mirror of
https://github.com/hasura/graphql-engine.git
synced 2024-12-17 20:41:49 +03:00
9bd5826020
* allow customizing GraphQL root field names, close #981 * document v2 track_table API in reference * support customising column field names in GraphQL schema * [docs] add custom column fields doc in API reference * add tests * rename 'ColField' to 'ColumnField' * embed column's graphql field in 'PGColumnInfo' -> Value constructor of 'PGCol' is not exposed -> Using 'parseJSON' to construct 'PGCol' in 'FromJSON' instances * avoid using 'Maybe TableConfig' * refactors & 'custom_column_fields' -> 'custom_column_names' * cli-test: add configuration field in metadata export test * update expected keys in `FromJSON` instance of `TableMeta` * use `buildSchemaCacheFor` to update configuration in v2 track_table * remove 'GraphQLName' type and use 'isValidName' exposed from parser lib * point graphql-parser-hs library git repo to hasura * support 'set_table_custom_fields' query API & added docs and tests
207 lines
7.4 KiB
Haskell
207 lines
7.4 KiB
Haskell
{- |
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Description: Create/delete SQL functions to/from Hasura metadata.
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-}
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module Hasura.RQL.DDL.Schema.Function where
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import Hasura.EncJSON
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import Hasura.GraphQL.Utils (showNames)
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import Hasura.Prelude
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import Hasura.RQL.Types
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import Hasura.SQL.Types
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import Data.Aeson
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import Data.Aeson.Casing
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import Data.Aeson.TH
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import Language.Haskell.TH.Syntax (Lift)
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import qualified Hasura.GraphQL.Schema as GS
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import qualified Language.GraphQL.Draft.Syntax as G
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import qualified Data.HashMap.Strict as M
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import qualified Data.Sequence as Seq
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import qualified Data.Text as T
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import qualified Database.PG.Query as Q
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data PGTypType
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= PTBASE
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| PTCOMPOSITE
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| PTDOMAIN
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| PTENUM
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| PTRANGE
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| PTPSEUDO
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deriving (Show, Eq)
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$(deriveJSON defaultOptions{constructorTagModifier = drop 2} ''PGTypType)
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data RawFuncInfo
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= RawFuncInfo
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{ rfiHasVariadic :: !Bool
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, rfiFunctionType :: !FunctionType
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, rfiReturnTypeSchema :: !SchemaName
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, rfiReturnTypeName :: !T.Text
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, rfiReturnTypeType :: !PGTypType
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, rfiReturnsSet :: !Bool
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, rfiInputArgTypes :: ![PGScalarType]
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, rfiInputArgNames :: ![T.Text]
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, rfiDefaultArgs :: !Int
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, rfiReturnsTable :: !Bool
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, rfiDescription :: !(Maybe PGDescription)
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} deriving (Show, Eq)
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$(deriveJSON (aesonDrop 3 snakeCase) ''RawFuncInfo)
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mkFunctionArgs :: Int -> [PGScalarType] -> [T.Text] -> [FunctionArg]
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mkFunctionArgs defArgsNo tys argNames =
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bool withNames withNoNames $ null argNames
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where
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hasDefaultBoolSeq = replicate (length argNames - defArgsNo) False
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-- only last arguments can have default expression
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<> replicate defArgsNo True
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tysWithHasDefault = zip tys hasDefaultBoolSeq
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withNoNames = flip map tysWithHasDefault $
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\(ty, hasDef) -> FunctionArg Nothing ty hasDef
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withNames = zipWith mkArg argNames tysWithHasDefault
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mkArg "" (ty, hasDef) = FunctionArg Nothing ty hasDef
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mkArg n (ty, hasDef) = FunctionArg (Just $ FunctionArgName n) ty hasDef
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validateFuncArgs :: MonadError QErr m => [FunctionArg] -> m ()
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validateFuncArgs args =
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unless (null invalidArgs) $ throw400 NotSupported $
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"arguments: " <> showNames invalidArgs
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<> " are not in compliance with GraphQL spec"
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where
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funcArgsText = mapMaybe (fmap getFuncArgNameTxt . faName) args
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invalidArgs = filter (not . G.isValidName) $ map G.Name funcArgsText
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mkFunctionInfo
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:: QErrM m => QualifiedFunction -> RawFuncInfo -> m FunctionInfo
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mkFunctionInfo qf rawFuncInfo = do
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-- throw error if function has variadic arguments
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when hasVariadic $ throw400 NotSupported "function with \"VARIADIC\" parameters are not supported"
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-- throw error if return type is not composite type
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when (retTyTyp /= PTCOMPOSITE) $ throw400 NotSupported "function does not return a \"COMPOSITE\" type"
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-- throw error if function do not returns SETOF
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unless retSet $ throw400 NotSupported "function does not return a SETOF"
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-- throw error if return type is not a valid table
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unless returnsTab $ throw400 NotSupported "function does not return a SETOF table"
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-- throw error if function type is VOLATILE
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when (funTy == FTVOLATILE) $ throw400 NotSupported "function of type \"VOLATILE\" is not supported now"
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let funcArgs = mkFunctionArgs defArgsNo inpArgTyps inpArgNames
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validateFuncArgs funcArgs
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let funcArgsSeq = Seq.fromList funcArgs
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dep = SchemaDependency (SOTable retTable) DRTable
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retTable = QualifiedObject retSn (TableName retN)
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return $ FunctionInfo qf False funTy funcArgsSeq retTable [dep] descM
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where
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RawFuncInfo hasVariadic funTy retSn retN retTyTyp retSet
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inpArgTyps inpArgNames defArgsNo returnsTab descM
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= rawFuncInfo
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saveFunctionToCatalog :: QualifiedFunction -> Bool -> Q.TxE QErr ()
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saveFunctionToCatalog (QualifiedObject sn fn) isSystemDefined =
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Q.unitQE defaultTxErrorHandler [Q.sql|
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INSERT INTO "hdb_catalog"."hdb_function" VALUES ($1, $2, $3)
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|] (sn, fn, isSystemDefined) False
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delFunctionFromCatalog :: QualifiedFunction -> Q.TxE QErr ()
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delFunctionFromCatalog (QualifiedObject sn fn) =
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Q.unitQE defaultTxErrorHandler [Q.sql|
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DELETE FROM hdb_catalog.hdb_function
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WHERE function_schema = $1
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AND function_name = $2
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|] (sn, fn) False
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newtype TrackFunction
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= TrackFunction
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{ tfName :: QualifiedFunction}
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deriving (Show, Eq, FromJSON, ToJSON, Lift)
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-- | Track function, Phase 1:
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-- Validate function tracking operation. Fails if function is already being
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-- tracked, or if a table with the same name is being tracked.
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trackFunctionP1
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:: (CacheRM m, UserInfoM m, QErrM m) => TrackFunction -> m ()
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trackFunctionP1 (TrackFunction qf) = do
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adminOnly
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rawSchemaCache <- askSchemaCache
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when (M.member qf $ scFunctions rawSchemaCache) $
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throw400 AlreadyTracked $ "function already tracked : " <>> qf
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let qt = fmap (TableName . getFunctionTxt) qf
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when (M.member qt $ scTables rawSchemaCache) $
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throw400 NotSupported $ "table with name " <> qf <<> " already exists"
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trackFunctionP2Setup :: (QErrM m, CacheRWM m, MonadTx m)
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=> QualifiedFunction -> RawFuncInfo -> m ()
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trackFunctionP2Setup qf rawfi = do
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fi <- mkFunctionInfo qf rawfi
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let retTable = fiReturnType fi
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err = err400 NotExists $ "table " <> retTable <<> " is not tracked"
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sc <- askSchemaCache
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void $ liftMaybe err $ M.lookup retTable $ scTables sc
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addFunctionToCache fi
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trackFunctionP2 :: (QErrM m, CacheRWM m, MonadTx m)
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=> QualifiedFunction -> m EncJSON
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trackFunctionP2 qf = do
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sc <- askSchemaCache
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let defGCtx = scDefaultRemoteGCtx sc
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funcNameGQL = GS.qualObjectToName qf
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-- check function name is in compliance with GraphQL spec
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unless (G.isValidName funcNameGQL) $ throw400 NotSupported $
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"function name " <> qf <<> " is not in compliance with GraphQL spec"
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-- check for conflicts in remote schema
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GS.checkConflictingNode defGCtx funcNameGQL
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-- fetch function info
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functionInfos <- liftTx fetchFuncDets
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rawfi <- case functionInfos of
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[] ->
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throw400 NotExists $ "no such function exists in postgres : " <>> qf
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[rawfi] -> return rawfi
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_ ->
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throw400 NotSupported $
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"function " <> qf <<> " is overloaded. Overloaded functions are not supported"
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trackFunctionP2Setup qf rawfi
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liftTx $ saveFunctionToCatalog qf False
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return successMsg
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where
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QualifiedObject sn fn = qf
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fetchFuncDets = map (Q.getAltJ . runIdentity) <$>
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Q.listQE defaultTxErrorHandler [Q.sql|
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SELECT function_info
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FROM hdb_catalog.hdb_function_info_agg
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WHERE function_schema = $1
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AND function_name = $2
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|] (sn, fn) True
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runTrackFunc
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:: ( QErrM m, CacheRWM m, MonadTx m
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, UserInfoM m
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)
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=> TrackFunction -> m EncJSON
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runTrackFunc q = do
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trackFunctionP1 q
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trackFunctionP2 $ tfName q
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newtype UnTrackFunction
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= UnTrackFunction
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{ utfName :: QualifiedFunction }
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deriving (Show, Eq, FromJSON, ToJSON, Lift)
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runUntrackFunc
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:: ( QErrM m, CacheRWM m, MonadTx m
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, UserInfoM m
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)
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=> UnTrackFunction -> m EncJSON
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runUntrackFunc (UnTrackFunction qf) = do
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adminOnly
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void $ askFunctionInfo qf
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liftTx $ delFunctionFromCatalog qf
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delFunctionFromCache qf
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return successMsg
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