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Comparing libev/ev.pod (file contents):
Revision 1.60 by root, Wed Nov 28 18:29:30 2007 UTC vs.
Revision 1.65 by ayin, Sat Dec 1 15:38:54 2007 UTC

265or setgid) then libev will I<not> look at the environment variable 265or setgid) then libev will I<not> look at the environment variable
266C<LIBEV_FLAGS>. Otherwise (the default), this environment variable will 266C<LIBEV_FLAGS>. Otherwise (the default), this environment variable will
267override the flags completely if it is found in the environment. This is 267override the flags completely if it is found in the environment. This is
268useful to try out specific backends to test their performance, or to work 268useful to try out specific backends to test their performance, or to work
269around bugs. 269around bugs.
270
271=item C<EVFLAG_FORKCHECK>
272
273Instead of calling C<ev_default_fork> or C<ev_loop_fork> manually after
274a fork, you can also make libev check for a fork in each iteration by
275enabling this flag.
276
277This works by calling C<getpid ()> on every iteration of the loop,
278and thus this might slow down your event loop if you do a lot of loop
279iterations and little real work, but is usually not noticeable (on my
280Linux system for example, C<getpid> is actually a simple 5-insn sequence
281without a syscall and thus I<very> fast, but my Linux system also has
282C<pthread_atfork> which is even faster).
283
284The big advantage of this flag is that you can forget about fork (and
285forget about forgetting to tell libev about forking) when you use this
286flag.
287
288This flag setting cannot be overriden or specified in the C<LIBEV_FLAGS>
289environment variable.
270 290
271=item C<EVBACKEND_SELECT> (value 1, portable select backend) 291=item C<EVBACKEND_SELECT> (value 1, portable select backend)
272 292
273This is your standard select(2) backend. Not I<completely> standard, as 293This is your standard select(2) backend. Not I<completely> standard, as
274libev tries to roll its own fd_set with no limits on the number of fds, 294libev tries to roll its own fd_set with no limits on the number of fds,
916=item ev_timer_again (loop) 936=item ev_timer_again (loop)
917 937
918This will act as if the timer timed out and restart it again if it is 938This will act as if the timer timed out and restart it again if it is
919repeating. The exact semantics are: 939repeating. The exact semantics are:
920 940
941If the timer is pending, its pending status is cleared.
942
921If the timer is started but nonrepeating, stop it. 943If the timer is started but nonrepeating, stop it (as if it timed out).
922 944
923If the timer is repeating, either start it if necessary (with the repeat 945If the timer is repeating, either start it if necessary (with the
924value), or reset the running timer to the repeat value. 946C<repeat> value), or reset the running timer to the C<repeat> value.
925 947
926This sounds a bit complicated, but here is a useful and typical 948This sounds a bit complicated, but here is a useful and typical
927example: Imagine you have a tcp connection and you want a so-called 949example: Imagine you have a tcp connection and you want a so-called idle
928idle timeout, that is, you want to be called when there have been, 950timeout, that is, you want to be called when there have been, say, 60
929say, 60 seconds of inactivity on the socket. The easiest way to do 951seconds of inactivity on the socket. The easiest way to do this is to
930this is to configure an C<ev_timer> with C<after>=C<repeat>=C<60> and calling 952configure an C<ev_timer> with a C<repeat> value of C<60> and then call
931C<ev_timer_again> each time you successfully read or write some data. If 953C<ev_timer_again> each time you successfully read or write some data. If
932you go into an idle state where you do not expect data to travel on the 954you go into an idle state where you do not expect data to travel on the
933socket, you can stop the timer, and again will automatically restart it if 955socket, you can C<ev_timer_stop> the timer, and C<ev_timer_again> will
934need be. 956automatically restart it if need be.
935 957
936You can also ignore the C<after> value and C<ev_timer_start> altogether 958That means you can ignore the C<after> value and C<ev_timer_start>
937and only ever use the C<repeat> value: 959altogether and only ever use the C<repeat> value and C<ev_timer_again>:
938 960
939 ev_timer_init (timer, callback, 0., 5.); 961 ev_timer_init (timer, callback, 0., 5.);
940 ev_timer_again (loop, timer); 962 ev_timer_again (loop, timer);
941 ... 963 ...
942 timer->again = 17.; 964 timer->again = 17.;
943 ev_timer_again (loop, timer); 965 ev_timer_again (loop, timer);
944 ... 966 ...
945 timer->again = 10.; 967 timer->again = 10.;
946 ev_timer_again (loop, timer); 968 ev_timer_again (loop, timer);
947 969
948This is more efficient then stopping/starting the timer eahc time you want 970This is more slightly efficient then stopping/starting the timer each time
949to modify its timeout value. 971you want to modify its timeout value.
950 972
951=item ev_tstamp repeat [read-write] 973=item ev_tstamp repeat [read-write]
952 974
953The current C<repeat> value. Will be used each time the watcher times out 975The current C<repeat> value. Will be used each time the watcher times out
954or C<ev_timer_again> is called and determines the next timeout (if any), 976or C<ev_timer_again> is called and determines the next timeout (if any),
1435 1457
1436 // create io watchers for each fd and a timer before blocking 1458 // create io watchers for each fd and a timer before blocking
1437 static void 1459 static void
1438 adns_prepare_cb (ev_loop *loop, ev_prepare *w, int revents) 1460 adns_prepare_cb (ev_loop *loop, ev_prepare *w, int revents)
1439 { 1461 {
1440 int timeout = 3600000;truct pollfd fds [nfd]; 1462 int timeout = 3600000;
1463 struct pollfd fds [nfd];
1441 // actual code will need to loop here and realloc etc. 1464 // actual code will need to loop here and realloc etc.
1442 adns_beforepoll (ads, fds, &nfd, &timeout, timeval_from (ev_time ())); 1465 adns_beforepoll (ads, fds, &nfd, &timeout, timeval_from (ev_time ()));
1443 1466
1444 /* the callback is illegal, but won't be called as we stop during check */ 1467 /* the callback is illegal, but won't be called as we stop during check */
1445 ev_timer_init (&tw, 0, timeout * 1e-3); 1468 ev_timer_init (&tw, 0, timeout * 1e-3);
1826Similar to the other two macros, this gives you the value of the default 1849Similar to the other two macros, this gives you the value of the default
1827loop, if multiple loops are supported ("ev loop default"). 1850loop, if multiple loops are supported ("ev loop default").
1828 1851
1829=back 1852=back
1830 1853
1831Example: Declare and initialise a check watcher, working regardless of 1854Example: Declare and initialise a check watcher, utilising the above
1832wether multiple loops are supported or not. 1855macros so it will work regardless of wether multiple loops are supported
1856or not.
1833 1857
1834 static void 1858 static void
1835 check_cb (EV_P_ ev_timer *w, int revents) 1859 check_cb (EV_P_ ev_timer *w, int revents)
1836 { 1860 {
1837 ev_check_stop (EV_A_ w); 1861 ev_check_stop (EV_A_ w);
1839 1863
1840 ev_check check; 1864 ev_check check;
1841 ev_check_init (&check, check_cb); 1865 ev_check_init (&check, check_cb);
1842 ev_check_start (EV_DEFAULT_ &check); 1866 ev_check_start (EV_DEFAULT_ &check);
1843 ev_loop (EV_DEFAULT_ 0); 1867 ev_loop (EV_DEFAULT_ 0);
1844
1845 1868
1846=head1 EMBEDDING 1869=head1 EMBEDDING
1847 1870
1848Libev can (and often is) directly embedded into host 1871Libev can (and often is) directly embedded into host
1849applications. Examples of applications that embed it include the Deliantra 1872applications. Examples of applications that embed it include the Deliantra
1889 ev_vars.h 1912 ev_vars.h
1890 ev_wrap.h 1913 ev_wrap.h
1891 1914
1892 ev_win32.c required on win32 platforms only 1915 ev_win32.c required on win32 platforms only
1893 1916
1894 ev_select.c only when select backend is enabled (which is by default) 1917 ev_select.c only when select backend is enabled (which is enabled by default)
1895 ev_poll.c only when poll backend is enabled (disabled by default) 1918 ev_poll.c only when poll backend is enabled (disabled by default)
1896 ev_epoll.c only when the epoll backend is enabled (disabled by default) 1919 ev_epoll.c only when the epoll backend is enabled (disabled by default)
1897 ev_kqueue.c only when the kqueue backend is enabled (disabled by default) 1920 ev_kqueue.c only when the kqueue backend is enabled (disabled by default)
1898 ev_port.c only when the solaris port backend is enabled (disabled by default) 1921 ev_port.c only when the solaris port backend is enabled (disabled by default)
1899 1922
2141interface) and F<EV.xs> (implementation) files. Only the F<EV.xs> file 2164interface) and F<EV.xs> (implementation) files. Only the F<EV.xs> file
2142will be compiled. It is pretty complex because it provides its own header 2165will be compiled. It is pretty complex because it provides its own header
2143file. 2166file.
2144 2167
2145The usage in rxvt-unicode is simpler. It has a F<ev_cpp.h> header file 2168The usage in rxvt-unicode is simpler. It has a F<ev_cpp.h> header file
2146that everybody includes and which overrides some autoconf choices: 2169that everybody includes and which overrides some configure choices:
2147 2170
2171 #define EV_MINIMAL 1
2148 #define EV_USE_POLL 0 2172 #define EV_USE_POLL 0
2149 #define EV_MULTIPLICITY 0 2173 #define EV_MULTIPLICITY 0
2150 #define EV_PERIODICS 0 2174 #define EV_PERIODIC_ENABLE 0
2175 #define EV_STAT_ENABLE 0
2176 #define EV_FORK_ENABLE 0
2151 #define EV_CONFIG_H <config.h> 2177 #define EV_CONFIG_H <config.h>
2178 #define EV_MINPRI 0
2179 #define EV_MAXPRI 0
2152 2180
2153 #include "ev++.h" 2181 #include "ev++.h"
2154 2182
2155And a F<ev_cpp.C> implementation file that contains libev proper and is compiled: 2183And a F<ev_cpp.C> implementation file that contains libev proper and is compiled:
2156 2184

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