2018-12-09 15:37:48 +00:00
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use failure::*;
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use nix::unistd;
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use nix::sys::stat;
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2018-12-19 09:02:24 +00:00
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use std::fs::{File, OpenOptions};
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2018-12-09 15:37:48 +00:00
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use std::io::Write;
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use std::path::Path;
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2018-12-15 10:14:41 +00:00
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use std::io::Read;
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use std::io::ErrorKind;
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2018-12-19 10:08:57 +00:00
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use std::time::Duration;
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2018-12-09 15:37:48 +00:00
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2018-12-19 11:49:23 +00:00
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use std::os::unix::io::AsRawFd;
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2018-12-19 09:02:24 +00:00
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2018-12-19 10:07:43 +00:00
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pub mod timer;
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2018-12-28 07:04:46 +00:00
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pub fn map_struct<T>(buffer: &[u8]) -> Result<&T, Error> {
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2018-12-27 08:20:17 +00:00
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if buffer.len() < ::std::mem::size_of::<T>() {
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bail!("unable to map struct - buffer too small");
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}
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2018-12-29 16:00:48 +00:00
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Ok(unsafe { & * (buffer.as_ptr() as *const T) })
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2018-12-27 08:20:17 +00:00
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}
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2018-12-28 07:04:46 +00:00
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pub fn map_struct_mut<T>(buffer: &mut [u8]) -> Result<&mut T, Error> {
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2018-12-27 08:20:17 +00:00
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if buffer.len() < ::std::mem::size_of::<T>() {
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bail!("unable to map struct - buffer too small");
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}
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2018-12-29 16:00:48 +00:00
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Ok(unsafe { &mut * (buffer.as_ptr() as *mut T) })
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2018-12-27 08:20:17 +00:00
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}
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2018-12-09 15:37:48 +00:00
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pub fn file_set_contents<P: AsRef<Path>>(
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path: P,
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data: &[u8],
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perm: Option<stat::Mode>,
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) -> Result<(), Error> {
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let path = path.as_ref();
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2018-12-12 10:23:04 +00:00
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// Note: we use mkstemp heŕe, because this worka with different
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// processes, threads, and even tokio tasks.
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2018-12-09 15:37:48 +00:00
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let mut template = path.to_owned();
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template.set_extension("tmp_XXXXXX");
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let (fd, tmp_path) = match unistd::mkstemp(&template) {
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Ok((fd, path)) => (fd, path),
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Err(err) => bail!("mkstemp {:?} failed: {}", template, err),
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};
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let tmp_path = tmp_path.as_path();
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2018-12-09 15:41:54 +00:00
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let mode : stat::Mode = perm.unwrap_or(stat::Mode::from(
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2018-12-09 15:37:48 +00:00
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stat::Mode::S_IRUSR | stat::Mode::S_IWUSR |
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stat::Mode::S_IRGRP | stat::Mode::S_IROTH
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2018-12-09 15:41:54 +00:00
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));
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2018-12-09 15:37:48 +00:00
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if let Err(err) = stat::fchmod(fd, mode) {
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let _ = unistd::unlink(tmp_path);
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bail!("fchmod {:?} failed: {}", tmp_path, err);
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}
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use std::os::unix::io::FromRawFd;
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let mut file = unsafe { File::from_raw_fd(fd) };
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if let Err(err) = file.write_all(data) {
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let _ = unistd::unlink(tmp_path);
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bail!("write failed: {}", err);
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}
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if let Err(err) = std::fs::rename(tmp_path, path) {
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let _ = unistd::unlink(tmp_path);
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bail!("Atomic rename failed for file {:?} - {}", path, err);
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}
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Ok(())
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}
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2018-12-15 10:14:41 +00:00
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2018-12-19 10:08:57 +00:00
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pub fn lock_file<F: AsRawFd>(
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file: &mut F,
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exclusive: bool,
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timeout: Option<Duration>,
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) -> Result<(), Error>
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{
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let lockarg =
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if exclusive {
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nix::fcntl::FlockArg::LockExclusive
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} else {
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nix::fcntl::FlockArg::LockShared
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};
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let timeout = match timeout {
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None => {
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nix::fcntl::flock(file.as_raw_fd(), lockarg)?;
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return Ok(());
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}
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Some(t) => t,
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};
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// unblock the timeout signal temporarily
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let _sigblock_guard = timer::unblock_timeout_signal();
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// setup a timeout timer
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let mut timer = timer::Timer::create(
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timer::Clock::Realtime,
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timer::TimerEvent::ThisThreadSignal(timer::SIGTIMEOUT))?;
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timer.arm(timer::TimerSpec::new()
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.value(Some(timeout))
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.interval(Some(Duration::from_millis(10))))?;
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nix::fcntl::flock(file.as_raw_fd(), lockarg)?;
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Ok(())
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}
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2018-12-19 09:02:24 +00:00
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2018-12-19 10:08:57 +00:00
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pub fn open_file_locked<P: AsRef<Path>>(path: P, timeout: Duration)
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-> Result<File, Error>
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{
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let path = path.as_ref();
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let mut file =
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match OpenOptions::new()
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.create(true)
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.append(true)
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.open(path)
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{
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2018-12-19 09:02:24 +00:00
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Ok(file) => file,
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Err(err) => bail!("Unable to open lock {:?} - {}",
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path, err),
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};
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2018-12-22 14:59:55 +00:00
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match lock_file(&mut file, true, Some(timeout)) {
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Ok(_) => Ok(file),
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Err(err) => bail!("Unable to aquire lock {:?} - {}",
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path, err),
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}
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2018-12-19 09:02:24 +00:00
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}
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2018-12-15 10:14:41 +00:00
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// Note: We cannot implement an Iterator, because Iterators cannot
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// return a borrowed buffer ref (we want zero-copy)
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pub fn file_chunker<C, R>(
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mut file: R,
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chunk_size: usize,
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2018-12-15 13:51:05 +00:00
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mut chunk_cb: C
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2018-12-15 10:14:41 +00:00
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) -> Result<(), Error>
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2018-12-15 13:51:05 +00:00
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where C: FnMut(usize, &[u8]) -> Result<bool, Error>,
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2018-12-15 10:14:41 +00:00
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R: Read,
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{
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const READ_BUFFER_SIZE: usize = 4*1024*1024; // 4M
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if chunk_size > READ_BUFFER_SIZE { bail!("chunk size too large!"); }
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let mut buf = vec![0u8; READ_BUFFER_SIZE];
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let mut pos = 0;
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let mut file_pos = 0;
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loop {
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let mut eof = false;
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let mut tmp = &mut buf[..];
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// try to read large portions, at least chunk_size
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while pos < chunk_size {
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match file.read(tmp) {
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Ok(0) => { eof = true; break; },
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Ok(n) => {
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pos += n;
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if pos > chunk_size { break; }
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tmp = &mut tmp[n..];
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}
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Err(ref e) if e.kind() == ErrorKind::Interrupted => { /* try again */ }
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2018-12-15 10:16:27 +00:00
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Err(e) => bail!("read chunk failed - {}", e.to_string()),
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2018-12-15 10:14:41 +00:00
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}
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}
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let mut start = 0;
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while start + chunk_size <= pos {
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if !(chunk_cb)(file_pos, &buf[start..start+chunk_size])? { break; }
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file_pos += chunk_size;
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start += chunk_size;
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}
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if eof {
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if start < pos {
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(chunk_cb)(file_pos, &buf[start..pos])?;
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//file_pos += pos - start;
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}
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break;
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} else {
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let rest = pos - start;
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if rest > 0 {
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let ptr = buf.as_mut_ptr();
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unsafe { std::ptr::copy_nonoverlapping(ptr.add(start), ptr, rest); }
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pos = rest;
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} else {
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pos = 0;
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}
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}
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}
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Ok(())
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}
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