// services/network/public/mojom/socket_factory.mojom.cc is auto generated by mojom_bindings_generator.py, do not edit

// Copyright 2013 The Chromium Authors
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.

#if defined(__clang__)
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wunused-private-field"
#endif

#include "services/network/public/mojom/socket_factory.mojom.h"
#include <math.h>
#include <stdint.h>
#include <utility>
#include "base/debug/alias.h"
#include "base/notreached.h"
#include "base/run_loop.h"
#include "base/strings/string_number_conversions.h"
#include "base/task/thread_pool/thread_pool_instance.h"
#include "base/trace_event/trace_event.h"
#include "base/trace_event/typed_macros.h"
#include "mojo/public/cpp/bindings/lib/default_construct_tag_internal.h"
#include "mojo/public/cpp/bindings/lib/generated_code_util.h"
#include "mojo/public/cpp/bindings/lib/message_internal.h"
#include "mojo/public/cpp/bindings/lib/proxy_to_responder.h"
#include "mojo/public/cpp/bindings/lib/send_message_helper.h"
#include "mojo/public/cpp/bindings/lib/serialization.h"
#include "mojo/public/cpp/bindings/lib/unserialized_message_context.h"
#include "mojo/public/cpp/bindings/lib/validate_params.h"
#include "mojo/public/cpp/bindings/lib/validation_errors.h"
#include "mojo/public/cpp/bindings/mojo_buildflags.h"
#include "mojo/public/cpp/bindings/urgent_message_scope.h"
#include "mojo/public/interfaces/bindings/interface_control_messages.mojom.h"
#include "third_party/perfetto/include/perfetto/tracing/traced_value.h"

#include "services/network/public/mojom/socket_factory.mojom-params-data.h"
#include "services/network/public/mojom/socket_factory.mojom-shared-message-ids.h"

#include "services/network/public/mojom/socket_factory.mojom-import-headers.h"
#include "services/network/public/mojom/socket_factory.mojom-test-utils.h"


namespace network::mojom {
// The declaration includes the definition on other builds.

SocketFactory::IPCStableHashFunction SocketFactory::MessageToMethodInfo_(mojo::Message& message) {
#if !BUILDFLAG(IS_FUCHSIA)
  switch (static_cast<messages::SocketFactory>(message.name())) {
    case messages::SocketFactory::kCreateTCPConnectedSocket: {
      return &SocketFactory::CreateTCPConnectedSocket_Sym::IPCStableHash;
    }
    case messages::SocketFactory::kCreateUDPSocket: {
      return &SocketFactory::CreateUDPSocket_Sym::IPCStableHash;
    }
  }
#endif  // !BUILDFLAG(IS_FUCHSIA)
  return nullptr;
}


const char* SocketFactory::MessageToMethodName_(mojo::Message& message) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  bool is_response = message.has_flag(mojo::Message::kFlagIsResponse);
  if (!is_response) {
    switch (static_cast<messages::SocketFactory>(message.name())) {
      case messages::SocketFactory::kCreateTCPConnectedSocket:
            return "Receive network::mojom::SocketFactory::CreateTCPConnectedSocket";
      case messages::SocketFactory::kCreateUDPSocket:
            return "Receive network::mojom::SocketFactory::CreateUDPSocket";
    }
  } else {
    switch (static_cast<messages::SocketFactory>(message.name())) {
      case messages::SocketFactory::kCreateTCPConnectedSocket:
            return "Receive reply network::mojom::SocketFactory::CreateTCPConnectedSocket";
      case messages::SocketFactory::kCreateUDPSocket:
            return "Receive reply network::mojom::SocketFactory::CreateUDPSocket";
    }
  }
  return "Receive unknown mojo message";
#else
  bool is_response = message.has_flag(mojo::Message::kFlagIsResponse);
  if (is_response) {
    return "Receive mojo reply";
  } else {
    return "Receive mojo message";
  }
#endif // BUILDFLAG(MOJO_TRACE_ENABLED)
}

#if !BUILDFLAG(IS_FUCHSIA)
uint32_t SocketFactory::CreateTCPConnectedSocket_Sym::IPCStableHash() {
  // This method's address is used for identifying the mojo method name after
  // symbolization. So each IPCStableHash should have a unique address.
  // We cannot use NO_CODE_FOLDING() here - it relies on the uniqueness of
  // __LINE__ value, which is not unique across different mojo modules.
  // The code below is very similar to NO_CODE_FOLDING, but it uses a unique
  // hash instead of __LINE__.
  static constexpr uint32_t kHash = 0x55ad38be;  // IPCStableHash for network::mojom::SocketFactory::CreateTCPConnectedSocket
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t SocketFactory::CreateUDPSocket_Sym::IPCStableHash() {
  // This method's address is used for identifying the mojo method name after
  // symbolization. So each IPCStableHash should have a unique address.
  // We cannot use NO_CODE_FOLDING() here - it relies on the uniqueness of
  // __LINE__ value, which is not unique across different mojo modules.
  // The code below is very similar to NO_CODE_FOLDING, but it uses a unique
  // hash instead of __LINE__.
  static constexpr uint32_t kHash = 0x7925c9b2;  // IPCStableHash for network::mojom::SocketFactory::CreateUDPSocket
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
# endif // !BUILDFLAG(IS_FUCHSIA)

class SocketFactory_CreateTCPConnectedSocket_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  SocketFactory_CreateTCPConnectedSocket_ForwardToCallback(
      SocketFactory::CreateTCPConnectedSocketCallback callback
      ) : callback_(std::move(callback)) {
  }

  SocketFactory_CreateTCPConnectedSocket_ForwardToCallback(const SocketFactory_CreateTCPConnectedSocket_ForwardToCallback&) = delete;
  SocketFactory_CreateTCPConnectedSocket_ForwardToCallback& operator=(const SocketFactory_CreateTCPConnectedSocket_ForwardToCallback&) = delete;

  bool Accept(mojo::Message* message) override;
 private:
  SocketFactory::CreateTCPConnectedSocketCallback callback_;
};

SocketFactoryProxy::SocketFactoryProxy(mojo::MessageReceiverWithResponder* receiver)
    : receiver_(receiver) {
}

void SocketFactoryProxy::CreateTCPConnectedSocket(
    const std::optional<::net::IPEndPoint>& in_local_addr, const ::net::AddressList& in_remote_addr_list, ::network::mojom::TCPConnectedSocketOptionsPtr in_tcp_connected_socket_options, const ::net::MutableNetworkTrafficAnnotationTag& in_traffic_annotation, ::mojo::PendingReceiver<::network::mojom::TCPConnectedSocket> in_socket, ::mojo::PendingRemote<::network::mojom::SocketObserver> in_observer, CreateTCPConnectedSocketCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send network::mojom::SocketFactory::CreateTCPConnectedSocket", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("local_addr"), in_local_addr,
                        "<value of type const std::optional<::net::IPEndPoint>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("remote_addr_list"), in_remote_addr_list,
                        "<value of type const ::net::AddressList&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("tcp_connected_socket_options"), in_tcp_connected_socket_options,
                        "<value of type ::network::mojom::TCPConnectedSocketOptionsPtr>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("traffic_annotation"), in_traffic_annotation,
                        "<value of type const ::net::MutableNetworkTrafficAnnotationTag&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("socket"), in_socket,
                        "<value of type ::mojo::PendingReceiver<::network::mojom::TCPConnectedSocket>>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("observer"), in_observer,
                        "<value of type ::mojo::PendingRemote<::network::mojom::SocketObserver>>");
   });
#endif

  const bool kExpectsResponse = true;
  const bool kIsSync = false;
  const bool kAllowInterrupt = true;
  const bool is_urgent = false;

  const uint32_t kFlags =
      ((kExpectsResponse) ? mojo::Message::kFlagExpectsResponse : 0) |
      ((kIsSync) ? mojo::Message::kFlagIsSync : 0) |
      ((kAllowInterrupt) ? 0 : mojo::Message::kFlagNoInterrupt) |
      ((is_urgent) ? mojo::Message::kFlagIsUrgent : 0);

  const size_t estimated_payload_size =
    0;
  mojo::Message message(
      std::to_underlying(messages::SocketFactory::kCreateTCPConnectedSocket), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::network::mojom::internal::SocketFactory_CreateTCPConnectedSocket_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->local_addr)::BaseType> local_addr_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::IPEndPointDataView>(
    in_local_addr,
    local_addr_fragment);

  params->local_addr.Set(
      local_addr_fragment.is_null() ? nullptr : local_addr_fragment.data());
  mojo::internal::MessageFragment<
      typename decltype(params->remote_addr_list)::BaseType> remote_addr_list_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::AddressListDataView>(
    in_remote_addr_list,
    remote_addr_list_fragment);

  params->remote_addr_list.Set(
      remote_addr_list_fragment.is_null() ? nullptr : remote_addr_list_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->remote_addr_list.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null remote_addr_list in SocketFactory.CreateTCPConnectedSocket request");
  mojo::internal::MessageFragment<
      typename decltype(params->tcp_connected_socket_options)::BaseType> tcp_connected_socket_options_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::TCPConnectedSocketOptionsDataView>(
    in_tcp_connected_socket_options,
    tcp_connected_socket_options_fragment);

  params->tcp_connected_socket_options.Set(
      tcp_connected_socket_options_fragment.is_null() ? nullptr : tcp_connected_socket_options_fragment.data());
  mojo::internal::MessageFragment<
      typename decltype(params->traffic_annotation)::BaseType> traffic_annotation_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::MutableNetworkTrafficAnnotationTagDataView>(
    in_traffic_annotation,
    traffic_annotation_fragment);

  params->traffic_annotation.Set(
      traffic_annotation_fragment.is_null() ? nullptr : traffic_annotation_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->traffic_annotation.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null traffic_annotation in SocketFactory.CreateTCPConnectedSocket request");

  
  mojo::internal::Serialize<mojo::InterfaceRequestDataView<::network::mojom::TCPConnectedSocketInterfaceBase>>(
    in_socket,
    &params->socket,
    &params.message());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(!mojo::internal::IsHandleOrInterfaceValid(params->socket)),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_INVALID_HANDLE,
    "invalid socket in SocketFactory.CreateTCPConnectedSocket request");

  
  mojo::internal::Serialize<mojo::InterfacePtrDataView<::network::mojom::SocketObserverInterfaceBase>>(
    in_observer,
    &params->observer,
    &params.message());

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(SocketFactory::Name_);
  message.set_method_name("CreateTCPConnectedSocket");
#endif
  std::unique_ptr<mojo::MessageReceiver> responder(
      new SocketFactory_CreateTCPConnectedSocket_ForwardToCallback(
          std::move(callback)));
  ::mojo::internal::SendMojoMessage(*receiver_, message, std::move(responder));
}

void SocketFactoryProxy::CreateUDPSocket(
    ::mojo::PendingReceiver<::network::mojom::UDPSocket> in_receiver, ::mojo::PendingRemote<::network::mojom::UDPSocketListener> in_listener) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send network::mojom::SocketFactory::CreateUDPSocket", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("receiver"), in_receiver,
                        "<value of type ::mojo::PendingReceiver<::network::mojom::UDPSocket>>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("listener"), in_listener,
                        "<value of type ::mojo::PendingRemote<::network::mojom::UDPSocketListener>>");
   });
#endif

  const bool kExpectsResponse = false;
  const bool kIsSync = false;
  const bool kAllowInterrupt = true;
  const bool is_urgent = false;

  const uint32_t kFlags =
      ((kExpectsResponse) ? mojo::Message::kFlagExpectsResponse : 0) |
      ((kIsSync) ? mojo::Message::kFlagIsSync : 0) |
      ((kAllowInterrupt) ? 0 : mojo::Message::kFlagNoInterrupt) |
      ((is_urgent) ? mojo::Message::kFlagIsUrgent : 0);

  const size_t estimated_payload_size =
    0;
  mojo::Message message(
      std::to_underlying(messages::SocketFactory::kCreateUDPSocket), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::network::mojom::internal::SocketFactory_CreateUDPSocket_Params_Data> params(
          message);
  params.Allocate();

  
  mojo::internal::Serialize<mojo::InterfaceRequestDataView<::network::mojom::UDPSocketInterfaceBase>>(
    in_receiver,
    &params->receiver,
    &params.message());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(!mojo::internal::IsHandleOrInterfaceValid(params->receiver)),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_INVALID_HANDLE,
    "invalid receiver in SocketFactory.CreateUDPSocket request");

  
  mojo::internal::Serialize<mojo::InterfacePtrDataView<::network::mojom::UDPSocketListenerInterfaceBase>>(
    in_listener,
    &params->listener,
    &params.message());

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(SocketFactory::Name_);
  message.set_method_name("CreateUDPSocket");
#endif
  // This return value may be ignored as false implies the Connector has
  // encountered an error, which will be visible through other means.
  ::mojo::internal::SendMojoMessage(*receiver_, message);
}
class SocketFactory_CreateTCPConnectedSocket_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static SocketFactory::CreateTCPConnectedSocketCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<SocketFactory_CreateTCPConnectedSocket_ProxyToResponder> proxy(
        new SocketFactory_CreateTCPConnectedSocket_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&SocketFactory_CreateTCPConnectedSocket_ProxyToResponder::Run,
                          std::move(proxy));
  }

  ~SocketFactory_CreateTCPConnectedSocket_ProxyToResponder() {
#if DCHECK_IS_ON()
    if (responder_) {
      // If we're being destroyed without being run, we want to ensure the
      // binding endpoint has been closed. This checks for that asynchronously.
      // We pass a bound generated callback to handle the response so that any
      // resulting DCHECK stack will have useful interface type information.
      // Instantiate a ScopedFizzleBlockShutdownTasks to allow this request to
      // fizzle if this happens after shutdown and the endpoint is bound to a
      // BLOCK_SHUTDOWN sequence.
      base::ThreadPoolInstance::ScopedFizzleBlockShutdownTasks fizzler;
      responder_->IsConnectedAsync(base::BindOnce(&OnIsConnectedComplete));
    }
#endif
  }

 private:
  SocketFactory_CreateTCPConnectedSocket_ProxyToResponder(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder)
      : ::mojo::internal::ProxyToResponder(message, std::move(responder)) {
  }

#if DCHECK_IS_ON()
  static void OnIsConnectedComplete(bool connected) {
    DCHECK(!connected)
        << "SocketFactory::CreateTCPConnectedSocketCallback was destroyed without "
        << "first either being run or its corresponding binding being closed. "
        << "It is an error to drop response callbacks which still correspond "
        << "to an open interface pipe.";
  }
#endif

  void Run(
      int32_t in_result, const std::optional<::net::IPEndPoint>& in_local_addr, const std::optional<::net::IPEndPoint>& in_peer_addr, ::mojo::ScopedDataPipeConsumerHandle in_receive_stream, ::mojo::ScopedDataPipeProducerHandle in_send_stream);
};

bool SocketFactory_CreateTCPConnectedSocket_ForwardToCallback::Accept(
    mojo::Message* message) {
  DCHECK(message->is_serialized());
  internal::SocketFactory_CreateTCPConnectedSocket_ResponseParams_Data* params =
      reinterpret_cast<
          internal::SocketFactory_CreateTCPConnectedSocket_ResponseParams_Data*>(
              message->mutable_payload());
  

  // Validation for SocketFactory.0
  bool success = true;
  int32_t p_result{};
  std::optional<::net::IPEndPoint> p_local_addr{};
  std::optional<::net::IPEndPoint> p_peer_addr{};
  ::mojo::ScopedDataPipeConsumerHandle p_receive_stream{};
  ::mojo::ScopedDataPipeProducerHandle p_send_stream{};
  SocketFactory_CreateTCPConnectedSocket_ResponseParamsDataView input_data_view(params, message);
  
  if (success)
    p_result = input_data_view.result();
  if (success && !input_data_view.ReadLocalAddr(&p_local_addr))
    success = false;
  if (success && !input_data_view.ReadPeerAddr(&p_peer_addr))
    success = false;
  if (success)
    p_receive_stream = input_data_view.TakeReceiveStream();
  if (success)
    p_send_stream = input_data_view.TakeSendStream();
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        SocketFactory::Name_, 0, true);
    return false;
  }
  if (!callback_.is_null()) {
    std::move(callback_).Run(
std::move(p_result), 
std::move(p_local_addr), 
std::move(p_peer_addr), 
std::move(p_receive_stream), 
std::move(p_send_stream));
  }
  return true;
}

void SocketFactory_CreateTCPConnectedSocket_ProxyToResponder::Run(
    int32_t in_result, const std::optional<::net::IPEndPoint>& in_local_addr, const std::optional<::net::IPEndPoint>& in_peer_addr, ::mojo::ScopedDataPipeConsumerHandle in_receive_stream, ::mojo::ScopedDataPipeProducerHandle in_send_stream) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply network::mojom::SocketFactory::CreateTCPConnectedSocket", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type int32_t>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("local_addr"), in_local_addr,
                        "<value of type const std::optional<::net::IPEndPoint>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("peer_addr"), in_peer_addr,
                        "<value of type const std::optional<::net::IPEndPoint>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("receive_stream"), in_receive_stream,
                        "<value of type ::mojo::ScopedDataPipeConsumerHandle>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("send_stream"), in_send_stream,
                        "<value of type ::mojo::ScopedDataPipeProducerHandle>");
   });
#endif

  const uint32_t kFlags = mojo::Message::kFlagIsResponse |
      ((is_sync_) ? mojo::Message::kFlagIsSync : 0) |
      ((true) ? 0 : mojo::Message::kFlagNoInterrupt) |
      ((false) ? mojo::Message::kFlagIsUrgent : 0);

  const size_t estimated_payload_size =
    0;
  mojo::Message message(
      std::to_underlying(messages::SocketFactory::kCreateTCPConnectedSocket), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::network::mojom::internal::SocketFactory_CreateTCPConnectedSocket_ResponseParams_Data> params(
          message);
  params.Allocate();

  params->result = in_result;
  mojo::internal::MessageFragment<
      typename decltype(params->local_addr)::BaseType> local_addr_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::IPEndPointDataView>(
    in_local_addr,
    local_addr_fragment);

  params->local_addr.Set(
      local_addr_fragment.is_null() ? nullptr : local_addr_fragment.data());
  mojo::internal::MessageFragment<
      typename decltype(params->peer_addr)::BaseType> peer_addr_fragment(
          params.message());
  
  mojo::internal::Serialize<::network::mojom::IPEndPointDataView>(
    in_peer_addr,
    peer_addr_fragment);

  params->peer_addr.Set(
      peer_addr_fragment.is_null() ? nullptr : peer_addr_fragment.data());

  
  mojo::internal::Serialize<mojo::ScopedDataPipeConsumerHandle>(
    in_receive_stream,
    &params->receive_stream,
    &params.message());

  
  mojo::internal::Serialize<mojo::ScopedDataPipeProducerHandle>(
    in_send_stream,
    &params->send_stream,
    &params.message());

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(SocketFactory::Name_);
  message.set_method_name("CreateTCPConnectedSocket");
#endif

  message.set_request_id(request_id_);
  message.set_trace_nonce(trace_nonce_);
  ::mojo::internal::SendMojoMessage(*responder_, message);
  // SendMojoMessage() fails silently if the responder connection is closed,
  // or if the message is malformed.
  //
  // TODO(darin): If Accept() returns false due to a malformed message, that
  // may be good reason to close the connection. However, we don't have a
  // way to do that from here. We should add a way.
  responder_ = nullptr;
}

// static
bool SocketFactoryStubDispatch::Accept(
    SocketFactory* impl,
    mojo::Message* message) {
  switch (static_cast<messages::SocketFactory>(message->header()->name)) {
    case messages::SocketFactory::kCreateTCPConnectedSocket: {
      break;
    }
    case messages::SocketFactory::kCreateUDPSocket: {
      DCHECK(message->is_serialized());
      internal::SocketFactory_CreateUDPSocket_Params_Data* params =
          reinterpret_cast<internal::SocketFactory_CreateUDPSocket_Params_Data*>(
              message->mutable_payload());
      

      // Validation for SocketFactory.1
      bool success = true;
      ::mojo::PendingReceiver<::network::mojom::UDPSocket> p_receiver{};
      ::mojo::PendingRemote<::network::mojom::UDPSocketListener> p_listener{};
      SocketFactory_CreateUDPSocket_ParamsDataView input_data_view(params, message);
      
      if (success) {
        p_receiver =
            input_data_view.TakeReceiver<decltype(p_receiver)>();
      }
      if (success) {
        p_listener =
            input_data_view.TakeListener<decltype(p_listener)>();
      }
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            SocketFactory::Name_, 1, false);
        return false;
      }
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->CreateUDPSocket(        
        std::move(p_receiver), 
        std::move(p_listener));
      return true;
    }
  }
  return false;
}

// static
bool SocketFactoryStubDispatch::AcceptWithResponder(
    SocketFactory* impl,
    mojo::Message* message,
    std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
  [[maybe_unused]] const bool message_is_sync =
      message->has_flag(mojo::Message::kFlagIsSync);
  [[maybe_unused]] const uint64_t request_id = message->request_id();
  switch (static_cast<messages::SocketFactory>(message->header()->name)) {
    case messages::SocketFactory::kCreateTCPConnectedSocket: {
      internal::SocketFactory_CreateTCPConnectedSocket_Params_Data* params =
          reinterpret_cast<
              internal::SocketFactory_CreateTCPConnectedSocket_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for SocketFactory.0
      bool success = true;
      std::optional<::net::IPEndPoint> p_local_addr{};
      ::net::AddressList p_remote_addr_list{};
      ::network::mojom::TCPConnectedSocketOptionsPtr p_tcp_connected_socket_options{};
      ::net::MutableNetworkTrafficAnnotationTag p_traffic_annotation{};
      ::mojo::PendingReceiver<::network::mojom::TCPConnectedSocket> p_socket{};
      ::mojo::PendingRemote<::network::mojom::SocketObserver> p_observer{};
      SocketFactory_CreateTCPConnectedSocket_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadLocalAddr(&p_local_addr))
        success = false;
      if (success && !input_data_view.ReadRemoteAddrList(&p_remote_addr_list))
        success = false;
      if (success && !input_data_view.ReadTcpConnectedSocketOptions(&p_tcp_connected_socket_options))
        success = false;
      if (success && !input_data_view.ReadTrafficAnnotation(&p_traffic_annotation))
        success = false;
      if (success) {
        p_socket =
            input_data_view.TakeSocket<decltype(p_socket)>();
      }
      if (success) {
        p_observer =
            input_data_view.TakeObserver<decltype(p_observer)>();
      }
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            SocketFactory::Name_, 0, false);
        return false;
      }
      auto callback =
          SocketFactory_CreateTCPConnectedSocket_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->CreateTCPConnectedSocket(        
        std::move(p_local_addr), 
        std::move(p_remote_addr_list), 
        std::move(p_tcp_connected_socket_options), 
        std::move(p_traffic_annotation), 
        std::move(p_socket), 
        std::move(p_observer), std::move(callback));
      return true;
    }
    case messages::SocketFactory::kCreateUDPSocket: {
      break;
    }
  }
  return false;
}
namespace {
}  // namespace
static const mojo::internal::GenericValidationInfo kSocketFactoryValidationInfo[] = {
    { &internal::SocketFactory_CreateTCPConnectedSocket_Params_Data::Validate,
     &internal::SocketFactory_CreateTCPConnectedSocket_ResponseParams_Data::Validate},
    { &internal::SocketFactory_CreateUDPSocket_Params_Data::Validate,
     nullptr /* no response */},
};

bool SocketFactoryRequestValidator::Accept(mojo::Message* message) {
  return mojo::internal::ValidateRequestGenericPacked(
    message,
    ::network::mojom::SocketFactory::Name_,
    kSocketFactoryValidationInfo);
}

bool SocketFactoryResponseValidator::Accept(mojo::Message* message) {
  return mojo::internal::ValidateResponseGenericPacked(
    message,
    ::network::mojom::SocketFactory::Name_,
    kSocketFactoryValidationInfo);
}


}  // network::mojom


namespace mojo {

}  // namespace mojo


// Symbols declared in the -test-utils.h header are defined here instead of a
// separate .cc file to save compile time.


namespace network::mojom {


void SocketFactoryInterceptorForTesting::CreateTCPConnectedSocket(const std::optional<::net::IPEndPoint>& local_addr, const ::net::AddressList& remote_addr_list, ::network::mojom::TCPConnectedSocketOptionsPtr tcp_connected_socket_options, const ::net::MutableNetworkTrafficAnnotationTag& traffic_annotation, ::mojo::PendingReceiver<::network::mojom::TCPConnectedSocket> socket, ::mojo::PendingRemote<::network::mojom::SocketObserver> observer, CreateTCPConnectedSocketCallback callback) {
  GetForwardingInterface()->CreateTCPConnectedSocket(
    std::move(local_addr)
    , 
    std::move(remote_addr_list)
    , 
    std::move(tcp_connected_socket_options)
    , 
    std::move(traffic_annotation)
    , 
    std::move(socket)
    , 
    std::move(observer)
    , std::move(callback));
}
void SocketFactoryInterceptorForTesting::CreateUDPSocket(::mojo::PendingReceiver<::network::mojom::UDPSocket> receiver, ::mojo::PendingRemote<::network::mojom::UDPSocketListener> listener) {
  GetForwardingInterface()->CreateUDPSocket(
    std::move(receiver)
    , 
    std::move(listener)
    );
}
SocketFactoryAsyncWaiter::SocketFactoryAsyncWaiter(
    SocketFactory* proxy) : proxy_(proxy) {}

SocketFactoryAsyncWaiter::~SocketFactoryAsyncWaiter() = default;


void SocketFactoryAsyncWaiter::CreateTCPConnectedSocket(
    const std::optional<::net::IPEndPoint>& local_addr, const ::net::AddressList& remote_addr_list, ::network::mojom::TCPConnectedSocketOptionsPtr tcp_connected_socket_options, const ::net::MutableNetworkTrafficAnnotationTag& traffic_annotation, ::mojo::PendingReceiver<::network::mojom::TCPConnectedSocket> socket, ::mojo::PendingRemote<::network::mojom::SocketObserver> observer, int32_t* out_result, std::optional<::net::IPEndPoint>* out_local_addr, std::optional<::net::IPEndPoint>* out_peer_addr, ::mojo::ScopedDataPipeConsumerHandle* out_receive_stream, ::mojo::ScopedDataPipeProducerHandle* out_send_stream) {
  base::RunLoop loop;
  proxy_->CreateTCPConnectedSocket(
      std::move(local_addr),
      std::move(remote_addr_list),
      std::move(tcp_connected_socket_options),
      std::move(traffic_annotation),
      std::move(socket),
      std::move(observer),
      base::BindOnce(
          [](base::RunLoop* loop,
             int32_t* out_result
,
             std::optional<::net::IPEndPoint>* out_local_addr
,
             std::optional<::net::IPEndPoint>* out_peer_addr
,
             ::mojo::ScopedDataPipeConsumerHandle* out_receive_stream
,
             ::mojo::ScopedDataPipeProducerHandle* out_send_stream
,
             int32_t result,
             const std::optional<::net::IPEndPoint>& local_addr,
             const std::optional<::net::IPEndPoint>& peer_addr,
             ::mojo::ScopedDataPipeConsumerHandle receive_stream,
             ::mojo::ScopedDataPipeProducerHandle send_stream) {*out_result = std::move(result);*out_local_addr = std::move(local_addr);*out_peer_addr = std::move(peer_addr);*out_receive_stream = std::move(receive_stream);*out_send_stream = std::move(send_stream);
            loop->Quit();
          },
          &loop,
          out_result,
          out_local_addr,
          out_peer_addr,
          out_receive_stream,
          out_send_stream));
  loop.Run();
}








}  // network::mojom


#if defined(__clang__)
#pragma clang diagnostic pop
#endif