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a25dd1d348
Server settings: - max_local_read_bandwidth_for_server - max_local_write_bandwidth_for_server Query settings: - max_local_read_bandwidth - max_local_write_bandwidth This is the preparation for adding ability to throttle BACKUPs Signed-off-by: Azat Khuzhin <a.khuzhin@semrush.com>
263 lines
8.3 KiB
C++
263 lines
8.3 KiB
C++
#include <cerrno>
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#include <ctime>
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#include <optional>
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#include <Common/ProfileEvents.h>
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#include <Common/Stopwatch.h>
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#include <Common/Exception.h>
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#include <Common/CurrentMetrics.h>
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#include <Common/Throttler.h>
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#include <IO/ReadBufferFromFileDescriptor.h>
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#include <IO/WriteHelpers.h>
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#include <Common/filesystemHelpers.h>
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#include <sys/stat.h>
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#include <Interpreters/Context.h>
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#pragma clang diagnostic ignored "-Wreserved-identifier"
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namespace ProfileEvents
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{
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extern const Event ReadBufferFromFileDescriptorRead;
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extern const Event ReadBufferFromFileDescriptorReadFailed;
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extern const Event ReadBufferFromFileDescriptorReadBytes;
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extern const Event DiskReadElapsedMicroseconds;
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extern const Event Seek;
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extern const Event LocalReadThrottlerBytes;
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extern const Event LocalReadThrottlerSleepMicroseconds;
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}
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namespace CurrentMetrics
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{
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extern const Metric Read;
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}
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int CANNOT_READ_FROM_FILE_DESCRIPTOR;
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extern const int ARGUMENT_OUT_OF_BOUND;
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extern const int CANNOT_SEEK_THROUGH_FILE;
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extern const int CANNOT_SELECT;
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extern const int CANNOT_ADVISE;
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}
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std::string ReadBufferFromFileDescriptor::getFileName() const
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{
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return "(fd = " + toString(fd) + ")";
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}
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bool ReadBufferFromFileDescriptor::nextImpl()
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{
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/// If internal_buffer size is empty, then read() cannot be distinguished from EOF
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assert(!internal_buffer.empty());
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/// This is a workaround of a read pass EOF bug in linux kernel with pread()
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if (file_size.has_value() && file_offset_of_buffer_end >= *file_size)
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return false;
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size_t bytes_read = 0;
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while (!bytes_read)
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{
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ProfileEvents::increment(ProfileEvents::ReadBufferFromFileDescriptorRead);
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Stopwatch watch(profile_callback ? clock_type : CLOCK_MONOTONIC);
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ssize_t res = 0;
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{
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CurrentMetrics::Increment metric_increment{CurrentMetrics::Read};
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if (use_pread)
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res = ::pread(fd, internal_buffer.begin(), internal_buffer.size(), file_offset_of_buffer_end);
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else
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res = ::read(fd, internal_buffer.begin(), internal_buffer.size());
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}
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if (!res)
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break;
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if (-1 == res && errno != EINTR)
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{
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ProfileEvents::increment(ProfileEvents::ReadBufferFromFileDescriptorReadFailed);
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throwFromErrnoWithPath("Cannot read from file: " + getFileName(), getFileName(), ErrorCodes::CANNOT_READ_FROM_FILE_DESCRIPTOR);
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}
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if (res > 0)
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{
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bytes_read += res;
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if (throttler)
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throttler->add(res, ProfileEvents::LocalReadThrottlerBytes, ProfileEvents::LocalReadThrottlerSleepMicroseconds);
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}
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/// It reports real time spent including the time spent while thread was preempted doing nothing.
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/// And it is Ok for the purpose of this watch (it is used to lower the number of threads to read from tables).
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/// Sometimes it is better to use taskstats::blkio_delay_total, but it is quite expensive to get it
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/// (TaskStatsInfoGetter has about 500K RPS).
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watch.stop();
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ProfileEvents::increment(ProfileEvents::DiskReadElapsedMicroseconds, watch.elapsedMicroseconds());
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if (profile_callback)
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{
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ProfileInfo info;
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info.bytes_requested = internal_buffer.size();
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info.bytes_read = res;
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info.nanoseconds = watch.elapsed();
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profile_callback(info);
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}
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}
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file_offset_of_buffer_end += bytes_read;
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if (bytes_read)
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{
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ProfileEvents::increment(ProfileEvents::ReadBufferFromFileDescriptorReadBytes, bytes_read);
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working_buffer = internal_buffer;
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working_buffer.resize(bytes_read);
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}
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else
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return false;
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return true;
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}
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void ReadBufferFromFileDescriptor::prefetch(int64_t)
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{
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#if defined(POSIX_FADV_WILLNEED)
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/// For direct IO, loading data into page cache is pointless.
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if (required_alignment)
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return;
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/// Ask OS to prefetch data into page cache.
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if (0 != posix_fadvise(fd, file_offset_of_buffer_end, internal_buffer.size(), POSIX_FADV_WILLNEED))
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throwFromErrno("Cannot posix_fadvise", ErrorCodes::CANNOT_ADVISE);
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#endif
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}
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/// If 'offset' is small enough to stay in buffer after seek, then true seek in file does not happen.
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off_t ReadBufferFromFileDescriptor::seek(off_t offset, int whence)
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{
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size_t new_pos;
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if (whence == SEEK_SET)
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{
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assert(offset >= 0);
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new_pos = offset;
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}
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else if (whence == SEEK_CUR)
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{
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new_pos = file_offset_of_buffer_end - (working_buffer.end() - pos) + offset;
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}
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else
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{
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throw Exception(ErrorCodes::ARGUMENT_OUT_OF_BOUND, "ReadBufferFromFileDescriptor::seek expects SEEK_SET or SEEK_CUR as whence");
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}
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/// Position is unchanged.
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if (new_pos + (working_buffer.end() - pos) == file_offset_of_buffer_end)
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return new_pos;
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if (file_offset_of_buffer_end - working_buffer.size() <= static_cast<size_t>(new_pos)
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&& new_pos <= file_offset_of_buffer_end)
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{
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/// Position is still inside the buffer.
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/// Probably it is at the end of the buffer - then we will load data on the following 'next' call.
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pos = working_buffer.end() - file_offset_of_buffer_end + new_pos;
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assert(pos >= working_buffer.begin());
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assert(pos <= working_buffer.end());
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return new_pos;
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}
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else
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{
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/// Position is out of the buffer, we need to do real seek.
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off_t seek_pos = required_alignment > 1
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? new_pos / required_alignment * required_alignment
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: new_pos;
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off_t offset_after_seek_pos = new_pos - seek_pos;
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/// First reset the buffer so the next read will fetch new data to the buffer.
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resetWorkingBuffer();
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/// In case of using 'pread' we just update the info about the next position in file.
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/// In case of using 'read' we call 'lseek'.
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/// We account both cases as seek event as it leads to non-contiguous reads from file.
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ProfileEvents::increment(ProfileEvents::Seek);
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if (!use_pread)
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{
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Stopwatch watch(profile_callback ? clock_type : CLOCK_MONOTONIC);
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off_t res = ::lseek(fd, seek_pos, SEEK_SET);
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if (-1 == res)
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throwFromErrnoWithPath(fmt::format("Cannot seek through file {} at offset {}", getFileName(), seek_pos), getFileName(),
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ErrorCodes::CANNOT_SEEK_THROUGH_FILE);
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/// Also note that seeking past the file size is not allowed.
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if (res != seek_pos)
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throw Exception(ErrorCodes::CANNOT_SEEK_THROUGH_FILE,
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"The 'lseek' syscall returned value ({}) that is not expected ({})", res, seek_pos);
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watch.stop();
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ProfileEvents::increment(ProfileEvents::DiskReadElapsedMicroseconds, watch.elapsedMicroseconds());
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}
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file_offset_of_buffer_end = seek_pos;
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if (offset_after_seek_pos > 0)
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ignore(offset_after_seek_pos);
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return seek_pos;
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}
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}
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void ReadBufferFromFileDescriptor::rewind()
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{
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if (!use_pread)
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{
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ProfileEvents::increment(ProfileEvents::Seek);
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off_t res = ::lseek(fd, 0, SEEK_SET);
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if (-1 == res)
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throwFromErrnoWithPath("Cannot seek through file " + getFileName(), getFileName(),
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ErrorCodes::CANNOT_SEEK_THROUGH_FILE);
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}
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/// In case of pread, the ProfileEvents::Seek is not accounted, but it's Ok.
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/// Clearing the buffer with existing data. New data will be read on subsequent call to 'next'.
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working_buffer.resize(0);
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pos = working_buffer.begin();
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file_offset_of_buffer_end = 0;
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}
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/// Assuming file descriptor supports 'select', check that we have data to read or wait until timeout.
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bool ReadBufferFromFileDescriptor::poll(size_t timeout_microseconds) const
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{
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fd_set fds;
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FD_ZERO(&fds);
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FD_SET(fd, &fds);
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timeval timeout = { time_t(timeout_microseconds / 1000000), suseconds_t(timeout_microseconds % 1000000) };
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int res = select(1, &fds, nullptr, nullptr, &timeout);
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if (-1 == res)
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throwFromErrno("Cannot select", ErrorCodes::CANNOT_SELECT);
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return res > 0;
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}
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size_t ReadBufferFromFileDescriptor::getFileSize()
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{
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return getSizeFromFileDescriptor(fd, getFileName());
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}
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}
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