// components/enterprise/connectors/connectors_internals.mojom-shared-internal.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 COMPONENTS_ENTERPRISE_CONNECTORS_CONNECTORS_INTERNALS_MOJOM_SHARED_INTERNAL_H_
#define COMPONENTS_ENTERPRISE_CONNECTORS_CONNECTORS_INTERNALS_MOJOM_SHARED_INTERNAL_H_
#include "mojo/public/cpp/bindings/lib/array_internal.h"
#include "mojo/public/cpp/bindings/lib/bindings_internal.h"
#include "mojo/public/cpp/bindings/lib/map_data_internal.h"
#include "mojo/public/cpp/bindings/lib/validation_errors.h"
#include "mojo/public/cpp/bindings/lib/message_fragment.h"
#include "mojo/public/c/system/macros.h"
#include "mojo/public/mojom/base/time.mojom-shared-internal.h"
#include "mojo/public/cpp/bindings/lib/native_enum_data.h"
#include "mojo/public/interfaces/bindings/native_struct.mojom-shared-internal.h"



namespace mojo {
namespace internal {
class ValidationContext;
}
}


namespace connectors_internals::mojom {
namespace internal {
class Int32Value_Data;
class LoadedKeyInfo_Data;
class KeyInfo_Data;
class ConsentMetadata_Data;
class DeviceTrustState_Data;
class CertificateMetadata_Data;
class ClientIdentity_Data;
class ClientCertificateState_Data;
class SignalsReportingState_Data;
class ProvisioningDomainConfig_Data;
class ProvisioningDomainState_Data;
class KeyUploadStatus_Data;

struct KeyManagerInitializedValue_Data {
 public:
  static bool constexpr kIsExtensible = false;

  static bool IsKnownValue(int32_t value) {
    switch (value) {
      case 0:
      case 1:
      case 2:
        return true;
    }
    return false;
  }

  static bool Validate(int32_t value,
                       mojo::internal::ValidationContext* validation_context) {
    if (kIsExtensible || IsKnownValue(value))
      return true;

    ReportValidationError(validation_context,
                          mojo::internal::VALIDATION_ERROR_UNKNOWN_ENUM_VALUE);
    return false;
  }
};

struct KeyTrustLevel_Data {
 public:
  static bool constexpr kIsExtensible = false;

  static bool IsKnownValue(int32_t value) {
    switch (value) {
      case 0:
      case 1:
      case 2:
      case 3:
        return true;
    }
    return false;
  }

  static bool Validate(int32_t value,
                       mojo::internal::ValidationContext* validation_context) {
    if (kIsExtensible || IsKnownValue(value))
      return true;

    ReportValidationError(validation_context,
                          mojo::internal::VALIDATION_ERROR_UNKNOWN_ENUM_VALUE);
    return false;
  }
};

struct KeyType_Data {
 public:
  static bool constexpr kIsExtensible = false;

  static bool IsKnownValue(int32_t value) {
    switch (value) {
      case 0:
      case 1:
      case 2:
        return true;
    }
    return false;
  }

  static bool Validate(int32_t value,
                       mojo::internal::ValidationContext* validation_context) {
    if (kIsExtensible || IsKnownValue(value))
      return true;

    ReportValidationError(validation_context,
                          mojo::internal::VALIDATION_ERROR_UNKNOWN_ENUM_VALUE);
    return false;
  }
};

struct KeyManagerPermanentFailure_Data {
 public:
  static bool constexpr kIsExtensible = false;

  static bool IsKnownValue(int32_t value) {
    switch (value) {
      case 0:
      case 1:
      case 2:
      case 3:
      case 4:
        return true;
    }
    return false;
  }

  static bool Validate(int32_t value,
                       mojo::internal::ValidationContext* validation_context) {
    if (kIsExtensible || IsKnownValue(value))
      return true;

    ReportValidationError(validation_context,
                          mojo::internal::VALIDATION_ERROR_UNKNOWN_ENUM_VALUE);
    return false;
  }
};

#pragma pack(push, 1)


class  KeyUploadStatus_Data {
 public:
  // Used to identify Mojom Union Data Classes.
  typedef void MojomUnionDataType;

  KeyUploadStatus_Data() = default;
  // Do nothing in the destructor since it won't be called when it is a
  // non-inlined union.
  ~KeyUploadStatus_Data() = default;

  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context,
                       bool inlined);

  bool is_null() const { return size == 0; }

  void set_null() {
    size = 0U;
    tag = static_cast<KeyUploadStatus_Tag>(0);
    data.unknown = 0U;
  }

  // TODO(crbug.com/40731316): SHOUTY_CASE values are being deprecated per C++ code style
  // guidelines (https://google.github.io/styleguide/cppguide.html#Enumerator_Names),
  // please use kCamelCase values instead.  Cleanup NULL_VALUE, BOOL_VALUE, INT_VALUE, etc.
  // generation once codebase is transitioned to kNullValue, kBoolValue, kIntValue, etc.
  enum class KeyUploadStatus_Tag : uint32_t {

    
    kSyncKeyResponseCode,
    
    kUploadClientError,
  };

  // A note on layout:
  // "Each non-static data member is allocated as if it were the sole member of
  // a struct." - Section 9.5.2 ISO/IEC 14882:2011 (The C++ Spec)
  union MOJO_ALIGNAS(8) Union_ {
    Union_() : unknown(0) {}
    mojo::internal::Pointer<internal::Int32Value_Data> f_sync_key_response_code;
    mojo::internal::Pointer<mojo::internal::String_Data> f_upload_client_error;
    uint64_t unknown;
  };

  uint32_t size;
  KeyUploadStatus_Tag tag;
  Union_ data;
};
static_assert(sizeof(KeyUploadStatus_Data) == mojo::internal::kUnionDataSize,
              "Bad sizeof(KeyUploadStatus_Data)");
class  Int32Value_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  int32_t value;
  uint8_t padfinal_[4];

 private:
  friend class mojo::internal::MessageFragment<Int32Value_Data>;

  Int32Value_Data();
  ~Int32Value_Data() = delete;
};
static_assert(sizeof(Int32Value_Data) == 16,
              "Bad sizeof(Int32Value_Data)");
// Used by Int32Value::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct Int32Value_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  Int32Value_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~Int32Value_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<Int32Value_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    Int32Value_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  LoadedKeyInfo_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  int32_t trust_level;
  int32_t key_type;
  mojo::internal::Pointer<mojo::internal::String_Data> encoded_spki_hash;
  internal::KeyUploadStatus_Data key_upload_status;
  uint8_t has_ssl_key : 1;
  uint8_t padfinal_[7];

 private:
  friend class mojo::internal::MessageFragment<LoadedKeyInfo_Data>;

  LoadedKeyInfo_Data();
  ~LoadedKeyInfo_Data() = delete;
};
static_assert(sizeof(LoadedKeyInfo_Data) == 48,
              "Bad sizeof(LoadedKeyInfo_Data)");
// Used by LoadedKeyInfo::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct LoadedKeyInfo_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  LoadedKeyInfo_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~LoadedKeyInfo_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<LoadedKeyInfo_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    LoadedKeyInfo_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  KeyInfo_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  int32_t is_key_manager_initialized;
  int32_t permanent_failure;
  mojo::internal::Pointer<internal::LoadedKeyInfo_Data> loaded_key_info;

 private:
  friend class mojo::internal::MessageFragment<KeyInfo_Data>;

  KeyInfo_Data();
  ~KeyInfo_Data() = delete;
};
static_assert(sizeof(KeyInfo_Data) == 24,
              "Bad sizeof(KeyInfo_Data)");
// Used by KeyInfo::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct KeyInfo_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  KeyInfo_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~KeyInfo_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<KeyInfo_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    KeyInfo_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  ConsentMetadata_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  uint8_t can_collect_signals : 1;
  uint8_t consent_received : 1;
  uint8_t padfinal_[7];

 private:
  friend class mojo::internal::MessageFragment<ConsentMetadata_Data>;

  ConsentMetadata_Data();
  ~ConsentMetadata_Data() = delete;
};
static_assert(sizeof(ConsentMetadata_Data) == 16,
              "Bad sizeof(ConsentMetadata_Data)");
// Used by ConsentMetadata::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct ConsentMetadata_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  ConsentMetadata_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~ConsentMetadata_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<ConsentMetadata_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    ConsentMetadata_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  DeviceTrustState_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  uint8_t is_enabled : 1;
  uint8_t pad0_[7];
  mojo::internal::Pointer<mojo::internal::Array_Data<mojo::internal::Pointer<mojo::internal::String_Data>>> policy_enabled_levels;
  mojo::internal::Pointer<internal::KeyInfo_Data> key_info;
  mojo::internal::Pointer<mojo::internal::String_Data> signals_json;
  mojo::internal::Pointer<internal::ConsentMetadata_Data> consent_metadata;

 private:
  friend class mojo::internal::MessageFragment<DeviceTrustState_Data>;

  DeviceTrustState_Data();
  ~DeviceTrustState_Data() = delete;
};
static_assert(sizeof(DeviceTrustState_Data) == 48,
              "Bad sizeof(DeviceTrustState_Data)");
// Used by DeviceTrustState::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct DeviceTrustState_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  DeviceTrustState_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~DeviceTrustState_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<DeviceTrustState_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    DeviceTrustState_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  CertificateMetadata_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::String_Data> serial_number;
  mojo::internal::Pointer<mojo::internal::String_Data> fingerprint;
  mojo::internal::Pointer<mojo::internal::String_Data> creation_date_string;
  mojo::internal::Pointer<mojo::internal::String_Data> expiration_date_string;
  mojo::internal::Pointer<mojo::internal::String_Data> subject_display_name;
  mojo::internal::Pointer<mojo::internal::String_Data> issuer_display_name;

 private:
  friend class mojo::internal::MessageFragment<CertificateMetadata_Data>;

  CertificateMetadata_Data();
  ~CertificateMetadata_Data() = delete;
};
static_assert(sizeof(CertificateMetadata_Data) == 56,
              "Bad sizeof(CertificateMetadata_Data)");
// Used by CertificateMetadata::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct CertificateMetadata_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  CertificateMetadata_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~CertificateMetadata_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<CertificateMetadata_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    CertificateMetadata_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  ClientIdentity_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::String_Data> identity_name;
  mojo::internal::Pointer<internal::LoadedKeyInfo_Data> loaded_key_info;
  mojo::internal::Pointer<internal::CertificateMetadata_Data> certificate_metadata;

 private:
  friend class mojo::internal::MessageFragment<ClientIdentity_Data>;

  ClientIdentity_Data();
  ~ClientIdentity_Data() = delete;
};
static_assert(sizeof(ClientIdentity_Data) == 32,
              "Bad sizeof(ClientIdentity_Data)");
// Used by ClientIdentity::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct ClientIdentity_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  ClientIdentity_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~ClientIdentity_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<ClientIdentity_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    ClientIdentity_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  ClientCertificateState_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::Array_Data<mojo::internal::Pointer<mojo::internal::String_Data>>> policy_enabled_levels;
  mojo::internal::Pointer<internal::ClientIdentity_Data> managed_profile_identity;
  mojo::internal::Pointer<internal::ClientIdentity_Data> managed_browser_identity;

 private:
  friend class mojo::internal::MessageFragment<ClientCertificateState_Data>;

  ClientCertificateState_Data();
  ~ClientCertificateState_Data() = delete;
};
static_assert(sizeof(ClientCertificateState_Data) == 32,
              "Bad sizeof(ClientCertificateState_Data)");
// Used by ClientCertificateState::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct ClientCertificateState_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  ClientCertificateState_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~ClientCertificateState_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<ClientCertificateState_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    ClientCertificateState_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  SignalsReportingState_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::String_Data> error_info;
  uint8_t status_report_enabled : 1;
  uint8_t signals_report_enabled : 1;
  uint8_t can_collect_all_fields : 1;
  uint8_t pad3_[7];
  mojo::internal::Pointer<mojo::internal::String_Data> last_upload_attempt_timestamp;
  mojo::internal::Pointer<mojo::internal::String_Data> last_upload_success_timestamp;
  mojo::internal::Pointer<mojo::internal::String_Data> last_signals_upload_config;
  mojo::internal::Pointer<mojo::internal::String_Data> signals_json;

 private:
  friend class mojo::internal::MessageFragment<SignalsReportingState_Data>;

  SignalsReportingState_Data();
  ~SignalsReportingState_Data() = delete;
};
static_assert(sizeof(SignalsReportingState_Data) == 56,
              "Bad sizeof(SignalsReportingState_Data)");
// Used by SignalsReportingState::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct SignalsReportingState_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  SignalsReportingState_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~SignalsReportingState_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<SignalsReportingState_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    SignalsReportingState_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  ProvisioningDomainConfig_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::String_Data> pvd_id;
  mojo::internal::Pointer<::mojo_base::mojom::internal::JSTime_Data> expiration_time;
  mojo::internal::Pointer<mojo::internal::String_Data> routes_json;
  mojo::internal::Pointer<mojo::internal::String_Data> policy_json;

 private:
  friend class mojo::internal::MessageFragment<ProvisioningDomainConfig_Data>;

  ProvisioningDomainConfig_Data();
  ~ProvisioningDomainConfig_Data() = delete;
};
static_assert(sizeof(ProvisioningDomainConfig_Data) == 40,
              "Bad sizeof(ProvisioningDomainConfig_Data)");
// Used by ProvisioningDomainConfig::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct ProvisioningDomainConfig_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  ProvisioningDomainConfig_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~ProvisioningDomainConfig_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<ProvisioningDomainConfig_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    ProvisioningDomainConfig_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};
class  ProvisioningDomainState_Data {
 public:
  static bool Validate(const void* data,
                       mojo::internal::ValidationContext* validation_context);

  mojo::internal::StructHeader header_;
  mojo::internal::Pointer<mojo::internal::Array_Data<mojo::internal::Pointer<internal::ProvisioningDomainConfig_Data>>> pvd_configs;

 private:
  friend class mojo::internal::MessageFragment<ProvisioningDomainState_Data>;

  ProvisioningDomainState_Data();
  ~ProvisioningDomainState_Data() = delete;
};
static_assert(sizeof(ProvisioningDomainState_Data) == 16,
              "Bad sizeof(ProvisioningDomainState_Data)");
// Used by ProvisioningDomainState::WrapAsMessage to lazily serialize the struct.
template <typename UserType, typename DataView>
struct ProvisioningDomainState_UnserializedMessageContext
    : public mojo::internal::UnserializedMessageContext {
 public:
  static const mojo::internal::UnserializedMessageContext::Tag kMessageTag;

  ProvisioningDomainState_UnserializedMessageContext(
    uint32_t message_name,
    uint32_t message_flags,
    UserType input)
      : mojo::internal::UnserializedMessageContext(&kMessageTag, message_name, message_flags)
      , user_data_(std::move(input)) {}
  ~ProvisioningDomainState_UnserializedMessageContext() override = default;

  UserType TakeData() {
    return std::move(user_data_);
  }

 private:
  // mojo::internal::UnserializedMessageContext:
  void Serialize(mojo::Message& message) override {
    mojo::internal::MessageFragment<ProvisioningDomainState_Data> fragment(message);
    mojo::internal::Serialize<DataView>(user_data_, fragment);
  }

  UserType user_data_;
};

template <typename UserType, typename DataView>
const mojo::internal::UnserializedMessageContext::Tag
    ProvisioningDomainState_UnserializedMessageContext<UserType, DataView>::kMessageTag = {};

#pragma pack(pop)

}  // namespace internal

}  // connectors_internals::mojom

#endif  // COMPONENTS_ENTERPRISE_CONNECTORS_CONNECTORS_INTERNALS_MOJOM_SHARED_INTERNAL_H_