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Comparing libev/ev.c (file contents):
Revision 1.336 by root, Wed Mar 10 08:19:38 2010 UTC vs.
Revision 1.368 by root, Mon Jan 17 12:11:11 2011 UTC

1/* 1/*
2 * libev event processing core, watcher management 2 * libev event processing core, watcher management
3 * 3 *
4 * Copyright (c) 2007,2008,2009,2010 Marc Alexander Lehmann <libev@schmorp.de> 4 * Copyright (c) 2007,2008,2009,2010,2011 Marc Alexander Lehmann <libev@schmorp.de>
5 * All rights reserved. 5 * All rights reserved.
6 * 6 *
7 * Redistribution and use in source and binary forms, with or without modifica- 7 * Redistribution and use in source and binary forms, with or without modifica-
8 * tion, are permitted provided that the following conditions are met: 8 * tion, are permitted provided that the following conditions are met:
9 * 9 *
35 * and other provisions required by the GPL. If you do not delete the 35 * and other provisions required by the GPL. If you do not delete the
36 * provisions above, a recipient may use your version of this file under 36 * provisions above, a recipient may use your version of this file under
37 * either the BSD or the GPL. 37 * either the BSD or the GPL.
38 */ 38 */
39 39
40#ifdef __cplusplus
41extern "C" {
42#endif
43
44/* this big block deduces configuration from config.h */ 40/* this big block deduces configuration from config.h */
45#ifndef EV_STANDALONE 41#ifndef EV_STANDALONE
46# ifdef EV_CONFIG_H 42# ifdef EV_CONFIG_H
47# include EV_CONFIG_H 43# include EV_CONFIG_H
48# else 44# else
77# ifndef EV_USE_REALTIME 73# ifndef EV_USE_REALTIME
78# define EV_USE_REALTIME 0 74# define EV_USE_REALTIME 0
79# endif 75# endif
80# endif 76# endif
81 77
78# if HAVE_NANOSLEEP
82# ifndef EV_USE_NANOSLEEP 79# ifndef EV_USE_NANOSLEEP
83# if HAVE_NANOSLEEP
84# define EV_USE_NANOSLEEP 1 80# define EV_USE_NANOSLEEP EV_FEATURE_OS
81# endif
85# else 82# else
83# undef EV_USE_NANOSLEEP
86# define EV_USE_NANOSLEEP 0 84# define EV_USE_NANOSLEEP 0
85# endif
86
87# if HAVE_SELECT && HAVE_SYS_SELECT_H
88# ifndef EV_USE_SELECT
89# define EV_USE_SELECT EV_FEATURE_BACKENDS
87# endif 90# endif
91# else
92# undef EV_USE_SELECT
93# define EV_USE_SELECT 0
88# endif 94# endif
89 95
96# if HAVE_POLL && HAVE_POLL_H
90# ifndef EV_USE_SELECT 97# ifndef EV_USE_POLL
91# if HAVE_SELECT && HAVE_SYS_SELECT_H 98# define EV_USE_POLL EV_FEATURE_BACKENDS
92# define EV_USE_SELECT 1
93# else
94# define EV_USE_SELECT 0
95# endif 99# endif
96# endif
97
98# ifndef EV_USE_POLL
99# if HAVE_POLL && HAVE_POLL_H
100# define EV_USE_POLL 1
101# else 100# else
101# undef EV_USE_POLL
102# define EV_USE_POLL 0 102# define EV_USE_POLL 0
103# endif
104# endif 103# endif
105 104
106# ifndef EV_USE_EPOLL
107# if HAVE_EPOLL_CTL && HAVE_SYS_EPOLL_H 105# if HAVE_EPOLL_CTL && HAVE_SYS_EPOLL_H
108# define EV_USE_EPOLL 1 106# ifndef EV_USE_EPOLL
109# else 107# define EV_USE_EPOLL EV_FEATURE_BACKENDS
110# define EV_USE_EPOLL 0
111# endif 108# endif
109# else
110# undef EV_USE_EPOLL
111# define EV_USE_EPOLL 0
112# endif 112# endif
113 113
114# ifndef EV_USE_KQUEUE
115# if HAVE_KQUEUE && HAVE_SYS_EVENT_H 114# if HAVE_KQUEUE && HAVE_SYS_EVENT_H
116# define EV_USE_KQUEUE 1 115# ifndef EV_USE_KQUEUE
117# else 116# define EV_USE_KQUEUE EV_FEATURE_BACKENDS
118# define EV_USE_KQUEUE 0
119# endif 117# endif
118# else
119# undef EV_USE_KQUEUE
120# define EV_USE_KQUEUE 0
120# endif 121# endif
121 122
122# ifndef EV_USE_PORT
123# if HAVE_PORT_H && HAVE_PORT_CREATE 123# if HAVE_PORT_H && HAVE_PORT_CREATE
124# define EV_USE_PORT 1 124# ifndef EV_USE_PORT
125# else 125# define EV_USE_PORT EV_FEATURE_BACKENDS
126# define EV_USE_PORT 0
127# endif 126# endif
127# else
128# undef EV_USE_PORT
129# define EV_USE_PORT 0
128# endif 130# endif
129 131
130# ifndef EV_USE_INOTIFY
131# if HAVE_INOTIFY_INIT && HAVE_SYS_INOTIFY_H 132# if HAVE_INOTIFY_INIT && HAVE_SYS_INOTIFY_H
132# define EV_USE_INOTIFY 1 133# ifndef EV_USE_INOTIFY
133# else
134# define EV_USE_INOTIFY 0 134# define EV_USE_INOTIFY EV_FEATURE_OS
135# endif 135# endif
136# else
137# undef EV_USE_INOTIFY
138# define EV_USE_INOTIFY 0
136# endif 139# endif
137 140
138# ifndef EV_USE_SIGNALFD
139# if HAVE_SIGNALFD && HAVE_SYS_SIGNALFD_H 141# if HAVE_SIGNALFD && HAVE_SYS_SIGNALFD_H
140# define EV_USE_SIGNALFD 1 142# ifndef EV_USE_SIGNALFD
141# else
142# define EV_USE_SIGNALFD 0 143# define EV_USE_SIGNALFD EV_FEATURE_OS
143# endif 144# endif
145# else
146# undef EV_USE_SIGNALFD
147# define EV_USE_SIGNALFD 0
144# endif 148# endif
145 149
150# if HAVE_EVENTFD
146# ifndef EV_USE_EVENTFD 151# ifndef EV_USE_EVENTFD
147# if HAVE_EVENTFD
148# define EV_USE_EVENTFD 1 152# define EV_USE_EVENTFD EV_FEATURE_OS
149# else
150# define EV_USE_EVENTFD 0
151# endif 153# endif
154# else
155# undef EV_USE_EVENTFD
156# define EV_USE_EVENTFD 0
152# endif 157# endif
153 158
154#endif 159#endif
155 160
156#include <math.h> 161#include <math.h>
172#ifdef EV_H 177#ifdef EV_H
173# include EV_H 178# include EV_H
174#else 179#else
175# include "ev.h" 180# include "ev.h"
176#endif 181#endif
182
183EV_CPP(extern "C" {)
177 184
178#ifndef _WIN32 185#ifndef _WIN32
179# include <sys/time.h> 186# include <sys/time.h>
180# include <sys/wait.h> 187# include <sys/wait.h>
181# include <unistd.h> 188# include <unistd.h>
186# ifndef EV_SELECT_IS_WINSOCKET 193# ifndef EV_SELECT_IS_WINSOCKET
187# define EV_SELECT_IS_WINSOCKET 1 194# define EV_SELECT_IS_WINSOCKET 1
188# endif 195# endif
189# undef EV_AVOID_STDIO 196# undef EV_AVOID_STDIO
190#endif 197#endif
198
199/* OS X, in its infinite idiocy, actually HARDCODES
200 * a limit of 1024 into their select. Where people have brains,
201 * OS X engineers apparently have a vacuum. Or maybe they were
202 * ordered to have a vacuum, or they do anything for money.
203 * This might help. Or not.
204 */
205#define _DARWIN_UNLIMITED_SELECT 1
191 206
192/* this block tries to deduce configuration from header-defined symbols and defaults */ 207/* this block tries to deduce configuration from header-defined symbols and defaults */
193 208
194/* try to deduce the maximum number of signals on this platform */ 209/* try to deduce the maximum number of signals on this platform */
195#if defined (EV_NSIG) 210#if defined (EV_NSIG)
219# define EV_NSIG 65 234# define EV_NSIG 65
220#endif 235#endif
221 236
222#ifndef EV_USE_CLOCK_SYSCALL 237#ifndef EV_USE_CLOCK_SYSCALL
223# if __linux && __GLIBC__ >= 2 238# if __linux && __GLIBC__ >= 2
224# define EV_USE_CLOCK_SYSCALL 1 239# define EV_USE_CLOCK_SYSCALL EV_FEATURE_OS
225# else 240# else
226# define EV_USE_CLOCK_SYSCALL 0 241# define EV_USE_CLOCK_SYSCALL 0
227# endif 242# endif
228#endif 243#endif
229 244
230#ifndef EV_USE_MONOTONIC 245#ifndef EV_USE_MONOTONIC
231# if defined (_POSIX_MONOTONIC_CLOCK) && _POSIX_MONOTONIC_CLOCK >= 0 246# if defined (_POSIX_MONOTONIC_CLOCK) && _POSIX_MONOTONIC_CLOCK >= 0
232# define EV_USE_MONOTONIC 1 247# define EV_USE_MONOTONIC EV_FEATURE_OS
233# else 248# else
234# define EV_USE_MONOTONIC 0 249# define EV_USE_MONOTONIC 0
235# endif 250# endif
236#endif 251#endif
237 252
239# define EV_USE_REALTIME !EV_USE_CLOCK_SYSCALL 254# define EV_USE_REALTIME !EV_USE_CLOCK_SYSCALL
240#endif 255#endif
241 256
242#ifndef EV_USE_NANOSLEEP 257#ifndef EV_USE_NANOSLEEP
243# if _POSIX_C_SOURCE >= 199309L 258# if _POSIX_C_SOURCE >= 199309L
244# define EV_USE_NANOSLEEP 1 259# define EV_USE_NANOSLEEP EV_FEATURE_OS
245# else 260# else
246# define EV_USE_NANOSLEEP 0 261# define EV_USE_NANOSLEEP 0
247# endif 262# endif
248#endif 263#endif
249 264
250#ifndef EV_USE_SELECT 265#ifndef EV_USE_SELECT
251# define EV_USE_SELECT 1 266# define EV_USE_SELECT EV_FEATURE_BACKENDS
252#endif 267#endif
253 268
254#ifndef EV_USE_POLL 269#ifndef EV_USE_POLL
255# ifdef _WIN32 270# ifdef _WIN32
256# define EV_USE_POLL 0 271# define EV_USE_POLL 0
257# else 272# else
258# define EV_USE_POLL 1 273# define EV_USE_POLL EV_FEATURE_BACKENDS
259# endif 274# endif
260#endif 275#endif
261 276
262#ifndef EV_USE_EPOLL 277#ifndef EV_USE_EPOLL
263# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 4)) 278# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 4))
264# define EV_USE_EPOLL 1 279# define EV_USE_EPOLL EV_FEATURE_BACKENDS
265# else 280# else
266# define EV_USE_EPOLL 0 281# define EV_USE_EPOLL 0
267# endif 282# endif
268#endif 283#endif
269 284
275# define EV_USE_PORT 0 290# define EV_USE_PORT 0
276#endif 291#endif
277 292
278#ifndef EV_USE_INOTIFY 293#ifndef EV_USE_INOTIFY
279# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 4)) 294# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 4))
280# define EV_USE_INOTIFY 1 295# define EV_USE_INOTIFY EV_FEATURE_OS
281# else 296# else
282# define EV_USE_INOTIFY 0 297# define EV_USE_INOTIFY 0
283# endif 298# endif
284#endif 299#endif
285 300
286#ifndef EV_PID_HASHSIZE 301#ifndef EV_PID_HASHSIZE
287# if EV_MINIMAL 302# define EV_PID_HASHSIZE EV_FEATURE_DATA ? 16 : 1
288# define EV_PID_HASHSIZE 1
289# else
290# define EV_PID_HASHSIZE 16
291# endif
292#endif 303#endif
293 304
294#ifndef EV_INOTIFY_HASHSIZE 305#ifndef EV_INOTIFY_HASHSIZE
295# if EV_MINIMAL 306# define EV_INOTIFY_HASHSIZE EV_FEATURE_DATA ? 16 : 1
296# define EV_INOTIFY_HASHSIZE 1
297# else
298# define EV_INOTIFY_HASHSIZE 16
299# endif
300#endif 307#endif
301 308
302#ifndef EV_USE_EVENTFD 309#ifndef EV_USE_EVENTFD
303# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 7)) 310# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 7))
304# define EV_USE_EVENTFD 1 311# define EV_USE_EVENTFD EV_FEATURE_OS
305# else 312# else
306# define EV_USE_EVENTFD 0 313# define EV_USE_EVENTFD 0
307# endif 314# endif
308#endif 315#endif
309 316
310#ifndef EV_USE_SIGNALFD 317#ifndef EV_USE_SIGNALFD
311# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 7)) 318# if __linux && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 7))
312# define EV_USE_SIGNALFD 1 319# define EV_USE_SIGNALFD EV_FEATURE_OS
313# else 320# else
314# define EV_USE_SIGNALFD 0 321# define EV_USE_SIGNALFD 0
315# endif 322# endif
316#endif 323#endif
317 324
320# define EV_USE_4HEAP 1 327# define EV_USE_4HEAP 1
321# define EV_HEAP_CACHE_AT 1 328# define EV_HEAP_CACHE_AT 1
322#endif 329#endif
323 330
324#ifndef EV_VERIFY 331#ifndef EV_VERIFY
325# define EV_VERIFY !EV_MINIMAL 332# define EV_VERIFY (EV_FEATURE_API ? 1 : 0)
326#endif 333#endif
327 334
328#ifndef EV_USE_4HEAP 335#ifndef EV_USE_4HEAP
329# define EV_USE_4HEAP !EV_MINIMAL 336# define EV_USE_4HEAP EV_FEATURE_DATA
330#endif 337#endif
331 338
332#ifndef EV_HEAP_CACHE_AT 339#ifndef EV_HEAP_CACHE_AT
333# define EV_HEAP_CACHE_AT !EV_MINIMAL 340# define EV_HEAP_CACHE_AT EV_FEATURE_DATA
334#endif 341#endif
335 342
336/* on linux, we can use a (slow) syscall to avoid a dependency on pthread, */ 343/* on linux, we can use a (slow) syscall to avoid a dependency on pthread, */
337/* which makes programs even slower. might work on other unices, too. */ 344/* which makes programs even slower. might work on other unices, too. */
338#if EV_USE_CLOCK_SYSCALL 345#if EV_USE_CLOCK_SYSCALL
375# include <sys/select.h> 382# include <sys/select.h>
376# endif 383# endif
377#endif 384#endif
378 385
379#if EV_USE_INOTIFY 386#if EV_USE_INOTIFY
380# include <sys/utsname.h>
381# include <sys/statfs.h> 387# include <sys/statfs.h>
382# include <sys/inotify.h> 388# include <sys/inotify.h>
383/* some very old inotify.h headers don't have IN_DONT_FOLLOW */ 389/* some very old inotify.h headers don't have IN_DONT_FOLLOW */
384# ifndef IN_DONT_FOLLOW 390# ifndef IN_DONT_FOLLOW
385# undef EV_USE_INOTIFY 391# undef EV_USE_INOTIFY
402# define EFD_CLOEXEC O_CLOEXEC 408# define EFD_CLOEXEC O_CLOEXEC
403# else 409# else
404# define EFD_CLOEXEC 02000000 410# define EFD_CLOEXEC 02000000
405# endif 411# endif
406# endif 412# endif
407# ifdef __cplusplus
408extern "C" {
409# endif
410int (eventfd) (unsigned int initval, int flags); 413EV_CPP(extern "C") int (eventfd) (unsigned int initval, int flags);
411# ifdef __cplusplus
412}
413# endif
414#endif 414#endif
415 415
416#if EV_USE_SIGNALFD 416#if EV_USE_SIGNALFD
417/* our minimum requirement is glibc 2.7 which has the stub, but not the header */ 417/* our minimum requirement is glibc 2.7 which has the stub, but not the header */
418# include <stdint.h> 418# include <stdint.h>
424# define SFD_CLOEXEC O_CLOEXEC 424# define SFD_CLOEXEC O_CLOEXEC
425# else 425# else
426# define SFD_CLOEXEC 02000000 426# define SFD_CLOEXEC 02000000
427# endif 427# endif
428# endif 428# endif
429# ifdef __cplusplus
430extern "C" {
431# endif
432int signalfd (int fd, const sigset_t *mask, int flags); 429EV_CPP (extern "C") int signalfd (int fd, const sigset_t *mask, int flags);
433 430
434struct signalfd_siginfo 431struct signalfd_siginfo
435{ 432{
436 uint32_t ssi_signo; 433 uint32_t ssi_signo;
437 char pad[128 - sizeof (uint32_t)]; 434 char pad[128 - sizeof (uint32_t)];
438}; 435};
439# ifdef __cplusplus
440}
441# endif 436#endif
442#endif
443
444 437
445/**/ 438/**/
446 439
447#if EV_VERIFY >= 3 440#if EV_VERIFY >= 3
448# define EV_FREQUENT_CHECK ev_loop_verify (EV_A) 441# define EV_FREQUENT_CHECK ev_verify (EV_A)
449#else 442#else
450# define EV_FREQUENT_CHECK do { } while (0) 443# define EV_FREQUENT_CHECK do { } while (0)
451#endif 444#endif
452 445
453/* 446/*
461#define TIME_EPSILON 0.0001220703125 /* 1/8192 */ 454#define TIME_EPSILON 0.0001220703125 /* 1/8192 */
462 455
463#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */ 456#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */
464#define MAX_BLOCKTIME 59.743 /* never wait longer than this time (to detect time jumps) */ 457#define MAX_BLOCKTIME 59.743 /* never wait longer than this time (to detect time jumps) */
465 458
459#define EV_TV_SET(tv,t) do { tv.tv_sec = (long)t; tv.tv_usec = (long)((t - tv.tv_sec) * 1e6); } while (0)
460#define EV_TS_SET(ts,t) do { ts.tv_sec = (long)t; ts.tv_nsec = (long)((t - ts.tv_sec) * 1e9); } while (0)
461
466#if __GNUC__ >= 4 462#if __GNUC__ >= 4
467# define expect(expr,value) __builtin_expect ((expr),(value)) 463# define expect(expr,value) __builtin_expect ((expr),(value))
468# define noinline __attribute__ ((noinline)) 464# define noinline __attribute__ ((noinline))
469#else 465#else
470# define expect(expr,value) (expr) 466# define expect(expr,value) (expr)
476 472
477#define expect_false(expr) expect ((expr) != 0, 0) 473#define expect_false(expr) expect ((expr) != 0, 0)
478#define expect_true(expr) expect ((expr) != 0, 1) 474#define expect_true(expr) expect ((expr) != 0, 1)
479#define inline_size static inline 475#define inline_size static inline
480 476
481#if EV_MINIMAL 477#if EV_FEATURE_CODE
478# define inline_speed static inline
479#else
482# define inline_speed static noinline 480# define inline_speed static noinline
483#else
484# define inline_speed static inline
485#endif 481#endif
486 482
487#define NUMPRI (EV_MAXPRI - EV_MINPRI + 1) 483#define NUMPRI (EV_MAXPRI - EV_MINPRI + 1)
488 484
489#if EV_MINPRI == EV_MAXPRI 485#if EV_MINPRI == EV_MAXPRI
502#define ev_active(w) ((W)(w))->active 498#define ev_active(w) ((W)(w))->active
503#define ev_at(w) ((WT)(w))->at 499#define ev_at(w) ((WT)(w))->at
504 500
505#if EV_USE_REALTIME 501#if EV_USE_REALTIME
506/* sig_atomic_t is used to avoid per-thread variables or locking but still */ 502/* sig_atomic_t is used to avoid per-thread variables or locking but still */
507/* giving it a reasonably high chance of working on typical architetcures */ 503/* giving it a reasonably high chance of working on typical architectures */
508static EV_ATOMIC_T have_realtime; /* did clock_gettime (CLOCK_REALTIME) work? */ 504static EV_ATOMIC_T have_realtime; /* did clock_gettime (CLOCK_REALTIME) work? */
509#endif 505#endif
510 506
511#if EV_USE_MONOTONIC 507#if EV_USE_MONOTONIC
512static EV_ATOMIC_T have_monotonic; /* did clock_gettime (CLOCK_MONOTONIC) work? */ 508static EV_ATOMIC_T have_monotonic; /* did clock_gettime (CLOCK_MONOTONIC) work? */
523#endif 519#endif
524 520
525#ifdef _WIN32 521#ifdef _WIN32
526# include "ev_win32.c" 522# include "ev_win32.c"
527#endif 523#endif
524
525/*****************************************************************************/
526
527#ifdef __linux
528# include <sys/utsname.h>
529#endif
530
531static unsigned int noinline
532ev_linux_version (void)
533{
534#ifdef __linux
535 unsigned int v = 0;
536 struct utsname buf;
537 int i;
538 char *p = buf.release;
539
540 if (uname (&buf))
541 return 0;
542
543 for (i = 3+1; --i; )
544 {
545 unsigned int c = 0;
546
547 for (;;)
548 {
549 if (*p >= '0' && *p <= '9')
550 c = c * 10 + *p++ - '0';
551 else
552 {
553 p += *p == '.';
554 break;
555 }
556 }
557
558 v = (v << 8) | c;
559 }
560
561 return v;
562#else
563 return 0;
564#endif
565}
528 566
529/*****************************************************************************/ 567/*****************************************************************************/
530 568
531#if EV_AVOID_STDIO 569#if EV_AVOID_STDIO
532static void noinline 570static void noinline
553 if (syserr_cb) 591 if (syserr_cb)
554 syserr_cb (msg); 592 syserr_cb (msg);
555 else 593 else
556 { 594 {
557#if EV_AVOID_STDIO 595#if EV_AVOID_STDIO
558 const char *err = strerror (errno);
559
560 ev_printerr (msg); 596 ev_printerr (msg);
561 ev_printerr (": "); 597 ev_printerr (": ");
562 ev_printerr (err); 598 ev_printerr (strerror (errno));
563 ev_printerr ("\n"); 599 ev_printerr ("\n");
564#else 600#else
565 perror (msg); 601 perror (msg);
566#endif 602#endif
567 abort (); 603 abort ();
601 ptr = alloc (ptr, size); 637 ptr = alloc (ptr, size);
602 638
603 if (!ptr && size) 639 if (!ptr && size)
604 { 640 {
605#if EV_AVOID_STDIO 641#if EV_AVOID_STDIO
606 ev_printerr ("libev: memory allocation failed, aborting.\n"); 642 ev_printerr ("(libev) memory allocation failed, aborting.\n");
607#else 643#else
608 fprintf (stderr, "libev: cannot allocate %ld bytes, aborting.", size); 644 fprintf (stderr, "(libev) cannot allocate %ld bytes, aborting.", size);
609#endif 645#endif
610 abort (); 646 abort ();
611 } 647 }
612 648
613 return ptr; 649 return ptr;
630 unsigned char emask; /* the epoll backend stores the actual kernel mask in here */ 666 unsigned char emask; /* the epoll backend stores the actual kernel mask in here */
631 unsigned char unused; 667 unsigned char unused;
632#if EV_USE_EPOLL 668#if EV_USE_EPOLL
633 unsigned int egen; /* generation counter to counter epoll bugs */ 669 unsigned int egen; /* generation counter to counter epoll bugs */
634#endif 670#endif
635#if EV_SELECT_IS_WINSOCKET 671#if EV_SELECT_IS_WINSOCKET || EV_USE_IOCP
636 SOCKET handle; 672 SOCKET handle;
673#endif
674#if EV_USE_IOCP
675 OVERLAPPED or, ow;
637#endif 676#endif
638} ANFD; 677} ANFD;
639 678
640/* stores the pending event set for a given watcher */ 679/* stores the pending event set for a given watcher */
641typedef struct 680typedef struct
696 735
697 static int ev_default_loop_ptr; 736 static int ev_default_loop_ptr;
698 737
699#endif 738#endif
700 739
701#if EV_MINIMAL < 2 740#if EV_FEATURE_API
702# define EV_RELEASE_CB if (expect_false (release_cb)) release_cb (EV_A) 741# define EV_RELEASE_CB if (expect_false (release_cb)) release_cb (EV_A)
703# define EV_ACQUIRE_CB if (expect_false (acquire_cb)) acquire_cb (EV_A) 742# define EV_ACQUIRE_CB if (expect_false (acquire_cb)) acquire_cb (EV_A)
704# define EV_INVOKE_PENDING invoke_cb (EV_A) 743# define EV_INVOKE_PENDING invoke_cb (EV_A)
705#else 744#else
706# define EV_RELEASE_CB (void)0 745# define EV_RELEASE_CB (void)0
707# define EV_ACQUIRE_CB (void)0 746# define EV_ACQUIRE_CB (void)0
708# define EV_INVOKE_PENDING ev_invoke_pending (EV_A) 747# define EV_INVOKE_PENDING ev_invoke_pending (EV_A)
709#endif 748#endif
710 749
711#define EVUNLOOP_RECURSE 0x80 750#define EVBREAK_RECURSE 0x80
712 751
713/*****************************************************************************/ 752/*****************************************************************************/
714 753
715#ifndef EV_HAVE_EV_TIME 754#ifndef EV_HAVE_EV_TIME
716ev_tstamp 755ev_tstamp
760 if (delay > 0.) 799 if (delay > 0.)
761 { 800 {
762#if EV_USE_NANOSLEEP 801#if EV_USE_NANOSLEEP
763 struct timespec ts; 802 struct timespec ts;
764 803
765 ts.tv_sec = (time_t)delay; 804 EV_TS_SET (ts, delay);
766 ts.tv_nsec = (long)((delay - (ev_tstamp)(ts.tv_sec)) * 1e9);
767
768 nanosleep (&ts, 0); 805 nanosleep (&ts, 0);
769#elif defined(_WIN32) 806#elif defined(_WIN32)
770 Sleep ((unsigned long)(delay * 1e3)); 807 Sleep ((unsigned long)(delay * 1e3));
771#else 808#else
772 struct timeval tv; 809 struct timeval tv;
773 810
774 tv.tv_sec = (time_t)delay;
775 tv.tv_usec = (long)((delay - (ev_tstamp)(tv.tv_sec)) * 1e6);
776
777 /* here we rely on sys/time.h + sys/types.h + unistd.h providing select */ 811 /* here we rely on sys/time.h + sys/types.h + unistd.h providing select */
778 /* something not guaranteed by newer posix versions, but guaranteed */ 812 /* something not guaranteed by newer posix versions, but guaranteed */
779 /* by older ones */ 813 /* by older ones */
814 EV_TV_SET (tv, delay);
780 select (0, 0, 0, 0, &tv); 815 select (0, 0, 0, 0, &tv);
781#endif 816#endif
782 } 817 }
783} 818}
784 819
820inline_speed int
821ev_timeout_to_ms (ev_tstamp timeout)
822{
823 int ms = timeout * 1000. + .999999;
824
825 return expect_true (ms) ? ms : timeout < 1e-6 ? 0 : 1;
826}
827
785/*****************************************************************************/ 828/*****************************************************************************/
786 829
787#define MALLOC_ROUND 4096 /* prefer to allocate in chunks of this size, must be 2**n and >> 4 longs */ 830#define MALLOC_ROUND 4096 /* prefer to allocate in chunks of this size, must be 2**n and >> 4 longs */
788 831
789/* find a suitable new size for the given array, */ 832/* find a suitable new size for the given array, */
790/* hopefully by rounding to a ncie-to-malloc size */ 833/* hopefully by rounding to a nice-to-malloc size */
791inline_size int 834inline_size int
792array_nextsize (int elem, int cur, int cnt) 835array_nextsize (int elem, int cur, int cnt)
793{ 836{
794 int ncur = cur + 1; 837 int ncur = cur + 1;
795 838
891} 934}
892 935
893/*****************************************************************************/ 936/*****************************************************************************/
894 937
895inline_speed void 938inline_speed void
896fd_event_nc (EV_P_ int fd, int revents) 939fd_event_nocheck (EV_P_ int fd, int revents)
897{ 940{
898 ANFD *anfd = anfds + fd; 941 ANFD *anfd = anfds + fd;
899 ev_io *w; 942 ev_io *w;
900 943
901 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next) 944 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next)
913fd_event (EV_P_ int fd, int revents) 956fd_event (EV_P_ int fd, int revents)
914{ 957{
915 ANFD *anfd = anfds + fd; 958 ANFD *anfd = anfds + fd;
916 959
917 if (expect_true (!anfd->reify)) 960 if (expect_true (!anfd->reify))
918 fd_event_nc (EV_A_ fd, revents); 961 fd_event_nocheck (EV_A_ fd, revents);
919} 962}
920 963
921void 964void
922ev_feed_fd_event (EV_P_ int fd, int revents) 965ev_feed_fd_event (EV_P_ int fd, int revents)
923{ 966{
924 if (fd >= 0 && fd < anfdmax) 967 if (fd >= 0 && fd < anfdmax)
925 fd_event_nc (EV_A_ fd, revents); 968 fd_event_nocheck (EV_A_ fd, revents);
926} 969}
927 970
928/* make sure the external fd watch events are in-sync */ 971/* make sure the external fd watch events are in-sync */
929/* with the kernel/libev internal state */ 972/* with the kernel/libev internal state */
930inline_size void 973inline_size void
936 { 979 {
937 int fd = fdchanges [i]; 980 int fd = fdchanges [i];
938 ANFD *anfd = anfds + fd; 981 ANFD *anfd = anfds + fd;
939 ev_io *w; 982 ev_io *w;
940 983
941 unsigned char events = 0; 984 unsigned char o_events = anfd->events;
985 unsigned char o_reify = anfd->reify;
942 986
943 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next) 987 anfd->reify = 0;
944 events |= (unsigned char)w->events;
945 988
946#if EV_SELECT_IS_WINSOCKET 989#if EV_SELECT_IS_WINSOCKET || EV_USE_IOCP
947 if (events) 990 if (o_reify & EV__IOFDSET)
948 { 991 {
949 unsigned long arg; 992 unsigned long arg;
950 anfd->handle = EV_FD_TO_WIN32_HANDLE (fd); 993 anfd->handle = EV_FD_TO_WIN32_HANDLE (fd);
951 assert (("libev: only socket fds supported in this configuration", ioctlsocket (anfd->handle, FIONREAD, &arg) == 0)); 994 assert (("libev: only socket fds supported in this configuration", ioctlsocket (anfd->handle, FIONREAD, &arg) == 0));
995 printf ("oi %d %x\n", fd, anfd->handle);//D
952 } 996 }
953#endif 997#endif
954 998
999 /*if (expect_true (o_reify & EV_ANFD_REIFY)) probably a deoptimisation */
955 { 1000 {
956 unsigned char o_events = anfd->events;
957 unsigned char o_reify = anfd->reify;
958
959 anfd->reify = 0;
960 anfd->events = events; 1001 anfd->events = 0;
961 1002
962 if (o_events != events || o_reify & EV__IOFDSET) 1003 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next)
1004 anfd->events |= (unsigned char)w->events;
1005
1006 if (o_events != anfd->events)
1007 o_reify = EV__IOFDSET; /* actually |= */
1008 }
1009
1010 if (o_reify & EV__IOFDSET)
963 backend_modify (EV_A_ fd, o_events, events); 1011 backend_modify (EV_A_ fd, o_events, anfd->events);
964 }
965 } 1012 }
966 1013
967 fdchangecnt = 0; 1014 fdchangecnt = 0;
968} 1015}
969 1016
1062} 1109}
1063 1110
1064/*****************************************************************************/ 1111/*****************************************************************************/
1065 1112
1066/* 1113/*
1067 * the heap functions want a real array index. array index 0 uis guaranteed to not 1114 * the heap functions want a real array index. array index 0 is guaranteed to not
1068 * be in-use at any time. the first heap entry is at array [HEAP0]. DHEAP gives 1115 * be in-use at any time. the first heap entry is at array [HEAP0]. DHEAP gives
1069 * the branching factor of the d-tree. 1116 * the branching factor of the d-tree.
1070 */ 1117 */
1071 1118
1072/* 1119/*
1272 uint64_t counter = 1; 1319 uint64_t counter = 1;
1273 write (evfd, &counter, sizeof (uint64_t)); 1320 write (evfd, &counter, sizeof (uint64_t));
1274 } 1321 }
1275 else 1322 else
1276#endif 1323#endif
1324 /* win32 people keep sending patches that change this write() to send() */
1325 /* and then run away. but send() is wrong, it wants a socket handle on win32 */
1326 /* so when you think this write should be a send instead, please find out */
1327 /* where your send() is from - it's definitely not the microsoft send, and */
1328 /* tell me. thank you. */
1277 write (evpipe [1], &dummy, 1); 1329 write (evpipe [1], &dummy, 1);
1278 1330
1279 errno = old_errno; 1331 errno = old_errno;
1280 } 1332 }
1281} 1333}
1295 } 1347 }
1296 else 1348 else
1297#endif 1349#endif
1298 { 1350 {
1299 char dummy; 1351 char dummy;
1352 /* see discussion in evpipe_write when you think this read should be recv in win32 */
1300 read (evpipe [0], &dummy, 1); 1353 read (evpipe [0], &dummy, 1);
1301 } 1354 }
1302 1355
1303 if (sig_pending) 1356 if (sig_pending)
1304 { 1357 {
1324#endif 1377#endif
1325} 1378}
1326 1379
1327/*****************************************************************************/ 1380/*****************************************************************************/
1328 1381
1382void
1383ev_feed_signal (int signum)
1384{
1385#if EV_MULTIPLICITY
1386 EV_P = signals [signum - 1].loop;
1387
1388 if (!EV_A)
1389 return;
1390#endif
1391
1392 signals [signum - 1].pending = 1;
1393 evpipe_write (EV_A_ &sig_pending);
1394}
1395
1329static void 1396static void
1330ev_sighandler (int signum) 1397ev_sighandler (int signum)
1331{ 1398{
1332#if EV_MULTIPLICITY
1333 EV_P = signals [signum - 1].loop;
1334#endif
1335
1336#ifdef _WIN32 1399#ifdef _WIN32
1337 signal (signum, ev_sighandler); 1400 signal (signum, ev_sighandler);
1338#endif 1401#endif
1339 1402
1340 signals [signum - 1].pending = 1; 1403 ev_feed_signal (signum);
1341 evpipe_write (EV_A_ &sig_pending);
1342} 1404}
1343 1405
1344void noinline 1406void noinline
1345ev_feed_signal_event (EV_P_ int signum) 1407ev_feed_signal_event (EV_P_ int signum)
1346{ 1408{
1403child_reap (EV_P_ int chain, int pid, int status) 1465child_reap (EV_P_ int chain, int pid, int status)
1404{ 1466{
1405 ev_child *w; 1467 ev_child *w;
1406 int traced = WIFSTOPPED (status) || WIFCONTINUED (status); 1468 int traced = WIFSTOPPED (status) || WIFCONTINUED (status);
1407 1469
1408 for (w = (ev_child *)childs [chain & (EV_PID_HASHSIZE - 1)]; w; w = (ev_child *)((WL)w)->next) 1470 for (w = (ev_child *)childs [chain & ((EV_PID_HASHSIZE) - 1)]; w; w = (ev_child *)((WL)w)->next)
1409 { 1471 {
1410 if ((w->pid == pid || !w->pid) 1472 if ((w->pid == pid || !w->pid)
1411 && (!traced || (w->flags & 1))) 1473 && (!traced || (w->flags & 1)))
1412 { 1474 {
1413 ev_set_priority (w, EV_MAXPRI); /* need to do it *now*, this *must* be the same prio as the signal watcher itself */ 1475 ev_set_priority (w, EV_MAXPRI); /* need to do it *now*, this *must* be the same prio as the signal watcher itself */
1438 /* make sure we are called again until all children have been reaped */ 1500 /* make sure we are called again until all children have been reaped */
1439 /* we need to do it this way so that the callback gets called before we continue */ 1501 /* we need to do it this way so that the callback gets called before we continue */
1440 ev_feed_event (EV_A_ (W)sw, EV_SIGNAL); 1502 ev_feed_event (EV_A_ (W)sw, EV_SIGNAL);
1441 1503
1442 child_reap (EV_A_ pid, pid, status); 1504 child_reap (EV_A_ pid, pid, status);
1443 if (EV_PID_HASHSIZE > 1) 1505 if ((EV_PID_HASHSIZE) > 1)
1444 child_reap (EV_A_ 0, pid, status); /* this might trigger a watcher twice, but feed_event catches that */ 1506 child_reap (EV_A_ 0, pid, status); /* this might trigger a watcher twice, but feed_event catches that */
1445} 1507}
1446 1508
1447#endif 1509#endif
1448 1510
1449/*****************************************************************************/ 1511/*****************************************************************************/
1450 1512
1513#if EV_USE_IOCP
1514# include "ev_iocp.c"
1515#endif
1451#if EV_USE_PORT 1516#if EV_USE_PORT
1452# include "ev_port.c" 1517# include "ev_port.c"
1453#endif 1518#endif
1454#if EV_USE_KQUEUE 1519#if EV_USE_KQUEUE
1455# include "ev_kqueue.c" 1520# include "ev_kqueue.c"
1515#ifdef __APPLE__ 1580#ifdef __APPLE__
1516 /* only select works correctly on that "unix-certified" platform */ 1581 /* only select works correctly on that "unix-certified" platform */
1517 flags &= ~EVBACKEND_KQUEUE; /* horribly broken, even for sockets */ 1582 flags &= ~EVBACKEND_KQUEUE; /* horribly broken, even for sockets */
1518 flags &= ~EVBACKEND_POLL; /* poll is based on kqueue from 10.5 onwards */ 1583 flags &= ~EVBACKEND_POLL; /* poll is based on kqueue from 10.5 onwards */
1519#endif 1584#endif
1585#ifdef __FreeBSD__
1586 flags &= ~EVBACKEND_POLL; /* poll return value is unusable (http://forums.freebsd.org/archive/index.php/t-10270.html) */
1587#endif
1520 1588
1521 return flags; 1589 return flags;
1522} 1590}
1523 1591
1524unsigned int 1592unsigned int
1525ev_embeddable_backends (void) 1593ev_embeddable_backends (void)
1526{ 1594{
1527 int flags = EVBACKEND_EPOLL | EVBACKEND_KQUEUE | EVBACKEND_PORT; 1595 int flags = EVBACKEND_EPOLL | EVBACKEND_KQUEUE | EVBACKEND_PORT;
1528 1596
1529 /* epoll embeddability broken on all linux versions up to at least 2.6.23 */ 1597 /* epoll embeddability broken on all linux versions up to at least 2.6.23 */
1530 /* please fix it and tell me how to detect the fix */ 1598 if (ev_linux_version () < 0x020620) /* disable it on linux < 2.6.32 */
1531 flags &= ~EVBACKEND_EPOLL; 1599 flags &= ~EVBACKEND_EPOLL;
1532 1600
1533 return flags; 1601 return flags;
1534} 1602}
1535 1603
1536unsigned int 1604unsigned int
1537ev_backend (EV_P) 1605ev_backend (EV_P)
1538{ 1606{
1539 return backend; 1607 return backend;
1540} 1608}
1541 1609
1542#if EV_MINIMAL < 2 1610#if EV_FEATURE_API
1543unsigned int 1611unsigned int
1544ev_loop_count (EV_P) 1612ev_iteration (EV_P)
1545{ 1613{
1546 return loop_count; 1614 return loop_count;
1547} 1615}
1548 1616
1549unsigned int 1617unsigned int
1550ev_loop_depth (EV_P) 1618ev_depth (EV_P)
1551{ 1619{
1552 return loop_depth; 1620 return loop_depth;
1553} 1621}
1554 1622
1555void 1623void
1592static void noinline 1660static void noinline
1593loop_init (EV_P_ unsigned int flags) 1661loop_init (EV_P_ unsigned int flags)
1594{ 1662{
1595 if (!backend) 1663 if (!backend)
1596 { 1664 {
1665 origflags = flags;
1666
1597#if EV_USE_REALTIME 1667#if EV_USE_REALTIME
1598 if (!have_realtime) 1668 if (!have_realtime)
1599 { 1669 {
1600 struct timespec ts; 1670 struct timespec ts;
1601 1671
1627 1697
1628 ev_rt_now = ev_time (); 1698 ev_rt_now = ev_time ();
1629 mn_now = get_clock (); 1699 mn_now = get_clock ();
1630 now_floor = mn_now; 1700 now_floor = mn_now;
1631 rtmn_diff = ev_rt_now - mn_now; 1701 rtmn_diff = ev_rt_now - mn_now;
1632#if EV_MINIMAL < 2 1702#if EV_FEATURE_API
1633 invoke_cb = ev_invoke_pending; 1703 invoke_cb = ev_invoke_pending;
1634#endif 1704#endif
1635 1705
1636 io_blocktime = 0.; 1706 io_blocktime = 0.;
1637 timeout_blocktime = 0.; 1707 timeout_blocktime = 0.;
1646#endif 1716#endif
1647#if EV_USE_SIGNALFD 1717#if EV_USE_SIGNALFD
1648 sigfd = flags & EVFLAG_SIGNALFD ? -2 : -1; 1718 sigfd = flags & EVFLAG_SIGNALFD ? -2 : -1;
1649#endif 1719#endif
1650 1720
1651 if (!(flags & 0x0000ffffU)) 1721 if (!(flags & EVBACKEND_MASK))
1652 flags |= ev_recommended_backends (); 1722 flags |= ev_recommended_backends ();
1653 1723
1724#if EV_USE_IOCP
1725 if (!backend && (flags & EVBACKEND_IOCP )) backend = iocp_init (EV_A_ flags);
1726#endif
1654#if EV_USE_PORT 1727#if EV_USE_PORT
1655 if (!backend && (flags & EVBACKEND_PORT )) backend = port_init (EV_A_ flags); 1728 if (!backend && (flags & EVBACKEND_PORT )) backend = port_init (EV_A_ flags);
1656#endif 1729#endif
1657#if EV_USE_KQUEUE 1730#if EV_USE_KQUEUE
1658 if (!backend && (flags & EVBACKEND_KQUEUE)) backend = kqueue_init (EV_A_ flags); 1731 if (!backend && (flags & EVBACKEND_KQUEUE)) backend = kqueue_init (EV_A_ flags);
1675#endif 1748#endif
1676 } 1749 }
1677} 1750}
1678 1751
1679/* free up a loop structure */ 1752/* free up a loop structure */
1680static void noinline 1753void
1681loop_destroy (EV_P) 1754ev_loop_destroy (EV_P)
1682{ 1755{
1683 int i; 1756 int i;
1757
1758#if EV_MULTIPLICITY
1759 /* mimic free (0) */
1760 if (!EV_A)
1761 return;
1762#endif
1763
1764#if EV_CLEANUP_ENABLE
1765 /* queue cleanup watchers (and execute them) */
1766 if (expect_false (cleanupcnt))
1767 {
1768 queue_events (EV_A_ (W *)cleanups, cleanupcnt, EV_CLEANUP);
1769 EV_INVOKE_PENDING;
1770 }
1771#endif
1772
1773#if EV_CHILD_ENABLE
1774 if (ev_is_active (&childev))
1775 {
1776 ev_ref (EV_A); /* child watcher */
1777 ev_signal_stop (EV_A_ &childev);
1778 }
1779#endif
1684 1780
1685 if (ev_is_active (&pipe_w)) 1781 if (ev_is_active (&pipe_w))
1686 { 1782 {
1687 /*ev_ref (EV_A);*/ 1783 /*ev_ref (EV_A);*/
1688 /*ev_io_stop (EV_A_ &pipe_w);*/ 1784 /*ev_io_stop (EV_A_ &pipe_w);*/
1710#endif 1806#endif
1711 1807
1712 if (backend_fd >= 0) 1808 if (backend_fd >= 0)
1713 close (backend_fd); 1809 close (backend_fd);
1714 1810
1811#if EV_USE_IOCP
1812 if (backend == EVBACKEND_IOCP ) iocp_destroy (EV_A);
1813#endif
1715#if EV_USE_PORT 1814#if EV_USE_PORT
1716 if (backend == EVBACKEND_PORT ) port_destroy (EV_A); 1815 if (backend == EVBACKEND_PORT ) port_destroy (EV_A);
1717#endif 1816#endif
1718#if EV_USE_KQUEUE 1817#if EV_USE_KQUEUE
1719 if (backend == EVBACKEND_KQUEUE) kqueue_destroy (EV_A); 1818 if (backend == EVBACKEND_KQUEUE) kqueue_destroy (EV_A);
1746 array_free (periodic, EMPTY); 1845 array_free (periodic, EMPTY);
1747#endif 1846#endif
1748#if EV_FORK_ENABLE 1847#if EV_FORK_ENABLE
1749 array_free (fork, EMPTY); 1848 array_free (fork, EMPTY);
1750#endif 1849#endif
1850#if EV_CLEANUP_ENABLE
1851 array_free (cleanup, EMPTY);
1852#endif
1751 array_free (prepare, EMPTY); 1853 array_free (prepare, EMPTY);
1752 array_free (check, EMPTY); 1854 array_free (check, EMPTY);
1753#if EV_ASYNC_ENABLE 1855#if EV_ASYNC_ENABLE
1754 array_free (async, EMPTY); 1856 array_free (async, EMPTY);
1755#endif 1857#endif
1756 1858
1757 backend = 0; 1859 backend = 0;
1860
1861#if EV_MULTIPLICITY
1862 if (ev_is_default_loop (EV_A))
1863#endif
1864 ev_default_loop_ptr = 0;
1865#if EV_MULTIPLICITY
1866 else
1867 ev_free (EV_A);
1868#endif
1758} 1869}
1759 1870
1760#if EV_USE_INOTIFY 1871#if EV_USE_INOTIFY
1761inline_size void infy_fork (EV_P); 1872inline_size void infy_fork (EV_P);
1762#endif 1873#endif
1798 { 1909 {
1799 EV_WIN32_CLOSE_FD (evpipe [0]); 1910 EV_WIN32_CLOSE_FD (evpipe [0]);
1800 EV_WIN32_CLOSE_FD (evpipe [1]); 1911 EV_WIN32_CLOSE_FD (evpipe [1]);
1801 } 1912 }
1802 1913
1914#if EV_SIGNAL_ENABLE || EV_ASYNC_ENABLE
1803 evpipe_init (EV_A); 1915 evpipe_init (EV_A);
1804 /* now iterate over everything, in case we missed something */ 1916 /* now iterate over everything, in case we missed something */
1805 pipecb (EV_A_ &pipe_w, EV_READ); 1917 pipecb (EV_A_ &pipe_w, EV_READ);
1918#endif
1806 } 1919 }
1807 1920
1808 postfork = 0; 1921 postfork = 0;
1809} 1922}
1810 1923
1819 loop_init (EV_A_ flags); 1932 loop_init (EV_A_ flags);
1820 1933
1821 if (ev_backend (EV_A)) 1934 if (ev_backend (EV_A))
1822 return EV_A; 1935 return EV_A;
1823 1936
1937 ev_free (EV_A);
1824 return 0; 1938 return 0;
1825} 1939}
1826 1940
1827void
1828ev_loop_destroy (EV_P)
1829{
1830 loop_destroy (EV_A);
1831 ev_free (loop);
1832}
1833
1834void
1835ev_loop_fork (EV_P)
1836{
1837 postfork = 1; /* must be in line with ev_default_fork */
1838}
1839#endif /* multiplicity */ 1941#endif /* multiplicity */
1840 1942
1841#if EV_VERIFY 1943#if EV_VERIFY
1842static void noinline 1944static void noinline
1843verify_watcher (EV_P_ W w) 1945verify_watcher (EV_P_ W w)
1872 verify_watcher (EV_A_ ws [cnt]); 1974 verify_watcher (EV_A_ ws [cnt]);
1873 } 1975 }
1874} 1976}
1875#endif 1977#endif
1876 1978
1877#if EV_MINIMAL < 2 1979#if EV_FEATURE_API
1878void 1980void
1879ev_loop_verify (EV_P) 1981ev_verify (EV_P)
1880{ 1982{
1881#if EV_VERIFY 1983#if EV_VERIFY
1882 int i; 1984 int i;
1883 WL w; 1985 WL w;
1884 1986
1918#if EV_FORK_ENABLE 2020#if EV_FORK_ENABLE
1919 assert (forkmax >= forkcnt); 2021 assert (forkmax >= forkcnt);
1920 array_verify (EV_A_ (W *)forks, forkcnt); 2022 array_verify (EV_A_ (W *)forks, forkcnt);
1921#endif 2023#endif
1922 2024
2025#if EV_CLEANUP_ENABLE
2026 assert (cleanupmax >= cleanupcnt);
2027 array_verify (EV_A_ (W *)cleanups, cleanupcnt);
2028#endif
2029
1923#if EV_ASYNC_ENABLE 2030#if EV_ASYNC_ENABLE
1924 assert (asyncmax >= asynccnt); 2031 assert (asyncmax >= asynccnt);
1925 array_verify (EV_A_ (W *)asyncs, asynccnt); 2032 array_verify (EV_A_ (W *)asyncs, asynccnt);
1926#endif 2033#endif
1927 2034
2035#if EV_PREPARE_ENABLE
1928 assert (preparemax >= preparecnt); 2036 assert (preparemax >= preparecnt);
1929 array_verify (EV_A_ (W *)prepares, preparecnt); 2037 array_verify (EV_A_ (W *)prepares, preparecnt);
2038#endif
1930 2039
2040#if EV_CHECK_ENABLE
1931 assert (checkmax >= checkcnt); 2041 assert (checkmax >= checkcnt);
1932 array_verify (EV_A_ (W *)checks, checkcnt); 2042 array_verify (EV_A_ (W *)checks, checkcnt);
2043#endif
1933 2044
1934# if 0 2045# if 0
1935#if EV_CHILD_ENABLE 2046#if EV_CHILD_ENABLE
1936 for (w = (ev_child *)childs [chain & (EV_PID_HASHSIZE - 1)]; w; w = (ev_child *)((WL)w)->next) 2047 for (w = (ev_child *)childs [chain & ((EV_PID_HASHSIZE) - 1)]; w; w = (ev_child *)((WL)w)->next)
1937 for (signum = EV_NSIG; signum--; ) if (signals [signum].pending) 2048 for (signum = EV_NSIG; signum--; ) if (signals [signum].pending)
1938#endif 2049#endif
1939# endif 2050# endif
1940#endif 2051#endif
1941} 2052}
1942#endif 2053#endif
1943 2054
1944#if EV_MULTIPLICITY 2055#if EV_MULTIPLICITY
1945struct ev_loop * 2056struct ev_loop *
1946ev_default_loop_init (unsigned int flags)
1947#else 2057#else
1948int 2058int
2059#endif
1949ev_default_loop (unsigned int flags) 2060ev_default_loop (unsigned int flags)
1950#endif
1951{ 2061{
1952 if (!ev_default_loop_ptr) 2062 if (!ev_default_loop_ptr)
1953 { 2063 {
1954#if EV_MULTIPLICITY 2064#if EV_MULTIPLICITY
1955 EV_P = ev_default_loop_ptr = &default_loop_struct; 2065 EV_P = ev_default_loop_ptr = &default_loop_struct;
1974 2084
1975 return ev_default_loop_ptr; 2085 return ev_default_loop_ptr;
1976} 2086}
1977 2087
1978void 2088void
1979ev_default_destroy (void) 2089ev_loop_fork (EV_P)
1980{ 2090{
1981#if EV_MULTIPLICITY
1982 EV_P = ev_default_loop_ptr;
1983#endif
1984
1985 ev_default_loop_ptr = 0;
1986
1987#if EV_CHILD_ENABLE
1988 ev_ref (EV_A); /* child watcher */
1989 ev_signal_stop (EV_A_ &childev);
1990#endif
1991
1992 loop_destroy (EV_A);
1993}
1994
1995void
1996ev_default_fork (void)
1997{
1998#if EV_MULTIPLICITY
1999 EV_P = ev_default_loop_ptr;
2000#endif
2001
2002 postfork = 1; /* must be in line with ev_loop_fork */ 2091 postfork = 1; /* must be in line with ev_default_fork */
2003} 2092}
2004 2093
2005/*****************************************************************************/ 2094/*****************************************************************************/
2006 2095
2007void 2096void
2029 2118
2030 for (pri = NUMPRI; pri--; ) 2119 for (pri = NUMPRI; pri--; )
2031 while (pendingcnt [pri]) 2120 while (pendingcnt [pri])
2032 { 2121 {
2033 ANPENDING *p = pendings [pri] + --pendingcnt [pri]; 2122 ANPENDING *p = pendings [pri] + --pendingcnt [pri];
2034
2035 /*assert (("libev: non-pending watcher on pending list", p->w->pending));*/
2036 /* ^ this is no longer true, as pending_w could be here */
2037 2123
2038 p->w->pending = 0; 2124 p->w->pending = 0;
2039 EV_CB_INVOKE (p->w, p->events); 2125 EV_CB_INVOKE (p->w, p->events);
2040 EV_FREQUENT_CHECK; 2126 EV_FREQUENT_CHECK;
2041 } 2127 }
2098 EV_FREQUENT_CHECK; 2184 EV_FREQUENT_CHECK;
2099 feed_reverse (EV_A_ (W)w); 2185 feed_reverse (EV_A_ (W)w);
2100 } 2186 }
2101 while (timercnt && ANHE_at (timers [HEAP0]) < mn_now); 2187 while (timercnt && ANHE_at (timers [HEAP0]) < mn_now);
2102 2188
2103 feed_reverse_done (EV_A_ EV_TIMEOUT); 2189 feed_reverse_done (EV_A_ EV_TIMER);
2104 } 2190 }
2105} 2191}
2106 2192
2107#if EV_PERIODIC_ENABLE 2193#if EV_PERIODIC_ENABLE
2108/* make periodics pending */ 2194/* make periodics pending */
2161 feed_reverse_done (EV_A_ EV_PERIODIC); 2247 feed_reverse_done (EV_A_ EV_PERIODIC);
2162 } 2248 }
2163} 2249}
2164 2250
2165/* simply recalculate all periodics */ 2251/* simply recalculate all periodics */
2166/* TODO: maybe ensure that at leats one event happens when jumping forward? */ 2252/* TODO: maybe ensure that at least one event happens when jumping forward? */
2167static void noinline 2253static void noinline
2168periodics_reschedule (EV_P) 2254periodics_reschedule (EV_P)
2169{ 2255{
2170 int i; 2256 int i;
2171 2257
2267 mn_now = ev_rt_now; 2353 mn_now = ev_rt_now;
2268 } 2354 }
2269} 2355}
2270 2356
2271void 2357void
2272ev_loop (EV_P_ int flags) 2358ev_run (EV_P_ int flags)
2273{ 2359{
2274#if EV_MINIMAL < 2 2360#if EV_FEATURE_API
2275 ++loop_depth; 2361 ++loop_depth;
2276#endif 2362#endif
2277 2363
2278 assert (("libev: ev_loop recursion during release detected", loop_done != EVUNLOOP_RECURSE)); 2364 assert (("libev: ev_loop recursion during release detected", loop_done != EVBREAK_RECURSE));
2279 2365
2280 loop_done = EVUNLOOP_CANCEL; 2366 loop_done = EVBREAK_CANCEL;
2281 2367
2282 EV_INVOKE_PENDING; /* in case we recurse, ensure ordering stays nice and clean */ 2368 EV_INVOKE_PENDING; /* in case we recurse, ensure ordering stays nice and clean */
2283 2369
2284 do 2370 do
2285 { 2371 {
2286#if EV_VERIFY >= 2 2372#if EV_VERIFY >= 2
2287 ev_loop_verify (EV_A); 2373 ev_verify (EV_A);
2288#endif 2374#endif
2289 2375
2290#ifndef _WIN32 2376#ifndef _WIN32
2291 if (expect_false (curpid)) /* penalise the forking check even more */ 2377 if (expect_false (curpid)) /* penalise the forking check even more */
2292 if (expect_false (getpid () != curpid)) 2378 if (expect_false (getpid () != curpid))
2304 queue_events (EV_A_ (W *)forks, forkcnt, EV_FORK); 2390 queue_events (EV_A_ (W *)forks, forkcnt, EV_FORK);
2305 EV_INVOKE_PENDING; 2391 EV_INVOKE_PENDING;
2306 } 2392 }
2307#endif 2393#endif
2308 2394
2395#if EV_PREPARE_ENABLE
2309 /* queue prepare watchers (and execute them) */ 2396 /* queue prepare watchers (and execute them) */
2310 if (expect_false (preparecnt)) 2397 if (expect_false (preparecnt))
2311 { 2398 {
2312 queue_events (EV_A_ (W *)prepares, preparecnt, EV_PREPARE); 2399 queue_events (EV_A_ (W *)prepares, preparecnt, EV_PREPARE);
2313 EV_INVOKE_PENDING; 2400 EV_INVOKE_PENDING;
2314 } 2401 }
2402#endif
2315 2403
2316 if (expect_false (loop_done)) 2404 if (expect_false (loop_done))
2317 break; 2405 break;
2318 2406
2319 /* we might have forked, so reify kernel state if necessary */ 2407 /* we might have forked, so reify kernel state if necessary */
2326 /* calculate blocking time */ 2414 /* calculate blocking time */
2327 { 2415 {
2328 ev_tstamp waittime = 0.; 2416 ev_tstamp waittime = 0.;
2329 ev_tstamp sleeptime = 0.; 2417 ev_tstamp sleeptime = 0.;
2330 2418
2419 /* remember old timestamp for io_blocktime calculation */
2420 ev_tstamp prev_mn_now = mn_now;
2421
2422 /* update time to cancel out callback processing overhead */
2423 time_update (EV_A_ 1e100);
2424
2331 if (expect_true (!(flags & EVLOOP_NONBLOCK || idleall || !activecnt))) 2425 if (expect_true (!(flags & EVRUN_NOWAIT || idleall || !activecnt)))
2332 { 2426 {
2333 /* remember old timestamp for io_blocktime calculation */
2334 ev_tstamp prev_mn_now = mn_now;
2335
2336 /* update time to cancel out callback processing overhead */
2337 time_update (EV_A_ 1e100);
2338
2339 waittime = MAX_BLOCKTIME; 2427 waittime = MAX_BLOCKTIME;
2340 2428
2341 if (timercnt) 2429 if (timercnt)
2342 { 2430 {
2343 ev_tstamp to = ANHE_at (timers [HEAP0]) - mn_now + backend_fudge; 2431 ev_tstamp to = ANHE_at (timers [HEAP0]) - mn_now + backend_fudge;
2370 waittime -= sleeptime; 2458 waittime -= sleeptime;
2371 } 2459 }
2372 } 2460 }
2373 } 2461 }
2374 2462
2375#if EV_MINIMAL < 2 2463#if EV_FEATURE_API
2376 ++loop_count; 2464 ++loop_count;
2377#endif 2465#endif
2378 assert ((loop_done = EVUNLOOP_RECURSE, 1)); /* assert for side effect */ 2466 assert ((loop_done = EVBREAK_RECURSE, 1)); /* assert for side effect */
2379 backend_poll (EV_A_ waittime); 2467 backend_poll (EV_A_ waittime);
2380 assert ((loop_done = EVUNLOOP_CANCEL, 1)); /* assert for side effect */ 2468 assert ((loop_done = EVBREAK_CANCEL, 1)); /* assert for side effect */
2381 2469
2382 /* update ev_rt_now, do magic */ 2470 /* update ev_rt_now, do magic */
2383 time_update (EV_A_ waittime + sleeptime); 2471 time_update (EV_A_ waittime + sleeptime);
2384 } 2472 }
2385 2473
2392#if EV_IDLE_ENABLE 2480#if EV_IDLE_ENABLE
2393 /* queue idle watchers unless other events are pending */ 2481 /* queue idle watchers unless other events are pending */
2394 idle_reify (EV_A); 2482 idle_reify (EV_A);
2395#endif 2483#endif
2396 2484
2485#if EV_CHECK_ENABLE
2397 /* queue check watchers, to be executed first */ 2486 /* queue check watchers, to be executed first */
2398 if (expect_false (checkcnt)) 2487 if (expect_false (checkcnt))
2399 queue_events (EV_A_ (W *)checks, checkcnt, EV_CHECK); 2488 queue_events (EV_A_ (W *)checks, checkcnt, EV_CHECK);
2489#endif
2400 2490
2401 EV_INVOKE_PENDING; 2491 EV_INVOKE_PENDING;
2402 } 2492 }
2403 while (expect_true ( 2493 while (expect_true (
2404 activecnt 2494 activecnt
2405 && !loop_done 2495 && !loop_done
2406 && !(flags & (EVLOOP_ONESHOT | EVLOOP_NONBLOCK)) 2496 && !(flags & (EVRUN_ONCE | EVRUN_NOWAIT))
2407 )); 2497 ));
2408 2498
2409 if (loop_done == EVUNLOOP_ONE) 2499 if (loop_done == EVBREAK_ONE)
2410 loop_done = EVUNLOOP_CANCEL; 2500 loop_done = EVBREAK_CANCEL;
2411 2501
2412#if EV_MINIMAL < 2 2502#if EV_FEATURE_API
2413 --loop_depth; 2503 --loop_depth;
2414#endif 2504#endif
2415} 2505}
2416 2506
2417void 2507void
2418ev_unloop (EV_P_ int how) 2508ev_break (EV_P_ int how)
2419{ 2509{
2420 loop_done = how; 2510 loop_done = how;
2421} 2511}
2422 2512
2423void 2513void
2571 EV_FREQUENT_CHECK; 2661 EV_FREQUENT_CHECK;
2572 2662
2573 wlist_del (&anfds[w->fd].head, (WL)w); 2663 wlist_del (&anfds[w->fd].head, (WL)w);
2574 ev_stop (EV_A_ (W)w); 2664 ev_stop (EV_A_ (W)w);
2575 2665
2576 fd_change (EV_A_ w->fd, 1); 2666 fd_change (EV_A_ w->fd, EV_ANFD_REIFY);
2577 2667
2578 EV_FREQUENT_CHECK; 2668 EV_FREQUENT_CHECK;
2579} 2669}
2580 2670
2581void noinline 2671void noinline
2805 sa.sa_handler = ev_sighandler; 2895 sa.sa_handler = ev_sighandler;
2806 sigfillset (&sa.sa_mask); 2896 sigfillset (&sa.sa_mask);
2807 sa.sa_flags = SA_RESTART; /* if restarting works we save one iteration */ 2897 sa.sa_flags = SA_RESTART; /* if restarting works we save one iteration */
2808 sigaction (w->signum, &sa, 0); 2898 sigaction (w->signum, &sa, 0);
2809 2899
2900 if (origflags & EVFLAG_NOSIGMASK)
2901 {
2810 sigemptyset (&sa.sa_mask); 2902 sigemptyset (&sa.sa_mask);
2811 sigaddset (&sa.sa_mask, w->signum); 2903 sigaddset (&sa.sa_mask, w->signum);
2812 sigprocmask (SIG_UNBLOCK, &sa.sa_mask, 0); 2904 sigprocmask (SIG_UNBLOCK, &sa.sa_mask, 0);
2905 }
2813#endif 2906#endif
2814 } 2907 }
2815 2908
2816 EV_FREQUENT_CHECK; 2909 EV_FREQUENT_CHECK;
2817} 2910}
2867 return; 2960 return;
2868 2961
2869 EV_FREQUENT_CHECK; 2962 EV_FREQUENT_CHECK;
2870 2963
2871 ev_start (EV_A_ (W)w, 1); 2964 ev_start (EV_A_ (W)w, 1);
2872 wlist_add (&childs [w->pid & (EV_PID_HASHSIZE - 1)], (WL)w); 2965 wlist_add (&childs [w->pid & ((EV_PID_HASHSIZE) - 1)], (WL)w);
2873 2966
2874 EV_FREQUENT_CHECK; 2967 EV_FREQUENT_CHECK;
2875} 2968}
2876 2969
2877void 2970void
2881 if (expect_false (!ev_is_active (w))) 2974 if (expect_false (!ev_is_active (w)))
2882 return; 2975 return;
2883 2976
2884 EV_FREQUENT_CHECK; 2977 EV_FREQUENT_CHECK;
2885 2978
2886 wlist_del (&childs [w->pid & (EV_PID_HASHSIZE - 1)], (WL)w); 2979 wlist_del (&childs [w->pid & ((EV_PID_HASHSIZE) - 1)], (WL)w);
2887 ev_stop (EV_A_ (W)w); 2980 ev_stop (EV_A_ (W)w);
2888 2981
2889 EV_FREQUENT_CHECK; 2982 EV_FREQUENT_CHECK;
2890} 2983}
2891 2984
2964 while (w->wd < 0 && (errno == ENOENT || errno == EACCES)); 3057 while (w->wd < 0 && (errno == ENOENT || errno == EACCES));
2965 } 3058 }
2966 } 3059 }
2967 3060
2968 if (w->wd >= 0) 3061 if (w->wd >= 0)
2969 wlist_add (&fs_hash [w->wd & (EV_INOTIFY_HASHSIZE - 1)].head, (WL)w); 3062 wlist_add (&fs_hash [w->wd & ((EV_INOTIFY_HASHSIZE) - 1)].head, (WL)w);
2970 3063
2971 /* now re-arm timer, if required */ 3064 /* now re-arm timer, if required */
2972 if (ev_is_active (&w->timer)) ev_ref (EV_A); 3065 if (ev_is_active (&w->timer)) ev_ref (EV_A);
2973 ev_timer_again (EV_A_ &w->timer); 3066 ev_timer_again (EV_A_ &w->timer);
2974 if (ev_is_active (&w->timer)) ev_unref (EV_A); 3067 if (ev_is_active (&w->timer)) ev_unref (EV_A);
2982 3075
2983 if (wd < 0) 3076 if (wd < 0)
2984 return; 3077 return;
2985 3078
2986 w->wd = -2; 3079 w->wd = -2;
2987 slot = wd & (EV_INOTIFY_HASHSIZE - 1); 3080 slot = wd & ((EV_INOTIFY_HASHSIZE) - 1);
2988 wlist_del (&fs_hash [slot].head, (WL)w); 3081 wlist_del (&fs_hash [slot].head, (WL)w);
2989 3082
2990 /* remove this watcher, if others are watching it, they will rearm */ 3083 /* remove this watcher, if others are watching it, they will rearm */
2991 inotify_rm_watch (fs_fd, wd); 3084 inotify_rm_watch (fs_fd, wd);
2992} 3085}
2994static void noinline 3087static void noinline
2995infy_wd (EV_P_ int slot, int wd, struct inotify_event *ev) 3088infy_wd (EV_P_ int slot, int wd, struct inotify_event *ev)
2996{ 3089{
2997 if (slot < 0) 3090 if (slot < 0)
2998 /* overflow, need to check for all hash slots */ 3091 /* overflow, need to check for all hash slots */
2999 for (slot = 0; slot < EV_INOTIFY_HASHSIZE; ++slot) 3092 for (slot = 0; slot < (EV_INOTIFY_HASHSIZE); ++slot)
3000 infy_wd (EV_A_ slot, wd, ev); 3093 infy_wd (EV_A_ slot, wd, ev);
3001 else 3094 else
3002 { 3095 {
3003 WL w_; 3096 WL w_;
3004 3097
3005 for (w_ = fs_hash [slot & (EV_INOTIFY_HASHSIZE - 1)].head; w_; ) 3098 for (w_ = fs_hash [slot & ((EV_INOTIFY_HASHSIZE) - 1)].head; w_; )
3006 { 3099 {
3007 ev_stat *w = (ev_stat *)w_; 3100 ev_stat *w = (ev_stat *)w_;
3008 w_ = w_->next; /* lets us remove this watcher and all before it */ 3101 w_ = w_->next; /* lets us remove this watcher and all before it */
3009 3102
3010 if (w->wd == wd || wd == -1) 3103 if (w->wd == wd || wd == -1)
3011 { 3104 {
3012 if (ev->mask & (IN_IGNORED | IN_UNMOUNT | IN_DELETE_SELF)) 3105 if (ev->mask & (IN_IGNORED | IN_UNMOUNT | IN_DELETE_SELF))
3013 { 3106 {
3014 wlist_del (&fs_hash [slot & (EV_INOTIFY_HASHSIZE - 1)].head, (WL)w); 3107 wlist_del (&fs_hash [slot & ((EV_INOTIFY_HASHSIZE) - 1)].head, (WL)w);
3015 w->wd = -1; 3108 w->wd = -1;
3016 infy_add (EV_A_ w); /* re-add, no matter what */ 3109 infy_add (EV_A_ w); /* re-add, no matter what */
3017 } 3110 }
3018 3111
3019 stat_timer_cb (EV_A_ &w->timer, 0); 3112 stat_timer_cb (EV_A_ &w->timer, 0);
3033 { 3126 {
3034 struct inotify_event *ev = (struct inotify_event *)(buf + ofs); 3127 struct inotify_event *ev = (struct inotify_event *)(buf + ofs);
3035 infy_wd (EV_A_ ev->wd, ev->wd, ev); 3128 infy_wd (EV_A_ ev->wd, ev->wd, ev);
3036 ofs += sizeof (struct inotify_event) + ev->len; 3129 ofs += sizeof (struct inotify_event) + ev->len;
3037 } 3130 }
3038}
3039
3040inline_size unsigned int
3041ev_linux_version (void)
3042{
3043 struct utsname buf;
3044 unsigned int v;
3045 int i;
3046 char *p = buf.release;
3047
3048 if (uname (&buf))
3049 return 0;
3050
3051 for (i = 3+1; --i; )
3052 {
3053 unsigned int c = 0;
3054
3055 for (;;)
3056 {
3057 if (*p >= '0' && *p <= '9')
3058 c = c * 10 + *p++ - '0';
3059 else
3060 {
3061 p += *p == '.';
3062 break;
3063 }
3064 }
3065
3066 v = (v << 8) | c;
3067 }
3068
3069 return v;
3070} 3131}
3071 3132
3072inline_size void 3133inline_size void
3073ev_check_2625 (EV_P) 3134ev_check_2625 (EV_P)
3074{ 3135{
3133 ev_io_set (&fs_w, fs_fd, EV_READ); 3194 ev_io_set (&fs_w, fs_fd, EV_READ);
3134 ev_io_start (EV_A_ &fs_w); 3195 ev_io_start (EV_A_ &fs_w);
3135 ev_unref (EV_A); 3196 ev_unref (EV_A);
3136 } 3197 }
3137 3198
3138 for (slot = 0; slot < EV_INOTIFY_HASHSIZE; ++slot) 3199 for (slot = 0; slot < (EV_INOTIFY_HASHSIZE); ++slot)
3139 { 3200 {
3140 WL w_ = fs_hash [slot].head; 3201 WL w_ = fs_hash [slot].head;
3141 fs_hash [slot].head = 0; 3202 fs_hash [slot].head = 0;
3142 3203
3143 while (w_) 3204 while (w_)
3318 3379
3319 EV_FREQUENT_CHECK; 3380 EV_FREQUENT_CHECK;
3320} 3381}
3321#endif 3382#endif
3322 3383
3384#if EV_PREPARE_ENABLE
3323void 3385void
3324ev_prepare_start (EV_P_ ev_prepare *w) 3386ev_prepare_start (EV_P_ ev_prepare *w)
3325{ 3387{
3326 if (expect_false (ev_is_active (w))) 3388 if (expect_false (ev_is_active (w)))
3327 return; 3389 return;
3353 3415
3354 ev_stop (EV_A_ (W)w); 3416 ev_stop (EV_A_ (W)w);
3355 3417
3356 EV_FREQUENT_CHECK; 3418 EV_FREQUENT_CHECK;
3357} 3419}
3420#endif
3358 3421
3422#if EV_CHECK_ENABLE
3359void 3423void
3360ev_check_start (EV_P_ ev_check *w) 3424ev_check_start (EV_P_ ev_check *w)
3361{ 3425{
3362 if (expect_false (ev_is_active (w))) 3426 if (expect_false (ev_is_active (w)))
3363 return; 3427 return;
3389 3453
3390 ev_stop (EV_A_ (W)w); 3454 ev_stop (EV_A_ (W)w);
3391 3455
3392 EV_FREQUENT_CHECK; 3456 EV_FREQUENT_CHECK;
3393} 3457}
3458#endif
3394 3459
3395#if EV_EMBED_ENABLE 3460#if EV_EMBED_ENABLE
3396void noinline 3461void noinline
3397ev_embed_sweep (EV_P_ ev_embed *w) 3462ev_embed_sweep (EV_P_ ev_embed *w)
3398{ 3463{
3399 ev_loop (w->other, EVLOOP_NONBLOCK); 3464 ev_run (w->other, EVRUN_NOWAIT);
3400} 3465}
3401 3466
3402static void 3467static void
3403embed_io_cb (EV_P_ ev_io *io, int revents) 3468embed_io_cb (EV_P_ ev_io *io, int revents)
3404{ 3469{
3405 ev_embed *w = (ev_embed *)(((char *)io) - offsetof (ev_embed, io)); 3470 ev_embed *w = (ev_embed *)(((char *)io) - offsetof (ev_embed, io));
3406 3471
3407 if (ev_cb (w)) 3472 if (ev_cb (w))
3408 ev_feed_event (EV_A_ (W)w, EV_EMBED); 3473 ev_feed_event (EV_A_ (W)w, EV_EMBED);
3409 else 3474 else
3410 ev_loop (w->other, EVLOOP_NONBLOCK); 3475 ev_run (w->other, EVRUN_NOWAIT);
3411} 3476}
3412 3477
3413static void 3478static void
3414embed_prepare_cb (EV_P_ ev_prepare *prepare, int revents) 3479embed_prepare_cb (EV_P_ ev_prepare *prepare, int revents)
3415{ 3480{
3419 EV_P = w->other; 3484 EV_P = w->other;
3420 3485
3421 while (fdchangecnt) 3486 while (fdchangecnt)
3422 { 3487 {
3423 fd_reify (EV_A); 3488 fd_reify (EV_A);
3424 ev_loop (EV_A_ EVLOOP_NONBLOCK); 3489 ev_run (EV_A_ EVRUN_NOWAIT);
3425 } 3490 }
3426 } 3491 }
3427} 3492}
3428 3493
3429static void 3494static void
3435 3500
3436 { 3501 {
3437 EV_P = w->other; 3502 EV_P = w->other;
3438 3503
3439 ev_loop_fork (EV_A); 3504 ev_loop_fork (EV_A);
3440 ev_loop (EV_A_ EVLOOP_NONBLOCK); 3505 ev_run (EV_A_ EVRUN_NOWAIT);
3441 } 3506 }
3442 3507
3443 ev_embed_start (EV_A_ w); 3508 ev_embed_start (EV_A_ w);
3444} 3509}
3445 3510
3537 3602
3538 EV_FREQUENT_CHECK; 3603 EV_FREQUENT_CHECK;
3539} 3604}
3540#endif 3605#endif
3541 3606
3542#if EV_ASYNC_ENABLE 3607#if EV_CLEANUP_ENABLE
3543void 3608void
3544ev_async_start (EV_P_ ev_async *w) 3609ev_cleanup_start (EV_P_ ev_cleanup *w)
3545{ 3610{
3546 if (expect_false (ev_is_active (w))) 3611 if (expect_false (ev_is_active (w)))
3547 return; 3612 return;
3613
3614 EV_FREQUENT_CHECK;
3615
3616 ev_start (EV_A_ (W)w, ++cleanupcnt);
3617 array_needsize (ev_cleanup *, cleanups, cleanupmax, cleanupcnt, EMPTY2);
3618 cleanups [cleanupcnt - 1] = w;
3619
3620 /* cleanup watchers should never keep a refcount on the loop */
3621 ev_unref (EV_A);
3622 EV_FREQUENT_CHECK;
3623}
3624
3625void
3626ev_cleanup_stop (EV_P_ ev_cleanup *w)
3627{
3628 clear_pending (EV_A_ (W)w);
3629 if (expect_false (!ev_is_active (w)))
3630 return;
3631
3632 EV_FREQUENT_CHECK;
3633 ev_ref (EV_A);
3634
3635 {
3636 int active = ev_active (w);
3637
3638 cleanups [active - 1] = cleanups [--cleanupcnt];
3639 ev_active (cleanups [active - 1]) = active;
3640 }
3641
3642 ev_stop (EV_A_ (W)w);
3643
3644 EV_FREQUENT_CHECK;
3645}
3646#endif
3647
3648#if EV_ASYNC_ENABLE
3649void
3650ev_async_start (EV_P_ ev_async *w)
3651{
3652 if (expect_false (ev_is_active (w)))
3653 return;
3654
3655 w->sent = 0;
3548 3656
3549 evpipe_init (EV_A); 3657 evpipe_init (EV_A);
3550 3658
3551 EV_FREQUENT_CHECK; 3659 EV_FREQUENT_CHECK;
3552 3660
3630{ 3738{
3631 struct ev_once *once = (struct ev_once *)ev_malloc (sizeof (struct ev_once)); 3739 struct ev_once *once = (struct ev_once *)ev_malloc (sizeof (struct ev_once));
3632 3740
3633 if (expect_false (!once)) 3741 if (expect_false (!once))
3634 { 3742 {
3635 cb (EV_ERROR | EV_READ | EV_WRITE | EV_TIMEOUT, arg); 3743 cb (EV_ERROR | EV_READ | EV_WRITE | EV_TIMER, arg);
3636 return; 3744 return;
3637 } 3745 }
3638 3746
3639 once->cb = cb; 3747 once->cb = cb;
3640 once->arg = arg; 3748 once->arg = arg;
3727 if (types & EV_ASYNC) 3835 if (types & EV_ASYNC)
3728 for (i = asynccnt; i--; ) 3836 for (i = asynccnt; i--; )
3729 cb (EV_A_ EV_ASYNC, asyncs [i]); 3837 cb (EV_A_ EV_ASYNC, asyncs [i]);
3730#endif 3838#endif
3731 3839
3840#if EV_PREPARE_ENABLE
3732 if (types & EV_PREPARE) 3841 if (types & EV_PREPARE)
3733 for (i = preparecnt; i--; ) 3842 for (i = preparecnt; i--; )
3734#if EV_EMBED_ENABLE 3843# if EV_EMBED_ENABLE
3735 if (ev_cb (prepares [i]) != embed_prepare_cb) 3844 if (ev_cb (prepares [i]) != embed_prepare_cb)
3736#endif 3845# endif
3737 cb (EV_A_ EV_PREPARE, prepares [i]); 3846 cb (EV_A_ EV_PREPARE, prepares [i]);
3847#endif
3738 3848
3849#if EV_CHECK_ENABLE
3739 if (types & EV_CHECK) 3850 if (types & EV_CHECK)
3740 for (i = checkcnt; i--; ) 3851 for (i = checkcnt; i--; )
3741 cb (EV_A_ EV_CHECK, checks [i]); 3852 cb (EV_A_ EV_CHECK, checks [i]);
3853#endif
3742 3854
3855#if EV_SIGNAL_ENABLE
3743 if (types & EV_SIGNAL) 3856 if (types & EV_SIGNAL)
3744 for (i = 0; i < EV_NSIG - 1; ++i) 3857 for (i = 0; i < EV_NSIG - 1; ++i)
3745 for (wl = signals [i].head; wl; ) 3858 for (wl = signals [i].head; wl; )
3746 { 3859 {
3747 wn = wl->next; 3860 wn = wl->next;
3748 cb (EV_A_ EV_SIGNAL, wl); 3861 cb (EV_A_ EV_SIGNAL, wl);
3749 wl = wn; 3862 wl = wn;
3750 } 3863 }
3864#endif
3751 3865
3866#if EV_CHILD_ENABLE
3752 if (types & EV_CHILD) 3867 if (types & EV_CHILD)
3753 for (i = EV_PID_HASHSIZE; i--; ) 3868 for (i = (EV_PID_HASHSIZE); i--; )
3754 for (wl = childs [i]; wl; ) 3869 for (wl = childs [i]; wl; )
3755 { 3870 {
3756 wn = wl->next; 3871 wn = wl->next;
3757 cb (EV_A_ EV_CHILD, wl); 3872 cb (EV_A_ EV_CHILD, wl);
3758 wl = wn; 3873 wl = wn;
3759 } 3874 }
3875#endif
3760/* EV_STAT 0x00001000 /* stat data changed */ 3876/* EV_STAT 0x00001000 /* stat data changed */
3761/* EV_EMBED 0x00010000 /* embedded event loop needs sweep */ 3877/* EV_EMBED 0x00010000 /* embedded event loop needs sweep */
3762} 3878}
3763#endif 3879#endif
3764 3880
3765#if EV_MULTIPLICITY 3881#if EV_MULTIPLICITY
3766 #include "ev_wrap.h" 3882 #include "ev_wrap.h"
3767#endif 3883#endif
3768 3884
3769#ifdef __cplusplus 3885EV_CPP(})
3770}
3771#endif
3772 3886

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