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e0c0043e76
PR-URL: https://github.com/hasura/graphql-engine-mono/pull/9284 GitOrigin-RevId: 2f2cf2ad01900a54e4bdb970205ac0ef313c7e00
70 lines
2.6 KiB
Haskell
70 lines
2.6 KiB
Haskell
{-# LANGUAGE QuasiQuotes #-}
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-- | Schema parsers for common functionality of logical model resolvers.
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module Hasura.LogicalModelResolver.Schema (argumentsSchema) where
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import Data.HashMap.Strict qualified as HashMap
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import Data.Monoid (Ap (Ap, getAp))
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import Hasura.GraphQL.Schema.Backend
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( BackendSchema (columnParser),
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MonadBuildSchema,
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)
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import Hasura.GraphQL.Schema.Common
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( SchemaT,
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)
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import Hasura.GraphQL.Schema.Parser qualified as P
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import Hasura.Prelude
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import Hasura.RQL.IR.Value (openValueOrigin)
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import Hasura.RQL.Types.Column qualified as Column
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import Hasura.StoredProcedure.Metadata (ArgumentName (..))
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import Hasura.StoredProcedure.Types (NullableScalarType (..))
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import Language.GraphQL.Draft.Syntax qualified as G
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import Language.GraphQL.Draft.Syntax.QQ qualified as G
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-- | Schema parser for native query or stored procedure arguments.
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argumentsSchema ::
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forall b r m n.
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(MonadBuildSchema b r m n) =>
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-- | The resolver description, such as "Stored Procedure" or "Native Query".
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Text ->
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-- | The resolver name.
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G.Name ->
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-- | Arguments
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HashMap ArgumentName (NullableScalarType b) ->
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MaybeT (SchemaT r m) (P.InputFieldsParser n (HashMap ArgumentName (Column.ColumnValue b)))
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argumentsSchema resolverDesc resolverName argsSignature = do
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-- Lift 'SchemaT r m (InputFieldsParser ..)' into a monoid using Applicative.
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-- This lets us use 'foldMap' + monoid structure of hashmaps to avoid awkwardly
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-- traversing the arguments and building the resulting parser.
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argsParser <-
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getAp
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$ foldMap
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( \(name, NullableScalarType {nstType, nstNullable, nstDescription}) -> Ap do
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argValueParser <-
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fmap (HashMap.singleton name . openValueOrigin)
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<$> lift (columnParser (Column.ColumnScalar nstType) (G.Nullability nstNullable))
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-- TODO: Naming conventions?
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-- TODO: Custom fields? (Probably not)
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argName <- hoistMaybe (G.mkName (getArgumentName name))
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let description = case nstDescription of
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Just desc -> G.Description desc
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Nothing -> G.Description (resolverDesc <> " argument " <> getArgumentName name)
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pure
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$ P.field
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argName
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(Just description)
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argValueParser
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)
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(HashMap.toList argsSignature)
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let desc = Just $ G.Description $ G.unName resolverName <> resolverDesc <> " Arguments"
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pure
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$ if null argsSignature
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then mempty
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else
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P.field
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[G.name|args|]
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desc
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(P.object (resolverName <> [G.name|_arguments|]) desc argsParser)
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