// services/device/public/mojom/serial.mojom-shared.h is auto generated by mojom_bindings_generator.py, do not edit

// Copyright 2016 The Chromium Authors
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.

#ifndef SERVICES_DEVICE_PUBLIC_MOJOM_SERIAL_MOJOM_SHARED_H_
#define SERVICES_DEVICE_PUBLIC_MOJOM_SERIAL_MOJOM_SHARED_H_

#include <stdint.h>

#include <functional>
#include <iosfwd>
#include <type_traits>
#include <utility>
#include "mojo/public/cpp/bindings/array_data_view.h"
#include "mojo/public/cpp/bindings/map_data_view.h"
#include "mojo/public/cpp/bindings/string_data_view.h"
#include "mojo/public/cpp/system/message_pipe.h"

#include "third_party/perfetto/include/perfetto/tracing/traced_value_forward.h"

#include "services/device/public/mojom/serial.mojom-shared-internal.h"
#include "device/bluetooth/public/mojom/uuid.mojom-shared.h"
#include "mojo/public/mojom/base/file_path.mojom-shared.h"
#include "mojo/public/mojom/base/unguessable_token.mojom-shared.h"
#include "mojo/public/cpp/bindings/lib/interface_serialization.h"
#include "mojo/public/cpp/system/data_pipe.h"



#include "services/device/public/mojom/serial.mojom-data-view.h"  // IWYU pragma: export




namespace std {

template <>
struct hash<::device::mojom::SerialSendError>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialSendError> {};

template <>
struct hash<::device::mojom::SerialReceiveError>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialReceiveError> {};

template <>
struct hash<::device::mojom::SerialDataBits>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialDataBits> {};

template <>
struct hash<::device::mojom::SerialParityBit>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialParityBit> {};

template <>
struct hash<::device::mojom::SerialStopBits>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialStopBits> {};

template <>
struct hash<::device::mojom::SerialPortFlushMode>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialPortFlushMode> {};

template <>
struct hash<::device::mojom::SerialPortType>
    : public mojo::internal::EnumHashImpl<::device::mojom::SerialPortType> {};

}  // namespace std

namespace mojo {


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialSendError, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialSendError, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialSendError>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialSendError, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialSendError()),
                    "::device::mojom::SerialSendError does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialReceiveError, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialReceiveError, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialReceiveError>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialReceiveError, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialReceiveError()),
                    "::device::mojom::SerialReceiveError does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialDataBits, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialDataBits, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialDataBits>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialDataBits, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialDataBits()),
                    "::device::mojom::SerialDataBits does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialParityBit, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialParityBit, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialParityBit>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialParityBit, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialParityBit()),
                    "::device::mojom::SerialParityBit does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialStopBits, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialStopBits, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialStopBits>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialStopBits, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialStopBits()),
                    "::device::mojom::SerialStopBits does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialPortFlushMode, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialPortFlushMode, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialPortFlushMode>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialPortFlushMode, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialPortFlushMode()),
                    "::device::mojom::SerialPortFlushMode does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialPortType, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = EnumTraits<::device::mojom::SerialPortType, UserType>;

  static void Serialize(UserType input, int32_t* output) {
    *output = static_cast<int32_t>(Traits::ToMojom(input));
  }

  static bool Deserialize(int32_t input, UserType* output) {
    auto known_value = ::mojo::internal::ToKnownEnumValueHelper(
        static_cast<::device::mojom::SerialPortType>(input));
    if constexpr (requires {
                    {
                      Traits::FromMojom(known_value)
                    } -> std::same_as<UserType>;
                  }) {
      static_assert(std::same_as<::device::mojom::SerialPortType, UserType> ||
                        HasInfallibleConversion(::device::mojom::SerialPortType()),
                    "::device::mojom::SerialPortType does not have an infallible conversion, "
                    "use an optional return type.");
      *output = Traits::FromMojom(known_value);
      return true;
    } else {
      static_assert(
          requires {
            {
              Traits::FromMojom(known_value)
            } -> std::same_as<std::optional<UserType>>;
          }, "FromMojom must return by value or optional.");
      std::optional<UserType> from_mojom = Traits::FromMojom(known_value);
      if (from_mojom) {
        *output = *from_mojom;
      }
      return from_mojom.has_value();
    }
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialPortInfoDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::device::mojom::SerialPortInfoDataView, UserType>;

  static void Serialize(
      MaybeConstUserType& input,
      mojo::internal::MessageFragment<::device::mojom::internal::SerialPortInfo_Data>& fragment) {
    if (CallIsNullIfExists<Traits>(input))
      return;
    fragment.Allocate();

    decltype(Traits::token(input)) in_token = Traits::token(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->token)::BaseType> token_fragment(
            fragment.message());
    
    mojo::internal::Serialize<::mojo_base::mojom::UnguessableTokenDataView>(
      in_token,
      token_fragment);

    fragment->token.Set(
        token_fragment.is_null() ? nullptr : token_fragment.data());

    
    MOJO_INTERNAL_CHECK_SERIALIZATION(
      mojo::internal::SendValidation::kDefault,
      !(fragment->token.is_null()),
      mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
      "null token in SerialPortInfo struct");

    decltype(Traits::path(input)) in_path = Traits::path(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->path)::BaseType> path_fragment(
            fragment.message());
    
    mojo::internal::Serialize<::mojo_base::mojom::FilePathDataView>(
      in_path,
      path_fragment);

    fragment->path.Set(
        path_fragment.is_null() ? nullptr : path_fragment.data());

    
    MOJO_INTERNAL_CHECK_SERIALIZATION(
      mojo::internal::SendValidation::kDefault,
      !(fragment->path.is_null()),
      mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
      "null path in SerialPortInfo struct");

    
    mojo::internal::Serialize<::device::mojom::SerialPortType>(
      Traits::type(input),
      &fragment->type);

    fragment->vendor_id = Traits::vendor_id(input);

    fragment->has_vendor_id = Traits::has_vendor_id(input);

    fragment->product_id = Traits::product_id(input);

    fragment->has_product_id = Traits::has_product_id(input);

    decltype(Traits::bluetooth_service_class_id(input)) in_bluetooth_service_class_id = Traits::bluetooth_service_class_id(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->bluetooth_service_class_id)::BaseType> bluetooth_service_class_id_fragment(
            fragment.message());
    
    mojo::internal::Serialize<::bluetooth::mojom::UUIDDataView>(
      in_bluetooth_service_class_id,
      bluetooth_service_class_id_fragment);

    fragment->bluetooth_service_class_id.Set(
        bluetooth_service_class_id_fragment.is_null() ? nullptr : bluetooth_service_class_id_fragment.data());

    decltype(Traits::display_name(input)) in_display_name = Traits::display_name(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->display_name)::BaseType> display_name_fragment(
            fragment.message());
    
    mojo::internal::Serialize<mojo::StringDataView>(
      in_display_name,
      display_name_fragment);

    fragment->display_name.Set(
        display_name_fragment.is_null() ? nullptr : display_name_fragment.data());

    decltype(Traits::serial_number(input)) in_serial_number = Traits::serial_number(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->serial_number)::BaseType> serial_number_fragment(
            fragment.message());
    
    mojo::internal::Serialize<mojo::StringDataView>(
      in_serial_number,
      serial_number_fragment);

    fragment->serial_number.Set(
        serial_number_fragment.is_null() ? nullptr : serial_number_fragment.data());

    fragment->connected = Traits::connected(input);
  }

  static bool Deserialize(::device::mojom::internal::SerialPortInfo_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::device::mojom::SerialPortInfoDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialConnectionOptionsDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::device::mojom::SerialConnectionOptionsDataView, UserType>;

  static void Serialize(
      MaybeConstUserType& input,
      mojo::internal::MessageFragment<::device::mojom::internal::SerialConnectionOptions_Data>& fragment) {
    if (CallIsNullIfExists<Traits>(input))
      return;
    fragment.Allocate();

    fragment->bitrate = Traits::bitrate(input);

    
    mojo::internal::Serialize<::device::mojom::SerialDataBits>(
      Traits::data_bits(input),
      &fragment->data_bits);

    
    mojo::internal::Serialize<::device::mojom::SerialParityBit>(
      Traits::parity_bit(input),
      &fragment->parity_bit);

    
    mojo::internal::Serialize<::device::mojom::SerialStopBits>(
      Traits::stop_bits(input),
      &fragment->stop_bits);

    fragment->cts_flow_control = Traits::cts_flow_control(input);

    fragment->has_cts_flow_control = Traits::has_cts_flow_control(input);
  }

  static bool Deserialize(::device::mojom::internal::SerialConnectionOptions_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::device::mojom::SerialConnectionOptionsDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialConnectionInfoDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::device::mojom::SerialConnectionInfoDataView, UserType>;

  static void Serialize(
      MaybeConstUserType& input,
      mojo::internal::MessageFragment<::device::mojom::internal::SerialConnectionInfo_Data>& fragment) {
    if (CallIsNullIfExists<Traits>(input))
      return;
    fragment.Allocate();

    fragment->bitrate = Traits::bitrate(input);

    
    mojo::internal::Serialize<::device::mojom::SerialDataBits>(
      Traits::data_bits(input),
      &fragment->data_bits);

    
    mojo::internal::Serialize<::device::mojom::SerialParityBit>(
      Traits::parity_bit(input),
      &fragment->parity_bit);

    
    mojo::internal::Serialize<::device::mojom::SerialStopBits>(
      Traits::stop_bits(input),
      &fragment->stop_bits);

    fragment->cts_flow_control = Traits::cts_flow_control(input);
  }

  static bool Deserialize(::device::mojom::internal::SerialConnectionInfo_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::device::mojom::SerialConnectionInfoDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialHostControlSignalsDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::device::mojom::SerialHostControlSignalsDataView, UserType>;

  static void Serialize(
      MaybeConstUserType& input,
      mojo::internal::MessageFragment<::device::mojom::internal::SerialHostControlSignals_Data>& fragment) {
    if (CallIsNullIfExists<Traits>(input))
      return;
    fragment.Allocate();

    fragment->dtr = Traits::dtr(input);

    fragment->has_dtr = Traits::has_dtr(input);

    fragment->rts = Traits::rts(input);

    fragment->has_rts = Traits::has_rts(input);

    fragment->brk = Traits::brk(input);

    fragment->has_brk = Traits::has_brk(input);
  }

  static bool Deserialize(::device::mojom::internal::SerialHostControlSignals_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::device::mojom::SerialHostControlSignalsDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::device::mojom::SerialPortControlSignalsDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::device::mojom::SerialPortControlSignalsDataView, UserType>;

  static void Serialize(
      MaybeConstUserType& input,
      mojo::internal::MessageFragment<::device::mojom::internal::SerialPortControlSignals_Data>& fragment) {
    if (CallIsNullIfExists<Traits>(input))
      return;
    fragment.Allocate();

    fragment->dcd = Traits::dcd(input);

    fragment->cts = Traits::cts(input);

    fragment->ri = Traits::ri(input);

    fragment->dsr = Traits::dsr(input);
  }

  static bool Deserialize(::device::mojom::internal::SerialPortControlSignals_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::device::mojom::SerialPortControlSignalsDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal

}  // namespace mojo


namespace device::mojom {

inline void SerialPortInfoDataView::GetTokenDataView(
    ::mojo_base::mojom::UnguessableTokenDataView* output) {
  auto pointer = data_->token.Get();
  *output = ::mojo_base::mojom::UnguessableTokenDataView(pointer, message_);
}
inline void SerialPortInfoDataView::GetPathDataView(
    ::mojo_base::mojom::FilePathDataView* output) {
  auto pointer = data_->path.Get();
  *output = ::mojo_base::mojom::FilePathDataView(pointer, message_);
}
inline void SerialPortInfoDataView::GetBluetoothServiceClassIdDataView(
    ::bluetooth::mojom::UUIDDataView* output) {
  auto pointer = data_->bluetooth_service_class_id.Get();
  *output = ::bluetooth::mojom::UUIDDataView(pointer, message_);
}
inline void SerialPortInfoDataView::GetDisplayNameDataView(
    mojo::StringDataView* output) {
  auto pointer = data_->display_name.Get();
  *output = mojo::StringDataView(pointer, message_);
}
inline void SerialPortInfoDataView::GetSerialNumberDataView(
    mojo::StringDataView* output) {
  auto pointer = data_->serial_number.Get();
  *output = mojo::StringDataView(pointer, message_);
}











}  // device::mojom

// Declare TraceFormatTraits for enums, which should be defined in ::perfetto
// namespace.

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialSendError> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialSendError value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialReceiveError> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialReceiveError value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialDataBits> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialDataBits value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialParityBit> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialParityBit value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialStopBits> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialStopBits value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialPortFlushMode> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialPortFlushMode value);
};

} // namespace perfetto

namespace perfetto {

template <>
struct  TraceFormatTraits<::device::mojom::SerialPortType> {
 static void WriteIntoTrace(perfetto::TracedValue context, ::device::mojom::SerialPortType value);
};

} // namespace perfetto

#endif  // SERVICES_DEVICE_PUBLIC_MOJOM_SERIAL_MOJOM_SHARED_H_