///
/// NitroOta-Swift-Cxx-Bridge.hpp
/// This file was generated by nitrogen. DO NOT MODIFY THIS FILE.
/// https://github.com/mrousavy/nitro
/// Copyright © Marc Rousavy @ Margelo
///

#pragma once

// Forward declarations of C++ defined types
// Forward declaration of `HybridNitroOtaSpec` to properly resolve imports.
namespace margelo::nitro::nitroota { class HybridNitroOtaSpec; }

// Forward declarations of Swift defined types
// Forward declaration of `HybridNitroOtaSpec_cxx` to properly resolve imports.
namespace NitroOta { class HybridNitroOtaSpec_cxx; }

// Include C++ defined types
#include "HybridNitroOtaSpec.hpp"
#include <NitroModules/Null.hpp>
#include <NitroModules/Promise.hpp>
#include <NitroModules/PromiseHolder.hpp>
#include <NitroModules/Result.hpp>
#include <exception>
#include <functional>
#include <memory>
#include <optional>
#include <string>
#include <variant>

/**
 * Contains specialized versions of C++ templated types so they can be accessed from Swift,
 * as well as helper functions to interact with those C++ types from Swift.
 */
namespace margelo::nitro::nitroota::bridge::swift {

  // pragma MARK: std::shared_ptr<Promise<bool>>
  /**
   * Specialized version of `std::shared_ptr<Promise<bool>>`.
   */
  using std__shared_ptr_Promise_bool__ = std::shared_ptr<Promise<bool>>;
  inline std::shared_ptr<Promise<bool>> create_std__shared_ptr_Promise_bool__() noexcept {
    return Promise<bool>::create();
  }
  inline PromiseHolder<bool> wrap_std__shared_ptr_Promise_bool__(std::shared_ptr<Promise<bool>> promise) noexcept {
    return PromiseHolder<bool>(std::move(promise));
  }
  
  // pragma MARK: std::function<void(bool /* result */)>
  /**
   * Specialized version of `std::function<void(bool)>`.
   */
  using Func_void_bool = std::function<void(bool /* result */)>;
  /**
   * Wrapper class for a `std::function<void(bool / * result * /)>`, this can be used from Swift.
   */
  class Func_void_bool_Wrapper final {
  public:
    explicit Func_void_bool_Wrapper(std::function<void(bool /* result */)>&& func): _function(std::make_unique<std::function<void(bool /* result */)>>(std::move(func))) {}
    inline void call(bool result) const noexcept {
      _function->operator()(result);
    }
  private:
    std::unique_ptr<std::function<void(bool /* result */)>> _function;
  } SWIFT_NONCOPYABLE;
  Func_void_bool create_Func_void_bool(void* NON_NULL swiftClosureWrapper) noexcept;
  inline Func_void_bool_Wrapper wrap_Func_void_bool(Func_void_bool value) noexcept {
    return Func_void_bool_Wrapper(std::move(value));
  }
  
  // pragma MARK: std::function<void(const std::exception_ptr& /* error */)>
  /**
   * Specialized version of `std::function<void(const std::exception_ptr&)>`.
   */
  using Func_void_std__exception_ptr = std::function<void(const std::exception_ptr& /* error */)>;
  /**
   * Wrapper class for a `std::function<void(const std::exception_ptr& / * error * /)>`, this can be used from Swift.
   */
  class Func_void_std__exception_ptr_Wrapper final {
  public:
    explicit Func_void_std__exception_ptr_Wrapper(std::function<void(const std::exception_ptr& /* error */)>&& func): _function(std::make_unique<std::function<void(const std::exception_ptr& /* error */)>>(std::move(func))) {}
    inline void call(std::exception_ptr error) const noexcept {
      _function->operator()(error);
    }
  private:
    std::unique_ptr<std::function<void(const std::exception_ptr& /* error */)>> _function;
  } SWIFT_NONCOPYABLE;
  Func_void_std__exception_ptr create_Func_void_std__exception_ptr(void* NON_NULL swiftClosureWrapper) noexcept;
  inline Func_void_std__exception_ptr_Wrapper wrap_Func_void_std__exception_ptr(Func_void_std__exception_ptr value) noexcept {
    return Func_void_std__exception_ptr_Wrapper(std::move(value));
  }
  
  // pragma MARK: std::shared_ptr<Promise<std::string>>
  /**
   * Specialized version of `std::shared_ptr<Promise<std::string>>`.
   */
  using std__shared_ptr_Promise_std__string__ = std::shared_ptr<Promise<std::string>>;
  inline std::shared_ptr<Promise<std::string>> create_std__shared_ptr_Promise_std__string__() noexcept {
    return Promise<std::string>::create();
  }
  inline PromiseHolder<std::string> wrap_std__shared_ptr_Promise_std__string__(std::shared_ptr<Promise<std::string>> promise) noexcept {
    return PromiseHolder<std::string>(std::move(promise));
  }
  
  // pragma MARK: std::function<void(const std::string& /* result */)>
  /**
   * Specialized version of `std::function<void(const std::string&)>`.
   */
  using Func_void_std__string = std::function<void(const std::string& /* result */)>;
  /**
   * Wrapper class for a `std::function<void(const std::string& / * result * /)>`, this can be used from Swift.
   */
  class Func_void_std__string_Wrapper final {
  public:
    explicit Func_void_std__string_Wrapper(std::function<void(const std::string& /* result */)>&& func): _function(std::make_unique<std::function<void(const std::string& /* result */)>>(std::move(func))) {}
    inline void call(std::string result) const noexcept {
      _function->operator()(result);
    }
  private:
    std::unique_ptr<std::function<void(const std::string& /* result */)>> _function;
  } SWIFT_NONCOPYABLE;
  Func_void_std__string create_Func_void_std__string(void* NON_NULL swiftClosureWrapper) noexcept;
  inline Func_void_std__string_Wrapper wrap_Func_void_std__string(Func_void_std__string value) noexcept {
    return Func_void_std__string_Wrapper(std::move(value));
  }
  
  // pragma MARK: std::function<void(double /* received */, double /* total */)>
  /**
   * Specialized version of `std::function<void(double, double)>`.
   */
  using Func_void_double_double = std::function<void(double /* received */, double /* total */)>;
  /**
   * Wrapper class for a `std::function<void(double / * received * /, double / * total * /)>`, this can be used from Swift.
   */
  class Func_void_double_double_Wrapper final {
  public:
    explicit Func_void_double_double_Wrapper(std::function<void(double /* received */, double /* total */)>&& func): _function(std::make_unique<std::function<void(double /* received */, double /* total */)>>(std::move(func))) {}
    inline void call(double received, double total) const noexcept {
      _function->operator()(received, total);
    }
  private:
    std::unique_ptr<std::function<void(double /* received */, double /* total */)>> _function;
  } SWIFT_NONCOPYABLE;
  Func_void_double_double create_Func_void_double_double(void* NON_NULL swiftClosureWrapper) noexcept;
  inline Func_void_double_double_Wrapper wrap_Func_void_double_double(Func_void_double_double value) noexcept {
    return Func_void_double_double_Wrapper(std::move(value));
  }
  
  // pragma MARK: std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>
  /**
   * Wrapper struct for `std::variant<nitro::NullType, std::function<void(double / * received * /, double / * total * /)>>`.
   * std::variant cannot be used in Swift because of a Swift bug.
   * Not even specializing it works. So we create a wrapper struct.
   */
  struct std__variant_nitro__NullType__std__function_void_double____received_____double____total______ final {
    std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>> variant;
    std__variant_nitro__NullType__std__function_void_double____received_____double____total______(std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>> variant): variant(variant) { }
    operator std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>() const noexcept {
      return variant;
    }
    inline size_t index() const noexcept {
      return variant.index();
    }
    inline nitro::NullType get_0() const noexcept {
      return std::get<0>(variant);
    }
    inline std::function<void(double /* received */, double /* total */)> get_1() const noexcept {
      return std::get<1>(variant);
    }
  };
  inline std__variant_nitro__NullType__std__function_void_double____received_____double____total______ create_std__variant_nitro__NullType__std__function_void_double____received_____double____total______(nitro::NullType value) noexcept {
    return std__variant_nitro__NullType__std__function_void_double____received_____double____total______(value);
  }
  inline std__variant_nitro__NullType__std__function_void_double____received_____double____total______ create_std__variant_nitro__NullType__std__function_void_double____received_____double____total______(const std::function<void(double /* received */, double /* total */)>& value) noexcept {
    return std__variant_nitro__NullType__std__function_void_double____received_____double____total______(value);
  }
  
  // pragma MARK: std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>>
  /**
   * Specialized version of `std::optional<std::variant<nitro::NullType, std::function<void(double / * received * /, double / * total * /)>>>`.
   */
  using std__optional_std__variant_nitro__NullType__std__function_void_double____received_____double____total_______ = std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>>;
  inline std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>> create_std__optional_std__variant_nitro__NullType__std__function_void_double____received_____double____total_______(const std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>& value) noexcept {
    return std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>>(value);
  }
  inline bool has_value_std__optional_std__variant_nitro__NullType__std__function_void_double____received_____double____total_______(const std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>>& optional) noexcept {
    return optional.has_value();
  }
  inline std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>> get_std__optional_std__variant_nitro__NullType__std__function_void_double____received_____double____total_______(const std::optional<std::variant<nitro::NullType, std::function<void(double /* received */, double /* total */)>>>& optional) noexcept {
    return optional.value();
  }
  
  // pragma MARK: std::variant<nitro::NullType, std::string>
  /**
   * Wrapper struct for `std::variant<nitro::NullType, std::string>`.
   * std::variant cannot be used in Swift because of a Swift bug.
   * Not even specializing it works. So we create a wrapper struct.
   */
  struct std__variant_nitro__NullType__std__string_ final {
    std::variant<nitro::NullType, std::string> variant;
    std__variant_nitro__NullType__std__string_(std::variant<nitro::NullType, std::string> variant): variant(variant) { }
    operator std::variant<nitro::NullType, std::string>() const noexcept {
      return variant;
    }
    inline size_t index() const noexcept {
      return variant.index();
    }
    inline nitro::NullType get_0() const noexcept {
      return std::get<0>(variant);
    }
    inline std::string get_1() const noexcept {
      return std::get<1>(variant);
    }
  };
  inline std__variant_nitro__NullType__std__string_ create_std__variant_nitro__NullType__std__string_(nitro::NullType value) noexcept {
    return std__variant_nitro__NullType__std__string_(value);
  }
  inline std__variant_nitro__NullType__std__string_ create_std__variant_nitro__NullType__std__string_(const std::string& value) noexcept {
    return std__variant_nitro__NullType__std__string_(value);
  }
  
  // pragma MARK: std::optional<std::variant<nitro::NullType, std::string>>
  /**
   * Specialized version of `std::optional<std::variant<nitro::NullType, std::string>>`.
   */
  using std__optional_std__variant_nitro__NullType__std__string__ = std::optional<std::variant<nitro::NullType, std::string>>;
  inline std::optional<std::variant<nitro::NullType, std::string>> create_std__optional_std__variant_nitro__NullType__std__string__(const std::variant<nitro::NullType, std::string>& value) noexcept {
    return std::optional<std::variant<nitro::NullType, std::string>>(value);
  }
  inline bool has_value_std__optional_std__variant_nitro__NullType__std__string__(const std::optional<std::variant<nitro::NullType, std::string>>& optional) noexcept {
    return optional.has_value();
  }
  inline std::variant<nitro::NullType, std::string> get_std__optional_std__variant_nitro__NullType__std__string__(const std::optional<std::variant<nitro::NullType, std::string>>& optional) noexcept {
    return optional.value();
  }
  
  // pragma MARK: std::shared_ptr<Promise<void>>
  /**
   * Specialized version of `std::shared_ptr<Promise<void>>`.
   */
  using std__shared_ptr_Promise_void__ = std::shared_ptr<Promise<void>>;
  inline std::shared_ptr<Promise<void>> create_std__shared_ptr_Promise_void__() noexcept {
    return Promise<void>::create();
  }
  inline PromiseHolder<void> wrap_std__shared_ptr_Promise_void__(std::shared_ptr<Promise<void>> promise) noexcept {
    return PromiseHolder<void>(std::move(promise));
  }
  
  // pragma MARK: std::function<void()>
  /**
   * Specialized version of `std::function<void()>`.
   */
  using Func_void = std::function<void()>;
  /**
   * Wrapper class for a `std::function<void()>`, this can be used from Swift.
   */
  class Func_void_Wrapper final {
  public:
    explicit Func_void_Wrapper(std::function<void()>&& func): _function(std::make_unique<std::function<void()>>(std::move(func))) {}
    inline void call() const noexcept {
      _function->operator()();
    }
  private:
    std::unique_ptr<std::function<void()>> _function;
  } SWIFT_NONCOPYABLE;
  Func_void create_Func_void(void* NON_NULL swiftClosureWrapper) noexcept;
  inline Func_void_Wrapper wrap_Func_void(Func_void value) noexcept {
    return Func_void_Wrapper(std::move(value));
  }
  
  // pragma MARK: std::shared_ptr<HybridNitroOtaSpec>
  /**
   * Specialized version of `std::shared_ptr<HybridNitroOtaSpec>`.
   */
  using std__shared_ptr_HybridNitroOtaSpec_ = std::shared_ptr<HybridNitroOtaSpec>;
  std::shared_ptr<HybridNitroOtaSpec> create_std__shared_ptr_HybridNitroOtaSpec_(void* NON_NULL swiftUnsafePointer) noexcept;
  void* NON_NULL get_std__shared_ptr_HybridNitroOtaSpec_(std__shared_ptr_HybridNitroOtaSpec_ cppType);
  
  // pragma MARK: std::weak_ptr<HybridNitroOtaSpec>
  using std__weak_ptr_HybridNitroOtaSpec_ = std::weak_ptr<HybridNitroOtaSpec>;
  inline std__weak_ptr_HybridNitroOtaSpec_ weakify_std__shared_ptr_HybridNitroOtaSpec_(const std::shared_ptr<HybridNitroOtaSpec>& strong) noexcept { return strong; }
  
  // pragma MARK: Result<std::shared_ptr<Promise<bool>>>
  using Result_std__shared_ptr_Promise_bool___ = Result<std::shared_ptr<Promise<bool>>>;
  inline Result_std__shared_ptr_Promise_bool___ create_Result_std__shared_ptr_Promise_bool___(const std::shared_ptr<Promise<bool>>& value) noexcept {
    return Result<std::shared_ptr<Promise<bool>>>::withValue(value);
  }
  inline Result_std__shared_ptr_Promise_bool___ create_Result_std__shared_ptr_Promise_bool___(const std::exception_ptr& error) noexcept {
    return Result<std::shared_ptr<Promise<bool>>>::withError(error);
  }
  
  // pragma MARK: Result<std::shared_ptr<Promise<std::string>>>
  using Result_std__shared_ptr_Promise_std__string___ = Result<std::shared_ptr<Promise<std::string>>>;
  inline Result_std__shared_ptr_Promise_std__string___ create_Result_std__shared_ptr_Promise_std__string___(const std::shared_ptr<Promise<std::string>>& value) noexcept {
    return Result<std::shared_ptr<Promise<std::string>>>::withValue(value);
  }
  inline Result_std__shared_ptr_Promise_std__string___ create_Result_std__shared_ptr_Promise_std__string___(const std::exception_ptr& error) noexcept {
    return Result<std::shared_ptr<Promise<std::string>>>::withError(error);
  }
  
  // pragma MARK: Result<std::variant<nitro::NullType, std::string>>
  using Result_std__variant_nitro__NullType__std__string__ = Result<std::variant<nitro::NullType, std::string>>;
  inline Result_std__variant_nitro__NullType__std__string__ create_Result_std__variant_nitro__NullType__std__string__(const std::variant<nitro::NullType, std::string>& value) noexcept {
    return Result<std::variant<nitro::NullType, std::string>>::withValue(value);
  }
  inline Result_std__variant_nitro__NullType__std__string__ create_Result_std__variant_nitro__NullType__std__string__(const std::exception_ptr& error) noexcept {
    return Result<std::variant<nitro::NullType, std::string>>::withError(error);
  }
  
  // pragma MARK: Result<void>
  using Result_void_ = Result<void>;
  inline Result_void_ create_Result_void_() noexcept {
    return Result<void>::withValue();
  }
  inline Result_void_ create_Result_void_(const std::exception_ptr& error) noexcept {
    return Result<void>::withError(error);
  }
  
  // pragma MARK: Result<std::shared_ptr<Promise<void>>>
  using Result_std__shared_ptr_Promise_void___ = Result<std::shared_ptr<Promise<void>>>;
  inline Result_std__shared_ptr_Promise_void___ create_Result_std__shared_ptr_Promise_void___(const std::shared_ptr<Promise<void>>& value) noexcept {
    return Result<std::shared_ptr<Promise<void>>>::withValue(value);
  }
  inline Result_std__shared_ptr_Promise_void___ create_Result_std__shared_ptr_Promise_void___(const std::exception_ptr& error) noexcept {
    return Result<std::shared_ptr<Promise<void>>>::withError(error);
  }
  
  // pragma MARK: Result<double>
  using Result_double_ = Result<double>;
  inline Result_double_ create_Result_double_(double value) noexcept {
    return Result<double>::withValue(std::move(value));
  }
  inline Result_double_ create_Result_double_(const std::exception_ptr& error) noexcept {
    return Result<double>::withError(error);
  }

} // namespace margelo::nitro::nitroota::bridge::swift
