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Comparing libev/ev++.h (file contents):
Revision 1.41 by root, Tue Sep 30 18:35:47 2008 UTC vs.
Revision 1.66 by root, Wed Jan 22 01:50:42 2020 UTC

1/* 1/*
2 * libev simple C++ wrapper classes 2 * libev simple C++ wrapper classes
3 * 3 *
4 * Copyright (c) 2007,2008 Marc Alexander Lehmann <libev@schmorp.de> 4 * Copyright (c) 2007,2008,2010,2018 Marc Alexander Lehmann <libev@schmorp.de>
5 * All rights reserved. 5 * All rights reserved.
6 * 6 *
7 * Redistribution and use in source and binary forms, with or without modifica- 7 * Redistribution and use in source and binary forms, with or without modifica-
8 * tion, are permitted provided that the following conditions are met: 8 * tion, are permitted provided that the following conditions are met:
9 * 9 *
10 * 1. Redistributions of source code must retain the above copyright notice, 10 * 1. Redistributions of source code must retain the above copyright notice,
11 * this list of conditions and the following disclaimer. 11 * this list of conditions and the following disclaimer.
12 * 12 *
13 * 2. Redistributions in binary form must reproduce the above copyright 13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the 14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution. 15 * documentation and/or other materials provided with the distribution.
16 * 16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED 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- 18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER-
19 * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO 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- 20 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE-
21 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 21 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
61 enum { 61 enum {
62 UNDEF = EV_UNDEF, 62 UNDEF = EV_UNDEF,
63 NONE = EV_NONE, 63 NONE = EV_NONE,
64 READ = EV_READ, 64 READ = EV_READ,
65 WRITE = EV_WRITE, 65 WRITE = EV_WRITE,
66#if EV_COMPAT3
66 TIMEOUT = EV_TIMEOUT, 67 TIMEOUT = EV_TIMEOUT,
68#endif
69 TIMER = EV_TIMER,
67 PERIODIC = EV_PERIODIC, 70 PERIODIC = EV_PERIODIC,
68 SIGNAL = EV_SIGNAL, 71 SIGNAL = EV_SIGNAL,
69 CHILD = EV_CHILD, 72 CHILD = EV_CHILD,
70 STAT = EV_STAT, 73 STAT = EV_STAT,
71 IDLE = EV_IDLE, 74 IDLE = EV_IDLE,
72 CHECK = EV_CHECK, 75 CHECK = EV_CHECK,
73 PREPARE = EV_PREPARE, 76 PREPARE = EV_PREPARE,
74 FORK = EV_FORK, 77 FORK = EV_FORK,
75 ASYNC = EV_ASYNC, 78 ASYNC = EV_ASYNC,
76 EMBED = EV_EMBED, 79 EMBED = EV_EMBED,
80# undef ERROR // some systems stupidly #define ERROR
77 ERROR = EV_ERROR, 81 ERROR = EV_ERROR
78 }; 82 };
79 83
80 enum 84 enum
81 { 85 {
82 AUTO = EVFLAG_AUTO, 86 AUTO = EVFLAG_AUTO,
91 PORT = EVBACKEND_PORT 95 PORT = EVBACKEND_PORT
92 }; 96 };
93 97
94 enum 98 enum
95 { 99 {
100#if EV_COMPAT3
96 NONBLOCK = EVLOOP_NONBLOCK, 101 NONBLOCK = EVLOOP_NONBLOCK,
97 ONESHOT = EVLOOP_ONESHOT 102 ONESHOT = EVLOOP_ONESHOT,
103#endif
104 NOWAIT = EVRUN_NOWAIT,
105 ONCE = EVRUN_ONCE
98 }; 106 };
99 107
100 enum how_t 108 enum how_t
101 { 109 {
102 ONE = EVUNLOOP_ONE, 110 ONE = EVBREAK_ONE,
103 ALL = EVUNLOOP_ALL 111 ALL = EVBREAK_ALL
104 }; 112 };
105 113
106 struct bad_loop 114 struct bad_loop
107#if EV_USE_STDEXCEPT 115#if EV_USE_STDEXCEPT
108 : std::runtime_error 116 : std::exception
109#endif 117#endif
110 { 118 {
111#if EV_USE_STDEXCEPT 119#if EV_USE_STDEXCEPT
112 bad_loop () 120 const char *what () const EV_NOEXCEPT
121 {
113 : std::runtime_error ("libev event loop cannot be initialized, bad value of LIBEV_FLAGS?") 122 return "libev event loop cannot be initialized, bad value of LIBEV_FLAGS?";
114 {
115 } 123 }
116#endif 124#endif
117 }; 125 };
118 126
119#ifdef EV_AX 127#ifdef EV_AX
132# define EV_AX_ 140# define EV_AX_
133#endif 141#endif
134 142
135 struct loop_ref 143 struct loop_ref
136 { 144 {
137 loop_ref (EV_P) throw () 145 loop_ref (EV_P) EV_NOEXCEPT
138#if EV_MULTIPLICITY 146#if EV_MULTIPLICITY
139 : EV_AX (EV_A) 147 : EV_AX (EV_A)
140#endif 148#endif
141 { 149 {
142 } 150 }
143 151
144 bool operator == (const loop_ref &other) const throw () 152 bool operator == (const loop_ref &other) const EV_NOEXCEPT
145 { 153 {
146#if EV_MULTIPLICITY 154#if EV_MULTIPLICITY
147 return EV_AX == other.EV_AX; 155 return EV_AX == other.EV_AX;
148#else 156#else
149 return true; 157 return true;
150#endif 158#endif
151 } 159 }
152 160
153 bool operator != (const loop_ref &other) const throw () 161 bool operator != (const loop_ref &other) const EV_NOEXCEPT
154 { 162 {
155#if EV_MULTIPLICITY 163#if EV_MULTIPLICITY
156 return ! (*this == other); 164 return ! (*this == other);
157#else 165#else
158 return false; 166 return false;
159#endif 167#endif
160 } 168 }
161 169
162#if EV_MULTIPLICITY 170#if EV_MULTIPLICITY
163 bool operator == (struct ev_loop *other) const throw () 171 bool operator == (const EV_P) const EV_NOEXCEPT
164 { 172 {
165 return this->EV_AX == other; 173 return this->EV_AX == EV_A;
166 }
167
168 bool operator != (struct ev_loop *other) const throw ()
169 { 174 }
175
176 bool operator != (const EV_P) const EV_NOEXCEPT
177 {
170 return ! (*this == other); 178 return ! (*this == EV_A);
171 }
172
173 bool operator == (const struct ev_loop *other) const throw ()
174 { 179 }
175 return this->EV_AX == other;
176 }
177 180
178 bool operator != (const struct ev_loop *other) const throw ()
179 {
180 return (*this == other);
181 }
182
183 operator struct ev_loop * () const throw () 181 operator struct ev_loop * () const EV_NOEXCEPT
184 { 182 {
185 return EV_AX; 183 return EV_AX;
186 } 184 }
187 185
188 operator const struct ev_loop * () const throw () 186 operator const struct ev_loop * () const EV_NOEXCEPT
189 { 187 {
190 return EV_AX; 188 return EV_AX;
191 } 189 }
192 190
193 bool is_default () const throw () 191 bool is_default () const EV_NOEXCEPT
194 { 192 {
195 return EV_AX == ev_default_loop (0); 193 return EV_AX == ev_default_loop (0);
196 } 194 }
197#endif 195#endif
198 196
197#if EV_COMPAT3
199 void loop (int flags = 0) 198 void loop (int flags = 0)
200 { 199 {
201 ev_loop (EV_AX_ flags); 200 ev_run (EV_AX_ flags);
202 }
203
204 void unloop (how_t how = ONE) throw ()
205 { 201 }
202
203 void unloop (how_t how = ONE) EV_NOEXCEPT
204 {
206 ev_unloop (EV_AX_ how); 205 ev_break (EV_AX_ how);
207 }
208
209 void post_fork () throw ()
210 { 206 }
211#if EV_MULTIPLICITY 207#endif
208
209 void run (int flags = 0)
210 {
211 ev_run (EV_AX_ flags);
212 }
213
214 void break_loop (how_t how = ONE) EV_NOEXCEPT
215 {
216 ev_break (EV_AX_ how);
217 }
218
219 void post_fork () EV_NOEXCEPT
220 {
212 ev_loop_fork (EV_AX); 221 ev_loop_fork (EV_AX);
213#else
214 ev_default_fork ();
215#endif
216 }
217
218 unsigned int count () const throw ()
219 { 222 }
220 return ev_loop_count (EV_AX);
221 }
222 223
223 unsigned int backend () const throw () 224 unsigned int backend () const EV_NOEXCEPT
224 { 225 {
225 return ev_backend (EV_AX); 226 return ev_backend (EV_AX);
226 } 227 }
227 228
228 tstamp now () const throw () 229 tstamp now () const EV_NOEXCEPT
229 { 230 {
230 return ev_now (EV_AX); 231 return ev_now (EV_AX);
231 } 232 }
232 233
233 void ref () throw () 234 void ref () EV_NOEXCEPT
234 { 235 {
235 ev_ref (EV_AX); 236 ev_ref (EV_AX);
236 } 237 }
237 238
238 void unref () throw () 239 void unref () EV_NOEXCEPT
239 { 240 {
240 ev_unref (EV_AX); 241 ev_unref (EV_AX);
241 } 242 }
242 243
244#if EV_FEATURE_API
245 unsigned int iteration () const EV_NOEXCEPT
246 {
247 return ev_iteration (EV_AX);
248 }
249
250 unsigned int depth () const EV_NOEXCEPT
251 {
252 return ev_depth (EV_AX);
253 }
254
243 void set_io_collect_interval (tstamp interval) throw () 255 void set_io_collect_interval (tstamp interval) EV_NOEXCEPT
244 { 256 {
245 ev_set_io_collect_interval (EV_AX_ interval); 257 ev_set_io_collect_interval (EV_AX_ interval);
246 } 258 }
247 259
248 void set_timeout_collect_interval (tstamp interval) throw () 260 void set_timeout_collect_interval (tstamp interval) EV_NOEXCEPT
249 { 261 {
250 ev_set_timeout_collect_interval (EV_AX_ interval); 262 ev_set_timeout_collect_interval (EV_AX_ interval);
251 } 263 }
264#endif
252 265
253 // function callback 266 // function callback
254 void once (int fd, int events, tstamp timeout, void (*cb)(int, void *), void* arg = 0) throw () 267 void once (int fd, int events, tstamp timeout, void (*cb)(int, void *), void *arg = 0) EV_NOEXCEPT
255 { 268 {
256 ev_once (EV_AX_ fd, events, timeout, cb, arg); 269 ev_once (EV_AX_ fd, events, timeout, cb, arg);
257 } 270 }
258 271
259 // method callback 272 // method callback
260 template<class K, void (K::*method)(int)> 273 template<class K, void (K::*method)(int)>
261 void once (int fd, int events, tstamp timeout, K *object) throw () 274 void once (int fd, int events, tstamp timeout, K *object) EV_NOEXCEPT
262 { 275 {
263 once (fd, events, timeout, method_thunk<K, method>, object); 276 once (fd, events, timeout, method_thunk<K, method>, object);
264 } 277 }
265 278
279 // default method == operator ()
280 template<class K>
281 void once (int fd, int events, tstamp timeout, K *object) EV_NOEXCEPT
282 {
283 once (fd, events, timeout, method_thunk<K, &K::operator ()>, object);
284 }
285
266 template<class K, void (K::*method)(int)> 286 template<class K, void (K::*method)(int)>
267 static void method_thunk (int revents, void* arg) 287 static void method_thunk (int revents, void *arg)
268 {
269 K *obj = static_cast<K *>(arg);
270 (obj->*method) (revents);
271 } 288 {
289 (static_cast<K *>(arg)->*method)
290 (revents);
291 }
272 292
273 // const method callback 293 // no-argument method callback
274 template<class K, void (K::*method)(int) const>
275 void once (int fd, int events, tstamp timeout, const K *object) throw ()
276 {
277 once (fd, events, timeout, const_method_thunk<K, method>, object);
278 }
279
280 template<class K, void (K::*method)(int) const>
281 static void const_method_thunk (int revents, void* arg)
282 {
283 K *obj = static_cast<K *>(arg);
284 (obj->*method) (revents);
285 }
286
287 // simple method callback
288 template<class K, void (K::*method)()> 294 template<class K, void (K::*method)()>
289 void once (int fd, int events, tstamp timeout, K *object) throw () 295 void once (int fd, int events, tstamp timeout, K *object) EV_NOEXCEPT
290 { 296 {
291 once (fd, events, timeout, method_noargs_thunk<K, method>, object); 297 once (fd, events, timeout, method_noargs_thunk<K, method>, object);
292 } 298 }
293 299
294 template<class K, void (K::*method)()> 300 template<class K, void (K::*method)()>
295 static void method_noargs_thunk (int revents, void* arg) 301 static void method_noargs_thunk (int revents, void *arg)
296 { 302 {
297 K *obj = static_cast<K *>(arg); 303 (static_cast<K *>(arg)->*method)
298 (obj->*method) (); 304 ();
299 } 305 }
300 306
301 // simpler function callback 307 // simpler function callback
302 template<void (*cb)(int)> 308 template<void (*cb)(int)>
303 void once (int fd, int events, tstamp timeout) throw () 309 void once (int fd, int events, tstamp timeout) EV_NOEXCEPT
304 { 310 {
305 once (fd, events, timeout, simpler_func_thunk<cb>); 311 once (fd, events, timeout, simpler_func_thunk<cb>);
306 } 312 }
307 313
308 template<void (*cb)(int)> 314 template<void (*cb)(int)>
309 static void simpler_func_thunk (int revents, void* arg) 315 static void simpler_func_thunk (int revents, void *arg)
310 { 316 {
317 (*cb)
311 (*cb) (revents); 318 (revents);
312 } 319 }
313 320
314 // simplest function callback 321 // simplest function callback
315 template<void (*cb)()> 322 template<void (*cb)()>
316 void once (int fd, int events, tstamp timeout) throw () 323 void once (int fd, int events, tstamp timeout) EV_NOEXCEPT
317 { 324 {
318 once (fd, events, timeout, simplest_func_thunk<cb>); 325 once (fd, events, timeout, simplest_func_thunk<cb>);
319 } 326 }
320 327
321 template<void (*cb)()> 328 template<void (*cb)()>
322 static void simplest_func_thunk (int revents, void* arg) 329 static void simplest_func_thunk (int revents, void *arg)
323 { 330 {
324 (*cb) (); 331 (*cb)
332 ();
325 } 333 }
326 334
327 void feed_fd_event (int fd, int revents) throw () 335 void feed_fd_event (int fd, int revents) EV_NOEXCEPT
328 { 336 {
329 ev_feed_fd_event (EV_AX_ fd, revents); 337 ev_feed_fd_event (EV_AX_ fd, revents);
330 } 338 }
331 339
332 void feed_signal_event (int signum) throw () 340 void feed_signal_event (int signum) EV_NOEXCEPT
333 { 341 {
334 ev_feed_signal_event (EV_AX_ signum); 342 ev_feed_signal_event (EV_AX_ signum);
335 } 343 }
336 344
337#if EV_MULTIPLICITY 345#if EV_MULTIPLICITY
342 350
343#if EV_MULTIPLICITY 351#if EV_MULTIPLICITY
344 struct dynamic_loop : loop_ref 352 struct dynamic_loop : loop_ref
345 { 353 {
346 354
347 dynamic_loop (unsigned int flags = AUTO) throw (bad_loop) 355 dynamic_loop (unsigned int flags = AUTO)
348 : loop_ref (ev_loop_new (flags)) 356 : loop_ref (ev_loop_new (flags))
349 { 357 {
350 if (!EV_AX) 358 if (!EV_AX)
351 throw bad_loop (); 359 throw bad_loop ();
352 } 360 }
353 361
354 ~dynamic_loop () throw () 362 ~dynamic_loop () EV_NOEXCEPT
355 { 363 {
356 ev_loop_destroy (EV_AX); 364 ev_loop_destroy (EV_AX);
357 EV_AX = 0; 365 EV_AX = 0;
358 } 366 }
359 367
366 }; 374 };
367#endif 375#endif
368 376
369 struct default_loop : loop_ref 377 struct default_loop : loop_ref
370 { 378 {
371 default_loop (unsigned int flags = AUTO) throw (bad_loop) 379 default_loop (unsigned int flags = AUTO)
372#if EV_MULTIPLICITY 380#if EV_MULTIPLICITY
373 : loop_ref (ev_default_loop (flags)) 381 : loop_ref (ev_default_loop (flags))
374#endif 382#endif
375 { 383 {
376 if ( 384 if (
381#endif 389#endif
382 ) 390 )
383 throw bad_loop (); 391 throw bad_loop ();
384 } 392 }
385 393
386 ~default_loop () throw ()
387 {
388 ev_default_destroy ();
389 }
390
391 private: 394 private:
392 default_loop (const default_loop &); 395 default_loop (const default_loop &);
393 default_loop &operator = (const default_loop &); 396 default_loop &operator = (const default_loop &);
394 }; 397 };
395 398
396 inline loop_ref get_default_loop () throw () 399 inline loop_ref get_default_loop () EV_NOEXCEPT
397 { 400 {
398#if EV_MULTIPLICITY 401#if EV_MULTIPLICITY
399 return ev_default_loop (0); 402 return ev_default_loop (0);
400#else 403#else
401 return loop_ref (); 404 return loop_ref ();
419 struct base : ev_watcher 422 struct base : ev_watcher
420 { 423 {
421 #if EV_MULTIPLICITY 424 #if EV_MULTIPLICITY
422 EV_PX; 425 EV_PX;
423 426
424 void set (EV_PX) throw () 427 // loop set
428 void set (EV_P) EV_NOEXCEPT
425 { 429 {
426 this->EV_A = EV_A; 430 this->EV_A = EV_A;
427 } 431 }
428 #endif 432 #endif
429 433
430 base (EV_PX) throw () 434 base (EV_PX) EV_NOEXCEPT
431 #if EV_MULTIPLICITY 435 #if EV_MULTIPLICITY
432 : EV_A (EV_A) 436 : EV_A (EV_A)
433 #endif 437 #endif
434 { 438 {
435 ev_init (this, 0); 439 ev_init (this, 0);
436 } 440 }
437 441
438 void set_ (void *data, void (*cb)(EV_P_ ev_watcher *w, int revents)) throw () 442 void set_ (const void *data, void (*cb)(EV_P_ ev_watcher *w, int revents)) EV_NOEXCEPT
439 { 443 {
440 this->data = data; 444 this->data = (void *)data;
441 ev_set_cb (static_cast<ev_watcher *>(this), cb); 445 ev_set_cb (static_cast<ev_watcher *>(this), cb);
446 }
447
448 // function callback
449 template<void (*function)(watcher &w, int)>
450 void set (void *data = 0) EV_NOEXCEPT
451 {
452 set_ (data, function_thunk<function>);
453 }
454
455 template<void (*function)(watcher &w, int)>
456 static void function_thunk (EV_P_ ev_watcher *w, int revents)
457 {
458 function
459 (*static_cast<watcher *>(w), revents);
442 } 460 }
443 461
444 // method callback 462 // method callback
445 template<class K, void (K::*method)(watcher &w, int)> 463 template<class K, void (K::*method)(watcher &w, int)>
446 void set (K *object) throw () 464 void set (K *object) EV_NOEXCEPT
447 { 465 {
448 set_ (object, method_thunk<K, method>); 466 set_ (object, method_thunk<K, method>);
467 }
468
469 // default method == operator ()
470 template<class K>
471 void set (K *object) EV_NOEXCEPT
472 {
473 set_ (object, method_thunk<K, &K::operator ()>);
449 } 474 }
450 475
451 template<class K, void (K::*method)(watcher &w, int)> 476 template<class K, void (K::*method)(watcher &w, int)>
452 static void method_thunk (EV_P_ ev_watcher *w, int revents) 477 static void method_thunk (EV_P_ ev_watcher *w, int revents)
453 { 478 {
454 K *obj = static_cast<K *>(w->data); 479 (static_cast<K *>(w->data)->*method)
455 (obj->*method) (*static_cast<watcher *>(w), revents);
456 }
457
458 // const method callback
459 template<class K, void (K::*method)(watcher &w, int) const>
460 void set (const K *object) throw ()
461 {
462 set_ (object, const_method_thunk<K, method>);
463 }
464
465 template<class K, void (K::*method)(watcher &w, int) const>
466 static void const_method_thunk (EV_P_ ev_watcher *w, int revents)
467 {
468 K *obj = static_cast<K *>(w->data);
469 (static_cast<K *>(w->data)->*method) (*static_cast<watcher *>(w), revents);
470 }
471
472 // function callback
473 template<void (*function)(watcher &w, int)>
474 void set (void *data = 0) throw ()
475 {
476 set_ (data, function_thunk<function>);
477 }
478
479 template<void (*function)(watcher &w, int)>
480 static void function_thunk (EV_P_ ev_watcher *w, int revents)
481 {
482 function (*static_cast<watcher *>(w), revents); 480 (*static_cast<watcher *>(w), revents);
483 } 481 }
484 482
485 // simple callback 483 // no-argument callback
486 template<class K, void (K::*method)()> 484 template<class K, void (K::*method)()>
487 void set (K *object) throw () 485 void set (K *object) EV_NOEXCEPT
488 { 486 {
489 set_ (object, method_noargs_thunk<K, method>); 487 set_ (object, method_noargs_thunk<K, method>);
490 } 488 }
491 489
492 template<class K, void (K::*method)()> 490 template<class K, void (K::*method)()>
493 static void method_noargs_thunk (EV_P_ ev_watcher *w, int revents) 491 static void method_noargs_thunk (EV_P_ ev_watcher *w, int revents)
494 { 492 {
495 K *obj = static_cast<K *>(w->data); 493 (static_cast<K *>(w->data)->*method)
496 (obj->*method) (); 494 ();
497 } 495 }
498 496
499 void operator ()(int events = EV_UNDEF) 497 void operator ()(int events = EV_UNDEF)
500 { 498 {
499 return
501 return ev_cb (static_cast<ev_watcher *>(this)) 500 ev_cb (static_cast<ev_watcher *>(this))
502 (static_cast<ev_watcher *>(this), events); 501 (static_cast<ev_watcher *>(this), events);
503 } 502 }
504 503
505 bool is_active () const throw () 504 bool is_active () const EV_NOEXCEPT
506 { 505 {
507 return ev_is_active (static_cast<const ev_watcher *>(this)); 506 return ev_is_active (static_cast<const ev_watcher *>(this));
508 } 507 }
509 508
510 bool is_pending () const throw () 509 bool is_pending () const EV_NOEXCEPT
511 { 510 {
512 return ev_is_pending (static_cast<const ev_watcher *>(this)); 511 return ev_is_pending (static_cast<const ev_watcher *>(this));
513 } 512 }
514 513
515 void feed_event (int revents) throw () 514 void feed_event (int revents) EV_NOEXCEPT
516 { 515 {
517 ev_feed_event (EV_A_ static_cast<const ev_watcher *>(this), revents); 516 ev_feed_event (EV_A_ static_cast<ev_watcher *>(this), revents);
518 } 517 }
519 };
520
521 inline tstamp now () throw ()
522 {
523 return ev_time ();
524 } 518 };
525 519
520 inline tstamp now (EV_P) EV_NOEXCEPT
521 {
522 return ev_now (EV_A);
523 }
524
526 inline void delay (tstamp interval) throw () 525 inline void delay (tstamp interval) EV_NOEXCEPT
527 { 526 {
528 ev_sleep (interval); 527 ev_sleep (interval);
529 } 528 }
530 529
531 inline int version_major () throw () 530 inline int version_major () EV_NOEXCEPT
532 { 531 {
533 return ev_version_major (); 532 return ev_version_major ();
534 } 533 }
535 534
536 inline int version_minor () throw () 535 inline int version_minor () EV_NOEXCEPT
537 { 536 {
538 return ev_version_minor (); 537 return ev_version_minor ();
539 } 538 }
540 539
541 inline unsigned int supported_backends () throw () 540 inline unsigned int supported_backends () EV_NOEXCEPT
542 { 541 {
543 return ev_supported_backends (); 542 return ev_supported_backends ();
544 } 543 }
545 544
546 inline unsigned int recommended_backends () throw () 545 inline unsigned int recommended_backends () EV_NOEXCEPT
547 { 546 {
548 return ev_recommended_backends (); 547 return ev_recommended_backends ();
549 } 548 }
550 549
551 inline unsigned int embeddable_backends () throw () 550 inline unsigned int embeddable_backends () EV_NOEXCEPT
552 { 551 {
553 return ev_embeddable_backends (); 552 return ev_embeddable_backends ();
554 } 553 }
555 554
556 inline void set_allocator (void *(*cb)(void *ptr, long size)) throw () 555 inline void set_allocator (void *(*cb)(void *ptr, long size) EV_NOEXCEPT) EV_NOEXCEPT
557 { 556 {
558 ev_set_allocator (cb); 557 ev_set_allocator (cb);
559 } 558 }
560 559
561 inline void set_syserr_cb (void (*cb)(const char *msg)) throw () 560 inline void set_syserr_cb (void (*cb)(const char *msg) EV_NOEXCEPT) EV_NOEXCEPT
562 { 561 {
563 ev_set_syserr_cb (cb); 562 ev_set_syserr_cb (cb);
564 } 563 }
565 564
566 #if EV_MULTIPLICITY 565 #if EV_MULTIPLICITY
567 #define EV_CONSTRUCT(cppstem,cstem) \ 566 #define EV_CONSTRUCT(cppstem,cstem) \
568 (EV_PX = get_default_loop ()) throw () \ 567 (EV_PX = get_default_loop ()) EV_NOEXCEPT \
569 : base<ev_ ## cstem, cppstem> (EV_A) \ 568 : base<ev_ ## cstem, cppstem> (EV_A) \
570 { \ 569 { \
571 } 570 }
572 #else 571 #else
573 #define EV_CONSTRUCT(cppstem,cstem) \ 572 #define EV_CONSTRUCT(cppstem,cstem) \
574 () throw () \ 573 () EV_NOEXCEPT \
575 { \ 574 { \
576 } 575 }
577 #endif 576 #endif
578 577
579 /* using a template here would require quite a bit more lines, 578 /* using a template here would require quite a few more lines,
580 * so a macro solution was chosen */ 579 * so a macro solution was chosen */
581 #define EV_BEGIN_WATCHER(cppstem,cstem) \ 580 #define EV_BEGIN_WATCHER(cppstem,cstem) \
582 \ 581 \
583 struct cppstem : base<ev_ ## cstem, cppstem> \ 582 struct cppstem : base<ev_ ## cstem, cppstem> \
584 { \ 583 { \
585 void start () throw () \ 584 void start () EV_NOEXCEPT \
586 { \ 585 { \
587 ev_ ## cstem ## _start (EV_A_ static_cast<ev_ ## cstem *>(this)); \ 586 ev_ ## cstem ## _start (EV_A_ static_cast<ev_ ## cstem *>(this)); \
588 } \ 587 } \
589 \ 588 \
590 void stop () throw () \ 589 void stop () EV_NOEXCEPT \
591 { \ 590 { \
592 ev_ ## cstem ## _stop (EV_A_ static_cast<ev_ ## cstem *>(this)); \ 591 ev_ ## cstem ## _stop (EV_A_ static_cast<ev_ ## cstem *>(this)); \
593 } \ 592 } \
594 \ 593 \
595 cppstem EV_CONSTRUCT(cppstem,cstem) \ 594 cppstem EV_CONSTRUCT(cppstem,cstem) \
596 \ 595 \
597 ~cppstem () throw () \ 596 ~cppstem () EV_NOEXCEPT \
598 { \ 597 { \
599 stop (); \ 598 stop (); \
600 } \ 599 } \
601 \ 600 \
602 using base<ev_ ## cstem, cppstem>::set; \ 601 using base<ev_ ## cstem, cppstem>::set; \
611 610
612 #define EV_END_WATCHER(cppstem,cstem) \ 611 #define EV_END_WATCHER(cppstem,cstem) \
613 }; 612 };
614 613
615 EV_BEGIN_WATCHER (io, io) 614 EV_BEGIN_WATCHER (io, io)
616 void set (int fd, int events) throw () 615 void set (int fd, int events) EV_NOEXCEPT
617 { 616 {
618 int active = is_active (); 617 int active = is_active ();
619 if (active) stop (); 618 if (active) stop ();
620 ev_io_set (static_cast<ev_io *>(this), fd, events); 619 ev_io_set (static_cast<ev_io *>(this), fd, events);
621 if (active) start (); 620 if (active) start ();
622 } 621 }
623 622
624 void set (int events) throw () 623 void set (int events) EV_NOEXCEPT
625 { 624 {
626 int active = is_active (); 625 int active = is_active ();
627 if (active) stop (); 626 if (active) stop ();
628 ev_io_set (static_cast<ev_io *>(this), fd, events); 627 ev_io_modify (static_cast<ev_io *>(this), events);
629 if (active) start (); 628 if (active) start ();
630 } 629 }
631 630
632 void start (int fd, int events) throw () 631 void start (int fd, int events) EV_NOEXCEPT
633 { 632 {
634 set (fd, events); 633 set (fd, events);
635 start (); 634 start ();
636 } 635 }
637 EV_END_WATCHER (io, io) 636 EV_END_WATCHER (io, io)
638 637
639 EV_BEGIN_WATCHER (timer, timer) 638 EV_BEGIN_WATCHER (timer, timer)
640 void set (ev_tstamp after, ev_tstamp repeat = 0.) throw () 639 void set (ev_tstamp after, ev_tstamp repeat = 0.) EV_NOEXCEPT
641 { 640 {
642 int active = is_active (); 641 int active = is_active ();
643 if (active) stop (); 642 if (active) stop ();
644 ev_timer_set (static_cast<ev_timer *>(this), after, repeat); 643 ev_timer_set (static_cast<ev_timer *>(this), after, repeat);
645 if (active) start (); 644 if (active) start ();
646 } 645 }
647 646
648 void start (ev_tstamp after, ev_tstamp repeat = 0.) throw () 647 void start (ev_tstamp after, ev_tstamp repeat = 0.) EV_NOEXCEPT
649 { 648 {
650 set (after, repeat); 649 set (after, repeat);
651 start (); 650 start ();
652 } 651 }
653 652
654 void again () throw () 653 void again () EV_NOEXCEPT
655 { 654 {
656 ev_timer_again (EV_A_ static_cast<ev_timer *>(this)); 655 ev_timer_again (EV_A_ static_cast<ev_timer *>(this));
656 }
657
658 ev_tstamp remaining ()
659 {
660 return ev_timer_remaining (EV_A_ static_cast<ev_timer *>(this));
657 } 661 }
658 EV_END_WATCHER (timer, timer) 662 EV_END_WATCHER (timer, timer)
659 663
660 #if EV_PERIODIC_ENABLE 664 #if EV_PERIODIC_ENABLE
661 EV_BEGIN_WATCHER (periodic, periodic) 665 EV_BEGIN_WATCHER (periodic, periodic)
662 void set (ev_tstamp at, ev_tstamp interval = 0.) throw () 666 void set (ev_tstamp at, ev_tstamp interval = 0.) EV_NOEXCEPT
663 { 667 {
664 int active = is_active (); 668 int active = is_active ();
665 if (active) stop (); 669 if (active) stop ();
666 ev_periodic_set (static_cast<ev_periodic *>(this), at, interval, 0); 670 ev_periodic_set (static_cast<ev_periodic *>(this), at, interval, 0);
667 if (active) start (); 671 if (active) start ();
668 } 672 }
669 673
670 void start (ev_tstamp at, ev_tstamp interval = 0.) throw () 674 void start (ev_tstamp at, ev_tstamp interval = 0.) EV_NOEXCEPT
671 { 675 {
672 set (at, interval); 676 set (at, interval);
673 start (); 677 start ();
674 } 678 }
675 679
676 void again () throw () 680 void again () EV_NOEXCEPT
677 { 681 {
678 ev_periodic_again (EV_A_ static_cast<ev_periodic *>(this)); 682 ev_periodic_again (EV_A_ static_cast<ev_periodic *>(this));
679 } 683 }
680 EV_END_WATCHER (periodic, periodic) 684 EV_END_WATCHER (periodic, periodic)
681 #endif 685 #endif
682 686
687 #if EV_SIGNAL_ENABLE
683 EV_BEGIN_WATCHER (sig, signal) 688 EV_BEGIN_WATCHER (sig, signal)
684 void set (int signum) throw () 689 void set (int signum) EV_NOEXCEPT
685 { 690 {
686 int active = is_active (); 691 int active = is_active ();
687 if (active) stop (); 692 if (active) stop ();
688 ev_signal_set (static_cast<ev_signal *>(this), signum); 693 ev_signal_set (static_cast<ev_signal *>(this), signum);
689 if (active) start (); 694 if (active) start ();
690 } 695 }
691 696
692 void start (int signum) throw () 697 void start (int signum) EV_NOEXCEPT
693 { 698 {
694 set (signum); 699 set (signum);
695 start (); 700 start ();
696 } 701 }
697 EV_END_WATCHER (sig, signal) 702 EV_END_WATCHER (sig, signal)
703 #endif
698 704
705 #if EV_CHILD_ENABLE
699 EV_BEGIN_WATCHER (child, child) 706 EV_BEGIN_WATCHER (child, child)
700 void set (int pid, int trace = 0) throw () 707 void set (int pid, int trace = 0) EV_NOEXCEPT
701 { 708 {
702 int active = is_active (); 709 int active = is_active ();
703 if (active) stop (); 710 if (active) stop ();
704 ev_child_set (static_cast<ev_child *>(this), pid, trace); 711 ev_child_set (static_cast<ev_child *>(this), pid, trace);
705 if (active) start (); 712 if (active) start ();
706 } 713 }
707 714
708 void start (int pid, int trace = 0) throw () 715 void start (int pid, int trace = 0) EV_NOEXCEPT
709 { 716 {
710 set (pid, trace); 717 set (pid, trace);
711 start (); 718 start ();
712 } 719 }
713 EV_END_WATCHER (child, child) 720 EV_END_WATCHER (child, child)
721 #endif
714 722
715 #if EV_STAT_ENABLE 723 #if EV_STAT_ENABLE
716 EV_BEGIN_WATCHER (stat, stat) 724 EV_BEGIN_WATCHER (stat, stat)
717 void set (const char *path, ev_tstamp interval = 0.) throw () 725 void set (const char *path, ev_tstamp interval = 0.) EV_NOEXCEPT
718 { 726 {
719 int active = is_active (); 727 int active = is_active ();
720 if (active) stop (); 728 if (active) stop ();
721 ev_stat_set (static_cast<ev_stat *>(this), path, interval); 729 ev_stat_set (static_cast<ev_stat *>(this), path, interval);
722 if (active) start (); 730 if (active) start ();
723 } 731 }
724 732
725 void start (const char *path, ev_tstamp interval = 0.) throw () 733 void start (const char *path, ev_tstamp interval = 0.) EV_NOEXCEPT
726 { 734 {
727 stop (); 735 stop ();
728 set (path, interval); 736 set (path, interval);
729 start (); 737 start ();
730 } 738 }
731 739
732 void update () throw () 740 void update () EV_NOEXCEPT
733 { 741 {
734 ev_stat_stat (EV_A_ static_cast<ev_stat *>(this)); 742 ev_stat_stat (EV_A_ static_cast<ev_stat *>(this));
735 } 743 }
736 EV_END_WATCHER (stat, stat) 744 EV_END_WATCHER (stat, stat)
737 #endif 745 #endif
738 746
747 #if EV_IDLE_ENABLE
739 EV_BEGIN_WATCHER (idle, idle) 748 EV_BEGIN_WATCHER (idle, idle)
740 void set () throw () { } 749 void set () EV_NOEXCEPT { }
741 EV_END_WATCHER (idle, idle) 750 EV_END_WATCHER (idle, idle)
751 #endif
742 752
753 #if EV_PREPARE_ENABLE
743 EV_BEGIN_WATCHER (prepare, prepare) 754 EV_BEGIN_WATCHER (prepare, prepare)
744 void set () throw () { } 755 void set () EV_NOEXCEPT { }
745 EV_END_WATCHER (prepare, prepare) 756 EV_END_WATCHER (prepare, prepare)
757 #endif
746 758
759 #if EV_CHECK_ENABLE
747 EV_BEGIN_WATCHER (check, check) 760 EV_BEGIN_WATCHER (check, check)
748 void set () throw () { } 761 void set () EV_NOEXCEPT { }
749 EV_END_WATCHER (check, check) 762 EV_END_WATCHER (check, check)
763 #endif
750 764
751 #if EV_EMBED_ENABLE 765 #if EV_EMBED_ENABLE
752 EV_BEGIN_WATCHER (embed, embed) 766 EV_BEGIN_WATCHER (embed, embed)
753 void set (struct ev_loop *embedded_loop) throw () 767 void set_embed (struct ev_loop *embedded_loop) EV_NOEXCEPT
754 { 768 {
755 int active = is_active (); 769 int active = is_active ();
756 if (active) stop (); 770 if (active) stop ();
757 ev_embed_set (static_cast<ev_embed *>(this), embedded_loop); 771 ev_embed_set (static_cast<ev_embed *>(this), embedded_loop);
758 if (active) start (); 772 if (active) start ();
759 } 773 }
760 774
761 void start (struct ev_loop *embedded_loop) throw () 775 void start (struct ev_loop *embedded_loop) EV_NOEXCEPT
762 { 776 {
763 set (embedded_loop); 777 set (embedded_loop);
764 start (); 778 start ();
765 } 779 }
766 780
771 EV_END_WATCHER (embed, embed) 785 EV_END_WATCHER (embed, embed)
772 #endif 786 #endif
773 787
774 #if EV_FORK_ENABLE 788 #if EV_FORK_ENABLE
775 EV_BEGIN_WATCHER (fork, fork) 789 EV_BEGIN_WATCHER (fork, fork)
776 void set () throw () { } 790 void set () EV_NOEXCEPT { }
777 EV_END_WATCHER (fork, fork) 791 EV_END_WATCHER (fork, fork)
778 #endif 792 #endif
779 793
780 #if EV_ASYNC_ENABLE 794 #if EV_ASYNC_ENABLE
781 EV_BEGIN_WATCHER (async, async) 795 EV_BEGIN_WATCHER (async, async)
782 void set () throw () { } 796 void send () EV_NOEXCEPT
783
784 void send () throw ()
785 { 797 {
786 ev_async_send (EV_A_ static_cast<ev_async *>(this)); 798 ev_async_send (EV_A_ static_cast<ev_async *>(this));
787 } 799 }
788 800
789 bool async_pending () throw () 801 bool async_pending () EV_NOEXCEPT
790 { 802 {
791 return ev_async_pending (static_cast<ev_async *>(this)); 803 return ev_async_pending (static_cast<ev_async *>(this));
792 } 804 }
793 EV_END_WATCHER (async, async) 805 EV_END_WATCHER (async, async)
794 #endif 806 #endif

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