised by …" can be
             rendered without a second call.
        ruleScope:
          $ref: '#/components/schemas/synq.entities.checks.v2.RuleScope'
          description: |-
            Whether the rule that won is one of the workspace's own or a
             platform-provided default. Populated only when `source` is
             CATEGORY_SOURCE_RULE.
        computed:
          $ref: '#/components/schemas/synq.entities.checks.v2.ComputedCategory'
          description: >-
            What the categorisation rules compute for this check, populated
            whenever a
             rule matches it at all.

             When `source` is CATEGORY_SOURCE_RULE this is the value in effect and
             repeats `category`. When a category set explicitly on the check, or one its
             producer declared, is standing in front of the rules, this is what the
             check falls back to once that is cleared — the one part of the resolution a
             client cannot work out from the fields above. Absent when no rule matches.
      title: ResolvedCategory
      additionalProperties: false
      description: >-
        The category a check resolves to on one dimension, together with where
        that
         value came from.

         Reading `source` matters as much as reading `category`: a value that came
         from a rule changes when the rules change, while one set explicitly on the
         check stays until someone clears it.
    synq.entities.checks.v2.CheckSummary:
      type: object
      properties:
        name:
          type: string
          description: >-
            Name of the check, as its producer names it. Always the last element
            of
             `full_name` when that is populated; kept as its own field so a client that
             only needs the label never has to index into an array.
        fullName:
          type: array
          items:
            type: string
          description: >-
            Full display path down to the check, root first and leaf last —
            suitable
             for rendering a breadcrumb as-is, the same order and meaning as
             `synq.entities.folders.v1.Folder.full_name`:
             `["prod", "analytics", "orders", "not_null_customer_id"]`.

             The leading segments are the producer's own containers — a dbt project, a
             warehouse database and schema — so how many there are varies by platform.
             Drop the last element for the path to the check's parent.
        package:
          type: string
          description: >-
            Package the check comes from, e.g. "dbt", "dbt_utils". Empty when
            the
             producer has no notion of packages.
        kind:
          type: string
          description: >-
            General kind of the check, e.g. "not_null", "unique", "row_count".
            This is
             the attribute categorisation rules most often match on.
        entityType:
          $ref: '#/components/schemas/synq.entities.v1.EntityType'
          description: Entity type of the check itself, e.g. ENTITY_TYPE_DBT_TEST.
        dataPlatformType:
          $ref: '#/components/schemas/synq.platforms.v1.DataPlatformType'
          description: Platform the check runs on, e.g. DATA_PLATFORM_TYPE_DBT.
        isPlatformNative:
          type: boolean
          description: >-
            Whether the check is native to its platform (a dbt test in a dbt
            project)
             rather than defined in Coalesce Quality.
        description:
          type: string
          description: Description of the check, where the producer supplied one.
        checkedEntityIds:
          type: array
          items:
            type: string
          description: >-
            The entities the check validates. Empty when the check's targets
            could not
             be resolved.
        annotations:
          type: object
          additionalProperties:
            type: string
            title: value
          description: >-
            Free-form key/value metadata the tool that produced the check
            attached to
             it — a dbt test's `meta` entries, a SQLMesh audit's, a custom label.

             This is what a categorisation rule's `annotation_matches` predicate is
             written against, so reading them is how you find out what there is to
             match on in your own workspace.
      title: CheckSummary
      additionalProperties: false
      description: |-
        Enough of a check to recognise it and act on it without a second call.

         Every field is output-only and reflects the check as the tool that produced
         it described it — a dbt test, a monitor, a reconciliation case. Nothing here
         is editable through the categorisation API; to change any of it, change it in
         the tool that publishes the check.
    synq.issues.actor.v1.Actor:
      type: object
      allOf:
        - properties:
            name:
              type: string
              title: name
              minLength: 1
            via:
              $ref: '#/components/schemas/synq.issues.actor.v1.Actor.Via'
              title: via
        - oneOf:
            - properties:
                email:
                  $ref: '#/components/schemas/synq.issues.actor.v1.EmailUser'
                  title: email
              title: email
              required:
                - email
            - properties:
                pagerduty:
                  $ref: '#/components/schemas/synq.issues.actor.v1.PagerdutyUser'
                  title: pagerduty
              title: pagerduty
              required:
                - pagerduty
            - properties:
                slack:
                  $ref: '#/components/schemas/synq.issues.actor.v1.SlackUser'
                  title: slack
              title: slack
              required:
                - slack
      title: Actor
      required:
        - name
      additionalProperties: false
      description: |-
        Actor identifies who performed a write — set by the calling client and
         carried end-to-end through the public API into stored audit trails (issue
         status changes, comments, incident assignments) and rendered downstream
         (e.g. Slack/MSTeams/email alerts).

         Producers should populate:
           1. `name` — human-readable display label, derived from
              `synq.auth.iam.v1.IamResponse.user_name` when available, falling back
              to `user_email`. Avoid generic placeholders ("MCP", "API"); readers
              treat those as "no identity resolved" and fall back to impersonal copy.
           2. `user` — the strongest identifier the caller can prove. For human
              callers, set `email` from `IamResponse.user_email` so the server can
              resolve the caller back to a workspace user.
           3. `via` — entry-point label for the channel through which the request
              arrived (e.g. VIA_MCP for the MCP server), regardless of who the
              caller is.
    google.protobuf.Timestamp:
      type: string
      examples:
        - '2023-01-15T01:30:15.01Z'
        - '2024-12-25T12:00:00Z'
      format: date-time
      description: >-
        A Timestamp represents a point in time independent of any time zone or
        local
         calendar, encoded as a count of seconds and fractions of seconds at
         nanosecond resolution. The count is relative to an epoch at UTC midnight on
         January 1, 1970, in the proleptic Gregorian calendar which extends the
         Gregorian calendar backwards to year one.

         All minutes are 60 seconds long. Leap seconds are "smeared" so that no leap
         second table is needed for interpretation, using a [24-hour linear
         smear](https://developers.google.com/time/smear).

         The range is from 0001-01-01T00:00:00Z to 9999-12-31T23:59:59.999999999Z. By
         restricting to that range, we ensure that we can convert to and from [RFC
         3339](https://www.ietf.org/rfc/rfc3339.txt) date strings.

         # Examples

         Example 1: Compute Timestamp from POSIX `time()`.

             Timestamp timestamp;
             timestamp.set_seconds(time(NULL));
             timestamp.set_nanos(0);

         Example 2: Compute Timestamp from POSIX `gettimeofday()`.

             struct timeval tv;
             gettimeofday(&tv, NULL);

             Timestamp timestamp;
             timestamp.set_seconds(tv.tv_sec);
             timestamp.set_nanos(tv.tv_usec * 1000);

         Example 3: Compute Timestamp from Win32 `GetSystemTimeAsFileTime()`.

             FILETIME ft;
             GetSystemTimeAsFileTime(&ft);
             UINT64 ticks = (((UINT64)ft.dwHighDateTime) << 32) | ft.dwLowDateTime;

             // A Windows tick is 100 nanoseconds. Windows epoch 1601-01-01T00:00:00Z
             // is 11644473600 seconds before Unix epoch 1970-01-01T00:00:00Z.
             Timestamp timestamp;
             timestamp.set_seconds((INT64) ((ticks / 10000000) - 11644473600LL));
             timestamp.set_nanos((INT32) ((ticks % 10000000) * 100));

         Example 4: Compute Timestamp from Java `System.currentTimeMillis()`.

             long millis = System.currentTimeMillis();

             Timestamp timestamp = Timestamp.newBuilder().setSeconds(millis / 1000)
                 .setNanos((int) ((millis % 1000) * 1000000)).build();


         Example 5: Compute Timestamp from Java `Instant.now()`.

             Instant now = Instant.now();

             Timestamp timestamp =
                 Timestamp.newBuilder().setSeconds(now.getEpochSecond())
                     .setNanos(now.getNano()).build();


         Example 6: Compute Timestamp from current time in Python.

             timestamp = Timestamp()
             timestamp.GetCurrentTime()

         # JSON Mapping

         In JSON format, the Timestamp type is encoded as a string in the
         [RFC 3339](https://www.ietf.org/rfc/rfc3339.txt) format. That is, the
         format is "{year}-{month}-{day}T{hour}:{min}:{sec}[.{frac_sec}]Z"
         where {year} is always expressed using four digits while {month}, {day},
         {hour}, {min}, and {sec} are zero-padded to two digits each. The fractional
         seconds, which can go up to 9 digits (i.e. up to 1 nanosecond resolution),
         are optional. The "Z" suffix indicates the timezone ("UTC"); the timezone
         is required. A proto3 JSON serializer should always use UTC (as indicated by
         "Z") when printing the Timestamp type and a proto3 JSON parser should be
         able to accept both UTC and other timezones (as indicated by an offset).

         For example, "2017-01-15T01:30:15.01Z" encodes 15.01 seconds past
         01:30 UTC on January 15, 2017.

         In JavaScript, one can convert a Date object to this format using the
         standard
         [toISOString()](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Date/toISOString)
         method. In Python, a standard `datetime.datetime` object can be converted
         to this format using
         [`strftime`](https://docs.python.org/2/library/time.html#time.strftime) with
         the time format spec '%Y-%m-%dT%H:%M:%S.%fZ'. Likewise, in Java, one can use
         the Joda Time's [`ISODateTimeFormat.dateTime()`](
         http://www.joda.org/joda-time/apidocs/org/joda/time/format/ISODateTimeFormat.html#dateTime%2D%2D
         ) to obtain a formatter capable of generating timestamps in this format.
    synq.entities.checks.v2.CategorySource:
      type: string
      title: CategorySource
      enum:
        - CATEGORY_SOURCE_UNSPECIFIED
        - CATEGORY_SOURCE_OVERRIDE
        - CATEGORY_SOURCE_PRODUCER
        - CATEGORY_SOURCE_RULE
      description: >-
        Where a check's effective category came from. The three sources are a
        strict
         precedence: an admin override beats a producer-explicit category, which beats
         a computed one.
    synq.entities.checks.v2.RuleScope:
      type: string
      title: RuleScope
      enum:
        - RULE_SCOPE_UNSPECIFIED
        - RULE_SCOPE_GLOBAL
        - RULE_SCOPE_WORKSPACE
      description: |-
        Whether a categorisation rule belongs to the workspace or is one of the
         platform-provided defaults.
    synq.entities.checks.v2.ComputedCategory:
      type: object
      properties:
        category:
          type: string
          description: The category the rule assigns.
        ruleId:
          type: string
          description: >-
            The rule that assigns it. Pass it to BatchGetRules to read the rule,
            or to
             ListCheckCategories to list every check the rule categorised.
        ruleTitle:
          type: string
          description: Title of that rule, so it can be named without a second call.
      title: ComputedCategory
      additionalProperties: false
      description: |-
        What the workspace's categorisation rules compute for a check on one
         dimension, whatever ends up in effect.
    synq.entities.v1.EntityType:
      type: string
      title: EntityType
      enum:
        - ENTITY_TYPE_UNSPECIFIED
        - ENTITY_TYPE_BQ_TABLE
        - ENTITY_TYPE_BQ_VIEW
        - ENTITY_TYPE_LOOKER_LOOK
        - ENTITY_TYPE_LOOKER_EXPLORE
        - ENTITY_TYPE_LOOKER_VIEW
        - ENTITY_TYPE_LOOKER_DASHBOARD
        - ENTITY_TYPE_LOOKER_INSTANCE
        - ENTITY_TYPE_DBT_MODEL
        - ENTITY_TYPE_DBT_TEST
        - ENTITY_TYPE_DBT_SOURCE
        - ENTITY_TYPE_DBT_PROJECT
        - ENTITY_TYPE_DBT_METRIC
        - ENTITY_TYPE_DBT_SNAPSHOT
        - ENTITY_TYPE_DBT_SEED
        - ENTITY_TYPE_DBT_ANALYSIS
        - ENTITY_TYPE_DBT_EXPOSURE
        - ENTITY_TYPE_DBT_GROUP
        - ENTITY_TYPE_DBT_SEMANTIC_MODEL
        - ENTITY_TYPE_DBT_CLOUD_PROJECT
        - ENTITY_TYPE_DBT_CLOUD_JOB
        - ENTITY_TYPE_SNOWFLAKE_TABLE
        - ENTITY_TYPE_SNOWFLAKE_VIEW
        - ENTITY_TYPE_SNOWFLAKE_STREAM
        - ENTITY_TYPE_SNOWFLAKE_DYNAMIC_TABLE
        - ENTITY_TYPE_SNOWFLAKE_TASK
        - ENTITY_TYPE_SNOWFLAKE_EXTERNAL_TABLE
        - ENTITY_TYPE_SNOWFLAKE_MATERIALIZED_VIEW
        - ENTITY_TYPE_SNOWFLAKE_PROCEDURE
        - ENTITY_TYPE_SNOWFLAKE_FUNCTION
        - ENTITY_TYPE_SNOWFLAKE_SEMANTIC_VIEW
        - ENTITY_TYPE_REDSHIFT_TABLE
        - ENTITY_TYPE_REDSHIFT_VIEW
        - ENTITY_TYPE_REDSHIFT_PROCEDURE
        - ENTITY_TYPE_REDSHIFT_FUNCTION
        - ENTITY_TYPE_TABLEAU_EMBEDDED
        - ENTITY_TYPE_TABLEAU_PUBLISHED
        - ENTITY_TYPE_TABLEAU_CUSTOM_SQL
        - ENTITY_TYPE_TABLEAU_TABLE
        - ENTITY_TYPE_TABLEAU_SHEET
        - ENTITY_TYPE_TABLEAU_DASHBOARD
        - ENTITY_TYPE_TABLEAU_WORKBOOK
        - ENTITY_TYPE_TABLEAU_SITE
        - ENTITY_TYPE_AIRFLOW_DAG
        - ENTITY_TYPE_AIRFLOW_TASK
        - ENTITY_TYPE_CLICKHOUSE_TABLE
        - ENTITY_TYPE_CLICKHOUSE_VIEW
        - ENTITY_TYPE_ANOMALY_MONITOR
        - ENTITY_TYPE_ANOMALY_MONITOR_SEGMENT
        - ENTITY_TYPE_SQLTEST_TEST
        - ENTITY_TYPE_RECON_SUITE
        - ENTITY_TYPE_RECON_CASE
        - ENTITY_TYPE_POSTGRES_TABLE
        - ENTITY_TYPE_POSTGRES_VIEW
        - ENTITY_TYPE_MYSQL_TABLE
        - ENTITY_TYPE_MYSQL_VIEW
        - ENTITY_TYPE_DATABRICKS_WAREHOUSE
        - ENTITY_TYPE_DATABRICKS_TABLE
        - ENTITY_TYPE_DATABRICKS_VIEW
        - ENTITY_TYPE_DATABRICKS_JOB
        - ENTITY_TYPE_DATABRICKS_JOB_TASK
        - ENTITY_TYPE_DATABRICKS_NOTEBOOK
        - ENTITY_TYPE_DATABRICKS_QUERY
        - ENTITY_TYPE_DATABRICKS_DASHBOARD
        - ENTITY_TYPE_DATABRICKS_METRIC_VIEW
        - ENTITY_TYPE_SQLMESH_PROJECT
        - ENTITY_TYPE_SQLMESH_SQL_MODEL
        - ENTITY_TYPE_SQLMESH_PYTHON_MODEL
        - ENTITY_TYPE_SQLMESH_EXTERNAL
        - ENTITY_TYPE_SQLMESH_SEED
        - ENTITY_TYPE_SQLMESH_AUDIT
        - ENTITY_TYPE_SQLMESH_UNIT_TEST
        - ENTITY_TYPE_SQLMESH_ENVIRONMENT
        - ENTITY_TYPE_SQLMESH_SNAPSHOT
        - ENTITY_TYPE_DUCKDB_TABLE
        - ENTITY_TYPE_DUCKDB_VIEW
        - ENTITY_TYPE_TRINO_TABLE
        - ENTITY_TYPE_TRINO_VIEW
        - ENTITY_TYPE_ATLAN_ASSET
        - ENTITY_TYPE_ATLAN_INTEGRATION
        - ENTITY_TYPE_COALESCE_PROJECT
        - ENTITY_TYPE_COALESCE_ENVIRONMENT
        - ENTITY_TYPE_COALESCE_NODE
        - ENTITY_TYPE_COALESCE_NODE_TEST
        - ENTITY_TYPE_COALESCE_JOB
        - ENTITY_TYPE_CASTORDOC_TABLE
        - ENTITY_TYPE_CASTORDOC_DASHBOARD
        - ENTITY_TYPE_CASTORDOC_VIEW
        - ENTITY_TYPE_CASTORDOC_TILE
        - ENTITY_TYPE_CASTORDOC_VIZ_MODEL
        - ENTITY_TYPE_POWERBI_REPORT
        - ENTITY_TYPE_POWERBI_TILE
        - ENTITY_TYPE_POWERBI_DATASET
        - ENTITY_TYPE_POWERBI_DASHBOARD
        - ENTITY_TYPE_POWERBI_TENANT
        - ENTITY_TYPE_THOUGHTSPOT_LIVEBOARD
        - ENTITY_TYPE_THOUGHTSPOT_WORKSHEET
        - ENTITY_TYPE_SIGMA_WORKBOOK
        - ENTITY_TYPE_SIGMA_DATA_MODEL
        - ENTITY_TYPE_SIGMA_ORGANIZATION
        - ENTITY_TYPE_DOMO_PAGE
        - ENTITY_TYPE_DOMO_DATASET
        - ENTITY_TYPE_MSSQL_TABLE
        - ENTITY_TYPE_MSSQL_VIEW
        - ENTITY_TYPE_ORACLE_TABLE
        - ENTITY_TYPE_ORACLE_VIEW
        - ENTITY_TYPE_ATHENA_TABLE
        - ENTITY_TYPE_ATHENA_VIEW
        - ENTITY_TYPE_FABRIC_TABLE
        - ENTITY_TYPE_FABRIC_VIEW
        - ENTITY_TYPE_DB2_TABLE
        - ENTITY_TYPE_DB2_VIEW
        - ENTITY_TYPE_CUSTOM_ENTITY_GENERIC
        - ENTITY_TYPE_CUSTOM_ENTITY_CUSTOM_TYPE_MIN
        - ENTITY_TYPE_CUSTOM_ENTITY_CUSTOM_TYPE_MAX
    synq.platforms.v1.DataPlatformType:
      type: string
      title: DataPlatformType
      enum:
        - DATA_PLATFORM_TYPE_UNSPECIFIED
        - DATA_PLATFORM_TYPE_BIGQUERY
        - DATA_PLATFORM_TYPE_LOOKER
        - DATA_PLATFORM_TYPE_DBT
        - DATA_PLATFORM_TYPE_DBT_CLOUD
        - DATA_PLATFORM_TYPE_DBT_SELF_HOSTED
        - DATA_PLATFORM_TYPE_SNOWFLAKE
        - DATA_PLATFORM_TYPE_GCP
        - DATA_PLATFORM_TYPE_GIT
        - DATA_PLATFORM_TYPE_GITHUB
        - DATA_PLATFORM_TYPE_REDSHIFT
        - DATA_PLATFORM_TYPE_TABLEAU
        - DATA_PLATFORM_TYPE_AIRFLOW
        - DATA_PLATFORM_TYPE_CLICKHOUSE
        - DATA_PLATFORM_TYPE_POSTGRES
        - DATA_PLATFORM_TYPE_MYSQL
        - DATA_PLATFORM_TYPE_DATABRICKS
        - DATA_PLATFORM_TYPE_SQLMESH
        - DATA_PLATFORM_TYPE_DUCKDB
        - DATA_PLATFORM_TYPE_TRINO
        - DATA_PLATFORM_TYPE_ATLAN
        - DATA_PLATFORM_TYPE_COALESCE
        - DATA_PLATFORM_TYPE_CASTORDOC
        - DATA_PLATFORM_TYPE_POWERBI
        - DATA_PLATFORM_TYPE_THOUGHTSPOT
        - DATA_PLATFORM_TYPE_SIGMA
        - DATA_PLATFORM_TYPE_DOMO
        - DATA_PLATFORM_TYPE_MSSQL
        - DATA_PLATFORM_TYPE_ORACLE
        - DATA_PLATFORM_TYPE_ATHENA
        - DATA_PLATFORM_TYPE_FABRIC
        - DATA_PLATFORM_TYPE_DB2
        - DATA_PLATFORM_TYPE_SYNQ
    synq.issues.actor.v1.Actor.Via:
      type: string
      title: Via
      enum:
        - VIA_UNSPECIFIED
        - VIA_API
        - VIA_MCP
        - VIA_SLACK
        - VIA_PAGERDUTY
    synq.issues.actor.v1.EmailUser:
      type: object
      properties:
        userEmail:
          type: string
          minLength: 1
          format: email
      title: EmailUser
      required:
        - userEmail
      additionalProperties: false
    synq.issues.actor.v1.PagerdutyUser:
      type: object
      properties:
        userId:
          type: string
          minLength: 1
      title: PagerdutyUser
      required:
        - userId
      additionalProperties: false
    synq.issues.actor.v1.SlackUser:
      type: object
      properties:
        userId:
          type: string
          minLength: 1
      title: SlackUser
      required:
        - userId
      additionalProperties: false
  securitySchemes:
    bearerAuth:
      type: http
      scheme: bearer

````

This documentation is built and hosted on [Mintlify](https://mintlify.com), a developer documentation platform.