mirror of
https://github.com/libretro/dolphin
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564 lines
25 KiB
C++
564 lines
25 KiB
C++
//*********************************************************
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//
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// Copyright (c) Microsoft. All rights reserved.
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// This code is licensed under the MIT License.
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF
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// ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED
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// TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A
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// PARTICULAR PURPOSE AND NONINFRINGEMENT.
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//
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//*********************************************************
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#ifndef __WIL_WIN32_HELPERS_INCLUDED
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#define __WIL_WIN32_HELPERS_INCLUDED
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#include <minwindef.h> // FILETIME, HINSTANCE
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#include <sysinfoapi.h> // GetSystemTimeAsFileTime
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#include <libloaderapi.h> // GetProcAddress
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#include <Psapi.h> // GetModuleFileNameExW (macro), K32GetModuleFileNameExW
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#include <PathCch.h>
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#include <objbase.h>
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#include "result.h"
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#include "resource.h"
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#include "wistd_functional.h"
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#include "wistd_type_traits.h"
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namespace wil
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{
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//! Strictly a function of the file system but this is the value for all known file system, NTFS, FAT.
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//! CDFs has a limit of 254.
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size_t const max_path_segment_length = 255;
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//! Character length not including the null, MAX_PATH (260) includes the null.
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size_t const max_path_length = 259;
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//! 32743 Character length not including the null. This is a system defined limit.
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//! The 24 is for the expansion of the roots from "C:" to "\Device\HarddiskVolume4"
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//! It will be 25 when there are more than 9 disks.
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size_t const max_extended_path_length = 0x7FFF - 24;
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//! For {guid} string form. Includes space for the null terminator.
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size_t const guid_string_buffer_length = 39;
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//! For {guid} string form. Not including the null terminator.
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size_t const guid_string_length = 38;
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#pragma region FILETIME helpers
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// FILETIME duration values. FILETIME is in 100 nanosecond units.
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namespace filetime_duration
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{
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long long const one_millisecond = 10000LL;
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long long const one_second = 10000000LL;
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long long const one_minute = 10000000LL * 60; // 600000000 or 600000000LL
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long long const one_hour = 10000000LL * 60 * 60; // 36000000000 or 36000000000LL
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long long const one_day = 10000000LL * 60 * 60 * 24; // 864000000000 or 864000000000LL
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};
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namespace filetime
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{
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inline unsigned long long to_int64(const FILETIME &ft)
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{
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// Cannot reinterpret_cast FILETIME* to unsigned long long*
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// due to alignment differences.
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return (static_cast<unsigned long long>(ft.dwHighDateTime) << 32) + ft.dwLowDateTime;
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}
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inline FILETIME from_int64(unsigned long long i64)
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{
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static_assert(sizeof(i64) == sizeof(FILETIME), "sizes don't match");
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static_assert(__alignof(unsigned long long) >= __alignof(FILETIME), "alignment not compatible with type pun");
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return *reinterpret_cast<FILETIME *>(&i64);
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}
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inline FILETIME add(_In_ FILETIME const &ft, long long delta)
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{
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return from_int64(to_int64(ft) + delta);
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}
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inline bool is_empty(const FILETIME &ft)
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{
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return (ft.dwHighDateTime == 0) && (ft.dwLowDateTime == 0);
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}
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inline FILETIME get_system_time()
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{
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FILETIME ft;
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GetSystemTimeAsFileTime(&ft);
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return ft;
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}
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}
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#pragma endregion
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// Use to adapt Win32 APIs that take a fixed size buffer into forms that return
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// an allocated buffer. Supports many types of string representation.
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// See comments below on the expected behavior of the callback.
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// Adjust stackBufferLength based on typical result sizes to optimize use and
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// to test the boundary cases.
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT AdaptFixedSizeToAllocatedResult(string_type& result, wistd::function<HRESULT(PWSTR, size_t, size_t*)> callback)
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{
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details::string_maker<string_type> maker;
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wchar_t value[stackBufferLength];
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value[0] = L'\0';
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size_t valueLengthNeededWithNull{}; // callback returns the number of characters needed including the null terminator.
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RETURN_IF_FAILED_EXPECTED(callback(value, ARRAYSIZE(value), &valueLengthNeededWithNull));
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WI_ASSERT(valueLengthNeededWithNull > 0);
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if (valueLengthNeededWithNull <= ARRAYSIZE(value))
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{
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// Success case as described above, make() adds the space for the null.
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RETURN_IF_FAILED(maker.make(value, valueLengthNeededWithNull - 1));
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}
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else
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{
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// Did not fit in the stack allocated buffer, need to do 2 phase construction.
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// valueLengthNeededWithNull includes the null so subtract that as make() will add space for it.
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RETURN_IF_FAILED(maker.make(nullptr, valueLengthNeededWithNull - 1));
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size_t secondLength{};
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RETURN_IF_FAILED(callback(maker.buffer(), valueLengthNeededWithNull, &secondLength));
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// Ensure callback produces consistent result.
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FAIL_FAST_IF(valueLengthNeededWithNull != secondLength);
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}
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result = maker.release();
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return S_OK;
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}
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/** Expands the '%' quoted environment variables in 'input' using ExpandEnvironmentStringsW(); */
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT ExpandEnvironmentStringsW(_In_ PCWSTR input, string_type& result) WI_NOEXCEPT
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{
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return wil::AdaptFixedSizeToAllocatedResult<string_type, stackBufferLength>(result,
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[&](_Out_writes_(valueLength) PWSTR value, size_t valueLength, _Out_ size_t* valueLengthNeededWithNul) -> HRESULT
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{
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*valueLengthNeededWithNul = ::ExpandEnvironmentStringsW(input, value, static_cast<DWORD>(valueLength));
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RETURN_LAST_ERROR_IF(*valueLengthNeededWithNul == 0);
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return S_OK;
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});
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}
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#if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP | WINAPI_PARTITION_SYSTEM | WINAPI_PARTITION_GAMES)
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/** Searches for a specified file in a specified path using ExpandEnvironmentStringsW(); */
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT SearchPathW(_In_opt_ PCWSTR path, _In_ PCWSTR fileName, _In_opt_ PCWSTR extension, string_type& result) WI_NOEXCEPT
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{
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return wil::AdaptFixedSizeToAllocatedResult<string_type, stackBufferLength>(result,
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[&](_Out_writes_(valueLength) PWSTR value, size_t valueLength, _Out_ size_t* valueLengthNeededWithNul) -> HRESULT
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{
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*valueLengthNeededWithNul = ::SearchPathW(path, fileName, extension, static_cast<DWORD>(valueLength), value, nullptr);
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if (*valueLengthNeededWithNul == 0)
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{
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// ERROR_FILE_NOT_FOUND is an expected return value for SearchPathW
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const HRESULT searchResult = HRESULT_FROM_WIN32(::GetLastError());
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RETURN_HR_IF_EXPECTED(searchResult, searchResult == HRESULT_FROM_WIN32(ERROR_FILE_NOT_FOUND));
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RETURN_IF_FAILED(searchResult);
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}
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// AdaptFixedSizeToAllocatedResult expects that the length will always include the NUL.
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// If the result is copied to the buffer, SearchPathW returns the length of copied string, WITHOUT the NUL.
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// If the buffer is too small to hold the result, SearchPathW returns the length of the required buffer WITH the nul.
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if (*valueLengthNeededWithNul < valueLength)
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{
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(*valueLengthNeededWithNul)++; // It fit, account for the null.
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}
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return S_OK;
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});
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}
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// This function does not work beyond the default stack buffer size (255).
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// Needs to to retry in a loop similar to wil::GetModuleFileNameExW
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// These updates and unit tests are tracked by https://github.com/Microsoft/wil/issues/3
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT QueryFullProcessImageNameW(HANDLE processHandle, _In_ DWORD flags, string_type& result) WI_NOEXCEPT
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{
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return wil::AdaptFixedSizeToAllocatedResult<string_type, stackBufferLength>(result,
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[&](_Out_writes_(valueLength) PWSTR value, size_t valueLength, _Out_ size_t* valueLengthNeededWithNul) -> HRESULT
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{
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DWORD lengthToUse = static_cast<DWORD>(valueLength);
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BOOL const success = ::QueryFullProcessImageNameW(processHandle, flags, value, &lengthToUse);
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RETURN_LAST_ERROR_IF((success == FALSE) && (::GetLastError() != ERROR_INSUFFICIENT_BUFFER));
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// On both success or insufficient buffer case, add +1 for the null-terminating character
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*valueLengthNeededWithNul = lengthToUse + 1;
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return S_OK;
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});
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}
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/** Expands environment strings and checks path existence with SearchPathW */
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT ExpandEnvAndSearchPath(_In_ PCWSTR input, string_type& result) WI_NOEXCEPT
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{
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wil::unique_cotaskmem_string expandedName;
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RETURN_IF_FAILED((wil::ExpandEnvironmentStringsW<string_type, stackBufferLength>(input, expandedName)));
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// ERROR_FILE_NOT_FOUND is an expected return value for SearchPathW
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const HRESULT searchResult = (wil::SearchPathW<string_type, stackBufferLength>(nullptr, expandedName.get(), nullptr, result));
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RETURN_HR_IF_EXPECTED(searchResult, searchResult == HRESULT_FROM_WIN32(ERROR_FILE_NOT_FOUND));
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RETURN_IF_FAILED(searchResult);
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return S_OK;
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}
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#endif
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/** Looks up the environment variable 'key' and fails if it is not found.
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'key' should not have '%' prefix and suffix.
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Dangerous since environment variable generally are optional. */
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template <typename string_type>
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inline HRESULT GetEnvironmentVariableW(_In_ PCWSTR key, string_type& result) WI_NOEXCEPT
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{
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return wil::AdaptFixedSizeToAllocatedResult(result,
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[&](_Out_writes_(valueLength) PWSTR value, size_t valueLength, _Out_ size_t* valueLengthNeededWithNul) -> HRESULT
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{
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// If the function succeeds, the return value is the number of characters stored in the buffer
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// pointed to by lpBuffer, not including the terminating null character.
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//
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// If lpBuffer is not large enough to hold the data, the return value is the buffer size, in
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// characters, required to hold the string and its terminating null character and the contents of
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// lpBuffer are undefined.
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//
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// If the function fails, the return value is zero. If the specified environment variable was not
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// found in the environment block, GetLastError returns ERROR_ENVVAR_NOT_FOUND.
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::SetLastError(ERROR_SUCCESS);
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*valueLengthNeededWithNul = ::GetEnvironmentVariableW(key, value, static_cast<DWORD>(valueLength));
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RETURN_LAST_ERROR_IF_EXPECTED((*valueLengthNeededWithNul == 0) && (::GetLastError() != ERROR_SUCCESS));
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if (*valueLengthNeededWithNul < valueLength)
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{
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(*valueLengthNeededWithNul)++; // It fit, account for the null.
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}
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return S_OK;
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});
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}
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/** Looks up the environment variable 'key' and returns null if it is not found.
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'key' should not have '%' prefix and suffix. */
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template <typename string_type>
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HRESULT TryGetEnvironmentVariableW(_In_ PCWSTR key, string_type& result) WI_NOEXCEPT
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{
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const auto hr = wil::GetEnvironmentVariableW<string_type>(key, result);
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RETURN_HR_IF(hr, FAILED(hr) && (hr != HRESULT_FROM_WIN32(ERROR_ENVVAR_NOT_FOUND)));
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return S_OK;
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}
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/** Retrieves the fully qualified path for the file containing the specified module loaded
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by a given process. Note GetModuleFileNameExW is a macro.*/
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template <typename string_type, size_t initialBufferLength = 128>
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HRESULT GetModuleFileNameExW(_In_opt_ HANDLE process, _In_opt_ HMODULE module, string_type& path)
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{
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// initialBufferLength is a template parameter to allow for testing. It creates some waste for
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// shorter paths, but avoids iteration through the loop in common cases where paths are less
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// than 128 characters.
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// wil::max_extended_path_length + 1 (for the null char)
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// + 1 (to be certain GetModuleFileNameExW didn't truncate)
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size_t const ensureNoTrucation = (process != nullptr) ? 1 : 0;
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size_t const maxExtendedPathLengthWithNull = wil::max_extended_path_length + 1 + ensureNoTrucation;
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details::string_maker<string_type> maker;
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for (size_t lengthWithNull = initialBufferLength;
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lengthWithNull <= maxExtendedPathLengthWithNull;
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lengthWithNull = (wistd::min)(lengthWithNull * 2, maxExtendedPathLengthWithNull))
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{
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// make() adds space for the trailing null
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RETURN_IF_FAILED(maker.make(nullptr, lengthWithNull - 1));
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DWORD copiedCount;
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bool copyFailed;
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bool copySucceededWithNoTruncation;
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if (process != nullptr)
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{
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// GetModuleFileNameExW truncates and provides no error or other indication it has done so.
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// The only way to be sure it didn't truncate is if it didn't need the whole buffer.
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copiedCount = ::GetModuleFileNameExW(process, module, maker.buffer(), static_cast<DWORD>(lengthWithNull));
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copyFailed = (0 == copiedCount);
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copySucceededWithNoTruncation = !copyFailed && (copiedCount < lengthWithNull - 1);
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}
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else
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{
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// In cases of insufficient buffer, GetModuleFileNameW will return a value equal to lengthWithNull
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// and set the last error to ERROR_INSUFFICIENT_BUFFER.
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copiedCount = ::GetModuleFileNameW(module, maker.buffer(), static_cast<DWORD>(lengthWithNull));
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copyFailed = (0 == copiedCount);
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copySucceededWithNoTruncation = !copyFailed && (copiedCount < lengthWithNull);
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}
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if (copyFailed)
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{
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RETURN_LAST_ERROR();
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}
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else if (copySucceededWithNoTruncation)
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{
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path = maker.release();
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return S_OK;
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}
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WI_ASSERT((process != nullptr) || (::GetLastError() == ERROR_INSUFFICIENT_BUFFER));
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if (lengthWithNull == maxExtendedPathLengthWithNull)
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{
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// If we've reached this point, there's no point in trying a larger buffer size.
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break;
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}
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}
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// Any path should fit into the maximum max_extended_path_length. If we reached here, something went
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// terribly wrong.
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FAIL_FAST();
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}
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/** Retrieves the fully qualified path for the file that contains the specified module.
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The module must have been loaded by the current process. The path returned will use the
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same format that was specified when the module was loaded. Therefore, the path can be a
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long or short file name, and can have the prefix '\\?\'. */
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template <typename string_type, size_t initialBufferLength = 128>
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HRESULT GetModuleFileNameW(HMODULE module, string_type& path)
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{
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return wil::GetModuleFileNameExW<string_type, initialBufferLength>(nullptr, module, path);
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}
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template <typename string_type, size_t stackBufferLength = 256>
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HRESULT GetSystemDirectoryW(string_type& result) WI_NOEXCEPT
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{
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return wil::AdaptFixedSizeToAllocatedResult<string_type, stackBufferLength>(result,
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[&](_Out_writes_(valueLength) PWSTR value, size_t valueLength, _Out_ size_t* valueLengthNeededWithNul) -> HRESULT
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{
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*valueLengthNeededWithNul = ::GetSystemDirectoryW(value, static_cast<DWORD>(valueLength));
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RETURN_LAST_ERROR_IF(*valueLengthNeededWithNul == 0);
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if (*valueLengthNeededWithNul < valueLength)
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{
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(*valueLengthNeededWithNul)++; // it fit, account for the null
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}
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return S_OK;
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});
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}
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#ifdef WIL_ENABLE_EXCEPTIONS
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/** Expands the '%' quoted environment variables in 'input' using ExpandEnvironmentStringsW(); */
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template <typename string_type = wil::unique_cotaskmem_string, size_t stackBufferLength = 256>
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string_type ExpandEnvironmentStringsW(_In_ PCWSTR input)
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{
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string_type result;
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THROW_IF_FAILED((wil::ExpandEnvironmentStringsW<string_type, stackBufferLength>(input, result)));
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return result;
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}
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#if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP | WINAPI_PARTITION_SYSTEM | WINAPI_PARTITION_GAMES)
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/** Searches for a specified file in a specified path using SearchPathW*/
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template <typename string_type = wil::unique_cotaskmem_string, size_t stackBufferLength = 256>
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string_type TrySearchPathW(_In_opt_ PCWSTR path, _In_ PCWSTR fileName, PCWSTR _In_opt_ extension)
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{
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string_type result;
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HRESULT searchHR = wil::SearchPathW<string_type, stackBufferLength>(path, fileName, extension, result);
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THROW_HR_IF(searchHR, FAILED(searchHR) && (searchHR != HRESULT_FROM_WIN32(ERROR_FILE_NOT_FOUND)));
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return result;
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}
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#endif
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/** Looks up the environment variable 'key' and fails if it is not found.
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'key' should not have '%' prefix and suffix.
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Dangerous since environment variable generally are optional. */
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template <typename string_type = wil::unique_cotaskmem_string>
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string_type GetEnvironmentVariableW(_In_ PCWSTR key)
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{
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string_type result;
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THROW_IF_FAILED(wil::GetEnvironmentVariableW<string_type>(key, result));
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return result;
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}
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/** Looks up the environment variable 'key' and returns null if it is not found.
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'key' should not have '%' prefix and suffix. */
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template <typename string_type = wil::unique_cotaskmem_string>
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string_type TryGetEnvironmentVariableW(_In_ PCWSTR key)
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{
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string_type result;
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THROW_IF_FAILED(wil::TryGetEnvironmentVariableW<string_type>(key, result));
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return result;
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}
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template <typename string_type = wil::unique_cotaskmem_string>
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string_type GetModuleFileNameW(HMODULE module)
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{
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string_type result;
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THROW_IF_FAILED(wil::GetModuleFileNameW(module, result));
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return result;
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}
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template <typename string_type = wil::unique_cotaskmem_string>
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string_type GetModuleFileNameExW(HANDLE process, HMODULE module)
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{
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string_type result;
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THROW_IF_FAILED(wil::GetModuleFileNameExW(process, module, result));
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return result;
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}
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#endif
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/** Retrieve the HINSTANCE for the current DLL or EXE using this symbol that
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the linker provides for every module. This avoids the need for a global HINSTANCE variable
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and provides access to this value for static libraries. */
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EXTERN_C IMAGE_DOS_HEADER __ImageBase;
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inline HINSTANCE GetModuleInstanceHandle() { return reinterpret_cast<HINSTANCE>(&__ImageBase); }
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/// @cond
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namespace details
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{
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class init_once_completer
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{
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INIT_ONCE& m_once;
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unsigned long m_flags = INIT_ONCE_INIT_FAILED;
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public:
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init_once_completer(_In_ INIT_ONCE& once) : m_once(once)
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{
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}
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#pragma warning(push)
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#pragma warning(disable:4702) // https://github.com/Microsoft/wil/issues/2
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void success()
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{
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m_flags = 0;
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}
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#pragma warning(pop)
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~init_once_completer()
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{
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::InitOnceComplete(&m_once, m_flags, nullptr);
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}
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};
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}
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/// @endcond
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/** Performs one-time initialization
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Simplifies using the Win32 INIT_ONCE structure to perform one-time initialization. The provided `func` is invoked
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at most once.
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~~~~
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INIT_ONCE g_init{};
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ComPtr<IFoo> g_foo;
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HRESULT MyMethod()
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{
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bool winner = false;
|
|
RETURN_IF_FAILED(wil::init_once_nothrow(g_init, []
|
|
{
|
|
ComPtr<IFoo> foo;
|
|
RETURN_IF_FAILED(::CoCreateInstance(..., IID_PPV_ARGS(&foo));
|
|
RETURN_IF_FAILED(foo->Startup());
|
|
g_foo = foo;
|
|
}, &winner);
|
|
if (winner)
|
|
{
|
|
RETURN_IF_FAILED(g_foo->Another());
|
|
}
|
|
return S_OK;
|
|
}
|
|
~~~~
|
|
See MSDN for more information on `InitOnceExecuteOnce`.
|
|
@param initOnce The INIT_ONCE structure to use as context for initialization.
|
|
@param func A function that will be invoked to perform initialization. If this fails, the init call
|
|
fails and the once-init is not marked as initialized. A later caller could attempt to
|
|
initialize it a second time.
|
|
@param callerCompleted Set to 'true' if this was the call that caused initialization, false otherwise.
|
|
*/
|
|
template<typename T> HRESULT init_once_nothrow(_Inout_ INIT_ONCE& initOnce, T func, _Out_opt_ bool* callerCompleted = nullptr) WI_NOEXCEPT
|
|
{
|
|
BOOL pending = FALSE;
|
|
wil::assign_to_opt_param(callerCompleted, false);
|
|
|
|
__WIL_PRIVATE_RETURN_IF_WIN32_BOOL_FALSE(InitOnceBeginInitialize(&initOnce, 0, &pending, nullptr));
|
|
|
|
if (pending)
|
|
{
|
|
details::init_once_completer completion(initOnce);
|
|
__WIL_PRIVATE_RETURN_IF_FAILED(func());
|
|
completion.success();
|
|
wil::assign_to_opt_param(callerCompleted, true);
|
|
}
|
|
|
|
return S_OK;
|
|
}
|
|
|
|
//! Similar to init_once_nothrow, but fails-fast if the initialization step failed. The 'callerComplete' value is
|
|
//! returned to the caller instead of being an out-parameter.
|
|
template<typename T> bool init_once_failfast(_Inout_ INIT_ONCE& initOnce, T&& func) WI_NOEXCEPT
|
|
{
|
|
bool callerCompleted;
|
|
|
|
FAIL_FAST_IF_FAILED(init_once_nothrow(initOnce, wistd::forward<T>(func), &callerCompleted));
|
|
|
|
return callerCompleted;
|
|
};
|
|
|
|
//! Returns 'true' if this `init_once` structure has finished initialization, false otherwise.
|
|
inline bool init_once_initialized(_Inout_ INIT_ONCE& initOnce) WI_NOEXCEPT
|
|
{
|
|
BOOL pending = FALSE;
|
|
return ::InitOnceBeginInitialize(&initOnce, INIT_ONCE_CHECK_ONLY, &pending, nullptr) && !pending;
|
|
}
|
|
|
|
#ifdef WIL_ENABLE_EXCEPTIONS
|
|
/** Performs one-time initialization
|
|
Simplifies using the Win32 INIT_ONCE structure to perform one-time initialization. The provided `func` is invoked
|
|
at most once.
|
|
~~~~
|
|
INIT_ONCE g_init{};
|
|
ComPtr<IFoo> g_foo;
|
|
void MyMethod()
|
|
{
|
|
bool winner = wil::init_once(g_init, []
|
|
{
|
|
ComPtr<IFoo> foo;
|
|
THROW_IF_FAILED(::CoCreateInstance(..., IID_PPV_ARGS(&foo));
|
|
THROW_IF_FAILED(foo->Startup());
|
|
g_foo = foo;
|
|
});
|
|
if (winner)
|
|
{
|
|
THROW_IF_FAILED(g_foo->Another());
|
|
}
|
|
}
|
|
~~~~
|
|
See MSDN for more information on `InitOnceExecuteOnce`.
|
|
@param initOnce The INIT_ONCE structure to use as context for initialization.
|
|
@param func A function that will be invoked to perform initialization. If this fails, the init call
|
|
fails and the once-init is not marked as initialized. A later caller could attempt to
|
|
initialize it a second time.
|
|
@returns 'true' if this was the call that caused initialization, false otherwise.
|
|
*/
|
|
template<typename T> bool init_once(_Inout_ INIT_ONCE& initOnce, T func)
|
|
{
|
|
BOOL pending = FALSE;
|
|
|
|
THROW_IF_WIN32_BOOL_FALSE(::InitOnceBeginInitialize(&initOnce, 0, &pending, nullptr));
|
|
|
|
if (pending)
|
|
{
|
|
details::init_once_completer completion(initOnce);
|
|
func();
|
|
completion.success();
|
|
return true;
|
|
}
|
|
else
|
|
{
|
|
return false;
|
|
}
|
|
}
|
|
#endif // WIL_ENABLE_EXCEPTIONS
|
|
}
|
|
|
|
// Macro for calling GetProcAddress(), with type safety for C++ clients
|
|
// using the type information from the specified function.
|
|
// The return value is automatically cast to match the function prototype of the input function.
|
|
//
|
|
// Sample usage:
|
|
//
|
|
// auto sendMail = GetProcAddressByFunctionDeclaration(hinstMAPI, MAPISendMailW);
|
|
// if (sendMail)
|
|
// {
|
|
// sendMail(0, 0, pmm, MAPI_USE_DEFAULT, 0);
|
|
// }
|
|
// Declaration
|
|
#define GetProcAddressByFunctionDeclaration(hinst, fn) reinterpret_cast<decltype(::fn)*>(GetProcAddress(hinst, #fn))
|
|
|
|
#endif // __WIL_WIN32_HELPERS_INCLUDED
|