// Generated by the protocol buffer compiler.  DO NOT EDIT!
// source: keyapis/iot_connect_sber/v1/keyapis_iot_connect_command_v1.proto

#include "keyapis/iot_connect_sber/v1/keyapis_iot_connect_command_v1.pb.h"

#include <algorithm>
#include "google/protobuf/io/coded_stream.h"
#include "google/protobuf/extension_set.h"
#include "google/protobuf/wire_format_lite.h"
#include "google/protobuf/io/zero_copy_stream_impl_lite.h"
// @@protoc_insertion_point(includes)

// Must be included last.
#include "google/protobuf/port_def.inc"
PROTOBUF_PRAGMA_INIT_SEG
namespace _pb = ::PROTOBUF_NAMESPACE_ID;
namespace _pbi = ::PROTOBUF_NAMESPACE_ID::internal;
namespace keyapis {
namespace iot_connect_sber {
namespace v1 {
template <typename>
PROTOBUF_CONSTEXPR DeviceCommandArray::DeviceCommandArray(
    ::_pbi::ConstantInitialized): _impl_{
    /*decltype(_impl_.states_)*/{}
  , /*decltype(_impl_._cached_size_)*/{}} {}
struct DeviceCommandArrayDefaultTypeInternal {
  PROTOBUF_CONSTEXPR DeviceCommandArrayDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~DeviceCommandArrayDefaultTypeInternal() {}
  union {
    DeviceCommandArray _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 DeviceCommandArrayDefaultTypeInternal _DeviceCommandArray_default_instance_;
template <typename>
PROTOBUF_CONSTEXPR DeviceCommand_Value::DeviceCommand_Value(
    ::_pbi::ConstantInitialized): _impl_{
    /*decltype(_impl_.type_)*/ 0

  , /*decltype(_impl_.value_)*/{}
  , /*decltype(_impl_._cached_size_)*/{}
  , /*decltype(_impl_._oneof_case_)*/{}} {}
struct DeviceCommand_ValueDefaultTypeInternal {
  PROTOBUF_CONSTEXPR DeviceCommand_ValueDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~DeviceCommand_ValueDefaultTypeInternal() {}
  union {
    DeviceCommand_Value _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 DeviceCommand_ValueDefaultTypeInternal _DeviceCommand_Value_default_instance_;
template <typename>
PROTOBUF_CONSTEXPR DeviceCommand::DeviceCommand(
    ::_pbi::ConstantInitialized): _impl_{
    /*decltype(_impl_._has_bits_)*/{}
  , /*decltype(_impl_._cached_size_)*/{}
  , /*decltype(_impl_.value_)*/nullptr
  , /*decltype(_impl_.command_key_type_)*/ 0
} {}
struct DeviceCommandDefaultTypeInternal {
  PROTOBUF_CONSTEXPR DeviceCommandDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~DeviceCommandDefaultTypeInternal() {}
  union {
    DeviceCommand _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 DeviceCommandDefaultTypeInternal _DeviceCommand_default_instance_;
template <typename>
PROTOBUF_CONSTEXPR PostCommandRequest_DevicesEntry_DoNotUse::PostCommandRequest_DevicesEntry_DoNotUse(
    ::_pbi::ConstantInitialized) {}
struct PostCommandRequest_DevicesEntry_DoNotUseDefaultTypeInternal {
  PROTOBUF_CONSTEXPR PostCommandRequest_DevicesEntry_DoNotUseDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~PostCommandRequest_DevicesEntry_DoNotUseDefaultTypeInternal() {}
  union {
    PostCommandRequest_DevicesEntry_DoNotUse _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 PostCommandRequest_DevicesEntry_DoNotUseDefaultTypeInternal _PostCommandRequest_DevicesEntry_DoNotUse_default_instance_;
template <typename>
PROTOBUF_CONSTEXPR PostCommandRequest::PostCommandRequest(
    ::_pbi::ConstantInitialized): _impl_{
    /*decltype(_impl_.devices_)*/{}
  , /*decltype(_impl_._cached_size_)*/{}} {}
struct PostCommandRequestDefaultTypeInternal {
  PROTOBUF_CONSTEXPR PostCommandRequestDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~PostCommandRequestDefaultTypeInternal() {}
  union {
    PostCommandRequest _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 PostCommandRequestDefaultTypeInternal _PostCommandRequest_default_instance_;
template <typename>
PROTOBUF_CONSTEXPR PostCommandResponse::PostCommandResponse(
    ::_pbi::ConstantInitialized): _impl_{
    /*decltype(_impl_._cached_size_)*/{}} {}
struct PostCommandResponseDefaultTypeInternal {
  PROTOBUF_CONSTEXPR PostCommandResponseDefaultTypeInternal() : _instance(::_pbi::ConstantInitialized{}) {}
  ~PostCommandResponseDefaultTypeInternal() {}
  union {
    PostCommandResponse _instance;
  };
};

PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT
    PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 PostCommandResponseDefaultTypeInternal _PostCommandResponse_default_instance_;
}  // namespace v1
}  // namespace iot_connect_sber
}  // namespace keyapis
namespace keyapis {
namespace iot_connect_sber {
namespace v1 {
bool DeviceCommand_Value_Type_IsValid(int value) {
  switch (value) {
    case 0:
    case 1:
      return true;
    default:
      return false;
  }
}
static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<std::string>
    DeviceCommand_Value_Type_strings[2] = {};

static const char DeviceCommand_Value_Type_names[] = {
    "ENUM"
    "TYPE_UNKNOWN"
};

static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry DeviceCommand_Value_Type_entries[] =
    {
        {{&DeviceCommand_Value_Type_names[0], 4}, 1},
        {{&DeviceCommand_Value_Type_names[4], 12}, 0},
};

static const int DeviceCommand_Value_Type_entries_by_number[] = {
    1,  // 0 -> TYPE_UNKNOWN
    0,  // 1 -> ENUM
};

const std::string& DeviceCommand_Value_Type_Name(DeviceCommand_Value_Type value) {
  static const bool kDummy =
      ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings(
          DeviceCommand_Value_Type_entries, DeviceCommand_Value_Type_entries_by_number,
          2, DeviceCommand_Value_Type_strings);
  (void)kDummy;

  int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName(
      DeviceCommand_Value_Type_entries, DeviceCommand_Value_Type_entries_by_number, 2,
      value);
  return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString()
                   : DeviceCommand_Value_Type_strings[idx].get();
}

bool DeviceCommand_Value_Type_Parse(absl::string_view name, DeviceCommand_Value_Type* value) {
  int int_value;
  bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue(
      DeviceCommand_Value_Type_entries, 2, name, &int_value);
  if (success) {
    *value = static_cast<DeviceCommand_Value_Type>(int_value);
  }
  return success;
}
#if (__cplusplus < 201703) && \
  (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))

constexpr DeviceCommand_Value_Type DeviceCommand_Value::TYPE_UNKNOWN;
constexpr DeviceCommand_Value_Type DeviceCommand_Value::ENUM;
constexpr DeviceCommand_Value_Type DeviceCommand_Value::Type_MIN;
constexpr DeviceCommand_Value_Type DeviceCommand_Value::Type_MAX;
constexpr int DeviceCommand_Value::Type_ARRAYSIZE;

#endif  // (__cplusplus < 201703) &&
        // (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))
bool DeviceCommand_Value_ValueEnumType_IsValid(int value) {
  switch (value) {
    case 0:
    case 1:
    case 2:
      return true;
    default:
      return false;
  }
}
static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<std::string>
    DeviceCommand_Value_ValueEnumType_strings[3] = {};

static const char DeviceCommand_Value_ValueEnumType_names[] = {
    "REJECT"
    "UNLOCK"
    "VALUE_ENUM_TYPE_UNKNOWN"
};

static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry DeviceCommand_Value_ValueEnumType_entries[] =
    {
        {{&DeviceCommand_Value_ValueEnumType_names[0], 6}, 1},
        {{&DeviceCommand_Value_ValueEnumType_names[6], 6}, 2},
        {{&DeviceCommand_Value_ValueEnumType_names[12], 23}, 0},
};

static const int DeviceCommand_Value_ValueEnumType_entries_by_number[] = {
    2,  // 0 -> VALUE_ENUM_TYPE_UNKNOWN
    0,  // 1 -> REJECT
    1,  // 2 -> UNLOCK
};

const std::string& DeviceCommand_Value_ValueEnumType_Name(DeviceCommand_Value_ValueEnumType value) {
  static const bool kDummy =
      ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings(
          DeviceCommand_Value_ValueEnumType_entries, DeviceCommand_Value_ValueEnumType_entries_by_number,
          3, DeviceCommand_Value_ValueEnumType_strings);
  (void)kDummy;

  int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName(
      DeviceCommand_Value_ValueEnumType_entries, DeviceCommand_Value_ValueEnumType_entries_by_number, 3,
      value);
  return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString()
                   : DeviceCommand_Value_ValueEnumType_strings[idx].get();
}

bool DeviceCommand_Value_ValueEnumType_Parse(absl::string_view name, DeviceCommand_Value_ValueEnumType* value) {
  int int_value;
  bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue(
      DeviceCommand_Value_ValueEnumType_entries, 3, name, &int_value);
  if (success) {
    *value = static_cast<DeviceCommand_Value_ValueEnumType>(int_value);
  }
  return success;
}
#if (__cplusplus < 201703) && \
  (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))

constexpr DeviceCommand_Value_ValueEnumType DeviceCommand_Value::VALUE_ENUM_TYPE_UNKNOWN;
constexpr DeviceCommand_Value_ValueEnumType DeviceCommand_Value::REJECT;
constexpr DeviceCommand_Value_ValueEnumType DeviceCommand_Value::UNLOCK;
constexpr DeviceCommand_Value_ValueEnumType DeviceCommand_Value::ValueEnumType_MIN;
constexpr DeviceCommand_Value_ValueEnumType DeviceCommand_Value::ValueEnumType_MAX;
constexpr int DeviceCommand_Value::ValueEnumType_ARRAYSIZE;

#endif  // (__cplusplus < 201703) &&
        // (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))
bool DeviceCommand_KeyType_IsValid(int value) {
  switch (value) {
    case 0:
    case 1:
    case 2:
      return true;
    default:
      return false;
  }
}
static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<std::string>
    DeviceCommand_KeyType_strings[3] = {};

static const char DeviceCommand_KeyType_names[] = {
    "KEY_TYPE_UNKNOWN"
    "REJECT_CALL"
    "UNLOCK"
};

static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry DeviceCommand_KeyType_entries[] =
    {
        {{&DeviceCommand_KeyType_names[0], 16}, 0},
        {{&DeviceCommand_KeyType_names[16], 11}, 1},
        {{&DeviceCommand_KeyType_names[27], 6}, 2},
};

static const int DeviceCommand_KeyType_entries_by_number[] = {
    0,  // 0 -> KEY_TYPE_UNKNOWN
    1,  // 1 -> REJECT_CALL
    2,  // 2 -> UNLOCK
};

const std::string& DeviceCommand_KeyType_Name(DeviceCommand_KeyType value) {
  static const bool kDummy =
      ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings(
          DeviceCommand_KeyType_entries, DeviceCommand_KeyType_entries_by_number,
          3, DeviceCommand_KeyType_strings);
  (void)kDummy;

  int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName(
      DeviceCommand_KeyType_entries, DeviceCommand_KeyType_entries_by_number, 3,
      value);
  return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString()
                   : DeviceCommand_KeyType_strings[idx].get();
}

bool DeviceCommand_KeyType_Parse(absl::string_view name, DeviceCommand_KeyType* value) {
  int int_value;
  bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue(
      DeviceCommand_KeyType_entries, 3, name, &int_value);
  if (success) {
    *value = static_cast<DeviceCommand_KeyType>(int_value);
  }
  return success;
}
#if (__cplusplus < 201703) && \
  (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))

constexpr DeviceCommand_KeyType DeviceCommand::KEY_TYPE_UNKNOWN;
constexpr DeviceCommand_KeyType DeviceCommand::REJECT_CALL;
constexpr DeviceCommand_KeyType DeviceCommand::UNLOCK;
constexpr DeviceCommand_KeyType DeviceCommand::KeyType_MIN;
constexpr DeviceCommand_KeyType DeviceCommand::KeyType_MAX;
constexpr int DeviceCommand::KeyType_ARRAYSIZE;

#endif  // (__cplusplus < 201703) &&
        // (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912))
// ===================================================================

class DeviceCommandArray::_Internal {
 public:
};

DeviceCommandArray::DeviceCommandArray(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena) {
  SharedCtor(arena);
  // @@protoc_insertion_point(arena_constructor:keyapis.iot_connect_sber.v1.DeviceCommandArray)
}
DeviceCommandArray::DeviceCommandArray(const DeviceCommandArray& from)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite() {
  DeviceCommandArray* const _this = this; (void)_this;
  new (&_impl_) Impl_{
      decltype(_impl_.states_){from._impl_.states_}
    , /*decltype(_impl_._cached_size_)*/{}};

  _internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
  // @@protoc_insertion_point(copy_constructor:keyapis.iot_connect_sber.v1.DeviceCommandArray)
}

inline void DeviceCommandArray::SharedCtor(::_pb::Arena* arena) {
  (void)arena;
  new (&_impl_) Impl_{
      decltype(_impl_.states_){arena}
    , /*decltype(_impl_._cached_size_)*/{}
  };
}

DeviceCommandArray::~DeviceCommandArray() {
  // @@protoc_insertion_point(destructor:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  if (auto *arena = _internal_metadata_.DeleteReturnArena<std::string>()) {
  (void)arena;
    return;
  }
  SharedDtor();
}

inline void DeviceCommandArray::SharedDtor() {
  ABSL_DCHECK(GetArenaForAllocation() == nullptr);
  _internal_mutable_states()->~RepeatedPtrField();
}

void DeviceCommandArray::SetCachedSize(int size) const {
  _impl_._cached_size_.Set(size);
}

void DeviceCommandArray::Clear() {
// @@protoc_insertion_point(message_clear_start:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  _internal_mutable_states()->Clear();
  _internal_metadata_.Clear<std::string>();
}

const char* DeviceCommandArray::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  while (!ctx->Done(&ptr)) {
    ::uint32_t tag;
    ptr = ::_pbi::ReadTag(ptr, &tag);
    switch (tag >> 3) {
      // repeated .keyapis.iot_connect_sber.v1.DeviceCommand states = 1;
      case 1:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 10)) {
          ptr -= 1;
          do {
            ptr += 1;
            ptr = ctx->ParseMessage(_internal_add_states(), ptr);
            CHK_(ptr);
            if (!ctx->DataAvailable(ptr)) break;
          } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr));
        } else {
          goto handle_unusual;
        }
        continue;
      default:
        goto handle_unusual;
    }  // switch
  handle_unusual:
    if ((tag == 0) || ((tag & 7) == 4)) {
      CHK_(ptr);
      ctx->SetLastTag(tag);
      goto message_done;
    }
    ptr = UnknownFieldParse(
        tag,
        _internal_metadata_.mutable_unknown_fields<std::string>(),
        ptr, ctx);
    CHK_(ptr != nullptr);
  }  // while
message_done:
  return ptr;
failure:
  ptr = nullptr;
  goto message_done;
#undef CHK_
}

::uint8_t* DeviceCommandArray::_InternalSerialize(
    ::uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  // @@protoc_insertion_point(serialize_to_array_start:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  // repeated .keyapis.iot_connect_sber.v1.DeviceCommand states = 1;
  for (unsigned i = 0,
      n = static_cast<unsigned>(this->_internal_states_size()); i < n; i++) {
    const auto& repfield = this->_internal_states(i);
    target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
        InternalWriteMessage(1, repfield, repfield.GetCachedSize(), target, stream);
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    target = stream->WriteRaw(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(),
        static_cast<int>(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target);
  }
  // @@protoc_insertion_point(serialize_to_array_end:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  return target;
}

::size_t DeviceCommandArray::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  ::size_t total_size = 0;

  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  // repeated .keyapis.iot_connect_sber.v1.DeviceCommand states = 1;
  total_size += 1UL * this->_internal_states_size();
  for (const auto& msg : this->_internal_states()) {
    total_size +=
      ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    total_size += _internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size();
  }
  int cached_size = ::_pbi::ToCachedSize(total_size);
  SetCachedSize(cached_size);
  return total_size;
}

void DeviceCommandArray::CheckTypeAndMergeFrom(
    const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) {
  MergeFrom(*::_pbi::DownCast<const DeviceCommandArray*>(
      &from));
}

void DeviceCommandArray::MergeFrom(const DeviceCommandArray& from) {
  DeviceCommandArray* const _this = this;
  // @@protoc_insertion_point(class_specific_merge_from_start:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  ABSL_DCHECK_NE(&from, _this);
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  _this->_internal_mutable_states()->MergeFrom(from._internal_states());
  _this->_internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
}

void DeviceCommandArray::CopyFrom(const DeviceCommandArray& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:keyapis.iot_connect_sber.v1.DeviceCommandArray)
  if (&from == this) return;
  Clear();
  MergeFrom(from);
}

bool DeviceCommandArray::IsInitialized() const {
  return true;
}

void DeviceCommandArray::InternalSwap(DeviceCommandArray* other) {
  using std::swap;
  _internal_metadata_.InternalSwap(&other->_internal_metadata_);
  _internal_mutable_states()->InternalSwap(other->_internal_mutable_states());
}

std::string DeviceCommandArray::GetTypeName() const {
  return "keyapis.iot_connect_sber.v1.DeviceCommandArray";
}

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

class DeviceCommand_Value::_Internal {
 public:
  static constexpr ::int32_t kOneofCaseOffset =
    PROTOBUF_FIELD_OFFSET(::keyapis::iot_connect_sber::v1::DeviceCommand_Value, _impl_._oneof_case_);
};

DeviceCommand_Value::DeviceCommand_Value(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena) {
  SharedCtor(arena);
  // @@protoc_insertion_point(arena_constructor:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
}
DeviceCommand_Value::DeviceCommand_Value(const DeviceCommand_Value& from)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite() {
  DeviceCommand_Value* const _this = this; (void)_this;
  new (&_impl_) Impl_{
      decltype(_impl_.type_) {}

    , decltype(_impl_.value_){}
    , /*decltype(_impl_._cached_size_)*/{}
    , /*decltype(_impl_._oneof_case_)*/{}};

  _internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
  _this->_impl_.type_ = from._impl_.type_;
  clear_has_value();
  switch (from.value_case()) {
    case kValueEnumType: {
      _this->_internal_set_value_enum_type(from._internal_value_enum_type());
      break;
    }
    case VALUE_NOT_SET: {
      break;
    }
  }
  // @@protoc_insertion_point(copy_constructor:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
}

inline void DeviceCommand_Value::SharedCtor(::_pb::Arena* arena) {
  (void)arena;
  new (&_impl_) Impl_{
      decltype(_impl_.type_) { 0 }

    , decltype(_impl_.value_){}
    , /*decltype(_impl_._cached_size_)*/{}
    , /*decltype(_impl_._oneof_case_)*/{}
  };
  clear_has_value();
}

DeviceCommand_Value::~DeviceCommand_Value() {
  // @@protoc_insertion_point(destructor:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  if (auto *arena = _internal_metadata_.DeleteReturnArena<std::string>()) {
  (void)arena;
    return;
  }
  SharedDtor();
}

inline void DeviceCommand_Value::SharedDtor() {
  ABSL_DCHECK(GetArenaForAllocation() == nullptr);
  if (has_value()) {
    clear_value();
  }
}

void DeviceCommand_Value::SetCachedSize(int size) const {
  _impl_._cached_size_.Set(size);
}

void DeviceCommand_Value::clear_value() {
// @@protoc_insertion_point(one_of_clear_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  switch (value_case()) {
    case kValueEnumType: {
      // No need to clear
      break;
    }
    case VALUE_NOT_SET: {
      break;
    }
  }
  _impl_._oneof_case_[0] = VALUE_NOT_SET;
}


void DeviceCommand_Value::Clear() {
// @@protoc_insertion_point(message_clear_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  _impl_.type_ = 0;
  clear_value();
  _internal_metadata_.Clear<std::string>();
}

const char* DeviceCommand_Value::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  while (!ctx->Done(&ptr)) {
    ::uint32_t tag;
    ptr = ::_pbi::ReadTag(ptr, &tag);
    switch (tag >> 3) {
      // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.Type type = 1;
      case 1:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 8)) {
          ::int32_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr);
          CHK_(ptr);
          _internal_set_type(static_cast<::keyapis::iot_connect_sber::v1::DeviceCommand_Value_Type>(val));
        } else {
          goto handle_unusual;
        }
        continue;
      // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.ValueEnumType value_enum_type = 2 [json_name = "enum_value"];
      case 2:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 16)) {
          ::int32_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr);
          CHK_(ptr);
          _internal_set_value_enum_type(static_cast<::keyapis::iot_connect_sber::v1::DeviceCommand_Value_ValueEnumType>(val));
        } else {
          goto handle_unusual;
        }
        continue;
      default:
        goto handle_unusual;
    }  // switch
  handle_unusual:
    if ((tag == 0) || ((tag & 7) == 4)) {
      CHK_(ptr);
      ctx->SetLastTag(tag);
      goto message_done;
    }
    ptr = UnknownFieldParse(
        tag,
        _internal_metadata_.mutable_unknown_fields<std::string>(),
        ptr, ctx);
    CHK_(ptr != nullptr);
  }  // while
message_done:
  return ptr;
failure:
  ptr = nullptr;
  goto message_done;
#undef CHK_
}

::uint8_t* DeviceCommand_Value::_InternalSerialize(
    ::uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  // @@protoc_insertion_point(serialize_to_array_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.Type type = 1;
  if (this->_internal_type() != 0) {
    target = stream->EnsureSpace(target);
    target = ::_pbi::WireFormatLite::WriteEnumToArray(
        1, this->_internal_type(), target);
  }

  // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.ValueEnumType value_enum_type = 2 [json_name = "enum_value"];
  if (value_case() == kValueEnumType) {
    target = stream->EnsureSpace(target);
    target = ::_pbi::WireFormatLite::WriteEnumToArray(
        2, this->_internal_value_enum_type(), target);
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    target = stream->WriteRaw(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(),
        static_cast<int>(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target);
  }
  // @@protoc_insertion_point(serialize_to_array_end:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  return target;
}

::size_t DeviceCommand_Value::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  ::size_t total_size = 0;

  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.Type type = 1;
  if (this->_internal_type() != 0) {
    total_size += 1 +
                  ::_pbi::WireFormatLite::EnumSize(this->_internal_type());
  }

  switch (value_case()) {
    // .keyapis.iot_connect_sber.v1.DeviceCommand.Value.ValueEnumType value_enum_type = 2 [json_name = "enum_value"];
    case kValueEnumType: {
      total_size += 1 +
                    ::_pbi::WireFormatLite::EnumSize(this->_internal_value_enum_type());
      break;
    }
    case VALUE_NOT_SET: {
      break;
    }
  }
  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    total_size += _internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size();
  }
  int cached_size = ::_pbi::ToCachedSize(total_size);
  SetCachedSize(cached_size);
  return total_size;
}

void DeviceCommand_Value::CheckTypeAndMergeFrom(
    const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) {
  MergeFrom(*::_pbi::DownCast<const DeviceCommand_Value*>(
      &from));
}

void DeviceCommand_Value::MergeFrom(const DeviceCommand_Value& from) {
  DeviceCommand_Value* const _this = this;
  // @@protoc_insertion_point(class_specific_merge_from_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  ABSL_DCHECK_NE(&from, _this);
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  if (from._internal_type() != 0) {
    _this->_internal_set_type(from._internal_type());
  }
  switch (from.value_case()) {
    case kValueEnumType: {
      _this->_internal_set_value_enum_type(from._internal_value_enum_type());
      break;
    }
    case VALUE_NOT_SET: {
      break;
    }
  }
  _this->_internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
}

void DeviceCommand_Value::CopyFrom(const DeviceCommand_Value& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:keyapis.iot_connect_sber.v1.DeviceCommand.Value)
  if (&from == this) return;
  Clear();
  MergeFrom(from);
}

bool DeviceCommand_Value::IsInitialized() const {
  return true;
}

void DeviceCommand_Value::InternalSwap(DeviceCommand_Value* other) {
  using std::swap;
  _internal_metadata_.InternalSwap(&other->_internal_metadata_);
  swap(_impl_.type_, other->_impl_.type_);
  swap(_impl_.value_, other->_impl_.value_);
  swap(_impl_._oneof_case_[0], other->_impl_._oneof_case_[0]);
}

std::string DeviceCommand_Value::GetTypeName() const {
  return "keyapis.iot_connect_sber.v1.DeviceCommand.Value";
}

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

class DeviceCommand::_Internal {
 public:
  using HasBits = decltype(std::declval<DeviceCommand>()._impl_._has_bits_);
  static constexpr ::int32_t kHasBitsOffset =
    8 * PROTOBUF_FIELD_OFFSET(DeviceCommand, _impl_._has_bits_);
  static const ::keyapis::iot_connect_sber::v1::DeviceCommand_Value& value(const DeviceCommand* msg);
  static void set_has_value(HasBits* has_bits) {
    (*has_bits)[0] |= 1u;
  }
};

const ::keyapis::iot_connect_sber::v1::DeviceCommand_Value&
DeviceCommand::_Internal::value(const DeviceCommand* msg) {
  return *msg->_impl_.value_;
}
DeviceCommand::DeviceCommand(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena) {
  SharedCtor(arena);
  // @@protoc_insertion_point(arena_constructor:keyapis.iot_connect_sber.v1.DeviceCommand)
}
DeviceCommand::DeviceCommand(const DeviceCommand& from)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite() {
  DeviceCommand* const _this = this; (void)_this;
  new (&_impl_) Impl_{
      decltype(_impl_._has_bits_){from._impl_._has_bits_}
    , /*decltype(_impl_._cached_size_)*/{}
    , decltype(_impl_.value_){nullptr}
    , decltype(_impl_.command_key_type_) {}
  };

  _internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
  if ((from._impl_._has_bits_[0] & 0x00000001u) != 0) {
    _this->_impl_.value_ = new ::keyapis::iot_connect_sber::v1::DeviceCommand_Value(*from._impl_.value_);
  }
  _this->_impl_.command_key_type_ = from._impl_.command_key_type_;
  // @@protoc_insertion_point(copy_constructor:keyapis.iot_connect_sber.v1.DeviceCommand)
}

inline void DeviceCommand::SharedCtor(::_pb::Arena* arena) {
  (void)arena;
  new (&_impl_) Impl_{
      decltype(_impl_._has_bits_){}
    , /*decltype(_impl_._cached_size_)*/{}
    , decltype(_impl_.value_){nullptr}
    , decltype(_impl_.command_key_type_) { 0 }

  };
}

DeviceCommand::~DeviceCommand() {
  // @@protoc_insertion_point(destructor:keyapis.iot_connect_sber.v1.DeviceCommand)
  if (auto *arena = _internal_metadata_.DeleteReturnArena<std::string>()) {
  (void)arena;
    return;
  }
  SharedDtor();
}

inline void DeviceCommand::SharedDtor() {
  ABSL_DCHECK(GetArenaForAllocation() == nullptr);
  if (this != internal_default_instance()) delete _impl_.value_;
}

void DeviceCommand::SetCachedSize(int size) const {
  _impl_._cached_size_.Set(size);
}

void DeviceCommand::Clear() {
// @@protoc_insertion_point(message_clear_start:keyapis.iot_connect_sber.v1.DeviceCommand)
  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  cached_has_bits = _impl_._has_bits_[0];
  if (cached_has_bits & 0x00000001u) {
    ABSL_DCHECK(_impl_.value_ != nullptr);
    _impl_.value_->Clear();
  }
  _impl_.command_key_type_ = 0;
  _impl_._has_bits_.Clear();
  _internal_metadata_.Clear<std::string>();
}

const char* DeviceCommand::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  _Internal::HasBits has_bits{};
  while (!ctx->Done(&ptr)) {
    ::uint32_t tag;
    ptr = ::_pbi::ReadTag(ptr, &tag);
    switch (tag >> 3) {
      // .keyapis.iot_connect_sber.v1.DeviceCommand.KeyType command_key_type = 1 [json_name = "key"];
      case 1:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 8)) {
          ::int32_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr);
          CHK_(ptr);
          _internal_set_command_key_type(static_cast<::keyapis::iot_connect_sber::v1::DeviceCommand_KeyType>(val));
        } else {
          goto handle_unusual;
        }
        continue;
      // .keyapis.iot_connect_sber.v1.DeviceCommand.Value value = 2;
      case 2:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 18)) {
          ptr = ctx->ParseMessage(_internal_mutable_value(), ptr);
          CHK_(ptr);
        } else {
          goto handle_unusual;
        }
        continue;
      default:
        goto handle_unusual;
    }  // switch
  handle_unusual:
    if ((tag == 0) || ((tag & 7) == 4)) {
      CHK_(ptr);
      ctx->SetLastTag(tag);
      goto message_done;
    }
    ptr = UnknownFieldParse(
        tag,
        _internal_metadata_.mutable_unknown_fields<std::string>(),
        ptr, ctx);
    CHK_(ptr != nullptr);
  }  // while
message_done:
  _impl_._has_bits_.Or(has_bits);
  return ptr;
failure:
  ptr = nullptr;
  goto message_done;
#undef CHK_
}

::uint8_t* DeviceCommand::_InternalSerialize(
    ::uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  // @@protoc_insertion_point(serialize_to_array_start:keyapis.iot_connect_sber.v1.DeviceCommand)
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  // .keyapis.iot_connect_sber.v1.DeviceCommand.KeyType command_key_type = 1 [json_name = "key"];
  if (this->_internal_command_key_type() != 0) {
    target = stream->EnsureSpace(target);
    target = ::_pbi::WireFormatLite::WriteEnumToArray(
        1, this->_internal_command_key_type(), target);
  }

  cached_has_bits = _impl_._has_bits_[0];
  // .keyapis.iot_connect_sber.v1.DeviceCommand.Value value = 2;
  if (cached_has_bits & 0x00000001u) {
    target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
      InternalWriteMessage(2, _Internal::value(this),
        _Internal::value(this).GetCachedSize(), target, stream);
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    target = stream->WriteRaw(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(),
        static_cast<int>(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target);
  }
  // @@protoc_insertion_point(serialize_to_array_end:keyapis.iot_connect_sber.v1.DeviceCommand)
  return target;
}

::size_t DeviceCommand::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:keyapis.iot_connect_sber.v1.DeviceCommand)
  ::size_t total_size = 0;

  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  // .keyapis.iot_connect_sber.v1.DeviceCommand.Value value = 2;
  cached_has_bits = _impl_._has_bits_[0];
  if (cached_has_bits & 0x00000001u) {
    total_size += 1 +
      ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(
        *_impl_.value_);
  }

  // .keyapis.iot_connect_sber.v1.DeviceCommand.KeyType command_key_type = 1 [json_name = "key"];
  if (this->_internal_command_key_type() != 0) {
    total_size += 1 +
                  ::_pbi::WireFormatLite::EnumSize(this->_internal_command_key_type());
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    total_size += _internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size();
  }
  int cached_size = ::_pbi::ToCachedSize(total_size);
  SetCachedSize(cached_size);
  return total_size;
}

void DeviceCommand::CheckTypeAndMergeFrom(
    const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) {
  MergeFrom(*::_pbi::DownCast<const DeviceCommand*>(
      &from));
}

void DeviceCommand::MergeFrom(const DeviceCommand& from) {
  DeviceCommand* const _this = this;
  // @@protoc_insertion_point(class_specific_merge_from_start:keyapis.iot_connect_sber.v1.DeviceCommand)
  ABSL_DCHECK_NE(&from, _this);
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  if ((from._impl_._has_bits_[0] & 0x00000001u) != 0) {
    _this->_internal_mutable_value()->::keyapis::iot_connect_sber::v1::DeviceCommand_Value::MergeFrom(
        from._internal_value());
  }
  if (from._internal_command_key_type() != 0) {
    _this->_internal_set_command_key_type(from._internal_command_key_type());
  }
  _this->_internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
}

void DeviceCommand::CopyFrom(const DeviceCommand& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:keyapis.iot_connect_sber.v1.DeviceCommand)
  if (&from == this) return;
  Clear();
  MergeFrom(from);
}

bool DeviceCommand::IsInitialized() const {
  return true;
}

void DeviceCommand::InternalSwap(DeviceCommand* other) {
  using std::swap;
  _internal_metadata_.InternalSwap(&other->_internal_metadata_);
  swap(_impl_._has_bits_[0], other->_impl_._has_bits_[0]);
  ::PROTOBUF_NAMESPACE_ID::internal::memswap<
      PROTOBUF_FIELD_OFFSET(DeviceCommand, _impl_.command_key_type_)
      + sizeof(DeviceCommand::_impl_.command_key_type_)
      - PROTOBUF_FIELD_OFFSET(DeviceCommand, _impl_.value_)>(
          reinterpret_cast<char*>(&_impl_.value_),
          reinterpret_cast<char*>(&other->_impl_.value_));
}

std::string DeviceCommand::GetTypeName() const {
  return "keyapis.iot_connect_sber.v1.DeviceCommand";
}

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

PostCommandRequest_DevicesEntry_DoNotUse::PostCommandRequest_DevicesEntry_DoNotUse() {}
PostCommandRequest_DevicesEntry_DoNotUse::PostCommandRequest_DevicesEntry_DoNotUse(::PROTOBUF_NAMESPACE_ID::Arena* arena)
    : SuperType(arena) {}
void PostCommandRequest_DevicesEntry_DoNotUse::MergeFrom(const PostCommandRequest_DevicesEntry_DoNotUse& other) {
  MergeFromInternal(other);
}
// ===================================================================

class PostCommandRequest::_Internal {
 public:
};

PostCommandRequest::PostCommandRequest(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena) {
  SharedCtor(arena);
  // @@protoc_insertion_point(arena_constructor:keyapis.iot_connect_sber.v1.PostCommandRequest)
}
PostCommandRequest::PostCommandRequest(const PostCommandRequest& from)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite() {
  PostCommandRequest* const _this = this; (void)_this;
  new (&_impl_) Impl_{
      /*decltype(_impl_.devices_)*/{}
    , /*decltype(_impl_._cached_size_)*/{}};

  _internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
  _this->_impl_.devices_.MergeFrom(from._impl_.devices_);
  // @@protoc_insertion_point(copy_constructor:keyapis.iot_connect_sber.v1.PostCommandRequest)
}

inline void PostCommandRequest::SharedCtor(::_pb::Arena* arena) {
  (void)arena;
  new (&_impl_) Impl_{
      /*decltype(_impl_.devices_)*/{::_pbi::ArenaInitialized(), arena}
    , /*decltype(_impl_._cached_size_)*/{}
  };
}

PostCommandRequest::~PostCommandRequest() {
  // @@protoc_insertion_point(destructor:keyapis.iot_connect_sber.v1.PostCommandRequest)
  if (auto *arena = _internal_metadata_.DeleteReturnArena<std::string>()) {
  (void)arena;
    return;
  }
  SharedDtor();
}

inline void PostCommandRequest::SharedDtor() {
  ABSL_DCHECK(GetArenaForAllocation() == nullptr);
  _impl_.devices_.~MapFieldLite();
}

void PostCommandRequest::SetCachedSize(int size) const {
  _impl_._cached_size_.Set(size);
}

void PostCommandRequest::Clear() {
// @@protoc_insertion_point(message_clear_start:keyapis.iot_connect_sber.v1.PostCommandRequest)
  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  _impl_.devices_.Clear();
  _internal_metadata_.Clear<std::string>();
}

const char* PostCommandRequest::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  while (!ctx->Done(&ptr)) {
    ::uint32_t tag;
    ptr = ::_pbi::ReadTag(ptr, &tag);
    switch (tag >> 3) {
      // map<string, .keyapis.iot_connect_sber.v1.DeviceCommandArray> devices = 1;
      case 1:
        if (PROTOBUF_PREDICT_TRUE(static_cast<::uint8_t>(tag) == 10)) {
          ptr -= 1;
          do {
            ptr += 1;
            ptr = ctx->ParseMessage(&_impl_.devices_, ptr);
            CHK_(ptr);
            if (!ctx->DataAvailable(ptr)) break;
          } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr));
        } else {
          goto handle_unusual;
        }
        continue;
      default:
        goto handle_unusual;
    }  // switch
  handle_unusual:
    if ((tag == 0) || ((tag & 7) == 4)) {
      CHK_(ptr);
      ctx->SetLastTag(tag);
      goto message_done;
    }
    ptr = UnknownFieldParse(
        tag,
        _internal_metadata_.mutable_unknown_fields<std::string>(),
        ptr, ctx);
    CHK_(ptr != nullptr);
  }  // while
message_done:
  return ptr;
failure:
  ptr = nullptr;
  goto message_done;
#undef CHK_
}

::uint8_t* PostCommandRequest::_InternalSerialize(
    ::uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  // @@protoc_insertion_point(serialize_to_array_start:keyapis.iot_connect_sber.v1.PostCommandRequest)
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  // map<string, .keyapis.iot_connect_sber.v1.DeviceCommandArray> devices = 1;
  if (!this->_internal_devices().empty()) {
    using MapType = ::_pb::Map<std::string, ::keyapis::iot_connect_sber::v1::DeviceCommandArray>;
    using WireHelper = PostCommandRequest_DevicesEntry_DoNotUse::Funcs;
    const auto& map_field = this->_internal_devices();
    auto check_utf8 = [](const MapType::value_type& entry) {
      (void)entry;
      ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::VerifyUtf8String(
          entry.first.data(), static_cast<int>(entry.first.length()),
 ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::SERIALIZE, "keyapis.iot_connect_sber.v1.PostCommandRequest.devices");
    };

    if (stream->IsSerializationDeterministic() && map_field.size() > 1) {
      for (const auto& entry : ::_pbi::MapSorterPtr<MapType>(map_field)) {
        target = WireHelper::InternalSerialize(1, entry.first, entry.second, target, stream);
        check_utf8(entry);
      }
    } else {
      for (const auto& entry : map_field) {
        target = WireHelper::InternalSerialize(1, entry.first, entry.second, target, stream);
        check_utf8(entry);
      }
    }
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    target = stream->WriteRaw(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(),
        static_cast<int>(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target);
  }
  // @@protoc_insertion_point(serialize_to_array_end:keyapis.iot_connect_sber.v1.PostCommandRequest)
  return target;
}

::size_t PostCommandRequest::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:keyapis.iot_connect_sber.v1.PostCommandRequest)
  ::size_t total_size = 0;

  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  // map<string, .keyapis.iot_connect_sber.v1.DeviceCommandArray> devices = 1;
  total_size += 1 *
      ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_devices_size());
  for (::PROTOBUF_NAMESPACE_ID::Map< std::string, ::keyapis::iot_connect_sber::v1::DeviceCommandArray >::const_iterator
      it = this->_internal_devices().begin();
      it != this->_internal_devices().end(); ++it) {
    total_size += PostCommandRequest_DevicesEntry_DoNotUse::Funcs::ByteSizeLong(it->first, it->second);
  }

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    total_size += _internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size();
  }
  int cached_size = ::_pbi::ToCachedSize(total_size);
  SetCachedSize(cached_size);
  return total_size;
}

void PostCommandRequest::CheckTypeAndMergeFrom(
    const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) {
  MergeFrom(*::_pbi::DownCast<const PostCommandRequest*>(
      &from));
}

void PostCommandRequest::MergeFrom(const PostCommandRequest& from) {
  PostCommandRequest* const _this = this;
  // @@protoc_insertion_point(class_specific_merge_from_start:keyapis.iot_connect_sber.v1.PostCommandRequest)
  ABSL_DCHECK_NE(&from, _this);
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  _this->_impl_.devices_.MergeFrom(from._impl_.devices_);
  _this->_internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
}

void PostCommandRequest::CopyFrom(const PostCommandRequest& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:keyapis.iot_connect_sber.v1.PostCommandRequest)
  if (&from == this) return;
  Clear();
  MergeFrom(from);
}

bool PostCommandRequest::IsInitialized() const {
  return true;
}

void PostCommandRequest::InternalSwap(PostCommandRequest* other) {
  using std::swap;
  _internal_metadata_.InternalSwap(&other->_internal_metadata_);
  _impl_.devices_.InternalSwap(&other->_impl_.devices_);
}

std::string PostCommandRequest::GetTypeName() const {
  return "keyapis.iot_connect_sber.v1.PostCommandRequest";
}

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

class PostCommandResponse::_Internal {
 public:
};

PostCommandResponse::PostCommandResponse(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena) {
  SharedCtor(arena);
  // @@protoc_insertion_point(arena_constructor:keyapis.iot_connect_sber.v1.PostCommandResponse)
}
PostCommandResponse::PostCommandResponse(const PostCommandResponse& from)
  : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _impl_(from._impl_) {
  _internal_metadata_.MergeFrom<std::string>(
      from._internal_metadata_);
  // @@protoc_insertion_point(copy_constructor:keyapis.iot_connect_sber.v1.PostCommandResponse)
}

inline void PostCommandResponse::SharedCtor(::_pb::Arena* arena) {
  (void)arena;
  new (&_impl_) Impl_{
      /*decltype(_impl_._cached_size_)*/{}
  };
}

PostCommandResponse::~PostCommandResponse() {
  // @@protoc_insertion_point(destructor:keyapis.iot_connect_sber.v1.PostCommandResponse)
  if (auto *arena = _internal_metadata_.DeleteReturnArena<std::string>()) {
  (void)arena;
    return;
  }
  SharedDtor();
}

inline void PostCommandResponse::SharedDtor() {
  ABSL_DCHECK(GetArenaForAllocation() == nullptr);
}

void PostCommandResponse::SetCachedSize(int size) const {
  _impl_._cached_size_.Set(size);
}

void PostCommandResponse::Clear() {
// @@protoc_insertion_point(message_clear_start:keyapis.iot_connect_sber.v1.PostCommandResponse)
  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  _internal_metadata_.Clear<std::string>();
}

const char* PostCommandResponse::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  while (!ctx->Done(&ptr)) {
    ::uint32_t tag;
    ptr = ::_pbi::ReadTag(ptr, &tag);
    if ((tag == 0) || ((tag & 7) == 4)) {
      CHK_(ptr);
      ctx->SetLastTag(tag);
      goto message_done;
    }
    ptr = UnknownFieldParse(
        tag,
        _internal_metadata_.mutable_unknown_fields<std::string>(),
        ptr, ctx);
    CHK_(ptr != nullptr);
  }  // while
message_done:
  return ptr;
failure:
  ptr = nullptr;
  goto message_done;
#undef CHK_
}

::uint8_t* PostCommandResponse::_InternalSerialize(
    ::uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  // @@protoc_insertion_point(serialize_to_array_start:keyapis.iot_connect_sber.v1.PostCommandResponse)
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    target = stream->WriteRaw(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(),
        static_cast<int>(_internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target);
  }
  // @@protoc_insertion_point(serialize_to_array_end:keyapis.iot_connect_sber.v1.PostCommandResponse)
  return target;
}

::size_t PostCommandResponse::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:keyapis.iot_connect_sber.v1.PostCommandResponse)
  ::size_t total_size = 0;

  ::uint32_t cached_has_bits = 0;
  // Prevent compiler warnings about cached_has_bits being unused
  (void) cached_has_bits;

  if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
    total_size += _internal_metadata_.unknown_fields<std::string>(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size();
  }
  int cached_size = ::_pbi::ToCachedSize(total_size);
  SetCachedSize(cached_size);
  return total_size;
}

void PostCommandResponse::CheckTypeAndMergeFrom(
    const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) {
  MergeFrom(*::_pbi::DownCast<const PostCommandResponse*>(
      &from));
}

void PostCommandResponse::MergeFrom(const PostCommandResponse& from) {
  PostCommandResponse* const _this = this;
  // @@protoc_insertion_point(class_specific_merge_from_start:keyapis.iot_connect_sber.v1.PostCommandResponse)
  ABSL_DCHECK_NE(&from, _this);
  ::uint32_t cached_has_bits = 0;
  (void) cached_has_bits;

  _this->_internal_metadata_.MergeFrom<std::string>(from._internal_metadata_);
}

void PostCommandResponse::CopyFrom(const PostCommandResponse& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:keyapis.iot_connect_sber.v1.PostCommandResponse)
  if (&from == this) return;
  Clear();
  MergeFrom(from);
}

bool PostCommandResponse::IsInitialized() const {
  return true;
}

void PostCommandResponse::InternalSwap(PostCommandResponse* other) {
  using std::swap;
  _internal_metadata_.InternalSwap(&other->_internal_metadata_);
}

std::string PostCommandResponse::GetTypeName() const {
  return "keyapis.iot_connect_sber.v1.PostCommandResponse";
}

// @@protoc_insertion_point(namespace_scope)
}  // namespace v1
}  // namespace iot_connect_sber
}  // namespace keyapis
PROTOBUF_NAMESPACE_OPEN
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::DeviceCommandArray*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::DeviceCommandArray >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::DeviceCommandArray >(arena);
}
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::DeviceCommand_Value*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::DeviceCommand_Value >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::DeviceCommand_Value >(arena);
}
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::DeviceCommand*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::DeviceCommand >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::DeviceCommand >(arena);
}
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::PostCommandRequest_DevicesEntry_DoNotUse*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::PostCommandRequest_DevicesEntry_DoNotUse >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::PostCommandRequest_DevicesEntry_DoNotUse >(arena);
}
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::PostCommandRequest*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::PostCommandRequest >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::PostCommandRequest >(arena);
}
template<> PROTOBUF_NOINLINE ::keyapis::iot_connect_sber::v1::PostCommandResponse*
Arena::CreateMaybeMessage< ::keyapis::iot_connect_sber::v1::PostCommandResponse >(Arena* arena) {
  return Arena::CreateMessageInternal< ::keyapis::iot_connect_sber::v1::PostCommandResponse >(arena);
}
PROTOBUF_NAMESPACE_CLOSE
// @@protoc_insertion_point(global_scope)
#include "google/protobuf/port_undef.inc"
