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// Generated by the protocol buffer compiler. DO NOT EDIT!
// source: HardwareDancer.proto
#ifndef PROTOBUF_HardwareDancer_2eproto__INCLUDED
#define PROTOBUF_HardwareDancer_2eproto__INCLUDED
#include <string>
#include <google/protobuf/stubs/common.h>
#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 <google/protobuf/io/coded_stream.h>
#include <google/protobuf/arena.h>
#include <google/protobuf/arenastring.h>
#include <google/protobuf/generated_message_table_driven.h>
#include <google/protobuf/generated_message_util.h>
#include <google/protobuf/metadata.h>
#include <google/protobuf/message.h>
#include <google/protobuf/repeated_field.h> // IWYU pragma: export
#include <google/protobuf/extension_set.h> // IWYU pragma: export
#include <google/protobuf/unknown_field_set.h>
#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<const HardwareDancer*>(
&_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
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