On 2026/09/23 18:49, Brad Smith wrote:
> On Tue, Sep 22, 2026 at 09:17:19PM +0100, Stuart Henderson wrote:
> > On 2026/09/22 21:04, Kirill A. Korinsky wrote:
> > > Well, check-shlib-syms states that here no difference... probably
> > > SHARED_LIBS really doesn't need a bump.
> > 
> > it seemed that way to me (and I was quite happy to get rid of all those
> > patches!).
> > 
> > > Anyway, here a diff which a bit hacky and fixes regression in tdesktop and
> > > 64gram, and I think in other similar places.
> > 
> > > Thoughts?
> > 
> > thanks, that makes sense. ok.
> 
> This looks like a more appropraite fix.
> 
> 
> Index: Makefile
> ===================================================================
> RCS file: /cvs/ports/devel/libdispatch/Makefile,v
> retrieving revision 1.13
> diff -u -p -u -p -r1.13 Makefile
> --- Makefile  22 Sep 2026 20:26:42 -0000      1.13
> +++ Makefile  23 Sep 2026 22:24:43 -0000
> @@ -2,7 +2,7 @@ COMMENT =     support for concurrent code ex
>  
>  PKGNAME =    libdispatch-$V
>  V =          6.4.0
> -REVISION =   0
> +REVISION =   1
>  
>  GH_ACCOUNT = apple
>  GH_PROJECT = swift-corelibs-libdispatch
> Index: patches/patch-src_event_event_config_h
> ===================================================================
> RCS file: patches/patch-src_event_event_config_h
> diff -N patches/patch-src_event_event_config_h
> --- patches/patch-src_event_event_config_h    22 Sep 2026 20:26:42 -0000      
> 1.1
> +++ /dev/null 1 Jan 1970 00:00:00 -0000
> @@ -1,18 +0,0 @@
> -https://github.com/swiftlang/swift-corelibs-libdispatch/pull/960
> -
> -Index: src/event/event_config.h
> ---- src/event/event_config.h.orig
> -+++ src/event/event_config.h
> -@@ -116,9 +116,10 @@
> - #   define NOTE_FUNLOCK 0x00000100
> - #   endif
> - 
> --// FreeBSD's kevent does not support those
> -+// FreeBSD's and OpenBSD's kevent does not support those
> -+// OpenBSD's NOTE_ABSTIME uses CLOCK_REALTIME
> - #   ifndef NOTE_ABSOLUTE
> --#           ifdef NOTE_ABSTIME
> -+#           if defined(NOTE_ABSTIME) && !defined(__OpenBSD__)
> - #                   define NOTE_ABSOLUTE NOTE_ABSTIME
> - #           else
> - #                   define NOTE_ABSOLUTE 0
> Index: patches/patch-src_event_event_kevent_c
> ===================================================================
> RCS file: patches/patch-src_event_event_kevent_c
> diff -N patches/patch-src_event_event_kevent_c
> --- /dev/null 1 Jan 1970 00:00:00 -0000
> +++ patches/patch-src_event_event_kevent_c    23 Sep 2026 22:24:43 -0000
> @@ -0,0 +1,41 @@
> +- Use relative kqueue deadlines for BSD uptime and monotonic timers
> +  https://github.com/swiftlang/swift-corelibs-libdispatch/pull/943
> +
> +Index: src/event/event_kevent.c
> +--- src/event/event_kevent.c.orig
> ++++ src/event/event_kevent.c
> +@@ -60,10 +60,22 @@ DISPATCH_STATIC_GLOBAL(struct dispatch_muxnote_bucket_
> + #define DISPATCH_NOTE_CLOCK_UPTIME    0
> + #endif
> + 
> ++#if defined(__FreeBSD__) || defined(__OpenBSD__)
> ++// BSD NOTE_ABSTIME deadlines use CLOCK_REALTIME.
> ++#define DISPATCH_NOTE_ABSOLUTE_WALL      NOTE_ABSOLUTE
> ++#define DISPATCH_NOTE_ABSOLUTE_MONOTONIC 0
> ++#define DISPATCH_NOTE_ABSOLUTE_UPTIME    0
> ++#else
> ++#define DISPATCH_NOTE_ABSOLUTE_WALL      NOTE_ABSOLUTE
> ++#define DISPATCH_NOTE_ABSOLUTE_MONOTONIC NOTE_ABSOLUTE
> ++#define DISPATCH_NOTE_ABSOLUTE_UPTIME    NOTE_ABSOLUTE
> ++#endif
> ++
> + static const uint32_t _dispatch_timer_index_to_fflags[] = {
> + #define DISPATCH_TIMER_FFLAGS_INIT(kind, qos, note) \
> +     [DISPATCH_TIMER_INDEX(DISPATCH_CLOCK_##kind, DISPATCH_TIMER_QOS_##qos)] 
> = \
> +-                    DISPATCH_NOTE_CLOCK_##kind | NOTE_ABSOLUTE | 
> NOTE_LEEWAY | (note)
> ++    DISPATCH_NOTE_CLOCK_##kind | DISPATCH_NOTE_ABSOLUTE_##kind | \
> ++    NOTE_LEEWAY | (note)
> +     DISPATCH_TIMER_FFLAGS_INIT(WALL, NORMAL, 0),
> +     DISPATCH_TIMER_FFLAGS_INIT(UPTIME, NORMAL, 0),
> +     DISPATCH_TIMER_FFLAGS_INIT(MONOTONIC, NORMAL, 0),
> +@@ -2406,6 +2418,10 @@ _dispatch_event_loop_timer_arm(dispatch_timer_heap_t d
> +     }
> + #if !NOTE_ABSOLUTE
> +     target = range.delay;
> ++#elif defined(__FreeBSD__) || defined(__OpenBSD__)
> ++    if (clock != DISPATCH_CLOCK_WALL) {
> ++            target -= _dispatch_time_now_cached(clock, nows);
> ++    }
> + #endif
> + 
> +     _dispatch_event_loop_timer_program(dth, tidx, target, range.leeway,
> Index: patches/patch-tests_CMakeLists_txt
> ===================================================================
> RCS file: patches/patch-tests_CMakeLists_txt
> diff -N patches/patch-tests_CMakeLists_txt
> --- /dev/null 1 Jan 1970 00:00:00 -0000
> +++ patches/patch-tests_CMakeLists_txt        23 Sep 2026 22:24:43 -0000
> @@ -0,0 +1,17 @@
> +- Use relative kqueue deadlines for BSD uptime and monotonic timers
> +  https://github.com/swiftlang/swift-corelibs-libdispatch/pull/943
> +
> +Index: tests/CMakeLists.txt
> +--- tests/CMakeLists.txt.orig
> ++++ tests/CMakeLists.txt
> +@@ -140,6 +140,10 @@ set(DISPATCH_C_TESTS
> +     io_pipe_close
> +     select)
> + 
> ++if(UNIX)
> ++  list(APPEND DISPATCH_C_TESTS timer_idle)
> ++endif()
> ++
> + # Tests that usually pass, but occasionally fail.
> + # Excluded by default for purposes of Swift CI
> + if(EXTENDED_TEST_SUITE)
> Index: patches/patch-tests_dispatch_timer_idle_c
> ===================================================================
> RCS file: patches/patch-tests_dispatch_timer_idle_c
> diff -N patches/patch-tests_dispatch_timer_idle_c
> --- /dev/null 1 Jan 1970 00:00:00 -0000
> +++ patches/patch-tests_dispatch_timer_idle_c 23 Sep 2026 22:24:43 -0000
> @@ -0,0 +1,157 @@
> +- Use relative kqueue deadlines for BSD uptime and monotonic timers
> +  https://github.com/swiftlang/swift-corelibs-libdispatch/pull/943
> +
> +Index: tests/dispatch_timer_idle.c
> +--- tests/dispatch_timer_idle.c.orig
> ++++ tests/dispatch_timer_idle.c
> +@@ -0,0 +1,150 @@
> ++/*
> ++ * This source file is part of the Swift.org open source project
> ++ *
> ++ * Copyright (c) 2026 Apple Inc. and the Swift project authors
> ++ *
> ++ * Licensed under Apache License v2.0 with Runtime Library Exception
> ++ *
> ++ * See https://swift.org/LICENSE.txt for license information
> ++ * See https://swift.org/CONTRIBUTORS.txt for the list of Swift project 
> authors
> ++ *
> ++ */
> ++
> ++#include <dispatch/dispatch.h>
> ++
> ++#include <bsdtests.h>
> ++#include "dispatch_test.h"
> ++
> ++#include <errno.h>
> ++#include <stdatomic.h>
> ++#include <stdint.h>
> ++#include <stdio.h>
> ++#include <stdlib.h>
> ++#include <sys/resource.h>
> ++#include <time.h>
> ++
> ++#define OBSERVATION_SECONDS 0.25
> ++#define MAX_IDLE_CPU_RATIO 0.20
> ++
> ++static _Atomic int timer_fired;
> ++static volatile uint64_t spin_sink;
> ++
> ++static void
> ++monotonic_now(struct timespec *value)
> ++{
> ++    if (clock_gettime(CLOCK_MONOTONIC, value) != 0) {
> ++    perror("clock_gettime");
> ++            exit(EXIT_FAILURE);
> ++    }
> ++}
> ++
> ++static double
> ++seconds_between(struct timespec start, struct timespec end)
> ++{
> ++    return (double)(end.tv_sec - start.tv_sec) +
> ++            (double)(end.tv_nsec - start.tv_nsec) / (double)NSEC_PER_SEC;
> ++}
> ++
> ++static double
> ++timeval_seconds(struct timeval value)
> ++{
> ++    return (double)value.tv_sec +
> ++            (double)value.tv_usec / (double)USEC_PER_SEC;
> ++}
> ++
> ++static double
> ++process_cpu_seconds(void)
> ++{
> ++    struct rusage usage;
> ++
> ++    if (getrusage(RUSAGE_SELF, &usage) != 0) {
> ++            perror("getrusage");
> ++            exit(EXIT_FAILURE);
> ++    }
> ++    return timeval_seconds(usage.ru_utime) + 
> timeval_seconds(usage.ru_stime);
> ++}
> ++
> ++static double
> ++measure_busy_cpu_ratio(void)
> ++{
> ++    struct timespec wall_start, wall_now;
> ++    double cpu_start, cpu_end;
> ++
> ++    monotonic_now(&wall_start);
> ++    cpu_start = process_cpu_seconds();
> ++    do {
> ++            spin_sink++;
> ++            monotonic_now(&wall_now);
> ++    } while (seconds_between(wall_start, wall_now) < OBSERVATION_SECONDS);
> ++    cpu_end = process_cpu_seconds();
> ++
> ++    return (cpu_end - cpu_start) / seconds_between(wall_start, wall_now);
> ++}
> ++
> ++static void
> ++unexpected_timer_fire(void *context)
> ++{
> ++    (void)context;
> ++    atomic_store_explicit(&timer_fired, 1, memory_order_relaxed);
> ++}
> ++
> ++static void
> ++observe_idle_timer(double *wall_seconds, double *cpu_seconds)
> ++{
> ++    struct timespec wall_start, wall_end;
> ++    struct timespec remaining = {
> ++            .tv_sec = 0,
> ++            .tv_nsec = (long)(OBSERVATION_SECONDS * (double)NSEC_PER_SEC),
> ++    };
> ++    dispatch_source_t timer;
> ++    double cpu_start;
> ++    int sleep_result;
> ++
> ++    timer = dispatch_source_create(DISPATCH_SOURCE_TYPE_TIMER, 0, 0,
> ++                    
> dispatch_get_global_queue(DISPATCH_QUEUE_PRIORITY_DEFAULT, 0));
> ++    test_ptr_notnull("dispatch_source_create", timer);
> ++    dispatch_source_set_event_handler_f(timer, unexpected_timer_fire);
> ++    dispatch_source_set_timer(timer,
> ++                    dispatch_time(DISPATCH_TIME_NOW, 3600 * NSEC_PER_SEC),
> ++                    DISPATCH_TIME_FOREVER, 0);
> ++    dispatch_resume(timer);
> ++
> ++    monotonic_now(&wall_start);
> ++    cpu_start = process_cpu_seconds();
> ++    do {
> ++            sleep_result = nanosleep(&remaining, &remaining);
> ++    } while (sleep_result == -1 && errno == EINTR);
> ++    if (sleep_result != 0) {
> ++            perror("nanosleep");
> ++            exit(EXIT_FAILURE);
> ++    }
> ++    *cpu_seconds = process_cpu_seconds() - cpu_start;
> ++    monotonic_now(&wall_end);
> ++    *wall_seconds = seconds_between(wall_start, wall_end);
> ++
> ++    dispatch_source_cancel(timer);
> ++    dispatch_release(timer);
> ++}
> ++
> ++int
> ++main(void)
> ++{
> ++    double busy_cpu_ratio, idle_wall_seconds, idle_cpu_seconds;
> ++    double idle_cpu_ratio, relative_cpu_ratio;
> ++
> ++    dispatch_test_start("Dispatch idle timer CPU usage");
> ++
> ++    busy_cpu_ratio = measure_busy_cpu_ratio();
> ++    observe_idle_timer(&idle_wall_seconds, &idle_cpu_seconds);
> ++    idle_cpu_ratio = idle_cpu_seconds / idle_wall_seconds;
> ++    relative_cpu_ratio = idle_cpu_ratio / busy_cpu_ratio;
> ++
> ++    fprintf(stderr, "idle=%f busy=%f relative=%f\n",
> ++                    idle_cpu_ratio, busy_cpu_ratio, relative_cpu_ratio);
> ++    test_long("timer fired", atomic_load_explicit(&timer_fired,
> ++                    memory_order_relaxed), 0);
> ++    test_double_less_than("idle timer CPU ratio", relative_cpu_ratio,
> ++                    MAX_IDLE_CPU_RATIO);
> ++    test_stop();
> ++    return 0;
> ++}
> 

asterisk looks ok, cpu use with Telegram is looking reasonably sane
once it's settled down after startup. Kirill, does it seem ok for you
too?

Reply via email to