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Revision: 1.54
Committed: Fri Oct 22 05:57:55 2010 UTC (13 years, 6 months ago) by root
Content type: text/plain
Branch: MAIN
Changes since 1.53: +24 -5 lines
Log Message:
compat3 for ev++.h, default args c++

File Contents

# User Rev Content
1 root 1.21 /*
2     * libev simple C++ wrapper classes
3     *
4 root 1.48 * Copyright (c) 2007,2008,2010 Marc Alexander Lehmann <libev@schmorp.de>
5 root 1.21 * All rights reserved.
6     *
7     * Redistribution and use in source and binary forms, with or without modifica-
8     * tion, are permitted provided that the following conditions are met:
9     *
10     * 1. Redistributions of source code must retain the above copyright notice,
11     * this list of conditions and the following disclaimer.
12     *
13     * 2. Redistributions in binary form must reproduce the above copyright
14     * notice, this list of conditions and the following disclaimer in the
15     * documentation and/or other materials provided with the distribution.
16     *
17     * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
18     * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER-
19     * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
20     * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE-
21     * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
22     * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
23     * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
24     * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTH-
25     * ERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
26     * OF THE POSSIBILITY OF SUCH DAMAGE.
27     *
28     * Alternatively, the contents of this file may be used under the terms of
29     * the GNU General Public License ("GPL") version 2 or any later version,
30     * in which case the provisions of the GPL are applicable instead of
31     * the above. If you wish to allow the use of your version of this file
32     * only under the terms of the GPL and not to allow others to use your
33     * version of this file under the BSD license, indicate your decision
34     * by deleting the provisions above and replace them with the notice
35     * and other provisions required by the GPL. If you do not delete the
36     * provisions above, a recipient may use your version of this file under
37     * either the BSD or the GPL.
38     */
39    
40 root 1.1 #ifndef EVPP_H__
41     #define EVPP_H__
42    
43 root 1.20 #ifdef EV_H
44     # include EV_H
45     #else
46 root 1.22 # include "ev.h"
47 root 1.20 #endif
48 root 1.1
49 root 1.32 #ifndef EV_USE_STDEXCEPT
50     # define EV_USE_STDEXCEPT 1
51 llucax 1.30 #endif
52    
53 root 1.32 #if EV_USE_STDEXCEPT
54     # include <stdexcept>
55 llucax 1.30 #endif
56    
57 root 1.1 namespace ev {
58    
59 llucax 1.24 typedef ev_tstamp tstamp;
60    
61 root 1.43 enum
62     {
63 llucax 1.24 UNDEF = EV_UNDEF,
64     NONE = EV_NONE,
65     READ = EV_READ,
66     WRITE = EV_WRITE,
67 root 1.54 #if EV_COMPAT3
68 llucax 1.24 TIMEOUT = EV_TIMEOUT,
69 root 1.54 #endif
70     TIMER = EV_TIMER,
71 llucax 1.24 PERIODIC = EV_PERIODIC,
72     SIGNAL = EV_SIGNAL,
73     CHILD = EV_CHILD,
74     STAT = EV_STAT,
75     IDLE = EV_IDLE,
76     CHECK = EV_CHECK,
77     PREPARE = EV_PREPARE,
78     FORK = EV_FORK,
79 root 1.39 ASYNC = EV_ASYNC,
80 llucax 1.24 EMBED = EV_EMBED,
81 root 1.42 # undef ERROR // some systems stupidly #define ERROR
82 root 1.53 ERROR = EV_ERROR
83 llucax 1.24 };
84    
85 llucax 1.25 enum
86     {
87 root 1.41 AUTO = EVFLAG_AUTO,
88     NOENV = EVFLAG_NOENV,
89 llucax 1.25 FORKCHECK = EVFLAG_FORKCHECK,
90 root 1.41
91     SELECT = EVBACKEND_SELECT,
92     POLL = EVBACKEND_POLL,
93     EPOLL = EVBACKEND_EPOLL,
94     KQUEUE = EVBACKEND_KQUEUE,
95     DEVPOLL = EVBACKEND_DEVPOLL,
96     PORT = EVBACKEND_PORT
97 llucax 1.25 };
98    
99     enum
100     {
101 root 1.54 #if EV_COMPAT3
102 llucax 1.25 NONBLOCK = EVLOOP_NONBLOCK,
103 root 1.54 ONESHOT = EVLOOP_ONESHOT,
104     #endif
105     NOWAIT = EVRUN_NOWAIT,
106     ONCE = EVRUN_ONCE
107 llucax 1.25 };
108    
109     enum how_t
110     {
111 root 1.54 ONE = EVBREAK_ONE,
112     ALL = EVBREAK_ALL
113 llucax 1.25 };
114    
115 root 1.32 struct bad_loop
116     #if EV_USE_STDEXCEPT
117     : std::runtime_error
118     #endif
119 llucax 1.30 {
120 root 1.32 #if EV_USE_STDEXCEPT
121 root 1.31 bad_loop ()
122 root 1.32 : std::runtime_error ("libev event loop cannot be initialized, bad value of LIBEV_FLAGS?")
123 root 1.31 {
124     }
125 root 1.32 #endif
126 llucax 1.30 };
127    
128 llucax 1.28 #ifdef EV_AX
129     # undef EV_AX
130     #endif
131    
132     #ifdef EV_AX_
133     # undef EV_AX_
134     #endif
135    
136     #if EV_MULTIPLICITY
137     # define EV_AX raw_loop
138     # define EV_AX_ raw_loop,
139     #else
140     # define EV_AX
141     # define EV_AX_
142     #endif
143    
144     struct loop_ref
145     {
146 root 1.36 loop_ref (EV_P) throw ()
147 llucax 1.28 #if EV_MULTIPLICITY
148 root 1.36 : EV_AX (EV_A)
149     #endif
150 llucax 1.33 {
151     }
152 llucax 1.28
153 root 1.32 bool operator == (const loop_ref &other) const throw ()
154 llucax 1.28 {
155     #if EV_MULTIPLICITY
156 root 1.32 return EV_AX == other.EV_AX;
157 llucax 1.28 #else
158     return true;
159     #endif
160     }
161    
162 root 1.32 bool operator != (const loop_ref &other) const throw ()
163 llucax 1.28 {
164     #if EV_MULTIPLICITY
165     return ! (*this == other);
166     #else
167     return false;
168     #endif
169     }
170    
171     #if EV_MULTIPLICITY
172 root 1.44 bool operator == (const EV_P) const throw ()
173 llucax 1.28 {
174 root 1.44 return this->EV_AX == EV_A;
175 llucax 1.28 }
176    
177 root 1.44 bool operator != (const EV_P) const throw ()
178 llucax 1.28 {
179 root 1.44 return (*this == EV_A);
180 llucax 1.28 }
181    
182 root 1.31 operator struct ev_loop * () const throw ()
183 llucax 1.28 {
184     return EV_AX;
185     }
186    
187 root 1.31 operator const struct ev_loop * () const throw ()
188 llucax 1.28 {
189     return EV_AX;
190     }
191    
192 root 1.31 bool is_default () const throw ()
193 llucax 1.28 {
194     return EV_AX == ev_default_loop (0);
195     }
196     #endif
197    
198 root 1.54 #if EV_COMPAT3
199 llucax 1.28 void loop (int flags = 0)
200     {
201 root 1.54 ev_run (EV_AX_ flags);
202 llucax 1.28 }
203    
204 root 1.31 void unloop (how_t how = ONE) throw ()
205 llucax 1.28 {
206 root 1.54 ev_break (EV_AX_ how);
207     }
208     #endif
209    
210     void run (int flags = 0)
211     {
212     ev_run (EV_AX_ flags);
213     }
214    
215     void break_loop (how_t how = ONE) throw ()
216     {
217     ev_break (EV_AX_ how);
218 llucax 1.28 }
219    
220 root 1.31 void post_fork () throw ()
221 llucax 1.28 {
222     #if EV_MULTIPLICITY
223     ev_loop_fork (EV_AX);
224     #else
225     ev_default_fork ();
226     #endif
227     }
228    
229 root 1.31 unsigned int backend () const throw ()
230 llucax 1.28 {
231     return ev_backend (EV_AX);
232     }
233    
234 root 1.31 tstamp now () const throw ()
235 llucax 1.28 {
236     return ev_now (EV_AX);
237     }
238    
239 root 1.31 void ref () throw ()
240 llucax 1.28 {
241     ev_ref (EV_AX);
242     }
243    
244 root 1.31 void unref () throw ()
245 llucax 1.28 {
246     ev_unref (EV_AX);
247     }
248    
249 root 1.49 #if EV_FEATURE_API
250 root 1.51 unsigned int iteration () const throw ()
251 root 1.45 {
252 root 1.51 return ev_iteration (EV_AX);
253 root 1.45 }
254    
255     unsigned int depth () const throw ()
256     {
257 root 1.51 return ev_depth (EV_AX);
258 root 1.45 }
259    
260 root 1.31 void set_io_collect_interval (tstamp interval) throw ()
261 llucax 1.28 {
262     ev_set_io_collect_interval (EV_AX_ interval);
263     }
264    
265 root 1.31 void set_timeout_collect_interval (tstamp interval) throw ()
266 llucax 1.28 {
267     ev_set_timeout_collect_interval (EV_AX_ interval);
268     }
269 root 1.45 #endif
270 llucax 1.28
271     // function callback
272 root 1.44 void once (int fd, int events, tstamp timeout, void (*cb)(int, void *), void *arg = 0) throw ()
273 llucax 1.28 {
274     ev_once (EV_AX_ fd, events, timeout, cb, arg);
275     }
276    
277     // method callback
278     template<class K, void (K::*method)(int)>
279 root 1.31 void once (int fd, int events, tstamp timeout, K *object) throw ()
280 llucax 1.28 {
281     once (fd, events, timeout, method_thunk<K, method>, object);
282     }
283    
284 root 1.44 // default method == operator ()
285     template<class K>
286     void once (int fd, int events, tstamp timeout, K *object) throw ()
287 llucax 1.28 {
288 root 1.44 once (fd, events, timeout, method_thunk<K, &K::operator ()>, object);
289 llucax 1.28 }
290    
291 root 1.44 template<class K, void (K::*method)(int)>
292     static void method_thunk (int revents, void *arg)
293 llucax 1.28 {
294 root 1.44 static_cast<K *>(arg)->*method
295     (revents);
296 llucax 1.28 }
297    
298 root 1.44 // no-argument method callback
299 llucax 1.28 template<class K, void (K::*method)()>
300 root 1.31 void once (int fd, int events, tstamp timeout, K *object) throw ()
301 llucax 1.28 {
302     once (fd, events, timeout, method_noargs_thunk<K, method>, object);
303     }
304    
305     template<class K, void (K::*method)()>
306 root 1.44 static void method_noargs_thunk (int revents, void *arg)
307 llucax 1.28 {
308 root 1.44 static_cast<K *>(arg)->*method
309     ();
310 llucax 1.28 }
311    
312     // simpler function callback
313     template<void (*cb)(int)>
314 root 1.31 void once (int fd, int events, tstamp timeout) throw ()
315 llucax 1.28 {
316     once (fd, events, timeout, simpler_func_thunk<cb>);
317     }
318    
319     template<void (*cb)(int)>
320 root 1.44 static void simpler_func_thunk (int revents, void *arg)
321 llucax 1.28 {
322 root 1.44 (*cb)
323     (revents);
324 llucax 1.28 }
325    
326     // simplest function callback
327     template<void (*cb)()>
328 root 1.31 void once (int fd, int events, tstamp timeout) throw ()
329 llucax 1.28 {
330     once (fd, events, timeout, simplest_func_thunk<cb>);
331     }
332    
333     template<void (*cb)()>
334 root 1.44 static void simplest_func_thunk (int revents, void *arg)
335 llucax 1.28 {
336 root 1.44 (*cb)
337     ();
338 llucax 1.28 }
339    
340 root 1.31 void feed_fd_event (int fd, int revents) throw ()
341 llucax 1.28 {
342     ev_feed_fd_event (EV_AX_ fd, revents);
343     }
344    
345 root 1.31 void feed_signal_event (int signum) throw ()
346 llucax 1.28 {
347     ev_feed_signal_event (EV_AX_ signum);
348     }
349    
350     #if EV_MULTIPLICITY
351     struct ev_loop* EV_AX;
352     #endif
353    
354     };
355    
356     #if EV_MULTIPLICITY
357 root 1.36 struct dynamic_loop : loop_ref
358 llucax 1.28 {
359    
360 llucax 1.34 dynamic_loop (unsigned int flags = AUTO) throw (bad_loop)
361 root 1.36 : loop_ref (ev_loop_new (flags))
362 llucax 1.28 {
363 root 1.36 if (!EV_AX)
364     throw bad_loop ();
365 llucax 1.28 }
366    
367 root 1.31 ~dynamic_loop () throw ()
368 llucax 1.28 {
369     ev_loop_destroy (EV_AX);
370     EV_AX = 0;
371     }
372    
373     private:
374    
375     dynamic_loop (const dynamic_loop &);
376    
377     dynamic_loop & operator= (const dynamic_loop &);
378    
379     };
380     #endif
381    
382 root 1.36 struct default_loop : loop_ref
383 llucax 1.28 {
384 root 1.32 default_loop (unsigned int flags = AUTO) throw (bad_loop)
385 llucax 1.28 #if EV_MULTIPLICITY
386 root 1.32 : loop_ref (ev_default_loop (flags))
387     #endif
388 llucax 1.28 {
389 root 1.36 if (
390     #if EV_MULTIPLICITY
391     !EV_AX
392     #else
393     !ev_default_loop (flags)
394 root 1.32 #endif
395 root 1.36 )
396     throw bad_loop ();
397 llucax 1.28 }
398    
399 root 1.31 ~default_loop () throw ()
400 llucax 1.28 {
401     ev_default_destroy ();
402     }
403    
404     private:
405     default_loop (const default_loop &);
406 root 1.32 default_loop &operator = (const default_loop &);
407 llucax 1.28 };
408    
409 root 1.31 inline loop_ref get_default_loop () throw ()
410 llucax 1.28 {
411     #if EV_MULTIPLICITY
412     return ev_default_loop (0);
413     #else
414     return loop_ref ();
415     #endif
416     }
417    
418     #undef EV_AX
419     #undef EV_AX_
420    
421     #undef EV_PX
422     #undef EV_PX_
423     #if EV_MULTIPLICITY
424     # define EV_PX loop_ref EV_A
425     # define EV_PX_ loop_ref EV_A_
426     #else
427     # define EV_PX
428     # define EV_PX_
429     #endif
430    
431 root 1.13 template<class ev_watcher, class watcher>
432     struct base : ev_watcher
433 root 1.1 {
434 root 1.13 #if EV_MULTIPLICITY
435 llucax 1.28 EV_PX;
436 root 1.1
437 root 1.52 // loop set
438 root 1.44 void set (EV_P) throw ()
439 root 1.13 {
440     this->EV_A = EV_A;
441     }
442     #endif
443 root 1.1
444 root 1.31 base (EV_PX) throw ()
445 llucax 1.28 #if EV_MULTIPLICITY
446     : EV_A (EV_A)
447     #endif
448 root 1.13 {
449     ev_init (this, 0);
450     }
451    
452 root 1.44 void set_ (const void *data, void (*cb)(EV_P_ ev_watcher *w, int revents)) throw ()
453 root 1.13 {
454 root 1.44 this->data = (void *)data;
455 root 1.18 ev_set_cb (static_cast<ev_watcher *>(this), cb);
456 root 1.13 }
457    
458 root 1.44 // function callback
459     template<void (*function)(watcher &w, int)>
460     void set (void *data = 0) throw ()
461 root 1.13 {
462 root 1.44 set_ (data, function_thunk<function>);
463 root 1.13 }
464    
465 root 1.44 template<void (*function)(watcher &w, int)>
466     static void function_thunk (EV_P_ ev_watcher *w, int revents)
467 root 1.13 {
468 root 1.44 function
469     (*static_cast<watcher *>(w), revents);
470 root 1.13 }
471    
472 root 1.44 // method callback
473     template<class K, void (K::*method)(watcher &w, int)>
474     void set (K *object) throw ()
475 root 1.13 {
476 root 1.44 set_ (object, method_thunk<K, method>);
477 root 1.13 }
478    
479 root 1.44 // default method == operator ()
480     template<class K>
481     void set (K *object) throw ()
482 root 1.13 {
483 root 1.44 set_ (object, method_thunk<K, &K::operator ()>);
484 root 1.13 }
485    
486 root 1.44 template<class K, void (K::*method)(watcher &w, int)>
487     static void method_thunk (EV_P_ ev_watcher *w, int revents)
488 root 1.13 {
489 root 1.44 (static_cast<K *>(w->data)->*method)
490     (*static_cast<watcher *>(w), revents);
491 root 1.13 }
492    
493 root 1.44 // no-argument callback
494 root 1.19 template<class K, void (K::*method)()>
495 root 1.31 void set (K *object) throw ()
496 root 1.19 {
497     set_ (object, method_noargs_thunk<K, method>);
498     }
499    
500     template<class K, void (K::*method)()>
501     static void method_noargs_thunk (EV_P_ ev_watcher *w, int revents)
502     {
503 root 1.50 (static_cast<K *>(w->data)->*method)
504 root 1.44 ();
505 root 1.19 }
506    
507 root 1.13 void operator ()(int events = EV_UNDEF)
508     {
509 root 1.44 return
510     ev_cb (static_cast<ev_watcher *>(this))
511     (static_cast<ev_watcher *>(this), events);
512 root 1.13 }
513    
514 root 1.31 bool is_active () const throw ()
515 root 1.1 {
516 root 1.13 return ev_is_active (static_cast<const ev_watcher *>(this));
517 root 1.1 }
518    
519 root 1.31 bool is_pending () const throw ()
520 root 1.1 {
521 root 1.13 return ev_is_pending (static_cast<const ev_watcher *>(this));
522 root 1.1 }
523 llucax 1.27
524 root 1.31 void feed_event (int revents) throw ()
525 llucax 1.27 {
526     ev_feed_event (EV_A_ static_cast<const ev_watcher *>(this), revents);
527     }
528 root 1.1 };
529    
530 root 1.31 inline tstamp now () throw ()
531 llucax 1.29 {
532     return ev_time ();
533     }
534    
535 root 1.31 inline void delay (tstamp interval) throw ()
536 llucax 1.26 {
537     ev_sleep (interval);
538     }
539    
540 root 1.31 inline int version_major () throw ()
541 llucax 1.26 {
542     return ev_version_major ();
543     }
544    
545 root 1.31 inline int version_minor () throw ()
546 llucax 1.26 {
547     return ev_version_minor ();
548     }
549    
550 root 1.31 inline unsigned int supported_backends () throw ()
551 llucax 1.26 {
552     return ev_supported_backends ();
553     }
554    
555 root 1.31 inline unsigned int recommended_backends () throw ()
556 llucax 1.26 {
557     return ev_recommended_backends ();
558     }
559    
560 root 1.31 inline unsigned int embeddable_backends () throw ()
561 llucax 1.26 {
562     return ev_embeddable_backends ();
563     }
564    
565 root 1.31 inline void set_allocator (void *(*cb)(void *ptr, long size)) throw ()
566 llucax 1.26 {
567     ev_set_allocator (cb);
568     }
569    
570 root 1.31 inline void set_syserr_cb (void (*cb)(const char *msg)) throw ()
571 llucax 1.26 {
572     ev_set_syserr_cb (cb);
573     }
574    
575 root 1.1 #if EV_MULTIPLICITY
576 llucax 1.28 #define EV_CONSTRUCT(cppstem,cstem) \
577 root 1.39 (EV_PX = get_default_loop ()) throw () \
578 llucax 1.28 : base<ev_ ## cstem, cppstem> (EV_A) \
579 root 1.1 { \
580 root 1.13 }
581 root 1.1 #else
582 llucax 1.28 #define EV_CONSTRUCT(cppstem,cstem) \
583 root 1.39 () throw () \
584 root 1.13 { \
585     }
586 root 1.1 #endif
587    
588     /* using a template here would require quite a bit more lines,
589     * so a macro solution was chosen */
590 root 1.4 #define EV_BEGIN_WATCHER(cppstem,cstem) \
591 root 1.1 \
592 root 1.13 struct cppstem : base<ev_ ## cstem, cppstem> \
593 root 1.1 { \
594 root 1.39 void start () throw () \
595 root 1.1 { \
596     ev_ ## cstem ## _start (EV_A_ static_cast<ev_ ## cstem *>(this)); \
597     } \
598     \
599 root 1.39 void stop () throw () \
600 root 1.1 { \
601     ev_ ## cstem ## _stop (EV_A_ static_cast<ev_ ## cstem *>(this)); \
602     } \
603     \
604 llucax 1.28 cppstem EV_CONSTRUCT(cppstem,cstem) \
605 root 1.1 \
606 root 1.39 ~cppstem () throw () \
607 root 1.3 { \
608     stop (); \
609     } \
610     \
611 root 1.13 using base<ev_ ## cstem, cppstem>::set; \
612     \
613 root 1.1 private: \
614     \
615 llucax 1.23 cppstem (const cppstem &o); \
616 root 1.6 \
617 root 1.39 cppstem &operator =(const cppstem &o); \
618 root 1.1 \
619     public:
620    
621 root 1.4 #define EV_END_WATCHER(cppstem,cstem) \
622 root 1.6 };
623 root 1.4
624     EV_BEGIN_WATCHER (io, io)
625 root 1.31 void set (int fd, int events) throw ()
626 root 1.1 {
627     int active = is_active ();
628     if (active) stop ();
629     ev_io_set (static_cast<ev_io *>(this), fd, events);
630     if (active) start ();
631     }
632    
633 root 1.31 void set (int events) throw ()
634 root 1.1 {
635     int active = is_active ();
636     if (active) stop ();
637     ev_io_set (static_cast<ev_io *>(this), fd, events);
638     if (active) start ();
639     }
640    
641 root 1.31 void start (int fd, int events) throw ()
642 root 1.1 {
643     set (fd, events);
644     start ();
645     }
646 root 1.4 EV_END_WATCHER (io, io)
647 root 1.1
648 root 1.4 EV_BEGIN_WATCHER (timer, timer)
649 root 1.31 void set (ev_tstamp after, ev_tstamp repeat = 0.) throw ()
650 root 1.1 {
651     int active = is_active ();
652     if (active) stop ();
653     ev_timer_set (static_cast<ev_timer *>(this), after, repeat);
654     if (active) start ();
655     }
656    
657 root 1.31 void start (ev_tstamp after, ev_tstamp repeat = 0.) throw ()
658 root 1.1 {
659     set (after, repeat);
660     start ();
661     }
662    
663 root 1.31 void again () throw ()
664 root 1.1 {
665     ev_timer_again (EV_A_ static_cast<ev_timer *>(this));
666     }
667 root 1.47
668     ev_tstamp remaining ()
669     {
670     return ev_timer_remaining (EV_A_ static_cast<ev_timer *>(this));
671     }
672 root 1.4 EV_END_WATCHER (timer, timer)
673 root 1.1
674 root 1.8 #if EV_PERIODIC_ENABLE
675 root 1.4 EV_BEGIN_WATCHER (periodic, periodic)
676 root 1.31 void set (ev_tstamp at, ev_tstamp interval = 0.) throw ()
677 root 1.1 {
678     int active = is_active ();
679     if (active) stop ();
680     ev_periodic_set (static_cast<ev_periodic *>(this), at, interval, 0);
681     if (active) start ();
682     }
683    
684 root 1.31 void start (ev_tstamp at, ev_tstamp interval = 0.) throw ()
685 root 1.1 {
686     set (at, interval);
687     start ();
688     }
689    
690 root 1.31 void again () throw ()
691 root 1.1 {
692     ev_periodic_again (EV_A_ static_cast<ev_periodic *>(this));
693     }
694 root 1.4 EV_END_WATCHER (periodic, periodic)
695 root 1.3 #endif
696 root 1.1
697 root 1.48 #if EV_SIGNAL_ENABLE
698 root 1.4 EV_BEGIN_WATCHER (sig, signal)
699 root 1.31 void set (int signum) throw ()
700 root 1.1 {
701     int active = is_active ();
702     if (active) stop ();
703     ev_signal_set (static_cast<ev_signal *>(this), signum);
704     if (active) start ();
705     }
706    
707 root 1.31 void start (int signum) throw ()
708 root 1.1 {
709     set (signum);
710     start ();
711     }
712 root 1.4 EV_END_WATCHER (sig, signal)
713 root 1.48 #endif
714 root 1.1
715 root 1.48 #if EV_CHILD_ENABLE
716 root 1.4 EV_BEGIN_WATCHER (child, child)
717 root 1.37 void set (int pid, int trace = 0) throw ()
718 root 1.1 {
719     int active = is_active ();
720     if (active) stop ();
721 root 1.37 ev_child_set (static_cast<ev_child *>(this), pid, trace);
722 root 1.1 if (active) start ();
723     }
724    
725 root 1.37 void start (int pid, int trace = 0) throw ()
726 root 1.1 {
727 root 1.37 set (pid, trace);
728 root 1.1 start ();
729     }
730 root 1.4 EV_END_WATCHER (child, child)
731 root 1.48 #endif
732 root 1.1
733 root 1.8 #if EV_STAT_ENABLE
734     EV_BEGIN_WATCHER (stat, stat)
735 root 1.31 void set (const char *path, ev_tstamp interval = 0.) throw ()
736 root 1.8 {
737     int active = is_active ();
738     if (active) stop ();
739     ev_stat_set (static_cast<ev_stat *>(this), path, interval);
740     if (active) start ();
741     }
742    
743 root 1.31 void start (const char *path, ev_tstamp interval = 0.) throw ()
744 root 1.8 {
745 root 1.12 stop ();
746 root 1.8 set (path, interval);
747     start ();
748     }
749    
750 root 1.31 void update () throw ()
751 root 1.8 {
752     ev_stat_stat (EV_A_ static_cast<ev_stat *>(this));
753     }
754     EV_END_WATCHER (stat, stat)
755     #endif
756    
757 root 1.48 #if EV_IDLE_ENABLE
758 root 1.8 EV_BEGIN_WATCHER (idle, idle)
759 root 1.31 void set () throw () { }
760 root 1.8 EV_END_WATCHER (idle, idle)
761 root 1.48 #endif
762 root 1.7
763 root 1.48 #if EV_PREPARE_ENABLE
764 root 1.8 EV_BEGIN_WATCHER (prepare, prepare)
765 root 1.31 void set () throw () { }
766 root 1.8 EV_END_WATCHER (prepare, prepare)
767 root 1.48 #endif
768 root 1.8
769 root 1.48 #if EV_CHECK_ENABLE
770 root 1.8 EV_BEGIN_WATCHER (check, check)
771 root 1.31 void set () throw () { }
772 root 1.8 EV_END_WATCHER (check, check)
773 root 1.48 #endif
774 root 1.8
775     #if EV_EMBED_ENABLE
776 root 1.7 EV_BEGIN_WATCHER (embed, embed)
777 root 1.39 void set (struct ev_loop *embedded_loop) throw ()
778     {
779     int active = is_active ();
780     if (active) stop ();
781     ev_embed_set (static_cast<ev_embed *>(this), embedded_loop);
782     if (active) start ();
783     }
784    
785 root 1.31 void start (struct ev_loop *embedded_loop) throw ()
786 root 1.7 {
787 root 1.39 set (embedded_loop);
788 root 1.7 start ();
789     }
790    
791     void sweep ()
792     {
793     ev_embed_sweep (EV_A_ static_cast<ev_embed *>(this));
794     }
795     EV_END_WATCHER (embed, embed)
796     #endif
797    
798 root 1.10 #if EV_FORK_ENABLE
799     EV_BEGIN_WATCHER (fork, fork)
800 root 1.31 void set () throw () { }
801 root 1.10 EV_END_WATCHER (fork, fork)
802     #endif
803    
804 root 1.39 #if EV_ASYNC_ENABLE
805     EV_BEGIN_WATCHER (async, async)
806     void send () throw ()
807     {
808     ev_async_send (EV_A_ static_cast<ev_async *>(this));
809     }
810    
811     bool async_pending () throw ()
812     {
813     return ev_async_pending (static_cast<ev_async *>(this));
814     }
815     EV_END_WATCHER (async, async)
816     #endif
817    
818 llucax 1.28 #undef EV_PX
819     #undef EV_PX_
820 root 1.1 #undef EV_CONSTRUCT
821 root 1.4 #undef EV_BEGIN_WATCHER
822 root 1.7 #undef EV_END_WATCHER
823 root 1.1 }
824    
825     #endif
826