///
/// JHybridTensorFactorySpec.cpp
/// This file was generated by nitrogen. DO NOT MODIFY THIS FILE.
/// https://github.com/mrousavy/nitro
/// Copyright © Marc Rousavy @ Margelo
///

#include "JHybridTensorFactorySpec.hpp"

// Forward declaration of `HybridFaceSpec` to properly resolve imports.
namespace margelo::nitro::visioncamerafacedetection { class HybridFaceSpec; }
// Forward declaration of `TensorFaceOptions` to properly resolve imports.
namespace margelo::nitro::visioncamerafacedetection { struct TensorFaceOptions; }
// Forward declaration of `CameraPosition` to properly resolve imports.
namespace margelo::nitro::visioncamerafacedetection { enum class CameraPosition; }
// Forward declaration of `PerformanceMode` to properly resolve imports.
namespace margelo::nitro::visioncamerafacedetection { enum class PerformanceMode; }

#include <string>
#include <NitroModules/Null.hpp>
#include <memory>
#include "HybridFaceSpec.hpp"
#include <variant>
#include "JVariant_NullType_HybridFaceSpec.hpp"
#include <NitroModules/JNull.hpp>
#include "JHybridFaceSpec.hpp"
#include "TensorFaceOptions.hpp"
#include "JTensorFaceOptions.hpp"
#include "CameraPosition.hpp"
#include <optional>
#include "JCameraPosition.hpp"
#include "PerformanceMode.hpp"
#include "JPerformanceMode.hpp"

namespace margelo::nitro::visioncamerafacedetection {

  std::shared_ptr<JHybridTensorFactorySpec> JHybridTensorFactorySpec::JavaPart::getJHybridTensorFactorySpec() {
    auto hybridObject = JHybridObject::JavaPart::getJHybridObject();
    auto castHybridObject = std::dynamic_pointer_cast<JHybridTensorFactorySpec>(hybridObject);
    if (castHybridObject == nullptr) [[unlikely]] {
      throw std::runtime_error("Failed to downcast JHybridObject to JHybridTensorFactorySpec!");
    }
    return castHybridObject;
  }

  jni::local_ref<JHybridTensorFactorySpec::CxxPart::jhybriddata> JHybridTensorFactorySpec::CxxPart::initHybrid(jni::alias_ref<jhybridobject> jThis) {
    return makeCxxInstance(jThis);
  }

  std::shared_ptr<JHybridObject> JHybridTensorFactorySpec::CxxPart::createHybridObject(const jni::local_ref<JHybridObject::JavaPart>& javaPart) {
    auto castJavaPart = jni::dynamic_ref_cast<JHybridTensorFactorySpec::JavaPart>(javaPart);
    if (castJavaPart == nullptr) [[unlikely]] {
      throw std::runtime_error("Failed to cast JHybridObject::JavaPart to JHybridTensorFactorySpec::JavaPart!");
    }
    return std::make_shared<JHybridTensorFactorySpec>(castJavaPart);
  }

  void JHybridTensorFactorySpec::CxxPart::registerNatives() {
    registerHybrid({
      makeNativeMethod("initHybrid", JHybridTensorFactorySpec::CxxPart::initHybrid),
    });
  }

  // Properties
  

  // Methods
  std::string JHybridTensorFactorySpec::initTensor(const std::string& modelName) {
    static const auto method = _javaPart->javaClassStatic()->getMethod<jni::local_ref<jni::JString>(jni::alias_ref<jni::JString> /* modelName */)>("initTensor");
    auto __result = method(_javaPart, jni::make_jstring(modelName));
    return __result->toStdString();
  }
  std::variant<nitro::NullType, std::shared_ptr<HybridFaceSpec>> JHybridTensorFactorySpec::detectFromBase64(const TensorFaceOptions& options) {
    static const auto method = _javaPart->javaClassStatic()->getMethod<jni::local_ref<JVariant_NullType_HybridFaceSpec>(jni::alias_ref<JTensorFaceOptions> /* options */)>("detectFromBase64");
    auto __result = method(_javaPart, JTensorFaceOptions::fromCpp(options));
    return __result->toCpp();
  }

} // namespace margelo::nitro::visioncamerafacedetection
