// ui/webui/resources/js/tracked_element/tracked_element.mojom.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 UI_WEBUI_RESOURCES_JS_TRACKED_ELEMENT_TRACKED_ELEMENT_MOJOM_H_
#define UI_WEBUI_RESOURCES_JS_TRACKED_ELEMENT_TRACKED_ELEMENT_MOJOM_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 "ui/webui/resources/js/tracked_element/tracked_element.mojom-features.h"  // IWYU pragma: export
#include "ui/webui/resources/js/tracked_element/tracked_element.mojom-shared.h"  // IWYU pragma: export
#include "ui/webui/resources/js/tracked_element/tracked_element.mojom-forward.h"  // IWYU pragma: export
#include "mojo/public/mojom/base/string16.mojom.h"
#include "ui/gfx/geometry/mojom/geometry.mojom.h"
#include <string>
#include <vector>

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






namespace tracked_element::mojom {

class TrackedElementHandlerProxy;

template <typename ImplRefTraits>
class TrackedElementHandlerStub;

class TrackedElementHandlerRequestValidator;


class TrackedElementHandler
    : public TrackedElementHandlerInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "tracked_element.mojom.TrackedElementHandler";
  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_ = TrackedElementHandlerInterfaceBase;
  using Proxy_ = TrackedElementHandlerProxy;

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

  using RequestValidator_ = TrackedElementHandlerRequestValidator;
  using ResponseValidator_ = mojo::PassThroughFilter;
  enum MethodMinVersions : uint32_t {
    kSetManagerMinVersion = 0,
    kTrackedElementCanHighlightChangedMinVersion = 0,
    kTrackedElementVisibilityChangedMinVersion = 0,
    kTrackedElementActivatedMinVersion = 0,
    kTrackedElementCustomEventMinVersion = 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 SetManager_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct TrackedElementCanHighlightChanged_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct TrackedElementVisibilityChanged_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct TrackedElementActivated_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct TrackedElementCustomEvent_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~TrackedElementHandler() = default;

  virtual void SetManager(::mojo::PendingRemote<TrackedElementManager> observer) = 0;

  virtual void TrackedElementCanHighlightChanged(TrackedElementIdentifierPtr identifier, bool can_higlight) = 0;

  virtual void TrackedElementVisibilityChanged(TrackedElementIdentifierPtr identifier, bool visible, const ::gfx::RectF& rect) = 0;

  virtual void TrackedElementActivated(TrackedElementIdentifierPtr identifier) = 0;

  virtual void TrackedElementCustomEvent(TrackedElementIdentifierPtr identifier, const std::string& custom_event_name) = 0;
};

class TrackedElementManagerProxy;

template <typename ImplRefTraits>
class TrackedElementManagerStub;

class TrackedElementManagerRequestValidator;
class TrackedElementManagerResponseValidator;


class TrackedElementManager
    : public TrackedElementManagerInterfaceBase {
 public:
  using IPCStableHashFunction = uint32_t(*)();
  static constexpr const char* Name_ = "tracked_element.mojom.TrackedElementManager";
  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_ = TrackedElementManagerInterfaceBase;
  using Proxy_ = TrackedElementManagerProxy;

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

  using RequestValidator_ = TrackedElementManagerRequestValidator;
  using ResponseValidator_ = TrackedElementManagerResponseValidator;
  enum MethodMinVersions : uint32_t {
    kOnElementHighlightChangedMinVersion = 0,
    kClickElementMinVersion = 0,
    kFocusElementMinVersion = 0,
    kSelectTabMinVersion = 0,
    kSelectDropdownItemMinVersion = 0,
    kEnterTextMinVersion = 0,
    kConfirmMinVersion = 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 OnElementHighlightChanged_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct ClickElement_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct FocusElement_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct SelectTab_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct SelectDropdownItem_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct EnterText_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
  struct Confirm_Sym {
    NOINLINE static uint32_t IPCStableHash();
  };
#endif // !BUILDFLAG(IS_FUCHSIA)
  virtual ~TrackedElementManager() = default;

  virtual void OnElementHighlightChanged(TrackedElementIdentifierPtr identifier, bool highlighted) = 0;

  using ClickElementCallback = base::OnceCallback<void(bool)>;
  using ClickElementMojoCallback = base::OnceCallback<void(bool)>;

  virtual void ClickElement(TrackedElementIdentifierPtr identifier, ClickElementCallback callback) = 0;

  using FocusElementCallback = base::OnceCallback<void(bool)>;
  using FocusElementMojoCallback = base::OnceCallback<void(bool)>;

  virtual void FocusElement(TrackedElementIdentifierPtr identifier, FocusElementCallback callback) = 0;

  using SelectTabCallback = base::OnceCallback<void(bool)>;
  using SelectTabMojoCallback = base::OnceCallback<void(bool)>;

  virtual void SelectTab(TrackedElementIdentifierPtr identifier, uint32_t index, SelectTabCallback callback) = 0;

  using SelectDropdownItemCallback = base::OnceCallback<void(bool)>;
  using SelectDropdownItemMojoCallback = base::OnceCallback<void(bool)>;

  virtual void SelectDropdownItem(TrackedElementIdentifierPtr identifier, uint32_t index, SelectDropdownItemCallback callback) = 0;

  using EnterTextCallback = base::OnceCallback<void(bool)>;
  using EnterTextMojoCallback = base::OnceCallback<void(bool)>;

  virtual void EnterText(TrackedElementIdentifierPtr identifier, const ::std::u16string& text, TextEntryMode mode, EnterTextCallback callback) = 0;

  using ConfirmCallback = base::OnceCallback<void(bool)>;
  using ConfirmMojoCallback = base::OnceCallback<void(bool)>;

  virtual void Confirm(TrackedElementIdentifierPtr identifier, ConfirmCallback callback) = 0;
};



class  TrackedElementHandlerProxy
    : public TrackedElementHandler {
 public:
  using InterfaceType = TrackedElementHandler;

  explicit TrackedElementHandlerProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void SetManager(::mojo::PendingRemote<TrackedElementManager> observer) final;
  
  void TrackedElementCanHighlightChanged(TrackedElementIdentifierPtr identifier, bool can_higlight) final;
  
  void TrackedElementVisibilityChanged(TrackedElementIdentifierPtr identifier, bool visible, const ::gfx::RectF& rect) final;
  
  void TrackedElementActivated(TrackedElementIdentifierPtr identifier) final;
  
  void TrackedElementCustomEvent(TrackedElementIdentifierPtr identifier, const std::string& custom_event_name) final;

 private:
  mojo::MessageReceiverWithResponder* receiver_;
};



class  TrackedElementManagerProxy
    : public TrackedElementManager {
 public:
  using InterfaceType = TrackedElementManager;

  explicit TrackedElementManagerProxy(mojo::MessageReceiverWithResponder* receiver);
  
  void OnElementHighlightChanged(TrackedElementIdentifierPtr identifier, bool highlighted) final;
  
  void ClickElement(TrackedElementIdentifierPtr identifier, ClickElementCallback callback) final;
  
  void FocusElement(TrackedElementIdentifierPtr identifier, FocusElementCallback callback) final;
  
  void SelectTab(TrackedElementIdentifierPtr identifier, uint32_t index, SelectTabCallback callback) final;
  
  void SelectDropdownItem(TrackedElementIdentifierPtr identifier, uint32_t index, SelectDropdownItemCallback callback) final;
  
  void EnterText(TrackedElementIdentifierPtr identifier, const ::std::u16string& text, TextEntryMode mode, EnterTextCallback callback) final;
  
  void Confirm(TrackedElementIdentifierPtr identifier, ConfirmCallback callback) final;

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

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

  TrackedElementHandlerStub() = default;
  ~TrackedElementHandlerStub() 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 TrackedElementHandlerStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

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

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

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

  TrackedElementManagerStub() = default;
  ~TrackedElementManagerStub() 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 TrackedElementManagerStubDispatch::Accept(
        ImplRefTraits::GetRawPointer(&sink_), message);
  }

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

 private:
  ImplPointerType sink_;
};
class  TrackedElementHandlerRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class  TrackedElementManagerRequestValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};
class  TrackedElementManagerResponseValidator : public mojo::MessageReceiver {
 public:
  bool Accept(mojo::Message* message) override;
};





class  TrackedElementIdentifier {
 public:
  template <typename T>
  using EnableIfSame = std::enable_if_t<std::is_same<TrackedElementIdentifier, T>::value>;
  using DataView = TrackedElementIdentifierDataView;
  using Data_ = internal::TrackedElementIdentifier_Data;

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

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

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


  TrackedElementIdentifier();

  TrackedElementIdentifier(
      const std::string& native_identifier,
      const std::string& secondary_identifier);


  ~TrackedElementIdentifier();

  // 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 = TrackedElementIdentifierPtr>
  TrackedElementIdentifierPtr 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, TrackedElementIdentifier::EnableIfSame<T>* = nullptr>
  bool Equals(const T& other) const;

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

  template <typename T, TrackedElementIdentifier::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 std::vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        TrackedElementIdentifier::DataView, std::vector<uint8_t>, send_validation>(input);
  }

  template <typename UserType>
  static std::vector<uint8_t> Serialize(UserType* input) {
    return mojo::internal::SerializeImpl<
        TrackedElementIdentifier::DataView, std::vector<uint8_t>>(input);
  }

  template <typename UserType>
  static mojo::Message SerializeAsMessage(UserType* input) {
    return mojo::internal::SerializeAsMessageImpl<
        TrackedElementIdentifier::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::TrackedElementIdentifier_UnserializedMessageContext<
            UserType, TrackedElementIdentifier::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<TrackedElementIdentifier::DataView>(
        message, data, data_num_bytes, output, Validate);
  }

  template <typename UserType>
  static bool Deserialize(base::span<const uint8_t> input,
                          UserType* output) {
    return TrackedElementIdentifier::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::TrackedElementIdentifier_UnserializedMessageContext<
            UserType, TrackedElementIdentifier::DataView>>();
    if (context) {
      *output = std::move(context->TakeData());
      return true;
    }
    input.SerializeIfNecessary();
    return mojo::internal::DeserializeImpl<TrackedElementIdentifier::DataView>(
        input, input.payload(), input.payload_num_bytes(), output, Validate);
  }

  
  std::string native_identifier;
  
  std::string secondary_identifier;

  // 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, TrackedElementIdentifier::EnableIfSame<T>* = nullptr>
bool operator<(const T& lhs, const T& rhs);

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

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

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




template <typename StructPtrType>
TrackedElementIdentifierPtr TrackedElementIdentifier::Clone() const {
  return New(
      mojo::Clone(native_identifier),
      mojo::Clone(secondary_identifier)
  );
}

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

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


}  // tracked_element::mojom

namespace mojo {


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

  static const decltype(::tracked_element::mojom::TrackedElementIdentifier::native_identifier)& native_identifier(
      const ::tracked_element::mojom::TrackedElementIdentifierPtr& input) {
    return input->native_identifier;
  }

  static const decltype(::tracked_element::mojom::TrackedElementIdentifier::secondary_identifier)& secondary_identifier(
      const ::tracked_element::mojom::TrackedElementIdentifierPtr& input) {
    return input->secondary_identifier;
  }

  static bool Read(::tracked_element::mojom::TrackedElementIdentifier::DataView input, ::tracked_element::mojom::TrackedElementIdentifierPtr* output);
};

}  // namespace mojo

#endif  // UI_WEBUI_RESOURCES_JS_TRACKED_ELEMENT_TRACKED_ELEMENT_MOJOM_H_