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/* THIS FILE IS AUTOGENERATED FROM WebGL2RenderingContext.webidl BY Codegen.py - DO NOT EDIT */

#ifndef mozilla_dom_WebGL2RenderingContextBinding_h
#define mozilla_dom_WebGL2RenderingContextBinding_h

#include "js/RootingAPI.h"
#include "jsfriendapi.h"
#include "jspubtd.h"
#include "mozilla/ErrorResult.h"
#include "mozilla/dom/BindingDeclarations.h"
#include "mozilla/dom/FakeString.h"
#include "mozilla/dom/Nullable.h"
#include "mozilla/dom/TypedArray.h"
#include "mozilla/dom/UnionMember.h"

namespace mozilla {

class WebGL2Context;
struct WebGL2ContextAtoms;
class WebGLExtensionEXTColorBufferFloat;
struct WebGLExtensionEXTColorBufferFloatAtoms;
class WebGLSampler;
struct WebGLSamplerAtoms;
class WebGLSync;
struct WebGLSyncAtoms;
class WebGLTransformFeedback;
struct WebGLTransformFeedbackAtoms;

namespace dom {

struct NativePropertyHooks;
class ProtoAndIfaceCache;

} // namespace dom

} // namespace mozilla

namespace mozilla {
namespace dom {

class Uint32ArrayOrUnsignedLongSequence
{
  friend class Uint32ArrayOrUnsignedLongSequenceArgument;
  enum Type
  {
    eUninitialized,
    eUint32Array,
    eUnsignedLongSequence
  };

  union Value
  {
    UnionMember<RootedTypedArray<Uint32Array> > mUint32Array;
    UnionMember<binding_detail::AutoSequence<uint32_t> > mUnsignedLongSequence;

  };

  Type mType;
  Value mValue;

  Uint32ArrayOrUnsignedLongSequence(const Uint32ArrayOrUnsignedLongSequence&) = delete;
  void operator=(const Uint32ArrayOrUnsignedLongSequence&) = delete;
public:
  explicit inline Uint32ArrayOrUnsignedLongSequence()
    : mType(eUninitialized)
  {
  }

  inline ~Uint32ArrayOrUnsignedLongSequence()
  {
    Uninit();
  }

  inline RootedTypedArray<Uint32Array>&
  RawSetAsUint32Array(JSContext* cx)
  {
    if (mType == eUint32Array) {
      return mValue.mUint32Array.Value();
    }
    MOZ_ASSERT(mType == eUninitialized);
    mType = eUint32Array;
    return mValue.mUint32Array.SetValue(cx);
  }

  inline RootedTypedArray<Uint32Array>&
  SetAsUint32Array(JSContext* cx)
  {
    if (mType == eUint32Array) {
      return mValue.mUint32Array.Value();
    }
    Uninit();
    mType = eUint32Array;
    return mValue.mUint32Array.SetValue(cx);
  }

  inline bool
  IsUint32Array() const
  {
    return mType == eUint32Array;
  }

  inline RootedTypedArray<Uint32Array>&
  GetAsUint32Array()
  {
    MOZ_ASSERT(IsUint32Array(), "Wrong type!");
    return mValue.mUint32Array.Value();
  }

  inline Uint32Array const &
  GetAsUint32Array() const
  {
    MOZ_ASSERT(IsUint32Array(), "Wrong type!");
    return mValue.mUint32Array.Value();
  }

  inline binding_detail::AutoSequence<uint32_t>&
  RawSetAsUnsignedLongSequence()
  {
    if (mType == eUnsignedLongSequence) {
      return mValue.mUnsignedLongSequence.Value();
    }
    MOZ_ASSERT(mType == eUninitialized);
    mType = eUnsignedLongSequence;
    return mValue.mUnsignedLongSequence.SetValue();
  }

  inline binding_detail::AutoSequence<uint32_t>&
  SetAsUnsignedLongSequence()
  {
    if (mType == eUnsignedLongSequence) {
      return mValue.mUnsignedLongSequence.Value();
    }
    Uninit();
    mType = eUnsignedLongSequence;
    return mValue.mUnsignedLongSequence.SetValue();
  }

  inline bool
  IsUnsignedLongSequence() const
  {
    return mType == eUnsignedLongSequence;
  }

  inline binding_detail::AutoSequence<uint32_t>&
  GetAsUnsignedLongSequence()
  {
    MOZ_ASSERT(IsUnsignedLongSequence(), "Wrong type!");
    return mValue.mUnsignedLongSequence.Value();
  }

  inline const Sequence<uint32_t>&
  GetAsUnsignedLongSequence() const
  {
    MOZ_ASSERT(IsUnsignedLongSequence(), "Wrong type!");
    return mValue.mUnsignedLongSequence.Value();
  }

  inline void
  Uninit()
  {
    switch (mType) {
      case eUninitialized: {
        break;
      }
      case eUint32Array: {
        DestroyUint32Array();
        break;
      }
      case eUnsignedLongSequence: {
        DestroyUnsignedLongSequence();
        break;
      }
    }
  }

  bool
  ToJSVal(JSContext* cx, JS::Handle<JSObject*> scopeObj, JS::MutableHandle<JS::Value> rval) const;

private:
  inline void
  DestroyUint32Array()
  {
    MOZ_ASSERT(IsUint32Array(), "Wrong type!");
    mValue.mUint32Array.Destroy();
    mType = eUninitialized;
  }

  inline void
  DestroyUnsignedLongSequence()
  {
    MOZ_ASSERT(IsUnsignedLongSequence(), "Wrong type!");
    mValue.mUnsignedLongSequence.Destroy();
    mType = eUninitialized;
  }
};


class OwningUint32ArrayOrUnsignedLongSequence : public AllOwningUnionBase
{
  friend void ImplCycleCollectionUnlink(OwningUint32ArrayOrUnsignedLongSequence& aUnion);
  enum Type
  {
    eUninitialized,
    eUint32Array,
    eUnsignedLongSequence
  };

  union Value
  {
    UnionMember<Uint32Array > mUint32Array;
    UnionMember<Sequence<uint32_t> > mUnsignedLongSequence;

  };

  Type mType;
  Value mValue;

  OwningUint32ArrayOrUnsignedLongSequence(const OwningUint32ArrayOrUnsignedLongSequence&) = delete;
  void operator=(const OwningUint32ArrayOrUnsignedLongSequence&) = delete;
public:
  explicit inline OwningUint32ArrayOrUnsignedLongSequence()
    : mType(eUninitialized)
  {
  }

  inline ~OwningUint32ArrayOrUnsignedLongSequence()
  {
    Uninit();
  }

  Uint32Array&
  RawSetAsUint32Array();

  Uint32Array&
  SetAsUint32Array();

  bool
  TrySetToUint32Array(JSContext* cx, JS::Handle<JS::Value> value, bool& tryNext, bool passedToJSImpl = false);

  inline bool
  IsUint32Array() const
  {
    return mType == eUint32Array;
  }

  inline Uint32Array&
  GetAsUint32Array()
  {
    MOZ_ASSERT(IsUint32Array(), "Wrong type!");
    return mValue.mUint32Array.Value();
  }

  inline Uint32Array const &
  GetAsUint32Array() const
  {
    MOZ_ASSERT(IsUint32Array(), "Wrong type!");
    return mValue.mUint32Array.Value();
  }

  Sequence<uint32_t>&
  RawSetAsUnsignedLongSequence();

  Sequence<uint32_t>&
  SetAsUnsignedLongSequence();

  bool
  TrySetToUnsignedLongSequence(JSContext* cx, JS::Handle<JS::Value> value, bool& tryNext, bool passedToJSImpl = false);

  inline bool
  IsUnsignedLongSequence() const
  {
    return mType == eUnsignedLongSequence;
  }

  inline Sequence<uint32_t>&
  GetAsUnsignedLongSequence()
  {
    MOZ_ASSERT(IsUnsignedLongSequence(), "Wrong type!");
    return mValue.mUnsignedLongSequence.Value();
  }

  inline Sequence<uint32_t> const &
  GetAsUnsignedLongSequence() const
  {
    MOZ_ASSERT(IsUnsignedLongSequence(), "Wrong type!");
    return mValue.mUnsignedLongSequence.Value();
  }

  void
  Uninit();

  bool
  ToJSVal(JSContext* cx, JS::Handle<JSObject*> scopeObj, JS::MutableHandle<JS::Value> rval) const;

  void
  TraceUnion(JSTracer* trc);

private:
  void
  DestroyUint32Array();

  void
  DestroyUnsignedLongSequence();
};


namespace EXT_color_buffer_floatBinding {

  typedef mozilla::WebGLExtensionEXTColorBufferFloat NativeType;

  const JSClass*
  GetJSClass();

  bool
  Wrap(JSContext* aCx, mozilla::WebGLExtensionEXTColorBufferFloat* aObject, nsWrapperCache* aCache, JS::Handle<JSObject*> aGivenProto, JS::MutableHandle<JSObject*> aReflector);

  template <class T>
  inline JSObject* Wrap(JSContext* aCx, T* aObject, JS::Handle<JSObject*> aGivenProto)
  {
    JS::Rooted<JSObject*> reflector(aCx);
    return Wrap(aCx, aObject, aObject, aGivenProto, &reflector) ? reflector.get() : nullptr;
  }

  // We declare this as an array so that retrieving a pointer to this
  // binding's property hooks only requires compile/link-time resolvable
  // address arithmetic.  Declaring it as a pointer instead would require
  // doing a run-time load to fetch a pointer to this binding's property
  // hooks.  And then structures which embedded a pointer to this structure
  // would require a run-time load for proper initialization, which would
  // then induce static constructors.  Lots of static constructors.
  extern const NativePropertyHooks sNativePropertyHooks[];

  void
  CreateInterfaceObjects(JSContext* aCx, JS::Handle<JSObject*> aGlobal, ProtoAndIfaceCache& aProtoAndIfaceCache, bool aDefineOnGlobal);

  JS::Handle<JSObject*>
  GetProtoObjectHandle(JSContext* aCx);

} // namespace EXT_color_buffer_floatBinding



namespace WebGL2RenderingContextBinding {

  typedef mozilla::WebGL2Context NativeType;

  bool
  ConstructorEnabled(JSContext* aCx, JS::Handle<JSObject*> aObj);

  JSObject*
  DefineDOMInterface(JSContext* aCx, JS::Handle<JSObject*> aGlobal, JS::Handle<jsid> id, bool aDefineOnGlobal);

  const JSClass*
  GetJSClass();

  bool
  Wrap(JSContext* aCx, mozilla::WebGL2Context* aObject, nsWrapperCache* aCache, JS::Handle<JSObject*> aGivenProto, JS::MutableHandle<JSObject*> aReflector);

  template <class T>
  inline JSObject* Wrap(JSContext* aCx, T* aObject, JS::Handle<JSObject*> aGivenProto)
  {
    JS::Rooted<JSObject*> reflector(aCx);
    return Wrap(aCx, aObject, aObject, aGivenProto, &reflector) ? reflector.get() : nullptr;
  }

  // We declare this as an array so that retrieving a pointer to this
  // binding's property hooks only requires compile/link-time resolvable
  // address arithmetic.  Declaring it as a pointer instead would require
  // doing a run-time load to fetch a pointer to this binding's property
  // hooks.  And then structures which embedded a pointer to this structure
  // would require a run-time load for proper initialization, which would
  // then induce static constructors.  Lots of static constructors.
  extern const NativePropertyHooks sNativePropertyHooks[];

  void
  CreateInterfaceObjects(JSContext* aCx, JS::Handle<JSObject*> aGlobal, ProtoAndIfaceCache& aProtoAndIfaceCache, bool aDefineOnGlobal);

  JS::Handle<JSObject*>
  GetProtoObjectHandle(JSContext* aCx);

  JS::Handle<JSObject*>
  GetConstructorObjectHandle(JSContext* aCx, bool aDefineOnGlobal = true);

  JSObject*
  GetConstructorObject(JSContext* aCx);

} // namespace WebGL2RenderingContextBinding



namespace WebGLSamplerBinding {

  typedef mozilla::WebGLSampler NativeType;

  bool
  ConstructorEnabled(JSContext* aCx, JS::Handle<JSObject*> aObj);

  JSObject*
  DefineDOMInterface(JSContext* aCx, JS::Handle<JSObject*> aGlobal, JS::Handle<jsid> id, bool aDefineOnGlobal);

  const JSClass*
  GetJSClass();

  bool
  Wrap(JSContext* aCx, mozilla::WebGLSampler* aObject, nsWrapperCache* aCache, JS::Handle<JSObject*> aGivenProto, JS::MutableHandle<JSObject*> aReflector);

  template <class T>
  inline JSObject* Wrap(JSContext* aCx, T* aObject, JS::Handle<JSObject*> aGivenProto)
  {
    JS::Rooted<JSObject*> reflector(aCx);
    return Wrap(aCx, aObject, aObject, aGivenProto, &reflector) ? reflector.get() : nullptr;
  }

  // We declare this as an array so that retrieving a pointer to this
  // binding's property hooks only requires compile/link-time resolvable
  // address arithmetic.  Declaring it as a pointer instead would require
  // doing a run-time load to fetch a pointer to this binding's property
  // hooks.  And then structures which embedded a pointer to this structure
  // would require a run-time load for proper initialization, which would
  // then induce static constructors.  Lots of static constructors.
  extern const NativePropertyHooks sNativePropertyHooks[];

  void
  CreateInterfaceObjects(JSContext* aCx, JS::Handle<JSObject*> aGlobal, ProtoAndIfaceCache& aProtoAndIfaceCache, bool aDefineOnGlobal);

  JS::Handle<JSObject*>
  GetProtoObjectHandle(JSContext* aCx);

  JS::Handle<JSObject*>
  GetConstructorObjectHandle(JSContext* aCx, bool aDefineOnGlobal = true);

  JSObject*
  GetConstructorObject(JSContext* aCx);

} // namespace WebGLSamplerBinding



namespace WebGLSyncBinding {

  typedef mozilla::WebGLSync NativeType;

  bool
  ConstructorEnabled(JSContext* aCx, JS::Handle<JSObject*> aObj);

  JSObject*
  DefineDOMInterface(JSContext* aCx, JS::Handle<JSObject*> aGlobal, JS::Handle<jsid> id, bool aDefineOnGlobal);

  const JSClass*
  GetJSClass();

  bool
  Wrap(JSContext* aCx, mozilla::WebGLSync* aObject, nsWrapperCache* aCache, JS::Handle<JSObject*> aGivenProto, JS::MutableHandle<JSObject*> aReflector);

  template <class T>
  inline JSObject* Wrap(JSContext* aCx, T* aObject, JS::Handle<JSObject*> aGivenProto)
  {
    JS::Rooted<JSObject*> reflector(aCx);
    return Wrap(aCx, aObject, aObject, aGivenProto, &reflector) ? reflector.get() : nullptr;
  }

  // We declare this as an array so that retrieving a pointer to this
  // binding's property hooks only requires compile/link-time resolvable
  // address arithmetic.  Declaring it as a pointer instead would require
  // doing a run-time load to fetch a pointer to this binding's property
  // hooks.  And then structures which embedded a pointer to this structure
  // would require a run-time load for proper initialization, which would
  // then induce static constructors.  Lots of static constructors.
  extern const NativePropertyHooks sNativePropertyHooks[];

  void
  CreateInterfaceObjects(JSContext* aCx, JS::Handle<JSObject*> aGlobal, ProtoAndIfaceCache& aProtoAndIfaceCache, bool aDefineOnGlobal);

  JS::Handle<JSObject*>
  GetProtoObjectHandle(JSContext* aCx);

  JS::Handle<JSObject*>
  GetConstructorObjectHandle(JSContext* aCx, bool aDefineOnGlobal = true);

  JSObject*
  GetConstructorObject(JSContext* aCx);

} // namespace WebGLSyncBinding



namespace WebGLTransformFeedbackBinding {

  typedef mozilla::WebGLTransformFeedback NativeType;

  bool
  ConstructorEnabled(JSContext* aCx, JS::Handle<JSObject*> aObj);

  JSObject*
  DefineDOMInterface(JSContext* aCx, JS::Handle<JSObject*> aGlobal, JS::Handle<jsid> id, bool aDefineOnGlobal);

  const JSClass*
  GetJSClass();

  bool
  Wrap(JSContext* aCx, mozilla::WebGLTransformFeedback* aObject, nsWrapperCache* aCache, JS::Handle<JSObject*> aGivenProto, JS::MutableHandle<JSObject*> aReflector);

  template <class T>
  inline JSObject* Wrap(JSContext* aCx, T* aObject, JS::Handle<JSObject*> aGivenProto)
  {
    JS::Rooted<JSObject*> reflector(aCx);
    return Wrap(aCx, aObject, aObject, aGivenProto, &reflector) ? reflector.get() : nullptr;
  }

  // We declare this as an array so that retrieving a pointer to this
  // binding's property hooks only requires compile/link-time resolvable
  // address arithmetic.  Declaring it as a pointer instead would require
  // doing a run-time load to fetch a pointer to this binding's property
  // hooks.  And then structures which embedded a pointer to this structure
  // would require a run-time load for proper initialization, which would
  // then induce static constructors.  Lots of static constructors.
  extern const NativePropertyHooks sNativePropertyHooks[];

  void
  CreateInterfaceObjects(JSContext* aCx, JS::Handle<JSObject*> aGlobal, ProtoAndIfaceCache& aProtoAndIfaceCache, bool aDefineOnGlobal);

  JS::Handle<JSObject*>
  GetProtoObjectHandle(JSContext* aCx);

  JS::Handle<JSObject*>
  GetConstructorObjectHandle(JSContext* aCx, bool aDefineOnGlobal = true);

  JSObject*
  GetConstructorObject(JSContext* aCx);

} // namespace WebGLTransformFeedbackBinding



} // namespace dom
} // namespace mozilla

#endif // mozilla_dom_WebGL2RenderingContextBinding_h