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Comparing libev/ev.c (file contents):
Revision 1.356 by root, Fri Oct 22 11:21:52 2010 UTC vs.
Revision 1.407 by root, Wed Jan 25 01:32:12 2012 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 *
10 * 1. Redistributions of source code must retain the above copyright notice, 10 * 1. Redistributions of source code must retain the above copyright notice,
11 * this list of conditions and the following disclaimer. 11 * this list of conditions and the following disclaimer.
12 * 12 *
13 * 2. Redistributions in binary form must reproduce the above copyright 13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the 14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution. 15 * documentation and/or other materials provided with the distribution.
16 * 16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER- 18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER-
19 * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO 19 * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
20 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE- 20 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE-
21 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 21 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
42# ifdef EV_CONFIG_H 42# ifdef EV_CONFIG_H
43# include EV_CONFIG_H 43# include EV_CONFIG_H
44# else 44# else
45# include "config.h" 45# include "config.h"
46# endif 46# endif
47
48#if HAVE_FLOOR
49# ifndef EV_USE_FLOOR
50# define EV_USE_FLOOR 1
51# endif
52#endif
47 53
48# if HAVE_CLOCK_SYSCALL 54# if HAVE_CLOCK_SYSCALL
49# ifndef EV_USE_CLOCK_SYSCALL 55# ifndef EV_USE_CLOCK_SYSCALL
50# define EV_USE_CLOCK_SYSCALL 1 56# define EV_USE_CLOCK_SYSCALL 1
51# ifndef EV_USE_REALTIME 57# ifndef EV_USE_REALTIME
156# define EV_USE_EVENTFD 0 162# define EV_USE_EVENTFD 0
157# endif 163# endif
158 164
159#endif 165#endif
160 166
161#include <math.h>
162#include <stdlib.h> 167#include <stdlib.h>
163#include <string.h> 168#include <string.h>
164#include <fcntl.h> 169#include <fcntl.h>
165#include <stddef.h> 170#include <stddef.h>
166 171
177#ifdef EV_H 182#ifdef EV_H
178# include EV_H 183# include EV_H
179#else 184#else
180# include "ev.h" 185# include "ev.h"
181#endif 186#endif
182
183EV_CPP(extern "C" {)
184 187
185#ifndef _WIN32 188#ifndef _WIN32
186# include <sys/time.h> 189# include <sys/time.h>
187# include <sys/wait.h> 190# include <sys/wait.h>
188# include <unistd.h> 191# include <unistd.h>
232/* to make it compile regardless, just remove the above line, */ 235/* to make it compile regardless, just remove the above line, */
233/* but consider reporting it, too! :) */ 236/* but consider reporting it, too! :) */
234# define EV_NSIG 65 237# define EV_NSIG 65
235#endif 238#endif
236 239
240#ifndef EV_USE_FLOOR
241# define EV_USE_FLOOR 0
242#endif
243
237#ifndef EV_USE_CLOCK_SYSCALL 244#ifndef EV_USE_CLOCK_SYSCALL
238# if __linux && __GLIBC__ >= 2 245# if __linux && __GLIBC__ >= 2
239# define EV_USE_CLOCK_SYSCALL EV_FEATURE_OS 246# define EV_USE_CLOCK_SYSCALL EV_FEATURE_OS
240# else 247# else
241# define EV_USE_CLOCK_SYSCALL 0 248# define EV_USE_CLOCK_SYSCALL 0
376# undef EV_USE_INOTIFY 383# undef EV_USE_INOTIFY
377# define EV_USE_INOTIFY 0 384# define EV_USE_INOTIFY 0
378#endif 385#endif
379 386
380#if !EV_USE_NANOSLEEP 387#if !EV_USE_NANOSLEEP
381# ifndef _WIN32 388/* hp-ux has it in sys/time.h, which we unconditionally include above */
389# if !defined(_WIN32) && !defined(__hpux)
382# include <sys/select.h> 390# include <sys/select.h>
383# endif 391# endif
384#endif 392#endif
385 393
386#if EV_USE_INOTIFY 394#if EV_USE_INOTIFY
442#else 450#else
443# define EV_FREQUENT_CHECK do { } while (0) 451# define EV_FREQUENT_CHECK do { } while (0)
444#endif 452#endif
445 453
446/* 454/*
447 * This is used to avoid floating point rounding problems. 455 * This is used to work around floating point rounding problems.
448 * It is added to ev_rt_now when scheduling periodics
449 * to ensure progress, time-wise, even when rounding
450 * errors are against us.
451 * This value is good at least till the year 4000. 456 * This value is good at least till the year 4000.
452 * Better solutions welcome.
453 */ 457 */
454#define TIME_EPSILON 0.0001220703125 /* 1/8192 */ 458#define MIN_INTERVAL 0.0001220703125 /* 1/2**13, good till 4000 */
459/*#define MIN_INTERVAL 0.00000095367431640625 /* 1/2**20, good till 2200 */
455 460
456#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */ 461#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */
457#define MAX_BLOCKTIME 59.743 /* never wait longer than this time (to detect time jumps) */ 462#define MAX_BLOCKTIME 59.743 /* never wait longer than this time (to detect time jumps) */
458 463
459#define EV_TV_SET(tv,t) do { tv.tv_sec = (long)t; tv.tv_usec = (long)((t - tv.tv_sec) * 1e6); } while (0) 464#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) 465#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
467/* the following is ecb.h embedded into libev - use update_ev_c to update from an external copy */
468/* ECB.H BEGIN */
469/*
470 * libecb - http://software.schmorp.de/pkg/libecb
471 *
472 * Copyright (©) 2009-2012 Marc Alexander Lehmann <libecb@schmorp.de>
473 * Copyright (©) 2011 Emanuele Giaquinta
474 * All rights reserved.
475 *
476 * Redistribution and use in source and binary forms, with or without modifica-
477 * tion, are permitted provided that the following conditions are met:
478 *
479 * 1. Redistributions of source code must retain the above copyright notice,
480 * this list of conditions and the following disclaimer.
481 *
482 * 2. Redistributions in binary form must reproduce the above copyright
483 * notice, this list of conditions and the following disclaimer in the
484 * documentation and/or other materials provided with the distribution.
485 *
486 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
487 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER-
488 * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
489 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE-
490 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
491 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
492 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
493 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTH-
494 * ERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
495 * OF THE POSSIBILITY OF SUCH DAMAGE.
496 */
497
498#ifndef ECB_H
499#define ECB_H
500
501#ifdef _WIN32
502 typedef signed char int8_t;
503 typedef unsigned char uint8_t;
504 typedef signed short int16_t;
505 typedef unsigned short uint16_t;
506 typedef signed int int32_t;
507 typedef unsigned int uint32_t;
462#if __GNUC__ >= 4 508 #if __GNUC__
463# define expect(expr,value) __builtin_expect ((expr),(value)) 509 typedef signed long long int64_t;
464# define noinline __attribute__ ((noinline)) 510 typedef unsigned long long uint64_t;
511 #else /* _MSC_VER || __BORLANDC__ */
512 typedef signed __int64 int64_t;
513 typedef unsigned __int64 uint64_t;
514 #endif
465#else 515#else
466# define expect(expr,value) (expr) 516 #include <inttypes.h>
467# define noinline
468# if __STDC_VERSION__ < 199901L && __GNUC__ < 2
469# define inline
470# endif 517#endif
518
519/* many compilers define _GNUC_ to some versions but then only implement
520 * what their idiot authors think are the "more important" extensions,
521 * causing enormous grief in return for some better fake benchmark numbers.
522 * or so.
523 * we try to detect these and simply assume they are not gcc - if they have
524 * an issue with that they should have done it right in the first place.
525 */
526#ifndef ECB_GCC_VERSION
527 #if !defined(__GNUC_MINOR__) || defined(__INTEL_COMPILER) || defined(__SUNPRO_C) || defined(__SUNPRO_CC) || defined(__llvm__) || defined(__clang__)
528 #define ECB_GCC_VERSION(major,minor) 0
529 #else
530 #define ECB_GCC_VERSION(major,minor) (__GNUC__ > (major) || (__GNUC__ == (major) && __GNUC_MINOR__ >= (minor)))
471#endif 531 #endif
532#endif
472 533
534/*****************************************************************************/
535
536/* ECB_NO_THREADS - ecb is not used by multiple threads, ever */
537/* ECB_NO_SMP - ecb might be used in multiple threads, but only on a single cpu */
538
539#if ECB_NO_THREADS || ECB_NO_SMP
540 #define ECB_MEMORY_FENCE do { } while (0)
541#endif
542
543#ifndef ECB_MEMORY_FENCE
544 #if ECB_GCC_VERSION(2,5) || defined(__INTEL_COMPILER) || defined(__clang__) || __SUNPRO_C >= 0x5110 || __SUNPRO_CC >= 0x5110
545 #if __i386 || __i386__
546 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("lock; orb $0, -1(%%esp)" : : : "memory")
547 #define ECB_MEMORY_FENCE_ACQUIRE ECB_MEMORY_FENCE /* non-lock xchg might be enough */
548 #define ECB_MEMORY_FENCE_RELEASE do { } while (0) /* unlikely to change in future cpus */
549 #elif __amd64 || __amd64__ || __x86_64 || __x86_64__
550 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("mfence" : : : "memory")
551 #define ECB_MEMORY_FENCE_ACQUIRE __asm__ __volatile__ ("lfence" : : : "memory")
552 #define ECB_MEMORY_FENCE_RELEASE __asm__ __volatile__ ("sfence") /* play safe - not needed in any current cpu */
553 #elif __powerpc__ || __ppc__ || __powerpc64__ || __ppc64__
554 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("sync" : : : "memory")
555 #elif defined(__ARM_ARCH_6__ ) || defined(__ARM_ARCH_6J__ ) \
556 || defined(__ARM_ARCH_6K__) || defined(__ARM_ARCH_6ZK__)
557 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("mcr p15,0,%0,c7,c10,5" : : "r" (0) : "memory")
558 #elif defined(__ARM_ARCH_7__ ) || defined(__ARM_ARCH_7A__ ) \
559 || defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7R__ )
560 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("dmb" : : : "memory")
561 #elif __sparc || __sparc__
562 #define ECB_MEMORY_FENCE __asm__ __volatile__ ("membar #LoadStore | #LoadLoad | #StoreStore | #StoreLoad | " : : : "memory")
563 #define ECB_MEMORY_FENCE_ACQUIRE __asm__ __volatile__ ("membar #LoadStore | #LoadLoad" : : : "memory")
564 #define ECB_MEMORY_FENCE_RELEASE __asm__ __volatile__ ("membar #LoadStore | #StoreStore")
565 #endif
566 #endif
567#endif
568
569#ifndef ECB_MEMORY_FENCE
570 #if ECB_GCC_VERSION(4,4) || defined(__INTEL_COMPILER) || defined(__clang__)
571 #define ECB_MEMORY_FENCE __sync_synchronize ()
572 /*#define ECB_MEMORY_FENCE_ACQUIRE ({ char dummy = 0; __sync_lock_test_and_set (&dummy, 1); }) */
573 /*#define ECB_MEMORY_FENCE_RELEASE ({ char dummy = 1; __sync_lock_release (&dummy ); }) */
574 #elif _MSC_VER >= 1400 /* VC++ 2005 */
575 #pragma intrinsic(_ReadBarrier,_WriteBarrier,_ReadWriteBarrier)
576 #define ECB_MEMORY_FENCE _ReadWriteBarrier ()
577 #define ECB_MEMORY_FENCE_ACQUIRE _ReadWriteBarrier () /* according to msdn, _ReadBarrier is not a load fence */
578 #define ECB_MEMORY_FENCE_RELEASE _WriteBarrier ()
579 #elif defined(_WIN32)
580 #include <WinNT.h>
581 #define ECB_MEMORY_FENCE MemoryBarrier () /* actually just xchg on x86... scary */
582 #elif __SUNPRO_C >= 0x5110 || __SUNPRO_CC >= 0x5110
583 #include <mbarrier.h>
584 #define ECB_MEMORY_FENCE __machine_rw_barrier ()
585 #define ECB_MEMORY_FENCE_ACQUIRE __machine_r_barrier ()
586 #define ECB_MEMORY_FENCE_RELEASE __machine_w_barrier ()
587 #endif
588#endif
589
590#ifndef ECB_MEMORY_FENCE
591 #if !ECB_AVOID_PTHREADS
592 /*
593 * if you get undefined symbol references to pthread_mutex_lock,
594 * or failure to find pthread.h, then you should implement
595 * the ECB_MEMORY_FENCE operations for your cpu/compiler
596 * OR provide pthread.h and link against the posix thread library
597 * of your system.
598 */
599 #include <pthread.h>
600 #define ECB_NEEDS_PTHREADS 1
601 #define ECB_MEMORY_FENCE_NEEDS_PTHREADS 1
602
603 static pthread_mutex_t ecb_mf_lock = PTHREAD_MUTEX_INITIALIZER;
604 #define ECB_MEMORY_FENCE do { pthread_mutex_lock (&ecb_mf_lock); pthread_mutex_unlock (&ecb_mf_lock); } while (0)
605 #endif
606#endif
607
608#if !defined(ECB_MEMORY_FENCE_ACQUIRE) && defined(ECB_MEMORY_FENCE)
609 #define ECB_MEMORY_FENCE_ACQUIRE ECB_MEMORY_FENCE
610#endif
611
612#if !defined(ECB_MEMORY_FENCE_RELEASE) && defined(ECB_MEMORY_FENCE)
613 #define ECB_MEMORY_FENCE_RELEASE ECB_MEMORY_FENCE
614#endif
615
616/*****************************************************************************/
617
618#define ECB_C99 (__STDC_VERSION__ >= 199901L)
619
620#if __cplusplus
621 #define ecb_inline static inline
622#elif ECB_GCC_VERSION(2,5)
623 #define ecb_inline static __inline__
624#elif ECB_C99
625 #define ecb_inline static inline
626#else
627 #define ecb_inline static
628#endif
629
630#if ECB_GCC_VERSION(3,3)
631 #define ecb_restrict __restrict__
632#elif ECB_C99
633 #define ecb_restrict restrict
634#else
635 #define ecb_restrict
636#endif
637
638typedef int ecb_bool;
639
640#define ECB_CONCAT_(a, b) a ## b
641#define ECB_CONCAT(a, b) ECB_CONCAT_(a, b)
642#define ECB_STRINGIFY_(a) # a
643#define ECB_STRINGIFY(a) ECB_STRINGIFY_(a)
644
645#define ecb_function_ ecb_inline
646
647#if ECB_GCC_VERSION(3,1)
648 #define ecb_attribute(attrlist) __attribute__(attrlist)
649 #define ecb_is_constant(expr) __builtin_constant_p (expr)
650 #define ecb_expect(expr,value) __builtin_expect ((expr),(value))
651 #define ecb_prefetch(addr,rw,locality) __builtin_prefetch (addr, rw, locality)
652#else
653 #define ecb_attribute(attrlist)
654 #define ecb_is_constant(expr) 0
655 #define ecb_expect(expr,value) (expr)
656 #define ecb_prefetch(addr,rw,locality)
657#endif
658
659/* no emulation for ecb_decltype */
660#if ECB_GCC_VERSION(4,5)
661 #define ecb_decltype(x) __decltype(x)
662#elif ECB_GCC_VERSION(3,0)
663 #define ecb_decltype(x) __typeof(x)
664#endif
665
666#define ecb_noinline ecb_attribute ((__noinline__))
667#define ecb_noreturn ecb_attribute ((__noreturn__))
668#define ecb_unused ecb_attribute ((__unused__))
669#define ecb_const ecb_attribute ((__const__))
670#define ecb_pure ecb_attribute ((__pure__))
671
672#if ECB_GCC_VERSION(4,3)
673 #define ecb_artificial ecb_attribute ((__artificial__))
674 #define ecb_hot ecb_attribute ((__hot__))
675 #define ecb_cold ecb_attribute ((__cold__))
676#else
677 #define ecb_artificial
678 #define ecb_hot
679 #define ecb_cold
680#endif
681
682/* put around conditional expressions if you are very sure that the */
683/* expression is mostly true or mostly false. note that these return */
684/* booleans, not the expression. */
473#define expect_false(expr) expect ((expr) != 0, 0) 685#define ecb_expect_false(expr) ecb_expect (!!(expr), 0)
474#define expect_true(expr) expect ((expr) != 0, 1) 686#define ecb_expect_true(expr) ecb_expect (!!(expr), 1)
687/* for compatibility to the rest of the world */
688#define ecb_likely(expr) ecb_expect_true (expr)
689#define ecb_unlikely(expr) ecb_expect_false (expr)
690
691/* count trailing zero bits and count # of one bits */
692#if ECB_GCC_VERSION(3,4)
693 /* we assume int == 32 bit, long == 32 or 64 bit and long long == 64 bit */
694 #define ecb_ld32(x) (__builtin_clz (x) ^ 31)
695 #define ecb_ld64(x) (__builtin_clzll (x) ^ 63)
696 #define ecb_ctz32(x) __builtin_ctz (x)
697 #define ecb_ctz64(x) __builtin_ctzll (x)
698 #define ecb_popcount32(x) __builtin_popcount (x)
699 /* no popcountll */
700#else
701 ecb_function_ int ecb_ctz32 (uint32_t x) ecb_const;
702 ecb_function_ int
703 ecb_ctz32 (uint32_t x)
704 {
705 int r = 0;
706
707 x &= ~x + 1; /* this isolates the lowest bit */
708
709#if ECB_branchless_on_i386
710 r += !!(x & 0xaaaaaaaa) << 0;
711 r += !!(x & 0xcccccccc) << 1;
712 r += !!(x & 0xf0f0f0f0) << 2;
713 r += !!(x & 0xff00ff00) << 3;
714 r += !!(x & 0xffff0000) << 4;
715#else
716 if (x & 0xaaaaaaaa) r += 1;
717 if (x & 0xcccccccc) r += 2;
718 if (x & 0xf0f0f0f0) r += 4;
719 if (x & 0xff00ff00) r += 8;
720 if (x & 0xffff0000) r += 16;
721#endif
722
723 return r;
724 }
725
726 ecb_function_ int ecb_ctz64 (uint64_t x) ecb_const;
727 ecb_function_ int
728 ecb_ctz64 (uint64_t x)
729 {
730 int shift = x & 0xffffffffU ? 0 : 32;
731 return ecb_ctz32 (x >> shift) + shift;
732 }
733
734 ecb_function_ int ecb_popcount32 (uint32_t x) ecb_const;
735 ecb_function_ int
736 ecb_popcount32 (uint32_t x)
737 {
738 x -= (x >> 1) & 0x55555555;
739 x = ((x >> 2) & 0x33333333) + (x & 0x33333333);
740 x = ((x >> 4) + x) & 0x0f0f0f0f;
741 x *= 0x01010101;
742
743 return x >> 24;
744 }
745
746 ecb_function_ int ecb_ld32 (uint32_t x) ecb_const;
747 ecb_function_ int ecb_ld32 (uint32_t x)
748 {
749 int r = 0;
750
751 if (x >> 16) { x >>= 16; r += 16; }
752 if (x >> 8) { x >>= 8; r += 8; }
753 if (x >> 4) { x >>= 4; r += 4; }
754 if (x >> 2) { x >>= 2; r += 2; }
755 if (x >> 1) { r += 1; }
756
757 return r;
758 }
759
760 ecb_function_ int ecb_ld64 (uint64_t x) ecb_const;
761 ecb_function_ int ecb_ld64 (uint64_t x)
762 {
763 int r = 0;
764
765 if (x >> 32) { x >>= 32; r += 32; }
766
767 return r + ecb_ld32 (x);
768 }
769#endif
770
771ecb_function_ uint8_t ecb_bitrev8 (uint8_t x) ecb_const;
772ecb_function_ uint8_t ecb_bitrev8 (uint8_t x)
773{
774 return ( (x * 0x0802U & 0x22110U)
775 | (x * 0x8020U & 0x88440U)) * 0x10101U >> 16;
776}
777
778ecb_function_ uint16_t ecb_bitrev16 (uint16_t x) ecb_const;
779ecb_function_ uint16_t ecb_bitrev16 (uint16_t x)
780{
781 x = ((x >> 1) & 0x5555) | ((x & 0x5555) << 1);
782 x = ((x >> 2) & 0x3333) | ((x & 0x3333) << 2);
783 x = ((x >> 4) & 0x0f0f) | ((x & 0x0f0f) << 4);
784 x = ( x >> 8 ) | ( x << 8);
785
786 return x;
787}
788
789ecb_function_ uint32_t ecb_bitrev32 (uint32_t x) ecb_const;
790ecb_function_ uint32_t ecb_bitrev32 (uint32_t x)
791{
792 x = ((x >> 1) & 0x55555555) | ((x & 0x55555555) << 1);
793 x = ((x >> 2) & 0x33333333) | ((x & 0x33333333) << 2);
794 x = ((x >> 4) & 0x0f0f0f0f) | ((x & 0x0f0f0f0f) << 4);
795 x = ((x >> 8) & 0x00ff00ff) | ((x & 0x00ff00ff) << 8);
796 x = ( x >> 16 ) | ( x << 16);
797
798 return x;
799}
800
801/* popcount64 is only available on 64 bit cpus as gcc builtin */
802/* so for this version we are lazy */
803ecb_function_ int ecb_popcount64 (uint64_t x) ecb_const;
804ecb_function_ int
805ecb_popcount64 (uint64_t x)
806{
807 return ecb_popcount32 (x) + ecb_popcount32 (x >> 32);
808}
809
810ecb_inline uint8_t ecb_rotl8 (uint8_t x, unsigned int count) ecb_const;
811ecb_inline uint8_t ecb_rotr8 (uint8_t x, unsigned int count) ecb_const;
812ecb_inline uint16_t ecb_rotl16 (uint16_t x, unsigned int count) ecb_const;
813ecb_inline uint16_t ecb_rotr16 (uint16_t x, unsigned int count) ecb_const;
814ecb_inline uint32_t ecb_rotl32 (uint32_t x, unsigned int count) ecb_const;
815ecb_inline uint32_t ecb_rotr32 (uint32_t x, unsigned int count) ecb_const;
816ecb_inline uint64_t ecb_rotl64 (uint64_t x, unsigned int count) ecb_const;
817ecb_inline uint64_t ecb_rotr64 (uint64_t x, unsigned int count) ecb_const;
818
819ecb_inline uint8_t ecb_rotl8 (uint8_t x, unsigned int count) { return (x >> ( 8 - count)) | (x << count); }
820ecb_inline uint8_t ecb_rotr8 (uint8_t x, unsigned int count) { return (x << ( 8 - count)) | (x >> count); }
821ecb_inline uint16_t ecb_rotl16 (uint16_t x, unsigned int count) { return (x >> (16 - count)) | (x << count); }
822ecb_inline uint16_t ecb_rotr16 (uint16_t x, unsigned int count) { return (x << (16 - count)) | (x >> count); }
823ecb_inline uint32_t ecb_rotl32 (uint32_t x, unsigned int count) { return (x >> (32 - count)) | (x << count); }
824ecb_inline uint32_t ecb_rotr32 (uint32_t x, unsigned int count) { return (x << (32 - count)) | (x >> count); }
825ecb_inline uint64_t ecb_rotl64 (uint64_t x, unsigned int count) { return (x >> (64 - count)) | (x << count); }
826ecb_inline uint64_t ecb_rotr64 (uint64_t x, unsigned int count) { return (x << (64 - count)) | (x >> count); }
827
828#if ECB_GCC_VERSION(4,3)
829 #define ecb_bswap16(x) (__builtin_bswap32 (x) >> 16)
830 #define ecb_bswap32(x) __builtin_bswap32 (x)
831 #define ecb_bswap64(x) __builtin_bswap64 (x)
832#else
833 ecb_function_ uint16_t ecb_bswap16 (uint16_t x) ecb_const;
834 ecb_function_ uint16_t
835 ecb_bswap16 (uint16_t x)
836 {
837 return ecb_rotl16 (x, 8);
838 }
839
840 ecb_function_ uint32_t ecb_bswap32 (uint32_t x) ecb_const;
841 ecb_function_ uint32_t
842 ecb_bswap32 (uint32_t x)
843 {
844 return (((uint32_t)ecb_bswap16 (x)) << 16) | ecb_bswap16 (x >> 16);
845 }
846
847 ecb_function_ uint64_t ecb_bswap64 (uint64_t x) ecb_const;
848 ecb_function_ uint64_t
849 ecb_bswap64 (uint64_t x)
850 {
851 return (((uint64_t)ecb_bswap32 (x)) << 32) | ecb_bswap32 (x >> 32);
852 }
853#endif
854
855#if ECB_GCC_VERSION(4,5)
856 #define ecb_unreachable() __builtin_unreachable ()
857#else
858 /* this seems to work fine, but gcc always emits a warning for it :/ */
859 ecb_function_ void ecb_unreachable (void) ecb_noreturn;
860 ecb_function_ void ecb_unreachable (void) { }
861#endif
862
863/* try to tell the compiler that some condition is definitely true */
864#define ecb_assume(cond) do { if (!(cond)) ecb_unreachable (); } while (0)
865
866ecb_function_ unsigned char ecb_byteorder_helper (void) ecb_const;
867ecb_function_ unsigned char
868ecb_byteorder_helper (void)
869{
870 const uint32_t u = 0x11223344;
871 return *(unsigned char *)&u;
872}
873
874ecb_function_ ecb_bool ecb_big_endian (void) ecb_const;
875ecb_function_ ecb_bool ecb_big_endian (void) { return ecb_byteorder_helper () == 0x11; }
876ecb_function_ ecb_bool ecb_little_endian (void) ecb_const;
877ecb_function_ ecb_bool ecb_little_endian (void) { return ecb_byteorder_helper () == 0x44; }
878
879#if ECB_GCC_VERSION(3,0) || ECB_C99
880 #define ecb_mod(m,n) ((m) % (n) + ((m) % (n) < 0 ? (n) : 0))
881#else
882 #define ecb_mod(m,n) ((m) < 0 ? ((n) - 1 - ((-1 - (m)) % (n))) : ((m) % (n)))
883#endif
884
885#if __cplusplus
886 template<typename T>
887 static inline T ecb_div_rd (T val, T div)
888 {
889 return val < 0 ? - ((-val + div - 1) / div) : (val ) / div;
890 }
891 template<typename T>
892 static inline T ecb_div_ru (T val, T div)
893 {
894 return val < 0 ? - ((-val ) / div) : (val + div - 1) / div;
895 }
896#else
897 #define ecb_div_rd(val,div) ((val) < 0 ? - ((-(val) + (div) - 1) / (div)) : ((val) ) / (div))
898 #define ecb_div_ru(val,div) ((val) < 0 ? - ((-(val) ) / (div)) : ((val) + (div) - 1) / (div))
899#endif
900
901#if ecb_cplusplus_does_not_suck
902 /* does not work for local types (http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2008/n2657.htm) */
903 template<typename T, int N>
904 static inline int ecb_array_length (const T (&arr)[N])
905 {
906 return N;
907 }
908#else
909 #define ecb_array_length(name) (sizeof (name) / sizeof (name [0]))
910#endif
911
912#endif
913
914/* ECB.H END */
915
916#if ECB_MEMORY_FENCE_NEEDS_PTHREADS
917/* if your architecture doesn't need memory fences, e.g. because it is
918 * single-cpu/core, or if you use libev in a project that doesn't use libev
919 * from multiple threads, then you can define ECB_AVOID_PTHREADS when compiling
920 * libev, in which cases the memory fences become nops.
921 * alternatively, you can remove this #error and link against libpthread,
922 * which will then provide the memory fences.
923 */
924# error "memory fences not defined for your architecture, please report"
925#endif
926
927#ifndef ECB_MEMORY_FENCE
928# define ECB_MEMORY_FENCE do { } while (0)
929# define ECB_MEMORY_FENCE_ACQUIRE ECB_MEMORY_FENCE
930# define ECB_MEMORY_FENCE_RELEASE ECB_MEMORY_FENCE
931#endif
932
933#define expect_false(cond) ecb_expect_false (cond)
934#define expect_true(cond) ecb_expect_true (cond)
935#define noinline ecb_noinline
936
475#define inline_size static inline 937#define inline_size ecb_inline
476 938
477#if EV_FEATURE_CODE 939#if EV_FEATURE_CODE
478# define inline_speed static inline 940# define inline_speed ecb_inline
479#else 941#else
480# define inline_speed static noinline 942# define inline_speed static noinline
481#endif 943#endif
482 944
483#define NUMPRI (EV_MAXPRI - EV_MINPRI + 1) 945#define NUMPRI (EV_MAXPRI - EV_MINPRI + 1)
522# include "ev_win32.c" 984# include "ev_win32.c"
523#endif 985#endif
524 986
525/*****************************************************************************/ 987/*****************************************************************************/
526 988
989/* define a suitable floor function (only used by periodics atm) */
990
991#if EV_USE_FLOOR
992# include <math.h>
993# define ev_floor(v) floor (v)
994#else
995
996#include <float.h>
997
998/* a floor() replacement function, should be independent of ev_tstamp type */
999static ev_tstamp noinline
1000ev_floor (ev_tstamp v)
1001{
1002 /* the choice of shift factor is not terribly important */
1003#if FLT_RADIX != 2 /* assume FLT_RADIX == 10 */
1004 const ev_tstamp shift = sizeof (unsigned long) >= 8 ? 10000000000000000000. : 1000000000.;
1005#else
1006 const ev_tstamp shift = sizeof (unsigned long) >= 8 ? 18446744073709551616. : 4294967296.;
1007#endif
1008
1009 /* argument too large for an unsigned long? */
1010 if (expect_false (v >= shift))
1011 {
1012 ev_tstamp f;
1013
1014 if (v == v - 1.)
1015 return v; /* very large number */
1016
1017 f = shift * ev_floor (v * (1. / shift));
1018 return f + ev_floor (v - f);
1019 }
1020
1021 /* special treatment for negative args? */
1022 if (expect_false (v < 0.))
1023 {
1024 ev_tstamp f = -ev_floor (-v);
1025
1026 return f - (f == v ? 0 : 1);
1027 }
1028
1029 /* fits into an unsigned long */
1030 return (unsigned long)v;
1031}
1032
1033#endif
1034
1035/*****************************************************************************/
1036
527#ifdef __linux 1037#ifdef __linux
528# include <sys/utsname.h> 1038# include <sys/utsname.h>
529#endif 1039#endif
530 1040
531static unsigned int noinline 1041static unsigned int noinline ecb_cold
532ev_linux_version (void) 1042ev_linux_version (void)
533{ 1043{
534#ifdef __linux 1044#ifdef __linux
1045 unsigned int v = 0;
535 struct utsname buf; 1046 struct utsname buf;
536 unsigned int v;
537 int i; 1047 int i;
538 char *p = buf.release; 1048 char *p = buf.release;
539 1049
540 if (uname (&buf)) 1050 if (uname (&buf))
541 return 0; 1051 return 0;
565} 1075}
566 1076
567/*****************************************************************************/ 1077/*****************************************************************************/
568 1078
569#if EV_AVOID_STDIO 1079#if EV_AVOID_STDIO
570static void noinline 1080static void noinline ecb_cold
571ev_printerr (const char *msg) 1081ev_printerr (const char *msg)
572{ 1082{
573 write (STDERR_FILENO, msg, strlen (msg)); 1083 write (STDERR_FILENO, msg, strlen (msg));
574} 1084}
575#endif 1085#endif
576 1086
577static void (*syserr_cb)(const char *msg); 1087static void (*syserr_cb)(const char *msg);
578 1088
579void 1089void ecb_cold
580ev_set_syserr_cb (void (*cb)(const char *msg)) 1090ev_set_syserr_cb (void (*cb)(const char *msg))
581{ 1091{
582 syserr_cb = cb; 1092 syserr_cb = cb;
583} 1093}
584 1094
585static void noinline 1095static void noinline ecb_cold
586ev_syserr (const char *msg) 1096ev_syserr (const char *msg)
587{ 1097{
588 if (!msg) 1098 if (!msg)
589 msg = "(libev) system error"; 1099 msg = "(libev) system error";
590 1100
591 if (syserr_cb) 1101 if (syserr_cb)
592 syserr_cb (msg); 1102 syserr_cb (msg);
593 else 1103 else
594 { 1104 {
595#if EV_AVOID_STDIO 1105#if EV_AVOID_STDIO
596 const char *err = strerror (errno);
597
598 ev_printerr (msg); 1106 ev_printerr (msg);
599 ev_printerr (": "); 1107 ev_printerr (": ");
600 ev_printerr (err); 1108 ev_printerr (strerror (errno));
601 ev_printerr ("\n"); 1109 ev_printerr ("\n");
602#else 1110#else
603 perror (msg); 1111 perror (msg);
604#endif 1112#endif
605 abort (); 1113 abort ();
625#endif 1133#endif
626} 1134}
627 1135
628static void *(*alloc)(void *ptr, long size) = ev_realloc_emul; 1136static void *(*alloc)(void *ptr, long size) = ev_realloc_emul;
629 1137
630void 1138void ecb_cold
631ev_set_allocator (void *(*cb)(void *ptr, long size)) 1139ev_set_allocator (void *(*cb)(void *ptr, long size))
632{ 1140{
633 alloc = cb; 1141 alloc = cb;
634} 1142}
635 1143
639 ptr = alloc (ptr, size); 1147 ptr = alloc (ptr, size);
640 1148
641 if (!ptr && size) 1149 if (!ptr && size)
642 { 1150 {
643#if EV_AVOID_STDIO 1151#if EV_AVOID_STDIO
644 ev_printerr ("libev: memory allocation failed, aborting.\n"); 1152 ev_printerr ("(libev) memory allocation failed, aborting.\n");
645#else 1153#else
646 fprintf (stderr, "libev: cannot allocate %ld bytes, aborting.", size); 1154 fprintf (stderr, "(libev) cannot allocate %ld bytes, aborting.", size);
647#endif 1155#endif
648 abort (); 1156 abort ();
649 } 1157 }
650 1158
651 return ptr; 1159 return ptr;
668 unsigned char emask; /* the epoll backend stores the actual kernel mask in here */ 1176 unsigned char emask; /* the epoll backend stores the actual kernel mask in here */
669 unsigned char unused; 1177 unsigned char unused;
670#if EV_USE_EPOLL 1178#if EV_USE_EPOLL
671 unsigned int egen; /* generation counter to counter epoll bugs */ 1179 unsigned int egen; /* generation counter to counter epoll bugs */
672#endif 1180#endif
673#if EV_SELECT_IS_WINSOCKET 1181#if EV_SELECT_IS_WINSOCKET || EV_USE_IOCP
674 SOCKET handle; 1182 SOCKET handle;
1183#endif
1184#if EV_USE_IOCP
1185 OVERLAPPED or, ow;
675#endif 1186#endif
676} ANFD; 1187} ANFD;
677 1188
678/* stores the pending event set for a given watcher */ 1189/* stores the pending event set for a given watcher */
679typedef struct 1190typedef struct
721 #undef VAR 1232 #undef VAR
722 }; 1233 };
723 #include "ev_wrap.h" 1234 #include "ev_wrap.h"
724 1235
725 static struct ev_loop default_loop_struct; 1236 static struct ev_loop default_loop_struct;
726 struct ev_loop *ev_default_loop_ptr; 1237 EV_API_DECL struct ev_loop *ev_default_loop_ptr = 0; /* needs to be initialised to make it a definition despite extern */
727 1238
728#else 1239#else
729 1240
730 ev_tstamp ev_rt_now; 1241 EV_API_DECL ev_tstamp ev_rt_now = 0; /* needs to be initialised to make it a definition despite extern */
731 #define VAR(name,decl) static decl; 1242 #define VAR(name,decl) static decl;
732 #include "ev_vars.h" 1243 #include "ev_vars.h"
733 #undef VAR 1244 #undef VAR
734 1245
735 static int ev_default_loop_ptr; 1246 static int ev_default_loop_ptr;
829 1340
830 do 1341 do
831 ncur <<= 1; 1342 ncur <<= 1;
832 while (cnt > ncur); 1343 while (cnt > ncur);
833 1344
834 /* if size is large, round to MALLOC_ROUND - 4 * longs to accomodate malloc overhead */ 1345 /* if size is large, round to MALLOC_ROUND - 4 * longs to accommodate malloc overhead */
835 if (elem * ncur > MALLOC_ROUND - sizeof (void *) * 4) 1346 if (elem * ncur > MALLOC_ROUND - sizeof (void *) * 4)
836 { 1347 {
837 ncur *= elem; 1348 ncur *= elem;
838 ncur = (ncur + elem + (MALLOC_ROUND - 1) + sizeof (void *) * 4) & ~(MALLOC_ROUND - 1); 1349 ncur = (ncur + elem + (MALLOC_ROUND - 1) + sizeof (void *) * 4) & ~(MALLOC_ROUND - 1);
839 ncur = ncur - sizeof (void *) * 4; 1350 ncur = ncur - sizeof (void *) * 4;
841 } 1352 }
842 1353
843 return ncur; 1354 return ncur;
844} 1355}
845 1356
846static noinline void * 1357static void * noinline ecb_cold
847array_realloc (int elem, void *base, int *cur, int cnt) 1358array_realloc (int elem, void *base, int *cur, int cnt)
848{ 1359{
849 *cur = array_nextsize (elem, *cur, cnt); 1360 *cur = array_nextsize (elem, *cur, cnt);
850 return ev_realloc (base, elem * *cur); 1361 return ev_realloc (base, elem * *cur);
851} 1362}
854 memset ((void *)(base), 0, sizeof (*(base)) * (count)) 1365 memset ((void *)(base), 0, sizeof (*(base)) * (count))
855 1366
856#define array_needsize(type,base,cur,cnt,init) \ 1367#define array_needsize(type,base,cur,cnt,init) \
857 if (expect_false ((cnt) > (cur))) \ 1368 if (expect_false ((cnt) > (cur))) \
858 { \ 1369 { \
859 int ocur_ = (cur); \ 1370 int ecb_unused ocur_ = (cur); \
860 (base) = (type *)array_realloc \ 1371 (base) = (type *)array_realloc \
861 (sizeof (type), (base), &(cur), (cnt)); \ 1372 (sizeof (type), (base), &(cur), (cnt)); \
862 init ((base) + (ocur_), (cur) - ocur_); \ 1373 init ((base) + (ocur_), (cur) - ocur_); \
863 } 1374 }
864 1375
964inline_size void 1475inline_size void
965fd_reify (EV_P) 1476fd_reify (EV_P)
966{ 1477{
967 int i; 1478 int i;
968 1479
1480#if EV_SELECT_IS_WINSOCKET || EV_USE_IOCP
1481 for (i = 0; i < fdchangecnt; ++i)
1482 {
1483 int fd = fdchanges [i];
1484 ANFD *anfd = anfds + fd;
1485
1486 if (anfd->reify & EV__IOFDSET && anfd->head)
1487 {
1488 SOCKET handle = EV_FD_TO_WIN32_HANDLE (fd);
1489
1490 if (handle != anfd->handle)
1491 {
1492 unsigned long arg;
1493
1494 assert (("libev: only socket fds supported in this configuration", ioctlsocket (handle, FIONREAD, &arg) == 0));
1495
1496 /* handle changed, but fd didn't - we need to do it in two steps */
1497 backend_modify (EV_A_ fd, anfd->events, 0);
1498 anfd->events = 0;
1499 anfd->handle = handle;
1500 }
1501 }
1502 }
1503#endif
1504
969 for (i = 0; i < fdchangecnt; ++i) 1505 for (i = 0; i < fdchangecnt; ++i)
970 { 1506 {
971 int fd = fdchanges [i]; 1507 int fd = fdchanges [i];
972 ANFD *anfd = anfds + fd; 1508 ANFD *anfd = anfds + fd;
973 ev_io *w; 1509 ev_io *w;
975 unsigned char o_events = anfd->events; 1511 unsigned char o_events = anfd->events;
976 unsigned char o_reify = anfd->reify; 1512 unsigned char o_reify = anfd->reify;
977 1513
978 anfd->reify = 0; 1514 anfd->reify = 0;
979 1515
980#if EV_SELECT_IS_WINSOCKET
981 if (o_reify & EV__IOFDSET)
982 {
983 unsigned long arg;
984 anfd->handle = EV_FD_TO_WIN32_HANDLE (fd);
985 assert (("libev: only socket fds supported in this configuration", ioctlsocket (anfd->handle, FIONREAD, &arg) == 0));
986 }
987#endif
988
989 /*if (expect_true (o_reify & EV_ANFD_REIFY)) probably a deoptimisation */ 1516 /*if (expect_true (o_reify & EV_ANFD_REIFY)) probably a deoptimisation */
990 { 1517 {
991 anfd->events = 0; 1518 anfd->events = 0;
992 1519
993 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next) 1520 for (w = (ev_io *)anfd->head; w; w = (ev_io *)((WL)w)->next)
1018 fdchanges [fdchangecnt - 1] = fd; 1545 fdchanges [fdchangecnt - 1] = fd;
1019 } 1546 }
1020} 1547}
1021 1548
1022/* the given fd is invalid/unusable, so make sure it doesn't hurt us anymore */ 1549/* the given fd is invalid/unusable, so make sure it doesn't hurt us anymore */
1023inline_speed void 1550inline_speed void ecb_cold
1024fd_kill (EV_P_ int fd) 1551fd_kill (EV_P_ int fd)
1025{ 1552{
1026 ev_io *w; 1553 ev_io *w;
1027 1554
1028 while ((w = (ev_io *)anfds [fd].head)) 1555 while ((w = (ev_io *)anfds [fd].head))
1031 ev_feed_event (EV_A_ (W)w, EV_ERROR | EV_READ | EV_WRITE); 1558 ev_feed_event (EV_A_ (W)w, EV_ERROR | EV_READ | EV_WRITE);
1032 } 1559 }
1033} 1560}
1034 1561
1035/* check whether the given fd is actually valid, for error recovery */ 1562/* check whether the given fd is actually valid, for error recovery */
1036inline_size int 1563inline_size int ecb_cold
1037fd_valid (int fd) 1564fd_valid (int fd)
1038{ 1565{
1039#ifdef _WIN32 1566#ifdef _WIN32
1040 return EV_FD_TO_WIN32_HANDLE (fd) != -1; 1567 return EV_FD_TO_WIN32_HANDLE (fd) != -1;
1041#else 1568#else
1042 return fcntl (fd, F_GETFD) != -1; 1569 return fcntl (fd, F_GETFD) != -1;
1043#endif 1570#endif
1044} 1571}
1045 1572
1046/* called on EBADF to verify fds */ 1573/* called on EBADF to verify fds */
1047static void noinline 1574static void noinline ecb_cold
1048fd_ebadf (EV_P) 1575fd_ebadf (EV_P)
1049{ 1576{
1050 int fd; 1577 int fd;
1051 1578
1052 for (fd = 0; fd < anfdmax; ++fd) 1579 for (fd = 0; fd < anfdmax; ++fd)
1054 if (!fd_valid (fd) && errno == EBADF) 1581 if (!fd_valid (fd) && errno == EBADF)
1055 fd_kill (EV_A_ fd); 1582 fd_kill (EV_A_ fd);
1056} 1583}
1057 1584
1058/* called on ENOMEM in select/poll to kill some fds and retry */ 1585/* called on ENOMEM in select/poll to kill some fds and retry */
1059static void noinline 1586static void noinline ecb_cold
1060fd_enomem (EV_P) 1587fd_enomem (EV_P)
1061{ 1588{
1062 int fd; 1589 int fd;
1063 1590
1064 for (fd = anfdmax; fd--; ) 1591 for (fd = anfdmax; fd--; )
1259 1786
1260/*****************************************************************************/ 1787/*****************************************************************************/
1261 1788
1262#if EV_SIGNAL_ENABLE || EV_ASYNC_ENABLE 1789#if EV_SIGNAL_ENABLE || EV_ASYNC_ENABLE
1263 1790
1264static void noinline 1791static void noinline ecb_cold
1265evpipe_init (EV_P) 1792evpipe_init (EV_P)
1266{ 1793{
1267 if (!ev_is_active (&pipe_w)) 1794 if (!ev_is_active (&pipe_w))
1268 { 1795 {
1269# if EV_USE_EVENTFD 1796# if EV_USE_EVENTFD
1291 ev_io_start (EV_A_ &pipe_w); 1818 ev_io_start (EV_A_ &pipe_w);
1292 ev_unref (EV_A); /* watcher should not keep loop alive */ 1819 ev_unref (EV_A); /* watcher should not keep loop alive */
1293 } 1820 }
1294} 1821}
1295 1822
1296inline_size void 1823inline_speed void
1297evpipe_write (EV_P_ EV_ATOMIC_T *flag) 1824evpipe_write (EV_P_ EV_ATOMIC_T *flag)
1298{ 1825{
1299 if (!*flag) 1826 if (expect_true (*flag))
1827 return;
1828
1829 *flag = 1;
1830
1831 ECB_MEMORY_FENCE_RELEASE; /* make sure flag is visible before the wakeup */
1832
1833 pipe_write_skipped = 1;
1834
1835 ECB_MEMORY_FENCE; /* make sure pipe_write_skipped is visible before we check pipe_write_wanted */
1836
1837 if (pipe_write_wanted)
1300 { 1838 {
1839 int old_errno;
1840
1841 pipe_write_skipped = 0; /* just an optimisation, no fence needed */
1842
1301 int old_errno = errno; /* save errno because write might clobber it */ 1843 old_errno = errno; /* save errno because write will clobber it */
1302 char dummy;
1303
1304 *flag = 1;
1305 1844
1306#if EV_USE_EVENTFD 1845#if EV_USE_EVENTFD
1307 if (evfd >= 0) 1846 if (evfd >= 0)
1308 { 1847 {
1309 uint64_t counter = 1; 1848 uint64_t counter = 1;
1310 write (evfd, &counter, sizeof (uint64_t)); 1849 write (evfd, &counter, sizeof (uint64_t));
1311 } 1850 }
1312 else 1851 else
1313#endif 1852#endif
1853 {
1314 /* win32 people keep sending patches that change this write() to send() */ 1854 /* win32 people keep sending patches that change this write() to send() */
1315 /* and then run away. but send() is wrong, it wants a socket handle on win32 */ 1855 /* and then run away. but send() is wrong, it wants a socket handle on win32 */
1316 /* so when you think this write should be a send instead, please find out */ 1856 /* so when you think this write should be a send instead, please find out */
1317 /* where your send() is from - it's definitely not the microsoft send, and */ 1857 /* where your send() is from - it's definitely not the microsoft send, and */
1318 /* tell me. thank you. */ 1858 /* tell me. thank you. */
1319 write (evpipe [1], &dummy, 1); 1859 write (evpipe [1], &(evpipe [1]), 1);
1860 }
1320 1861
1321 errno = old_errno; 1862 errno = old_errno;
1322 } 1863 }
1323} 1864}
1324 1865
1327static void 1868static void
1328pipecb (EV_P_ ev_io *iow, int revents) 1869pipecb (EV_P_ ev_io *iow, int revents)
1329{ 1870{
1330 int i; 1871 int i;
1331 1872
1873 if (revents & EV_READ)
1874 {
1332#if EV_USE_EVENTFD 1875#if EV_USE_EVENTFD
1333 if (evfd >= 0) 1876 if (evfd >= 0)
1334 { 1877 {
1335 uint64_t counter; 1878 uint64_t counter;
1336 read (evfd, &counter, sizeof (uint64_t)); 1879 read (evfd, &counter, sizeof (uint64_t));
1337 } 1880 }
1338 else 1881 else
1339#endif 1882#endif
1340 { 1883 {
1341 char dummy; 1884 char dummy;
1342 /* see discussion in evpipe_write when you think this read should be recv in win32 */ 1885 /* see discussion in evpipe_write when you think this read should be recv in win32 */
1343 read (evpipe [0], &dummy, 1); 1886 read (evpipe [0], &dummy, 1);
1887 }
1344 } 1888 }
1345 1889
1890 pipe_write_skipped = 0;
1891
1892#if EV_SIGNAL_ENABLE
1346 if (sig_pending) 1893 if (sig_pending)
1347 { 1894 {
1348 sig_pending = 0; 1895 sig_pending = 0;
1349 1896
1350 for (i = EV_NSIG - 1; i--; ) 1897 for (i = EV_NSIG - 1; i--; )
1351 if (expect_false (signals [i].pending)) 1898 if (expect_false (signals [i].pending))
1352 ev_feed_signal_event (EV_A_ i + 1); 1899 ev_feed_signal_event (EV_A_ i + 1);
1353 } 1900 }
1901#endif
1354 1902
1355#if EV_ASYNC_ENABLE 1903#if EV_ASYNC_ENABLE
1356 if (async_pending) 1904 if (async_pending)
1357 { 1905 {
1358 async_pending = 0; 1906 async_pending = 0;
1367#endif 1915#endif
1368} 1916}
1369 1917
1370/*****************************************************************************/ 1918/*****************************************************************************/
1371 1919
1920void
1921ev_feed_signal (int signum)
1922{
1923#if EV_MULTIPLICITY
1924 EV_P = signals [signum - 1].loop;
1925
1926 if (!EV_A)
1927 return;
1928#endif
1929
1930 if (!ev_active (&pipe_w))
1931 return;
1932
1933 signals [signum - 1].pending = 1;
1934 evpipe_write (EV_A_ &sig_pending);
1935}
1936
1372static void 1937static void
1373ev_sighandler (int signum) 1938ev_sighandler (int signum)
1374{ 1939{
1375#if EV_MULTIPLICITY
1376 EV_P = signals [signum - 1].loop;
1377#endif
1378
1379#ifdef _WIN32 1940#ifdef _WIN32
1380 signal (signum, ev_sighandler); 1941 signal (signum, ev_sighandler);
1381#endif 1942#endif
1382 1943
1383 signals [signum - 1].pending = 1; 1944 ev_feed_signal (signum);
1384 evpipe_write (EV_A_ &sig_pending);
1385} 1945}
1386 1946
1387void noinline 1947void noinline
1388ev_feed_signal_event (EV_P_ int signum) 1948ev_feed_signal_event (EV_P_ int signum)
1389{ 1949{
1489 2049
1490#endif 2050#endif
1491 2051
1492/*****************************************************************************/ 2052/*****************************************************************************/
1493 2053
2054#if EV_USE_IOCP
2055# include "ev_iocp.c"
2056#endif
1494#if EV_USE_PORT 2057#if EV_USE_PORT
1495# include "ev_port.c" 2058# include "ev_port.c"
1496#endif 2059#endif
1497#if EV_USE_KQUEUE 2060#if EV_USE_KQUEUE
1498# include "ev_kqueue.c" 2061# include "ev_kqueue.c"
1505#endif 2068#endif
1506#if EV_USE_SELECT 2069#if EV_USE_SELECT
1507# include "ev_select.c" 2070# include "ev_select.c"
1508#endif 2071#endif
1509 2072
1510int 2073int ecb_cold
1511ev_version_major (void) 2074ev_version_major (void)
1512{ 2075{
1513 return EV_VERSION_MAJOR; 2076 return EV_VERSION_MAJOR;
1514} 2077}
1515 2078
1516int 2079int ecb_cold
1517ev_version_minor (void) 2080ev_version_minor (void)
1518{ 2081{
1519 return EV_VERSION_MINOR; 2082 return EV_VERSION_MINOR;
1520} 2083}
1521 2084
1522/* return true if we are running with elevated privileges and should ignore env variables */ 2085/* return true if we are running with elevated privileges and should ignore env variables */
1523int inline_size 2086int inline_size ecb_cold
1524enable_secure (void) 2087enable_secure (void)
1525{ 2088{
1526#ifdef _WIN32 2089#ifdef _WIN32
1527 return 0; 2090 return 0;
1528#else 2091#else
1529 return getuid () != geteuid () 2092 return getuid () != geteuid ()
1530 || getgid () != getegid (); 2093 || getgid () != getegid ();
1531#endif 2094#endif
1532} 2095}
1533 2096
1534unsigned int 2097unsigned int ecb_cold
1535ev_supported_backends (void) 2098ev_supported_backends (void)
1536{ 2099{
1537 unsigned int flags = 0; 2100 unsigned int flags = 0;
1538 2101
1539 if (EV_USE_PORT ) flags |= EVBACKEND_PORT; 2102 if (EV_USE_PORT ) flags |= EVBACKEND_PORT;
1543 if (EV_USE_SELECT) flags |= EVBACKEND_SELECT; 2106 if (EV_USE_SELECT) flags |= EVBACKEND_SELECT;
1544 2107
1545 return flags; 2108 return flags;
1546} 2109}
1547 2110
1548unsigned int 2111unsigned int ecb_cold
1549ev_recommended_backends (void) 2112ev_recommended_backends (void)
1550{ 2113{
1551 unsigned int flags = ev_supported_backends (); 2114 unsigned int flags = ev_supported_backends ();
1552 2115
1553#ifndef __NetBSD__ 2116#ifndef __NetBSD__
1565#endif 2128#endif
1566 2129
1567 return flags; 2130 return flags;
1568} 2131}
1569 2132
1570unsigned int 2133unsigned int ecb_cold
1571ev_embeddable_backends (void) 2134ev_embeddable_backends (void)
1572{ 2135{
1573 int flags = EVBACKEND_EPOLL | EVBACKEND_KQUEUE | EVBACKEND_PORT; 2136 int flags = EVBACKEND_EPOLL | EVBACKEND_KQUEUE | EVBACKEND_PORT;
1574 2137
1575 /* epoll embeddability broken on all linux versions up to at least 2.6.23 */ 2138 /* epoll embeddability broken on all linux versions up to at least 2.6.23 */
1620ev_userdata (EV_P) 2183ev_userdata (EV_P)
1621{ 2184{
1622 return userdata; 2185 return userdata;
1623} 2186}
1624 2187
2188void
1625void ev_set_invoke_pending_cb (EV_P_ void (*invoke_pending_cb)(EV_P)) 2189ev_set_invoke_pending_cb (EV_P_ void (*invoke_pending_cb)(EV_P))
1626{ 2190{
1627 invoke_cb = invoke_pending_cb; 2191 invoke_cb = invoke_pending_cb;
1628} 2192}
1629 2193
2194void
1630void ev_set_loop_release_cb (EV_P_ void (*release)(EV_P), void (*acquire)(EV_P)) 2195ev_set_loop_release_cb (EV_P_ void (*release)(EV_P), void (*acquire)(EV_P))
1631{ 2196{
1632 release_cb = release; 2197 release_cb = release;
1633 acquire_cb = acquire; 2198 acquire_cb = acquire;
1634} 2199}
1635#endif 2200#endif
1636 2201
1637/* initialise a loop structure, must be zero-initialised */ 2202/* initialise a loop structure, must be zero-initialised */
1638static void noinline 2203static void noinline ecb_cold
1639loop_init (EV_P_ unsigned int flags) 2204loop_init (EV_P_ unsigned int flags)
1640{ 2205{
1641 if (!backend) 2206 if (!backend)
1642 { 2207 {
2208 origflags = flags;
2209
1643#if EV_USE_REALTIME 2210#if EV_USE_REALTIME
1644 if (!have_realtime) 2211 if (!have_realtime)
1645 { 2212 {
1646 struct timespec ts; 2213 struct timespec ts;
1647 2214
1669 if (!(flags & EVFLAG_NOENV) 2236 if (!(flags & EVFLAG_NOENV)
1670 && !enable_secure () 2237 && !enable_secure ()
1671 && getenv ("LIBEV_FLAGS")) 2238 && getenv ("LIBEV_FLAGS"))
1672 flags = atoi (getenv ("LIBEV_FLAGS")); 2239 flags = atoi (getenv ("LIBEV_FLAGS"));
1673 2240
1674 ev_rt_now = ev_time (); 2241 ev_rt_now = ev_time ();
1675 mn_now = get_clock (); 2242 mn_now = get_clock ();
1676 now_floor = mn_now; 2243 now_floor = mn_now;
1677 rtmn_diff = ev_rt_now - mn_now; 2244 rtmn_diff = ev_rt_now - mn_now;
1678#if EV_FEATURE_API 2245#if EV_FEATURE_API
1679 invoke_cb = ev_invoke_pending; 2246 invoke_cb = ev_invoke_pending;
1680#endif 2247#endif
1681 2248
1682 io_blocktime = 0.; 2249 io_blocktime = 0.;
1683 timeout_blocktime = 0.; 2250 timeout_blocktime = 0.;
1684 backend = 0; 2251 backend = 0;
1685 backend_fd = -1; 2252 backend_fd = -1;
1686 sig_pending = 0; 2253 sig_pending = 0;
1687#if EV_ASYNC_ENABLE 2254#if EV_ASYNC_ENABLE
1688 async_pending = 0; 2255 async_pending = 0;
1689#endif 2256#endif
2257 pipe_write_skipped = 0;
2258 pipe_write_wanted = 0;
1690#if EV_USE_INOTIFY 2259#if EV_USE_INOTIFY
1691 fs_fd = flags & EVFLAG_NOINOTIFY ? -1 : -2; 2260 fs_fd = flags & EVFLAG_NOINOTIFY ? -1 : -2;
1692#endif 2261#endif
1693#if EV_USE_SIGNALFD 2262#if EV_USE_SIGNALFD
1694 sigfd = flags & EVFLAG_SIGNALFD ? -2 : -1; 2263 sigfd = flags & EVFLAG_SIGNALFD ? -2 : -1;
1695#endif 2264#endif
1696 2265
1697 if (!(flags & 0x0000ffffU)) 2266 if (!(flags & EVBACKEND_MASK))
1698 flags |= ev_recommended_backends (); 2267 flags |= ev_recommended_backends ();
1699 2268
2269#if EV_USE_IOCP
2270 if (!backend && (flags & EVBACKEND_IOCP )) backend = iocp_init (EV_A_ flags);
2271#endif
1700#if EV_USE_PORT 2272#if EV_USE_PORT
1701 if (!backend && (flags & EVBACKEND_PORT )) backend = port_init (EV_A_ flags); 2273 if (!backend && (flags & EVBACKEND_PORT )) backend = port_init (EV_A_ flags);
1702#endif 2274#endif
1703#if EV_USE_KQUEUE 2275#if EV_USE_KQUEUE
1704 if (!backend && (flags & EVBACKEND_KQUEUE)) backend = kqueue_init (EV_A_ flags); 2276 if (!backend && (flags & EVBACKEND_KQUEUE)) backend = kqueue_init (EV_A_ flags);
1721#endif 2293#endif
1722 } 2294 }
1723} 2295}
1724 2296
1725/* free up a loop structure */ 2297/* free up a loop structure */
1726static void noinline 2298void ecb_cold
1727loop_destroy (EV_P) 2299ev_loop_destroy (EV_P)
1728{ 2300{
1729 int i; 2301 int i;
2302
2303#if EV_MULTIPLICITY
2304 /* mimic free (0) */
2305 if (!EV_A)
2306 return;
2307#endif
2308
2309#if EV_CLEANUP_ENABLE
2310 /* queue cleanup watchers (and execute them) */
2311 if (expect_false (cleanupcnt))
2312 {
2313 queue_events (EV_A_ (W *)cleanups, cleanupcnt, EV_CLEANUP);
2314 EV_INVOKE_PENDING;
2315 }
2316#endif
2317
2318#if EV_CHILD_ENABLE
2319 if (ev_is_active (&childev))
2320 {
2321 ev_ref (EV_A); /* child watcher */
2322 ev_signal_stop (EV_A_ &childev);
2323 }
2324#endif
1730 2325
1731 if (ev_is_active (&pipe_w)) 2326 if (ev_is_active (&pipe_w))
1732 { 2327 {
1733 /*ev_ref (EV_A);*/ 2328 /*ev_ref (EV_A);*/
1734 /*ev_io_stop (EV_A_ &pipe_w);*/ 2329 /*ev_io_stop (EV_A_ &pipe_w);*/
1756#endif 2351#endif
1757 2352
1758 if (backend_fd >= 0) 2353 if (backend_fd >= 0)
1759 close (backend_fd); 2354 close (backend_fd);
1760 2355
2356#if EV_USE_IOCP
2357 if (backend == EVBACKEND_IOCP ) iocp_destroy (EV_A);
2358#endif
1761#if EV_USE_PORT 2359#if EV_USE_PORT
1762 if (backend == EVBACKEND_PORT ) port_destroy (EV_A); 2360 if (backend == EVBACKEND_PORT ) port_destroy (EV_A);
1763#endif 2361#endif
1764#if EV_USE_KQUEUE 2362#if EV_USE_KQUEUE
1765 if (backend == EVBACKEND_KQUEUE) kqueue_destroy (EV_A); 2363 if (backend == EVBACKEND_KQUEUE) kqueue_destroy (EV_A);
1792 array_free (periodic, EMPTY); 2390 array_free (periodic, EMPTY);
1793#endif 2391#endif
1794#if EV_FORK_ENABLE 2392#if EV_FORK_ENABLE
1795 array_free (fork, EMPTY); 2393 array_free (fork, EMPTY);
1796#endif 2394#endif
2395#if EV_CLEANUP_ENABLE
2396 array_free (cleanup, EMPTY);
2397#endif
1797 array_free (prepare, EMPTY); 2398 array_free (prepare, EMPTY);
1798 array_free (check, EMPTY); 2399 array_free (check, EMPTY);
1799#if EV_ASYNC_ENABLE 2400#if EV_ASYNC_ENABLE
1800 array_free (async, EMPTY); 2401 array_free (async, EMPTY);
1801#endif 2402#endif
1802 2403
1803 backend = 0; 2404 backend = 0;
2405
2406#if EV_MULTIPLICITY
2407 if (ev_is_default_loop (EV_A))
2408#endif
2409 ev_default_loop_ptr = 0;
2410#if EV_MULTIPLICITY
2411 else
2412 ev_free (EV_A);
2413#endif
1804} 2414}
1805 2415
1806#if EV_USE_INOTIFY 2416#if EV_USE_INOTIFY
1807inline_size void infy_fork (EV_P); 2417inline_size void infy_fork (EV_P);
1808#endif 2418#endif
1823 infy_fork (EV_A); 2433 infy_fork (EV_A);
1824#endif 2434#endif
1825 2435
1826 if (ev_is_active (&pipe_w)) 2436 if (ev_is_active (&pipe_w))
1827 { 2437 {
1828 /* this "locks" the handlers against writing to the pipe */ 2438 /* pipe_write_wanted must be false now, so modifying fd vars should be safe */
1829 /* while we modify the fd vars */
1830 sig_pending = 1;
1831#if EV_ASYNC_ENABLE
1832 async_pending = 1;
1833#endif
1834 2439
1835 ev_ref (EV_A); 2440 ev_ref (EV_A);
1836 ev_io_stop (EV_A_ &pipe_w); 2441 ev_io_stop (EV_A_ &pipe_w);
1837 2442
1838#if EV_USE_EVENTFD 2443#if EV_USE_EVENTFD
1856 postfork = 0; 2461 postfork = 0;
1857} 2462}
1858 2463
1859#if EV_MULTIPLICITY 2464#if EV_MULTIPLICITY
1860 2465
1861struct ev_loop * 2466struct ev_loop * ecb_cold
1862ev_loop_new (unsigned int flags) 2467ev_loop_new (unsigned int flags)
1863{ 2468{
1864 EV_P = (struct ev_loop *)ev_malloc (sizeof (struct ev_loop)); 2469 EV_P = (struct ev_loop *)ev_malloc (sizeof (struct ev_loop));
1865 2470
1866 memset (EV_A, 0, sizeof (struct ev_loop)); 2471 memset (EV_A, 0, sizeof (struct ev_loop));
1867 loop_init (EV_A_ flags); 2472 loop_init (EV_A_ flags);
1868 2473
1869 if (ev_backend (EV_A)) 2474 if (ev_backend (EV_A))
1870 return EV_A; 2475 return EV_A;
1871 2476
2477 ev_free (EV_A);
1872 return 0; 2478 return 0;
1873} 2479}
1874 2480
1875void
1876ev_loop_destroy (EV_P)
1877{
1878 loop_destroy (EV_A);
1879 ev_free (loop);
1880}
1881
1882void
1883ev_loop_fork (EV_P)
1884{
1885 postfork = 1; /* must be in line with ev_default_fork */
1886}
1887#endif /* multiplicity */ 2481#endif /* multiplicity */
1888 2482
1889#if EV_VERIFY 2483#if EV_VERIFY
1890static void noinline 2484static void noinline ecb_cold
1891verify_watcher (EV_P_ W w) 2485verify_watcher (EV_P_ W w)
1892{ 2486{
1893 assert (("libev: watcher has invalid priority", ABSPRI (w) >= 0 && ABSPRI (w) < NUMPRI)); 2487 assert (("libev: watcher has invalid priority", ABSPRI (w) >= 0 && ABSPRI (w) < NUMPRI));
1894 2488
1895 if (w->pending) 2489 if (w->pending)
1896 assert (("libev: pending watcher not on pending queue", pendings [ABSPRI (w)][w->pending - 1].w == w)); 2490 assert (("libev: pending watcher not on pending queue", pendings [ABSPRI (w)][w->pending - 1].w == w));
1897} 2491}
1898 2492
1899static void noinline 2493static void noinline ecb_cold
1900verify_heap (EV_P_ ANHE *heap, int N) 2494verify_heap (EV_P_ ANHE *heap, int N)
1901{ 2495{
1902 int i; 2496 int i;
1903 2497
1904 for (i = HEAP0; i < N + HEAP0; ++i) 2498 for (i = HEAP0; i < N + HEAP0; ++i)
1909 2503
1910 verify_watcher (EV_A_ (W)ANHE_w (heap [i])); 2504 verify_watcher (EV_A_ (W)ANHE_w (heap [i]));
1911 } 2505 }
1912} 2506}
1913 2507
1914static void noinline 2508static void noinline ecb_cold
1915array_verify (EV_P_ W *ws, int cnt) 2509array_verify (EV_P_ W *ws, int cnt)
1916{ 2510{
1917 while (cnt--) 2511 while (cnt--)
1918 { 2512 {
1919 assert (("libev: active index mismatch", ev_active (ws [cnt]) == cnt + 1)); 2513 assert (("libev: active index mismatch", ev_active (ws [cnt]) == cnt + 1));
1921 } 2515 }
1922} 2516}
1923#endif 2517#endif
1924 2518
1925#if EV_FEATURE_API 2519#if EV_FEATURE_API
1926void 2520void ecb_cold
1927ev_verify (EV_P) 2521ev_verify (EV_P)
1928{ 2522{
1929#if EV_VERIFY 2523#if EV_VERIFY
1930 int i; 2524 int i;
1931 WL w; 2525 WL w;
1966#if EV_FORK_ENABLE 2560#if EV_FORK_ENABLE
1967 assert (forkmax >= forkcnt); 2561 assert (forkmax >= forkcnt);
1968 array_verify (EV_A_ (W *)forks, forkcnt); 2562 array_verify (EV_A_ (W *)forks, forkcnt);
1969#endif 2563#endif
1970 2564
2565#if EV_CLEANUP_ENABLE
2566 assert (cleanupmax >= cleanupcnt);
2567 array_verify (EV_A_ (W *)cleanups, cleanupcnt);
2568#endif
2569
1971#if EV_ASYNC_ENABLE 2570#if EV_ASYNC_ENABLE
1972 assert (asyncmax >= asynccnt); 2571 assert (asyncmax >= asynccnt);
1973 array_verify (EV_A_ (W *)asyncs, asynccnt); 2572 array_verify (EV_A_ (W *)asyncs, asynccnt);
1974#endif 2573#endif
1975 2574
1992#endif 2591#endif
1993} 2592}
1994#endif 2593#endif
1995 2594
1996#if EV_MULTIPLICITY 2595#if EV_MULTIPLICITY
1997struct ev_loop * 2596struct ev_loop * ecb_cold
1998ev_default_loop_init (unsigned int flags)
1999#else 2597#else
2000int 2598int
2599#endif
2001ev_default_loop (unsigned int flags) 2600ev_default_loop (unsigned int flags)
2002#endif
2003{ 2601{
2004 if (!ev_default_loop_ptr) 2602 if (!ev_default_loop_ptr)
2005 { 2603 {
2006#if EV_MULTIPLICITY 2604#if EV_MULTIPLICITY
2007 EV_P = ev_default_loop_ptr = &default_loop_struct; 2605 EV_P = ev_default_loop_ptr = &default_loop_struct;
2026 2624
2027 return ev_default_loop_ptr; 2625 return ev_default_loop_ptr;
2028} 2626}
2029 2627
2030void 2628void
2031ev_default_destroy (void) 2629ev_loop_fork (EV_P)
2032{ 2630{
2033#if EV_MULTIPLICITY
2034 EV_P = ev_default_loop_ptr;
2035#endif
2036
2037 ev_default_loop_ptr = 0;
2038
2039#if EV_CHILD_ENABLE
2040 ev_ref (EV_A); /* child watcher */
2041 ev_signal_stop (EV_A_ &childev);
2042#endif
2043
2044 loop_destroy (EV_A);
2045}
2046
2047void
2048ev_default_fork (void)
2049{
2050#if EV_MULTIPLICITY
2051 EV_P = ev_default_loop_ptr;
2052#endif
2053
2054 postfork = 1; /* must be in line with ev_loop_fork */ 2631 postfork = 1; /* must be in line with ev_default_fork */
2055} 2632}
2056 2633
2057/*****************************************************************************/ 2634/*****************************************************************************/
2058 2635
2059void 2636void
2081 2658
2082 for (pri = NUMPRI; pri--; ) 2659 for (pri = NUMPRI; pri--; )
2083 while (pendingcnt [pri]) 2660 while (pendingcnt [pri])
2084 { 2661 {
2085 ANPENDING *p = pendings [pri] + --pendingcnt [pri]; 2662 ANPENDING *p = pendings [pri] + --pendingcnt [pri];
2086
2087 /*assert (("libev: non-pending watcher on pending list", p->w->pending));*/
2088 /* ^ this is no longer true, as pending_w could be here */
2089 2663
2090 p->w->pending = 0; 2664 p->w->pending = 0;
2091 EV_CB_INVOKE (p->w, p->events); 2665 EV_CB_INVOKE (p->w, p->events);
2092 EV_FREQUENT_CHECK; 2666 EV_FREQUENT_CHECK;
2093 } 2667 }
2155 feed_reverse_done (EV_A_ EV_TIMER); 2729 feed_reverse_done (EV_A_ EV_TIMER);
2156 } 2730 }
2157} 2731}
2158 2732
2159#if EV_PERIODIC_ENABLE 2733#if EV_PERIODIC_ENABLE
2734
2735static void noinline
2736periodic_recalc (EV_P_ ev_periodic *w)
2737{
2738 ev_tstamp interval = w->interval > MIN_INTERVAL ? w->interval : MIN_INTERVAL;
2739 ev_tstamp at = w->offset + interval * ev_floor ((ev_rt_now - w->offset) / interval);
2740
2741 /* the above almost always errs on the low side */
2742 while (at <= ev_rt_now)
2743 {
2744 ev_tstamp nat = at + w->interval;
2745
2746 /* when resolution fails us, we use ev_rt_now */
2747 if (expect_false (nat == at))
2748 {
2749 at = ev_rt_now;
2750 break;
2751 }
2752
2753 at = nat;
2754 }
2755
2756 ev_at (w) = at;
2757}
2758
2160/* make periodics pending */ 2759/* make periodics pending */
2161inline_size void 2760inline_size void
2162periodics_reify (EV_P) 2761periodics_reify (EV_P)
2163{ 2762{
2164 EV_FREQUENT_CHECK; 2763 EV_FREQUENT_CHECK;
2183 ANHE_at_cache (periodics [HEAP0]); 2782 ANHE_at_cache (periodics [HEAP0]);
2184 downheap (periodics, periodiccnt, HEAP0); 2783 downheap (periodics, periodiccnt, HEAP0);
2185 } 2784 }
2186 else if (w->interval) 2785 else if (w->interval)
2187 { 2786 {
2188 ev_at (w) = w->offset + ceil ((ev_rt_now - w->offset) / w->interval) * w->interval; 2787 periodic_recalc (EV_A_ w);
2189 /* if next trigger time is not sufficiently in the future, put it there */
2190 /* this might happen because of floating point inexactness */
2191 if (ev_at (w) - ev_rt_now < TIME_EPSILON)
2192 {
2193 ev_at (w) += w->interval;
2194
2195 /* if interval is unreasonably low we might still have a time in the past */
2196 /* so correct this. this will make the periodic very inexact, but the user */
2197 /* has effectively asked to get triggered more often than possible */
2198 if (ev_at (w) < ev_rt_now)
2199 ev_at (w) = ev_rt_now;
2200 }
2201
2202 ANHE_at_cache (periodics [HEAP0]); 2788 ANHE_at_cache (periodics [HEAP0]);
2203 downheap (periodics, periodiccnt, HEAP0); 2789 downheap (periodics, periodiccnt, HEAP0);
2204 } 2790 }
2205 else 2791 else
2206 ev_periodic_stop (EV_A_ w); /* nonrepeating: stop timer */ 2792 ev_periodic_stop (EV_A_ w); /* nonrepeating: stop timer */
2214 } 2800 }
2215} 2801}
2216 2802
2217/* simply recalculate all periodics */ 2803/* simply recalculate all periodics */
2218/* TODO: maybe ensure that at least one event happens when jumping forward? */ 2804/* TODO: maybe ensure that at least one event happens when jumping forward? */
2219static void noinline 2805static void noinline ecb_cold
2220periodics_reschedule (EV_P) 2806periodics_reschedule (EV_P)
2221{ 2807{
2222 int i; 2808 int i;
2223 2809
2224 /* adjust periodics after time jump */ 2810 /* adjust periodics after time jump */
2227 ev_periodic *w = (ev_periodic *)ANHE_w (periodics [i]); 2813 ev_periodic *w = (ev_periodic *)ANHE_w (periodics [i]);
2228 2814
2229 if (w->reschedule_cb) 2815 if (w->reschedule_cb)
2230 ev_at (w) = w->reschedule_cb (w, ev_rt_now); 2816 ev_at (w) = w->reschedule_cb (w, ev_rt_now);
2231 else if (w->interval) 2817 else if (w->interval)
2232 ev_at (w) = w->offset + ceil ((ev_rt_now - w->offset) / w->interval) * w->interval; 2818 periodic_recalc (EV_A_ w);
2233 2819
2234 ANHE_at_cache (periodics [i]); 2820 ANHE_at_cache (periodics [i]);
2235 } 2821 }
2236 2822
2237 reheap (periodics, periodiccnt); 2823 reheap (periodics, periodiccnt);
2238} 2824}
2239#endif 2825#endif
2240 2826
2241/* adjust all timers by a given offset */ 2827/* adjust all timers by a given offset */
2242static void noinline 2828static void noinline ecb_cold
2243timers_reschedule (EV_P_ ev_tstamp adjust) 2829timers_reschedule (EV_P_ ev_tstamp adjust)
2244{ 2830{
2245 int i; 2831 int i;
2246 2832
2247 for (i = 0; i < timercnt; ++i) 2833 for (i = 0; i < timercnt; ++i)
2284 * doesn't hurt either as we only do this on time-jumps or 2870 * doesn't hurt either as we only do this on time-jumps or
2285 * in the unlikely event of having been preempted here. 2871 * in the unlikely event of having been preempted here.
2286 */ 2872 */
2287 for (i = 4; --i; ) 2873 for (i = 4; --i; )
2288 { 2874 {
2875 ev_tstamp diff;
2289 rtmn_diff = ev_rt_now - mn_now; 2876 rtmn_diff = ev_rt_now - mn_now;
2290 2877
2878 diff = odiff - rtmn_diff;
2879
2291 if (expect_true (fabs (odiff - rtmn_diff) < MIN_TIMEJUMP)) 2880 if (expect_true ((diff < 0. ? -diff : diff) < MIN_TIMEJUMP))
2292 return; /* all is well */ 2881 return; /* all is well */
2293 2882
2294 ev_rt_now = ev_time (); 2883 ev_rt_now = ev_time ();
2295 mn_now = get_clock (); 2884 mn_now = get_clock ();
2296 now_floor = mn_now; 2885 now_floor = mn_now;
2386 ev_tstamp prev_mn_now = mn_now; 2975 ev_tstamp prev_mn_now = mn_now;
2387 2976
2388 /* update time to cancel out callback processing overhead */ 2977 /* update time to cancel out callback processing overhead */
2389 time_update (EV_A_ 1e100); 2978 time_update (EV_A_ 1e100);
2390 2979
2980 /* from now on, we want a pipe-wake-up */
2981 pipe_write_wanted = 1;
2982
2983 ECB_MEMORY_FENCE; /* make sure pipe_write_wanted is visible before we check for potential skips */
2984
2391 if (expect_true (!(flags & EVRUN_NOWAIT || idleall || !activecnt))) 2985 if (expect_true (!(flags & EVRUN_NOWAIT || idleall || !activecnt || pipe_write_skipped)))
2392 { 2986 {
2393 waittime = MAX_BLOCKTIME; 2987 waittime = MAX_BLOCKTIME;
2394 2988
2395 if (timercnt) 2989 if (timercnt)
2396 { 2990 {
2397 ev_tstamp to = ANHE_at (timers [HEAP0]) - mn_now + backend_fudge; 2991 ev_tstamp to = ANHE_at (timers [HEAP0]) - mn_now;
2398 if (waittime > to) waittime = to; 2992 if (waittime > to) waittime = to;
2399 } 2993 }
2400 2994
2401#if EV_PERIODIC_ENABLE 2995#if EV_PERIODIC_ENABLE
2402 if (periodiccnt) 2996 if (periodiccnt)
2403 { 2997 {
2404 ev_tstamp to = ANHE_at (periodics [HEAP0]) - ev_rt_now + backend_fudge; 2998 ev_tstamp to = ANHE_at (periodics [HEAP0]) - ev_rt_now;
2405 if (waittime > to) waittime = to; 2999 if (waittime > to) waittime = to;
2406 } 3000 }
2407#endif 3001#endif
2408 3002
2409 /* don't let timeouts decrease the waittime below timeout_blocktime */ 3003 /* don't let timeouts decrease the waittime below timeout_blocktime */
2410 if (expect_false (waittime < timeout_blocktime)) 3004 if (expect_false (waittime < timeout_blocktime))
2411 waittime = timeout_blocktime; 3005 waittime = timeout_blocktime;
3006
3007 /* at this point, we NEED to wait, so we have to ensure */
3008 /* to pass a minimum nonzero value to the backend */
3009 if (expect_false (waittime < backend_mintime))
3010 waittime = backend_mintime;
2412 3011
2413 /* extra check because io_blocktime is commonly 0 */ 3012 /* extra check because io_blocktime is commonly 0 */
2414 if (expect_false (io_blocktime)) 3013 if (expect_false (io_blocktime))
2415 { 3014 {
2416 sleeptime = io_blocktime - (mn_now - prev_mn_now); 3015 sleeptime = io_blocktime - (mn_now - prev_mn_now);
2417 3016
2418 if (sleeptime > waittime - backend_fudge) 3017 if (sleeptime > waittime - backend_mintime)
2419 sleeptime = waittime - backend_fudge; 3018 sleeptime = waittime - backend_mintime;
2420 3019
2421 if (expect_true (sleeptime > 0.)) 3020 if (expect_true (sleeptime > 0.))
2422 { 3021 {
2423 ev_sleep (sleeptime); 3022 ev_sleep (sleeptime);
2424 waittime -= sleeptime; 3023 waittime -= sleeptime;
2431#endif 3030#endif
2432 assert ((loop_done = EVBREAK_RECURSE, 1)); /* assert for side effect */ 3031 assert ((loop_done = EVBREAK_RECURSE, 1)); /* assert for side effect */
2433 backend_poll (EV_A_ waittime); 3032 backend_poll (EV_A_ waittime);
2434 assert ((loop_done = EVBREAK_CANCEL, 1)); /* assert for side effect */ 3033 assert ((loop_done = EVBREAK_CANCEL, 1)); /* assert for side effect */
2435 3034
3035 pipe_write_wanted = 0; /* just an optimisation, no fence needed */
3036
3037 if (pipe_write_skipped)
3038 {
3039 assert (("libev: pipe_w not active, but pipe not written", ev_is_active (&pipe_w)));
3040 ev_feed_event (EV_A_ &pipe_w, EV_CUSTOM);
3041 }
3042
3043
2436 /* update ev_rt_now, do magic */ 3044 /* update ev_rt_now, do magic */
2437 time_update (EV_A_ waittime + sleeptime); 3045 time_update (EV_A_ waittime + sleeptime);
2438 } 3046 }
2439 3047
2440 /* queue pending timers and reschedule them */ 3048 /* queue pending timers and reschedule them */
2690 3298
2691void noinline 3299void noinline
2692ev_timer_again (EV_P_ ev_timer *w) 3300ev_timer_again (EV_P_ ev_timer *w)
2693{ 3301{
2694 EV_FREQUENT_CHECK; 3302 EV_FREQUENT_CHECK;
3303
3304 clear_pending (EV_A_ (W)w);
2695 3305
2696 if (ev_is_active (w)) 3306 if (ev_is_active (w))
2697 { 3307 {
2698 if (w->repeat) 3308 if (w->repeat)
2699 { 3309 {
2729 if (w->reschedule_cb) 3339 if (w->reschedule_cb)
2730 ev_at (w) = w->reschedule_cb (w, ev_rt_now); 3340 ev_at (w) = w->reschedule_cb (w, ev_rt_now);
2731 else if (w->interval) 3341 else if (w->interval)
2732 { 3342 {
2733 assert (("libev: ev_periodic_start called with negative interval value", w->interval >= 0.)); 3343 assert (("libev: ev_periodic_start called with negative interval value", w->interval >= 0.));
2734 /* this formula differs from the one in periodic_reify because we do not always round up */ 3344 periodic_recalc (EV_A_ w);
2735 ev_at (w) = w->offset + ceil ((ev_rt_now - w->offset) / w->interval) * w->interval;
2736 } 3345 }
2737 else 3346 else
2738 ev_at (w) = w->offset; 3347 ev_at (w) = w->offset;
2739 3348
2740 EV_FREQUENT_CHECK; 3349 EV_FREQUENT_CHECK;
2861 sa.sa_handler = ev_sighandler; 3470 sa.sa_handler = ev_sighandler;
2862 sigfillset (&sa.sa_mask); 3471 sigfillset (&sa.sa_mask);
2863 sa.sa_flags = SA_RESTART; /* if restarting works we save one iteration */ 3472 sa.sa_flags = SA_RESTART; /* if restarting works we save one iteration */
2864 sigaction (w->signum, &sa, 0); 3473 sigaction (w->signum, &sa, 0);
2865 3474
3475 if (origflags & EVFLAG_NOSIGMASK)
3476 {
2866 sigemptyset (&sa.sa_mask); 3477 sigemptyset (&sa.sa_mask);
2867 sigaddset (&sa.sa_mask, w->signum); 3478 sigaddset (&sa.sa_mask, w->signum);
2868 sigprocmask (SIG_UNBLOCK, &sa.sa_mask, 0); 3479 sigprocmask (SIG_UNBLOCK, &sa.sa_mask, 0);
3480 }
2869#endif 3481#endif
2870 } 3482 }
2871 3483
2872 EV_FREQUENT_CHECK; 3484 EV_FREQUENT_CHECK;
2873} 3485}
3014 if (!pend || pend == path) 3626 if (!pend || pend == path)
3015 break; 3627 break;
3016 3628
3017 *pend = 0; 3629 *pend = 0;
3018 w->wd = inotify_add_watch (fs_fd, path, mask); 3630 w->wd = inotify_add_watch (fs_fd, path, mask);
3019 } 3631 }
3020 while (w->wd < 0 && (errno == ENOENT || errno == EACCES)); 3632 while (w->wd < 0 && (errno == ENOENT || errno == EACCES));
3021 } 3633 }
3022 } 3634 }
3023 3635
3024 if (w->wd >= 0) 3636 if (w->wd >= 0)
3091 infy_wd (EV_A_ ev->wd, ev->wd, ev); 3703 infy_wd (EV_A_ ev->wd, ev->wd, ev);
3092 ofs += sizeof (struct inotify_event) + ev->len; 3704 ofs += sizeof (struct inotify_event) + ev->len;
3093 } 3705 }
3094} 3706}
3095 3707
3096inline_size void 3708inline_size void ecb_cold
3097ev_check_2625 (EV_P) 3709ev_check_2625 (EV_P)
3098{ 3710{
3099 /* kernels < 2.6.25 are borked 3711 /* kernels < 2.6.25 are borked
3100 * http://www.ussg.indiana.edu/hypermail/linux/kernel/0711.3/1208.html 3712 * http://www.ussg.indiana.edu/hypermail/linux/kernel/0711.3/1208.html
3101 */ 3713 */
3565 4177
3566 EV_FREQUENT_CHECK; 4178 EV_FREQUENT_CHECK;
3567} 4179}
3568#endif 4180#endif
3569 4181
4182#if EV_CLEANUP_ENABLE
4183void
4184ev_cleanup_start (EV_P_ ev_cleanup *w)
4185{
4186 if (expect_false (ev_is_active (w)))
4187 return;
4188
4189 EV_FREQUENT_CHECK;
4190
4191 ev_start (EV_A_ (W)w, ++cleanupcnt);
4192 array_needsize (ev_cleanup *, cleanups, cleanupmax, cleanupcnt, EMPTY2);
4193 cleanups [cleanupcnt - 1] = w;
4194
4195 /* cleanup watchers should never keep a refcount on the loop */
4196 ev_unref (EV_A);
4197 EV_FREQUENT_CHECK;
4198}
4199
4200void
4201ev_cleanup_stop (EV_P_ ev_cleanup *w)
4202{
4203 clear_pending (EV_A_ (W)w);
4204 if (expect_false (!ev_is_active (w)))
4205 return;
4206
4207 EV_FREQUENT_CHECK;
4208 ev_ref (EV_A);
4209
4210 {
4211 int active = ev_active (w);
4212
4213 cleanups [active - 1] = cleanups [--cleanupcnt];
4214 ev_active (cleanups [active - 1]) = active;
4215 }
4216
4217 ev_stop (EV_A_ (W)w);
4218
4219 EV_FREQUENT_CHECK;
4220}
4221#endif
4222
3570#if EV_ASYNC_ENABLE 4223#if EV_ASYNC_ENABLE
3571void 4224void
3572ev_async_start (EV_P_ ev_async *w) 4225ev_async_start (EV_P_ ev_async *w)
3573{ 4226{
3574 if (expect_false (ev_is_active (w))) 4227 if (expect_false (ev_is_active (w)))
3685} 4338}
3686 4339
3687/*****************************************************************************/ 4340/*****************************************************************************/
3688 4341
3689#if EV_WALK_ENABLE 4342#if EV_WALK_ENABLE
3690void 4343void ecb_cold
3691ev_walk (EV_P_ int types, void (*cb)(EV_P_ int type, void *w)) 4344ev_walk (EV_P_ int types, void (*cb)(EV_P_ int type, void *w))
3692{ 4345{
3693 int i, j; 4346 int i, j;
3694 ev_watcher_list *wl, *wn; 4347 ev_watcher_list *wl, *wn;
3695 4348
3739 cb (EV_A_ EV_PERIODIC, ANHE_w (periodics [i])); 4392 cb (EV_A_ EV_PERIODIC, ANHE_w (periodics [i]));
3740#endif 4393#endif
3741 4394
3742#if EV_IDLE_ENABLE 4395#if EV_IDLE_ENABLE
3743 if (types & EV_IDLE) 4396 if (types & EV_IDLE)
3744 for (j = NUMPRI; i--; ) 4397 for (j = NUMPRI; j--; )
3745 for (i = idlecnt [j]; i--; ) 4398 for (i = idlecnt [j]; i--; )
3746 cb (EV_A_ EV_IDLE, idles [j][i]); 4399 cb (EV_A_ EV_IDLE, idles [j][i]);
3747#endif 4400#endif
3748 4401
3749#if EV_FORK_ENABLE 4402#if EV_FORK_ENABLE
3802 4455
3803#if EV_MULTIPLICITY 4456#if EV_MULTIPLICITY
3804 #include "ev_wrap.h" 4457 #include "ev_wrap.h"
3805#endif 4458#endif
3806 4459
3807EV_CPP(})
3808

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