mirror of
https://github.com/hasura/graphql-engine.git
synced 2024-12-17 20:41:49 +03:00
52bf885f14
Mostly moving around things across modules. No change in functionality.
265 lines
8.3 KiB
Haskell
265 lines
8.3 KiB
Haskell
module Hasura.GraphQL.Schema.BoolExp
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( geoInputTypes
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, mkCompExpInp
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, mkBoolExpTy
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, mkBoolExpInp
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) where
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import qualified Data.Text as T
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import qualified Data.HashMap.Strict as Map
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import qualified Language.GraphQL.Draft.Syntax as G
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import Hasura.GraphQL.Schema.Common
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import Hasura.GraphQL.Validate.Types
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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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mkCompExpTy :: PGColType -> G.NamedType
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mkCompExpTy =
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G.NamedType . mkCompExpName
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mkCompExpName :: PGColType -> G.Name
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mkCompExpName pgColTy =
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G.Name $ T.pack (show pgColTy) <> "_comparison_exp"
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mkCastExpName :: PGColType -> G.Name
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mkCastExpName pgColTy = G.Name $ T.pack (show pgColTy) <> "_cast_exp"
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mkCastExpTy :: PGColType -> G.NamedType
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mkCastExpTy = G.NamedType . mkCastExpName
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-- TODO(shahidhk) this should ideally be st_d_within_geometry
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{-
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input st_d_within_input {
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distance: Float!
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from: geometry!
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}
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-}
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stDWithinGeometryInpTy :: G.NamedType
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stDWithinGeometryInpTy = G.NamedType "st_d_within_input"
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{-
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input st_d_within_geography_input {
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distance: Float!
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from: geography!
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use_spheroid: Bool!
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}
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-}
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stDWithinGeographyInpTy :: G.NamedType
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stDWithinGeographyInpTy = G.NamedType "st_d_within_geography_input"
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-- | Makes an input type declaration for the @_cast@ field of a comparison expression.
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-- (Currently only used for casting between geometry and geography types.)
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mkCastExpressionInputType :: PGColType -> [PGColType] -> InpObjTyInfo
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mkCastExpressionInputType sourceType targetTypes =
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mkHsraInpTyInfo (Just description) (mkCastExpTy sourceType) (fromInpValL targetFields)
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where
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description = mconcat
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[ "Expression to compare the result of casting a column of type "
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, G.Description (T.pack $ show sourceType)
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, ". Multiple cast targets are combined with logical 'AND'."
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]
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targetFields = map targetField targetTypes
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targetField targetType = InpValInfo
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Nothing
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(G.Name . T.pack $ show targetType)
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Nothing
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(G.toGT $ mkCompExpTy targetType)
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--- | make compare expression input type
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mkCompExpInp :: PGColType -> InpObjTyInfo
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mkCompExpInp colTy =
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InpObjTyInfo (Just tyDesc) (mkCompExpTy colTy) (fromInpValL $ concat
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[ map (mk colScalarTy) typedOps
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, map (mk $ G.toLT $ G.toNT colScalarTy) listOps
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, bool [] (map (mk $ mkScalarTy PGText) stringOps) isStringTy
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, bool [] (map jsonbOpToInpVal jsonbOps) isJsonbTy
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, bool [] (stDWithinGeoOpInpVal stDWithinGeometryInpTy :
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map geoOpToInpVal (geoOps ++ geomOps)) isGeometryType
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, bool [] (stDWithinGeoOpInpVal stDWithinGeographyInpTy :
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map geoOpToInpVal geoOps) isGeographyType
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, [InpValInfo Nothing "_is_null" Nothing $ G.TypeNamed (G.Nullability True) $ G.NamedType "Boolean"]
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, maybeToList castOpInputValue
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]) TLHasuraType
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where
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tyDesc = mconcat
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[ "expression to compare columns of type "
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, G.Description (T.pack $ show colTy)
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, ". All fields are combined with logical 'AND'."
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]
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isStringTy = case colTy of
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PGVarchar -> True
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PGText -> True
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_ -> False
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mk t n = InpValInfo Nothing n Nothing $ G.toGT t
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colScalarTy = mkScalarTy colTy
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-- colScalarListTy = GA.GTList colGTy
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typedOps =
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["_eq", "_neq", "_gt", "_lt", "_gte", "_lte"]
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listOps =
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[ "_in", "_nin" ]
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-- TODO
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-- columnOps =
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-- [ "_ceq", "_cneq", "_cgt", "_clt", "_cgte", "_clte"]
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stringOps =
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[ "_like", "_nlike", "_ilike", "_nilike"
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, "_similar", "_nsimilar"
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]
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isJsonbTy = case colTy of
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PGJSONB -> True
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_ -> False
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jsonbOpToInpVal (op, ty, desc) = InpValInfo (Just desc) op Nothing ty
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jsonbOps =
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[ ( "_contains"
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, G.toGT $ mkScalarTy PGJSONB
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, "does the column contain the given json value at the top level"
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)
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, ( "_contained_in"
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, G.toGT $ mkScalarTy PGJSONB
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, "is the column contained in the given json value"
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)
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, ( "_has_key"
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, G.toGT $ mkScalarTy PGText
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, "does the string exist as a top-level key in the column"
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)
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, ( "_has_keys_any"
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, G.toGT $ G.toLT $ G.toNT $ mkScalarTy PGText
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, "do any of these strings exist as top-level keys in the column"
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)
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, ( "_has_keys_all"
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, G.toGT $ G.toLT $ G.toNT $ mkScalarTy PGText
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, "do all of these strings exist as top-level keys in the column"
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)
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]
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castOpInputValue =
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-- currently, only geometry/geography types support casting
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guard (isGeoType colTy) $>
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InpValInfo Nothing "_cast" Nothing (G.toGT $ mkCastExpTy colTy)
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stDWithinGeoOpInpVal ty =
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InpValInfo (Just stDWithinGeoDesc) "_st_d_within" Nothing $ G.toGT ty
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stDWithinGeoDesc =
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"is the column within a distance from a " <> colTyDesc <> " value"
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-- Geometry related ops
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isGeometryType = case colTy of
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PGGeometry -> True
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_ -> False
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-- Geography related ops
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isGeographyType = case colTy of
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PGGeography -> True
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_ -> False
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geoOpToInpVal (op, desc) =
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InpValInfo (Just desc) op Nothing $ G.toGT $ mkScalarTy colTy
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colTyDesc = G.Description $ T.pack $ show colTy
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-- operators applicable only to geometry types
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geomOps :: [(G.Name, G.Description)]
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geomOps =
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[
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( "_st_contains"
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, "does the column contain the given geometry value"
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)
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, ( "_st_crosses"
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, "does the column crosses the given geometry value"
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)
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, ( "_st_equals"
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, "is the column equal to given geometry value. Directionality is ignored"
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)
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, ( "_st_overlaps"
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, "does the column 'spatially overlap' (intersect but not completely contain) the given geometry value"
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)
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, ( "_st_touches"
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, "does the column have atleast one point in common with the given geometry value"
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)
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, ( "_st_within"
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, "is the column contained in the given geometry value"
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)
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]
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-- operators applicable to geometry and geography types
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geoOps =
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[
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( "_st_intersects"
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, "does the column spatially intersect the given " <> colTyDesc <> " value"
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)
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]
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geoInputTypes :: [InpObjTyInfo]
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geoInputTypes =
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[ stDWithinGeometryInputType
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, stDWithinGeographyInputType
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, castGeometryInputType
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, castGeographyInputType
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]
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where
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stDWithinGeometryInputType =
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mkHsraInpTyInfo Nothing stDWithinGeometryInpTy $ fromInpValL
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[ InpValInfo Nothing "from" Nothing $ G.toGT $ G.toNT $ mkScalarTy PGGeometry
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, InpValInfo Nothing "distance" Nothing $ G.toNT $ mkScalarTy PGFloat
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]
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stDWithinGeographyInputType =
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mkHsraInpTyInfo Nothing stDWithinGeographyInpTy $ fromInpValL
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[ InpValInfo Nothing "from" Nothing $ G.toGT $ G.toNT $ mkScalarTy PGGeography
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, InpValInfo Nothing "distance" Nothing $ G.toNT $ mkScalarTy PGFloat
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, InpValInfo
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Nothing "use_spheroid" (Just $ G.VCBoolean True) $ G.toGT $ mkScalarTy PGBoolean
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]
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castGeometryInputType = mkCastExpressionInputType PGGeometry [PGGeography]
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castGeographyInputType = mkCastExpressionInputType PGGeography [PGGeometry]
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mkBoolExpName :: QualifiedTable -> G.Name
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mkBoolExpName tn =
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qualObjectToName tn <> "_bool_exp"
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mkBoolExpTy :: QualifiedTable -> G.NamedType
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mkBoolExpTy =
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G.NamedType . mkBoolExpName
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-- table_bool_exp
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mkBoolExpInp
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:: QualifiedTable
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-- the fields that are allowed
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-> [SelField]
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-> InpObjTyInfo
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mkBoolExpInp tn fields =
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mkHsraInpTyInfo (Just desc) boolExpTy $ Map.fromList
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[(_iviName inpVal, inpVal) | inpVal <- inpValues]
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where
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desc = G.Description $
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"Boolean expression to filter rows from the table " <> tn <<>
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". All fields are combined with a logical 'AND'."
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-- the type of this boolean expression
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boolExpTy = mkBoolExpTy tn
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-- all the fields of this input object
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inpValues = combinators <> map mkFldExpInp fields
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mk n ty = InpValInfo Nothing n Nothing $ G.toGT ty
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boolExpListTy = G.toLT boolExpTy
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combinators =
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[ mk "_not" boolExpTy
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, mk "_and" boolExpListTy
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, mk "_or" boolExpListTy
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]
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mkFldExpInp = \case
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Left (PGColInfo colName colTy _) ->
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mk (mkColName colName) (mkCompExpTy colTy)
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Right (RelInfo relName _ _ remTab _, _, _, _, _) ->
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mk (mkRelName relName) (mkBoolExpTy remTab)
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