// mojo/public/interfaces/bindings/pipe_control_messages.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 MOJO_PUBLIC_INTERFACES_BINDINGS_PIPE_CONTROL_MESSAGES_MOJOM_SHARED_H_
#define MOJO_PUBLIC_INTERFACES_BINDINGS_PIPE_CONTROL_MESSAGES_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 "mojo/public/interfaces/bindings/pipe_control_messages.mojom-shared-internal.h"




#include "mojo/public/interfaces/bindings/pipe_control_messages.mojom-data-view.h"  // IWYU pragma: export
#include "base/component_export.h"




namespace std {

}  // namespace std

namespace mojo {


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::RunOrClosePipeMessageParamsDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::mojo::pipe_control::RunOrClosePipeMessageParamsDataView, UserType>;

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

    decltype(Traits::input(input)) in_input = Traits::input(input);
    mojo::internal::MessageFragment<decltype(fragment->input)>
        input_fragment(fragment.message());
    input_fragment.Claim(&fragment->input);
    
    mojo::internal::Serialize<::mojo::pipe_control::RunOrClosePipeInputDataView>(
      in_input,
      input_fragment,
      true);

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

  static bool Deserialize(::mojo::pipe_control::internal::RunOrClosePipeMessageParams_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::RunOrClosePipeMessageParamsDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::DisconnectReasonDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::mojo::pipe_control::DisconnectReasonDataView, UserType>;

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

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

    decltype(Traits::description(input)) in_description = Traits::description(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->description)::BaseType> description_fragment(
            fragment.message());
    
    mojo::internal::Serialize<mojo::StringDataView>(
      in_description,
      description_fragment);

    fragment->description.Set(
        description_fragment.is_null() ? nullptr : description_fragment.data());

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

  static bool Deserialize(::mojo::pipe_control::internal::DisconnectReason_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::DisconnectReasonDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::PeerAssociatedEndpointClosedEventDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::mojo::pipe_control::PeerAssociatedEndpointClosedEventDataView, UserType>;

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

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

    decltype(Traits::disconnect_reason(input)) in_disconnect_reason = Traits::disconnect_reason(input);
    mojo::internal::MessageFragment<
        typename decltype(fragment->disconnect_reason)::BaseType> disconnect_reason_fragment(
            fragment.message());
    
    mojo::internal::Serialize<::mojo::pipe_control::DisconnectReasonDataView>(
      in_disconnect_reason,
      disconnect_reason_fragment);

    fragment->disconnect_reason.Set(
        disconnect_reason_fragment.is_null() ? nullptr : disconnect_reason_fragment.data());
  }

  static bool Deserialize(::mojo::pipe_control::internal::PeerAssociatedEndpointClosedEvent_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::PeerAssociatedEndpointClosedEventDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::PauseUntilFlushCompletesDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::mojo::pipe_control::PauseUntilFlushCompletesDataView, UserType>;

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

    decltype(Traits::flush_pipe(input)) in_flush_pipe = Traits::flush_pipe(input);

    
    mojo::internal::Serialize<mojo::ScopedMessagePipeHandle>(
      in_flush_pipe,
      &fragment->flush_pipe,
      &fragment.message());

    
    MOJO_INTERNAL_CHECK_SERIALIZATION(
      mojo::internal::SendValidation::kDefault,
      !(!mojo::internal::IsHandleOrInterfaceValid(fragment->flush_pipe)),
      mojo::internal::VALIDATION_ERROR_UNEXPECTED_INVALID_HANDLE,
      "invalid flush_pipe in PauseUntilFlushCompletes struct");
  }

  static bool Deserialize(::mojo::pipe_control::internal::PauseUntilFlushCompletes_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::PauseUntilFlushCompletesDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::FlushAsyncDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = StructTraits<::mojo::pipe_control::FlushAsyncDataView, UserType>;

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

    decltype(Traits::flusher_pipe(input)) in_flusher_pipe = Traits::flusher_pipe(input);

    
    mojo::internal::Serialize<mojo::ScopedMessagePipeHandle>(
      in_flusher_pipe,
      &fragment->flusher_pipe,
      &fragment.message());

    
    MOJO_INTERNAL_CHECK_SERIALIZATION(
      mojo::internal::SendValidation::kDefault,
      !(!mojo::internal::IsHandleOrInterfaceValid(fragment->flusher_pipe)),
      mojo::internal::VALIDATION_ERROR_UNEXPECTED_INVALID_HANDLE,
      "invalid flusher_pipe in FlushAsync struct");
  }

  static bool Deserialize(::mojo::pipe_control::internal::FlushAsync_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input)
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::FlushAsyncDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal


namespace internal {

template <typename MaybeConstUserType>
struct Serializer<::mojo::pipe_control::RunOrClosePipeInputDataView, MaybeConstUserType> {
  using UserType = typename std::remove_const<MaybeConstUserType>::type;
  using Traits = UnionTraits<::mojo::pipe_control::RunOrClosePipeInputDataView, UserType>;

  static void Serialize(MaybeConstUserType& input,
                        MessageFragment<::mojo::pipe_control::internal::RunOrClosePipeInput_Data>& fragment,
                        bool inlined) {
    
    if (CallIsNullIfExists<Traits>(input)) {
       if (inlined)
        fragment->set_null();
      return;
    }

if (!inlined)
  fragment.Allocate();

    // TODO(azani): Handle unknown and objects.
    // Set the not-null flag.
fragment->size = kUnionDataSize;
fragment->tag = Traits::GetTag(input);
switch (fragment->tag) {
  case ::mojo::pipe_control::RunOrClosePipeInputDataView::Tag::kPeerAssociatedEndpointClosedEvent: {
    decltype(Traits::peer_associated_endpoint_closed_event(input))
    in_peer_associated_endpoint_closed_event = Traits::peer_associated_endpoint_closed_event(input);
    mojo::internal::MessageFragment<
      typename decltype(fragment->data.f_peer_associated_endpoint_closed_event)::BaseType>
    value_fragment(fragment.message());
        
mojo::internal::Serialize<::mojo::pipe_control::PeerAssociatedEndpointClosedEventDataView>(
  in_peer_associated_endpoint_closed_event,
  value_fragment);
  
MOJO_INTERNAL_CHECK_SERIALIZATION(
  mojo::internal::SendValidation::kDefault,
  !(value_fragment.is_null()),
  mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
  "null peer_associated_endpoint_closed_event in RunOrClosePipeInput union");
    fragment->data.f_peer_associated_endpoint_closed_event.Set(
      value_fragment.is_null() ? nullptr : value_fragment.data());
    break;
  }
  case ::mojo::pipe_control::RunOrClosePipeInputDataView::Tag::kPauseUntilFlushCompletes: {
    decltype(Traits::pause_until_flush_completes(input))
    in_pause_until_flush_completes = Traits::pause_until_flush_completes(input);
    mojo::internal::MessageFragment<
      typename decltype(fragment->data.f_pause_until_flush_completes)::BaseType>
    value_fragment(fragment.message());
        
mojo::internal::Serialize<::mojo::pipe_control::PauseUntilFlushCompletesDataView>(
  in_pause_until_flush_completes,
  value_fragment);
  
MOJO_INTERNAL_CHECK_SERIALIZATION(
  mojo::internal::SendValidation::kDefault,
  !(value_fragment.is_null()),
  mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
  "null pause_until_flush_completes in RunOrClosePipeInput union");
    fragment->data.f_pause_until_flush_completes.Set(
      value_fragment.is_null() ? nullptr : value_fragment.data());
    break;
  }
  case ::mojo::pipe_control::RunOrClosePipeInputDataView::Tag::kFlushAsync: {
    decltype(Traits::flush_async(input))
    in_flush_async = Traits::flush_async(input);
    mojo::internal::MessageFragment<
      typename decltype(fragment->data.f_flush_async)::BaseType>
    value_fragment(fragment.message());
        
mojo::internal::Serialize<::mojo::pipe_control::FlushAsyncDataView>(
  in_flush_async,
  value_fragment);
  
MOJO_INTERNAL_CHECK_SERIALIZATION(
  mojo::internal::SendValidation::kDefault,
  !(value_fragment.is_null()),
  mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
  "null flush_async in RunOrClosePipeInput union");
    fragment->data.f_flush_async.Set(
      value_fragment.is_null() ? nullptr : value_fragment.data());
    break;
  }
}
  }

  static bool Deserialize(::mojo::pipe_control::internal::RunOrClosePipeInput_Data* input,
                          UserType* output,
                          Message* message) {
    if (!input || input->is_null())
      return CallSetToNullIfExists<Traits>(output);

    ::mojo::pipe_control::RunOrClosePipeInputDataView data_view(input, message);
    return CallTraitsRead<Traits>(data_view, output);
  }
};

}  // namespace internal

}  // namespace mojo


namespace mojo::pipe_control {

inline void RunOrClosePipeMessageParamsDataView::GetInputDataView(
    RunOrClosePipeInputDataView* output) {
  auto pointer = &data_->input;
  *output = RunOrClosePipeInputDataView(pointer, message_);
}


inline void DisconnectReasonDataView::GetDescriptionDataView(
    mojo::StringDataView* output) {
  auto pointer = data_->description.Get();
  *output = mojo::StringDataView(pointer, message_);
}


inline void PeerAssociatedEndpointClosedEventDataView::GetDisconnectReasonDataView(
    DisconnectReasonDataView* output) {
  auto pointer = data_->disconnect_reason.Get();
  *output = DisconnectReasonDataView(pointer, message_);
}






inline void RunOrClosePipeInputDataView::GetPeerAssociatedEndpointClosedEventDataView(
    PeerAssociatedEndpointClosedEventDataView* output) const {
  CHECK(is_peer_associated_endpoint_closed_event());
  *output = PeerAssociatedEndpointClosedEventDataView(data_->data.f_peer_associated_endpoint_closed_event.Get(), message_);
}
inline void RunOrClosePipeInputDataView::GetPauseUntilFlushCompletesDataView(
    PauseUntilFlushCompletesDataView* output) const {
  CHECK(is_pause_until_flush_completes());
  *output = PauseUntilFlushCompletesDataView(data_->data.f_pause_until_flush_completes.Get(), message_);
}
inline void RunOrClosePipeInputDataView::GetFlushAsyncDataView(
    FlushAsyncDataView* output) const {
  CHECK(is_flush_async());
  *output = FlushAsyncDataView(data_->data.f_flush_async.Get(), message_);
}


}  // mojo::pipe_control

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

#endif  // MOJO_PUBLIC_INTERFACES_BINDINGS_PIPE_CONTROL_MESSAGES_MOJOM_SHARED_H_