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Revision 1.116 by root, Wed Oct 3 21:27:51 2007 UTC vs.
Revision 1.297 by root, Thu Nov 29 19:53:46 2018 UTC

1=head1 NAME 1=head1 NAME
2 2
3IO::AIO - Asynchronous Input/Output 3IO::AIO - Asynchronous/Advanced Input/Output
4 4
5=head1 SYNOPSIS 5=head1 SYNOPSIS
6 6
7 use IO::AIO; 7 use IO::AIO;
8 8
9 aio_open "/etc/passwd", O_RDONLY, 0, sub { 9 aio_open "/etc/passwd", IO::AIO::O_RDONLY, 0, sub {
10 my $fh = shift 10 my $fh = shift
11 or die "/etc/passwd: $!"; 11 or die "/etc/passwd: $!";
12 ... 12 ...
13 }; 13 };
14 14
26 $req->cancel; # cancel request if still in queue 26 $req->cancel; # cancel request if still in queue
27 27
28 my $grp = aio_group sub { print "all stats done\n" }; 28 my $grp = aio_group sub { print "all stats done\n" };
29 add $grp aio_stat "..." for ...; 29 add $grp aio_stat "..." for ...;
30 30
31 # AnyEvent integration
32 open my $fh, "<&=" . IO::AIO::poll_fileno or die "$!";
33 my $w = AnyEvent->io (fh => $fh, poll => 'r', cb => sub { IO::AIO::poll_cb });
34
35 # Event integration
36 Event->io (fd => IO::AIO::poll_fileno,
37 poll => 'r',
38 cb => \&IO::AIO::poll_cb);
39
40 # Glib/Gtk2 integration
41 add_watch Glib::IO IO::AIO::poll_fileno,
42 in => sub { IO::AIO::poll_cb; 1 };
43
44 # Tk integration
45 Tk::Event::IO->fileevent (IO::AIO::poll_fileno, "",
46 readable => \&IO::AIO::poll_cb);
47
48 # Danga::Socket integration
49 Danga::Socket->AddOtherFds (IO::AIO::poll_fileno =>
50 \&IO::AIO::poll_cb);
51
52=head1 DESCRIPTION 31=head1 DESCRIPTION
53 32
54This module implements asynchronous I/O using whatever means your 33This module implements asynchronous I/O using whatever means your
55operating system supports. 34operating system supports. It is implemented as an interface to C<libeio>
35(L<http://software.schmorp.de/pkg/libeio.html>).
56 36
57Asynchronous means that operations that can normally block your program 37Asynchronous means that operations that can normally block your program
58(e.g. reading from disk) will be done asynchronously: the operation 38(e.g. reading from disk) will be done asynchronously: the operation
59will still block, but you can do something else in the meantime. This 39will still block, but you can do something else in the meantime. This
60is extremely useful for programs that need to stay interactive even 40is extremely useful for programs that need to stay interactive even
64on a RAID volume or over NFS when you do a number of stat operations 44on a RAID volume or over NFS when you do a number of stat operations
65concurrently. 45concurrently.
66 46
67While most of this works on all types of file descriptors (for 47While most of this works on all types of file descriptors (for
68example sockets), using these functions on file descriptors that 48example sockets), using these functions on file descriptors that
69support nonblocking operation (again, sockets, pipes etc.) is very 49support nonblocking operation (again, sockets, pipes etc.) is
70inefficient. Use an event loop for that (such as the L<Event|Event> 50very inefficient. Use an event loop for that (such as the L<EV>
71module): IO::AIO will naturally fit into such an event loop itself. 51module): IO::AIO will naturally fit into such an event loop itself.
72 52
73In this version, a number of threads are started that execute your 53In this version, a number of threads are started that execute your
74requests and signal their completion. You don't need thread support 54requests and signal their completion. You don't need thread support
75in perl, and the threads created by this module will not be visible 55in perl, and the threads created by this module will not be visible
78not well-supported or restricted (GNU/Linux doesn't allow them on normal 58not well-supported or restricted (GNU/Linux doesn't allow them on normal
79files currently, for example), and they would only support aio_read and 59files currently, for example), and they would only support aio_read and
80aio_write, so the remaining functionality would have to be implemented 60aio_write, so the remaining functionality would have to be implemented
81using threads anyway. 61using threads anyway.
82 62
63In addition to asynchronous I/O, this module also exports some rather
64arcane interfaces, such as C<madvise> or linux's C<splice> system call,
65which is why the C<A> in C<AIO> can also mean I<advanced>.
66
83Although the module will work in the presence of other (Perl-) threads, 67Although the module will work in the presence of other (Perl-) threads,
84it is currently not reentrant in any way, so use appropriate locking 68it is currently not reentrant in any way, so use appropriate locking
85yourself, always call C<poll_cb> from within the same thread, or never 69yourself, always call C<poll_cb> from within the same thread, or never
86call C<poll_cb> (or other C<aio_> functions) recursively. 70call C<poll_cb> (or other C<aio_> functions) recursively.
87 71
88=head2 EXAMPLE 72=head2 EXAMPLE
89 73
90This is a simple example that uses the Event module and loads 74This is a simple example that uses the EV module and loads
91F</etc/passwd> asynchronously: 75F</etc/passwd> asynchronously:
92 76
93 use Fcntl;
94 use Event; 77 use EV;
95 use IO::AIO; 78 use IO::AIO;
96 79
97 # register the IO::AIO callback with Event 80 # register the IO::AIO callback with EV
98 Event->io (fd => IO::AIO::poll_fileno, 81 my $aio_w = EV::io IO::AIO::poll_fileno, EV::READ, \&IO::AIO::poll_cb;
99 poll => 'r',
100 cb => \&IO::AIO::poll_cb);
101 82
102 # queue the request to open /etc/passwd 83 # queue the request to open /etc/passwd
103 aio_open "/etc/passwd", O_RDONLY, 0, sub { 84 aio_open "/etc/passwd", IO::AIO::O_RDONLY, 0, sub {
104 my $fh = shift 85 my $fh = shift
105 or die "error while opening: $!"; 86 or die "error while opening: $!";
106 87
107 # stat'ing filehandles is generally non-blocking 88 # stat'ing filehandles is generally non-blocking
108 my $size = -s $fh; 89 my $size = -s $fh;
117 98
118 # file contents now in $contents 99 # file contents now in $contents
119 print $contents; 100 print $contents;
120 101
121 # exit event loop and program 102 # exit event loop and program
122 Event::unloop; 103 EV::break;
123 }; 104 };
124 }; 105 };
125 106
126 # possibly queue up other requests, or open GUI windows, 107 # possibly queue up other requests, or open GUI windows,
127 # check for sockets etc. etc. 108 # check for sockets etc. etc.
128 109
129 # process events as long as there are some: 110 # process events as long as there are some:
130 Event::loop; 111 EV::run;
131 112
132=head1 REQUEST ANATOMY AND LIFETIME 113=head1 REQUEST ANATOMY AND LIFETIME
133 114
134Every C<aio_*> function creates a request. which is a C data structure not 115Every C<aio_*> function creates a request. which is a C data structure not
135directly visible to Perl. 116directly visible to Perl.
183 164
184=cut 165=cut
185 166
186package IO::AIO; 167package IO::AIO;
187 168
188no warnings; 169use Carp ();
189use strict 'vars'; 170
171use common::sense;
190 172
191use base 'Exporter'; 173use base 'Exporter';
192 174
193BEGIN { 175BEGIN {
194 our $VERSION = '2.5'; 176 our $VERSION = 4.6;
195 177
196 our @AIO_REQ = qw(aio_sendfile aio_read aio_write aio_open aio_close aio_stat 178 our @AIO_REQ = qw(aio_sendfile aio_seek aio_read aio_write aio_open aio_close
197 aio_lstat aio_unlink aio_rmdir aio_readdir aio_scandir aio_symlink 179 aio_stat aio_lstat aio_unlink aio_rmdir aio_readdir aio_readdirx
198 aio_readlink aio_fsync aio_fdatasync aio_readahead aio_rename aio_link 180 aio_scandir aio_symlink aio_readlink aio_realpath aio_fcntl aio_ioctl
181 aio_sync aio_fsync aio_syncfs aio_fdatasync aio_sync_file_range
182 aio_pathsync aio_readahead aio_fiemap aio_allocate
183 aio_rename aio_rename2 aio_link aio_move aio_copy aio_group
199 aio_move aio_copy aio_group aio_nop aio_mknod aio_load aio_rmtree aio_mkdir 184 aio_nop aio_mknod aio_load aio_rmtree aio_mkdir aio_chown
200 aio_chown aio_chmod aio_utime aio_truncate); 185 aio_chmod aio_utime aio_truncate
186 aio_msync aio_mtouch aio_mlock aio_mlockall
187 aio_statvfs
188 aio_slurp
189 aio_wd);
190
201 our @EXPORT = (@AIO_REQ, qw(aioreq_pri aioreq_nice aio_block)); 191 our @EXPORT = (@AIO_REQ, qw(aioreq_pri aioreq_nice));
202 our @EXPORT_OK = qw(poll_fileno poll_cb poll_wait flush 192 our @EXPORT_OK = qw(poll_fileno poll_cb poll_wait flush
203 min_parallel max_parallel max_idle 193 min_parallel max_parallel max_idle idle_timeout
204 nreqs nready npending nthreads 194 nreqs nready npending nthreads
205 max_poll_time max_poll_reqs); 195 max_poll_time max_poll_reqs
196 sendfile fadvise madvise
197 mmap munmap mremap munlock munlockall);
198
199 push @AIO_REQ, qw(aio_busy); # not exported
206 200
207 @IO::AIO::GRP::ISA = 'IO::AIO::REQ'; 201 @IO::AIO::GRP::ISA = 'IO::AIO::REQ';
208 202
209 require XSLoader; 203 require XSLoader;
210 XSLoader::load ("IO::AIO", $VERSION); 204 XSLoader::load ("IO::AIO", $VERSION);
211} 205}
212 206
213=head1 FUNCTIONS 207=head1 FUNCTIONS
214 208
215=head2 AIO REQUEST FUNCTIONS 209=head2 QUICK OVERVIEW
210
211This section simply lists the prototypes most of the functions for
212quick reference. See the following sections for function-by-function
213documentation.
214
215 aio_wd $pathname, $callback->($wd)
216 aio_open $pathname, $flags, $mode, $callback->($fh)
217 aio_close $fh, $callback->($status)
218 aio_seek $fh,$offset,$whence, $callback->($offs)
219 aio_read $fh,$offset,$length, $data,$dataoffset, $callback->($retval)
220 aio_write $fh,$offset,$length, $data,$dataoffset, $callback->($retval)
221 aio_sendfile $out_fh, $in_fh, $in_offset, $length, $callback->($retval)
222 aio_readahead $fh,$offset,$length, $callback->($retval)
223 aio_stat $fh_or_path, $callback->($status)
224 aio_lstat $fh, $callback->($status)
225 aio_statvfs $fh_or_path, $callback->($statvfs)
226 aio_utime $fh_or_path, $atime, $mtime, $callback->($status)
227 aio_chown $fh_or_path, $uid, $gid, $callback->($status)
228 aio_chmod $fh_or_path, $mode, $callback->($status)
229 aio_truncate $fh_or_path, $offset, $callback->($status)
230 aio_allocate $fh, $mode, $offset, $len, $callback->($status)
231 aio_fiemap $fh, $start, $length, $flags, $count, $cb->(\@extents)
232 aio_unlink $pathname, $callback->($status)
233 aio_mknod $pathname, $mode, $dev, $callback->($status)
234 aio_link $srcpath, $dstpath, $callback->($status)
235 aio_symlink $srcpath, $dstpath, $callback->($status)
236 aio_readlink $pathname, $callback->($link)
237 aio_realpath $pathname, $callback->($path)
238 aio_rename $srcpath, $dstpath, $callback->($status)
239 aio_rename2 $srcpath, $dstpath, $flags, $callback->($status)
240 aio_mkdir $pathname, $mode, $callback->($status)
241 aio_rmdir $pathname, $callback->($status)
242 aio_readdir $pathname, $callback->($entries)
243 aio_readdirx $pathname, $flags, $callback->($entries, $flags)
244 IO::AIO::READDIR_DENTS IO::AIO::READDIR_DIRS_FIRST
245 IO::AIO::READDIR_STAT_ORDER IO::AIO::READDIR_FOUND_UNKNOWN
246 aio_scandir $pathname, $maxreq, $callback->($dirs, $nondirs)
247 aio_load $pathname, $data, $callback->($status)
248 aio_copy $srcpath, $dstpath, $callback->($status)
249 aio_move $srcpath, $dstpath, $callback->($status)
250 aio_rmtree $pathname, $callback->($status)
251 aio_fcntl $fh, $cmd, $arg, $callback->($status)
252 aio_ioctl $fh, $request, $buf, $callback->($status)
253 aio_sync $callback->($status)
254 aio_syncfs $fh, $callback->($status)
255 aio_fsync $fh, $callback->($status)
256 aio_fdatasync $fh, $callback->($status)
257 aio_sync_file_range $fh, $offset, $nbytes, $flags, $callback->($status)
258 aio_pathsync $pathname, $callback->($status)
259 aio_msync $scalar, $offset = 0, $length = undef, flags = MS_SYNC, $callback->($status)
260 aio_mtouch $scalar, $offset = 0, $length = undef, flags = 0, $callback->($status)
261 aio_mlock $scalar, $offset = 0, $length = undef, $callback->($status)
262 aio_mlockall $flags, $callback->($status)
263 aio_group $callback->(...)
264 aio_nop $callback->()
265
266 $prev_pri = aioreq_pri [$pri]
267 aioreq_nice $pri_adjust
268
269 IO::AIO::poll_wait
270 IO::AIO::poll_cb
271 IO::AIO::poll
272 IO::AIO::flush
273 IO::AIO::max_poll_reqs $nreqs
274 IO::AIO::max_poll_time $seconds
275 IO::AIO::min_parallel $nthreads
276 IO::AIO::max_parallel $nthreads
277 IO::AIO::max_idle $nthreads
278 IO::AIO::idle_timeout $seconds
279 IO::AIO::max_outstanding $maxreqs
280 IO::AIO::nreqs
281 IO::AIO::nready
282 IO::AIO::npending
283 $nfd = IO::AIO::get_fdlimit [EXPERIMENTAL]
284 IO::AIO::min_fdlimit $nfd [EXPERIMENTAL]
285
286 IO::AIO::sendfile $ofh, $ifh, $offset, $count
287 IO::AIO::fadvise $fh, $offset, $len, $advice
288 IO::AIO::mmap $scalar, $length, $prot, $flags[, $fh[, $offset]]
289 IO::AIO::munmap $scalar
290 IO::AIO::mremap $scalar, $new_length, $flags[, $new_address]
291 IO::AIO::madvise $scalar, $offset, $length, $advice
292 IO::AIO::mprotect $scalar, $offset, $length, $protect
293 IO::AIO::munlock $scalar, $offset = 0, $length = undef
294 IO::AIO::munlockall
295
296=head2 API NOTES
216 297
217All the C<aio_*> calls are more or less thin wrappers around the syscall 298All the C<aio_*> calls are more or less thin wrappers around the syscall
218with the same name (sans C<aio_>). The arguments are similar or identical, 299with the same name (sans C<aio_>). The arguments are similar or identical,
219and they all accept an additional (and optional) C<$callback> argument 300and they all accept an additional (and optional) C<$callback> argument
220which must be a code reference. This code reference will get called with 301which must be a code reference. This code reference will be called after
221the syscall return code (e.g. most syscalls return C<-1> on error, unlike 302the syscall has been executed in an asynchronous fashion. The results
222perl, which usually delivers "false") as it's sole argument when the given 303of the request will be passed as arguments to the callback (and, if an
223syscall has been executed asynchronously. 304error occured, in C<$!>) - for most requests the syscall return code (e.g.
305most syscalls return C<-1> on error, unlike perl, which usually delivers
306"false").
307
308Some requests (such as C<aio_readdir>) pass the actual results and
309communicate failures by passing C<undef>.
224 310
225All functions expecting a filehandle keep a copy of the filehandle 311All functions expecting a filehandle keep a copy of the filehandle
226internally until the request has finished. 312internally until the request has finished.
227 313
228All functions return request objects of type L<IO::AIO::REQ> that allow 314All functions return request objects of type L<IO::AIO::REQ> that allow
229further manipulation of those requests while they are in-flight. 315further manipulation of those requests while they are in-flight.
230 316
231The pathnames you pass to these routines I<must> be absolute and 317The pathnames you pass to these routines I<should> be absolute. The
232encoded as octets. The reason for the former is that at the time the 318reason for this is that at the time the request is being executed, the
233request is being executed, the current working directory could have 319current working directory could have changed. Alternatively, you can
234changed. Alternatively, you can make sure that you never change the 320make sure that you never change the current working directory anywhere
235current working directory anywhere in the program and then use relative 321in the program and then use relative paths. You can also take advantage
236paths. 322of IO::AIOs working directory abstraction, that lets you specify paths
323relative to some previously-opened "working directory object" - see the
324description of the C<IO::AIO::WD> class later in this document.
237 325
238To encode pathnames as octets, either make sure you either: a) always pass 326To encode pathnames as octets, either make sure you either: a) always pass
239in filenames you got from outside (command line, readdir etc.) without 327in filenames you got from outside (command line, readdir etc.) without
240tinkering, b) are ASCII or ISO 8859-1, c) use the Encode module and encode 328tinkering, b) are in your native filesystem encoding, c) use the Encode
241your pathnames to the locale (or other) encoding in effect in the user 329module and encode your pathnames to the locale (or other) encoding in
242environment, d) use Glib::filename_from_unicode on unicode filenames or e) 330effect in the user environment, d) use Glib::filename_from_unicode on
243use something else to ensure your scalar has the correct contents. 331unicode filenames or e) use something else to ensure your scalar has the
332correct contents.
244 333
245This works, btw. independent of the internal UTF-8 bit, which IO::AIO 334This works, btw. independent of the internal UTF-8 bit, which IO::AIO
246handles correctly wether it is set or not. 335handles correctly whether it is set or not.
336
337=head2 AIO REQUEST FUNCTIONS
247 338
248=over 4 339=over 4
249 340
250=item $prev_pri = aioreq_pri [$pri] 341=item $prev_pri = aioreq_pri [$pri]
251 342
281 372
282 373
283=item aio_open $pathname, $flags, $mode, $callback->($fh) 374=item aio_open $pathname, $flags, $mode, $callback->($fh)
284 375
285Asynchronously open or create a file and call the callback with a newly 376Asynchronously open or create a file and call the callback with a newly
286created filehandle for the file. 377created filehandle for the file (or C<undef> in case of an error).
287 378
288The pathname passed to C<aio_open> must be absolute. See API NOTES, above, 379The pathname passed to C<aio_open> must be absolute. See API NOTES, above,
289for an explanation. 380for an explanation.
290 381
291The C<$flags> argument is a bitmask. See the C<Fcntl> module for a 382The C<$flags> argument is a bitmask. See the C<Fcntl> module for a
298by the umask in effect then the request is being executed, so better never 389by the umask in effect then the request is being executed, so better never
299change the umask. 390change the umask.
300 391
301Example: 392Example:
302 393
303 aio_open "/etc/passwd", O_RDONLY, 0, sub { 394 aio_open "/etc/passwd", IO::AIO::O_RDONLY, 0, sub {
304 if ($_[0]) { 395 if ($_[0]) {
305 print "open successful, fh is $_[0]\n"; 396 print "open successful, fh is $_[0]\n";
306 ... 397 ...
307 } else { 398 } else {
308 die "open failed: $!\n"; 399 die "open failed: $!\n";
309 } 400 }
310 }; 401 };
311 402
403In addition to all the common open modes/flags (C<O_RDONLY>, C<O_WRONLY>,
404C<O_RDWR>, C<O_CREAT>, C<O_TRUNC>, C<O_EXCL> and C<O_APPEND>), the
405following POSIX and non-POSIX constants are available (missing ones on
406your system are, as usual, C<0>):
407
408C<O_ASYNC>, C<O_DIRECT>, C<O_NOATIME>, C<O_CLOEXEC>, C<O_NOCTTY>, C<O_NOFOLLOW>,
409C<O_NONBLOCK>, C<O_EXEC>, C<O_SEARCH>, C<O_DIRECTORY>, C<O_DSYNC>,
410C<O_RSYNC>, C<O_SYNC>, C<O_PATH>, C<O_TMPFILE>, C<O_TTY_INIT> and C<O_ACCMODE>.
411
312 412
313=item aio_close $fh, $callback->($status) 413=item aio_close $fh, $callback->($status)
314 414
315Asynchronously close a file and call the callback with the result 415Asynchronously close a file and call the callback with the result
316code. 416code.
317 417
318Unlike the other functions operating on files, this function uses the 418Unfortunately, you can't do this to perl. Perl I<insists> very strongly on
319PerlIO layer to close the filehandle. The reason is that the PerlIO API 419closing the file descriptor associated with the filehandle itself.
320insists on closing the underlying fd itself, no matter what, and doesn't
321allow modifications to the fd. Unfortunately, it is not clear that you can
322call PerlIO from different threads (actually, its quite clear that this
323won't work in some cases), so while it likely works perfectly with simple
324file handles (such as the ones created by C<aio_open>) it might fail in
325interesting ways for others.
326 420
327Having said that, aio_close tries to clean up the filehandle as much as 421Therefore, C<aio_close> will not close the filehandle - instead it will
328possible before handing it to an io thread, and generally does work. 422use dup2 to overwrite the file descriptor with the write-end of a pipe
423(the pipe fd will be created on demand and will be cached).
329 424
425Or in other words: the file descriptor will be closed, but it will not be
426free for reuse until the perl filehandle is closed.
427
428=cut
429
430=item aio_seek $fh, $offset, $whence, $callback->($offs)
431
432Seeks the filehandle to the new C<$offset>, similarly to perl's
433C<sysseek>. The C<$whence> can use the traditional values (C<0> for
434C<IO::AIO::SEEK_SET>, C<1> for C<IO::AIO::SEEK_CUR> or C<2> for
435C<IO::AIO::SEEK_END>).
436
437The resulting absolute offset will be passed to the callback, or C<-1> in
438case of an error.
439
440In theory, the C<$whence> constants could be different than the
441corresponding values from L<Fcntl>, but perl guarantees they are the same,
442so don't panic.
443
444As a GNU/Linux (and maybe Solaris) extension, also the constants
445C<IO::AIO::SEEK_DATA> and C<IO::AIO::SEEK_HOLE> are available, if they
446could be found. No guarantees about suitability for use in C<aio_seek> or
447Perl's C<sysseek> can be made though, although I would naively assume they
448"just work".
330 449
331=item aio_read $fh,$offset,$length, $data,$dataoffset, $callback->($retval) 450=item aio_read $fh,$offset,$length, $data,$dataoffset, $callback->($retval)
332 451
333=item aio_write $fh,$offset,$length, $data,$dataoffset, $callback->($retval) 452=item aio_write $fh,$offset,$length, $data,$dataoffset, $callback->($retval)
334 453
335Reads or writes C<$length> bytes from the specified C<$fh> and C<$offset> 454Reads or writes C<$length> bytes from or to the specified C<$fh> and
336into the scalar given by C<$data> and offset C<$dataoffset> and calls the 455C<$offset> into the scalar given by C<$data> and offset C<$dataoffset> and
337callback without the actual number of bytes read (or -1 on error, just 456calls the callback with the actual number of bytes transferred (or -1 on
338like the syscall). 457error, just like the syscall).
458
459C<aio_read> will, like C<sysread>, shrink or grow the C<$data> scalar to
460offset plus the actual number of bytes read.
339 461
340If C<$offset> is undefined, then the current file descriptor offset will 462If C<$offset> is undefined, then the current file descriptor offset will
341be used (and updated), otherwise the file descriptor offset will not be 463be used (and updated), otherwise the file descriptor offset will not be
342changed by these calls. 464changed by these calls.
343 465
344If C<$length> is undefined in C<aio_write>, use the remaining length of C<$data>. 466If C<$length> is undefined in C<aio_write>, use the remaining length of
467C<$data>.
345 468
346If C<$dataoffset> is less than zero, it will be counted from the end of 469If C<$dataoffset> is less than zero, it will be counted from the end of
347C<$data>. 470C<$data>.
348 471
349The C<$data> scalar I<MUST NOT> be modified in any way while the request 472The C<$data> scalar I<MUST NOT> be modified in any way while the request
363 486
364Tries to copy C<$length> bytes from C<$in_fh> to C<$out_fh>. It starts 487Tries to copy C<$length> bytes from C<$in_fh> to C<$out_fh>. It starts
365reading at byte offset C<$in_offset>, and starts writing at the current 488reading at byte offset C<$in_offset>, and starts writing at the current
366file offset of C<$out_fh>. Because of that, it is not safe to issue more 489file offset of C<$out_fh>. Because of that, it is not safe to issue more
367than one C<aio_sendfile> per C<$out_fh>, as they will interfere with each 490than one C<aio_sendfile> per C<$out_fh>, as they will interfere with each
368other. 491other. The same C<$in_fh> works fine though, as this function does not
492move or use the file offset of C<$in_fh>.
369 493
494Please note that C<aio_sendfile> can read more bytes from C<$in_fh> than
495are written, and there is no way to find out how many more bytes have been
496read from C<aio_sendfile> alone, as C<aio_sendfile> only provides the
497number of bytes written to C<$out_fh>. Only if the result value equals
498C<$length> one can assume that C<$length> bytes have been read.
499
500Unlike with other C<aio_> functions, it makes a lot of sense to use
501C<aio_sendfile> on non-blocking sockets, as long as one end (typically
502the C<$in_fh>) is a file - the file I/O will then be asynchronous, while
503the socket I/O will be non-blocking. Note, however, that you can run
504into a trap where C<aio_sendfile> reads some data with readahead, then
505fails to write all data, and when the socket is ready the next time, the
506data in the cache is already lost, forcing C<aio_sendfile> to again hit
507the disk. Explicit C<aio_read> + C<aio_write> let's you better control
508resource usage.
509
370This call tries to make use of a native C<sendfile> syscall to provide 510This call tries to make use of a native C<sendfile>-like syscall to
371zero-copy operation. For this to work, C<$out_fh> should refer to a 511provide zero-copy operation. For this to work, C<$out_fh> should refer to
372socket, and C<$in_fh> should refer to mmap'able file. 512a socket, and C<$in_fh> should refer to an mmap'able file.
373 513
374If the native sendfile call fails or is not implemented, it will be 514If a native sendfile cannot be found or it fails with C<ENOSYS>,
375emulated, so you can call C<aio_sendfile> on any type of filehandle 515C<EINVAL>, C<ENOTSUP>, C<EOPNOTSUPP>, C<EAFNOSUPPORT>, C<EPROTOTYPE> or
516C<ENOTSOCK>, it will be emulated, so you can call C<aio_sendfile> on any
376regardless of the limitations of the operating system. 517type of filehandle regardless of the limitations of the operating system.
377 518
378Please note, however, that C<aio_sendfile> can read more bytes from 519As native sendfile syscalls (as practically any non-POSIX interface hacked
379C<$in_fh> than are written, and there is no way to find out how many 520together in a hurry to improve benchmark numbers) tend to be rather buggy
380bytes have been read from C<aio_sendfile> alone, as C<aio_sendfile> only 521on many systems, this implementation tries to work around some known bugs
381provides the number of bytes written to C<$out_fh>. Only if the result 522in Linux and FreeBSD kernels (probably others, too), but that might fail,
382value equals C<$length> one can assume that C<$length> bytes have been 523so you really really should check the return value of C<aio_sendfile> -
383read. 524fewer bytes than expected might have been transferred.
384 525
385 526
386=item aio_readahead $fh,$offset,$length, $callback->($retval) 527=item aio_readahead $fh,$offset,$length, $callback->($retval)
387 528
388C<aio_readahead> populates the page cache with data from a file so that 529C<aio_readahead> populates the page cache with data from a file so that
392whole pages, so that offset is effectively rounded down to a page boundary 533whole pages, so that offset is effectively rounded down to a page boundary
393and bytes are read up to the next page boundary greater than or equal to 534and bytes are read up to the next page boundary greater than or equal to
394(off-set+length). C<aio_readahead> does not read beyond the end of the 535(off-set+length). C<aio_readahead> does not read beyond the end of the
395file. The current file offset of the file is left unchanged. 536file. The current file offset of the file is left unchanged.
396 537
397If that syscall doesn't exist (likely if your OS isn't Linux) it will be 538If that syscall doesn't exist (likely if your kernel isn't Linux) it will
398emulated by simply reading the data, which would have a similar effect. 539be emulated by simply reading the data, which would have a similar effect.
399 540
400 541
401=item aio_stat $fh_or_path, $callback->($status) 542=item aio_stat $fh_or_path, $callback->($status)
402 543
403=item aio_lstat $fh, $callback->($status) 544=item aio_lstat $fh, $callback->($status)
404 545
405Works like perl's C<stat> or C<lstat> in void context. The callback will 546Works almost exactly like perl's C<stat> or C<lstat> in void context. The
406be called after the stat and the results will be available using C<stat _> 547callback will be called after the stat and the results will be available
407or C<-s _> etc... 548using C<stat _> or C<-s _> and other tests (with the exception of C<-B>
549and C<-T>).
408 550
409The pathname passed to C<aio_stat> must be absolute. See API NOTES, above, 551The pathname passed to C<aio_stat> must be absolute. See API NOTES, above,
410for an explanation. 552for an explanation.
411 553
412Currently, the stats are always 64-bit-stats, i.e. instead of returning an 554Currently, the stats are always 64-bit-stats, i.e. instead of returning an
413error when stat'ing a large file, the results will be silently truncated 555error when stat'ing a large file, the results will be silently truncated
414unless perl itself is compiled with large file support. 556unless perl itself is compiled with large file support.
557
558To help interpret the mode and dev/rdev stat values, IO::AIO offers the
559following constants and functions (if not implemented, the constants will
560be C<0> and the functions will either C<croak> or fall back on traditional
561behaviour).
562
563C<S_IFMT>, C<S_IFIFO>, C<S_IFCHR>, C<S_IFBLK>, C<S_IFLNK>, C<S_IFREG>,
564C<S_IFDIR>, C<S_IFWHT>, C<S_IFSOCK>, C<IO::AIO::major $dev_t>,
565C<IO::AIO::minor $dev_t>, C<IO::AIO::makedev $major, $minor>.
566
567To access higher resolution stat timestamps, see L<SUBSECOND STAT TIME
568ACCESS>.
415 569
416Example: Print the length of F</etc/passwd>: 570Example: Print the length of F</etc/passwd>:
417 571
418 aio_stat "/etc/passwd", sub { 572 aio_stat "/etc/passwd", sub {
419 $_[0] and die "stat failed: $!"; 573 $_[0] and die "stat failed: $!";
420 print "size is ", -s _, "\n"; 574 print "size is ", -s _, "\n";
421 }; 575 };
422 576
423 577
578=item aio_statvfs $fh_or_path, $callback->($statvfs)
579
580Works like the POSIX C<statvfs> or C<fstatvfs> syscalls, depending on
581whether a file handle or path was passed.
582
583On success, the callback is passed a hash reference with the following
584members: C<bsize>, C<frsize>, C<blocks>, C<bfree>, C<bavail>, C<files>,
585C<ffree>, C<favail>, C<fsid>, C<flag> and C<namemax>. On failure, C<undef>
586is passed.
587
588The following POSIX IO::AIO::ST_* constants are defined: C<ST_RDONLY> and
589C<ST_NOSUID>.
590
591The following non-POSIX IO::AIO::ST_* flag masks are defined to
592their correct value when available, or to C<0> on systems that do
593not support them: C<ST_NODEV>, C<ST_NOEXEC>, C<ST_SYNCHRONOUS>,
594C<ST_MANDLOCK>, C<ST_WRITE>, C<ST_APPEND>, C<ST_IMMUTABLE>, C<ST_NOATIME>,
595C<ST_NODIRATIME> and C<ST_RELATIME>.
596
597Example: stat C</wd> and dump out the data if successful.
598
599 aio_statvfs "/wd", sub {
600 my $f = $_[0]
601 or die "statvfs: $!";
602
603 use Data::Dumper;
604 say Dumper $f;
605 };
606
607 # result:
608 {
609 bsize => 1024,
610 bfree => 4333064312,
611 blocks => 10253828096,
612 files => 2050765568,
613 flag => 4096,
614 favail => 2042092649,
615 bavail => 4333064312,
616 ffree => 2042092649,
617 namemax => 255,
618 frsize => 1024,
619 fsid => 1810
620 }
621
424=item aio_utime $fh_or_path, $atime, $mtime, $callback->($status) 622=item aio_utime $fh_or_path, $atime, $mtime, $callback->($status)
425 623
426Works like perl's C<utime> function (including the special case of $atime 624Works like perl's C<utime> function (including the special case of $atime
427and $mtime being undef). Fractional times are supported if the underlying 625and $mtime being undef). Fractional times are supported if the underlying
428syscalls support them. 626syscalls support them.
429 627
430When called with a pathname, uses utimes(2) if available, otherwise 628When called with a pathname, uses utimensat(2) or utimes(2) if available,
431utime(2). If called on a file descriptor, uses futimes(2) if available, 629otherwise utime(2). If called on a file descriptor, uses futimens(2)
432otherwise returns ENOSYS, so this is not portable. 630or futimes(2) if available, otherwise returns ENOSYS, so this is not
631portable.
433 632
434Examples: 633Examples:
435 634
436 # set atime and mtime to current time (basically touch(1)): 635 # set atime and mtime to current time (basically touch(1)):
437 aio_utime "path", undef, undef; 636 aio_utime "path", undef, undef;
455=item aio_truncate $fh_or_path, $offset, $callback->($status) 654=item aio_truncate $fh_or_path, $offset, $callback->($status)
456 655
457Works like truncate(2) or ftruncate(2). 656Works like truncate(2) or ftruncate(2).
458 657
459 658
659=item aio_allocate $fh, $mode, $offset, $len, $callback->($status)
660
661Allocates or frees disk space according to the C<$mode> argument. See the
662linux C<fallocate> documentation for details.
663
664C<$mode> is usually C<0> or C<IO::AIO::FALLOC_FL_KEEP_SIZE> to allocate
665space, or C<IO::AIO::FALLOC_FL_PUNCH_HOLE | IO::AIO::FALLOC_FL_KEEP_SIZE>,
666to deallocate a file range.
667
668IO::AIO also supports C<FALLOC_FL_COLLAPSE_RANGE>, to remove a range
669(without leaving a hole), C<FALLOC_FL_ZERO_RANGE>, to zero a range,
670C<FALLOC_FL_INSERT_RANGE> to insert a range and C<FALLOC_FL_UNSHARE_RANGE>
671to unshare shared blocks (see your L<fallocate(2)> manpage).
672
673The file system block size used by C<fallocate> is presumably the
674C<f_bsize> returned by C<statvfs>, but different filesystems and filetypes
675can dictate other limitations.
676
677If C<fallocate> isn't available or cannot be emulated (currently no
678emulation will be attempted), passes C<-1> and sets C<$!> to C<ENOSYS>.
679
680
460=item aio_chmod $fh_or_path, $mode, $callback->($status) 681=item aio_chmod $fh_or_path, $mode, $callback->($status)
461 682
462Works like perl's C<chmod> function. 683Works like perl's C<chmod> function.
463 684
464 685
466 687
467Asynchronously unlink (delete) a file and call the callback with the 688Asynchronously unlink (delete) a file and call the callback with the
468result code. 689result code.
469 690
470 691
471=item aio_mknod $path, $mode, $dev, $callback->($status) 692=item aio_mknod $pathname, $mode, $dev, $callback->($status)
472 693
473[EXPERIMENTAL] 694[EXPERIMENTAL]
474 695
475Asynchronously create a device node (or fifo). See mknod(2). 696Asynchronously create a device node (or fifo). See mknod(2).
476 697
477The only (POSIX-) portable way of calling this function is: 698The only (POSIX-) portable way of calling this function is:
478 699
479 aio_mknod $path, IO::AIO::S_IFIFO | $mode, 0, sub { ... 700 aio_mknod $pathname, IO::AIO::S_IFIFO | $mode, 0, sub { ...
480 701
702See C<aio_stat> for info about some potentially helpful extra constants
703and functions.
481 704
482=item aio_link $srcpath, $dstpath, $callback->($status) 705=item aio_link $srcpath, $dstpath, $callback->($status)
483 706
484Asynchronously create a new link to the existing object at C<$srcpath> at 707Asynchronously create a new link to the existing object at C<$srcpath> at
485the path C<$dstpath> and call the callback with the result code. 708the path C<$dstpath> and call the callback with the result code.
489 712
490Asynchronously create a new symbolic link to the existing object at C<$srcpath> at 713Asynchronously create a new symbolic link to the existing object at C<$srcpath> at
491the path C<$dstpath> and call the callback with the result code. 714the path C<$dstpath> and call the callback with the result code.
492 715
493 716
494=item aio_readlink $path, $callback->($link) 717=item aio_readlink $pathname, $callback->($link)
495 718
496Asynchronously read the symlink specified by C<$path> and pass it to 719Asynchronously read the symlink specified by C<$path> and pass it to
497the callback. If an error occurs, nothing or undef gets passed to the 720the callback. If an error occurs, nothing or undef gets passed to the
498callback. 721callback.
499 722
500 723
724=item aio_realpath $pathname, $callback->($path)
725
726Asynchronously make the path absolute and resolve any symlinks in
727C<$path>. The resulting path only consists of directories (same as
728L<Cwd::realpath>).
729
730This request can be used to get the absolute path of the current working
731directory by passing it a path of F<.> (a single dot).
732
733
501=item aio_rename $srcpath, $dstpath, $callback->($status) 734=item aio_rename $srcpath, $dstpath, $callback->($status)
502 735
503Asynchronously rename the object at C<$srcpath> to C<$dstpath>, just as 736Asynchronously rename the object at C<$srcpath> to C<$dstpath>, just as
504rename(2) and call the callback with the result code. 737rename(2) and call the callback with the result code.
738
739On systems that support the AIO::WD working directory abstraction
740natively, the case C<[$wd, "."]> as C<$srcpath> is specialcased - instead
741of failing, C<rename> is called on the absolute path of C<$wd>.
742
743
744=item aio_rename2 $srcpath, $dstpath, $flags, $callback->($status)
745
746Basically a version of C<aio_rename> with an additional C<$flags>
747argument. Calling this with C<$flags=0> is the same as calling
748C<aio_rename>.
749
750Non-zero flags are currently only supported on GNU/Linux systems that
751support renameat2. Other systems fail with C<ENOSYS> in this case.
752
753The following constants are available (missing ones are, as usual C<0>),
754see renameat2(2) for details:
755
756C<IO::AIO::RENAME_NOREPLACE>, C<IO::AIO::RENAME_EXCHANGE>
757and C<IO::AIO::RENAME_WHITEOUT>.
505 758
506 759
507=item aio_mkdir $pathname, $mode, $callback->($status) 760=item aio_mkdir $pathname, $mode, $callback->($status)
508 761
509Asynchronously mkdir (create) a directory and call the callback with 762Asynchronously mkdir (create) a directory and call the callback with
514=item aio_rmdir $pathname, $callback->($status) 767=item aio_rmdir $pathname, $callback->($status)
515 768
516Asynchronously rmdir (delete) a directory and call the callback with the 769Asynchronously rmdir (delete) a directory and call the callback with the
517result code. 770result code.
518 771
772On systems that support the AIO::WD working directory abstraction
773natively, the case C<[$wd, "."]> is specialcased - instead of failing,
774C<rmdir> is called on the absolute path of C<$wd>.
775
519 776
520=item aio_readdir $pathname, $callback->($entries) 777=item aio_readdir $pathname, $callback->($entries)
521 778
522Unlike the POSIX call of the same name, C<aio_readdir> reads an entire 779Unlike the POSIX call of the same name, C<aio_readdir> reads an entire
523directory (i.e. opendir + readdir + closedir). The entries will not be 780directory (i.e. opendir + readdir + closedir). The entries will not be
524sorted, and will B<NOT> include the C<.> and C<..> entries. 781sorted, and will B<NOT> include the C<.> and C<..> entries.
525 782
526The callback a single argument which is either C<undef> or an array-ref 783The callback is passed a single argument which is either C<undef> or an
527with the filenames. 784array-ref with the filenames.
528 785
529 786
787=item aio_readdirx $pathname, $flags, $callback->($entries, $flags)
788
789Quite similar to C<aio_readdir>, but the C<$flags> argument allows one to
790tune behaviour and output format. In case of an error, C<$entries> will be
791C<undef>.
792
793The flags are a combination of the following constants, ORed together (the
794flags will also be passed to the callback, possibly modified):
795
796=over 4
797
798=item IO::AIO::READDIR_DENTS
799
800Normally the callback gets an arrayref consisting of names only (as
801with C<aio_readdir>). If this flag is set, then the callback gets an
802arrayref with C<[$name, $type, $inode]> arrayrefs, each describing a
803single directory entry in more detail:
804
805C<$name> is the name of the entry.
806
807C<$type> is one of the C<IO::AIO::DT_xxx> constants:
808
809C<IO::AIO::DT_UNKNOWN>, C<IO::AIO::DT_FIFO>, C<IO::AIO::DT_CHR>, C<IO::AIO::DT_DIR>,
810C<IO::AIO::DT_BLK>, C<IO::AIO::DT_REG>, C<IO::AIO::DT_LNK>, C<IO::AIO::DT_SOCK>,
811C<IO::AIO::DT_WHT>.
812
813C<IO::AIO::DT_UNKNOWN> means just that: readdir does not know. If you need
814to know, you have to run stat yourself. Also, for speed/memory reasons,
815the C<$type> scalars are read-only: you must not modify them.
816
817C<$inode> is the inode number (which might not be exact on systems with 64
818bit inode numbers and 32 bit perls). This field has unspecified content on
819systems that do not deliver the inode information.
820
821=item IO::AIO::READDIR_DIRS_FIRST
822
823When this flag is set, then the names will be returned in an order where
824likely directories come first, in optimal stat order. This is useful when
825you need to quickly find directories, or you want to find all directories
826while avoiding to stat() each entry.
827
828If the system returns type information in readdir, then this is used
829to find directories directly. Otherwise, likely directories are names
830beginning with ".", or otherwise names with no dots, of which names with
831short names are tried first.
832
833=item IO::AIO::READDIR_STAT_ORDER
834
835When this flag is set, then the names will be returned in an order
836suitable for stat()'ing each one. That is, when you plan to stat() most or
837all files in the given directory, then the returned order will likely be
838faster.
839
840If both this flag and C<IO::AIO::READDIR_DIRS_FIRST> are specified,
841then the likely dirs come first, resulting in a less optimal stat order
842for stat'ing all entries, but likely a more optimal order for finding
843subdirectories.
844
845=item IO::AIO::READDIR_FOUND_UNKNOWN
846
847This flag should not be set when calling C<aio_readdirx>. Instead, it
848is being set by C<aio_readdirx>, when any of the C<$type>'s found were
849C<IO::AIO::DT_UNKNOWN>. The absence of this flag therefore indicates that all
850C<$type>'s are known, which can be used to speed up some algorithms.
851
852=back
853
854
855=item aio_slurp $pathname, $offset, $length, $data, $callback->($status)
856
857Opens, reads and closes the given file. The data is put into C<$data>,
858which is resized as required.
859
860If C<$offset> is negative, then it is counted from the end of the file.
861
862If C<$length> is zero, then the remaining length of the file is
863used. Also, in this case, the same limitations to modifying C<$data> apply
864as when IO::AIO::mmap is used, i.e. it must only be modified in-place
865with C<substr>. If the size of the file is known, specifying a non-zero
866C<$length> results in a performance advantage.
867
868This request is similar to the older C<aio_load> request, but since it is
869a single request, it might be more efficient to use.
870
871Example: load F</etc/passwd> into C<$passwd>.
872
873 my $passwd;
874 aio_slurp "/etc/passwd", 0, 0, $passwd, sub {
875 $_[0] >= 0
876 or die "/etc/passwd: $!\n";
877
878 printf "/etc/passwd is %d bytes long, and contains:\n", length $passwd;
879 print $passwd;
880 };
881 IO::AIO::flush;
882
883
530=item aio_load $path, $data, $callback->($status) 884=item aio_load $pathname, $data, $callback->($status)
531 885
532This is a composite request that tries to fully load the given file into 886This is a composite request that tries to fully load the given file into
533memory. Status is the same as with aio_read. 887memory. Status is the same as with aio_read.
534 888
889Using C<aio_slurp> might be more efficient, as it is a single request.
890
535=cut 891=cut
536 892
537sub aio_load($$;$) { 893sub aio_load($$;$) {
538 aio_block {
539 my ($path, undef, $cb) = @_; 894 my ($path, undef, $cb) = @_;
540 my $data = \$_[1]; 895 my $data = \$_[1];
541 896
542 my $pri = aioreq_pri; 897 my $pri = aioreq_pri;
543 my $grp = aio_group $cb; 898 my $grp = aio_group $cb;
899
900 aioreq_pri $pri;
901 add $grp aio_open $path, O_RDONLY, 0, sub {
902 my $fh = shift
903 or return $grp->result (-1);
544 904
545 aioreq_pri $pri; 905 aioreq_pri $pri;
546 add $grp aio_open $path, O_RDONLY, 0, sub {
547 my $fh = shift
548 or return $grp->result (-1);
549
550 aioreq_pri $pri;
551 add $grp aio_read $fh, 0, (-s $fh), $$data, 0, sub { 906 add $grp aio_read $fh, 0, (-s $fh), $$data, 0, sub {
552 $grp->result ($_[0]); 907 $grp->result ($_[0]);
553 };
554 }; 908 };
555
556 $grp
557 } 909 };
910
911 $grp
558} 912}
559 913
560=item aio_copy $srcpath, $dstpath, $callback->($status) 914=item aio_copy $srcpath, $dstpath, $callback->($status)
561 915
562Try to copy the I<file> (directories not supported as either source or 916Try to copy the I<file> (directories not supported as either source or
563destination) from C<$srcpath> to C<$dstpath> and call the callback with 917destination) from C<$srcpath> to C<$dstpath> and call the callback with
564the C<0> (error) or C<-1> ok. 918a status of C<0> (ok) or C<-1> (error, see C<$!>).
565 919
920Existing destination files will be truncated.
921
566This is a composite request that it creates the destination file with 922This is a composite request that creates the destination file with
567mode 0200 and copies the contents of the source file into it using 923mode 0200 and copies the contents of the source file into it using
568C<aio_sendfile>, followed by restoring atime, mtime, access mode and 924C<aio_sendfile>, followed by restoring atime, mtime, access mode and
569uid/gid, in that order. 925uid/gid, in that order.
570 926
571If an error occurs, the partial destination file will be unlinked, if 927If an error occurs, the partial destination file will be unlinked, if
573errors are being ignored. 929errors are being ignored.
574 930
575=cut 931=cut
576 932
577sub aio_copy($$;$) { 933sub aio_copy($$;$) {
578 aio_block {
579 my ($src, $dst, $cb) = @_; 934 my ($src, $dst, $cb) = @_;
580 935
581 my $pri = aioreq_pri; 936 my $pri = aioreq_pri;
582 my $grp = aio_group $cb; 937 my $grp = aio_group $cb;
583 938
584 aioreq_pri $pri; 939 aioreq_pri $pri;
585 add $grp aio_open $src, O_RDONLY, 0, sub { 940 add $grp aio_open $src, O_RDONLY, 0, sub {
586 if (my $src_fh = $_[0]) { 941 if (my $src_fh = $_[0]) {
587 my @stat = stat $src_fh; 942 my @stat = stat $src_fh; # hmm, might block over nfs?
588 943
589 aioreq_pri $pri; 944 aioreq_pri $pri;
590 add $grp aio_open $dst, O_CREAT | O_WRONLY | O_TRUNC, 0200, sub { 945 add $grp aio_open $dst, O_CREAT | O_WRONLY | O_TRUNC, 0200, sub {
591 if (my $dst_fh = $_[0]) { 946 if (my $dst_fh = $_[0]) {
592 aioreq_pri $pri; 947 aioreq_pri $pri;
593 add $grp aio_sendfile $dst_fh, $src_fh, 0, $stat[7], sub { 948 add $grp aio_sendfile $dst_fh, $src_fh, 0, $stat[7], sub {
594 if ($_[0] == $stat[7]) { 949 if ($_[0] == $stat[7]) {
595 $grp->result (0); 950 $grp->result (0);
596 close $src_fh; 951 close $src_fh;
597 952
598 # those should not normally block. should. should.
599 utime $stat[8], $stat[9], $dst;
600 chmod $stat[2] & 07777, $dst_fh;
601 chown $stat[4], $stat[5], $dst_fh;
602 close $dst_fh;
603 } else { 953 my $ch = sub {
604 $grp->result (-1);
605 close $src_fh;
606 close $dst_fh;
607
608 aioreq $pri; 954 aioreq_pri $pri;
955 add $grp aio_chmod $dst_fh, $stat[2] & 07777, sub {
956 aioreq_pri $pri;
957 add $grp aio_chown $dst_fh, $stat[4], $stat[5], sub {
958 aioreq_pri $pri;
609 add $grp aio_unlink $dst; 959 add $grp aio_close $dst_fh;
960 }
961 };
610 } 962 };
963
964 aioreq_pri $pri;
965 add $grp aio_utime $dst_fh, $stat[8], $stat[9], sub {
966 if ($_[0] < 0 && $! == ENOSYS) {
967 aioreq_pri $pri;
968 add $grp aio_utime $dst, $stat[8], $stat[9], $ch;
969 } else {
970 $ch->();
971 }
972 };
973 } else {
974 $grp->result (-1);
975 close $src_fh;
976 close $dst_fh;
977
978 aioreq $pri;
979 add $grp aio_unlink $dst;
611 }; 980 }
612 } else {
613 $grp->result (-1);
614 } 981 };
982 } else {
983 $grp->result (-1);
615 }, 984 }
616
617 } else {
618 $grp->result (-1);
619 } 985 },
986
987 } else {
988 $grp->result (-1);
620 }; 989 }
621
622 $grp
623 } 990 };
991
992 $grp
624} 993}
625 994
626=item aio_move $srcpath, $dstpath, $callback->($status) 995=item aio_move $srcpath, $dstpath, $callback->($status)
627 996
628Try to move the I<file> (directories not supported as either source or 997Try to move the I<file> (directories not supported as either source or
629destination) from C<$srcpath> to C<$dstpath> and call the callback with 998destination) from C<$srcpath> to C<$dstpath> and call the callback with
630the C<0> (error) or C<-1> ok. 999a status of C<0> (ok) or C<-1> (error, see C<$!>).
631 1000
632This is a composite request that tries to rename(2) the file first. If 1001This is a composite request that tries to rename(2) the file first; if
633rename files with C<EXDEV>, it copies the file with C<aio_copy> and, if 1002rename fails with C<EXDEV>, it copies the file with C<aio_copy> and, if
634that is successful, unlinking the C<$srcpath>. 1003that is successful, unlinks the C<$srcpath>.
635 1004
636=cut 1005=cut
637 1006
638sub aio_move($$;$) { 1007sub aio_move($$;$) {
639 aio_block {
640 my ($src, $dst, $cb) = @_; 1008 my ($src, $dst, $cb) = @_;
641 1009
642 my $pri = aioreq_pri; 1010 my $pri = aioreq_pri;
643 my $grp = aio_group $cb; 1011 my $grp = aio_group $cb;
644 1012
645 aioreq_pri $pri; 1013 aioreq_pri $pri;
646 add $grp aio_rename $src, $dst, sub { 1014 add $grp aio_rename $src, $dst, sub {
647 if ($_[0] && $! == EXDEV) { 1015 if ($_[0] && $! == EXDEV) {
648 aioreq_pri $pri; 1016 aioreq_pri $pri;
649 add $grp aio_copy $src, $dst, sub { 1017 add $grp aio_copy $src, $dst, sub {
650 $grp->result ($_[0]);
651
652 if (!$_[0]) {
653 aioreq_pri $pri;
654 add $grp aio_unlink $src;
655 }
656 };
657 } else {
658 $grp->result ($_[0]); 1018 $grp->result ($_[0]);
1019
1020 unless ($_[0]) {
1021 aioreq_pri $pri;
1022 add $grp aio_unlink $src;
1023 }
659 } 1024 };
1025 } else {
1026 $grp->result ($_[0]);
660 }; 1027 }
661
662 $grp
663 } 1028 };
1029
1030 $grp
664} 1031}
665 1032
666=item aio_scandir $path, $maxreq, $callback->($dirs, $nondirs) 1033=item aio_scandir $pathname, $maxreq, $callback->($dirs, $nondirs)
667 1034
668Scans a directory (similar to C<aio_readdir>) but additionally tries to 1035Scans a directory (similar to C<aio_readdir>) but additionally tries to
669efficiently separate the entries of directory C<$path> into two sets of 1036efficiently separate the entries of directory C<$path> into two sets of
670names, directories you can recurse into (directories), and ones you cannot 1037names, directories you can recurse into (directories), and ones you cannot
671recurse into (everything else, including symlinks to directories). 1038recurse into (everything else, including symlinks to directories).
672 1039
673C<aio_scandir> is a composite request that creates of many sub requests_ 1040C<aio_scandir> is a composite request that generates many sub requests.
674C<$maxreq> specifies the maximum number of outstanding aio requests that 1041C<$maxreq> specifies the maximum number of outstanding aio requests that
675this function generates. If it is C<< <= 0 >>, then a suitable default 1042this function generates. If it is C<< <= 0 >>, then a suitable default
676will be chosen (currently 4). 1043will be chosen (currently 4).
677 1044
678On error, the callback is called without arguments, otherwise it receives 1045On error, the callback is called without arguments, otherwise it receives
688 1055
689Implementation notes. 1056Implementation notes.
690 1057
691The C<aio_readdir> cannot be avoided, but C<stat()>'ing every entry can. 1058The C<aio_readdir> cannot be avoided, but C<stat()>'ing every entry can.
692 1059
1060If readdir returns file type information, then this is used directly to
1061find directories.
1062
693After reading the directory, the modification time, size etc. of the 1063Otherwise, after reading the directory, the modification time, size etc.
694directory before and after the readdir is checked, and if they match (and 1064of the directory before and after the readdir is checked, and if they
695isn't the current time), the link count will be used to decide how many 1065match (and isn't the current time), the link count will be used to decide
696entries are directories (if >= 2). Otherwise, no knowledge of the number 1066how many entries are directories (if >= 2). Otherwise, no knowledge of the
697of subdirectories will be assumed. 1067number of subdirectories will be assumed.
698 1068
699Then entries will be sorted into likely directories (everything without 1069Then entries will be sorted into likely directories a non-initial dot
700a non-initial dot currently) and likely non-directories (everything 1070currently) and likely non-directories (see C<aio_readdirx>). Then every
701else). Then every entry plus an appended C</.> will be C<stat>'ed, 1071entry plus an appended C</.> will be C<stat>'ed, likely directories first,
702likely directories first. If that succeeds, it assumes that the entry 1072in order of their inode numbers. If that succeeds, it assumes that the
703is a directory or a symlink to directory (which will be checked 1073entry is a directory or a symlink to directory (which will be checked
704seperately). This is often faster than stat'ing the entry itself because 1074separately). This is often faster than stat'ing the entry itself because
705filesystems might detect the type of the entry without reading the inode 1075filesystems might detect the type of the entry without reading the inode
706data (e.g. ext2fs filetype feature). 1076data (e.g. ext2fs filetype feature), even on systems that cannot return
1077the filetype information on readdir.
707 1078
708If the known number of directories (link count - 2) has been reached, the 1079If the known number of directories (link count - 2) has been reached, the
709rest of the entries is assumed to be non-directories. 1080rest of the entries is assumed to be non-directories.
710 1081
711This only works with certainty on POSIX (= UNIX) filesystems, which 1082This only works with certainty on POSIX (= UNIX) filesystems, which
716directory counting heuristic. 1087directory counting heuristic.
717 1088
718=cut 1089=cut
719 1090
720sub aio_scandir($$;$) { 1091sub aio_scandir($$;$) {
721 aio_block {
722 my ($path, $maxreq, $cb) = @_; 1092 my ($path, $maxreq, $cb) = @_;
723 1093
724 my $pri = aioreq_pri; 1094 my $pri = aioreq_pri;
725 1095
726 my $grp = aio_group $cb; 1096 my $grp = aio_group $cb;
727 1097
728 $maxreq = 4 if $maxreq <= 0; 1098 $maxreq = 4 if $maxreq <= 0;
1099
1100 # get a wd object
1101 aioreq_pri $pri;
1102 add $grp aio_wd $path, sub {
1103 $_[0]
1104 or return $grp->result ();
1105
1106 my $wd = [shift, "."];
729 1107
730 # stat once 1108 # stat once
731 aioreq_pri $pri; 1109 aioreq_pri $pri;
732 add $grp aio_stat $path, sub { 1110 add $grp aio_stat $wd, sub {
733 return $grp->result () if $_[0]; 1111 return $grp->result () if $_[0];
734 my $now = time; 1112 my $now = time;
735 my $hash1 = join ":", (stat _)[0,1,3,7,9]; 1113 my $hash1 = join ":", (stat _)[0,1,3,7,9];
736 1114
737 # read the directory entries 1115 # read the directory entries
738 aioreq_pri $pri; 1116 aioreq_pri $pri;
739 add $grp aio_readdir $path, sub { 1117 add $grp aio_readdirx $wd, READDIR_DIRS_FIRST, sub {
740 my $entries = shift 1118 my $entries = shift
741 or return $grp->result (); 1119 or return $grp->result ();
742 1120
743 # stat the dir another time 1121 # stat the dir another time
744 aioreq_pri $pri; 1122 aioreq_pri $pri;
745 add $grp aio_stat $path, sub { 1123 add $grp aio_stat $wd, sub {
746 my $hash2 = join ":", (stat _)[0,1,3,7,9]; 1124 my $hash2 = join ":", (stat _)[0,1,3,7,9];
747 1125
748 my $ndirs; 1126 my $ndirs;
749 1127
750 # take the slow route if anything looks fishy 1128 # take the slow route if anything looks fishy
751 if ($hash1 ne $hash2 or (stat _)[9] == $now) { 1129 if ($hash1 ne $hash2 or (stat _)[9] == $now) {
752 $ndirs = -1; 1130 $ndirs = -1;
753 } else { 1131 } else {
754 # if nlink == 2, we are finished 1132 # if nlink == 2, we are finished
755 # on non-posix-fs's, we rely on nlink < 2 1133 # for non-posix-fs's, we rely on nlink < 2
756 $ndirs = (stat _)[3] - 2 1134 $ndirs = (stat _)[3] - 2
757 or return $grp->result ([], $entries); 1135 or return $grp->result ([], $entries);
758 } 1136 }
759 1137
760 # sort into likely dirs and likely nondirs
761 # dirs == files without ".", short entries first
762 $entries = [map $_->[0],
763 sort { $b->[1] cmp $a->[1] }
764 map [$_, sprintf "%s%04d", (/.\./ ? "1" : "0"), length],
765 @$entries];
766
767 my (@dirs, @nondirs); 1138 my (@dirs, @nondirs);
768 1139
769 my $statgrp = add $grp aio_group sub { 1140 my $statgrp = add $grp aio_group sub {
770 $grp->result (\@dirs, \@nondirs); 1141 $grp->result (\@dirs, \@nondirs);
771 }; 1142 };
772 1143
773 limit $statgrp $maxreq; 1144 limit $statgrp $maxreq;
774 feed $statgrp sub { 1145 feed $statgrp sub {
775 return unless @$entries; 1146 return unless @$entries;
776 my $entry = pop @$entries; 1147 my $entry = shift @$entries;
777 1148
778 aioreq_pri $pri; 1149 aioreq_pri $pri;
1150 $wd->[1] = "$entry/.";
779 add $statgrp aio_stat "$path/$entry/.", sub { 1151 add $statgrp aio_stat $wd, sub {
780 if ($_[0] < 0) { 1152 if ($_[0] < 0) {
781 push @nondirs, $entry; 1153 push @nondirs, $entry;
782 } else { 1154 } else {
783 # need to check for real directory 1155 # need to check for real directory
784 aioreq_pri $pri; 1156 aioreq_pri $pri;
1157 $wd->[1] = $entry;
785 add $statgrp aio_lstat "$path/$entry", sub { 1158 add $statgrp aio_lstat $wd, sub {
786 if (-d _) { 1159 if (-d _) {
787 push @dirs, $entry; 1160 push @dirs, $entry;
788 1161
789 unless (--$ndirs) { 1162 unless (--$ndirs) {
790 push @nondirs, @$entries; 1163 push @nondirs, @$entries;
798 }; 1171 };
799 }; 1172 };
800 }; 1173 };
801 }; 1174 };
802 }; 1175 };
803
804 $grp
805 } 1176 };
1177
1178 $grp
806} 1179}
807 1180
808=item aio_rmtree $path, $callback->($status) 1181=item aio_rmtree $pathname, $callback->($status)
809 1182
810Delete a directory tree starting (and including) C<$path>, return the 1183Delete a directory tree starting (and including) C<$path>, return the
811status of the final C<rmdir> only. This is a composite request that 1184status of the final C<rmdir> only. This is a composite request that
812uses C<aio_scandir> to recurse into and rmdir directories, and unlink 1185uses C<aio_scandir> to recurse into and rmdir directories, and unlink
813everything else. 1186everything else.
814 1187
815=cut 1188=cut
816 1189
817sub aio_rmtree; 1190sub aio_rmtree;
818sub aio_rmtree($;$) { 1191sub aio_rmtree($;$) {
819 aio_block {
820 my ($path, $cb) = @_; 1192 my ($path, $cb) = @_;
821 1193
822 my $pri = aioreq_pri; 1194 my $pri = aioreq_pri;
823 my $grp = aio_group $cb; 1195 my $grp = aio_group $cb;
824 1196
825 aioreq_pri $pri; 1197 aioreq_pri $pri;
826 add $grp aio_scandir $path, 0, sub { 1198 add $grp aio_scandir $path, 0, sub {
827 my ($dirs, $nondirs) = @_; 1199 my ($dirs, $nondirs) = @_;
828 1200
829 my $dirgrp = aio_group sub { 1201 my $dirgrp = aio_group sub {
830 add $grp aio_rmdir $path, sub { 1202 add $grp aio_rmdir $path, sub {
831 $grp->result ($_[0]); 1203 $grp->result ($_[0]);
832 };
833 }; 1204 };
834
835 (aioreq_pri $pri), add $dirgrp aio_rmtree "$path/$_" for @$dirs;
836 (aioreq_pri $pri), add $dirgrp aio_unlink "$path/$_" for @$nondirs;
837
838 add $grp $dirgrp;
839 }; 1205 };
840 1206
841 $grp 1207 (aioreq_pri $pri), add $dirgrp aio_rmtree "$path/$_" for @$dirs;
1208 (aioreq_pri $pri), add $dirgrp aio_unlink "$path/$_" for @$nondirs;
1209
1210 add $grp $dirgrp;
842 } 1211 };
1212
1213 $grp
843} 1214}
1215
1216=item aio_fcntl $fh, $cmd, $arg, $callback->($status)
1217
1218=item aio_ioctl $fh, $request, $buf, $callback->($status)
1219
1220These work just like the C<fcntl> and C<ioctl> built-in functions, except
1221they execute asynchronously and pass the return value to the callback.
1222
1223Both calls can be used for a lot of things, some of which make more sense
1224to run asynchronously in their own thread, while some others make less
1225sense. For example, calls that block waiting for external events, such
1226as locking, will also lock down an I/O thread while it is waiting, which
1227can deadlock the whole I/O system. At the same time, there might be no
1228alternative to using a thread to wait.
1229
1230So in general, you should only use these calls for things that do
1231(filesystem) I/O, not for things that wait for other events (network,
1232other processes), although if you are careful and know what you are doing,
1233you still can.
1234
1235The following constants are available (missing ones are, as usual C<0>):
1236
1237C<F_DUPFD_CLOEXEC>,
1238
1239C<F_OFD_GETLK>, C<F_OFD_SETLK>, C<F_OFD_GETLKW>,
1240
1241C<FIFREEZE>, C<FITHAW>, C<FITRIM>, C<FICLONE>, C<FICLONERANGE>, C<FIDEDUPERANGE>.
1242
1243C<FS_IOC_GETFLAGS>, C<FS_IOC_SETFLAGS>, C<FS_IOC_GETVERSION>, C<FS_IOC_SETVERSION>,
1244C<FS_IOC_FIEMAP>.
1245
1246C<FS_IOC_FSGETXATTR>, C<FS_IOC_FSSETXATTR>, C<FS_IOC_SET_ENCRYPTION_POLICY>,
1247C<FS_IOC_GET_ENCRYPTION_PWSALT>, C<FS_IOC_GET_ENCRYPTION_POLICY>, C<FS_KEY_DESCRIPTOR_SIZE>.
1248
1249C<FS_SECRM_FL>, C<FS_UNRM_FL>, C<FS_COMPR_FL>, C<FS_SYNC_FL>, C<FS_IMMUTABLE_FL>,
1250C<FS_APPEND_FL>, C<FS_NODUMP_FL>, C<FS_NOATIME_FL>, C<FS_DIRTY_FL>,
1251C<FS_COMPRBLK_FL>, C<FS_NOCOMP_FL>, C<FS_ENCRYPT_FL>, C<FS_BTREE_FL>,
1252C<FS_INDEX_FL>, C<FS_JOURNAL_DATA_FL>, C<FS_NOTAIL_FL>, C<FS_DIRSYNC_FL>, C<FS_TOPDIR_FL>,
1253C<FS_FL_USER_MODIFIABLE>.
1254
1255C<FS_XFLAG_REALTIME>, C<FS_XFLAG_PREALLOC>, C<FS_XFLAG_IMMUTABLE>, C<FS_XFLAG_APPEND>,
1256C<FS_XFLAG_SYNC>, C<FS_XFLAG_NOATIME>, C<FS_XFLAG_NODUMP>, C<FS_XFLAG_RTINHERIT>,
1257C<FS_XFLAG_PROJINHERIT>, C<FS_XFLAG_NOSYMLINKS>, C<FS_XFLAG_EXTSIZE>, C<FS_XFLAG_EXTSZINHERIT>,
1258C<FS_XFLAG_NODEFRAG>, C<FS_XFLAG_FILESTREAM>, C<FS_XFLAG_DAX>, C<FS_XFLAG_HASATTR>,
1259
1260=item aio_sync $callback->($status)
1261
1262Asynchronously call sync and call the callback when finished.
844 1263
845=item aio_fsync $fh, $callback->($status) 1264=item aio_fsync $fh, $callback->($status)
846 1265
847Asynchronously call fsync on the given filehandle and call the callback 1266Asynchronously call fsync on the given filehandle and call the callback
848with the fsync result code. 1267with the fsync result code.
852Asynchronously call fdatasync on the given filehandle and call the 1271Asynchronously call fdatasync on the given filehandle and call the
853callback with the fdatasync result code. 1272callback with the fdatasync result code.
854 1273
855If this call isn't available because your OS lacks it or it couldn't be 1274If this call isn't available because your OS lacks it or it couldn't be
856detected, it will be emulated by calling C<fsync> instead. 1275detected, it will be emulated by calling C<fsync> instead.
1276
1277=item aio_syncfs $fh, $callback->($status)
1278
1279Asynchronously call the syncfs syscall to sync the filesystem associated
1280to the given filehandle and call the callback with the syncfs result
1281code. If syncfs is not available, calls sync(), but returns C<-1> and sets
1282errno to C<ENOSYS> nevertheless.
1283
1284=item aio_sync_file_range $fh, $offset, $nbytes, $flags, $callback->($status)
1285
1286Sync the data portion of the file specified by C<$offset> and C<$length>
1287to disk (but NOT the metadata), by calling the Linux-specific
1288sync_file_range call. If sync_file_range is not available or it returns
1289ENOSYS, then fdatasync or fsync is being substituted.
1290
1291C<$flags> can be a combination of C<IO::AIO::SYNC_FILE_RANGE_WAIT_BEFORE>,
1292C<IO::AIO::SYNC_FILE_RANGE_WRITE> and
1293C<IO::AIO::SYNC_FILE_RANGE_WAIT_AFTER>: refer to the sync_file_range
1294manpage for details.
1295
1296=item aio_pathsync $pathname, $callback->($status)
1297
1298This request tries to open, fsync and close the given path. This is a
1299composite request intended to sync directories after directory operations
1300(E.g. rename). This might not work on all operating systems or have any
1301specific effect, but usually it makes sure that directory changes get
1302written to disc. It works for anything that can be opened for read-only,
1303not just directories.
1304
1305Future versions of this function might fall back to other methods when
1306C<fsync> on the directory fails (such as calling C<sync>).
1307
1308Passes C<0> when everything went ok, and C<-1> on error.
1309
1310=cut
1311
1312sub aio_pathsync($;$) {
1313 my ($path, $cb) = @_;
1314
1315 my $pri = aioreq_pri;
1316 my $grp = aio_group $cb;
1317
1318 aioreq_pri $pri;
1319 add $grp aio_open $path, O_RDONLY, 0, sub {
1320 my ($fh) = @_;
1321 if ($fh) {
1322 aioreq_pri $pri;
1323 add $grp aio_fsync $fh, sub {
1324 $grp->result ($_[0]);
1325
1326 aioreq_pri $pri;
1327 add $grp aio_close $fh;
1328 };
1329 } else {
1330 $grp->result (-1);
1331 }
1332 };
1333
1334 $grp
1335}
1336
1337=item aio_msync $scalar, $offset = 0, $length = undef, flags = MS_SYNC, $callback->($status)
1338
1339This is a rather advanced IO::AIO call, which only works on mmap(2)ed
1340scalars (see the C<IO::AIO::mmap> function, although it also works on data
1341scalars managed by the L<Sys::Mmap> or L<Mmap> modules, note that the
1342scalar must only be modified in-place while an aio operation is pending on
1343it).
1344
1345It calls the C<msync> function of your OS, if available, with the memory
1346area starting at C<$offset> in the string and ending C<$length> bytes
1347later. If C<$length> is negative, counts from the end, and if C<$length>
1348is C<undef>, then it goes till the end of the string. The flags can be
1349either C<IO::AIO::MS_ASYNC> or C<IO::AIO::MS_SYNC>, plus an optional
1350C<IO::AIO::MS_INVALIDATE>.
1351
1352=item aio_mtouch $scalar, $offset = 0, $length = undef, flags = 0, $callback->($status)
1353
1354This is a rather advanced IO::AIO call, which works best on mmap(2)ed
1355scalars.
1356
1357It touches (reads or writes) all memory pages in the specified
1358range inside the scalar. All caveats and parameters are the same
1359as for C<aio_msync>, above, except for flags, which must be either
1360C<0> (which reads all pages and ensures they are instantiated) or
1361C<IO::AIO::MT_MODIFY>, which modifies the memory pages (by reading and
1362writing an octet from it, which dirties the page).
1363
1364=item aio_mlock $scalar, $offset = 0, $length = undef, $callback->($status)
1365
1366This is a rather advanced IO::AIO call, which works best on mmap(2)ed
1367scalars.
1368
1369It reads in all the pages of the underlying storage into memory (if any)
1370and locks them, so they are not getting swapped/paged out or removed.
1371
1372If C<$length> is undefined, then the scalar will be locked till the end.
1373
1374On systems that do not implement C<mlock>, this function returns C<-1>
1375and sets errno to C<ENOSYS>.
1376
1377Note that the corresponding C<munlock> is synchronous and is
1378documented under L<MISCELLANEOUS FUNCTIONS>.
1379
1380Example: open a file, mmap and mlock it - both will be undone when
1381C<$data> gets destroyed.
1382
1383 open my $fh, "<", $path or die "$path: $!";
1384 my $data;
1385 IO::AIO::mmap $data, -s $fh, IO::AIO::PROT_READ, IO::AIO::MAP_SHARED, $fh;
1386 aio_mlock $data; # mlock in background
1387
1388=item aio_mlockall $flags, $callback->($status)
1389
1390Calls the C<mlockall> function with the given C<$flags> (a
1391combination of C<IO::AIO::MCL_CURRENT>, C<IO::AIO::MCL_FUTURE> and
1392C<IO::AIO::MCL_ONFAULT>).
1393
1394On systems that do not implement C<mlockall>, this function returns C<-1>
1395and sets errno to C<ENOSYS>. Similarly, flag combinations not supported
1396by the system result in a return value of C<-1> with errno being set to
1397C<EINVAL>.
1398
1399Note that the corresponding C<munlockall> is synchronous and is
1400documented under L<MISCELLANEOUS FUNCTIONS>.
1401
1402Example: asynchronously lock all current and future pages into memory.
1403
1404 aio_mlockall IO::AIO::MCL_FUTURE;
1405
1406=item aio_fiemap $fh, $start, $length, $flags, $count, $cb->(\@extents)
1407
1408Queries the extents of the given file (by calling the Linux C<FIEMAP>
1409ioctl, see L<http://cvs.schmorp.de/IO-AIO/doc/fiemap.txt> for details). If
1410the ioctl is not available on your OS, then this request will fail with
1411C<ENOSYS>.
1412
1413C<$start> is the starting offset to query extents for, C<$length> is the
1414size of the range to query - if it is C<undef>, then the whole file will
1415be queried.
1416
1417C<$flags> is a combination of flags (C<IO::AIO::FIEMAP_FLAG_SYNC> or
1418C<IO::AIO::FIEMAP_FLAG_XATTR> - C<IO::AIO::FIEMAP_FLAGS_COMPAT> is also
1419exported), and is normally C<0> or C<IO::AIO::FIEMAP_FLAG_SYNC> to query
1420the data portion.
1421
1422C<$count> is the maximum number of extent records to return. If it is
1423C<undef>, then IO::AIO queries all extents of the range. As a very special
1424case, if it is C<0>, then the callback receives the number of extents
1425instead of the extents themselves (which is unreliable, see below).
1426
1427If an error occurs, the callback receives no arguments. The special
1428C<errno> value C<IO::AIO::EBADR> is available to test for flag errors.
1429
1430Otherwise, the callback receives an array reference with extent
1431structures. Each extent structure is an array reference itself, with the
1432following members:
1433
1434 [$logical, $physical, $length, $flags]
1435
1436Flags is any combination of the following flag values (typically either C<0>
1437or C<IO::AIO::FIEMAP_EXTENT_LAST> (1)):
1438
1439C<IO::AIO::FIEMAP_EXTENT_LAST>, C<IO::AIO::FIEMAP_EXTENT_UNKNOWN>,
1440C<IO::AIO::FIEMAP_EXTENT_DELALLOC>, C<IO::AIO::FIEMAP_EXTENT_ENCODED>,
1441C<IO::AIO::FIEMAP_EXTENT_DATA_ENCRYPTED>, C<IO::AIO::FIEMAP_EXTENT_NOT_ALIGNED>,
1442C<IO::AIO::FIEMAP_EXTENT_DATA_INLINE>, C<IO::AIO::FIEMAP_EXTENT_DATA_TAIL>,
1443C<IO::AIO::FIEMAP_EXTENT_UNWRITTEN>, C<IO::AIO::FIEMAP_EXTENT_MERGED> or
1444C<IO::AIO::FIEMAP_EXTENT_SHARED>.
1445
1446At the time of this writing (Linux 3.2), this request is unreliable unless
1447C<$count> is C<undef>, as the kernel has all sorts of bugs preventing
1448it to return all extents of a range for files with a large number of
1449extents. The code (only) works around all these issues if C<$count> is
1450C<undef>.
857 1451
858=item aio_group $callback->(...) 1452=item aio_group $callback->(...)
859 1453
860This is a very special aio request: Instead of doing something, it is a 1454This is a very special aio request: Instead of doing something, it is a
861container for other aio requests, which is useful if you want to bundle 1455container for other aio requests, which is useful if you want to bundle
899immense (it blocks a thread for a long time) so do not use this function 1493immense (it blocks a thread for a long time) so do not use this function
900except to put your application under artificial I/O pressure. 1494except to put your application under artificial I/O pressure.
901 1495
902=back 1496=back
903 1497
1498
1499=head2 IO::AIO::WD - multiple working directories
1500
1501Your process only has one current working directory, which is used by all
1502threads. This makes it hard to use relative paths (some other component
1503could call C<chdir> at any time, and it is hard to control when the path
1504will be used by IO::AIO).
1505
1506One solution for this is to always use absolute paths. This usually works,
1507but can be quite slow (the kernel has to walk the whole path on every
1508access), and can also be a hassle to implement.
1509
1510Newer POSIX systems have a number of functions (openat, fdopendir,
1511futimensat and so on) that make it possible to specify working directories
1512per operation.
1513
1514For portability, and because the clowns who "designed", or shall I write,
1515perpetrated this new interface were obviously half-drunk, this abstraction
1516cannot be perfect, though.
1517
1518IO::AIO allows you to convert directory paths into a so-called IO::AIO::WD
1519object. This object stores the canonicalised, absolute version of the
1520path, and on systems that allow it, also a directory file descriptor.
1521
1522Everywhere where a pathname is accepted by IO::AIO (e.g. in C<aio_stat>
1523or C<aio_unlink>), one can specify an array reference with an IO::AIO::WD
1524object and a pathname instead (or the IO::AIO::WD object alone, which
1525gets interpreted as C<[$wd, "."]>). If the pathname is absolute, the
1526IO::AIO::WD object is ignored, otherwise the pathname is resolved relative
1527to that IO::AIO::WD object.
1528
1529For example, to get a wd object for F</etc> and then stat F<passwd>
1530inside, you would write:
1531
1532 aio_wd "/etc", sub {
1533 my $etcdir = shift;
1534
1535 # although $etcdir can be undef on error, there is generally no reason
1536 # to check for errors here, as aio_stat will fail with ENOENT
1537 # when $etcdir is undef.
1538
1539 aio_stat [$etcdir, "passwd"], sub {
1540 # yay
1541 };
1542 };
1543
1544The fact that C<aio_wd> is a request and not a normal function shows that
1545creating an IO::AIO::WD object is itself a potentially blocking operation,
1546which is why it is done asynchronously.
1547
1548To stat the directory obtained with C<aio_wd> above, one could write
1549either of the following three request calls:
1550
1551 aio_lstat "/etc" , sub { ... # pathname as normal string
1552 aio_lstat [$wd, "."], sub { ... # "." relative to $wd (i.e. $wd itself)
1553 aio_lstat $wd , sub { ... # shorthand for the previous
1554
1555As with normal pathnames, IO::AIO keeps a copy of the working directory
1556object and the pathname string, so you could write the following without
1557causing any issues due to C<$path> getting reused:
1558
1559 my $path = [$wd, undef];
1560
1561 for my $name (qw(abc def ghi)) {
1562 $path->[1] = $name;
1563 aio_stat $path, sub {
1564 # ...
1565 };
1566 }
1567
1568There are some caveats: when directories get renamed (or deleted), the
1569pathname string doesn't change, so will point to the new directory (or
1570nowhere at all), while the directory fd, if available on the system,
1571will still point to the original directory. Most functions accepting a
1572pathname will use the directory fd on newer systems, and the string on
1573older systems. Some functions (such as C<aio_realpath>) will always rely on
1574the string form of the pathname.
1575
1576So this functionality is mainly useful to get some protection against
1577C<chdir>, to easily get an absolute path out of a relative path for future
1578reference, and to speed up doing many operations in the same directory
1579(e.g. when stat'ing all files in a directory).
1580
1581The following functions implement this working directory abstraction:
1582
1583=over 4
1584
1585=item aio_wd $pathname, $callback->($wd)
1586
1587Asynchonously canonicalise the given pathname and convert it to an
1588IO::AIO::WD object representing it. If possible and supported on the
1589system, also open a directory fd to speed up pathname resolution relative
1590to this working directory.
1591
1592If something goes wrong, then C<undef> is passwd to the callback instead
1593of a working directory object and C<$!> is set appropriately. Since
1594passing C<undef> as working directory component of a pathname fails the
1595request with C<ENOENT>, there is often no need for error checking in the
1596C<aio_wd> callback, as future requests using the value will fail in the
1597expected way.
1598
1599=item IO::AIO::CWD
1600
1601This is a compiletime constant (object) that represents the process
1602current working directory.
1603
1604Specifying this object as working directory object for a pathname is as if
1605the pathname would be specified directly, without a directory object. For
1606example, these calls are functionally identical:
1607
1608 aio_stat "somefile", sub { ... };
1609 aio_stat [IO::AIO::CWD, "somefile"], sub { ... };
1610
1611=back
1612
1613To recover the path associated with an IO::AIO::WD object, you can use
1614C<aio_realpath>:
1615
1616 aio_realpath $wd, sub {
1617 warn "path is $_[0]\n";
1618 };
1619
1620Currently, C<aio_statvfs> always, and C<aio_rename> and C<aio_rmdir>
1621sometimes, fall back to using an absolue path.
1622
904=head2 IO::AIO::REQ CLASS 1623=head2 IO::AIO::REQ CLASS
905 1624
906All non-aggregate C<aio_*> functions return an object of this class when 1625All non-aggregate C<aio_*> functions return an object of this class when
907called in non-void context. 1626called in non-void context.
908 1627
911=item cancel $req 1630=item cancel $req
912 1631
913Cancels the request, if possible. Has the effect of skipping execution 1632Cancels the request, if possible. Has the effect of skipping execution
914when entering the B<execute> state and skipping calling the callback when 1633when entering the B<execute> state and skipping calling the callback when
915entering the the B<result> state, but will leave the request otherwise 1634entering the the B<result> state, but will leave the request otherwise
916untouched. That means that requests that currently execute will not be 1635untouched (with the exception of readdir). That means that requests that
917stopped and resources held by the request will not be freed prematurely. 1636currently execute will not be stopped and resources held by the request
1637will not be freed prematurely.
918 1638
919=item cb $req $callback->(...) 1639=item cb $req $callback->(...)
920 1640
921Replace (or simply set) the callback registered to the request. 1641Replace (or simply set) the callback registered to the request.
922 1642
973Their lifetime, simplified, looks like this: when they are empty, they 1693Their lifetime, simplified, looks like this: when they are empty, they
974will finish very quickly. If they contain only requests that are in the 1694will finish very quickly. If they contain only requests that are in the
975C<done> state, they will also finish. Otherwise they will continue to 1695C<done> state, they will also finish. Otherwise they will continue to
976exist. 1696exist.
977 1697
978That means after creating a group you have some time to add requests. And 1698That means after creating a group you have some time to add requests
979in the callbacks of those requests, you can add further requests to the 1699(precisely before the callback has been invoked, which is only done within
980group. And only when all those requests have finished will the the group 1700the C<poll_cb>). And in the callbacks of those requests, you can add
981itself finish. 1701further requests to the group. And only when all those requests have
1702finished will the the group itself finish.
982 1703
983=over 4 1704=over 4
984 1705
985=item add $grp ... 1706=item add $grp ...
986 1707
995=item $grp->cancel_subs 1716=item $grp->cancel_subs
996 1717
997Cancel all subrequests and clears any feeder, but not the group request 1718Cancel all subrequests and clears any feeder, but not the group request
998itself. Useful when you queued a lot of events but got a result early. 1719itself. Useful when you queued a lot of events but got a result early.
999 1720
1721The group request will finish normally (you cannot add requests to the
1722group).
1723
1000=item $grp->result (...) 1724=item $grp->result (...)
1001 1725
1002Set the result value(s) that will be passed to the group callback when all 1726Set the result value(s) that will be passed to the group callback when all
1003subrequests have finished and set thre groups errno to the current value 1727subrequests have finished and set the groups errno to the current value
1004of errno (just like calling C<errno> without an error number). By default, 1728of errno (just like calling C<errno> without an error number). By default,
1005no argument will be passed and errno is zero. 1729no argument will be passed and errno is zero.
1006 1730
1007=item $grp->errno ([$errno]) 1731=item $grp->errno ([$errno])
1008 1732
1019=item feed $grp $callback->($grp) 1743=item feed $grp $callback->($grp)
1020 1744
1021Sets a feeder/generator on this group: every group can have an attached 1745Sets a feeder/generator on this group: every group can have an attached
1022generator that generates requests if idle. The idea behind this is that, 1746generator that generates requests if idle. The idea behind this is that,
1023although you could just queue as many requests as you want in a group, 1747although you could just queue as many requests as you want in a group,
1024this might starve other requests for a potentially long time. For 1748this might starve other requests for a potentially long time. For example,
1025example, C<aio_scandir> might generate hundreds of thousands C<aio_stat> 1749C<aio_scandir> might generate hundreds of thousands of C<aio_stat>
1026requests, delaying any later requests for a long time. 1750requests, delaying any later requests for a long time.
1027 1751
1028To avoid this, and allow incremental generation of requests, you can 1752To avoid this, and allow incremental generation of requests, you can
1029instead a group and set a feeder on it that generates those requests. The 1753instead a group and set a feeder on it that generates those requests. The
1030feed callback will be called whenever there are few enough (see C<limit>, 1754feed callback will be called whenever there are few enough (see C<limit>,
1035not impose any limits). 1759not impose any limits).
1036 1760
1037If the feed does not queue more requests when called, it will be 1761If the feed does not queue more requests when called, it will be
1038automatically removed from the group. 1762automatically removed from the group.
1039 1763
1040If the feed limit is C<0>, it will be set to C<2> automatically. 1764If the feed limit is C<0> when this method is called, it will be set to
1765C<2> automatically.
1041 1766
1042Example: 1767Example:
1043 1768
1044 # stat all files in @files, but only ever use four aio requests concurrently: 1769 # stat all files in @files, but only ever use four aio requests concurrently:
1045 1770
1057Sets the feeder limit for the group: The feeder will be called whenever 1782Sets the feeder limit for the group: The feeder will be called whenever
1058the group contains less than this many requests. 1783the group contains less than this many requests.
1059 1784
1060Setting the limit to C<0> will pause the feeding process. 1785Setting the limit to C<0> will pause the feeding process.
1061 1786
1787The default value for the limit is C<0>, but note that setting a feeder
1788automatically bumps it up to C<2>.
1789
1062=back 1790=back
1063 1791
1792
1064=head2 SUPPORT FUNCTIONS 1793=head2 SUPPORT FUNCTIONS
1065 1794
1066=head3 EVENT PROCESSING AND EVENT LOOP INTEGRATION 1795=head3 EVENT PROCESSING AND EVENT LOOP INTEGRATION
1067 1796
1068=over 4 1797=over 4
1069 1798
1070=item $fileno = IO::AIO::poll_fileno 1799=item $fileno = IO::AIO::poll_fileno
1071 1800
1072Return the I<request result pipe file descriptor>. This filehandle must be 1801Return the I<request result pipe file descriptor>. This filehandle must be
1073polled for reading by some mechanism outside this module (e.g. Event or 1802polled for reading by some mechanism outside this module (e.g. EV, Glib,
1074select, see below or the SYNOPSIS). If the pipe becomes readable you have 1803select and so on, see below or the SYNOPSIS). If the pipe becomes readable
1075to call C<poll_cb> to check the results. 1804you have to call C<poll_cb> to check the results.
1076 1805
1077See C<poll_cb> for an example. 1806See C<poll_cb> for an example.
1078 1807
1079=item IO::AIO::poll_cb 1808=item IO::AIO::poll_cb
1080 1809
1081Process some outstanding events on the result pipe. You have to call this 1810Process some requests that have reached the result phase (i.e. they have
1082regularly. Returns the number of events processed. Returns immediately 1811been executed but the results are not yet reported). You have to call
1083when no events are outstanding. The amount of events processed depends on 1812this "regularly" to finish outstanding requests.
1084the settings of C<IO::AIO::max_poll_req> and C<IO::AIO::max_poll_time>.
1085 1813
1814Returns C<0> if all events could be processed (or there were no
1815events to process), or C<-1> if it returned earlier for whatever
1816reason. Returns immediately when no events are outstanding. The amount
1817of events processed depends on the settings of C<IO::AIO::max_poll_req>,
1818C<IO::AIO::max_poll_time> and C<IO::AIO::max_outstanding>.
1819
1086If not all requests were processed for whatever reason, the filehandle 1820If not all requests were processed for whatever reason, the poll file
1087will still be ready when C<poll_cb> returns. 1821descriptor will still be ready when C<poll_cb> returns, so normally you
1822don't have to do anything special to have it called later.
1823
1824Apart from calling C<IO::AIO::poll_cb> when the event filehandle becomes
1825ready, it can be beneficial to call this function from loops which submit
1826a lot of requests, to make sure the results get processed when they become
1827available and not just when the loop is finished and the event loop takes
1828over again. This function returns very fast when there are no outstanding
1829requests.
1088 1830
1089Example: Install an Event watcher that automatically calls 1831Example: Install an Event watcher that automatically calls
1090IO::AIO::poll_cb with high priority: 1832IO::AIO::poll_cb with high priority (more examples can be found in the
1833SYNOPSIS section, at the top of this document):
1091 1834
1092 Event->io (fd => IO::AIO::poll_fileno, 1835 Event->io (fd => IO::AIO::poll_fileno,
1093 poll => 'r', async => 1, 1836 poll => 'r', async => 1,
1094 cb => \&IO::AIO::poll_cb); 1837 cb => \&IO::AIO::poll_cb);
1838
1839=item IO::AIO::poll_wait
1840
1841Wait until either at least one request is in the result phase or no
1842requests are outstanding anymore.
1843
1844This is useful if you want to synchronously wait for some requests to
1845become ready, without actually handling them.
1846
1847See C<nreqs> for an example.
1848
1849=item IO::AIO::poll
1850
1851Waits until some requests have been handled.
1852
1853Returns the number of requests processed, but is otherwise strictly
1854equivalent to:
1855
1856 IO::AIO::poll_wait, IO::AIO::poll_cb
1857
1858=item IO::AIO::flush
1859
1860Wait till all outstanding AIO requests have been handled.
1861
1862Strictly equivalent to:
1863
1864 IO::AIO::poll_wait, IO::AIO::poll_cb
1865 while IO::AIO::nreqs;
1866
1867This function can be useful at program aborts, to make sure outstanding
1868I/O has been done (C<IO::AIO> uses an C<END> block which already calls
1869this function on normal exits), or when you are merely using C<IO::AIO>
1870for its more advanced functions, rather than for async I/O, e.g.:
1871
1872 my ($dirs, $nondirs);
1873 IO::AIO::aio_scandir "/tmp", 0, sub { ($dirs, $nondirs) = @_ };
1874 IO::AIO::flush;
1875 # $dirs, $nondirs are now set
1095 1876
1096=item IO::AIO::max_poll_reqs $nreqs 1877=item IO::AIO::max_poll_reqs $nreqs
1097 1878
1098=item IO::AIO::max_poll_time $seconds 1879=item IO::AIO::max_poll_time $seconds
1099 1880
1124 # use a low priority so other tasks have priority 1905 # use a low priority so other tasks have priority
1125 Event->io (fd => IO::AIO::poll_fileno, 1906 Event->io (fd => IO::AIO::poll_fileno,
1126 poll => 'r', nice => 1, 1907 poll => 'r', nice => 1,
1127 cb => &IO::AIO::poll_cb); 1908 cb => &IO::AIO::poll_cb);
1128 1909
1129=item IO::AIO::poll_wait
1130
1131If there are any outstanding requests and none of them in the result
1132phase, wait till the result filehandle becomes ready for reading (simply
1133does a C<select> on the filehandle. This is useful if you want to
1134synchronously wait for some requests to finish).
1135
1136See C<nreqs> for an example.
1137
1138=item IO::AIO::poll
1139
1140Waits until some requests have been handled.
1141
1142Returns the number of requests processed, but is otherwise strictly
1143equivalent to:
1144
1145 IO::AIO::poll_wait, IO::AIO::poll_cb
1146
1147=item IO::AIO::flush
1148
1149Wait till all outstanding AIO requests have been handled.
1150
1151Strictly equivalent to:
1152
1153 IO::AIO::poll_wait, IO::AIO::poll_cb
1154 while IO::AIO::nreqs;
1155
1156=back 1910=back
1911
1157 1912
1158=head3 CONTROLLING THE NUMBER OF THREADS 1913=head3 CONTROLLING THE NUMBER OF THREADS
1159 1914
1160=over 1915=over
1161 1916
1193 1948
1194Under normal circumstances you don't need to call this function. 1949Under normal circumstances you don't need to call this function.
1195 1950
1196=item IO::AIO::max_idle $nthreads 1951=item IO::AIO::max_idle $nthreads
1197 1952
1198Limit the number of threads (default: 4) that are allowed to idle (i.e., 1953Limit the number of threads (default: 4) that are allowed to idle
1199threads that did not get a request to process within 10 seconds). That 1954(i.e., threads that did not get a request to process within the idle
1200means if a thread becomes idle while C<$nthreads> other threads are also 1955timeout (default: 10 seconds). That means if a thread becomes idle while
1201idle, it will free its resources and exit. 1956C<$nthreads> other threads are also idle, it will free its resources and
1957exit.
1202 1958
1203This is useful when you allow a large number of threads (e.g. 100 or 1000) 1959This is useful when you allow a large number of threads (e.g. 100 or 1000)
1204to allow for extremely high load situations, but want to free resources 1960to allow for extremely high load situations, but want to free resources
1205under normal circumstances (1000 threads can easily consume 30MB of RAM). 1961under normal circumstances (1000 threads can easily consume 30MB of RAM).
1206 1962
1207The default is probably ok in most situations, especially if thread 1963The default is probably ok in most situations, especially if thread
1208creation is fast. If thread creation is very slow on your system you might 1964creation is fast. If thread creation is very slow on your system you might
1209want to use larger values. 1965want to use larger values.
1210 1966
1967=item IO::AIO::idle_timeout $seconds
1968
1969Sets the minimum idle timeout (default 10) after which worker threads are
1970allowed to exit. SEe C<IO::AIO::max_idle>.
1971
1211=item $oldmaxreqs = IO::AIO::max_outstanding $maxreqs 1972=item IO::AIO::max_outstanding $maxreqs
1973
1974Sets the maximum number of outstanding requests to C<$nreqs>. If
1975you do queue up more than this number of requests, the next call to
1976C<IO::AIO::poll_cb> (and other functions calling C<poll_cb>, such as
1977C<IO::AIO::flush> or C<IO::AIO::poll>) will block until the limit is no
1978longer exceeded.
1979
1980In other words, this setting does not enforce a queue limit, but can be
1981used to make poll functions block if the limit is exceeded.
1212 1982
1213This is a very bad function to use in interactive programs because it 1983This is a very bad function to use in interactive programs because it
1214blocks, and a bad way to reduce concurrency because it is inexact: Better 1984blocks, and a bad way to reduce concurrency because it is inexact: Better
1215use an C<aio_group> together with a feed callback. 1985use an C<aio_group> together with a feed callback.
1216 1986
1217Sets the maximum number of outstanding requests to C<$nreqs>. If you 1987Its main use is in scripts without an event loop - when you want to stat
1218do queue up more than this number of requests, the next call to the 1988a lot of files, you can write something like this:
1219C<poll_cb> (and C<poll_some> and other functions calling C<poll_cb>)
1220function will block until the limit is no longer exceeded.
1221 1989
1222The default value is very large, so there is no practical limit on the 1990 IO::AIO::max_outstanding 32;
1223number of outstanding requests.
1224 1991
1225You can still queue as many requests as you want. Therefore, 1992 for my $path (...) {
1226C<max_oustsanding> is mainly useful in simple scripts (with low values) or 1993 aio_stat $path , ...;
1227as a stop gap to shield against fatal memory overflow (with large values). 1994 IO::AIO::poll_cb;
1995 }
1996
1997 IO::AIO::flush;
1998
1999The call to C<poll_cb> inside the loop will normally return instantly, but
2000as soon as more thna C<32> reqeusts are in-flight, it will block until
2001some requests have been handled. This keeps the loop from pushing a large
2002number of C<aio_stat> requests onto the queue.
2003
2004The default value for C<max_outstanding> is very large, so there is no
2005practical limit on the number of outstanding requests.
1228 2006
1229=back 2007=back
2008
1230 2009
1231=head3 STATISTICAL INFORMATION 2010=head3 STATISTICAL INFORMATION
1232 2011
1233=over 2012=over
1234 2013
1252Returns the number of requests currently in the pending state (executed, 2031Returns the number of requests currently in the pending state (executed,
1253but not yet processed by poll_cb). 2032but not yet processed by poll_cb).
1254 2033
1255=back 2034=back
1256 2035
2036
2037=head3 SUBSECOND STAT TIME ACCESS
2038
2039Both C<aio_stat>/C<aio_lstat> and perl's C<stat>/C<lstat> functions can
2040generally find access/modification and change times with subsecond time
2041accuracy of the system supports it, but perl's built-in functions only
2042return the integer part.
2043
2044The following functions return the timestamps of the most recent
2045stat with subsecond precision on most systems and work both after
2046C<aio_stat>/C<aio_lstat> and perl's C<stat>/C<lstat> calls. Their return
2047value is only meaningful after a successful C<stat>/C<lstat> call, or
2048during/after a successful C<aio_stat>/C<aio_lstat> callback.
2049
2050This is similar to the L<Time::HiRes> C<stat> functions, but can return
2051full resolution without rounding and work with standard perl C<stat>,
2052alleviating the need to call the special C<Time::HiRes> functions, which
2053do not act like their perl counterparts.
2054
2055On operating systems or file systems where subsecond time resolution is
2056not supported or could not be detected, a fractional part of C<0> is
2057returned, so it is always safe to call these functions.
2058
2059=over 4
2060
2061=item $seconds = IO::AIO::st_atime, IO::AIO::st_mtime, IO::AIO::st_ctime, IO::AIO::st_btime
2062
2063Return the access, modication, change or birth time, respectively,
2064including fractional part. Due to the limited precision of floating point,
2065the accuracy on most platforms is only a bit better than milliseconds
2066for times around now - see the I<nsec> function family, below, for full
2067accuracy.
2068
2069File birth time is only available when the OS and perl support it (on
2070FreeBSD and NetBSD at the time of this writing, although support is
2071adaptive, so if your OS/perl gains support, IO::AIO can take avdantage of
2072it). On systems where it isn't available, C<0> is currently returned, but
2073this might change to C<undef> in a future version.
2074
2075=item ($atime, $mtime, $ctime, $btime, ...) = IO::AIO::st_xtime
2076
2077Returns access, modification, change and birth time all in one go, and
2078maybe more times in the future version.
2079
2080=item $nanoseconds = IO::AIO::st_atimensec, IO::AIO::st_mtimensec, IO::AIO::st_ctimensec, IO::AIO::st_btimensec
2081
2082Return the fractional access, modifcation, change or birth time, in nanoseconds,
2083as an integer in the range C<0> to C<999999999>.
2084
2085Note that no accessors are provided for access, modification and
2086change times - you need to get those from C<stat _> if required (C<int
2087IO::AIO::st_atime> and so on will I<not> generally give you the correct
2088value).
2089
2090=item $seconds = IO::AIO::st_btimesec
2091
2092The (integral) seconds part of the file birth time, if available.
2093
2094=item ($atime, $mtime, $ctime, $btime, ...) = IO::AIO::st_xtimensec
2095
2096Like the functions above, but returns all four times in one go (and maybe
2097more in future versions).
2098
2099=item $counter = IO::AIO::st_gen
2100
2101Returns the generation counter (in practice this is just a random number)
2102of the file. This is only available on platforms which have this member in
2103their C<struct stat> (most BSDs at the time of this writing) and generally
2104only to the root usert. If unsupported, C<0> is returned, but this might
2105change to C<undef> in a future version.
2106
2107=back
2108
2109Example: print the high resolution modification time of F</etc>, using
2110C<stat>, and C<IO::AIO::aio_stat>.
2111
2112 if (stat "/etc") {
2113 printf "stat(/etc) mtime: %f\n", IO::AIO::st_mtime;
2114 }
2115
2116 IO::AIO::aio_stat "/etc", sub {
2117 $_[0]
2118 and return;
2119
2120 printf "aio_stat(/etc) mtime: %d.%09d\n", (stat _)[9], IO::AIO::st_mtimensec;
2121 };
2122
2123 IO::AIO::flush;
2124
2125Output of the awbove on my system, showing reduced and full accuracy:
2126
2127 stat(/etc) mtime: 1534043702.020808
2128 aio_stat(/etc) mtime: 1534043702.020807792
2129
2130
2131=head3 MISCELLANEOUS FUNCTIONS
2132
2133IO::AIO implements some functions that are useful when you want to use
2134some "Advanced I/O" function not available to in Perl, without going the
2135"Asynchronous I/O" route. Many of these have an asynchronous C<aio_*>
2136counterpart.
2137
2138=over 4
2139
2140=item $numfd = IO::AIO::get_fdlimit
2141
2142This function is I<EXPERIMENTAL> and subject to change.
2143
2144Tries to find the current file descriptor limit and returns it, or
2145C<undef> and sets C<$!> in case of an error. The limit is one larger than
2146the highest valid file descriptor number.
2147
2148=item IO::AIO::min_fdlimit [$numfd]
2149
2150This function is I<EXPERIMENTAL> and subject to change.
2151
2152Try to increase the current file descriptor limit(s) to at least C<$numfd>
2153by changing the soft or hard file descriptor resource limit. If C<$numfd>
2154is missing, it will try to set a very high limit, although this is not
2155recommended when you know the actual minimum that you require.
2156
2157If the limit cannot be raised enough, the function makes a best-effort
2158attempt to increase the limit as much as possible, using various
2159tricks, while still failing. You can query the resulting limit using
2160C<IO::AIO::get_fdlimit>.
2161
2162If an error occurs, returns C<undef> and sets C<$!>, otherwise returns
2163true.
2164
2165=item IO::AIO::sendfile $ofh, $ifh, $offset, $count
2166
2167Calls the C<eio_sendfile_sync> function, which is like C<aio_sendfile>,
2168but is blocking (this makes most sense if you know the input data is
2169likely cached already and the output filehandle is set to non-blocking
2170operations).
2171
2172Returns the number of bytes copied, or C<-1> on error.
2173
2174=item IO::AIO::fadvise $fh, $offset, $len, $advice
2175
2176Simply calls the C<posix_fadvise> function (see its
2177manpage for details). The following advice constants are
2178available: C<IO::AIO::FADV_NORMAL>, C<IO::AIO::FADV_SEQUENTIAL>,
2179C<IO::AIO::FADV_RANDOM>, C<IO::AIO::FADV_NOREUSE>,
2180C<IO::AIO::FADV_WILLNEED>, C<IO::AIO::FADV_DONTNEED>.
2181
2182On systems that do not implement C<posix_fadvise>, this function returns
2183ENOSYS, otherwise the return value of C<posix_fadvise>.
2184
2185=item IO::AIO::madvise $scalar, $offset, $len, $advice
2186
2187Simply calls the C<posix_madvise> function (see its
2188manpage for details). The following advice constants are
2189available: C<IO::AIO::MADV_NORMAL>, C<IO::AIO::MADV_SEQUENTIAL>,
2190C<IO::AIO::MADV_RANDOM>, C<IO::AIO::MADV_WILLNEED>,
2191C<IO::AIO::MADV_DONTNEED>.
2192
2193If C<$offset> is negative, counts from the end. If C<$length> is negative,
2194the remaining length of the C<$scalar> is used. If possible, C<$length>
2195will be reduced to fit into the C<$scalar>.
2196
2197On systems that do not implement C<posix_madvise>, this function returns
2198ENOSYS, otherwise the return value of C<posix_madvise>.
2199
2200=item IO::AIO::mprotect $scalar, $offset, $len, $protect
2201
2202Simply calls the C<mprotect> function on the preferably AIO::mmap'ed
2203$scalar (see its manpage for details). The following protect
2204constants are available: C<IO::AIO::PROT_NONE>, C<IO::AIO::PROT_READ>,
2205C<IO::AIO::PROT_WRITE>, C<IO::AIO::PROT_EXEC>.
2206
2207If C<$offset> is negative, counts from the end. If C<$length> is negative,
2208the remaining length of the C<$scalar> is used. If possible, C<$length>
2209will be reduced to fit into the C<$scalar>.
2210
2211On systems that do not implement C<mprotect>, this function returns
2212ENOSYS, otherwise the return value of C<mprotect>.
2213
2214=item IO::AIO::mmap $scalar, $length, $prot, $flags, $fh[, $offset]
2215
2216Memory-maps a file (or anonymous memory range) and attaches it to the
2217given C<$scalar>, which will act like a string scalar. Returns true on
2218success, and false otherwise.
2219
2220The scalar must exist, but its contents do not matter - this means you
2221cannot use a nonexistant array or hash element. When in doubt, C<undef>
2222the scalar first.
2223
2224The only operations allowed on the mmapped scalar are C<substr>/C<vec>,
2225which don't change the string length, and most read-only operations such
2226as copying it or searching it with regexes and so on.
2227
2228Anything else is unsafe and will, at best, result in memory leaks.
2229
2230The memory map associated with the C<$scalar> is automatically removed
2231when the C<$scalar> is undef'd or destroyed, or when the C<IO::AIO::mmap>
2232or C<IO::AIO::munmap> functions are called on it.
2233
2234This calls the C<mmap>(2) function internally. See your system's manual
2235page for details on the C<$length>, C<$prot> and C<$flags> parameters.
2236
2237The C<$length> must be larger than zero and smaller than the actual
2238filesize.
2239
2240C<$prot> is a combination of C<IO::AIO::PROT_NONE>, C<IO::AIO::PROT_EXEC>,
2241C<IO::AIO::PROT_READ> and/or C<IO::AIO::PROT_WRITE>,
2242
2243C<$flags> can be a combination of
2244C<IO::AIO::MAP_SHARED> or
2245C<IO::AIO::MAP_PRIVATE>,
2246or a number of system-specific flags (when not available, the are C<0>):
2247C<IO::AIO::MAP_ANONYMOUS> (which is set to C<MAP_ANON> if your system only provides this constant),
2248C<IO::AIO::MAP_LOCKED>,
2249C<IO::AIO::MAP_NORESERVE>,
2250C<IO::AIO::MAP_POPULATE>,
2251C<IO::AIO::MAP_NONBLOCK>,
2252C<IO::AIO::MAP_FIXED>,
2253C<IO::AIO::MAP_GROWSDOWN>,
2254C<IO::AIO::MAP_32BIT>,
2255C<IO::AIO::MAP_HUGETLB> or
2256C<IO::AIO::MAP_STACK>.
2257
2258If C<$fh> is C<undef>, then a file descriptor of C<-1> is passed.
2259
2260C<$offset> is the offset from the start of the file - it generally must be
2261a multiple of C<IO::AIO::PAGESIZE> and defaults to C<0>.
2262
2263Example:
2264
2265 use Digest::MD5;
2266 use IO::AIO;
2267
2268 open my $fh, "<verybigfile"
2269 or die "$!";
2270
2271 IO::AIO::mmap my $data, -s $fh, IO::AIO::PROT_READ, IO::AIO::MAP_SHARED, $fh
2272 or die "verybigfile: $!";
2273
2274 my $fast_md5 = md5 $data;
2275
2276=item IO::AIO::munmap $scalar
2277
2278Removes a previous mmap and undefines the C<$scalar>.
2279
2280=item IO::AIO::mremap $scalar, $new_length, $flags = MREMAP_MAYMOVE[, $new_address = 0]
2281
2282Calls the Linux-specific mremap(2) system call. The C<$scalar> must have
2283been mapped by C<IO::AIO::mmap>, and C<$flags> must currently either be
2284C<0> or C<IO::AIO::MREMAP_MAYMOVE>.
2285
2286Returns true if successful, and false otherwise. If the underlying mmapped
2287region has changed address, then the true value has the numerical value
2288C<1>, otherwise it has the numerical value C<0>:
2289
2290 my $success = IO::AIO::mremap $mmapped, 8192, IO::AIO::MREMAP_MAYMOVE
2291 or die "mremap: $!";
2292
2293 if ($success*1) {
2294 warn "scalar has chanegd address in memory\n";
2295 }
2296
2297C<IO::AIO::MREMAP_FIXED> and the C<$new_address> argument are currently
2298implemented, but not supported and might go away in a future version.
2299
2300On systems where this call is not supported or is not emulated, this call
2301returns falls and sets C<$!> to C<ENOSYS>.
2302
2303=item IO::AIO::munlock $scalar, $offset = 0, $length = undef
2304
2305Calls the C<munlock> function, undoing the effects of a previous
2306C<aio_mlock> call (see its description for details).
2307
2308=item IO::AIO::munlockall
2309
2310Calls the C<munlockall> function.
2311
2312On systems that do not implement C<munlockall>, this function returns
2313ENOSYS, otherwise the return value of C<munlockall>.
2314
2315=item IO::AIO::splice $r_fh, $r_off, $w_fh, $w_off, $length, $flags
2316
2317Calls the GNU/Linux C<splice(2)> syscall, if available. If C<$r_off> or
2318C<$w_off> are C<undef>, then C<NULL> is passed for these, otherwise they
2319should be the file offset.
2320
2321C<$r_fh> and C<$w_fh> should not refer to the same file, as splice might
2322silently corrupt the data in this case.
2323
2324The following symbol flag values are available: C<IO::AIO::SPLICE_F_MOVE>,
2325C<IO::AIO::SPLICE_F_NONBLOCK>, C<IO::AIO::SPLICE_F_MORE> and
2326C<IO::AIO::SPLICE_F_GIFT>.
2327
2328See the C<splice(2)> manpage for details.
2329
2330=item IO::AIO::tee $r_fh, $w_fh, $length, $flags
2331
2332Calls the GNU/Linux C<tee(2)> syscall, see its manpage and the
2333description for C<IO::AIO::splice> above for details.
2334
2335=item $actual_size = IO::AIO::pipesize $r_fh[, $new_size]
2336
2337Attempts to query or change the pipe buffer size. Obviously works only
2338on pipes, and currently works only on GNU/Linux systems, and fails with
2339C<-1>/C<ENOSYS> everywhere else. If anybody knows how to influence pipe buffer
2340size on other systems, drop me a note.
2341
2342=item ($rfh, $wfh) = IO::AIO::pipe2 [$flags]
2343
2344This is a direct interface to the Linux L<pipe2(2)> system call. If
2345C<$flags> is missing or C<0>, then this should be the same as a call to
2346perl's built-in C<pipe> function and create a new pipe, and works on
2347systems that lack the pipe2 syscall. On win32, this case invokes C<_pipe
2348(..., 4096, O_BINARY)>.
2349
2350If C<$flags> is non-zero, it tries to invoke the pipe2 system call with
2351the given flags (Linux 2.6.27, glibc 2.9).
2352
2353On success, the read and write file handles are returned.
2354
2355On error, nothing will be returned. If the pipe2 syscall is missing and
2356C<$flags> is non-zero, fails with C<ENOSYS>.
2357
2358Please refer to L<pipe2(2)> for more info on the C<$flags>, but at the
2359time of this writing, C<IO::AIO::O_CLOEXEC>, C<IO::AIO::O_NONBLOCK> and
2360C<IO::AIO::O_DIRECT> (Linux 3.4, for packet-based pipes) were supported.
2361
2362Example: create a pipe race-free w.r.t. threads and fork:
2363
2364 my ($rfh, $wfh) = IO::AIO::pipe2 IO::AIO::O_CLOEXEC
2365 or die "pipe2: $!\n";
2366
2367=item $fh = IO::AIO::eventfd [$initval, [$flags]]
2368
2369This is a direct interface to the Linux L<eventfd(2)> system call. The
2370(unhelpful) defaults for C<$initval> and C<$flags> are C<0> for both.
2371
2372On success, the new eventfd filehandle is returned, otherwise returns
2373C<undef>. If the eventfd syscall is missing, fails with C<ENOSYS>.
2374
2375Please refer to L<eventfd(2)> for more info on this call.
2376
2377The following symbol flag values are available: C<IO::AIO::EFD_CLOEXEC>,
2378C<IO::AIO::EFD_NONBLOCK> and C<IO::AIO::EFD_SEMAPHORE> (Linux 2.6.30).
2379
2380Example: create a new eventfd filehandle:
2381
2382 $fh = IO::AIO::eventfd 0, IO::AIO::O_CLOEXEC
2383 or die "eventfd: $!\n";
2384
2385=item $fh = IO::AIO::timerfd_create $clockid[, $flags]
2386
2387This is a direct interface to the Linux L<timerfd_create(2)> system call. The
2388(unhelpful) default for C<$flags> is C<0>.
2389
2390On success, the new timerfd filehandle is returned, otherwise returns
2391C<undef>. If the eventfd syscall is missing, fails with C<ENOSYS>.
2392
2393Please refer to L<timerfd_create(2)> for more info on this call.
2394
2395The following C<$clockid> values are
2396available: C<IO::AIO::CLOCK_REALTIME>, C<IO::AIO::CLOCK_MONOTONIC>
2397C<IO::AIO::CLOCK_CLOCK_BOOTTIME> (Linux 3.15)
2398C<IO::AIO::CLOCK_CLOCK_REALTIME_ALARM> (Linux 3.11) and
2399C<IO::AIO::CLOCK_CLOCK_BOOTTIME_ALARM> (Linux 3.11).
2400
2401The following C<$flags> values are available (Linux
24022.6.27): C<IO::AIO::TFD_NONBLOCK> and C<IO::AIO::TFD_CLOEXEC>.
2403
2404Example: create a new timerfd and set it to one-second repeated alarms,
2405then wait for two alarms:
2406
2407 my $fh = IO::AIO::timerfd_create IO::AIO::CLOCK_BOOTTIME, IO::AIO::TFD_CLOEXEC
2408 or die "timerfd_create: $!\n";
2409
2410 defined IO::AIO::timerfd_settime $fh, 0, 1, 1
2411 or die "timerfd_settime: $!\n";
2412
2413 for (1..2) {
2414 8 == sysread $fh, my $buf, 8
2415 or die "timerfd read failure\n";
2416
2417 printf "number of expirations (likely 1): %d\n",
2418 unpack "Q", $buf;
2419 }
2420
2421=item ($cur_interval, $cur_value) = IO::AIO::timerfd_settime $fh, $flags, $new_interval, $nbw_value
2422
2423This is a direct interface to the Linux L<timerfd_settime(2)> system
2424call. Please refer to its manpage for more info on this call.
2425
2426The new itimerspec is specified using two (possibly fractional) second
2427values, C<$new_interval> and C<$new_value>).
2428
2429On success, the current interval and value are returned (as per
2430C<timerfd_gettime>). On failure, the empty list is returned.
2431
2432The following C<$flags> values are
2433available: C<IO::AIO::TFD_TIMER_ABSTIME> and
2434C<IO::AIO::TFD_TIMER_CANCEL_ON_SET>.
2435
2436See C<IO::AIO::timerfd_create> for a full example.
2437
2438=item ($cur_interval, $cur_value) = IO::AIO::timerfd_gettime $fh
2439
2440This is a direct interface to the Linux L<timerfd_gettime(2)> system
2441call. Please refer to its manpage for more info on this call.
2442
2443On success, returns the current values of interval and value for the given
2444timerfd (as potentially fractional second values). On failure, the empty
2445list is returned.
2446
2447=back
2448
1257=cut 2449=cut
1258 2450
1259min_parallel 8; 2451min_parallel 8;
1260 2452
1261END { flush } 2453END { flush }
1262 2454
12631; 24551;
1264 2456
2457=head1 EVENT LOOP INTEGRATION
2458
2459It is recommended to use L<AnyEvent::AIO> to integrate IO::AIO
2460automatically into many event loops:
2461
2462 # AnyEvent integration (EV, Event, Glib, Tk, POE, urxvt, pureperl...)
2463 use AnyEvent::AIO;
2464
2465You can also integrate IO::AIO manually into many event loops, here are
2466some examples of how to do this:
2467
2468 # EV integration
2469 my $aio_w = EV::io IO::AIO::poll_fileno, EV::READ, \&IO::AIO::poll_cb;
2470
2471 # Event integration
2472 Event->io (fd => IO::AIO::poll_fileno,
2473 poll => 'r',
2474 cb => \&IO::AIO::poll_cb);
2475
2476 # Glib/Gtk2 integration
2477 add_watch Glib::IO IO::AIO::poll_fileno,
2478 in => sub { IO::AIO::poll_cb; 1 };
2479
2480 # Tk integration
2481 Tk::Event::IO->fileevent (IO::AIO::poll_fileno, "",
2482 readable => \&IO::AIO::poll_cb);
2483
2484 # Danga::Socket integration
2485 Danga::Socket->AddOtherFds (IO::AIO::poll_fileno =>
2486 \&IO::AIO::poll_cb);
2487
1265=head2 FORK BEHAVIOUR 2488=head2 FORK BEHAVIOUR
1266 2489
1267This module should do "the right thing" when the process using it forks: 2490Usage of pthreads in a program changes the semantics of fork
2491considerably. Specifically, only async-safe functions can be called after
2492fork. Perl doesn't know about this, so in general, you cannot call fork
2493with defined behaviour in perl if pthreads are involved. IO::AIO uses
2494pthreads, so this applies, but many other extensions and (for inexplicable
2495reasons) perl itself often is linked against pthreads, so this limitation
2496applies to quite a lot of perls.
1268 2497
1269Before the fork, IO::AIO enters a quiescent state where no requests 2498This module no longer tries to fight your OS, or POSIX. That means IO::AIO
1270can be added in other threads and no results will be processed. After 2499only works in the process that loaded it. Forking is fully supported, but
1271the fork the parent simply leaves the quiescent state and continues 2500using IO::AIO in the child is not.
1272request/result processing, while the child frees the request/result queue
1273(so that the requests started before the fork will only be handled in the
1274parent). Threads will be started on demand until the limit set in the
1275parent process has been reached again.
1276 2501
1277In short: the parent will, after a short pause, continue as if fork had 2502You might get around by not I<using> IO::AIO before (or after)
1278not been called, while the child will act as if IO::AIO has not been used 2503forking. You could also try to call the L<IO::AIO::reinit> function in the
1279yet. 2504child:
2505
2506=over 4
2507
2508=item IO::AIO::reinit
2509
2510Abandons all current requests and I/O threads and simply reinitialises all
2511data structures. This is not an operation supported by any standards, but
2512happens to work on GNU/Linux and some newer BSD systems.
2513
2514The only reasonable use for this function is to call it after forking, if
2515C<IO::AIO> was used in the parent. Calling it while IO::AIO is active in
2516the process will result in undefined behaviour. Calling it at any time
2517will also result in any undefined (by POSIX) behaviour.
2518
2519=back
2520
2521=head2 LINUX-SPECIFIC CALLS
2522
2523When a call is documented as "linux-specific" then this means it
2524originated on GNU/Linux. C<IO::AIO> will usually try to autodetect the
2525availability and compatibility of such calls regardless of the platform
2526it is compiled on, so platforms such as FreeBSD which often implement
2527these calls will work. When in doubt, call them and see if they fail wth
2528C<ENOSYS>.
1280 2529
1281=head2 MEMORY USAGE 2530=head2 MEMORY USAGE
1282 2531
1283Per-request usage: 2532Per-request usage:
1284 2533
1297temporary buffers, and each thread requires a stack and other data 2546temporary buffers, and each thread requires a stack and other data
1298structures (usually around 16k-128k, depending on the OS). 2547structures (usually around 16k-128k, depending on the OS).
1299 2548
1300=head1 KNOWN BUGS 2549=head1 KNOWN BUGS
1301 2550
1302Known bugs will be fixed in the next release. 2551Known bugs will be fixed in the next release :)
2552
2553=head1 KNOWN ISSUES
2554
2555Calls that try to "import" foreign memory areas (such as C<IO::AIO::mmap>
2556or C<IO::AIO::aio_slurp>) do not work with generic lvalues, such as
2557non-created hash slots or other scalars I didn't think of. It's best to
2558avoid such and either use scalar variables or making sure that the scalar
2559exists (e.g. by storing C<undef>) and isn't "funny" (e.g. tied).
2560
2561I am not sure anything can be done about this, so this is considered a
2562known issue, rather than a bug.
1303 2563
1304=head1 SEE ALSO 2564=head1 SEE ALSO
1305 2565
1306L<Coro::AIO>. 2566L<AnyEvent::AIO> for easy integration into event loops, L<Coro::AIO> for a
2567more natural syntax.
1307 2568
1308=head1 AUTHOR 2569=head1 AUTHOR
1309 2570
1310 Marc Lehmann <schmorp@schmorp.de> 2571 Marc Lehmann <schmorp@schmorp.de>
1311 http://home.schmorp.de/ 2572 http://home.schmorp.de/

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