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Logical models: check that specified named columns are returned from query
PR-URL: https://github.com/hasura/graphql-engine-mono/pull/8312 GitOrigin-RevId: fc7c7a14115c0b228abc2f48d3cfac51d2852277
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@ -650,6 +650,39 @@ testValidation opts = do
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actual `shouldAtLeastBe` expected
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actual `shouldAtLeastBe` expected
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it "where the column names specified are not returned from the query" $
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\testEnv -> do
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let expected =
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[yaml|
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code: validation-failed
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error: Failed to validate query
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internal:
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error:
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message: column "text" does not exist
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actual <-
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GraphqlEngine.postMetadataWithStatus
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400
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testEnv
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[yaml|
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type: pg_track_logical_model
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args:
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type: query
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source: postgres
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root_field_name: text_failing
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code: |
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SELECT {{text}} AS not_text
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arguments:
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text:
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type: text
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returns:
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columns:
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text:
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type: text
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|]
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actual `shouldAtLeastBe` expected
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it "that uses undeclared arguments" $
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it "that uses undeclared arguments" $
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\testEnvironment -> do
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\testEnvironment -> do
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let backendTypeMetadata = fromMaybe (error "Unknown backend") $ getBackendTypeConfig testEnvironment
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let backendTypeMetadata = fromMaybe (error "Unknown backend") $ getBackendTypeConfig testEnvironment
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@ -12,6 +12,7 @@ import Data.Map.Strict (Map)
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import Data.Map.Strict qualified as Map
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import Data.Map.Strict qualified as Map
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import Data.Set (Set)
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import Data.Set (Set)
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import Data.Set qualified as Set
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import Data.Set qualified as Set
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import Data.Text qualified as Text
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import Data.Text.Extended (commaSeparated, toTxt)
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import Data.Text.Extended (commaSeparated, toTxt)
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import Database.PG.Query qualified as PG
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import Database.PG.Query qualified as PG
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import Hasura.Backends.Postgres.Connection qualified as PG
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import Hasura.Backends.Postgres.Connection qualified as PG
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@ -19,6 +20,7 @@ import Hasura.Backends.Postgres.Connection.Connect (withPostgresDB)
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import Hasura.Backends.Postgres.Instances.Types ()
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import Hasura.Backends.Postgres.Instances.Types ()
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import Hasura.Backends.Postgres.SQL.Types (PGScalarType, pgScalarTypeToText)
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import Hasura.Backends.Postgres.SQL.Types (PGScalarType, pgScalarTypeToText)
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import Hasura.Base.Error
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import Hasura.Base.Error
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import Hasura.CustomReturnType
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import Hasura.LogicalModel.Metadata
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import Hasura.LogicalModel.Metadata
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( InterpolatedItem (..),
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( InterpolatedItem (..),
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InterpolatedQuery (..),
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InterpolatedQuery (..),
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@ -29,6 +31,44 @@ import Hasura.LogicalModel.Types (NullableScalarType (nstType), getLogicalModelN
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import Hasura.Prelude
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import Hasura.Prelude
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import Hasura.SQL.Backend
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import Hasura.SQL.Backend
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-- | Prepare a logical model query against a postgres-like database to validate it.
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validateLogicalModel ::
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forall m pgKind.
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(MonadIO m, MonadError QErr m) =>
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Env.Environment ->
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PG.PostgresConnConfiguration ->
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LogicalModelMetadata ('Postgres pgKind) ->
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m ()
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validateLogicalModel env connConf model = do
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preparedQuery <- logicalModelToPreparedStatement model
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-- We don't need to deallocate the prepared statement because 'withPostgresDB'
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-- opens a new connection, runs a statement, and then closes the connection.
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-- Since a prepared statement only lasts for the duration of the session, once
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-- the session closes, the prepared statement is deallocated as well.
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runRaw (PG.fromText $ preparedQuery)
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where
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runRaw :: PG.Query -> m ()
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runRaw stmt =
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liftEither
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=<< liftIO
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( withPostgresDB
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env
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connConf
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( PG.rawQE
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( \e ->
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(err400 ValidationFailed "Failed to validate query")
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{ qeInternal = Just $ ExtraInternal $ toJSON e
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}
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)
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stmt
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[]
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False
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)
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)
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---------------------------------------
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-- | The environment and fresh-name generator used by 'renameIQ'.
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-- | The environment and fresh-name generator used by 'renameIQ'.
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data RenamingState = RenamingState
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data RenamingState = RenamingState
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{ rsNextFree :: Int,
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{ rsNextFree :: Int,
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@ -82,13 +122,19 @@ renameIQ = runRenaming . fmap InterpolatedQuery . mapM renameII . getInterpolate
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where
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where
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swap (a, b) = (b, a)
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swap (a, b) = (b, a)
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-- | Pretty print an interpolated query with numbered parameters.
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renderIQ :: InterpolatedQuery Int -> Text
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renderIQ :: InterpolatedQuery Int -> Text
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renderIQ (InterpolatedQuery items) = mconcat (map printItem items)
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renderIQ (InterpolatedQuery items) = foldMap printItem items
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where
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where
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printItem :: InterpolatedItem Int -> Text
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printItem :: InterpolatedItem Int -> Text
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printItem (IIText t) = t
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printItem (IIText t) = t
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printItem (IIVariable i) = "$" <> tshow i
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printItem (IIVariable i) = "$" <> tshow i
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-----------------------------------------
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-- | Convert a logical model to a prepared statement to be validate.
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--
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-- Used by 'validateLogicalModel'. Exported for testing.
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logicalModelToPreparedStatement ::
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logicalModelToPreparedStatement ::
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forall m pgKind.
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forall m pgKind.
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MonadError QErr m =>
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MonadError QErr m =>
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@ -97,8 +143,8 @@ logicalModelToPreparedStatement ::
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logicalModelToPreparedStatement model = do
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logicalModelToPreparedStatement model = do
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let name = getLogicalModelName $ _lmmRootFieldName model
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let name = getLogicalModelName $ _lmmRootFieldName model
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let (preparedIQ, argumentMapping) = renameIQ $ _lmmCode model
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let (preparedIQ, argumentMapping) = renameIQ $ _lmmCode model
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code :: Text
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logimoCode :: Text
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code = renderIQ preparedIQ
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logimoCode = renderIQ preparedIQ
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prepname = "_logimo_vali_" <> toTxt name
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prepname = "_logimo_vali_" <> toTxt name
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occurringArguments, declaredArguments, undeclaredArguments :: Set LogicalModelArgumentName
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occurringArguments, declaredArguments, undeclaredArguments :: Set LogicalModelArgumentName
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@ -113,7 +159,24 @@ logicalModelToPreparedStatement model = do
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| argumentTypes /= mempty = "(" <> commaSeparated (pgScalarTypeToText <$> Map.elems argumentTypes) <> ")"
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| argumentTypes /= mempty = "(" <> commaSeparated (pgScalarTypeToText <$> Map.elems argumentTypes) <> ")"
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| otherwise = ""
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| otherwise = ""
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preparedQuery = "PREPARE " <> prepname <> argumentSignature <> " AS " <> code
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returnedColumnNames :: Text
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returnedColumnNames =
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commaSeparated $ HashMap.keys (crtColumns (_lmmReturns model))
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wrapInCTE :: Text -> Text
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wrapInCTE query =
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Text.intercalate
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"\n"
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[ "WITH " <> ctename <> " AS (",
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query,
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")",
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"SELECT " <> returnedColumnNames,
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"FROM " <> ctename
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]
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where
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ctename = "_cte" <> prepname
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preparedQuery = "PREPARE " <> prepname <> argumentSignature <> " AS " <> wrapInCTE logimoCode
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when (Set.empty /= undeclaredArguments) $
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when (Set.empty /= undeclaredArguments) $
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throwError $
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throwError $
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@ -121,39 +184,3 @@ logicalModelToPreparedStatement model = do
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"Undeclared arguments: " <> commaSeparated (map tshow $ Set.toList undeclaredArguments)
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"Undeclared arguments: " <> commaSeparated (map tshow $ Set.toList undeclaredArguments)
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return preparedQuery
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return preparedQuery
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-- | Prepare a logical model query against a postgres-like database to validate it.
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validateLogicalModel ::
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forall m pgKind.
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(MonadIO m, MonadError QErr m) =>
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Env.Environment ->
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PG.PostgresConnConfiguration ->
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LogicalModelMetadata ('Postgres pgKind) ->
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m ()
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validateLogicalModel env connConf model = do
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preparedQuery <- logicalModelToPreparedStatement model
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-- We don't need to deallocate the prepared statement because 'withPostgresDB'
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-- opens a new connection, runs a statement, and then closes the connection.
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-- Since a prepared statement only lasts for the duration of the session, once
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-- the session closes, the prepared statement is deallocated as well.
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runRaw (PG.fromText $ preparedQuery)
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where
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runRaw :: PG.Query -> m ()
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runRaw stmt =
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liftEither
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=<< liftIO
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( withPostgresDB
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env
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connConf
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( PG.rawQE
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( \e ->
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(err400 ValidationFailed "Failed to validate query")
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{ qeInternal = Just $ ExtraInternal $ toJSON e
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}
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)
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stmt
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[]
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False
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)
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)
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@ -100,7 +100,8 @@ spec = do
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(first showQErr actual) `shouldSatisfy` isRight
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(first showQErr actual) `shouldSatisfy` isRight
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let Right rendered = actual
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let Right rendered = actual
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rendered `shouldBe` "PREPARE _logimo_vali_root_field_name(varchar) AS SELECT $1, $1"
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rendered
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`shouldBe` "PREPARE _logimo_vali_root_field_name(varchar) AS WITH _cte_logimo_vali_root_field_name AS (\nSELECT $1, $1\n)\nSELECT \nFROM _cte_logimo_vali_root_field_name"
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it "Handles multiple variables " do
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it "Handles multiple variables " do
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let Right code = parseInterpolatedQuery "SELECT {{hey}}, {{ho}}"
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let Right code = parseInterpolatedQuery "SELECT {{hey}}, {{ho}}"
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@ -118,4 +119,5 @@ spec = do
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(first showQErr actual) `shouldSatisfy` isRight
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(first showQErr actual) `shouldSatisfy` isRight
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let Right rendered = actual
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let Right rendered = actual
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rendered `shouldBe` "PREPARE _logimo_vali_root_field_name(varchar, integer) AS SELECT $1, $2"
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rendered
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`shouldBe` "PREPARE _logimo_vali_root_field_name(varchar, integer) AS WITH _cte_logimo_vali_root_field_name AS (\nSELECT $1, $2\n)\nSELECT \nFROM _cte_logimo_vali_root_field_name"
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