mirror of
https://github.com/hasura/graphql-engine.git
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eaba2e08d3
## Motivation This PR rewrites most of Relay to achieve the following: - ~~fix a bug in which the same node id could refer to two different tables in the schema~~ - remove one of the few remaining uses of the source cache in the schema building code In doing so, it also: - simplifies the `BackendSchema` class by removing `node` from it, - makes it much easier for other backends to support Relay, - documents, re-organizes, and clarifies the code. ## Description This PR introduces a new `NodeId` version ~~, and adapts the Postgres code to always generate this V2 version~~. This new id contains the source name, in addition to the table name, in order to disambiguate similar table names across different sources (which is now possible with source customization). In doing so, it now explicitly handles that case for V1 node ids, and returns an explicit error message instead of running the risk of _silently returning the wrong information_. Furthermore, it adapts `nodeField` to support multiple backends; most of the code was trivial to generalize, and as a result it lowers the cost of entry for other backends, that now only need to support `AFNodeId` in their translation layer. Finally, it removes one more cycle in the schema building code, by using the same trick we used for remote relationships instead of using the memoization trick of #4576. ## Remaining work - ~~[ ]write a Changelog entry~~ - ~~[x] adapt all tests that were asserting on an old node id~~ ## Future work This PR was adapted from its original form to avoid a breaking change: while it introduces a Node ID V2, we keep generating V1 IDs and the parser rejects V2 IDs. It will be easy to make the switch at a later data in a subsequent PR. PR-URL: https://github.com/hasura/graphql-engine-mono/pull/4593 GitOrigin-RevId: 88e5cb91e8b0646900547fa8c7c0e1463de267a1
904 lines
40 KiB
Haskell
904 lines
40 KiB
Haskell
{-# LANGUAGE QuasiQuotes #-}
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{-# LANGUAGE ViewPatterns #-}
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module Hasura.GraphQL.Schema
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( buildGQLContext,
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)
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where
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import Control.Concurrent.Extended (forConcurrentlyEIO)
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import Control.Lens.Extended
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import Data.Aeson.Ordered qualified as JO
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import Data.Has
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import Data.HashMap.Strict qualified as Map
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import Data.HashSet qualified as Set
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import Data.List.Extended (duplicates)
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import Data.Text.Extended
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import Data.Text.NonEmpty qualified as NT
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import Hasura.Base.Error
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import Hasura.GraphQL.Context
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import Hasura.GraphQL.Execute.Types
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import Hasura.GraphQL.Namespace
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import Hasura.GraphQL.Parser
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( Kind (..),
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Parser,
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Schema (..),
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)
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import Hasura.GraphQL.Parser qualified as P
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import Hasura.GraphQL.Parser.Class
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import Hasura.GraphQL.Parser.Constants qualified as G
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import Hasura.GraphQL.Parser.Internal.Parser (FieldParser (..))
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import Hasura.GraphQL.Parser.Schema.Convert (convertToSchemaIntrospection)
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import Hasura.GraphQL.Schema.Backend
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import Hasura.GraphQL.Schema.Common
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import Hasura.GraphQL.Schema.Instances ()
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import Hasura.GraphQL.Schema.Introspect
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import Hasura.GraphQL.Schema.Postgres
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import Hasura.GraphQL.Schema.Relay
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import Hasura.GraphQL.Schema.Remote (buildRemoteParser)
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import Hasura.GraphQL.Schema.RemoteRelationship
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import Hasura.GraphQL.Schema.Table
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import Hasura.Prelude
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import Hasura.RQL.IR
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import Hasura.RQL.Types.Action
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import Hasura.RQL.Types.Backend
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import Hasura.RQL.Types.Common
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import Hasura.RQL.Types.CustomTypes
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import Hasura.RQL.Types.Function
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import Hasura.RQL.Types.Metadata.Object
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import Hasura.RQL.Types.Permission
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import Hasura.RQL.Types.QueryTags
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import Hasura.RQL.Types.RemoteSchema
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import Hasura.RQL.Types.SchemaCache hiding (askTableInfo)
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import Hasura.RQL.Types.Source
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import Hasura.RQL.Types.SourceCustomization
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import Hasura.RQL.Types.Table
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import Hasura.SQL.AnyBackend qualified as AB
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import Hasura.SQL.Tag (HasTag)
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import Hasura.Server.Types
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import Hasura.Session
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import Language.GraphQL.Draft.Syntax qualified as G
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-------------------------------------------------------------------------------
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-- Building contexts
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-- | Builds the full GraphQL context for a given query type.
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--
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-- A 'GQLContext' stores how an incoming request should be processed: how to
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-- translate each incoming field of a request into a corresponding semantic
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-- representation. There is a different one per 'Role', as each role might have
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-- different permissions, and therefore not access to the same set of objects in
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-- the schema.
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--
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-- This function takes all necessary information from the metadata, and the
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-- 'GraphQLQueryType', and builds all relevant contexts: a hash map from
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-- 'RoleName' to their 'GQLContext' and the "default" context for
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-- unauthenticated users.
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--
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-- When building the schema for each role, we treat the remote schemas as
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-- "second-class citizens" compared to sources; more specifically, we attempt to
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-- detect whether the inclusion of a given remote schema would result in root
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-- fields conflict, and only keep schemas that don't generate any. This results
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-- in a partial schema being available to the users, and a better error message
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-- than would arise from 'safeSelectionSet'.
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buildGQLContext ::
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forall m.
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( MonadError QErr m,
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MonadIO m
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) =>
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ServerConfigCtx ->
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GraphQLQueryType ->
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SourceCache ->
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HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject) ->
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ActionCache ->
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AnnotatedCustomTypes ->
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m
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( G.SchemaIntrospection,
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HashMap RoleName (RoleContext GQLContext),
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GQLContext,
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HashSet InconsistentMetadata
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)
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buildGQLContext ServerConfigCtx {..} queryType sources allRemoteSchemas allActions customTypes = do
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let remoteSchemasRoles = concatMap (Map.keys . _rscPermissions . fst . snd) $ Map.toList allRemoteSchemas
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nonTableRoles =
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Set.insert adminRoleName $
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(allActionInfos ^.. folded . aiPermissions . to Map.keys . folded)
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<> Set.fromList (bool mempty remoteSchemasRoles $ _sccRemoteSchemaPermsCtx == RemoteSchemaPermsEnabled)
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allActionInfos = Map.elems allActions
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allTableRoles = Set.fromList $ getTableRoles =<< Map.elems sources
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allRoles = nonTableRoles <> allTableRoles
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defaultNC = _sccDefaultNamingConvention
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roleContexts <-
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-- Buld role contexts in parallel. We'd prefer deterministic parallelism
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-- but that isn't really acheivable (see mono #3829). NOTE: the admin role
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-- will still be a bottleneck here, even on huge_schema which has many
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-- roles.
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fmap Map.fromList $
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forConcurrentlyEIO 10 (Set.toList allRoles) $ \role ->
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(role,)
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<$> case queryType of
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QueryHasura ->
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buildRoleContext
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(_sccSQLGenCtx, _sccFunctionPermsCtx)
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sources
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allRemoteSchemas
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allActionInfos
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customTypes
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role
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_sccRemoteSchemaPermsCtx
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_sccExperimentalFeatures
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(bool StreamingSubscriptionsDisabled StreamingSubscriptionsEnabled $ EFStreamingSubscriptions `elem` _sccExperimentalFeatures)
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defaultNC
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QueryRelay ->
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(,mempty,G.SchemaIntrospection mempty)
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<$> buildRelayRoleContext
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(_sccSQLGenCtx, _sccFunctionPermsCtx)
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sources
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allActionInfos
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customTypes
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role
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_sccExperimentalFeatures
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defaultNC
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adminIntrospection <-
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case Map.lookup adminRoleName roleContexts of
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Just (_context, _errors, introspection) -> pure introspection
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Nothing -> throw500 "buildGQLContext failed to build for the admin role"
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(unauthenticated, unauthenticatedRemotesErrors) <- unauthenticatedContext allRemoteSchemas _sccRemoteSchemaPermsCtx
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pure
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( adminIntrospection,
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view _1 <$> roleContexts,
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unauthenticated,
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Set.unions $ unauthenticatedRemotesErrors : map (view _2) (Map.elems roleContexts)
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)
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-- | Build the @QueryHasura@ context for a given role.
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buildRoleContext ::
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forall m.
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(MonadError QErr m, MonadIO m) =>
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(SQLGenCtx, FunctionPermissionsCtx) ->
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SourceCache ->
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HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject) ->
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[ActionInfo] ->
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AnnotatedCustomTypes ->
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RoleName ->
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RemoteSchemaPermsCtx ->
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Set.HashSet ExperimentalFeature ->
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StreamingSubscriptionsCtx ->
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Maybe NamingCase ->
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m
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( RoleContext GQLContext,
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HashSet InconsistentMetadata,
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G.SchemaIntrospection
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)
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buildRoleContext options sources remotes allActionInfos customTypes role remoteSchemaPermsCtx expFeatures streamingSubscriptionsCtx globalDefaultNC = do
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let ( SQLGenCtx stringifyNum dangerousBooleanCollapse optimizePermissionFilters,
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functionPermsCtx
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) = options
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schemaOptions =
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SchemaOptions
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stringifyNum
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dangerousBooleanCollapse
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functionPermsCtx
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remoteSchemaPermsCtx
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optimizePermissionFilters
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schemaContext =
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SchemaContext
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HasuraSchema
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sources
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(remoteRelationshipField sources (fst <$> remotes))
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runMonadSchema schemaOptions schemaContext role $ do
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-- build all sources
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(sourcesQueryFields, sourcesMutationFrontendFields, sourcesMutationBackendFields, subscriptionFields) <-
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fmap mconcat $ traverse (buildBackendSource buildSource) $ toList sources
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-- build all remote schemas
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-- we only keep the ones that don't result in a name conflict
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(remoteSchemaFields, remoteSchemaErrors) <-
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buildAndValidateRemoteSchemas remotes sourcesQueryFields sourcesMutationBackendFields role remoteSchemaPermsCtx
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let remotesQueryFields = concatMap piQuery remoteSchemaFields
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remotesMutationFields = concat $ mapMaybe piMutation remoteSchemaFields
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remotesSubscriptionFields = concat $ mapMaybe piSubscription remoteSchemaFields
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mutationParserFrontend <-
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buildMutationParser remotesMutationFields allActionInfos customTypes sourcesMutationFrontendFields
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mutationParserBackend <-
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buildMutationParser remotesMutationFields allActionInfos customTypes sourcesMutationBackendFields
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subscriptionParser <-
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buildSubscriptionParser subscriptionFields allActionInfos customTypes remotesSubscriptionFields
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queryParserFrontend <-
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buildQueryParser sourcesQueryFields remotesQueryFields allActionInfos customTypes mutationParserFrontend subscriptionParser
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queryParserBackend <-
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buildQueryParser sourcesQueryFields remotesQueryFields allActionInfos customTypes mutationParserBackend subscriptionParser
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-- In order to catch errors early, we attempt to generate the data
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-- required for introspection, which ends up doing a few correctness
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-- checks in the GraphQL schema. Furthermore, we want to persist this
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-- information in the case of the admin role.
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introspectionSchema <- do
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result <-
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convertToSchemaIntrospection
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<$> buildIntrospectionSchema
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(P.parserType queryParserBackend)
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(P.parserType <$> mutationParserBackend)
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(P.parserType <$> subscriptionParser)
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pure $
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-- TODO(nicuveo): we treat the admin role differently in this function,
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-- which is a bit inelegant; we might want to refactor this function and
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-- split it into several steps, so that we can make a separate function for
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-- the admin role that reuses the common parts and avoid such tests.
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if role == adminRoleName
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then result
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else G.SchemaIntrospection mempty
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void $
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buildIntrospectionSchema
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(P.parserType queryParserFrontend)
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(P.parserType <$> mutationParserFrontend)
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(P.parserType <$> subscriptionParser)
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-- (since we're running this in parallel in caller, be strict)
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let !frontendContext =
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GQLContext
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(finalizeParser queryParserFrontend)
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(finalizeParser <$> mutationParserFrontend)
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(finalizeParser <$> subscriptionParser)
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!backendContext =
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GQLContext
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(finalizeParser queryParserBackend)
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(finalizeParser <$> mutationParserBackend)
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(finalizeParser <$> subscriptionParser)
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pure
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( RoleContext frontendContext $ Just backendContext,
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remoteSchemaErrors,
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introspectionSchema
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)
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where
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buildSource ::
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forall b.
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BackendSchema b =>
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SourceInfo b ->
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ConcreteSchemaT
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m
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( [FieldParser (P.ParseT Identity) (NamespacedField (QueryRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (MutationRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (MutationRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (QueryRootField UnpreparedValue))]
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)
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buildSource sourceInfo@(SourceInfo _ tables functions _ _ sourceCustomization') =
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withSourceCustomization sourceCustomization (namingConventionSupport @b) globalDefaultNC do
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let validFunctions = takeValidFunctions functions
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validTables = takeValidTables tables
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mkTypename <- asks getter
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(uncustomizedQueryRootFields, uncustomizedSubscriptionRootFields) <-
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buildQueryAndSubscriptionFields sourceInfo validTables validFunctions streamingSubscriptionsCtx
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(,,,)
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<$> customizeFields
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sourceCustomization
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(mkTypename <> P.MkTypename (<> G.__query))
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(pure uncustomizedQueryRootFields)
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<*> customizeFields
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sourceCustomization
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(mkTypename <> P.MkTypename (<> G.__mutation_frontend))
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(buildMutationFields Frontend sourceInfo validTables validFunctions)
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<*> customizeFields
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sourceCustomization
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(mkTypename <> P.MkTypename (<> G.__mutation_backend))
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(buildMutationFields Backend sourceInfo validTables validFunctions)
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<*> customizeFields
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sourceCustomization
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(mkTypename <> P.MkTypename (<> G.__subscription))
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(pure uncustomizedSubscriptionRootFields)
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where
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sourceCustomization =
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if EFNamingConventions `elem` expFeatures
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then sourceCustomization'
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else sourceCustomization' {_scNamingConvention = Nothing}
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buildRelayRoleContext ::
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forall m.
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(MonadError QErr m, MonadIO m) =>
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(SQLGenCtx, FunctionPermissionsCtx) ->
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SourceCache ->
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[ActionInfo] ->
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AnnotatedCustomTypes ->
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RoleName ->
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Set.HashSet ExperimentalFeature ->
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Maybe NamingCase ->
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m (RoleContext GQLContext)
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buildRelayRoleContext options sources allActionInfos customTypes role expFeatures globalDefaultNC = do
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let ( SQLGenCtx stringifyNum dangerousBooleanCollapse optimizePermissionFilters,
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functionPermsCtx
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) = options
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schemaOptions =
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SchemaOptions
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stringifyNum
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dangerousBooleanCollapse
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functionPermsCtx
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RemoteSchemaPermsDisabled
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optimizePermissionFilters
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-- TODO: At the time of writing this, remote schema queries are not supported in relay.
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-- When they are supported, we should get do what `buildRoleContext` does. Since, they
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-- are not supported yet, we use `mempty` below for `RemoteSchemaMap`.
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schemaContext =
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SchemaContext
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(RelaySchema $ nodeInterface sources)
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sources
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(remoteRelationshipField sources mempty)
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runMonadSchema schemaOptions schemaContext role do
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node <- fmap NotNamespaced <$> nodeField sources
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fieldsList <- traverse (buildBackendSource buildSource) $ toList sources
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let (queryFields, mutationFrontendFields, mutationBackendFields, subscriptionFields) = mconcat fieldsList
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allQueryFields = node : queryFields
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allSubscriptionFields = node : subscriptionFields
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-- Remote schema mutations aren't exposed in relay because many times it throws
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-- the conflicting definitions error between the relay types like `Node`, `PageInfo` etc
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mutationParserFrontend <-
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buildMutationParser mempty allActionInfos customTypes mutationFrontendFields
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mutationParserBackend <-
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buildMutationParser mempty allActionInfos customTypes mutationBackendFields
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subscriptionParser <-
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buildSubscriptionParser allSubscriptionFields [] customTypes []
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queryParserFrontend <-
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queryWithIntrospectionHelper allQueryFields mutationParserFrontend subscriptionParser
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queryParserBackend <-
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queryWithIntrospectionHelper allQueryFields mutationParserBackend subscriptionParser
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-- In order to catch errors early, we attempt to generate the data
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-- required for introspection, which ends up doing a few correctness
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-- checks in the GraphQL schema.
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void $
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buildIntrospectionSchema
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(P.parserType queryParserBackend)
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(P.parserType <$> mutationParserBackend)
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(P.parserType <$> subscriptionParser)
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void $
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buildIntrospectionSchema
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(P.parserType queryParserFrontend)
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(P.parserType <$> mutationParserFrontend)
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(P.parserType <$> subscriptionParser)
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let frontendContext =
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GQLContext
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(finalizeParser queryParserFrontend)
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(finalizeParser <$> mutationParserFrontend)
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(finalizeParser <$> subscriptionParser)
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backendContext =
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GQLContext
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(finalizeParser queryParserBackend)
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(finalizeParser <$> mutationParserBackend)
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(finalizeParser <$> subscriptionParser)
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pure $ RoleContext frontendContext $ Just backendContext
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where
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buildSource ::
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forall b.
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BackendSchema b =>
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SourceInfo b ->
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ConcreteSchemaT
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m
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( [FieldParser (P.ParseT Identity) (NamespacedField (QueryRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (MutationRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (MutationRootField UnpreparedValue))],
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[FieldParser (P.ParseT Identity) (NamespacedField (QueryRootField UnpreparedValue))]
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)
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buildSource sourceInfo@(SourceInfo _ tables functions _ _ sourceCustomization') =
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withSourceCustomization sourceCustomization (namingConventionSupport @b) globalDefaultNC do
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let validFunctions = takeValidFunctions functions
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validTables = takeValidTables tables
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(uncustomizedQueryRootFields, uncustomizedSubscriptionRootFields) <-
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buildRelayQueryAndSubscriptionFields sourceInfo validTables validFunctions
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mkTypename <- asks getter
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(,,,)
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<$> customizeFields
|
|
sourceCustomization
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|
(mkTypename <> P.MkTypename (<> G.__query))
|
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(pure uncustomizedQueryRootFields)
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|
<*> customizeFields
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|
sourceCustomization
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|
(mkTypename <> P.MkTypename (<> G.__mutation_frontend))
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|
(buildMutationFields Frontend sourceInfo validTables validFunctions)
|
|
<*> customizeFields
|
|
sourceCustomization
|
|
(mkTypename <> P.MkTypename (<> G.__mutation_backend))
|
|
(buildMutationFields Backend sourceInfo validTables validFunctions)
|
|
<*> customizeFields
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|
sourceCustomization
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(mkTypename <> P.MkTypename (<> G.__subscription))
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|
(pure uncustomizedSubscriptionRootFields)
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|
where
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sourceCustomization =
|
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if EFNamingConventions `elem` expFeatures
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then sourceCustomization'
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else sourceCustomization' {_scNamingConvention = Nothing}
|
|
|
|
-- | Builds the schema context for unauthenticated users.
|
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--
|
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-- This context is used whenever the user queries the engine with a role that is
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-- unknown, and therefore not present in the context map. Before remote schema
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-- permissions were introduced, remotes were considered to be a public entity,
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-- and we therefore allowed an unknown role also to query the remotes. To
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-- maintain backwards compatibility, we check if remote schema permissions are
|
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-- enabled; remote schemas will only be available to unauthenticated users if
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-- permissions aren't enabled.
|
|
unauthenticatedContext ::
|
|
forall m.
|
|
( MonadError QErr m,
|
|
MonadIO m
|
|
) =>
|
|
HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject) ->
|
|
RemoteSchemaPermsCtx ->
|
|
m (GQLContext, HashSet InconsistentMetadata)
|
|
unauthenticatedContext allRemotes remoteSchemaPermsCtx = do
|
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-- Since remote schemas can theoretically join against tables, we need to give
|
|
-- some fake data to 'runMonadSchema' in order to trick it into successfully
|
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-- building a restricted schema; namely, we erase all remote relationships
|
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-- from the remote schema contexts, meaning that all the information that is
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-- needed for sources is completely irrelevant and filled with default values.
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let fakeSchemaOptions =
|
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SchemaOptions
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|
LeaveNumbersAlone -- stringifyNum doesn't apply to remotes
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True -- booleanCollapse doesn't apply to remotes
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FunctionPermissionsInferred -- function permissions don't apply to remotes
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remoteSchemaPermsCtx
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False
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fakeSchemaContext =
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SchemaContext
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HasuraSchema
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mempty
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ignoreRemoteRelationship
|
|
-- chosen arbitrarily to be as improbable as possible
|
|
fakeRole = mkRoleNameSafe [NT.nonEmptyTextQQ|MyNameIsOzymandiasKingOfKingsLookOnMyWorksYeMightyAndDespair|]
|
|
-- we delete all references to remote joins
|
|
alteredRemoteSchemas =
|
|
allRemotes <&> first \context ->
|
|
context {_rscRemoteRelationships = mempty}
|
|
|
|
runMonadSchema fakeSchemaOptions fakeSchemaContext fakeRole do
|
|
(queryFields, mutationFields, subscriptionFields, remoteErrors) <- case remoteSchemaPermsCtx of
|
|
RemoteSchemaPermsEnabled ->
|
|
-- Permissions are enabled, unauthenticated users have access to nothing.
|
|
pure ([], [], [], mempty)
|
|
RemoteSchemaPermsDisabled -> do
|
|
-- Permissions are disabled, unauthenticated users have access to remote schemas.
|
|
(remoteFields, remoteSchemaErrors) <-
|
|
buildAndValidateRemoteSchemas alteredRemoteSchemas [] [] fakeRole remoteSchemaPermsCtx
|
|
pure
|
|
( fmap (fmap RFRemote) <$> concatMap piQuery remoteFields,
|
|
fmap (fmap RFRemote) <$> concat (mapMaybe piMutation remoteFields),
|
|
fmap (fmap RFRemote) <$> concat (mapMaybe piSubscription remoteFields),
|
|
remoteSchemaErrors
|
|
)
|
|
mutationParser <-
|
|
whenMaybe (not $ null mutationFields) $
|
|
P.safeSelectionSet mutationRoot (Just $ G.Description "mutation root") mutationFields
|
|
<&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
subscriptionParser <-
|
|
whenMaybe (not $ null subscriptionFields) $
|
|
P.safeSelectionSet subscriptionRoot (Just $ G.Description "subscription root") subscriptionFields
|
|
<&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
queryParser <- queryWithIntrospectionHelper queryFields mutationParser Nothing
|
|
void $
|
|
buildIntrospectionSchema
|
|
(P.parserType queryParser)
|
|
(P.parserType <$> mutationParser)
|
|
(P.parserType <$> subscriptionParser)
|
|
pure (GQLContext (finalizeParser queryParser) (finalizeParser <$> mutationParser) (finalizeParser <$> subscriptionParser), remoteErrors)
|
|
|
|
-------------------------------------------------------------------------------
|
|
-- Building parser fields
|
|
|
|
buildAndValidateRemoteSchemas ::
|
|
forall m.
|
|
( MonadError QErr m,
|
|
MonadIO m
|
|
) =>
|
|
HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject) ->
|
|
[FieldParser (P.ParseT Identity) (NamespacedField (QueryRootField UnpreparedValue))] ->
|
|
[FieldParser (P.ParseT Identity) (NamespacedField (MutationRootField UnpreparedValue))] ->
|
|
RoleName ->
|
|
RemoteSchemaPermsCtx ->
|
|
ConcreteSchemaT m ([RemoteSchemaParser (P.ParseT Identity)], HashSet InconsistentMetadata)
|
|
buildAndValidateRemoteSchemas remotes sourcesQueryFields sourcesMutationFields role remoteSchemaPermsCtx =
|
|
runWriterT $ foldlM step [] (Map.elems remotes)
|
|
where
|
|
getFieldName = P.getName . fDefinition
|
|
|
|
sourcesQueryFieldNames = getFieldName <$> sourcesQueryFields
|
|
sourcesMutationFieldNames = getFieldName <$> sourcesMutationFields
|
|
|
|
step validatedSchemas (remoteSchemaContext, metadataId) = do
|
|
let previousSchemasQueryFieldNames = map getFieldName $ concatMap piQuery validatedSchemas
|
|
previousSchemasMutationFieldNames = map getFieldName $ concat $ mapMaybe piMutation validatedSchemas
|
|
reportInconsistency reason = tell $ Set.singleton $ InconsistentObject reason Nothing metadataId
|
|
maybeParser <- lift $ buildRemoteSchemaParser remoteSchemaPermsCtx role remoteSchemaContext
|
|
case maybeParser of
|
|
Nothing -> pure validatedSchemas
|
|
Just remoteSchemaParser -> do
|
|
(_, inconsistencies) <- listen $ do
|
|
let newSchemaQueryFieldNames = map getFieldName $ piQuery remoteSchemaParser
|
|
newSchemaMutationFieldNames = foldMap (map getFieldName) $ piMutation remoteSchemaParser
|
|
-- First we check for conflicts in query_root:
|
|
-- - between this remote and the previous ones:
|
|
for_
|
|
(duplicates $ newSchemaQueryFieldNames <> previousSchemasQueryFieldNames)
|
|
\name -> reportInconsistency $ "Duplicate remote field " <> squote name
|
|
-- - between this remote and the sources:
|
|
for_ (duplicates $ newSchemaQueryFieldNames <> sourcesQueryFieldNames) $
|
|
\name -> reportInconsistency $ "Field cannot be overwritten by remote field " <> squote name
|
|
-- Ditto, but for mutations - i.e. with mutation_root:
|
|
unless (null newSchemaMutationFieldNames) do
|
|
-- - between this remote and the previous ones:
|
|
for_ (duplicates $ newSchemaMutationFieldNames <> previousSchemasMutationFieldNames) $
|
|
\name -> reportInconsistency $ "Duplicate remote field " <> squote name
|
|
-- - between this remote and the sources:
|
|
for_ (duplicates $ newSchemaMutationFieldNames <> sourcesMutationFieldNames) $
|
|
\name -> reportInconsistency $ "Field cannot be overwritten by remote field " <> squote name
|
|
-- No need to check for conflicts between subscription fields, since
|
|
-- remote subscriptions aren't supported yet.
|
|
|
|
-- Only add this new remote to the list if there was no error
|
|
pure $
|
|
if Set.null inconsistencies
|
|
then remoteSchemaParser : validatedSchemas
|
|
else validatedSchemas
|
|
|
|
buildRemoteSchemaParser ::
|
|
forall m.
|
|
(MonadError QErr m, MonadIO m) =>
|
|
RemoteSchemaPermsCtx ->
|
|
RoleName ->
|
|
RemoteSchemaCtx ->
|
|
ConcreteSchemaT m (Maybe (RemoteSchemaParser (P.ParseT Identity)))
|
|
buildRemoteSchemaParser remoteSchemaPermsCtx roleName context = do
|
|
let maybeIntrospection = getIntrospectionResult remoteSchemaPermsCtx roleName context
|
|
for maybeIntrospection \introspection ->
|
|
buildRemoteParser introspection (_rscRemoteRelationships context) (_rscInfo context)
|
|
|
|
-- | `buildQueryAndSubscriptionFields` builds the query and the subscription
|
|
-- fields of the tables tracked in the source. The query root fields and
|
|
-- the subscription root fields may not be equal because a root field may be
|
|
-- enabled in the `query_root_field` and not in the `subscription_root_field`,
|
|
-- so a tuple of array of field parsers corresponding to query field parsers and
|
|
-- subscription field parsers.
|
|
buildQueryAndSubscriptionFields ::
|
|
forall b r m n.
|
|
MonadBuildSchema b r m n =>
|
|
SourceInfo b ->
|
|
TableCache b ->
|
|
FunctionCache b ->
|
|
StreamingSubscriptionsCtx ->
|
|
m ([P.FieldParser n (QueryRootField UnpreparedValue)], [P.FieldParser n (SubscriptionRootField UnpreparedValue)])
|
|
buildQueryAndSubscriptionFields sourceInfo tables (takeExposedAs FEAQuery -> functions) streamingSubsCtx = do
|
|
roleName <- asks getter
|
|
functionPermsCtx <- retrieve soFunctionPermsContext
|
|
functionSelectExpParsers <-
|
|
concat . catMaybes
|
|
<$> for (Map.toList functions) \(functionName, functionInfo) -> runMaybeT $ do
|
|
guard $
|
|
roleName == adminRoleName
|
|
|| roleName `Map.member` _fiPermissions functionInfo
|
|
|| functionPermsCtx == FunctionPermissionsInferred
|
|
let targetTableName = _fiReturnType functionInfo
|
|
lift $ mkRFs $ buildFunctionQueryFields sourceInfo functionName functionInfo targetTableName
|
|
|
|
(tableQueryFields, tableSubscriptionFields) <-
|
|
unzip . catMaybes
|
|
<$> for (Map.toList tables) \(tableName, tableInfo) -> runMaybeT $ do
|
|
tableIdentifierName <- getTableIdentifierName @b tableInfo
|
|
lift $ buildTableQueryAndSubscriptionFields sourceInfo tableName tableInfo streamingSubsCtx tableIdentifierName
|
|
|
|
let tableQueryRootFields = fmap mkRF $ concat tableQueryFields
|
|
tableSubscriptionRootFields = fmap mkRF $ concat tableSubscriptionFields
|
|
|
|
pure
|
|
( tableQueryRootFields <> functionSelectExpParsers,
|
|
tableSubscriptionRootFields <> functionSelectExpParsers
|
|
)
|
|
where
|
|
mkRFs = mkRootFields sourceName sourceConfig queryTagsConfig QDBR
|
|
mkRF = mkRootField sourceName sourceConfig queryTagsConfig QDBR
|
|
sourceName = _siName sourceInfo
|
|
sourceConfig = _siConfiguration sourceInfo
|
|
queryTagsConfig = _siQueryTagsConfig sourceInfo
|
|
|
|
buildRelayQueryAndSubscriptionFields ::
|
|
forall b r m n.
|
|
MonadBuildSchema b r m n =>
|
|
SourceInfo b ->
|
|
TableCache b ->
|
|
FunctionCache b ->
|
|
m ([P.FieldParser n (QueryRootField UnpreparedValue)], [P.FieldParser n (SubscriptionRootField UnpreparedValue)])
|
|
buildRelayQueryAndSubscriptionFields sourceInfo tables (takeExposedAs FEAQuery -> functions) = do
|
|
(tableConnectionQueryFields, tableConnectionSubscriptionFields) <-
|
|
unzip . catMaybes
|
|
<$> for (Map.toList tables) \(tableName, tableInfo) -> runMaybeT do
|
|
tableIdentifierName <- getTableIdentifierName @b tableInfo
|
|
SelPermInfo {..} <- MaybeT $ tableSelectPermissions tableInfo
|
|
pkeyColumns <- hoistMaybe $ tableInfo ^? tiCoreInfo . tciPrimaryKey . _Just . pkColumns
|
|
relayRootFields <- lift $ mkRFs $ buildTableRelayQueryFields sourceInfo tableName tableInfo tableIdentifierName pkeyColumns
|
|
let includeRelayWhen True = Just relayRootFields
|
|
includeRelayWhen False = Nothing
|
|
pure
|
|
( includeRelayWhen (isRootFieldAllowed QRFTSelect spiAllowedQueryRootFields),
|
|
includeRelayWhen (isRootFieldAllowed SRFTSelect spiAllowedSubscriptionRootFields)
|
|
)
|
|
|
|
functionConnectionFields <- for (Map.toList functions) $ \(functionName, functionInfo) -> runMaybeT do
|
|
let returnTableName = _fiReturnType functionInfo
|
|
-- FIXME: only extract the TableInfo once to avoid redundant cache lookups
|
|
returnTableInfo <- lift $ askTableInfo sourceInfo returnTableName
|
|
pkeyColumns <- MaybeT $ (^? tiCoreInfo . tciPrimaryKey . _Just . pkColumns) <$> pure returnTableInfo
|
|
lift $ mkRFs $ buildFunctionRelayQueryFields sourceInfo functionName functionInfo returnTableName pkeyColumns
|
|
pure $
|
|
( concat $ catMaybes $ tableConnectionQueryFields <> functionConnectionFields,
|
|
concat $ catMaybes $ tableConnectionSubscriptionFields <> functionConnectionFields
|
|
)
|
|
where
|
|
mkRFs = mkRootFields sourceName sourceConfig queryTagsConfig QDBR
|
|
sourceName = _siName sourceInfo
|
|
sourceConfig = _siConfiguration sourceInfo
|
|
queryTagsConfig = _siQueryTagsConfig sourceInfo
|
|
|
|
buildMutationFields ::
|
|
forall b r m n.
|
|
MonadBuildSchema b r m n =>
|
|
Scenario ->
|
|
SourceInfo b ->
|
|
TableCache b ->
|
|
FunctionCache b ->
|
|
m [P.FieldParser n (MutationRootField UnpreparedValue)]
|
|
buildMutationFields scenario sourceInfo tables (takeExposedAs FEAMutation -> functions) = do
|
|
roleName <- asks getter
|
|
tableMutations <- for (Map.toList tables) \(tableName, tableInfo) -> do
|
|
tableIdentifierName <- getTableIdentifierName @b tableInfo
|
|
inserts <-
|
|
mkRFs (MDBR . MDBInsert) $ buildTableInsertMutationFields scenario sourceInfo tableName tableInfo tableIdentifierName
|
|
updates <-
|
|
mkRFs (MDBR . MDBUpdate) $ buildTableUpdateMutationFields scenario sourceInfo tableName tableInfo tableIdentifierName
|
|
deletes <-
|
|
mkRFs (MDBR . MDBDelete) $ buildTableDeleteMutationFields scenario sourceInfo tableName tableInfo tableIdentifierName
|
|
pure $ concat [inserts, updates, deletes]
|
|
functionMutations <- for (Map.toList functions) \(functionName, functionInfo) -> runMaybeT $ do
|
|
let targetTableName = _fiReturnType functionInfo
|
|
-- A function exposed as mutation must have a function permission
|
|
-- configured for the role. See Note [Function Permissions]
|
|
guard $
|
|
-- when function permissions are inferred, we don't expose the
|
|
-- mutation functions for non-admin roles. See Note [Function Permissions]
|
|
roleName == adminRoleName || roleName `Map.member` (_fiPermissions functionInfo)
|
|
lift $ mkRFs MDBR $ buildFunctionMutationFields sourceInfo functionName functionInfo targetTableName
|
|
pure $ concat $ tableMutations <> catMaybes functionMutations
|
|
where
|
|
mkRFs :: forall a db remote action raw. (a -> db b) -> m [FieldParser n a] -> m [FieldParser n (RootField db remote action raw)]
|
|
mkRFs = mkRootFields sourceName sourceConfig queryTagsConfig
|
|
sourceName = _siName sourceInfo
|
|
sourceConfig = _siConfiguration sourceInfo
|
|
queryTagsConfig = _siQueryTagsConfig sourceInfo
|
|
|
|
----------------------------------------------------------------
|
|
-- Building root parser from fields
|
|
|
|
-- | Prepare the parser for query-type GraphQL requests, but with introspection
|
|
-- for queries, mutations and subscriptions built in.
|
|
buildQueryParser ::
|
|
forall r m n.
|
|
MonadBuildSchemaBase r m n =>
|
|
[P.FieldParser n (NamespacedField (QueryRootField UnpreparedValue))] ->
|
|
[P.FieldParser n (NamespacedField (RemoteSchemaRootField (RemoteRelationshipField UnpreparedValue) RemoteSchemaVariable))] ->
|
|
[ActionInfo] ->
|
|
AnnotatedCustomTypes ->
|
|
Maybe (Parser 'Output n (RootFieldMap (MutationRootField UnpreparedValue))) ->
|
|
Maybe (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue))) ->
|
|
m (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue)))
|
|
buildQueryParser sourceQueryFields remoteQueryFields allActions customTypes mutationParser subscriptionParser = do
|
|
actionQueryFields <- concat <$> traverse (buildActionQueryFields customTypes) allActions
|
|
let allQueryFields = sourceQueryFields <> fmap (fmap NotNamespaced) actionQueryFields <> fmap (fmap $ fmap RFRemote) remoteQueryFields
|
|
queryWithIntrospectionHelper allQueryFields mutationParser subscriptionParser
|
|
|
|
-- | Builds a @Schema@ at query parsing time
|
|
parseBuildIntrospectionSchema ::
|
|
MonadParse m =>
|
|
P.Type 'Output ->
|
|
Maybe (P.Type 'Output) ->
|
|
Maybe (P.Type 'Output) ->
|
|
m Schema
|
|
parseBuildIntrospectionSchema q m s = qerrAsMonadParse $ buildIntrospectionSchema q m s
|
|
where
|
|
qerrAsMonadParse :: MonadParse m => Except QErr a -> m a
|
|
qerrAsMonadParse action =
|
|
case runExcept action of
|
|
Right a -> pure a
|
|
Left QErr {..} -> withPath (++ qePath) $ parseErrorWith qeCode qeError
|
|
|
|
queryWithIntrospectionHelper ::
|
|
forall n m.
|
|
(MonadSchema n m, MonadError QErr m) =>
|
|
[P.FieldParser n (NamespacedField (QueryRootField UnpreparedValue))] ->
|
|
Maybe (Parser 'Output n (RootFieldMap (MutationRootField UnpreparedValue))) ->
|
|
Maybe (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue))) ->
|
|
m (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue)))
|
|
queryWithIntrospectionHelper basicQueryFP mutationP subscriptionP = do
|
|
let -- Per the GraphQL spec:
|
|
-- * "The query root operation type must be provided and must be an Object type." (§3.2.1)
|
|
-- * "An Object type must define one or more fields." (§3.6, type validation)
|
|
-- Those two requirements cannot both be met when a service is mutations-only, and does not
|
|
-- provide any query. In such a case, to meet both of those, we introduce a placeholder query
|
|
-- in the schema.
|
|
placeholderText = "There are no queries available to the current role. Either there are no sources or remote schemas configured, or the current role doesn't have the required permissions."
|
|
placeholderField = NotNamespaced (RFRaw $ JO.String placeholderText) <$ P.selection_ G._no_queries_available (Just $ G.Description placeholderText) P.string
|
|
fixedQueryFP = if null basicQueryFP then [placeholderField] else basicQueryFP
|
|
basicQueryP <- queryRootFromFields fixedQueryFP
|
|
let buildIntrospectionResponse printResponseFromSchema = do
|
|
partialSchema <-
|
|
parseBuildIntrospectionSchema
|
|
(P.parserType basicQueryP)
|
|
(P.parserType <$> mutationP)
|
|
(P.parserType <$> subscriptionP)
|
|
pure $ NotNamespaced $ RFRaw $ printResponseFromSchema partialSchema
|
|
introspection = [schema, typeIntrospection] <&> (`P.bindField` buildIntrospectionResponse)
|
|
{-# INLINE introspection #-}
|
|
partialQueryFields = fixedQueryFP ++ introspection
|
|
P.safeSelectionSet queryRoot Nothing partialQueryFields <&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
|
|
queryRootFromFields ::
|
|
forall n m.
|
|
(MonadError QErr m, MonadParse n) =>
|
|
[P.FieldParser n (NamespacedField (QueryRootField UnpreparedValue))] ->
|
|
m (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue)))
|
|
queryRootFromFields fps =
|
|
P.safeSelectionSet queryRoot Nothing fps <&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
|
|
-- | Prepare the parser for subscriptions. Every postgres query field is
|
|
-- exposed as a subscription along with fields to get the status of
|
|
-- asynchronous actions.
|
|
buildSubscriptionParser ::
|
|
forall r m n.
|
|
MonadBuildSchemaBase r m n =>
|
|
[P.FieldParser n (NamespacedField (QueryRootField UnpreparedValue))] ->
|
|
[ActionInfo] ->
|
|
AnnotatedCustomTypes ->
|
|
[P.FieldParser n (NamespacedField (RemoteSchemaRootField (RemoteRelationshipField UnpreparedValue) RemoteSchemaVariable))] ->
|
|
m (Maybe (Parser 'Output n (RootFieldMap (QueryRootField UnpreparedValue))))
|
|
buildSubscriptionParser sourceSubscriptionFields allActions customTypes remoteSubscriptionFields = do
|
|
actionSubscriptionFields <- fmap (fmap NotNamespaced) . concat <$> traverse (buildActionSubscriptionFields customTypes) allActions
|
|
let subscriptionFields = sourceSubscriptionFields <> actionSubscriptionFields <> fmap (fmap $ fmap RFRemote) remoteSubscriptionFields
|
|
whenMaybe (not $ null subscriptionFields) $
|
|
P.safeSelectionSet subscriptionRoot Nothing subscriptionFields
|
|
<&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
|
|
buildMutationParser ::
|
|
forall r m n.
|
|
MonadBuildSchemaBase r m n =>
|
|
[P.FieldParser n (NamespacedField (RemoteSchemaRootField (RemoteRelationshipField UnpreparedValue) RemoteSchemaVariable))] ->
|
|
[ActionInfo] ->
|
|
AnnotatedCustomTypes ->
|
|
[P.FieldParser n (NamespacedField (MutationRootField UnpreparedValue))] ->
|
|
m (Maybe (Parser 'Output n (RootFieldMap (MutationRootField UnpreparedValue))))
|
|
buildMutationParser allRemotes allActions customTypes mutationFields = do
|
|
actionParsers <- concat <$> traverse (buildActionMutationFields customTypes) allActions
|
|
let mutationFieldsParser =
|
|
mutationFields
|
|
<> (fmap NotNamespaced <$> actionParsers)
|
|
<> (fmap (fmap RFRemote) <$> allRemotes)
|
|
whenMaybe (not $ null mutationFieldsParser) $
|
|
P.safeSelectionSet mutationRoot (Just $ G.Description "mutation root") mutationFieldsParser
|
|
<&> fmap (flattenNamespaces . fmap typenameToNamespacedRawRF)
|
|
|
|
-------------------------------------------------------------------------------
|
|
-- Local helpers
|
|
|
|
-- | Apply a source's customization options to a list of its fields.
|
|
customizeFields ::
|
|
forall f n db remote action.
|
|
(Functor f, MonadParse n) =>
|
|
SourceCustomization ->
|
|
P.MkTypename ->
|
|
f [FieldParser n (RootField db remote action JO.Value)] ->
|
|
f [FieldParser n (NamespacedField (RootField db remote action JO.Value))]
|
|
customizeFields SourceCustomization {..} =
|
|
fmap . customizeNamespace (_rootfcNamespace =<< _scRootFields) (const typenameToRawRF)
|
|
|
|
-- | All the 'BackendSchema' methods produce something of the form @m
|
|
-- [FieldParser n a]@, where @a@ is something specific to what is being parsed
|
|
-- by the given method.
|
|
--
|
|
-- In order to build the complete schema these must be
|
|
-- homogenised and be annotated with query-tag data, which this function makes
|
|
-- easy.
|
|
-- This function converts a single field parser. @mkRootFields@ transforms a
|
|
-- list of field parsers.
|
|
mkRootField ::
|
|
forall b n a db remote action raw.
|
|
(HasTag b, Functor n) =>
|
|
SourceName ->
|
|
SourceConfig b ->
|
|
Maybe QueryTagsConfig ->
|
|
(a -> db b) ->
|
|
FieldParser n a ->
|
|
FieldParser n (RootField db remote action raw)
|
|
mkRootField sourceName sourceConfig queryTagsConfig inj =
|
|
fmap
|
|
( RFDB sourceName
|
|
. AB.mkAnyBackend @b
|
|
. SourceConfigWith sourceConfig queryTagsConfig
|
|
. inj
|
|
)
|
|
|
|
-- | `mkRootFields` is `mkRootField` applied on a list of `FieldParser`.
|
|
mkRootFields ::
|
|
forall b m n a db remote action raw.
|
|
(HasTag b, Functor m, Functor n) =>
|
|
SourceName ->
|
|
SourceConfig b ->
|
|
Maybe QueryTagsConfig ->
|
|
(a -> db b) ->
|
|
m [(FieldParser n a)] ->
|
|
m [(FieldParser n (RootField db remote action raw))]
|
|
mkRootFields sourceName sourceConfig queryTagsConfig inj =
|
|
fmap
|
|
( map
|
|
(mkRootField sourceName sourceConfig queryTagsConfig inj)
|
|
)
|
|
|
|
takeExposedAs :: FunctionExposedAs -> FunctionCache b -> FunctionCache b
|
|
takeExposedAs x = Map.filter ((== x) . _fiExposedAs)
|
|
|
|
subscriptionRoot :: G.Name
|
|
subscriptionRoot = G._subscription_root
|
|
|
|
mutationRoot :: G.Name
|
|
mutationRoot = G._mutation_root
|
|
|
|
queryRoot :: G.Name
|
|
queryRoot = G._query_root
|
|
|
|
finalizeParser :: Parser 'Output (P.ParseT Identity) a -> ParserFn a
|
|
finalizeParser parser = runIdentity . P.runParseT . P.runParser parser
|
|
|
|
type ConcreteSchemaT m a =
|
|
P.SchemaT
|
|
(P.ParseT Identity)
|
|
( ReaderT
|
|
( SchemaOptions,
|
|
SchemaContext,
|
|
RoleName,
|
|
MkTypename,
|
|
MkRootFieldName,
|
|
CustomizeRemoteFieldName,
|
|
NamingCase
|
|
)
|
|
m
|
|
)
|
|
a
|
|
|
|
runMonadSchema ::
|
|
forall m a.
|
|
Monad m =>
|
|
SchemaOptions ->
|
|
SchemaContext ->
|
|
RoleName ->
|
|
ConcreteSchemaT m a ->
|
|
m a
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|
runMonadSchema options context roleName m =
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flip runReaderT (options, context, roleName, mempty, mempty, mempty, HasuraCase) $
|
|
P.runSchemaT m
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buildBackendSource ::
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|
(forall b. BackendSchema b => SourceInfo b -> r) ->
|
|
AB.AnyBackend SourceInfo ->
|
|
r
|
|
buildBackendSource f e = AB.dispatchAnyBackend @BackendSchema e f
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typenameToNamespacedRawRF ::
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|
P.ParsedSelection (NamespacedField (RootField db remote action JO.Value)) ->
|
|
NamespacedField (RootField db remote action JO.Value)
|
|
typenameToNamespacedRawRF = P.handleTypename $ NotNamespaced . RFRaw . JO.String . toTxt
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|
|
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typenameToRawRF ::
|
|
P.ParsedSelection (RootField db remote action JO.Value) ->
|
|
RootField db remote action JO.Value
|
|
typenameToRawRF = P.handleTypename $ RFRaw . JO.String . toTxt
|