mirror of
https://github.com/scarf-sh/tie.git
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671 lines
20 KiB
Plaintext
671 lines
20 KiB
Plaintext
Test/Api.hs
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{-# LANGUAGE BangPatterns #-}
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{-# LANGUAGE DuplicateRecordFields #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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{-# LANGUAGE RankNTypes #-}
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{-# LANGUAGE RecordWildCards #-}
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module Test.Api where
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import qualified Control.Applicative
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import qualified Control.Exception
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import qualified Control.Monad
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import qualified Control.Monad.IO.Class
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import qualified Data.Aeson
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import qualified Data.Aeson.Encoding
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import qualified Data.Attoparsec.ByteString
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import qualified Data.List
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import qualified Data.List.NonEmpty
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import qualified Data.Map
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import qualified Data.Maybe
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import qualified Data.Text
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import qualified Data.Time
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import qualified Data.Text.Encoding
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import qualified GHC.Float
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import qualified GHC.Int
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import qualified GHC.Types
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import qualified Network.HTTP.Types
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import qualified Network.Wai
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import qualified Web.HttpApiData
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import Test.Request
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import Test.Response
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import Test.Schemas.Test
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import Test.Response.Test
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import Test.Response.Test1
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import Test.Response.Test2
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data Api m = Api {
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-- | test
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test ::
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-- @x-next@ How many items to return at one time (max 100)
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(Data.Maybe.Maybe (GHC.Int.Int32)) ->
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m TestResponse,
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-- | test
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test1 ::
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m Test1Response,
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-- | test
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test2 ::
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m Test2Response
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}
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application :: (Control.Monad.IO.Class.MonadIO m) => (forall a . Network.Wai.Request -> m a -> IO a) -> Api m -> Network.Wai.Application -> Network.Wai.Application
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application run api notFound request respond =
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case Network.Wai.pathInfo request of
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["test"] ->
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case Network.Wai.requestMethod request of
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"GET" ->
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optionalHeader "x-next" (\__x_next request respond ->
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run request (do
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response <- test api __x_next
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Control.Monad.IO.Class.liftIO (respond $! (toResponse response))
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)) request respond
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x ->
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unsupportedMethod x
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["test1"] ->
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case Network.Wai.requestMethod request of
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"GET" ->
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run request (do
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response <- test1 api
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Control.Monad.IO.Class.liftIO (respond $! (toResponse response))
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)
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x ->
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unsupportedMethod x
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["test2"] ->
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case Network.Wai.requestMethod request of
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"GET" ->
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run request (do
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response <- test2 api
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Control.Monad.IO.Class.liftIO (respond $! (toResponse response))
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)
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x ->
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unsupportedMethod x
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_ ->
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notFound request respond
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where
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unsupportedMethod _ =
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respond (Network.Wai.responseBuilder Network.HTTP.Types.status405 [] mempty)
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{-# INLINABLE application #-}
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---------------------
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Test/Request.hs
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{-# LANGUAGE OverloadedStrings #-}
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module Test.Request
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( -- * Parameters
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Style (..),
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pathVariable,
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requiredQueryParameter,
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requiredQueryParameters,
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optionalQueryParameter,
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optionalQueryParameters,
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requiredHeader,
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optionalHeader,
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-- * Request body
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parseRequestBody,
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jsonBodyParser,
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formBodyParser,
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)
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where
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import Data.Aeson (FromJSON, parseJSON)
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import Data.Attoparsec.ByteString (eitherResult, parseWith)
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import Data.ByteString (ByteString)
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import qualified Data.ByteString as ByteString
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import qualified Data.ByteString.Lazy as LBS
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import Data.Coerce (coerce)
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import qualified Data.HashMap.Strict as HashMap
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import qualified Data.List as List
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import qualified Data.List.NonEmpty as NonEmpty
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import Data.Maybe (fromMaybe)
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import Data.Text (Text)
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import qualified Data.Text as Text
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import qualified Data.Text.Encoding as Text
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import qualified Network.HTTP.Media
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import Network.HTTP.Types (HeaderName, hContentType)
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import qualified Network.Wai as Wai
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import System.IO.Unsafe (unsafeInterleaveIO)
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import Web.FormUrlEncoded
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( FromForm,
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parseAll,
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urlDecodeAsForm,
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urlDecodeForm,
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)
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import Web.HttpApiData
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( FromHttpApiData,
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parseHeader,
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parseQueryParam,
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parseUrlPiece,
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parseUrlPieces,
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)
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pathVariable ::
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FromHttpApiData a =>
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-- | Path variable value
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Text ->
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(a -> Wai.Application) ->
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Wai.Application
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pathVariable value withVariable = \request respond ->
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case parseUrlPiece value of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right x ->
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withVariable x request respond
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{-# INLINEABLE pathVariable #-}
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data Style
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= FormStyle
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| CommaDelimitedStyle
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| SpaceDelimitedStyle
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| PipeDelimitedStyle
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newtype CommaDelimitedValue a = CommaDelimitedValue {unCommaDelimitedValue :: [a]}
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instance FromHttpApiData a => FromHttpApiData (CommaDelimitedValue a) where
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parseUrlPiece input = do
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xs <- parseUrlPieces (Text.splitOn "," input)
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pure (CommaDelimitedValue xs)
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newtype SpaceDelimitedValue a = SpaceDelimitedValue {unSpaceDelimitedValue :: [a]}
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instance FromHttpApiData a => FromHttpApiData (SpaceDelimitedValue a) where
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parseUrlPiece input = do
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xs <- parseUrlPieces (Text.splitOn " " input)
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pure (SpaceDelimitedValue xs)
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newtype PipeDelimitedValue a = PipeDelimitedValue {unPipeDelimitedValue :: [a]}
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instance FromHttpApiData a => FromHttpApiData (PipeDelimitedValue a) where
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parseUrlPiece input = do
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xs <- parseUrlPieces (Text.splitOn "|" input)
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pure (PipeDelimitedValue xs)
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requiredQueryParameters ::
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FromHttpApiData a =>
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Style ->
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ByteString ->
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(NonEmpty.NonEmpty a -> Wai.Application) ->
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Wai.Application
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requiredQueryParameters style name withParam =
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case style of
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FormStyle -> \request respond ->
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case urlDecodeForm (LBS.fromStrict (ByteString.drop 1 (Wai.rawQueryString request))) of
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Left error ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right form ->
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case parseAll (Text.decodeUtf8 name) form of
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Left _ ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right [] ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right (x : xs) ->
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withParam (x NonEmpty.:| xs) request respond
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SpaceDelimitedStyle ->
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requiredQueryParameter
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name
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( \xs -> \request respond ->
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case NonEmpty.nonEmpty (unSpaceDelimitedValue xs) of
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Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just xs ->
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withParam xs request respond
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)
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PipeDelimitedStyle ->
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requiredQueryParameter
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name
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( \xs -> \request respond ->
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case NonEmpty.nonEmpty (unPipeDelimitedValue xs) of
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Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just xs ->
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withParam xs request respond
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)
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CommaDelimitedStyle ->
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requiredQueryParameter
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name
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( \xs -> \request respond ->
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case NonEmpty.nonEmpty (unCommaDelimitedValue xs) of
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Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just xs ->
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withParam xs request respond
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)
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optionalQueryParameters ::
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FromHttpApiData a =>
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Style ->
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ByteString ->
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(Maybe (NonEmpty.NonEmpty a) -> Wai.Application) ->
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Wai.Application
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optionalQueryParameters style name withParam =
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case style of
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FormStyle -> \request respond ->
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case urlDecodeForm (LBS.fromStrict (ByteString.drop 1 (Wai.rawQueryString request))) of
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Left error ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right form ->
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case parseAll (Text.decodeUtf8 name) form of
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Left _ ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right [] ->
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withParam Nothing request respond
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Right (x : xs) ->
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withParam (Just (x NonEmpty.:| xs)) request respond
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SpaceDelimitedStyle ->
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optionalQueryParameter
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name
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False
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( \xs ->
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withParam (xs >>= NonEmpty.nonEmpty . unSpaceDelimitedValue)
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)
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PipeDelimitedStyle ->
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optionalQueryParameter
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name
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False
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( \xs ->
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withParam (xs >>= NonEmpty.nonEmpty . unPipeDelimitedValue)
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)
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CommaDelimitedStyle ->
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optionalQueryParameter
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name
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False
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( \xs ->
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withParam (xs >>= NonEmpty.nonEmpty . unCommaDelimitedValue)
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)
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requiredQueryParameter ::
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FromHttpApiData a =>
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ByteString ->
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(a -> Wai.Application) ->
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Wai.Application
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requiredQueryParameter name withParam = \request respond ->
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case List.lookup name (Wai.queryString request) of
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Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just (Just value) ->
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case parseQueryParam (Text.decodeUtf8 value) of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right x ->
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withParam x request respond
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{-# INLINEABLE requiredQueryParameter #-}
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optionalQueryParameter ::
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FromHttpApiData a =>
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ByteString ->
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-- | Allow empty, e.g. "x="
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Bool ->
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(Maybe a -> Wai.Application) ->
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Wai.Application
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optionalQueryParameter name allowEmpty withParam = \request respond ->
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case List.lookup name (Wai.queryString request) of
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Nothing ->
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withParam Nothing request respond
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Just Nothing
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| allowEmpty ->
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withParam Nothing request respond
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| otherwise ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just (Just value) ->
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case parseQueryParam (Text.decodeUtf8 value) of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right x ->
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withParam (Just x) request respond
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{-# INLINEABLE optionalQueryParameter #-}
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optionalHeader ::
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FromHttpApiData a =>
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HeaderName ->
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(Maybe a -> Wai.Application) ->
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Wai.Application
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optionalHeader name withHeader = \request respond ->
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case List.lookup name (Wai.requestHeaders request) of
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Nothing ->
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withHeader Nothing request respond
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Just value ->
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case parseHeader value of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right x ->
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withHeader (Just x) request respond
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{-# INLINEABLE optionalHeader #-}
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requiredHeader ::
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FromHttpApiData a =>
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HeaderName ->
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(a -> Wai.Application) ->
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Wai.Application
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requiredHeader name withHeader = \request respond ->
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case List.lookup name (Wai.requestHeaders request) of
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Nothing ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Just value ->
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case parseHeader value of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right x ->
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withHeader x request respond
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{-# INLINEABLE requiredHeader #-}
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data BodyParser a
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= BodyParser
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Network.HTTP.Media.MediaType
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((a -> Wai.Application) -> Wai.Application)
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jsonBodyParser :: FromJSON a => BodyParser a
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jsonBodyParser = BodyParser "application/json" parseRequestBodyJSON
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{-# INLINE jsonBodyParser #-}
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formBodyParser :: FromForm a => BodyParser a
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formBodyParser = BodyParser "application/xxx-form-urlencoded" parseRequestBodyForm
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{-# INLINE formBodyParser #-}
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parseRequestBody :: [BodyParser a] -> (a -> Wai.Application) -> Wai.Application
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parseRequestBody parsers withBody = \request respond -> do
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let contentType =
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fromMaybe
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"application/octet-stream"
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(List.lookup hContentType (Wai.requestHeaders request))
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bodyParser =
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Network.HTTP.Media.mapAccept
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[(mediaType, parser) | BodyParser mediaType parser <- parsers]
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contentType
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case bodyParser of
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Just parseBody ->
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parseBody withBody request respond
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Nothing ->
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respond (Wai.responseBuilder (toEnum 415) [] mempty)
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{-# INLINE parseRequestBody #-}
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parseRequestBodyJSON :: FromJSON a => (a -> Wai.Application) -> Wai.Application
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parseRequestBodyJSON withBody = \request respond -> do
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result <- parseWith (Wai.getRequestBodyChunk request) Data.Aeson.Parser.json' mempty
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case eitherResult result of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right value ->
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case Data.Aeson.Types.parseEither Data.Aeson.parseJSON value of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right body ->
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withBody body request respond
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{-# INLINEABLE parseRequestBodyJSON #-}
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parseRequestBodyForm :: FromForm a => (a -> Wai.Application) -> Wai.Application
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parseRequestBodyForm withBody = \request respond -> do
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-- Reads the body using lazy IO. Not great but it gets us
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-- going and is pretty local.
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let getBodyBytes :: IO [ByteString]
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getBodyBytes = do
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chunk <- Wai.getRequestBodyChunk request
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case chunk of
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"" -> pure []
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_ -> do
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rest <- unsafeInterleaveIO getBodyBytes
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pure (chunk : rest)
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bytes <- getBodyBytes
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case urlDecodeAsForm (LBS.fromChunks bytes) of
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Left _err ->
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respond (Wai.responseBuilder (toEnum 400) [] mempty)
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Right form ->
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withBody form request respond
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{-# INLINEABLE parseRequestBodyForm #-}
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---------------------
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Test/Response.hs
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module Test.Response
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( ToResponse (..),
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)
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where
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import qualified Network.Wai
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class ToResponse a where
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toResponse :: a -> Network.Wai.Response
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---------------------
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Test/Response/Test.hs
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{-# LANGUAGE BangPatterns #-}
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{-# LANGUAGE DuplicateRecordFields #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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{-# LANGUAGE RankNTypes #-}
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{-# LANGUAGE RecordWildCards #-}
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module Test.Response.Test where
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|
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import qualified Control.Applicative
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import qualified Control.Exception
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import qualified Control.Monad
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import qualified Control.Monad.IO.Class
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import qualified Data.Aeson
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import qualified Data.Aeson.Encoding
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import qualified Data.Attoparsec.ByteString
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import qualified Data.List
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import qualified Data.List.NonEmpty
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import qualified Data.Map
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import qualified Data.Maybe
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import qualified Data.Text
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import qualified Data.Time
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import qualified Data.Text.Encoding
|
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import qualified GHC.Float
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import qualified GHC.Int
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import qualified GHC.Types
|
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import qualified Network.HTTP.Types
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import qualified Network.Wai
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import qualified Web.HttpApiData
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|
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import Test.Schemas.Test
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|
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import Test.Response
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data TestResponse
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= TestResponse200 Test
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deriving (Show)
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|
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instance ToResponse TestResponse where
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toResponse (TestResponse200 x) =
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Network.Wai.responseBuilder Network.HTTP.Types.status200 ([(Network.HTTP.Types.hContentType, "application/json")]) (Data.Aeson.fromEncoding (Data.Aeson.toEncoding x))
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---------------------
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Test/Response/Test1.hs
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|
|
|
{-# LANGUAGE BangPatterns #-}
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{-# LANGUAGE DuplicateRecordFields #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE ScopedTypeVariables #-}
|
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{-# LANGUAGE RankNTypes #-}
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{-# LANGUAGE RecordWildCards #-}
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module Test.Response.Test1 where
|
|
|
|
import qualified Control.Applicative
|
|
import qualified Control.Exception
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|
import qualified Control.Monad
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|
import qualified Control.Monad.IO.Class
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|
import qualified Data.Aeson
|
|
import qualified Data.Aeson.Encoding
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import qualified Data.Attoparsec.ByteString
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import qualified Data.List
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import qualified Data.List.NonEmpty
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import qualified Data.Map
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import qualified Data.Maybe
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import qualified Data.Text
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import qualified Data.Time
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import qualified Data.Text.Encoding
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import qualified GHC.Float
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import qualified GHC.Int
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import qualified GHC.Types
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import qualified Network.HTTP.Types
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import qualified Network.Wai
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import qualified Web.HttpApiData
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|
|
|
|
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import Test.Response
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|
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data Test1Response
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= Test1Response201 (Data.Maybe.Maybe (Data.Text.Text))
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deriving (Show)
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|
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instance ToResponse Test1Response where
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toResponse (Test1Response201 __Location) =
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Network.Wai.responseBuilder Network.HTTP.Types.status201 ([("Location", Web.HttpApiData.toHeader __Location) | Just __Location <- [__Location]] ++ []) mempty
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|
---------------------
|
|
Test/Response/Test2.hs
|
|
|
|
{-# LANGUAGE BangPatterns #-}
|
|
{-# LANGUAGE DuplicateRecordFields #-}
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|
{-# LANGUAGE OverloadedStrings #-}
|
|
{-# LANGUAGE ScopedTypeVariables #-}
|
|
{-# LANGUAGE RankNTypes #-}
|
|
{-# LANGUAGE RecordWildCards #-}
|
|
module Test.Response.Test2 where
|
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|
|
import qualified Control.Applicative
|
|
import qualified Control.Exception
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import qualified Control.Monad
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import qualified Control.Monad.IO.Class
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import qualified Data.Aeson
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import qualified Data.Aeson.Encoding
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import qualified Data.Attoparsec.ByteString
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import qualified Data.List
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import qualified Data.List.NonEmpty
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import qualified Data.Map
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import qualified Data.Maybe
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import qualified Data.Text
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import qualified Data.Time
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import qualified Data.Text.Encoding
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import qualified GHC.Float
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import qualified GHC.Int
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import qualified GHC.Types
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import qualified Network.HTTP.Types
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import qualified Network.Wai
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import qualified Web.HttpApiData
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import Test.Response
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data Test2Response
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= Test2Response201 Data.Text.Text
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deriving (Show)
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instance ToResponse Test2Response where
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toResponse (Test2Response201 __Location) =
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Network.Wai.responseBuilder Network.HTTP.Types.status201 ([("Location", Web.HttpApiData.toHeader __Location)]) mempty
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---------------------
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Test/Schemas/Test.hs
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{-# LANGUAGE BangPatterns #-}
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{-# LANGUAGE DuplicateRecordFields #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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{-# LANGUAGE RankNTypes #-}
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{-# LANGUAGE RecordWildCards #-}
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module Test.Schemas.Test where
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import qualified Control.Applicative
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import qualified Control.Exception
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import qualified Control.Monad
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import qualified Control.Monad.IO.Class
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import qualified Data.Aeson
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import qualified Data.Aeson.Encoding
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import qualified Data.Aeson.Parser
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import qualified Data.Aeson.Types
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import qualified Data.Attoparsec.ByteString
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import qualified Data.List
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import qualified Data.List.NonEmpty
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import qualified Data.Map
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import qualified Data.Maybe
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import qualified Data.Text
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import qualified Data.Time
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import qualified Data.Text.Encoding
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import qualified GHC.Float
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import qualified GHC.Int
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import qualified GHC.Types
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import qualified Network.HTTP.Types
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import qualified Network.Wai
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import qualified Web.HttpApiData
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data Test = Test
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{
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dateProp :: (Data.Maybe.Maybe (Data.Time.Day)),
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dateTimeProp :: (Data.Maybe.Maybe (Data.Time.UTCTime))
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}
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deriving (Show)
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instance Data.Aeson.ToJSON Test where
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toJSON Test {..} = Data.Aeson.object
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([
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]
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++ [ "dateProp" Data.Aeson..= dateProp | Just dateProp <- [dateProp] ]
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++ [ "dateTimeProp" Data.Aeson..= dateTimeProp | Just dateTimeProp <- [dateTimeProp] ])
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toEncoding Test {..} = Data.Aeson.Encoding.pairs
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( maybe mempty (Data.Aeson.Encoding.pair "dateProp" . Data.Aeson.toEncoding) dateProp <>
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maybe mempty (Data.Aeson.Encoding.pair "dateTimeProp" . Data.Aeson.toEncoding) dateTimeProp
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)
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instance Data.Aeson.FromJSON Test where
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parseJSON = Data.Aeson.withObject "Test" $ \o ->
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Test
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<$> o Data.Aeson..:? "dateProp"
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<*> o Data.Aeson..:? "dateTimeProp"
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---------------------
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test.cabal
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cabal-version: 3.0
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name: test
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version: 0.1.0.0
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library
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build-depends:
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, aeson
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, attoparsec
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, base
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, bytestring
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, containers
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, ghc-prim
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, http-api-data
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, http-media
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, http-types
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, text
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, time
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, unordered-containers
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, wai
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exposed-modules:
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Test.Api
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Test.Request
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Test.Response
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Test.Response.Test
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Test.Response.Test1
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Test.Response.Test2
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Test.Schemas.Test |