// components/unexportable_keys/mojom/unexportable_key_service.mojom-blink.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 "components/unexportable_keys/mojom/unexportable_key_service.mojom-blink.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 "components/unexportable_keys/mojom/unexportable_key_service.mojom-params-data.h"
#include "components/unexportable_keys/mojom/unexportable_key_service.mojom-shared-message-ids.h"

#include "components/unexportable_keys/mojom/unexportable_key_service.mojom-blink-import-headers.h"
#include "components/unexportable_keys/mojom/unexportable_key_service.mojom-blink-test-utils.h"
#include "mojo/public/cpp/bindings/lib/wtf_serialization.h"


namespace unexportable_keys::mojom::blink {
UnexportableSigningKeyId::UnexportableSigningKeyId()
    : key_id() {}

UnexportableSigningKeyId::UnexportableSigningKeyId(
    const ::base::UnguessableToken& key_id_in)
    : key_id(std::move(key_id_in)) {}

UnexportableSigningKeyId::~UnexportableSigningKeyId() = default;

void UnexportableSigningKeyId::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "key_id"), this->key_id,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::base::UnguessableToken&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool UnexportableSigningKeyId::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
UnexportableAttestationKeyId::UnexportableAttestationKeyId()
    : key_id() {}

UnexportableAttestationKeyId::UnexportableAttestationKeyId(
    const ::base::UnguessableToken& key_id_in)
    : key_id(std::move(key_id_in)) {}

UnexportableAttestationKeyId::~UnexportableAttestationKeyId() = default;

void UnexportableAttestationKeyId::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "key_id"), this->key_id,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::base::UnguessableToken&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool UnexportableAttestationKeyId::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
NewKeyMetadata::NewKeyMetadata()
    : subject_public_key_info(),
      wrapped_key(),
      algorithm(),
      key_tag(),
      creation_time() {}

NewKeyMetadata::NewKeyMetadata(
    ::blink::Vector<uint8_t> subject_public_key_info_in,
    ::blink::Vector<uint8_t> wrapped_key_in,
    SignatureAlgorithm algorithm_in,
    const ::blink::String& key_tag_in,
    std::optional<::base::Time> creation_time_in)
    : subject_public_key_info(std::move(subject_public_key_info_in)),
      wrapped_key(std::move(wrapped_key_in)),
      algorithm(std::move(algorithm_in)),
      key_tag(std::move(key_tag_in)),
      creation_time(std::move(creation_time_in)) {}

NewKeyMetadata::~NewKeyMetadata() = default;

void NewKeyMetadata::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "subject_public_key_info"), this->subject_public_key_info,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::blink::Vector<uint8_t>&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "wrapped_key"), this->wrapped_key,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::blink::Vector<uint8_t>&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "algorithm"), this->algorithm,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type SignatureAlgorithm>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "key_tag"), this->key_tag,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::blink::String&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "creation_time"), this->creation_time,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type std::optional<::base::Time>>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool NewKeyMetadata::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
NewSigningKeyData::NewSigningKeyData()
    : key_id(),
      metadata() {}

NewSigningKeyData::NewSigningKeyData(
    UnexportableSigningKeyIdPtr key_id_in,
    NewKeyMetadataPtr metadata_in)
    : key_id(std::move(key_id_in)),
      metadata(std::move(metadata_in)) {}

NewSigningKeyData::~NewSigningKeyData() = default;

void NewSigningKeyData::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "key_id"), this->key_id,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type UnexportableSigningKeyIdPtr>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "metadata"), this->metadata,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type NewKeyMetadataPtr>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool NewSigningKeyData::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
NewAttestationKeyData::NewAttestationKeyData()
    : key_id(),
      metadata() {}

NewAttestationKeyData::NewAttestationKeyData(
    UnexportableAttestationKeyIdPtr key_id_in,
    NewKeyMetadataPtr metadata_in)
    : key_id(std::move(key_id_in)),
      metadata(std::move(metadata_in)) {}

NewAttestationKeyData::~NewAttestationKeyData() = default;

void NewAttestationKeyData::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "key_id"), this->key_id,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type UnexportableAttestationKeyIdPtr>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "metadata"), this->metadata,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type NewKeyMetadataPtr>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool NewAttestationKeyData::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
AttestationStatement::AttestationStatement()
    : format(),
      statement(),
      signature() {}

AttestationStatement::AttestationStatement(
    AttestationFormat format_in,
    ::blink::Vector<uint8_t> statement_in,
    ::blink::Vector<uint8_t> signature_in)
    : format(std::move(format_in)),
      statement(std::move(statement_in)),
      signature(std::move(signature_in)) {}

AttestationStatement::~AttestationStatement() = default;

void AttestationStatement::WriteIntoTrace(
    perfetto::TracedValue traced_context) const {
  [[maybe_unused]] auto dict = std::move(traced_context).WriteDictionary();
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "format"), this->format,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type AttestationFormat>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "statement"), this->statement,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::blink::Vector<uint8_t>&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
  perfetto::WriteIntoTracedValueWithFallback(
    dict.AddItem(
      "signature"), this->signature,
#if BUILDFLAG(MOJO_TRACE_ENABLED)
      "<value of type const ::blink::Vector<uint8_t>&>"
#else
      "<value>"
#endif  // BUILDFLAG(MOJO_TRACE_ENABLED)
    );
}

bool AttestationStatement::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context);
}
UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr
UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::NewSuccess(
    NewSigningKeyDataPtr value) {
  return UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr
UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewSigningKeyDataPtr value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::~UnexportableKeyService_GenerateSigningKey_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::set_success(NewSigningKeyDataPtr success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) NewSigningKeyDataPtr(
        std::move(success));
  }
}

void UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewSigningKeyDataPtr value)
    : success(std::move(value)) {}

UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr
UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::NewSuccess(
    NewSigningKeyDataPtr value) {
  return UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr
UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewSigningKeyDataPtr value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::~UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::set_success(NewSigningKeyDataPtr success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) NewSigningKeyDataPtr(
        std::move(success));
  }
}

void UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewSigningKeyDataPtr value)
    : success(std::move(value)) {}

UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr
UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::NewSuccess(
    NewAttestationKeyDataPtr value) {
  return UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr
UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewAttestationKeyDataPtr value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::~UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::set_success(NewAttestationKeyDataPtr success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) NewAttestationKeyDataPtr(
        std::move(success));
  }
}

void UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewAttestationKeyDataPtr value)
    : success(std::move(value)) {}

UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr
UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::NewSuccess(
    NewAttestationKeyDataPtr value) {
  return UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr
UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewAttestationKeyDataPtr value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::~UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::set_success(NewAttestationKeyDataPtr success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) NewAttestationKeyDataPtr(
        std::move(success));
  }
}

void UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    NewAttestationKeyDataPtr value)
    : success(std::move(value)) {}

UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_Sign_ResponseParam_ResultPtr
UnexportableKeyService_Sign_ResponseParam_Result::NewSuccess(
    ::blink::Vector<uint8_t> value) {
  return UnexportableKeyService_Sign_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_Sign_ResponseParam_ResultPtr
UnexportableKeyService_Sign_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_Sign_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_Sign_ResponseParam_Result::UnexportableKeyService_Sign_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    ::blink::Vector<uint8_t> value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_Sign_ResponseParam_Result::UnexportableKeyService_Sign_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_Sign_ResponseParam_Result::~UnexportableKeyService_Sign_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_Sign_ResponseParam_Result::set_success(::blink::Vector<uint8_t> success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) ::blink::Vector<uint8_t>(
        std::move(success));
  }
}

void UnexportableKeyService_Sign_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_Sign_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    ::blink::Vector<uint8_t> value)
    : success(std::move(value)) {}

UnexportableKeyService_Sign_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_Sign_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_Sign_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_Certify_ResponseParam_ResultPtr
UnexportableKeyService_Certify_ResponseParam_Result::NewSuccess(
    AttestationStatementPtr value) {
  return UnexportableKeyService_Certify_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_Certify_ResponseParam_ResultPtr
UnexportableKeyService_Certify_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_Certify_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_Certify_ResponseParam_Result::UnexportableKeyService_Certify_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    AttestationStatementPtr value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_Certify_ResponseParam_Result::UnexportableKeyService_Certify_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_Certify_ResponseParam_Result::~UnexportableKeyService_Certify_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_Certify_ResponseParam_Result::set_success(AttestationStatementPtr success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) AttestationStatementPtr(
        std::move(success));
  }
}

void UnexportableKeyService_Certify_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_Certify_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    AttestationStatementPtr value)
    : success(std::move(value)) {}

UnexportableKeyService_Certify_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_Certify_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_Certify_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr
UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::NewSuccess(
    ::blink::Vector<NewSigningKeyDataPtr> value) {
  return UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr
UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    ::blink::Vector<NewSigningKeyDataPtr> value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::~UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::set_success(::blink::Vector<NewSigningKeyDataPtr> success) {
  if (tag_ == Tag::kSuccess) {
    data_.success = std::move(success);
  } else {
    DestroyActive();
    tag_ = Tag::kSuccess;
    new (&data_.success) ::blink::Vector<NewSigningKeyDataPtr>(
        std::move(success));
  }
}

void UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    ::blink::Vector<NewSigningKeyDataPtr> value)
    : success(std::move(value)) {}

UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}

bool UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr
UnexportableKeyService_DeleteKeys_ResponseParam_Result::NewSuccess(
    uint64_t value) {
  return UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr
UnexportableKeyService_DeleteKeys_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_DeleteKeys_ResponseParam_Result::UnexportableKeyService_DeleteKeys_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    uint64_t value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_DeleteKeys_ResponseParam_Result::UnexportableKeyService_DeleteKeys_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_DeleteKeys_ResponseParam_Result::~UnexportableKeyService_DeleteKeys_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_DeleteKeys_ResponseParam_Result::set_success(uint64_t success) {
  if (tag_ != Tag::kSuccess) {
    DestroyActive();
    tag_ = Tag::kSuccess;
  }
  data_.success = success;
}

void UnexportableKeyService_DeleteKeys_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_DeleteKeys_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    uint64_t value)
    : success(std::move(value)) {}

UnexportableKeyService_DeleteKeys_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_DeleteKeys_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}
size_t UnexportableKeyService_DeleteKeys_ResponseParam_Result::Hash(size_t seed) const {
  seed = mojo::internal::HashCombine(seed, static_cast<uint32_t>(tag_));
  switch (tag_) {

    case Tag::kSuccess:
      return mojo::internal::WTFHash(seed, data_.success);
    case Tag::kFailure:
      return mojo::internal::WTFHash(seed, data_.failure);
    default:
      NOTREACHED();
  }
}

bool UnexportableKeyService_DeleteKeys_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr
UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::NewSuccess(
    uint64_t value) {
  return UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
      std::move(value));
}

UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr
UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::NewFailure(
    ServiceError value) {
  return UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr(
      std::in_place,
      std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
      std::move(value));
}

UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    uint64_t value)
    : tag_(Tag::kSuccess),
      data_(std::in_place_index<static_cast<size_t>(Tag::kSuccess)>,
            std::move(value)) {}

UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : tag_(Tag::kFailure),
      data_(std::in_place_index<static_cast<size_t>(Tag::kFailure)>,
            std::move(value)) {}
UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::~UnexportableKeyService_DeleteAllKeys_ResponseParam_Result() {
  DestroyActive();
}

void UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::set_success(uint64_t success) {
  if (tag_ != Tag::kSuccess) {
    DestroyActive();
    tag_ = Tag::kSuccess;
  }
  data_.success = success;
}

void UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::set_failure(ServiceError failure) {
  if (tag_ != Tag::kFailure) {
    DestroyActive();
    tag_ = Tag::kFailure;
  }
  data_.failure = failure;
}


UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kSuccess)>,
    uint64_t value)
    : success(std::move(value)) {}

UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::Union_::Union_(
    std::in_place_index_t<static_cast<size_t>(Tag::kFailure)>,
    ServiceError value)
    : failure(std::move(value)) {}

void UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::DestroyActive() {
  switch (tag_) {

    case Tag::kSuccess:
      std::destroy_at(&data_.success);
      break;
    case Tag::kFailure:
      std::destroy_at(&data_.failure);
      break;
  }
}
size_t UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::Hash(size_t seed) const {
  seed = mojo::internal::HashCombine(seed, static_cast<uint32_t>(tag_));
  switch (tag_) {

    case Tag::kSuccess:
      return mojo::internal::WTFHash(seed, data_.success);
    case Tag::kFailure:
      return mojo::internal::WTFHash(seed, data_.failure);
    default:
      NOTREACHED();
  }
}

bool UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::Validate(
    const void* data,
    mojo::internal::ValidationContext* validation_context) {
  return Data_::Validate(data, validation_context, false);
}
// The declaration includes the definition on other builds.

UnexportableKeyService::IPCStableHashFunction UnexportableKeyService::MessageToMethodInfo_(mojo::Message& message) {
#if !BUILDFLAG(IS_FUCHSIA)
  switch (static_cast<messages::UnexportableKeyService>(message.name())) {
    case messages::UnexportableKeyService::kGenerateSigningKey: {
      return &UnexportableKeyService::GenerateSigningKey_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kFromWrappedSigningKey: {
      return &UnexportableKeyService::FromWrappedSigningKey_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kGenerateAttestationKey: {
      return &UnexportableKeyService::GenerateAttestationKey_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kFromWrappedAttestationKey: {
      return &UnexportableKeyService::FromWrappedAttestationKey_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kSign: {
      return &UnexportableKeyService::Sign_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kCertify: {
      return &UnexportableKeyService::Certify_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kGetAllKeysForGarbageCollection: {
      return &UnexportableKeyService::GetAllKeysForGarbageCollection_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kDeleteKeys: {
      return &UnexportableKeyService::DeleteKeys_Sym::IPCStableHash;
    }
    case messages::UnexportableKeyService::kDeleteAllKeys: {
      return &UnexportableKeyService::DeleteAllKeys_Sym::IPCStableHash;
    }
  }
#endif  // !BUILDFLAG(IS_FUCHSIA)
  return nullptr;
}


const char* UnexportableKeyService::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::UnexportableKeyService>(message.name())) {
      case messages::UnexportableKeyService::kGenerateSigningKey:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::GenerateSigningKey";
      case messages::UnexportableKeyService::kFromWrappedSigningKey:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::FromWrappedSigningKey";
      case messages::UnexportableKeyService::kGenerateAttestationKey:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::GenerateAttestationKey";
      case messages::UnexportableKeyService::kFromWrappedAttestationKey:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::FromWrappedAttestationKey";
      case messages::UnexportableKeyService::kSign:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::Sign";
      case messages::UnexportableKeyService::kCertify:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::Certify";
      case messages::UnexportableKeyService::kGetAllKeysForGarbageCollection:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::GetAllKeysForGarbageCollection";
      case messages::UnexportableKeyService::kDeleteKeys:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::DeleteKeys";
      case messages::UnexportableKeyService::kDeleteAllKeys:
            return "Receive unexportable_keys::mojom::UnexportableKeyService::DeleteAllKeys";
    }
  } else {
    switch (static_cast<messages::UnexportableKeyService>(message.name())) {
      case messages::UnexportableKeyService::kGenerateSigningKey:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::GenerateSigningKey";
      case messages::UnexportableKeyService::kFromWrappedSigningKey:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::FromWrappedSigningKey";
      case messages::UnexportableKeyService::kGenerateAttestationKey:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::GenerateAttestationKey";
      case messages::UnexportableKeyService::kFromWrappedAttestationKey:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::FromWrappedAttestationKey";
      case messages::UnexportableKeyService::kSign:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::Sign";
      case messages::UnexportableKeyService::kCertify:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::Certify";
      case messages::UnexportableKeyService::kGetAllKeysForGarbageCollection:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::GetAllKeysForGarbageCollection";
      case messages::UnexportableKeyService::kDeleteKeys:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::DeleteKeys";
      case messages::UnexportableKeyService::kDeleteAllKeys:
            return "Receive reply unexportable_keys::mojom::UnexportableKeyService::DeleteAllKeys";
    }
  }
  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 UnexportableKeyService::GenerateSigningKey_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 = 0x679e0e05;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::GenerateSigningKey
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::FromWrappedSigningKey_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 = 0xbc4f9fc2;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::FromWrappedSigningKey
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::GenerateAttestationKey_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 = 0x215b57fe;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::GenerateAttestationKey
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::FromWrappedAttestationKey_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 = 0xfd454048;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::FromWrappedAttestationKey
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::Sign_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 = 0x7604e768;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::Sign
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::Certify_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 = 0x765c2f6d;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::Certify
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::GetAllKeysForGarbageCollection_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 = 0x0cb18723;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::GetAllKeysForGarbageCollection
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::DeleteKeys_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 = 0x610e0e10;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::DeleteKeys
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
uint32_t UnexportableKeyService::DeleteAllKeys_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 = 0x9f43b866;  // IPCStableHash for unexportable_keys::mojom::UnexportableKeyService::DeleteAllKeys
  const uint32_t hash = kHash;
  base::debug::Alias(&hash);
  return hash;
}
# endif // !BUILDFLAG(IS_FUCHSIA)

class UnexportableKeyService_GenerateSigningKey_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_GenerateSigningKey_ForwardToCallback(
      UnexportableKeyService::GenerateSigningKeyCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::GenerateSigningKeyCallback callback_;
};

class UnexportableKeyService_FromWrappedSigningKey_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_FromWrappedSigningKey_ForwardToCallback(
      UnexportableKeyService::FromWrappedSigningKeyCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::FromWrappedSigningKeyCallback callback_;
};

class UnexportableKeyService_GenerateAttestationKey_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_GenerateAttestationKey_ForwardToCallback(
      UnexportableKeyService::GenerateAttestationKeyCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::GenerateAttestationKeyCallback callback_;
};

class UnexportableKeyService_FromWrappedAttestationKey_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_FromWrappedAttestationKey_ForwardToCallback(
      UnexportableKeyService::FromWrappedAttestationKeyCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::FromWrappedAttestationKeyCallback callback_;
};

class UnexportableKeyService_Sign_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_Sign_ForwardToCallback(
      UnexportableKeyService::SignCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::SignCallback callback_;
};

class UnexportableKeyService_Certify_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_Certify_ForwardToCallback(
      UnexportableKeyService::CertifyCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::CertifyCallback callback_;
};

class UnexportableKeyService_GetAllKeysForGarbageCollection_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_GetAllKeysForGarbageCollection_ForwardToCallback(
      UnexportableKeyService::GetAllKeysForGarbageCollectionCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::GetAllKeysForGarbageCollectionCallback callback_;
};

class UnexportableKeyService_DeleteKeys_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_DeleteKeys_ForwardToCallback(
      UnexportableKeyService::DeleteKeysCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::DeleteKeysCallback callback_;
};

class UnexportableKeyService_DeleteAllKeys_ForwardToCallback
    : public mojo::MessageReceiver {
 public:
  UnexportableKeyService_DeleteAllKeys_ForwardToCallback(
      UnexportableKeyService::DeleteAllKeysCallback callback
      ) : callback_(std::move(callback)) {
  }

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

  bool Accept(mojo::Message* message) override;
 private:
  UnexportableKeyService::DeleteAllKeysCallback callback_;
};

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

void UnexportableKeyServiceProxy::GenerateSigningKey(
    const ::blink::Vector<SignatureAlgorithm>& in_acceptable_algorithms, BackgroundTaskPriority in_priority, GenerateSigningKeyCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::GenerateSigningKey", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("acceptable_algorithms"), in_acceptable_algorithms,
                        "<value of type const ::blink::Vector<SignatureAlgorithm>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kGenerateSigningKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GenerateSigningKey_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->acceptable_algorithms)::BaseType>
      acceptable_algorithms_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& acceptable_algorithms_validate_params =
      mojo::internal::GetArrayOfEnumsValidator<0, false, ::unexportable_keys::mojom::internal::SignatureAlgorithm_Data::Validate>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<::unexportable_keys::mojom::SignatureAlgorithm>>(
    in_acceptable_algorithms,
    acceptable_algorithms_fragment,
    &acceptable_algorithms_validate_params);

  params->acceptable_algorithms.Set(
      acceptable_algorithms_fragment.is_null() ? nullptr : acceptable_algorithms_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->acceptable_algorithms.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null acceptable_algorithms in UnexportableKeyService.GenerateSigningKey request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::FromWrappedSigningKey(
    const ::blink::Vector<uint8_t>& in_wrapped_key, BackgroundTaskPriority in_priority, FromWrappedSigningKeyCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::FromWrappedSigningKey", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("wrapped_key"), in_wrapped_key,
                        "<value of type const ::blink::Vector<uint8_t>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kFromWrappedSigningKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_FromWrappedSigningKey_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->wrapped_key)::BaseType>
      wrapped_key_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& wrapped_key_validate_params =
      mojo::internal::GetArrayValidator<0, false, nullptr>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<uint8_t>>(
    in_wrapped_key,
    wrapped_key_fragment,
    &wrapped_key_validate_params);

  params->wrapped_key.Set(
      wrapped_key_fragment.is_null() ? nullptr : wrapped_key_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->wrapped_key.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null wrapped_key in UnexportableKeyService.FromWrappedSigningKey request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::GenerateAttestationKey(
    const ::blink::Vector<SignatureAlgorithm>& in_acceptable_algorithms, BackgroundTaskPriority in_priority, GenerateAttestationKeyCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::GenerateAttestationKey", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("acceptable_algorithms"), in_acceptable_algorithms,
                        "<value of type const ::blink::Vector<SignatureAlgorithm>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kGenerateAttestationKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GenerateAttestationKey_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->acceptable_algorithms)::BaseType>
      acceptable_algorithms_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& acceptable_algorithms_validate_params =
      mojo::internal::GetArrayOfEnumsValidator<0, false, ::unexportable_keys::mojom::internal::SignatureAlgorithm_Data::Validate>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<::unexportable_keys::mojom::SignatureAlgorithm>>(
    in_acceptable_algorithms,
    acceptable_algorithms_fragment,
    &acceptable_algorithms_validate_params);

  params->acceptable_algorithms.Set(
      acceptable_algorithms_fragment.is_null() ? nullptr : acceptable_algorithms_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->acceptable_algorithms.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null acceptable_algorithms in UnexportableKeyService.GenerateAttestationKey request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::FromWrappedAttestationKey(
    const ::blink::Vector<uint8_t>& in_wrapped_key, BackgroundTaskPriority in_priority, FromWrappedAttestationKeyCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::FromWrappedAttestationKey", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("wrapped_key"), in_wrapped_key,
                        "<value of type const ::blink::Vector<uint8_t>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kFromWrappedAttestationKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_FromWrappedAttestationKey_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->wrapped_key)::BaseType>
      wrapped_key_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& wrapped_key_validate_params =
      mojo::internal::GetArrayValidator<0, false, nullptr>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<uint8_t>>(
    in_wrapped_key,
    wrapped_key_fragment,
    &wrapped_key_validate_params);

  params->wrapped_key.Set(
      wrapped_key_fragment.is_null() ? nullptr : wrapped_key_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->wrapped_key.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null wrapped_key in UnexportableKeyService.FromWrappedAttestationKey request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::Sign(
    UnexportableSigningKeyIdPtr in_key_id, const ::blink::Vector<uint8_t>& in_data, BackgroundTaskPriority in_priority, SignCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::Sign", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("key_id"), in_key_id,
                        "<value of type UnexportableSigningKeyIdPtr>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("data"), in_data,
                        "<value of type const ::blink::Vector<uint8_t>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kSign), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_Sign_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->key_id)::BaseType> key_id_fragment(
          params.message());
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableSigningKeyIdDataView>(
    in_key_id,
    key_id_fragment);

  params->key_id.Set(
      key_id_fragment.is_null() ? nullptr : key_id_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->key_id.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null key_id in UnexportableKeyService.Sign request");
  mojo::internal::MessageFragment<
      typename decltype(params->data)::BaseType>
      data_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& data_validate_params =
      mojo::internal::GetArrayValidator<0, false, nullptr>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<uint8_t>>(
    in_data,
    data_fragment,
    &data_validate_params);

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

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->data.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null data in UnexportableKeyService.Sign request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::Certify(
    UnexportableAttestationKeyIdPtr in_attestation_key_id, UnexportableSigningKeyIdPtr in_signing_key_id, const ::blink::Vector<uint8_t>& in_challenge, BackgroundTaskPriority in_priority, CertifyCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::Certify", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("attestation_key_id"), in_attestation_key_id,
                        "<value of type UnexportableAttestationKeyIdPtr>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("signing_key_id"), in_signing_key_id,
                        "<value of type UnexportableSigningKeyIdPtr>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("challenge"), in_challenge,
                        "<value of type const ::blink::Vector<uint8_t>&>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kCertify), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_Certify_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->attestation_key_id)::BaseType> attestation_key_id_fragment(
          params.message());
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableAttestationKeyIdDataView>(
    in_attestation_key_id,
    attestation_key_id_fragment);

  params->attestation_key_id.Set(
      attestation_key_id_fragment.is_null() ? nullptr : attestation_key_id_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->attestation_key_id.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null attestation_key_id in UnexportableKeyService.Certify request");
  mojo::internal::MessageFragment<
      typename decltype(params->signing_key_id)::BaseType> signing_key_id_fragment(
          params.message());
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableSigningKeyIdDataView>(
    in_signing_key_id,
    signing_key_id_fragment);

  params->signing_key_id.Set(
      signing_key_id_fragment.is_null() ? nullptr : signing_key_id_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->signing_key_id.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null signing_key_id in UnexportableKeyService.Certify request");
  mojo::internal::MessageFragment<
      typename decltype(params->challenge)::BaseType>
      challenge_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& challenge_validate_params =
      mojo::internal::GetArrayValidator<0, false, nullptr>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<uint8_t>>(
    in_challenge,
    challenge_fragment,
    &challenge_validate_params);

  params->challenge.Set(
      challenge_fragment.is_null() ? nullptr : challenge_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->challenge.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null challenge in UnexportableKeyService.Certify request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::GetAllKeysForGarbageCollection(
    BackgroundTaskPriority in_priority, GetAllKeysForGarbageCollectionCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::GetAllKeysForGarbageCollection", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kGetAllKeysForGarbageCollection), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GetAllKeysForGarbageCollection_Params_Data> params(
          message);
  params.Allocate();

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::DeleteKeys(
    ::blink::Vector<UnexportableSigningKeyIdPtr> in_key_ids, BackgroundTaskPriority in_priority, DeleteKeysCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send unexportable_keys::mojom::UnexportableKeyService::DeleteKeys", "input_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("key_ids"), in_key_ids,
                        "<value of type ::blink::Vector<UnexportableSigningKeyIdPtr>>");
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("priority"), in_priority,
                        "<value of type BackgroundTaskPriority>");
   });
#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::UnexportableKeyService::kDeleteKeys), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_DeleteKeys_Params_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<
      typename decltype(params->key_ids)::BaseType>
      key_ids_fragment(params.message());
  constexpr const mojo::internal::ContainerValidateParams& key_ids_validate_params =
      mojo::internal::GetArrayValidator<0, false, nullptr>();
  
  mojo::internal::Serialize<mojo::ArrayDataView<::unexportable_keys::mojom::UnexportableSigningKeyIdDataView>>(
    in_key_ids,
    key_ids_fragment,
    &key_ids_validate_params);

  params->key_ids.Set(
      key_ids_fragment.is_null() ? nullptr : key_ids_fragment.data());

  
  MOJO_INTERNAL_CHECK_SERIALIZATION(
    mojo::internal::SendValidation::kDefault,
    !(params->key_ids.is_null()),
    mojo::internal::VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
    "null key_ids in UnexportableKeyService.DeleteKeys request");

  
  mojo::internal::Serialize<::unexportable_keys::mojom::BackgroundTaskPriority>(
    in_priority,
    &params->priority);

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

void UnexportableKeyServiceProxy::DeleteAllKeys(
    DeleteAllKeysCallback callback) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT0("mojom", "Send unexportable_keys::mojom::UnexportableKeyService::DeleteAllKeys");
#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::UnexportableKeyService::kDeleteAllKeys), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_DeleteAllKeys_Params_Data> params(
          message);
  params.Allocate();

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("DeleteAllKeys");
#endif
  std::unique_ptr<mojo::MessageReceiver> responder(
      new UnexportableKeyService_DeleteAllKeys_ForwardToCallback(
          std::move(callback)));
  ::mojo::internal::SendMojoMessage(*receiver_, message, std::move(responder));
}
class UnexportableKeyService_GenerateSigningKey_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::GenerateSigningKeyCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_GenerateSigningKey_ProxyToResponder> proxy(
        new UnexportableKeyService_GenerateSigningKey_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_GenerateSigningKey_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr Transform(base::expected<
  NewSigningKeyDataPtr,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_GenerateSigningKey_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:
  UnexportableKeyService_GenerateSigningKey_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)
        << "UnexportableKeyService::GenerateSigningKeyCallback 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(
      UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.0
  bool success = true;
  UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_GenerateSigningKey_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 0, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_GenerateSigningKey_ProxyToResponder::Run(
    UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::GenerateSigningKey", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kGenerateSigningKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GenerateSigningKey_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("GenerateSigningKey");
#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;
}
class UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::FromWrappedSigningKeyCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder> proxy(
        new UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr Transform(base::expected<
  NewSigningKeyDataPtr,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_FromWrappedSigningKey_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:
  UnexportableKeyService_FromWrappedSigningKey_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)
        << "UnexportableKeyService::FromWrappedSigningKeyCallback 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(
      UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.1
  bool success = true;
  UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_FromWrappedSigningKey_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 1, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder::Run(
    UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::FromWrappedSigningKey", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kFromWrappedSigningKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_FromWrappedSigningKey_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("FromWrappedSigningKey");
#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;
}
class UnexportableKeyService_GenerateAttestationKey_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::GenerateAttestationKeyCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_GenerateAttestationKey_ProxyToResponder> proxy(
        new UnexportableKeyService_GenerateAttestationKey_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_GenerateAttestationKey_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr Transform(base::expected<
  NewAttestationKeyDataPtr,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_GenerateAttestationKey_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:
  UnexportableKeyService_GenerateAttestationKey_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)
        << "UnexportableKeyService::GenerateAttestationKeyCallback 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(
      UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.2
  bool success = true;
  UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_GenerateAttestationKey_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 2, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_GenerateAttestationKey_ProxyToResponder::Run(
    UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::GenerateAttestationKey", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kGenerateAttestationKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GenerateAttestationKey_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("GenerateAttestationKey");
#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;
}
class UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::FromWrappedAttestationKeyCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder> proxy(
        new UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr Transform(base::expected<
  NewAttestationKeyDataPtr,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_FromWrappedAttestationKey_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:
  UnexportableKeyService_FromWrappedAttestationKey_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)
        << "UnexportableKeyService::FromWrappedAttestationKeyCallback 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(
      UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.3
  bool success = true;
  UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_FromWrappedAttestationKey_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 3, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder::Run(
    UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::FromWrappedAttestationKey", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kFromWrappedAttestationKey), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_FromWrappedAttestationKey_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("FromWrappedAttestationKey");
#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;
}
class UnexportableKeyService_Sign_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::SignCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_Sign_ProxyToResponder> proxy(
        new UnexportableKeyService_Sign_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_Sign_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_Sign_ResponseParam_ResultPtr Transform(base::expected<
  ::blink::Vector<uint8_t>,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_Sign_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:
  UnexportableKeyService_Sign_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)
        << "UnexportableKeyService::SignCallback 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(
      UnexportableKeyService_Sign_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.4
  bool success = true;
  UnexportableKeyService_Sign_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_Sign_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 4, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_Sign_ProxyToResponder::Run(
    UnexportableKeyService_Sign_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::Sign", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_Sign_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kSign), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_Sign_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_Sign_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("Sign");
#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;
}
class UnexportableKeyService_Certify_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::CertifyCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_Certify_ProxyToResponder> proxy(
        new UnexportableKeyService_Certify_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_Certify_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_Certify_ResponseParam_ResultPtr Transform(base::expected<
  AttestationStatementPtr,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_Certify_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:
  UnexportableKeyService_Certify_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)
        << "UnexportableKeyService::CertifyCallback 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(
      UnexportableKeyService_Certify_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.5
  bool success = true;
  UnexportableKeyService_Certify_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_Certify_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 5, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_Certify_ProxyToResponder::Run(
    UnexportableKeyService_Certify_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::Certify", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_Certify_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kCertify), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_Certify_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_Certify_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("Certify");
#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;
}
class UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::GetAllKeysForGarbageCollectionCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder> proxy(
        new UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr Transform(base::expected<
  ::blink::Vector<NewSigningKeyDataPtr>,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_GetAllKeysForGarbageCollection_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:
  UnexportableKeyService_GetAllKeysForGarbageCollection_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)
        << "UnexportableKeyService::GetAllKeysForGarbageCollectionCallback 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(
      UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.6
  bool success = true;
  UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 6, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder::Run(
    UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::GetAllKeysForGarbageCollection", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kGetAllKeysForGarbageCollection), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("GetAllKeysForGarbageCollection");
#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;
}
class UnexportableKeyService_DeleteKeys_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::DeleteKeysCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_DeleteKeys_ProxyToResponder> proxy(
        new UnexportableKeyService_DeleteKeys_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_DeleteKeys_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr Transform(base::expected<
  uint64_t,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_DeleteKeys_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:
  UnexportableKeyService_DeleteKeys_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)
        << "UnexportableKeyService::DeleteKeysCallback 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(
      UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.7
  bool success = true;
  UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_DeleteKeys_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 7, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_DeleteKeys_ProxyToResponder::Run(
    UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::DeleteKeys", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kDeleteKeys), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_DeleteKeys_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_DeleteKeys_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("DeleteKeys");
#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;
}
class UnexportableKeyService_DeleteAllKeys_ProxyToResponder : public ::mojo::internal::ProxyToResponder {
 public:
  static UnexportableKeyService::DeleteAllKeysCallback CreateCallback(
      ::mojo::Message& message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) {
    std::unique_ptr<UnexportableKeyService_DeleteAllKeys_ProxyToResponder> proxy(
        new UnexportableKeyService_DeleteAllKeys_ProxyToResponder(
            message, std::move(responder)));
    return base::BindOnce(&Transform)
      .Then(base::BindOnce(&UnexportableKeyService_DeleteAllKeys_ProxyToResponder::Run,
                          std::move(proxy)));
  }

  static UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr Transform(base::expected<
  uint64_t,
  ServiceError> in) {
    return in.has_value() ? ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::NewSuccess(std::move(in.value())) :
                            ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::NewFailure(std::move(in.error()));
  }



  ~UnexportableKeyService_DeleteAllKeys_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:
  UnexportableKeyService_DeleteAllKeys_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)
        << "UnexportableKeyService::DeleteAllKeysCallback 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(
      UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr in_result);
};

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

  // Validation for UnexportableKeyService.8
  bool success = true;
  UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr p_result{};
  UnexportableKeyService_DeleteAllKeys_ResponseParamsDataView input_data_view(params, message);
  
  if (success && !input_data_view.ReadResult(&p_result))
    success = false;
  if (!success) {
    ReportValidationErrorForMessage(
        message,
        mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
        UnexportableKeyService::Name_, 8, true);
    return false;
  }
  if (!callback_.is_null()) {
    if (p_result->is_success()) {
      std::move(callback_).Run(base::ok(std::move(p_result->get_success())));
    } else {
      std::move(callback_).Run(base::unexpected(std::move(p_result->get_failure())));
    }
  }
  return true;
}

void UnexportableKeyService_DeleteAllKeys_ProxyToResponder::Run(
    UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr in_result) {
#if BUILDFLAG(MOJO_TRACE_ENABLED)
  TRACE_EVENT1(
    "mojom", "Send reply unexportable_keys::mojom::UnexportableKeyService::DeleteAllKeys", "async_response_parameters",
    [&](perfetto::TracedValue context){
      auto dict = std::move(context).WriteDictionary();
      perfetto::WriteIntoTracedValueWithFallback(
           dict.AddItem("result"), in_result,
                        "<value of type UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr>");
   });
#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::UnexportableKeyService::kDeleteAllKeys), kFlags, estimated_payload_size);
  mojo::internal::MessageFragment<
      ::unexportable_keys::mojom::internal::UnexportableKeyService_DeleteAllKeys_ResponseParams_Data> params(
          message);
  params.Allocate();
  mojo::internal::MessageFragment<decltype(params->result)>
      result_fragment(params.message());
  result_fragment.Claim(&params->result);
  
  mojo::internal::Serialize<::unexportable_keys::mojom::UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultDataView>(
    in_result,
    result_fragment,
    true);

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

#if defined(ENABLE_IPC_FUZZER)
  message.set_interface_name(UnexportableKeyService::Name_);
  message.set_method_name("DeleteAllKeys");
#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 UnexportableKeyServiceStubDispatch::Accept(
    UnexportableKeyService* impl,
    mojo::Message* message) {
  switch (static_cast<messages::UnexportableKeyService>(message->header()->name)) {
    case messages::UnexportableKeyService::kGenerateSigningKey: {
      break;
    }
    case messages::UnexportableKeyService::kFromWrappedSigningKey: {
      break;
    }
    case messages::UnexportableKeyService::kGenerateAttestationKey: {
      break;
    }
    case messages::UnexportableKeyService::kFromWrappedAttestationKey: {
      break;
    }
    case messages::UnexportableKeyService::kSign: {
      break;
    }
    case messages::UnexportableKeyService::kCertify: {
      break;
    }
    case messages::UnexportableKeyService::kGetAllKeysForGarbageCollection: {
      break;
    }
    case messages::UnexportableKeyService::kDeleteKeys: {
      break;
    }
    case messages::UnexportableKeyService::kDeleteAllKeys: {
      break;
    }
  }
  return false;
}

// static
bool UnexportableKeyServiceStubDispatch::AcceptWithResponder(
    UnexportableKeyService* 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::UnexportableKeyService>(message->header()->name)) {
    case messages::UnexportableKeyService::kGenerateSigningKey: {
      internal::UnexportableKeyService_GenerateSigningKey_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_GenerateSigningKey_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.0
      bool success = true;
      ::blink::Vector<SignatureAlgorithm> p_acceptable_algorithms{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_GenerateSigningKey_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadAcceptableAlgorithms(&p_acceptable_algorithms))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 0, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_GenerateSigningKey_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->GenerateSigningKey(        
        std::move(p_acceptable_algorithms), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kFromWrappedSigningKey: {
      internal::UnexportableKeyService_FromWrappedSigningKey_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_FromWrappedSigningKey_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.1
      bool success = true;
      ::blink::Vector<uint8_t> p_wrapped_key{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_FromWrappedSigningKey_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadWrappedKey(&p_wrapped_key))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 1, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_FromWrappedSigningKey_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->FromWrappedSigningKey(        
        std::move(p_wrapped_key), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kGenerateAttestationKey: {
      internal::UnexportableKeyService_GenerateAttestationKey_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_GenerateAttestationKey_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.2
      bool success = true;
      ::blink::Vector<SignatureAlgorithm> p_acceptable_algorithms{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_GenerateAttestationKey_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadAcceptableAlgorithms(&p_acceptable_algorithms))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 2, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_GenerateAttestationKey_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->GenerateAttestationKey(        
        std::move(p_acceptable_algorithms), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kFromWrappedAttestationKey: {
      internal::UnexportableKeyService_FromWrappedAttestationKey_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_FromWrappedAttestationKey_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.3
      bool success = true;
      ::blink::Vector<uint8_t> p_wrapped_key{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_FromWrappedAttestationKey_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadWrappedKey(&p_wrapped_key))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 3, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_FromWrappedAttestationKey_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->FromWrappedAttestationKey(        
        std::move(p_wrapped_key), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kSign: {
      internal::UnexportableKeyService_Sign_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_Sign_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.4
      bool success = true;
      UnexportableSigningKeyIdPtr p_key_id{};
      ::blink::Vector<uint8_t> p_data{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_Sign_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadKeyId(&p_key_id))
        success = false;
      if (success && !input_data_view.ReadData(&p_data))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 4, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_Sign_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->Sign(        
        std::move(p_key_id), 
        std::move(p_data), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kCertify: {
      internal::UnexportableKeyService_Certify_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_Certify_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.5
      bool success = true;
      UnexportableAttestationKeyIdPtr p_attestation_key_id{};
      UnexportableSigningKeyIdPtr p_signing_key_id{};
      ::blink::Vector<uint8_t> p_challenge{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_Certify_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadAttestationKeyId(&p_attestation_key_id))
        success = false;
      if (success && !input_data_view.ReadSigningKeyId(&p_signing_key_id))
        success = false;
      if (success && !input_data_view.ReadChallenge(&p_challenge))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 5, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_Certify_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->Certify(        
        std::move(p_attestation_key_id), 
        std::move(p_signing_key_id), 
        std::move(p_challenge), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kGetAllKeysForGarbageCollection: {
      internal::UnexportableKeyService_GetAllKeysForGarbageCollection_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_GetAllKeysForGarbageCollection_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.6
      bool success = true;
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_GetAllKeysForGarbageCollection_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 6, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_GetAllKeysForGarbageCollection_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->GetAllKeysForGarbageCollection(        
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kDeleteKeys: {
      internal::UnexportableKeyService_DeleteKeys_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_DeleteKeys_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.7
      bool success = true;
      ::blink::Vector<UnexportableSigningKeyIdPtr> p_key_ids{};
      BackgroundTaskPriority p_priority{};
      UnexportableKeyService_DeleteKeys_ParamsDataView input_data_view(params, message);
      
      if (success && !input_data_view.ReadKeyIds(&p_key_ids))
        success = false;
      if (success && !input_data_view.ReadPriority(&p_priority))
        success = false;
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 7, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_DeleteKeys_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->DeleteKeys(        
        std::move(p_key_ids), 
        std::move(p_priority), std::move(callback));
      return true;
    }
    case messages::UnexportableKeyService::kDeleteAllKeys: {
      internal::UnexportableKeyService_DeleteAllKeys_Params_Data* params =
          reinterpret_cast<
              internal::UnexportableKeyService_DeleteAllKeys_Params_Data*>(
                  message->mutable_payload());
      

      // Validation for UnexportableKeyService.8
      bool success = true;
      UnexportableKeyService_DeleteAllKeys_ParamsDataView input_data_view(params, message);
      
      if (!success) {
        ReportValidationErrorForMessage(
            message,
            mojo::internal::VALIDATION_ERROR_DESERIALIZATION_FAILED,
            UnexportableKeyService::Name_, 8, false);
        return false;
      }
      auto callback =
          UnexportableKeyService_DeleteAllKeys_ProxyToResponder::CreateCallback(
              *message, std::move(responder));
      // A null |impl| means no implementation was bound.
      DCHECK(impl);
      impl->DeleteAllKeys(std::move(callback));
      return true;
    }
  }
  return false;
}
namespace {
}  // namespace
static const mojo::internal::GenericValidationInfo kUnexportableKeyServiceValidationInfo[] = {
    { &internal::UnexportableKeyService_GenerateSigningKey_Params_Data::Validate,
     &internal::UnexportableKeyService_GenerateSigningKey_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_FromWrappedSigningKey_Params_Data::Validate,
     &internal::UnexportableKeyService_FromWrappedSigningKey_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_GenerateAttestationKey_Params_Data::Validate,
     &internal::UnexportableKeyService_GenerateAttestationKey_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_FromWrappedAttestationKey_Params_Data::Validate,
     &internal::UnexportableKeyService_FromWrappedAttestationKey_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_Sign_Params_Data::Validate,
     &internal::UnexportableKeyService_Sign_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_Certify_Params_Data::Validate,
     &internal::UnexportableKeyService_Certify_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_GetAllKeysForGarbageCollection_Params_Data::Validate,
     &internal::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_DeleteKeys_Params_Data::Validate,
     &internal::UnexportableKeyService_DeleteKeys_ResponseParams_Data::Validate},
    { &internal::UnexportableKeyService_DeleteAllKeys_Params_Data::Validate,
     &internal::UnexportableKeyService_DeleteAllKeys_ResponseParams_Data::Validate},
};

bool UnexportableKeyServiceRequestValidator::Accept(mojo::Message* message) {
  return mojo::internal::ValidateRequestGenericPacked(
    message,
    ::unexportable_keys::mojom::blink::UnexportableKeyService::Name_,
    kUnexportableKeyServiceValidationInfo);
}

bool UnexportableKeyServiceResponseValidator::Accept(mojo::Message* message) {
  return mojo::internal::ValidateResponseGenericPacked(
    message,
    ::unexportable_keys::mojom::blink::UnexportableKeyService::Name_,
    kUnexportableKeyServiceValidationInfo);
}


}  // unexportable_keys::mojom::blink


namespace mojo {


// static
bool StructTraits<::unexportable_keys::mojom::blink::UnexportableSigningKeyId::DataView, ::unexportable_keys::mojom::blink::UnexportableSigningKeyIdPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableSigningKeyId::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableSigningKeyIdPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::UnexportableSigningKeyIdPtr result(::unexportable_keys::mojom::blink::UnexportableSigningKeyId::New());
  
      if (success && !input.ReadKeyId(&result->key_id))
        success = false;
  *output = std::move(result);
  return success;
}


// static
bool StructTraits<::unexportable_keys::mojom::blink::UnexportableAttestationKeyId::DataView, ::unexportable_keys::mojom::blink::UnexportableAttestationKeyIdPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableAttestationKeyId::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableAttestationKeyIdPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::UnexportableAttestationKeyIdPtr result(::unexportable_keys::mojom::blink::UnexportableAttestationKeyId::New());
  
      if (success && !input.ReadKeyId(&result->key_id))
        success = false;
  *output = std::move(result);
  return success;
}


// static
bool StructTraits<::unexportable_keys::mojom::blink::NewKeyMetadata::DataView, ::unexportable_keys::mojom::blink::NewKeyMetadataPtr>::Read(
    ::unexportable_keys::mojom::blink::NewKeyMetadata::DataView input,
    ::unexportable_keys::mojom::blink::NewKeyMetadataPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::NewKeyMetadataPtr result(::unexportable_keys::mojom::blink::NewKeyMetadata::New());
  
      if (success && !input.ReadSubjectPublicKeyInfo(&result->subject_public_key_info))
        success = false;
      if (success && !input.ReadWrappedKey(&result->wrapped_key))
        success = false;
      if (success && !input.ReadAlgorithm(&result->algorithm))
        success = false;
      if (success && !input.ReadKeyTag(&result->key_tag))
        success = false;
      if (success && !input.ReadCreationTime(&result->creation_time))
        success = false;
  *output = std::move(result);
  return success;
}


// static
bool StructTraits<::unexportable_keys::mojom::blink::NewSigningKeyData::DataView, ::unexportable_keys::mojom::blink::NewSigningKeyDataPtr>::Read(
    ::unexportable_keys::mojom::blink::NewSigningKeyData::DataView input,
    ::unexportable_keys::mojom::blink::NewSigningKeyDataPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::NewSigningKeyDataPtr result(::unexportable_keys::mojom::blink::NewSigningKeyData::New());
  
      if (success && !input.ReadKeyId(&result->key_id))
        success = false;
      if (success && !input.ReadMetadata(&result->metadata))
        success = false;
  *output = std::move(result);
  return success;
}


// static
bool StructTraits<::unexportable_keys::mojom::blink::NewAttestationKeyData::DataView, ::unexportable_keys::mojom::blink::NewAttestationKeyDataPtr>::Read(
    ::unexportable_keys::mojom::blink::NewAttestationKeyData::DataView input,
    ::unexportable_keys::mojom::blink::NewAttestationKeyDataPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::NewAttestationKeyDataPtr result(::unexportable_keys::mojom::blink::NewAttestationKeyData::New());
  
      if (success && !input.ReadKeyId(&result->key_id))
        success = false;
      if (success && !input.ReadMetadata(&result->metadata))
        success = false;
  *output = std::move(result);
  return success;
}


// static
bool StructTraits<::unexportable_keys::mojom::blink::AttestationStatement::DataView, ::unexportable_keys::mojom::blink::AttestationStatementPtr>::Read(
    ::unexportable_keys::mojom::blink::AttestationStatement::DataView input,
    ::unexportable_keys::mojom::blink::AttestationStatementPtr* output) {
  bool success = true;
  ::unexportable_keys::mojom::blink::AttestationStatementPtr result(::unexportable_keys::mojom::blink::AttestationStatement::New());
  
      if (success && !input.ReadFormat(&result->format))
        success = false;
      if (success && !input.ReadStatement(&result->statement))
        success = false;
      if (success && !input.ReadSignature(&result->signature))
        success = false;
  *output = std::move(result);
  return success;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateSigningKey_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::unexportable_keys::mojom::blink::NewSigningKeyDataPtr result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedSigningKey_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::unexportable_keys::mojom::blink::NewSigningKeyDataPtr result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_GenerateAttestationKey_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::unexportable_keys::mojom::blink::NewAttestationKeyDataPtr result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_FromWrappedAttestationKey_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::unexportable_keys::mojom::blink::NewAttestationKeyDataPtr result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_Sign_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::blink::Vector<uint8_t> result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_Certify_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::unexportable_keys::mojom::blink::AttestationStatementPtr result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_GetAllKeysForGarbageCollection_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      ::blink::Vector<::unexportable_keys::mojom::blink::NewSigningKeyDataPtr> result_success{};
      if (!input.ReadSuccess(&result_success))
        return false;

      *output = UnionType::NewSuccess(
          std::move(result_success));
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteKeys_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      *output = UnionType::NewSuccess(input.success());
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

// static
bool UnionTraits<::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::DataView, ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr>::Read(
    ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result::DataView input,
    ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_ResultPtr* output) {
  using UnionType = ::unexportable_keys::mojom::blink::UnexportableKeyService_DeleteAllKeys_ResponseParam_Result;
  using Tag = UnionType::Tag;

  switch (input.tag()) {
    case Tag::kSuccess: {
      *output = UnionType::NewSuccess(input.success());
      break;
    }
    case Tag::kFailure: {
      ::unexportable_keys::mojom::blink::ServiceError result_failure;
      if (!input.ReadFailure(&result_failure))
        return false;

      *output = UnionType::NewFailure(result_failure);
      break;
    }
    default:

      return false;
  }
  return true;
}

}  // namespace mojo


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


namespace unexportable_keys::mojom::blink {


void UnexportableKeyServiceInterceptorForTesting::GenerateSigningKey(const ::blink::Vector<SignatureAlgorithm>& acceptable_algorithms, BackgroundTaskPriority priority, GenerateSigningKeyCallback callback) {
  GetForwardingInterface()->GenerateSigningKey(
    std::move(acceptable_algorithms)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::FromWrappedSigningKey(const ::blink::Vector<uint8_t>& wrapped_key, BackgroundTaskPriority priority, FromWrappedSigningKeyCallback callback) {
  GetForwardingInterface()->FromWrappedSigningKey(
    std::move(wrapped_key)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::GenerateAttestationKey(const ::blink::Vector<SignatureAlgorithm>& acceptable_algorithms, BackgroundTaskPriority priority, GenerateAttestationKeyCallback callback) {
  GetForwardingInterface()->GenerateAttestationKey(
    std::move(acceptable_algorithms)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::FromWrappedAttestationKey(const ::blink::Vector<uint8_t>& wrapped_key, BackgroundTaskPriority priority, FromWrappedAttestationKeyCallback callback) {
  GetForwardingInterface()->FromWrappedAttestationKey(
    std::move(wrapped_key)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::Sign(UnexportableSigningKeyIdPtr key_id, const ::blink::Vector<uint8_t>& data, BackgroundTaskPriority priority, SignCallback callback) {
  GetForwardingInterface()->Sign(
    std::move(key_id)
    , 
    std::move(data)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::Certify(UnexportableAttestationKeyIdPtr attestation_key_id, UnexportableSigningKeyIdPtr signing_key_id, const ::blink::Vector<uint8_t>& challenge, BackgroundTaskPriority priority, CertifyCallback callback) {
  GetForwardingInterface()->Certify(
    std::move(attestation_key_id)
    , 
    std::move(signing_key_id)
    , 
    std::move(challenge)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::GetAllKeysForGarbageCollection(BackgroundTaskPriority priority, GetAllKeysForGarbageCollectionCallback callback) {
  GetForwardingInterface()->GetAllKeysForGarbageCollection(
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::DeleteKeys(::blink::Vector<UnexportableSigningKeyIdPtr> key_ids, BackgroundTaskPriority priority, DeleteKeysCallback callback) {
  GetForwardingInterface()->DeleteKeys(
    std::move(key_ids)
    , 
    std::move(priority)
    , std::move(callback));
}
void UnexportableKeyServiceInterceptorForTesting::DeleteAllKeys(DeleteAllKeysCallback callback) {
  GetForwardingInterface()->DeleteAllKeys(std::move(callback));
}
UnexportableKeyServiceAsyncWaiter::UnexportableKeyServiceAsyncWaiter(
    UnexportableKeyService* proxy) : proxy_(proxy) {}

UnexportableKeyServiceAsyncWaiter::~UnexportableKeyServiceAsyncWaiter() = default;







}  // unexportable_keys::mojom::blink


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