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nearby/internal/platform/implementation/windows/generated/winrt/Microsoft.Windows.Globalization.h
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2026-01-27 23:46:02 -08:00

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// WARNING: Please don't edit this file. It was generated by C++/WinRT
// v2.0.250303.1
#pragma once
#ifndef WINRT_Microsoft_Windows_Globalization_H
#define WINRT_Microsoft_Windows_Globalization_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/impl/Microsoft.Windows.Globalization.2.h"
#include "winrt/impl/Windows.Foundation.Collections.2.h"
namespace winrt::impl {
template <typename D>
auto consume_Microsoft_Windows_Globalization_IApplicationLanguagesStatics<
D>::Languages() const {
void* value{};
if constexpr (!std::is_same_v<D, winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>) {
winrt::hresult _winrt_cast_result_code;
auto const _winrt_casted_result = impl::try_as_with_reason<
winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics,
D const*>(static_cast<D const*>(this), _winrt_cast_result_code);
check_hresult(_winrt_cast_result_code);
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)&_winrt_casted_result;
check_hresult(_winrt_abi_type->get_Languages(&value));
} else {
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)this;
check_hresult(_winrt_abi_type->get_Languages(&value));
}
return winrt::Windows::Foundation::Collections::IVectorView<hstring>{
value, take_ownership_from_abi};
}
template <typename D>
auto consume_Microsoft_Windows_Globalization_IApplicationLanguagesStatics<
D>::ManifestLanguages() const {
void* value{};
if constexpr (!std::is_same_v<D, winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>) {
winrt::hresult _winrt_cast_result_code;
auto const _winrt_casted_result = impl::try_as_with_reason<
winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics,
D const*>(static_cast<D const*>(this), _winrt_cast_result_code);
check_hresult(_winrt_cast_result_code);
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)&_winrt_casted_result;
check_hresult(_winrt_abi_type->get_ManifestLanguages(&value));
} else {
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)this;
check_hresult(_winrt_abi_type->get_ManifestLanguages(&value));
}
return winrt::Windows::Foundation::Collections::IVectorView<hstring>{
value, take_ownership_from_abi};
}
template <typename D>
auto consume_Microsoft_Windows_Globalization_IApplicationLanguagesStatics<
D>::PrimaryLanguageOverride() const {
void* value{};
if constexpr (!std::is_same_v<D, winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>) {
winrt::hresult _winrt_cast_result_code;
auto const _winrt_casted_result = impl::try_as_with_reason<
winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics,
D const*>(static_cast<D const*>(this), _winrt_cast_result_code);
check_hresult(_winrt_cast_result_code);
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)&_winrt_casted_result;
check_hresult(_winrt_abi_type->get_PrimaryLanguageOverride(&value));
} else {
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)this;
check_hresult(_winrt_abi_type->get_PrimaryLanguageOverride(&value));
}
return hstring{value, take_ownership_from_abi};
}
template <typename D>
auto consume_Microsoft_Windows_Globalization_IApplicationLanguagesStatics<
D>::PrimaryLanguageOverride(param::hstring const& value) const {
if constexpr (!std::is_same_v<D, winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>) {
winrt::hresult _winrt_cast_result_code;
auto const _winrt_casted_result = impl::try_as_with_reason<
winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics,
D const*>(static_cast<D const*>(this), _winrt_cast_result_code);
check_hresult(_winrt_cast_result_code);
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)&_winrt_casted_result;
check_hresult(
_winrt_abi_type->put_PrimaryLanguageOverride(*(void**)(&value)));
} else {
auto const _winrt_abi_type =
*(abi_t<winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics>**)this;
check_hresult(
_winrt_abi_type->put_PrimaryLanguageOverride(*(void**)(&value)));
}
}
#ifndef WINRT_LEAN_AND_MEAN
template <typename D>
struct produce<
D, winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics>
: produce_base<D, winrt::Microsoft::Windows::Globalization::
IApplicationLanguagesStatics> {
int32_t __stdcall get_Languages(void** value) noexcept final try {
clear_abi(value);
typename D::abi_guard guard(this->shim());
*value = detach_from<
winrt::Windows::Foundation::Collections::IVectorView<hstring>>(
this->shim().Languages());
return 0;
} catch (...) {
return to_hresult();
}
int32_t __stdcall get_ManifestLanguages(void** value) noexcept final try {
clear_abi(value);
typename D::abi_guard guard(this->shim());
*value = detach_from<
winrt::Windows::Foundation::Collections::IVectorView<hstring>>(
this->shim().ManifestLanguages());
return 0;
} catch (...) {
return to_hresult();
}
int32_t __stdcall get_PrimaryLanguageOverride(void** value) noexcept final
try {
clear_abi(value);
typename D::abi_guard guard(this->shim());
*value = detach_from<hstring>(this->shim().PrimaryLanguageOverride());
return 0;
} catch (...) {
return to_hresult();
}
int32_t __stdcall put_PrimaryLanguageOverride(void* value) noexcept final
try {
typename D::abi_guard guard(this->shim());
this->shim().PrimaryLanguageOverride(
*reinterpret_cast<hstring const*>(&value));
return 0;
} catch (...) {
return to_hresult();
}
};
#endif
} // namespace winrt::impl
WINRT_EXPORT namespace winrt::Microsoft::Windows::Globalization {
inline auto ApplicationLanguages::Languages() {
return impl::call_factory_cast<
winrt::Windows::Foundation::Collections::IVectorView<hstring> (*)(
IApplicationLanguagesStatics const&),
ApplicationLanguages, IApplicationLanguagesStatics>(
[](IApplicationLanguagesStatics const& f) { return f.Languages(); });
}
inline auto ApplicationLanguages::ManifestLanguages() {
return impl::call_factory_cast<
winrt::Windows::Foundation::Collections::IVectorView<hstring> (*)(
IApplicationLanguagesStatics const&),
ApplicationLanguages, IApplicationLanguagesStatics>(
[](IApplicationLanguagesStatics const& f) {
return f.ManifestLanguages();
});
}
inline auto ApplicationLanguages::PrimaryLanguageOverride() {
return impl::call_factory_cast<
hstring (*)(IApplicationLanguagesStatics const&), ApplicationLanguages,
IApplicationLanguagesStatics>(
[](IApplicationLanguagesStatics const& f) {
return f.PrimaryLanguageOverride();
});
}
inline auto ApplicationLanguages::PrimaryLanguageOverride(
param::hstring const& value) {
impl::call_factory<ApplicationLanguages, IApplicationLanguagesStatics>(
[&](IApplicationLanguagesStatics const& f) {
return f.PrimaryLanguageOverride(value);
});
}
}
namespace std {
#ifndef WINRT_LEAN_AND_MEAN
template <>
struct hash<
winrt::Microsoft::Windows::Globalization::IApplicationLanguagesStatics>
: winrt::impl::hash_base {};
template <>
struct hash<winrt::Microsoft::Windows::Globalization::ApplicationLanguages>
: winrt::impl::hash_base {};
#endif
#ifdef __cpp_lib_format
#endif
} // namespace std
#endif