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Comparing EV/EV.xs (file contents):
Revision 1.60 by root, Thu Nov 8 02:19:36 2007 UTC vs.
Revision 1.177 by root, Wed Jan 22 02:10:13 2020 UTC

1#include "EXTERN.h" 1#include "EXTERN.h"
2#include "perl.h" 2#include "perl.h"
3#include "XSUB.h" 3#include "XSUB.h"
4 4
5/*#include <netinet/in.h>*/ 5/* fix perl api breakage */
6#ifndef WIN32
7# undef signal
8# undef sigaction
9#endif
6 10
11#include "schmorp.h"
12
13/* old API compatibility */
14static int
15sv_fileno (SV *fh)
16{
17 return s_fileno (fh, 0);
18}
19
20#ifndef GvCV_set
21# define GvCV_set(gv,cv) GvCV (gv) = cv
22#endif
23
24#if EV_ENABLE_ASSERTIONS
25# undef NDEBUG
26# include <assert.h>
27#endif
28
29#define EV_STANDALONE 1
7#define EV_PROTOTYPES 1 30#define EV_PROTOTYPES 1
31#define EV_USE_NANOSLEEP EV_USE_MONOTONIC
32#define EV_USE_FLOOR 1
33#define EV_API_STATIC
34#define EV_H "../libev/ev.h"
35#define EV_CONFIG_H error
8#include "EV/EVAPI.h" 36#include "EV/EVAPI.h"
9 37
10/* fix perl api breakage */
11#undef signal
12#undef sigaction
13
14#define EV_SELECT_USE_WIN32_HANDLES 0 38#define EV_SELECT_IS_WINSOCKET 0
39#ifdef _WIN32
15#define EV_SELECT_USE_FD_SET 0 40# define EV_SELECT_USE_FD_SET 0
41# define NFDBITS PERL_NFDBITS
42# define fd_mask Perl_fd_mask
43#endif
16/* due to bugs in OS X we have to use libev/ explicitly here */ 44/* due to bugs in OS X we have to use libev/ explicitly here */
17#include "libev/ev.c" 45#include "libev/ev.c"
18#include "event.c"
19 46
20#ifndef WIN32 47#if !defined _WIN32 && !defined __minix && !EV_NO_ATFORK
21#define DNS_USE_GETTIMEOFDAY_FOR_ID 1
22#if !defined (WIN32) && !defined(__CYGWIN__)
23# define HAVE_STRUCT_IN6_ADDR 1
24#endif
25#undef HAVE_STRTOK_R
26#undef strtok_r
27#define strtok_r fake_strtok_r
28#include "evdns.c"
29#endif
30
31#ifndef WIN32
32# include <pthread.h> 48# include <pthread.h>
33#endif 49#endif
34 50
51#define e_loop(w) INT2PTR (struct ev_loop *, SvIVX (((ev_watcher *)(w))->loop))
52#define e_flags(w) ((ev_watcher *)(w))->e_flags
53#define e_self(w) ((ev_watcher *)(w))->self
54#define e_fh(w) ((ev_watcher *)(w))->fh
55#define e_data(w) ((ev_watcher *)(w))->data
56
57#define WFLAG_KEEPALIVE 1
58#define WFLAG_UNREFED 2 /* has been unref'ed */
59
60#define UNREF(w) \
61 if (!(e_flags (w) & (WFLAG_KEEPALIVE | WFLAG_UNREFED)) \
62 && ev_is_active (w)) \
63 { \
64 ev_unref (e_loop (w)); \
65 e_flags (w) |= WFLAG_UNREFED; \
66 }
67
68#define REF(w) \
69 if (e_flags (w) & WFLAG_UNREFED) \
70 { \
71 e_flags (w) &= ~WFLAG_UNREFED; \
72 ev_ref (e_loop (w)); \
73 }
74
75#define START(type,w) \
76 do { \
77 ev_ ## type ## _start (e_loop (w), w); \
78 UNREF (w); \
79 } while (0)
80
81#define STOP(type,w) \
82 do { \
83 REF (w); \
84 ev_ ## type ## _stop (e_loop (w), w); \
85 } while (0)
86
87#define RESET(type,w,seta) \
88 do { \
89 int active = ev_is_active (w); \
90 if (active) STOP (type, w); \
91 ev_ ## type ## _set seta; \
92 if (active) START (type, w); \
93 } while (0)
94
35typedef int Signal; 95typedef int Signal;
36 96
97/* horrible... */
98#define CHECK_SIGNAL_CAN_START(w) \
99 do { \
100 /* dive into the internals of libev to avoid aborting in libev */ \
101 if (signals [(w)->signum - 1].loop \
102 && signals [(w)->signum - 1].loop != e_loop (w)) \
103 croak ("unable to start signal watcher, signal %d already registered in another loop", w->signum); \
104 } while (0)
105
106#define START_SIGNAL(w) \
107 do { \
108 CHECK_SIGNAL_CAN_START (w); \
109 START (signal, w); \
110 } while (0) \
111
112#define RESET_SIGNAL(w,seta) \
113 do { \
114 int active = ev_is_active (w); \
115 if (active) STOP (signal, w); \
116 ev_ ## signal ## _set seta; \
117 if (active) START_SIGNAL (w); \
118 } while (0)
119
120static SV *default_loop_sv;
121
37static struct EVAPI evapi; 122static struct EVAPI evapi;
38 123
39static HV 124static HV
125 *stash_loop,
40 *stash_watcher, 126 *stash_watcher,
41 *stash_io, 127 *stash_io,
42 *stash_timer, 128 *stash_timer,
43 *stash_periodic, 129 *stash_periodic,
44 *stash_signal, 130 *stash_signal,
131 *stash_child,
132 *stash_stat,
45 *stash_idle, 133 *stash_idle,
46 *stash_prepare, 134 *stash_prepare,
47 *stash_check, 135 *stash_check,
48 *stash_child; 136 *stash_embed,
49 137 *stash_fork,
50#ifndef SIG_SIZE 138 *stash_cleanup,
51/* kudos to Slaven Rezic for the idea */ 139 *stash_async;
52static char sig_size [] = { SIG_NUM };
53# define SIG_SIZE (sizeof (sig_size) + 1)
54#endif
55
56static int
57sv_signum (SV *sig)
58{
59 int signum;
60
61 SvGETMAGIC (sig);
62
63 for (signum = 1; signum < SIG_SIZE; ++signum)
64 if (strEQ (SvPV_nolen (sig), PL_sig_name [signum]))
65 return signum;
66
67 if (SvIV (sig) > 0)
68 return SvIV (sig);
69
70 return -1;
71}
72 140
73///////////////////////////////////////////////////////////////////////////// 141/////////////////////////////////////////////////////////////////////////////
74// Event 142// Event
75 143
76static void e_cb (struct ev_watcher *w, int revents); 144static void e_cb (EV_P_ ev_watcher *w, int revents);
77
78static int
79sv_fileno (SV *fh)
80{
81 SvGETMAGIC (fh);
82
83 if (SvROK (fh))
84 fh = SvRV (fh);
85
86 if (SvTYPE (fh) == SVt_PVGV)
87 return PerlIO_fileno (IoIFP (sv_2io (fh)));
88
89 if ((SvIV (fh) >= 0) && (SvIV (fh) < 0x7ffffff))
90 return SvIV (fh);
91
92 return -1;
93}
94 145
95static void * 146static void *
96e_new (int size, SV *cb_sv) 147e_new (int size, SV *cb_sv, SV *loop)
97{ 148{
149 SV *cv = cb_sv ? s_get_cv_croak (cb_sv) : 0;
98 struct ev_watcher *w; 150 ev_watcher *w;
99 SV *self = NEWSV (0, size); 151 SV *self = NEWSV (0, size);
100 SvPOK_only (self); 152 SvPOK_only (self);
101 SvCUR_set (self, size); 153 SvCUR_set (self, size);
102 154
103 w = (struct ev_watcher *)SvPVX (self); 155 w = (ev_watcher *)SvPVX (self);
104 156
105 ev_watcher_init (w, e_cb); 157 ev_init (w, cv ? e_cb : 0);
106 158
159 w->loop = SvREFCNT_inc (SvRV (loop));
160 w->e_flags = WFLAG_KEEPALIVE;
161 w->data = 0;
107 w->fh = 0; 162 w->fh = 0;
108 w->cb_sv = newSVsv (cb_sv); 163 w->cb_sv = SvREFCNT_inc (cv);
109 w->self = self; 164 w->self = self;
110 165
111 return (void *)w; 166 return (void *)w;
112} 167}
113 168
114static void 169static void
115e_destroy (void *w_) 170e_destroy (void *w_)
116{ 171{
117 struct ev_watcher *w = (struct ev_watcher *)w_; 172 ev_watcher *w = (ev_watcher *)w_;
118 173
174 SvREFCNT_dec (w->loop ); w->loop = 0;
119 SvREFCNT_dec (w->fh ); w->fh = 0; 175 SvREFCNT_dec (w->fh ); w->fh = 0;
120 SvREFCNT_dec (w->cb_sv); w->cb_sv = 0; 176 SvREFCNT_dec (w->cb_sv); w->cb_sv = 0;
121 SvREFCNT_dec (w->data ); w->data = 0; 177 SvREFCNT_dec (w->data ); w->data = 0;
122} 178}
123 179
124static SV * 180static SV *
125e_bless (struct ev_watcher *w, HV *stash) 181e_bless (ev_watcher *w, HV *stash)
126{ 182{
127 SV *rv; 183 SV *rv;
128 184
129 if (SvOBJECT (w->self)) 185 if (SvOBJECT (w->self))
130 rv = newRV_inc (w->self); 186 rv = newRV_inc (w->self);
136 } 192 }
137 193
138 return rv; 194 return rv;
139} 195}
140 196
197static SV *sv_self_cache, *sv_events_cache;
198
141static void 199static void
142e_cb (struct ev_watcher *w, int revents) 200e_cb (EV_P_ ev_watcher *w, int revents)
143{ 201{
144 dSP; 202 dSP;
145 I32 mark = SP - PL_stack_base; 203 I32 mark = SP - PL_stack_base;
146 SV *sv_self, *sv_events, *sv_status = 0; 204 SV *sv_self, *sv_events;
147 static SV *sv_events_cache;
148 205
206 /* libev might have stopped the watcher */
207 if (ecb_expect_false (w->e_flags & WFLAG_UNREFED)
208 && !ev_is_active (w))
209 REF (w);
210
211 if (ecb_expect_true (sv_self_cache))
212 {
213 sv_self = sv_self_cache; sv_self_cache = 0;
214 SvRV_set (sv_self, SvREFCNT_inc_NN (w->self));
215 }
216 else
217 {
149 sv_self = newRV_inc (w->self); /* w->self MUST be blessed by now */ 218 sv_self = newRV_inc (w->self); /* e_self (w) MUST be blessed by now */
219 SvREADONLY_on (sv_self);
220 }
221
222 if (ecb_expect_true (sv_events_cache))
223 {
224 sv_events = sv_events_cache; sv_events_cache = 0;
225 SvIV_set (sv_events, revents);
226 SvIOK_only (sv_events);
227 }
228 else
229 {
230 sv_events = newSViv (revents);
231 SvREADONLY_on (sv_events);
232 }
233
234 PUSHMARK (SP);
235 EXTEND (SP, 2);
236 PUSHs (sv_self);
237 PUSHs (sv_events);
238
239 PUTBACK;
240 call_sv (w->cb_sv, G_DISCARD | G_VOID | G_EVAL);
241
242 if (ecb_expect_false (SvREFCNT (sv_self) != 1 || sv_self_cache))
243 SvREFCNT_dec (sv_self);
244 else
245 {
246 SvREFCNT_dec (SvRV (sv_self));
247 SvRV_set (sv_self, &PL_sv_undef);
248 sv_self_cache = sv_self;
249 }
250
251 if (ecb_expect_false (SvREFCNT (sv_events) != 1 || sv_events_cache))
252 SvREFCNT_dec (sv_events);
253 else
254 sv_events_cache = sv_events;
255
256 if (ecb_expect_false (SvTRUE (ERRSV)))
257 {
258 SPAGAIN;
259 PUSHMARK (SP);
260 PUTBACK;
261 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR);
262 }
263
264 SP = PL_stack_base + mark;
265 PUTBACK;
266}
267
268static void
269e_once_cb (int revents, void *arg)
270{
271 dSP;
272 I32 mark = SP - PL_stack_base;
273 SV *sv_events;
150 274
151 if (sv_events_cache) 275 if (sv_events_cache)
152 { 276 {
153 sv_events = sv_events_cache; sv_events_cache = 0; 277 sv_events = sv_events_cache; sv_events_cache = 0;
154 SvIV_set (sv_events, revents); 278 SvIV_set (sv_events, revents);
155 } 279 }
156 else 280 else
157 sv_events = newSViv (revents); 281 sv_events = newSViv (revents);
158 282
159 PUSHMARK (SP); 283 PUSHMARK (SP);
160 EXTEND (SP, 2);
161 PUSHs (sv_self);
162 PUSHs (sv_events); 284 XPUSHs (sv_events);
163 285
164 PUTBACK; 286 PUTBACK;
165 call_sv (w->cb_sv, G_DISCARD | G_VOID | G_EVAL); 287 call_sv ((SV *)arg, G_DISCARD | G_VOID | G_EVAL);
166 SP = PL_stack_base + mark; PUTBACK;
167 288
168 SvREFCNT_dec (sv_self); 289 SvREFCNT_dec ((SV *)arg);
169 SvREFCNT_dec (sv_status);
170 290
171 if (sv_events_cache) 291 if (sv_events_cache)
172 SvREFCNT_dec (sv_events); 292 SvREFCNT_dec (sv_events);
173 else 293 else
174 sv_events_cache = sv_events; 294 sv_events_cache = sv_events;
175 295
176 if (SvTRUE (ERRSV)) 296 if (SvTRUE (ERRSV))
177 { 297 {
298 SPAGAIN;
178 PUSHMARK (SP); 299 PUSHMARK (SP);
179 PUTBACK; 300 PUTBACK;
180 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR); 301 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR);
181 SP = PL_stack_base + mark; PUTBACK;
182 } 302 }
303
304 SP = PL_stack_base + mark;
305 PUTBACK;
183} 306}
184 307
185static ev_tstamp 308static ev_tstamp
186e_periodic_cb (struct ev_periodic *w, ev_tstamp now) 309e_periodic_cb (ev_periodic *w, ev_tstamp now)
187{ 310{
188 ev_tstamp retval; 311 ev_tstamp retval;
189 int count; 312 int count;
190 dSP; 313 dSP;
191 314
192 ENTER; 315 ENTER;
193 SAVETMPS; 316 SAVETMPS;
194 317
195 PUSHMARK (SP); 318 PUSHMARK (SP);
196 EXTEND (SP, 2); 319 EXTEND (SP, 2);
197 PUSHs (newRV_inc (w->self)); /* w->self MUST be blessed by now */ 320 PUSHs (newRV_inc (e_self (w))); /* e_self (w) MUST be blessed by now */
198 PUSHs (newSVnv (now)); 321 PUSHs (newSVnv (now));
199 322
200 PUTBACK; 323 PUTBACK;
201 count = call_sv (w->fh, G_SCALAR | G_EVAL); 324 count = call_sv (w->fh, G_SCALAR | G_EVAL);
202 SPAGAIN; 325 SPAGAIN;
223 LEAVE; 346 LEAVE;
224 347
225 return retval; 348 return retval;
226} 349}
227 350
228/////////////////////////////////////////////////////////////////////////////
229// DNS
230
231#ifndef WIN32
232static void
233dns_cb (int result, char type, int count, int ttl, void *addresses, void *arg)
234{
235 dSP;
236 SV *cb = (SV *)arg;
237
238 ENTER;
239 SAVETMPS;
240 PUSHMARK (SP);
241 EXTEND (SP, count + 3);
242 PUSHs (sv_2mortal (newSViv (result)));
243
244 if (result == DNS_ERR_NONE && ttl >= 0)
245 {
246 int i;
247
248 PUSHs (sv_2mortal (newSViv (type)));
249 PUSHs (sv_2mortal (newSViv (ttl)));
250
251 for (i = 0; i < count; ++i)
252 switch (type)
253 {
254 case DNS_IPv6_AAAA:
255 PUSHs (sv_2mortal (newSVpvn (i * 16 + (char *)addresses, 16)));
256 break;
257 case DNS_IPv4_A:
258 PUSHs (sv_2mortal (newSVpvn (i * 4 + (char *)addresses, 4)));
259 break;
260 case DNS_PTR:
261 PUSHs (sv_2mortal (newSVpv (*(char **)addresses, 0)));
262 break;
263 }
264 }
265
266 PUTBACK;
267 call_sv (sv_2mortal (cb), G_DISCARD | G_VOID | G_EVAL);
268
269 FREETMPS;
270
271 if (SvTRUE (ERRSV))
272 {
273 PUSHMARK (SP);
274 PUTBACK;
275 call_sv (get_sv ("EV::DIED", 1), G_DISCARD | G_VOID | G_EVAL | G_KEEPERR);
276 }
277
278 LEAVE;
279}
280#endif
281
282#define CHECK_REPEAT(repeat) if (repeat < 0.) \ 351#define CHECK_REPEAT(repeat) if (repeat < 0.) \
283 croak (# repeat " value must be >= 0"); 352 croak (# repeat " value must be >= 0");
284 353
285#define CHECK_FD(fh,fd) if ((fd) < 0) \ 354#define CHECK_FD(fh,fd) if ((fd) < 0) \
286 croak ("illegal file descriptor or filehandle (either no attached file descriptor or illegal value): %s", SvPV_nolen (fh)); 355 croak ("illegal file descriptor or filehandle (either no attached file descriptor or illegal value): %s", SvPV_nolen (fh));
356
357#define CHECK_SIG(sv,num) if ((num) < 0) \
358 croak ("illegal signal number or name: %s", SvPV_nolen (sv));
359
360static void
361default_fork (void)
362{
363 ev_loop_fork (EV_DEFAULT_UC);
364}
287 365
288///////////////////////////////////////////////////////////////////////////// 366/////////////////////////////////////////////////////////////////////////////
289// XS interface functions 367// XS interface functions
290 368
291MODULE = EV PACKAGE = EV PREFIX = ev_ 369MODULE = EV PACKAGE = EV PREFIX = ev_
304 const_iv (EV_, MINPRI) 382 const_iv (EV_, MINPRI)
305 const_iv (EV_, MAXPRI) 383 const_iv (EV_, MAXPRI)
306 384
307 const_iv (EV_, UNDEF) 385 const_iv (EV_, UNDEF)
308 const_iv (EV_, NONE) 386 const_iv (EV_, NONE)
309 const_iv (EV_, TIMEOUT)
310 const_iv (EV_, READ) 387 const_iv (EV_, READ)
311 const_iv (EV_, WRITE) 388 const_iv (EV_, WRITE)
389 const_iv (EV_, IO)
390 const_iv (EV_, TIMER)
391 const_iv (EV_, PERIODIC)
312 const_iv (EV_, SIGNAL) 392 const_iv (EV_, SIGNAL)
393 const_iv (EV_, CHILD)
394 const_iv (EV_, STAT)
313 const_iv (EV_, IDLE) 395 const_iv (EV_, IDLE)
396 const_iv (EV_, PREPARE)
397 /*const_iv (EV_, CHECK) needs special tretament */
398 const_iv (EV_, EMBED)
314 const_iv (EV_, CHECK) 399 const_iv (EV_, FORK)
400 const_iv (EV_, CLEANUP)
401 const_iv (EV_, ASYNC)
402 const_iv (EV_, CUSTOM)
315 const_iv (EV_, ERROR) 403 const_iv (EV_, ERROR)
316 404
405 const_iv (EV, RUN_NOWAIT)
406 const_iv (EV, RUN_ONCE)
407
408 const_iv (EV, BREAK_CANCEL)
409 const_iv (EV, BREAK_ONE)
410 const_iv (EV, BREAK_ALL)
411 const_iv (EV, BACKEND_SELECT)
412 const_iv (EV, BACKEND_POLL)
413 const_iv (EV, BACKEND_EPOLL)
414 const_iv (EV, BACKEND_KQUEUE)
415 const_iv (EV, BACKEND_DEVPOLL)
416 const_iv (EV, BACKEND_PORT)
417 const_iv (EV, BACKEND_ALL)
418 const_iv (EV, BACKEND_MASK)
419 const_iv (EV, FLAG_AUTO)
420 const_iv (EV, FLAG_FORKCHECK)
421 const_iv (EV, FLAG_SIGNALFD)
422 const_iv (EV, FLAG_NOSIGMASK)
423 const_iv (EV, FLAG_NOENV)
424 const_iv (EV, FLAG_NOINOTIFY)
425
426 const_iv (EV_, VERSION_MAJOR)
427 const_iv (EV_, VERSION_MINOR)
428#if EV_COMPAT3
429 const_iv (EV, FLAG_NOSIGFD) /* compatibility, always 0 */
430 const_iv (EV_, TIMEOUT)
431 const_iv (EV, LOOP_NONBLOCK)
317 const_iv (EV, LOOP_ONESHOT) 432 const_iv (EV, LOOP_ONESHOT)
433 const_iv (EV, UNLOOP_CANCEL)
318 const_iv (EV, LOOP_NONBLOCK) 434 const_iv (EV, UNLOOP_ONE)
319
320 const_iv (EV, METHOD_AUTO)
321 const_iv (EV, METHOD_SELECT)
322 const_iv (EV, METHOD_POLL) 435 const_iv (EV, UNLOOP_ALL)
323 const_iv (EV, METHOD_EPOLL) 436#endif
324 const_iv (EV, METHOD_KQUEUE)
325 const_iv (EV, METHOD_DEVPOLL)
326 const_iv (EV, METHOD_PORT)
327 const_iv (EV, METHOD_ANY)
328 }; 437 };
329 438
330 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; ) 439 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--)
331 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv)); 440 newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv));
332 441
442 /* since this clashes with perl CHECK blocks, */
443 /* but we are interested in constants, */
444 /* and not blocks, we treat CHECK specially. */
445 {
446 /* the local $^W = 0 takes care of the warning */
447 CV *cv = newCONSTSUB (stash, "CHECK", newSViv (EV_CHECK));
448 /* now we need to re-set the gv, in case it was hijacked */
449 GvCV_set (gv_fetchpv ("EV::CHECK", GV_ADD, SVt_PVCV), cv);
450 }
451
452 stash_loop = gv_stashpv ("EV::Loop" , 1);
333 stash_watcher = gv_stashpv ("EV::Watcher" , 1); 453 stash_watcher = gv_stashpv ("EV::Watcher" , 1);
334 stash_io = gv_stashpv ("EV::Io" , 1); 454 stash_io = gv_stashpv ("EV::IO" , 1);
335 stash_timer = gv_stashpv ("EV::Timer" , 1); 455 stash_timer = gv_stashpv ("EV::Timer" , 1);
336 stash_periodic = gv_stashpv ("EV::Periodic", 1); 456 stash_periodic = gv_stashpv ("EV::Periodic", 1);
337 stash_signal = gv_stashpv ("EV::Signal" , 1); 457 stash_signal = gv_stashpv ("EV::Signal" , 1);
338 stash_idle = gv_stashpv ("EV::Idle" , 1); 458 stash_idle = gv_stashpv ("EV::Idle" , 1);
339 stash_prepare = gv_stashpv ("EV::Prepare" , 1); 459 stash_prepare = gv_stashpv ("EV::Prepare" , 1);
340 stash_check = gv_stashpv ("EV::Check" , 1); 460 stash_check = gv_stashpv ("EV::Check" , 1);
341 stash_child = gv_stashpv ("EV::Child" , 1); 461 stash_child = gv_stashpv ("EV::Child" , 1);
462 stash_embed = gv_stashpv ("EV::Embed" , 1);
463 stash_stat = gv_stashpv ("EV::Stat" , 1);
464 stash_fork = gv_stashpv ("EV::Fork" , 1);
465 stash_cleanup = gv_stashpv ("EV::Cleanup" , 1);
466 stash_async = gv_stashpv ("EV::Async" , 1);
342 467
343 { 468 {
344 SV *sv = perl_get_sv ("EV::API", TRUE); 469 SV *sv = perl_get_sv ("EV::API", TRUE);
345 perl_get_sv ("EV::API", TRUE); /* silence 5.10 warning */ 470 perl_get_sv ("EV::API", TRUE); /* silence 5.10 warning */
346 471
347 /* the poor man's shared library emulator */ 472 /* the poor man's shared library emulator */
348 evapi.ver = EV_API_VERSION; 473 evapi.ver = EV_API_VERSION;
349 evapi.rev = EV_API_REVISION; 474 evapi.rev = EV_API_REVISION;
350 evapi.sv_fileno = sv_fileno; 475 evapi.sv_fileno = sv_fileno;
351 evapi.sv_signum = sv_signum; 476 evapi.sv_signum = s_signum;
352 evapi.now = ev_now; 477 evapi.supported_backends = ev_supported_backends ();
353 evapi.method = ev_method; 478 evapi.recommended_backends = ev_recommended_backends ();
354 evapi.unloop = ev_unloop; 479 evapi.embeddable_backends = ev_embeddable_backends ();
355 evapi.time = ev_time; 480 evapi.time_ = ev_time;
481 evapi.sleep_ = ev_sleep;
356 evapi.loop = ev_loop; 482 evapi.loop_new = ev_loop_new;
483 evapi.loop_destroy = ev_loop_destroy;
484 evapi.loop_fork = ev_loop_fork;
485 evapi.iteration = ev_iteration;
486 evapi.depth = ev_depth;
487 evapi.set_userdata = ev_set_userdata;
488 evapi.userdata = ev_userdata;
489 evapi.now = ev_now;
490 evapi.now_update = ev_now_update;
491 evapi.suspend = ev_suspend;
492 evapi.resume = ev_resume;
493 evapi.backend = ev_backend;
494 evapi.break_ = ev_break;
495 evapi.invoke_pending = ev_invoke_pending;
496 evapi.pending_count = ev_pending_count;
497 evapi.verify = ev_verify;
498 evapi.set_loop_release_cb = ev_set_loop_release_cb;
499 evapi.set_invoke_pending_cb= ev_set_invoke_pending_cb;
500 evapi.ref = ev_ref;
501 evapi.unref = ev_unref;
502 evapi.run = ev_run;
357 evapi.once = ev_once; 503 evapi.once = ev_once;
358 evapi.io_start = ev_io_start; 504 evapi.io_start = ev_io_start;
359 evapi.io_stop = ev_io_stop; 505 evapi.io_stop = ev_io_stop;
360 evapi.timer_start = ev_timer_start; 506 evapi.timer_start = ev_timer_start;
361 evapi.timer_stop = ev_timer_stop; 507 evapi.timer_stop = ev_timer_stop;
362 evapi.timer_again = ev_timer_again; 508 evapi.timer_again = ev_timer_again;
509 evapi.timer_remaining = ev_timer_remaining;
363 evapi.periodic_start = ev_periodic_start; 510 evapi.periodic_start = ev_periodic_start;
364 evapi.periodic_stop = ev_periodic_stop; 511 evapi.periodic_stop = ev_periodic_stop;
365 evapi.signal_start = ev_signal_start; 512 evapi.signal_start = ev_signal_start;
366 evapi.signal_stop = ev_signal_stop; 513 evapi.signal_stop = ev_signal_stop;
367 evapi.idle_start = ev_idle_start; 514 evapi.idle_start = ev_idle_start;
368 evapi.idle_stop = ev_idle_stop; 515 evapi.idle_stop = ev_idle_stop;
369 evapi.prepare_start = ev_prepare_start; 516 evapi.prepare_start = ev_prepare_start;
370 evapi.prepare_stop = ev_prepare_stop; 517 evapi.prepare_stop = ev_prepare_stop;
371 evapi.check_start = ev_check_start; 518 evapi.check_start = ev_check_start;
372 evapi.check_stop = ev_check_stop; 519 evapi.check_stop = ev_check_stop;
520#if EV_CHILD_ENABLE
373 evapi.child_start = ev_child_start; 521 evapi.child_start = ev_child_start;
374 evapi.child_stop = ev_child_stop; 522 evapi.child_stop = ev_child_stop;
523#endif
524 evapi.stat_start = ev_stat_start;
525 evapi.stat_stop = ev_stat_stop;
526 evapi.stat_stat = ev_stat_stat;
527 evapi.embed_start = ev_embed_start;
528 evapi.embed_stop = ev_embed_stop;
529 evapi.embed_sweep = ev_embed_sweep;
530 evapi.fork_start = ev_fork_start;
531 evapi.fork_stop = ev_fork_stop;
532 evapi.cleanup_start = ev_cleanup_start;
533 evapi.cleanup_stop = ev_cleanup_stop;
534 evapi.async_start = ev_async_start;
535 evapi.async_stop = ev_async_stop;
536 evapi.async_send = ev_async_send;
537 evapi.clear_pending = ev_clear_pending;
538 evapi.invoke = ev_invoke;
375 539
376 sv_setiv (sv, (IV)&evapi); 540 sv_setiv (sv, (IV)&evapi);
377 SvREADONLY_on (sv); 541 SvREADONLY_on (sv);
378 } 542 }
379#ifndef WIN32 543#if !defined _WIN32 && !defined _MINIX && !EV_NO_ATFORK
544/* unfortunately, musl neither implements the linux standard base,
545/* nor makes itself detectable via macros. yeah, right... */
546#if __linux && (__GLIBC__ || __UCLIBC__)
547 int __register_atfork(void (*prepare) (void), void (*parent) (void), void (*child) (void), void * __dso_handle);
548 __register_atfork (0, 0, default_fork, 0);
549#else
380 pthread_atfork (0, 0, ev_default_fork); 550 pthread_atfork (0, 0, default_fork);
381#endif 551#endif
552#endif
553}
554
555SV *ev_default_loop (unsigned int flags = 0)
556 CODE:
557{
558 if (!default_loop_sv)
559 {
560 evapi.default_loop = ev_default_loop (flags);
561
562 if (!evapi.default_loop)
563 XSRETURN_UNDEF;
564
565 default_loop_sv = sv_bless (newRV_noinc (newSViv (PTR2IV (evapi.default_loop))), stash_loop);
566 }
567
568 RETVAL = newSVsv (default_loop_sv);
569}
570 OUTPUT:
571 RETVAL
572
573void ev_default_destroy ()
574 CODE:
575 ev_loop_destroy (EV_DEFAULT_UC);
576 SvREFCNT_dec (default_loop_sv);
577 default_loop_sv = 0;
578
579unsigned int ev_supported_backends ()
580
581unsigned int ev_recommended_backends ()
582
583unsigned int ev_embeddable_backends ()
584
585void ev_sleep (NV interval)
586
587NV ev_time ()
588
589void ev_feed_signal (SV *signal)
590 CODE:
591{
592 Signal signum = s_signum (signal);
593 CHECK_SIG (signal, signum);
594
595 ev_feed_signal (signum);
382} 596}
383 597
384NV ev_now () 598NV ev_now ()
599 C_ARGS: evapi.default_loop
385 600
386int ev_method () 601void ev_now_update ()
602 C_ARGS: evapi.default_loop
387 603
388NV ev_time () 604void ev_suspend ()
605 C_ARGS: evapi.default_loop
389 606
390int ev_default_loop (int methods = EVMETHOD_AUTO) 607void ev_resume ()
608 C_ARGS: evapi.default_loop
391 609
610unsigned int ev_backend ()
611 C_ARGS: evapi.default_loop
612
613void ev_verify ()
614 ALIAS:
615 loop_verify = 1
616 C_ARGS: evapi.default_loop
617
618unsigned int ev_iteration ()
619 ALIAS:
620 loop_count = 1
621 C_ARGS: evapi.default_loop
622
623unsigned int ev_depth ()
624 ALIAS:
625 loop_depth = 1
626 C_ARGS: evapi.default_loop
627
628void ev_set_io_collect_interval (NV interval)
629 C_ARGS: evapi.default_loop, interval
630
631void ev_set_timeout_collect_interval (NV interval)
632 C_ARGS: evapi.default_loop, interval
633
392void ev_loop (int flags = 0) 634int ev_run (int flags = 0)
635 ALIAS:
636 loop = 1
637 C_ARGS: evapi.default_loop, flags
393 638
394void ev_unloop (int how = 1) 639void ev_break (int how = EVBREAK_ONE)
640 ALIAS:
641 unloop = 1
642 C_ARGS: evapi.default_loop, how
395 643
644void ev_feed_fd_event (int fd, int revents = EV_NONE)
645 C_ARGS: evapi.default_loop, fd, revents
646
647void ev_feed_signal_event (SV *signal)
648 CODE:
649{
650 Signal signum = s_signum (signal);
651 CHECK_SIG (signal, signum);
652
653 ev_feed_signal_event (evapi.default_loop, signum);
654}
655
656unsigned int ev_pending_count ()
657 C_ARGS: evapi.default_loop
658
659void ev_invoke_pending ()
660 C_ARGS: evapi.default_loop
661
396struct ev_io *io (SV *fh, int events, SV *cb) 662ev_io *io (SV *fh, int events, SV *cb)
397 ALIAS: 663 ALIAS:
398 io_ns = 1 664 io_ns = 1
665 _ae_io = 2
399 CODE: 666 CODE:
400{ 667{
401 int fd = sv_fileno (fh); 668 int fd = s_fileno (fh, events & EV_WRITE);
402 CHECK_FD (fh, fd); 669 CHECK_FD (fh, fd);
403 670
671 if (ix == 2)
672 {
673 ix = 0;
674 events = events ? EV_WRITE : EV_READ;
675 }
676
404 RETVAL = e_new (sizeof (struct ev_io), cb); 677 RETVAL = e_new (sizeof (ev_io), cb, default_loop_sv);
405 RETVAL->fh = newSVsv (fh); 678 e_fh (RETVAL) = newSVsv (fh);
406 ev_io_set (RETVAL, fd, events); 679 ev_io_set (RETVAL, fd, events);
407 if (!ix) ev_io_start (RETVAL); 680 if (!ix) START (io, RETVAL);
408} 681}
409 OUTPUT: 682 OUTPUT:
410 RETVAL 683 RETVAL
411 684
412struct ev_timer *timer (NV after, NV repeat, SV *cb) 685ev_timer *timer (NV after, NV repeat, SV *cb)
413 ALIAS: 686 ALIAS:
414 timer_ns = 1 687 timer_ns = 1
415 INIT: 688 INIT:
416 CHECK_REPEAT (repeat); 689 CHECK_REPEAT (repeat);
417 CODE: 690 CODE:
418 RETVAL = e_new (sizeof (struct ev_timer), cb); 691 RETVAL = e_new (sizeof (ev_timer), cb, default_loop_sv);
419 ev_timer_set (RETVAL, after, repeat); 692 ev_timer_set (RETVAL, after, repeat);
420 if (!ix) ev_timer_start (RETVAL); 693 if (!ix) START (timer, RETVAL);
421 OUTPUT: 694 OUTPUT:
422 RETVAL 695 RETVAL
423 696
424SV *periodic (NV at, NV interval, SV *reschedule_cb, SV *cb) 697SV *periodic (NV at, NV interval, SV *reschedule_cb, SV *cb)
425 ALIAS: 698 ALIAS:
426 periodic_ns = 1 699 periodic_ns = 1
427 INIT: 700 INIT:
428 CHECK_REPEAT (interval); 701 CHECK_REPEAT (interval);
429 CODE: 702 CODE:
430{ 703{
431 struct ev_periodic *w; 704 ev_periodic *w;
432 w = e_new (sizeof (struct ev_periodic), cb); 705 w = e_new (sizeof (ev_periodic), cb, default_loop_sv);
433 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0; 706 e_fh (w) = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
434 ev_periodic_set (w, at, interval, w->fh ? e_periodic_cb : 0); 707 ev_periodic_set (w, at, interval, e_fh (w) ? e_periodic_cb : 0);
435 RETVAL = e_bless ((struct ev_watcher *)w, stash_periodic); 708 RETVAL = e_bless ((ev_watcher *)w, stash_periodic);
436 if (!ix) ev_periodic_start (w); 709 if (!ix) START (periodic, w);
437} 710}
438 OUTPUT: 711 OUTPUT:
439 RETVAL 712 RETVAL
440 713
441struct ev_signal *signal (Signal signum, SV *cb) 714ev_signal *signal (SV *signal, SV *cb)
442 ALIAS: 715 ALIAS:
443 signal_ns = 1 716 signal_ns = 1
444 CODE: 717 CODE:
718{
719 Signal signum = s_signum (signal);
720 CHECK_SIG (signal, signum);
721
445 RETVAL = e_new (sizeof (struct ev_signal), cb); 722 RETVAL = e_new (sizeof (ev_signal), cb, default_loop_sv);
446 ev_signal_set (RETVAL, signum); 723 ev_signal_set (RETVAL, signum);
447 if (!ix) ev_signal_start (RETVAL); 724 if (!ix) START_SIGNAL (RETVAL);
725}
448 OUTPUT: 726 OUTPUT:
449 RETVAL 727 RETVAL
450 728
451struct ev_idle *idle (SV *cb) 729ev_idle *idle (SV *cb)
452 ALIAS: 730 ALIAS:
453 idle_ns = 1 731 idle_ns = 1
454 CODE: 732 CODE:
455 RETVAL = e_new (sizeof (struct ev_idle), cb); 733 RETVAL = e_new (sizeof (ev_idle), cb, default_loop_sv);
456 ev_idle_set (RETVAL); 734 ev_idle_set (RETVAL);
457 if (!ix) ev_idle_start (RETVAL); 735 if (!ix) START (idle, RETVAL);
458 OUTPUT: 736 OUTPUT:
459 RETVAL 737 RETVAL
460 738
461struct ev_prepare *prepare (SV *cb) 739ev_prepare *prepare (SV *cb)
462 ALIAS: 740 ALIAS:
463 prepare_ns = 1 741 prepare_ns = 1
464 CODE: 742 CODE:
465 RETVAL = e_new (sizeof (struct ev_prepare), cb); 743 RETVAL = e_new (sizeof (ev_prepare), cb, default_loop_sv);
466 ev_prepare_set (RETVAL); 744 ev_prepare_set (RETVAL);
467 if (!ix) ev_prepare_start (RETVAL); 745 if (!ix) START (prepare, RETVAL);
468 OUTPUT: 746 OUTPUT:
469 RETVAL 747 RETVAL
470 748
471struct ev_check *check (SV *cb) 749ev_check *check (SV *cb)
472 ALIAS: 750 ALIAS:
473 check_ns = 1 751 check_ns = 1
474 CODE: 752 CODE:
475 RETVAL = e_new (sizeof (struct ev_check), cb); 753 RETVAL = e_new (sizeof (ev_check), cb, default_loop_sv);
476 ev_check_set (RETVAL); 754 ev_check_set (RETVAL);
477 if (!ix) ev_check_start (RETVAL); 755 if (!ix) START (check, RETVAL);
478 OUTPUT: 756 OUTPUT:
479 RETVAL 757 RETVAL
480 758
759ev_fork *fork (SV *cb)
760 ALIAS:
761 fork_ns = 1
762 CODE:
763 RETVAL = e_new (sizeof (ev_fork), cb, default_loop_sv);
764 ev_fork_set (RETVAL);
765 if (!ix) START (fork, RETVAL);
766 OUTPUT:
767 RETVAL
768
769#if CLEANUP_ENABLED
770
771ev_cleanup *cleanup (SV *cb)
772 ALIAS:
773 cleanup_ns = 1
774 CODE:
775 RETVAL = e_new (sizeof (ev_cleanup), cb, default_loop_sv);
776 SvREFCNT_dec (RETVAL->loop); /* must not keep loop object alive */
777 ev_cleanup_set (RETVAL);
778 if (!ix) START (cleanup, RETVAL);
779 OUTPUT:
780 RETVAL
781
782#endif
783
481struct ev_child *child (int pid, SV *cb) 784ev_child *child (int pid, int trace, SV *cb)
482 ALIAS: 785 ALIAS:
483 check_ns = 1 786 child_ns = 1
484 CODE: 787 CODE:
788#if EV_CHILD_ENABLE
485 RETVAL = e_new (sizeof (struct ev_child), cb); 789 RETVAL = e_new (sizeof (ev_child), cb, default_loop_sv);
486 ev_child_set (RETVAL, pid); 790 ev_child_set (RETVAL, pid, trace);
487 if (!ix) ev_child_start (RETVAL); 791 if (!ix) START (child, RETVAL);
792#else
793 croak ("EV::child watchers not supported on this platform");
794#endif
488 OUTPUT: 795 OUTPUT:
489 RETVAL 796 RETVAL
490 797
798
799ev_stat *stat (SV *path, NV interval, SV *cb)
800 ALIAS:
801 stat_ns = 1
802 CODE:
803 RETVAL = e_new (sizeof (ev_stat), cb, default_loop_sv);
804 e_fh (RETVAL) = newSVsv (path);
805 ev_stat_set (RETVAL, SvPVbyte_nolen (e_fh (RETVAL)), interval);
806 if (!ix) START (stat, RETVAL);
807 OUTPUT:
808 RETVAL
809
810#ifndef EV_NO_LOOPS
811
812ev_embed *embed (struct ev_loop *loop, SV *cb = 0)
813 ALIAS:
814 embed_ns = 1
815 CODE:
816{
817 if (!(ev_backend (loop) & ev_embeddable_backends ()))
818 croak ("passed loop is not embeddable via EV::embed,");
819
820 RETVAL = e_new (sizeof (ev_embed), cb, default_loop_sv);
821 e_fh (RETVAL) = newSVsv (ST (0));
822 ev_embed_set (RETVAL, loop);
823 if (!ix) START (embed, RETVAL);
824}
825 OUTPUT:
826 RETVAL
827
828#endif
829
830ev_async *async (SV *cb)
831 ALIAS:
832 async_ns = 1
833 CODE:
834 RETVAL = e_new (sizeof (ev_async), cb, default_loop_sv);
835 ev_async_set (RETVAL);
836 if (!ix) START (async, RETVAL);
837 OUTPUT:
838 RETVAL
839
840void once (SV *fh, int events, SV *timeout, SV *cb)
841 CODE:
842 ev_once (
843 evapi.default_loop,
844 s_fileno (fh, events & EV_WRITE), events,
845 SvOK (timeout) ? SvNV (timeout) : -1.,
846 e_once_cb,
847 newSVsv (cb)
848 );
491 849
492PROTOTYPES: DISABLE 850PROTOTYPES: DISABLE
493 851
494MODULE = EV PACKAGE = EV::Watcher PREFIX = ev_ 852MODULE = EV PACKAGE = EV::Watcher PREFIX = ev_
495 853
496int ev_is_active (struct ev_watcher *w) 854int ev_is_active (ev_watcher *w)
497 855
856int ev_is_pending (ev_watcher *w)
857
858void ev_invoke (ev_watcher *w, int revents = EV_NONE)
859 C_ARGS: e_loop (w), w, revents
860
861int ev_clear_pending (ev_watcher *w)
862 C_ARGS: e_loop (w), w
863
864void ev_feed_event (ev_watcher *w, int revents = EV_NONE)
865 C_ARGS: e_loop (w), w, revents
866
867int keepalive (ev_watcher *w, int new_value = 0)
868 CODE:
869{
870 RETVAL = w->e_flags & WFLAG_KEEPALIVE;
871 new_value = new_value ? WFLAG_KEEPALIVE : 0;
872
873 if (items > 1 && ((new_value ^ w->e_flags) & WFLAG_KEEPALIVE))
874 {
875 w->e_flags = (w->e_flags & ~WFLAG_KEEPALIVE) | new_value;
876 REF (w);
877 UNREF (w);
878 }
879}
880 OUTPUT:
881 RETVAL
882
498SV *cb (struct ev_watcher *w, SV *new_cb = 0) 883SV *cb (ev_watcher *w, SV *new_cb = 0)
499 CODE: 884 CODE:
500{ 885{
501 RETVAL = newSVsv (w->cb_sv);
502
503 if (items > 1) 886 if (items > 1)
504 sv_setsv (w->cb_sv, new_cb); 887 {
888 new_cb = s_get_cv_croak (new_cb);
889 RETVAL = newRV_noinc (w->cb_sv);
890 w->cb_sv = SvREFCNT_inc (new_cb);
891 }
892 else
893 RETVAL = newRV_inc (w->cb_sv);
505} 894}
506 OUTPUT: 895 OUTPUT:
507 RETVAL 896 RETVAL
508 897
509SV *data (struct ev_watcher *w, SV *new_data = 0) 898SV *data (ev_watcher *w, SV *new_data = 0)
510 CODE: 899 CODE:
511{ 900{
512 RETVAL = w->data ? newSVsv (w->data) : &PL_sv_undef; 901 RETVAL = w->data ? newSVsv (w->data) : &PL_sv_undef;
513}
514 OUTPUT:
515 RETVAL
516 902
517void trigger (struct ev_watcher *w, int revents = EV_NONE) 903 if (items > 1)
518 CODE: 904 {
519 w->cb (w, revents); 905 SvREFCNT_dec (w->data);
906 w->data = newSVsv (new_data);
907 }
908}
909 OUTPUT:
910 RETVAL
520 911
912SV *loop (ev_watcher *w)
913 CODE:
914 RETVAL = newRV_inc (w->loop);
915 OUTPUT:
916 RETVAL
917
521int priority (struct ev_watcher *w, int new_priority = 0) 918int priority (ev_watcher *w, int new_priority = 0)
522 CODE: 919 CODE:
523{ 920{
524 RETVAL = w->priority; 921 RETVAL = w->priority;
525 922
526 if (items > 1) 923 if (items > 1)
527 { 924 {
528 int active = ev_is_active (w); 925 int active = ev_is_active (w);
529
530 if (new_priority < EV_MINPRI || new_priority > EV_MAXPRI)
531 croak ("watcher priority out of range, value must be between %d and %d, inclusive", EV_MINPRI, EV_MAXPRI);
532 926
533 if (active) 927 if (active)
534 { 928 {
535 /* grrr. */ 929 /* grrr. */
536 PUSHMARK (SP); 930 PUSHMARK (SP);
537 XPUSHs (ST (0)); 931 XPUSHs (ST (0));
932 PUTBACK;
538 call_method ("stop", G_DISCARD | G_VOID); 933 call_method ("stop", G_DISCARD | G_VOID);
539 } 934 }
540 935
541 ev_set_priority (w, new_priority); 936 ev_set_priority (w, new_priority);
542 937
543 if (active) 938 if (active)
544 { 939 {
545 PUSHMARK (SP); 940 PUSHMARK (SP);
546 XPUSHs (ST (0)); 941 XPUSHs (ST (0));
942 PUTBACK;
547 call_method ("start", G_DISCARD | G_VOID); 943 call_method ("start", G_DISCARD | G_VOID);
548 } 944 }
549 } 945 }
550} 946}
551 OUTPUT: 947 OUTPUT:
552 RETVAL 948 RETVAL
553 949
554MODULE = EV PACKAGE = EV::Io PREFIX = ev_io_ 950MODULE = EV PACKAGE = EV::IO PREFIX = ev_io_
555 951
556void ev_io_start (struct ev_io *w) 952void ev_io_start (ev_io *w)
953 CODE:
954 START (io, w);
557 955
558void ev_io_stop (struct ev_io *w) 956void ev_io_stop (ev_io *w)
957 CODE:
958 STOP (io, w);
559 959
560void DESTROY (struct ev_io *w) 960void DESTROY (ev_io *w)
561 CODE: 961 CODE:
562 ev_io_stop (w); 962 STOP (io, w);
563 e_destroy (w); 963 e_destroy (w);
564 964
565void set (struct ev_io *w, SV *fh, int events) 965void set (ev_io *w, SV *fh, int events)
566 CODE: 966 CODE:
567{ 967{
568 int active = ev_is_active (w); 968 int fd = s_fileno (fh, events & EV_WRITE);
569 int fd = sv_fileno (fh);
570 CHECK_FD (fh, fd); 969 CHECK_FD (fh, fd);
571 970
572 if (active) ev_io_stop (w);
573
574 sv_setsv (w->fh, fh); 971 sv_setsv (e_fh (w), fh);
575 ev_io_set (w, fd, events); 972 RESET (io, w, (w, fd, events));
576
577 if (active) ev_io_start (w);
578} 973}
579 974
580SV *fh (struct ev_io *w, SV *new_fh = 0) 975SV *fh (ev_io *w, SV *new_fh = 0)
581 CODE: 976 CODE:
582{ 977{
583 RETVAL = newSVsv (w->fh);
584
585 if (items > 1) 978 if (items > 1)
586 { 979 {
587 int active = ev_is_active (w); 980 int fd = s_fileno (new_fh, w->events & EV_WRITE);
588 if (active) ev_io_stop (w); 981 CHECK_FD (new_fh, fd);
589 982
590 sv_setsv (w->fh, new_fh); 983 RETVAL = e_fh (w);
591 ev_io_set (w, sv_fileno (w->fh), w->events); 984 e_fh (w) = newSVsv (new_fh);
592 985
593 if (active) ev_io_start (w); 986 RESET (io, w, (w, fd, w->events));
594 } 987 }
988 else
989 RETVAL = newSVsv (e_fh (w));
595} 990}
596 OUTPUT: 991 OUTPUT:
597 RETVAL 992 RETVAL
598 993
599int events (struct ev_io *w, int new_events = EV_UNDEF) 994int events (ev_io *w, int new_events = EV_UNDEF)
600 CODE: 995 CODE:
601{ 996{
602 RETVAL = w->events; 997 RETVAL = w->events;
603 998
604 if (items > 1) 999 if (items > 1)
605 { 1000 {
606 int active = ev_is_active (w); 1001 int active = ev_is_active (w);
607 if (active) ev_io_stop (w); 1002 if (active) STOP (io, w);
608
609 ev_io_set (w, w->fd, new_events); 1003 ev_io_modify (w, new_events);
610 1004 if (active) START (io, w);
611 if (active) ev_io_start (w);
612 } 1005 }
613} 1006}
614 OUTPUT: 1007 OUTPUT:
615 RETVAL 1008 RETVAL
616 1009
617MODULE = EV PACKAGE = EV::Signal PREFIX = ev_signal_ 1010MODULE = EV PACKAGE = EV::Signal PREFIX = ev_signal_
618 1011
619void ev_signal_start (struct ev_signal *w) 1012void ev_signal_start (ev_signal *w)
1013 CODE:
1014 START_SIGNAL (w);
620 1015
621void ev_signal_stop (struct ev_signal *w) 1016void ev_signal_stop (ev_signal *w)
1017 CODE:
1018 STOP (signal, w);
622 1019
623void DESTROY (struct ev_signal *w) 1020void DESTROY (ev_signal *w)
624 CODE: 1021 CODE:
625 ev_signal_stop (w); 1022 STOP (signal, w);
626 e_destroy (w); 1023 e_destroy (w);
627 1024
628void set (struct ev_signal *w, SV *signal) 1025void set (ev_signal *w, SV *signal)
629 CODE: 1026 CODE:
630{ 1027{
631 Signal signum = sv_signum (signal); /* may croak here */ 1028 Signal signum = s_signum (signal);
632 int active = ev_is_active (w); 1029 CHECK_SIG (signal, signum);
633 1030
634 if (active) ev_signal_stop (w); 1031 RESET_SIGNAL (w, (w, signum));
635
636 ev_signal_set (w, signum);
637
638 if (active) ev_signal_start (w);
639} 1032}
640 1033
641int signal (struct ev_signal *w, SV *new_signal = 0) 1034int signal (ev_signal *w, SV *new_signal = 0)
642 CODE: 1035 CODE:
643{ 1036{
644 RETVAL = w->signum; 1037 RETVAL = w->signum;
645 1038
646 if (items > 1) 1039 if (items > 1)
647 { 1040 {
648 Signal signum = sv_signum (new_signal); /* may croak here */ 1041 Signal signum = s_signum (new_signal);
649 int active = ev_is_active (w); 1042 CHECK_SIG (new_signal, signum);
650 if (active) ev_signal_stop (w);
651 1043
652 ev_signal_set (w, signum); 1044 RESET_SIGNAL (w, (w, signum));
653
654 if (active) ev_signal_start (w);
655 } 1045 }
656} 1046}
657 OUTPUT: 1047 OUTPUT:
658 RETVAL 1048 RETVAL
659 1049
660MODULE = EV PACKAGE = EV::Timer PREFIX = ev_timer_ 1050MODULE = EV PACKAGE = EV::Timer PREFIX = ev_timer_
661 1051
662void ev_timer_start (struct ev_timer *w) 1052void ev_timer_start (ev_timer *w)
663 INIT: 1053 INIT:
664 CHECK_REPEAT (w->repeat); 1054 CHECK_REPEAT (w->repeat);
1055 CODE:
1056 START (timer, w);
665 1057
666void ev_timer_stop (struct ev_timer *w) 1058void ev_timer_stop (ev_timer *w)
1059 CODE:
1060 STOP (timer, w);
667 1061
668void ev_timer_again (struct ev_timer *w) 1062void ev_timer_again (ev_timer *w, NV repeat = NO_INIT)
669 INIT: 1063 CODE:
1064 if (items > 1)
1065 w->repeat = repeat;
670 CHECK_REPEAT (w->repeat); 1066 CHECK_REPEAT (w->repeat);
1067 ev_timer_again (e_loop (w), w);
1068 UNREF (w);
671 1069
1070NV ev_timer_remaining (ev_timer *w)
1071 C_ARGS: e_loop (w), w
1072
672void DESTROY (struct ev_timer *w) 1073void DESTROY (ev_timer *w)
673 CODE: 1074 CODE:
674 ev_timer_stop (w); 1075 STOP (timer, w);
675 e_destroy (w); 1076 e_destroy (w);
676 1077
677void set (struct ev_timer *w, NV after, NV repeat = 0.) 1078void set (ev_timer *w, NV after, NV repeat = 0.)
678 INIT: 1079 INIT:
679 CHECK_REPEAT (repeat); 1080 CHECK_REPEAT (repeat);
680 CODE: 1081 CODE:
681{
682 int active = ev_is_active (w);
683 if (active) ev_timer_stop (w);
684 ev_timer_set (w, after, repeat); 1082 RESET (timer, w, (w, after, repeat));
685 if (active) ev_timer_start (w);
686}
687 1083
688MODULE = EV PACKAGE = EV::Periodic PREFIX = ev_periodic_ 1084MODULE = EV PACKAGE = EV::Periodic PREFIX = ev_periodic_
689 1085
690void ev_periodic_start (struct ev_periodic *w) 1086void ev_periodic_start (ev_periodic *w)
691 INIT: 1087 INIT:
692 CHECK_REPEAT (w->interval); 1088 CHECK_REPEAT (w->interval);
1089 CODE:
1090 START (periodic, w);
693 1091
694void ev_periodic_stop (struct ev_periodic *w) 1092void ev_periodic_stop (ev_periodic *w)
1093 CODE:
1094 STOP (periodic, w);
695 1095
696void ev_periodic_again (struct ev_periodic *w) 1096void ev_periodic_again (ev_periodic *w)
1097 CODE:
1098 ev_periodic_again (e_loop (w), w);
1099 UNREF (w);
697 1100
698void DESTROY (struct ev_periodic *w) 1101void DESTROY (ev_periodic *w)
699 CODE: 1102 CODE:
700 ev_periodic_stop (w); 1103 STOP (periodic, w);
701 e_destroy (w); 1104 e_destroy (w);
702 1105
703void set (struct ev_periodic *w, NV at, NV interval = 0., SV *reschedule_cb = &PL_sv_undef) 1106void set (ev_periodic *w, NV at, NV interval = 0., SV *reschedule_cb = &PL_sv_undef)
704 INIT: 1107 INIT:
705 CHECK_REPEAT (interval); 1108 CHECK_REPEAT (interval);
706 CODE: 1109 CODE:
707{ 1110{
708 int active = ev_is_active (w);
709 if (active) ev_periodic_stop (w);
710
711 SvREFCNT_dec (w->fh); 1111 SvREFCNT_dec (e_fh (w));
712 w->fh = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0; 1112 e_fh (w) = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
1113
713 ev_periodic_set (w, at, interval, w->fh ? e_periodic_cb : 0); 1114 RESET (periodic, w, (w, at, interval, e_fh (w) ? e_periodic_cb : 0));
714
715 if (active) ev_periodic_start (w);
716} 1115}
1116
1117NV at (ev_periodic *w)
1118 CODE:
1119 RETVAL = ev_periodic_at (w);
1120 OUTPUT:
1121 RETVAL
717 1122
718MODULE = EV PACKAGE = EV::Idle PREFIX = ev_idle_ 1123MODULE = EV PACKAGE = EV::Idle PREFIX = ev_idle_
719 1124
720void ev_idle_start (struct ev_idle *w) 1125void ev_idle_start (ev_idle *w)
1126 CODE:
1127 START (idle, w);
721 1128
722void ev_idle_stop (struct ev_idle *w) 1129void ev_idle_stop (ev_idle *w)
1130 CODE:
1131 STOP (idle, w);
723 1132
724void DESTROY (struct ev_idle *w) 1133void DESTROY (ev_idle *w)
725 CODE: 1134 CODE:
726 ev_idle_stop (w); 1135 STOP (idle, w);
727 e_destroy (w); 1136 e_destroy (w);
728 1137
729MODULE = EV PACKAGE = EV::Prepare PREFIX = ev_check_ 1138MODULE = EV PACKAGE = EV::Prepare PREFIX = ev_prepare_
730 1139
731void ev_prepare_start (struct ev_prepare *w) 1140void ev_prepare_start (ev_prepare *w)
1141 CODE:
1142 START (prepare, w);
732 1143
733void ev_prepare_stop (struct ev_prepare *w) 1144void ev_prepare_stop (ev_prepare *w)
1145 CODE:
1146 STOP (prepare, w);
734 1147
735void DESTROY (struct ev_prepare *w) 1148void DESTROY (ev_prepare *w)
736 CODE: 1149 CODE:
737 ev_prepare_stop (w); 1150 STOP (prepare, w);
738 e_destroy (w); 1151 e_destroy (w);
739 1152
740MODULE = EV PACKAGE = EV::Check PREFIX = ev_check_ 1153MODULE = EV PACKAGE = EV::Check PREFIX = ev_check_
741 1154
742void ev_check_start (struct ev_check *w) 1155void ev_check_start (ev_check *w)
1156 CODE:
1157 START (check, w);
743 1158
744void ev_check_stop (struct ev_check *w) 1159void ev_check_stop (ev_check *w)
1160 CODE:
1161 STOP (check, w);
745 1162
746void DESTROY (struct ev_check *w) 1163void DESTROY (ev_check *w)
747 CODE: 1164 CODE:
748 ev_check_stop (w); 1165 STOP (check, w);
749 e_destroy (w); 1166 e_destroy (w);
750 1167
1168MODULE = EV PACKAGE = EV::Fork PREFIX = ev_fork_
1169
1170void ev_fork_start (ev_fork *w)
1171 CODE:
1172 START (fork, w);
1173
1174void ev_fork_stop (ev_fork *w)
1175 CODE:
1176 STOP (fork, w);
1177
1178void DESTROY (ev_fork *w)
1179 CODE:
1180 STOP (fork, w);
1181 e_destroy (w);
1182
1183#if CLEANUP_ENABLED
1184
1185MODULE = EV PACKAGE = EV::Cleanup PREFIX = ev_cleanup_
1186
1187void ev_cleanup_start (ev_cleanup *w)
1188 CODE:
1189 START (cleanup, w);
1190
1191void ev_cleanup_stop (ev_cleanup *w)
1192 CODE:
1193 STOP (cleanup, w);
1194
1195void DESTROY (ev_cleanup *w)
1196 CODE:
1197 STOP (cleanup, w);
1198 SvREFCNT_inc (w->loop); /* has been dec'ed on creation */
1199 e_destroy (w);
1200
1201int keepalive (ev_watcher *w, SV *new_value = 0)
1202 CODE:
1203 RETVAL = 1;
1204 OUTPUT:
1205 RETVAL
1206
1207#endif
1208
751MODULE = EV PACKAGE = EV::Child PREFIX = ev_child_ 1209MODULE = EV PACKAGE = EV::Child PREFIX = ev_child_
752 1210
1211#if EV_CHILD_ENABLE
1212
753void ev_child_start (struct ev_child *w) 1213void ev_child_start (ev_child *w)
1214 CODE:
1215 START (child, w);
754 1216
755void ev_child_stop (struct ev_child *w) 1217void ev_child_stop (ev_child *w)
1218 CODE:
1219 STOP (child, w);
756 1220
757void DESTROY (struct ev_child *w) 1221void DESTROY (ev_child *w)
758 CODE: 1222 CODE:
759 ev_child_stop (w); 1223 STOP (child, w);
760 e_destroy (w); 1224 e_destroy (w);
761 1225
762void set (struct ev_child *w, int pid) 1226void set (ev_child *w, int pid, int trace)
763 CODE: 1227 CODE:
764{ 1228 RESET (child, w, (w, pid, trace));
765 int active = ev_is_active (w);
766 if (active) ev_child_stop (w);
767 1229
768 ev_child_set (w, pid); 1230int pid (ev_child *w)
769 1231 ALIAS:
770 if (active) ev_child_start (w); 1232 rpid = 1
771} 1233 rstatus = 2
772
773int pid (struct ev_child *w, int new_pid = 0)
774 CODE: 1234 CODE:
775{
776 RETVAL = w->pid; 1235 RETVAL = ix == 0 ? w->pid
1236 : ix == 1 ? w->rpid
1237 : w->rstatus;
1238 OUTPUT:
1239 RETVAL
1240
1241#endif
1242
1243MODULE = EV PACKAGE = EV::Stat PREFIX = ev_stat_
1244
1245void ev_stat_start (ev_stat *w)
1246 CODE:
1247 START (stat, w);
1248
1249void ev_stat_stop (ev_stat *w)
1250 CODE:
1251 STOP (stat, w);
1252
1253void DESTROY (ev_stat *w)
1254 CODE:
1255 STOP (stat, w);
1256 e_destroy (w);
1257
1258void set (ev_stat *w, SV *path, NV interval)
1259 CODE:
1260{
1261 sv_setsv (e_fh (w), path);
1262 RESET (stat, w, (w, SvPVbyte_nolen (e_fh (w)), interval));
1263}
1264
1265SV *path (ev_stat *w, SV *new_path = 0)
1266 CODE:
1267{
1268 RETVAL = SvREFCNT_inc (e_fh (w));
777 1269
778 if (items > 1) 1270 if (items > 1)
779 { 1271 {
780 int active = ev_is_active (w); 1272 SvREFCNT_dec (e_fh (w));
781 if (active) ev_child_stop (w); 1273 e_fh (w) = newSVsv (new_path);
782 1274 RESET (stat, w, (w, SvPVbyte_nolen (e_fh (w)), w->interval));
783 ev_child_set (w, new_pid);
784
785 if (active) ev_child_start (w);
786 } 1275 }
787} 1276}
788 OUTPUT: 1277 OUTPUT:
789 RETVAL 1278 RETVAL
790 1279
1280NV interval (ev_stat *w, NV new_interval = 0.)
1281 CODE:
1282{
1283 RETVAL = w->interval;
791 1284
792int rstatus (struct ev_child *w) 1285 if (items > 1)
1286 RESET (stat, w, (w, SvPVbyte_nolen (e_fh (w)), new_interval));
1287}
1288 OUTPUT:
1289 RETVAL
1290
1291void prev (ev_stat *w)
793 ALIAS: 1292 ALIAS:
794 rpid = 1 1293 stat = 1
1294 attr = 2
795 CODE: 1295 PPCODE:
796 RETVAL = ix ? w->rpid : w->rstatus; 1296{
797 OUTPUT: 1297 ev_statdata *s = ix ? &w->attr : &w->prev;
798 RETVAL
799 1298
800#ifndef WIN32 1299 if (ix == 1)
1300 ev_stat_stat (e_loop (w), w);
1301 else if (!s->st_nlink)
1302 errno = ENOENT;
801 1303
1304 PL_statcache.st_dev = s->st_nlink;
1305 PL_statcache.st_ino = s->st_ino;
1306 PL_statcache.st_mode = s->st_mode;
1307 PL_statcache.st_nlink = s->st_nlink;
1308 PL_statcache.st_uid = s->st_uid;
1309 PL_statcache.st_gid = s->st_gid;
1310 PL_statcache.st_rdev = s->st_rdev;
1311 PL_statcache.st_size = s->st_size;
1312 PL_statcache.st_atime = s->st_atime;
1313 PL_statcache.st_mtime = s->st_mtime;
1314 PL_statcache.st_ctime = s->st_ctime;
1315
1316 if (GIMME_V == G_SCALAR)
1317 XPUSHs (boolSV (s->st_nlink));
1318 else if (GIMME_V == G_ARRAY && s->st_nlink)
1319 {
1320 EXTEND (SP, 13);
1321 PUSHs (sv_2mortal (newSViv (s->st_dev)));
1322 PUSHs (sv_2mortal (newSViv (s->st_ino)));
1323 PUSHs (sv_2mortal (newSVuv (s->st_mode)));
1324 PUSHs (sv_2mortal (newSVuv (s->st_nlink)));
1325 PUSHs (sv_2mortal (newSViv (s->st_uid)));
1326 PUSHs (sv_2mortal (newSViv (s->st_gid)));
1327 PUSHs (sv_2mortal (newSViv (s->st_rdev)));
1328 PUSHs (sv_2mortal (newSVnv ((NV)s->st_size)));
1329 PUSHs (sv_2mortal (newSVnv (s->st_atime)));
1330 PUSHs (sv_2mortal (newSVnv (s->st_mtime)));
1331 PUSHs (sv_2mortal (newSVnv (s->st_ctime)));
1332 PUSHs (sv_2mortal (newSVuv (4096)));
1333 PUSHs (sv_2mortal (newSVnv ((NV)((s->st_size + 4095) / 4096))));
1334 }
1335}
1336
802MODULE = EV PACKAGE = EV::DNS PREFIX = evdns_ 1337MODULE = EV PACKAGE = EV::Embed PREFIX = ev_embed_
803 1338
804BOOT: 1339void ev_embed_start (ev_embed *w)
805{ 1340 CODE:
806 HV *stash = gv_stashpv ("EV::DNS", 1); 1341 START (embed, w);
807 1342
808 static const struct { 1343void ev_embed_stop (ev_embed *w)
809 const char *name; 1344 CODE:
810 IV iv; 1345 STOP (embed, w);
811 } *civ, const_iv[] = {
812# define const_iv(pfx, name) { # name, (IV) pfx ## name },
813 const_iv (DNS_, ERR_NONE)
814 const_iv (DNS_, ERR_FORMAT)
815 const_iv (DNS_, ERR_SERVERFAILED)
816 const_iv (DNS_, ERR_NOTEXIST)
817 const_iv (DNS_, ERR_NOTIMPL)
818 const_iv (DNS_, ERR_REFUSED)
819 const_iv (DNS_, ERR_TRUNCATED)
820 const_iv (DNS_, ERR_UNKNOWN)
821 const_iv (DNS_, ERR_TIMEOUT)
822 const_iv (DNS_, ERR_SHUTDOWN)
823 const_iv (DNS_, IPv4_A)
824 const_iv (DNS_, PTR)
825 const_iv (DNS_, IPv6_AAAA)
826 const_iv (DNS_, QUERY_NO_SEARCH)
827 const_iv (DNS_, OPTION_SEARCH)
828 const_iv (DNS_, OPTION_NAMESERVERS)
829 const_iv (DNS_, OPTION_MISC)
830 const_iv (DNS_, OPTIONS_ALL)
831 const_iv (DNS_, NO_SEARCH)
832 };
833 1346
834 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; ) 1347void DESTROY (ev_embed *w)
835 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv)); 1348 CODE:
836} 1349 STOP (embed, w);
1350 e_destroy (w);
837 1351
838int evdns_init () 1352void set (ev_embed *w, struct ev_loop *loop)
1353 CODE:
1354{
1355 sv_setsv (e_fh (w), ST (1));
1356 RESET (embed, w, (w, loop));
1357}
839 1358
840void evdns_shutdown (int fail_requests = 1) 1359SV *other (ev_embed *w)
1360 CODE:
1361 RETVAL = newSVsv (e_fh (w));
1362 OUTPUT:
1363 RETVAL
841 1364
842const char *evdns_err_to_string (int err) 1365void ev_embed_sweep (ev_embed *w)
1366 C_ARGS: e_loop (w), w
843 1367
844int evdns_nameserver_add (U32 address) 1368MODULE = EV PACKAGE = EV::Async PREFIX = ev_async_
845 1369
846int evdns_count_nameservers () 1370void ev_async_start (ev_async *w)
1371 CODE:
1372 START (async, w);
847 1373
848int evdns_clear_nameservers_and_suspend () 1374void ev_async_stop (ev_async *w)
1375 CODE:
1376 STOP (async, w);
849 1377
850int evdns_resume () 1378void DESTROY (ev_async *w)
1379 CODE:
1380 STOP (async, w);
1381 e_destroy (w);
851 1382
852int evdns_nameserver_ip_add (char *ip_as_string) 1383void ev_async_send (ev_async *w)
1384 C_ARGS: e_loop (w), w
853 1385
854int evdns_resolve_ipv4 (const char *name, int flags, SV *cb) 1386SV *ev_async_async_pending (ev_async *w)
855 C_ARGS: name, flags, dns_cb, (void *)SvREFCNT_inc (cb)
856
857int evdns_resolve_ipv6 (const char *name, int flags, SV *cb)
858 C_ARGS: name, flags, dns_cb, (void *)SvREFCNT_inc (cb)
859
860int evdns_resolve_reverse (SV *addr, int flags, SV *cb)
861 ALIAS:
862 evdns_resolve_reverse_ipv6 = 1
863 CODE: 1387 CODE:
864{ 1388 RETVAL = boolSV (ev_async_pending (w));
865 STRLEN len; 1389 OUTPUT:
866 char *data = SvPVbyte (addr, len);
867 if (len != (ix ? 16 : 4))
868 croak ("ipv4/ipv6 address to be resolved must be given as 4/16 byte octet string");
869
870 RETVAL = ix 1390 RETVAL
871 ? evdns_resolve_reverse_ipv6 ((struct in6_addr *)data, flags, dns_cb, (void *)SvREFCNT_inc (cb))
872 : evdns_resolve_reverse ((struct in_addr *)data, flags, dns_cb, (void *)SvREFCNT_inc (cb));
873}
874 OUTPUT:
875 RETVAL
876 1391
877int evdns_set_option (char *option, char *val, int flags) 1392#ifndef EV_NO_LOOPS
878 1393
879int evdns_resolv_conf_parse (int flags, const char *filename) 1394MODULE = EV PACKAGE = EV::Loop PREFIX = ev_
880 1395
881#ifdef MS_WINDOWS 1396SV *new (SV *klass, unsigned int flags = 0)
1397 CODE:
1398{
1399 struct ev_loop *loop = ev_loop_new (flags);
882 1400
883int evdns_config_windows_nameservers () 1401 if (!loop)
1402 XSRETURN_UNDEF;
884 1403
885#endif 1404 RETVAL = sv_bless (newRV_noinc (newSViv (PTR2IV (loop))), stash_loop);
1405}
1406 OUTPUT:
1407 RETVAL
886 1408
887void evdns_search_clear () 1409void DESTROY (struct ev_loop *loop)
1410 CODE:
1411 /* 1. the default loop shouldn't be freed by destroying it's perl loop object */
1412 /* 2. not doing so helps avoid many global destruction bugs in perl, too */
1413 if (loop != evapi.default_loop)
1414 ev_loop_destroy (loop);
888 1415
889void evdns_search_add (char *domain) 1416void ev_loop_fork (struct ev_loop *loop)
890 1417
891void evdns_search_ndots_set (int ndots) 1418NV ev_now (struct ev_loop *loop)
1419
1420void ev_now_update (struct ev_loop *loop)
1421
1422void ev_suspend (struct ev_loop *loop)
1423
1424void ev_resume (struct ev_loop *loop)
1425
1426void ev_set_io_collect_interval (struct ev_loop *loop, NV interval)
1427
1428void ev_set_timeout_collect_interval (struct ev_loop *loop, NV interval)
1429
1430unsigned int ev_backend (struct ev_loop *loop)
1431
1432void ev_verify (struct ev_loop *loop)
1433 ALIAS:
1434 loop_verify = 1
1435
1436unsigned int ev_iteration (struct ev_loop *loop)
1437 ALIAS:
1438 loop_count = 1
1439
1440unsigned int ev_depth (struct ev_loop *loop)
1441 ALIAS:
1442 loop_depth = 1
1443
1444int ev_run (struct ev_loop *loop, int flags = 0)
1445 ALIAS:
1446 loop = 1
1447
1448void ev_break (struct ev_loop *loop, int how = 1)
1449 ALIAS:
1450 unloop = 1
1451
1452void ev_feed_fd_event (struct ev_loop *loop, int fd, int revents = EV_NONE)
1453
1454unsigned int ev_pending_count (struct ev_loop *loop)
1455
1456void ev_invoke_pending (struct ev_loop *loop)
892 1457
893#if 0 1458#if 0
894 1459
895MODULE = EV PACKAGE = EV::HTTP PREFIX = evhttp_ 1460void ev_feed_signal_event (struct ev_loop *loop, SV *signal)
896 1461 CODE:
897BOOT:
898{ 1462{
899 HV *stash = gv_stashpv ("EV::HTTP", 1); 1463 Signal signum = s_signum (signal);
1464 CHECK_SIG (signal, signum);
900 1465
901 static const struct { 1466 ev_feed_signal_event (loop, signum);
902 const char *name;
903 IV iv;
904 } *civ, const_iv[] = {
905# define const_iv(pfx, name) { # name, (IV) pfx ## name },
906 const_iv (HTTP_, OK)
907 const_iv (HTTP_, NOCONTENT)
908 const_iv (HTTP_, MOVEPERM)
909 const_iv (HTTP_, MOVETEMP)
910 const_iv (HTTP_, NOTMODIFIED)
911 const_iv (HTTP_, BADREQUEST)
912 const_iv (HTTP_, NOTFOUND)
913 const_iv (HTTP_, SERVUNAVAIL)
914 const_iv (EVHTTP_, REQ_OWN_CONNECTION)
915 const_iv (EVHTTP_, PROXY_REQUEST)
916 const_iv (EVHTTP_, REQ_GET)
917 const_iv (EVHTTP_, REQ_POST)
918 const_iv (EVHTTP_, REQ_HEAD)
919 const_iv (EVHTTP_, REQUEST)
920 const_iv (EVHTTP_, RESPONSE)
921 };
922
923 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; )
924 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv));
925} 1467}
926 1468
927MODULE = EV PACKAGE = EV::HTTP::Request PREFIX = evhttp_request_
928
929#HttpRequest new (SV *klass, SV *cb)
930
931#void DESTROY (struct evhttp_request *req);
932
933#endif 1469#endif
934 1470
935#endif 1471ev_io *io (struct ev_loop *loop, SV *fh, int events, SV *cb)
1472 ALIAS:
1473 io_ns = 1
1474 CODE:
1475{
1476 int fd = s_fileno (fh, events & EV_WRITE);
1477 CHECK_FD (fh, fd);
936 1478
1479 RETVAL = e_new (sizeof (ev_io), cb, ST (0));
1480 e_fh (RETVAL) = newSVsv (fh);
1481 ev_io_set (RETVAL, fd, events);
1482 if (!ix) START (io, RETVAL);
1483}
1484 OUTPUT:
1485 RETVAL
937 1486
1487ev_timer *timer (struct ev_loop *loop, NV after, NV repeat, SV *cb)
1488 ALIAS:
1489 timer_ns = 1
1490 INIT:
1491 CHECK_REPEAT (repeat);
1492 CODE:
1493 RETVAL = e_new (sizeof (ev_timer), cb, ST (0));
1494 ev_timer_set (RETVAL, after, repeat);
1495 if (!ix) START (timer, RETVAL);
1496 OUTPUT:
1497 RETVAL
938 1498
1499SV *periodic (struct ev_loop *loop, NV at, NV interval, SV *reschedule_cb, SV *cb)
1500 ALIAS:
1501 periodic_ns = 1
1502 INIT:
1503 CHECK_REPEAT (interval);
1504 CODE:
1505{
1506 ev_periodic *w;
1507 w = e_new (sizeof (ev_periodic), cb, ST (0));
1508 e_fh (w) = SvTRUE (reschedule_cb) ? newSVsv (reschedule_cb) : 0;
1509 ev_periodic_set (w, at, interval, e_fh (w) ? e_periodic_cb : 0);
1510 RETVAL = e_bless ((ev_watcher *)w, stash_periodic);
1511 if (!ix) START (periodic, w);
1512}
1513 OUTPUT:
1514 RETVAL
939 1515
1516ev_signal *signal (struct ev_loop *loop, SV *signal, SV *cb)
1517 ALIAS:
1518 signal_ns = 1
1519 CODE:
1520{
1521 Signal signum = s_signum (signal);
1522 CHECK_SIG (signal, signum);
940 1523
1524 RETVAL = e_new (sizeof (ev_signal), cb, ST (0));
1525 ev_signal_set (RETVAL, signum);
1526 if (!ix) START_SIGNAL (RETVAL);
1527}
1528 OUTPUT:
1529 RETVAL
941 1530
1531ev_idle *idle (struct ev_loop *loop, SV *cb)
1532 ALIAS:
1533 idle_ns = 1
1534 CODE:
1535 RETVAL = e_new (sizeof (ev_idle), cb, ST (0));
1536 ev_idle_set (RETVAL);
1537 if (!ix) START (idle, RETVAL);
1538 OUTPUT:
1539 RETVAL
942 1540
1541ev_prepare *prepare (struct ev_loop *loop, SV *cb)
1542 ALIAS:
1543 prepare_ns = 1
1544 CODE:
1545 RETVAL = e_new (sizeof (ev_prepare), cb, ST (0));
1546 ev_prepare_set (RETVAL);
1547 if (!ix) START (prepare, RETVAL);
1548 OUTPUT:
1549 RETVAL
1550
1551ev_check *check (struct ev_loop *loop, SV *cb)
1552 ALIAS:
1553 check_ns = 1
1554 CODE:
1555 RETVAL = e_new (sizeof (ev_check), cb, ST (0));
1556 ev_check_set (RETVAL);
1557 if (!ix) START (check, RETVAL);
1558 OUTPUT:
1559 RETVAL
1560
1561ev_fork *fork (struct ev_loop *loop, SV *cb)
1562 ALIAS:
1563 fork_ns = 1
1564 CODE:
1565 RETVAL = e_new (sizeof (ev_fork), cb, ST (0));
1566 ev_fork_set (RETVAL);
1567 if (!ix) START (fork, RETVAL);
1568 OUTPUT:
1569 RETVAL
1570
1571#if CLEANUP_ENABLED
1572
1573ev_cleanup *cleanup (struct ev_loop *loop, SV *cb)
1574 ALIAS:
1575 cleanup_ns = 1
1576 CODE:
1577 RETVAL = e_new (sizeof (ev_cleanup), cb, ST (0));
1578 SvREFCNT_dec (RETVAL->loop); /* must not keep loop object alive */
1579 ev_cleanup_set (RETVAL);
1580 if (!ix) START (cleanup, RETVAL);
1581 OUTPUT:
1582 RETVAL
1583
1584#endif
1585
1586ev_child *child (struct ev_loop *loop, int pid, int trace, SV *cb)
1587 ALIAS:
1588 child_ns = 1
1589 CODE:
1590#if EV_CHILD_ENABLE
1591 RETVAL = e_new (sizeof (ev_child), cb, ST (0));
1592 ev_child_set (RETVAL, pid, trace);
1593 if (!ix) START (child, RETVAL);
1594#else
1595 croak ("EV::child watchers not supported on this platform");
1596#endif
1597 OUTPUT:
1598 RETVAL
1599
1600ev_stat *stat (struct ev_loop *loop, SV *path, NV interval, SV *cb)
1601 ALIAS:
1602 stat_ns = 1
1603 CODE:
1604 RETVAL = e_new (sizeof (ev_stat), cb, ST (0));
1605 e_fh (RETVAL) = newSVsv (path);
1606 ev_stat_set (RETVAL, SvPVbyte_nolen (e_fh (RETVAL)), interval);
1607 if (!ix) START (stat, RETVAL);
1608 OUTPUT:
1609 RETVAL
1610
1611ev_embed *embed (struct ev_loop *loop, struct ev_loop *other, SV *cb = 0)
1612 ALIAS:
1613 embed_ns = 1
1614 CODE:
1615{
1616 if (!(ev_backend (other) & ev_embeddable_backends ()))
1617 croak ("passed loop is not embeddable via EV::embed,");
1618
1619 RETVAL = e_new (sizeof (ev_embed), cb, ST (0));
1620 e_fh (RETVAL) = newSVsv (ST (1));
1621 ev_embed_set (RETVAL, other);
1622 if (!ix) START (embed, RETVAL);
1623}
1624 OUTPUT:
1625 RETVAL
1626
1627ev_async *async (struct ev_loop *loop, SV *cb)
1628 ALIAS:
1629 async_ns = 1
1630 CODE:
1631 RETVAL = e_new (sizeof (ev_async), cb, ST (0));
1632 ev_async_set (RETVAL);
1633 if (!ix) START (async, RETVAL);
1634 OUTPUT:
1635 RETVAL
1636
1637void once (struct ev_loop *loop, SV *fh, int events, SV *timeout, SV *cb)
1638 CODE:
1639 ev_once (
1640 loop,
1641 s_fileno (fh, events & EV_WRITE), events,
1642 SvOK (timeout) ? SvNV (timeout) : -1.,
1643 e_once_cb,
1644 newSVsv (cb)
1645 );
1646
1647#endif
1648

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