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https://github.com/hasura/graphql-engine.git
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dc83352863
[GDC-487]: https://hasurahq.atlassian.net/browse/GDC-487?atlOrigin=eyJpIjoiNWRkNTljNzYxNjVmNDY3MDlhMDU5Y2ZhYzA5YTRkZjUiLCJwIjoiZ2l0aHViLWNvbS1KU1cifQ [GDC-488]: https://hasurahq.atlassian.net/browse/GDC-488?atlOrigin=eyJpIjoiNWRkNTljNzYxNjVmNDY3MDlhMDU5Y2ZhYzA5YTRkZjUiLCJwIjoiZ2l0aHViLWNvbS1KU1cifQ PR-URL: https://github.com/hasura/graphql-engine-mono/pull/8182 GitOrigin-RevId: 712953666e1a5ea07500f1e1aed669f27650f7a4
595 lines
24 KiB
Haskell
595 lines
24 KiB
Haskell
{-# LANGUAGE UndecidableInstances #-}
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{-# OPTIONS_GHC -fno-warn-orphans #-}
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-- | Postgres Instances Execute
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--
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-- This module implements the needed functionality for implementing a 'BackendExecute'
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-- instance for Postgres, which defines an interface for translating a root field into
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-- an execution plan and interacting with a database.
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--
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-- This module includes the Postgres implementation of queries, mutations, and more.
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module Hasura.Backends.Postgres.Instances.Execute
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( PreparedSql (..),
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)
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where
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import Control.Monad.Trans.Control qualified as MT
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import Data.Aeson qualified as J
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import Data.Environment qualified as Env
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import Data.HashMap.Strict qualified as Map
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import Data.HashMap.Strict.InsOrd qualified as OMap
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import Data.IntMap qualified as IntMap
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import Data.Sequence qualified as Seq
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import Database.PG.Query qualified as PG
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import Hasura.Backends.Postgres.Connection.MonadTx
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import Hasura.Backends.Postgres.Execute.ConnectionTemplate (QueryContext (..), QueryOperationType (..))
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import Hasura.Backends.Postgres.Execute.Insert (convertToSQLTransaction)
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import Hasura.Backends.Postgres.Execute.Mutation qualified as PGE
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import Hasura.Backends.Postgres.Execute.Prepare
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( PlanningSt (..),
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PrepArgMap,
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initPlanningSt,
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prepareWithPlan,
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prepareWithoutPlan,
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withUserVars,
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)
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import Hasura.Backends.Postgres.Execute.Subscription qualified as PGL
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import Hasura.Backends.Postgres.Execute.Types
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import Hasura.Backends.Postgres.SQL.DML qualified as S
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import Hasura.Backends.Postgres.SQL.Types qualified as Postgres
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import Hasura.Backends.Postgres.SQL.Value qualified as Postgres
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import Hasura.Backends.Postgres.Translate.Select (PostgresAnnotatedFieldJSON)
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import Hasura.Backends.Postgres.Translate.Select qualified as DS
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import Hasura.Backends.Postgres.Types.Function qualified as Postgres
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import Hasura.Backends.Postgres.Types.Update qualified as Postgres
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import Hasura.Base.Error (QErr)
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import Hasura.EncJSON (EncJSON, encJFromJValue)
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import Hasura.GraphQL.Execute.Backend
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( BackendExecute (..),
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DBStepInfo (..),
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ExplainPlan (..),
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OnBaseMonad (..),
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convertRemoteSourceRelationship,
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)
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import Hasura.GraphQL.Execute.Subscription.Plan
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( CohortId,
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CohortVariables,
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ParameterizedSubscriptionQueryPlan (..),
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SubscriptionQueryPlan (..),
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SubscriptionQueryPlanExplanation (..),
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mkCohortVariables,
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newCohortId,
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)
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import Hasura.GraphQL.Namespace
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( RootFieldAlias (..),
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RootFieldMap,
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)
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import Hasura.GraphQL.Namespace qualified as G
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import Hasura.GraphQL.Schema.Options qualified as Options
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import Hasura.Prelude
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import Hasura.QueryTags
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( QueryTagsComment (..),
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emptyQueryTagsComment,
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)
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import Hasura.RQL.IR
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import Hasura.RQL.IR.Delete qualified as IR
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import Hasura.RQL.IR.Insert qualified as IR
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import Hasura.RQL.IR.Returning qualified as IR
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import Hasura.RQL.IR.Select qualified as IR
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import Hasura.RQL.IR.Update qualified as IR
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import Hasura.RQL.Types.Backend
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import Hasura.RQL.Types.Column
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( ColumnType (..),
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ColumnValue (..),
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ciName,
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)
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import Hasura.RQL.Types.Common
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( FieldName (..),
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JsonAggSelect (..),
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SourceName,
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)
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import Hasura.RQL.Types.Function
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import Hasura.SQL.AnyBackend qualified as AB
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import Hasura.SQL.Backend
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import Hasura.Session (UserInfo (..))
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import Hasura.Tracing qualified as Tracing
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import Language.GraphQL.Draft.Syntax qualified as G
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import Network.HTTP.Types qualified as HTTP
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data PreparedSql = PreparedSql
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{ _psQuery :: PG.Query,
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_psPrepArgs :: PrepArgMap
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}
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deriving (Show)
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instance
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( Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind
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) =>
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BackendExecute ('Postgres pgKind)
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where
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type PreparedQuery ('Postgres pgKind) = PreparedSql
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type MultiplexedQuery ('Postgres pgKind) = PGL.MultiplexedQuery
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type ExecutionMonad ('Postgres pgKind) = PG.TxET QErr
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mkDBQueryPlan = pgDBQueryPlan
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mkDBMutationPlan = pgDBMutationPlan
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mkLiveQuerySubscriptionPlan = pgDBLiveQuerySubscriptionPlan
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mkDBStreamingSubscriptionPlan = pgDBStreamingSubscriptionPlan
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mkDBQueryExplain = pgDBQueryExplain
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mkSubscriptionExplain = pgDBSubscriptionExplain
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mkDBRemoteRelationshipPlan = pgDBRemoteRelationshipPlan
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-- query
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pgDBQueryPlan ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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Env.Environment ->
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SourceName ->
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SourceConfig ('Postgres pgKind) ->
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QueryDB ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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[HTTP.Header] ->
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Maybe G.Name ->
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m (DBStepInfo ('Postgres pgKind))
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pgDBQueryPlan userInfo _env sourceName sourceConfig qrf reqHeaders operationName = do
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(preparedQuery, PlanningSt {_psPrepped = planVals}) <-
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flip runStateT initPlanningSt $ traverse (prepareWithPlan userInfo) qrf
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queryTagsComment <- ask
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resolvedConnectionTemplate <-
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applyConnectionTemplateResolverNonAdmin (_pscConnectionTemplateResolver sourceConfig) userInfo reqHeaders $
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Just $
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QueryContext operationName $
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QueryOperationType G.OperationTypeQuery
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let preparedSQLWithQueryTags = appendPreparedSQLWithQueryTags (irToRootFieldPlan planVals preparedQuery) queryTagsComment
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let (action, preparedSQL) = mkCurPlanTx userInfo preparedSQLWithQueryTags
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pure $ DBStepInfo @('Postgres pgKind) sourceName sourceConfig preparedSQL action resolvedConnectionTemplate
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pgDBQueryExplain ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind
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) =>
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RootFieldAlias ->
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UserInfo ->
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SourceName ->
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SourceConfig ('Postgres pgKind) ->
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QueryDB ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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[HTTP.Header] ->
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Maybe G.Name ->
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m (AB.AnyBackend DBStepInfo)
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pgDBQueryExplain fieldName userInfo sourceName sourceConfig rootSelection reqHeaders operationName = do
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preparedQuery <- traverse (prepareWithoutPlan userInfo) rootSelection
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let PreparedSql querySQL _ = irToRootFieldPlan mempty preparedQuery
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textSQL = PG.getQueryText querySQL
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-- CAREFUL!: an `EXPLAIN ANALYZE` here would actually *execute* this
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-- query, maybe resulting in privilege escalation:
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withExplain = "EXPLAIN " <> textSQL
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let action = OnBaseMonad do
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PG.withQE dmlTxErrorHandler (PG.fromText withExplain) () True <&> \planList ->
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encJFromJValue $ ExplainPlan fieldName (Just textSQL) (Just $ map runIdentity planList)
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resolvedConnectionTemplate <-
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applyConnectionTemplateResolverNonAdmin (_pscConnectionTemplateResolver sourceConfig) userInfo reqHeaders $
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Just $
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QueryContext operationName $
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QueryOperationType G.OperationTypeQuery
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pure $
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AB.mkAnyBackend $
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DBStepInfo @('Postgres pgKind) sourceName sourceConfig Nothing action resolvedConnectionTemplate
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pgDBSubscriptionExplain ::
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( MonadError QErr m,
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MonadIO m,
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MT.MonadBaseControl IO m
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) =>
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SubscriptionQueryPlan ('Postgres pgKind) (MultiplexedQuery ('Postgres pgKind)) ->
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m SubscriptionQueryPlanExplanation
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pgDBSubscriptionExplain plan = do
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let parameterizedPlan = _sqpParameterizedPlan plan
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pgExecCtx = _pscExecCtx $ _sqpSourceConfig plan
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queryText = PG.getQueryText . PGL.unMultiplexedQuery $ _plqpQuery parameterizedPlan
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-- CAREFUL!: an `EXPLAIN ANALYZE` here would actually *execute* this
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-- query, maybe resulting in privilege escalation:
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explainQuery = PG.fromText $ "EXPLAIN " <> queryText
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resolvedConnectionTemplate = _sqpResolvedConnectionTemplate plan
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cohortId <- newCohortId
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explanationLines <-
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liftEitherM $
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runExceptT $
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_pecRunTx pgExecCtx (PGExecCtxInfo (Tx PG.ReadOnly Nothing) (GraphQLQuery resolvedConnectionTemplate)) $
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map runIdentity <$> PGL.executeQuery explainQuery [(cohortId, _sqpVariables plan)]
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pure $ SubscriptionQueryPlanExplanation queryText explanationLines $ _sqpVariables plan
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-- mutation
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convertDelete ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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IR.AnnDelG ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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Options.StringifyNumbers ->
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m (OnBaseMonad (PG.TxET QErr) EncJSON)
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convertDelete userInfo deleteOperation stringifyNum = do
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queryTags <- ask
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preparedDelete <- traverse (prepareWithoutPlan userInfo) deleteOperation
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pure $
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OnBaseMonad $
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flip runReaderT queryTags $
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PGE.execDeleteQuery stringifyNum (_adNamingConvention deleteOperation) userInfo (preparedDelete, Seq.empty)
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convertUpdate ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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IR.AnnotatedUpdateG ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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Options.StringifyNumbers ->
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m (OnBaseMonad (PG.TxET QErr) EncJSON)
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convertUpdate userInfo updateOperation stringifyNum = do
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queryTags <- ask
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preparedUpdate <- traverse (prepareWithoutPlan userInfo) updateOperation
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if Postgres.updateVariantIsEmpty $ IR._auUpdateVariant updateOperation
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then pure $ OnBaseMonad $ pure $ IR.buildEmptyMutResp $ IR._auOutput preparedUpdate
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else
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pure $
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OnBaseMonad $
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flip runReaderT queryTags $
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PGE.execUpdateQuery stringifyNum (_auNamingConvention updateOperation) userInfo (preparedUpdate, Seq.empty)
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convertInsert ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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IR.AnnotatedInsert ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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Options.StringifyNumbers ->
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m (OnBaseMonad (PG.TxET QErr) EncJSON)
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convertInsert userInfo insertOperation stringifyNum = do
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queryTags <- ask
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preparedInsert <- traverse (prepareWithoutPlan userInfo) insertOperation
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pure $
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OnBaseMonad $
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flip runReaderT queryTags $
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convertToSQLTransaction preparedInsert userInfo Seq.empty stringifyNum (_aiNamingConvention insertOperation)
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-- | A pared-down version of 'Query.convertQuerySelSet', for use in execution of
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-- special case of SQL function mutations (see 'MDBFunction').
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convertFunction ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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JsonAggSelect ->
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-- | VOLATILE function as 'SelectExp'
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IR.AnnSimpleSelectG ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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m (OnBaseMonad (PG.TxET QErr) EncJSON)
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convertFunction userInfo jsonAggSelect unpreparedQuery = do
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queryTags <- ask
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-- Transform the RQL AST into a prepared SQL query
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(preparedQuery, PlanningSt {_psPrepped = planVals}) <-
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flip runStateT initPlanningSt $
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traverse (prepareWithPlan userInfo) unpreparedQuery
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let queryResultFn =
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case jsonAggSelect of
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JASMultipleRows -> QDBMultipleRows
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JASSingleObject -> QDBSingleRow
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let preparedSQLWithQueryTags = appendPreparedSQLWithQueryTags (irToRootFieldPlan planVals $ queryResultFn preparedQuery) queryTags
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pure $!
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fst $
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mkCurPlanTx userInfo preparedSQLWithQueryTags -- forget (Maybe PreparedSql)
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pgDBMutationPlan ::
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forall pgKind m.
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( MonadError QErr m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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Env.Environment ->
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Options.StringifyNumbers ->
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SourceName ->
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SourceConfig ('Postgres pgKind) ->
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MutationDB ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)) ->
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[HTTP.Header] ->
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Maybe G.Name ->
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m (DBStepInfo ('Postgres pgKind))
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pgDBMutationPlan userInfo _environment stringifyNum sourceName sourceConfig mrf reqHeaders operationName = do
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resolvedConnectionTemplate <-
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applyConnectionTemplateResolverNonAdmin (_pscConnectionTemplateResolver sourceConfig) userInfo reqHeaders $
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Just $
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QueryContext operationName $
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QueryOperationType G.OperationTypeMutation
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go resolvedConnectionTemplate <$> case mrf of
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MDBInsert s -> convertInsert userInfo s stringifyNum
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MDBUpdate s -> convertUpdate userInfo s stringifyNum
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MDBDelete s -> convertDelete userInfo s stringifyNum
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MDBFunction returnsSet s -> convertFunction userInfo returnsSet s
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where
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go resolvedConnectionTemplate v = DBStepInfo @('Postgres pgKind) sourceName sourceConfig Nothing v resolvedConnectionTemplate
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-- subscription
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pgDBLiveQuerySubscriptionPlan ::
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forall pgKind m.
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( MonadError QErr m,
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MonadIO m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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SourceName ->
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SourceConfig ('Postgres pgKind) ->
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Maybe G.Name ->
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RootFieldMap (QueryDB ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind))) ->
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[HTTP.Header] ->
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Maybe G.Name ->
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m (SubscriptionQueryPlan ('Postgres pgKind) (MultiplexedQuery ('Postgres pgKind)))
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pgDBLiveQuerySubscriptionPlan userInfo _sourceName sourceConfig namespace unpreparedAST reqHeaders operationName = do
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(preparedAST, PGL.QueryParametersInfo {..}) <-
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flip runStateT mempty $
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for unpreparedAST $
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traverse (PGL.resolveMultiplexedValue (_uiSession userInfo))
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subscriptionQueryTagsComment <- ask
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let multiplexedQuery = PGL.mkMultiplexedQuery $ OMap.mapKeys _rfaAlias preparedAST
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multiplexedQueryWithQueryTags =
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multiplexedQuery {PGL.unMultiplexedQuery = appendSQLWithQueryTags (PGL.unMultiplexedQuery multiplexedQuery) subscriptionQueryTagsComment}
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roleName = _uiRole userInfo
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parameterizedPlan = ParameterizedSubscriptionQueryPlan roleName multiplexedQueryWithQueryTags
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resolvedConnectionTemplate <-
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applyConnectionTemplateResolverNonAdmin (_pscConnectionTemplateResolver sourceConfig) userInfo reqHeaders $
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Just $
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QueryContext operationName $
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QueryOperationType G.OperationTypeSubscription
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-- Cohort Id: Used for validating the multiplexed query. See @'testMultiplexedQueryTx'.
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-- It is disposed when the subscriber is added to existing cohort.
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cohortId <- newCohortId
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let pgExecCtxInfo = PGExecCtxInfo (Tx PG.ReadOnly Nothing) (GraphQLQuery resolvedConnectionTemplate)
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cohortVariables <- liftEitherM $ liftIO $ runExceptT $ _pecRunTx (_pscExecCtx sourceConfig) pgExecCtxInfo do
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-- We need to ensure that the values provided for variables are correct according to Postgres.
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-- Without this check an invalid value for a variable for one instance of the subscription will
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-- take down the entire multiplexed query.
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validatedQueryVars <- PGL.validateVariablesTx _qpiReusableVariableValues
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validatedSyntheticVars <- PGL.validateVariablesTx $ toList _qpiSyntheticVariableValues
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let cohortVariables =
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mkCohortVariables
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_qpiReferencedSessionVariables
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(_uiSession userInfo)
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validatedQueryVars
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validatedSyntheticVars
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mempty -- live query subscriptions don't use the streaming cursor variables
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-- Test the multiplexed query. Without this test if the query fails, the subscription will
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-- take down the entier multiplexed query affecting all subscribers.
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testMultiplexedQueryTx multiplexedQueryWithQueryTags cohortId cohortVariables
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pure cohortVariables
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pure $ SubscriptionQueryPlan parameterizedPlan sourceConfig cohortId resolvedConnectionTemplate cohortVariables namespace
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pgDBStreamingSubscriptionPlan ::
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forall pgKind m.
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( MonadError QErr m,
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MonadIO m,
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Backend ('Postgres pgKind),
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PostgresAnnotatedFieldJSON pgKind,
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MonadReader QueryTagsComment m
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) =>
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UserInfo ->
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SourceName ->
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SourceConfig ('Postgres pgKind) ->
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(RootFieldAlias, (QueryDB ('Postgres pgKind) Void (UnpreparedValue ('Postgres pgKind)))) ->
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[HTTP.Header] ->
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Maybe G.Name ->
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m (SubscriptionQueryPlan ('Postgres pgKind) (MultiplexedQuery ('Postgres pgKind)))
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pgDBStreamingSubscriptionPlan userInfo _sourceName sourceConfig (rootFieldAlias, unpreparedAST) reqHeaders operationName = do
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(preparedAST, PGL.QueryParametersInfo {..}) <-
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flip runStateT mempty $
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traverse (PGL.resolveMultiplexedValue (_uiSession userInfo)) unpreparedAST
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subscriptionQueryTagsComment <- ask
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let multiplexedQuery = PGL.mkStreamingMultiplexedQuery (G._rfaAlias rootFieldAlias, preparedAST)
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multiplexedQueryWithQueryTags =
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multiplexedQuery {PGL.unMultiplexedQuery = appendSQLWithQueryTags (PGL.unMultiplexedQuery multiplexedQuery) subscriptionQueryTagsComment}
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roleName = _uiRole userInfo
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parameterizedPlan = ParameterizedSubscriptionQueryPlan roleName multiplexedQueryWithQueryTags
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resolvedConnectionTemplate <-
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applyConnectionTemplateResolverNonAdmin (_pscConnectionTemplateResolver sourceConfig) userInfo reqHeaders $
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Just $
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QueryContext operationName $
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QueryOperationType G.OperationTypeSubscription
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-- Cohort Id: Used for validating the multiplexed query. See @'testMultiplexedQueryTx'.
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-- It is disposed when the subscriber is added to existing cohort.
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cohortId <- newCohortId
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let pgExecCtxInfo = PGExecCtxInfo (Tx PG.ReadOnly Nothing) (GraphQLQuery resolvedConnectionTemplate)
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cohortVariables <- liftEitherM $ liftIO $ runExceptT $ _pecRunTx (_pscExecCtx sourceConfig) pgExecCtxInfo do
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-- We need to ensure that the values provided for variables are correct according to Postgres.
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-- Without this check an invalid value for a variable for one instance of the subscription will
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-- take down the entire multiplexed query.
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validatedQueryVars <- PGL.validateVariablesTx _qpiReusableVariableValues
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validatedSyntheticVars <- PGL.validateVariablesTx $ toList _qpiSyntheticVariableValues
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validatedCursorVars <- PGL.validateVariablesTx $ getCursorVars unpreparedAST
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let cohortVariables =
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mkCohortVariables
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_qpiReferencedSessionVariables
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(_uiSession userInfo)
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validatedQueryVars
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validatedSyntheticVars
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validatedCursorVars
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-- Test the multiplexed query. Without this test if the query fails, the subscription will
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-- take down the entier multiplexed query affecting all subscribers.
|
|
testMultiplexedQueryTx multiplexedQueryWithQueryTags cohortId cohortVariables
|
|
pure cohortVariables
|
|
|
|
pure $ SubscriptionQueryPlan parameterizedPlan sourceConfig cohortId resolvedConnectionTemplate cohortVariables $ _rfaNamespace rootFieldAlias
|
|
where
|
|
getCursorVars qdb =
|
|
case qdb of
|
|
QDBStreamMultipleRows (IR.AnnSelectStreamG () _ _ _ args _) ->
|
|
let cursorArg = IR._ssaCursorArg args
|
|
colInfo = IR._sciColInfo cursorArg
|
|
in Map.singleton (ciName colInfo) (IR._sciInitialValue cursorArg)
|
|
_ -> mempty
|
|
|
|
-- | Test a multiplexed query in a transaction.
|
|
testMultiplexedQueryTx ::
|
|
(MonadTx m) =>
|
|
PGL.MultiplexedQuery ->
|
|
CohortId ->
|
|
CohortVariables ->
|
|
m ()
|
|
testMultiplexedQueryTx (PGL.MultiplexedQuery query) cohortId cohortVariables = do
|
|
-- Run the query and discard the results
|
|
-- NOTE: Adding `LIMIT 1` to the root selection of the query would make
|
|
-- executing the query faster. However, it is not preferred due to the following
|
|
-- reasons:
|
|
-- Multiplex query validation is required for queries involving any SQL functions,
|
|
-- computed fields and SQL functions as root fields, as the functions are bound to
|
|
-- raise run-time SQL exception resulting in error response for all subscribers in a cohort.
|
|
-- a. In case of computed fields, applying `LIMIT 1` to the base table selection will
|
|
-- enforce SQL function to evaluate only on one row. There's a possibility of SQL exception
|
|
-- on evaluating function on other rows.
|
|
-- b. In case of SQL functions as root fields, applying `LIMIT 1` to the base SQL function selection
|
|
-- don't have any performance impact as the limit is applied on the function result.
|
|
PG.Discard () <- PGL.executeQuery query [(cohortId, cohortVariables)]
|
|
pure ()
|
|
|
|
-- turn the current plan into a transaction
|
|
mkCurPlanTx ::
|
|
UserInfo ->
|
|
PreparedSql ->
|
|
(OnBaseMonad (PG.TxET QErr) EncJSON, Maybe PreparedSql)
|
|
mkCurPlanTx userInfo ps@(PreparedSql q prepMap) =
|
|
-- generate the SQL and prepared vars or the bytestring
|
|
let args = withUserVars (_uiSession userInfo) prepMap
|
|
-- WARNING: this quietly assumes the intmap keys are contiguous
|
|
prepArgs = fst <$> IntMap.elems args
|
|
in (,Just ps) $ OnBaseMonad do
|
|
Tracing.trace "Postgres" $
|
|
runIdentity . PG.getRow
|
|
<$> PG.rawQE dmlTxErrorHandler q prepArgs True
|
|
|
|
-- convert a query from an intermediate representation to... another
|
|
irToRootFieldPlan ::
|
|
( Backend ('Postgres pgKind),
|
|
DS.PostgresAnnotatedFieldJSON pgKind
|
|
) =>
|
|
PrepArgMap ->
|
|
QueryDB ('Postgres pgKind) Void S.SQLExp ->
|
|
PreparedSql
|
|
irToRootFieldPlan prepped = \case
|
|
QDBMultipleRows s -> mkPreparedSql (DS.selectQuerySQL JASMultipleRows) s
|
|
QDBSingleRow s -> mkPreparedSql (DS.selectQuerySQL JASSingleObject) s
|
|
QDBAggregation s -> mkPreparedSql DS.selectAggregateQuerySQL s
|
|
QDBConnection s -> mkPreparedSql DS.connectionSelectQuerySQL s
|
|
QDBStreamMultipleRows s -> mkPreparedSql DS.selectStreamQuerySQL s
|
|
where
|
|
mkPreparedSql :: (t -> PG.Query) -> t -> PreparedSql
|
|
mkPreparedSql f simpleSel =
|
|
PreparedSql (f simpleSel) prepped
|
|
|
|
-- Append Query Tags to the Prepared SQL
|
|
appendPreparedSQLWithQueryTags :: PreparedSql -> QueryTagsComment -> PreparedSql
|
|
appendPreparedSQLWithQueryTags preparedSQL queryTags =
|
|
preparedSQL {_psQuery = appendSQLWithQueryTags query queryTags}
|
|
where
|
|
query = _psQuery preparedSQL
|
|
|
|
appendSQLWithQueryTags :: PG.Query -> QueryTagsComment -> PG.Query
|
|
appendSQLWithQueryTags query queryTags = query {PG.getQueryText = queryText <> _unQueryTagsComment queryTags}
|
|
where
|
|
queryText = PG.getQueryText query
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- Remote Relationships (e.g. DB-to-DB Joins, remote schema joins, etc.)
|
|
--------------------------------------------------------------------------------
|
|
|
|
-- | Construct an action (i.e. 'DBStepInfo') which can marshal some remote
|
|
-- relationship information into a form that Postgres can query against.
|
|
pgDBRemoteRelationshipPlan ::
|
|
forall pgKind m.
|
|
( MonadError QErr m,
|
|
Backend ('Postgres pgKind),
|
|
PostgresAnnotatedFieldJSON pgKind
|
|
) =>
|
|
Env.Environment ->
|
|
UserInfo ->
|
|
SourceName ->
|
|
SourceConfig ('Postgres pgKind) ->
|
|
-- | List of json objects, each of which becomes a row of the table.
|
|
NonEmpty J.Object ->
|
|
-- | The above objects have this schema
|
|
--
|
|
-- XXX: What is this for/what does this mean?
|
|
HashMap FieldName (Column ('Postgres pgKind), ScalarType ('Postgres pgKind)) ->
|
|
-- | This is a field name from the lhs that *has* to be selected in the
|
|
-- response along with the relationship.
|
|
FieldName ->
|
|
(FieldName, IR.SourceRelationshipSelection ('Postgres pgKind) Void UnpreparedValue) ->
|
|
[HTTP.Header] ->
|
|
Maybe G.Name ->
|
|
Options.StringifyNumbers ->
|
|
m (DBStepInfo ('Postgres pgKind))
|
|
pgDBRemoteRelationshipPlan _env userInfo sourceName sourceConfig lhs lhsSchema argumentId relationship reqHeaders operationName stringifyNumbers = do
|
|
-- NOTE: 'QueryTags' currently cannot support remote relationship queries.
|
|
--
|
|
-- In the future if we want to add support we'll need to add a new type of
|
|
-- metadata (e.g. 'ParameterizedQueryHash' doesn't make sense here) and find
|
|
-- a root field name that makes sense to attach to it.
|
|
flip runReaderT emptyQueryTagsComment $ pgDBQueryPlan userInfo Env.emptyEnvironment sourceName sourceConfig rootSelection reqHeaders operationName
|
|
where
|
|
coerceToColumn = Postgres.unsafePGCol . getFieldNameTxt
|
|
joinColumnMapping = mapKeys coerceToColumn lhsSchema
|
|
|
|
rowsArgument :: UnpreparedValue ('Postgres pgKind)
|
|
rowsArgument =
|
|
UVParameter Nothing $
|
|
ColumnValue (ColumnScalar Postgres.PGJSONB) $
|
|
Postgres.PGValJSONB $
|
|
PG.JSONB $
|
|
J.toJSON lhs
|
|
jsonToRecordSet :: IR.SelectFromG ('Postgres pgKind) (UnpreparedValue ('Postgres pgKind))
|
|
|
|
recordSetDefinitionList =
|
|
(coerceToColumn argumentId, Postgres.PGBigInt) : Map.toList (fmap snd joinColumnMapping)
|
|
jsonToRecordSet =
|
|
IR.FromFunction
|
|
(Postgres.QualifiedObject "pg_catalog" $ Postgres.FunctionName "jsonb_to_recordset")
|
|
(FunctionArgsExp [Postgres.AEInput rowsArgument] mempty)
|
|
(Just recordSetDefinitionList)
|
|
|
|
rootSelection =
|
|
convertRemoteSourceRelationship
|
|
(fst <$> joinColumnMapping)
|
|
jsonToRecordSet
|
|
(Postgres.unsafePGCol $ getFieldNameTxt argumentId)
|
|
(ColumnScalar Postgres.PGBigInt)
|
|
relationship
|
|
stringifyNumbers
|