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229 lines
11 KiB
C++
229 lines
11 KiB
C++
// WARNING: Please don't edit this file. It was generated by C++/WinRT v2.0.220531.1
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#pragma once
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#ifndef WINRT_Windows_Devices_Power_H
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#define WINRT_Windows_Devices_Power_H
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#include "winrt/base.h"
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static_assert(winrt::check_version(CPPWINRT_VERSION, "2.0.220531.1"), "Mismatched C++/WinRT headers.");
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#define CPPWINRT_VERSION "2.0.220531.1"
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#include "winrt/Windows.Devices.h"
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#include "winrt/impl/Windows.Foundation.2.h"
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#include "winrt/impl/Windows.System.Power.2.h"
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#include "winrt/impl/Windows.Devices.Power.2.h"
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namespace winrt::impl
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{
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template <typename D> auto consume_Windows_Devices_Power_IBattery<D>::DeviceId() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBattery)->get_DeviceId(&value));
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return hstring{ value, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBattery<D>::GetReport() const
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{
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void* result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBattery)->GetReport(&result));
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return winrt::Windows::Devices::Power::BatteryReport{ result, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBattery<D>::ReportUpdated(winrt::Windows::Foundation::TypedEventHandler<winrt::Windows::Devices::Power::Battery, winrt::Windows::Foundation::IInspectable> const& handler) const
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{
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winrt::event_token token{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBattery)->add_ReportUpdated(*(void**)(&handler), put_abi(token)));
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return token;
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}
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template <typename D> auto consume_Windows_Devices_Power_IBattery<D>::ReportUpdated(auto_revoke_t, winrt::Windows::Foundation::TypedEventHandler<winrt::Windows::Devices::Power::Battery, winrt::Windows::Foundation::IInspectable> const& handler) const
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{
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return impl::make_event_revoker<D, ReportUpdated_revoker>(this, ReportUpdated(handler));
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}
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template <typename D> auto consume_Windows_Devices_Power_IBattery<D>::ReportUpdated(winrt::event_token const& token) const noexcept
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{
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WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBattery)->remove_ReportUpdated(impl::bind_in(token));
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryReport<D>::ChargeRateInMilliwatts() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryReport)->get_ChargeRateInMilliwatts(&value));
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return winrt::Windows::Foundation::IReference<int32_t>{ value, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryReport<D>::DesignCapacityInMilliwattHours() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryReport)->get_DesignCapacityInMilliwattHours(&value));
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return winrt::Windows::Foundation::IReference<int32_t>{ value, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryReport<D>::FullChargeCapacityInMilliwattHours() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryReport)->get_FullChargeCapacityInMilliwattHours(&value));
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return winrt::Windows::Foundation::IReference<int32_t>{ value, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryReport<D>::RemainingCapacityInMilliwattHours() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryReport)->get_RemainingCapacityInMilliwattHours(&value));
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return winrt::Windows::Foundation::IReference<int32_t>{ value, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryReport<D>::Status() const
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{
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winrt::Windows::System::Power::BatteryStatus value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryReport)->get_Status(reinterpret_cast<int32_t*>(&value)));
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return value;
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryStatics<D>::AggregateBattery() const
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{
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void* result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryStatics)->get_AggregateBattery(&result));
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return winrt::Windows::Devices::Power::Battery{ result, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryStatics<D>::FromIdAsync(param::hstring const& deviceId) const
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{
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void* result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryStatics)->FromIdAsync(*(void**)(&deviceId), &result));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Power::Battery>{ result, take_ownership_from_abi };
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}
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template <typename D> auto consume_Windows_Devices_Power_IBatteryStatics<D>::GetDeviceSelector() const
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{
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void* result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Power::IBatteryStatics)->GetDeviceSelector(&result));
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return hstring{ result, take_ownership_from_abi };
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}
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#ifndef WINRT_LEAN_AND_MEAN
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template <typename D>
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struct produce<D, winrt::Windows::Devices::Power::IBattery> : produce_base<D, winrt::Windows::Devices::Power::IBattery>
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{
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int32_t __stdcall get_DeviceId(void** value) noexcept final try
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{
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clear_abi(value);
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typename D::abi_guard guard(this->shim());
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*value = detach_from<hstring>(this->shim().DeviceId());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall GetReport(void** result) noexcept final try
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{
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clear_abi(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Devices::Power::BatteryReport>(this->shim().GetReport());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall add_ReportUpdated(void* handler, winrt::event_token* token) noexcept final try
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{
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zero_abi<winrt::event_token>(token);
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typename D::abi_guard guard(this->shim());
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*token = detach_from<winrt::event_token>(this->shim().ReportUpdated(*reinterpret_cast<winrt::Windows::Foundation::TypedEventHandler<winrt::Windows::Devices::Power::Battery, winrt::Windows::Foundation::IInspectable> const*>(&handler)));
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall remove_ReportUpdated(winrt::event_token token) noexcept final
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{
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typename D::abi_guard guard(this->shim());
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this->shim().ReportUpdated(*reinterpret_cast<winrt::event_token const*>(&token));
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return 0;
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}
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};
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#endif
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#ifndef WINRT_LEAN_AND_MEAN
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template <typename D>
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struct produce<D, winrt::Windows::Devices::Power::IBatteryReport> : produce_base<D, winrt::Windows::Devices::Power::IBatteryReport>
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{
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int32_t __stdcall get_ChargeRateInMilliwatts(void** value) noexcept final try
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{
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clear_abi(value);
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typename D::abi_guard guard(this->shim());
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*value = detach_from<winrt::Windows::Foundation::IReference<int32_t>>(this->shim().ChargeRateInMilliwatts());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall get_DesignCapacityInMilliwattHours(void** value) noexcept final try
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{
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clear_abi(value);
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typename D::abi_guard guard(this->shim());
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*value = detach_from<winrt::Windows::Foundation::IReference<int32_t>>(this->shim().DesignCapacityInMilliwattHours());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall get_FullChargeCapacityInMilliwattHours(void** value) noexcept final try
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{
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clear_abi(value);
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typename D::abi_guard guard(this->shim());
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*value = detach_from<winrt::Windows::Foundation::IReference<int32_t>>(this->shim().FullChargeCapacityInMilliwattHours());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall get_RemainingCapacityInMilliwattHours(void** value) noexcept final try
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{
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clear_abi(value);
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typename D::abi_guard guard(this->shim());
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*value = detach_from<winrt::Windows::Foundation::IReference<int32_t>>(this->shim().RemainingCapacityInMilliwattHours());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall get_Status(int32_t* value) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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*value = detach_from<winrt::Windows::System::Power::BatteryStatus>(this->shim().Status());
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return 0;
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}
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catch (...) { return to_hresult(); }
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};
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#endif
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#ifndef WINRT_LEAN_AND_MEAN
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template <typename D>
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struct produce<D, winrt::Windows::Devices::Power::IBatteryStatics> : produce_base<D, winrt::Windows::Devices::Power::IBatteryStatics>
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{
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int32_t __stdcall get_AggregateBattery(void** result) noexcept final try
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{
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clear_abi(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Devices::Power::Battery>(this->shim().AggregateBattery());
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall FromIdAsync(void* deviceId, void** result) noexcept final try
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{
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clear_abi(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Power::Battery>>(this->shim().FromIdAsync(*reinterpret_cast<hstring const*>(&deviceId)));
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return 0;
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}
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catch (...) { return to_hresult(); }
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int32_t __stdcall GetDeviceSelector(void** result) noexcept final try
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{
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clear_abi(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<hstring>(this->shim().GetDeviceSelector());
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return 0;
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}
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catch (...) { return to_hresult(); }
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};
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#endif
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}
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WINRT_EXPORT namespace winrt::Windows::Devices::Power
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{
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inline auto Battery::AggregateBattery()
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{
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return impl::call_factory_cast<winrt::Windows::Devices::Power::Battery(*)(IBatteryStatics const&), Battery, IBatteryStatics>([](IBatteryStatics const& f) { return f.AggregateBattery(); });
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}
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inline auto Battery::FromIdAsync(param::hstring const& deviceId)
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{
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return impl::call_factory<Battery, IBatteryStatics>([&](IBatteryStatics const& f) { return f.FromIdAsync(deviceId); });
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}
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inline auto Battery::GetDeviceSelector()
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{
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return impl::call_factory_cast<hstring(*)(IBatteryStatics const&), Battery, IBatteryStatics>([](IBatteryStatics const& f) { return f.GetDeviceSelector(); });
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}
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}
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namespace std
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{
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#ifndef WINRT_LEAN_AND_MEAN
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template<> struct hash<winrt::Windows::Devices::Power::IBattery> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Power::IBatteryReport> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Power::IBatteryStatics> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Power::Battery> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Power::BatteryReport> : winrt::impl::hash_base {};
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#endif
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#ifdef __cpp_lib_format
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#endif
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}
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#endif
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