Last-Modified: Tue, 28 Jul 2026 15:44:37 GMT Expires: Fri, 25 Jul 2036 15:44:37 GMT UploadHardwareConfigurationRequest.proto « Hardware « Messages « PMR « Software - Tango - Twine softwares
aboutsummaryrefslogtreecommitdiffstats
path: root/Software/PMR/Messages/Hardware/UploadHardwareConfigurationRequest.proto
blob: 93669c3274ecca5c0b088a01ed4fadb7ee83aa41 (plain)
1
2
3
4
5
6
7
8
9
10
11
// Generated by the protocol buffer compiler.  DO NOT EDIT!
// source: CalibrationData.proto

#ifndef PROTOBUF_CalibrationData_2eproto__INCLUDED
#define PROTOBUF_CalibrationData_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 "CalibrationPoint.pb.h"
#include "LiquidType.pb.h"
// @@protoc_insertion_point(includes)
namespace Tango {
namespace PMR {
namespace ColorLab {
class CalibrationData;
class CalibrationDataDefaultTypeInternal;
extern CalibrationDataDefaultTypeInternal _CalibrationData_default_instance_;
}  // namespace ColorLab
}  // namespace PMR
}  // namespace Tango

namespace Tango {
namespace PMR {
namespace ColorLab {

namespace protobuf_CalibrationData_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_CalibrationData_2eproto

// ===================================================================

class CalibrationData : public ::google::protobuf::Message /* @@protoc_insertion_point(class_definition:Tango.PMR.ColorLab.CalibrationData) */ {
 public:
  CalibrationData();
  virtual ~CalibrationData();

  CalibrationData(const CalibrationData& from);

  inline CalibrationData& operator=(const CalibrationData& from) {
    CopyFrom(from);
    return *this;
  }
  #if LANG_CXX11
  CalibrationData(CalibrationData&& from) noexcept
    : CalibrationData() {
    *this = ::std::move(from);
  }

  inline CalibrationData& operator=(CalibrationData&& 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 CalibrationData& default_instance();

  static inline const CalibrationData* internal_default_instance() {
    return reinterpret_cast<const CalibrationData*>(
               &_CalibrationData_default_instance_);
  }
  static PROTOBUF_CONSTEXPR int const kIndexInFileMessages =
    0;

  void Swap(CalibrationData* other);
  friend void swap(CalibrationData& a, CalibrationData& b) {
    a.Swap(&b);
  }

  // implements Message ----------------------------------------------

  inline CalibrationData* New() const PROTOBUF_FINAL { return New(NULL); }

  CalibrationData* 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 CalibrationData& from);
  void MergeFrom(const CalibrationData& 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(CalibrationData* 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 -------------------------------------------------------

  // repeated .Tango.PMR.ColorLab.CalibrationPoint CalibrationPoints = 2;
  int calibrationpoints_size() const;
  void clear_calibrationpoints();
  static const int kCalibrationPointsFieldNumber = 2;
  const ::Tango::PMR::ColorLab::CalibrationPoint& calibrationpoints(int index) const;
  ::Tango::PMR::ColorLab::CalibrationPoint* mutable_calibrationpoints(int index);
  ::Tango::PMR::ColorLab::CalibrationPoint* add_calibrationpoints();
  ::google::protobuf::RepeatedPtrField< ::Tango::PMR::ColorLab::CalibrationPoint >*
      mutable_calibrationpoints();
  const ::google::protobuf::RepeatedPtrField< ::Tango::PMR::ColorLab::CalibrationPoint >&
      calibrationpoints() const;

  // .Tango.PMR.ColorLab.LiquidType LiquidType = 1;
  void clear_liquidtype();
  static const int kLiquidTypeFieldNumber = 1;
  ::Tango::PMR::ColorLab::LiquidType liquidtype() const;
  void set_liquidtype(::Tango::PMR::ColorLab::LiquidType value);

  // @@protoc_insertion_point(class_scope:Tango.PMR.ColorLab.CalibrationData)
 private:

  ::google::protobuf::internal::InternalMetadataWithArena _internal_metadata_;
  ::google::protobuf::RepeatedPtrField< ::Tango::PMR::ColorLab::CalibrationPoint > calibrationpoints_;
  int liquidtype_;
  mutable int _cached_size_;
  friend struct protobuf_CalibrationData_2eproto::TableStruct;
};
// ===================================================================


// ===================================================================

#if !PROTOBUF_INLINE_NOT_IN_HEADERS
#ifdef __GNUC__
  #pragma GCC diagnostic push
  #pragma GCC diagnostic ignored "-Wstrict-aliasing"
#endif  // __GNUC__
// CalibrationData

// .Tango.PMR.ColorLab.LiquidType LiquidType = 1;
inline void CalibrationData::clear_liquidtype() {
  liquidtype_ = 0;
}
inline ::Tango::PMR::ColorLab::LiquidType CalibrationData::liquidtype() const {
  // @@protoc_insertion_point(field_get:Tango.PMR.ColorLab.CalibrationData.LiquidType)
  return static_cast< ::Tango::PMR::ColorLab::LiquidType >(liquidtype_);
}
inline void CalibrationData::set_liquidtype(::Tango::PMR::ColorLab::LiquidType value) {
  
  liquidtype_ = value;
  // @@protoc_insertion_point(field_set:Tango.PMR.ColorLab.CalibrationData.LiquidType)
}

// repeated .Tango.PMR.ColorLab.CalibrationPoint CalibrationPoints = 2;
inline int CalibrationData::calibrationpoints_size() const {
  return calibrationpoints_.size();
}
inline void CalibrationData::clear_calibrationpoints() {
  calibrationpoints_.Clear();
}
inline const ::Tango::PMR::ColorLab::CalibrationPoint& CalibrationData::calibrationpoints(int index) const {
  // @@protoc_insertion_point(field_get:Tango.PMR.ColorLab.CalibrationData.CalibrationPoints)
  return calibrationpoints_.Get(index);
}
inline ::Tango::PMR::ColorLab::CalibrationPoint* CalibrationData::mutable_calibrationpoints(int index) {
  // @@protoc_insertion_point(field_mutable:Tango.PMR.ColorLab.CalibrationData.CalibrationPoints)
  return calibrationpoints_.Mutable(index);
}
inline ::Tango::PMR::ColorLab::CalibrationPoint* CalibrationData::add_calibrationpoints() {
  // @@protoc_insertion_point(field_add:Tango.PMR.ColorLab.CalibrationData.CalibrationPoints)
  return calibrationpoints_.Add();
}
inline ::google::protobuf::RepeatedPtrField< ::Tango::PMR::ColorLab::CalibrationPoint >*
CalibrationData::mutable_calibrationpoints() {
  // @@protoc_insertion_point(field_mutable_list:Tango.PMR.ColorLab.CalibrationData.CalibrationPoints)
  return &calibrationpoints_;
}
inline const ::google::protobuf::RepeatedPtrField< ::Tango::PMR::ColorLab::CalibrationPoint >&
CalibrationData::calibrationpoints() const {
  // @@protoc_insertion_point(field_list:Tango.PMR.ColorLab.CalibrationData.CalibrationPoints)
  return calibrationpoints_;
}

#ifdef __GNUC__
  #pragma GCC diagnostic pop
#endif  // __GNUC__
#endif  // !PROTOBUF_INLINE_NOT_IN_HEADERS

// @@protoc_insertion_point(namespace_scope)


}  // namespace ColorLab
}  // namespace PMR
}  // namespace Tango

// @@protoc_insertion_point(global_scope)

#endif  // PROTOBUF_CalibrationData_2eproto__INCLUDED