ViewVC Help
View File | Revision Log | Show Annotations | Download File
/cvs/libev/ev.3
(Generate patch)

Comparing libev/ev.3 (file contents):
Revision 1.108 by root, Sat Jul 28 04:15:15 2018 UTC vs.
Revision 1.118 by root, Sat Dec 21 16:11:51 2019 UTC

1.\" Automatically generated by Pod::Man 2.28 (Pod::Simple 3.29) 1.\" Automatically generated by Pod::Man 4.11 (Pod::Simple 3.35)
2.\" 2.\"
3.\" Standard preamble: 3.\" Standard preamble:
4.\" ======================================================================== 4.\" ========================================================================
5.de Sp \" Vertical space (when we can't use .PP) 5.de Sp \" Vertical space (when we can't use .PP)
6.if t .sp .5v 6.if t .sp .5v
44.\" 44.\"
45.\" Escape single quotes in literal strings from groff's Unicode transform. 45.\" Escape single quotes in literal strings from groff's Unicode transform.
46.ie \n(.g .ds Aq \(aq 46.ie \n(.g .ds Aq \(aq
47.el .ds Aq ' 47.el .ds Aq '
48.\" 48.\"
49.\" If the F register is turned on, we'll generate index entries on stderr for 49.\" If the F register is >0, we'll generate index entries on stderr for
50.\" titles (.TH), headers (.SH), subsections (.SS), items (.Ip), and index 50.\" titles (.TH), headers (.SH), subsections (.SS), items (.Ip), and index
51.\" entries marked with X<> in POD. Of course, you'll have to process the 51.\" entries marked with X<> in POD. Of course, you'll have to process the
52.\" output yourself in some meaningful fashion. 52.\" output yourself in some meaningful fashion.
53.\" 53.\"
54.\" Avoid warning from groff about undefined register 'F'. 54.\" Avoid warning from groff about undefined register 'F'.
55.de IX 55.de IX
56.. 56..
57.nr rF 0 57.nr rF 0
58.if \n(.g .if rF .nr rF 1 58.if \n(.g .if rF .nr rF 1
59.if (\n(rF:(\n(.g==0)) \{ 59.if (\n(rF:(\n(.g==0)) \{\
60. if \nF \{ 60. if \nF \{\
61. de IX 61. de IX
62. tm Index:\\$1\t\\n%\t"\\$2" 62. tm Index:\\$1\t\\n%\t"\\$2"
63.. 63..
64. if !\nF==2 \{ 64. if !\nF==2 \{\
65. nr % 0 65. nr % 0
66. nr F 2 66. nr F 2
67. \} 67. \}
68. \} 68. \}
69.\} 69.\}
131.\} 131.\}
132.rm #[ #] #H #V #F C 132.rm #[ #] #H #V #F C
133.\" ======================================================================== 133.\" ========================================================================
134.\" 134.\"
135.IX Title "LIBEV 3" 135.IX Title "LIBEV 3"
136.TH LIBEV 3 "2017-11-14" "libev-4.24" "libev - high performance full featured event loop" 136.TH LIBEV 3 "2019-12-21" "libev-4.31" "libev - high performance full featured event loop"
137.\" For nroff, turn off justification. Always turn off hyphenation; it makes 137.\" For nroff, turn off justification. Always turn off hyphenation; it makes
138.\" way too many mistakes in technical documents. 138.\" way too many mistakes in technical documents.
139.if n .ad l 139.if n .ad l
140.nh 140.nh
141.SH "NAME" 141.SH "NAME"
240watchers\fR, which are relatively small C structures you initialise with the 240watchers\fR, which are relatively small C structures you initialise with the
241details of the event, and then hand it over to libev by \fIstarting\fR the 241details of the event, and then hand it over to libev by \fIstarting\fR the
242watcher. 242watcher.
243.SS "\s-1FEATURES\s0" 243.SS "\s-1FEATURES\s0"
244.IX Subsection "FEATURES" 244.IX Subsection "FEATURES"
245Libev supports \f(CW\*(C`select\*(C'\fR, \f(CW\*(C`poll\*(C'\fR, the Linux-specific \f(CW\*(C`epoll\*(C'\fR, the 245Libev supports \f(CW\*(C`select\*(C'\fR, \f(CW\*(C`poll\*(C'\fR, the Linux-specific aio and \f(CW\*(C`epoll\*(C'\fR
246BSD-specific \f(CW\*(C`kqueue\*(C'\fR and the Solaris-specific event port mechanisms 246interfaces, the BSD-specific \f(CW\*(C`kqueue\*(C'\fR and the Solaris-specific event port
247for file descriptor events (\f(CW\*(C`ev_io\*(C'\fR), the Linux \f(CW\*(C`inotify\*(C'\fR interface 247mechanisms for file descriptor events (\f(CW\*(C`ev_io\*(C'\fR), the Linux \f(CW\*(C`inotify\*(C'\fR
248(for \f(CW\*(C`ev_stat\*(C'\fR), Linux eventfd/signalfd (for faster and cleaner 248interface (for \f(CW\*(C`ev_stat\*(C'\fR), Linux eventfd/signalfd (for faster and cleaner
249inter-thread wakeup (\f(CW\*(C`ev_async\*(C'\fR)/signal handling (\f(CW\*(C`ev_signal\*(C'\fR)) relative 249inter-thread wakeup (\f(CW\*(C`ev_async\*(C'\fR)/signal handling (\f(CW\*(C`ev_signal\*(C'\fR)) relative
250timers (\f(CW\*(C`ev_timer\*(C'\fR), absolute timers with customised rescheduling 250timers (\f(CW\*(C`ev_timer\*(C'\fR), absolute timers with customised rescheduling
251(\f(CW\*(C`ev_periodic\*(C'\fR), synchronous signals (\f(CW\*(C`ev_signal\*(C'\fR), process status 251(\f(CW\*(C`ev_periodic\*(C'\fR), synchronous signals (\f(CW\*(C`ev_signal\*(C'\fR), process status
252change events (\f(CW\*(C`ev_child\*(C'\fR), and event watchers dealing with the event 252change events (\f(CW\*(C`ev_child\*(C'\fR), and event watchers dealing with the event
253loop mechanism itself (\f(CW\*(C`ev_idle\*(C'\fR, \f(CW\*(C`ev_embed\*(C'\fR, \f(CW\*(C`ev_prepare\*(C'\fR and 253loop mechanism itself (\f(CW\*(C`ev_idle\*(C'\fR, \f(CW\*(C`ev_embed\*(C'\fR, \f(CW\*(C`ev_prepare\*(C'\fR and
291When libev detects a usage error such as a negative timer interval, then 291When libev detects a usage error such as a negative timer interval, then
292it will print a diagnostic message and abort (via the \f(CW\*(C`assert\*(C'\fR mechanism, 292it will print a diagnostic message and abort (via the \f(CW\*(C`assert\*(C'\fR mechanism,
293so \f(CW\*(C`NDEBUG\*(C'\fR will disable this checking): these are programming errors in 293so \f(CW\*(C`NDEBUG\*(C'\fR will disable this checking): these are programming errors in
294the libev caller and need to be fixed there. 294the libev caller and need to be fixed there.
295.PP 295.PP
296Via the \f(CW\*(C`EV_FREQUENT\*(C'\fR macro you can compile in and/or enable extensive
297consistency checking code inside libev that can be used to check for
298internal inconsistencies, suually caused by application bugs.
299.PP
296Libev also has a few internal error-checking \f(CW\*(C`assert\*(C'\fRions, and also has 300Libev also has a few internal error-checking \f(CW\*(C`assert\*(C'\fRions. These do not
297extensive consistency checking code. These do not trigger under normal
298circumstances, as they indicate either a bug in libev or worse. 301trigger under normal circumstances, as they indicate either a bug in libev
302or worse.
299.SH "GLOBAL FUNCTIONS" 303.SH "GLOBAL FUNCTIONS"
300.IX Header "GLOBAL FUNCTIONS" 304.IX Header "GLOBAL FUNCTIONS"
301These functions can be called anytime, even before initialising the 305These functions can be called anytime, even before initialising the
302library in any way. 306library in any way.
303.IP "ev_tstamp ev_time ()" 4 307.IP "ev_tstamp ev_time ()" 4
392.Sp 396.Sp
393You could override this function in high-availability programs to, say, 397You could override this function in high-availability programs to, say,
394free some memory if it cannot allocate memory, to use a special allocator, 398free some memory if it cannot allocate memory, to use a special allocator,
395or even to sleep a while and retry until some memory is available. 399or even to sleep a while and retry until some memory is available.
396.Sp 400.Sp
401Example: The following is the \f(CW\*(C`realloc\*(C'\fR function that libev itself uses
402which should work with \f(CW\*(C`realloc\*(C'\fR and \f(CW\*(C`free\*(C'\fR functions of all kinds and
403is probably a good basis for your own implementation.
404.Sp
405.Vb 5
406\& static void *
407\& ev_realloc_emul (void *ptr, long size) EV_NOEXCEPT
408\& {
409\& if (size)
410\& return realloc (ptr, size);
411\&
412\& free (ptr);
413\& return 0;
414\& }
415.Ve
416.Sp
397Example: Replace the libev allocator with one that waits a bit and then 417Example: Replace the libev allocator with one that waits a bit and then
398retries (example requires a standards-compliant \f(CW\*(C`realloc\*(C'\fR). 418retries.
399.Sp 419.Sp
400.Vb 6 420.Vb 8
401\& static void * 421\& static void *
402\& persistent_realloc (void *ptr, size_t size) 422\& persistent_realloc (void *ptr, size_t size)
403\& { 423\& {
424\& if (!size)
425\& {
426\& free (ptr);
427\& return 0;
428\& }
429\&
404\& for (;;) 430\& for (;;)
405\& { 431\& {
406\& void *newptr = realloc (ptr, size); 432\& void *newptr = realloc (ptr, size);
407\& 433\&
408\& if (newptr) 434\& if (newptr)
580want to handle signals only in specific threads and want to avoid libev 606want to handle signals only in specific threads and want to avoid libev
581unblocking the signals. 607unblocking the signals.
582.Sp 608.Sp
583It's also required by \s-1POSIX\s0 in a threaded program, as libev calls 609It's also required by \s-1POSIX\s0 in a threaded program, as libev calls
584\&\f(CW\*(C`sigprocmask\*(C'\fR, whose behaviour is officially unspecified. 610\&\f(CW\*(C`sigprocmask\*(C'\fR, whose behaviour is officially unspecified.
611.ie n .IP """EVFLAG_NOTIMERFD""" 4
612.el .IP "\f(CWEVFLAG_NOTIMERFD\fR" 4
613.IX Item "EVFLAG_NOTIMERFD"
614When this flag is specified, the libev will avoid using a \f(CW\*(C`timerfd\*(C'\fR to
615detect time jumps. It will still be able to detect time jumps, but takes
616longer and has a lower accuracy in doing so, but saves a file descriptor
617per loop.
585.Sp 618.Sp
586This flag's behaviour will become the default in future versions of libev. 619The current implementation only tries to use a \f(CW\*(C`timerfd\*(C'\fR when the first
620\&\f(CW\*(C`ev_periodic\*(C'\fR watcher is started and falls back on other methods if it
621cannot be created, but this behaviour might change in the future.
587.ie n .IP """EVBACKEND_SELECT"" (value 1, portable select backend)" 4 622.ie n .IP """EVBACKEND_SELECT"" (value 1, portable select backend)" 4
588.el .IP "\f(CWEVBACKEND_SELECT\fR (value 1, portable select backend)" 4 623.el .IP "\f(CWEVBACKEND_SELECT\fR (value 1, portable select backend)" 4
589.IX Item "EVBACKEND_SELECT (value 1, portable select backend)" 624.IX Item "EVBACKEND_SELECT (value 1, portable select backend)"
590This is your standard \fIselect\fR\|(2) backend. Not \fIcompletely\fR standard, as 625This is your standard \fBselect\fR\|(2) backend. Not \fIcompletely\fR standard, as
591libev tries to roll its own fd_set with no limits on the number of fds, 626libev tries to roll its own fd_set with no limits on the number of fds,
592but if that fails, expect a fairly low limit on the number of fds when 627but if that fails, expect a fairly low limit on the number of fds when
593using this backend. It doesn't scale too well (O(highest_fd)), but its 628using this backend. It doesn't scale too well (O(highest_fd)), but its
594usually the fastest backend for a low number of (low-numbered :) fds. 629usually the fastest backend for a low number of (low-numbered :) fds.
595.Sp 630.Sp
604\&\f(CW\*(C`writefds\*(C'\fR set (and to work around Microsoft Windows bugs, also onto the 639\&\f(CW\*(C`writefds\*(C'\fR set (and to work around Microsoft Windows bugs, also onto the
605\&\f(CW\*(C`exceptfds\*(C'\fR set on that platform). 640\&\f(CW\*(C`exceptfds\*(C'\fR set on that platform).
606.ie n .IP """EVBACKEND_POLL"" (value 2, poll backend, available everywhere except on windows)" 4 641.ie n .IP """EVBACKEND_POLL"" (value 2, poll backend, available everywhere except on windows)" 4
607.el .IP "\f(CWEVBACKEND_POLL\fR (value 2, poll backend, available everywhere except on windows)" 4 642.el .IP "\f(CWEVBACKEND_POLL\fR (value 2, poll backend, available everywhere except on windows)" 4
608.IX Item "EVBACKEND_POLL (value 2, poll backend, available everywhere except on windows)" 643.IX Item "EVBACKEND_POLL (value 2, poll backend, available everywhere except on windows)"
609And this is your standard \fIpoll\fR\|(2) backend. It's more complicated 644And this is your standard \fBpoll\fR\|(2) backend. It's more complicated
610than select, but handles sparse fds better and has no artificial 645than select, but handles sparse fds better and has no artificial
611limit on the number of fds you can use (except it will slow down 646limit on the number of fds you can use (except it will slow down
612considerably with a lot of inactive fds). It scales similarly to select, 647considerably with a lot of inactive fds). It scales similarly to select,
613i.e. O(total_fds). See the entry for \f(CW\*(C`EVBACKEND_SELECT\*(C'\fR, above, for 648i.e. O(total_fds). See the entry for \f(CW\*(C`EVBACKEND_SELECT\*(C'\fR, above, for
614performance tips. 649performance tips.
616This backend maps \f(CW\*(C`EV_READ\*(C'\fR to \f(CW\*(C`POLLIN | POLLERR | POLLHUP\*(C'\fR, and 651This backend maps \f(CW\*(C`EV_READ\*(C'\fR to \f(CW\*(C`POLLIN | POLLERR | POLLHUP\*(C'\fR, and
617\&\f(CW\*(C`EV_WRITE\*(C'\fR to \f(CW\*(C`POLLOUT | POLLERR | POLLHUP\*(C'\fR. 652\&\f(CW\*(C`EV_WRITE\*(C'\fR to \f(CW\*(C`POLLOUT | POLLERR | POLLHUP\*(C'\fR.
618.ie n .IP """EVBACKEND_EPOLL"" (value 4, Linux)" 4 653.ie n .IP """EVBACKEND_EPOLL"" (value 4, Linux)" 4
619.el .IP "\f(CWEVBACKEND_EPOLL\fR (value 4, Linux)" 4 654.el .IP "\f(CWEVBACKEND_EPOLL\fR (value 4, Linux)" 4
620.IX Item "EVBACKEND_EPOLL (value 4, Linux)" 655.IX Item "EVBACKEND_EPOLL (value 4, Linux)"
621Use the linux-specific \fIepoll\fR\|(7) interface (for both pre\- and post\-2.6.9 656Use the Linux-specific \fBepoll\fR\|(7) interface (for both pre\- and post\-2.6.9
622kernels). 657kernels).
623.Sp 658.Sp
624For few fds, this backend is a bit little slower than poll and select, but 659For few fds, this backend is a bit little slower than poll and select, but
625it scales phenomenally better. While poll and select usually scale like 660it scales phenomenally better. While poll and select usually scale like
626O(total_fds) where total_fds is the total number of fds (or the highest 661O(total_fds) where total_fds is the total number of fds (or the highest
672All this means that, in practice, \f(CW\*(C`EVBACKEND_SELECT\*(C'\fR can be as fast or 707All this means that, in practice, \f(CW\*(C`EVBACKEND_SELECT\*(C'\fR can be as fast or
673faster than epoll for maybe up to a hundred file descriptors, depending on 708faster than epoll for maybe up to a hundred file descriptors, depending on
674the usage. So sad. 709the usage. So sad.
675.Sp 710.Sp
676While nominally embeddable in other event loops, this feature is broken in 711While nominally embeddable in other event loops, this feature is broken in
677all kernel versions tested so far. 712a lot of kernel revisions, but probably(!) works in current versions.
713.Sp
714This backend maps \f(CW\*(C`EV_READ\*(C'\fR and \f(CW\*(C`EV_WRITE\*(C'\fR in the same way as
715\&\f(CW\*(C`EVBACKEND_POLL\*(C'\fR.
716.ie n .IP """EVBACKEND_LINUXAIO"" (value 64, Linux)" 4
717.el .IP "\f(CWEVBACKEND_LINUXAIO\fR (value 64, Linux)" 4
718.IX Item "EVBACKEND_LINUXAIO (value 64, Linux)"
719Use the Linux-specific Linux \s-1AIO\s0 (\fInot\fR \f(CWaio(7)\fR but \f(CWio_submit(2)\fR) event interface available in post\-4.18 kernels (but libev
720only tries to use it in 4.19+).
721.Sp
722This is another Linux train wreck of an event interface.
723.Sp
724If this backend works for you (as of this writing, it was very
725experimental), it is the best event interface available on Linux and might
726be well worth enabling it \- if it isn't available in your kernel this will
727be detected and this backend will be skipped.
728.Sp
729This backend can batch oneshot requests and supports a user-space ring
730buffer to receive events. It also doesn't suffer from most of the design
731problems of epoll (such as not being able to remove event sources from
732the epoll set), and generally sounds too good to be true. Because, this
733being the Linux kernel, of course it suffers from a whole new set of
734limitations, forcing you to fall back to epoll, inheriting all its design
735issues.
736.Sp
737For one, it is not easily embeddable (but probably could be done using
738an event fd at some extra overhead). It also is subject to a system wide
739limit that can be configured in \fI/proc/sys/fs/aio\-max\-nr\fR. If no \s-1AIO\s0
740requests are left, this backend will be skipped during initialisation, and
741will switch to epoll when the loop is active.
742.Sp
743Most problematic in practice, however, is that not all file descriptors
744work with it. For example, in Linux 5.1, \s-1TCP\s0 sockets, pipes, event fds,
745files, \fI/dev/null\fR and many others are supported, but ttys do not work
746properly (a known bug that the kernel developers don't care about, see
747<https://lore.kernel.org/patchwork/patch/1047453/>), so this is not
748(yet?) a generic event polling interface.
749.Sp
750Overall, it seems the Linux developers just don't want it to have a
751generic event handling mechanism other than \f(CW\*(C`select\*(C'\fR or \f(CW\*(C`poll\*(C'\fR.
752.Sp
753To work around all these problem, the current version of libev uses its
754epoll backend as a fallback for file descriptor types that do not work. Or
755falls back completely to epoll if the kernel acts up.
678.Sp 756.Sp
679This backend maps \f(CW\*(C`EV_READ\*(C'\fR and \f(CW\*(C`EV_WRITE\*(C'\fR in the same way as 757This backend maps \f(CW\*(C`EV_READ\*(C'\fR and \f(CW\*(C`EV_WRITE\*(C'\fR in the same way as
680\&\f(CW\*(C`EVBACKEND_POLL\*(C'\fR. 758\&\f(CW\*(C`EVBACKEND_POLL\*(C'\fR.
681.ie n .IP """EVBACKEND_KQUEUE"" (value 8, most \s-1BSD\s0 clones)" 4 759.ie n .IP """EVBACKEND_KQUEUE"" (value 8, most \s-1BSD\s0 clones)" 4
682.el .IP "\f(CWEVBACKEND_KQUEUE\fR (value 8, most \s-1BSD\s0 clones)" 4 760.el .IP "\f(CWEVBACKEND_KQUEUE\fR (value 8, most \s-1BSD\s0 clones)" 4
683.IX Item "EVBACKEND_KQUEUE (value 8, most BSD clones)" 761.IX Item "EVBACKEND_KQUEUE (value 8, most BSD clones)"
684Kqueue deserves special mention, as at the time of this writing, it 762Kqueue deserves special mention, as at the time this backend was
685was broken on all BSDs except NetBSD (usually it doesn't work reliably 763implemented, it was broken on all BSDs except NetBSD (usually it doesn't
686with anything but sockets and pipes, except on Darwin, where of course 764work reliably with anything but sockets and pipes, except on Darwin,
687it's completely useless). Unlike epoll, however, whose brokenness 765where of course it's completely useless). Unlike epoll, however, whose
688is by design, these kqueue bugs can (and eventually will) be fixed 766brokenness is by design, these kqueue bugs can be (and mostly have been)
689without \s-1API\s0 changes to existing programs. For this reason it's not being 767fixed without \s-1API\s0 changes to existing programs. For this reason it's not
690\&\*(L"auto-detected\*(R" unless you explicitly specify it in the flags (i.e. using 768being \*(L"auto-detected\*(R" on all platforms unless you explicitly specify it
691\&\f(CW\*(C`EVBACKEND_KQUEUE\*(C'\fR) or libev was compiled on a known-to-be-good (\-enough) 769in the flags (i.e. using \f(CW\*(C`EVBACKEND_KQUEUE\*(C'\fR) or libev was compiled on a
692system like NetBSD. 770known-to-be-good (\-enough) system like NetBSD.
693.Sp 771.Sp
694You still can embed kqueue into a normal poll or select backend and use it 772You still can embed kqueue into a normal poll or select backend and use it
695only for sockets (after having made sure that sockets work with kqueue on 773only for sockets (after having made sure that sockets work with kqueue on
696the target platform). See \f(CW\*(C`ev_embed\*(C'\fR watchers for more info. 774the target platform). See \f(CW\*(C`ev_embed\*(C'\fR watchers for more info.
697.Sp 775.Sp
698It scales in the same way as the epoll backend, but the interface to the 776It scales in the same way as the epoll backend, but the interface to the
699kernel is more efficient (which says nothing about its actual speed, of 777kernel is more efficient (which says nothing about its actual speed, of
700course). While stopping, setting and starting an I/O watcher does never 778course). While stopping, setting and starting an I/O watcher does never
701cause an extra system call as with \f(CW\*(C`EVBACKEND_EPOLL\*(C'\fR, it still adds up to 779cause an extra system call as with \f(CW\*(C`EVBACKEND_EPOLL\*(C'\fR, it still adds up to
702two event changes per incident. Support for \f(CW\*(C`fork ()\*(C'\fR is very bad (you 780two event changes per incident. Support for \f(CW\*(C`fork ()\*(C'\fR is very bad (you
703might have to leak fd's on fork, but it's more sane than epoll) and it 781might have to leak fds on fork, but it's more sane than epoll) and it
704drops fds silently in similarly hard-to-detect cases. 782drops fds silently in similarly hard-to-detect cases.
705.Sp 783.Sp
706This backend usually performs well under most conditions. 784This backend usually performs well under most conditions.
707.Sp 785.Sp
708While nominally embeddable in other event loops, this doesn't work 786While nominally embeddable in other event loops, this doesn't work
785Example: Use whatever libev has to offer, but make sure that kqueue is 863Example: Use whatever libev has to offer, but make sure that kqueue is
786used if available. 864used if available.
787.Sp 865.Sp
788.Vb 1 866.Vb 1
789\& struct ev_loop *loop = ev_loop_new (ev_recommended_backends () | EVBACKEND_KQUEUE); 867\& struct ev_loop *loop = ev_loop_new (ev_recommended_backends () | EVBACKEND_KQUEUE);
868.Ve
869.Sp
870Example: Similarly, on linux, you mgiht want to take advantage of the
871linux aio backend if possible, but fall back to something else if that
872isn't available.
873.Sp
874.Vb 1
875\& struct ev_loop *loop = ev_loop_new (ev_recommended_backends () | EVBACKEND_LINUXAIO);
790.Ve 876.Ve
791.RE 877.RE
792.IP "ev_loop_destroy (loop)" 4 878.IP "ev_loop_destroy (loop)" 4
793.IX Item "ev_loop_destroy (loop)" 879.IX Item "ev_loop_destroy (loop)"
794Destroys an event loop object (frees all memory and kernel state 880Destroys an event loop object (frees all memory and kernel state
1365bug in your program. 1451bug in your program.
1366.Sp 1452.Sp
1367Libev will usually signal a few \*(L"dummy\*(R" events together with an error, for 1453Libev will usually signal a few \*(L"dummy\*(R" events together with an error, for
1368example it might indicate that a fd is readable or writable, and if your 1454example it might indicate that a fd is readable or writable, and if your
1369callbacks is well-written it can just attempt the operation and cope with 1455callbacks is well-written it can just attempt the operation and cope with
1370the error from \fIread()\fR or \fIwrite()\fR. This will not work in multi-threaded 1456the error from \fBread()\fR or \fBwrite()\fR. This will not work in multi-threaded
1371programs, though, as the fd could already be closed and reused for another 1457programs, though, as the fd could already be closed and reused for another
1372thing, so beware. 1458thing, so beware.
1373.SS "\s-1GENERIC WATCHER FUNCTIONS\s0" 1459.SS "\s-1GENERIC WATCHER FUNCTIONS\s0"
1374.IX Subsection "GENERIC WATCHER FUNCTIONS" 1460.IX Subsection "GENERIC WATCHER FUNCTIONS"
1375.ie n .IP """ev_init"" (ev_TYPE *watcher, callback)" 4 1461.ie n .IP """ev_init"" (ev_TYPE *watcher, callback)" 4
1577.IX Subsection "WATCHER PRIORITY MODELS" 1663.IX Subsection "WATCHER PRIORITY MODELS"
1578Many event loops support \fIwatcher priorities\fR, which are usually small 1664Many event loops support \fIwatcher priorities\fR, which are usually small
1579integers that influence the ordering of event callback invocation 1665integers that influence the ordering of event callback invocation
1580between watchers in some way, all else being equal. 1666between watchers in some way, all else being equal.
1581.PP 1667.PP
1582In libev, Watcher priorities can be set using \f(CW\*(C`ev_set_priority\*(C'\fR. See its 1668In libev, watcher priorities can be set using \f(CW\*(C`ev_set_priority\*(C'\fR. See its
1583description for the more technical details such as the actual priority 1669description for the more technical details such as the actual priority
1584range. 1670range.
1585.PP 1671.PP
1586There are two common ways how these these priorities are being interpreted 1672There are two common ways how these these priorities are being interpreted
1587by event loops: 1673by event loops:
1726But really, best use non-blocking mode. 1812But really, best use non-blocking mode.
1727.PP 1813.PP
1728\fIThe special problem of disappearing file descriptors\fR 1814\fIThe special problem of disappearing file descriptors\fR
1729.IX Subsection "The special problem of disappearing file descriptors" 1815.IX Subsection "The special problem of disappearing file descriptors"
1730.PP 1816.PP
1731Some backends (e.g. kqueue, epoll) need to be told about closing a file 1817Some backends (e.g. kqueue, epoll, linuxaio) need to be told about closing
1732descriptor (either due to calling \f(CW\*(C`close\*(C'\fR explicitly or any other means, 1818a file descriptor (either due to calling \f(CW\*(C`close\*(C'\fR explicitly or any other
1733such as \f(CW\*(C`dup2\*(C'\fR). The reason is that you register interest in some file 1819means, such as \f(CW\*(C`dup2\*(C'\fR). The reason is that you register interest in some
1734descriptor, but when it goes away, the operating system will silently drop 1820file descriptor, but when it goes away, the operating system will silently
1735this interest. If another file descriptor with the same number then is 1821drop this interest. If another file descriptor with the same number then
1736registered with libev, there is no efficient way to see that this is, in 1822is registered with libev, there is no efficient way to see that this is,
1737fact, a different file descriptor. 1823in fact, a different file descriptor.
1738.PP 1824.PP
1739To avoid having to explicitly tell libev about such cases, libev follows 1825To avoid having to explicitly tell libev about such cases, libev follows
1740the following policy: Each time \f(CW\*(C`ev_io_set\*(C'\fR is being called, libev 1826the following policy: Each time \f(CW\*(C`ev_io_set\*(C'\fR is being called, libev
1741will assume that this is potentially a new file descriptor, otherwise 1827will assume that this is potentially a new file descriptor, otherwise
1742it is assumed that the file descriptor stays the same. That means that 1828it is assumed that the file descriptor stays the same. That means that
1794reuse the same code path. 1880reuse the same code path.
1795.PP 1881.PP
1796\fIThe special problem of fork\fR 1882\fIThe special problem of fork\fR
1797.IX Subsection "The special problem of fork" 1883.IX Subsection "The special problem of fork"
1798.PP 1884.PP
1799Some backends (epoll, kqueue) do not support \f(CW\*(C`fork ()\*(C'\fR at all or exhibit 1885Some backends (epoll, kqueue, linuxaio, iouring) do not support \f(CW\*(C`fork ()\*(C'\fR
1800useless behaviour. Libev fully supports fork, but needs to be told about 1886at all or exhibit useless behaviour. Libev fully supports fork, but needs
1801it in the child if you want to continue to use it in the child. 1887to be told about it in the child if you want to continue to use it in the
1888child.
1802.PP 1889.PP
1803To support fork in your child processes, you have to call \f(CW\*(C`ev_loop_fork 1890To support fork in your child processes, you have to call \f(CW\*(C`ev_loop_fork
1804()\*(C'\fR after a fork in the child, enable \f(CW\*(C`EVFLAG_FORKCHECK\*(C'\fR, or resort to 1891()\*(C'\fR after a fork in the child, enable \f(CW\*(C`EVFLAG_FORKCHECK\*(C'\fR, or resort to
1805\&\f(CW\*(C`EVBACKEND_SELECT\*(C'\fR or \f(CW\*(C`EVBACKEND_POLL\*(C'\fR. 1892\&\f(CW\*(C`EVBACKEND_SELECT\*(C'\fR or \f(CW\*(C`EVBACKEND_POLL\*(C'\fR.
1806.PP 1893.PP
1811when writing to a pipe whose other end has been closed, your program gets 1898when writing to a pipe whose other end has been closed, your program gets
1812sent a \s-1SIGPIPE,\s0 which, by default, aborts your program. For most programs 1899sent a \s-1SIGPIPE,\s0 which, by default, aborts your program. For most programs
1813this is sensible behaviour, for daemons, this is usually undesirable. 1900this is sensible behaviour, for daemons, this is usually undesirable.
1814.PP 1901.PP
1815So when you encounter spurious, unexplained daemon exits, make sure you 1902So when you encounter spurious, unexplained daemon exits, make sure you
1816ignore \s-1SIGPIPE \s0(and maybe make sure you log the exit status of your daemon 1903ignore \s-1SIGPIPE\s0 (and maybe make sure you log the exit status of your daemon
1817somewhere, as that would have given you a big clue). 1904somewhere, as that would have given you a big clue).
1818.PP 1905.PP
1819\fIThe special problem of \fIaccept()\fIing when you can't\fR 1906\fIThe special problem of \f(BIaccept()\fIing when you can't\fR
1820.IX Subsection "The special problem of accept()ing when you can't" 1907.IX Subsection "The special problem of accept()ing when you can't"
1821.PP 1908.PP
1822Many implementations of the \s-1POSIX \s0\f(CW\*(C`accept\*(C'\fR function (for example, 1909Many implementations of the \s-1POSIX\s0 \f(CW\*(C`accept\*(C'\fR function (for example,
1823found in post\-2004 Linux) have the peculiar behaviour of not removing a 1910found in post\-2004 Linux) have the peculiar behaviour of not removing a
1824connection from the pending queue in all error cases. 1911connection from the pending queue in all error cases.
1825.PP 1912.PP
1826For example, larger servers often run out of file descriptors (because 1913For example, larger servers often run out of file descriptors (because
1827of resource limits), causing \f(CW\*(C`accept\*(C'\fR to fail with \f(CW\*(C`ENFILE\*(C'\fR but not 1914of resource limits), causing \f(CW\*(C`accept\*(C'\fR to fail with \f(CW\*(C`ENFILE\*(C'\fR but not
2251.IX Item "ev_timer_init (ev_timer *, callback, ev_tstamp after, ev_tstamp repeat)" 2338.IX Item "ev_timer_init (ev_timer *, callback, ev_tstamp after, ev_tstamp repeat)"
2252.PD 0 2339.PD 0
2253.IP "ev_timer_set (ev_timer *, ev_tstamp after, ev_tstamp repeat)" 4 2340.IP "ev_timer_set (ev_timer *, ev_tstamp after, ev_tstamp repeat)" 4
2254.IX Item "ev_timer_set (ev_timer *, ev_tstamp after, ev_tstamp repeat)" 2341.IX Item "ev_timer_set (ev_timer *, ev_tstamp after, ev_tstamp repeat)"
2255.PD 2342.PD
2256Configure the timer to trigger after \f(CW\*(C`after\*(C'\fR seconds. If \f(CW\*(C`repeat\*(C'\fR 2343Configure the timer to trigger after \f(CW\*(C`after\*(C'\fR seconds (fractional and
2257is \f(CW0.\fR, then it will automatically be stopped once the timeout is 2344negative values are supported). If \f(CW\*(C`repeat\*(C'\fR is \f(CW0.\fR, then it will
2258reached. If it is positive, then the timer will automatically be 2345automatically be stopped once the timeout is reached. If it is positive,
2259configured to trigger again \f(CW\*(C`repeat\*(C'\fR seconds later, again, and again, 2346then the timer will automatically be configured to trigger again \f(CW\*(C`repeat\*(C'\fR
2260until stopped manually. 2347seconds later, again, and again, until stopped manually.
2261.Sp 2348.Sp
2262The timer itself will do a best-effort at avoiding drift, that is, if 2349The timer itself will do a best-effort at avoiding drift, that is, if
2263you configure a timer to trigger every 10 seconds, then it will normally 2350you configure a timer to trigger every 10 seconds, then it will normally
2264trigger at exactly 10 second intervals. If, however, your program cannot 2351trigger at exactly 10 second intervals. If, however, your program cannot
2265keep up with the timer (because it takes longer than those 10 seconds to 2352keep up with the timer (because it takes longer than those 10 seconds to
2362\&\f(CW\*(C`ev_timer\*(C'\fR, which would still trigger roughly 10 seconds after starting 2449\&\f(CW\*(C`ev_timer\*(C'\fR, which would still trigger roughly 10 seconds after starting
2363it, as it uses a relative timeout). 2450it, as it uses a relative timeout).
2364.PP 2451.PP
2365\&\f(CW\*(C`ev_periodic\*(C'\fR watchers can also be used to implement vastly more complex 2452\&\f(CW\*(C`ev_periodic\*(C'\fR watchers can also be used to implement vastly more complex
2366timers, such as triggering an event on each \*(L"midnight, local time\*(R", or 2453timers, such as triggering an event on each \*(L"midnight, local time\*(R", or
2367other complicated rules. This cannot be done with \f(CW\*(C`ev_timer\*(C'\fR watchers, as 2454other complicated rules. This cannot easily be done with \f(CW\*(C`ev_timer\*(C'\fR
2368those cannot react to time jumps. 2455watchers, as those cannot react to time jumps.
2369.PP 2456.PP
2370As with timers, the callback is guaranteed to be invoked only when the 2457As with timers, the callback is guaranteed to be invoked only when the
2371point in time where it is supposed to trigger has passed. If multiple 2458point in time where it is supposed to trigger has passed. If multiple
2372timers become ready during the same loop iteration then the ones with 2459timers become ready during the same loop iteration then the ones with
2373earlier time-out values are invoked before ones with later time-out values 2460earlier time-out values are invoked before ones with later time-out values
2434In this mode the values for \f(CW\*(C`interval\*(C'\fR and \f(CW\*(C`offset\*(C'\fR are both being 2521In this mode the values for \f(CW\*(C`interval\*(C'\fR and \f(CW\*(C`offset\*(C'\fR are both being
2435ignored. Instead, each time the periodic watcher gets scheduled, the 2522ignored. Instead, each time the periodic watcher gets scheduled, the
2436reschedule callback will be called with the watcher as first, and the 2523reschedule callback will be called with the watcher as first, and the
2437current time as second argument. 2524current time as second argument.
2438.Sp 2525.Sp
2439\&\s-1NOTE: \s0\fIThis callback \s-1MUST NOT\s0 stop or destroy any periodic watcher, ever, 2526\&\s-1NOTE:\s0 \fIThis callback \s-1MUST NOT\s0 stop or destroy any periodic watcher, ever,
2440or make \s-1ANY\s0 other event loop modifications whatsoever, unless explicitly 2527or make \s-1ANY\s0 other event loop modifications whatsoever, unless explicitly
2441allowed by documentation here\fR. 2528allowed by documentation here\fR.
2442.Sp 2529.Sp
2443If you need to stop it, return \f(CW\*(C`now + 1e30\*(C'\fR (or so, fudge fudge) and stop 2530If you need to stop it, return \f(CW\*(C`now + 1e30\*(C'\fR (or so, fudge fudge) and stop
2444it afterwards (e.g. by starting an \f(CW\*(C`ev_prepare\*(C'\fR watcher, which is the 2531it afterwards (e.g. by starting an \f(CW\*(C`ev_prepare\*(C'\fR watcher, which is the
2458It must return the next time to trigger, based on the passed time value 2545It must return the next time to trigger, based on the passed time value
2459(that is, the lowest time value larger than to the second argument). It 2546(that is, the lowest time value larger than to the second argument). It
2460will usually be called just before the callback will be triggered, but 2547will usually be called just before the callback will be triggered, but
2461might be called at other times, too. 2548might be called at other times, too.
2462.Sp 2549.Sp
2463\&\s-1NOTE: \s0\fIThis callback must always return a time that is higher than or 2550\&\s-1NOTE:\s0 \fIThis callback must always return a time that is higher than or
2464equal to the passed \f(CI\*(C`now\*(C'\fI value\fR. 2551equal to the passed \f(CI\*(C`now\*(C'\fI value\fR.
2465.Sp 2552.Sp
2466This can be used to create very complex timers, such as a timer that 2553This can be used to create very complex timers, such as a timer that
2467triggers on \*(L"next midnight, local time\*(R". To do this, you would calculate the 2554triggers on \*(L"next midnight, local time\*(R". To do this, you would calculate
2468next midnight after \f(CW\*(C`now\*(C'\fR and return the timestamp value for this. How 2555the next midnight after \f(CW\*(C`now\*(C'\fR and return the timestamp value for
2469you do this is, again, up to you (but it is not trivial, which is the main 2556this. Here is a (completely untested, no error checking) example on how to
2470reason I omitted it as an example). 2557do this:
2558.Sp
2559.Vb 1
2560\& #include <time.h>
2561\&
2562\& static ev_tstamp
2563\& my_rescheduler (ev_periodic *w, ev_tstamp now)
2564\& {
2565\& time_t tnow = (time_t)now;
2566\& struct tm tm;
2567\& localtime_r (&tnow, &tm);
2568\&
2569\& tm.tm_sec = tm.tm_min = tm.tm_hour = 0; // midnight current day
2570\& ++tm.tm_mday; // midnight next day
2571\&
2572\& return mktime (&tm);
2573\& }
2574.Ve
2575.Sp
2576Note: this code might run into trouble on days that have more then two
2577midnights (beginning and end).
2471.RE 2578.RE
2472.RS 4 2579.RS 4
2473.RE 2580.RE
2474.IP "ev_periodic_again (loop, ev_periodic *)" 4 2581.IP "ev_periodic_again (loop, ev_periodic *)" 4
2475.IX Item "ev_periodic_again (loop, ev_periodic *)" 2582.IX Item "ev_periodic_again (loop, ev_periodic *)"
2593The simplest way to ensure that the signal mask is reset in the child is 2700The simplest way to ensure that the signal mask is reset in the child is
2594to install a fork handler with \f(CW\*(C`pthread_atfork\*(C'\fR that resets it. That will 2701to install a fork handler with \f(CW\*(C`pthread_atfork\*(C'\fR that resets it. That will
2595catch fork calls done by libraries (such as the libc) as well. 2702catch fork calls done by libraries (such as the libc) as well.
2596.PP 2703.PP
2597In current versions of libev, the signal will not be blocked indefinitely 2704In current versions of libev, the signal will not be blocked indefinitely
2598unless you use the \f(CW\*(C`signalfd\*(C'\fR \s-1API \s0(\f(CW\*(C`EV_SIGNALFD\*(C'\fR). While this reduces 2705unless you use the \f(CW\*(C`signalfd\*(C'\fR \s-1API\s0 (\f(CW\*(C`EV_SIGNALFD\*(C'\fR). While this reduces
2599the window of opportunity for problems, it will not go away, as libev 2706the window of opportunity for problems, it will not go away, as libev
2600\&\fIhas\fR to modify the signal mask, at least temporarily. 2707\&\fIhas\fR to modify the signal mask, at least temporarily.
2601.PP 2708.PP
2602So I can't stress this enough: \fIIf you do not reset your signal mask when 2709So I can't stress this enough: \fIIf you do not reset your signal mask when
2603you expect it to be empty, you have a race condition in your code\fR. This 2710you expect it to be empty, you have a race condition in your code\fR. This
3645is a time window between the event loop checking and resetting the async 3752is a time window between the event loop checking and resetting the async
3646notification, and the callback being invoked. 3753notification, and the callback being invoked.
3647.SH "OTHER FUNCTIONS" 3754.SH "OTHER FUNCTIONS"
3648.IX Header "OTHER FUNCTIONS" 3755.IX Header "OTHER FUNCTIONS"
3649There are some other functions of possible interest. Described. Here. Now. 3756There are some other functions of possible interest. Described. Here. Now.
3650.IP "ev_once (loop, int fd, int events, ev_tstamp timeout, callback)" 4 3757.IP "ev_once (loop, int fd, int events, ev_tstamp timeout, callback, arg)" 4
3651.IX Item "ev_once (loop, int fd, int events, ev_tstamp timeout, callback)" 3758.IX Item "ev_once (loop, int fd, int events, ev_tstamp timeout, callback, arg)"
3652This function combines a simple timer and an I/O watcher, calls your 3759This function combines a simple timer and an I/O watcher, calls your
3653callback on whichever event happens first and automatically stops both 3760callback on whichever event happens first and automatically stops both
3654watchers. This is useful if you want to wait for a single event on an fd 3761watchers. This is useful if you want to wait for a single event on an fd
3655or timeout without having to allocate/configure/start/stop/free one or 3762or timeout without having to allocate/configure/start/stop/free one or
3656more watchers yourself. 3763more watchers yourself.
4106The normal C \s-1API\s0 should work fine when used from \*(C+: both ev.h and the 4213The normal C \s-1API\s0 should work fine when used from \*(C+: both ev.h and the
4107libev sources can be compiled as \*(C+. Therefore, code that uses the C \s-1API\s0 4214libev sources can be compiled as \*(C+. Therefore, code that uses the C \s-1API\s0
4108will work fine. 4215will work fine.
4109.PP 4216.PP
4110Proper exception specifications might have to be added to callbacks passed 4217Proper exception specifications might have to be added to callbacks passed
4111to libev: exceptions may be thrown only from watcher callbacks, all 4218to libev: exceptions may be thrown only from watcher callbacks, all other
4112other callbacks (allocator, syserr, loop acquire/release and periodic 4219callbacks (allocator, syserr, loop acquire/release and periodic reschedule
4113reschedule callbacks) must not throw exceptions, and might need a \f(CW\*(C`throw 4220callbacks) must not throw exceptions, and might need a \f(CW\*(C`noexcept\*(C'\fR
4114()\*(C'\fR specification. If you have code that needs to be compiled as both C 4221specification. If you have code that needs to be compiled as both C and
4115and \*(C+ you can use the \f(CW\*(C`EV_THROW\*(C'\fR macro for this: 4222\&\*(C+ you can use the \f(CW\*(C`EV_NOEXCEPT\*(C'\fR macro for this:
4116.PP 4223.PP
4117.Vb 6 4224.Vb 6
4118\& static void 4225\& static void
4119\& fatal_error (const char *msg) EV_THROW 4226\& fatal_error (const char *msg) EV_NOEXCEPT
4120\& { 4227\& {
4121\& perror (msg); 4228\& perror (msg);
4122\& abort (); 4229\& abort ();
4123\& } 4230\& }
4124\& 4231\&
4498\& #include "ev.c" 4605\& #include "ev.c"
4499.Ve 4606.Ve
4500.PP 4607.PP
4501This will automatically include \fIev.h\fR, too, and should be done in a 4608This will automatically include \fIev.h\fR, too, and should be done in a
4502single C source file only to provide the function implementations. To use 4609single C source file only to provide the function implementations. To use
4503it, do the same for \fIev.h\fR in all files wishing to use this \s-1API \s0(best 4610it, do the same for \fIev.h\fR in all files wishing to use this \s-1API\s0 (best
4504done by writing a wrapper around \fIev.h\fR that you can include instead and 4611done by writing a wrapper around \fIev.h\fR that you can include instead and
4505where you can put other configuration options): 4612where you can put other configuration options):
4506.PP 4613.PP
4507.Vb 2 4614.Vb 2
4508\& #define EV_STANDALONE 1 4615\& #define EV_STANDALONE 1
4525\& ev_win32.c required on win32 platforms only 4632\& ev_win32.c required on win32 platforms only
4526\& 4633\&
4527\& ev_select.c only when select backend is enabled 4634\& ev_select.c only when select backend is enabled
4528\& ev_poll.c only when poll backend is enabled 4635\& ev_poll.c only when poll backend is enabled
4529\& ev_epoll.c only when the epoll backend is enabled 4636\& ev_epoll.c only when the epoll backend is enabled
4637\& ev_linuxaio.c only when the linux aio backend is enabled
4638\& ev_iouring.c only when the linux io_uring backend is enabled
4530\& ev_kqueue.c only when the kqueue backend is enabled 4639\& ev_kqueue.c only when the kqueue backend is enabled
4531\& ev_port.c only when the solaris port backend is enabled 4640\& ev_port.c only when the solaris port backend is enabled
4532.Ve 4641.Ve
4533.PP 4642.PP
4534\&\fIev.c\fR includes the backend files directly when enabled, so you only need 4643\&\fIev.c\fR includes the backend files directly when enabled, so you only need
4581values when compiling libev vs. including \fIev.h\fR, so it is permissible 4690values when compiling libev vs. including \fIev.h\fR, so it is permissible
4582to redefine them before including \fIev.h\fR without breaking compatibility 4691to redefine them before including \fIev.h\fR without breaking compatibility
4583to a compiled library. All other symbols change the \s-1ABI,\s0 which means all 4692to a compiled library. All other symbols change the \s-1ABI,\s0 which means all
4584users of libev and the libev code itself must be compiled with compatible 4693users of libev and the libev code itself must be compiled with compatible
4585settings. 4694settings.
4586.IP "\s-1EV_COMPAT3 \s0(h)" 4 4695.IP "\s-1EV_COMPAT3\s0 (h)" 4
4587.IX Item "EV_COMPAT3 (h)" 4696.IX Item "EV_COMPAT3 (h)"
4588Backwards compatibility is a major concern for libev. This is why this 4697Backwards compatibility is a major concern for libev. This is why this
4589release of libev comes with wrappers for the functions and symbols that 4698release of libev comes with wrappers for the functions and symbols that
4590have been renamed between libev version 3 and 4. 4699have been renamed between libev version 3 and 4.
4591.Sp 4700.Sp
4596typedef in that case. 4705typedef in that case.
4597.Sp 4706.Sp
4598In some future version, the default for \f(CW\*(C`EV_COMPAT3\*(C'\fR will become \f(CW0\fR, 4707In some future version, the default for \f(CW\*(C`EV_COMPAT3\*(C'\fR will become \f(CW0\fR,
4599and in some even more future version the compatibility code will be 4708and in some even more future version the compatibility code will be
4600removed completely. 4709removed completely.
4601.IP "\s-1EV_STANDALONE \s0(h)" 4 4710.IP "\s-1EV_STANDALONE\s0 (h)" 4
4602.IX Item "EV_STANDALONE (h)" 4711.IX Item "EV_STANDALONE (h)"
4603Must always be \f(CW1\fR if you do not use autoconf configuration, which 4712Must always be \f(CW1\fR if you do not use autoconf configuration, which
4604keeps libev from including \fIconfig.h\fR, and it also defines dummy 4713keeps libev from including \fIconfig.h\fR, and it also defines dummy
4605implementations for some libevent functions (such as logging, which is not 4714implementations for some libevent functions (such as logging, which is not
4606supported). It will also not define any of the structs usually found in 4715supported). It will also not define any of the structs usually found in
4647higher, as it simplifies linking (no need for \f(CW\*(C`\-lrt\*(C'\fR). 4756higher, as it simplifies linking (no need for \f(CW\*(C`\-lrt\*(C'\fR).
4648.IP "\s-1EV_USE_NANOSLEEP\s0" 4 4757.IP "\s-1EV_USE_NANOSLEEP\s0" 4
4649.IX Item "EV_USE_NANOSLEEP" 4758.IX Item "EV_USE_NANOSLEEP"
4650If defined to be \f(CW1\fR, libev will assume that \f(CW\*(C`nanosleep ()\*(C'\fR is available 4759If defined to be \f(CW1\fR, libev will assume that \f(CW\*(C`nanosleep ()\*(C'\fR is available
4651and will use it for delays. Otherwise it will use \f(CW\*(C`select ()\*(C'\fR. 4760and will use it for delays. Otherwise it will use \f(CW\*(C`select ()\*(C'\fR.
4761.IP "\s-1EV_USE_EVENTFD\s0" 4
4762.IX Item "EV_USE_EVENTFD"
4763If defined to be \f(CW1\fR, then libev will assume that \f(CW\*(C`eventfd ()\*(C'\fR is
4764available and will probe for kernel support at runtime. This will improve
4765\&\f(CW\*(C`ev_signal\*(C'\fR and \f(CW\*(C`ev_async\*(C'\fR performance and reduce resource consumption.
4766If undefined, it will be enabled if the headers indicate GNU/Linux + Glibc
47672.7 or newer, otherwise disabled.
4768.IP "\s-1EV_USE_SIGNALFD\s0" 4
4769.IX Item "EV_USE_SIGNALFD"
4770If defined to be \f(CW1\fR, then libev will assume that \f(CW\*(C`signalfd ()\*(C'\fR is
4771available and will probe for kernel support at runtime. This enables
4772the use of \s-1EVFLAG_SIGNALFD\s0 for faster and simpler signal handling. If
4773undefined, it will be enabled if the headers indicate GNU/Linux + Glibc
47742.7 or newer, otherwise disabled.
4775.IP "\s-1EV_USE_TIMERFD\s0" 4
4776.IX Item "EV_USE_TIMERFD"
4777If defined to be \f(CW1\fR, then libev will assume that \f(CW\*(C`timerfd ()\*(C'\fR is
4778available and will probe for kernel support at runtime. This allows
4779libev to detect time jumps accurately. If undefined, it will be enabled
4780if the headers indicate GNU/Linux + Glibc 2.8 or newer and define
4781\&\f(CW\*(C`TFD_TIMER_CANCEL_ON_SET\*(C'\fR, otherwise disabled.
4652.IP "\s-1EV_USE_EVENTFD\s0" 4 4782.IP "\s-1EV_USE_EVENTFD\s0" 4
4653.IX Item "EV_USE_EVENTFD" 4783.IX Item "EV_USE_EVENTFD"
4654If defined to be \f(CW1\fR, then libev will assume that \f(CW\*(C`eventfd ()\*(C'\fR is 4784If defined to be \f(CW1\fR, then libev will assume that \f(CW\*(C`eventfd ()\*(C'\fR is
4655available and will probe for kernel support at runtime. This will improve 4785available and will probe for kernel support at runtime. This will improve
4656\&\f(CW\*(C`ev_signal\*(C'\fR and \f(CW\*(C`ev_async\*(C'\fR performance and reduce resource consumption. 4786\&\f(CW\*(C`ev_signal\*(C'\fR and \f(CW\*(C`ev_async\*(C'\fR performance and reduce resource consumption.
4715If defined to be \f(CW1\fR, libev will compile in support for the Linux 4845If defined to be \f(CW1\fR, libev will compile in support for the Linux
4716\&\f(CW\*(C`epoll\*(C'\fR(7) backend. Its availability will be detected at runtime, 4846\&\f(CW\*(C`epoll\*(C'\fR(7) backend. Its availability will be detected at runtime,
4717otherwise another method will be used as fallback. This is the preferred 4847otherwise another method will be used as fallback. This is the preferred
4718backend for GNU/Linux systems. If undefined, it will be enabled if the 4848backend for GNU/Linux systems. If undefined, it will be enabled if the
4719headers indicate GNU/Linux + Glibc 2.4 or newer, otherwise disabled. 4849headers indicate GNU/Linux + Glibc 2.4 or newer, otherwise disabled.
4850.IP "\s-1EV_USE_LINUXAIO\s0" 4
4851.IX Item "EV_USE_LINUXAIO"
4852If defined to be \f(CW1\fR, libev will compile in support for the Linux aio
4853backend (\f(CW\*(C`EV_USE_EPOLL\*(C'\fR must also be enabled). If undefined, it will be
4854enabled on linux, otherwise disabled.
4855.IP "\s-1EV_USE_IOURING\s0" 4
4856.IX Item "EV_USE_IOURING"
4857If defined to be \f(CW1\fR, libev will compile in support for the Linux
4858io_uring backend (\f(CW\*(C`EV_USE_EPOLL\*(C'\fR must also be enabled). Due to it's
4859current limitations it has to be requested explicitly. If undefined, it
4860will be enabled on linux, otherwise disabled.
4720.IP "\s-1EV_USE_KQUEUE\s0" 4 4861.IP "\s-1EV_USE_KQUEUE\s0" 4
4721.IX Item "EV_USE_KQUEUE" 4862.IX Item "EV_USE_KQUEUE"
4722If defined to be \f(CW1\fR, libev will compile in support for the \s-1BSD\s0 style 4863If defined to be \f(CW1\fR, libev will compile in support for the \s-1BSD\s0 style
4723\&\f(CW\*(C`kqueue\*(C'\fR(2) backend. Its actual availability will be detected at runtime, 4864\&\f(CW\*(C`kqueue\*(C'\fR(2) backend. Its actual availability will be detected at runtime,
4724otherwise another method will be used as fallback. This is the preferred 4865otherwise another method will be used as fallback. This is the preferred
4764handler \*(L"locking\*(R" as well as for signal and thread safety in \f(CW\*(C`ev_async\*(C'\fR 4905handler \*(L"locking\*(R" as well as for signal and thread safety in \f(CW\*(C`ev_async\*(C'\fR
4765watchers. 4906watchers.
4766.Sp 4907.Sp
4767In the absence of this define, libev will use \f(CW\*(C`sig_atomic_t volatile\*(C'\fR 4908In the absence of this define, libev will use \f(CW\*(C`sig_atomic_t volatile\*(C'\fR
4768(from \fIsignal.h\fR), which is usually good enough on most platforms. 4909(from \fIsignal.h\fR), which is usually good enough on most platforms.
4769.IP "\s-1EV_H \s0(h)" 4 4910.IP "\s-1EV_H\s0 (h)" 4
4770.IX Item "EV_H (h)" 4911.IX Item "EV_H (h)"
4771The name of the \fIev.h\fR header file used to include it. The default if 4912The name of the \fIev.h\fR header file used to include it. The default if
4772undefined is \f(CW"ev.h"\fR in \fIevent.h\fR, \fIev.c\fR and \fIev++.h\fR. This can be 4913undefined is \f(CW"ev.h"\fR in \fIevent.h\fR, \fIev.c\fR and \fIev++.h\fR. This can be
4773used to virtually rename the \fIev.h\fR header file in case of conflicts. 4914used to virtually rename the \fIev.h\fR header file in case of conflicts.
4774.IP "\s-1EV_CONFIG_H \s0(h)" 4 4915.IP "\s-1EV_CONFIG_H\s0 (h)" 4
4775.IX Item "EV_CONFIG_H (h)" 4916.IX Item "EV_CONFIG_H (h)"
4776If \f(CW\*(C`EV_STANDALONE\*(C'\fR isn't \f(CW1\fR, this variable can be used to override 4917If \f(CW\*(C`EV_STANDALONE\*(C'\fR isn't \f(CW1\fR, this variable can be used to override
4777\&\fIev.c\fR's idea of where to find the \fIconfig.h\fR file, similarly to 4918\&\fIev.c\fR's idea of where to find the \fIconfig.h\fR file, similarly to
4778\&\f(CW\*(C`EV_H\*(C'\fR, above. 4919\&\f(CW\*(C`EV_H\*(C'\fR, above.
4779.IP "\s-1EV_EVENT_H \s0(h)" 4 4920.IP "\s-1EV_EVENT_H\s0 (h)" 4
4780.IX Item "EV_EVENT_H (h)" 4921.IX Item "EV_EVENT_H (h)"
4781Similarly to \f(CW\*(C`EV_H\*(C'\fR, this macro can be used to override \fIevent.c\fR's idea 4922Similarly to \f(CW\*(C`EV_H\*(C'\fR, this macro can be used to override \fIevent.c\fR's idea
4782of how the \fIevent.h\fR header can be found, the default is \f(CW"event.h"\fR. 4923of how the \fIevent.h\fR header can be found, the default is \f(CW"event.h"\fR.
4783.IP "\s-1EV_PROTOTYPES \s0(h)" 4 4924.IP "\s-1EV_PROTOTYPES\s0 (h)" 4
4784.IX Item "EV_PROTOTYPES (h)" 4925.IX Item "EV_PROTOTYPES (h)"
4785If defined to be \f(CW0\fR, then \fIev.h\fR will not define any function 4926If defined to be \f(CW0\fR, then \fIev.h\fR will not define any function
4786prototypes, but still define all the structs and other symbols. This is 4927prototypes, but still define all the structs and other symbols. This is
4787occasionally useful if you want to provide your own wrapper functions 4928occasionally useful if you want to provide your own wrapper functions
4788around libev functions. 4929around libev functions.
4981called. If set to \f(CW2\fR, then the internal verification code will be 5122called. If set to \f(CW2\fR, then the internal verification code will be
4982called once per loop, which can slow down libev. If set to \f(CW3\fR, then the 5123called once per loop, which can slow down libev. If set to \f(CW3\fR, then the
4983verification code will be called very frequently, which will slow down 5124verification code will be called very frequently, which will slow down
4984libev considerably. 5125libev considerably.
4985.Sp 5126.Sp
5127Verification errors are reported via C's \f(CW\*(C`assert\*(C'\fR mechanism, so if you
5128disable that (e.g. by defining \f(CW\*(C`NDEBUG\*(C'\fR) then no errors will be reported.
5129.Sp
4986The default is \f(CW1\fR, unless \f(CW\*(C`EV_FEATURES\*(C'\fR overrides it, in which case it 5130The default is \f(CW1\fR, unless \f(CW\*(C`EV_FEATURES\*(C'\fR overrides it, in which case it
4987will be \f(CW0\fR. 5131will be \f(CW0\fR.
4988.IP "\s-1EV_COMMON\s0" 4 5132.IP "\s-1EV_COMMON\s0" 4
4989.IX Item "EV_COMMON" 5133.IX Item "EV_COMMON"
4990By default, all watchers have a \f(CW\*(C`void *data\*(C'\fR member. By redefining 5134By default, all watchers have a \f(CW\*(C`void *data\*(C'\fR member. By redefining
4997.Vb 3 5141.Vb 3
4998\& #define EV_COMMON \e 5142\& #define EV_COMMON \e
4999\& SV *self; /* contains this struct */ \e 5143\& SV *self; /* contains this struct */ \e
5000\& SV *cb_sv, *fh /* note no trailing ";" */ 5144\& SV *cb_sv, *fh /* note no trailing ";" */
5001.Ve 5145.Ve
5002.IP "\s-1EV_CB_DECLARE \s0(type)" 4 5146.IP "\s-1EV_CB_DECLARE\s0 (type)" 4
5003.IX Item "EV_CB_DECLARE (type)" 5147.IX Item "EV_CB_DECLARE (type)"
5004.PD 0 5148.PD 0
5005.IP "\s-1EV_CB_INVOKE \s0(watcher, revents)" 4 5149.IP "\s-1EV_CB_INVOKE\s0 (watcher, revents)" 4
5006.IX Item "EV_CB_INVOKE (watcher, revents)" 5150.IX Item "EV_CB_INVOKE (watcher, revents)"
5007.IP "ev_set_cb (ev, cb)" 4 5151.IP "ev_set_cb (ev, cb)" 4
5008.IX Item "ev_set_cb (ev, cb)" 5152.IX Item "ev_set_cb (ev, cb)"
5009.PD 5153.PD
5010Can be used to change the callback member declaration in each watcher, 5154Can be used to change the callback member declaration in each watcher,
5013their default definitions. One possible use for overriding these is to 5157their default definitions. One possible use for overriding these is to
5014avoid the \f(CW\*(C`struct ev_loop *\*(C'\fR as first argument in all cases, or to use 5158avoid the \f(CW\*(C`struct ev_loop *\*(C'\fR as first argument in all cases, or to use
5015method calls instead of plain function calls in \*(C+. 5159method calls instead of plain function calls in \*(C+.
5016.SS "\s-1EXPORTED API SYMBOLS\s0" 5160.SS "\s-1EXPORTED API SYMBOLS\s0"
5017.IX Subsection "EXPORTED API SYMBOLS" 5161.IX Subsection "EXPORTED API SYMBOLS"
5018If you need to re-export the \s-1API \s0(e.g. via a \s-1DLL\s0) and you need a list of 5162If you need to re-export the \s-1API\s0 (e.g. via a \s-1DLL\s0) and you need a list of
5019exported symbols, you can use the provided \fISymbol.*\fR files which list 5163exported symbols, you can use the provided \fISymbol.*\fR files which list
5020all public symbols, one per line: 5164all public symbols, one per line:
5021.PP 5165.PP
5022.Vb 2 5166.Vb 2
5023\& Symbols.ev for libev proper 5167\& Symbols.ev for libev proper
5255.PP 5399.PP
5256\fI\f(CI\*(C`select\*(C'\fI is buggy\fR 5400\fI\f(CI\*(C`select\*(C'\fI is buggy\fR
5257.IX Subsection "select is buggy" 5401.IX Subsection "select is buggy"
5258.PP 5402.PP
5259All that's left is \f(CW\*(C`select\*(C'\fR, and of course Apple found a way to fuck this 5403All that's left is \f(CW\*(C`select\*(C'\fR, and of course Apple found a way to fuck this
5260one up as well: On \s-1OS/X, \s0\f(CW\*(C`select\*(C'\fR actively limits the number of file 5404one up as well: On \s-1OS/X,\s0 \f(CW\*(C`select\*(C'\fR actively limits the number of file
5261descriptors you can pass in to 1024 \- your program suddenly crashes when 5405descriptors you can pass in to 1024 \- your program suddenly crashes when
5262you use more. 5406you use more.
5263.PP 5407.PP
5264There is an undocumented \*(L"workaround\*(R" for this \- defining 5408There is an undocumented \*(L"workaround\*(R" for this \- defining
5265\&\f(CW\*(C`_DARWIN_UNLIMITED_SELECT\*(C'\fR, which libev tries to use, so select \fIshould\fR 5409\&\f(CW\*(C`_DARWIN_UNLIMITED_SELECT\*(C'\fR, which libev tries to use, so select \fIshould\fR

Diff Legend

Removed lines
+ Added lines
< Changed lines
> Changed lines