mirror of
https://github.com/hasura/graphql-engine.git
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fb5f016b1c
PR-URL: https://github.com/hasura/graphql-engine-mono/pull/4040 GitOrigin-RevId: 2f022bab90ab06486358fde25f68be8ec0092d27
399 lines
15 KiB
Haskell
399 lines
15 KiB
Haskell
{-# LANGUAGE TypeFamilyDependencies #-}
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module Hasura.RQL.DDL.Permission
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( CreatePerm,
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runCreatePerm,
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PermDef (..),
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InsPerm (..),
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InsPermDef,
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buildInsPermInfo,
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SelPerm (..),
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SelPermDef,
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buildSelPermInfo,
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UpdPerm (..),
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UpdPermDef,
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buildUpdPermInfo,
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DelPerm (..),
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DelPermDef,
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buildDelPermInfo,
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DropPerm,
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runDropPerm,
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dropPermissionInMetadata,
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SetPermComment (..),
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runSetPermComment,
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PermInfo,
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buildPermInfo,
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addPermissionToMetadata,
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)
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where
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import Control.Lens (Lens', (.~), (^?))
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import Data.Aeson
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import Data.HashMap.Strict qualified as HM
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import Data.HashMap.Strict.InsOrd qualified as OMap
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import Data.HashSet qualified as HS
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import Data.Text.Extended
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import Hasura.Base.Error
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import Hasura.EncJSON
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import Hasura.Prelude
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import Hasura.RQL.DDL.Permission.Internal
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import Hasura.RQL.DML.Internal
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import Hasura.RQL.Types
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import Hasura.SQL.AnyBackend qualified as AB
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import Hasura.SQL.Types
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import Hasura.Session
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{- Note [Backend only permissions]
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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As of writing this note, Hasura permission system is meant to be used by the
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frontend. After introducing "Actions", the webhook handlers now can make GraphQL
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mutations to the server with some backend logic. These mutations shouldn't be
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exposed to frontend for any user since they'll bypass the business logic.
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For example:-
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We've a table named "user" and it has a "email" column. We need to validate the
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email address. So we define an action "create_user" and it expects the same inputs
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as "insert_user" mutation (generated by Hasura). Now, a role has permission for both
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actions and insert operation on the table. If the insert permission is not marked
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as "backend_only: true" then it visible to the frontend client along with "creat_user".
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Backend only permissions adds an additional privilege to Hasura generated operations.
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Those are accessable only if the request is made with `x-hasura-admin-secret`
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(if authorization is configured), `x-hasura-use-backend-only-permissions`
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(value must be set to "true"), `x-hasura-role` to identify the role and other
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required session variables.
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backend_only `x-hasura-admin-secret` `x-hasura-use-backend-only-permissions` Result
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------------ --------------------- ------------------------------------- ------
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FALSE ANY ANY Mutation is always visible
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TRUE FALSE ANY Mutation is always hidden
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TRUE TRUE (OR NOT-SET) FALSE Mutation is hidden
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TRUE TRUE (OR NOT-SET) TRUE Mutation is shown
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-}
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procSetObj ::
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forall b m.
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(QErrM m, BackendMetadata b) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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Maybe (ColumnValues b Value) ->
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m (PreSetColsPartial b, [Text], [SchemaDependency])
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procSetObj source tn fieldInfoMap mObj = do
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(setColTups, deps) <- withPathK "set" $
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fmap unzip $
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forM (HM.toList setObj) $ \(pgCol, val) -> do
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ty <-
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askColumnType fieldInfoMap pgCol $
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"column " <> pgCol <<> " not found in table " <>> tn
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sqlExp <- parseCollectableType (CollectableTypeScalar ty) val
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let dep = mkColDep @b (getDepReason sqlExp) source tn pgCol
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return ((pgCol, sqlExp), dep)
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return (HM.fromList setColTups, depHeaders, deps)
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where
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setObj = fromMaybe mempty mObj
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depHeaders = getDepHeadersFromVal $ Object $ mapKeys toTxt setObj
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getDepReason = bool DRSessionVariable DROnType . isStaticValue
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type family PermInfo perm where
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PermInfo SelPerm = SelPermInfo
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PermInfo InsPerm = InsPermInfo
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PermInfo UpdPerm = UpdPermInfo
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PermInfo DelPerm = DelPermInfo
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addPermissionToMetadata ::
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PermDef b a ->
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TableMetadata b ->
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TableMetadata b
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addPermissionToMetadata permDef = case _pdPermission permDef of
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InsPerm' _ -> tmInsertPermissions %~ OMap.insert (_pdRole permDef) permDef
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SelPerm' _ -> tmSelectPermissions %~ OMap.insert (_pdRole permDef) permDef
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UpdPerm' _ -> tmUpdatePermissions %~ OMap.insert (_pdRole permDef) permDef
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DelPerm' _ -> tmDeletePermissions %~ OMap.insert (_pdRole permDef) permDef
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buildPermInfo ::
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(BackendMetadata b, QErrM m, TableCoreInfoRM b m) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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PermDefPermission b perm ->
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m (WithDeps (PermInfo perm b))
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buildPermInfo x1 x2 x3 = \case
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SelPerm' p -> buildSelPermInfo x1 x2 x3 p
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InsPerm' p -> buildInsPermInfo x1 x2 x3 p
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UpdPerm' p -> buildUpdPermInfo x1 x2 x3 p
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DelPerm' p -> buildDelPermInfo x1 x2 x3 p
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doesPermissionExistInMetadata ::
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forall b.
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TableMetadata b ->
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RoleName ->
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PermType ->
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Bool
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doesPermissionExistInMetadata tableMetadata roleName = \case
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PTInsert -> hasPermissionTo tmInsertPermissions
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PTSelect -> hasPermissionTo tmSelectPermissions
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PTUpdate -> hasPermissionTo tmUpdatePermissions
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PTDelete -> hasPermissionTo tmDeletePermissions
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where
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hasPermissionTo :: forall a. Lens' (TableMetadata b) (Permissions a) -> Bool
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hasPermissionTo perms = isJust $ tableMetadata ^? perms . ix roleName
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runCreatePerm ::
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forall m b a.
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(UserInfoM m, CacheRWM m, MonadError QErr m, MetadataM m, BackendMetadata b) =>
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CreatePerm a b ->
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m EncJSON
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runCreatePerm (CreatePerm (WithTable source tableName permissionDefn)) = do
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tableMetadata <- askTableMetadata @b source tableName
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let permissionType = reflectPermDefPermission (_pdPermission permissionDefn)
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ptText = permTypeToCode permissionType
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role = _pdRole permissionDefn
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metadataObject =
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MOSourceObjId source $
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AB.mkAnyBackend $
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SMOTableObj @b tableName $
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MTOPerm role permissionType
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-- NOTE: we check if a permission exists for a `(table, role)` entity in the metadata
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-- and not in the `RolePermInfoMap b` because there may exist a permission for the `role`
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-- which is an inherited one, so we check it in the metadata directly
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-- The metadata will not contain the permissions for the admin role,
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-- because the graphql-engine automatically creates the role and it's
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-- assumed that the admin role is an implicit role of the graphql-engine.
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when (doesPermissionExistInMetadata tableMetadata role permissionType || role == adminRoleName) $
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throw400 AlreadyExists $
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ptText <> " permission already defined on table " <> tableName <<> " with role " <>> role
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buildSchemaCacheFor metadataObject $
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MetadataModifier $
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tableMetadataSetter @b source tableName %~ addPermissionToMetadata permissionDefn
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pure successMsg
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runDropPerm ::
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forall b m.
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(UserInfoM m, CacheRWM m, MonadError QErr m, MetadataM m, BackendMetadata b) =>
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PermType ->
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DropPerm b ->
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m EncJSON
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runDropPerm permType (DropPerm source table role) = do
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tableMetadata <- askTableMetadata @b source table
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unless (doesPermissionExistInMetadata tableMetadata role permType) $ do
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let errMsg =
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mconcat
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[ permTypeToCode permType <> " permission on " <>> table,
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" for role " <>> role,
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" does not exist"
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]
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throw400 PermissionDenied errMsg
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withNewInconsistentObjsCheck $
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buildSchemaCache $
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MetadataModifier $
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tableMetadataSetter @b source table %~ dropPermissionInMetadata role permType
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return successMsg
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buildInsPermInfo ::
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forall b m.
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(QErrM m, TableCoreInfoRM b m, BackendMetadata b) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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InsPerm b ->
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m (WithDeps (InsPermInfo b))
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buildInsPermInfo source tn fieldInfoMap (InsPerm checkCond set mCols mBackendOnly) =
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withPathK "permission" $ do
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(be, beDeps) <- withPathK "check" $ procBoolExp source tn fieldInfoMap checkCond
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(setColsSQL, setHdrs, setColDeps) <- procSetObj source tn fieldInfoMap set
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void $
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withPathK "columns" $ do
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indexedForM insCols $ \col -> do
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-- Check that all columns specified do in fact exist and are columns
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_ <- askColumnType fieldInfoMap col relInInsErr
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-- Check that the column is insertable
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ci <- askColInfo fieldInfoMap col ""
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unless (_cmIsInsertable $ ciMutability ci) $
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throw500
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( "Column " <> col
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<<> " is not insertable and so cannot have insert permissions defined"
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)
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let fltrHeaders = getDependentHeaders checkCond
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reqHdrs = fltrHeaders `HS.union` (HS.fromList setHdrs)
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insColDeps = map (mkColDep @b DRUntyped source tn) insCols
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deps = mkParentDep @b source tn : beDeps ++ setColDeps ++ insColDeps
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insColsWithoutPresets = insCols \\ HM.keys setColsSQL
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return (InsPermInfo (HS.fromList insColsWithoutPresets) be setColsSQL backendOnly reqHdrs, deps)
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where
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backendOnly = Just True == mBackendOnly
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allInsCols = map ciColumn $ filter (_cmIsInsertable . ciMutability) $ getCols fieldInfoMap
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insCols = interpColSpec allInsCols (fromMaybe PCStar mCols)
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relInInsErr = "Only table columns can have insert permissions defined, not relationships or other field types"
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buildSelPermInfo ::
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forall b m.
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(QErrM m, TableCoreInfoRM b m, BackendMetadata b) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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SelPerm b ->
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m (WithDeps (SelPermInfo b))
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buildSelPermInfo source tn fieldInfoMap sp = withPathK "permission" $ do
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let pgCols = interpColSpec (map ciColumn $ (getCols fieldInfoMap)) $ spColumns sp
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(boolExp, boolExpDeps) <-
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withPathK "filter" $
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procBoolExp source tn fieldInfoMap $ spFilter sp
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-- check if the columns exist
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void $
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withPathK "columns" $
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indexedForM pgCols $ \pgCol ->
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askColumnType fieldInfoMap pgCol autoInferredErr
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-- validate computed fields
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scalarComputedFields <-
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withPathK "computed_fields" $
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indexedForM computedFields $ \fieldName -> do
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computedFieldInfo <- askComputedFieldInfo fieldInfoMap fieldName
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case _cfiReturnType computedFieldInfo of
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CFRScalar _ -> pure fieldName
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CFRSetofTable returnTable ->
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throw400 NotSupported $
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"select permissions on computed field " <> fieldName
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<<> " are auto-derived from the permissions on its returning table "
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<> returnTable
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<<> " and cannot be specified manually"
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let deps =
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mkParentDep @b source tn :
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boolExpDeps ++ map (mkColDep @b DRUntyped source tn) pgCols
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++ map (mkComputedFieldDep @b DRUntyped source tn) scalarComputedFields
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depHeaders = getDependentHeaders $ spFilter sp
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mLimit = spLimit sp
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withPathK "limit" $ mapM_ onlyPositiveInt mLimit
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let pgColsWithFilter = HM.fromList $ map (,Nothing) pgCols
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scalarComputedFieldsWithFilter = HS.toMap (HS.fromList scalarComputedFields) $> Nothing
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let selPermInfo =
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SelPermInfo pgColsWithFilter scalarComputedFieldsWithFilter boolExp mLimit allowAgg depHeaders
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return (selPermInfo, deps)
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where
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allowAgg = spAllowAggregations sp
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computedFields = spComputedFields sp
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autoInferredErr = "permissions for relationships are automatically inferred"
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buildUpdPermInfo ::
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forall b m.
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(QErrM m, TableCoreInfoRM b m, BackendMetadata b) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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UpdPerm b ->
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m (WithDeps (UpdPermInfo b))
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buildUpdPermInfo source tn fieldInfoMap (UpdPerm colSpec set fltr check) = do
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(be, beDeps) <-
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withPathK "filter" $
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procBoolExp source tn fieldInfoMap fltr
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checkExpr <- traverse (withPathK "check" . procBoolExp source tn fieldInfoMap) check
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(setColsSQL, setHeaders, setColDeps) <- procSetObj source tn fieldInfoMap set
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-- check if the columns exist
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void $
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withPathK "columns" $
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indexedForM updCols $ \updCol -> do
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-- Check that all columns specified do in fact exist and are columns
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_ <- askColumnType fieldInfoMap updCol relInUpdErr
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-- Check that the column is updatable
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ci <- askColInfo fieldInfoMap updCol ""
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unless (_cmIsUpdatable $ ciMutability ci) $
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throw500
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( "Column " <> updCol
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<<> " is not updatable and so cannot have update permissions defined"
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)
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let updColDeps = map (mkColDep @b DRUntyped source tn) allUpdCols
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deps = mkParentDep @b source tn : beDeps ++ maybe [] snd checkExpr ++ updColDeps ++ setColDeps
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depHeaders = getDependentHeaders fltr
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reqHeaders = depHeaders `HS.union` (HS.fromList setHeaders)
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updColsWithoutPreSets = updCols \\ HM.keys setColsSQL
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return (UpdPermInfo (HS.fromList updColsWithoutPreSets) tn be (fst <$> checkExpr) setColsSQL reqHeaders, deps)
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where
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allUpdCols = map ciColumn $ filter (_cmIsUpdatable . ciMutability) $ getCols fieldInfoMap
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updCols = interpColSpec allUpdCols colSpec
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relInUpdErr = "Only table columns can have update permissions defined, not relationships or other field types"
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buildDelPermInfo ::
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forall b m.
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(QErrM m, TableCoreInfoRM b m, BackendMetadata b) =>
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SourceName ->
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TableName b ->
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FieldInfoMap (FieldInfo b) ->
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DelPerm b ->
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m (WithDeps (DelPermInfo b))
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buildDelPermInfo source tn fieldInfoMap (DelPerm fltr) = do
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(be, beDeps) <-
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withPathK "filter" $
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procBoolExp source tn fieldInfoMap fltr
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let deps = mkParentDep @b source tn : beDeps
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depHeaders = getDependentHeaders fltr
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return (DelPermInfo tn be depHeaders, deps)
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data SetPermComment b = SetPermComment
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{ apSource :: !SourceName,
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apTable :: !(TableName b),
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apRole :: !RoleName,
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apPermission :: !PermType,
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apComment :: !(Maybe Text)
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}
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instance (Backend b) => FromJSON (SetPermComment b) where
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parseJSON = withObject "SetPermComment" $ \o ->
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SetPermComment
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<$> o .:? "source" .!= defaultSource
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<*> o .: "table"
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<*> o .: "role"
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<*> o .: "permission"
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<*> o .:? "comment"
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runSetPermComment ::
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forall b m.
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(QErrM m, CacheRWM m, MetadataM m, BackendMetadata b) =>
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SetPermComment b ->
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m EncJSON
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runSetPermComment (SetPermComment source table roleName permType comment) = do
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tableInfo <- askTabInfo @b source table
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-- assert permission exists and return appropriate permission modifier
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permModifier <- case permType of
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PTInsert -> do
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assertPermDefined roleName PTInsert tableInfo
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pure $ tmInsertPermissions . ix roleName . pdComment .~ comment
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PTSelect -> do
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assertPermDefined roleName PTSelect tableInfo
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pure $ tmSelectPermissions . ix roleName . pdComment .~ comment
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PTUpdate -> do
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assertPermDefined roleName PTUpdate tableInfo
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pure $ tmUpdatePermissions . ix roleName . pdComment .~ comment
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PTDelete -> do
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assertPermDefined roleName PTDelete tableInfo
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pure $ tmDeletePermissions . ix roleName . pdComment .~ comment
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let metadataObject =
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MOSourceObjId source $
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AB.mkAnyBackend $
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SMOTableObj @b table $
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MTOPerm roleName permType
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buildSchemaCacheFor metadataObject $
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MetadataModifier $
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tableMetadataSetter @b source table %~ permModifier
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pure successMsg
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