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290 lines
8.7 KiB
C++
290 lines
8.7 KiB
C++
// Copyright(c) 2015-present, Gabi Melman & spdlog contributors.
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// Distributed under the MIT License (http://opensource.org/licenses/MIT)
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// Writing to Windows Event Log requires the registry entries below to be present, with the following modifications:
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// 1. <log_name> should be replaced with your log name (e.g. your application name)
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// 2. <source_name> should be replaced with the specific source name and the key should be duplicated for
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// each source used in the application
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//
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// Since typically modifications of this kind require elevation, it's better to do it as a part of setup procedure.
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// The snippet below uses mscoree.dll as the message file as it exists on most of the Windows systems anyway and
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// happens to contain the needed resource.
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//
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// You can also specify a custom message file if needed.
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// Please refer to Event Log functions descriptions in MSDN for more details on custom message files.
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/*---------------------------------------------------------------------------------------
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Windows Registry Editor Version 5.00
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[HKEY_LOCAL_MACHINE\SYSTEM\CurrentControlSet\Services\EventLog\<log_name>]
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[HKEY_LOCAL_MACHINE\SYSTEM\CurrentControlSet\Services\EventLog\<log_name>\<source_name>]
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"TypesSupported"=dword:00000007
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"EventMessageFile"=hex(2):25,00,73,00,79,00,73,00,74,00,65,00,6d,00,72,00,6f,\
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00,6f,00,74,00,25,00,5c,00,53,00,79,00,73,00,74,00,65,00,6d,00,33,00,32,00,\
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5c,00,6d,00,73,00,63,00,6f,00,72,00,65,00,65,00,2e,00,64,00,6c,00,6c,00,00,\
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00
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-----------------------------------------------------------------------------------------*/
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#pragma once
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#include <spdlog/details/null_mutex.h>
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#include <spdlog/sinks/base_sink.h>
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#include <spdlog/details/windows_include.h>
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#include <winbase.h>
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#include <mutex>
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#include <string>
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#include <vector>
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namespace spdlog {
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namespace sinks {
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namespace win_eventlog {
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namespace internal {
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struct local_alloc_t
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{
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HLOCAL hlocal_;
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SPDLOG_CONSTEXPR local_alloc_t() SPDLOG_NOEXCEPT : hlocal_(nullptr) {}
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local_alloc_t(local_alloc_t const &) = delete;
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local_alloc_t &operator=(local_alloc_t const &) = delete;
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~local_alloc_t() SPDLOG_NOEXCEPT
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{
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if (hlocal_)
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{
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LocalFree(hlocal_);
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}
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}
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};
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/** Windows error */
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struct win32_error : public spdlog_ex
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{
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/** Formats an error report line: "user-message: error-code (system message)" */
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static std::string format(std::string const &user_message, DWORD error_code = GetLastError())
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{
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std::string system_message;
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local_alloc_t format_message_result{};
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auto format_message_succeeded =
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::FormatMessageA(FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS, nullptr,
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error_code, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), (LPSTR)&format_message_result.hlocal_, 0, nullptr);
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if (format_message_succeeded && format_message_result.hlocal_)
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{
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system_message = fmt_lib::format(" ({})", (LPSTR)format_message_result.hlocal_);
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}
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return fmt_lib::format("{}: {}{}", user_message, error_code, system_message);
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}
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explicit win32_error(std::string const &func_name, DWORD error = GetLastError())
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: spdlog_ex(format(func_name, error))
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{}
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};
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/** Wrapper for security identifiers (SID) on Windows */
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struct sid_t
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{
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std::vector<char> buffer_;
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public:
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sid_t() {}
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/** creates a wrapped SID copy */
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static sid_t duplicate_sid(PSID psid)
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{
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if (!::IsValidSid(psid))
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{
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throw_spdlog_ex("sid_t::sid_t(): invalid SID received");
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}
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auto const sid_length{::GetLengthSid(psid)};
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sid_t result;
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result.buffer_.resize(sid_length);
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if (!::CopySid(sid_length, (PSID)result.as_sid(), psid))
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{
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SPDLOG_THROW(win32_error("CopySid"));
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}
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return result;
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}
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/** Retrieves pointer to the internal buffer contents as SID* */
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SID *as_sid() const
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{
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return buffer_.empty() ? nullptr : (SID *)buffer_.data();
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}
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/** Get SID for the current user */
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static sid_t get_current_user_sid()
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{
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/* create and init RAII holder for process token */
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struct process_token_t
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{
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HANDLE token_handle_ = INVALID_HANDLE_VALUE;
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explicit process_token_t(HANDLE process)
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{
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if (!::OpenProcessToken(process, TOKEN_QUERY, &token_handle_))
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{
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SPDLOG_THROW(win32_error("OpenProcessToken"));
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}
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}
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~process_token_t()
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{
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::CloseHandle(token_handle_);
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}
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} current_process_token(::GetCurrentProcess()); // GetCurrentProcess returns pseudohandle, no leak here!
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// Get the required size, this is expected to fail with ERROR_INSUFFICIENT_BUFFER and return the token size
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DWORD tusize = 0;
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if (::GetTokenInformation(current_process_token.token_handle_, TokenUser, NULL, 0, &tusize))
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{
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SPDLOG_THROW(win32_error("GetTokenInformation should fail"));
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}
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// get user token
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std::vector<unsigned char> buffer(static_cast<size_t>(tusize));
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if (!::GetTokenInformation(current_process_token.token_handle_, TokenUser, (LPVOID)buffer.data(), tusize, &tusize))
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{
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SPDLOG_THROW(win32_error("GetTokenInformation"));
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}
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// create a wrapper of the SID data as stored in the user token
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return sid_t::duplicate_sid(((TOKEN_USER *)buffer.data())->User.Sid);
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}
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};
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struct eventlog
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{
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static WORD get_event_type(details::log_msg const &msg)
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{
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switch (msg.level)
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{
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case level::trace:
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case level::debug:
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return EVENTLOG_SUCCESS;
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case level::info:
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return EVENTLOG_INFORMATION_TYPE;
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case level::warn:
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return EVENTLOG_WARNING_TYPE;
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case level::err:
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case level::critical:
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case level::off:
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return EVENTLOG_ERROR_TYPE;
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default:
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return EVENTLOG_INFORMATION_TYPE;
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}
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}
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static WORD get_event_category(details::log_msg const &msg)
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{
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return (WORD)msg.level;
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}
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};
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} // namespace internal
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/*
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* Windows Event Log sink
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*/
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template<typename Mutex>
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class win_eventlog_sink : public base_sink<Mutex>
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{
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private:
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HANDLE hEventLog_{NULL};
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internal::sid_t current_user_sid_;
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std::string source_;
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DWORD event_id_;
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HANDLE event_log_handle()
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{
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if (!hEventLog_)
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{
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hEventLog_ = ::RegisterEventSourceA(nullptr, source_.c_str());
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if (!hEventLog_ || hEventLog_ == (HANDLE)ERROR_ACCESS_DENIED)
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{
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SPDLOG_THROW(internal::win32_error("RegisterEventSource"));
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}
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}
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return hEventLog_;
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}
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protected:
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void sink_it_(const details::log_msg &msg) override
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{
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using namespace internal;
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bool succeeded;
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memory_buf_t formatted;
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base_sink<Mutex>::formatter_->format(msg, formatted);
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formatted.push_back('\0');
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#ifdef SPDLOG_WCHAR_TO_UTF8_SUPPORT
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wmemory_buf_t buf;
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details::os::utf8_to_wstrbuf(string_view_t(formatted.data(), formatted.size()), buf);
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LPCWSTR lp_wstr = buf.data();
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succeeded = static_cast<bool>(::ReportEventW(event_log_handle(), eventlog::get_event_type(msg), eventlog::get_event_category(msg),
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event_id_, current_user_sid_.as_sid(), 1, 0, &lp_wstr, nullptr));
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#else
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LPCSTR lp_str = formatted.data();
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succeeded = static_cast<bool>(::ReportEventA(event_log_handle(), eventlog::get_event_type(msg), eventlog::get_event_category(msg),
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event_id_, current_user_sid_.as_sid(), 1, 0, &lp_str, nullptr));
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#endif
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if (!succeeded)
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{
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SPDLOG_THROW(win32_error("ReportEvent"));
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}
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}
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void flush_() override {}
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public:
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win_eventlog_sink(std::string const &source, DWORD event_id = 1000 /* according to mscoree.dll */)
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: source_(source)
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, event_id_(event_id)
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{
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try
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{
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current_user_sid_ = internal::sid_t::get_current_user_sid();
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}
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catch (...)
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{
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// get_current_user_sid() is unlikely to fail and if it does, we can still proceed without
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// current_user_sid but in the event log the record will have no user name
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}
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}
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~win_eventlog_sink()
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{
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if (hEventLog_)
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DeregisterEventSource(hEventLog_);
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}
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};
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} // namespace win_eventlog
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using win_eventlog_sink_mt = win_eventlog::win_eventlog_sink<std::mutex>;
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using win_eventlog_sink_st = win_eventlog::win_eventlog_sink<details::null_mutex>;
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} // namespace sinks
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} // namespace spdlog
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