///
/// HybridTorchSpec_cxx.swift
/// This file was generated by nitrogen. DO NOT MODIFY THIS FILE.
/// https://github.com/mrousavy/nitro
/// Copyright © 2025 Marc Rousavy @ Margelo
///

import Foundation
import NitroModules
import NitroModules

/**
 * A class implementation that bridges HybridTorchSpec over to C++.
 * In C++, we cannot use Swift protocols - so we need to wrap it in a class to make it strongly defined.
 *
 * Also, some Swift types need to be bridged with special handling:
 * - Enums need to be wrapped in Structs, otherwise they cannot be accessed bi-directionally (Swift bug: https://github.com/swiftlang/swift/issues/75330)
 * - Other HybridObjects need to be wrapped/unwrapped from the Swift TCxx wrapper
 * - Throwing methods need to be wrapped with a Result<T, Error> type, as exceptions cannot be propagated to C++
 */
open class HybridTorchSpec_cxx {
  /**
   * The Swift <> C++ bridge's namespace (`margelo::nitro::nitrotorch::bridge::swift`)
   * from `NitroTorch-Swift-Cxx-Bridge.hpp`.
   * This contains specialized C++ templates, and C++ helper functions that can be accessed from Swift.
   */
  public typealias bridge = margelo.nitro.nitrotorch.bridge.swift

  /**
   * Holds an instance of the `HybridTorchSpec` Swift protocol.
   */
  private var __implementation: any HybridTorchSpec

  /**
   * Holds a weak pointer to the C++ class that wraps the Swift class.
   */
  private var __cxxPart: bridge.std__weak_ptr_HybridTorchSpec_

  /**
   * Create a new `HybridTorchSpec_cxx` that wraps the given `HybridTorchSpec`.
   * All properties and methods bridge to C++ types.
   */
  public init(_ implementation: any HybridTorchSpec) {
    self.__implementation = implementation
    self.__cxxPart = .init()
    /* no base class */
  }

  /**
   * Get the actual `HybridTorchSpec` instance this class wraps.
   */
  @inline(__always)
  public func getHybridTorchSpec() -> any HybridTorchSpec {
    return __implementation
  }

  /**
   * Casts this instance to a retained unsafe raw pointer.
   * This acquires one additional strong reference on the object!
   */
  public func toUnsafe() -> UnsafeMutableRawPointer {
    return Unmanaged.passRetained(self).toOpaque()
  }

  /**
   * Casts an unsafe pointer to a `HybridTorchSpec_cxx`.
   * The pointer has to be a retained opaque `Unmanaged<HybridTorchSpec_cxx>`.
   * This removes one strong reference from the object!
   */
  public class func fromUnsafe(_ pointer: UnsafeMutableRawPointer) -> HybridTorchSpec_cxx {
    return Unmanaged<HybridTorchSpec_cxx>.fromOpaque(pointer).takeRetainedValue()
  }

  /**
   * Gets (or creates) the C++ part of this Hybrid Object.
   * The C++ part is a `std::shared_ptr<HybridTorchSpec>`.
   */
  public func getCxxPart() -> bridge.std__shared_ptr_HybridTorchSpec_ {
    let cachedCxxPart = self.__cxxPart.lock()
    if cachedCxxPart.__convertToBool() {
      return cachedCxxPart
    } else {
      let newCxxPart = bridge.create_std__shared_ptr_HybridTorchSpec_(self.toUnsafe())
      __cxxPart = bridge.weakify_std__shared_ptr_HybridTorchSpec_(newCxxPart)
      return newCxxPart
    }
  }

  

  /**
   * Get the memory size of the Swift class (plus size of any other allocations)
   * so the JS VM can properly track it and garbage-collect the JS object if needed.
   */
  @inline(__always)
  public var memorySize: Int {
    return MemoryHelper.getSizeOf(self.__implementation) + self.__implementation.memorySize
  }

  /**
   * Call dispose() on the Swift class.
   * This _may_ be called manually from JS.
   */
  @inline(__always)
  public func dispose() {
    self.__implementation.dispose()
  }

  // Properties
  public final var onStateChanged: bridge.std__optional_std__function_void_bool____state______ {
    @inline(__always)
    get {
      return { () -> bridge.std__optional_std__function_void_bool____state______ in
        if let __unwrappedValue = self.__implementation.onStateChanged {
          return bridge.create_std__optional_std__function_void_bool____state______({ () -> bridge.Func_void_bool in
            let __closureWrapper = Func_void_bool(__unwrappedValue)
            return bridge.create_Func_void_bool(__closureWrapper.toUnsafe())
          }())
        } else {
          return .init()
        }
      }()
    }
    @inline(__always)
    set {
      self.__implementation.onStateChanged = { () -> ((_ state: Bool) -> Void)? in
        if bridge.has_value_std__optional_std__function_void_bool____state______(newValue) {
          let __unwrapped = bridge.get_std__optional_std__function_void_bool____state______(newValue)
          return { () -> (Bool) -> Void in
            let __wrappedFunction = bridge.wrap_Func_void_bool(__unwrapped)
            return { (__state: Bool) -> Void in
              __wrappedFunction.call(__state)
            }
          }()
        } else {
          return nil
        }
      }()
    }
  }
  
  public final var onLevelChanged: bridge.std__optional_std__function_void_std__optional_double_____level______ {
    @inline(__always)
    get {
      return { () -> bridge.std__optional_std__function_void_std__optional_double_____level______ in
        if let __unwrappedValue = self.__implementation.onLevelChanged {
          return bridge.create_std__optional_std__function_void_std__optional_double_____level______({ () -> bridge.Func_void_std__optional_double_ in
            let __closureWrapper = Func_void_std__optional_double_(__unwrappedValue)
            return bridge.create_Func_void_std__optional_double_(__closureWrapper.toUnsafe())
          }())
        } else {
          return .init()
        }
      }()
    }
    @inline(__always)
    set {
      self.__implementation.onLevelChanged = { () -> ((_ level: Double?) -> Void)? in
        if bridge.has_value_std__optional_std__function_void_std__optional_double_____level______(newValue) {
          let __unwrapped = bridge.get_std__optional_std__function_void_std__optional_double_____level______(newValue)
          return { () -> (Double?) -> Void in
            let __wrappedFunction = bridge.wrap_Func_void_std__optional_double_(__unwrapped)
            return { (__level: Double?) -> Void in
              __wrappedFunction.call({ () -> bridge.std__optional_double_ in
                if let __unwrappedValue = __level {
                  return bridge.create_std__optional_double_(__unwrappedValue)
                } else {
                  return .init()
                }
              }())
            }
          }()
        } else {
          return nil
        }
      }()
    }
  }

  // Methods
  @inline(__always)
  public final func on() -> bridge.Result_std__shared_ptr_Promise_void___ {
    do {
      let __result = try self.__implementation.on()
      let __resultCpp = { () -> bridge.std__shared_ptr_Promise_void__ in
        let __promise = bridge.create_std__shared_ptr_Promise_void__()
        let __promiseHolder = bridge.wrap_std__shared_ptr_Promise_void__(__promise)
        __result
          .then({ __result in __promiseHolder.resolve() })
          .catch({ __error in __promiseHolder.reject(__error.toCpp()) })
        return __promise
      }()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__resultCpp)
    } catch (let __error) {
      let __exceptionPtr = __error.toCpp()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__exceptionPtr)
    }
  }
  
  @inline(__always)
  public final func off() -> bridge.Result_std__shared_ptr_Promise_void___ {
    do {
      let __result = try self.__implementation.off()
      let __resultCpp = { () -> bridge.std__shared_ptr_Promise_void__ in
        let __promise = bridge.create_std__shared_ptr_Promise_void__()
        let __promiseHolder = bridge.wrap_std__shared_ptr_Promise_void__(__promise)
        __result
          .then({ __result in __promiseHolder.resolve() })
          .catch({ __error in __promiseHolder.reject(__error.toCpp()) })
        return __promise
      }()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__resultCpp)
    } catch (let __error) {
      let __exceptionPtr = __error.toCpp()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__exceptionPtr)
    }
  }
  
  @inline(__always)
  public final func toggle() -> bridge.Result_std__shared_ptr_Promise_void___ {
    do {
      let __result = try self.__implementation.toggle()
      let __resultCpp = { () -> bridge.std__shared_ptr_Promise_void__ in
        let __promise = bridge.create_std__shared_ptr_Promise_void__()
        let __promiseHolder = bridge.wrap_std__shared_ptr_Promise_void__(__promise)
        __result
          .then({ __result in __promiseHolder.resolve() })
          .catch({ __error in __promiseHolder.reject(__error.toCpp()) })
        return __promise
      }()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__resultCpp)
    } catch (let __error) {
      let __exceptionPtr = __error.toCpp()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__exceptionPtr)
    }
  }
  
  @inline(__always)
  public final func setLevel(level: Double) -> bridge.Result_std__shared_ptr_Promise_void___ {
    do {
      let __result = try self.__implementation.setLevel(level: level)
      let __resultCpp = { () -> bridge.std__shared_ptr_Promise_void__ in
        let __promise = bridge.create_std__shared_ptr_Promise_void__()
        let __promiseHolder = bridge.wrap_std__shared_ptr_Promise_void__(__promise)
        __result
          .then({ __result in __promiseHolder.resolve() })
          .catch({ __error in __promiseHolder.reject(__error.toCpp()) })
        return __promise
      }()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__resultCpp)
    } catch (let __error) {
      let __exceptionPtr = __error.toCpp()
      return bridge.create_Result_std__shared_ptr_Promise_void___(__exceptionPtr)
    }
  }
  
  @inline(__always)
  public final func getMaxLevel(dynamic: bridge.std__optional_bool_) -> bridge.Result_std__optional_double__ {
    do {
      let __result = try self.__implementation.getMaxLevel(dynamic: { () -> Bool? in
        if bridge.has_value_std__optional_bool_(dynamic) {
          let __unwrapped = bridge.get_std__optional_bool_(dynamic)
          return __unwrapped
        } else {
          return nil
        }
      }())
      let __resultCpp = { () -> bridge.std__optional_double_ in
        if let __unwrappedValue = __result {
          return bridge.create_std__optional_double_(__unwrappedValue)
        } else {
          return .init()
        }
      }()
      return bridge.create_Result_std__optional_double__(__resultCpp)
    } catch (let __error) {
      let __exceptionPtr = __error.toCpp()
      return bridge.create_Result_std__optional_double__(__exceptionPtr)
    }
  }
}
