mirror of
https://github.com/kidfromjupiter/nearby.git
synced 2026-09-15 07:06:11 -04:00
366 lines
22 KiB
C++
366 lines
22 KiB
C++
// WARNING: Please don't edit this file. It was generated by C++/WinRT v2.0.210825.3
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#pragma once
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#ifndef WINRT_Windows_Devices_I2c_H
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#define WINRT_Windows_Devices_I2c_H
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#include "winrt/base.h"
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static_assert(winrt::check_version(CPPWINRT_VERSION, "2.0.210825.3"), "Mismatched C++/WinRT headers.");
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#define CPPWINRT_VERSION "2.0.210825.3"
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#include "winrt/Windows.Devices.h"
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#include "winrt/impl/Windows.Devices.I2c.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.I2c.2.h"
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namespace winrt::impl
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{
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template <typename D> WINRT_IMPL_AUTO(int32_t) consume_Windows_Devices_I2c_II2cConnectionSettings<D>::SlaveAddress() const
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{
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int32_t value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->get_SlaveAddress(&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_I2c_II2cConnectionSettings<D>::SlaveAddress(int32_t value) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->put_SlaveAddress(value));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cBusSpeed) consume_Windows_Devices_I2c_II2cConnectionSettings<D>::BusSpeed() const
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{
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winrt::Windows::Devices::I2c::I2cBusSpeed value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->get_BusSpeed(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_I2c_II2cConnectionSettings<D>::BusSpeed(winrt::Windows::Devices::I2c::I2cBusSpeed const& value) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->put_BusSpeed(static_cast<int32_t>(value)));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cSharingMode) consume_Windows_Devices_I2c_II2cConnectionSettings<D>::SharingMode() const
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{
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winrt::Windows::Devices::I2c::I2cSharingMode value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->get_SharingMode(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_I2c_II2cConnectionSettings<D>::SharingMode(winrt::Windows::Devices::I2c::I2cSharingMode const& value) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettings)->put_SharingMode(static_cast<int32_t>(value)));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cConnectionSettings) consume_Windows_Devices_I2c_II2cConnectionSettingsFactory<D>::Create(int32_t slaveAddress) const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cConnectionSettingsFactory)->Create(slaveAddress, &value));
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return winrt::Windows::Devices::I2c::I2cConnectionSettings{ value, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cDevice) consume_Windows_Devices_I2c_II2cController<D>::GetDevice(winrt::Windows::Devices::I2c::I2cConnectionSettings const& settings) const
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{
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void* device{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cController)->GetDevice(*(void**)(&settings), &device));
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return winrt::Windows::Devices::I2c::I2cDevice{ device, 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::I2c::I2cController>>) consume_Windows_Devices_I2c_II2cControllerStatics<D>::GetControllersAsync(winrt::Windows::Devices::I2c::Provider::II2cProvider 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::I2c::II2cControllerStatics)->GetControllersAsync(*(void**)(&provider), &operation));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Foundation::Collections::IVectorView<winrt::Windows::Devices::I2c::I2cController>>{ 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::I2c::I2cController>) consume_Windows_Devices_I2c_II2cControllerStatics<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::I2c::II2cControllerStatics)->GetDefaultAsync(&operation));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::I2c::I2cController>{ operation, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(hstring) consume_Windows_Devices_I2c_II2cDevice<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::I2c::II2cDevice)->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> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cConnectionSettings) consume_Windows_Devices_I2c_II2cDevice<D>::ConnectionSettings() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->get_ConnectionSettings(&value));
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return winrt::Windows::Devices::I2c::I2cConnectionSettings{ value, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(void) consume_Windows_Devices_I2c_II2cDevice<D>::Write(array_view<uint8_t const> buffer) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->Write(buffer.size(), get_abi(buffer)));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cTransferResult) consume_Windows_Devices_I2c_II2cDevice<D>::WritePartial(array_view<uint8_t const> buffer) const
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{
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winrt::Windows::Devices::I2c::I2cTransferResult result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->WritePartial(buffer.size(), get_abi(buffer), put_abi(result)));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(void) consume_Windows_Devices_I2c_II2cDevice<D>::Read(array_view<uint8_t> buffer) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->Read(buffer.size(), put_abi(buffer)));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cTransferResult) consume_Windows_Devices_I2c_II2cDevice<D>::ReadPartial(array_view<uint8_t> buffer) const
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{
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winrt::Windows::Devices::I2c::I2cTransferResult result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->ReadPartial(buffer.size(), put_abi(buffer), put_abi(result)));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(void) consume_Windows_Devices_I2c_II2cDevice<D>::WriteRead(array_view<uint8_t const> writeBuffer, array_view<uint8_t> readBuffer) const
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{
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->WriteRead(writeBuffer.size(), get_abi(writeBuffer), readBuffer.size(), put_abi(readBuffer)));
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}
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template <typename D> WINRT_IMPL_AUTO(winrt::Windows::Devices::I2c::I2cTransferResult) consume_Windows_Devices_I2c_II2cDevice<D>::WriteReadPartial(array_view<uint8_t const> writeBuffer, array_view<uint8_t> readBuffer) const
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{
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winrt::Windows::Devices::I2c::I2cTransferResult result{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDevice)->WriteReadPartial(writeBuffer.size(), get_abi(writeBuffer), readBuffer.size(), put_abi(readBuffer), put_abi(result)));
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return result;
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}
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template <typename D> WINRT_IMPL_AUTO(hstring) consume_Windows_Devices_I2c_II2cDeviceStatics<D>::GetDeviceSelector() const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDeviceStatics)->GetDeviceSelector(&value));
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return hstring{ value, take_ownership_from_abi };
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}
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template <typename D> WINRT_IMPL_AUTO(hstring) consume_Windows_Devices_I2c_II2cDeviceStatics<D>::GetDeviceSelector(param::hstring const& friendlyName) const
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{
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void* value{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDeviceStatics)->GetDeviceSelectorFromFriendlyName(*(void**)(&friendlyName), &value));
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return hstring{ value, 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::I2c::I2cDevice>) consume_Windows_Devices_I2c_II2cDeviceStatics<D>::FromIdAsync(param::hstring const& deviceId, winrt::Windows::Devices::I2c::I2cConnectionSettings const& settings) const
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{
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void* operation{};
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check_hresult(WINRT_IMPL_SHIM(winrt::Windows::Devices::I2c::II2cDeviceStatics)->FromIdAsync(*(void**)(&deviceId), *(void**)(&settings), &operation));
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return winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::I2c::I2cDevice>{ 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::I2c::II2cConnectionSettings> : produce_base<D, winrt::Windows::Devices::I2c::II2cConnectionSettings>
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{
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int32_t __stdcall get_SlaveAddress(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().SlaveAddress());
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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_SlaveAddress(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().SlaveAddress(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 get_BusSpeed(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::I2c::I2cBusSpeed>(this->shim().BusSpeed());
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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_BusSpeed(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().BusSpeed(*reinterpret_cast<winrt::Windows::Devices::I2c::I2cBusSpeed 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 get_SharingMode(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::I2c::I2cSharingMode>(this->shim().SharingMode());
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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_SharingMode(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().SharingMode(*reinterpret_cast<winrt::Windows::Devices::I2c::I2cSharingMode const*>(&value));
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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::I2c::II2cConnectionSettingsFactory> : produce_base<D, winrt::Windows::Devices::I2c::II2cConnectionSettingsFactory>
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{
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int32_t __stdcall Create(int32_t slaveAddress, 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::I2c::I2cConnectionSettings>(this->shim().Create(slaveAddress));
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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::I2c::II2cController> : produce_base<D, winrt::Windows::Devices::I2c::II2cController>
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{
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int32_t __stdcall GetDevice(void* settings, void** device) noexcept final try
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{
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clear_abi(device);
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typename D::abi_guard guard(this->shim());
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*device = detach_from<winrt::Windows::Devices::I2c::I2cDevice>(this->shim().GetDevice(*reinterpret_cast<winrt::Windows::Devices::I2c::I2cConnectionSettings const*>(&settings)));
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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::I2c::II2cControllerStatics> : produce_base<D, winrt::Windows::Devices::I2c::II2cControllerStatics>
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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::I2c::I2cController>>>(this->shim().GetControllersAsync(*reinterpret_cast<winrt::Windows::Devices::I2c::Provider::II2cProvider const*>(&provider)));
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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 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::I2c::I2cController>>(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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#ifndef WINRT_LEAN_AND_MEAN
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template <typename D>
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struct produce<D, winrt::Windows::Devices::I2c::II2cDevice> : produce_base<D, winrt::Windows::Devices::I2c::II2cDevice>
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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 get_ConnectionSettings(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::I2c::I2cConnectionSettings>(this->shim().ConnectionSettings());
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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 Write(uint32_t __bufferSize, uint8_t* buffer) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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this->shim().Write(array_view<uint8_t const>(reinterpret_cast<uint8_t const *>(buffer), reinterpret_cast<uint8_t const *>(buffer) + __bufferSize));
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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 WritePartial(uint32_t __bufferSize, uint8_t* buffer, struct struct_Windows_Devices_I2c_I2cTransferResult* result) noexcept final try
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{
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zero_abi<winrt::Windows::Devices::I2c::I2cTransferResult>(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Devices::I2c::I2cTransferResult>(this->shim().WritePartial(array_view<uint8_t const>(reinterpret_cast<uint8_t const *>(buffer), reinterpret_cast<uint8_t const *>(buffer) + __bufferSize)));
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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 Read(uint32_t __bufferSize, uint8_t* buffer) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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this->shim().Read(array_view<uint8_t>(reinterpret_cast<uint8_t*>(buffer), reinterpret_cast<uint8_t*>(buffer) + __bufferSize));
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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 ReadPartial(uint32_t __bufferSize, uint8_t* buffer, struct struct_Windows_Devices_I2c_I2cTransferResult* result) noexcept final try
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{
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zero_abi<winrt::Windows::Devices::I2c::I2cTransferResult>(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Devices::I2c::I2cTransferResult>(this->shim().ReadPartial(array_view<uint8_t>(reinterpret_cast<uint8_t*>(buffer), reinterpret_cast<uint8_t*>(buffer) + __bufferSize)));
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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 WriteRead(uint32_t __writeBufferSize, uint8_t* writeBuffer, uint32_t __readBufferSize, uint8_t* readBuffer) noexcept final try
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{
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typename D::abi_guard guard(this->shim());
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this->shim().WriteRead(array_view<uint8_t const>(reinterpret_cast<uint8_t const *>(writeBuffer), reinterpret_cast<uint8_t const *>(writeBuffer) + __writeBufferSize), array_view<uint8_t>(reinterpret_cast<uint8_t*>(readBuffer), reinterpret_cast<uint8_t*>(readBuffer) + __readBufferSize));
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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 WriteReadPartial(uint32_t __writeBufferSize, uint8_t* writeBuffer, uint32_t __readBufferSize, uint8_t* readBuffer, struct struct_Windows_Devices_I2c_I2cTransferResult* result) noexcept final try
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{
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zero_abi<winrt::Windows::Devices::I2c::I2cTransferResult>(result);
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typename D::abi_guard guard(this->shim());
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*result = detach_from<winrt::Windows::Devices::I2c::I2cTransferResult>(this->shim().WriteReadPartial(array_view<uint8_t const>(reinterpret_cast<uint8_t const *>(writeBuffer), reinterpret_cast<uint8_t const *>(writeBuffer) + __writeBufferSize), array_view<uint8_t>(reinterpret_cast<uint8_t*>(readBuffer), reinterpret_cast<uint8_t*>(readBuffer) + __readBufferSize)));
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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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template <typename D>
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struct produce<D, winrt::Windows::Devices::I2c::II2cDeviceStatics> : produce_base<D, winrt::Windows::Devices::I2c::II2cDeviceStatics>
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{
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int32_t __stdcall GetDeviceSelector(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().GetDeviceSelector());
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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 GetDeviceSelectorFromFriendlyName(void* friendlyName, 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().GetDeviceSelector(*reinterpret_cast<hstring const*>(&friendlyName)));
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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* settings, void** operation) noexcept final try
|
|
{
|
|
clear_abi(operation);
|
|
typename D::abi_guard guard(this->shim());
|
|
*operation = detach_from<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::I2c::I2cDevice>>(this->shim().FromIdAsync(*reinterpret_cast<hstring const*>(&deviceId), *reinterpret_cast<winrt::Windows::Devices::I2c::I2cConnectionSettings const*>(&settings)));
|
|
return 0;
|
|
}
|
|
catch (...) { return to_hresult(); }
|
|
};
|
|
}
|
|
WINRT_EXPORT namespace winrt::Windows::Devices::I2c
|
|
{
|
|
inline I2cConnectionSettings::I2cConnectionSettings(int32_t slaveAddress) :
|
|
I2cConnectionSettings(impl::call_factory<I2cConnectionSettings, II2cConnectionSettingsFactory>([&](II2cConnectionSettingsFactory const& f) { return f.Create(slaveAddress); }))
|
|
{
|
|
}
|
|
inline auto I2cController::GetControllersAsync(winrt::Windows::Devices::I2c::Provider::II2cProvider const& provider)
|
|
{
|
|
return impl::call_factory<I2cController, II2cControllerStatics>([&](II2cControllerStatics const& f) { return f.GetControllersAsync(provider); });
|
|
}
|
|
inline auto I2cController::GetDefaultAsync()
|
|
{
|
|
return impl::call_factory_cast<winrt::Windows::Foundation::IAsyncOperation<winrt::Windows::Devices::I2c::I2cController>(*)(II2cControllerStatics const&), I2cController, II2cControllerStatics>([](II2cControllerStatics const& f) { return f.GetDefaultAsync(); });
|
|
}
|
|
inline auto I2cDevice::GetDeviceSelector()
|
|
{
|
|
return impl::call_factory_cast<hstring(*)(II2cDeviceStatics const&), I2cDevice, II2cDeviceStatics>([](II2cDeviceStatics const& f) { return f.GetDeviceSelector(); });
|
|
}
|
|
inline auto I2cDevice::GetDeviceSelector(param::hstring const& friendlyName)
|
|
{
|
|
return impl::call_factory<I2cDevice, II2cDeviceStatics>([&](II2cDeviceStatics const& f) { return f.GetDeviceSelector(friendlyName); });
|
|
}
|
|
inline auto I2cDevice::FromIdAsync(param::hstring const& deviceId, winrt::Windows::Devices::I2c::I2cConnectionSettings const& settings)
|
|
{
|
|
return impl::call_factory<I2cDevice, II2cDeviceStatics>([&](II2cDeviceStatics const& f) { return f.FromIdAsync(deviceId, settings); });
|
|
}
|
|
}
|
|
namespace std
|
|
{
|
|
#ifndef WINRT_LEAN_AND_MEAN
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cConnectionSettings> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cConnectionSettingsFactory> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cController> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cControllerStatics> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cDevice> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::II2cDeviceStatics> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::I2cConnectionSettings> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::I2cController> : winrt::impl::hash_base {};
|
|
template<> struct hash<winrt::Windows::Devices::I2c::I2cDevice> : winrt::impl::hash_base {};
|
|
#endif
|
|
}
|
|
#endif
|