// C++/WinRT v2.0.250303.1 // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. #pragma once #ifndef WINRT_Windows_System_Power_Diagnostics_H #define WINRT_Windows_System_Power_Diagnostics_H #include "winrt/base.h" static_assert(winrt::check_version(CPPWINRT_VERSION, "2.0.250303.1"), "Mismatched C++/WinRT headers."); #define CPPWINRT_VERSION "2.0.250303.1" #include "winrt/Windows.System.Power.h" #include "winrt/impl/Windows.System.Power.Diagnostics.2.h" namespace winrt::impl { template auto consume_Windows_System_Power_Diagnostics_IBackgroundEnergyDiagnosticsStatics::DeviceSpecificConversionFactor() const { double value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_DeviceSpecificConversionFactor(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_DeviceSpecificConversionFactor(&value)); } return value; } template auto consume_Windows_System_Power_Diagnostics_IBackgroundEnergyDiagnosticsStatics::ComputeTotalEnergyUsage() const { uint64_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->ComputeTotalEnergyUsage(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->ComputeTotalEnergyUsage(&value)); } return value; } template auto consume_Windows_System_Power_Diagnostics_IBackgroundEnergyDiagnosticsStatics::ResetTotalEnergyUsage() const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->ResetTotalEnergyUsage()); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->ResetTotalEnergyUsage()); } } template auto consume_Windows_System_Power_Diagnostics_IForegroundEnergyDiagnosticsStatics::DeviceSpecificConversionFactor() const { double value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_DeviceSpecificConversionFactor(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_DeviceSpecificConversionFactor(&value)); } return value; } template auto consume_Windows_System_Power_Diagnostics_IForegroundEnergyDiagnosticsStatics::ComputeTotalEnergyUsage() const { uint64_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->ComputeTotalEnergyUsage(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->ComputeTotalEnergyUsage(&value)); } return value; } template auto consume_Windows_System_Power_Diagnostics_IForegroundEnergyDiagnosticsStatics::ResetTotalEnergyUsage() const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->ResetTotalEnergyUsage()); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->ResetTotalEnergyUsage()); } } #ifndef WINRT_LEAN_AND_MEAN template struct produce : produce_base { int32_t __stdcall get_DeviceSpecificConversionFactor(double* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().DeviceSpecificConversionFactor()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall ComputeTotalEnergyUsage(uint64_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().ComputeTotalEnergyUsage()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall ResetTotalEnergyUsage() noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().ResetTotalEnergyUsage(); return 0; } catch (...) { return to_hresult(); } }; #endif #ifndef WINRT_LEAN_AND_MEAN template struct produce : produce_base { int32_t __stdcall get_DeviceSpecificConversionFactor(double* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().DeviceSpecificConversionFactor()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall ComputeTotalEnergyUsage(uint64_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().ComputeTotalEnergyUsage()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall ResetTotalEnergyUsage() noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().ResetTotalEnergyUsage(); return 0; } catch (...) { return to_hresult(); } }; #endif } WINRT_EXPORT namespace winrt::Windows::System::Power::Diagnostics { inline auto BackgroundEnergyDiagnostics::DeviceSpecificConversionFactor() { return impl::call_factory_cast([](IBackgroundEnergyDiagnosticsStatics const& f) { return f.DeviceSpecificConversionFactor(); }); } inline auto BackgroundEnergyDiagnostics::ComputeTotalEnergyUsage() { return impl::call_factory_cast([](IBackgroundEnergyDiagnosticsStatics const& f) { return f.ComputeTotalEnergyUsage(); }); } inline auto BackgroundEnergyDiagnostics::ResetTotalEnergyUsage() { impl::call_factory_cast([](IBackgroundEnergyDiagnosticsStatics const& f) { return f.ResetTotalEnergyUsage(); }); } inline auto ForegroundEnergyDiagnostics::DeviceSpecificConversionFactor() { return impl::call_factory_cast([](IForegroundEnergyDiagnosticsStatics const& f) { return f.DeviceSpecificConversionFactor(); }); } inline auto ForegroundEnergyDiagnostics::ComputeTotalEnergyUsage() { return impl::call_factory_cast([](IForegroundEnergyDiagnosticsStatics const& f) { return f.ComputeTotalEnergyUsage(); }); } inline auto ForegroundEnergyDiagnostics::ResetTotalEnergyUsage() { impl::call_factory_cast([](IForegroundEnergyDiagnosticsStatics const& f) { return f.ResetTotalEnergyUsage(); }); } } namespace std { #ifndef WINRT_LEAN_AND_MEAN template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; #endif #ifdef __cpp_lib_format #endif } #endif