// Generated by the protocol buffer compiler. DO NOT EDIT! // source: HardwareDancer.proto #ifndef PROTOBUF_HardwareDancer_2eproto__INCLUDED #define PROTOBUF_HardwareDancer_2eproto__INCLUDED #include #include #if GOOGLE_PROTOBUF_VERSION < 3004000 #error This file was generated by a newer version of protoc which is #error incompatible with your Protocol Buffer headers. Please update #error your headers. #endif #if 3004000 < GOOGLE_PROTOBUF_MIN_PROTOC_VERSION #error This file was generated by an older version of protoc which is #error incompatible with your Protocol Buffer headers. Please #error regenerate this file with a newer version of protoc. #endif #include #include #include #include #include #include #include #include // IWYU pragma: export #include // IWYU pragma: export #include #include "HardwareDancerType.pb.h" // @@protoc_insertion_point(includes) namespace Tango { namespace PMR { namespace Hardware { class HardwareDancer; class HardwareDancerDefaultTypeInternal; extern HardwareDancerDefaultTypeInternal _HardwareDancer_default_instance_; } // namespace Hardware } // namespace PMR } // namespace Tango namespace Tango { namespace PMR { namespace Hardware { namespace protobuf_HardwareDancer_2eproto { // Internal implementation detail -- do not call these. struct TableStruct { static const ::google::protobuf::internal::ParseTableField entries[]; static const ::google::protobuf::internal::AuxillaryParseTableField aux[]; static const ::google::protobuf::internal::ParseTable schema[]; static const ::google::protobuf::uint32 offsets[]; static const ::google::protobuf::internal::FieldMetadata field_metadata[]; static const ::google::protobuf::internal::SerializationTable serialization_table[]; static void InitDefaultsImpl(); }; void AddDescriptors(); void InitDefaults(); } // namespace protobuf_HardwareDancer_2eproto // =================================================================== class HardwareDancer : public ::google::protobuf::Message /* @@protoc_insertion_point(class_definition:Tango.PMR.Hardware.HardwareDancer) */ { public: HardwareDancer(); virtual ~HardwareDancer(); HardwareDancer(const HardwareDancer& from); inline HardwareDancer& operator=(const HardwareDancer& from) { CopyFrom(from); return *this; } #if LANG_CXX11 HardwareDancer(HardwareDancer&& from) noexcept : HardwareDancer() { *this = ::std::move(from); } inline HardwareDancer& operator=(HardwareDancer&& from) noexcept { if (GetArenaNoVirtual() == from.GetArenaNoVirtual()) { if (this != &from) InternalSwap(&from); } else { CopyFrom(from); } return *this; } #endif static const ::google::protobuf::Descriptor* descriptor(); static const HardwareDancer& default_instance(); static inline const HardwareDancer* internal_default_instance() { return reinterpret_cast( &_HardwareDancer_default_instance_); } static PROTOBUF_CONSTEXPR int const kIndexInFileMessages = 0; void Swap(HardwareDancer* other); friend void swap(HardwareDancer& a, HardwareDancer& b) { a.Swap(&b); } // implements Message ---------------------------------------------- inline HardwareDancer* New() const PROTOBUF_FINAL { return New(NULL); } HardwareDancer* New(::google::protobuf::Arena* arena) const PROTOBUF_FINAL; void CopyFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL; void MergeFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL; void CopyFrom(const HardwareDancer& from); void MergeFrom(const HardwareDancer& from); void Clear() PROTOBUF_FINAL; bool IsInitialized() const PROTOBUF_FINAL; size_t ByteSizeLong() const PROTOBUF_FINAL; bool MergePartialFromCodedStream( ::google::protobuf::io::CodedInputStream* input) PROTOBUF_FINAL; void SerializeWithCachedSizes( ::google::protobuf::io::CodedOutputStream* output) const PROTOBUF_FINAL; ::google::protobuf::uint8* InternalSerializeWithCachedSizesToArray( bool deterministic, ::google::protobuf::uint8* target) const PROTOBUF_FINAL; int GetCachedSize() const PROTOBUF_FINAL { return _cached_size_; } private: void SharedCtor(); void SharedDtor(); void SetCachedSize(int size) const PROTOBUF_FINAL; void InternalSwap(HardwareDancer* other); private: inline ::google::protobuf::Arena* GetArenaNoVirtual() const { return NULL; } inline void* MaybeArenaPtr() const { return NULL; } public: ::google::protobuf::Metadata GetMetadata() const PROTOBUF_FINAL; // nested types ---------------------------------------------------- // accessors ------------------------------------------------------- // .Tango.PMR.Hardware.HardwareDancerType HardwareDancerType = 1; void clear_hardwaredancertype(); static const int kHardwareDancerTypeFieldNumber = 1; ::Tango::PMR::Hardware::HardwareDancerType hardwaredancertype() const; void set_hardwaredancertype(::Tango::PMR::Hardware::HardwareDancerType value); // bool Gradual = 2; void clear_gradual(); static const int kGradualFieldNumber = 2; bool gradual() const; void set_gradual(bool value); // double K = 3; void clear_k(); static const int kKFieldNumber = 3; double k() const; void set_k(double value); // double X = 4; void clear_x(); static const int kXFieldNumber = 4; double x() const; void set_x(double value); // int32 PulsePerMmSpring = 5; void clear_pulsepermmspring(); static const int kPulsePerMmSpringFieldNumber = 5; ::google::protobuf::int32 pulsepermmspring() const; void set_pulsepermmspring(::google::protobuf::int32 value); // int32 MaximalMovementMm = 6; void clear_maximalmovementmm(); static const int kMaximalMovementMmFieldNumber = 6; ::google::protobuf::int32 maximalmovementmm() const; void set_maximalmovementmm(::google::protobuf::int32 value); // int32 ZeroPoint = 7; void clear_zeropoint(); static const int kZeroPointFieldNumber = 7; ::google::protobuf::int32 zeropoint() const; void set_zeropoint(::google::protobuf::int32 value); // int32 ResolutionBits = 8; void clear_resolutionbits(); static const int kResolutionBitsFieldNumber = 8; ::google::protobuf::int32 resolutionbits() const; void set_resolutionbits(::google::protobuf::int32 value); // int32 ArmLength = 9; void clear_armlength(); static const int kArmLengthFieldNumber = 9; ::google::protobuf::int32 armlength() const; void set_armlength(::google::protobuf::int32 value); // @@protoc_insertion_point(class_scope:Tango.PMR.Hardware.HardwareDancer) private: ::google::protobuf::internal::InternalMetadataWithArena _internal_metadata_; int hardwaredancertype_; bool gradual_; double k_; double x_; ::google::protobuf::int32 pulsepermmspring_; ::google::protobuf::int32 maximalmovementmm_; ::google::protobuf::int32 zeropoint_; ::google::protobuf::int32 resolutionbits_; ::google::protobuf::int32 armlength_; mutable int _cached_size_; friend struct protobuf_HardwareDancer_2eproto::TableStruct; }; // =================================================================== // =================================================================== #if !PROTOBUF_INLINE_NOT_IN_HEADERS #ifdef __GNUC__ #pragma GCC diagnostic push #pragma GCC diagnostic ignored "-Wstrict-aliasing" #endif // __GNUC__ // HardwareDancer // .Tango.PMR.Hardware.HardwareDancerType HardwareDancerType = 1; inline void HardwareDancer::clear_hardwaredancertype() { hardwaredancertype_ = 0; } inline ::Tango::PMR::Hardware::HardwareDancerType HardwareDancer::hardwaredancertype() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.HardwareDancerType) return static_cast< ::Tango::PMR::Hardware::HardwareDancerType >(hardwaredancertype_); } inline void HardwareDancer::set_hardwaredancertype(::Tango::PMR::Hardware::HardwareDancerType value) { hardwaredancertype_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.HardwareDancerType) } // bool Gradual = 2; inline void HardwareDancer::clear_gradual() { gradual_ = false; } inline bool HardwareDancer::gradual() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.Gradual) return gradual_; } inline void HardwareDancer::set_gradual(bool value) { gradual_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.Gradual) } // double K = 3; inline void HardwareDancer::clear_k() { k_ = 0; } inline double HardwareDancer::k() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.K) return k_; } inline void HardwareDancer::set_k(double value) { k_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.K) } // double X = 4; inline void HardwareDancer::clear_x() { x_ = 0; } inline double HardwareDancer::x() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.X) return x_; } inline void HardwareDancer::set_x(double value) { x_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.X) } // int32 PulsePerMmSpring = 5; inline void HardwareDancer::clear_pulsepermmspring() { pulsepermmspring_ = 0; } inline ::google::protobuf::int32 HardwareDancer::pulsepermmspring() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.PulsePerMmSpring) return pulsepermmspring_; } inline void HardwareDancer::set_pulsepermmspring(::google::protobuf::int32 value) { pulsepermmspring_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.PulsePerMmSpring) } // int32 MaximalMovementMm = 6; inline void HardwareDancer::clear_maximalmovementmm() { maximalmovementmm_ = 0; } inline ::google::protobuf::int32 HardwareDancer::maximalmovementmm() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.MaximalMovementMm) return maximalmovementmm_; } inline void HardwareDancer::set_maximalmovementmm(::google::protobuf::int32 value) { maximalmovementmm_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.MaximalMovementMm) } // int32 ZeroPoint = 7; inline void HardwareDancer::clear_zeropoint() { zeropoint_ = 0; } inline ::google::protobuf::int32 HardwareDancer::zeropoint() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.ZeroPoint) return zeropoint_; } inline void HardwareDancer::set_zeropoint(::google::protobuf::int32 value) { zeropoint_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.ZeroPoint) } // int32 ResolutionBits = 8; inline void HardwareDancer::clear_resolutionbits() { resolutionbits_ = 0; } inline ::google::protobuf::int32 HardwareDancer::resolutionbits() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.ResolutionBits) return resolutionbits_; } inline void HardwareDancer::set_resolutionbits(::google::protobuf::int32 value) { resolutionbits_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.ResolutionBits) } // int32 ArmLength = 9; inline void HardwareDancer::clear_armlength() { armlength_ = 0; } inline ::google::protobuf::int32 HardwareDancer::armlength() const { // @@protoc_insertion_point(field_get:Tango.PMR.Hardware.HardwareDancer.ArmLength) return armlength_; } inline void HardwareDancer::set_armlength(::google::protobuf::int32 value) { armlength_ = value; // @@protoc_insertion_point(field_set:Tango.PMR.Hardware.HardwareDancer.ArmLength) } #ifdef __GNUC__ #pragma GCC diagnostic pop #endif // __GNUC__ #endif // !PROTOBUF_INLINE_NOT_IN_HEADERS // @@protoc_insertion_point(namespace_scope) } // namespace Hardware } // namespace PMR } // namespace Tango // @@protoc_insertion_point(global_scope) #endif // PROTOBUF_HardwareDancer_2eproto__INCLUDED