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Revision 1.94 by root, Tue May 20 23:54:05 2008 UTC vs.
Revision 1.143 by root, Fri Apr 11 04:27:20 2014 UTC

2 2
3EV - perl interface to libev, a high performance full-featured event loop 3EV - perl interface to libev, a high performance full-featured event loop
4 4
5=head1 SYNOPSIS 5=head1 SYNOPSIS
6 6
7 use EV; 7 use EV;
8
9 # TIMERS
10
11 my $w = EV::timer 2, 0, sub {
12 warn "is called after 2s";
13 };
14
15 my $w = EV::timer 2, 2, sub {
16 warn "is called roughly every 2s (repeat = 2)";
17 };
18
19 undef $w; # destroy event watcher again
20
21 my $w = EV::periodic 0, 60, 0, sub {
22 warn "is called every minute, on the minute, exactly";
23 };
24
25 # IO
26
27 my $w = EV::io *STDIN, EV::READ, sub {
28 my ($w, $revents) = @_; # all callbacks receive the watcher and event mask
29 warn "stdin is readable, you entered: ", <STDIN>;
30 };
31
32 # SIGNALS
33
34 my $w = EV::signal 'QUIT', sub {
35 warn "sigquit received\n";
36 };
37
38 # CHILD/PID STATUS CHANGES
8 39
9 # TIMERS 40 my $w = EV::child 666, 0, sub {
41 my ($w, $revents) = @_;
42 my $status = $w->rstatus;
43 };
10 44
11 my $w = EV::timer 2, 0, sub {
12 warn "is called after 2s";
13 };
14
15 my $w = EV::timer 2, 2, sub {
16 warn "is called roughly every 2s (repeat = 2)";
17 };
18
19 undef $w; # destroy event watcher again
20
21 my $w = EV::periodic 0, 60, 0, sub {
22 warn "is called every minute, on the minute, exactly";
23 };
24
25 # IO
26
27 my $w = EV::io *STDIN, EV::READ, sub {
28 my ($w, $revents) = @_; # all callbacks receive the watcher and event mask
29 warn "stdin is readable, you entered: ", <STDIN>;
30 };
31
32 # SIGNALS
33
34 my $w = EV::signal 'QUIT', sub {
35 warn "sigquit received\n";
36 };
37
38 # CHILD/PID STATUS CHANGES
39
40 my $w = EV::child 666, 0, sub {
41 my ($w, $revents) = @_;
42 my $status = $w->rstatus;
43 };
44
45 # STAT CHANGES 45 # STAT CHANGES
46 my $w = EV::stat "/etc/passwd", 10, sub { 46 my $w = EV::stat "/etc/passwd", 10, sub {
47 my ($w, $revents) = @_; 47 my ($w, $revents) = @_;
48 warn $w->path, " has changed somehow.\n"; 48 warn $w->path, " has changed somehow.\n";
49 }; 49 };
50 50
51 # MAINLOOP 51 # MAINLOOP
52 EV::loop; # loop until EV::unloop is called or all watchers stop 52 EV::run; # loop until EV::unloop is called or all watchers stop
53 EV::loop EV::LOOP_ONESHOT; # block until at least one event could be handled 53 EV::run EV::RUN_ONCE; # block until at least one event could be handled
54 EV::loop EV::LOOP_NONBLOCK; # try to handle same events, but do not block 54 EV::run EV::RUN_NOWAIT; # try to handle same events, but do not block
55
56=head1 BEFORE YOU START USING THIS MODULE
57
58If you only need timer, I/O, signal, child and idle watchers and not the
59advanced functionality of this module, consider using L<AnyEvent> instead,
60specifically the simplified API described in L<AE>.
61
62When used with EV as backend, the L<AE> API is as fast as the native L<EV>
63API, but your programs/modules will still run with many other event loops.
55 64
56=head1 DESCRIPTION 65=head1 DESCRIPTION
57 66
58This module provides an interface to libev 67This module provides an interface to libev
59(L<http://software.schmorp.de/pkg/libev.html>). While the documentation 68(L<http://software.schmorp.de/pkg/libev.html>). While the documentation
60below is comprehensive, one might also consult the documentation of libev 69below is comprehensive, one might also consult the documentation of
61itself (L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod>) for more 70libev itself (L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod> or
62subtle details on watcher semantics or some discussion on the available 71F<perldoc EV::libev>) for more subtle details on watcher semantics or some
63backends, or how to force a specific backend with C<LIBEV_FLAGS>, or just 72discussion on the available backends, or how to force a specific backend
64about in any case because it has much more detailed information. 73with C<LIBEV_FLAGS>, or just about in any case because it has much more
74detailed information.
65 75
66This module is very fast and scalable. It is actually so fast that you 76This module is very fast and scalable. It is actually so fast that you
67can use it through the L<AnyEvent> module, stay portable to other event 77can use it through the L<AnyEvent> module, stay portable to other event
68loops (if you don't rely on any watcher types not available through it) 78loops (if you don't rely on any watcher types not available through it)
69and still be faster than with any other event loop currently supported in 79and still be faster than with any other event loop currently supported in
70Perl. 80Perl.
71 81
82=head2 PORTING FROM EV 3.X to 4.X
83
84EV version 4 introduces a number of incompatible changes summarised
85here. According to the depreciation strategy used by libev, there is a
86compatibility layer in place so programs should continue to run unchanged
87(the XS interface lacks this layer, so programs using that one need to be
88updated).
89
90This compatibility layer will be switched off in some future release.
91
92All changes relevant to Perl are renames of symbols, functions and
93methods:
94
95 EV::loop => EV::run
96 EV::LOOP_NONBLOCK => EV::RUN_NOWAIT
97 EV::LOOP_ONESHOT => EV::RUN_ONCE
98
99 EV::unloop => EV::break
100 EV::UNLOOP_CANCEL => EV::BREAK_CANCEL
101 EV::UNLOOP_ONE => EV::BREAK_ONE
102 EV::UNLOOP_ALL => EV::BREAK_ALL
103
104 EV::TIMEOUT => EV::TIMER
105
106 EV::loop_count => EV::iteration
107 EV::loop_depth => EV::depth
108 EV::loop_verify => EV::verify
109
110The loop object methods corresponding to the functions above have been
111similarly renamed.
112
113=head2 MODULE EXPORTS
114
115This module does not export any symbols.
116
72=cut 117=cut
73 118
74package EV; 119package EV;
75 120
76use strict; 121use common::sense;
77 122
78BEGIN { 123BEGIN {
79 our $VERSION = '3.4'; 124 our $VERSION = '4.17';
80 use XSLoader; 125 use XSLoader;
126 local $^W = 0; # avoid spurious warning
81 XSLoader::load "EV", $VERSION; 127 XSLoader::load "EV", $VERSION;
82} 128}
83 129
84@EV::IO::ISA = 130@EV::IO::ISA =
85@EV::Timer::ISA = 131@EV::Timer::ISA =
111default loop as this is fastest (perl-wise), best supported by other 157default loop as this is fastest (perl-wise), best supported by other
112modules (e.g. AnyEvent or Coro) and most portable event loop. 158modules (e.g. AnyEvent or Coro) and most portable event loop.
113 159
114For specific programs you can create additional event loops dynamically. 160For specific programs you can create additional event loops dynamically.
115 161
116=over 4 162If you want to take advantage of kqueue (which often works properly for
163sockets only) even though the default loop doesn't enable it, you can
164I<embed> a kqueue loop into the default loop: running the default loop
165will then also service the kqueue loop to some extent. See the example in
166the section about embed watchers for an example on how to achieve that.
117 167
168=over 4
169
118=item $loop = new EV::loop [$flags] 170=item $loop = new EV::Loop [$flags]
119 171
120Create a new event loop as per the specified flags. Please refer to the 172Create a new event loop as per the specified flags. Please refer to
121C<ev_loop_new ()> function description in the libev documentation 173the C<ev_loop_new ()> function description in the libev documentation
122(L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#GLOBAL_FUNCTIONS>) 174(L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#GLOBAL_FUNCTIONS>,
123for more info. 175or locally-installed as F<EV::libev> manpage) for more info.
124 176
125The loop will automatically be destroyed when it is no longer referenced 177The loop will automatically be destroyed when it is no longer referenced
126by any watcher and the loop object goes out of scope. 178by any watcher and the loop object goes out of scope.
127 179
128Using C<EV::FLAG_FORKCHECK> is recommended, as only the default event loop 180If you are not embedding the loop, then Using C<EV::FLAG_FORKCHECK>
129is protected by this module. 181is recommended, as only the default event loop is protected by this
182module. If you I<are> embedding this loop in the default loop, this is not
183necessary, as C<EV::embed> automatically does the right thing on fork.
130 184
131=item $loop->loop_fork 185=item $loop->loop_fork
132 186
133Must be called after a fork in the child, before entering or continuing 187Must be called after a fork in the child, before entering or continuing
134the event loop. An alternative is to use C<EV::FLAG_FORKCHECK> which calls 188the event loop. An alternative is to use C<EV::FLAG_FORKCHECK> which calls
135this fucntion automatically, at some performance loss (refer to the libev 189this function automatically, at some performance loss (refer to the libev
136documentation). 190documentation).
137 191
192=item $loop->verify
193
194Calls C<ev_verify> to make internal consistency checks (for debugging
195libev) and abort the program if any data structures were found to be
196corrupted.
197
138=item $loop = EV::default_loop [$flags] 198=item $loop = EV::default_loop [$flags]
139 199
140Return the default loop (which is a singleton object). 200Return the default loop (which is a singleton object). Since this module
201already creates the default loop with default flags, specifying flags here
202will not have any effect unless you destroy the default loop first, which
203isn't supported. So in short: don't do it, and if you break it, you get to
204keep the pieces.
141 205
142=back 206=back
143 207
144 208
145=head1 BASIC INTERFACE 209=head1 BASIC INTERFACE
175=item $time = EV::now 239=item $time = EV::now
176 240
177=item $time = $loop->now 241=item $time = $loop->now
178 242
179Returns the time the last event loop iteration has been started. This 243Returns the time the last event loop iteration has been started. This
180is the time that (relative) timers are based on, and refering to it is 244is the time that (relative) timers are based on, and referring to it is
181usually faster then calling EV::time. 245usually faster then calling EV::time.
182 246
247=item EV::now_update
248
249=item $loop->now_update
250
251Establishes the current time by querying the kernel, updating the time
252returned by C<EV::now> in the progress. This is a costly operation and
253is usually done automatically within C<EV::loop>.
254
255This function is rarely useful, but when some event callback runs for a
256very long time without entering the event loop, updating libev's idea of
257the current time is a good idea.
258
259=item EV::suspend
260
261=item $loop->suspend
262
263=item EV::resume
264
265=item $loop->resume
266
267These two functions suspend and resume a loop, for use when the loop is
268not used for a while and timeouts should not be processed.
269
270A typical use case would be an interactive program such as a game: When
271the user presses C<^Z> to suspend the game and resumes it an hour later it
272would be best to handle timeouts as if no time had actually passed while
273the program was suspended. This can be achieved by calling C<suspend>
274in your C<SIGTSTP> handler, sending yourself a C<SIGSTOP> and calling
275C<resume> directly afterwards to resume timer processing.
276
277Effectively, all C<timer> watchers will be delayed by the time spend
278between C<suspend> and C<resume>, and all C<periodic> watchers
279will be rescheduled (that is, they will lose any events that would have
280occured while suspended).
281
282After calling C<suspend> you B<must not> call I<any> function on the given
283loop other than C<resume>, and you B<must not> call C<resume>
284without a previous call to C<suspend>.
285
286Calling C<suspend>/C<resume> has the side effect of updating the event
287loop time (see C<now_update>).
288
183=item $backend = EV::backend 289=item $backend = EV::backend
184 290
185=item $backend = $loop->backend 291=item $backend = $loop->backend
186 292
187Returns an integer describing the backend used by libev (EV::METHOD_SELECT 293Returns an integer describing the backend used by libev (EV::BACKEND_SELECT
188or EV::METHOD_EPOLL). 294or EV::BACKEND_EPOLL).
189 295
190=item EV::loop [$flags] 296=item $active = EV::run [$flags]
191 297
192=item $loop->loop ([$flags]) 298=item $active = $loop->run ([$flags])
193 299
194Begin checking for events and calling callbacks. It returns when a 300Begin checking for events and calling callbacks. It returns when a
195callback calls EV::unloop. 301callback calls EV::unloop or the flasg are nonzero (in which case the
302return value is true) or when there are no active watchers which reference
303the loop (keepalive is true), in which case the return value will be
304false. The returnv alue can generally be interpreted as "if true, there is
305more work left to do".
196 306
197The $flags argument can be one of the following: 307The $flags argument can be one of the following:
198 308
199 0 as above 309 0 as above
200 EV::LOOP_ONESHOT block at most once (wait, but do not loop) 310 EV::RUN_ONCE block at most once (wait, but do not loop)
201 EV::LOOP_NONBLOCK do not block at all (fetch/handle events but do not wait) 311 EV::RUN_NOWAIT do not block at all (fetch/handle events but do not wait)
202 312
203=item EV::unloop [$how] 313=item EV::break [$how]
204 314
205=item $loop->unloop ([$how]) 315=item $loop->break ([$how])
206 316
207When called with no arguments or an argument of EV::UNLOOP_ONE, makes the 317When called with no arguments or an argument of EV::BREAK_ONE, makes the
208innermost call to EV::loop return. 318innermost call to EV::loop return.
209 319
210When called with an argument of EV::UNLOOP_ALL, all calls to EV::loop will return as 320When called with an argument of EV::BREAK_ALL, all calls to EV::loop will
211fast as possible. 321return as fast as possible.
212 322
213=item $count = EV::loop_count 323When called with an argument of EV::BREAK_CANCEL, any pending break will
324be cancelled.
214 325
326=item $count = EV::iteration
327
215=item $count = $loop->loop_count 328=item $count = $loop->iteration
216 329
217Return the number of times the event loop has polled for new 330Return the number of times the event loop has polled for new
218events. Sometiems useful as a generation counter. 331events. Sometimes useful as a generation counter.
219 332
220=item EV::once $fh_or_undef, $events, $timeout, $cb->($revents) 333=item EV::once $fh_or_undef, $events, $timeout, $cb->($revents)
221 334
222=item $loop->once ($fh_or_undef, $events, $timeout, $cb->($revents)) 335=item $loop->once ($fh_or_undef, $events, $timeout, $cb->($revents))
223 336
234timeout. Otherwise a EV::timer with this value will be started. 347timeout. Otherwise a EV::timer with this value will be started.
235 348
236When an error occurs or either the timeout or I/O watcher triggers, then 349When an error occurs or either the timeout or I/O watcher triggers, then
237the callback will be called with the received event set (in general 350the callback will be called with the received event set (in general
238you can expect it to be a combination of C<EV::ERROR>, C<EV::READ>, 351you can expect it to be a combination of C<EV::ERROR>, C<EV::READ>,
239C<EV::WRITE> and C<EV::TIMEOUT>). 352C<EV::WRITE> and C<EV::TIMER>).
240 353
241EV::once doesn't return anything: the watchers stay active till either 354EV::once doesn't return anything: the watchers stay active till either
242of them triggers, then they will be stopped and freed, and the callback 355of them triggers, then they will be stopped and freed, and the callback
243invoked. 356invoked.
244 357
245=item EV::feed_fd_event ($fd, $revents) 358=item EV::feed_fd_event $fd, $revents
246 359
247=item $loop->feed_fd_event ($fd, $revents) 360=item $loop->feed_fd_event ($fd, $revents)
248 361
249Feed an event on a file descriptor into EV. EV will react to this call as 362Feed an event on a file descriptor into EV. EV will react to this call as
250if the readyness notifications specified by C<$revents> (a combination of 363if the readyness notifications specified by C<$revents> (a combination of
251C<EV::READ> and C<EV::WRITE>) happened on the file descriptor C<$fd>. 364C<EV::READ> and C<EV::WRITE>) happened on the file descriptor C<$fd>.
252 365
253=item EV::feed_signal_event ($signal) 366=item EV::feed_signal_event $signal
254 367
255Feed a signal event into EV. EV will react to this call as if the signal 368Feed a signal event into the default loop. EV will react to this call as
256specified by C<$signal> had occured. 369if the signal specified by C<$signal> had occured.
370
371=item EV::feed_signal $signal
372
373Feed a signal event into EV - unlike C<EV::feed_signal_event>, this works
374regardless of which loop has registered the signal, and is mainly useful
375fro custom signal implementations.
257 376
258=item EV::set_io_collect_interval $time 377=item EV::set_io_collect_interval $time
259 378
260=item $loop->set_io_collect_interval ($time) 379=item $loop->set_io_collect_interval ($time)
261 380
263 382
264=item $loop->set_timeout_collect_interval ($time) 383=item $loop->set_timeout_collect_interval ($time)
265 384
266These advanced functions set the minimum block interval when polling for I/O events and the minimum 385These advanced functions set the minimum block interval when polling for I/O events and the minimum
267wait interval for timer events. See the libev documentation at 386wait interval for timer events. See the libev documentation at
268L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#FUNCTIONS_CONTROLLING_THE_EVENT_LOOP> for 387L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#FUNCTIONS_CONTROLLING_THE_EVENT_LOOP>
269a more detailed discussion. 388(locally installed as F<EV::libev>) for a more detailed discussion.
389
390=item $count = EV::pending_count
391
392=item $count = $loop->pending_count
393
394Returns the number of currently pending watchers.
395
396=item EV::invoke_pending
397
398=item $loop->invoke_pending
399
400Invoke all currently pending watchers.
270 401
271=back 402=back
272 403
273 404
274=head1 WATCHER OBJECTS 405=head1 WATCHER OBJECTS
275 406
276A watcher is an object that gets created to record your interest in some 407A watcher is an object that gets created to record your interest in some
277event. For instance, if you want to wait for STDIN to become readable, you 408event. For instance, if you want to wait for STDIN to become readable, you
278would create an EV::io watcher for that: 409would create an EV::io watcher for that:
279 410
280 my $watcher = EV::io *STDIN, EV::READ, sub { 411 my $watcher = EV::io *STDIN, EV::READ, sub {
281 my ($watcher, $revents) = @_; 412 my ($watcher, $revents) = @_;
282 warn "yeah, STDIN should now be readable without blocking!\n" 413 warn "yeah, STDIN should now be readable without blocking!\n"
283 }; 414 };
284 415
285All watchers can be active (waiting for events) or inactive (paused). Only 416All watchers can be active (waiting for events) or inactive (paused). Only
286active watchers will have their callbacks invoked. All callbacks will be 417active watchers will have their callbacks invoked. All callbacks will be
287called with at least two arguments: the watcher and a bitmask of received 418called with at least two arguments: the watcher and a bitmask of received
288events. 419events.
289 420
290Each watcher type has its associated bit in revents, so you can use the 421Each watcher type has its associated bit in revents, so you can use the
291same callback for multiple watchers. The event mask is named after the 422same callback for multiple watchers. The event mask is named after the
292type, i..e. EV::child sets EV::CHILD, EV::prepare sets EV::PREPARE, 423type, i.e. EV::child sets EV::CHILD, EV::prepare sets EV::PREPARE,
293EV::periodic sets EV::PERIODIC and so on, with the exception of I/O events 424EV::periodic sets EV::PERIODIC and so on, with the exception of I/O events
294(which can set both EV::READ and EV::WRITE bits), and EV::timer (which 425(which can set both EV::READ and EV::WRITE bits).
295uses EV::TIMEOUT).
296 426
297In the rare case where one wants to create a watcher but not start it at 427In the rare case where one wants to create a watcher but not start it at
298the same time, each constructor has a variant with a trailing C<_ns> in 428the same time, each constructor has a variant with a trailing C<_ns> in
299its name, e.g. EV::io has a non-starting variant EV::io_ns and so on. 429its name, e.g. EV::io has a non-starting variant EV::io_ns and so on.
300 430
379 509
380=item $previous_state = $w->keepalive ($bool) 510=item $previous_state = $w->keepalive ($bool)
381 511
382Normally, C<EV::loop> will return when there are no active watchers 512Normally, C<EV::loop> will return when there are no active watchers
383(which is a "deadlock" because no progress can be made anymore). This is 513(which is a "deadlock" because no progress can be made anymore). This is
384convinient because it allows you to start your watchers (and your jobs), 514convenient because it allows you to start your watchers (and your jobs),
385call C<EV::loop> once and when it returns you know that all your jobs are 515call C<EV::loop> once and when it returns you know that all your jobs are
386finished (or they forgot to register some watchers for their task :). 516finished (or they forgot to register some watchers for their task :).
387 517
388Sometimes, however, this gets in your way, for example when the module 518Sometimes, however, this gets in your way, for example when the module
389that calls C<EV::loop> (usually the main program) is not the same module 519that calls C<EV::loop> (usually the main program) is not the same module
393because you happen to have this long-running UDP port watcher. 523because you happen to have this long-running UDP port watcher.
394 524
395In this case you can clear the keepalive status, which means that even 525In this case you can clear the keepalive status, which means that even
396though your watcher is active, it won't keep C<EV::loop> from returning. 526though your watcher is active, it won't keep C<EV::loop> from returning.
397 527
398The initial value for keepalive is true (enabled), and you cna change it 528The initial value for keepalive is true (enabled), and you can change it
399any time. 529any time.
400 530
401Example: Register an I/O watcher for some UDP socket but do not keep the 531Example: Register an I/O watcher for some UDP socket but do not keep the
402event loop from running just because of that watcher. 532event loop from running just because of that watcher.
403 533
404 my $udp_socket = ... 534 my $udp_socket = ...
405 my $udp_watcher = EV::io $udp_socket, EV::READ, sub { ... }; 535 my $udp_watcher = EV::io $udp_socket, EV::READ, sub { ... };
406 $1000udp_watcher->keepalive (0); 536 $udp_watcher->keepalive (0);
407 537
408=item $loop = $w->loop 538=item $loop = $w->loop
409 539
410Return the loop that this watcher is attached to. 540Return the loop that this watcher is attached to.
411 541
552time: 682time:
553 683
554 my $hourly = EV::periodic 0, 3600, 0, sub { print "once/hour\n" }; 684 my $hourly = EV::periodic 0, 3600, 0, sub { print "once/hour\n" };
555 685
556That doesn't mean there will always be 3600 seconds in between triggers, 686That doesn't mean there will always be 3600 seconds in between triggers,
557but only that the the clalback will be called when the system time shows a 687but only that the the callback will be called when the system time shows a
558full hour (UTC). 688full hour (UTC).
559 689
560Another way to think about it (for the mathematically inclined) is that 690Another way to think about it (for the mathematically inclined) is that
561EV::periodic will try to run the callback in this mode at the next 691EV::periodic will try to run the callback in this mode at the next
562possible time where C<$time = $at (mod $interval)>, regardless of any time 692possible time where C<$time = $at (mod $interval)>, regardless of any time
621 751
622=item $w = EV::signal $signal, $callback 752=item $w = EV::signal $signal, $callback
623 753
624=item $w = EV::signal_ns $signal, $callback 754=item $w = EV::signal_ns $signal, $callback
625 755
756=item $w = $loop->signal ($signal, $callback)
757
758=item $w = $loop->signal_ns ($signal, $callback)
759
626Call the callback when $signal is received (the signal can be specified by 760Call the callback when $signal is received (the signal can be specified by
627number or by name, just as with C<kill> or C<%SIG>). 761number or by name, just as with C<kill> or C<%SIG>).
762
763Only one event loop can grab a given signal - attempting to grab the same
764signal from two EV loops will crash the program immediately or cause data
765corruption.
628 766
629EV will grab the signal for the process (the kernel only allows one 767EV will grab the signal for the process (the kernel only allows one
630component to receive a signal at a time) when you start a signal watcher, 768component to receive a signal at a time) when you start a signal watcher,
631and removes it again when you stop it. Perl does the same when you 769and removes it again when you stop it. Perl does the same when you
632add/remove callbacks to C<%SIG>, so watch out. 770add/remove callbacks to C<%SIG>, so watch out.
857=item $w = $loop->check_ns ($callback) 995=item $w = $loop->check_ns ($callback)
858 996
859Call the callback just after the process wakes up again (after it has 997Call the callback just after the process wakes up again (after it has
860gathered events), but before any other callbacks have been invoked. 998gathered events), but before any other callbacks have been invoked.
861 999
862This is used to integrate other event-based software into the EV 1000This can be used to integrate other event-based software into the EV
863mainloop: You register a prepare callback and in there, you create io and 1001mainloop: You register a prepare callback and in there, you create io and
864timer watchers as required by the other software. Here is a real-world 1002timer watchers as required by the other software. Here is a real-world
865example of integrating Net::SNMP (with some details left out): 1003example of integrating Net::SNMP (with some details left out):
866 1004
867 our @snmp_watcher; 1005 our @snmp_watcher;
897 # make the dispatcher handle any new stuff 1035 # make the dispatcher handle any new stuff
898 ... not shown 1036 ... not shown
899 }; 1037 };
900 1038
901The callbacks of the created watchers will not be called as the watchers 1039The callbacks of the created watchers will not be called as the watchers
902are destroyed before this cna happen (remember EV::check gets called 1040are destroyed before this can happen (remember EV::check gets called
903first). 1041first).
904 1042
905The C<check_ns> variant doesn't start (activate) the newly created watcher. 1043The C<check_ns> variant doesn't start (activate) the newly created watcher.
1044
1045=item EV::CHECK constant issues
1046
1047Like all other watcher types, there is a bitmask constant for use in
1048C<$revents> and other places. The C<EV::CHECK> is special as it has
1049the same name as the C<CHECK> sub called by Perl. This doesn't cause
1050big issues on newer perls (beginning with 5.8.9), but it means thatthe
1051constant must be I<inlined>, i.e. runtime calls will not work. That means
1052that as long as you always C<use EV> and then C<EV::CHECK> you are on the
1053safe side.
906 1054
907=back 1055=back
908 1056
909 1057
910=head3 FORK WATCHERS - the audacity to resume the event loop after a fork 1058=head3 FORK WATCHERS - the audacity to resume the event loop after a fork
938loop, other types of watchers might be handled in a delayed or incorrect 1086loop, other types of watchers might be handled in a delayed or incorrect
939fashion and must not be used). 1087fashion and must not be used).
940 1088
941See the libev documentation at 1089See the libev documentation at
942L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#code_ev_embed_code_when_one_backend_> 1090L<http://pod.tst.eu/http://cvs.schmorp.de/libev/ev.pod#code_ev_embed_code_when_one_backend_>
943for more details. 1091(locally installed as F<EV::libev>) for more details.
944 1092
945In short, this watcher is most useful on BSD systems without working 1093In short, this watcher is most useful on BSD systems without working
946kqueue to still be able to handle a large number of sockets: 1094kqueue to still be able to handle a large number of sockets:
947 1095
948 my $socket_loop; 1096 my $socket_loop;
949 1097
950 # check wether we use SELECT or POLL _and_ KQUEUE is supported 1098 # check wether we use SELECT or POLL _and_ KQUEUE is supported
951 if ( 1099 if (
952 (EV::backend & (EV::BACKEND_POLL | EV::BACKEND_SELECT)) 1100 (EV::backend & (EV::BACKEND_POLL | EV::BACKEND_SELECT))
953 && (EV::supported_backends & EV::embeddable_backends & EV::BACKEND_KQUEUE) 1101 && (EV::supported_backends & EV::embeddable_backends & EV::BACKEND_KQUEUE)
954 ) { 1102 ) {
955 # use kqueue for sockets 1103 # use kqueue for sockets
956 $socket_loop = new EV::Loop EV::BACKEND_KQUEUE | EV::FLAG_NOENV; 1104 $socket_loop = new EV::Loop EV::BACKEND_KQUEUE | EV::FLAG_NOENV;
957 } 1105 }
958 1106
959 # use the default loop otherwise 1107 # use the default loop otherwise
960 $socket_loop ||= EV::default_loop; 1108 $socket_loop ||= EV::default_loop;
961 1109
962=over 4 1110=over 4
963 1111
964=item $w = EV::embed $otherloop, $callback 1112=item $w = EV::embed $otherloop[, $callback]
965 1113
966=item $w = EV::embed_ns $otherloop, $callback 1114=item $w = EV::embed_ns $otherloop[, $callback]
967 1115
968=item $w = $loop->embed ($otherloop, $callback) 1116=item $w = $loop->embed ($otherloop[, $callback])
969 1117
970=item $w = $loop->embed_ns ($otherloop, $callback) 1118=item $w = $loop->embed_ns ($otherloop[, $callback])
971 1119
972Call the callback when the embedded event loop (C<$otherloop>) has any 1120Call the callback when the embedded event loop (C<$otherloop>) has any
973I/O activity. The C<$callback> should alwas be specified as C<undef> in 1121I/O activity. The C<$callback> is optional: if it is missing, then the
974this version of EV, which means the embedded event loop will be managed 1122embedded event loop will be managed automatically (which is recommended),
975automatically. 1123otherwise you have to invoke C<sweep> yourself.
976 1124
977The C<embed_ns> variant doesn't start (activate) the newly created watcher. 1125The C<embed_ns> variant doesn't start (activate) the newly created watcher.
978 1126
979=back 1127=back
980 1128
981=head3 ASYNC WATCHERS - how to wake up another event loop 1129=head3 ASYNC WATCHERS - how to wake up another event loop
982 1130
983Async watchers are provided by EV, but have little use in perl directly, as perl 1131Async watchers are provided by EV, but have little use in perl directly,
984neither supports threads nor direct access to signal handlers or other 1132as perl neither supports threads running in parallel nor direct access to
985contexts where they could be of value. 1133signal handlers or other contexts where they could be of value.
986 1134
987It is, however, possible to use them from the XS level. 1135It is, however, possible to use them from the XS level.
988 1136
989Please see the libev documentation for further details. 1137Please see the libev documentation for further details.
990 1138
992 1140
993=item $w = EV::async $callback 1141=item $w = EV::async $callback
994 1142
995=item $w = EV::async_ns $callback 1143=item $w = EV::async_ns $callback
996 1144
1145=item $w = $loop->async ($callback)
1146
1147=item $w = $loop->async_ns ($callback)
1148
997=item $w->send 1149=item $w->send
998 1150
999=item $bool = $w->async_pending 1151=item $bool = $w->async_pending
1000 1152
1001=back 1153=back
1154
1155=head3 CLEANUP WATCHERS - how to clean up when the event loop goes away
1156
1157Cleanup watchers are not supported on the Perl level, they can only be
1158used via XS currently.
1002 1159
1003 1160
1004=head1 PERL SIGNALS 1161=head1 PERL SIGNALS
1005 1162
1006While Perl signal handling (C<%SIG>) is not affected by EV, the behaviour 1163While Perl signal handling (C<%SIG>) is not affected by EV, the behaviour
1018 my $async_check = EV::check sub { }; 1175 my $async_check = EV::check sub { };
1019 1176
1020This ensures that perl gets into control for a short time to handle any 1177This ensures that perl gets into control for a short time to handle any
1021pending signals, and also ensures (slightly) slower overall operation. 1178pending signals, and also ensures (slightly) slower overall operation.
1022 1179
1023=head1 THREADS 1180=head1 ITHREADS
1024 1181
1025Threads are not supported by this module in any way. Perl pseudo-threads 1182Ithreads are not supported by this module in any way. Perl pseudo-threads
1026is evil stuff and must die. As soon as Perl gains real threads I will work 1183is evil stuff and must die. Real threads as provided by Coro are fully
1027on thread support for it. 1184supported (and enhanced support is available via L<Coro::EV>).
1028 1185
1029=head1 FORK 1186=head1 FORK
1030 1187
1031Most of the "improved" event delivering mechanisms of modern operating 1188Most of the "improved" event delivering mechanisms of modern operating
1032systems have quite a few problems with fork(2) (to put it bluntly: it is 1189systems have quite a few problems with fork(2) (to put it bluntly: it is
1054 1211
10551; 12121;
1056 1213
1057=head1 SEE ALSO 1214=head1 SEE ALSO
1058 1215
1216L<EV::MakeMaker> - MakeMaker interface to XS API, L<EV::ADNS>
1059L<EV::ADNS> (asynchronous DNS), L<Glib::EV> (makes Glib/Gtk2 use EV as 1217(asynchronous DNS), L<Glib::EV> (makes Glib/Gtk2 use EV as event
1060event loop), L<EV::Glib> (embed Glib into EV), L<Coro::EV> (efficient 1218loop), L<EV::Glib> (embed Glib into EV), L<Coro::EV> (efficient thread
1061coroutines with EV), L<Net::SNMP::EV> (asynchronous SNMP), L<AnyEvent> for 1219integration), L<Net::SNMP::EV> (asynchronous SNMP), L<AnyEvent> for
1062event-loop agnostic and portable event driven programming. 1220event-loop agnostic and portable event driven programming.
1063 1221
1064=head1 AUTHOR 1222=head1 AUTHOR
1065 1223
1066 Marc Lehmann <schmorp@schmorp.de> 1224 Marc Lehmann <schmorp@schmorp.de>
1067 http://home.schmorp.de/ 1225 http://home.schmorp.de/
1068 1226
1069=cut 1227=cut
1070 1228

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