// This file was GENERATED by command: // pump.py function_template.h.pump // DO NOT EDIT BY HAND!!! #ifndef GIN_FUNCTION_TEMPLATE_H_ #define GIN_FUNCTION_TEMPLATE_H_ // Copyright 2013 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "base/callback.h" #include "base/logging.h" #include "gin/arguments.h" #include "gin/converter.h" #include "gin/public/gin_embedders.h" #include "gin/public/wrapper_info.h" #include "gin/wrappable.h" #include "v8/include/v8.h" namespace gin { class PerIsolateData; namespace internal { template struct RemoveConstRef { typedef T Type; }; template struct RemoveConstRef { typedef T Type; }; // CallbackHolder and CallbackHolderBase are used to pass a base::Callback from // CreateFunctionTemplate through v8 (via v8::FunctionTemplate) to // DispatchToCallback, where it is invoked. // // v8::FunctionTemplate only supports passing void* as data so how do we know // when to delete the base::Callback? That's where CallbackHolderBase comes in. // It inherits from Wrappable, which delete itself when both (a) the refcount // via base::RefCounted has dropped to zero, and (b) there are no more // JavaScript references in V8. class CallbackHolderBase : public Wrappable { public: virtual WrapperInfo* GetWrapperInfo() OVERRIDE; static WrapperInfo kWrapperInfo; protected: virtual ~CallbackHolderBase() {} }; template class CallbackHolder : public CallbackHolderBase { public: CallbackHolder(const base::Callback& callback) : callback(callback) {} base::Callback callback; private: virtual ~CallbackHolder() {} }; // This set of templates invokes a base::Callback, converts the return type to a // JavaScript value, and returns that value to script via the provided // gin::Arguments object. // // In C++, you can declare the function foo(void), but you can't pass a void // expression to foo. As a result, we must specialize the case of Callbacks that // have the void return type. template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2, const P3& a3, const P4& a4) { args->Return(callback.Run(a1, a2, a3, a4)); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2, const P3& a3, const P4& a4) { callback.Run(a1, a2, a3, a4); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2, const P3& a3) { args->Return(callback.Run(a1, a2, a3)); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2, const P3& a3) { callback.Run(a1, a2, a3); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2) { args->Return(callback.Run(a1, a2)); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1, const P2& a2) { callback.Run(a1, a2); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1) { args->Return(callback.Run(a1)); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback, const P1& a1) { callback.Run(a1); } }; template struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback) { args->Return(callback.Run()); } }; template<> struct Invoker { inline static void Go( Arguments* args, const base::Callback& callback) { callback.Run(); } }; // DispatchToCallback converts all the JavaScript arguments to C++ types and // invokes the base::Callback. template static void DispatchToCallback( const v8::FunctionCallbackInfo& info) { Arguments args(info); CallbackHolderBase* holder_base = NULL; CHECK(args.GetData(&holder_base)); typedef CallbackHolder HolderT; HolderT* holder = static_cast(holder_base); Invoker::Go(&args, holder->callback); } template static void DispatchToCallback( const v8::FunctionCallbackInfo& info) { Arguments args(info); CallbackHolderBase* holder_base = NULL; CHECK(args.GetData(&holder_base)); typedef CallbackHolder HolderT; HolderT* holder = static_cast(holder_base); typename RemoveConstRef::Type a1; if (!args.GetNext(&a1)) { args.ThrowError(); return; } Invoker::Go(&args, holder->callback, a1); } template static void DispatchToCallback( const v8::FunctionCallbackInfo& info) { Arguments args(info); CallbackHolderBase* holder_base = NULL; CHECK(args.GetData(&holder_base)); typedef CallbackHolder HolderT; HolderT* holder = static_cast(holder_base); typename RemoveConstRef::Type a1; typename RemoveConstRef::Type a2; if (!args.GetNext(&a1) || !args.GetNext(&a2)) { args.ThrowError(); return; } Invoker::Go(&args, holder->callback, a1, a2); } template static void DispatchToCallback( const v8::FunctionCallbackInfo& info) { Arguments args(info); CallbackHolderBase* holder_base = NULL; CHECK(args.GetData(&holder_base)); typedef CallbackHolder HolderT; HolderT* holder = static_cast(holder_base); typename RemoveConstRef::Type a1; typename RemoveConstRef::Type a2; typename RemoveConstRef::Type a3; if (!args.GetNext(&a1) || !args.GetNext(&a2) || !args.GetNext(&a3)) { args.ThrowError(); return; } Invoker::Go(&args, holder->callback, a1, a2, a3); } template static void DispatchToCallback( const v8::FunctionCallbackInfo& info) { Arguments args(info); CallbackHolderBase* holder_base = NULL; CHECK(args.GetData(&holder_base)); typedef CallbackHolder HolderT; HolderT* holder = static_cast(holder_base); typename RemoveConstRef::Type a1; typename RemoveConstRef::Type a2; typename RemoveConstRef::Type a3; typename RemoveConstRef::Type a4; if (!args.GetNext(&a1) || !args.GetNext(&a2) || !args.GetNext(&a3) || !args.GetNext(&a4)) { args.ThrowError(); return; } Invoker::Go(&args, holder->callback, a1, a2, a3, a4); } } // namespace internal // This should be called once per-isolate to initialize the function template // system. void InitFunctionTemplates(PerIsolateData* isolate_data); // This has to be outside the internal namespace because template // specializations must be declared in the same namespace as the original // template. template<> struct Converter : public WrappableConverter {}; // Creates a v8::FunctionTemplate that will run the provided base::Callback each // time it is called. JavaScript arguments and return values are converted via // gin::Converter. template v8::Local CreateFunctionTemplate( v8::Isolate* isolate, const base::Callback callback) { typedef internal::CallbackHolder HolderT; scoped_refptr holder(new HolderT(callback)); return v8::FunctionTemplate::New( &internal::DispatchToCallback, ConvertToV8(isolate, holder.get())); } template v8::Local CreateFunctionTemplate( v8::Isolate* isolate, const base::Callback callback) { typedef internal::CallbackHolder HolderT; scoped_refptr holder(new HolderT(callback)); return v8::FunctionTemplate::New( &internal::DispatchToCallback, ConvertToV8(isolate, holder.get())); } template v8::Local CreateFunctionTemplate( v8::Isolate* isolate, const base::Callback callback) { typedef internal::CallbackHolder HolderT; scoped_refptr holder(new HolderT(callback)); return v8::FunctionTemplate::New( &internal::DispatchToCallback, ConvertToV8(isolate, holder.get())); } template v8::Local CreateFunctionTemplate( v8::Isolate* isolate, const base::Callback callback) { typedef internal::CallbackHolder HolderT; scoped_refptr holder(new HolderT(callback)); return v8::FunctionTemplate::New( &internal::DispatchToCallback, ConvertToV8(isolate, holder.get())); } template v8::Local CreateFunctionTemplate( v8::Isolate* isolate, const base::Callback callback) { typedef internal::CallbackHolder HolderT; scoped_refptr holder(new HolderT(callback)); return v8::FunctionTemplate::New( &internal::DispatchToCallback, ConvertToV8(isolate, holder.get())); } } // namespace gin #endif // GIN_FUNCTION_TEMPLATE_H_