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09ae6af337
> ### Description > Insert mutations for MSSQL backend. This PR implements execution logic. ### Changelog - [x] `CHANGELOG.md` is updated with user-facing content relevant to this PR. If no changelog is required, then add the `no-changelog-required` label. ### Affected components - [x] Server - [x] Tests ### Related Issues -> Close https://github.com/hasura/graphql-engine-mono/issues/2114 ### Steps to test and verify > Track a MSSQL table and perform the generated insert mutation to test. PR-URL: https://github.com/hasura/graphql-engine-mono/pull/2248 Co-authored-by: Abby Sassel <3883855+sassela@users.noreply.github.com> Co-authored-by: Philip Lykke Carlsen <358550+plcplc@users.noreply.github.com> GitOrigin-RevId: 936f138c80d7a928180e6e7b0c4da64ecc1f7ebc
228 lines
9.7 KiB
Haskell
228 lines
9.7 KiB
Haskell
-- | Top-level schema building function. Those are used to construct a schema for a given resource,
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-- such as a table or a function. Those matches what the @BackendSchema@ class expects, and are the
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-- default implementation a fully-fledged backend should support.
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module Hasura.GraphQL.Schema.Build where
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import Data.Text.Extended
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import Hasura.GraphQL.Parser hiding (EnumValueInfo, field)
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import Hasura.GraphQL.Schema.Backend (MonadBuildSchema)
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import Hasura.GraphQL.Schema.Common
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import Hasura.GraphQL.Schema.Mutation
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import Hasura.GraphQL.Schema.Select
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import Hasura.Prelude
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import Hasura.RQL.IR
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import Hasura.RQL.Types
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import Hasura.SQL.AnyBackend qualified as AB
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import Language.GraphQL.Draft.Syntax qualified as G
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buildTableQueryFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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TableName b ->
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TableInfo b ->
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G.Name ->
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SelPermInfo b ->
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m [FieldParser n (QueryRootField UnpreparedValue)]
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buildTableQueryFields sourceName sourceInfo queryTagsConfig tableName tableInfo gqlName selPerms = do
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let mkRF =
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RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. QDBR
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customRootFields = _tcCustomRootFields $ _tciCustomConfig $ _tiCoreInfo tableInfo
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-- select table
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selectName = fromMaybe gqlName $ _tcrfSelect customRootFields
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selectDesc = Just $ G.Description $ "fetch data from the table: " <>> tableName
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-- select table by pk
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selectPKName = fromMaybe (gqlName <> $$(G.litName "_by_pk")) $ _tcrfSelectByPk customRootFields
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selectPKDesc = Just $ G.Description $ "fetch data from the table: " <> tableName <<> " using primary key columns"
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-- select table aggregate
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selectAggName = fromMaybe (gqlName <> $$(G.litName "_aggregate")) $ _tcrfSelectAggregate customRootFields
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selectAggDesc = Just $ G.Description $ "fetch aggregated fields from the table: " <>> tableName
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catMaybes
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<$> sequenceA
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[ requiredFieldParser (mkRF . QDBMultipleRows) $ selectTable sourceName tableInfo selectName selectDesc selPerms,
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optionalFieldParser (mkRF . QDBSingleRow) $ selectTableByPk sourceName tableInfo selectPKName selectPKDesc selPerms,
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optionalFieldParser (mkRF . QDBAggregation) $ selectTableAggregate sourceName tableInfo selectAggName selectAggDesc selPerms
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]
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buildTableInsertMutationFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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TableName b ->
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TableInfo b ->
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G.Name ->
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InsPermInfo b ->
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Maybe (SelPermInfo b) ->
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Maybe (UpdPermInfo b) ->
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m [FieldParser n (MutationRootField UnpreparedValue)]
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buildTableInsertMutationFields
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sourceName
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sourceInfo
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queryTagsConfig
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tableName
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tableInfo
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gqlName
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insPerms
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mSelPerms
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mUpdPerms =
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do
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let mkRF ::
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FieldParser
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n
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(AnnInsert b (RemoteSelect UnpreparedValue) (UnpreparedValue b)) ->
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FieldParser n (MutationRootField UnpreparedValue)
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mkRF =
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fmap
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( RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. MDBR
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. MDBInsert
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)
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customRootFields = _tcCustomRootFields $ _tciCustomConfig $ _tiCoreInfo tableInfo
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-- insert into table
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insertName = fromMaybe ($$(G.litName "insert_") <> gqlName) $ _tcrfInsert customRootFields
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insertDesc = Just $ G.Description $ "insert data into the table: " <>> tableName
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-- insert one into table
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insertOneName = fromMaybe ($$(G.litName "insert_") <> gqlName <> $$(G.litName "_one")) $ _tcrfInsertOne customRootFields
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insertOneDesc = Just $ G.Description $ "insert a single row into the table: " <>> tableName
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insert <- insertIntoTable sourceName tableInfo insertName insertDesc insPerms mSelPerms mUpdPerms
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-- Select permissions are required for insertOne: the selection set is the
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-- same as a select on that table, and it therefore can't be populated if the
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-- user doesn't have select permissions.
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insertOne <- for mSelPerms \selPerms ->
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insertOneIntoTable sourceName tableInfo insertOneName insertOneDesc insPerms selPerms mUpdPerms
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pure $ map mkRF (insert : maybeToList insertOne)
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buildTableUpdateMutationFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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TableName b ->
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TableInfo b ->
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G.Name ->
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UpdPermInfo b ->
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Maybe (SelPermInfo b) ->
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m [FieldParser n (MutationRootField UnpreparedValue)]
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buildTableUpdateMutationFields sourceName sourceInfo queryTagsConfig tableName tableInfo gqlName updPerms mSelPerms = do
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let mkRF =
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RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. MDBR
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customRootFields = _tcCustomRootFields $ _tciCustomConfig $ _tiCoreInfo tableInfo
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-- update table
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updateName = fromMaybe ($$(G.litName "update_") <> gqlName) $ _tcrfUpdate customRootFields
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updateDesc = Just $ G.Description $ "update data of the table: " <>> tableName
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-- update table by pk
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updatePKName = fromMaybe ($$(G.litName "update_") <> gqlName <> $$(G.litName "_by_pk")) $ _tcrfUpdateByPk customRootFields
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updatePKDesc = Just $ G.Description $ "update single row of the table: " <>> tableName
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update <- updateTable sourceName tableInfo updateName updateDesc updPerms mSelPerms
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-- Primary keys can only be tested in the `where` clause if the user has
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-- select permissions for them, which at the very least requires select
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-- permissions.
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updateByPk <- fmap join $ for mSelPerms $ updateTableByPk sourceName tableInfo updatePKName updatePKDesc updPerms
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pure $ fmap (mkRF . MDBUpdate) <$> catMaybes [update, updateByPk]
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buildTableDeleteMutationFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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TableName b ->
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TableInfo b ->
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G.Name ->
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DelPermInfo b ->
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Maybe (SelPermInfo b) ->
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m [FieldParser n (MutationRootField UnpreparedValue)]
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buildTableDeleteMutationFields sourceName sourceInfo queryTagsConfig tableName tableInfo gqlName delPerms mSelPerms = do
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let mkRF =
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RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. MDBR
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customRootFields = _tcCustomRootFields $ _tciCustomConfig $ _tiCoreInfo tableInfo
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-- delete from table
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deleteName = fromMaybe ($$(G.litName "delete_") <> gqlName) $ _tcrfDelete customRootFields
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deleteDesc = Just $ G.Description $ "delete data from the table: " <>> tableName
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-- delete from table by pk
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deletePKName = fromMaybe ($$(G.litName "delete_") <> gqlName <> $$(G.litName "_by_pk")) $ _tcrfDeleteByPk customRootFields
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deletePKDesc = Just $ G.Description $ "delete single row from the table: " <>> tableName
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delete <- deleteFromTable sourceName tableInfo deleteName deleteDesc delPerms mSelPerms
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-- Primary keys can only be tested in the `where` clause if the user has
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-- select permissions for them, which at the very least requires select
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-- permissions.
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deleteByPk <- fmap join $ for mSelPerms $ deleteFromTableByPk sourceName tableInfo deletePKName deletePKDesc delPerms
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pure $ fmap (mkRF . MDBDelete) <$> delete : maybeToList deleteByPk
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buildFunctionQueryFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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FunctionName b ->
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FunctionInfo b ->
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TableName b ->
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SelPermInfo b ->
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m [FieldParser n (QueryRootField UnpreparedValue)]
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buildFunctionQueryFields sourceName sourceInfo queryTagsConfig functionName functionInfo tableName selPerms = do
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funcName <- functionGraphQLName @b functionName `onLeft` throwError
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let mkRF =
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RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. QDBR
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-- select function
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funcDesc =
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Just . G.Description $
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flip fromMaybe (_fiComment functionInfo) $ "execute function " <> functionName <<> " which returns " <>> tableName
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-- select function agg
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funcAggName = funcName <> $$(G.litName "_aggregate")
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funcAggDesc = Just $ G.Description $ "execute function " <> functionName <<> " and query aggregates on result of table type " <>> tableName
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queryResultType =
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case _fiJsonAggSelect functionInfo of
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JASMultipleRows -> QDBMultipleRows
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JASSingleObject -> QDBSingleRow
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catMaybes
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<$> sequenceA
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[ requiredFieldParser (mkRF . queryResultType) $ selectFunction sourceName functionInfo funcName funcDesc selPerms,
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optionalFieldParser (mkRF . QDBAggregation) $ selectFunctionAggregate sourceName functionInfo funcAggName funcAggDesc selPerms
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]
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buildFunctionMutationFields ::
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forall b r m n.
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MonadBuildSchema b r m n =>
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SourceName ->
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SourceConfig b ->
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Maybe QueryTagsConfig ->
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FunctionName b ->
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FunctionInfo b ->
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TableName b ->
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SelPermInfo b ->
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m [FieldParser n (MutationRootField UnpreparedValue)]
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buildFunctionMutationFields sourceName sourceInfo queryTagsConfig functionName functionInfo tableName selPerms = do
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funcName <- functionGraphQLName @b functionName `onLeft` throwError
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let mkRF =
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RFDB sourceName
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. AB.mkAnyBackend
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. SourceConfigWith sourceInfo queryTagsConfig
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. MDBR
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funcDesc = Just $ G.Description $ "execute VOLATILE function " <> functionName <<> " which returns " <>> tableName
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jsonAggSelect = _fiJsonAggSelect functionInfo
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catMaybes
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<$> sequenceA
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[ requiredFieldParser (mkRF . MDBFunction jsonAggSelect) $ selectFunction sourceName functionInfo funcName funcDesc selPerms
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-- TODO: do we want aggregate mutation functions?
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]
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