mirror of
https://github.com/hasura/graphql-engine.git
synced 2024-12-17 20:41:49 +03:00
1a4aad4ba1
GitOrigin-RevId: af6c944270301d8b17618a706ab328a28c0e51dc
712 lines
34 KiB
Haskell
712 lines
34 KiB
Haskell
{-# LANGUAGE Arrows #-}
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{-# LANGUAGE ViewPatterns #-}
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module Hasura.GraphQL.Schema
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( buildGQLContext
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) where
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import Hasura.Prelude
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import qualified Data.Aeson as J
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import qualified Data.HashMap.Strict as Map
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import qualified Data.HashMap.Strict.InsOrd as OMap
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import qualified Data.HashSet as Set
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import qualified Language.GraphQL.Draft.Syntax as G
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import Control.Arrow.Extended
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import Control.Lens.Extended
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import Control.Monad.Unique
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import Data.Has
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import Data.List.Extended (duplicates)
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import qualified Hasura.GraphQL.Parser as P
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import qualified Hasura.SQL.AnyBackend as AB
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import Data.Text.Extended
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import Hasura.GraphQL.Context
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import Hasura.GraphQL.Execute.Types
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import Hasura.GraphQL.Parser (Kind (..), Parser, Schema (..),
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UnpreparedValue (..))
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import Hasura.GraphQL.Parser.Class
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import Hasura.GraphQL.Parser.Internal.Parser (FieldParser (..))
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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.Remote (buildRemoteParser)
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import Hasura.GraphQL.Schema.Select
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import Hasura.GraphQL.Schema.Table
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import Hasura.RQL.DDL.Schema.Cache.Common
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import Hasura.RQL.Types
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import Hasura.Session
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----------------------------------------------------------------
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-- Building contexts
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buildGQLContext
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:: forall arr m
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. ( ArrowChoice arr
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, ArrowWriter (Seq InconsistentMetadata) arr
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, ArrowKleisli m arr
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, MonadError QErr m
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, MonadIO m
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, MonadUnique m
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, HasServerConfigCtx m
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)
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=> ( GraphQLQueryType
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, SourceCache
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, RemoteSchemaCache
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, ActionCache
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, NonObjectTypeMap
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)
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`arr`
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( HashMap RoleName (RoleContext GQLContext)
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, GQLContext
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)
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buildGQLContext =
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proc (queryType, sources, allRemoteSchemas, allActions, nonObjectCustomTypes) -> do
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ServerConfigCtx functionPermsCtx remoteSchemaPermsCtx sqlGenCtx@(SQLGenCtx stringifyNum boolCollapse) _maintenanceMode _experimentalFeatures <-
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bindA -< askServerConfigCtx
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let remoteSchemasRoles = concatMap (Map.keys . _rscPermissions . fst . snd) $ Map.toList allRemoteSchemas
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let 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 $ remoteSchemaPermsCtx == RemoteSchemaPermsEnabled)
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allActionInfos = Map.elems allActions
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allTableRoles = Set.fromList $ getTableRoles =<< Map.elems sources
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adminRemoteRelationshipQueryCtx =
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allRemoteSchemas
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<&> (\(remoteSchemaCtx, _metadataObj) ->
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(_rscIntro remoteSchemaCtx, _rscParsed remoteSchemaCtx))
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allRoles :: Set.HashSet RoleName
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allRoles = nonTableRoles <> allTableRoles
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-- The function permissions context doesn't actually matter because the
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-- admin will have access to the function anyway
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adminQueryContext = QueryContext
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stringifyNum
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boolCollapse
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queryType
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adminRemoteRelationshipQueryCtx
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FunctionPermissionsInferred
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-- build the admin DB-only context so that we can check against name clashes with remotes
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-- TODO: Is there a better way to check for conflicts without actually building the admin schema?
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adminHasuraDBContext <- bindA -<
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buildFullestDBSchema adminQueryContext sources allActionInfos nonObjectCustomTypes
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-- TODO factor out the common function; throw500 in both cases:
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queryFieldNames :: [G.Name] <- bindA -<
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case P.discardNullability $ P.parserType $ fst adminHasuraDBContext of
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-- It really ought to be this case; anything else is a programming error.
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P.TNamed (P.Definition _ _ _ (P.TIObject (P.ObjectInfo rootFields _interfaces))) ->
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pure $ fmap P.dName rootFields
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_ -> throw500 "We encountered an root query of unexpected GraphQL type. It should be an object type."
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let mutationFieldNames :: [G.Name]
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mutationFieldNames =
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case P.discardNullability . P.parserType <$> snd adminHasuraDBContext of
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Just (P.TNamed def) ->
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case P.dInfo def of
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-- It really ought to be this case; anything else is a programming error.
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P.TIObject (P.ObjectInfo rootFields _interfaces) -> fmap P.dName rootFields
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_ -> []
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_ -> []
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-- This block of code checks that there are no conflicting root field names between remotes.
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remotes <- remoteSchemaFields -< (queryFieldNames, mutationFieldNames, allRemoteSchemas)
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let adminQueryRemotes = concatMap (piQuery . snd . snd) remotes
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adminMutationRemotes = concatMap (concat . piMutation . snd . snd) remotes
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roleContexts <- bindA -<
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( Set.toMap allRoles & Map.traverseWithKey \role () ->
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case queryType of
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QueryHasura ->
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buildRoleContext (sqlGenCtx, queryType, functionPermsCtx) sources allRemoteSchemas allActionInfos
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nonObjectCustomTypes remotes role remoteSchemaPermsCtx
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QueryRelay ->
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buildRelayRoleContext (sqlGenCtx, queryType, functionPermsCtx) sources allActionInfos
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nonObjectCustomTypes role
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)
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unauthenticated <- bindA -< unauthenticatedContext adminQueryRemotes adminMutationRemotes remoteSchemaPermsCtx
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returnA -< (roleContexts, unauthenticated)
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buildRoleContext
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:: forall m. (MonadError QErr m, MonadIO m, MonadUnique m)
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=> (SQLGenCtx, GraphQLQueryType, FunctionPermissionsCtx) -> SourceCache -> RemoteSchemaCache
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-> [ActionInfo] -> NonObjectTypeMap
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-> [( RemoteSchemaName , (IntrospectionResult, ParsedIntrospection))]
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-> RoleName
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-> RemoteSchemaPermsCtx
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-> m (RoleContext GQLContext)
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buildRoleContext (SQLGenCtx stringifyNum boolCollapse, queryType, functionPermsCtx) sources
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allRemoteSchemas allActionInfos nonObjectCustomTypes remotes role remoteSchemaPermsCtx = do
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roleBasedRemoteSchemas <-
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if | role == adminRoleName -> pure remotes
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| remoteSchemaPermsCtx == RemoteSchemaPermsEnabled -> buildRoleBasedRemoteSchemaParser role allRemoteSchemas
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-- when remote schema permissions are not enabled, then remote schemas
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-- are a public entity which is accesible to all the roles
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| otherwise -> pure remotes
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let queryRemotes = getQueryRemotes $ snd . snd <$> roleBasedRemoteSchemas
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mutationRemotes = getMutationRemotes $ snd . snd <$> roleBasedRemoteSchemas
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remoteRelationshipQueryContext = Map.fromList roleBasedRemoteSchemas
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roleQueryContext = QueryContext
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stringifyNum
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boolCollapse
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queryType
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remoteRelationshipQueryContext
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functionPermsCtx
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buildSource :: forall b. BackendSchema b => SourceInfo b ->
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m ( [FieldParser (P.ParseT Identity) (QueryRootField UnpreparedValue)]
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, [FieldParser (P.ParseT Identity) (MutationRootField UnpreparedValue)]
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, [FieldParser (P.ParseT Identity) (MutationRootField UnpreparedValue)]
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)
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buildSource (SourceInfo sourceName tables functions sourceConfig) = do
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let validFunctions = takeValidFunctions functions
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validTables = takeValidTables tables
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xNodesAgg = nodesAggExtension sourceConfig
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xRelay = relayExtension sourceConfig
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runMonadSchema role roleQueryContext sources (BackendExtension @b xRelay xNodesAgg) $
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(,,)
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<$> buildQueryFields sourceName sourceConfig validTables validFunctions
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<*> buildMutationFields Frontend sourceName sourceConfig validTables validFunctions
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<*> buildMutationFields Backend sourceName sourceConfig validTables validFunctions
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fieldsList <- traverse (buildBackendSource buildSource) $ toList sources
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let (queryFields, mutationFrontendFields, mutationBackendFields) = mconcat fieldsList
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-- It's okay to run the rest of this while assuming that the backend is 'Postgres:
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-- the only remaining parsers are for actions, that are postgres specific, or for
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-- remotes, which are backend-agnostic.
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-- In the long term, all backend-specific processing should be moved to `buildSource`, and this
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-- block should be running in the schema for a `None` backend.
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runMonadSchema role roleQueryContext sources (BackendExtension @'Postgres (Just ()) (Just ())) $ do
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mutationParserFrontend <-
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buildMutationParser mutationRemotes allActionInfos nonObjectCustomTypes mutationFrontendFields
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mutationParserBackend <-
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buildMutationParser mutationRemotes allActionInfos nonObjectCustomTypes mutationBackendFields
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subscriptionParser <- buildSubscriptionParser queryFields allActionInfos
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queryParserFrontend <- buildQueryParser queryFields queryRemotes
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allActionInfos nonObjectCustomTypes mutationParserFrontend subscriptionParser
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queryParserBackend <- buildQueryParser queryFields queryRemotes
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allActionInfos nonObjectCustomTypes mutationParserBackend subscriptionParser
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let frontendContext = GQLContext (finalizeParser queryParserFrontend)
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(finalizeParser <$> mutationParserFrontend)
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let backendContext = GQLContext (finalizeParser queryParserBackend)
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(finalizeParser <$> mutationParserBackend)
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pure $ RoleContext frontendContext $ Just backendContext
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where
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getQueryRemotes
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:: [ParsedIntrospection]
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-> [P.FieldParser (P.ParseT Identity) RemoteField]
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getQueryRemotes = concatMap piQuery
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getMutationRemotes
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:: [ParsedIntrospection]
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-> [P.FieldParser (P.ParseT Identity) RemoteField]
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getMutationRemotes = concatMap (concat . piMutation)
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buildRelayRoleContext
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:: forall m. (MonadError QErr m, MonadIO m, MonadUnique m)
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=> (SQLGenCtx, GraphQLQueryType, FunctionPermissionsCtx) -> SourceCache -> [ActionInfo] -> NonObjectTypeMap
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-> RoleName
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-> m (RoleContext GQLContext)
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buildRelayRoleContext (SQLGenCtx stringifyNum boolCollapse, queryType, functionPermsCtx) sources
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allActionInfos nonObjectCustomTypes role = do
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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 `RemoteRelationshipQueryContext`.
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let roleQueryContext = QueryContext
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stringifyNum
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boolCollapse
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queryType
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mempty
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functionPermsCtx
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buildSource :: forall b. BackendSchema b => SourceInfo b ->
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m ( [FieldParser (P.ParseT Identity) (QueryRootField UnpreparedValue)]
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, [FieldParser (P.ParseT Identity) (MutationRootField UnpreparedValue)]
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, [FieldParser (P.ParseT Identity) (MutationRootField UnpreparedValue)]
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)
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buildSource (SourceInfo sourceName tables functions sourceConfig) = do
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let validFunctions = takeValidFunctions functions
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validTables = takeValidTables tables
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xNodesAgg = nodesAggExtension sourceConfig
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xRelay = relayExtension sourceConfig
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runMonadSchema role roleQueryContext sources (BackendExtension @b xRelay xNodesAgg) $
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(,,)
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<$> buildRelayQueryFields sourceName sourceConfig validTables validFunctions
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<*> buildMutationFields Frontend sourceName sourceConfig validTables validFunctions
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<*> buildMutationFields Backend sourceName sourceConfig validTables validFunctions
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fieldsList <- traverse (buildBackendSource buildSource) $ toList sources
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-- It's okay to run the rest of this while assuming that the backend is 'Postgres:
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-- the only remaining parsers are for actions, that are postgres specific, or for
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-- remotes, which are backend-agnostic.
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-- In the long term, all backend-specific processing should be moved to `buildSource`, and this
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-- block should be running in the schema for a `None` backend.
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runMonadSchema role roleQueryContext sources (BackendExtension @'Postgres (Just ()) (Just ())) $ do
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-- Add node root field.
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-- FIXME: for now this is PG-only. This isn't a problem yet since for now only PG supports relay.
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-- To fix this, we'd need to first generalize `nodeField`.
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nodeField_ <- nodeField
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let (queryPGFields', mutationFrontendFields, mutationBackendFields) = mconcat fieldsList
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queryPGFields = nodeField_:queryPGFields'
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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 nonObjectCustomTypes mutationFrontendFields
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mutationParserBackend <-
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buildMutationParser mempty allActionInfos nonObjectCustomTypes mutationBackendFields
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subscriptionParser <- P.safeSelectionSet subscriptionRoot Nothing queryPGFields
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<&> fmap (fmap (P.handleTypename (RFRaw . J.String. G.unName)))
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queryParserFrontend <- queryWithIntrospectionHelper queryPGFields
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mutationParserFrontend subscriptionParser
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queryParserBackend <- queryWithIntrospectionHelper queryPGFields
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mutationParserBackend subscriptionParser
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let frontendContext = GQLContext (finalizeParser queryParserFrontend)
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(finalizeParser <$> mutationParserFrontend)
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let backendContext = GQLContext (finalizeParser queryParserBackend)
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(finalizeParser <$> mutationParserBackend)
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pure $ RoleContext frontendContext $ Just backendContext
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buildFullestDBSchema
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:: forall m. (MonadError QErr m, MonadIO m, MonadUnique m)
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=> QueryContext -> SourceCache -> [ActionInfo] -> NonObjectTypeMap
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-> m ( Parser 'Output (P.ParseT Identity) (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue))
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, Maybe (Parser 'Output (P.ParseT Identity) (OMap.InsOrdHashMap G.Name (MutationRootField UnpreparedValue)))
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)
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buildFullestDBSchema queryContext sources allActionInfos nonObjectCustomTypes = do
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let buildSource :: forall b. BackendSchema b => SourceInfo b ->
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m ( [FieldParser (P.ParseT Identity) (QueryRootField UnpreparedValue)]
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, [FieldParser (P.ParseT Identity) (MutationRootField UnpreparedValue)]
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)
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buildSource (SourceInfo sourceName tables functions sourceConfig) = do
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let validFunctions = takeValidFunctions functions
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validTables = takeValidTables tables
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xNodesAgg = nodesAggExtension sourceConfig
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xRelay = relayExtension sourceConfig
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runMonadSchema adminRoleName queryContext sources (BackendExtension @b xRelay xNodesAgg) $
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(,)
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<$> buildQueryFields sourceName sourceConfig validTables validFunctions
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<*> buildMutationFields Frontend sourceName sourceConfig validTables validFunctions
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fieldsList <- traverse (buildBackendSource buildSource) $ toList sources
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let (queryFields, mutationFrontendFields) = mconcat fieldsList
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-- It's okay to run the rest of this while assuming that the backend is 'Postgres:
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-- the only remaining parsers are for actions, that are postgres specific, or for
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-- remotes, which are backend-agnostic.
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-- In the long term, all backend-specific processing should be moved to `buildSource`, and this
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-- block should be running in the schema for a `None` backend.
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runMonadSchema adminRoleName queryContext sources (BackendExtension @'Postgres (Just ()) (Just ())) $ do
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mutationParserFrontend <-
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-- NOTE: we omit remotes here on purpose since we're trying to check name
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-- clashes with remotes:
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buildMutationParser mempty allActionInfos nonObjectCustomTypes mutationFrontendFields
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subscriptionParser <- buildSubscriptionParser queryFields allActionInfos
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queryParserFrontend <- buildQueryParser queryFields mempty
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allActionInfos nonObjectCustomTypes mutationParserFrontend subscriptionParser
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pure (queryParserFrontend, mutationParserFrontend)
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-- The `unauthenticatedContext` is used when the user queries the graphql-engine
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-- with a role that it's unaware of. Before remote schema permissions, remotes
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-- were considered to be a public entity, hence, we allowed an unknown role also
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-- to query the remotes. To maintain backwards compatibility, we check if the
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-- remote schema permissions are enabled, and if it's we don't expose the remote
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-- schema fields in the unauthenticatedContext, otherwise we expose them.
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unauthenticatedContext
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:: forall m
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. ( MonadError QErr m
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, MonadIO m
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, MonadUnique m
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)
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=> [P.FieldParser (P.ParseT Identity) RemoteField]
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-> [P.FieldParser (P.ParseT Identity) RemoteField]
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-> RemoteSchemaPermsCtx
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-> m GQLContext
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unauthenticatedContext adminQueryRemotes adminMutationRemotes remoteSchemaPermsCtx = P.runSchemaT $ do
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let isRemoteSchemaPermsEnabled = remoteSchemaPermsCtx == RemoteSchemaPermsEnabled
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queryFields = bool (fmap (fmap RFRemote) adminQueryRemotes) [] isRemoteSchemaPermsEnabled
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mutationFields = bool (fmap (fmap RFRemote) adminMutationRemotes) [] isRemoteSchemaPermsEnabled
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mutationParser <-
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if null adminMutationRemotes
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then pure Nothing
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else P.safeSelectionSet mutationRoot Nothing mutationFields
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<&> Just . fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
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subscriptionParser <-
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P.safeSelectionSet subscriptionRoot Nothing []
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<&> fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
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queryParser <- queryWithIntrospectionHelper queryFields mutationParser subscriptionParser
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pure $ GQLContext (finalizeParser queryParser) (finalizeParser <$> mutationParser)
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----------------------------------------------------------------
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-- Building parser fields
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buildRoleBasedRemoteSchemaParser
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:: forall m
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. (MonadError QErr m, MonadUnique m, MonadIO m)
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=> RoleName
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-> RemoteSchemaCache
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-> m [(RemoteSchemaName, (IntrospectionResult, ParsedIntrospection))]
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buildRoleBasedRemoteSchemaParser roleName remoteSchemaCache = do
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let remoteSchemaIntroInfos = map fst $ toList remoteSchemaCache
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remoteSchemaPerms <-
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for remoteSchemaIntroInfos $ \(RemoteSchemaCtx remoteSchemaName _ remoteSchemaInfo _ _ permissions) ->
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for (Map.lookup roleName permissions) $ \introspectRes -> do
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(queryParsers, mutationParsers, subscriptionParsers) <-
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P.runSchemaT @m @(P.ParseT Identity) $ buildRemoteParser introspectRes remoteSchemaInfo
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let parsedIntrospection = ParsedIntrospection queryParsers mutationParsers subscriptionParsers
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return (remoteSchemaName, (introspectRes, parsedIntrospection))
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return $ catMaybes remoteSchemaPerms
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-- checks that there are no conflicting root field names between remotes and
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-- hasura fields
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remoteSchemaFields
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:: forall arr m
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. ( ArrowChoice arr
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, ArrowWriter (Seq InconsistentMetadata) arr
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, ArrowKleisli m arr
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, MonadError QErr m
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)
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=> ([G.Name], [G.Name], HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject))
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`arr`
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[( RemoteSchemaName , (IntrospectionResult, ParsedIntrospection))]
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remoteSchemaFields = proc (queryFieldNames, mutationFieldNames, allRemoteSchemas) -> do
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(| foldlA' (\okSchemas (newSchemaName, (newSchemaContext, newMetadataObject)) -> do
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checkedDuplicates <- (| withRecordInconsistency (do
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let (queryOld, mutationOld) =
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unzip $ fmap ((\case ParsedIntrospection q m _ -> (q,m)) . snd . snd) okSchemas
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let ParsedIntrospection queryNew mutationNew _subscriptionNew
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= _rscParsed newSchemaContext
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-- Check for conflicts between remotes
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bindErrorA -<
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for_ (duplicates (fmap (P.getName . fDefinition) (queryNew ++ concat queryOld))) $
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\name -> throw400 Unexpected $ "Duplicate remote field " <> squote name
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-- Check for conflicts between this remote and the tables
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bindErrorA -<
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for_ (duplicates (fmap (P.getName . fDefinition) queryNew ++ queryFieldNames)) $
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\name -> throw400 RemoteSchemaConflicts $ "Field cannot be overwritten by remote field " <> squote name
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-- Ditto, but for mutations
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case mutationNew of
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Nothing -> returnA -< ()
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Just ms -> do
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bindErrorA -<
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for_ (duplicates (fmap (P.getName . fDefinition) (ms ++ concat (catMaybes mutationOld)))) $
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\name -> throw400 Unexpected $ "Duplicate remote field " <> squote name
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-- Ditto, but for mutations
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bindErrorA -<
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for_ (duplicates (fmap (P.getName . fDefinition) ms ++ mutationFieldNames)) $
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\name -> throw400 Unexpected $ "Field cannot be overwritten by remote field " <> squote name
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-- No need to check subscriptions as these are not supported
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returnA -< ()
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) |) newMetadataObject
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case checkedDuplicates of
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Nothing -> returnA -< okSchemas
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Just _ -> returnA -< (newSchemaName, ( _rscIntro newSchemaContext,_rscParsed newSchemaContext)):okSchemas
|
|
) |) [] (Map.toList allRemoteSchemas)
|
|
|
|
buildQueryFields
|
|
:: forall b r m n
|
|
. MonadBuildSchema b r m n
|
|
=> SourceName
|
|
-> SourceConfig b
|
|
-> TableCache b
|
|
-> FunctionCache b
|
|
-> m [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
buildQueryFields sourceName sourceConfig tables (takeExposedAs FEAQuery -> functions) = do
|
|
roleName <- askRoleName
|
|
functionPermsCtx <- asks $ qcFunctionPermsContext . getter
|
|
tableSelectExpParsers <- for (Map.toList tables) \(tableName, tableInfo) -> do
|
|
tableGQLName <- getTableGQLName @b tableName
|
|
-- FIXME: retrieve permissions directly from tableInfo to avoid a sourceCache lookup
|
|
selectPerms <- tableSelectPermissions tableName
|
|
for selectPerms $ buildTableQueryFields sourceName sourceConfig tableName tableInfo tableGQLName
|
|
functionSelectExpParsers <- for (Map.toList functions) \(functionName, functionInfo) -> runMaybeT $ do
|
|
guard
|
|
$ roleName == adminRoleName
|
|
|| roleName `elem` _fiPermissions functionInfo
|
|
|| functionPermsCtx == FunctionPermissionsInferred
|
|
let targetTable = _fiReturnType functionInfo
|
|
selectPerms <- MaybeT $ tableSelectPermissions targetTable
|
|
lift $ buildFunctionQueryFields sourceName sourceConfig functionName functionInfo targetTable selectPerms
|
|
pure $ concat $ catMaybes $ tableSelectExpParsers <> functionSelectExpParsers
|
|
|
|
buildRelayQueryFields
|
|
:: forall b r m n
|
|
. MonadBuildSchema b r m n
|
|
=> SourceName
|
|
-> SourceConfig b
|
|
-> TableCache b
|
|
-> FunctionCache b
|
|
-> m [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
buildRelayQueryFields sourceName sourceConfig tables (takeExposedAs FEAQuery -> functions) = do
|
|
tableConnectionFields <- for (Map.toList tables) \(tableName, tableInfo) -> runMaybeT do
|
|
tableGQLName <- getTableGQLName @b tableName
|
|
pkeyColumns <- hoistMaybe $ tableInfo ^? tiCoreInfo.tciPrimaryKey._Just.pkColumns
|
|
-- FIXME: retrieve permissions directly from tableInfo to avoid a sourceCache lookup
|
|
selectPerms <- MaybeT $ tableSelectPermissions tableName
|
|
MaybeT $ buildTableRelayQueryFields sourceName sourceConfig tableName tableInfo tableGQLName pkeyColumns selectPerms
|
|
functionConnectionFields <- for (Map.toList functions) $ \(functionName, functionInfo) -> runMaybeT do
|
|
let returnTable = _fiReturnType functionInfo
|
|
-- FIXME: only extract the TableInfo once to avoid redundant cache lookups
|
|
pkeyColumns <- MaybeT $ (^? tiCoreInfo.tciPrimaryKey._Just.pkColumns) <$> askTableInfo returnTable
|
|
selectPerms <- MaybeT $ tableSelectPermissions returnTable
|
|
MaybeT $ buildFunctionRelayQueryFields sourceName sourceConfig functionName functionInfo returnTable pkeyColumns selectPerms
|
|
pure $ catMaybes $ tableConnectionFields <> functionConnectionFields
|
|
|
|
buildMutationFields
|
|
:: forall b r m n
|
|
. MonadBuildSchema b r m n
|
|
=> Scenario
|
|
-> SourceName
|
|
-> SourceConfig b
|
|
-> TableCache b
|
|
-> FunctionCache b
|
|
-> m [P.FieldParser n (MutationRootField UnpreparedValue)]
|
|
buildMutationFields scenario sourceName sourceConfig tables (takeExposedAs FEAMutation -> functions) = do
|
|
roleName <- askRoleName
|
|
tableMutations <- for (Map.toList tables) \(tableName, tableInfo) -> do
|
|
tableGQLName <- getTableGQLName @b tableName
|
|
-- FIXME: retrieve permissions directly from tableInfo to avoid a sourceCache lookup
|
|
tablePerms <- tablePermissions tableName
|
|
for tablePerms \RolePermInfo{..} -> do
|
|
let viewInfo = _tciViewInfo $ _tiCoreInfo tableInfo
|
|
inserts <- runMaybeT $ do
|
|
guard $ isMutable viIsInsertable viewInfo
|
|
insertPerms <- hoistMaybe $ do
|
|
-- If we're in a frontend scenario, we should not include backend_only inserts
|
|
insertPerms <- _permIns
|
|
if scenario == Frontend && ipiBackendOnly insertPerms
|
|
then Nothing
|
|
else Just insertPerms
|
|
lift $
|
|
buildTableInsertMutationFields sourceName sourceConfig tableName tableInfo
|
|
tableGQLName insertPerms _permSel _permUpd
|
|
updates <- runMaybeT $ do
|
|
guard $ isMutable viIsUpdatable viewInfo
|
|
updatePerms <- hoistMaybe _permUpd
|
|
lift $ buildTableUpdateMutationFields sourceName sourceConfig tableName tableInfo tableGQLName updatePerms _permSel
|
|
deletes <- runMaybeT $ do
|
|
guard $ isMutable viIsDeletable viewInfo
|
|
deletePerms <- hoistMaybe _permDel
|
|
lift $ buildTableDeleteMutationFields sourceName sourceConfig tableName tableInfo tableGQLName deletePerms _permSel
|
|
pure $ concat $ catMaybes [inserts, updates, deletes]
|
|
functionMutations <- for (Map.toList functions) \(functionName, functionInfo) -> runMaybeT $ do
|
|
let targetTable = _fiReturnType functionInfo
|
|
selectPerms <- MaybeT $ tableSelectPermissions targetTable
|
|
-- 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 `elem` (_fiPermissions functionInfo)
|
|
lift $ buildFunctionMutationFields sourceName sourceConfig functionName functionInfo targetTable selectPerms
|
|
pure $ concat $ catMaybes $ tableMutations <> functionMutations
|
|
|
|
|
|
|
|
----------------------------------------------------------------
|
|
-- 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 m n r
|
|
. ( MonadSchema n m
|
|
, MonadTableInfo r m
|
|
, MonadRole r m
|
|
, Has QueryContext r
|
|
, Has (BackendExtension 'Postgres) r
|
|
)
|
|
=> [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
-> [P.FieldParser n RemoteField]
|
|
-> [ActionInfo]
|
|
-> NonObjectTypeMap
|
|
-> Maybe (Parser 'Output n (OMap.InsOrdHashMap G.Name (MutationRootField UnpreparedValue)))
|
|
-> Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue))
|
|
-> m (Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue)))
|
|
buildQueryParser pgQueryFields remoteFields allActions nonObjectCustomTypes mutationParser subscriptionParser = do
|
|
actionQueryFields <- concat <$> traverse (buildActionQueryFields nonObjectCustomTypes) allActions
|
|
let allQueryFields = pgQueryFields <> actionQueryFields <> map (fmap RFRemote) remoteFields
|
|
queryWithIntrospectionHelper allQueryFields mutationParser subscriptionParser
|
|
|
|
queryWithIntrospectionHelper
|
|
:: (MonadSchema n m, MonadError QErr m)
|
|
=> [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
-> Maybe (Parser 'Output n (OMap.InsOrdHashMap G.Name (MutationRootField UnpreparedValue)))
|
|
-> Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue))
|
|
-> m (Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue)))
|
|
queryWithIntrospectionHelper basicQueryFP mutationP subscriptionP = do
|
|
basicQueryP <- queryRootFromFields basicQueryFP
|
|
emptyIntro <- emptyIntrospection
|
|
allBasicTypes <- collectTypes $
|
|
[ P.parserType basicQueryP
|
|
, P.parserType subscriptionP
|
|
]
|
|
++ maybeToList (P.parserType <$> mutationP)
|
|
allIntrospectionTypes <- collectTypes . P.parserType =<< queryRootFromFields emptyIntro
|
|
let allTypes = Map.unions
|
|
[ allBasicTypes
|
|
, Map.filterWithKey (\name _info -> name /= queryRoot) allIntrospectionTypes
|
|
]
|
|
partialSchema = Schema
|
|
{ sDescription = Nothing
|
|
, sTypes = allTypes
|
|
, sQueryType = P.parserType basicQueryP
|
|
, sMutationType = P.parserType <$> mutationP
|
|
, sSubscriptionType = Just $ P.parserType subscriptionP
|
|
, sDirectives = defaultDirectives
|
|
}
|
|
let partialQueryFields =
|
|
basicQueryFP ++ (fmap RFRaw <$> [schema partialSchema, typeIntrospection partialSchema])
|
|
P.safeSelectionSet queryRoot Nothing partialQueryFields
|
|
<&> fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
|
|
|
|
queryRootFromFields
|
|
:: forall n m
|
|
. (MonadError QErr m, MonadParse n)
|
|
=> [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
-> m (Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue)))
|
|
queryRootFromFields fps =
|
|
P.safeSelectionSet queryRoot Nothing fps
|
|
<&> fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
|
|
|
|
emptyIntrospection
|
|
:: forall m n
|
|
. (MonadSchema n m, MonadError QErr m)
|
|
=> m [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
emptyIntrospection = do
|
|
emptyQueryP <- queryRootFromFields @n []
|
|
introspectionTypes <- collectTypes (P.parserType emptyQueryP)
|
|
let introspectionSchema = Schema
|
|
{ sDescription = Nothing
|
|
, sTypes = introspectionTypes
|
|
, sQueryType = P.parserType emptyQueryP
|
|
, sMutationType = Nothing
|
|
, sSubscriptionType = Nothing
|
|
, sDirectives = mempty
|
|
}
|
|
return $ fmap (fmap RFRaw) [schema introspectionSchema, typeIntrospection introspectionSchema]
|
|
|
|
collectTypes
|
|
:: forall m a
|
|
. (MonadError QErr m, P.HasTypeDefinitions a)
|
|
=> a
|
|
-> m (HashMap G.Name (P.Definition P.SomeTypeInfo))
|
|
collectTypes x = P.collectTypeDefinitions x
|
|
`onLeft` \(P.ConflictingDefinitions (type1, origin1) (_type2, origins)) -> throw500 $
|
|
"Found conflicting definitions for " <> P.getName type1 <<> ". The definition at " <> origin1 <<>
|
|
" differs from the the definition at " <> commaSeparated origins <<> "."
|
|
|
|
-- | 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 m n r
|
|
. ( MonadSchema n m
|
|
, MonadTableInfo r m
|
|
, MonadRole r m
|
|
, Has QueryContext r
|
|
, Has (BackendExtension 'Postgres) r
|
|
)
|
|
=> [P.FieldParser n (QueryRootField UnpreparedValue)]
|
|
-> [ActionInfo]
|
|
-> m (Parser 'Output n (OMap.InsOrdHashMap G.Name (QueryRootField UnpreparedValue)))
|
|
buildSubscriptionParser queryFields allActions = do
|
|
actionSubscriptionFields <- concat <$> traverse buildActionSubscriptionFields allActions
|
|
let subscriptionFields = queryFields <> actionSubscriptionFields
|
|
P.safeSelectionSet subscriptionRoot Nothing subscriptionFields
|
|
<&> fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
|
|
|
|
buildMutationParser
|
|
:: forall m n r
|
|
. ( MonadSchema n m
|
|
, MonadTableInfo r m
|
|
, MonadRole r m
|
|
, Has QueryContext r
|
|
, Has (BackendExtension 'Postgres) r
|
|
)
|
|
=> [P.FieldParser n RemoteField]
|
|
-> [ActionInfo]
|
|
-> NonObjectTypeMap
|
|
-> [P.FieldParser n (MutationRootField UnpreparedValue)]
|
|
-> m (Maybe (Parser 'Output n (OMap.InsOrdHashMap G.Name (MutationRootField UnpreparedValue))))
|
|
buildMutationParser allRemotes allActions nonObjectCustomTypes mutationFields = do
|
|
actionParsers <- concat <$> traverse (buildActionMutationFields nonObjectCustomTypes) allActions
|
|
let mutationFieldsParser =
|
|
mutationFields <>
|
|
actionParsers <>
|
|
fmap (fmap RFRemote) allRemotes
|
|
if null mutationFieldsParser
|
|
then pure Nothing
|
|
else P.safeSelectionSet mutationRoot (Just $ G.Description "mutation root") mutationFieldsParser
|
|
<&> Just . fmap (fmap (P.handleTypename (RFRaw . J.String . G.unName)))
|
|
|
|
|
|
|
|
----------------------------------------------------------------
|
|
-- local helpers
|
|
|
|
takeExposedAs :: FunctionExposedAs -> FunctionCache b -> FunctionCache b
|
|
takeExposedAs x = Map.filter ((== x) . _fiExposedAs)
|
|
|
|
subscriptionRoot :: G.Name
|
|
subscriptionRoot = $$(G.litName "subscription_root")
|
|
|
|
mutationRoot :: G.Name
|
|
mutationRoot = $$(G.litName "mutation_root")
|
|
|
|
queryRoot :: G.Name
|
|
queryRoot = $$(G.litName "query_root")
|
|
|
|
finalizeParser :: Parser 'Output (P.ParseT Identity) a -> ParserFn a
|
|
finalizeParser parser = runIdentity . P.runParseT . P.runParser parser
|
|
|
|
runMonadSchema
|
|
:: forall b m a
|
|
. Monad m
|
|
=> RoleName
|
|
-> QueryContext
|
|
-> SourceCache
|
|
-> BackendExtension b
|
|
-> P.SchemaT
|
|
(P.ParseT Identity)
|
|
(ReaderT ( RoleName
|
|
, SourceCache
|
|
, QueryContext
|
|
, BackendExtension b
|
|
) m
|
|
) a
|
|
-> m a
|
|
runMonadSchema roleName queryContext pgSources extensions m =
|
|
flip runReaderT (roleName, pgSources, queryContext, extensions) $ P.runSchemaT m
|
|
|
|
-- | Whether the request is sent with `x-hasura-use-backend-only-permissions` set to `true`.
|
|
data Scenario = Backend | Frontend deriving (Enum, Show, Eq)
|
|
|
|
type RemoteSchemaCache = HashMap RemoteSchemaName (RemoteSchemaCtx, MetadataObject)
|
|
|
|
buildBackendSource
|
|
:: (forall b. BackendSchema b => SourceInfo b -> r)
|
|
-> AB.AnyBackend SourceInfo
|
|
-> r
|
|
buildBackendSource f e = AB.dispatchAnyBackend @BackendSchema e f
|