// Copyright (c) The NodeRT Contributors
// All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the ""License""); you may
// not use this file except in compliance with the License. You may obtain a
// copy of the License at http://www.apache.org/licenses/LICENSE-2.0
//
// THIS CODE IS PROVIDED ON AN  *AS IS* BASIS, WITHOUT WARRANTIES OR CONDITIONS
// OF ANY KIND, EITHER EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION ANY
// IMPLIED WARRANTIES OR CONDITIONS OF TITLE, FITNESS FOR A PARTICULAR PURPOSE,
// MERCHANTABLITY OR NON-INFRINGEMENT.
//
// See the Apache Version 2.0 License for specific language governing permissions
// and limitations under the License.

// TODO: Verify that this is is still needed..
#define NTDDI_VERSION 0x06010000

#include <v8.h>
#include "nan.h"
#include <string>
#include <ppltasks.h>
#include "CollectionsConverter.h"
#include "CollectionsWrap.h"
#include "node-async.h"
#include "NodeRtUtils.h"
#include "OpaqueWrapper.h"
#include "WrapperBase.h"

#using <Windows.WinMD>

// this undefs fixes the issues of compiling Windows.Data.Json, Windows.Storag.FileProperties, and Windows.Stroage.Search
// Some of the node header files brings windows definitions with the same names as some of the WinRT methods
#undef DocumentProperties
#undef GetObject
#undef CreateEvent
#undef FindText
#undef SendMessage

const char* REGISTRATION_TOKEN_MAP_PROPERTY_NAME = "__registrationTokenMap__";

using v8::Array;
using v8::String;
using v8::Value;
using v8::Boolean;
using v8::Integer;
using v8::FunctionTemplate;
using v8::Object;
using v8::Local;
using v8::Function;
using v8::Date;
using v8::Number;
using v8::PropertyAttribute;
using v8::Primitive;
using Nan::HandleScope;
using Nan::Persistent;
using Nan::Undefined;
using Nan::True;
using Nan::False;
using Nan::Null;
using Nan::MaybeLocal;
using Nan::EscapableHandleScope;
using Nan::HandleScope;
using Nan::TryCatch;
using namespace concurrency;

namespace NodeRT { namespace Windows { namespace Devices { namespace Spi { namespace Provider { 
  v8::Local<v8::Value> WrapProviderSpiConnectionSettings(::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ wintRtInstance);
  ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ UnwrapProviderSpiConnectionSettings(Local<Value> value);
  
  v8::Local<v8::Value> WrapISpiControllerProvider(::Windows::Devices::Spi::Provider::ISpiControllerProvider^ wintRtInstance);
  ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ UnwrapISpiControllerProvider(Local<Value> value);
  
  v8::Local<v8::Value> WrapISpiProvider(::Windows::Devices::Spi::Provider::ISpiProvider^ wintRtInstance);
  ::Windows::Devices::Spi::Provider::ISpiProvider^ UnwrapISpiProvider(Local<Value> value);
  
  v8::Local<v8::Value> WrapISpiDeviceProvider(::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ wintRtInstance);
  ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ UnwrapISpiDeviceProvider(Local<Value> value);
  



  static void InitProviderSpiModeEnum(const Local<Object> exports) {
    HandleScope scope;

    Local<Object> enumObject = Nan::New<Object>();

    Nan::Set(exports, Nan::New<String>("ProviderSpiMode").ToLocalChecked(), enumObject);
    Nan::Set(enumObject, Nan::New<String>("mode0").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiMode::Mode0)));
    Nan::Set(enumObject, Nan::New<String>("mode1").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiMode::Mode1)));
    Nan::Set(enumObject, Nan::New<String>("mode2").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiMode::Mode2)));
    Nan::Set(enumObject, Nan::New<String>("mode3").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiMode::Mode3)));
  }

  static void InitProviderSpiSharingModeEnum(const Local<Object> exports) {
    HandleScope scope;

    Local<Object> enumObject = Nan::New<Object>();

    Nan::Set(exports, Nan::New<String>("ProviderSpiSharingMode").ToLocalChecked(), enumObject);
    Nan::Set(enumObject, Nan::New<String>("exclusive").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiSharingMode::Exclusive)));
    Nan::Set(enumObject, Nan::New<String>("shared").ToLocalChecked(), Nan::New<Integer>(static_cast<int>(::Windows::Devices::Spi::Provider::ProviderSpiSharingMode::Shared)));
  }



  class ProviderSpiConnectionSettings : public WrapperBase {
    public:
      
      static void Init(const Local<Object> exports) {
        HandleScope scope;

        Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(New);
        s_constructorTemplate.Reset(localRef);
        localRef->SetClassName(Nan::New<String>("ProviderSpiConnectionSettings").ToLocalChecked());
        localRef->InstanceTemplate()->SetInternalFieldCount(1);





          
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("sharingMode").ToLocalChecked(), SharingModeGetter, SharingModeSetter);
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("mode").ToLocalChecked(), ModeGetter, ModeSetter);
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("dataBitLength").ToLocalChecked(), DataBitLengthGetter, DataBitLengthSetter);
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("clockFrequency").ToLocalChecked(), ClockFrequencyGetter, ClockFrequencySetter);
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("chipSelectLine").ToLocalChecked(), ChipSelectLineGetter, ChipSelectLineSetter);

        Local<Object> constructor = Nan::To<Object>(Nan::GetFunction(localRef).ToLocalChecked()).ToLocalChecked();
        Nan::SetMethod(constructor, "castFrom", CastFrom);



        Nan::Set(exports, Nan::New<String>("ProviderSpiConnectionSettings").ToLocalChecked(), constructor);
      }

      virtual ::Platform::Object^ GetObjectInstance() const override {
        return _instance;
      }

    private:

      ProviderSpiConnectionSettings(::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ instance) {
        _instance = instance;
      }

      
    static void New(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(s_constructorTemplate);

      // in case the constructor was called without the new operator
      if (!localRef->HasInstance(info.This())) {
        if (info.Length() > 0) {
          std::unique_ptr<Local<Value> []> constructorArgs(new Local<Value>[info.Length()]);

          Local<Value> *argsPtr = constructorArgs.get();
          for (int i = 0; i < info.Length(); i++) {
            argsPtr[i] = info[i];
          }

          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), constructorArgs.get());
          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        } else {
          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), nullptr);

          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        }
      }

      ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ winRtInstance;


      if (info.Length() == 1 && OpaqueWrapper::IsOpaqueWrapper(info[0]) &&
        NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info[0])) {
        try {
          winRtInstance = (::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^) NodeRT::Utils::GetObjectInstance(info[0]);
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
      else if (info.Length() == 1
        && info[0]->IsInt32())
      {
        try {
          int arg0 = static_cast<int>(Nan::To<int32_t>(info[0]).FromMaybe(0));
          
          winRtInstance = ref new ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings(arg0);
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no suitable constructor found")));
        return;
      }

      NodeRT::Utils::SetHiddenValue(info.This(), Nan::New<String>("__winRtInstance__").ToLocalChecked(), True());

      ProviderSpiConnectionSettings *wrapperInstance = new ProviderSpiConnectionSettings(winRtInstance);
      wrapperInstance->Wrap(info.This());

      info.GetReturnValue().Set(info.This());
    }


      
    static void CastFrom(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      if (info.Length() < 1 || !NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info[0])) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no object provided, or given object could not be casted to requested type")));
        return;
      }

      ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ winRtInstance;
      try {
        winRtInstance = (::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^) NodeRT::Utils::GetObjectInstance(info[0]);
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }

      info.GetReturnValue().Set(WrapProviderSpiConnectionSettings(winRtInstance));
    }





    static void SharingModeGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try  {
        ::Windows::Devices::Spi::Provider::ProviderSpiSharingMode result = wrapper->_instance->SharingMode;
        info.GetReturnValue().Set(Nan::New<Integer>(static_cast<int>(result)));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void SharingModeSetter(Local<String> property, Local<Value> value, const Nan::PropertyCallbackInfo<void> &info) {
      HandleScope scope;

      if (!value->IsInt32()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Value to set is of unexpected type")));
        return;
      }

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try {

        ::Windows::Devices::Spi::Provider::ProviderSpiSharingMode winRtValue = static_cast<::Windows::Devices::Spi::Provider::ProviderSpiSharingMode>(Nan::To<int32_t>(value).FromMaybe(0));

        wrapper->_instance->SharingMode = winRtValue;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
      }
    }
      
    static void ModeGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try  {
        ::Windows::Devices::Spi::Provider::ProviderSpiMode result = wrapper->_instance->Mode;
        info.GetReturnValue().Set(Nan::New<Integer>(static_cast<int>(result)));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void ModeSetter(Local<String> property, Local<Value> value, const Nan::PropertyCallbackInfo<void> &info) {
      HandleScope scope;

      if (!value->IsInt32()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Value to set is of unexpected type")));
        return;
      }

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try {

        ::Windows::Devices::Spi::Provider::ProviderSpiMode winRtValue = static_cast<::Windows::Devices::Spi::Provider::ProviderSpiMode>(Nan::To<int32_t>(value).FromMaybe(0));

        wrapper->_instance->Mode = winRtValue;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
      }
    }
      
    static void DataBitLengthGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try  {
        int result = wrapper->_instance->DataBitLength;
        info.GetReturnValue().Set(Nan::New<Integer>(result));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void DataBitLengthSetter(Local<String> property, Local<Value> value, const Nan::PropertyCallbackInfo<void> &info) {
      HandleScope scope;

      if (!value->IsInt32()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Value to set is of unexpected type")));
        return;
      }

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try {

        int winRtValue = static_cast<int>(Nan::To<int32_t>(value).FromMaybe(0));

        wrapper->_instance->DataBitLength = winRtValue;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
      }
    }
      
    static void ClockFrequencyGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try  {
        int result = wrapper->_instance->ClockFrequency;
        info.GetReturnValue().Set(Nan::New<Integer>(result));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void ClockFrequencySetter(Local<String> property, Local<Value> value, const Nan::PropertyCallbackInfo<void> &info) {
      HandleScope scope;

      if (!value->IsInt32()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Value to set is of unexpected type")));
        return;
      }

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try {

        int winRtValue = static_cast<int>(Nan::To<int32_t>(value).FromMaybe(0));

        wrapper->_instance->ClockFrequency = winRtValue;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
      }
    }
      
    static void ChipSelectLineGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try  {
        int result = wrapper->_instance->ChipSelectLine;
        info.GetReturnValue().Set(Nan::New<Integer>(result));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void ChipSelectLineSetter(Local<String> property, Local<Value> value, const Nan::PropertyCallbackInfo<void> &info) {
      HandleScope scope;

      if (!value->IsInt32()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Value to set is of unexpected type")));
        return;
      }

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info.This())) {
        return;
      }

      ProviderSpiConnectionSettings *wrapper = ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(info.This());

      try {

        int winRtValue = static_cast<int>(Nan::To<int32_t>(value).FromMaybe(0));

        wrapper->_instance->ChipSelectLine = winRtValue;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
      }
    }
      


    private:
      ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ _instance;
      static Persistent<FunctionTemplate> s_constructorTemplate;

      friend v8::Local<v8::Value> WrapProviderSpiConnectionSettings(::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ wintRtInstance);
      friend ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ UnwrapProviderSpiConnectionSettings(Local<Value> value);
  };

  Persistent<FunctionTemplate> ProviderSpiConnectionSettings::s_constructorTemplate;

  v8::Local<v8::Value> WrapProviderSpiConnectionSettings(::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ winRtInstance) {
    EscapableHandleScope scope;

    if (winRtInstance == nullptr) {
      return scope.Escape(Undefined());
    }

    Local<Value> opaqueWrapper = CreateOpaqueWrapper(winRtInstance);
    Local<Value> args[] = {opaqueWrapper};
    Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(ProviderSpiConnectionSettings::s_constructorTemplate);
    return scope.Escape(Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(),_countof(args), args).ToLocalChecked());
  }

  ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ UnwrapProviderSpiConnectionSettings(Local<Value> value) {
     return ProviderSpiConnectionSettings::Unwrap<ProviderSpiConnectionSettings>(Nan::To<Object>(value).ToLocalChecked())->_instance;
  }

  void InitProviderSpiConnectionSettings(Local<Object> exports) {
    ProviderSpiConnectionSettings::Init(exports);
  }

  class ISpiControllerProvider : public WrapperBase {
    public:
      
      static void Init(const Local<Object> exports) {
        HandleScope scope;

        Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(New);
        s_constructorTemplate.Reset(localRef);
        localRef->SetClassName(Nan::New<String>("ISpiControllerProvider").ToLocalChecked());
        localRef->InstanceTemplate()->SetInternalFieldCount(1);


          
            Nan::SetPrototypeMethod(localRef, "getDeviceProvider", GetDeviceProvider);
          




        Local<Object> constructor = Nan::To<Object>(Nan::GetFunction(localRef).ToLocalChecked()).ToLocalChecked();
        Nan::SetMethod(constructor, "castFrom", CastFrom);



        Nan::Set(exports, Nan::New<String>("ISpiControllerProvider").ToLocalChecked(), constructor);
      }

      virtual ::Platform::Object^ GetObjectInstance() const override {
        return _instance;
      }

    private:

      ISpiControllerProvider(::Windows::Devices::Spi::Provider::ISpiControllerProvider^ instance) {
        _instance = instance;
      }

      
    static void New(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(s_constructorTemplate);

      // in case the constructor was called without the new operator
      if (!localRef->HasInstance(info.This())) {
        if (info.Length() > 0) {
          std::unique_ptr<Local<Value> []> constructorArgs(new Local<Value>[info.Length()]);

          Local<Value> *argsPtr = constructorArgs.get();
          for (int i = 0; i < info.Length(); i++) {
            argsPtr[i] = info[i];
          }

          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), constructorArgs.get());
          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        } else {
          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), nullptr);

          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        }
      }

      ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ winRtInstance;


      if (info.Length() == 1 && OpaqueWrapper::IsOpaqueWrapper(info[0]) &&
        NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>(info[0])) {
        try {
          winRtInstance = (::Windows::Devices::Spi::Provider::ISpiControllerProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no suitable constructor found")));
        return;
      }

      NodeRT::Utils::SetHiddenValue(info.This(), Nan::New<String>("__winRtInstance__").ToLocalChecked(), True());

      ISpiControllerProvider *wrapperInstance = new ISpiControllerProvider(winRtInstance);
      wrapperInstance->Wrap(info.This());

      info.GetReturnValue().Set(info.This());
    }


      
    static void CastFrom(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      if (info.Length() < 1 || !NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>(info[0])) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no object provided, or given object could not be casted to requested type")));
        return;
      }

      ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ winRtInstance;
      try {
        winRtInstance = (::Windows::Devices::Spi::Provider::ISpiControllerProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }

      info.GetReturnValue().Set(WrapISpiControllerProvider(winRtInstance));
    }


    static void GetDeviceProvider(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>(info.This())) {
        return;
      }

      ISpiControllerProvider *wrapper = ISpiControllerProvider::Unwrap<ISpiControllerProvider>(info.This());

      if (info.Length() == 1
        && NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^>(info[0]))
      {
        try
        {
          ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ arg0 = UnwrapProviderSpiConnectionSettings(info[0]);
          
          ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ result;
          result = wrapper->_instance->GetDeviceProvider(arg0);
          info.GetReturnValue().Set(WrapISpiDeviceProvider(result));
          return;
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Bad arguments: no suitable overload found")));
        return;
      }
    }





    private:
      ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ _instance;
      static Persistent<FunctionTemplate> s_constructorTemplate;

      friend v8::Local<v8::Value> WrapISpiControllerProvider(::Windows::Devices::Spi::Provider::ISpiControllerProvider^ wintRtInstance);
      friend ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ UnwrapISpiControllerProvider(Local<Value> value);
  };

  Persistent<FunctionTemplate> ISpiControllerProvider::s_constructorTemplate;

  v8::Local<v8::Value> WrapISpiControllerProvider(::Windows::Devices::Spi::Provider::ISpiControllerProvider^ winRtInstance) {
    EscapableHandleScope scope;

    if (winRtInstance == nullptr) {
      return scope.Escape(Undefined());
    }

    Local<Value> opaqueWrapper = CreateOpaqueWrapper(winRtInstance);
    Local<Value> args[] = {opaqueWrapper};
    Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(ISpiControllerProvider::s_constructorTemplate);
    return scope.Escape(Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(),_countof(args), args).ToLocalChecked());
  }

  ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ UnwrapISpiControllerProvider(Local<Value> value) {
     return ISpiControllerProvider::Unwrap<ISpiControllerProvider>(Nan::To<Object>(value).ToLocalChecked())->_instance;
  }

  void InitISpiControllerProvider(Local<Object> exports) {
    ISpiControllerProvider::Init(exports);
  }

  class ISpiProvider : public WrapperBase {
    public:
      
      static void Init(const Local<Object> exports) {
        HandleScope scope;

        Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(New);
        s_constructorTemplate.Reset(localRef);
        localRef->SetClassName(Nan::New<String>("ISpiProvider").ToLocalChecked());
        localRef->InstanceTemplate()->SetInternalFieldCount(1);

        Local<Function> func;
        Local<FunctionTemplate> funcTemplate;


          
            Nan::SetPrototypeMethod(localRef, "getControllersAsync", GetControllersAsync);
          



        Local<Object> constructor = Nan::To<Object>(Nan::GetFunction(localRef).ToLocalChecked()).ToLocalChecked();
        Nan::SetMethod(constructor, "castFrom", CastFrom);



        Nan::Set(exports, Nan::New<String>("ISpiProvider").ToLocalChecked(), constructor);
      }

      virtual ::Platform::Object^ GetObjectInstance() const override {
        return _instance;
      }

    private:

      ISpiProvider(::Windows::Devices::Spi::Provider::ISpiProvider^ instance) {
        _instance = instance;
      }

      
    static void New(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(s_constructorTemplate);

      // in case the constructor was called without the new operator
      if (!localRef->HasInstance(info.This())) {
        if (info.Length() > 0) {
          std::unique_ptr<Local<Value> []> constructorArgs(new Local<Value>[info.Length()]);

          Local<Value> *argsPtr = constructorArgs.get();
          for (int i = 0; i < info.Length(); i++) {
            argsPtr[i] = info[i];
          }

          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), constructorArgs.get());
          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        } else {
          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), nullptr);

          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        }
      }

      ::Windows::Devices::Spi::Provider::ISpiProvider^ winRtInstance;


      if (info.Length() == 1 && OpaqueWrapper::IsOpaqueWrapper(info[0]) &&
        NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiProvider^>(info[0])) {
        try {
          winRtInstance = (::Windows::Devices::Spi::Provider::ISpiProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no suitable constructor found")));
        return;
      }

      NodeRT::Utils::SetHiddenValue(info.This(), Nan::New<String>("__winRtInstance__").ToLocalChecked(), True());

      ISpiProvider *wrapperInstance = new ISpiProvider(winRtInstance);
      wrapperInstance->Wrap(info.This());

      info.GetReturnValue().Set(info.This());
    }


      
    static void CastFrom(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      if (info.Length() < 1 || !NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiProvider^>(info[0])) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no object provided, or given object could not be casted to requested type")));
        return;
      }

      ::Windows::Devices::Spi::Provider::ISpiProvider^ winRtInstance;
      try {
        winRtInstance = (::Windows::Devices::Spi::Provider::ISpiProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }

      info.GetReturnValue().Set(WrapISpiProvider(winRtInstance));
    }

    static void GetControllersAsync(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiProvider^>(info.This())) {
        return;
      }

      if (info.Length() == 0 || !info[info.Length() -1]->IsFunction()) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Bad arguments: No callback was given")));
        return;
      }

      ISpiProvider *wrapper = ISpiProvider::Unwrap<ISpiProvider>(info.This());

      ::Windows::Foundation::IAsyncOperation<::Windows::Foundation::Collections::IVectorView<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>^>^ op;


      if (info.Length() == 1)
      {
        try
        {
          op = wrapper->_instance->GetControllersAsync();
        }
        catch (Platform::Exception ^exception)
        {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Bad arguments: no suitable overload found")));
        return;
      }

      auto opTask = create_task(op);
      uv_async_t* asyncToken = NodeUtils::Async::GetAsyncToken(info[info.Length() -1].As<Function>());

      opTask.then( [asyncToken] (task<::Windows::Foundation::Collections::IVectorView<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>^> t) {
        try {
          auto result = t.get();
          NodeUtils::Async::RunCallbackOnMain(asyncToken, [result](NodeUtils::InvokeCallbackDelegate invokeCallback) {


            Local<Value> error;
            Local<Value> arg1;
            {
              TryCatch tryCatch;
              arg1 = NodeRT::Collections::VectorViewWrapper<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>::CreateVectorViewWrapper(result, 
            [](::Windows::Devices::Spi::Provider::ISpiControllerProvider^ val) -> Local<Value> {
              return WrapISpiControllerProvider(val);
            },
            [](Local<Value> value) -> bool {
              return NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiControllerProvider^>(value);
            },
            [](Local<Value> value) -> ::Windows::Devices::Spi::Provider::ISpiControllerProvider^ {
              return UnwrapISpiControllerProvider(value);
            }
          );
              if (tryCatch.HasCaught())
              {
                error = Nan::To<Object>(tryCatch.Exception()).ToLocalChecked();
              }
              else
              {
                error = Undefined();
              }
              if (arg1.IsEmpty()) arg1 = Undefined();
            }
            Local<Value> args[] = {error, arg1};


            invokeCallback(_countof(args), args);
          });
        } catch (Platform::Exception^ exception) {
          NodeUtils::Async::RunCallbackOnMain(asyncToken, [exception](NodeUtils::InvokeCallbackDelegate invokeCallback) {
            Local<Value> error = NodeRT::Utils::WinRtExceptionToJsError(exception);

            Local<Value> args[] = {error};
            invokeCallback(_countof(args), args);
          });
        }
      });
    }






    private:
      ::Windows::Devices::Spi::Provider::ISpiProvider^ _instance;
      static Persistent<FunctionTemplate> s_constructorTemplate;

      friend v8::Local<v8::Value> WrapISpiProvider(::Windows::Devices::Spi::Provider::ISpiProvider^ wintRtInstance);
      friend ::Windows::Devices::Spi::Provider::ISpiProvider^ UnwrapISpiProvider(Local<Value> value);
  };

  Persistent<FunctionTemplate> ISpiProvider::s_constructorTemplate;

  v8::Local<v8::Value> WrapISpiProvider(::Windows::Devices::Spi::Provider::ISpiProvider^ winRtInstance) {
    EscapableHandleScope scope;

    if (winRtInstance == nullptr) {
      return scope.Escape(Undefined());
    }

    Local<Value> opaqueWrapper = CreateOpaqueWrapper(winRtInstance);
    Local<Value> args[] = {opaqueWrapper};
    Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(ISpiProvider::s_constructorTemplate);
    return scope.Escape(Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(),_countof(args), args).ToLocalChecked());
  }

  ::Windows::Devices::Spi::Provider::ISpiProvider^ UnwrapISpiProvider(Local<Value> value) {
     return ISpiProvider::Unwrap<ISpiProvider>(Nan::To<Object>(value).ToLocalChecked())->_instance;
  }

  void InitISpiProvider(Local<Object> exports) {
    ISpiProvider::Init(exports);
  }

  class ISpiDeviceProvider : public WrapperBase {
    public:
      
      static void Init(const Local<Object> exports) {
        HandleScope scope;

        Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(New);
        s_constructorTemplate.Reset(localRef);
        localRef->SetClassName(Nan::New<String>("ISpiDeviceProvider").ToLocalChecked());
        localRef->InstanceTemplate()->SetInternalFieldCount(1);


          
            Nan::SetPrototypeMethod(localRef, "write", Write);
            Nan::SetPrototypeMethod(localRef, "read", Read);
            Nan::SetPrototypeMethod(localRef, "transferSequential", TransferSequential);
            Nan::SetPrototypeMethod(localRef, "transferFullDuplex", TransferFullDuplex);
          



          
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("connectionSettings").ToLocalChecked(), ConnectionSettingsGetter);
            Nan::SetAccessor(localRef->PrototypeTemplate(), Nan::New<String>("deviceId").ToLocalChecked(), DeviceIdGetter);

        Local<Object> constructor = Nan::To<Object>(Nan::GetFunction(localRef).ToLocalChecked()).ToLocalChecked();
        Nan::SetMethod(constructor, "castFrom", CastFrom);



        Nan::Set(exports, Nan::New<String>("ISpiDeviceProvider").ToLocalChecked(), constructor);
      }

      virtual ::Platform::Object^ GetObjectInstance() const override {
        return _instance;
      }

    private:

      ISpiDeviceProvider(::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ instance) {
        _instance = instance;
      }

      
    static void New(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(s_constructorTemplate);

      // in case the constructor was called without the new operator
      if (!localRef->HasInstance(info.This())) {
        if (info.Length() > 0) {
          std::unique_ptr<Local<Value> []> constructorArgs(new Local<Value>[info.Length()]);

          Local<Value> *argsPtr = constructorArgs.get();
          for (int i = 0; i < info.Length(); i++) {
            argsPtr[i] = info[i];
          }

          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), constructorArgs.get());
          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        } else {
          MaybeLocal<Object> res = Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(), info.Length(), nullptr);

          if (res.IsEmpty()) {
            return;
          }

          info.GetReturnValue().Set(res.ToLocalChecked());
          return;
        }
      }

      ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ winRtInstance;


      if (info.Length() == 1 && OpaqueWrapper::IsOpaqueWrapper(info[0]) &&
        NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiDeviceProvider^>(info[0])) {
        try {
          winRtInstance = (::Windows::Devices::Spi::Provider::ISpiDeviceProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no suitable constructor found")));
        return;
      }

      NodeRT::Utils::SetHiddenValue(info.This(), Nan::New<String>("__winRtInstance__").ToLocalChecked(), True());

      ISpiDeviceProvider *wrapperInstance = new ISpiDeviceProvider(winRtInstance);
      wrapperInstance->Wrap(info.This());

      info.GetReturnValue().Set(info.This());
    }


      
    static void CastFrom(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      if (info.Length() < 1 || !NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiDeviceProvider^>(info[0])) {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Invalid arguments, no object provided, or given object could not be casted to requested type")));
        return;
      }

      ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ winRtInstance;
      try {
        winRtInstance = (::Windows::Devices::Spi::Provider::ISpiDeviceProvider^) NodeRT::Utils::GetObjectInstance(info[0]);
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }

      info.GetReturnValue().Set(WrapISpiDeviceProvider(winRtInstance));
    }


    static void Write(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiDeviceProvider^>(info.This())) {
        return;
      }

      ISpiDeviceProvider *wrapper = ISpiDeviceProvider::Unwrap<ISpiDeviceProvider>(info.This());

      if (info.Length() == 1
        && (NodeRT::Utils::IsWinRtWrapperOf<::Platform::Array<unsigned char>^>(info[0]) || info[0]->IsArray()))
      {
        try
        {
          ::Platform::Array<unsigned char>^ arg0 = 
            [] (v8::Local<v8::Value> value) -> ::Platform::Array<unsigned char>^
            {
              if (value->IsArray())
              {
                return NodeRT::Collections::JsArrayToWinrtArray<unsigned char>(value.As<Array>(), 
                 [](Local<Value> value) -> bool {
                   return value->IsInt32();
                 },
                 [](Local<Value> value) -> unsigned char {
                   return static_cast<unsigned char>(Nan::To<int32_t>(value).FromMaybe(0));
                 }
                );
              }
              else
              {
                return dynamic_cast<::Platform::Array<unsigned char>^>(NodeRT::Utils::GetObjectInstance(value));
              }
            } (info[0]);
          
          wrapper->_instance->Write(arg0);
          return;
        } catch (Platform::Exception ^exception) {
          NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
          return;
        }
      }
 else {
        Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Bad arguments: no suitable overload found")));
        return;
      }
    }
    static void Read(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Not implemented")));
    }
    static void TransferSequential(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Not implemented")));
    }
    static void TransferFullDuplex(Nan::NAN_METHOD_ARGS_TYPE info) {
      HandleScope scope;
      Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"Not implemented")));
    }



    static void ConnectionSettingsGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiDeviceProvider^>(info.This())) {
        return;
      }

      ISpiDeviceProvider *wrapper = ISpiDeviceProvider::Unwrap<ISpiDeviceProvider>(info.This());

      try  {
        ::Windows::Devices::Spi::Provider::ProviderSpiConnectionSettings^ result = wrapper->_instance->ConnectionSettings;
        info.GetReturnValue().Set(WrapProviderSpiConnectionSettings(result));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      
    static void DeviceIdGetter(Local<String> property, const Nan::PropertyCallbackInfo<v8::Value> &info) {
      HandleScope scope;

      if (!NodeRT::Utils::IsWinRtWrapperOf<::Windows::Devices::Spi::Provider::ISpiDeviceProvider^>(info.This())) {
        return;
      }

      ISpiDeviceProvider *wrapper = ISpiDeviceProvider::Unwrap<ISpiDeviceProvider>(info.This());

      try  {
        Platform::String^ result = wrapper->_instance->DeviceId;
        info.GetReturnValue().Set(NodeRT::Utils::NewString(result->Data()));
        return;
      } catch (Platform::Exception ^exception) {
        NodeRT::Utils::ThrowWinRtExceptionInJs(exception);
        return;
      }
    }
      


    private:
      ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ _instance;
      static Persistent<FunctionTemplate> s_constructorTemplate;

      friend v8::Local<v8::Value> WrapISpiDeviceProvider(::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ wintRtInstance);
      friend ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ UnwrapISpiDeviceProvider(Local<Value> value);
  };

  Persistent<FunctionTemplate> ISpiDeviceProvider::s_constructorTemplate;

  v8::Local<v8::Value> WrapISpiDeviceProvider(::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ winRtInstance) {
    EscapableHandleScope scope;

    if (winRtInstance == nullptr) {
      return scope.Escape(Undefined());
    }

    Local<Value> opaqueWrapper = CreateOpaqueWrapper(winRtInstance);
    Local<Value> args[] = {opaqueWrapper};
    Local<FunctionTemplate> localRef = Nan::New<FunctionTemplate>(ISpiDeviceProvider::s_constructorTemplate);
    return scope.Escape(Nan::NewInstance(Nan::GetFunction(localRef).ToLocalChecked(),_countof(args), args).ToLocalChecked());
  }

  ::Windows::Devices::Spi::Provider::ISpiDeviceProvider^ UnwrapISpiDeviceProvider(Local<Value> value) {
     return ISpiDeviceProvider::Unwrap<ISpiDeviceProvider>(Nan::To<Object>(value).ToLocalChecked())->_instance;
  }

  void InitISpiDeviceProvider(Local<Object> exports) {
    ISpiDeviceProvider::Init(exports);
  }


} } } } } 

NAN_MODULE_INIT(init) {
  // We ignore failures for now since it probably means that
  // the initialization already happened for STA, and that's cool

  CoInitializeEx(nullptr, COINIT_MULTITHREADED);

  /*
  if (FAILED(CoInitializeEx(nullptr, COINIT_MULTITHREADED))) {
    Nan::ThrowError(Nan::Error(NodeRT::Utils::NewString(L"error in CoInitializeEx()")));
    return;
  }
  */

      NodeRT::Windows::Devices::Spi::Provider::InitProviderSpiModeEnum(target);
      NodeRT::Windows::Devices::Spi::Provider::InitProviderSpiSharingModeEnum(target);
      NodeRT::Windows::Devices::Spi::Provider::InitProviderSpiConnectionSettings(target);
      NodeRT::Windows::Devices::Spi::Provider::InitISpiControllerProvider(target);
      NodeRT::Windows::Devices::Spi::Provider::InitISpiProvider(target);
      NodeRT::Windows::Devices::Spi::Provider::InitISpiDeviceProvider(target);


  NodeRT::Utils::RegisterNameSpace("Windows.Devices.Spi.Provider", target);
}



NODE_MODULE(binding, init)
