{-# LANGUAGE BangPatterns, DeriveDataTypeable, DeriveGeneric, FlexibleInstances, MultiParamTypeClasses #-}
{-# OPTIONS_GHC  -fno-warn-unused-imports #-}
module Network.Riak.Protocol.DtOp (DtOp(..)) where
import Prelude ((+), (/))
import qualified Prelude as Prelude'
import qualified Data.Typeable as Prelude'
import qualified GHC.Generics as Prelude'
import qualified Data.Data as Prelude'
import qualified Text.ProtocolBuffers.Header as P'
import qualified Network.Riak.Protocol.CounterOp as Protocol (CounterOp)
import qualified Network.Riak.Protocol.MapOp as Protocol (MapOp)
import qualified Network.Riak.Protocol.SetOp as Protocol (SetOp)

data DtOp = DtOp{counter_op :: !(P'.Maybe Protocol.CounterOp), set_op :: !(P'.Maybe Protocol.SetOp),
                 map_op :: !(P'.Maybe Protocol.MapOp)}
          deriving (Prelude'.Show, Prelude'.Eq, Prelude'.Ord, Prelude'.Typeable, Prelude'.Data, Prelude'.Generic)

instance P'.Mergeable DtOp where
  mergeAppend (DtOp x'1 x'2 x'3) (DtOp y'1 y'2 y'3)
   = DtOp (P'.mergeAppend x'1 y'1) (P'.mergeAppend x'2 y'2) (P'.mergeAppend x'3 y'3)

instance P'.Default DtOp where
  defaultValue = DtOp P'.defaultValue P'.defaultValue P'.defaultValue

instance P'.Wire DtOp where
  wireSize ft' self'@(DtOp x'1 x'2 x'3)
   = case ft' of
       10 -> calc'Size
       11 -> P'.prependMessageSize calc'Size
       _ -> P'.wireSizeErr ft' self'
    where
        calc'Size = (P'.wireSizeOpt 1 11 x'1 + P'.wireSizeOpt 1 11 x'2 + P'.wireSizeOpt 1 11 x'3)
  wirePut ft' self'@(DtOp x'1 x'2 x'3)
   = case ft' of
       10 -> put'Fields
       11 -> do
               P'.putSize (P'.wireSize 10 self')
               put'Fields
       _ -> P'.wirePutErr ft' self'
    where
        put'Fields
         = do
             P'.wirePutOpt 10 11 x'1
             P'.wirePutOpt 18 11 x'2
             P'.wirePutOpt 26 11 x'3
  wireGet ft'
   = case ft' of
       10 -> P'.getBareMessageWith update'Self
       11 -> P'.getMessageWith update'Self
       _ -> P'.wireGetErr ft'
    where
        update'Self wire'Tag old'Self
         = case wire'Tag of
             10 -> Prelude'.fmap
                    (\ !new'Field -> old'Self{counter_op = P'.mergeAppend (counter_op old'Self) (Prelude'.Just new'Field)})
                    (P'.wireGet 11)
             18 -> Prelude'.fmap (\ !new'Field -> old'Self{set_op = P'.mergeAppend (set_op old'Self) (Prelude'.Just new'Field)})
                    (P'.wireGet 11)
             26 -> Prelude'.fmap (\ !new'Field -> old'Self{map_op = P'.mergeAppend (map_op old'Self) (Prelude'.Just new'Field)})
                    (P'.wireGet 11)
             _ -> let (field'Number, wire'Type) = P'.splitWireTag wire'Tag in P'.unknown field'Number wire'Type old'Self

instance P'.MessageAPI msg' (msg' -> DtOp) DtOp where
  getVal m' f' = f' m'

instance P'.GPB DtOp

instance P'.ReflectDescriptor DtOp where
  getMessageInfo _ = P'.GetMessageInfo (P'.fromDistinctAscList []) (P'.fromDistinctAscList [10, 18, 26])
  reflectDescriptorInfo _
   = Prelude'.read
      "DescriptorInfo {descName = ProtoName {protobufName = FIName \".Protocol.DtOp\", haskellPrefix = [MName \"Network\",MName \"Riak\"], parentModule = [MName \"Protocol\"], baseName = MName \"DtOp\"}, descFilePath = [\"Network\",\"Riak\",\"Protocol\",\"DtOp.hs\"], isGroup = False, fields = fromList [FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.DtOp.counter_op\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"DtOp\"], baseName' = FName \"counter_op\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 1}, wireTag = WireTag {getWireTag = 10}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = False, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 11}, typeName = Just (ProtoName {protobufName = FIName \".Protocol.CounterOp\", haskellPrefix = [MName \"Network\",MName \"Riak\"], parentModule = [MName \"Protocol\"], baseName = MName \"CounterOp\"}), hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.DtOp.set_op\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"DtOp\"], baseName' = FName \"set_op\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 2}, wireTag = WireTag {getWireTag = 18}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = False, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 11}, typeName = Just (ProtoName {protobufName = FIName \".Protocol.SetOp\", haskellPrefix = [MName \"Network\",MName \"Riak\"], parentModule = [MName \"Protocol\"], baseName = MName \"SetOp\"}), hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.DtOp.map_op\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"DtOp\"], baseName' = FName \"map_op\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 3}, wireTag = WireTag {getWireTag = 26}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = False, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 11}, typeName = Just (ProtoName {protobufName = FIName \".Protocol.MapOp\", haskellPrefix = [MName \"Network\",MName \"Riak\"], parentModule = [MName \"Protocol\"], baseName = MName \"MapOp\"}), hsRawDefault = Nothing, hsDefault = Nothing}], descOneofs = fromList [], keys = fromList [], extRanges = [], knownKeys = fromList [], storeUnknown = False, lazyFields = False, makeLenses = False}"

instance P'.TextType DtOp where
  tellT = P'.tellSubMessage
  getT = P'.getSubMessage

instance P'.TextMsg DtOp where
  textPut msg
   = do
       P'.tellT "counter_op" (counter_op msg)
       P'.tellT "set_op" (set_op msg)
       P'.tellT "map_op" (map_op msg)
  textGet
   = do
       mods <- P'.sepEndBy (P'.choice [parse'counter_op, parse'set_op, parse'map_op]) P'.spaces
       Prelude'.return (Prelude'.foldl (\ v f -> f v) P'.defaultValue mods)
    where
        parse'counter_op
         = P'.try
            (do
               v <- P'.getT "counter_op"
               Prelude'.return (\ o -> o{counter_op = v}))
        parse'set_op
         = P'.try
            (do
               v <- P'.getT "set_op"
               Prelude'.return (\ o -> o{set_op = v}))
        parse'map_op
         = P'.try
            (do
               v <- P'.getT "map_op"
               Prelude'.return (\ o -> o{map_op = v}))