mirror of
https://github.com/kidfromjupiter/nearby.git
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248 lines
12 KiB
C++
248 lines
12 KiB
C++
// Copyright 2020 Google LLC
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// WARNING: Please don't edit this file. It was generated by C++/WinRT v2.0.210505.3
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#ifndef WINRT_Windows_Devices_Adc_H
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#define WINRT_Windows_Devices_Adc_H
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#include "winrt/base.h"
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static_assert(winrt::check_version(CPPWINRT_VERSION, "2.0.210505.3"), "Mismatched C++/WinRT headers.");
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#define CPPWINRT_VERSION "2.0.210505.3"
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#include "winrt/Windows.Devices.h"
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#include "winrt/impl/Windows.Devices.Adc.Provider.2.h"
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#include "winrt/impl/Windows.Foundation.2.h"
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#include "winrt/impl/Windows.Foundation.Collections.2.h"
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#include "winrt/impl/Windows.Devices.Adc.2.h"
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namespace winrt::impl
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{
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::Adc::AdcController) consume_Windows_Devices_Adc_IAdcChannel<D>::Controller() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcChannel)->get_Controller(&value));
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return winrt::Windows::Devices::Adc::AdcController{ value, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_Adc_IAdcChannel<D>::ReadValue() const
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{
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int32_t result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcChannel)->ReadValue(&result));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(double) consume_Windows_Devices_Adc_IAdcChannel<D>::ReadRatio() const
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{
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double result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcChannel)->ReadRatio(&result));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_Adc_IAdcController<D>::ChannelCount() const
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{
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int32_t value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->get_ChannelCount(&value));
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return value;
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}
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_Adc_IAdcController<D>::ResolutionInBits() const
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{
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int32_t value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->get_ResolutionInBits(&value));
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return value;
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}
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_Adc_IAdcController<D>::MinValue() const
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{
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int32_t value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->get_MinValue(&value));
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return value;
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}
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_Adc_IAdcController<D>::MaxValue() const
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{
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int32_t value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->get_MaxValue(&value));
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return value;
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::Adc::AdcChannelMode) consume_Windows_Devices_Adc_IAdcController<D>::ChannelMode() const
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{
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winrt::Windows::Devices::Adc::AdcChannelMode value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->get_ChannelMode(reinterpret_cast<int32_t*>(&value)));
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return value;
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}
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template <typename D> WINRT_IMPL_AUTO(void) consume_Windows_Devices_Adc_IAdcController<D>::ChannelMode(winrt::Windows::Devices::Adc::AdcChannelMode const& value) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->put_ChannelMode(static_cast<int32_t>(value)));
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}
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template <typename D> WINRT_IMPL_AUTO(bool) consume_Windows_Devices_Adc_IAdcController<D>::IsChannelModeSupported(winrt::Windows::Devices::Adc::AdcChannelMode const& channelMode) const
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{
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bool result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->IsChannelModeSupported(static_cast<int32_t>(channelMode), &result));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::Adc::AdcChannel) consume_Windows_Devices_Adc_IAdcController<D>::OpenChannel(int32_t channelNumber) const
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{
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void* result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcController)->OpenChannel(channelNumber, &result));
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return winrt::Windows::Devices::Adc::AdcChannel{ result, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Foundation::Collections::IVectorView<winrt::Windows::Devices::Adc::AdcController>>) consume_Windows_Devices_Adc_IAdcControllerStatics<D>::GetControllersAsync(winrt::Windows::Devices::Adc::Provider::IAdcProvider const& provider) const
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{
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void* operation{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcControllerStatics)->GetControllersAsync(*(void**)(&provider), &operation));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Foundation::Collections::IVectorView<winrt::Windows::Devices::Adc::AdcController>>{ operation, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Adc::AdcController>) consume_Windows_Devices_Adc_IAdcControllerStatics2<D>::GetDefaultAsync() const
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{
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void* operation{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::Adc::IAdcControllerStatics2)->GetDefaultAsync(&operation));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Adc::AdcController>{ operation, 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::Adc::IAdcChannel> : produce_base<D, winrt::Windows::Devices::Adc::IAdcChannel>
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{
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int32_t __stdcall get_Controller(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::Devices::Adc::AdcController>(this->shim().Controller());
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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 ReadValue(int32_t* result) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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*result = detach_from<int32_t>(this->shim().ReadValue());
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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 ReadRatio(double* result) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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*result = detach_from<double>(this->shim().ReadRatio());
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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::Adc::IAdcController> : produce_base<D, winrt::Windows::Devices::Adc::IAdcController>
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{
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int32_t __stdcall get_ChannelCount(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<int32_t>(this->shim().ChannelCount());
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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_ResolutionInBits(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<int32_t>(this->shim().ResolutionInBits());
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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_MinValue(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<int32_t>(this->shim().MinValue());
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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_MaxValue(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<int32_t>(this->shim().MaxValue());
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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_ChannelMode(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::Devices::Adc::AdcChannelMode>(this->shim().ChannelMode());
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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 put_ChannelMode(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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this->shim().ChannelMode(*reinterpret_cast<winrt::Windows::Devices::Adc::AdcChannelMode const*>(&value));
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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 IsChannelModeSupported(int32_t channelMode, bool* result) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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*result = detach_from<bool>(this->shim().IsChannelModeSupported(*reinterpret_cast<winrt::Windows::Devices::Adc::AdcChannelMode const*>(&channelMode)));
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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 OpenChannel(int32_t channelNumber, 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::Adc::AdcChannel>(this->shim().OpenChannel(channelNumber));
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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::Adc::IAdcControllerStatics> : produce_base<D, winrt::Windows::Devices::Adc::IAdcControllerStatics>
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{
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int32_t __stdcall GetControllersAsync(void* provider, void** operation) noexcept final try
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{
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clear_abi(operation);
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typename D::abi_guard guard(this->shim());
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*operation = detach_from<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Foundation::Collections::IVectorView<winrt::Windows::Devices::Adc::AdcController>>>(this->shim().GetControllersAsync(*reinterpret_cast<winrt::Windows::Devices::Adc::Provider::IAdcProvider const*>(&provider)));
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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::Adc::IAdcControllerStatics2> : produce_base<D, winrt::Windows::Devices::Adc::IAdcControllerStatics2>
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{
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int32_t __stdcall GetDefaultAsync(void** operation) noexcept final try
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{
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clear_abi(operation);
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typename D::abi_guard guard(this->shim());
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*operation = detach_from<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Adc::AdcController>>(this->shim().GetDefaultAsync());
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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::Adc
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{
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inline auto AdcController::GetControllersAsync(winrt::Windows::Devices::Adc::Provider::IAdcProvider const& provider)
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{
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return impl::call_factory<AdcController, IAdcControllerStatics>([&](IAdcControllerStatics const& f) { return f.GetControllersAsync(provider); });
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}
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inline auto AdcController::GetDefaultAsync()
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{
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return impl::call_factory_cast<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::Adc::AdcController>(*)(IAdcControllerStatics2 const&), AdcController, IAdcControllerStatics2>([](IAdcControllerStatics2 const& f) { return f.GetDefaultAsync(); });
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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::Adc::IAdcChannel> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Adc::IAdcController> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Adc::IAdcControllerStatics> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Adc::IAdcControllerStatics2> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Adc::AdcChannel> : winrt::impl::hash_base {};
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template<> struct hash<winrt::Windows::Devices::Adc::AdcController> : winrt::impl::hash_base {};
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#endif
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}
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#endif
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