36562f351c
GitOrigin-RevId: 90f177a01b941a8fe029fb6363858260a0ca1f3b
486 lines
13 KiB
C++
486 lines
13 KiB
C++
//
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#include "td/utils/port/FileFd.h"
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#if TD_PORT_WINDOWS
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#include "td/utils/misc.h" // for narrow_cast
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#include "td/utils/port/Stat.h"
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#include "td/utils/port/wstring_convert.h"
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#endif
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#include "td/utils/logging.h"
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#include "td/utils/misc.h"
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#include "td/utils/port/sleep.h"
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#include "td/utils/StringBuilder.h"
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#include <cstring>
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#if TD_PORT_POSIX
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#include <fcntl.h>
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#include <sys/file.h>
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#include <sys/types.h>
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#include <sys/uio.h>
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#include <unistd.h>
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#endif
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namespace td {
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namespace {
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struct PrintFlags {
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int32 flags;
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};
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StringBuilder &operator<<(StringBuilder &sb, const PrintFlags &print_flags) {
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auto flags = print_flags.flags;
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if (flags &
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~(FileFd::Write | FileFd::Read | FileFd::Truncate | FileFd::Create | FileFd::Append | FileFd::CreateNew)) {
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return sb << "opened with invalid flags " << flags;
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}
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if (flags & FileFd::Create) {
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sb << "opened/created ";
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} else if (flags & FileFd::CreateNew) {
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sb << "created ";
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} else {
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sb << "opened ";
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}
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if ((flags & FileFd::Write) && (flags & FileFd::Read)) {
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if (flags & FileFd::Append) {
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sb << "for reading and appending";
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} else {
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sb << "for reading and writing";
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}
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} else if (flags & FileFd::Write) {
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if (flags & FileFd::Append) {
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sb << "for appending";
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} else {
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sb << "for writing";
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}
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} else if (flags & FileFd::Read) {
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sb << "for reading";
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} else {
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sb << "for nothing";
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}
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if (flags & FileFd::Truncate) {
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sb << " with truncation";
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}
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return sb;
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}
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} // namespace
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const Fd &FileFd::get_fd() const {
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return fd_;
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}
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Fd &FileFd::get_fd() {
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return fd_;
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}
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Result<FileFd> FileFd::open(CSlice filepath, int32 flags, int32 mode) {
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if (flags & ~(Write | Read | Truncate | Create | Append | CreateNew)) {
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return Status::Error(PSLICE() << "File \"" << filepath << "\" has failed to be " << PrintFlags{flags});
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}
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if ((flags & (Write | Read)) == 0) {
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return Status::Error(PSLICE() << "File \"" << filepath << "\" can't be " << PrintFlags{flags});
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}
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#if TD_PORT_POSIX
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int native_flags = 0;
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if ((flags & Write) && (flags & Read)) {
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native_flags |= O_RDWR;
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} else if (flags & Write) {
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native_flags |= O_WRONLY;
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} else {
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CHECK(flags & Read);
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native_flags |= O_RDONLY;
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}
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if (flags & Truncate) {
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native_flags |= O_TRUNC;
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}
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if (flags & Create) {
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native_flags |= O_CREAT;
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} else if (flags & CreateNew) {
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native_flags |= O_CREAT;
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native_flags |= O_EXCL;
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}
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if (flags & Append) {
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native_flags |= O_APPEND;
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}
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int native_fd = skip_eintr([&] { return ::open(filepath.c_str(), native_flags, static_cast<mode_t>(mode)); });
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if (native_fd < 0) {
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return OS_ERROR(PSLICE() << "File \"" << filepath << "\" can't be " << PrintFlags{flags});
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}
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FileFd result;
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result.fd_ = Fd(native_fd, Fd::Mode::Owner);
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#elif TD_PORT_WINDOWS
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// TODO: support modes
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auto r_filepath = to_wstring(filepath);
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if (r_filepath.is_error()) {
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return Status::Error(PSLICE() << "Failed to convert file path \" << filepath << \" to UTF-16");
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}
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auto w_filepath = r_filepath.move_as_ok();
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DWORD desired_access = 0;
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if ((flags & Write) && (flags & Read)) {
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desired_access |= GENERIC_READ | GENERIC_WRITE;
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} else if (flags & Write) {
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desired_access |= GENERIC_WRITE;
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} else {
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CHECK(flags & Read);
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desired_access |= GENERIC_READ;
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}
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// TODO: share mode
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DWORD share_mode = FILE_SHARE_READ | FILE_SHARE_DELETE | FILE_SHARE_WRITE;
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DWORD creation_disposition = 0;
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if (flags & Create) {
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if (flags & Truncate) {
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creation_disposition = CREATE_ALWAYS;
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} else {
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creation_disposition = OPEN_ALWAYS;
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}
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} else if (flags & CreateNew) {
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creation_disposition = CREATE_NEW;
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} else {
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if (flags & Truncate) {
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creation_disposition = TRUNCATE_EXISTING;
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} else {
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creation_disposition = OPEN_EXISTING;
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}
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}
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#if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP | WINAPI_PARTITION_SYSTEM)
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auto handle = CreateFile(w_filepath.c_str(), desired_access, share_mode, nullptr, creation_disposition, 0, nullptr);
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#else
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auto handle = CreateFile2(w_filepath.c_str(), desired_access, share_mode, creation_disposition, nullptr);
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#endif
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if (handle == INVALID_HANDLE_VALUE) {
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return OS_ERROR(PSLICE() << "File \"" << filepath << "\" can't be " << PrintFlags{flags});
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}
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if (flags & Append) {
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LARGE_INTEGER offset;
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offset.QuadPart = 0;
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auto set_pointer_res = SetFilePointerEx(handle, offset, nullptr, FILE_END);
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if (!set_pointer_res) {
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auto res = OS_ERROR(PSLICE() << "Failed to seek to the end of file \"" << filepath << "\"");
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CloseHandle(handle);
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return res;
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}
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}
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FileFd result;
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result.fd_ = Fd::create_file_fd(handle);
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#endif
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result.fd_.update_flags(Fd::Flag::Write);
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return std::move(result);
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}
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Result<size_t> FileFd::write(Slice slice) {
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#if TD_PORT_POSIX
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CHECK(!fd_.empty());
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int native_fd = get_native_fd();
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auto write_res = skip_eintr([&] { return ::write(native_fd, slice.begin(), slice.size()); });
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if (write_res >= 0) {
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return narrow_cast<size_t>(write_res);
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}
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auto write_errno = errno;
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auto error = Status::PosixError(write_errno, PSLICE() << "Write to [fd = " << native_fd << "] has failed");
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if (write_errno != EAGAIN
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#if EAGAIN != EWOULDBLOCK
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&& write_errno != EWOULDBLOCK
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#endif
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&& write_errno != EIO) {
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LOG(ERROR) << error;
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}
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return std::move(error);
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#elif TD_PORT_WINDOWS
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return fd_.write(slice);
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#endif
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}
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Result<size_t> FileFd::read(MutableSlice slice) {
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#if TD_PORT_POSIX
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CHECK(!fd_.empty());
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int native_fd = get_native_fd();
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auto read_res = skip_eintr([&] { return ::read(native_fd, slice.begin(), slice.size()); });
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auto read_errno = errno;
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if (read_res >= 0) {
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if (narrow_cast<size_t>(read_res) < slice.size()) {
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fd_.clear_flags(Read);
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}
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return static_cast<size_t>(read_res);
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}
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auto error = Status::PosixError(read_errno, PSLICE() << "Read from [fd = " << native_fd << "] has failed");
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if (read_errno != EAGAIN
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#if EAGAIN != EWOULDBLOCK
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&& read_errno != EWOULDBLOCK
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#endif
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&& read_errno != EIO) {
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LOG(ERROR) << error;
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}
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return std::move(error);
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#elif TD_PORT_WINDOWS
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return fd_.read(slice);
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#endif
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}
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Result<size_t> FileFd::pwrite(Slice slice, int64 offset) {
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if (offset < 0) {
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return Status::Error("Offset must be non-negative");
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}
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#if TD_PORT_POSIX
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TRY_RESULT(offset_off_t, narrow_cast_safe<off_t>(offset));
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CHECK(!fd_.empty());
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int native_fd = get_native_fd();
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auto pwrite_res = skip_eintr([&] { return ::pwrite(native_fd, slice.begin(), slice.size(), offset_off_t); });
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if (pwrite_res >= 0) {
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return narrow_cast<size_t>(pwrite_res);
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}
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auto pwrite_errno = errno;
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auto error = Status::PosixError(
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pwrite_errno, PSLICE() << "Pwrite to [fd = " << native_fd << "] at [offset = " << offset << "] has failed");
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if (pwrite_errno != EAGAIN
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#if EAGAIN != EWOULDBLOCK
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&& pwrite_errno != EWOULDBLOCK
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#endif
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&& pwrite_errno != EIO) {
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LOG(ERROR) << error;
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}
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return std::move(error);
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#elif TD_PORT_WINDOWS
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DWORD bytes_written = 0;
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OVERLAPPED overlapped;
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std::memset(&overlapped, 0, sizeof(overlapped));
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overlapped.Offset = static_cast<DWORD>(offset);
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overlapped.OffsetHigh = static_cast<DWORD>(offset >> 32);
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auto res =
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WriteFile(fd_.get_io_handle(), slice.data(), narrow_cast<DWORD>(slice.size()), &bytes_written, &overlapped);
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if (!res) {
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return OS_ERROR("Failed to pwrite");
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}
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return bytes_written;
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#endif
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}
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Result<size_t> FileFd::pread(MutableSlice slice, int64 offset) {
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if (offset < 0) {
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return Status::Error("Offset must be non-negative");
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}
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#if TD_PORT_POSIX
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TRY_RESULT(offset_off_t, narrow_cast_safe<off_t>(offset));
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CHECK(!fd_.empty());
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int native_fd = get_native_fd();
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auto pread_res = skip_eintr([&] { return ::pread(native_fd, slice.begin(), slice.size(), offset_off_t); });
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if (pread_res >= 0) {
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return narrow_cast<size_t>(pread_res);
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}
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auto pread_errno = errno;
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auto error = Status::PosixError(
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pread_errno, PSLICE() << "Pread from [fd = " << native_fd << "] at [offset = " << offset << "] has failed");
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if (pread_errno != EAGAIN
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#if EAGAIN != EWOULDBLOCK
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&& pread_errno != EWOULDBLOCK
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#endif
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&& pread_errno != EIO) {
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LOG(ERROR) << error;
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}
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return std::move(error);
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#elif TD_PORT_WINDOWS
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DWORD bytes_read = 0;
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OVERLAPPED overlapped;
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std::memset(&overlapped, 0, sizeof(overlapped));
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overlapped.Offset = static_cast<DWORD>(offset);
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overlapped.OffsetHigh = static_cast<DWORD>(offset >> 32);
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auto res = ReadFile(fd_.get_io_handle(), slice.data(), narrow_cast<DWORD>(slice.size()), &bytes_read, &overlapped);
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if (!res) {
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return OS_ERROR("Failed to pread");
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}
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return bytes_read;
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#endif
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}
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Status FileFd::lock(FileFd::LockFlags flags, int32 max_tries) {
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if (max_tries <= 0) {
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return Status::Error(0, "Can't lock file: wrong max_tries");
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}
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while (true) {
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#if TD_PORT_POSIX
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struct flock lock;
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std::memset(&lock, 0, sizeof(lock));
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lock.l_type = static_cast<short>([&] {
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switch (flags) {
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case LockFlags::Read:
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return F_RDLCK;
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case LockFlags::Write:
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return F_WRLCK;
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case LockFlags::Unlock:
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return F_UNLCK;
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default:
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UNREACHABLE();
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return F_UNLCK;
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}
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}());
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lock.l_whence = SEEK_SET;
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if (fcntl(get_native_fd(), F_SETLK, &lock) == -1) {
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if (errno == EAGAIN) {
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#elif TD_PORT_WINDOWS
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OVERLAPPED overlapped;
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std::memset(&overlapped, 0, sizeof(overlapped));
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BOOL result;
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if (flags == LockFlags::Unlock) {
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result = UnlockFileEx(fd_.get_io_handle(), 0, MAXDWORD, MAXDWORD, &overlapped);
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} else {
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DWORD dw_flags = LOCKFILE_FAIL_IMMEDIATELY;
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if (flags == LockFlags::Write) {
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dw_flags |= LOCKFILE_EXCLUSIVE_LOCK;
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}
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result = LockFileEx(fd_.get_io_handle(), dw_flags, 0, MAXDWORD, MAXDWORD, &overlapped);
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}
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if (!result) {
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if (GetLastError() == ERROR_LOCK_VIOLATION) {
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#endif
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if (--max_tries > 0) {
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usleep_for(100000);
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continue;
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}
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return OS_ERROR("Can't lock file because it is already in use; check for another program instance running");
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}
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return OS_ERROR("Can't lock file");
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}
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return Status::OK();
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}
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}
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void FileFd::close() {
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fd_.close();
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}
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bool FileFd::empty() const {
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return fd_.empty();
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}
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#if TD_PORT_POSIX
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int FileFd::get_native_fd() const {
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return fd_.get_native_fd();
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}
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#endif
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int32 FileFd::get_flags() const {
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return fd_.get_flags();
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}
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void FileFd::update_flags(Fd::Flags mask) {
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fd_.update_flags(mask);
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}
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int64 FileFd::get_size() {
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return stat().size_;
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}
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#if TD_PORT_WINDOWS
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static uint64 filetime_to_unix_time_nsec(LONGLONG filetime) {
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const auto FILETIME_UNIX_TIME_DIFF = 116444736000000000ll;
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return static_cast<uint64>((filetime - FILETIME_UNIX_TIME_DIFF) * 100);
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}
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#endif
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Stat FileFd::stat() {
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CHECK(!empty());
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#if TD_PORT_POSIX
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return detail::fstat(get_native_fd());
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#elif TD_PORT_WINDOWS
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Stat res;
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FILE_BASIC_INFO basic_info;
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auto status = GetFileInformationByHandleEx(fd_.get_io_handle(), FileBasicInfo, &basic_info, sizeof(basic_info));
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if (!status) {
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auto error = OS_ERROR("Stat failed");
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LOG(FATAL) << error;
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}
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res.atime_nsec_ = filetime_to_unix_time_nsec(basic_info.LastAccessTime.QuadPart);
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res.mtime_nsec_ = filetime_to_unix_time_nsec(basic_info.LastWriteTime.QuadPart);
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res.is_dir_ = (basic_info.FileAttributes & FILE_ATTRIBUTE_DIRECTORY) != 0;
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res.is_reg_ = true;
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FILE_STANDARD_INFO standard_info;
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status = GetFileInformationByHandleEx(fd_.get_io_handle(), FileStandardInfo, &standard_info, sizeof(standard_info));
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if (!status) {
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auto error = OS_ERROR("Stat failed");
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LOG(FATAL) << error;
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}
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res.size_ = standard_info.EndOfFile.QuadPart;
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return res;
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#endif
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}
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Status FileFd::sync() {
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CHECK(!empty());
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#if TD_PORT_POSIX
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if (fsync(fd_.get_native_fd()) != 0) {
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#elif TD_PORT_WINDOWS
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if (FlushFileBuffers(fd_.get_io_handle()) == 0) {
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#endif
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return OS_ERROR("Sync failed");
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}
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return Status::OK();
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}
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Status FileFd::seek(int64 position) {
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CHECK(!empty());
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#if TD_PORT_POSIX
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TRY_RESULT(position_off_t, narrow_cast_safe<off_t>(position));
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if (skip_eintr([&] { return ::lseek(fd_.get_native_fd(), position_off_t, SEEK_SET); }) < 0) {
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#elif TD_PORT_WINDOWS
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LARGE_INTEGER offset;
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offset.QuadPart = position;
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if (SetFilePointerEx(fd_.get_io_handle(), offset, nullptr, FILE_BEGIN) == 0) {
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#endif
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return OS_ERROR("Seek failed");
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}
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return Status::OK();
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}
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Status FileFd::truncate_to_current_position(int64 current_position) {
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CHECK(!empty());
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#if TD_PORT_POSIX
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TRY_RESULT(current_position_off_t, narrow_cast_safe<off_t>(current_position));
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if (skip_eintr([&] { return ::ftruncate(fd_.get_native_fd(), current_position_off_t); }) < 0) {
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#elif TD_PORT_WINDOWS
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if (SetEndOfFile(fd_.get_io_handle()) == 0) {
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#endif
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return OS_ERROR("Truncate failed");
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}
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return Status::OK();
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}
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} // namespace td
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