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b704192268
PR-URL: https://github.com/hasura/graphql-engine-mono/pull/4841 Co-authored-by: awjchen <13142944+awjchen@users.noreply.github.com> GitOrigin-RevId: ce47b1290fefb07f3f800c6c62120437c02086e5
210 lines
5.9 KiB
Haskell
210 lines
5.9 KiB
Haskell
{-# LANGUAGE TemplateHaskell #-}
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module Hasura.SQL.GeoJSON
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( Position (..),
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Point (..),
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MultiPoint (..),
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LineString (..),
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LinearRing (..),
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MultiLineString (..),
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Polygon (..),
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MultiPolygon (..),
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Geometry (..),
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GeometryCollection (..),
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GeometryWithCRS (..),
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)
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where
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import Control.Monad
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import Data.Aeson qualified as J
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import Data.Aeson.Casing qualified as J
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import Data.Aeson.TH qualified as J
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import Data.Aeson.Types qualified as J
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import Data.Vector qualified as V
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import Hasura.Prelude
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-- Positions
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data Position
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= Position !Double !Double !(Maybe Double)
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deriving (Show, Eq)
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withParsedArray ::
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(J.FromJSON a) =>
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String ->
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(V.Vector a -> J.Parser b) ->
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J.Value ->
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J.Parser b
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withParsedArray s fn =
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J.withArray s (mapM J.parseJSON >=> fn)
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instance J.FromJSON Position where
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parseJSON = withParsedArray "Position" $ \arr ->
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if V.length arr < 2
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then fail "A Position needs at least 2 elements"
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else -- here we are ignoring anything past 3 elements
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return $
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Position
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(arr `V.unsafeIndex` 0)
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(arr `V.unsafeIndex` 1)
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(arr V.!? 2)
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instance J.ToJSON Position where
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toJSON (Position a b c) =
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J.toJSON $ a : b : maybeToList c
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-- Point, Multipoint
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newtype Point = Point {unPoint :: Position}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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newtype MultiPoint = MultiPoint {unMultiPoint :: [Position]}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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-- LineString, MultiLineString
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data LineString = LineString
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{ _lsFirst :: !Position,
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_lsSecond :: !Position,
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_lsRest :: ![Position]
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}
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deriving (Show, Eq)
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instance J.ToJSON LineString where
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toJSON (LineString a b rest) =
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J.toJSON $ a : b : rest
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instance J.FromJSON LineString where
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parseJSON = withParsedArray "LineString" $ \arr ->
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if V.length arr < 2
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then fail "A LineString needs at least 2 Positions"
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else -- here we are ignoring anything past 3 elements
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let fstPos = arr `V.unsafeIndex` 0
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sndPos = arr `V.unsafeIndex` 1
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rest = V.toList $ V.drop 2 arr
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in return $ LineString fstPos sndPos rest
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newtype MultiLineString = MultiLineString {unMultiLineString :: [LineString]}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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-- Polygon, MultiPolygon
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data LinearRing = LinearRing
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{ _pFirst :: !Position,
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_pSecond :: !Position,
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_pThird :: !Position,
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_pRest :: ![Position]
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}
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deriving (Show, Eq)
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instance J.FromJSON LinearRing where
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parseJSON = withParsedArray "LinearRing" $ \arr ->
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if V.length arr < 4
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then fail "A LinearRing needs at least 4 Positions"
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else -- here we are ignoring anything past 3 elements
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do
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let fstPos = arr `V.unsafeIndex` 0
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sndPos = arr `V.unsafeIndex` 1
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thrPos = arr `V.unsafeIndex` 2
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rest = V.drop 3 arr
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let lastPos = V.last rest
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unless (fstPos == lastPos) $
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fail "the first and last locations have to be equal for a LinearRing"
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return $ LinearRing fstPos sndPos thrPos $ V.toList $ V.init rest
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instance J.ToJSON LinearRing where
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toJSON (LinearRing a b c rest) =
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J.toJSON $ (V.fromList [a, b, c] <> V.fromList rest) `V.snoc` a
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newtype Polygon = Polygon {unPolygon :: [LinearRing]}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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newtype MultiPolygon = MultiPolygon {unMultiPolygon :: [Polygon]}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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-- GeometryCollection
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data CRSNameProps = CRSNameProps
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{ _cnpName :: !Text
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}
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deriving (Show, Eq)
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data CRSLinkProps = CRSLinkProps
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{ _clpHref :: !Text,
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_clpType :: !(Maybe Text)
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}
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deriving (Show, Eq)
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data CRS
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= CRSName !CRSNameProps
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| CRSLink !CRSLinkProps
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deriving (Show, Eq)
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$(J.deriveJSON (J.aesonPrefix J.camelCase) ''CRSNameProps)
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$(J.deriveJSON (J.aesonPrefix J.camelCase) ''CRSLinkProps)
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$( J.deriveJSON
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J.defaultOptions
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{ J.constructorTagModifier = J.camelCase . drop 3,
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J.sumEncoding = J.TaggedObject "type" "properties"
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}
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''CRS
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)
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data GeometryWithCRS = GeometryWithCRS
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{ _gwcGeom :: !Geometry,
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_gwcCrs :: !(Maybe CRS)
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}
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deriving (Show, Eq)
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encToCoords :: (J.ToJSON a) => Text -> a -> Maybe CRS -> J.Value
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encToCoords ty a Nothing =
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J.object ["type" J..= ty, "coordinates" J..= a]
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encToCoords ty a (Just crs) =
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J.object ["type" J..= ty, "coordinates" J..= a, "crs" J..= crs]
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instance J.ToJSON GeometryWithCRS where
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toJSON (GeometryWithCRS geom crsM) = case geom of
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GPoint o -> encToCoords "Point" o crsM
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GMultiPoint o -> encToCoords "MultiPoint" o crsM
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GLineString o -> encToCoords "LineString" o crsM
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GMultiLineString o -> encToCoords "MultiLineString" o crsM
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GPolygon o -> encToCoords "Polygon" o crsM
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GMultiPolygon o -> encToCoords "MultiPolygon" o crsM
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GGeometryCollection o ->
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J.object
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[ "type" J..= ("GeometryCollection" :: Text),
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"geometries" J..= o
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]
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instance J.FromJSON GeometryWithCRS where
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parseJSON = J.withObject "Geometry" $ \o -> do
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ty <- o J..: "type"
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geom <- case ty of
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"Point" -> GPoint <$> o J..: "coordinates"
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"MultiPoint" -> GMultiPoint <$> o J..: "coordinates"
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"LineString" -> GLineString <$> o J..: "coordinates"
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"MultiLineString" -> GMultiLineString <$> o J..: "coordinates"
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"Polygon" -> GPolygon <$> o J..: "coordinates"
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"MultiPolygon" -> GMultiPolygon <$> o J..: "coordinates"
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"GeometryCollection" -> GGeometryCollection <$> o J..: "geometries"
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_ -> fail $ "unexpected geometry type: " <> ty
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crsM <- o J..:? "crs"
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return $ GeometryWithCRS geom crsM
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newtype GeometryCollection = GeometryCollection {unGeometryCollection :: [GeometryWithCRS]}
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deriving (Show, Eq, J.ToJSON, J.FromJSON)
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-- Geometry
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data Geometry
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= GPoint !Point
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| GMultiPoint !MultiPoint
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| GLineString !LineString
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| GMultiLineString !MultiLineString
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| GPolygon !Polygon
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| GMultiPolygon !MultiPolygon
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| GGeometryCollection !GeometryCollection
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deriving (Show, Eq)
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