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Comparing EV/EV.xs (file contents):
Revision 1.63 by root, Sat Nov 10 03:19:21 2007 UTC vs.
Revision 1.84 by root, Sat Dec 1 15:32:53 2007 UTC

9 9
10/* fix perl api breakage */ 10/* fix perl api breakage */
11#undef signal 11#undef signal
12#undef sigaction 12#undef sigaction
13 13
14#define EV_SELECT_USE_WIN32_HANDLES 0 14#define EV_SELECT_IS_WINSOCKET 0
15#ifdef _WIN32
15#define EV_SELECT_USE_FD_SET 0 16# define EV_SELECT_USE_FD_SET 0
17# define NFDBITS PERL_NFDBITS
18# define fd_mask Perl_fd_mask
19#endif
16/* due to bugs in OS X we have to use libev/ explicitly here */ 20/* due to bugs in OS X we have to use libev/ explicitly here */
17#include "libev/ev.c" 21#include "libev/ev.c"
18#include "event.c" 22#include "event.c"
19 23
20#ifndef WIN32 24#ifndef _WIN32
21#define DNS_USE_GETTIMEOFDAY_FOR_ID 1 25#define DNS_USE_GETTIMEOFDAY_FOR_ID 1
22#if !defined (WIN32) && !defined(__CYGWIN__) 26#if !defined (WIN32) && !defined(__CYGWIN__)
23# define HAVE_STRUCT_IN6_ADDR 1 27# define HAVE_STRUCT_IN6_ADDR 1
24#endif 28#endif
25#undef HAVE_STRTOK_R 29#undef HAVE_STRTOK_R
27#define strtok_r fake_strtok_r 31#define strtok_r fake_strtok_r
28#include "evdns.h" 32#include "evdns.h"
29#include "evdns.c" 33#include "evdns.c"
30#endif 34#endif
31 35
32#ifndef WIN32 36#ifndef _WIN32
33# include <pthread.h> 37# include <pthread.h>
34#endif 38#endif
39
40#define WFLAG_KEEPALIVE 1
41
42#define UNREF(w) \
43 if (!((w)->flags & WFLAG_KEEPALIVE) \
44 && !ev_is_active (w)) \
45 ev_unref ();
46
47#define REF(w) \
48 if (!((w)->flags & WFLAG_KEEPALIVE) \
49 && ev_is_active (w)) \
50 ev_ref ();
51
52#define START(type,w) \
53 do { \
54 UNREF (w); \
55 ev_ ## type ## _start (w); \
56 } while (0)
57
58#define STOP(type,w) \
59 do { \
60 REF (w); \
61 ev_ ## type ## _stop (w); \
62 } while (0)
63
64#define RESET(type,w,seta) \
65 do { \
66 int active = ev_is_active (w); \
67 if (active) STOP (type, w); \
68 ev_ ## type ## _set seta; \
69 if (active) START (type, w); \
70 } while (0)
35 71
36typedef int Signal; 72typedef int Signal;
37 73
38static struct EVAPI evapi; 74static struct EVAPI evapi;
39 75
41 *stash_watcher, 77 *stash_watcher,
42 *stash_io, 78 *stash_io,
43 *stash_timer, 79 *stash_timer,
44 *stash_periodic, 80 *stash_periodic,
45 *stash_signal, 81 *stash_signal,
82 *stash_child,
83 *stash_stat,
46 *stash_idle, 84 *stash_idle,
47 *stash_prepare, 85 *stash_prepare,
48 *stash_check, 86 *stash_check,
49 *stash_child; 87 *stash_embed,
88 *stash_fork;
50 89
51#ifndef SIG_SIZE 90#ifndef SIG_SIZE
52/* kudos to Slaven Rezic for the idea */ 91/* kudos to Slaven Rezic for the idea */
53static char sig_size [] = { SIG_NUM }; 92static char sig_size [] = { SIG_NUM };
54# define SIG_SIZE (sizeof (sig_size) + 1) 93# define SIG_SIZE (sizeof (sig_size) + 1)
55#endif 94#endif
56 95
57static int 96static Signal
58sv_signum (SV *sig) 97sv_signum (SV *sig)
59{ 98{
60 int signum; 99 Signal signum;
61 100
62 SvGETMAGIC (sig); 101 SvGETMAGIC (sig);
63 102
64 for (signum = 1; signum < SIG_SIZE; ++signum) 103 for (signum = 1; signum < SIG_SIZE; ++signum)
65 if (strEQ (SvPV_nolen (sig), PL_sig_name [signum])) 104 if (strEQ (SvPV_nolen (sig), PL_sig_name [signum]))
66 return signum; 105 return signum;
67 106
68 if (SvIV (sig) > 0) 107 signum = SvIV (sig);
108
109 if (signum > 0 && signum < SIG_SIZE)
69 return SvIV (sig); 110 return signum;
70 111
71 return -1; 112 return -1;
72} 113}
73 114
74///////////////////////////////////////////////////////////////////////////// 115/////////////////////////////////////////////////////////////////////////////
75// Event 116// Event
76 117
77static void e_cb (struct ev_watcher *w, int revents); 118static void e_cb (ev_watcher *w, int revents);
78 119
79static int 120static int
80sv_fileno (SV *fh) 121sv_fileno (SV *fh)
81{ 122{
82 SvGETMAGIC (fh); 123 SvGETMAGIC (fh);
85 fh = SvRV (fh); 126 fh = SvRV (fh);
86 127
87 if (SvTYPE (fh) == SVt_PVGV) 128 if (SvTYPE (fh) == SVt_PVGV)
88 return PerlIO_fileno (IoIFP (sv_2io (fh))); 129 return PerlIO_fileno (IoIFP (sv_2io (fh)));
89 130
90 if ((SvIV (fh) >= 0) && (SvIV (fh) < 0x7ffffff)) 131 if (SvOK (fh) && (SvIV (fh) >= 0) && (SvIV (fh) < 0x7fffffffL))
91 return SvIV (fh); 132 return SvIV (fh);
92 133
93 return -1; 134 return -1;
94} 135}
95 136
96static void * 137static void *
97e_new (int size, SV *cb_sv) 138e_new (int size, SV *cb_sv)
98{ 139{
99 struct ev_watcher *w; 140 ev_watcher *w;
100 SV *self = NEWSV (0, size); 141 SV *self = NEWSV (0, size);
101 SvPOK_only (self); 142 SvPOK_only (self);
102 SvCUR_set (self, size); 143 SvCUR_set (self, size);
103 144
104 w = (struct ev_watcher *)SvPVX (self); 145 w = (ev_watcher *)SvPVX (self);
105 146
106 ev_init (w, e_cb); 147 ev_init (w, e_cb);
107 148
149 w->flags = WFLAG_KEEPALIVE;
108 w->data = 0; 150 w->data = 0;
109 w->fh = 0; 151 w->fh = 0;
110 w->cb_sv = newSVsv (cb_sv); 152 w->cb_sv = newSVsv (cb_sv);
111 w->self = self; 153 w->self = self;
112 154
114} 156}
115 157
116static void 158static void
117e_destroy (void *w_) 159e_destroy (void *w_)
118{ 160{
119 struct ev_watcher *w = (struct ev_watcher *)w_; 161 ev_watcher *w = (ev_watcher *)w_;
120 162
121 SvREFCNT_dec (w->fh ); w->fh = 0; 163 SvREFCNT_dec (w->fh ); w->fh = 0;
122 SvREFCNT_dec (w->cb_sv); w->cb_sv = 0; 164 SvREFCNT_dec (w->cb_sv); w->cb_sv = 0;
123 SvREFCNT_dec (w->data ); w->data = 0; 165 SvREFCNT_dec (w->data ); w->data = 0;
124} 166}
125 167
126static SV * 168static SV *
127e_bless (struct ev_watcher *w, HV *stash) 169e_bless (ev_watcher *w, HV *stash)
128{ 170{
129 SV *rv; 171 SV *rv;
130 172
131 if (SvOBJECT (w->self)) 173 if (SvOBJECT (w->self))
132 rv = newRV_inc (w->self); 174 rv = newRV_inc (w->self);
138 } 180 }
139 181
140 return rv; 182 return rv;
141} 183}
142 184
185static SV *sv_events_cache;
186
143static void 187static void
144e_cb (struct ev_watcher *w, int revents) 188e_cb (ev_watcher *w, int revents)
145{ 189{
146 dSP; 190 dSP;
147 I32 mark = SP - PL_stack_base; 191 I32 mark = SP - PL_stack_base;
148 SV *sv_self, *sv_events, *sv_status = 0; 192 SV *sv_self, *sv_events;
149 static SV *sv_events_cache;
150 193
151 sv_self = newRV_inc (w->self); /* w->self MUST be blessed by now */ 194 sv_self = newRV_inc (w->self); /* w->self MUST be blessed by now */
152 195
153 if (sv_events_cache) 196 if (sv_events_cache)
154 { 197 {
163 PUSHs (sv_self); 206 PUSHs (sv_self);
164 PUSHs (sv_events); 207 PUSHs (sv_events);
165 208
166 PUTBACK; 209 PUTBACK;
167 call_sv (w->cb_sv, G_DISCARD | G_VOID | G_EVAL); 210 call_sv (w->cb_sv, G_DISCARD | G_VOID | G_EVAL);
168 SP = PL_stack_base + mark; PUTBACK;
169 211
170 SvREFCNT_dec (sv_self); 212 SvREFCNT_dec (sv_self);
213
214 if (sv_events_cache)
171 SvREFCNT_dec (sv_status); 215 SvREFCNT_dec (sv_events);
216 else
217 sv_events_cache = sv_events;
218
219 if (SvTRUE (ERRSV))
220 {
221 SPAGAIN;
222 PUSHMARK (SP);
223 PUTBACK;
224 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR);
225 }
226
227 SP = PL_stack_base + mark;
228 PUTBACK;
229}
230
231static void
232e_once_cb (int revents, void *arg)
233{
234 dSP;
235 I32 mark = SP - PL_stack_base;
236 SV *sv_events;
237
238 if (sv_events_cache)
239 {
240 sv_events = sv_events_cache; sv_events_cache = 0;
241 SvIV_set (sv_events, revents);
242 }
243 else
244 sv_events = newSViv (revents);
245
246 PUSHMARK (SP);
247 XPUSHs (sv_events);
248
249 PUTBACK;
250 call_sv ((SV *)arg, G_DISCARD | G_VOID | G_EVAL);
251
252 SvREFCNT_dec ((SV *)arg);
172 253
173 if (sv_events_cache) 254 if (sv_events_cache)
174 SvREFCNT_dec (sv_events); 255 SvREFCNT_dec (sv_events);
175 else 256 else
176 sv_events_cache = sv_events; 257 sv_events_cache = sv_events;
178 if (SvTRUE (ERRSV)) 259 if (SvTRUE (ERRSV))
179 { 260 {
180 PUSHMARK (SP); 261 PUSHMARK (SP);
181 PUTBACK; 262 PUTBACK;
182 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR); 263 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR);
183 SP = PL_stack_base + mark; PUTBACK;
184 } 264 }
265
266 SP = PL_stack_base + mark;
267 PUTBACK;
185} 268}
186 269
187static ev_tstamp 270static ev_tstamp
188e_periodic_cb (struct ev_periodic *w, ev_tstamp now) 271e_periodic_cb (ev_periodic *w, ev_tstamp now)
189{ 272{
190 ev_tstamp retval; 273 ev_tstamp retval;
191 int count; 274 int count;
192 dSP; 275 dSP;
193 276
228} 311}
229 312
230///////////////////////////////////////////////////////////////////////////// 313/////////////////////////////////////////////////////////////////////////////
231// DNS 314// DNS
232 315
233#ifndef WIN32 316#ifndef _WIN32
234static void 317static void
235dns_cb (int result, char type, int count, int ttl, void *addresses, void *arg) 318dns_cb (int result, char type, int count, int ttl, void *addresses, void *arg)
236{ 319{
237 dSP; 320 dSP;
238 SV *cb = (SV *)arg; 321 SV *cb = (SV *)arg;
285 croak (# repeat " value must be >= 0"); 368 croak (# repeat " value must be >= 0");
286 369
287#define CHECK_FD(fh,fd) if ((fd) < 0) \ 370#define CHECK_FD(fh,fd) if ((fd) < 0) \
288 croak ("illegal file descriptor or filehandle (either no attached file descriptor or illegal value): %s", SvPV_nolen (fh)); 371 croak ("illegal file descriptor or filehandle (either no attached file descriptor or illegal value): %s", SvPV_nolen (fh));
289 372
373#define CHECK_SIG(sv,num) if ((num) < 0) \
374 croak ("illegal signal number or name: %s", SvPV_nolen (sv));
375
290///////////////////////////////////////////////////////////////////////////// 376/////////////////////////////////////////////////////////////////////////////
291// XS interface functions 377// XS interface functions
292 378
293MODULE = EV PACKAGE = EV PREFIX = ev_ 379MODULE = EV PACKAGE = EV PREFIX = ev_
294 380
316 const_iv (EV_, CHECK) 402 const_iv (EV_, CHECK)
317 const_iv (EV_, ERROR) 403 const_iv (EV_, ERROR)
318 404
319 const_iv (EV, LOOP_ONESHOT) 405 const_iv (EV, LOOP_ONESHOT)
320 const_iv (EV, LOOP_NONBLOCK) 406 const_iv (EV, LOOP_NONBLOCK)
407 const_iv (EV, UNLOOP_ONE)
408 const_iv (EV, UNLOOP_ALL)
321 409
322 const_iv (EV, METHOD_AUTO)
323 const_iv (EV, METHOD_SELECT) 410 const_iv (EV, BACKEND_SELECT)
324 const_iv (EV, METHOD_POLL) 411 const_iv (EV, BACKEND_POLL)
325 const_iv (EV, METHOD_EPOLL) 412 const_iv (EV, BACKEND_EPOLL)
326 const_iv (EV, METHOD_KQUEUE) 413 const_iv (EV, BACKEND_KQUEUE)
327 const_iv (EV, METHOD_DEVPOLL) 414 const_iv (EV, BACKEND_DEVPOLL)
328 const_iv (EV, METHOD_PORT) 415 const_iv (EV, BACKEND_PORT)
329 const_iv (EV, METHOD_ANY) 416 const_iv (EV, FLAG_AUTO)
417 const_iv (EV, FLAG_NOENV)
418 const_iv (EV, FLAG_FORKCHECK)
330 }; 419 };
331 420
332 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; ) 421 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; )
333 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv)); 422 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv));
334 423
335 stash_watcher = gv_stashpv ("EV::Watcher" , 1); 424 stash_watcher = gv_stashpv ("EV::Watcher" , 1);
336 stash_io = gv_stashpv ("EV::Io" , 1); 425 stash_io = gv_stashpv ("EV::IO" , 1);
337 stash_timer = gv_stashpv ("EV::Timer" , 1); 426 stash_timer = gv_stashpv ("EV::Timer" , 1);
338 stash_periodic = gv_stashpv ("EV::Periodic", 1); 427 stash_periodic = gv_stashpv ("EV::Periodic", 1);
339 stash_signal = gv_stashpv ("EV::Signal" , 1); 428 stash_signal = gv_stashpv ("EV::Signal" , 1);
340 stash_idle = gv_stashpv ("EV::Idle" , 1); 429 stash_idle = gv_stashpv ("EV::Idle" , 1);
341 stash_prepare = gv_stashpv ("EV::Prepare" , 1); 430 stash_prepare = gv_stashpv ("EV::Prepare" , 1);
342 stash_check = gv_stashpv ("EV::Check" , 1); 431 stash_check = gv_stashpv ("EV::Check" , 1);
343 stash_child = gv_stashpv ("EV::Child" , 1); 432 stash_child = gv_stashpv ("EV::Child" , 1);
433 stash_embed = gv_stashpv ("EV::Embed" , 1);
434 stash_stat = gv_stashpv ("EV::Stat" , 1);
344 435
345 { 436 {
346 SV *sv = perl_get_sv ("EV::API", TRUE); 437 SV *sv = perl_get_sv ("EV::API", TRUE);
347 perl_get_sv ("EV::API", TRUE); /* silence 5.10 warning */ 438 perl_get_sv ("EV::API", TRUE); /* silence 5.10 warning */
348 439
350 evapi.ver = EV_API_VERSION; 441 evapi.ver = EV_API_VERSION;
351 evapi.rev = EV_API_REVISION; 442 evapi.rev = EV_API_REVISION;
352 evapi.sv_fileno = sv_fileno; 443 evapi.sv_fileno = sv_fileno;
353 evapi.sv_signum = sv_signum; 444 evapi.sv_signum = sv_signum;
354 evapi.now = ev_now; 445 evapi.now = ev_now;
355 evapi.method = ev_method; 446 evapi.backend = ev_backend;
356 evapi.unloop = ev_unloop; 447 evapi.unloop = ev_unloop;
448 evapi.ref = ev_ref;
449 evapi.unref = ev_unref;
357 evapi.time = ev_time; 450 evapi.time = ev_time;
358 evapi.loop = ev_loop; 451 evapi.loop = ev_loop;
359 evapi.once = ev_once; 452 evapi.once = ev_once;
360 evapi.io_start = ev_io_start; 453 evapi.io_start = ev_io_start;
361 evapi.io_stop = ev_io_stop; 454 evapi.io_stop = ev_io_stop;
372 evapi.prepare_stop = ev_prepare_stop; 465 evapi.prepare_stop = ev_prepare_stop;
373 evapi.check_start = ev_check_start; 466 evapi.check_start = ev_check_start;
374 evapi.check_stop = ev_check_stop; 467 evapi.check_stop = ev_check_stop;
375 evapi.child_start = ev_child_start; 468 evapi.child_start = ev_child_start;
376 evapi.child_stop = ev_child_stop; 469 evapi.child_stop = ev_child_stop;
470 evapi.stat_start = ev_stat_start;
471 evapi.stat_stop = ev_stat_stop;
472 evapi.stat_stat = ev_stat_stat;
377 473
378 sv_setiv (sv, (IV)&evapi); 474 sv_setiv (sv, (IV)&evapi);
379 SvREADONLY_on (sv); 475 SvREADONLY_on (sv);
380 } 476 }
381#ifndef WIN32 477#ifndef _WIN32
382 pthread_atfork (0, 0, ev_default_fork); 478 pthread_atfork (0, 0, ev_default_fork);
383#endif 479#endif
384} 480}
385 481
386NV ev_now () 482NV ev_now ()
387 483
388int ev_method () 484unsigned int ev_backend ()
389 485
390NV ev_time () 486NV ev_time ()
391 487
392int ev_default_loop (int methods = EVMETHOD_AUTO) 488unsigned int ev_default_loop (unsigned int flags = ev_supported_backends ())
393 489
394void ev_loop (int flags = 0) 490void ev_loop (int flags = 0)
395 491
396void ev_unloop (int how = 1) 492void ev_unloop (int how = 1)
397 493
398struct ev_io *io (SV *fh, int events, SV *cb) 494ev_io *io (SV *fh, int events, SV *cb)
399 ALIAS: 495 ALIAS:
400 io_ns = 1 496 io_ns = 1
401 CODE: 497 CODE:
402{ 498{
403 int fd = sv_fileno (fh); 499 int fd = sv_fileno (fh);
404 CHECK_FD (fh, fd); 500 CHECK_FD (fh, fd);
405 501
406 RETVAL = e_new (sizeof (struct ev_io), cb); 502 RETVAL = e_new (sizeof (ev_io), cb);
407 RETVAL->fh = newSVsv (fh); 503 RETVAL->fh = newSVsv (fh);
408 ev_io_set (RETVAL, fd, events); 504 ev_io_set (RETVAL, fd, events);
409 if (!ix) ev_io_start (RETVAL); 505 if (!ix) START (io, RETVAL);
410} 506}
411 OUTPUT: 507 OUTPUT:
412 RETVAL 508 RETVAL
413 509
414struct ev_timer *timer (NV after, NV repeat, SV *cb) 510ev_timer *timer (NV after, NV repeat, SV *cb)
415 ALIAS: 511 ALIAS:
416 timer_ns = 1 512 timer_ns = 1
417 INIT: 513 INIT:
418 CHECK_REPEAT (repeat); 514 CHECK_REPEAT (repeat);
419 CODE: 515 CODE:
420 RETVAL = e_new (sizeof (struct ev_timer), cb); 516 RETVAL = e_new (sizeof (ev_timer), cb);
421 ev_timer_set (RETVAL, after, repeat); 517 ev_timer_set (RETVAL, after, repeat);
422 if (!ix) ev_timer_start (RETVAL); 518 if (!ix) START (timer, RETVAL);
423 OUTPUT: 519 OUTPUT:
424 RETVAL 520 RETVAL
425 521
426SV *periodic (NV at, NV interval, SV *reschedule_cb, SV *cb) 522SV *periodic (NV at, NV interval, SV *reschedule_cb, SV *cb)
427 ALIAS: 523 ALIAS:
428 periodic_ns = 1 524 periodic_ns = 1
429 INIT: 525 INIT:
430 CHECK_REPEAT (interval); 526 CHECK_REPEAT (interval);
431 CODE: 527 CODE:
432{ 528{
433 struct ev_periodic *w; 529 ev_periodic *w;
434 w = e_new (sizeof (struct ev_periodic), cb); 530 w = e_new (sizeof (ev_periodic), cb);
435 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0; 531 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
436 ev_periodic_set (w, at, interval, w->fh ? e_periodic_cb : 0); 532 ev_periodic_set (w, at, interval, w->fh ? e_periodic_cb : 0);
437 RETVAL = e_bless ((struct ev_watcher *)w, stash_periodic); 533 RETVAL = e_bless ((ev_watcher *)w, stash_periodic);
438 if (!ix) ev_periodic_start (w); 534 if (!ix) START (periodic, w);
439} 535}
440 OUTPUT: 536 OUTPUT:
441 RETVAL 537 RETVAL
442 538
443struct ev_signal *signal (Signal signum, SV *cb) 539ev_signal *signal (SV *signal, SV *cb)
444 ALIAS: 540 ALIAS:
445 signal_ns = 1 541 signal_ns = 1
446 CODE: 542 CODE:
543{
544 Signal signum = sv_signum (signal);
545 CHECK_SIG (signal, signum);
546
447 RETVAL = e_new (sizeof (struct ev_signal), cb); 547 RETVAL = e_new (sizeof (ev_signal), cb);
448 ev_signal_set (RETVAL, signum); 548 ev_signal_set (RETVAL, signum);
449 if (!ix) ev_signal_start (RETVAL); 549 if (!ix) START (signal, RETVAL);
550}
450 OUTPUT: 551 OUTPUT:
451 RETVAL 552 RETVAL
452 553
453struct ev_idle *idle (SV *cb) 554ev_idle *idle (SV *cb)
454 ALIAS: 555 ALIAS:
455 idle_ns = 1 556 idle_ns = 1
456 CODE: 557 CODE:
457 RETVAL = e_new (sizeof (struct ev_idle), cb); 558 RETVAL = e_new (sizeof (ev_idle), cb);
458 ev_idle_set (RETVAL); 559 ev_idle_set (RETVAL);
459 if (!ix) ev_idle_start (RETVAL); 560 if (!ix) START (idle, RETVAL);
460 OUTPUT: 561 OUTPUT:
461 RETVAL 562 RETVAL
462 563
463struct ev_prepare *prepare (SV *cb) 564ev_prepare *prepare (SV *cb)
464 ALIAS: 565 ALIAS:
465 prepare_ns = 1 566 prepare_ns = 1
466 CODE: 567 CODE:
467 RETVAL = e_new (sizeof (struct ev_prepare), cb); 568 RETVAL = e_new (sizeof (ev_prepare), cb);
468 ev_prepare_set (RETVAL); 569 ev_prepare_set (RETVAL);
469 if (!ix) ev_prepare_start (RETVAL); 570 if (!ix) START (prepare, RETVAL);
470 OUTPUT: 571 OUTPUT:
471 RETVAL 572 RETVAL
472 573
473struct ev_check *check (SV *cb) 574ev_check *check (SV *cb)
474 ALIAS: 575 ALIAS:
475 check_ns = 1 576 check_ns = 1
476 CODE: 577 CODE:
477 RETVAL = e_new (sizeof (struct ev_check), cb); 578 RETVAL = e_new (sizeof (ev_check), cb);
478 ev_check_set (RETVAL); 579 ev_check_set (RETVAL);
479 if (!ix) ev_check_start (RETVAL); 580 if (!ix) START (check, RETVAL);
480 OUTPUT: 581 OUTPUT:
481 RETVAL 582 RETVAL
482 583
483struct ev_child *child (int pid, SV *cb) 584ev_child *child (int pid, SV *cb)
484 ALIAS: 585 ALIAS:
485 check_ns = 1 586 child_ns = 1
486 CODE: 587 CODE:
487 RETVAL = e_new (sizeof (struct ev_child), cb); 588 RETVAL = e_new (sizeof (ev_child), cb);
488 ev_child_set (RETVAL, pid); 589 ev_child_set (RETVAL, pid);
489 if (!ix) ev_child_start (RETVAL); 590 if (!ix) START (child, RETVAL);
490 OUTPUT: 591 OUTPUT:
491 RETVAL 592 RETVAL
492 593
594ev_stat *stat (SV *path, NV interval, SV *cb)
595 ALIAS:
596 stat_ns = 1
597 CODE:
598 RETVAL = e_new (sizeof (ev_stat), cb);
599 RETVAL->fh = newSVsv (path);
600 ev_stat_set (RETVAL, SvPVbyte_nolen (RETVAL->fh), interval);
601 if (!ix) START (stat, RETVAL);
602 OUTPUT:
603 RETVAL
604
605void once (SV *fh, int events, SV *timeout, SV *cb)
606 CODE:
607 ev_once (
608 sv_fileno (fh), events,
609 SvOK (timeout) ? SvNV (timeout) : -1.,
610 e_once_cb,
611 newSVsv (cb)
612 );
493 613
494PROTOTYPES: DISABLE 614PROTOTYPES: DISABLE
495 615
496MODULE = EV PACKAGE = EV::Watcher PREFIX = ev_ 616MODULE = EV PACKAGE = EV::Watcher PREFIX = ev_
497 617
498int ev_is_active (struct ev_watcher *w) 618int ev_is_active (ev_watcher *w)
499 619
620int ev_is_pending (ev_watcher *w)
621
622int keepalive (ev_watcher *w, int new_value = 0)
623 CODE:
624{
625 RETVAL = w->flags & WFLAG_KEEPALIVE;
626 new_value = new_value ? WFLAG_KEEPALIVE : 0;
627
628 if (items > 1 && ((new_value ^ w->flags) & WFLAG_KEEPALIVE))
629 {
630 REF (w);
631 w->flags = (w->flags & ~WFLAG_KEEPALIVE) | new_value;
632 UNREF (w);
633 }
634}
635 OUTPUT:
636 RETVAL
637
500SV *cb (struct ev_watcher *w, SV *new_cb = 0) 638SV *cb (ev_watcher *w, SV *new_cb = 0)
501 CODE: 639 CODE:
502{ 640{
503 RETVAL = newSVsv (w->cb_sv); 641 RETVAL = newSVsv (w->cb_sv);
504 642
505 if (items > 1) 643 if (items > 1)
506 sv_setsv (w->cb_sv, new_cb); 644 sv_setsv (w->cb_sv, new_cb);
507} 645}
508 OUTPUT: 646 OUTPUT:
509 RETVAL 647 RETVAL
510 648
511SV *data (struct ev_watcher *w, SV *new_data = 0) 649SV *data (ev_watcher *w, SV *new_data = 0)
512 CODE: 650 CODE:
513{ 651{
514 RETVAL = w->data ? newSVsv (w->data) : &PL_sv_undef; 652 RETVAL = w->data ? newSVsv (w->data) : &PL_sv_undef;
515}
516 OUTPUT:
517 RETVAL
518 653
654 if (items > 1)
655 {
656 SvREFCNT_dec (w->data);
657 w->data = newSVsv (new_data);
658 }
659}
660 OUTPUT:
661 RETVAL
662
519void trigger (struct ev_watcher *w, int revents = EV_NONE) 663void trigger (ev_watcher *w, int revents = EV_NONE)
520 CODE: 664 CODE:
521 w->cb (w, revents); 665 w->cb (w, revents);
522 666
523int priority (struct ev_watcher *w, int new_priority = 0) 667int priority (ev_watcher *w, int new_priority = 0)
524 CODE: 668 CODE:
525{ 669{
526 RETVAL = w->priority; 670 RETVAL = w->priority;
527 671
528 if (items > 1) 672 if (items > 1)
551 } 695 }
552} 696}
553 OUTPUT: 697 OUTPUT:
554 RETVAL 698 RETVAL
555 699
556MODULE = EV PACKAGE = EV::Io PREFIX = ev_io_ 700MODULE = EV PACKAGE = EV::IO PREFIX = ev_io_
557 701
558void ev_io_start (struct ev_io *w) 702void ev_io_start (ev_io *w)
703 CODE:
704 START (io, w);
559 705
560void ev_io_stop (struct ev_io *w) 706void ev_io_stop (ev_io *w)
707 CODE:
708 STOP (io, w);
561 709
562void DESTROY (struct ev_io *w) 710void DESTROY (ev_io *w)
563 CODE: 711 CODE:
564 ev_io_stop (w); 712 STOP (io, w);
565 e_destroy (w); 713 e_destroy (w);
566 714
567void set (struct ev_io *w, SV *fh, int events) 715void set (ev_io *w, SV *fh, int events)
568 CODE: 716 CODE:
569{ 717{
570 int active = ev_is_active (w);
571 int fd = sv_fileno (fh); 718 int fd = sv_fileno (fh);
572 CHECK_FD (fh, fd); 719 CHECK_FD (fh, fd);
573 720
574 if (active) ev_io_stop (w);
575
576 sv_setsv (w->fh, fh); 721 sv_setsv (w->fh, fh);
577 ev_io_set (w, fd, events); 722 RESET (io, w, (w, fd, events));
578
579 if (active) ev_io_start (w);
580} 723}
581 724
582SV *fh (struct ev_io *w, SV *new_fh = 0) 725SV *fh (ev_io *w, SV *new_fh = 0)
583 CODE: 726 CODE:
584{ 727{
585 RETVAL = newSVsv (w->fh);
586
587 if (items > 1) 728 if (items > 1)
588 { 729 {
589 int active = ev_is_active (w); 730 int fd = sv_fileno (new_fh);
590 if (active) ev_io_stop (w); 731 CHECK_FD (new_fh, fd);
591 732
592 sv_setsv (w->fh, new_fh); 733 RETVAL = w->fh;
593 ev_io_set (w, sv_fileno (w->fh), w->events); 734 w->fh = newSVsv (new_fh);
594 735
595 if (active) ev_io_start (w); 736 RESET (io, w, (w, fd, w->events));
596 } 737 }
738 else
739 RETVAL = newSVsv (w->fh);
597} 740}
598 OUTPUT: 741 OUTPUT:
599 RETVAL 742 RETVAL
600 743
601int events (struct ev_io *w, int new_events = EV_UNDEF) 744int events (ev_io *w, int new_events = EV_UNDEF)
602 CODE: 745 CODE:
603{ 746{
604 RETVAL = w->events; 747 RETVAL = w->events;
748
749 if (items > 1)
750 RESET (io, w, (w, w->fd, new_events));
751}
752 OUTPUT:
753 RETVAL
754
755MODULE = EV PACKAGE = EV::Signal PREFIX = ev_signal_
756
757void ev_signal_start (ev_signal *w)
758 CODE:
759 START (signal, w);
760
761void ev_signal_stop (ev_signal *w)
762 CODE:
763 STOP (signal, w);
764
765void DESTROY (ev_signal *w)
766 CODE:
767 STOP (signal, w);
768 e_destroy (w);
769
770void set (ev_signal *w, SV *signal)
771 CODE:
772{
773 Signal signum = sv_signum (signal);
774 CHECK_SIG (signal, signum);
775
776 RESET (signal, w, (w, signum));
777}
778
779int signal (ev_signal *w, SV *new_signal = 0)
780 CODE:
781{
782 RETVAL = w->signum;
605 783
606 if (items > 1) 784 if (items > 1)
607 { 785 {
608 int active = ev_is_active (w); 786 Signal signum = sv_signum (new_signal);
609 if (active) ev_io_stop (w); 787 CHECK_SIG (new_signal, signum);
610 788
611 ev_io_set (w, w->fd, new_events); 789 RESET (signal, w, (w, signum));
612
613 if (active) ev_io_start (w);
614 } 790 }
615} 791}
616 OUTPUT: 792 OUTPUT:
617 RETVAL 793 RETVAL
618 794
619MODULE = EV PACKAGE = EV::Signal PREFIX = ev_signal_ 795MODULE = EV PACKAGE = EV::Timer PREFIX = ev_timer_
620 796
621void ev_signal_start (struct ev_signal *w) 797void ev_timer_start (ev_timer *w)
622 798 INIT:
623void ev_signal_stop (struct ev_signal *w) 799 CHECK_REPEAT (w->repeat);
624
625void DESTROY (struct ev_signal *w)
626 CODE: 800 CODE:
627 ev_signal_stop (w); 801 START (timer, w);
802
803void ev_timer_stop (ev_timer *w)
804 CODE:
805 STOP (timer, w);
806
807void ev_timer_again (ev_timer *w)
808 INIT:
809 CHECK_REPEAT (w->repeat);
810 CODE:
811 REF (w);
812 ev_timer_again (w);
813 UNREF (w);
814
815void DESTROY (ev_timer *w)
816 CODE:
817 STOP (timer, w);
628 e_destroy (w); 818 e_destroy (w);
629 819
630void set (struct ev_signal *w, SV *signal) 820void set (ev_timer *w, NV after, NV repeat = 0.)
821 INIT:
822 CHECK_REPEAT (repeat);
631 CODE: 823 CODE:
632{ 824 RESET (timer, w, (w, after, repeat));
633 Signal signum = sv_signum (signal); /* may croak here */
634 int active = ev_is_active (w);
635 825
636 if (active) ev_signal_stop (w); 826MODULE = EV PACKAGE = EV::Periodic PREFIX = ev_periodic_
637 827
638 ev_signal_set (w, signum); 828void ev_periodic_start (ev_periodic *w)
639 829 INIT:
640 if (active) ev_signal_start (w); 830 CHECK_REPEAT (w->interval);
641}
642
643int signal (struct ev_signal *w, SV *new_signal = 0)
644 CODE: 831 CODE:
832 START (periodic, w);
833
834void ev_periodic_stop (ev_periodic *w)
835 CODE:
836 STOP (periodic, w);
837
838void ev_periodic_again (ev_periodic *w)
839 CODE:
840 REF (w);
841 ev_periodic_again (w);
842 UNREF (w);
843
844void DESTROY (ev_periodic *w)
845 CODE:
846 STOP (periodic, w);
847 e_destroy (w);
848
849void set (ev_periodic *w, NV at, NV interval = 0., SV *reschedule_cb = &PL_sv_undef)
850 INIT:
851 CHECK_REPEAT (interval);
852 CODE:
645{ 853{
854 SvREFCNT_dec (w->fh);
855 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
856
857 RESET (periodic, w, (w, at, interval, w->fh ? e_periodic_cb : 0));
858}
859
860MODULE = EV PACKAGE = EV::Idle PREFIX = ev_idle_
861
862void ev_idle_start (ev_idle *w)
863 CODE:
864 START (idle, w);
865
866void ev_idle_stop (ev_idle *w)
867 CODE:
868 STOP (idle, w);
869
870void DESTROY (ev_idle *w)
871 CODE:
872 STOP (idle, w);
873 e_destroy (w);
874
875MODULE = EV PACKAGE = EV::Prepare PREFIX = ev_check_
876
877void ev_prepare_start (ev_prepare *w)
878 CODE:
879 START (prepare, w);
880
881void ev_prepare_stop (ev_prepare *w)
882 CODE:
883 STOP (prepare, w);
884
885void DESTROY (ev_prepare *w)
886 CODE:
887 STOP (prepare, w);
888 e_destroy (w);
889
890MODULE = EV PACKAGE = EV::Check PREFIX = ev_check_
891
892void ev_check_start (ev_check *w)
893 CODE:
894 START (check, w);
895
896void ev_check_stop (ev_check *w)
897 CODE:
898 STOP (check, w);
899
900void DESTROY (ev_check *w)
901 CODE:
902 STOP (check, w);
903 e_destroy (w);
904
905MODULE = EV PACKAGE = EV::Child PREFIX = ev_child_
906
907void ev_child_start (ev_child *w)
908 CODE:
909 START (child, w);
910
911void ev_child_stop (ev_child *w)
912 CODE:
913 STOP (child, w);
914
915void DESTROY (ev_child *w)
916 CODE:
917 STOP (child, w);
918 e_destroy (w);
919
920void set (ev_child *w, int pid)
921 CODE:
922 RESET (child, w, (w, pid));
923
924int pid (ev_child *w, int new_pid = 0)
925 CODE:
926{
646 RETVAL = w->signum; 927 RETVAL = w->pid;
928
929 if (items > 1)
930 RESET (child, w, (w, new_pid));
931}
932 OUTPUT:
933 RETVAL
934
935
936int rstatus (ev_child *w)
937 ALIAS:
938 rpid = 1
939 CODE:
940 RETVAL = ix ? w->rpid : w->rstatus;
941 OUTPUT:
942 RETVAL
943
944MODULE = EV PACKAGE = EV::Stat PREFIX = ev_stat_
945
946void ev_stat_start (ev_stat *w)
947 CODE:
948 START (stat, w);
949
950void ev_stat_stop (ev_stat *w)
951 CODE:
952 STOP (stat, w);
953
954void DESTROY (ev_stat *w)
955 CODE:
956 STOP (stat, w);
957 e_destroy (w);
958
959void set (ev_stat *w, SV *path, NV interval)
960 CODE:
961{
962 sv_setsv (w->fh, path);
963 RESET (stat, w, (w, SvPVbyte_nolen (w->fh), interval));
964}
965
966SV *path (ev_stat *w, SV *new_path = 0)
967 CODE:
968{
969 RETVAL = SvREFCNT_inc (w->fh);
647 970
648 if (items > 1) 971 if (items > 1)
649 { 972 {
650 Signal signum = sv_signum (new_signal); /* may croak here */ 973 SvREFCNT_dec (w->fh);
651 int active = ev_is_active (w); 974 w->fh = newSVsv (new_path);
652 if (active) ev_signal_stop (w); 975 RESET (stat, w, (w, SvPVbyte_nolen (w->fh), w->interval));
653
654 ev_signal_set (w, signum);
655
656 if (active) ev_signal_start (w);
657 } 976 }
658} 977}
659 OUTPUT: 978 OUTPUT:
660 RETVAL 979 RETVAL
661 980
662MODULE = EV PACKAGE = EV::Timer PREFIX = ev_timer_ 981NV interval (ev_stat *w, NV new_interval = 0.)
663
664void ev_timer_start (struct ev_timer *w)
665 INIT:
666 CHECK_REPEAT (w->repeat);
667
668void ev_timer_stop (struct ev_timer *w)
669
670void ev_timer_again (struct ev_timer *w)
671 INIT:
672 CHECK_REPEAT (w->repeat);
673
674void DESTROY (struct ev_timer *w)
675 CODE: 982 CODE:
676 ev_timer_stop (w);
677 e_destroy (w);
678
679void set (struct ev_timer *w, NV after, NV repeat = 0.)
680 INIT:
681 CHECK_REPEAT (repeat);
682 CODE:
683{ 983{
684 int active = ev_is_active (w);
685 if (active) ev_timer_stop (w);
686 ev_timer_set (w, after, repeat);
687 if (active) ev_timer_start (w);
688}
689
690MODULE = EV PACKAGE = EV::Periodic PREFIX = ev_periodic_
691
692void ev_periodic_start (struct ev_periodic *w)
693 INIT:
694 CHECK_REPEAT (w->interval);
695
696void ev_periodic_stop (struct ev_periodic *w)
697
698void ev_periodic_again (struct ev_periodic *w)
699
700void DESTROY (struct ev_periodic *w)
701 CODE:
702 ev_periodic_stop (w);
703 e_destroy (w);
704
705void set (struct ev_periodic *w, NV at, NV interval = 0., SV *reschedule_cb = &PL_sv_undef)
706 INIT:
707 CHECK_REPEAT (interval);
708 CODE:
709{
710 int active = ev_is_active (w);
711 if (active) ev_periodic_stop (w);
712
713 SvREFCNT_dec (w->fh);
714 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
715 ev_periodic_set (w, at, interval, w->fh ? e_periodic_cb : 0);
716
717 if (active) ev_periodic_start (w);
718}
719
720MODULE = EV PACKAGE = EV::Idle PREFIX = ev_idle_
721
722void ev_idle_start (struct ev_idle *w)
723
724void ev_idle_stop (struct ev_idle *w)
725
726void DESTROY (struct ev_idle *w)
727 CODE:
728 ev_idle_stop (w);
729 e_destroy (w);
730
731MODULE = EV PACKAGE = EV::Prepare PREFIX = ev_check_
732
733void ev_prepare_start (struct ev_prepare *w)
734
735void ev_prepare_stop (struct ev_prepare *w)
736
737void DESTROY (struct ev_prepare *w)
738 CODE:
739 ev_prepare_stop (w);
740 e_destroy (w);
741
742MODULE = EV PACKAGE = EV::Check PREFIX = ev_check_
743
744void ev_check_start (struct ev_check *w)
745
746void ev_check_stop (struct ev_check *w)
747
748void DESTROY (struct ev_check *w)
749 CODE:
750 ev_check_stop (w);
751 e_destroy (w);
752
753MODULE = EV PACKAGE = EV::Child PREFIX = ev_child_
754
755void ev_child_start (struct ev_child *w)
756
757void ev_child_stop (struct ev_child *w)
758
759void DESTROY (struct ev_child *w)
760 CODE:
761 ev_child_stop (w);
762 e_destroy (w);
763
764void set (struct ev_child *w, int pid)
765 CODE:
766{
767 int active = ev_is_active (w);
768 if (active) ev_child_stop (w);
769
770 ev_child_set (w, pid);
771
772 if (active) ev_child_start (w);
773}
774
775int pid (struct ev_child *w, int new_pid = 0)
776 CODE:
777{
778 RETVAL = w->pid; 984 RETVAL = w->interval;
779 985
780 if (items > 1) 986 if (items > 1)
987 RESET (stat, w, (w, SvPVbyte_nolen (w->fh), new_interval));
988}
989 OUTPUT:
990 RETVAL
991
992void prev (ev_stat *w)
993 ALIAS:
994 stat = 1
995 attr = 2
996 PPCODE:
997{
998 ev_statdata *s = ix ? &w->attr : &w->prev;
999
1000 if (ix == 1)
1001 ev_stat_stat (w);
1002 else if (!s->st_nlink)
1003 errno = ENOENT;
1004
1005 PL_statcache.st_dev = s->st_nlink;
1006 PL_statcache.st_ino = s->st_ino;
1007 PL_statcache.st_mode = s->st_mode;
1008 PL_statcache.st_nlink = s->st_nlink;
1009 PL_statcache.st_uid = s->st_uid;
1010 PL_statcache.st_gid = s->st_gid;
1011 PL_statcache.st_rdev = s->st_rdev;
1012 PL_statcache.st_size = s->st_size;
1013 PL_statcache.st_atime = s->st_atime;
1014 PL_statcache.st_mtime = s->st_mtime;
1015 PL_statcache.st_ctime = s->st_ctime;
1016
1017 if (GIMME_V == G_SCALAR)
1018 XPUSHs (boolSV (s->st_nlink));
1019 else if (GIMME_V == G_ARRAY && s->st_nlink)
781 { 1020 {
782 int active = ev_is_active (w); 1021 EXTEND (SP, 13);
783 if (active) ev_child_stop (w); 1022 PUSHs (sv_2mortal (newSViv (s->st_dev)));
784 1023 PUSHs (sv_2mortal (newSViv (s->st_ino)));
785 ev_child_set (w, new_pid); 1024 PUSHs (sv_2mortal (newSVuv (s->st_mode)));
786 1025 PUSHs (sv_2mortal (newSVuv (s->st_nlink)));
787 if (active) ev_child_start (w); 1026 PUSHs (sv_2mortal (newSViv (s->st_uid)));
1027 PUSHs (sv_2mortal (newSViv (s->st_gid)));
1028 PUSHs (sv_2mortal (newSViv (s->st_rdev)));
1029 PUSHs (sv_2mortal (newSVnv ((NV)s->st_size)));
1030 PUSHs (sv_2mortal (newSVnv (s->st_atime)));
1031 PUSHs (sv_2mortal (newSVnv (s->st_mtime)));
1032 PUSHs (sv_2mortal (newSVnv (s->st_ctime)));
1033 PUSHs (sv_2mortal (newSVuv (4096)));
1034 PUSHs (sv_2mortal (newSVnv ((NV)((s->st_size + 4095) / 4096))));
788 } 1035 }
789} 1036}
790 OUTPUT:
791 RETVAL
792 1037
793
794int rstatus (struct ev_child *w)
795 ALIAS:
796 rpid = 1
797 CODE:
798 RETVAL = ix ? w->rpid : w->rstatus;
799 OUTPUT:
800 RETVAL
801
802#ifndef WIN32 1038#ifndef _WIN32
803 1039
804MODULE = EV PACKAGE = EV::DNS PREFIX = evdns_ 1040MODULE = EV PACKAGE = EV::DNS PREFIX = evdns_
805 1041
806BOOT: 1042BOOT:
807{ 1043{
878 1114
879int evdns_set_option (char *option, char *val, int flags) 1115int evdns_set_option (char *option, char *val, int flags)
880 1116
881int evdns_resolv_conf_parse (int flags, const char *filename) 1117int evdns_resolv_conf_parse (int flags, const char *filename)
882 1118
883#ifdef MS_WINDOWS 1119#ifdef _WIN32
884 1120
885int evdns_config_windows_nameservers () 1121int evdns_config_windows_nameservers ()
886 1122
887#endif 1123#endif
888 1124

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