{-# LANGUAGE BangPatterns, DeriveDataTypeable, DeriveGeneric, FlexibleInstances, MultiParamTypeClasses, OverloadedStrings #-} {-# OPTIONS_GHC -fno-warn-unused-imports #-} module Network.Riak.Protocol.TsRange (TsRange(..)) 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' data TsRange = TsRange{field_name :: !(P'.ByteString), lower_bound :: !(P'.Int64), lower_bound_inclusive :: !(P'.Bool), upper_bound :: !(P'.Int64), upper_bound_inclusive :: !(P'.Bool), desc :: !(P'.ByteString)} deriving (Prelude'.Show, Prelude'.Eq, Prelude'.Ord, Prelude'.Typeable, Prelude'.Data, Prelude'.Generic) instance P'.Mergeable TsRange where mergeAppend (TsRange x'1 x'2 x'3 x'4 x'5 x'6) (TsRange y'1 y'2 y'3 y'4 y'5 y'6) = TsRange (P'.mergeAppend x'1 y'1) (P'.mergeAppend x'2 y'2) (P'.mergeAppend x'3 y'3) (P'.mergeAppend x'4 y'4) (P'.mergeAppend x'5 y'5) (P'.mergeAppend x'6 y'6) instance P'.Default TsRange where defaultValue = TsRange P'.defaultValue P'.defaultValue P'.defaultValue P'.defaultValue P'.defaultValue P'.defaultValue instance P'.Wire TsRange where wireSize ft' self'@(TsRange x'1 x'2 x'3 x'4 x'5 x'6) = case ft' of 10 -> calc'Size 11 -> P'.prependMessageSize calc'Size _ -> P'.wireSizeErr ft' self' where calc'Size = (P'.wireSizeReq 1 12 x'1 + P'.wireSizeReq 1 18 x'2 + P'.wireSizeReq 1 8 x'3 + P'.wireSizeReq 1 18 x'4 + P'.wireSizeReq 1 8 x'5 + P'.wireSizeReq 1 12 x'6) wirePutWithSize ft' self'@(TsRange x'1 x'2 x'3 x'4 x'5 x'6) = case ft' of 10 -> put'Fields 11 -> put'FieldsSized _ -> P'.wirePutErr ft' self' where put'Fields = P'.sequencePutWithSize [P'.wirePutReqWithSize 10 12 x'1, P'.wirePutReqWithSize 16 18 x'2, P'.wirePutReqWithSize 24 8 x'3, P'.wirePutReqWithSize 32 18 x'4, P'.wirePutReqWithSize 40 8 x'5, P'.wirePutReqWithSize 50 12 x'6] put'FieldsSized = let size' = Prelude'.fst (P'.runPutM put'Fields) put'Size = do P'.putSize size' Prelude'.return (P'.size'WireSize size') in P'.sequencePutWithSize [put'Size, put'Fields] wireGet ft' = case ft' of 10 -> P'.getBareMessageWith (P'.catch'Unknown' P'.discardUnknown update'Self) 11 -> P'.getMessageWith (P'.catch'Unknown' P'.discardUnknown update'Self) _ -> P'.wireGetErr ft' where update'Self wire'Tag old'Self = case wire'Tag of 10 -> Prelude'.fmap (\ !new'Field -> old'Self{field_name = new'Field}) (P'.wireGet 12) 16 -> Prelude'.fmap (\ !new'Field -> old'Self{lower_bound = new'Field}) (P'.wireGet 18) 24 -> Prelude'.fmap (\ !new'Field -> old'Self{lower_bound_inclusive = new'Field}) (P'.wireGet 8) 32 -> Prelude'.fmap (\ !new'Field -> old'Self{upper_bound = new'Field}) (P'.wireGet 18) 40 -> Prelude'.fmap (\ !new'Field -> old'Self{upper_bound_inclusive = new'Field}) (P'.wireGet 8) 50 -> Prelude'.fmap (\ !new'Field -> old'Self{desc = new'Field}) (P'.wireGet 12) _ -> let (field'Number, wire'Type) = P'.splitWireTag wire'Tag in P'.unknown field'Number wire'Type old'Self instance P'.MessageAPI msg' (msg' -> TsRange) TsRange where getVal m' f' = f' m' instance P'.GPB TsRange instance P'.ReflectDescriptor TsRange where getMessageInfo _ = P'.GetMessageInfo (P'.fromDistinctAscList [10, 16, 24, 32, 40, 50]) (P'.fromDistinctAscList [10, 16, 24, 32, 40, 50]) reflectDescriptorInfo _ = Prelude'.read "DescriptorInfo {descName = ProtoName {protobufName = FIName \".Protocol.TsRange\", haskellPrefix = [MName \"Network\",MName \"Riak\"], parentModule = [MName \"Protocol\"], baseName = MName \"TsRange\"}, descFilePath = [\"Network\",\"Riak\",\"Protocol\",\"TsRange.hs\"], isGroup = False, fields = fromList [FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.field_name\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"field_name\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 1}, wireTag = WireTag {getWireTag = 10}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 12}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.lower_bound\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"lower_bound\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 2}, wireTag = WireTag {getWireTag = 16}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 18}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.lower_bound_inclusive\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"lower_bound_inclusive\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 3}, wireTag = WireTag {getWireTag = 24}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 8}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.upper_bound\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"upper_bound\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 4}, wireTag = WireTag {getWireTag = 32}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 18}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.upper_bound_inclusive\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"upper_bound_inclusive\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 5}, wireTag = WireTag {getWireTag = 40}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 8}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing},FieldInfo {fieldName = ProtoFName {protobufName' = FIName \".Protocol.TsRange.desc\", haskellPrefix' = [MName \"Network\",MName \"Riak\"], parentModule' = [MName \"Protocol\",MName \"TsRange\"], baseName' = FName \"desc\", baseNamePrefix' = \"\"}, fieldNumber = FieldId {getFieldId = 6}, wireTag = WireTag {getWireTag = 50}, packedTag = Nothing, wireTagLength = 1, isPacked = False, isRequired = True, canRepeat = False, mightPack = False, typeCode = FieldType {getFieldType = 12}, typeName = Nothing, hsRawDefault = Nothing, hsDefault = Nothing}], descOneofs = fromList [], keys = fromList [], extRanges = [], knownKeys = fromList [], storeUnknown = False, lazyFields = False, makeLenses = False, jsonInstances = False}" instance P'.TextType TsRange where tellT = P'.tellSubMessage getT = P'.getSubMessage instance P'.TextMsg TsRange where textPut msg = do P'.tellT "field_name" (field_name msg) P'.tellT "lower_bound" (lower_bound msg) P'.tellT "lower_bound_inclusive" (lower_bound_inclusive msg) P'.tellT "upper_bound" (upper_bound msg) P'.tellT "upper_bound_inclusive" (upper_bound_inclusive msg) P'.tellT "desc" (desc msg) textGet = do mods <- P'.sepEndBy (P'.choice [parse'field_name, parse'lower_bound, parse'lower_bound_inclusive, parse'upper_bound, parse'upper_bound_inclusive, parse'desc]) P'.spaces Prelude'.return (Prelude'.foldl (\ v f -> f v) P'.defaultValue mods) where parse'field_name = P'.try (do v <- P'.getT "field_name" Prelude'.return (\ o -> o{field_name = v})) parse'lower_bound = P'.try (do v <- P'.getT "lower_bound" Prelude'.return (\ o -> o{lower_bound = v})) parse'lower_bound_inclusive = P'.try (do v <- P'.getT "lower_bound_inclusive" Prelude'.return (\ o -> o{lower_bound_inclusive = v})) parse'upper_bound = P'.try (do v <- P'.getT "upper_bound" Prelude'.return (\ o -> o{upper_bound = v})) parse'upper_bound_inclusive = P'.try (do v <- P'.getT "upper_bound_inclusive" Prelude'.return (\ o -> o{upper_bound_inclusive = v})) parse'desc = P'.try (do v <- P'.getT "desc" Prelude'.return (\ o -> o{desc = v}))