// third_party/blink/public/mojom/devtools/devtools_agent.mojom-blink.h 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.

#ifndef THIRD_PARTY_BLINK_PUBLIC_MOJOM_DEVTOOLS_DEVTOOLS_AGENT_MOJOM_BLINK_H_
#define THIRD_PARTY_BLINK_PUBLIC_MOJOM_DEVTOOLS_DEVTOOLS_AGENT_MOJOM_BLINK_H_

#include <stdint.h>

#include <limits>
#include <optional>
#include <type_traits>
#include <utility>
#include "mojo/public/cpp/bindings/clone_traits.h"
#include "mojo/public/cpp/bindings/equals_traits.h"
#include "mojo/public/cpp/bindings/struct_ptr.h"
#include "mojo/public/cpp/bindings/struct_traits.h"
#include "mojo/public/cpp/bindings/union_traits.h"
#include "mojo/public/cpp/bindings/lib/serialization.h"

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

#include "third_party/blink/public/mojom/devtools/devtools_agent.mojom-features.h"  // IWYU pragma: export
#include "third_party/blink/public/mojom/devtools/devtools_agent.mojom-shared.h"  // IWYU pragma: export
#include "third_party/blink/public/mojom/devtools/devtools_agent.mojom-blink-forward.h"  // IWYU pragma: export
#include "mojo/public/mojom/base/big_buffer.mojom-blink.h"
#include "mojo/public/mojom/base/read_only_buffer.mojom-blink.h"
#include "mojo/public/mojom/base/unguessable_token.mojom-blink.h"
#include "ui/gfx/geometry/mojom/geometry.mojom-blink.h"
#include "url/mojom/url.mojom-blink.h"

#include "mojo/public/cpp/bindings/lib/wtf_clone_equals_util.h"
#include "mojo/public/cpp/bindings/lib/wtf_hash_util.h"
#include "third_party/blink/renderer/platform/wtf/hash_functions.h"
#include "third_party/blink/renderer/platform/wtf/text/wtf_string.h"

#include "mojo/public/cpp/bindings/lib/control_message_handler.h"
#include "mojo/public/cpp/bindings/raw_ptr_impl_ref_traits.h"


#include "third_party/blink/renderer/platform/platform_export.h"
#if !BLINK_MOJO_IMPL && !INSIDE_BLINK
#error "File must only be imported inside blink"
#endif




namespace blink::mojom::blink {

class DevToolsAgentProxy;

template <typename ImplRefTraits>
class DevToolsAgentStub;

class DevToolsAgentRequestValidator;
class DevToolsAgentResponseValidator;


class PLATFORM_EXPORT DevToolsAgent
    : public DevToolsAgentInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "blink.mojom.DevToolsAgent";
  static IPCStableHashFunction MessageToMethodInfo_(mojo::Message& message);
  static const char* MessageToMethodName_(mojo::Message& message);
  static constexpr uint32_t Version_ = 0;
  static constexpr bool PassesAssociatedKinds_ = true;
  static constexpr bool HasUninterruptableMethods_ = false;

  using Base_ = DevToolsAgentInterfaceBase;
  using Proxy_ = DevToolsAgentProxy;

  template <typename ImplRefTraits>
  using Stub_ = DevToolsAgentStub<ImplRefTraits>;

  using RequestValidator_ = DevToolsAgentRequestValidator;
  using ResponseValidator_ = DevToolsAgentResponseValidator;
  enum MethodMinVersions : uint32_t {
    kAttachDevToolsSessionMinVersion = 0,
    kInspectElementMinVersion = 0,
    kReportChildTargetsMinVersion = 0,
  };

// crbug.com/1340245 - this causes binary size bloat on Fuchsia, and we're OK
// with not having this data in traces there.
#if !BUILDFLAG(IS_FUCHSIA)
  struct AttachDevToolsSession_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct InspectElement_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct ReportChildTargets_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~DevToolsAgent() = default;

  virtual void AttachDevToolsSession(::mojo::PendingAssociatedRemote<DevToolsSessionHost> host, ::mojo::PendingAssociatedReceiver<DevToolsSession> session, ::mojo::PendingReceiver<DevToolsSession> io_session, DevToolsSessionStatePtr reattach_session_state, bool client_expects_binary_responses, bool client_is_trusted, const ::blink::String& session_id, bool session_waits_for_debugger) = 0;

  virtual void InspectElement(const ::gfx::Point& point) = 0;

  using ReportChildTargetsCallback = base::OnceCallback<void()>;
  using ReportChildTargetsMojoCallback = base::OnceCallback<void()>;

  virtual void ReportChildTargets(bool report, bool wait_for_debugger, ReportChildTargetsCallback callback) = 0;
};

class DevToolsAgentHostProxy;

template <typename ImplRefTraits>
class DevToolsAgentHostStub;

class DevToolsAgentHostRequestValidator;


class PLATFORM_EXPORT DevToolsAgentHost
    : public DevToolsAgentHostInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "blink.mojom.DevToolsAgentHost";
  static IPCStableHashFunction MessageToMethodInfo_(mojo::Message& message);
  static const char* MessageToMethodName_(mojo::Message& message);
  static constexpr uint32_t Version_ = 0;
  static constexpr bool PassesAssociatedKinds_ = false;
  static constexpr bool HasUninterruptableMethods_ = false;

  using Base_ = DevToolsAgentHostInterfaceBase;
  using Proxy_ = DevToolsAgentHostProxy;

  template <typename ImplRefTraits>
  using Stub_ = DevToolsAgentHostStub<ImplRefTraits>;

  using RequestValidator_ = DevToolsAgentHostRequestValidator;
  using ResponseValidator_ = mojo::PassThroughFilter;
  enum MethodMinVersions : uint32_t {
    kChildTargetCreatedMinVersion = 0,
    kMainThreadDebuggerPausedMinVersion = 0,
    kMainThreadDebuggerResumedMinVersion = 0,
    kBringToForegroundMinVersion = 0,
  };

// crbug.com/1340245 - this causes binary size bloat on Fuchsia, and we're OK
// with not having this data in traces there.
#if !BUILDFLAG(IS_FUCHSIA)
  struct ChildTargetCreated_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct MainThreadDebuggerPaused_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct MainThreadDebuggerResumed_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct BringToForeground_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~DevToolsAgentHost() = default;

  virtual void ChildTargetCreated(::mojo::PendingRemote<DevToolsAgent> worker_devtools_agent, ::mojo::PendingReceiver<DevToolsAgentHost> worker_devtools_agent_host, const ::blink::KURL& url, const ::blink::String& name, const ::base::UnguessableToken& devtools_worker_token, bool waiting_for_debugger, DevToolsExecutionContextType context_type) = 0;

  virtual void MainThreadDebuggerPaused() = 0;

  virtual void MainThreadDebuggerResumed() = 0;

  virtual void BringToForeground() = 0;
};

class DevToolsSessionProxy;

template <typename ImplRefTraits>
class DevToolsSessionStub;

class DevToolsSessionRequestValidator;


class PLATFORM_EXPORT DevToolsSession
    : public DevToolsSessionInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "blink.mojom.DevToolsSession";
  static IPCStableHashFunction MessageToMethodInfo_(mojo::Message& message);
  static const char* MessageToMethodName_(mojo::Message& message);
  static constexpr uint32_t Version_ = 0;
  static constexpr bool PassesAssociatedKinds_ = false;
  static constexpr bool HasUninterruptableMethods_ = false;

  using Base_ = DevToolsSessionInterfaceBase;
  using Proxy_ = DevToolsSessionProxy;

  template <typename ImplRefTraits>
  using Stub_ = DevToolsSessionStub<ImplRefTraits>;

  using RequestValidator_ = DevToolsSessionRequestValidator;
  using ResponseValidator_ = mojo::PassThroughFilter;
  enum MethodMinVersions : uint32_t {
    kDispatchProtocolCommandMinVersion = 0,
    kUnpauseAndTerminateMinVersion = 0,
  };

// crbug.com/1340245 - this causes binary size bloat on Fuchsia, and we're OK
// with not having this data in traces there.
#if !BUILDFLAG(IS_FUCHSIA)
  struct DispatchProtocolCommand_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct UnpauseAndTerminate_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~DevToolsSession() = default;

  virtual void DispatchProtocolCommand(int32_t call_id, const ::blink::String& method, ::base::span<const ::uint8_t> message, const ::blink::String& fallthrough_data) = 0;

  virtual void UnpauseAndTerminate() = 0;
};

class DevToolsSessionHostProxy;

template <typename ImplRefTraits>
class DevToolsSessionHostStub;

class DevToolsSessionHostRequestValidator;


class PLATFORM_EXPORT DevToolsSessionHost
    : public DevToolsSessionHostInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "blink.mojom.DevToolsSessionHost";
  static IPCStableHashFunction MessageToMethodInfo_(mojo::Message& message);
  static const char* MessageToMethodName_(mojo::Message& message);
  static constexpr uint32_t Version_ = 0;
  static constexpr bool PassesAssociatedKinds_ = false;
  static constexpr bool HasUninterruptableMethods_ = false;

  using Base_ = DevToolsSessionHostInterfaceBase;
  using Proxy_ = DevToolsSessionHostProxy;

  template <typename ImplRefTraits>
  using Stub_ = DevToolsSessionHostStub<ImplRefTraits>;

  using RequestValidator_ = DevToolsSessionHostRequestValidator;
  using ResponseValidator_ = mojo::PassThroughFilter;
  enum MethodMinVersions : uint32_t {
    kDispatchProtocolResponseMinVersion = 0,
    kDispatchProtocolNotificationMinVersion = 0,
  };

// crbug.com/1340245 - this causes binary size bloat on Fuchsia, and we're OK
// with not having this data in traces there.
#if !BUILDFLAG(IS_FUCHSIA)
  struct DispatchProtocolResponse_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct DispatchProtocolNotification_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~DevToolsSessionHost() = default;

  virtual void DispatchProtocolResponse(DevToolsMessagePtr message, int32_t call_id, RendererOriginatingSessionStatePtr updates) = 0;

  virtual void DispatchProtocolNotification(DevToolsMessagePtr message, RendererOriginatingSessionStatePtr updates) = 0;
};



class PLATFORM_EXPORT DevToolsAgentProxy
    : public DevToolsAgent {
 public:
  using InterfaceType = DevToolsAgent;

  explicit DevToolsAgentProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void AttachDevToolsSession(::mojo::PendingAssociatedRemote<DevToolsSessionHost> host, ::mojo::PendingAssociatedReceiver<DevToolsSession> session, ::mojo::PendingReceiver<DevToolsSession> io_session, DevToolsSessionStatePtr reattach_session_state, bool client_expects_binary_responses, bool client_is_trusted, const ::blink::String& session_id, bool session_waits_for_debugger) final;
  
  void InspectElement(const ::gfx::Point& point) final;
  
  void ReportChildTargets(bool report, bool wait_for_debugger, ReportChildTargetsCallback callback) final;

 private:
  mojo::MessageReceiverWithResponder* receiver_;
};



class PLATFORM_EXPORT DevToolsAgentHostProxy
    : public DevToolsAgentHost {
 public:
  using InterfaceType = DevToolsAgentHost;

  explicit DevToolsAgentHostProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void ChildTargetCreated(::mojo::PendingRemote<DevToolsAgent> worker_devtools_agent, ::mojo::PendingReceiver<DevToolsAgentHost> worker_devtools_agent_host, const ::blink::KURL& url, const ::blink::String& name, const ::base::UnguessableToken& devtools_worker_token, bool waiting_for_debugger, DevToolsExecutionContextType context_type) final;
  
  void MainThreadDebuggerPaused() final;
  
  void MainThreadDebuggerResumed() final;
  
  void BringToForeground() final;

 private:
  mojo::MessageReceiverWithResponder* receiver_;
};



class PLATFORM_EXPORT DevToolsSessionProxy
    : public DevToolsSession {
 public:
  using InterfaceType = DevToolsSession;

  explicit DevToolsSessionProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void DispatchProtocolCommand(int32_t call_id, const ::blink::String& method, ::base::span<const ::uint8_t> message, const ::blink::String& fallthrough_data) final;
  
  void UnpauseAndTerminate() final;

 private:
  mojo::MessageReceiverWithResponder* receiver_;
};



class PLATFORM_EXPORT DevToolsSessionHostProxy
    : public DevToolsSessionHost {
 public:
  using InterfaceType = DevToolsSessionHost;

  explicit DevToolsSessionHostProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void DispatchProtocolResponse(DevToolsMessagePtr message, int32_t call_id, RendererOriginatingSessionStatePtr updates) final;
  
  void DispatchProtocolNotification(DevToolsMessagePtr message, RendererOriginatingSessionStatePtr updates) final;

 private:
  mojo::MessageReceiverWithResponder* receiver_;
};
class PLATFORM_EXPORT DevToolsAgentStubDispatch {
 public:
  static bool Accept(DevToolsAgent* impl, mojo::Message* message);
  static bool AcceptWithResponder(
      DevToolsAgent* impl,
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder);
};

template <typename ImplRefTraits =
              mojo::RawPtrImplRefTraits<DevToolsAgent>>
class DevToolsAgentStub
    : public mojo::MessageReceiverWithResponderStatus {
 public:
  using ImplPointerType = typename ImplRefTraits::PointerType;

  DevToolsAgentStub() = default;
  ~DevToolsAgentStub() override = default;

  void set_sink(ImplPointerType sink) { sink_ = std::move(sink); }
  ImplPointerType& sink() { return sink_; }

  bool Accept(mojo::Message* message) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsAgentStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

  bool AcceptWithResponder(
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsAgentStubDispatch::AcceptWithResponder(
        ImplRefTraits::GetRawPointer(&sink_), message, std::move(responder));
  }

 private:
  ImplPointerType sink_;
};
class PLATFORM_EXPORT DevToolsAgentHostStubDispatch {
 public:
  static bool Accept(DevToolsAgentHost* impl, mojo::Message* message);
  static bool AcceptWithResponder(
      DevToolsAgentHost* impl,
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder);
};

template <typename ImplRefTraits =
              mojo::RawPtrImplRefTraits<DevToolsAgentHost>>
class DevToolsAgentHostStub
    : public mojo::MessageReceiverWithResponderStatus {
 public:
  using ImplPointerType = typename ImplRefTraits::PointerType;

  DevToolsAgentHostStub() = default;
  ~DevToolsAgentHostStub() override = default;

  void set_sink(ImplPointerType sink) { sink_ = std::move(sink); }
  ImplPointerType& sink() { return sink_; }

  bool Accept(mojo::Message* message) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsAgentHostStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

  bool AcceptWithResponder(
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsAgentHostStubDispatch::AcceptWithResponder(
        ImplRefTraits::GetRawPointer(&sink_), message, std::move(responder));
  }

 private:
  ImplPointerType sink_;
};
class PLATFORM_EXPORT DevToolsSessionStubDispatch {
 public:
  static bool Accept(DevToolsSession* impl, mojo::Message* message);
  static bool AcceptWithResponder(
      DevToolsSession* impl,
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder);
};

template <typename ImplRefTraits =
              mojo::RawPtrImplRefTraits<DevToolsSession>>
class DevToolsSessionStub
    : public mojo::MessageReceiverWithResponderStatus {
 public:
  using ImplPointerType = typename ImplRefTraits::PointerType;

  DevToolsSessionStub() = default;
  ~DevToolsSessionStub() override = default;

  void set_sink(ImplPointerType sink) { sink_ = std::move(sink); }
  ImplPointerType& sink() { return sink_; }

  bool Accept(mojo::Message* message) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsSessionStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

  bool AcceptWithResponder(
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsSessionStubDispatch::AcceptWithResponder(
        ImplRefTraits::GetRawPointer(&sink_), message, std::move(responder));
  }

 private:
  ImplPointerType sink_;
};
class PLATFORM_EXPORT DevToolsSessionHostStubDispatch {
 public:
  static bool Accept(DevToolsSessionHost* impl, mojo::Message* message);
  static bool AcceptWithResponder(
      DevToolsSessionHost* impl,
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder);
};

template <typename ImplRefTraits =
              mojo::RawPtrImplRefTraits<DevToolsSessionHost>>
class DevToolsSessionHostStub
    : public mojo::MessageReceiverWithResponderStatus {
 public:
  using ImplPointerType = typename ImplRefTraits::PointerType;

  DevToolsSessionHostStub() = default;
  ~DevToolsSessionHostStub() override = default;

  void set_sink(ImplPointerType sink) { sink_ = std::move(sink); }
  ImplPointerType& sink() { return sink_; }

  bool Accept(mojo::Message* message) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsSessionHostStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

  bool AcceptWithResponder(
      mojo::Message* message,
      std::unique_ptr<mojo::MessageReceiverWithStatus> responder) override {
    if (ImplRefTraits::IsNull(sink_))
      return false;
    return DevToolsSessionHostStubDispatch::AcceptWithResponder(
        ImplRefTraits::GetRawPointer(&sink_), message, std::move(responder));
  }

 private:
  ImplPointerType sink_;
};
class PLATFORM_EXPORT DevToolsAgentRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class PLATFORM_EXPORT DevToolsAgentHostRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class PLATFORM_EXPORT DevToolsSessionRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class PLATFORM_EXPORT DevToolsSessionHostRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class PLATFORM_EXPORT DevToolsAgentResponseValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};






class PLATFORM_EXPORT ScriptToEvaluateOnNewDocument {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<ScriptToEvaluateOnNewDocument, T>::value>;
  using DataView = ScriptToEvaluateOnNewDocumentDataView;
  using Data_ = internal::ScriptToEvaluateOnNewDocument_Data;

  template <typename... Args>
  static ScriptToEvaluateOnNewDocumentPtr New(Args&&... args) {
    return ScriptToEvaluateOnNewDocumentPtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static ScriptToEvaluateOnNewDocumentPtr From(const U& u) {
    return mojo::TypeConverter<ScriptToEvaluateOnNewDocumentPtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, ScriptToEvaluateOnNewDocument>::Convert(*this);
  }


  ScriptToEvaluateOnNewDocument();

  ScriptToEvaluateOnNewDocument(
      const ::blink::String& source,
      const ::blink::String& world_name,
      bool include_command_line_api);


  ~ScriptToEvaluateOnNewDocument();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = ScriptToEvaluateOnNewDocumentPtr>
  ScriptToEvaluateOnNewDocumentPtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }
  size_t Hash(size_t seed) const;

  template <mojo::internal::SendValidation send_validation, typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        ScriptToEvaluateOnNewDocument::DataView, ::blink::Vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        ScriptToEvaluateOnNewDocument::DataView, ::blink::Vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        ScriptToEvaluateOnNewDocument::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::ScriptToEvaluateOnNewDocument_UnserializedMessageContext<
            UserType, ScriptToEvaluateOnNewDocument::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<ScriptToEvaluateOnNewDocument::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return ScriptToEvaluateOnNewDocument::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::ScriptToEvaluateOnNewDocument_UnserializedMessageContext<
            UserType, ScriptToEvaluateOnNewDocument::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<ScriptToEvaluateOnNewDocument::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  ::blink::String source;
  
  ::blink::String world_name;
  
  bool include_command_line_api;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}









class PLATFORM_EXPORT URLBreakpointLocator {
 public:
  using DataView = URLBreakpointLocatorDataView;
  using Data_ = internal::URLBreakpointLocator_Data;
  using Tag = Data_::URLBreakpointLocator_Tag;

  template <typename... Args>
  static URLBreakpointLocatorPtr New(Args&&... args) {
    static_assert(
        sizeof...(args) < 0,
        "Do not use Union::New(); to create a union of a given subtype, use "
        "New<SubType>(), not New() followed by set_<sub_type>(). To represent "
        "an empty union, mark the field or parameter as nullable in the mojom "
        "definition.");
    return nullptr;
  }

  // Construct an instance holding |url|.
  static URLBreakpointLocatorPtr NewUrl(
      const ::blink::String& value);
  // Construct an instance holding |url_regex|.
  static URLBreakpointLocatorPtr NewUrlRegex(
      const ::blink::String& value);
  // Construct an instance holding |script_hash|.
  static URLBreakpointLocatorPtr NewScriptHash(
      const ::blink::String& value);

  template <typename U>
  static URLBreakpointLocatorPtr From(const U& u) {
    return mojo::TypeConverter<URLBreakpointLocatorPtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, URLBreakpointLocator>::Convert(*this);
  }
  ~URLBreakpointLocator();

  // Delete the copy constructor and copy assignment operators because `data_`
  // contains raw pointers that must not be copied.
  URLBreakpointLocator(const URLBreakpointLocator& other) = delete;
  URLBreakpointLocator& operator=(const URLBreakpointLocator& other) = delete;

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename UnionPtrType = URLBreakpointLocatorPtr>
  URLBreakpointLocatorPtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T,
            typename std::enable_if<std::is_same<
                T, URLBreakpointLocator>::value>::type* = nullptr>
  bool Equals(const T& other) const;

  template <typename T,
            typename std::enable_if<std::is_same<
                T, URLBreakpointLocator>::value>::type* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }
  size_t Hash(size_t seed) const;

  Tag which() const {
    return tag_;
  }

  bool is_url() const { return tag_ == Tag::kUrl; }
  const ::blink::String& get_url() const {
    CHECK(tag_ == Tag::kUrl);
    return data_.url;
  }
  ::blink::String& get_url() {
    CHECK(tag_ == Tag::kUrl);
    return data_.url;
  }
  void set_url(const ::blink::String& url);

  bool is_url_regex() const { return tag_ == Tag::kUrlRegex; }
  const ::blink::String& get_url_regex() const {
    CHECK(tag_ == Tag::kUrlRegex);
    return data_.url_regex;
  }
  ::blink::String& get_url_regex() {
    CHECK(tag_ == Tag::kUrlRegex);
    return data_.url_regex;
  }
  void set_url_regex(const ::blink::String& url_regex);

  bool is_script_hash() const { return tag_ == Tag::kScriptHash; }
  const ::blink::String& get_script_hash() const {
    CHECK(tag_ == Tag::kScriptHash);
    return data_.script_hash;
  }
  ::blink::String& get_script_hash() {
    CHECK(tag_ == Tag::kScriptHash);
    return data_.script_hash;
  }
  void set_script_hash(const ::blink::String& script_hash);

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        URLBreakpointLocator::DataView>(input);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    return mojo::internal::DeserializeImpl<URLBreakpointLocator::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

 private:
  template <typename T>
  friend class ::mojo::InlinedStructPtr;
  template <typename T>
  friend class ::mojo::StructPtr;

  union Union_ {
    Union_(
        std::in_place_index_t<static_cast<size_t>(Tag::kUrl)>,
        const ::blink::String& value);
    Union_(
        std::in_place_index_t<static_cast<size_t>(Tag::kUrlRegex)>,
        const ::blink::String& value);
    Union_(
        std::in_place_index_t<static_cast<size_t>(Tag::kScriptHash)>,
        const ::blink::String& value);
    // The contents of the union are explicitly destroyed by `DestroyActive()`.
    ~Union_() {}

    ::blink::String url;
    ::blink::String url_regex;
    ::blink::String script_hash;
  };

  URLBreakpointLocator(
      std::in_place_index_t<static_cast<size_t>(Tag::kUrl)>,
      const ::blink::String& value);
  URLBreakpointLocator(
      std::in_place_index_t<static_cast<size_t>(Tag::kUrlRegex)>,
      const ::blink::String& value);
  URLBreakpointLocator(
      std::in_place_index_t<static_cast<size_t>(Tag::kScriptHash)>,
      const ::blink::String& value);

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

  void DestroyActive();
  Tag tag_;
  Union_ data_;
};





class PLATFORM_EXPORT DevToolsMessage {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<DevToolsMessage, T>::value>;
  using DataView = DevToolsMessageDataView;
  using Data_ = internal::DevToolsMessage_Data;

  template <typename... Args>
  static DevToolsMessagePtr New(Args&&... args) {
    return DevToolsMessagePtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static DevToolsMessagePtr From(const U& u) {
    return mojo::TypeConverter<DevToolsMessagePtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, DevToolsMessage>::Convert(*this);
  }


  DevToolsMessage();

  explicit DevToolsMessage(
      ::mojo_base::BigBuffer data);

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

  ~DevToolsMessage();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = DevToolsMessagePtr>
  DevToolsMessagePtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        DevToolsMessage::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::DevToolsMessage_UnserializedMessageContext<
            UserType, DevToolsMessage::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<DevToolsMessage::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return DevToolsMessage::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::DevToolsMessage_UnserializedMessageContext<
            UserType, DevToolsMessage::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<DevToolsMessage::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  ::mojo_base::BigBuffer data;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, DevToolsMessage::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}






class PLATFORM_EXPORT URLBreakpoint {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<URLBreakpoint, T>::value>;
  using DataView = URLBreakpointDataView;
  using Data_ = internal::URLBreakpoint_Data;

  template <typename... Args>
  static URLBreakpointPtr New(Args&&... args) {
    return URLBreakpointPtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static URLBreakpointPtr From(const U& u) {
    return mojo::TypeConverter<URLBreakpointPtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, URLBreakpoint>::Convert(*this);
  }


  URLBreakpoint();

  URLBreakpoint(
      int32_t line_number,
      URLBreakpointLocatorPtr locator,
      std::optional<int32_t> column_number,
      const ::blink::String& condition);

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

  ~URLBreakpoint();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = URLBreakpointPtr>
  URLBreakpointPtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }

  template <mojo::internal::SendValidation send_validation, typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        URLBreakpoint::DataView, ::blink::Vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        URLBreakpoint::DataView, ::blink::Vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        URLBreakpoint::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::URLBreakpoint_UnserializedMessageContext<
            UserType, URLBreakpoint::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<URLBreakpoint::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return URLBreakpoint::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::URLBreakpoint_UnserializedMessageContext<
            UserType, URLBreakpoint::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<URLBreakpoint::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  int32_t line_number;
  
  URLBreakpointLocatorPtr locator;
  
  std::optional<int32_t> column_number;
  
  ::blink::String condition;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, URLBreakpoint::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}





class PLATFORM_EXPORT BrowserOriginatingSessionState {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<BrowserOriginatingSessionState, T>::value>;
  using DataView = BrowserOriginatingSessionStateDataView;
  using Data_ = internal::BrowserOriginatingSessionState_Data;

  template <typename... Args>
  static BrowserOriginatingSessionStatePtr New(Args&&... args) {
    return BrowserOriginatingSessionStatePtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static BrowserOriginatingSessionStatePtr From(const U& u) {
    return mojo::TypeConverter<BrowserOriginatingSessionStatePtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, BrowserOriginatingSessionState>::Convert(*this);
  }


  BrowserOriginatingSessionState();

  BrowserOriginatingSessionState(
      ::blink::HashMap<::blink::String, ScriptToEvaluateOnNewDocumentPtr> scripts_to_evaluate_on_new_document,
      const ::blink::String& script_to_evaluate_on_load_once,
      const ::blink::HashMap<::blink::String, ::blink::String>& extra_request_headers,
      bool overlay_enabled,
      const ::blink::String& paused_in_debugger_message,
      ::blink::HashMap<::blink::String, URLBreakpointPtr> url_breakpoints);

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

  ~BrowserOriginatingSessionState();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = BrowserOriginatingSessionStatePtr>
  BrowserOriginatingSessionStatePtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }

  template <mojo::internal::SendValidation send_validation, typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        BrowserOriginatingSessionState::DataView, ::blink::Vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        BrowserOriginatingSessionState::DataView, ::blink::Vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        BrowserOriginatingSessionState::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::BrowserOriginatingSessionState_UnserializedMessageContext<
            UserType, BrowserOriginatingSessionState::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<BrowserOriginatingSessionState::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return BrowserOriginatingSessionState::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::BrowserOriginatingSessionState_UnserializedMessageContext<
            UserType, BrowserOriginatingSessionState::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<BrowserOriginatingSessionState::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  ::blink::HashMap<::blink::String, ScriptToEvaluateOnNewDocumentPtr> scripts_to_evaluate_on_new_document;
  
  ::blink::String script_to_evaluate_on_load_once;
  
  ::blink::HashMap<::blink::String, ::blink::String> extra_request_headers;
  
  bool overlay_enabled;
  
  ::blink::String paused_in_debugger_message;
  
  ::blink::HashMap<::blink::String, URLBreakpointPtr> url_breakpoints;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}





class PLATFORM_EXPORT RendererOriginatingSessionState {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<RendererOriginatingSessionState, T>::value>;
  using DataView = RendererOriginatingSessionStateDataView;
  using Data_ = internal::RendererOriginatingSessionState_Data;

  template <typename... Args>
  static RendererOriginatingSessionStatePtr New(Args&&... args) {
    return RendererOriginatingSessionStatePtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static RendererOriginatingSessionStatePtr From(const U& u) {
    return mojo::TypeConverter<RendererOriginatingSessionStatePtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, RendererOriginatingSessionState>::Convert(*this);
  }


  RendererOriginatingSessionState();

  explicit RendererOriginatingSessionState(
      const ::blink::HashMap<::blink::String, std::optional<::blink::Vector<uint8_t>>>& entries);


  ~RendererOriginatingSessionState();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = RendererOriginatingSessionStatePtr>
  RendererOriginatingSessionStatePtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }

  template <mojo::internal::SendValidation send_validation, typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        RendererOriginatingSessionState::DataView, ::blink::Vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        RendererOriginatingSessionState::DataView, ::blink::Vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        RendererOriginatingSessionState::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::RendererOriginatingSessionState_UnserializedMessageContext<
            UserType, RendererOriginatingSessionState::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<RendererOriginatingSessionState::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return RendererOriginatingSessionState::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::RendererOriginatingSessionState_UnserializedMessageContext<
            UserType, RendererOriginatingSessionState::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<RendererOriginatingSessionState::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  ::blink::HashMap<::blink::String, std::optional<::blink::Vector<uint8_t>>> entries;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, RendererOriginatingSessionState::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}





class PLATFORM_EXPORT DevToolsSessionState {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<DevToolsSessionState, T>::value>;
  using DataView = DevToolsSessionStateDataView;
  using Data_ = internal::DevToolsSessionState_Data;

  template <typename... Args>
  static DevToolsSessionStatePtr New(Args&&... args) {
    return DevToolsSessionStatePtr(
        std::in_place, std::forward<Args>(args)...);
  }

  template <typename U>
  static DevToolsSessionStatePtr From(const U& u) {
    return mojo::TypeConverter<DevToolsSessionStatePtr, U>::Convert(u);
  }

  template <typename U>
  U To() const {
    return mojo::TypeConverter<U, DevToolsSessionState>::Convert(*this);
  }


  DevToolsSessionState();

  DevToolsSessionState(
      BrowserOriginatingSessionStatePtr browser_originating_session_state,
      RendererOriginatingSessionStatePtr renderer_originating_session_state);

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

  ~DevToolsSessionState();

  // Clone() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Clone() or copy
  // constructor/assignment are available for members.
  template <typename StructPtrType = DevToolsSessionStatePtr>
  DevToolsSessionStatePtr Clone() const;

  // Equals() is a template so it is only instantiated if it is used. Thus, the
  // bindings generator does not need to know whether Equals() or == operator
  // are available for members.
  template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

  template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
  bool operator==(const T& rhs) const { return Equals(rhs); }

  template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
  bool operator!=(const T& rhs) const { return !operator==(rhs); }

  template <mojo::internal::SendValidation send_validation, typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        DevToolsSessionState::DataView, ::blink::Vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static ::blink::Vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        DevToolsSessionState::DataView, ::blink::Vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        DevToolsSessionState::DataView>(input);
  }

  // The returned Message is serialized only if the message is moved
  // cross-process or cross-language. Otherwise if the message is Deserialized
  // as the same UserType |input| will just be moved to |output| in
  // DeserializeFromMessage.
  template <typename UserType>
  static mojo::Message WrapAsMessage(UserType input) {
    return mojo::Message(std::make_unique<
        internal::DevToolsSessionState_UnserializedMessageContext<
            UserType, DevToolsSessionState::DataView>>(0, 0, std::move(input)),
        MOJO_CREATE_MESSAGE_FLAG_NONE);
  }

  template <typename UserType>
  static bool Deserialize(const void* data,
                          size_t data_num_bytes,
                          UserType* output) {
    mojo::Message message;
    return mojo::internal::DeserializeImpl<DevToolsSessionState::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return DevToolsSessionState::Deserialize(
        input.empty() ? nullptr : input.data(), input.size(), output);
  }

  template <typename UserType>
  static bool DeserializeFromMessage(mojo::Message input,
                                     UserType* output) {
    auto context = input.TakeUnserializedContext<
        internal::DevToolsSessionState_UnserializedMessageContext<
            UserType, DevToolsSessionState::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<DevToolsSessionState::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  BrowserOriginatingSessionStatePtr browser_originating_session_state;
  
  RendererOriginatingSessionStatePtr renderer_originating_session_state;

  // Serialise this struct into a trace.
  void WriteIntoTrace(perfetto::TracedValue traced_context) const;

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

// The comparison operators are templates, so they are only instantiated if they
// are used. Thus, the bindings generator does not need to know whether
// comparison operators are available for members.
template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
bool operator<=(const T& lhs, const T& rhs) {
  return !(rhs < lhs);
}

template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
bool operator>(const T& lhs, const T& rhs) {
  return rhs < lhs;
}

template <typename T, DevToolsSessionState::EnableIfSame<T>* = nullptr>
bool operator>=(const T& lhs, const T& rhs) {
  return !(lhs < rhs);
}

template <typename UnionPtrType>
URLBreakpointLocatorPtr URLBreakpointLocator::Clone() const {
  switch (tag_) {
    case Tag::kUrl:
      return NewUrl(
          mojo::Clone(data_.url));
    case Tag::kUrlRegex:
      return NewUrlRegex(
          mojo::Clone(data_.url_regex));
    case Tag::kScriptHash:
      return NewScriptHash(
          mojo::Clone(data_.script_hash));
  }
  return nullptr;
}

template <typename T,
          typename std::enable_if<std::is_same<
              T, URLBreakpointLocator>::value>::type*>
bool URLBreakpointLocator::Equals(const T& other) const {
  if (tag_ != other.which())
    return false;

  switch (tag_) {
    case Tag::kUrl:
      return mojo::Equals(data_.url, other.data_.url);
    case Tag::kUrlRegex:
      return mojo::Equals(data_.url_regex, other.data_.url_regex);
    case Tag::kScriptHash:
      return mojo::Equals(data_.script_hash, other.data_.script_hash);
  }

  return false;
}
template <typename StructPtrType>
DevToolsMessagePtr DevToolsMessage::Clone() const {
  return New(
      mojo::Clone(data)
  );
}

template <typename T, DevToolsMessage::EnableIfSame<T>*>
bool DevToolsMessage::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->data, other_struct.data))
    return false;
  return true;
}

template <typename T, DevToolsMessage::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.data < rhs.data)
    return true;
  if (rhs.data < lhs.data)
    return false;
  return false;
}
template <typename StructPtrType>
ScriptToEvaluateOnNewDocumentPtr ScriptToEvaluateOnNewDocument::Clone() const {
  return New(
      mojo::Clone(source),
      mojo::Clone(world_name),
      mojo::Clone(include_command_line_api)
  );
}

template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>*>
bool ScriptToEvaluateOnNewDocument::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->source, other_struct.source))
    return false;
  if (!mojo::Equals(this->world_name, other_struct.world_name))
    return false;
  if (!mojo::Equals(this->include_command_line_api, other_struct.include_command_line_api))
    return false;
  return true;
}

template <typename T, ScriptToEvaluateOnNewDocument::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.source < rhs.source)
    return true;
  if (rhs.source < lhs.source)
    return false;
  if (lhs.world_name < rhs.world_name)
    return true;
  if (rhs.world_name < lhs.world_name)
    return false;
  if (lhs.include_command_line_api < rhs.include_command_line_api)
    return true;
  if (rhs.include_command_line_api < lhs.include_command_line_api)
    return false;
  return false;
}
template <typename StructPtrType>
URLBreakpointPtr URLBreakpoint::Clone() const {
  return New(
      mojo::Clone(line_number),
      mojo::Clone(locator),
      mojo::Clone(column_number),
      mojo::Clone(condition)
  );
}

template <typename T, URLBreakpoint::EnableIfSame<T>*>
bool URLBreakpoint::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->line_number, other_struct.line_number))
    return false;
  if (!mojo::Equals(this->locator, other_struct.locator))
    return false;
  if (!mojo::Equals(this->column_number, other_struct.column_number))
    return false;
  if (!mojo::Equals(this->condition, other_struct.condition))
    return false;
  return true;
}

template <typename T, URLBreakpoint::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.line_number < rhs.line_number)
    return true;
  if (rhs.line_number < lhs.line_number)
    return false;
  if (lhs.locator < rhs.locator)
    return true;
  if (rhs.locator < lhs.locator)
    return false;
  if (lhs.column_number < rhs.column_number)
    return true;
  if (rhs.column_number < lhs.column_number)
    return false;
  if (lhs.condition < rhs.condition)
    return true;
  if (rhs.condition < lhs.condition)
    return false;
  return false;
}
template <typename StructPtrType>
BrowserOriginatingSessionStatePtr BrowserOriginatingSessionState::Clone() const {
  return New(
      mojo::Clone(scripts_to_evaluate_on_new_document),
      mojo::Clone(script_to_evaluate_on_load_once),
      mojo::Clone(extra_request_headers),
      mojo::Clone(overlay_enabled),
      mojo::Clone(paused_in_debugger_message),
      mojo::Clone(url_breakpoints)
  );
}

template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>*>
bool BrowserOriginatingSessionState::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->scripts_to_evaluate_on_new_document, other_struct.scripts_to_evaluate_on_new_document))
    return false;
  if (!mojo::Equals(this->script_to_evaluate_on_load_once, other_struct.script_to_evaluate_on_load_once))
    return false;
  if (!mojo::Equals(this->extra_request_headers, other_struct.extra_request_headers))
    return false;
  if (!mojo::Equals(this->overlay_enabled, other_struct.overlay_enabled))
    return false;
  if (!mojo::Equals(this->paused_in_debugger_message, other_struct.paused_in_debugger_message))
    return false;
  if (!mojo::Equals(this->url_breakpoints, other_struct.url_breakpoints))
    return false;
  return true;
}

template <typename T, BrowserOriginatingSessionState::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.scripts_to_evaluate_on_new_document < rhs.scripts_to_evaluate_on_new_document)
    return true;
  if (rhs.scripts_to_evaluate_on_new_document < lhs.scripts_to_evaluate_on_new_document)
    return false;
  if (lhs.script_to_evaluate_on_load_once < rhs.script_to_evaluate_on_load_once)
    return true;
  if (rhs.script_to_evaluate_on_load_once < lhs.script_to_evaluate_on_load_once)
    return false;
  if (lhs.extra_request_headers < rhs.extra_request_headers)
    return true;
  if (rhs.extra_request_headers < lhs.extra_request_headers)
    return false;
  if (lhs.overlay_enabled < rhs.overlay_enabled)
    return true;
  if (rhs.overlay_enabled < lhs.overlay_enabled)
    return false;
  if (lhs.paused_in_debugger_message < rhs.paused_in_debugger_message)
    return true;
  if (rhs.paused_in_debugger_message < lhs.paused_in_debugger_message)
    return false;
  if (lhs.url_breakpoints < rhs.url_breakpoints)
    return true;
  if (rhs.url_breakpoints < lhs.url_breakpoints)
    return false;
  return false;
}
template <typename StructPtrType>
RendererOriginatingSessionStatePtr RendererOriginatingSessionState::Clone() const {
  return New(
      mojo::Clone(entries)
  );
}

template <typename T, RendererOriginatingSessionState::EnableIfSame<T>*>
bool RendererOriginatingSessionState::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->entries, other_struct.entries))
    return false;
  return true;
}

template <typename T, RendererOriginatingSessionState::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.entries < rhs.entries)
    return true;
  if (rhs.entries < lhs.entries)
    return false;
  return false;
}
template <typename StructPtrType>
DevToolsSessionStatePtr DevToolsSessionState::Clone() const {
  return New(
      mojo::Clone(browser_originating_session_state),
      mojo::Clone(renderer_originating_session_state)
  );
}

template <typename T, DevToolsSessionState::EnableIfSame<T>*>
bool DevToolsSessionState::Equals(const T& other_struct) const {
  if (!mojo::Equals(this->browser_originating_session_state, other_struct.browser_originating_session_state))
    return false;
  if (!mojo::Equals(this->renderer_originating_session_state, other_struct.renderer_originating_session_state))
    return false;
  return true;
}

template <typename T, DevToolsSessionState::EnableIfSame<T>*>
bool operator<(const T& lhs, const T& rhs) {
  if (lhs.browser_originating_session_state < rhs.browser_originating_session_state)
    return true;
  if (rhs.browser_originating_session_state < lhs.browser_originating_session_state)
    return false;
  if (lhs.renderer_originating_session_state < rhs.renderer_originating_session_state)
    return true;
  if (rhs.renderer_originating_session_state < lhs.renderer_originating_session_state)
    return false;
  return false;
}


}  // blink::mojom::blink

namespace mojo {


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::DevToolsMessage::DataView,
                                         ::blink::mojom::blink::DevToolsMessagePtr> {
  static bool IsNull(const ::blink::mojom::blink::DevToolsMessagePtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::DevToolsMessagePtr* output) { output->reset(); }

  static  decltype(::blink::mojom::blink::DevToolsMessage::data)& data(
       ::blink::mojom::blink::DevToolsMessagePtr& input) {
    return input->data;
  }

  static bool Read(::blink::mojom::blink::DevToolsMessage::DataView input, ::blink::mojom::blink::DevToolsMessagePtr* output);
};


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::ScriptToEvaluateOnNewDocument::DataView,
                                         ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr> {
  static bool IsNull(const ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr* output) { output->reset(); }

  static const decltype(::blink::mojom::blink::ScriptToEvaluateOnNewDocument::source)& source(
      const ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr& input) {
    return input->source;
  }

  static const decltype(::blink::mojom::blink::ScriptToEvaluateOnNewDocument::world_name)& world_name(
      const ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr& input) {
    return input->world_name;
  }

  static decltype(::blink::mojom::blink::ScriptToEvaluateOnNewDocument::include_command_line_api) include_command_line_api(
      const ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr& input) {
    return input->include_command_line_api;
  }

  static bool Read(::blink::mojom::blink::ScriptToEvaluateOnNewDocument::DataView input, ::blink::mojom::blink::ScriptToEvaluateOnNewDocumentPtr* output);
};


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::URLBreakpoint::DataView,
                                         ::blink::mojom::blink::URLBreakpointPtr> {
  static bool IsNull(const ::blink::mojom::blink::URLBreakpointPtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::URLBreakpointPtr* output) { output->reset(); }

  static decltype(::blink::mojom::blink::URLBreakpoint::line_number) line_number(
      const ::blink::mojom::blink::URLBreakpointPtr& input) {
    return input->line_number;
  }

  static const decltype(::blink::mojom::blink::URLBreakpoint::locator)& locator(
      const ::blink::mojom::blink::URLBreakpointPtr& input) {
    return input->locator;
  }

  static decltype(::blink::mojom::blink::URLBreakpoint::column_number) column_number(
      const ::blink::mojom::blink::URLBreakpointPtr& input) {
    return input->column_number;
  }

  static const decltype(::blink::mojom::blink::URLBreakpoint::condition)& condition(
      const ::blink::mojom::blink::URLBreakpointPtr& input) {
    return input->condition;
  }

  static bool Read(::blink::mojom::blink::URLBreakpoint::DataView input, ::blink::mojom::blink::URLBreakpointPtr* output);
};


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::BrowserOriginatingSessionState::DataView,
                                         ::blink::mojom::blink::BrowserOriginatingSessionStatePtr> {
  static bool IsNull(const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::BrowserOriginatingSessionStatePtr* output) { output->reset(); }

  static const decltype(::blink::mojom::blink::BrowserOriginatingSessionState::scripts_to_evaluate_on_new_document)& scripts_to_evaluate_on_new_document(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->scripts_to_evaluate_on_new_document;
  }

  static const decltype(::blink::mojom::blink::BrowserOriginatingSessionState::script_to_evaluate_on_load_once)& script_to_evaluate_on_load_once(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->script_to_evaluate_on_load_once;
  }

  static const decltype(::blink::mojom::blink::BrowserOriginatingSessionState::extra_request_headers)& extra_request_headers(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->extra_request_headers;
  }

  static decltype(::blink::mojom::blink::BrowserOriginatingSessionState::overlay_enabled) overlay_enabled(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->overlay_enabled;
  }

  static const decltype(::blink::mojom::blink::BrowserOriginatingSessionState::paused_in_debugger_message)& paused_in_debugger_message(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->paused_in_debugger_message;
  }

  static const decltype(::blink::mojom::blink::BrowserOriginatingSessionState::url_breakpoints)& url_breakpoints(
      const ::blink::mojom::blink::BrowserOriginatingSessionStatePtr& input) {
    return input->url_breakpoints;
  }

  static bool Read(::blink::mojom::blink::BrowserOriginatingSessionState::DataView input, ::blink::mojom::blink::BrowserOriginatingSessionStatePtr* output);
};


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::RendererOriginatingSessionState::DataView,
                                         ::blink::mojom::blink::RendererOriginatingSessionStatePtr> {
  static bool IsNull(const ::blink::mojom::blink::RendererOriginatingSessionStatePtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::RendererOriginatingSessionStatePtr* output) { output->reset(); }

  static const decltype(::blink::mojom::blink::RendererOriginatingSessionState::entries)& entries(
      const ::blink::mojom::blink::RendererOriginatingSessionStatePtr& input) {
    return input->entries;
  }

  static bool Read(::blink::mojom::blink::RendererOriginatingSessionState::DataView input, ::blink::mojom::blink::RendererOriginatingSessionStatePtr* output);
};


template <>
struct PLATFORM_EXPORT StructTraits<::blink::mojom::blink::DevToolsSessionState::DataView,
                                         ::blink::mojom::blink::DevToolsSessionStatePtr> {
  static bool IsNull(const ::blink::mojom::blink::DevToolsSessionStatePtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::DevToolsSessionStatePtr* output) { output->reset(); }

  static const decltype(::blink::mojom::blink::DevToolsSessionState::browser_originating_session_state)& browser_originating_session_state(
      const ::blink::mojom::blink::DevToolsSessionStatePtr& input) {
    return input->browser_originating_session_state;
  }

  static const decltype(::blink::mojom::blink::DevToolsSessionState::renderer_originating_session_state)& renderer_originating_session_state(
      const ::blink::mojom::blink::DevToolsSessionStatePtr& input) {
    return input->renderer_originating_session_state;
  }

  static bool Read(::blink::mojom::blink::DevToolsSessionState::DataView input, ::blink::mojom::blink::DevToolsSessionStatePtr* output);
};


template <>
struct PLATFORM_EXPORT UnionTraits<::blink::mojom::blink::URLBreakpointLocator::DataView,
                                        ::blink::mojom::blink::URLBreakpointLocatorPtr> {
  static bool IsNull(const ::blink::mojom::blink::URLBreakpointLocatorPtr& input) { return !input; }
  static void SetToNull(::blink::mojom::blink::URLBreakpointLocatorPtr* output) { output->reset(); }

  static ::blink::mojom::blink::URLBreakpointLocator::Tag GetTag(const ::blink::mojom::blink::URLBreakpointLocatorPtr& input) {
    return input->which();
  }

  static const ::blink::String& url(const ::blink::mojom::blink::URLBreakpointLocatorPtr& input) {
    return input->get_url();
  }

  static const ::blink::String& url_regex(const ::blink::mojom::blink::URLBreakpointLocatorPtr& input) {
    return input->get_url_regex();
  }

  static const ::blink::String& script_hash(const ::blink::mojom::blink::URLBreakpointLocatorPtr& input) {
    return input->get_script_hash();
  }

  static bool Read(::blink::mojom::blink::URLBreakpointLocator::DataView input, ::blink::mojom::blink::URLBreakpointLocatorPtr* output);
};

}  // namespace mojo

#endif  // THIRD_PARTY_BLINK_PUBLIC_MOJOM_DEVTOOLS_DEVTOOLS_AGENT_MOJOM_BLINK_H_